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// Copyright (c) 2004-2009 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 "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 Authentication_TEF0Step.cpp
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*/
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#include "authentication_TEF0Step.h"
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#include "Te_authentication_TEFSuiteDefs.h"
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#include <cauthentication.h>
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CAuthentication_TEF0Step::~CAuthentication_TEF0Step()
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/**
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* Destructor
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*/
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{
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}
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CAuthentication_TEF0Step::CAuthentication_TEF0Step()
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/**
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* Constructor
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*/
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{
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// **MUST** call SetTestStepName in the constructor as the controlling
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// framework uses the test step name immediately following construction to set
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// up the step's unique logging ID.
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SetTestStepName(KAuthentication_TEF0Step);
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}
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TVerdict CAuthentication_TEF0Step::doTestStepPreambleL()
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/**
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* @return - TVerdict code
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* Override of base class virtual
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*/
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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 CAuthentication_TEF0Step::doTestStepL()
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/**
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* @return - TVerdict code
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* Override of base class pure virtual
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* Our implementation only gets called if the base class doTestStepPreambleL() did
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* not leave. That being the case, the current test result value will be EPass.
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*/
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{
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__UHEAP_MARK;
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CAuthentication* auth;
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CUri8* uri;
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TPtrC8 name;
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TPtrC8 pwd;
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// create auth obj from name and pwd
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auth = CAuthentication::NewL(KUser1, KPwd1);
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CleanupStack::PushL(auth);
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// *********** test default parameters *********** //
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// get name and compare to expected
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name.Set(auth->Name());
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if(name.Compare(KUser1) != 0)
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{
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INFO_PRINTF1(KNameNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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// get pwd and compare to expected
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pwd.Set(auth->Password());
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if(pwd.Compare(KPwd1) != 0)
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{
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INFO_PRINTF1(KPasswordNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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// compare default method to expected
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if(auth->Method() != CAuthentication::EDigest)
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{
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INFO_PRINTF1(KMethodNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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// *********** test changing parameters *********** //
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// change and check new name
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auth->SetNameL(KUser2);
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name.Set(auth->Name());
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if(name.Compare(KUser2) != 0)
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{
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INFO_PRINTF1(KNameNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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// change and check new pwd
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auth->SetPasswordL(KPwd2);
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pwd.Set(auth->Password());
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if(pwd.Compare(KPwd2) != 0)
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{
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INFO_PRINTF1(KPasswordNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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// change and check new method
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auth->SetMethod(CAuthentication::EBasic);
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if(auth->Method() != CAuthentication::EBasic)
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{
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INFO_PRINTF1(KMethodNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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CleanupStack::PopAndDestroy(auth);
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// *********** test default parameters set using TUriC *********** //
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TUriParser8 uriParser;
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uriParser.Parse(KUriUserInfoComplete);
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uri = CUri8::NewLC(uriParser);
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TUriC8 tUri = uri->Uri();
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auth = CAuthentication::NewL(tUri);
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CleanupStack::PushL(auth);
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name.Set(auth->Name());
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if(name.Compare(KUser1) != 0)
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{
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INFO_PRINTF1(KNameNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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// get pwd and compare to expected
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pwd.Set(auth->Password());
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if(pwd.Compare(KPwd1) != 0)
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{
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INFO_PRINTF1(KPasswordNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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// compare default method to expected
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if(auth->Method() != CAuthentication::EDigest)
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{
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INFO_PRINTF1(KMethodNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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CleanupStack::PopAndDestroy(2, uri);
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// *********** test with incomplete or missing User Info *********** //
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TUriParser8 incompleteUriParser;
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CUri8* incompleteUri;
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// *** test incomplete uri type 1
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incompleteUriParser.Parse(KUriUserInfoIncomplete1);
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incompleteUri = CUri8::NewLC(incompleteUriParser);
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TUriC8 tIncompleteUri = incompleteUri->Uri();
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// create from uri type 1
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auth = CAuthentication::NewL(tIncompleteUri);
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CleanupStack::PushL(auth);
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// check has user and no pwd
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name.Set(auth->Name());
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if(name.Compare(KUser1) != 0)
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{
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INFO_PRINTF1(KNameNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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pwd.Set(auth->Password());
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if(pwd.Compare(KNullDesC8) != 0)
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{
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INFO_PRINTF1(KPasswordNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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CleanupStack::PopAndDestroy(2, incompleteUri);
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// *** test incomplete uri type 2
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incompleteUriParser.Parse(KUriUserInfoIncomplete2);
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incompleteUri = CUri8::NewLC(incompleteUriParser);
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TUriC8 tIncompleteUri2 = incompleteUri->Uri();
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// create from uri type 2
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auth = CAuthentication::NewL(tIncompleteUri2);
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CleanupStack::PushL(auth);
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// check has user and no pwd
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name.Set(auth->Name());
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if(name.Compare(KUser1) != 0)
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{
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INFO_PRINTF1(KNameNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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pwd.Set(auth->Password());
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if(pwd.Compare(KNullDesC8) != 0)
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{
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INFO_PRINTF1(KPasswordNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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CleanupStack::PopAndDestroy(2, incompleteUri);
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// *** test incomplete uri type 3
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incompleteUriParser.Parse(KUriUserInfoIncomplete3);
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incompleteUri = CUri8::NewLC(incompleteUriParser);
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TUriC8 tIncompleteUri3 = incompleteUri->Uri();
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// create from uri type 3
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auth = CAuthentication::NewL(tIncompleteUri3);
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CleanupStack::PushL(auth);
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// check no user name but has pwd
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name.Set(auth->Name());
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if(name.Compare(KNullDesC8) != 0)
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{
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INFO_PRINTF1(KNameNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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pwd.Set(auth->Password());
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if(pwd.Compare(KPwd1) != 0)
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{
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INFO_PRINTF1(KPasswordNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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CleanupStack::PopAndDestroy(2, incompleteUri);
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// *** test incomplete uri type 4
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incompleteUriParser.Parse(KUriUserInfoIncomplete4);
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incompleteUri = CUri8::NewLC(incompleteUriParser);
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TUriC8 tIncompleteUri4 = incompleteUri->Uri();
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// create from uri type 4
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auth = CAuthentication::NewL(tIncompleteUri4);
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CleanupStack::PushL(auth);
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// check there is neither user nor pwd
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name.Set(auth->Name());
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if(name.Compare(KNullDesC8) != 0)
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{
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INFO_PRINTF1(KNameNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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pwd.Set(auth->Password());
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if(pwd.Compare(KNullDesC8) != 0)
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{
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INFO_PRINTF1(KPasswordNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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CleanupStack::PopAndDestroy(2, incompleteUri);
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// *** test incomplete uri type 5
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incompleteUriParser.Parse(KUriUserInfoIncomplete4);
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incompleteUri = CUri8::NewLC(incompleteUriParser);
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TUriC8 tIncompleteUri5 = incompleteUri->Uri();
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// create from uri type 5
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auth = CAuthentication::NewL(tIncompleteUri5);
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CleanupStack::PushL(auth);
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// check there is neither user nor pwd
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name.Set(auth->Name());
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if(name.Compare(KNullDesC8) != 0)
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{
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INFO_PRINTF1(KNameNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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pwd.Set(auth->Password());
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if(pwd.Compare(KNullDesC8) != 0)
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{
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INFO_PRINTF1(KPasswordNotRetreivedProperly);
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SetTestStepResult(EFail);
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}
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CleanupStack::PopAndDestroy(2, incompleteUri);
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// *** test no user info. Must Leave with KErrNotFound.
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incompleteUriParser.Parse(KUriNoUserInfo);
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incompleteUri = CUri8::NewLC(incompleteUriParser);
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TUriC8 tNoUserInfo = incompleteUri->Uri();
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// create from uri with no user info
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TRAPD(err, auth = CAuthentication::NewL(tNoUserInfo));
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if(err != KErrNotFound)
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{
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INFO_PRINTF1(KFailedToLeaveWithKErrNotFound);
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SetTestStepResult(EFail);
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delete auth;
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}
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CleanupStack::PopAndDestroy(incompleteUri);
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__UHEAP_MARKEND;
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return TestStepResult();
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}
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TVerdict CAuthentication_TEF0Step::doTestStepPostambleL()
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/**
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* @return - TVerdict code
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* Override of base class virtual
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*/
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{
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return TestStepResult();
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}
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