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VTK
9.1.0
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132 #ifndef vtkTriangle_h
133 #define vtkTriangle_h
136 #include "vtkCommonDataModelModule.h"
170 int EvaluatePosition(
const double x[3],
double closestPoint[3],
int& subId,
double pcoords[3],
171 double& dist2,
double weights[])
override;
172 void EvaluateLocation(
int& subId,
const double pcoords[3],
double x[3],
double* weights)
override;
175 int subId,
const double pcoords[3],
const double* values,
int dim,
double* derivs)
override;
224 int IntersectWithLine(
const double p1[3],
const double p2[3],
double tol,
double& t,
double x[3],
225 double pcoords[3],
int& subId)
override;
241 static void TriangleCenter(
242 const double p1[3],
const double p2[3],
const double p3[3],
double center[3]);
248 static double TriangleArea(
const double p1[3],
const double p2[3],
const double p3[3]);
257 const double p1[2],
const double p2[2],
const double p3[2],
double center[2]);
272 const double x3[2],
double bcoords[3]);
279 static int ProjectTo2D(
const double x1[3],
const double x2[3],
const double x3[3],
double v1[2],
280 double v2[2],
double v3[2]);
291 static void ComputeNormal(
292 const double v1[3],
const double v2[3],
const double v3[3],
double n[3]);
297 static void ComputeNormalDirection(
298 const double v1[3],
const double v2[3],
const double v3[3],
double n[3]);
306 const double p2[3],
const double q2[3],
const double r2[3]);
315 const double x3[3],
const double tol2);
325 const double x1[3],
const double x2[3],
const double x3[3],
double quadric[4][4]);
327 const double x1[3],
const double x2[3],
const double x3[3],
vtkQuadric* quadric);
350 pcoords[0] = pcoords[1] = 1. / 3;
357 const double v1[3],
const double v2[3],
const double v3[3],
double n[3])
359 double ax, ay, az, bx, by, bz;
369 n[0] = (ay * bz - az * by);
370 n[1] = (az * bx - ax * bz);
371 n[2] = (ax * by - ay * bx);
376 const double v1[3],
const double v2[3],
const double v3[3],
double n[3])
382 if ((
length = sqrt((n[0] * n[0] + n[1] * n[1] + n[2] * n[2]))) != 0.0)
392 const double p1[3],
const double p2[3],
const double p3[3],
double center[3])
394 center[0] = (p1[0] + p2[0] + p3[0]) / 3.0;
395 center[1] = (p1[1] + p2[1] + p3[1]) / 3.0;
396 center[2] = (p1[2] + p2[2] + p3[2]) / 3.0;
represent and manipulate 3D points
static double Circumcircle(const double p1[2], const double p2[2], const double p3[2], double center[2])
Compute the circumcenter (center[3]) and radius squared (method return value) of a triangle defined b...
static void ComputeNormal(vtkPoints *p, int numPts, const vtkIdType *pts, double n[3])
Compute the triangle normal from a points list, and a list of point ids that index into the points li...
static int TrianglesIntersect(const double p1[3], const double q1[3], const double r1[3], const double p2[3], const double q2[3], const double r2[3])
const vtkIdType * GetEdgeArray(vtkIdType edgeId)
Return the ids of the vertices defining edge (edgeId).
static float Norm(const float *x, int n)
Compute the norm of n-vector.
double GetParametricDistance(const double pcoords[3]) override
Return the distance of the parametric coordinate provided to the cell.
static void TriangleCenter(const double p1[3], const double p2[3], const double p3[3], double center[3])
Compute the center of the triangle.
represent and manipulate point attribute data
static vtkTriangle * New()
static bool ComputeCentroid(vtkPoints *points, const vtkIdType *pointIds, double centroid[3])
Get the centroid of the triangle.
void InterpolateFunctions(const double pcoords[3], double sf[3]) override
Compute the interpolation functions/derivatives (aka shape functions/derivatives)
void Clip(double value, vtkDataArray *cellScalars, vtkIncrementalPointLocator *locator, vtkCellArray *polys, vtkPointData *inPd, vtkPointData *outPd, vtkCellData *inCd, vtkIdType cellId, vtkCellData *outCd, int insideOut) override
Clip this triangle using scalar value provided.
int GetParametricCenter(double pcoords[3]) override
Return the center of the triangle in parametric coordinates.
vtkCell * GetFace(int) override
See the vtkCell API for descriptions of these methods.
abstract superclass for arrays of numeric data
static int ProjectTo2D(const double x1[3], const double x2[3], const double x3[3], double v1[2], double v2[2], double v3[2])
Project triangle defined in 3D to 2D coordinates.
int GetCellType() override
See the vtkCell API for descriptions of these methods.
evaluate implicit quadric function
cell represents a 1D line
int GetNumberOfFaces() override
See the vtkCell API for descriptions of these methods.
static void InterpolationFunctions(const double pcoords[3], double sf[3])
abstract class to specify cell behavior
represent and manipulate cell attribute data
a simple class to control print indentation
static int BarycentricCoords(const double x[2], const double x1[2], const double x2[2], const double x3[2], double bcoords[3])
Given a 2D point x[2], determine the barycentric coordinates of the point.
object to represent cell connectivity
static int PointInTriangle(const double x[3], const double x1[3], const double x2[3], const double x3[3], const double tol2)
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
See the vtkCell API for descriptions of these methods.
Abstract class in support of both point location and point insertion.
list of point or cell ids
static void ComputeQuadric(const double x1[3], const double x2[3], const double x3[3], double quadric[4][4])
Calculate the error quadric for this triangle.
void PrintSelf(ostream &os, vtkIndent indent) override
Methods invoked by print to print information about the object including superclasses.
int Triangulate(int index, vtkIdList *ptIds, vtkPoints *pts) override
See the vtkCell API for descriptions of these methods.
void EvaluateLocation(int &subId, const double pcoords[3], double x[3], double *weights) override
See the vtkCell API for descriptions of these methods.
a cell that represents a triangle
void InterpolateDerivs(const double pcoords[3], double derivs[6]) override
Compute the interpolation functions/derivatives (aka shape functions/derivatives)
int CellBoundary(int subId, const double pcoords[3], vtkIdList *pts) override
See the vtkCell API for descriptions of these methods.
static void ComputeNormalDirection(const double v1[3], const double v2[3], const double v3[3], double n[3])
Compute the (unnormalized) triangle normal direction from three points.
int EvaluatePosition(const double x[3], double closestPoint[3], int &subId, double pcoords[3], double &dist2, double weights[]) override
See the vtkCell API for descriptions of these methods.
virtual int GetParametricCenter(double pcoords[3])
Return center of the cell in parametric coordinates.
int GetCellDimension() override
See the vtkCell API for descriptions of these methods.
static double TriangleArea(const double p1[3], const double p2[3], const double p3[3])
Compute the area of a triangle in 3D.
static void ComputeQuadric(const double x1[3], const double x2[3], const double x3[3], vtkQuadric *quadric)
Calculate the error quadric for this triangle.
void Derivatives(int subId, const double pcoords[3], const double *values, int dim, double *derivs) override
See the vtkCell API for descriptions of these methods.
int GetNumberOfEdges() override
See the vtkCell API for descriptions of these methods.
double ComputeArea()
A convenience function to compute the area of a vtkTriangle.
double * GetParametricCoords() override
See the vtkCell API for descriptions of these methods.
int IntersectWithLine(const double p1[3], const double p2[3], double tol, double &t, double x[3], double pcoords[3], int &subId) override
Given a line defined by two points p1 and p2, determine whether it intersects the triangle.
vtkCell * GetEdge(int edgeId) override
Get the edge specified by edgeId (range 0 to 2) and return that edge's coordinates.
static void InterpolationDerivs(const double pcoords[3], double derivs[6])