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/* This file is part of the KDE project
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Copyright (C) 1998, 1999 Torben Weis <weis@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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#ifndef __koChild_h__
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#define __koChild_h__
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#include <tqobject.h>
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#include <tqwmatrix.h>
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#include <koffice_export.h>
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/**
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* KoChild is an abstract base class that represents the tqgeometry
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* associated with an embedded document. In general it handles its position
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* relative to the embedded document's parent.
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*
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* In detail it handles size, matrix operations and can give you
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* a clip region. It can deal with scaling, rotation etc. because it
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* makes heavy usage of TQWMatrix.
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*
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* After applying the matrix, viewGeometry() applies zooming, but can be
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* reimplemented to also apply e.g. some translation by the application
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* (e.g. for centering the page).
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*
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* @see KoDocumentChild KoViewChild
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*/
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class KOFFICECORE_EXPORT KoChild : public TQObject
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{
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Q_OBJECT
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TQ_OBJECT
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public:
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/**
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* The gadget generally identifies where a child has been hit (generally
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* by the mouse pointer).
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* Based on this information different actions can be taken, for example
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* moving the child or opening a context menu. NoGadget means that
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* this child has not been hit.
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*
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* @see #gadgetHitTest
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*/
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enum Gadget { NoGadget, TopLeft, TopMid, TopRight, MidLeft, MidRight,
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BottomLeft, BottomMid, BottomRight, Move };
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KoChild( TQObject *parent = 0, const char *name = 0 );
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virtual ~KoChild();
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/**
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* Sets a new tqgeometry for this child document.
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* Use noEmit = true if you do not want the 'changed'-signal to be emitted
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*/
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void setGeometry( const TQRect &rect, bool noEmit = false );
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/**
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* @return the rectangle that would be used to display this
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* child document if the child is not rotated or
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* subject to some other geometric transformation.
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* The rectangle is in the coordinate system of the parent,
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* using unzoomed coordinates in points.
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*
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* @see #setGeometry
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*/
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TQRect tqgeometry() const;
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/**
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* @return the region of this child part relative to the
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* coordinate system of the parent.
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* The region is transformed with the passed
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* matrix.
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*/
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virtual TQRegion region( const TQWMatrix& = TQWMatrix() ) const;
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/**
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* @return the polygon which surrounds the child part. The points
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* are in coordinates of the parent.
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* The points are transformed with the
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* passed matrix.
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*/
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virtual TQPointArray pointArray( const TQWMatrix &matrix = TQWMatrix() ) const;
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/**
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* Tests whether the part contains a certain point. The point is
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* in the coordinate system of the parent.
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*/
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//virtual bool contains( const TQPoint& ) const;
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/**
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* @return the effective bounding rect after all transformations.
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* The coordinates of the rectangle are in the coordinate system
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* of the parent.
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*/
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TQRect boundingRect() const;
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/**
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* Scales the content of the child part. However, that does not
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* affect the size of the child part.
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*/
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virtual void setScaling( double x, double y );
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/**
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* @return the x axis scaling of the child part
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*/
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virtual double xScaling() const;
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/**
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* @return the y axis scaling of the child part
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*/
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virtual double yScaling() const;
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/**
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* Shears the content of the child part.
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*/
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virtual void setShearing( double x, double y );
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/**
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* @return the x axis shearing of the child part
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*/
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virtual double xShearing() const;
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/**
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* @return the y axis shearing of the child part
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*/
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virtual double yShearing() const;
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/**
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* Sets the angle of rotation.
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*/
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virtual void setRotation( double );
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/**
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* @return the angle of rotation
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*/
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virtual double rotation() const;
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/**
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* Sets the center of the rotation to the point @p pos.
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*/
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virtual void setRotationPoint( const TQPoint& pos );
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/**
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* @return the center of the rotation
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*/
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virtual TQPoint rotationPoint() const;
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/**
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* @return true if the child part is an orthogonal rectangle relative
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* to its parents coordinate system.
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*/
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bool isRectangle() const;
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/**
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* Sets the clip region of the painter, so that only pixels of the
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* child part can be drawn.
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*
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* @param painter the painter do modify.
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* @param combine tells whether the new clip region is an intersection
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* of the current region with the childs region or whether only
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* the childs region is set.
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*/
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virtual void setClipRegion( TQPainter& painter, bool combine = true );
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/**
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* Transforms the painter (its worldmatrix and the clipping)
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* in such a way that the painter can be passed to the child part
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* for drawing.
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*/
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virtual void transform( TQPainter& painter );
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/**
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* Sets the position of the content relative to the child frame.
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* This can be used to create a border between the frame border
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* and the actual content.
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*/
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virtual void setContentsPos( int x, int y );
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/**
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* @return the contents rectangle that is visible.
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* This value depends on the scaling and the tqgeometry.
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* This is the value that is passed to KoDocument::paintContent.
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*
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* @see #xScaling #tqgeometry
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*/
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virtual TQRect contentRect() const;
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/**
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* @return the region of the child frame.
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* If solid is set to true the complete area of the child region
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* is returned, otherwise only the child border is returned.
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*/
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virtual TQRegion frameRegion( const TQWMatrix& matrix = TQWMatrix(), bool solid = false ) const;
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/**
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* @return the frame tqgeometry including a border (6 pixels) as a point
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* array with 4 points, one for each corner, transformed by given matrix.
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*/
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virtual TQPointArray framePointArray( const TQWMatrix &matrix = TQWMatrix() ) const;
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/**
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* @return the current transformation of this child as matrix.
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* This includes translation, scale, rotation, shearing.
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*
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* @see #updateMatrix
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*/
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virtual TQWMatrix matrix() const;
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/**
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* Locks this child and stores the current transformation.
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* A locked child does not emit changed signals.
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*
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* This is useful if a series of changes are done on this
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* child and only the final result is of interest (GUI updating,...).
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*
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* @see #locked #unlock
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*/
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void lock();
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/**
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* Unlocks this child and emits a changed signal.
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*/
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void unlock();
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/**
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* If the child is locked, tqgeometry changes
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* (including scaling, rotation, ...) are not backed up.
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*
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* As long as this child is locked, the backed up
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* tqgeometry state can be recovered with oldPointArray.
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*
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* @return true when this child is locked.
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*
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* @see #locked #unlock #oldPointArray
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*/
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bool locked() const;
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/**
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* @return the backed up tqgeometry transformed by given matrix.
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*/
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virtual TQPointArray oldPointArray( const TQWMatrix &matrix );
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/**
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* Marks this child as either transparent or not.
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* @param transparent set this child to transparent (true)
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* or opaque (false).
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*
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* @see #isTransparent
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*/
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virtual void setTransparent( bool transparent );
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/**
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* It might be interesting for view updates and repainting in general
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* whether a child is transparent or not.
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* @return true when this child is marked as transparent.
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*/
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virtual bool isTransparent() const;
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/**
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* Different actions are taken depending on where a child frame is
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* hit. Two gadgets are known: one for the border (5 pixels) and one
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* for the inner area.
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* @return the gadget identification for the hit area.
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* @param p the hit position.
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*
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* @see #Gadget
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*/
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virtual Gadget gadgetHitTest( const TQPoint& p );
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signals:
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/**
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* Emitted every time this child changes, but only if this child is not
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* locked.
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* @see #locked
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*/
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void changed( KoChild *thisChild );
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protected:
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/**
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* @return point array with the 4 corners of given rectangle, which is
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* transformed by given matrix.
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*
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* @param matrix the transformation of r.
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* @param r the rectangle for which the point array should be created.
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*/
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virtual TQPointArray pointArray( const TQRect& r, const TQWMatrix& matrix = TQWMatrix() ) const;
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/**
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* Stores the current transformation of this child into a matrix.
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*
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* @see #matrix
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*/
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virtual void updateMatrix();
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private:
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class KoChildPrivate;
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KoChildPrivate *d;
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};
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#endif
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