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/*
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* Copyright (c) 1998-2009 Nokia Corporation and/or its subsidiary(-ies).
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* All rights reserved.
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* This component and the accompanying materials are made available
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* under the terms of the License "Eclipse Public License v1.0"
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* which accompanies this distribution, and is available
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* at the URL "http://www.eclipse.org/legal/epl-v10.html".
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*
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* Initial Contributors:
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* Nokia Corporation - initial contribution.
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*
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* Contributors:
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*
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* Description:
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*
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*/
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#include <pbedata.h>
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#include <stdlib.h>
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#include <s32mem.h>
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#include <s32std.h>
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#include "tpbe.h"
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#include "tactionset.h"
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#include "t_input.h"
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_LIT8(KSetStart, "<set>");
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_LIT8(KSetEnd, "</set>");
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CTestAction* CActionSet::NewL(RFs& aFs,
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CConsoleBase& aConsole,
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Output& aOut,
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const TTestActionSpec& aTestActionSpec)
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{
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CTestAction* self = CActionSet::NewLC(aFs, aConsole,
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aOut, aTestActionSpec);
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CleanupStack::Pop();
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return self;
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}
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CTestAction* CActionSet::NewLC(RFs& aFs,
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CConsoleBase& aConsole,
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Output& aOut,
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const TTestActionSpec& aTestActionSpec)
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{
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CActionSet* self = new(ELeave) CActionSet(aFs, aConsole, aOut);
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CleanupStack::PushL(self);
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self->ConstructL(aTestActionSpec);
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return self;
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}
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CActionSet::~CActionSet()
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{
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delete iBody;
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}
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CActionSet::CActionSet(RFs& aFs,
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CConsoleBase& aConsole,
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Output& aOut)
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: CTestAction(aConsole, aOut), iFs(aFs)
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{
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}
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void CActionSet::ConstructL(const TTestActionSpec& aTestActionSpec)
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{
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CTestAction::ConstructL(aTestActionSpec);
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iBody = HBufC8::NewL(aTestActionSpec.iActionBody.Length());
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iBody->Des().Copy(aTestActionSpec.iActionBody);
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}
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void CActionSet::DoPerformPrerequisite(TRequestStatus& aStatus)
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{
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TRequestStatus* status = &aStatus;
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TInt err = KErrNone;
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TInt pos = 0;
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TPtrC8 encryptElement = Input::ParseElement(*iBody, KSetStart,
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KSetEnd, pos, err);
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pos = 0;
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TPtrC8 kdf = Input::ParseElement(*iBody, KKdfStart, KKdfEnd, pos, err);
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if (err == KErrNone)
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iKdf = kdf.AllocL();
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pos = 0;
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TPtrC8 saltLenBytes = Input::ParseElement(*iBody, KSaltLenBytesStart, KSaltLenBytesEnd, pos, err);
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if (err == KErrNone)
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iSaltLenBytes = saltLenBytes.AllocL();
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pos = 0;
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TPtrC8 iterCount = Input::ParseElement(*iBody, KIterCountStart, KIterCountEnd, pos, err);
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if (err == KErrNone)
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iIterCount = iterCount.AllocL();
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pos = 0;
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TPtrC8 passwdTemp = Input::ParseElement(encryptElement, KPasswdStart,
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KPasswdEnd, pos, err);
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iPasswd = HBufC::NewL(passwdTemp.Length());
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TPtr16 passwdTemp3( iPasswd->Des());
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passwdTemp3.Copy(passwdTemp);
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pos = 0;
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TPtrC8 inputTemp = Input::ParseElement(encryptElement, KInputStart,
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KInputEnd, pos, err);
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iInput = HBufC8::NewL(inputTemp.Length());
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*iInput = inputTemp;
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TPtrC8 cipher = Input::ParseElement(*iBody, KCipherStart, KCipherEnd);
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if (cipher.Compare(KECipherAES_CBC_128) == 0)
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{
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iCipher = ECipherAES_CBC_128;
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}
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else if (cipher.Compare(KECipherAES_CBC_192) == 0)
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{
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iCipher = ECipherAES_CBC_192;
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}
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else if (cipher.Compare(KECipherAES_CBC_256) == 0)
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{
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iCipher = ECipherAES_CBC_256;
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}
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else if (cipher.Compare(KECipherDES_CBC) == 0)
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{
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iCipher = ECipherDES_CBC;
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}
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else if (cipher.Compare(KECipher3DES_CBC) == 0)
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{
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iCipher = ECipher3DES_CBC;
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}
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else if (cipher.Compare(KECipherRC2_CBC_40) == 0)
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{
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iCipher = ECipherRC2_CBC_40;
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}
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else if (cipher.Compare(KECipherRC2_CBC_128) == 0)
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{
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iCipher = ECipherRC2_CBC_128;
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}
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else if (cipher.Compare(KECipherRC2_CBC_40_16) == 0)
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{
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iCipher = ECipherRC2_CBC_40_16;
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}
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else if (cipher.Compare(KECipherRC2_CBC_128_16) == 0)
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{
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iCipher = ECipherRC2_CBC_128_16;
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}
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else if(cipher.Compare(KECipher2Key3DES_CBC) == 0)
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{
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iCipher = ECipher2Key3DES_CBC;
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}
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else if(cipher.Compare(KECipherRC2_CBC_40_5) == 0)
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{
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iCipher = ECipherRC2_CBC_40_5;
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}
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else
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{
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iCipher = ECipherAES_CBC_128; // Default value if the <cipher> tag is missing
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}
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User::RequestComplete(status, KErrNone);
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iActionState = CTestAction::EAction;
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}
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void CActionSet::DoPerformPostrequisite(TRequestStatus& aStatus)
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{
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TRequestStatus* status = &aStatus;
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delete iPasswd;
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delete iInput;
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delete iKdf;
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iKdf = 0;
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delete iSaltLenBytes;
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iSaltLenBytes = 0;
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delete iIterCount;
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iIterCount = 0;
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iFinished = ETrue;
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User::RequestComplete(status, KErrNone);
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}
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void CActionSet::DoReportAction(void)
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{
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}
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void CActionSet::DoCheckResult(TInt)
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{
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}
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void CActionSet::PerformAction(TRequestStatus& aStatus)
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{
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__UHEAP_MARK;
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TRequestStatus* status = &aStatus;
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iResult = EFalse;
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HBufC8* pkcs12Pwd = 0;
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// default value is NULL to avoid RVCT warning
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// C2874W: set may be used before being set
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CPBEncryptSet* set = 0;
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if (iKdf == 0)
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{
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CleanupStack::PushL(pkcs12Pwd);
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set = CPBEncryptSet::NewLC(*iPasswd, iCipher);
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}
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else
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{
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// if supply KDF, must also supply salt len and iteration count
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ASSERT(iSaltLenBytes != 0 && iIterCount != 0);
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CPBEncryptParms* ep = CPBEncryptParms::NewLC();
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ep->SetCipher(iCipher);
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TInt saltLenBytes;
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TInt r = TLex8(*iSaltLenBytes).Val(saltLenBytes);
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ASSERT(r == KErrNone);
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ep->ResizeSaltL(saltLenBytes);
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TInt iterCount;
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r = TLex8(*iIterCount).Val(iterCount);
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ASSERT(r == KErrNone);
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ep->SetIterations(iterCount);
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CleanupStack::PushL((CBase*)0);
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CleanupStack::Pop((CBase*)0);
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if (*iKdf == _L8("PKCS#5"))
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{
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ep->SetKdf(CPBEncryptParms::EKdfPkcs5);
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set = CPBEncryptSet::NewL(*iPasswd, *ep);
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}
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else if (*iKdf == _L8("PKCS#12"))
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{
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pkcs12Pwd = PKCS12KDF::GeneratePasswordLC(*iPasswd);
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ep->SetKdf(CPBEncryptParms::EKdfPkcs12);
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set = CPBEncryptSet::NewL(*pkcs12Pwd, *ep);
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CleanupStack::Pop(pkcs12Pwd);
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}
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else
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User::Panic(_L("Unrec KDF"), 0);
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CleanupStack::PopAndDestroy(ep);
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// encryption could leak here, but for reservation above
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CleanupStack::PushL(pkcs12Pwd);
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CleanupStack::PushL(set);
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}
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CPBEncryptor* encryptor = set->NewEncryptLC();
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HBufC8* ciphertextTemp = HBufC8::NewLC(encryptor->MaxFinalOutputLength(iInput->Length()));
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TPtr8 ciphertext = ciphertextTemp->Des();
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encryptor->ProcessFinalL(*iInput, ciphertext);
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TBuf<128> newPwdTemp(*iPasswd);
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newPwdTemp.Append('a');
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TBuf8<128> newPwdTemp8;
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TPBPassword newPassword(KNullDesC);
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if (pkcs12Pwd == 0)
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new(&newPassword) TPBPassword(newPwdTemp);
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else
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{
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HBufC8* newPwd = PKCS12KDF::GeneratePasswordLC(newPwdTemp);
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newPwdTemp8.Copy(*newPwd);
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new(&newPassword) TPBPassword(newPwdTemp8);
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CleanupStack::PopAndDestroy(newPwd);
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}
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set->ChangePasswordL(newPassword);
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//create a mem buffer store
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CBufStore* store = CBufStore::NewLC(100);
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RStoreWriteStream write;
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//write the encrypted master key to a stream
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TStreamId keyStreamId = write.CreateLC(*store);
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write << set->EncryptedMasterKey();
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write.CommitL();
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CleanupStack::PopAndDestroy(); //CreateLC()
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//write the encryption data to another stream
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TStreamId dataStreamId = write.CreateLC(*store);
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set->EncryptionData().ExternalizeL(write);
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write.CommitL();
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CleanupStack::PopAndDestroy(); //CreateLC()
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//prepare to read the streams back in, creating a new TPBEncryptionData
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RStoreReadStream read;
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read.OpenLC(*store, dataStreamId);
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//read in Encryption data
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CPBEncryptionData* data = CPBEncryptionData::NewL(read);
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CleanupStack::PopAndDestroy(); //OpenLC()
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CleanupStack::PushL(data);
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//read in encrypted master key
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read.OpenLC(*store, keyStreamId);
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HBufC8* encryptedMasterKey = HBufC8::NewLC(read, 10000); //some large number
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//create a new set encryption class
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CPBEncryptSet* set2 = CPBEncryptSet::NewLC(*data, *encryptedMasterKey, newPassword);
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HBufC8* plaintextTemp = HBufC8::NewLC(ciphertext.Length());
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TPtr8 plaintext = plaintextTemp->Des();
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CPBDecryptor* decryptor = set2->NewDecryptLC();
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decryptor->Process(ciphertext, plaintext);
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//this Mid call is due to get rid of the decrypted padding at the end
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if(plaintext.Mid(0,iInput->Length()) == *iInput)
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{
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iResult = ETrue;
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}
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CleanupStack::PopAndDestroy(decryptor);
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CleanupStack::PopAndDestroy(plaintextTemp);
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CleanupStack::PopAndDestroy(set2);
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CleanupStack::PopAndDestroy(encryptedMasterKey);
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CleanupStack::PopAndDestroy(1); //OpenLC
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CleanupStack::PopAndDestroy(data);
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CleanupStack::PopAndDestroy(store);
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CleanupStack::PopAndDestroy(ciphertextTemp);
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CleanupStack::PopAndDestroy(encryptor);
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CleanupStack::PopAndDestroy(set);
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CleanupStack::PopAndDestroy(pkcs12Pwd);
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User::RequestComplete(status, KErrNone);
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iActionState = CTestAction::EPostrequisite;
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__UHEAP_MARKEND;
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}
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void CActionSet::Hex(HBufC8& aString)
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{
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TPtr8 ptr=aString.Des();
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if (aString.Length()%2)
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{
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ptr.SetLength(0);
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return;
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}
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TInt i;
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for (i=0;i<aString.Length();i+=2)
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{
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TUint8 tmp;
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tmp=(TUint8)(aString[i]-(aString[i]>'9'?('A'-10):'0'));
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tmp*=16;
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tmp|=(TUint8)(aString[i+1]-(aString[i+1]>'9'?('A'-10):'0'));
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ptr[i/2]=tmp;
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}
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ptr.SetLength(aString.Length()/2);
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}
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