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498 lines
13 KiB
498 lines
13 KiB
/* This file is part of the KDE project
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Copyright (C) 2004 Peter Simonsson <psn@linux.se>,
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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 "kiviopolylineconnector.h"
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#include <kdebug.h>
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#include <KoZoomHandler.h>
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#include <KoSize.h>
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#include "kivio_line_style.h"
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#include "kivio_painter.h"
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#include "kivio_intra_stencil_data.h"
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#include "kivio_connector_point.h"
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#include "kivio_custom_drag_data.h"
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#include "tkmath.h"
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#include "kivio_page.h"
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#include "kivio_layer.h"
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#include "kivio_common.h"
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namespace Kivio {
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PolyLineConnector::PolyLineConnector()
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: Kivio1DStencil()
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{
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m_startArrow = new KivioArrowHead();
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m_endArrow = new KivioArrowHead();
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m_needsWidth = false;
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m_needsText = false; // FIXME add text support
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m_pCanProtect->clearBit(kpAspect);
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m_pCanProtect->clearBit(kpWidth);
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m_pCanProtect->clearBit(kpHeight);
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m_pCanProtect->clearBit(kpX);
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m_pCanProtect->clearBit(kpY);
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// This is a stencil of type connector
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setType(kstConnector);
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}
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PolyLineConnector::~PolyLineConnector()
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{
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delete m_startArrow;
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delete m_endArrow;
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}
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KivioStencil* PolyLineConnector::duplicate()
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{
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PolyLineConnector* connector = new PolyLineConnector();
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copyBasicInto(connector);
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connector->m_points = m_points;
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// Copy the arrow head information
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connector->setStartAHType( m_startArrow->type() );
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connector->setStartAHWidth( m_startArrow->width() );
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connector->setStartAHLength( m_startArrow->length() );
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connector->setEndAHType( m_endArrow->type() );
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connector->setEndAHWidth( m_endArrow->width() );
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connector->setEndAHLength( m_endArrow->length() );
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return connector;
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}
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bool PolyLineConnector::loadCustom(const TQDomElement& e)
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{
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TQDomNode node = e.firstChild();
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TQString nodeName;
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m_points.clear();
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while(!node.isNull()) {
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nodeName = node.nodeName();
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if(nodeName == "KivioArrowHeads") {
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loadArrowHeads(node.toElement());
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} else if(nodeName == "KivioGeometryPoints") {
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TQDomNode pointsNode = node.firstChild();
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TQDomElement el;
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while(!pointsNode.isNull()) {
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if(pointsNode.nodeName() == "KivioPoint") {
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el = pointsNode.toElement();
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KoPoint p;
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p.setX(XmlReadFloat(el, "x", 1.0f));
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p.setY(XmlReadFloat(el, "y", 1.0f));
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addPoint(p);
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}
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pointsNode = pointsNode.nextSibling();
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}
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}
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node = node.nextSibling();
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}
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return true;
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}
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bool PolyLineConnector::saveCustom(TQDomElement& e, TQDomDocument& doc)
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{
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e.appendChild(saveArrowHeads(doc));
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TQDomElement pointsElement = doc.createElement("KivioGeometryPoints");
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for(TQValueList<KoPoint>::iterator it = m_points.begin(); it != m_points.end(); ++it) {
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KoPoint p = (*it);
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TQDomElement el = doc.createElement("KivioPoint");
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XmlWriteFloat(el, "x", p.x());
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XmlWriteFloat(el, "y", p.y());
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pointsElement.appendChild(el);
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}
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e.appendChild(pointsElement);
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return true;
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}
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KivioCollisionType PolyLineConnector::checkForCollision(KoPoint* p, double threshold)
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{
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unsigned int i = 0;
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KoPoint point;
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double px = p->x();
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double py = p->y();
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uint count = m_points.count();
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while(i < count) {
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point = m_points[i];
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if(px >= point.x() - threshold && px <= point.x() + threshold &&
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py >= point.y() - threshold && py <= point.y() + threshold)
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{
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return static_cast<KivioCollisionType>(i + kctCustom + 1);
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}
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i++;
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}
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i = 0;
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count--; // As we need current + 1;
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while(i < count) {
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point = m_points[i];
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if(collisionLine(point.x(), point.y(),
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m_points[i + 1].x(), m_points[i + 1].y(), px, py, threshold))
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{
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return kctBody;
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}
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i++;
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}
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return kctNone;
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}
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void PolyLineConnector::paint(KivioIntraStencilData* data)
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{
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if(m_points.count() < 2) {
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kdDebug(43000) << "ARGH! We're missing points in this connector!" << endl;
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return;
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}
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KoZoomHandler* zoom = data->zoomHandler;
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KivioPainter* painter = data->painter;
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painter->setLineStyle(m_pLineStyle);
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painter->setLineWidth(zoom->zoomItY(m_pLineStyle->width()));
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TQPointArray pa(m_points.count());
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TQValueList<KoPoint>::iterator it;
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int i = 0;
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for(it = m_points.begin(); it != m_points.end(); ++it) {
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pa.setPoint(i, zoom->zoomPoint(*it));
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i++;
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}
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KoPoint startVec = m_points[1] - m_points[0];
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KoPoint endVec = m_points.last() - m_points[m_points.count() - 2];
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double startLen = startVec.manhattanLength();
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double endLen = endVec.manhattanLength();
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if(startLen) {
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startVec.setX(startVec.x() / startLen);
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startVec.setY(startVec.y() / startLen);
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TQPoint p = pa[0];
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p.setX(p.x() + tqRound(startVec.x() * zoom->zoomItX(m_startArrow->cut())));
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p.setY(p.y() + tqRound(startVec.y() * zoom->zoomItY(m_startArrow->cut())));
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}
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if(endLen) {
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endVec.setX(endVec.x() / endLen);
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endVec.setY(endVec.y() / endLen);
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TQPoint p = pa[m_points.count() - 1];
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p.setX(p.x() + tqRound(endVec.x() * zoom->zoomItX(m_endArrow->cut())));
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p.setY(p.y() + tqRound(endVec.y() * zoom->zoomItY(m_endArrow->cut())));
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}
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painter->drawPolyline(pa);
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painter->setBGColor(m_pFillStyle->color());
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if(startLen) {
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m_startArrow->paint(painter, m_points[0].x(), m_points[0].y(), -startVec.x(), -startVec.y(), zoom);
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}
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if(endLen) {
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m_endArrow->paint(painter, m_points.last().x(), m_points.last().y(), endVec.x(), endVec.y(), zoom);
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}
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}
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void PolyLineConnector::paintOutline(KivioIntraStencilData* data)
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{
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paint(data);
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}
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void PolyLineConnector::paintSelectionHandles( KivioIntraStencilData* data )
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{
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KivioPainter* painter = data->painter;
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KoZoomHandler* zoomHandler = data->zoomHandler;
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TQValueList<KoPoint>::Iterator it;
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int x, y, flag;
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x = y = flag = 0;
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for(it = m_points.begin(); it != m_points.end(); ++it) {
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x = zoomHandler->zoomItX((*it).x());
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y = zoomHandler->zoomItY((*it).y());
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if((*it) == m_pEnd->position()) {
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flag = ((m_pEnd->target()) ? KivioPainter::cpfConnected : 0) | KivioPainter::cpfEnd;
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} else if((*it) == m_pStart->position()) {
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flag = ((m_pStart->target()) ? KivioPainter::cpfConnected : 0) | KivioPainter::cpfStart;
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} else {
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flag = 0;
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}
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painter->drawHandle(x, y, flag);
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}
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}
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void PolyLineConnector::addPoint(const KoPoint& p)
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{
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if(m_points.count() == 0) {
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m_pStart->setPosition(p.x(), p.y(), false);
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m_pStart->disconnect();
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} else {
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m_pEnd->setPosition(p.x(), p.y(), false);
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m_pEnd->disconnect();
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}
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m_points.append(p);
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}
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void PolyLineConnector::movePoint(unsigned int index, double xOffset, double yOffset)
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{
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if(index >= m_points.count()) {
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return;
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}
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KoPoint p(xOffset, yOffset);
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m_points[index] += p;
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if(index == (m_points.count() - 1)) {
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m_pEnd->setPosition(m_points[index].x(), m_points[index].y(), false);
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m_pEnd->disconnect();
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} else if(index == 0) {
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m_pStart->setPosition(m_points[index].x(), m_points[index].y(), false);
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m_pStart->disconnect();
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}
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}
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void PolyLineConnector::movePointTo(unsigned int index, const KoPoint& p)
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{
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m_points[index] = p;
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if(index == (m_points.count() - 1)) {
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m_pEnd->setPosition(p.x(), p.y(), false);
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m_pEnd->disconnect();
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} else if(index == 0) {
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m_pStart->setPosition(p.x(), p.y(), false);
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m_pStart->disconnect();
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}
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}
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void PolyLineConnector::moveLastPointTo(const KoPoint& p)
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{
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movePointTo(m_points.count() - 1, p);
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}
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void PolyLineConnector::customDrag(KivioCustomDragData* data)
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{
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KoPoint pos(data->x, data->y);
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setCustomIDPoint(data->id, pos, data->page);
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}
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void PolyLineConnector::move(double xOffset, double yOffset)
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{
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for(unsigned int i = 0; i < m_points.count(); i++) {
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movePoint(i, xOffset, yOffset);
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}
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}
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double PolyLineConnector::x()
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{
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if(m_points.count() == 0) {
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return 0;
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}
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return rect().x();
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}
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void PolyLineConnector::setX(double newX)
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{
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double dx = newX - x();
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move(dx, 0);
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}
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double PolyLineConnector::y()
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{
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if(m_points.count() == 0) {
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return 0;
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}
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return rect().y();
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}
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void PolyLineConnector::setY(double newY)
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{
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double dy = newY - y();
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move(0, dy);
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}
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void PolyLineConnector::checkForConnection(KivioConnectorPoint* cp, KivioPage* page)
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{
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if(cp->connectable()) {
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KivioLayer* currentLayer = page->curLayer();
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KivioLayer* layer = page->firstLayer();
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bool found = false;
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while(layer && !found) {
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if((layer != currentLayer) && (!layer->connectable() || !layer->visible())) {
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layer = page->nextLayer();
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continue;
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}
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if(layer->connectPointToTarget(cp, 8.0f)) {
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found = true;
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}
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layer = page->nextLayer();
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}
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if(!found) {
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cp->disconnect();
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}
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}
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}
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void PolyLineConnector::updateConnectorPoints(KivioConnectorPoint* cp, double /*oldX*/, double /*oldY*/)
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{
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if(cp == m_pStart) {
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m_points[0] = m_pStart->position();
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} else if(cp == m_pEnd) {
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m_points[m_points.count() - 1] = m_pEnd->position();
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}
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}
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KoRect PolyLineConnector::rect()
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{
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KoPoint p = m_points.first();
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KoPoint topLeft(p.x(), p.y()), bottomRight;
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TQValueList<KoPoint>::iterator it;
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TQValueList<KoPoint>::iterator itEnd = m_points.end();
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for(it = m_points.begin(); it != itEnd; ++it) {
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p = (*it);
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topLeft.setX(TQMIN(p.x(), topLeft.x()));
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topLeft.setY(TQMIN(p.y(), topLeft.y()));
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bottomRight.setX(TQMAX(p.x(), bottomRight.x()));
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bottomRight.setY(TQMAX(p.y(), bottomRight.y()));
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}
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KoRect rect;
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rect.moveTopLeft(topLeft);
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rect.setWidth(bottomRight.x() - topLeft.x());
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rect.setHeight(bottomRight.y() - topLeft.y());
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return rect;
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}
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bool PolyLineConnector::isInRect(const KoRect& rect)
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{
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TQValueList<KoPoint>::Iterator it;
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bool retVal = true;
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for(it = m_points.begin(); it != m_points.end(); ++it) {
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retVal = retVal && rect.tqcontains((*it));
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}
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return retVal;
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}
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bool PolyLineConnector::loadArrowHeads(const TQDomElement& e)
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{
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bool first = true;
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TQDomNode node = e.firstChild();
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while(!node.isNull()) {
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if(node.nodeName() == "KivioArrowHead") {
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if(first) {
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m_startArrow->loadXML(node.toElement());
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first = false;
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} else {
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m_endArrow->loadXML(node.toElement());
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}
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}
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node = node.nextSibling();
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}
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return true;
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}
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TQDomElement PolyLineConnector::saveArrowHeads(TQDomDocument& doc)
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{
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TQDomElement e = doc.createElement("KivioArrowHeads");
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e.appendChild( m_startArrow->saveXML(doc) );
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e.appendChild( m_endArrow->saveXML(doc) );
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return e;
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}
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void PolyLineConnector::removePoint(unsigned int index)
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{
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if(index >= m_points.count()) {
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return;
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}
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m_points.remove(m_points.at(index));
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}
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void PolyLineConnector::removeLastPoint()
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{
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removePoint(m_points.count() - 1);
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}
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void PolyLineConnector::setCustomIDPoint(int customID, const KoPoint& point, KivioPage* page)
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{
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int index = customID - (kctCustom + 1);
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if((index < 0) || index >= (int)m_points.count()) {
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kdDebug(43000) << "PolyLineConnector::setCustomIDPoint: Index out of range! Index = " << index << endl;
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return;
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}
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movePointTo(index, point);
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KivioConnectorPoint* cp;
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if(index == 0) {
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cp = m_pStart;
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} else if(index == ((int)m_points.count() - 1)) {
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cp = m_pEnd;
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} else {
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return;
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}
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checkForConnection(cp, page);
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}
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KoPoint PolyLineConnector::customIDPoint(int customID)
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{
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int index = customID - (kctCustom + 1);
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if((index < 0) || index >= (int)m_points.count()) {
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kdDebug(43000) << "PolyLineConnector::customIDPoint: Index out of range! Index = " << index << endl;
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return KoPoint();
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}
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return m_points[index];
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}
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}
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