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/*
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* Copyright (c) 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 "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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*/
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#include <e32debug.h> // RDebug
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#include <analyzetool/analyzetooltraceconstants.h>
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#include "analyzetoolfastlog.h"
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#include "atlog.h"
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// Local time function.
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TInt64 CurrentTime()
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{
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LOGSTR1( "ATFL CurrentTime()" );
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TTime time;
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time.UniversalTime();
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return time.Int64() - KMicroSecondsAt1970;
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}
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TInt ATFastLogProcessStarted( const TDesC8& aProcessName,
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TUint aProcessId,
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TUint32 aIsDebug )
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{
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LOGSTR1( "ATFL ATFastLogProcessStarted()" );
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// Convert process name to 16-bit descriptor.
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TBuf<KMaxProcessName> processName;
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processName.Copy( aProcessName );
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// Buffer to trace.
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TBuf<KProcessStartBufLength> buffer;
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// Format process name and id.
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buffer.Format( KProcessStart16, &processName, aProcessId );
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// Timestamp.
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buffer.AppendNum( CurrentTime(), EHex ) ;
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// Append udeb/urel information to the process start.
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buffer.Append( KSpaceTrace );
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buffer.AppendNum( aIsDebug, EHex );
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// Append version number.
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buffer.Append( KSpaceTrace );
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buffer.AppendNum( KATTraceVersion, EHex );
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// Log to trace.
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RDebug::Print( KTraceMessage, aProcessId ,&buffer );
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return KErrNone;
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}
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TInt ATFastLogProcessEnded( TUint aProcessId,
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TUint aHandleLeakCount )
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{
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LOGSTR1( "ATFL ATFastLogProcessEnded()" );
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// Handle leaks.
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if ( aHandleLeakCount > 0 )
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{
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// Buffer to trace.
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TBuf<KHandleLeakBufLength> buffer2;
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buffer2.Format( KHandleLeak16, &KUnknownModule16, aHandleLeakCount );
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// Trace it.
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RDebug::Print( KTraceMessage, aProcessId, &buffer2 );
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}
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// Process end trace.
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TBuf<KProcessEndBufLength> buffer;
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buffer.Format( KProcessEnd16, aProcessId );
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buffer.AppendNum( CurrentTime(), EHex);
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buffer.Append( KNewLineTrace );
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RDebug::Print( KTraceMessage, aProcessId, &buffer );
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return KErrNone;
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}
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TInt ATFastLogDllLoaded( TUint aProcessId,
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const TDesC8& aDllName,
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TUint32 aStartAddress,
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TUint32 aEndAddress )
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{
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LOGSTR1( "ATFL ATFastLogDllLoaded()" );
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// Timestamp.
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TInt64 time = CurrentTime();
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// Convert dll name to 16-bit descriptor.
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TBuf<KMaxLibraryName> dll;
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dll.Copy( aDllName );
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// Buffer to trace.
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TBuf<KDllLoadBufLength> buffer;
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buffer.Format( KDllLoad16, &dll, time, aStartAddress, aEndAddress );
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RDebug::Print( KTraceMessage, aProcessId, &buffer );
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return KErrNone;
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}
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TInt ATFastLogDllUnloaded( TUint aProcessId, const TDesC8& aDllName, TUint32 aStartAddress,
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TUint32 aEndAddress )
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{
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LOGSTR1( "ATFL ATFastLogDllUnloaded()" );
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// Timestamp.
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TInt64 time = CurrentTime();
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// Convert dll name to 16-bit descriptor.
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TBuf<KMaxLibraryName> dll;
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dll.Copy( aDllName );
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// Buffer to trace.
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TBuf<KDllLoadBufLength> buffer;
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buffer.Format( KDllUnload16, &dll, time, aStartAddress, aEndAddress );
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RDebug::Print( KTraceMessage, aProcessId, &buffer );
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return KErrNone;
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}
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TInt ATFastLogMemoryAllocated( TUint aProcessId, TUint32 aMemAddress,
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TFixedArray<TUint32, KATMaxCallstackLength>& aCallstack,
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TInt aSize )
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{
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LOGSTR1( "ATFL ATFastLogMemoryAllocated()" );
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// ALLOCH <Memory address> <Time stamp> <Allocation size> <Call stack address count>
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// <Call stack address> <Call stack address> ...
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// Timestamp.
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TInt64 time = CurrentTime();
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// Trace buffer and pointer to it.
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TBufC<KMemAllocBufLength> buffer;
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TPtr ptr( buffer.Des() );
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// Append the tag implying a memory allocation line in the data file
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ptr.Append( KMemoryAllocHeader );
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// Append the start address of this allocation in the 32-bit (max 8 characters)
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// hexadecimal text format.
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ptr.AppendNum( aMemAddress, EHex );
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// Append the current time in the 64-bit (max 16 characters) hexadecimal text
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// format
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ptr.Append( KSpaceTrace );
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ptr.AppendNum( time, EHex );
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// Append the size of the allocation in the 32-bit (max 8 characters) hexadecimal
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// text format.
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ptr.Append( KSpaceTrace );
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ptr.AppendNum( aSize, EHex );
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// Search call stack for address count.
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TInt addrCount(0);
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for ( TInt j = 0; j < aCallstack.Count() ; j++ )
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{
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if ( aCallstack.At(j) == 0 )
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break;
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addrCount++;
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}
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// Current position in call stack.
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TInt addrPos( 0 );
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// Append address count.
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ptr.Append( KSpaceTrace );
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ptr.AppendNum( addrCount, EHex );
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// Calculate last item length
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TInt lastItemLength( KTraceMessage().Length() + KHexa32Length +
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KSpaceLength + KNewlineLength );
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TUint packetNumber( 1 );
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// Go through all call stack's memory addresses associated with
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// this memory allocation
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for ( TInt j = 0; j < addrCount; j++ )
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{
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// ALLOCF <Memory address> <Time stamp> <Packet number>
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// <Call stack address> <Call stack address> ...
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if ( ptr.Length() <= 0 )
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{
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// Create alloc fragment message header
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ptr.Append( KMemoryAllocFragment );
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ptr.AppendNum( aMemAddress, EHex );
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ptr.Append( KSpaceTrace );
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ptr.AppendNum( time, EHex );
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ptr.Append( KSpaceTrace );
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ptr.AppendNum( packetNumber, EHex );
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// Increase packet number
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packetNumber++;
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}
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// Append call stack address.
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ptr.AppendFormat( KHexaNumberTrace, aCallstack.At( addrPos ) );
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// Move the call stack position.
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addrPos++;
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// Check if buffer max length exceed
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if ( lastItemLength + ptr.Length() >= KMemAllocBufLength )
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{
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ptr.Append( KNewLineTrace );
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// Log through debug channel
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RDebug::Print( KTraceMessage, aProcessId, &buffer );
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// Empty trace buffer
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ptr.Delete( 0, ptr.MaxLength() );
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}
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}
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// Send last message if exists.
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if ( ptr.Length() > 0 )
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{
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ptr.Append( KNewLineTrace );
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RDebug::Print( KTraceMessage, aProcessId, &buffer);
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}
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return KErrNone;
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}
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TInt ATFastLogMemoryFreed( TUint aProcessId, TUint32 aMemAddress,
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TFixedArray<TUint32, KATMaxFreeCallstackLength>& aFreeCallstack )
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{
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LOGSTR1( "ATFL ATFastLogMemoryFreed()" );
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// FREEH <Memory address> <Time tamp> <Call stack address count> <Call stack address>
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// <Call stack address> ...
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// Timestamp.
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TInt64 time = CurrentTime();
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// Trace buffer and pointer to it.
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TBufC<KMemFreedBufLength> buffer;
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TPtr ptr( buffer.Des() );
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// Append the tag implying a memory allocation line in the data file
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ptr.Append( KMemoryFreedHeader );
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// Append the start address of this allocation in the 32-bit (max 8 characters)
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// hexadecimal text format.
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ptr.AppendNum( aMemAddress, EHex );
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// Append timestamp;
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ptr.Append( KSpaceTrace );
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ptr.AppendNum( time, EHex);
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// Search call stack for address count.
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TInt addrCount(0);
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for ( TInt j = 0; j < aFreeCallstack.Count() ; j++ )
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{
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if ( aFreeCallstack.At(j) == 0 )
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break;
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addrCount++;
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}
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// Current position in call stack.
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TInt addrPos( 0 );
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// Append address count.
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ptr.Append( KSpaceTrace );
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ptr.AppendNum( addrCount, EHex );
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// Calculate last item length
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TInt lastItemLength( KTraceMessage().Length() + KHexa32Length +
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KSpaceLength + KNewlineLength );
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TUint packetNumber( 1 );
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// Go through all call stack's memory addresses associated with
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// this memory allocation
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for ( TInt j = 0; j < addrCount; j++ )
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{
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// ALLOCF <Memory address> <Time stamp> <Packet number>
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// <Call stack address> <Call stack address> ...
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if ( ptr.Length() <= 0 )
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{
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// Create alloc fragment message header
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ptr.Append( KMemoryFreedFragment );
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ptr.AppendNum( aMemAddress, EHex );
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ptr.Append( KSpaceTrace );
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ptr.AppendNum( packetNumber, EHex );
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// Increase packet number
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packetNumber++;
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}
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// Append call stack address.
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ptr.AppendFormat( KHexaNumberTrace, aFreeCallstack.At( addrPos ) );
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// Move the call stack position.
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addrPos++;
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// Check if buffer max length exceed
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if ( lastItemLength + ptr.Length() >= KMemFreedBufLength )
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{
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ptr.Append( KNewLineTrace );
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// Log through debug channel
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RDebug::Print( KTraceMessage, aProcessId, &buffer );
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// Empty trace buffer
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ptr.Delete( 0, ptr.MaxLength() );
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}
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}
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// Send last message if exists.
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if ( ptr.Length() > 0 )
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{
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ptr.Append( KNewLineTrace );
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RDebug::Print( KTraceMessage, aProcessId, &buffer);
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}
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return KErrNone;
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}
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