65 changed files with 1553 additions and 1751 deletions
+1 -1
View File
@@ -38,7 +38,7 @@
<PackageVersion Include="Ryujinx.Graphics.Nvdec.Dependencies.Windows" Version="6.1.4-build6" />
<PackageVersion Include="Ryujinx.Graphics.Vulkan.MoltenVK" Version="1.4.3-ryujinx.1" />
<PackageVersion Include="Ryujinx.LibHac" Version="0.21.0-alpha.133" />
<PackageVersion Include="Ryujinx.SDL3-CS" Version="2026.918.0" />
<PackageVersion Include="Ryujinx.SDL3-CS" Version="2026.707.0" />
<PackageVersion Include="securifybv.ShellLink" Version="0.1.0" />
<PackageVersion Include="SharpZipLib" Version="1.4.2" />
<PackageVersion Include="Silk.NET.Shaderc" Version="2.23.0" />
@@ -413,6 +413,10 @@ namespace ARMeilleure.Translation
context.CurrOp = opCode;
Operand nativeContext = context.LoadArgument(OperandType.I64, 0);
Operand dispAddressAddr = context.Add(nativeContext, Const((ulong)NativeContext.GetDispatchAddressOffset()));
context.Store(dispAddressAddr, Const(opCode.Address));
bool isLastOp = opcIndex == block.OpCodes.Count - 1;
if (isLastOp)
@@ -8,7 +8,7 @@ namespace Ryujinx.Cpu.LightningJit.Arm32
{
static class Decoder<T> where T : IInstEmit
{
public static MultiBlock DecodeMulti(CpuPreset cpuPreset, IMemoryManager memoryManager, ulong address, bool isThumb)
public static MultiBlock DecodeMulti(CpuPreset cpuPreset, IMemoryManager memoryManager, ulong address, bool singleBlock, bool isThumb)
{
List<Block> blocks = [];
List<ulong> branchTargets = [];
@@ -24,7 +24,7 @@ namespace Ryujinx.Cpu.LightningJit.Arm32
blocks.Add(block);
if (block.IsTruncated || !HasNextBlock(block, block.EndAddress - 4UL, branchTargets))
if (block.IsTruncated || (singleBlock && block.EndsWithBranch) || !HasNextBlock(block, block.EndAddress - 4UL, branchTargets))
{
break;
}
@@ -227,7 +227,7 @@ namespace Ryujinx.Cpu.LightningJit.Arm32.Target.Arm64
public static CompiledFunction Compile(CpuPreset cpuPreset, IMemoryManager memoryManager, ulong address, IAddressTable<ulong> funcTable, nint dispatchStubPtr, bool isThumb)
{
MultiBlock multiBlock = Decoder<InstEmit>.DecodeMulti(cpuPreset, memoryManager, address, isThumb);
MultiBlock multiBlock = Decoder<InstEmit>.DecodeMulti(cpuPreset, memoryManager, address, singleBlock: true, isThumb);
Dictionary<ulong, int> targets = new();
@@ -305,7 +305,7 @@ namespace Ryujinx.Cpu.LightningJit.Arm64.Target.Arm64
public static CompiledFunction Compile(CpuPreset cpuPreset, IMemoryManager memoryManager, ulong address, IAddressTable<ulong> funcTable, nint dispatchStubPtr)
{
MultiBlock multiBlock = Decoder.DecodeMulti(cpuPreset, memoryManager, address);
MultiBlock multiBlock = Decoder.DecodeMulti(cpuPreset, memoryManager, address, singleBlock: true);
Dictionary<ulong, int> targets = new();
List<PendingBranch> pendingBranches = [];
@@ -13,7 +13,7 @@ namespace Ryujinx.Cpu.LightningJit.Arm64.Target.Arm64
private const uint NzcvFlags = 0xfu << 28;
private const uint CFlag = 0x1u << 29;
public static MultiBlock DecodeMulti(CpuPreset cpuPreset, IMemoryManager memoryManager, ulong address)
public static MultiBlock DecodeMulti(CpuPreset cpuPreset, IMemoryManager memoryManager, ulong address, bool singleBlock)
{
List<Block> blocks = [];
List<ulong> branchTargets = [];
@@ -35,7 +35,7 @@ namespace Ryujinx.Cpu.LightningJit.Arm64.Target.Arm64
blocks.Add(block);
if (block.IsTruncated || !HasNextBlock(block, block.EndAddress - 4UL, branchTargets))
if (block.IsTruncated || (singleBlock && block.EndsWithBranch) || !HasNextBlock(block, block.EndAddress - 4UL, branchTargets))
{
break;
}
+6 -12
View File
@@ -32,6 +32,7 @@ namespace Ryujinx.Graphics.GAL
public readonly bool SupportsGeometryShader;
public readonly bool SupportsGeometryShaderPassthrough;
public readonly bool SupportsTransformFeedback;
public readonly bool SupportsImageBufferPixelAlignment;
public readonly bool SupportsImageLoadFormatted;
public readonly bool SupportsLayerVertexTessellation;
public readonly bool SupportsMismatchingViewFormat;
@@ -43,6 +44,7 @@ namespace Ryujinx.Graphics.GAL
public readonly bool SupportsShaderBarrierDivergence;
public readonly bool SupportsShaderFloat64;
public readonly bool SupportsShaderNonUniformIndexing;
public readonly bool SupportsTextureBufferPixelAlignment;
public readonly bool SupportsTextureGatherOffsets;
public readonly bool SupportsTextureShadowLod;
public readonly bool SupportsVertexStoreAndAtomics;
@@ -51,10 +53,6 @@ namespace Ryujinx.Graphics.GAL
public readonly bool SupportsViewportSwizzle;
public readonly bool SupportsIndirectParameters;
public readonly bool SupportsDepthClipControl;
public readonly bool SupportsExtendedDynamicState;
public readonly bool SupportsExtendedDynamicState2;
public readonly bool SupportsLogicOpDynamicState;
public readonly bool SupportsPatchControlPointsDynamicState;
public readonly int UniformBufferSetIndex;
public readonly int StorageBufferSetIndex;
@@ -105,6 +103,7 @@ namespace Ryujinx.Graphics.GAL
bool supportsGeometryShader,
bool supportsGeometryShaderPassthrough,
bool supportsTransformFeedback,
bool supportsImageBufferPixelAlignment,
bool supportsImageLoadFormatted,
bool supportsLayerVertexTessellation,
bool supportsMismatchingViewFormat,
@@ -116,6 +115,7 @@ namespace Ryujinx.Graphics.GAL
bool supportsShaderBarrierDivergence,
bool supportsShaderFloat64,
bool supportsShaderNonUniformIndexing,
bool supportsTextureBufferPixelAlignment,
bool supportsTextureGatherOffsets,
bool supportsTextureShadowLod,
bool supportsVertexStoreAndAtomics,
@@ -124,10 +124,6 @@ namespace Ryujinx.Graphics.GAL
bool supportsViewportSwizzle,
bool supportsIndirectParameters,
bool supportsDepthClipControl,
bool supportsExtendedDynamicState,
bool supportsExtendedDynamicState2,
bool supportsLogicOpDynamicState,
bool supportsPatchControlPointsDynamicState,
int uniformBufferSetIndex,
int storageBufferSetIndex,
int textureSetIndex,
@@ -172,6 +168,7 @@ namespace Ryujinx.Graphics.GAL
SupportsGeometryShader = supportsGeometryShader;
SupportsGeometryShaderPassthrough = supportsGeometryShaderPassthrough;
SupportsTransformFeedback = supportsTransformFeedback;
SupportsImageBufferPixelAlignment = supportsImageBufferPixelAlignment;
SupportsImageLoadFormatted = supportsImageLoadFormatted;
SupportsLayerVertexTessellation = supportsLayerVertexTessellation;
SupportsMismatchingViewFormat = supportsMismatchingViewFormat;
@@ -183,6 +180,7 @@ namespace Ryujinx.Graphics.GAL
SupportsShaderBarrierDivergence = supportsShaderBarrierDivergence;
SupportsShaderFloat64 = supportsShaderFloat64;
SupportsShaderNonUniformIndexing = supportsShaderNonUniformIndexing;
SupportsTextureBufferPixelAlignment = supportsTextureBufferPixelAlignment;
SupportsTextureGatherOffsets = supportsTextureGatherOffsets;
SupportsTextureShadowLod = supportsTextureShadowLod;
SupportsVertexStoreAndAtomics = supportsVertexStoreAndAtomics;
@@ -191,10 +189,6 @@ namespace Ryujinx.Graphics.GAL
SupportsViewportSwizzle = supportsViewportSwizzle;
SupportsIndirectParameters = supportsIndirectParameters;
SupportsDepthClipControl = supportsDepthClipControl;
SupportsExtendedDynamicState = supportsExtendedDynamicState;
SupportsExtendedDynamicState2 = supportsExtendedDynamicState2;
SupportsLogicOpDynamicState = supportsLogicOpDynamicState;
SupportsPatchControlPointsDynamicState = supportsPatchControlPointsDynamicState;
UniformBufferSetIndex = uniformBufferSetIndex;
StorageBufferSetIndex = storageBufferSetIndex;
TextureSetIndex = textureSetIndex;
-1
View File
@@ -2,7 +2,6 @@ namespace Ryujinx.Graphics.GAL
{
public enum Face
{
None = 0,
Front = 0x404,
Back = 0x405,
FrontAndBack = 0x408,
+7 -7
View File
@@ -50,9 +50,9 @@ namespace Ryujinx.Graphics.GAL
void SetDepthBias(PolygonModeMask enables, float factor, float units, float clamp);
void SetDepthClamp(bool clamp);
void SetDepthMode(DepthMode mode);
void SetDepthTest(DepthTestDescriptor depthTest, bool signalChange = true);
void SetDepthTest(DepthTestDescriptor depthTest);
void SetFaceCulling(Face face);
void SetFaceCulling(bool enable, Face face);
void SetFrontFace(FrontFace frontFace);
@@ -75,16 +75,16 @@ namespace Ryujinx.Graphics.GAL
void SetPrimitiveRestart(bool enable, int index);
void SetPrimitiveTopology(PrimitiveTopology topology, bool signalChange = true);
void SetPrimitiveTopology(PrimitiveTopology topology);
void SetProgram(IProgram program, bool signalChange = true);
void SetProgram(IProgram program);
void SetRasterizerDiscard(bool discard);
void SetRenderTargetColorMasks(ReadOnlySpan<uint> componentMask, bool signalChange = true);
void SetRenderTargetColorMasks(ReadOnlySpan<uint> componentMask);
void SetRenderTargets(Span<ITexture> colors, ITexture depthStencil);
void SetScissors(ReadOnlySpan<Rectangle<int>> regions, bool signalChange = true);
void SetScissors(ReadOnlySpan<Rectangle<int>> regions);
void SetStencilTest(StencilTestDescriptor stencilTest);
@@ -102,7 +102,7 @@ namespace Ryujinx.Graphics.GAL
void SetVertexAttribs(ReadOnlySpan<VertexAttribDescriptor> vertexAttribs);
void SetVertexBuffers(ReadOnlySpan<VertexBufferDescriptor> vertexBuffers);
void SetViewports(ReadOnlySpan<Viewport> viewports, bool signalChange = true);
void SetViewports(ReadOnlySpan<Viewport> viewports);
void TextureBarrier();
void TextureBarrierTiled();
@@ -3,16 +3,18 @@ namespace Ryujinx.Graphics.GAL.Multithreading.Commands
struct SetFaceCullingCommand : IGALCommand, IGALCommand<SetFaceCullingCommand>
{
public readonly CommandType CommandType => CommandType.SetFaceCulling;
private bool _enable;
private Face _face;
public void Set(Face face)
public void Set(bool enable, Face face)
{
_enable = enable;
_face = face;
}
public static void Run(ref SetFaceCullingCommand command, ThreadedRenderer threaded, IRenderer renderer)
{
renderer.Pipeline.SetFaceCulling(command._face);
renderer.Pipeline.SetFaceCulling(command._enable, command._face);
}
}
}
@@ -158,15 +158,15 @@ namespace Ryujinx.Graphics.GAL.Multithreading
_renderer.QueueCommand();
}
public unsafe void SetDepthTest(DepthTestDescriptor depthTest, bool signalChange = true)
public unsafe void SetDepthTest(DepthTestDescriptor depthTest)
{
_renderer.New<SetDepthTestCommand>()->Set(depthTest);
_renderer.QueueCommand();
}
public unsafe void SetFaceCulling(Face face)
public unsafe void SetFaceCulling(bool enable, Face face)
{
_renderer.New<SetFaceCullingCommand>()->Set(face);
_renderer.New<SetFaceCullingCommand>()->Set(enable, face);
_renderer.QueueCommand();
}
@@ -242,13 +242,13 @@ namespace Ryujinx.Graphics.GAL.Multithreading
_renderer.QueueCommand();
}
public unsafe void SetPrimitiveTopology(PrimitiveTopology topology, bool signalChange = true)
public unsafe void SetPrimitiveTopology(PrimitiveTopology topology)
{
_renderer.New<SetPrimitiveTopologyCommand>()->Set(topology);
_renderer.QueueCommand();
}
public unsafe void SetProgram(IProgram program, bool signalChange = true)
public unsafe void SetProgram(IProgram program)
{
_renderer.New<SetProgramCommand>()->Set(Ref(program));
_renderer.QueueCommand();
@@ -260,7 +260,7 @@ namespace Ryujinx.Graphics.GAL.Multithreading
_renderer.QueueCommand();
}
public unsafe void SetRenderTargetColorMasks(ReadOnlySpan<uint> componentMask, bool signalChange = true)
public unsafe void SetRenderTargetColorMasks(ReadOnlySpan<uint> componentMask)
{
_renderer.New<SetRenderTargetColorMasksCommand>()->Set(_renderer.CopySpan(componentMask));
_renderer.QueueCommand();
@@ -275,7 +275,7 @@ namespace Ryujinx.Graphics.GAL.Multithreading
_renderer.QueueCommand();
}
public unsafe void SetScissors(ReadOnlySpan<Rectangle<int>> scissors, bool signalChange = true)
public unsafe void SetScissors(ReadOnlySpan<Rectangle<int>> scissors)
{
_renderer.New<SetScissorsCommand>()->Set(_renderer.CopySpan(scissors));
_renderer.QueueCommand();
@@ -341,7 +341,7 @@ namespace Ryujinx.Graphics.GAL.Multithreading
_renderer.QueueCommand();
}
public unsafe void SetViewports(ReadOnlySpan<Viewport> viewports, bool signalChange = true)
public unsafe void SetViewports(ReadOnlySpan<Viewport> viewports)
{
_renderer.New<SetViewportsCommand>()->Set(_renderer.CopySpan(viewports));
_renderer.QueueCommand();
@@ -51,12 +51,11 @@ namespace Ryujinx.Graphics.GAL
public StencilTestDescriptor StencilTest;
public FrontFace FrontFace;
public Face CullMode;
public bool CullEnable;
public PolygonModeMask BiasEnable;
public bool AlphaToCoverageEnable;
public bool AlphaToOneEnable;
public float LineWidth;
// TODO: Polygon mode.
public bool DepthClampEnable;
public bool RasterizerDiscard;
@@ -64,9 +63,6 @@ namespace Ryujinx.Graphics.GAL
public bool PrimitiveRestartEnable;
public uint PatchControlPoints;
public float DepthBiasUnits;
public float DepthBiasFactor;
public DepthMode DepthMode;
public void SetVertexAttribs(ReadOnlySpan<VertexAttribDescriptor> vertexAttribs)
@@ -466,6 +466,7 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
engine.UpdateState(ulong.MaxValue & ~(1UL << StateUpdater.ShaderStateIndex));
_channel.TextureManager.SignalRenderTargetsModifiable();
_channel.TextureManager.UpdateRenderTargets();
int textureId = _state.State.DrawTextureTextureId;
@@ -803,7 +804,7 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
int index = (argument >> 6) & 0xf;
int layer = (argument >> 10) & 0x3ff;
RenderTargetUpdateFlags updateFlags = RenderTargetUpdateFlags.SingleColor;
RenderTargetUpdateFlags updateFlags = RenderTargetUpdateFlags.SingleColor | RenderTargetUpdateFlags.ForClear;
if (layer != 0 || layerCount > 1)
{
@@ -38,6 +38,11 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
/// </summary>
DiscardClip = 1 << 4,
/// <summary>
/// Indicates that the render target will be used for a clear operation.
/// </summary>
ForClear = 1 << 5,
/// <summary>
/// Default update flags for draw.
/// </summary>
@@ -45,6 +45,7 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
private ProgramPipelineState _pipeline;
private bool _fsReadsFragCoord;
private bool _fsAlwaysDiscards;
private bool _vsUsesDrawParameters;
private bool _vtgWritesRtLayer;
private byte _vsClipDistancesWritten;
@@ -491,6 +492,8 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
Span<RtColorState> rtColorStateSpan = _state.State.RtColorState.AsSpan();
bool rtModifiable = updateFlags.HasFlag(RenderTargetUpdateFlags.ForClear) || !_fsAlwaysDiscards;
for (int index = 0; index < Constants.TotalRenderTargets; index++)
{
int rtIndex = useControl ? rtControl.UnpackPermutationIndex(index) : index;
@@ -499,7 +502,7 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
if (index >= count || !IsRtEnabled(colorState) || (singleColor && index != singleUse))
{
changedScale |= _channel.TextureManager.SetRenderTargetColor(index, null);
changedScale |= _channel.TextureManager.SetRenderTargetColor(index, null, rtModifiable);
continue;
}
@@ -518,7 +521,7 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
samplesInY,
sizeHint);
changedScale |= _channel.TextureManager.SetRenderTargetColor(index, color);
changedScale |= _channel.TextureManager.SetRenderTargetColor(index, color, rtModifiable);
if (color != null)
{
@@ -572,7 +575,7 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
}
}
changedScale |= _channel.TextureManager.SetRenderTargetDepthStencil(depthStencil);
changedScale |= _channel.TextureManager.SetRenderTargetDepthStencil(depthStencil, rtModifiable);
if (changedScale)
{
@@ -774,6 +777,11 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
float width = scaleX * 2;
float height = scaleY * 2;
if (yNegate)
{
y += _state.State.ScreenScissorState.Height - MathF.Abs(height);
}
float scale = _channel.TextureManager.RenderTargetScale;
if (scale != 1f)
{
@@ -861,9 +869,6 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
enables |= (depthBias.FillEnable ? PolygonModeMask.Fill : 0);
_pipeline.BiasEnable = enables;
_pipeline.DepthBiasUnits = units / 2f;
_pipeline.DepthBiasFactor = factor;
_context.Renderer.Pipeline.SetDepthBias(enables, factor, units / 2f, clamp);
}
@@ -1037,6 +1042,7 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
float width = _state.State.LineWidthSmooth;
bool smooth = _state.State.LineSmoothEnable;
_pipeline.LineWidth = width;
_context.Renderer.Pipeline.SetLineParameters(width, smooth);
}
@@ -1218,16 +1224,9 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
YControl yControl = _state.State.YControl;
FaceState face = _state.State.FaceState;
if (face.CullEnable)
{
_pipeline.CullMode = face.CullFace;
_context.Renderer.Pipeline.SetFaceCulling(face.CullFace);
}
else
{
_pipeline.CullMode = Face.None;
_context.Renderer.Pipeline.SetFaceCulling(Face.None);
}
_pipeline.CullEnable = face.CullEnable;
_pipeline.CullMode = face.CullFace;
_context.Renderer.Pipeline.SetFaceCulling(face.CullEnable, face.CullFace);
UpdateFrontFace(yControl, face.FrontFace);
}
@@ -1425,8 +1424,6 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
bool alphaToCoverageEnable = (_state.State.MultisampleControl & 1) != 0;
bool alphaToOneEnable = (_state.State.MultisampleControl & 0x10) != 0;
_pipeline.AlphaToCoverageEnable = alphaToCoverageEnable;
_pipeline.AlphaToOneEnable = alphaToOneEnable;
_context.Renderer.Pipeline.SetMultisampleState(new MultisampleDescriptor(
alphaToCoverageEnable,
_state.State.AlphaToCoverageDitherEnable,
@@ -1528,20 +1525,38 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
_currentProgramInfo[stageIndex] = info;
}
if (gs.Shaders[5]?.Info.UsesFragCoord == true)
{
// Make sure we update the viewport size on the support buffer if it will be consumed on the new shader.
_fsReadsFragCoord = false;
if (!_fsReadsFragCoord && (_state.State.YControl & YControl.NegateY) != 0)
ShaderProgramInfo fragmentShaderInfo = gs.Shaders[5]?.Info;
if (fragmentShaderInfo != null)
{
if (fragmentShaderInfo.UsesFragCoord)
{
UpdateSupportBufferViewportSize();
// Make sure we update the viewport size on the support buffer if it will be consumed on the new shader.
if (!_fsReadsFragCoord && (_state.State.YControl & YControl.NegateY) != 0)
{
UpdateSupportBufferViewportSize();
}
_fsReadsFragCoord = true;
}
_fsReadsFragCoord = true;
if (_fsAlwaysDiscards != fragmentShaderInfo.HasUnconditionalDiscard)
{
_fsAlwaysDiscards = fragmentShaderInfo.HasUnconditionalDiscard;
if (!_fsAlwaysDiscards)
{
_channel.TextureManager.RefreshModifiedTextures();
_channel.TextureManager.SignalRenderTargetsModifiable();
}
}
}
else
{
_fsReadsFragCoord = false;
_fsAlwaysDiscards = false;
}
if (gs.VertexAsCompute != null)
+9 -5
View File
@@ -1572,11 +1572,6 @@ namespace Ryujinx.Graphics.Gpu.Image
/// <param name="bound">True if the texture has been bound, false if it has been unbound</param>
public void SignalModifying(bool bound)
{
if (bound)
{
_scaledSetScore = Math.Max(0, _scaledSetScore - 1);
}
if (_modifiedStale || Group.HasCopyDependencies || Group.HasFlushBuffer)
{
_modifiedStale = false;
@@ -1584,9 +1579,18 @@ namespace Ryujinx.Graphics.Gpu.Image
}
_physicalMemory.TextureCache.Lift(this);
}
/// <summary>
/// Signals that a render target texture has been either bound or unbound.
/// </summary>
/// <param name="bound">True if the texture has been bound, false if it has been unbound</param>
public void SignalBindingChange(bool bound)
{
if (bound)
{
_scaledSetScore = Math.Max(0, _scaledSetScore - 1);
IncrementReferenceCount();
}
else
@@ -4,6 +4,7 @@ using Ryujinx.Graphics.Gpu.Engine.Types;
using Ryujinx.Graphics.Gpu.Memory;
using Ryujinx.Graphics.Gpu.Shader;
using Ryujinx.Graphics.Shader;
using Ryujinx.Memory.Range;
using System;
using System.Runtime.CompilerServices;
using System.Runtime.InteropServices;
@@ -67,6 +68,9 @@ namespace Ryujinx.Graphics.Gpu.Image
private int _lastFragmentTotal;
private readonly int _bufferTextureAlignment;
private readonly int _bufferImageAlignment;
/// <summary>
/// Constructs a new instance of the texture bindings manager.
/// </summary>
@@ -108,6 +112,10 @@ namespace Ryujinx.Graphics.Gpu.Image
}
_textureCounts = [];
int alignment = context.Capabilities.TextureBufferOffsetAlignment;
_bufferTextureAlignment = context.Capabilities.SupportsTextureBufferPixelAlignment ? 0 : alignment;
_bufferImageAlignment = context.Capabilities.SupportsImageBufferPixelAlignment ? 0 : alignment;
}
/// <summary>
@@ -521,10 +529,12 @@ namespace Ryujinx.Graphics.Gpu.Image
if (hostTexture != null && texture.Target == Target.TextureBuffer)
{
MultiRange range = GetAlignedBufferTextureRange(texture, index, stageIndex, false);
// Ensure that the buffer texture is using the correct buffer as storage.
// Buffers are frequently re-created to accommodate larger data, so we need to re-bind
// to ensure we're not using a old buffer that was already deleted.
_channel.BufferManager.SetBufferTextureStorage(stage, hostTexture, texture.Range, bindingInfo, false);
_channel.BufferManager.SetBufferTextureStorage(stage, hostTexture, range, bindingInfo, false);
// Cache is not used for buffer texture, it must always rebind.
state.CachedTexture = null;
@@ -659,7 +669,9 @@ namespace Ryujinx.Graphics.Gpu.Image
// Buffers are frequently re-created to accommodate larger data, so we need to re-bind
// to ensure we're not using a old buffer that was already deleted.
_channel.BufferManager.SetBufferTextureStorage(stage, hostTexture, texture.Range, bindingInfo, true);
MultiRange range = GetAlignedBufferTextureRange(texture, index, stageIndex, true);
_channel.BufferManager.SetBufferTextureStorage(stage, hostTexture, range, bindingInfo, true);
// Cache is not used for buffer texture, it must always rebind.
state.CachedTexture = null;
@@ -692,6 +704,61 @@ namespace Ryujinx.Graphics.Gpu.Image
return specStateMatches;
}
/// <summary>
/// Gets the aligned address of the texture according to the host requirements.
/// </summary>
/// <param name="texture">Texture to have its address aligned</param>
/// <param name="index">Index of the texture in the shader</param>
/// <param name="stageIndex">Index of the shader stage</param>
/// <param name="isImage">True if the texture is bound as image, false for sampled textures</param>
/// <returns>Aligned address and size of the buffer texture</returns>
private MultiRange GetAlignedBufferTextureRange(Texture texture, int index, int stageIndex, bool isImage)
{
MultiRange range = texture.Range;
int alignment = isImage ? _bufferImageAlignment : _bufferTextureAlignment;
if (alignment != 0)
{
MemoryRange firstRange = range.GetSubRange(0);
ulong misalign = firstRange.Address & ((ulong)alignment - 1);
int offset = misalign != 0 ? (int)misalign / texture.Info.FormatInfo.BytesPerPixel : 0;
if (misalign != 0)
{
firstRange = new MemoryRange(firstRange.Address - misalign, firstRange.Size + misalign);
if (range.Count > 1)
{
MemoryRange[] ranges = new MemoryRange[range.Count];
ranges[0] = firstRange;
for (int i = 1; i < range.Count; i++)
{
ranges[i] = range.GetSubRange(i);
}
range = new MultiRange(ranges);
}
else
{
range = new MultiRange(firstRange.Address, firstRange.Size);
}
}
if (isImage)
{
_context.SupportBufferUpdater.UpdateBufferImageOffset(stageIndex, index, offset);
}
else
{
_context.SupportBufferUpdater.UpdateBufferTextureOffset(stageIndex, index, offset);
}
}
return range;
}
/// <summary>
/// Gets the texture descriptor for a given texture handle.
/// </summary>
@@ -19,12 +19,39 @@ namespace Ryujinx.Graphics.Gpu.Image
private readonly TexturePoolCache _texturePoolCache;
private readonly SamplerPoolCache _samplerPoolCache;
/// <summary>
/// Bound render target texture modification report state.
/// </summary>
[Flags]
private enum BindState : byte
{
/// <summary>
/// Render target texture has not been signalled for modification, and can't be modified on the next render operations.
/// </summary>
None = 0,
/// <summary>
/// Render target texture has been signalled for modification.
/// </summary>
Bound = 1 << 0,
/// <summary>
/// Render target texture might be modified on the next render operations.
/// </summary>
Modified = 1 << 1,
/// <summary>
/// Render target texture has been signalled for modification and might be modified on the next render operations.
/// </summary>
BoundModified = Bound | Modified,
}
private readonly Texture[] _rtColors;
private readonly ITexture[] _rtHostColors;
private readonly bool[] _rtColorsBound;
private readonly BindState[] _rtColorsBound;
private Texture _rtDepthStencil;
private ITexture _rtHostDs;
private bool _rtDsBound;
private BindState _rtDsBound;
public int ClipRegionWidth { get; private set; }
public int ClipRegionHeight { get; private set; }
@@ -55,7 +82,7 @@ namespace Ryujinx.Graphics.Gpu.Image
_rtColors = new Texture[Constants.TotalRenderTargets];
_rtHostColors = new ITexture[Constants.TotalRenderTargets];
_rtColorsBound = new bool[Constants.TotalRenderTargets];
_rtColorsBound = new BindState[Constants.TotalRenderTargets];
}
/// <summary>
@@ -151,27 +178,39 @@ namespace Ryujinx.Graphics.Gpu.Image
/// </summary>
/// <param name="index">The index of the color buffer to set (up to 8)</param>
/// <param name="color">The color buffer texture</param>
/// <param name="modified">Indicates if the following render operations will modidify <paramref name="color"/> contents</param>
/// <returns>True if render target scale must be updated.</returns>
public bool SetRenderTargetColor(int index, Texture color)
public bool SetRenderTargetColor(int index, Texture color, bool modified)
{
bool hasValue = color != null;
bool changesScale = (hasValue != (_rtColors[index] != null)) || (hasValue && RenderTargetScale != color.ScaleFactor);
if (_rtColors[index] != color)
{
if (_rtColorsBound[index])
Texture oldColor = _rtColors[index];
if (oldColor != null)
{
_rtColors[index]?.SignalModifying(false);
}
else
{
_rtColorsBound[index] = true;
if (_rtColorsBound[index].HasFlag(BindState.Bound))
{
oldColor.SignalModifying(false);
}
oldColor.SignalBindingChange(false);
}
_rtColorsBound[index] = modified ? BindState.BoundModified : BindState.None;
if (color != null)
{
color.SynchronizeMemory();
color.SignalModifying(true);
if (modified)
{
color.SignalModifying(true);
}
color.SignalBindingChange(true);
}
_rtColors[index] = color;
@@ -184,27 +223,39 @@ namespace Ryujinx.Graphics.Gpu.Image
/// Sets the render target depth-stencil buffer.
/// </summary>
/// <param name="depthStencil">The depth-stencil buffer texture</param>
/// <param name="modified">Indicates if the following render operations will modidify <paramref name="depthStencil"/> contents</param>
/// <returns>True if render target scale must be updated.</returns>
public bool SetRenderTargetDepthStencil(Texture depthStencil)
public bool SetRenderTargetDepthStencil(Texture depthStencil, bool modified)
{
bool hasValue = depthStencil != null;
bool changesScale = (hasValue != (_rtDepthStencil != null)) || (hasValue && RenderTargetScale != depthStencil.ScaleFactor);
if (_rtDepthStencil != depthStencil)
{
if (_rtDsBound)
Texture oldDepthStencil = _rtDepthStencil;
if (oldDepthStencil != null)
{
_rtDepthStencil?.SignalModifying(false);
}
else
{
_rtDsBound = true;
if (_rtDsBound.HasFlag(BindState.Bound))
{
oldDepthStencil.SignalModifying(false);
}
oldDepthStencil.SignalBindingChange(false);
}
_rtDsBound = modified ? BindState.BoundModified : BindState.None;
if (depthStencil != null)
{
depthStencil.SynchronizeMemory();
depthStencil.SignalModifying(true);
if (modified)
{
depthStencil.SignalModifying(true);
}
depthStencil.SignalBindingChange(true);
}
_rtDepthStencil = depthStencil;
@@ -443,10 +494,10 @@ namespace Ryujinx.Graphics.Gpu.Image
{
hostDsTexture = dsTexture.HostTexture;
if (!_rtDsBound)
if (_rtDsBound == BindState.Modified)
{
dsTexture.SignalModifying(true);
_rtDsBound = true;
_rtDsBound |= BindState.Bound;
}
}
@@ -470,10 +521,10 @@ namespace Ryujinx.Graphics.Gpu.Image
{
hostTexture = texture.HostTexture;
if (!_rtColorsBound[index])
if (_rtColorsBound[index] == BindState.Modified)
{
texture.SignalModifying(true);
_rtColorsBound[index] = true;
_rtColorsBound[index] |= BindState.Bound;
}
}
@@ -518,24 +569,37 @@ namespace Ryujinx.Graphics.Gpu.Image
{
Texture dsTexture = _rtDepthStencil;
if (dsTexture != null && _rtDsBound)
if (dsTexture != null && _rtDsBound.HasFlag(BindState.Bound))
{
dsTexture.SignalModifying(false);
_rtDsBound = false;
_rtDsBound &= ~BindState.Bound;
}
for (int index = 0; index < _rtColors.Length; index++)
{
Texture texture = _rtColors[index];
if (texture != null && _rtColorsBound[index])
if (texture != null && _rtColorsBound[index].HasFlag(BindState.Bound))
{
texture.SignalModifying(false);
_rtColorsBound[index] = false;
_rtColorsBound[index] &= ~BindState.Bound;
}
}
}
/// <summary>
/// Indicates that the currently bound render targets might be modified, if they are used on the next render operation.
/// </summary>
public void SignalRenderTargetsModifiable()
{
_rtDsBound |= BindState.Modified;
for (int index = 0; index < _rtColorsBound.Length; index++)
{
_rtColorsBound[index] |= BindState.Modified;
}
}
/// <summary>
/// Forces the texture and sampler pools to be re-loaded from the cache on next use.
/// </summary>
@@ -572,19 +636,11 @@ namespace Ryujinx.Graphics.Gpu.Image
for (int i = 0; i < _rtColors.Length; i++)
{
if (_rtColorsBound[i])
{
_rtColors[i]?.DecrementReferenceCount();
}
_rtColors[i]?.DecrementReferenceCount();
_rtColors[i] = null;
}
if (_rtDsBound)
{
_rtDepthStencil?.DecrementReferenceCount();
}
_rtDepthStencil?.DecrementReferenceCount();
_rtDepthStencil = null;
}
}
@@ -129,6 +129,38 @@ namespace Ryujinx.Graphics.Gpu.Memory
}
}
/// <summary>
/// Updates the offset used for accessing buffer textures that are not aligned to the host requirements.
/// </summary>
/// <param name="stageIndex">Index of the shader stage where the texture is used</param>
/// <param name="bindingIndex">Index of the texture binding in the shader</param>
/// <param name="offset">Offset for the misaligned part of the address</param>
public void UpdateBufferTextureOffset(int stageIndex, int bindingIndex, int offset)
{
if (_data.BufferTextureOffset[stageIndex][bindingIndex].X != offset)
{
_data.BufferTextureOffset[stageIndex][bindingIndex].X = offset;
int index = stageIndex * SupportBuffer.TextureCount + bindingIndex;
MarkDirty(SupportBuffer.BufferTextureOffsetOffset + index * sizeof(int) * 4, sizeof(int));
}
}
/// <summary>
/// Updates the offset used for accessing buffer images that are not aligned to the host requirements.
/// </summary>
/// <param name="stageIndex">Index of the shader stage where the image is used</param>
/// <param name="bindingIndex">Index of the image binding in the shader</param>
/// <param name="offset">Offset for the misaligned part of the address</param>
public void UpdateBufferImageOffset(int stageIndex, int bindingIndex, int offset)
{
if (_data.BufferTextureOffset[stageIndex][bindingIndex].Y != offset)
{
_data.BufferTextureOffset[stageIndex][bindingIndex].Y = offset;
int index = stageIndex * SupportBuffer.TextureCount + bindingIndex;
MarkDirty(SupportBuffer.BufferTextureOffsetOffset + index * sizeof(int) * 4 + sizeof(int), sizeof(int));
}
}
/// <summary>
/// Sets whether the format of a given render target is a BGRA format.
/// </summary>
@@ -22,7 +22,7 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
private const ushort FileFormatVersionMajor = 1;
private const ushort FileFormatVersionMinor = 2;
private const uint FileFormatVersionPacked = ((uint)FileFormatVersionMajor << 16) | FileFormatVersionMinor;
private const uint CodeGenVersion = 7354;
private const uint CodeGenVersion = 6371;
private const string SharedTocFileName = "shared.toc";
private const string SharedDataFileName = "shared.data";
@@ -170,6 +170,11 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
/// </summary>
public bool UsesRtLayer;
/// <summary>
/// Indicates that the fragment shader always discards the fragment, not producing any output for the bound render targets.
/// </summary>
public bool HasUnconditionalDiscard;
/// <summary>
/// Bit mask with the clip distances written on the vertex stage.
/// </summary>
@@ -806,6 +811,7 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
dataInfo.UsesInstanceId,
dataInfo.UsesDrawParameters,
dataInfo.UsesRtLayer,
dataInfo.HasUnconditionalDiscard,
dataInfo.ClipDistancesWritten,
dataInfo.FragmentOutputMap);
}
@@ -836,6 +842,7 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
UsesInstanceId = info.UsesInstanceId,
UsesDrawParameters = info.UsesDrawParameters,
UsesRtLayer = info.UsesRtLayer,
HasUnconditionalDiscard = info.HasUnconditionalDiscard,
ClipDistancesWritten = info.ClipDistancesWritten,
FragmentOutputMap = info.FragmentOutputMap,
};
@@ -22,8 +22,6 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
private readonly CancellationToken _cancellationToken;
private readonly Action<ShaderCacheState, int, int> _stateChangeCallback;
private readonly HashSet<ProgramPipelineState> _pipelineStateSet = new();
/// <summary>
/// Indicates if the cache should be loaded.
/// </summary>
@@ -234,7 +232,10 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
for (int index = 0; index < ThreadCount; index++)
{
workThreads[index] = new Thread(ProcessAsyncQueue) { Name = $"GPU.AsyncTranslationThread.{index}", };
workThreads[index] = new Thread(ProcessAsyncQueue)
{
Name = $"GPU.AsyncTranslationThread.{index}",
};
}
int programCount = _hostStorage.GetProgramCount();
@@ -304,8 +305,6 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
using DiskCacheOutputStreams streams = _hostStorage.GetOutputStreams(_context);
int packagedShaders = 0;
ProgramPipelineState currentPipelineState = default;
foreach (KeyValuePair<int, (CachedShaderProgram, byte[])> kv in _programList)
{
if (!Active)
@@ -315,53 +314,12 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
(CachedShaderProgram program, byte[] binaryCode) = kv.Value;
if (program.SpecializationState.PipelineState.HasValue && _context.Capabilities.SupportsExtendedDynamicState)
{
currentPipelineState = program.SpecializationState.PipelineState.Value;
_hostStorage.AddShader(_context, program, binaryCode, streams);
if (_context.Capabilities.SupportsExtendedDynamicState)
{
currentPipelineState.StencilTest = default;
currentPipelineState.CullMode = 0;
currentPipelineState.FrontFace = 0;
currentPipelineState.DepthTest = default;
currentPipelineState.Topology = ConvertToClass(currentPipelineState.Topology);
}
if (_context.Capabilities.SupportsExtendedDynamicState2)
{
currentPipelineState.PrimitiveRestartEnable = false;
currentPipelineState.BiasEnable = 0;
currentPipelineState.RasterizerDiscard = false;
}
if (_context.Capabilities.SupportsLogicOpDynamicState)
{
currentPipelineState.LogicOp = 0;
}
if (_context.Capabilities.SupportsPatchControlPointsDynamicState)
{
currentPipelineState.PatchControlPoints = 0;
}
}
if (!_pipelineStateSet.Contains(currentPipelineState) ||
!_context.Capabilities.SupportsExtendedDynamicState ||
!program.SpecializationState.PipelineState.HasValue)
{
_hostStorage.AddShader(_context, program, binaryCode, streams);
_stateChangeCallback(ShaderCacheState.Packaging, ++packagedShaders, _programList.Count);
if (_context.Capabilities.SupportsExtendedDynamicState)
{
_pipelineStateSet.Add(currentPipelineState);
}
}
_stateChangeCallback(ShaderCacheState.Packaging, ++packagedShaders, _programList.Count);
}
Logger.Info?.Print(LogClass.Gpu, $"Rebuilt {packagedShaders} shaders successfully.");
Logger.Info?.Print(LogClass.Gpu, $"Rebuilt {_programList.Count} shaders successfully.");
}
else
{
@@ -385,29 +343,6 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
_stateChangeCallback(ShaderCacheState.Loaded, programCount, programCount);
}
private PrimitiveTopology ConvertToClass(PrimitiveTopology topology)
{
return topology switch
{
PrimitiveTopology.Points => PrimitiveTopology.Points,
PrimitiveTopology.Lines or
PrimitiveTopology.LineStrip or
PrimitiveTopology.LinesAdjacency or
PrimitiveTopology.LineStripAdjacency => PrimitiveTopology.Lines,
PrimitiveTopology.Triangles or
PrimitiveTopology.TriangleStrip or
PrimitiveTopology.TriangleFan or
PrimitiveTopology.TrianglesAdjacency or
PrimitiveTopology.TriangleStripAdjacency or
PrimitiveTopology.Polygon => PrimitiveTopology.TriangleStrip,
PrimitiveTopology.Patches => PrimitiveTopology.Patches,
PrimitiveTopology.Quads => PrimitiveTopology.Quads,
PrimitiveTopology.QuadStrip => PrimitiveTopology.QuadStrip,
PrimitiveTopology.LineLoop => PrimitiveTopology.LineLoop,
_ => PrimitiveTopology.TriangleStrip,
};
}
/// <summary>
/// Enqueues a host program for compilation.
/// </summary>
@@ -207,6 +207,10 @@ namespace Ryujinx.Graphics.Gpu.Shader
public bool QueryHostSupportsBgraFormat() => _context.Capabilities.SupportsBgraFormat;
public bool QueryHostSupportsBufferImagePixelAlignment() => _context.Capabilities.SupportsImageBufferPixelAlignment;
public bool QueryHostSupportsBufferTexturePixelAlignment() => _context.Capabilities.SupportsTextureBufferPixelAlignment;
public bool QueryHostSupportsFragmentShaderInterlock() => _context.Capabilities.SupportsFragmentShaderInterlock;
public bool QueryHostSupportsFragmentShaderOrderingIntel() => _context.Capabilities.SupportsFragmentShaderOrderingIntel;
@@ -430,7 +430,8 @@ namespace Ryujinx.Graphics.Gpu.Shader
TranslatorContext lastInVertexPipeline = geometryToCompute ? translatorContexts[4] ?? currentStage : currentStage;
program = lastInVertexPipeline.GenerateVertexPassthroughForCompute();
(program, ShaderProgramInfo vacInfo) = lastInVertexPipeline.GenerateVertexPassthroughForCompute();
infoBuilder.AddStageInfoVac(vacInfo);
}
else
{
@@ -535,7 +536,7 @@ namespace Ryujinx.Graphics.Gpu.Shader
private ShaderAsCompute CreateHostVertexAsComputeProgram(ShaderProgram program, TranslatorContext context, bool tfEnabled)
{
ShaderSource source = new(program.Code, program.BinaryCode, ShaderStage.Compute, program.Language);
ShaderInfo info = ShaderInfoBuilder.BuildForVertexAsCompute(_context, program.Info, tfEnabled);
ShaderInfo info = ShaderInfoBuilder.BuildForVertexAsCompute(_context, program.Info, context.GetVertexAsComputeInfo(), tfEnabled);
return new(_context.Renderer.CreateProgram([source], info), program.Info, context.GetResourceReservations());
}
@@ -95,7 +95,7 @@ namespace Ryujinx.Graphics.Gpu.Shader
private void PopulateDescriptorAndUsages(ResourceStages stages, ResourceType type, int setIndex, int start, int count, bool write = false)
{
AddDescriptor(stages, type, setIndex, start, count);
AddUsage(stages, type, setIndex, start, count, write);
// AddUsage(stages, type, setIndex, start, count, write);
}
/// <summary>
@@ -159,6 +159,25 @@ namespace Ryujinx.Graphics.Gpu.Shader
AddUsage(info.Images, stages, isImage: true);
}
public void AddStageInfoVac(ShaderProgramInfo info)
{
ResourceStages stages = info.Stage switch
{
ShaderStage.Compute => ResourceStages.Compute,
ShaderStage.Vertex => ResourceStages.Vertex,
ShaderStage.TessellationControl => ResourceStages.TessellationControl,
ShaderStage.TessellationEvaluation => ResourceStages.TessellationEvaluation,
ShaderStage.Geometry => ResourceStages.Geometry,
ShaderStage.Fragment => ResourceStages.Fragment,
_ => ResourceStages.None,
};
AddUsage(info.CBuffers, stages, isStorage: false);
AddUsage(info.SBuffers, stages, isStorage: true);
AddUsage(info.Textures, stages, isImage: false);
AddUsage(info.Images, stages, isImage: true);
}
/// <summary>
/// Adds a resource descriptor to the list of descriptors.
/// </summary>
@@ -422,10 +441,11 @@ namespace Ryujinx.Graphics.Gpu.Shader
/// <param name="tfEnabled">Indicates if the graphics shader is used with transform feedback enabled</param>
/// <param name="fromCache">True if the compute shader comes from a disk cache, false otherwise</param>
/// <returns>Shader information</returns>
public static ShaderInfo BuildForVertexAsCompute(GpuContext context, ShaderProgramInfo info, bool tfEnabled, bool fromCache = false)
public static ShaderInfo BuildForVertexAsCompute(GpuContext context, ShaderProgramInfo info, ShaderProgramInfo info2, bool tfEnabled, bool fromCache = false)
{
ShaderInfoBuilder builder = new(context, tfEnabled, vertexAsCompute: true);
builder.AddStageInfoVac(info2);
builder.AddStageInfo(info, vertexAsCompute: true);
return builder.Build(null, fromCache);
@@ -174,6 +174,7 @@ namespace Ryujinx.Graphics.OpenGL
supportsGeometryShader: true,
supportsGeometryShaderPassthrough: HwCapabilities.SupportsGeometryShaderPassthrough,
supportsTransformFeedback: true,
supportsImageBufferPixelAlignment: false,
supportsImageLoadFormatted: HwCapabilities.SupportsImageLoadFormatted,
supportsLayerVertexTessellation: HwCapabilities.SupportsShaderViewportLayerArray,
supportsMismatchingViewFormat: HwCapabilities.SupportsMismatchingViewFormat,
@@ -185,6 +186,7 @@ namespace Ryujinx.Graphics.OpenGL
supportsShaderBarrierDivergence: !(intelWindows || intelUnix),
supportsShaderFloat64: true,
supportsShaderNonUniformIndexing: false,
supportsTextureBufferPixelAlignment: false,
supportsTextureGatherOffsets: true,
supportsTextureShadowLod: HwCapabilities.SupportsTextureShadowLod,
supportsVertexStoreAndAtomics: true,
@@ -193,10 +195,6 @@ namespace Ryujinx.Graphics.OpenGL
supportsViewportSwizzle: HwCapabilities.SupportsViewportSwizzle,
supportsIndirectParameters: HwCapabilities.SupportsIndirectParameters,
supportsDepthClipControl: true,
supportsExtendedDynamicState: false,
supportsExtendedDynamicState2: false,
supportsLogicOpDynamicState: false,
supportsPatchControlPointsDynamicState: false,
uniformBufferSetIndex: 0,
storageBufferSetIndex: 1,
textureSetIndex: 2,
+9 -9
View File
@@ -898,7 +898,7 @@ namespace Ryujinx.Graphics.OpenGL
}
}
public void SetDepthTest(DepthTestDescriptor depthTest, bool signalChange = true)
public void SetDepthTest(DepthTestDescriptor depthTest)
{
if (depthTest.TestEnable)
{
@@ -915,11 +915,11 @@ namespace Ryujinx.Graphics.OpenGL
_depthTestEnable = depthTest.TestEnable;
}
public void SetFaceCulling(Face face)
public void SetFaceCulling(bool enable, Face face)
{
_cullEnable = face != Face.None;
_cullEnable = enable;
if (!_cullEnable)
if (!enable)
{
GL.Disable(EnableCap.CullFace);
return;
@@ -1107,12 +1107,12 @@ namespace Ryujinx.Graphics.OpenGL
GL.Enable(EnableCap.PrimitiveRestart);
}
public void SetPrimitiveTopology(PrimitiveTopology topology, bool signalChange = true)
public void SetPrimitiveTopology(PrimitiveTopology topology)
{
_primitiveType = topology.Convert();
}
public void SetProgram(IProgram program, bool signalChange = true)
public void SetProgram(IProgram program)
{
Program prg = (Program)program;
@@ -1154,7 +1154,7 @@ namespace Ryujinx.Graphics.OpenGL
_rasterizerDiscard = discard;
}
public void SetRenderTargetColorMasks(ReadOnlySpan<uint> componentMasks, bool signalChange = true)
public void SetRenderTargetColorMasks(ReadOnlySpan<uint> componentMasks)
{
_componentMasks = 0;
@@ -1195,7 +1195,7 @@ namespace Ryujinx.Graphics.OpenGL
_framebuffer.SetDrawBuffers(colors.Length);
}
public void SetScissors(ReadOnlySpan<Rectangle<int>> regions, bool signalChange = true)
public void SetScissors(ReadOnlySpan<Rectangle<int>> regions)
{
int count = Math.Min(regions.Length, Constants.MaxViewports);
@@ -1388,7 +1388,7 @@ namespace Ryujinx.Graphics.OpenGL
_vertexArray.SetVertexBuffers(vertexBuffers);
}
public void SetViewports(ReadOnlySpan<Viewport> viewports, bool signalChange = true)
public void SetViewports(ReadOnlySpan<Viewport> viewports)
{
Array.Resize(ref _viewportArray, viewports.Length * 4);
Array.Resize(ref _depthRangeArray, viewports.Length * 2);
@@ -522,6 +522,7 @@ namespace Ryujinx.Graphics.Shader.Decoders
enum PMode
{
Idx = 0,
F4e = 1,
B4e = 2,
Rc8 = 3,
@@ -234,6 +234,24 @@ namespace Ryujinx.Graphics.Shader
return true;
}
/// <summary>
/// Queries host support for buffer image access with the buffer offset aligned to a single pixel rather than a fixed alignment.
/// </summary>
/// <returns>True if the host supports buffer image access with pixel alignment, false otherwise</returns>
bool QueryHostSupportsBufferImagePixelAlignment()
{
return true;
}
/// <summary>
/// Queries host support for buffer texture access with the buffer offset aligned to a single pixel rather than a fixed alignment.
/// </summary>
/// <returns>True if the host supports buffer texture access with pixel alignment, false otherwise</returns>
bool QueryHostSupportsBufferTexturePixelAlignment()
{
return true;
}
/// <summary>
/// Queries host support for fragment shader ordering critical sections on the shader code.
/// </summary>
@@ -215,34 +215,6 @@ namespace Ryujinx.Graphics.Shader.Instructions
context.TranslatorContext.GpuAccessor.Log("Shader instruction Pret is not implemented.");
}
public static void PrmtR(EmitterContext context)
{
context.GetOp<InstPrmtR>();
context.TranslatorContext.GpuAccessor.Log("Shader instruction PrmtR is not implemented.");
}
public static void PrmtI(EmitterContext context)
{
context.GetOp<InstPrmtI>();
context.TranslatorContext.GpuAccessor.Log("Shader instruction PrmtI is not implemented.");
}
public static void PrmtC(EmitterContext context)
{
context.GetOp<InstPrmtC>();
context.TranslatorContext.GpuAccessor.Log("Shader instruction PrmtC is not implemented.");
}
public static void PrmtRc(EmitterContext context)
{
context.GetOp<InstPrmtRc>();
context.TranslatorContext.GpuAccessor.Log("Shader instruction PrmtRc is not implemented.");
}
public static void R2b(EmitterContext context)
{
context.GetOp<InstR2b>();
@@ -1,7 +1,7 @@
using Ryujinx.Graphics.Shader.Decoders;
using Ryujinx.Graphics.Shader.IntermediateRepresentation;
using Ryujinx.Graphics.Shader.Translation;
using System;
using static Ryujinx.Graphics.Shader.Instructions.InstEmitHelper;
using static Ryujinx.Graphics.Shader.IntermediateRepresentation.OperandHelper;
@@ -37,6 +37,38 @@ namespace Ryujinx.Graphics.Shader.Instructions
context.Copy(GetDest(op.Dest), GetSrcImm(context, op.Imm32));
}
public static void PrmtR(EmitterContext context)
{
context.GetOp<InstPrmtR>();
context.TranslatorContext.GpuAccessor.Log("Shader instruction PrmtR is not implemented.");
}
public static void PrmtI(EmitterContext context)
{
InstPrmtI op = context.GetOp<InstPrmtI>();
Operand op1 = GetSrcReg(context, op.SrcA);
Operand control = GetSrcImm(context, op.Imm20);
Operand op2 = GetSrcReg(context, op.SrcC);
EmitPrmt(context, op1, control, op2, op.PMode, op.Dest);
}
public static void PrmtC(EmitterContext context)
{
context.GetOp<InstPrmtC>();
context.TranslatorContext.GpuAccessor.Log("Shader instruction PrmtC is not implemented.");
}
public static void PrmtRc(EmitterContext context)
{
context.GetOp<InstPrmtRc>();
context.TranslatorContext.GpuAccessor.Log("Shader instruction PrmtRc is not implemented.");
}
public static void R2pR(EmitterContext context)
{
InstR2pR op = context.GetOp<InstR2pR>();
@@ -169,6 +201,39 @@ namespace Ryujinx.Graphics.Shader.Instructions
context.Copy(GetDest(op.Dest), src);
}
public static void SelR(EmitterContext context)
{
InstSelR op = context.GetOp<InstSelR>();
Operand srcA = GetSrcReg(context, op.SrcA);
Operand srcB = GetSrcReg(context, op.SrcB);
Operand srcPred = GetPredicate(context, op.SrcPred, op.SrcPredInv);
EmitSel(context, srcA, srcB, srcPred, op.Dest);
}
public static void SelI(EmitterContext context)
{
InstSelI op = context.GetOp<InstSelI>();
Operand srcA = GetSrcReg(context, op.SrcA);
Operand srcB = GetSrcImm(context, Imm20ToSInt(op.Imm20));
Operand srcPred = GetPredicate(context, op.SrcPred, op.SrcPredInv);
EmitSel(context, srcA, srcB, srcPred, op.Dest);
}
public static void SelC(EmitterContext context)
{
InstSelC op = context.GetOp<InstSelC>();
Operand srcA = GetSrcReg(context, op.SrcA);
Operand srcB = GetSrcCbuf(context, op.CbufSlot, op.CbufOffset);
Operand srcPred = GetPredicate(context, op.SrcPred, op.SrcPredInv);
EmitSel(context, srcA, srcB, srcPred, op.Dest);
}
private static Operand EmitLoadSubgroupLaneId(EmitterContext context)
{
if (context.TranslatorContext.GpuAccessor.QueryHostSubgroupSize() <= 32)
@@ -215,37 +280,34 @@ namespace Ryujinx.Graphics.Shader.Instructions
}
}
public static void SelR(EmitterContext context)
private static void EmitPrmt(EmitterContext context, Operand op1, Operand control, Operand op2, PMode pMode, int rd)
{
InstSelR op = context.GetOp<InstSelR>();
if (pMode == PMode.Idx)
{
Operand res = Const(0);
Operand srcA = GetSrcReg(context, op.SrcA);
Operand srcB = GetSrcReg(context, op.SrcB);
Operand srcPred = GetPredicate(context, op.SrcPred, op.SrcPredInv);
for (int b = 0; b < 4; b++)
{
Operand sel = context.ShiftRightU32(control, Const(b * 4));
Operand byteSel = context.BitwiseAnd(sel, Const(7));
Operand copySign = context.BitwiseAnd(sel, Const(8));
EmitSel(context, srcA, srcB, srcPred, op.Dest);
}
Operand srcOp = context.ConditionalSelect(context.BitwiseAnd(byteSel, Const(4)), op2, op1);
Operand srcValue = context.ShiftRightU32(srcOp, context.ShiftLeft(context.BitwiseAnd(byteSel, Const(3)), Const(3)));
Operand srcSign = context.ShiftRightS32(context.ShiftLeft(srcValue, Const(24)), Const(31));
public static void SelI(EmitterContext context)
{
InstSelI op = context.GetOp<InstSelI>();
srcValue = context.ConditionalSelect(copySign, srcSign, srcValue);
srcValue = context.BitwiseAnd(srcValue, Const(0xff));
Operand srcA = GetSrcReg(context, op.SrcA);
Operand srcB = GetSrcImm(context, Imm20ToSInt(op.Imm20));
Operand srcPred = GetPredicate(context, op.SrcPred, op.SrcPredInv);
res = context.BitfieldInsert(res, srcValue, Const(b * 8), Const(8));
}
EmitSel(context, srcA, srcB, srcPred, op.Dest);
}
public static void SelC(EmitterContext context)
{
InstSelC op = context.GetOp<InstSelC>();
Operand srcA = GetSrcReg(context, op.SrcA);
Operand srcB = GetSrcCbuf(context, op.CbufSlot, op.CbufOffset);
Operand srcPred = GetPredicate(context, op.SrcPred, op.SrcPredInv);
EmitSel(context, srcA, srcB, srcPred, op.Dest);
context.Copy(GetDest(rd), res);
}
else
{
throw new NotImplementedException(pMode.ToString());
}
}
private static void EmitR2p(EmitterContext context, Operand value, Operand mask, ByteSel byteSel, bool ccpr)
@@ -23,6 +23,7 @@ namespace Ryujinx.Graphics.Shader.IntermediateRepresentation
set => _branch = AddSuccessor(_branch, value);
}
public bool HasSuccessor => _branch != null || _next != null;
public bool HasBranch => _branch != null;
public bool Reachable => Index == 0 || Predecessors.Count != 0;
@@ -18,6 +18,7 @@ namespace Ryujinx.Graphics.Shader
public bool UsesInstanceId { get; }
public bool UsesDrawParameters { get; }
public bool UsesRtLayer { get; }
public bool HasUnconditionalDiscard { get; }
public byte ClipDistancesWritten { get; }
public int FragmentOutputMap { get; }
@@ -34,6 +35,7 @@ namespace Ryujinx.Graphics.Shader
bool usesInstanceId,
bool usesDrawParameters,
bool usesRtLayer,
bool hasUnconditionalDiscard,
byte clipDistancesWritten,
int fragmentOutputMap)
{
@@ -50,6 +52,7 @@ namespace Ryujinx.Graphics.Shader
UsesInstanceId = usesInstanceId;
UsesDrawParameters = usesDrawParameters;
UsesRtLayer = usesRtLayer;
HasUnconditionalDiscard = hasUnconditionalDiscard;
ClipDistancesWritten = clipDistancesWritten;
FragmentOutputMap = fragmentOutputMap;
}
+10 -2
View File
@@ -24,6 +24,7 @@ namespace Ryujinx.Graphics.Shader
RenderScale,
TfeOffset,
TfeVertexCount,
BufferTextureOffset,
}
public struct SupportBuffer
@@ -42,10 +43,13 @@ namespace Ryujinx.Graphics.Shader
public static readonly int ComputeRenderScaleOffset;
public static readonly int TfeOffsetOffset;
public static readonly int TfeVertexCountOffset;
public static readonly int BufferTextureOffsetOffset;
public const int FragmentIsBgraCount = 8;
public const int TextureCount = 64;
// One for the render target, 64 for the textures, and 8 for the images.
public const int RenderScaleMaxCount = 1 + 64 + 8;
public const int RenderScaleMaxCount = 1 + TextureCount + 8;
private static int OffsetOf<T>(ref SupportBuffer storage, ref T target)
{
@@ -68,6 +72,7 @@ namespace Ryujinx.Graphics.Shader
ComputeRenderScaleOffset = GraphicsRenderScaleOffset + FieldSize;
TfeOffsetOffset = OffsetOf(ref instance, ref instance.TfeOffset);
TfeVertexCountOffset = OffsetOf(ref instance, ref instance.TfeVertexCount);
BufferTextureOffsetOffset = OffsetOf(ref instance, ref instance.BufferTextureOffset);
}
internal static StructureType GetStructureType()
@@ -80,7 +85,8 @@ namespace Ryujinx.Graphics.Shader
new StructureField(AggregateType.S32, "frag_scale_count"),
new StructureField(AggregateType.Array | AggregateType.FP32, "render_scale", RenderScaleMaxCount),
new StructureField(AggregateType.Vector4 | AggregateType.S32, "tfe_offset"),
new StructureField(AggregateType.S32, "tfe_vertex_count")
new StructureField(AggregateType.S32, "tfe_vertex_count"),
new StructureField(AggregateType.Array | AggregateType.Vector2 | AggregateType.S32, "buffer_texture_offset")
]);
}
@@ -95,5 +101,7 @@ namespace Ryujinx.Graphics.Shader
public Vector4<int> TfeOffset;
public Vector4<int> TfeVertexCount;
public Array5<Array64<Vector4<int>>> BufferTextureOffset;
}
}
@@ -26,5 +26,6 @@ namespace Ryujinx.Graphics.Shader.Translation
SharedMemory = 1 << 11,
Store = 1 << 12,
VtgAsCompute = 1 << 13,
UnconditionalDiscard = 1 << 14,
}
}
@@ -0,0 +1,38 @@
using Ryujinx.Graphics.Shader.IntermediateRepresentation;
namespace Ryujinx.Graphics.Shader.Translation
{
static class FeatureIdentification
{
public static void RunPass(BasicBlock[] blocks, ShaderStage stage, ref FeatureFlags usedFeatures)
{
if (stage == ShaderStage.Fragment)
{
bool endsWithDiscardOnly = true;
for (int blockIndex = 0; blockIndex < blocks.Length; blockIndex++)
{
BasicBlock block = blocks[blockIndex];
if (block.HasSuccessor)
{
continue;
}
if (block.Operations.Count == 0 ||
block.Operations.Last.Value is not Operation operation ||
operation.Inst != Instruction.Discard)
{
endsWithDiscardOnly = false;
break;
}
}
if (endsWithDiscardOnly)
{
usedFeatures |= FeatureFlags.UnconditionalDiscard;
}
}
}
}
}
@@ -43,6 +43,11 @@ namespace Ryujinx.Graphics.Shader.Translation
private readonly Dictionary<TextureInfo, TextureMeta> _usedTextures;
private readonly Dictionary<TextureInfo, TextureMeta> _usedImages;
private readonly List<BufferDefinition> _vacConstantBuffers;
private readonly List<BufferDefinition> _vacStorageBuffers;
private readonly List<TextureDefinition> _vacTextures;
private readonly List<TextureDefinition> _vacImages;
public int LocalMemoryId { get; private set; }
public int SharedMemoryId { get; private set; }
@@ -78,6 +83,11 @@ namespace Ryujinx.Graphics.Shader.Translation
_usedTextures = new();
_usedImages = new();
_vacConstantBuffers = new();
_vacStorageBuffers = new();
_vacTextures = new();
_vacImages = new();
Properties.AddOrUpdateConstantBuffer(new(BufferLayout.Std140, 0, SupportBuffer.Binding, "support_buffer", SupportBuffer.GetStructureType()));
LocalMemoryId = -1;
@@ -563,6 +573,76 @@ namespace Ryujinx.Graphics.Shader.Translation
return descriptors.ToArray();
}
public ShaderProgramInfo GetVertexAsComputeInfo(bool isVertex = false)
{
var cbDescriptors = new BufferDescriptor[_vacConstantBuffers.Count];
int cbDescriptorIndex = 0;
foreach (BufferDefinition definition in _vacConstantBuffers)
{
cbDescriptors[cbDescriptorIndex++] = new BufferDescriptor(definition.Set, definition.Binding, 0, 0, 0, BufferUsageFlags.None);
}
var sbDescriptors = new BufferDescriptor[_vacStorageBuffers.Count];
int sbDescriptorIndex = 0;
foreach (BufferDefinition definition in _vacStorageBuffers)
{
sbDescriptors[sbDescriptorIndex++] = new BufferDescriptor(definition.Set, definition.Binding, 0, 0, 0, BufferUsageFlags.Write);
}
var tDescriptors = new TextureDescriptor[_vacTextures.Count];
int tDescriptorIndex = 0;
foreach (TextureDefinition definition in _vacTextures)
{
tDescriptors[tDescriptorIndex++] = new TextureDescriptor(
definition.Set,
definition.Binding,
definition.Type,
definition.Format,
0,
0,
definition.ArrayLength,
definition.Separate,
definition.Flags);
}
var iDescriptors = new TextureDescriptor[_vacImages.Count];
int iDescriptorIndex = 0;
foreach (TextureDefinition definition in _vacImages)
{
iDescriptors[iDescriptorIndex++] = new TextureDescriptor(
definition.Set,
definition.Binding,
definition.Type,
definition.Format,
0,
0,
definition.ArrayLength,
definition.Separate,
definition.Flags);
}
return new ShaderProgramInfo(
cbDescriptors,
sbDescriptors,
tDescriptors,
iDescriptors,
isVertex ? ShaderStage.Vertex : ShaderStage.Compute,
0,
0,
0,
false,
false,
false,
false,
false,
0,
0);
}
public bool TryGetCbufSlotAndHandleForTexture(int binding, out int cbufSlot, out int handle)
{
foreach ((TextureInfo info, TextureMeta meta) in _usedTextures)
@@ -627,6 +707,30 @@ namespace Ryujinx.Graphics.Shader.Translation
Properties.AddOrUpdateStorageBuffer(new(BufferLayout.Std430, setIndex, binding, name, type));
}
public void AddVertexAsComputeConstantBuffer(BufferDefinition definition)
{
_vacConstantBuffers.Add(definition);
Properties.AddOrUpdateConstantBuffer(definition);
}
public void AddVertexAsComputeStorageBuffer(BufferDefinition definition)
{
_vacStorageBuffers.Add(definition);
Properties.AddOrUpdateStorageBuffer(definition);
}
public void AddVertexAsComputeTexture(TextureDefinition definition)
{
_vacTextures.Add(definition);
Properties.AddOrUpdateTexture(definition);
}
public void AddVertexAsComputeImage(TextureDefinition definition)
{
_vacImages.Add(definition);
Properties.AddOrUpdateImage(definition);
}
public static string GetShaderStagePrefix(ShaderStage stage)
{
uint index = (uint)stage;
@@ -1,4 +1,5 @@
using Ryujinx.Graphics.Shader.IntermediateRepresentation;
using Ryujinx.Graphics.Shader.Translation.Optimizations;
using System.Collections.Generic;
using System.Linq;
using static Ryujinx.Graphics.Shader.IntermediateRepresentation.OperandHelper;
@@ -27,7 +28,19 @@ namespace Ryujinx.Graphics.Shader.Translation.Transforms
if (texOp.Type == SamplerType.TextureBuffer && !context.GpuAccessor.QueryHostSupportsSnormBufferTextureFormat())
{
node = InsertSnormNormalization(node, context.ResourceManager, context.GpuAccessor);
if (!context.GpuAccessor.QueryHostSupportsSnormBufferTextureFormat())
{
node = InsertSnormNormalization(node, context.ResourceManager, context.GpuAccessor);
}
if (!context.GpuAccessor.QueryHostSupportsBufferTexturePixelAlignment())
{
node = InsertCoordOffset(node, context.ResourceManager, context.Stage, isImage: false);
}
}
else if (!context.GpuAccessor.QueryHostSupportsBufferTexturePixelAlignment() && texOp.Inst.IsImage())
{
node = InsertCoordOffset(node, context.ResourceManager, context.Stage, isImage: true);
}
}
}
@@ -278,6 +291,87 @@ namespace Ryujinx.Graphics.Shader.Translation.Transforms
return node;
}
private static LinkedListNode<INode> InsertCoordOffset(LinkedListNode<INode> node, ResourceManager resourceManager, ShaderStage stage, bool isImage)
{
// Some GPUs have fixed alignment requirements for buffer textures.
// For those cases, we bind the aligned buffer offset, and apply the remaining offset on the shader.
TextureOperation texOp = (TextureOperation)node.Value;
if ((texOp.Type & SamplerType.Mask) != SamplerType.TextureBuffer)
{
return node;
}
Operand[] sources = new Operand[texOp.SourcesCount];
for (int i = 0; i < texOp.SourcesCount; i++)
{
sources[i] = texOp.GetSource(i);
}
bool isBindless = (texOp.Flags & TextureFlags.Bindless) != 0;
bool isIndexed = resourceManager.IsArrayOfTexturesOrImages(texOp.Binding, isImage);
int coordsIndex = isBindless || isIndexed ? 1 : 0;
Operand[] dests = new Operand[texOp.DestsCount];
for (int i = 0; i < texOp.DestsCount; i++)
{
dests[i] = texOp.GetDest(i);
}
LinkedListNode<INode> oldNode = node;
Operand source = sources[coordsIndex];
Operand offset = Local();
Operand coordPlusOffset = Local();
int stageIndex = stage switch
{
ShaderStage.TessellationControl => 1,
ShaderStage.TessellationEvaluation => 2,
ShaderStage.Geometry => 3,
ShaderStage.Fragment => 4,
_ => 0,
};
int bindingIndex = isImage
? resourceManager.FindImageDescriptorIndex(texOp.Binding)
: resourceManager.FindTextureDescriptorIndex(texOp.Binding);
node.List.AddBefore(node, new Operation(
Instruction.Load,
StorageKind.ConstantBuffer,
offset,
Const(SupportBuffer.Binding),
Const((int)SupportBufferField.BufferTextureOffset),
Const(stageIndex * SupportBuffer.TextureCount + bindingIndex),
Const(isImage ? 1 : 0)));
node.List.AddBefore(node, new Operation(Instruction.Add, coordPlusOffset, source, offset));
sources[coordsIndex] = coordPlusOffset;
TextureOperation newTexOp = new(
texOp.Inst,
texOp.Type,
texOp.Format,
texOp.Flags,
texOp.Set,
texOp.Binding,
texOp.Index,
dests,
sources);
node = node.List.AddBefore(node, newTexOp);
Utils.DeleteNode(oldNode, texOp);
return node;
}
private static LinkedListNode<INode> InsertConstOffsets(LinkedListNode<INode> node, ResourceManager resourceManager, IGpuAccessor gpuAccessor, ShaderStage stage)
{
// Non-constant texture offsets are not allowed (according to the spec),
@@ -301,6 +301,11 @@ namespace Ryujinx.Graphics.Shader.Translation
Optimizer.RunPass(context);
TransformPasses.RunPass(context);
if (i == 0)
{
FeatureIdentification.RunPass(cfg.Blocks, Definitions.Stage, ref usedFeatures);
}
}
funcs[i] = new Function(cfg.Blocks, $"fun{i}", false, inArgumentsCount, outArgumentsCount);
@@ -353,6 +358,7 @@ namespace Ryujinx.Graphics.Shader.Translation
usedFeatures.HasFlag(FeatureFlags.InstanceId),
usedFeatures.HasFlag(FeatureFlags.DrawParameters),
usedFeatures.HasFlag(FeatureFlags.RtLayer),
usedFeatures.HasFlag(FeatureFlags.UnconditionalDiscard),
clipDistancesWritten,
originalDefinitions.OmapTargets);
@@ -393,7 +399,7 @@ namespace Ryujinx.Graphics.Shader.Translation
{
int binding = resourceManager.Reservations.GetTfeBufferStorageBufferBinding(i);
BufferDefinition tfeDataBuffer = new(BufferLayout.Std430, 1, binding, $"tfe_data{i}", tfeDataStruct);
resourceManager.Properties.AddOrUpdateStorageBuffer(tfeDataBuffer);
resourceManager.AddVertexAsComputeStorageBuffer(tfeDataBuffer);
}
}
@@ -401,7 +407,7 @@ namespace Ryujinx.Graphics.Shader.Translation
{
int vertexInfoCbBinding = resourceManager.Reservations.VertexInfoConstantBufferBinding;
BufferDefinition vertexInfoBuffer = new(BufferLayout.Std140, 0, vertexInfoCbBinding, "vb_info", VertexInfoBuffer.GetStructureType());
resourceManager.Properties.AddOrUpdateConstantBuffer(vertexInfoBuffer);
resourceManager.AddVertexAsComputeConstantBuffer(vertexInfoBuffer);
StructureType vertexOutputStruct = new([
new StructureField(AggregateType.Array | AggregateType.FP32, "data", 0)
@@ -409,13 +415,13 @@ namespace Ryujinx.Graphics.Shader.Translation
int vertexOutputSbBinding = resourceManager.Reservations.VertexOutputStorageBufferBinding;
BufferDefinition vertexOutputBuffer = new(BufferLayout.Std430, 1, vertexOutputSbBinding, "vertex_output", vertexOutputStruct);
resourceManager.Properties.AddOrUpdateStorageBuffer(vertexOutputBuffer);
resourceManager.AddVertexAsComputeStorageBuffer(vertexOutputBuffer);
if (Stage == ShaderStage.Vertex)
{
SetBindingPair ibSetAndBinding = resourceManager.Reservations.GetIndexBufferTextureSetAndBinding();
TextureDefinition indexBuffer = new(ibSetAndBinding.SetIndex, ibSetAndBinding.Binding, "ib_data", SamplerType.TextureBuffer);
resourceManager.Properties.AddOrUpdateTexture(indexBuffer);
resourceManager.AddVertexAsComputeTexture(indexBuffer);
int inputMap = _program.AttributeUsage.UsedInputAttributes;
@@ -424,7 +430,7 @@ namespace Ryujinx.Graphics.Shader.Translation
int location = BitOperations.TrailingZeroCount(inputMap);
SetBindingPair setAndBinding = resourceManager.Reservations.GetVertexBufferTextureSetAndBinding(location);
TextureDefinition vaBuffer = new(setAndBinding.SetIndex, setAndBinding.Binding, $"vb_data{location}", SamplerType.TextureBuffer);
resourceManager.Properties.AddOrUpdateTexture(vaBuffer);
resourceManager.AddVertexAsComputeTexture(vaBuffer);
inputMap &= ~(1 << location);
}
@@ -433,11 +439,11 @@ namespace Ryujinx.Graphics.Shader.Translation
{
SetBindingPair trbSetAndBinding = resourceManager.Reservations.GetTopologyRemapBufferTextureSetAndBinding();
TextureDefinition remapBuffer = new(trbSetAndBinding.SetIndex, trbSetAndBinding.Binding, "trb_data", SamplerType.TextureBuffer);
resourceManager.Properties.AddOrUpdateTexture(remapBuffer);
resourceManager.AddVertexAsComputeTexture(remapBuffer);
int geometryVbOutputSbBinding = resourceManager.Reservations.GeometryVertexOutputStorageBufferBinding;
BufferDefinition geometryVbOutputBuffer = new(BufferLayout.Std430, 1, geometryVbOutputSbBinding, "geometry_vb_output", vertexOutputStruct);
resourceManager.Properties.AddOrUpdateStorageBuffer(geometryVbOutputBuffer);
resourceManager.AddVertexAsComputeStorageBuffer(geometryVbOutputBuffer);
StructureType geometryIbOutputStruct = new([
new StructureField(AggregateType.Array | AggregateType.U32, "data", 0)
@@ -445,7 +451,7 @@ namespace Ryujinx.Graphics.Shader.Translation
int geometryIbOutputSbBinding = resourceManager.Reservations.GeometryIndexOutputStorageBufferBinding;
BufferDefinition geometryIbOutputBuffer = new(BufferLayout.Std430, 1, geometryIbOutputSbBinding, "geometry_ib_output", geometryIbOutputStruct);
resourceManager.Properties.AddOrUpdateStorageBuffer(geometryIbOutputBuffer);
resourceManager.AddVertexAsComputeStorageBuffer(geometryIbOutputBuffer);
}
resourceManager.SetVertexAsComputeLocalMemories(Definitions.Stage, Definitions.InputTopology);
@@ -478,12 +484,17 @@ namespace Ryujinx.Graphics.Shader.Translation
return new ResourceReservations(GpuAccessor, IsTransformFeedbackEmulated, vertexAsCompute: true, _vertexOutput, ioUsage);
}
public ShaderProgramInfo GetVertexAsComputeInfo()
{
return CreateResourceManager(true).GetVertexAsComputeInfo();
}
public void SetVertexOutputMapForGeometryAsCompute(TranslatorContext vertexContext)
{
_vertexOutput = vertexContext._program.GetIoUsage();
}
public ShaderProgram GenerateVertexPassthroughForCompute()
public (ShaderProgram, ShaderProgramInfo) GenerateVertexPassthroughForCompute()
{
AttributeUsage attributeUsage = new(GpuAccessor);
ResourceManager resourceManager = new(ShaderStage.Vertex, GpuAccessor);
@@ -495,7 +506,7 @@ namespace Ryujinx.Graphics.Shader.Translation
if (Stage == ShaderStage.Vertex)
{
BufferDefinition vertexInfoBuffer = new(BufferLayout.Std140, 0, vertexInfoCbBinding, "vb_info", VertexInfoBuffer.GetStructureType());
resourceManager.Properties.AddOrUpdateConstantBuffer(vertexInfoBuffer);
resourceManager.AddVertexAsComputeConstantBuffer(vertexInfoBuffer);
}
StructureType vertexInputStruct = new([
@@ -504,7 +515,7 @@ namespace Ryujinx.Graphics.Shader.Translation
int vertexDataSbBinding = reservations.VertexOutputStorageBufferBinding;
BufferDefinition vertexOutputBuffer = new(BufferLayout.Std430, 1, vertexDataSbBinding, "vb_input", vertexInputStruct);
resourceManager.Properties.AddOrUpdateStorageBuffer(vertexOutputBuffer);
resourceManager.AddVertexAsComputeStorageBuffer(vertexOutputBuffer);
EmitterContext context = new();
@@ -562,14 +573,14 @@ namespace Ryujinx.Graphics.Shader.Translation
LastInVertexPipeline = true
};
return Generate(
return (Generate(
[function],
attributeUsage,
definitions,
definitions,
resourceManager,
FeatureFlags.None,
0);
0), resourceManager.GetVertexAsComputeInfo(isVertex: true));
}
public ShaderProgram GenerateGeometryPassthrough()
@@ -36,6 +36,7 @@ namespace Ryujinx.Graphics.Vulkan
queueLock,
_gd.QueueFamilyIndex,
_gd.IsQualcommProprietary,
_gd.IsTurnip,
isLight: true);
}
}
@@ -19,6 +19,7 @@ namespace Ryujinx.Graphics.Vulkan
private readonly Queue _queue;
private readonly Lock _queueLock;
private readonly bool _concurrentFenceWaitUnsupported;
private readonly bool _fenceAlwaysWaits;
private readonly CommandPool _pool;
private readonly Thread _owner;
@@ -66,6 +67,7 @@ namespace Ryujinx.Graphics.Vulkan
Lock queueLock,
uint queueFamilyIndex,
bool concurrentFenceWaitUnsupported,
bool fenceAlwaysWaits,
bool isLight = false)
{
_api = api;
@@ -73,6 +75,7 @@ namespace Ryujinx.Graphics.Vulkan
_queue = queue;
_queueLock = queueLock;
_concurrentFenceWaitUnsupported = concurrentFenceWaitUnsupported;
_fenceAlwaysWaits = fenceAlwaysWaits;
_owner = Thread.CurrentThread;
CommandPoolCreateInfo commandPoolCreateInfo = new()
@@ -207,7 +210,7 @@ namespace Ryujinx.Graphics.Vulkan
ref ReservedCommandBuffer entry = ref _commandBuffers[index];
if (wait || !entry.InConsumption || entry.Fence.IsSignaled())
if (wait || !entry.InConsumption || entry.Fence.IsSignaledLazy())
{
WaitAndDecrementRef(index);
@@ -349,7 +352,7 @@ namespace Ryujinx.Graphics.Vulkan
if (refreshFence)
{
entry.Fence = new FenceHolder(_api, _device, _concurrentFenceWaitUnsupported);
entry.Fence = new FenceHolder(_api, _device, _concurrentFenceWaitUnsupported, _fenceAlwaysWaits);
}
else
{
@@ -255,8 +255,8 @@ namespace Ryujinx.Graphics.Vulkan.Effects
scissors[0] = new Rectangle<int>(0, 0, texture.Width, texture.Height);
_pipeline.SetRenderTarget(texture, (uint)texture.Width, (uint)texture.Height, false);
_pipeline.SetRenderTargetColorMasks(colorMasks, false);
_pipeline.SetRenderTarget(texture, (uint)texture.Width, (uint)texture.Height);
_pipeline.SetRenderTargetColorMasks(colorMasks);
_pipeline.SetScissors(scissors);
_pipeline.ClearRenderTargetColor(0, 0, 1, new ColorF(0f, 0f, 0f, 1f));
}
@@ -238,7 +238,6 @@ namespace Ryujinx.Graphics.Vulkan
Face.Back => CullModeFlags.BackBit,
Face.Front => CullModeFlags.FrontBit,
Face.FrontAndBack => CullModeFlags.FrontAndBack,
Face.None => CullModeFlags.None,
_ => LogInvalidAndReturn(face, nameof(Face), CullModeFlags.BackBit),
};
}
@@ -311,25 +310,6 @@ namespace Ryujinx.Graphics.Vulkan
};
}
public static PrimitiveTopology ConvertToClass(this PrimitiveTopology topology)
{
return topology switch
{
PrimitiveTopology.PointList => PrimitiveTopology.PointList,
PrimitiveTopology.LineList or
PrimitiveTopology.LineStrip or
PrimitiveTopology.LineListWithAdjacency or
PrimitiveTopology.LineStripWithAdjacency => PrimitiveTopology.LineList,
PrimitiveTopology.TriangleList or
PrimitiveTopology.TriangleStrip or
PrimitiveTopology.TriangleFan or
PrimitiveTopology.TriangleListWithAdjacency or
PrimitiveTopology.TriangleStripWithAdjacency => PrimitiveTopology.TriangleStrip,
PrimitiveTopology.PatchList => PrimitiveTopology.PatchList,
_ => LogInvalidAndReturn(topology, nameof(PrimitiveTopology), PrimitiveTopology.TriangleStrip),
};
}
public static StencilOp Convert(this GAL.StencilOp op)
{
return op switch
+13 -1
View File
@@ -12,13 +12,15 @@ namespace Ryujinx.Graphics.Vulkan
private int _referenceCount;
private int _lock;
private readonly bool _concurrentWaitUnsupported;
private readonly bool _alwaysWaits;
private bool _disposed;
public unsafe FenceHolder(Vk api, Device device, bool concurrentWaitUnsupported)
public unsafe FenceHolder(Vk api, Device device, bool concurrentWaitUnsupported, bool alwaysWaits)
{
_api = api;
_device = device;
_concurrentWaitUnsupported = concurrentWaitUnsupported;
_alwaysWaits = alwaysWaits;
FenceCreateInfo fenceCreateInfo = new()
{
@@ -123,6 +125,16 @@ namespace Ryujinx.Graphics.Vulkan
}
}
public bool IsSignaledLazy()
{
if (_alwaysWaits)
{
return false;
}
return IsSignaled();
}
public bool IsSignaled()
{
if (_concurrentWaitUnsupported)
@@ -31,7 +31,6 @@ namespace Ryujinx.Graphics.Vulkan
public readonly bool SupportsShaderStorageImageMultisample;
public readonly bool SupportsConditionalRendering;
public readonly bool SupportsExtendedDynamicState;
public readonly PhysicalDeviceExtendedDynamicState2FeaturesEXT SupportsExtendedDynamicState2;
public readonly bool SupportsMultiView;
public readonly bool SupportsNullDescriptors;
public readonly bool SupportsPushDescriptors;
@@ -47,7 +46,6 @@ namespace Ryujinx.Graphics.Vulkan
public readonly bool SupportsViewportArray2;
public readonly bool SupportsHostImportedMemory;
public readonly bool SupportsDepthClipControl;
public readonly bool SupportsWideLines;
public readonly bool SupportsAttachmentFeedbackLoop;
public readonly bool SupportsDynamicAttachmentFeedbackLoop;
public readonly uint SubgroupSize;
@@ -56,7 +54,6 @@ namespace Ryujinx.Graphics.Vulkan
public readonly uint VertexBufferAlignment;
public readonly uint SubTexelPrecisionBits;
public readonly ulong MinResourceAlignment;
public readonly uint MaxTessellationPatchSize;
public readonly ulong MinTexelBufferAlignment;
public HardwareCapabilities(
@@ -75,8 +72,6 @@ namespace Ryujinx.Graphics.Vulkan
bool supportsShaderStorageImageMultisample,
bool supportsConditionalRendering,
bool supportsExtendedDynamicState,
PhysicalDeviceExtendedDynamicState2FeaturesEXT supportsExtendedDynamicState2,
uint maxTessellationPatchSize,
bool supportsMultiView,
bool supportsNullDescriptors,
bool supportsPushDescriptors,
@@ -92,7 +87,6 @@ namespace Ryujinx.Graphics.Vulkan
bool supportsViewportArray2,
bool supportsHostImportedMemory,
bool supportsDepthClipControl,
bool supportsWideLines,
bool supportsAttachmentFeedbackLoop,
bool supportsDynamicAttachmentFeedbackLoop,
uint subgroupSize,
@@ -118,8 +112,6 @@ namespace Ryujinx.Graphics.Vulkan
SupportsShaderStorageImageMultisample = supportsShaderStorageImageMultisample;
SupportsConditionalRendering = supportsConditionalRendering;
SupportsExtendedDynamicState = supportsExtendedDynamicState;
SupportsExtendedDynamicState2 = supportsExtendedDynamicState2;
MaxTessellationPatchSize = maxTessellationPatchSize;
SupportsMultiView = supportsMultiView;
SupportsNullDescriptors = supportsNullDescriptors;
SupportsPushDescriptors = supportsPushDescriptors;
@@ -135,7 +127,6 @@ namespace Ryujinx.Graphics.Vulkan
SupportsViewportArray2 = supportsViewportArray2;
SupportsHostImportedMemory = supportsHostImportedMemory;
SupportsDepthClipControl = supportsDepthClipControl;
SupportsWideLines = supportsWideLines;
SupportsAttachmentFeedbackLoop = supportsAttachmentFeedbackLoop;
SupportsDynamicAttachmentFeedbackLoop = supportsDynamicAttachmentFeedbackLoop;
SubgroupSize = subgroupSize;
+14 -14
View File
@@ -406,20 +406,20 @@ namespace Ryujinx.Graphics.Vulkan
if (dstIsDepthOrStencil)
{
_pipeline.SetProgram(src.Info.Target.IsMultisample ? _programDepthBlitMs : _programDepthBlit, false);
_pipeline.SetDepthTest(new DepthTestDescriptor(true, true, CompareOp.Always), false);
_pipeline.SetProgram(src.Info.Target.IsMultisample ? _programDepthBlitMs : _programDepthBlit);
_pipeline.SetDepthTest(new DepthTestDescriptor(true, true, CompareOp.Always));
}
else if (src.Info.Target.IsMultisample)
{
_pipeline.SetProgram(_programColorBlitMs, false);
_pipeline.SetProgram(_programColorBlitMs);
}
else if (clearAlpha)
{
_pipeline.SetProgram(_programColorBlitClearAlpha, false);
_pipeline.SetProgram(_programColorBlitClearAlpha);
}
else
{
_pipeline.SetProgram(_programColorBlit, false);
_pipeline.SetProgram(_programColorBlit);
}
int dstWidth = dst.Width;
@@ -434,7 +434,7 @@ namespace Ryujinx.Graphics.Vulkan
_pipeline.ClearRenderTargetColor(0, 0, 1, new ColorF(0f, 0f, 0f, 1f));
}
_pipeline.SetViewports(viewports, false);
_pipeline.SetViewports(viewports);
_pipeline.SetPrimitiveTopology(PrimitiveTopology.TriangleStrip);
_pipeline.Draw(4, 1, 0, 0);
@@ -566,12 +566,12 @@ namespace Ryujinx.Graphics.Vulkan
if (isDepth)
{
_pipeline.SetProgram(src.Info.Target.IsMultisample ? _programDepthBlitMs : _programDepthBlit, false);
_pipeline.SetProgram(src.Info.Target.IsMultisample ? _programDepthBlitMs : _programDepthBlit);
_pipeline.SetDepthTest(new DepthTestDescriptor(true, true, CompareOp.Always));
}
else
{
_pipeline.SetProgram(src.Info.Target.IsMultisample ? _programStencilBlitMs : _programStencilBlit, false);
_pipeline.SetProgram(src.Info.Target.IsMultisample ? _programStencilBlitMs : _programStencilBlit);
_pipeline.SetStencilTest(CreateStencilTestDescriptor(true));
}
@@ -771,8 +771,8 @@ namespace Ryujinx.Graphics.Vulkan
0f,
1f);
pipeline.SetProgram(_programColorBlit, false);
pipeline.SetViewports(viewports, false);
pipeline.SetProgram(_programColorBlit);
pipeline.SetViewports(viewports);
pipeline.SetPrimitiveTopology(PrimitiveTopology.TriangleStrip);
pipeline.Draw(4, 1, 0, 0);
@@ -1229,7 +1229,7 @@ namespace Ryujinx.Graphics.Vulkan
TextureView srcView = Create2DLayerView(src, srcLayer + z, 0);
TextureView dstView = Create2DLayerView(dst, dstLayer + z, 0);
_pipeline.SetRenderTarget(dstView, (uint)dst.Width, (uint)dst.Height, false);
_pipeline.SetRenderTarget(dstView, (uint)dst.Width, (uint)dst.Height);
CopyMSDraw(srcView, aspectFlags, fromMS: false);
@@ -1246,7 +1246,7 @@ namespace Ryujinx.Graphics.Vulkan
}
else
{
_pipeline.SetProgram(_programColorDrawToMs, false);
_pipeline.SetProgram(_programColorDrawToMs);
Format format = GetFormat(src.Info.BytesPerPixel);
VkFormat vkFormat = FormatTable.GetFormat(format);
@@ -1323,12 +1323,12 @@ namespace Ryujinx.Graphics.Vulkan
if (isDepth)
{
_pipeline.SetProgram(fromMS ? _programDepthDrawToNonMs : _programDepthDrawToMs, false);
_pipeline.SetProgram(fromMS ? _programDepthDrawToNonMs : _programDepthDrawToMs);
_pipeline.SetDepthTest(new DepthTestDescriptor(true, true, CompareOp.Always));
}
else
{
_pipeline.SetProgram(fromMS ? _programStencilDrawToNonMs : _programStencilDrawToMs, false);
_pipeline.SetProgram(fromMS ? _programStencilDrawToNonMs : _programStencilDrawToMs);
_pipeline.SetStencilTest(CreateStencilTestDescriptor(true));
}
+91 -335
View File
@@ -76,7 +76,6 @@ namespace Ryujinx.Graphics.Vulkan
private readonly BufferState[] _transformFeedbackBuffers;
private readonly VertexBufferState[] _vertexBuffers;
private ulong _vertexBuffersDirty;
private bool _bindingsSet;
protected Rectangle<int> ClearScissor;
private readonly VertexBufferUpdater _vertexBufferUpdater;
@@ -90,9 +89,6 @@ namespace Ryujinx.Graphics.Vulkan
private bool _tfEnabled;
private bool _tfActive;
private readonly bool _supportExtDynamic;
private readonly bool _supportExtDynamic2;
private FeedbackLoopAspects _feedbackLoop;
private bool _passWritesDepthStencil;
@@ -100,8 +96,6 @@ namespace Ryujinx.Graphics.Vulkan
public ulong DrawCount { get; private set; }
public bool RenderPassActive { get; private set; }
private readonly int[] _vertexBufferBindings;
public unsafe PipelineBase(VulkanRenderer gd, Device device)
{
Gd = gd;
@@ -134,19 +128,7 @@ namespace Ryujinx.Graphics.Vulkan
_storedBlend = new PipelineColorBlendAttachmentState[Constants.MaxRenderTargets];
_supportExtDynamic = gd.Capabilities.SupportsExtendedDynamicState;
_supportExtDynamic2 = gd.Capabilities.SupportsExtendedDynamicState2.ExtendedDynamicState2;
_bindingsSet = false;
_vertexBufferBindings = new int[Constants.MaxVertexBuffers];
for (int i = 0; i < Constants.MaxVertexBuffers; i++)
{
_vertexBufferBindings[i] = i + 1;
}
_newState.Initialize(gd.Capabilities);
_newState.Initialize();
}
public void Initialize()
@@ -652,46 +634,19 @@ namespace Ryujinx.Graphics.Vulkan
{
if (texture is TextureView srcTexture)
{
CullModeFlags oldCullMode;
bool oldStencilTestEnable;
bool oldDepthTestEnable;
bool oldDepthWriteEnable;
PrimitiveTopology oldTopology;
CullModeFlags oldCullMode = _newState.CullMode;
bool oldStencilTestEnable = _newState.StencilTestEnable;
bool oldDepthTestEnable = _newState.DepthTestEnable;
bool oldDepthWriteEnable = _newState.DepthWriteEnable;
Array16<Silk.NET.Vulkan.Viewport> oldViewports = DynamicState.Viewports;
uint oldViewportsCount;
uint oldViewportsCount = _newState.ViewportsCount;
PrimitiveTopology oldTopology = _topology;
if (_supportExtDynamic)
{
oldCullMode = DynamicState.CullMode;
oldStencilTestEnable = DynamicState.StencilTestEnable;
oldDepthTestEnable = DynamicState.DepthTestEnable;
oldDepthWriteEnable = DynamicState.DepthWriteEnable;
oldTopology = _topology;
oldViewportsCount = DynamicState.ViewportsCount;
}
else
{
oldCullMode = _newState.CullMode;
oldStencilTestEnable = _newState.StencilTestEnable;
oldDepthTestEnable = _newState.DepthTestEnable;
oldDepthWriteEnable = _newState.DepthWriteEnable;
oldTopology = _topology;
oldViewportsCount = _newState.ViewportsCount;
}
if (_supportExtDynamic)
{
DynamicState.SetCullMode(CullModeFlags.None);
DynamicState.SetDepthTestBool(false, false);
DynamicState.SetStencilTest(false);
}
else
{
_newState.CullMode = CullModeFlags.None;
_newState.StencilTestEnable = false;
_newState.DepthTestEnable = false;
_newState.DepthWriteEnable = false;
}
_newState.CullMode = CullModeFlags.None;
_newState.StencilTestEnable = false;
_newState.DepthTestEnable = false;
_newState.DepthWriteEnable = false;
SignalStateChange();
Gd.HelperShader.DrawTexture(
Gd,
@@ -701,24 +656,16 @@ namespace Ryujinx.Graphics.Vulkan
srcRegion,
dstRegion);
if (_supportExtDynamic)
{
DynamicState.SetCullMode(oldCullMode);
DynamicState.SetStencilTest(oldStencilTestEnable);
DynamicState.SetDepthTestBool(oldDepthTestEnable, oldDepthWriteEnable);
}
else
{
_newState.CullMode = oldCullMode;
_newState.StencilTestEnable = oldStencilTestEnable;
_newState.DepthTestEnable = oldDepthTestEnable;
_newState.DepthWriteEnable = oldDepthWriteEnable;
_newState.ViewportsCount = oldViewportsCount;
}
_newState.CullMode = oldCullMode;
_newState.StencilTestEnable = oldStencilTestEnable;
_newState.DepthTestEnable = oldDepthTestEnable;
_newState.DepthWriteEnable = oldDepthWriteEnable;
SetPrimitiveTopology(oldTopology);
DynamicState.SetViewports(ref oldViewports, oldViewportsCount);
_newState.ViewportsCount = oldViewportsCount;
SignalStateChange();
}
}
@@ -849,102 +796,48 @@ namespace Ryujinx.Graphics.Vulkan
public void SetDepthBias(PolygonModeMask enables, float factor, float units, float clamp)
{
bool depthBiasEnable = (enables != 0) && (factor != 0 && units != 0);
bool changed = false;
DynamicState.SetDepthBias(factor, units, clamp);
if (_supportExtDynamic2)
{
DynamicState.SetDepthBiasEnable(depthBiasEnable);
}
else if (_newState.DepthBiasEnable != depthBiasEnable)
{
_newState.DepthBiasEnable = depthBiasEnable;
changed = true;
}
if (depthBiasEnable)
{
DynamicState.SetDepthBias(factor, units, clamp);
}
if (changed)
{
SignalStateChange();
}
_newState.DepthBiasEnable = enables != 0;
SignalStateChange();
}
public void SetDepthClamp(bool clamp)
{
_newState.DepthClampEnable = clamp;
SignalStateChange();
}
public void SetDepthMode(DepthMode mode)
{
bool newMode = mode == DepthMode.MinusOneToOne;
if (_newState.DepthMode == newMode)
bool oldMode = _newState.DepthMode;
_newState.DepthMode = mode == DepthMode.MinusOneToOne;
if (_newState.DepthMode != oldMode)
{
return;
SignalStateChange();
}
}
_newState.DepthMode = newMode;
public void SetDepthTest(DepthTestDescriptor depthTest)
{
_newState.DepthTestEnable = depthTest.TestEnable;
_newState.DepthWriteEnable = depthTest.WriteEnable;
_newState.DepthCompareOp = depthTest.Func.Convert();
UpdatePassDepthStencil();
SignalStateChange();
}
public void SetDepthTest(DepthTestDescriptor depthTest, bool signalChange = true)
public void SetFaceCulling(bool enable, Face face)
{
if (_supportExtDynamic)
{
DynamicState.SetDepthTestBool(depthTest.TestEnable, depthTest.WriteEnable);
if (depthTest.TestEnable)
{
DynamicState.SetDepthTestCompareOp(depthTest.Func.Convert());
}
}
else
{
_newState.DepthTestEnable = depthTest.TestEnable;
_newState.DepthWriteEnable = depthTest.WriteEnable;
_newState.DepthCompareOp = depthTest.Func.Convert();
if (signalChange)
{
SignalStateChange();
}
}
UpdatePassDepthStencil();
}
public void SetFaceCulling(Face face)
{
if (_supportExtDynamic)
{
DynamicState.SetCullMode(face.Convert());
}
else
{
_newState.CullMode = face.Convert();
SignalStateChange();
}
_newState.CullMode = enable ? face.Convert() : CullModeFlags.None;
SignalStateChange();
}
public void SetFrontFace(FrontFace frontFace)
{
if (_supportExtDynamic)
{
DynamicState.SetFrontFace(frontFace.Convert());
}
else
{
_newState.FrontFace = frontFace.Convert();
SignalStateChange();
}
_newState.FrontFace = frontFace.Convert();
SignalStateChange();
}
public void SetImage(ShaderStage stage, int binding, ITexture image)
@@ -988,56 +881,28 @@ namespace Ryujinx.Graphics.Vulkan
public void SetLineParameters(float width, bool smooth)
{
if (!Gd.IsMoltenVk)
{
DynamicState.SetLineWidth(Gd.Capabilities.SupportsWideLines ? width : 1.0f);
}
_newState.LineWidth = width;
SignalStateChange();
}
public void SetLogicOpState(bool enable, LogicalOp op)
{
// Vendors other than NVIDIA have a bug where it enables logical operations even for float formats,
// so we need to force disable them here.
bool logicOpEnable = enable && (Gd.Vendor == Vendor.Nvidia || _newState.Internal.LogicOpsAllowed);
_newState.LogicOpEnable = enable;
if (Gd.Capabilities.SupportsExtendedDynamicState2.ExtendedDynamicState2LogicOp)
{
if (logicOpEnable)
{
DynamicState.SetLogicOp(op.Convert());
}
}
else
{
_newState.LogicOp = op.Convert();
}
_newState.LogicOp = op.Convert();
SignalStateChange();
}
public void SetMultisampleState(MultisampleDescriptor multisample)
{
_newState.AlphaToCoverageEnable = multisample.AlphaToCoverageEnable;
_newState.AlphaToOneEnable = multisample.AlphaToOneEnable;
SignalStateChange();
}
public void SetPatchParameters(int vertices, ReadOnlySpan<float> defaultOuterLevel, ReadOnlySpan<float> defaultInnerLevel)
{
if (Gd.Capabilities.SupportsExtendedDynamicState2.ExtendedDynamicState2PatchControlPoints)
{
DynamicState.SetPatchControlPoints((uint)vertices);
}
else
{
_newState.PatchControlPoints = (uint)vertices;
SignalStateChange();
}
_newState.PatchControlPoints = (uint)vertices;
SignalStateChange();
// TODO: Default levels (likely needs emulation on shaders?)
}
@@ -1054,21 +919,12 @@ namespace Ryujinx.Graphics.Vulkan
public void SetPrimitiveRestart(bool enable, int index)
{
if (_supportExtDynamic2)
{
DynamicState.SetPrimitiveRestartEnable(enable);
}
else
{
_newState.PrimitiveRestartEnable = enable;
SignalStateChange();
}
_newState.PrimitiveRestartEnable = enable;
// TODO: What to do about the index?
SignalStateChange();
}
public void SetPrimitiveTopology(PrimitiveTopology topology, bool signalChange = true)
public void SetPrimitiveTopology(PrimitiveTopology topology)
{
_topology = topology;
@@ -1076,18 +932,10 @@ namespace Ryujinx.Graphics.Vulkan
_newState.Topology = vkTopology;
if (_supportExtDynamic)
{
DynamicState.SetPrimitiveTopology(vkTopology);
}
if (signalChange)
{
SignalStateChange();
}
SignalStateChange();
}
public void SetProgram(IProgram program, bool signalChange = true)
public void SetProgram(IProgram program)
{
ShaderCollection internalProgram = (ShaderCollection)program;
PipelineShaderStageCreateInfo[] stages = internalProgram.GetInfos();
@@ -1103,10 +951,7 @@ namespace Ryujinx.Graphics.Vulkan
stages.CopyTo(_newState.Stages.AsSpan()[..stages.Length]);
if (signalChange)
{
SignalStateChange();
}
SignalStateChange();
if (internalProgram.IsCompute)
{
@@ -1132,26 +977,18 @@ namespace Ryujinx.Graphics.Vulkan
public void SetRasterizerDiscard(bool discard)
{
if (_supportExtDynamic2)
{
DynamicState.SetRasterizerDiscard(discard);
}
else
{
_newState.RasterizerDiscardEnable = discard;
SignalStateChange();
}
_newState.RasterizerDiscardEnable = discard;
SignalStateChange();
if (!discard && Gd.IsQualcommProprietary)
{
// On Adreno, enabling rasterizer discard somehow corrupts the viewport state.
// Force it to be updated on next use to work around this bug.
DynamicState.ForceAllDirty(Gd);
DynamicState.ForceAllDirty();
}
}
public void SetRenderTargetColorMasks(ReadOnlySpan<uint> componentMask, bool signalChange = true)
public void SetRenderTargetColorMasks(ReadOnlySpan<uint> componentMask)
{
int count = Math.Min(Constants.MaxRenderTargets, componentMask.Length);
int writtenAttachments = 0;
@@ -1193,10 +1030,7 @@ namespace Ryujinx.Graphics.Vulkan
}
else
{
if (signalChange)
{
SignalStateChange();
}
SignalStateChange();
if (writtenAttachments != _writtenAttachmentCount)
{
@@ -1220,7 +1054,7 @@ namespace Ryujinx.Graphics.Vulkan
SetRenderTargetsInternal(colors, depthStencil, Gd.IsTBDR);
}
public void SetScissors(ReadOnlySpan<Rectangle<int>> regions, bool signalChange = true)
public void SetScissors(ReadOnlySpan<Rectangle<int>> regions)
{
int maxScissors = Gd.Capabilities.SupportsMultiView ? Constants.MaxViewports : 1;
int count = Math.Min(maxScissors, regions.Length);
@@ -1229,8 +1063,6 @@ namespace Ryujinx.Graphics.Vulkan
ClearScissor = regions[0];
}
DynamicState.ScissorsCount = count;
for (int i = 0; i < count; i++)
{
Rectangle<int> region = regions[i];
@@ -1240,56 +1072,34 @@ namespace Ryujinx.Graphics.Vulkan
DynamicState.SetScissor(i, new Rect2D(offset, extent));
}
if (!_supportExtDynamic)
{
_newState.ScissorsCount = (uint)count;
DynamicState.ScissorsCount = count;
if (signalChange)
{
SignalStateChange();
}
}
_newState.ScissorsCount = (uint)count;
SignalStateChange();
}
public void SetStencilTest(StencilTestDescriptor stencilTest)
{
if (_supportExtDynamic)
{
DynamicState.SetStencilTestandOp(
stencilTest.BackSFail.Convert(),
stencilTest.BackDpPass.Convert(),
stencilTest.BackDpFail.Convert(),
stencilTest.BackFunc.Convert(),
stencilTest.FrontSFail.Convert(),
stencilTest.FrontDpPass.Convert(),
stencilTest.FrontDpFail.Convert(),
stencilTest.FrontFunc.Convert(),
stencilTest.TestEnable);
UpdatePassDepthStencil();
}
else
{
_newState.StencilBackFailOp = stencilTest.BackSFail.Convert();
_newState.StencilBackPassOp = stencilTest.BackDpPass.Convert();
_newState.StencilBackDepthFailOp = stencilTest.BackDpFail.Convert();
_newState.StencilBackCompareOp = stencilTest.BackFunc.Convert();
_newState.StencilFrontFailOp = stencilTest.FrontSFail.Convert();
_newState.StencilFrontPassOp = stencilTest.FrontDpPass.Convert();
_newState.StencilFrontDepthFailOp = stencilTest.FrontDpFail.Convert();
_newState.StencilFrontCompareOp = stencilTest.FrontFunc.Convert();
_newState.StencilTestEnable = stencilTest.TestEnable;
UpdatePassDepthStencil();
SignalStateChange();
}
DynamicState.SetStencilMask((uint)stencilTest.BackFuncMask,
DynamicState.SetStencilMasks(
(uint)stencilTest.BackFuncMask,
(uint)stencilTest.BackMask,
(uint)stencilTest.BackFuncRef,
(uint)stencilTest.FrontFuncMask,
(uint)stencilTest.FrontMask,
(uint)stencilTest.FrontFuncRef);
_newState.StencilTestEnable = stencilTest.TestEnable;
_newState.StencilBackFailOp = stencilTest.BackSFail.Convert();
_newState.StencilBackPassOp = stencilTest.BackDpPass.Convert();
_newState.StencilBackDepthFailOp = stencilTest.BackDpFail.Convert();
_newState.StencilBackCompareOp = stencilTest.BackFunc.Convert();
_newState.StencilFrontFailOp = stencilTest.FrontSFail.Convert();
_newState.StencilFrontPassOp = stencilTest.FrontDpPass.Convert();
_newState.StencilFrontDepthFailOp = stencilTest.FrontDpFail.Convert();
_newState.StencilFrontCompareOp = stencilTest.FrontFunc.Convert();
UpdatePassDepthStencil();
SignalStateChange();
}
public void SetStorageBuffers(ReadOnlySpan<BufferAssignment> buffers)
@@ -1410,24 +1220,12 @@ namespace Ryujinx.Graphics.Vulkan
{
int count = Math.Min(Constants.MaxVertexBuffers, vertexBuffers.Length);
_newState.Internal.VertexBindingDescriptions[0] = new VertexInputBindingDescription(0, 0, VertexInputRate.Vertex);
int validCount = 1;
if (!_bindingsSet)
{
_newState.Internal.VertexBindingDescriptions[0] = new VertexInputBindingDescription(0, _supportExtDynamic && (!Gd.IsMoltenVk || Gd.SupportsMTL31) ? null : 0, VertexInputRate.Vertex);
for (int i = 1; i < count; i++)
{
_newState.Internal.VertexBindingDescriptions[i] = new VertexInputBindingDescription((uint)i);
}
_bindingsSet = true;
}
BufferHandle lastHandle = default;
Auto<DisposableBuffer> lastBuffer = null;
bool vertexBindingDescriptionChanged = false;
bool vertexDescriptionCountChanged = false;
for (int i = 0; i < count; i++)
{
@@ -1446,32 +1244,13 @@ namespace Ryujinx.Graphics.Vulkan
if (vb != null)
{
int binding = i + 1;
int descriptorIndex = validCount++;
if (_supportExtDynamic && (!Gd.IsMoltenVk || Gd.SupportsMTL31))
{
if (_newState.Internal.VertexBindingDescriptions[descriptorIndex].InputRate != inputRate ||
_newState.Internal.VertexBindingDescriptions[descriptorIndex].Binding != _vertexBufferBindings[i])
{
_newState.Internal.VertexBindingDescriptions[descriptorIndex].InputRate = inputRate;
_newState.Internal.VertexBindingDescriptions[descriptorIndex].Binding = (uint)_vertexBufferBindings[i];
vertexBindingDescriptionChanged = true;
}
}
else
{
if (_newState.Internal.VertexBindingDescriptions[descriptorIndex].InputRate != inputRate ||
_newState.Internal.VertexBindingDescriptions[descriptorIndex].Stride != vertexBuffer.Stride ||
_newState.Internal.VertexBindingDescriptions[descriptorIndex].Binding != _vertexBufferBindings[i])
{
_newState.Internal.VertexBindingDescriptions[descriptorIndex].Binding = (uint)_vertexBufferBindings[i];
_newState.Internal.VertexBindingDescriptions[descriptorIndex].Stride = (uint)vertexBuffer.Stride;
_newState.Internal.VertexBindingDescriptions[descriptorIndex].InputRate = inputRate;
vertexBindingDescriptionChanged = true;
}
}
_newState.Internal.VertexBindingDescriptions[descriptorIndex] = new VertexInputBindingDescription(
(uint)binding,
(uint)vertexBuffer.Stride,
inputRate);
int vbSize = vertexBuffer.Buffer.Size;
@@ -1487,7 +1266,7 @@ namespace Ryujinx.Graphics.Vulkan
}
}
ref VertexBufferState buffer = ref _vertexBuffers[_vertexBufferBindings[i]];
ref VertexBufferState buffer = ref _vertexBuffers[binding];
int oldScalarAlign = buffer.AttributeScalarAlignment;
if (Gd.Capabilities.VertexBufferAlignment < 2 &&
@@ -1504,7 +1283,7 @@ namespace Ryujinx.Graphics.Vulkan
vbSize,
vertexBuffer.Stride);
buffer.BindVertexBuffer(Gd, Cbs, (uint)_vertexBufferBindings[i], ref _newState, _vertexBufferUpdater);
buffer.BindVertexBuffer(Gd, Cbs, (uint)binding, ref _newState, _vertexBufferUpdater);
}
}
else
@@ -1520,7 +1299,7 @@ namespace Ryujinx.Graphics.Vulkan
vbSize,
vertexBuffer.Stride);
_vertexBuffersDirty |= 1UL << _vertexBufferBindings[i];
_vertexBuffersDirty |= 1UL << binding;
}
buffer.AttributeScalarAlignment = oldScalarAlign;
@@ -1530,19 +1309,11 @@ namespace Ryujinx.Graphics.Vulkan
_vertexBufferUpdater.Commit(Cbs);
if (_newState.VertexBindingDescriptionsCount != validCount)
{
_newState.VertexBindingDescriptionsCount = (uint)validCount;
vertexDescriptionCountChanged = true;
}
if (vertexDescriptionCountChanged || vertexBindingDescriptionChanged)
{
SignalStateChange();
}
_newState.VertexBindingDescriptionsCount = (uint)validCount;
SignalStateChange();
}
public void SetViewports(ReadOnlySpan<Viewport> viewports, bool signalChange = true)
public void SetViewports(ReadOnlySpan<Viewport> viewports)
{
int maxViewports = Gd.Capabilities.SupportsMultiView ? Constants.MaxViewports : 1;
int count = Math.Min(maxViewports, viewports.Length);
@@ -1567,15 +1338,8 @@ namespace Ryujinx.Graphics.Vulkan
Clamp(viewport.DepthFar)));
}
if (!_supportExtDynamic)
{
_newState.ViewportsCount = (uint)count;
if (signalChange)
{
SignalStateChange();
}
}
_newState.ViewportsCount = (uint)count;
SignalStateChange();
}
public void SwapBuffer(Auto<DisposableBuffer> from, Auto<DisposableBuffer> to)
@@ -1624,7 +1388,7 @@ namespace Ryujinx.Graphics.Vulkan
_vertexBuffersDirty = ulong.MaxValue >> (64 - _vertexBuffers.Length);
_descriptorSetUpdater.SignalCommandBufferChange();
DynamicState.ForceAllDirty(Gd);
DynamicState.ForceAllDirty();
_currentPipelineHandle = 0;
}
@@ -1782,9 +1546,8 @@ namespace Ryujinx.Graphics.Vulkan
if (Gd.Capabilities.SupportsDynamicAttachmentFeedbackLoop)
{
DynamicState.SetFeedbackLoop(aspects);
_newState.FeedbackLoopDynamicState = true;
}
else if (Gd.Capabilities.SupportsAttachmentFeedbackLoop)
else
{
_newState.FeedbackLoopAspects = aspects;
}
@@ -1844,14 +1607,7 @@ namespace Ryujinx.Graphics.Vulkan
}
// Stencil test being enabled doesn't necessarily mean a write, but it's not critical to check.
if (_supportExtDynamic)
{
_passWritesDepthStencil |= (DynamicState.DepthTestEnable && DynamicState.DepthWriteEnable) || DynamicState.StencilTestEnable;
}
else
{
_passWritesDepthStencil |= (_newState.DepthTestEnable && _newState.DepthWriteEnable) || _newState.StencilTestEnable;
}
_passWritesDepthStencil |= (_newState.DepthTestEnable && _newState.DepthWriteEnable) || _newState.StencilTestEnable;
}
private bool RecreateGraphicsPipelineIfNeeded()
@@ -5,7 +5,6 @@ using System;
using VulkanFormat = Silk.NET.Vulkan.Format;
using GALFormat = Ryujinx.Graphics.GAL.Format;
using PolygonMode = Silk.NET.Vulkan.PolygonMode;
using PrimitiveTopology = Ryujinx.Graphics.GAL.PrimitiveTopology;
namespace Ryujinx.Graphics.Vulkan
{
@@ -165,83 +164,63 @@ namespace Ryujinx.Graphics.Vulkan
public static PipelineState ToVulkanPipelineState(this ProgramPipelineState state, VulkanRenderer gd)
{
var extendedDynamicState2 = gd.Capabilities.SupportsExtendedDynamicState2;
var extendedDynamicState = gd.Capabilities.SupportsExtendedDynamicState;
PipelineState pipeline = new();
pipeline.Initialize(gd.Capabilities);
pipeline.Initialize();
// It is assumed that Dynamic State is enabled when this conversion is used.
pipeline.CullMode = state.CullEnable ? state.CullMode.Convert() : CullModeFlags.None;
pipeline.DepthBoundsTestEnable = false; // Not implemented.
pipeline.DepthClampEnable = state.DepthClampEnable;
pipeline.AlphaToCoverageEnable = state.AlphaToCoverageEnable;
pipeline.AlphaToOneEnable = state.AlphaToOneEnable;
pipeline.DepthTestEnable = state.DepthTest.TestEnable;
pipeline.DepthWriteEnable = state.DepthTest.WriteEnable;
pipeline.DepthCompareOp = state.DepthTest.Func.Convert();
pipeline.DepthMode = state.DepthMode == DepthMode.MinusOneToOne;
pipeline.FrontFace = state.FrontFace.Convert();
pipeline.HasDepthStencil = state.DepthStencilEnable;
pipeline.LineWidth = state.LineWidth;
pipeline.LogicOpEnable = state.LogicOpEnable;
pipeline.LogicOp = state.LogicOp.Convert();
pipeline.PatchControlPoints = state.PatchControlPoints;
pipeline.PolygonMode = PolygonMode.Fill; // Not implemented.
pipeline.Topology = gd.TopologyRemap(state.Topology).Convert();
if (!extendedDynamicState)
{
pipeline.DepthCompareOp = state.DepthTest.Func.Convert();
pipeline.CullMode = state.CullMode.Convert();
pipeline.DepthTestEnable = state.DepthTest.TestEnable;
pipeline.DepthWriteEnable = state.DepthTest.WriteEnable;
pipeline.FrontFace = state.FrontFace.Convert();
if (gd.Capabilities.SupportsMultiView)
{
pipeline.ScissorsCount = Constants.MaxViewports;
pipeline.ViewportsCount = Constants.MaxViewports;
}
else
{
pipeline.ScissorsCount = 1;
pipeline.ViewportsCount = 1;
}
pipeline.StencilTestEnable = state.StencilTest.TestEnable;
pipeline.StencilFrontFailOp = state.StencilTest.FrontSFail.Convert();
pipeline.StencilFrontPassOp = state.StencilTest.FrontDpPass.Convert();
pipeline.StencilFrontDepthFailOp = state.StencilTest.FrontDpFail.Convert();
pipeline.StencilFrontCompareOp = state.StencilTest.FrontFunc.Convert();
pipeline.StencilBackFailOp = state.StencilTest.BackSFail.Convert();
pipeline.StencilBackPassOp = state.StencilTest.BackDpPass.Convert();
pipeline.StencilBackDepthFailOp = state.StencilTest.BackDpFail.Convert();
pipeline.StencilBackCompareOp = state.StencilTest.BackFunc.Convert();
}
if (!extendedDynamicState2.ExtendedDynamicState2)
{
pipeline.PrimitiveRestartEnable = state.PrimitiveRestartEnable;
pipeline.RasterizerDiscardEnable = state.RasterizerDiscard;
pipeline.DepthBiasEnable = (state.BiasEnable != 0) &&
(state.DepthBiasFactor != 0 && state.DepthBiasUnits != 0);
}
if (!extendedDynamicState2.ExtendedDynamicState2LogicOp)
{
pipeline.LogicOp = state.LogicOp.Convert();
}
if (!extendedDynamicState2.ExtendedDynamicState2PatchControlPoints)
{
pipeline.PatchControlPoints = state.PatchControlPoints;
}
pipeline.PrimitiveRestartEnable = state.PrimitiveRestartEnable;
pipeline.RasterizerDiscardEnable = state.RasterizerDiscard;
pipeline.SamplesCount = (uint)state.SamplesCount;
pipeline.LogicOpEnable = state.LogicOpEnable;
if (gd.Capabilities.SupportsMultiView)
{
pipeline.ScissorsCount = Constants.MaxViewports;
pipeline.ViewportsCount = Constants.MaxViewports;
}
else
{
pipeline.ScissorsCount = 1;
pipeline.ViewportsCount = 1;
}
pipeline.DepthBiasEnable = state.BiasEnable != 0;
// Stencil masks and ref are dynamic, so are 0 in the Vulkan pipeline.
pipeline.StencilFrontFailOp = state.StencilTest.FrontSFail.Convert();
pipeline.StencilFrontPassOp = state.StencilTest.FrontDpPass.Convert();
pipeline.StencilFrontDepthFailOp = state.StencilTest.FrontDpFail.Convert();
pipeline.StencilFrontCompareOp = state.StencilTest.FrontFunc.Convert();
pipeline.StencilBackFailOp = state.StencilTest.BackSFail.Convert();
pipeline.StencilBackPassOp = state.StencilTest.BackDpPass.Convert();
pipeline.StencilBackDepthFailOp = state.StencilTest.BackDpFail.Convert();
pipeline.StencilBackCompareOp = state.StencilTest.BackFunc.Convert();
pipeline.StencilTestEnable = state.StencilTest.TestEnable;
pipeline.Topology = gd.TopologyRemap(state.Topology).Convert();
int vaCount = Math.Min(Constants.MaxVertexAttributes, state.VertexAttribCount);
int vbCount = Math.Min(Constants.MaxVertexBuffers, state.VertexBufferCount);
@@ -268,7 +247,7 @@ namespace Ryujinx.Graphics.Vulkan
}
int descriptorIndex = 1;
pipeline.Internal.VertexBindingDescriptions[0] = new VertexInputBindingDescription(0, extendedDynamicState && (!gd.IsMoltenVk || gd.SupportsMTL31) ? null : 0, VertexInputRate.Vertex);
pipeline.Internal.VertexBindingDescriptions[0] = new VertexInputBindingDescription(0, 0, VertexInputRate.Vertex);
Span<BufferPipelineDescriptor> vertexBuffersSpan = state.VertexBuffers.AsSpan();
Span<VertexInputBindingDescription> vertexBindingDescriptionsSpan = pipeline.Internal.VertexBindingDescriptions.AsSpan();
@@ -291,7 +270,7 @@ namespace Ryujinx.Graphics.Vulkan
// TODO: Support divisor > 1
vertexBindingDescriptionsSpan[descriptorIndex++] = new VertexInputBindingDescription(
(uint)i + 1,
extendedDynamicState && (!gd.IsMoltenVk || gd.SupportsMTL31) ? null : (uint)alignedStride,
(uint)alignedStride,
inputRate);
}
}
@@ -2,7 +2,6 @@ using Ryujinx.Common.Memory;
using Silk.NET.Vulkan;
using Silk.NET.Vulkan.Extensions.EXT;
using System;
using System.Numerics;
namespace Ryujinx.Graphics.Vulkan
{
@@ -11,7 +10,6 @@ namespace Ryujinx.Graphics.Vulkan
private float _depthBiasSlopeFactor;
private float _depthBiasConstantFactor;
private float _depthBiasClamp;
private bool _depthBiasEnable;
public int ScissorsCount;
private Array16<Rect2D> _scissors;
@@ -23,23 +21,6 @@ namespace Ryujinx.Graphics.Vulkan
private uint _frontWriteMask;
private uint _frontReference;
private StencilOp _backFailOp;
private StencilOp _backPassOp;
private StencilOp _backDepthFailOp;
private CompareOp _backCompareOp;
private StencilOp _frontFailOp;
private StencilOp _frontPassOp;
private StencilOp _frontDepthFailOp;
private CompareOp _frontCompareOp;
private float _lineWidth;
public bool StencilTestEnable;
public bool DepthTestEnable;
public bool DepthWriteEnable;
private CompareOp _depthCompareOp;
private Array4<float> _blendConstants;
private FeedbackLoopAspects _feedbackLoopAspects;
@@ -47,19 +28,6 @@ namespace Ryujinx.Graphics.Vulkan
public uint ViewportsCount;
public Array16<Viewport> Viewports;
public CullModeFlags CullMode;
private FrontFace _frontFace;
private bool _discard;
private LogicOp _logicOp;
private uint _patchControlPoints;
public PrimitiveTopology Topology;
private bool _primitiveRestartEnable;
[Flags]
private enum DirtyFlags
{
@@ -70,21 +38,7 @@ namespace Ryujinx.Graphics.Vulkan
Stencil = 1 << 3,
Viewport = 1 << 4,
FeedbackLoop = 1 << 5,
CullMode = 1 << 6,
FrontFace = 1 << 7,
DepthTestBool = 1 << 8,
DepthTestCompareOp = 1 << 9,
StencilTestEnableAndStencilOp = 1 << 10,
LineWidth = 1 << 11,
RasterDiscard = 1 << 12,
LogicOp = 1 << 13,
PatchControlPoints = 1 << 14,
PrimitiveRestart = 1 << 15,
PrimitiveTopology = 1 << 16,
DepthBiasEnable = 1 << 17,
Standard = Blend | DepthBias | Scissor | Stencil | Viewport | FeedbackLoop,
Extended = CullMode | FrontFace | DepthTestBool | DepthTestCompareOp | StencilTestEnableAndStencilOp | PrimitiveTopology,
Extended2 = RasterDiscard | PrimitiveRestart | DepthBiasEnable,
All = Blend | DepthBias | Scissor | Stencil | Viewport | FeedbackLoop,
}
private DirtyFlags _dirty;
@@ -95,6 +49,7 @@ namespace Ryujinx.Graphics.Vulkan
_blendConstants[1] = g;
_blendConstants[2] = b;
_blendConstants[3] = a;
_dirty |= DirtyFlags.Blend;
}
@@ -107,64 +62,15 @@ namespace Ryujinx.Graphics.Vulkan
_dirty |= DirtyFlags.DepthBias;
}
public void SetDepthBiasEnable(bool enable)
{
_depthBiasEnable = enable;
_dirty |= DirtyFlags.DepthBiasEnable;
}
public void SetScissor(int index, Rect2D scissor)
{
_scissors[index] = scissor;
_dirty |= DirtyFlags.Scissor;
}
public void SetDepthTestBool(bool testEnable, bool writeEnable)
{
DepthTestEnable = testEnable;
DepthWriteEnable = writeEnable;
_dirty |= DirtyFlags.DepthTestBool;
}
public void SetDepthTestCompareOp(CompareOp depthTestOp)
{
_depthCompareOp = depthTestOp;
_dirty |= DirtyFlags.DepthTestCompareOp;
}
public void SetStencilTestandOp(
StencilOp backFailOp,
StencilOp backPassOp,
StencilOp backDepthFailOp,
CompareOp backCompareOp,
StencilOp frontFailOp,
StencilOp frontPassOp,
StencilOp frontDepthFailOp,
CompareOp frontCompareOp,
bool stencilTestEnable)
{
_backFailOp = backFailOp;
_backPassOp = backPassOp;
_backDepthFailOp = backDepthFailOp;
_backCompareOp = backCompareOp;
_frontFailOp = frontFailOp;
_frontPassOp = frontPassOp;
_frontDepthFailOp = frontDepthFailOp;
_frontCompareOp = frontCompareOp;
StencilTestEnable = stencilTestEnable;
_dirty |= DirtyFlags.StencilTestEnableAndStencilOp;
}
public void SetStencilTest(bool stencilTestEnable)
{
StencilTestEnable = stencilTestEnable;
_dirty |= DirtyFlags.StencilTestEnableAndStencilOp;
}
public void SetStencilMask(uint backCompareMask,
public void SetStencilMasks(
uint backCompareMask,
uint backWriteMask,
uint backReference,
uint frontCompareMask,
@@ -177,46 +83,28 @@ namespace Ryujinx.Graphics.Vulkan
_frontCompareMask = frontCompareMask;
_frontWriteMask = frontWriteMask;
_frontReference = frontReference;
_dirty |= DirtyFlags.Stencil;
}
public void SetViewport(int index, Viewport viewport)
{
Viewports[index] = viewport;
_dirty |= DirtyFlags.Viewport;
}
public void SetViewports(ref Array16<Viewport> viewports, uint viewportsCount)
{
if (!Viewports.Equals(viewports) || ViewportsCount != viewportsCount)
Viewports = viewports;
ViewportsCount = viewportsCount;
if (ViewportsCount != 0)
{
Viewports = viewports;
ViewportsCount = viewportsCount;
if (ViewportsCount != 0)
{
_dirty |= DirtyFlags.Viewport;
}
_dirty |= DirtyFlags.Viewport;
}
}
public void SetCullMode(CullModeFlags cullMode)
{
CullMode = cullMode;
_dirty |= DirtyFlags.CullMode;
}
public void SetFrontFace(FrontFace frontFace)
{
_frontFace = frontFace;
_dirty |= DirtyFlags.FrontFace;
}
public void SetLineWidth(float width)
{
_lineWidth = width;
_dirty |= DirtyFlags.LineWidth;
}
public void SetFeedbackLoop(FeedbackLoopAspects aspects)
{
_feedbackLoopAspects = aspects;
@@ -224,149 +112,43 @@ namespace Ryujinx.Graphics.Vulkan
_dirty |= DirtyFlags.FeedbackLoop;
}
public void SetRasterizerDiscard(bool discard)
public void ForceAllDirty()
{
_discard = discard;
_dirty |= DirtyFlags.RasterDiscard;
}
public void SetPrimitiveRestartEnable(bool primitiveRestart)
{
_primitiveRestartEnable = primitiveRestart;
_dirty |= DirtyFlags.PrimitiveRestart;
}
public void SetPrimitiveTopology(PrimitiveTopology primitiveTopology)
{
Topology = primitiveTopology;
_dirty |= DirtyFlags.PrimitiveTopology;
}
public void SetLogicOp(LogicOp op)
{
_logicOp = op;
_dirty |= DirtyFlags.LogicOp;
}
public void SetPatchControlPoints(uint points)
{
_patchControlPoints = points;
_dirty |= DirtyFlags.PatchControlPoints;
}
public void ForceAllDirty(VulkanRenderer gd)
{
_dirty = DirtyFlags.Standard;
if (gd.Capabilities.SupportsExtendedDynamicState)
{
_dirty |= DirtyFlags.Extended;
}
if (gd.Capabilities.SupportsExtendedDynamicState2.ExtendedDynamicState2)
{
_dirty |= DirtyFlags.Extended2;
if (gd.Capabilities.SupportsExtendedDynamicState2.ExtendedDynamicState2LogicOp)
{
_dirty |= DirtyFlags.LogicOp;
}
if (gd.Capabilities.SupportsExtendedDynamicState2.ExtendedDynamicState2PatchControlPoints)
{
_dirty |= DirtyFlags.PatchControlPoints;
}
}
if (!gd.IsMoltenVk)
{
_dirty |= DirtyFlags.LineWidth;
}
if (gd.Capabilities.SupportsDynamicAttachmentFeedbackLoop)
{
_dirty |= DirtyFlags.FeedbackLoop;
}
_dirty = DirtyFlags.All;
}
public void ReplayIfDirty(VulkanRenderer gd, CommandBuffer commandBuffer)
{
if (_dirty == DirtyFlags.None)
Vk api = gd.Api;
if (_dirty.HasFlag(DirtyFlags.Blend))
{
return;
RecordBlend(api, commandBuffer);
}
var api = gd.Api;
var extendedStateApi = gd.ExtendedDynamicStateApi;
var extendedState2Api = gd.ExtendedDynamicState2Api;
var dynamicFeedbackLoopApi = gd.DynamicFeedbackLoopApi;
DirtyFlags dirtyFlags = _dirty;
while (dirtyFlags != DirtyFlags.None)
if (_dirty.HasFlag(DirtyFlags.DepthBias))
{
int bitIndex = BitOperations.TrailingZeroCount((uint)dirtyFlags);
DirtyFlags currentFlag = (DirtyFlags)(1 << bitIndex);
RecordDepthBias(api, commandBuffer);
}
switch (currentFlag)
{
case DirtyFlags.Blend:
RecordBlend(api, commandBuffer);
break;
case DirtyFlags.DepthBias:
RecordDepthBias(api, commandBuffer);
break;
case DirtyFlags.Scissor:
RecordScissor(gd, commandBuffer);
break;
case DirtyFlags.Stencil:
RecordStencil(api, commandBuffer);
break;
case DirtyFlags.Viewport:
RecordViewport(gd, commandBuffer);
break;
case DirtyFlags.FeedbackLoop:
RecordFeedbackLoop(dynamicFeedbackLoopApi, commandBuffer);
break;
case DirtyFlags.CullMode:
RecordCullMode(extendedStateApi, commandBuffer);
break;
case DirtyFlags.FrontFace:
RecordFrontFace(extendedStateApi, commandBuffer);
break;
case DirtyFlags.DepthTestBool:
RecordDepthTestBool(extendedStateApi, commandBuffer);
break;
case DirtyFlags.DepthTestCompareOp:
RecordDepthTestCompareOp(extendedStateApi, commandBuffer);
break;
case DirtyFlags.StencilTestEnableAndStencilOp:
RecordStencilTestAndOp(extendedStateApi, commandBuffer);
break;
case DirtyFlags.LineWidth:
RecordLineWidth(api, commandBuffer);
break;
case DirtyFlags.RasterDiscard:
RecordRasterizationDiscard(extendedState2Api, commandBuffer);
break;
case DirtyFlags.LogicOp:
RecordLogicOp(extendedState2Api, commandBuffer);
break;
case DirtyFlags.PatchControlPoints:
RecordPatchControlPoints(extendedState2Api, commandBuffer);
break;
case DirtyFlags.PrimitiveRestart:
RecordPrimitiveRestartEnable(gd, commandBuffer);
break;
case DirtyFlags.PrimitiveTopology:
RecordPrimitiveTopology(extendedStateApi, commandBuffer);
break;
case DirtyFlags.DepthBiasEnable:
RecordDepthBiasEnable(extendedState2Api, commandBuffer);
break;
}
if (_dirty.HasFlag(DirtyFlags.Scissor))
{
RecordScissor(api, commandBuffer);
}
dirtyFlags &= ~currentFlag;
if (_dirty.HasFlag(DirtyFlags.Stencil))
{
RecordStencilMasks(api, commandBuffer);
}
if (_dirty.HasFlag(DirtyFlags.Viewport))
{
RecordViewport(api, commandBuffer);
}
if (_dirty.HasFlag(DirtyFlags.FeedbackLoop) && gd.Capabilities.SupportsDynamicAttachmentFeedbackLoop)
{
RecordFeedbackLoop(gd.DynamicFeedbackLoopApi, commandBuffer);
}
_dirty = DirtyFlags.None;
@@ -382,27 +164,15 @@ namespace Ryujinx.Graphics.Vulkan
api.CmdSetDepthBias(commandBuffer, _depthBiasConstantFactor, _depthBiasClamp, _depthBiasSlopeFactor);
}
private readonly void RecordDepthBiasEnable(ExtExtendedDynamicState2 gd, CommandBuffer commandBuffer)
{
gd.CmdSetDepthBiasEnable(commandBuffer, _depthBiasEnable);
}
private void RecordScissor(VulkanRenderer gd, CommandBuffer commandBuffer)
private void RecordScissor(Vk api, CommandBuffer commandBuffer)
{
if (ScissorsCount != 0)
{
if (gd.Capabilities.SupportsExtendedDynamicState)
{
gd.ExtendedDynamicStateApi.CmdSetScissorWithCount(commandBuffer, (uint)ScissorsCount, _scissors.AsSpan());
}
else
{
gd.Api.CmdSetScissor(commandBuffer, 0, (uint)ScissorsCount, _scissors.AsSpan());
}
api.CmdSetScissor(commandBuffer, 0, (uint)ScissorsCount, _scissors.AsSpan());
}
}
private readonly void RecordStencil(Vk api, CommandBuffer commandBuffer)
private readonly void RecordStencilMasks(Vk api, CommandBuffer commandBuffer)
{
api.CmdSetStencilCompareMask(commandBuffer, StencilFaceFlags.FaceBackBit, _backCompareMask);
api.CmdSetStencilWriteMask(commandBuffer, StencilFaceFlags.FaceBackBit, _backWriteMask);
@@ -412,107 +182,12 @@ namespace Ryujinx.Graphics.Vulkan
api.CmdSetStencilReference(commandBuffer, StencilFaceFlags.FaceFrontBit, _frontReference);
}
private readonly void RecordStencilTestAndOp(ExtExtendedDynamicState api, CommandBuffer commandBuffer)
private void RecordViewport(Vk api, CommandBuffer commandBuffer)
{
api.CmdSetStencilTestEnable(commandBuffer, StencilTestEnable);
api.CmdSetStencilOp(commandBuffer, StencilFaceFlags.FaceBackBit, _backFailOp, _backPassOp, _backDepthFailOp, _backCompareOp);
api.CmdSetStencilOp(commandBuffer, StencilFaceFlags.FaceFrontBit, _frontFailOp, _frontPassOp, _frontDepthFailOp, _frontCompareOp);
}
private void RecordViewport(VulkanRenderer gd, CommandBuffer commandBuffer)
{
if (ViewportsCount == 0)
if (ViewportsCount != 0)
{
return;
api.CmdSetViewport(commandBuffer, 0, ViewportsCount, Viewports.AsSpan());
}
if (gd.Capabilities.SupportsExtendedDynamicState)
{
gd.ExtendedDynamicStateApi.CmdSetViewportWithCount(commandBuffer, ViewportsCount, Viewports.AsSpan());
}
else
{
gd.Api.CmdSetViewport(commandBuffer, 0, ViewportsCount, Viewports.AsSpan());
}
}
private readonly void RecordCullMode(ExtExtendedDynamicState api, CommandBuffer commandBuffer)
{
api.CmdSetCullMode(commandBuffer, CullMode);
}
private readonly void RecordFrontFace(ExtExtendedDynamicState api, CommandBuffer commandBuffer)
{
api.CmdSetFrontFace(commandBuffer, _frontFace);
}
private readonly void RecordDepthTestBool(ExtExtendedDynamicState api, CommandBuffer commandBuffer)
{
api.CmdSetDepthTestEnable(commandBuffer, DepthTestEnable);
api.CmdSetDepthWriteEnable(commandBuffer, DepthWriteEnable);
}
private readonly void RecordDepthTestCompareOp(ExtExtendedDynamicState api, CommandBuffer commandBuffer)
{
api.CmdSetDepthCompareOp(commandBuffer, _depthCompareOp);
}
private readonly void RecordRasterizationDiscard(ExtExtendedDynamicState2 extendedDynamicState2Api, CommandBuffer commandBuffer)
{
extendedDynamicState2Api.CmdSetRasterizerDiscardEnable(commandBuffer, _discard);
}
private readonly void RecordPrimitiveRestartEnable(VulkanRenderer gd, CommandBuffer commandBuffer)
{
bool primitiveRestartEnable = _primitiveRestartEnable;
bool topologySupportsRestart;
if (gd.Capabilities.SupportsPrimitiveTopologyListRestart)
{
topologySupportsRestart = gd.Capabilities.SupportsPrimitiveTopologyPatchListRestart ||
Topology != PrimitiveTopology.PatchList;
}
else
{
topologySupportsRestart = Topology == PrimitiveTopology.LineStrip ||
Topology == PrimitiveTopology.TriangleStrip ||
Topology == PrimitiveTopology.TriangleFan ||
Topology == PrimitiveTopology.LineStripWithAdjacency ||
Topology == PrimitiveTopology.TriangleStripWithAdjacency;
}
primitiveRestartEnable &= topologySupportsRestart;
// Cannot disable primitiveRestartEnable for these Topologies on MacOS.
if (gd.IsMoltenVk)
{
primitiveRestartEnable = true;
}
gd.ExtendedDynamicState2Api.CmdSetPrimitiveRestartEnable(commandBuffer, primitiveRestartEnable);
}
private readonly void RecordPrimitiveTopology(ExtExtendedDynamicState extendedDynamicStateApi, CommandBuffer commandBuffer)
{
extendedDynamicStateApi.CmdSetPrimitiveTopology(commandBuffer, Topology);
}
private readonly void RecordLogicOp(ExtExtendedDynamicState2 extendedDynamicState2Api, CommandBuffer commandBuffer)
{
extendedDynamicState2Api.CmdSetLogicOp(commandBuffer, _logicOp);
}
private readonly void RecordPatchControlPoints(ExtExtendedDynamicState2 extendedDynamicState2Api, CommandBuffer commandBuffer)
{
extendedDynamicState2Api.CmdSetPatchControlPoints(commandBuffer, _patchControlPoints);
}
private readonly void RecordLineWidth(Vk api, CommandBuffer commandBuffer)
{
api.CmdSetLineWidth(commandBuffer, _lineWidth);
}
private readonly void RecordFeedbackLoop(ExtAttachmentFeedbackLoopDynamicState api, CommandBuffer commandBuffer)
@@ -8,15 +8,11 @@ namespace Ryujinx.Graphics.Vulkan
{
}
public void SetRenderTarget(TextureView view, uint width, uint height, bool signalChange = true)
public void SetRenderTarget(TextureView view, uint width, uint height)
{
CreateFramebuffer(view, width, height);
CreateRenderPass();
if (signalChange)
{
SignalStateChange();
}
SignalStateChange();
}
private void CreateFramebuffer(TextureView view, uint width, uint height)
+350 -452
View File
@@ -7,258 +7,312 @@ namespace Ryujinx.Graphics.Vulkan
{
struct PipelineState : IDisposable
{
private const int MaxDynamicStatesCount = 23;
private const int MaxDynamicStatesCount = 9;
public PipelineUid Internal;
public PolygonMode PolygonMode
public float LineWidth
{
readonly get => (PolygonMode)((Internal.Id0 >> 0) & 0x3FFFFFFF);
set => Internal.Id0 = (Internal.Id0 & 0xFFFFFFFFC0000000) | ((ulong)value << 0);
readonly get => BitConverter.Int32BitsToSingle((int)((Internal.Id0 >> 0) & 0xFFFFFFFF));
set => Internal.Id0 = (Internal.Id0 & 0xFFFFFFFF00000000) | ((ulong)(uint)BitConverter.SingleToInt32Bits(value) << 0);
}
public uint StagesCount
public float DepthBiasClamp
{
readonly get => (byte)((Internal.Id0 >> 30) & 0xFF);
set => Internal.Id0 = (Internal.Id0 & 0xFFFFFFC03FFFFFFF) | ((ulong)value << 30);
readonly get => BitConverter.Int32BitsToSingle((int)((Internal.Id0 >> 32) & 0xFFFFFFFF));
set => Internal.Id0 = (Internal.Id0 & 0xFFFFFFFF) | ((ulong)(uint)BitConverter.SingleToInt32Bits(value) << 32);
}
public uint VertexAttributeDescriptionsCount
public float DepthBiasConstantFactor
{
readonly get => (byte)((Internal.Id0 >> 38) & 0xFF);
set => Internal.Id0 = (Internal.Id0 & 0xFFFFC03FFFFFFFFF) | ((ulong)value << 38);
readonly get => BitConverter.Int32BitsToSingle((int)((Internal.Id1 >> 0) & 0xFFFFFFFF));
set => Internal.Id1 = (Internal.Id1 & 0xFFFFFFFF00000000) | ((ulong)(uint)BitConverter.SingleToInt32Bits(value) << 0);
}
public uint VertexBindingDescriptionsCount
public float DepthBiasSlopeFactor
{
readonly get => (byte)((Internal.Id0 >> 46) & 0xFF);
set => Internal.Id0 = (Internal.Id0 & 0xFFC03FFFFFFFFFFF) | ((ulong)value << 46);
readonly get => BitConverter.Int32BitsToSingle((int)((Internal.Id1 >> 32) & 0xFFFFFFFF));
set => Internal.Id1 = (Internal.Id1 & 0xFFFFFFFF) | ((ulong)(uint)BitConverter.SingleToInt32Bits(value) << 32);
}
public uint ViewportsCount
{
readonly get => (byte)((Internal.Id0 >> 54) & 0xFF);
set => Internal.Id0 = (Internal.Id0 & 0xC03FFFFFFFFFFFFF) | ((ulong)value << 54);
}
public uint ScissorsCount
{
readonly get => (byte)((Internal.Id1 >> 0) & 0xFF);
set => Internal.Id1 = (Internal.Id1 & 0xFFFFFFFFFFFFFF00) | ((ulong)value << 0);
}
public uint ColorBlendAttachmentStateCount
{
readonly get => (byte)((Internal.Id1 >> 8) & 0xFF);
set => Internal.Id1 = (Internal.Id1 & 0xFFFFFFFFFFFF00FF) | ((ulong)value << 8);
}
public PrimitiveTopology Topology
{
readonly get => (PrimitiveTopology)((Internal.Id1 >> 16) & 0xF);
set => Internal.Id1 = (Internal.Id1 & 0xFFFFFFFFFFF0FFFF) | ((ulong)value << 16);
}
public LogicOp LogicOp
{
readonly get => (LogicOp)((Internal.Id1 >> 20) & 0xF);
set => Internal.Id1 = (Internal.Id1 & 0xFFFFFFFFFF0FFFFF) | ((ulong)value << 20);
}
public CompareOp DepthCompareOp
{
readonly get => (CompareOp)((Internal.Id1 >> 24) & 0x7);
set => Internal.Id1 = (Internal.Id1 & 0xFFFFFFFFF8FFFFFF) | ((ulong)value << 24);
}
public StencilOp StencilFrontFailOp
{
readonly get => (StencilOp)((Internal.Id1 >> 27) & 0x7);
set => Internal.Id1 = (Internal.Id1 & 0xFFFFFFFFC7FFFFFF) | ((ulong)value << 27);
}
public StencilOp StencilFrontPassOp
{
readonly get => (StencilOp)((Internal.Id1 >> 30) & 0x7);
set => Internal.Id1 = (Internal.Id1 & 0xFFFFFFFE3FFFFFFF) | ((ulong)value << 30);
}
public StencilOp StencilFrontDepthFailOp
{
readonly get => (StencilOp)((Internal.Id1 >> 33) & 0x7);
set => Internal.Id1 = (Internal.Id1 & 0xFFFFFFF1FFFFFFFF) | ((ulong)value << 33);
}
public CompareOp StencilFrontCompareOp
{
readonly get => (CompareOp)((Internal.Id1 >> 36) & 0x7);
set => Internal.Id1 = (Internal.Id1 & 0xFFFFFF8FFFFFFFFF) | ((ulong)value << 36);
}
public StencilOp StencilBackFailOp
{
readonly get => (StencilOp)((Internal.Id1 >> 39) & 0x7);
set => Internal.Id1 = (Internal.Id1 & 0xFFFFFC7FFFFFFFFF) | ((ulong)value << 39);
}
public StencilOp StencilBackPassOp
{
readonly get => (StencilOp)((Internal.Id1 >> 42) & 0x7);
set => Internal.Id1 = (Internal.Id1 & 0xFFFFE3FFFFFFFFFF) | ((ulong)value << 42);
}
public StencilOp StencilBackDepthFailOp
{
readonly get => (StencilOp)((Internal.Id1 >> 45) & 0x7);
set => Internal.Id1 = (Internal.Id1 & 0xFFFF1FFFFFFFFFFF) | ((ulong)value << 45);
}
public CompareOp StencilBackCompareOp
{
readonly get => (CompareOp)((Internal.Id1 >> 48) & 0x7);
set => Internal.Id1 = (Internal.Id1 & 0xFFF8FFFFFFFFFFFF) | ((ulong)value << 48);
}
public CullModeFlags CullMode
{
readonly get => (CullModeFlags)((Internal.Id1 >> 51) & 0x3);
set => Internal.Id1 = (Internal.Id1 & 0xFFE7FFFFFFFFFFFF) | ((ulong)value << 51);
}
public bool PrimitiveRestartEnable
{
readonly get => ((Internal.Id1 >> 53) & 0x1) != 0UL;
set => Internal.Id1 = (Internal.Id1 & 0xFFDFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 53);
}
public bool DepthClampEnable
{
readonly get => ((Internal.Id1 >> 54) & 0x1) != 0UL;
set => Internal.Id1 = (Internal.Id1 & 0xFFBFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 54);
}
public bool RasterizerDiscardEnable
{
readonly get => ((Internal.Id1 >> 55) & 0x1) != 0UL;
set => Internal.Id1 = (Internal.Id1 & 0xFF7FFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 55);
}
public FrontFace FrontFace
{
readonly get => (FrontFace)((Internal.Id1 >> 56) & 0x1);
set => Internal.Id1 = (Internal.Id1 & 0xFEFFFFFFFFFFFFFF) | ((ulong)value << 56);
}
public bool DepthBiasEnable
{
readonly get => ((Internal.Id1 >> 57) & 0x1) != 0UL;
set => Internal.Id1 = (Internal.Id1 & 0xFDFFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 57);
}
public bool DepthTestEnable
{
readonly get => ((Internal.Id1 >> 58) & 0x1) != 0UL;
set => Internal.Id1 = (Internal.Id1 & 0xFBFFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 58);
}
public bool DepthWriteEnable
{
readonly get => ((Internal.Id1 >> 59) & 0x1) != 0UL;
set => Internal.Id1 = (Internal.Id1 & 0xF7FFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 59);
}
public bool DepthBoundsTestEnable
{
readonly get => ((Internal.Id1 >> 60) & 0x1) != 0UL;
set => Internal.Id1 = (Internal.Id1 & 0xEFFFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 60);
}
public bool StencilTestEnable
{
readonly get => ((Internal.Id1 >> 61) & 0x1) != 0UL;
set => Internal.Id1 = (Internal.Id1 & 0xDFFFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 61);
}
public bool LogicOpEnable
{
readonly get => ((Internal.Id1 >> 62) & 0x1) != 0UL;
set => Internal.Id1 = (Internal.Id1 & 0xBFFFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 62);
}
public bool HasDepthStencil
{
readonly get => ((Internal.Id1 >> 63) & 0x1) != 0UL;
set => Internal.Id1 = (Internal.Id1 & 0x7FFFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 63);
}
public uint PatchControlPoints
public uint StencilFrontCompareMask
{
readonly get => (uint)((Internal.Id2 >> 0) & 0xFFFFFFFF);
set => Internal.Id2 = (Internal.Id2 & 0xFFFFFFFF00000000) | ((ulong)value << 0);
}
public uint SamplesCount
public uint StencilFrontWriteMask
{
readonly get => (uint)((Internal.Id2 >> 32) & 0xFFFFFFFF);
set => Internal.Id2 = (Internal.Id2 & 0xFFFFFFFF) | ((ulong)value << 32);
}
public uint StencilFrontReference
{
readonly get => (uint)((Internal.Id3 >> 0) & 0xFFFFFFFF);
set => Internal.Id3 = (Internal.Id3 & 0xFFFFFFFF00000000) | ((ulong)value << 0);
}
public uint StencilBackCompareMask
{
readonly get => (uint)((Internal.Id3 >> 32) & 0xFFFFFFFF);
set => Internal.Id3 = (Internal.Id3 & 0xFFFFFFFF) | ((ulong)value << 32);
}
public uint StencilBackWriteMask
{
readonly get => (uint)((Internal.Id4 >> 0) & 0xFFFFFFFF);
set => Internal.Id4 = (Internal.Id4 & 0xFFFFFFFF00000000) | ((ulong)value << 0);
}
public uint StencilBackReference
{
readonly get => (uint)((Internal.Id4 >> 32) & 0xFFFFFFFF);
set => Internal.Id4 = (Internal.Id4 & 0xFFFFFFFF) | ((ulong)value << 32);
}
public PolygonMode PolygonMode
{
readonly get => (PolygonMode)((Internal.Id5 >> 0) & 0x3FFFFFFF);
set => Internal.Id5 = (Internal.Id5 & 0xFFFFFFFFC0000000) | ((ulong)value << 0);
}
public uint StagesCount
{
readonly get => (byte)((Internal.Id5 >> 30) & 0xFF);
set => Internal.Id5 = (Internal.Id5 & 0xFFFFFFC03FFFFFFF) | ((ulong)value << 30);
}
public uint VertexAttributeDescriptionsCount
{
readonly get => (byte)((Internal.Id5 >> 38) & 0xFF);
set => Internal.Id5 = (Internal.Id5 & 0xFFFFC03FFFFFFFFF) | ((ulong)value << 38);
}
public uint VertexBindingDescriptionsCount
{
readonly get => (byte)((Internal.Id5 >> 46) & 0xFF);
set => Internal.Id5 = (Internal.Id5 & 0xFFC03FFFFFFFFFFF) | ((ulong)value << 46);
}
public uint ViewportsCount
{
readonly get => (byte)((Internal.Id5 >> 54) & 0xFF);
set => Internal.Id5 = (Internal.Id5 & 0xC03FFFFFFFFFFFFF) | ((ulong)value << 54);
}
public uint ScissorsCount
{
readonly get => (byte)((Internal.Id6 >> 0) & 0xFF);
set => Internal.Id6 = (Internal.Id6 & 0xFFFFFFFFFFFFFF00) | ((ulong)value << 0);
}
public uint ColorBlendAttachmentStateCount
{
readonly get => (byte)((Internal.Id6 >> 8) & 0xFF);
set => Internal.Id6 = (Internal.Id6 & 0xFFFFFFFFFFFF00FF) | ((ulong)value << 8);
}
public PrimitiveTopology Topology
{
readonly get => (PrimitiveTopology)((Internal.Id6 >> 16) & 0xF);
set => Internal.Id6 = (Internal.Id6 & 0xFFFFFFFFFFF0FFFF) | ((ulong)value << 16);
}
public LogicOp LogicOp
{
readonly get => (LogicOp)((Internal.Id6 >> 20) & 0xF);
set => Internal.Id6 = (Internal.Id6 & 0xFFFFFFFFFF0FFFFF) | ((ulong)value << 20);
}
public CompareOp DepthCompareOp
{
readonly get => (CompareOp)((Internal.Id6 >> 24) & 0x7);
set => Internal.Id6 = (Internal.Id6 & 0xFFFFFFFFF8FFFFFF) | ((ulong)value << 24);
}
public StencilOp StencilFrontFailOp
{
readonly get => (StencilOp)((Internal.Id6 >> 27) & 0x7);
set => Internal.Id6 = (Internal.Id6 & 0xFFFFFFFFC7FFFFFF) | ((ulong)value << 27);
}
public StencilOp StencilFrontPassOp
{
readonly get => (StencilOp)((Internal.Id6 >> 30) & 0x7);
set => Internal.Id6 = (Internal.Id6 & 0xFFFFFFFE3FFFFFFF) | ((ulong)value << 30);
}
public StencilOp StencilFrontDepthFailOp
{
readonly get => (StencilOp)((Internal.Id6 >> 33) & 0x7);
set => Internal.Id6 = (Internal.Id6 & 0xFFFFFFF1FFFFFFFF) | ((ulong)value << 33);
}
public CompareOp StencilFrontCompareOp
{
readonly get => (CompareOp)((Internal.Id6 >> 36) & 0x7);
set => Internal.Id6 = (Internal.Id6 & 0xFFFFFF8FFFFFFFFF) | ((ulong)value << 36);
}
public StencilOp StencilBackFailOp
{
readonly get => (StencilOp)((Internal.Id6 >> 39) & 0x7);
set => Internal.Id6 = (Internal.Id6 & 0xFFFFFC7FFFFFFFFF) | ((ulong)value << 39);
}
public StencilOp StencilBackPassOp
{
readonly get => (StencilOp)((Internal.Id6 >> 42) & 0x7);
set => Internal.Id6 = (Internal.Id6 & 0xFFFFE3FFFFFFFFFF) | ((ulong)value << 42);
}
public StencilOp StencilBackDepthFailOp
{
readonly get => (StencilOp)((Internal.Id6 >> 45) & 0x7);
set => Internal.Id6 = (Internal.Id6 & 0xFFFF1FFFFFFFFFFF) | ((ulong)value << 45);
}
public CompareOp StencilBackCompareOp
{
readonly get => (CompareOp)((Internal.Id6 >> 48) & 0x7);
set => Internal.Id6 = (Internal.Id6 & 0xFFF8FFFFFFFFFFFF) | ((ulong)value << 48);
}
public CullModeFlags CullMode
{
readonly get => (CullModeFlags)((Internal.Id6 >> 51) & 0x3);
set => Internal.Id6 = (Internal.Id6 & 0xFFE7FFFFFFFFFFFF) | ((ulong)value << 51);
}
public bool PrimitiveRestartEnable
{
readonly get => ((Internal.Id6 >> 53) & 0x1) != 0UL;
set => Internal.Id6 = (Internal.Id6 & 0xFFDFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 53);
}
public bool DepthClampEnable
{
readonly get => ((Internal.Id6 >> 54) & 0x1) != 0UL;
set => Internal.Id6 = (Internal.Id6 & 0xFFBFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 54);
}
public bool RasterizerDiscardEnable
{
readonly get => ((Internal.Id6 >> 55) & 0x1) != 0UL;
set => Internal.Id6 = (Internal.Id6 & 0xFF7FFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 55);
}
public FrontFace FrontFace
{
readonly get => (FrontFace)((Internal.Id6 >> 56) & 0x1);
set => Internal.Id6 = (Internal.Id6 & 0xFEFFFFFFFFFFFFFF) | ((ulong)value << 56);
}
public bool DepthBiasEnable
{
readonly get => ((Internal.Id6 >> 57) & 0x1) != 0UL;
set => Internal.Id6 = (Internal.Id6 & 0xFDFFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 57);
}
public bool DepthTestEnable
{
readonly get => ((Internal.Id6 >> 58) & 0x1) != 0UL;
set => Internal.Id6 = (Internal.Id6 & 0xFBFFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 58);
}
public bool DepthWriteEnable
{
readonly get => ((Internal.Id6 >> 59) & 0x1) != 0UL;
set => Internal.Id6 = (Internal.Id6 & 0xF7FFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 59);
}
public bool DepthBoundsTestEnable
{
readonly get => ((Internal.Id6 >> 60) & 0x1) != 0UL;
set => Internal.Id6 = (Internal.Id6 & 0xEFFFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 60);
}
public bool StencilTestEnable
{
readonly get => ((Internal.Id6 >> 61) & 0x1) != 0UL;
set => Internal.Id6 = (Internal.Id6 & 0xDFFFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 61);
}
public bool LogicOpEnable
{
readonly get => ((Internal.Id6 >> 62) & 0x1) != 0UL;
set => Internal.Id6 = (Internal.Id6 & 0xBFFFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 62);
}
public bool HasDepthStencil
{
readonly get => ((Internal.Id6 >> 63) & 0x1) != 0UL;
set => Internal.Id6 = (Internal.Id6 & 0x7FFFFFFFFFFFFFFF) | ((value ? 1UL : 0UL) << 63);
}
public uint PatchControlPoints
{
readonly get => (uint)((Internal.Id7 >> 0) & 0xFFFFFFFF);
set => Internal.Id7 = (Internal.Id7 & 0xFFFFFFFF00000000) | ((ulong)value << 0);
}
public uint SamplesCount
{
readonly get => (uint)((Internal.Id7 >> 32) & 0xFFFFFFFF);
set => Internal.Id7 = (Internal.Id7 & 0xFFFFFFFF) | ((ulong)value << 32);
}
public bool AlphaToCoverageEnable
{
readonly get => ((Internal.Id3 >> 0) & 0x1) != 0UL;
set => Internal.Id3 = (Internal.Id3 & 0xFFFFFFFFFFFFFFFE) | ((value ? 1UL : 0UL) << 0);
readonly get => ((Internal.Id8 >> 0) & 0x1) != 0UL;
set => Internal.Id8 = (Internal.Id8 & 0xFFFFFFFFFFFFFFFE) | ((value ? 1UL : 0UL) << 0);
}
public bool AlphaToOneEnable
{
readonly get => ((Internal.Id3 >> 1) & 0x1) != 0UL;
set => Internal.Id3 = (Internal.Id3 & 0xFFFFFFFFFFFFFFFD) | ((value ? 1UL : 0UL) << 1);
readonly get => ((Internal.Id8 >> 1) & 0x1) != 0UL;
set => Internal.Id8 = (Internal.Id8 & 0xFFFFFFFFFFFFFFFD) | ((value ? 1UL : 0UL) << 1);
}
public bool AdvancedBlendSrcPreMultiplied
{
readonly get => ((Internal.Id3 >> 2) & 0x1) != 0UL;
set => Internal.Id3 = (Internal.Id3 & 0xFFFFFFFFFFFFFFFB) | ((value ? 1UL : 0UL) << 2);
readonly get => ((Internal.Id8 >> 2) & 0x1) != 0UL;
set => Internal.Id8 = (Internal.Id8 & 0xFFFFFFFFFFFFFFFB) | ((value ? 1UL : 0UL) << 2);
}
public bool AdvancedBlendDstPreMultiplied
{
readonly get => ((Internal.Id3 >> 3) & 0x1) != 0UL;
set => Internal.Id3 = (Internal.Id3 & 0xFFFFFFFFFFFFFFF7) | ((value ? 1UL : 0UL) << 3);
readonly get => ((Internal.Id8 >> 3) & 0x1) != 0UL;
set => Internal.Id8 = (Internal.Id8 & 0xFFFFFFFFFFFFFFF7) | ((value ? 1UL : 0UL) << 3);
}
public BlendOverlapEXT AdvancedBlendOverlap
{
readonly get => (BlendOverlapEXT)((Internal.Id3 >> 4) & 0x3);
set => Internal.Id3 = (Internal.Id3 & 0xFFFFFFFFFFFFFFCF) | ((ulong)value << 4);
readonly get => (BlendOverlapEXT)((Internal.Id8 >> 4) & 0x3);
set => Internal.Id8 = (Internal.Id8 & 0xFFFFFFFFFFFFFFCF) | ((ulong)value << 4);
}
public bool DepthMode
{
readonly get => ((Internal.Id3 >> 6) & 0x1) != 0UL;
set => Internal.Id3 = (Internal.Id3 & 0xFFFFFFFFFFFFFFBF) | ((value ? 1UL : 0UL) << 6);
readonly get => ((Internal.Id8 >> 6) & 0x1) != 0UL;
set => Internal.Id8 = (Internal.Id8 & 0xFFFFFFFFFFFFFFBF) | ((value ? 1UL : 0UL) << 6);
}
public FeedbackLoopAspects FeedbackLoopAspects
{
readonly get => (FeedbackLoopAspects)((Internal.Id3 >> 7) & 0x3);
set => Internal.Id3 = (Internal.Id3 & 0xFFFFFFFFFFFFFE7F) | (((ulong)value) << 7);
readonly get => (FeedbackLoopAspects)((Internal.Id8 >> 7) & 0x3);
set => Internal.Id8 = (Internal.Id8 & 0xFFFFFFFFFFFFFE7F) | (((ulong)value) << 7);
}
public bool HasTessellationControlShader;
public bool FeedbackLoopDynamicState;
public NativeArray<PipelineShaderStageCreateInfo> Stages;
public PipelineLayout PipelineLayout;
public SpecData SpecializationData;
private Array32<VertexInputAttributeDescription> _vertexAttributeDescriptions2;
private bool _supportsExtDynamicState;
private PhysicalDeviceExtendedDynamicState2FeaturesEXT _supportsExtDynamicState2;
private bool _supportsFeedBackLoopDynamicState;
private uint _blendEnables;
public void Initialize(HardwareCapabilities capabilities)
public void Initialize()
{
HasTessellationControlShader = false;
Stages = new NativeArray<PipelineShaderStageCreateInfo>(Constants.MaxShaderStages);
@@ -267,54 +321,9 @@ namespace Ryujinx.Graphics.Vulkan
AdvancedBlendDstPreMultiplied = true;
AdvancedBlendOverlap = BlendOverlapEXT.UncorrelatedExt;
LineWidth = 1f;
SamplesCount = 1;
DepthMode = true;
PolygonMode = PolygonMode.Fill;
DepthBoundsTestEnable = false;
_supportsExtDynamicState = capabilities.SupportsExtendedDynamicState;
_supportsExtDynamicState2 = capabilities.SupportsExtendedDynamicState2;
_supportsFeedBackLoopDynamicState = capabilities.SupportsDynamicAttachmentFeedbackLoop;
if (_supportsExtDynamicState)
{
StencilFrontFailOp = 0;
StencilFrontPassOp = 0;
StencilFrontDepthFailOp = 0;
StencilFrontCompareOp = 0;
StencilBackFailOp = 0;
StencilBackPassOp = 0;
StencilBackDepthFailOp = 0;
StencilBackCompareOp = 0;
ViewportsCount = 0;
ScissorsCount = 0;
CullMode = 0;
FrontFace = 0;
DepthTestEnable = false;
DepthWriteEnable = false;
DepthCompareOp = 0;
StencilTestEnable = false;
}
if (_supportsExtDynamicState2.ExtendedDynamicState2)
{
PrimitiveRestartEnable = false;
DepthBiasEnable = false;
RasterizerDiscardEnable = false;
if (_supportsExtDynamicState2.ExtendedDynamicState2LogicOp)
{
LogicOp = 0;
}
if (_supportsExtDynamicState2.ExtendedDynamicState2PatchControlPoints)
{
PatchControlPoints = 0;
}
}
}
public unsafe Auto<DisposablePipeline> CreateComputePipeline(
@@ -332,6 +341,7 @@ namespace Ryujinx.Graphics.Vulkan
{
SType = StructureType.ComputePipelineCreateInfo,
Stage = Stages[0],
BasePipelineIndex = -1,
Layout = PipelineLayout,
};
@@ -367,74 +377,6 @@ namespace Ryujinx.Graphics.Vulkan
return pipeline;
}
private void CheckCapability(VulkanRenderer gd)
{
// Vendors other than NVIDIA have a bug where it enables logical operations even for float formats,
// so we need to force disable them here.
LogicOpEnable = LogicOpEnable && (gd.Vendor == Vendor.Nvidia || Internal.LogicOpsAllowed);
if (!_supportsExtDynamicState)
{
DepthWriteEnable = DepthWriteEnable && DepthTestEnable;
DepthCompareOp = DepthTestEnable ? DepthCompareOp : default;
}
if (!_supportsExtDynamicState2.ExtendedDynamicState2LogicOp)
{
LogicOp = LogicOpEnable ? LogicOp : default;
}
if (!_supportsExtDynamicState2.ExtendedDynamicState2)
{
bool topologySupportsRestart;
if (gd.Capabilities.SupportsPrimitiveTopologyListRestart)
{
topologySupportsRestart = gd.Capabilities.SupportsPrimitiveTopologyPatchListRestart ||
Topology != PrimitiveTopology.PatchList;
}
else
{
topologySupportsRestart = Topology == PrimitiveTopology.LineStrip ||
Topology == PrimitiveTopology.TriangleStrip ||
Topology == PrimitiveTopology.TriangleFan ||
Topology == PrimitiveTopology.LineStripWithAdjacency ||
Topology == PrimitiveTopology.TriangleStripWithAdjacency;
}
PrimitiveRestartEnable &= topologySupportsRestart;
}
if (_supportsExtDynamicState)
{
Topology = Topology.ConvertToClass();
}
Topology = HasTessellationControlShader ? PrimitiveTopology.PatchList : Topology;
if (gd.IsMoltenVk && Internal.AttachmentIntegerFormatMask != 0)
{
_blendEnables = 0;
// Blend can't be enabled for integer formats, so let's make sure it is disabled.
uint attachmentIntegerFormatMask = Internal.AttachmentIntegerFormatMask;
while (attachmentIntegerFormatMask != 0)
{
int i = BitOperations.TrailingZeroCount(attachmentIntegerFormatMask);
if (Internal.ColorBlendAttachmentState[i].BlendEnable)
{
_blendEnables |= 1u << i;
}
Internal.ColorBlendAttachmentState[i].BlendEnable = false;
attachmentIntegerFormatMask &= ~(1u << i);
}
}
}
public unsafe Auto<DisposablePipeline> CreateGraphicsPipeline(
VulkanRenderer gd,
Device device,
@@ -443,17 +385,6 @@ namespace Ryujinx.Graphics.Vulkan
RenderPass renderPass,
bool throwOnError = false)
{
CheckCapability(gd);
// Using patches topology without a tessellation shader is invalid.
// If we find such a case, return null pipeline to skip the draw.
if (Topology == PrimitiveTopology.PatchList && !HasTessellationControlShader)
{
program.AddGraphicsPipeline(ref Internal, null);
return null;
}
if (program.TryGetGraphicsPipeline(ref Internal, out Auto<DisposablePipeline> pipeline))
{
return pipeline;
@@ -463,7 +394,7 @@ namespace Ryujinx.Graphics.Vulkan
bool isMoltenVk = gd.IsMoltenVk;
if (isMoltenVk && !_supportsExtDynamicState)
if (isMoltenVk)
{
UpdateVertexAttributeDescriptions(gd);
}
@@ -477,7 +408,7 @@ namespace Ryujinx.Graphics.Vulkan
{
SType = StructureType.PipelineVertexInputStateCreateInfo,
VertexAttributeDescriptionCount = VertexAttributeDescriptionsCount,
PVertexAttributeDescriptions = isMoltenVk && !_supportsExtDynamicState ? pVertexAttributeDescriptions2 : pVertexAttributeDescriptions,
PVertexAttributeDescriptions = isMoltenVk ? pVertexAttributeDescriptions2 : pVertexAttributeDescriptions,
VertexBindingDescriptionCount = VertexBindingDescriptionsCount,
PVertexBindingDescriptions = pVertexBindingDescriptions,
};
@@ -513,22 +444,33 @@ namespace Ryujinx.Graphics.Vulkan
PipelineInputAssemblyStateCreateInfo inputAssemblyState = new()
{
SType = StructureType.PipelineInputAssemblyStateCreateInfo,
Topology = Topology,
PrimitiveRestartEnable = primitiveRestartEnable,
Topology = HasTessellationControlShader ? PrimitiveTopology.PatchList : Topology,
};
PipelineTessellationStateCreateInfo tessellationState;
PipelineTessellationStateCreateInfo tessellationState = new()
{
SType = StructureType.PipelineTessellationStateCreateInfo,
PatchControlPoints = PatchControlPoints,
};
PipelineRasterizationStateCreateInfo rasterizationState = new()
{
SType = StructureType.PipelineRasterizationStateCreateInfo,
DepthClampEnable = DepthClampEnable,
// When widelines feature is not supported it must be 1.0f, this will be ignored if Line Width dynamic state is supported
LineWidth = 1.0f,
RasterizerDiscardEnable = RasterizerDiscardEnable,
PolygonMode = PolygonMode,
LineWidth = LineWidth,
CullMode = CullMode,
FrontFace = FrontFace,
DepthBiasEnable = DepthBiasEnable,
};
PipelineViewportStateCreateInfo viewportState = new()
{
SType = StructureType.PipelineViewportStateCreateInfo,
ViewportCount = ViewportsCount,
ScissorCount = ScissorsCount,
};
if (gd.Capabilities.SupportsDepthClipControl)
@@ -552,70 +494,64 @@ namespace Ryujinx.Graphics.Vulkan
AlphaToOneEnable = AlphaToOneEnable,
};
StencilOpState stencilFront = new(
StencilFrontFailOp,
StencilFrontPassOp,
StencilFrontDepthFailOp,
StencilFrontCompareOp);
StencilOpState stencilBack = new(
StencilBackFailOp,
StencilBackPassOp,
StencilBackDepthFailOp,
StencilBackCompareOp);
PipelineDepthStencilStateCreateInfo depthStencilState = new()
{
SType = StructureType.PipelineDepthStencilStateCreateInfo,
DepthBoundsTestEnable = DepthBoundsTestEnable,
DepthTestEnable = DepthTestEnable,
DepthWriteEnable = DepthWriteEnable,
DepthCompareOp = DepthCompareOp,
DepthBoundsTestEnable = false,
StencilTestEnable = StencilTestEnable,
Front = stencilFront,
Back = stencilBack,
};
if (!_supportsExtDynamicState)
uint blendEnables = 0;
if (gd.IsMoltenVk && Internal.AttachmentIntegerFormatMask != 0)
{
rasterizationState.CullMode = CullMode;
rasterizationState.FrontFace = FrontFace;
// Blend can't be enabled for integer formats, so let's make sure it is disabled.
uint attachmentIntegerFormatMask = Internal.AttachmentIntegerFormatMask;
viewportState.ViewportCount = ViewportsCount;
viewportState.ScissorCount = ScissorsCount;
StencilOpState stencilFront = new(
StencilFrontFailOp,
StencilFrontPassOp,
StencilFrontDepthFailOp,
StencilFrontCompareOp);
StencilOpState stencilBack = new(
StencilBackFailOp,
StencilBackPassOp,
StencilBackDepthFailOp,
StencilBackCompareOp);
depthStencilState.Front = stencilFront;
depthStencilState.Back = stencilBack;
depthStencilState.StencilTestEnable = StencilTestEnable;
depthStencilState.DepthTestEnable = DepthTestEnable;
depthStencilState.DepthWriteEnable = DepthWriteEnable;
depthStencilState.DepthCompareOp = DepthCompareOp;
}
if (!_supportsExtDynamicState2.ExtendedDynamicState2)
{
inputAssemblyState.PrimitiveRestartEnable = PrimitiveRestartEnable;
rasterizationState.DepthBiasEnable = DepthBiasEnable;
rasterizationState.RasterizerDiscardEnable = RasterizerDiscardEnable;
}
if (!gd.Capabilities.SupportsExtendedDynamicState2.ExtendedDynamicState2PatchControlPoints)
{
tessellationState = new PipelineTessellationStateCreateInfo
while (attachmentIntegerFormatMask != 0)
{
SType = StructureType.PipelineTessellationStateCreateInfo,
PatchControlPoints = PatchControlPoints,
};
int i = BitOperations.TrailingZeroCount(attachmentIntegerFormatMask);
if (Internal.ColorBlendAttachmentState[i].BlendEnable)
{
blendEnables |= 1u << i;
}
Internal.ColorBlendAttachmentState[i].BlendEnable = false;
attachmentIntegerFormatMask &= ~(1u << i);
}
}
// Vendors other than NVIDIA have a bug where it enables logical operations even for float formats,
// so we need to force disable them here.
bool logicOpEnable = LogicOpEnable && (gd.Vendor == Vendor.Nvidia || Internal.LogicOpsAllowed);
PipelineColorBlendStateCreateInfo colorBlendState = new()
{
SType = StructureType.PipelineColorBlendStateCreateInfo,
LogicOpEnable = logicOpEnable,
LogicOp = LogicOp,
AttachmentCount = ColorBlendAttachmentStateCount,
PAttachments = pColorBlendAttachmentState,
LogicOpEnable = LogicOpEnable,
};
if (!gd.Capabilities.SupportsExtendedDynamicState2.ExtendedDynamicState2LogicOp)
{
colorBlendState.LogicOp = LogicOp;
}
if (!AdvancedBlendSrcPreMultiplied ||
!AdvancedBlendDstPreMultiplied ||
AdvancedBlendOverlap != BlendOverlapEXT.UncorrelatedExt)
@@ -631,99 +567,66 @@ namespace Ryujinx.Graphics.Vulkan
colorBlendState.PNext = &colorBlendAdvancedState;
}
bool supportsExtDynamicState = gd.Capabilities.SupportsExtendedDynamicState;
bool supportsFeedbackLoopDynamicState = gd.Capabilities.SupportsDynamicAttachmentFeedbackLoop;
DynamicState* dynamicStates = stackalloc DynamicState[MaxDynamicStatesCount];
uint dynamicStatesCount = 7;
int dynamicStatesCount = 7;
dynamicStates[0] = DynamicState.Viewport;
dynamicStates[1] = DynamicState.Scissor;
dynamicStates[2] = DynamicState.StencilCompareMask;
dynamicStates[3] = DynamicState.StencilWriteMask;
dynamicStates[4] = DynamicState.StencilReference;
dynamicStates[5] = DynamicState.BlendConstants;
dynamicStates[6] = DynamicState.DepthBias;
dynamicStates[2] = DynamicState.DepthBias;
dynamicStates[3] = DynamicState.StencilCompareMask;
dynamicStates[4] = DynamicState.StencilWriteMask;
dynamicStates[5] = DynamicState.StencilReference;
dynamicStates[6] = DynamicState.BlendConstants;
if (!isMoltenVk)
if (supportsExtDynamicState && (gd.SupportsMTL31 || !gd.IsMoltenVk))
{
//LineWidth dynamic state is only supported on macOS when using Metal Private API on newer version of MoltenVK
dynamicStates[dynamicStatesCount++] = DynamicState.LineWidth;
// Requires Metal 3.1 and new MoltenVK, however extended dynamic states extension is not
// available on older versions of MVK, so we can safely check only OS version.
dynamicStates[dynamicStatesCount++] = DynamicState.VertexInputBindingStrideExt;
}
if (_supportsExtDynamicState)
{
if (gd.SupportsMTL31 || !gd.IsMoltenVk)
{
// Requires Metal 3.1 and new MoltenVK, however extended dynamic states extension is not
// available on older versions of MVK, so we can safely check only OS version.
dynamicStates[dynamicStatesCount++] = DynamicState.VertexInputBindingStrideExt;
}
dynamicStates[0] = DynamicState.ViewportWithCountExt;
dynamicStates[1] = DynamicState.ScissorWithCountExt;
dynamicStates[dynamicStatesCount++] = DynamicState.CullModeExt;
dynamicStates[dynamicStatesCount++] = DynamicState.FrontFaceExt;
dynamicStates[dynamicStatesCount++] = DynamicState.DepthTestEnableExt;
dynamicStates[dynamicStatesCount++] = DynamicState.DepthWriteEnableExt;
dynamicStates[dynamicStatesCount++] = DynamicState.DepthCompareOpExt;
dynamicStates[dynamicStatesCount++] = DynamicState.StencilTestEnableExt;
dynamicStates[dynamicStatesCount++] = DynamicState.StencilOpExt;
dynamicStates[dynamicStatesCount++] = DynamicState.PrimitiveTopologyExt;
}
if (_supportsExtDynamicState2.ExtendedDynamicState2)
{
dynamicStates[dynamicStatesCount++] = DynamicState.DepthBiasEnableExt;
dynamicStates[dynamicStatesCount++] = DynamicState.RasterizerDiscardEnableExt;
dynamicStates[dynamicStatesCount++] = DynamicState.PrimitiveRestartEnableExt;
if (_supportsExtDynamicState2.ExtendedDynamicState2LogicOp)
{
dynamicStates[dynamicStatesCount++] = DynamicState.LogicOpExt;
}
if (_supportsExtDynamicState2.ExtendedDynamicState2PatchControlPoints)
{
dynamicStates[dynamicStatesCount++] = DynamicState.PatchControlPointsExt;
}
}
PipelineCreateFlags pipelineCreateFlags = 0;
if (gd.Capabilities.SupportsAttachmentFeedbackLoop && !_supportsFeedBackLoopDynamicState)
{
FeedbackLoopAspects aspects = FeedbackLoopAspects;
if ((aspects & FeedbackLoopAspects.Color) != 0)
{
pipelineCreateFlags |= PipelineCreateFlags.CreateColorAttachmentFeedbackLoopBitExt;
}
if ((aspects & FeedbackLoopAspects.Depth) != 0)
{
pipelineCreateFlags |= PipelineCreateFlags.CreateDepthStencilAttachmentFeedbackLoopBitExt;
}
}
if (_supportsFeedBackLoopDynamicState && FeedbackLoopDynamicState)
if (supportsFeedbackLoopDynamicState)
{
dynamicStates[dynamicStatesCount++] = DynamicState.AttachmentFeedbackLoopEnableExt;
FeedbackLoopDynamicState = false;
}
PipelineDynamicStateCreateInfo pipelineDynamicStateCreateInfo = new()
{
SType = StructureType.PipelineDynamicStateCreateInfo,
DynamicStateCount = dynamicStatesCount,
DynamicStateCount = (uint)dynamicStatesCount,
PDynamicStates = dynamicStates,
};
PipelineCreateFlags flags = 0;
if (gd.Capabilities.SupportsAttachmentFeedbackLoop)
{
FeedbackLoopAspects aspects = FeedbackLoopAspects;
if ((aspects & FeedbackLoopAspects.Color) != 0)
{
flags |= PipelineCreateFlags.CreateColorAttachmentFeedbackLoopBitExt;
}
if ((aspects & FeedbackLoopAspects.Depth) != 0)
{
flags |= PipelineCreateFlags.CreateDepthStencilAttachmentFeedbackLoopBitExt;
}
}
GraphicsPipelineCreateInfo pipelineCreateInfo = new()
{
SType = StructureType.GraphicsPipelineCreateInfo,
Flags = flags,
StageCount = StagesCount,
Flags = pipelineCreateFlags,
PStages = Stages.Pointer,
PVertexInputState = &vertexInputState,
PInputAssemblyState = &inputAssemblyState,
PTessellationState = &tessellationState,
PViewportState = &viewportState,
PRasterizationState = &rasterizationState,
PMultisampleState = &multisampleState,
@@ -734,11 +637,6 @@ namespace Ryujinx.Graphics.Vulkan
RenderPass = renderPass,
};
if (!gd.Capabilities.SupportsExtendedDynamicState2.ExtendedDynamicState2PatchControlPoints)
{
pipelineCreateInfo.PTessellationState = &tessellationState;
}
Result result = gd.Api.CreateGraphicsPipelines(device, cache, 1, &pipelineCreateInfo, null, &pipelineHandle);
if (throwOnError)
@@ -751,21 +649,21 @@ namespace Ryujinx.Graphics.Vulkan
return null;
}
// Restore previous blend enable values if we changed it.
while (blendEnables != 0)
{
int i = BitOperations.TrailingZeroCount(blendEnables);
Internal.ColorBlendAttachmentState[i].BlendEnable = true;
blendEnables &= ~(1u << i);
}
}
pipeline = new Auto<DisposablePipeline>(new DisposablePipeline(gd.Api, device, pipelineHandle));
program.AddGraphicsPipeline(ref Internal, pipeline);
// Restore previous blend enable values if we changed it.
while (_blendEnables != 0)
{
int i = BitOperations.TrailingZeroCount(_blendEnables);
Internal.ColorBlendAttachmentState[i].BlendEnable = true;
_blendEnables &= ~(1u << i);
}
return pipeline;
}
+21 -8
View File
@@ -11,17 +11,23 @@ namespace Ryujinx.Graphics.Vulkan
{
public ulong Id0;
public ulong Id1;
public ulong Id2;
public ulong Id3;
private readonly uint VertexAttributeDescriptionsCount => (byte)((Id0 >> 38) & 0xFF);
private readonly uint VertexBindingDescriptionsCount => (byte)((Id0 >> 46) & 0xFF);
private readonly uint ColorBlendAttachmentStateCount => (byte)((Id1 >> 8) & 0xFF);
private readonly bool HasDepthStencil => ((Id1 >> 63) & 0x1) != 0UL;
public ulong Id4;
public ulong Id5;
public ulong Id6;
public ulong Id7;
public ulong Id8;
private readonly uint VertexAttributeDescriptionsCount => (byte)((Id5 >> 38) & 0xFF);
private readonly uint VertexBindingDescriptionsCount => (byte)((Id5 >> 46) & 0xFF);
private readonly uint ColorBlendAttachmentStateCount => (byte)((Id6 >> 8) & 0xFF);
private readonly bool HasDepthStencil => ((Id6 >> 63) & 0x1) != 0UL;
public Array32<VertexInputAttributeDescription> VertexAttributeDescriptions;
public Array32<VertexInputBindingDescription> VertexBindingDescriptions;
public Array33<VertexInputBindingDescription> VertexBindingDescriptions;
public Array8<PipelineColorBlendAttachmentState> ColorBlendAttachmentState;
public Array9<Format> AttachmentFormats;
public uint AttachmentIntegerFormatMask;
@@ -34,7 +40,9 @@ namespace Ryujinx.Graphics.Vulkan
public bool Equals(ref PipelineUid other)
{
if (!Unsafe.As<ulong, Vector256<byte>>(ref Id0).Equals(Unsafe.As<ulong, Vector256<byte>>(ref other.Id0)))
if (!Unsafe.As<ulong, Vector256<byte>>(ref Id0).Equals(Unsafe.As<ulong, Vector256<byte>>(ref other.Id0)) ||
!Unsafe.As<ulong, Vector256<byte>>(ref Id4).Equals(Unsafe.As<ulong, Vector256<byte>>(ref other.Id4)) ||
!Unsafe.As<ulong, Vector128<byte>>(ref Id7).Equals(Unsafe.As<ulong, Vector128<byte>>(ref other.Id7)))
{
return false;
}
@@ -72,7 +80,12 @@ namespace Ryujinx.Graphics.Vulkan
ulong hash64 = Id0 * 23 ^
Id1 * 23 ^
Id2 * 23 ^
Id3 * 23;
Id3 * 23 ^
Id4 * 23 ^
Id5 * 23 ^
Id6 * 23 ^
Id7 * 23 ^
Id8 * 23;
ReadOnlySpan<VertexInputAttributeDescription> vertexAttributeDescriptionsSpan = VertexAttributeDescriptions.AsSpan();
@@ -6,7 +6,6 @@ using System.Collections.Generic;
using System.Collections.ObjectModel;
using System.Linq;
using System.Threading.Tasks;
using PrimitiveTopology = Silk.NET.Vulkan.PrimitiveTopology;
namespace Ryujinx.Graphics.Vulkan
{
@@ -61,7 +60,7 @@ namespace Ryujinx.Graphics.Vulkan
private ProgramPipelineState _state;
private DisposableRenderPass _dummyRenderPass;
private readonly Task _compileTask;
private ShaderCompilationRequest _compileRequest;
private bool _firstBackgroundUse;
public ShaderCollection(
@@ -140,7 +139,7 @@ namespace Ryujinx.Graphics.Vulkan
// Updating buffer texture bindings using template updates crashes the Adreno driver on Windows.
UpdateTexturesWithoutTemplate = gd.IsQualcommProprietary && usesBufferTextures;
_compileTask = Task.CompletedTask;
_compileRequest = new ShaderCompilationRequest(Task.CompletedTask);
_firstBackgroundUse = false;
}
@@ -154,7 +153,9 @@ namespace Ryujinx.Graphics.Vulkan
{
_state = state;
_compileTask = BackgroundCompilation();
_compileRequest = gd.ShaderCompilationQueue != null
? gd.ShaderCompilationQueue.Add(BackgroundCompilation)
: new ShaderCompilationRequest(BackgroundCompilationAsync());
_firstBackgroundUse = !fromCache;
}
@@ -459,10 +460,25 @@ namespace Ryujinx.Graphics.Vulkan
return (buffer, texture);
}
private async Task BackgroundCompilation()
private async Task BackgroundCompilationAsync()
{
await Task.WhenAll(_shaders.Select(shader => shader.CompileTask));
BackgroundCompilationImpl();
}
private void BackgroundCompilation()
{
foreach (var shader in _shaders)
{
shader.CompileTask.Wait();
}
BackgroundCompilationImpl();
}
private void BackgroundCompilationImpl()
{
if (Array.Exists(_shaders, shader => shader.CompileStatus == ProgramLinkStatus.Failure))
{
LinkStatus = ProgramLinkStatus.Failure;
@@ -539,7 +555,7 @@ namespace Ryujinx.Graphics.Vulkan
public void CreateBackgroundComputePipeline()
{
PipelineState pipeline = new();
pipeline.Initialize(_gd.Capabilities);
pipeline.Initialize();
pipeline.Stages[0] = _shaders[0].GetInfo();
pipeline.StagesCount = 1;
@@ -605,11 +621,11 @@ namespace Ryujinx.Graphics.Vulkan
}
}
if (!_compileTask.IsCompleted)
if (!_compileRequest.IsCompleted)
{
if (blocking)
{
_compileTask.Wait();
_compileRequest.Wait();
if (LinkStatus == ProgramLinkStatus.Failure)
{
@@ -0,0 +1,131 @@
using System;
using System.Collections.Concurrent;
using System.Threading;
namespace Ryujinx.Graphics.Vulkan
{
class ShaderCompilationQueue
{
private const int MaxParallelCompilations = 8;
private const int MaxThreadStackSize = 2 * 1024 * 1024; // MB
private struct Request
{
public readonly ulong Id;
public readonly Action Callback;
public Request(ulong id, Action callback)
{
Id = id;
Callback = callback;
}
}
private readonly Thread[] _workerThreads;
private readonly CancellationTokenSource _cts;
private readonly BlockingCollection<Request>[] _queues;
private readonly ulong[] _finishedIds;
private ulong _currentId;
private int _currentQueueIndex;
public ShaderCompilationQueue()
{
_workerThreads = new Thread[MaxParallelCompilations];
_queues = new BlockingCollection<Request>[MaxParallelCompilations];
_finishedIds = new ulong[MaxParallelCompilations];
_cts = new CancellationTokenSource();
for (int i = 0; i < MaxParallelCompilations; i++)
{
_queues[i] = new BlockingCollection<Request>();
Thread thread = new Thread(DoWork, MaxThreadStackSize) { Name = $"BackgroundShaderCompiler.{i}" };
thread.IsBackground = true;
thread.Start(i);
_workerThreads[i] = thread;
}
}
private void DoWork(object threadId)
{
int queueIndex = (int)threadId;
try
{
var queue = _queues[queueIndex];
foreach (var request in queue.GetConsumingEnumerable(_cts.Token))
{
request.Callback();
lock (queue)
{
_finishedIds[queueIndex] = request.Id;
Monitor.PulseAll(queue);
}
}
}
catch (OperationCanceledException)
{
}
}
public ShaderCompilationRequest Add(Action callback)
{
ulong newId = Interlocked.Increment(ref _currentId);
// Let's keep rotating between the queues to increase the chances
// that the selected queue thread is currently idle.
int queueIndex = Interlocked.Increment(ref _currentQueueIndex) % MaxParallelCompilations;
_queues[queueIndex].Add(new Request(newId, callback));
return new ShaderCompilationRequest(this, queueIndex, newId);
}
public void Wait(int queueIndex, ulong id)
{
var queue = _queues[queueIndex];
lock (queue)
{
while (_finishedIds[queueIndex] < id)
{
Monitor.Wait(queue);
}
}
}
public bool IsCompleted(int queueIndex, ulong id)
{
var queue = _queues[queueIndex];
lock (queue)
{
return _finishedIds[queueIndex] >= id;
}
}
public void Dispose()
{
for (int i = 0; i < MaxParallelCompilations; i++)
{
_queues[i].CompleteAdding();
}
_cts.Cancel();
for (int i = 0; i < MaxParallelCompilations; i++)
{
_workerThreads[i].Join();
_queues[i].Dispose();
}
_cts.Dispose();
}
}
}
@@ -0,0 +1,55 @@
using System.Threading.Tasks;
namespace Ryujinx.Graphics.Vulkan
{
struct ShaderCompilationRequest
{
private readonly Task _task;
private readonly ShaderCompilationQueue _queue;
private readonly int _queueIndex;
private readonly ulong _requestId;
public bool IsCompleted
{
get
{
if (_task != null)
{
return _task.IsCompleted;
}
else
{
return _queue.IsCompleted(_queueIndex, _requestId);
}
}
}
public ShaderCompilationRequest(Task task)
{
_task = task;
_queue = null;
_queueIndex = 0;
_requestId = 0;
}
public ShaderCompilationRequest(ShaderCompilationQueue queue, int queueIndex, ulong requestId)
{
_task = null;
_queue = queue;
_queueIndex = queueIndex;
_requestId = requestId;
}
public void Wait()
{
if (_task != null)
{
_task.Wait();
}
else
{
_queue.Wait(_queueIndex, _requestId);
}
}
}
}
+1 -1
View File
@@ -266,7 +266,7 @@ namespace Ryujinx.Graphics.Vulkan
public void FreeCompleted()
{
FenceHolder signalledFence = null;
while (_pendingCopies.TryPeek(out PendingCopy pc) && pc.Fence != null && (pc.Fence == signalledFence || pc.Fence.IsSignaled()))
while (_pendingCopies.TryPeek(out PendingCopy pc) && pc.Fence != null && (pc.Fence == signalledFence || pc.Fence.IsSignaledLazy()))
{
signalledFence = pc.Fence; // Already checked - don't need to do it again.
PendingCopy dequeued = _pendingCopies.Dequeue();
@@ -71,10 +71,7 @@ namespace Ryujinx.Graphics.Vulkan
_buffer = autoBuffer;
if (!gd.Capabilities.SupportsExtendedDynamicState)
{
state.Internal.VertexBindingDescriptions[DescriptorIndex].Stride = (uint)stride;
}
state.Internal.VertexBindingDescriptions[DescriptorIndex].Stride = (uint)stride;
}
return;
@@ -82,11 +79,8 @@ namespace Ryujinx.Graphics.Vulkan
autoBuffer = gd.BufferManager.GetBuffer(cbs.CommandBuffer, _handle, false, out int size);
if (!gd.Capabilities.SupportsExtendedDynamicState)
{
// The original stride must be reapplied in case it was rewritten.
state.Internal.VertexBindingDescriptions[DescriptorIndex].Stride = (uint)_stride;
}
// The original stride must be reapplied in case it was rewritten.
state.Internal.VertexBindingDescriptions[DescriptorIndex].Stride = (uint)_stride;
if (_offset >= size)
{
@@ -101,7 +101,7 @@ namespace Ryujinx.Graphics.Vulkan
_strides[i] = strides[i];
}
if (_gd.Capabilities.SupportsExtendedDynamicState && (_gd.SupportsMTL31 || !_gd.IsMoltenVk))
if (_gd.Capabilities.SupportsExtendedDynamicState)
{
_gd.ExtendedDynamicStateApi.CmdBindVertexBuffers2(
cbs.CommandBuffer,
@@ -25,7 +25,6 @@ namespace Ryujinx.Graphics.Vulkan
[
ExtConditionalRendering.ExtensionName,
ExtExtendedDynamicState.ExtensionName,
ExtExtendedDynamicState2.ExtensionName,
ExtTransformFeedback.ExtensionName,
KhrDrawIndirectCount.ExtensionName,
KhrPushDescriptor.ExtensionName,
@@ -320,17 +319,6 @@ namespace Ryujinx.Graphics.Vulkan
features2.PNext = &supportedFeaturesCustomBorderColor;
}
PhysicalDeviceExtendedDynamicState2FeaturesEXT supportedFeaturesExtExtendedDynamicState2 = new()
{
SType = StructureType.PhysicalDeviceExtendedDynamicState2FeaturesExt,
PNext = features2.PNext,
};
if (physicalDevice.IsDeviceExtensionPresent(ExtExtendedDynamicState2.ExtensionName))
{
features2.PNext = &supportedFeaturesExtExtendedDynamicState2;
}
PhysicalDevicePrimitiveTopologyListRestartFeaturesEXT supportedFeaturesPrimitiveTopologyListRestart = new()
{
SType = StructureType.PhysicalDevicePrimitiveTopologyListRestartFeaturesExt,
@@ -455,7 +443,6 @@ namespace Ryujinx.Graphics.Vulkan
TessellationShader = supportedFeatures.TessellationShader,
VertexPipelineStoresAndAtomics = supportedFeatures.VertexPipelineStoresAndAtomics,
RobustBufferAccess = useRobustBufferAccess,
WideLines = supportedFeatures.WideLines,
SampleRateShading = supportedFeatures.SampleRateShading,
ShaderStorageImageExtendedFormats = supportedFeatures.ShaderStorageImageExtendedFormats,
};
@@ -508,20 +495,6 @@ namespace Ryujinx.Graphics.Vulkan
pExtendedFeatures = &featuresExtendedDynamicState;
if (physicalDevice.IsDeviceExtensionPresent(ExtExtendedDynamicState2.ExtensionName))
{
var featuresExtendedDynamicState2 = new PhysicalDeviceExtendedDynamicState2FeaturesEXT()
{
SType = StructureType.PhysicalDeviceExtendedDynamicState2FeaturesExt,
PNext = pExtendedFeatures,
ExtendedDynamicState2 = supportedFeaturesExtExtendedDynamicState2.ExtendedDynamicState2,
ExtendedDynamicState2LogicOp = supportedFeaturesExtExtendedDynamicState2.ExtendedDynamicState2LogicOp,
ExtendedDynamicState2PatchControlPoints = supportedFeaturesExtExtendedDynamicState2.ExtendedDynamicState2PatchControlPoints,
};
pExtendedFeatures = &featuresExtendedDynamicState2;
}
PhysicalDeviceVulkan11Features featuresVk11 = new()
{
SType = StructureType.PhysicalDeviceVulkan11Features,
+15 -29
View File
@@ -39,7 +39,6 @@ namespace Ryujinx.Graphics.Vulkan
internal KhrSwapchain SwapchainApi { get; private set; }
internal ExtConditionalRendering ConditionalRenderingApi { get; private set; }
internal ExtExtendedDynamicState ExtendedDynamicStateApi { get; private set; }
internal ExtExtendedDynamicState2 ExtendedDynamicState2Api { get; private set; }
internal KhrPushDescriptor PushDescriptorApi { get; private set; }
internal ExtTransformFeedback TransformFeedbackApi { get; private set; }
internal KhrDrawIndirectCount DrawIndirectCountApi { get; private set; }
@@ -56,6 +55,7 @@ namespace Ryujinx.Graphics.Vulkan
internal CommandBufferPool CommandBufferPool { get; private set; }
internal PipelineLayoutCache PipelineLayoutCache { get; private set; }
internal BackgroundResources BackgroundResources { get; private set; }
internal ShaderCompilationQueue ShaderCompilationQueue { get; private set; }
internal Action<Action> InterruptAction { get; private set; }
internal SyncManager SyncManager { get; private set; }
@@ -97,6 +97,7 @@ namespace Ryujinx.Graphics.Vulkan
internal bool IsNvidiaPreTuring { get; private set; }
internal bool IsIntelArc { get; private set; }
internal bool IsQualcommProprietary { get; private set; }
internal bool IsTurnip { get; private set; }
internal bool IsMoltenVk { get; private set; }
internal bool SupportsMTL31 { get; private set; }
internal bool IsTBDR { get; private set; }
@@ -128,6 +129,12 @@ namespace Ryujinx.Graphics.Vulkan
// Any device running on MacOS is using MoltenVK, even Intel and AMD vendors.
IsMoltenVk = true;
// The default thread stack size on MacOS is low, and can cause stack overflow
// on SPIR-V Cross during shader compilation.
// As a workaround, we use this custom queue which allows us to specify the stack
// size of the threads used for compilation.
ShaderCompilationQueue = new ShaderCompilationQueue();
}
SupportsMTL31 = OperatingSystem.IsMacOSVersionAtLeast(14);
@@ -147,11 +154,6 @@ namespace Ryujinx.Graphics.Vulkan
ExtendedDynamicStateApi = extendedDynamicStateApi;
}
if (Api.TryGetDeviceExtension(_instance.Instance, _device, out ExtExtendedDynamicState2 extendedDynamicState2Api))
{
ExtendedDynamicState2Api = extendedDynamicState2Api;
}
if (Api.TryGetDeviceExtension(_instance.Instance, _device, out KhrPushDescriptor pushDescriptorApi))
{
PushDescriptorApi = pushDescriptorApi;
@@ -254,11 +256,6 @@ namespace Ryujinx.Graphics.Vulkan
SType = StructureType.PhysicalDevicePrimitiveTopologyListRestartFeaturesExt,
};
PhysicalDeviceExtendedDynamicState2FeaturesEXT featuresExtendedDynamicState2 = new()
{
SType = StructureType.PhysicalDeviceExtendedDynamicState2FeaturesExt,
};
PhysicalDeviceRobustness2FeaturesEXT featuresRobustness2 = new()
{
SType = StructureType.PhysicalDeviceRobustness2FeaturesExt,
@@ -299,12 +296,6 @@ namespace Ryujinx.Graphics.Vulkan
features2.PNext = &featuresPrimitiveTopologyListRestart;
}
if (_physicalDevice.IsDeviceExtensionPresent(ExtExtendedDynamicState2.ExtensionName))
{
featuresExtendedDynamicState2.PNext = features2.PNext;
features2.PNext = &featuresExtendedDynamicState2;
}
if (_physicalDevice.IsDeviceExtensionPresent("VK_EXT_robustness2"))
{
featuresRobustness2.PNext = features2.PNext;
@@ -413,6 +404,8 @@ namespace Ryujinx.Graphics.Vulkan
IsFeedbackLoopDevice = IsAmdRdna3;
IsTurnip = GpuRenderer.StartsWith("Turnip");
if (Vendor == Vendor.Nvidia)
{
Match match = VendorUtils.NvidiaConsumerClassRegex().Match(GpuRenderer);
@@ -445,10 +438,6 @@ namespace Ryujinx.Graphics.Vulkan
properties.Limits.FramebufferDepthSampleCounts &
properties.Limits.FramebufferStencilSampleCounts;
// Temporarily disable this, can be added back at a later date, make it easy to re-enable.
// Disabled because currently causing Device Lost error on NVIDIA.
featuresExtendedDynamicState2.ExtendedDynamicState2PatchControlPoints = false;
Capabilities = new HardwareCapabilities(
_physicalDevice.IsDeviceExtensionPresent("VK_EXT_index_type_uint8"),
supportsCustomBorderColor,
@@ -465,8 +454,6 @@ namespace Ryujinx.Graphics.Vulkan
features2.Features.ShaderStorageImageMultisample,
_physicalDevice.IsDeviceExtensionPresent(ExtConditionalRendering.ExtensionName),
_physicalDevice.IsDeviceExtensionPresent(ExtExtendedDynamicState.ExtensionName),
featuresExtendedDynamicState2,
_physicalDevice.PhysicalDeviceProperties.Limits.MaxTessellationPatchSize,
features2.Features.MultiViewport && !(IsMoltenVk && Vendor == Vendor.Amd), // Workaround for AMD on MoltenVK issue
featuresRobustness2.NullDescriptor || IsMoltenVk,
supportsPushDescriptors,
@@ -482,7 +469,6 @@ namespace Ryujinx.Graphics.Vulkan
_physicalDevice.IsDeviceExtensionPresent("VK_NV_viewport_array2"),
_physicalDevice.IsDeviceExtensionPresent(ExtExternalMemoryHost.ExtensionName),
supportsDepthClipControl && featuresDepthClipControl.DepthClipControl,
_physicalDevice.PhysicalDeviceFeatures.WideLines,
supportsAttachmentFeedbackLoop && featuresAttachmentFeedbackLoop.AttachmentFeedbackLoopLayout && IsFeedbackLoopDevice,
supportsDynamicAttachmentFeedbackLoop && featuresDynamicAttachmentFeedbackLoop.AttachmentFeedbackLoopDynamicState && IsFeedbackLoopDevice,
propertiesSubgroup.SubgroupSize,
@@ -500,7 +486,7 @@ namespace Ryujinx.Graphics.Vulkan
Api.TryGetDeviceExtension(_instance.Instance, _device, out ExtExternalMemoryHost hostMemoryApi);
HostMemoryAllocator = new HostMemoryAllocator(MemoryAllocator, Api, hostMemoryApi, _device);
CommandBufferPool = new CommandBufferPool(Api, _device, Queue, QueueLock, queueFamilyIndex, IsQualcommProprietary);
CommandBufferPool = new CommandBufferPool(Api, _device, Queue, QueueLock, queueFamilyIndex, IsQualcommProprietary, IsTurnip);
PipelineLayoutCache = new PipelineLayoutCache();
@@ -801,6 +787,7 @@ namespace Ryujinx.Graphics.Vulkan
supportsGeometryShader: Capabilities.SupportsGeometryShader,
supportsGeometryShaderPassthrough: Capabilities.SupportsGeometryShaderPassthrough,
supportsTransformFeedback: Capabilities.SupportsTransformFeedback,
supportsImageBufferPixelAlignment: false,
supportsImageLoadFormatted: features2.Features.ShaderStorageImageReadWithoutFormat,
supportsLayerVertexTessellation: featuresVk12.ShaderOutputLayer,
supportsMismatchingViewFormat: true,
@@ -814,6 +801,7 @@ namespace Ryujinx.Graphics.Vulkan
supportsShaderNonUniformIndexing:
featuresVk12.ShaderSampledImageArrayNonUniformIndexing &&
featuresVk12.ShaderStorageImageArrayNonUniformIndexing,
supportsTextureBufferPixelAlignment: false,
supportsTextureGatherOffsets: features2.Features.ShaderImageGatherExtended,
supportsTextureShadowLod: false,
supportsVertexStoreAndAtomics: features2.Features.VertexPipelineStoresAndAtomics,
@@ -822,10 +810,6 @@ namespace Ryujinx.Graphics.Vulkan
supportsViewportSwizzle: false,
supportsIndirectParameters: true,
supportsDepthClipControl: Capabilities.SupportsDepthClipControl,
supportsExtendedDynamicState: Capabilities.SupportsExtendedDynamicState,
supportsExtendedDynamicState2: Capabilities.SupportsExtendedDynamicState2.ExtendedDynamicState2,
supportsLogicOpDynamicState: Capabilities.SupportsExtendedDynamicState2.ExtendedDynamicState2LogicOp,
supportsPatchControlPointsDynamicState: Capabilities.SupportsExtendedDynamicState2.ExtendedDynamicState2PatchControlPoints,
uniformBufferSetIndex: PipelineBase.UniformSetIndex,
storageBufferSetIndex: PipelineBase.StorageSetIndex,
textureSetIndex: PipelineBase.TextureSetIndex,
@@ -1140,6 +1124,8 @@ namespace Ryujinx.Graphics.Vulkan
SurfaceApi.DestroySurface(_instance.Instance, _surface, null);
ShaderCompilationQueue?.Dispose();
Api.DestroyDevice(_device, null);
_debugMessenger.Dispose();
@@ -26,12 +26,12 @@ namespace Ryujinx.HLE.HOS.Kernel.Common
{
MemoryArrange.MemoryArrange4GiB or
MemoryArrange.MemoryArrange4GiBSystemDev or
MemoryArrange.MemoryArrange6GiBAppletDev => 3236 * MiB,
MemoryArrange.MemoryArrange6GiBAppletDev => 3173 * MiB,
MemoryArrange.MemoryArrange4GiBAppletDev => 2048 * MiB,
MemoryArrange.MemoryArrange6GiB => 4867 * MiB,
MemoryArrange.MemoryArrange8GiB => 6915 * MiB,
MemoryArrange.MemoryArrange10GiB => 8963 * MiB,
MemoryArrange.MemoryArrange12GiB => 11011 * MiB,
MemoryArrange.MemoryArrange6GiB => 4804 * MiB,
MemoryArrange.MemoryArrange8GiB => 6852 * MiB,
MemoryArrange.MemoryArrange10GiB => 8900 * MiB,
MemoryArrange.MemoryArrange12GiB => 10948 * MiB,
_ => throw new ArgumentException($"Invalid memory arrange \"{arrange}\"."),
};
}
@@ -203,9 +203,7 @@ namespace Ryujinx.HLE.HOS.Kernel.Memory
heapRegion.Size = memConfig switch {
MemoryConfiguration.MemoryConfiguration8GiB => 0x200000000u,
MemoryConfiguration.MemoryConfiguration10GiB when !isHeapLimited => 0x280000000u,
MemoryConfiguration.MemoryConfiguration10GiB => 0x200000000u,
MemoryConfiguration.MemoryConfiguration12GiB when !isHeapLimited => 0x300000000u,
MemoryConfiguration.MemoryConfiguration12GiB => 0x200000000u,
_ => 0x180000000u
};
stackRegion.Size = 0;
@@ -240,9 +238,7 @@ namespace Ryujinx.HLE.HOS.Kernel.Memory
heapRegion.Size = memConfig switch {
MemoryConfiguration.MemoryConfiguration8GiB => 0x200000000u,
MemoryConfiguration.MemoryConfiguration10GiB when !isHeapLimited => 0x280000000u,
MemoryConfiguration.MemoryConfiguration10GiB => 0x200000000u,
MemoryConfiguration.MemoryConfiguration12GiB when !isHeapLimited => 0x300000000u,
MemoryConfiguration.MemoryConfiguration12GiB => 0x200000000u,
_ => 0x180000000u
};
stackRegion.Size = 1UL << (addressSpaceWidth - 8);
@@ -261,9 +257,7 @@ namespace Ryujinx.HLE.HOS.Kernel.Memory
heapRegion.Size = memConfig switch {
MemoryConfiguration.MemoryConfiguration8GiB => 0x200000000u,
MemoryConfiguration.MemoryConfiguration10GiB when !isHeapLimited => 0x280000000u,
MemoryConfiguration.MemoryConfiguration10GiB => 0x200000000u,
MemoryConfiguration.MemoryConfiguration12GiB when !isHeapLimited => 0x300000000u,
MemoryConfiguration.MemoryConfiguration12GiB => 0x200000000u,
_ => 0x180000000u
};
stackRegion.Size = 0x80000000;
@@ -21,21 +21,6 @@ namespace Ryujinx.HLE.HOS.Services.Am.AppletAE.AllSystemAppletProxiesService.Sys
return ResultCode.Success;
}
[CommandCmif(3)] // 20.0.0+
// CreateLibraryAppletEx(u32, u32, u64) -> object<nn::am::service::ILibraryAppletAccessor>
public ResultCode CreateLibraryAppletEx(ServiceCtx context)
{
AppletId appletId = (AppletId)context.RequestData.ReadInt32();
_ = context.RequestData.ReadInt32(); // libraryAppletMode
_ = context.RequestData.ReadUInt64(); // threadId
MakeObject(context, new ILibraryAppletAccessor(appletId, context.Device.System));
return ResultCode.Success;
}
[CommandCmif(10)]
// CreateStorage(u64) -> object<nn::am::service::IStorage>
public ResultCode CreateStorage(ServiceCtx context)
@@ -7,7 +7,6 @@ using LibHac.Tools.Fs;
using LibHac.Tools.FsSystem;
using LibHac.Tools.FsSystem.NcaUtils;
using Ryujinx.Common.Logging;
using Ryujinx.Graphics.Gpu;
using Ryujinx.HLE.Loaders.Executables;
using Ryujinx.HLE.Loaders.Processes.Extensions;
using System.Collections.Concurrent;
@@ -24,62 +23,7 @@ namespace Ryujinx.HLE.Loaders.Processes
private ulong _latestPid;
private readonly object _pidLock = new();
#nullable enable
public ProcessResult? ActiveApplication
{
get
{
lock (_pidLock)
{
// Check if _latestPid is still valid
if (_latestPid == 0)
{
return null;
}
// Verify process still exists in kernel (authoritative source)
if (!_device.System.KernelContext.Processes.TryGetValue(_latestPid, out HOS.Kernel.Process.KProcess? kernelProcess))
{
// Process no longer exists in kernel, clear stale state
Logger.Warning?.Print(LogClass.Loader,
$"ActiveApplication PID {_latestPid} no longer exists in kernel, clearing stale state");
_processesByPid.TryRemove(_latestPid, out _);
_latestPid = 0;
return null;
}
// Verify process still exists in ProcessLoader's dictionary
if (_processesByPid.TryGetValue(_latestPid, out ProcessResult? processResult))
{
// Additional check: verify process state
if (kernelProcess.State == HOS.Kernel.Process.ProcessState.Exited ||
kernelProcess.State == HOS.Kernel.Process.ProcessState.Exiting)
{
Logger.Warning?.Print(LogClass.Loader,
$"ActiveApplication PID {_latestPid} is in state {kernelProcess.State}, clearing");
_processesByPid.TryRemove(_latestPid, out _);
_latestPid = 0;
return null;
}
return processResult;
}
// Fallback: clear stale PID if not in our dictionary
Logger.Warning?.Print(LogClass.Loader,
$"ActiveApplication PID {_latestPid} not in ProcessLoader dictionary, clearing");
_latestPid = 0;
return null;
}
}
}
#nullable disable
public ProcessResult ActiveApplication => _processesByPid[_latestPid];
public ProcessLoader(Switch device)
{
@@ -282,7 +226,7 @@ namespace Ryujinx.HLE.Loaders.Processes
}
// Explicitly null TitleId to disable the shader cache.
GraphicsConfig.TitleId = null;
Graphics.Gpu.GraphicsConfig.TitleId = null;
_device.Gpu.HostInitalized.Set();
ProcessResult processResult = ProcessLoaderHelper.LoadNsos(_device,
@@ -321,37 +265,5 @@ namespace Ryujinx.HLE.Loaders.Processes
return false;
}
/// <summary>
/// Clears a specific process from the ProcessLoader's tracking.
/// This should be called when a process exits or is terminated.
/// </summary>
/// <param name="pid">The process ID to clear</param>
public void ClearProcess(ulong pid)
{
lock (_pidLock)
{
if (_processesByPid.TryRemove(pid, out _))
{
if (_latestPid == pid)
{
_latestPid = 0;
}
}
}
}
/// <summary>
/// Clears all processes from the ProcessLoader's tracking.
/// This should be called during system shutdown.
/// </summary>
public void ClearAllProcesses()
{
lock (_pidLock)
{
_processesByPid.Clear();
_latestPid = 0;
}
}
}
}
-1
View File
@@ -208,7 +208,6 @@ namespace Ryujinx.HLE
{
if (disposing)
{
Processes.ClearAllProcesses();
System.Dispose();
AudioDeviceDriver.Dispose();
FileSystem.Dispose();
+1 -1
View File
@@ -116,7 +116,7 @@ namespace Ryujinx.ShaderTools
if (options.VertexPassthrough)
{
program = translatorContext.GenerateVertexPassthroughForCompute();
(program, _) = translatorContext.GenerateVertexPassthroughForCompute();
}
else
{