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// Copyright (c) 1996-2009 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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// e32\drivers\medata\pccd_ata.cpp
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//
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//
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#include "pbusmedia.h"
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#include "platform.h"
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#include "ata.h"
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const TInt KErrBadDrqOnRead=-64;
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const TInt KErrBadDrqOnWrite=-65;
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const TInt KErrBadDrq=-66;
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const TInt KErrAta=-67;
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const TInt KErrBadPccdConfig=-68;
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//const TInt KErrDriveChunkNotOpen=-69;
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const TInt KAtaDriverPriority=KMediaDriverPriorityNormal;
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//const TInt KAtaDriverPriority=KMediaDriverPriorityHigh;
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_LIT(KPddName, "Media.Ata");
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//_LIT(KPddName, "Media.Ata2");
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// One of these
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#define SELECT_CONTIGUOUS_IO_CONFIG
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//#define SELECT_PRIMARY_IO_CONFIG
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//#define SELECT_MEMORY_CONFIG
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//#define FORCE_8BIT_ACCESSES
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// Special debug options
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//#define SHOW_CARD_ERRORS
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//#define DEBUG_WITH_HW_TRIGGER
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//#define COUNT_TIMEOUTS
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#if (defined(SHOW_CARD_ERRORS))
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#define __KTRACE_CARD_ERROR(a,p) {p;}
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#elif (defined(_DEBUG))
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#define __KTRACE_CARD_ERROR(a,p) {if((KDebugNum(a)))p;}
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#else
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#define __KTRACE_CARD_ERROR(a,p)
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#endif
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#include <pccard.h>
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const TInt KMaxSectorsPerRead=32;
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const TInt KMaxSectorsPerWrite=8;
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const TInt KMaxSectorsPerFormat=8;
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const TInt KMaxBytesPerRead=(KMaxSectorsPerRead<<KAtaSectorShift);
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const TInt KMaxBytesPerWrite=(KMaxSectorsPerWrite<<KAtaSectorShift);
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// Sector buffer size must be a multiple of sector size and at least as large
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// as KMaxSectorsPerWrite.
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const TInt KSectBufSizeInSectors=8;
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const TInt KSectBufSizeInBytes=(KSectBufSizeInSectors<<KAtaSectorShift);
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const TInt KSectBufSizeInBytesMinusOneSector=(KSectBufSizeInBytes-KAtaSectorSize);
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const TInt KIdleCurrentInMilliAmps=1;
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const TInt KReadCurrentInMilliAmps=39;
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const TInt KWriteCurrentInMilliAmps=46;
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const TInt KNotBusySyncTimeout=5;
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const TInt KNotBusySyncRetryCount=10;
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const TInt KDriveReadySyncTimeout=5;
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#ifdef _DEBUG
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const TInt KNotBusyTestInterval=30; // Check for not-busy once every 30ms
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const TInt KBusyTimeOut=67; // Timeout after this many tests (67*30ms=2010ms)
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#else
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const TInt KNotBusyTestInterval=5; // Check for not-busy once every 5ms
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const TInt KBusyTimeOut=400; // Timeout after this many tests (400*5ms=2010ms)
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#endif
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class DPhysicalDeviceMediaAta : public DPhysicalDevice
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{
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public:
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DPhysicalDeviceMediaAta();
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virtual TInt Install();
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virtual void GetCaps(TDes8& aDes) const;
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virtual TInt Create(DBase*& aChannel, TInt aMediaId, const TDesC8* anInfo, const TVersion& aVer);
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virtual TInt Validate(TInt aDeviceType, const TDesC8* anInfo, const TVersion& aVer);
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virtual TInt Info(TInt aFunction, TAny* a1);
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};
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class DPcCardMediaDriverAta : public DMediaDriver
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{
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public:
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DPcCardMediaDriverAta(TInt aMediaId);
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virtual TInt Request(TLocDrvRequest& aRequest);
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virtual TInt PartitionInfo(TPartitionInfo& anInfo);
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virtual void NotifyPowerDown();
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virtual void NotifyEmergencyPowerDown();
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virtual void Close();
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public:
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enum TCardStatus {ECardIdle,ECardRead,ECardWrite,ECardFormat};
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inline TUint8 AtaRegister8(TUint aReg);
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inline void SetAtaRegister8(TUint8 aValue,TUint aReg);
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void ModifyAtaRegister8(TUint aClearMask,TUint aSetMask,TUint aReg);
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void SelectDrive(TAtaDriveSelect aDrive);
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TBool WaitForNotBusy();
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TBool DriveReadyForCommand(TInt aDrive);
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void SetLbaSectorAddress(TUint aSector);
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void SetChsSectorAddress(TUint aSector);
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TInt IssueAtaCommand(TUint8 aCmd,TUint aFirstSector,TInt aSectorCount);
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TInt EmptySectBufferToTrg(TUint8 *aSrc,TUint aTrgOffset,TInt aLen);
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TInt LoadSectBufferFromSrc(TInt aLen, TUint8* aBuf);
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TInt LoadSectBufferFromDrive(TAny *aBuf);
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TInt EmptySectBufferToDrive(TUint8 *aBuf);
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TInt TransferSectBufferFromDrive(TAny *aBuf);
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TInt FinishCommand();
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TInt CheckForError();
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TInt ProcessError(TInt anError);
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TInt SectorBoundaryReadCheck(TUint aStartSector,TUint aStartSectOffset,Int64 anEndPos);
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TInt SectorRead(TUint aFirstSector,TUint8 *aBuf,TInt aSectorCount=1,TUint8 aCmd=KAtaCmdReadSectors);
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TInt CheckDevice(TBool aCheckPower);
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TInt InitiateWriteCommand(TUint aFirstSector,TInt aSectorCount,TUint8 *aSectBuffer);
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TInt ReadSectorsCommand(TUint aFirstSector,TUint aBufOffset,TInt aLen);
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TInt IdentifyDrive();
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void DumpIdentifyDriveInfo();
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TInt ConfigAutoPowerDown();
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TInt Open();
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TInt DoOpen();
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void DoClose();
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void Reset();
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TBool CardPoweredDown();
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void IncrementSectBufPtr();
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static void CardIreqDfcFunction(TAny* aPtr);
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static void TimerDfcFunction(TAny* aPtr);
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static void AsyncBusyTimerCallBack(TAny* aMediaDriver);
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static void SyncBusyTimerCallBack(TAny* aBusyFlag);
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static void CardIntCallBack(TAny* aPtr, TInt anId);
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TBool DoCardNotBusy(TInt &anErr);
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TBool CmdDfc();
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TBool DoCmdDfc(TInt &anErr);
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void Complete(TInt anError);
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TInt Caps(TLocalDriveCapsV6& anInfo);
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TInt DoRead();
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TInt DoWrite();
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TInt DoFormat();
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TInt InitiateAsyncRead();
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TInt InitiateAsyncWrite();
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public:
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DPcCardSocket* iSocket;
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TLocDrvRequest* iCurrentReq;
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TPBusCallBack iCardIntCallBack;
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RPccdWindow iDriveChunk;
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TPccdMemType iMemoryType;
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TDriveParameters iDriveInfo;
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NTimer iBusyTimeout;
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TDfc iCardIreqDfc;
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TDfc iTimerDfc;
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TInt iNotBusyTickCount;
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TInt iCommandError;
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TCardStatus iCardStatus;
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TUint iCmdInOffset; // Progress counter for data received from src device
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TUint iCmdOutOffset; // Progress counter for data delivered to target device
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TUint iCmdEndOffset; // Marks point when transfer associated with command is complete
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TUint iCmdLength; // Transfer length remaining
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TUint iNextSector; // Next sector to transfer
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TUint8 *iSectBufPtr; // Progress counter for tranfering data between card and sector buffer
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TUint iSectBufOffset; // Offset within sector buffer to start of data involved in command (Reads only)
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TBool iLastSectorBufUsed;
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TUint iHiddenSectors;
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TInt iCardFuncNum;
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TUint8 iSectorBuf[KSectBufSizeInBytes]; // Keep on 4byte boundary - put this last
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TUint8 iLastSectorBuf[KAtaSectorSize]; // Holds last sector data for unaligned write
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#if (defined(_DEBUG) || defined(SHOW_CARD_ERRORS))
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TInt iDbgLastError;
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TInt iDbgPos;
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TInt iDbgLen;
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#endif
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#ifdef COUNT_TIMEOUTS
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TInt iInts;
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TInt iTimeouts;
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TInt iImmediateNotBusy;
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TInt iChainedReads;
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TInt iChainedWrites;
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TBool iNewTimeOut;
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TInt iIndex;
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TInt iInfo[8];
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#endif
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};
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void DPcCardMediaDriverAta::Complete(TInt anError)
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{
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__KTRACE_OPT(KFAIL,Kern::Printf("mdrqc %08x %d",iCurrentReq,anError));
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#ifdef COUNT_TIMEOUTS
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if (iNewTimeOut)
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{
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iNewTimeOut=EFalse;
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Kern::Printf("I=%d T=%d M=%d CR=%d CW=%d",iInts,iTimeouts,iImmediateNotBusy,iChainedReads,iChainedWrites);
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TInt i;
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for (i=0; i<iIndex; i+=2)
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Kern::Printf("%d: %08x %08x",i,iInfo[i],iInfo[i+1]);
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iIndex=0;
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}
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#endif
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TLocDrvRequest* pR=iCurrentReq;
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if (pR)
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{
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iCurrentReq=NULL;
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DMediaDriver::Complete(*pR,anError);
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}
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}
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inline TUint8 DPcCardMediaDriverAta::AtaRegister8(TUint aReg)
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//
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// Read from an 8 bit ATA register
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//
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{
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return iDriveChunk.Read8(aReg);
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}
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inline void DPcCardMediaDriverAta::SetAtaRegister8(TUint8 aValue,TUint aReg)
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//
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// Write to an 8 bit ATA register
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//
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{
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iDriveChunk.Write8(aReg,aValue);
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}
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void DPcCardMediaDriverAta::ModifyAtaRegister8(TUint aClearMask,TUint aSetMask,TUint aReg)
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//
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// Modify an 8 bit ATA register
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//
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{
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SetAtaRegister8((TUint8)((AtaRegister8(aReg)&(~aClearMask))|aSetMask),aReg);
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}
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void DPcCardMediaDriverAta::SelectDrive(TAtaDriveSelect aDrive)
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//
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// Modify an 8 bit ATA register
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//
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{
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ModifyAtaRegister8(KAtaDrvHeadDrive1,(0xA0|aDrive),KAtaSelectDriveHeadRdWr8);
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}
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TBool DPcCardMediaDriverAta::WaitForNotBusy()
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//
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// Poll busy flag (while card accesses the data buffer and command register).
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// 8mS timeout.
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//
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{
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// Before we start a timed loop, just check it isn't already not busy
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__KTRACE_OPT(KPBUSDRV,Kern::Printf("WfnB"));
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if (!(AtaRegister8(KAtaStatusRd8)&KAtaStatusBusy))
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return(ETrue);
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#if (defined(_DEBUG) || defined(SHOW_CARD_ERRORS))
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TUint c=NKern::TickCount();
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#endif
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volatile TBool timedOut=EFalse;
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NTimer busyTimeout(SyncBusyTimerCallBack,(TAny*)&timedOut);
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busyTimeout.OneShot(NKern::TimerTicks(KNotBusySyncTimeout));
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FOREVER
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{
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if (!(AtaRegister8(KAtaStatusRd8)&KAtaStatusBusy)||timedOut)
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break;
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}
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if (!timedOut)
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busyTimeout.Cancel();
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else
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{
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TInt retry=KNotBusySyncRetryCount;
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while ((AtaRegister8(KAtaStatusRd8)&KAtaStatusBusy) && retry)
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{
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NKern::Sleep(1);
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retry--;
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}
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}
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TBool ret=(AtaRegister8(KAtaStatusRd8) & KAtaStatusBusy);
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#if (defined(_DEBUG) || defined(SHOW_CARD_ERRORS))
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c=NKern::TickCount()-c;
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if (ret)
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{
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__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf("<Ata:WaitForNotBusy-timeout(%xH) %d ms",AtaRegister8(KAtaStatusRd8),c));
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}
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else
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{
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__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf("<Ata:WaitForNotBusy-OK %d ms",c));
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}
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#endif
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return(!ret);
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}
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TBool DPcCardMediaDriverAta::DriveReadyForCommand(TInt aDrive)
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//
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// Wait until selected drive is able to accept a command (5ms timeout).
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//
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{
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// Select the drive were waiting on
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SelectDrive((aDrive==1)?ESelectDrive1:ESelectDrive0);
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if (!WaitForNotBusy())
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return(EFalse);
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volatile TBool timedOut=EFalse;
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NTimer busyTimeout(SyncBusyTimerCallBack,(TAny*)&timedOut);
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busyTimeout.OneShot(NKern::TimerTicks(KDriveReadySyncTimeout));
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FOREVER
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{
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if (AtaRegister8(KAtaStatusRd8)&KAtaStatusRdy||timedOut)
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break;
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}
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if (!timedOut)
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busyTimeout.Cancel();
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TBool ret=(AtaRegister8(KAtaStatusRd8) & KAtaStatusRdy);
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#if (defined(_DEBUG) || defined(SHOW_CARD_ERRORS))
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if (!ret)
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__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf("<Ata:DriveReadyForCommand-Fail(%xH)",AtaRegister8(KAtaStatusRd8)));
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#endif
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return(ret);
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}
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void DPcCardMediaDriverAta::SetLbaSectorAddress(TUint aSector)
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//
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// Setup the sector address ATA registers (LBA mode)
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//
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{
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__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:SetLbaSectorAddress (LBA: %xH)",aSector));
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SetAtaRegister8((TUint8)aSector,KAtaLba7_0RdWr8);
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SetAtaRegister8((TUint8)(aSector>>8),KAtaLba15_8RdWr8);
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SetAtaRegister8((TUint8)(aSector>>16),KAtaLba23_16RdWr8);
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TUint8 lba27_24=(TUint8)((aSector>>24)&0x0F);
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ModifyAtaRegister8(KAtaDrvHeadLba27_24,(KAtaDrvHeadLbaOn|lba27_24),KAtaSelectDriveHeadRdWr8);
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}
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void DPcCardMediaDriverAta::SetChsSectorAddress(TUint aSector)
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//
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// Setup the sector address ATA registers (CHS mode)
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//
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{
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TUint cylinder=0,head=0,sector=1;
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if (iDriveInfo.iSectorsPerCylinder>0&&iDriveInfo.iSectorsPerTrack>0)
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{
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cylinder=aSector/iDriveInfo.iSectorsPerCylinder;
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TUint remainder=aSector%iDriveInfo.iSectorsPerCylinder;
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head=remainder/iDriveInfo.iSectorsPerTrack;
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sector=(remainder%iDriveInfo.iSectorsPerTrack)+1;
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}
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__KTRACE_OPT(KPBUSDRV,Kern::Printf("Ata:SetChsSectorAddress (C: %xH H: %xH S: %xH)",cylinder,head,sector));
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SetAtaRegister8((TUint8)sector,KAtaSectorNoRdWr8);
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SetAtaRegister8((TUint8)cylinder,KAtaCylinderLowRdWr8);
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SetAtaRegister8((TUint8)(cylinder>>8),KAtaCylinderHighRdWr8);
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ModifyAtaRegister8((KAtaDrvHeadLbaOn|KAtaDrvHeadLba27_24),((TUint8)(head&0x0F)),KAtaSelectDriveHeadRdWr8);
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}
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TInt DPcCardMediaDriverAta::IssueAtaCommand(TUint8 aCmd,TUint aFirstSector,TInt aSectorCount)
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//
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|
368 |
// Issue an ATA command (Drive 0 only for now).
|
|
369 |
//
|
|
370 |
{
|
|
371 |
|
|
372 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:IssueAtaCommand(C:%x, FS:%x, SC:%x)",aCmd,aFirstSector,aSectorCount));
|
|
373 |
__KTRACE_OPT(KFAIL,Kern::Printf("A%02x,%d",aCmd,aSectorCount));
|
|
374 |
if (!WaitForNotBusy())
|
|
375 |
return(KErrTimedOut);
|
|
376 |
if (!DriveReadyForCommand(0))
|
|
377 |
return KErrTimedOut;
|
|
378 |
|
|
379 |
if (aSectorCount==KMaxSectorsPerCmd)
|
|
380 |
aSectorCount=0;
|
|
381 |
SetAtaRegister8((TUint8)aSectorCount,KAtaSectorCountRdWr8);
|
|
382 |
if (iDriveInfo.iSupportsLba)
|
|
383 |
SetLbaSectorAddress(aFirstSector);
|
|
384 |
else
|
|
385 |
SetChsSectorAddress(aFirstSector);
|
|
386 |
__TRACE_TIMING(0x103);
|
|
387 |
SetAtaRegister8(aCmd,KAtaCommandWr8); // Issue the command
|
|
388 |
Kern::NanoWait(400); // Busy flag not asserted for 400ns
|
|
389 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("<Ata:IssueAtaCommand"));
|
|
390 |
return(KErrNone);
|
|
391 |
}
|
|
392 |
|
|
393 |
TInt DPcCardMediaDriverAta::LoadSectBufferFromDrive(TAny *aBuf)
|
|
394 |
//
|
|
395 |
// Read a sector from the ATA card
|
|
396 |
//
|
|
397 |
{
|
|
398 |
|
|
399 |
if (!(AtaRegister8(KAtaStatusRd8)&KAtaStatusDrq))
|
|
400 |
{
|
|
401 |
__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf(">Ata:LoadSectBufferFromDrive-Bad drq(%xH)",AtaRegister8(KAtaStatusRd8)));
|
|
402 |
return KErrBadDrqOnRead;
|
|
403 |
}
|
|
404 |
|
|
405 |
if (__IS_COMMON_MEM(iMemoryType))
|
|
406 |
iDriveChunk.Read(KAtaDataRdWrWinBase16,aBuf,KAtaSectorSize); // Use 1K window
|
|
407 |
else if (iMemoryType==EPccdIo16Mem)
|
|
408 |
iDriveChunk.ReadHWordMultiple(KAtaDataRdWr16,aBuf,(KAtaSectorSize>>1));
|
|
409 |
else
|
|
410 |
iDriveChunk.ReadByteMultiple(KAtaDataRdWr8,aBuf,KAtaSectorSize); // Must be EPccdIo8Mem
|
|
411 |
|
|
412 |
return(KErrNone);
|
|
413 |
}
|
|
414 |
|
|
415 |
TInt DPcCardMediaDriverAta::TransferSectBufferFromDrive(TAny *aBuf)
|
|
416 |
//
|
|
417 |
// Read a sector from the ATA card
|
|
418 |
//
|
|
419 |
{
|
|
420 |
|
|
421 |
if (!WaitForNotBusy())
|
|
422 |
return(KErrTimedOut);
|
|
423 |
return(LoadSectBufferFromDrive(aBuf));
|
|
424 |
}
|
|
425 |
|
|
426 |
TInt DPcCardMediaDriverAta::EmptySectBufferToDrive(TUint8 *aBuf)
|
|
427 |
//
|
|
428 |
// Write a sector to the ATA card.
|
|
429 |
//
|
|
430 |
{
|
|
431 |
|
|
432 |
if (!(AtaRegister8(KAtaStatusRd8)&KAtaStatusDrq))
|
|
433 |
{
|
|
434 |
__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf(">Ata:EmptySectBufferToDrive-Bad drq(%xH)",AtaRegister8(KAtaStatusRd8)));
|
|
435 |
return KErrBadDrqOnWrite;
|
|
436 |
}
|
|
437 |
|
|
438 |
if (__IS_COMMON_MEM(iMemoryType))
|
|
439 |
iDriveChunk.Write(KAtaDataRdWrWinBase16,aBuf,KAtaSectorSize); // Use 1K window
|
|
440 |
else if (iMemoryType==EPccdIo16Mem)
|
|
441 |
iDriveChunk.WriteHWordMultiple(KAtaDataRdWr16,aBuf,(KAtaSectorSize>>1));
|
|
442 |
else
|
|
443 |
iDriveChunk.WriteByteMultiple(KAtaDataRdWr8,aBuf,KAtaSectorSize); // Must be EPccdIo8Mem
|
|
444 |
|
|
445 |
return(KErrNone);
|
|
446 |
}
|
|
447 |
|
|
448 |
TInt DPcCardMediaDriverAta::FinishCommand()
|
|
449 |
//
|
|
450 |
// Called each time a command has been issued to check if an error occured.
|
|
451 |
//
|
|
452 |
{
|
|
453 |
|
|
454 |
if (!WaitForNotBusy())
|
|
455 |
return(KErrTimedOut);
|
|
456 |
return(CheckForError());
|
|
457 |
}
|
|
458 |
|
|
459 |
TInt DPcCardMediaDriverAta::CheckForError()
|
|
460 |
//
|
|
461 |
// Called each time a command has been issued to check if an error occured.
|
|
462 |
//
|
|
463 |
{
|
|
464 |
|
|
465 |
TUint8 status=AtaRegister8(KAtaStatusRd8);
|
|
466 |
if (status&KAtaStatusDrq)
|
|
467 |
{
|
|
468 |
__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf("Ata:CheckForError-DRQ fail"));
|
|
469 |
return KErrBadDrq;
|
|
470 |
}
|
|
471 |
if (status&KAtaStatusDwf)
|
|
472 |
{
|
|
473 |
__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf("Ata:CheckForError-DWF fail"));
|
|
474 |
return(KErrWrite);
|
|
475 |
}
|
|
476 |
if (status&KAtaStatusErr)
|
|
477 |
{
|
|
478 |
__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf("Ata:CheckForError-ERR fail"));
|
|
479 |
return KErrAta;
|
|
480 |
}
|
|
481 |
return(KErrNone);
|
|
482 |
}
|
|
483 |
|
|
484 |
TInt DPcCardMediaDriverAta::ProcessError(TInt anError)
|
|
485 |
//
|
|
486 |
// An error has occured - lets get more information
|
|
487 |
//
|
|
488 |
{
|
|
489 |
|
|
490 |
if (anError==KErrAta&&AtaRegister8(KAtaStatusRd8)&KAtaStatusErr)
|
|
491 |
{
|
|
492 |
TUint8 basic=AtaRegister8(KAtaErrorRd8);
|
|
493 |
#if (defined(__EPOC32__) && (defined(_DEBUG) || defined(SHOW_CARD_ERRORS)))
|
|
494 |
TUint8 extended=0xFF; // invalid
|
|
495 |
SetAtaRegister8(KAtaCmdRequestSense,KAtaCommandWr8); // Issue command - request sense
|
|
496 |
Kern::NanoWait(400); // Busy flag not asserted for 400ns
|
|
497 |
WaitForNotBusy();
|
|
498 |
if (!(AtaRegister8(KAtaStatusRd8)&KAtaStatusErr))
|
|
499 |
extended=AtaRegister8(KAtaErrorRd8);
|
|
500 |
__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf("Ata:ProcessError-Basic:%xH Ext:%xH)",basic,extended));
|
|
501 |
#endif
|
|
502 |
if (basic&KAtaErrorUnc)
|
|
503 |
return(KErrDied);
|
|
504 |
else if (basic&(KAtaErrorBbk|KAtaErrorIdnf))
|
|
505 |
return(KErrCorrupt);
|
|
506 |
else if (basic&KAtaErrorAbort)
|
|
507 |
return(KErrCancel);
|
|
508 |
else
|
|
509 |
return(KErrUnknown);
|
|
510 |
}
|
|
511 |
else
|
|
512 |
return(anError);
|
|
513 |
}
|
|
514 |
|
|
515 |
TInt DPcCardMediaDriverAta::EmptySectBufferToTrg(TUint8 *aSrc,TUint aTrgOffset,TInt aLen)
|
|
516 |
//
|
|
517 |
// Empty data from sector buffer (at specified offset within buffer) into
|
|
518 |
// destination descriptor.
|
|
519 |
//
|
|
520 |
{
|
|
521 |
|
|
522 |
TPtrC8 buf(aSrc,aLen);
|
|
523 |
return iCurrentReq->WriteRemote(&buf,aTrgOffset);
|
|
524 |
}
|
|
525 |
|
|
526 |
TInt DPcCardMediaDriverAta::LoadSectBufferFromSrc(TInt aLen, TUint8* aBuf)
|
|
527 |
//
|
|
528 |
// Load data from source descriptor into sector buffer
|
|
529 |
// Always called within exec. function.
|
|
530 |
//
|
|
531 |
{
|
|
532 |
|
|
533 |
TPtr8 buf(aBuf,aLen);
|
|
534 |
TInt r=iCurrentReq->ReadRemote(&buf,iCmdInOffset);
|
|
535 |
return r;
|
|
536 |
}
|
|
537 |
|
|
538 |
TInt DPcCardMediaDriverAta::ReadSectorsCommand(TUint aFirstSector,TUint aBufOffset,TInt aLen)
|
|
539 |
//
|
|
540 |
// Start off a read of multiple sectors from the drive (command completed under interrupt/dfc).
|
|
541 |
//
|
|
542 |
{
|
|
543 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:ReadSectors F:%x Off:%x L:%x",aFirstSector,aBufOffset,aLen));
|
|
544 |
|
|
545 |
__ASSERT_DEBUG(aBufOffset<(TUint)KAtaSectorSize,Kern::PanicCurrentThread(_L("ReadSectorsCommand"),0));
|
|
546 |
__ASSERT_DEBUG(aLen>0,Kern::PanicCurrentThread(_L("ReadSectorsCommand"),0));
|
|
547 |
|
|
548 |
// Sector count - allow for not starting on sector boundary by adding buffer offset. Allow for
|
|
549 |
// not ending on sector boundary by adding sectorsize-1. Then divide by sector size.
|
|
550 |
TInt tferSectorCount=(aLen+aBufOffset+KAtaSectorSizeMinusOne)>>KAtaSectorShift;
|
|
551 |
iNextSector+=tferSectorCount;
|
|
552 |
__ASSERT_DEBUG(tferSectorCount<=KMaxSectorsPerRead,Kern::PanicCurrentThread(_L("ReadSectorsCommand"),0));
|
|
553 |
|
|
554 |
if (!iSocket->CardIsReady())
|
|
555 |
return(KErrNotReady);
|
|
556 |
AtaRegister8(KAtaStatusRd8); // Clear any pending interrupt
|
|
557 |
iSocket->InterruptEnable(EPccdIntIReq,0); // Enable card interrupt
|
|
558 |
TInt err=IssueAtaCommand(KAtaCmdReadSectors,aFirstSector,tferSectorCount);
|
|
559 |
if (err!=KErrNone)
|
|
560 |
{
|
|
561 |
iSocket->InterruptDisable(EPccdIntIReq); // Disable card interrupt
|
|
562 |
iCardIreqDfc.Cancel();
|
|
563 |
return err;
|
|
564 |
}
|
|
565 |
iCommandError=KErrNone;
|
|
566 |
iNotBusyTickCount=KBusyTimeOut;
|
|
567 |
iBusyTimeout.OneShot(NKern::TimerTicks(KNotBusyTestInterval));
|
|
568 |
return(KErrNone);
|
|
569 |
}
|
|
570 |
|
|
571 |
TInt DPcCardMediaDriverAta::InitiateWriteCommand(TUint aFirstSector,TInt aSectorCount,TUint8 *aSectBuffer)
|
|
572 |
//
|
|
573 |
// Start off an asynchronous write to the card. If successful, it leaves with a
|
|
574 |
// timeout(ms timer) queued and card interrupts enabled.
|
|
575 |
//
|
|
576 |
{
|
|
577 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:InitWrCmd F:%x C:%x",aFirstSector,aSectorCount));
|
|
578 |
|
|
579 |
__ASSERT_DEBUG((aSectorCount>0 && aSectorCount<=KMaxSectorsPerWrite),Kern::PanicCurrentThread(_L("InitiateWriteCommand"),0));
|
|
580 |
|
|
581 |
TInt err=IssueAtaCommand(KAtaCmdWriteSectors,aFirstSector,aSectorCount);
|
|
582 |
if (err!=KErrNone)
|
|
583 |
return(err);
|
|
584 |
if (!iSocket->CardIsReady())
|
|
585 |
return(KErrNotReady);
|
|
586 |
if (!WaitForNotBusy())
|
|
587 |
return(ProcessError(KErrTimedOut));
|
|
588 |
AtaRegister8(KAtaStatusRd8); // Clear any pending interrupt
|
|
589 |
iSocket->InterruptEnable(EPccdIntIReq,0); // Enable card interrupt
|
|
590 |
err=EmptySectBufferToDrive(aSectBuffer);
|
|
591 |
if (err!=KErrNone)
|
|
592 |
{
|
|
593 |
iSocket->InterruptDisable(EPccdIntIReq); // Disable card interrupt
|
|
594 |
iCardIreqDfc.Cancel();
|
|
595 |
return(ProcessError(err));
|
|
596 |
}
|
|
597 |
iCommandError=KErrNone;
|
|
598 |
iNotBusyTickCount=KBusyTimeOut;
|
|
599 |
iBusyTimeout.OneShot(NKern::TimerTicks(KNotBusyTestInterval));
|
|
600 |
iNextSector+=aSectorCount;
|
|
601 |
return(KErrNone);
|
|
602 |
}
|
|
603 |
|
|
604 |
TInt DPcCardMediaDriverAta::SectorBoundaryReadCheck(TUint aStartSector,TUint aStartSectOffset,Int64 anEndPos)
|
|
605 |
//
|
|
606 |
// Check for write request which doesn't lie entirely on a sector boundary and perform
|
|
607 |
// the appropriate sectors reads prior to writing if necessary
|
|
608 |
//
|
|
609 |
{
|
|
610 |
|
|
611 |
TInt err;
|
|
612 |
TUint endSectOffset=((TUint)anEndPos&(~KAtaSectorMask));
|
|
613 |
anEndPos-=1;
|
|
614 |
anEndPos>>=KAtaSectorShift;
|
|
615 |
TUint endSector=(TUint)anEndPos; // Sector number can't exceed 32bits
|
|
616 |
TInt sectors=(endSector-aStartSector)+1;
|
|
617 |
iLastSectorBufUsed=EFalse;
|
|
618 |
|
|
619 |
if (aStartSectOffset||endSectOffset)
|
|
620 |
{
|
|
621 |
// If it requires a read of two consecutive sectors then read them in one go
|
|
622 |
if (aStartSectOffset && endSectOffset && sectors==2)
|
|
623 |
return(SectorRead(aStartSector,&iSectorBuf[0],2,KAtaCmdReadSectors));
|
|
624 |
else
|
|
625 |
{
|
|
626 |
// If write starts off a sector boundary or is a single sector write ending
|
|
627 |
// off a sector boundary then read first sector
|
|
628 |
if (aStartSectOffset || (endSectOffset && sectors==1))
|
|
629 |
{
|
|
630 |
if ((err=SectorRead(aStartSector,&iSectorBuf[0]))!=KErrNone)
|
|
631 |
return(err);
|
|
632 |
}
|
|
633 |
// If write doesn't end on a sector boundary then read the last sector
|
|
634 |
if (endSectOffset && sectors>1)
|
|
635 |
{
|
|
636 |
TUint8* p=iSectorBuf;
|
|
637 |
if (sectors<=KMaxSectorsPerWrite)
|
|
638 |
p+=(sectors-1)<<KAtaSectorShift;
|
|
639 |
else
|
|
640 |
{
|
|
641 |
p=iLastSectorBuf;
|
|
642 |
iLastSectorBufUsed=ETrue;
|
|
643 |
}
|
|
644 |
return(SectorRead(endSector,p));
|
|
645 |
}
|
|
646 |
}
|
|
647 |
}
|
|
648 |
return(KErrNone);
|
|
649 |
}
|
|
650 |
|
|
651 |
TInt DPcCardMediaDriverAta::SectorRead(TUint aFirstSector,TUint8 *aBuf,TInt aSectorCount,TUint8 aCmd)
|
|
652 |
//
|
|
653 |
// Read either 1 or 2 sectors into the sector buffer (synchronously)
|
|
654 |
//
|
|
655 |
{
|
|
656 |
|
|
657 |
TInt err;
|
|
658 |
if ( (err=IssueAtaCommand(aCmd,aFirstSector,aSectorCount))==KErrNone)
|
|
659 |
{
|
|
660 |
if (
|
|
661 |
(err=TransferSectBufferFromDrive(aBuf))!=KErrNone||
|
|
662 |
(aSectorCount>1&&(err=TransferSectBufferFromDrive((TAny*)(aBuf+KAtaSectorSize)))!=KErrNone)||
|
|
663 |
(err=FinishCommand())!=KErrNone
|
|
664 |
)
|
|
665 |
err=ProcessError(err);
|
|
666 |
}
|
|
667 |
if (!iSocket->CardIsReady())
|
|
668 |
err=KErrNotReady; // If media change - return not ready rather than anything else.
|
|
669 |
return(err);
|
|
670 |
}
|
|
671 |
|
|
672 |
void DPcCardMediaDriverAta::DumpIdentifyDriveInfo()
|
|
673 |
//
|
|
674 |
// Debug option to display the drive indentification info.
|
|
675 |
//
|
|
676 |
{
|
|
677 |
#ifdef _DEBUG
|
|
678 |
if (KDebugNum(KPBUSDRV))
|
|
679 |
{
|
|
680 |
for (TInt i=0;i<128;i+=8)
|
|
681 |
{
|
|
682 |
Kern::Printf("%02x%02x %02x%02x %02x%02x %02x%02x",iSectorBuf[i],iSectorBuf[i+1],iSectorBuf[i+2],iSectorBuf[i+3],iSectorBuf[i+4],\
|
|
683 |
iSectorBuf[i+5],iSectorBuf[i+6],iSectorBuf[i+7]);
|
|
684 |
}
|
|
685 |
}
|
|
686 |
#endif
|
|
687 |
}
|
|
688 |
|
|
689 |
TInt DPcCardMediaDriverAta::IdentifyDrive()
|
|
690 |
//
|
|
691 |
// Get drive charateristics
|
|
692 |
//
|
|
693 |
{
|
|
694 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:IdentifyDrive"));
|
|
695 |
|
|
696 |
TInt err;
|
|
697 |
if ((err=SectorRead(0,&iSectorBuf[0],1,KAtaCmdIdentifyDrive))!=KErrNone)
|
|
698 |
return(err);
|
|
699 |
|
|
700 |
DumpIdentifyDriveInfo();
|
|
701 |
TBool lba=EFalse;
|
|
702 |
Int64 s=0;
|
|
703 |
if (*(TUint16*)(&iSectorBuf[KAtaIdCapabilities])&KAtaIdCapLbaSupported)
|
|
704 |
{
|
|
705 |
// Card indicates it supports LBA
|
|
706 |
// Media size (in sectors) - 2 x halfwords @ KAtaIdTotalSectorsInLba.
|
|
707 |
iDriveInfo.iTotalSectorsInLba=*(TInt*)(&iSectorBuf[KAtaIdTotalSectorsInLba]);
|
|
708 |
s=iDriveInfo.iTotalSectorsInLba;
|
|
709 |
s<<=KAtaSectorShift;
|
|
710 |
if (s>0)
|
|
711 |
lba=ETrue; // Epson PC card reports LBA supported but LBA size in bytes becomes zero
|
|
712 |
}
|
|
713 |
|
|
714 |
iDriveInfo.iSupportsLba = lba;
|
|
715 |
if (!lba)
|
|
716 |
{
|
|
717 |
// LBA not supported
|
|
718 |
if (*(TUint16*)(&iSectorBuf[KAtaIdTranslationParams])&KAtaIdTrParamsValid)
|
|
719 |
{
|
|
720 |
// Current translation parameters are valid
|
|
721 |
iDriveInfo.iCylinders=*(TUint16*)(&iSectorBuf[KAtaIdCurrentCylinders]);
|
|
722 |
iDriveInfo.iHeads=*(TUint16*)(&iSectorBuf[KAtaIdCurrentHeads]);
|
|
723 |
iDriveInfo.iSectorsPerTrack=*(TUint16*)(&iSectorBuf[KAtaIdCurrentSectorsPerTrack]);
|
|
724 |
}
|
|
725 |
else
|
|
726 |
{
|
|
727 |
// Use defaults
|
|
728 |
iDriveInfo.iCylinders=*(TUint16*)(&iSectorBuf[KAtaIdDefaultCylinders]);
|
|
729 |
iDriveInfo.iHeads=*(TUint16*)(&iSectorBuf[KAtaIdDefaultHeads]);
|
|
730 |
iDriveInfo.iSectorsPerTrack=*(TUint16*)(&iSectorBuf[KAtaIdDefaultSectorsPerTrack]);
|
|
731 |
}
|
|
732 |
iDriveInfo.iSectorsPerCylinder=(iDriveInfo.iHeads*iDriveInfo.iSectorsPerTrack);
|
|
733 |
s=iDriveInfo.iCylinders;
|
|
734 |
s*=iDriveInfo.iSectorsPerCylinder;
|
|
735 |
s<<=KAtaSectorShift;
|
|
736 |
if (iDriveInfo.iSectorsPerCylinder<=0||iDriveInfo.iSectorsPerTrack<=0)
|
|
737 |
return(KErrCorrupt);
|
|
738 |
}
|
|
739 |
|
|
740 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("LBA : %xH",iDriveInfo.iSupportsLba));
|
|
741 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("Cylinders: %xH",iDriveInfo.iCylinders));
|
|
742 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("Heads : %xH",iDriveInfo.iHeads));
|
|
743 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("Sectors : %xH",iDriveInfo.iSectorsPerTrack));
|
|
744 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("<Ata:IdentifyDrive (TS:%lxH)",s));
|
|
745 |
SetTotalSizeInBytes(s);
|
|
746 |
return(KErrNone);
|
|
747 |
}
|
|
748 |
|
|
749 |
TInt DPcCardMediaDriverAta::ConfigAutoPowerDown()
|
|
750 |
//
|
|
751 |
// Set auto power down period to something sensible
|
|
752 |
//
|
|
753 |
{
|
|
754 |
|
|
755 |
TInt err;
|
|
756 |
if ( (err=IssueAtaCommand(KAtaCmdIdle,0,200))==KErrNone) // 200x5mS=1S (aFirstSector doesn't matter).
|
|
757 |
{
|
|
758 |
if ((err=FinishCommand())!=KErrNone)
|
|
759 |
err=ProcessError(err);
|
|
760 |
}
|
|
761 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("<Ata:ConfigAutoPowerDown-%d",err));
|
|
762 |
return(err);
|
|
763 |
}
|
|
764 |
|
|
765 |
TInt DPcCardMediaDriverAta::DoOpen()
|
|
766 |
//
|
|
767 |
// Open the media driver.
|
|
768 |
//
|
|
769 |
{
|
|
770 |
|
|
771 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:DoOpen"));
|
|
772 |
iCardIreqDfc.SetDfcQ(&iSocket->iDfcQ);
|
|
773 |
iTimerDfc.SetDfcQ(&iSocket->iDfcQ);
|
|
774 |
|
|
775 |
// Card ought to be ready but check we haven't had media change (this causes creation of card functions).
|
|
776 |
TInt err=iSocket->CardIsReadyAndVerified(); // this may also fail with OOM or corrupt
|
|
777 |
if (err!=KErrNone)
|
|
778 |
return err;
|
|
779 |
|
|
780 |
// Perform CIS validation - get back info. on card functions present.
|
|
781 |
TPccdType pt;
|
|
782 |
if (iSocket->VerifyCard(pt)!=KErrNone)
|
|
783 |
return(KErrUnknown);
|
|
784 |
|
|
785 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("Ata:DoOpen-Check for ATA function, FuncCount=%d",pt.iFuncCount));
|
|
786 |
|
|
787 |
// Check for ATA fixed disk function.
|
|
788 |
TCisReader cisRd;
|
|
789 |
TInt f;
|
|
790 |
TBool isAta=EFalse;
|
|
791 |
for (f=0;f<pt.iFuncCount;f++)
|
|
792 |
{
|
|
793 |
if (pt.iFuncType[f]==EFixedDiskCard)
|
|
794 |
{
|
|
795 |
// Fixed disk function - check its an ATA.
|
|
796 |
TBuf8<KLargeTplBufSize> tpl;
|
|
797 |
cisRd.SelectCis(iSocket->iSocketNumber,f);
|
|
798 |
// Must start just after FuncId tuple.
|
|
799 |
if (cisRd.FindReadTuple(KCisTplFuncId,tpl)!=KErrNone)
|
|
800 |
continue;
|
|
801 |
while (cisRd.FindReadTuple(KCisTplFunce,tpl)==KErrNone)
|
|
802 |
{
|
|
803 |
if (tpl[2]==0x01 && tpl[3]==0x01) // Interface type - ATA
|
|
804 |
isAta=ETrue;
|
|
805 |
}
|
|
806 |
if (isAta)
|
|
807 |
break;
|
|
808 |
}
|
|
809 |
}
|
|
810 |
if (!isAta)
|
|
811 |
return(KErrUnknown);
|
|
812 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("Ata:DoOpen-Is ATA"));
|
|
813 |
|
|
814 |
// Determine best card configuration
|
|
815 |
cisRd.Restart();
|
|
816 |
TPcCardConfig cf;
|
|
817 |
TInt opt=KInvalidConfOpt;
|
|
818 |
while(cisRd.FindReadConfig(cf)==KErrNone)
|
|
819 |
{
|
|
820 |
if (
|
|
821 |
cf.IsMachineCompatible(iSocket->iSocketNumber,KPccdCompatNoVccCheck) && // Hitachi card has no 3.3V config entry
|
|
822 |
#if defined (SELECT_MEMORY_CONFIG)
|
|
823 |
(cf.iValidChunks==1 && __IS_COMMON_MEM(cf.iChnk[0].iMemType) && cf.iChnk[0].iMemLen==0x800)
|
|
824 |
#elif defined (SELECT_PRIMARY_IO_CONFIG)
|
|
825 |
(cf.iValidChunks==2 && __IS_IO_MEM(cf.iChnk[0].iMemType) && __IS_IO_MEM(cf.iChnk[1].iMemType) && cf.iChnk[0].iMemBaseAddr==0x1F0)
|
|
826 |
#else
|
|
827 |
// Choose 16 byte - contiguous i/o option
|
|
828 |
(cf.iValidChunks==1 && __IS_IO_MEM(cf.iChnk[0].iMemType) && cf.iChnk[0].iMemLen==0x10)
|
|
829 |
#endif
|
|
830 |
)
|
|
831 |
{
|
|
832 |
opt=cf.iConfigOption;
|
|
833 |
break;
|
|
834 |
}
|
|
835 |
}
|
|
836 |
if (opt==KInvalidConfOpt)
|
|
837 |
return(KErrNotSupported);
|
|
838 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("Ata:DoOpen-ConfigOpt(%d)",opt));
|
|
839 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("Ata:DoOpen-Pulsed Ints-%d",(cf.iInterruptInfo&KPccdIntPulse)));
|
|
840 |
|
|
841 |
// Now configure the card. First configure it to memory mode.
|
|
842 |
cf.iConfigOption=0;
|
|
843 |
err=iSocket->RequestConfig(f,this,cf,0);
|
|
844 |
if (err!=KErrNone)
|
|
845 |
return(err);
|
|
846 |
if (cf.iRegPresent&KConfigAndStatusRegM)
|
|
847 |
iSocket->WriteConfigReg(f,KConfigAndStatusReg,0);
|
|
848 |
if (cf.iRegPresent&KSocketAndCopyRegM)
|
|
849 |
iSocket->WriteConfigReg(f,KSocketAndCopyReg,0); // No twin cards
|
|
850 |
iSocket->ReleaseConfig(f,this);
|
|
851 |
|
|
852 |
cf.iConfigOption=(cf.iInterruptInfo&KPccdIntPulse)?opt:(opt|KConfOptLevIReqM);
|
|
853 |
// cf.iConfigOption=(opt|KConfOptLevIReqM); // Force level mode interrupts
|
|
854 |
#if defined (FORCE_8BIT_ACCESSES)
|
|
855 |
#if defined (SELECT_MEMORY_CONFIG)
|
|
856 |
cf.iChnk[0].iMemType=EPccdCommon8Mem; // Force it to 8bit Common.
|
|
857 |
#else
|
|
858 |
cf.iChnk[0].iMemType=EPccdIo8Mem; // Force it to 8bit I/O.
|
|
859 |
#endif
|
|
860 |
#endif
|
|
861 |
|
|
862 |
if ((err=iSocket->RequestConfig(f,this,cf,0))!=KErrNone)
|
|
863 |
return(err);
|
|
864 |
|
|
865 |
// Read back the config option register to verify it has been setup
|
|
866 |
TUint8 v;
|
|
867 |
if ((err=iSocket->ReadConfigReg(f,0,v))!=KErrNone||v!=(TUint8)cf.iConfigOption)
|
|
868 |
return KErrBadPccdConfig;
|
|
869 |
iCardFuncNum=f;
|
|
870 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("Ata:DoOpen-Configured(%1xH) OK",v));
|
|
871 |
|
|
872 |
TUint flag=(cf.iActiveSignals&KSigWaitRequired)?KPccdRequestWait:0;
|
|
873 |
err=iDriveChunk.Create(iSocket,cf.iChnk[0],cf.iAccessSpeed,flag);
|
|
874 |
if (err!=KErrNone)
|
|
875 |
return(err);
|
|
876 |
iDriveChunk.SetupChunkHw();
|
|
877 |
iMemoryType=cf.iChnk[0].iMemType;
|
|
878 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("Ata:DoOpen-Requested Mem OK"));
|
|
879 |
|
|
880 |
iSocket->InterruptDisable(EPccdIntIReq);
|
|
881 |
iCardIntCallBack.iSocket=iSocket;
|
|
882 |
iCardIntCallBack.Add();
|
|
883 |
SetAtaRegister8(0,KAtaDeviceCtlWr8); // Enable interrupts
|
|
884 |
|
|
885 |
SetCurrentConsumption(KIdleCurrentInMilliAmps);
|
|
886 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("<Ata:DoOpen-OK"));
|
|
887 |
return(KErrNone);
|
|
888 |
}
|
|
889 |
|
|
890 |
TBool DPcCardMediaDriverAta::CardPoweredDown()
|
|
891 |
//
|
|
892 |
// Returns EFalse as long as card hasn't received power down (emergency or normal).
|
|
893 |
//
|
|
894 |
{
|
|
895 |
|
|
896 |
// Emergency power down may result in card being powered down before PC Card
|
|
897 |
// Controller status is updated - check for EPD as well as PC Card Contoller.
|
|
898 |
return(!Kern::PowerGood() || !iSocket->CardIsReady());
|
|
899 |
}
|
|
900 |
|
|
901 |
void DPcCardMediaDriverAta::IncrementSectBufPtr()
|
|
902 |
//
|
|
903 |
//
|
|
904 |
//
|
|
905 |
{
|
|
906 |
|
|
907 |
iSectBufPtr+=KAtaSectorSize;
|
|
908 |
if ((iSectBufPtr-&iSectorBuf[0])>=KSectBufSizeInBytes)
|
|
909 |
iSectBufPtr=&iSectorBuf[0];
|
|
910 |
}
|
|
911 |
|
|
912 |
TInt DPcCardMediaDriverAta::Request(TLocDrvRequest& m)
|
|
913 |
{
|
|
914 |
__KTRACE_OPT(KLOCDRV,Kern::Printf("Ata:Req %08x id %d",&m,m.Id()));
|
|
915 |
TInt r=KErrNotSupported;
|
|
916 |
TInt id=m.Id();
|
|
917 |
if (id==DLocalDrive::ECaps)
|
|
918 |
{
|
|
919 |
TLocalDriveCapsV6& c=*(TLocalDriveCapsV6*)m.RemoteDes();
|
|
920 |
r=Caps(c);
|
|
921 |
c.iSize=m.Drive()->iPartitionLen;
|
|
922 |
c.iPartitionType=m.Drive()->iPartitionType;
|
|
923 |
return r;
|
|
924 |
}
|
|
925 |
if (iCurrentReq)
|
|
926 |
{
|
|
927 |
// a request is already in progress, so hold on to this one
|
|
928 |
__KTRACE_OPT(KLOCDRV,Kern::Printf("Ata:Req %08x ret 1",&m));
|
|
929 |
return KMediaDriverDeferRequest;
|
|
930 |
}
|
|
931 |
iCurrentReq=&m;
|
|
932 |
switch (id)
|
|
933 |
{
|
|
934 |
case DLocalDrive::ERead:
|
|
935 |
r=DoRead();
|
|
936 |
break;
|
|
937 |
case DLocalDrive::EWrite:
|
|
938 |
r=DoWrite();
|
|
939 |
break;
|
|
940 |
case DLocalDrive::EFormat:
|
|
941 |
r=DoFormat();
|
|
942 |
break;
|
|
943 |
case DLocalDrive::EEnlarge:
|
|
944 |
case DLocalDrive::EReduce:
|
|
945 |
default:
|
|
946 |
r=KErrNotSupported;
|
|
947 |
break;
|
|
948 |
}
|
|
949 |
__KTRACE_OPT(KLOCDRV,Kern::Printf("Ata:Req %08x cmp %d",&m,r));
|
|
950 |
if (r!=KErrNone)
|
|
951 |
iCurrentReq=NULL;
|
|
952 |
return r;
|
|
953 |
}
|
|
954 |
|
|
955 |
void DPcCardMediaDriverAta::NotifyPowerDown()
|
|
956 |
{
|
|
957 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:NotifyPowerDown"));
|
|
958 |
Complete(KErrNotReady);
|
|
959 |
Reset();
|
|
960 |
}
|
|
961 |
|
|
962 |
void DPcCardMediaDriverAta::NotifyEmergencyPowerDown()
|
|
963 |
{
|
|
964 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:NotifyEmergencyPowerDown"));
|
|
965 |
TInt r=KErrNotReady;
|
|
966 |
if (iCritical)
|
|
967 |
r=KErrAbort;
|
|
968 |
EndInCritical();
|
|
969 |
Complete(r);
|
|
970 |
Reset();
|
|
971 |
}
|
|
972 |
|
|
973 |
void DPcCardMediaDriverAta::TimerDfcFunction(TAny* aPtr)
|
|
974 |
//
|
|
975 |
// DFC callback from not-busy timer
|
|
976 |
//
|
|
977 |
{
|
|
978 |
DPcCardMediaDriverAta &md=*(DPcCardMediaDriverAta*)aPtr;
|
|
979 |
__KTRACE_OPT2(KPBUSDRV,KFAIL,Kern::Printf(">Ata:TimerDfcFunction TC:%d",md.iNotBusyTickCount));
|
|
980 |
TInt r=1;
|
|
981 |
if (!md.CardPoweredDown())
|
|
982 |
{
|
|
983 |
md.iDriveChunk.SetupChunkHw();
|
|
984 |
TUint8 status=md.AtaRegister8(KAtaStatusRd8); // Clears interrupt
|
|
985 |
if (!(status&KAtaStatusBusy))
|
|
986 |
{
|
|
987 |
// It is not-busy so process it as we would from an interrupt
|
|
988 |
__KTRACE_OPT2(KPBUSDRV,KFAIL,Kern::Printf("Card not busy"));
|
|
989 |
r=KErrNone;
|
|
990 |
#ifdef COUNT_TIMEOUTS
|
|
991 |
++md.iTimeouts;
|
|
992 |
md.iNewTimeOut=ETrue;
|
|
993 |
if (md.iIndex<=6)
|
|
994 |
{
|
|
995 |
md.iInfo[md.iIndex++]=md.iCmdInOffset;
|
|
996 |
md.iInfo[md.iIndex++]=md.iCmdEndOffset;
|
|
997 |
}
|
|
998 |
#endif
|
|
999 |
}
|
|
1000 |
else
|
|
1001 |
{
|
|
1002 |
// still busy so count tick and restart timer
|
|
1003 |
if (--md.iNotBusyTickCount==0)
|
|
1004 |
{
|
|
1005 |
__KTRACE_OPT2(KPBUSDRV,KFAIL,Kern::Printf("Timed out"));
|
|
1006 |
r=KErrTimedOut; // time out the request
|
|
1007 |
}
|
|
1008 |
else
|
|
1009 |
{
|
|
1010 |
__KTRACE_OPT2(KPBUSDRV,KFAIL,Kern::Printf("Restart timer"));
|
|
1011 |
md.iBusyTimeout.OneShot(NKern::TimerTicks(KNotBusyTestInterval));
|
|
1012 |
}
|
|
1013 |
}
|
|
1014 |
}
|
|
1015 |
else
|
|
1016 |
r=KErrNotReady;
|
|
1017 |
__KTRACE_OPT2(KPBUSDRV,KFAIL,Kern::Printf("<Ata:TimerDfcFunction r=%d",r));
|
|
1018 |
if (r<=0)
|
|
1019 |
{
|
|
1020 |
// card is not-busy, powered down or timed out
|
|
1021 |
md.iSocket->InterruptDisable(EPccdIntIReq); // Disable IREQ in controller
|
|
1022 |
md.iCardIreqDfc.Cancel(); // so we don't run this twice
|
|
1023 |
md.iCommandError=r;
|
|
1024 |
CardIreqDfcFunction(&md);
|
|
1025 |
}
|
|
1026 |
}
|
|
1027 |
|
|
1028 |
void DPcCardMediaDriverAta::CardIntCallBack(TAny* aMediaDriver, TInt)
|
|
1029 |
//
|
|
1030 |
// Card Interrupt callback
|
|
1031 |
//
|
|
1032 |
{
|
|
1033 |
__TRACE_TIMING(0x104);
|
|
1034 |
DPcCardMediaDriverAta &md=*(DPcCardMediaDriverAta*)aMediaDriver;
|
|
1035 |
md.iSocket->InterruptDisable(EPccdIntIReq); // Disable IREQ in controller
|
|
1036 |
md.iCardIreqDfc.Add();
|
|
1037 |
#ifdef COUNT_TIMEOUTS
|
|
1038 |
++md.iInts;
|
|
1039 |
#endif
|
|
1040 |
}
|
|
1041 |
|
|
1042 |
void DPcCardMediaDriverAta::CardIreqDfcFunction(TAny* aPtr)
|
|
1043 |
{
|
|
1044 |
|
|
1045 |
DPcCardMediaDriverAta &md=*(DPcCardMediaDriverAta*)aPtr;
|
|
1046 |
TInt err=md.iCommandError;
|
|
1047 |
TBool queueDfc=md.CardPoweredDown();
|
|
1048 |
if (queueDfc)
|
|
1049 |
err=KErrNotReady;
|
|
1050 |
else if (err!=KErrNone)
|
|
1051 |
queueDfc=ETrue; // timed out
|
|
1052 |
else
|
|
1053 |
{
|
|
1054 |
md.iDriveChunk.SetupChunkHw();
|
|
1055 |
TUint8 status=md.AtaRegister8(KAtaStatusRd8); // Clears interrupt
|
|
1056 |
if (!(status&KAtaStatusBusy))
|
|
1057 |
queueDfc=md.DoCardNotBusy(err);
|
|
1058 |
}
|
|
1059 |
TBool cmd_done=EFalse;
|
|
1060 |
if (queueDfc)
|
|
1061 |
{
|
|
1062 |
md.iCommandError=err;
|
|
1063 |
cmd_done=md.CmdDfc();
|
|
1064 |
}
|
|
1065 |
if (!queueDfc)
|
|
1066 |
{
|
|
1067 |
// command still executing so reenable interrupts
|
|
1068 |
md.iSocket->InterruptEnable(EPccdIntIReq,0);
|
|
1069 |
}
|
|
1070 |
if (!cmd_done)
|
|
1071 |
{
|
|
1072 |
// quickly check if card is already not busy
|
|
1073 |
// this handles cards which return data very quickly
|
|
1074 |
md.iDriveChunk.SetupChunkHw();
|
|
1075 |
TUint8 status=md.AtaRegister8(KAtaStatusRd8); // Clears interrupt
|
|
1076 |
if (!(status&KAtaStatusBusy))
|
|
1077 |
{
|
|
1078 |
md.iSocket->InterruptDisable(EPccdIntIReq);
|
|
1079 |
md.iCardIreqDfc.Enque();
|
|
1080 |
#ifdef COUNT_TIMEOUTS
|
|
1081 |
++md.iImmediateNotBusy;
|
|
1082 |
#endif
|
|
1083 |
}
|
|
1084 |
else
|
|
1085 |
{
|
|
1086 |
md.iBusyTimeout.Cancel();
|
|
1087 |
md.iTimerDfc.Cancel();
|
|
1088 |
md.iBusyTimeout.OneShot(NKern::TimerTicks(KNotBusyTestInterval));
|
|
1089 |
}
|
|
1090 |
}
|
|
1091 |
}
|
|
1092 |
|
|
1093 |
TBool DPcCardMediaDriverAta::DoCardNotBusy(TInt &anErr)
|
|
1094 |
//
|
|
1095 |
// Card not busy interrupt - return ETrue when need to queue dfc
|
|
1096 |
//
|
|
1097 |
{
|
|
1098 |
|
|
1099 |
anErr=KErrNone;
|
|
1100 |
if (iCardStatus==ECardWrite || iCardStatus==ECardFormat)
|
|
1101 |
{
|
|
1102 |
// For write/format commands we only update the out-pointer when the card becomes
|
|
1103 |
// not-busy following the point we transfered the block of data to the card.
|
|
1104 |
iCmdOutOffset+=(KAtaSectorSize-iSectBufOffset);
|
|
1105 |
iSectBufOffset=0;
|
|
1106 |
if (iCmdOutOffset<iCmdEndOffset)
|
|
1107 |
{
|
|
1108 |
TUint8* pB=iSectBufPtr;
|
|
1109 |
if (iLastSectorBufUsed && iCmdLength-iCmdOutOffset<=(TUint)KAtaSectorSize)
|
|
1110 |
pB=iLastSectorBuf; // use different buffer for last sector of unaligned write
|
|
1111 |
anErr=EmptySectBufferToDrive(pB);
|
|
1112 |
if (anErr!=KErrNone)
|
|
1113 |
return(ETrue);
|
|
1114 |
if (iCardStatus==ECardWrite)
|
|
1115 |
iSectBufPtr+=KAtaSectorSize;
|
|
1116 |
}
|
|
1117 |
else
|
|
1118 |
{
|
|
1119 |
anErr=CheckForError();
|
|
1120 |
return(ETrue);
|
|
1121 |
}
|
|
1122 |
}
|
|
1123 |
if (iCardStatus==ECardRead)
|
|
1124 |
{
|
|
1125 |
// For read commands we only update the in-pointer here. The out-pointer is
|
|
1126 |
// updated by the DFC as data is written to target thread
|
|
1127 |
|
|
1128 |
// Before we read the data from the card, perform the in-pointer incremeting now.
|
|
1129 |
// If we are about to queue a DFC then let the DFC read from the card. Otherwise,
|
|
1130 |
// reading from the card may result in the next sector of data being available
|
|
1131 |
// before we're ready for it.
|
|
1132 |
|
|
1133 |
// If first interrupt after command initiated then allow for sector buffer offset
|
|
1134 |
TInt toEOBuf=(iCmdInOffset==0)?(KAtaSectorSize-iSectBufOffset):KAtaSectorSize;
|
|
1135 |
TInt remaining=(TInt)(iCmdEndOffset-iCmdInOffset);
|
|
1136 |
iCmdInOffset+=Min(remaining,toEOBuf);
|
|
1137 |
if ((iSectBufPtr-&iSectorBuf[0])>=KSectBufSizeInBytesMinusOneSector || iCmdInOffset>=iCmdEndOffset)
|
|
1138 |
return(ETrue); // Queue a DFC
|
|
1139 |
else
|
|
1140 |
{
|
|
1141 |
anErr=LoadSectBufferFromDrive(iSectBufPtr);
|
|
1142 |
if (anErr!=KErrNone)
|
|
1143 |
return(ETrue);
|
|
1144 |
IncrementSectBufPtr();
|
|
1145 |
}
|
|
1146 |
}
|
|
1147 |
return(EFalse);
|
|
1148 |
}
|
|
1149 |
|
|
1150 |
void DPcCardMediaDriverAta::SyncBusyTimerCallBack(TAny* aBusyFlag)
|
|
1151 |
//
|
|
1152 |
// Wait for not busy timeout callback
|
|
1153 |
//
|
|
1154 |
{
|
|
1155 |
|
|
1156 |
*(TBool*)aBusyFlag=ETrue;
|
|
1157 |
}
|
|
1158 |
|
|
1159 |
void DPcCardMediaDriverAta::AsyncBusyTimerCallBack(TAny* aMediaDriver)
|
|
1160 |
//
|
|
1161 |
// Wait for not busy timeout callback
|
|
1162 |
//
|
|
1163 |
{
|
|
1164 |
|
|
1165 |
__KTRACE_OPT(KFAIL,Kern::Printf("!,"));
|
|
1166 |
DPcCardMediaDriverAta &md=*(DPcCardMediaDriverAta*)aMediaDriver;
|
|
1167 |
md.iTimerDfc.Add();
|
|
1168 |
}
|
|
1169 |
|
|
1170 |
TBool DPcCardMediaDriverAta::CmdDfc()
|
|
1171 |
//
|
|
1172 |
// Dfc to complete an asynchronous command
|
|
1173 |
//
|
|
1174 |
{
|
|
1175 |
|
|
1176 |
TInt err;
|
|
1177 |
|
|
1178 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:CmdDfc status %d in %x out %x len %x",iCardStatus,iCmdInOffset,iCmdOutOffset,iCmdLength));
|
|
1179 |
|
|
1180 |
iBusyTimeout.Cancel();
|
|
1181 |
iTimerDfc.Cancel();
|
|
1182 |
if (DoCmdDfc(err)) // this requeues timer and reenables interrupts if command still executing
|
|
1183 |
{
|
|
1184 |
// Command has been completed for one reason or other
|
|
1185 |
EndInCritical();
|
|
1186 |
if (err!=KErrNone)
|
|
1187 |
err=ProcessError(err);
|
|
1188 |
|
|
1189 |
// If emergency power down on write/format - return abort rather than anything else.
|
|
1190 |
if (!Kern::PowerGood() && iCardStatus!=ECardRead)
|
|
1191 |
err=KErrAbort;
|
|
1192 |
// If media change - return not ready rather than anything else.
|
|
1193 |
else if (!iSocket->CardIsReady())
|
|
1194 |
err=KErrNotReady;
|
|
1195 |
__KTRACE_OPT(KFAIL,Kern::Printf("a%d",err));
|
|
1196 |
if (err==KErrNone)
|
|
1197 |
{
|
|
1198 |
// may need to issue another command here
|
|
1199 |
if (iCmdOutOffset<iCmdLength)
|
|
1200 |
{
|
|
1201 |
if (iCardStatus==ECardRead)
|
|
1202 |
{
|
|
1203 |
__KTRACE_OPT(KFAIL,Kern::Printf("+R"));
|
|
1204 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:NewReadCmd"));
|
|
1205 |
iSectBufOffset=0;
|
|
1206 |
#ifdef COUNT_TIMEOUTS
|
|
1207 |
++iChainedReads;
|
|
1208 |
#endif
|
|
1209 |
err=InitiateAsyncRead();
|
|
1210 |
if (err==KErrNone)
|
|
1211 |
return ETrue;
|
|
1212 |
}
|
|
1213 |
else
|
|
1214 |
{
|
|
1215 |
__KTRACE_OPT(KFAIL,Kern::Printf("+W"));
|
|
1216 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:NewWriteCmd"));
|
|
1217 |
#ifdef COUNT_TIMEOUTS
|
|
1218 |
++iChainedWrites;
|
|
1219 |
#endif
|
|
1220 |
err=InitiateAsyncWrite();
|
|
1221 |
if (err==KErrNone)
|
|
1222 |
return ETrue;
|
|
1223 |
}
|
|
1224 |
}
|
|
1225 |
}
|
|
1226 |
iCardStatus=ECardIdle; // Command now complete
|
|
1227 |
SetCurrentConsumption(KIdleCurrentInMilliAmps);
|
|
1228 |
|
|
1229 |
#if (defined(_DEBUG) || defined(SHOW_CARD_ERRORS))
|
|
1230 |
if (err!=KErrNone&&err!=KErrTooBig)
|
|
1231 |
{
|
|
1232 |
__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf("<DFC(L:%d P:%xH)-%d",iDbgLen,iDbgPos,err));
|
|
1233 |
iDbgLastError=err;
|
|
1234 |
}
|
|
1235 |
#endif
|
|
1236 |
__TRACE_TIMING(0x109);
|
|
1237 |
Complete(err);
|
|
1238 |
return ETrue;
|
|
1239 |
}
|
|
1240 |
return EFalse;
|
|
1241 |
}
|
|
1242 |
|
|
1243 |
TBool DPcCardMediaDriverAta::DoCmdDfc(TInt &anErr)
|
|
1244 |
//
|
|
1245 |
// Return ETrue when complete
|
|
1246 |
//
|
|
1247 |
{
|
|
1248 |
|
|
1249 |
if (CardPoweredDown())
|
|
1250 |
{
|
|
1251 |
anErr=KErrNotReady;
|
|
1252 |
return(ETrue);
|
|
1253 |
}
|
|
1254 |
anErr=iCommandError;
|
|
1255 |
if (iCommandError!=KErrNone)
|
|
1256 |
return(ETrue);
|
|
1257 |
|
|
1258 |
if (iCardStatus==ECardWrite||iCardStatus==ECardFormat)
|
|
1259 |
return(ETrue);
|
|
1260 |
else
|
|
1261 |
{
|
|
1262 |
// Read command, we postponed loading the last sector
|
|
1263 |
__TRACE_TIMING(0x105);
|
|
1264 |
if ((anErr=LoadSectBufferFromDrive(iSectBufPtr))!=KErrNone)
|
|
1265 |
return(ETrue);
|
|
1266 |
|
|
1267 |
// In case command still executing, queue another timeout and re-enable interrupts
|
|
1268 |
iSocket->InterruptEnable(EPccdIntIReq,0);
|
|
1269 |
iNotBusyTickCount=KBusyTimeOut;
|
|
1270 |
iBusyTimeout.OneShot(NKern::TimerTicks(KNotBusyTestInterval));
|
|
1271 |
|
|
1272 |
__TRACE_TIMING(0x106);
|
|
1273 |
IncrementSectBufPtr();
|
|
1274 |
if ((anErr=EmptySectBufferToTrg(&iSectorBuf[0]+iSectBufOffset,iCmdOutOffset,iCmdInOffset-iCmdOutOffset))!=KErrNone)
|
|
1275 |
{
|
|
1276 |
iSocket->InterruptDisable(EPccdIntIReq); // Disable IREQ in controller
|
|
1277 |
iBusyTimeout.Cancel();
|
|
1278 |
iTimerDfc.Cancel();
|
|
1279 |
iCardIreqDfc.Cancel();
|
|
1280 |
return(ETrue);
|
|
1281 |
}
|
|
1282 |
__TRACE_TIMING(0x107);
|
|
1283 |
iSectBufOffset=0; // From now on we always start on sector boundary
|
|
1284 |
iCmdOutOffset=iCmdInOffset;
|
|
1285 |
if (iCmdOutOffset<iCmdEndOffset)
|
|
1286 |
return(EFalse);
|
|
1287 |
iSocket->InterruptDisable(EPccdIntIReq); // Disable IREQ in controller
|
|
1288 |
iBusyTimeout.Cancel();
|
|
1289 |
iTimerDfc.Cancel();
|
|
1290 |
iCardIreqDfc.Cancel();
|
|
1291 |
anErr=FinishCommand(); // This functions involves polling for not busy
|
|
1292 |
return(ETrue);
|
|
1293 |
}
|
|
1294 |
__TRACE_TIMING(0x108);
|
|
1295 |
}
|
|
1296 |
|
|
1297 |
DPhysicalDeviceMediaAta::DPhysicalDeviceMediaAta()
|
|
1298 |
//
|
|
1299 |
// Constructor
|
|
1300 |
//
|
|
1301 |
{
|
|
1302 |
iUnitsMask=0x1;
|
|
1303 |
iVersion=TVersion(KMediaDriverInterfaceMajorVersion,KMediaDriverInterfaceMinorVersion,KMediaDriverInterfaceBuildVersion);
|
|
1304 |
}
|
|
1305 |
|
|
1306 |
TInt DPhysicalDeviceMediaAta::Install()
|
|
1307 |
//
|
|
1308 |
// Install the PC Card ATA Media PDD.
|
|
1309 |
//
|
|
1310 |
{
|
|
1311 |
return SetName(&KPddName);
|
|
1312 |
}
|
|
1313 |
|
|
1314 |
void DPhysicalDeviceMediaAta::GetCaps(TDes8 &/* aDes */) const
|
|
1315 |
//
|
|
1316 |
// Return the media drivers capabilities.
|
|
1317 |
//
|
|
1318 |
{
|
|
1319 |
}
|
|
1320 |
|
|
1321 |
TInt DPhysicalDeviceMediaAta::Create(DBase*& aChannel, TInt aMediaId, const TDesC8* /*anInfo*/, const TVersion& aVer)
|
|
1322 |
//
|
|
1323 |
// Create a PC Card ATA media driver.
|
|
1324 |
//
|
|
1325 |
{
|
|
1326 |
if (!Kern::QueryVersionSupported(iVersion,aVer))
|
|
1327 |
return KErrNotSupported;
|
|
1328 |
DPcCardMediaDriverAta* pD=new DPcCardMediaDriverAta(aMediaId);
|
|
1329 |
aChannel=pD;
|
|
1330 |
TInt r=KErrNoMemory;
|
|
1331 |
if (pD)
|
|
1332 |
r=pD->Open();
|
|
1333 |
if (r==KErrNone)
|
|
1334 |
pD->OpenMediaDriverComplete(KErrNone);
|
|
1335 |
return r;
|
|
1336 |
}
|
|
1337 |
|
|
1338 |
TInt DPhysicalDeviceMediaAta::Validate(TInt aDeviceType, const TDesC8* anInfo, const TVersion& aVer)
|
|
1339 |
{
|
|
1340 |
if (!Kern::QueryVersionSupported(iVersion,aVer))
|
|
1341 |
return KErrNotSupported;
|
|
1342 |
if (aDeviceType!=MEDIA_DEVICE_PCCARD)
|
|
1343 |
return KErrNotSupported;
|
|
1344 |
return KErrNone;
|
|
1345 |
}
|
|
1346 |
|
|
1347 |
TInt DPhysicalDeviceMediaAta::Info(TInt aFunction, TAny*)
|
|
1348 |
//
|
|
1349 |
// Return the priority of this media driver
|
|
1350 |
//
|
|
1351 |
{
|
|
1352 |
if (aFunction==EPriority)
|
|
1353 |
return KAtaDriverPriority;
|
|
1354 |
return KErrNotSupported;
|
|
1355 |
}
|
|
1356 |
|
|
1357 |
DPcCardMediaDriverAta::DPcCardMediaDriverAta(TInt aMediaId)
|
|
1358 |
//
|
|
1359 |
// Constructor.
|
|
1360 |
//
|
|
1361 |
: DMediaDriver(aMediaId),
|
|
1362 |
iCardIntCallBack(CardIntCallBack,this,KPccdIntMaskIReq),
|
|
1363 |
iBusyTimeout(AsyncBusyTimerCallBack,this),
|
|
1364 |
iCardIreqDfc(CardIreqDfcFunction,this,2),
|
|
1365 |
iTimerDfc(TimerDfcFunction,this,2)
|
|
1366 |
{
|
|
1367 |
|
|
1368 |
iMemoryType=EPccdIo8Mem;
|
|
1369 |
// iCommandError=KErrNone;
|
|
1370 |
// TUint iCmdInOffset=0;
|
|
1371 |
// TUint iCmdOutOffset=0;
|
|
1372 |
// iCmdEndOffset=0;
|
|
1373 |
// iSectBufPtr=NULL;
|
|
1374 |
// iSectBufOffset=0;
|
|
1375 |
iCardStatus=ECardIdle;
|
|
1376 |
// iHiddenSectors=0;
|
|
1377 |
iCardFuncNum=-1;
|
|
1378 |
}
|
|
1379 |
|
|
1380 |
TInt DPcCardMediaDriverAta::Open()
|
|
1381 |
//
|
|
1382 |
// Open the media driver.
|
|
1383 |
//
|
|
1384 |
{
|
|
1385 |
|
|
1386 |
// Open the driver and get drive characteristics
|
|
1387 |
iSocket=((DPcCardSocket*)((DPBusPrimaryMedia*)iPrimaryMedia)->iSocket);
|
|
1388 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:Open on socket %d",iSocket->iSocketNumber));
|
|
1389 |
TInt r=DoOpen();
|
|
1390 |
if (r==KErrNone)
|
|
1391 |
r=IdentifyDrive();
|
|
1392 |
if (r!=KErrNone)
|
|
1393 |
{
|
|
1394 |
DoClose();
|
|
1395 |
if (!iSocket->CardIsReady())
|
|
1396 |
r=KErrNotReady; // If media change - return not ready rather than anything else.
|
|
1397 |
}
|
|
1398 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("<Ata:Open-%d",r));
|
|
1399 |
return r;
|
|
1400 |
}
|
|
1401 |
|
|
1402 |
TInt DPcCardMediaDriverAta::CheckDevice(TBool aCheckPower)
|
|
1403 |
//
|
|
1404 |
// Check the device before initiating a command
|
|
1405 |
//
|
|
1406 |
{
|
|
1407 |
|
|
1408 |
if (iSocket->CardIsReadyAndVerified()!=KErrNone)
|
|
1409 |
return KErrNotReady;
|
|
1410 |
if (aCheckPower && Kern::MachinePowerStatus()<ELow)
|
|
1411 |
return KErrBadPower;
|
|
1412 |
return KErrNone;
|
|
1413 |
}
|
|
1414 |
|
|
1415 |
TInt DPcCardMediaDriverAta::DoRead()
|
|
1416 |
//
|
|
1417 |
// Read from specified area of media.
|
|
1418 |
//
|
|
1419 |
{
|
|
1420 |
|
|
1421 |
Int64 aPos=iCurrentReq->Pos();
|
|
1422 |
TInt aLength=(TInt)iCurrentReq->Length();
|
|
1423 |
TInt err;
|
|
1424 |
iCmdOutOffset=0; // Progress monitor - data delivered to target
|
|
1425 |
#if (defined(_DEBUG) || defined(SHOW_CARD_ERRORS))
|
|
1426 |
iDbgPos=(TUint)aPos;
|
|
1427 |
iDbgLen=aLength;
|
|
1428 |
#endif
|
|
1429 |
err=CheckDevice(EFalse);
|
|
1430 |
if (err==KErrNone)
|
|
1431 |
{
|
|
1432 |
iDriveChunk.SetupChunkHw(); // Enable our h/w chunk
|
|
1433 |
|
|
1434 |
TUint sectorBufOffset=(TUint)aPos&(~KAtaSectorMask);
|
|
1435 |
Int64 firstSector=(aPos>>KAtaSectorShift);
|
|
1436 |
iCmdLength=aLength;
|
|
1437 |
|
|
1438 |
SetCurrentConsumption(KReadCurrentInMilliAmps);
|
|
1439 |
|
|
1440 |
// Start an asynchronous read
|
|
1441 |
iCmdInOffset=0; // Data received from card
|
|
1442 |
iNextSector=(TUint)firstSector;
|
|
1443 |
iSectBufOffset=sectorBufOffset;
|
|
1444 |
err=InitiateAsyncRead();
|
|
1445 |
if (err==KErrNone)
|
|
1446 |
return KErrNone;
|
|
1447 |
|
|
1448 |
iCardStatus=ECardIdle;
|
|
1449 |
SetCurrentConsumption(KIdleCurrentInMilliAmps);
|
|
1450 |
if (!iSocket->CardIsReady())
|
|
1451 |
err=KErrNotReady; // If media change - return not ready rather than anything else.
|
|
1452 |
}
|
|
1453 |
|
|
1454 |
#if (defined(_DEBUG) || defined(SHOW_CARD_ERRORS))
|
|
1455 |
__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf("<Ata:Read(L:%d P:%xH)-%d",iDbgLen,iDbgPos,err));
|
|
1456 |
iDbgLastError=err;
|
|
1457 |
#endif
|
|
1458 |
return err;
|
|
1459 |
}
|
|
1460 |
|
|
1461 |
TInt DPcCardMediaDriverAta::InitiateAsyncRead()
|
|
1462 |
{
|
|
1463 |
// Start an asynchronous read
|
|
1464 |
TInt cmdLen=Min(TInt(iCmdLength-iCmdInOffset),TInt(KMaxBytesPerRead-iSectBufOffset)); // Leave it on sector boundary if another read required
|
|
1465 |
iCmdEndOffset=iCmdInOffset+cmdLen; // Marks point when transfer is complete
|
|
1466 |
iSectBufPtr=&iSectorBuf[0];
|
|
1467 |
iCardStatus=ECardRead;
|
|
1468 |
__TRACE_TIMING(0x102);
|
|
1469 |
return ReadSectorsCommand(iNextSector,iSectBufOffset,cmdLen); // Sector number can't exceed 32bits
|
|
1470 |
}
|
|
1471 |
|
|
1472 |
TInt DPcCardMediaDriverAta::DoWrite()
|
|
1473 |
//
|
|
1474 |
// Write to specified area of media.
|
|
1475 |
//
|
|
1476 |
{
|
|
1477 |
|
|
1478 |
Int64 aPos=iCurrentReq->Pos();
|
|
1479 |
TInt aLength=(TInt)iCurrentReq->Length();
|
|
1480 |
TInt err;
|
|
1481 |
#if (defined(_DEBUG) || defined(SHOW_CARD_ERRORS))
|
|
1482 |
iDbgPos=(TUint)aPos;
|
|
1483 |
iDbgLen=aLength;
|
|
1484 |
#endif
|
|
1485 |
err=CheckDevice(ETrue);
|
|
1486 |
if (err==KErrNone)
|
|
1487 |
{
|
|
1488 |
iDriveChunk.SetupChunkHw(); // Enable our h/w chunk
|
|
1489 |
TUint sectorBufOffset=(TUint)aPos&(~KAtaSectorMask);
|
|
1490 |
Int64 firstSector=(aPos>>KAtaSectorShift);
|
|
1491 |
iCmdLength=aLength;
|
|
1492 |
|
|
1493 |
// for unaligned writes, first need to read the first and/or last sector
|
|
1494 |
err=SectorBoundaryReadCheck((TUint)firstSector,sectorBufOffset,aPos+iCmdLength);
|
|
1495 |
if (err==KErrNone) // Sector number can't exceed 32bits
|
|
1496 |
{
|
|
1497 |
// Time to actually start the write. First alter the current consumption
|
|
1498 |
// and save the data required to complete the write (in the ISR)
|
|
1499 |
SetCurrentConsumption(KWriteCurrentInMilliAmps);
|
|
1500 |
iSectBufOffset=sectorBufOffset;
|
|
1501 |
iCmdInOffset=0;
|
|
1502 |
iCmdOutOffset=0; // Progress monitor - data delivered to card
|
|
1503 |
iNextSector=(TUint)firstSector;
|
|
1504 |
iCardStatus=ECardWrite;
|
|
1505 |
err=InitiateAsyncWrite();
|
|
1506 |
if (err==KErrNone)
|
|
1507 |
return KErrNone;
|
|
1508 |
SetCurrentConsumption(KIdleCurrentInMilliAmps);
|
|
1509 |
}
|
|
1510 |
iCardStatus=ECardIdle;
|
|
1511 |
if (!Kern::PowerGood())
|
|
1512 |
err=KErrAbort; // If emergency power down - return abort rather than anything else.
|
|
1513 |
else if (!iSocket->CardIsReady())
|
|
1514 |
err=KErrNotReady; // If media change - return not ready rather than anything else.
|
|
1515 |
}
|
|
1516 |
|
|
1517 |
#if (defined(_DEBUG) || defined(SHOW_CARD_ERRORS))
|
|
1518 |
__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf("<Ata:Write(L:%d P:%xH)-%d",iDbgLen,iDbgPos,err));
|
|
1519 |
iDbgLastError=err;
|
|
1520 |
#endif
|
|
1521 |
return err;
|
|
1522 |
}
|
|
1523 |
|
|
1524 |
TInt DPcCardMediaDriverAta::InitiateAsyncWrite()
|
|
1525 |
{
|
|
1526 |
iCmdOutOffset=iCmdInOffset;
|
|
1527 |
TInt remain=iCmdLength-iCmdInOffset;
|
|
1528 |
TInt cmdLen=Min(remain, KMaxBytesPerWrite-iSectBufOffset);
|
|
1529 |
TInt sectCount=(cmdLen+iSectBufOffset+KAtaSectorSize-1)>>KAtaSectorShift;
|
|
1530 |
iCmdEndOffset=iCmdOutOffset+cmdLen;
|
|
1531 |
iSectBufPtr=iSectorBuf;
|
|
1532 |
TUint8* pB=iSectorBuf;
|
|
1533 |
TInt r=KErrNone;
|
|
1534 |
if (iCardStatus==ECardWrite)
|
|
1535 |
{
|
|
1536 |
if (iLastSectorBufUsed && cmdLen==remain)
|
|
1537 |
{
|
|
1538 |
// load data for sectors other than last into sector buffer
|
|
1539 |
TInt lengthExcludingLastSector=cmdLen &~ (KAtaSectorSize-1);
|
|
1540 |
if (lengthExcludingLastSector==cmdLen)
|
|
1541 |
lengthExcludingLastSector-=KAtaSectorSize;
|
|
1542 |
if (lengthExcludingLastSector)
|
|
1543 |
{
|
|
1544 |
r=LoadSectBufferFromSrc(lengthExcludingLastSector,iSectorBuf+iSectBufOffset);
|
|
1545 |
if (r!=KErrNone)
|
|
1546 |
return r;
|
|
1547 |
iCmdInOffset+=lengthExcludingLastSector; // make sure we get right data for last sector
|
|
1548 |
}
|
|
1549 |
else
|
|
1550 |
pB=iLastSectorBuf;
|
|
1551 |
// load last sector data into last sector buffer
|
|
1552 |
r=LoadSectBufferFromSrc(cmdLen-lengthExcludingLastSector,iLastSectorBuf);
|
|
1553 |
if (r!=KErrNone)
|
|
1554 |
return r;
|
|
1555 |
iCmdInOffset+=(cmdLen-lengthExcludingLastSector);
|
|
1556 |
}
|
|
1557 |
else
|
|
1558 |
{
|
|
1559 |
// Load the the data from source in one go
|
|
1560 |
r=LoadSectBufferFromSrc(cmdLen,iSectorBuf+iSectBufOffset);
|
|
1561 |
if (r!=KErrNone)
|
|
1562 |
return r;
|
|
1563 |
iCmdInOffset+=cmdLen;
|
|
1564 |
}
|
|
1565 |
}
|
|
1566 |
else
|
|
1567 |
iCmdInOffset+=cmdLen; // format command
|
|
1568 |
r=InCritical(); // this returns KErrNotReady if we are about to do postponed media change or power down
|
|
1569 |
if (r==KErrNone)
|
|
1570 |
{
|
|
1571 |
r=InitiateWriteCommand(iNextSector,sectCount,pB);
|
|
1572 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf("InitWrCmd ret %d",r));
|
|
1573 |
if (iCardStatus==ECardWrite)
|
|
1574 |
iSectBufPtr+=KAtaSectorSize;
|
|
1575 |
}
|
|
1576 |
if (r!=KErrNone)
|
|
1577 |
{
|
|
1578 |
if (!Kern::PowerGood())
|
|
1579 |
r=KErrAbort; // If emergency power down - return abort rather than anything else.
|
|
1580 |
else if (!iSocket->CardIsReady())
|
|
1581 |
r=KErrNotReady; // If media change - return not ready rather than anything else.
|
|
1582 |
EndInCritical();
|
|
1583 |
}
|
|
1584 |
return r;
|
|
1585 |
}
|
|
1586 |
|
|
1587 |
TInt DPcCardMediaDriverAta::DoFormat()
|
|
1588 |
//
|
|
1589 |
// Format the specified area of the media.
|
|
1590 |
//
|
|
1591 |
{
|
|
1592 |
|
|
1593 |
Int64 aPos=iCurrentReq->Pos();
|
|
1594 |
TInt aLength=(TInt)iCurrentReq->Length();
|
|
1595 |
TInt err;
|
|
1596 |
#if (defined(_DEBUG) || defined(SHOW_CARD_ERRORS))
|
|
1597 |
iDbgPos=(TUint)aPos;
|
|
1598 |
iDbgLen=aLength;
|
|
1599 |
#endif
|
|
1600 |
err=CheckDevice(ETrue);
|
|
1601 |
if (err==KErrNone)
|
|
1602 |
{
|
|
1603 |
iDriveChunk.SetupChunkHw(); // Enable our h/w chunk
|
|
1604 |
memset(iSectorBuf,0xff,KAtaSectorSize);
|
|
1605 |
Int64 firstSector=(aPos>>KAtaSectorShift);
|
|
1606 |
TInt sectCount=(aLength+KAtaSectorSizeMinusOne)>>KAtaSectorShift;
|
|
1607 |
iCmdLength=(sectCount<<KAtaSectorShift);
|
|
1608 |
sectCount=Min(KMaxSectorsPerFormat,(aLength+KAtaSectorSizeMinusOne)>>KAtaSectorShift);
|
|
1609 |
SetCurrentConsumption(KWriteCurrentInMilliAmps);
|
|
1610 |
|
|
1611 |
iLastSectorBufUsed=EFalse;
|
|
1612 |
iCmdInOffset=0;
|
|
1613 |
iCmdOutOffset=0; // Progress monitor - data delivered to card
|
|
1614 |
iSectBufOffset=0;
|
|
1615 |
iSectBufPtr=&iSectorBuf[0];
|
|
1616 |
iNextSector=(TUint)firstSector;
|
|
1617 |
iCardStatus=ECardFormat;
|
|
1618 |
err=InitiateAsyncWrite();
|
|
1619 |
if (err==KErrNone)
|
|
1620 |
return KErrNone;
|
|
1621 |
|
|
1622 |
iCardStatus=ECardIdle;
|
|
1623 |
SetCurrentConsumption(KIdleCurrentInMilliAmps);
|
|
1624 |
|
|
1625 |
if (!Kern::PowerGood())
|
|
1626 |
err=KErrAbort; // If emergency power down - return abort rather than anything else.
|
|
1627 |
else if (!iSocket->CardIsReady())
|
|
1628 |
err=KErrNotReady; // If media change - return not ready rather than anything else.
|
|
1629 |
}
|
|
1630 |
|
|
1631 |
#if (defined(_DEBUG) || defined(SHOW_CARD_ERRORS))
|
|
1632 |
__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf("<Ata:Format(L:%d P:%xH)-%d",iDbgLen,iDbgPos,err));
|
|
1633 |
iDbgLastError=err;
|
|
1634 |
#endif
|
|
1635 |
return err;
|
|
1636 |
}
|
|
1637 |
|
|
1638 |
void DPcCardMediaDriverAta::Close()
|
|
1639 |
//
|
|
1640 |
// Close the media driver - also called on media change
|
|
1641 |
//
|
|
1642 |
{
|
|
1643 |
|
|
1644 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:Close"));
|
|
1645 |
EndInCritical();
|
|
1646 |
Complete(KErrNotReady);
|
|
1647 |
DoClose();
|
|
1648 |
DMediaDriver::Close();
|
|
1649 |
}
|
|
1650 |
|
|
1651 |
void DPcCardMediaDriverAta::DoClose()
|
|
1652 |
//
|
|
1653 |
// Close the media driver
|
|
1654 |
//
|
|
1655 |
{
|
|
1656 |
|
|
1657 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:DoClose"));
|
|
1658 |
iCardIntCallBack.Remove();
|
|
1659 |
iDriveChunk.Close();
|
|
1660 |
if (iCardFuncNum>=0)
|
|
1661 |
{
|
|
1662 |
iSocket->ReleaseConfig(iCardFuncNum,this);
|
|
1663 |
iCardFuncNum=-1;
|
|
1664 |
}
|
|
1665 |
Reset();
|
|
1666 |
__KTRACE_CARD_ERROR(KPBUSDRV,Kern::Printf("<Ata:DoClose(%d)",iDbgLastError));
|
|
1667 |
}
|
|
1668 |
|
|
1669 |
void DPcCardMediaDriverAta::Reset()
|
|
1670 |
{
|
|
1671 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:Reset"));
|
|
1672 |
iBusyTimeout.Cancel(); // In case its currently queued
|
|
1673 |
iCardIreqDfc.Cancel(); // In case its currently queued
|
|
1674 |
iTimerDfc.Cancel();
|
|
1675 |
iCardStatus=ECardIdle;
|
|
1676 |
SetCurrentConsumption(0);
|
|
1677 |
}
|
|
1678 |
|
|
1679 |
#ifdef KLOCDRV
|
|
1680 |
void DebugDump(const TMBRPartitionEntry& a)
|
|
1681 |
{
|
|
1682 |
Kern::Printf("BootInd =%02x StartHead=%02x StartSect=%02x StartCyl=%02x",
|
|
1683 |
a.iX86BootIndicator, a.iStartHead, a.iStartSector, a.iStartCylinder);
|
|
1684 |
Kern::Printf("PartType=%02x EndHead =%02x EndSect =%02x EndCyl =%02x",
|
|
1685 |
a.iPartitionType, a.iEndHead, a.iEndSector, a.iEndCylinder);
|
|
1686 |
Kern::Printf("FirstSect=%08x NumSectors=%08x", a.iFirstSector, a.iNumSectors);
|
|
1687 |
}
|
|
1688 |
|
|
1689 |
void DebugDump(const TPartitionInfo& a)
|
|
1690 |
{
|
|
1691 |
Kern::Printf("PartitionInfo: (C:%d)",a.iPartitionCount);
|
|
1692 |
TInt i;
|
|
1693 |
for (i=0; i<KMaxPartitionEntries; ++i)
|
|
1694 |
{
|
|
1695 |
const TPartitionEntry& e=a.iEntry[i];
|
|
1696 |
Kern::Printf(" Partition %d: B=%lxH L=%lxH I=%04x T=%04x", i, e.iPartitionBaseAddr,
|
|
1697 |
e.iPartitionLen, e.iBootIndicator, e.iPartitionType );
|
|
1698 |
}
|
|
1699 |
}
|
|
1700 |
#endif
|
|
1701 |
|
|
1702 |
void SetPartitionEntry(TPartitionEntry* aDest, const TMBRPartitionEntry* aSrc)
|
|
1703 |
//
|
|
1704 |
// Set the partition entry details
|
|
1705 |
//
|
|
1706 |
{
|
|
1707 |
|
|
1708 |
aDest->iPartitionBaseAddr=aSrc->iFirstSector;
|
|
1709 |
aDest->iPartitionBaseAddr<<=KAtaSectorShift;
|
|
1710 |
aDest->iPartitionLen=aSrc->iNumSectors;
|
|
1711 |
aDest->iPartitionLen<<=KAtaSectorShift;
|
|
1712 |
aDest->iBootIndicator=aSrc->iX86BootIndicator;
|
|
1713 |
aDest->iPartitionType=aSrc->iPartitionType;
|
|
1714 |
}
|
|
1715 |
|
|
1716 |
TInt DPcCardMediaDriverAta::PartitionInfo(TPartitionInfo& anInfo)
|
|
1717 |
//
|
|
1718 |
// Return partition information on the media.
|
|
1719 |
//
|
|
1720 |
{
|
|
1721 |
|
|
1722 |
__KTRACE_OPT(KPBUSDRV,Kern::Printf(">Ata:PartitionInfo"));
|
|
1723 |
if (iSocket->CardIsReadyAndVerified()!=KErrNone)
|
|
1724 |
return(KErrNotReady);
|
|
1725 |
TInt partitionCount=anInfo.iPartitionCount=0;
|
|
1726 |
|
|
1727 |
// Read the first sector and check for a Master Boot Record
|
|
1728 |
TInt err;
|
|
1729 |
if ((err=SectorRead(0,&iSectorBuf[0]))!=KErrNone)
|
|
1730 |
return(err);
|
|
1731 |
if (*(TUint16*)(&iSectorBuf[KMBRSignatureOffset])!=KMBRSignature)
|
|
1732 |
return(KErrCorrupt);
|
|
1733 |
|
|
1734 |
// Move the partition entries to a 4 byte boundary
|
|
1735 |
memmove(&iSectorBuf[0],&iSectorBuf[KMBRFirstPartitionOffset],(sizeof(TMBRPartitionEntry)*KMBRMaxPrimaryPartitions));
|
|
1736 |
|
|
1737 |
// Search for a x86 default boot partition - let this be the first
|
|
1738 |
TMBRPartitionEntry *pe=(TMBRPartitionEntry*)(&iSectorBuf[0]);
|
|
1739 |
TInt i;
|
|
1740 |
TInt defaultPartitionNumber=-1;
|
|
1741 |
for (i=0;i<KMBRMaxPrimaryPartitions;i++,pe++)
|
|
1742 |
{
|
|
1743 |
if (pe->IsDefaultBootPartition())
|
|
1744 |
{
|
|
1745 |
SetPartitionEntry(anInfo.iEntry, pe);
|
|
1746 |
defaultPartitionNumber=i;
|
|
1747 |
iHiddenSectors=pe->iFirstSector;
|
|
1748 |
partitionCount++;
|
|
1749 |
break;
|
|
1750 |
}
|
|
1751 |
}
|
|
1752 |
|
|
1753 |
// Now add any other partitions
|
|
1754 |
pe=(TMBRPartitionEntry*)(&iSectorBuf[0]); // Reset it
|
|
1755 |
for (i=0;i<KMBRMaxPrimaryPartitions;i++,pe++)
|
|
1756 |
{
|
|
1757 |
__KTRACE_OPT(KLOCDRV, Kern::Printf("Partition %d:",i));
|
|
1758 |
__KTRACE_OPT(KLOCDRV, DebugDump(*pe));
|
|
1759 |
if (defaultPartitionNumber==i)
|
|
1760 |
continue; // Already sorted
|
|
1761 |
if (pe->IsValidDosPartition() || pe->IsValidFAT32Partition())
|
|
1762 |
{
|
|
1763 |
SetPartitionEntry(anInfo.iEntry+partitionCount, pe);
|
|
1764 |
partitionCount++;
|
|
1765 |
}
|
|
1766 |
}
|
|
1767 |
anInfo.iPartitionCount=partitionCount;
|
|
1768 |
anInfo.iMediaSizeInBytes=TotalSizeInBytes();
|
|
1769 |
|
|
1770 |
__KTRACE_OPT(KLOCDRV, DebugDump(anInfo));
|
|
1771 |
|
|
1772 |
PartitionInfoComplete(KErrNone);
|
|
1773 |
return KErrNone;
|
|
1774 |
}
|
|
1775 |
|
|
1776 |
TInt DPcCardMediaDriverAta::Caps(TLocalDriveCapsV6& aInfo)
|
|
1777 |
//
|
|
1778 |
// Return the capabilities of the media
|
|
1779 |
//
|
|
1780 |
{
|
|
1781 |
aInfo.iType=EMediaHardDisk;
|
|
1782 |
aInfo.iBattery=EBatNotSupported;
|
|
1783 |
aInfo.iDriveAtt=KDriveAttLocal|KDriveAttRemovable;
|
|
1784 |
aInfo.iMediaAtt=KMediaAttFormattable;
|
|
1785 |
aInfo.iFileSystemId=KDriveFileSysFAT;
|
|
1786 |
aInfo.iHiddenSectors=iHiddenSectors;
|
|
1787 |
aInfo.iBlockSize=KAtaSectorSize;
|
|
1788 |
return KErrCompletion; // synchronous completion
|
|
1789 |
}
|
|
1790 |
|
|
1791 |
DECLARE_STANDARD_PDD()
|
|
1792 |
{
|
|
1793 |
return new DPhysicalDeviceMediaAta;
|
|
1794 |
}
|
|
1795 |
|