os/security/crypto/weakcryptospi/test/tcryptospi/src/plugincharssymmetriccipherstep.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) 2007-2010 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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/**
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 @file
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 @internalTechnology
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*/
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#include "plugincharssymmetriccipherstep.h"
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#include "plugincharschecker.h"
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#include <cryptospi/cryptosymmetriccipherapi.h>
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#include <cryptospi/keys.h>
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using namespace CryptoSpi;
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CPluginCharsSymmetricCipherStep::~CPluginCharsSymmetricCipherStep()
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	{
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	}
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CPluginCharsSymmetricCipherStep::CPluginCharsSymmetricCipherStep()
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	{
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	SetTestStepName(KPluginCharsSymmetricCipherStep);
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	}
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TVerdict CPluginCharsSymmetricCipherStep::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 CPluginCharsSymmetricCipherStep::doTestStepL()
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	{
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	INFO_PRINTF1(_L("Plugin Characteristics - Symmetric Cipher Chracteristics"));
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	INFO_PRINTF2(_L("HEAP CELLS: %d"), User::CountAllocCells());
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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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		TPtrC encryptKey;
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		TVariantPtrC keyType;
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		TVariantPtrC algorithmUid;
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		TVariantPtrC cryptoMode;
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		TVariantPtrC operationMode;
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		TVariantPtrC paddingMode;
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		TVariantPtrC invalidOperationMode;
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		TVariantPtrC invalidPaddingMode;
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		//Each of the individual parameters required to create the Symmetric Cipher object
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		//are read in from the specified INI configuration file	
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		if(!GetStringFromConfig(ConfigSection(),KConfigEncryptKey,encryptKey) || 
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			!GetStringFromConfig(ConfigSection(),KConfigEncryptKeyType,keyType) ||
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			!GetStringFromConfig(ConfigSection(),KConfigAlgorithmUid,algorithmUid) ||
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			!GetStringFromConfig(ConfigSection(),KConfigCryptoMode,cryptoMode) ||
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			!GetStringFromConfig(ConfigSection(),KConfigOperationMode,operationMode) ||
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			!GetStringFromConfig(ConfigSection(),KConfigPaddingMode,paddingMode) ||
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			!GetStringFromConfig(ConfigSection(),KConfigInvalidOperationMode,invalidOperationMode) ||
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			!GetStringFromConfig(ConfigSection(),KConfigInvalidPaddingMode,invalidPaddingMode))
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			{
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			ERR_PRINTF1(_L("** .INI Error: Symmetric Cipher Arguments Not Located **"));
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			SetTestStepResult(EFail);
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			}
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		else
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			{						
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			//Convert encryption key to an 8 Bit Descriptor
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			HBufC8* keyStr = HBufC8::NewLC(encryptKey.Length());
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			TPtr8 keyStrPtr = keyStr->Des();
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			keyStrPtr.Copy(encryptKey);
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			//Create an new CryptoParams object to encapsulate the key type and secret key string
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			CCryptoParams* keyParams = CCryptoParams::NewL();
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			CleanupStack::PushL(keyParams);
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			keyParams->AddL(*keyStr,keyType);
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			//Create Key Object
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			TKeyProperty keyProperty;
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			CKey* key=CKey::NewL(keyProperty,*keyParams);
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			CleanupStack::PushL(key);
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			CSymmetricCipher* symmetricCipherImpl = NULL;	
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			TRAPD_LOG(err,CSymmetricCipherFactory::CreateSymmetricCipherL(symmetricCipherImpl,
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																algorithmUid,
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																*key,
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																cryptoMode,
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																operationMode,
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																paddingMode,
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																NULL)); 
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			if(symmetricCipherImpl && (err == KErrNone))
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				{
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				CleanupStack::PushL(symmetricCipherImpl);
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				INFO_PRINTF1(_L("** Successfully Loaded Symmetric Cipher Object **"));
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				//Define a pointer of type TCharacteristics in order to store the symmetric cipher
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				//encryption object's characterisctics	
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				const TCharacteristics* chars(NULL);
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				//Retrieve the characteristics for the symmetric cipher implementation object
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				TRAP_LOG(err, symmetricCipherImpl->GetCharacteristicsL(chars));
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				//Static cast the characteristics to type TSymmetricCipherCharacteristics
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				const TSymmetricCipherCharacteristics* symmetricChars = static_cast<const TSymmetricCipherCharacteristics*>(chars);
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				//Retrieve all the Common characteristics that are required for all test cases
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				TVariantPtrC exInterfaceUid;
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				TVariantPtrC exAlgorithmUid;
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				TVariantPtrC exImplementationUid;
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				TVariantPtrC exCreatorName;
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				TBool exFIPSApproved;
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				TBool exHardwareSupported;
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				TInt exMaxConcurrencySupported;
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				TVariantPtrC exAlgorithmName;
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				TInt exLatency;
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				TInt exThroughput;
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				//Retrieve all the Symmetric Cipher characteristics that are required for all test cases
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				TInt exSymmetricMaxKeyLength;
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				TInt exSymmetricBlockSize;
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				TVariantPtrC exSymmetricPaddingModes;
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				TInt exSymmetricPaddingModeNum;
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				TVariantPtrC exSymmetricOperationModes;
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				TInt exSymmetricOperationModeNum;
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				TInt exSymmetricKeySupportMode;
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				if(!GetStringFromConfig(ConfigSection(),KConfigExInterfaceUid,exInterfaceUid) ||
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					!GetStringFromConfig(ConfigSection(),KConfigExAlgorithmUid,exAlgorithmUid) ||
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					!GetStringFromConfig(ConfigSection(),KConfigExImplementationUid,exImplementationUid) ||
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					!GetStringFromConfig(ConfigSection(),KConfigExCreatorName,exCreatorName) ||
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					!GetBoolFromConfig(ConfigSection(),KConfigExFIPSApproved,exFIPSApproved) ||
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					!GetBoolFromConfig(ConfigSection(),KConfigExHardwareSupport,exHardwareSupported) ||
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					!GetIntFromConfig(ConfigSection(),KConfigExMaxConcurrency,exMaxConcurrencySupported) ||
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					!GetStringFromConfig(ConfigSection(),KConfigExAlgorithmName,exAlgorithmName) ||
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					!GetIntFromConfig(ConfigSection(),KConfigExLatency,exLatency) ||
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					!GetIntFromConfig(ConfigSection(),KConfigExThroughput,exThroughput) ||
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					!GetIntFromConfig(ConfigSection(),KConfigExMaxKeyLength,exSymmetricMaxKeyLength) ||
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					!GetIntFromConfig(ConfigSection(),KConfigExBlockSize,exSymmetricBlockSize) ||
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					!GetStringFromConfig(ConfigSection(),KConfigExPaddingModes,exSymmetricPaddingModes) ||
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					!GetIntFromConfig(ConfigSection(),KConfigExPaddingModeNum,exSymmetricPaddingModeNum) ||
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					!GetStringFromConfig(ConfigSection(),KConfigExOperationModes,exSymmetricOperationModes) ||
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					!GetIntFromConfig(ConfigSection(),KConfigExOperationModeNum,exSymmetricOperationModeNum) ||
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					!GetIntFromConfig(ConfigSection(),KConfigExKeySupportMode,exSymmetricKeySupportMode))
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					{
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					ERR_PRINTF1(_L("** .INI Error: Expected Symmetric Cipher/Common Characteristics Not Located **"));
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					SetTestStepResult(EFail);
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					}
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				else
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					{
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					INFO_PRINTF1(_L("** Checking Symmetric Cipher/Common Characteristics.... **"));
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					CPluginCharsChecker* pluginCheck = CPluginCharsChecker::NewLC();
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					//Retrieve the Common Characteristics from TSymmetricCipherCharacteristics 
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					const TCommonCharacteristics* symCommonChars = &symmetricChars->cmn;
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					TPtrC errorMessage;
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					//Perform Symmetric Cipher/Common Characteristic Checks
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					if(pluginCheck->checkCommonCharacteristics(symCommonChars,
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																exInterfaceUid,
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																exAlgorithmUid,
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																exImplementationUid,
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																exCreatorName,
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																exFIPSApproved,
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																exHardwareSupported,
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																exMaxConcurrencySupported,
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																exAlgorithmName,
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																exLatency,
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																exThroughput,
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																errorMessage) &&
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					pluginCheck->checkSymmetricCharacteristics(symmetricChars,
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																exSymmetricMaxKeyLength,
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																exSymmetricBlockSize,
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																exSymmetricPaddingModes,
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																exSymmetricPaddingModeNum,
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																exSymmetricOperationModes,
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																exSymmetricOperationModeNum,
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																exSymmetricKeySupportMode,
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																errorMessage))
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						{
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						INFO_PRINTF1(_L("Symmetric Cipher/Common characteristics successfully match expected values...."));
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						if(symmetricChars->IsOperationModeSupported(operationMode) && !symmetricChars->IsOperationModeSupported(invalidOperationMode))
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							{
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							INFO_PRINTF1(_L("Successful Operation Mode Supported Tests...."));
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							if(symmetricChars->IsPaddingModeSupported(paddingMode) && !symmetricChars->IsPaddingModeSupported(invalidPaddingMode))
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								{
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								INFO_PRINTF1(_L("Successful Padding Mode Supported Tests...."));
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								INFO_PRINTF1(_L("** PASS: Symmetric Cipher/Common Characteristics Tests Successful **"));
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								SetTestStepResult(EPass);
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								}
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							else
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								{
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								ERR_PRINTF1(_L("** FAIL: Unexpected 'Operation' Mode Supported Results"));
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								}	
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							}
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						else
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							{
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							ERR_PRINTF1(_L("** FAIL: Unexpected 'Padding' Mode Supported Results"));	
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							}
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						}
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					else
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						{
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						ERR_PRINTF2(_L("** FAIL: Characteristic Mismatch - %S **"),&errorMessage);	
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						}
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					CleanupStack::PopAndDestroy(pluginCheck);
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					}
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				CleanupStack::PopAndDestroy(symmetricCipherImpl);
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				}
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			else
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				{
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				ERR_PRINTF2(_L("*** FAIL: Failed to Create Symmetric Cipher Object - %d ***"), err);	
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				}
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			CleanupStack::PopAndDestroy(3,keyStr);
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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 CPluginCharsSymmetricCipherStep::doTestStepPostambleL()
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	{
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	return TestStepResult();
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	}