# 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 .vtkImplicitFunction import vtkImplicitFunction

class vtkSphere(vtkImplicitFunction):
    """
    vtkSphere - implicit function for a sphere
    
    Superclass: vtkImplicitFunction
    
    vtkSphere computes the implicit function and/or gradient for a
    sphere. vtkSphere is a concrete implementation of
    vtkImplicitFunction. Additional methods are available for
    sphere-related computations, such as computing bounding spheres for a
    set of points, or set of spheres.
    """
    def ComputeBoundingSphere(self, pts, *args, **kwargs): # real signature unknown; NOTE: unreliably restored from __doc__ 
        """
        ComputeBoundingSphere(pts:[float, ...], numPts:int, sphere:[float,
             float, float, float], hints:[int, int]) -> None
        C++: static void ComputeBoundingSphere(double *pts,
            vtkIdType numPts, double sphere[4], vtkIdType hints[2])
        """
        pass

    def Evaluate(self, center, *args, **kwargs): # real signature unknown; NOTE: unreliably restored from __doc__ 
        """
        Evaluate(center:[float, float, float], R:float, x:[float, float,
            float]) -> float
        C++: static double Evaluate(double center[3], double R,
            double x[3])
        
        Quick evaluation of the sphere equation ((x-x0)^2 + (y-y0)^2 +
        (z-z0)^2) - R^2.
        """
        pass

    def EvaluateFunction(self, x, *args, **kwargs): # real signature unknown; NOTE: unreliably restored from __doc__ 
        """
        EvaluateFunction(self, x:[float, float, float]) -> float
        C++: double EvaluateFunction(double x[3]) override;
        EvaluateFunction(self, input:vtkDataArray, output:vtkDataArray)
            -> None
        C++: virtual void EvaluateFunction(vtkDataArray *input,
            vtkDataArray *output)
        EvaluateFunction(self, x:float, y:float, z:float) -> float
        C++: virtual double EvaluateFunction(double x, double y, double z)
        
        Evaluate function at position x-y-z and return value.  You should
        generally not call this method directly, you should use
        FunctionValue() instead.  This method must be implemented by any
        derived class.
        """
        pass

    def EvaluateGradient(self, x, *args, **kwargs): # real signature unknown; NOTE: unreliably restored from __doc__ 
        """
        EvaluateGradient(self, x:[float, float, float], n:[float, float,
            float]) -> None
        C++: void EvaluateGradient(double x[3], double n[3]) override;
        
        Evaluate sphere gradient.
        """
        pass

    def GetCenter(self): # real signature unknown; restored from __doc__
        """
        GetCenter(self) -> (float, float, float)
        C++: virtual double *GetCenter()
        """
        pass

    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 GetRadius(self): # real signature unknown; restored from __doc__
        """
        GetRadius(self) -> float
        C++: virtual double GetRadius()
        """
        return 0.0

    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) -> vtkSphere
        C++: vtkSphere *NewInstance()
        """
        return vtkSphere

    def SafeDownCast(self, o): # real signature unknown; restored from __doc__
        """
        SafeDownCast(o:vtkObjectBase) -> vtkSphere
        C++: static vtkSphere *SafeDownCast(vtkObjectBase *o)
        """
        return vtkSphere

    def SetCenter(self, _arg1, _arg2, _arg3): # real signature unknown; restored from __doc__
        """
        SetCenter(self, _arg1:float, _arg2:float, _arg3:float) -> None
        C++: virtual void SetCenter(double _arg1, double _arg2,
            double _arg3)
        SetCenter(self, _arg:(float, float, float)) -> None
        C++: virtual void SetCenter(const double _arg[3])
        
        Set / get the center of the sphere. The default is (0,0,0).
        """
        pass

    def SetRadius(self, _arg): # real signature unknown; restored from __doc__
        """
        SetRadius(self, _arg:float) -> None
        C++: virtual void SetRadius(double _arg)
        
        Set / get the radius of the sphere. The default is 0.5.
        """
        pass

    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__': 'vtkSphere', 'IsTypeOf': <method 'IsTypeOf' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'IsA': <method 'IsA' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'SafeDownCast': <method 'SafeDownCast' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'NewInstance': <method 'NewInstance' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'GetNumberOfGenerationsFromBaseType': <method 'GetNumberOfGenerationsFromBaseType' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'GetNumberOfGenerationsFromBase': <method 'GetNumberOfGenerationsFromBase' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'EvaluateFunction': <method 'EvaluateFunction' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'EvaluateGradient': <method 'EvaluateGradient' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'SetRadius': <method 'SetRadius' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'GetRadius': <method 'GetRadius' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'SetCenter': <method 'SetCenter' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'GetCenter': <method 'GetCenter' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'Evaluate': <method 'Evaluate' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, 'ComputeBoundingSphere': <method 'ComputeBoundingSphere' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, '__new__': <built-in method __new__ of type object at 0x00007FF81D64CC50>, '__repr__': <slot wrapper '__repr__' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, '__str__': <slot wrapper '__str__' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, '__getattribute__': <slot wrapper '__getattribute__' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, '__setattr__': <slot wrapper '__setattr__' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, '__delattr__': <slot wrapper '__delattr__' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, '__dict__': <attribute '__dict__' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, '__this__': <attribute '__this__' of 'vtkmodules.vtkCommonDataModel.vtkSphere' objects>, '__doc__': 'vtkSphere - implicit function for a sphere\\n\\nSuperclass: vtkImplicitFunction\\n\\nvtkSphere computes the implicit function and/or gradient for a\\nsphere. vtkSphere is a concrete implementation of\\nvtkImplicitFunction. Additional methods are available for\\nsphere-related computations, such as computing bounding spheres for a\\nset of points, or set of spheres.\\n\\n'})"
    __vtkname__ = 'vtkSphere'


