VTK
vtkDiscreteFlyingEdgesClipper2D.h
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1 /*=========================================================================
2 
3  Program: Visualization Toolkit
4  Module: vtkDiscreteFlyingEdgesClipper2D.h
5 
6  Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
7  All rights reserved.
8  See Copyright.txt or http://www.kitware.com/Copyright.htm for details.
9 
10  This software is distributed WITHOUT ANY WARRANTY; without even
11  the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
12  PURPOSE. See the above copyright notice for more information.
13 
14 =========================================================================*/
54 #ifndef vtkDiscreteFlyingEdgesClipper2D_h
55 #define vtkDiscreteFlyingEdgesClipper2D_h
56 
57 #include "vtkFiltersGeneralModule.h" // For export macro
58 #include "vtkPolyDataAlgorithm.h"
59 #include "vtkContourValues.h" // Needed for direct access to ContourValues
60 
61 class vtkImageData;
62 
63 class VTKFILTERSGENERAL_EXPORT vtkDiscreteFlyingEdgesClipper2D : public vtkPolyDataAlgorithm
64 {
65 public:
67 
72  void PrintSelf(ostream& os, vtkIndent indent) override;
74 
79  vtkMTimeType GetMTime() override;
80 
88  void SetValue(int i, double value)
89  {this->ContourValues->SetValue(i,value);}
90 
94  double GetValue(int i)
95  {return this->ContourValues->GetValue(i);}
96 
101  double *GetValues()
102  {return this->ContourValues->GetValues();}
103 
109  void GetValues(double *contourValues)
110  {this->ContourValues->GetValues(contourValues);}
111 
117  void SetNumberOfContours(int number)
118  {this->ContourValues->SetNumberOfContours(number);}
119 
124  {return this->ContourValues->GetNumberOfContours();}
125 
127 
131  void GenerateValues(int numContours, double range[2])
132  {this->ContourValues->GenerateValues(numContours, range);}
133  void GenerateValues(int numContours, double rangeStart, double rangeEnd)
134  {this->ContourValues->GenerateValues(numContours, rangeStart, rangeEnd);}
136 
138 
142  vtkSetMacro(ComputeScalars,int);
143  vtkGetMacro(ComputeScalars,int);
144  vtkBooleanMacro(ComputeScalars,int);
146 
148 
152  vtkSetMacro(ArrayComponent, int);
153  vtkGetMacro(ArrayComponent, int);
155 
156 protected:
159 
161  vtkInformationVector *) override;
162  int FillInputPortInformation(int port, vtkInformation *info) override;
163 
167 
168 private:
170  void operator=(const vtkDiscreteFlyingEdgesClipper2D&) = delete;
171 };
172 
173 
174 #endif
helper object to manage setting and generating contour values
void SetNumberOfContours(int number)
Set the number of contours to place into the list.
Store vtkAlgorithm input/output information.
vtkTypeUInt32 vtkMTimeType
Definition: vtkType.h:302
virtual int RequestData(vtkInformation *request, vtkInformationVector **inputVector, vtkInformationVector *outputVector)
This is called by the superclass.
int GetNumberOfContours()
Get the number of contours in the list of contour values.
void GenerateValues(int numContours, double range[2])
Generate numContours equally spaced contour values between the specified range.
static vtkPolyDataAlgorithm * New()
double * GetValues()
Get a pointer to an array of contour values.
Superclass for algorithms that produce only polydata as output.
a simple class to control print indentation
Definition: vtkIndent.h:39
topologically and geometrically regular array of data
Definition: vtkImageData.h:45
virtual vtkMTimeType GetMTime()
Return this object's modified time.
void SetValue(int i, double value)
Set a particular contour value at contour number i.
double GetValue(int i)
Get the ith contour value.
int FillInputPortInformation(int port, vtkInformation *info) override
Fill the input port information objects for this algorithm.
void GetValues(double *contourValues)
Fill a supplied list with contour values.
Store zero or more vtkInformation instances.
void GenerateValues(int numContours, double rangeStart, double rangeEnd)
Generate numContours equally spaced contour values between the specified range.
void PrintSelf(ostream &os, vtkIndent indent) override
Methods invoked by print to print information about the object including superclasses.
generate filled regions from segmented 2D image data