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libreoffice/basic/source/classes/image.cxx

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/*************************************************************************
*
* OpenOffice.org - a multi-platform office productivity suite
*
* $RCSfile: image.cxx,v $
*
* $Revision: 1.24 $
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*
* last change: $Author: hr $ $Date: 2007-06-27 14:18:06 $
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*
* The Contents of this file are made available subject to
* the terms of GNU Lesser General Public License Version 2.1.
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*
*
* GNU Lesser General Public License Version 2.1
* =============================================
* Copyright 2005 by Sun Microsystems, Inc.
* 901 San Antonio Road, Palo Alto, CA 94303, USA
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*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License version 2.1, as published by the Free Software Foundation.
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*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
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*
* You should have received a copy of the GNU Lesser General Public
* License along with this library; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston,
* MA 02111-1307 USA
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*
************************************************************************/
// MARKER(update_precomp.py): autogen include statement, do not remove
#include "precompiled_basic.hxx"
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#ifndef _STREAM_HXX //autogen
#include <tools/stream.hxx>
#endif
#include <tools/tenccvt.hxx>
#include <basic/sbx.hxx>
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#include "sb.hxx"
#include <string.h> // memset() etc
#include "image.hxx"
#include <codegen.hxx>
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SbiImage::SbiImage()
{
pStringOff = NULL;
pStrings = NULL;
pCode = NULL;
pLegacyPCode = NULL;
nFlags = 0;
nStrings = 0;
nStringSize= 0;
nCodeSize = 0;
nLegacyCodeSize =
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nDimBase = 0;
bInit =
bError = FALSE;
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bFirstInit = TRUE;
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eCharSet = gsl_getSystemTextEncoding();
}
SbiImage::~SbiImage()
{
Clear();
}
void SbiImage::Clear()
{
delete[] pStringOff;
delete[] pStrings;
delete[] pCode;
ReleaseLegacyBuffer();
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pStringOff = NULL;
pStrings = NULL;
pCode = NULL;
nFlags = 0;
nStrings = 0;
nStringSize= 0;
nLegacyCodeSize = 0;
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nCodeSize = 0;
eCharSet = gsl_getSystemTextEncoding();
nDimBase = 0;
bError = FALSE;
}
/**************************************************************************
*
* Service-Routinen fuer das Laden und Speichern
*
**************************************************************************/
BOOL SbiGood( SvStream& r )
{
return BOOL( !r.IsEof() && r.GetError() == SVSTREAM_OK );
}
// Oeffnen eines Records
ULONG SbiOpenRecord( SvStream& r, UINT16 nSignature, UINT16 nElem )
{
ULONG nPos = r.Tell();
r << nSignature << (INT32) 0 << nElem;
return nPos;
}
// Schliessen eines Records
void SbiCloseRecord( SvStream& r, ULONG nOff )
{
ULONG nPos = r.Tell();
r.Seek( nOff + 2 );
r << (INT32) ( nPos - nOff - 8 );
r.Seek( nPos );
}
/**************************************************************************
*
* Laden und Speichern
*
**************************************************************************/
// Falls die Versionsnummer nicht passt, werden die binaeren Teile
// nicht geladen, wohl aber Source, Kommentar und Name.
BOOL SbiImage::Load( SvStream& r )
{
UINT32 nVersion = 0; // Versionsnummer
return Load( r, nVersion );
}
BOOL SbiImage::Load( SvStream& r, UINT32& nVersion )
{
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UINT16 nSign, nCount;
UINT32 nLen, nOff;
Clear();
// Master-Record einlesen
r >> nSign >> nLen >> nCount;
ULONG nLast = r.Tell() + nLen;
UINT32 nCharSet; // System-Zeichensatz
UINT32 lDimBase;
UINT16 nReserved1;
UINT32 nReserved2;
UINT32 nReserved3;
BOOL bBadVer = FALSE;
if( nSign == B_MODULE )
{
r >> nVersion >> nCharSet >> lDimBase
>> nFlags >> nReserved1 >> nReserved2 >> nReserved3;
eCharSet = (CharSet) nCharSet;
eCharSet = GetSOLoadTextEncoding( eCharSet );
bBadVer = BOOL( nVersion > B_CURVERSION );
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nDimBase = (USHORT) lDimBase;
}
bool bLegacy = ( nVersion < B_EXT_IMG_VERSION );
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ULONG nNext;
while( ( nNext = r.Tell() ) < nLast )
{
short i;
r >> nSign >> nLen >> nCount;
nNext += nLen + 8;
if( r.GetError() == SVSTREAM_OK )
switch( nSign )
{
case B_NAME:
r.ReadByteString( aName, eCharSet );
//r >> aName;
break;
case B_COMMENT:
r.ReadByteString( aComment, eCharSet );
//r >> aComment;
break;
case B_SOURCE:
{
String aTmp;
r.ReadByteString( aTmp, eCharSet );
aOUSource = aTmp;
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//r >> aSource;
break;
}
#ifdef EXTENDED_BINARY_MODULES
case B_EXTSOURCE:
{
for( UINT16 j = 0 ; j < nCount ; j++ )
{
String aTmp;
r.ReadByteString( aTmp, eCharSet );
aOUSource += aTmp;
}
break;
}
#endif
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case B_PCODE:
if( bBadVer ) break;
pCode = new char[ nLen ];
nCodeSize = nLen;
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r.Read( pCode, nCodeSize );
if ( bLegacy )
{
ReleaseLegacyBuffer(); // release any previously held buffer
nLegacyCodeSize = (UINT16) nCodeSize;
pLegacyPCode = pCode;
PCodeBuffConvertor< UINT16, UINT32 > aLegacyToNew( (BYTE*)pLegacyPCode, nLegacyCodeSize );
aLegacyToNew.convert();
pCode = (char*)aLegacyToNew.GetBuffer();
nCodeSize = aLegacyToNew.GetSize();
// we don't release the legacy buffer
// right now, thats because the module
// needs it to fix up the method
// nStart members. When that is done
// the module can release the buffer
// or it can wait until this routine
// is called again or when this class // destructs all of which will trigger
// release of the buffer.
}
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break;
case B_PUBLICS:
case B_POOLDIR:
case B_SYMPOOL:
case B_LINERANGES:
break;
case B_STRINGPOOL:
if( bBadVer ) break;
MakeStrings( nCount );
for( i = 0; i < nStrings && SbiGood( r ); i++ )
{
r >> nOff;
pStringOff[ i ] = (USHORT) nOff;
}
r >> nLen;
if( SbiGood( r ) )
{
delete [] pStrings;
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pStrings = new sal_Unicode[ nLen ];
nStringSize = (USHORT) nLen;
char* pByteStrings = new char[ nLen ];
r.Read( pByteStrings, nStringSize );
for( short j = 0; j < nStrings; j++ )
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{
USHORT nOff2 = (USHORT) pStringOff[ j ];
String aStr( pByteStrings + nOff2, eCharSet );
memcpy( pStrings + nOff2, aStr.GetBuffer(), (aStr.Len() + 1) * sizeof( sal_Unicode ) );
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}
delete[] pByteStrings;
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} break;
case B_MODEND:
goto done;
default:
break;
}
else
break;
r.Seek( nNext );
}
done:
r.Seek( nLast );
//if( eCharSet != ::GetSystemCharSet() )
//ConvertStrings();
if( !SbiGood( r ) )
bError = TRUE;
return BOOL( !bError );
}
BOOL SbiImage::Save( SvStream& r, UINT32 nVer )
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{
bool bLegacy = ( nVer < B_EXT_IMG_VERSION );
// detect if old code exceeds legacy limits
// if so, then disallow save
if ( bLegacy && ExceedsLegacyLimits() )
{
SbiImage aEmptyImg;
aEmptyImg.aName = aName;
aEmptyImg.Save( r, B_LEGACYVERSION );
return TRUE;
}
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// Erst mal der Header:
ULONG nStart = SbiOpenRecord( r, B_MODULE, 1 );
ULONG nPos;
eCharSet = GetSOStoreTextEncoding( eCharSet );
if ( bLegacy )
r << (INT32) B_LEGACYVERSION;
else
r << (INT32) B_CURVERSION;
r << (INT32) eCharSet
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<< (INT32) nDimBase
<< (INT16) nFlags
<< (INT16) 0
<< (INT32) 0
<< (INT32) 0;
// Name?
if( aName.Len() && SbiGood( r ) )
{
nPos = SbiOpenRecord( r, B_NAME, 1 );
r.WriteByteString( aName, eCharSet );
//r << aName;
SbiCloseRecord( r, nPos );
}
// Kommentar?
if( aComment.Len() && SbiGood( r ) )
{
nPos = SbiOpenRecord( r, B_COMMENT, 1 );
r.WriteByteString( aComment, eCharSet );
//r << aComment;
SbiCloseRecord( r, nPos );
}
// Source?
if( aOUSource.getLength() && SbiGood( r ) )
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{
nPos = SbiOpenRecord( r, B_SOURCE, 1 );
String aTmp;
sal_Int32 nLen = aOUSource.getLength();
const sal_Int32 nMaxUnitSize = STRING_MAXLEN - 1;
if( nLen > STRING_MAXLEN )
aTmp = aOUSource.copy( 0, nMaxUnitSize );
else
aTmp = aOUSource;
r.WriteByteString( aTmp, eCharSet );
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//r << aSource;
SbiCloseRecord( r, nPos );
#ifdef EXTENDED_BINARY_MODULES
if( nLen > STRING_MAXLEN )
{
sal_Int32 nRemainingLen = nLen - nMaxUnitSize;
UINT16 nUnitCount = UINT16( (nRemainingLen + nMaxUnitSize - 1) / nMaxUnitSize );
nPos = SbiOpenRecord( r, B_EXTSOURCE, nUnitCount );
for( UINT16 i = 0 ; i < nUnitCount ; i++ )
{
sal_Int32 nCopyLen =
(nRemainingLen > nMaxUnitSize) ? nMaxUnitSize : nRemainingLen;
String aTmp2 = aOUSource.copy( (i+1) * nMaxUnitSize, nCopyLen );
nRemainingLen -= nCopyLen;
r.WriteByteString( aTmp2, eCharSet );
}
SbiCloseRecord( r, nPos );
}
#endif
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}
// Binaere Daten?
if( pCode && SbiGood( r ) )
{
nPos = SbiOpenRecord( r, B_PCODE, 1 );
if ( bLegacy )
{
ReleaseLegacyBuffer(); // release any previously held buffer
PCodeBuffConvertor< UINT32, UINT16 > aNewToLegacy( (BYTE*)pCode, nCodeSize );
aNewToLegacy.convert();
pLegacyPCode = (char*)aNewToLegacy.GetBuffer();
nLegacyCodeSize = aNewToLegacy.GetSize();
r.Write( pLegacyPCode, nLegacyCodeSize );
}
else
r.Write( pCode, nCodeSize );
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SbiCloseRecord( r, nPos );
}
// String-Pool?
if( nStrings )
{
nPos = SbiOpenRecord( r, B_STRINGPOOL, nStrings );
// Fuer jeden String:
// UINT32 Offset des Strings im Stringblock
short i;
for( i = 0; i < nStrings && SbiGood( r ); i++ )
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r << (UINT32) pStringOff[ i ];
// Danach der String-Block
char* pByteStrings = new char[ nStringSize ];
for( i = 0; i < nStrings; i++ )
{
USHORT nOff = (USHORT) pStringOff[ i ];
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ByteString aStr( pStrings + nOff, eCharSet );
memcpy( pByteStrings + nOff, aStr.GetBuffer(), (aStr.Len() + 1) * sizeof( char ) );
}
r << (UINT32) nStringSize;
r.Write( pByteStrings, nStringSize );
delete[] pByteStrings;
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SbiCloseRecord( r, nPos );
}
// Und die Gesamtlaenge setzen
SbiCloseRecord( r, nStart );
if( !SbiGood( r ) )
bError = TRUE;
return BOOL( !bError );
}
/**************************************************************************
*
* Routinen, die auch vom Compiler gerufen werden
*
**************************************************************************/
void SbiImage::MakeStrings( short nSize )
{
nStrings = 0;
nStringIdx = 0;
nStringOff = 0;
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nStringSize = 1024;
pStrings = new sal_Unicode[ nStringSize ];
pStringOff = new UINT32[ nSize ];
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if( pStrings && pStringOff )
{
nStrings = nSize;
memset( pStringOff, 0, nSize * sizeof( UINT32 ) );
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memset( pStrings, 0, nStringSize * sizeof( sal_Unicode ) );
}
else
bError = TRUE;
}
// Hinzufuegen eines Strings an den StringPool. Der String-Puffer
// waechst dynamisch in 1K-Schritten
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void SbiImage::AddString( const String& r )
{
if( nStringIdx >= nStrings )
bError = TRUE;
if( !bError )
{
xub_StrLen len = r.Len() + 1;
UINT32 needed = nStringOff + len;
if( needed > 0xFFFFFF00L )
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bError = TRUE; // out of mem!
else if( needed > nStringSize )
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{
UINT32 nNewLen = needed + 1024;
nNewLen &= 0xFFFFFC00; // trim to 1K border
if( nNewLen > 0xFFFFFF00L )
nNewLen = 0xFFFFFF00L;
sal_Unicode* p = NULL;
if( (p = new sal_Unicode[ nNewLen ]) != NULL )
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{
memcpy( p, pStrings, nStringSize * sizeof( sal_Unicode ) );
delete[] pStrings;
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pStrings = p;
nStringSize = sal::static_int_cast< UINT16 >(nNewLen);
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}
else
bError = TRUE;
}
if( !bError )
{
pStringOff[ nStringIdx++ ] = nStringOff;
//ByteString aByteStr( r, eCharSet );
memcpy( pStrings + nStringOff, r.GetBuffer(), len * sizeof( sal_Unicode ) );
nStringOff = nStringOff + len;
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// war das der letzte String? Dann die Groesse
// des Puffers aktualisieren
if( nStringIdx >= nStrings )
nStringSize = nStringOff;
}
}
}
// Codeblock hinzufuegen
// Der Block wurde vom Compiler aus der Klasse SbBuffer herausgeholt
// und ist bereits per new angelegt. Ausserdem enthaelt er alle Integers
// im Big Endian-Format, kann also direkt gelesen/geschrieben werden.
void SbiImage::AddCode( char* p, UINT32 s )
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{
pCode = p;
nCodeSize = s;
}
void SbiImage::AddType(SbxObject* pObject) // User-Type mit aufnehmen
{
if( !rTypes.Is() )
rTypes = new SbxArray;
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SbxObject *pCopyObject = new SbxObject(*pObject);
rTypes->Insert (pCopyObject,rTypes->Count());
}
void SbiImage::AddEnum(SbxObject* pObject) // Register enum type
{
if( !rEnums.Is() )
rEnums = new SbxArray;
rEnums->Insert( pObject, rEnums->Count() );
}
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/**************************************************************************
*
* Zugriffe auf das Image
*
**************************************************************************/
// IDs zaehlen ab 1!!
String SbiImage::GetString( short nId ) const
{
if( nId && nId <= nStrings )
{
UINT32 nOff = pStringOff[ nId - 1 ];
sal_Unicode* pStr = pStrings + nOff;
// #i42467: Special treatment for vbNullChar
if( *pStr == 0 )
{
UINT32 nNextOff = (nId < nStrings) ? pStringOff[ nId ] : nStringOff;
UINT32 nLen = nNextOff - nOff - 1;
if( nLen == 1 )
{
// Force length 1 and make char 0 afterwards
String aNullCharStr( String::CreateFromAscii( " " ) );
aNullCharStr.SetChar( 0, 0 );
return aNullCharStr;
}
}
else
{
String aStr( pStr );
return aStr;
}
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}
return String();
}
const SbxObject* SbiImage::FindType (String aTypeName) const
{
return rTypes.Is() ? (SbxObject*)rTypes->Find(aTypeName,SbxCLASS_OBJECT) : NULL;
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}
UINT16
SbiImage::CalcLegacyOffset( INT32 nOffset )
{
return SbiCodeGen::calcLegacyOffSet( (BYTE*)pCode, nOffset ) ;
}
UINT32
SbiImage::CalcNewOffset( INT16 nOffset )
{
return SbiCodeGen::calcNewOffSet( (BYTE*)pLegacyPCode, nOffset ) ;
}
void
SbiImage::ReleaseLegacyBuffer()
{
delete[] pLegacyPCode;
pLegacyPCode = NULL;
nLegacyCodeSize = 0;
}
BOOL
SbiImage::ExceedsLegacyLimits()
{
if ( ( nStringSize > 0xFF00L ) || ( CalcLegacyOffset( nCodeSize ) > 0xFF00L ) )
return TRUE;
return FALSE;
}