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// Copyright (c) 2003-2009 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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//
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#include <e32std.h>
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#include <e32std_private.h>
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#include <f32file.h>
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#include <d32locd.h>
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#include <e32cons.h>
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#include "crashflash.h"
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#include <partitions.h>
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#include <ftlcontrolio.h>
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#ifdef _DEBUG
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#define TRACE(a) RDebug::Print(a); PrintLine(a)
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#define TRACE1(a,b) RDebug::Print(a,b); PrintLine(a,b)
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#define TRACE2(a,b,c) RDebug::Print(a,b,c); PrintLine(a,b,c)
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#define TRACE5(a,b,c,d,e,f) RDebug::Print(a,b,c,d,e,f); PrintLine(a,b,c,d,e,f)
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#else
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#define TRACE(a)
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#define TRACE1(a,b)
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#define TRACE2(a,b,c)
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#define TRACE5(a,b,c,d,e,f)
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#endif
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#ifndef _CRASHLOG_COMPR
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_LIT(KCrashLogFileName, "?:\\crashlog.txt");
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#else
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_LIT(KCrashLogCompFileName, "?:\\crashlog.gz");
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_LIT(KCrashLogCompTruncatedFileName, "?:\\crashlog_truncated.gz");
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#endif //_CRASHLOG_COMPR
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_LIT8(KCrashLogSignatureStomp, "\x00\x00\x00\x00");
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CConsoleBase* console = 0;
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RLocalDrive gLd;
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TLocalDriveCapsV4 gCaps;
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TPckg<TLocalDriveCapsV4> gCapsBuf(gCaps);
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#ifdef _DEBUG
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LOCAL_C void CheckConsoleCreated()
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{
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if(!console)
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{
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TRAPD(r, console = Console::NewL(_L("crashread"),
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TSize(KConsFullScreen,KConsFullScreen)));
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__ASSERT_ALWAYS(r == KErrNone, User::Panic(_L("Could not create console"), 1));
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}
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}
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LOCAL_C void PrintLine(TRefByValue<const TDesC> aFmt,...)
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{
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// Print to a console screen.
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VA_LIST list;
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VA_START(list, aFmt);
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TBuf<0x100> aBuf;
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aBuf.AppendFormatList(aFmt, list);
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CheckConsoleCreated();
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console->Write(aBuf);
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console->Write(_L("\n\r"));
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}
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#endif
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/** Read the signature from the flash and verify it is correct.
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@return ETrue when signature found, EFalse otherwise
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*/
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LOCAL_C TBool SignatureExistsL()
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{
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TBuf8<KCrashLogSignatureBytes> buf(0);
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User::LeaveIfError(gLd.Read(KCrashLogSizeFieldBytes,KCrashLogSignatureBytes,buf));
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if(buf.Compare(KCrashLogSignature) == 0)
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{
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return ETrue;
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}
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return EFalse;
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}
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LOCAL_C TInt LogSizeL()
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{
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TBuf8<KCrashLogSizeFieldBytes> buf(0);
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User::LeaveIfError(gLd.Read(0,KCrashLogSizeFieldBytes,buf));
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TInt size = *((TUint*)(buf.Ptr()));
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size -= (KCrashLogHeaderSize);
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return size;
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}
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#ifdef _CRASHLOG_COMPR
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/** Read the log flags from the flash. Flags located after the log size and uncompressed size
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@return The log flags byte
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*/
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LOCAL_C TUint32 LogFlagsL()
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{
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TBuf8<KCrashLogFlagsFieldBytes> buf(0);
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User::LeaveIfError(gLd.Read(KCrashLogSizeFieldBytes+KCrashLogUncompSizeFieldBytes+KCrashLogSignatureBytes,
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KCrashLogFlagsFieldBytes,buf));
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return *((TUint32*)buf.Ptr());
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}
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#endif //_CRASHLOG_COMPR
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LOCAL_C TInt InvalidateSignature()
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{
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//On Nand we erase the block.
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if(gCaps.iType == EMediaNANDFlash)
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{
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return gLd.Format(0,gCaps.iNumBytesMain * gCaps.iNumPagesPerBlock);
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}
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//On Nor we just stomp on the first 4 bytes of the signature
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return gLd.Write(KCrashLogSizeFieldBytes,KCrashLogSignatureStomp);
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}
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/**
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@return KErrNone if no read errors, otherwise the last read error.
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@leave if other errors occur.
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@param aFileName Where the log wll be copied to
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@param aStartPosition Where to begin reads within the flash section.
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@param aLogSize The total amount to read.
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*/
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TInt CopyToFileL(const TDesC& aFileName, const TInt aStartPosition, const TInt aLogSize)
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{
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// Connect to f32 and write out the file
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RFs fs;
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RFile file;
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User::LeaveIfError(fs.Connect());
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CleanupClosePushL(fs);
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User::LeaveIfError(file.Replace(fs, aFileName, EFileWrite));
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CleanupClosePushL(file);
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//create buffer
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const TInt KBufferSize=32*1024;
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HBufC8* buf = HBufC8::NewLC(KBufferSize);
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TPtr8 ptr = buf->Des();
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TInt readError = KErrNone;
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for(TInt offset=0; offset<aLogSize; offset+=KBufferSize)
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{
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//don't read beyond end on final iteration.
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const TInt readLength = Min(KBufferSize, aLogSize-offset);
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ptr.SetLength(0);
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TInt r = gLd.Read(aStartPosition+offset,readLength,ptr);
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// in case of error store it, but attempt to continue.
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if (r!=KErrNone)
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{
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readError=r;
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}
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User::LeaveIfError(file.Write(offset, ptr));
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}
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User::LeaveIfError(file.Flush());
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CleanupStack::PopAndDestroy(buf);
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CleanupStack::PopAndDestroy(&file);
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CleanupStack::PopAndDestroy(&fs);
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return readError;
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}
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LOCAL_C TInt MainL()
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{
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// check if command line argument is 'reset'
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RBuf cl;
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cl.CreateL(User::CommandLineLength());
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cl.CleanupClosePushL();
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User::CommandLine(cl);
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TBool reset = (cl==_L("reset"));
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CleanupStack::PopAndDestroy();
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TBool changed;
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TInt r = 0;
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TInt i=0;
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// 1) Find a crash log partition.
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for(; i<KMaxLocalDrives; i++)
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{
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r = gLd.Connect(i,changed);
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if(r == KErrNone)
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{
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r = gLd.Caps(gCapsBuf);
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if(r != KErrNone)
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{
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//TRACE1(_L("Could not retrieve gCaps for drive: %d. Skipping to next..."),i);
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continue;
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}
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if(gCaps.iPartitionType == (TUint16)KPartitionTypeSymbianCrashLog)
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{
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TRACE1(_L("Found Symbian crash log partition on drive: %d"),i);
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CleanupClosePushL(gLd);
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// 1) See if there is an existing crash log
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TBool exists = SignatureExistsL();
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if(!exists)
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{
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TRACE(_L("Did not find an existing crash log signature on this crash log partition..."));
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//There may be a second crash log partition. (nor or nand
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//depending on ordering in variantmediadef.h). So we continue searching
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CleanupStack::PopAndDestroy(&gLd);
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continue;
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}
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TRACE1(_L("Found a crash log signature on drive: %d."),i);
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//We've found a crash log partition with a signature on it.
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break;
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}
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else
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{
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//TRACE2(_L("Partition type on drive: %d is %d"),i,gCaps.iPartitionType);
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}
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}
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}
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if(i == KMaxLocalDrives)
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{
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TRACE(_L("No crash log partition found with valid crash log signature found. Exiting..."));
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User::Leave(KErrNotFound);
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}
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// If we're doing a reset, don't try to read the crash log, just skip to stomping the signature
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if(!reset)
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{
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TUint8 systemDriveChar = (TUint8) RFs::GetSystemDriveChar();
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#ifndef _CRASHLOG_COMPR
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// Determine size of crash log and copy to file.
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TInt logSize = LogSizeL();
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TRACE1(_L("Reading crash log of %d bytes..."), logSize);
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TBuf<sizeof(KCrashLogFileName)> crashLogFileName(KCrashLogFileName);
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crashLogFileName[0] = systemDriveChar;
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r = CopyToFileL(crashLogFileName, KCrashLogSizeFieldBytes+KCrashLogSignatureBytes, logSize);
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if (r==KErrNone)
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{
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TRACE1(_L("Crash log successfully written to: %S."), &crashLogFileName);
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}
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else
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{
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TRACE1(_L("Crash log written to %S but errors were encountered when reading, it may be incomplete or corrupt."), &crashLogFileName);
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}
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#else
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// 2) Read crash log header to get the compressed and uncompressed size of the log
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// also need to read the flags to determine if the log had to be truncated and
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// if the expected log format is found
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const TUint32 logFlags = LogFlagsL();
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// Extract byte offset from the end of the header to the start of the log data
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const TInt logOff = logFlags>>KCrashLogFlagOffShift;
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// Work out if the log had to be truncated
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const TInt truncated = logFlags&KCrashLogFlagTruncated;
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// Check the crashlog type flag is that expected - here we can only cope with GZIP compatible logs
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if ((logFlags & (0xffffffff>>(32-KCrashLogFlagTypeBits))) != KCrashLogFlagGzip)
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{// wrong log type so can't extract it
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TRACE(_L("Crash Log data is stored in an incompatible data format so can't be read"));
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}
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else
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{
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// 2) Read the log data
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const TInt logSize = LogSizeL()-logOff; // don't include any offset bytes
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TRACE1(_L("Reading compressed crash log of %d bytes..."), logSize);
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TRACE1(_L("Writing compressed crash log to file..."), logSize);
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RBuf crashLogCompFileName;
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if (!truncated)
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{
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crashLogCompFileName.CreateL(KCrashLogCompFileName);
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}
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else
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{
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crashLogCompFileName.CreateL(KCrashLogCompTruncatedFileName);
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}
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crashLogCompFileName.CleanupClosePushL();
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crashLogCompFileName[0] = systemDriveChar;
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r = CopyToFileL(crashLogCompFileName, KCrashLogHeaderSize+logOff, logSize);
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if (r==KErrNone)
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{
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if (!truncated)
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{
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TRACE1(_L("Crash log successfully written to: %S."), &crashLogCompFileName);
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}
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else
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{
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TRACE(_L("Crash log was truncated, some log data has been lost"));
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TRACE1(_L("Crash log successfully written to: %S."), &crashLogCompFileName);
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}
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}
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else
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{
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if(!truncated)
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{
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TRACE1(_L("Crash log written to %S but errors were encountered when reading, it may be incomplete or corrupt."), &crashLogCompFileName);
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}
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else
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{
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TRACE1(_L("Crash log written to %S but errors were encountered when reading, it may be incomplete or corrupt."), &crashLogCompFileName);
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}
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}
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CleanupStack::PopAndDestroy(&crashLogCompFileName);
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}
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#endif //_CRASHLOG_COMPR
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}
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// 5) Stomp on the signature to mark it eligible to be overwritten
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TRACE(_L("Overwriting existing signature to indicate crash log has been read..."));
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User::LeaveIfError(InvalidateSignature());
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CleanupStack::PopAndDestroy(&gLd);
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if (r==KErrNone)
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{
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sl@0
|
324 |
TRACE(_L("Crash reader finished successfully."));
|
sl@0
|
325 |
}
|
sl@0
|
326 |
else
|
sl@0
|
327 |
{
|
sl@0
|
328 |
TRACE(_L("Crash reader finished but with errors."));
|
sl@0
|
329 |
}
|
sl@0
|
330 |
return KErrNone;
|
sl@0
|
331 |
}
|
sl@0
|
332 |
|
sl@0
|
333 |
GLDEF_C TInt E32Main()
|
sl@0
|
334 |
{
|
sl@0
|
335 |
__UHEAP_MARK;
|
sl@0
|
336 |
CTrapCleanup* cleanup=CTrapCleanup::New();
|
sl@0
|
337 |
TRAPD(ret, MainL());
|
sl@0
|
338 |
if(console)
|
sl@0
|
339 |
{
|
sl@0
|
340 |
console->Getch();
|
sl@0
|
341 |
delete console;
|
sl@0
|
342 |
}
|
sl@0
|
343 |
if (ret){} // stops compile warning
|
sl@0
|
344 |
delete cleanup;
|
sl@0
|
345 |
__UHEAP_MARKEND;
|
sl@0
|
346 |
return KErrNone;
|
sl@0
|
347 |
}
|