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207 lines
5.3 KiB
207 lines
5.3 KiB
/* This file is part of the KDE project
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Copyright (C) 2001, 2002, 2003 The Karbon Developers
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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 <tqwmatrix.h>
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#include "vglobal.h"
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#include "vsinus.h"
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#include "vtransformcmd.h"
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#include <klocale.h>
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#include <KoUnit.h>
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#include <tqdom.h>
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#include <vdocument.h>
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VSinus::VSinus( VObject* parent, VState state )
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: VPath( parent, state )
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{
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}
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VSinus::VSinus( VObject* parent,
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const KoPoint& topLeft, double width, double height, uint periods )
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: VPath( parent ), m_topLeft( topLeft ), m_width( width), m_height( height ), m_periods( periods )
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{
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// We want at least 1 period:
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if( m_periods < 1 )
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m_periods = 1;
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init();
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}
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void
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VSinus::init()
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{
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KoPoint p1;
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KoPoint p2;
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KoPoint p3( 0.0, 0.0 );
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moveTo( p3 );
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for ( uint i = 0; i < m_periods; ++i )
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{
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p1.setX( i + 1.0/24.0 );
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p1.setY( ( 2.0 * VGlobal::sqrt2 - 1.0 ) * VGlobal::one_7 );
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p2.setX( i + 1.0/12.0 );
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p2.setY( ( 4.0 * VGlobal::sqrt2 - 2.0 ) * VGlobal::one_7 );
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p3.setX( i + 1.0/8.0 );
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p3.setY( VGlobal::sqrt2 * 0.5 );
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curveTo( p1, p2, p3 );
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p1.setX( i + 1.0/6.0 );
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p1.setY( ( 3.0 * VGlobal::sqrt2 + 2.0 ) * VGlobal::one_7 );
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p2.setX( i + 5.0/24.0 );
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p2.setY( 1.0 );
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p3.setX( i + 1.0/4.0 );
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p3.setY( 1.0 );
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curveTo( p1, p2, p3 );
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p1.setX( i + 7.0/24.0 );
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p1.setY( 1.0 );
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p2.setX( i + 1.0/3.0 );
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p2.setY( ( 3.0 * VGlobal::sqrt2 + 2.0 ) * VGlobal::one_7 );
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p3.setX( i + 3.0/8.0 );
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p3.setY( VGlobal::sqrt2 * 0.5 );
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curveTo( p1, p2, p3 );
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p1.setX( i + 5.0/12.0 );
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p1.setY( ( 4.0 * VGlobal::sqrt2 - 2.0 ) * VGlobal::one_7 );
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p2.setX( i + 11.0/24.0 );
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p2.setY( ( 2.0 * VGlobal::sqrt2 - 1.0 ) * VGlobal::one_7 );
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p3.setX( i + 1.0/2.0 );
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p3.setY( 0.0 );
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curveTo( p1, p2, p3 );
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p1.setX( i + 13.0/24.0 );
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p1.setY( -( 2.0 * VGlobal::sqrt2 - 1.0 ) * VGlobal::one_7 );
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p2.setX( i + 7.0/12.0 );
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p2.setY( -( 4.0 * VGlobal::sqrt2 - 2.0 ) * VGlobal::one_7 );
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p3.setX( i + 5.0/8.0 );
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p3.setY( -VGlobal::sqrt2 * 0.5 );
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curveTo( p1, p2, p3 );
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p1.setX( i + 2.0/3.0 );
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p1.setY( -( 3.0 * VGlobal::sqrt2 + 2.0 ) * VGlobal::one_7 );
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p2.setX( i + 17.0/24.0 );
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p2.setY( -1.0 );
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p3.setX( i + 3.0/4.0 );
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p3.setY( -1.0 );
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curveTo( p1, p2, p3 );
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p1.setX( i + 19.0/24.0 );
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p1.setY( -1.0 );
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p2.setX( i + 5.0/6.0 );
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p2.setY( -( 3.0 * VGlobal::sqrt2 + 2.0 ) * VGlobal::one_7 );
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p3.setX( i + 7.0/8.0 );
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p3.setY( -VGlobal::sqrt2 * 0.5 );
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curveTo( p1, p2, p3 );
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p1.setX( i + 11.0/12.0 );
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p1.setY( -( 4.0 * VGlobal::sqrt2 - 2.0 ) * VGlobal::one_7 );
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p2.setX( i + 23.0/24.0 );
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p2.setY( -( 2.0 * VGlobal::sqrt2 - 1.0 ) * VGlobal::one_7 );
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p3.setX( i + 1.0 );
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p3.setY( 0.0 );
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curveTo( p1, p2, p3 );
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}
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// Translate and scale:
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TQWMatrix m;
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m.translate( m_topLeft.x(), m_topLeft.y() - m_height * 0.5 );
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m.scale( m_width / m_periods, m_height * 0.5 );
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// only tranform the path data
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VTransformCmd cmd( 0L, m );
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cmd.VVisitor::visitVPath( *this );
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m_matrix.reset();
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}
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TQString
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VSinus::name() const
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{
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TQString result = VObject::name();
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return !result.isEmpty() ? result : i18n( "Sinus" );
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}
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void
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VSinus::save( TQDomElement& element ) const
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{
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VDocument *doc = document();
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if( doc && doc->saveAsPath() )
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{
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VPath::save( element );
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return;
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}
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if( state() != deleted )
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{
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TQDomElement me = element.ownerDocument().createElement( "SINUS" );
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element.appendChild( me );
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// save fill/stroke untransformed
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VPath path( *this );
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VTransformCmd cmd( 0L, m_matrix.invert() );
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cmd.visit( path );
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path.VObject::save( me );
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//VObject::save( me );
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me.setAttribute( "x", m_topLeft.x() );
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me.setAttribute( "y", m_topLeft.y() );
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me.setAttribute( "width", m_width );
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me.setAttribute( "height", m_height );
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me.setAttribute( "periods", m_periods );
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TQString transform = buildSvgTransform();
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if( !transform.isEmpty() )
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me.setAttribute( "transform", transform );
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}
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}
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void
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VSinus::load( const TQDomElement& element )
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{
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setState( normal );
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TQDomNodeList list = element.childNodes();
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for( uint i = 0; i < list.count(); ++i )
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if( list.item( i ).isElement() )
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VObject::load( list.item( i ).toElement() );
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m_width = KoUnit::parseValue( element.attribute( "width" ), 10.0 );
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m_height = KoUnit::parseValue( element.attribute( "height" ), 10.0 );
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m_topLeft.setX( KoUnit::parseValue( element.attribute( "x" ) ) );
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m_topLeft.setY( KoUnit::parseValue( element.attribute( "y" ) ) );
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m_periods = element.attribute( "periods" ).toUInt();
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init();
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TQString trafo = element.attribute( "transform" );
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if( !trafo.isEmpty() )
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transform( trafo );
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}
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VPath*
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VSinus::clone() const
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{
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return new VSinus( *this );
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}
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