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// -*- Mode: c++; c-basic-offset: 4; indent-tabs-mode: nil; tab-width: 4; -*-
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/* This file is part of the KDE project
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Copyright (C) 2001 Toshitaka Fujioka <fujioka@kde.org>
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Copyright (C) 2005 Thorsten Zachmann <zachmann@kde.org>
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Library General Public
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License as published by the Free Software Foundation; either
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version 2 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Library General Public License for more details.
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You should have received a copy of the GNU Library General Public License
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along with this library; see the file COPYING.LIB. If not, write to
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the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
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* Boston, MA 02110-1301, USA.
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*/
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#include "KPrPolygonObject.h"
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#include "KPrGradient.h"
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#include <KoTextZoomHandler.h>
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#include <kdebug.h>
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#include <tqbitmap.h>
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#include <tqregion.h>
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#include <tqdom.h>
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#include <tqpicture.h>
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#include <tqpainter.h>
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#include "KPrPolygonObjectIface.h"
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#include <KoUnit.h>
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#include <KoOasisContext.h>
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#include <math.h>
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#include <KoXmlNS.h>
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#include "KoPen.h"
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using namespace std;
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KPrPolygonObject::KPrPolygonObject()
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: KPr2DObject()
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{
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}
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KPrPolygonObject::KPrPolygonObject( const KoPointArray &_points, const KoSize &_size,
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const KoPen &_pen, const TQBrush &_brush,
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FillType _fillType, const TQColor &_gColor1, const TQColor &_gColor2, BCType _gType,
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bool _unbalanced, int _xfactor, int _yfactor,
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bool _checkConcavePolygon, int _cornersValue, int _sharpnessValue )
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: KPr2DObject( _pen, _brush, _fillType, _gColor1, _gColor2, _gType, _unbalanced, _xfactor, _yfactor )
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{
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points = KoPointArray( _points );
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ext = _size;
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checkConcavePolygon = _checkConcavePolygon;
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cornersValue = _cornersValue;
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sharpnessValue = _sharpnessValue;
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}
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KPrPolygonObject &KPrPolygonObject::operator=( const KPrPolygonObject & )
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{
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return *this;
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}
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DCOPObject* KPrPolygonObject::dcopObject()
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{
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if ( !dcop )
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dcop = new KPrPolygonObjectIface( this );
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return dcop;
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}
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bool KPrPolygonObject::saveOasisObjectAttributes( KPOasisSaveContext &sc ) const
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{
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sc.xmlWriter.addAttribute( "draw:corners", cornersValue );
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sc.xmlWriter.addAttribute( "draw:concave", checkConcavePolygon ? "true" : "false" );
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if ( checkConcavePolygon )
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{
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sc.xmlWriter.addAttribute( "draw:sharpness", TQString( "%1%").tqarg( sharpnessValue ) );
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}
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return true;
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}
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const char * KPrPolygonObject::getOasisElementName() const
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{
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return "draw:regular-polygon";
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}
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TQDomDocumentFragment KPrPolygonObject::save( TQDomDocument& doc, double offset )
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{
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TQDomDocumentFragment fragment = KPr2DObject::save( doc, offset );
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TQDomElement elemSettings = doc.createElement( "SETTINGS" );
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elemSettings.setAttribute( "checkConcavePolygon", static_cast<int>( checkConcavePolygon ) );
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elemSettings.setAttribute( "cornersValue", cornersValue );
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elemSettings.setAttribute( "sharpnessValue", sharpnessValue );
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fragment.appendChild( elemSettings );
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if ( !points.isNull() ) {
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TQDomElement elemPoints = doc.createElement( "POINTS" );
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KoPointArray::ConstIterator it;
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for ( it = points.begin(); it != points.end(); ++it ) {
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TQDomElement elemPoint = doc.createElement( "Point" );
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KoPoint point = (*it);
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elemPoint.setAttribute( "point_x", point.x() );
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elemPoint.setAttribute( "point_y", point.y() );
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elemPoints.appendChild( elemPoint );
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}
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fragment.appendChild( elemPoints );
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}
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return fragment;
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}
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void KPrPolygonObject::loadOasis( const TQDomElement &element, KoOasisContext & context, KPrLoadingInfo *info )
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{
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kdDebug()<<"void KPrPolygonObject::loadOasis( const TQDomElement &element )***********\n";
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KPr2DObject::loadOasis( element,context, info );
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cornersValue = element.attributeNS( KoXmlNS::draw, "corners", TQString() ).toInt();
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checkConcavePolygon = element.attributeNS( KoXmlNS::draw, "concave", TQString() ) == "true";
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sharpnessValue = 0;
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if ( checkConcavePolygon )
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{
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sharpnessValue = element.attributeNS( KoXmlNS::draw, "sharpness", TQString() ).remove( '%').toInt();
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}
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drawPolygon();
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}
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double KPrPolygonObject::load( const TQDomElement &element )
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{
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double offset=KPr2DObject::load( element );
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TQDomElement e = element.namedItem( "SETTINGS" ).toElement();
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if ( !e.isNull() ) {
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bool _checkConcavePolygon = false;
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int _cornersValue = 3;
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int _sharpnessValue = 0;
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if ( e.hasAttribute( "checkConcavePolygon" ) )
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_checkConcavePolygon = static_cast<bool>( e.attribute( "checkConcavePolygon" ).toInt() );
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if ( e.hasAttribute( "cornersValue" ) )
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_cornersValue = e.attribute( "cornersValue" ).toInt();
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if ( e.hasAttribute( "sharpnessValue" ) )
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_sharpnessValue = e.attribute( "sharpnessValue" ).toInt();
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checkConcavePolygon = _checkConcavePolygon;
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cornersValue = _cornersValue;
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sharpnessValue = _sharpnessValue;
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}
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e = element.namedItem( "POINTS" ).toElement();
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if ( !e.isNull() ) {
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TQDomElement elemPoint = e.firstChild().toElement();
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unsigned int index = 0;
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while ( !elemPoint.isNull() ) {
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if ( elemPoint.tagName() == "Point" ) {
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double tmpX = 0;
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double tmpY = 0;
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if( elemPoint.hasAttribute( "point_x" ) )
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tmpX = elemPoint.attribute( "point_x" ).toDouble();
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if( elemPoint.hasAttribute( "point_y" ) )
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tmpY = elemPoint.attribute( "point_y" ).toDouble();
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points.putPoints( index, 1, tmpX,tmpY );
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}
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elemPoint = elemPoint.nextSibling().toElement();
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++index;
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}
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}
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return offset;
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}
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void KPrPolygonObject::setSize( double _width, double _height )
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{
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KoSize origSize( ext );
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KPrObject::setSize( _width, _height );
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double fx = ext.width() / origSize.width();
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double fy = ext.height() / origSize.height();
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updatePoints( fx, fy );
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}
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void KPrPolygonObject::updatePoints( double _fx, double _fy )
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{
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int index = 0;
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KoPointArray tmpPoints;
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KoPointArray::ConstIterator it;
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for ( it = points.begin(); it != points.end(); ++it ) {
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KoPoint point = (*it);
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double tmpX = point.x() * _fx;
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double tmpY = point.y() * _fy;
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tmpPoints.putPoints( index, 1, tmpX,tmpY );
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++index;
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}
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points = tmpPoints;
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}
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void KPrPolygonObject::paint( TQPainter* _painter,KoTextZoomHandler*_zoomHandler,
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int /* pageNum */, bool drawingShadow, bool drawContour )
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{
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int _w = ( pen.style() == TQt::NoPen ) ? 1 : pen.width();//pen.width();
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if ( drawContour ) {
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TQPointArray pointArray2 = points.zoomPointArray( _zoomHandler );
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TQPen pen3( TQt::black, 1, TQt::DotLine );
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_painter->setPen( pen3 );
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_painter->setRasterOp( TQt::NotXorROP );
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_painter->drawPolygon( pointArray2 );
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return;
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}
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TQPointArray pointArray = points.zoomPointArray( _zoomHandler, _w );
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TQPen pen2 = pen.zoomedPen( _zoomHandler );
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if ( drawingShadow || getFillType() == FT_BRUSH || !gradient ) {
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_painter->setPen( pen2 );
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_painter->setBrush( getBrush() );
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_painter->drawPolygon( pointArray );
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}
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else {
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TQSize size( _zoomHandler->zoomSize( ext ) );
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if ( m_redrawGradientPix || gradient->size() != size )
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{
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m_redrawGradientPix = false;
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gradient->setSize( size );
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TQRegion clipregion( pointArray );
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m_gradientPix.resize( size );
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m_gradientPix.fill( TQt::white );
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TQPainter p;
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p.begin( &m_gradientPix );
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p.setClipRegion( clipregion );
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p.drawPixmap( 0, 0, gradient->pixmap() );
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p.end();
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m_gradientPix.setMask( m_gradientPix.createHeuristicMask() );
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}
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TQRect _rect = pointArray.boundingRect();
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_painter->drawPixmap( 0, 0, m_gradientPix, 0, 0, _rect.width(), _rect.height() );
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_painter->setPen( pen2 );
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_painter->setBrush( TQt::NoBrush );
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_painter->drawPolygon( pointArray );
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}
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}
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void KPrPolygonObject::drawPolygon()
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{
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kdDebug()<<"void KPrPolygonObject::drawPolygon()***********\n";
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KoRect _rect( 0, 0, ext.width(), ext.height() );
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double angle = 2 * M_PI / cornersValue;
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double diameter = static_cast<double>( TQMAX( _rect.width(), _rect.height() ) );
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double radius = diameter * 0.5;
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KoPointArray _points( checkConcavePolygon ? cornersValue * 2 : cornersValue );
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_points.setPoint( 0, 0, tqRound( -radius ) );
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double xmin = 0;
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double ymin = tqRound( -radius );
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if ( checkConcavePolygon ) {
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angle = angle / 2.0;
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double a = angle;
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double r = radius - ( sharpnessValue / 100.0 * radius );
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for ( int i = 1; i < cornersValue * 2; ++i ) {
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double xp, yp;
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if ( i % 2 ) {
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xp = r * sin( a );
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yp = -r * cos( a );
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}
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else {
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xp = radius * sin( a );
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yp = -radius * cos( a );
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}
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a += angle;
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_points.setPoint( i, xp, yp );
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if (xp < xmin)
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xmin = xp;
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if (yp < ymin)
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ymin = yp;
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}
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}
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else {
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double a = angle;
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for ( int i = 1; i < cornersValue; ++i ) {
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double xp = radius * sin( a );
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double yp = -radius * cos( a );
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a += angle;
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_points.setPoint( i, xp, yp );
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if (xp < xmin)
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xmin = xp;
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if (yp < ymin)
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ymin = yp;
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}
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}
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// calculate the points as offsets to 0,0
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KoRect _changRect = _points.boundingRect();
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double fx = _rect.width() / _changRect.width();
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double fy = _rect.height() / _changRect.height();
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int _index = 0;
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KoPointArray tmpPoints;
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KoPointArray::ConstIterator it;
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for ( it = _points.begin(); it != _points.end(); ++it ) {
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KoPoint point = (*it);
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double tmpX = ( point.x() - xmin) * fx;
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double tmpY = ( point.y() - ymin) * fy;
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tmpPoints.putPoints( _index, 1, tmpX,tmpY );
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++_index;
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}
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points = tmpPoints;
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if ( getFillType() == FT_GRADIENT && gradient )
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m_redrawGradientPix = true;
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}
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void KPrPolygonObject::flip( bool horizontal )
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{
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KPr2DObject::flip( horizontal );
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// flip the points
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KoPointArray tmpPoints;
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int index = 0;
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if ( ! horizontal )
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{
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KoPointArray::ConstIterator it;
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double horiz = getSize().height()/2;
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for ( it = points.begin(); it != points.end(); ++it ) {
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KoPoint point = (*it);
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if ( point.y()> horiz )
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tmpPoints.putPoints( index, 1, point.x(),point.y()- 2*(point.y()-horiz) );
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else
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tmpPoints.putPoints( index, 1, point.x(),point.y()+ 2*(horiz - point.y()) );
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++index;
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}
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}
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else
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{
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KoPointArray::ConstIterator it;
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double vert = getSize().width()/2;
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for ( it = points.begin(); it != points.end(); ++it ) {
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KoPoint point = (*it);
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if ( point.x()> vert )
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tmpPoints.putPoints( index, 1, point.x()- 2*(point.x()-vert), point.y() );
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else
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tmpPoints.putPoints( index, 1, point.x()+ 2*(vert - point.x()),point.y() );
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++index;
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}
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}
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points = tmpPoints;
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}
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KoSize KPrPolygonObject::getRealSize() const {
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KoSize size( ext );
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KoPoint realOrig( orig );
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KoPointArray p( points );
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getRealSizeAndOrigFromPoints( p, angle, size, realOrig );
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return size;
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}
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KoPoint KPrPolygonObject::getRealOrig() const {
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KoSize size( ext );
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KoPoint realOrig( orig );
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KoPointArray p( points );
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getRealSizeAndOrigFromPoints( p, angle, size, realOrig );
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return realOrig;
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}
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