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/*
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* Copyright (c) 2022 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: This module is a plug-in module for Shift-JIS with Pictograph.
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* Basicaly, Vodafone Pictograph is encoded by ISO2022,
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* but Japanese FEP needs a pictograph as one character code
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* in Shift-JIS character code set.
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*
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*/
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// INCLUDE FILES
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#include <CnvShiftJisDirectmap.h>
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#include <e32std.h>
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#include <charconv.h>
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#include <jisx0201.h>
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#include <jisx0208.h>
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#include <shiftjis.h>
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#ifdef EKA2
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#include <convgeneratedcpp.h>
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#include <ecom/implementationproxy.h>
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#include "charactersetconverter.h"
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#endif // EKA2
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const TUint KSingleByteRangeFirstBlockEnd = 0x7f;
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const TUint KSingleByteRangeSecondBlockStart = 0xa1;
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const TUint KSingleByteRangeSecondBlockEnd = 0xdf;
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const TUint KFirstByteRangeFirstBlockStart = 0x81;
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const TUint KFirstByteRangeFirstBlockEnd = 0x9f;
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const TUint KFirstByteRangeFirstBlockLength = (KFirstByteRangeFirstBlockEnd+1)-KFirstByteRangeFirstBlockStart;
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const TUint KFirstByteRangeSecondBlockStart = 0xe0;
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const TUint KFirstByteRangeSecondBlockEnd = 0xfc;
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const TUint KSecondByteRangeFirstBlockStart = 0x40;
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const TUint KSecondByteRangeFirstBlockEnd = 0x7e;
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const TUint KSecondByteRangeFirstBlockLength = (KSecondByteRangeFirstBlockEnd+1)-KSecondByteRangeFirstBlockStart;
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const TUint KSecondByteRangeSecondBlockStart = 0x80;
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const TUint KSecondByteRangeSecondBlockEnd = 0xfc;
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const TUint KPictoFirstByteStart = 0xF0;
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const TUint KPictoFirstByteEnd = 0xF9;
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const TUint KPictoSecondByteStart = 0x40;
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//const TUint KPictoSecondByteEnd = 0xFB;
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const TUint KPictoSecondByteEnd = 0xFC;
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// SecureID for Brower app
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const TUint32 KBrowserSecureId = 0x10008D39;
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// Define for converting from YenSign to BackSlash
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const TUint KCharacterCodeForYenSign = 0x00A5;
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const TUint KCharacterCodeForBackSlash = 0x005C;
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#ifdef _DEBUG
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_LIT(KLitPanicText, "SHIFTJIS_FORFEP");
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enum TPanic
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{
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EPanicIndexOverflow1=1,
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EPanicIndexOverflow2,
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EPanicNothingToConvert1,
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EPanicNothingToConvert2,
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EPanicOddNumberOfBytes1,
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EPanicOddNumberOfBytes2,
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EPanicBadPointers1,
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EPanicBadPointers2,
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EPanicBadPointers3,
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EPanicBadPointers4,
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EPanicBadPointers5,
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EPanicBadPointers6,
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EPanicBadPointers7,
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EPanicBadPointers8,
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EPanicBadPointers9
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};
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// ============================= LOCAL FUNCTIONS ===============================
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// -----------------------------------------------------------------------------
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// Panic ?description.
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// ?description
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// -----------------------------------------------------------------------------
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//
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LOCAL_C void Panic(TPanic aPanic)
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{
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User::Panic(KLitPanicText, aPanic);
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}
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#endif
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// -----------------------------------------------------------------------------
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// DummyConvertFromIntermediateBufferInPlace ?description.
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// ?description
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// Returns: ?value_1: ?description
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// ?value_n: ?description_line1
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// ?description_line2
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// -----------------------------------------------------------------------------
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//
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void DummyConvertFromIntermediateBufferInPlace(TInt, TDes8&, TInt& aNumberOfCharactersThatDroppedOut)
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{
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aNumberOfCharactersThatDroppedOut = 0;
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}
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// -----------------------------------------------------------------------------
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// ConvertFromJisX0208ToShiftJisInPlace ?description.
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// ?description
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// Returns: ?value_1: ?description
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// ?value_n: ?description_line1
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// ?description_line2
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// -----------------------------------------------------------------------------
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//
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void ConvertFromJisX0208ToShiftJisInPlace(TInt aStartPositionInDescriptor, TDes8& aDescriptor, TInt& aNumberOfCharactersThatDroppedOut)
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{
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aNumberOfCharactersThatDroppedOut=0;
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const TInt descriptorLength=aDescriptor.Length();
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__ASSERT_DEBUG(descriptorLength>aStartPositionInDescriptor, Panic(EPanicNothingToConvert1));
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__ASSERT_DEBUG((descriptorLength-aStartPositionInDescriptor)%2==0, Panic(EPanicOddNumberOfBytes1));
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TUint8* pointerToCurrentByte=CONST_CAST(TUint8*, aDescriptor.Ptr());
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const TUint8* const pointerToLastByte=pointerToCurrentByte+(descriptorLength-1);
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pointerToCurrentByte+=aStartPositionInDescriptor;
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FOREVER
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{
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TUint firstByte=*pointerToCurrentByte-0x21;
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TUint secondByte=*(pointerToCurrentByte+1)-0x21;
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if (firstByte%2!=0)
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{
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secondByte+=94;
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}
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firstByte/=2;
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if (firstByte<KFirstByteRangeFirstBlockLength)
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{
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firstByte+=KFirstByteRangeFirstBlockStart;
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}
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else
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{
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firstByte+=KFirstByteRangeSecondBlockStart-KFirstByteRangeFirstBlockLength;
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}
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if (secondByte<KSecondByteRangeFirstBlockLength)
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{
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secondByte+=KSecondByteRangeFirstBlockStart;
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}
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else
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{
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secondByte+=KSecondByteRangeSecondBlockStart-KSecondByteRangeFirstBlockLength;
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}
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*pointerToCurrentByte=STATIC_CAST(TUint8, firstByte);
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++pointerToCurrentByte;
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*pointerToCurrentByte=STATIC_CAST(TUint8, secondByte);
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__ASSERT_DEBUG(pointerToCurrentByte<=pointerToLastByte, Panic(EPanicBadPointers1));
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if (pointerToCurrentByte>=pointerToLastByte)
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{
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break;
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}
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++pointerToCurrentByte;
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}
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}
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// -----------------------------------------------------------------------------
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// NumberOfBytesAbleToConvertToJisX0201 ?description.
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// ?description
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// Returns: ?value_1: ?description
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// ?value_n: ?description_line1
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// ?description_line2
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// -----------------------------------------------------------------------------
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//
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TInt NumberOfBytesAbleToConvertToJisX0201(const TDesC8& aDescriptor)
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{
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const TUint8* pointerToPreviousByte=aDescriptor.Ptr()-1;
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const TUint8* const pointerToLastByte=pointerToPreviousByte+aDescriptor.Length();
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if (pointerToPreviousByte==pointerToLastByte)
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{
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return 0;
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}
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FOREVER
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{
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__ASSERT_DEBUG(pointerToPreviousByte<pointerToLastByte, Panic(EPanicBadPointers2));
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const TUint currentByte = *(pointerToPreviousByte+1);
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if (((currentByte > KSingleByteRangeFirstBlockEnd)
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&& (currentByte < KSingleByteRangeSecondBlockStart)) ||
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(currentByte > KSingleByteRangeSecondBlockEnd))
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{
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break;
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}
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__ASSERT_DEBUG(pointerToPreviousByte<pointerToLastByte, Panic(EPanicBadPointers3));
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++pointerToPreviousByte;
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__ASSERT_DEBUG(pointerToPreviousByte<=pointerToLastByte, Panic(EPanicBadPointers4));
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if (pointerToPreviousByte>=pointerToLastByte)
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{
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break;
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}
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}
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return (pointerToPreviousByte+1)-aDescriptor.Ptr();
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}
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// -----------------------------------------------------------------------------
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// NumberOfBytesAbleToConvertToJisX0208 ?description.
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// ?description
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// Returns: ?value_1: ?description
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// ?value_n: ?description_line1
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// ?description_line2
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// -----------------------------------------------------------------------------
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//
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TInt NumberOfBytesAbleToConvertToJisX0208(const TDesC8& aDescriptor)
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{
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const TUint8* pointerToPreviousByte=aDescriptor.Ptr()-1;
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const TUint8* const pointerToLastByte=pointerToPreviousByte+aDescriptor.Length();
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if (pointerToPreviousByte==pointerToLastByte)
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{
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return 0;
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}
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FOREVER
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{
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__ASSERT_DEBUG(pointerToPreviousByte<pointerToLastByte, Panic(EPanicBadPointers5));
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TUint currentByte=*(pointerToPreviousByte+1);
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if ((currentByte<KFirstByteRangeFirstBlockStart) ||
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((currentByte>KFirstByteRangeFirstBlockEnd) && (currentByte<KFirstByteRangeSecondBlockStart)) ||
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(currentByte>KFirstByteRangeSecondBlockEnd) ||
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((currentByte >= KPictoFirstByteStart) && (currentByte <= KPictoFirstByteEnd))
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)
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{
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break;
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}
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__ASSERT_DEBUG(pointerToPreviousByte<pointerToLastByte, Panic(EPanicBadPointers6));
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if (pointerToPreviousByte+1>=pointerToLastByte)
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{
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break;
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}
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__ASSERT_DEBUG(pointerToPreviousByte+2<=pointerToLastByte, Panic(EPanicBadPointers7));
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currentByte=*(pointerToPreviousByte+2);
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if ((currentByte<KSecondByteRangeFirstBlockStart) ||
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((currentByte>KSecondByteRangeFirstBlockEnd) && (currentByte<KSecondByteRangeSecondBlockStart)) ||
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(currentByte>KSecondByteRangeSecondBlockEnd))
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{
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break;
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}
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pointerToPreviousByte+=2;
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__ASSERT_DEBUG(pointerToPreviousByte<=pointerToLastByte, Panic(EPanicBadPointers8));
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if (pointerToPreviousByte>=pointerToLastByte)
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{
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break;
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}
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}
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return (pointerToPreviousByte+1)-aDescriptor.Ptr();
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}
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// -----------------------------------------------------------------------------
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// NumberOfBytesAbleToConvertToPictograph ?description.
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// ?description
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// Returns: ?value_1: ?description
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// ?value_n: ?description_line1
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// ?description_line2
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// -----------------------------------------------------------------------------
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//
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TInt NumberOfBytesAbleToConvertToPictograph(const TDesC8& aDescriptor)
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{
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const TUint8* pointerToPreviousByte = aDescriptor.Ptr() - 1;
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const TUint8* const pointerToLastByte = pointerToPreviousByte + aDescriptor.Length();
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for (; pointerToPreviousByte < pointerToLastByte;)
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{
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__ASSERT_DEBUG(pointerToPreviousByte < pointerToLastByte, Panic(EPanicBadPointers5));
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TUint currentByte = *(pointerToPreviousByte + 1);
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if ((currentByte < KPictoFirstByteStart) || (currentByte > KPictoFirstByteEnd))
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{
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break;
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}
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__ASSERT_DEBUG(pointerToPreviousByte < pointerToLastByte, Panic(EPanicBadPointers6));
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if (pointerToPreviousByte + 1 >= pointerToLastByte)
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{
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break;
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}
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__ASSERT_DEBUG(pointerToPreviousByte + 2 <= pointerToLastByte, Panic(EPanicBadPointers7));
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currentByte = *(pointerToPreviousByte + 2);
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if ((currentByte < KPictoSecondByteStart) || (currentByte> KPictoSecondByteEnd))
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{
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break;
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}
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pointerToPreviousByte += 2;
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__ASSERT_DEBUG(pointerToPreviousByte <= pointerToLastByte, Panic(EPanicBadPointers8));
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if (pointerToPreviousByte >= pointerToLastByte)
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{
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break;
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}
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}
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return (pointerToPreviousByte + 1)-aDescriptor.Ptr();
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}
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// -----------------------------------------------------------------------------
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// DummyConvertToIntermediateBufferInPlace ?description.
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// ?description
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// Returns: ?value_1: ?description
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// ?value_n: ?description_line1
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// ?description_line2
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// -----------------------------------------------------------------------------
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//
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void DummyConvertToIntermediateBufferInPlace(TDes8&)
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{
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}
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// -----------------------------------------------------------------------------
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// ConvertToJisX0208FromShiftJisInPlace ?description.
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// ?description
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// Returns: ?value_1: ?description
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// ?value_n: ?description_line1
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// ?description_line2
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// -----------------------------------------------------------------------------
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//
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void ConvertToJisX0208FromShiftJisInPlace(TDes8& aDescriptor)
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{
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const TInt descriptorLength=aDescriptor.Length();
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__ASSERT_DEBUG(descriptorLength>0, Panic(EPanicNothingToConvert2));
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__ASSERT_DEBUG(descriptorLength%2==0, Panic(EPanicOddNumberOfBytes2));
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TUint8* pointerToCurrentByte=CONST_CAST(TUint8*, aDescriptor.Ptr());
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const TUint8* const pointerToLastByte=pointerToCurrentByte+(descriptorLength-1);
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FOREVER
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{
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TUint firstByte=*pointerToCurrentByte;
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TUint secondByte=*(pointerToCurrentByte+1);
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if (firstByte<KFirstByteRangeSecondBlockStart)
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{
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firstByte-=KFirstByteRangeFirstBlockStart;
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}
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else
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{
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firstByte-=KFirstByteRangeSecondBlockStart-KFirstByteRangeFirstBlockLength;
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}
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if (secondByte<KSecondByteRangeSecondBlockStart)
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{
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secondByte-=KSecondByteRangeFirstBlockStart;
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}
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else
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{
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secondByte-=KSecondByteRangeSecondBlockStart-KSecondByteRangeFirstBlockLength;
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}
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firstByte*=2;
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if (secondByte>=94)
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{
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++firstByte;
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secondByte-=94;
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}
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firstByte+=0x21;
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secondByte+=0x21;
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*pointerToCurrentByte=STATIC_CAST(TUint8, firstByte);
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++pointerToCurrentByte;
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*pointerToCurrentByte=STATIC_CAST(TUint8, secondByte);
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__ASSERT_DEBUG(pointerToCurrentByte<=pointerToLastByte, Panic(EPanicBadPointers9));
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if (pointerToCurrentByte>=pointerToLastByte)
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{
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break;
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}
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++pointerToCurrentByte;
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}
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}
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// New Interface class
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class ShiftJisDirectmapImplementation : public CCharacterSetConverterPluginInterface
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{
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public:
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virtual const TDesC8& ReplacementForUnconvertibleUnicodeCharacters();
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virtual TInt ConvertFromUnicode(
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CCnvCharacterSetConverter::TEndianness aDefaultEndiannessOfForeignCharacters,
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const TDesC8& aReplacementForUnconvertibleUnicodeCharacters,
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TDes8& aForeign,
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const TDesC16& aUnicode,
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CCnvCharacterSetConverter::TArrayOfAscendingIndices& aIndicesOfUnconvertibleCharacters );
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virtual TInt ConvertToUnicode(
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CCnvCharacterSetConverter::TEndianness aDefaultEndiannessOfForeignCharacters,
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TDes16& aUnicode,
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const TDesC8& aForeign,
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TInt&,
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TInt& aNumberOfUnconvertibleCharacters,
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TInt& aIndexOfFirstByteOfFirstUnconvertibleCharacter );
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virtual TBool IsInThisCharacterSetL(
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TBool& aSetToTrue,
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TInt& aConfidenceLevel,
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const TDesC8& );
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static ShiftJisDirectmapImplementation* NewL();
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virtual ~ShiftJisDirectmapImplementation();
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private:
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ShiftJisDirectmapImplementation();
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};
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// -----------------------------------------------------------------------------
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// ReplacementForUnconvertibleUnicodeCharacters returns the character which
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// which is used by default as the replacement for unconvertible Unicode
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// characters.
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// Returns: a character
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403 |
// -----------------------------------------------------------------------------
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//
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405 |
const TDesC8& ShiftJisDirectmapImplementation::ReplacementForUnconvertibleUnicodeCharacters()
|
|
406 |
{
|
|
407 |
return CnvShiftJis::ReplacementForUnconvertibleUnicodeCharacters();
|
|
408 |
}
|
|
409 |
|
|
410 |
// -----------------------------------------------------------------------------
|
|
411 |
// ConvertFromUnicode converts from an Unicode string to a Shift-Jis string
|
|
412 |
// with Pictograph.
|
|
413 |
// Returns: The number of unconverted characters left at the end of the input
|
|
414 |
// descriptor
|
|
415 |
// -----------------------------------------------------------------------------
|
|
416 |
//
|
|
417 |
TInt ShiftJisDirectmapImplementation::ConvertFromUnicode(
|
|
418 |
CCnvCharacterSetConverter::TEndianness aDefaultEndiannessOfForeignCharacters,
|
|
419 |
const TDesC8& aReplacementForUnconvertibleUnicodeCharacters,
|
|
420 |
TDes8& aForeign, const TDesC16& aUnicode,
|
|
421 |
CCnvCharacterSetConverter::TArrayOfAscendingIndices& aIndicesOfUnconvertibleCharacters)
|
|
422 |
{
|
|
423 |
TFixedArray<CnvUtilities::SCharacterSet, 3> arrayOfCoreCharacterSets;
|
|
424 |
arrayOfCoreCharacterSets[0].iConversionData = &CnvJisX0201::ConversionData();
|
|
425 |
arrayOfCoreCharacterSets[0].iConvertFromIntermediateBufferInPlace =
|
|
426 |
DummyConvertFromIntermediateBufferInPlace;
|
|
427 |
arrayOfCoreCharacterSets[0].iEscapeSequence = &KNullDesC8;
|
|
428 |
arrayOfCoreCharacterSets[1].iConversionData = &CnvJisX0208::ConversionData();
|
|
429 |
arrayOfCoreCharacterSets[1].iConvertFromIntermediateBufferInPlace =
|
|
430 |
ConvertFromJisX0208ToShiftJisInPlace;
|
|
431 |
arrayOfCoreCharacterSets[1].iEscapeSequence = &KNullDesC8;
|
|
432 |
arrayOfCoreCharacterSets[2].iConversionData = &CnvShiftJisDirectmap::ConversionData();
|
|
433 |
arrayOfCoreCharacterSets[2].iConvertFromIntermediateBufferInPlace =
|
|
434 |
DummyConvertFromIntermediateBufferInPlace;
|
|
435 |
arrayOfCoreCharacterSets[2].iEscapeSequence = &KNullDesC8;
|
|
436 |
|
|
437 |
return CnvUtilities::ConvertFromUnicode(aDefaultEndiannessOfForeignCharacters,
|
|
438 |
aReplacementForUnconvertibleUnicodeCharacters, aForeign, aUnicode,
|
|
439 |
aIndicesOfUnconvertibleCharacters, arrayOfCoreCharacterSets.Array());
|
|
440 |
}
|
|
441 |
|
|
442 |
// -----------------------------------------------------------------------------
|
|
443 |
// ConvertToUnicode converts from a Shift-Jis string with Pictograph to
|
|
444 |
// an Unicode string .
|
|
445 |
// Returns: The number of unconverted bytes left at the end of the input
|
|
446 |
// descriptor
|
|
447 |
// -----------------------------------------------------------------------------
|
|
448 |
//
|
|
449 |
TInt ShiftJisDirectmapImplementation::ConvertToUnicode(
|
|
450 |
CCnvCharacterSetConverter::TEndianness aDefaultEndiannessOfForeignCharacters,
|
|
451 |
TDes16& aUnicode, const TDesC8& aForeign, TInt&,
|
|
452 |
TInt& aNumberOfUnconvertibleCharacters,
|
|
453 |
TInt& aIndexOfFirstByteOfFirstUnconvertibleCharacter)
|
|
454 |
{
|
|
455 |
TFixedArray<CnvUtilities::SMethod, 3> arrayOfCoreMethods;
|
|
456 |
arrayOfCoreMethods[0].iNumberOfBytesAbleToConvert =
|
|
457 |
NumberOfBytesAbleToConvertToJisX0201;
|
|
458 |
arrayOfCoreMethods[0].iConvertToIntermediateBufferInPlace =
|
|
459 |
DummyConvertToIntermediateBufferInPlace;
|
|
460 |
arrayOfCoreMethods[0].iConversionData = &CnvJisX0201::ConversionData();
|
|
461 |
arrayOfCoreMethods[0].iNumberOfBytesPerCharacter = 1;
|
|
462 |
arrayOfCoreMethods[0].iNumberOfCoreBytesPerCharacter = 1;
|
|
463 |
arrayOfCoreMethods[1].iNumberOfBytesAbleToConvert =
|
|
464 |
NumberOfBytesAbleToConvertToPictograph;
|
|
465 |
arrayOfCoreMethods[1].iConvertToIntermediateBufferInPlace =
|
|
466 |
DummyConvertToIntermediateBufferInPlace;
|
|
467 |
arrayOfCoreMethods[1].iConversionData = &CnvShiftJisDirectmap::ConversionData();
|
|
468 |
arrayOfCoreMethods[1].iNumberOfBytesPerCharacter = 2;
|
|
469 |
arrayOfCoreMethods[1].iNumberOfCoreBytesPerCharacter = 2;
|
|
470 |
arrayOfCoreMethods[2].iNumberOfBytesAbleToConvert =
|
|
471 |
NumberOfBytesAbleToConvertToJisX0208;
|
|
472 |
arrayOfCoreMethods[2].iConvertToIntermediateBufferInPlace =
|
|
473 |
ConvertToJisX0208FromShiftJisInPlace;
|
|
474 |
arrayOfCoreMethods[2].iConversionData = &CnvJisX0208::ConversionData();
|
|
475 |
arrayOfCoreMethods[2].iNumberOfBytesPerCharacter = 2;
|
|
476 |
arrayOfCoreMethods[2].iNumberOfCoreBytesPerCharacter = 2;
|
|
477 |
|
|
478 |
TInt unconvert = CnvUtilities::ConvertToUnicodeFromHeterogeneousForeign(
|
|
479 |
aDefaultEndiannessOfForeignCharacters, aUnicode, aForeign,
|
|
480 |
aNumberOfUnconvertibleCharacters,
|
|
481 |
aIndexOfFirstByteOfFirstUnconvertibleCharacter,
|
|
482 |
arrayOfCoreMethods.Array());
|
|
483 |
|
|
484 |
// The following is specific impelementation for brower.
|
|
485 |
// If brower app calls this API, the yen sign code(0xA5)
|
|
486 |
// must be converted to backslash code(0x5C).
|
|
487 |
// Becasue Javascript supports backslash code ony.
|
|
488 |
TBool browserProcess = (RProcess().SecureId().iId == KBrowserSecureId);
|
|
489 |
if (browserProcess && aUnicode.Length() > 0)
|
|
490 |
{
|
|
491 |
const TUint16* pB = aUnicode.Ptr();
|
|
492 |
const TUint16* pbase = pB;
|
|
493 |
const TUint16* pE = pB + aUnicode.Length() -1;
|
|
494 |
while (pE>=pbase)
|
|
495 |
{
|
|
496 |
if (*pbase == KCharacterCodeForYenSign)
|
|
497 |
{
|
|
498 |
aUnicode[pbase - pB] = KCharacterCodeForBackSlash;
|
|
499 |
}
|
|
500 |
pbase++;
|
|
501 |
}
|
|
502 |
}
|
|
503 |
|
|
504 |
return unconvert;
|
|
505 |
}
|
|
506 |
|
|
507 |
// -----------------------------------------------------------------------------
|
|
508 |
// IsInThisCharacterSetL tests whether the aSample is Shift-JIS or not.
|
|
509 |
// But, This .cpl is only used for FEP.
|
|
510 |
// So, it's not need to correspond auto code detection.
|
|
511 |
// Returns: EFalse: ?description
|
|
512 |
// -----------------------------------------------------------------------------
|
|
513 |
//
|
|
514 |
TBool ShiftJisDirectmapImplementation::IsInThisCharacterSetL(TBool& /*aSetToTrue*/, TInt& /*aConfidenceLevel*/,
|
|
515 |
const TDesC8& /*aSample*/)
|
|
516 |
{
|
|
517 |
return EFalse;
|
|
518 |
}
|
|
519 |
|
|
520 |
ShiftJisDirectmapImplementation* ShiftJisDirectmapImplementation::NewL()
|
|
521 |
{
|
|
522 |
ShiftJisDirectmapImplementation* self = new(ELeave) ShiftJisDirectmapImplementation;
|
|
523 |
return self;
|
|
524 |
}
|
|
525 |
|
|
526 |
ShiftJisDirectmapImplementation::ShiftJisDirectmapImplementation()
|
|
527 |
{
|
|
528 |
//default constructor.. do nothing
|
|
529 |
}
|
|
530 |
|
|
531 |
ShiftJisDirectmapImplementation::~ShiftJisDirectmapImplementation()
|
|
532 |
{
|
|
533 |
//default destructor .. do nothing
|
|
534 |
}
|
|
535 |
|
|
536 |
// ECOM CREATION FUNCTION
|
|
537 |
const TImplementationProxy ImplementationTable[] =
|
|
538 |
{
|
|
539 |
// Note: This is the same UID as defined in old mmp-file
|
|
540 |
// Used also in 12221212.rss ( implementation_uid )
|
|
541 |
IMPLEMENTATION_PROXY_ENTRY( 0x101F8691, ShiftJisDirectmapImplementation::NewL )
|
|
542 |
};
|
|
543 |
|
|
544 |
EXPORT_C const TImplementationProxy* ImplementationGroupProxy( TInt& aTableCount )
|
|
545 |
{
|
|
546 |
aTableCount = sizeof( ImplementationTable ) / sizeof(TImplementationProxy);
|
|
547 |
return ImplementationTable;
|
|
548 |
}
|
|
549 |
|
|
550 |
// End of File
|