393 lines
10 KiB
C++
393 lines
10 KiB
C++
/****************************************************************************
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** Copyright (C) 2001-2011 Klaralvdalens Datakonsult AB. All rights reserved.
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**
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** This file is part of the KD Chart library.
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**
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** Licensees holding valid commercial KD Chart licenses may use this file in
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** accordance with the KD Chart Commercial License Agreement provided with
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** the Software.
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**
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**
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** This file may be distributed and/or modified under the terms of the
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** GNU General Public License version 2 and version 3 as published by the
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** Free Software Foundation and appearing in the file LICENSE.GPL.txt included.
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**
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** This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
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** WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
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**
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** Contact info@kdab.com if any conditions of this licensing are not
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** clear to you.
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**
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**********************************************************************/
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#include "KDChartPlotter.h"
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#include "KDChartPlotter_p.h"
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#include "KDChartAbstractGrid.h"
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#include <KDABLibFakes>
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#include "KDChartNormalPlotter_p.h"
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#include "KDChartPercentPlotter_p.h"
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using namespace KDChart;
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Plotter::Private::Private()
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{
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}
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Plotter::Private::~Private() {}
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#define d d_func()
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Plotter::Plotter( QWidget* parent, CartesianCoordinatePlane* plane ) :
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AbstractCartesianDiagram( new Private(), parent, plane )
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{
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init();
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}
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void Plotter::init()
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{
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d->diagram = this;
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d->normalPlotter = new NormalPlotter( this );
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d->percentPlotter = new PercentPlotter( this );
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d->implementor = d->normalPlotter;
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setDatasetDimensionInternal( 2 );
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}
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Plotter::~Plotter()
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{
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}
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/**
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* Creates an exact copy of this diagram.
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*/
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Plotter* Plotter::clone() const
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{
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Plotter* newDiagram = new Plotter( new Private( *d ) );
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newDiagram->setType( type() );
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return newDiagram;
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}
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bool Plotter::compare( const Plotter* other )const
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{
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if( other == this )
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return true;
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if( other == 0 )
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return false;
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return // compare the base class
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( static_cast< const AbstractCartesianDiagram* >( this )->compare( other ) ) &&
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// compare own properties
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( type() == other->type() );
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}
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/**
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* Sets the plotter's type to \a type
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*/
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void Plotter::setType( const PlotType type )
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{
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if( d->implementor->type() == type )
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return;
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if( datasetDimension() != 2 )
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{
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Q_ASSERT_X ( false, "setType()",
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"This line chart type can only be used with two-dimensional data." );
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return;
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}
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switch( type ) {
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case Normal:
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d->implementor = d->normalPlotter;
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break;
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case Percent:
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d->implementor = d->percentPlotter;
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break;
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default:
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Q_ASSERT_X( false, "Plotter::setType", "unknown plotter subtype" );
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};
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// d->lineType = type;
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Q_ASSERT( d->implementor->type() == type );
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setDataBoundariesDirty();
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emit layoutChanged( this );
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emit propertiesChanged();
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}
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/**
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* @return the type of the plotter
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*/
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Plotter::PlotType Plotter::type() const
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{
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return d->implementor->type();
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}
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/**
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* Sets the global line attributes to \a la
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*/
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void Plotter::setLineAttributes( const LineAttributes& la )
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{
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d->attributesModel->setModelData(
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qVariantFromValue( la ),
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LineAttributesRole );
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emit propertiesChanged();
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}
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/**
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* Sets the line attributes of data set \a column to \a la
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*/
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void Plotter::setLineAttributes(
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int column,
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const LineAttributes& la )
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{
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d->setDatasetAttrs( column, qVariantFromValue( la ),
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LineAttributesRole );
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emit propertiesChanged();
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}
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/**
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* Resets the line attributes of data set \a column
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*/
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void Plotter::resetLineAttributes( int column )
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{
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d->resetDatasetAttrs( column, LineAttributesRole );
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emit propertiesChanged();
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}
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/**
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* Sets the line attributes for the model index \a index to \a la
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*/
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void Plotter::setLineAttributes(
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const QModelIndex & index,
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const LineAttributes& la )
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{
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d->attributesModel->setData(
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d->attributesModel->mapFromSource(index),
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qVariantFromValue( la ),
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LineAttributesRole );
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emit propertiesChanged();
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}
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/**
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* Remove any explicit line attributes settings that might have been specified before.
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*/
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void Plotter::resetLineAttributes( const QModelIndex & index )
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{
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d->attributesModel->resetData(
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d->attributesModel->mapFromSource(index), LineAttributesRole );
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emit propertiesChanged();
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}
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/**
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* @return the global line attribute set
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*/
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LineAttributes Plotter::lineAttributes() const
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{
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return qVariantValue<LineAttributes>(
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d->attributesModel->data( KDChart::LineAttributesRole ) );
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}
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/**
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* @return the line attribute set of data set \a column
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*/
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LineAttributes Plotter::lineAttributes( int column ) const
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{
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const QVariant attrs( d->datasetAttrs( column, LineAttributesRole ) );
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if( attrs.isValid() )
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return qVariantValue< LineAttributes >( attrs );
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return lineAttributes();
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}
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/**
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* @return the line attribute set of the model index \a index
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*/
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LineAttributes Plotter::lineAttributes(
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const QModelIndex& index ) const
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{
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return qVariantValue<LineAttributes>(
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d->attributesModel->data(
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d->attributesModel->mapFromSource(index),
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KDChart::LineAttributesRole ) );
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}
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/**
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* Sets the global 3D line attributes to \a la
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*/
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void Plotter::setThreeDLineAttributes(
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const ThreeDLineAttributes& la )
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{
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setDataBoundariesDirty();
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d->attributesModel->setModelData(
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qVariantFromValue( la ),
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ThreeDLineAttributesRole );
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emit propertiesChanged();
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}
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/**
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* Sets the 3D line attributes of data set \a column to \a la
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*/
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void Plotter::setThreeDLineAttributes(
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int column,
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const ThreeDLineAttributes& la )
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{
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setDataBoundariesDirty();
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d->setDatasetAttrs( column, qVariantFromValue( la ), ThreeDLineAttributesRole );
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emit propertiesChanged();
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}
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/**
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* Sets the 3D line attributes of model index \a index to \a la
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*/
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void Plotter::setThreeDLineAttributes(
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const QModelIndex& index,
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const ThreeDLineAttributes& la )
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{
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setDataBoundariesDirty();
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d->attributesModel->setData(
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d->attributesModel->mapFromSource(index),
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qVariantFromValue( la ),
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ThreeDLineAttributesRole );
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emit propertiesChanged();
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}
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/**
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* @return the global 3D line attributes
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*/
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ThreeDLineAttributes Plotter::threeDLineAttributes() const
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{
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return qVariantValue<ThreeDLineAttributes>(
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d->attributesModel->data( KDChart::ThreeDLineAttributesRole ) );
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}
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/**
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* @return the 3D line attributes of data set \a column
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*/
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ThreeDLineAttributes Plotter::threeDLineAttributes( int column ) const
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{
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const QVariant attrs( d->datasetAttrs( column, ThreeDLineAttributesRole ) );
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if( attrs.isValid() )
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return qVariantValue< ThreeDLineAttributes >( attrs );
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return threeDLineAttributes();
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}
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/**
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* @return the 3D line attributes of the model index \a index
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*/
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ThreeDLineAttributes Plotter::threeDLineAttributes(
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const QModelIndex& index ) const
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{
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return qVariantValue<ThreeDLineAttributes>(
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d->attributesModel->data(
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d->attributesModel->mapFromSource( index ),
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KDChart::ThreeDLineAttributesRole ) );
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}
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double Plotter::threeDItemDepth( const QModelIndex & index ) const
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{
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return threeDLineAttributes( index ).validDepth();
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}
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double Plotter::threeDItemDepth( int column ) const
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{
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return qVariantValue<ThreeDLineAttributes>(
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d->datasetAttrs( column, KDChart::ThreeDLineAttributesRole ) ).validDepth();
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}
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/**
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* Sets the value tracker attributes of the model index \a index to \a va
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*/
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void Plotter::setValueTrackerAttributes( const QModelIndex & index,
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const ValueTrackerAttributes & va )
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{
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d->attributesModel->setData( d->attributesModel->mapFromSource(index),
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qVariantFromValue( va ),
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KDChart::ValueTrackerAttributesRole );
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emit propertiesChanged();
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}
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/**
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* Returns the value tracker attributes of the model index \a index
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*/
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ValueTrackerAttributes Plotter::valueTrackerAttributes(
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const QModelIndex & index ) const
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{
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return qVariantValue<ValueTrackerAttributes>( d->attributesModel->data(
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d->attributesModel->mapFromSource( index ),
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KDChart::ValueTrackerAttributesRole ) );
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}
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void Plotter::resizeEvent ( QResizeEvent* )
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{
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}
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const QPair< QPointF, QPointF > Plotter::calculateDataBoundaries() const
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{
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if ( !checkInvariants( true ) )
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return QPair< QPointF, QPointF >( QPointF( 0, 0 ), QPointF( 0, 0 ) );
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// note: calculateDataBoundaries() is ignoring the hidden flags.
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// That's not a bug but a feature: Hiding data does not mean removing them.
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// For totally removing data from KD Chart's view people can use e.g. a proxy model ...
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// calculate boundaries for different line types Normal - Stacked - Percent - Default Normal
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return d->implementor->calculateDataBoundaries();
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}
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void Plotter::paintEvent ( QPaintEvent*)
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{
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QPainter painter ( viewport() );
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PaintContext ctx;
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ctx.setPainter ( &painter );
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ctx.setRectangle ( QRectF ( 0, 0, width(), height() ) );
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paint ( &ctx );
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}
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void Plotter::paint( PaintContext* ctx )
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{
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// note: Not having any data model assigned is no bug
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// but we can not draw a diagram then either.
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if ( !checkInvariants( true ) ) return;
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AbstractCoordinatePlane* const plane = ctx->coordinatePlane();
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if( ! plane ) return;
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d->setCompressorResolution( size(), plane );
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if ( !AbstractGrid::isBoundariesValid(dataBoundaries()) ) return;
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const PainterSaver p( ctx->painter() );
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if( model()->rowCount( rootIndex() ) == 0 || model()->columnCount( rootIndex() ) == 0 )
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return; // nothing to paint for us
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ctx->setCoordinatePlane( plane->sharedAxisMasterPlane( ctx->painter() ) );
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// paint different line types Normal - Stacked - Percent - Default Normal
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d->implementor->paint( ctx );
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ctx->setCoordinatePlane( plane );
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}
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void Plotter::resize ( const QSizeF& size )
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{
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d->setCompressorResolution( size, coordinatePlane() );
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setDataBoundariesDirty();
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}
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#if QT_VERSION < 0x040400 || defined(Q_COMPILER_MANGLES_RETURN_TYPE)
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const
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#endif
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int Plotter::numberOfAbscissaSegments () const
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{
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return d->attributesModel->rowCount( attributesModelRootIndex() );
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}
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#if QT_VERSION < 0x040400 || defined(Q_COMPILER_MANGLES_RETURN_TYPE)
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const
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#endif
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int Plotter::numberOfOrdinateSegments () const
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{
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return d->attributesModel->columnCount( attributesModelRootIndex() );
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}
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