sl@0: // Copyright (c) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). sl@0: // All rights reserved. sl@0: // This component and the accompanying materials are made available sl@0: // under the terms of the License "Eclipse Public License v1.0" sl@0: // which accompanies this distribution, and is available sl@0: // at the URL "http://www.eclipse.org/legal/epl-v10.html". sl@0: // sl@0: // Initial Contributors: sl@0: // Nokia Corporation - initial contribution. sl@0: // sl@0: // Contributors: sl@0: // sl@0: // Description: sl@0: // @internalComponent sl@0: // 'A' connector detection sl@0: // sl@0: // sl@0: sl@0: #include sl@0: #include sl@0: #include // unicode builds sl@0: #include sl@0: #include sl@0: #include // RTest headder sl@0: #include "testcaseroot.h" sl@0: #include "testcasefactory.h" sl@0: #include "testcase0459.h" sl@0: sl@0: sl@0: sl@0: // the name below is used to add a pointer to our construction method to a pointer MAP in sl@0: // the class factory sl@0: _LIT(KTestCaseId,"PBASE-USB_OTGDI-0459"); sl@0: const TTestCaseFactoryReceipt CTestCase0459::iFactoryReceipt(KTestCaseId); sl@0: sl@0: CTestCase0459* CTestCase0459::NewL(TBool aHost) sl@0: { sl@0: LOG_FUNC sl@0: CTestCase0459* self = new (ELeave) CTestCase0459(aHost); sl@0: CleanupStack::PushL(self); sl@0: self->ConstructL(); sl@0: CleanupStack::Pop(self); sl@0: return self; sl@0: } sl@0: sl@0: sl@0: CTestCase0459::CTestCase0459(TBool aHost) sl@0: : CTestCaseRoot(KTestCaseId, aHost) sl@0: { sl@0: LOG_FUNC sl@0: sl@0: } sl@0: sl@0: sl@0: /** sl@0: ConstructL sl@0: */ sl@0: void CTestCase0459::ConstructL() sl@0: { sl@0: LOG_FUNC sl@0: sl@0: BaseConstructL(); sl@0: } sl@0: sl@0: sl@0: CTestCase0459::~CTestCase0459() sl@0: { sl@0: LOG_FUNC sl@0: sl@0: Cancel(); sl@0: } sl@0: sl@0: sl@0: void CTestCase0459::ExecuteTestCaseL() sl@0: { sl@0: LOG_FUNC sl@0: iCaseStep = EPreconditions; sl@0: sl@0: CActiveScheduler::Add(this); sl@0: SelfComplete(); sl@0: sl@0: } sl@0: sl@0: sl@0: void CTestCase0459::DescribePreconditions() sl@0: { sl@0: test.Printf(_L("Remove 'A' connector beforehand.\n")); sl@0: } sl@0: sl@0: sl@0: void CTestCase0459::DoCancel() sl@0: { sl@0: LOG_FUNC sl@0: sl@0: // cancel our timer sl@0: iTimer.Cancel(); sl@0: } sl@0: sl@0: sl@0: // handle event completion sl@0: void CTestCase0459::RunStepL() sl@0: { sl@0: LOG_FUNC sl@0: // Obtain the completion code for this CActive obj. sl@0: TInt completionCode(iStatus.Int()); sl@0: TBuf aDescription; sl@0: sl@0: switch(iCaseStep) sl@0: { sl@0: case EPreconditions: sl@0: iCaseStep = ELoadLdd; sl@0: if (iAutomated) sl@0: { sl@0: iCaseStep = ELoadLdd; sl@0: SelfComplete(); sl@0: break; sl@0: } sl@0: // prompt to remove connector sl@0: test.Printf(KRemoveAConnectorPrompt); sl@0: test.Printf(KPressAnyKeyToContinue); sl@0: RequestCharacter(); sl@0: break; sl@0: sl@0: case ELoadLdd: sl@0: if (!StepLoadLDD()) sl@0: { sl@0: break; sl@0: } sl@0: sl@0: iCaseStep = ERegisterForEvents; sl@0: iDequeAttempts = 0; sl@0: SelfComplete(); sl@0: break; sl@0: sl@0: // wait on ID_PIN sl@0: case ERegisterForEvents: sl@0: if (iDequeAttempts > 3) sl@0: { sl@0: return (TestFailed(KErrCorrupt, _L(" too many irrelevant/incorrect events"))); sl@0: } sl@0: sl@0: test.Printf(KInsertAConnectorPrompt); sl@0: iCaseStep = ETestStateA; sl@0: test.Printf(_L("Waiting for OTG Event\n")); sl@0: sl@0: otgQueueOtgEventRequest( iOTGEvent, iStatus); sl@0: sl@0: // start timer sl@0: iIDcheckStart.HomeTime(); sl@0: SetActive(); sl@0: break; sl@0: sl@0: case EDriveID_PIN: sl@0: // please turn on ID_PIN prompt (or programming API call) sl@0: // skipped untill we can do this. sl@0: SetActive(); sl@0: break; sl@0: sl@0: case EWait5: sl@0: case ETestStateA: sl@0: { sl@0: TInt aMillisec; sl@0: OtgEventString(iOTGEvent, aDescription); sl@0: sl@0: iIDcheckEnd.HomeTime(); sl@0: TTimeIntervalMicroSeconds ivlMicro(iIDcheckEnd.MicroSecondsFrom(iIDcheckStart)); sl@0: aMillisec = (TInt)(ivlMicro.Int64())/1000; // USB times are in uSec, but in ms for the user layer sl@0: test.Printf(_L("Received event %d '%S' status(%d) in %d ms"), iOTGEvent, &aDescription, completionCode, aMillisec); sl@0: sl@0: // check the parameters gathered sl@0: if (RUsbOtgDriver::EEventAPlugInserted == iOTGEvent) sl@0: { sl@0: iCaseStep = EUnloadLdd; sl@0: // test if too quick! sl@0: if(aMillisec < KDelayDurationForQEmpty) // use 200ms - clocked at 17ms sl@0: { sl@0: // 'A' was in the receptacle when we started the stack, so it fires immediately, consume it and wait for another. sl@0: test.Printf(_L("Please first remove and then replace the A connector.\n")); sl@0: // wrong event in the Q already, keep at it sl@0: iCaseStep = ERegisterForEvents; sl@0: } sl@0: } sl@0: else sl@0: { sl@0: // wrong event in the Q already, keep at it sl@0: iCaseStep = ERegisterForEvents; sl@0: iDequeAttempts++; sl@0: } sl@0: SelfComplete(); sl@0: } sl@0: break; sl@0: case EUnloadLdd: sl@0: case ELastStep: sl@0: if (EFalse == StepUnloadLDD()) sl@0: { sl@0: return TestFailed(KErrAbort,_L("unload Ldd failure")); sl@0: } sl@0: return TestPassed(); sl@0: sl@0: default: sl@0: test.Printf(_L(" unknown test step")); sl@0: Cancel(); sl@0: return (TestFailed(KErrCorrupt, _L(" unknown test step"))); sl@0: sl@0: } sl@0: sl@0: } sl@0: sl@0: