Author SHA1 Message Date
KeatonTheBot 72ecef8b9f Migrate custom settings for SDL2 to SDL3 2026-05-25 12:12:09 -05:00
blackfa765 472b0e2bdb Fix custom settings invalidating global settings 2026-05-25 12:12:09 -05:00
KeatonTheBot 8f6d22d92d Add Turbo Mode to CPU settings 2026-05-25 12:12:09 -05:00
KeatonTheBot 645a4c99af Add custom audio settings 2026-05-25 12:12:09 -05:00
blackfa765andKeatonTheBot a94c18bc0a Basic custom settings functionality
Co-authored-by: KeatonTheBot <keaton@ryujinx.app>
2026-05-25 12:12:09 -05:00
642 changed files with 6885 additions and 6982 deletions
+19 -18
View File
@@ -3,25 +3,25 @@
<ManagePackageVersionsCentrally>true</ManagePackageVersionsCentrally>
</PropertyGroup>
<ItemGroup>
<PackageVersion Include="Avalonia" Version="12.1.1" />
<PackageVersion Include="Avalonia.Controls.DataGrid" Version="12.1.2" />
<PackageVersion Include="Avalonia.Desktop" Version="12.1.1" />
<PackageVersion Include="AvaloniaUI.DiagnosticsSupport" Version="2.2.3" />
<PackageVersion Include="Avalonia.Markup.Xaml.Loader" Version="12.1.1" />
<PackageVersion Include="Svg.Controls.Avalonia" Version="12.0.0.15" />
<PackageVersion Include="Svg.Controls.Skia.Avalonia" Version="12.0.0.15" />
<PackageVersion Include="Avalonia" Version="11.3.16" />
<PackageVersion Include="Avalonia.Controls.DataGrid" Version="11.3.13" />
<PackageVersion Include="Avalonia.Desktop" Version="11.3.16" />
<PackageVersion Include="Avalonia.Diagnostics" Version="11.3.16" />
<PackageVersion Include="Avalonia.Markup.Xaml.Loader" Version="11.3.16" />
<PackageVersion Include="Svg.Controls.Avalonia" Version="11.3.9.5" />
<PackageVersion Include="Svg.Controls.Skia.Avalonia" Version="11.3.9.5" />
<PackageVersion Include="CommandLineParser" Version="2.9.1" />
<PackageVersion Include="CommunityToolkit.Mvvm" Version="8.4.2" />
<PackageVersion Include="Concentus" Version="2.2.2" />
<PackageVersion Include="DiscordRichPresence" Version="1.6.1.70" />
<PackageVersion Include="DynamicData" Version="9.4.33" />
<PackageVersion Include="FluentAvaloniaUI" Version="3.1.0" />
<PackageVersion Include="DynamicData" Version="9.4.31" />
<PackageVersion Include="FluentAvaloniaUI" Version="2.5.1" />
<PackageVersion Include="Gommon" Version="2.8.1.2" />
<PackageVersion Include="Humanizer" Version="3.0.10" />
<PackageVersion Include="Microsoft.CodeAnalysis.Analyzers" Version="3.3.4" />
<PackageVersion Include="Microsoft.CodeAnalysis.CSharp" Version="4.12.0" />
<PackageVersion Include="Microsoft.IdentityModel.JsonWebTokens" Version="8.21.0" />
<PackageVersion Include="Microsoft.NET.Test.Sdk" Version="18.8.1" />
<PackageVersion Include="Microsoft.IdentityModel.JsonWebTokens" Version="8.18.0" />
<PackageVersion Include="Microsoft.NET.Test.Sdk" Version="18.5.1" />
<PackageVersion Include="Microsoft.IO.RecyclableMemoryStream" Version="3.0.1" />
<PackageVersion Include="MsgPack.Cli" Version="1.0.1" />
<PackageVersion Include="NetCoreServer" Version="8.0.7" />
@@ -31,24 +31,25 @@
<PackageVersion Include="OpenTK.Core" Version="4.9.4" />
<PackageVersion Include="OpenTK.Graphics" Version="4.9.4" />
<PackageVersion Include="OpenTK.Audio.OpenAL" Version="4.9.4" />
<PackageVersion Include="OpenTK.Windowing.GraphicsLibraryFramework" Version="4.9.4" />
<PackageVersion Include="Open.NAT.Core" Version="2.1.0.5" />
<PackageVersion Include="Ryujinx.Audio.OpenAL" Version="1.25.2" />
<PackageVersion Include="Ryujinx.Audio.OpenAL" Version="1.25.1" />
<PackageVersion Include="Ryujinx.Graphics.Nvdec.Dependencies.Linux" Version="6.1.4-build6" />
<PackageVersion Include="Ryujinx.Graphics.Nvdec.Dependencies.macOS" Version="5.0.3-build14" />
<PackageVersion Include="Ryujinx.Graphics.Nvdec.Dependencies.Windows" Version="6.1.4-build6" />
<PackageVersion Include="Ryujinx.Graphics.Vulkan.MoltenVK" Version="1.4.2-ryujinx.6" />
<PackageVersion Include="Ryujinx.Graphics.Vulkan.MoltenVK" Version="1.4.2-ryujinx.3" />
<PackageVersion Include="Ryujinx.LibHac" Version="0.21.0-alpha.133" />
<PackageVersion Include="Ryujinx.SDL3-CS" Version="2026.707.0" />
<PackageVersion Include="Ryujinx.SDL3-CS" Version="2026.501.0" />
<PackageVersion Include="securifybv.ShellLink" Version="0.1.0" />
<PackageVersion Include="SharpZipLib" Version="1.4.2" />
<PackageVersion Include="Silk.NET.Shaderc" Version="2.23.0" />
<PackageVersion Include="Silk.NET.Vulkan" Version="2.23.0" />
<PackageVersion Include="Silk.NET.Vulkan.Extensions.EXT" Version="2.23.0" />
<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="SkiaSharp" Version="3.119.2" />
<PackageVersion Include="SkiaSharp.NativeAssets.Linux" Version="3.119.2" />
<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" />
<PackageVersion Include="System.IO.Hashing" Version="10.0.8" />
<PackageVersion Include="UnicornEngine.Unicorn" Version="2.1.4-a40db6c" />
</ItemGroup>
</Project>
-6
View File
@@ -1,10 +1,4 @@
<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" />
-2
View File
@@ -4,8 +4,6 @@
<RuntimeIdentifiers>osx-arm64</RuntimeIdentifiers>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -13,13 +13,13 @@ namespace ARMeilleure.CodeGen.Arm64
public static void RunPass(ControlFlowGraph cfg)
{
Dictionary<ulong, Operand> constants = new();
var constants = new Dictionary<ulong, Operand>();
Operand GetConstantCopy(BasicBlock block, Operation operation, Operand source)
{
// If the constant has many uses, we also force a new constant mov to be added, in order
// to avoid overflow of the counts field (that is limited to 16 bits).
if (!constants.TryGetValue(source.Value, out Operand constant) || constant.UsesCount > MaxConstantUses)
if (!constants.TryGetValue(source.Value, out var constant) || constant.UsesCount > MaxConstantUses)
{
constant = Local(source.Type);
+1 -1
View File
@@ -123,7 +123,7 @@ namespace ARMeilleure.CodeGen.Arm64
public void Cset(Operand rd, ArmCondition condition)
{
Operand zr = Factory.Register(ZrRegister, RegisterType.Integer, rd.Type);
var zr = Factory.Register(ZrRegister, RegisterType.Integer, rd.Type);
Csinc(rd, zr, zr, (ArmCondition)((int)condition ^ 1));
}
@@ -91,7 +91,7 @@ namespace ARMeilleure.CodeGen.Arm64
long target = _stream.Position;
if (_pendingBranches.TryGetValue(block, out List<(ArmCondition Condition, long BranchPos)> list))
if (_pendingBranches.TryGetValue(block, out var list))
{
foreach ((ArmCondition condition, long branchPos) in list)
{
@@ -119,7 +119,7 @@ namespace ARMeilleure.CodeGen.Arm64
}
else
{
if (!_pendingBranches.TryGetValue(target, out List<(ArmCondition Condition, long BranchPos)> list))
if (!_pendingBranches.TryGetValue(target, out var list))
{
list = new List<(ArmCondition, long)>();
_pendingBranches.Add(target, list);
@@ -321,7 +321,7 @@ namespace ARMeilleure.CodeGen.Arm64
Debug.Assert(comp.Kind == OperandKind.Constant);
ArmCondition cond = ((Comparison)comp.AsInt32()).ToArmCondition();
var cond = ((Comparison)comp.AsInt32()).ToArmCondition();
GenerateCompareCommon(context, operation);
@@ -353,7 +353,7 @@ namespace ARMeilleure.CodeGen.Arm64
Debug.Assert(dest.Type == OperandType.I32);
Debug.Assert(comp.Kind == OperandKind.Constant);
ArmCondition cond = ((Comparison)comp.AsInt32()).ToArmCondition();
var cond = ((Comparison)comp.AsInt32()).ToArmCondition();
GenerateCompareCommon(context, operation);
@@ -847,7 +847,7 @@ namespace ARMeilleure.CodeGen.Arm64
Debug.Assert(comp.Kind == OperandKind.Constant);
Comparison compType = (Comparison)comp.AsInt32();
var compType = (Comparison)comp.AsInt32();
return compType is Comparison.Equal or Comparison.NotEqual;
}
+5 -7
View File
@@ -8,7 +8,7 @@ namespace ARMeilleure.CodeGen
/// <summary>
/// Represents a compiled function.
/// </summary>
public readonly struct CompiledFunction
readonly struct CompiledFunction
{
/// <summary>
/// Gets the machine code of the <see cref="CompiledFunction"/>.
@@ -44,11 +44,10 @@ namespace ARMeilleure.CodeGen
/// <typeparamref name="T"/> pointing to the mapped function.
/// </summary>
/// <typeparam name="T">Type of delegate</typeparam>
/// <param name="jitCache">The jit cache to map the function into</param>
/// <returns>A delegate of type <typeparamref name="T"/> pointing to the mapped function</returns>
public T Map<T>(JitCache jitCache)
public T Map<T>()
{
return MapWithPointer<T>(jitCache, out _);
return MapWithPointer<T>(out _);
}
/// <summary>
@@ -56,12 +55,11 @@ namespace ARMeilleure.CodeGen
/// <typeparamref name="T"/> pointing to the mapped function.
/// </summary>
/// <typeparam name="T">Type of delegate</typeparam>
/// <param name="jitCache">The jit cache to map the function into</param>
/// <param name="codePointer">Pointer to the function code in memory</param>
/// <returns>A delegate of type <typeparamref name="T"/> pointing to the mapped function</returns>
public T MapWithPointer<T>(JitCache jitCache, out nint codePointer)
public T MapWithPointer<T>(out nint codePointer)
{
codePointer = jitCache.Map(this);
codePointer = JitCache.Map(this);
return Marshal.GetDelegateForFunctionPointer<T>(codePointer);
}
@@ -3,7 +3,7 @@ namespace ARMeilleure.CodeGen.Linking
/// <summary>
/// Represents a relocation.
/// </summary>
public readonly struct RelocEntry
readonly struct RelocEntry
{
public const int Stride = 13; // Bytes.
+1 -1
View File
@@ -5,7 +5,7 @@ namespace ARMeilleure.CodeGen.Linking
/// <summary>
/// Represents relocation information about a <see cref="CompiledFunction"/>.
/// </summary>
public readonly struct RelocInfo
readonly struct RelocInfo
{
/// <summary>
/// Gets an empty <see cref="RelocInfo"/>.
+1 -1
View File
@@ -5,7 +5,7 @@ namespace ARMeilleure.CodeGen.Linking
/// <summary>
/// Represents a symbol.
/// </summary>
public readonly struct Symbol
readonly struct Symbol
{
private readonly ulong _value;
@@ -3,7 +3,7 @@ namespace ARMeilleure.CodeGen.Linking
/// <summary>
/// Types of <see cref="Symbol"/>.
/// </summary>
public enum SymbolType : byte
enum SymbolType : byte
{
/// <summary>
/// Refers to nothing, i.e no symbol.
@@ -115,7 +115,7 @@ namespace ARMeilleure.CodeGen.RegisterAllocators
{
NumberLocals(cfg, regMasks.RegistersCount);
AllocationContext context = new(stackAlloc, regMasks, _intervals.Count);
var context = new AllocationContext(stackAlloc, regMasks, _intervals.Count);
BuildIntervals(cfg, context);
@@ -15,12 +15,12 @@ namespace ARMeilleure.CodeGen.RegisterAllocators
{
if (_count + 1 > _capacity)
{
Span<LiveInterval> oldSpan = Span;
var oldSpan = Span;
_capacity = Math.Max(4, _capacity * 2);
_items = Allocators.References.Allocate<LiveInterval>((uint)_capacity);
Span<LiveInterval> newSpan = Span;
var newSpan = Span;
oldSpan.CopyTo(newSpan);
}
@@ -16,12 +16,12 @@ namespace ARMeilleure.CodeGen.RegisterAllocators
{
if (Count + 1 > _capacity)
{
Span<int> oldSpan = Span;
var oldSpan = Span;
_capacity = Math.Max(4, _capacity * 2);
_items = Allocators.Default.Allocate<int>((uint)_capacity);
Span<int> newSpan = Span;
var newSpan = Span;
oldSpan.CopyTo(newSpan);
}
@@ -1,6 +1,6 @@
namespace ARMeilleure.CodeGen.Unwinding
{
public struct UnwindInfo
struct UnwindInfo
{
public const int Stride = 4; // Bytes.
@@ -1,6 +1,6 @@
namespace ARMeilleure.CodeGen.Unwinding
{
public enum UnwindPseudoOp
enum UnwindPseudoOp
{
PushReg = 0,
SetFrame = 1,
@@ -1,6 +1,6 @@
namespace ARMeilleure.CodeGen.Unwinding
{
public struct UnwindPushEntry
struct UnwindPushEntry
{
public const int Stride = 16; // Bytes.
+7 -8
View File
@@ -1,6 +1,5 @@
using ARMeilleure.CodeGen.Linking;
using ARMeilleure.IntermediateRepresentation;
using Microsoft.IO;
using Ryujinx.Common.Memory;
using System;
using System.Collections.Generic;
@@ -1325,8 +1324,8 @@ namespace ARMeilleure.CodeGen.X86
public (byte[], RelocInfo) GetCode()
{
Span<Jump> jumps = CollectionsMarshal.AsSpan(_jumps);
Span<Reloc> relocs = CollectionsMarshal.AsSpan(_relocs);
var jumps = CollectionsMarshal.AsSpan(_jumps);
var relocs = CollectionsMarshal.AsSpan(_relocs);
// Write jump relative offsets.
bool modified;
@@ -1411,13 +1410,13 @@ namespace ARMeilleure.CodeGen.X86
// Write the code, ignoring the dummy bytes after jumps, into a new stream.
_stream.Seek(0, SeekOrigin.Begin);
using RecyclableMemoryStream codeStream = MemoryStreamManager.Shared.GetStream();
Assembler assembler = new(codeStream, HasRelocs);
using var codeStream = MemoryStreamManager.Shared.GetStream();
var assembler = new Assembler(codeStream, HasRelocs);
bool hasRelocs = HasRelocs;
int relocIndex = 0;
int relocOffset = 0;
RelocEntry[] relocEntries = hasRelocs
var relocEntries = hasRelocs
? new RelocEntry[relocs.Length]
: Array.Empty<RelocEntry>();
@@ -1470,8 +1469,8 @@ namespace ARMeilleure.CodeGen.X86
_stream.CopyTo(codeStream);
byte[] code = codeStream.ToArray();
RelocInfo relocInfo = new(relocEntries);
var code = codeStream.ToArray();
var relocInfo = new RelocInfo(relocEntries);
return (code, relocInfo);
}
+2 -2
View File
@@ -622,7 +622,7 @@ namespace ARMeilleure.CodeGen.X86
Debug.Assert(comp.Kind == OperandKind.Constant);
X86Condition cond = ((Comparison)comp.AsInt32()).ToX86Condition();
var cond = ((Comparison)comp.AsInt32()).ToX86Condition();
GenerateCompareCommon(context, operation);
@@ -660,7 +660,7 @@ namespace ARMeilleure.CodeGen.X86
Debug.Assert(dest.Type == OperandType.I32);
Debug.Assert(comp.Kind == OperandKind.Constant);
X86Condition cond = ((Comparison)comp.AsInt32()).ToX86Condition();
var cond = ((Comparison)comp.AsInt32()).ToX86Condition();
GenerateCompareCommon(context, operation);
@@ -53,7 +53,7 @@ namespace ARMeilleure.CodeGen.X86
memGetXcr0.Reprotect(0, (ulong)asmGetXcr0.Length, MemoryPermission.ReadAndExecute);
GetXcr0 fGetXcr0 = Marshal.GetDelegateForFunctionPointer<GetXcr0>(memGetXcr0.Pointer);
var fGetXcr0 = Marshal.GetDelegateForFunctionPointer<GetXcr0>(memGetXcr0.Pointer);
return fGetXcr0();
}
+1 -1
View File
@@ -759,7 +759,7 @@ namespace ARMeilleure.CodeGen.X86
Debug.Assert(comp.Kind == OperandKind.Constant);
Comparison compType = (Comparison)comp.AsInt32();
var compType = (Comparison)comp.AsInt32();
return compType is Comparison.Equal or Comparison.NotEqual;
}
+2 -2
View File
@@ -13,13 +13,13 @@ namespace ARMeilleure.CodeGen.X86
public static void RunPass(ControlFlowGraph cfg)
{
Dictionary<ulong, Operand> constants = new();
var constants = new Dictionary<ulong, Operand>();
Operand GetConstantCopy(BasicBlock block, Operation operation, Operand source)
{
// If the constant has many uses, we also force a new constant mov to be added, in order
// to avoid overflow of the counts field (that is limited to 16 bits).
if (!constants.TryGetValue(source.Value, out Operand constant) || constant.UsesCount > MaxConstantUses)
if (!constants.TryGetValue(source.Value, out var constant) || constant.UsesCount > MaxConstantUses)
{
constant = Local(source.Type);
+32 -8
View File
@@ -20,21 +20,45 @@ namespace ARMeilleure.Common
new( 1, 6)
];
private static readonly AddressTableLevel[] _levels64BitMono =
private static readonly AddressTableLevel[] _levels64BitSparseTiny =
[
new( 2, 37)
new( 11, 28),
new( 2, 9)
];
private static readonly AddressTableLevel[] _levels32BitMono =
private static readonly AddressTableLevel[] _levels32BitSparseTiny =
[
new( 1, 31)
new( 10, 22),
new( 1, 9)
];
public static AddressTableLevel[] GetArmPreset(bool for64Bits, bool mono)
private static readonly AddressTableLevel[] _levels64BitSparseGiant =
[
new( 38, 1),
new( 2, 36)
];
private static readonly AddressTableLevel[] _levels32BitSparseGiant =
[
new( 31, 1),
new( 1, 30)
];
//high power will run worse on DDR3 systems and some DDR4 systems due to the higher ram utilization
//low power will never run worse than non-sparse, but for most systems it won't be necessary
//high power is always used, but I've left low power in here for future reference
public static AddressTableLevel[] GetArmPreset(bool for64Bits, bool sparse, bool lowPower = false)
{
if (mono)
if (sparse)
{
return for64Bits ? _levels64BitMono : _levels32BitMono;
if (lowPower)
{
return for64Bits ? _levels64BitSparseTiny : _levels32BitSparseTiny;
}
else
{
return for64Bits ? _levels64BitSparseGiant : _levels32BitSparseGiant;
}
}
else
{
@@ -1,8 +0,0 @@
namespace ARMeilleure.Common
{
public enum AddressTableType
{
Default,
Sparse
}
}
+3 -3
View File
@@ -129,13 +129,13 @@ namespace ARMeilleure.Common
if (count > _count)
{
long* oldMask = _masks;
Span<long> oldSpan = new(_masks, _count);
var oldMask = _masks;
var oldSpan = new Span<long>(_masks, _count);
_masks = _allocator.Allocate<long>((uint)count);
_count = count;
Span<long> newSpan = new(_masks, _count);
var newSpan = new Span<long>(_masks, _count);
oldSpan.CopyTo(newSpan);
newSpan[oldSpan.Length..].Clear();
-9
View File
@@ -53,14 +53,5 @@ namespace ARMeilleure.Common
{
return (bits >> shift) | (bits << (size - shift));
}
public static T AlignUp<T>(T value, T size) where T : IBinaryInteger<T>
=> (value + (size - T.One)) & -size;
public static T AlignDown<T>(T value, T size) where T : IBinaryInteger<T>
=> value & -size;
public static T DivRoundUp<T>(T value, T dividend) where T : IBinaryInteger<T>
=> (value + (dividend - T.One)) / dividend;
}
}
+4 -4
View File
@@ -63,7 +63,7 @@ namespace ARMeilleure.Common
}
int index = _freeHint++;
Span<TEntry> page = GetPage(index);
var page = GetPage(index);
_allocated.Set(index);
@@ -111,7 +111,7 @@ namespace ARMeilleure.Common
throw new ArgumentException("Entry at the specified index was not allocated", nameof(index));
}
Span<TEntry> page = GetPage(index);
var page = GetPage(index);
return ref GetValue(page, index);
}
@@ -136,7 +136,7 @@ namespace ARMeilleure.Common
/// <returns>Page for the specified <see cref="index"/></returns>
private unsafe Span<TEntry> GetPage(int index)
{
int pageIndex = (int)((uint)(index & ~(_pageCapacity - 1)) >> _pageLogCapacity);
var pageIndex = (int)((uint)(index & ~(_pageCapacity - 1)) >> _pageLogCapacity);
if (!_pages.TryGetValue(pageIndex, out nint page))
{
@@ -168,7 +168,7 @@ namespace ARMeilleure.Common
{
_allocated.Dispose();
foreach (IntPtr page in _pages.Values)
foreach (var page in _pages.Values)
{
NativeAllocator.Instance.Free((void*)page);
}
+4 -10
View File
@@ -5,10 +5,11 @@ namespace ARMeilleure.Common
public interface IAddressTable<TEntry> : IDisposable where TEntry : unmanaged
{
/// <summary>
/// Gets the <see cref="AddressTableType"/> of the <see cref="IAddressTable{TEntry}"/> instance.
/// True if the address table's bottom level is sparsely mapped.
/// This also ensures the second bottom level is filled with a dummy page rather than 0.
/// </summary>
AddressTableType TableType { get; }
bool Sparse { get; }
/// <summary>
/// Gets the bits used by the <see cref="Levels"/> of the <see cref="IAddressTable{TEntry}"/> instance.
/// </summary>
@@ -30,13 +31,6 @@ namespace ARMeilleure.Common
/// <exception cref="ObjectDisposedException"><see cref="EntryTable{TEntry}"/> instance was disposed</exception>
nint Base { get; }
/// <summary>
/// Signal that the given code range exists.
/// </summary>
/// <param name="address">Guest code range address</param>
/// <param name="size">Guest code range size</param>
void SignalCodeRange(ulong address, ulong size);
/// <summary>
/// Determines if the specified <paramref name="address"/> is in the range of the
/// <see cref="IAddressTable{TEntry}"/>.
@@ -9,7 +9,7 @@ namespace ARMeilleure.Decoders
public OpCode32SimdDupElem(InstDescriptor inst, ulong address, int opCode, bool isThumb) : base(inst, address, opCode, isThumb)
{
int opc = (opCode >> 16) & 0xf;
var opc = (opCode >> 16) & 0xf;
if ((opc & 0b1) == 1)
{
@@ -21,7 +21,7 @@ namespace ARMeilleure.Decoders
Op = (opCode >> 20) & 0x1;
U = ((opCode >> 23) & 1) != 0;
int opc = (((opCode >> 23) & 1) << 4) | (((opCode >> 21) & 0x3) << 2) | ((opCode >> 5) & 0x3);
var opc = (((opCode >> 23) & 1) << 4) | (((opCode >> 21) & 0x3) << 2) | ((opCode >> 5) & 0x3);
if ((opc & 0b01000) == 0b01000)
{
+1 -1
View File
@@ -20,7 +20,7 @@ namespace ARMeilleure.Decoders
}
else if (DataOp == DataOp.Logical)
{
DecoderHelper.BitMask bm = DecoderHelper.DecodeBitMask(opCode, true);
var bm = DecoderHelper.DecodeBitMask(opCode, true);
if (bm.IsUndefined)
{
+1 -1
View File
@@ -11,7 +11,7 @@ namespace ARMeilleure.Decoders
public OpCodeBfm(InstDescriptor inst, ulong address, int opCode) : base(inst, address, opCode)
{
DecoderHelper.BitMask bm = DecoderHelper.DecodeBitMask(opCode, false);
var bm = DecoderHelper.DecodeBitMask(opCode, false);
if (bm.IsUndefined)
{
@@ -69,7 +69,7 @@ namespace ARMeilleure.Decoders.Optimizations
}
}
List<Block> newBlocks = new(blocks.Count);
var newBlocks = new List<Block>(blocks.Count);
// Finally, rebuild decoded block list, ignoring blocks outside the contiguous range.
for (int i = 0; i < blocks.Count; i++)
+2 -2
View File
@@ -141,7 +141,7 @@ namespace ARMeilleure.Diagnostics
break;
case OperandKind.Memory:
MemoryOperand memOp = operand.GetMemory();
var memOp = operand.GetMemory();
_builder.Append('[');
@@ -284,7 +284,7 @@ namespace ARMeilleure.Diagnostics
public static string GetDump(ControlFlowGraph cfg)
{
IRDumper dumper = new(1);
var dumper = new IRDumper(1);
for (BasicBlock block = cfg.Blocks.First; block != null; block = block.ListNext)
{
@@ -415,7 +415,7 @@ namespace ARMeilleure.Instructions
{
IOpCode32AluBf op = (IOpCode32AluBf)context.CurrOp;
int msb = op.Lsb + op.Msb; // For this instruction, the msb is actually a width.
var msb = op.Lsb + op.Msb; // For this instruction, the msb is actually a width.
Operand n = GetIntA32(context, op.Rn);
Operand res = context.ShiftRightSI(context.ShiftLeft(n, Const(31 - msb)), Const(31 - op.Msb));
@@ -547,7 +547,7 @@ namespace ARMeilleure.Instructions
{
IOpCode32AluBf op = (IOpCode32AluBf)context.CurrOp;
int msb = op.Lsb + op.Msb; // For this instruction, the msb is actually a width.
var msb = op.Lsb + op.Msb; // For this instruction, the msb is actually a width.
Operand n = GetIntA32(context, op.Rn);
Operand res = context.ShiftRightUI(context.ShiftLeft(n, Const(31 - msb)), Const(31 - op.Msb));
@@ -1,11 +1,10 @@
using ARMeilleure.CodeGen.Linking;
using ARMeilleure.Common;
using ARMeilleure.Decoders;
using ARMeilleure.IntermediateRepresentation;
using ARMeilleure.State;
using ARMeilleure.Translation;
using ARMeilleure.Translation.PTC;
using System.Linq;
using static ARMeilleure.Instructions.InstEmitHelper;
using static ARMeilleure.IntermediateRepresentation.Operand.Factory;
@@ -224,7 +223,7 @@ namespace ARMeilleure.Instructions
Operand hostAddress;
IAddressTable<ulong> table = context.FunctionTable;
var table = context.FunctionTable;
// If address is mapped onto the function table, we can skip the table walk. Otherwise we fallback
// onto the dispatch stub.
@@ -236,9 +235,9 @@ namespace ARMeilleure.Instructions
hostAddress = context.Load(OperandType.I64, hostAddressAddr);
}
else if (table.TableType == AddressTableType.Sparse)
else if (table.Sparse)
{
// Inline table lookup. Only enabled when the sparse function table is enabled with 1 level.
// Inline table lookup. Only enabled when the sparse function table is enabled with 2 levels.
// Deliberately attempts to avoid branches.
Operand tableBase = !context.HasPtc ?
@@ -247,21 +246,24 @@ namespace ARMeilleure.Instructions
hostAddress = tableBase;
AddressTableLevel level = table.Levels.Last();
int clearBits = 64 - (level.Index + level.Length);
for (int i = 0; i < table.Levels.Length; i++)
{
var level = table.Levels[i];
int clearBits = 64 - (level.Index + level.Length);
Operand index = context.ShiftLeft(
context.ShiftRightUI(context.ShiftLeft(guestAddress, Const(clearBits)), Const(clearBits + level.Index)),
Const(3)
);
Operand index = context.ShiftLeft(
context.ShiftRightUI(context.ShiftLeft(guestAddress, Const(clearBits)), Const(clearBits + level.Index)),
Const(3)
);
hostAddress = context.Load(OperandType.I64, context.Add(hostAddress, index));
hostAddress = context.Load(OperandType.I64, context.Add(hostAddress, index));
}
}
else
{
hostAddress = !context.HasPtc ?
Const(context.Stubs.DispatchStub) :
Const(context.Stubs.DispatchStub, Ptc.DispatchStubSymbol);
Const((long)context.Stubs.DispatchStub) :
Const((long)context.Stubs.DispatchStub, Ptc.DispatchStubSymbol);
}
if (isJump)
@@ -143,8 +143,8 @@ namespace ARMeilleure.Instructions
Operand address = context.Copy(GetIntA32(context, op.Rn));
bool exclusive = (accType & AccessType.Exclusive) != 0;
bool ordered = (accType & AccessType.Ordered) != 0;
var exclusive = (accType & AccessType.Exclusive) != 0;
var ordered = (accType & AccessType.Ordered) != 0;
if ((accType & AccessType.Load) != 0)
{
@@ -406,7 +406,7 @@ namespace ARMeilleure.Instructions
{
Operand res = EmitSoftFloatCall(context, nameof(SoftFloat32.FPSub), op1, op2);
return EmitUnaryMathCall(context, nameof(Math.Abs), res);
return EmitUnaryMathCall(context, nameof(MathHelper.Abs), res);
});
}
}
@@ -451,7 +451,7 @@ namespace ARMeilleure.Instructions
{
Operand res = EmitSoftFloatCall(context, nameof(SoftFloat32.FPSub), op1, op2);
return EmitUnaryMathCall(context, nameof(Math.Abs), res);
return EmitUnaryMathCall(context, nameof(MathHelper.Abs), res);
});
}
}
@@ -483,7 +483,7 @@ namespace ARMeilleure.Instructions
{
EmitScalarUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Abs), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Abs), op1);
});
}
}
@@ -522,7 +522,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Abs), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Abs), op1);
});
}
}
@@ -2246,7 +2246,7 @@ namespace ARMeilleure.Instructions
{
EmitScalarUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Floor), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1);
});
}
}
@@ -2265,7 +2265,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Floor), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1);
});
}
}
@@ -2322,7 +2322,7 @@ namespace ARMeilleure.Instructions
{
EmitScalarUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Ceiling), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op1);
});
}
}
@@ -2341,7 +2341,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Ceiling), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op1);
});
}
}
@@ -2390,7 +2390,7 @@ namespace ARMeilleure.Instructions
{
EmitScalarUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Truncate), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Truncate), op1);
});
}
}
@@ -2409,7 +2409,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Truncate), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Truncate), op1);
});
}
}
@@ -43,7 +43,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitScalarUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Abs), op1));
EmitScalarUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Abs), op1));
}
}
@@ -66,7 +66,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitVectorUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Abs), op1));
EmitVectorUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Abs), op1));
}
}
else
@@ -726,8 +726,8 @@ namespace ARMeilleure.Instructions
if (absolute)
{
ne = EmitUnaryMathCall(context, nameof(Math.Abs), ne);
me = EmitUnaryMathCall(context, nameof(Math.Abs), me);
ne = EmitUnaryMathCall(context, nameof(MathHelper.Abs), ne);
me = EmitUnaryMathCall(context, nameof(MathHelper.Abs), me);
}
Operand e = EmitSoftFloatCall(context, name, ne, me);
@@ -229,7 +229,7 @@ namespace ARMeilleure.Instructions
private static Operand ZerosOrOnes(ArmEmitterContext context, Operand fromBool, OperandType baseType)
{
Operand ones = (baseType == OperandType.I64) ? Const(-1L) : Const(-1);
var ones = (baseType == OperandType.I64) ? Const(-1L) : Const(-1);
return context.ConditionalSelect(fromBool, ones, Const(baseType, 0L));
}
@@ -333,7 +333,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt_s_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Floor), op1));
EmitFcvt_s_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1));
}
}
@@ -349,7 +349,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Floor), op1), signed: true, scalar: false);
EmitFcvt(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1), signed: true, scalar: false);
}
}
@@ -365,7 +365,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt_u_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Floor), op1));
EmitFcvt_u_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1));
}
}
@@ -538,7 +538,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt_s_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Ceiling), op1));
EmitFcvt_s_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op1));
}
}
@@ -554,7 +554,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt_u_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Ceiling), op1));
EmitFcvt_u_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op1));
}
}
@@ -118,15 +118,15 @@ namespace ARMeilleure.Instructions
{
OpCode32SimdCvtFFixed op = (OpCode32SimdCvtFFixed)context.CurrOp;
bool toFixed = op.Opc == 1;
var toFixed = op.Opc == 1;
int fracBits = op.Fbits;
bool unsigned = op.U;
var unsigned = op.U;
if (toFixed) // F32 to S32 or U32 (fixed)
{
EmitVectorUnaryOpF32(context, (op1) =>
{
Operand scaledValue = context.Multiply(op1, ConstF(MathF.Pow(2f, fracBits)));
var scaledValue = context.Multiply(op1, ConstF(MathF.Pow(2f, fracBits)));
MethodInfo info = unsigned ? typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF32ToU32)) : typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF32ToS32));
return context.Call(info, scaledValue);
@@ -136,7 +136,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpI32(context, (op1) =>
{
Operand floatValue = unsigned ? context.ConvertToFPUI(OperandType.FP32, op1) : context.ConvertToFP(OperandType.FP32, op1);
var floatValue = unsigned ? context.ConvertToFPUI(OperandType.FP32, op1) : context.ConvertToFP(OperandType.FP32, op1);
return context.Multiply(floatValue, ConstF(1f / MathF.Pow(2f, fracBits)));
}, !unsigned);
@@ -357,10 +357,10 @@ namespace ARMeilleure.Instructions
toConvert = EmitRoundMathCall(context, MidpointRounding.ToEven, toConvert);
break;
case 0b10: // Towards positive infinity
toConvert = EmitUnaryMathCall(context, nameof(Math.Ceiling), toConvert);
toConvert = EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), toConvert);
break;
case 0b11: // Towards negative infinity
toConvert = EmitUnaryMathCall(context, nameof(Math.Floor), toConvert);
toConvert = EmitUnaryMathCall(context, nameof(MathHelper.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(Math.Ceiling), toConvert);
toConvert = EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), toConvert);
break;
case 0b11: // Towards negative infinity
toConvert = EmitUnaryMathCall(context, nameof(Math.Floor), toConvert);
toConvert = EmitUnaryMathCall(context, nameof(MathHelper.Floor), toConvert);
break;
}
@@ -534,7 +534,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitVectorUnaryOpF32(context, (m) => EmitUnaryMathCall(context, nameof(Math.Floor), m));
EmitVectorUnaryOpF32(context, (m) => EmitUnaryMathCall(context, nameof(MathHelper.Floor), m));
}
}
@@ -574,7 +574,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitVectorUnaryOpF32(context, (m) => EmitUnaryMathCall(context, nameof(Math.Ceiling), m));
EmitVectorUnaryOpF32(context, (m) => EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), m));
}
}
@@ -613,7 +613,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitScalarUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Truncate), op1));
EmitScalarUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Truncate), op1));
}
}
@@ -460,8 +460,8 @@ namespace ARMeilleure.Instructions
IOpCodeSimd op = (IOpCodeSimd)context.CurrOp;
MethodInfo info = (op.Size & 1) == 0
? typeof(MathF).GetMethod(name, [typeof(float)])
: typeof(Math).GetMethod(name, [typeof(double)]);
? typeof(MathHelperF).GetMethod(name, [typeof(float)])
: typeof(MathHelper).GetMethod(name, [typeof(double)]);
return context.Call(info, n);
}
@@ -470,11 +470,11 @@ namespace ARMeilleure.Instructions
{
IOpCodeSimd op = (IOpCodeSimd)context.CurrOp;
string name = nameof(Math.Round);
string name = nameof(MathHelper.Round);
MethodInfo info = (op.Size & 1) == 0
? typeof(MathF).GetMethod(name, [typeof(float), typeof(MidpointRounding)])
: typeof(Math).GetMethod(name, [typeof(double), typeof(MidpointRounding)]);
? typeof(MathHelperF).GetMethod(name, [typeof(float), typeof(int)])
: typeof(MathHelper).GetMethod(name, [typeof(double), typeof(int)]);
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(Math.Ceiling), op));
context.Copy(res, EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op));
context.Branch(lblEnd);
context.MarkLabel(lbl2);
context.BranchIf(lbl3, rMode, rM, Comparison.NotEqual);
context.Copy(res, EmitUnaryMathCall(context, nameof(Math.Floor), op));
context.Copy(res, EmitUnaryMathCall(context, nameof(MathHelper.Floor), op));
context.Branch(lblEnd);
context.MarkLabel(lbl3);
context.Copy(res, EmitUnaryMathCall(context, nameof(Math.Truncate), op));
context.Copy(res, EmitUnaryMathCall(context, nameof(MathHelper.Truncate), op));
context.Branch(lblEnd);
context.MarkLabel(lblEnd);
@@ -87,7 +87,7 @@ namespace ARMeilleure.Instructions
{
if (op.Replicate)
{
int regs = (count > 1) ? 1 : op.Increment;
var regs = (count > 1) ? 1 : op.Increment;
for (int reg = 0; reg < regs; reg++)
{
int dreg = reg + d;
@@ -0,0 +1,71 @@
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);
}
}
}
@@ -2,6 +2,7 @@ using ARMeilleure.Memory;
using ARMeilleure.State;
using ARMeilleure.Translation;
using System;
using System.Runtime.InteropServices;
namespace ARMeilleure.Instructions
{
@@ -34,6 +35,7 @@ namespace ARMeilleure.Instructions
Context = null;
}
[UnmanagedCallersOnly]
public static void Break(ulong address, int imm)
{
Statistics.PauseTimer();
@@ -43,6 +45,7 @@ namespace ARMeilleure.Instructions
Statistics.ResumeTimer();
}
[UnmanagedCallersOnly]
public static void SupervisorCall(ulong address, int imm)
{
Statistics.PauseTimer();
@@ -52,6 +55,7 @@ namespace ARMeilleure.Instructions
Statistics.ResumeTimer();
}
[UnmanagedCallersOnly]
public static void Undefined(ulong address, int opCode)
{
Statistics.PauseTimer();
@@ -62,26 +66,31 @@ 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;
@@ -89,26 +98,31 @@ 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);
@@ -116,47 +130,56 @@ 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);
}
public static void SignalMemoryTracking(ulong address, ulong size, bool write)
[UnmanagedCallersOnly]
public static void SignalMemoryTracking(ulong address, ulong size, byte write)
{
GetMemoryManager().SignalMemoryTracking(address, size, write);
GetMemoryManager().SignalMemoryTracking(address, size, write == 1);
}
[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);
@@ -164,12 +187,14 @@ namespace ARMeilleure.Instructions
return (ulong)function.FuncPointer.ToInt64();
}
[UnmanagedCallersOnly]
public static void InvalidateCacheLine(ulong address)
{
Context.Translator.InvalidateJitCacheRegion(address, InstEmit.DczSizeInBytes);
}
public static bool CheckSynchronization()
[UnmanagedCallersOnly]
public static byte CheckSynchronization()
{
Statistics.PauseTimer();
@@ -179,7 +204,7 @@ namespace ARMeilleure.Instructions
Statistics.ResumeTimer();
return context.Running;
return (byte)(context.Running ? 1 : 0);
}
public static ExecutionContext GetContext()
@@ -1,11 +1,13 @@
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)
@@ -48,6 +50,7 @@ namespace ARMeilleure.Instructions
}
}
[UnmanagedCallersOnly]
public static ulong UnsignedShrImm64(ulong value, long roundConst, int shift)
{
if (roundConst == 0L)
@@ -92,6 +95,7 @@ namespace ARMeilleure.Instructions
#endregion
#region "Saturation"
[UnmanagedCallersOnly]
public static int SatF32ToS32(float value)
{
if (float.IsNaN(value))
@@ -103,6 +107,7 @@ namespace ARMeilleure.Instructions
value <= int.MinValue ? int.MinValue : (int)value;
}
[UnmanagedCallersOnly]
public static long SatF32ToS64(float value)
{
if (float.IsNaN(value))
@@ -114,6 +119,7 @@ namespace ARMeilleure.Instructions
value <= long.MinValue ? long.MinValue : (long)value;
}
[UnmanagedCallersOnly]
public static uint SatF32ToU32(float value)
{
if (float.IsNaN(value))
@@ -125,6 +131,7 @@ namespace ARMeilleure.Instructions
value <= uint.MinValue ? uint.MinValue : (uint)value;
}
[UnmanagedCallersOnly]
public static ulong SatF32ToU64(float value)
{
if (float.IsNaN(value))
@@ -136,6 +143,7 @@ namespace ARMeilleure.Instructions
value <= ulong.MinValue ? ulong.MinValue : (ulong)value;
}
[UnmanagedCallersOnly]
public static int SatF64ToS32(double value)
{
if (double.IsNaN(value))
@@ -147,6 +155,7 @@ namespace ARMeilleure.Instructions
value <= int.MinValue ? int.MinValue : (int)value;
}
[UnmanagedCallersOnly]
public static long SatF64ToS64(double value)
{
if (double.IsNaN(value))
@@ -158,6 +167,7 @@ namespace ARMeilleure.Instructions
value <= long.MinValue ? long.MinValue : (long)value;
}
[UnmanagedCallersOnly]
public static uint SatF64ToU32(double value)
{
if (double.IsNaN(value))
@@ -169,6 +179,7 @@ namespace ARMeilleure.Instructions
value <= uint.MinValue ? uint.MinValue : (uint)value;
}
[UnmanagedCallersOnly]
public static ulong SatF64ToU64(double value)
{
if (double.IsNaN(value))
@@ -182,6 +193,7 @@ 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;
@@ -201,6 +213,7 @@ 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)
@@ -224,41 +237,49 @@ 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);
@@ -300,14 +321,22 @@ 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)
@@ -358,21 +387,25 @@ 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);
@@ -380,6 +413,7 @@ 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++)
@@ -400,11 +434,13 @@ 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++)
@@ -425,6 +461,7 @@ 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++)
@@ -445,6 +482,7 @@ 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);
@@ -455,6 +493,7 @@ 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);
@@ -499,16 +538,19 @@ 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();
@@ -527,6 +569,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static V128 Sha256SchedulePart2(V128 w0_3, V128 w8_11, V128 w12_15)
{
V128 result = new();
@@ -628,6 +671,7 @@ namespace ARMeilleure.Instructions
}
#endregion
[UnmanagedCallersOnly]
public static V128 PolynomialMult64_128(ulong op1, ulong op2)
{
V128 result = V128.Zero;
+297 -88
View File
@@ -1,6 +1,7 @@
using ARMeilleure.State;
using System;
using System.Diagnostics;
using System.Runtime.InteropServices;
namespace ARMeilleure.Instructions
{
@@ -312,6 +313,7 @@ namespace ARMeilleure.Instructions
static class SoftFloat16_32
{
[UnmanagedCallersOnly]
public static float FPConvert(ushort valueBits)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -487,6 +489,7 @@ namespace ARMeilleure.Instructions
static class SoftFloat16_64
{
[UnmanagedCallersOnly]
public static double FPConvert(ushort valueBits)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -662,6 +665,7 @@ namespace ARMeilleure.Instructions
static class SoftFloat32_16
{
[UnmanagedCallersOnly]
public static ushort FPConvert(float value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -781,12 +785,19 @@ namespace ARMeilleure.Instructions
static class SoftFloat32
{
[UnmanagedCallersOnly]
public static float FPAdd(float value1, float value2)
{
return FPAddFpscr(value1, value2, false);
return FPAddFpscrImpl(value1, value2, false);
}
public static float FPAddFpscr(float value1, float value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -837,7 +848,8 @@ namespace ARMeilleure.Instructions
return result;
}
public static int FPCompare(float value1, float value2, bool signalNaNs)
[UnmanagedCallersOnly]
public static int FPCompare(float value1, float value2, byte signalNaNs)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = context.Fpcr;
@@ -851,7 +863,7 @@ namespace ARMeilleure.Instructions
{
result = 0b0011;
if (type1 == FPType.SNaN || type2 == FPType.SNaN || signalNaNs)
if (type1 == FPType.SNaN || type2 == FPType.SNaN || signalNaNs == 1)
{
SoftFloat.FPProcessException(FPException.InvalidOp, context, fpcr);
}
@@ -875,12 +887,13 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPCompareEQ(float value1, float value2)
{
return FPCompareEQFpscr(value1, value2, false);
return FPCompareEQFpscrImpl(value1, value2, false);
}
public static float FPCompareEQFpscr(float value1, float value2, bool standardFpscr)
private static float FPCompareEQFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -907,12 +920,25 @@ namespace ARMeilleure.Instructions
return result;
}
public static float FPCompareGE(float value1, float value2)
[UnmanagedCallersOnly]
public static float FPCompareEQFpscr(float value1, float value2, byte standardFpscr)
{
return FPCompareGEFpscr(value1, value2, false);
return FPCompareEQFpscrImpl(value1, value2, standardFpscr == 1);
}
public static float FPCompareGEFpscr(float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPCompareGE(float value1, float value2)
{
return FPCompareGEFpscrImpl(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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -936,12 +962,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPCompareGT(float value1, float value2)
{
return FPCompareGTFpscr(value1, value2, false);
return FPCompareGTFpscrImpl(value1, value2, false);
}
public static float FPCompareGTFpscr(float value1, float value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -965,26 +998,31 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPCompareLE(float value1, float value2)
{
return FPCompareGE(value2, value1);
return FPCompareGEFpscrImpl(value2, value1, false);
}
[UnmanagedCallersOnly]
public static float FPCompareLT(float value1, float value2)
{
return FPCompareGT(value2, value1);
return FPCompareGTFpscrImpl(value2, value1, false);
}
public static float FPCompareLEFpscr(float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPCompareLEFpscr(float value1, float value2, byte standardFpscr)
{
return FPCompareGEFpscr(value2, value1, standardFpscr);
return FPCompareGEFpscrImpl(value2, value1, standardFpscr == 1);
}
public static float FPCompareLTFpscr(float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPCompareLTFpscr(float value1, float value2, byte standardFpscr)
{
return FPCompareGTFpscr(value2, value1, standardFpscr);
return FPCompareGEFpscrImpl(value2, value1, standardFpscr == 1);
}
[UnmanagedCallersOnly]
public static float FPDiv(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1037,12 +1075,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMax(float value1, float value2)
{
return FPMaxFpscr(value1, value2, false);
return FPMaxFpscrImpl(value1, value2, false);
}
public static float FPMaxFpscr(float value1, float value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1103,12 +1148,13 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMaxNum(float value1, float value2)
{
return FPMaxNumFpscr(value1, value2, false);
return FPMaxNumFpscrImpl(value1, value2, false);
}
public static float FPMaxNumFpscr(float value1, float value2, bool standardFpscr)
private static float FPMaxNumFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1125,15 +1171,28 @@ namespace ARMeilleure.Instructions
value2 = FPInfinity(true);
}
return FPMaxFpscr(value1, value2, standardFpscr);
return FPMaxFpscrImpl(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 FPMinFpscr(value1, value2, false);
return FPMinFpscrImpl(value1, value2, false);
}
public static float FPMinFpscr(float value1, float value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1194,12 +1253,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMinNum(float value1, float value2)
{
return FPMinNumFpscr(value1, value2, false);
return FPMinNumFpscrImpl(value1, value2, false);
}
public static float FPMinNumFpscr(float value1, float value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1216,15 +1282,22 @@ namespace ARMeilleure.Instructions
value2 = FPInfinity(false);
}
return FPMinFpscr(value1, value2, standardFpscr);
return FPMinFpscrImpl(value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static float FPMul(float value1, float value2)
{
return FPMulFpscr(value1, value2, false);
return FPMulFpscrImpl(value1, value2, false);
}
public static float FPMulFpscr(float value1, float value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1271,12 +1344,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMulAdd(float valueA, float value1, float value2)
{
return FPMulAddFpscr(valueA, value1, value2, false);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
public static float FPMulAddFpscr(float valueA, float value1, float value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1342,20 +1422,23 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMulSub(float valueA, float value1, float value2)
{
value1 = value1.FPNeg();
return FPMulAdd(valueA, value1, value2);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
public static float FPMulSubFpscr(float valueA, float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPMulSubFpscr(float valueA, float value1, float value2, byte standardFpscr)
{
value1 = value1.FPNeg();
return FPMulAddFpscr(valueA, value1, value2, standardFpscr);
return FPMulAddFpscrImpl(valueA, value1, value2, standardFpscr == 1);
}
[UnmanagedCallersOnly]
public static float FPMulX(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1401,27 +1484,36 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPNegMulAdd(float valueA, float value1, float value2)
{
valueA = valueA.FPNeg();
value1 = value1.FPNeg();
return FPMulAdd(valueA, value1, value2);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPNegMulSub(float valueA, float value1, float value2)
{
valueA = valueA.FPNeg();
return FPMulAdd(valueA, value1, value2);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPRecipEstimate(float value)
{
return FPRecipEstimateFpscr(value, false);
return FPRecipEstimateFpscrImpl(value, false);
}
public static float FPRecipEstimateFpscr(float value, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPRecipEstimateFpscr(float value, byte standardFpscr)
{
return FPRecipEstimateFpscrImpl(value, standardFpscr == 1);
}
private static float FPRecipEstimateFpscrImpl(float value, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1446,7 +1538,7 @@ namespace ARMeilleure.Instructions
}
else if (MathF.Abs(value) < MathF.Pow(2f, -128))
{
bool overflowToInf = fpcr.GetRoundingMode() switch
var overflowToInf = fpcr.GetRoundingMode() switch
{
FPRoundingMode.ToNearest => true,
FPRoundingMode.TowardsPlusInfinity => !sign,
@@ -1508,6 +1600,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRecipStep(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1533,15 +1626,16 @@ namespace ARMeilleure.Instructions
}
else
{
product = FPMulFpscr(value1, value2, true);
product = FPMulFpscrImpl(value1, value2, true);
}
result = FPSubFpscr(FPTwo(false), product, true);
result = FPSubFpscrImpl(FPTwo(false), product, true);
}
return result;
}
[UnmanagedCallersOnly]
public static float FPRecipStepFused(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1585,6 +1679,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRecpX(float value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1610,12 +1705,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRSqrtEstimate(float value)
{
return FPRSqrtEstimateFpscr(value, false);
return FPRSqrtEstimateFpscrImpl(value, false);
}
public static float FPRSqrtEstimateFpscr(float value, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPRSqrtEstimateFpscr(float value, byte standardFpscr)
{
return FPRSqrtEstimateFpscrImpl(value, standardFpscr == 1);
}
private static float FPRSqrtEstimateFpscrImpl(float value, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1729,6 +1831,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRSqrtStep(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1754,7 +1857,7 @@ namespace ARMeilleure.Instructions
}
else
{
product = FPMulFpscr(value1, value2, true);
product = FPMulFpscrImpl(value1, value2, true);
}
result = FPHalvedSub(FPThree(false), product, context, fpcr);
@@ -1763,6 +1866,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRSqrtStepFused(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1806,6 +1910,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPSqrt(float value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1848,12 +1953,13 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPSub(float value1, float value2)
{
return FPSubFpscr(value1, value2, false);
return FPSubFpscrImpl(value1, value2, false);
}
public static float FPSubFpscr(float value1, float value2, bool standardFpscr)
private static float FPSubFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2094,6 +2200,7 @@ namespace ARMeilleure.Instructions
static class SoftFloat64_16
{
[UnmanagedCallersOnly]
public static ushort FPConvert(double value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -2213,12 +2320,19 @@ namespace ARMeilleure.Instructions
static class SoftFloat64
{
[UnmanagedCallersOnly]
public static double FPAdd(double value1, double value2)
{
return FPAddFpscr(value1, value2, false);
return FPAddFpscrImpl(value1, value2, false);
}
public static double FPAddFpscr(double value1, double value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2269,7 +2383,8 @@ namespace ARMeilleure.Instructions
return result;
}
public static int FPCompare(double value1, double value2, bool signalNaNs)
[UnmanagedCallersOnly]
public static int FPCompare(double value1, double value2, byte signalNaNs)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = context.Fpcr;
@@ -2283,7 +2398,7 @@ namespace ARMeilleure.Instructions
{
result = 0b0011;
if (type1 == FPType.SNaN || type2 == FPType.SNaN || signalNaNs)
if (type1 == FPType.SNaN || type2 == FPType.SNaN || signalNaNs == 1)
{
SoftFloat.FPProcessException(FPException.InvalidOp, context, fpcr);
}
@@ -2307,12 +2422,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPCompareEQ(double value1, double value2)
{
return FPCompareEQFpscr(value1, value2, false);
return FPCompareEQFpscrImpl(value1, value2, false);
}
public static double FPCompareEQFpscr(double value1, double value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2339,12 +2461,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPCompareGE(double value1, double value2)
{
return FPCompareGEFpscr(value1, value2, false);
return FPCompareGEFpscrImpl(value1, value2, false);
}
public static double FPCompareGEFpscr(double value1, double value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2368,12 +2497,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPCompareGT(double value1, double value2)
{
return FPCompareGTFpscr(value1, value2, false);
return FPCompareGTFpscrImpl(value1, value2, false);
}
public static double FPCompareGTFpscr(double value1, double value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2397,26 +2533,31 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPCompareLE(double value1, double value2)
{
return FPCompareGE(value2, value1);
return FPCompareGEFpscrImpl(value2, value1, false);
}
[UnmanagedCallersOnly]
public static double FPCompareLT(double value1, double value2)
{
return FPCompareGT(value2, value1);
return FPCompareGTFpscrImpl(value2, value1, false);
}
public static double FPCompareLEFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPCompareLEFpscr(double value1, double value2, byte standardFpscr)
{
return FPCompareGEFpscr(value2, value1, standardFpscr);
return FPCompareGEFpscrImpl(value2, value1, standardFpscr == 1);
}
public static double FPCompareLTFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPCompareLTFpscr(double value1, double value2, byte standardFpscr)
{
return FPCompareGTFpscr(value2, value1, standardFpscr);
return FPCompareGTFpscrImpl(value2, value1, standardFpscr == 1);
}
[UnmanagedCallersOnly]
public static double FPDiv(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -2469,12 +2610,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMax(double value1, double value2)
{
return FPMaxFpscr(value1, value2, false);
return FPMaxFpscrImpl(value1, value2, false);
}
public static double FPMaxFpscr(double value1, double value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2535,12 +2683,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMaxNum(double value1, double value2)
{
return FPMaxNumFpscr(value1, value2, false);
return FPMaxNumFpscrImpl(value1, value2, false);
}
public static double FPMaxNumFpscr(double value1, double value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2557,15 +2712,22 @@ namespace ARMeilleure.Instructions
value2 = FPInfinity(true);
}
return FPMaxFpscr(value1, value2, standardFpscr);
return FPMaxFpscrImpl(value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static double FPMin(double value1, double value2)
{
return FPMinFpscr(value1, value2, false);
return FPMinFpscrImpl(value1, value2, false);
}
public static double FPMinFpscr(double value1, double value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2626,12 +2788,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMinNum(double value1, double value2)
{
return FPMinNumFpscr(value1, value2, false);
return FPMinNumFpscrImpl(value1, value2, false);
}
public static double FPMinNumFpscr(double value1, double value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2648,15 +2817,22 @@ namespace ARMeilleure.Instructions
value2 = FPInfinity(false);
}
return FPMinFpscr(value1, value2, standardFpscr);
return FPMinFpscrImpl(value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static double FPMul(double value1, double value2)
{
return FPMulFpscr(value1, value2, false);
return FPMulFpscrImpl(value1, value2, false);
}
public static double FPMulFpscr(double value1, double value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2703,12 +2879,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMulAdd(double valueA, double value1, double value2)
{
return FPMulAddFpscr(valueA, value1, value2, false);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
public static double FPMulAddFpscr(double valueA, double value1, double value2, bool standardFpscr)
[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)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2774,20 +2957,23 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMulSub(double valueA, double value1, double value2)
{
value1 = value1.FPNeg();
return FPMulAdd(valueA, value1, value2);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
public static double FPMulSubFpscr(double valueA, double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPMulSubFpscr(double valueA, double value1, double value2, byte standardFpscr)
{
value1 = value1.FPNeg();
return FPMulAddFpscr(valueA, value1, value2, standardFpscr);
return FPMulAddFpscrImpl(valueA, value1, value2, standardFpscr == 1);
}
[UnmanagedCallersOnly]
public static double FPMulX(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -2833,27 +3019,36 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPNegMulAdd(double valueA, double value1, double value2)
{
valueA = valueA.FPNeg();
value1 = value1.FPNeg();
return FPMulAdd(valueA, value1, value2);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPNegMulSub(double valueA, double value1, double value2)
{
valueA = valueA.FPNeg();
return FPMulAdd(valueA, value1, value2);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPRecipEstimate(double value)
{
return FPRecipEstimateFpscr(value, false);
return FPRecipEstimateFpscrImpl(value, false);
}
public static double FPRecipEstimateFpscr(double value, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPRecipEstimateFpscr(double value, byte standardFpscr)
{
return FPRecipEstimateFpscrImpl(value, standardFpscr == 1);
}
private static double FPRecipEstimateFpscrImpl(double value, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2878,7 +3073,7 @@ namespace ARMeilleure.Instructions
}
else if (Math.Abs(value) < Math.Pow(2d, -1024))
{
bool overflowToInf = fpcr.GetRoundingMode() switch
var overflowToInf = fpcr.GetRoundingMode() switch
{
FPRoundingMode.ToNearest => true,
FPRoundingMode.TowardsPlusInfinity => !sign,
@@ -2940,6 +3135,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRecipStep(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -2965,7 +3161,7 @@ namespace ARMeilleure.Instructions
}
else
{
product = FPMulFpscr(value1, value2, true);
product = FPMulFpscrImpl(value1, value2, true);
}
result = FPSubFpscr(FPTwo(false), product, true);
@@ -2974,6 +3170,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRecipStepFused(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3017,6 +3214,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRecpX(double value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3042,12 +3240,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRSqrtEstimate(double value)
{
return FPRSqrtEstimateFpscr(value, false);
return FPRSqrtEstimateFpscrImpl(value, false);
}
public static double FPRSqrtEstimateFpscr(double value, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPRSqrtEstimateFpscr(double value, byte standardFpscr)
{
return FPRSqrtEstimateFpscrImpl(value, standardFpscr == 1);
}
private static double FPRSqrtEstimateFpscrImpl(double value, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -3161,6 +3366,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRSqrtStep(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3186,7 +3392,7 @@ namespace ARMeilleure.Instructions
}
else
{
product = FPMulFpscr(value1, value2, true);
product = FPMulFpscrImpl(value1, value2, true);
}
result = FPHalvedSub(FPThree(false), product, context, fpcr);
@@ -3195,6 +3401,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRSqrtStepFused(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3238,6 +3445,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPSqrt(double value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3280,6 +3488,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPSub(double value1, double value2)
{
return FPSubFpscr(value1, value2, false);
@@ -304,7 +304,7 @@ namespace ARMeilleure.IntermediateRepresentation
ushort newCount = checked((ushort)(count + 1));
ushort newCapacity = (ushort)Math.Min(capacity * 2, ushort.MaxValue);
Span<T> oldSpan = new(data, count);
var oldSpan = new Span<T>(data, count);
capacity = newCapacity;
data = Allocators.References.Allocate<T>(capacity);
@@ -338,7 +338,7 @@ namespace ARMeilleure.IntermediateRepresentation
throw new OverflowException();
}
Span<T> oldSpan = new(data, (int)count);
var oldSpan = new Span<T>(data, (int)count);
capacity = newCapacity;
data = Allocators.References.Allocate<T>(capacity);
@@ -352,7 +352,7 @@ namespace ARMeilleure.IntermediateRepresentation
private static void Remove<T>(in T item, ref T* data, ref ushort count) where T : unmanaged
{
Span<T> span = new(data, count);
var span = new Span<T>(data, count);
for (int i = 0; i < span.Length; i++)
{
@@ -372,7 +372,7 @@ namespace ARMeilleure.IntermediateRepresentation
private static void Remove<T>(in T item, ref T* data, ref uint count) where T : unmanaged
{
Span<T> span = new(data, (int)count);
var span = new Span<T>(data, (int)count);
for (int i = 0; i < span.Length; i++)
{
+1 -1
View File
@@ -2,7 +2,7 @@ using System;
namespace ARMeilleure.Memory
{
public class ReservedRegion : IDisposable
public class ReservedRegion
{
public const int DefaultGranularity = 65536; // Mapping granularity in Windows.
+8 -9
View File
@@ -1,6 +1,5 @@
using ARMeilleure.IntermediateRepresentation;
using ARMeilleure.Translation;
using ARMeilleure.Translation.Cache;
using System.Runtime.InteropServices;
using static ARMeilleure.IntermediateRepresentation.Operand.Factory;
@@ -18,11 +17,11 @@ namespace ARMeilleure.Signal
public delegate int DebugThreadLocalMapGetOrReserve(int threadId, int initialState);
public delegate void DebugNativeWriteLoop(nint nativeWriteLoopPtr, nint writePtr);
public static DebugPartialUnmap GenerateDebugPartialUnmap(JitCache jitCache)
public static DebugPartialUnmap GenerateDebugPartialUnmap()
{
EmitterContext context = new();
Operand result = WindowsPartialUnmapHandler.EmitRetryFromAccessViolation(context);
var result = WindowsPartialUnmapHandler.EmitRetryFromAccessViolation(context);
context.Return(result);
@@ -32,14 +31,14 @@ namespace ARMeilleure.Signal
OperandType[] argTypes = [OperandType.I64];
return Compiler.Compile(cfg, argTypes, OperandType.I32, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<DebugPartialUnmap>(jitCache);
return Compiler.Compile(cfg, argTypes, OperandType.I32, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<DebugPartialUnmap>();
}
public static DebugThreadLocalMapGetOrReserve GenerateDebugThreadLocalMapGetOrReserve(JitCache jitCache, nint structPtr)
public static DebugThreadLocalMapGetOrReserve GenerateDebugThreadLocalMapGetOrReserve(nint structPtr)
{
EmitterContext context = new();
Operand result = WindowsPartialUnmapHandler.EmitThreadLocalMapIntGetOrReserve(context, structPtr, context.LoadArgument(OperandType.I32, 0), context.LoadArgument(OperandType.I32, 1));
var result = WindowsPartialUnmapHandler.EmitThreadLocalMapIntGetOrReserve(context, structPtr, context.LoadArgument(OperandType.I32, 0), context.LoadArgument(OperandType.I32, 1));
context.Return(result);
@@ -49,10 +48,10 @@ namespace ARMeilleure.Signal
OperandType[] argTypes = [OperandType.I64];
return Compiler.Compile(cfg, argTypes, OperandType.I32, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<DebugThreadLocalMapGetOrReserve>(jitCache);
return Compiler.Compile(cfg, argTypes, OperandType.I32, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<DebugThreadLocalMapGetOrReserve>();
}
public static DebugNativeWriteLoop GenerateDebugNativeWriteLoop(JitCache jitCache)
public static DebugNativeWriteLoop GenerateDebugNativeWriteLoop()
{
EmitterContext context = new();
@@ -78,7 +77,7 @@ namespace ARMeilleure.Signal
OperandType[] argTypes = [OperandType.I64];
return Compiler.Compile(cfg, argTypes, OperandType.None, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<DebugNativeWriteLoop>(jitCache);
return Compiler.Compile(cfg, argTypes, OperandType.None, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<DebugNativeWriteLoop>();
}
}
}
@@ -4,7 +4,7 @@ using System.Diagnostics.CodeAnalysis;
namespace ARMeilleure.Translation.Cache
{
public readonly struct CacheEntry : IComparable<CacheEntry>
readonly struct CacheEntry : IComparable<CacheEntry>
{
public int Offset { get; }
public int Size { get; }
@@ -23,30 +23,11 @@ namespace ARMeilleure.Translation.Cache
}
}
private readonly int _regionSize;
private int _regionCount;
private readonly List<MemoryBlock> _blocks = [];
public CacheMemoryAllocator(int regionSize, int initialRegionCount = 1)
public CacheMemoryAllocator(int capacity)
{
_regionCount = 0;
_regionSize = regionSize;
for (; initialRegionCount > 0; initialRegionCount--)
{
_blocks.Add(new MemoryBlock(_regionSize * _regionCount, _regionSize));
_regionCount++;
}
}
public void AddNewBlocks(int count)
{
for (; count > 0; count--)
{
_blocks.Add(new MemoryBlock(_regionSize * _regionCount, _regionSize));
_regionCount++;
}
_blocks.Add(new MemoryBlock(0, capacity));
}
public int Allocate(int size)
@@ -85,13 +66,12 @@ namespace ARMeilleure.Translation.Cache
index = ~index;
}
int endOffs = block.Offset + block.Size;
// Don't merge blocks from different allocations
if (index < _blocks.Count && endOffs % _regionSize != 0)
if (index < _blocks.Count)
{
MemoryBlock next = _blocks[index];
int endOffs = block.Offset + block.Size;
if (next.Offset == endOffs)
{
block = new MemoryBlock(block.Offset, block.Size + next.Size);
@@ -99,8 +79,7 @@ namespace ARMeilleure.Translation.Cache
}
}
// Don't merge blocks from different allocations
if (index > 0 && block.Offset % _regionSize != 0)
if (index > 0)
{
MemoryBlock prev = _blocks[index - 1];
+93 -85
View File
@@ -14,35 +14,62 @@ using System.Threading;
namespace ARMeilleure.Translation.Cache
{
public partial class JitCache : IDisposable
static partial class JitCache
{
private static readonly int _pageSize = (int)MemoryBlock.GetPageSize();
private static readonly int _pageMask = _pageSize - 1;
private const int CodeAlignment = 4; // Bytes.
private const uint CacheSize = 256 * 1024 * 1024;
private const int CacheSize = 256 * 1024 * 1024;
private readonly JitCacheInvalidation _jitCacheInvalidator;
private static JitCacheInvalidation _jitCacheInvalidator;
private readonly CacheMemoryAllocator _cacheAllocator;
private static List<CacheMemoryAllocator> _cacheAllocators = [];
private readonly List<CacheEntry> _cacheEntries = [];
private static readonly List<CacheEntry> _cacheEntries = [];
private readonly Lock _lock = new();
private static readonly Lock _lock = new();
private static bool _initialized;
private readonly List<ReservedRegion> _jitRegions = [];
private static readonly List<ReservedRegion> _jitRegions = [];
private static int _activeRegionIndex = 0;
[SupportedOSPlatform("windows")]
[LibraryImport("kernel32.dll", SetLastError = true)]
private static partial nint FlushInstructionCache(nint hProcess, nint lpAddress, nuint dwSize);
public static partial nint FlushInstructionCache(nint hProcess, nint lpAddress, nuint dwSize);
public JitCache(IJitMemoryAllocator allocator)
public static void Initialize(IJitMemoryAllocator allocator)
{
lock (_lock)
{
_jitRegions.Add(new(allocator, CacheSize));
if (_initialized)
{
if (OperatingSystem.IsWindows())
{
JitUnwindWindows.RemoveFunctionTableHandler(
_jitRegions[0].Pointer);
}
_cacheAllocator = new((int)CacheSize);
for (int i = 0; i < _jitRegions.Count; i++)
{
_jitRegions[i].Dispose();
}
_jitRegions.Clear();
_cacheAllocators.Clear();
}
else
{
_initialized = true;
}
_activeRegionIndex = 0;
var firstRegion = new ReservedRegion(allocator, CacheSize);
_jitRegions.Add(firstRegion);
CacheMemoryAllocator firstCacheAllocator = new(CacheSize);
_cacheAllocators.Add(firstCacheAllocator);
if (!OperatingSystem.IsWindows() && !OperatingSystem.IsMacOS())
{
@@ -52,20 +79,23 @@ namespace ARMeilleure.Translation.Cache
if (OperatingSystem.IsWindows())
{
JitUnwindWindows.InstallFunctionTableHandler(
this, _jitRegions[0].Pointer, CacheSize, _jitRegions[0].Pointer + Allocate(_pageSize)
firstRegion.Pointer, CacheSize, firstRegion.Pointer + Allocate(_pageSize)
);
}
}
}
public nint Map(CompiledFunction func)
public static nint Map(CompiledFunction func)
{
byte[] code = func.Code;
lock (_lock)
{
Debug.Assert(_initialized);
int funcOffset = Allocate(code.Length);
nint funcPtr = GetFunctionPtr(funcOffset);
ReservedRegion targetRegion = _jitRegions[_activeRegionIndex];
nint funcPtr = targetRegion.Pointer + funcOffset;
if (OperatingSystem.IsMacOS() && RuntimeInformation.ProcessArchitecture == Architecture.Arm64)
{
@@ -79,9 +109,9 @@ namespace ARMeilleure.Translation.Cache
}
else
{
ReprotectAsWritable(funcOffset, code.Length);
ReprotectAsWritable(targetRegion, funcOffset, code.Length);
Marshal.Copy(code, 0, funcPtr, code.Length);
ReprotectAsExecutable(funcOffset, code.Length);
ReprotectAsExecutable(targetRegion, funcOffset, code.Length);
if (OperatingSystem.IsWindows() && RuntimeInformation.ProcessArchitecture == Architecture.Arm64)
{
@@ -99,24 +129,25 @@ namespace ARMeilleure.Translation.Cache
}
}
public void Unmap(nint pointer)
public static void Unmap(nint pointer)
{
lock (_lock)
{
for (int i = 0; i < _jitRegions.Count; i++)
Debug.Assert(_initialized);
foreach (var region in _jitRegions)
{
ReservedRegion jitRegion = _jitRegions[i];
if (pointer.ToInt64() < jitRegion.Pointer.ToInt64() ||
pointer.ToInt64() >= (jitRegion.Pointer + (nint)CacheSize).ToInt64())
if (pointer.ToInt64() < region.Pointer.ToInt64() ||
pointer.ToInt64() >= (region.Pointer + CacheSize).ToInt64())
{
continue;
}
int funcOffset = (int)(pointer.ToInt64() - jitRegion.Pointer.ToInt64() + i * CacheSize);
int funcOffset = (int)(pointer.ToInt64() - region.Pointer.ToInt64());
if (TryFind(funcOffset, out CacheEntry entry, out int entryIndex) && entry.Offset == funcOffset)
{
_cacheAllocator.Free(funcOffset, AlignCodeSize(entry.Size));
_cacheAllocators[_activeRegionIndex].Free(funcOffset, AlignCodeSize(entry.Size));
_cacheEntries.RemoveAt(entryIndex);
}
@@ -125,66 +156,53 @@ namespace ARMeilleure.Translation.Cache
}
}
private void ReprotectAsWritable(int offset, int size)
private static void ReprotectAsWritable(ReservedRegion region, int offset, int size)
{
int endOffs = offset + size;
int regionStart = (offset % (int)CacheSize) & ~_pageMask;
int regionEnd = endOffs % (int)CacheSize == 0
? (((int)CacheSize) + _pageMask) & ~_pageMask
: ((endOffs % (int)CacheSize) + _pageMask) & ~_pageMask;
GetRegion(offset).Block.MapAsRwx((ulong)regionStart, (ulong)(regionEnd - regionStart));
int regionStart = offset & ~_pageMask;
int regionEnd = (endOffs + _pageMask) & ~_pageMask;
region.Block.MapAsRwx((ulong)regionStart, (ulong)(regionEnd - regionStart));
}
private void ReprotectAsExecutable(int offset, int size)
private static void ReprotectAsExecutable(ReservedRegion region, int offset, int size)
{
int endOffs = offset + size;
int regionStart = (offset % (int)CacheSize) & ~_pageMask;
int regionEnd = endOffs % (int)CacheSize == 0
? (((int)CacheSize) + _pageMask) & ~_pageMask
: ((endOffs % (int)CacheSize) + _pageMask) & ~_pageMask;
int regionStart = offset & ~_pageMask;
int regionEnd = (endOffs + _pageMask) & ~_pageMask;
GetRegion(offset).Block.MapAsRx((ulong)regionStart, (ulong)(regionEnd - regionStart));
region.Block.MapAsRx((ulong)regionStart, (ulong)(regionEnd - regionStart));
}
private int Allocate(int codeSize)
private static int Allocate(int codeSize)
{
codeSize = AlignCodeSize(codeSize);
int allocOffset = _cacheAllocator.Allocate(codeSize);
int allocOffset = _cacheAllocators[_activeRegionIndex].Allocate(codeSize);
if (allocOffset >= 0)
{
GetRegion(allocOffset).ExpandIfNeeded((ulong)(allocOffset % (int)CacheSize) + (ulong)codeSize);
_jitRegions[_activeRegionIndex].ExpandIfNeeded((ulong)allocOffset + (ulong)codeSize);
return allocOffset;
}
_cacheAllocator.AddNewBlocks(1);
ReservedRegion newRegion = new(_jitRegions[0].Allocator, CacheSize);
Logger.Warning?.Print(LogClass.Cpu, $"JIT Cache of size {(_jitRegions.Count * CacheSize).Bytes()} exhausted, creating new Cache Region ({((_jitRegions.Count + 1) * CacheSize).Bytes()} Total Allocation).");
int exhaustedRegion = _activeRegionIndex;
var newRegion = new ReservedRegion(_jitRegions[0].Allocator, CacheSize);
_jitRegions.Add(newRegion);
allocOffset = _cacheAllocator.Allocate(codeSize);
if (allocOffset < 0)
_activeRegionIndex = _jitRegions.Count - 1;
Logger.Warning?.Print(LogClass.Cpu, $"JIT Cache Region {exhaustedRegion} exhausted, creating new Cache Region {_activeRegionIndex} ({((long)(_activeRegionIndex + 1) * CacheSize).Bytes()} Total Allocation).");
_cacheAllocators.Add(new CacheMemoryAllocator(CacheSize));
int allocOffsetNew = _cacheAllocators[_activeRegionIndex].Allocate(codeSize);
if (allocOffsetNew < 0)
{
throw new OutOfMemoryException("Failed to allocate in new Cache Region!");
}
GetRegion(allocOffset).ExpandIfNeeded((ulong)(allocOffset % (int)CacheSize) + (ulong)codeSize);
return allocOffset;
}
private nint GetFunctionPtr(int offset)
{
return GetRegion(offset).Pointer + (offset % (int)CacheSize);
}
private ReservedRegion GetRegion(int offset)
{
int index = offset / (int)CacheSize;
return _jitRegions[index];
newRegion.ExpandIfNeeded((ulong)allocOffsetNew + (ulong)codeSize);
return allocOffsetNew;
}
private static int AlignCodeSize(int codeSize)
@@ -192,7 +210,7 @@ namespace ARMeilleure.Translation.Cache
return checked(codeSize + (CodeAlignment - 1)) & ~(CodeAlignment - 1);
}
private void Add(int offset, int size, UnwindInfo unwindInfo)
private static void Add(int offset, int size, UnwindInfo unwindInfo)
{
CacheEntry entry = new(offset, size, unwindInfo);
@@ -206,22 +224,25 @@ namespace ARMeilleure.Translation.Cache
_cacheEntries.Insert(index, entry);
}
public bool TryFind(int offset, out CacheEntry entry, out int entryIndex)
public static bool TryFind(int offset, out CacheEntry entry, out int entryIndex)
{
lock (_lock)
{
int index = _cacheEntries.BinarySearch(new CacheEntry(offset, 0, default));
if (index < 0)
foreach (var region in _jitRegions)
{
index = ~index - 1;
}
int index = _cacheEntries.BinarySearch(new CacheEntry(offset, 0, default));
if (index >= 0)
{
entry = _cacheEntries[index];
entryIndex = index;
return true;
if (index < 0)
{
index = ~index - 1;
}
if (index >= 0)
{
entry = _cacheEntries[index];
entryIndex = index;
return true;
}
}
}
@@ -229,18 +250,5 @@ namespace ARMeilleure.Translation.Cache
entryIndex = 0;
return false;
}
public void Dispose()
{
if (OperatingSystem.IsWindows())
{
JitUnwindWindows.RemoveFunctionTableHandler(_jitRegions[0].Pointer);
}
foreach (ReservedRegion jitRegion in _jitRegions)
{
jitRegion.Dispose();
}
}
}
}
@@ -2,8 +2,6 @@
using ARMeilleure.CodeGen.Unwinding;
using System;
using System.Collections.Concurrent;
using System.Collections.Generic;
using System.Diagnostics;
using System.Runtime.InteropServices;
@@ -29,29 +27,6 @@ namespace ARMeilleure.Translation.Cache
public unsafe fixed ushort UnwindCodes[MaxUnwindCodesArraySize];
}
private unsafe struct InternalFunctionHandler
{
public InternalFunctionHandler(JitCache jitCache, nint workBufferPtr)
{
_jitCache = jitCache;
_runtimeFunction = (RuntimeFunction*)workBufferPtr;
_unwindInfo = (UnwindInfo*)(workBufferPtr + _sizeOfRuntimeFunction);
}
readonly JitCache _jitCache;
readonly RuntimeFunction* _runtimeFunction;
readonly UnwindInfo* _unwindInfo;
public RuntimeFunction* FunctionTableHandler(ulong controlPc, nint context)
{
return JitUnwindWindows.FunctionTableHandler(_jitCache, _runtimeFunction, _unwindInfo, controlPc, context);
}
}
private enum UnwindOp
{
PushNonvol = 0,
@@ -84,28 +59,27 @@ namespace ARMeilleure.Translation.Cache
private static GetRuntimeFunctionCallback _getRuntimeFunctionCallback;
private static readonly int _sizeOfRuntimeFunction;
private static int _sizeOfRuntimeFunction;
private static readonly ConcurrentDictionary<ulong, InternalFunctionHandler> _functionTableHandlers = new();
private unsafe static RuntimeFunction* _runtimeFunction;
static JitUnwindWindows()
{
_sizeOfRuntimeFunction = Marshal.SizeOf<RuntimeFunction>();
}
private unsafe static UnwindInfo* _unwindInfo;
public static void InstallFunctionTableHandler(JitCache jitCache, nint codeCachePointer, uint codeCacheLength, nint workBufferPtr)
public static void InstallFunctionTableHandler(nint codeCachePointer, uint codeCacheLength, nint workBufferPtr)
{
ulong codeCachePtr = (ulong)codeCachePointer.ToInt64();
bool result;
_sizeOfRuntimeFunction = Marshal.SizeOf<RuntimeFunction>();
InternalFunctionHandler handler;
bool result;
unsafe
{
handler = new InternalFunctionHandler(jitCache, workBufferPtr);
_runtimeFunction = (RuntimeFunction*)workBufferPtr;
_getRuntimeFunctionCallback = handler.FunctionTableHandler;
_unwindInfo = (UnwindInfo*)(workBufferPtr + _sizeOfRuntimeFunction);
_getRuntimeFunctionCallback = new GetRuntimeFunctionCallback(FunctionTableHandler);
result = RtlInstallFunctionTableCallback(
codeCachePtr | 3,
@@ -120,8 +94,6 @@ namespace ARMeilleure.Translation.Cache
{
throw new InvalidOperationException("Failure installing function table callback.");
}
_functionTableHandlers.TryAdd(codeCachePtr, handler);
}
public static void RemoveFunctionTableHandler(nint codeCachePointer)
@@ -139,26 +111,24 @@ namespace ARMeilleure.Translation.Cache
{
throw new InvalidOperationException("Failure removing function table callback.");
}
_functionTableHandlers.Remove(codeCachePtr, out _);
}
private static unsafe RuntimeFunction* FunctionTableHandler(JitCache jitCache, RuntimeFunction* runtimeFunction, UnwindInfo* unwindInfo, ulong controlPc, nint context)
private static unsafe RuntimeFunction* FunctionTableHandler(ulong controlPc, nint context)
{
int offset = (int)((long)controlPc - context.ToInt64());
if (!jitCache.TryFind(offset, out CacheEntry funcEntry, out _))
if (!JitCache.TryFind(offset, out CacheEntry funcEntry, out _))
{
return null; // Not found.
}
CodeGen.Unwinding.UnwindInfo funcUnwindInfo = funcEntry.UnwindInfo;
var unwindInfo = funcEntry.UnwindInfo;
int codeIndex = 0;
for (int index = funcUnwindInfo.PushEntries.Length - 1; index >= 0; index--)
for (int index = unwindInfo.PushEntries.Length - 1; index >= 0; index--)
{
UnwindPushEntry entry = funcUnwindInfo.PushEntries[index];
var entry = unwindInfo.PushEntries[index];
switch (entry.PseudoOp)
{
@@ -170,14 +140,14 @@ namespace ARMeilleure.Translation.Cache
if (stackOffset <= 0xFFFF0)
{
unwindInfo->UnwindCodes[codeIndex++] = PackUnwindOp(UnwindOp.SaveXmm128, entry.PrologOffset, entry.RegIndex);
unwindInfo->UnwindCodes[codeIndex++] = (ushort)(stackOffset / 16);
_unwindInfo->UnwindCodes[codeIndex++] = PackUnwindOp(UnwindOp.SaveXmm128, entry.PrologOffset, entry.RegIndex);
_unwindInfo->UnwindCodes[codeIndex++] = (ushort)(stackOffset / 16);
}
else
{
unwindInfo->UnwindCodes[codeIndex++] = PackUnwindOp(UnwindOp.SaveXmm128Far, entry.PrologOffset, entry.RegIndex);
unwindInfo->UnwindCodes[codeIndex++] = (ushort)(stackOffset >> 0);
unwindInfo->UnwindCodes[codeIndex++] = (ushort)(stackOffset >> 16);
_unwindInfo->UnwindCodes[codeIndex++] = PackUnwindOp(UnwindOp.SaveXmm128Far, entry.PrologOffset, entry.RegIndex);
_unwindInfo->UnwindCodes[codeIndex++] = (ushort)(stackOffset >> 0);
_unwindInfo->UnwindCodes[codeIndex++] = (ushort)(stackOffset >> 16);
}
break;
@@ -191,18 +161,18 @@ namespace ARMeilleure.Translation.Cache
if (allocSize <= 128)
{
unwindInfo->UnwindCodes[codeIndex++] = PackUnwindOp(UnwindOp.AllocSmall, entry.PrologOffset, (allocSize / 8) - 1);
_unwindInfo->UnwindCodes[codeIndex++] = PackUnwindOp(UnwindOp.AllocSmall, entry.PrologOffset, (allocSize / 8) - 1);
}
else if (allocSize <= 0x7FFF8)
{
unwindInfo->UnwindCodes[codeIndex++] = PackUnwindOp(UnwindOp.AllocLarge, entry.PrologOffset, 0);
unwindInfo->UnwindCodes[codeIndex++] = (ushort)(allocSize / 8);
_unwindInfo->UnwindCodes[codeIndex++] = PackUnwindOp(UnwindOp.AllocLarge, entry.PrologOffset, 0);
_unwindInfo->UnwindCodes[codeIndex++] = (ushort)(allocSize / 8);
}
else
{
unwindInfo->UnwindCodes[codeIndex++] = PackUnwindOp(UnwindOp.AllocLarge, entry.PrologOffset, 1);
unwindInfo->UnwindCodes[codeIndex++] = (ushort)(allocSize >> 0);
unwindInfo->UnwindCodes[codeIndex++] = (ushort)(allocSize >> 16);
_unwindInfo->UnwindCodes[codeIndex++] = PackUnwindOp(UnwindOp.AllocLarge, entry.PrologOffset, 1);
_unwindInfo->UnwindCodes[codeIndex++] = (ushort)(allocSize >> 0);
_unwindInfo->UnwindCodes[codeIndex++] = (ushort)(allocSize >> 16);
}
break;
@@ -210,7 +180,7 @@ namespace ARMeilleure.Translation.Cache
case UnwindPseudoOp.PushReg:
{
unwindInfo->UnwindCodes[codeIndex++] = PackUnwindOp(UnwindOp.PushNonvol, entry.PrologOffset, entry.RegIndex);
_unwindInfo->UnwindCodes[codeIndex++] = PackUnwindOp(UnwindOp.PushNonvol, entry.PrologOffset, entry.RegIndex);
break;
}
@@ -222,16 +192,16 @@ namespace ARMeilleure.Translation.Cache
Debug.Assert(codeIndex <= MaxUnwindCodesArraySize);
unwindInfo->VersionAndFlags = 1; // Flags: The function has no handler.
unwindInfo->SizeOfProlog = (byte)funcUnwindInfo.PrologSize;
unwindInfo->CountOfUnwindCodes = (byte)codeIndex;
unwindInfo->FrameRegister = 0;
_unwindInfo->VersionAndFlags = 1; // Flags: The function has no handler.
_unwindInfo->SizeOfProlog = (byte)unwindInfo.PrologSize;
_unwindInfo->CountOfUnwindCodes = (byte)codeIndex;
_unwindInfo->FrameRegister = 0;
runtimeFunction->BeginAddress = (uint)funcEntry.Offset;
runtimeFunction->EndAddress = (uint)(funcEntry.Offset + funcEntry.Size);
runtimeFunction->UnwindData = (uint)_sizeOfRuntimeFunction;
_runtimeFunction->BeginAddress = (uint)funcEntry.Offset;
_runtimeFunction->EndAddress = (uint)(funcEntry.Offset + funcEntry.Size);
_runtimeFunction->UnwindData = (uint)_sizeOfRuntimeFunction;
return runtimeFunction;
return _runtimeFunction;
}
private static ushort PackUnwindOp(UnwindOp op, int prologOffset, int opInfo)
@@ -47,8 +47,8 @@ namespace ARMeilleure.Translation
{
RemoveUnreachableBlocks(Blocks);
HashSet<BasicBlock> visited = new();
Stack<BasicBlock> blockStack = new();
var visited = new HashSet<BasicBlock>();
var blockStack = new Stack<BasicBlock>();
Array.Resize(ref _postOrderBlocks, Blocks.Count);
Array.Resize(ref _postOrderMap, Blocks.Count);
@@ -88,8 +88,8 @@ namespace ARMeilleure.Translation
private void RemoveUnreachableBlocks(IntrusiveList<BasicBlock> blocks)
{
HashSet<BasicBlock> visited = new();
Queue<BasicBlock> workQueue = new();
var visited = new HashSet<BasicBlock>();
var workQueue = new Queue<BasicBlock>();
visited.Add(Entry);
workQueue.Enqueue(Entry);
+1 -8
View File
@@ -1,18 +1,11 @@
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(Delegate dlg, nint funcPtr)
public DelegateInfo(nint funcPtr)
{
_dlg = dlg;
FuncPtr = funcPtr;
}
}
+169 -534
View File
@@ -1,9 +1,7 @@
using ARMeilleure.Instructions;
using ARMeilleure.State;
using System;
using System.Collections.Generic;
using System.Reflection;
using System.Runtime.InteropServices;
namespace ARMeilleure.Translation
{
@@ -35,20 +33,6 @@ 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);
@@ -65,11 +49,11 @@ namespace ARMeilleure.Translation
return index;
}
private static void SetDelegateInfo(Delegate dlg, IntPtr funcPtr)
private static void SetDelegateInfo(MethodInfo method)
{
string key = GetKey(dlg.Method);
string key = GetKey(method);
_delegates.Add(key, new DelegateInfo(dlg, funcPtr)); // ArgumentException (key).
_delegates.Add(key, new DelegateInfo(method.MethodHandle.GetFunctionPointer())); // ArgumentException (key).
}
private static string GetKey(MethodInfo info)
@@ -79,532 +63,183 @@ namespace ARMeilleure.Translation
private static readonly SortedList<string, DelegateInfo> _delegates;
static Delegates()
unsafe static Delegates()
{
_delegates = new SortedList<string, DelegateInfo>();
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(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 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(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 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(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 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(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 dlgSoftFloat16_32FPConvert = new SoftFloat16_32FPConvert(SoftFloat16_32.FPConvert);
var dlgSoftFloat16_64FPConvert = new SoftFloat16_64FPConvert(SoftFloat16_64.FPConvert);
SetDelegateInfo(typeof(SoftFloat16_32).GetMethod(nameof(SoftFloat16_32.FPConvert)));
SetDelegateInfo(typeof(SoftFloat16_64).GetMethod(nameof(SoftFloat16_64.FPConvert)));
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).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 dlgSoftFloat32_16FPConvert = new SoftFloat32_16FPConvert(SoftFloat32_16.FPConvert);
SetDelegateInfo(typeof(SoftFloat32_16).GetMethod(nameof(SoftFloat32_16.FPConvert)));
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).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 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));
SetDelegateInfo(typeof(SoftFloat64_16).GetMethod(nameof(SoftFloat64_16.FPConvert)));
}
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 = Delegates.GetDelegateFuncPtr(info);
nint funcPtr = info.MethodHandle.GetFunctionPointer();
OperandType returnType = GetOperandType(info.ReturnType);
+32 -46
View File
@@ -4,14 +4,12 @@ using ARMeilleure.CodeGen.Unwinding;
using ARMeilleure.Common;
using ARMeilleure.Memory;
using ARMeilleure.State;
using ARMeilleure.Translation.Cache;
using Ryujinx.Common;
using Ryujinx.Common.Configuration;
using Ryujinx.Common.Logging;
using Ryujinx.Common.Memory;
using System;
using System.Buffers.Binary;
using System.Collections.Concurrent;
using System.Collections.Generic;
using System.Diagnostics;
using System.IO;
@@ -32,11 +30,14 @@ namespace ARMeilleure.Translation.PTC
private const string OuterHeaderMagicString = "PTCohd\0\0";
private const string InnerHeaderMagicString = "PTCihd\0\0";
private const uint InternalVersion = 7031; //! To be incremented manually for each change to the ARMeilleure project.
private const uint InternalVersion = 7010; //! To be incremented manually for each change to the ARMeilleure project.
private const string ActualDir = "0";
private const string BackupDir = "1";
private const string TitleIdTextDefault = "0000000000000000";
private const string DisplayVersionDefault = "0";
public static readonly Symbol PageTableSymbol = new(SymbolType.Special, 1);
public static readonly Symbol CountTableSymbol = new(SymbolType.Special, 2);
public static readonly Symbol DispatchStubSymbol = new(SymbolType.Special, 3);
@@ -47,8 +48,6 @@ namespace ARMeilleure.Translation.PTC
public PtcProfiler Profiler { get; }
private readonly JitCache _jitCache;
// Carriers.
private MemoryStream _infosStream;
private List<byte[]> _codesList;
@@ -64,7 +63,8 @@ namespace ARMeilleure.Translation.PTC
private bool _disposed;
public PtcCacheInfo CacheInfo { get; private set; }
public string TitleIdText { get; private set; }
public string DisplayVersion { get; private set; }
private MemoryManagerType _memoryMode;
@@ -78,7 +78,7 @@ namespace ARMeilleure.Translation.PTC
private volatile int _translateTotalCount;
public event Action<PtcLoadingState, int, int> PtcStateChanged;
public Ptc(JitCache jitCache)
public Ptc()
{
Profiler = new PtcProfiler(this);
@@ -89,11 +89,10 @@ namespace ARMeilleure.Translation.PTC
_waitEvent = new ManualResetEvent(true);
_jitCache = jitCache;
_disposed = false;
CacheInfo = new PtcCacheInfo(0, null, null, 0, null, "Unknown", "default");
TitleIdText = TitleIdTextDefault;
DisplayVersion = DisplayVersionDefault;
CachePathActual = string.Empty;
CachePathBackup = string.Empty;
@@ -101,24 +100,20 @@ namespace ARMeilleure.Translation.PTC
Disable();
}
public void Initialize(PtcCacheInfo cacheInfo, bool enabled, MemoryManagerType memoryMode)
public void Initialize(string titleIdText, string displayVersion, bool enabled, MemoryManagerType memoryMode, string cacheSelector)
{
Wait();
Profiler.Wait();
Profiler.ClearEntries();
CacheInfo = cacheInfo;
Logger.Info?.Print(LogClass.Ptc, $"Initializing Profiled Persistent Translation Cache v{InternalVersion}\n\t\t (title: {titleIdText}, version: '{displayVersion}', selector: '{cacheSelector}', enabled: {enabled}).");
Logger.Info?.Print(
LogClass.Ptc,
$"Initializing Profiled Persistent Translation Cache v{InternalVersion}\n\t\t " +
$"(pid: {cacheInfo.ProcessId}, title: {cacheInfo.TitleIdText}, application: {cacheInfo.ApplicationIdText}, " +
$"programIndex: {cacheInfo.ProgramIndex}, version: '{cacheInfo.DisplayVersion}', kind: {cacheInfo.ProcessKind}, " +
$"selector: '{cacheInfo.CacheSelector}', key: '{cacheInfo.CacheKey}', enabled: {enabled}).");
if (!enabled || cacheInfo.TitleIdText == PtcCacheInfo.TitleIdTextDefault)
if (!enabled || string.IsNullOrEmpty(titleIdText) || titleIdText == TitleIdTextDefault)
{
TitleIdText = TitleIdTextDefault;
DisplayVersion = DisplayVersionDefault;
CachePathActual = string.Empty;
CachePathBackup = string.Empty;
@@ -127,10 +122,12 @@ namespace ARMeilleure.Translation.PTC
return;
}
TitleIdText = titleIdText;
DisplayVersion = !string.IsNullOrEmpty(displayVersion) ? displayVersion : DisplayVersionDefault;
_memoryMode = memoryMode;
string workPathActual = Path.Combine(AppDataManager.GamesDirPath, CacheInfo.TitleIdText, "cache", "cpu", ActualDir);
string workPathBackup = Path.Combine(AppDataManager.GamesDirPath, CacheInfo.TitleIdText, "cache", "cpu", BackupDir);
string workPathActual = Path.Combine(AppDataManager.GamesDirPath, TitleIdText, "cache", "cpu", ActualDir);
string workPathBackup = Path.Combine(AppDataManager.GamesDirPath, TitleIdText, "cache", "cpu", BackupDir);
if (!Directory.Exists(workPathActual))
{
@@ -142,14 +139,8 @@ namespace ARMeilleure.Translation.PTC
Directory.CreateDirectory(workPathBackup);
}
CachePathActual = Path.Combine(workPathActual, CacheInfo.DisplayVersion) + "-" + CacheInfo.CacheSelector;
CachePathBackup = Path.Combine(workPathBackup, CacheInfo.DisplayVersion) + "-" + CacheInfo.CacheSelector;
Logger.Info?.Print(
LogClass.Ptc,
$"PPTC cache owner selected (pid: {CacheInfo.ProcessId}, title: {CacheInfo.TitleIdText}, application: {CacheInfo.ApplicationIdText}, " +
$"version: '{CacheInfo.DisplayVersion}', kind: {CacheInfo.ProcessKind}, selector: '{CacheInfo.CacheSelector}', " +
$"key: '{CacheInfo.CacheKey}', path: '{CachePathActual}').");
CachePathActual = Path.Combine(workPathActual, DisplayVersion) + "-" + cacheSelector;
CachePathBackup = Path.Combine(workPathBackup, DisplayVersion) + "-" + cacheSelector;
PreLoad();
Profiler.PreLoad();
@@ -373,12 +364,7 @@ namespace ARMeilleure.Translation.PTC
long fileSize = new FileInfo(fileName).Length;
Logger.Info?.Print(
LogClass.Ptc,
$"{(isBackup ? "Loaded Backup Translation Cache" : "Loaded Translation Cache")} " +
$"(pid: {CacheInfo.ProcessId}, title: {CacheInfo.TitleIdText}, version: '{CacheInfo.DisplayVersion}', kind: {CacheInfo.ProcessKind}, " +
$"selector: '{CacheInfo.CacheSelector}', key: '{CacheInfo.CacheKey}', path: '{fileName}', " +
$"size: {fileSize} bytes, translated functions: {GetEntriesCount()}).");
Logger.Info?.Print(LogClass.Ptc, $"{(isBackup ? "Loaded Backup Translation Cache" : "Loaded Translation Cache")} (size: {fileSize} bytes, translated functions: {GetEntriesCount()}).");
return true;
}
@@ -558,7 +544,7 @@ namespace ARMeilleure.Translation.PTC
bool isEntryChanged = infoEntry.Hash != ComputeHash(translator.Memory, infoEntry.Address, infoEntry.GuestSize);
if (isEntryChanged || (!infoEntry.HighCq && Profiler.ProfiledFuncs.TryGetValue(infoEntry.Address, out PtcProfiler.FuncProfile value) && value.HighCq))
if (isEntryChanged || (!infoEntry.HighCq && Profiler.ProfiledFuncs.TryGetValue(infoEntry.Address, out var value) && value.HighCq))
{
infoEntry.Stubbed = true;
infoEntry.CodeLength = 0;
@@ -738,15 +724,15 @@ namespace ARMeilleure.Translation.PTC
return new UnwindInfo(pushEntries, prologueSize);
}
private TranslatedFunction FastTranslate(
private static TranslatedFunction FastTranslate(
byte[] code,
Counter<uint> callCounter,
ulong guestSize,
UnwindInfo unwindInfo,
bool highCq)
{
CompiledFunction cFunc = new(code, unwindInfo, RelocInfo.Empty);
GuestFunction gFunc = cFunc.MapWithPointer<GuestFunction>(_jitCache, out nint gFuncPointer);
var cFunc = new CompiledFunction(code, unwindInfo, RelocInfo.Empty);
var gFunc = cFunc.MapWithPointer<GuestFunction>(out nint gFuncPointer);
return new TranslatedFunction(gFunc, gFuncPointer, callCounter, guestSize, highCq);
}
@@ -783,7 +769,7 @@ namespace ARMeilleure.Translation.PTC
public void MakeAndSaveTranslations(Translator translator)
{
ConcurrentQueue<(ulong address, PtcProfiler.FuncProfile funcProfile)> profiledFuncsToTranslate = Profiler.GetProfiledFuncsToTranslate(translator.Functions);
var profiledFuncsToTranslate = Profiler.GetProfiledFuncsToTranslate(translator.Functions);
_translateCount = 0;
_translateTotalCount = profiledFuncsToTranslate.Count;
@@ -827,7 +813,7 @@ namespace ARMeilleure.Translation.PTC
void TranslateFuncs()
{
while (profiledFuncsToTranslate.TryDequeue(out (ulong address, PtcProfiler.FuncProfile funcProfile) item))
while (profiledFuncsToTranslate.TryDequeue(out var item))
{
ulong address = item.address;
ExecutionMode executionMode = item.funcProfile.Mode;
@@ -872,11 +858,11 @@ namespace ARMeilleure.Translation.PTC
Stopwatch sw = Stopwatch.StartNew();
foreach (Thread thread in threads)
foreach (var thread in threads)
{
thread.Start();
}
foreach (Thread thread in threads)
foreach (var thread in threads)
{
thread.Join();
}
@@ -956,7 +942,7 @@ namespace ARMeilleure.Translation.PTC
WriteCode(code.AsSpan());
// WriteReloc.
using BinaryWriter relocInfoWriter = new(_relocsStream, EncodingCache.UTF8NoBOM, true);
using var relocInfoWriter = new BinaryWriter(_relocsStream, EncodingCache.UTF8NoBOM, true);
foreach (RelocEntry entry in relocInfo.Entries)
{
@@ -966,7 +952,7 @@ namespace ARMeilleure.Translation.PTC
}
// WriteUnwindInfo.
using BinaryWriter unwindInfoWriter = new(_unwindInfosStream, EncodingCache.UTF8NoBOM, true);
using var unwindInfoWriter = new BinaryWriter(_unwindInfosStream, EncodingCache.UTF8NoBOM, true);
unwindInfoWriter.Write(unwindInfo.PushEntries.Length);
@@ -1,37 +0,0 @@
namespace ARMeilleure.Translation.PTC
{
public readonly struct PtcCacheInfo
{
public const string TitleIdTextDefault = "0000000000000000";
public const string ApplicationIdTextDefault = "0000000000000000";
public const string DisplayVersionDefault = "0";
public ulong ProcessId { get; }
public string TitleIdText { get; }
public string ApplicationIdText { get; }
public byte ProgramIndex { get; }
public string DisplayVersion { get; }
public string ProcessKind { get; }
public string CacheSelector { get; }
public string CacheKey => $"{DisplayVersion}-{CacheSelector}";
public PtcCacheInfo(
ulong processId,
string titleIdText,
string applicationIdText,
byte programIndex,
string displayVersion,
string processKind,
string cacheSelector)
{
ProcessId = processId;
TitleIdText = !string.IsNullOrEmpty(titleIdText) ? titleIdText : TitleIdTextDefault;
ApplicationIdText = !string.IsNullOrEmpty(applicationIdText) ? applicationIdText : ApplicationIdTextDefault;
ProgramIndex = programIndex;
DisplayVersion = !string.IsNullOrEmpty(displayVersion) ? displayVersion : DisplayVersionDefault;
ProcessKind = processKind ?? string.Empty;
CacheSelector = string.IsNullOrEmpty(cacheSelector) ? "default" : cacheSelector;
}
}
}
+6 -15
View File
@@ -23,7 +23,7 @@ namespace ARMeilleure.Translation.PTC
{
private const string OuterHeaderMagicString = "Pohd\0\0\0\0";
private const uint InternalVersion = 7031; //! Not to be incremented manually for each change to the ARMeilleure project.
private const uint InternalVersion = 6698; //! Not to be incremented manually for each change to the ARMeilleure project.
private static readonly uint[] _migrateInternalVersions =
[
@@ -119,9 +119,9 @@ namespace ARMeilleure.Translation.PTC
public ConcurrentQueue<(ulong address, FuncProfile funcProfile)> GetProfiledFuncsToTranslate(TranslatorCache<TranslatedFunction> funcs)
{
ConcurrentQueue<(ulong address, FuncProfile funcProfile)> profiledFuncsToTranslate = new();
var profiledFuncsToTranslate = new ConcurrentQueue<(ulong address, FuncProfile funcProfile)>();
foreach (KeyValuePair<ulong, FuncProfile> profiledFunc in ProfiledFuncs)
foreach (var profiledFunc in ProfiledFuncs)
{
if (!funcs.ContainsKey(profiledFunc.Key) && !profiledFunc.Value.Blacklist)
{
@@ -142,7 +142,7 @@ namespace ARMeilleure.Translation.PTC
{
List<ulong> funcs = [];
foreach (KeyValuePair<ulong, FuncProfile> profiledFunc in ProfiledFuncs)
foreach (var profiledFunc in ProfiledFuncs)
{
if (profiledFunc.Value.Blacklist)
{
@@ -254,12 +254,7 @@ namespace ARMeilleure.Translation.PTC
long fileSize = new FileInfo(fileName).Length;
Logger.Info?.Print(
LogClass.Ptc,
$"{(isBackup ? "Loaded Backup Profiling Info" : "Loaded Profiling Info")} " +
$"(pid: {_ptc.CacheInfo.ProcessId}, title: {_ptc.CacheInfo.TitleIdText}, version: '{_ptc.CacheInfo.DisplayVersion}', " +
$"kind: {_ptc.CacheInfo.ProcessKind}, selector: '{_ptc.CacheInfo.CacheSelector}', key: '{_ptc.CacheInfo.CacheKey}', " +
$"path: '{fileName}', size: {fileSize} bytes, profiled functions: {ProfiledFuncs.Count}).");
Logger.Info?.Print(LogClass.Ptc, $"{(isBackup ? "Loaded Backup Profiling Info" : "Loaded Profiling Info")} (size: {fileSize} bytes, profiled functions: {ProfiledFuncs.Count}).");
return true;
}
@@ -380,11 +375,7 @@ namespace ARMeilleure.Translation.PTC
if (fileSize != 0L)
{
Logger.Info?.Print(
LogClass.Ptc,
$"Saved Profiling Info (pid: {_ptc.CacheInfo.ProcessId}, title: {_ptc.CacheInfo.TitleIdText}, version: '{_ptc.CacheInfo.DisplayVersion}', " +
$"kind: {_ptc.CacheInfo.ProcessKind}, selector: '{_ptc.CacheInfo.CacheSelector}', key: '{_ptc.CacheInfo.CacheKey}', " +
$"path: '{fileName}', size: {fileSize} bytes, profiled functions: {profiledFuncsCount}).");
Logger.Info?.Print(LogClass.Ptc, $"Saved Profiling Info (size: {fileSize} bytes, profiled functions: {profiledFuncsCount}).");
}
}
@@ -44,10 +44,10 @@ namespace ARMeilleure.Translation
public static void Construct(ControlFlowGraph cfg)
{
DefMap[] globalDefs = new DefMap[cfg.Blocks.Count];
Operand[] localDefs = new Operand[cfg.LocalsCount + RegisterConsts.TotalCount];
var globalDefs = new DefMap[cfg.Blocks.Count];
var localDefs = new Operand[cfg.LocalsCount + RegisterConsts.TotalCount];
Queue<BasicBlock> dfPhiBlocks = new();
var dfPhiBlocks = new Queue<BasicBlock>();
for (BasicBlock block = cfg.Blocks.First; block != null; block = block.ListNext)
{
+14 -19
View File
@@ -24,11 +24,10 @@ namespace ARMeilleure.Translation
private readonly IJitMemoryAllocator _allocator;
private readonly ConcurrentQueue<KeyValuePair<ulong, TranslatedFunction>> _oldFuncs;
public readonly JitCache JitCache;
private readonly Ptc _ptc;
internal TranslatorCache<TranslatedFunction> Functions { get; }
public IAddressTable<ulong> FunctionTable { get; }
internal IAddressTable<ulong> FunctionTable { get; }
internal EntryTable<uint> CountTable { get; }
internal TranslatorStubs Stubs { get; }
internal TranslatorQueue Queue { get; }
@@ -44,26 +43,23 @@ namespace ARMeilleure.Translation
_oldFuncs = new ConcurrentQueue<KeyValuePair<ulong, TranslatedFunction>>();
JitCache = new JitCache(allocator);
_ptc = new Ptc(JitCache);
_ptc = new Ptc();
Queue = new TranslatorQueue();
JitCache.Initialize(allocator);
CountTable = new EntryTable<uint>();
Functions = new TranslatorCache<TranslatedFunction>();
FunctionTable = functionTable;
Stubs = new TranslatorStubs(JitCache, FunctionTable);
Stubs = new TranslatorStubs(FunctionTable);
FunctionTable.Fill = (ulong)Stubs.SlowDispatchStub;
}
public IPtcLoadState LoadDiskCache(PtcCacheInfo cacheInfo, bool enabled)
public IPtcLoadState LoadDiskCache(string titleIdText, string displayVersion, bool enabled, string cacheSelector)
{
_ptc.Initialize(cacheInfo, enabled, Memory.Type);
_ptc.Initialize(titleIdText, displayVersion, enabled, Memory.Type, cacheSelector);
return _ptc;
}
@@ -171,7 +167,6 @@ namespace ARMeilleure.Translation
}
ClearJitCache();
JitCache.Dispose();
Stubs.Dispose();
FunctionTable.Dispose();
@@ -247,7 +242,7 @@ namespace ARMeilleure.Translation
internal TranslatedFunction Translate(ulong address, ExecutionMode mode, bool highCq, bool singleStep = false, bool pptcTranslation = false)
{
ArmEmitterContext context = new(
var context = new ArmEmitterContext(
Memory,
CountTable,
FunctionTable,
@@ -291,10 +286,10 @@ namespace ARMeilleure.Translation
Logger.EndPass(PassName.RegisterUsage);
OperandType retType = OperandType.I64;
OperandType[] argTypes = new OperandType[] { OperandType.I64 };
var retType = OperandType.I64;
var argTypes = new OperandType[] { OperandType.I64 };
CompilerOptions options = highCq ? CompilerOptions.HighCq : CompilerOptions.None;
var options = highCq ? CompilerOptions.HighCq : CompilerOptions.None;
if (context.HasPtc && !singleStep)
{
@@ -310,7 +305,7 @@ namespace ARMeilleure.Translation
_ptc.WriteCompiledFunction(address, funcSize, hash, highCq, compiledFunc);
}
GuestFunction func = compiledFunc.MapWithPointer<GuestFunction>(JitCache, out nint funcPointer);
GuestFunction func = compiledFunc.MapWithPointer<GuestFunction>(out nint funcPointer);
Allocators.ResetAll();
@@ -579,7 +574,7 @@ namespace ARMeilleure.Translation
List<TranslatedFunction> functions = Functions.AsList();
foreach (TranslatedFunction func in functions)
foreach (var func in functions)
{
JitCache.Unmap(func.FuncPointer);
@@ -588,7 +583,7 @@ namespace ARMeilleure.Translation
Functions.Clear();
while (_oldFuncs.TryDequeue(out KeyValuePair<ulong, TranslatedFunction> kv))
while (_oldFuncs.TryDequeue(out var kv))
{
JitCache.Unmap(kv.Value.FuncPointer);
@@ -609,7 +604,7 @@ namespace ARMeilleure.Translation
{
while (Queue.Count > 0 && Queue.TryDequeue(out RejitRequest request))
{
if (Functions.TryGetValue(request.Address, out TranslatedFunction func) && func.CallCounter != null)
if (Functions.TryGetValue(request.Address, out var func) && func.CallCounter != null)
{
Volatile.Write(ref func.CallCounter.Value, 0);
}
+24 -29
View File
@@ -14,8 +14,6 @@ namespace ARMeilleure.Translation
/// </summary>
class TranslatorStubs : IDisposable
{
private readonly JitCache _jitCache;
private readonly Lazy<nint> _slowDispatchStub;
private bool _disposed;
@@ -85,15 +83,12 @@ namespace ARMeilleure.Translation
/// Initializes a new instance of the <see cref="TranslatorStubs"/> class with the specified
/// <see cref="Translator"/> instance.
/// </summary>
/// <param name="jitCache">Jit cache to map functions in</param>
/// <param name="functionTable">Function table used to store pointers to the functions that the guest code will call</param>
/// <exception cref="ArgumentNullException"><paramref name="translator"/> is null</exception>
public TranslatorStubs(JitCache jitCache, IAddressTable<ulong> functionTable)
public TranslatorStubs(IAddressTable<ulong> functionTable)
{
ArgumentNullException.ThrowIfNull(functionTable);
_jitCache = jitCache;
_functionTable = functionTable;
_slowDispatchStub = new(GenerateSlowDispatchStub, isThreadSafe: true);
_dispatchStub = new(GenerateDispatchStub, isThreadSafe: true);
@@ -120,12 +115,12 @@ namespace ARMeilleure.Translation
{
if (_dispatchStub.IsValueCreated)
{
_jitCache.Unmap(_dispatchStub.Value);
JitCache.Unmap(_dispatchStub.Value);
}
if (_dispatchLoop.IsValueCreated)
{
_jitCache.Unmap(Marshal.GetFunctionPointerForDelegate(_dispatchLoop.Value));
JitCache.Unmap(Marshal.GetFunctionPointerForDelegate(_dispatchLoop.Value));
}
_disposed = true;
@@ -146,7 +141,7 @@ namespace ARMeilleure.Translation
/// <returns>Generated <see cref="DispatchStub"/></returns>
private nint GenerateDispatchStub()
{
EmitterContext context = new();
var context = new EmitterContext();
Operand lblFallback = Label();
Operand lblEnd = Label();
@@ -165,7 +160,7 @@ namespace ARMeilleure.Translation
for (int i = 0; i < _functionTable.Levels.Length; i++)
{
ref AddressTableLevel level = ref _functionTable.Levels[i];
ref var level = ref _functionTable.Levels[i];
// level.Mask is not used directly because it is more often bigger than 32-bits, so it will not
// be encoded as an immediate on x86's bitwise and operation.
@@ -189,11 +184,11 @@ namespace ARMeilleure.Translation
hostAddress = context.Call(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetFunctionAddress)), guestAddress);
context.Tailcall(hostAddress, nativeContext);
ControlFlowGraph cfg = context.GetControlFlowGraph();
OperandType retType = OperandType.I64;
OperandType[] argTypes = new[] { OperandType.I64 };
var cfg = context.GetControlFlowGraph();
var retType = OperandType.I64;
var argTypes = new[] { OperandType.I64 };
GuestFunction func = Compiler.Compile(cfg, argTypes, retType, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<GuestFunction>(_jitCache);
var func = Compiler.Compile(cfg, argTypes, retType, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<GuestFunction>();
return Marshal.GetFunctionPointerForDelegate(func);
}
@@ -204,7 +199,7 @@ namespace ARMeilleure.Translation
/// <returns>Generated <see cref="SlowDispatchStub"/></returns>
private nint GenerateSlowDispatchStub()
{
EmitterContext context = new();
var context = new EmitterContext();
// Load the target guest address from the native context.
Operand nativeContext = context.LoadArgument(OperandType.I64, 0);
@@ -214,11 +209,11 @@ namespace ARMeilleure.Translation
Operand hostAddress = context.Call(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetFunctionAddress)), guestAddress);
context.Tailcall(hostAddress, nativeContext);
ControlFlowGraph cfg = context.GetControlFlowGraph();
OperandType retType = OperandType.I64;
OperandType[] argTypes = new[] { OperandType.I64 };
var cfg = context.GetControlFlowGraph();
var retType = OperandType.I64;
var argTypes = new[] { OperandType.I64 };
GuestFunction func = Compiler.Compile(cfg, argTypes, retType, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<GuestFunction>(_jitCache);
var func = Compiler.Compile(cfg, argTypes, retType, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<GuestFunction>();
return Marshal.GetFunctionPointerForDelegate(func);
}
@@ -255,7 +250,7 @@ namespace ARMeilleure.Translation
/// <returns><see cref="DispatchLoop"/> function</returns>
private DispatcherFunction GenerateDispatchLoop()
{
EmitterContext context = new();
var context = new EmitterContext();
Operand beginLbl = Label();
Operand endLbl = Label();
@@ -291,11 +286,11 @@ namespace ARMeilleure.Translation
context.Return();
ControlFlowGraph cfg = context.GetControlFlowGraph();
OperandType retType = OperandType.None;
OperandType[] argTypes = new[] { OperandType.I64, OperandType.I64 };
var cfg = context.GetControlFlowGraph();
var retType = OperandType.None;
var argTypes = new[] { OperandType.I64, OperandType.I64 };
return Compiler.Compile(cfg, argTypes, retType, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<DispatcherFunction>(_jitCache);
return Compiler.Compile(cfg, argTypes, retType, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<DispatcherFunction>();
}
/// <summary>
@@ -304,7 +299,7 @@ namespace ARMeilleure.Translation
/// <returns><see cref="ContextWrapper"/> function</returns>
private WrapperFunction GenerateContextWrapper()
{
EmitterContext context = new();
var context = new EmitterContext();
Operand nativeContext = context.LoadArgument(OperandType.I64, 0);
Operand guestMethod = context.LoadArgument(OperandType.I64, 1);
@@ -315,11 +310,11 @@ namespace ARMeilleure.Translation
context.Return(returnValue);
ControlFlowGraph cfg = context.GetControlFlowGraph();
OperandType retType = OperandType.I64;
OperandType[] argTypes = new[] { OperandType.I64, OperandType.I64 };
var cfg = context.GetControlFlowGraph();
var retType = OperandType.I64;
var argTypes = new[] { OperandType.I64, OperandType.I64 };
return Compiler.Compile(cfg, argTypes, retType, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<WrapperFunction>(_jitCache);
return Compiler.Compile(cfg, argTypes, retType, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<WrapperFunction>();
}
}
}
@@ -1,7 +1,6 @@
using ARMeilleure.CodeGen.X86;
using ARMeilleure.IntermediateRepresentation;
using ARMeilleure.State;
using ARMeilleure.Translation.Cache;
using System;
using System.Runtime.InteropServices;
using static ARMeilleure.IntermediateRepresentation.Operand.Factory;
@@ -60,7 +59,7 @@ namespace ARMeilleure.Translation
return context.VectorExtract(OperandType.I32, vec, 0);
}
public static FpFlagsPInvokeTest GenerateFpFlagsPInvokeTest(JitCache jitCache)
public static FpFlagsPInvokeTest GenerateFpFlagsPInvokeTest()
{
EmitterContext context = new();
@@ -142,7 +141,7 @@ namespace ARMeilleure.Translation
OperandType[] argTypes = [OperandType.I64];
return Compiler.Compile(cfg, argTypes, OperandType.I32, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<FpFlagsPInvokeTest>(jitCache);
return Compiler.Compile(cfg, argTypes, OperandType.I32, CompilerOptions.HighCq, RuntimeInformation.ProcessArchitecture).Map<FpFlagsPInvokeTest>();
}
}
}
@@ -51,7 +51,7 @@ namespace Ryujinx.Audio.Backends.Apple
if (result == 0)
{
AudioChannelLayout layout = new()
AudioChannelLayout layout = new AudioChannelLayout
{
AudioChannelLayoutTag = kAudioChannelLayoutTag_MPEG_5_1_A,
AudioChannelBitmap = 0,
@@ -2,8 +2,6 @@
<PropertyGroup>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -3,8 +3,6 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -130,7 +130,7 @@ namespace Ryujinx.Audio.Backends.SDL3
{
SDL_AudioSpec desired = GetSDL3Spec(requestedSampleFormat, requestedSampleRate, requestedChannelCount);
SDL_AudioSpec got = desired;
SDL_AudioStreamCallbackPointer pCallback = callback != null ? (SDL_AudioStreamCallbackPointer)Marshal.GetFunctionPointerForDelegate(callback) : null;
var pCallback = callback != null ? (SDL_AudioStreamCallbackPointer)Marshal.GetFunctionPointerForDelegate(callback) : null;
// From SDL 3 and on, SDL requires us to set this as a hint
SDL_SetHint(SDL_HINT_AUDIO_DEVICE_SAMPLE_FRAMES, $"{sampleCount}");
@@ -38,7 +38,7 @@ namespace Ryujinx.Audio.Backends.SoundIo.Native
get => Marshal.PtrToStringAnsi(GetOutContext().Name);
set
{
SoundIoOutStream context = GetOutContext();
var context = GetOutContext();
if (_nameStored != nint.Zero && context.Name == _nameStored)
{
@@ -129,8 +129,8 @@ namespace Ryujinx.Audio.Backends.SoundIo.Native
unsafe
{
int* frameCountPtr = &nativeFrameCount;
IntPtr* arenasPtr = &arenas;
var frameCountPtr = &nativeFrameCount;
var arenasPtr = &arenas;
CheckError(soundio_outstream_begin_write(_context, (nint)arenasPtr, (nint)frameCountPtr));
frameCount = *frameCountPtr;
@@ -4,8 +4,6 @@
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<RuntimeIdentifiers>win-x64;osx-x64;linux-x64;win-arm64;osx-arm64;linux-arm64</RuntimeIdentifiers>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -27,7 +27,7 @@ namespace Ryujinx.Audio.Renderer.Utils
private void UpdateHeader()
{
BinaryWriter writer = new(_stream);
var writer = new BinaryWriter(_stream);
long currentPos = writer.Seek(0, SeekOrigin.Current);
-2
View File
@@ -3,8 +3,6 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
+1 -1
View File
@@ -34,7 +34,7 @@ namespace Ryujinx.Common
{
try
{
foreach (T item in _queue.GetConsumingEnumerable(_cts.Token))
foreach (var item in _queue.GetConsumingEnumerable(_cts.Token))
{
_workerAction(item);
}
@@ -1,7 +1,6 @@
using System;
using System.Buffers;
using System.Diagnostics;
using System.IO;
using System.Runtime.CompilerServices;
using System.Runtime.InteropServices;
@@ -17,15 +16,15 @@ namespace Ryujinx.Common.Extensions
/// <param name="fileFullName">The path and name of the file to create and dump to</param>
public static void DumpToFile(this ref SequenceReader<byte> reader, string fileFullName)
{
long initialConsumed = reader.Consumed;
var initialConsumed = reader.Consumed;
reader.Rewind(initialConsumed);
using (FileStream fileStream = System.IO.File.Create(fileFullName, 4096, System.IO.FileOptions.None))
using (var fileStream = System.IO.File.Create(fileFullName, 4096, System.IO.FileOptions.None))
{
while (reader.End == false)
{
ReadOnlySpan<byte> span = reader.CurrentSpan;
var span = reader.CurrentSpan;
fileStream.Write(span);
reader.Advance(span.Length);
}
@@ -41,7 +41,7 @@ namespace Ryujinx.Common.Logging.Formatters
sb.Append('{');
foreach (PropertyInfo prop in props)
foreach (var prop in props)
{
sb.Append(prop.Name);
sb.Append(": ");
@@ -52,7 +52,7 @@ namespace Ryujinx.Common.Logging.Formatters
if (array is not null)
{
foreach (object? item in array)
foreach (var item in array)
{
sb.Append(item);
sb.Append(", ");
+8 -19
View File
@@ -136,7 +136,11 @@ namespace Ryujinx.Common.Logging
_time = Stopwatch.StartNew();
SetConsoleTargetEnabled(true);
// Logger should log to console by default
AddTarget(new AsyncLogTargetWrapper(
new ConsoleLogTarget("console"),
1000,
AsyncLogTargetOverflowAction.Discard));
Notice = new Log(LogLevel.Notice);
@@ -169,21 +173,6 @@ namespace Ryujinx.Common.Logging
Updated += target.Log;
}
public static void SetConsoleTargetEnabled(bool enabled)
{
if (enabled)
{
AddTarget(new AsyncLogTargetWrapper(
new ConsoleLogTarget("console"),
1000,
AsyncLogTargetOverflowAction.Discard));
}
else
{
RemoveTarget("console");
}
}
public static void RemoveTarget(string target)
{
ILogTarget logTarget = GetTarget(target);
@@ -215,7 +204,7 @@ namespace Ryujinx.Common.Logging
_stdErrAdapter.Dispose();
foreach (ILogTarget target in _logTargets)
foreach (var target in _logTargets)
{
target.Dispose();
}
@@ -225,9 +214,9 @@ namespace Ryujinx.Common.Logging
public static IReadOnlyCollection<LogLevel> GetEnabledLevels()
{
Log?[] logs = new[] { Debug, Info, Warning, Error, Guest, AccessLog, Stub, Trace };
var logs = new[] { Debug, Info, Warning, Error, Guest, AccessLog, Stub, Trace };
List<LogLevel> levels = new(logs.Length);
foreach (Log? log in logs)
foreach (var log in logs)
{
if (log.HasValue)
{
@@ -94,7 +94,7 @@ namespace Ryujinx.Common.Logging.Targets
return;
}
using ManualResetEventSlim signal = new(false);
using var signal = new ManualResetEventSlim(false);
try
{
_messageQueue.Add(new FlushEventArgs(signal));
@@ -26,7 +26,7 @@ namespace Ryujinx.Common.Logging.Targets
public void Log(object sender, LogEventArgs e)
{
LogEventArgsJson logEventArgsJson = LogEventArgsJson.FromLogEventArgs(e);
var logEventArgsJson = LogEventArgsJson.FromLogEventArgs(e);
JsonHelper.SerializeToStream(_stream, logEventArgsJson, LogEventJsonSerializerContext.Default.LogEventArgsJson);
}
-2
View File
@@ -3,8 +3,6 @@
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefineConstants Condition=" '$(ExtraDefineConstants)' != '' ">$(DefineConstants);$(ExtraDefineConstants)</DefineConstants>
<Configurations>Debug;Release;Debug AOT;Release AOT</Configurations>
<Platforms>AnyCPU</Platforms>
</PropertyGroup>
<ItemGroup>
@@ -19,21 +19,21 @@ namespace Ryujinx.Common
public static byte[] Read(string filename)
{
(Assembly assembly, string path) = ResolveManifestPath(filename);
var (assembly, path) = ResolveManifestPath(filename);
return Read(assembly, path);
}
public static Task<byte[]> ReadAsync(string filename)
{
(Assembly assembly, string path) = ResolveManifestPath(filename);
var (assembly, path) = ResolveManifestPath(filename);
return ReadAsync(assembly, path);
}
public static byte[] Read(Assembly assembly, string filename)
{
using Stream stream = GetStream(assembly, filename);
using var stream = GetStream(assembly, filename);
if (stream == null)
{
return null;
@@ -44,14 +44,14 @@ namespace Ryujinx.Common
public static MemoryOwner<byte> ReadFileToRentedMemory(string filename)
{
(Assembly assembly, string path) = ResolveManifestPath(filename);
var (assembly, path) = ResolveManifestPath(filename);
return ReadFileToRentedMemory(assembly, path);
}
public static MemoryOwner<byte> ReadFileToRentedMemory(Assembly assembly, string filename)
{
using Stream stream = GetStream(assembly, filename);
using var stream = GetStream(assembly, filename);
return stream is null
? null
@@ -60,7 +60,7 @@ namespace Ryujinx.Common
public async static Task<byte[]> ReadAsync(Assembly assembly, string filename)
{
using Stream stream = GetStream(assembly, filename);
using var stream = GetStream(assembly, filename);
if (stream == null)
{
return null;
@@ -71,55 +71,55 @@ namespace Ryujinx.Common
public static string ReadAllText(string filename)
{
(Assembly assembly, string path) = ResolveManifestPath(filename);
var (assembly, path) = ResolveManifestPath(filename);
return ReadAllText(assembly, path);
}
public static Task<string> ReadAllTextAsync(string filename)
{
(Assembly assembly, string path) = ResolveManifestPath(filename);
var (assembly, path) = ResolveManifestPath(filename);
return ReadAllTextAsync(assembly, path);
}
public static string ReadAllText(Assembly assembly, string filename)
{
using Stream stream = GetStream(assembly, filename);
using var stream = GetStream(assembly, filename);
if (stream == null)
{
return null;
}
using StreamReader reader = new(stream);
using var reader = new StreamReader(stream);
return reader.ReadToEnd();
}
public async static Task<string> ReadAllTextAsync(Assembly assembly, string filename)
{
using Stream stream = GetStream(assembly, filename);
using var stream = GetStream(assembly, filename);
if (stream == null)
{
return null;
}
using StreamReader reader = new(stream);
using var reader = new StreamReader(stream);
return await reader.ReadToEndAsync();
}
public static Stream GetStream(string filename)
{
(Assembly assembly, string path) = ResolveManifestPath(filename);
var (assembly, path) = ResolveManifestPath(filename);
return GetStream(assembly, path);
}
public static Stream GetStream(Assembly assembly, string filename)
{
string @namespace = assembly.GetName().Name;
string manifestUri = @namespace + "." + filename.Replace('/', '.');
var @namespace = assembly.GetName().Name;
var manifestUri = @namespace + "." + filename.Replace('/', '.');
Stream stream = assembly.GetManifestResourceStream(manifestUri);
var stream = assembly.GetManifestResourceStream(manifestUri);
return stream;
}
@@ -133,11 +133,11 @@ namespace Ryujinx.Common
private static (Assembly, string) ResolveManifestPath(string filename)
{
string[] segments = filename.Split('/', 2, StringSplitOptions.RemoveEmptyEntries);
var segments = filename.Split('/', 2, StringSplitOptions.RemoveEmptyEntries);
if (segments.Length >= 2)
{
foreach (Assembly assembly in AppDomain.CurrentDomain.GetAssemblies())
foreach (var assembly in AppDomain.CurrentDomain.GetAssemblies())
{
if (assembly.GetName().Name == segments[0])
{
@@ -9,7 +9,7 @@ namespace Ryujinx.Common.Utilities
public static void CopyDirectory(string sourceDir, string destinationDir, bool recursive)
{
// Get information about the source directory
DirectoryInfo dir = new(sourceDir);
var dir = new DirectoryInfo(sourceDir);
// Check if the source directory exists
if (!dir.Exists)
@@ -49,7 +49,7 @@ namespace Ryujinx.Common.Utilities
public static string SanitizeFileName(string fileName)
{
HashSet<char> reservedChars = new(Path.GetInvalidFileNameChars());
var reservedChars = new HashSet<char>(Path.GetInvalidFileNameChars());
return string.Concat(fileName.Select(c => reservedChars.Contains(c) ? '_' : c));
}
}
@@ -1,6 +1,5 @@
using MsgPack;
using System;
using System.Collections.Generic;
using System.Text;
namespace Ryujinx.Common.Utilities
@@ -19,7 +18,7 @@ namespace Ryujinx.Common.Utilities
public static string Format(MessagePackObject obj)
{
IndentedStringBuilder builder = new();
var builder = new IndentedStringBuilder();
FormatMsgPackObj(obj, builder);
@@ -42,7 +41,7 @@ namespace Ryujinx.Common.Utilities
}
else
{
object literal = obj.ToObject();
var literal = obj.ToObject();
if (literal is String)
{
@@ -89,7 +88,7 @@ namespace Ryujinx.Common.Utilities
{
builder.Append("[ ");
foreach (byte b in arr)
foreach (var b in arr)
{
builder.Append("0x");
builder.Append(ToHexChar(b >> 4));
@@ -112,7 +111,7 @@ namespace Ryujinx.Common.Utilities
builder.Append("0x");
}
foreach (byte b in arr)
foreach (var b in arr)
{
builder.Append(ToHexChar(b >> 4));
builder.Append(ToHexChar(b & 0xF));
@@ -123,7 +122,7 @@ namespace Ryujinx.Common.Utilities
private static void FormatMsgPackMap(MessagePackObject obj, IndentedStringBuilder builder)
{
MessagePackObjectDictionary map = obj.AsDictionary();
var map = obj.AsDictionary();
builder.Append('{');
@@ -131,7 +130,7 @@ namespace Ryujinx.Common.Utilities
builder.IncreaseIndent()
.AppendLine();
foreach (KeyValuePair<MessagePackObject, MessagePackObject> item in map)
foreach (var item in map)
{
FormatMsgPackObj(item.Key, builder);
@@ -155,11 +154,11 @@ namespace Ryujinx.Common.Utilities
private static void FormatMsgPackArray(MessagePackObject obj, IndentedStringBuilder builder)
{
IList<MessagePackObject> arr = obj.AsList();
var arr = obj.AsList();
builder.Append("[ ");
foreach (MessagePackObject item in arr)
foreach (var item in arr)
{
FormatMsgPackObj(item, builder);
+1 -2
View File
@@ -1,6 +1,5 @@
using Microsoft.IO;
using Ryujinx.Common.Memory;
using System;
using System.IO;
using System.Threading;
using System.Threading.Tasks;
@@ -28,7 +27,7 @@ namespace Ryujinx.Common.Utilities
MemoryOwner<byte> ownedMemory = MemoryOwner<byte>.Rent(checked((int)bytesExpected));
Span<byte> destSpan = ownedMemory.Span;
var destSpan = ownedMemory.Span;
int totalBytesRead = 0;
@@ -15,7 +15,7 @@ namespace Ryujinx.Common.Utilities
{
internal static TimeSpan Measure(Action action)
{
Stopwatch sw = new();
var sw = new Stopwatch();
sw.Start();
try
@@ -66,7 +66,7 @@ namespace Ryujinx.Common.Utilities
{
if (Path.GetExtension(filename).Equals(".XCI", StringComparison.InvariantCultureIgnoreCase))
{
XCIFileTrimmer trimmer = new(filename, log);
var trimmer = new XCIFileTrimmer(filename, log);
return trimmer.CanBeTrimmed;
}
@@ -77,7 +77,7 @@ namespace Ryujinx.Common.Utilities
{
if (Path.GetExtension(filename).Equals(".XCI", StringComparison.InvariantCultureIgnoreCase))
{
XCIFileTrimmer trimmer = new(filename, log);
var trimmer = new XCIFileTrimmer(filename, log);
return trimmer.CanBeUntrimmed;
}
@@ -221,7 +221,7 @@ namespace Ryujinx.Common.Utilities
{
long maxReads = readSizeB / BufferSize;
long read = 0;
byte[] buffer = new byte[BufferSize];
var buffer = new byte[BufferSize];
while (true)
{
@@ -287,7 +287,7 @@ namespace Ryujinx.Common.Utilities
try
{
FileInfo info = new(Filename);
var info = new FileInfo(Filename);
if ((info.Attributes & FileAttributes.ReadOnly) == FileAttributes.ReadOnly)
{
try
@@ -308,7 +308,7 @@ namespace Ryujinx.Common.Utilities
return OperationOutcome.FileSizeChanged;
}
FileStream outfileStream = new(_filename, FileMode.Open, FileAccess.Write, FileShare.Write);
var outfileStream = new FileStream(_filename, FileMode.Open, FileAccess.Write, FileShare.Write);
try
{
@@ -347,7 +347,7 @@ namespace Ryujinx.Common.Utilities
{
Log?.Write(LogType.Info, "Untrimming...");
FileInfo info = new(Filename);
var info = new FileInfo(Filename);
if ((info.Attributes & FileAttributes.ReadOnly) == FileAttributes.ReadOnly)
{
try
@@ -368,7 +368,7 @@ namespace Ryujinx.Common.Utilities
return OperationOutcome.FileSizeChanged;
}
FileStream outfileStream = new(_filename, FileMode.Append, FileAccess.Write, FileShare.Write);
var outfileStream = new FileStream(_filename, FileMode.Append, FileAccess.Write, FileShare.Write);
long bytesToWriteB = UntrimmedFileSizeB - FileSizeB;
try
@@ -413,7 +413,7 @@ namespace Ryujinx.Common.Utilities
try
{
byte[] buffer = new byte[BufferSize];
var buffer = new byte[BufferSize];
Array.Fill<byte>(buffer, PaddingByte);
while (bytesLeftToWriteB > 0)
+295 -34
View File
@@ -1,9 +1,15 @@
using ARMeilleure.Common;
using ARMeilleure.Memory;
using Ryujinx.Common;
using Ryujinx.Cpu.Signal;
using Ryujinx.Memory;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Runtime.InteropServices;
using System.Threading;
using static Ryujinx.Cpu.MemoryEhMeilleure;
namespace Ryujinx.Cpu
namespace ARMeilleure.Common
{
/// <summary>
/// Represents a table of guest address to a value.
@@ -11,12 +17,84 @@ namespace Ryujinx.Cpu
/// <typeparam name="TEntry">Type of the value</typeparam>
public unsafe class AddressTable<TEntry> : IAddressTable<TEntry> where TEntry : unmanaged
{
/// <summary>
/// Represents a page of the address table.
/// </summary>
private readonly struct AddressTablePage
{
/// <summary>
/// True if the allocation belongs to a sparse block, false otherwise.
/// </summary>
public readonly bool IsSparse;
/// <summary>
/// Base address for the page.
/// </summary>
public readonly nint Address;
public AddressTablePage(bool isSparse, nint address)
{
IsSparse = isSparse;
Address = address;
}
}
/// <summary>
/// A sparsely mapped block of memory with a signal handler to map pages as they're accessed.
/// </summary>
private readonly struct TableSparseBlock : IDisposable
{
public readonly SparseMemoryBlock Block;
private readonly TrackingEventDelegate _trackingEvent;
public TableSparseBlock(ulong size, Action<nint> ensureMapped, PageInitDelegate pageInit)
{
var block = new SparseMemoryBlock(size, pageInit, null);
_trackingEvent = (ulong address, ulong _, bool _) =>
{
ulong pointer = (ulong)block.Block.Pointer + address;
ensureMapped((nint)pointer);
return pointer;
};
bool added = NativeSignalHandler.AddTrackedRegion(
(nuint)block.Block.Pointer,
(nuint)(block.Block.Pointer + (nint)block.Block.Size),
Marshal.GetFunctionPointerForDelegate(_trackingEvent));
if (!added)
{
throw new InvalidOperationException("Number of allowed tracked regions exceeded.");
}
Block = block;
}
public void Dispose()
{
NativeSignalHandler.RemoveTrackedRegion((nuint)Block.Block.Pointer);
Block.Dispose();
}
}
private bool _disposed;
private TEntry** _table;
private readonly List<nint> _pages;
private readonly List<AddressTablePage> _pages;
private TEntry _fill;
/// <inheritdoc/>
public AddressTableType TableType => AddressTableType.Default;
private readonly MemoryBlock _sparseFill;
private readonly SparseMemoryBlock _fillBottomLevel;
private readonly TEntry* _fillBottomLevelPtr;
private readonly List<TableSparseBlock> _sparseReserved;
private readonly ReaderWriterLockSlim _sparseLock;
private ulong _sparseBlockSize;
private ulong _sparseReservedOffset;
public bool Sparse { get; }
/// <inheritdoc/>
public ulong Mask { get; }
@@ -25,7 +103,17 @@ namespace Ryujinx.Cpu
public AddressTableLevel[] Levels { get; }
/// <inheritdoc/>
public TEntry Fill { get; set; }
public TEntry Fill
{
get
{
return _fill;
}
set
{
UpdateFill(value);
}
}
/// <inheritdoc/>
public nint Base
@@ -43,24 +131,44 @@ namespace Ryujinx.Cpu
/// <summary>
/// Constructs a new instance of the <see cref="AddressTable{TEntry}"/> class with the specified list of
/// <see cref="AddressTableLevel"/>.
/// <see cref="Level"/>.
/// </summary>
/// <param name="levels">Levels for the address table</param>
/// <param name="sparse">True if the bottom page should be sparsely mapped</param>
/// <exception cref="ArgumentNullException"><paramref name="levels"/> is null</exception>
/// <exception cref="ArgumentException">Length of <paramref name="levels"/> is less than 2</exception>
public AddressTable(AddressTableLevel[] levels)
public AddressTable(AddressTableLevel[] levels, bool sparse)
{
ArgumentNullException.ThrowIfNull(levels);
_pages = new List<nint>(capacity: 16);
_pages = new List<AddressTablePage>(capacity: 16);
Levels = levels;
Mask = 0;
foreach (AddressTableLevel level in Levels)
foreach (var level in Levels)
{
Mask |= level.Mask;
}
Sparse = sparse;
if (sparse)
{
// If the address table is sparse, allocate a fill block
_sparseFill = new MemoryBlock(268435456ul, MemoryAllocationFlags.Mirrorable); //low Power TC uses size: 65536ul
ulong bottomLevelSize = (1ul << levels.Last().Length) * (ulong)sizeof(TEntry);
_fillBottomLevel = new SparseMemoryBlock(bottomLevelSize, null, _sparseFill);
_fillBottomLevelPtr = (TEntry*)_fillBottomLevel.Block.Pointer;
_sparseReserved = [];
_sparseLock = new ReaderWriterLockSlim();
_sparseBlockSize = bottomLevelSize;
}
}
/// <summary>
@@ -68,10 +176,29 @@ namespace Ryujinx.Cpu
/// Selects the best table structure for A32/A64, taking into account the selected memory manager type.
/// </summary>
/// <param name="for64Bits">True if the guest is A64, false otherwise</param>
/// <param name="type">Memory manager type</param>
/// <returns>An <see cref="AddressTable{TEntry}"/> for ARM function lookup</returns>
public static AddressTable<TEntry> CreateForArm(bool for64Bits)
public static AddressTable<TEntry> CreateForArm(bool for64Bits, MemoryManagerType type)
{
return new AddressTable<TEntry>(AddressTablePresets.GetArmPreset(for64Bits, false));
// Assume software memory means that we don't want to use any signal handlers.
bool sparse = type != MemoryManagerType.SoftwareMmu && type != MemoryManagerType.SoftwarePageTable;
return new AddressTable<TEntry>(AddressTablePresets.GetArmPreset(for64Bits, sparse), sparse);
}
/// <summary>
/// Update the fill value for the bottom level of the table.
/// </summary>
/// <param name="fillValue">New fill value</param>
private void UpdateFill(TEntry fillValue)
{
if (_sparseFill != null)
{
Span<byte> span = _sparseFill.GetSpan(0, (int)_sparseFill.Size);
MemoryMarshal.Cast<byte, TEntry>(span).Fill(fillValue);
}
_fill = fillValue;
}
/// <summary>
@@ -79,7 +206,17 @@ namespace Ryujinx.Cpu
/// </summary>
/// <param name="address"></param>
/// <param name="size"></param>
public void SignalCodeRange(ulong address, ulong size) { }
public void SignalCodeRange(ulong address, ulong size)
{
AddressTableLevel bottom = Levels.Last();
ulong bottomLevelEntries = 1ul << bottom.Length;
ulong entryIndex = address >> bottom.Index;
ulong entries = size >> bottom.Index;
entries += entryIndex - BitUtils.AlignDown(entryIndex, bottomLevelEntries);
_sparseBlockSize = Math.Max(_sparseBlockSize, BitUtils.AlignUp(entries, bottomLevelEntries) * (ulong)sizeof(TEntry));
}
/// <inheritdoc/>
public bool IsValid(ulong address)
@@ -103,6 +240,8 @@ namespace Ryujinx.Cpu
long index = Levels[^1].GetValue(address);
EnsureMapped((nint)(page + index));
return ref page[index];
}
}
@@ -121,19 +260,19 @@ namespace Ryujinx.Cpu
ref AddressTableLevel level = ref Levels[i];
if (page != null)
{
ref TEntry* nextPage = ref page![level.GetValue(address)];
ref TEntry* nextPage = ref page[level.GetValue(address)];
if (nextPage == null)
if (nextPage == null || nextPage == _fillBottomLevelPtr)
{
ref AddressTableLevel nextLevel = ref Levels[i + 1];
if (i == Levels.Length - 2)
{
nextPage = (TEntry*)Allocate(1 << nextLevel.Length, Fill);
nextPage = (TEntry*)Allocate(1 << nextLevel.Length, Fill, leaf: true);
}
else
{
nextPage = (TEntry*)Allocate(1 << nextLevel.Length, nint.Zero);
nextPage = (TEntry*)Allocate(1 << nextLevel.Length, GetFillValue(i), leaf: false);
}
}
@@ -144,6 +283,57 @@ namespace Ryujinx.Cpu
return (TEntry*)page;
}
/// <summary>
/// Ensure the given pointer is mapped in any overlapping sparse reservations.
/// </summary>
/// <param name="ptr">Pointer to be mapped</param>
private void EnsureMapped(nint ptr)
{
if (Sparse)
{
// Check sparse allocations to see if the pointer is in any of them.
// Ensure the page is committed if there's a match.
_sparseLock.EnterReadLock();
try
{
foreach (TableSparseBlock reserved in _sparseReserved)
{
SparseMemoryBlock sparse = reserved.Block;
if (ptr >= sparse.Block.Pointer && ptr < sparse.Block.Pointer + (nint)sparse.Block.Size)
{
sparse.EnsureMapped((ulong)(ptr - sparse.Block.Pointer));
break;
}
}
}
finally
{
_sparseLock.ExitReadLock();
}
}
}
/// <summary>
/// Get the fill value for a non-leaf level of the table.
/// </summary>
/// <param name="level">Level to get the fill value for</param>
/// <returns>The fill value</returns>
private nint GetFillValue(int level)
{
if (_fillBottomLevel != null && level == Levels.Length - 2)
{
return (nint)_fillBottomLevelPtr;
}
else
{
return nint.Zero;
}
}
/// <summary>
/// Lazily initialize and get the root page of the <see cref="AddressTable{TEntry}"/>.
/// </summary>
@@ -153,35 +343,91 @@ namespace Ryujinx.Cpu
if (_table == null)
{
if (Levels.Length == 1)
_table = (TEntry**)Allocate(1 << Levels[0].Length, Fill);
_table = (TEntry**)Allocate(1 << Levels[0].Length, Fill, leaf: true);
else
_table = (TEntry**)Allocate(1 << Levels[0].Length, nint.Zero);
_table = (TEntry**)Allocate(1 << Levels[0].Length, GetFillValue(0), leaf: false);
}
return _table;
}
/// <summary>
/// Initialize a leaf page with the fill value.
/// </summary>
/// <param name="page">Page to initialize</param>
private void InitLeafPage(Span<byte> page)
{
MemoryMarshal.Cast<byte, TEntry>(page).Fill(_fill);
}
/// <summary>
/// Reserve a new sparse block, and add it to the list.
/// </summary>
/// <returns>The new sparse block that was added</returns>
private TableSparseBlock ReserveNewSparseBlock()
{
var block = new TableSparseBlock(_sparseBlockSize, EnsureMapped, InitLeafPage);
_sparseReserved.Add(block);
_sparseReservedOffset = 0;
return block;
}
/// <summary>
/// Allocates a block of memory of the specified type and length.
/// </summary>
/// <typeparam name="T">Type of elements</typeparam>
/// <param name="length">Number of elements</param>
/// <param name="fill">Fill value</param>
/// <param name="leaf"><see langword="true"/> if leaf; otherwise <see langword="false"/></param>
/// <returns>Allocated block</returns>
private nint Allocate<T>(int length, T fill) where T : unmanaged
private nint Allocate<T>(int length, T fill, bool leaf) where T : unmanaged
{
int size = sizeof(T) * length;
var size = sizeof(T) * length;
nint address = (nint)NativeAllocator.Instance.Allocate((uint)size);
AddressTablePage page;
Span<T> span = new((void*)address, length);
span.Fill(fill);
if (Sparse && leaf)
{
_sparseLock.EnterWriteLock();
_pages.Add(address);
SparseMemoryBlock block;
if (_sparseReserved.Count == 0)
{
block = ReserveNewSparseBlock().Block;
}
else
{
block = _sparseReserved.Last().Block;
if (_sparseReservedOffset == block.Block.Size)
{
block = ReserveNewSparseBlock().Block;
}
}
page = new AddressTablePage(true, block.Block.Pointer + (nint)_sparseReservedOffset);
_sparseReservedOffset += (ulong)size;
_sparseLock.ExitWriteLock();
}
else
{
var address = (nint)NativeAllocator.Instance.Allocate((uint)size);
page = new AddressTablePage(false, address);
var span = new Span<T>((void*)page.Address, length);
span.Fill(fill);
}
_pages.Add(page);
//TranslatorEventSource.Log.AddressTableAllocated(size, leaf);
return address;
return page.Address;
}
/// <summary>
@@ -200,17 +446,32 @@ namespace Ryujinx.Cpu
/// <param name="disposing"><see langword="true"/> to dispose managed resources also; otherwise just unmanaged resouces</param>
protected virtual void Dispose(bool disposing)
{
if (_disposed)
if (!_disposed)
{
return;
}
foreach (var page in _pages)
{
if (!page.IsSparse)
{
Marshal.FreeHGlobal(page.Address);
}
}
foreach (nint page in _pages)
{
Marshal.FreeHGlobal(page);
}
if (Sparse)
{
foreach (TableSparseBlock block in _sparseReserved)
{
block.Dispose();
}
_disposed = true;
_sparseReserved.Clear();
_fillBottomLevel.Dispose();
_sparseFill.Dispose();
_sparseLock.Dispose();
}
_disposed = true;
}
}
/// <summary>
+1 -1
View File
@@ -29,7 +29,7 @@ namespace Ryujinx.Cpu.AppleHv
public HvAddressSpace(MemoryBlock backingMemory, ulong asSize)
{
(_asBase, HvIpaAllocator ipaAllocator) = HvVm.CreateAddressSpace(backingMemory);
(_asBase, var ipaAllocator) = HvVm.CreateAddressSpace(backingMemory);
_backingSize = backingMemory.Size;
_userRange = new HvAddressSpaceRange(ipaAllocator);
+1 -2
View File
@@ -1,5 +1,4 @@
using ARMeilleure.Memory;
using ARMeilleure.Translation.PTC;
using System.Runtime.Versioning;
namespace Ryujinx.Cpu.AppleHv
@@ -33,7 +32,7 @@ namespace Ryujinx.Cpu.AppleHv
{
}
public IDiskCacheLoadState LoadDiskCache(PtcCacheInfo cacheInfo, bool enabled)
public IDiskCacheLoadState LoadDiskCache(string titleIdText, string displayVersion, bool enabled, string cacheSelector)
{
return new DummyDiskCacheLoadState();
}
+51 -54
View File
@@ -1,5 +1,4 @@
using ARMeilleure.State;
using Ryujinx.Common.Logging;
using Ryujinx.Cpu.AppleHv.Arm;
using Ryujinx.Memory.Tracking;
using System;
@@ -18,7 +17,9 @@ namespace Ryujinx.Cpu.AppleHv
{
uint currentEl = Pstate & ~((uint)ExceptionLevel.PstateMask);
if (currentEl == (uint)ExceptionLevel.EL1h)
{
return _impl.ElrEl1;
}
return _impl.Pc;
}
}
@@ -68,7 +69,9 @@ namespace Ryujinx.Cpu.AppleHv
set
{
if (value)
{
throw new NotSupportedException();
}
}
}
@@ -79,12 +82,10 @@ namespace Ryujinx.Cpu.AppleHv
private readonly IHvExecutionContext _shadowContext;
private IHvExecutionContext _impl;
private int _shouldStep;
private readonly ExceptionCallbacks _exceptionCallbacks;
private int _interruptRequested;
// GPU Sync control
private int _syncCounter;
private int _strongSyncCounter;
private readonly ExceptionCallbacks _exceptionCallbacks;
private int _interruptRequested;
public HvExecutionContext(ICounter counter, ExceptionCallbacks exceptionCallbacks)
{
@@ -107,17 +108,38 @@ namespace Ryujinx.Cpu.AppleHv
/// <inheritdoc/>
public void SetV(int index, V128 value) => _impl.SetV(index, value);
private void InterruptHandler() => _exceptionCallbacks.InterruptCallback?.Invoke(this);
private void BreakHandler(ulong address, int imm) => _exceptionCallbacks.BreakCallback?.Invoke(this, address, imm);
private void StepHandler() => _exceptionCallbacks.StepCallback?.Invoke(this);
private void SupervisorCallHandler(ulong address, int imm) => _exceptionCallbacks.SupervisorCallback?.Invoke(this, address, imm);
private void UndefinedHandler(ulong address, int opCode) => _exceptionCallbacks.UndefinedCallback?.Invoke(this, address, opCode);
private void InterruptHandler()
{
_exceptionCallbacks.InterruptCallback?.Invoke(this);
}
private void BreakHandler(ulong address, int imm)
{
_exceptionCallbacks.BreakCallback?.Invoke(this, address, imm);
}
private void StepHandler()
{
_exceptionCallbacks.StepCallback?.Invoke(this);
}
private void SupervisorCallHandler(ulong address, int imm)
{
_exceptionCallbacks.SupervisorCallback?.Invoke(this, address, imm);
}
private void UndefinedHandler(ulong address, int opCode)
{
_exceptionCallbacks.UndefinedCallback?.Invoke(this, address, opCode);
}
/// <inheritdoc/>
public void RequestInterrupt()
{
if (Interlocked.Exchange(ref _interruptRequested, 1) == 0 && _impl is HvExecutionContextVcpu impl)
{
impl.RequestInterrupt();
}
}
private bool GetAndClearInterruptRequested()
@@ -139,9 +161,13 @@ namespace Ryujinx.Cpu.AppleHv
{
uint currentEl = Pstate & ~((uint)ExceptionLevel.PstateMask);
if (currentEl == (uint)ExceptionLevel.EL1h)
{
_impl.ElrEl1 = value;
}
else
{
_impl.Pc = value;
}
}
}
@@ -155,10 +181,8 @@ namespace Ryujinx.Cpu.AppleHv
public unsafe void Execute(HvMemoryManager memoryManager, ulong address)
{
HvVcpu vcpu = HvVcpuPool.Instance.Create(memoryManager.AddressSpace, _shadowContext, SwapContext);
HvApi.hv_vcpu_set_reg(vcpu.Handle, HvReg.PC, address).ThrowOnError();
_syncCounter = 0;
_strongSyncCounter = 0;
HvApi.hv_vcpu_set_reg(vcpu.Handle, HvReg.PC, address).ThrowOnError();
while (Running)
{
@@ -168,23 +192,16 @@ namespace Ryujinx.Cpu.AppleHv
if (currentEl == (uint)ExceptionLevel.EL1h)
{
HvApi.hv_vcpu_get_sys_reg(vcpu.Handle, HvSysReg.SPSR_EL1, out ulong spsr).ThrowOnError();
spsr |= (1U << 21);
spsr |= (1 << 21);
HvApi.hv_vcpu_set_sys_reg(vcpu.Handle, HvSysReg.SPSR_EL1, spsr);
}
else
{
Pstate |= (1U << 21);
Pstate |= (1 << 21);
}
HvApi.hv_vcpu_set_sys_reg(vcpu.Handle, HvSysReg.MDSCR_EL1, 1);
}
// Adaptive GPU synchronization to prevent 0 FPS
if (++_syncCounter % 12 == 0)
{
TryGpuSync();
_syncCounter = 0;
}
HvApi.hv_vcpu_run(vcpu.Handle).ThrowOnError();
HvExitReason reason = vcpu.ExitInfo->Reason;
@@ -195,7 +212,9 @@ namespace Ryujinx.Cpu.AppleHv
ExceptionClass hvEc = (ExceptionClass)(hvEsr >> 26);
if (hvEc != ExceptionClass.HvcAarch64)
{
throw new Exception($"Unhandled exception from guest kernel with ESR 0x{hvEsr:X} ({hvEc}).");
}
address = SynchronousException(memoryManager, ref vcpu);
HvApi.hv_vcpu_set_reg(vcpu.Handle, HvReg.PC, address).ThrowOnError();
@@ -226,31 +245,10 @@ namespace Ryujinx.Cpu.AppleHv
HvVcpuPool.Instance.Destroy(vcpu, SwapContext);
}
// TryGpuSync() is called periodically in the main Execute() loop. The "syncing" value can be tuned based on gameplay results.
// This feature it to be followed-up and further completed in a future PR.
private void TryGpuSync()
{
try
{
Thread.Yield();
if (++_strongSyncCounter % 6 == 0)
{
Thread.Yield();
}
}
catch (Exception ex)
{
if (_strongSyncCounter % 100 == 0)
{
Logger.Warning?.Print(LogClass.Gpu, $"[AppleHv] GPU sync issue: {ex.Message}");
}
}
}
private ulong SynchronousException(HvMemoryManager memoryManager, ref HvVcpu vcpu)
{
ulong vcpuHandle = vcpu.Handle;
HvApi.hv_vcpu_get_sys_reg(vcpuHandle, HvSysReg.ELR_EL1, out ulong elr).ThrowOnError();
HvApi.hv_vcpu_get_sys_reg(vcpuHandle, HvSysReg.ESR_EL1, out ulong esr).ThrowOnError();
@@ -261,20 +259,16 @@ namespace Ryujinx.Cpu.AppleHv
case ExceptionClass.DataAbortLowerEl:
DataAbort(memoryManager.Tracking, vcpuHandle, (uint)esr);
break;
case ExceptionClass.TrappedMsrMrsSystem:
InstructionTrap((uint)esr);
HvApi.hv_vcpu_set_sys_reg(vcpuHandle, HvSysReg.ELR_EL1, elr + 4UL).ThrowOnError();
break;
case ExceptionClass.SvcAarch64:
ReturnToPool(vcpu);
ushort id = (ushort)esr;
SupervisorCallHandler(elr - 4UL, id);
Thread.Yield(); // MoltenVK causes extremely frequent SVC exits, and HVF handles them in a busy loop. Hypervisor.Framework accelerates the guest CPU, and without periodic yielding/flushing, MoltenVK's presentation queue can starve, causing permanent 0 FPS deadlock.
vcpu = RentFromPool(memoryManager.AddressSpace, vcpu);
break;
case ExceptionClass.SoftwareStepLowerEl:
HvApi.hv_vcpu_get_sys_reg(vcpuHandle, HvSysReg.SPSR_EL1, out ulong spsr).ThrowOnError();
spsr &= ~((ulong)(1 << 21));
@@ -284,23 +278,21 @@ namespace Ryujinx.Cpu.AppleHv
StepHandler();
vcpu = RentFromPool(memoryManager.AddressSpace, vcpu);
break;
case ExceptionClass.BrkAarch64:
ReturnToPool(vcpu);
BreakHandler(elr, (ushort)esr);
vcpu = RentFromPool(memoryManager.AddressSpace, vcpu);
break;
default:
throw new Exception($"Unhandled guest exception {ec}.");
}
// Make sure we will continue running at EL0.
if (memoryManager.AddressSpace.GetAndClearUserTlbInvalidationPending())
{
// TODO: Invalidate only the range that was modified?
return HvAddressSpace.KernelRegionTlbiEretAddress;
}
return HvAddressSpace.KernelRegionEretAddress;
}
@@ -313,6 +305,7 @@ namespace Ryujinx.Cpu.AppleHv
if (farValid)
{
HvApi.hv_vcpu_get_sys_reg(vcpu, HvSysReg.FAR_EL1, out ulong far).ThrowOnError();
ulong size = 1UL << accessSizeLog2;
if (!tracking.VirtualMemoryEvent(far, size, write))
@@ -356,7 +349,9 @@ namespace Ryujinx.Cpu.AppleHv
private void WriteRt(uint rt, ulong value)
{
if (rt < 31)
{
SetX((int)rt, value);
}
}
private void ReturnToPool(HvVcpu vcpu)
@@ -374,6 +369,8 @@ namespace Ryujinx.Cpu.AppleHv
_impl = newContext;
}
public void Dispose() { }
public void Dispose()
{
}
}
}
+91 -254
View File
@@ -1,7 +1,5 @@
using ARMeilleure.State;
using Ryujinx.Common.Logging;
using Ryujinx.Memory;
using System;
using System.Runtime.InteropServices;
using System.Runtime.Versioning;
using System.Threading;
@@ -16,31 +14,8 @@ namespace Ryujinx.Cpu.AppleHv
private static readonly SetSimdFpReg _setSimdFpReg;
private static readonly nint _setSimdFpRegNativePtr;
public static bool AggressiveMode { get; set; } = false;
private bool _earlyBootPhase = true;
public ulong ThreadUid { get; set; }
private readonly ulong[] _x = new ulong[32];
private readonly V128[] _v = new V128[32];
private ulong _pc;
private ulong _elrEl1;
private ulong _esrEl1;
private ulong _tpidrEl0;
private ulong _tpidrroEl0;
private ulong _fpcr;
private ulong _fpsr;
private ulong _pstateRaw;
private long _fallbackCount;
private long _lastWarningTicks;
private const long WarningCooldownTicks = 500_000_000; // 0.5 seconds
private readonly ulong _vcpu;
private int _interruptRequested;
private readonly object _registerLock = new object();
static HvExecutionContextVcpu()
{
// .NET does not support passing vectors by value, so we need to pass a pointer and use a native
@@ -58,293 +33,155 @@ namespace Ryujinx.Cpu.AppleHv
}
}
public HvExecutionContextVcpu(ulong vcpu)
{
_vcpu = vcpu;
Reset();
}
public void Reset()
{
lock (_registerLock)
{
_pstateRaw = 0x80000000UL;
_pc = 0;
_elrEl1 = 0;
_esrEl1 = 0;
_tpidrEl0 = 0;
_tpidrroEl0 = 0;
_fpcr = 0;
_fpsr = 0;
Array.Clear(_x, 0, _x.Length);
Array.Clear(_v, 0, _v.Length);
_fallbackCount = 0;
_lastWarningTicks = 0;
_interruptRequested = 0;
_earlyBootPhase = true;
}
}
private void LogHvWarning(string operation, string regName, string extra = "")
{
if (AggressiveMode) return;
long now = DateTime.UtcNow.Ticks;
if (now - _lastWarningTicks <= WarningCooldownTicks) return;
string msg = $"[AppleHv] BadArgument on {operation} {regName} | PC=0x{_pc:X16}";
if (!string.IsNullOrEmpty(extra)) msg += $" | {extra}";
msg += $" | Total: {Interlocked.Read(ref _fallbackCount)}";
Logger.Warning?.Print(LogClass.Cpu, msg);
_lastWarningTicks = now;
}
public ulong Pc
{
get { lock (_registerLock) return GetRegCached(HvReg.PC, ref _pc, "PC"); }
set { lock (_registerLock) SetRegCached(HvReg.PC, value, ref _pc, "PC"); }
get
{
HvApi.hv_vcpu_get_reg(_vcpu, HvReg.PC, out ulong pc).ThrowOnError();
return pc;
}
set
{
HvApi.hv_vcpu_set_reg(_vcpu, HvReg.PC, value).ThrowOnError();
}
}
public ulong ElrEl1
{
get { lock (_registerLock) return GetSysRegCached(HvSysReg.ELR_EL1, ref _elrEl1, "ELR_EL1"); }
set { lock (_registerLock) SetSysRegCached(HvSysReg.ELR_EL1, value, ref _elrEl1, "ELR_EL1"); }
get
{
HvApi.hv_vcpu_get_sys_reg(_vcpu, HvSysReg.ELR_EL1, out ulong elr).ThrowOnError();
return elr;
}
set
{
HvApi.hv_vcpu_set_sys_reg(_vcpu, HvSysReg.ELR_EL1, value).ThrowOnError();
}
}
public ulong EsrEl1
{
get { lock (_registerLock) return GetSysRegCached(HvSysReg.ESR_EL1, ref _esrEl1, "ESR_EL1"); }
set { lock (_registerLock) SetSysRegCached(HvSysReg.ESR_EL1, value, ref _esrEl1, "ESR_EL1"); }
get
{
HvApi.hv_vcpu_get_sys_reg(_vcpu, HvSysReg.ESR_EL1, out ulong esr).ThrowOnError();
return esr;
}
set
{
HvApi.hv_vcpu_set_sys_reg(_vcpu, HvSysReg.ESR_EL1, value).ThrowOnError();
}
}
public long TpidrEl0
{
get { lock (_registerLock) return (long)GetSysRegCached(HvSysReg.TPIDR_EL0, ref _tpidrEl0, "TPIDR_EL0"); }
set { lock (_registerLock) SetSysRegCached(HvSysReg.TPIDR_EL0, (ulong)value, ref _tpidrEl0, "TPIDR_EL0"); }
get
{
HvApi.hv_vcpu_get_sys_reg(_vcpu, HvSysReg.TPIDR_EL0, out ulong tpidrEl0).ThrowOnError();
return (long)tpidrEl0;
}
set
{
HvApi.hv_vcpu_set_sys_reg(_vcpu, HvSysReg.TPIDR_EL0, (ulong)value).ThrowOnError();
}
}
public long TpidrroEl0
{
get { lock (_registerLock) return (long)GetSysRegCached(HvSysReg.TPIDRRO_EL0, ref _tpidrroEl0, "TPIDRRO_EL0"); }
set { lock (_registerLock) SetSysRegCached(HvSysReg.TPIDRRO_EL0, (ulong)value, ref _tpidrroEl0, "TPIDRRO_EL0"); }
get
{
HvApi.hv_vcpu_get_sys_reg(_vcpu, HvSysReg.TPIDRRO_EL0, out ulong tpidrroEl0).ThrowOnError();
return (long)tpidrroEl0;
}
set
{
HvApi.hv_vcpu_set_sys_reg(_vcpu, HvSysReg.TPIDRRO_EL0, (ulong)value).ThrowOnError();
}
}
public uint Pstate
{
get
{
lock (_registerLock)
{
HvResult res = HvApi.hv_vcpu_get_reg(_vcpu, HvReg.CPSR, out ulong val);
if (res == HvResult.BadArgument)
{
Interlocked.Increment(ref _fallbackCount);
LogHvWarning("Get", "CPSR (Pstate)");
return (uint)_pstateRaw;
}
res.ThrowOnError();
_pstateRaw = val;
return (uint)val;
}
HvApi.hv_vcpu_get_reg(_vcpu, HvReg.CPSR, out ulong cpsr).ThrowOnError();
return (uint)cpsr;
}
set
{
lock (_registerLock)
{
HvResult res = HvApi.hv_vcpu_set_reg(_vcpu, HvReg.CPSR, value);
if (res == HvResult.BadArgument)
{
Interlocked.Increment(ref _fallbackCount);
LogHvWarning("Set", "CPSR (Pstate)", $"value=0x{value:X}");
}
else res.ThrowOnError();
_pstateRaw = value;
}
HvApi.hv_vcpu_set_reg(_vcpu, HvReg.CPSR, (ulong)value).ThrowOnError();
}
}
public uint Fpcr
{
get { lock (_registerLock) return (uint)GetRegCached(HvReg.FPCR, ref _fpcr, "FPCR"); }
set { lock (_registerLock) SetRegCached(HvReg.FPCR, value, ref _fpcr, "FPCR"); }
get
{
HvApi.hv_vcpu_get_reg(_vcpu, HvReg.FPCR, out ulong fpcr).ThrowOnError();
return (uint)fpcr;
}
set
{
HvApi.hv_vcpu_set_reg(_vcpu, HvReg.FPCR, (ulong)value).ThrowOnError();
}
}
public uint Fpsr
{
get { lock (_registerLock) return (uint)GetRegCached(HvReg.FPSR, ref _fpsr, "FPSR"); }
set { lock (_registerLock) SetRegCached(HvReg.FPSR, value, ref _fpsr, "FPSR"); }
get
{
HvApi.hv_vcpu_get_reg(_vcpu, HvReg.FPSR, out ulong fpsr).ThrowOnError();
return (uint)fpsr;
}
set
{
HvApi.hv_vcpu_set_reg(_vcpu, HvReg.FPSR, (ulong)value).ThrowOnError();
}
}
private readonly ulong _vcpu;
private int _interruptRequested;
public HvExecutionContextVcpu(ulong vcpu)
{
_vcpu = vcpu;
}
public ulong GetX(int index)
{
lock (_registerLock)
if (index == 31)
{
ulong value;
string regName = index == 31 ? "SP_EL0" : $"X{index}";
if (index == 31)
{
HvResult res = HvApi.hv_vcpu_get_sys_reg(_vcpu, HvSysReg.SP_EL0, out value);
if (res == HvResult.BadArgument)
{
Interlocked.Increment(ref _fallbackCount);
LogHvWarning("GetX", regName);
return _x[31];
}
res.ThrowOnError();
return _x[31] = value;
}
if ((uint)index > 30) return 0;
if (index == 0 && _earlyBootPhase && _pc == 0)
{
return _x[0];
}
HvResult resX = HvApi.hv_vcpu_get_reg(_vcpu, HvReg.X0 + (uint)index, out value);
if (resX == HvResult.BadArgument)
{
Interlocked.Increment(ref _fallbackCount);
LogHvWarning("GetX", regName);
return _x[index];
}
resX.ThrowOnError();
return _x[index] = value;
HvApi.hv_vcpu_get_sys_reg(_vcpu, HvSysReg.SP_EL0, out ulong value).ThrowOnError();
return value;
}
else
{
HvApi.hv_vcpu_get_reg(_vcpu, HvReg.X0 + (uint)index, out ulong value).ThrowOnError();
return value;
}
}
public void SetX(int index, ulong value)
{
lock (_registerLock)
if (index == 31)
{
string regName = index == 31 ? "SP_EL0" : $"X{index}";
if (index == 31)
{
HvResult res = HvApi.hv_vcpu_set_sys_reg(_vcpu, HvSysReg.SP_EL0, value);
if (res == HvResult.BadArgument)
{
Interlocked.Increment(ref _fallbackCount);
LogHvWarning("SetX", regName, $"value=0x{value:X16}");
_x[31] = value;
return;
}
res.ThrowOnError();
_x[31] = value;
}
else if ((uint)index <= 30)
{
HvResult res = HvApi.hv_vcpu_set_reg(_vcpu, HvReg.X0 + (uint)index, value);
if (res == HvResult.BadArgument)
{
Interlocked.Increment(ref _fallbackCount);
LogHvWarning("SetX", regName, $"value=0x{value:X16}");
_x[index] = value;
return;
}
res.ThrowOnError();
_x[index] = value;
}
HvApi.hv_vcpu_set_sys_reg(_vcpu, HvSysReg.SP_EL0, value).ThrowOnError();
}
else
{
HvApi.hv_vcpu_set_reg(_vcpu, HvReg.X0 + (uint)index, value).ThrowOnError();
}
}
public V128 GetV(int index)
{
lock (_registerLock)
{
if ((uint)index > 31) return default;
HvResult res = HvApi.hv_vcpu_get_simd_fp_reg(_vcpu, HvSimdFPReg.Q0 + (uint)index, out HvSimdFPUchar16 val);
if (res == HvResult.BadArgument)
{
Interlocked.Increment(ref _fallbackCount);
LogHvWarning("GetV", $"Q{index}");
return _v[index];
}
res.ThrowOnError();
return _v[index] = new V128(val.Low, val.High);
}
HvApi.hv_vcpu_get_simd_fp_reg(_vcpu, HvSimdFPReg.Q0 + (uint)index, out HvSimdFPUchar16 value).ThrowOnError();
return new V128(value.Low, value.High);
}
public void SetV(int index, V128 value)
{
lock (_registerLock)
{
if ((uint)index > 31) return;
HvResult res = _setSimdFpReg(_vcpu, HvSimdFPReg.Q0 + (uint)index, value, _setSimdFpRegNativePtr);
if (res == HvResult.BadArgument)
{
Interlocked.Increment(ref _fallbackCount);
LogHvWarning("SetV", $"Q{index}");
_v[index] = value;
return;
}
res.ThrowOnError();
_v[index] = value;
}
_setSimdFpReg(_vcpu, HvSimdFPReg.Q0 + (uint)index, value, _setSimdFpRegNativePtr).ThrowOnError();
}
private ulong GetRegCached(HvReg reg, ref ulong cached, string name)
{
HvResult res = HvApi.hv_vcpu_get_reg(_vcpu, reg, out ulong val);
if (res == HvResult.BadArgument)
{
Interlocked.Increment(ref _fallbackCount);
LogHvWarning("GetReg", name);
return cached;
}
res.ThrowOnError();
return cached = val;
}
private void SetRegCached(HvReg reg, ulong value, ref ulong cached, string name)
{
HvResult res = HvApi.hv_vcpu_set_reg(_vcpu, reg, value);
if (res == HvResult.BadArgument)
{
Interlocked.Increment(ref _fallbackCount);
LogHvWarning("SetReg", name, $"value=0x{value:X16}");
cached = value;
return;
}
res.ThrowOnError();
cached = value;
}
private ulong GetSysRegCached(HvSysReg reg, ref ulong cached, string name)
{
HvResult res = HvApi.hv_vcpu_get_sys_reg(_vcpu, reg, out ulong val);
if (res == HvResult.BadArgument)
{
Interlocked.Increment(ref _fallbackCount);
LogHvWarning("GetSysReg", name);
return cached;
}
res.ThrowOnError();
return cached = val;
}
private void SetSysRegCached(HvSysReg reg, ulong value, ref ulong cached, string name)
{
HvResult res = HvApi.hv_vcpu_set_sys_reg(_vcpu, reg, value);
if (res == HvResult.BadArgument)
{
Interlocked.Increment(ref _fallbackCount);
LogHvWarning("SetSysReg", name, $"value=0x{value:X16}");
cached = value;
return;
}
res.ThrowOnError();
cached = value;
}
public long GetFallbackCount() => Interlocked.Read(ref _fallbackCount);
public void RequestInterrupt()
{
if (Interlocked.Exchange(ref _interruptRequested, 1) == 0)
@@ -45,7 +45,7 @@ namespace Ryujinx.Cpu.AppleHv
public HvMemoryBlockAllocation Allocate(ulong size, ulong alignment)
{
Allocation allocation = Allocate(size, alignment, CreateBlock);
var allocation = Allocate(size, alignment, CreateBlock);
return new HvMemoryBlockAllocation(this, allocation.Block, allocation.Offset, allocation.Size);
}
+4 -4
View File
@@ -237,17 +237,17 @@ namespace Ryujinx.Cpu.AppleHv
return [];
}
List<MemoryRange> guestRegions = GetPhysicalRegionsImpl(va, size);
var guestRegions = GetPhysicalRegionsImpl(va, size);
if (guestRegions == null)
{
return null;
}
HostMemoryRange[] regions = new HostMemoryRange[guestRegions.Count];
var regions = new HostMemoryRange[guestRegions.Count];
for (int i = 0; i < regions.Length; i++)
{
MemoryRange guestRegion = guestRegions[i];
var guestRegion = guestRegions[i];
nint pointer = _backingMemory.GetPointer(guestRegion.Address, guestRegion.Size);
regions[i] = new HostMemoryRange((nuint)(ulong)pointer, guestRegion.Size);
}
@@ -275,7 +275,7 @@ namespace Ryujinx.Cpu.AppleHv
int pages = GetPagesCount(va, (uint)size, out va);
List<MemoryRange> regions = new();
var regions = new List<MemoryRange>();
ulong regionStart = GetPhysicalAddressInternal(va);
ulong regionSize = PageSize;
+1 -1
View File
@@ -41,7 +41,7 @@ namespace Ryujinx.Cpu.AppleHv
{
// Calculate our time delta in ticks based on the current clock frequency.
int result = TimeApi.mach_timebase_info(out MachTimebaseInfo timeBaseInfo);
int result = TimeApi.mach_timebase_info(out var timeBaseInfo);
Debug.Assert(result == 0);
+1 -1
View File
@@ -38,7 +38,7 @@ namespace Ryujinx.Cpu.AppleHv
baseAddress = ipaAllocator.Allocate(block.Size, AsIpaAlignment);
}
HvMemoryFlags rwx = HvMemoryFlags.Read | HvMemoryFlags.Write | HvMemoryFlags.Exec;
var rwx = HvMemoryFlags.Read | HvMemoryFlags.Write | HvMemoryFlags.Exec;
HvApi.hv_vm_map((ulong)block.Pointer, baseAddress, block.Size, rwx).ThrowOnError();
+3 -3
View File
@@ -1,5 +1,4 @@
using System;
using ARMeilleure.Translation.PTC;
namespace Ryujinx.Cpu
{
@@ -45,10 +44,11 @@ namespace Ryujinx.Cpu
/// <remarks>
/// If the execution engine is recompiling guest code, this can be used to load cached code from disk.
/// </remarks>
/// <param name="cacheInfo">Identity and selector for the process-owned disk cache</param>
/// <param name="titleIdText">Title ID of the application in padded hex form</param>
/// <param name="displayVersion">Version of the application</param>
/// <param name="enabled">True if the cache should be loaded from disk if it exists, false otherwise</param>
/// <returns>Disk cache load progress reporter and manager</returns>
IDiskCacheLoadState LoadDiskCache(PtcCacheInfo cacheInfo, bool enabled);
IDiskCacheLoadState LoadDiskCache(string titleIdText, string displayVersion, bool enabled, string cacheSelector);
/// <summary>
/// Indicates that code has been loaded into guest memory, and that it might be executed in the future.
@@ -127,7 +127,7 @@ namespace Ryujinx.Cpu.Jit.HostTracked
Debug.Assert(leftSize > 0);
Debug.Assert(rightSize > 0);
(PrivateMemoryAllocation leftAllocation, PrivateAllocation) = PrivateAllocation.Split(leftSize);
(var leftAllocation, PrivateAllocation) = PrivateAllocation.Split(leftSize);
PrivateMapping left = new(Address, leftSize, leftAllocation);

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