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vtkGenericCell Class Reference

provides thread-safe access to cells More...

#include <vtkGenericCell.h>

Inheritance diagram for vtkGenericCell:
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Collaboration diagram for vtkGenericCell:
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Public Types

typedef vtkCell Superclass
 
- Public Types inherited from vtkCell
typedef vtkObject Superclass
 
- Public Types inherited from vtkObject
typedef vtkObjectBase Superclass
 

Public Member Functions

virtual int IsA (const char *type)
 
vtkGenericCellNewInstance () const
 
void PrintSelf (ostream &os, vtkIndent indent)
 
void SetPoints (vtkPoints *points)
 
void SetPointIds (vtkIdList *pointIds)
 
void ShallowCopy (vtkCell *c)
 
void DeepCopy (vtkCell *c)
 
int GetCellType ()
 
int GetCellDimension ()
 
int IsLinear ()
 
int RequiresInitialization ()
 
void Initialize ()
 
int RequiresExplicitFaceRepresentation ()
 
void SetFaces (vtkIdType *faces)
 
vtkIdTypeGetFaces ()
 
int GetNumberOfEdges ()
 
int GetNumberOfFaces ()
 
vtkCellGetEdge (int edgeId)
 
vtkCellGetFace (int faceId)
 
int CellBoundary (int subId, double pcoords[3], vtkIdList *pts)
 
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)
 
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 *connectivity, vtkPointData *inPd, vtkPointData *outPd, vtkCellData *inCd, vtkIdType cellId, vtkCellData *outCd, int insideOut)
 
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 GetParametricCenter (double pcoords[3])
 
doubleGetParametricCoords ()
 
int IsPrimaryCell ()
 
virtual void InterpolateFunctions (double pcoords[3], double *weights)
 
virtual void InterpolateDerivs (double pcoords[3], double *derivs)
 
void SetCellType (int cellType)
 
void SetCellTypeToEmptyCell ()
 
void SetCellTypeToVertex ()
 
void SetCellTypeToPolyVertex ()
 
void SetCellTypeToLine ()
 
void SetCellTypeToPolyLine ()
 
void SetCellTypeToTriangle ()
 
void SetCellTypeToTriangleStrip ()
 
void SetCellTypeToPolygon ()
 
void SetCellTypeToPixel ()
 
void SetCellTypeToQuad ()
 
void SetCellTypeToTetra ()
 
void SetCellTypeToVoxel ()
 
void SetCellTypeToHexahedron ()
 
void SetCellTypeToWedge ()
 
void SetCellTypeToPyramid ()
 
void SetCellTypeToPentagonalPrism ()
 
void SetCellTypeToHexagonalPrism ()
 
void SetCellTypeToPolyhedron ()
 
void SetCellTypeToConvexPointSet ()
 
void SetCellTypeToQuadraticEdge ()
 
void SetCellTypeToCubicLine ()
 
void SetCellTypeToQuadraticTriangle ()
 
void SetCellTypeToBiQuadraticTriangle ()
 
void SetCellTypeToQuadraticQuad ()
 
void SetCellTypeToQuadraticPolygon ()
 
void SetCellTypeToQuadraticTetra ()
 
void SetCellTypeToQuadraticHexahedron ()
 
void SetCellTypeToQuadraticWedge ()
 
void SetCellTypeToQuadraticPyramid ()
 
void SetCellTypeToQuadraticLinearQuad ()
 
void SetCellTypeToBiQuadraticQuad ()
 
void SetCellTypeToQuadraticLinearWedge ()
 
void SetCellTypeToBiQuadraticQuadraticWedge ()
 
void SetCellTypeToTriQuadraticHexahedron ()
 
void SetCellTypeToBiQuadraticQuadraticHexahedron ()
 
- Public Member Functions inherited from vtkCell
vtkCellNewInstance () const
 
void Initialize (int npts, vtkIdType *pts, vtkPoints *p)
 
virtual int IsExplicitCell ()
 
virtual void SetFaces (vtkIdType *vtkNotUsed(faces))
 
vtkPointsGetPoints ()
 
vtkIdType GetNumberOfPoints ()
 
vtkIdListGetPointIds ()
 
vtkIdType GetPointId (int ptId)
 
void GetBounds (double bounds[6])
 
doubleGetBounds ()
 
double GetLength2 ()
 
virtual double GetParametricDistance (double pcoords[3])
 
virtual void InterpolateFunctions (double vtkNotUsed(pcoords)[3], double *vtkNotUsed(weight))
 
virtual void InterpolateDerivs (double vtkNotUsed(pcoords)[3], double *vtkNotUsed(derivs))
 
- Public Member Functions inherited from vtkObject
vtkObjectNewInstance () const
 
virtual void DebugOn ()
 
virtual void DebugOff ()
 
bool GetDebug ()
 
void SetDebug (bool debugFlag)
 
virtual void Modified ()
 
virtual unsigned long GetMTime ()
 
unsigned long AddObserver (unsigned long event, vtkCommand *, float priority=0.0f)
 
unsigned long AddObserver (const char *event, vtkCommand *, float priority=0.0f)
 
vtkCommandGetCommand (unsigned long tag)
 
void RemoveObserver (vtkCommand *)
 
void RemoveObservers (unsigned long event, vtkCommand *)
 
void RemoveObservers (const char *event, vtkCommand *)
 
int HasObserver (unsigned long event, vtkCommand *)
 
int HasObserver (const char *event, vtkCommand *)
 
void RemoveObserver (unsigned long tag)
 
void RemoveObservers (unsigned long event)
 
void RemoveObservers (const char *event)
 
void RemoveAllObservers ()
 
int HasObserver (unsigned long event)
 
int HasObserver (const char *event)
 
template<class U , class T >
unsigned long AddObserver (unsigned long event, U observer, void(T::*callback)(), float priority=0.0f)
 
template<class U , class T >
unsigned long AddObserver (unsigned long event, U observer, void(T::*callback)(vtkObject *, unsigned long, void *), float priority=0.0f)
 
template<class U , class T >
unsigned long AddObserver (unsigned long event, U observer, bool(T::*callback)(vtkObject *, unsigned long, void *), float priority=0.0f)
 
int InvokeEvent (unsigned long event, void *callData)
 
int InvokeEvent (const char *event, void *callData)
 
int InvokeEvent (unsigned long event)
 
int InvokeEvent (const char *event)
 
- Public Member Functions inherited from vtkObjectBase
const char * GetClassName () const
 
virtual void Delete ()
 
virtual void FastDelete ()
 
void Print (ostream &os)
 
virtual void PrintHeader (ostream &os, vtkIndent indent)
 
virtual void PrintTrailer (ostream &os, vtkIndent indent)
 
virtual void Register (vtkObjectBase *o)
 
virtual void UnRegister (vtkObjectBase *o)
 
int GetReferenceCount ()
 
void SetReferenceCount (int)
 
void PrintRevisions (ostream &)
 

Static Public Member Functions

static vtkGenericCellNew ()
 
static int IsTypeOf (const char *type)
 
static vtkGenericCellSafeDownCast (vtkObjectBase *o)
 
static vtkCellInstantiateCell (int cellType)
 
- Static Public Member Functions inherited from vtkCell
static int IsTypeOf (const char *type)
 
static vtkCellSafeDownCast (vtkObjectBase *o)
 
- Static Public Member Functions inherited from vtkObject
static int IsTypeOf (const char *type)
 
static vtkObjectSafeDownCast (vtkObjectBase *o)
 
static vtkObjectNew ()
 
static void BreakOnError ()
 
static void SetGlobalWarningDisplay (int val)
 
static void GlobalWarningDisplayOn ()
 
static void GlobalWarningDisplayOff ()
 
static int GetGlobalWarningDisplay ()
 
- Static Public Member Functions inherited from vtkObjectBase
static int IsTypeOf (const char *name)
 
static vtkObjectBaseNew ()
 

Protected Member Functions

virtual vtkObjectBaseNewInstanceInternal () const
 
 vtkGenericCell ()
 
 ~vtkGenericCell ()
 
- Protected Member Functions inherited from vtkCell
 vtkCell ()
 
 ~vtkCell ()
 
- Protected Member Functions inherited from vtkObject
 vtkObject ()
 
virtual ~vtkObject ()
 
virtual void RegisterInternal (vtkObjectBase *, int check)
 
virtual void UnRegisterInternal (vtkObjectBase *, int check)
 
void InternalGrabFocus (vtkCommand *mouseEvents, vtkCommand *keypressEvents=NULL)
 
void InternalReleaseFocus ()
 
- Protected Member Functions inherited from vtkObjectBase
 vtkObjectBase ()
 
virtual ~vtkObjectBase ()
 
virtual void CollectRevisions (ostream &)
 
virtual void ReportReferences (vtkGarbageCollector *)
 
 vtkObjectBase (const vtkObjectBase &)
 
void operator= (const vtkObjectBase &)
 

Protected Attributes

vtkCellCell
 
- Protected Attributes inherited from vtkCell
double Bounds [6]
 
- Protected Attributes inherited from vtkObject
bool Debug
 
vtkTimeStamp MTime
 
vtkSubjectHelper * SubjectHelper
 
- Protected Attributes inherited from vtkObjectBase
vtkAtomicInt32 ReferenceCount
 
vtkWeakPointerBase ** WeakPointers
 

Additional Inherited Members

- Public Attributes inherited from vtkCell
vtkPointsPoints
 
vtkIdListPointIds
 

Detailed Description

provides thread-safe access to cells

vtkGenericCell is a class that provides access to concrete types of cells. It's main purpose is to allow thread-safe access to cells, supporting the vtkDataSet::GetCell(vtkGenericCell *) method. vtkGenericCell acts like any type of cell, it just dereferences an internal representation. The SetCellType() methods use #define constants; these are defined in the file vtkCellType.h.

See also
vtkCell vtkDataSet
Examples:
vtkGenericCell (Examples)
Tests:
vtkGenericCell (Tests)

Definition at line 41 of file vtkGenericCell.h.

Member Typedef Documentation

◆ Superclass

Definition at line 47 of file vtkGenericCell.h.

Constructor & Destructor Documentation

◆ vtkGenericCell()

vtkGenericCell::vtkGenericCell ( )
protected

◆ ~vtkGenericCell()

vtkGenericCell::~vtkGenericCell ( )
protected

Member Function Documentation

◆ New()

static vtkGenericCell* vtkGenericCell::New ( )
static

Create handle to any type of cell; by default a vtkEmptyCell.

◆ IsTypeOf()

static int vtkGenericCell::IsTypeOf ( const char *  type)
static

◆ IsA()

virtual int vtkGenericCell::IsA ( const char *  name)
virtual

Return 1 if this class is the same type of (or a subclass of) the named class. Returns 0 otherwise. This method works in combination with vtkTypeMacro found in vtkSetGet.h.

Reimplemented from vtkCell.

◆ SafeDownCast()

static vtkGenericCell* vtkGenericCell::SafeDownCast ( vtkObjectBase o)
static

◆ NewInstanceInternal()

virtual vtkObjectBase* vtkGenericCell::NewInstanceInternal ( ) const
protectedvirtual

Reimplemented from vtkCell.

◆ NewInstance()

vtkGenericCell* vtkGenericCell::NewInstance ( ) const

◆ PrintSelf()

void vtkGenericCell::PrintSelf ( ostream &  os,
vtkIndent  indent 
)
virtual

Methods invoked by print to print information about the object including superclasses. Typically not called by the user (use Print() instead) but used in the hierarchical print process to combine the output of several classes.

Reimplemented from vtkCell.

◆ SetPoints()

void vtkGenericCell::SetPoints ( vtkPoints points)

Set the points object to use for this cell. This updates the internal cell storage as well as the public member variable Points.

◆ SetPointIds()

void vtkGenericCell::SetPointIds ( vtkIdList pointIds)

Set the point ids to use for this cell. This updates the internal cell storage as well as the public member variable PointIds.

◆ ShallowCopy()

void vtkGenericCell::ShallowCopy ( vtkCell c)
virtual

See the vtkCell API for descriptions of these methods.

Reimplemented from vtkCell.

◆ DeepCopy()

void vtkGenericCell::DeepCopy ( vtkCell c)
virtual

Copy this cell by completely copying internal data structures. This is slower but safer than ShallowCopy().

Reimplemented from vtkCell.

◆ GetCellType()

int vtkGenericCell::GetCellType ( )
virtual

Return the type of cell.

Implements vtkCell.

◆ GetCellDimension()

int vtkGenericCell::GetCellDimension ( )
virtual

Return the topological dimensional of the cell (0,1,2, or 3).

Implements vtkCell.

◆ IsLinear()

int vtkGenericCell::IsLinear ( )
virtual

Non-linear cells require special treatment beyond the usual cell type and connectivity list information. Most cells in VTK are implicit cells.

Reimplemented from vtkCell.

◆ RequiresInitialization()

int vtkGenericCell::RequiresInitialization ( )
virtual

Some cells require initialization prior to access. For example, they may have to triangulate themselves or set up internal data structures.

Reimplemented from vtkCell.

◆ Initialize()

void vtkGenericCell::Initialize ( )
virtual

Reimplemented from vtkCell.

◆ RequiresExplicitFaceRepresentation()

int vtkGenericCell::RequiresExplicitFaceRepresentation ( )
virtual

Determine whether the cell requires explicit face representation, and methods for setting and getting the faces (see vtkPolyhedron for example usage of these methods).

Reimplemented from vtkCell.

◆ SetFaces()

void vtkGenericCell::SetFaces ( vtkIdType faces)

◆ GetFaces()

vtkIdType* vtkGenericCell::GetFaces ( )
virtual

Reimplemented from vtkCell.

◆ GetNumberOfEdges()

int vtkGenericCell::GetNumberOfEdges ( )
virtual

Return the number of edges in the cell.

Implements vtkCell.

◆ GetNumberOfFaces()

int vtkGenericCell::GetNumberOfFaces ( )
virtual

Return the number of faces in the cell.

Implements vtkCell.

◆ GetEdge()

vtkCell* vtkGenericCell::GetEdge ( int  edgeId)
virtual

Return the edge cell from the edgeId of the cell.

Implements vtkCell.

◆ GetFace()

vtkCell* vtkGenericCell::GetFace ( int  faceId)
virtual

Return the face cell from the faceId of the cell.

Implements vtkCell.

◆ CellBoundary()

int vtkGenericCell::CellBoundary ( int  subId,
double  pcoords[3],
vtkIdList pts 
)
virtual

Given parametric coordinates of a point, return the closest cell boundary, and whether the point is inside or outside of the cell. The cell boundary is defined by a list of points (pts) that specify a face (3D cell), edge (2D cell), or vertex (1D cell). If the return value of the method is != 0, then the point is inside the cell.

Implements vtkCell.

◆ EvaluatePosition()

int vtkGenericCell::EvaluatePosition ( double  x[3],
double closestPoint,
int subId,
double  pcoords[3],
double dist2,
double weights 
)
virtual

Given a point x[3] return inside(=1), outside(=0) cell, or (-1) computational problem encountered; evaluate parametric coordinates, sub-cell id (!=0 only if cell is composite), distance squared of point x[3] to cell (in particular, the sub-cell indicated), closest point on cell to x[3] (unless closestPoint is null, in which case, the closest point and dist2 are not found), and interpolation weights in cell. (The number of weights is equal to the number of points defining the cell). Note: on rare occasions a -1 is returned from the method. This means that numerical error has occurred and all data returned from this method should be ignored. Also, inside/outside is determine parametrically. That is, a point is inside if it satisfies parametric limits. This can cause problems for cells of topological dimension 2 or less, since a point in 3D can project onto the cell within parametric limits but be "far" from the cell. Thus the value dist2 may be checked to determine true in/out.

Implements vtkCell.

◆ EvaluateLocation()

void vtkGenericCell::EvaluateLocation ( int subId,
double  pcoords[3],
double  x[3],
double weights 
)
virtual

Determine global coordinate (x[3]) from subId and parametric coordinates. Also returns interpolation weights. (The number of weights is equal to the number of points in the cell.)

Implements vtkCell.

◆ Contour()

void vtkGenericCell::Contour ( double  value,
vtkDataArray cellScalars,
vtkIncrementalPointLocator locator,
vtkCellArray verts,
vtkCellArray lines,
vtkCellArray polys,
vtkPointData inPd,
vtkPointData outPd,
vtkCellData inCd,
vtkIdType  cellId,
vtkCellData outCd 
)
virtual

Generate contouring primitives. The scalar list cellScalars are scalar values at each cell point. The point locator is essentially a points list that merges points as they are inserted (i.e., prevents duplicates). Contouring primitives can be vertices, lines, or polygons. It is possible to interpolate point data along the edge by providing input and output point data - if outPd is NULL, then no interpolation is performed. Also, if the output cell data is non-NULL, the cell data from the contoured cell is passed to the generated contouring primitives. (Note: the CopyAllocate() method must be invoked on both the output cell and point data. The cellId refers to the cell from which the cell data is copied.)

Implements vtkCell.

◆ Clip()

void vtkGenericCell::Clip ( double  value,
vtkDataArray cellScalars,
vtkIncrementalPointLocator locator,
vtkCellArray connectivity,
vtkPointData inPd,
vtkPointData outPd,
vtkCellData inCd,
vtkIdType  cellId,
vtkCellData outCd,
int  insideOut 
)
virtual

Cut (or clip) the cell based on the input cellScalars and the specified value. The output of the clip operation will be one or more cells of the same topological dimension as the original cell. The flag insideOut controls what part of the cell is considered inside - normally cell points whose scalar value is greater than "value" are considered inside. If insideOut is on, this is reversed. Also, if the output cell data is non-NULL, the cell data from the clipped cell is passed to the generated contouring primitives. (Note: the CopyAllocate() method must be invoked on both the output cell and point data. The cellId refers to the cell from which the cell data is copied.)

Implements vtkCell.

◆ IntersectWithLine()

int vtkGenericCell::IntersectWithLine ( double  p1[3],
double  p2[3],
double  tol,
double t,
double  x[3],
double  pcoords[3],
int subId 
)
virtual

Intersect with a ray. Return parametric coordinates (both line and cell) and global intersection coordinates, given ray definition p1[3], p2[3] and tolerance tol. The method returns non-zero value if intersection occurs. A parametric distance t between 0 and 1 along the ray representing the intersection point, the point coordinates x[3] in data coordinates and also pcoords[3] in parametric coordinates. subId is the index within the cell if a composed cell like a triangle strip.

Implements vtkCell.

◆ Triangulate()

int vtkGenericCell::Triangulate ( int  index,
vtkIdList ptIds,
vtkPoints pts 
)
virtual

Generate simplices of proper dimension. If cell is 3D, tetrahedron are generated; if 2D triangles; if 1D lines; if 0D points. The form of the output is a sequence of points, each n+1 points (where n is topological cell dimension) defining a simplex. The index is a parameter that controls which triangulation to use (if more than one is possible). If numerical degeneracy encountered, 0 is returned, otherwise 1 is returned. This method does not insert new points: all the points that define the simplices are the points that define the cell.

Implements vtkCell.

◆ Derivatives()

void vtkGenericCell::Derivatives ( int  subId,
double  pcoords[3],
double values,
int  dim,
double derivs 
)
virtual

Compute derivatives given cell subId and parametric coordinates. The values array is a series of data value(s) at the cell points. There is a one-to-one correspondence between cell point and data value(s). Dim is the number of data values per cell point. Derivs are derivatives in the x-y-z coordinate directions for each data value. Thus, if computing derivatives for a scalar function in a hexahedron, dim=1, 8 values are supplied, and 3 deriv values are returned (i.e., derivatives in x-y-z directions). On the other hand, if computing derivatives of velocity (vx,vy,vz) dim=3, 24 values are supplied ((vx,vy,vz)1, (vx,vy,vz)2, ....()8), and 9 deriv values are returned ((d(vx)/dx),(d(vx)/dy),(d(vx)/dz), (d(vy)/dx),(d(vy)/dy), (d(vy)/dz), (d(vz)/dx),(d(vz)/dy),(d(vz)/dz)).

Implements vtkCell.

◆ GetParametricCenter()

int vtkGenericCell::GetParametricCenter ( double  pcoords[3])
virtual

Return center of the cell in parametric coordinates. Note that the parametric center is not always located at (0.5,0.5,0.5). The return value is the subId that the center is in (if a composite cell). If you want the center in x-y-z space, invoke the EvaluateLocation() method.

Reimplemented from vtkCell.

◆ GetParametricCoords()

double* vtkGenericCell::GetParametricCoords ( )
virtual

Return a contiguous array of parametric coordinates of the points defining this cell. In other words, (px,py,pz, px,py,pz, etc..) The coordinates are ordered consistent with the definition of the point ordering for the cell. This method returns a non-NULL pointer when the cell is a primary type (i.e., IsPrimaryCell() is true). Note that 3D parametric coordinates are returned no matter what the topological dimension of the cell.

Reimplemented from vtkCell.

◆ IsPrimaryCell()

int vtkGenericCell::IsPrimaryCell ( )
virtual

Return whether this cell type has a fixed topology or whether the topology varies depending on the data (e.g., vtkConvexPointSet). This compares to composite cells that are typically composed of primary cells (e.g., a triangle strip composite cell is made up of triangle primary cells).

Reimplemented from vtkCell.

◆ InterpolateFunctions()

virtual void vtkGenericCell::InterpolateFunctions ( double  pcoords[3],
double weights 
)
virtual

Compute the interpolation functions/derivatives (aka shape functions/derivatives)

◆ InterpolateDerivs()

virtual void vtkGenericCell::InterpolateDerivs ( double  pcoords[3],
double derivs 
)
virtual

◆ SetCellType()

void vtkGenericCell::SetCellType ( int  cellType)

This method is used to support the vtkDataSet::GetCell(vtkGenericCell ) method. It allows vtkGenericCell to act like any cell type by dereferencing an internal instance of a concrete cell type. When you set the cell type, you are resetting a pointer to an internal cell which is then used for computation.

◆ SetCellTypeToEmptyCell()

void vtkGenericCell::SetCellTypeToEmptyCell ( )
inline

Definition at line 114 of file vtkGenericCell.h.

◆ SetCellTypeToVertex()

void vtkGenericCell::SetCellTypeToVertex ( )
inline

Definition at line 115 of file vtkGenericCell.h.

◆ SetCellTypeToPolyVertex()

void vtkGenericCell::SetCellTypeToPolyVertex ( )
inline

Definition at line 116 of file vtkGenericCell.h.

◆ SetCellTypeToLine()

void vtkGenericCell::SetCellTypeToLine ( )
inline

Definition at line 117 of file vtkGenericCell.h.

◆ SetCellTypeToPolyLine()

void vtkGenericCell::SetCellTypeToPolyLine ( )
inline

Definition at line 118 of file vtkGenericCell.h.

◆ SetCellTypeToTriangle()

void vtkGenericCell::SetCellTypeToTriangle ( )
inline

Definition at line 119 of file vtkGenericCell.h.

◆ SetCellTypeToTriangleStrip()

void vtkGenericCell::SetCellTypeToTriangleStrip ( )
inline

Definition at line 120 of file vtkGenericCell.h.

◆ SetCellTypeToPolygon()

void vtkGenericCell::SetCellTypeToPolygon ( )
inline

Definition at line 121 of file vtkGenericCell.h.

◆ SetCellTypeToPixel()

void vtkGenericCell::SetCellTypeToPixel ( )
inline

Definition at line 122 of file vtkGenericCell.h.

◆ SetCellTypeToQuad()

void vtkGenericCell::SetCellTypeToQuad ( )
inline

Definition at line 123 of file vtkGenericCell.h.

◆ SetCellTypeToTetra()

void vtkGenericCell::SetCellTypeToTetra ( )
inline

Definition at line 124 of file vtkGenericCell.h.

◆ SetCellTypeToVoxel()

void vtkGenericCell::SetCellTypeToVoxel ( )
inline

Definition at line 125 of file vtkGenericCell.h.

◆ SetCellTypeToHexahedron()

void vtkGenericCell::SetCellTypeToHexahedron ( )
inline

Definition at line 126 of file vtkGenericCell.h.

◆ SetCellTypeToWedge()

void vtkGenericCell::SetCellTypeToWedge ( )
inline

Definition at line 127 of file vtkGenericCell.h.

◆ SetCellTypeToPyramid()

void vtkGenericCell::SetCellTypeToPyramid ( )
inline

Definition at line 128 of file vtkGenericCell.h.

◆ SetCellTypeToPentagonalPrism()

void vtkGenericCell::SetCellTypeToPentagonalPrism ( )
inline

Definition at line 129 of file vtkGenericCell.h.

◆ SetCellTypeToHexagonalPrism()

void vtkGenericCell::SetCellTypeToHexagonalPrism ( )
inline

Definition at line 130 of file vtkGenericCell.h.

◆ SetCellTypeToPolyhedron()

void vtkGenericCell::SetCellTypeToPolyhedron ( )
inline

Definition at line 131 of file vtkGenericCell.h.

◆ SetCellTypeToConvexPointSet()

void vtkGenericCell::SetCellTypeToConvexPointSet ( )
inline

Definition at line 132 of file vtkGenericCell.h.

◆ SetCellTypeToQuadraticEdge()

void vtkGenericCell::SetCellTypeToQuadraticEdge ( )
inline

Definition at line 133 of file vtkGenericCell.h.

◆ SetCellTypeToCubicLine()

void vtkGenericCell::SetCellTypeToCubicLine ( )
inline

Definition at line 134 of file vtkGenericCell.h.

◆ SetCellTypeToQuadraticTriangle()

void vtkGenericCell::SetCellTypeToQuadraticTriangle ( )
inline

Definition at line 135 of file vtkGenericCell.h.

◆ SetCellTypeToBiQuadraticTriangle()

void vtkGenericCell::SetCellTypeToBiQuadraticTriangle ( )
inline

Definition at line 136 of file vtkGenericCell.h.

◆ SetCellTypeToQuadraticQuad()

void vtkGenericCell::SetCellTypeToQuadraticQuad ( )
inline

Definition at line 137 of file vtkGenericCell.h.

◆ SetCellTypeToQuadraticPolygon()

void vtkGenericCell::SetCellTypeToQuadraticPolygon ( )
inline

Definition at line 138 of file vtkGenericCell.h.

◆ SetCellTypeToQuadraticTetra()

void vtkGenericCell::SetCellTypeToQuadraticTetra ( )
inline

Definition at line 139 of file vtkGenericCell.h.

◆ SetCellTypeToQuadraticHexahedron()

void vtkGenericCell::SetCellTypeToQuadraticHexahedron ( )
inline

Definition at line 140 of file vtkGenericCell.h.

◆ SetCellTypeToQuadraticWedge()

void vtkGenericCell::SetCellTypeToQuadraticWedge ( )
inline

Definition at line 141 of file vtkGenericCell.h.

◆ SetCellTypeToQuadraticPyramid()

void vtkGenericCell::SetCellTypeToQuadraticPyramid ( )
inline

Definition at line 142 of file vtkGenericCell.h.

◆ SetCellTypeToQuadraticLinearQuad()

void vtkGenericCell::SetCellTypeToQuadraticLinearQuad ( )
inline

Definition at line 143 of file vtkGenericCell.h.

◆ SetCellTypeToBiQuadraticQuad()

void vtkGenericCell::SetCellTypeToBiQuadraticQuad ( )
inline

Definition at line 144 of file vtkGenericCell.h.

◆ SetCellTypeToQuadraticLinearWedge()

void vtkGenericCell::SetCellTypeToQuadraticLinearWedge ( )
inline

Definition at line 145 of file vtkGenericCell.h.

◆ SetCellTypeToBiQuadraticQuadraticWedge()

void vtkGenericCell::SetCellTypeToBiQuadraticQuadraticWedge ( )
inline

Definition at line 146 of file vtkGenericCell.h.

◆ SetCellTypeToTriQuadraticHexahedron()

void vtkGenericCell::SetCellTypeToTriQuadraticHexahedron ( )
inline

Definition at line 148 of file vtkGenericCell.h.

◆ SetCellTypeToBiQuadraticQuadraticHexahedron()

void vtkGenericCell::SetCellTypeToBiQuadraticQuadraticHexahedron ( )
inline

Definition at line 150 of file vtkGenericCell.h.

◆ InstantiateCell()

static vtkCell* vtkGenericCell::InstantiateCell ( int  cellType)
static

Instantiate a new vtkCell based on it's cell type value

Member Data Documentation

◆ Cell

vtkCell* vtkGenericCell::Cell
protected

Definition at line 161 of file vtkGenericCell.h.


The documentation for this class was generated from the following file: