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// Copyright (c) 1997-2009 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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// e32test\pccd\t_medch.cpp
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// Continuously generate media changes followesd by a remount of the peripheral bus controller.
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//
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//
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#define __E32TEST_EXTENSION__
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#include <e32test.h>
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#include <e32svr.h>
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#include <hal.h>
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#include "d_medch.h"
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//#define __SOAK_TEST__ // Define to run until a key is pressed (Automatic tests only)
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//#define __MANUAL_TEST__ // Define to allow manual control of the door/media
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//#define __DEVICE_HAS_NO_DOOR__ // Define for devices that have no door (Manual tests only)
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#if defined(__MANUAL_TEST__) && defined(__WINS__)
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#define __DEVICE_HAS_NO_DOOR__
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#endif
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#if !defined(__MANUAL_TEST__) && defined(__DEVICE_HAS_NO_DOOR__)
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#undef __DEVICE_HAS_NO_DOOR__
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#endif
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#if defined(__MANUAL_TEST__) && defined(__SOAK_TEST__)
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#undef __SOAK_TEST__
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#endif
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#ifndef __SOAK_TEST__
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#ifdef __WINS__
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const TInt KMaxTestTime = 5000000; // Run the test for 5 seconds on emulator
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#else
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const TInt KMaxTestTime = 10000000; // Run the test for 10 seconds on target
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#endif
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#endif
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#define MMC_PDD_NAME _L("MEDMMC")
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const TInt KPowerUpTimeOut = 5000000; // Give the card 5 seconds to power up
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LOCAL_D RTest test(_L("Media change test"));
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LOCAL_D TBusLocalDrive TheDrive;
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LOCAL_D RMedCh TheMediaChange;
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LOCAL_D TRequestStatus TheMediaStatus;
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LOCAL_D TBool TheChangedFlag;
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LOCAL_C TBool SetupDrivesForPlatform(TInt& aDrive, TInt& aSocket)
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/**
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* Finds a suitable drive for the media change test
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*
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* @param aDrive The number of the local drive to test
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* @param aSocket The number of the socket to test
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* @return TBool ETrue if a suitable drive is found, EFalse otherwise.
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*/
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{
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TDriveInfoV1Buf diBuf;
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UserHal::DriveInfo(diBuf);
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TDriveInfoV1 &di=diBuf();
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aDrive = -1;
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aSocket = -1;
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for(aDrive=0; aDrive < di.iTotalSupportedDrives; aDrive++)
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{
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test.Printf(_L(" Drive %d - %S\r\n"), aDrive, &di.iDriveName[aDrive]);
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if(di.iDriveName[aDrive].MatchF(_L("MultiMediaCard0")) == KErrNone)
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break;
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}
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if(aDrive == di.iTotalSupportedDrives)
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{
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test.Printf(_L(" MMC Drive Not Found\r\n"));
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return EFalse;
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}
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for(aSocket=0; aSocket < di.iTotalSockets; aSocket++)
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{
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test.Printf(_L("Socket %d - %S\r\n"), aSocket, &di.iSocketName[aSocket]);
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if(di.iSocketName[aSocket].MatchF(_L("MultiMediaCard0")) == KErrNone)
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break;
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}
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if(aSocket == di.iTotalSockets)
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{
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test.Printf(_L(" MMC Socket Not Found\r\n"));
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return EFalse;
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}
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return ETrue;
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}
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LOCAL_C void TestMediaAccess(TInt aExpectedError, TBool aExpectedChange)
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/**
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* Tests that the drive is accessable (or not) by issuing a request
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* to power up the media. Also verifies that the attributes are correct.
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*
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* @param aExpectedError The expected result of powering up the drive
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* @param aExpectedChange ETrue if the changed flag is expected to be set
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*
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* @return ETrue if successful, EFalse otherwise
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*/
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{
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RTimer rto;
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TInt r = rto.CreateLocal();
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test(r == KErrNone);
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TRequestStatus rtoStat;
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rto.After(rtoStat, KPowerUpTimeOut);
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test(rtoStat == KRequestPending);
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if(aExpectedChange)
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{
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// TheChangedFlag is set when the door is opened if media was present.
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// The asynch notifier is signalled when media is removed OR inserted.
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User::WaitForRequest(TheMediaStatus, rtoStat);
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test(TheMediaStatus != KRequestPending);
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}
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// ...aChangedFlag's purpose is to notify us of media removal.
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test_Equal(aExpectedChange,TheChangedFlag);
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TheDrive.NotifyChange(&TheMediaStatus);
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TheChangedFlag = EFalse;
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// Attempt to power up the drive
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TLocalDriveCapsV2Buf info;
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do
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{
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r = TheDrive.Caps(info);
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}
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while(r != aExpectedError && rtoStat == KRequestPending);
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rto.Cancel();
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rto.Close();
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// ...was the error as expected?
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test(r == aExpectedError);
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// ...and are the caps still OK?
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if(r == KErrNone)
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test(info().iType == EMediaHardDisk);
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else if(r == KErrNotReady)
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test(info().iType == EMediaNotPresent);
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if(aExpectedChange == EFalse)
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test(TheMediaStatus == KRequestPending);
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}
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LOCAL_C void NextTest(const TDesC& aTitle, TInt aCycles)
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/**
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* Simply displays a string on the console and the current iteration.
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*
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* @param aTitle The text to be displayed
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* @param aCycles The current iteration
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*/
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{
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test.Console()->SetPos(20, 25);
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test.Printf(_L("%S [%d cycles]"), &aTitle, aCycles);
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#ifdef __MANUAL_TEST__
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test.Console()->SetPos(20, 27);
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test.Printf(_L("<press a key>"));
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test.Getch();
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#endif
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}
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GLDEF_C TInt E32Main()
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/**
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* Test Entry Point for T_MEDCH.
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*
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* This test uses the associated driver (D_MEDCH) to simulate media removal and
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* door opening/closing. The media is powered up in each state and verified that
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* the correct error code and changed count is returned.
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*/
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{
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TBuf<64> b;
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test.Title();
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/**
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* Load the associated media driver (MEDMMC by default). This is required to ensure
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* that the device can be powered up and the capabilities if the media accessed.
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*/
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test.Start(_L("Load Media Driver"));
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TInt r;
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r=User::LoadPhysicalDevice(MMC_PDD_NAME);
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if(r==KErrNotFound)
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{
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test.Printf(_L("Test not supported on this platform \n"));
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test.End();
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return(0);
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}
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test(r==KErrNone || r==KErrAlreadyExists);
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/**
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* Connect to the required local drive.
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* TheChangedFlag is used for detection of media removal.
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*/
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TInt drive;
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TInt socket;
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if(SetupDrivesForPlatform(drive, socket))
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{
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b.Format(_L("Connect to local drive %d"), drive);
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test.Next(b);
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TheDrive.Connect(drive, TheChangedFlag);
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/**
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* Read the drive capabilities to ensure that this test may be run.
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*/
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test.Next(_L("Get drive capabilities"));
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TLocalDriveCapsV2Buf info;
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r = TheDrive.Caps(info);
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if(r == KErrNotReady || r == KErrNotSupported)
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{
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test.Next(_L("\r\nTest requires media to be present and the door closed - Disconnecting"));
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TheDrive.Disconnect();
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test.End();
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return KErrNone;
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}
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test(r == KErrNone);
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test(TheDrive.Caps(info) == KErrNone);
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test(info().iType == EMediaHardDisk);
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/**
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* Load the media simulation test driver
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*/
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test.Next(_L("Load media change logical device"));
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r=User::LoadLogicalDevice(_L("D_MEDCH"));
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test(r == KErrNone || r == KErrAlreadyExists);
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test.Next(_L("Open device"));
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r=TheMediaChange.Open(socket, TheMediaChange.VersionRequired());
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if(r == KErrNotSupported)
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{
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test.Next(_L("\r\nTest not supported on this drive - Disconnecting"));
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r=User::FreeLogicalDevice(_L("MedCh"));
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test(r == KErrNone);
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TheDrive.Disconnect();
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test.End();
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return KErrNone;
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}
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test(r == KErrNone);
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/**
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* Verify that the system supports simulation of media change events
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*/
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test.Next(_L("Test support for media change simulation"));
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r = TheMediaChange.DoorNormal();
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test(r == KErrNone || r == KErrNotSupported);
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/**
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* Now for the real testing...
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*/
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if(r == KErrNone)
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{
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/**
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* Test0 - Simulate 2 consecutive door open interrupts
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*/
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test.Next(_L("Test that the pbus can handle 2 consecutive door open interrupts"));
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TheDrive.NotifyChange(&TheMediaStatus);
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r = TheMediaChange.DoubleDoorOpen();
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test(r == KErrNone || r == KErrNotSupported);
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TestMediaAccess(KErrNone, ETrue);
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TInt cycles=0;
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#if defined(__SOAK_TEST__)
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TRequestStatus endStat;
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test.Console()->Read(endStat);
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while(endStat == KRequestPending)
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#elif !defined(__MANUAL_TEST__)
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RTimer t;
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r=t.CreateLocal();
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test(r == KErrNone);
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TRequestStatus endStat;
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t.After(endStat, KMaxTestTime);
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test(endStat == KRequestPending);
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while(endStat == KRequestPending)
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#endif
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{
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TheChangedFlag = EFalse;
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TheDrive.NotifyChange(&TheMediaStatus);
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/**
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* Test1 - Simulate door open
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* - Power up responds with KErrNotReady
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*/
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NextTest(_L("Open Door......"), cycles);
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#ifndef __MANUAL_TEST__
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test(TheMediaChange.DoorOpen() == KErrNone);
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#endif
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TestMediaAccess(KErrNotReady, ETrue);
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TheDrive.NotifyChange(&TheMediaStatus);
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/**
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* Test2 - Simulate door closed (with media removed)
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* - Power up responds with KErrNotReady
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*/
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#ifndef __DEVICE_HAS_NO_DOOR__
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NextTest(_L("Remove Media..."), cycles);
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#ifndef __MANUAL_TEST__
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test(TheMediaChange.DoorClose(EFalse) == KErrNone);
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#endif
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TestMediaAccess(KErrNotReady, EFalse);
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/**
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* Test3 - Simulate door open
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* - Power up responds with KErrNotReady
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*/
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NextTest(_L("Open Door......"), cycles);
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#ifndef __MANUAL_TEST__
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test(TheMediaChange.DoorOpen() == KErrNone);
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#endif
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TestMediaAccess(KErrNotReady, EFalse); // Power up responds with KErrNotReady
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#endif
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/**
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* Test4 - Simulate door closed (with media present)
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* - Power up responds with KErrNone
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*/
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NextTest(_L("Insert Media..."), cycles);
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#ifndef __MANUAL_TEST__
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test(TheMediaChange.DoorClose(ETrue) == KErrNone);
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#endif
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TestMediaAccess(KErrNone, ETrue);
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++cycles;
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}
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test.Console()->SetPos(0, 27);
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#if !defined(__SOAK_TEST__) && !defined(__MANUAL_TEST__)
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t.Close();
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#endif
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}
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else if(r == KErrNotSupported)
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{
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test.Printf(_L("Media change simulation not supported"));
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}
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/**
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* Tidy up and exit
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*/
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test.Next(_L("\r\nClose device"));
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TheMediaChange.Close();
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test.Next(_L("Free device"));
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r=User::FreeLogicalDevice(_L("MedCh"));
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test(r == KErrNone);
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b.Format(_L("\r\nDisconnect from local drive %d "), drive);
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test.Next(b);
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TheDrive.Disconnect();
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}
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test.End();
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return(0);
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}
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