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<type 'tuple'>

tuple() -> empty tuple tuple(iterable) -> tuple initialized from iterable's items

If the argument is a tuple, the return value is the same object.


IS_NOT_EMPTY.__add__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__add__(y) <==> x+y

IS_NOT_EMPTY.__class__ <type 'type'> extends (<type 'object'>,) belongs to class <type 'type'>

tuple() -> empty tuple tuple(iterable) -> tuple initialized from iterable's items

If the argument is a tuple, the return value is the same object.

IS_NOT_EMPTY.__contains__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__contains__(y) <==> y in x

IS_NOT_EMPTY.__delattr__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__delattr__('name') <==> del

IS_NOT_EMPTY.__doc__ <type 'str'> belongs to class <type 'str'>

str(object='') -> string

Return a nice string representation of the object. If the argument is a string, the return value is the same object.

IS_NOT_EMPTY.__eq__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__eq__(y) <==> x==y

IS_NOT_EMPTY.__format__ <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>

default object formatter

IS_NOT_EMPTY.__ge__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__ge__(y) <==> x>=y

IS_NOT_EMPTY.__getattribute__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__getattribute__('name') <==>

IS_NOT_EMPTY.__getitem__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__getitem__(y) <==> x[y]

IS_NOT_EMPTY.__getnewargs__ <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>

IS_NOT_EMPTY.__getslice__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__getslice__(i, j) <==> x[i:j]

Use of negative indices is not supported.

IS_NOT_EMPTY.__gt__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__gt__(y) <==> x>y

IS_NOT_EMPTY.__hash__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__hash__() <==> hash(x)

IS_NOT_EMPTY.__init__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__init__(...) initializes x; see help(type(x)) for signature

IS_NOT_EMPTY.__iter__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__iter__() <==> iter(x)

IS_NOT_EMPTY.__le__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__le__(y) <==> x<=y

IS_NOT_EMPTY.__len__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__len__() <==> len(x)

IS_NOT_EMPTY.__lt__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__lt__(y) <==> x<y

IS_NOT_EMPTY.__mul__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__mul__(n) <==> x*n

IS_NOT_EMPTY.__ne__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__ne__(y) <==> x!=y

IS_NOT_EMPTY.__new__ <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>

T.__new__(S, ...) -> a new object with type S, a subtype of T

IS_NOT_EMPTY.__reduce__ <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>

helper for pickle

IS_NOT_EMPTY.__reduce_ex__ <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>

helper for pickle

IS_NOT_EMPTY.__repr__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__repr__() <==> repr(x)

IS_NOT_EMPTY.__rmul__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__rmul__(n) <==> n*x

IS_NOT_EMPTY.__setattr__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__setattr__('name', value) <==> = value

IS_NOT_EMPTY.__sizeof__ <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>

__sizeof__() -> int size of object in memory, in bytes

IS_NOT_EMPTY.__str__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>

x.__str__() <==> str(x)

IS_NOT_EMPTY.__subclasshook__ <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>

Abstract classes can override this to customize issubclass().

This is invoked early on by abc.ABCMeta.__subclasscheck__(). It should return True, False or NotImplemented. If it returns NotImplemented, the normal algorithm is used. Otherwise, it overrides the normal algorithm (and the outcome is cached).

IS_NOT_EMPTY.count <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>

T.count(value) -> integer -- return number of occurrences of value

IS_NOT_EMPTY.index <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>

T.index(value, [start, [stop]]) -> integer -- return first index of value. Raises ValueError if the value is not present.