os/security/crypto/weakcryptospi/test/tcryptospi/src/verifierpositiveobjectloadstep.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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* 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 "verifierpositiveobjectloadstep.h"
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#include <cryptospi/keys.h>
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#include <cryptospi/keypair.h>
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#include <cryptospi/cryptosignatureapi.h>
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#include <cryptospi/cryptokeypairgeneratorapi.h>
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using namespace CryptoSpi;
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CVerifierPositiveObjectLoadStep::~CVerifierPositiveObjectLoadStep()
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	{
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	}
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CVerifierPositiveObjectLoadStep::CVerifierPositiveObjectLoadStep()
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	{
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	SetTestStepName(KVerifierPositiveObjectLoadStep);
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	}
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TVerdict CVerifierPositiveObjectLoadStep::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 CVerifierPositiveObjectLoadStep::doTestStepL()
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	{
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	INFO_PRINTF1(_L("*** Verifier - Positive Object Load ***"));
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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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		TVariantPtrC testVariant;
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		TVariantPtrC keyVariant;
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		if(	!GetStringFromConfig(ConfigSection(),KConfigExchangeKey, keyVariant))
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			{
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			// Leave if there's any error.
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			User::Leave(KErrNotFound);
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			}
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		else
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			{
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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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			//Set the Key Parameters
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			keyParams->AddL(KKeyExponent, KRsaKeyParameterEUid);
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			keyParams->AddL(KRsaPrivateKeyStandard, KRsaKeyTypeUid);
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			// Create a Key Pair Generator implementation
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			INFO_PRINTF1(_L("Creating Key Pair Generator...")); 
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			CKeyPairGenerator * keypairImpl = NULL;
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			TRAPD_LOG(err,CKeyPairGeneratorFactory::CreateKeyPairGeneratorL(keypairImpl, 
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															KRSAKeyPairGeneratorUid, 
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															keyParams));
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			CleanupStack::PushL(keypairImpl);												
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			// Generate a Key Pair 
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			INFO_PRINTF1(_L("Generating Key Pair..."));
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			CKeyPair* keyPair = NULL;							
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			TRAP_LOG(err,keypairImpl->GenerateKeyPairL(1024, 
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												*keyParams, 
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												keyPair));
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			CleanupStack::PushL(keyPair);
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			// Creating Verifier 1 with necessary values from the ini file	
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			INFO_PRINTF1(_L("Constructing Verifier 1 (No Padding)..."));
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			CVerifier * impl1 = NULL;	
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		    TRAP_LOG(err,CSignatureFactory::CreateVerifierL
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		    							   (impl1,
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										   KRsaVerifierUid,
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										   keyPair->PrivateKey(),
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										   KPaddingModeNoneUid,
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										   keyParams));
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			CleanupStack::PushL(impl1);							   
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			// Creating Verifier 2 with the necessary values from the ini file	
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			INFO_PRINTF1(_L("Constructing Verifier 1 (No Padding)..."));
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			CVerifier * impl2 = NULL;	
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		    TRAP_LOG(err,CSignatureFactory::CreateVerifierL
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		    							   (impl2,
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										   KRsaVerifierUid,
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										   keyPair->PrivateKey(),
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										   KPaddingModePkcs1_v1_5_SignatureUid,
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										   keyParams));
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			CleanupStack::PushL(impl2);
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			if((impl1) && (impl2) && (err == KErrNone))
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				{
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				// This is a basic test for load positivity
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				// from the Factory
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				INFO_PRINTF1(_L("PASS: Verifier - Positive Object Load"));
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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: Verifier Object Construction Failure - %d"), err);
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				SetTestStepResult(EFail);
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				}
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			CleanupStack::PopAndDestroy(impl2);	
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			CleanupStack::PopAndDestroy(impl1);
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			CleanupStack::PopAndDestroy(keyPair);
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			CleanupStack::PopAndDestroy(keypairImpl);
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			CleanupStack::PopAndDestroy(keyParams);
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			}
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		INFO_PRINTF2(_L("HEAP CELLS: %d"), User::CountAllocCells());
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		}
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	  return TestStepResult();
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	}
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TVerdict CVerifierPositiveObjectLoadStep::doTestStepPostambleL()
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	{
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	return TestStepResult();
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	}