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
109 changed files with 1448 additions and 1430 deletions
+1 -2
View File
@@ -36,10 +36,8 @@
<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.KosmicKrisp" Version="26.2.1-ryu.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.SPB" Version="0.0.5-ryujinx.4" />
<PackageVersion Include="Ryujinx.SDL3-CS" Version="2026.707.0" />
<PackageVersion Include="securifybv.ShellLink" Version="0.1.0" />
<PackageVersion Include="SharpZipLib" Version="1.4.2" />
@@ -49,6 +47,7 @@
<PackageVersion Include="Silk.NET.Vulkan.Extensions.KHR" Version="2.23.0" />
<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="10.0.11" />
<PackageVersion Include="UnicornEngine.Unicorn" Version="2.1.0" />
</ItemGroup>
+6
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" />
@@ -48,7 +48,7 @@ def get_new_name(
return Path(os.path.join(output_directory, input_component))
def get_archs(dylib_path: Path) -> list[str]:
res = subprocess.check_output([LIPO, "-info", str(dylib_path.absolute())]).decode("utf-8")
res = subprocess.check_output([LIPO, "-info", str(dylib_path)]).decode("utf-8")
if res.startswith("Non-fat file"):
return [res.split(":")[-1].strip()]
else:
+1 -5
View File
@@ -18,18 +18,14 @@ mkdir "$APP_BUNDLE_DIRECTORY/Contents/Resources"
cp "$PUBLISH_DIRECTORY/Ryujinx" "$APP_BUNDLE_DIRECTORY/Contents/MacOS/Ryujinx"
chmod u+x "$APP_BUNDLE_DIRECTORY/Contents/MacOS/Ryujinx"
# List all dylibs in PUBLISH_DIRECTORY
ls -la "$PUBLISH_DIRECTORY"/*.dylib
# Then all libraries
find "$PUBLISH_DIRECTORY" -name "*.dylib" -exec cp {} "$APP_BUNDLE_DIRECTORY/Contents/Frameworks" \;
cp "$PUBLISH_DIRECTORY"/*.dylib "$APP_BUNDLE_DIRECTORY/Contents/Frameworks"
# Then resources
cp Info.plist "$APP_BUNDLE_DIRECTORY/Contents"
cp Ryujinx.icns "$APP_BUNDLE_DIRECTORY/Contents/Resources/Ryujinx.icns"
cp updater.sh "$APP_BUNDLE_DIRECTORY/Contents/Resources/updater.sh"
cp Assets.car "$APP_BUNDLE_DIRECTORY/Contents/Resources/Assets.car"
cp -r vulkan "$APP_BUNDLE_DIRECTORY/Contents/Resources"
cp -r "$PUBLISH_DIRECTORY/THIRDPARTY.md" "$APP_BUNDLE_DIRECTORY/Contents/Resources"
echo -n "APPL????" > "$APP_BUNDLE_DIRECTORY/Contents/PkgInfo"
+1 -4
View File
@@ -47,7 +47,7 @@ EXECUTABLE_SUB_PATH=Contents/MacOS/Ryujinx
rm -rf "$TEMP_DIRECTORY"
mkdir -p "$TEMP_DIRECTORY"
DOTNET_COMMON_ARGS=(-p:DebugType=embedded -p:Version="$VERSION" -p:SourceRevisionId="$SOURCE_REVISION_ID" -p:UseSharedCompilation=false --self-contained true $EXTRA_ARGS)
DOTNET_COMMON_ARGS=(-p:DebugType=embedded -p:Version="$VERSION" -p:SourceRevisionId="$SOURCE_REVISION_ID" --self-contained true $EXTRA_ARGS)
dotnet restore
dotnet build -c "$CONFIGURATION" src/Ryujinx
@@ -76,9 +76,6 @@ rm "$UNIVERSAL_APP_BUNDLE/$EXECUTABLE_SUB_PATH"
# Make it libraries universal
python3 "$BASE_DIR/distribution/macos/construct_universal_dylib.py" "$ARM64_APP_BUNDLE" "$X64_APP_BUNDLE" "$UNIVERSAL_APP_BUNDLE" "**/*.dylib"
# Copy arm64-only libraries to UNIVERSAL_APP_BUNDLE
cp "$ARM64_APP_BUNDLE/Contents/Frameworks/libvulkan_kosmickrisp.dylib" "$UNIVERSAL_APP_BUNDLE/Contents/Frameworks/libvulkan_kosmickrisp.dylib"
if ! [ -x "$(command -v lipo)" ];
then
if ! [ -x "$(command -v llvm-lipo-17)" ];
@@ -1,8 +0,0 @@
{
"file_format_version" : "1.0.0",
"ICD": {
"library_path": "./libMoltenVK.dylib",
"api_version" : "1.4.0",
"is_portability_driver" : true
}
}
@@ -1,8 +0,0 @@
{
"file_format_version" : "1.0.0",
"ICD": {
"library_path": "../../../Frameworks/libMoltenVK.dylib",
"api_version" : "1.4.0",
"is_portability_driver" : true
}
}
@@ -1,7 +0,0 @@
{
"ICD": {
"api_version": "1.3.0",
"library_path": "./libvulkan_kosmickrisp.dylib"
},
"file_format_version": "1.0.1"
}
@@ -1,7 +0,0 @@
{
"ICD": {
"api_version": "1.3.0",
"library_path": "../../../Frameworks/libvulkan_kosmickrisp.dylib"
},
"file_format_version": "1.0.1"
}
-4
View File
@@ -2,7 +2,6 @@
<configuration>
<packageSources>
<clear />
<add key="local" value="nuget" />
<add key="nuget.org" value="https://api.nuget.org/v3/index.json" />
<!-- Only needed when using pre-release versions of Ryujinx.LibHac. -->
<add key="LibHacAlpha" value="https://git.ryujinx.app/api/packages/projects/nuget/index.json" />
@@ -11,9 +10,6 @@
<packageSourceMapping>
<!-- key value for <packageSource> should match key values from <packageSources> element -->
<!-- These are defined and .NET still yells about multiple package sources with no mappings. Not sure what to do, this is in the docs lol -->
<packageSource key="local">
<package pattern="Ryujinx.Graphics.Vulkan.KosmicKrisp" />
</packageSource>
<packageSource key="nuget.org">
<package pattern="*" />
</packageSource>
+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; }
}
}
@@ -1,11 +0,0 @@
using System.Text.Json.Serialization;
namespace Ryujinx.Common.Configuration
{
[JsonConverter(typeof(JsonStringEnumConverter<TranslationLayer>))]
public enum TranslationLayer
{
MoltenVK,
KosmicKrisp,
}
}
+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>
@@ -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>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -2,6 +2,8 @@
<PropertyGroup>
<DefaultItemExcludes>$(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>
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -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>
@@ -0,0 +1,104 @@
using System;
using System.Runtime.InteropServices;
namespace Ryujinx.Graphics.Vulkan.MoltenVK
{
enum MVKConfigLogLevel
{
None = 0,
Error = 1,
Warning = 2,
Info = 3,
Debug = 4,
}
enum MVKConfigTraceVulkanCalls
{
None = 0,
Enter = 1,
EnterExit = 2,
Duration = 3,
}
enum MVKConfigAutoGPUCaptureScope
{
None = 0,
Device = 1,
Frame = 2,
}
[Flags]
enum MVKConfigAdvertiseExtensions
{
All = 0x00000001,
MoltenVK = 0x00000002,
WSI = 0x00000004,
Portability = 0x00000008,
}
enum MVKVkSemaphoreSupportStyle
{
MVK_CONFIG_VK_SEMAPHORE_SUPPORT_STYLE_SINGLE_QUEUE = 0,
MVK_CONFIG_VK_SEMAPHORE_SUPPORT_STYLE_METAL_EVENTS_WHERE_SAFE = 1,
MVK_CONFIG_VK_SEMAPHORE_SUPPORT_STYLE_METAL_EVENTS = 2,
MVK_CONFIG_VK_SEMAPHORE_SUPPORT_STYLE_CALLBACK = 3,
MVK_CONFIG_VK_SEMAPHORE_SUPPORT_STYLE_MAX_ENUM = 0x7FFFFFFF,
}
readonly struct Bool32
{
uint Value { get; }
public Bool32(uint value)
{
Value = value;
}
public Bool32(bool value)
{
Value = value ? 1u : 0u;
}
public static implicit operator bool(Bool32 val) => val.Value == 1;
public static implicit operator Bool32(bool val) => new(val);
}
[StructLayout(LayoutKind.Sequential)]
struct MVKConfiguration
{
public Bool32 DebugMode;
public Bool32 ShaderConversionFlipVertexY;
public Bool32 SynchronousQueueSubmits;
public Bool32 PrefillMetalCommandBuffers;
public uint MaxActiveMetalCommandBuffersPerQueue;
public Bool32 SupportLargeQueryPools;
public Bool32 PresentWithCommandBuffer;
public Bool32 SwapchainMagFilterUseNearest;
public ulong MetalCompileTimeout;
public Bool32 PerformanceTracking;
public uint PerformanceLoggingFrameCount;
public Bool32 DisplayWatermark;
public Bool32 SpecializedQueueFamilies;
public Bool32 SwitchSystemGPU;
public Bool32 FullImageViewSwizzle;
public uint DefaultGPUCaptureScopeQueueFamilyIndex;
public uint DefaultGPUCaptureScopeQueueIndex;
public Bool32 FastMathEnabled;
public MVKConfigLogLevel LogLevel;
public MVKConfigTraceVulkanCalls TraceVulkanCalls;
public Bool32 ForceLowPowerGPU;
public Bool32 SemaphoreUseMTLFence;
public MVKVkSemaphoreSupportStyle SemaphoreSupportStyle;
public MVKConfigAutoGPUCaptureScope AutoGPUCaptureScope;
public nint AutoGPUCaptureOutputFilepath;
public Bool32 Texture1DAs2D;
public Bool32 PreallocateDescriptors;
public Bool32 UseCommandPooling;
public Bool32 UseMTLHeap;
public Bool32 LogActivityPerformanceInline;
public uint ApiVersionToAdvertise;
public MVKConfigAdvertiseExtensions AdvertiseExtensions;
public Bool32 ResumeLostDevice;
public Bool32 UseMetalArgumentBuffers;
}
}
@@ -0,0 +1,51 @@
using Silk.NET.Core.Loader;
using Silk.NET.Vulkan;
using System;
using System.Runtime.InteropServices;
using System.Runtime.Versioning;
namespace Ryujinx.Graphics.Vulkan.MoltenVK
{
[SupportedOSPlatform("macos")]
public static partial class MVKInitialization
{
private const string VulkanLib = "libvulkan.dylib";
[LibraryImport("libMoltenVK.dylib")]
private static partial Result vkGetMoltenVKConfigurationMVK(nint unusedInstance, out MVKConfiguration config, in nint configSize);
[LibraryImport("libMoltenVK.dylib")]
private static partial Result vkSetMoltenVKConfigurationMVK(nint unusedInstance, in MVKConfiguration config, in nint configSize);
public static void Initialize()
{
IntPtr configSize = (nint)Marshal.SizeOf<MVKConfiguration>();
vkGetMoltenVKConfigurationMVK(nint.Zero, out MVKConfiguration config, configSize);
config.UseMetalArgumentBuffers = true;
config.SemaphoreSupportStyle = MVKVkSemaphoreSupportStyle.MVK_CONFIG_VK_SEMAPHORE_SUPPORT_STYLE_SINGLE_QUEUE;
config.SynchronousQueueSubmits = false;
config.ResumeLostDevice = true;
vkSetMoltenVKConfigurationMVK(nint.Zero, config, configSize);
}
private static string[] Resolver(string path)
{
if (path.EndsWith(VulkanLib))
{
path = path[..^VulkanLib.Length] + "libMoltenVK.dylib";
return [path];
}
return [];
}
public static void InitializeResolver()
{
((DefaultPathResolver)PathResolver.Default).Resolvers.Insert(0, Resolver);
}
}
}
@@ -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>
@@ -44,7 +45,6 @@
</ItemGroup>
<ItemGroup>
<PackageReference Include="Ryujinx.SPB" />
<PackageReference Include="Silk.NET.Shaderc" ExcludeAssets="native" />
<PackageReference Include="Silk.NET.Vulkan" />
<PackageReference Include="Silk.NET.Vulkan.Extensions.EXT" />
-1
View File
@@ -99,7 +99,6 @@ namespace Ryujinx.Graphics.Vulkan
DriverId.MesaNvk => "NVK",
DriverId.ImaginationOpenSourceMesa => "Imagination (Open)",
DriverId.MesaHoneykrisp => "Honeykrisp",
DriverId.MesaKosmickrisp => "KosmicKrisp",
_ => id.ToString(),
};
}
@@ -1,47 +0,0 @@
using System;
using System.IO;
using System.Runtime.Versioning;
namespace Ryujinx.Graphics.Vulkan
{
[SupportedOSPlatform("macos")]
public static class VulkanDriver
{
private static string GetIcdPath(string fileName)
{
string contentsDir = Path.GetDirectoryName(AppContext.BaseDirectory.TrimEnd('/'))!;
string[] searchPaths =
[
Path.Combine(contentsDir, "Resources", "vulkan", "icd.d", fileName),
Path.Combine(contentsDir, fileName)
];
foreach (string icdPath in searchPaths)
{
if (File.Exists(icdPath))
return icdPath;
}
throw new FileNotFoundException($"{fileName} not found");
}
public static void MoltenVK()
{
Environment.SetEnvironmentVariable("MVK_CONFIG_USE_METAL_ARGUMENT_BUFFERS", "1");
Environment.SetEnvironmentVariable("MVK_CONFIG_VK_SEMAPHORE_SUPPORT_STYLE", "0");
Environment.SetEnvironmentVariable("MVK_CONFIG_SYNCHRONOUS_QUEUE_SUBMITS", "0");
Environment.SetEnvironmentVariable("MVK_CONFIG_RESUME_LOST_DEVICE", "1");
Environment.SetEnvironmentVariable("VK_DRIVER_FILES", GetIcdPath("MoltenVK_icd.json"));
Console.WriteLine($"[MoltenVK] VK_DRIVER_FILES just set to: {Environment.GetEnvironmentVariable("VK_DRIVER_FILES")}");
}
public static void KosmicKrisp()
{
Environment.SetEnvironmentVariable("VK_DRIVER_FILES", GetIcdPath("libkosmickrisp_icd.json"));
Console.WriteLine($"[KosmicKrisp] VK_DRIVER_FILES just set to: {Environment.GetEnvironmentVariable("VK_DRIVER_FILES")}");
}
}
}
@@ -5,6 +5,7 @@ using Silk.NET.Core;
using Silk.NET.Vulkan;
using Silk.NET.Vulkan.Extensions.EXT;
using Silk.NET.Vulkan.Extensions.KHR;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Runtime.InteropServices;
@@ -13,11 +14,10 @@ namespace Ryujinx.Graphics.Vulkan
{
public unsafe static class VulkanInitialization
{
private static Version32 Version14 => new(1, 4, 0);
private const uint InvalidIndex = uint.MaxValue;
private static readonly uint _minimalVulkanVersion = Vk.Version11.Value;
private static readonly uint _maximumVulkanVersion = Version14.Value;
private static readonly uint _minimalInstanceVulkanVersion = Vk.Version12.Value;
private static readonly uint _maximumVulkanVersion = Vk.Version12.Value;
private const string AppName = "Ryujinx.Graphics.Vulkan";
private const int QueuesCount = 2;
@@ -59,7 +59,7 @@ namespace Ryujinx.Graphics.Vulkan
internal static VulkanInstance CreateInstance(Vk api, GraphicsDebugLevel logLevel, string[] requiredExtensions)
{
List<string> enabledLayers = [];
List<string> enabledLayers = new();
IReadOnlySet<string> instanceExtensions = VulkanInstance.GetInstanceExtensions(api);
IReadOnlySet<string> instanceLayers = VulkanInstance.GetInstanceLayers(api);
@@ -88,7 +88,7 @@ namespace Ryujinx.Graphics.Vulkan
enabledExtensions = enabledExtensions.Append(ExtDebugUtils.ExtensionName).ToArray();
}
nint appName = Marshal.StringToHGlobalAnsi(AppName);
IntPtr appName = Marshal.StringToHGlobalAnsi(AppName);
ApplicationInfo applicationInfo = new()
{
@@ -168,7 +168,7 @@ namespace Ryujinx.Graphics.Vulkan
internal static DeviceInfo[] GetSuitablePhysicalDevices(Vk api)
{
nint appName = Marshal.StringToHGlobalAnsi(AppName);
IntPtr appName = Marshal.StringToHGlobalAnsi(AppName);
ApplicationInfo applicationInfo = new()
{
@@ -197,6 +197,13 @@ namespace Ryujinx.Graphics.Vulkan
using VulkanInstance instance = rawInstance;
// We currently assume that the instance is compatible with Vulkan 1.2
// TODO: Remove this once we relax our initialization codepaths.
if (instance.InstanceVersion < _minimalInstanceVulkanVersion)
{
return [];
}
instance.EnumeratePhysicalDevices(out VulkanPhysicalDevice[] physicalDevices).ThrowOnError();
List<DeviceInfo> deviceInfos = [];
@@ -379,7 +386,7 @@ namespace Ryujinx.Graphics.Vulkan
features2.PNext = &supportedFeaturesDynamicAttachmentFeedbackLoopLayout;
}
PhysicalDevicePageableDeviceLocalMemoryFeaturesEXT supportedFeaturesPageableDeviceLocalMemory = new()
PhysicalDevicePageableDeviceLocalMemoryFeaturesEXT supportedPageableDeviceLocalMemoryFeatures = new()
{
SType = StructureType.PhysicalDevicePageableDeviceLocalMemoryFeaturesExt,
PNext = features2.PNext,
@@ -387,10 +394,10 @@ namespace Ryujinx.Graphics.Vulkan
if (physicalDevice.IsDeviceExtensionPresent(ExtPageableDeviceLocalMemory.ExtensionName))
{
features2.PNext = &supportedFeaturesPageableDeviceLocalMemory;
features2.PNext = &supportedPageableDeviceLocalMemoryFeatures;
}
PhysicalDeviceMemoryPriorityFeaturesEXT supportedFeaturesDeviceMemoryPriority = new()
PhysicalDeviceMemoryPriorityFeaturesEXT supportedDeviceMemoryPriorityFeatures = new()
{
SType = StructureType.PhysicalDeviceMemoryPriorityFeaturesExt,
PNext = features2.PNext,
@@ -398,7 +405,7 @@ namespace Ryujinx.Graphics.Vulkan
if (physicalDevice.IsDeviceExtensionPresent("VK_EXT_memory_priority"))
{
features2.PNext = &supportedFeaturesDeviceMemoryPriority;
features2.PNext = &supportedDeviceMemoryPriorityFeatures;
}
PhysicalDeviceVulkan12Features supportedPhysicalDeviceVulkan12Features = new()
@@ -409,22 +416,6 @@ namespace Ryujinx.Graphics.Vulkan
features2.PNext = &supportedPhysicalDeviceVulkan12Features;
PhysicalDeviceVulkan13Features supportedPhysicalDeviceVulkan13Features = new()
{
SType = StructureType.PhysicalDeviceVulkan13Features,
PNext = features2.PNext,
};
features2.PNext = &supportedPhysicalDeviceVulkan13Features;
PhysicalDeviceVulkan14Features supportedPhysicalDeviceVulkan14Features = new()
{
SType = StructureType.PhysicalDeviceVulkan14Features,
PNext = features2.PNext,
};
features2.PNext = &supportedPhysicalDeviceVulkan14Features;
api.GetPhysicalDeviceFeatures2(physicalDevice.PhysicalDevice, &features2);
PhysicalDeviceFeatures supportedFeatures = features2.Features;
@@ -528,24 +519,6 @@ namespace Ryujinx.Graphics.Vulkan
pExtendedFeatures = &featuresVk12;
PhysicalDeviceVulkan13Features featuresVk13 = new()
{
SType = StructureType.PhysicalDeviceVulkan13Features,
PNext = pExtendedFeatures,
/* Vulkan 1.3 features here */
};
pExtendedFeatures = &featuresVk13;
PhysicalDeviceVulkan13Features featuresVk14 = new()
{
SType = StructureType.PhysicalDeviceVulkan14Features,
PNext = pExtendedFeatures,
/* Vulkan 1.4 features here */
};
pExtendedFeatures = &featuresVk14;
if (physicalDevice.IsDeviceExtensionPresent("VK_EXT_index_type_uint8"))
{
PhysicalDeviceIndexTypeUint8FeaturesEXT featuresIndexU8 = new()
@@ -625,7 +598,7 @@ namespace Ryujinx.Graphics.Vulkan
}
if (physicalDevice.IsDeviceExtensionPresent(ExtPageableDeviceLocalMemory.ExtensionName) &&
supportedFeaturesPageableDeviceLocalMemory.PageableDeviceLocalMemory)
supportedPageableDeviceLocalMemoryFeatures.PageableDeviceLocalMemory)
{
PhysicalDevicePageableDeviceLocalMemoryFeaturesEXT featuresPageableDeviceLocalMemory = new()
{
@@ -638,16 +611,16 @@ namespace Ryujinx.Graphics.Vulkan
}
if (physicalDevice.IsDeviceExtensionPresent("VK_EXT_memory_priority") &&
supportedFeaturesDeviceMemoryPriority.MemoryPriority)
supportedDeviceMemoryPriorityFeatures.MemoryPriority)
{
PhysicalDeviceMemoryPriorityFeaturesEXT featuresMemoryPriority = new()
PhysicalDeviceMemoryPriorityFeaturesEXT featuresDeviceMemoryPriority = new()
{
SType = StructureType.PhysicalDeviceMemoryPriorityFeaturesExt,
PNext = pExtendedFeatures,
MemoryPriority = true,
};
pExtendedFeatures = &featuresMemoryPriority;
pExtendedFeatures = &featuresDeviceMemoryPriority;
}
string[] enabledExtensions = _requiredExtensions.Union(_desirableExtensions.Intersect(physicalDevice.DeviceExtensions)).ToArray();
@@ -13,6 +13,7 @@ namespace Ryujinx.Graphics.Vulkan
{
private readonly Vk _api;
public readonly Instance Instance;
public readonly Version32 InstanceVersion;
private bool _disposed;
@@ -20,6 +21,22 @@ namespace Ryujinx.Graphics.Vulkan
{
_api = api;
Instance = instance;
if (api.GetInstanceProcAddr(instance, "vkEnumerateInstanceVersion") == nint.Zero)
{
InstanceVersion = Vk.Version10;
}
else
{
uint rawInstanceVersion = 0;
if (api.EnumerateInstanceVersion(ref rawInstanceVersion) != Result.Success)
{
rawInstanceVersion = Vk.Version11.Value;
}
InstanceVersion = (Version32)rawInstanceVersion;
}
}
public static Result Create(Vk api, ref InstanceCreateInfo createInfo, out VulkanInstance instance)
+8 -16
View File
@@ -3,6 +3,7 @@ using Ryujinx.Common.Logging;
using Ryujinx.Graphics.GAL;
using Ryujinx.Graphics.Shader;
using Ryujinx.Graphics.Shader.Translation;
using Ryujinx.Graphics.Vulkan.MoltenVK;
using Ryujinx.Graphics.Vulkan.Queries;
using Silk.NET.Vulkan;
using Silk.NET.Vulkan.Extensions.EXT;
@@ -96,7 +97,6 @@ namespace Ryujinx.Graphics.Vulkan
internal bool IsIntelArc { get; private set; }
internal bool IsQualcommProprietary { get; private set; }
internal bool IsMoltenVk { get; private set; }
internal bool IsKosmicKrisp { get; private set; }
internal bool SupportsMTL31 { get; private set; }
internal bool IsTBDR { get; private set; }
internal bool IsSharedMemory { get; private set; }
@@ -111,7 +111,7 @@ namespace Ryujinx.Graphics.Vulkan
public event EventHandler<ScreenCaptureImageInfo> ScreenCaptured;
public VulkanRenderer(Vk api, Func<Instance, Vk, SurfaceKHR> surfaceFunc, Func<string[]> requiredExtensionsFunc, string preferredGpuId, TranslationLayer translationLayer)
public VulkanRenderer(Vk api, Func<Instance, Vk, SurfaceKHR> surfaceFunc, Func<string[]> requiredExtensionsFunc, string preferredGpuId)
{
_getSurface = surfaceFunc;
_getRequiredExtensions = requiredExtensionsFunc;
@@ -121,20 +121,12 @@ namespace Ryujinx.Graphics.Vulkan
Textures = [];
Samplers = [];
// MoltenVK is required for any device running < macOS 26, even Intel and AMD vendors.
// KosmicKrisp, a Vulkan conformant implementation running on top of Metal 4, requires macOS 26.
if (OperatingSystem.IsMacOS())
{
if (translationLayer == TranslationLayer.MoltenVK)
{
VulkanDriver.MoltenVK();
IsMoltenVk = true;
}
if (translationLayer == TranslationLayer.KosmicKrisp)
{
VulkanDriver.KosmicKrisp();
IsKosmicKrisp = true;
}
MVKInitialization.Initialize();
// Any device running on MacOS is using MoltenVK, even Intel and AMD vendors.
IsMoltenVk = true;
}
SupportsMTL31 = OperatingSystem.IsMacOSVersionAtLeast(14);
@@ -850,14 +842,14 @@ namespace Ryujinx.Graphics.Vulkan
/// <summary>
/// Gets the available Vulkan devices using the default Vulkan API
/// object returned by <see cref="VulkanSpbApi.GetApiFromSpb()"/>
/// object returned by <see cref="Vk.GetApi()"/>
/// </summary>
/// <returns></returns>
public static DeviceInfo[] GetPhysicalDevices()
{
try
{
return VulkanInitialization.GetSuitablePhysicalDevices(VulkanSpbApi.GetApiFromSpb());
return VulkanInitialization.GetSuitablePhysicalDevices(Vk.GetApi());
}
catch (Exception ex)
{
@@ -1,34 +0,0 @@
using Silk.NET.Core.Contexts;
using Silk.NET.Vulkan;
using SPB.Graphics.Vulkan;
namespace Ryujinx.Graphics.Vulkan
{
public static class VulkanSpbApi
{
public static Vk GetApiFromSpb()
{
LamdaNativeContext baseCtx = new(VulkanHelper.GetProcAddress);
MultiNativeContext ctx = new(baseCtx, null);
Vk ret = new(ctx);
ctx.Contexts[1] = new LamdaNativeContext(x =>
{
if (x.EndsWith("ProcAddr"))
{
return default;
}
nint ptr = ret.GetDeviceProcAddr(ret.CurrentDevice.GetValueOrDefault(), x);
if (ptr != default)
{
return ptr;
}
return ret.GetInstanceProcAddr(ret.CurrentInstance.GetValueOrDefault(), x);
});
return ret;
}
}
}
@@ -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>
@@ -26,12 +26,12 @@ namespace Ryujinx.HLE.HOS.Kernel.Common
{
MemoryArrange.MemoryArrange4GiB or
MemoryArrange.MemoryArrange4GiBSystemDev or
MemoryArrange.MemoryArrange6GiBAppletDev => 3173 * MiB,
MemoryArrange.MemoryArrange6GiBAppletDev => 3152 * MiB,
MemoryArrange.MemoryArrange4GiBAppletDev => 2048 * MiB,
MemoryArrange.MemoryArrange6GiB => 4804 * MiB,
MemoryArrange.MemoryArrange8GiB => 6852 * MiB,
MemoryArrange.MemoryArrange10GiB => 8900 * MiB,
MemoryArrange.MemoryArrange12GiB => 10948 * MiB,
MemoryArrange.MemoryArrange6GiB => 4783 * MiB,
MemoryArrange.MemoryArrange8GiB => 6831 * MiB,
MemoryArrange.MemoryArrange10GiB => 8879 * MiB,
MemoryArrange.MemoryArrange12GiB => 10927 * MiB,
_ => throw new ArgumentException($"Invalid memory arrange \"{arrange}\"."),
};
}
@@ -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}. " +
$"Keeping the first one.");
}
continue;
}
processExes.Add(normalizedBuildId, codeAddress);
}
Dictionary<string, ulong> processExes = tamperInfo.BuildIds.Zip(tamperInfo.CodeAddresses, (k, v) => new { k, v })
.ToDictionary(x => x.k[..Math.Min(Cheat.CheatIdSize, x.k.Length)], x => x.v);
foreach (Cheat cheat in cheats)
{
@@ -71,14 +71,7 @@ namespace Ryujinx.HLE.HOS.Services.Account.Acc
return _applicationServiceServer.IsUserRegistrationRequestPermitted(context);
}
[CommandCmif(51)] // 1.0.0 – 18.1.0
// TrySelectUserWithoutInteraction(bool) -> nn::account::Uid
public ResultCode TrySelectUserWithoutInteractionDeprecated(ServiceCtx context)
{
return _applicationServiceServer.TrySelectUserWithoutInteraction(context);
}
[CommandCmif(52)] // 19.0.0+
[CommandCmif(51)]
// TrySelectUserWithoutInteraction(bool) -> nn::account::Uid
public ResultCode TrySelectUserWithoutInteraction(ServiceCtx context)
{
@@ -23,7 +23,7 @@ namespace Ryujinx.HLE.HOS.Services.Hid
private readonly bool[] _supportedPlayers;
private VibrationValue _neutralVibrationValue = new()
{
AmplitudeLow = 0.01f,
AmplitudeLow = 0f,
FrequencyLow = 160f,
AmplitudeHigh = 0f,
FrequencyHigh = 320f,
+2
View File
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -1,6 +1,8 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -4,6 +4,8 @@
<TargetFramework>netstandard2.0</TargetFramework>
<EnforceExtendedAnalyzerRules>true</EnforceExtendedAnalyzerRules>
<DefaultItemExcludes>$(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();
}
+26 -29
View File
@@ -554,37 +554,34 @@ namespace Ryujinx.Input.HLE
{
if (queue.TryDequeue(out (VibrationValue, VibrationValue) dualVibrationValue))
{
if (_config is not StandardControllerInputConfig controllerConfig ||
!controllerConfig.Rumble.EnableRumble)
if (_config is StandardControllerInputConfig controllerConfig && controllerConfig.Rumble.EnableRumble)
{
return;
VibrationValue leftVibrationValue = dualVibrationValue.Item1;
VibrationValue rightVibrationValue = dualVibrationValue.Item2;
float low = Math.Min(1f, (float)((rightVibrationValue.AmplitudeLow * 0.85 + rightVibrationValue.AmplitudeHigh * 0.15) * controllerConfig.Rumble.StrongRumble));
float high = Math.Min(1f, (float)((leftVibrationValue.AmplitudeLow * 0.15 + leftVibrationValue.AmplitudeHigh * 0.85) * controllerConfig.Rumble.WeakRumble));
leftVibrationValue.AmplitudeLow *= controllerConfig.Rumble.WeakRumble;
leftVibrationValue.AmplitudeHigh *= controllerConfig.Rumble.StrongRumble;
rightVibrationValue.AmplitudeLow *= controllerConfig.Rumble.WeakRumble;
rightVibrationValue.AmplitudeHigh *= controllerConfig.Rumble.StrongRumble;
if (_gamepad?.HDRumble(leftVibrationValue, rightVibrationValue) == false)
{
_gamepad.Rumble(low, high, uint.MaxValue);
}
Logger.Debug?.Print(LogClass.Hid, $"Effect for {controllerConfig.PlayerIndex} " +
$"L.low.amp={leftVibrationValue.AmplitudeLow}, " +
$"L.high.amp={leftVibrationValue.AmplitudeHigh}, " +
$"L.low.freq={leftVibrationValue.FrequencyLow}, " +
$"L.high.freq={leftVibrationValue.FrequencyHigh}, " +
$"R.low.amp={rightVibrationValue.AmplitudeLow}, " +
$"R.high.amp={rightVibrationValue.AmplitudeHigh} " +
$"R.low.freq={rightVibrationValue.FrequencyLow}, " +
$"R.high.freq={rightVibrationValue.FrequencyHigh}");
}
VibrationValue leftVibrationValue = dualVibrationValue.Item1;
VibrationValue rightVibrationValue = dualVibrationValue.Item2;
leftVibrationValue.AmplitudeLow *= controllerConfig.Rumble.WeakRumble;
leftVibrationValue.AmplitudeHigh *= controllerConfig.Rumble.StrongRumble;
rightVibrationValue.AmplitudeLow *= controllerConfig.Rumble.WeakRumble;
rightVibrationValue.AmplitudeHigh *= controllerConfig.Rumble.StrongRumble;
if (!controllerConfig.Rumble.UseHDRumble || _gamepad?.HDRumble(leftVibrationValue, rightVibrationValue) == false)
{
float low = Math.Min(1f, (float)((rightVibrationValue.AmplitudeLow * 0.85 + rightVibrationValue.AmplitudeHigh * 0.15)));
float high = Math.Min(1f, (float)((leftVibrationValue.AmplitudeLow * 0.15 + leftVibrationValue.AmplitudeHigh * 0.85)));
_gamepad.Rumble(low, high, 0xFFFFFFFF);
}
Logger.Debug?.Print(LogClass.Hid, $"Effect for {controllerConfig.PlayerIndex} " +
// Value=value/multiplier * multiplier (result)
$"L.low.amp={leftVibrationValue.AmplitudeLow / controllerConfig.Rumble.WeakRumble} * {controllerConfig.Rumble.WeakRumble} ({leftVibrationValue.AmplitudeLow}), " +
$"L.high.amp={leftVibrationValue.AmplitudeHigh / controllerConfig.Rumble.StrongRumble} * {controllerConfig.Rumble.StrongRumble} ({leftVibrationValue.AmplitudeHigh}), " +
$"L.low.freq={leftVibrationValue.FrequencyLow / controllerConfig.Rumble.WeakRumble} * {controllerConfig.Rumble.WeakRumble} ({leftVibrationValue.FrequencyLow}), " +
$"L.high.freq={leftVibrationValue.FrequencyHigh / controllerConfig.Rumble.StrongRumble} * {controllerConfig.Rumble.StrongRumble} ({leftVibrationValue.FrequencyHigh}), " +
$"R.low.amp={rightVibrationValue.AmplitudeLow / controllerConfig.Rumble.WeakRumble} * {controllerConfig.Rumble.WeakRumble} ({rightVibrationValue.AmplitudeLow}), " +
$"R.high.amp={rightVibrationValue.AmplitudeHigh / controllerConfig.Rumble.StrongRumble} * {controllerConfig.Rumble.StrongRumble} ({rightVibrationValue.AmplitudeHigh}), " +
$"R.low.freq={rightVibrationValue.FrequencyLow / controllerConfig.Rumble.WeakRumble} * {controllerConfig.Rumble.WeakRumble} ({rightVibrationValue.FrequencyLow}), " +
$"R.high.freq={rightVibrationValue.FrequencyHigh / controllerConfig.Rumble.StrongRumble} * {controllerConfig.Rumble.StrongRumble} ({rightVibrationValue.FrequencyHigh})");
}
}
}
+6 -3
View File
@@ -71,7 +71,10 @@ namespace Ryujinx.Input
/// </summary>
/// <param name="left">The vibration data for the left side</param>
/// <param name="right">The vibration data for the right side</param>
bool HDRumble(VibrationValue left, VibrationValue right);
bool HDRumble(VibrationValue left, VibrationValue right)
{
return false;
}
/// <summary>
/// Starts a rumble effect on the gamepad.
@@ -79,10 +82,10 @@ namespace Ryujinx.Input
/// <param name="lowFrequency">The intensity of the low frequency from 0.0f to 1.0f</param>
/// <param name="highFrequency">The intensity of the high frequency from 0.0f to 1.0f</param>
/// <param name="durationMs">The duration of the rumble effect in milliseconds.</param>
bool Rumble(float lowFrequency, float highFrequency, uint durationMs);
void Rumble(float lowFrequency, float highFrequency, uint durationMs);
/// <summary>
/// Get a snaphost of the state of the gamepad that is remapped with the information from the <see cref="InputConfig"/> set via <see cref="SetConfiguration(InputConfig)"/>.
/// Get a snaphost of the state of the gamepad that is remapped with the informations from the <see cref="InputConfig"/> set via <see cref="SetConfiguration(InputConfig)"/>.
/// </summary>
/// <returns>A remapped snaphost of the state of the gamepad.</returns>
GamepadStateSnapshot GetMappedStateSnapshot();
+2
View File
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
+2
View File
@@ -3,6 +3,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -2,6 +2,8 @@
<PropertyGroup>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
</PropertyGroup>
@@ -2,7 +2,8 @@
<PropertyGroup>
<OutputType>Exe</OutputType>
<Configurations>Debug;Release</Configurations>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -2,6 +2,8 @@
<PropertyGroup>
<IsPackable>false</IsPackable>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -2,7 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release</Configurations>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<PropertyGroup>
+2 -1
View File
@@ -7,9 +7,10 @@
<TargetOS Condition="'$([System.Runtime.InteropServices.RuntimeInformation]::IsOSPlatform($([System.Runtime.InteropServices.OSPlatform]::Windows)))' == 'true'">windows</TargetOS>
<TargetOS Condition="'$([System.Runtime.InteropServices.RuntimeInformation]::IsOSPlatform($([System.Runtime.InteropServices.OSPlatform]::OSX)))' == 'true'">osx</TargetOS>
<TargetOS Condition="'$([System.Runtime.InteropServices.RuntimeInformation]::IsOSPlatform($([System.Runtime.InteropServices.OSPlatform]::Linux)))' == 'true'">linux</TargetOS>
<Configurations>Debug;Release</Configurations>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<RunSettingsFilePath>$(MSBuildProjectDirectory)\.runsettings</RunSettingsFilePath>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<PropertyGroup>
@@ -86,7 +86,7 @@ namespace Ryujinx.UI.App.Common
private static byte[] GetResourceBytes(string resourceName)
{
Stream resourceStream = Assembly.GetCallingAssembly().GetManifestResourceStream(resourceName);
Stream resourceStream = typeof(ApplicationLibrary).Assembly.GetManifestResourceStream(resourceName);
if (resourceStream != null)
{
byte[] resourceByteArray = new byte[resourceStream.Length];
@@ -439,11 +439,6 @@ namespace Ryujinx.UI.Common.Configuration
/// </summary>
public GraphicsBackend GraphicsBackend { get; set; }
/// <summary>
/// Vulkan translation layer
/// </summary>
public TranslationLayer TranslationLayer { get; set; }
/// <summary>
/// Preferred GPU
/// </summary>
@@ -587,11 +587,6 @@ namespace Ryujinx.UI.Common.Configuration
/// </summary>
public ReactiveObject<GraphicsBackend> GraphicsBackend { get; private set; }
/// <summary>
/// Vulkan translation layer
/// </summary>
public ReactiveObject<TranslationLayer> TranslationLayer { get; private set; }
/// <summary>
/// Applies anti-aliasing to the renderer.
/// </summary>
@@ -644,8 +639,6 @@ namespace Ryujinx.UI.Common.Configuration
EnableTextureRecompression.Event += static (_, e) => LogValueChange(e, nameof(EnableTextureRecompression));
GraphicsBackend = new ReactiveObject<GraphicsBackend>();
GraphicsBackend.Event += static (_, e) => LogValueChange(e, nameof(GraphicsBackend));
TranslationLayer = new ReactiveObject<TranslationLayer>();
TranslationLayer.Event += static (_, e) => LogValueChange(e, nameof(TranslationLayer));
PreferredGpu = new ReactiveObject<string>();
PreferredGpu.Event += static (_, e) => LogValueChange(e, nameof(PreferredGpu));
EnableMacroHLE = new ReactiveObject<bool>();
@@ -942,7 +935,6 @@ namespace Ryujinx.UI.Common.Configuration
ControllerConfig = [],
InputConfig = Hid.InputConfig,
GraphicsBackend = Graphics.GraphicsBackend,
TranslationLayer = Graphics.TranslationLayer,
PreferredGpu = Graphics.PreferredGpu,
MultiplayerLanInterfaceId = Multiplayer.LanInterfaceId,
MultiplayerMode = Multiplayer.Mode,
@@ -966,7 +958,6 @@ namespace Ryujinx.UI.Common.Configuration
Graphics.MaxAnisotropy.Value = -1.0f;
Graphics.AspectRatio.Value = AspectRatio.Fixed16x9;
Graphics.GraphicsBackend.Value = DefaultGraphicsBackend();
Graphics.TranslationLayer.Value = TranslationLayer.MoltenVK;
Graphics.PreferredGpu.Value = "";
Graphics.ShadersDumpPath.Value = "";
Graphics.TexturesDumpPath.Value = "";
@@ -1431,7 +1422,6 @@ namespace Ryujinx.UI.Common.Configuration
EnableRumble = false,
StrongRumble = 1f,
WeakRumble = 1f,
UseHDRumble = false
};
}
}
@@ -1815,15 +1805,6 @@ namespace Ryujinx.UI.Common.Configuration
configurationFileUpdated = true;
}
if (configurationFileFormat.Version < 62)
{
Ryujinx.Common.Logging.Logger.Warning?.Print(LogClass.Application, $"Outdated configuration version {configurationFileFormat.Version}, migrating to version 62.");
configurationFileFormat.TranslationLayer = TranslationLayer.MoltenVK;
configurationFileUpdated = true;
}
Logger.EnableFileLog.Value = configurationFileFormat.EnableFileLog;
Graphics.ResScale.Value = configurationFileFormat.ResScale;
Graphics.ResScaleCustom.Value = configurationFileFormat.ResScaleCustom;
@@ -1836,7 +1817,6 @@ namespace Ryujinx.UI.Common.Configuration
Graphics.EnableTextureRealTimeEdit.Value = configurationFileFormat.GraphicsEnableTextureRealTimeEdit;
Graphics.BackendThreading.Value = configurationFileFormat.BackendThreading;
Graphics.GraphicsBackend.Value = configurationFileFormat.GraphicsBackend;
Graphics.TranslationLayer.Value = configurationFileFormat.TranslationLayer;
Graphics.PreferredGpu.Value = configurationFileFormat.PreferredGpu;
Graphics.AntiAliasing.Value = configurationFileFormat.AntiAliasing;
Graphics.ScalingFilter.Value = configurationFileFormat.ScalingFilter;
@@ -12,7 +12,6 @@ namespace Ryujinx.UI.Common.Helper
public static bool? OverrideDockedMode { get; private set; }
public static bool? OverrideHardwareAcceleration { get; private set; }
public static string OverrideGraphicsBackend { get; private set; }
public static string OverrideTranslationLayer { get; private set; }
public static string OverrideBackendThreading { get; private set; }
public static string OverrideHideCursor { get; private set; }
public static string BaseDirPathArg { get; private set; }
@@ -93,16 +92,6 @@ namespace Ryujinx.UI.Common.Helper
OverrideGraphicsBackend = args[++i];
break;
case "--translation-layer":
if (i + 1 >= args.Length)
{
Logger.Error?.Print(LogClass.Application, $"Invalid option '{arg}'");
continue;
}
OverrideTranslationLayer = args[++i];
break;
case "--backend-threading":
if (i + 1 >= args.Length)
{
@@ -2,6 +2,8 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -4,6 +4,8 @@
<TargetFramework>netstandard2.0</TargetFramework>
<Nullable>enable</Nullable>
<EnforceExtendedAnalyzerRules>true</EnforceExtendedAnalyzerRules>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
+4 -9
View File
@@ -43,6 +43,7 @@ using Ryujinx.UI.App.Common;
using Ryujinx.UI.Common;
using Ryujinx.UI.Common.Configuration;
using Ryujinx.UI.Common.Helper;
using Silk.NET.Vulkan;
using SkiaSharp;
using SPB.Graphics.Exceptions;
using SPB.Graphics.Vulkan;
@@ -938,11 +939,10 @@ namespace Ryujinx.Ava
if (ConfigurationState.Instance.Graphics.GraphicsBackend.Value == GraphicsBackend.Vulkan)
{
renderer = new VulkanRenderer(
VulkanSpbApi.GetApiFromSpb(),
Vk.GetApi(),
((EmbeddedWindowVulkan)RendererHost.EmbeddedWindow).CreateSurface,
VulkanHelper.GetRequiredInstanceExtensions,
ConfigurationState.Instance.Graphics.PreferredGpu.Value,
ConfigurationState.Instance.Graphics.TranslationLayer.Value);
ConfigurationState.Instance.Graphics.PreferredGpu.Value);
}
else
{
@@ -1183,12 +1183,7 @@ namespace Ryujinx.Ava
{
_viewModel.BackendText = ConfigurationState.Instance.Graphics.GraphicsBackend.Value switch
{
GraphicsBackend.Vulkan when !OperatingSystem.IsMacOS() => "Vulkan",
GraphicsBackend.Vulkan when Environment.GetEnvironmentVariable("VK_DRIVER_FILES")!.Contains("MoltenVK")
=> "MoltenVK",
GraphicsBackend.Vulkan when
Environment.GetEnvironmentVariable("VK_DRIVER_FILES")!.Contains("kosmickrisp") => "KosmicKrisp",
GraphicsBackend.Vulkan => _viewModel.BackendText,
GraphicsBackend.Vulkan => "Vulkan",
GraphicsBackend.OpenGl => "OpenGL",
_ => throw new NotImplementedException()
};
-4
View File
@@ -189,8 +189,6 @@
"SettingsTabSystemIgnoreControllerApplet": "Ignore Controller Applet",
"SettingsTabGraphics": "Graphics",
"SettingsTabGraphicsAPI": "Graphics API",
"SettingsTabTranslationLayer": "Translation Layer (Vulkan):",
"SettingsTabTranslationLayerTooltip": "MoltenVK is a Vulkan Portability implementation, enabling Vulkan applications to run on macOS.\n\nKosmicKrisp is a Vulkan (1.3) conformant Vulkan-on-Metal driver and the eventual successor to MoltenVK.\n\nKosmicKrisp is not yet feature-complete, meaning that games *may* not render correctly or possibly even crash.\n\nUse MoltenVK if unsure.",
"SettingsTabGraphicsEnableShaderCache": "Enable Shader Cache",
"SettingsTabGraphicsAnisotropicFiltering": "Anisotropic Filtering:",
"SettingsTabGraphicsAnisotropicFilteringAuto": "Auto",
@@ -464,8 +462,6 @@
"ControllerSettingsRumble": "Rumble",
"ControllerSettingsRumbleStrongMultiplier": "Strong Rumble Multiplier",
"ControllerSettingsRumbleWeakMultiplier": "Weak Rumble Multiplier",
"ControllerSettingsRumbleUseHDRumble": "Enable HD Rumble",
"HDRumbleTooltip": "EXPERIMENTAL.\n\nSends more data to the controller for better rumble.\n\nCurrently only supports first-party Nintendo Switch controllers.\n\nLeave OFF if unsure.",
"DialogMessageSaveNotAvailableMessage": "There is no savedata for {0} [{1:x16}]",
"DialogMessageSaveNotAvailableCreateSaveMessage": "Would you like to create savedata for this game?",
"DialogConfirmationTitle": "Ryujinx - Confirmation",
+2 -4
View File
@@ -223,7 +223,6 @@ namespace Ryujinx.Headless
StrongRumble = 1f,
WeakRumble = 1f,
EnableRumble = false,
UseHDRumble = true
},
};
}
@@ -289,7 +288,7 @@ namespace Ryujinx.Headless
if (options.GraphicsBackend == GraphicsBackend.Vulkan && window is VulkanWindow vulkanWindow)
{
string preferredGpuId = string.Empty;
Vk api = VulkanSpbApi.GetApiFromSpb();
Vk api = Vk.GetApi();
if (!string.IsNullOrEmpty(options.PreferredGPUVendor))
{
@@ -310,8 +309,7 @@ namespace Ryujinx.Headless
api,
(instance, _) => new SurfaceKHR((ulong)(vulkanWindow.CreateWindowSurface(instance.Handle))),
VulkanWindow.GetRequiredInstanceExtensions,
preferredGpuId,
options.TranslationLayer);
preferredGpuId);
}
return new OpenGLRenderer();
+6
View File
@@ -12,6 +12,7 @@ using Ryujinx.Cpu;
using Ryujinx.Graphics.GAL;
using Ryujinx.Graphics.Gpu;
using Ryujinx.Graphics.Gpu.Shader;
using Ryujinx.Graphics.Vulkan.MoltenVK;
using Ryujinx.HLE;
using Ryujinx.HLE.FileSystem;
using Ryujinx.HLE.HOS;
@@ -73,6 +74,11 @@ namespace Ryujinx.Headless
};
}
if (OperatingSystem.IsMacOS())
{
MVKInitialization.InitializeResolver();
}
Parser.Default.ParseArguments<Options>(args)
.WithParsed(options => Load(args, options))
.WithNotParsed(errors => errors.Output());
+1 -7
View File
@@ -131,10 +131,7 @@ namespace Ryujinx.Headless
if (NeedsOverride(nameof(GraphicsBackend)))
GraphicsBackend = configurationState.Graphics.GraphicsBackend;
if (NeedsOverride(nameof(TranslationLayer)))
TranslationLayer = configurationState.Graphics.TranslationLayer;
if (NeedsOverride(nameof(AntiAliasing)))
AntiAliasing = configurationState.Graphics.AntiAliasing;
@@ -373,9 +370,6 @@ namespace Ryujinx.Headless
[Option("graphics-backend", Required = false, Default = GraphicsBackend.Vulkan, HelpText = "Change Graphics Backend to use.")]
public GraphicsBackend GraphicsBackend { get; set; }
[Option("translation-layer", Required = false, Default = TranslationLayer.MoltenVK, HelpText = "Change Translation Layer to use.")]
public TranslationLayer TranslationLayer { get; set; }
[Option("preferred-gpu-vendor", Required = false, Default = "", HelpText = "When using the Vulkan backend, prefer using the GPU from the specified vendor.")]
public string PreferredGPUVendor { get; set; }
+2 -14
View File
@@ -1,6 +1,5 @@
using Ryujinx.Common.Configuration.Hid;
using Ryujinx.Common.Configuration.Hid.Keyboard;
using Ryujinx.HLE.HOS.Services.Hid;
using Ryujinx.Input;
using System;
using System.Collections.Generic;
@@ -150,20 +149,9 @@ namespace Ryujinx.Ava.Input
}
}
public void SetTriggerThreshold(float triggerThreshold)
{
// No operations
}
public void SetTriggerThreshold(float triggerThreshold) { }
public bool HDRumble(VibrationValue left, VibrationValue right)
{
return false;
}
public bool Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
return false;
}
public void Rumble(float lowFrequency, float highFrequency, uint durationMs) { }
public Vector3 GetMotionData(MotionInputId inputId) => Vector3.Zero;
+1 -7
View File
@@ -1,5 +1,4 @@
using Ryujinx.Common.Configuration.Hid;
using Ryujinx.HLE.HOS.Services.Hid;
using Ryujinx.Input;
using System;
using System.Drawing;
@@ -64,13 +63,8 @@ namespace Ryujinx.Ava.Input
{
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();
}
+16 -22
View File
@@ -8,6 +8,7 @@ using Ryujinx.Common.GraphicsDriver;
using Ryujinx.Common.Logging;
using Ryujinx.Common.SystemInterop;
using Ryujinx.Common.Utilities;
using Ryujinx.Graphics.Vulkan.MoltenVK;
using Ryujinx.Headless;
using Ryujinx.Modules;
using Ryujinx.SDL3.Common;
@@ -25,6 +26,7 @@ namespace Ryujinx.Ava
{
internal partial class Program
{
//
public static double WindowScaleFactor { get; set; }
public static double DesktopScaleFactor { get; set; } = 1.0;
public static string Version { get; private set; }
@@ -112,6 +114,11 @@ namespace Ryujinx.Ava
// Parse arguments
CommandLineState.ParseArguments(args);
if (OperatingSystem.IsMacOS())
{
MVKInitialization.InitializeResolver();
}
// Delete backup files after updating.
Task.Run(Updater.CleanupUpdate);
@@ -211,31 +218,18 @@ namespace Ryujinx.Ava
UseHardwareAcceleration = ConfigurationState.Instance.EnableHardwareAcceleration.Value;
// Change graphics backend from OpenGL to Vulkan on macOS
if (OperatingSystem.IsMacOS() && (ConfigurationState.Instance.Graphics.GraphicsBackend.Value == GraphicsBackend.OpenGl))
{
ConfigurationState.Instance.Graphics.GraphicsBackend.Value = GraphicsBackend.Vulkan;
}
// Check if graphics backend was overridden
if (CommandLineState.OverrideGraphicsBackend is not null)
if (CommandLineState.OverrideGraphicsBackend != null)
{
ConfigurationState.Instance.Graphics.GraphicsBackend.Value = CommandLineState.OverrideGraphicsBackend.ToLower() switch
{
"opengl" => GraphicsBackend.OpenGl,
"vulkan" => GraphicsBackend.Vulkan,
_ => ConfigurationState.Instance.Graphics.GraphicsBackend.Value
};
}
// Check if translation layer was overridden
if (CommandLineState.OverrideTranslationLayer is not null)
ConfigurationState.Instance.Graphics.TranslationLayer.Value = CommandLineState.OverrideTranslationLayer.ToLower() switch
if (CommandLineState.OverrideGraphicsBackend.ToLower() == "opengl")
{
"moltenvk" => TranslationLayer.MoltenVK,
"kosmickrisp" => TranslationLayer.KosmicKrisp,
_ => ConfigurationState.Instance.Graphics.TranslationLayer.Value
};
ConfigurationState.Instance.Graphics.GraphicsBackend.Value = GraphicsBackend.OpenGl;
}
else if (CommandLineState.OverrideGraphicsBackend.ToLower() == "vulkan")
{
ConfigurationState.Instance.Graphics.GraphicsBackend.Value = GraphicsBackend.Vulkan;
}
}
// Check if backend threading was overridden
if (CommandLineState.OverrideBackendThreading is not null)
+15 -16
View File
@@ -11,6 +11,8 @@
<ApplicationManifest>app.manifest</ApplicationManifest>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<IncludeSourceRevisionInInformationalVersion Condition="'$(Configuration)'=='Release'">false</IncludeSourceRevisionInInformationalVersion>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<Target Name="RemoveNativePackagePdbs" AfterTargets="ResolvePackageAssets">
@@ -47,12 +49,11 @@
<PackageReference Include="Ryujinx.Graphics.Nvdec.Dependencies.Linux" Condition="'$(RuntimeIdentifier)' == 'linux-x64' OR '$(RuntimeIdentifier)' == 'linux-arm64'" />
<PackageReference Include="Ryujinx.Graphics.Nvdec.Dependencies.macOS" Condition="'$(RuntimeIdentifier)' == 'osx-x64' OR '$(RuntimeIdentifier)' == 'osx-arm64'" />
<PackageReference Include="Ryujinx.Graphics.Nvdec.Dependencies.Windows" Condition="'$(RuntimeIdentifier)' == 'win-x64' OR '$(RuntimeIdentifier)' == 'win-arm64'" />
<PackageReference Include="Ryujinx.Graphics.Vulkan.KosmicKrisp" Condition="'$(RuntimeIdentifier)' != 'linux-x64' AND '$(RuntimeIdentifier)' != 'linux-arm64' AND '$(RuntimeIdentifier)' != 'win-x64' AND '$(RuntimeIdentifier)' != 'win-arm64' AND '$(RuntimeIdentifier)' != 'osx-x64'" />
<PackageReference Include="Ryujinx.SPB" />
<PackageReference Include="Ryujinx.Graphics.Vulkan.MoltenVK" Condition="'$(RuntimeIdentifier)' == 'osx-x64' OR '$(RuntimeIdentifier)' == 'osx-arm64'" />
<PackageReference Include="Silk.NET.Vulkan" />
<PackageReference Include="Silk.NET.Vulkan.Extensions.EXT" />
<PackageReference Include="Silk.NET.Vulkan.Extensions.KHR" />
<PackageReference Include="SPB" />
<PackageReference Include="SharpZipLib" />
</ItemGroup>
@@ -90,20 +91,6 @@
</Content>
</ItemGroup>
<ItemGroup Condition="'$(RuntimeIdentifier)' == 'osx-arm64' OR '$(RuntimeIdentifier)' == 'osx-x64'">
<Content Include="..\..\distribution\macos\vulkan\icd.d\MoltenVK_icd-flat.json">
<CopyToOutputDirectory>Always</CopyToOutputDirectory>
<TargetPath>MoltenVK_icd.json</TargetPath>
</Content>
</ItemGroup>
<ItemGroup Condition="'$(RuntimeIdentifier)' == 'osx-arm64'">
<Content Include="..\..\distribution\macos\vulkan\icd.d\libkosmickrisp_icd-flat.json">
<CopyToOutputDirectory>Always</CopyToOutputDirectory>
<TargetPath>libkosmickrisp_icd.json</TargetPath>
</Content>
</ItemGroup>
<ItemGroup Condition="'$(RuntimeIdentifier)' == 'linux-x64' OR '$(RuntimeIdentifier)' == 'linux-arm64'" >
<Content Include="..\..\distribution\linux\Ryujinx.sh">
<CopyToOutputDirectory>Always</CopyToOutputDirectory>
@@ -183,4 +170,16 @@
<ItemGroup>
<TrimmerRootDescriptor Include="TrimmerRootDescriptor.xml" />
</ItemGroup>
<ItemGroup Condition="$(Configuration.EndsWith('AOT'))">
<RdXmlFile Include="rd.xml" />
</ItemGroup>
<PropertyGroup Condition="$(Configuration.EndsWith('AOT'))">
<PublishAot>true</PublishAot>
<IsAotCompatible>true</IsAotCompatible>
<TrimmerSingleWarn>false</TrimmerSingleWarn>
<InvariantGlobalization>false</InvariantGlobalization>
<OptimizationPreference>Speed</OptimizationPreference>
<PublishSingleFile>false</PublishSingleFile>
<TrimMode>full</TrimMode>
</PropertyGroup>
</Project>
@@ -19,7 +19,6 @@ namespace Ryujinx.Ava.UI.Models.Input
public float WeakRumble { get; set; }
public float StrongRumble { get; set; }
public bool UseHDRumble { get; set; }
public string Id { get; set; }
public ControllerType ControllerType { get; set; }
@@ -203,7 +202,6 @@ namespace Ryujinx.Ava.UI.Models.Input
EnableRumble = controllerInput.Rumble.EnableRumble;
WeakRumble = controllerInput.Rumble.WeakRumble;
StrongRumble = controllerInput.Rumble.StrongRumble;
UseHDRumble = controllerInput.Rumble.UseHDRumble;
}
}
}
@@ -261,7 +259,6 @@ namespace Ryujinx.Ava.UI.Models.Input
EnableRumble = EnableRumble,
WeakRumble = WeakRumble,
StrongRumble = StrongRumble,
UseHDRumble = UseHDRumble,
},
Version = InputConfig.CurrentVersion,
DeadzoneLeft = DeadzoneLeft,
@@ -678,7 +678,6 @@ namespace Ryujinx.Ava.UI.ViewModels.Input
StrongRumble = 1f,
WeakRumble = 1f,
EnableRumble = false,
UseHDRumble = false
},
};
}

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