333 lines
7.8 KiB
C++
333 lines
7.8 KiB
C++
#include <crtdbg.h>
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#include "stdafx.h"
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#ifdef _DEBUG
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#pragma warning(disable:4786) //Disable std library warning
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#pragma warning(disable:4530) //Disable std library warning
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#include <string>
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#include <malloc.h>
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#include "MemTest.h"
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#ifdef MEM_LEAK_TEST
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#include <shellapi.h> //Needed for ShellExecute
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#pragma comment(lib, "shell32.lib") //Needed for ShellExecute
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#include <tchar.h>
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#undef new
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#undef malloc
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#undef realloc
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#undef free
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#undef VirtualAlloc
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#undef VirtualFree
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#ifndef MB_SERVICE_NOTIFICATION
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#define MB_SERVICE_NOTIFICATION 0x00200000L
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#endif
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CMemList *MemList ( void )
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{
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static CMemList m_MemList;
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return &m_MemList;
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}
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CMemList::CMemList()
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{
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MemList.clear();
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hSemaphone = CreateSemaphore(NULL, 1,1, NULL);
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State = Initialized;
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order = 0;
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LogAllocate = false;
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ThreadID = 0;
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m_hModule = NULL;
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for (UINT_PTR TestLoc = ((UINT_PTR)::MemList) & ~0xFFF; TestLoc != 0; TestLoc -= 0x1000)
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{
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WORD HeaderID = *(WORD *)TestLoc;
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if (HeaderID != 'ZM')
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{
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continue;
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}
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m_hModule = (HMODULE)TestLoc;
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break;
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}
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}
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CMemList::~CMemList()
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{
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size_t ItemsLeft = MemList.size();
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if (ItemsLeft > 0)
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{
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TCHAR path_buffer[_MAX_PATH], drive[_MAX_DRIVE], dir[_MAX_DIR];
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TCHAR fname[_MAX_FNAME], ext[_MAX_EXT], LogFileName[_MAX_PATH];
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memset(path_buffer, 0, sizeof(path_buffer));
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memset(drive, 0, sizeof(drive));
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memset(dir, 0, sizeof(dir));
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memset(fname, 0, sizeof(fname));
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memset(ext, 0, sizeof(ext));
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memset(LogFileName, 0, sizeof(LogFileName));
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GetModuleFileName(m_hModule,path_buffer,sizeof(path_buffer));
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_tsplitpath( path_buffer, drive, dir, fname, ext );
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_tmakepath( LogFileName, drive, dir, fname, _T("leak.csv") );
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HANDLE hLogFile = INVALID_HANDLE_VALUE;
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do
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{
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hLogFile = CreateFile(
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LogFileName,
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GENERIC_WRITE,
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FILE_SHARE_READ | FILE_SHARE_WRITE,
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NULL,
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CREATE_ALWAYS,
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FILE_ATTRIBUTE_NORMAL | FILE_FLAG_SEQUENTIAL_SCAN,
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NULL
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);
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if (hLogFile == INVALID_HANDLE_VALUE)
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{
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if (GetLastError() == ERROR_SHARING_VIOLATION)
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{
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TCHAR Msg[3000];
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_stprintf(Msg,TEXT("%s\nCan not be opened for writing please close app using this file\n\nTry Again ?"),LogFileName);
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int Result = MessageBox(NULL,Msg,_T("Memory Leak"),MB_YESNO|MB_ICONQUESTION|MB_SETFOREGROUND | MB_SERVICE_NOTIFICATION);
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if (Result == IDNO)
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{
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break;
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}
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}
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}
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} while (hLogFile == INVALID_HANDLE_VALUE);
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if (hLogFile != INVALID_HANDLE_VALUE)
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{
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SetFilePointer(hLogFile,0,NULL,FILE_BEGIN);
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DWORD dwWritten = 0;
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char Msg[800];
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_snprintf(Msg,sizeof(Msg),"Order, Source File, Line Number, Mem Size\r\n");
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WriteFile( hLogFile,Msg,(DWORD)strlen(Msg),&dwWritten,NULL );
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for (MEMLIST_ITER item = MemList.begin(); item != MemList.end(); item++)
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{
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_snprintf(Msg,sizeof(Msg),"%d,%s, %d, %d\r\n",
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(*item).second.order,
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(*item).second.File,
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(*item).second.line,
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(*item).second.size);
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WriteFile( hLogFile,Msg,(DWORD)strlen(Msg),&dwWritten,NULL );
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}
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CloseHandle(hLogFile);
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}
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TCHAR Msg[3000];
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_stprintf(Msg,TEXT("%s%s\n\nMemory Leaks detected\n\nOpen the Log File ?"),fname,ext);
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int Result = MessageBox(NULL,Msg,_T("Memory Leak"),MB_YESNO|MB_ICONQUESTION|MB_SETFOREGROUND| MB_SERVICE_NOTIFICATION);
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if (Result == IDYES)
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{
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ShellExecute(NULL,_T("open"),LogFileName,NULL,NULL,SW_SHOW);
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}
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}
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CloseHandle(hSemaphone);
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hSemaphone = NULL;
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State = NotInitialized;
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}
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void * CMemList::AddItem ( size_t size, char * filename, int line)
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{
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void *res = malloc(size);
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if (res == NULL)
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{
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return res;
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}
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RecordAddItem(res,size,filename,line);
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return res;
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}
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void CMemList::RecordAddItem ( void * ptr, size_t size, const char * filename, int line)
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{
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__try {
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if (State == Initialized && hSemaphone != NULL)
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{
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DWORD CurrentThread = GetCurrentThreadId();
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DWORD Result = WaitForSingleObject(hSemaphone,CurrentThread != ThreadID ? 30000: 0);
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if (Result != WAIT_TIMEOUT)
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{
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ThreadID = CurrentThread;
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DEBUG_LOCATION info;
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strncpy(info.File,filename,sizeof(info.File));
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info.line = line;
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info.size = (int)size;
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info.order = order++;
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Insert(ptr, info);
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long dwSemCount = 0;
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ThreadID = (DWORD)-1;
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ReleaseSemaphore(hSemaphone,1,&dwSemCount);
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}
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}
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} __except (EXCEPTION_EXECUTE_HANDLER) {
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//_asm int 3
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}
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}
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void CMemList::Insert(void *res, DEBUG_LOCATION &info)
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{
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MemList.insert(MEMLIST::value_type(res,info));
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}
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void * CMemList::ReAllocItem ( void * ptr, size_t size, const char * filename, int line)
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{
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void *res = realloc(ptr, size);
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if (res == NULL)
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{
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return res;
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}
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if (ptr != res)
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{
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__try {
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if (State == Initialized && hSemaphone != NULL)
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{
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DWORD CurrentThread = GetCurrentThreadId();
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DWORD Result = WaitForSingleObject(hSemaphone,CurrentThread != ThreadID ? 30000 : 0);
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if (Result != WAIT_TIMEOUT)
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{
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ThreadID = CurrentThread;
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//Add new pointer
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DEBUG_LOCATION info;
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strncpy(info.File,filename,sizeof(info.File));
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info.line = line;
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info.size = (int)size;
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info.order = order++;
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Insert(res, info);
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//remove old pointer
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Remove(ptr);
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long dwSemCount = 0;
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ThreadID = (DWORD)-1;
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ReleaseSemaphore(hSemaphone,1,&dwSemCount);
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}
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}
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} __except (EXCEPTION_EXECUTE_HANDLER) {
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//_asm int 3
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}
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}
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return res;
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}
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void CMemList::Remove(void *ptr)
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{
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//remove old pointer
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MEMLIST_ITER item = MemList.find(ptr);
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if (item != MemList.end())
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{
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MemList.erase(ptr);
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}
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}
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void CMemList::removeItem (void * ptr, bool bFree )
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{
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if (bFree)
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{
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free(ptr);
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}
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__try {
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if (State == Initialized && hSemaphone != NULL)
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{
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DWORD CurrentThread = GetCurrentThreadId();
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DWORD Result = WaitForSingleObject(hSemaphone,CurrentThread != ThreadID ? 30000 : 0);
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if (Result != WAIT_TIMEOUT)
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{
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ThreadID = CurrentThread;
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Remove(ptr);
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long dwSemCount = 0;
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ThreadID = (DWORD)-1;
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ReleaseSemaphore(hSemaphone,1,&dwSemCount);
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}
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}
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}__except(EXCEPTION_EXECUTE_HANDLER ){
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//_asm int 3
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}
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}
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void MemTest_AddLeak(char* Comment)
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{
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MemList()->AddItem(1,Comment,-1);
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}
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void* MemTest_malloc (size_t size, char* filename, int line)
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{
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return MemList()->AddItem(size,filename,line);
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}
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void* MemTest_realloc (void* ptr, size_t size, char* filename, int line)
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{
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return MemList()->ReAllocItem(ptr, size,filename,line);
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}
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void* operator new (size_t size, char* filename, int line)
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{
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return MemList()->AddItem(size,filename,line);
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}
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void* operator new (size_t size)
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{
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return MemList()->AddItem(size,"Unknown",0);
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}
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void* operator new [] (size_t size, char* filename, int line)
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{
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return MemList()->AddItem(size,filename,line);
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}
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void* operator new [] (size_t size)
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{
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return MemList()->AddItem(size,"Unknown",0);
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}
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void operator delete ( void* ptr)
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{
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MemList()->removeItem(ptr,true);
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}
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void operator delete[](void* ptr)
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{
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delete ptr;
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}
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LPVOID MemTest_VirtualAlloc(
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LPVOID lpAddress, // region to reserve or commit
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SIZE_T dwSize, // size of region
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DWORD flAllocationType, // type of allocation
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DWORD flProtect, // type of access protection
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LPCSTR filename,
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int line)
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{
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LPVOID ptr = VirtualAlloc(lpAddress,dwSize,flAllocationType,flProtect);
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if (ptr && lpAddress == NULL && (flAllocationType & MEM_RESERVE) != 0)
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{
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MemList()->RecordAddItem(ptr,dwSize,filename,line);
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}
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return ptr;
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}
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BOOL MemTest_VirtualFree( LPVOID lpAddress, SIZE_T dwSize, DWORD dwFreeType )
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{
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if ((dwFreeType & MEM_RELEASE) != 0)
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{
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MemList()->removeItem(lpAddress,false);
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}
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return VirtualFree(lpAddress,dwSize,dwFreeType);
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}
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#endif
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#endif
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