forked from Kitware/VTK
-
Notifications
You must be signed in to change notification settings - Fork 5
/
Copy pathvtkPolyVertex.h
89 lines (72 loc) · 3.24 KB
/
vtkPolyVertex.h
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
/*=========================================================================
Program: Visualization Toolkit
Module: vtkPolyVertex.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.
=========================================================================*/
// .NAME vtkPolyVertex - cell represents a set of 0D vertices
// .SECTION Description
// vtkPolyVertex is a concrete implementation of vtkCell to represent a
// set of 3D vertices.
#ifndef __vtkPolyVertex_h
#define __vtkPolyVertex_h
#include "vtkCell.h"
class vtkVertex;
class vtkIncrementalPointLocator;
class VTK_FILTERING_EXPORT vtkPolyVertex : public vtkCell
{
public:
static vtkPolyVertex *New();
vtkTypeMacro(vtkPolyVertex,vtkCell);
void PrintSelf(ostream& os, vtkIndent indent);
// Description:
// See the vtkCell API for descriptions of these methods.
int GetCellType() {return VTK_POLY_VERTEX;};
int GetCellDimension() {return 0;};
int GetNumberOfEdges() {return 0;};
int GetNumberOfFaces() {return 0;};
vtkCell *GetEdge(int vtkNotUsed(edgeId)) {return 0;};
vtkCell *GetFace(int vtkNotUsed(faceId)) {return 0;};
int CellBoundary(int subId, double pcoords[3], vtkIdList *pts);
void Contour(double value, vtkDataArray *cellScalars,
vtkIncrementalPointLocator *locator, vtkCellArray *verts,
vtkCellArray *lines, vtkCellArray *polys,
vtkPointData *inPd, vtkPointData *outPd,
vtkCellData *inCd, vtkIdType cellId, vtkCellData *outCd);
void Clip(double value, vtkDataArray *cellScalars,
vtkIncrementalPointLocator *locator, vtkCellArray *verts,
vtkPointData *inPd, vtkPointData *outPd,
vtkCellData *inCd, vtkIdType cellId, vtkCellData *outCd,
int insideOut);
int EvaluatePosition(double x[3], double* closestPoint,
int& subId, double pcoords[3],
double& dist2, double *weights);
void EvaluateLocation(int& subId, double pcoords[3], double x[3],
double *weights);
int IntersectWithLine(double p1[3], double p2[3], double tol, double& t,
double x[3], double pcoords[3], int& subId);
int Triangulate(int index, vtkIdList *ptIds, vtkPoints *pts);
void Derivatives(int subId, double pcoords[3], double *values,
int dim, double *derivs);
int IsPrimaryCell() {return 0;}
// Description:
// Return the center of the point cloud in parametric coordinates.
int GetParametricCenter(double pcoords[3]);
// Description:
// Compute the interpolation functions/derivatives
// (aka shape functions/derivatives)
virtual void InterpolateFunctions(double pcoords[3], double *weights);
virtual void InterpolateDerivs(double pcoords[3], double *derivs);
protected:
vtkPolyVertex();
~vtkPolyVertex();
vtkVertex *Vertex;
private:
vtkPolyVertex(const vtkPolyVertex&); // Not implemented.
void operator=(const vtkPolyVertex&); // Not implemented.
};
#endif