Restride vertex buffer when stride causes attributes to misalign in Vulkan. (#3679)

* Vertex Buffer Alignment part 1

* Update CacheByRange

* Add Stride Change compute shader, fix storage buffers in helpers

* An AMD exclusive

* Reword

* Change rules - stride conversion when attrs misalign

* Fix stupid mistake

* Fix background pipeline compile

* Improve a few things.

* Fix some feedback

* Address Feedback

(the shader binary didn't change when i changed the source to use the subgroup size)

* Fix bug where rewritten buffer would be disposed instantly.
This commit is contained in:
riperiperi 2022-09-09 00:30:19 +01:00 committed by GitHub
parent ee1825219b
commit c6d82209ab
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GPG Key ID: 4AEE18F83AFDEB23
18 changed files with 1069 additions and 120 deletions

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@ -151,6 +151,190 @@ namespace Ryujinx.Graphics.GAL
public static class FormatExtensions public static class FormatExtensions
{ {
/// <summary>
/// The largest scalar size for a buffer format.
/// </summary>
public const int MaxBufferFormatScalarSize = 4;
/// <summary>
/// Gets the byte size for a single component of this format, or its packed size.
/// </summary>
/// <param name="format">Texture format</param>
/// <returns>Byte size for a single component, or packed size</returns>
public static int GetScalarSize(this Format format)
{
switch (format)
{
case Format.R8Unorm:
case Format.R8Snorm:
case Format.R8Uint:
case Format.R8Sint:
case Format.R8G8Unorm:
case Format.R8G8Snorm:
case Format.R8G8Uint:
case Format.R8G8Sint:
case Format.R8G8B8Unorm:
case Format.R8G8B8Snorm:
case Format.R8G8B8Uint:
case Format.R8G8B8Sint:
case Format.R8G8B8A8Unorm:
case Format.R8G8B8A8Snorm:
case Format.R8G8B8A8Uint:
case Format.R8G8B8A8Sint:
case Format.R8G8B8A8Srgb:
case Format.R4G4Unorm:
case Format.R8Uscaled:
case Format.R8Sscaled:
case Format.R8G8Uscaled:
case Format.R8G8Sscaled:
case Format.R8G8B8Uscaled:
case Format.R8G8B8Sscaled:
case Format.R8G8B8A8Uscaled:
case Format.R8G8B8A8Sscaled:
case Format.B8G8R8A8Unorm:
case Format.B8G8R8A8Srgb:
return 1;
case Format.R16Float:
case Format.R16Unorm:
case Format.R16Snorm:
case Format.R16Uint:
case Format.R16Sint:
case Format.R16G16Float:
case Format.R16G16Unorm:
case Format.R16G16Snorm:
case Format.R16G16Uint:
case Format.R16G16Sint:
case Format.R16G16B16Float:
case Format.R16G16B16Unorm:
case Format.R16G16B16Snorm:
case Format.R16G16B16Uint:
case Format.R16G16B16Sint:
case Format.R16G16B16A16Float:
case Format.R16G16B16A16Unorm:
case Format.R16G16B16A16Snorm:
case Format.R16G16B16A16Uint:
case Format.R16G16B16A16Sint:
case Format.R4G4B4A4Unorm:
case Format.R5G5B5X1Unorm:
case Format.R5G5B5A1Unorm:
case Format.R5G6B5Unorm:
case Format.R16Uscaled:
case Format.R16Sscaled:
case Format.R16G16Uscaled:
case Format.R16G16Sscaled:
case Format.R16G16B16Uscaled:
case Format.R16G16B16Sscaled:
case Format.R16G16B16A16Uscaled:
case Format.R16G16B16A16Sscaled:
case Format.B5G6R5Unorm:
case Format.B5G5R5A1Unorm:
case Format.A1B5G5R5Unorm:
return 2;
case Format.R32Float:
case Format.R32Uint:
case Format.R32Sint:
case Format.R32G32Float:
case Format.R32G32Uint:
case Format.R32G32Sint:
case Format.R32G32B32Float:
case Format.R32G32B32Uint:
case Format.R32G32B32Sint:
case Format.R32G32B32A32Float:
case Format.R32G32B32A32Uint:
case Format.R32G32B32A32Sint:
case Format.R10G10B10A2Unorm:
case Format.R10G10B10A2Uint:
case Format.R11G11B10Float:
case Format.R9G9B9E5Float:
case Format.R32Uscaled:
case Format.R32Sscaled:
case Format.R32G32Uscaled:
case Format.R32G32Sscaled:
case Format.R32G32B32Uscaled:
case Format.R32G32B32Sscaled:
case Format.R32G32B32A32Uscaled:
case Format.R32G32B32A32Sscaled:
case Format.R10G10B10A2Snorm:
case Format.R10G10B10A2Sint:
case Format.R10G10B10A2Uscaled:
case Format.R10G10B10A2Sscaled:
return 4;
case Format.S8Uint:
return 1;
case Format.D16Unorm:
return 2;
case Format.S8UintD24Unorm:
case Format.D32Float:
case Format.D24UnormS8Uint:
return 4;
case Format.D32FloatS8Uint:
return 8;
case Format.Bc1RgbaUnorm:
case Format.Bc1RgbaSrgb:
return 8;
case Format.Bc2Unorm:
case Format.Bc3Unorm:
case Format.Bc2Srgb:
case Format.Bc3Srgb:
case Format.Bc4Unorm:
case Format.Bc4Snorm:
case Format.Bc5Unorm:
case Format.Bc5Snorm:
case Format.Bc7Unorm:
case Format.Bc7Srgb:
case Format.Bc6HSfloat:
case Format.Bc6HUfloat:
return 16;
case Format.Etc2RgbUnorm:
case Format.Etc2RgbPtaUnorm:
case Format.Etc2RgbSrgb:
case Format.Etc2RgbPtaSrgb:
return 8;
case Format.Etc2RgbaUnorm:
case Format.Etc2RgbaSrgb:
return 16;
case Format.Astc4x4Unorm:
case Format.Astc5x4Unorm:
case Format.Astc5x5Unorm:
case Format.Astc6x5Unorm:
case Format.Astc6x6Unorm:
case Format.Astc8x5Unorm:
case Format.Astc8x6Unorm:
case Format.Astc8x8Unorm:
case Format.Astc10x5Unorm:
case Format.Astc10x6Unorm:
case Format.Astc10x8Unorm:
case Format.Astc10x10Unorm:
case Format.Astc12x10Unorm:
case Format.Astc12x12Unorm:
case Format.Astc4x4Srgb:
case Format.Astc5x4Srgb:
case Format.Astc5x5Srgb:
case Format.Astc6x5Srgb:
case Format.Astc6x6Srgb:
case Format.Astc8x5Srgb:
case Format.Astc8x6Srgb:
case Format.Astc8x8Srgb:
case Format.Astc10x5Srgb:
case Format.Astc10x6Srgb:
case Format.Astc10x8Srgb:
case Format.Astc10x10Srgb:
case Format.Astc12x10Srgb:
case Format.Astc12x12Srgb:
return 16;
}
return 1;
}
/// <summary> /// <summary>
/// Checks if the texture format is valid to use as image format. /// Checks if the texture format is valid to use as image format.
/// </summary> /// </summary>

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@ -27,7 +27,7 @@ namespace Ryujinx.Graphics.Vulkan
private readonly Auto<MemoryAllocation> _allocationAuto; private readonly Auto<MemoryAllocation> _allocationAuto;
private readonly ulong _bufferHandle; private readonly ulong _bufferHandle;
private CacheByRange<BufferHolder> _cachedConvertedIndexBuffers; private CacheByRange<BufferHolder> _cachedConvertedBuffers;
public int Size { get; } public int Size { get; }
@ -109,7 +109,7 @@ namespace Ryujinx.Graphics.Vulkan
{ {
if (isWrite) if (isWrite)
{ {
_cachedConvertedIndexBuffers.Clear(); _cachedConvertedBuffers.Clear();
} }
return _buffer; return _buffer;
@ -364,13 +364,35 @@ namespace Ryujinx.Graphics.Vulkan
public Auto<DisposableBuffer> GetBufferI8ToI16(CommandBufferScoped cbs, int offset, int size) public Auto<DisposableBuffer> GetBufferI8ToI16(CommandBufferScoped cbs, int offset, int size)
{ {
if (!_cachedConvertedIndexBuffers.TryGetValue(offset, size, out var holder)) var key = new I8ToI16CacheKey();
if (!_cachedConvertedBuffers.TryGetValue(offset, size, key, out var holder))
{ {
holder = _gd.BufferManager.Create(_gd, (size * 2 + 3) & ~3); holder = _gd.BufferManager.Create(_gd, (size * 2 + 3) & ~3);
_gd.HelperShader.ConvertI8ToI16(_gd, cbs, this, holder, offset, size); _gd.HelperShader.ConvertI8ToI16(_gd, cbs, this, holder, offset, size);
_cachedConvertedIndexBuffers.Add(offset, size, holder); _cachedConvertedBuffers.Add(offset, size, key, holder);
}
return holder.GetBuffer();
}
public Auto<DisposableBuffer> GetAlignedVertexBuffer(CommandBufferScoped cbs, int offset, int size, int stride, int alignment)
{
var key = new AlignedVertexBufferCacheKey(_gd, stride, alignment);
if (!_cachedConvertedBuffers.TryGetValue(offset, size, key, out var holder))
{
int alignedStride = (stride + (alignment - 1)) & -alignment;
holder = _gd.BufferManager.Create(_gd, (size / stride) * alignedStride);
_gd.HelperShader.ChangeStride(_gd, cbs, this, holder, offset, size, stride, alignedStride);
key.SetBuffer(holder.GetBuffer());
_cachedConvertedBuffers.Add(offset, size, key, holder);
} }
return holder.GetBuffer(); return holder.GetBuffer();
@ -382,7 +404,7 @@ namespace Ryujinx.Graphics.Vulkan
_buffer.Dispose(); _buffer.Dispose();
_allocationAuto.Dispose(); _allocationAuto.Dispose();
_cachedConvertedIndexBuffers.Dispose(); _cachedConvertedBuffers.Dispose();
} }
} }
} }

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@ -130,6 +130,16 @@ namespace Ryujinx.Graphics.Vulkan
return null; return null;
} }
public Auto<DisposableBuffer> GetAlignedVertexBuffer(CommandBufferScoped cbs, BufferHandle handle, int offset, int size, int stride, int alignment)
{
if (TryGetBuffer(handle, out var holder))
{
return holder.GetAlignedVertexBuffer(cbs, offset, size, stride, alignment);
}
return null;
}
public Auto<DisposableBuffer> GetBuffer(CommandBuffer commandBuffer, BufferHandle handle, bool isWrite, out int size) public Auto<DisposableBuffer> GetBuffer(CommandBuffer commandBuffer, BufferHandle handle, bool isWrite, out int size)
{ {
if (TryGetBuffer(handle, out var holder)) if (TryGetBuffer(handle, out var holder))

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@ -7,28 +7,28 @@ namespace Ryujinx.Graphics.Vulkan
{ {
public static BufferState Null => new BufferState(null, 0, 0); public static BufferState Null => new BufferState(null, 0, 0);
private readonly Auto<DisposableBuffer> _buffer;
private readonly int _offset; private readonly int _offset;
private readonly int _size; private readonly int _size;
private readonly ulong _stride;
private readonly IndexType _type; private readonly IndexType _type;
private readonly Auto<DisposableBuffer> _buffer;
public BufferState(Auto<DisposableBuffer> buffer, int offset, int size, IndexType type) public BufferState(Auto<DisposableBuffer> buffer, int offset, int size, IndexType type)
{ {
_buffer = buffer; _buffer = buffer;
_offset = offset; _offset = offset;
_size = size; _size = size;
_stride = 0;
_type = type; _type = type;
buffer?.IncrementReferenceCount(); buffer?.IncrementReferenceCount();
} }
public BufferState(Auto<DisposableBuffer> buffer, int offset, int size, ulong stride = 0UL) public BufferState(Auto<DisposableBuffer> buffer, int offset, int size)
{ {
_buffer = buffer; _buffer = buffer;
_offset = offset; _offset = offset;
_size = size; _size = size;
_stride = stride;
_type = IndexType.Uint16; _type = IndexType.Uint16;
buffer?.IncrementReferenceCount(); buffer?.IncrementReferenceCount();
} }
@ -51,30 +51,6 @@ namespace Ryujinx.Graphics.Vulkan
} }
} }
public void BindVertexBuffer(VulkanRenderer gd, CommandBufferScoped cbs, uint binding)
{
if (_buffer != null)
{
var buffer = _buffer.Get(cbs, _offset, _size).Value;
if (gd.Capabilities.SupportsExtendedDynamicState)
{
gd.ExtendedDynamicStateApi.CmdBindVertexBuffers2(
cbs.CommandBuffer,
binding,
1,
buffer,
(ulong)_offset,
(ulong)_size,
_stride);
}
else
{
gd.Api.CmdBindVertexBuffers(cbs.CommandBuffer, binding, 1, buffer, (ulong)_offset);
}
}
}
public void Dispose() public void Dispose()
{ {
_buffer?.DecrementReferenceCount(); _buffer?.DecrementReferenceCount();

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@ -3,29 +3,110 @@ using System.Collections.Generic;
namespace Ryujinx.Graphics.Vulkan namespace Ryujinx.Graphics.Vulkan
{ {
struct CacheByRange<T> where T : IDisposable interface ICacheKey : IDisposable
{ {
private Dictionary<ulong, T> _ranges; bool KeyEqual(ICacheKey other);
}
public void Add(int offset, int size, T value) struct I8ToI16CacheKey : ICacheKey
{
public I8ToI16CacheKey() { }
public bool KeyEqual(ICacheKey other)
{ {
EnsureInitialized(); return other is I8ToI16CacheKey;
_ranges.Add(PackRange(offset, size), value);
} }
public bool TryGetValue(int offset, int size, out T value) public void Dispose() { }
}
struct AlignedVertexBufferCacheKey : ICacheKey
{
private readonly int _stride;
private readonly int _alignment;
// Used to notify the pipeline that bindings have invalidated on dispose.
private readonly VulkanRenderer _gd;
private Auto<DisposableBuffer> _buffer;
public AlignedVertexBufferCacheKey(VulkanRenderer gd, int stride, int alignment)
{ {
EnsureInitialized(); _gd = gd;
return _ranges.TryGetValue(PackRange(offset, size), out value); _stride = stride;
_alignment = alignment;
_buffer = null;
}
public bool KeyEqual(ICacheKey other)
{
return other is AlignedVertexBufferCacheKey entry &&
entry._stride == _stride &&
entry._alignment == _alignment;
}
public void SetBuffer(Auto<DisposableBuffer> buffer)
{
_buffer = buffer;
}
public void Dispose()
{
_gd.PipelineInternal.DirtyVertexBuffer(_buffer);
}
}
struct CacheByRange<T> where T : IDisposable
{
private struct Entry
{
public ICacheKey Key;
public T Value;
public Entry(ICacheKey key, T value)
{
Key = key;
Value = value;
}
}
private Dictionary<ulong, List<Entry>> _ranges;
public void Add(int offset, int size, ICacheKey key, T value)
{
List<Entry> entries = GetEntries(offset, size);
entries.Add(new Entry(key, value));
}
public bool TryGetValue(int offset, int size, ICacheKey key, out T value)
{
List<Entry> entries = GetEntries(offset, size);
foreach (Entry entry in entries)
{
if (entry.Key.KeyEqual(key))
{
value = entry.Value;
return true;
}
}
value = default;
return false;
} }
public void Clear() public void Clear()
{ {
if (_ranges != null) if (_ranges != null)
{ {
foreach (T value in _ranges.Values) foreach (List<Entry> entries in _ranges.Values)
{ {
value.Dispose(); foreach (Entry entry in entries)
{
entry.Key.Dispose();
entry.Value.Dispose();
}
} }
_ranges.Clear(); _ranges.Clear();
@ -33,12 +114,23 @@ namespace Ryujinx.Graphics.Vulkan
} }
} }
private void EnsureInitialized() private List<Entry> GetEntries(int offset, int size)
{ {
if (_ranges == null) if (_ranges == null)
{ {
_ranges = new Dictionary<ulong, T>(); _ranges = new Dictionary<ulong, List<Entry>>();
} }
ulong key = PackRange(offset, size);
List<Entry> value;
if (!_ranges.TryGetValue(key, out value))
{
value = new List<Entry>();
_ranges.Add(key, value);
}
return value;
} }
private static ulong PackRange(int offset, int size) private static ulong PackRange(int offset, int size)

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@ -185,6 +185,34 @@ namespace Ryujinx.Graphics.Vulkan
SignalDirty(DirtyFlags.Storage); SignalDirty(DirtyFlags.Storage);
} }
public void SetStorageBuffers(CommandBuffer commandBuffer, int first, ReadOnlySpan<Auto<DisposableBuffer>> buffers)
{
for (int i = 0; i < buffers.Length; i++)
{
var vkBuffer = buffers[i];
int index = first + i;
ref Auto<DisposableBuffer> currentVkBuffer = ref _storageBufferRefs[index];
DescriptorBufferInfo info = new DescriptorBufferInfo()
{
Offset = 0,
Range = Vk.WholeSize
};
ref DescriptorBufferInfo currentInfo = ref _storageBuffers[index];
if (vkBuffer != currentVkBuffer || currentInfo.Offset != info.Offset || currentInfo.Range != info.Range)
{
_storageSet[index] = false;
currentInfo = info;
currentVkBuffer = vkBuffer;
}
}
SignalDirty(DirtyFlags.Storage);
}
public void SetTextureAndSampler(CommandBufferScoped cbs, ShaderStage stage, int binding, ITexture texture, ISampler sampler) public void SetTextureAndSampler(CommandBufferScoped cbs, ShaderStage stage, int binding, ITexture texture, ISampler sampler)
{ {
if (texture == null) if (texture == null)
@ -388,7 +416,14 @@ namespace Ryujinx.Graphics.Vulkan
} }
ReadOnlySpan<DescriptorBufferInfo> storageBuffers = _storageBuffers; ReadOnlySpan<DescriptorBufferInfo> storageBuffers = _storageBuffers;
dsc.UpdateStorageBuffers(0, binding, storageBuffers.Slice(binding, count)); if (program.HasMinimalLayout)
{
dsc.UpdateBuffers(0, binding, storageBuffers.Slice(binding, count), DescriptorType.StorageBuffer);
}
else
{
dsc.UpdateStorageBuffers(0, binding, storageBuffers.Slice(binding, count));
}
} }
else if (setIndex == PipelineBase.TextureSetIndex) else if (setIndex == PipelineBase.TextureSetIndex)
{ {

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@ -10,6 +10,7 @@ namespace Ryujinx.Graphics.Vulkan
public readonly bool SupportsFragmentShaderInterlock; public readonly bool SupportsFragmentShaderInterlock;
public readonly bool SupportsGeometryShaderPassthrough; public readonly bool SupportsGeometryShaderPassthrough;
public readonly bool SupportsSubgroupSizeControl; public readonly bool SupportsSubgroupSizeControl;
public readonly bool SupportsShaderInt8;
public readonly bool SupportsConditionalRendering; public readonly bool SupportsConditionalRendering;
public readonly bool SupportsExtendedDynamicState; public readonly bool SupportsExtendedDynamicState;
public readonly bool SupportsMultiView; public readonly bool SupportsMultiView;
@ -29,6 +30,7 @@ namespace Ryujinx.Graphics.Vulkan
bool supportsFragmentShaderInterlock, bool supportsFragmentShaderInterlock,
bool supportsGeometryShaderPassthrough, bool supportsGeometryShaderPassthrough,
bool supportsSubgroupSizeControl, bool supportsSubgroupSizeControl,
bool supportsShaderInt8,
bool supportsConditionalRendering, bool supportsConditionalRendering,
bool supportsExtendedDynamicState, bool supportsExtendedDynamicState,
bool supportsMultiView, bool supportsMultiView,
@ -47,6 +49,7 @@ namespace Ryujinx.Graphics.Vulkan
SupportsFragmentShaderInterlock = supportsFragmentShaderInterlock; SupportsFragmentShaderInterlock = supportsFragmentShaderInterlock;
SupportsGeometryShaderPassthrough = supportsGeometryShaderPassthrough; SupportsGeometryShaderPassthrough = supportsGeometryShaderPassthrough;
SupportsSubgroupSizeControl = supportsSubgroupSizeControl; SupportsSubgroupSizeControl = supportsSubgroupSizeControl;
SupportsShaderInt8 = supportsShaderInt8;
SupportsConditionalRendering = supportsConditionalRendering; SupportsConditionalRendering = supportsConditionalRendering;
SupportsExtendedDynamicState = supportsExtendedDynamicState; SupportsExtendedDynamicState = supportsExtendedDynamicState;
SupportsMultiView = supportsMultiView; SupportsMultiView = supportsMultiView;

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@ -16,6 +16,7 @@ namespace Ryujinx.Graphics.Vulkan
private readonly IProgram _programColorBlit; private readonly IProgram _programColorBlit;
private readonly IProgram _programColorBlitClearAlpha; private readonly IProgram _programColorBlitClearAlpha;
private readonly IProgram _programColorClear; private readonly IProgram _programColorClear;
private readonly IProgram _programStrideChange;
public HelperShader(VulkanRenderer gd, Device device) public HelperShader(VulkanRenderer gd, Device device)
{ {
@ -39,14 +40,14 @@ namespace Ryujinx.Graphics.Vulkan
_programColorBlit = gd.CreateProgramWithMinimalLayout(new[] _programColorBlit = gd.CreateProgramWithMinimalLayout(new[]
{ {
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, vertexBindings, ShaderStage.Vertex, TargetLanguage.Glsl), new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, vertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorBlitFragmentShaderSource, fragmentBindings, ShaderStage.Fragment, TargetLanguage.Glsl), new ShaderSource(ShaderBinaries.ColorBlitFragmentShaderSource, fragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
}); });
_programColorBlitClearAlpha = gd.CreateProgramWithMinimalLayout(new[] _programColorBlitClearAlpha = gd.CreateProgramWithMinimalLayout(new[]
{ {
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, vertexBindings, ShaderStage.Vertex, TargetLanguage.Glsl), new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, vertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorBlitClearAlphaFragmentShaderSource, fragmentBindings, ShaderStage.Fragment, TargetLanguage.Glsl), new ShaderSource(ShaderBinaries.ColorBlitClearAlphaFragmentShaderSource, fragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
}); });
var fragmentBindings2 = new ShaderBindings( var fragmentBindings2 = new ShaderBindings(
@ -57,8 +58,19 @@ namespace Ryujinx.Graphics.Vulkan
_programColorClear = gd.CreateProgramWithMinimalLayout(new[] _programColorClear = gd.CreateProgramWithMinimalLayout(new[]
{ {
new ShaderSource(ShaderBinaries.ColorClearVertexShaderSource, vertexBindings, ShaderStage.Vertex, TargetLanguage.Glsl), new ShaderSource(ShaderBinaries.ColorClearVertexShaderSource, vertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorClearFragmentShaderSource, fragmentBindings2, ShaderStage.Fragment, TargetLanguage.Glsl), new ShaderSource(ShaderBinaries.ColorClearFragmentShaderSource, fragmentBindings2, ShaderStage.Fragment, TargetLanguage.Spirv),
});
var strideChangeBindings = new ShaderBindings(
new[] { 0 },
new[] { 1, 2 },
Array.Empty<int>(),
Array.Empty<int>());
_programStrideChange = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ChangeBufferStrideShaderSource, strideChangeBindings, ShaderStage.Compute, TargetLanguage.Spirv),
}); });
} }
@ -163,7 +175,7 @@ namespace Ryujinx.Graphics.Vulkan
_pipeline.SetViewports(viewports, false); _pipeline.SetViewports(viewports, false);
_pipeline.SetPrimitiveTopology(GAL.PrimitiveTopology.TriangleStrip); _pipeline.SetPrimitiveTopology(GAL.PrimitiveTopology.TriangleStrip);
_pipeline.Draw(4, 1, 0, 0); _pipeline.Draw(4, 1, 0, 0);
_pipeline.Finish(); _pipeline.Finish(gd, cbs);
gd.BufferManager.Delete(bufferHandle); gd.BufferManager.Delete(bufferHandle);
} }
@ -291,45 +303,100 @@ namespace Ryujinx.Graphics.Vulkan
public unsafe void ConvertI8ToI16(VulkanRenderer gd, CommandBufferScoped cbs, BufferHolder src, BufferHolder dst, int srcOffset, int size) public unsafe void ConvertI8ToI16(VulkanRenderer gd, CommandBufferScoped cbs, BufferHolder src, BufferHolder dst, int srcOffset, int size)
{ {
// TODO: Do this with a compute shader? ChangeStride(gd, cbs, src, dst, srcOffset, size, 1, 2);
var srcBuffer = src.GetBuffer().Get(cbs, srcOffset, size).Value; }
var dstBuffer = dst.GetBuffer().Get(cbs, 0, size * 2).Value;
gd.Api.CmdFillBuffer(cbs.CommandBuffer, dstBuffer, 0, Vk.WholeSize, 0); public unsafe void ChangeStride(VulkanRenderer gd, CommandBufferScoped cbs, BufferHolder src, BufferHolder dst, int srcOffset, int size, int stride, int newStride)
{
bool supportsUint8 = gd.Capabilities.SupportsShaderInt8;
var bufferCopy = new BufferCopy[size]; int elems = size / stride;
int newSize = elems * newStride;
for (ulong i = 0; i < (ulong)size; i++) var srcBufferAuto = src.GetBuffer();
{ var dstBufferAuto = dst.GetBuffer();
bufferCopy[i] = new BufferCopy((ulong)srcOffset + i, i * 2, 1);
} var srcBuffer = srcBufferAuto.Get(cbs, srcOffset, size).Value;
var dstBuffer = dstBufferAuto.Get(cbs, 0, newSize).Value;
var access = supportsUint8 ? AccessFlags.AccessShaderWriteBit : AccessFlags.AccessTransferWriteBit;
var stage = supportsUint8 ? PipelineStageFlags.PipelineStageComputeShaderBit : PipelineStageFlags.PipelineStageTransferBit;
BufferHolder.InsertBufferBarrier( BufferHolder.InsertBufferBarrier(
gd, gd,
cbs.CommandBuffer, cbs.CommandBuffer,
dstBuffer, dstBuffer,
BufferHolder.DefaultAccessFlags, BufferHolder.DefaultAccessFlags,
AccessFlags.AccessTransferWriteBit, access,
PipelineStageFlags.PipelineStageAllCommandsBit, PipelineStageFlags.PipelineStageAllCommandsBit,
PipelineStageFlags.PipelineStageTransferBit, stage,
0, 0,
size * 2); newSize);
fixed (BufferCopy* pBufferCopy = bufferCopy) if (supportsUint8)
{ {
gd.Api.CmdCopyBuffer(cbs.CommandBuffer, srcBuffer, dstBuffer, (uint)size, pBufferCopy); const int ParamsBufferSize = 16;
Span<int> shaderParams = stackalloc int[ParamsBufferSize / sizeof(int)];
shaderParams[0] = stride;
shaderParams[1] = newStride;
shaderParams[2] = size;
shaderParams[3] = srcOffset;
var bufferHandle = gd.BufferManager.CreateWithHandle(gd, ParamsBufferSize, false);
gd.BufferManager.SetData<int>(bufferHandle, 0, shaderParams);
_pipeline.SetCommandBuffer(cbs);
Span<BufferRange> cbRanges = stackalloc BufferRange[1];
cbRanges[0] = new BufferRange(bufferHandle, 0, ParamsBufferSize);
_pipeline.SetUniformBuffers(0, cbRanges);
Span<Auto<DisposableBuffer>> sbRanges = new Auto<DisposableBuffer>[2];
sbRanges[0] = srcBufferAuto;
sbRanges[1] = dstBufferAuto;
_pipeline.SetStorageBuffers(1, sbRanges);
_pipeline.SetProgram(_programStrideChange);
_pipeline.DispatchCompute(1, 1, 1);
gd.BufferManager.Delete(bufferHandle);
_pipeline.Finish(gd, cbs);
}
else
{
gd.Api.CmdFillBuffer(cbs.CommandBuffer, dstBuffer, 0, Vk.WholeSize, 0);
var bufferCopy = new BufferCopy[elems];
for (ulong i = 0; i < (ulong)elems; i++)
{
bufferCopy[i] = new BufferCopy((ulong)srcOffset + i * (ulong)stride, i * (ulong)newStride, (ulong)stride);
}
fixed (BufferCopy* pBufferCopy = bufferCopy)
{
gd.Api.CmdCopyBuffer(cbs.CommandBuffer, srcBuffer, dstBuffer, (uint)elems, pBufferCopy);
}
} }
BufferHolder.InsertBufferBarrier( BufferHolder.InsertBufferBarrier(
gd, gd,
cbs.CommandBuffer, cbs.CommandBuffer,
dstBuffer, dstBuffer,
AccessFlags.AccessTransferWriteBit, access,
BufferHolder.DefaultAccessFlags, BufferHolder.DefaultAccessFlags,
PipelineStageFlags.PipelineStageTransferBit, stage,
PipelineStageFlags.PipelineStageAllCommandsBit, PipelineStageFlags.PipelineStageAllCommandsBit,
0, 0,
size * 2); newSize);
} }
protected virtual void Dispose(bool disposing) protected virtual void Dispose(bool disposing)

View File

@ -2,6 +2,7 @@
using Ryujinx.Graphics.Shader; using Ryujinx.Graphics.Shader;
using Silk.NET.Vulkan; using Silk.NET.Vulkan;
using System; using System;
using System.Numerics;
namespace Ryujinx.Graphics.Vulkan namespace Ryujinx.Graphics.Vulkan
{ {
@ -50,14 +51,14 @@ namespace Ryujinx.Graphics.Vulkan
private BufferState _indexBuffer; private BufferState _indexBuffer;
private readonly BufferState[] _transformFeedbackBuffers; private readonly BufferState[] _transformFeedbackBuffers;
private readonly BufferState[] _vertexBuffers; private readonly VertexBufferState[] _vertexBuffers;
private ulong _vertexBuffersDirty;
protected Rectangle<int> ClearScissor; protected Rectangle<int> ClearScissor;
public SupportBufferUpdater SupportBufferUpdater; public SupportBufferUpdater SupportBufferUpdater;
private bool _needsIndexBufferRebind; private bool _needsIndexBufferRebind;
private bool _needsTransformFeedbackBuffersRebind; private bool _needsTransformFeedbackBuffersRebind;
private bool _needsVertexBuffersRebind;
private bool _tfEnabled; private bool _tfEnabled;
private bool _tfActive; private bool _tfActive;
@ -79,14 +80,14 @@ namespace Ryujinx.Graphics.Vulkan
_descriptorSetUpdater = new DescriptorSetUpdater(gd, this); _descriptorSetUpdater = new DescriptorSetUpdater(gd, this);
_transformFeedbackBuffers = new BufferState[Constants.MaxTransformFeedbackBuffers]; _transformFeedbackBuffers = new BufferState[Constants.MaxTransformFeedbackBuffers];
_vertexBuffers = new BufferState[Constants.MaxVertexBuffers + 1]; _vertexBuffers = new VertexBufferState[Constants.MaxVertexBuffers + 1];
const int EmptyVbSize = 16; const int EmptyVbSize = 16;
using var emptyVb = gd.BufferManager.Create(gd, EmptyVbSize); using var emptyVb = gd.BufferManager.Create(gd, EmptyVbSize);
emptyVb.SetData(0, new byte[EmptyVbSize]); emptyVb.SetData(0, new byte[EmptyVbSize]);
_vertexBuffers[0] = new BufferState(emptyVb.GetBuffer(), 0, EmptyVbSize, 0UL); _vertexBuffers[0] = new VertexBufferState(emptyVb.GetBuffer(), 0, EmptyVbSize, 0);
_needsVertexBuffersRebind = true; _vertexBuffersDirty = ulong.MaxValue >> (64 - _vertexBuffers.Length);
ClearScissor = new Rectangle<int>(0, 0, 0xffff, 0xffff); ClearScissor = new Rectangle<int>(0, 0, 0xffff, 0xffff);
@ -229,6 +230,17 @@ namespace Ryujinx.Graphics.Vulkan
BufferHolder.Copy(Gd, Cbs, src, dst, srcOffset, dstOffset, size); BufferHolder.Copy(Gd, Cbs, src, dst, srcOffset, dstOffset, size);
} }
public void DirtyVertexBuffer(Auto<DisposableBuffer> buffer)
{
for (int i = 0; i < _vertexBuffers.Length; i++)
{
if (_vertexBuffers[i].BoundEquals(buffer))
{
_vertexBuffersDirty |= 1UL << i;
}
}
}
public void DispatchCompute(int groupsX, int groupsY, int groupsZ) public void DispatchCompute(int groupsX, int groupsY, int groupsZ)
{ {
if (!_program.IsLinked) if (!_program.IsLinked)
@ -345,6 +357,11 @@ namespace Ryujinx.Graphics.Vulkan
_tfEnabled = false; _tfEnabled = false;
} }
public bool IsCommandBufferActive(CommandBuffer cb)
{
return CommandBuffer.Handle == cb.Handle;
}
public void MultiDrawIndirectCount(BufferRange indirectBuffer, BufferRange parameterBuffer, int maxDrawCount, int stride) public void MultiDrawIndirectCount(BufferRange indirectBuffer, BufferRange parameterBuffer, int maxDrawCount, int stride)
{ {
if (!Gd.Capabilities.SupportsIndirectParameters) if (!Gd.Capabilities.SupportsIndirectParameters)
@ -689,6 +706,11 @@ namespace Ryujinx.Graphics.Vulkan
_descriptorSetUpdater.SetStorageBuffers(CommandBuffer, first, buffers); _descriptorSetUpdater.SetStorageBuffers(CommandBuffer, first, buffers);
} }
public void SetStorageBuffers(int first, ReadOnlySpan<Auto<DisposableBuffer>> buffers)
{
_descriptorSetUpdater.SetStorageBuffers(CommandBuffer, first, buffers);
}
public void SetTextureAndSampler(ShaderStage stage, int binding, ITexture texture, ISampler sampler) public void SetTextureAndSampler(ShaderStage stage, int binding, ITexture texture, ISampler sampler)
{ {
_descriptorSetUpdater.SetTextureAndSampler(Cbs, stage, binding, texture, sampler); _descriptorSetUpdater.SetTextureAndSampler(Cbs, stage, binding, texture, sampler);
@ -732,12 +754,22 @@ namespace Ryujinx.Graphics.Vulkan
{ {
var formatCapabilities = Gd.FormatCapabilities; var formatCapabilities = Gd.FormatCapabilities;
Span<int> newVbScalarSizes = stackalloc int[Constants.MaxVertexBuffers];
int count = Math.Min(Constants.MaxVertexAttributes, vertexAttribs.Length); int count = Math.Min(Constants.MaxVertexAttributes, vertexAttribs.Length);
uint dirtyVbSizes = 0;
for (int i = 0; i < count; i++) for (int i = 0; i < count; i++)
{ {
var attribute = vertexAttribs[i]; var attribute = vertexAttribs[i];
var bufferIndex = attribute.IsZero ? 0 : attribute.BufferIndex + 1; var rawIndex = attribute.BufferIndex;
var bufferIndex = attribute.IsZero ? 0 : rawIndex + 1;
if (!attribute.IsZero)
{
newVbScalarSizes[rawIndex] = Math.Max(newVbScalarSizes[rawIndex], attribute.Format.GetScalarSize());
dirtyVbSizes |= 1u << rawIndex;
}
_newState.Internal.VertexAttributeDescriptions[i] = new VertexInputAttributeDescription( _newState.Internal.VertexAttributeDescriptions[i] = new VertexInputAttributeDescription(
(uint)i, (uint)i,
@ -746,6 +778,21 @@ namespace Ryujinx.Graphics.Vulkan
(uint)attribute.Offset); (uint)attribute.Offset);
} }
while (dirtyVbSizes != 0)
{
int dirtyBit = BitOperations.TrailingZeroCount(dirtyVbSizes);
ref var buffer = ref _vertexBuffers[dirtyBit + 1];
if (buffer.AttributeScalarAlignment != newVbScalarSizes[dirtyBit])
{
_vertexBuffersDirty |= 1UL << (dirtyBit + 1);
buffer.AttributeScalarAlignment = newVbScalarSizes[dirtyBit];
}
dirtyVbSizes &= ~(1u << dirtyBit);
}
_newState.VertexAttributeDescriptionsCount = (uint)count; _newState.VertexAttributeDescriptionsCount = (uint)count;
SignalStateChange(); SignalStateChange();
} }
@ -792,14 +839,37 @@ namespace Ryujinx.Graphics.Vulkan
} }
} }
_vertexBuffers[binding].Dispose(); ref var buffer = ref _vertexBuffers[binding];
_vertexBuffers[binding] = new BufferState( int oldScalarAlign = buffer.AttributeScalarAlignment;
vb,
vertexBuffer.Buffer.Offset,
vbSize,
(ulong)vertexBuffer.Stride);
_vertexBuffers[binding].BindVertexBuffer(Gd, Cbs, (uint)binding); buffer.Dispose();
if ((vertexBuffer.Stride % FormatExtensions.MaxBufferFormatScalarSize) == 0)
{
buffer = new VertexBufferState(
vb,
descriptorIndex,
vertexBuffer.Buffer.Offset,
vbSize,
vertexBuffer.Stride);
buffer.BindVertexBuffer(Gd, Cbs, (uint)binding, ref _newState);
}
else
{
// May need to be rewritten. Bind this buffer before draw.
buffer = new VertexBufferState(
vertexBuffer.Buffer.Handle,
descriptorIndex,
vertexBuffer.Buffer.Offset,
vbSize,
vertexBuffer.Stride);
_vertexBuffersDirty |= 1UL << binding;
}
buffer.AttributeScalarAlignment = oldScalarAlign;
} }
} }
} }
@ -907,7 +977,7 @@ namespace Ryujinx.Graphics.Vulkan
{ {
_needsIndexBufferRebind = true; _needsIndexBufferRebind = true;
_needsTransformFeedbackBuffersRebind = true; _needsTransformFeedbackBuffersRebind = true;
_needsVertexBuffersRebind = true; _vertexBuffersDirty = ulong.MaxValue >> (64 - _vertexBuffers.Length);
_descriptorSetUpdater.SignalCommandBufferChange(); _descriptorSetUpdater.SignalCommandBufferChange();
_dynamicState.ForceAllDirty(); _dynamicState.ForceAllDirty();
@ -1053,13 +1123,6 @@ namespace Ryujinx.Graphics.Vulkan
// Commit changes to the support buffer before drawing. // Commit changes to the support buffer before drawing.
SupportBufferUpdater.Commit(); SupportBufferUpdater.Commit();
if (_stateDirty || Pbp != pbp)
{
CreatePipeline(pbp);
_stateDirty = false;
Pbp = pbp;
}
if (_needsIndexBufferRebind) if (_needsIndexBufferRebind)
{ {
_indexBuffer.BindIndexBuffer(Gd.Api, Cbs); _indexBuffer.BindIndexBuffer(Gd.Api, Cbs);
@ -1078,14 +1141,23 @@ namespace Ryujinx.Graphics.Vulkan
_needsTransformFeedbackBuffersRebind = false; _needsTransformFeedbackBuffersRebind = false;
} }
if (_needsVertexBuffersRebind) if (_vertexBuffersDirty != 0)
{ {
for (int i = 0; i < Constants.MaxVertexBuffers + 1; i++) while (_vertexBuffersDirty != 0)
{ {
_vertexBuffers[i].BindVertexBuffer(Gd, Cbs, (uint)i); int i = BitOperations.TrailingZeroCount(_vertexBuffersDirty);
}
_needsVertexBuffersRebind = false; _vertexBuffers[i].BindVertexBuffer(Gd, Cbs, (uint)i, ref _newState);
_vertexBuffersDirty &= ~(1u << i);
}
}
if (_stateDirty || Pbp != pbp)
{
CreatePipeline(pbp);
_stateDirty = false;
Pbp = pbp;
} }
_descriptorSetUpdater.UpdateAndBindDescriptorSets(Cbs, pbp); _descriptorSetUpdater.UpdateAndBindDescriptorSets(Cbs, pbp);

View File

@ -202,6 +202,9 @@ namespace Ryujinx.Graphics.Vulkan
pipeline.Topology = state.Topology.Convert(); pipeline.Topology = state.Topology.Convert();
int vaCount = Math.Min(Constants.MaxVertexAttributes, state.VertexAttribCount); int vaCount = Math.Min(Constants.MaxVertexAttributes, state.VertexAttribCount);
int vbCount = Math.Min(Constants.MaxVertexBuffers, state.VertexBufferCount);
Span<int> vbScalarSizes = stackalloc int[vbCount];
for (int i = 0; i < vaCount; i++) for (int i = 0; i < vaCount; i++)
{ {
@ -213,13 +216,16 @@ namespace Ryujinx.Graphics.Vulkan
(uint)bufferIndex, (uint)bufferIndex,
gd.FormatCapabilities.ConvertToVertexVkFormat(attribute.Format), gd.FormatCapabilities.ConvertToVertexVkFormat(attribute.Format),
(uint)attribute.Offset); (uint)attribute.Offset);
if (!attribute.IsZero && bufferIndex < vbCount)
{
vbScalarSizes[bufferIndex - 1] = Math.Max(attribute.Format.GetScalarSize(), vbScalarSizes[bufferIndex - 1]);
}
} }
int descriptorIndex = 1; int descriptorIndex = 1;
pipeline.Internal.VertexBindingDescriptions[0] = new VertexInputBindingDescription(0, 0, VertexInputRate.Vertex); pipeline.Internal.VertexBindingDescriptions[0] = new VertexInputBindingDescription(0, 0, VertexInputRate.Vertex);
int vbCount = Math.Min(Constants.MaxVertexBuffers, state.VertexBufferCount);
for (int i = 0; i < vbCount; i++) for (int i = 0; i < vbCount; i++)
{ {
var vertexBuffer = state.VertexBuffers[i]; var vertexBuffer = state.VertexBuffers[i];
@ -228,10 +234,17 @@ namespace Ryujinx.Graphics.Vulkan
{ {
var inputRate = vertexBuffer.Divisor != 0 ? VertexInputRate.Instance : VertexInputRate.Vertex; var inputRate = vertexBuffer.Divisor != 0 ? VertexInputRate.Instance : VertexInputRate.Vertex;
int alignedStride = vertexBuffer.Stride;
if (gd.NeedsVertexBufferAlignment(vbScalarSizes[i], out int alignment))
{
alignedStride = (vertexBuffer.Stride + (alignment - 1)) & -alignment;
}
// TODO: Support divisor > 1 // TODO: Support divisor > 1
pipeline.Internal.VertexBindingDescriptions[descriptorIndex++] = new VertexInputBindingDescription( pipeline.Internal.VertexBindingDescriptions[descriptorIndex++] = new VertexInputBindingDescription(
(uint)i + 1, (uint)i + 1,
(uint)vertexBuffer.Stride, (uint)alignedStride,
inputRate); inputRate);
} }
} }

View File

@ -199,6 +199,16 @@ namespace Ryujinx.Graphics.Vulkan
} }
} }
public void Restore()
{
if (Pipeline != null)
{
Gd.Api.CmdBindPipeline(CommandBuffer, Pbp, Pipeline.Get(Cbs).Value);
}
SignalCommandBufferChange();
}
public void FlushCommandsImpl() public void FlushCommandsImpl()
{ {
EndRenderPass(); EndRenderPass();
@ -220,18 +230,13 @@ namespace Ryujinx.Graphics.Vulkan
// Restore per-command buffer state. // Restore per-command buffer state.
if (Pipeline != null)
{
Gd.Api.CmdBindPipeline(CommandBuffer, Pbp, Pipeline.Get(Cbs).Value);
}
foreach (var queryPool in _activeQueries) foreach (var queryPool in _activeQueries)
{ {
Gd.Api.CmdResetQueryPool(CommandBuffer, queryPool, 0, 1); Gd.Api.CmdResetQueryPool(CommandBuffer, queryPool, 0, 1);
Gd.Api.CmdBeginQuery(CommandBuffer, queryPool, 0, 0); Gd.Api.CmdBeginQuery(CommandBuffer, queryPool, 0, 0);
} }
SignalCommandBufferChange(); Restore();
} }
public void BeginQuery(BufferedQuery query, QueryPool pool, bool needsReset) public void BeginQuery(BufferedQuery query, QueryPool pool, bool needsReset)

View File

@ -40,5 +40,15 @@ namespace Ryujinx.Graphics.Vulkan
{ {
EndRenderPass(); EndRenderPass();
} }
public void Finish(VulkanRenderer gd, CommandBufferScoped cbs)
{
Finish();
if (gd.PipelineInternal.IsCommandBufferActive(cbs.CommandBuffer))
{
gd.PipelineInternal.Restore();
}
}
} }
} }

View File

@ -142,18 +142,20 @@ namespace Ryujinx.Graphics.Vulkan
int stagesCount = shaders.Length; int stagesCount = shaders.Length;
int uCount = 0; int uCount = 0;
int sCount = 0;
int tCount = 0; int tCount = 0;
int iCount = 0; int iCount = 0;
foreach (var shader in shaders) foreach (var shader in shaders)
{ {
uCount += shader.Bindings.UniformBufferBindings.Count; uCount += shader.Bindings.UniformBufferBindings.Count;
sCount += shader.Bindings.StorageBufferBindings.Count;
tCount += shader.Bindings.TextureBindings.Count; tCount += shader.Bindings.TextureBindings.Count;
iCount += shader.Bindings.ImageBindings.Count; iCount += shader.Bindings.ImageBindings.Count;
} }
DescriptorSetLayoutBinding* uLayoutBindings = stackalloc DescriptorSetLayoutBinding[uCount]; DescriptorSetLayoutBinding* uLayoutBindings = stackalloc DescriptorSetLayoutBinding[uCount];
DescriptorSetLayoutBinding* sLayoutBindings = stackalloc DescriptorSetLayoutBinding[stagesCount]; DescriptorSetLayoutBinding* sLayoutBindings = stackalloc DescriptorSetLayoutBinding[sCount];
DescriptorSetLayoutBinding* tLayoutBindings = stackalloc DescriptorSetLayoutBinding[tCount]; DescriptorSetLayoutBinding* tLayoutBindings = stackalloc DescriptorSetLayoutBinding[tCount];
DescriptorSetLayoutBinding* iLayoutBindings = stackalloc DescriptorSetLayoutBinding[iCount]; DescriptorSetLayoutBinding* iLayoutBindings = stackalloc DescriptorSetLayoutBinding[iCount];
@ -180,22 +182,11 @@ namespace Ryujinx.Graphics.Vulkan
} }
} }
void SetStorage(DescriptorSetLayoutBinding* bindings, ref int start, int count)
{
bindings[start++] = new DescriptorSetLayoutBinding
{
Binding = (uint)start,
DescriptorType = DescriptorType.StorageBuffer,
DescriptorCount = (uint)count,
StageFlags = stageFlags
};
}
// TODO: Support buffer textures and images here. // TODO: Support buffer textures and images here.
// This is only used for the helper shaders on the backend, and we don't use buffer textures on them // This is only used for the helper shaders on the backend, and we don't use buffer textures on them
// so far, so it's not really necessary right now. // so far, so it's not really necessary right now.
Set(uLayoutBindings, DescriptorType.UniformBuffer, ref uIndex, shader.Bindings.UniformBufferBindings); Set(uLayoutBindings, DescriptorType.UniformBuffer, ref uIndex, shader.Bindings.UniformBufferBindings);
SetStorage(sLayoutBindings, ref sIndex, shader.Bindings.StorageBufferBindings.Count); Set(sLayoutBindings, DescriptorType.StorageBuffer, ref sIndex, shader.Bindings.StorageBufferBindings);
Set(tLayoutBindings, DescriptorType.CombinedImageSampler, ref tIndex, shader.Bindings.TextureBindings); Set(tLayoutBindings, DescriptorType.CombinedImageSampler, ref tIndex, shader.Bindings.TextureBindings);
Set(iLayoutBindings, DescriptorType.StorageImage, ref iIndex, shader.Bindings.ImageBindings); Set(iLayoutBindings, DescriptorType.StorageImage, ref iIndex, shader.Bindings.ImageBindings);
} }
@ -213,7 +204,7 @@ namespace Ryujinx.Graphics.Vulkan
{ {
SType = StructureType.DescriptorSetLayoutCreateInfo, SType = StructureType.DescriptorSetLayoutCreateInfo,
PBindings = sLayoutBindings, PBindings = sLayoutBindings,
BindingCount = (uint)stagesCount BindingCount = (uint)sCount
}; };
var tDescriptorSetLayoutCreateInfo = new DescriptorSetLayoutCreateInfo() var tDescriptorSetLayoutCreateInfo = new DescriptorSetLayoutCreateInfo()

View File

@ -0,0 +1,64 @@
#version 450 core
#extension GL_EXT_shader_8bit_storage : require
layout (local_size_x = 64, local_size_y = 1, local_size_z = 1) in;
layout (std140, set = 0, binding = 0) uniform stride_arguments
{
ivec4 stride_arguments_data;
};
layout (std430, set = 1, binding = 1) buffer in_s
{
uint8_t[] in_data;
};
layout (std430, set = 1, binding = 2) buffer out_s
{
uint8_t[] out_data;
};
void main()
{
// Determine what slice of the stride copies this invocation will perform.
int sourceStride = stride_arguments_data.x;
int targetStride = stride_arguments_data.y;
int bufferSize = stride_arguments_data.z;
int sourceOffset = stride_arguments_data.w;
int strideRemainder = targetStride - sourceStride;
int invocations = int(gl_WorkGroupSize.x);
int copiesRequired = bufferSize / sourceStride;
// Find the copies that this invocation should perform.
// - Copies that all invocations perform.
int allInvocationCopies = copiesRequired / invocations;
// - Extra remainder copy that this invocation performs.
int index = int(gl_LocalInvocationID.x);
int extra = (index < (copiesRequired % invocations)) ? 1 : 0;
int copyCount = allInvocationCopies + extra;
// Finally, get the starting offset. Make sure to count extra copies.
int startCopy = allInvocationCopies * index + min(copiesRequired % invocations, index);
int srcOffset = sourceOffset + startCopy * sourceStride;
int dstOffset = startCopy * targetStride;
// Perform the copies for this region
for (int i=0; i<copyCount; i++) {
for (int j=0; j<sourceStride; j++) {
out_data[dstOffset++] = in_data[srcOffset++];
}
for (int j=0; j<strideRemainder; j++) {
out_data[dstOffset++] = uint8_t(0);
}
}
}

View File

@ -2,6 +2,249 @@ namespace Ryujinx.Graphics.Vulkan.Shaders
{ {
static class ShaderBinaries static class ShaderBinaries
{ {
public static readonly byte[] ChangeBufferStrideShaderSource = new byte[]
{
0x03, 0x02, 0x23, 0x07, 0x00, 0x05, 0x01, 0x00, 0x0A, 0x00, 0x0D, 0x00, 0x8E, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x11, 0x00, 0x02, 0x00, 0x01, 0x00, 0x00, 0x00, 0x11, 0x00, 0x02, 0x00,
0x60, 0x11, 0x00, 0x00, 0x0B, 0x00, 0x06, 0x00, 0x01, 0x00, 0x00, 0x00, 0x47, 0x4C, 0x53, 0x4C,
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0x01, 0x00, 0x00, 0x00, 0x03, 0x00, 0x03, 0x00, 0x02, 0x00, 0x00, 0x00, 0xC2, 0x01, 0x00, 0x00,
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0x3E, 0x00, 0x03, 0x00, 0x87, 0x00, 0x00, 0x00, 0x86, 0x00, 0x00, 0x00, 0xF9, 0x00, 0x02, 0x00,
0x7F, 0x00, 0x00, 0x00, 0xF8, 0x00, 0x02, 0x00, 0x7F, 0x00, 0x00, 0x00, 0x3D, 0x00, 0x04, 0x00,
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0x06, 0x00, 0x00, 0x00, 0x89, 0x00, 0x00, 0x00, 0x88, 0x00, 0x00, 0x00, 0x3C, 0x00, 0x00, 0x00,
0x3E, 0x00, 0x03, 0x00, 0x7B, 0x00, 0x00, 0x00, 0x89, 0x00, 0x00, 0x00, 0xF9, 0x00, 0x02, 0x00,
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0x06, 0x00, 0x00, 0x00, 0x8B, 0x00, 0x00, 0x00, 0x8A, 0x00, 0x00, 0x00, 0x3C, 0x00, 0x00, 0x00,
0x3E, 0x00, 0x03, 0x00, 0x56, 0x00, 0x00, 0x00, 0x8B, 0x00, 0x00, 0x00, 0xF9, 0x00, 0x02, 0x00,
0x57, 0x00, 0x00, 0x00, 0xF8, 0x00, 0x02, 0x00, 0x59, 0x00, 0x00, 0x00, 0xFD, 0x00, 0x01, 0x00,
0x38, 0x00, 0x01, 0x00
};
public static readonly byte[] ColorBlitClearAlphaFragmentShaderSource = new byte[] public static readonly byte[] ColorBlitClearAlphaFragmentShaderSource = new byte[]
{ {
0x03, 0x02, 0x23, 0x07, 0x00, 0x00, 0x01, 0x00, 0x0A, 0x00, 0x08, 0x00, 0x1B, 0x00, 0x00, 0x00, 0x03, 0x02, 0x23, 0x07, 0x00, 0x00, 0x01, 0x00, 0x0A, 0x00, 0x08, 0x00, 0x1B, 0x00, 0x00, 0x00,

View File

@ -0,0 +1,131 @@
using BufferHandle = Ryujinx.Graphics.GAL.BufferHandle;
namespace Ryujinx.Graphics.Vulkan
{
internal struct VertexBufferState
{
public static VertexBufferState Null => new VertexBufferState(null, 0, 0, 0);
private readonly int _offset;
private readonly int _size;
private readonly int _stride;
private readonly BufferHandle _handle;
private Auto<DisposableBuffer> _buffer;
internal readonly int DescriptorIndex;
internal int AttributeScalarAlignment;
public VertexBufferState(Auto<DisposableBuffer> buffer, int descriptorIndex, int offset, int size, int stride = 0)
{
_buffer = buffer;
_handle = BufferHandle.Null;
_offset = offset;
_size = size;
_stride = stride;
DescriptorIndex = descriptorIndex;
AttributeScalarAlignment = 1;
buffer?.IncrementReferenceCount();
}
public VertexBufferState(BufferHandle handle, int descriptorIndex, int offset, int size, int stride = 0)
{
// This buffer state may be rewritten at bind time, so it must be retrieved on bind.
_buffer = null;
_handle = handle;
_offset = offset;
_size = size;
_stride = stride;
DescriptorIndex = descriptorIndex;
AttributeScalarAlignment = 1;
}
public void BindVertexBuffer(VulkanRenderer gd, CommandBufferScoped cbs, uint binding, ref PipelineState state)
{
var autoBuffer = _buffer;
if (_handle != BufferHandle.Null)
{
// May need to restride the vertex buffer.
if (gd.NeedsVertexBufferAlignment(AttributeScalarAlignment, out int alignment) && (_stride % alignment) != 0)
{
autoBuffer = gd.BufferManager.GetAlignedVertexBuffer(cbs, _handle, _offset, _size, _stride, alignment);
int stride = (_stride + (alignment - 1)) & -alignment;
var buffer = autoBuffer.Get(cbs, _offset, _size).Value;
if (gd.Capabilities.SupportsExtendedDynamicState)
{
gd.ExtendedDynamicStateApi.CmdBindVertexBuffers2(
cbs.CommandBuffer,
binding,
1,
buffer,
0,
(ulong)(_size / _stride) * (ulong)stride,
(ulong)stride);
}
else
{
gd.Api.CmdBindVertexBuffers(cbs.CommandBuffer, binding, 1, buffer, 0);
}
_buffer = autoBuffer;
state.Internal.VertexBindingDescriptions[DescriptorIndex].Stride = (uint)stride;
return;
}
else
{
autoBuffer = gd.BufferManager.GetBuffer(cbs.CommandBuffer, _handle, false, out int _);
// The original stride must be reapplied in case it was rewritten.
state.Internal.VertexBindingDescriptions[DescriptorIndex].Stride = (uint)_stride;
}
}
if (autoBuffer != null)
{
var buffer = autoBuffer.Get(cbs, _offset, _size).Value;
if (gd.Capabilities.SupportsExtendedDynamicState)
{
gd.ExtendedDynamicStateApi.CmdBindVertexBuffers2(
cbs.CommandBuffer,
binding,
1,
buffer,
(ulong)_offset,
(ulong)_size,
(ulong)_stride);
}
else
{
gd.Api.CmdBindVertexBuffers(cbs.CommandBuffer, binding, 1, buffer, (ulong)_offset);
}
}
}
public bool BoundEquals(Auto<DisposableBuffer> buffer)
{
return _buffer == buffer;
}
public void Dispose()
{
// Only dispose if this buffer is not refetched on each bind.
if (_handle == BufferHandle.Null)
{
_buffer?.DecrementReferenceCount();
}
}
}
}

View File

@ -28,6 +28,7 @@ namespace Ryujinx.Graphics.Vulkan
"VK_EXT_fragment_shader_interlock", "VK_EXT_fragment_shader_interlock",
"VK_EXT_index_type_uint8", "VK_EXT_index_type_uint8",
"VK_EXT_robustness2", "VK_EXT_robustness2",
"VK_KHR_shader_float16_int8",
"VK_EXT_shader_subgroup_ballot", "VK_EXT_shader_subgroup_ballot",
"VK_EXT_subgroup_size_control", "VK_EXT_subgroup_size_control",
"VK_NV_geometry_shader_passthrough" "VK_NV_geometry_shader_passthrough"

View File

@ -188,11 +188,22 @@ namespace Ryujinx.Graphics.Vulkan
SType = StructureType.PhysicalDeviceRobustness2FeaturesExt SType = StructureType.PhysicalDeviceRobustness2FeaturesExt
}; };
PhysicalDeviceShaderFloat16Int8FeaturesKHR featuresShaderInt8 = new PhysicalDeviceShaderFloat16Int8FeaturesKHR()
{
SType = StructureType.PhysicalDeviceShaderFloat16Int8Features
};
if (supportedExtensions.Contains("VK_EXT_robustness2")) if (supportedExtensions.Contains("VK_EXT_robustness2"))
{ {
features2.PNext = &featuresRobustness2; features2.PNext = &featuresRobustness2;
} }
if (supportedExtensions.Contains("VK_KHR_shader_float16_int8"))
{
featuresShaderInt8.PNext = features2.PNext;
features2.PNext = &featuresShaderInt8;
}
Api.GetPhysicalDeviceFeatures2(_physicalDevice, &features2); Api.GetPhysicalDeviceFeatures2(_physicalDevice, &features2);
Capabilities = new HardwareCapabilities( Capabilities = new HardwareCapabilities(
@ -202,6 +213,7 @@ namespace Ryujinx.Graphics.Vulkan
supportedExtensions.Contains("VK_EXT_fragment_shader_interlock"), supportedExtensions.Contains("VK_EXT_fragment_shader_interlock"),
supportedExtensions.Contains("VK_NV_geometry_shader_passthrough"), supportedExtensions.Contains("VK_NV_geometry_shader_passthrough"),
supportedExtensions.Contains("VK_EXT_subgroup_size_control"), supportedExtensions.Contains("VK_EXT_subgroup_size_control"),
featuresShaderInt8.ShaderInt8,
supportedExtensions.Contains(ExtConditionalRendering.ExtensionName), supportedExtensions.Contains(ExtConditionalRendering.ExtensionName),
supportedExtensions.Contains(ExtExtendedDynamicState.ExtensionName), supportedExtensions.Contains(ExtExtendedDynamicState.ExtensionName),
features2.Features.MultiViewport, features2.Features.MultiViewport,
@ -506,6 +518,24 @@ namespace Ryujinx.Graphics.Vulkan
PrintGpuInformation(); PrintGpuInformation();
} }
public bool NeedsVertexBufferAlignment(int attrScalarAlignment, out int alignment)
{
if (Vendor != Vendor.Nvidia)
{
// Vulkan requires that vertex attributes are globally aligned by their component size,
// so buffer strides that don't divide by the largest scalar element are invalid.
// Guest applications do this, NVIDIA GPUs are OK with it, others are not.
alignment = attrScalarAlignment;
return true;
}
alignment = 1;
return false;
}
public void PreFrame() public void PreFrame()
{ {
_syncManager.Cleanup(); _syncManager.Cleanup();