# encoding: utf-8
# module vtkmodules.vtkCommonDataModel
# from C:\Users\xukai\Downloads\发票2\venv\Lib\site-packages\vtkmodules\vtkCommonDataModel.cp311-win_amd64.pyd
# by generator 1.147
# no doc

# imports
import vtkmodules.vtkCommonCore as __vtkmodules_vtkCommonCore
import vtkmodules.vtkCommonMath as __vtkmodules_vtkCommonMath
import vtkmodules.vtkCommonTransforms as __vtkmodules_vtkCommonTransforms


from .vtkHigherOrderWedge import vtkHigherOrderWedge

class vtkLagrangeWedge(vtkHigherOrderWedge):
    """
    vtkLagrangeWedge - A 3D cell that represents an arbitrary order
    Lagrange wedge
    
    Superclass: vtkHigherOrderWedge
    
    vtkLagrangeWedge is a concrete implementation of vtkCell to represent
    a 3D wedge using Lagrange shape functions of user specified order. A
    wedge consists of two triangular and three quadrilateral faces. The
    first six points of the wedge (0-5) are the "corner" points where the
    first three points are the base of the wedge. This wedge point
    ordering is opposite the vtkWedge ordering though in that the base of
    the wedge defined by the first three points (0,1,2) form a triangle
    whose normal points inward (toward the triangular face (3,4,5)).
    While this is opposite the vtkWedge convention it is consistent with
    every other cell type in VTK. The first 2 parametric coordinates of
    the Lagrange wedge or for the triangular base and vary between 0 and
    1. The third parametric coordinate is between the two triangular
    faces and goes from 0 to 1 as well.
    """
    def GetBoundaryQuad(self): # real signature unknown; restored from __doc__
        """
        GetBoundaryQuad(self) -> vtkHigherOrderQuadrilateral
        C++: vtkHigherOrderQuadrilateral *GetBoundaryQuad() override;
        """
        return vtkHigherOrderQuadrilateral

    def GetBoundaryTri(self): # real signature unknown; restored from __doc__
        """
        GetBoundaryTri(self) -> vtkHigherOrderTriangle
        C++: vtkHigherOrderTriangle *GetBoundaryTri() override;
        """
        return vtkHigherOrderTriangle

    def GetCellType(self): # real signature unknown; restored from __doc__
        """
        GetCellType(self) -> int
        C++: int GetCellType() override;
        
        Return the type of cell.
        """
        return 0

    def GetEdge(self, edgeId): # real signature unknown; restored from __doc__
        """
        GetEdge(self, edgeId:int) -> vtkCell
        C++: vtkCell *GetEdge(int edgeId) override;
        
        Return the edge cell from the edgeId of the cell.
        """
        return vtkCell

    def GetEdgeCell(self): # real signature unknown; restored from __doc__
        """
        GetEdgeCell(self) -> vtkHigherOrderCurve
        C++: vtkHigherOrderCurve *GetEdgeCell() override;
        """
        return vtkHigherOrderCurve

    def GetFace(self, faceId): # real signature unknown; restored from __doc__
        """
        GetFace(self, faceId:int) -> vtkCell
        C++: vtkCell *GetFace(int faceId) override;
        
        Return the face cell from the faceId of the cell. The returned
        vtkCell is an object owned by this instance, hence the return
        value must not be deleted by the caller.
        
        @warning Repeat calls to this function for different face ids
            will change
        the data stored in the internal member object whose pointer is
        returned by this function.
        
        @warning THIS METHOD IS NOT THREAD SAFE.
        """
        return vtkCell

    def GetInterpolation(self): # real signature unknown; restored from __doc__
        """
        GetInterpolation(self) -> vtkHigherOrderInterpolation
        C++: vtkHigherOrderInterpolation *GetInterpolation() override;
        """
        return vtkHigherOrderInterpolation

    def GetNumberOfGenerationsFromBase(self, type): # real signature unknown; restored from __doc__
        """
        GetNumberOfGenerationsFromBase(self, type:str) -> int
        C++: vtkIdType GetNumberOfGenerationsFromBase(const char *type)
            override;
        
        Given the name of a base class of this class type, return the
        distance of inheritance between this class type and the named
        class (how many generations of inheritance are there between this
        class and the named class). If the named class is not in this
        class's inheritance tree, return a negative value. Valid
        responses will always be nonnegative. This method works in
        combination with vtkTypeMacro found in vtkSetGet.h.
        """
        return 0

    def GetNumberOfGenerationsFromBaseType(self, type): # real signature unknown; restored from __doc__
        """
        GetNumberOfGenerationsFromBaseType(type:str) -> int
        C++: static vtkIdType GetNumberOfGenerationsFromBaseType(
            const char *type)
        
        Given a the name of a base class of this class type, return the
        distance of inheritance between this class type and the named
        class (how many generations of inheritance are there between this
        class and the named class). If the named class is not in this
        class's inheritance tree, return a negative value. Valid
        responses will always be nonnegative. This method works in
        combination with vtkTypeMacro found in vtkSetGet.h.
        """
        return 0

    def InterpolateDerivs(self, pcoords, *args, **kwargs): # real signature unknown; NOTE: unreliably restored from __doc__ 
        """
        InterpolateDerivs(self, pcoords:(float, float, float),
            derivs:[float, ...]) -> None
        C++: void InterpolateDerivs(const double pcoords[3],
            double *derivs) override;
        """
        pass

    def InterpolateFunctions(self, pcoords, *args, **kwargs): # real signature unknown; NOTE: unreliably restored from __doc__ 
        """
        InterpolateFunctions(self, pcoords:(float, float, float),
            weights:[float, ...]) -> None
        C++: void InterpolateFunctions(const double pcoords[3],
            double *weights) override;
        
        Compute the interpolation functions/derivatives (aka shape
        functions/derivatives) No-ops at this level. Typically overridden
        in subclasses.
        """
        pass

    def IsA(self, type): # real signature unknown; restored from __doc__
        """
        IsA(self, type:str) -> int
        C++: vtkTypeBool IsA(const char *type) override;
        
        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.
        """
        return 0

    def IsTypeOf(self, type): # real signature unknown; restored from __doc__
        """
        IsTypeOf(type:str) -> int
        C++: static vtkTypeBool IsTypeOf(const char *type)
        
        Return 1 if this class type 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.
        """
        return 0

    def NewInstance(self): # real signature unknown; restored from __doc__
        """
        NewInstance(self) -> vtkLagrangeWedge
        C++: vtkLagrangeWedge *NewInstance()
        """
        return vtkLagrangeWedge

    def SafeDownCast(self, o): # real signature unknown; restored from __doc__
        """
        SafeDownCast(o:vtkObjectBase) -> vtkLagrangeWedge
        C++: static vtkLagrangeWedge *SafeDownCast(vtkObjectBase *o)
        """
        return vtkLagrangeWedge

    def __delattr__(self, *args, **kwargs): # real signature unknown
        """ Implement delattr(self, name). """
        pass

    def __getattribute__(self, *args, **kwargs): # real signature unknown
        """ Return getattr(self, name). """
        pass

    def __init__(self, *args, **kwargs): # real signature unknown
        pass

    @staticmethod # known case of __new__
    def __new__(*args, **kwargs): # real signature unknown
        """ Create and return a new object.  See help(type) for accurate signature. """
        pass

    def __repr__(self, *args, **kwargs): # real signature unknown
        """ Return repr(self). """
        pass

    def __setattr__(self, *args, **kwargs): # real signature unknown
        """ Implement setattr(self, name, value). """
        pass

    def __str__(self, *args, **kwargs): # real signature unknown
        """ Return str(self). """
        pass

    __this__ = property(lambda self: object(), lambda self, v: None, lambda self: None)  # default
    """Pointer to the C++ object."""


    __dict__ = None # (!) real value is 'mappingproxy({\'__vtkname__\': \'vtkLagrangeWedge\', \'IsTypeOf\': <method \'IsTypeOf\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'IsA\': <method \'IsA\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'SafeDownCast\': <method \'SafeDownCast\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'NewInstance\': <method \'NewInstance\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'GetNumberOfGenerationsFromBaseType\': <method \'GetNumberOfGenerationsFromBaseType\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'GetNumberOfGenerationsFromBase\': <method \'GetNumberOfGenerationsFromBase\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'GetCellType\': <method \'GetCellType\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'GetEdge\': <method \'GetEdge\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'GetFace\': <method \'GetFace\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'InterpolateFunctions\': <method \'InterpolateFunctions\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'InterpolateDerivs\': <method \'InterpolateDerivs\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'GetBoundaryQuad\': <method \'GetBoundaryQuad\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'GetBoundaryTri\': <method \'GetBoundaryTri\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'GetEdgeCell\': <method \'GetEdgeCell\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'GetInterpolation\': <method \'GetInterpolation\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'__new__\': <built-in method __new__ of type object at 0x00007FF81D637E40>, \'__repr__\': <slot wrapper \'__repr__\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'__str__\': <slot wrapper \'__str__\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'__getattribute__\': <slot wrapper \'__getattribute__\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'__setattr__\': <slot wrapper \'__setattr__\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'__delattr__\': <slot wrapper \'__delattr__\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'__dict__\': <attribute \'__dict__\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'__this__\': <attribute \'__this__\' of \'vtkmodules.vtkCommonDataModel.vtkLagrangeWedge\' objects>, \'__doc__\': \'vtkLagrangeWedge - A 3D cell that represents an arbitrary order\\nLagrange wedge\\n\\nSuperclass: vtkHigherOrderWedge\\n\\nvtkLagrangeWedge is a concrete implementation of vtkCell to represent\\na 3D wedge using Lagrange shape functions of user specified order. A\\nwedge consists of two triangular and three quadrilateral faces. The\\nfirst six points of the wedge (0-5) are the "corner" points where the\\nfirst three points are the base of the wedge. This wedge point\\nordering is opposite the vtkWedge ordering though in that the base of\\nthe wedge defined by the first three points (0,1,2) form a triangle\\nwhose normal points inward (toward the triangular face (3,4,5)).\\nWhile this is opposite the vtkWedge convention it is consistent with\\nevery other cell type in VTK. The first 2 parametric coordinates of\\nthe Lagrange wedge or for the triangular base and vary between 0 and\\n1. The third parametric coordinate is between the two triangular\\nfaces and goes from 0 to 1 as well.\\n\\n\'})'
    __vtkname__ = 'vtkLagrangeWedge'


