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/*
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Copyright ( c ) 2008 - 2022 Jan W . Krieger ( < jan @ jkrieger . de > )
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This software is free software : you can redistribute it and / or modify
it under the terms of the GNU Lesser General Public License ( LGPL ) as published by
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the Free Software Foundation , either version 2.1 of the License , or
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( at your option ) any later version .
This program is distributed in the hope that it will be useful ,
but WITHOUT ANY WARRANTY ; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE . See the
GNU Lesser General Public License ( LGPL ) for more details .
You should have received a copy of the GNU Lesser General Public License ( LGPL )
along with this program . If not , see < http : //www.gnu.org/licenses/>.
*/
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# ifndef jkqtpgraphsbarchart_H
# define jkqtpgraphsbarchart_H
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# include <QString>
# include <QPainter>
# include <QPair>
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# include "jkqtplotter/jkqtptools.h"
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# include "jkqtplotter/jkqtplotter_imexport.h"
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# include "jkqtplotter/jkqtpgraphsbase.h"
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# include "jkqtplotter/jkqtpgraphsbaseerrors.h"
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# include "jkqtplotter/jkqtpgraphsbasestylingmixins.h"
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# include "jkqtplotter/graphs/jkqtpbarchartbase.h"
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/*! \brief This implements a vertical bar graph with bars between \f$ y=\mbox{baseline} \f$ and \f$ y=f(x) \f$
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\ ingroup jkqtplotter_barcharts
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This class plots a bargraph . This image explains the parameters :
\ image html bargraph_basics . png
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By default the shift parameter is , so the bar is centered at the x - value . The width is 0.9 ,
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so adjacent bars are plotted with a small distance between them . It is possible to use these two parameters
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to plot multiple bars for every x - value , by having on JKQTPSpecialLineHorizontalGraph object per
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set of bars that belong together . For example for three bars per x - value one would set :
\ verbatim
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width = 0.3
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shift = - 0.3 / 0 / + 0.3
\ endverbatim
This results in a bargraph , as shown here :
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\ image html JKQTPBarVerticalGraph . png
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You can also set JKQTPBarGraphBase : : FillMode : : TwoColorFilling , which uses different fill styles for bars above and below
the baseline of the graph :
\ image html JKQTPBarVerticalGraphTwoColorFilling . png
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If you use JKQTPBarGraphBase : : FillMode : : FunctorFilling you can specify the fill style by a functor , e . g .
\ code
graph - > setFillMode ( JKQTPBarGraphBase : : FillMode : : FunctorFilling ) ;
graph - > setFillBrushFunctor (
[ ] ( double key , double value ) {
return QBrush ( QColor : : fromHsvF ( key / 12.0 , 1.0 , 1.0 ) ) ;
}
) ;
\ endcode
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The result may look like this :
\ image html JKQTPBarVerticalGraphFunctorFilling . png
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You can also completely customize the drawing by defining a custom draw functor :
\ code
graph - > setCustomDrawingFunctor (
[ ] ( JKQTPEnhancedPainter & painter , const QRectF & bar_px , const QPointF & datapoint , Qt : : Orientation orientation , JKQTPBarGraphBase * graph ) {
// draw the bar (if required), pen and brush are already set properly
painter . drawRect ( bar_px ) ;
// now we can add some decoration or replace the instruction above:
// ........
}
) ;
// enable usage of cutom draw functor
graph - > setUseCustomDrawFunctor ( true ) ;
\ endcode
See \ ref JKQTPlotterBarchartsCustomDrawFunctor for a detailed example .
The result may look like this :
\ image html JKQTPBarVerticalGraphCustomDrawFunctor . png
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\ see JKQTPBarHorizontalGraph , \ ref JKQTPlotterBarcharts , jkqtpstatAddHHistogram1D ( ) , jkqtpstatAddHHistogram1DAutoranged ( )
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*/
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class JKQTPLOTTER_LIB_EXPORT JKQTPBarVerticalGraph : public JKQTPBarGraphBase {
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Q_OBJECT
public :
/** \brief class constructor */
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JKQTPBarVerticalGraph ( JKQTBasePlotter * parent = nullptr ) ;
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/** \brief class constructor */
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JKQTPBarVerticalGraph ( JKQTPlotter * parent ) ;
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/** \brief plots the graph to the plotter object specified as parent */
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virtual void draw ( JKQTPEnhancedPainter & painter ) override ;
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/** \brief get the maximum and minimum x-value of the graph
*
* The result is given in the two parameters which are call - by - reference parameters !
*/
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virtual bool getXMinMax ( double & minx , double & maxx , double & smallestGreaterZero ) override ;
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/** \brief get the maximum and minimum y-value of the graph
*
* The result is given in the two parameters which are call - by - reference parameters !
*/
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virtual bool getYMinMax ( double & miny , double & maxy , double & smallestGreaterZero ) override ;
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public Q_SLOTS :
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protected :
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/** \brief this function is used by autoscaleBarWidthAndShift() to determine whether a given graph shall be taken into account when autoscaling.
* Typically this returns \ c true for all JKQTPBarGraphBase - derved objects with the same orientation ( horizontal or vertical ) */
virtual bool considerForAutoscaling ( JKQTPBarGraphBase * other ) const override ;
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} ;
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/*! \brief This implements a vertical bar graph with bars between \f$ y=\mbox{baseline} \f$ and \f$ y=f(x) \f$
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* and error indicator
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* \ ingroup jkqtplotter_barcharts
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*
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* This works much the same as JKQTPBarHorizontalGraph . Here is an example output :
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* \ image html JKQTPBarVerticalErrorGraph . png
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*
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* \ see jkqtpstatAddYErrorBarGraph ( ) , JKQTPBarVerticalGraph , \ ref JKQTPlotterBarcharts
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*/
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class JKQTPLOTTER_LIB_EXPORT JKQTPBarVerticalErrorGraph : public JKQTPBarVerticalGraph , public JKQTPYGraphErrors {
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Q_OBJECT
public :
/** \brief class constructor */
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JKQTPBarVerticalErrorGraph ( JKQTBasePlotter * parent = nullptr ) ;
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/** \brief class constructor */
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JKQTPBarVerticalErrorGraph ( JKQTPlotter * parent ) ;
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/** \copydoc JKQTPGraph::usesColumn() */
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virtual bool usesColumn ( int c ) const override ;
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/** \brief get the maximum and minimum y-value of the graph
*
* The result is given in the two parameters which are call - by - reference parameters !
*/
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virtual bool getYMinMax ( double & miny , double & maxy , double & smallestGreaterZero ) override ;
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/** \brief returns the column that contains the bar height errors */
int getBarErrorColumn ( ) const ;
/** \brief returns the column that contains the lower bar height errors */
int getBarLowerErrorColumn ( ) const ;
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/** \brief returns the error style of the bar */
JKQTPErrorPlotstyle getBarErrorStyle ( ) const ;
/** \brief returns whether the errors of the bars are symmetric */
bool getBarErrorSymmetric ( ) const ;
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public Q_SLOTS :
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/** \brief sets whether the errors of the bars are symmetric */
void setBarErrorSymmetric ( bool __value ) ;
/** \brief sets the error style of the bar */
void setBarErrorStyle ( JKQTPErrorPlotstyle __value ) ;
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/** \brief sets the column that contains the bar height errors */
void setBarErrorColumn ( int column ) ;
/** \brief sets the column that contains the bar height errors */
void setBarErrorColumn ( size_t column ) ;
/** \brief sets the column that contains the bar height errors */
void setBarLowerErrorColumn ( int column ) ;
/** \brief sets the column that contains the bar height errors */
void setBarLowerErrorColumn ( size_t column ) ;
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protected :
/** \brief this function is used to plot error inidcators before plotting the graphs. */
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virtual void drawErrorsAfter ( JKQTPEnhancedPainter & painter ) override ;
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} ;
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/*! \brief This implements a horizontal bar graph with bars between \f$ x=\mbox{baseline} \f$ and \f$ x=f(y) \f$
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\ ingroup jkqtplotter_barcharts
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This works much the same as JKQTPBarHorizontalGraph . Here is an example output :
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\ image html JKQTPBarHorizontalGraph . png
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You can also set JKQTPBarGraphBase : : FillMode : : TwoColorFilling , which uses different fill styles for bars above and below
the baseline of the graph :
\ image html JKQTPBarHorizontalGraphTwoColorFilling . png
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If you use JKQTPBarGraphBase : : FillMode : : FunctorFilling you can specify the fill style by a functor , e . g .
\ code
graph - > setFillMode ( JKQTPBarGraphBase : : FillMode : : FunctorFilling ) ;
graph - > setFillBrushFunctor (
[ ] ( double key , double value ) {
return QBrush ( QColor : : fromHsvF ( key / 12.0 , 1.0 , 1.0 ) ) ;
}
) ;
\ endcode
The result may look like this :
\ image html JKQTPBarHorizontalGraphFunctorFilling . png
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You can also completely customize the drawing by defining a custom draw functor :
\ code
graph - > setCustomDrawingFunctor (
[ ] ( JKQTPEnhancedPainter & painter , const QRectF & bar_px , const QPointF & datapoint , Qt : : Orientation orientation , JKQTPBarGraphBase * graph ) {
// draw the bar (if required), pen and brush are already set properly
painter . drawRect ( bar_px ) ;
// now we can add some decoration or replace the instruction above:
// ........
}
) ;
// enable usage of cutom draw functor
graph - > setUseCustomDrawFunctor ( true ) ;
\ endcode
See \ ref JKQTPlotterBarchartsCustomDrawFunctor for a detailed example .
The result may look like this :
\ image html JKQTPBarHorizontalGraphCustomDrawFunctor . png
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\ see \ ref JKQTPlotterBarcharts , jkqtpstatAddVHistogram1D ( ) , jkqtpstatAddVHistogram1DAutoranged ( )
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*/
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class JKQTPLOTTER_LIB_EXPORT JKQTPBarHorizontalGraph : public JKQTPBarGraphBase {
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Q_OBJECT
public :
/** \brief class constructor */
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JKQTPBarHorizontalGraph ( JKQTBasePlotter * parent = nullptr ) ;
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/** \brief class constructor */
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JKQTPBarHorizontalGraph ( JKQTPlotter * parent ) ;
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/** \brief plots the graph to the plotter object specified as parent */
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virtual void draw ( JKQTPEnhancedPainter & painter ) override ;
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/** \brief get the maximum and minimum x-value of the graph
*
* The result is given in the two parameters which are call - by - reference parameters !
*/
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virtual bool getXMinMax ( double & minx , double & maxx , double & smallestGreaterZero ) override ;
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/** \brief get the maximum and minimum y-value of the graph
*
* The result is given in the two parameters which are call - by - reference parameters !
*/
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virtual bool getYMinMax ( double & miny , double & maxy , double & smallestGreaterZero ) override ;
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/** \brief returns the column used as "key" for the current graph (typically this call getXColumn(), but for horizontal graphs like filled curves or barcharts it may call getYColumn() ) */
virtual int getKeyColumn ( ) const override ;
/** \brief returns the column used as "value" for the current graph (typically this call getXColumn(), but for horizontal graphs like filled curves or barcharts it may call getYColumn() ) */
virtual int getValueColumn ( ) const override ;
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public Q_SLOTS :
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/** \brief sets the column used as "key" for the current graph (typically this call setXColumn(), but for horizontal graphs like filled curves or barcharts it may call setYColumn() ) */
virtual void setKeyColumn ( int __value ) override ;
/** \brief sets the column used as "value" for the current graph (typically this call setXColumn(), but for horizontal graphs like filled curves or barcharts it may call setYColumn() ) */
virtual void setValueColumn ( int __value ) override ;
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protected :
/** \brief this function is used by autoscaleBarWidthAndShift() to determine whether a given graph shall be taken into account when autoscaling.
* Typically this returns \ c true for all JKQTPBarGraphBase - derved objects with the same orientation ( horizontal or vertical ) */
virtual bool considerForAutoscaling ( JKQTPBarGraphBase * other ) const override ;
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} ;
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/*! \brief This implements a horizontal bar graph with bars between \f$ x=\mbox{baseline} \f$ and \f$ x=f(y) \f$
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* and error indicator
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* \ ingroup jkqtplotter_barcharts
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*
* This works much the same as JKQTPBarHorizontalGraph . Here is an example output :
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* \ image html JKQTPBarHorizontalErrorGraph . png
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*
* \ see jkqtpstatAddXErrorBarGraph ( ) , JKQTPBarHorizontalGraph , \ ref JKQTPlotterBarcharts
*
*/
class JKQTPLOTTER_LIB_EXPORT JKQTPBarHorizontalErrorGraph : public JKQTPBarHorizontalGraph , public JKQTPXGraphErrors {
Q_OBJECT
public :
/** \brief class constructor */
JKQTPBarHorizontalErrorGraph ( JKQTBasePlotter * parent = nullptr ) ;
/** \brief class constructor */
JKQTPBarHorizontalErrorGraph ( JKQTPlotter * parent ) ;
/** \copydoc JKQTPGraph::usesColumn() */
virtual bool usesColumn ( int c ) const override ;
/** \brief get the maximum and minimum x-value of the graph
*
* The result is given in the two parameters which are call - by - reference parameters !
*/
virtual bool getXMinMax ( double & minx , double & maxx , double & smallestGreaterZero ) override ;
/** \brief returns the column that contains the bar height errors */
int getBarErrorColumn ( ) const ;
/** \brief returns the column that contains the lower bar height errors */
int getBarLowerErrorColumn ( ) const ;
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/** \brief returns the error style of the bar */
JKQTPErrorPlotstyle getBarErrorStyle ( ) const ;
/** \brief returns whether the errors of the bars are symmetric */
bool getBarErrorSymmetric ( ) const ;
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public Q_SLOTS :
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/** \brief sets whether the errors of the bars are symmetric */
void setBarErrorSymmetric ( bool __value ) ;
/** \brief sets the error style of the bar */
void setBarErrorStyle ( JKQTPErrorPlotstyle __value ) ;
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/** \brief sets the column that contains the bar height errors */
void setBarErrorColumn ( int column ) ;
/** \brief sets the column that contains the bar height errors */
void setBarErrorColumn ( size_t column ) ;
/** \brief sets the column that contains the bar height errors */
void setBarLowerErrorColumn ( int column ) ;
/** \brief sets the column that contains the bar height errors */
void setBarLowerErrorColumn ( size_t column ) ;
protected :
/** \brief this function is used to plot error inidcators before plotting the graphs. */
virtual void drawErrorsAfter ( JKQTPEnhancedPainter & painter ) override ;
} ;
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/*! \brief This implements a vertical bar graph with bars between \f$ y=\mbox{baseline} \f$ and \f$ y=f(x) \f$
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* Optionally several graphs of this type may be stacked on top of each other
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* \ ingroup jkqtplotter_barcharts
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*
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* Draw stacked barcharts by connecting several plots by calling \ c setStackedParent ( belowPlot ) for each plot
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*
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* \ image html JKQTPBarVerticalGraphStacked . png
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*
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* \ see JKQTPBarVerticalGraph , \ ref JKQTPlotterStackedBarChart
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*/
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class JKQTPLOTTER_LIB_EXPORT JKQTPBarVerticalStackableGraph : public JKQTPBarVerticalGraph {
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Q_OBJECT
public :
/** \brief class constructor */
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JKQTPBarVerticalStackableGraph ( JKQTBasePlotter * parent = nullptr ) ;
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/** \brief class constructor */
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JKQTPBarVerticalStackableGraph ( JKQTPlotter * parent ) ;
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/** \brief stacks this barchart upon the given \a parentGraph */
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void stackUpon ( JKQTPBarVerticalStackableGraph * parentGraph ) ;
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/** \brief unstacks this graph (i.e. deletes the parent graph in the stack) */
void dontStackUpon ( ) ;
/** \brief returns the stack parent graph, or \c nullptr */
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const JKQTPBarVerticalStackableGraph * getStackParent ( ) const ;
/** \brief returns the stack parent graph, or \c nullptr */
JKQTPBarVerticalStackableGraph * getStackParent ( ) ;
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protected :
/** \brief if set (!=nullptr), the current plot is drawn stacked onto this plot
*
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* draw stacked barcharts by connecting several plots by calling \ c setStackedParent ( belowPlot ) for each plot
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*/
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JKQTPBarVerticalStackableGraph * stackParent ;
/** \brief used to generate stacked plots: returns the upper boundary of the parent plot in a stack, for the index-th datapoint */
double getParentStackedMax ( int index ) const ;
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/** \brief returns \c true, if a stack parent is set (if available) */
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bool hasStackParent ( ) const ;
/** \brief used to generate stacked plots: returns the upper boundary of this plot in a stack, for the index-th datapoint */
double getStackedMax ( int index ) const ;
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} ;
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/*! \brief This implements a horizontal bar graph with bars between \f$ x=\mbox{baseline} \f$ and \f$ x=f(y) \f$
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* Optionally several graphs of this type may be stacked on top of each other
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* \ ingroup jkqtplotter_barcharts
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*
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* Draw stacked barcharts by connecting several plots by calling \ c setStackedParent ( belowPlot ) for each plot
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*
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* \ image html JKQTPBarHorizontalGraphStacked . png
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*
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*
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* \ see JKQTPBarHorizontalGraph , \ ref JKQTPlotterStackedBarChart
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*/
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class JKQTPLOTTER_LIB_EXPORT JKQTPBarHorizontalStackableGraph : public JKQTPBarHorizontalGraph {
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Q_OBJECT
public :
/** \brief class constructor */
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JKQTPBarHorizontalStackableGraph ( JKQTBasePlotter * parent = nullptr ) ;
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/** \brief class constructor */
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JKQTPBarHorizontalStackableGraph ( JKQTPlotter * parent ) ;
/** \brief stacks this barchart upon the given \a parentGraph */
void stackUpon ( JKQTPBarHorizontalStackableGraph * parentGraph ) ;
/** \brief unstacks this graph (i.e. deletes the parent graph in the stack) */
void dontStackUpon ( ) ;
/** \brief returns the stack parent graph, or \c nullptr */
const JKQTPBarHorizontalStackableGraph * getStackParent ( ) const ;
/** \brief returns the stack parent graph, or \c nullptr */
JKQTPBarHorizontalStackableGraph * getStackParent ( ) ;
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protected :
/** \brief if set (!=nullptr), the current plot is drawn stacked onto this plot
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*
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* draw stacked barcharts by connecting several plots by calling \ c setStackedParent ( belowPlot ) for each plot
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*/
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JKQTPBarHorizontalStackableGraph * stackParent ;
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/** \brief used to generate stacked plots: returns the upper boundary of the parent plot in a stack, for the index-th datapoint */
virtual double getParentStackedMax ( int index ) const override ;
/** \brief returns \c true, if a stack parent is set (if available) */
virtual bool hasStackParent ( ) const override ;
/** \brief used to generate stacked plots: returns the upper boundary of this plot in a stack, for the index-th datapoint */
double getStackedMax ( int index ) const ;
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} ;
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# endif // jkqtpgraphsbarchart_H