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// Copyright (c) 2004-2009 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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// Implementation of generic finite state machine state
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//
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//
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/**
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@file
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@internalTechnology
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*/
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#include <f32file.h>
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#include <testusbc.h>
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#include "tstate.h"
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#include "t_ms_main.h"
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#include "scsicmdbuilder.h"
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#include "cpropertywatch.h"
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_LIT(KMsFs, "MassStorageFileSystem");
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GLREF_D RFs fs;
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GLREF_D TInt removalDrvNo;
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GLREF_D TUint8 testLun;
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GLDEF_D TBuf8<KCbwLength> cbwBuf;
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GLDEF_D TBuf8<KCswLength> cswBuf;
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GLDEF_D TInt dCBWTag = 1234567; // arbitrary, any number would do for this test.
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GLDEF_D RDevTestUsbcClient usbcClient;
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/**
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Unmount FAT and mount MSFS.
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@param driveNumber
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*/
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LOCAL_C void MountMsFs(TInt driveNumber)
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{
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test.Printf(_L("MountMsFs driveNumber=%d\n"), driveNumber);
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TInt err = KErrNone;
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TFileName oldFs;
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err = fs.FileSystemName(oldFs, driveNumber);
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test.Printf(_L("FAT file system name %S; error code %d\n"), &oldFs, err);
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test(err == KErrNone || err == KErrNotFound);
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if(err==KErrNone)
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{
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test.Printf(_L("Unmounting FAT FS %S\n"), &oldFs);
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err = fs.DismountFileSystem(oldFs, driveNumber);
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test.Printf(_L("%S Dismount %c: %d\n"), &oldFs,'A' + driveNumber, err);
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test(err == KErrNone);
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}
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test.Printf(_L("Mounting MSFS\n"));
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err = fs.MountFileSystem(KMsFs, driveNumber);
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test.Printf(_L("MSFS Mount %c: %d\n"), 'A' + driveNumber, err);
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}
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/**
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Unmount MSFS and mount FAT.
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@param driveNumber
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*/
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LOCAL_C void UnmountMsFs(TInt driveNumber)
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{
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test.Printf(_L("UnmountMsFs driveNumber=%d\n"), driveNumber);
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TInt err = fs.DismountFileSystem(KMsFs, driveNumber);
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test.Printf(_L("MSFS Dismount:%d\n"), err);
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test(err == KErrNone);
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err = fs.MountFileSystem(_L("FAT"), driveNumber);
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test.Printf(_L("FAT Mount: %d\n"), err);
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}
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LOCAL_C TBool SendAndReceive(TInt aStatus = 0)
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{
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test.Printf(_L("SendAndReceive\n"));
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TRequestStatus status;
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usbcClient.HostWrite(status, EEndpoint1, cbwBuf, KCbwLength);
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User::WaitForRequest(status);
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test(KErrNone == status.Int());
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// Read CSW
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test.Printf(_L("Reading CSW\n"));
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usbcClient.HostRead(status, EEndpoint2, cswBuf, KCswLength);
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User::WaitForRequest(status);
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test(KErrNone == status.Int());
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// Check dCSWTag
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TInt recvedCBWTag = extractInt(&cswBuf[4]);
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test(dCBWTag == recvedCBWTag);
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// Check bCSWStatus
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TInt bCSWStatus = cswBuf[KCswLength - 1];
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test.Printf(_L("CSW status: %d\n"), bCSWStatus);
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return(bCSWStatus == aStatus);
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}
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//////////////////////////////////////////////////////////////
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void
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TDisconnected::MoveTo(TInt aStateId) const
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{
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switch (aStateId)
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{
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case EUsbMsDriveState_Connecting:
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MoveToConnecting();
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break;
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case EUsbMsDriveState_Connected:
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MoveToConnected();
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break;
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default:
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test.Printf(_L("Cannot reach %d from %d\n"), GetStateId(), aStateId);
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test(EFalse);
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}
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}
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void
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TDisconnected::MoveToConnecting() const
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{
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test.Printf(_L("Moving to connecting state\n"));
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MountMsFs(removalDrvNo);
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// send test unit ready message
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BuildTestUnitReady();
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createCBW(cbwBuf, ++dCBWTag, 0, 0, scsiCmdBuf, testLun);
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test(SendAndReceive(1)); // 1: the unit is not ready!
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}
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void
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TDisconnected::MoveToConnected() const
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{
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test.Printf(_L("Moving to connected state\n"));
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MountMsFs(removalDrvNo);
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BuildTestUnitReady();
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createCBW(cbwBuf, ++dCBWTag, 0, 0, scsiCmdBuf, testLun);
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test(SendAndReceive(1));
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}
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//////////////////////////////////////////////////////////////
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void
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TConnecting::MoveTo(TInt aStateId) const
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{
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switch (aStateId)
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{
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case EUsbMsState_Written:
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MoveToWritten();
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break;
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default:
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test.Printf(_L("Cannot reach %d from %d\n"), GetStateId(), aStateId);
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test(EFalse);
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}
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}
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void TConnecting::MoveToWritten() const
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{
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test.Printf(_L("Moving to written state\n"));
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// Mount MS file system
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MountMsFs(removalDrvNo);
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BuildTestUnitReady();
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createCBW(cbwBuf, ++dCBWTag, 0, 0, scsiCmdBuf, testLun);
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test(SendAndReceive(1));
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// Write 1k bytes using testldd.
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// 0x2A: opcode for write (10); 10: starting sector; 2: total sectors
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BuildReadWrite(0x2A, 10, 2);
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// 0: indicates host writing
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createCBW(cbwBuf, ++dCBWTag, KKiloBytes, 0, scsiCmdBuf, testLun);
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// Send write command
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test.Printf(_L("Sending CBW write cmd\n"));
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TRequestStatus status;
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usbcClient.HostWrite(status, EEndpoint1, cbwBuf, KCbwLength);
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User::WaitForRequest(status);
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test(KErrNone == status.Int());
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// Write actual data. We don't care the contents.
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TBuf8<KKiloBytes> writeBuf;
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writeBuf.SetLength(KKiloBytes);
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usbcClient.HostWrite(status, EEndpoint1, writeBuf, KKiloBytes);
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User::WaitForRequest(status);
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test(KErrNone == status.Int());
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// Check CSW status
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// Read CSW
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test.Printf(_L("Reading CSW\n"));
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usbcClient.HostRead(status, EEndpoint2, cswBuf, KCswLength);
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User::WaitForRequest(status);
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test(KErrNone == status.Int());
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// Check dCSWTag
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TInt recvedCBWTag = extractInt(&cswBuf[4]);
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test(dCBWTag == recvedCBWTag);
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// Check bCSWStatus
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TInt bCSWStatus = cswBuf[KCswLength - 1];
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test.Printf(_L("CSW status: %d\n"), bCSWStatus);
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test(bCSWStatus == 0);
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}
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//////////////////////////////////////////////////////////////
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void
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TConnected::MoveTo(TInt aStateId) const
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{
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switch (aStateId)
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{
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case EUsbMsDriveState_Active:
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MoveToActive();
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break;
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default:
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test.Printf(_L("Cannot reach %d from %d\n"), GetStateId(), aStateId);
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test(EFalse);
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}
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}
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void
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TConnected::MoveToActive() const
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{
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test.Printf(_L("Moving to active state\n"));
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// send prevent medium removal using testld
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// 1: prevent medium removal
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BuildMediumRemoval(1);
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createCBW(cbwBuf, ++dCBWTag, 0, 0, scsiCmdBuf, testLun);
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if(!SendAndReceive())
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{
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// Prevent Media Removal command not supported
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test.Printf(_L("Prevent Media Removal command not supported, issuing read instead\n"));
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// Read 1k bytes using testldd.
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// 0x28: opcode for read (10); 10: starting sector; 2: total sectors
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BuildReadWrite(0x28, 10, 2);
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// 0x80: indicates host writing
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createCBW(cbwBuf, ++dCBWTag, KKiloBytes, 0x80, scsiCmdBuf, testLun);
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// Send read command
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test.Printf(_L("Sending CBW read cmd\n"));
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TRequestStatus status;
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usbcClient.HostWrite(status, EEndpoint1, cbwBuf, KCbwLength);
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User::WaitForRequest(status);
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test(KErrNone == status.Int());
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// Read actual data. We don't care the contents.
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TBuf8<KKiloBytes> readBuf;
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readBuf.SetLength(KKiloBytes);
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usbcClient.HostRead(status, EEndpoint2, readBuf, KKiloBytes);
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User::WaitForRequest(status);
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test(KErrNone == status.Int());
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// Check CSW status
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// Read CSW
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test.Printf(_L("Reading CSW\n"));
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usbcClient.HostRead(status, EEndpoint2, cswBuf, KCswLength);
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User::WaitForRequest(status);
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test(KErrNone == status.Int());
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// Check dCSWTag
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TInt recvedCBWTag = extractInt(&cswBuf[4]);
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test(dCBWTag == recvedCBWTag);
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// Check bCSWStatus
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TInt bCSWStatus = cswBuf[KCswLength - 1];
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test.Printf(_L("CSW status: %d\n"), bCSWStatus);
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test(bCSWStatus == 0);
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}
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}
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//////////////////////////////////////////////////////////////
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void
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TActive::MoveTo(TInt aStateId) const
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{
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switch (aStateId)
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{
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case EUsbMsDriveState_Locked:
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MoveToLocked();
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break;
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case EUsbMsDriveState_Disconnecting:
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MoveToDisconnecting();
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break;
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default:
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test.Printf(_L("Cannot reach %d from %d\n"), GetStateId(), aStateId);
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test(EFalse);
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}
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}
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void
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TActive::MoveToLocked() const
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{
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test.Printf(_L("Moving to locked state\n"));
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// To be implemented. Wait for lock defect fix
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}
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void
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TActive::MoveToDisconnecting() const
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{
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test.Printf(_L("Moving to disconnecting state\n"));
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// send allow medium removal using testld
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// 0: allow medium removal
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BuildMediumRemoval(0);
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createCBW(cbwBuf, ++dCBWTag, 0, 0, scsiCmdBuf, testLun);
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if(!SendAndReceive())
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test.Printf(_L("Prevent Media Removal command not supported, no need to allow\n"));
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// Now the state is connected, let's move to disconnecting state
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// by sending a stop unit command
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// 0: stop unit
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BuildStartStopUnit(0);
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createCBW(cbwBuf, ++dCBWTag, 0, 0, scsiCmdBuf, testLun);
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test(SendAndReceive());
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}
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//////////////////////////////////////////////////////////////
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void
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TLocked::MoveTo(TInt aStateId) const
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{
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switch (aStateId)
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{
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case EUsbMsDriveState_Disconnecting:
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MoveToDisconnecting();
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break;
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default:
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test.Printf(_L("Cannot reach %d from %d\n"), GetStateId(), aStateId);
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test(EFalse);
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}
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}
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void
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TLocked::MoveToDisconnecting() const
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{
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test.Printf(_L("Moving to disconnecting state\n"));
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// To be implemented once lock issue is resolved
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}
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//////////////////////////////////////////////////////////////
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void
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TDisconnecting::MoveTo(TInt aStateId) const
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{
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switch (aStateId)
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{
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case EUsbMsDriveState_Disconnected:
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MoveToDisconnected();
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break;
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default:
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test.Printf(_L("Cannot reach %d from %d\n"), GetStateId(), aStateId);
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test(EFalse);
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}
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}
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void
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TDisconnecting::MoveToDisconnected() const
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{
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test.Printf(_L("Moving to disconnected state\n"));
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UnmountMsFs(removalDrvNo);
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}
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//////////////////////////////////////////////////////////////
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void
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TWritten::MoveTo(TInt aStateId) const
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{
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switch (aStateId)
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{
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case EUsbMsState_Read:
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MoveToRead();
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break;
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default:
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test.Printf(_L("Cannot reach %d from %d\n"), GetStateId(), aStateId);
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test(EFalse);
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}
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}
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void
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TWritten::MoveToRead() const
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{
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test.Printf(_L("Moving to read state\n"));
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// Read 1k bytes using testldd.
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// 0x28: opcode for read (10); 10: starting sector; 2: total sectors
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BuildReadWrite(0x28, 10, 2);
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// 0x80: indicates host writing
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createCBW(cbwBuf, ++dCBWTag, KKiloBytes, 0x80, scsiCmdBuf, testLun);
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// Send read command
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test.Printf(_L("Sending CBW read cmd\n"));
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TRequestStatus status;
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usbcClient.HostWrite(status, EEndpoint1, cbwBuf, KCbwLength);
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User::WaitForRequest(status);
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test(KErrNone == status.Int());
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// Read actual data. We don't care the contents.
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TBuf8<KKiloBytes> readBuf;
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readBuf.SetLength(KKiloBytes);
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usbcClient.HostRead(status, EEndpoint2, readBuf, KKiloBytes);
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User::WaitForRequest(status);
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test(KErrNone == status.Int());
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// Check CSW status
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// Read CSW
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test.Printf(_L("Reading CSW\n"));
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usbcClient.HostRead(status, EEndpoint2, cswBuf, KCswLength);
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User::WaitForRequest(status);
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test(KErrNone == status.Int());
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// Check dCSWTag
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429 |
TInt recvedCBWTag = extractInt(&cswBuf[4]);
|
|
430 |
test(dCBWTag == recvedCBWTag);
|
|
431 |
|
|
432 |
// Check bCSWStatus
|
|
433 |
TInt bCSWStatus = cswBuf[KCswLength - 1];
|
|
434 |
test.Printf(_L("CSW status: %d\n"), bCSWStatus);
|
|
435 |
test(bCSWStatus == 0);
|
|
436 |
}
|
|
437 |
|
|
438 |
//////////////////////////////////////////////////////////////
|
|
439 |
|
|
440 |
void
|
|
441 |
TRead::MoveTo(TInt aStateId) const
|
|
442 |
{
|
|
443 |
switch (aStateId)
|
|
444 |
{
|
|
445 |
case EUsbMsDriveState_Disconnected:
|
|
446 |
MoveToDisconnected();
|
|
447 |
break;
|
|
448 |
default:
|
|
449 |
test.Printf(_L("Cannot reach %d from %d\n"), GetStateId(), aStateId);
|
|
450 |
test(EFalse);
|
|
451 |
}
|
|
452 |
}
|
|
453 |
|
|
454 |
void
|
|
455 |
TRead::MoveToDisconnected() const
|
|
456 |
{
|
|
457 |
test.Printf(_L("Moving to disconnected state\n"));
|
|
458 |
UnmountMsFs(removalDrvNo);
|
|
459 |
}
|
|
460 |
|