mirror of
https://git.ryujinx.app/ryubing/ryujinx.git
synced 2025-06-28 00:16:23 +02:00
172 lines
4.8 KiB
C#
172 lines
4.8 KiB
C#
using ARMeilleure.Memory;
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using ARMeilleure.State;
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using System;
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using System.Threading;
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namespace Ryujinx.Cpu.LightningJit.State
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{
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public class ExecutionContext : IExecutionContext
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{
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private const int MinCountForCheck = 4000;
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private readonly NativeContext _nativeContext;
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internal nint NativeContextPtr => _nativeContext.BasePtr;
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private bool _interrupted;
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private readonly ICounter _counter;
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public ulong Pc => _nativeContext.GetPc();
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public ulong CntfrqEl0 => _counter.Frequency;
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public ulong CntpctEl0 => _counter.Counter;
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public long TpidrEl0
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{
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get => _nativeContext.GetTpidrEl0();
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set => _nativeContext.SetTpidrEl0(value);
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}
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public long TpidrroEl0
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{
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get => _nativeContext.GetTpidrroEl0();
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set => _nativeContext.SetTpidrroEl0(value);
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}
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public uint Pstate
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{
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get => _nativeContext.GetPstate();
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set => _nativeContext.SetPstate(value);
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}
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public uint Fpsr
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{
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get => _nativeContext.GetFPState((uint)FPSR.Mask);
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set => _nativeContext.SetFPState(value, (uint)FPSR.Mask);
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}
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public uint Fpcr
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{
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get => _nativeContext.GetFPState((uint)FPCR.Mask);
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set => _nativeContext.SetFPState(value, (uint)FPCR.Mask);
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}
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public bool IsAarch32 { get; set; }
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public ulong ThreadUid { get; set; }
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internal ExecutionMode ExecutionMode
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{
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get
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{
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if (IsAarch32)
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{
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return (Pstate & (1u << 5)) != 0
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? ExecutionMode.Aarch32Thumb
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: ExecutionMode.Aarch32Arm;
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}
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else
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{
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return ExecutionMode.Aarch64;
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}
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}
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}
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public bool Running
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{
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get => _nativeContext.GetRunning();
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private set => _nativeContext.SetRunning(value);
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}
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private readonly ExceptionCallbackNoArgs _interruptCallback;
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private readonly ExceptionCallback _breakCallback;
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private readonly ExceptionCallbackNoArgs _stepCallback;
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private readonly ExceptionCallback _supervisorCallback;
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private readonly ExceptionCallback _undefinedCallback;
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internal int ShouldStep;
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public ulong DebugPc { get; set; }
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public ExecutionContext(IJitMemoryAllocator allocator, ICounter counter, ExceptionCallbacks exceptionCallbacks)
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{
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_nativeContext = new NativeContext(allocator);
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_counter = counter;
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_interruptCallback = exceptionCallbacks.InterruptCallback;
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_breakCallback = exceptionCallbacks.BreakCallback;
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_stepCallback = exceptionCallbacks.StepCallback;
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_supervisorCallback = exceptionCallbacks.SupervisorCallback;
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_undefinedCallback = exceptionCallbacks.UndefinedCallback;
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Running = true;
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_nativeContext.SetCounter(MinCountForCheck);
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}
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public ulong GetX(int index) => _nativeContext.GetX(index);
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public void SetX(int index, ulong value) => _nativeContext.SetX(index, value);
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public V128 GetV(int index) => _nativeContext.GetV(index);
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public void SetV(int index, V128 value) => _nativeContext.SetV(index, value);
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internal void CheckInterrupt()
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{
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if (_interrupted)
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{
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_interrupted = false;
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_interruptCallback?.Invoke(this);
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}
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_nativeContext.SetCounter(MinCountForCheck);
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}
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public void RequestInterrupt()
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{
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_interrupted = true;
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}
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public void StepHandler()
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{
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_stepCallback.Invoke(this);
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}
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public void RequestDebugStep()
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{
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Interlocked.Exchange(ref ShouldStep, 1);
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RequestInterrupt();
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}
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internal void OnBreak(ulong address, int imm)
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{
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_breakCallback?.Invoke(this, address, imm);
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}
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internal void OnSupervisorCall(ulong address, int imm)
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{
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_supervisorCallback?.Invoke(this, address, imm);
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}
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internal void OnUndefined(ulong address, int opCode)
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{
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_undefinedCallback?.Invoke(this, address, opCode);
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}
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public void StopRunning()
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{
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Running = false;
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_nativeContext.SetCounter(0);
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}
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protected virtual void Dispose(bool disposing)
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{
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_nativeContext.Dispose();
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}
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public void Dispose()
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{
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Dispose(disposing: true);
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GC.SuppressFinalize(this);
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}
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}
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}
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