# encoding: utf-8
# module PyQt5.QtChart
# from C:\Programs\Python\Python313\Lib\site-packages\PyQt5\QtChart.pyd
# by generator 1.147
# no doc

# imports
import PyQt5.QtCore as __PyQt5_QtCore
import PyQt5.QtWidgets as __PyQt5_QtWidgets


from .QAbstractSeries import QAbstractSeries

class QAbstractBarSeries(QAbstractSeries):
    # no doc
    def append(self, *__args): # real signature unknown; restored from __doc__ with multiple overloads
        """
        append(self, set: Optional[QBarSet]) -> bool
        append(self, sets: Iterable[QBarSet]) -> bool
        """
        return False

    def barSets(self): # real signature unknown; restored from __doc__
        """ barSets(self) -> List[QBarSet] """
        return []

    def barsetsAdded(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def barsetsRemoved(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def barWidth(self): # real signature unknown; restored from __doc__
        """ barWidth(self) -> float """
        return 0.0

    def clear(self): # real signature unknown; restored from __doc__
        """ clear(self) """
        pass

    def clicked(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def count(self): # real signature unknown; restored from __doc__
        """ count(self) -> int """
        return 0

    def countChanged(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def doubleClicked(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def hovered(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def insert(self, index, set, QBarSet=None): # real signature unknown; restored from __doc__
        """ insert(self, index: int, set: Optional[QBarSet]) -> bool """
        return False

    def isLabelsVisible(self): # real signature unknown; restored from __doc__
        """ isLabelsVisible(self) -> bool """
        return False

    def labelsAngle(self): # real signature unknown; restored from __doc__
        """ labelsAngle(self) -> float """
        return 0.0

    def labelsAngleChanged(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def labelsFormat(self): # real signature unknown; restored from __doc__
        """ labelsFormat(self) -> str """
        return ""

    def labelsFormatChanged(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def labelsPosition(self): # real signature unknown; restored from __doc__
        """ labelsPosition(self) -> QAbstractBarSeries.LabelsPosition """
        pass

    def labelsPositionChanged(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def labelsPrecision(self): # real signature unknown; restored from __doc__
        """ labelsPrecision(self) -> int """
        return 0

    def labelsPrecisionChanged(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def labelsVisibleChanged(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def pressed(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def released(self, *args, **kwargs): # real signature unknown
        """
        pyqtSignal(*types, name: str = ..., revision: int = ..., arguments: Sequence = ...) -> PYQT_SIGNAL
        
        types is normally a sequence of individual types.  Each type is either a
        type object or a string that is the name of a C++ type.  Alternatively
        each type could itself be a sequence of types each describing a different
        overloaded signal.
        name is the optional C++ name of the signal.  If it is not specified then
        the name of the class attribute that is bound to the signal is used.
        revision is the optional revision of the signal that is exported to QML.
        If it is not specified then 0 is used.
        arguments is the optional sequence of the names of the signal's arguments.
        """
        pass

    def remove(self, set, QBarSet=None): # real signature unknown; restored from __doc__
        """ remove(self, set: Optional[QBarSet]) -> bool """
        return False

    def setBarWidth(self, width): # real signature unknown; restored from __doc__
        """ setBarWidth(self, width: float) """
        pass

    def setLabelsAngle(self, angle): # real signature unknown; restored from __doc__
        """ setLabelsAngle(self, angle: float) """
        pass

    def setLabelsFormat(self, format, p_str=None): # real signature unknown; restored from __doc__
        """ setLabelsFormat(self, format: Optional[str]) """
        pass

    def setLabelsPosition(self, position): # real signature unknown; restored from __doc__
        """ setLabelsPosition(self, position: QAbstractBarSeries.LabelsPosition) """
        pass

    def setLabelsPrecision(self, precision): # real signature unknown; restored from __doc__
        """ setLabelsPrecision(self, precision: int) """
        pass

    def setLabelsVisible(self, visible=True): # real signature unknown; restored from __doc__
        """ setLabelsVisible(self, visible: bool = True) """
        pass

    def take(self, set, QBarSet=None): # real signature unknown; restored from __doc__
        """ take(self, set: Optional[QBarSet]) -> bool """
        return False

    def __init__(self, *args, **kwargs): # real signature unknown
        pass

    def __len__(self, *args, **kwargs): # real signature unknown
        """ Return len(self). """
        pass

    LabelsCenter = 0
    LabelsInsideBase = 2
    LabelsInsideEnd = 1
    LabelsOutsideEnd = 3


