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VTK
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31 #ifndef vtkHigherOrderTetra_h
32 #define vtkHigherOrderTetra_h
36 #include "vtkCommonDataModelModule.h"
71 int EvaluatePosition(
const double x[3],
double closestPoint[3],
int& subId,
double pcoords[3],
72 double& dist2,
double weights[])
override;
73 void EvaluateLocation(
int& subId,
const double pcoords[3],
double x[3],
double* weights)
override;
80 int IntersectWithLine(
const double p1[3],
const double p2[3],
double tol,
double& t,
double x[3],
81 double pcoords[3],
int& subId)
override;
85 int subId,
const double pcoords[3],
const double* values,
int dim,
double* derivs)
override;
represent and manipulate 3D points
std::vector< vtkIdType > EdgeIds
double GetParametricDistance(const double pcoords[3]) override
Return the distance of the parametric coordinate provided to the cell.
std::vector< vtkIdType > BarycentricIndexMap
int GetCellDimension() override
Return the topological dimensional of the cell (0,1,2, or 3).
int RequiresInitialization() override
Some cells require initialization prior to access.
void SubtetraBarycentricPointIndices(vtkIdType cellIndex, vtkIdType(&pointBIndices)[4][4])
represent and manipulate point attribute data
void Derivatives(int subId, const double pcoords[3], const double *values, int dim, double *derivs) override
Compute derivatives given cell subId and parametric coordinates.
int IntersectWithLine(const double p1[3], const double p2[3], double tol, double &t, double x[3], double pcoords[3], int &subId) override
Intersect with a ray.
vtkCell * GetFace(int faceId) override=0
Return the face cell from the faceId of the cell.
void EvaluateLocation(int &subId, const double pcoords[3], double x[3], double *weights) override
Determine global coordinate (x[3]) from subId and parametric coordinates.
void SetEdgeIdsAndPoints(int edgeId, const std::function< void(const vtkIdType &)> &set_number_of_ids_and_points, const std::function< void(const vtkIdType &, const vtkIdType &)> &set_ids_and_points)
std::vector< vtkIdType > IndexMap
void Clip(double value, vtkDataArray *cellScalars, vtkIncrementalPointLocator *locator, vtkCellArray *polys, vtkPointData *inPd, vtkPointData *outPd, vtkCellData *inCd, vtkIdType cellId, vtkCellData *outCd, int insideOut) override
Cut (or clip) the cell based on the input cellScalars and the specified value.
void SetFaceIdsAndPoints(vtkHigherOrderTriangle *result, int edgeId, const std::function< void(const vtkIdType &)> &set_number_of_ids_and_points, const std::function< void(const vtkIdType &, const vtkIdType &)> &set_ids_and_points)
abstract superclass for arrays of numeric data
void PrintSelf(ostream &os, vtkIndent indent) override
Methods invoked by print to print information about the object including superclasses.
int EvaluatePosition(const double x[3], double closestPoint[3], int &subId, double pcoords[3], double &dist2, double weights[]) override
Given a point x[3] return inside(=1), outside(=0) cell, or (-1) computational problem encountered; ev...
static vtkIdType ComputeOrder(const vtkIdType nPoints)
void InterpolateDerivs(const double pcoords[3], double *derivs) override=0
void TetraFromOctahedron(vtkIdType cellIndex, const vtkIdType(&octBIndices)[6][4], vtkIdType(&tetraBIndices)[4][4])
static vtkIdType Index(const vtkIdType *bindex, vtkIdType order)
void Initialize() override
int GetNumberOfEdges() override
Return the number of edges in the cell.
int CellBoundary(int subId, const double pcoords[3], vtkIdList *pts) override
Given parametric coordinates of a point, return the closest cell boundary, and whether the point is i...
vtkIdType ComputeNumberOfSubtetras()
virtual vtkHigherOrderCurve * getEdgeCell()=0
virtual vtkHigherOrderTriangle * getFaceCell()=0
abstract class to specify cell behavior
std::vector< vtkIdType > SubtetraIndexMap
represent and manipulate cell attribute data
~vtkHigherOrderTetra() override
a simple class to control print indentation
object to represent cell connectivity
vtkIdType GetNumberOfSubtetras() const
Abstract class in support of both point location and point insertion.
list of point or cell ids
void ToBarycentricIndex(vtkIdType index, vtkIdType *bindex)
vtkSmartPointer< vtkPoints > PointParametricCoordinates
vtkIdType ToIndex(const vtkIdType *bindex)
void InterpolateFunctions(const double pcoords[3], double *weights) override=0
abstract superclass for non-linear cells
static void BarycentricIndex(vtkIdType index, vtkIdType *bindex, vtkIdType order)
void SetParametricCoords()
vtkCell * GetEdge(int edgeId) override=0
Return the edge cell from the edgeId of the cell.
int GetCellType() override=0
Return the type of cell.
int GetParametricCenter(double pcoords[3]) override
Return center of the cell in parametric coordinates.
dynamic, self-adjusting array of double
void JacobianInverse(const double pcoords[3], double **inverse, double *derivs)
int GetNumberOfFaces() override
Return the number of faces in the cell.
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.
vtkIdType NumberOfSubtetras
a 3D cell that represents a tetrahedron
vtkIdType GetOrder() const
double * GetParametricCoords() override
Return a contiguous array of parametric coordinates of the points defining this cell.
A 2D cell that represents an arbitrary order HigherOrder triangle.
A 3D cell that represents an arbitrary order HigherOrder tetrahedron.
int Triangulate(int index, vtkIdList *ptIds, vtkPoints *pts) override
Generate simplices of proper dimension.