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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 "plugincharsextendedstep.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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#include <cryptospi/plugincharacteristics.h>
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using namespace CryptoSpi;
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CPluginCharsExtendedStep::~CPluginCharsExtendedStep()
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{
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}
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CPluginCharsExtendedStep::CPluginCharsExtendedStep()
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{
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SetTestStepName(KPluginCharsExtendedStep);
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}
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TVerdict CPluginCharsExtendedStep::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 CPluginCharsExtendedStep::doTestStepL()
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{
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INFO_PRINTF1(_L("Plugin Characteristics - Extended 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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//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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{
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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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//Retrieve all the Symmetric Cipher characteristics that are required for all test cases
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TInt exExtendedTestChar1;
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TInt exExtendedTestChar2;
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TPtrC exExtendedTestChar3;
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TVariantPtrC exExtendedConcurrency;
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TBool exExtendedExclusiveUse;
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if(!GetIntFromConfig(ConfigSection(),KConfigExExtendTestChar1,exExtendedTestChar1) ||
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!GetIntFromConfig(ConfigSection(),KConfigExExtendTestChar2,exExtendedTestChar2) ||
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!GetStringFromConfig(ConfigSection(),KConfigExExtendTestChar3,exExtendedTestChar3) ||
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!GetStringFromConfig(ConfigSection(),KConfigExExtendConcurrency,exExtendedConcurrency) ||
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!GetBoolFromConfig(ConfigSection(),KConfigExExtendExclusiveUse,exExtendedExclusiveUse))
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{
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ERR_PRINTF1(_L("** .INI Error: Expected Symmetric Cipher Extended 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 Extended Characteristics.... **"));
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//******************EXTENDED CHARACTERISITICS****************************
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//Retrieve Characteristics via CExtendedCharacteristics Object
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const CExtendedCharacteristics* extendedChars = NULL;
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TRAP_LOG(err,extendedChars = symmetricCipherImpl->GetExtendedCharacteristicsL());
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//Retrieve Charcteristics via the ListExtendedCharacteristics() of the CExtendedCharacteristics Object
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const CCryptoParams* extendedCryptoParams = NULL;
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TRAP_LOG(err,extendedCryptoParams = extendedChars->ListExtendedCharacteristics());
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//***********************************************************************
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//Convert expected string atrributes an 8 Bit Descriptor
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HBufC8* exTestChar3Str = HBufC8::NewLC(exExtendedTestChar3.Length());
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TPtr8 tmpPtr = exTestChar3Str->Des();
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tmpPtr.Copy(exExtendedTestChar3);
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//Checks BOTH the returned Extended Characteristic values from the CExtendedCharacteristics 'GET' Methods and
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//the CCryptoParams List returned from the ListExtendedCharacteristics() method
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if((!(extendedChars->GetTIntCharacteristicL(KExtendCharType1Uid) == exExtendedTestChar1))
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&& (!(extendedCryptoParams->GetTIntL(KExtendCharType1Uid) == exExtendedTestChar1)))
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{
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ERR_PRINTF1(_L("** FAIL: Extended Characteristic 1 Mismatch **"));
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User::Leave(KErrNotFound);
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}
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if((!(extendedChars->GetTIntCharacteristicL(KExtendCharType2Uid) == exExtendedTestChar2))
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&& (!(extendedCryptoParams->GetTIntL(KExtendCharType2Uid) == exExtendedTestChar2)))
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{
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ERR_PRINTF1(_L("** FAIL: Extended Characteristic 2 Mismatch **"));
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User::Leave(KErrNotFound);
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}
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if((!(extendedChars->GetTDesC8CharacteristicL(KExtendCharType3Uid) == *exTestChar3Str))
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&& (!(extendedCryptoParams->GetTDesC8L(KExtendCharType3Uid) == *exTestChar3Str)))
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{
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ERR_PRINTF1(_L("** FAIL: Extended Characteristic 3 Mismatch **"));
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User::Leave(KErrNotFound);
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}
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if((!(extendedChars->GetTIntCharacteristicL(KConcurrencyTypeUid) == exExtendedConcurrency))
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&& (!(extendedCryptoParams->GetTIntL(KConcurrencyTypeUid) == exExtendedConcurrency)))
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{
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ERR_PRINTF1(_L("** FAIL: 'Concurreny' Extended Characteristic Mismatch **"));
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User::Leave(KErrNotFound);
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}
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if((!(extendedChars->GetTIntCharacteristicL(KExclusiveUseTypeUid) == exExtendedExclusiveUse))
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&& (!(extendedCryptoParams->GetTIntL(KExclusiveUseTypeUid) == exExtendedExclusiveUse)))
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{
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ERR_PRINTF1(_L("** FAIL: 'Exclusive Use' Extended Characteristic Mismatch **"));
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User::Leave(KErrNotFound);
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}
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INFO_PRINTF1(_L("** PASS: Extended Characteristics Successfully Match **"));
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SetTestStepResult(EPass);
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CleanupStack::PopAndDestroy(exTestChar3Str);
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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 CPluginCharsExtendedStep::doTestStepPostambleL()
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{
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return TestStepResult();
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}
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