217 lines
7.3 KiB
C++
217 lines
7.3 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
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/*
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* This file is part of the LibreOffice project.
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/.
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*
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* This file incorporates work covered by the following license notice:
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*
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* Licensed to the Apache Software Foundation (ASF) under one or more
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* contributor license agreements. See the NOTICE file distributed
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* with this work for additional information regarding copyright
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* ownership. The ASF licenses this file to you under the Apache
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* License, Version 2.0 (the "License"); you may not use this file
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* except in compliance with the License. You may obtain a copy of
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* the License at http://www.apache.org/licenses/LICENSE-2.0 .
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*/
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#include <sal/config.h>
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#include <basegfx/utils/canvastools.hxx>
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#include <basegfx/utils/unopolypolygon.hxx>
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#include <canvas/canvastools.hxx>
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#include <tools/stream.hxx>
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#include <vcl/canvastools.hxx>
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#include <vcl/dibtools.hxx>
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#include "canvasbitmap.hxx"
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#include "devicehelper.hxx"
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using namespace ::com::sun::star;
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namespace vclcanvas
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{
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DeviceHelper::DeviceHelper()
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{}
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void DeviceHelper::init( const OutDevProviderSharedPtr& rOutDev )
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{
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mpOutDev = rOutDev;
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}
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geometry::RealSize2D DeviceHelper::getPhysicalResolution()
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{
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if( !mpOutDev )
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return ::canvas::tools::createInfiniteSize2D(); // we're disposed
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// Map a one-by-one millimeter box to pixel
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OutputDevice& rOutDev = mpOutDev->getOutDev();
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const MapMode aOldMapMode( rOutDev.GetMapMode() );
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rOutDev.SetMapMode( MapMode(MapUnit::MapMM) );
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const Size aPixelSize( rOutDev.LogicToPixel(Size(1,1)) );
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rOutDev.SetMapMode( aOldMapMode );
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return vcl::unotools::size2DFromSize( aPixelSize );
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}
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geometry::RealSize2D DeviceHelper::getPhysicalSize()
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{
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if( !mpOutDev )
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return ::canvas::tools::createInfiniteSize2D(); // we're disposed
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// Map the pixel dimensions of the output window to millimeter
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OutputDevice& rOutDev = mpOutDev->getOutDev();
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const MapMode aOldMapMode( rOutDev.GetMapMode() );
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rOutDev.SetMapMode( MapMode(MapUnit::MapMM) );
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const Size aLogSize( rOutDev.PixelToLogic(rOutDev.GetOutputSizePixel()) );
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rOutDev.SetMapMode( aOldMapMode );
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return vcl::unotools::size2DFromSize( aLogSize );
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}
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uno::Reference< rendering::XLinePolyPolygon2D > DeviceHelper::createCompatibleLinePolyPolygon(
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const uno::Reference< rendering::XGraphicDevice >& ,
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const uno::Sequence< uno::Sequence< geometry::RealPoint2D > >& points )
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{
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uno::Reference< rendering::XLinePolyPolygon2D > xPoly;
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if( !mpOutDev )
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return xPoly; // we're disposed
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xPoly.set( new ::basegfx::unotools::UnoPolyPolygon(
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::basegfx::unotools::polyPolygonFromPoint2DSequenceSequence( points ) ) );
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// vcl only handles even_odd polygons
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xPoly->setFillRule(rendering::FillRule_EVEN_ODD);
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return xPoly;
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}
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uno::Reference< rendering::XBezierPolyPolygon2D > DeviceHelper::createCompatibleBezierPolyPolygon(
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const uno::Reference< rendering::XGraphicDevice >& ,
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const uno::Sequence< uno::Sequence< geometry::RealBezierSegment2D > >& points )
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{
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uno::Reference< rendering::XBezierPolyPolygon2D > xPoly;
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if( !mpOutDev )
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return xPoly; // we're disposed
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xPoly.set( new ::basegfx::unotools::UnoPolyPolygon(
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::basegfx::unotools::polyPolygonFromBezier2DSequenceSequence( points ) ) );
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// vcl only handles even_odd polygons
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xPoly->setFillRule(rendering::FillRule_EVEN_ODD);
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return xPoly;
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}
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uno::Reference< rendering::XBitmap > DeviceHelper::createCompatibleBitmap(
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const uno::Reference< rendering::XGraphicDevice >& rDevice,
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const geometry::IntegerSize2D& size )
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{
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if( !mpOutDev )
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return uno::Reference< rendering::XBitmap >(); // we're disposed
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return uno::Reference< rendering::XBitmap >(
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new CanvasBitmap( vcl::unotools::sizeFromIntegerSize2D(size),
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false,
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*rDevice,
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mpOutDev ) );
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}
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uno::Reference< rendering::XVolatileBitmap > DeviceHelper::createVolatileBitmap(
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const uno::Reference< rendering::XGraphicDevice >& ,
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const geometry::IntegerSize2D& )
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{
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return uno::Reference< rendering::XVolatileBitmap >();
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}
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uno::Reference< rendering::XBitmap > DeviceHelper::createCompatibleAlphaBitmap(
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const uno::Reference< rendering::XGraphicDevice >& rDevice,
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const geometry::IntegerSize2D& size )
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{
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if( !mpOutDev )
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return uno::Reference< rendering::XBitmap >(); // we're disposed
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return uno::Reference< rendering::XBitmap >(
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new CanvasBitmap( vcl::unotools::sizeFromIntegerSize2D(size),
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true,
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*rDevice,
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mpOutDev ) );
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}
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uno::Reference< rendering::XVolatileBitmap > DeviceHelper::createVolatileAlphaBitmap(
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const uno::Reference< rendering::XGraphicDevice >& ,
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const geometry::IntegerSize2D& )
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{
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return uno::Reference< rendering::XVolatileBitmap >();
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}
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void DeviceHelper::disposing()
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{
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// release all references
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mpOutDev.reset();
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}
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uno::Any DeviceHelper::isAccelerated() const
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{
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return css::uno::Any(false);
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}
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uno::Any DeviceHelper::getDeviceHandle() const
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{
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if( !mpOutDev )
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return uno::Any();
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return uno::Any(
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reinterpret_cast< sal_Int64 >(&mpOutDev->getOutDev()) );
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}
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uno::Any DeviceHelper::getSurfaceHandle() const
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{
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return getDeviceHandle();
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}
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namespace
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{
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uno::Reference<rendering::XColorSpace>& GetDeviceColorSpace()
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{
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static uno::Reference<rendering::XColorSpace> xColorSpace =
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[]()
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{
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auto xTmp = canvas::tools::getStdColorSpace();
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assert( xTmp.is() );
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return xTmp;
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}();
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return xColorSpace;
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};
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}
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uno::Reference<rendering::XColorSpace> const & DeviceHelper::getColorSpace() const
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{
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// always the same
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return GetDeviceColorSpace();
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}
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void DeviceHelper::dumpScreenContent() const
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{
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static sal_Int32 nFilePostfixCount(0);
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if( !mpOutDev )
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return;
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OUString aFilename = "dbg_frontbuffer" + OUString::number(nFilePostfixCount) + ".bmp";
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SvFileStream aStream( aFilename, StreamMode::STD_READWRITE );
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const ::Point aEmptyPoint;
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OutputDevice& rOutDev = mpOutDev->getOutDev();
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bool bOldMap( rOutDev.IsMapModeEnabled() );
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rOutDev.EnableMapMode( false );
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WriteDIB(rOutDev.GetBitmapEx(aEmptyPoint, rOutDev.GetOutputSizePixel()), aStream, false);
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rOutDev.EnableMapMode( bOldMap );
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++nFilePostfixCount;
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}
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}
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/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
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