rpcsx/rpcs3/Emu/SysCalls/Modules/cellSync.cpp
Nekotekina 1be7454bc4 Fixed errors, improvements
cellSync review, MFC channel AtomicStat added, draft implementation of
MFC_GETLLAR_CMD, MFC_PUTLLC_CMD etc, memory allocating hacks for
alignment.
2014-01-10 05:30:59 +04:00

122 lines
2.9 KiB
C++

#include "stdafx.h"
#include "Emu/SysCalls/SysCalls.h"
#include "Emu/SysCalls/SC_FUNC.h"
void cellSync_init();
Module cellSync("cellSync", cellSync_init);
wxMutex g_SyncMutex;
// Return Codes
enum
{
CELL_SYNC_ERROR_AGAIN = 0x80410101,
CELL_SYNC_ERROR_INVAL = 0x80410102,
CELL_SYNC_ERROR_NOMEM = 0x80410104,
CELL_SYNC_ERROR_DEADLK = 0x80410108,
CELL_SYNC_ERROR_PERM = 0x80410109,
CELL_SYNC_ERROR_BUSY = 0x8041010A,
CELL_SYNC_ERROR_STAT = 0x8041010F,
CELL_SYNC_ERROR_ALIGN = 0x80410110,
CELL_SYNC_ERROR_NULL_POINTER = 0x80410111,
CELL_SYNC_ERROR_NOT_SUPPORTED_THREAD = 0x80410112,
CELL_SYNC_ERROR_NO_NOTIFIER = 0x80410113,
CELL_SYNC_ERROR_NO_SPU_CONTEXT_STORAGE = 0x80410114,
};
struct CellSyncMutex {
be_t<u16> m_freed;
be_t<u16> m_order;
/*
(???) Lock: increase m_order and wait until m_freed == old m_order
(???) Unlock: increase m_freed
(???) TryLock: ?????
*/
};
int cellSyncMutexInitialize(mem_ptr_t<CellSyncMutex> mutex)
{
cellSync.Log("cellSyncMutexInitialize(mutex=0x%x)", mutex.GetAddr());
if (!mutex.IsGood())
{
return CELL_SYNC_ERROR_NULL_POINTER;
}
if (mutex.GetAddr() % 4)
{
return CELL_SYNC_ERROR_ALIGN;
}
{
wxMutexLocker lock(g_SyncMutex);
mutex->m_freed = 0;
mutex->m_order = 0;
}
return CELL_OK;
}
int cellSyncMutexLock(mem_ptr_t<CellSyncMutex> mutex)
{
if (!mutex.IsGood())
{
return CELL_SYNC_ERROR_NULL_POINTER;
}
if (mutex.GetAddr() % 4)
{
return CELL_SYNC_ERROR_ALIGN;
}
be_t<u16> old_order;
{
wxMutexLocker lock(g_SyncMutex);
cellSync.Log("cellSyncMutexLock(mutex=0x%x[order=%d,freed=%d])", mutex.GetAddr(), (u16)mutex->m_order, (u16)mutex->m_freed);
old_order = mutex->m_order;
mutex->m_order = mutex->m_order + 1;
}
while (old_order != mutex->m_freed) Sleep(1);
return CELL_OK;
}
int cellSyncMutexTryLock(mem_ptr_t<CellSyncMutex> mutex)
{
if (!mutex.IsGood())
{
return CELL_SYNC_ERROR_NULL_POINTER;
}
if (mutex.GetAddr() % 4)
{
return CELL_SYNC_ERROR_ALIGN;
}
wxMutexLocker lock(g_SyncMutex);
cellSync.Log("cellSyncMutexTryLock(mutex=0x%x[order=%d,freed=%d])", mutex.GetAddr(), (u16)mutex->m_order, (u16)mutex->m_freed);
if (mutex->m_order != mutex->m_freed)
{
return CELL_SYNC_ERROR_BUSY;
}
mutex->m_order = mutex->m_order + 1;
return CELL_OK;
}
int cellSyncMutexUnlock(mem_ptr_t<CellSyncMutex> mutex)
{
if (!mutex.IsGood())
{
return CELL_SYNC_ERROR_NULL_POINTER;
}
if (mutex.GetAddr() % 4)
{
return CELL_SYNC_ERROR_ALIGN;
}
wxMutexLocker lock(g_SyncMutex);
cellSync.Log("cellSyncMutexUnlock(mutex=0x%x[order=%d,freed=%d])", mutex.GetAddr(), (u16)mutex->m_order, (u16)mutex->m_freed);
mutex->m_freed = mutex->m_freed + 1;
return CELL_OK;
}
void cellSync_init()
{
cellSync.AddFunc(0xa9072dee, cellSyncMutexInitialize);
cellSync.AddFunc(0x1bb675c2, cellSyncMutexLock);
cellSync.AddFunc(0xd06918c4, cellSyncMutexTryLock);
cellSync.AddFunc(0x91f2b7b0, cellSyncMutexUnlock);
}