Docs for TR.__doc__.rsplit

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Description


<type 'builtin_function_or_method'>








S.rsplit([sep [,maxsplit]]) -> list of strings

Return a list of the words in the string S, using sep as the
delimiter string, starting at the end of the string and working
to the front. If maxsplit is given, at most maxsplit splits are
done. If sep is not specified or is None, any whitespace string
is a separator.


Attributes


TR.__doc__.rsplit.__call__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__call__(...) <==> x(...)

TR.__doc__.rsplit.__class__ <type 'type'> extends (<type 'object'>,) belongs to class <type 'type'>
<attribute '__doc__' of 'builtin_function_or_method' objects>

TR.__doc__.rsplit.__cmp__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__cmp__(y) <==> cmp(x,y)

TR.__doc__.rsplit.__delattr__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__delattr__('name') <==> del x.name

TR.__doc__.rsplit.__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.

TR.__doc__.rsplit.__eq__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__eq__(y) <==> x==y

TR.__doc__.rsplit.__format__ <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>
default object formatter

TR.__doc__.rsplit.__ge__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__ge__(y) <==> x>=y

TR.__doc__.rsplit.__getattribute__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__getattribute__('name') <==> x.name

TR.__doc__.rsplit.__gt__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__gt__(y) <==> x>y

TR.__doc__.rsplit.__hash__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__hash__() <==> hash(x)

TR.__doc__.rsplit.__init__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__init__(...) initializes x; see help(type(x)) for signature

TR.__doc__.rsplit.__le__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__le__(y) <==> x<=y

TR.__doc__.rsplit.__lt__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__lt__(y) <==> x<y

TR.__doc__.rsplit.__module__ <type 'NoneType'> belongs to class <type 'NoneType'>

TR.__doc__.rsplit.__name__ <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.

TR.__doc__.rsplit.__ne__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__ne__(y) <==> x!=y

TR.__doc__.rsplit.__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

TR.__doc__.rsplit.__reduce__ <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>
helper for pickle

TR.__doc__.rsplit.__reduce_ex__ <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>
helper for pickle

TR.__doc__.rsplit.__repr__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__repr__() <==> repr(x)

TR.__doc__.rsplit.__self__ <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.

TR.__doc__.rsplit.__setattr__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__setattr__('name', value) <==> x.name = value

TR.__doc__.rsplit.__sizeof__ <type 'builtin_function_or_method'> belongs to class <type 'builtin_function_or_method'>
__sizeof__() -> int size of object in memory, in bytes

TR.__doc__.rsplit.__str__ <type 'method-wrapper'> belongs to class <type 'method-wrapper'>
x.__str__() <==> str(x)

TR.__doc__.rsplit.__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).