VeraCrypt
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authorDavid Foerster <david.foerster@informatik.hu-berlin.de>2016-05-10 22:16:32 +0200
committerDavid Foerster <david.foerster@informatik.hu-berlin.de>2016-05-10 22:18:34 +0200
commit11716ed2dacbb104f8f59867fe66f2c0a6984291 (patch)
tree28aa448de2e790d0f40dc57799a55a9df12ee6fb /src/Crypto/AesSmall_x86.asm
parent191075155835172e5596e191cf0679ff9022f0fd (diff)
downloadVeraCrypt-11716ed2dacbb104f8f59867fe66f2c0a6984291.tar.gz
VeraCrypt-11716ed2dacbb104f8f59867fe66f2c0a6984291.zip
Remove trailing whitespace
Diffstat (limited to 'src/Crypto/AesSmall_x86.asm')
-rw-r--r--src/Crypto/AesSmall_x86.asm30
1 files changed, 15 insertions, 15 deletions
diff --git a/src/Crypto/AesSmall_x86.asm b/src/Crypto/AesSmall_x86.asm
index de32fc66..20008194 100644
--- a/src/Crypto/AesSmall_x86.asm
+++ b/src/Crypto/AesSmall_x86.asm
@@ -1,23 +1,23 @@
; ---------------------------------------------------------------------------
; Copyright (c) 1998-2007, Brian Gladman, Worcester, UK. All rights reserved.
-;
+;
; LICENSE TERMS
-;
+;
; The free distribution and use of this software is allowed (with or without
; changes) provided that:
-;
+;
; 1. source code distributions include the above copyright notice, this
; list of conditions and the following disclaimer;
-;
+;
; 2. binary distributions include the above copyright notice, this list
; of conditions and the following disclaimer in their documentation;
-;
+;
; 3. the name of the copyright holder is not used to endorse products
; built using this software without specific written permission.
-;
+;
; DISCLAIMER
-;
+;
; This software is provided 'as is' with no explicit or implied warranties
; in respect of its properties, including, but not limited to, correctness
; and/or fitness for purpose.
@@ -367,7 +367,7 @@ extern _aes_enc_tab
; Apply S-Box to the 4 bytes in a 32-bit word and rotate byte positions
%ifdef REDUCE_CODE_SIZE
-
+
l3s_col:
movzx ecx,al ; in eax
movzx ecx, etab_b(ecx) ; out eax
@@ -413,7 +413,7 @@ l3s_col:
%endmacro
%endif
-
+
; offsets to parameters
in_blk equ 2 ; input byte array address parameter
@@ -444,7 +444,7 @@ enc_round:
xor ebx,[ebp+4]
add sp, 2
ret
-
+
%else
%macro enc_round 0
@@ -724,7 +724,7 @@ enc_round:
mov ax, sp
movzx esp, ax
-
+
push ebp
push ebx
push esi
@@ -1000,7 +1000,7 @@ dec_round:
; AES Decryption Subroutine
do_name _aes_decrypt,12
-
+
mov ax, sp
movzx esp, ax
@@ -1095,7 +1095,7 @@ inv_mix_col:
%else
-%macro inv_mix_col 0
+%macro inv_mix_col 0
movzx ecx,dl ; input eax, edx
movzx ecx,etab_b(ecx) ; output eax
@@ -1243,14 +1243,14 @@ inv_mix_col:
%endif
do_name _aes_decrypt_key256,8
-
+
mov ax, sp
movzx esp, ax
push ebp
push ebx
push esi
push edi
-
+
movzx eax, word [esp+20] ; ks
movzx edx, word [esp+18] ; key
push ax
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/*
 Copyright (c) 2008-2010 TrueCrypt Developers Association. All rights reserved.

 Governed by the TrueCrypt License 3.0 the full text of which is contained in
 the file License.txt included in TrueCrypt binary and source code distribution
 packages.
*/

#ifndef TC_WINDOWS
#include <errno.h>
#endif
#include "EncryptionModeXTS.h"
#include "Volume.h"
#include "VolumeHeader.h"
#include "VolumeLayout.h"
#include "Common/Crypto.h"

namespace VeraCrypt
{
	Volume::Volume ()
		: HiddenVolumeProtectionTriggered (false),
		SystemEncryption (false),
		VolumeDataSize (0),
		TopWriteOffset (0),
		TotalDataRead (0),
		TotalDataWritten (0),
		TrueCryptMode (false)
	{
	}

	Volume::~Volume ()
	{
	}

	void Volume::CheckProtectedRange (uint64 writeHostOffset, uint64 writeLength)
	{
		uint64 writeHostEndOffset = writeHostOffset + writeLength - 1;

		if ((writeHostOffset < ProtectedRangeStart) ? (writeHostEndOffset >= ProtectedRangeStart) : (writeHostOffset <= ProtectedRangeEnd - 1))
		{
			HiddenVolumeProtectionTriggered = true;
			throw VolumeProtected (SRC_POS);
		}
	}

	void Volume::Close ()
	{
		if (VolumeFile.get() == nullptr)
			throw NotInitialized (SRC_POS);
		
		VolumeFile.reset();
	}

	shared_ptr <EncryptionAlgorithm> Volume::GetEncryptionAlgorithm () const
	{
		if_debug (ValidateState ());
		return EA;
	}

	shared_ptr <EncryptionMode> Volume::GetEncryptionMode () const
	{
		if_debug (ValidateState ());
		return EA->GetMode();
	}

	void Volume::Open (const VolumePath &volumePath, bool preserveTimestamps, shared_ptr <VolumePassword> password, shared_ptr <Pkcs5Kdf> kdf, bool truecryptMode, shared_ptr <KeyfileList> keyfiles, VolumeProtection::Enum protection, shared_ptr <VolumePassword> protectionPassword, shared_ptr <Pkcs5Kdf> protectionKdf, shared_ptr <KeyfileList> protectionKeyfiles, bool sharedAccessAllowed, VolumeType::Enum volumeType, bool useBackupHeaders, bool partitionInSystemEncryptionScope)
	{
		make_shared_auto (File, file);

		File::FileOpenFlags flags = (preserveTimestamps ? File::PreserveTimestamps : File::FlagsNone);

		try
		{
			if (protection == VolumeProtection::ReadOnly)
				file->Open (volumePath, File::OpenRead, File::ShareRead, flags);
			else
				file->Open (volumePath, File::OpenReadWrite, File::ShareNone, flags);
		}
		catch (SystemException &e)
		{
			if (e.GetErrorCode() == 
#ifdef TC_WINDOWS
				ERROR_SHARING_VIOLATION)
#else
				EAGAIN)
#endif
			{
				if (!sharedAccessAllowed)
					throw VolumeHostInUse (SRC_POS);

				file->Open (volumePath, protection == VolumeProtection::ReadOnly ? File::OpenRead : File::OpenReadWrite, File::ShareReadWriteIgnoreLock, flags);
			}
			else
				throw;
		}

		return Open (file, password, kdf, truecryptMode, keyfiles, protection, protectionPassword, protectionKdf,protectionKeyfiles, volumeType, useBackupHeaders, partitionInSystemEncryptionScope);
	}

	void Volume::Open (shared_ptr <File> volumeFile, shared_ptr <VolumePassword> password, shared_ptr <Pkcs5Kdf> kdf, bool truecryptMode, shared_ptr <KeyfileList> keyfiles, VolumeProtection::Enum protection, shared_ptr <VolumePassword> protectionPassword, shared_ptr <Pkcs5Kdf> protectionKdf,shared_ptr <KeyfileList> protectionKeyfiles, VolumeType::Enum volumeType, bool useBackupHeaders, bool partitionInSystemEncryptionScope)
	{
		if (!volumeFile)
			throw ParameterIncorrect (SRC_POS);

		// TrueCrypt doesn't support SHA-256
		if (kdf && truecryptMode && (kdf->GetName() == L"HMAC-SHA-256"))
			throw UnsupportedAlgoInTrueCryptMode (SRC_POS);	

		Protection = protection;
		VolumeFile = volumeFile;
		SystemEncryption = partitionInSystemEncryptionScope;

		try
		{
			VolumeHostSize = VolumeFile->Length();
			shared_ptr <VolumePassword> passwordKey = Keyfile::ApplyListToPassword (keyfiles, password);

			bool skipLayoutV1Normal = false;

			bool deviceHosted = GetPath().IsDevice();
			size_t hostDeviceSectorSize = 0;
			if (deviceHosted)
				hostDeviceSectorSize = volumeFile->GetDeviceSectorSize();

			// Test volume layouts
			foreach (shared_ptr <VolumeLayout> layout, VolumeLayout::GetAvailableLayouts (volumeType))
			{
				if (skipLayoutV1Normal && typeid (*layout) == typeid (VolumeLayoutV1Normal))
				{
					// Skip VolumeLayoutV1Normal as it shares header location with VolumeLayoutV2Normal
					continue;
				}

				if (useBackupHeaders && !layout->HasBackupHeader())
					continue;

				SecureBuffer headerBuffer (layout->GetHeaderSize());

				if (layout->HasDriveHeader())
				{
					if (!partitionInSystemEncryptionScope)
						continue;

					if (!GetPath().IsDevice())
						throw PartitionDeviceRequired (SRC_POS);

					File driveDevice;
					driveDevice.Open (DevicePath (wstring (GetPath())).ToHostDriveOfPartition());

					int headerOffset = layout->GetHeaderOffset();

					if (headerOffset >= 0)
						driveDevice.SeekAt (headerOffset);
					else
						driveDevice.SeekEnd (headerOffset);

					if (driveDevice.Read (headerBuffer) != layout->GetHeaderSize())
						continue;
				}
				else
				{
					if (partitionInSystemEncryptionScope)
						continue;

					int headerOffset = useBackupHeaders ? layout->GetBackupHeaderOffset() : layout->GetHeaderOffset();

					if (headerOffset >= 0)
						VolumeFile->SeekAt (headerOffset);
					else
						VolumeFile->SeekEnd (headerOffset);

					if (VolumeFile->Read (headerBuffer) != layout->GetHeaderSize())
						continue;
				}

				EncryptionAlgorithmList layoutEncryptionAlgorithms = layout->GetSupportedEncryptionAlgorithms();
				EncryptionModeList layoutEncryptionModes = layout->GetSupportedEncryptionModes();

				if (typeid (*layout) == typeid (VolumeLayoutV2Normal))
				{
					skipLayoutV1Normal = true;

					// Test all algorithms and modes of VolumeLayoutV1Normal as it shares header location with VolumeLayoutV2Normal
					layoutEncryptionAlgorithms = EncryptionAlgorithm::GetAvailableAlgorithms();
					layoutEncryptionModes = EncryptionMode::GetAvailableModes();
				}

				shared_ptr <VolumeHeader> header = layout->GetHeader();

				if (header->Decrypt (headerBuffer, *passwordKey, kdf, truecryptMode, layout->GetSupportedKeyDerivationFunctions(truecryptMode), layoutEncryptionAlgorithms, layoutEncryptionModes))
				{
					// Header decrypted

					if (!truecryptMode && typeid (*layout) == typeid (VolumeLayoutV2Normal) && header->GetRequiredMinProgramVersion() < 0x10b)
					{
						// VolumeLayoutV1Normal has been opened as VolumeLayoutV2Normal
						layout.reset (new VolumeLayoutV1Normal);
						header->SetSize (layout->GetHeaderSize());
						layout->SetHeader (header);
					}

					TrueCryptMode = truecryptMode;
					Type = layout->GetType();
					SectorSize = header->GetSectorSize();

					VolumeDataOffset = layout->GetDataOffset (VolumeHostSize);
					VolumeDataSize = layout->GetDataSize (VolumeHostSize);

					Header = header;
					Layout = layout;
					EA = header->GetEncryptionAlgorithm();
					EncryptionMode &mode = *EA->GetMode();

					if (layout->HasDriveHeader())
					{
						if (header->GetEncryptedAreaLength() != header->GetVolumeDataSize())
							throw VolumeEncryptionNotCompleted (SRC_POS);

						uint64 partitionStartOffset = VolumeFile->GetPartitionDeviceStartOffset();

						if (partitionStartOffset < header->GetEncryptedAreaStart()
							|| partitionStartOffset >= header->GetEncryptedAreaStart() + header->GetEncryptedAreaLength())
							throw PasswordIncorrect (SRC_POS);

						mode.SetSectorOffset (partitionStartOffset / ENCRYPTION_DATA_UNIT_SIZE);
					}

					// Volume protection
					if (Protection == VolumeProtection::HiddenVolumeReadOnly)
					{
						if (Type == VolumeType::Hidden)
							throw PasswordIncorrect (SRC_POS);
						else
						{
							try
							{
								Volume protectedVolume;

								protectedVolume.Open (VolumeFile,
									protectionPassword, protectionKdf, truecryptMode, protectionKeyfiles,
									VolumeProtection::ReadOnly,
									shared_ptr <VolumePassword> (), shared_ptr <Pkcs5Kdf> (),shared_ptr <KeyfileList> (),
									VolumeType::Hidden,
									useBackupHeaders);

								if (protectedVolume.GetType() != VolumeType::Hidden)
									ParameterIncorrect (SRC_POS);

								ProtectedRangeStart = protectedVolume.VolumeDataOffset;
								ProtectedRangeEnd = protectedVolume.VolumeDataOffset + protectedVolume.VolumeDataSize;
							}
							catch (PasswordException&)
							{
								if (protectionKeyfiles && !protectionKeyfiles->empty())
									throw ProtectionPasswordKeyfilesIncorrect (SRC_POS);
								throw ProtectionPasswordIncorrect (SRC_POS);
							}
						}
					}
					return;
				}
			}

			if (partitionInSystemEncryptionScope)
				throw PasswordOrKeyboardLayoutIncorrect (SRC_POS);

			if (!partitionInSystemEncryptionScope && GetPath().IsDevice())
			{
				// Check if the device contains VeraCrypt Boot Loader
				try
				{
					File driveDevice;
					driveDevice.Open (DevicePath (wstring (GetPath())).ToHostDriveOfPartition());
					
					Buffer mbr (VolumeFile->GetDeviceSectorSize());
					driveDevice.ReadAt (mbr, 0);

					// Search for the string "VeraCrypt" or "TrueCrypt"
					const char* bootSignature = truecryptMode? "TrueCrypt" : TC_APP_NAME;
					size_t nameLen = strlen (bootSignature);
					for (size_t i = 0; i < mbr.Size() - nameLen; ++i)
					{
						if (memcmp (mbr.Ptr() + i, bootSignature, nameLen) == 0)
							throw PasswordOrMountOptionsIncorrect (SRC_POS);
					}
				}
				catch (PasswordOrMountOptionsIncorrect&) { throw; }
				catch (...) { }
			}

			if (keyfiles && !keyfiles->empty())
				throw PasswordKeyfilesIncorrect (SRC_POS);
			throw PasswordIncorrect (SRC_POS);
		}
		catch (...)
		{
			Close();
			throw;
		}
	}

	void Volume::ReadSectors (const BufferPtr &buffer, uint64 byteOffset)
	{
		if_debug (ValidateState ());

		uint64 length = buffer.Size();
		uint64 hostOffset = VolumeDataOffset + byteOffset;

		if (length % SectorSize != 0 || byteOffset % SectorSize != 0)
			throw ParameterIncorrect (SRC_POS);

		if (VolumeFile->ReadAt (buffer, hostOffset) != length)
			throw MissingVolumeData (SRC_POS);

		EA->DecryptSectors (buffer, hostOffset / SectorSize, length / SectorSize, SectorSize);

		TotalDataRead += length;
	}

	void Volume::ReEncryptHeader (bool backupHeader, const ConstBufferPtr &newSalt, const ConstBufferPtr &newHeaderKey, shared_ptr <Pkcs5Kdf> newPkcs5Kdf)
	{
		if_debug (ValidateState ());
		
		if (Protection == VolumeProtection::ReadOnly)
			throw VolumeReadOnly (SRC_POS);

		SecureBuffer newHeaderBuffer (Layout->GetHeaderSize());
		
		Header->EncryptNew (newHeaderBuffer, newSalt, newHeaderKey, newPkcs5Kdf);

		int headerOffset = backupHeader ? Layout->GetBackupHeaderOffset() : Layout->GetHeaderOffset();

		if (headerOffset >= 0)
			VolumeFile->SeekAt (headerOffset);
		else
			VolumeFile->SeekEnd (headerOffset);

		VolumeFile->Write (newHeaderBuffer);
	}

	void Volume::ValidateState () const
	{
		if (VolumeFile.get() == nullptr)
			throw NotInitialized (SRC_POS);
	}

	void Volume::WriteSectors (const ConstBufferPtr &buffer, uint64 byteOffset)
	{
		if_debug (ValidateState ());

		uint64 length = buffer.Size();
		uint64 hostOffset = VolumeDataOffset + byteOffset;

		if (length % SectorSize != 0
			|| byteOffset % SectorSize != 0
			|| byteOffset + length > VolumeDataSize)
			throw ParameterIncorrect (SRC_POS);

		if (Protection == VolumeProtection::ReadOnly)
			throw VolumeReadOnly (SRC_POS);

		if (HiddenVolumeProtectionTriggered)
			throw VolumeProtected (SRC_POS);

		if (Protection == VolumeProtection::HiddenVolumeReadOnly)
			CheckProtectedRange (hostOffset, length);

		SecureBuffer encBuf (buffer.Size());
		encBuf.CopyFrom (buffer);

		EA->EncryptSectors (encBuf, hostOffset / SectorSize, length / SectorSize, SectorSize);
		VolumeFile->WriteAt (encBuf, hostOffset);

		TotalDataWritten += length;
		
		uint64 writeEndOffset = byteOffset + buffer.Size();
		if (writeEndOffset > TopWriteOffset)
			TopWriteOffset = writeEndOffset;
	}
}