358 lines
6.3 KiB
C++
358 lines
6.3 KiB
C++
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// Utilities.cpp: implementation of the CUtilities class.
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//
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//////////////////////////////////////////////////////////////////////
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#include "stdafx.h"
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#pragma warning (disable : 4786)
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#pragma warning (disable : 4275)
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#include <iostream>
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#include <strstream>
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#include <fstream>
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#include <string>
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#include <sstream>
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#include <map>
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#include <list>
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using namespace std;
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#include <tchar.h>
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#include <windows.h>
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#ifdef NONNT5
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typedef unsigned long ULONG_PTR;
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#endif
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#include <wmistr.h>
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#include <guiddef.h>
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#include <initguid.h>
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#include <evntrace.h>
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#include <malloc.h>
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#include <WTYPES.H>
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#include "t_string.h"
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#include <tchar.h>
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#include <list>
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#include "Persistor.h"
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#include "StructureWrappers.h"
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#include "StructureWapperHelpers.h"
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#include "Utilities.h"
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#define MAX_STR 1024
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//////////////////////////////////////////////////////////////////////
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//
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//////////////////////////////////////////////////////////////////////
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TCHAR *NewTCHAR(const TCHAR *ptcToCopy)
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{
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if (ptcToCopy == NULL)
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{
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return NULL;
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}
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// This is a gross hack. Need to pin down heap corruption.
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int nString = _tcsclen(ptcToCopy) + 100;
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int nTCHAR = sizeof(TCHAR);
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int nLen = nString * (nTCHAR);
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TCHAR *pNew = (TCHAR*) malloc(nLen);
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_tcscpy(pNew,ptcToCopy);
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return pNew;
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}
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LPSTR NewLPSTR(LPCWSTR lpwstrToCopy)
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{
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int nLen = (wcslen(lpwstrToCopy) + 1) * sizeof(WCHAR);
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LPSTR pNew = (char *)malloc( nLen );
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wcstombs(pNew, lpwstrToCopy, nLen);
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return pNew;
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}
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LPWSTR NewLPWSTR(LPCSTR lpstrToCopy)
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{
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int nLen = (strlen(lpstrToCopy) + 1);
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LPWSTR pNew = (WCHAR *)malloc( nLen * sizeof(WCHAR));
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mbstowcs(pNew, lpstrToCopy, nLen);
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return pNew;
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}
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LPTSTR DecodeStatus(IN ULONG Status)
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{
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LPTSTR lptstrError = (LPTSTR) malloc (MAX_STR);
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memset( lptstrError, 0, MAX_STR );
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FormatMessage(
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FORMAT_MESSAGE_FROM_SYSTEM |
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FORMAT_MESSAGE_IGNORE_INSERTS,
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NULL,
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Status,
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MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT), // Default language
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lptstrError,
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MAX_STR,
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NULL );
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for (int i = 0; i < MAX_STR; i++)
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{
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if (lptstrError[i] == 0x0d)
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{
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lptstrError[i] = _T('\0');
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break;
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}
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}
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return lptstrError;
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}
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int GetFileList
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(LPTSTR lptstrPath, LPTSTR lptstrFileType, list<t_string> &rList)
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{
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t_string tsFind;
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tsFind = lptstrPath;
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tsFind += _T("\\");
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tsFind += lptstrFileType;
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WIN32_FIND_DATA wfdFile;
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HANDLE hFindHandle =
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FindFirstFile(tsFind.c_str(), &wfdFile);
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if (hFindHandle == INVALID_HANDLE_VALUE)
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{
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return HRESULT_FROM_WIN32(GetLastError());
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}
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if ((_tcscmp(wfdFile.cFileName,_T(".")) != 0) &&
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(_tcscmp(wfdFile.cFileName,_T("..")) != 0))
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{
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tsFind = lptstrPath;
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tsFind += _T("\\");
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tsFind += wfdFile.cFileName;
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rList.push_back(tsFind);
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tsFind.erase();
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}
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while (FindNextFile(hFindHandle, &wfdFile))
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{
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if ((_tcscmp(wfdFile.cFileName,_T(".")) != 0) &&
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(_tcscmp(wfdFile.cFileName,_T("..")) != 0))
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{
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tsFind = lptstrPath;
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tsFind += _T("\\");
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tsFind += wfdFile.cFileName;
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rList.push_back(tsFind);
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tsFind.erase();
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}
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}
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FindClose(hFindHandle);
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return ERROR_SUCCESS;
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}
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// From Q 118626
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BOOL IsAdmin()
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{
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HANDLE hAccessToken;
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UCHAR InfoBuffer[1024];
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PTOKEN_GROUPS ptgGroups = (PTOKEN_GROUPS)InfoBuffer;
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DWORD dwInfoBufferSize;
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PSID psidAdministrators;
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SID_IDENTIFIER_AUTHORITY siaNtAuthority = SECURITY_NT_AUTHORITY;
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UINT x;
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BOOL bSuccess;
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if(!OpenThreadToken(GetCurrentThread(), TOKEN_QUERY, TRUE,
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&hAccessToken )) {
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if(GetLastError() != ERROR_NO_TOKEN)
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return FALSE;
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//
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// retry against process token if no thread token exists
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//
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if(!OpenProcessToken(GetCurrentProcess(), TOKEN_QUERY,
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&hAccessToken))
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return FALSE;
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}
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bSuccess = GetTokenInformation(hAccessToken,TokenGroups,InfoBuffer,
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1024, &dwInfoBufferSize);
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CloseHandle(hAccessToken);
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if(!bSuccess )
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return FALSE;
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if(!AllocateAndInitializeSid(&siaNtAuthority, 2,
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SECURITY_BUILTIN_DOMAIN_RID,
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DOMAIN_ALIAS_RID_ADMINS,
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0, 0, 0, 0, 0, 0,
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&psidAdministrators))
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return FALSE;
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// assume that we don't find the admin SID.
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bSuccess = FALSE;
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for(x=0;x<ptgGroups->GroupCount;x++)
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{
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if( EqualSid(psidAdministrators, ptgGroups->Groups[x].Sid) )
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{
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bSuccess = TRUE;
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break;
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}
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}
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FreeSid(psidAdministrators);
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return bSuccess;
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}
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t_string GUIDToTString(GUID Guid)
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{
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t_strstream strStream;
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t_string tsOut;
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strStream << _T("{");
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strStream.fill(_T('0'));
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strStream.width(8);
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strStream.flags(ios_base::right);
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strStream << hex << Guid.Data1;
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strStream << _T("-");
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strStream.width(4);
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strStream << hex << Guid.Data2;
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strStream << _T("-");
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strStream << hex << Guid.Data3;
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strStream << _T("-");
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// Data4 specifies an array of 8 bytes. The first 2 bytes contain
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// the third group of 4 hexadecimal digits. The remaining 6 bytes
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// contain the final 12 hexadecimal digits.
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#ifndef _UNICODE
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int i;
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strStream.width(1);
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BYTE Byte;
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int Int;
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for (i = 0; i < 2; i++)
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{
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Byte = Guid.Data4[i];
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Byte = Byte >> 4;
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Int = Byte;
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strStream << hex << Int;
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Byte = Guid.Data4[i];
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Byte = 0x0f & Byte;
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Int = Byte;
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strStream << hex << Int;
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}
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strStream << _T("-");
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strStream.width(1);
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for (i = 2; i < 8; i++)
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{
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BYTE Byte = Guid.Data4[i];
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Byte = Byte >> 4;
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Int = Byte;
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strStream << hex << Int;
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Byte = Guid.Data4[i];
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Byte = 0x0f & Byte;
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Int = Byte;
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strStream << hex << Int;
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}
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#else
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int i;
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for (i = 0; i < 2; i++)
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{
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TCHAR tc = Guid.Data4[i];
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// For some reason the width is reset each time through the
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// loop to be one.
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strStream.width(2);
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strStream << hex << tc;
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}
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strStream << _T("-");
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BYTE Byte;
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strStream.width(1);
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for (i = 2; i < 8; i++)
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{
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Byte = Guid.Data4[i];
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Byte = Byte >> 4;
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strStream << hex << Byte;
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Byte = Guid.Data4[i];
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Byte = 0x0f & Byte;
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strStream << hex << Byte;
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}
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#endif
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strStream << _T("}");
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strStream >> tsOut;
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return tsOut;
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}
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LPTSTR LPTSTRFromGuid(GUID Guid)
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{
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t_string tsGuid = GUIDToTString(Guid);
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return NewTCHAR(tsGuid.c_str());
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}
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t_string ULONGVarToTString(ULONG ul, bool bHex)
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{
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t_string tsTemp;
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t_strstream strStream;
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if (bHex)
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{
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strStream.width(8);
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strStream.fill('0');
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strStream.flags(ios_base::right);
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strStream << hex << ul;
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}
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else
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{
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strStream << ul;
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}
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strStream >> tsTemp;
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if (bHex)
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{
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t_string tsHex;
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tsHex = _T("0x");
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tsHex += tsTemp;
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return tsHex;
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}
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else
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{
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return tsTemp;
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}
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}
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