# encoding: utf-8
# module vtkmodules.vtkInteractionWidgets
# from C:\Users\xukai\Downloads\发票2\venv\Lib\site-packages\vtkmodules\vtkInteractionWidgets.cp311-win_amd64.pyd
# by generator 1.147
# no doc

# imports
import vtkmodules.vtkCommonCore as __vtkmodules_vtkCommonCore
import vtkmodules.vtkCommonExecutionModel as __vtkmodules_vtkCommonExecutionModel
import vtkmodules.vtkFiltersSources as __vtkmodules_vtkFiltersSources
import vtkmodules.vtkRenderingContext2D as __vtkmodules_vtkRenderingContext2D
import vtkmodules.vtkRenderingCore as __vtkmodules_vtkRenderingCore


from .vtkAbstractWidget import vtkAbstractWidget

class vtkTensorProbeWidget(vtkAbstractWidget):
    """
    vtkTensorProbeWidget - a widget to probe tensors on a polyline
    
    Superclass: vtkAbstractWidget
    
    The class is used to probe tensors on a trajectory. The
    representation (vtkTensorProbeRepresentation) is free to choose its
    own method of rendering the tensors. For instance
    vtkEllipsoidTensorProbeRepresentation renders the tensors as
    ellipsoids. The interactions of the widget are controlled by the left
    mouse button. A left click on the tensor selects it. It can dragged
    around the trajectory to probe the tensors on it.
    
    For instance dragging the ellipsoid around with
    vtkEllipsoidTensorProbeRepresentation will manifest itself with the
    ellipsoid shape changing as needed along the trajectory.
    """
    def CreateDefaultRepresentation(self): # real signature unknown; restored from __doc__
        """
        CreateDefaultRepresentation(self) -> None
        C++: void CreateDefaultRepresentation() override;
        
        See vtkWidgetRepresentation for details.
        """
        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 GetTensorProbeRepresentation(self): # real signature unknown; restored from __doc__
        """
        GetTensorProbeRepresentation(self) -> vtkTensorProbeRepresentation
        C++: vtkTensorProbeRepresentation *GetTensorProbeRepresentation()
        
        Return the representation as a vtkTensorProbeRepresentation.
        """
        return vtkTensorProbeRepresentation

    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) -> vtkTensorProbeWidget
        C++: vtkTensorProbeWidget *NewInstance()
        """
        return vtkTensorProbeWidget

    def SafeDownCast(self, o): # real signature unknown; restored from __doc__
        """
        SafeDownCast(o:vtkObjectBase) -> vtkTensorProbeWidget
        C++: static vtkTensorProbeWidget *SafeDownCast(vtkObjectBase *o)
        """
        return vtkTensorProbeWidget

    def SetRepresentation(self, r): # real signature unknown; restored from __doc__
        """
        SetRepresentation(self, r:vtkTensorProbeRepresentation) -> None
        C++: void SetRepresentation(vtkTensorProbeRepresentation *r)
        
        Specify an instance of vtkWidgetRepresentation used to represent
        this widget in the scene. Note that the representation is a
        subclass of vtkProp so it can be added to the renderer
        independent of the widget.
        """
        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__': 'vtkTensorProbeWidget', 'IsTypeOf': <method 'IsTypeOf' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, 'IsA': <method 'IsA' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, 'SafeDownCast': <method 'SafeDownCast' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, 'NewInstance': <method 'NewInstance' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, 'GetNumberOfGenerationsFromBaseType': <method 'GetNumberOfGenerationsFromBaseType' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, 'GetNumberOfGenerationsFromBase': <method 'GetNumberOfGenerationsFromBase' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, 'SetRepresentation': <method 'SetRepresentation' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, 'GetTensorProbeRepresentation': <method 'GetTensorProbeRepresentation' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, 'CreateDefaultRepresentation': <method 'CreateDefaultRepresentation' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, '__new__': <built-in method __new__ of type object at 0x00007FF81D665E90>, '__repr__': <slot wrapper '__repr__' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, '__str__': <slot wrapper '__str__' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, '__getattribute__': <slot wrapper '__getattribute__' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, '__setattr__': <slot wrapper '__setattr__' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, '__delattr__': <slot wrapper '__delattr__' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, '__dict__': <attribute '__dict__' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, '__this__': <attribute '__this__' of 'vtkmodules.vtkInteractionWidgets.vtkTensorProbeWidget' objects>, '__doc__': 'vtkTensorProbeWidget - a widget to probe tensors on a polyline\\n\\nSuperclass: vtkAbstractWidget\\n\\nThe class is used to probe tensors on a trajectory. The\\nrepresentation (vtkTensorProbeRepresentation) is free to choose its\\nown method of rendering the tensors. For instance\\nvtkEllipsoidTensorProbeRepresentation renders the tensors as\\nellipsoids. The interactions of the widget are controlled by the left\\nmouse button. A left click on the tensor selects it. It can dragged\\naround the trajectory to probe the tensors on it.\\n\\nFor instance dragging the ellipsoid around with\\nvtkEllipsoidTensorProbeRepresentation will manifest itself with the\\nellipsoid shape changing as needed along the trajectory.\\n\\n'})"
    __vtkname__ = 'vtkTensorProbeWidget'


