/usr/include/vtk-7.1/vtkPieChartActor.h is in libvtk7-dev 7.1.1+dfsg1-2.
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Program: Visualization Toolkit
Module: vtkPieChartActor.h
Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
All rights reserved.
See Copyright.txt or http://www.kitware.com/Copyright.htm for details.
This software is distributed WITHOUT ANY WARRANTY; without even
the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
PURPOSE. See the above copyright notice for more information.
=========================================================================*/
/**
* @class vtkPieChartActor
* @brief create a pie chart from an array
*
* vtkPieChartActor generates a pie chart from an array of numbers defined in
* field data (a vtkDataObject). To use this class, you must specify an input
* data object. You'll probably also want to specify the position of the plot
* be setting the Position and Position2 instance variables, which define a
* rectangle in which the plot lies. There are also many other instance
* variables that control the look of the plot includes its title,
* and legend.
*
* Set the text property/attributes of the title and the labels through the
* vtkTextProperty objects associated with these components.
*
* @sa
* vtkParallelCoordinatesActor vtkXYPlotActor2D vtkSpiderPlotActor
*/
#ifndef vtkPieChartActor_h
#define vtkPieChartActor_h
#include "vtkRenderingAnnotationModule.h" // For export macro
#include "vtkActor2D.h"
class vtkAlgorithmOutput;
class vtkAxisActor2D;
class vtkDataObject;
class vtkPolyData;
class vtkPolyDataMapper2D;
class vtkTextMapper;
class vtkTextProperty;
class vtkLegendBoxActor;
class vtkGlyphSource2D;
class vtkPieChartActorConnection;
class vtkPieceLabelArray;
class VTKRENDERINGANNOTATION_EXPORT vtkPieChartActor : public vtkActor2D
{
public:
//@{
/**
* Standard methods for type information and printing.
*/
vtkTypeMacro(vtkPieChartActor,vtkActor2D);
void PrintSelf(ostream& os, vtkIndent indent);
//@}
/**
* Instantiate this class.
*/
static vtkPieChartActor *New();
//@{
/**
* Set the input to the pie chart actor. SetInputData()
* does not connect the pipeline whereas SetInputConnection()
* does.
*/
virtual void SetInputData(vtkDataObject*);
virtual void SetInputConnection(vtkAlgorithmOutput*);
//@}
/**
* Get the input data object to this actor.
*/
virtual vtkDataObject* GetInput();
//@{
/**
* Enable/Disable the display of a plot title.
*/
vtkSetMacro(TitleVisibility, int);
vtkGetMacro(TitleVisibility, int);
vtkBooleanMacro(TitleVisibility, int);
//@}
//@{
/**
* Set/Get the title of the pie chart.
*/
vtkSetStringMacro(Title);
vtkGetStringMacro(Title);
//@}
//@{
/**
* Set/Get the title text property. The property controls the
* appearance of the plot title.
*/
virtual void SetTitleTextProperty(vtkTextProperty *p);
vtkGetObjectMacro(TitleTextProperty,vtkTextProperty);
//@}
//@{
/**
* Enable/Disable the display of pie piece labels.
*/
vtkSetMacro(LabelVisibility, int);
vtkGetMacro(LabelVisibility, int);
vtkBooleanMacro(LabelVisibility, int);
//@}
//@{
/**
* Set/Get the labels text property. This controls the appearance
* of all pie piece labels.
*/
virtual void SetLabelTextProperty(vtkTextProperty *p);
vtkGetObjectMacro(LabelTextProperty,vtkTextProperty);
//@}
//@{
/**
* Specify colors for each piece of pie. If not specified, they are
* automatically generated.
*/
void SetPieceColor(int i, double r, double g, double b);
void SetPieceColor(int i, const double color[3])
{ this->SetPieceColor(i, color[0], color[1], color[2]); }
double *GetPieceColor(int i);
//@}
//@{
/**
* Specify the names for each piece of pie. not specified, then an integer
* number is automatically generated.
*/
void SetPieceLabel(const int i, const char *);
const char* GetPieceLabel(int i);
//@}
//@{
/**
* Enable/Disable the creation of a legend. If on, the legend labels will
* be created automatically unless the per plot legend symbol has been
* set.
*/
vtkSetMacro(LegendVisibility, int);
vtkGetMacro(LegendVisibility, int);
vtkBooleanMacro(LegendVisibility, int);
//@}
//@{
/**
* Retrieve handles to the legend box. This is useful if you would like
* to manually control the legend appearance.
*/
vtkGetObjectMacro(LegendActor,vtkLegendBoxActor);
//@}
//@{
/**
* Draw the pie plot.
*/
int RenderOverlay(vtkViewport*);
int RenderOpaqueGeometry(vtkViewport*);
virtual int RenderTranslucentPolygonalGeometry(vtkViewport* ) {return 0;}
//@}
/**
* Does this prop have some translucent polygonal geometry?
*/
virtual int HasTranslucentPolygonalGeometry();
/**
* Release any graphics resources that are being consumed by this actor.
* The parameter window could be used to determine which graphic
* resources to release.
*/
void ReleaseGraphicsResources(vtkWindow *);
protected:
vtkPieChartActor();
~vtkPieChartActor();
private:
vtkPieChartActorConnection* ConnectionHolder;
vtkIdType ArrayNumber;
vtkIdType ComponentNumber;
int TitleVisibility; // Should I see the title?
char *Title; // The title string
vtkTextProperty *TitleTextProperty;
int LabelVisibility;
vtkTextProperty *LabelTextProperty;
vtkPieceLabelArray *Labels;
int LegendVisibility;
vtkLegendBoxActor *LegendActor;
vtkGlyphSource2D *GlyphSource;
// Local variables needed to plot
vtkIdType N; // The number of values
double Total; // The total of all values in the data array
double *Fractions; // The fraction of the pie
vtkTextMapper **PieceMappers; //a label for each radial spoke
vtkActor2D **PieceActors;
vtkTextMapper *TitleMapper;
vtkActor2D *TitleActor;
vtkPolyData *WebData; // The web of the spider plot
vtkPolyDataMapper2D *WebMapper;
vtkActor2D *WebActor;
vtkPolyData *PlotData; // The lines drawn within the axes
vtkPolyDataMapper2D *PlotMapper;
vtkActor2D *PlotActor;
vtkTimeStamp BuildTime;
double Center[3];
double Radius;
int LastPosition[2];
int LastPosition2[2];
double P1[3];
double P2[3];
void Initialize();
int PlaceAxes(vtkViewport *viewport, int *size);
int BuildPlot(vtkViewport*);
private:
vtkPieChartActor(const vtkPieChartActor&) VTK_DELETE_FUNCTION;
void operator=(const vtkPieChartActor&) VTK_DELETE_FUNCTION;
};
#endif
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