Move the Security package to EPL, and add the implementations of the cryptographic algorithms
/*
* Copyright (c) 2004-2009 Nokia Corporation and/or its subsidiary(-ies).
* All rights reserved.
* This component and the accompanying materials are made available
* under the terms of the License "Eclipse Public License v1.0"
* which accompanies this distribution, and is available
* at the URL "http://www.eclipse.org/legal/epl-v10.html".
*
* Initial Contributors:
* Nokia Corporation - initial contribution.
*
* Contributors:
*
* Description:
*
*/
#include "tactionsetwritepfs.h"
#include "t_input.h"
#include <cryptostrength.h>
#include <pbedata.h>
#include <f32file.h>
#include <s32file.h>
#include <stdlib.h>
#include <s32mem.h>
#include <s32std.h>
_LIT8(KWritePFSStart, "<writepfs>");
_LIT8(KWritePFSEnd, "</writepfs>");
_LIT8(KInputStart, "<input>");
_LIT8(KInputEnd, "</input>");
_LIT8(KPasswdStart, "<passwd>");
_LIT8(KPasswdEnd, "</passwd>");
_LIT16(KWeakFileName, "\\tpbe\\weak.dat");
_LIT16(KStrongFileName, "\\tpbe\\strong.dat");
CTestAction* CActionSetWritePFS::NewL(RFs& aFs,
CConsoleBase& aConsole,
Output& aOut,
const TTestActionSpec& aTestActionSpec)
{
CTestAction* self = CActionSetWritePFS::NewLC(aFs, aConsole,
aOut, aTestActionSpec);
CleanupStack::Pop();
return self;
}
CTestAction* CActionSetWritePFS::NewLC(RFs& aFs,
CConsoleBase& aConsole,
Output& aOut,
const TTestActionSpec& aTestActionSpec)
{
CActionSetWritePFS* self = new(ELeave) CActionSetWritePFS(aFs, aConsole, aOut);
CleanupStack::PushL(self);
self->ConstructL(aTestActionSpec);
return self;
}
CActionSetWritePFS::~CActionSetWritePFS()
{
delete iBody;
}
CActionSetWritePFS::CActionSetWritePFS(RFs& aFs,
CConsoleBase& aConsole,
Output& aOut)
: CTestAction(aConsole, aOut), iFs(aFs)
{
}
void CActionSetWritePFS::ConstructL(const TTestActionSpec& aTestActionSpec)
{
CTestAction::ConstructL(aTestActionSpec);
iBody = HBufC8::NewL(aTestActionSpec.iActionBody.Length());
iBody->Des().Copy(aTestActionSpec.iActionBody);
}
void CActionSetWritePFS::DoPerformPrerequisite(TRequestStatus& aStatus)
{
TRequestStatus* status = &aStatus;
TInt err = KErrNone;
TInt pos = 0;
TPtrC8 encryptElement = Input::ParseElement(*iBody, KWritePFSStart,
KWritePFSEnd, pos, err);
pos = 0;
TPtrC8 passwdTemp = Input::ParseElement(encryptElement, KPasswdStart,
KPasswdEnd, pos, err);
iPasswd = HBufC::NewL(passwdTemp.Length());
TPtr16 passwdTemp3( iPasswd->Des());
passwdTemp3.Copy(passwdTemp);
pos = 0;
TPtrC8 inputTemp = Input::ParseElement(encryptElement, KInputStart,
KInputEnd, pos, err);
iInput = HBufC8::NewL(inputTemp.Length());
*iInput = inputTemp;
User::RequestComplete(status, KErrNone);
iActionState = CTestAction::EAction;
}
void CActionSetWritePFS::DoPerformPostrequisite(TRequestStatus& aStatus)
{
TRequestStatus* status = &aStatus;
delete iPasswd;
delete iInput;
iFinished = ETrue;
User::RequestComplete(status, KErrNone);
}
void CActionSetWritePFS::DoReportAction(void)
{
}
void CActionSetWritePFS::DoCheckResult(TInt)
{
}
void CActionSetWritePFS::PerformAction(TRequestStatus& aStatus)
{
__UHEAP_MARK;
TRequestStatus* status = &aStatus;
iResult = EFalse;
CPBEncryptSet* set = CPBEncryptSet::NewLC(*iPasswd);
CPBEncryptor* encryptor = set->NewEncryptLC();
HBufC8* ciphertextTemp = HBufC8::NewLC(encryptor->MaxFinalOutputLength(iInput->Length()));
TPtr8 ciphertext = ciphertextTemp->Des();
encryptor->ProcessFinalL(*iInput, ciphertext);
//Change the password by appending the letter 'a' to it
HBufC* newPasswordTemp = HBufC::NewMaxLC(iPasswd->Length()+1);
TPtr newPassword = newPasswordTemp->Des();
newPassword.Copy(*iPasswd);
newPassword.Append('a');
set->ChangePasswordL(newPassword);
TDriveUnit sysDrive (RFs::GetSystemDrive());
TDriveName driveName(sysDrive.Name());
TBuf<128> pfsFileName (driveName);
if (TCrypto::Strength() == TCrypto::EStrong)
pfsFileName.Append(KStrongFileName);
else
pfsFileName.Append(KWeakFileName);
RStoreWriteStream write;
CFileStore *store = CPermanentFileStore::ReplaceLC(iFs, pfsFileName, EFileRead | EFileWrite);
store->SetTypeL(store->Layout());
//write the encrypted master key to a new stream
write.CreateLC(*store);
write << set->EncryptedMasterKey();
write.CommitL();
CleanupStack::PopAndDestroy(); //CreateLC()
//write the encryption data to a new stream
write.CreateLC(*store);
set->EncryptionData().ExternalizeL(write);
write.CommitL();
CleanupStack::PopAndDestroy(); //CreateLC()
//write the cyphertext to a new stream
write.CreateLC(*store);
write << ciphertext;
write.CommitL();
CleanupStack::PopAndDestroy(); //CreateLC()
store->Commit();
// Finished writing the PFS
iResult = ETrue;
CleanupStack::PopAndDestroy(store);
CleanupStack::PopAndDestroy(newPasswordTemp);
CleanupStack::PopAndDestroy(ciphertextTemp);
CleanupStack::PopAndDestroy(encryptor);
CleanupStack::PopAndDestroy(set);
User::RequestComplete(status, KErrNone);
iActionState = CTestAction::EPostrequisite;
__UHEAP_MARKEND;
}
void CActionSetWritePFS::Hex(HBufC8& aString)
{
TPtr8 ptr=aString.Des();
if (aString.Length()%2)
{
ptr.SetLength(0);
return;
}
TInt i;
for (i=0;i<aString.Length();i+=2)
{
TUint8 tmp;
tmp=(TUint8)(aString[i]-(aString[i]>'9'?('A'-10):'0'));
tmp*=16;
tmp|=(TUint8)(aString[i+1]-(aString[i+1]>'9'?('A'-10):'0'));
ptr[i/2]=tmp;
}
ptr.SetLength(aString.Length()/2);
}