Author SHA1 Message Date
KeatonTheBot f904c82d76 Revert "use UnmanagedCallersOnly for delegates"
This reverts commit 7bf6c3f016.
2026-08-29 18:08:19 -05:00
KeatonTheBot 48b11b71fa RdXmlFile: Add, sort assemblies 2026-08-29 18:08:19 -05:00
KeatonTheBot 53bde335d9 Add solution configurations 2026-08-29 18:08:19 -05:00
KeatonTheBot ec0ec3a86a Tweak AOT MSBuild properties in Ryujinx.csproj 2026-08-29 18:08:19 -05:00
KeatonTheBot 02d0b480e3 Add Silk.NET.Vulkan.Extensions.EXT.ExtAttachmentFeedbackLoopDynamicState to rd.xml 2026-08-29 18:08:19 -05:00
Emmanuel Hansen 07de13a47b Add native AOT support
- Add native AOT solution config

- Simplify assembly access in application library class

- Make GetFunctionPointerForDelegate as explicit as possible
2026-08-29 18:08:19 -05:00
142 changed files with 1859 additions and 4336 deletions
+11 -11
View File
@@ -3,13 +3,13 @@
<ManagePackageVersionsCentrally>true</ManagePackageVersionsCentrally>
</PropertyGroup>
<ItemGroup>
<PackageVersion Include="Avalonia" Version="12.1.2" />
<PackageVersion Include="Avalonia" Version="12.1.1" />
<PackageVersion Include="Avalonia.Controls.DataGrid" Version="12.1.2" />
<PackageVersion Include="Avalonia.Desktop" Version="12.1.2" />
<PackageVersion Include="Avalonia.Desktop" Version="12.1.1" />
<PackageVersion Include="AvaloniaUI.DiagnosticsSupport" Version="2.2.3" />
<PackageVersion Include="Avalonia.Markup.Xaml.Loader" Version="12.1.2" />
<PackageVersion Include="Svg.Controls.Avalonia" Version="12.0.0.17" />
<PackageVersion Include="Svg.Controls.Skia.Avalonia" Version="12.0.0.17" />
<PackageVersion Include="Avalonia.Markup.Xaml.Loader" Version="12.1.1" />
<PackageVersion Include="Svg.Controls.Avalonia" Version="12.0.0.15" />
<PackageVersion Include="Svg.Controls.Skia.Avalonia" Version="12.0.0.15" />
<PackageVersion Include="CommandLineParser" Version="2.9.1" />
<PackageVersion Include="CommunityToolkit.Mvvm" Version="8.4.2" />
<PackageVersion Include="Concentus" Version="2.2.2" />
@@ -20,8 +20,8 @@
<PackageVersion Include="Humanizer" Version="3.0.10" />
<PackageVersion Include="Microsoft.CodeAnalysis.Analyzers" Version="3.3.4" />
<PackageVersion Include="Microsoft.CodeAnalysis.CSharp" Version="4.12.0" />
<PackageVersion Include="Microsoft.IdentityModel.JsonWebTokens" Version="8.22.0" />
<PackageVersion Include="Microsoft.NET.Test.Sdk" Version="18.10.0" />
<PackageVersion Include="Microsoft.IdentityModel.JsonWebTokens" Version="8.21.0" />
<PackageVersion Include="Microsoft.NET.Test.Sdk" Version="18.8.1" />
<PackageVersion Include="Microsoft.IO.RecyclableMemoryStream" Version="3.0.1" />
<PackageVersion Include="MsgPack.Cli" Version="1.0.1" />
<PackageVersion Include="NetCoreServer" Version="8.0.7" />
@@ -36,9 +36,9 @@
<PackageVersion Include="Ryujinx.Graphics.Nvdec.Dependencies.Linux" Version="6.1.4-build6" />
<PackageVersion Include="Ryujinx.Graphics.Nvdec.Dependencies.macOS" Version="5.0.3-build14" />
<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.Graphics.Vulkan.MoltenVK" Version="1.4.2-ryujinx.6" />
<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" />
@@ -48,7 +48,7 @@
<PackageVersion Include="SkiaSharp" Version="3.119.4" />
<PackageVersion Include="SkiaSharp.NativeAssets.Linux" Version="3.119.4" />
<PackageVersion Include="SPB" Version="0.0.4-build32" />
<PackageVersion Include="System.IO.Hashing" Version="10.0.12" />
<PackageVersion Include="System.IO.Hashing" Version="10.0.11" />
<PackageVersion Include="UnicornEngine.Unicorn" Version="2.1.0" />
</ItemGroup>
</Project>
</Project>
+6 -1
View File
@@ -1,4 +1,10 @@
<Solution>
<Configurations>
<BuildType Name="Debug" />
<BuildType Name="Debug AOT" />
<BuildType Name="Release" />
<BuildType Name="Release AOT" />
</Configurations>
<Folder Name="/Solution Items/">
<File Path=".editorconfig" />
<File Path="Directory.Build.props" />
@@ -21,7 +27,6 @@
<Project Path="src/Ryujinx.Graphics.Nvdec.Vp9/Ryujinx.Graphics.Nvdec.Vp9.csproj" />
<Project Path="src/Ryujinx.Graphics.Nvdec/Ryujinx.Graphics.Nvdec.csproj" />
<Project Path="src/Ryujinx.Graphics.OpenGL/Ryujinx.Graphics.OpenGL.csproj" />
<Project Path="src/Ryujinx.Graphics.RenderDocApi/Ryujinx.Graphics.RenderDocApi.csproj" />
<Project Path="src/Ryujinx.Graphics.Shader/Ryujinx.Graphics.Shader.csproj" />
<Project Path="src/Ryujinx.Graphics.Texture/Ryujinx.Graphics.Texture.csproj" />
<Project Path="src/Ryujinx.Graphics.Vic/Ryujinx.Graphics.Vic.csproj" />
+2
View File
@@ -4,6 +4,8 @@
<RuntimeIdentifiers>osx-arm64</RuntimeIdentifiers>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -406,7 +406,7 @@ namespace ARMeilleure.Instructions
{
Operand res = EmitSoftFloatCall(context, nameof(SoftFloat32.FPSub), op1, op2);
return EmitUnaryMathCall(context, nameof(MathHelper.Abs), res);
return EmitUnaryMathCall(context, nameof(Math.Abs), res);
});
}
}
@@ -451,7 +451,7 @@ namespace ARMeilleure.Instructions
{
Operand res = EmitSoftFloatCall(context, nameof(SoftFloat32.FPSub), op1, op2);
return EmitUnaryMathCall(context, nameof(MathHelper.Abs), res);
return EmitUnaryMathCall(context, nameof(Math.Abs), res);
});
}
}
@@ -483,7 +483,7 @@ namespace ARMeilleure.Instructions
{
EmitScalarUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(MathHelper.Abs), op1);
return EmitUnaryMathCall(context, nameof(Math.Abs), op1);
});
}
}
@@ -522,7 +522,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(MathHelper.Abs), op1);
return EmitUnaryMathCall(context, nameof(Math.Abs), op1);
});
}
}
@@ -2246,7 +2246,7 @@ namespace ARMeilleure.Instructions
{
EmitScalarUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1);
return EmitUnaryMathCall(context, nameof(Math.Floor), op1);
});
}
}
@@ -2265,7 +2265,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1);
return EmitUnaryMathCall(context, nameof(Math.Floor), op1);
});
}
}
@@ -2322,7 +2322,7 @@ namespace ARMeilleure.Instructions
{
EmitScalarUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op1);
return EmitUnaryMathCall(context, nameof(Math.Ceiling), op1);
});
}
}
@@ -2341,7 +2341,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op1);
return EmitUnaryMathCall(context, nameof(Math.Ceiling), op1);
});
}
}
@@ -2390,7 +2390,7 @@ namespace ARMeilleure.Instructions
{
EmitScalarUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(MathHelper.Truncate), op1);
return EmitUnaryMathCall(context, nameof(Math.Truncate), op1);
});
}
}
@@ -2409,7 +2409,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(MathHelper.Truncate), op1);
return EmitUnaryMathCall(context, nameof(Math.Truncate), op1);
});
}
}
@@ -43,7 +43,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitScalarUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Abs), op1));
EmitScalarUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Abs), op1));
}
}
@@ -66,7 +66,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitVectorUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Abs), op1));
EmitVectorUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Abs), op1));
}
}
else
@@ -726,8 +726,8 @@ namespace ARMeilleure.Instructions
if (absolute)
{
ne = EmitUnaryMathCall(context, nameof(MathHelper.Abs), ne);
me = EmitUnaryMathCall(context, nameof(MathHelper.Abs), me);
ne = EmitUnaryMathCall(context, nameof(Math.Abs), ne);
me = EmitUnaryMathCall(context, nameof(Math.Abs), me);
}
Operand e = EmitSoftFloatCall(context, name, ne, me);
@@ -333,7 +333,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt_s_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1));
EmitFcvt_s_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Floor), op1));
}
}
@@ -349,7 +349,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1), signed: true, scalar: false);
EmitFcvt(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Floor), op1), signed: true, scalar: false);
}
}
@@ -365,7 +365,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt_u_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1));
EmitFcvt_u_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Floor), op1));
}
}
@@ -538,7 +538,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt_s_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op1));
EmitFcvt_s_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Ceiling), op1));
}
}
@@ -554,7 +554,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt_u_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op1));
EmitFcvt_u_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Ceiling), op1));
}
}
@@ -357,10 +357,10 @@ namespace ARMeilleure.Instructions
toConvert = EmitRoundMathCall(context, MidpointRounding.ToEven, toConvert);
break;
case 0b10: // Towards positive infinity
toConvert = EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), toConvert);
toConvert = EmitUnaryMathCall(context, nameof(Math.Ceiling), toConvert);
break;
case 0b11: // Towards negative infinity
toConvert = EmitUnaryMathCall(context, nameof(MathHelper.Floor), toConvert);
toConvert = EmitUnaryMathCall(context, nameof(Math.Floor), toConvert);
break;
}
@@ -494,10 +494,10 @@ namespace ARMeilleure.Instructions
toConvert = EmitRoundMathCall(context, MidpointRounding.ToEven, toConvert);
break;
case 0b10: // Towards positive infinity
toConvert = EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), toConvert);
toConvert = EmitUnaryMathCall(context, nameof(Math.Ceiling), toConvert);
break;
case 0b11: // Towards negative infinity
toConvert = EmitUnaryMathCall(context, nameof(MathHelper.Floor), toConvert);
toConvert = EmitUnaryMathCall(context, nameof(Math.Floor), toConvert);
break;
}
@@ -534,7 +534,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitVectorUnaryOpF32(context, (m) => EmitUnaryMathCall(context, nameof(MathHelper.Floor), m));
EmitVectorUnaryOpF32(context, (m) => EmitUnaryMathCall(context, nameof(Math.Floor), m));
}
}
@@ -574,7 +574,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitVectorUnaryOpF32(context, (m) => EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), m));
EmitVectorUnaryOpF32(context, (m) => EmitUnaryMathCall(context, nameof(Math.Ceiling), m));
}
}
@@ -613,7 +613,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitScalarUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Truncate), op1));
EmitScalarUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Truncate), op1));
}
}
@@ -460,8 +460,8 @@ namespace ARMeilleure.Instructions
IOpCodeSimd op = (IOpCodeSimd)context.CurrOp;
MethodInfo info = (op.Size & 1) == 0
? typeof(MathHelperF).GetMethod(name, [typeof(float)])
: typeof(MathHelper).GetMethod(name, [typeof(double)]);
? typeof(MathF).GetMethod(name, [typeof(float)])
: typeof(Math).GetMethod(name, [typeof(double)]);
return context.Call(info, n);
}
@@ -470,11 +470,11 @@ namespace ARMeilleure.Instructions
{
IOpCodeSimd op = (IOpCodeSimd)context.CurrOp;
string name = nameof(MathHelper.Round);
string name = nameof(Math.Round);
MethodInfo info = (op.Size & 1) == 0
? typeof(MathHelperF).GetMethod(name, [typeof(float), typeof(int)])
: typeof(MathHelper).GetMethod(name, [typeof(double), typeof(int)]);
? typeof(MathF).GetMethod(name, [typeof(float), typeof(MidpointRounding)])
: typeof(Math).GetMethod(name, [typeof(double), typeof(MidpointRounding)]);
return context.Call(info, n, Const((int)roundMode));
}
@@ -510,16 +510,16 @@ namespace ARMeilleure.Instructions
context.MarkLabel(lbl1);
context.BranchIf(lbl2, rMode, rP, Comparison.NotEqual);
context.Copy(res, EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op));
context.Copy(res, EmitUnaryMathCall(context, nameof(Math.Ceiling), op));
context.Branch(lblEnd);
context.MarkLabel(lbl2);
context.BranchIf(lbl3, rMode, rM, Comparison.NotEqual);
context.Copy(res, EmitUnaryMathCall(context, nameof(MathHelper.Floor), op));
context.Copy(res, EmitUnaryMathCall(context, nameof(Math.Floor), op));
context.Branch(lblEnd);
context.MarkLabel(lbl3);
context.Copy(res, EmitUnaryMathCall(context, nameof(MathHelper.Truncate), op));
context.Copy(res, EmitUnaryMathCall(context, nameof(Math.Truncate), op));
context.Branch(lblEnd);
context.MarkLabel(lblEnd);
@@ -1,71 +0,0 @@
using System;
using System.Runtime.InteropServices;
namespace ARMeilleure.Instructions
{
static class MathHelper
{
[UnmanagedCallersOnly]
public static double Abs(double value)
{
return Math.Abs(value);
}
[UnmanagedCallersOnly]
public static double Ceiling(double value)
{
return Math.Ceiling(value);
}
[UnmanagedCallersOnly]
public static double Floor(double value)
{
return Math.Floor(value);
}
[UnmanagedCallersOnly]
public static double Round(double value, int mode)
{
return Math.Round(value, (MidpointRounding)mode);
}
[UnmanagedCallersOnly]
public static double Truncate(double value)
{
return Math.Truncate(value);
}
}
static class MathHelperF
{
[UnmanagedCallersOnly]
public static float Abs(float value)
{
return MathF.Abs(value);
}
[UnmanagedCallersOnly]
public static float Ceiling(float value)
{
return MathF.Ceiling(value);
}
[UnmanagedCallersOnly]
public static float Floor(float value)
{
return MathF.Floor(value);
}
[UnmanagedCallersOnly]
public static float Round(float value, int mode)
{
return MathF.Round(value, (MidpointRounding)mode);
}
[UnmanagedCallersOnly]
public static float Truncate(float value)
{
return MathF.Truncate(value);
}
}
}
@@ -2,7 +2,6 @@ using ARMeilleure.Memory;
using ARMeilleure.State;
using ARMeilleure.Translation;
using System;
using System.Runtime.InteropServices;
namespace ARMeilleure.Instructions
{
@@ -35,7 +34,6 @@ namespace ARMeilleure.Instructions
Context = null;
}
[UnmanagedCallersOnly]
public static void Break(ulong address, int imm)
{
Statistics.PauseTimer();
@@ -45,7 +43,6 @@ namespace ARMeilleure.Instructions
Statistics.ResumeTimer();
}
[UnmanagedCallersOnly]
public static void SupervisorCall(ulong address, int imm)
{
Statistics.PauseTimer();
@@ -55,7 +52,6 @@ namespace ARMeilleure.Instructions
Statistics.ResumeTimer();
}
[UnmanagedCallersOnly]
public static void Undefined(ulong address, int opCode)
{
Statistics.PauseTimer();
@@ -66,31 +62,26 @@ namespace ARMeilleure.Instructions
}
#region "System registers"
[UnmanagedCallersOnly]
public static ulong GetCtrEl0()
{
return GetContext().CtrEl0;
}
[UnmanagedCallersOnly]
public static ulong GetDczidEl0()
{
return GetContext().DczidEl0;
}
[UnmanagedCallersOnly]
public static ulong GetCntfrqEl0()
{
return GetContext().CntfrqEl0;
}
[UnmanagedCallersOnly]
public static ulong GetCntpctEl0()
{
return GetContext().CntpctEl0;
}
[UnmanagedCallersOnly]
public static ulong GetCntvctEl0()
{
return GetContext().CntvctEl0;
@@ -98,31 +89,26 @@ namespace ARMeilleure.Instructions
#endregion
#region "Read"
[UnmanagedCallersOnly]
public static byte ReadByte(ulong address)
{
return GetMemoryManager().ReadGuest<byte>(address);
}
[UnmanagedCallersOnly]
public static ushort ReadUInt16(ulong address)
{
return GetMemoryManager().ReadGuest<ushort>(address);
}
[UnmanagedCallersOnly]
public static uint ReadUInt32(ulong address)
{
return GetMemoryManager().ReadGuest<uint>(address);
}
[UnmanagedCallersOnly]
public static ulong ReadUInt64(ulong address)
{
return GetMemoryManager().ReadGuest<ulong>(address);
}
[UnmanagedCallersOnly]
public static V128 ReadVector128(ulong address)
{
return GetMemoryManager().ReadGuest<V128>(address);
@@ -130,56 +116,47 @@ namespace ARMeilleure.Instructions
#endregion
#region "Write"
[UnmanagedCallersOnly]
public static void WriteByte(ulong address, byte value)
{
GetMemoryManager().WriteGuest(address, value);
}
[UnmanagedCallersOnly]
public static void WriteUInt16(ulong address, ushort value)
{
GetMemoryManager().WriteGuest(address, value);
}
[UnmanagedCallersOnly]
public static void WriteUInt32(ulong address, uint value)
{
GetMemoryManager().WriteGuest(address, value);
}
[UnmanagedCallersOnly]
public static void WriteUInt64(ulong address, ulong value)
{
GetMemoryManager().WriteGuest(address, value);
}
[UnmanagedCallersOnly]
public static void WriteVector128(ulong address, V128 value)
{
GetMemoryManager().WriteGuest(address, value);
}
#endregion
[UnmanagedCallersOnly]
public static void EnqueueForRejit(ulong address)
{
Context.Translator.EnqueueForRejit(address, GetContext().ExecutionMode);
}
[UnmanagedCallersOnly]
public static void SignalMemoryTracking(ulong address, ulong size, byte write)
public static void SignalMemoryTracking(ulong address, ulong size, bool write)
{
GetMemoryManager().SignalMemoryTracking(address, size, write == 1);
GetMemoryManager().SignalMemoryTracking(address, size, write);
}
[UnmanagedCallersOnly]
public static void ThrowInvalidMemoryAccess(ulong address)
{
throw new InvalidAccessException(address);
}
[UnmanagedCallersOnly]
public static ulong GetFunctionAddress(ulong address)
{
TranslatedFunction function = Context.Translator.GetOrTranslate(address, GetContext().ExecutionMode);
@@ -187,14 +164,12 @@ namespace ARMeilleure.Instructions
return (ulong)function.FuncPointer.ToInt64();
}
[UnmanagedCallersOnly]
public static void InvalidateCacheLine(ulong address)
{
Context.Translator.InvalidateJitCacheRegion(address, InstEmit.DczSizeInBytes);
}
[UnmanagedCallersOnly]
public static byte CheckSynchronization()
public static bool CheckSynchronization()
{
Statistics.PauseTimer();
@@ -204,7 +179,7 @@ namespace ARMeilleure.Instructions
Statistics.ResumeTimer();
return (byte)(context.Running ? 1 : 0);
return context.Running;
}
public static ExecutionContext GetContext()
@@ -1,13 +1,11 @@
using ARMeilleure.State;
using System;
using System.Runtime.InteropServices;
namespace ARMeilleure.Instructions
{
static class SoftFallback
{
#region "ShrImm64"
[UnmanagedCallersOnly]
public static long SignedShrImm64(long value, long roundConst, int shift)
{
if (roundConst == 0L)
@@ -50,7 +48,6 @@ namespace ARMeilleure.Instructions
}
}
[UnmanagedCallersOnly]
public static ulong UnsignedShrImm64(ulong value, long roundConst, int shift)
{
if (roundConst == 0L)
@@ -95,7 +92,6 @@ namespace ARMeilleure.Instructions
#endregion
#region "Saturation"
[UnmanagedCallersOnly]
public static int SatF32ToS32(float value)
{
if (float.IsNaN(value))
@@ -107,7 +103,6 @@ namespace ARMeilleure.Instructions
value <= int.MinValue ? int.MinValue : (int)value;
}
[UnmanagedCallersOnly]
public static long SatF32ToS64(float value)
{
if (float.IsNaN(value))
@@ -119,7 +114,6 @@ namespace ARMeilleure.Instructions
value <= long.MinValue ? long.MinValue : (long)value;
}
[UnmanagedCallersOnly]
public static uint SatF32ToU32(float value)
{
if (float.IsNaN(value))
@@ -131,7 +125,6 @@ namespace ARMeilleure.Instructions
value <= uint.MinValue ? uint.MinValue : (uint)value;
}
[UnmanagedCallersOnly]
public static ulong SatF32ToU64(float value)
{
if (float.IsNaN(value))
@@ -143,7 +136,6 @@ namespace ARMeilleure.Instructions
value <= ulong.MinValue ? ulong.MinValue : (ulong)value;
}
[UnmanagedCallersOnly]
public static int SatF64ToS32(double value)
{
if (double.IsNaN(value))
@@ -155,7 +147,6 @@ namespace ARMeilleure.Instructions
value <= int.MinValue ? int.MinValue : (int)value;
}
[UnmanagedCallersOnly]
public static long SatF64ToS64(double value)
{
if (double.IsNaN(value))
@@ -167,7 +158,6 @@ namespace ARMeilleure.Instructions
value <= long.MinValue ? long.MinValue : (long)value;
}
[UnmanagedCallersOnly]
public static uint SatF64ToU32(double value)
{
if (double.IsNaN(value))
@@ -179,7 +169,6 @@ namespace ARMeilleure.Instructions
value <= uint.MinValue ? uint.MinValue : (uint)value;
}
[UnmanagedCallersOnly]
public static ulong SatF64ToU64(double value)
{
if (double.IsNaN(value))
@@ -193,7 +182,6 @@ namespace ARMeilleure.Instructions
#endregion
#region "Count"
[UnmanagedCallersOnly]
public static ulong CountLeadingSigns(ulong value, int size) // size is 8, 16, 32 or 64 (SIMD&FP or Base Inst.).
{
value ^= value >> 1;
@@ -213,7 +201,6 @@ namespace ARMeilleure.Instructions
private static ReadOnlySpan<byte> ClzNibbleTbl => [4, 3, 2, 2, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0];
[UnmanagedCallersOnly]
public static ulong CountLeadingZeros(ulong value, int size) // size is 8, 16, 32 or 64 (SIMD&FP or Base Inst.).
{
if (value == 0ul)
@@ -237,49 +224,41 @@ namespace ARMeilleure.Instructions
#endregion
#region "Table"
[UnmanagedCallersOnly]
public static V128 Tbl1(V128 vector, int bytes, V128 tb0)
{
return TblOrTbx(default, vector, bytes, tb0);
}
[UnmanagedCallersOnly]
public static V128 Tbl2(V128 vector, int bytes, V128 tb0, V128 tb1)
{
return TblOrTbx(default, vector, bytes, tb0, tb1);
}
[UnmanagedCallersOnly]
public static V128 Tbl3(V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2)
{
return TblOrTbx(default, vector, bytes, tb0, tb1, tb2);
}
[UnmanagedCallersOnly]
public static V128 Tbl4(V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2, V128 tb3)
{
return TblOrTbx(default, vector, bytes, tb0, tb1, tb2, tb3);
}
[UnmanagedCallersOnly]
public static V128 Tbx1(V128 dest, V128 vector, int bytes, V128 tb0)
{
return TblOrTbx(dest, vector, bytes, tb0);
}
[UnmanagedCallersOnly]
public static V128 Tbx2(V128 dest, V128 vector, int bytes, V128 tb0, V128 tb1)
{
return TblOrTbx(dest, vector, bytes, tb0, tb1);
}
[UnmanagedCallersOnly]
public static V128 Tbx3(V128 dest, V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2)
{
return TblOrTbx(dest, vector, bytes, tb0, tb1, tb2);
}
[UnmanagedCallersOnly]
public static V128 Tbx4(V128 dest, V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2, V128 tb3)
{
return TblOrTbx(dest, vector, bytes, tb0, tb1, tb2, tb3);
@@ -321,22 +300,14 @@ namespace ARMeilleure.Instructions
private const uint Crc32RevPoly = 0xedb88320;
private const uint Crc32cRevPoly = 0x82f63b78;
[UnmanagedCallersOnly]
public static uint Crc32b(uint crc, byte value) => Crc32(crc, Crc32RevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32h(uint crc, ushort value) => Crc32h(crc, Crc32RevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32w(uint crc, uint value) => Crc32w(crc, Crc32RevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32x(uint crc, ulong value) => Crc32x(crc, Crc32RevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32cb(uint crc, byte value) => Crc32(crc, Crc32cRevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32ch(uint crc, ushort value) => Crc32h(crc, Crc32cRevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32cw(uint crc, uint value) => Crc32w(crc, Crc32cRevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32cx(uint crc, ulong value) => Crc32x(crc, Crc32cRevPoly, value);
private static uint Crc32h(uint crc, uint poly, ushort val)
@@ -387,25 +358,21 @@ namespace ARMeilleure.Instructions
#endregion
#region "Aes"
[UnmanagedCallersOnly]
public static V128 Decrypt(V128 value, V128 roundKey)
{
return CryptoHelper.AesInvSubBytes(CryptoHelper.AesInvShiftRows(value ^ roundKey));
}
[UnmanagedCallersOnly]
public static V128 Encrypt(V128 value, V128 roundKey)
{
return CryptoHelper.AesSubBytes(CryptoHelper.AesShiftRows(value ^ roundKey));
}
[UnmanagedCallersOnly]
public static V128 InverseMixColumns(V128 value)
{
return CryptoHelper.AesInvMixColumns(value);
}
[UnmanagedCallersOnly]
public static V128 MixColumns(V128 value)
{
return CryptoHelper.AesMixColumns(value);
@@ -413,7 +380,6 @@ namespace ARMeilleure.Instructions
#endregion
#region "Sha1"
[UnmanagedCallersOnly]
public static V128 HashChoose(V128 hash_abcd, uint hash_e, V128 wk)
{
for (int e = 0; e <= 3; e++)
@@ -434,13 +400,11 @@ namespace ARMeilleure.Instructions
return hash_abcd;
}
[UnmanagedCallersOnly]
public static uint FixedRotate(uint hash_e)
{
return hash_e.Rol(30);
}
[UnmanagedCallersOnly]
public static V128 HashMajority(V128 hash_abcd, uint hash_e, V128 wk)
{
for (int e = 0; e <= 3; e++)
@@ -461,7 +425,6 @@ namespace ARMeilleure.Instructions
return hash_abcd;
}
[UnmanagedCallersOnly]
public static V128 HashParity(V128 hash_abcd, uint hash_e, V128 wk)
{
for (int e = 0; e <= 3; e++)
@@ -482,7 +445,6 @@ namespace ARMeilleure.Instructions
return hash_abcd;
}
[UnmanagedCallersOnly]
public static V128 Sha1SchedulePart1(V128 w0_3, V128 w4_7, V128 w8_11)
{
ulong t2 = w4_7.Extract<ulong>(0);
@@ -493,7 +455,6 @@ namespace ARMeilleure.Instructions
return result ^ (w0_3 ^ w8_11);
}
[UnmanagedCallersOnly]
public static V128 Sha1SchedulePart2(V128 tw0_3, V128 w12_15)
{
V128 t = tw0_3 ^ (w12_15 >> 32);
@@ -538,19 +499,16 @@ namespace ARMeilleure.Instructions
#endregion
#region "Sha256"
[UnmanagedCallersOnly]
public static V128 HashLower(V128 hash_abcd, V128 hash_efgh, V128 wk)
{
return Sha256Hash(hash_abcd, hash_efgh, wk, part1: true);
}
[UnmanagedCallersOnly]
public static V128 HashUpper(V128 hash_abcd, V128 hash_efgh, V128 wk)
{
return Sha256Hash(hash_abcd, hash_efgh, wk, part1: false);
}
[UnmanagedCallersOnly]
public static V128 Sha256SchedulePart1(V128 w0_3, V128 w4_7)
{
V128 result = new();
@@ -569,7 +527,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static V128 Sha256SchedulePart2(V128 w0_3, V128 w8_11, V128 w12_15)
{
V128 result = new();
@@ -671,7 +628,6 @@ namespace ARMeilleure.Instructions
}
#endregion
[UnmanagedCallersOnly]
public static V128 PolynomialMult64_128(ulong op1, ulong op2)
{
V128 result = V128.Zero;
+85 -294
View File
@@ -1,7 +1,6 @@
using ARMeilleure.State;
using System;
using System.Diagnostics;
using System.Runtime.InteropServices;
namespace ARMeilleure.Instructions
{
@@ -313,7 +312,6 @@ namespace ARMeilleure.Instructions
static class SoftFloat16_32
{
[UnmanagedCallersOnly]
public static float FPConvert(ushort valueBits)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -489,7 +487,6 @@ namespace ARMeilleure.Instructions
static class SoftFloat16_64
{
[UnmanagedCallersOnly]
public static double FPConvert(ushort valueBits)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -665,7 +662,6 @@ namespace ARMeilleure.Instructions
static class SoftFloat32_16
{
[UnmanagedCallersOnly]
public static ushort FPConvert(float value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -785,19 +781,12 @@ namespace ARMeilleure.Instructions
static class SoftFloat32
{
[UnmanagedCallersOnly]
public static float FPAdd(float value1, float value2)
{
return FPAddFpscrImpl(value1, value2, false);
return FPAddFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPAddFpscr(float value1, float value2, byte standardFpscr)
{
return FPAddFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPAddFpscrImpl(float value1, float value2, bool standardFpscr)
public static float FPAddFpscr(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -848,8 +837,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static int FPCompare(float value1, float value2, byte signalNaNs)
public static int FPCompare(float value1, float value2, bool signalNaNs)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = context.Fpcr;
@@ -863,7 +851,7 @@ namespace ARMeilleure.Instructions
{
result = 0b0011;
if (type1 == FPType.SNaN || type2 == FPType.SNaN || signalNaNs == 1)
if (type1 == FPType.SNaN || type2 == FPType.SNaN || signalNaNs)
{
SoftFloat.FPProcessException(FPException.InvalidOp, context, fpcr);
}
@@ -887,13 +875,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPCompareEQ(float value1, float value2)
{
return FPCompareEQFpscrImpl(value1, value2, false);
return FPCompareEQFpscr(value1, value2, false);
}
private static float FPCompareEQFpscrImpl(float value1, float value2, bool standardFpscr)
public static float FPCompareEQFpscr(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -920,25 +907,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPCompareEQFpscr(float value1, float value2, byte standardFpscr)
{
return FPCompareEQFpscrImpl(value1, value2, standardFpscr == 1);
}
[UnmanagedCallersOnly]
public static float FPCompareGE(float value1, float value2)
{
return FPCompareGEFpscrImpl(value1, value2, false);
return FPCompareGEFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPCompareGEFpscr(float value1, float value2, byte standardFpscr)
{
return FPCompareGEFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPCompareGEFpscrImpl(float value1, float value2, bool standardFpscr)
public static float FPCompareGEFpscr(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -962,19 +936,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPCompareGT(float value1, float value2)
{
return FPCompareGTFpscrImpl(value1, value2, false);
return FPCompareGTFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPCompareGTFpscr(float value1, float value2, byte standardFpscr)
{
return FPCompareGTFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPCompareGTFpscrImpl(float value1, float value2, bool standardFpscr)
public static float FPCompareGTFpscr(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -998,31 +965,26 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPCompareLE(float value1, float value2)
{
return FPCompareGEFpscrImpl(value2, value1, false);
return FPCompareGE(value2, value1);
}
[UnmanagedCallersOnly]
public static float FPCompareLT(float value1, float value2)
{
return FPCompareGTFpscrImpl(value2, value1, false);
return FPCompareGT(value2, value1);
}
[UnmanagedCallersOnly]
public static float FPCompareLEFpscr(float value1, float value2, byte standardFpscr)
public static float FPCompareLEFpscr(float value1, float value2, bool standardFpscr)
{
return FPCompareGEFpscrImpl(value2, value1, standardFpscr == 1);
return FPCompareGEFpscr(value2, value1, standardFpscr);
}
[UnmanagedCallersOnly]
public static float FPCompareLTFpscr(float value1, float value2, byte standardFpscr)
public static float FPCompareLTFpscr(float value1, float value2, bool standardFpscr)
{
return FPCompareGEFpscrImpl(value2, value1, standardFpscr == 1);
return FPCompareGTFpscr(value2, value1, standardFpscr);
}
[UnmanagedCallersOnly]
public static float FPDiv(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1075,19 +1037,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMax(float value1, float value2)
{
return FPMaxFpscrImpl(value1, value2, false);
return FPMaxFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPMaxFpscr(float value1, float value2, byte standardFpscr)
{
return FPMaxFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPMaxFpscrImpl(float value1, float value2, bool standardFpscr)
public static float FPMaxFpscr(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1148,13 +1103,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMaxNum(float value1, float value2)
{
return FPMaxNumFpscrImpl(value1, value2, false);
return FPMaxNumFpscr(value1, value2, false);
}
private static float FPMaxNumFpscrImpl(float value1, float value2, bool standardFpscr)
public static float FPMaxNumFpscr(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1171,28 +1125,15 @@ namespace ARMeilleure.Instructions
value2 = FPInfinity(true);
}
return FPMaxFpscrImpl(value1, value2, standardFpscr);
return FPMaxFpscr(value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static float FPMaxNumFpscr(float value1, float value2, byte standardFpscr)
{
return FPMaxNumFpscrImpl(value1, value2, standardFpscr == 1);
}
[UnmanagedCallersOnly]
public static float FPMin(float value1, float value2)
{
return FPMinFpscrImpl(value1, value2, false);
return FPMinFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPMinFpscr(float value1, float value2, byte standardFpscr)
{
return FPMinFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPMinFpscrImpl(float value1, float value2, bool standardFpscr)
public static float FPMinFpscr(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1253,19 +1194,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMinNum(float value1, float value2)
{
return FPMinNumFpscrImpl(value1, value2, false);
return FPMinNumFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPMinNumFpscr(float value1, float value2, byte standardFpscr)
{
return FPMinNumFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPMinNumFpscrImpl(float value1, float value2, bool standardFpscr)
public static float FPMinNumFpscr(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1282,22 +1216,15 @@ namespace ARMeilleure.Instructions
value2 = FPInfinity(false);
}
return FPMinFpscrImpl(value1, value2, standardFpscr);
return FPMinFpscr(value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static float FPMul(float value1, float value2)
{
return FPMulFpscrImpl(value1, value2, false);
return FPMulFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPMulFpscr(float value1, float value2, byte standardFpscr)
{
return FPMulFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPMulFpscrImpl(float value1, float value2, bool standardFpscr)
public static float FPMulFpscr(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1344,19 +1271,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMulAdd(float valueA, float value1, float value2)
{
return FPMulAddFpscrImpl(valueA, value1, value2, false);
return FPMulAddFpscr(valueA, value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPMulAddFpscr(float valueA, float value1, float value2, byte standardFpscr)
{
return FPMulAddFpscrImpl(valueA, value1, value2, standardFpscr == 1);
}
private static float FPMulAddFpscrImpl(float valueA, float value1, float value2, bool standardFpscr)
public static float FPMulAddFpscr(float valueA, float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1422,23 +1342,20 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMulSub(float valueA, float value1, float value2)
{
value1 = value1.FPNeg();
return FPMulAddFpscrImpl(valueA, value1, value2, false);
return FPMulAdd(valueA, value1, value2);
}
[UnmanagedCallersOnly]
public static float FPMulSubFpscr(float valueA, float value1, float value2, byte standardFpscr)
public static float FPMulSubFpscr(float valueA, float value1, float value2, bool standardFpscr)
{
value1 = value1.FPNeg();
return FPMulAddFpscrImpl(valueA, value1, value2, standardFpscr == 1);
return FPMulAddFpscr(valueA, value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static float FPMulX(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1484,36 +1401,27 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPNegMulAdd(float valueA, float value1, float value2)
{
valueA = valueA.FPNeg();
value1 = value1.FPNeg();
return FPMulAddFpscrImpl(valueA, value1, value2, false);
return FPMulAdd(valueA, value1, value2);
}
[UnmanagedCallersOnly]
public static float FPNegMulSub(float valueA, float value1, float value2)
{
valueA = valueA.FPNeg();
return FPMulAddFpscrImpl(valueA, value1, value2, false);
return FPMulAdd(valueA, value1, value2);
}
[UnmanagedCallersOnly]
public static float FPRecipEstimate(float value)
{
return FPRecipEstimateFpscrImpl(value, false);
return FPRecipEstimateFpscr(value, false);
}
[UnmanagedCallersOnly]
public static float FPRecipEstimateFpscr(float value, byte standardFpscr)
{
return FPRecipEstimateFpscrImpl(value, standardFpscr == 1);
}
private static float FPRecipEstimateFpscrImpl(float value, bool standardFpscr)
public static float FPRecipEstimateFpscr(float value, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1600,7 +1508,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRecipStep(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1626,16 +1533,15 @@ namespace ARMeilleure.Instructions
}
else
{
product = FPMulFpscrImpl(value1, value2, true);
product = FPMulFpscr(value1, value2, true);
}
result = FPSubFpscrImpl(FPTwo(false), product, true);
result = FPSubFpscr(FPTwo(false), product, true);
}
return result;
}
[UnmanagedCallersOnly]
public static float FPRecipStepFused(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1679,7 +1585,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRecpX(float value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1705,19 +1610,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRSqrtEstimate(float value)
{
return FPRSqrtEstimateFpscrImpl(value, false);
return FPRSqrtEstimateFpscr(value, false);
}
[UnmanagedCallersOnly]
public static float FPRSqrtEstimateFpscr(float value, byte standardFpscr)
{
return FPRSqrtEstimateFpscrImpl(value, standardFpscr == 1);
}
private static float FPRSqrtEstimateFpscrImpl(float value, bool standardFpscr)
public static float FPRSqrtEstimateFpscr(float value, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1831,7 +1729,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRSqrtStep(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1857,7 +1754,7 @@ namespace ARMeilleure.Instructions
}
else
{
product = FPMulFpscrImpl(value1, value2, true);
product = FPMulFpscr(value1, value2, true);
}
result = FPHalvedSub(FPThree(false), product, context, fpcr);
@@ -1866,7 +1763,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRSqrtStepFused(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1910,7 +1806,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPSqrt(float value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1953,13 +1848,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPSub(float value1, float value2)
{
return FPSubFpscrImpl(value1, value2, false);
return FPSubFpscr(value1, value2, false);
}
private static float FPSubFpscrImpl(float value1, float value2, bool standardFpscr)
public static float FPSubFpscr(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2200,7 +2094,6 @@ namespace ARMeilleure.Instructions
static class SoftFloat64_16
{
[UnmanagedCallersOnly]
public static ushort FPConvert(double value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -2320,19 +2213,12 @@ namespace ARMeilleure.Instructions
static class SoftFloat64
{
[UnmanagedCallersOnly]
public static double FPAdd(double value1, double value2)
{
return FPAddFpscrImpl(value1, value2, false);
return FPAddFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPAddFpscr(double value1, double value2, byte standardFpscr)
{
return FPAddFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPAddFpscrImpl(double value1, double value2, bool standardFpscr)
public static double FPAddFpscr(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2383,8 +2269,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static int FPCompare(double value1, double value2, byte signalNaNs)
public static int FPCompare(double value1, double value2, bool signalNaNs)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = context.Fpcr;
@@ -2398,7 +2283,7 @@ namespace ARMeilleure.Instructions
{
result = 0b0011;
if (type1 == FPType.SNaN || type2 == FPType.SNaN || signalNaNs == 1)
if (type1 == FPType.SNaN || type2 == FPType.SNaN || signalNaNs)
{
SoftFloat.FPProcessException(FPException.InvalidOp, context, fpcr);
}
@@ -2422,19 +2307,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPCompareEQ(double value1, double value2)
{
return FPCompareEQFpscrImpl(value1, value2, false);
return FPCompareEQFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPCompareEQFpscr(double value1, double value2, byte standardFpscr)
{
return FPCompareEQFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPCompareEQFpscrImpl(double value1, double value2, bool standardFpscr)
public static double FPCompareEQFpscr(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2461,19 +2339,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPCompareGE(double value1, double value2)
{
return FPCompareGEFpscrImpl(value1, value2, false);
return FPCompareGEFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPCompareGEFpscr(double value1, double value2, byte standardFpscr)
{
return FPCompareGEFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPCompareGEFpscrImpl(double value1, double value2, bool standardFpscr)
public static double FPCompareGEFpscr(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2497,19 +2368,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPCompareGT(double value1, double value2)
{
return FPCompareGTFpscrImpl(value1, value2, false);
return FPCompareGTFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPCompareGTFpscr(double value1, double value2, byte standardFpscr)
{
return FPCompareGTFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPCompareGTFpscrImpl(double value1, double value2, bool standardFpscr)
public static double FPCompareGTFpscr(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2533,31 +2397,26 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPCompareLE(double value1, double value2)
{
return FPCompareGEFpscrImpl(value2, value1, false);
return FPCompareGE(value2, value1);
}
[UnmanagedCallersOnly]
public static double FPCompareLT(double value1, double value2)
{
return FPCompareGTFpscrImpl(value2, value1, false);
return FPCompareGT(value2, value1);
}
[UnmanagedCallersOnly]
public static double FPCompareLEFpscr(double value1, double value2, byte standardFpscr)
public static double FPCompareLEFpscr(double value1, double value2, bool standardFpscr)
{
return FPCompareGEFpscrImpl(value2, value1, standardFpscr == 1);
return FPCompareGEFpscr(value2, value1, standardFpscr);
}
[UnmanagedCallersOnly]
public static double FPCompareLTFpscr(double value1, double value2, byte standardFpscr)
public static double FPCompareLTFpscr(double value1, double value2, bool standardFpscr)
{
return FPCompareGTFpscrImpl(value2, value1, standardFpscr == 1);
return FPCompareGTFpscr(value2, value1, standardFpscr);
}
[UnmanagedCallersOnly]
public static double FPDiv(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -2610,19 +2469,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMax(double value1, double value2)
{
return FPMaxFpscrImpl(value1, value2, false);
return FPMaxFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPMaxFpscr(double value1, double value2, byte standardFpscr)
{
return FPMaxFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPMaxFpscrImpl(double value1, double value2, bool standardFpscr)
public static double FPMaxFpscr(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2683,19 +2535,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMaxNum(double value1, double value2)
{
return FPMaxNumFpscrImpl(value1, value2, false);
return FPMaxNumFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPMaxNumFpscr(double value1, double value2, byte standardFpscr)
{
return FPMaxNumFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPMaxNumFpscrImpl(double value1, double value2, bool standardFpscr)
public static double FPMaxNumFpscr(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2712,22 +2557,15 @@ namespace ARMeilleure.Instructions
value2 = FPInfinity(true);
}
return FPMaxFpscrImpl(value1, value2, standardFpscr);
return FPMaxFpscr(value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static double FPMin(double value1, double value2)
{
return FPMinFpscrImpl(value1, value2, false);
return FPMinFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPMinFpscr(double value1, double value2, byte standardFpscr)
{
return FPMinFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPMinFpscrImpl(double value1, double value2, bool standardFpscr)
public static double FPMinFpscr(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2788,19 +2626,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMinNum(double value1, double value2)
{
return FPMinNumFpscrImpl(value1, value2, false);
return FPMinNumFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPMinNumFpscr(double value1, double value2, byte standardFpscr)
{
return FPMinNumFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPMinNumFpscrImpl(double value1, double value2, bool standardFpscr)
public static double FPMinNumFpscr(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2817,22 +2648,15 @@ namespace ARMeilleure.Instructions
value2 = FPInfinity(false);
}
return FPMinFpscrImpl(value1, value2, standardFpscr);
return FPMinFpscr(value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static double FPMul(double value1, double value2)
{
return FPMulFpscrImpl(value1, value2, false);
return FPMulFpscr(value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPMulFpscr(double value1, double value2, byte standardFpscr)
{
return FPMulFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPMulFpscrImpl(double value1, double value2, bool standardFpscr)
public static double FPMulFpscr(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2879,19 +2703,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMulAdd(double valueA, double value1, double value2)
{
return FPMulAddFpscrImpl(valueA, value1, value2, false);
return FPMulAddFpscr(valueA, value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPMulAddFpscr(double valueA, double value1, double value2, byte standardFpscr)
{
return FPMulAddFpscrImpl(valueA, value1, value2, standardFpscr == 1);
}
private static double FPMulAddFpscrImpl(double valueA, double value1, double value2, bool standardFpscr)
public static double FPMulAddFpscr(double valueA, double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2957,23 +2774,20 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMulSub(double valueA, double value1, double value2)
{
value1 = value1.FPNeg();
return FPMulAddFpscrImpl(valueA, value1, value2, false);
return FPMulAdd(valueA, value1, value2);
}
[UnmanagedCallersOnly]
public static double FPMulSubFpscr(double valueA, double value1, double value2, byte standardFpscr)
public static double FPMulSubFpscr(double valueA, double value1, double value2, bool standardFpscr)
{
value1 = value1.FPNeg();
return FPMulAddFpscrImpl(valueA, value1, value2, standardFpscr == 1);
return FPMulAddFpscr(valueA, value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static double FPMulX(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3019,36 +2833,27 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPNegMulAdd(double valueA, double value1, double value2)
{
valueA = valueA.FPNeg();
value1 = value1.FPNeg();
return FPMulAddFpscrImpl(valueA, value1, value2, false);
return FPMulAdd(valueA, value1, value2);
}
[UnmanagedCallersOnly]
public static double FPNegMulSub(double valueA, double value1, double value2)
{
valueA = valueA.FPNeg();
return FPMulAddFpscrImpl(valueA, value1, value2, false);
return FPMulAdd(valueA, value1, value2);
}
[UnmanagedCallersOnly]
public static double FPRecipEstimate(double value)
{
return FPRecipEstimateFpscrImpl(value, false);
return FPRecipEstimateFpscr(value, false);
}
[UnmanagedCallersOnly]
public static double FPRecipEstimateFpscr(double value, byte standardFpscr)
{
return FPRecipEstimateFpscrImpl(value, standardFpscr == 1);
}
private static double FPRecipEstimateFpscrImpl(double value, bool standardFpscr)
public static double FPRecipEstimateFpscr(double value, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -3135,7 +2940,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRecipStep(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3161,7 +2965,7 @@ namespace ARMeilleure.Instructions
}
else
{
product = FPMulFpscrImpl(value1, value2, true);
product = FPMulFpscr(value1, value2, true);
}
result = FPSubFpscr(FPTwo(false), product, true);
@@ -3170,7 +2974,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRecipStepFused(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3214,7 +3017,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRecpX(double value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3240,19 +3042,12 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRSqrtEstimate(double value)
{
return FPRSqrtEstimateFpscrImpl(value, false);
return FPRSqrtEstimateFpscr(value, false);
}
[UnmanagedCallersOnly]
public static double FPRSqrtEstimateFpscr(double value, byte standardFpscr)
{
return FPRSqrtEstimateFpscrImpl(value, standardFpscr == 1);
}
private static double FPRSqrtEstimateFpscrImpl(double value, bool standardFpscr)
public static double FPRSqrtEstimateFpscr(double value, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -3366,7 +3161,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRSqrtStep(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3392,7 +3186,7 @@ namespace ARMeilleure.Instructions
}
else
{
product = FPMulFpscrImpl(value1, value2, true);
product = FPMulFpscr(value1, value2, true);
}
result = FPHalvedSub(FPThree(false), product, context, fpcr);
@@ -3401,7 +3195,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRSqrtStepFused(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3445,7 +3238,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPSqrt(double value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3488,7 +3280,6 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPSub(double value1, double value2)
{
return FPSubFpscr(value1, value2, false);
+8 -1
View File
@@ -1,11 +1,18 @@
using System;
namespace ARMeilleure.Translation
{
class DelegateInfo
{
#pragma warning disable IDE0052 // Remove unread private member
private readonly Delegate _dlg; // Ensure that this delegate will not be garbage collected.
#pragma warning restore IDE0052
public nint FuncPtr { get; }
public DelegateInfo(nint funcPtr)
public DelegateInfo(Delegate dlg, nint funcPtr)
{
_dlg = dlg;
FuncPtr = funcPtr;
}
}
+534 -169
View File
@@ -1,7 +1,9 @@
using ARMeilleure.Instructions;
using ARMeilleure.State;
using System;
using System.Collections.Generic;
using System.Reflection;
using System.Runtime.InteropServices;
namespace ARMeilleure.Translation
{
@@ -33,6 +35,20 @@ namespace ARMeilleure.Translation
return _delegates.Values[index].FuncPtr; // O(1).
}
public static IntPtr GetDelegateFuncPtr(MethodInfo info)
{
ArgumentNullException.ThrowIfNull(info);
string key = GetKey(info);
if (!_delegates.TryGetValue(key, out DelegateInfo dlgInfo)) // O(log(n)).
{
throw new KeyNotFoundException($"({nameof(key)} = {key})");
}
return dlgInfo.FuncPtr;
}
public static int GetDelegateIndex(MethodInfo info)
{
ArgumentNullException.ThrowIfNull(info);
@@ -49,11 +65,11 @@ namespace ARMeilleure.Translation
return index;
}
private static void SetDelegateInfo(MethodInfo method)
private static void SetDelegateInfo(Delegate dlg, IntPtr funcPtr)
{
string key = GetKey(method);
string key = GetKey(dlg.Method);
_delegates.Add(key, new DelegateInfo(method.MethodHandle.GetFunctionPointer())); // ArgumentException (key).
_delegates.Add(key, new DelegateInfo(dlg, funcPtr)); // ArgumentException (key).
}
private static string GetKey(MethodInfo info)
@@ -63,183 +79,532 @@ namespace ARMeilleure.Translation
private static readonly SortedList<string, DelegateInfo> _delegates;
unsafe static Delegates()
static Delegates()
{
_delegates = new SortedList<string, DelegateInfo>();
SetDelegateInfo(typeof(MathHelper).GetMethod(nameof(MathHelper.Abs)));
SetDelegateInfo(typeof(MathHelper).GetMethod(nameof(MathHelper.Ceiling)));
SetDelegateInfo(typeof(MathHelper).GetMethod(nameof(MathHelper.Floor)));
SetDelegateInfo(typeof(MathHelper).GetMethod(nameof(MathHelper.Round)));
SetDelegateInfo(typeof(MathHelper).GetMethod(nameof(MathHelper.Truncate)));
var dlgMathAbs = new MathAbs(Math.Abs);
var dlgMathCeiling = new MathCeiling(Math.Ceiling);
var dlgMathFloor = new MathFloor(Math.Floor);
var dlgMathRound = new MathRound(Math.Round);
var dlgMathTruncate = new MathTruncate(Math.Truncate);
SetDelegateInfo(typeof(MathHelperF).GetMethod(nameof(MathHelperF.Abs)));
SetDelegateInfo(typeof(MathHelperF).GetMethod(nameof(MathHelperF.Ceiling)));
SetDelegateInfo(typeof(MathHelperF).GetMethod(nameof(MathHelperF.Floor)));
SetDelegateInfo(typeof(MathHelperF).GetMethod(nameof(MathHelperF.Round)));
SetDelegateInfo(typeof(MathHelperF).GetMethod(nameof(MathHelperF.Truncate)));
var dlgMathFAbs = new MathFAbs(MathF.Abs);
var dlgMathFCeiling = new MathFCeiling(MathF.Ceiling);
var dlgMathFFloor = new MathFFloor(MathF.Floor);
var dlgMathFRound = new MathFRound(MathF.Round);
var dlgMathFTruncate = new MathFTruncate(MathF.Truncate);
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.Break)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.CheckSynchronization)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.EnqueueForRejit)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetCntfrqEl0)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetCntpctEl0)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetCntvctEl0)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetCtrEl0)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetDczidEl0)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetFunctionAddress)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.InvalidateCacheLine)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.ReadByte)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.ReadUInt16)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.ReadUInt32)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.ReadUInt64)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.ReadVector128)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.SignalMemoryTracking)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.SupervisorCall)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.ThrowInvalidMemoryAccess)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.Undefined)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.WriteByte)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.WriteUInt16)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.WriteUInt32)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.WriteUInt64)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.WriteVector128)));
var dlgNativeInterfaceBreak = new NativeInterfaceBreak(NativeInterface.Break);
var dlgNativeInterfaceCheckSynchronization = new NativeInterfaceCheckSynchronization(NativeInterface.CheckSynchronization);
var dlgNativeInterfaceEnqueueForRejit = new NativeInterfaceEnqueueForRejit(NativeInterface.EnqueueForRejit);
var dlgNativeInterfaceGetCntfrqEl0 = new NativeInterfaceGetCntfrqEl0(NativeInterface.GetCntfrqEl0);
var dlgNativeInterfaceGetCntpctEl0 = new NativeInterfaceGetCntpctEl0(NativeInterface.GetCntpctEl0);
var dlgNativeInterfaceGetCntvctEl0 = new NativeInterfaceGetCntvctEl0(NativeInterface.GetCntvctEl0);
var dlgNativeInterfaceGetCtrEl0 = new NativeInterfaceGetCtrEl0(NativeInterface.GetCtrEl0);
var dlgNativeInterfaceGetDczidEl0 = new NativeInterfaceGetDczidEl0(NativeInterface.GetDczidEl0);
var dlgNativeInterfaceGetFunctionAddress = new NativeInterfaceGetFunctionAddress(NativeInterface.GetFunctionAddress);
var dlgNativeInterfaceInvalidateCacheLine = new NativeInterfaceInvalidateCacheLine(NativeInterface.InvalidateCacheLine);
var dlgNativeInterfaceReadByte = new NativeInterfaceReadByte(NativeInterface.ReadByte);
var dlgNativeInterfaceReadUInt16 = new NativeInterfaceReadUInt16(NativeInterface.ReadUInt16);
var dlgNativeInterfaceReadUInt32 = new NativeInterfaceReadUInt32(NativeInterface.ReadUInt32);
var dlgNativeInterfaceReadUInt64 = new NativeInterfaceReadUInt64(NativeInterface.ReadUInt64);
var dlgNativeInterfaceReadVector128 = new NativeInterfaceReadVector128(NativeInterface.ReadVector128);
var dlgNativeInterfaceSignalMemoryTracking = new NativeInterfaceSignalMemoryTracking(NativeInterface.SignalMemoryTracking);
var dlgNativeInterfaceSupervisorCall = new NativeInterfaceSupervisorCall(NativeInterface.SupervisorCall);
var dlgNativeInterfaceThrowInvalidMemoryAccess = new NativeInterfaceThrowInvalidMemoryAccess(NativeInterface.ThrowInvalidMemoryAccess);
var dlgNativeInterfaceUndefined = new NativeInterfaceUndefined(NativeInterface.Undefined);
var dlgNativeInterfaceWriteByte = new NativeInterfaceWriteByte(NativeInterface.WriteByte);
var dlgNativeInterfaceWriteUInt16 = new NativeInterfaceWriteUInt16(NativeInterface.WriteUInt16);
var dlgNativeInterfaceWriteUInt32 = new NativeInterfaceWriteUInt32(NativeInterface.WriteUInt32);
var dlgNativeInterfaceWriteUInt64 = new NativeInterfaceWriteUInt64(NativeInterface.WriteUInt64);
var dlgNativeInterfaceWriteVector128 = new NativeInterfaceWriteVector128(NativeInterface.WriteVector128);
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.CountLeadingSigns)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.CountLeadingZeros)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32b)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32cb)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32ch)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32cw)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32cx)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32h)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32w)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32x)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Decrypt)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Encrypt)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.FixedRotate)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.HashChoose)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.HashLower)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.HashMajority)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.HashParity)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.HashUpper)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.InverseMixColumns)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.MixColumns)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.PolynomialMult64_128)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF32ToS32)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF32ToS64)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF32ToU32)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF32ToU64)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF64ToS32)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF64ToS64)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF64ToU32)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF64ToU64)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Sha1SchedulePart1)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Sha1SchedulePart2)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Sha256SchedulePart1)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Sha256SchedulePart2)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SignedShrImm64)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbl1)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbl2)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbl3)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbl4)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbx1)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbx2)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbx3)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbx4)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.UnsignedShrImm64)));
var dlgSoftFallbackCountLeadingSigns = new SoftFallbackCountLeadingSigns(SoftFallback.CountLeadingSigns);
var dlgSoftFallbackCountLeadingZeros = new SoftFallbackCountLeadingZeros(SoftFallback.CountLeadingZeros);
var dlgSoftFallbackCrc32b = new SoftFallbackCrc32b(SoftFallback.Crc32b);
var dlgSoftFallbackCrc32cb = new SoftFallbackCrc32cb(SoftFallback.Crc32cb);
var dlgSoftFallbackCrc32ch = new SoftFallbackCrc32ch(SoftFallback.Crc32ch);
var dlgSoftFallbackCrc32cw = new SoftFallbackCrc32cw(SoftFallback.Crc32cw);
var dlgSoftFallbackCrc32cx = new SoftFallbackCrc32cx(SoftFallback.Crc32cx);
var dlgSoftFallbackCrc32h = new SoftFallbackCrc32h(SoftFallback.Crc32h);
var dlgSoftFallbackCrc32w = new SoftFallbackCrc32w(SoftFallback.Crc32w);
var dlgSoftFallbackCrc32x = new SoftFallbackCrc32x(SoftFallback.Crc32x);
var dlgSoftFallbackDecrypt = new SoftFallbackDecrypt(SoftFallback.Decrypt);
var dlgSoftFallbackEncrypt = new SoftFallbackEncrypt(SoftFallback.Encrypt);
var dlgSoftFallbackFixedRotate = new SoftFallbackFixedRotate(SoftFallback.FixedRotate);
var dlgSoftFallbackHashChoose = new SoftFallbackHashChoose(SoftFallback.HashChoose);
var dlgSoftFallbackHashLower = new SoftFallbackHashLower(SoftFallback.HashLower);
var dlgSoftFallbackHashMajority = new SoftFallbackHashMajority(SoftFallback.HashMajority);
var dlgSoftFallbackHashParity = new SoftFallbackHashParity(SoftFallback.HashParity);
var dlgSoftFallbackHashUpper = new SoftFallbackHashUpper(SoftFallback.HashUpper);
var dlgSoftFallbackInverseMixColumns = new SoftFallbackInverseMixColumns(SoftFallback.InverseMixColumns);
var dlgSoftFallbackMixColumns = new SoftFallbackMixColumns(SoftFallback.MixColumns);
var dlgSoftFallbackPolynomialMult64_128 = new SoftFallbackPolynomialMult64_128(SoftFallback.PolynomialMult64_128);
var dlgSoftFallbackSatF32ToS32 = new SoftFallbackSatF32ToS32(SoftFallback.SatF32ToS32);
var dlgSoftFallbackSatF32ToS64 = new SoftFallbackSatF32ToS64(SoftFallback.SatF32ToS64);
var dlgSoftFallbackSatF32ToU32 = new SoftFallbackSatF32ToU32(SoftFallback.SatF32ToU32);
var dlgSoftFallbackSatF32ToU64 = new SoftFallbackSatF32ToU64(SoftFallback.SatF32ToU64);
var dlgSoftFallbackSatF64ToS32 = new SoftFallbackSatF64ToS32(SoftFallback.SatF64ToS32);
var dlgSoftFallbackSatF64ToS64 = new SoftFallbackSatF64ToS64(SoftFallback.SatF64ToS64);
var dlgSoftFallbackSatF64ToU32 = new SoftFallbackSatF64ToU32(SoftFallback.SatF64ToU32);
var dlgSoftFallbackSatF64ToU64 = new SoftFallbackSatF64ToU64(SoftFallback.SatF64ToU64);
var dlgSoftFallbackSha1SchedulePart1 = new SoftFallbackSha1SchedulePart1(SoftFallback.Sha1SchedulePart1);
var dlgSoftFallbackSha1SchedulePart2 = new SoftFallbackSha1SchedulePart2(SoftFallback.Sha1SchedulePart2);
var dlgSoftFallbackSha256SchedulePart1 = new SoftFallbackSha256SchedulePart1(SoftFallback.Sha256SchedulePart1);
var dlgSoftFallbackSha256SchedulePart2 = new SoftFallbackSha256SchedulePart2(SoftFallback.Sha256SchedulePart2);
var dlgSoftFallbackSignedShrImm64 = new SoftFallbackSignedShrImm64(SoftFallback.SignedShrImm64);
var dlgSoftFallbackTbl1 = new SoftFallbackTbl1(SoftFallback.Tbl1);
var dlgSoftFallbackTbl2 = new SoftFallbackTbl2(SoftFallback.Tbl2);
var dlgSoftFallbackTbl3 = new SoftFallbackTbl3(SoftFallback.Tbl3);
var dlgSoftFallbackTbl4 = new SoftFallbackTbl4(SoftFallback.Tbl4);
var dlgSoftFallbackTbx1 = new SoftFallbackTbx1(SoftFallback.Tbx1);
var dlgSoftFallbackTbx2 = new SoftFallbackTbx2(SoftFallback.Tbx2);
var dlgSoftFallbackTbx3 = new SoftFallbackTbx3(SoftFallback.Tbx3);
var dlgSoftFallbackTbx4 = new SoftFallbackTbx4(SoftFallback.Tbx4);
var dlgSoftFallbackUnsignedShrImm64 = new SoftFallbackUnsignedShrImm64(SoftFallback.UnsignedShrImm64);
SetDelegateInfo(typeof(SoftFloat16_32).GetMethod(nameof(SoftFloat16_32.FPConvert)));
SetDelegateInfo(typeof(SoftFloat16_64).GetMethod(nameof(SoftFloat16_64.FPConvert)));
var dlgSoftFloat16_32FPConvert = new SoftFloat16_32FPConvert(SoftFloat16_32.FPConvert);
var dlgSoftFloat16_64FPConvert = new SoftFloat16_64FPConvert(SoftFloat16_64.FPConvert);
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPAdd)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPAddFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompare)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareEQ)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareEQFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareGE)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareGEFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareGT)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareGTFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareLE)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareLEFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareLT)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareLTFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPDiv)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMax)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMaxFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMaxNum)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMaxNumFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMin)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMinFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMinNum)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMinNumFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMul)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMulFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMulAdd)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMulAddFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMulSub)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMulSubFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMulX)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPNegMulAdd)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPNegMulSub)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRecipEstimate)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRecipEstimateFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRecipStep))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRecipStepFused)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRecpX)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRSqrtEstimate)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRSqrtEstimateFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRSqrtStep))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRSqrtStepFused)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPSqrt)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPSub)));
var dlgSoftFloat32FPAdd = new SoftFloat32FPAdd(SoftFloat32.FPAdd);
var dlgSoftFloat32FPAddFpscr = new SoftFloat32FPAddFpscr(SoftFloat32.FPAddFpscr); // A32 only.
var dlgSoftFloat32FPCompare = new SoftFloat32FPCompare(SoftFloat32.FPCompare);
var dlgSoftFloat32FPCompareEQ = new SoftFloat32FPCompareEQ(SoftFloat32.FPCompareEQ);
var dlgSoftFloat32FPCompareEQFpscr = new SoftFloat32FPCompareEQFpscr(SoftFloat32.FPCompareEQFpscr); // A32 only.
var dlgSoftFloat32FPCompareGE = new SoftFloat32FPCompareGE(SoftFloat32.FPCompareGE);
var dlgSoftFloat32FPCompareGEFpscr = new SoftFloat32FPCompareGEFpscr(SoftFloat32.FPCompareGEFpscr); // A32 only.
var dlgSoftFloat32FPCompareGT = new SoftFloat32FPCompareGT(SoftFloat32.FPCompareGT);
var dlgSoftFloat32FPCompareGTFpscr = new SoftFloat32FPCompareGTFpscr(SoftFloat32.FPCompareGTFpscr); // A32 only.
var dlgSoftFloat32FPCompareLE = new SoftFloat32FPCompareLE(SoftFloat32.FPCompareLE);
var dlgSoftFloat32FPCompareLEFpscr = new SoftFloat32FPCompareLEFpscr(SoftFloat32.FPCompareLEFpscr); // A32 only.
var dlgSoftFloat32FPCompareLT = new SoftFloat32FPCompareLT(SoftFloat32.FPCompareLT);
var dlgSoftFloat32FPCompareLTFpscr = new SoftFloat32FPCompareLTFpscr(SoftFloat32.FPCompareLTFpscr); // A32 only.
var dlgSoftFloat32FPDiv = new SoftFloat32FPDiv(SoftFloat32.FPDiv);
var dlgSoftFloat32FPMax = new SoftFloat32FPMax(SoftFloat32.FPMax);
var dlgSoftFloat32FPMaxFpscr = new SoftFloat32FPMaxFpscr(SoftFloat32.FPMaxFpscr); // A32 only.
var dlgSoftFloat32FPMaxNum = new SoftFloat32FPMaxNum(SoftFloat32.FPMaxNum);
var dlgSoftFloat32FPMaxNumFpscr = new SoftFloat32FPMaxNumFpscr(SoftFloat32.FPMaxNumFpscr); // A32 only.
var dlgSoftFloat32FPMin = new SoftFloat32FPMin(SoftFloat32.FPMin);
var dlgSoftFloat32FPMinFpscr = new SoftFloat32FPMinFpscr(SoftFloat32.FPMinFpscr); // A32 only.
var dlgSoftFloat32FPMinNum = new SoftFloat32FPMinNum(SoftFloat32.FPMinNum);
var dlgSoftFloat32FPMinNumFpscr = new SoftFloat32FPMinNumFpscr(SoftFloat32.FPMinNumFpscr); // A32 only.
var dlgSoftFloat32FPMul = new SoftFloat32FPMul(SoftFloat32.FPMul);
var dlgSoftFloat32FPMulFpscr = new SoftFloat32FPMulFpscr(SoftFloat32.FPMulFpscr); // A32 only.
var dlgSoftFloat32FPMulAdd = new SoftFloat32FPMulAdd(SoftFloat32.FPMulAdd);
var dlgSoftFloat32FPMulAddFpscr = new SoftFloat32FPMulAddFpscr(SoftFloat32.FPMulAddFpscr); // A32 only.
var dlgSoftFloat32FPMulSub = new SoftFloat32FPMulSub(SoftFloat32.FPMulSub);
var dlgSoftFloat32FPMulSubFpscr = new SoftFloat32FPMulSubFpscr(SoftFloat32.FPMulSubFpscr); // A32 only.
var dlgSoftFloat32FPMulX = new SoftFloat32FPMulX(SoftFloat32.FPMulX);
var dlgSoftFloat32FPNegMulAdd = new SoftFloat32FPNegMulAdd(SoftFloat32.FPNegMulAdd);
var dlgSoftFloat32FPNegMulSub = new SoftFloat32FPNegMulSub(SoftFloat32.FPNegMulSub);
var dlgSoftFloat32FPRecipEstimate = new SoftFloat32FPRecipEstimate(SoftFloat32.FPRecipEstimate);
var dlgSoftFloat32FPRecipEstimateFpscr = new SoftFloat32FPRecipEstimateFpscr(SoftFloat32.FPRecipEstimateFpscr); // A32 only.
var dlgSoftFloat32FPRecipStep = new SoftFloat32FPRecipStep(SoftFloat32.FPRecipStep); // A32 only.
var dlgSoftFloat32FPRecipStepFused = new SoftFloat32FPRecipStepFused(SoftFloat32.FPRecipStepFused);
var dlgSoftFloat32FPRecpX = new SoftFloat32FPRecpX(SoftFloat32.FPRecpX);
var dlgSoftFloat32FPRSqrtEstimate = new SoftFloat32FPRSqrtEstimate(SoftFloat32.FPRSqrtEstimate);
var dlgSoftFloat32FPRSqrtEstimateFpscr = new SoftFloat32FPRSqrtEstimateFpscr(SoftFloat32.FPRSqrtEstimateFpscr); // A32 only.
var dlgSoftFloat32FPRSqrtStep = new SoftFloat32FPRSqrtStep(SoftFloat32.FPRSqrtStep); // A32 only.
var dlgSoftFloat32FPRSqrtStepFused = new SoftFloat32FPRSqrtStepFused(SoftFloat32.FPRSqrtStepFused);
var dlgSoftFloat32FPSqrt = new SoftFloat32FPSqrt(SoftFloat32.FPSqrt);
var dlgSoftFloat32FPSub = new SoftFloat32FPSub(SoftFloat32.FPSub);
SetDelegateInfo(typeof(SoftFloat32_16).GetMethod(nameof(SoftFloat32_16.FPConvert)));
var dlgSoftFloat32_16FPConvert = new SoftFloat32_16FPConvert(SoftFloat32_16.FPConvert);
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPAdd)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPAddFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompare)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareEQ)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareEQFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareGE)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareGEFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareGT)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareGTFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareLE)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareLEFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareLT)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareLTFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPDiv)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMax)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMaxFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMaxNum)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMaxNumFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMin)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMinFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMinNum)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMinNumFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMul)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMulFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMulAdd)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMulAddFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMulSub)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMulSubFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMulX)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPNegMulAdd)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPNegMulSub)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRecipEstimate)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRecipEstimateFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRecipStep))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRecipStepFused)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRecpX)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRSqrtEstimate)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRSqrtEstimateFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRSqrtStep))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRSqrtStepFused)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPSqrt)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPSub)));
var dlgSoftFloat64FPAdd = new SoftFloat64FPAdd(SoftFloat64.FPAdd);
var dlgSoftFloat64FPAddFpscr = new SoftFloat64FPAddFpscr(SoftFloat64.FPAddFpscr); // A32 only.
var dlgSoftFloat64FPCompare = new SoftFloat64FPCompare(SoftFloat64.FPCompare);
var dlgSoftFloat64FPCompareEQ = new SoftFloat64FPCompareEQ(SoftFloat64.FPCompareEQ);
var dlgSoftFloat64FPCompareEQFpscr = new SoftFloat64FPCompareEQFpscr(SoftFloat64.FPCompareEQFpscr); // A32 only.
var dlgSoftFloat64FPCompareGE = new SoftFloat64FPCompareGE(SoftFloat64.FPCompareGE);
var dlgSoftFloat64FPCompareGEFpscr = new SoftFloat64FPCompareGEFpscr(SoftFloat64.FPCompareGEFpscr); // A32 only.
var dlgSoftFloat64FPCompareGT = new SoftFloat64FPCompareGT(SoftFloat64.FPCompareGT);
var dlgSoftFloat64FPCompareGTFpscr = new SoftFloat64FPCompareGTFpscr(SoftFloat64.FPCompareGTFpscr); // A32 only.
var dlgSoftFloat64FPCompareLE = new SoftFloat64FPCompareLE(SoftFloat64.FPCompareLE);
var dlgSoftFloat64FPCompareLEFpscr = new SoftFloat64FPCompareLEFpscr(SoftFloat64.FPCompareLEFpscr); // A32 only.
var dlgSoftFloat64FPCompareLT = new SoftFloat64FPCompareLT(SoftFloat64.FPCompareLT);
var dlgSoftFloat64FPCompareLTFpscr = new SoftFloat64FPCompareLTFpscr(SoftFloat64.FPCompareLTFpscr); // A32 only.
var dlgSoftFloat64FPDiv = new SoftFloat64FPDiv(SoftFloat64.FPDiv);
var dlgSoftFloat64FPMax = new SoftFloat64FPMax(SoftFloat64.FPMax);
var dlgSoftFloat64FPMaxFpscr = new SoftFloat64FPMaxFpscr(SoftFloat64.FPMaxFpscr); // A32 only.
var dlgSoftFloat64FPMaxNum = new SoftFloat64FPMaxNum(SoftFloat64.FPMaxNum);
var dlgSoftFloat64FPMaxNumFpscr = new SoftFloat64FPMaxNumFpscr(SoftFloat64.FPMaxNumFpscr); // A32 only.
var dlgSoftFloat64FPMin = new SoftFloat64FPMin(SoftFloat64.FPMin);
var dlgSoftFloat64FPMinFpscr = new SoftFloat64FPMinFpscr(SoftFloat64.FPMinFpscr); // A32 only.
var dlgSoftFloat64FPMinNum = new SoftFloat64FPMinNum(SoftFloat64.FPMinNum);
var dlgSoftFloat64FPMinNumFpscr = new SoftFloat64FPMinNumFpscr(SoftFloat64.FPMinNumFpscr); // A32 only.
var dlgSoftFloat64FPMul = new SoftFloat64FPMul(SoftFloat64.FPMul);
var dlgSoftFloat64FPMulFpscr = new SoftFloat64FPMulFpscr(SoftFloat64.FPMulFpscr); // A32 only.
var dlgSoftFloat64FPMulAdd = new SoftFloat64FPMulAdd(SoftFloat64.FPMulAdd);
var dlgSoftFloat64FPMulAddFpscr = new SoftFloat64FPMulAddFpscr(SoftFloat64.FPMulAddFpscr); // A32 only.
var dlgSoftFloat64FPMulSub = new SoftFloat64FPMulSub(SoftFloat64.FPMulSub);
var dlgSoftFloat64FPMulSubFpscr = new SoftFloat64FPMulSubFpscr(SoftFloat64.FPMulSubFpscr); // A32 only.
var dlgSoftFloat64FPMulX = new SoftFloat64FPMulX(SoftFloat64.FPMulX);
var dlgSoftFloat64FPNegMulAdd = new SoftFloat64FPNegMulAdd(SoftFloat64.FPNegMulAdd);
var dlgSoftFloat64FPNegMulSub = new SoftFloat64FPNegMulSub(SoftFloat64.FPNegMulSub);
var dlgSoftFloat64FPRecipEstimate = new SoftFloat64FPRecipEstimate(SoftFloat64.FPRecipEstimate);
var dlgSoftFloat64FPRecipEstimateFpscr = new SoftFloat64FPRecipEstimateFpscr(SoftFloat64.FPRecipEstimateFpscr); // A32 only.
var dlgSoftFloat64FPRecipStep = new SoftFloat64FPRecipStep(SoftFloat64.FPRecipStep); // A32 only.
var dlgSoftFloat64FPRecipStepFused = new SoftFloat64FPRecipStepFused(SoftFloat64.FPRecipStepFused);
var dlgSoftFloat64FPRecpX = new SoftFloat64FPRecpX(SoftFloat64.FPRecpX);
var dlgSoftFloat64FPRSqrtEstimate = new SoftFloat64FPRSqrtEstimate(SoftFloat64.FPRSqrtEstimate);
var dlgSoftFloat64FPRSqrtEstimateFpscr = new SoftFloat64FPRSqrtEstimateFpscr(SoftFloat64.FPRSqrtEstimateFpscr); // A32 only.
var dlgSoftFloat64FPRSqrtStep = new SoftFloat64FPRSqrtStep(SoftFloat64.FPRSqrtStep); // A32 only.
var dlgSoftFloat64FPRSqrtStepFused = new SoftFloat64FPRSqrtStepFused(SoftFloat64.FPRSqrtStepFused);
var dlgSoftFloat64FPSqrt = new SoftFloat64FPSqrt(SoftFloat64.FPSqrt);
var dlgSoftFloat64FPSub = new SoftFloat64FPSub(SoftFloat64.FPSub);
SetDelegateInfo(typeof(SoftFloat64_16).GetMethod(nameof(SoftFloat64_16.FPConvert)));
var dlgSoftFloat64_16FPConvert = new SoftFloat64_16FPConvert(SoftFloat64_16.FPConvert);
SetDelegateInfo(dlgMathAbs, Marshal.GetFunctionPointerForDelegate<MathAbs>(dlgMathAbs));
SetDelegateInfo(dlgMathCeiling, Marshal.GetFunctionPointerForDelegate<MathCeiling>(dlgMathCeiling));
SetDelegateInfo(dlgMathFloor, Marshal.GetFunctionPointerForDelegate<MathFloor>(dlgMathFloor));
SetDelegateInfo(dlgMathRound, Marshal.GetFunctionPointerForDelegate<MathRound>(dlgMathRound));
SetDelegateInfo(dlgMathTruncate, Marshal.GetFunctionPointerForDelegate<MathTruncate>(dlgMathTruncate));
SetDelegateInfo(dlgMathFAbs, Marshal.GetFunctionPointerForDelegate<MathFAbs>(dlgMathFAbs));
SetDelegateInfo(dlgMathFCeiling, Marshal.GetFunctionPointerForDelegate<MathFCeiling>(dlgMathFCeiling));
SetDelegateInfo(dlgMathFFloor, Marshal.GetFunctionPointerForDelegate<MathFFloor>(dlgMathFFloor));
SetDelegateInfo(dlgMathFRound, Marshal.GetFunctionPointerForDelegate<MathFRound>(dlgMathFRound));
SetDelegateInfo(dlgMathFTruncate, Marshal.GetFunctionPointerForDelegate<MathFTruncate>(dlgMathFTruncate));
SetDelegateInfo(dlgNativeInterfaceBreak, Marshal.GetFunctionPointerForDelegate<NativeInterfaceBreak>(dlgNativeInterfaceBreak));
SetDelegateInfo(dlgNativeInterfaceCheckSynchronization, Marshal.GetFunctionPointerForDelegate<NativeInterfaceCheckSynchronization>(dlgNativeInterfaceCheckSynchronization));
SetDelegateInfo(dlgNativeInterfaceEnqueueForRejit, Marshal.GetFunctionPointerForDelegate<NativeInterfaceEnqueueForRejit>(dlgNativeInterfaceEnqueueForRejit));
SetDelegateInfo(dlgNativeInterfaceGetCntfrqEl0, Marshal.GetFunctionPointerForDelegate<NativeInterfaceGetCntfrqEl0>(dlgNativeInterfaceGetCntfrqEl0));
SetDelegateInfo(dlgNativeInterfaceGetCntpctEl0, Marshal.GetFunctionPointerForDelegate<NativeInterfaceGetCntpctEl0>(dlgNativeInterfaceGetCntpctEl0));
SetDelegateInfo(dlgNativeInterfaceGetCntvctEl0, Marshal.GetFunctionPointerForDelegate<NativeInterfaceGetCntvctEl0>(dlgNativeInterfaceGetCntvctEl0));
SetDelegateInfo(dlgNativeInterfaceGetCtrEl0, Marshal.GetFunctionPointerForDelegate<NativeInterfaceGetCtrEl0>(dlgNativeInterfaceGetCtrEl0));
SetDelegateInfo(dlgNativeInterfaceGetDczidEl0, Marshal.GetFunctionPointerForDelegate<NativeInterfaceGetDczidEl0>(dlgNativeInterfaceGetDczidEl0));
SetDelegateInfo(dlgNativeInterfaceGetFunctionAddress, Marshal.GetFunctionPointerForDelegate<NativeInterfaceGetFunctionAddress>(dlgNativeInterfaceGetFunctionAddress));
SetDelegateInfo(dlgNativeInterfaceInvalidateCacheLine, Marshal.GetFunctionPointerForDelegate<NativeInterfaceInvalidateCacheLine>(dlgNativeInterfaceInvalidateCacheLine));
SetDelegateInfo(dlgNativeInterfaceReadByte, Marshal.GetFunctionPointerForDelegate<NativeInterfaceReadByte>(dlgNativeInterfaceReadByte));
SetDelegateInfo(dlgNativeInterfaceReadUInt16, Marshal.GetFunctionPointerForDelegate<NativeInterfaceReadUInt16>(dlgNativeInterfaceReadUInt16));
SetDelegateInfo(dlgNativeInterfaceReadUInt32, Marshal.GetFunctionPointerForDelegate<NativeInterfaceReadUInt32>(dlgNativeInterfaceReadUInt32));
SetDelegateInfo(dlgNativeInterfaceReadUInt64, Marshal.GetFunctionPointerForDelegate<NativeInterfaceReadUInt64>(dlgNativeInterfaceReadUInt64));
SetDelegateInfo(dlgNativeInterfaceReadVector128, Marshal.GetFunctionPointerForDelegate<NativeInterfaceReadVector128>(dlgNativeInterfaceReadVector128));
SetDelegateInfo(dlgNativeInterfaceSignalMemoryTracking, Marshal.GetFunctionPointerForDelegate<NativeInterfaceSignalMemoryTracking>(dlgNativeInterfaceSignalMemoryTracking));
SetDelegateInfo(dlgNativeInterfaceSupervisorCall, Marshal.GetFunctionPointerForDelegate<NativeInterfaceSupervisorCall>(dlgNativeInterfaceSupervisorCall));
SetDelegateInfo(dlgNativeInterfaceThrowInvalidMemoryAccess, Marshal.GetFunctionPointerForDelegate<NativeInterfaceThrowInvalidMemoryAccess>(dlgNativeInterfaceThrowInvalidMemoryAccess));
SetDelegateInfo(dlgNativeInterfaceUndefined, Marshal.GetFunctionPointerForDelegate<NativeInterfaceUndefined>(dlgNativeInterfaceUndefined));
SetDelegateInfo(dlgNativeInterfaceWriteByte, Marshal.GetFunctionPointerForDelegate<NativeInterfaceWriteByte>(dlgNativeInterfaceWriteByte));
SetDelegateInfo(dlgNativeInterfaceWriteUInt16, Marshal.GetFunctionPointerForDelegate<NativeInterfaceWriteUInt16>(dlgNativeInterfaceWriteUInt16));
SetDelegateInfo(dlgNativeInterfaceWriteUInt32, Marshal.GetFunctionPointerForDelegate<NativeInterfaceWriteUInt32>(dlgNativeInterfaceWriteUInt32));
SetDelegateInfo(dlgNativeInterfaceWriteUInt64, Marshal.GetFunctionPointerForDelegate<NativeInterfaceWriteUInt64>(dlgNativeInterfaceWriteUInt64));
SetDelegateInfo(dlgNativeInterfaceWriteVector128, Marshal.GetFunctionPointerForDelegate<NativeInterfaceWriteVector128>(dlgNativeInterfaceWriteVector128));
SetDelegateInfo(dlgSoftFallbackCountLeadingSigns, Marshal.GetFunctionPointerForDelegate<SoftFallbackCountLeadingSigns>(dlgSoftFallbackCountLeadingSigns));
SetDelegateInfo(dlgSoftFallbackCountLeadingZeros, Marshal.GetFunctionPointerForDelegate<SoftFallbackCountLeadingZeros>(dlgSoftFallbackCountLeadingZeros));
SetDelegateInfo(dlgSoftFallbackCrc32b, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32b>(dlgSoftFallbackCrc32b));
SetDelegateInfo(dlgSoftFallbackCrc32cb, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32cb>(dlgSoftFallbackCrc32cb));
SetDelegateInfo(dlgSoftFallbackCrc32ch, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32ch>(dlgSoftFallbackCrc32ch));
SetDelegateInfo(dlgSoftFallbackCrc32cw, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32cw>(dlgSoftFallbackCrc32cw));
SetDelegateInfo(dlgSoftFallbackCrc32cx, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32cx>(dlgSoftFallbackCrc32cx));
SetDelegateInfo(dlgSoftFallbackCrc32h, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32h>(dlgSoftFallbackCrc32h));
SetDelegateInfo(dlgSoftFallbackCrc32w, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32w>(dlgSoftFallbackCrc32w));
SetDelegateInfo(dlgSoftFallbackCrc32x, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32x>(dlgSoftFallbackCrc32x));
SetDelegateInfo(dlgSoftFallbackDecrypt, Marshal.GetFunctionPointerForDelegate<SoftFallbackDecrypt>(dlgSoftFallbackDecrypt));
SetDelegateInfo(dlgSoftFallbackEncrypt, Marshal.GetFunctionPointerForDelegate<SoftFallbackEncrypt>(dlgSoftFallbackEncrypt));
SetDelegateInfo(dlgSoftFallbackFixedRotate, Marshal.GetFunctionPointerForDelegate<SoftFallbackFixedRotate>(dlgSoftFallbackFixedRotate));
SetDelegateInfo(dlgSoftFallbackHashChoose, Marshal.GetFunctionPointerForDelegate<SoftFallbackHashChoose>(dlgSoftFallbackHashChoose));
SetDelegateInfo(dlgSoftFallbackHashLower, Marshal.GetFunctionPointerForDelegate<SoftFallbackHashLower>(dlgSoftFallbackHashLower));
SetDelegateInfo(dlgSoftFallbackHashMajority, Marshal.GetFunctionPointerForDelegate<SoftFallbackHashMajority>(dlgSoftFallbackHashMajority));
SetDelegateInfo(dlgSoftFallbackHashParity, Marshal.GetFunctionPointerForDelegate<SoftFallbackHashParity>(dlgSoftFallbackHashParity));
SetDelegateInfo(dlgSoftFallbackHashUpper, Marshal.GetFunctionPointerForDelegate<SoftFallbackHashUpper>(dlgSoftFallbackHashUpper));
SetDelegateInfo(dlgSoftFallbackInverseMixColumns, Marshal.GetFunctionPointerForDelegate<SoftFallbackInverseMixColumns>(dlgSoftFallbackInverseMixColumns));
SetDelegateInfo(dlgSoftFallbackMixColumns, Marshal.GetFunctionPointerForDelegate<SoftFallbackMixColumns>(dlgSoftFallbackMixColumns));
SetDelegateInfo(dlgSoftFallbackPolynomialMult64_128, Marshal.GetFunctionPointerForDelegate<SoftFallbackPolynomialMult64_128>(dlgSoftFallbackPolynomialMult64_128));
SetDelegateInfo(dlgSoftFallbackSatF32ToS32, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF32ToS32>(dlgSoftFallbackSatF32ToS32));
SetDelegateInfo(dlgSoftFallbackSatF32ToS64, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF32ToS64>(dlgSoftFallbackSatF32ToS64));
SetDelegateInfo(dlgSoftFallbackSatF32ToU32, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF32ToU32>(dlgSoftFallbackSatF32ToU32));
SetDelegateInfo(dlgSoftFallbackSatF32ToU64, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF32ToU64>(dlgSoftFallbackSatF32ToU64));
SetDelegateInfo(dlgSoftFallbackSatF64ToS32, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF64ToS32>(dlgSoftFallbackSatF64ToS32));
SetDelegateInfo(dlgSoftFallbackSatF64ToS64, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF64ToS64>(dlgSoftFallbackSatF64ToS64));
SetDelegateInfo(dlgSoftFallbackSatF64ToU32, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF64ToU32>(dlgSoftFallbackSatF64ToU32));
SetDelegateInfo(dlgSoftFallbackSatF64ToU64, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF64ToU64>(dlgSoftFallbackSatF64ToU64));
SetDelegateInfo(dlgSoftFallbackSha1SchedulePart1, Marshal.GetFunctionPointerForDelegate<SoftFallbackSha1SchedulePart1>(dlgSoftFallbackSha1SchedulePart1));
SetDelegateInfo(dlgSoftFallbackSha1SchedulePart2, Marshal.GetFunctionPointerForDelegate<SoftFallbackSha1SchedulePart2>(dlgSoftFallbackSha1SchedulePart2));
SetDelegateInfo(dlgSoftFallbackSha256SchedulePart1, Marshal.GetFunctionPointerForDelegate<SoftFallbackSha256SchedulePart1>(dlgSoftFallbackSha256SchedulePart1));
SetDelegateInfo(dlgSoftFallbackSha256SchedulePart2, Marshal.GetFunctionPointerForDelegate<SoftFallbackSha256SchedulePart2>(dlgSoftFallbackSha256SchedulePart2));
SetDelegateInfo(dlgSoftFallbackSignedShrImm64, Marshal.GetFunctionPointerForDelegate<SoftFallbackSignedShrImm64>(dlgSoftFallbackSignedShrImm64));
SetDelegateInfo(dlgSoftFallbackTbl1, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbl1>(dlgSoftFallbackTbl1));
SetDelegateInfo(dlgSoftFallbackTbl2, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbl2>(dlgSoftFallbackTbl2));
SetDelegateInfo(dlgSoftFallbackTbl3, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbl3>(dlgSoftFallbackTbl3));
SetDelegateInfo(dlgSoftFallbackTbl4, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbl4>(dlgSoftFallbackTbl4));
SetDelegateInfo(dlgSoftFallbackTbx1, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbx1>(dlgSoftFallbackTbx1));
SetDelegateInfo(dlgSoftFallbackTbx2, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbx2>(dlgSoftFallbackTbx2));
SetDelegateInfo(dlgSoftFallbackTbx3, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbx3>(dlgSoftFallbackTbx3));
SetDelegateInfo(dlgSoftFallbackTbx4, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbx4>(dlgSoftFallbackTbx4));
SetDelegateInfo(dlgSoftFallbackUnsignedShrImm64, Marshal.GetFunctionPointerForDelegate<SoftFallbackUnsignedShrImm64>(dlgSoftFallbackUnsignedShrImm64));
SetDelegateInfo(dlgSoftFloat16_32FPConvert, Marshal.GetFunctionPointerForDelegate<SoftFloat16_32FPConvert>(dlgSoftFloat16_32FPConvert));
SetDelegateInfo(dlgSoftFloat16_64FPConvert, Marshal.GetFunctionPointerForDelegate<SoftFloat16_64FPConvert>(dlgSoftFloat16_64FPConvert));
SetDelegateInfo(dlgSoftFloat32FPAdd, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPAdd>(dlgSoftFloat32FPAdd));
SetDelegateInfo(dlgSoftFloat32FPAddFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPAddFpscr>(dlgSoftFloat32FPAddFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPCompare, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompare>(dlgSoftFloat32FPCompare));
SetDelegateInfo(dlgSoftFloat32FPCompareEQ, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareEQ>(dlgSoftFloat32FPCompareEQ));
SetDelegateInfo(dlgSoftFloat32FPCompareEQFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareEQFpscr>(dlgSoftFloat32FPCompareEQFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPCompareGE, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareGE>(dlgSoftFloat32FPCompareGE));
SetDelegateInfo(dlgSoftFloat32FPCompareGEFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareGEFpscr>(dlgSoftFloat32FPCompareGEFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPCompareGT, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareGT>(dlgSoftFloat32FPCompareGT));
SetDelegateInfo(dlgSoftFloat32FPCompareGTFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareGTFpscr>(dlgSoftFloat32FPCompareGTFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPCompareLE, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareLE>(dlgSoftFloat32FPCompareLE));
SetDelegateInfo(dlgSoftFloat32FPCompareLEFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareLEFpscr>(dlgSoftFloat32FPCompareLEFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPCompareLT, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareLT>(dlgSoftFloat32FPCompareLT));
SetDelegateInfo(dlgSoftFloat32FPCompareLTFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareLTFpscr>(dlgSoftFloat32FPCompareLTFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPDiv, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPDiv>(dlgSoftFloat32FPDiv));
SetDelegateInfo(dlgSoftFloat32FPMax, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMax>(dlgSoftFloat32FPMax));
SetDelegateInfo(dlgSoftFloat32FPMaxFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMaxFpscr>(dlgSoftFloat32FPMaxFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMaxNum, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMaxNum>(dlgSoftFloat32FPMaxNum));
SetDelegateInfo(dlgSoftFloat32FPMaxNumFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMaxNumFpscr>(dlgSoftFloat32FPMaxNumFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMin, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMin>(dlgSoftFloat32FPMin));
SetDelegateInfo(dlgSoftFloat32FPMinFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMinFpscr>(dlgSoftFloat32FPMinFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMinNum, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMinNum>(dlgSoftFloat32FPMinNum));
SetDelegateInfo(dlgSoftFloat32FPMinNumFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMinNumFpscr>(dlgSoftFloat32FPMinNumFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMul, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMul>(dlgSoftFloat32FPMul));
SetDelegateInfo(dlgSoftFloat32FPMulFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMulFpscr>(dlgSoftFloat32FPMulFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMulAdd, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMulAdd>(dlgSoftFloat32FPMulAdd));
SetDelegateInfo(dlgSoftFloat32FPMulAddFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMulAddFpscr>(dlgSoftFloat32FPMulAddFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMulSub, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMulSub>(dlgSoftFloat32FPMulSub));
SetDelegateInfo(dlgSoftFloat32FPMulSubFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMulSubFpscr>(dlgSoftFloat32FPMulSubFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMulX, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMulX>(dlgSoftFloat32FPMulX));
SetDelegateInfo(dlgSoftFloat32FPNegMulAdd, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPNegMulAdd>(dlgSoftFloat32FPNegMulAdd));
SetDelegateInfo(dlgSoftFloat32FPNegMulSub, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPNegMulSub>(dlgSoftFloat32FPNegMulSub));
SetDelegateInfo(dlgSoftFloat32FPRecipEstimate, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRecipEstimate>(dlgSoftFloat32FPRecipEstimate));
SetDelegateInfo(dlgSoftFloat32FPRecipEstimateFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRecipEstimateFpscr>(dlgSoftFloat32FPRecipEstimateFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPRecipStep, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRecipStep>(dlgSoftFloat32FPRecipStep)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPRecipStepFused, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRecipStepFused>(dlgSoftFloat32FPRecipStepFused));
SetDelegateInfo(dlgSoftFloat32FPRecpX, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRecpX>(dlgSoftFloat32FPRecpX));
SetDelegateInfo(dlgSoftFloat32FPRSqrtEstimate, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRSqrtEstimate>(dlgSoftFloat32FPRSqrtEstimate));
SetDelegateInfo(dlgSoftFloat32FPRSqrtEstimateFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRSqrtEstimateFpscr>(dlgSoftFloat32FPRSqrtEstimateFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPRSqrtStep, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRSqrtStep>(dlgSoftFloat32FPRSqrtStep)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPRSqrtStepFused, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRSqrtStepFused>(dlgSoftFloat32FPRSqrtStepFused));
SetDelegateInfo(dlgSoftFloat32FPSqrt, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPSqrt>(dlgSoftFloat32FPSqrt));
SetDelegateInfo(dlgSoftFloat32FPSub, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPSub>(dlgSoftFloat32FPSub));
SetDelegateInfo(dlgSoftFloat32_16FPConvert, Marshal.GetFunctionPointerForDelegate<SoftFloat32_16FPConvert>(dlgSoftFloat32_16FPConvert));
SetDelegateInfo(dlgSoftFloat64FPAdd, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPAdd>(dlgSoftFloat64FPAdd));
SetDelegateInfo(dlgSoftFloat64FPAddFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPAddFpscr>(dlgSoftFloat64FPAddFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPCompare, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompare>(dlgSoftFloat64FPCompare));
SetDelegateInfo(dlgSoftFloat64FPCompareEQ, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareEQ>(dlgSoftFloat64FPCompareEQ));
SetDelegateInfo(dlgSoftFloat64FPCompareEQFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareEQFpscr>(dlgSoftFloat64FPCompareEQFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPCompareGE, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareGE>(dlgSoftFloat64FPCompareGE));
SetDelegateInfo(dlgSoftFloat64FPCompareGEFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareGEFpscr>(dlgSoftFloat64FPCompareGEFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPCompareGT, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareGT>(dlgSoftFloat64FPCompareGT));
SetDelegateInfo(dlgSoftFloat64FPCompareGTFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareGTFpscr>(dlgSoftFloat64FPCompareGTFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPCompareLE, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareLE>(dlgSoftFloat64FPCompareLE));
SetDelegateInfo(dlgSoftFloat64FPCompareLEFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareLEFpscr>(dlgSoftFloat64FPCompareLEFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPCompareLT, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareLT>(dlgSoftFloat64FPCompareLT));
SetDelegateInfo(dlgSoftFloat64FPCompareLTFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareLTFpscr>(dlgSoftFloat64FPCompareLTFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPDiv, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPDiv>(dlgSoftFloat64FPDiv));
SetDelegateInfo(dlgSoftFloat64FPMax, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMax>(dlgSoftFloat64FPMax));
SetDelegateInfo(dlgSoftFloat64FPMaxFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMaxFpscr>(dlgSoftFloat64FPMaxFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMaxNum, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMaxNum>(dlgSoftFloat64FPMaxNum));
SetDelegateInfo(dlgSoftFloat64FPMaxNumFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMaxNumFpscr>(dlgSoftFloat64FPMaxNumFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMin, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMin>(dlgSoftFloat64FPMin));
SetDelegateInfo(dlgSoftFloat64FPMinFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMinFpscr>(dlgSoftFloat64FPMinFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMinNum, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMinNum>(dlgSoftFloat64FPMinNum));
SetDelegateInfo(dlgSoftFloat64FPMinNumFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMinNumFpscr>(dlgSoftFloat64FPMinNumFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMul, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMul>(dlgSoftFloat64FPMul));
SetDelegateInfo(dlgSoftFloat64FPMulFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMulFpscr>(dlgSoftFloat64FPMulFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMulAdd, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMulAdd>(dlgSoftFloat64FPMulAdd));
SetDelegateInfo(dlgSoftFloat64FPMulAddFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMulAddFpscr>(dlgSoftFloat64FPMulAddFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMulSub, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMulSub>(dlgSoftFloat64FPMulSub));
SetDelegateInfo(dlgSoftFloat64FPMulSubFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMulSubFpscr>(dlgSoftFloat64FPMulSubFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMulX, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMulX>(dlgSoftFloat64FPMulX));
SetDelegateInfo(dlgSoftFloat64FPNegMulAdd, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPNegMulAdd>(dlgSoftFloat64FPNegMulAdd));
SetDelegateInfo(dlgSoftFloat64FPNegMulSub, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPNegMulSub>(dlgSoftFloat64FPNegMulSub));
SetDelegateInfo(dlgSoftFloat64FPRecipEstimate, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRecipEstimate>(dlgSoftFloat64FPRecipEstimate));
SetDelegateInfo(dlgSoftFloat64FPRecipEstimateFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRecipEstimateFpscr>(dlgSoftFloat64FPRecipEstimateFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPRecipStep, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRecipStep>(dlgSoftFloat64FPRecipStep)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPRecipStepFused, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRecipStepFused>(dlgSoftFloat64FPRecipStepFused));
SetDelegateInfo(dlgSoftFloat64FPRecpX, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRecpX>(dlgSoftFloat64FPRecpX));
SetDelegateInfo(dlgSoftFloat64FPRSqrtEstimate, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRSqrtEstimate>(dlgSoftFloat64FPRSqrtEstimate));
SetDelegateInfo(dlgSoftFloat64FPRSqrtEstimateFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRSqrtEstimateFpscr>(dlgSoftFloat64FPRSqrtEstimateFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPRSqrtStep, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRSqrtStep>(dlgSoftFloat64FPRSqrtStep)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPRSqrtStepFused, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRSqrtStepFused>(dlgSoftFloat64FPRSqrtStepFused));
SetDelegateInfo(dlgSoftFloat64FPSqrt, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPSqrt>(dlgSoftFloat64FPSqrt));
SetDelegateInfo(dlgSoftFloat64FPSub, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPSub>(dlgSoftFloat64FPSub));
SetDelegateInfo(dlgSoftFloat64_16FPConvert, Marshal.GetFunctionPointerForDelegate<SoftFloat64_16FPConvert>(dlgSoftFloat64_16FPConvert));
}
private delegate double MathAbs(double value);
private delegate double MathCeiling(double a);
private delegate double MathFloor(double d);
private delegate double MathRound(double value, MidpointRounding mode);
private delegate double MathTruncate(double d);
private delegate float MathFAbs(float x);
private delegate float MathFCeiling(float x);
private delegate float MathFFloor(float x);
private delegate float MathFRound(float x, MidpointRounding mode);
private delegate float MathFTruncate(float x);
private delegate void NativeInterfaceBreak(ulong address, int imm);
private delegate bool NativeInterfaceCheckSynchronization();
private delegate void NativeInterfaceEnqueueForRejit(ulong address);
private delegate ulong NativeInterfaceGetCntfrqEl0();
private delegate ulong NativeInterfaceGetCntpctEl0();
private delegate ulong NativeInterfaceGetCntvctEl0();
private delegate ulong NativeInterfaceGetCtrEl0();
private delegate ulong NativeInterfaceGetDczidEl0();
private delegate ulong NativeInterfaceGetFunctionAddress(ulong address);
private delegate void NativeInterfaceInvalidateCacheLine(ulong address);
private delegate byte NativeInterfaceReadByte(ulong address);
private delegate ushort NativeInterfaceReadUInt16(ulong address);
private delegate uint NativeInterfaceReadUInt32(ulong address);
private delegate ulong NativeInterfaceReadUInt64(ulong address);
private delegate V128 NativeInterfaceReadVector128(ulong address);
private delegate void NativeInterfaceSignalMemoryTracking(ulong address, ulong size, bool write);
private delegate void NativeInterfaceSupervisorCall(ulong address, int imm);
private delegate void NativeInterfaceThrowInvalidMemoryAccess(ulong address);
private delegate void NativeInterfaceUndefined(ulong address, int opCode);
private delegate void NativeInterfaceWriteByte(ulong address, byte value);
private delegate void NativeInterfaceWriteUInt16(ulong address, ushort value);
private delegate void NativeInterfaceWriteUInt32(ulong address, uint value);
private delegate void NativeInterfaceWriteUInt64(ulong address, ulong value);
private delegate void NativeInterfaceWriteVector128(ulong address, V128 value);
private delegate ulong SoftFallbackCountLeadingSigns(ulong value, int size);
private delegate ulong SoftFallbackCountLeadingZeros(ulong value, int size);
private delegate uint SoftFallbackCrc32b(uint crc, byte value);
private delegate uint SoftFallbackCrc32cb(uint crc, byte value);
private delegate uint SoftFallbackCrc32ch(uint crc, ushort value);
private delegate uint SoftFallbackCrc32cw(uint crc, uint value);
private delegate uint SoftFallbackCrc32cx(uint crc, ulong value);
private delegate uint SoftFallbackCrc32h(uint crc, ushort value);
private delegate uint SoftFallbackCrc32w(uint crc, uint value);
private delegate uint SoftFallbackCrc32x(uint crc, ulong value);
private delegate V128 SoftFallbackDecrypt(V128 value, V128 roundKey);
private delegate V128 SoftFallbackEncrypt(V128 value, V128 roundKey);
private delegate uint SoftFallbackFixedRotate(uint hash_e);
private delegate V128 SoftFallbackHashChoose(V128 hash_abcd, uint hash_e, V128 wk);
private delegate V128 SoftFallbackHashLower(V128 hash_abcd, V128 hash_efgh, V128 wk);
private delegate V128 SoftFallbackHashMajority(V128 hash_abcd, uint hash_e, V128 wk);
private delegate V128 SoftFallbackHashParity(V128 hash_abcd, uint hash_e, V128 wk);
private delegate V128 SoftFallbackHashUpper(V128 hash_abcd, V128 hash_efgh, V128 wk);
private delegate V128 SoftFallbackInverseMixColumns(V128 value);
private delegate V128 SoftFallbackMixColumns(V128 value);
private delegate V128 SoftFallbackPolynomialMult64_128(ulong op1, ulong op2);
private delegate int SoftFallbackSatF32ToS32(float value);
private delegate long SoftFallbackSatF32ToS64(float value);
private delegate uint SoftFallbackSatF32ToU32(float value);
private delegate ulong SoftFallbackSatF32ToU64(float value);
private delegate int SoftFallbackSatF64ToS32(double value);
private delegate long SoftFallbackSatF64ToS64(double value);
private delegate uint SoftFallbackSatF64ToU32(double value);
private delegate ulong SoftFallbackSatF64ToU64(double value);
private delegate V128 SoftFallbackSha1SchedulePart1(V128 w0_3, V128 w4_7, V128 w8_11);
private delegate V128 SoftFallbackSha1SchedulePart2(V128 tw0_3, V128 w12_15);
private delegate V128 SoftFallbackSha256SchedulePart1(V128 w0_3, V128 w4_7);
private delegate V128 SoftFallbackSha256SchedulePart2(V128 w0_3, V128 w8_11, V128 w12_15);
private delegate long SoftFallbackSignedShrImm64(long value, long roundConst, int shift);
private delegate V128 SoftFallbackTbl1(V128 vector, int bytes, V128 tb0);
private delegate V128 SoftFallbackTbl2(V128 vector, int bytes, V128 tb0, V128 tb1);
private delegate V128 SoftFallbackTbl3(V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2);
private delegate V128 SoftFallbackTbl4(V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2, V128 tb3);
private delegate V128 SoftFallbackTbx1(V128 dest, V128 vector, int bytes, V128 tb0);
private delegate V128 SoftFallbackTbx2(V128 dest, V128 vector, int bytes, V128 tb0, V128 tb1);
private delegate V128 SoftFallbackTbx3(V128 dest, V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2);
private delegate V128 SoftFallbackTbx4(V128 dest, V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2, V128 tb3);
private delegate ulong SoftFallbackUnsignedShrImm64(ulong value, long roundConst, int shift);
private delegate float SoftFloat16_32FPConvert(ushort valueBits);
private delegate double SoftFloat16_64FPConvert(ushort valueBits);
private delegate float SoftFloat32FPAdd(float value1, float value2);
private delegate float SoftFloat32FPAddFpscr(float value1, float value2, bool standardFpscr);
private delegate int SoftFloat32FPCompare(float value1, float value2, bool signalNaNs);
private delegate float SoftFloat32FPCompareEQ(float value1, float value2);
private delegate float SoftFloat32FPCompareEQFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPCompareGE(float value1, float value2);
private delegate float SoftFloat32FPCompareGEFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPCompareGT(float value1, float value2);
private delegate float SoftFloat32FPCompareGTFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPCompareLE(float value1, float value2);
private delegate float SoftFloat32FPCompareLEFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPCompareLT(float value1, float value2);
private delegate float SoftFloat32FPCompareLTFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPDiv(float value1, float value2);
private delegate float SoftFloat32FPMax(float value1, float value2);
private delegate float SoftFloat32FPMaxFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMaxNum(float value1, float value2);
private delegate float SoftFloat32FPMaxNumFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMin(float value1, float value2);
private delegate float SoftFloat32FPMinFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMinNum(float value1, float value2);
private delegate float SoftFloat32FPMinNumFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMul(float value1, float value2);
private delegate float SoftFloat32FPMulFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMulAdd(float valueA, float value1, float value2);
private delegate float SoftFloat32FPMulAddFpscr(float valueA, float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMulSub(float valueA, float value1, float value2);
private delegate float SoftFloat32FPMulSubFpscr(float valueA, float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMulX(float value1, float value2);
private delegate float SoftFloat32FPNegMulAdd(float valueA, float value1, float value2);
private delegate float SoftFloat32FPNegMulSub(float valueA, float value1, float value2);
private delegate float SoftFloat32FPRecipEstimate(float value);
private delegate float SoftFloat32FPRecipEstimateFpscr(float value, bool standardFpscr);
private delegate float SoftFloat32FPRecipStep(float value1, float value2);
private delegate float SoftFloat32FPRecipStepFused(float value1, float value2);
private delegate float SoftFloat32FPRecpX(float value);
private delegate float SoftFloat32FPRSqrtEstimate(float value);
private delegate float SoftFloat32FPRSqrtEstimateFpscr(float value, bool standardFpscr);
private delegate float SoftFloat32FPRSqrtStep(float value1, float value2);
private delegate float SoftFloat32FPRSqrtStepFused(float value1, float value2);
private delegate float SoftFloat32FPSqrt(float value);
private delegate float SoftFloat32FPSub(float value1, float value2);
private delegate ushort SoftFloat32_16FPConvert(float value);
private delegate double SoftFloat64FPAdd(double value1, double value2);
private delegate double SoftFloat64FPAddFpscr(double value1, double value2, bool standardFpscr);
private delegate int SoftFloat64FPCompare(double value1, double value2, bool signalNaNs);
private delegate double SoftFloat64FPCompareEQ(double value1, double value2);
private delegate double SoftFloat64FPCompareEQFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPCompareGE(double value1, double value2);
private delegate double SoftFloat64FPCompareGEFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPCompareGT(double value1, double value2);
private delegate double SoftFloat64FPCompareGTFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPCompareLE(double value1, double value2);
private delegate double SoftFloat64FPCompareLEFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPCompareLT(double value1, double value2);
private delegate double SoftFloat64FPCompareLTFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPDiv(double value1, double value2);
private delegate double SoftFloat64FPMax(double value1, double value2);
private delegate double SoftFloat64FPMaxFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMaxNum(double value1, double value2);
private delegate double SoftFloat64FPMaxNumFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMin(double value1, double value2);
private delegate double SoftFloat64FPMinFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMinNum(double value1, double value2);
private delegate double SoftFloat64FPMinNumFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMul(double value1, double value2);
private delegate double SoftFloat64FPMulFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMulAdd(double valueA, double value1, double value2);
private delegate double SoftFloat64FPMulAddFpscr(double valueA, double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMulSub(double valueA, double value1, double value2);
private delegate double SoftFloat64FPMulSubFpscr(double valueA, double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMulX(double value1, double value2);
private delegate double SoftFloat64FPNegMulAdd(double valueA, double value1, double value2);
private delegate double SoftFloat64FPNegMulSub(double valueA, double value1, double value2);
private delegate double SoftFloat64FPRecipEstimate(double value);
private delegate double SoftFloat64FPRecipEstimateFpscr(double value, bool standardFpscr);
private delegate double SoftFloat64FPRecipStep(double value1, double value2);
private delegate double SoftFloat64FPRecipStepFused(double value1, double value2);
private delegate double SoftFloat64FPRecpX(double value);
private delegate double SoftFloat64FPRSqrtEstimate(double value);
private delegate double SoftFloat64FPRSqrtEstimateFpscr(double value, bool standardFpscr);
private delegate double SoftFloat64FPRSqrtStep(double value1, double value2);
private delegate double SoftFloat64FPRSqrtStepFused(double value1, double value2);
private delegate double SoftFloat64FPSqrt(double value);
private delegate double SoftFloat64FPSub(double value1, double value2);
private delegate ushort SoftFloat64_16FPConvert(double value);
}
}
@@ -97,7 +97,7 @@ namespace ARMeilleure.Translation
public virtual Operand Call(MethodInfo info, params Operand[] callArgs)
{
nint funcPtr = info.MethodHandle.GetFunctionPointer();
nint funcPtr = Delegates.GetDelegateFuncPtr(info);
OperandType returnType = GetOperandType(info.ReturnType);
@@ -2,6 +2,8 @@
<PropertyGroup>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -3,6 +3,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -4,6 +4,8 @@
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<RuntimeIdentifiers>win-x64;osx-x64;linux-x64;win-arm64;osx-arm64;linux-arm64</RuntimeIdentifiers>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
+2
View File
@@ -3,6 +3,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -16,10 +16,5 @@ namespace Ryujinx.Common.Configuration.Hid.Controller
/// Enable Rumble
/// </summary>
public bool EnableRumble { get; set; }
/// <summary>
/// Enable HD Rumble support
/// </summary
public bool UseHDRumble { get; set; }
}
}
+2
View File
@@ -3,6 +3,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefineConstants Condition=" '$(ExtraDefineConstants)' != '' ">$(DefineConstants);$(ExtraDefineConstants)</DefineConstants>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -126,13 +126,8 @@ namespace Ryujinx.Common
public static string[] GetAllAvailableResources(string path, string ext = "")
{
(Assembly assembly, string resourcePath) = ResolveManifestPath(path);
string manifestPath = assembly.GetName().Name + "." + resourcePath.Replace('/', '.');
return assembly.GetManifestResourceNames()
.Where(r => r.StartsWith(manifestPath + ".", StringComparison.Ordinal))
.Where(r => r.EndsWith(ext, StringComparison.Ordinal))
return ResolveManifestPath(path).Item1.GetManifestResourceNames()
.Where(r => r.EndsWith(ext))
.ToArray();
}
+2
View File
@@ -3,6 +3,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -1,6 +1,8 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
-12
View File
@@ -51,10 +51,6 @@ 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;
@@ -124,10 +120,6 @@ namespace Ryujinx.Graphics.GAL
bool supportsViewportSwizzle,
bool supportsIndirectParameters,
bool supportsDepthClipControl,
bool supportsExtendedDynamicState,
bool supportsExtendedDynamicState2,
bool supportsLogicOpDynamicState,
bool supportsPatchControlPointsDynamicState,
int uniformBufferSetIndex,
int storageBufferSetIndex,
int textureSetIndex,
@@ -191,10 +183,6 @@ 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)
@@ -1,9 +1,10 @@
<Project Sdk="Microsoft.NET.Sdk">
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release</Configurations>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -861,9 +861,6 @@ 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 +1034,7 @@ 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 +1216,9 @@ 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 +1416,6 @@ 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,
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -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, $"Rebuilt {_programList.Count} shaders successfully.");
}
else
{
@@ -385,29 +343,6 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
_stateChangeCallback(ShaderCacheState.Loaded, programCount, programCount);
}
private PrimitiveTopology ConvertToClass(PrimitiveTopology topology)
{
return topology switch
{
PrimitiveTopology.Points => PrimitiveTopology.Points,
PrimitiveTopology.Lines or
PrimitiveTopology.LineStrip or
PrimitiveTopology.LinesAdjacency or
PrimitiveTopology.LineStripAdjacency => PrimitiveTopology.Lines,
PrimitiveTopology.Triangles or
PrimitiveTopology.TriangleStrip or
PrimitiveTopology.TriangleFan or
PrimitiveTopology.TrianglesAdjacency or
PrimitiveTopology.TriangleStripAdjacency or
PrimitiveTopology.Polygon => PrimitiveTopology.TriangleStrip,
PrimitiveTopology.Patches => PrimitiveTopology.Patches,
PrimitiveTopology.Quads => PrimitiveTopology.Quads,
PrimitiveTopology.QuadStrip => PrimitiveTopology.QuadStrip,
PrimitiveTopology.LineLoop => PrimitiveTopology.LineLoop,
_ => PrimitiveTopology.TriangleStrip,
};
}
/// <summary>
/// Enqueues a host program for compilation.
/// </summary>
@@ -2,6 +2,8 @@
<PropertyGroup>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -3,6 +3,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -193,10 +193,6 @@ 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);
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -1,12 +0,0 @@
using System;
namespace Ryujinx.Graphics.RenderDocApi
{
public readonly record struct Capture(int Index, string FileName, DateTime Timestamp)
{
public void SetComments(string comments)
{
RenderDoc.SetCaptureFileComments(FileName, comments);
}
}
}
@@ -1,100 +0,0 @@
// ReSharper disable UnusedMember.Global
namespace Ryujinx.Graphics.RenderDocApi
{
public enum CaptureOption
{
/// <summary>
/// specifies whether the application is allowed to enable vsync. Default is on.
/// </summary>
AllowVsync = 0,
/// <summary>
/// specifies whether the application is allowed to enter exclusive fullscreen. Default is on.
/// </summary>
AllowFullscreen = 1,
/// <summary>
/// specifies whether (where possible) API-specific debugging is enabled. Default is off.
/// </summary>
ApiValidation = 2,
/// <summary>
/// specifies whether each API call should save a callstack. Default is off.
/// </summary>
CaptureCallstacks = 3,
/// <summary>
/// specifies whether, if <see cref="CaptureCallstacks"/> is enabled, callstacks are only saved on actions. Default is off.
/// </summary>
CaptureCallstacksOnlyDraws = 4,
/// <summary>
/// specifies a delay in seconds after launching a process to pause, to allow debuggers to attach. <br/>
/// This will only apply to child processes since the delay happens at process startup. Default is 0.
/// </summary>
DelayForDebugger = 5,
/// <summary>
/// specifies whether any mapped memory updates should be bounds-checked for overruns,
/// and uninitialised buffers are initialized to <code>0xDDDDDDDD</code> to catch use of uninitialised data.
/// Only supported on D3D11 and OpenGL. Default is off.
/// </summary>
/// <remarks>
/// This option is only valid for OpenGL and D3D11. Explicit APIs such as D3D12 and Vulkan do
/// not do the same kind of interception &amp; checking, and undefined contents are really undefined.
/// </remarks>
VerifyBufferAccess = 6,
/// <summary>
/// Hooks any system API calls that create child processes, and injects
/// RenderDoc into them recursively with the same options.
/// </summary>
HookIntoChildren = 7,
/// <summary>
/// specifies whether all live resources at the time of capture should be included in the capture,
/// even if they are not referenced by the frame. Default is off.
/// </summary>
RefAllSources = 8,
/// <summary>
/// By default, RenderDoc skips saving initial states for resources where the
/// previous contents don't appear to be used, assuming that writes before
/// reads indicate previous contents aren't used.
/// </summary>
/// <remarks>
/// **NOTE**: As of RenderDoc v1.1 this option has been deprecated. Setting or
/// getting it will be ignored, to allow compatibility with older versions.
/// In v1.1 the option acts as if it's always enabled.
/// </remarks>
SaveAllInitials = 9,
/// <summary>
/// In APIs that allow for the recording of command lists to be replayed later,
/// RenderDoc may choose to not capture command lists before a frame capture is
/// triggered, to reduce overheads. This means any command lists recorded once
/// and replayed many times will not be available and may cause a failure to
/// capture.
/// </summary>
/// <remarks>
/// NOTE: This is only true for APIs where multithreading is difficult or
/// discouraged. Newer APIs like Vulkan and D3D12 will ignore this option
/// and always capture all command lists since the API is heavily oriented
/// around it and the overheads have been reduced by API design.
/// </remarks>
CaptureAllCmdLists = 10,
/// <summary>
/// Mute API debugging output when the <see cref="ApiValidation"/> option is enabled.
/// </summary>
DebugOutputMute = 11,
/// <summary>
/// Allow vendor extensions to be used even when they may be
/// incompatible with RenderDoc and cause corrupted replays or crashes.
/// </summary>
AllowUnsupportedVendorExtensions = 12,
/// <summary>
/// Define a soft memory limit which some APIs may aim to keep overhead under where
/// possible. Anything above this limit will where possible be saved directly to disk during
/// capture.<br/>
/// This will cause increased disk space use (which may cause a capture to fail if disk space is
/// exhausted) as well as slower capture times.
/// <br/><br/>
/// Not all memory allocations may be deferred like this so it is not a guarantee of a memory
/// limit.
/// <br/><br/>
/// Units are in MBs, suggested values would range from 200MB to 1000MB.
/// </summary>
SoftMemoryLimit = 13,
}
}
@@ -1,83 +0,0 @@
// ReSharper disable UnusedMember.Global
namespace Ryujinx.Graphics.RenderDocApi
{
public enum InputButton
{
// '0' - '9' matches ASCII values
Key0 = 0x30,
Key1 = 0x31,
Key2 = 0x32,
Key3 = 0x33,
Key4 = 0x34,
Key5 = 0x35,
Key6 = 0x36,
Key7 = 0x37,
Key8 = 0x38,
Key9 = 0x39,
// 'A' - 'Z' matches ASCII values
A = 0x41,
B = 0x42,
C = 0x43,
D = 0x44,
E = 0x45,
F = 0x46,
G = 0x47,
H = 0x48,
I = 0x49,
J = 0x4A,
K = 0x4B,
L = 0x4C,
M = 0x4D,
N = 0x4E,
O = 0x4F,
P = 0x50,
Q = 0x51,
R = 0x52,
S = 0x53,
T = 0x54,
U = 0x55,
V = 0x56,
W = 0x57,
X = 0x58,
Y = 0x59,
Z = 0x5A,
// leave the rest of the ASCII range free
// in case we want to use it later
NonPrintable = 0x100,
Divide,
Multiply,
Subtract,
Plus,
F1,
F2,
F3,
F4,
F5,
F6,
F7,
F8,
F9,
F10,
F11,
F12,
Home,
End,
Insert,
Delete,
PageUp,
PageDn,
Backspace,
Tab,
PrtScrn,
Pause,
Max,
}
}
@@ -1,39 +0,0 @@
// ReSharper disable UnusedMember.Global
using System;
namespace Ryujinx.Graphics.RenderDocApi
{
[Flags]
public enum OverlayBits
{
/// <summary>
/// This single bit controls whether the overlay is enabled or disabled globally
/// </summary>
Enabled = 1 << 0,
/// <summary>
/// Show the average framerate over several seconds as well as min/max
/// </summary>
FrameRate = 1 << 1,
/// <summary>
/// Show the current frame number
/// </summary>
FrameNumber = 1 << 2,
/// <summary>
/// Show a list of recent captures, and how many captures have been made
/// </summary>
CaptureList = 1 << 3,
/// <summary>
/// Default values for the overlay mask
/// </summary>
Default = Enabled | FrameRate | FrameNumber | CaptureList,
/// <summary>
/// Enable all bits
/// </summary>
All = ~0,
/// <summary>
/// Disable all bits
/// </summary>
None = 0
}
}
@@ -1,5 +0,0 @@
# Ryujinx.Graphics.RenderDocApi
This is a C# binding for RenderDoc's application API.
This is a source-inclusion of https://github.com/utkumaden/RenderdocSharp.
I didn't use the NuGet package as I had a few minor changes I wanted to make, and I want to learn from it as well via hands-on experience.
@@ -1,639 +0,0 @@
using System;
using System.Collections.Immutable;
using System.Diagnostics;
using System.Diagnostics.CodeAnalysis;
using System.Reflection;
using System.Runtime.CompilerServices;
using System.Runtime.InteropServices;
using System.Text;
using System.Text.RegularExpressions;
namespace Ryujinx.Graphics.RenderDocApi
{
public static unsafe partial class RenderDoc
{
/// <summary>
/// True if the API is available.
/// </summary>
public static bool IsAvailable => Api != null;
/// <summary>
/// Set the minimum version of the API you require.
/// </summary>
/// <remarks>Set this before you do anything else with the RenderDoc API, including <see cref="IsAvailable"/>.</remarks>
public static RenderDocVersion MinimumRequired { get; set; } = RenderDocVersion.Version_1_0_0;
/// <summary>
/// Set to true to assert versions.
/// </summary>
public static bool AssertVersionEnabled { get; set; } = true;
/// <summary>
/// Version of the API available.
/// </summary>
[MemberNotNullWhen(true, nameof(IsAvailable))]
public static Version? Version
{
get
{
if (!IsAvailable)
return null;
int major, minor, build;
Api->GetApiVersion(&major, &minor, &build);
return new Version(major, minor, build);
}
}
/// <summary>
/// The current mask which determines what sections of the overlay render on each window.
/// </summary>
[RenderDocApiVersion(1, 0)]
public static OverlayBits OverlayBits
{
get => Api->GetOverlayBits();
set
{
Api->MaskOverlayBits(~value, value);
}
}
/// <summary>
/// The template for new captures.<br/>
/// The template can either be a relative or absolute path, which determines where captures will be saved and how they will be named.
/// If the path template is 'my_captures/example', then captures saved will be e.g.
/// 'my_captures/example_frame123.rdc' and 'my_captures/example_frame456.rdc'.<br/>
/// Relative paths will be saved relative to the process’s current working directory.<br/>
/// </summary>
/// <remarks>The default template is in a folder controlled by the UI - initially the system temporary folder, and the filename is the executable’s filename.</remarks>
[RenderDocApiVersion(1, 0)]
public static string CaptureFilePathTemplate
{
get
{
byte* ptr = Api->GetCaptureFilePathTemplate();
return Marshal.PtrToStringUTF8((nint)ptr)!;
}
set
{
fixed (byte* ptr = value.ToNullTerminatedByteArray())
{
Api->SetCaptureFilePathTemplate(ptr);
}
}
}
/// <summary>
/// The amount of frame captures that have been made.
/// </summary>
[RenderDocApiVersion(1, 0)]
public static int CaptureCount => Api->GetNumCaptures();
/// <summary>
/// Checks if the RenderDoc UI is currently connected to this process.
/// </summary>
[RenderDocApiVersion(1, 0)]
public static bool IsTargetControlConnected => Api is not null && Api->IsTargetControlConnected() != 0;
/// <summary>
/// Checks if the current frame is capturing.
/// </summary>
[RenderDocApiVersion(1, 0)]
public static bool IsFrameCapturing => Api is not null && Api->IsFrameCapturing() != 0;
/// <summary>
/// Set one of the options for tweaking some behaviors of capturing.
/// </summary>
/// <param name="option">specifies which capture option should be set.</param>
/// <param name="integer">the unsigned integer value to set for the option.</param>
/// <remarks>Note that each option only takes effect from after it is set - so it is advised to set these options as early as possible, ideally before any graphics API has been initialized.</remarks>
/// <returns>
/// true, if the <paramref name="option"/> is valid, and the value set on the option is within valid ranges.<br/>
/// false, if the option is not a <see cref="CaptureOption"/>, or the value is not valid for the option.
/// </returns>
[RenderDocApiVersion(1, 0)]
public static bool SetCaptureOption(CaptureOption option, uint integer)
{
return Api is not null && Api->SetCaptureOptionU32(option, integer) != 0;
}
/// <summary>
/// Set one of the options for tweaking some behaviors of capturing.
/// </summary>
/// <param name="option">specifies which capture option should be set.</param>
/// <param name="boolean">the value to set for the option, converted to a 0 or 1 before setting.</param>
/// <remarks>Note that each option only takes effect from after it is set - so it is advised to set these options as early as possible, ideally before any graphics API has been initialized.</remarks>
/// <returns>
/// true, if the <paramref name="option"/> is valid, and the value set on the option is within valid ranges.<br/>
/// false, if the option is not a <see cref="CaptureOption"/>, or the value is not valid for the option.
/// </returns>
[RenderDocApiVersion(1, 0)]
public static bool SetCaptureOption(CaptureOption option, bool boolean)
=> SetCaptureOption(option, boolean ? 1 : 0);
/// <summary>
/// Set one of the options for tweaking some behaviors of capturing.
/// </summary>
/// <param name="option">specifies which capture option should be set.</param>
/// <param name="single">the floating point value to set for the option.</param>
/// <remarks>Note that each option only takes effect from after it is set - so it is advised to set these options as early as possible, ideally before any graphics API has been initialized.</remarks>
/// <returns>
/// true, if the <paramref name="option"/> is valid, and the value set on the option is within valid ranges.<br/>
/// false, if the option is not a <see cref="CaptureOption"/>, or the value is not valid for the option.
/// </returns>
[RenderDocApiVersion(1, 0)]
public static bool SetCaptureOption(CaptureOption option, float single)
{
return Api is not null && Api->SetCaptureOptionF32(option, single) != 0;
}
/// <summary>
/// Gets the current value of one of the different options in <see cref="CaptureOption"/>, writing it to an out parameter.
/// </summary>
/// <param name="option">specifies which capture option should be retrieved.</param>
/// <param name="integer">the value of the capture option, if the option is a valid <see cref="CaptureOption"/> enum. Otherwise, <see cref="int.MaxValue"/>.</param>
[RenderDocApiVersion(1, 0)]
public static void GetCaptureOption(CaptureOption option, out uint integer)
{
integer = Api->GetCaptureOptionU32(option);
}
/// <summary>
/// Gets the current value of one of the different options in <see cref="CaptureOption"/>, writing it to an out parameter.
/// </summary>
/// <param name="option">specifies which capture option should be retrieved.</param>
/// <param name="single">the value of the capture option, if the option is a valid <see cref="CaptureOption"/> enum. Otherwise, -<see cref="float.MaxValue"/>.</param>
[RenderDocApiVersion(1, 0)]
public static void GetCaptureOption(CaptureOption option, out float single)
{
single = Api->GetCaptureOptionF32(option);
}
/// <summary>
/// Gets the current value of one of the different options in <see cref="CaptureOption"/>,
/// converted to a boolean.
/// </summary>
/// <param name="option">specifies which capture option should be retrieved.</param>
/// <returns>
/// the value of the capture option, converted to bool, if the option is a valid <see cref="CaptureOption"/> enum.
/// Otherwise, returns null.
/// </returns>
[RenderDocApiVersion(1, 0)]
public static bool? GetCaptureOptionBool(CaptureOption option)
{
if (Api is null) return false;
uint returnVal = GetCaptureOptionU32(option);
if (returnVal == uint.MaxValue)
return null;
return returnVal is not 0;
}
/// <summary>
/// Gets the current value of one of the different options in <see cref="CaptureOption"/>.
/// </summary>
/// <param name="option">specifies which capture option should be retrieved.</param>
/// <returns>
/// the value of the capture option, if the option is a valid <see cref="CaptureOption"/> enum.
/// Otherwise, returns <see cref="int.MaxValue"/>.
/// </returns>
[RenderDocApiVersion(1, 0)]
public static uint GetCaptureOptionU32(CaptureOption option) => Api->GetCaptureOptionU32(option);
/// <summary>
/// Gets the current value of one of the different options in <see cref="CaptureOption"/>.
/// </summary>
/// <param name="option">specifies which capture option should be retrieved.</param>
/// <returns>
/// the value of the capture option, if the option is a valid <see cref="CaptureOption"/> enum.
/// Otherwise, returns -<see cref="float.MaxValue"/>.
/// </returns>
[RenderDocApiVersion(1, 0)]
public static float GetCaptureOptionF32(CaptureOption option) => Api->GetCaptureOptionF32(option);
/// <summary>
/// Changes the key bindings in-application for changing the focussed window.
/// </summary>
/// <param name="buttons">lists the keys to bind.</param>
[RenderDocApiVersion(1, 0)]
public static void SetFocusToggleKeys(ReadOnlySpan<InputButton> buttons)
{
if (Api is null) return;
fixed (InputButton* ptr = buttons)
{
Api->SetFocusToggleKeys(ptr, buttons.Length);
}
}
/// <summary>
/// Changes the key bindings in-application for triggering a capture on the current window.
/// </summary>
/// <param name="buttons">lists the keys to bind.</param>
[RenderDocApiVersion(1, 0)]
public static void SetCaptureKeys(ReadOnlySpan<InputButton> buttons)
{
if (Api is null) return;
fixed (InputButton* ptr = buttons)
{
Api->SetCaptureKeys(ptr, buttons.Length);
}
}
/// <summary>
/// Attempts to remove RenderDoc and its hooks from the target process.<br/>
/// It must be called as early as possible in the process, and will have undefined results
/// if any graphics API functions have been called.
/// </summary>
[RenderDocApiVersion(1, 0)]
public static void RemoveHooks()
{
if (Api is null) return;
Api->RemoveHooks();
}
/// <summary>
/// Remove RenderDoc’s crash handler from the target process.<br/>
/// If you have your own crash handler that you want to handle any exceptions,
/// RenderDoc’s handler could interfere; so it can be disabled.
/// </summary>
[RenderDocApiVersion(1, 0)]
public static void UnloadCrashHandler()
{
if (Api is null) return;
Api->UnloadCrashHandler();
}
/// <summary>
/// Trigger a capture as if the user had pressed one of the capture hotkeys.<br/>
/// The capture will be taken from the next frame presented to whichever window is considered current.
/// </summary>
[RenderDocApiVersion(1, 0)]
public static void TriggerCapture()
{
if (Api is null) return;
Api->TriggerCapture();
}
/// <summary>
/// Gets the details of all frame capture in the current session.
/// This simply calls <see cref="GetCapture"/> for each index available as specified by <see cref="CaptureCount"/>.
/// </summary>
/// <returns>An immutable array of structs representing RenderDoc Captures.</returns>
public static ImmutableArray<Capture> GetCaptures()
{
if (Api is null) return [];
int captureCount = CaptureCount;
if (captureCount is 0) return [];
ImmutableArray<Capture>.Builder captures = ImmutableArray.CreateBuilder<Capture>(captureCount);
for (int captureIndex = 0; captureIndex < captureCount; captureIndex++)
{
if (GetCapture(captureIndex) is { } capture)
captures.Add(capture);
}
return captures.DrainToImmutable();
}
/// <summary>
/// Gets the details of a particular frame capture, as specified by an index from 0 to <see cref="CaptureCount"/> - 1.
/// </summary>
/// <param name="index">specifies which capture to return the details of. Must be less than the value returned by <see cref="CaptureCount"/>.</param>
/// <returns>A struct representing a RenderDoc Capture.</returns>
[RenderDocApiVersion(1, 0)]
public static Capture? GetCapture(int index)
{
if (Api is null) return null;
int length = 0;
if (Api->GetCapture(index, null, &length, null) == 0)
{
return null;
}
Span<byte> bytes = stackalloc byte[length + 1];
long timestamp;
fixed (byte* ptr = bytes)
Api->GetCapture(index, ptr, &length, &timestamp);
string fileName = Encoding.UTF8.GetString(bytes[length..]);
return new Capture(index, fileName, DateTimeOffset.FromUnixTimeSeconds(timestamp).DateTime);
}
/// <summary>
/// Determine the closest matching replay UI executable for the current RenderDoc module, and launch it.
/// </summary>
/// <param name="connectTargetControl">if the UI should immediately connect to the application.</param>
/// <param name="commandLine">string to be appended to the command line, e.g. a capture filename. If this parameter is null, the command line will be unmodified.</param>
/// <returns>true if the UI was successfully launched; false otherwise.</returns>
[RenderDocApiVersion(1, 0)]
public static bool LaunchReplayUI(bool connectTargetControl, string? commandLine = null)
{
if (Api is null) return false;
if (commandLine == null)
{
return Api->LaunchReplayUI(connectTargetControl ? 1u : 0u, null) != 0;
}
fixed (byte* ptr = commandLine.ToNullTerminatedByteArray())
{
return Api->LaunchReplayUI(connectTargetControl ? 1u : 0u, ptr) != 0;
}
}
/// <summary>
/// Explicitly sets which window is considered active.<br/>
/// The active window is the one that will be captured when the keybind to trigger a capture is pressed.
/// </summary>
/// <param name="hDevice">a handle to the API ‘device’ object that will be set active. Must be valid.</param>
/// <param name="hWindow">a handle to the platform window handle that will be set active. Must be valid.</param>
[RenderDocApiVersion(1, 0)]
public static void SetActiveWindow(nint hDevice, nint hWindow)
{
if (Api is null) return;
Api->SetActiveWindow((void*)hDevice, (void*)hWindow);
}
/// <summary>
/// Immediately begin a capture for the specified device/window combination.
/// </summary>
/// <param name="hDevice">a handle to the API ‘device’ object that will be set active. May be <see cref="nint.Zero"/> to wildcard match.</param>
/// <param name="hWindow">a handle to the platform window handle that will be set active. May be <see cref="nint.Zero"/> to wildcard match.</param>
[RenderDocApiVersion(1, 0)]
public static void StartFrameCapture(nint hDevice, nint hWindow)
{
if (Api is null) return;
Api->StartFrameCapture((void*)hDevice, (void*)hWindow);
}
/// <summary>
/// Immediately end an active capture for the specified device/window combination.
/// </summary>
/// <param name="hDevice">a handle to the API ‘device’ object that will be set active. May be <see cref="nint.Zero"/> to wildcard match.</param>
/// <param name="hWindow">a handle to the platform window handle that will be set active. May be <see cref="nint.Zero"/> to wildcard match.</param>
/// <returns>true if the capture succeeded; false otherwise.</returns>
[RenderDocApiVersion(1, 0)]
public static bool EndFrameCapture(nint hDevice, nint hWindow)
{
if (Api is null) return false;
return Api->EndFrameCapture((void*)hDevice, (void*)hWindow) != 0;
}
/// <summary>
/// Trigger multiple sequential frame captures as if the user had pressed one of the capture hotkeys before each frame.<br/>
/// The captures will be taken from the next frames presented to whichever window is considered current.<br/>
/// Each capture will be taken independently and saved to a separate file, with no reference to the other frames.
/// </summary>
/// <param name="numFrames">the number of frames to capture.</param>
/// <remarks>Requires RenderDoc API version 1.1</remarks>
[RenderDocApiVersion(1, 1)]
public static void TriggerMultiFrameCapture(uint numFrames)
{
if (Api is null) return;
AssertAtLeast(1, 1);
Api->TriggerMultiFrameCapture(numFrames);
}
/// <summary>
/// Adds an arbitrary comments field to the most recent capture,
/// which will then be displayed in the UI to anyone opening the capture.
/// <br/><br/>
/// This is equivalent to calling <see cref="SetCaptureFileComments"/> with a null first (fileName) parameter.
/// </summary>
/// <param name="comments">the comments to set in the capture file.</param>
/// <remarks>Requires RenderDoc API version 1.2</remarks>
public static void SetMostRecentCaptureFileComments(string comments)
{
if (Api is null) return;
AssertAtLeast(1, 2);
byte[] commentBytes = comments.ToNullTerminatedByteArray();
fixed (byte* pcomment = commentBytes)
{
Api->SetCaptureFileComments((byte*)nint.Zero, pcomment);
}
}
/// <summary>
/// Adds an arbitrary comments field to an existing capture on disk,
/// which will then be displayed in the UI to anyone opening the capture.
/// </summary>
/// <param name="fileName">the path to the capture file to set comments in. If this path is null or an empty string, the most recent capture file that has been created will be used.</param>
/// <param name="comments">the comments to set in the capture file.</param>
/// <remarks>Requires RenderDoc API version 1.2</remarks>
[RenderDocApiVersion(1, 2)]
public static void SetCaptureFileComments(string? fileName, string comments)
{
if (Api is null) return;
AssertAtLeast(1, 2);
byte[] commentBytes = comments.ToNullTerminatedByteArray();
fixed (byte* pcomment = commentBytes)
{
if (fileName is null)
{
Api->SetCaptureFileComments((byte*)nint.Zero, pcomment);
}
else
{
byte[] fileBytes = fileName.ToNullTerminatedByteArray();
fixed (byte* pfile = fileBytes)
{
Api->SetCaptureFileComments(pfile, pcomment);
}
}
}
}
/// <summary>
/// Similar to <see cref="EndFrameCapture"/>, but the capture contents will be discarded immediately, and not processed and written to disk.<br/>
/// This will be more efficient than <see cref="EndFrameCapture"/> if the frame capture is not needed.
/// </summary>
/// <param name="hDevice">a handle to the API ‘device’ object that will be set active. May be <see cref="nint.Zero"/> to wildcard match.</param>
/// <param name="hWindow">a handle to the platform window handle that will be set active. May be <see cref="nint.Zero"/> to wildcard match.</param>
/// <returns>true if the capture was discarded; false if there was an error or no capture was in progress.</returns>
/// <remarks>Requires RenderDoc API version 1.4</remarks>
[RenderDocApiVersion(1, 4)]
public static bool DiscardFrameCapture(nint hDevice, nint hWindow)
{
if (Api is null) return false;
AssertAtLeast(1, 4);
return Api->DiscardFrameCapture((void*)hDevice, (void*)hWindow) != 0;
}
/// <summary>
/// Requests that the currently connected replay UI raise its window to the top.<br/>
/// This is only possible if an instance of the replay UI is currently connected, otherwise this method does nothing.<br/>
/// This can be used in conjunction with <see cref="IsTargetControlConnected"/> and <see cref="LaunchReplayUI"/>,<br/> to intelligently handle showing the UI after making a capture.<br/><br/>
/// Given OS differences, it is not guaranteed that the UI will be successfully raised even if the request is passed on.<br/>
/// On some systems it may only be highlighted or otherwise indicated to the user.
/// </summary>
/// <returns>true if the request was passed onto the UI successfully; false if there is no UI connected or some other error occurred.</returns>
/// <remarks>Requires RenderDoc API version 1.5</remarks>
[RenderDocApiVersion(1, 5)]
public static bool ShowReplayUI()
{
if (Api is null) return false;
AssertAtLeast(1, 5);
return Api->ShowReplayUI() != 0;
}
/// <summary>
/// Sets a given title for the currently in-progress capture, which will be displayed in the UI.<br/>
/// This can be used either with a user-defined capture using a manual start and end,
/// or an automatic capture triggered by <see cref="TriggerCapture"/> or a keypress.<br/>
/// If multiple captures are ongoing at once, the title will be applied to the first capture to end only.<br/>
/// Any subsequent captures will not get any title unless the function is called again.
/// This function can only be called while a capture is in-progress,
/// after <see cref="StartFrameCapture"/> and before <see cref="EndFrameCapture"/>.<br/>
/// If it is called elsewhere it will have no effect.
/// If it is called multiple times within a capture, only the last title will have any effect.
/// </summary>
/// <param name="title">The title to set for the in-progress capture.</param>
/// <remarks>Requires RenderDoc API version 1.6</remarks>
[RenderDocApiVersion(1, 6)]
public static void SetCaptureTitle(string title)
{
if (Api is null) return;
AssertAtLeast(1, 6);
fixed (byte* ptr = title.ToNullTerminatedByteArray())
Api->SetCaptureTitle(ptr);
}
#region Dynamic Library loading
/// <summary>
/// Reload the internal RenderDoc API structure. Useful for manually refreshing <see cref="Api"/> while using process injection.
/// </summary>
/// <param name="ignoreAlreadyLoaded">Ignores the existing API function structure and overwrites it with a re-request.</param>
/// <param name="requiredVersion">The version of the RenderDoc API required by your application.</param>
public static void ReloadApi(bool ignoreAlreadyLoaded = false, RenderDocVersion? requiredVersion = null)
{
if (_loaded && !ignoreAlreadyLoaded)
return;
lock (typeof(RenderDoc))
{
// Prevent double loads.
if (_loaded && !ignoreAlreadyLoaded)
return;
if (requiredVersion.HasValue)
MinimumRequired = requiredVersion.Value;
_loaded = true;
_api = GetApi(MinimumRequired);
if (_api != null)
AssertAtLeast(MinimumRequired);
}
}
private static RenderDocApi* _api = null;
private static bool _loaded;
private static RenderDocApi* Api
{
get
{
ReloadApi();
return _api;
}
}
private static readonly Regex _dynamicLibraryPattern = RenderDocApiDynamicLibraryRegex();
private static RenderDocApi* GetApi(RenderDocVersion minimumRequired = RenderDocVersion.Version_1_0_0)
{
foreach (ProcessModule module in Process.GetCurrentProcess().Modules)
{
string moduleName = module.FileName ?? string.Empty;
if (!_dynamicLibraryPattern.IsMatch(moduleName))
continue;
if (!NativeLibrary.TryLoad(moduleName, out nint moduleHandle))
return null;
if (!NativeLibrary.TryGetExport(moduleHandle, "RENDERDOC_GetAPI", out nint procAddress))
return null;
var RENDERDOC_GetApi = (delegate* unmanaged[Cdecl]<RenderDocVersion, RenderDocApi**, int>)procAddress;
RenderDocApi* api;
return RENDERDOC_GetApi(minimumRequired, &api) != 0 ? api : null;
}
return null;
}
private static void AssertAtLeast(RenderDocVersion rdv, [CallerMemberName] string callee = "")
{
Version ver = rdv.SystemVersion;
AssertAtLeast(ver.Major, ver.Minor, ver.Build, callee);
}
private static void AssertAtLeast(int major, int minor, int patch = 0, [CallerMemberName] string callee = "")
{
if (!AssertVersionEnabled)
return;
if (Version!.Major < major)
goto fail;
if (Version.Major > major)
goto success;
if (Version.Minor < minor)
goto fail;
if (Version.Minor > minor)
goto success;
if (Version.Build < patch)
goto fail;
success:
return;
fail:
Version minVersion =
typeof(RenderDoc).GetMethod(callee)!.GetCustomAttribute<RenderDocApiVersionAttribute>()!.MinVersion;
throw new NotSupportedException(
$"This API was introduced in RenderDoc API {minVersion}. Current API version is {Version}.");
}
private static byte[] ToNullTerminatedByteArray(this string str, Encoding? encoding = null)
{
encoding ??= Encoding.UTF8;
return encoding.GetBytes(str + '\0');
}
[GeneratedRegex(@"(lib)?renderdoc(\.dll|\.so|\.dylib)(\.\d+)?",
RegexOptions.IgnoreCase | RegexOptions.CultureInvariant)]
private static partial Regex RenderDocApiDynamicLibraryRegex();
#endregion
}
}
@@ -1,51 +0,0 @@
namespace Ryujinx.Graphics.RenderDocApi
{
#pragma warning disable CS0649
internal unsafe struct RenderDocApi
{
public delegate* unmanaged[Cdecl]<int*, int*, int*, void> GetApiVersion;
public delegate* unmanaged[Cdecl]<CaptureOption, uint, int> SetCaptureOptionU32;
public delegate* unmanaged[Cdecl]<CaptureOption, float, int> SetCaptureOptionF32;
public delegate* unmanaged[Cdecl]<CaptureOption, uint> GetCaptureOptionU32;
public delegate* unmanaged[Cdecl]<CaptureOption, float> GetCaptureOptionF32;
public delegate* unmanaged[Cdecl]<InputButton*, int, void> SetFocusToggleKeys;
public delegate* unmanaged[Cdecl]<InputButton*, int, void> SetCaptureKeys;
public delegate* unmanaged[Cdecl]<OverlayBits> GetOverlayBits;
public delegate* unmanaged[Cdecl]<OverlayBits, OverlayBits, void> MaskOverlayBits;
public delegate* unmanaged[Cdecl]<void> RemoveHooks;
public delegate* unmanaged[Cdecl]<void> UnloadCrashHandler;
public delegate* unmanaged[Cdecl]<byte*, void> SetCaptureFilePathTemplate;
public delegate* unmanaged[Cdecl]<byte*> GetCaptureFilePathTemplate;
public delegate* unmanaged[Cdecl]<int> GetNumCaptures;
public delegate* unmanaged[Cdecl]<int, byte*, int*, long*, uint> GetCapture;
public delegate* unmanaged[Cdecl]<void> TriggerCapture;
public delegate* unmanaged[Cdecl]<uint> IsTargetControlConnected;
public delegate* unmanaged[Cdecl]<uint, byte*, uint> LaunchReplayUI;
public delegate* unmanaged[Cdecl]<void*, void*, void> SetActiveWindow;
public delegate* unmanaged[Cdecl]<void*, void*, void> StartFrameCapture;
public delegate* unmanaged[Cdecl]<uint> IsFrameCapturing;
public delegate* unmanaged[Cdecl]<void*, void*, uint> EndFrameCapture;
// 1.1
public delegate* unmanaged[Cdecl]<uint, void> TriggerMultiFrameCapture;
// 1.2
public delegate* unmanaged[Cdecl]<byte*, byte*, void> SetCaptureFileComments;
// 1.3
public delegate* unmanaged[Cdecl]<void*, void*, uint> DiscardFrameCapture;
// 1.5
public delegate* unmanaged[Cdecl]<uint> ShowReplayUI;
// 1.6
public delegate* unmanaged[Cdecl]<byte*, void> SetCaptureTitle;
}
#pragma warning restore CS0649
}
@@ -1,16 +0,0 @@
using System;
namespace Ryujinx.Graphics.RenderDocApi
{
[AttributeUsage(AttributeTargets.Method | AttributeTargets.Property)]
public sealed class RenderDocApiVersionAttribute : Attribute
{
public Version MinVersion { get; }
public RenderDocApiVersionAttribute(int major, int minor, int patch = 0)
{
MinVersion = new Version(major, minor, patch);
}
}
}
@@ -1,47 +0,0 @@
using System;
namespace Ryujinx.Graphics.RenderDocApi
{
public enum RenderDocVersion
{
Version_1_0_0 = 10000,
Version_1_0_1 = 10001,
Version_1_0_2 = 10002,
Version_1_1_0 = 10100,
Version_1_1_1 = 10101,
Version_1_1_2 = 10102,
Version_1_2_0 = 10200,
Version_1_3_0 = 10300,
Version_1_4_0 = 10400,
Version_1_4_1 = 10401,
Version_1_4_2 = 10402,
Version_1_5_0 = 10500,
Version_1_6_0 = 10600,
}
public static partial class Helpers
{
extension(RenderDocVersion rdv)
{
public Version SystemVersion
{
get
{
int i = (int)rdv;
return new (i / 10000, (i % 10000) / 100, i % 100);
}
}
}
extension(Version sv)
{
public RenderDocVersion RenderDocVersion
{
get
{
return (RenderDocVersion)(sv.Major * 10000 + sv.Minor * 100 + sv.Build);
}
}
}
}
}
@@ -1,9 +0,0 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<TargetFramework>net10.0</TargetFramework>
<ImplicitUsings>disable</ImplicitUsings>
<Nullable>enable</Nullable>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
</PropertyGroup>
</Project>
@@ -1790,7 +1790,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
{
(_, varType) = IoMap.GetSpirvBuiltIn(ioVariable);
if (context.Definitions.Stage.IsVtg() && IoMap.IsPerVertexBuiltIn(ioVariable))
if (IoMap.IsPerVertexBuiltIn(ioVariable))
{
perVertexBuiltIn = ioVariable;
ioVariable = IoVariable.Position;
@@ -1,6 +1,8 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -1,6 +1,8 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -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
@@ -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));
}
-32
View File
@@ -1,32 +0,0 @@
using Silk.NET.Vulkan;
using System.Runtime.CompilerServices;
namespace Ryujinx.Graphics.Vulkan
{
public static class Helpers
{
extension(Vk api)
{
/// <summary>
/// C# implementation of the RENDERDOC_DEVICEPOINTER_FROM_VKINSTANCE macro from the RenderDoc API header, since we cannot use macros from C#.
/// </summary>
/// <returns>The dispatch table pointer, which sits as the first pointer-sized object in the memory pointed to by the <see cref="Vk"/>'s <see cref="Instance"/> pointer.</returns>
[MethodImpl(MethodImplOptions.AggressiveInlining)]
public unsafe void* GetRenderDocDevicePointer() =>
api.CurrentInstance is not null
? api.CurrentInstance.Value.GetRenderDocDevicePointer()
: null;
}
extension(Instance instance)
{
/// <summary>
/// C# implementation of the RENDERDOC_DEVICEPOINTER_FROM_VKINSTANCE macro from the RenderDoc API header, since we cannot use macros from C#.
/// </summary>
/// <returns>The dispatch table pointer, which sits as the first pointer-sized object in the memory pointed to by the <see cref="Instance"/>'s pointer.</returns>
[MethodImpl(MethodImplOptions.AggressiveInlining)]
public unsafe void* GetRenderDocDevicePointer()
=> (*((void**)(instance.Handle)));
}
}
}
+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();
@@ -2,7 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release</Configurations>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -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
{
@@ -539,7 +538,7 @@ 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;
@@ -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,
@@ -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; }
@@ -147,11 +146,6 @@ 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 +248,6 @@ namespace Ryujinx.Graphics.Vulkan
SType = StructureType.PhysicalDevicePrimitiveTopologyListRestartFeaturesExt,
};
PhysicalDeviceExtendedDynamicState2FeaturesEXT featuresExtendedDynamicState2 = new()
{
SType = StructureType.PhysicalDeviceExtendedDynamicState2FeaturesExt,
};
PhysicalDeviceRobustness2FeaturesEXT featuresRobustness2 = new()
{
SType = StructureType.PhysicalDeviceRobustness2FeaturesExt,
@@ -299,12 +288,6 @@ 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;
@@ -445,10 +428,6 @@ 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 +444,6 @@ 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 +459,6 @@ 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,
@@ -822,10 +798,6 @@ 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,
@@ -6,6 +6,8 @@
<EmitCompilerGeneratedFiles>true</EmitCompilerGeneratedFiles>
<CompilerGeneratedFilesOutputPath>Generated</CompilerGeneratedFilesOutputPath>
<IsRoslynComponent>true</IsRoslynComponent>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -166,15 +166,13 @@ namespace Ryujinx.HLE.HOS.Applets.Error
string[] buttons = GetButtonsText(module, description, "DlgBtn");
(uint Module, uint Description) errorCodeTuple = (module, uint.Parse(description.ToString("0000")));
bool showDetails = _horizon.Device.UIHandler.DisplayErrorAppletDialog($"Error Code: {module}-{description:0000}", "\n" + message, buttons, errorCodeTuple);
bool showDetails = _horizon.Device.UIHandler.DisplayErrorAppletDialog($"Error Code: {module}-{description:0000}", "\n" + message, buttons);
if (showDetails)
{
message = GetMessageText(module, description, "FlvMsg");
buttons = GetButtonsText(module, description, "FlvBtn");
_horizon.Device.UIHandler.DisplayErrorAppletDialog($"Details: {module}-{description:0000}", "\n" + message, buttons, errorCodeTuple);
_horizon.Device.UIHandler.DisplayErrorAppletDialog($"Details: {module}-{description:0000}", "\n" + message, buttons);
}
}
@@ -27,19 +27,9 @@ namespace Ryujinx.HLE.HOS.Applets
_normalSession = normalSession;
_interactiveSession = interactiveSession;
UserProfile selected = _system.Device.UIHandler.ShowPlayerSelectDialog();
if (selected == null)
{
_normalSession.Push(BuildResponse());
}
else if (selected.UserId == new UserId("00000000000000000000000000000080"))
{
_normalSession.Push(BuildGuestResponse());
}
else
{
_normalSession.Push(BuildResponse(selected));
}
// TODO(jduncanator): Parse PlayerSelectConfig from input data
_normalSession.Push(BuildResponse());
AppletStateChanged?.Invoke(this, null);
_system.ReturnFocus();
@@ -47,34 +37,16 @@ namespace Ryujinx.HLE.HOS.Applets
return ResultCode.Success;
}
private byte[] BuildResponse(UserProfile selectedUser)
private byte[] BuildResponse()
{
UserProfile currentUser = _system.AccountManager.LastOpenedUser;
using MemoryStream stream = MemoryStreamManager.Shared.GetStream();
using BinaryWriter writer = new(stream);
writer.Write((ulong)PlayerSelectResult.Success);
selectedUser.UserId.Write(writer);
return stream.ToArray();
}
private byte[] BuildGuestResponse()
{
using MemoryStream stream = MemoryStreamManager.Shared.GetStream();
using BinaryWriter writer = new(stream);
writer.Write(new byte());
return stream.ToArray();
}
private byte[] BuildResponse()
{
using MemoryStream stream = MemoryStreamManager.Shared.GetStream();
using BinaryWriter writer = new(stream);
writer.Write((ulong)PlayerSelectResult.Failure);
currentUser.UserId.Write(writer);
return stream.ToArray();
}
@@ -26,12 +26,12 @@ namespace Ryujinx.HLE.HOS.Kernel.Common
{
MemoryArrange.MemoryArrange4GiB or
MemoryArrange.MemoryArrange4GiBSystemDev or
MemoryArrange.MemoryArrange6GiBAppletDev => 3236 * MiB,
MemoryArrange.MemoryArrange6GiBAppletDev => 3152 * MiB,
MemoryArrange.MemoryArrange4GiBAppletDev => 2048 * MiB,
MemoryArrange.MemoryArrange6GiB => 4867 * MiB,
MemoryArrange.MemoryArrange8GiB => 6915 * MiB,
MemoryArrange.MemoryArrange10GiB => 8963 * MiB,
MemoryArrange.MemoryArrange12GiB => 11011 * MiB,
MemoryArrange.MemoryArrange6GiB => 4783 * MiB,
MemoryArrange.MemoryArrange8GiB => 6831 * MiB,
MemoryArrange.MemoryArrange10GiB => 8879 * MiB,
MemoryArrange.MemoryArrange12GiB => 10927 * 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;
@@ -15,6 +15,7 @@ namespace Ryujinx.HLE.HOS.Kernel.Threading
private readonly Dictionary<ulong, List<KThread>> _condVarThreads;
private readonly Dictionary<ulong, List<KThread>> _arbiterThreads;
private readonly ByDynamicPriority _byDynamicPriority;
public KAddressArbiter(KernelContext context)
{
@@ -22,6 +23,7 @@ namespace Ryujinx.HLE.HOS.Kernel.Threading
_condVarThreads = [];
_arbiterThreads = [];
_byDynamicPriority = new ByDynamicPriority();
}
public Result ArbitrateLock(int ownerHandle, ulong mutexAddress, int requesterHandle)
@@ -140,9 +142,14 @@ namespace Ryujinx.HLE.HOS.Kernel.Threading
if (_condVarThreads.TryGetValue(condVarAddress, out List<KThread> threads))
{
int i = FindDynamicPriorityFifoInsertionIndex(threads, currentThread);
int i = 0;
if (threads.Count > 0)
{
i = threads.BinarySearch(currentThread, _byDynamicPriority);
if (i < 0) i = ~i;
}
threads.Insert(i, currentThread);
}
else
@@ -325,9 +332,14 @@ namespace Ryujinx.HLE.HOS.Kernel.Threading
if (_arbiterThreads.TryGetValue(address, out List<KThread> threads))
{
int i = FindDynamicPriorityFifoInsertionIndex(threads, currentThread);
int i = 0;
if (threads.Count > 0)
{
i = threads.BinarySearch(currentThread, _byDynamicPriority);
if (i < 0) i = ~i;
}
threads.Insert(i, currentThread);
}
else
@@ -412,9 +424,14 @@ namespace Ryujinx.HLE.HOS.Kernel.Threading
if (_arbiterThreads.TryGetValue(address, out List<KThread> threads))
{
int i = FindDynamicPriorityFifoInsertionIndex(threads, currentThread);
int i = 0;
if (threads.Count > 0)
{
i = threads.BinarySearch(currentThread, _byDynamicPriority);
if (i < 0) i = ~i;
}
threads.Insert(i, currentThread);
}
else
@@ -610,28 +627,12 @@ namespace Ryujinx.HLE.HOS.Kernel.Threading
return validCount;
}
private static int FindDynamicPriorityFifoInsertionIndex(List<KThread> threads, KThread currentThread)
private class ByDynamicPriority : IComparer<KThread>
{
int low = 0;
int high = threads.Count;
// Lower numeric values represent higher priorities. Use upper-bound insertion
// to preserve FIFO order among waiters with the same dynamic priority.
while (low < high)
public int Compare(KThread x, KThread y)
{
int middle = low + ((high - low) >> 1);
if (threads[middle].DynamicPriority <= currentThread.DynamicPriority)
{
low = middle + 1;
}
else
{
high = middle;
}
return x!.DynamicPriority.CompareTo(y!.DynamicPriority);
}
return low;
}
}
}
+2 -22
View File
@@ -783,28 +783,8 @@ namespace Ryujinx.HLE.HOS
}
List<Cheat> cheats = mods.Cheats;
Dictionary<string, ulong> processExes = new();
foreach ((string buildId, ulong codeAddress) in tamperInfo.BuildIds.Zip(tamperInfo.CodeAddresses))
{
string normalizedBuildId = buildId[..Math.Min(Cheat.CheatIdSize, buildId.Length)];
if (processExes.TryGetValue(normalizedBuildId, out ulong existingAddress))
{
if (existingAddress != codeAddress)
{
Logger.Warning?.Print(
LogClass.ModLoader,
$"Duplicate BuildId prefix '{normalizedBuildId}' has different code addresses. " +
$"Existing: 0x{existingAddress:X}, duplicate: 0x{codeAddress:X}. " +
$"Keeping the first one.");
}
continue;
}
processExes.Add(normalizedBuildId, codeAddress);
}
Dictionary<string, ulong> processExes = tamperInfo.BuildIds.Zip(tamperInfo.CodeAddresses, (k, v) => new { k, v })
.ToDictionary(x => x.k[..Math.Min(Cheat.CheatIdSize, x.k.Length)], x => x.v);
foreach (Cheat cheat in cheats)
{
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@@ -71,14 +71,7 @@ namespace Ryujinx.HLE.HOS.Services.Account.Acc
return _applicationServiceServer.IsUserRegistrationRequestPermitted(context);
}
[CommandCmif(51)] // 1.0.0 – 18.1.0
// TrySelectUserWithoutInteraction(bool) -> nn::account::Uid
public ResultCode TrySelectUserWithoutInteractionDeprecated(ServiceCtx context)
{
return _applicationServiceServer.TrySelectUserWithoutInteraction(context);
}
[CommandCmif(52)] // 19.0.0+
[CommandCmif(51)]
// TrySelectUserWithoutInteraction(bool) -> nn::account::Uid
public ResultCode TrySelectUserWithoutInteraction(ServiceCtx context)
{
@@ -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)
@@ -23,7 +23,7 @@ namespace Ryujinx.HLE.HOS.Services.Hid
private readonly bool[] _supportedPlayers;
private VibrationValue _neutralVibrationValue = new()
{
AmplitudeLow = 0.01f,
AmplitudeLow = 0f,
FrequencyLow = 160f,
AmplitudeHigh = 0f,
FrequencyHigh = 320f,
@@ -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;
}
}
}
}
+2 -1
View File
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -59,7 +61,6 @@
<EmbeddedResource Include="HOS\Applets\SoftwareKeyboard\Resources\Icon_BtnB.png" />
<EmbeddedResource Include="HOS\Applets\SoftwareKeyboard\Resources\Icon_KeyF6.png" />
<EmbeddedResource Include="HOS\Services\Account\Acc\DefaultUserImage.jpg" />
<EmbeddedResource Include="HOS\Services\Account\Acc\GuestUserImage.jpg" />
</ItemGroup>
</Project>
-1
View File
@@ -208,7 +208,6 @@ namespace Ryujinx.HLE
{
if (disposing)
{
Processes.ClearAllProcesses();
System.Dispose();
AudioDeviceDriver.Dispose();
FileSystem.Dispose();
+1 -8
View File
@@ -1,5 +1,4 @@
using Ryujinx.HLE.HOS.Applets;
using Ryujinx.HLE.HOS.Services.Account.Acc;
using Ryujinx.HLE.HOS.Services.Am.AppletOE.ApplicationProxyService.ApplicationProxy.Types;
namespace Ryujinx.HLE.UI
@@ -49,8 +48,7 @@ namespace Ryujinx.HLE.UI
/// Displays a Message Dialog box specific to Error Applet and blocks until it is closed.
/// </summary>
/// <returns>False when OK is pressed, True when another button (Details) is pressed.</returns>
// ReSharper disable once UnusedParameter.Global
bool DisplayErrorAppletDialog(string title, string message, string[] buttonsText, (uint Module, uint Description)? errorCode = null);
bool DisplayErrorAppletDialog(string title, string message, string[] buttonsText);
/// <summary>
/// Creates a handler to process keyboard inputs into text strings.
@@ -67,10 +65,5 @@ namespace Ryujinx.HLE.UI
/// Takes a screenshot from the current renderer and saves it in the screenshots folder.
/// </summary>
void TakeScreenshot();
/// <summary>
/// Displays the player select dialog and returns the selected profile.
/// </summary>
UserProfile ShowPlayerSelectDialog();
}
}
@@ -1,6 +1,8 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -4,6 +4,8 @@
<TargetFramework>netstandard2.0</TargetFramework>
<EnforceExtendedAnalyzerRules>true</EnforceExtendedAnalyzerRules>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -3,6 +3,8 @@
<PropertyGroup>
<TargetFramework>netstandard2.0</TargetFramework>
<EnforceExtendedAnalyzerRules>true</EnforceExtendedAnalyzerRules>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -1,6 +1,8 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
+70 -207
View File
@@ -1,4 +1,3 @@
using Ryujinx.Common.Logging;
using Ryujinx.HLE.HOS.Services.Hid;
using SDL;
using static SDL.SDL3;
@@ -13,276 +12,140 @@ namespace Ryujinx.Input.SDL3
{
private readonly SDL_hid_device* _hidHandle;
private byte[] _buffer;
private static ushort _vendor;
private static ushort _product;
private int _globalCount;
private ulong _lastWriteTicks;
private NpadHdRumble(SDL_hid_device* hidHandle)
{
_hidHandle = hidHandle;
InitializeDevice();
}
public static NpadHdRumble Create(SDL_Gamepad* gamepadHandle)
{
_vendor = SDL_GetGamepadVendor(gamepadHandle);
if (!Enum.IsDefined(typeof(HDRumbleSupportedVendor), _vendor))
ushort vendor = SDL_GetGamepadVendor(gamepadHandle);
if (vendor != 0x057e)
{
return null;
}
_product = SDL_GetGamepadProduct(gamepadHandle);
if (!Enum.IsDefined(typeof(HDRumbleSupportedProduct), _product))
ushort product = SDL_GetGamepadProduct(gamepadHandle);
if (product != 0x2006 && product != 0x2007 && product != 0x2009 && product != 0x200e)
{
return null;
}
int serialNumber = 0;
string? serial = SDL_GetGamepadSerial(gamepadHandle);
if (serial is not null)
{
int.TryParse(serial, out serialNumber);
}
return new NpadHdRumble(SDL_hid_open(_vendor, _product, serialNumber));
return new NpadHdRumble(SDL_hid_open(vendor, product, 0));
}
// Some of the code was translated from https://github.com/MIZUSHIKI/JoyShockLibrary-plus-HDRumble
private bool WriteNintendoHdRumble(VibrationValue left, VibrationValue right)
private void WriteHdRumble(
int encLeftLowFreq, int encLeftLowAmp,
int encLeftHighFreq, int encLeftHighAmp,
int encRightLowFreq, int encRightLowAmp,
int encRightHighFreq, int encRightHighAmp)
{
int leftLowAmp = EncodeLowAmp(left.AmplitudeLow);
int leftLowFreq = EncodeLowFreq(left.FrequencyLow) + (leftLowAmp >> 8);
int leftHighFreq = EncodeHighFreq(left.FrequencyHigh);
int leftHighAmp = EncodeHighAmp(left.AmplitudeHigh) + (leftHighFreq >> 8);
int rightLowAmp = EncodeLowAmp(right.AmplitudeLow);
int rightLowFreq = EncodeLowFreq(right.FrequencyLow) + (rightLowAmp >> 8);
int rightHighFreq = EncodeHighFreq(right.FrequencyHigh);
int rightHighAmp = EncodeHighAmp(right.AmplitudeHigh) + (rightHighFreq >> 8);
_buffer[0] = 0x10;
_buffer[1] = (byte)((_globalCount++) & 0xF);
// Left LRA
_buffer[2] = (byte)(leftLowFreq & 0xFF);
_buffer[3] = (byte)(leftHighAmp & 0xFF);
_buffer[4] = (byte)(leftHighFreq & 0xFF);
_buffer[5] = (byte)(leftLowAmp & 0xFF);
// Right LRA
_buffer[6] = (byte)(rightLowFreq & 0xFF);
_buffer[7] = (byte)(rightHighAmp & 0xFF);
_buffer[8] = (byte)(rightHighFreq & 0xFF);
_buffer[9] = (byte)(rightLowAmp & 0xFF);
byte[] buf = new byte[10];
buf[0] = 0x10;
buf[1] = (byte)((++_globalCount) & 0xF);
buf[2] = (byte)(encLeftHighFreq & 0xFF);
buf[3] = (byte)(encLeftHighAmp + ((encLeftHighFreq >> 8) & 0xFF));
buf[4] = (byte)(encLeftLowFreq + ((encLeftLowAmp >> 8) & 0xFF));
buf[5] = (byte)(encLeftLowAmp & 0xFF);
buf[6] = (byte)(encRightHighFreq & 0xFF);
buf[7] = (byte)(encRightHighAmp + ((encRightHighFreq >> 8) & 0xFF));
buf[8] = (byte)(encRightLowFreq + ((encRightLowAmp >> 8) & 0xFF));
buf[9] = (byte)(encRightLowAmp & 0xFF);
if (_globalCount > 0xF)
{
_globalCount = 0x0;
}
fixed (byte* ptr = _buffer)
fixed (byte* ptr = buf)
{
if (SendHdRumble(ptr, (nuint)_buffer.Length) >= 0)
{
return true;
}
Logger.Error?.PrintMsg(LogClass.Hid, SDL_GetError());
SDL_ClearError();
SDL_hid_write(_hidHandle, ptr, (nuint)buf.Length);
}
return false;
}
private static int EncodeLowFreq(float lowFreq)
{
return (int)Math.Clamp(32 * Math.Log2(lowFreq * 0.1f) - 0x40, 81.75177f, 1252.572266f);
float lf = Math.Clamp(lowFreq, 40.875885f, 626.286133f);
return (int)Math.Round(32 * Math.Log2(lf * 0.1f)) - 0x40;
}
private static int EncodeHighFreq(float highFreq)
{
return (int)Math.Clamp(32 * Math.Log2(highFreq * 0.1f) - 0x60, 81.75177f, 1252.572266f);
float hf = Math.Clamp(highFreq, 81.75177f, 1252.572266f);
return ((int)Math.Round(32 * Math.Log2(hf * 0.1f)) - 0x60) * 4;
}
private static int EncodeLowAmp(float rawAmp)
{
double encodedAmp = 0;
int encodedAmp = 0;
if (rawAmp is > 0 and < 0.012f)
{
encodedAmp = 1;
}
else if (rawAmp is >= 0.012f and < 0.112f)
encodedAmp = 4 * Math.Log2(rawAmp * 110f);
{
encodedAmp = (int)Math.Round(4 * Math.Log2(rawAmp * 110f));
}
else if (rawAmp is >= 0.112f and < 0.225f)
encodedAmp = 16 * Math.Log2(rawAmp * 17f);
{
encodedAmp = (int)Math.Round(16 * Math.Log2(rawAmp * 17f));
}
else if (rawAmp is >= 0.225f and <= 1f)
encodedAmp = 32 * Math.Log2(rawAmp * 8.7f);
encodedAmp = Math.Round((encodedAmp / 2.0) + 64.0);
encodedAmp = Math.Clamp(encodedAmp, 0.0, 100.2867);
return (int)Math.Round(encodedAmp);
{
encodedAmp = (int)Math.Round(32 * Math.Log2(rawAmp * 8.7f));
}
return (int)Math.Floor(encodedAmp / 2.0) + 64;
}
private static int EncodeHighAmp(float rawAmp)
{
double encodedAmp = 0;
int encodedAmp = 0;
if (rawAmp is > 0 and < 0.012f)
{
encodedAmp = 1;
}
else if (rawAmp is >= 0.012f and < 0.112f)
encodedAmp = 4 * Math.Log2(rawAmp * 110f);
{
encodedAmp = (int)Math.Round(4 * Math.Log2(rawAmp * 110f));
}
else if (rawAmp is >= 0.112f and < 0.225f)
encodedAmp = 16 * Math.Log2(rawAmp * 17f);
{
encodedAmp = (int)Math.Round(16 * Math.Log2(rawAmp * 17f));
}
else if (rawAmp is >= 0.225f and <= 1f)
encodedAmp = 32 * Math.Log2(rawAmp * 8.7f);
encodedAmp = Math.Round(encodedAmp / 2.0);
encodedAmp = Math.Clamp(encodedAmp, 0.0, 100.2867);
return (int)encodedAmp;
{
encodedAmp = (int)Math.Round(32 * Math.Log2(rawAmp * 8.7f));
}
return encodedAmp * 2;
}
public bool HdRumble(VibrationValue left, VibrationValue right)
{
if(_product is (ushort) HDRumbleSupportedProduct.ProController
or (ushort) HDRumbleSupportedProduct.JoyconLeft
or (ushort) HDRumbleSupportedProduct.JoyconRight
or (ushort) HDRumbleSupportedProduct.JoyconPair
or (ushort) HDRumbleSupportedProduct.JoyconGrip)
{
return WriteNintendoHdRumble(left, right);
}
return false;
}
private int SendHdRumble(byte* data, nuint length)
{
int result = 0;
ulong currentTicks = SDL_GetTicks();
// Ditch rumble if we haven't hit the poll-rate yet.
if ((currentTicks - _lastWriteTicks) <= GetPollRate())
{
return result;
}
result = SDL_hid_write(_hidHandle, data, length);
if (result >= 0)
{
_lastWriteTicks = currentTicks;
}
return result;
}
private void InitializeDevice()
{
if (_vendor is (ushort)HDRumbleSupportedVendor.Nintendo)
{
_buffer = new byte[10];
byte[] init = new byte[64];
// Pro Controller and Charge Grip
if (_product
is (ushort)HDRumbleSupportedProduct.ProController
or (ushort)HDRumbleSupportedProduct.JoyconGrip)
{
SDL_LockJoysticks();
fixed (byte* ptr = init)
{
init[0] = 0x80;
init[1] = 0x05; // Allow bluetooth timeout TODO: use 0x04 to force USB only (toggle?)
SDL_hid_write(_hidHandle, ptr, 64);
}
SDL_UnlockJoysticks();
return;
}
// Joycons
if (_product
is (ushort)HDRumbleSupportedProduct.JoyconLeft
or (ushort)HDRumbleSupportedProduct.JoyconRight
or (ushort)HDRumbleSupportedProduct.JoyconPair)
{
SDL_LockJoysticks();
fixed (byte* ptr = init)
{
// we could write data to the controller here (see above)
}
SDL_UnlockJoysticks();
return;
}
}
}
private ulong GetPollRate()
{
ulong pollRate = 0;
if (_vendor is (ushort)HDRumbleSupportedVendor.Nintendo)
{
// https://docs.handheldlegend.com/s/progcc-3/doc/lag-comparison-aAR1mV3JLX
pollRate = (ulong) 16.67;
if (_product is (ushort)HDRumbleSupportedProduct.ProController
&& SDL_hid_get_device_info(_hidHandle)->bus_type == SDL_hid_bus_type.SDL_HID_API_BUS_USB)
{
pollRate = (ulong) 8.33;
}
}
return pollRate;
WriteHdRumble(EncodeLowFreq(left.FrequencyLow),
EncodeLowAmp(left.AmplitudeLow),
EncodeHighFreq(left.FrequencyHigh),
EncodeHighAmp(left.AmplitudeHigh),
EncodeLowFreq(right.FrequencyLow),
EncodeLowAmp(right.AmplitudeLow),
EncodeHighFreq(right.FrequencyHigh),
EncodeHighAmp(right.AmplitudeHigh));
return true;
}
public void Dispose()
{
GC.SuppressFinalize(this);
SDL_hid_close(_hidHandle);
}
}
public enum HDRumbleSupportedVendor : ushort
{
Nintendo = 0x057e,
Valve = 0x28de,
Sony = 0x054c
}
public enum HDRumbleSupportedProduct : ushort
{
// TODO: Currently, HD Rumble only supports the Pro Controller and JoyCons.
// We need to initialize and report to each device differently.
// Nintendo Switch: 0x057e
JoyconLeft = 0x2006,
JoyconRight = 0x2007,
JoyconPair = 0x2008,
ProController = 0x2009,
JoyconGrip = 0x200e,
// Nintendo Switch 2: 0x057e
Joycon2Right = 0x2066,
Joycon2Left = 0x2067,
Joycon2Pair = 0x2068,
Switch2ProController = 0x2069,
GamecubeController = 0x2073,
// Valve Steam Family: 0x28de
// https://github.com/libsdl-org/SDL/issues/9148
SteamDeck = 0x11ff,
SteamDeckVirtualDevice = 0x1205,
SteamController = 0x1106,
// PlayStation Dualsense: 0x054c
Dualsense = 0x0ce6
}
}
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
+2 -13
View File
@@ -177,12 +177,10 @@ namespace Ryujinx.Input.SDL3
return _hdRumble?.HdRumble(left, right) ?? false;
}
public bool Rumble(float lowFrequency, float highFrequency, uint durationMs)
public void Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
if ((Features & GamepadFeaturesFlag.Rumble) == 0)
{
return false;
}
return;
ushort lowFrequencyRaw = (ushort)(lowFrequency * ushort.MaxValue);
ushort highFrequencyRaw = (ushort)(highFrequency * ushort.MaxValue);
@@ -201,15 +199,6 @@ namespace Ryujinx.Input.SDL3
if (!SDL_RumbleGamepad(_gamepadHandle, lowFrequencyRaw, highFrequencyRaw, durationMs))
Logger.Error?.Print(LogClass.Hid, "Rumble is not supported on this game controller.");
}
if (!String.IsNullOrEmpty(SDL_GetError()))
{
Logger.Error?.PrintMsg(LogClass.Hid, SDL_GetError());
SDL_ClearError();
return false;
}
return true;
}
public Vector3 GetMotionData(MotionInputId inputId)
+3 -14
View File
@@ -163,7 +163,7 @@ namespace Ryujinx.Input.SDL3
public void SetTriggerThreshold(float triggerThreshold)
{
// No operations
}
public bool HDRumble(VibrationValue left, VibrationValue right)
@@ -171,12 +171,10 @@ namespace Ryujinx.Input.SDL3
return _hdRumble?.HdRumble(left, right) ?? false;
}
public bool Rumble(float lowFrequency, float highFrequency, uint durationMs)
public void Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
if ((Features & GamepadFeaturesFlag.Rumble) == 0)
{
return false;
}
return;
ushort lowFrequencyRaw = (ushort)(lowFrequency * ushort.MaxValue);
ushort highFrequencyRaw = (ushort)(highFrequency * ushort.MaxValue);
@@ -195,15 +193,6 @@ namespace Ryujinx.Input.SDL3
if (!SDL_RumbleGamepad(_gamepadHandle, lowFrequencyRaw, highFrequencyRaw, durationMs))
Logger.Error?.Print(LogClass.Hid, "Rumble is not supported on this game controller.");
}
if (!String.IsNullOrEmpty(SDL_GetError()))
{
Logger.Error?.PrintMsg(LogClass.Hid, SDL_GetError());
SDL_ClearError();
return false;
}
return true;
}
public Vector3 GetMotionData(MotionInputId inputId)
+2 -21
View File
@@ -1,7 +1,4 @@
using Gommon;
using Ryujinx.Common.Configuration.Hid;
using Ryujinx.Common.Logging;
using Ryujinx.HLE.HOS.Services.Hid;
using Ryujinx.Common.Configuration.Hid;
using System.Collections.Generic;
using System.Linq;
using System.Numerics;
@@ -64,14 +61,7 @@ namespace Ryujinx.Input.SDL3
return left.IsPressed(inputId) || right.IsPressed(inputId);
}
public bool HDRumble(VibrationValue left, VibrationValue right)
{
// return _hdRumble?.HdRumble(left, right) ?? false;
// TODO: Track rumble and motion on both controllers
return false;
}
public bool Rumble(float lowFrequency, float highFrequency, uint durationMs)
public void Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
if (lowFrequency != 0)
{
@@ -88,15 +78,6 @@ namespace Ryujinx.Input.SDL3
left.Rumble(0, 0, durationMs);
right.Rumble(0, 0, durationMs);
}
if (!SDL_GetError().IsNullOrEmpty())
{
Logger.Error?.PrintMsg(LogClass.Hid, SDL_GetError());
SDL_ClearError();
return false;
}
return true;
}
public void SetConfiguration(InputConfig configuration)
+2 -8
View File
@@ -1,7 +1,6 @@
using Ryujinx.Common.Configuration.Hid;
using Ryujinx.Common.Configuration.Hid.Keyboard;
using SDL;
using Ryujinx.HLE.HOS.Services.Hid;
using System;
using System.Collections.Generic;
using System.Numerics;
@@ -386,14 +385,9 @@ namespace Ryujinx.Input.SDL3
// No operations
}
public bool HDRumble(VibrationValue left, VibrationValue right)
public void Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
return false;
}
public bool Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
return false;
// No operations
}
public Vector3 GetMotionData(MotionInputId inputId)
+1 -7
View File
@@ -1,5 +1,4 @@
using Ryujinx.Common.Configuration.Hid;
using Ryujinx.HLE.HOS.Services.Hid;
using System;
using System.Drawing;
using System.Numerics;
@@ -67,12 +66,7 @@ namespace Ryujinx.Input.SDL3
throw new NotImplementedException();
}
public bool HDRumble(VibrationValue left, VibrationValue right)
{
throw new NotImplementedException();
}
public bool Rumble(float lowFrequency, float highFrequency, uint durationMs)
public void Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
throw new NotImplementedException();
}

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