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Add original TrueCrypt 7.1a sources
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128
src/Boot/Windows/BootEncryptedIo.cpp
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128
src/Boot/Windows/BootEncryptedIo.cpp
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/*
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Copyright (c) 2008 TrueCrypt Developers Association. All rights reserved.
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Governed by the TrueCrypt License 3.0 the full text of which is contained in
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the file License.txt included in TrueCrypt binary and source code distribution
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packages.
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*/
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#include "Crypto.h"
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#include "Platform.h"
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#include "BootConfig.h"
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#include "BootDebug.h"
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#include "BootDefs.h"
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#include "BootDiskIo.h"
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#include "BootEncryptedIo.h"
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BiosResult ReadEncryptedSectors (uint16 destSegment, uint16 destOffset, byte drive, uint64 sector, uint16 sectorCount)
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{
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BiosResult result;
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bool decrypt = true;
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if (BootCryptoInfo->hiddenVolume)
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{
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if (ReadWritePartiallyCoversEncryptedArea (sector, sectorCount))
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return BiosResultInvalidFunction;
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if (sector >= EncryptedVirtualPartition.StartSector && sector <= EncryptedVirtualPartition.EndSector)
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{
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// Remap the request to the hidden volume
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sector -= EncryptedVirtualPartition.StartSector;
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sector += HiddenVolumeStartSector;
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}
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else
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decrypt = false;
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}
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result = ReadSectors (destSegment, destOffset, drive, sector, sectorCount);
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if (result != BiosResultSuccess || !decrypt)
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return result;
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if (BootCryptoInfo->hiddenVolume)
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{
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// Convert sector number to data unit number of the hidden volume
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sector -= HiddenVolumeStartSector;
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sector += HiddenVolumeStartUnitNo;
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}
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if (drive == EncryptedVirtualPartition.Drive)
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{
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while (sectorCount-- > 0)
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{
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if (BootCryptoInfo->hiddenVolume
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|| (sector >= EncryptedVirtualPartition.StartSector && sector <= EncryptedVirtualPartition.EndSector))
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{
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AcquireSectorBuffer();
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CopyMemory (destSegment, destOffset, SectorBuffer, TC_LB_SIZE);
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DecryptDataUnits (SectorBuffer, §or, 1, BootCryptoInfo);
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CopyMemory (SectorBuffer, destSegment, destOffset, TC_LB_SIZE);
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ReleaseSectorBuffer();
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}
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++sector;
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destOffset += TC_LB_SIZE;
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}
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}
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return result;
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}
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BiosResult WriteEncryptedSectors (uint16 sourceSegment, uint16 sourceOffset, byte drive, uint64 sector, uint16 sectorCount)
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{
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BiosResult result;
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AcquireSectorBuffer();
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uint64 dataUnitNo;
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uint64 writeOffset;
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dataUnitNo = sector;
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writeOffset.HighPart = 0;
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writeOffset.LowPart = 0;
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if (BootCryptoInfo->hiddenVolume)
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{
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if (ReadWritePartiallyCoversEncryptedArea (sector, sectorCount))
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return BiosResultInvalidFunction;
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// Remap the request to the hidden volume
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writeOffset = HiddenVolumeStartSector;
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writeOffset -= EncryptedVirtualPartition.StartSector;
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dataUnitNo -= EncryptedVirtualPartition.StartSector;
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dataUnitNo += HiddenVolumeStartUnitNo;
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}
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while (sectorCount-- > 0)
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{
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CopyMemory (sourceSegment, sourceOffset, SectorBuffer, TC_LB_SIZE);
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if (drive == EncryptedVirtualPartition.Drive && sector >= EncryptedVirtualPartition.StartSector && sector <= EncryptedVirtualPartition.EndSector)
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{
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EncryptDataUnits (SectorBuffer, &dataUnitNo, 1, BootCryptoInfo);
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}
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result = WriteSectors (SectorBuffer, drive, sector + writeOffset, 1);
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if (result != BiosResultSuccess)
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break;
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++sector;
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++dataUnitNo;
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sourceOffset += TC_LB_SIZE;
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}
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ReleaseSectorBuffer();
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return result;
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}
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static bool ReadWritePartiallyCoversEncryptedArea (const uint64 §or, uint16 sectorCount)
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{
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uint64 readWriteEnd = sector + --sectorCount;
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return ((sector < EncryptedVirtualPartition.StartSector && readWriteEnd >= EncryptedVirtualPartition.StartSector)
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|| (sector >= EncryptedVirtualPartition.StartSector && readWriteEnd > EncryptedVirtualPartition.EndSector));
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}
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