晋太元中,武陵人捕鱼为业。缘溪行,忘路之远近。忽逢桃花林,夹岸数百步,中无杂树,芳草鲜美,落英缤纷。渔人甚异之,复前行,欲穷其林。   林尽水源,便得一山,山有小口,仿佛若有光。便舍船,从口入。初极狭,才通人。复行数十步,豁然开朗。土地平旷,屋舍俨然,有良田、美池、桑竹之属。阡陌交通,鸡犬相闻。其中往来种作,男女衣着,悉如外人。黄发垂髫,并怡然自乐。   见渔人,乃大惊,问所从来。具答之。便要还家,设酒杀鸡作食。村中闻有此人,咸来问讯。自云先世避秦时乱,率妻子邑人来此绝境,不复出焉,遂与外人间隔。问今是何世,乃不知有汉,无论魏晋。此人一一为具言所闻,皆叹惋。余人各复延至其家,皆出酒食。停数日,辞去。此中人语云:“不足为外人道也。”(间隔 一作:隔绝)   既出,得其船,便扶向路,处处志之。及郡下,诣太守,说如此。太守即遣人随其往,寻向所志,遂迷,不复得路。   南阳刘子骥,高尚士也,闻之,欣然规往。未果,寻病终。后遂无问津者。 sh-3ll

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DIR:/lib/python3.9/site-packages/future/types/
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Current File : //lib/python3.9/site-packages/future/types/newobject.py
"""
An object subclass for Python 2 that gives new-style classes written in the
style of Python 3 (with ``__next__`` and unicode-returning ``__str__`` methods)
the appropriate Python 2-style ``next`` and ``__unicode__`` methods for compatible.

Example use::

    from builtins import object

    my_unicode_str = u'Unicode string: \u5b54\u5b50'

    class A(object):
        def __str__(self):
            return my_unicode_str

    a = A()
    print(str(a))

    # On Python 2, these relations hold:
    assert unicode(a) == my_unicode_string
    assert str(a) == my_unicode_string.encode('utf-8')


Another example::

    from builtins import object

    class Upper(object):
        def __init__(self, iterable):
            self._iter = iter(iterable)
        def __next__(self):                 # note the Py3 interface
            return next(self._iter).upper()
        def __iter__(self):
            return self

    assert list(Upper('hello')) == list('HELLO')

"""


class newobject(object):
    """
    A magical object class that provides Python 2 compatibility methods::
        next
        __unicode__
        __nonzero__

    Subclasses of this class can merely define the Python 3 methods (__next__,
    __str__, and __bool__).
    """
    def next(self):
        if hasattr(self, '__next__'):
            return type(self).__next__(self)
        raise TypeError('newobject is not an iterator')

    def __unicode__(self):
        # All subclasses of the builtin object should have __str__ defined.
        # Note that old-style classes do not have __str__ defined.
        if hasattr(self, '__str__'):
            s = type(self).__str__(self)
        else:
            s = str(self)
        if isinstance(s, unicode):
            return s
        else:
            return s.decode('utf-8')

    def __nonzero__(self):
        if hasattr(self, '__bool__'):
            return type(self).__bool__(self)
        if hasattr(self, '__len__'):
            return type(self).__len__(self)
        # object has no __nonzero__ method
        return True

    # Are these ever needed?
    # def __div__(self):
    #     return self.__truediv__()

    # def __idiv__(self, other):
    #     return self.__itruediv__(other)

    def __long__(self):
        if not hasattr(self, '__int__'):
            return NotImplemented
        return self.__int__()  # not type(self).__int__(self)

    # def __new__(cls, *args, **kwargs):
    #     """
    #     dict() -> new empty dictionary
    #     dict(mapping) -> new dictionary initialized from a mapping object's
    #         (key, value) pairs
    #     dict(iterable) -> new dictionary initialized as if via:
    #         d = {}
    #         for k, v in iterable:
    #             d[k] = v
    #     dict(**kwargs) -> new dictionary initialized with the name=value pairs
    #         in the keyword argument list.  For example:  dict(one=1, two=2)
    #     """

    #     if len(args) == 0:
    #         return super(newdict, cls).__new__(cls)
    #     elif type(args[0]) == newdict:
    #         return args[0]
    #     else:
    #         value = args[0]
    #     return super(newdict, cls).__new__(cls, value)

    def __native__(self):
        """
        Hook for the future.utils.native() function
        """
        return object(self)

    __slots__ = []

__all__ = ['newobject']