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// Copyright (c) 2007-2009 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 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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// @internalComponent
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// 'A' connector removal test
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//
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//
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#include <e32std.h>
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#include <e32std_private.h>
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#include <u32std.h> // unicode builds
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#include <e32base.h>
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#include <e32base_private.h>
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#include <e32Test.h> // RTest headder
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#include "testcaseroot.h"
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#include "testcasefactory.h"
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#include "testcase0460.h"
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// the name below is used to add a pointer to our construction method to a pointer MAP in
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// the class factory
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_LIT(KTestCaseId,"PBASE-USB_OTGDI-0460");
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const TTestCaseFactoryReceipt<CTestCase0460> CTestCase0460::iFactoryReceipt(KTestCaseId);
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CTestCase0460* CTestCase0460::NewL(TBool aHost)
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{
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LOG_FUNC
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CTestCase0460* self = new (ELeave) CTestCase0460(aHost);
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CleanupStack::PushL(self);
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self->ConstructL();
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CleanupStack::Pop(self);
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return self;
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}
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CTestCase0460::CTestCase0460(TBool aHost)
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: CTestCaseRoot(KTestCaseId, aHost)
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{
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LOG_FUNC
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}
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/**
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ConstructL
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*/
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void CTestCase0460::ConstructL()
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{
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LOG_FUNC
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BaseConstructL();
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}
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CTestCase0460::~CTestCase0460()
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{
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LOG_FUNC
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Cancel();
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}
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void CTestCase0460::ExecuteTestCaseL()
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{
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LOG_FUNC
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iCaseStep = EPreconditions;
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CActiveScheduler::Add(this);
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SelfComplete();
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}
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void CTestCase0460::DescribePreconditions()
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{
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test.Printf(_L("Insert 'A' connector beforehand.\n"));
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}
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void CTestCase0460::DoCancel()
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{
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LOG_FUNC
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// cancel our timer
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iTimer.Cancel();
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}
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// handle event completion
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void CTestCase0460::RunStepL()
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{
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LOG_FUNC
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// Obtain the completion code for this CActive obj.
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TInt completionCode(iStatus.Int());
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TBuf<MAX_DSTRLEN> aDescription;
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switch(iCaseStep)
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{
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case EPreconditions:
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iCaseStep = ELoadLdd;
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if (iAutomated)
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{
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iCaseStep = ELoadLdd;
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SelfComplete();
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break;
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}
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// prompt to remove connector
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test.Printf(KRemoveAConnectorPrompt);
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test.Printf(KPressAnyKeyToContinue);
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RequestCharacter();
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break;
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case ELoadLdd:
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if (!StepLoadLDD())
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{
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break;
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}
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iCaseStep = ERegisterForEvents;
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iDequeAttempts = 0;
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// prompt to insert connector
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test.Printf(KInsertAConnectorPrompt);
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test.Printf(KPressAnyKeyToContinue);
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RequestCharacter();
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break;
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// wait on ID_PIN
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case ERegisterForEvents:
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if (iDequeAttempts > KOperationRetriesMax)
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{
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return (TestFailed(KErrCorrupt, _L("<Error> too many irrelevant/incorrect events")));
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}
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iCaseStep = ETestStateA;
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test.Printf(_L("Waiting for OTG Event\n"));
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otgQueueOtgEventRequest( iOTGEvent, iStatus);
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SetActive();
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break;
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case EDriveID_PIN:
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// API call for simulating ID_PIN is not implemented, so the user plugs in the cable,
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// then test for A plug
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SetActive();
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break;
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case EWait5:
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case ETestStateA:
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OtgEventString(iOTGEvent, aDescription);
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test.Printf(_L("Received event %d '%S' status(%d)"), iOTGEvent, &aDescription, completionCode);
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if (RUsbOtgDriver::EEventAPlugInserted == iOTGEvent)
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{
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iCaseStep = EUnloadLdd;
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}
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else
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{
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// wrong event in the Q already, keep at it
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iCaseStep = ERegisterForEvents;
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iDequeAttempts++;
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}
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SelfComplete();
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break;
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case EUnloadLdd:
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case ELastStep:
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if (EFalse == StepUnloadLDD())
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return TestFailed(KErrAbort,_L("unload Ldd failure"));
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return TestPassed();
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default:
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test.Printf(_L("<Error> unknown test step"));
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Cancel();
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return (TestFailed(KErrCorrupt, _L("<Error> unknown test step")));
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}
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}
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