325 lines
7.5 KiB
C++
325 lines
7.5 KiB
C++
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// Copyright (c) 1996-1999 Microsoft Corporation
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// Not currently implemented
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#include "pch.cxx"
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#pragma hdrstop
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#include "trkwks.hxx"
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#ifdef VOL_REPL
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void
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CPersistentVolumeMap::Initialize()
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{
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InitializeCriticalSection(&_cs);
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_fInitializeCalled = TRUE;
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}
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void
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CPersistentVolumeMap::UnInitialize()
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{
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if (IsOpen())
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CloseFile();
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CVolumeMap::UnInitialize();
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if (_fInitializeCalled)
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{
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DeleteCriticalSection(&_cs);
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_fInitializeCalled = FALSE;
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}
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}
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CFILETIME
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CPersistentVolumeMap::GetLastUpdateTime( )
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{
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CFILETIME cft(0);
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EnterCriticalSection(&_cs);
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__try
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{
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if (!IsOpen())
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{
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Load( );
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}
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cft = _cft;
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}
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__finally
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{
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LeaveCriticalSection(&_cs);
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}
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return(cft);
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}
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void
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CPersistentVolumeMap::CopyTo(DWORD * pcVolumes, VolumeMapEntry ** ppVolumeChanges)
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{
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EnterCriticalSection(&_cs);
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__try
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{
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if (!IsOpen())
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{
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Load( ); // BUGBUG: we may want to close this file after a period and free the map
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}
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CVolumeMap VolMap;
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CVolumeMap::CopyTo( &VolMap );
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VolMap.MoveTo( pcVolumes, ppVolumeChanges );
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}
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__finally
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{
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LeaveCriticalSection(&_cs);
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}
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}
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BOOL
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CPersistentVolumeMap::FindVolume( const CVolumeId & volume, CMachineId * pmcid )
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{
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ULONG i;
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EnterCriticalSection(&_cs);
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__try
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{
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if (!IsOpen())
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{
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Load( ); // BUGBUG: we may want to close this file after a period
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}
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for (i=0; i < _cVolumeMapEntries; i++)
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{
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if (_pVolumeMapEntries[i].volume == volume)
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{
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*pmcid = _pVolumeMapEntries[i].machine;
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break;
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}
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}
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}
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__finally
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{
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LeaveCriticalSection(&_cs);
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}
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return( i != _cVolumeMapEntries );
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}
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void
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CPersistentVolumeMap::Merge( CVolumeMap * pOther )
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{
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EnterCriticalSection(&_cs);
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__try
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{
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if (!IsOpen())
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{
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Load( );
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}
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_fMergeDirtiedMap |= CVolumeMap::Merge( pOther );
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}
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__finally
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{
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LeaveCriticalSection(&_cs);
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}
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}
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void
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CPersistentVolumeMap::SetLastUpdateTime( const CFILETIME & cft )
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{
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_cft = cft;
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Save();
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}
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// format:
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// DWORD Version
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// DWORD cVolumeMapEntries
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// CFILETIME time of last query on DC
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// VolumeMapEntry[cVolumeMapEntries]
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// CFILETIME time of last query on DC
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void
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CPersistentVolumeMap::Load()
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{
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TCHAR tsz[MAX_PATH+1];
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DWORD cch = ExpandEnvironmentStrings( TEXT("%systemroot%\\system32\\volumes.trk"),
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tsz,
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ELEMENTS(tsz) );
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if (cch >= ELEMENTS(tsz))
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{
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TrkLog((TRKDBG_ERROR, TEXT("CPersistentVolumeMap::Load path too long")));
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TrkRaiseException(TRK_E_PATH_TOO_LONG);
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}
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TrkAssert(!IsOpen());
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RobustlyCreateFile(tsz);
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// after RobustlyCreateFile has succeeded without an exception we know that
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// OpenExistingFile has just returned OK (even after recreating the file.)
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TrkLog((TRKDBG_VOLMAP | TRKDBG_VOLTAB_RESTORE,
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TEXT("CPersistentVolumeMap::Load() - _cftFirstChange = %s"),
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CDebugString(_cft)._tsz));
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}
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void
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CPersistentVolumeMap::Save()
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{
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TrkAssert(IsOpen());
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DWORD Version = PVM_VERSION;
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DWORD cbWritten;
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if (0 != SetFilePointer(0, NULL, FILE_BEGIN) ||
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!WriteFile(&Version, sizeof(Version), &cbWritten) ||
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cbWritten != sizeof(Version) ||
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!WriteFile(&_cVolumeMapEntries, sizeof(_cVolumeMapEntries), &cbWritten) ||
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cbWritten != sizeof(_cVolumeMapEntries) ||
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// the following part of the header is read in Load()
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!WriteFile(&_cft, sizeof(_cft), &cbWritten) ||
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cbWritten != sizeof(_cft))
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{
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TrkLog((TRKDBG_ERROR, TEXT("CPersistentVolumeMap::Save() failed")));
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TrkRaiseLastError();
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}
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if (_fMergeDirtiedMap)
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{
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TrkLog((TRKDBG_VOLMAP | TRKDBG_VOLTAB_RESTORE,
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TEXT("CPersistentVolumeMap::Save() - writing map data, _cftFirstChange = %s"),
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CDebugString(_cft)._tsz));
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if (!WriteFile(_pVolumeMapEntries, _cVolumeMapEntries * sizeof(VolumeMapEntry), &cbWritten) ||
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cbWritten != _cVolumeMapEntries * sizeof(VolumeMapEntry))
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{
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TrkLog((TRKDBG_ERROR, TEXT("CPersistentVolumeMap::Save() failed 2")));
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TrkRaiseLastError();
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}
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}
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else
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{
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TrkLog((TRKDBG_VOLMAP | TRKDBG_VOLTAB_RESTORE,
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TEXT("CPersistentVolumeMap::Save() - seeking past map data, _cftFirstChange = %s"),
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CDebugString(_cft)._tsz));
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if (!SetFilePointer(_cVolumeMapEntries * sizeof(VolumeMapEntry), NULL, FILE_CURRENT))
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{
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TrkLog((TRKDBG_ERROR, TEXT("CPersistentVolumeMap::Save() failed 3")));
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TrkRaiseLastError();
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}
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}
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if (!WriteFile(&_cft, sizeof(_cft), &cbWritten) ||
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cbWritten != sizeof(_cft) )
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{
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TrkLog((TRKDBG_ERROR, TEXT("CPersistentVolumeMap::Save() failed 4")));
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TrkRaiseLastError();
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}
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_fMergeDirtiedMap = FALSE;
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}
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// BUGBUG P2: checksum, header alignment
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RCF_RESULT
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CPersistentVolumeMap::OpenExistingFile( const TCHAR * ptszFile )
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{
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RCF_RESULT r;
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DWORD cVolumeMapEntries;
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DWORD Version;
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NTSTATUS status;
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status = OpenExistingSecureFile(ptszFile);
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if ( NT_SUCCESS(status) )
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{
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TrkAssert(IsOpen());
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DWORD cbRead;
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r = CORRUPT;
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if (ReadFile(&Version, sizeof(Version), &cbRead) &&
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cbRead == sizeof(Version) &&
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Version == PVM_VERSION &&
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ReadFile(&cVolumeMapEntries, sizeof(cVolumeMapEntries), &cbRead) &&
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cbRead == sizeof(cVolumeMapEntries) &&
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cVolumeMapEntries < 100000 &&
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GetFileSize() == sizeof(Version) +
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sizeof(cVolumeMapEntries) +
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sizeof(CFILETIME) +
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cVolumeMapEntries * sizeof(VolumeMapEntry) +
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sizeof(CFILETIME) )
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{
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CFILETIME cft1, cft2;
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SetSize(cVolumeMapEntries);
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if ( ReadFile( &cft1, sizeof(cft1), &cbRead ) &&
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cbRead == sizeof(cft1) &&
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(_cVolumeMapEntries == 0 ||
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( ReadFile(_pVolumeMapEntries, _cVolumeMapEntries * sizeof(VolumeMapEntry), &cbRead) &&
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cbRead == _cVolumeMapEntries * sizeof(VolumeMapEntry) ) ) &&
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ReadFile( &cft2, sizeof(cft2), &cbRead ) &&
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cbRead == sizeof(cft2) &&
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memcmp(&cft1, &cft2, sizeof(cft1)) == 0)
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{
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_cft = cft1;
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r = OK;
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}
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}
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if (r != OK)
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{
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CloseFile();
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}
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}
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else
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if (status != STATUS_OBJECT_NAME_NOT_FOUND)
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{
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TrkLog((TRKDBG_ERROR, TEXT("CPersistentVolumeMap::OpenExistingFile() failed %08x"), status));
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TrkRaiseNtStatus(status);
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}
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else
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{
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r = NOT_FOUND;
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}
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TrkLog((TRKDBG_VOLMAP | TRKDBG_VOLTAB_RESTORE,
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TEXT("CPersistentVolumeMap::OpenExistingFile() -> %s"),
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(r == NOT_FOUND ? TEXT("NOT_FOUND") : r == OK ? TEXT("OK") : r == CORRUPT ? TEXT("CORRUPT") : TEXT("unknown"))));
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return (r);
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}
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// BUGBUG P1: CPersistentVolumeMap::UnInitialize
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void
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CPersistentVolumeMap::CreateAlwaysFile( const TCHAR * ptszFile )
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{
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NTSTATUS status = CreateAlwaysSecureFile(ptszFile);
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if( !NT_SUCCESS(status) )
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TrkRaiseNtStatus( status );
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CVolumeMap::SetSize(0);
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_cft = CFILETIME(0);
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Save();
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CloseFile();
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}
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#endif
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