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builtins.pyi
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builtins.pyi
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import sys
import types
from _ast import AST
from _collections_abc import dict_items, dict_keys, dict_values
from _typeshed import (
AnyStr_co,
OpenBinaryMode,
OpenBinaryModeReading,
OpenBinaryModeUpdating,
OpenBinaryModeWriting,
OpenTextMode,
ReadableBuffer,
Self,
StrOrBytesPath,
SupportsAdd,
SupportsAiter,
SupportsAnext,
SupportsDivMod,
SupportsIter,
SupportsKeysAndGetItem,
SupportsLenAndGetItem,
SupportsNext,
SupportsRAdd,
SupportsRDivMod,
SupportsRichComparison,
SupportsRichComparisonT,
SupportsTrunc,
SupportsWrite,
)
from collections.abc import Awaitable, Callable, Iterable, Iterator, MutableSet, Reversible, Set as AbstractSet, Sized
from io import BufferedRandom, BufferedReader, BufferedWriter, FileIO, TextIOWrapper
from types import CodeType, TracebackType, _Cell
# mypy crashes if any of {ByteString, Sequence, MutableSequence, Mapping, MutableMapping} are imported from collections.abc in builtins.pyi
from typing import ( # noqa: Y027
IO,
Any,
BinaryIO,
ByteString,
ClassVar,
Generic,
Mapping,
MutableMapping,
MutableSequence,
NoReturn,
Protocol,
Sequence,
SupportsAbs,
SupportsBytes,
SupportsComplex,
SupportsFloat,
SupportsInt,
SupportsRound,
TypeVar,
overload,
type_check_only,
)
from typing_extensions import Literal, LiteralString, SupportsIndex, TypeAlias, TypeGuard, final
if sys.version_info >= (3, 9):
from types import GenericAlias
_T = TypeVar("_T")
_T_co = TypeVar("_T_co", covariant=True)
_T_contra = TypeVar("_T_contra", contravariant=True)
_R_co = TypeVar("_R_co", covariant=True)
_KT = TypeVar("_KT")
_VT = TypeVar("_VT")
_S = TypeVar("_S")
_T1 = TypeVar("_T1")
_T2 = TypeVar("_T2")
_T3 = TypeVar("_T3")
_T4 = TypeVar("_T4")
_T5 = TypeVar("_T5")
_SupportsNextT = TypeVar("_SupportsNextT", bound=SupportsNext[Any], covariant=True)
_SupportsAnextT = TypeVar("_SupportsAnextT", bound=SupportsAnext[Any], covariant=True)
_AwaitableT = TypeVar("_AwaitableT", bound=Awaitable[Any])
_AwaitableT_co = TypeVar("_AwaitableT_co", bound=Awaitable[Any], covariant=True)
class object:
__doc__: str | None
__dict__: dict[str, Any]
__module__: str
__annotations__: dict[str, Any]
@property
def __class__(self: Self) -> type[Self]: ...
# Ignore errors about type mismatch between property getter and setter
@__class__.setter
def __class__(self, __type: type[object]) -> None: ... # noqa: F811
def __init__(self) -> None: ...
def __new__(cls: type[Self]) -> Self: ...
# N.B. `object.__setattr__` and `object.__delattr__` are heavily special-cased by type checkers.
# Overriding them in subclasses has different semantics, even if the override has an identical signature.
def __setattr__(self, __name: str, __value: Any) -> None: ...
def __delattr__(self, __name: str) -> None: ...
def __eq__(self, __o: object) -> bool: ...
def __ne__(self, __o: object) -> bool: ...
def __str__(self) -> str: ... # noqa: Y029
def __repr__(self) -> str: ... # noqa: Y029
def __hash__(self) -> int: ...
def __format__(self, __format_spec: str) -> str: ...
def __getattribute__(self, __name: str) -> Any: ...
def __sizeof__(self) -> int: ...
# return type of pickle methods is rather hard to express in the current type system
# see #6661 and https://docs.python.org/3/library/pickle.html#object.__reduce__
def __reduce__(self) -> str | tuple[Any, ...]: ...
if sys.version_info >= (3, 8):
def __reduce_ex__(self, __protocol: SupportsIndex) -> str | tuple[Any, ...]: ...
else:
def __reduce_ex__(self, __protocol: int) -> str | tuple[Any, ...]: ...
def __dir__(self) -> Iterable[str]: ...
def __init_subclass__(cls) -> None: ...
class staticmethod(Generic[_R_co]):
@property
def __func__(self) -> Callable[..., _R_co]: ...
@property
def __isabstractmethod__(self) -> bool: ...
def __init__(self: staticmethod[_R_co], __f: Callable[..., _R_co]) -> None: ...
def __get__(self, __obj: _T, __type: type[_T] | None = ...) -> Callable[..., _R_co]: ...
if sys.version_info >= (3, 10):
__name__: str
__qualname__: str
@property
def __wrapped__(self) -> Callable[..., _R_co]: ...
def __call__(self, *args: Any, **kwargs: Any) -> _R_co: ...
class classmethod(Generic[_R_co]):
@property
def __func__(self) -> Callable[..., _R_co]: ...
@property
def __isabstractmethod__(self) -> bool: ...
def __init__(self: classmethod[_R_co], __f: Callable[..., _R_co]) -> None: ...
def __get__(self, __obj: _T, __type: type[_T] | None = ...) -> Callable[..., _R_co]: ...
if sys.version_info >= (3, 10):
__name__: str
__qualname__: str
@property
def __wrapped__(self) -> Callable[..., _R_co]: ...
class type:
@property
def __base__(self) -> type: ...
__bases__: tuple[type, ...]
@property
def __basicsize__(self) -> int: ...
@property
def __dict__(self) -> types.MappingProxyType[str, Any]: ... # type: ignore[override]
@property
def __dictoffset__(self) -> int: ...
@property
def __flags__(self) -> int: ...
@property
def __itemsize__(self) -> int: ...
__module__: str
@property
def __mro__(self) -> tuple[type, ...]: ...
__name__: str
__qualname__: str
@property
def __text_signature__(self) -> str | None: ...
@property
def __weakrefoffset__(self) -> int: ...
@overload
def __init__(self, __o: object) -> None: ...
@overload
def __init__(self, __name: str, __bases: tuple[type, ...], __dict: dict[str, Any], **kwds: Any) -> None: ...
@overload
def __new__(cls, __o: object) -> type: ...
@overload
def __new__(cls: type[Self], __name: str, __bases: tuple[type, ...], __namespace: dict[str, Any], **kwds: Any) -> Self: ...
def __call__(self, *args: Any, **kwds: Any) -> Any: ...
def __subclasses__(self: Self) -> list[Self]: ...
# Note: the documentation doesn't specify what the return type is, the standard
# implementation seems to be returning a list.
def mro(self) -> list[type]: ...
def __instancecheck__(self, __instance: Any) -> bool: ...
def __subclasscheck__(self, __subclass: type) -> bool: ...
@classmethod
def __prepare__(metacls, __name: str, __bases: tuple[type, ...], **kwds: Any) -> Mapping[str, object]: ...
if sys.version_info >= (3, 10):
def __or__(self, __t: Any) -> types.UnionType: ...
def __ror__(self, __t: Any) -> types.UnionType: ...
class super:
@overload
def __init__(self, __t: Any, __obj: Any) -> None: ...
@overload
def __init__(self, __t: Any) -> None: ...
@overload
def __init__(self) -> None: ...
_PositiveInteger: TypeAlias = Literal[1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25]
_NegativeInteger: TypeAlias = Literal[-1, -2, -3, -4, -5, -6, -7, -8, -9, -10, -11, -12, -13, -14, -15, -16, -17, -18, -19, -20]
_LiteralInteger = _PositiveInteger | _NegativeInteger | Literal[0] # noqa: Y026 # TODO: Use TypeAlias once mypy bugs are fixed
class int:
@overload
def __new__(cls: type[Self], __x: str | ReadableBuffer | SupportsInt | SupportsIndex | SupportsTrunc = ...) -> Self: ...
@overload
def __new__(cls: type[Self], __x: str | bytes | bytearray, base: SupportsIndex) -> Self: ...
if sys.version_info >= (3, 8):
def as_integer_ratio(self) -> tuple[int, Literal[1]]: ...
@property
def real(self) -> int: ...
@property
def imag(self) -> Literal[0]: ...
@property
def numerator(self) -> int: ...
@property
def denominator(self) -> Literal[1]: ...
def conjugate(self) -> int: ...
def bit_length(self) -> int: ...
if sys.version_info >= (3, 10):
def bit_count(self) -> int: ...
if sys.version_info >= (3, 11):
def to_bytes(
self, length: SupportsIndex = ..., byteorder: Literal["little", "big"] = ..., *, signed: bool = ...
) -> bytes: ...
@classmethod
def from_bytes(
cls: type[Self],
bytes: Iterable[SupportsIndex] | SupportsBytes | ReadableBuffer,
byteorder: Literal["little", "big"] = ...,
*,
signed: bool = ...,
) -> Self: ...
else:
def to_bytes(self, length: SupportsIndex, byteorder: Literal["little", "big"], *, signed: bool = ...) -> bytes: ...
@classmethod
def from_bytes(
cls: type[Self],
bytes: Iterable[SupportsIndex] | SupportsBytes | ReadableBuffer,
byteorder: Literal["little", "big"],
*,
signed: bool = ...,
) -> Self: ...
def __add__(self, __x: int) -> int: ...
def __sub__(self, __x: int) -> int: ...
def __mul__(self, __x: int) -> int: ...
def __floordiv__(self, __x: int) -> int: ...
def __truediv__(self, __x: int) -> float: ...
def __mod__(self, __x: int) -> int: ...
def __divmod__(self, __x: int) -> tuple[int, int]: ...
def __radd__(self, __x: int) -> int: ...
def __rsub__(self, __x: int) -> int: ...
def __rmul__(self, __x: int) -> int: ...
def __rfloordiv__(self, __x: int) -> int: ...
def __rtruediv__(self, __x: int) -> float: ...
def __rmod__(self, __x: int) -> int: ...
def __rdivmod__(self, __x: int) -> tuple[int, int]: ...
@overload
def __pow__(self, __x: Literal[0]) -> Literal[1]: ...
@overload
def __pow__(self, __x: Literal[0], __modulo: None) -> Literal[1]: ...
@overload
def __pow__(self, __x: _PositiveInteger, __modulo: None = ...) -> int: ...
@overload
def __pow__(self, __x: _NegativeInteger, __modulo: None = ...) -> float: ...
# positive x -> int; negative x -> float
# return type must be Any as `int | float` causes too many false-positive errors
@overload
def __pow__(self, __x: int, __modulo: None = ...) -> Any: ...
@overload
def __pow__(self, __x: int, __modulo: int) -> int: ...
def __rpow__(self, __x: int, __mod: int | None = ...) -> Any: ...
def __and__(self, __n: int) -> int: ...
def __or__(self, __n: int) -> int: ...
def __xor__(self, __n: int) -> int: ...
def __lshift__(self, __n: int) -> int: ...
def __rshift__(self, __n: int) -> int: ...
def __rand__(self, __n: int) -> int: ...
def __ror__(self, __n: int) -> int: ...
def __rxor__(self, __n: int) -> int: ...
def __rlshift__(self, __n: int) -> int: ...
def __rrshift__(self, __n: int) -> int: ...
def __neg__(self) -> int: ...
def __pos__(self) -> int: ...
def __invert__(self) -> int: ...
def __trunc__(self) -> int: ...
def __ceil__(self) -> int: ...
def __floor__(self) -> int: ...
def __round__(self, __ndigits: SupportsIndex = ...) -> int: ...
def __getnewargs__(self) -> tuple[int]: ...
def __eq__(self, __x: object) -> bool: ...
def __ne__(self, __x: object) -> bool: ...
def __lt__(self, __x: int) -> bool: ...
def __le__(self, __x: int) -> bool: ...
def __gt__(self, __x: int) -> bool: ...
def __ge__(self, __x: int) -> bool: ...
def __float__(self) -> float: ...
def __int__(self) -> int: ...
def __abs__(self) -> int: ...
def __bool__(self) -> bool: ...
def __index__(self) -> int: ...
class float:
def __new__(cls: type[Self], __x: SupportsFloat | SupportsIndex | str | ReadableBuffer = ...) -> Self: ...
def as_integer_ratio(self) -> tuple[int, int]: ...
def hex(self) -> str: ...
def is_integer(self) -> bool: ...
@classmethod
def fromhex(cls: type[Self], __s: str) -> Self: ...
@property
def real(self) -> float: ...
@property
def imag(self) -> float: ...
def conjugate(self) -> float: ...
def __add__(self, __x: float) -> float: ...
def __sub__(self, __x: float) -> float: ...
def __mul__(self, __x: float) -> float: ...
def __floordiv__(self, __x: float) -> float: ...
def __truediv__(self, __x: float) -> float: ...
def __mod__(self, __x: float) -> float: ...
def __divmod__(self, __x: float) -> tuple[float, float]: ...
@overload
def __pow__(self, __x: int, __mod: None = ...) -> float: ...
# positive x -> float; negative x -> complex
# return type must be Any as `float | complex` causes too many false-positive errors
@overload
def __pow__(self, __x: float, __mod: None = ...) -> Any: ...
def __radd__(self, __x: float) -> float: ...
def __rsub__(self, __x: float) -> float: ...
def __rmul__(self, __x: float) -> float: ...
def __rfloordiv__(self, __x: float) -> float: ...
def __rtruediv__(self, __x: float) -> float: ...
def __rmod__(self, __x: float) -> float: ...
def __rdivmod__(self, __x: float) -> tuple[float, float]: ...
@overload
def __rpow__(self, __x: _PositiveInteger, __modulo: None = ...) -> float: ...
@overload
def __rpow__(self, __x: _NegativeInteger, __mod: None = ...) -> complex: ...
# Returning `complex` for the general case gives too many false-positive errors.
@overload
def __rpow__(self, __x: float, __mod: None = ...) -> Any: ...
def __getnewargs__(self) -> tuple[float]: ...
def __trunc__(self) -> int: ...
if sys.version_info >= (3, 9):
def __ceil__(self) -> int: ...
def __floor__(self) -> int: ...
@overload
def __round__(self, __ndigits: None = ...) -> int: ...
@overload
def __round__(self, __ndigits: SupportsIndex) -> float: ...
def __eq__(self, __x: object) -> bool: ...
def __ne__(self, __x: object) -> bool: ...
def __lt__(self, __x: float) -> bool: ...
def __le__(self, __x: float) -> bool: ...
def __gt__(self, __x: float) -> bool: ...
def __ge__(self, __x: float) -> bool: ...
def __neg__(self) -> float: ...
def __pos__(self) -> float: ...
def __int__(self) -> int: ...
def __float__(self) -> float: ...
def __abs__(self) -> float: ...
def __bool__(self) -> bool: ...
class complex:
if sys.version_info >= (3, 8):
# Python doesn't currently accept SupportsComplex for the second argument
@overload
def __new__(
cls: type[Self],
real: complex | SupportsComplex | SupportsFloat | SupportsIndex = ...,
imag: complex | SupportsFloat | SupportsIndex = ...,
) -> Self: ...
@overload
def __new__(cls: type[Self], real: str | SupportsComplex | SupportsFloat | SupportsIndex | complex) -> Self: ...
else:
@overload
def __new__(
cls: type[Self], real: complex | SupportsComplex | SupportsFloat = ..., imag: complex | SupportsFloat = ...
) -> Self: ...
@overload
def __new__(cls: type[Self], real: str | SupportsComplex | SupportsFloat | complex) -> Self: ...
@property
def real(self) -> float: ...
@property
def imag(self) -> float: ...
def conjugate(self) -> complex: ...
def __add__(self, __x: complex) -> complex: ...
def __sub__(self, __x: complex) -> complex: ...
def __mul__(self, __x: complex) -> complex: ...
def __pow__(self, __x: complex, __mod: None = ...) -> complex: ...
def __truediv__(self, __x: complex) -> complex: ...
def __radd__(self, __x: complex) -> complex: ...
def __rsub__(self, __x: complex) -> complex: ...
def __rmul__(self, __x: complex) -> complex: ...
def __rpow__(self, __x: complex, __mod: None = ...) -> complex: ...
def __rtruediv__(self, __x: complex) -> complex: ...
def __eq__(self, __x: object) -> bool: ...
def __ne__(self, __x: object) -> bool: ...
def __neg__(self) -> complex: ...
def __pos__(self) -> complex: ...
def __abs__(self) -> float: ...
def __bool__(self) -> bool: ...
if sys.version_info >= (3, 11):
def __complex__(self) -> complex: ...
class _FormatMapMapping(Protocol):
def __getitem__(self, __key: str) -> Any: ...
class _TranslateTable(Protocol):
def __getitem__(self, __key: int) -> str | int | None: ...
class str(Sequence[str]):
@overload
def __new__(cls: type[Self], object: object = ...) -> Self: ...
@overload
def __new__(cls: type[Self], object: ReadableBuffer, encoding: str = ..., errors: str = ...) -> Self: ...
@overload
def capitalize(self: LiteralString) -> LiteralString: ...
@overload
def capitalize(self) -> str: ... # type: ignore[misc]
@overload
def casefold(self: LiteralString) -> LiteralString: ...
@overload
def casefold(self) -> str: ... # type: ignore[misc]
@overload
def center(self: LiteralString, __width: SupportsIndex, __fillchar: LiteralString = ...) -> LiteralString: ...
@overload
def center(self, __width: SupportsIndex, __fillchar: str = ...) -> str: ... # type: ignore[misc]
def count(self, x: str, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...) -> int: ...
def encode(self, encoding: str = ..., errors: str = ...) -> bytes: ...
def endswith(
self, __suffix: str | tuple[str, ...], __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...
) -> bool: ...
if sys.version_info >= (3, 8):
@overload
def expandtabs(self: LiteralString, tabsize: SupportsIndex = ...) -> LiteralString: ...
@overload
def expandtabs(self, tabsize: SupportsIndex = ...) -> str: ... # type: ignore[misc]
else:
@overload
def expandtabs(self: LiteralString, tabsize: int = ...) -> LiteralString: ...
@overload
def expandtabs(self, tabsize: int = ...) -> str: ... # type: ignore[misc]
def find(self, __sub: str, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...) -> int: ...
@overload
def format(self: LiteralString, *args: LiteralString, **kwargs: LiteralString) -> LiteralString: ...
@overload
def format(self, *args: object, **kwargs: object) -> str: ... # type: ignore[misc]
def format_map(self, map: _FormatMapMapping) -> str: ...
def index(self, __sub: str, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...) -> int: ...
def isalnum(self) -> bool: ...
def isalpha(self) -> bool: ...
def isascii(self) -> bool: ...
def isdecimal(self) -> bool: ...
def isdigit(self) -> bool: ...
def isidentifier(self) -> bool: ...
def islower(self) -> bool: ...
def isnumeric(self) -> bool: ...
def isprintable(self) -> bool: ...
def isspace(self) -> bool: ...
def istitle(self) -> bool: ...
def isupper(self) -> bool: ...
@overload
def join(self: LiteralString, __iterable: Iterable[LiteralString]) -> LiteralString: ...
@overload
def join(self, __iterable: Iterable[str]) -> str: ... # type: ignore[misc]
@overload
def ljust(self: LiteralString, __width: SupportsIndex, __fillchar: LiteralString = ...) -> LiteralString: ...
@overload
def ljust(self, __width: SupportsIndex, __fillchar: str = ...) -> str: ... # type: ignore[misc]
@overload
def lower(self: LiteralString) -> LiteralString: ...
@overload
def lower(self) -> str: ... # type: ignore[misc]
@overload
def lstrip(self: LiteralString, __chars: LiteralString | None = ...) -> LiteralString: ...
@overload
def lstrip(self, __chars: str | None = ...) -> str: ... # type: ignore[misc]
@overload
def partition(self: LiteralString, __sep: LiteralString) -> tuple[LiteralString, LiteralString, LiteralString]: ...
@overload
def partition(self, __sep: str) -> tuple[str, str, str]: ... # type: ignore[misc]
@overload
def replace(
self: LiteralString, __old: LiteralString, __new: LiteralString, __count: SupportsIndex = ...
) -> LiteralString: ...
@overload
def replace(self, __old: str, __new: str, __count: SupportsIndex = ...) -> str: ... # type: ignore[misc]
if sys.version_info >= (3, 9):
@overload
def removeprefix(self: LiteralString, __prefix: LiteralString) -> LiteralString: ...
@overload
def removeprefix(self, __prefix: str) -> str: ... # type: ignore[misc]
@overload
def removesuffix(self: LiteralString, __suffix: LiteralString) -> LiteralString: ...
@overload
def removesuffix(self, __suffix: str) -> str: ... # type: ignore[misc]
def rfind(self, __sub: str, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...) -> int: ...
def rindex(self, __sub: str, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...) -> int: ...
@overload
def rjust(self: LiteralString, __width: SupportsIndex, __fillchar: LiteralString = ...) -> LiteralString: ...
@overload
def rjust(self, __width: SupportsIndex, __fillchar: str = ...) -> str: ... # type: ignore[misc]
@overload
def rpartition(self: LiteralString, __sep: LiteralString) -> tuple[LiteralString, LiteralString, LiteralString]: ...
@overload
def rpartition(self, __sep: str) -> tuple[str, str, str]: ... # type: ignore[misc]
@overload
def rsplit(self: LiteralString, sep: LiteralString | None = ..., maxsplit: SupportsIndex = ...) -> list[LiteralString]: ...
@overload
def rsplit(self, sep: str | None = ..., maxsplit: SupportsIndex = ...) -> list[str]: ... # type: ignore[misc]
@overload
def rstrip(self: LiteralString, __chars: LiteralString | None = ...) -> LiteralString: ...
@overload
def rstrip(self, __chars: str | None = ...) -> str: ... # type: ignore[misc]
@overload
def split(self: LiteralString, sep: LiteralString | None = ..., maxsplit: SupportsIndex = ...) -> list[LiteralString]: ...
@overload
def split(self, sep: str | None = ..., maxsplit: SupportsIndex = ...) -> list[str]: ... # type: ignore[misc]
@overload
def splitlines(self: LiteralString, keepends: bool = ...) -> list[LiteralString]: ...
@overload
def splitlines(self, keepends: bool = ...) -> list[str]: ... # type: ignore[misc]
def startswith(
self, __prefix: str | tuple[str, ...], __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...
) -> bool: ...
@overload
def strip(self: LiteralString, __chars: LiteralString | None = ...) -> LiteralString: ...
@overload
def strip(self, __chars: str | None = ...) -> str: ... # type: ignore[misc]
@overload
def swapcase(self: LiteralString) -> LiteralString: ...
@overload
def swapcase(self) -> str: ... # type: ignore[misc]
@overload
def title(self: LiteralString) -> LiteralString: ...
@overload
def title(self) -> str: ... # type: ignore[misc]
def translate(self, __table: _TranslateTable) -> str: ...
@overload
def upper(self: LiteralString) -> LiteralString: ...
@overload
def upper(self) -> str: ... # type: ignore[misc]
@overload
def zfill(self: LiteralString, __width: SupportsIndex) -> LiteralString: ...
@overload
def zfill(self, __width: SupportsIndex) -> str: ... # type: ignore[misc]
@staticmethod
@overload
def maketrans(__x: dict[int, _T] | dict[str, _T] | dict[str | int, _T]) -> dict[int, _T]: ...
@staticmethod
@overload
def maketrans(__x: str, __y: str, __z: str | None = ...) -> dict[int, int | None]: ...
@overload
def __add__(self: LiteralString, __s: LiteralString) -> LiteralString: ...
@overload
def __add__(self, __s: str) -> str: ... # type: ignore[misc]
# Incompatible with Sequence.__contains__
def __contains__(self, __o: str) -> bool: ... # type: ignore[override]
def __eq__(self, __x: object) -> bool: ...
def __ge__(self, __x: str) -> bool: ...
def __getitem__(self, __i: SupportsIndex | slice) -> str: ...
def __gt__(self, __x: str) -> bool: ...
@overload
def __iter__(self: LiteralString) -> Iterator[LiteralString]: ...
@overload
def __iter__(self) -> Iterator[str]: ... # type: ignore[misc]
def __le__(self, __x: str) -> bool: ...
def __len__(self) -> int: ...
def __lt__(self, __x: str) -> bool: ...
@overload
def __mod__(self: LiteralString, __x: LiteralString | tuple[LiteralString, ...]) -> LiteralString: ...
@overload
def __mod__(self, __x: Any) -> str: ... # type: ignore[misc]
@overload
def __mul__(self: LiteralString, __n: SupportsIndex) -> LiteralString: ...
@overload
def __mul__(self, __n: SupportsIndex) -> str: ... # type: ignore[misc]
def __ne__(self, __x: object) -> bool: ...
@overload
def __rmul__(self: LiteralString, __n: SupportsIndex) -> LiteralString: ...
@overload
def __rmul__(self, __n: SupportsIndex) -> str: ... # type: ignore[misc]
def __getnewargs__(self) -> tuple[str]: ...
class bytes(ByteString):
@overload
def __new__(cls: type[Self], __o: Iterable[SupportsIndex] | SupportsIndex | SupportsBytes | ReadableBuffer) -> Self: ...
@overload
def __new__(cls: type[Self], __string: str, encoding: str, errors: str = ...) -> Self: ...
@overload
def __new__(cls: type[Self]) -> Self: ...
def capitalize(self) -> bytes: ...
def center(self, __width: SupportsIndex, __fillchar: bytes = ...) -> bytes: ...
def count(
self, __sub: ReadableBuffer | SupportsIndex, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...
) -> int: ...
def decode(self, encoding: str = ..., errors: str = ...) -> str: ...
def endswith(
self,
__suffix: ReadableBuffer | tuple[ReadableBuffer, ...],
__start: SupportsIndex | None = ...,
__end: SupportsIndex | None = ...,
) -> bool: ...
if sys.version_info >= (3, 8):
def expandtabs(self, tabsize: SupportsIndex = ...) -> bytes: ...
else:
def expandtabs(self, tabsize: int = ...) -> bytes: ...
def find(
self, __sub: ReadableBuffer | SupportsIndex, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...
) -> int: ...
if sys.version_info >= (3, 8):
def hex(self, sep: str | bytes = ..., bytes_per_sep: SupportsIndex = ...) -> str: ...
else:
def hex(self) -> str: ...
def index(
self, __sub: ReadableBuffer | SupportsIndex, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...
) -> int: ...
def isalnum(self) -> bool: ...
def isalpha(self) -> bool: ...
def isascii(self) -> bool: ...
def isdigit(self) -> bool: ...
def islower(self) -> bool: ...
def isspace(self) -> bool: ...
def istitle(self) -> bool: ...
def isupper(self) -> bool: ...
def join(self, __iterable_of_bytes: Iterable[ReadableBuffer]) -> bytes: ...
def ljust(self, __width: SupportsIndex, __fillchar: bytes | bytearray = ...) -> bytes: ...
def lower(self) -> bytes: ...
def lstrip(self, __bytes: ReadableBuffer | None = ...) -> bytes: ...
def partition(self, __sep: ReadableBuffer) -> tuple[bytes, bytes, bytes]: ...
def replace(self, __old: ReadableBuffer, __new: ReadableBuffer, __count: SupportsIndex = ...) -> bytes: ...
if sys.version_info >= (3, 9):
def removeprefix(self, __prefix: ReadableBuffer) -> bytes: ...
def removesuffix(self, __suffix: ReadableBuffer) -> bytes: ...
def rfind(
self, __sub: ReadableBuffer | SupportsIndex, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...
) -> int: ...
def rindex(
self, __sub: ReadableBuffer | SupportsIndex, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...
) -> int: ...
def rjust(self, __width: SupportsIndex, __fillchar: bytes | bytearray = ...) -> bytes: ...
def rpartition(self, __sep: ReadableBuffer) -> tuple[bytes, bytes, bytes]: ...
def rsplit(self, sep: ReadableBuffer | None = ..., maxsplit: SupportsIndex = ...) -> list[bytes]: ...
def rstrip(self, __bytes: ReadableBuffer | None = ...) -> bytes: ...
def split(self, sep: ReadableBuffer | None = ..., maxsplit: SupportsIndex = ...) -> list[bytes]: ...
def splitlines(self, keepends: bool = ...) -> list[bytes]: ...
def startswith(
self,
__prefix: ReadableBuffer | tuple[ReadableBuffer, ...],
__start: SupportsIndex | None = ...,
__end: SupportsIndex | None = ...,
) -> bool: ...
def strip(self, __bytes: ReadableBuffer | None = ...) -> bytes: ...
def swapcase(self) -> bytes: ...
def title(self) -> bytes: ...
def translate(self, __table: ReadableBuffer | None, delete: bytes = ...) -> bytes: ...
def upper(self) -> bytes: ...
def zfill(self, __width: SupportsIndex) -> bytes: ...
@classmethod
def fromhex(cls: type[Self], __s: str) -> Self: ...
@staticmethod
def maketrans(__frm: ReadableBuffer, __to: ReadableBuffer) -> bytes: ...
def __len__(self) -> int: ...
def __iter__(self) -> Iterator[int]: ...
@overload
def __getitem__(self, __i: SupportsIndex) -> int: ...
@overload
def __getitem__(self, __s: slice) -> bytes: ...
def __add__(self, __s: ReadableBuffer) -> bytes: ...
def __mul__(self, __n: SupportsIndex) -> bytes: ...
def __rmul__(self, __n: SupportsIndex) -> bytes: ...
def __mod__(self, __value: Any) -> bytes: ...
# Incompatible with Sequence.__contains__
def __contains__(self, __o: SupportsIndex | ReadableBuffer) -> bool: ... # type: ignore[override]
def __eq__(self, __x: object) -> bool: ...
def __ne__(self, __x: object) -> bool: ...
def __lt__(self, __x: bytes) -> bool: ...
def __le__(self, __x: bytes) -> bool: ...
def __gt__(self, __x: bytes) -> bool: ...
def __ge__(self, __x: bytes) -> bool: ...
def __getnewargs__(self) -> tuple[bytes]: ...
if sys.version_info >= (3, 11):
def __bytes__(self) -> bytes: ...
class bytearray(MutableSequence[int], ByteString):
@overload
def __init__(self) -> None: ...
@overload
def __init__(self, __ints: Iterable[SupportsIndex] | SupportsIndex | ReadableBuffer) -> None: ...
@overload
def __init__(self, __string: str, encoding: str, errors: str = ...) -> None: ...
def append(self, __item: SupportsIndex) -> None: ...
def capitalize(self) -> bytearray: ...
def center(self, __width: SupportsIndex, __fillchar: bytes = ...) -> bytearray: ...
def count(
self, __sub: ReadableBuffer | SupportsIndex, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...
) -> int: ...
def copy(self) -> bytearray: ...
def decode(self, encoding: str = ..., errors: str = ...) -> str: ...
def endswith(
self,
__suffix: ReadableBuffer | tuple[ReadableBuffer, ...],
__start: SupportsIndex | None = ...,
__end: SupportsIndex | None = ...,
) -> bool: ...
if sys.version_info >= (3, 8):
def expandtabs(self, tabsize: SupportsIndex = ...) -> bytearray: ...
else:
def expandtabs(self, tabsize: int = ...) -> bytearray: ...
def extend(self, __iterable_of_ints: Iterable[SupportsIndex]) -> None: ...
def find(
self, __sub: ReadableBuffer | SupportsIndex, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...
) -> int: ...
if sys.version_info >= (3, 8):
def hex(self, sep: str | bytes = ..., bytes_per_sep: SupportsIndex = ...) -> str: ...
else:
def hex(self) -> str: ...
def index(
self, __sub: ReadableBuffer | SupportsIndex, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...
) -> int: ...
def insert(self, __index: SupportsIndex, __item: SupportsIndex) -> None: ...
def isalnum(self) -> bool: ...
def isalpha(self) -> bool: ...
def isascii(self) -> bool: ...
def isdigit(self) -> bool: ...
def islower(self) -> bool: ...
def isspace(self) -> bool: ...
def istitle(self) -> bool: ...
def isupper(self) -> bool: ...
def join(self, __iterable_of_bytes: Iterable[ReadableBuffer]) -> bytearray: ...
def ljust(self, __width: SupportsIndex, __fillchar: bytes | bytearray = ...) -> bytearray: ...
def lower(self) -> bytearray: ...
def lstrip(self, __bytes: ReadableBuffer | None = ...) -> bytearray: ...
def partition(self, __sep: ReadableBuffer) -> tuple[bytearray, bytearray, bytearray]: ...
def pop(self, __index: int = ...) -> int: ...
def remove(self, __value: int) -> None: ...
if sys.version_info >= (3, 9):
def removeprefix(self, __prefix: ReadableBuffer) -> bytearray: ...
def removesuffix(self, __suffix: ReadableBuffer) -> bytearray: ...
def replace(self, __old: ReadableBuffer, __new: ReadableBuffer, __count: SupportsIndex = ...) -> bytearray: ...
def rfind(
self, __sub: ReadableBuffer | SupportsIndex, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...
) -> int: ...
def rindex(
self, __sub: ReadableBuffer | SupportsIndex, __start: SupportsIndex | None = ..., __end: SupportsIndex | None = ...
) -> int: ...
def rjust(self, __width: SupportsIndex, __fillchar: bytes | bytearray = ...) -> bytearray: ...
def rpartition(self, __sep: ReadableBuffer) -> tuple[bytearray, bytearray, bytearray]: ...
def rsplit(self, sep: ReadableBuffer | None = ..., maxsplit: SupportsIndex = ...) -> list[bytearray]: ...
def rstrip(self, __bytes: ReadableBuffer | None = ...) -> bytearray: ...
def split(self, sep: ReadableBuffer | None = ..., maxsplit: SupportsIndex = ...) -> list[bytearray]: ...
def splitlines(self, keepends: bool = ...) -> list[bytearray]: ...
def startswith(
self,
__prefix: ReadableBuffer | tuple[ReadableBuffer, ...],
__start: SupportsIndex | None = ...,
__end: SupportsIndex | None = ...,
) -> bool: ...
def strip(self, __bytes: ReadableBuffer | None = ...) -> bytearray: ...
def swapcase(self) -> bytearray: ...
def title(self) -> bytearray: ...
def translate(self, __table: ReadableBuffer | None, delete: bytes = ...) -> bytearray: ...
def upper(self) -> bytearray: ...
def zfill(self, __width: SupportsIndex) -> bytearray: ...
@classmethod
def fromhex(cls: type[Self], __string: str) -> Self: ...
@staticmethod
def maketrans(__frm: ReadableBuffer, __to: ReadableBuffer) -> bytes: ...
def __len__(self) -> int: ...
def __iter__(self) -> Iterator[int]: ...
__hash__: ClassVar[None] # type: ignore[assignment]
@overload
def __getitem__(self, __i: SupportsIndex) -> int: ...
@overload
def __getitem__(self, __s: slice) -> bytearray: ...
@overload
def __setitem__(self, __i: SupportsIndex, __x: SupportsIndex) -> None: ...
@overload
def __setitem__(self, __s: slice, __x: Iterable[SupportsIndex] | bytes) -> None: ...
def __delitem__(self, __i: SupportsIndex | slice) -> None: ...
def __add__(self, __s: ReadableBuffer) -> bytearray: ...
# The superclass wants us to accept Iterable[int], but that fails at runtime.
def __iadd__(self: Self, __s: ReadableBuffer) -> Self: ... # type: ignore[override]
def __mul__(self, __n: SupportsIndex) -> bytearray: ...
def __rmul__(self, __n: SupportsIndex) -> bytearray: ...
def __imul__(self: Self, __n: SupportsIndex) -> Self: ...
def __mod__(self, __value: Any) -> bytes: ...
# Incompatible with Sequence.__contains__
def __contains__(self, __o: SupportsIndex | ReadableBuffer) -> bool: ... # type: ignore[override]
def __eq__(self, __x: object) -> bool: ...
def __ne__(self, __x: object) -> bool: ...
def __lt__(self, __x: ReadableBuffer) -> bool: ...
def __le__(self, __x: ReadableBuffer) -> bool: ...
def __gt__(self, __x: ReadableBuffer) -> bool: ...
def __ge__(self, __x: ReadableBuffer) -> bool: ...
def __alloc__(self) -> int: ...
@final
class memoryview(Sequence[int]):
@property
def format(self) -> str: ...
@property
def itemsize(self) -> int: ...
@property
def shape(self) -> tuple[int, ...] | None: ...
@property
def strides(self) -> tuple[int, ...] | None: ...
@property
def suboffsets(self) -> tuple[int, ...] | None: ...
@property
def readonly(self) -> bool: ...
@property
def ndim(self) -> int: ...
@property
def obj(self) -> ReadableBuffer: ...
@property
def c_contiguous(self) -> bool: ...
@property
def f_contiguous(self) -> bool: ...
@property
def contiguous(self) -> bool: ...
@property
def nbytes(self) -> int: ...
def __init__(self, obj: ReadableBuffer) -> None: ...
def __enter__(self: Self) -> Self: ...
def __exit__(
self, __exc_type: type[BaseException] | None, __exc_val: BaseException | None, __exc_tb: TracebackType | None
) -> None: ...
def cast(self, format: str, shape: list[int] | tuple[int, ...] = ...) -> memoryview: ...
@overload
def __getitem__(self, __i: SupportsIndex) -> int: ...
@overload
def __getitem__(self, __s: slice) -> memoryview: ...
def __contains__(self, __x: object) -> bool: ...
def __iter__(self) -> Iterator[int]: ...
def __len__(self) -> int: ...
@overload
def __setitem__(self, __s: slice, __o: ReadableBuffer) -> None: ...
@overload
def __setitem__(self, __i: SupportsIndex, __o: SupportsIndex) -> None: ...
if sys.version_info >= (3, 8):
def tobytes(self, order: Literal["C", "F", "A"] | None = ...) -> bytes: ...
else:
def tobytes(self) -> bytes: ...
def tolist(self) -> list[int]: ...
if sys.version_info >= (3, 8):
def toreadonly(self) -> memoryview: ...
def release(self) -> None: ...
if sys.version_info >= (3, 8):
def hex(self, sep: str | bytes = ..., bytes_per_sep: SupportsIndex = ...) -> str: ...
else:
def hex(self) -> str: ...
@final
class bool(int):
def __new__(cls: type[Self], __o: object = ...) -> Self: ...
# The following overloads could be represented more elegantly with a TypeVar("_B", bool, int),
# however mypy has a bug regarding TypeVar constraints (https://github.com/python/mypy/issues/11880).
@overload
def __and__(self, __x: bool) -> bool: ...
@overload
def __and__(self, __x: int) -> int: ...
@overload
def __or__(self, __x: bool) -> bool: ...
@overload
def __or__(self, __x: int) -> int: ...
@overload
def __xor__(self, __x: bool) -> bool: ...
@overload
def __xor__(self, __x: int) -> int: ...
@overload
def __rand__(self, __x: bool) -> bool: ...
@overload
def __rand__(self, __x: int) -> int: ...
@overload
def __ror__(self, __x: bool) -> bool: ...
@overload
def __ror__(self, __x: int) -> int: ...
@overload
def __rxor__(self, __x: bool) -> bool: ...
@overload
def __rxor__(self, __x: int) -> int: ...
def __getnewargs__(self) -> tuple[int]: ...
@final
class slice:
@property
def start(self) -> Any: ...
@property
def step(self) -> Any: ...
@property
def stop(self) -> Any: ...
@overload
def __init__(self, __stop: Any) -> None: ...
@overload
def __init__(self, __start: Any, __stop: Any, __step: Any = ...) -> None: ...
__hash__: ClassVar[None] # type: ignore[assignment]
def indices(self, __len: SupportsIndex) -> tuple[int, int, int]: ...
class tuple(Sequence[_T_co], Generic[_T_co]):
def __new__(cls: type[Self], __iterable: Iterable[_T_co] = ...) -> Self: ...
def __len__(self) -> int: ...
def __contains__(self, __x: object) -> bool: ...
@overload
def __getitem__(self, __x: SupportsIndex) -> _T_co: ...
@overload
def __getitem__(self, __x: slice) -> tuple[_T_co, ...]: ...
def __iter__(self) -> Iterator[_T_co]: ...
def __lt__(self, __x: tuple[_T_co, ...]) -> bool: ...
def __le__(self, __x: tuple[_T_co, ...]) -> bool: ...
def __gt__(self, __x: tuple[_T_co, ...]) -> bool: ...
def __ge__(self, __x: tuple[_T_co, ...]) -> bool: ...
@overload
def __add__(self, __x: tuple[_T_co, ...]) -> tuple[_T_co, ...]: ...
@overload
def __add__(self, __x: tuple[_T, ...]) -> tuple[_T_co | _T, ...]: ...
def __mul__(self, __n: SupportsIndex) -> tuple[_T_co, ...]: ...
def __rmul__(self, __n: SupportsIndex) -> tuple[_T_co, ...]: ...
def count(self, __value: Any) -> int: ...
def index(self, __value: Any, __start: SupportsIndex = ..., __stop: SupportsIndex = ...) -> int: ...
if sys.version_info >= (3, 9):
def __class_getitem__(cls, __item: Any) -> GenericAlias: ...
# Doesn't exist at runtime, but deleting this breaks mypy. See #2999
@final
@type_check_only
class function:
# Make sure this class definition stays roughly in line with `types.FunctionType`
@property
def __closure__(self) -> tuple[_Cell, ...] | None: ...
__code__: CodeType
__defaults__: tuple[Any, ...] | None
__dict__: dict[str, Any]
@property
def __globals__(self) -> dict[str, Any]: ...
__name__: str
__qualname__: str
__annotations__: dict[str, Any]
__kwdefaults__: dict[str, Any]
if sys.version_info >= (3, 10):
@property
def __builtins__(self) -> dict[str, Any]: ...
__module__: str
# mypy uses `builtins.function.__get__` to represent methods, properties, and getset_descriptors so we type the return as Any.
def __get__(self, obj: object | None, type: type | None = ...) -> Any: ...
class list(MutableSequence[_T], Generic[_T]):
@overload
def __init__(self) -> None: ...
@overload
def __init__(self, __iterable: Iterable[_T]) -> None: ...
def copy(self) -> list[_T]: ...
def append(self, __object: _T) -> None: ...
def extend(self, __iterable: Iterable[_T]) -> None: ...
def pop(self, __index: SupportsIndex = ...) -> _T: ...
# Signature of `list.index` should be kept in line with `collections.UserList.index()`
# and multiprocessing.managers.ListProxy.index()
def index(self, __value: _T, __start: SupportsIndex = ..., __stop: SupportsIndex = ...) -> int: ...
def count(self, __value: _T) -> int: ...
def insert(self, __index: SupportsIndex, __object: _T) -> None: ...
def remove(self, __value: _T) -> None: ...
# Signature of `list.sort` should be kept inline with `collections.UserList.sort()`
# and multiprocessing.managers.ListProxy.sort()
#
# Use list[SupportsRichComparisonT] for the first overload rather than [SupportsRichComparison]
# to work around invariance
@overload
def sort(self: list[SupportsRichComparisonT], *, key: None = ..., reverse: bool = ...) -> None: ...
@overload
def sort(self, *, key: Callable[[_T], SupportsRichComparison], reverse: bool = ...) -> None: ...
def __len__(self) -> int: ...
def __iter__(self) -> Iterator[_T]: ...
__hash__: ClassVar[None] # type: ignore[assignment]
@overload
def __getitem__(self, __i: SupportsIndex) -> _T: ...
@overload
def __getitem__(self, __s: slice) -> list[_T]: ...
@overload
def __setitem__(self, __i: SupportsIndex, __o: _T) -> None: ...
@overload
def __setitem__(self, __s: slice, __o: Iterable[_T]) -> None: ...
def __delitem__(self, __i: SupportsIndex | slice) -> None: ...
# Overloading looks unnecessary, but is needed to work around complex mypy problems
@overload
def __add__(self, __x: list[_T]) -> list[_T]: ...
@overload
def __add__(self, __x: list[_S]) -> list[_S | _T]: ...
def __iadd__(self: Self, __x: Iterable[_T]) -> Self: ... # type: ignore[misc]