2019-11-07 02:55:57 +00:00
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/* -*- mode: C++ ; c-file-style: "stroustrup" -*- *****************************
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* Qwt Widget Library
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* Copyright (C) 1997 Josef Wilgen
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* Copyright (C) 2002 Uwe Rathmann
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*
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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 Qwt License, Version 1.0
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*****************************************************************************/
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#include "qwt_abstract_scale.h"
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#include "qwt_scale_engine.h"
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#include "qwt_scale_draw.h"
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#include "qwt_scale_div.h"
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#include "qwt_scale_map.h"
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#include "qwt_interval.h"
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class QwtAbstractScale::PrivateData
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{
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public:
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PrivateData():
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maxMajor( 5 ),
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maxMinor( 3 ),
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stepSize( 0.0 )
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{
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scaleEngine = new QwtLinearScaleEngine();
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scaleDraw = new QwtScaleDraw();
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}
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~PrivateData()
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{
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delete scaleEngine;
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delete scaleDraw;
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}
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QwtScaleEngine *scaleEngine;
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QwtAbstractScaleDraw *scaleDraw;
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int maxMajor;
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int maxMinor;
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double stepSize;
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};
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/*!
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Constructor
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\param parent Parent widget
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Creates a default QwtScaleDraw and a QwtLinearScaleEngine.
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The initial scale boundaries are set to [ 0.0, 100.0 ]
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The scaleStepSize() is initialized to 0.0, scaleMaxMajor() to 5
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and scaleMaxMajor to 3.
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*/
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QwtAbstractScale::QwtAbstractScale( QWidget *parent ):
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QWidget( parent )
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{
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d_data = new PrivateData;
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rescale( 0.0, 100.0, d_data->stepSize );
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}
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//! Destructor
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QwtAbstractScale::~QwtAbstractScale()
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{
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delete d_data;
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}
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/*!
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Set the lower bound of the scale
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\param value Lower bound
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\sa lowerBound(), setScale(), setUpperBound()
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2021-10-08 02:51:37 +00:00
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\note For inverted scales the lower bound
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2019-11-07 02:55:57 +00:00
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is greater than the upper bound
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*/
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void QwtAbstractScale::setLowerBound( double value )
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{
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setScale( value, upperBound() );
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}
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/*!
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\return Lower bound of the scale
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\sa setLowerBound(), setScale(), upperBound()
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*/
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double QwtAbstractScale::lowerBound() const
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{
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return d_data->scaleDraw->scaleDiv().lowerBound();
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}
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/*!
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Set the upper bound of the scale
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\param value Upper bound
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\sa upperBound(), setScale(), setLowerBound()
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\note For inverted scales the lower bound
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2019-11-07 02:55:57 +00:00
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is greater than the upper bound
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*/
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void QwtAbstractScale::setUpperBound( double value )
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{
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setScale( lowerBound(), value );
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}
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/*!
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\return Upper bound of the scale
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\sa setUpperBound(), setScale(), lowerBound()
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*/
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double QwtAbstractScale::upperBound() const
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{
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return d_data->scaleDraw->scaleDiv().upperBound();
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}
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/*!
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\brief Specify a scale.
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2021-10-08 02:51:37 +00:00
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Define a scale by an interval
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2019-11-07 02:55:57 +00:00
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2021-10-08 02:51:37 +00:00
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The ticks are calculated using scaleMaxMinor(),
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2019-11-07 02:55:57 +00:00
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scaleMaxMajor() and scaleStepSize().
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\param lowerBound lower limit of the scale interval
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\param upperBound upper limit of the scale interval
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2021-10-08 02:51:37 +00:00
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\note For inverted scales the lower bound
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2019-11-07 02:55:57 +00:00
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is greater than the upper bound
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*/
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void QwtAbstractScale::setScale( double lowerBound, double upperBound )
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{
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rescale( lowerBound, upperBound, d_data->stepSize );
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}
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/*!
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\brief Specify a scale.
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Define a scale by an interval
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2021-10-08 02:51:37 +00:00
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The ticks are calculated using scaleMaxMinor(),
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2019-11-07 02:55:57 +00:00
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scaleMaxMajor() and scaleStepSize().
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\param interval Interval
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*/
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void QwtAbstractScale::setScale( const QwtInterval &interval )
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{
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setScale( interval.minValue(), interval.maxValue() );
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}
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/*!
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\brief Specify a scale.
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scaleMaxMinor(), scaleMaxMajor() and scaleStepSize() and have no effect.
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\param scaleDiv Scale division
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\sa setAutoScale()
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*/
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void QwtAbstractScale::setScale( const QwtScaleDiv &scaleDiv )
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{
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if ( scaleDiv != d_data->scaleDraw->scaleDiv() )
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{
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#if 1
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if ( d_data->scaleEngine )
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{
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d_data->scaleDraw->setTransformation(
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d_data->scaleEngine->transformation() );
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}
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#endif
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d_data->scaleDraw->setScaleDiv( scaleDiv );
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scaleChange();
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}
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}
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/*!
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\brief Set the maximum number of major tick intervals.
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The scale's major ticks are calculated automatically such that
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the number of major intervals does not exceed ticks.
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The default value is 5.
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\param ticks Maximal number of major ticks.
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\sa scaleMaxMajor(), setScaleMaxMinor(),
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setScaleStepSize(), QwtScaleEngine::divideInterval()
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*/
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void QwtAbstractScale::setScaleMaxMajor( int ticks )
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{
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if ( ticks != d_data->maxMajor )
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{
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d_data->maxMajor = ticks;
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updateScaleDraw();
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}
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}
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/*!
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\return Maximal number of major tick intervals
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\sa setScaleMaxMajor(), scaleMaxMinor()
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*/
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int QwtAbstractScale::scaleMaxMajor() const
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{
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return d_data->maxMajor;
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}
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/*!
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\brief Set the maximum number of minor tick intervals
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The scale's minor ticks are calculated automatically such that
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the number of minor intervals does not exceed ticks.
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The default value is 3.
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\param ticks Maximal number of minor ticks.
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\sa scaleMaxMajor(), setScaleMaxMinor(),
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setScaleStepSize(), QwtScaleEngine::divideInterval()
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*/
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void QwtAbstractScale::setScaleMaxMinor( int ticks )
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{
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if ( ticks != d_data->maxMinor )
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{
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d_data->maxMinor = ticks;
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updateScaleDraw();
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}
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}
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/*!
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\return Maximal number of minor tick intervals
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\sa setScaleMaxMinor(), scaleMaxMajor()
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*/
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int QwtAbstractScale::scaleMaxMinor() const
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{
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return d_data->maxMinor;
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}
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/*!
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\brief Set the step size used for calculating a scale division
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The step size is hint for calculating the intervals for
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the major ticks of the scale. A value of 0.0 is interpreted
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as no hint.
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\param stepSize Hint for the step size of the scale
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\sa scaleStepSize(), QwtScaleEngine::divideScale()
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\note Position and distance between the major ticks also
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depends on scaleMaxMajor().
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*/
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void QwtAbstractScale::setScaleStepSize( double stepSize )
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{
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if ( stepSize != d_data->stepSize )
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{
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d_data->stepSize = stepSize;
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updateScaleDraw();
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}
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}
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/*!
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\return Hint for the step size of the scale
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\sa setScaleStepSize(), QwtScaleEngine::divideScale()
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*/
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double QwtAbstractScale::scaleStepSize() const
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{
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return d_data->stepSize;
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}
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/*!
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\brief Set a scale draw
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scaleDraw has to be created with new and will be deleted in
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the destructor or the next call of setAbstractScaleDraw().
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\sa abstractScaleDraw()
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*/
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void QwtAbstractScale::setAbstractScaleDraw( QwtAbstractScaleDraw *scaleDraw )
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{
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if ( scaleDraw == NULL || scaleDraw == d_data->scaleDraw )
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return;
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if ( d_data->scaleDraw != NULL )
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scaleDraw->setScaleDiv( d_data->scaleDraw->scaleDiv() );
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delete d_data->scaleDraw;
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d_data->scaleDraw = scaleDraw;
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}
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/*!
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\return Scale draw
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\sa setAbstractScaleDraw()
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*/
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QwtAbstractScaleDraw *QwtAbstractScale::abstractScaleDraw()
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{
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return d_data->scaleDraw;
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}
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/*!
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\return Scale draw
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\sa setAbstractScaleDraw()
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*/
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const QwtAbstractScaleDraw *QwtAbstractScale::abstractScaleDraw() const
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{
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return d_data->scaleDraw;
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}
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/*!
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\brief Set a scale engine
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The scale engine is responsible for calculating the scale division
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and provides a transformation between scale and widget coordinates.
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scaleEngine has to be created with new and will be deleted in
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the destructor or the next call of setScaleEngine.
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*/
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void QwtAbstractScale::setScaleEngine( QwtScaleEngine *scaleEngine )
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{
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if ( scaleEngine != NULL && scaleEngine != d_data->scaleEngine )
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{
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delete d_data->scaleEngine;
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d_data->scaleEngine = scaleEngine;
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}
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}
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/*!
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\return Scale engine
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\sa setScaleEngine()
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*/
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const QwtScaleEngine *QwtAbstractScale::scaleEngine() const
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{
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return d_data->scaleEngine;
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}
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/*!
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\return Scale engine
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\sa setScaleEngine()
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*/
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QwtScaleEngine *QwtAbstractScale::scaleEngine()
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{
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return d_data->scaleEngine;
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}
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/*!
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\return Scale boundaries and positions of the ticks
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The scale division might have been assigned explicitly
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or calculated implicitly by rescale().
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*/
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const QwtScaleDiv &QwtAbstractScale::scaleDiv() const
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{
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return d_data->scaleDraw->scaleDiv();
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}
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/*!
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\return Map to translate between scale and widget coordinates
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*/
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const QwtScaleMap &QwtAbstractScale::scaleMap() const
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{
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return d_data->scaleDraw->scaleMap();
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}
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/*!
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Translate a scale value into a widget coordinate
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2021-10-08 02:51:37 +00:00
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\param value Scale value
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\return Corresponding widget coordinate for value
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\sa scaleMap(), invTransform()
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*/
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int QwtAbstractScale::transform( double value ) const
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{
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return qRound( d_data->scaleDraw->scaleMap().transform( value ) );
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}
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/*!
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Translate a widget coordinate into a scale value
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\param value Widget coordinate
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\return Corresponding scale coordinate for value
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\sa scaleMap(), transform()
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*/
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double QwtAbstractScale::invTransform( int value ) const
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{
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return d_data->scaleDraw->scaleMap().invTransform( value );
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}
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/*!
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\return True, when the scale is increasing in opposite direction
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to the widget coordinates
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*/
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bool QwtAbstractScale::isInverted() const
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{
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return d_data->scaleDraw->scaleMap().isInverting();
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}
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/*!
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\return The boundary with the smaller value
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\sa maximum(), lowerBound(), upperBound()
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*/
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double QwtAbstractScale::minimum() const
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{
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return qMin( d_data->scaleDraw->scaleDiv().lowerBound(),
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d_data->scaleDraw->scaleDiv().upperBound() );
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}
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/*!
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\return The boundary with the larger value
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\sa minimum(), lowerBound(), upperBound()
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*/
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double QwtAbstractScale::maximum() const
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{
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return qMax( d_data->scaleDraw->scaleDiv().lowerBound(),
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d_data->scaleDraw->scaleDiv().upperBound() );
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}
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//! Notify changed scale
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void QwtAbstractScale::scaleChange()
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{
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}
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/*!
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Recalculate the scale division and update the scale.
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\param lowerBound Lower limit of the scale interval
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\param upperBound Upper limit of the scale interval
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\param stepSize Major step size
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\sa scaleChange()
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*/
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2021-10-08 02:51:37 +00:00
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void QwtAbstractScale::rescale(
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2019-11-07 02:55:57 +00:00
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double lowerBound, double upperBound, double stepSize )
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{
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const QwtScaleDiv scaleDiv = d_data->scaleEngine->divideScale(
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lowerBound, upperBound, d_data->maxMajor, d_data->maxMinor, stepSize );
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if ( scaleDiv != d_data->scaleDraw->scaleDiv() )
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{
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#if 1
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d_data->scaleDraw->setTransformation(
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d_data->scaleEngine->transformation() );
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#endif
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d_data->scaleDraw->setScaleDiv( scaleDiv );
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scaleChange();
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}
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}
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void QwtAbstractScale::updateScaleDraw()
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{
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rescale( d_data->scaleDraw->scaleDiv().lowerBound(),
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d_data->scaleDraw->scaleDiv().upperBound(), d_data->stepSize );
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}
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