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// Copyright (c) 2006-2009 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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#include "cstoreutilities.h"
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#include <miuthdr.h>
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#include <barsread.h>
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// The maximum number of octets to be uuencoded on each line is 45
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const TInt KUuDecodedLineLength = 45;
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// Initial size of buffer in which the "Real name <user@host>" strings
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// are built before they're put into the CImHeader and the size by
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// which to increment the buffer when necessary
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const TInt KImapAddressSizeInc=256;
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const TInt KKiloByteSize = 1024;
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const TInt KBufferExtension = 4;
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/**
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Constructor.
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*/
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CStoreUtilities::CStoreUtilities(TImEncodingType aEncodingType,TUint aCharsetId,RFs& aFs)
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:iEncodingType(aEncodingType),iCharsetId(aCharsetId),iFs(aFs)
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{
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}
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/**
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Factory constructors.
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Ownership aHeader is taken.
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*/
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CStoreUtilities* CStoreUtilities::NewL(TImEncodingType aEncodingType,TUint aCharsetId,RFs& aFs)
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{
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CStoreUtilities* self=new(ELeave) CStoreUtilities(aEncodingType,aCharsetId,aFs);
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CleanupStack::PushL(self);
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self->ConstructL();
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CleanupStack::Pop();
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return self;
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}
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void CStoreUtilities::ConstructL()
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{
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// Create converter objects
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iCharacterConverter=CCnvCharacterSetConverter::NewL();
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iCharConv=CImConvertCharconv::NewL(*iCharacterConverter, iFs);
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}
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/**
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Destructor.
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*/
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CStoreUtilities::~CStoreUtilities()
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{
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delete iCharConv;
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delete iCharacterConverter;
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delete iFooterString;
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delete iPartialLine;
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}
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/**
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Checks if the descriptor contains the UUE begin header
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Extracts the file name if it is
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*/
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TBool CStoreUtilities::CheckUUEStartL(const TDesC8& aSourceLine)
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{
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TInt sourceLength = aSourceLine.Length();
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if(sourceLength < KImcvUueStart().Length()+3) // can't be "begin ###", it's not long enough; 3=length of ###
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return EFalse;
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if(!aSourceLine.Left(KImcvUueStart().Length()).CompareF(KImcvUueStart)) // start of line might be UUE boundary
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{
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// we also need to check that the next three chars are numbers - Unix file access code
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const TUint8* sourceLinePtr = aSourceLine.Ptr();
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TInt length=KImcvUueStart().Length();// this defines length as 6 ie. "b e g i n "
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if( TChar(sourceLinePtr[length]).IsDigit() &&
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TChar(sourceLinePtr[length+1]).IsDigit() &&
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TChar(sourceLinePtr[length+2]).IsDigit() )
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{
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// Found 'begin ###' at the start of a line - assume this is a UUencode header
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// The attachment name in this header is ignored. We use the value from the MIME header
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return ETrue;
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}
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}
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return EFalse;
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}
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/**
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Appends data to partial line object extening the destination buffer as appropirate
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@param aBufferPtr the destination bufer
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@param aText the data to be appended
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*/
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void CStoreUtilities::AppendExtendL(HBufC8** aBufferPtr, const TDesC8& aText)
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{
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HBufC8 *buffer = *aBufferPtr;
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TInt32 space = buffer->Des().MaxLength() - (buffer->Des().Length() + aText.Length());
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if (space < 0)
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{
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TInt32 inc = (-space) + KImapAddressSizeInc - ((-space) % KImapAddressSizeInc);
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TInt32 newSize = buffer->Des().MaxLength() + inc;
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HBufC8 *newBuf = buffer->ReAllocL(newSize);
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*aBufferPtr = buffer = newBuf;
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}
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buffer->Des().Append(aText);
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}
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void CStoreUtilities::AttachFooterInfoL(TInt32 aBodyPartRemainingSize,CImapSettings& aImapSettings,HBufC8*& aDecodedData)
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{
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const HBufC8* buf= aImapSettings.DefaultPartialMessageFooter();
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_LIT(KIntegerDirective,"%d");
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const TInt KNoOfDigitsInMailSize = 10; // maximum length for no of digits for remaining body parts size
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TResourceReader reader;
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reader.SetBuffer(buf);
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// Check if %d is not found in the resource string (To avoid problems due to localisation)
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if(buf->Find((TDesC8&)KIntegerDirective) == KErrNotFound)
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{
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iFooterString = (reader.ReadTPtrC()).AllocL();
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}
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else
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{
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HBufC* resourceBuf = (reader.ReadTPtrC()).AllocL();
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CleanupStack::PushL(resourceBuf);
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iFooterString = HBufC::NewL(resourceBuf->Length()+KNoOfDigitsInMailSize);
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iFooterString->Des().Format(*resourceBuf,(aBodyPartRemainingSize / KKiloByteSize));
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CleanupStack::PopAndDestroy(resourceBuf);
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}
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//caller will have left aDecodedData on the cleanupstack
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CleanupStack::Pop(aDecodedData);
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TInt newSize = aDecodedData->Size() + iFooterString->Size();
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aDecodedData = aDecodedData->ReAlloc(newSize);
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CleanupStack::PushL(aDecodedData);
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aDecodedData->Des().Append(*iFooterString);
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delete iFooterString;
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iFooterString = NULL;
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}
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// convert text from its charset and write to richtext store. aText
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// can span multiple and partial lines
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void CStoreUtilities::WriteToBodyL(const TDesC8& aText,CRichText* aMessageBody)
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{
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TInt pos = aMessageBody->DocumentLength();
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// Add bits of body text, converting along the way, till no characters left
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// .. to convert.
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// Convert text before writing to body.
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TInt rem = 0;
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// there will be a max of one output char per input byte
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HBufC16* text16=HBufC16::NewLC(aText.Length());
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TPtr16 ptr16=text16->Des();
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TBool preparedToConvert = iCharConv->PrepareToConvertToFromOurCharsetL(iCharsetId);
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if (!preparedToConvert)
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{
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ptr16.Copy(aText);
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aMessageBody->InsertL(pos, ptr16);
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}
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else
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{
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TInt unconvertedChars, firstPos; // not used
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rem = iCharConv->ConvertToOurCharsetL(aText, ptr16,
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unconvertedChars, firstPos);
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if (rem < 0) // error
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{
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// Copy unconverted characters.
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ptr16.Copy(aText);
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aMessageBody->InsertL(pos, ptr16);
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}
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else if (rem && rem < iLeftOver.MaxLength())
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{
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iLeftOver.Copy(aText.Right(rem));
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}
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// convert CRLF to ELineBreak
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TInt start = 0;
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TInt length = ptr16.Length();
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if (length>0)
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{
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TInt i;
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for (i=1; i<length; i++)
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{
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if (ptr16[i-1] == KImcvCR && ptr16[i] == KImcvLF)
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{
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ptr16[i-1] = CEditableText::ELineBreak;
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// write this line to body
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TPtrC ptr = ptr16.Mid(start, i-start);
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aMessageBody->InsertL(pos, ptr);
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pos += ptr.Length();
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start = i+1;
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}
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}
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if (start != i)
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{
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TPtrC ptr = ptr16.Mid(start, i-start);
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aMessageBody->InsertL(pos, ptr);
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}
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}
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}
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CleanupStack::PopAndDestroy(text16);
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}
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// Decode and store received data
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HBufC8* CStoreUtilities::DecodeL(const TPtrC8& aBodyData, const TBool aEndOfStream)
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{
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// Somewhere to store decoded data, at least as long as source (plus anything we have left
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// in the partial line buffer which may now get consumed)
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TInt outputbuffersize=aBodyData.Length()+KBufferExtension;
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if (iPartialLine)
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outputbuffersize+=iPartialLine->Des().Length();
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HBufC8* decoded=HBufC8::NewL(outputbuffersize);
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TPtr8 decoded_ptr=decoded->Des();
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// Which decoder are we using?
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switch(iEncodingType)
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{
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case EEncodingTypeNone:
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case EEncodingType7Bit:
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case EEncodingType8Bit:
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case EEncodingTypeBinary:
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case EEncodingTypeUnknown:
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// Nothing to do, just copy data
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decoded->Des().Append(aBodyData);
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break;
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case EEncodingTypeBASE64:
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// Decode Base64 data: just filter it through decoder, it
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// ignores line breaks anyway.
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iB64Decoder.Decode(aBodyData,decoded_ptr);
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break;
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case EEncodingTypeUU:
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{
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TPtrC8 bodydata=aBodyData;
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// Got a partial buffer?
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if (!iPartialLine)
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{
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// Allocate buffer
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iPartialLine=HBufC8::NewL(KUuDecodedLineLength);
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iUUDecoding = EFalse;
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}
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// Decode UUEncoded data: line by line
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TBool decodeEnded = EFalse;
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TInt position=0;
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while ( bodydata.Length() && !decodeEnded )
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{
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// Find() returns the start of "\r\n". The decoding algorithm
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// requires that the encoded line contains the "\r\n".
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TInt lineEnd = bodydata.Find( _L8("\r\n") );
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if (lineEnd != KErrNotFound)
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{
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lineEnd = lineEnd + 2;
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AppendExtendL( &iPartialLine, bodydata.Left( lineEnd ));
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bodydata.Set( bodydata.Mid( lineEnd ) );
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// Check for a well-formated begin-tag
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if ( CheckUUEStartL( iPartialLine->Des() ) )
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{
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iUUDecoding = ETrue;
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}
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else if ( iPartialLine->Compare( KImcvUueEnd ) != 0 && iUUDecoding )
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{
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// Every malformatted string is decoded as an empty string
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// with length 0. Appending such a string is harmless.
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TPtr8 destination((unsigned char*)decoded_ptr.Ptr()+position,0,outputbuffersize-position);
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iUUDecoder.Decode(*iPartialLine,destination);
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position+=destination.Length();
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}
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else if ( iUUDecoding )
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{
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decodeEnded = ETrue;
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iUUDecoding = EFalse;
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}
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iPartialLine->Des().Zero();
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}
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else
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{
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AppendExtendL( &iPartialLine, bodydata);
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// advance to end of bodydata
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bodydata.Set(bodydata.Ptr()+bodydata.Length(), 0);
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}
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}
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decoded->Des().SetLength(position);
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break;
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}
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case EEncodingTypeQP:
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{
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TPtrC8 bodydata=aBodyData;
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// Got a partial buffer?
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if (!iPartialLine)
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{
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// Allocate buffer
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iPartialLine=HBufC8::NewL(256);
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}
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// Build buffer to decode: basically, QP decoder wants CRLF terminated
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// lines, so we build them in the iPartialLine buffer. There may be
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// stuff already there from previous data packet - so we just append.
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TInt position=0;
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while(bodydata.Length())
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{
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// Find a line break
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TInt lineend=bodydata.Find(_L8("\r\n"));
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// No break?
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if (lineend==KErrNotFound && !aEndOfStream)
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{
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// Stick it all in the partialline buffer, we should get a CRLF
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// soon...
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AppendExtendL( &iPartialLine,bodydata);
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break;
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}
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else
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{
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if (lineend==KErrNotFound)
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{
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// Append whole thing left to buffer
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AppendExtendL( &iPartialLine,bodydata);
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// advance to end of bodydata
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bodydata.Set(bodydata.Ptr()+bodydata.Length(), 0);
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}
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else
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{
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// Append to buffer up to that point (including the \r\n)
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AppendExtendL( &iPartialLine,bodydata.Left(lineend+2));
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// Remove from the buffer we're working on (including the \r\n)
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bodydata.Set(bodydata.Ptr()+lineend+2,bodydata.Length()-lineend-2);
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}
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// Decode & skip on in buffer
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TPtr8 destination((unsigned char*)decoded_ptr.Ptr()+position,0,outputbuffersize-position);
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iQPDecoder.Decode(*iPartialLine,destination);
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position+=destination.Length();
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iPartialLine->Des().Zero();
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}
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}
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// Update decoded
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decoded->Des().SetLength(position);
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break;
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}
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}
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// put back any partially converted data
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if (iLeftOver.Length())
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{
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decoded->Des().Insert(0, iLeftOver);
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iLeftOver.SetLength(0);
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}
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return decoded;
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}
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