/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */ /************************************************************************* * * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. * * Copyright 2000, 2010 Oracle and/or its affiliates. * * OpenOffice.org - a multi-platform office productivity suite * * This file is part of OpenOffice.org. * * OpenOffice.org is free software: you can redistribute it and/or modify * it under the terms of the GNU Lesser General Public License version 3 * only, as published by the Free Software Foundation. * * OpenOffice.org 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 version 3 for more details * (a copy is included in the LICENSE file that accompanied this code). * * You should have received a copy of the GNU Lesser General Public License * version 3 along with OpenOffice.org. If not, see * * for a copy of the LGPLv3 License. * ************************************************************************/ // MARKER(update_precomp.py): autogen include statement, do not remove #include "precompiled_svtools.hxx" #include #include #include #include #include #include #include #include #include #include #include #include #include #include "graphic.hxx" #include "transformer.hxx" using namespace com::sun::star; namespace unographic { // ---------------------- // - GraphicTransformer - // ---------------------- GraphicTransformer::GraphicTransformer() { } // ------------------------------------------------------------------------------ GraphicTransformer::~GraphicTransformer() { } // ------------------------------------------------------------------------------ void setAlpha( Bitmap& rBitmap, AlphaMask& rAlpha, sal_Int32 nColorFrom, sal_Int8 nAlphaTo ) { BitmapWriteAccess* pWriteAccess = rAlpha.AcquireWriteAccess(); BitmapReadAccess* pReadAccess = rBitmap.AcquireReadAccess(); BitmapColor aColorFrom( static_cast< sal_uInt8 >( nColorFrom >> 16 ), static_cast< sal_uInt8 >( nColorFrom >> 8 ), static_cast< sal_uInt8 >( nColorFrom ) ); if ( pReadAccess && pWriteAccess ) { for ( sal_Int32 nY = 0; nY < pReadAccess->Height(); nY++ ) { for ( sal_Int32 nX = 0; nX < pReadAccess->Width(); nX++ ) { BitmapColor aColor( pReadAccess->GetPixel( nY, nX ) ); if ( aColor == aColorFrom ) pWriteAccess->SetPixel( nY, nX, nAlphaTo ); } } } rBitmap.ReleaseAccess( pReadAccess ); rAlpha.ReleaseAccess( pWriteAccess ); } // XGraphicTransformer uno::Reference< graphic::XGraphic > SAL_CALL GraphicTransformer::colorChange( const uno::Reference< graphic::XGraphic >& rxGraphic, sal_Int32 nColorFrom, sal_Int8 nTolerance, sal_Int32 nColorTo, sal_Int8 nAlphaTo ) throw ( lang::IllegalArgumentException, uno::RuntimeException) { const uno::Reference< uno::XInterface > xIFace( rxGraphic, uno::UNO_QUERY ); ::Graphic aGraphic( *::unographic::Graphic::getImplementation( xIFace ) ); BitmapColor aColorFrom( static_cast< sal_uInt8 >( nColorFrom ), static_cast< sal_uInt8 >( nColorFrom >> 8 ), static_cast< sal_uInt8 >( nColorFrom >> 16 ) ); BitmapColor aColorTo( static_cast< sal_uInt8 >( nColorTo ), static_cast< sal_uInt8 >( nColorTo >> 8 ), static_cast< sal_uInt8 >( nColorTo >> 16 ) ); if ( aGraphic.GetType() == GRAPHIC_BITMAP ) { BitmapEx aBitmapEx( aGraphic.GetBitmapEx() ); Bitmap aBitmap( aBitmapEx.GetBitmap() ); if ( aBitmapEx.IsAlpha() ) { AlphaMask aAlphaMask( aBitmapEx.GetAlpha() ); setAlpha( aBitmap, aAlphaMask, aColorFrom, nAlphaTo ); aBitmap.Replace( aColorFrom, aColorTo, nTolerance ); aGraphic = ::Graphic( BitmapEx( aBitmap, aAlphaMask ) ); } else if ( aBitmapEx.IsTransparent() ) { if ( ( nAlphaTo == 0 ) || ( nAlphaTo == sal::static_int_cast(0xff) ) ) { Bitmap aMask( aBitmapEx.GetMask() ); Bitmap aMask2( aBitmap.CreateMask( aColorFrom, nTolerance ) ); aMask.CombineSimple( aMask2, BMP_COMBINE_OR ); aBitmap.Replace( aColorFrom, aColorTo, nTolerance ); aGraphic = ::Graphic( BitmapEx( aBitmap, aMask ) ); } else { AlphaMask aAlphaMask( aBitmapEx.GetMask() ); setAlpha( aBitmap, aAlphaMask, aColorFrom, nAlphaTo ); aBitmap.Replace( aColorFrom, aColorTo, nTolerance ); aGraphic = ::Graphic( BitmapEx( aBitmap, aAlphaMask ) ); } } else { if ( ( nAlphaTo == 0 ) || ( nAlphaTo == sal::static_int_cast(0xff) ) ) { Bitmap aMask( aBitmap.CreateMask( aColorFrom, nTolerance ) ); aBitmap.Replace( aColorFrom, aColorTo, nTolerance ); aGraphic = ::Graphic( BitmapEx( aBitmap, aMask ) ); } else { AlphaMask aAlphaMask( aBitmapEx.GetSizePixel() ); setAlpha( aBitmap, aAlphaMask, aColorFrom, nAlphaTo ); aBitmap.Replace( aColorFrom, aColorTo, nTolerance ); aGraphic = ::Graphic( BitmapEx( aBitmap, aAlphaMask ) ); } } } ::unographic::Graphic* pUnoGraphic = new ::unographic::Graphic(); pUnoGraphic->init( aGraphic ); uno::Reference< graphic::XGraphic > xRet( pUnoGraphic ); return xRet; } } /* vim:set shiftwidth=4 softtabstop=4 expandtab: */