1464702f4SAndrew Rist /************************************************************** 2cdf0e10cSrcweir * 3464702f4SAndrew Rist * Licensed to the Apache Software Foundation (ASF) under one 4464702f4SAndrew Rist * or more contributor license agreements. See the NOTICE file 5464702f4SAndrew Rist * distributed with this work for additional information 6464702f4SAndrew Rist * regarding copyright ownership. The ASF licenses this file 7464702f4SAndrew Rist * to you under the Apache License, Version 2.0 (the 8464702f4SAndrew Rist * "License"); you may not use this file except in compliance 9464702f4SAndrew Rist * with the License. You may obtain a copy of the License at 10cdf0e10cSrcweir * 11464702f4SAndrew Rist * http://www.apache.org/licenses/LICENSE-2.0 12cdf0e10cSrcweir * 13464702f4SAndrew Rist * Unless required by applicable law or agreed to in writing, 14464702f4SAndrew Rist * software distributed under the License is distributed on an 15464702f4SAndrew Rist * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY 16464702f4SAndrew Rist * KIND, either express or implied. See the License for the 17464702f4SAndrew Rist * specific language governing permissions and limitations 18464702f4SAndrew Rist * under the License. 19cdf0e10cSrcweir * 20464702f4SAndrew Rist *************************************************************/ 21464702f4SAndrew Rist 22464702f4SAndrew Rist 23cdf0e10cSrcweir 24cdf0e10cSrcweir // MARKER(update_precomp.py): autogen include statement, do not remove 25cdf0e10cSrcweir #include "precompiled_drawinglayer.hxx" 26cdf0e10cSrcweir 27cdf0e10cSrcweir #include <drawinglayer/processor2d/vclprocessor2d.hxx> 28cdf0e10cSrcweir #include <drawinglayer/primitive2d/textprimitive2d.hxx> 29cdf0e10cSrcweir #include <drawinglayer/primitive2d/textdecoratedprimitive2d.hxx> 30cdf0e10cSrcweir #include <tools/debug.hxx> 31cdf0e10cSrcweir #include <vcl/outdev.hxx> 32cdf0e10cSrcweir #include <drawinglayer/primitive2d/polygonprimitive2d.hxx> 33cdf0e10cSrcweir #include <drawinglayer/primitive2d/bitmapprimitive2d.hxx> 34cdf0e10cSrcweir #include <vclhelperbitmaptransform.hxx> 35cdf0e10cSrcweir #include <basegfx/polygon/b2dpolygontools.hxx> 36cdf0e10cSrcweir #include <vclhelperbitmaprender.hxx> 37035a2f44SArmin Le Grand #include <drawinglayer/attribute/sdrfillgraphicattribute.hxx> 38035a2f44SArmin Le Grand #include <drawinglayer/primitive2d/fillgraphicprimitive2d.hxx> 39cdf0e10cSrcweir #include <drawinglayer/primitive2d/polypolygonprimitive2d.hxx> 40cdf0e10cSrcweir #include <vclhelpergradient.hxx> 41cdf0e10cSrcweir #include <drawinglayer/primitive2d/metafileprimitive2d.hxx> 42cdf0e10cSrcweir #include <drawinglayer/primitive2d/maskprimitive2d.hxx> 43cdf0e10cSrcweir #include <basegfx/polygon/b2dpolypolygontools.hxx> 44cdf0e10cSrcweir #include <vclhelperbufferdevice.hxx> 45cdf0e10cSrcweir #include <drawinglayer/primitive2d/modifiedcolorprimitive2d.hxx> 46cdf0e10cSrcweir #include <drawinglayer/primitive2d/unifiedtransparenceprimitive2d.hxx> 47cdf0e10cSrcweir #include <drawinglayer/primitive2d/transparenceprimitive2d.hxx> 48cdf0e10cSrcweir #include <drawinglayer/primitive2d/transformprimitive2d.hxx> 49cdf0e10cSrcweir #include <drawinglayer/primitive2d/markerarrayprimitive2d.hxx> 50cdf0e10cSrcweir #include <drawinglayer/primitive2d/pointarrayprimitive2d.hxx> 51cdf0e10cSrcweir #include <drawinglayer/primitive2d/wrongspellprimitive2d.hxx> 52cdf0e10cSrcweir #include <svl/ctloptions.hxx> 53cdf0e10cSrcweir #include <vcl/svapp.hxx> 54cdf0e10cSrcweir #include <drawinglayer/primitive2d/pagepreviewprimitive2d.hxx> 55cdf0e10cSrcweir #include <tools/diagnose_ex.h> 56cdf0e10cSrcweir #include <vcl/metric.hxx> 57cdf0e10cSrcweir #include <drawinglayer/primitive2d/textenumsprimitive2d.hxx> 58cdf0e10cSrcweir #include <drawinglayer/primitive2d/epsprimitive2d.hxx> 5939551d71SArmin Le Grand #include <drawinglayer/primitive2d/svggradientprimitive2d.hxx> 6039551d71SArmin Le Grand #include <basegfx/color/bcolor.hxx> 6139551d71SArmin Le Grand #include <basegfx/matrix/b2dhommatrixtools.hxx> 62035a2f44SArmin Le Grand #include <vcl/graph.hxx> 63cdf0e10cSrcweir 64cdf0e10cSrcweir ////////////////////////////////////////////////////////////////////////////// 65cdf0e10cSrcweir // control support 66cdf0e10cSrcweir 67cdf0e10cSrcweir #include <com/sun/star/awt/XWindow2.hpp> 68cdf0e10cSrcweir #include <com/sun/star/awt/PosSize.hpp> 69cdf0e10cSrcweir #include <com/sun/star/awt/XView.hpp> 70cdf0e10cSrcweir #include <drawinglayer/primitive2d/controlprimitive2d.hxx> 71cdf0e10cSrcweir #include <drawinglayer/primitive2d/textlayoutdevice.hxx> 72cdf0e10cSrcweir 73cdf0e10cSrcweir ////////////////////////////////////////////////////////////////////////////// 74cdf0e10cSrcweir // for test, can be removed again 75cdf0e10cSrcweir 76cdf0e10cSrcweir #include <basegfx/polygon/b2dpolygonclipper.hxx> 77cdf0e10cSrcweir #include <basegfx/polygon/b2dtrapezoid.hxx> 78cdf0e10cSrcweir 79cdf0e10cSrcweir ////////////////////////////////////////////////////////////////////////////// 80cdf0e10cSrcweir 81cdf0e10cSrcweir using namespace com::sun::star; 82cdf0e10cSrcweir 83cdf0e10cSrcweir ////////////////////////////////////////////////////////////////////////////// 84cdf0e10cSrcweir 8539551d71SArmin Le Grand namespace 8639551d71SArmin Le Grand { 8739551d71SArmin Le Grand sal_uInt32 calculateStepsForSvgGradient(const basegfx::BColor& rColorA, const basegfx::BColor& rColorB, double fDelta, double fDiscreteUnit) 8839551d71SArmin Le Grand { 8939551d71SArmin Le Grand // use color distance, assume to do every color step 9039551d71SArmin Le Grand sal_uInt32 nSteps(basegfx::fround(rColorA.getDistance(rColorB) * 255.0)); 9139551d71SArmin Le Grand 9239551d71SArmin Le Grand if(nSteps) 9339551d71SArmin Le Grand { 9439551d71SArmin Le Grand // calc discrete length to change color each disctete unit (pixel) 9539551d71SArmin Le Grand const sal_uInt32 nDistSteps(basegfx::fround(fDelta / fDiscreteUnit)); 9639551d71SArmin Le Grand 9739551d71SArmin Le Grand nSteps = std::min(nSteps, nDistSteps); 9839551d71SArmin Le Grand } 9939551d71SArmin Le Grand 10039551d71SArmin Le Grand // reduce quality to 3 discrete units or every 3rd color step for rendering 10139551d71SArmin Le Grand nSteps /= 2; 10239551d71SArmin Le Grand 10339551d71SArmin Le Grand // roughly cut when too big or too small (not full quality, reduce complexity) 10439551d71SArmin Le Grand nSteps = std::min(nSteps, sal_uInt32(255)); 10539551d71SArmin Le Grand nSteps = std::max(nSteps, sal_uInt32(1)); 10639551d71SArmin Le Grand 10739551d71SArmin Le Grand return nSteps; 10839551d71SArmin Le Grand } 10939551d71SArmin Le Grand } // end of anonymous namespace 11039551d71SArmin Le Grand 11139551d71SArmin Le Grand ////////////////////////////////////////////////////////////////////////////// 11239551d71SArmin Le Grand 113cdf0e10cSrcweir namespace drawinglayer 114cdf0e10cSrcweir { 115cdf0e10cSrcweir namespace processor2d 116cdf0e10cSrcweir { 117cdf0e10cSrcweir ////////////////////////////////////////////////////////////////////////////// 118cdf0e10cSrcweir // UNO class usages 119cdf0e10cSrcweir using ::com::sun::star::uno::Reference; 120cdf0e10cSrcweir using ::com::sun::star::uno::UNO_QUERY; 121cdf0e10cSrcweir using ::com::sun::star::uno::UNO_QUERY_THROW; 122cdf0e10cSrcweir using ::com::sun::star::uno::Exception; 123cdf0e10cSrcweir using ::com::sun::star::awt::XView; 124cdf0e10cSrcweir using ::com::sun::star::awt::XGraphics; 125cdf0e10cSrcweir using ::com::sun::star::awt::XWindow; 126cdf0e10cSrcweir using ::com::sun::star::awt::PosSize::POSSIZE; 127cdf0e10cSrcweir 128cdf0e10cSrcweir ////////////////////////////////////////////////////////////////////////////// 129cdf0e10cSrcweir // rendering support 130cdf0e10cSrcweir 131cdf0e10cSrcweir // directdraw of text simple portion or decorated portion primitive. When decorated, all the extra 132cdf0e10cSrcweir // information is translated to VCL parameters and set at the font. 133cdf0e10cSrcweir // Acceptance is restricted to no shearing and positive scaling in X and Y (no font mirroring 134cdf0e10cSrcweir // for VCL) 135cdf0e10cSrcweir void VclProcessor2D::RenderTextSimpleOrDecoratedPortionPrimitive2D(const primitive2d::TextSimplePortionPrimitive2D& rTextCandidate) 136cdf0e10cSrcweir { 137cdf0e10cSrcweir // decompose matrix to have position and size of text 138cdf0e10cSrcweir basegfx::B2DHomMatrix aLocalTransform(maCurrentTransformation * rTextCandidate.getTextTransform()); 139cdf0e10cSrcweir basegfx::B2DVector aFontScaling, aTranslate; 140cdf0e10cSrcweir double fRotate, fShearX; 141cdf0e10cSrcweir aLocalTransform.decompose(aFontScaling, aTranslate, fRotate, fShearX); 142cdf0e10cSrcweir bool bPrimitiveAccepted(false); 143cdf0e10cSrcweir 144cdf0e10cSrcweir if(basegfx::fTools::equalZero(fShearX)) 145cdf0e10cSrcweir { 146cdf0e10cSrcweir if(basegfx::fTools::less(aFontScaling.getX(), 0.0) && basegfx::fTools::less(aFontScaling.getY(), 0.0)) 147cdf0e10cSrcweir { 148cdf0e10cSrcweir // handle special case: If scale is negative in (x,y) (3rd quadrant), it can 149cdf0e10cSrcweir // be expressed as rotation by PI. Use this since the Font rendering will not 150cdf0e10cSrcweir // apply the negative scales in any form 151cdf0e10cSrcweir aFontScaling = basegfx::absolute(aFontScaling); 152cdf0e10cSrcweir fRotate += F_PI; 153cdf0e10cSrcweir } 154cdf0e10cSrcweir 155cdf0e10cSrcweir if(basegfx::fTools::more(aFontScaling.getX(), 0.0) && basegfx::fTools::more(aFontScaling.getY(), 0.0)) 156cdf0e10cSrcweir { 157cdf0e10cSrcweir // Get the VCL font (use FontHeight as FontWidth) 158cdf0e10cSrcweir Font aFont(primitive2d::getVclFontFromFontAttribute( 159cdf0e10cSrcweir rTextCandidate.getFontAttribute(), 160cdf0e10cSrcweir aFontScaling.getX(), 161cdf0e10cSrcweir aFontScaling.getY(), 162cdf0e10cSrcweir fRotate, 163cdf0e10cSrcweir rTextCandidate.getLocale())); 164cdf0e10cSrcweir 165cdf0e10cSrcweir // handle additional font attributes 166cdf0e10cSrcweir const primitive2d::TextDecoratedPortionPrimitive2D* pTCPP = 167cdf0e10cSrcweir dynamic_cast<const primitive2d::TextDecoratedPortionPrimitive2D*>( &rTextCandidate ); 168cdf0e10cSrcweir 169cdf0e10cSrcweir if( pTCPP != NULL ) 170cdf0e10cSrcweir { 171cdf0e10cSrcweir 172cdf0e10cSrcweir // set the color of text decorations 173cdf0e10cSrcweir const basegfx::BColor aTextlineColor = maBColorModifierStack.getModifiedColor(pTCPP->getTextlineColor()); 174cdf0e10cSrcweir mpOutputDevice->SetTextLineColor( Color(aTextlineColor) ); 175cdf0e10cSrcweir 176cdf0e10cSrcweir // set Overline attribute 177cdf0e10cSrcweir const FontUnderline eFontOverline(primitive2d::mapTextLineToFontUnderline( pTCPP->getFontOverline() )); 178cdf0e10cSrcweir if( eFontOverline != UNDERLINE_NONE ) 179cdf0e10cSrcweir { 180cdf0e10cSrcweir aFont.SetOverline( eFontOverline ); 181cdf0e10cSrcweir const basegfx::BColor aOverlineColor = maBColorModifierStack.getModifiedColor(pTCPP->getOverlineColor()); 182cdf0e10cSrcweir mpOutputDevice->SetOverlineColor( Color(aOverlineColor) ); 183cdf0e10cSrcweir if( pTCPP->getWordLineMode() ) 184cdf0e10cSrcweir aFont.SetWordLineMode( true ); 185cdf0e10cSrcweir } 186cdf0e10cSrcweir 187cdf0e10cSrcweir // set Underline attribute 188cdf0e10cSrcweir const FontUnderline eFontUnderline(primitive2d::mapTextLineToFontUnderline( pTCPP->getFontUnderline() )); 189cdf0e10cSrcweir if( eFontUnderline != UNDERLINE_NONE ) 190cdf0e10cSrcweir { 191cdf0e10cSrcweir aFont.SetUnderline( eFontUnderline ); 192cdf0e10cSrcweir if( pTCPP->getWordLineMode() ) 193cdf0e10cSrcweir aFont.SetWordLineMode( true ); 194cdf0e10cSrcweir //TODO: ??? if( pTCPP->getUnderlineAbove() ) 195cdf0e10cSrcweir // aFont.SetUnderlineAbove( true ); 196cdf0e10cSrcweir } 197cdf0e10cSrcweir 198cdf0e10cSrcweir // set Strikeout attribute 199cdf0e10cSrcweir const FontStrikeout eFontStrikeout(primitive2d::mapTextStrikeoutToFontStrikeout(pTCPP->getTextStrikeout())); 200cdf0e10cSrcweir 201cdf0e10cSrcweir if( eFontStrikeout != STRIKEOUT_NONE ) 202cdf0e10cSrcweir aFont.SetStrikeout( eFontStrikeout ); 203cdf0e10cSrcweir 204cdf0e10cSrcweir // set EmphasisMark attribute 205cdf0e10cSrcweir FontEmphasisMark eFontEmphasisMark = EMPHASISMARK_NONE; 206cdf0e10cSrcweir switch( pTCPP->getTextEmphasisMark() ) 207cdf0e10cSrcweir { 208cdf0e10cSrcweir default: 209cdf0e10cSrcweir DBG_WARNING1( "DrawingLayer: Unknown EmphasisMark style (%d)!", pTCPP->getTextEmphasisMark() ); 210cdf0e10cSrcweir // fall through 211cdf0e10cSrcweir case primitive2d::TEXT_EMPHASISMARK_NONE: eFontEmphasisMark = EMPHASISMARK_NONE; break; 212cdf0e10cSrcweir case primitive2d::TEXT_EMPHASISMARK_DOT: eFontEmphasisMark = EMPHASISMARK_DOT; break; 213cdf0e10cSrcweir case primitive2d::TEXT_EMPHASISMARK_CIRCLE: eFontEmphasisMark = EMPHASISMARK_CIRCLE; break; 214cdf0e10cSrcweir case primitive2d::TEXT_EMPHASISMARK_DISC: eFontEmphasisMark = EMPHASISMARK_DISC; break; 215cdf0e10cSrcweir case primitive2d::TEXT_EMPHASISMARK_ACCENT: eFontEmphasisMark = EMPHASISMARK_ACCENT; break; 216cdf0e10cSrcweir } 217cdf0e10cSrcweir 218cdf0e10cSrcweir if( eFontEmphasisMark != EMPHASISMARK_NONE ) 219cdf0e10cSrcweir { 220cdf0e10cSrcweir DBG_ASSERT( (pTCPP->getEmphasisMarkAbove() != pTCPP->getEmphasisMarkBelow()), 221cdf0e10cSrcweir "DrawingLayer: Bad EmphasisMark position!" ); 222cdf0e10cSrcweir if( pTCPP->getEmphasisMarkAbove() ) 223cdf0e10cSrcweir eFontEmphasisMark |= EMPHASISMARK_POS_ABOVE; 224cdf0e10cSrcweir else 225cdf0e10cSrcweir eFontEmphasisMark |= EMPHASISMARK_POS_BELOW; 226cdf0e10cSrcweir aFont.SetEmphasisMark( eFontEmphasisMark ); 227cdf0e10cSrcweir } 228cdf0e10cSrcweir 229cdf0e10cSrcweir // set Relief attribute 230cdf0e10cSrcweir FontRelief eFontRelief = RELIEF_NONE; 231cdf0e10cSrcweir switch( pTCPP->getTextRelief() ) 232cdf0e10cSrcweir { 233cdf0e10cSrcweir default: 234cdf0e10cSrcweir DBG_WARNING1( "DrawingLayer: Unknown Relief style (%d)!", pTCPP->getTextRelief() ); 235cdf0e10cSrcweir // fall through 236cdf0e10cSrcweir case primitive2d::TEXT_RELIEF_NONE: eFontRelief = RELIEF_NONE; break; 237cdf0e10cSrcweir case primitive2d::TEXT_RELIEF_EMBOSSED: eFontRelief = RELIEF_EMBOSSED; break; 238cdf0e10cSrcweir case primitive2d::TEXT_RELIEF_ENGRAVED: eFontRelief = RELIEF_ENGRAVED; break; 239cdf0e10cSrcweir } 240cdf0e10cSrcweir 241cdf0e10cSrcweir if( eFontRelief != RELIEF_NONE ) 242cdf0e10cSrcweir aFont.SetRelief( eFontRelief ); 243cdf0e10cSrcweir 244cdf0e10cSrcweir // set Shadow attribute 245cdf0e10cSrcweir if( pTCPP->getShadow() ) 246cdf0e10cSrcweir aFont.SetShadow( true ); 247cdf0e10cSrcweir } 248cdf0e10cSrcweir 249cdf0e10cSrcweir // create transformed integer DXArray in view coordinate system 250cdf0e10cSrcweir ::std::vector< sal_Int32 > aTransformedDXArray; 251cdf0e10cSrcweir 252cdf0e10cSrcweir if(rTextCandidate.getDXArray().size()) 253cdf0e10cSrcweir { 254cdf0e10cSrcweir aTransformedDXArray.reserve(rTextCandidate.getDXArray().size()); 255cdf0e10cSrcweir const basegfx::B2DVector aPixelVector(maCurrentTransformation * basegfx::B2DVector(1.0, 0.0)); 256cdf0e10cSrcweir const double fPixelVectorFactor(aPixelVector.getLength()); 257cdf0e10cSrcweir 258cdf0e10cSrcweir for(::std::vector< double >::const_iterator aStart(rTextCandidate.getDXArray().begin()); 259cdf0e10cSrcweir aStart != rTextCandidate.getDXArray().end(); aStart++) 260cdf0e10cSrcweir { 261cdf0e10cSrcweir aTransformedDXArray.push_back(basegfx::fround((*aStart) * fPixelVectorFactor)); 262cdf0e10cSrcweir } 263cdf0e10cSrcweir } 264cdf0e10cSrcweir 265cdf0e10cSrcweir // set parameters and paint text snippet 266cdf0e10cSrcweir const basegfx::BColor aRGBFontColor(maBColorModifierStack.getModifiedColor(rTextCandidate.getFontColor())); 267cdf0e10cSrcweir const basegfx::B2DPoint aPoint(aLocalTransform * basegfx::B2DPoint(0.0, 0.0)); 268cdf0e10cSrcweir const Point aStartPoint(basegfx::fround(aPoint.getX()), basegfx::fround(aPoint.getY())); 269cdf0e10cSrcweir const sal_uInt32 nOldLayoutMode(mpOutputDevice->GetLayoutMode()); 270cdf0e10cSrcweir 271cdf0e10cSrcweir if(rTextCandidate.getFontAttribute().getRTL()) 272cdf0e10cSrcweir { 273cdf0e10cSrcweir sal_uInt32 nRTLLayoutMode(nOldLayoutMode & ~(TEXT_LAYOUT_COMPLEX_DISABLED|TEXT_LAYOUT_BIDI_STRONG)); 274cdf0e10cSrcweir nRTLLayoutMode |= TEXT_LAYOUT_BIDI_RTL|TEXT_LAYOUT_TEXTORIGIN_LEFT; 275cdf0e10cSrcweir mpOutputDevice->SetLayoutMode(nRTLLayoutMode); 276cdf0e10cSrcweir } 277cdf0e10cSrcweir 278cdf0e10cSrcweir mpOutputDevice->SetFont(aFont); 279cdf0e10cSrcweir mpOutputDevice->SetTextColor(Color(aRGBFontColor)); 280cdf0e10cSrcweir 281cdf0e10cSrcweir if(aTransformedDXArray.size()) 282cdf0e10cSrcweir { 283cdf0e10cSrcweir mpOutputDevice->DrawTextArray( 284cdf0e10cSrcweir aStartPoint, 285cdf0e10cSrcweir rTextCandidate.getText(), 286cdf0e10cSrcweir &(aTransformedDXArray[0]), 287cdf0e10cSrcweir rTextCandidate.getTextPosition(), 288cdf0e10cSrcweir rTextCandidate.getTextLength()); 289cdf0e10cSrcweir } 290cdf0e10cSrcweir else 291cdf0e10cSrcweir { 292cdf0e10cSrcweir mpOutputDevice->DrawText( 293cdf0e10cSrcweir aStartPoint, 294cdf0e10cSrcweir rTextCandidate.getText(), 295cdf0e10cSrcweir rTextCandidate.getTextPosition(), 296cdf0e10cSrcweir rTextCandidate.getTextLength()); 297cdf0e10cSrcweir } 298cdf0e10cSrcweir 299cdf0e10cSrcweir if(rTextCandidate.getFontAttribute().getRTL()) 300cdf0e10cSrcweir { 301cdf0e10cSrcweir mpOutputDevice->SetLayoutMode(nOldLayoutMode); 302cdf0e10cSrcweir } 303cdf0e10cSrcweir 304cdf0e10cSrcweir bPrimitiveAccepted = true; 305cdf0e10cSrcweir } 306cdf0e10cSrcweir } 307cdf0e10cSrcweir 308cdf0e10cSrcweir if(!bPrimitiveAccepted) 309cdf0e10cSrcweir { 310cdf0e10cSrcweir // let break down 311cdf0e10cSrcweir process(rTextCandidate.get2DDecomposition(getViewInformation2D())); 312cdf0e10cSrcweir } 313cdf0e10cSrcweir } 314cdf0e10cSrcweir 315cdf0e10cSrcweir // direct draw of hairline 316cdf0e10cSrcweir void VclProcessor2D::RenderPolygonHairlinePrimitive2D(const primitive2d::PolygonHairlinePrimitive2D& rPolygonCandidate, bool bPixelBased) 317cdf0e10cSrcweir { 318cdf0e10cSrcweir const basegfx::BColor aHairlineColor(maBColorModifierStack.getModifiedColor(rPolygonCandidate.getBColor())); 319cdf0e10cSrcweir mpOutputDevice->SetLineColor(Color(aHairlineColor)); 320cdf0e10cSrcweir mpOutputDevice->SetFillColor(); 321cdf0e10cSrcweir 322cdf0e10cSrcweir basegfx::B2DPolygon aLocalPolygon(rPolygonCandidate.getB2DPolygon()); 323cdf0e10cSrcweir aLocalPolygon.transform(maCurrentTransformation); 324cdf0e10cSrcweir 325cdf0e10cSrcweir static bool bCheckTrapezoidDecomposition(false); 326cdf0e10cSrcweir static bool bShowOutlinesThere(false); 327cdf0e10cSrcweir if(bCheckTrapezoidDecomposition) 328cdf0e10cSrcweir { 329cdf0e10cSrcweir // clip against discrete ViewPort 330cdf0e10cSrcweir const basegfx::B2DRange& rDiscreteViewport = getViewInformation2D().getDiscreteViewport(); 331cdf0e10cSrcweir basegfx::B2DPolyPolygon aLocalPolyPolygon(basegfx::tools::clipPolygonOnRange( 332cdf0e10cSrcweir aLocalPolygon, rDiscreteViewport, true, false)); 333cdf0e10cSrcweir 334cdf0e10cSrcweir if(aLocalPolyPolygon.count()) 335cdf0e10cSrcweir { 336cdf0e10cSrcweir // subdivide 337cdf0e10cSrcweir aLocalPolyPolygon = basegfx::tools::adaptiveSubdivideByDistance( 338cdf0e10cSrcweir aLocalPolyPolygon, 0.5); 339cdf0e10cSrcweir 340cdf0e10cSrcweir // trapezoidize 341cdf0e10cSrcweir static double fLineWidth(2.0); 342cdf0e10cSrcweir basegfx::B2DTrapezoidVector aB2DTrapezoidVector; 343cdf0e10cSrcweir basegfx::tools::createLineTrapezoidFromB2DPolyPolygon(aB2DTrapezoidVector, aLocalPolyPolygon, fLineWidth); 344cdf0e10cSrcweir 345cdf0e10cSrcweir const sal_uInt32 nCount(aB2DTrapezoidVector.size()); 346cdf0e10cSrcweir 347cdf0e10cSrcweir if(nCount) 348cdf0e10cSrcweir { 349cdf0e10cSrcweir basegfx::BColor aInvPolygonColor(aHairlineColor); 350cdf0e10cSrcweir aInvPolygonColor.invert(); 351cdf0e10cSrcweir 352cdf0e10cSrcweir for(sal_uInt32 a(0); a < nCount; a++) 353cdf0e10cSrcweir { 354cdf0e10cSrcweir const basegfx::B2DPolygon aTempPolygon(aB2DTrapezoidVector[a].getB2DPolygon()); 355cdf0e10cSrcweir 356cdf0e10cSrcweir if(bShowOutlinesThere) 357cdf0e10cSrcweir { 358cdf0e10cSrcweir mpOutputDevice->SetFillColor(Color(aHairlineColor)); 359cdf0e10cSrcweir mpOutputDevice->SetLineColor(); 360cdf0e10cSrcweir } 361cdf0e10cSrcweir 362cdf0e10cSrcweir mpOutputDevice->DrawPolygon(aTempPolygon); 363cdf0e10cSrcweir 364cdf0e10cSrcweir if(bShowOutlinesThere) 365cdf0e10cSrcweir { 366cdf0e10cSrcweir mpOutputDevice->SetFillColor(); 367cdf0e10cSrcweir mpOutputDevice->SetLineColor(Color(aInvPolygonColor)); 368cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aTempPolygon, 0.0); 369cdf0e10cSrcweir } 370cdf0e10cSrcweir } 371cdf0e10cSrcweir } 372cdf0e10cSrcweir } 373cdf0e10cSrcweir } 374cdf0e10cSrcweir else 375cdf0e10cSrcweir { 376cdf0e10cSrcweir if(bPixelBased && getOptionsDrawinglayer().IsAntiAliasing() && getOptionsDrawinglayer().IsSnapHorVerLinesToDiscrete()) 377cdf0e10cSrcweir { 378cdf0e10cSrcweir // #i98289# 379cdf0e10cSrcweir // when a Hairline is painted and AntiAliasing is on the option SnapHorVerLinesToDiscrete 380cdf0e10cSrcweir // allows to suppress AntiAliasing for pure horizontal or vertical lines. This is done since 381cdf0e10cSrcweir // not-AntiAliased such lines look more pleasing to the eye (e.g. 2D chart content). This 382cdf0e10cSrcweir // NEEDS to be done in discrete coordinates, so only useful for pixel based rendering. 383cdf0e10cSrcweir aLocalPolygon = basegfx::tools::snapPointsOfHorizontalOrVerticalEdges(aLocalPolygon); 384cdf0e10cSrcweir } 385cdf0e10cSrcweir 386cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aLocalPolygon, 0.0); 387cdf0e10cSrcweir } 388cdf0e10cSrcweir } 389cdf0e10cSrcweir 390cdf0e10cSrcweir // direct draw of transformed BitmapEx primitive 391cdf0e10cSrcweir void VclProcessor2D::RenderBitmapPrimitive2D(const primitive2d::BitmapPrimitive2D& rBitmapCandidate) 392cdf0e10cSrcweir { 393cdf0e10cSrcweir // create local transform 394cdf0e10cSrcweir basegfx::B2DHomMatrix aLocalTransform(maCurrentTransformation * rBitmapCandidate.getTransform()); 395cdf0e10cSrcweir BitmapEx aBitmapEx(rBitmapCandidate.getBitmapEx()); 396cdf0e10cSrcweir bool bPainted(false); 397cdf0e10cSrcweir 398cdf0e10cSrcweir if(maBColorModifierStack.count()) 399cdf0e10cSrcweir { 400cdf0e10cSrcweir aBitmapEx = impModifyBitmapEx(maBColorModifierStack, aBitmapEx); 401cdf0e10cSrcweir 402cdf0e10cSrcweir if(aBitmapEx.IsEmpty()) 403cdf0e10cSrcweir { 404cdf0e10cSrcweir // color gets completely replaced, get it 405cdf0e10cSrcweir const basegfx::BColor aModifiedColor(maBColorModifierStack.getModifiedColor(basegfx::BColor())); 406cdf0e10cSrcweir basegfx::B2DPolygon aPolygon(basegfx::tools::createUnitPolygon()); 407cdf0e10cSrcweir aPolygon.transform(aLocalTransform); 408cdf0e10cSrcweir 409cdf0e10cSrcweir mpOutputDevice->SetFillColor(Color(aModifiedColor)); 410cdf0e10cSrcweir mpOutputDevice->SetLineColor(); 411cdf0e10cSrcweir mpOutputDevice->DrawPolygon(aPolygon); 412cdf0e10cSrcweir 413cdf0e10cSrcweir bPainted = true; 414cdf0e10cSrcweir } 415cdf0e10cSrcweir } 416cdf0e10cSrcweir 417cdf0e10cSrcweir if(!bPainted) 418cdf0e10cSrcweir { 419cdf0e10cSrcweir static bool bForceUseOfOwnTransformer(false); 420cdf0e10cSrcweir static bool bUseGraphicManager(true); 421cdf0e10cSrcweir 422cdf0e10cSrcweir // decompose matrix to check for shear, rotate and mirroring 423cdf0e10cSrcweir basegfx::B2DVector aScale, aTranslate; 424cdf0e10cSrcweir double fRotate, fShearX; 425cdf0e10cSrcweir aLocalTransform.decompose(aScale, aTranslate, fRotate, fShearX); 426cdf0e10cSrcweir 427*d935ed1bSArmin Le Grand // #121387# when mirrored and rotated, avoid the GraphicManager output which has low quality 428*d935ed1bSArmin Le Grand const bool bRotated(basegfx::fTools::equalZero(fRotate)); 429*d935ed1bSArmin Le Grand const bool bSheared(basegfx::fTools::equalZero(fShearX)); 430*d935ed1bSArmin Le Grand const bool bMirroredAndRotated(bRotated && (aScale.getX() < 0.0 || aScale.getY() < 0.0)); 431*d935ed1bSArmin Le Grand 432*d935ed1bSArmin Le Grand if(!bForceUseOfOwnTransformer && !bSheared && !bMirroredAndRotated) 433cdf0e10cSrcweir { 434*d935ed1bSArmin Le Grand if(!bUseGraphicManager && !bRotated) 435cdf0e10cSrcweir { 436cdf0e10cSrcweir RenderBitmapPrimitive2D_BitmapEx(*mpOutputDevice, aBitmapEx, aLocalTransform); 437cdf0e10cSrcweir } 438cdf0e10cSrcweir else 439cdf0e10cSrcweir { 440cdf0e10cSrcweir RenderBitmapPrimitive2D_GraphicManager(*mpOutputDevice, aBitmapEx, aLocalTransform); 441cdf0e10cSrcweir } 442cdf0e10cSrcweir } 443cdf0e10cSrcweir else 444cdf0e10cSrcweir { 445*d935ed1bSArmin Le Grand if(!aBitmapEx.IsTransparent() && (bSheared || bRotated)) 446cdf0e10cSrcweir { 447cdf0e10cSrcweir // parts will be uncovered, extend aBitmapEx with a mask bitmap 448cdf0e10cSrcweir const Bitmap aContent(aBitmapEx.GetBitmap()); 449cdf0e10cSrcweir aBitmapEx = BitmapEx(aContent, Bitmap(aContent.GetSizePixel(), 1)); 450cdf0e10cSrcweir } 451cdf0e10cSrcweir 452cdf0e10cSrcweir RenderBitmapPrimitive2D_self(*mpOutputDevice, aBitmapEx, aLocalTransform); 453cdf0e10cSrcweir } 454cdf0e10cSrcweir } 455cdf0e10cSrcweir } 456cdf0e10cSrcweir 457035a2f44SArmin Le Grand void VclProcessor2D::RenderFillGraphicPrimitive2D(const primitive2d::FillGraphicPrimitive2D& rFillBitmapCandidate) 458cdf0e10cSrcweir { 459035a2f44SArmin Le Grand const attribute::FillGraphicAttribute& rFillGraphicAttribute(rFillBitmapCandidate.getFillGraphic()); 460cdf0e10cSrcweir bool bPrimitiveAccepted(false); 461035a2f44SArmin Le Grand static bool bTryTilingDirect = true; 462cdf0e10cSrcweir 463035a2f44SArmin Le Grand // #121194# when tiling is used and content is bitmap-based, do direct tiling in the 464035a2f44SArmin Le Grand // renderer on pixel base to ensure tight fitting. Do not do this when 465035a2f44SArmin Le Grand // the fill is rotated or sheared. 466035a2f44SArmin Le Grand 467035a2f44SArmin Le Grand // ovveride static bool (for debug) and tiling is active 468035a2f44SArmin Le Grand if(bTryTilingDirect && rFillGraphicAttribute.getTiling()) 469035a2f44SArmin Le Grand { 470035a2f44SArmin Le Grand // content is bitmap(ex) 471035a2f44SArmin Le Grand // 472035a2f44SArmin Le Grand // for SVG support, force decomposition when SVG is present. This will lead to use 473035a2f44SArmin Le Grand // the primitive representation of the svg directly. 474035a2f44SArmin Le Grand // 475035a2f44SArmin Le Grand // when graphic is animated, force decomposition to use the correct graphic, else 476035a2f44SArmin Le Grand // fill style will not be animated 477035a2f44SArmin Le Grand if(GRAPHIC_BITMAP == rFillGraphicAttribute.getGraphic().GetType() 478035a2f44SArmin Le Grand && !rFillGraphicAttribute.getGraphic().getSvgData().get() 479035a2f44SArmin Le Grand && !rFillGraphicAttribute.getGraphic().IsAnimated()) 480cdf0e10cSrcweir { 481cdf0e10cSrcweir // decompose matrix to check for shear, rotate and mirroring 482cdf0e10cSrcweir basegfx::B2DHomMatrix aLocalTransform(maCurrentTransformation * rFillBitmapCandidate.getTransformation()); 483cdf0e10cSrcweir basegfx::B2DVector aScale, aTranslate; 484cdf0e10cSrcweir double fRotate, fShearX; 485cdf0e10cSrcweir aLocalTransform.decompose(aScale, aTranslate, fRotate, fShearX); 486cdf0e10cSrcweir 487035a2f44SArmin Le Grand // when nopt rotated/sheared 488cdf0e10cSrcweir if(basegfx::fTools::equalZero(fRotate) && basegfx::fTools::equalZero(fShearX)) 489cdf0e10cSrcweir { 490cdf0e10cSrcweir // no shear or rotate, draw direct in pixel coordinates 491cdf0e10cSrcweir bPrimitiveAccepted = true; 492035a2f44SArmin Le Grand 493035a2f44SArmin Le Grand // transform object range to device coordinates (pixels). Use 494035a2f44SArmin Le Grand // the device transformation for better accuracy 495035a2f44SArmin Le Grand basegfx::B2DRange aObjectRange(aTranslate, aTranslate + aScale); 496035a2f44SArmin Le Grand aObjectRange.transform(mpOutputDevice->GetViewTransformation()); 497035a2f44SArmin Le Grand 498035a2f44SArmin Le Grand // extract discrete size of object 499035a2f44SArmin Le Grand const sal_Int32 nOWidth(basegfx::fround(aObjectRange.getWidth())); 500035a2f44SArmin Le Grand const sal_Int32 nOHeight(basegfx::fround(aObjectRange.getHeight())); 501035a2f44SArmin Le Grand 502035a2f44SArmin Le Grand // only do something when object has a size in discrete units 503035a2f44SArmin Le Grand if(nOWidth > 0 && nOHeight > 0) 504035a2f44SArmin Le Grand { 505035a2f44SArmin Le Grand // transform graphic range to device coordinates (pixels). Use 506035a2f44SArmin Le Grand // the device transformation for better accuracy 507035a2f44SArmin Le Grand basegfx::B2DRange aGraphicRange(rFillGraphicAttribute.getGraphicRange()); 508035a2f44SArmin Le Grand aGraphicRange.transform(mpOutputDevice->GetViewTransformation() * aLocalTransform); 509035a2f44SArmin Le Grand 510035a2f44SArmin Le Grand // extract discrete size of graphic 511035a2f44SArmin Le Grand const sal_Int32 nBWidth(basegfx::fround(aGraphicRange.getWidth())); 512035a2f44SArmin Le Grand const sal_Int32 nBHeight(basegfx::fround(aGraphicRange.getHeight())); 513035a2f44SArmin Le Grand 514035a2f44SArmin Le Grand // only do something when bitmap fill has a size in discrete units 515035a2f44SArmin Le Grand if(nBWidth > 0 && nBHeight > 0) 516035a2f44SArmin Le Grand { 517035a2f44SArmin Le Grand // nBWidth, nBHeight is the pixel size of the neede bitmap. To not need to scale it 518035a2f44SArmin Le Grand // in vcl many times, create a size-optimized version 519035a2f44SArmin Le Grand const Size aNeededBitmapSizePixel(nBWidth, nBHeight); 5204665f8d3SArmin Le Grand BitmapEx aBitmapEx(rFillGraphicAttribute.getGraphic().GetBitmapEx()); 5214665f8d3SArmin Le Grand static bool bEnablePreScaling(true); 5224665f8d3SArmin Le Grand const bool bPreScaled(bEnablePreScaling && nBWidth * nBHeight < (250 * 250)); 5234665f8d3SArmin Le Grand 5244665f8d3SArmin Le Grand if(bPreScaled) 5254665f8d3SArmin Le Grand { 5264665f8d3SArmin Le Grand // ... but only up to a maximum size, else it gets too expensive 5274665f8d3SArmin Le Grand aBitmapEx.Scale(aNeededBitmapSizePixel, BMP_SCALE_INTERPOLATE); 5284665f8d3SArmin Le Grand } 5294665f8d3SArmin Le Grand 530cdf0e10cSrcweir bool bPainted(false); 531cdf0e10cSrcweir 532cdf0e10cSrcweir if(maBColorModifierStack.count()) 533cdf0e10cSrcweir { 534035a2f44SArmin Le Grand // when color modifier, apply to bitmap 535cdf0e10cSrcweir aBitmapEx = impModifyBitmapEx(maBColorModifierStack, aBitmapEx); 536cdf0e10cSrcweir 537035a2f44SArmin Le Grand // impModifyBitmapEx uses empty bitmap as sign to return that 538035a2f44SArmin Le Grand // the content will be completely replaced to mono color, use shortcut 539cdf0e10cSrcweir if(aBitmapEx.IsEmpty()) 540cdf0e10cSrcweir { 541cdf0e10cSrcweir // color gets completely replaced, get it 542cdf0e10cSrcweir const basegfx::BColor aModifiedColor(maBColorModifierStack.getModifiedColor(basegfx::BColor())); 543cdf0e10cSrcweir basegfx::B2DPolygon aPolygon(basegfx::tools::createUnitPolygon()); 544cdf0e10cSrcweir aPolygon.transform(aLocalTransform); 545cdf0e10cSrcweir 546cdf0e10cSrcweir mpOutputDevice->SetFillColor(Color(aModifiedColor)); 547cdf0e10cSrcweir mpOutputDevice->SetLineColor(); 548cdf0e10cSrcweir mpOutputDevice->DrawPolygon(aPolygon); 549cdf0e10cSrcweir 550cdf0e10cSrcweir bPainted = true; 551cdf0e10cSrcweir } 552cdf0e10cSrcweir } 553cdf0e10cSrcweir 554cdf0e10cSrcweir if(!bPainted) 555cdf0e10cSrcweir { 556035a2f44SArmin Le Grand sal_Int32 nBLeft(basegfx::fround(aGraphicRange.getMinX())); 557035a2f44SArmin Le Grand sal_Int32 nBTop(basegfx::fround(aGraphicRange.getMinY())); 558035a2f44SArmin Le Grand const sal_Int32 nOLeft(basegfx::fround(aObjectRange.getMinX())); 559035a2f44SArmin Le Grand const sal_Int32 nOTop(basegfx::fround(aObjectRange.getMinY())); 560035a2f44SArmin Le Grand sal_Int32 nPosX(0); 561035a2f44SArmin Le Grand sal_Int32 nPosY(0); 562cdf0e10cSrcweir 563035a2f44SArmin Le Grand if(nBLeft > nOLeft) 564cdf0e10cSrcweir { 565035a2f44SArmin Le Grand const sal_Int32 nDiff((nBLeft / nBWidth) + 1); 566cdf0e10cSrcweir 567035a2f44SArmin Le Grand nPosX -= nDiff; 568035a2f44SArmin Le Grand nBLeft -= nDiff * nBWidth; 569cdf0e10cSrcweir } 570cdf0e10cSrcweir 571035a2f44SArmin Le Grand if(nBLeft + nBWidth <= nOLeft) 572cdf0e10cSrcweir { 573035a2f44SArmin Le Grand const sal_Int32 nDiff(-nBLeft / nBWidth); 574035a2f44SArmin Le Grand 575035a2f44SArmin Le Grand nPosX += nDiff; 576035a2f44SArmin Le Grand nBLeft += nDiff * nBWidth; 577cdf0e10cSrcweir } 578cdf0e10cSrcweir 579035a2f44SArmin Le Grand if(nBTop > nOTop) 580cdf0e10cSrcweir { 581035a2f44SArmin Le Grand const sal_Int32 nDiff((nBTop / nBHeight) + 1); 582035a2f44SArmin Le Grand 583035a2f44SArmin Le Grand nPosY -= nDiff; 584035a2f44SArmin Le Grand nBTop -= nDiff * nBHeight; 585cdf0e10cSrcweir } 586cdf0e10cSrcweir 587035a2f44SArmin Le Grand if(nBTop + nBHeight <= nOTop) 588cdf0e10cSrcweir { 589035a2f44SArmin Le Grand const sal_Int32 nDiff(-nBTop / nBHeight); 590cdf0e10cSrcweir 591035a2f44SArmin Le Grand nPosY += nDiff; 592035a2f44SArmin Le Grand nBTop += nDiff * nBHeight; 593cdf0e10cSrcweir } 594cdf0e10cSrcweir 595cdf0e10cSrcweir // prepare OutDev 596cdf0e10cSrcweir const Point aEmptyPoint(0, 0); 597cdf0e10cSrcweir const Rectangle aVisiblePixel(aEmptyPoint, mpOutputDevice->GetOutputSizePixel()); 598cdf0e10cSrcweir const bool bWasEnabled(mpOutputDevice->IsMapModeEnabled()); 599cdf0e10cSrcweir mpOutputDevice->EnableMapMode(false); 600cdf0e10cSrcweir 601035a2f44SArmin Le Grand // check if offset is used 602035a2f44SArmin Le Grand const sal_Int32 nOffsetX(basegfx::fround(rFillGraphicAttribute.getOffsetX() * nBWidth)); 603035a2f44SArmin Le Grand 604035a2f44SArmin Le Grand if(nOffsetX) 605cdf0e10cSrcweir { 606035a2f44SArmin Le Grand // offset in X, so iterate over Y first and draw lines 607035a2f44SArmin Le Grand for(sal_Int32 nYPos(nBTop); nYPos < nOTop + nOHeight; nYPos += nBHeight, nPosY++) 608035a2f44SArmin Le Grand { 609035a2f44SArmin Le Grand for(sal_Int32 nXPos(nPosY % 2 ? nBLeft - nBWidth + nOffsetX : nBLeft); 610035a2f44SArmin Le Grand nXPos < nOLeft + nOWidth; nXPos += nBWidth) 611cdf0e10cSrcweir { 612cdf0e10cSrcweir const Rectangle aOutRectPixel(Point(nXPos, nYPos), aNeededBitmapSizePixel); 613cdf0e10cSrcweir 614cdf0e10cSrcweir if(aOutRectPixel.IsOver(aVisiblePixel)) 615cdf0e10cSrcweir { 6164665f8d3SArmin Le Grand if(bPreScaled) 6174665f8d3SArmin Le Grand { 618cdf0e10cSrcweir mpOutputDevice->DrawBitmapEx(aOutRectPixel.TopLeft(), aBitmapEx); 619cdf0e10cSrcweir } 6204665f8d3SArmin Le Grand else 6214665f8d3SArmin Le Grand { 6224665f8d3SArmin Le Grand mpOutputDevice->DrawBitmapEx(aOutRectPixel.TopLeft(), aNeededBitmapSizePixel, aBitmapEx); 6234665f8d3SArmin Le Grand } 6244665f8d3SArmin Le Grand } 625cdf0e10cSrcweir } 626cdf0e10cSrcweir } 627035a2f44SArmin Le Grand } 628035a2f44SArmin Le Grand else 629035a2f44SArmin Le Grand { 630035a2f44SArmin Le Grand // check if offset is used 631035a2f44SArmin Le Grand const sal_Int32 nOffsetY(basegfx::fround(rFillGraphicAttribute.getOffsetY() * nBHeight)); 632035a2f44SArmin Le Grand 633035a2f44SArmin Le Grand // possible offset in Y, so iterate over X first and draw columns 634035a2f44SArmin Le Grand for(sal_Int32 nXPos(nBLeft); nXPos < nOLeft + nOWidth; nXPos += nBWidth, nPosX++) 635035a2f44SArmin Le Grand { 636035a2f44SArmin Le Grand for(sal_Int32 nYPos(nPosX % 2 ? nBTop - nBHeight + nOffsetY : nBTop); 637035a2f44SArmin Le Grand nYPos < nOTop + nOHeight; nYPos += nBHeight) 638035a2f44SArmin Le Grand { 639035a2f44SArmin Le Grand const Rectangle aOutRectPixel(Point(nXPos, nYPos), aNeededBitmapSizePixel); 640035a2f44SArmin Le Grand 641035a2f44SArmin Le Grand if(aOutRectPixel.IsOver(aVisiblePixel)) 642035a2f44SArmin Le Grand { 6434665f8d3SArmin Le Grand if(bPreScaled) 6444665f8d3SArmin Le Grand { 645035a2f44SArmin Le Grand mpOutputDevice->DrawBitmapEx(aOutRectPixel.TopLeft(), aBitmapEx); 646035a2f44SArmin Le Grand } 6474665f8d3SArmin Le Grand else 6484665f8d3SArmin Le Grand { 6494665f8d3SArmin Le Grand mpOutputDevice->DrawBitmapEx(aOutRectPixel.TopLeft(), aNeededBitmapSizePixel, aBitmapEx); 6504665f8d3SArmin Le Grand } 6514665f8d3SArmin Le Grand } 652035a2f44SArmin Le Grand } 653035a2f44SArmin Le Grand } 654035a2f44SArmin Le Grand } 655cdf0e10cSrcweir 656cdf0e10cSrcweir // restore OutDev 657cdf0e10cSrcweir mpOutputDevice->EnableMapMode(bWasEnabled); 658cdf0e10cSrcweir } 659cdf0e10cSrcweir } 660cdf0e10cSrcweir } 661cdf0e10cSrcweir } 662cdf0e10cSrcweir } 663035a2f44SArmin Le Grand } 664cdf0e10cSrcweir 665cdf0e10cSrcweir if(!bPrimitiveAccepted) 666cdf0e10cSrcweir { 667cdf0e10cSrcweir // do not accept, use decomposition 668cdf0e10cSrcweir process(rFillBitmapCandidate.get2DDecomposition(getViewInformation2D())); 669cdf0e10cSrcweir } 670cdf0e10cSrcweir } 671cdf0e10cSrcweir 672cdf0e10cSrcweir // direct draw of gradient 673cdf0e10cSrcweir void VclProcessor2D::RenderPolyPolygonGradientPrimitive2D(const primitive2d::PolyPolygonGradientPrimitive2D& rPolygonCandidate) 674cdf0e10cSrcweir { 675cdf0e10cSrcweir const attribute::FillGradientAttribute& rGradient(rPolygonCandidate.getFillGradient()); 676cdf0e10cSrcweir basegfx::BColor aStartColor(maBColorModifierStack.getModifiedColor(rGradient.getStartColor())); 677cdf0e10cSrcweir basegfx::BColor aEndColor(maBColorModifierStack.getModifiedColor(rGradient.getEndColor())); 678cdf0e10cSrcweir basegfx::B2DPolyPolygon aLocalPolyPolygon(rPolygonCandidate.getB2DPolyPolygon()); 679cdf0e10cSrcweir 680cdf0e10cSrcweir if(aLocalPolyPolygon.count()) 681cdf0e10cSrcweir { 682cdf0e10cSrcweir aLocalPolyPolygon.transform(maCurrentTransformation); 683cdf0e10cSrcweir 684cdf0e10cSrcweir if(aStartColor == aEndColor) 685cdf0e10cSrcweir { 686cdf0e10cSrcweir // no gradient at all, draw as polygon in AA and non-AA case 687cdf0e10cSrcweir mpOutputDevice->SetLineColor(); 688cdf0e10cSrcweir mpOutputDevice->SetFillColor(Color(aStartColor)); 689cdf0e10cSrcweir mpOutputDevice->DrawPolyPolygon(aLocalPolyPolygon); 690cdf0e10cSrcweir } 691cdf0e10cSrcweir else if(getOptionsDrawinglayer().IsAntiAliasing()) 692cdf0e10cSrcweir { 693cdf0e10cSrcweir // For AA, direct render has to be avoided since it uses XOR maskings which will not 694cdf0e10cSrcweir // work with AA. Instead, the decompose which uses MaskPrimitive2D with fillings is 695cdf0e10cSrcweir // used 696cdf0e10cSrcweir process(rPolygonCandidate.get2DDecomposition(getViewInformation2D())); 697cdf0e10cSrcweir } 698cdf0e10cSrcweir else 699cdf0e10cSrcweir { 70096fc4b33SArmin Le Grand static bool bSimple = false; // allow testing simple paint in debugger 70196fc4b33SArmin Le Grand 702cdf0e10cSrcweir impDrawGradientToOutDev( 703cdf0e10cSrcweir *mpOutputDevice, aLocalPolyPolygon, rGradient.getStyle(), rGradient.getSteps(), 704cdf0e10cSrcweir aStartColor, aEndColor, rGradient.getBorder(), 70596fc4b33SArmin Le Grand rGradient.getAngle(), rGradient.getOffsetX(), rGradient.getOffsetY(), bSimple); 706cdf0e10cSrcweir } 707cdf0e10cSrcweir } 708cdf0e10cSrcweir } 709cdf0e10cSrcweir 710035a2f44SArmin Le Grand // direct draw of Graphic 711035a2f44SArmin Le Grand void VclProcessor2D::RenderPolyPolygonGraphicPrimitive2D(const primitive2d::PolyPolygonGraphicPrimitive2D& rPolygonCandidate) 712cdf0e10cSrcweir { 713cdf0e10cSrcweir bool bDone(false); 714cdf0e10cSrcweir const basegfx::B2DPolyPolygon& rPolyPolygon = rPolygonCandidate.getB2DPolyPolygon(); 715cdf0e10cSrcweir 716035a2f44SArmin Le Grand // #121194# Todo: check if this works 717035a2f44SArmin Le Grand if(!rPolyPolygon.count()) 718cdf0e10cSrcweir { 719035a2f44SArmin Le Grand // empty polyPolygon, done 720cdf0e10cSrcweir bDone = true; 721cdf0e10cSrcweir } 722cdf0e10cSrcweir else 723cdf0e10cSrcweir { 724035a2f44SArmin Le Grand const attribute::FillGraphicAttribute& rFillGraphicAttribute = rPolygonCandidate.getFillGraphic(); 725035a2f44SArmin Le Grand 726035a2f44SArmin Le Grand // try to catch cases where the graphic will be color-modified to a single 727035a2f44SArmin Le Grand // color (e.g. shadow) 728035a2f44SArmin Le Grand switch(rFillGraphicAttribute.getGraphic().GetType()) 729035a2f44SArmin Le Grand { 730035a2f44SArmin Le Grand case GRAPHIC_GDIMETAFILE: 731035a2f44SArmin Le Grand { 732035a2f44SArmin Le Grand // metafiles are potentially transparent, cannot optimize�, not done 733035a2f44SArmin Le Grand break; 734035a2f44SArmin Le Grand } 735035a2f44SArmin Le Grand case GRAPHIC_BITMAP: 736035a2f44SArmin Le Grand { 737035a2f44SArmin Le Grand if(!rFillGraphicAttribute.getGraphic().IsTransparent() && !rFillGraphicAttribute.getGraphic().IsAlpha()) 738035a2f44SArmin Le Grand { 739035a2f44SArmin Le Grand // bitmap is not transparent and has no alpha 740cdf0e10cSrcweir const sal_uInt32 nBColorModifierStackCount(maBColorModifierStack.count()); 741cdf0e10cSrcweir 742cdf0e10cSrcweir if(nBColorModifierStackCount) 743cdf0e10cSrcweir { 744cdf0e10cSrcweir const basegfx::BColorModifier& rTopmostModifier = maBColorModifierStack.getBColorModifier(nBColorModifierStackCount - 1); 745cdf0e10cSrcweir 746cdf0e10cSrcweir if(basegfx::BCOLORMODIFYMODE_REPLACE == rTopmostModifier.getMode()) 747cdf0e10cSrcweir { 748cdf0e10cSrcweir // the bitmap fill is in unified color, so we can replace it with 749cdf0e10cSrcweir // a single polygon fill. The form of the fill depends on tiling 750035a2f44SArmin Le Grand if(rFillGraphicAttribute.getTiling()) 751cdf0e10cSrcweir { 752cdf0e10cSrcweir // with tiling, fill the whole PolyPolygon with the modifier color 753cdf0e10cSrcweir basegfx::B2DPolyPolygon aLocalPolyPolygon(rPolyPolygon); 754cdf0e10cSrcweir 755cdf0e10cSrcweir aLocalPolyPolygon.transform(maCurrentTransformation); 756cdf0e10cSrcweir mpOutputDevice->SetLineColor(); 757cdf0e10cSrcweir mpOutputDevice->SetFillColor(Color(rTopmostModifier.getBColor())); 758cdf0e10cSrcweir mpOutputDevice->DrawPolyPolygon(aLocalPolyPolygon); 759cdf0e10cSrcweir } 760cdf0e10cSrcweir else 761cdf0e10cSrcweir { 762cdf0e10cSrcweir // without tiling, only the area common to the bitmap tile and the 763cdf0e10cSrcweir // PolyPolygon is filled. Create the bitmap tile area in object 764cdf0e10cSrcweir // coordinates. For this, the object transformation needs to be created 765cdf0e10cSrcweir // from the already scaled PolyPolygon. The tile area in object 766cdf0e10cSrcweir // coordinates wil always be non-rotated, so it's not necessary to 767cdf0e10cSrcweir // work with a polygon here 768035a2f44SArmin Le Grand basegfx::B2DRange aTileRange(rFillGraphicAttribute.getGraphicRange()); 769cdf0e10cSrcweir const basegfx::B2DRange aPolyPolygonRange(rPolyPolygon.getB2DRange()); 770035a2f44SArmin Le Grand const basegfx::B2DHomMatrix aNewObjectTransform( 771035a2f44SArmin Le Grand basegfx::tools::createScaleTranslateB2DHomMatrix( 772035a2f44SArmin Le Grand aPolyPolygonRange.getRange(), 773035a2f44SArmin Le Grand aPolyPolygonRange.getMinimum())); 774cdf0e10cSrcweir 775cdf0e10cSrcweir aTileRange.transform(aNewObjectTransform); 776cdf0e10cSrcweir 777cdf0e10cSrcweir // now clip the object polyPolygon against the tile range 778035a2f44SArmin Le Grand // to get the common area 779035a2f44SArmin Le Grand basegfx::B2DPolyPolygon aTarget = basegfx::tools::clipPolyPolygonOnRange( 780035a2f44SArmin Le Grand rPolyPolygon, 781035a2f44SArmin Le Grand aTileRange, 782035a2f44SArmin Le Grand true, 783035a2f44SArmin Le Grand false); 784cdf0e10cSrcweir 785cdf0e10cSrcweir if(aTarget.count()) 786cdf0e10cSrcweir { 787cdf0e10cSrcweir aTarget.transform(maCurrentTransformation); 788cdf0e10cSrcweir mpOutputDevice->SetLineColor(); 789cdf0e10cSrcweir mpOutputDevice->SetFillColor(Color(rTopmostModifier.getBColor())); 790cdf0e10cSrcweir mpOutputDevice->DrawPolyPolygon(aTarget); 791cdf0e10cSrcweir } 792cdf0e10cSrcweir } 793cdf0e10cSrcweir 794035a2f44SArmin Le Grand // simplified output executed, we are done 795cdf0e10cSrcweir bDone = true; 796cdf0e10cSrcweir } 797cdf0e10cSrcweir } 798cdf0e10cSrcweir } 799035a2f44SArmin Le Grand break; 800cdf0e10cSrcweir } 801035a2f44SArmin Le Grand default: //GRAPHIC_NONE, GRAPHIC_DEFAULT 802cdf0e10cSrcweir { 803035a2f44SArmin Le Grand // empty graphic, we are done 804cdf0e10cSrcweir bDone = true; 805035a2f44SArmin Le Grand break; 806035a2f44SArmin Le Grand } 807035a2f44SArmin Le Grand } 808cdf0e10cSrcweir } 809cdf0e10cSrcweir 810cdf0e10cSrcweir if(!bDone) 811cdf0e10cSrcweir { 812cdf0e10cSrcweir // use default decomposition 813cdf0e10cSrcweir process(rPolygonCandidate.get2DDecomposition(getViewInformation2D())); 814cdf0e10cSrcweir } 815cdf0e10cSrcweir } 816cdf0e10cSrcweir 817cdf0e10cSrcweir // direct draw of PolyPolygon with color 818cdf0e10cSrcweir void VclProcessor2D::RenderPolyPolygonColorPrimitive2D(const primitive2d::PolyPolygonColorPrimitive2D& rPolygonCandidate) 819cdf0e10cSrcweir { 820cdf0e10cSrcweir const basegfx::BColor aPolygonColor(maBColorModifierStack.getModifiedColor(rPolygonCandidate.getBColor())); 821cdf0e10cSrcweir mpOutputDevice->SetFillColor(Color(aPolygonColor)); 822cdf0e10cSrcweir mpOutputDevice->SetLineColor(); 823cdf0e10cSrcweir 824cdf0e10cSrcweir basegfx::B2DPolyPolygon aLocalPolyPolygon(rPolygonCandidate.getB2DPolyPolygon()); 825cdf0e10cSrcweir aLocalPolyPolygon.transform(maCurrentTransformation); 826cdf0e10cSrcweir 827cdf0e10cSrcweir static bool bCheckTrapezoidDecomposition(false); 828cdf0e10cSrcweir static bool bShowOutlinesThere(false); 829cdf0e10cSrcweir if(bCheckTrapezoidDecomposition) 830cdf0e10cSrcweir { 831cdf0e10cSrcweir // clip against discrete ViewPort 832cdf0e10cSrcweir const basegfx::B2DRange& rDiscreteViewport = getViewInformation2D().getDiscreteViewport(); 833cdf0e10cSrcweir aLocalPolyPolygon = basegfx::tools::clipPolyPolygonOnRange( 834cdf0e10cSrcweir aLocalPolyPolygon, rDiscreteViewport, true, false); 835cdf0e10cSrcweir 836cdf0e10cSrcweir if(aLocalPolyPolygon.count()) 837cdf0e10cSrcweir { 838cdf0e10cSrcweir // subdivide 839cdf0e10cSrcweir aLocalPolyPolygon = basegfx::tools::adaptiveSubdivideByDistance( 840cdf0e10cSrcweir aLocalPolyPolygon, 0.5); 841cdf0e10cSrcweir 842cdf0e10cSrcweir // trapezoidize 843cdf0e10cSrcweir basegfx::B2DTrapezoidVector aB2DTrapezoidVector; 844cdf0e10cSrcweir basegfx::tools::trapezoidSubdivide(aB2DTrapezoidVector, aLocalPolyPolygon); 845cdf0e10cSrcweir 846cdf0e10cSrcweir const sal_uInt32 nCount(aB2DTrapezoidVector.size()); 847cdf0e10cSrcweir 848cdf0e10cSrcweir if(nCount) 849cdf0e10cSrcweir { 850cdf0e10cSrcweir basegfx::BColor aInvPolygonColor(aPolygonColor); 851cdf0e10cSrcweir aInvPolygonColor.invert(); 852cdf0e10cSrcweir 853cdf0e10cSrcweir for(sal_uInt32 a(0); a < nCount; a++) 854cdf0e10cSrcweir { 855cdf0e10cSrcweir const basegfx::B2DPolygon aTempPolygon(aB2DTrapezoidVector[a].getB2DPolygon()); 856cdf0e10cSrcweir 857cdf0e10cSrcweir if(bShowOutlinesThere) 858cdf0e10cSrcweir { 859cdf0e10cSrcweir mpOutputDevice->SetFillColor(Color(aPolygonColor)); 860cdf0e10cSrcweir mpOutputDevice->SetLineColor(); 861cdf0e10cSrcweir } 862cdf0e10cSrcweir 863cdf0e10cSrcweir mpOutputDevice->DrawPolygon(aTempPolygon); 864cdf0e10cSrcweir 865cdf0e10cSrcweir if(bShowOutlinesThere) 866cdf0e10cSrcweir { 867cdf0e10cSrcweir mpOutputDevice->SetFillColor(); 868cdf0e10cSrcweir mpOutputDevice->SetLineColor(Color(aInvPolygonColor)); 869cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aTempPolygon, 0.0); 870cdf0e10cSrcweir } 871cdf0e10cSrcweir } 872cdf0e10cSrcweir } 873cdf0e10cSrcweir } 874cdf0e10cSrcweir } 875cdf0e10cSrcweir else 876cdf0e10cSrcweir { 877cdf0e10cSrcweir mpOutputDevice->DrawPolyPolygon(aLocalPolyPolygon); 878cdf0e10cSrcweir 879cdf0e10cSrcweir if(mnPolygonStrokePrimitive2D 880cdf0e10cSrcweir && getOptionsDrawinglayer().IsAntiAliasing() 881cdf0e10cSrcweir && (mpOutputDevice->GetAntialiasing() & ANTIALIASING_ENABLE_B2DDRAW)) 882cdf0e10cSrcweir { 883cdf0e10cSrcweir // when AA is on and this filled polygons are the result of stroked line geometry, 884cdf0e10cSrcweir // draw the geometry once extra as lines to avoid AA 'gaps' between partial polygons 885cdf0e10cSrcweir mpOutputDevice->SetFillColor(); 886cdf0e10cSrcweir mpOutputDevice->SetLineColor(Color(aPolygonColor)); 887cdf0e10cSrcweir const sal_uInt32 nCount(aLocalPolyPolygon.count()); 888cdf0e10cSrcweir 889cdf0e10cSrcweir for(sal_uInt32 a(0); a < nCount; a++) 890cdf0e10cSrcweir { 891cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aLocalPolyPolygon.getB2DPolygon(a), 0.0); 892cdf0e10cSrcweir } 893cdf0e10cSrcweir } 894cdf0e10cSrcweir } 895cdf0e10cSrcweir } 896cdf0e10cSrcweir 897cdf0e10cSrcweir // direct draw of MetaFile 898cdf0e10cSrcweir void VclProcessor2D::RenderMetafilePrimitive2D(const primitive2d::MetafilePrimitive2D& rMetaCandidate) 899cdf0e10cSrcweir { 900cdf0e10cSrcweir // decompose matrix to check for shear, rotate and mirroring 901cdf0e10cSrcweir basegfx::B2DHomMatrix aLocalTransform(maCurrentTransformation * rMetaCandidate.getTransform()); 902cdf0e10cSrcweir basegfx::B2DVector aScale, aTranslate; 903cdf0e10cSrcweir double fRotate, fShearX; 904cdf0e10cSrcweir aLocalTransform.decompose(aScale, aTranslate, fRotate, fShearX); 905cdf0e10cSrcweir 906cdf0e10cSrcweir if(basegfx::fTools::less(aScale.getX(), 0.0) && basegfx::fTools::less(aScale.getY(), 0.0)) 907cdf0e10cSrcweir { 908cdf0e10cSrcweir // #i102175# handle special case: If scale is negative in (x,y) (3rd quadrant), it can 909cdf0e10cSrcweir // be expressed as rotation by PI. This needs to be done for Metafiles since 910cdf0e10cSrcweir // these can be rotated, but not really mirrored 911cdf0e10cSrcweir aScale = basegfx::absolute(aScale); 912cdf0e10cSrcweir fRotate += F_PI; 913cdf0e10cSrcweir } 914cdf0e10cSrcweir 915cdf0e10cSrcweir // get BoundRect 916cdf0e10cSrcweir basegfx::B2DRange aOutlineRange(rMetaCandidate.getB2DRange(getViewInformation2D())); 917cdf0e10cSrcweir aOutlineRange.transform(maCurrentTransformation); 918cdf0e10cSrcweir 919cdf0e10cSrcweir // Due to the integer MapModes used from VCL aind inside MetaFiles errors of up to three 920cdf0e10cSrcweir // pixels in size may happen. As long as there is no better way (e.g. convert the MetaFile 921cdf0e10cSrcweir // to primitives) it is necessary to reduce maximum pixel size by 1 in X and Y and to use 922cdf0e10cSrcweir // the inner pixel bounds accordingly (ceil resp. floor). This will also be done for logic 923cdf0e10cSrcweir // units e.g. when creating a new MetaFile, but since much huger value ranges are used 924cdf0e10cSrcweir // there typically will be okay for this compromize. 925cdf0e10cSrcweir Rectangle aDestRectView( 926cdf0e10cSrcweir // !!CAUTION!! Here, ceil and floor are exchanged BY PURPOSE, do NOT copy when 927cdf0e10cSrcweir // looking for a standard conversion to rectangle (!) 928cdf0e10cSrcweir (sal_Int32)ceil(aOutlineRange.getMinX()), (sal_Int32)ceil(aOutlineRange.getMinY()), 929cdf0e10cSrcweir (sal_Int32)floor(aOutlineRange.getMaxX()), (sal_Int32)floor(aOutlineRange.getMaxY())); 930cdf0e10cSrcweir 931cdf0e10cSrcweir // get metafile (copy it) 932cdf0e10cSrcweir GDIMetaFile aMetaFile; 933cdf0e10cSrcweir 934cdf0e10cSrcweir if(maBColorModifierStack.count()) 935cdf0e10cSrcweir { 936cdf0e10cSrcweir const basegfx::BColor aRGBBaseColor(0, 0, 0); 937cdf0e10cSrcweir const basegfx::BColor aRGBColor(maBColorModifierStack.getModifiedColor(aRGBBaseColor)); 938cdf0e10cSrcweir aMetaFile = rMetaCandidate.getMetaFile().GetMonochromeMtf(Color(aRGBColor)); 939cdf0e10cSrcweir } 940cdf0e10cSrcweir else 941cdf0e10cSrcweir { 942cdf0e10cSrcweir aMetaFile = rMetaCandidate.getMetaFile(); 943cdf0e10cSrcweir } 944cdf0e10cSrcweir 945cdf0e10cSrcweir // rotation 946cdf0e10cSrcweir if(!basegfx::fTools::equalZero(fRotate)) 947cdf0e10cSrcweir { 948cdf0e10cSrcweir // #i103530# 949cdf0e10cSrcweir // MetaFile::Rotate has no input parameter check, so the parameter needs to be 950cdf0e10cSrcweir // well-aligned to the old range [0..3600] 10th degrees with inverse orientation 951cdf0e10cSrcweir sal_Int16 nRotation((sal_Int16)((fRotate / F_PI180) * -10.0)); 952cdf0e10cSrcweir 953cdf0e10cSrcweir while(nRotation < 0) 954cdf0e10cSrcweir nRotation += 3600; 955cdf0e10cSrcweir 956cdf0e10cSrcweir while(nRotation >= 3600) 957cdf0e10cSrcweir nRotation -= 3600; 958cdf0e10cSrcweir 959cdf0e10cSrcweir aMetaFile.Rotate(nRotation); 960cdf0e10cSrcweir } 961cdf0e10cSrcweir 962cdf0e10cSrcweir // Prepare target output size 963cdf0e10cSrcweir Size aDestSize(aDestRectView.GetSize()); 964cdf0e10cSrcweir 965cdf0e10cSrcweir if(aDestSize.getWidth() && aDestSize.getHeight()) 966cdf0e10cSrcweir { 967cdf0e10cSrcweir // Get preferred Metafile output size. When it's very equal to the output size, it's probably 968cdf0e10cSrcweir // a rounding error somewhere, so correct it to get a 1:1 output without single pixel scalings 969cdf0e10cSrcweir // of the Metafile (esp. for contaned Bitmaps, e.g 3D charts) 970cdf0e10cSrcweir const Size aPrefSize(mpOutputDevice->LogicToPixel(aMetaFile.GetPrefSize(), aMetaFile.GetPrefMapMode())); 971cdf0e10cSrcweir 972cdf0e10cSrcweir if(aPrefSize.getWidth() && (aPrefSize.getWidth() - 1 == aDestSize.getWidth() || aPrefSize.getWidth() + 1 == aDestSize.getWidth())) 973cdf0e10cSrcweir { 974cdf0e10cSrcweir aDestSize.setWidth(aPrefSize.getWidth()); 975cdf0e10cSrcweir } 976cdf0e10cSrcweir 977cdf0e10cSrcweir if(aPrefSize.getHeight() && (aPrefSize.getHeight() - 1 == aDestSize.getHeight() || aPrefSize.getHeight() + 1 == aDestSize.getHeight())) 978cdf0e10cSrcweir { 979cdf0e10cSrcweir aDestSize.setHeight(aPrefSize.getHeight()); 980cdf0e10cSrcweir } 981cdf0e10cSrcweir 982cdf0e10cSrcweir // paint it 983cdf0e10cSrcweir aMetaFile.WindStart(); 984cdf0e10cSrcweir aMetaFile.Play(mpOutputDevice, aDestRectView.TopLeft(), aDestSize); 985cdf0e10cSrcweir } 986cdf0e10cSrcweir } 987cdf0e10cSrcweir 988cdf0e10cSrcweir // mask group. Force output to VDev and create mask from given mask 989cdf0e10cSrcweir void VclProcessor2D::RenderMaskPrimitive2DPixel(const primitive2d::MaskPrimitive2D& rMaskCandidate) 990cdf0e10cSrcweir { 991cdf0e10cSrcweir if(rMaskCandidate.getChildren().hasElements()) 992cdf0e10cSrcweir { 993cdf0e10cSrcweir basegfx::B2DPolyPolygon aMask(rMaskCandidate.getMask()); 994cdf0e10cSrcweir 995cdf0e10cSrcweir if(aMask.count()) 996cdf0e10cSrcweir { 997cdf0e10cSrcweir aMask.transform(maCurrentTransformation); 998cdf0e10cSrcweir const basegfx::B2DRange aRange(basegfx::tools::getRange(aMask)); 999cdf0e10cSrcweir impBufferDevice aBufferDevice(*mpOutputDevice, aRange, true); 1000cdf0e10cSrcweir 1001cdf0e10cSrcweir if(aBufferDevice.isVisible()) 1002cdf0e10cSrcweir { 1003cdf0e10cSrcweir // remember last OutDev and set to content 1004cdf0e10cSrcweir OutputDevice* pLastOutputDevice = mpOutputDevice; 1005cdf0e10cSrcweir mpOutputDevice = &aBufferDevice.getContent(); 1006cdf0e10cSrcweir 1007cdf0e10cSrcweir // paint to it 1008cdf0e10cSrcweir process(rMaskCandidate.getChildren()); 1009cdf0e10cSrcweir 1010cdf0e10cSrcweir // back to old OutDev 1011cdf0e10cSrcweir mpOutputDevice = pLastOutputDevice; 1012cdf0e10cSrcweir 1013cdf0e10cSrcweir // draw mask 1014cdf0e10cSrcweir if(getOptionsDrawinglayer().IsAntiAliasing()) 1015cdf0e10cSrcweir { 1016cdf0e10cSrcweir // with AA, use 8bit AlphaMask to get nice borders 1017cdf0e10cSrcweir VirtualDevice& rTransparence = aBufferDevice.getTransparence(); 1018cdf0e10cSrcweir rTransparence.SetLineColor(); 1019cdf0e10cSrcweir rTransparence.SetFillColor(COL_BLACK); 1020cdf0e10cSrcweir rTransparence.DrawPolyPolygon(aMask); 1021cdf0e10cSrcweir 1022cdf0e10cSrcweir // dump buffer to outdev 1023cdf0e10cSrcweir aBufferDevice.paint(); 1024cdf0e10cSrcweir } 1025cdf0e10cSrcweir else 1026cdf0e10cSrcweir { 1027cdf0e10cSrcweir // No AA, use 1bit mask 1028cdf0e10cSrcweir VirtualDevice& rMask = aBufferDevice.getMask(); 1029cdf0e10cSrcweir rMask.SetLineColor(); 1030cdf0e10cSrcweir rMask.SetFillColor(COL_BLACK); 1031cdf0e10cSrcweir rMask.DrawPolyPolygon(aMask); 1032cdf0e10cSrcweir 1033cdf0e10cSrcweir // dump buffer to outdev 1034cdf0e10cSrcweir aBufferDevice.paint(); 1035cdf0e10cSrcweir } 1036cdf0e10cSrcweir } 1037cdf0e10cSrcweir } 1038cdf0e10cSrcweir } 1039cdf0e10cSrcweir } 1040cdf0e10cSrcweir 1041cdf0e10cSrcweir // modified color group. Force output to unified color. 1042cdf0e10cSrcweir void VclProcessor2D::RenderModifiedColorPrimitive2D(const primitive2d::ModifiedColorPrimitive2D& rModifiedCandidate) 1043cdf0e10cSrcweir { 1044cdf0e10cSrcweir if(rModifiedCandidate.getChildren().hasElements()) 1045cdf0e10cSrcweir { 1046cdf0e10cSrcweir maBColorModifierStack.push(rModifiedCandidate.getColorModifier()); 1047cdf0e10cSrcweir process(rModifiedCandidate.getChildren()); 1048cdf0e10cSrcweir maBColorModifierStack.pop(); 1049cdf0e10cSrcweir } 1050cdf0e10cSrcweir } 1051cdf0e10cSrcweir 1052cdf0e10cSrcweir // unified sub-transparence. Draw to VDev first. 1053cdf0e10cSrcweir void VclProcessor2D::RenderUnifiedTransparencePrimitive2D(const primitive2d::UnifiedTransparencePrimitive2D& rTransCandidate) 1054cdf0e10cSrcweir { 1055cdf0e10cSrcweir static bool bForceToDecomposition(false); 1056cdf0e10cSrcweir 1057cdf0e10cSrcweir if(rTransCandidate.getChildren().hasElements()) 1058cdf0e10cSrcweir { 1059cdf0e10cSrcweir if(bForceToDecomposition) 1060cdf0e10cSrcweir { 1061cdf0e10cSrcweir // use decomposition 1062cdf0e10cSrcweir process(rTransCandidate.get2DDecomposition(getViewInformation2D())); 1063cdf0e10cSrcweir } 1064cdf0e10cSrcweir else 1065cdf0e10cSrcweir { 1066cdf0e10cSrcweir if(0.0 == rTransCandidate.getTransparence()) 1067cdf0e10cSrcweir { 1068cdf0e10cSrcweir // no transparence used, so just use the content 1069cdf0e10cSrcweir process(rTransCandidate.getChildren()); 1070cdf0e10cSrcweir } 1071cdf0e10cSrcweir else if(rTransCandidate.getTransparence() > 0.0 && rTransCandidate.getTransparence() < 1.0) 1072cdf0e10cSrcweir { 1073cdf0e10cSrcweir // transparence is in visible range 1074cdf0e10cSrcweir basegfx::B2DRange aRange(primitive2d::getB2DRangeFromPrimitive2DSequence(rTransCandidate.getChildren(), getViewInformation2D())); 1075cdf0e10cSrcweir aRange.transform(maCurrentTransformation); 1076cdf0e10cSrcweir impBufferDevice aBufferDevice(*mpOutputDevice, aRange, true); 1077cdf0e10cSrcweir 1078cdf0e10cSrcweir if(aBufferDevice.isVisible()) 1079cdf0e10cSrcweir { 1080cdf0e10cSrcweir // remember last OutDev and set to content 1081cdf0e10cSrcweir OutputDevice* pLastOutputDevice = mpOutputDevice; 1082cdf0e10cSrcweir mpOutputDevice = &aBufferDevice.getContent(); 1083cdf0e10cSrcweir 1084cdf0e10cSrcweir // paint content to it 1085cdf0e10cSrcweir process(rTransCandidate.getChildren()); 1086cdf0e10cSrcweir 1087cdf0e10cSrcweir // back to old OutDev 1088cdf0e10cSrcweir mpOutputDevice = pLastOutputDevice; 1089cdf0e10cSrcweir 1090cdf0e10cSrcweir // dump buffer to outdev using given transparence 1091cdf0e10cSrcweir aBufferDevice.paint(rTransCandidate.getTransparence()); 1092cdf0e10cSrcweir } 1093cdf0e10cSrcweir } 1094cdf0e10cSrcweir } 1095cdf0e10cSrcweir } 1096cdf0e10cSrcweir } 1097cdf0e10cSrcweir 1098cdf0e10cSrcweir // sub-transparence group. Draw to VDev first. 1099cdf0e10cSrcweir void VclProcessor2D::RenderTransparencePrimitive2D(const primitive2d::TransparencePrimitive2D& rTransCandidate) 1100cdf0e10cSrcweir { 1101cdf0e10cSrcweir if(rTransCandidate.getChildren().hasElements()) 1102cdf0e10cSrcweir { 1103cdf0e10cSrcweir basegfx::B2DRange aRange(primitive2d::getB2DRangeFromPrimitive2DSequence(rTransCandidate.getChildren(), getViewInformation2D())); 1104cdf0e10cSrcweir aRange.transform(maCurrentTransformation); 1105cdf0e10cSrcweir impBufferDevice aBufferDevice(*mpOutputDevice, aRange, true); 1106cdf0e10cSrcweir 1107cdf0e10cSrcweir if(aBufferDevice.isVisible()) 1108cdf0e10cSrcweir { 1109cdf0e10cSrcweir // remember last OutDev and set to content 1110cdf0e10cSrcweir OutputDevice* pLastOutputDevice = mpOutputDevice; 1111cdf0e10cSrcweir mpOutputDevice = &aBufferDevice.getContent(); 1112cdf0e10cSrcweir 1113cdf0e10cSrcweir // paint content to it 1114cdf0e10cSrcweir process(rTransCandidate.getChildren()); 1115cdf0e10cSrcweir 1116cdf0e10cSrcweir // set to mask 1117cdf0e10cSrcweir mpOutputDevice = &aBufferDevice.getTransparence(); 1118cdf0e10cSrcweir 1119cdf0e10cSrcweir // when painting transparence masks, reset the color stack 1120cdf0e10cSrcweir basegfx::BColorModifierStack aLastBColorModifierStack(maBColorModifierStack); 1121cdf0e10cSrcweir maBColorModifierStack = basegfx::BColorModifierStack(); 1122cdf0e10cSrcweir 1123cdf0e10cSrcweir // paint mask to it (always with transparence intensities, evtl. with AA) 1124cdf0e10cSrcweir process(rTransCandidate.getTransparence()); 1125cdf0e10cSrcweir 1126cdf0e10cSrcweir // back to old color stack 1127cdf0e10cSrcweir maBColorModifierStack = aLastBColorModifierStack; 1128cdf0e10cSrcweir 1129cdf0e10cSrcweir // back to old OutDev 1130cdf0e10cSrcweir mpOutputDevice = pLastOutputDevice; 1131cdf0e10cSrcweir 1132cdf0e10cSrcweir // dump buffer to outdev 1133cdf0e10cSrcweir aBufferDevice.paint(); 1134cdf0e10cSrcweir } 1135cdf0e10cSrcweir } 1136cdf0e10cSrcweir } 1137cdf0e10cSrcweir 1138cdf0e10cSrcweir // transform group. 1139cdf0e10cSrcweir void VclProcessor2D::RenderTransformPrimitive2D(const primitive2d::TransformPrimitive2D& rTransformCandidate) 1140cdf0e10cSrcweir { 1141cdf0e10cSrcweir // remember current transformation and ViewInformation 1142cdf0e10cSrcweir const basegfx::B2DHomMatrix aLastCurrentTransformation(maCurrentTransformation); 1143cdf0e10cSrcweir const geometry::ViewInformation2D aLastViewInformation2D(getViewInformation2D()); 1144cdf0e10cSrcweir 1145cdf0e10cSrcweir // create new transformations for CurrentTransformation 1146cdf0e10cSrcweir // and for local ViewInformation2D 1147cdf0e10cSrcweir maCurrentTransformation = maCurrentTransformation * rTransformCandidate.getTransformation(); 1148cdf0e10cSrcweir const geometry::ViewInformation2D aViewInformation2D( 1149cdf0e10cSrcweir getViewInformation2D().getObjectTransformation() * rTransformCandidate.getTransformation(), 1150cdf0e10cSrcweir getViewInformation2D().getViewTransformation(), 1151cdf0e10cSrcweir getViewInformation2D().getViewport(), 1152cdf0e10cSrcweir getViewInformation2D().getVisualizedPage(), 1153cdf0e10cSrcweir getViewInformation2D().getViewTime(), 1154cdf0e10cSrcweir getViewInformation2D().getExtendedInformationSequence()); 1155cdf0e10cSrcweir updateViewInformation(aViewInformation2D); 1156cdf0e10cSrcweir 1157cdf0e10cSrcweir // proccess content 1158cdf0e10cSrcweir process(rTransformCandidate.getChildren()); 1159cdf0e10cSrcweir 1160cdf0e10cSrcweir // restore transformations 1161cdf0e10cSrcweir maCurrentTransformation = aLastCurrentTransformation; 1162cdf0e10cSrcweir updateViewInformation(aLastViewInformation2D); 1163cdf0e10cSrcweir } 1164cdf0e10cSrcweir 1165cdf0e10cSrcweir // new XDrawPage for ViewInformation2D 1166cdf0e10cSrcweir void VclProcessor2D::RenderPagePreviewPrimitive2D(const primitive2d::PagePreviewPrimitive2D& rPagePreviewCandidate) 1167cdf0e10cSrcweir { 1168cdf0e10cSrcweir // remember current transformation and ViewInformation 1169cdf0e10cSrcweir const geometry::ViewInformation2D aLastViewInformation2D(getViewInformation2D()); 1170cdf0e10cSrcweir 1171cdf0e10cSrcweir // create new local ViewInformation2D 1172cdf0e10cSrcweir const geometry::ViewInformation2D aViewInformation2D( 1173cdf0e10cSrcweir getViewInformation2D().getObjectTransformation(), 1174cdf0e10cSrcweir getViewInformation2D().getViewTransformation(), 1175cdf0e10cSrcweir getViewInformation2D().getViewport(), 1176cdf0e10cSrcweir rPagePreviewCandidate.getXDrawPage(), 1177cdf0e10cSrcweir getViewInformation2D().getViewTime(), 1178cdf0e10cSrcweir getViewInformation2D().getExtendedInformationSequence()); 1179cdf0e10cSrcweir updateViewInformation(aViewInformation2D); 1180cdf0e10cSrcweir 1181cdf0e10cSrcweir // proccess decomposed content 1182cdf0e10cSrcweir process(rPagePreviewCandidate.get2DDecomposition(getViewInformation2D())); 1183cdf0e10cSrcweir 1184cdf0e10cSrcweir // restore transformations 1185cdf0e10cSrcweir updateViewInformation(aLastViewInformation2D); 1186cdf0e10cSrcweir } 1187cdf0e10cSrcweir 1188cdf0e10cSrcweir // marker 1189cdf0e10cSrcweir void VclProcessor2D::RenderMarkerArrayPrimitive2D(const primitive2d::MarkerArrayPrimitive2D& rMarkArrayCandidate) 1190cdf0e10cSrcweir { 1191cdf0e10cSrcweir static bool bCheckCompleteMarkerDecompose(false); 1192cdf0e10cSrcweir if(bCheckCompleteMarkerDecompose) 1193cdf0e10cSrcweir { 1194cdf0e10cSrcweir process(rMarkArrayCandidate.get2DDecomposition(getViewInformation2D())); 1195cdf0e10cSrcweir return; 1196cdf0e10cSrcweir } 1197cdf0e10cSrcweir 1198cdf0e10cSrcweir // get data 1199cdf0e10cSrcweir const std::vector< basegfx::B2DPoint >& rPositions = rMarkArrayCandidate.getPositions(); 1200cdf0e10cSrcweir const sal_uInt32 nCount(rPositions.size()); 1201cdf0e10cSrcweir 1202cdf0e10cSrcweir if(nCount && !rMarkArrayCandidate.getMarker().IsEmpty()) 1203cdf0e10cSrcweir { 1204cdf0e10cSrcweir // get pixel size 1205cdf0e10cSrcweir const BitmapEx& rMarker(rMarkArrayCandidate.getMarker()); 1206cdf0e10cSrcweir const Size aBitmapSize(rMarker.GetSizePixel()); 1207cdf0e10cSrcweir 1208cdf0e10cSrcweir if(aBitmapSize.Width() && aBitmapSize.Height()) 1209cdf0e10cSrcweir { 1210cdf0e10cSrcweir // get discrete half size 1211cdf0e10cSrcweir const basegfx::B2DVector aDiscreteHalfSize( 1212cdf0e10cSrcweir (aBitmapSize.getWidth() - 1.0) * 0.5, 1213cdf0e10cSrcweir (aBitmapSize.getHeight() - 1.0) * 0.5); 1214cdf0e10cSrcweir const bool bWasEnabled(mpOutputDevice->IsMapModeEnabled()); 1215cdf0e10cSrcweir 1216cdf0e10cSrcweir // do not forget evtl. moved origin in target device MapMode when 1217cdf0e10cSrcweir // switching it off; it would be missing and lead to wrong positions. 1218cdf0e10cSrcweir // All his could be done using logic sizes and coordinates, too, but 1219cdf0e10cSrcweir // we want a 1:1 bitmap rendering here, so it's more safe and faster 1220cdf0e10cSrcweir // to work with switching off MapMode usage completely. 1221cdf0e10cSrcweir const Point aOrigin(mpOutputDevice->GetMapMode().GetOrigin()); 1222cdf0e10cSrcweir 1223cdf0e10cSrcweir mpOutputDevice->EnableMapMode(false); 1224cdf0e10cSrcweir 1225cdf0e10cSrcweir for(std::vector< basegfx::B2DPoint >::const_iterator aIter(rPositions.begin()); aIter != rPositions.end(); aIter++) 1226cdf0e10cSrcweir { 1227cdf0e10cSrcweir const basegfx::B2DPoint aDiscreteTopLeft((maCurrentTransformation * (*aIter)) - aDiscreteHalfSize); 1228cdf0e10cSrcweir const Point aDiscretePoint(basegfx::fround(aDiscreteTopLeft.getX()), basegfx::fround(aDiscreteTopLeft.getY())); 1229cdf0e10cSrcweir 1230cdf0e10cSrcweir mpOutputDevice->DrawBitmapEx(aDiscretePoint + aOrigin, rMarker); 1231cdf0e10cSrcweir } 1232cdf0e10cSrcweir 1233cdf0e10cSrcweir mpOutputDevice->EnableMapMode(bWasEnabled); 1234cdf0e10cSrcweir } 1235cdf0e10cSrcweir } 1236cdf0e10cSrcweir } 1237cdf0e10cSrcweir 1238cdf0e10cSrcweir // point 1239cdf0e10cSrcweir void VclProcessor2D::RenderPointArrayPrimitive2D(const primitive2d::PointArrayPrimitive2D& rPointArrayCandidate) 1240cdf0e10cSrcweir { 1241cdf0e10cSrcweir const std::vector< basegfx::B2DPoint >& rPositions = rPointArrayCandidate.getPositions(); 1242cdf0e10cSrcweir const basegfx::BColor aRGBColor(maBColorModifierStack.getModifiedColor(rPointArrayCandidate.getRGBColor())); 1243cdf0e10cSrcweir const Color aVCLColor(aRGBColor); 1244cdf0e10cSrcweir 1245cdf0e10cSrcweir for(std::vector< basegfx::B2DPoint >::const_iterator aIter(rPositions.begin()); aIter != rPositions.end(); aIter++) 1246cdf0e10cSrcweir { 1247cdf0e10cSrcweir const basegfx::B2DPoint aViewPosition(maCurrentTransformation * (*aIter)); 1248cdf0e10cSrcweir const Point aPos(basegfx::fround(aViewPosition.getX()), basegfx::fround(aViewPosition.getY())); 1249cdf0e10cSrcweir 1250cdf0e10cSrcweir mpOutputDevice->DrawPixel(aPos, aVCLColor); 1251cdf0e10cSrcweir } 1252cdf0e10cSrcweir } 1253cdf0e10cSrcweir 1254cdf0e10cSrcweir void VclProcessor2D::RenderPolygonStrokePrimitive2D(const primitive2d::PolygonStrokePrimitive2D& rPolygonStrokeCandidate) 1255cdf0e10cSrcweir { 1256cdf0e10cSrcweir // #i101491# method restructured to clearly use the DrawPolyLine 1257cdf0e10cSrcweir // calls starting from a deined line width 1258cdf0e10cSrcweir const attribute::LineAttribute& rLineAttribute = rPolygonStrokeCandidate.getLineAttribute(); 1259cdf0e10cSrcweir const double fLineWidth(rLineAttribute.getWidth()); 1260cdf0e10cSrcweir bool bDone(false); 1261cdf0e10cSrcweir 1262cdf0e10cSrcweir if(basegfx::fTools::more(fLineWidth, 0.0)) 1263cdf0e10cSrcweir { 1264cdf0e10cSrcweir const basegfx::B2DVector aDiscreteUnit(maCurrentTransformation * basegfx::B2DVector(fLineWidth, 0.0)); 1265cdf0e10cSrcweir const double fDiscreteLineWidth(aDiscreteUnit.getLength()); 1266cdf0e10cSrcweir const attribute::StrokeAttribute& rStrokeAttribute = rPolygonStrokeCandidate.getStrokeAttribute(); 1267cdf0e10cSrcweir const basegfx::BColor aHairlineColor(maBColorModifierStack.getModifiedColor(rLineAttribute.getColor())); 1268cdf0e10cSrcweir basegfx::B2DPolyPolygon aHairlinePolyPolygon; 1269cdf0e10cSrcweir 1270cdf0e10cSrcweir mpOutputDevice->SetLineColor(Color(aHairlineColor)); 1271cdf0e10cSrcweir mpOutputDevice->SetFillColor(); 1272cdf0e10cSrcweir 1273cdf0e10cSrcweir if(0.0 == rStrokeAttribute.getFullDotDashLen()) 1274cdf0e10cSrcweir { 1275cdf0e10cSrcweir // no line dashing, just copy 1276cdf0e10cSrcweir aHairlinePolyPolygon.append(rPolygonStrokeCandidate.getB2DPolygon()); 1277cdf0e10cSrcweir } 1278cdf0e10cSrcweir else 1279cdf0e10cSrcweir { 1280cdf0e10cSrcweir // else apply LineStyle 1281cdf0e10cSrcweir basegfx::tools::applyLineDashing(rPolygonStrokeCandidate.getB2DPolygon(), 1282cdf0e10cSrcweir rStrokeAttribute.getDotDashArray(), 1283cdf0e10cSrcweir &aHairlinePolyPolygon, 0, rStrokeAttribute.getFullDotDashLen()); 1284cdf0e10cSrcweir } 1285cdf0e10cSrcweir 1286cdf0e10cSrcweir const sal_uInt32 nCount(aHairlinePolyPolygon.count()); 1287cdf0e10cSrcweir 1288cdf0e10cSrcweir if(nCount) 1289cdf0e10cSrcweir { 1290cdf0e10cSrcweir const bool bAntiAliased(getOptionsDrawinglayer().IsAntiAliasing()); 1291cdf0e10cSrcweir aHairlinePolyPolygon.transform(maCurrentTransformation); 1292cdf0e10cSrcweir 1293cdf0e10cSrcweir if(bAntiAliased) 1294cdf0e10cSrcweir { 1295cdf0e10cSrcweir if(basegfx::fTools::lessOrEqual(fDiscreteLineWidth, 1.0)) 1296cdf0e10cSrcweir { 1297cdf0e10cSrcweir // line in range ]0.0 .. 1.0[ 1298cdf0e10cSrcweir // paint as simple hairline 12997be6ee6dSArmin Le Grand for(sal_uInt32 a(0); a < nCount; a++) 13007be6ee6dSArmin Le Grand { 13017be6ee6dSArmin Le Grand mpOutputDevice->DrawPolyLine(aHairlinePolyPolygon.getB2DPolygon(a), 0.0); 13027be6ee6dSArmin Le Grand } 13037be6ee6dSArmin Le Grand 1304cdf0e10cSrcweir bDone = true; 1305cdf0e10cSrcweir } 1306cdf0e10cSrcweir else if(basegfx::fTools::lessOrEqual(fDiscreteLineWidth, 2.0)) 1307cdf0e10cSrcweir { 1308cdf0e10cSrcweir // line in range [1.0 .. 2.0[ 1309cdf0e10cSrcweir // paint as 2x2 with dynamic line distance 1310cdf0e10cSrcweir basegfx::B2DHomMatrix aMat; 1311cdf0e10cSrcweir const double fDistance(fDiscreteLineWidth - 1.0); 1312cdf0e10cSrcweir const double fHalfDistance(fDistance * 0.5); 1313cdf0e10cSrcweir 13147be6ee6dSArmin Le Grand for(sal_uInt32 a(0); a < nCount; a++) 13157be6ee6dSArmin Le Grand { 13167be6ee6dSArmin Le Grand basegfx::B2DPolygon aCandidate(aHairlinePolyPolygon.getB2DPolygon(a)); 13177be6ee6dSArmin Le Grand 1318cdf0e10cSrcweir aMat.set(0, 2, -fHalfDistance); 1319cdf0e10cSrcweir aMat.set(1, 2, -fHalfDistance); 1320cdf0e10cSrcweir aCandidate.transform(aMat); 1321cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 1322cdf0e10cSrcweir 1323cdf0e10cSrcweir aMat.set(0, 2, fDistance); 1324cdf0e10cSrcweir aMat.set(1, 2, 0.0); 1325cdf0e10cSrcweir aCandidate.transform(aMat); 1326cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 1327cdf0e10cSrcweir 1328cdf0e10cSrcweir aMat.set(0, 2, 0.0); 1329cdf0e10cSrcweir aMat.set(1, 2, fDistance); 1330cdf0e10cSrcweir aCandidate.transform(aMat); 1331cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 1332cdf0e10cSrcweir 1333cdf0e10cSrcweir aMat.set(0, 2, -fDistance); 1334cdf0e10cSrcweir aMat.set(1, 2, 0.0); 1335cdf0e10cSrcweir aCandidate.transform(aMat); 1336cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 13377be6ee6dSArmin Le Grand } 13387be6ee6dSArmin Le Grand 1339cdf0e10cSrcweir bDone = true; 1340cdf0e10cSrcweir } 1341cdf0e10cSrcweir else if(basegfx::fTools::lessOrEqual(fDiscreteLineWidth, 3.0)) 1342cdf0e10cSrcweir { 1343cdf0e10cSrcweir // line in range [2.0 .. 3.0] 1344cdf0e10cSrcweir // paint as cross in a 3x3 with dynamic line distance 1345cdf0e10cSrcweir basegfx::B2DHomMatrix aMat; 1346cdf0e10cSrcweir const double fDistance((fDiscreteLineWidth - 1.0) * 0.5); 1347cdf0e10cSrcweir 13487be6ee6dSArmin Le Grand for(sal_uInt32 a(0); a < nCount; a++) 13497be6ee6dSArmin Le Grand { 13507be6ee6dSArmin Le Grand basegfx::B2DPolygon aCandidate(aHairlinePolyPolygon.getB2DPolygon(a)); 13517be6ee6dSArmin Le Grand 1352cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 1353cdf0e10cSrcweir 1354cdf0e10cSrcweir aMat.set(0, 2, -fDistance); 1355cdf0e10cSrcweir aMat.set(1, 2, 0.0); 1356cdf0e10cSrcweir aCandidate.transform(aMat); 1357cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 1358cdf0e10cSrcweir 1359cdf0e10cSrcweir aMat.set(0, 2, fDistance); 1360cdf0e10cSrcweir aMat.set(1, 2, -fDistance); 1361cdf0e10cSrcweir aCandidate.transform(aMat); 1362cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 1363cdf0e10cSrcweir 1364cdf0e10cSrcweir aMat.set(0, 2, fDistance); 1365cdf0e10cSrcweir aMat.set(1, 2, fDistance); 1366cdf0e10cSrcweir aCandidate.transform(aMat); 1367cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 1368cdf0e10cSrcweir 1369cdf0e10cSrcweir aMat.set(0, 2, -fDistance); 1370cdf0e10cSrcweir aMat.set(1, 2, fDistance); 1371cdf0e10cSrcweir aCandidate.transform(aMat); 1372cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 13737be6ee6dSArmin Le Grand } 13747be6ee6dSArmin Le Grand 1375cdf0e10cSrcweir bDone = true; 1376cdf0e10cSrcweir } 1377cdf0e10cSrcweir else 1378cdf0e10cSrcweir { 1379cdf0e10cSrcweir // #i101491# line width above 3.0 1380cdf0e10cSrcweir } 1381cdf0e10cSrcweir } 1382cdf0e10cSrcweir else 1383cdf0e10cSrcweir { 1384cdf0e10cSrcweir if(basegfx::fTools::lessOrEqual(fDiscreteLineWidth, 1.5)) 1385cdf0e10cSrcweir { 1386cdf0e10cSrcweir // line width below 1.5, draw the basic hairline polygon 13877be6ee6dSArmin Le Grand for(sal_uInt32 a(0); a < nCount; a++) 13887be6ee6dSArmin Le Grand { 13897be6ee6dSArmin Le Grand mpOutputDevice->DrawPolyLine(aHairlinePolyPolygon.getB2DPolygon(a), 0.0); 13907be6ee6dSArmin Le Grand } 13917be6ee6dSArmin Le Grand 1392cdf0e10cSrcweir bDone = true; 1393cdf0e10cSrcweir } 1394cdf0e10cSrcweir else if(basegfx::fTools::lessOrEqual(fDiscreteLineWidth, 2.5)) 1395cdf0e10cSrcweir { 1396cdf0e10cSrcweir // line width is in range ]1.5 .. 2.5], use four hairlines 1397cdf0e10cSrcweir // drawn in a square 13987be6ee6dSArmin Le Grand for(sal_uInt32 a(0); a < nCount; a++) 13997be6ee6dSArmin Le Grand { 14007be6ee6dSArmin Le Grand basegfx::B2DPolygon aCandidate(aHairlinePolyPolygon.getB2DPolygon(a)); 1401cdf0e10cSrcweir basegfx::B2DHomMatrix aMat; 14027be6ee6dSArmin Le Grand 1403cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 1404cdf0e10cSrcweir 1405cdf0e10cSrcweir aMat.set(0, 2, 1.0); 1406cdf0e10cSrcweir aMat.set(1, 2, 0.0); 1407cdf0e10cSrcweir aCandidate.transform(aMat); 1408cdf0e10cSrcweir 1409cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 1410cdf0e10cSrcweir 1411cdf0e10cSrcweir aMat.set(0, 2, 0.0); 1412cdf0e10cSrcweir aMat.set(1, 2, 1.0); 1413cdf0e10cSrcweir aCandidate.transform(aMat); 1414cdf0e10cSrcweir 1415cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 1416cdf0e10cSrcweir 1417cdf0e10cSrcweir aMat.set(0, 2, -1.0); 1418cdf0e10cSrcweir aMat.set(1, 2, 0.0); 1419cdf0e10cSrcweir aCandidate.transform(aMat); 1420cdf0e10cSrcweir 1421cdf0e10cSrcweir mpOutputDevice->DrawPolyLine(aCandidate, 0.0); 14227be6ee6dSArmin Le Grand } 14237be6ee6dSArmin Le Grand 1424cdf0e10cSrcweir bDone = true; 1425cdf0e10cSrcweir } 1426cdf0e10cSrcweir else 1427cdf0e10cSrcweir { 1428cdf0e10cSrcweir // #i101491# line width is above 2.5 1429cdf0e10cSrcweir } 1430cdf0e10cSrcweir } 1431cdf0e10cSrcweir 1432cdf0e10cSrcweir if(!bDone && rPolygonStrokeCandidate.getB2DPolygon().count() > 1000) 1433cdf0e10cSrcweir { 1434cdf0e10cSrcweir // #i101491# If the polygon complexity uses more than a given amount, do 1435cdf0e10cSrcweir // use OuputDevice::DrawPolyLine directly; this will avoid buffering all 1436cdf0e10cSrcweir // decompositions in primtives (memory) and fallback to old line painting 1437cdf0e10cSrcweir // for very complex polygons, too 14387be6ee6dSArmin Le Grand for(sal_uInt32 a(0); a < nCount; a++) 14397be6ee6dSArmin Le Grand { 14407be6ee6dSArmin Le Grand mpOutputDevice->DrawPolyLine( 14417be6ee6dSArmin Le Grand aHairlinePolyPolygon.getB2DPolygon(a), 14427be6ee6dSArmin Le Grand fDiscreteLineWidth, 14437be6ee6dSArmin Le Grand rLineAttribute.getLineJoin(), 14447be6ee6dSArmin Le Grand rLineAttribute.getLineCap()); 1445cdf0e10cSrcweir } 14467be6ee6dSArmin Le Grand 14477be6ee6dSArmin Le Grand bDone = true; 1448cdf0e10cSrcweir } 1449cdf0e10cSrcweir } 1450cdf0e10cSrcweir } 1451cdf0e10cSrcweir 1452cdf0e10cSrcweir if(!bDone) 1453cdf0e10cSrcweir { 1454cdf0e10cSrcweir // remeber that we enter a PolygonStrokePrimitive2D decomposition, 1455cdf0e10cSrcweir // used for AA thick line drawing 1456cdf0e10cSrcweir mnPolygonStrokePrimitive2D++; 1457cdf0e10cSrcweir 1458cdf0e10cSrcweir // line width is big enough for standard filled polygon visualisation or zero 1459cdf0e10cSrcweir process(rPolygonStrokeCandidate.get2DDecomposition(getViewInformation2D())); 1460cdf0e10cSrcweir 1461cdf0e10cSrcweir // leave PolygonStrokePrimitive2D 1462cdf0e10cSrcweir mnPolygonStrokePrimitive2D--; 1463cdf0e10cSrcweir } 1464cdf0e10cSrcweir } 1465cdf0e10cSrcweir 1466cdf0e10cSrcweir void VclProcessor2D::RenderEpsPrimitive2D(const primitive2d::EpsPrimitive2D& rEpsPrimitive2D) 1467cdf0e10cSrcweir { 1468cdf0e10cSrcweir // The new decomposition of Metafiles made it necessary to add an Eps 1469cdf0e10cSrcweir // primitive to handle embedded Eps data. On some devices, this can be 1470cdf0e10cSrcweir // painted directly (mac, printer). 1471cdf0e10cSrcweir // To be able to handle the replacement correctly, i need to handle it myself 1472cdf0e10cSrcweir // since DrawEPS will not be able e.g. to rotate the replacement. To be able 1473cdf0e10cSrcweir // to do that, i added a boolean return to OutputDevice::DrawEPS(..) 1474cdf0e10cSrcweir // to know when EPS was handled directly already. 1475cdf0e10cSrcweir basegfx::B2DRange aRange(0.0, 0.0, 1.0, 1.0); 1476cdf0e10cSrcweir aRange.transform(maCurrentTransformation * rEpsPrimitive2D.getEpsTransform()); 1477cdf0e10cSrcweir 1478cdf0e10cSrcweir if(!aRange.isEmpty()) 1479cdf0e10cSrcweir { 1480cdf0e10cSrcweir const Rectangle aRectangle( 1481cdf0e10cSrcweir (sal_Int32)floor(aRange.getMinX()), (sal_Int32)floor(aRange.getMinY()), 1482cdf0e10cSrcweir (sal_Int32)ceil(aRange.getMaxX()), (sal_Int32)ceil(aRange.getMaxY())); 1483cdf0e10cSrcweir 1484cdf0e10cSrcweir if(!aRectangle.IsEmpty()) 1485cdf0e10cSrcweir { 1486cdf0e10cSrcweir // try to paint EPS directly without fallback visualisation 1487cdf0e10cSrcweir const bool bEPSPaintedDirectly(mpOutputDevice->DrawEPS( 1488cdf0e10cSrcweir aRectangle.TopLeft(), 1489cdf0e10cSrcweir aRectangle.GetSize(), 1490cdf0e10cSrcweir rEpsPrimitive2D.getGfxLink(), 1491cdf0e10cSrcweir 0)); 1492cdf0e10cSrcweir 1493cdf0e10cSrcweir if(!bEPSPaintedDirectly) 1494cdf0e10cSrcweir { 1495cdf0e10cSrcweir // use the decomposition which will correctly handle the 1496cdf0e10cSrcweir // fallback visualisation using full transformation (e.g. rotation) 1497cdf0e10cSrcweir process(rEpsPrimitive2D.get2DDecomposition(getViewInformation2D())); 1498cdf0e10cSrcweir } 1499cdf0e10cSrcweir } 1500cdf0e10cSrcweir } 1501cdf0e10cSrcweir } 1502cdf0e10cSrcweir 150339551d71SArmin Le Grand void VclProcessor2D::RenderSvgLinearAtomPrimitive2D(const primitive2d::SvgLinearAtomPrimitive2D& rCandidate) 150439551d71SArmin Le Grand { 150539551d71SArmin Le Grand const double fDelta(rCandidate.getOffsetB() - rCandidate.getOffsetA()); 150639551d71SArmin Le Grand 150739551d71SArmin Le Grand if(basegfx::fTools::more(fDelta, 0.0)) 150839551d71SArmin Le Grand { 150939551d71SArmin Le Grand const basegfx::BColor aColorA(maBColorModifierStack.getModifiedColor(rCandidate.getColorA())); 151039551d71SArmin Le Grand const basegfx::BColor aColorB(maBColorModifierStack.getModifiedColor(rCandidate.getColorB())); 151139551d71SArmin Le Grand const double fDiscreteUnit((getViewInformation2D().getInverseObjectToViewTransformation() * basegfx::B2DVector(1.0, 0.0)).getLength()); 151239551d71SArmin Le Grand 151339551d71SArmin Le Grand // use color distance and discrete lengths to calculate step count 151439551d71SArmin Le Grand const sal_uInt32 nSteps(calculateStepsForSvgGradient(aColorA, aColorB, fDelta, fDiscreteUnit)); 151539551d71SArmin Le Grand 1516025b0597SArmin Le Grand // switch off line painting 1517025b0597SArmin Le Grand mpOutputDevice->SetLineColor(); 1518025b0597SArmin Le Grand 1519025b0597SArmin Le Grand // prepare polygon in needed width at start position (with discrete overlap) 152039551d71SArmin Le Grand const basegfx::B2DPolygon aPolygon( 152139551d71SArmin Le Grand basegfx::tools::createPolygonFromRect( 152239551d71SArmin Le Grand basegfx::B2DRange( 152339551d71SArmin Le Grand rCandidate.getOffsetA() - fDiscreteUnit, 152439551d71SArmin Le Grand 0.0, 1525025b0597SArmin Le Grand rCandidate.getOffsetA() + (fDelta / nSteps) + fDiscreteUnit, 152639551d71SArmin Le Grand 1.0))); 152739551d71SArmin Le Grand 1528025b0597SArmin Le Grand 1529025b0597SArmin Le Grand // prepare loop ([0.0 .. 1.0[) 1530025b0597SArmin Le Grand double fUnitScale(0.0); 1531025b0597SArmin Le Grand const double fUnitStep(1.0 / nSteps); 153239551d71SArmin Le Grand 153339551d71SArmin Le Grand // loop and paint 1534025b0597SArmin Le Grand for(sal_uInt32 a(0); a < nSteps; a++, fUnitScale += fUnitStep) 153539551d71SArmin Le Grand { 153639551d71SArmin Le Grand basegfx::B2DPolygon aNew(aPolygon); 153739551d71SArmin Le Grand 1538025b0597SArmin Le Grand aNew.transform(maCurrentTransformation * basegfx::tools::createTranslateB2DHomMatrix(fDelta * fUnitScale, 0.0)); 1539025b0597SArmin Le Grand mpOutputDevice->SetFillColor(Color(basegfx::interpolate(aColorA, aColorB, fUnitScale))); 154039551d71SArmin Le Grand mpOutputDevice->DrawPolyPolygon(basegfx::B2DPolyPolygon(aNew)); 154139551d71SArmin Le Grand } 154239551d71SArmin Le Grand } 154339551d71SArmin Le Grand } 154439551d71SArmin Le Grand 154539551d71SArmin Le Grand void VclProcessor2D::RenderSvgRadialAtomPrimitive2D(const primitive2d::SvgRadialAtomPrimitive2D& rCandidate) 154639551d71SArmin Le Grand { 154739551d71SArmin Le Grand const double fDeltaScale(rCandidate.getScaleB() - rCandidate.getScaleA()); 154839551d71SArmin Le Grand 154939551d71SArmin Le Grand if(basegfx::fTools::more(fDeltaScale, 0.0)) 155039551d71SArmin Le Grand { 155139551d71SArmin Le Grand const basegfx::BColor aColorA(maBColorModifierStack.getModifiedColor(rCandidate.getColorA())); 155239551d71SArmin Le Grand const basegfx::BColor aColorB(maBColorModifierStack.getModifiedColor(rCandidate.getColorB())); 155339551d71SArmin Le Grand const double fDiscreteUnit((getViewInformation2D().getInverseObjectToViewTransformation() * basegfx::B2DVector(1.0, 0.0)).getLength()); 155439551d71SArmin Le Grand 155539551d71SArmin Le Grand // use color distance and discrete lengths to calculate step count 155639551d71SArmin Le Grand const sal_uInt32 nSteps(calculateStepsForSvgGradient(aColorA, aColorB, fDeltaScale, fDiscreteUnit)); 155739551d71SArmin Le Grand 155839551d71SArmin Le Grand // switch off line painting 155939551d71SArmin Le Grand mpOutputDevice->SetLineColor(); 156039551d71SArmin Le Grand 1561025b0597SArmin Le Grand // prepare loop ([0.0 .. 1.0[, full polygons, no polypolygons with holes) 1562025b0597SArmin Le Grand double fUnitScale(0.0); 1563025b0597SArmin Le Grand const double fUnitStep(1.0 / nSteps); 156439551d71SArmin Le Grand 1565025b0597SArmin Le Grand for(sal_uInt32 a(0); a < nSteps; a++, fUnitScale += fUnitStep) 156639551d71SArmin Le Grand { 156739551d71SArmin Le Grand basegfx::B2DHomMatrix aTransform; 1568025b0597SArmin Le Grand const double fEndScale(rCandidate.getScaleB() - (fDeltaScale * fUnitScale)); 156939551d71SArmin Le Grand 157039551d71SArmin Le Grand if(rCandidate.isTranslateSet()) 157139551d71SArmin Le Grand { 157239551d71SArmin Le Grand const basegfx::B2DVector aTranslate( 157339551d71SArmin Le Grand basegfx::interpolate( 157439551d71SArmin Le Grand rCandidate.getTranslateB(), 1575025b0597SArmin Le Grand rCandidate.getTranslateA(), 157639551d71SArmin Le Grand fUnitScale)); 157739551d71SArmin Le Grand 157839551d71SArmin Le Grand aTransform = basegfx::tools::createScaleTranslateB2DHomMatrix( 157939551d71SArmin Le Grand fEndScale, 158039551d71SArmin Le Grand fEndScale, 158139551d71SArmin Le Grand aTranslate.getX(), 158239551d71SArmin Le Grand aTranslate.getY()); 158339551d71SArmin Le Grand } 158439551d71SArmin Le Grand else 158539551d71SArmin Le Grand { 158639551d71SArmin Le Grand aTransform = basegfx::tools::createScaleB2DHomMatrix( 158739551d71SArmin Le Grand fEndScale, 158839551d71SArmin Le Grand fEndScale); 158939551d71SArmin Le Grand } 159039551d71SArmin Le Grand 159139551d71SArmin Le Grand basegfx::B2DPolygon aNew(basegfx::tools::createPolygonFromUnitCircle()); 159239551d71SArmin Le Grand 159339551d71SArmin Le Grand aNew.transform(maCurrentTransformation * aTransform); 1594025b0597SArmin Le Grand mpOutputDevice->SetFillColor(Color(basegfx::interpolate(aColorB, aColorA, fUnitScale))); 159539551d71SArmin Le Grand mpOutputDevice->DrawPolyPolygon(basegfx::B2DPolyPolygon(aNew)); 159639551d71SArmin Le Grand } 159739551d71SArmin Le Grand } 159839551d71SArmin Le Grand } 159939551d71SArmin Le Grand 1600cdf0e10cSrcweir void VclProcessor2D::adaptLineToFillDrawMode() const 1601cdf0e10cSrcweir { 1602cdf0e10cSrcweir const sal_uInt32 nOriginalDrawMode(mpOutputDevice->GetDrawMode()); 1603cdf0e10cSrcweir 1604cdf0e10cSrcweir if(nOriginalDrawMode & (DRAWMODE_BLACKLINE|DRAWMODE_GRAYLINE|DRAWMODE_GHOSTEDLINE|DRAWMODE_WHITELINE|DRAWMODE_SETTINGSLINE)) 1605cdf0e10cSrcweir { 1606cdf0e10cSrcweir sal_uInt32 nAdaptedDrawMode(nOriginalDrawMode); 1607cdf0e10cSrcweir 1608cdf0e10cSrcweir if(nOriginalDrawMode & DRAWMODE_BLACKLINE) 1609cdf0e10cSrcweir { 1610cdf0e10cSrcweir nAdaptedDrawMode |= DRAWMODE_BLACKFILL; 1611cdf0e10cSrcweir } 1612cdf0e10cSrcweir else 1613cdf0e10cSrcweir { 1614cdf0e10cSrcweir nAdaptedDrawMode &= ~DRAWMODE_BLACKFILL; 1615cdf0e10cSrcweir } 1616cdf0e10cSrcweir 1617cdf0e10cSrcweir if(nOriginalDrawMode & DRAWMODE_GRAYLINE) 1618cdf0e10cSrcweir { 1619cdf0e10cSrcweir nAdaptedDrawMode |= DRAWMODE_GRAYFILL; 1620cdf0e10cSrcweir } 1621cdf0e10cSrcweir else 1622cdf0e10cSrcweir { 1623cdf0e10cSrcweir nAdaptedDrawMode &= ~DRAWMODE_GRAYFILL; 1624cdf0e10cSrcweir } 1625cdf0e10cSrcweir 1626cdf0e10cSrcweir if(nOriginalDrawMode & DRAWMODE_GHOSTEDLINE) 1627cdf0e10cSrcweir { 1628cdf0e10cSrcweir nAdaptedDrawMode |= DRAWMODE_GHOSTEDFILL; 1629cdf0e10cSrcweir } 1630cdf0e10cSrcweir else 1631cdf0e10cSrcweir { 1632cdf0e10cSrcweir nAdaptedDrawMode &= ~DRAWMODE_GHOSTEDFILL; 1633cdf0e10cSrcweir } 1634cdf0e10cSrcweir 1635cdf0e10cSrcweir if(nOriginalDrawMode & DRAWMODE_WHITELINE) 1636cdf0e10cSrcweir { 1637cdf0e10cSrcweir nAdaptedDrawMode |= DRAWMODE_WHITEFILL; 1638cdf0e10cSrcweir } 1639cdf0e10cSrcweir else 1640cdf0e10cSrcweir { 1641cdf0e10cSrcweir nAdaptedDrawMode &= ~DRAWMODE_WHITEFILL; 1642cdf0e10cSrcweir } 1643cdf0e10cSrcweir 1644cdf0e10cSrcweir if(nOriginalDrawMode & DRAWMODE_SETTINGSLINE) 1645cdf0e10cSrcweir { 1646cdf0e10cSrcweir nAdaptedDrawMode |= DRAWMODE_SETTINGSFILL; 1647cdf0e10cSrcweir } 1648cdf0e10cSrcweir else 1649cdf0e10cSrcweir { 1650cdf0e10cSrcweir nAdaptedDrawMode &= ~DRAWMODE_SETTINGSFILL; 1651cdf0e10cSrcweir } 1652cdf0e10cSrcweir 1653cdf0e10cSrcweir mpOutputDevice->SetDrawMode(nAdaptedDrawMode); 1654cdf0e10cSrcweir } 1655cdf0e10cSrcweir } 1656cdf0e10cSrcweir 1657cdf0e10cSrcweir void VclProcessor2D::adaptTextToFillDrawMode() const 1658cdf0e10cSrcweir { 1659cdf0e10cSrcweir const sal_uInt32 nOriginalDrawMode(mpOutputDevice->GetDrawMode()); 1660cdf0e10cSrcweir if(nOriginalDrawMode & (DRAWMODE_BLACKTEXT|DRAWMODE_GRAYTEXT|DRAWMODE_GHOSTEDTEXT|DRAWMODE_WHITETEXT|DRAWMODE_SETTINGSTEXT)) 1661cdf0e10cSrcweir { 1662cdf0e10cSrcweir sal_uInt32 nAdaptedDrawMode(nOriginalDrawMode); 1663cdf0e10cSrcweir 1664cdf0e10cSrcweir if(nOriginalDrawMode & DRAWMODE_BLACKTEXT) 1665cdf0e10cSrcweir { 1666cdf0e10cSrcweir nAdaptedDrawMode |= DRAWMODE_BLACKFILL; 1667cdf0e10cSrcweir } 1668cdf0e10cSrcweir else 1669cdf0e10cSrcweir { 1670cdf0e10cSrcweir nAdaptedDrawMode &= ~DRAWMODE_BLACKFILL; 1671cdf0e10cSrcweir } 1672cdf0e10cSrcweir 1673cdf0e10cSrcweir if(nOriginalDrawMode & DRAWMODE_GRAYTEXT) 1674cdf0e10cSrcweir { 1675cdf0e10cSrcweir nAdaptedDrawMode |= DRAWMODE_GRAYFILL; 1676cdf0e10cSrcweir } 1677cdf0e10cSrcweir else 1678cdf0e10cSrcweir { 1679cdf0e10cSrcweir nAdaptedDrawMode &= ~DRAWMODE_GRAYFILL; 1680cdf0e10cSrcweir } 1681cdf0e10cSrcweir 1682cdf0e10cSrcweir if(nOriginalDrawMode & DRAWMODE_GHOSTEDTEXT) 1683cdf0e10cSrcweir { 1684cdf0e10cSrcweir nAdaptedDrawMode |= DRAWMODE_GHOSTEDFILL; 1685cdf0e10cSrcweir } 1686cdf0e10cSrcweir else 1687cdf0e10cSrcweir { 1688cdf0e10cSrcweir nAdaptedDrawMode &= ~DRAWMODE_GHOSTEDFILL; 1689cdf0e10cSrcweir } 1690cdf0e10cSrcweir 1691cdf0e10cSrcweir if(nOriginalDrawMode & DRAWMODE_WHITETEXT) 1692cdf0e10cSrcweir { 1693cdf0e10cSrcweir nAdaptedDrawMode |= DRAWMODE_WHITEFILL; 1694cdf0e10cSrcweir } 1695cdf0e10cSrcweir else 1696cdf0e10cSrcweir { 1697cdf0e10cSrcweir nAdaptedDrawMode &= ~DRAWMODE_WHITEFILL; 1698cdf0e10cSrcweir } 1699cdf0e10cSrcweir 1700cdf0e10cSrcweir if(nOriginalDrawMode & DRAWMODE_SETTINGSTEXT) 1701cdf0e10cSrcweir { 1702cdf0e10cSrcweir nAdaptedDrawMode |= DRAWMODE_SETTINGSFILL; 1703cdf0e10cSrcweir } 1704cdf0e10cSrcweir else 1705cdf0e10cSrcweir { 1706cdf0e10cSrcweir nAdaptedDrawMode &= ~DRAWMODE_SETTINGSFILL; 1707cdf0e10cSrcweir } 1708cdf0e10cSrcweir 1709cdf0e10cSrcweir mpOutputDevice->SetDrawMode(nAdaptedDrawMode); 1710cdf0e10cSrcweir } 1711cdf0e10cSrcweir } 1712cdf0e10cSrcweir 1713cdf0e10cSrcweir ////////////////////////////////////////////////////////////////////////////// 1714cdf0e10cSrcweir // process support 1715cdf0e10cSrcweir 1716cdf0e10cSrcweir VclProcessor2D::VclProcessor2D( 1717cdf0e10cSrcweir const geometry::ViewInformation2D& rViewInformation, 1718cdf0e10cSrcweir OutputDevice& rOutDev) 1719cdf0e10cSrcweir : BaseProcessor2D(rViewInformation), 1720cdf0e10cSrcweir mpOutputDevice(&rOutDev), 1721cdf0e10cSrcweir maBColorModifierStack(), 1722cdf0e10cSrcweir maCurrentTransformation(), 1723cdf0e10cSrcweir maDrawinglayerOpt(), 1724cdf0e10cSrcweir mnPolygonStrokePrimitive2D(0) 1725cdf0e10cSrcweir { 1726cdf0e10cSrcweir // set digit language, derived from SvtCTLOptions to have the correct 1727cdf0e10cSrcweir // number display for arabic/hindi numerals 1728cdf0e10cSrcweir const SvtCTLOptions aSvtCTLOptions; 1729cdf0e10cSrcweir LanguageType eLang(LANGUAGE_SYSTEM); 1730cdf0e10cSrcweir 1731cdf0e10cSrcweir if(SvtCTLOptions::NUMERALS_HINDI == aSvtCTLOptions.GetCTLTextNumerals()) 1732cdf0e10cSrcweir { 1733cdf0e10cSrcweir eLang = LANGUAGE_ARABIC_SAUDI_ARABIA; 1734cdf0e10cSrcweir } 1735cdf0e10cSrcweir else if(SvtCTLOptions::NUMERALS_ARABIC == aSvtCTLOptions.GetCTLTextNumerals()) 1736cdf0e10cSrcweir { 1737cdf0e10cSrcweir eLang = LANGUAGE_ENGLISH; 1738cdf0e10cSrcweir } 1739cdf0e10cSrcweir else 1740cdf0e10cSrcweir { 1741cdf0e10cSrcweir eLang = (LanguageType)Application::GetSettings().GetLanguage(); 1742cdf0e10cSrcweir } 1743cdf0e10cSrcweir 1744cdf0e10cSrcweir rOutDev.SetDigitLanguage(eLang); 1745cdf0e10cSrcweir } 1746cdf0e10cSrcweir 1747cdf0e10cSrcweir VclProcessor2D::~VclProcessor2D() 1748cdf0e10cSrcweir { 1749cdf0e10cSrcweir } 1750cdf0e10cSrcweir } // end of namespace processor2d 1751cdf0e10cSrcweir } // end of namespace drawinglayer 1752cdf0e10cSrcweir 1753cdf0e10cSrcweir ////////////////////////////////////////////////////////////////////////////// 1754cdf0e10cSrcweir // eof 1755