KoShape.cpp 39.7 KB
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/* This file is part of the KDE project
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   Copyright (C) 2006 Casper Boemann Rasmussen <cbr@boemann.dk>
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   Copyright (C) 2006-2009 Thomas Zander <zander@kde.org>
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   Copyright (C) 2006-2008 Thorsten Zachmann <zachmann@kde.org>
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   Copyright (C) 2007-2009 Jan Hambrecht <jaham@gmx.net>
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   This library is free software; you can redistribute it and/or
   modify it under the terms of the GNU Library General Public
   License as published by the Free Software Foundation; either
   version 2 of the License, or (at your option) any later version.

   This library is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
   Library General Public License for more details.

   You should have received a copy of the GNU Library General Public License
   along with this library; see the file COPYING.LIB.  If not, write to
   the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
 * Boston, MA 02110-1301, USA.
*/

#include "KoShape.h"
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#include "KoShape_p.h"
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#include "KoShapeContainer.h"
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#include "KoShapeLayer.h"
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#include "KoShapeContainerModel.h"
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#include "KoSelection.h"
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#include "KoPointerEvent.h"
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#include "KoInsets.h"
#include "KoShapeBorderModel.h"
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#include "KoShapeBackground.h"
#include "KoColorBackground.h"
#include "KoGradientBackground.h"
#include "KoPatternBackground.h"
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#include "KoShapeManager.h"
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#include "KoShapeUserData.h"
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#include "KoShapeApplicationData.h"
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#include "KoShapeSavingContext.h"
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#include "KoShapeLoadingContext.h"
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#include "KoViewConverter.h"
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#include "KoLineBorder.h"
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#include "ShapeDeleter_p.h"
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#include "KoShapeShadow.h"
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#include "KoEventAction.h"
#include "KoEventActionRegistry.h"
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#include "KoOdfWorkaround.h"
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#include "KoFilterEffect.h"
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#include <KoXmlReader.h>
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#include <KoXmlWriter.h>
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#include <KoXmlNS.h>
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#include <KoGenStyle.h>
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#include <KoGenStyles.h>
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#include <KoUnit.h>
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#include <KoOdfStylesReader.h>
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#include <KoOdfGraphicStyles.h>
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#include <KoOdfLoadingContext.h>
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#include <QPainter>
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#include <QVariant>
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#include <QPainterPath>
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#include <QList>
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#include <QMap>
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#include <QByteArray>
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#include <kdebug.h>

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#include <limits>

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KoShapePrivate::KoShapePrivate(KoShape *shape)
    : size(50, 50),
    parent(0),
    userData(0),
    appData(0),
    fill(0),
    border(0),
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    q(shape),
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    shadow(0),
    zIndex(0),
    visible(true),
    printable(true),
    geometryProtected(false),
    keepAspect(false),
    selectable(true),
    detectCollision(false),
    protectContent(false)
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{
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    connectors.append(QPointF(0.5, 0.0));
    connectors.append(QPointF(1.0, 0.5));
    connectors.append(QPointF(0.5, 1.0));
    connectors.append(QPointF(0.0, 0.5));
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}
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KoShapePrivate::~KoShapePrivate()
{
    if (parent)
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        parent->removeChild(q);
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    foreach(KoShapeManager *manager, shapeManagers) {
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        manager->remove(q);
        manager->removeAdditional(q);
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    }
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    delete userData;
    delete appData;
    if (border && ! border->removeUser())
        delete border;
    if (shadow && ! shadow->removeUser())
        delete shadow;
    if (fill && ! fill->removeUser())
        delete fill;
    qDeleteAll(eventActions);
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    qDeleteAll(filterEffects);
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}
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void KoShapePrivate::shapeChanged(KoShape::ChangeType type)
{
    if (parent)
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        parent->model()->childChanged(q, type);
    q->shapeChanged(type);
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    foreach(KoShape * shape, dependees)
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        shape->shapeChanged(type, q);
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}
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void KoShapePrivate::updateBorder()
{
    if (border == 0)
        return;
    KoInsets insets;
    border->borderInsets(q, insets);
    QSizeF inner = q->size();
    // update left
    q->update(QRectF(-insets.left, -insets.top, insets.left,
                inner.height() + insets.top + insets.bottom));
    // update top
    q->update(QRectF(-insets.left, -insets.top,
                inner.width() + insets.left + insets.right, insets.top));
    // update right
    q->update(QRectF(inner.width(), -insets.top, insets.right,
                inner.height() + insets.top + insets.bottom));
    // update bottom
    q->update(QRectF(-insets.left, inner.height(),
                inner.width() + insets.left + insets.right, insets.bottom));
}
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// ======== KoShape
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KoShape::KoShape()
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        : d_ptr(new KoShapePrivate(this))
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{
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    notifyChanged();
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}

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KoShape::KoShape(KoShapePrivate &dd)
    : d_ptr(&dd)
{
}

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KoShape::~KoShape()
{
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    Q_D(KoShape);
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    d->shapeChanged(Deleted);
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    delete d_ptr;
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}

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void KoShape::paintDecorations(QPainter &painter, const KoViewConverter &converter, const KoCanvasBase *canvas)
{
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    Q_UNUSED(painter);
    Q_UNUSED(converter);
    Q_UNUSED(canvas);
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    /* Since this code is not actually used (kivio is going to be the main user) lets disable instead of fix.
        if ( selected )
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        {
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            // draw connectors
            QPen pen( Qt::blue );
            pen.setWidth( 0 );
            painter.setPen( pen );
            painter.setBrush( Qt::NoBrush );
            for ( int i = 0; i < d->connectors.size(); ++i )
            {
                QPointF p = converter.documentToView(d->connectors[ i ]);
                painter.drawLine( QPointF( p.x() - 2, p.y() + 2 ), QPointF( p.x() + 2, p.y() - 2 ) );
                painter.drawLine( QPointF( p.x() + 2, p.y() + 2 ), QPointF( p.x() - 2, p.y() - 2 ) );
            }
        }*/
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}

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void KoShape::setScale(qreal sx, qreal sy)
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{
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    Q_D(KoShape);
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    QPointF pos = position();
    QMatrix scaleMatrix;
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    scaleMatrix.translate(pos.x(), pos.y());
    scaleMatrix.scale(sx, sy);
    scaleMatrix.translate(-pos.x(), -pos.y());
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    d->localMatrix = d->localMatrix * scaleMatrix;
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    notifyChanged();
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    d->shapeChanged(ScaleChanged);
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}

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void KoShape::rotate(qreal angle)
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{
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    Q_D(KoShape);
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    QPointF center = d->localMatrix.map(QPointF(0.5 * size().width(), 0.5 * size().height()));
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    QMatrix rotateMatrix;
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    rotateMatrix.translate(center.x(), center.y());
    rotateMatrix.rotate(angle);
    rotateMatrix.translate(-center.x(), -center.y());
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    d->localMatrix = d->localMatrix * rotateMatrix;
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    notifyChanged();
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    d->shapeChanged(RotationChanged);
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}

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void KoShape::setShear(qreal sx, qreal sy)
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{
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    Q_D(KoShape);
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    QPointF pos = position();
    QMatrix shearMatrix;
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    shearMatrix.translate(pos.x(), pos.y());
    shearMatrix.shear(sx, sy);
    shearMatrix.translate(-pos.x(), -pos.y());
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    d->localMatrix = d->localMatrix * shearMatrix;
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    notifyChanged();
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    d->shapeChanged(ShearChanged);
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}

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void KoShape::setSize(const QSizeF &newSize)
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{
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    Q_D(KoShape);
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    QSizeF oldSize(size());
    if (oldSize == newSize)
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        return;
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    QMatrix matrix;
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    oldSize.setHeight(qMax((qreal) 1E-4, oldSize.height())); // avoids devision by zero below
    oldSize.setWidth(qMax((qreal) 1E-4, oldSize.width()));
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    matrix.scale(newSize.width()/oldSize.width(), newSize.height()/oldSize.height());
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    KoGradientBackground * g = dynamic_cast<KoGradientBackground*>(d->fill);
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    if (g) {
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        g->setMatrix(g->matrix() * matrix);
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    }
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    KoLineBorder *l = dynamic_cast<KoLineBorder*>(d->border);
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    if (l && l->lineBrush().gradient()) {
        QBrush brush = l->lineBrush();
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        brush.setMatrix(brush.matrix() * matrix);
        l->setLineBrush(brush);
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    }
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    d->size = newSize;
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    notifyChanged();
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    d->shapeChanged(SizeChanged);
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}

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void KoShape::setPosition(const QPointF &newPosition)
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{
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    Q_D(KoShape);
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    QPointF currentPos = position();
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    if (newPosition == currentPos)
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        return;
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    QMatrix translateMatrix;
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    translateMatrix.translate(newPosition.x() - currentPos.x(), newPosition.y() - currentPos.y());
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    d->localMatrix = d->localMatrix * translateMatrix;

    notifyChanged();
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    d->shapeChanged(PositionChanged);
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}

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bool KoShape::hitTest(const QPointF &position) const
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{
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    Q_D(const KoShape);
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    if (d->parent && d->parent->childClipped(this) && !d->parent->hitTest(position))
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        return false;

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    QPointF point = absoluteTransformation(0).inverted().map(position);
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    QRectF bb(QPointF(), size());
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    if (d->border) {
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        KoInsets insets;
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        d->border->borderInsets(this, insets);
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        bb.adjust(-insets.left, -insets.top, insets.right, insets.bottom);
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    }
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    if (bb.contains(point))
        return true;

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    // if there is no shadow we can as well just leave
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    if (! d->shadow)
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        return false;
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    // the shadow has an offset to the shape, so we simply
    // check if the position minus the shadow offset hits the shape
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    point = absoluteTransformation(0).inverted().map(position - d->shadow->offset());
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    return bb.contains(point);
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}

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QRectF KoShape::boundingRect() const
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{
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    Q_D(const KoShape);
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    QRectF bb(QPointF(0, 0), size());
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    if (d->border) {
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        KoInsets insets;
        d->border->borderInsets(this, insets);
        bb.adjust(-insets.left, -insets.top, insets.right, insets.bottom);
    }
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    bb = absoluteTransformation(0).mapRect(bb);
    if (d->shadow) {
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        KoInsets insets;
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        d->shadow->insets(this, insets);
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        bb.adjust(-insets.left, -insets.top, insets.right, insets.bottom);
    }
    return bb;
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}

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QMatrix KoShape::absoluteTransformation(const KoViewConverter *converter) const
{
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    Q_D(const KoShape);
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    QMatrix matrix;
    // apply parents matrix to inherit any transformations done there.
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    KoShapeContainer * container = d->parent;
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    if (container) {
        if (container->childClipped(this))
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            matrix = container->absoluteTransformation(0);
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        else {
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            QSizeF containerSize = container->size();
            QPointF containerPos = container->absolutePosition() - QPointF(0.5 * containerSize.width(), 0.5 * containerSize.height());
            if (converter)
                containerPos = converter->documentToView(containerPos);
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            matrix.translate(containerPos.x(), containerPos.y());
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        }
    }

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    if (converter) {
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        QPointF pos = d->localMatrix.map(QPointF());
        QPointF trans = converter->documentToView(pos) - pos;
        matrix.translate(trans.x(), trans.y());
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    }
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    return d->localMatrix * matrix;
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}

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void KoShape::applyAbsoluteTransformation(const QMatrix &matrix)
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{
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    QMatrix globalMatrix = absoluteTransformation(0);
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    // the transformation is relative to the global coordinate system
    // but we want to change the local matrix, so convert the matrix
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    // to be relative to the local coordinate system
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    QMatrix transformMatrix = globalMatrix * matrix * globalMatrix.inverted();
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    applyTransformation(transformMatrix);
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}

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void KoShape::applyTransformation(const QMatrix &matrix)
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{
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    Q_D(KoShape);
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    d->localMatrix = matrix * d->localMatrix;
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    notifyChanged();
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    d->shapeChanged(GenericMatrixChange);
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}

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void KoShape::setTransformation(const QMatrix &matrix)
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{
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    Q_D(KoShape);
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    d->localMatrix = matrix;
    notifyChanged();
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    d->shapeChanged(GenericMatrixChange);
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}
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QMatrix KoShape::transformation() const
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{
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    Q_D(const KoShape);
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    return d->localMatrix;
}

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bool KoShape::compareShapeZIndex(KoShape *s1, KoShape *s2)
{
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    int diff = s1->zIndex() - s2->zIndex();
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    if (diff == 0) {
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        KoShape *s = s1->parent();
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        while (s) {
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            if (s == s2) // s1 is a child of s2
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                return false; // children are always on top of their parents.
            s = s->parent();
        }
        s = s2->parent();
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        while (s) {
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            if (s == s1) // s2 is a child of s1
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                return true;
            s = s->parent();
        }
    }
    return diff < 0;
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}

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void KoShape::setParent(KoShapeContainer *parent)
{
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    Q_D(KoShape);
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    if (d->parent == parent)
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        return;
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    KoShapeContainer *oldParent = d->parent;
    d->parent = 0; // avoids recursive removing
    if (oldParent)
        oldParent->removeChild(this);
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    if (parent && parent != this) {
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        d->parent = parent;
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        parent->addChild(this);
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    }
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    notifyChanged();
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    d->shapeChanged(ParentChanged);
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}

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int KoShape::zIndex() const
{
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    Q_D(const KoShape);
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    if (parent()) // we can't be under our parent...
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        return qMax((int) d->zIndex, parent()->zIndex());
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    return d->zIndex;
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}

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void KoShape::update() const
{
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    Q_D(const KoShape);
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    if (!d->shapeManagers.empty()) {
        QRectF rect(boundingRect());
        foreach(KoShapeManager * manager, d->shapeManagers)
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            manager->update(rect, this, true);
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    }
}

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void KoShape::update(const QRectF &shape) const
{
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    Q_D(const KoShape);
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    if (!d->shapeManagers.empty() && isVisible()) {
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        QRectF rect(absoluteTransformation(0).mapRect(shape));
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        foreach(KoShapeManager * manager, d->shapeManagers) {
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            manager->update(rect);
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        }
    }
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}

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const QPainterPath KoShape::outline() const
{
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    Q_D(const KoShape);
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    QPainterPath path;
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    path.addRect(QRectF(QPointF(0, 0), QSizeF(qMax(d->size.width(), qreal(0.0001)), qMax(d->size.height(), qreal(0.0001)))));
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    return path;
}

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QPointF KoShape::absolutePosition(KoFlake::Position anchor) const
{
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    QPointF point;
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    switch (anchor) {
    case KoFlake::TopLeftCorner: break;
    case KoFlake::TopRightCorner: point = QPointF(size().width(), 0.0); break;
    case KoFlake::BottomLeftCorner: point = QPointF(0.0, size().height()); break;
    case KoFlake::BottomRightCorner: point = QPointF(size().width(), size().height()); break;
    case KoFlake::CenteredPosition: point = QPointF(size().width() / 2.0, size().height() / 2.0); break;
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    }
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    return absoluteTransformation(0).map(point);
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}

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void KoShape::setAbsolutePosition(QPointF newPosition, KoFlake::Position anchor)
{
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    Q_D(KoShape);
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    QPointF currentAbsPosition = absolutePosition(anchor);
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    QPointF translate = newPosition - currentAbsPosition;
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    QMatrix translateMatrix;
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    translateMatrix.translate(translate.x(), translate.y());
    applyAbsoluteTransformation(translateMatrix);
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    notifyChanged();
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    d->shapeChanged(PositionChanged);
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}

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void KoShape::copySettings(const KoShape *shape)
{
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    Q_D(KoShape);
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    d->size = shape->size();
    d->connectors.clear();
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    foreach(const QPointF & point, shape->connectionPoints())
        addConnectionPoint(point);
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    d->zIndex = shape->zIndex();
    d->visible = shape->isVisible();
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    // Ensure printable is true by default
    if (!d->visible)
        d->printable = true;
    else
        d->printable = shape->isPrintable();
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    d->geometryProtected = shape->isGeometryProtected();
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    d->keepAspect = shape->keepAspectRatio();
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    d->localMatrix = shape->d_ptr->localMatrix;
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}

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void KoShape::notifyChanged()
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{
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    Q_D(KoShape);
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    foreach(KoShapeManager * manager, d->shapeManagers) {
        manager->notifyShapeChanged(this);
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    }
}

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void KoShape::setUserData(KoShapeUserData *userData)
{
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    Q_D(KoShape);
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    delete d->userData;
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    d->userData = userData;
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}

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KoShapeUserData *KoShape::userData() const
{
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    Q_D(const KoShape);
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    return d->userData;
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}

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void KoShape::setApplicationData(KoShapeApplicationData *appData)
{
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    Q_D(KoShape);
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    // appdata is deleted by the application.
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    d->appData = appData;
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}

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KoShapeApplicationData *KoShape::applicationData() const
{
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    Q_D(const KoShape);
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    return d->appData;
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}

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bool KoShape::hasTransparency()
{
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    Q_D(KoShape);
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    if (! d->fill)
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        return true;
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    else
        return d->fill->hasTransparency();
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}

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KoInsets KoShape::borderInsets() const
{
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    Q_D(const KoShape);
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    KoInsets answer;
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    if (d->border)
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        d->border->borderInsets(this, answer);
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    return answer;
}

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qreal KoShape::rotation() const
{
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    Q_D(const KoShape);
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    // try to extract the rotation angle out of the local matrix
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    // if it is a pure rotation matrix

    // check if the matrix has shearing mixed in
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    if (fabs(fabs(d->localMatrix.m12()) - fabs(d->localMatrix.m21())) > 1e-10)
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        return std::numeric_limits<qreal>::quiet_NaN();
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    // check if the matrix has scaling mixed in
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    if (fabs(d->localMatrix.m11() - d->localMatrix.m22()) > 1e-10)
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        return std::numeric_limits<qreal>::quiet_NaN();
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    // calculate the angle from the matrix elements
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    qreal angle = atan2(-d->localMatrix.m21(), d->localMatrix.m11()) * 180.0 / M_PI;
    if (angle < 0.0)
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        angle += 360.0;

    return angle;
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}

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QSizeF KoShape::size() const
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{
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    Q_D(const KoShape);
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    return d->size;
}

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QPointF KoShape::position() const
{
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    Q_D(const KoShape);
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    QPointF center(0.5*size().width(), 0.5*size().height());
    return d->localMatrix.map(center) - center;
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    //return d->localMatrix.map( QPointF(0,0) );
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}

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void KoShape::addConnectionPoint(const QPointF &point)
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{
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    Q_D(KoShape);
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    QSizeF s = size();
    // convert glue point from shape coordinates to factors of size
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    d->connectors.append(QPointF(point.x() / s.width(), point.y() / s.height()));
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}

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QList<QPointF> KoShape::connectionPoints() const
{
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    Q_D(const KoShape);
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    QList<QPointF> points;
    QSizeF s = size();
    // convert glue points to shape coordinates
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    foreach(const QPointF & cp, d->connectors)
        points.append(QPointF(s.width() * cp.x(), s.height() * cp.y()));
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    return points;
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}

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void KoShape::addEventAction(KoEventAction * action)
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{
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    Q_D(KoShape);
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    if (! d->eventActions.contains(action)) {
        d->eventActions.append(action);
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    }
}

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void KoShape::removeEventAction(KoEventAction * action)
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{
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    Q_D(KoShape);
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    if (d->eventActions.contains(action)) {
        d->eventActions.removeAll(action);
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    }
}

QList<KoEventAction *> KoShape::eventActions() const
{
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    Q_D(const KoShape);
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    return d->eventActions;
}

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void KoShape::setBackground(KoShapeBackground * fill)
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{
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    Q_D(KoShape);
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    if (d->fill)
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        d->fill->removeUser();
    d->fill = fill;
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    if (d->fill)
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        d->fill->addUser();
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    d->shapeChanged(BackgroundChanged);
    notifyChanged();
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}

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KoShapeBackground * KoShape::background() const
{
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    Q_D(const KoShape);
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    return d->fill;
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}

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void KoShape::setZIndex(int zIndex)
{
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    Q_D(KoShape);
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    notifyChanged();
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    d->zIndex = zIndex;
}

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void KoShape::setVisible(bool on)
{
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    Q_D(KoShape);
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    d->visible = on;
}

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bool KoShape::isVisible(bool recursive) const
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{
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    Q_D(const KoShape);
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    if (! recursive)
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        return d->visible;
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    if (recursive && ! d->visible)
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        return false;

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    KoShapeContainer * parentShape = parent();
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    while (parentShape) {
        if (! parentShape->isVisible())
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            return false;
        parentShape = parentShape->parent();
    }
    return true;
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}

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void KoShape::setPrintable(bool on)
{
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    Q_D(KoShape);
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    d->printable = on;
}
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bool KoShape::isPrintable() const
{
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    Q_D(const KoShape);
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    if (d->visible)
        return d->printable;
    else
        return false;
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}

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void KoShape::setSelectable(bool selectable)
{
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    Q_D(KoShape);
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    d->selectable = selectable;
}

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bool KoShape::isSelectable() const
{
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    Q_D(const KoShape);
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    return d->selectable;
}

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void KoShape::setGeometryProtected(bool on)
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{
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    Q_D(KoShape);
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    d->geometryProtected = on;
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}

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bool KoShape::isGeometryProtected() const
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{
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    Q_D(const KoShape);
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    return d->geometryProtected;
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}

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void KoShape::setContentProtected(bool protect)
{
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    Q_D(KoShape);
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    d->protectContent = protect;
}

bool KoShape::isContentProtected() const
{
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    Q_D(const KoShape);
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    return d->protectContent;
}

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KoShapeContainer *KoShape::parent() const
{
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    Q_D(const KoShape);
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    return d->parent;
}

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void KoShape::setKeepAspectRatio(bool keepAspect)
{
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    Q_D(KoShape);
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    d->keepAspect = keepAspect;
}

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bool KoShape::keepAspectRatio() const
{
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    Q_D(const KoShape);
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    return d->keepAspect;
}

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const QString &KoShape::shapeId() const
{
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    Q_D(const KoShape);
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    return d->shapeId;
}

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void KoShape::setShapeId(const QString &id)
{
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    Q_D(KoShape);
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    d->shapeId = id;
}

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void KoShape::setCollisionDetection(bool detect)
{
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    Q_D(KoShape);
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    d->detectCollision = detect;
}

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bool KoShape::collisionDetection()
{
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    Q_D(KoShape);
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    return d->detectCollision;
}

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void KoShape::addShapeManager(KoShapeManager * manager)