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180 lines
3.1 KiB
C++
180 lines
3.1 KiB
C++
#pragma once
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#include "BEType.h"
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#include "Emu/System.h"
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extern void SM_Sleep();
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extern size_t SM_GetCurrentThreadId();
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extern u32 SM_GetCurrentCPUThreadId();
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extern be_t<u32> SM_GetCurrentCPUThreadIdBE();
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enum SMutexResult
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{
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SMR_OK = 0, // succeeded (lock, trylock, unlock)
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SMR_FAILED, // failed (trylock, unlock)
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SMR_DEADLOCK, // mutex reached deadlock (lock, trylock)
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SMR_SIGNAL = SMR_DEADLOCK, // unlock can be used for signaling specific thread
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SMR_PERMITTED, // not owner of the mutex (unlock)
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SMR_ABORT, // emulator has been stopped (lock, trylock, unlock)
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SMR_DESTROYED, // mutex has been destroyed (lock, trylock, unlock)
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SMR_TIMEOUT, // timed out (lock)
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};
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template
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<
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typename T,
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const u64 free_value = 0,
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const u64 dead_value = 0xffffffffffffffffull,
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void (*wait)() = SM_Sleep
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>
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class SMutexBase
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{
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static_assert(sizeof(T) == sizeof(std::atomic<T>), "Invalid SMutexBase type");
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std::atomic<T> owner;
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public:
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static const T GetFreeValue()
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{
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static const u64 value = free_value;
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return (const T&)value;
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}
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static const T GetDeadValue()
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{
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static const u64 value = dead_value;
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return (const T&)value;
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}
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void initialize()
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{
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owner = GetFreeValue();
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}
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SMutexBase()
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{
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initialize();
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}
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void finalize()
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{
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owner = GetDeadValue();
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}
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__forceinline T GetOwner() const
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{
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return (T&)owner;
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}
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SMutexResult trylock(T tid)
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{
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if (Emu.IsStopped())
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{
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return SMR_ABORT;
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}
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T old = GetFreeValue();
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if (!owner.compare_exchange_strong(old, tid))
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{
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if (old == tid)
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{
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return SMR_DEADLOCK;
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}
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if (old == GetDeadValue())
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{
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return SMR_DESTROYED;
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}
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return SMR_FAILED;
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}
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return SMR_OK;
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}
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SMutexResult unlock(T tid, T to = GetFreeValue())
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{
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if (Emu.IsStopped())
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{
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return SMR_ABORT;
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}
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T old = tid;
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if (!owner.compare_exchange_strong(old, to))
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{
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if (old == GetFreeValue())
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{
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return SMR_FAILED;
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}
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if (old == GetDeadValue())
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{
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return SMR_DESTROYED;
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}
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return SMR_PERMITTED;
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}
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return SMR_OK;
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}
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SMutexResult lock(T tid, u64 timeout = 0)
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{
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u64 counter = 0;
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while (true)
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{
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switch (SMutexResult res = trylock(tid))
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{
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case SMR_FAILED: break;
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default: return res;
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}
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if (wait != nullptr) wait();
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if (timeout && counter++ > timeout)
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{
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return SMR_TIMEOUT;
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}
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}
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}
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};
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template<typename T, typename Tid, Tid (get_tid)()>
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class SMutexLockerBase
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{
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T& sm;
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public:
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const Tid tid;
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__forceinline SMutexLockerBase(T& _sm)
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: sm(_sm)
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, tid(get_tid())
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{
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if (!tid)
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{
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if (!Emu.IsStopped())
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{
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LOG_ERROR(HLE, "SMutexLockerBase: thread id == 0");
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Emu.Pause();
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}
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return;
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}
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sm.lock(tid);
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}
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__forceinline ~SMutexLockerBase()
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{
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if (tid) sm.unlock(tid);
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}
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};
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typedef SMutexBase<size_t>
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SMutexGeneral;
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typedef SMutexBase<u32>
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SMutex;
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typedef SMutexBase<be_t<u32>>
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SMutexBE;
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typedef SMutexLockerBase<SMutexGeneral, size_t, SM_GetCurrentThreadId>
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SMutexGeneralLocker;
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typedef SMutexLockerBase<SMutex, u32, SM_GetCurrentCPUThreadId>
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SMutexLocker;
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typedef SMutexLockerBase<SMutexBE, be_t<u32>, SM_GetCurrentCPUThreadIdBE>
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SMutexBELocker;
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