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// Copyright (c) 2002-2009 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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// This file contains the test steps for Unit Test Suite 11 : TestStep.cpp
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//
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//
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// EPOC includes
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#include <e32base.h>
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// Test system includes
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#include <testframework.h>
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// Specific includes for this test suite
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#include "TSU_MmTsthStep11.h"
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#include "TSU_MmTsthSuite11.h"
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// Specific includes for these test steps
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#include "TSU_MmTsth11.h"
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#include "TestStepVirtualStub.h"
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#include "TestSuiteVirtualStub.h"
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// --------------------------------------------
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// Unit Test Suite 11 : TestStep.cpp
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// Depends on : none
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// Requires : subclass implementing pure virtual DoTestStepL()
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// Tests :-
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// RTestStep() constructor (thru stub)
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// test accessors
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// DoTestStepL
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// DoTestStepPreamble
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// DoTestStepPostamble
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// Load / unload config
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// ---------------------
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// RTestMmTsthU1101
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RTestMmTsthU1101* RTestMmTsthU1101::NewL()
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{
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RTestMmTsthU1101* self = new(ELeave) RTestMmTsthU1101;
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return self;
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}
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// Each test step initialises its own name.
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RTestMmTsthU1101::RTestMmTsthU1101()
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{
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iTestStepName = _L("MM-TSTH-U-1101");
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}
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// preamble
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TVerdict RTestMmTsthU1101::OpenL()
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{
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// stub - purpose is that for this test we do not run the parent preamble
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// which initialises iStepStub
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return iTestStepResult = EPass;
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}
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// postamble
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void RTestMmTsthU1101::Close()
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{
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}
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// do the test step
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TVerdict RTestMmTsthU1101::DoTestStepL()
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{
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INFO_PRINTF1(_L("Unit test for TestStep - construct"));
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TVerdict currentVerdict = EPass;
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RTestStepVirtualStub* theStepStub = NULL;
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TRAPD(err, theStepStub = RTestStepVirtualStub::NewL());
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if(err != KErrNone)
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{
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ERR_PRINTF1(_L("RTestStepVirtualStub::NewL() left"));
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return iTestStepResult = EFail;
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}
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const TPtrC& theName = theStepStub->StepName();
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if(theName != KTestStepVirtualStubName)
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{
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ERR_PRINTF1(_L("RTestStepVirtualStub did not initialise correctly"));
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delete theStepStub;
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return iTestStepResult = EFail;
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}
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delete theStepStub;
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return iTestStepResult = currentVerdict; // should be EPass if we've got here
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}
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// ------------------------
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// RTestMmTsthU1102
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RTestMmTsthU1102* RTestMmTsthU1102::NewL()
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{
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RTestMmTsthU1102* self = new(ELeave) RTestMmTsthU1102;
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return self;
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}
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// Each test step initialises its own name.
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RTestMmTsthU1102::RTestMmTsthU1102()
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{
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iTestStepName = _L("MM-TSTH-U-1102");
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}
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// do the test step
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TVerdict RTestMmTsthU1102::DoTestStepL()
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{
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// RTestStepVirtualStub contains extra methods by which we can verify our accessors
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INFO_PRINTF1(_L("Unit test for TestStep - accessors"));
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TVerdict currentVerdict = EPass;
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// test accessor to set name - not part of RTestStep
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TBufC<KMaxLenTestStepName> KTestStepName = _L("TestStepName");
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iStepStub->TestSetStepName(KTestStepName);
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const TPtrC& theName = iStepStub->StepName();
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if(theName != KTestStepName)
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{
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ERR_PRINTF1(_L("RTestStep::StepName() failed"));
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return iTestStepResult = EFail;
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}
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TVerdict theResult = EInconclusive;
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iStepStub->SetResult(theResult);
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// test accessor to get result - not part of RTestStep
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if(theResult != iStepStub->TestGetResult())
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{
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ERR_PRINTF1(_L("RTestStep::SetResult() failed"));
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return iTestStepResult = EFail;
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}
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CTestSuiteVirtualStub* theSuite = new (ELeave) CTestSuiteVirtualStub;
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CleanupStack::PushL(theSuite);
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theSuite->ConstructL();
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iStepStub->SetSuite(theSuite);
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// test accessor to get suite - not part of RTestStep
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if(theSuite != iStepStub->TestGetSuite())
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{
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ERR_PRINTF1(_L("RTestStep::SetSuite() failed"));
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CleanupStack::PopAndDestroy(); // theSuite
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return iTestStepResult = EFail;
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}
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// cleanup
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CleanupStack::PopAndDestroy(); // theSuite
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return iTestStepResult = currentVerdict; // should be EPass if we've got here
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}
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// ---------------------
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// RTestMmTsthU1103
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RTestMmTsthU1103* RTestMmTsthU1103::NewL()
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{
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RTestMmTsthU1103* self = new(ELeave) RTestMmTsthU1103;
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return self;
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}
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// Each test step initialises its own name.
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RTestMmTsthU1103::RTestMmTsthU1103()
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{
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iTestStepName = _L("MM-TSTH-U-1103");
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}
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// do the test step.
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TVerdict RTestMmTsthU1103::DoTestStepL()
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{
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// RTestStepVirtualStub contains extra methods by which we can verify our accessors
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INFO_PRINTF1(_L("Unit test for TestStep - preamble"));
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TVerdict currentVerdict = EPass;
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iStepStub->OpenL();
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if(!iStepStub->PreambleRun())
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{
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ERR_PRINTF1(_L("RTestStep::OpenL() failed"));
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return iTestStepResult = EFail;
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}
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return iTestStepResult = currentVerdict; // should be EPass if we've got here
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}
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// ---------------------
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// RTestMmTsthU1104
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RTestMmTsthU1104* RTestMmTsthU1104::NewL()
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{
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RTestMmTsthU1104* self = new(ELeave) RTestMmTsthU1104;
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return self;
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}
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// Each test step initialises its own name.
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RTestMmTsthU1104::RTestMmTsthU1104()
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{
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iTestStepName = _L("MM-TSTH-U-1104");
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}
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// do the test step
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TVerdict RTestMmTsthU1104::DoTestStepL()
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{
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// RTestStepVirtualStub contains extra methods by which we can verify our accessors
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INFO_PRINTF1(_L("Unit test for TestStep - postamble"));
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TVerdict currentVerdict = EPass;
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iStepStub->Close();
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if(!iStepStub->PostambleRun())
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{
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ERR_PRINTF1(_L("RTestStep::Close() failed"));
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return iTestStepResult = EFail;
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}
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return iTestStepResult = currentVerdict; // should be EPass if we've got here
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}
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// ---------------------
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// RTestMmTsthU1105
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RTestMmTsthU1105* RTestMmTsthU1105::NewL()
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{
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RTestMmTsthU1105* self = new(ELeave) RTestMmTsthU1105;
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return self;
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}
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// Each test step initialises its own name.
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RTestMmTsthU1105::RTestMmTsthU1105()
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{
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iTestStepName = _L("MM-TSTH-U-1105");
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}
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// do the test step
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TVerdict RTestMmTsthU1105::DoTestStepL()
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{
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// RTestStepVirtualStub contains extra methods by which we can verify our accessors
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INFO_PRINTF1(_L("Unit test for TestStep - step"));
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TVerdict currentVerdict = EPass;
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iStepStub->DoTestStepL();
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if(!iStepStub->StepRun())
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{
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ERR_PRINTF1(_L("RTestStep::DoTestStepL() failed"));
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return iTestStepResult = EFail;
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}
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return iTestStepResult = currentVerdict; // should be EPass if we've got here
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}
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// ------------------------
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// RTestMmTsthU1111
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RTestMmTsthU1111* RTestMmTsthU1111::NewL()
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{
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RTestMmTsthU1111* self = new(ELeave) RTestMmTsthU1111;
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return self;
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}
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// Each test step initialises its own name.
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RTestMmTsthU1111::RTestMmTsthU1111()
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{
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iTestStepName = _L("MM-TSTH-U-1111");
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}
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// do the test step
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TVerdict RTestMmTsthU1111::DoTestStepL()
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{
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const TInt KTestBufSize = 64;
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// RTestStepVirtualStub contains extra methods by which we can verify our accessors
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INFO_PRINTF1(_L("Unit test for TestStep - load config"));
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TVerdict currentVerdict = EPass;
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TBufC<KTestBufSize> KConfigName = _L("TSU_MMTSTH11_config.ini");
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iStepStub->LoadConfig(KConfigName);
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// we get no return saying that the file hasn't loaded -
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// therefore check something in the file we know is there : [SectionOne] keybool = true
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// because these functions are protected, we have to wrap them in iStepStub
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TBool aBoolResult;
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TBool returnValue = iStepStub->TestGetBoolFromConfig(_L("SectionOne"),_L("Keybool"), aBoolResult);
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if(!returnValue)
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{
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ERR_PRINTF1(_L("RTestStep::LoadConfig() failed"));
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iStepStub->UnloadConfig();
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return iTestStepResult = EFail;
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}
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iStepStub->UnloadConfig();
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return iTestStepResult = currentVerdict; // should be EPass if we've got here
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}
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// ------------------------
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