f9f724fcab
--HG-- branch : develop
142 lines
6.0 KiB
C++
142 lines
6.0 KiB
C++
/****************************************************************************
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**
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** Copyright (C) 2013 Valentina project All Rights Reserved.
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**
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** This file is part of Valentina.
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**
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** Tox is free software: you can redistribute it and/or modify
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** it under the terms of the GNU General Public License as published by
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** the Free Software Foundation, either version 3 of the License, or
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** (at your option) any later version.
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**
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** Valentina 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
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** GNU General Public License for more details.
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**
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** You should have received a copy of the GNU General Public License
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** along with Valentina. If not, see <http://www.gnu.org/licenses/>.
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**
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****************************************************************************/
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#include "vcontrolpointspline.h"
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VControlPointSpline::VControlPointSpline(const qint32 &indexSpline, SplinePoint::Position position,
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const QPointF &controlPoint, const QPointF &splinePoint,
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QGraphicsItem *parent):QGraphicsEllipseItem(parent),
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radius(toPixel(1.5)), controlLine(0), indexSpline(indexSpline), position(position){
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//create circle
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QRectF rec = QRectF(0, 0, radius*2, radius*2);
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rec.translate(-rec.center().x(), -rec.center().y());
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this->setRect(rec);
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this->setPen(QPen(Qt::black, widthHairLine));
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this->setBrush(QBrush(Qt::NoBrush));
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this->setFlag(QGraphicsItem::ItemIsSelectable, true);
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this->setFlag(QGraphicsItem::ItemIsMovable, true);
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this->setFlag(QGraphicsItem::ItemSendsGeometryChanges, true);
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this->setAcceptHoverEvents(true);
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this->setPos(controlPoint);
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//Лінія, що з'єднує дві точки
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QPointF p1, p2;
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LineIntersectCircle(QPointF(), radius, QLineF( QPointF(), splinePoint-controlPoint), p1, p2);
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controlLine = new QGraphicsLineItem(QLineF(splinePoint-controlPoint, p1), this);
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controlLine->setPen(QPen(Qt::red, widthHairLine));
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controlLine->setFlag(QGraphicsItem::ItemStacksBehindParent, true);
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}
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void VControlPointSpline::hoverMoveEvent(QGraphicsSceneHoverEvent *event){
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Q_UNUSED(event);
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this->setPen(QPen(Qt::black, widthMainLine));
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}
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void VControlPointSpline::hoverLeaveEvent(QGraphicsSceneHoverEvent *event){
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Q_UNUSED(event);
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this->setPen(QPen(Qt::black, widthHairLine));
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}
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QVariant VControlPointSpline::itemChange(QGraphicsItem::GraphicsItemChange change, const QVariant &value){
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if (change == ItemPositionChange && scene()) {
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// value - new position.
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QPointF newPos = value.toPointF();
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emit ControlPointChangePosition(indexSpline, position, newPos);
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}
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return QGraphicsItem::itemChange(change, value);
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}
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qint32 VControlPointSpline::LineIntersectCircle(QPointF center, qreal radius, QLineF line, QPointF &p1,
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QPointF &p2) const{
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const qreal eps = 1e-8;
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//коефіцієнти для рівняння відрізку
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qreal a = line.p2().y() - line.p1().y();
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qreal b = line.p1().x() - line.p2().x();
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// В даному випадку не використовується.
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//qreal c = - a * line.p1().x() - b * line.p1().y();
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// проекция центра окружности на прямую
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QPointF p = ClosestPoint (line, center);
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// сколько всего решений?
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qint32 flag = 0;
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qreal d = QLineF (center, p).length();
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if (qAbs (d - radius) <= eps){
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flag = 1;
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} else {
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if (radius > d){
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flag = 2;
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} else {
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return 0;
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}
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}
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// находим расстояние от проекции до точек пересечения
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qreal k = sqrt (radius * radius - d * d);
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qreal t = QLineF (QPointF (0, 0), QPointF (b, - a)).length();
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// добавляем к проекции векторы направленные к точкам пеерсечения
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p1 = addVector (p, QPointF (0, 0), QPointF (- b, a), k / t);
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p2 = addVector (p, QPointF (0, 0), QPointF (b, - a), k / t);
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return flag;
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}
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QPointF VControlPointSpline::ClosestPoint(QLineF line, QPointF p) const{
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QLineF lineP2pointFrom = QLineF(line.p2(), p);
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qreal angle = 180-line.angleTo(lineP2pointFrom)-90;
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QLineF pointFromlineP2 = QLineF(p, line.p2());
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pointFromlineP2.setAngle(pointFromlineP2.angle()+angle);
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QPointF point;
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QLineF::IntersectType type = pointFromlineP2.intersect(line,&point);
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if ( type == QLineF::BoundedIntersection ){
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return point;
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} else{
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if ( type == QLineF::NoIntersection || type == QLineF::UnboundedIntersection ){
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Q_ASSERT_X(type != QLineF::BoundedIntersection, Q_FUNC_INFO, "Немає точки перетину.");
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return point;
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}
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}
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return point;
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}
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QPointF VControlPointSpline::addVector(QPointF p, QPointF p1, QPointF p2, qreal k) const{
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return QPointF (p.x() + (p2.x() - p1.x()) * k, p.y() + (p2.y() - p1.y()) * k);
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}
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void VControlPointSpline::RefreshLine(const qint32 &indexSpline, SplinePoint::Position pos,
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const QPointF &controlPoint, const QPointF &splinePoint){
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if(this->indexSpline == indexSpline && this->position == pos){
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QPointF p1, p2;
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LineIntersectCircle(QPointF(), radius, QLineF( QPointF(), splinePoint-controlPoint), p1, p2);
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controlLine->setLine(QLineF(splinePoint-controlPoint, p1));
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}
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}
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void VControlPointSpline::setEnabledPoint(bool enable){
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if(enable == true){
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this->setPen(QPen(Qt::black, widthHairLine));
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this->setFlag(QGraphicsItem::ItemIsSelectable, true);
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this->setFlag(QGraphicsItem::ItemIsMovable, true);
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this->setAcceptHoverEvents(true);
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} else {
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this->setPen(QPen(Qt::gray, widthHairLine));
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this->setFlag(QGraphicsItem::ItemIsSelectable, false);
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this->setFlag(QGraphicsItem::ItemIsMovable, false);
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this->setAcceptHoverEvents(false);
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}
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}
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