kerneltest/f32test/shostmassstorage/msman/test/tmsprintdrive.cpp
author Slion
Tue, 08 Dec 2009 08:11:42 +0100
branchanywhere
changeset 19 f6d3d9676ee4
parent 0 a41df078684a
child 33 0173bcd7697c
permissions -rw-r--r--
Trying to figure out how to implement my WINC like compatibility layer. Going the emulation way is probably not so smart. We should not use the kernel but rather hook native functions in the Exec calls.

// Copyright (c) 2009 Nokia Corporation and/or its subsidiary(-ies).
// All rights reserved.
// This component and the accompanying materials are made available
// under the terms of the License "Eclipse Public License v1.0"
// which accompanies this distribution, and is available
// at the URL "http://www.eclipse.org/legal/epl-v10.html".
//
// Initial Contributors:
// Nokia Corporation - initial contribution.
//
// Contributors:
//
// Description:
//


#include <e32def.h>
#include <e32cmn.h>
#include <f32file.h>
#include <e32test.h>

#include "tmsprintdrive.h"

extern RTest test;
extern RFs fsSession;

void TMsPrintDrive::FormatDriveInfo(TDes& aBuffer, const TDriveInfo& aDriveInfo)
    {
    // Append battery, media and drive information to aBuffer
    // Define descriptor constants using the _LIT macro
    _LIT(KFormatString,"Type=0x%02x,Battery=0x%02x,DriveAtt=0x%02x,MediaAtt=0x%02x\r\n");
    _LIT(KBatLow,"Battery low\r\n");
    _LIT(KBatGood,"Battery good\r\n");
    _LIT(KBatNotSupported,"Battery not supported\r\n");
    _LIT(KNotPresent,"No media present\r\n");
    _LIT(KFloppy,"Media is floppy disk\r\n");
    _LIT(KHard,"Media is hard disk\r\n");
    _LIT(KCDROM,"Media is CD-ROM\r\n");
    _LIT(KRam,"Media is RAM\r\n");
    _LIT(KFlash,"Media is flash\r\n");
    _LIT(KRom,"Media is ROM\r\n");
    _LIT(KRemote,"Media is remote\r\n");
    _LIT(KNANDFlash,"Media is NAND flash\r\n");
    _LIT(KUnknown,"Media unknown\r\n");
    _LIT(KDriveAtts,"Drive attributes:");
    _LIT(KLocal," local");
    _LIT(KROMDrive," ROM");
    _LIT(KRedirected," redirected");
    _LIT(KSubstituted," substituted");
    _LIT(KInternal," internal");
    _LIT(KRemovable," removable");
    _LIT(KMediaAtts,"\r\nMedia attributes:");
    _LIT(KDynamic," dynamic");
    _LIT(KDual," dual-density");
    _LIT(KFormattable," formattable");
    _LIT(KLockable," lockable");
    _LIT(KLocked," locked");
    _LIT(KHasPassword," has password");
    _LIT(KWriteProtected," write-protected");
    _LIT(KNewLine,"\r\n");

    aBuffer.AppendFormat(KFormatString, TInt(aDriveInfo.iType),
                         TInt(aDriveInfo.iBattery),
                         TInt(aDriveInfo.iDriveAtt),
                         TInt(aDriveInfo.iMediaAtt));

    switch (aDriveInfo.iBattery)
        {
        case EBatLow:
            aBuffer.Append(KBatLow);
            break;
        case EBatGood:
            aBuffer.Append(KBatGood);
            break;
        default:
            aBuffer.Append(KBatNotSupported);
        }

    switch (aDriveInfo.iType)
            {
        case EMediaNotPresent:
            aBuffer.Append(KNotPresent);
            break;
        case EMediaFloppy:
            aBuffer.Append(KFloppy);
            break;
        case EMediaHardDisk:
            aBuffer.Append(KHard);
            break;
        case EMediaCdRom:
            aBuffer.Append(KCDROM);
            break;
        case EMediaRam:
            aBuffer.Append(KRam);
            break;
        case EMediaFlash:
            aBuffer.Append(KFlash);
            break;
        case EMediaRom:
            aBuffer.Append(KRom);
            break;
        case EMediaRemote:
            aBuffer.Append(KRemote);
            break;
        case EMediaNANDFlash:
            aBuffer.Append(KNANDFlash);
            break;
        default:
            aBuffer.Append(KUnknown);

        }
        aBuffer.Append(KDriveAtts);
        if (aDriveInfo.iDriveAtt & KDriveAttLocal)
           aBuffer.Append(KLocal);
        if (aDriveInfo.iDriveAtt & KDriveAttRom)
            aBuffer.Append(KROMDrive);
        if (aDriveInfo.iDriveAtt & KDriveAttRedirected)
           aBuffer.Append(KRedirected);
        if (aDriveInfo.iDriveAtt & KDriveAttSubsted)
           aBuffer.Append(KSubstituted);
        if (aDriveInfo.iDriveAtt & KDriveAttInternal)
           aBuffer.Append(KInternal);
        if (aDriveInfo.iDriveAtt & KDriveAttRemovable)
           aBuffer.Append(KRemovable);
        aBuffer.Append(KMediaAtts);
        if (aDriveInfo.iMediaAtt & KMediaAttVariableSize)
            aBuffer.Append(KDynamic);
        if (aDriveInfo.iMediaAtt & KMediaAttDualDensity)
            aBuffer.Append(KDual);
        if (aDriveInfo.iMediaAtt & KMediaAttFormattable)
            aBuffer.Append(KFormattable);
        if (aDriveInfo.iMediaAtt & KMediaAttWriteProtected)
            aBuffer.Append(KWriteProtected);
        if (aDriveInfo.iMediaAtt & KMediaAttLockable)
            aBuffer.Append(KLockable);
        if (aDriveInfo.iMediaAtt & KMediaAttLocked)
            aBuffer.Append(KLocked);
        if (aDriveInfo.iMediaAtt & KMediaAttHasPassword)
            aBuffer.Append(KHasPassword);
        aBuffer.Append(KNewLine);
    }


void TMsPrintDrive::FormatVolumeInfo(TDes& aBuffer, const TVolumeInfo& aVolumeInfo)
    {
    // Append volume information to aBuffer
    _LIT(KUID,"Unique ID: %08x\r\n");
    _LIT(KSize,"Size: 0x%Lx bytes\r\n");
    _LIT(KFree,"Free space: 0x%Lx bytes\r\n");
    _LIT(KVolName,"Volume name: %S\r\n");
    aBuffer.AppendFormat(KUID, aVolumeInfo.iUniqueID);
    aBuffer.AppendFormat(KSize, aVolumeInfo.iSize);
    aBuffer.AppendFormat(KFree, aVolumeInfo.iFree);
    aBuffer.AppendFormat(KVolName, &aVolumeInfo.iName);
    }


void TMsPrintDrive::VolInfoL(TInt aDriveNumber)
    {
    _LIT(KMessage,"Drive Info\r\n");
    _LIT(KValidDriveMsg,"Valid drives as characters (and as numbers) are:");
    _LIT(KDriveChar,"%c");
    _LIT(KDriveNum,"(%d) ");
    _LIT(KNewLine,"\r\n");
    _LIT(KAvailDriveMsg,"Using DriveList(), available drives are: ");
    _LIT(KDriveAtts,"%c: %02x ");
    _LIT(KDriveInfo,"Drive information for %c: drive is:\r\n%S\r\n");
    _LIT(KVolInfo,"Volume information for %c: is:\r\n%S\r\n");

    test.Printf(KMessage);
    test.Printf(KValidDriveMsg);

    TChar driveLetter;

    if (fsSession.IsValidDrive(aDriveNumber))
        {
        fsSession.DriveToChar(aDriveNumber,driveLetter);
        test.Printf(KDriveChar,TUint(driveLetter));
        fsSession.CharToDrive(driveLetter, aDriveNumber);
        test.Printf(KDriveNum, aDriveNumber);
        }

    test.Printf(KNewLine);

    TDriveList drivelist;
    User::LeaveIfError(fsSession.DriveList(drivelist));
    // A TDriveList (the list of available drives), is an array of
    // 26 bytes. Each byte with a non zero value signifies that the
    // corresponding drive is available.

    test.Printf(KAvailDriveMsg);

    if (drivelist[aDriveNumber]) // if drive-list entry non-zero, drive is available
        {
        User::LeaveIfError(fsSession.DriveToChar(aDriveNumber,driveLetter));
        // The following line prints the drive letter followed by the hex value
        // of the integer indicating that drive's attributes
        test.Printf(KDriveAtts,TUint(driveLetter), drivelist[aDriveNumber]);
        }

    test.Printf(KNewLine);

    // Print information about available drives
    TBuf<200> buffer;
    TDriveInfo driveInfo;

    fsSession.Drive(driveInfo, aDriveNumber);
    if (driveInfo.iDriveAtt == KDriveAbsent)
        {
        }
    else
        {
        FormatDriveInfo(buffer, driveInfo);
        User::LeaveIfError(fsSession.DriveToChar(aDriveNumber, driveLetter));
        test.Printf(KDriveInfo, TUint(driveLetter), &buffer);
        buffer.Zero();
        }

    // Print volume information for all available drives. TVolumeInfo
    // provides drive information, and additional information about
    // the volume. Just print out the volume information.

    TVolumeInfo volumeInfo;

    TInt err=fsSession.Volume(volumeInfo, aDriveNumber);
    if (err!=KErrNotReady)
        // Volume() returns KErrNotReady if no volume present.
        // In this case, check next drive number
        {
        buffer.Zero();
        FormatVolumeInfo(buffer, volumeInfo);
        User::LeaveIfError(fsSession.DriveToChar(aDriveNumber,driveLetter));
        test.Printf(KVolInfo, (TUint)driveLetter, &buffer);
        }
    }