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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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// @file PBASE-T_USBDI-0479.cpp
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// @internalComponent
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//
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//
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#include "PBASE-T_USBDI-0479.h"
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#include "testpolicy.h"
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#include "modelleddevices.h"
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namespace NUnitTesting_USBDI
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{
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_LIT(KTestCaseId,"PBASE-T_USBDI-0479");
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const TFunctorTestCase<CUT_PBASE_T_USBDI_0479,TBool> CUT_PBASE_T_USBDI_0479::iFunctor(KTestCaseId);
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CUT_PBASE_T_USBDI_0479* CUT_PBASE_T_USBDI_0479::NewL(TBool aHostRole)
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{
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CUT_PBASE_T_USBDI_0479* self = new (ELeave) CUT_PBASE_T_USBDI_0479(aHostRole);
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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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CUT_PBASE_T_USBDI_0479::CUT_PBASE_T_USBDI_0479(TBool aHostRole)
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: CBaseTestCase(KTestCaseId,aHostRole),
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iCaseStep(EInProgress)
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{
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}
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void CUT_PBASE_T_USBDI_0479::ConstructL()
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{
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iTestDevice = new RUsbDeviceVendor(this);
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BaseConstructL();
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}
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CUT_PBASE_T_USBDI_0479::~CUT_PBASE_T_USBDI_0479()
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{
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LOG_FUNC
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Cancel();
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iDuplicateUsbInterface0.Close();
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iUsbInterface0.Close();
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delete iClientAction;
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delete iActorFDF;
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if(!IsHost() && iTestDevice)
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{
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iTestDevice->Close();
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}
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delete iTestDevice;
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}
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void CUT_PBASE_T_USBDI_0479::ExecuteHostTestCaseL()
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{
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LOG_FUNC
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iActorFDF = CActorFDF::NewL(*this);
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iClientAction = new (ELeave) CEp0Transfer(iUsbInterface0);
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iActorFDF->Monitor();
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TimeoutIn(30);
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}
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void CUT_PBASE_T_USBDI_0479::HostDoCancel()
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{
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LOG_FUNC
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// Cancel timing out the test step
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CancelTimeout();
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}
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void CUT_PBASE_T_USBDI_0479::ExecuteDeviceTestCaseL()
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{
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LOG_FUNC
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iTestDevice->OpenL(TestCaseId());
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iTestDevice->SubscribeToReports(iStatus);
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SetActive();
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iTestDevice->SoftwareConnect();
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}
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void CUT_PBASE_T_USBDI_0479::DeviceDoCancel()
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{
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LOG_FUNC
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// Cancel the device
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iTestDevice->CancelSubscriptionToReports();
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}
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void CUT_PBASE_T_USBDI_0479::DeviceStateChangeL(RUsbDevice::TDeviceState aPreviousState,
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RUsbDevice::TDeviceState aNewState,TInt aCompletionCode)
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{
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LOG_FUNC
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Cancel();
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}
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void CUT_PBASE_T_USBDI_0479::DeviceInsertedL(TUint aDeviceHandle)
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{
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Cancel();
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TInt err(KErrNone);
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// Validate that device is as expected
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CUsbTestDevice& testDevice = iActorFDF->DeviceL(aDeviceHandle);
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if(testDevice.SerialNumber().Compare(TestCaseId()) != 0)
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{
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// Incorrect device for this test case
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RDebug::Printf("<Warning %d> Incorrect device serial number (%S) connected for this test case (%S)",
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KErrNotFound,&testDevice.SerialNumber(),&TestCaseId());
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// Start the connection timeout again
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TimeoutIn(30);
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return;
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}
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TUint32 validToken;
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TUint32 invalidToken(KMaxTUint-1); // The known invalid token
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err = testDevice.Device().GetTokenForInterface(0,validToken);
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if(err != KErrNone)
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{
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RDebug::Printf("<Error %d> Token for interface could not be retrieved",err);
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return TestFailed(err);
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}
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err = iUsbInterface0.Open(validToken); // Default interface setting 0
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if(err != KErrNone)
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{
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RDebug::Printf("<Error %d> Unable to open interface 0 using token %d",err,validToken);
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return TestFailed(err);
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}
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err = iDuplicateUsbInterface0.Open(invalidToken);
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if(err == KErrNone)
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{
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TBuf<64> msg;
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msg.Format(_L("<Error %d> Able to open an interface that is not present"),KErrCorrupt);
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RDebug::Print(msg);
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iCaseStep = EFailed;
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TTestCaseFailed request(KErrCorrupt,msg);
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iClientAction->SendRequest(request,this);
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}
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else
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{
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RDebug::Printf("Opening interface with invalid token failed with %d",err);
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User::After(1000000);
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iCaseStep = EPassed;
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TTestCasePassed request;
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iClientAction->SendRequest(request,this);
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}
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}
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void CUT_PBASE_T_USBDI_0479::DeviceRemovedL(TUint aDeviceHandle)
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{
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LOG_FUNC
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// The test device should not be removed until the test case has passed
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// so this test case has not completed, and state this event as an error
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TestFailed(KErrDisconnected);
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}
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void CUT_PBASE_T_USBDI_0479::BusErrorL(TInt aError)
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{
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LOG_FUNC
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// This test case handles no failiures on the bus
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TestFailed(aError);
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}
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void CUT_PBASE_T_USBDI_0479::Ep0TransferCompleteL(TInt aCompletionCode)
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{
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LOG_FUNC
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RDebug::Printf("Ep0TransferCompleteL with aCompletionCode = %d",aCompletionCode);
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if(aCompletionCode != KErrNone)
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{
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TBuf<256> msg;
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msg.Format(_L("<Error %d> Transfer to control endpoint 0 was not successful"),aCompletionCode);
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RDebug::Print(msg);
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}
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if(iCaseStep == EPassed)
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{
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if(aCompletionCode == KErrNone)
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{
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return TestPassed();
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}
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// else error
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iCaseStep = EFailed;
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}
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if(iCaseStep == EFailed)
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{
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return TestFailed(KErrCompletion);
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}
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}
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void CUT_PBASE_T_USBDI_0479::HostRunL()
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{
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// Obtain the completion code
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TInt completionCode(iStatus.Int());
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if(completionCode == KErrNone)
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{
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// Action timeout
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RDebug::Printf("<Error> Action timeout");
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TestFailed(KErrTimedOut);
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}
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else
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{
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RDebug::Printf("<Error %d> Timeout timer could not complete",completionCode);
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TestFailed(completionCode);
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}
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}
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void CUT_PBASE_T_USBDI_0479::DeviceRunL()
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{
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LOG_FUNC
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// Disconnect the device
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iTestDevice->SoftwareDisconnect();
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// Complete the test case request
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TestPolicy().SignalTestComplete(iStatus.Int());
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}
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}
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