os/security/crypto/weakcryptospi/test/tcryptospi/src/hashincrementalhashwithcopystep.cpp
author sl
Tue, 10 Jun 2014 14:32:02 +0200
changeset 1 260cb5ec6c19
permissions -rw-r--r--
Update contrib.
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/*
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* Copyright (c) 2007-2009 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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* Example CTestStep derived implementation
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*
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*/
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/**
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 @file
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 @internalTechnology
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*/
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#include "hashincrementalhashwithcopystep.h"
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#include <cryptospi/cryptohashapi.h>
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#include <cryptospi/plugincharacteristics.h>
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using namespace CryptoSpi;
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CHashIncrementalHashWithCopyStep::~CHashIncrementalHashWithCopyStep()
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	{
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	}
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CHashIncrementalHashWithCopyStep::CHashIncrementalHashWithCopyStep()
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	{
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	SetTestStepName(KHashIncrementalHashWithCopyStep);
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	}
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TVerdict CHashIncrementalHashWithCopyStep::doTestStepPreambleL()
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	{
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	SetTestStepResult(EPass);
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	return TestStepResult();
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	}
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TVerdict CHashIncrementalHashWithCopyStep::doTestStepL()
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	{
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	if (TestStepResult()==EPass)
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		{
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		//Assume faliure, unless all is successful
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		SetTestStepResult(EFail);
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		INFO_PRINTF1(_L("*** Hash - Incremental Hash with Copy ***"));
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		INFO_PRINTF2(_L("HEAP CELLS: %d"), User::CountAllocCells());
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		TVariantPtrC algorithmUid;
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		TVariantPtrC operationModeUid;
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		TPtrC sourcePath;
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		TPtrC expectedHash;
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		//Extract the Test Case ID parameter from the specified INI file
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		if(!GetStringFromConfig(ConfigSection(),KConfigAlgorithmUid,algorithmUid) ||
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			!GetStringFromConfig(ConfigSection(),KConfigOperationMode,operationModeUid) ||
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			!GetStringFromConfig(ConfigSection(),KConfigSourcePath,sourcePath) ||
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			!GetStringFromConfig(ConfigSection(),KConfigExHashHmacValue,expectedHash))
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			{
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			ERR_PRINTF1(_L("** Error: Failed to Load Configuration Parameters **"));
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			SetTestStepResult(EFail);
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			}
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		else
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			{
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			//Create a pointer for the Hash Implementation Object
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			CHash* hashImpl = NULL;
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			//Retrieve a Hash Factory Object					
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			TRAPD(err,CHashFactory::CreateHashL(hashImpl,
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												algorithmUid,
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												operationModeUid,
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												NULL,
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												NULL));  				
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			if(hashImpl && (err == KErrNone))
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				{
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				//Push the Hash Implementation Object onto the Cleanup Stack
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				CleanupStack::PushL(hashImpl);
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				RFs fsSession;
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				//Create a connection to the file server	
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				err = fsSession.Connect();
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				if(err != KErrNone)
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					{
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					ERR_PRINTF2(_L("*** Error: File Server Connection - %d ***"), err);
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					SetTestStepResult(EFail);
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					}	
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				else
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					{
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					RFile sourceFile;
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					CleanupClosePushL(sourceFile);
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	    			//Open the specified source file		
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	    			err = sourceFile.Open(fsSession,sourcePath, EFileRead);
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	    			if(err != KErrNone)
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						{
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						ERR_PRINTF2(_L("*** Error: Opening Source File - %d ***"), err);
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						SetTestStepResult(EFail);
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						}
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					else
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						{
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						TInt sourceLength = 0;
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						TInt readPosition = 0;
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						TInt readIncrement = 0;
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						TBool hashComplete = EFalse;
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						TBool hashCopied = EFalse;
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						TPtrC8 hashStr;
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						CHash* hashCopyImpl = NULL;
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						User::LeaveIfError(sourceFile.Size(sourceLength));
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						//Divide the total size of the source file up into individual equal sized blocks to read
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						//over several increments
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						readIncrement = sourceLength/KDataReadBlocks;
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						do 
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							{							
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							//Create a heap based descriptor to store the data
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							HBufC8* sourceData = HBufC8::NewL(readIncrement);
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							CleanupStack::PushL(sourceData);
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							TPtr8 sourcePtr = sourceData->Des();
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							//Read in a block of data from the source file from the current position
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							err = sourceFile.Read(readPosition,sourcePtr,readIncrement);
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							//Update the read position by adding the number of bytes read
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							readPosition += readIncrement;
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							if(readPosition == readIncrement)
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								{
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								//Read in the first block from the data file into the Hash implementation object
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								hashImpl->Hash(*sourceData);
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								INFO_PRINTF2(_L("Intial Hash - Bytes Read: %d"), readPosition);
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								}
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							else if(readPosition >= sourceLength)
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								{
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								//Reading in the final block, constructs the complete hash value and returns it within a TPtrC8
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								hashStr.Set(hashCopyImpl->Final(*sourceData));
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								//Sets the Complete Flag to ETrue in order to drop out of the loop
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								hashComplete = ETrue;
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								TInt totalRead = (readPosition - readIncrement) + (*sourceData).Length();
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								INFO_PRINTF2(_L("Final Hash - Bytes Read: %d"),totalRead);
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								}
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							//If the read position is half the source length and the implementation
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							//object hasn't already been copied
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							else if((readPosition >= sourceLength/2) && (hashCopied == EFalse))
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								{
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								//Update the hash message before copying
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								hashImpl->Update(*sourceData);
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								INFO_PRINTF1(_L("Copying Hash Object..."));
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								//Create a Copy of the existing Hash Object and all internal state of the message digest
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								hashCopyImpl = hashImpl->CopyL();
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								hashCopied = ETrue;
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								INFO_PRINTF2(_L("*** HASH COPY - Bytes Read: %d ***"), readPosition);
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								}
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							else
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								{
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								//Update the message data within the Hash object with the new block
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								if(hashCopied == EFalse)
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									{
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									hashImpl->Update(*sourceData);
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									INFO_PRINTF2(_L("Hash Update - Bytes Read: %d"), readPosition);		
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									}
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								else
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									{
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									hashCopyImpl->Update(*sourceData);
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									INFO_PRINTF2(_L("Hash Update (Copy) - Bytes Read: %d"), readPosition);		
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									}
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								}
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							CleanupStack::PopAndDestroy(sourceData);
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							}while(hashComplete == EFalse);
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						//Create a NULL TCharacteristics pointer
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						const TCharacteristics* charsPtr(NULL);
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						//Retrieve the characteristics for the hash implementation object
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						TRAP_LOG(err, hashImpl->GetCharacteristicsL(charsPtr));
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						//Static cast the characteristics to type THashCharacteristics
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						const THashCharacteristics* hashCharsPtr = static_cast<const THashCharacteristics*>(charsPtr);
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						//The hash output size is returned in Bits, divide by 8 to get the Byte size
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						TInt hashSize = hashCharsPtr->iOutputSize/8;
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						//Retrieve the final 8bit hash value and convert to 16bit												
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						HBufC* hashData = HBufC::NewLC(hashSize);
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						TPtr hashPtr = hashData->Des();
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						//Copy the hashed content into the heap based descriptor
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						hashPtr.Copy(hashStr);
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					 	//Take the 16bit descriptor and convert the string to hexadecimal
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						TVariantPtrC convertHash;
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						convertHash.Set(hashPtr);
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						HBufC* hashResult = convertHash.HexStringLC();
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						INFO_PRINTF2(_L("*** Hashed Data: %S ***"),&*hashResult);
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						INFO_PRINTF2(_L("*** Expected Hash: %S ***"),&expectedHash);
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						//If the returned hash value matches the expected hash, Pass the test		
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						if(*hashResult == expectedHash)
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							{
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							INFO_PRINTF1(_L("*** Hash - Incremental Hash with Copy : PASS ***"));
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							SetTestStepResult(EPass);	
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							}
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						else
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							{
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							ERR_PRINTF2(_L("*** FAIL: Hashed and Expected Value Mismatch  ***"), err);
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							SetTestStepResult(EFail);	
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							}
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						CleanupStack::PopAndDestroy(hashResult);
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						CleanupStack::PopAndDestroy(hashData);						
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						delete hashCopyImpl;
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						}
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					//Cleanup the Source RFile	
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					CleanupStack::PopAndDestroy();	
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					}
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				fsSession.Close();	
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				CleanupStack::PopAndDestroy(hashImpl);
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				}
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			else
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				{
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				ERR_PRINTF2(_L("*** FAIL: Failed to Create Hash Object - %d ***"), err);
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				SetTestStepResult(EFail);	
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				}
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			}
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		}
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	INFO_PRINTF2(_L("HEAP CELLS: %d"), User::CountAllocCells());
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	return TestStepResult();
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	}
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TVerdict CHashIncrementalHashWithCopyStep::doTestStepPostambleL()
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	{
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	return TestStepResult();
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	}