263 lines
6.9 KiB
C
263 lines
6.9 KiB
C
/*
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* Win32 kernel functions
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*
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* Copyright 1995 Martin von Loewis
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* Copyright 1997 Onno Hovers
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*/
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#include <stdio.h>
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#include <unistd.h>
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#include <string.h>
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#include <sys/ipc.h>
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#include <sys/sem.h>
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#include "windows.h"
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#include "winbase.h"
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#include "winerror.h"
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#include "stddebug.h"
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#include "debug.h"
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#include "xmalloc.h"
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/*
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* FIXME:
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* The c functions do not protect from non-interlocked accesses
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* This is no problem as long as we do not have multiple Win32 threads
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* or processes.
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* The assembly macro's do protect from non-interlocked access,
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* but they will only work for i386 systems with GCC.
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*/
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/************************************************************************
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* InterlockedIncrement [KERNEL32] *
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* *
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* InterlockedIncrement adds 1 to a long variable and returns *
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* - a negative number if the result < 0 *
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* - zero if the result == 0 *
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* - a positive number if the result > 0 *
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* *
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* The returned number need not be equal to the result!!!! *
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************************************************************************/
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LONG InterlockedIncrement(LPLONG lpAddend)
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{
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#if defined(__i386__)&&defined(__GNUC__)
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long ret;
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__asm__
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(
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"\tlock\n" /* for SMP systems */
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"\tincl (%1)\n"
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"\tje 2f\n"
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"\tjl 1f\n"
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"\tincl %0\n"
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"\tjmp 2f\n"
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"1:\tdec %0\n"
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"2:\n"
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:"=r" (ret):"r" (lpAddend), "0" (0): "memory"
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);
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return ret;
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#else
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LONG ret;
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/* StopAllThreadsAndProcesses() */
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(*lpAddend)++;
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ret=*lpAddend;
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/* ResumeAllThreadsAndProcesses() */
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return ret;
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#endif
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}
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/************************************************************************
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* InterlockedDecrement [KERNEL32] *
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* *
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* InterlockedIncrement adds 1 to a long variable and returns *
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* - a negative number if the result < 0 *
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* - zero if the result == 0 *
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* - a positive number if the result > 0 *
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* *
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* The returned number need not be equal to the result!!!! *
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************************************************************************/
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LONG InterlockedDecrement(LPLONG lpAddend)
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{
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#if defined(__i386__)&&defined(__GNUC__)
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LONG ret;
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__asm__
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(
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"\tlock\n" /* for SMP systems */
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"\tdecl (%1)\n"
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"\tje 2f\n"
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"\tjl 1f\n"
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"\tincl %0\n"
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"\tjmp 2f\n"
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"1:\tdec %0\n"
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"2:\n"
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:"=r" (ret):"r" (lpAddend), "0" (0): "memory"
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);
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return ret;
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#else
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LONG ret;
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/* StopAllThreadsAndProcesses() */
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(*lpAddend)--;
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ret=*lpAddend;
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/* ResumeAllThreadsAndProcesses() */
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return ret;
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#endif
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}
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/************************************************************************
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* InterlockedExchange [KERNEL32] *
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************************************************************************/
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LONG InterlockedExchange(LPLONG target, LONG value)
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{
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#if defined(__i386__)&&defined(__GNUC__)
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LONG ret;
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__asm__
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(
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"\tlock\n" /* for SMP systems */
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"\txchgl %0,(%1)\n"
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:"=r" (ret):"r" (target), "0" (value):"memory"
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);
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return ret;
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#else
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LONG ret;
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/* StopAllThreadsAndProcesses() */
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ret=*target;
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*target=value;
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/* ResumeAllThreadsAndProcesses() */
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return ret;
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#endif
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}
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/* AAARGHH some CriticalSection functions get called before we
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* have a threadid
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*/
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#define GetCurrentThreadId() (-1)
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/************************************************************************
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* InitializeCriticalSection [KERNEL32] *
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************************************************************************/
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void InitializeCriticalSection(CRITICAL_SECTION *pcritical)
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{
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pcritical->LockCount=-1;
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pcritical->RecursionCount=0;
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pcritical->LockSemaphore=(HANDLE32) semget(IPC_PRIVATE,1,IPC_CREAT);
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pcritical->OwningThread=(HANDLE32) -1;
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pcritical->Reserved=0;
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}
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/************************************************************************
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* DeleteCriticalSection [KERNEL32] *
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************************************************************************/
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void DeleteCriticalSection(CRITICAL_SECTION *pcritical)
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{
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semctl((int) pcritical->LockSemaphore,0,IPC_RMID,(union semun)NULL);
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pcritical->Reserved=-1;
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}
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/************************************************************************
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* EnterCriticalSection [KERNEL32] *
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************************************************************************/
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void EnterCriticalSection (CRITICAL_SECTION *pcritical)
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{
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if( InterlockedIncrement(&(pcritical->LockCount)))
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{
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if( pcritical->OwningThread!= (HANDLE32) GetCurrentThreadId() )
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{
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struct sembuf sop;
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sop.sem_num=0;
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sop.sem_op=0;
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sop.sem_flg=0;
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semop((int) pcritical->LockSemaphore,&sop,0);
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pcritical->OwningThread = (HANDLE32) GetCurrentThreadId();
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}
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}
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else
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{
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pcritical->OwningThread =(HANDLE32) GetCurrentThreadId();
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}
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pcritical->RecursionCount++;
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}
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/************************************************************************
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* TryEnterCriticalSection [KERNEL32] *
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************************************************************************/
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BOOL32 TryEnterCriticalSection (CRITICAL_SECTION *pcritical)
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{
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if( InterlockedIncrement(&(pcritical->LockCount)))
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{
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if( pcritical->OwningThread!= (HANDLE32) GetCurrentThreadId() )
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return FALSE;
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}
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else
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{
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pcritical->OwningThread =(HANDLE32) GetCurrentThreadId();
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}
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pcritical->RecursionCount++;
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return TRUE;
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}
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/************************************************************************
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* LeaveCriticalSection [KERNEL32] *
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************************************************************************/
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void LeaveCriticalSection (CRITICAL_SECTION *pcritical)
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{
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/* do we actually own this critical section ??? */
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if( pcritical->OwningThread!= (HANDLE32) GetCurrentThreadId())
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return;
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pcritical->RecursionCount--;
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if( pcritical->RecursionCount==0)
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{
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pcritical->OwningThread=(HANDLE32)-1;
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if(InterlockedDecrement(&(pcritical->LockCount))>=0)
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{
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struct sembuf sop;
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sop.sem_num=0;
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sop.sem_op=1;
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sop.sem_flg=0;
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semop((int) pcritical->LockSemaphore,&sop,0);
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}
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}
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else
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{
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InterlockedDecrement(&(pcritical->LockCount));
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}
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}
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/************************************************************************
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* ReinitializeCriticalSection [KERNEL32] *
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************************************************************************/
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void ReinitializeCriticalSection(CRITICAL_SECTION *lpCrit)
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{
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/* hmm ?????? */
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}
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/************************************************************************
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* MakeCriticalSectionGlobal [KERNEL32] *
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************************************************************************/
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void MakeCriticalSectionGlobal(CRITICAL_SECTION *lpCrit)
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{
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/* nothing (SysV Semaphores are already global) */
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return;
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}
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