Quellcodebibliothek Statistik Leitseite products/Sources/formale Sprachen/C/LibreOffice/vcl/source/graphic/   (Office von Apache Version 25.8.3.2©)  Datei vom 5.10.2025 mit Größe 7 kB image not shown  

Quelle  UnoGraphic.cxx   Sprache: C

 
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
/*
 * This file is part of the LibreOffice project.
 *
 * This Source Code Form is subject to the terms of the Mozilla Public
 * License, v. 2.0. If a copy of the MPL was not distributed with this
 * file, You can obtain one at http://mozilla.org/MPL/2.0/.
 *
 * This file incorporates work covered by the following license notice:
 *
 *   Licensed to the Apache Software Foundation (ASF) under one or more
 *   contributor license agreements. See the NOTICE file distributed
 *   with this work for additional information regarding copyright
 *   ownership. The ASF licenses this file to you under the Apache
 *   License, Version 2.0 (the "License"); you may not use this file
 *   except in compliance with the License. You may obtain a copy of
 *   the License at http://www.apache.org/licenses/LICENSE-2.0 .
 */


#include <graphic/UnoGraphic.hxx>

#include <tools/stream.hxx>
#include <vcl/svapp.hxx>
#include <com/sun/star/graphic/GraphicType.hpp>
#include <com/sun/star/graphic/XGraphicTransformer.hpp>
#include <vcl/dibtools.hxx>
#include <vcl/graph.hxx>
#include <vcl/BitmapColor.hxx>
#include <vcl/BitmapTools.hxx>
#include <comphelper/servicehelper.hxx>
#include <cppuhelper/supportsservice.hxx>
#include <cppuhelper/queryinterface.hxx>
#include <cppuhelper/typeprovider.hxx>

#include <bitmap/BitmapDuoToneFilter.hxx>

using namespace com::sun::star;

namespace unographic {

Graphic::Graphic()
{
}

Graphic::~Graphic() noexcept
{
}

void Graphic::init(const ::Graphic& rGraphic)
{
    maGraphic = rGraphic;
    unographic::GraphicDescriptor::init(maGraphic);
}

uno::Any SAL_CALL Graphic::queryInterface( const uno::Type & rType )
{
    uno::Any aAny;
    if( rType == cppu::UnoType<graphic::XGraphic>::get())
        aAny <<= uno::Reference< graphic::XGraphic >( this );
    else if( rType == cppu::UnoType<awt::XBitmap>::get())
        aAny <<= uno::Reference< awt::XBitmap >( this );
    else if( rType == cppu::UnoType<graphic::XGraphicTransformer>::get())
        aAny <<= uno::Reference< graphic::XGraphicTransformer >(this);
    else
        aAny = ::unographic::GraphicDescriptor::queryInterface( rType );

    return aAny;
}

void SAL_CALL Graphic::acquire()
    noexcept
{
    unographic::GraphicDescriptor::acquire();
}

void SAL_CALL Graphic::release() noexcept
{
    unographic::GraphicDescriptor::release();
}

OUString SAL_CALL Graphic::getImplementationName()
{
    return u"com.sun.star.comp.graphic.Graphic"_ustr;
}

sal_Bool SAL_CALL Graphic::supportsService( const OUString& rServiceName )
{
    return cppu::supportsService( this, rServiceName );
}

uno::Sequence< OUString > SAL_CALL Graphic::getSupportedServiceNames()
{
    uno::Sequence< OUString >    aRet( ::unographic::GraphicDescriptor::getSupportedServiceNames() );
    const uno::Sequence< OUString >    aNew { u"com.sun.star.graphic.Graphic"_ustr };
    sal_Int32                           nOldCount = aRet.getLength();

    aRet.realloc( nOldCount + aNew.getLength() );

    std::copy(aNew.begin(), aNew.end(), std::next(aRet.getArray(), nOldCount));

    return aRet;
}

uno::Sequence< uno::Type > SAL_CALL Graphic::getTypes()
{
    return cppu::OTypeCollection(
            cppu::UnoType<graphic::XGraphic>::get(),
            cppu::UnoType<awt::XBitmap>::get(),
            ::unographic::GraphicDescriptor::getTypes()
        ).getTypes();
}

uno::Sequence< sal_Int8 > SAL_CALL Graphic::getImplementationId()
{
    return css::uno::Sequence<sal_Int8>();
}

sal_Int8 SAL_CALL Graphic::getType()
{
    sal_Int8 cRet = graphic::GraphicType::EMPTY;

    if (!maGraphic.IsNone())
    {
        cRet = (maGraphic.GetType() == ::GraphicType::Bitmap) ? graphic::GraphicType::PIXEL
                                              : graphic::GraphicType::VECTOR;
    }

    return cRet;
}

// XBitmap

awt::Size SAL_CALL Graphic::getSize()
{
    SolarMutexGuard aGuard;

    Size aVclSize;
    if (!maGraphic.IsNone())
    {
        aVclSize = maGraphic.GetSizePixel();
    }
    return awt::Size(aVclSize.Width(), aVclSize.Height());
}

uno::Sequence<sal_Int8> SAL_CALL Graphic::getDIB()
{
    SolarMutexGuard aGuard;

    if (!maGraphic.IsNone())
    {
        SvMemoryStream aMemoryStream;

        WriteDIB(maGraphic.GetBitmapEx().GetBitmap(), aMemoryStream, falsetrue);
        return css::uno::Sequence<sal_Int8>(static_cast<sal_Int8 const *>(aMemoryStream.GetData()), aMemoryStream.Tell());
    }
    else
    {
        return uno::Sequence<sal_Int8>();
    }
}

uno::Sequence<sal_Int8> SAL_CALL Graphic::getMaskDIB()
{
    SolarMutexGuard aGuard;

    if (!maGraphic.IsNone())
    {
        return vcl::bitmap::GetMaskDIB(maGraphic.GetBitmapEx());
    }
    else
    {
        return uno::Sequence<sal_Int8>();
    }
}

// XGraphicTransformer
uno::Reference< graphic::XGraphic > SAL_CALL Graphic::colorChange(
    const uno::Reference< graphic::XGraphic >& rxGraphic, sal_Int32 nColorFrom, sal_Int8 nTolerance, sal_Int32 nColorTo, sal_Int8 nAlphaTo )
{
    ::Graphic aGraphic(rxGraphic);
    ::Graphic aReturnGraphic;

    BitmapColor aBmpColorFrom(Color(ColorTransparency, static_cast<sal_uInt32>(nColorFrom)));
    BitmapColor aBmpColorTo(Color(ColorTransparency, static_cast<sal_uInt32>(nColorTo)));

    Color aColorFrom(aBmpColorFrom);
    Color aColorTo(aBmpColorTo);

    const sal_uInt8 cIndexFrom = aBmpColorFrom.GetIndex();

    //TODO This code convert GdiMetafile(vector graphic) to Bitmap, which cause to information lost
    if (aGraphic.GetType() == GraphicType::Bitmap ||
        aGraphic.GetType() == GraphicType::GdiMetafile)
    {
        BitmapEx aBitmapEx(aGraphic.GetBitmapEx());

        if (aBitmapEx.IsAlpha())
        {
            aBitmapEx.ChangeColorAlpha( cIndexFrom, nAlphaTo );
            aBitmapEx.Replace(aColorFrom, aColorTo, nTolerance);
            aReturnGraphic = ::Graphic(aBitmapEx);
        }
        else
        {
            if ((nAlphaTo == 0) || (nAlphaTo == sal::static_int_cast< sal_Int8 >(0xff)))
            {
                Bitmap aBitmap(aBitmapEx.GetBitmap());
                AlphaMask aMask(aBitmap.CreateAlphaMask(aColorFrom, nTolerance));
                aBitmap.Replace(aColorFrom, aColorTo, nTolerance);
                aReturnGraphic = ::Graphic(BitmapEx(aBitmap, aMask));
            }
            else
            {
                aBitmapEx.Replace(aColorFrom, aColorTo, nTolerance);
                aReturnGraphic = ::Graphic(aBitmapEx);
            }
        }
    }

    aReturnGraphic.setOriginURL(aGraphic.getOriginURL());
    return aReturnGraphic.GetXGraphic();
}

uno::Reference< graphic::XGraphic > SAL_CALL Graphic::applyDuotone(
    const uno::Reference< graphic::XGraphic >& rxGraphic, sal_Int32 nColorOne, sal_Int32 nColorTwo )
{
    ::Graphic aGraphic(rxGraphic);
    ::Graphic aReturnGraphic;

    BitmapEx    aBitmapEx( aGraphic.GetBitmapEx() );
    const AlphaMask&   aMask( aBitmapEx.GetAlphaMask() );

    BitmapEx    aTmpBmpEx(aBitmapEx.GetBitmap());
    BitmapFilter::Filter(aTmpBmpEx,
                    BitmapDuoToneFilter(
                        Color(ColorTransparency, nColorOne),
                        Color(ColorTransparency, nColorTwo)));

    aReturnGraphic = ::Graphic( BitmapEx( aTmpBmpEx.GetBitmap(), aMask ) );
    aReturnGraphic.setOriginURL(aGraphic.getOriginURL());
    return aReturnGraphic.GetXGraphic();
}

uno::Reference< graphic::XGraphic > SAL_CALL Graphic::applyBrightnessContrast(
    const uno::Reference< graphic::XGraphic >& rxGraphic, sal_Int32 nBrightness, sal_Int32 nContrast, sal_Bool mso )
{
    ::Graphic aGraphic(rxGraphic);
    ::Graphic aReturnGraphic;

    BitmapEx aBitmapEx(aGraphic.GetBitmapEx());
    aBitmapEx.Adjust(nBrightness, nContrast, 0, 0, 0, 0, false, mso);
    aReturnGraphic = ::Graphic(aBitmapEx);
    aReturnGraphic.setOriginURL(aGraphic.getOriginURL());
    return aReturnGraphic.GetXGraphic();
}


}

/* vim:set shiftwidth=4 softtabstop=4 expandtab: */

Messung V0.5
C=95 H=96 G=95

¤ Dauer der Verarbeitung: 0.1 Sekunden  (vorverarbeitet)  ¤

*© Formatika GbR, Deutschland






Wurzel

Suchen

Beweissystem der NASA

Beweissystem Isabelle

NIST Cobol Testsuite

Cephes Mathematical Library

Wiener Entwicklungsmethode

Haftungshinweis

Die Informationen auf dieser Webseite wurden nach bestem Wissen sorgfältig zusammengestellt. Es wird jedoch weder Vollständigkeit, noch Richtigkeit, noch Qualität der bereit gestellten Informationen zugesichert.

Bemerkung:

Die farbliche Syntaxdarstellung und die Messung sind noch experimentell.