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vtkWedge.h
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1 /*=========================================================================
2 
3  Program: Visualization Toolkit
4  Module: vtkWedge.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 =========================================================================*/
37 #ifndef vtkWedge_h
38 #define vtkWedge_h
39 
40 #include "vtkCommonDataModelModule.h" // For export macro
41 #include "vtkCell3D.h"
42 
43 class vtkLine;
44 class vtkTriangle;
45 class vtkQuad;
48 
49 class VTKCOMMONDATAMODEL_EXPORT vtkWedge : public vtkCell3D
50 {
51 public:
52  static vtkWedge *New();
53  vtkTypeMacro(vtkWedge,vtkCell3D);
54  void PrintSelf(ostream& os, vtkIndent indent) override;
55 
57 
60  void GetEdgePoints(int edgeId, int* &pts) override;
61  void GetFacePoints(int faceId, int* &pts) override;
63 
65 
68  int GetCellType() override {return VTK_WEDGE;}
69  int GetCellDimension() override {return 3;}
70  int GetNumberOfEdges() override {return 9;}
71  int GetNumberOfFaces() override {return 5;}
72  vtkCell *GetEdge(int edgeId) override;
73  vtkCell *GetFace(int faceId) override;
74  int CellBoundary(int subId, const double pcoords[3], vtkIdList *pts) override;
75  void Contour(double value, vtkDataArray *cellScalars,
77  vtkCellArray *lines, vtkCellArray *polys,
78  vtkPointData *inPd, vtkPointData *outPd,
79  vtkCellData *inCd, vtkIdType cellId, vtkCellData *outCd) override;
80  int EvaluatePosition(const double x[3], double closestPoint[3],
81  int& subId, double pcoords[3],
82  double& dist2, double weights[]) override;
83  void EvaluateLocation(int& subId, const double pcoords[3], double x[3],
84  double *weights) override;
85  int IntersectWithLine(const double p1[3], const double p2[3], double tol, double& t,
86  double x[3], double pcoords[3], int& subId) override;
87  int Triangulate(int index, vtkIdList *ptIds, vtkPoints *pts) override;
88  void Derivatives(int subId, const double pcoords[3], const double *values,
89  int dim, double *derivs) override;
90  double *GetParametricCoords() override;
92 
100  static int* GetTriangleCases(int caseId);
101 
105  int GetParametricCenter(double pcoords[3]) override;
106 
110  static void InterpolationFunctions(const double pcoords[3], double weights[6]);
114  static void InterpolationDerivs(const double pcoords[3], double derivs[18]);
116 
120  void InterpolateFunctions(const double pcoords[3], double weights[6]) override
121  {
122  vtkWedge::InterpolationFunctions(pcoords,weights);
123  }
124  void InterpolateDerivs(const double pcoords[3], double derivs[18]) override
125  {
126  vtkWedge::InterpolationDerivs(pcoords,derivs);
127  }
128  int JacobianInverse(const double pcoords[3], double **inverse, double derivs[18]);
130 
132 
136  static int *GetEdgeArray(int edgeId) VTK_SIZEHINT(2);
137  static int *GetFaceArray(int faceId) VTK_SIZEHINT(4);
139 
140 protected:
141  vtkWedge();
142  ~vtkWedge() override;
143 
147 
148 private:
149  vtkWedge(const vtkWedge&) = delete;
150  void operator=(const vtkWedge&) = delete;
151 };
152 
153 inline int vtkWedge::GetParametricCenter(double pcoords[3])
154 {
155  pcoords[0] = pcoords[1] = 0.333333;
156  pcoords[2] = 0.5;
157  return 0;
158 }
159 
160 #endif
void Contour(double value, vtkDataArray *cellScalars, vtkIncrementalPointLocator *locator, vtkCellArray *verts, vtkCellArray *lines, vtkCellArray *polys, vtkPointData *inPd, vtkPointData *outPd, vtkCellData *inCd, vtkIdType cellId, vtkCellData *outCd) override
Generate contouring primitives.
represent and manipulate point attribute data
Definition: vtkPointData.h:37
represent and manipulate cell attribute data
Definition: vtkCellData.h:38
Abstract class in support of both point location and point insertion.
virtual int Triangulate(int index, vtkIdList *ptIds, vtkPoints *pts)=0
Generate simplices of proper dimension.
a cell that represents a 2D quadrilateral
Definition: vtkQuad.h:41
int vtkIdType
Definition: vtkType.h:347
abstract class to specify 3D cell interface
Definition: vtkCell3D.h:38
void InterpolateFunctions(const double pcoords[3], double weights[6]) override
Compute the interpolation functions/derivatives (aka shape functions/derivatives) ...
Definition: vtkWedge.h:120
virtual int CellBoundary(int subId, const double pcoords[3], vtkIdList *pts)=0
Given parametric coordinates of a point, return the closest cell boundary, and whether the point is i...
static void InterpolationFunctions(const double pcoords[3], double weights[6])
cell represents a 1D line
Definition: vtkLine.h:35
abstract class to specify cell behavior
Definition: vtkCell.h:59
static void InterpolationDerivs(const double pcoords[3], double derivs[18])
virtual void EvaluateLocation(int &subId, const double pcoords[3], double x[3], double *weights)=0
Determine global coordinate (x[3]) from subId and parametric coordinates.
int GetCellType() override
See the vtkCell API for descriptions of these methods.
Definition: vtkWedge.h:68
int GetCellDimension() override
See the vtkCell API for descriptions of these methods.
Definition: vtkWedge.h:69
a simple class to control print indentation
Definition: vtkIndent.h:39
list of point or cell ids
Definition: vtkIdList.h:36
int GetNumberOfEdges() override
See the vtkCell API for descriptions of these methods.
Definition: vtkWedge.h:70
dataset represents arbitrary combinations of all possible cell types
abstract superclass for arrays of numeric data
Definition: vtkDataArray.h:54
virtual void GetFacePoints(int faceId, int *&pts)=0
Get the list of vertices that define a face.
vtkLine * Line
Definition: vtkWedge.h:144
#define VTK_SIZEHINT(...)
vtkQuad * Quad
Definition: vtkWedge.h:146
int GetNumberOfFaces() override
See the vtkCell API for descriptions of these methods.
Definition: vtkWedge.h:71
virtual vtkCell * GetFace(int faceId)=0
Return the face cell from the faceId of the cell.
virtual int EvaluatePosition(const double x[3], double closestPoint[3], int &subId, double pcoords[3], double &dist2, double weights[])=0
Given a point x[3] return inside(=1), outside(=0) cell, or (-1) computational problem encountered; ev...
object to represent cell connectivity
Definition: vtkCellArray.h:50
virtual vtkCell * GetEdge(int edgeId)=0
Return the edge cell from the edgeId of the cell.
void InterpolateDerivs(const double pcoords[3], double derivs[18]) override
Compute the interpolation functions/derivatives (aka shape functions/derivatives) ...
Definition: vtkWedge.h:124
a cell that represents a triangle
Definition: vtkTriangle.h:41
int GetParametricCenter(double pcoords[3]) override
Return the center of the wedge in parametric coordinates.
Definition: vtkWedge.h:153
virtual void Derivatives(int subId, const double pcoords[3], const double *values, int dim, double *derivs)=0
Compute derivatives given cell subId and parametric coordinates.
void PrintSelf(ostream &os, vtkIndent indent) override
Methods invoked by print to print information about the object including superclasses.
static vtkObject * New()
Create an object with Debug turned off, modified time initialized to zero, and reference counting on...
virtual double * GetParametricCoords())
Return a contiguous array of parametric coordinates of the points defining this cell.
virtual int GetParametricCenter(double pcoords[3])
Return center of the cell in parametric coordinates.
vtkTriangle * Triangle
Definition: vtkWedge.h:145
virtual int IntersectWithLine(const double p1[3], const double p2[3], double tol, double &t, double x[3], double pcoords[3], int &subId)=0
Intersect with a ray.
virtual void GetEdgePoints(int edgeId, int *&pts)=0
Get the pair of vertices that define an edge.
a 3D cell that represents a linear wedge
Definition: vtkWedge.h:49
represent and manipulate 3D points
Definition: vtkPoints.h:39