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implement pipeline cache
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parent
f2490347af
commit
bab9542020
4 changed files with 191 additions and 12 deletions
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@ -9,5 +9,10 @@ namespace Ryujinx.Graphics.Metal
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public const int MaxTexturesPerStage = 64;
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public const int MaxCommandBuffersPerQueue = 16;
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public const int MaxTextureBindings = MaxTexturesPerStage * MaxShaderStages;
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public const int MaxColorAttachments = 8;
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// TODO: Check this value
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public const int MaxVertexAttributes = 16;
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// TODO: Check this value
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public const int MaxVertexLayouts = 16;
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}
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}
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@ -27,8 +27,6 @@ namespace Ryujinx.Graphics.Metal
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[SupportedOSPlatform("macos")]
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public struct EncoderState
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{
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public const int MaxColorAttachments = 8;
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public MTLFunction? VertexFunction = null;
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public MTLFunction? FragmentFunction = null;
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@ -64,7 +62,7 @@ namespace Ryujinx.Graphics.Metal
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// Changes to attachments take recreation!
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public MTLTexture DepthStencil = default;
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public MTLTexture[] RenderTargets = new MTLTexture[MaxColorAttachments];
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public MTLTexture[] RenderTargets = new MTLTexture[Constants.MaxColorAttachments];
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public Dictionary<int, BlendDescriptor> BlendDescriptors = new();
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public ColorF BlendColor = new();
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@ -16,6 +16,8 @@ namespace Ryujinx.Graphics.Metal
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private readonly MTLDevice _device;
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private readonly Pipeline _pipeline;
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private readonly RenderPipelineCache RenderPipelineCache;
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private EncoderState _currentState = new();
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private EncoderState _backState = new();
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@ -28,6 +30,7 @@ namespace Ryujinx.Graphics.Metal
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{
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_device = device;
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_pipeline = pipeline;
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RenderPipelineCache = new(device);
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}
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public void SwapStates()
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@ -45,7 +48,7 @@ namespace Ryujinx.Graphics.Metal
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// Initialise Pass & State
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var renderPassDescriptor = new MTLRenderPassDescriptor();
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for (int i = 0; i < EncoderState.MaxColorAttachments; i++)
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for (int i = 0; i < Constants.MaxColorAttachments; i++)
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{
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if (_currentState.RenderTargets[i] != IntPtr.Zero)
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{
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@ -131,7 +134,7 @@ namespace Ryujinx.Graphics.Metal
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private void SetPipelineState(MTLRenderCommandEncoder renderCommandEncoder) {
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var renderPipelineDescriptor = new MTLRenderPipelineDescriptor();
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for (int i = 0; i < EncoderState.MaxColorAttachments; i++)
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for (int i = 0; i < Constants.MaxColorAttachments; i++)
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{
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if (_currentState.RenderTargets[i] != IntPtr.Zero)
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{
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@ -198,12 +201,7 @@ namespace Ryujinx.Graphics.Metal
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renderPipelineDescriptor.FragmentFunction = _currentState.FragmentFunction.Value;
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}
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var error = new NSError(IntPtr.Zero);
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var pipelineState = _device.NewRenderPipelineState(renderPipelineDescriptor, ref error);
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if (error != IntPtr.Zero)
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{
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Logger.Error?.PrintMsg(LogClass.Gpu, $"Failed to create Render Pipeline State: {StringHelper.String(error.LocalizedDescription)}");
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}
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var pipelineState = RenderPipelineCache.GetOrCreate(renderPipelineDescriptor);
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renderCommandEncoder.SetRenderPipelineState(pipelineState);
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@ -249,7 +247,7 @@ namespace Ryujinx.Graphics.Metal
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public void UpdateRenderTargets(ITexture[] colors, ITexture depthStencil)
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{
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_currentState.RenderTargets = new MTLTexture[EncoderState.MaxColorAttachments];
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_currentState.RenderTargets = new MTLTexture[Constants.MaxColorAttachments];
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for (int i = 0; i < colors.Length; i++)
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{
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178
src/Ryujinx.Graphics.Metal/StateCache.cs
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178
src/Ryujinx.Graphics.Metal/StateCache.cs
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@ -0,0 +1,178 @@
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using Ryujinx.Common.Logging;
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using Ryujinx.Graphics.GAL;
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using SharpMetal.Foundation;
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using SharpMetal.Metal;
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using System;
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using System.Collections.Generic;
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using System.Runtime.Versioning;
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namespace Ryujinx.Graphics.Metal
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{
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[SupportedOSPlatform("macos")]
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public abstract class StateCache<T, DescriptorT, HashT>
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{
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private Dictionary<HashT, T> Cache = new();
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protected abstract HashT GetHash(DescriptorT descriptor);
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protected abstract T CreateValue(DescriptorT descriptor);
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public T GetOrCreate(DescriptorT descriptor)
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{
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var hash = GetHash(descriptor);
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if (Cache.TryGetValue(hash, out T value))
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{
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return value;
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}
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else
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{
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var newValue = CreateValue(descriptor);
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Cache.Add(hash, newValue);
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return newValue;
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}
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}
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}
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[SupportedOSPlatform("macos")]
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public struct RenderPipelineHash
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{
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public MTLFunction VertexFunction;
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public MTLFunction FragmentFunction;
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public struct ColorAttachmentHash
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{
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public MTLPixelFormat PixelFormat;
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public bool BlendingEnabled;
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public MTLBlendOperation RgbBlendOperation;
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public MTLBlendOperation AlphaBlendOperation;
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public MTLBlendFactor SourceRGBBlendFactor;
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public MTLBlendFactor DestinationRGBBlendFactor;
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public MTLBlendFactor SourceAlphaBlendFactor;
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public MTLBlendFactor DestinationAlphaBlendFactor;
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}
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[System.Runtime.CompilerServices.InlineArray(Constants.MaxColorAttachments)]
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public struct ColorAttachmentHashArray
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{
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public ColorAttachmentHash data;
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}
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public ColorAttachmentHashArray ColorAttachments;
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public struct DepthStencilAttachmentHash
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{
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public MTLPixelFormat DepthPixelFormat;
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public MTLPixelFormat StencilPixelFormat;
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}
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public DepthStencilAttachmentHash DepthStencilAttachment;
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public struct VertexDescriptorHash
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{
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public struct AttributeHash
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{
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public MTLVertexFormat Format;
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public int Offset;
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public int BufferIndex;
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}
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[System.Runtime.CompilerServices.InlineArray(Constants.MaxVertexAttributes)]
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public struct AttributeHashArray
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{
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public AttributeHash data;
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}
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public AttributeHashArray Attributes;
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public struct LayoutHash
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{
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public MTLVertexFormat Format;
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public int Stride;
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public int StepFunction;
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public int StepRate;
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}
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[System.Runtime.CompilerServices.InlineArray(Constants.MaxVertexLayouts)]
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public struct LayoutHashArray
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{
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public LayoutHash data;
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}
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public LayoutHashArray Layouts;
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}
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public VertexDescriptorHash VertexDescriptor;
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}
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[SupportedOSPlatform("macos")]
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public class RenderPipelineCache : StateCache<MTLRenderPipelineState, MTLRenderPipelineDescriptor, RenderPipelineHash>
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{
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private readonly MTLDevice _device;
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public RenderPipelineCache(MTLDevice device) {
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_device = device;
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}
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protected override RenderPipelineHash GetHash(MTLRenderPipelineDescriptor descriptor) {
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var hash = new RenderPipelineHash();
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// Functions
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hash.VertexFunction = descriptor.VertexFunction;
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hash.FragmentFunction = descriptor.FragmentFunction;
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// Color Attachments
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for (int i = 0; i < Constants.MaxColorAttachments; i++)
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{
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var attachment = descriptor.ColorAttachments.Object((ulong)i);
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hash.ColorAttachments[i] = new RenderPipelineHash.ColorAttachmentHash
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{
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PixelFormat = attachment.PixelFormat,
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BlendingEnabled = attachment.BlendingEnabled,
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RgbBlendOperation = attachment.RgbBlendOperation,
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AlphaBlendOperation = attachment.AlphaBlendOperation,
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SourceRGBBlendFactor = attachment.SourceRGBBlendFactor,
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DestinationRGBBlendFactor = attachment.DestinationRGBBlendFactor,
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SourceAlphaBlendFactor = attachment.SourceAlphaBlendFactor,
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DestinationAlphaBlendFactor = attachment.DestinationAlphaBlendFactor
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};
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}
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// Depth stencil attachment
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hash.DepthStencilAttachment = new RenderPipelineHash.DepthStencilAttachmentHash
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{
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DepthPixelFormat = descriptor.DepthAttachmentPixelFormat,
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StencilPixelFormat = descriptor.StencilAttachmentPixelFormat
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};
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// Vertex descriptor
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hash.VertexDescriptor = new RenderPipelineHash.VertexDescriptorHash();
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// Attributes
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for (int i = 0; i < Constants.MaxVertexAttributes; i++)
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{
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var attribute = descriptor.VertexDescriptor.Attributes.Object((ulong)i);
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hash.VertexDescriptor.Attributes[i] = new RenderPipelineHash.VertexDescriptorHash.AttributeHash
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{
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Format = attribute.Format,
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Offset = (int)attribute.Offset,
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BufferIndex = (int)attribute.BufferIndex
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};
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}
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// Layouts
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for (int i = 0; i < Constants.MaxVertexLayouts; i++)
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{
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var layout = descriptor.VertexDescriptor.Layouts.Object((ulong)i);
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hash.VertexDescriptor.Layouts[i] = new RenderPipelineHash.VertexDescriptorHash.LayoutHash
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{
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Stride = (int)layout.Stride,
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StepFunction = (int)layout.StepFunction,
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StepRate = (int)layout.StepRate
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};
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}
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return hash;
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}
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protected override MTLRenderPipelineState CreateValue(MTLRenderPipelineDescriptor descriptor)
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{
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var error = new NSError(IntPtr.Zero);
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var pipelineState = _device.NewRenderPipelineState(descriptor, ref error);
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if (error != IntPtr.Zero)
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{
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Logger.Error?.PrintMsg(LogClass.Gpu, $"Failed to create Render Pipeline State: {StringHelper.String(error.LocalizedDescription)}");
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}
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return pipelineState;
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}
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}
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}
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