26 #ifndef vtkProjectSphereFilter_h 27 #define vtkProjectSphereFilter_h 29 #include "vtkFiltersGeometryModule.h" 52 vtkSetVector3Macro(Center,
double);
53 vtkGetVectorMacro(Center,
double,3);
61 vtkGetMacro(KeepPolePoints,
bool);
62 vtkSetMacro(KeepPolePoints,
bool);
63 vtkBooleanMacro(KeepPolePoints,
bool);
72 vtkGetMacro(TranslateZ,
bool);
73 vtkSetMacro(TranslateZ,
bool);
74 vtkBooleanMacro(TranslateZ,
bool);
102 virtual double GetZTranslation(
vtkPointSet* input);
112 void SetCellInformation(
120 const double SplitLongitude;
125 #endif // vtkProjectSphereFilter_h virtual int RequestData(vtkInformation *, vtkInformationVector **, vtkInformationVector *)
This is called by the superclass.
Abstract class in support of both point location and point insertion.
void PrintSelf(ostream &os, vtkIndent indent) override
Methods invoked by print to print information about the object including superclasses.
abstract class for specifying dataset behavior
int FillInputPortInformation(int port, vtkInformation *info) override
Fill the input port information objects for this algorithm.
abstract class to specify cell behavior
virtual void ComputePointsClosestToCenterLine(double, vtkIdList *)
Parallel part of the algorithm to figure out the closest point to the centerline (i.e.
a simple class to control print indentation
list of point or cell ids
dataset represents arbitrary combinations of all possible cell types
Superclass for algorithms that produce output of the same type as input.
represent and manipulate attribute data in a dataset
object to represent cell connectivity
static vtkPointSetAlgorithm * New()
A filter to 'unroll' a sphere.