649 lines
22 KiB
Python
649 lines
22 KiB
Python
import copy
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import math
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import operator
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import typing as t
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from contextvars import ContextVar
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from functools import partial
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from functools import update_wrapper
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from operator import attrgetter
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from .wsgi import ClosingIterator
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if t.TYPE_CHECKING:
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from _typeshed.wsgi import StartResponse
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from _typeshed.wsgi import WSGIApplication
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from _typeshed.wsgi import WSGIEnvironment
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T = t.TypeVar("T")
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F = t.TypeVar("F", bound=t.Callable[..., t.Any])
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def release_local(local: t.Union["Local", "LocalStack"]) -> None:
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"""Release the data for the current context in a :class:`Local` or
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:class:`LocalStack` without using a :class:`LocalManager`.
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This should not be needed for modern use cases, and may be removed
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in the future.
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.. versionadded:: 0.6.1
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"""
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local.__release_local__()
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class Local:
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"""Create a namespace of context-local data. This wraps a
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:class:`ContextVar` containing a :class:`dict` value.
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This may incur a performance penalty compared to using individual
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context vars, as it has to copy data to avoid mutating the dict
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between nested contexts.
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:param context_var: The :class:`~contextvars.ContextVar` to use as
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storage for this local. If not given, one will be created.
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Context vars not created at the global scope may interfere with
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garbage collection.
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.. versionchanged:: 2.0
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Uses ``ContextVar`` instead of a custom storage implementation.
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"""
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__slots__ = ("__storage",)
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def __init__(
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self, context_var: t.Optional[ContextVar[t.Dict[str, t.Any]]] = None
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) -> None:
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if context_var is None:
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# A ContextVar not created at global scope interferes with
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# Python's garbage collection. However, a local only makes
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# sense defined at the global scope as well, in which case
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# the GC issue doesn't seem relevant.
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context_var = ContextVar(f"werkzeug.Local<{id(self)}>.storage")
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object.__setattr__(self, "_Local__storage", context_var)
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def __iter__(self) -> t.Iterator[t.Tuple[str, t.Any]]:
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return iter(self.__storage.get({}).items())
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def __call__(
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self, name: str, *, unbound_message: t.Optional[str] = None
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) -> "LocalProxy":
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"""Create a :class:`LocalProxy` that access an attribute on this
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local namespace.
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:param name: Proxy this attribute.
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:param unbound_message: The error message that the proxy will
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show if the attribute isn't set.
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"""
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return LocalProxy(self, name, unbound_message=unbound_message)
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def __release_local__(self) -> None:
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self.__storage.set({})
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def __getattr__(self, name: str) -> t.Any:
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values = self.__storage.get({})
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if name in values:
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return values[name]
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raise AttributeError(name)
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def __setattr__(self, name: str, value: t.Any) -> None:
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values = self.__storage.get({}).copy()
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values[name] = value
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self.__storage.set(values)
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def __delattr__(self, name: str) -> None:
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values = self.__storage.get({})
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if name in values:
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values = values.copy()
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del values[name]
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self.__storage.set(values)
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else:
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raise AttributeError(name)
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class LocalStack(t.Generic[T]):
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"""Create a stack of context-local data. This wraps a
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:class:`ContextVar` containing a :class:`list` value.
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This may incur a performance penalty compared to using individual
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context vars, as it has to copy data to avoid mutating the list
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between nested contexts.
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:param context_var: The :class:`~contextvars.ContextVar` to use as
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storage for this local. If not given, one will be created.
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Context vars not created at the global scope may interfere with
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garbage collection.
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.. versionchanged:: 2.0
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Uses ``ContextVar`` instead of a custom storage implementation.
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.. versionadded:: 0.6.1
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"""
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__slots__ = ("_storage",)
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def __init__(self, context_var: t.Optional[ContextVar[t.List[T]]] = None) -> None:
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if context_var is None:
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# A ContextVar not created at global scope interferes with
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# Python's garbage collection. However, a local only makes
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# sense defined at the global scope as well, in which case
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# the GC issue doesn't seem relevant.
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context_var = ContextVar(f"werkzeug.LocalStack<{id(self)}>.storage")
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self._storage = context_var
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def __release_local__(self) -> None:
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self._storage.set([])
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def push(self, obj: T) -> t.List[T]:
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"""Add a new item to the top of the stack."""
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stack = self._storage.get([]).copy()
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stack.append(obj)
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self._storage.set(stack)
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return stack
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def pop(self) -> t.Optional[T]:
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"""Remove the top item from the stack and return it. If the
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stack is empty, return ``None``.
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"""
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stack = self._storage.get([])
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if len(stack) == 0:
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return None
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rv = stack[-1]
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self._storage.set(stack[:-1])
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return rv
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@property
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def top(self) -> t.Optional[T]:
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"""The topmost item on the stack. If the stack is empty,
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`None` is returned.
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"""
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stack = self._storage.get([])
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if len(stack) == 0:
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return None
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return stack[-1]
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def __call__(
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self, name: t.Optional[str] = None, *, unbound_message: t.Optional[str] = None
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) -> "LocalProxy":
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"""Create a :class:`LocalProxy` that accesses the top of this
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local stack.
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:param name: If given, the proxy access this attribute of the
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top item, rather than the item itself.
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:param unbound_message: The error message that the proxy will
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show if the stack is empty.
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"""
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return LocalProxy(self, name, unbound_message=unbound_message)
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class LocalManager:
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"""Manage releasing the data for the current context in one or more
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:class:`Local` and :class:`LocalStack` objects.
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This should not be needed for modern use cases, and may be removed
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in the future.
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:param locals: A local or list of locals to manage.
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.. versionchanged:: 2.0
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``ident_func`` is deprecated and will be removed in Werkzeug
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2.1.
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.. versionchanged:: 0.7
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The ``ident_func`` parameter was added.
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.. versionchanged:: 0.6.1
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The :func:`release_local` function can be used instead of a
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manager.
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"""
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__slots__ = ("locals",)
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def __init__(
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self,
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locals: t.Optional[
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t.Union[Local, LocalStack, t.Iterable[t.Union[Local, LocalStack]]]
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] = None,
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) -> None:
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if locals is None:
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self.locals = []
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elif isinstance(locals, Local):
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self.locals = [locals]
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else:
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self.locals = list(locals) # type: ignore[arg-type]
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def cleanup(self) -> None:
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"""Release the data in the locals for this context. Call this at
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the end of each request or use :meth:`make_middleware`.
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"""
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for local in self.locals:
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release_local(local)
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def make_middleware(self, app: "WSGIApplication") -> "WSGIApplication":
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"""Wrap a WSGI application so that local data is released
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automatically after the response has been sent for a request.
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"""
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def application(
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environ: "WSGIEnvironment", start_response: "StartResponse"
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) -> t.Iterable[bytes]:
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return ClosingIterator(app(environ, start_response), self.cleanup)
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return application
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def middleware(self, func: "WSGIApplication") -> "WSGIApplication":
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"""Like :meth:`make_middleware` but used as a decorator on the
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WSGI application function.
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.. code-block:: python
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@manager.middleware
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def application(environ, start_response):
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...
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"""
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return update_wrapper(self.make_middleware(func), func)
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def __repr__(self) -> str:
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return f"<{type(self).__name__} storages: {len(self.locals)}>"
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class _ProxyLookup:
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"""Descriptor that handles proxied attribute lookup for
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:class:`LocalProxy`.
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:param f: The built-in function this attribute is accessed through.
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Instead of looking up the special method, the function call
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is redone on the object.
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:param fallback: Return this function if the proxy is unbound
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instead of raising a :exc:`RuntimeError`.
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:param is_attr: This proxied name is an attribute, not a function.
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Call the fallback immediately to get the value.
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:param class_value: Value to return when accessed from the
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``LocalProxy`` class directly. Used for ``__doc__`` so building
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docs still works.
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"""
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__slots__ = ("bind_f", "fallback", "is_attr", "class_value", "name")
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def __init__(
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self,
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f: t.Optional[t.Callable] = None,
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fallback: t.Optional[t.Callable] = None,
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class_value: t.Optional[t.Any] = None,
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is_attr: bool = False,
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) -> None:
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bind_f: t.Optional[t.Callable[["LocalProxy", t.Any], t.Callable]]
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if hasattr(f, "__get__"):
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# A Python function, can be turned into a bound method.
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def bind_f(instance: "LocalProxy", obj: t.Any) -> t.Callable:
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return f.__get__(obj, type(obj)) # type: ignore
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elif f is not None:
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# A C function, use partial to bind the first argument.
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def bind_f(instance: "LocalProxy", obj: t.Any) -> t.Callable:
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return partial(f, obj) # type: ignore
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else:
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# Use getattr, which will produce a bound method.
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bind_f = None
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self.bind_f = bind_f
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self.fallback = fallback
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self.class_value = class_value
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self.is_attr = is_attr
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def __set_name__(self, owner: "LocalProxy", name: str) -> None:
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self.name = name
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def __get__(self, instance: "LocalProxy", owner: t.Optional[type] = None) -> t.Any:
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if instance is None:
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if self.class_value is not None:
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return self.class_value
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return self
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try:
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obj = instance._get_current_object() # type: ignore[misc]
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except RuntimeError:
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if self.fallback is None:
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raise
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fallback = self.fallback.__get__(instance, owner)
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if self.is_attr:
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# __class__ and __doc__ are attributes, not methods.
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# Call the fallback to get the value.
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return fallback()
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return fallback
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if self.bind_f is not None:
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return self.bind_f(instance, obj)
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return getattr(obj, self.name)
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def __repr__(self) -> str:
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return f"proxy {self.name}"
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def __call__(self, instance: "LocalProxy", *args: t.Any, **kwargs: t.Any) -> t.Any:
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"""Support calling unbound methods from the class. For example,
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this happens with ``copy.copy``, which does
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``type(x).__copy__(x)``. ``type(x)`` can't be proxied, so it
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returns the proxy type and descriptor.
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"""
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return self.__get__(instance, type(instance))(*args, **kwargs)
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class _ProxyIOp(_ProxyLookup):
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"""Look up an augmented assignment method on a proxied object. The
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method is wrapped to return the proxy instead of the object.
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"""
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__slots__ = ()
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def __init__(
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self, f: t.Optional[t.Callable] = None, fallback: t.Optional[t.Callable] = None
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) -> None:
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super().__init__(f, fallback)
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def bind_f(instance: "LocalProxy", obj: t.Any) -> t.Callable:
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def i_op(self: t.Any, other: t.Any) -> "LocalProxy":
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f(self, other) # type: ignore
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return instance
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return i_op.__get__(obj, type(obj)) # type: ignore
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self.bind_f = bind_f
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def _l_to_r_op(op: F) -> F:
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"""Swap the argument order to turn an l-op into an r-op."""
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def r_op(obj: t.Any, other: t.Any) -> t.Any:
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return op(other, obj)
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return t.cast(F, r_op)
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def _identity(o: T) -> T:
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return o
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class LocalProxy(t.Generic[T]):
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"""A proxy to the object bound to a context-local object. All
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operations on the proxy are forwarded to the bound object. If no
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object is bound, a ``RuntimeError`` is raised.
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:param local: The context-local object that provides the proxied
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object.
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:param name: Proxy this attribute from the proxied object.
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:param unbound_message: The error message to show if the
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context-local object is unbound.
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Proxy a :class:`~contextvars.ContextVar` to make it easier to
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access. Pass a name to proxy that attribute.
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.. code-block:: python
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_request_var = ContextVar("request")
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request = LocalProxy(_request_var)
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session = LocalProxy(_request_var, "session")
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Proxy an attribute on a :class:`Local` namespace by calling the
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local with the attribute name:
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.. code-block:: python
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data = Local()
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user = data("user")
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Proxy the top item on a :class:`LocalStack` by calling the local.
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Pass a name to proxy that attribute.
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.. code-block::
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app_stack = LocalStack()
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current_app = app_stack()
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g = app_stack("g")
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Pass a function to proxy the return value from that function. This
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was previously used to access attributes of local objects before
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that was supported directly.
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.. code-block:: python
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session = LocalProxy(lambda: request.session)
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``__repr__`` and ``__class__`` are proxied, so ``repr(x)`` and
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``isinstance(x, cls)`` will look like the proxied object. Use
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``issubclass(type(x), LocalProxy)`` to check if an object is a
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proxy.
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.. code-block:: python
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repr(user) # <User admin>
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isinstance(user, User) # True
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issubclass(type(user), LocalProxy) # True
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.. versionchanged:: 2.2.2
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``__wrapped__`` is set when wrapping an object, not only when
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wrapping a function, to prevent doctest from failing.
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.. versionchanged:: 2.2
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Can proxy a ``ContextVar`` or ``LocalStack`` directly.
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.. versionchanged:: 2.2
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The ``name`` parameter can be used with any proxied object, not
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only ``Local``.
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.. versionchanged:: 2.2
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Added the ``unbound_message`` parameter.
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|
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.. versionchanged:: 2.0
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Updated proxied attributes and methods to reflect the current
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data model.
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.. versionchanged:: 0.6.1
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The class can be instantiated with a callable.
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"""
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__slots__ = ("__wrapped", "_get_current_object")
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_get_current_object: t.Callable[[], T]
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"""Return the current object this proxy is bound to. If the proxy is
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unbound, this raises a ``RuntimeError``.
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This should be used if you need to pass the object to something that
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doesn't understand the proxy. It can also be useful for performance
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if you are accessing the object multiple times in a function, rather
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than going through the proxy multiple times.
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"""
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def __init__(
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self,
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local: t.Union[ContextVar[T], Local, LocalStack[T], t.Callable[[], T]],
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name: t.Optional[str] = None,
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*,
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unbound_message: t.Optional[str] = None,
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) -> None:
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if name is None:
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get_name = _identity
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else:
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get_name = attrgetter(name) # type: ignore[assignment]
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if unbound_message is None:
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unbound_message = "object is not bound"
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if isinstance(local, Local):
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if name is None:
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raise TypeError("'name' is required when proxying a 'Local' object.")
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def _get_current_object() -> T:
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try:
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return get_name(local) # type: ignore[return-value]
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except AttributeError:
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raise RuntimeError(unbound_message) from None
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elif isinstance(local, LocalStack):
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def _get_current_object() -> T:
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obj = local.top # type: ignore[union-attr]
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if obj is None:
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raise RuntimeError(unbound_message)
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return get_name(obj)
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elif isinstance(local, ContextVar):
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def _get_current_object() -> T:
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try:
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obj = local.get() # type: ignore[union-attr]
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except LookupError:
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raise RuntimeError(unbound_message) from None
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return get_name(obj)
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elif callable(local):
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def _get_current_object() -> T:
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return get_name(local()) # type: ignore
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else:
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raise TypeError(f"Don't know how to proxy '{type(local)}'.")
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object.__setattr__(self, "_LocalProxy__wrapped", local)
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object.__setattr__(self, "_get_current_object", _get_current_object)
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__doc__ = _ProxyLookup( # type: ignore
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class_value=__doc__, fallback=lambda self: type(self).__doc__, is_attr=True
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)
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__wrapped__ = _ProxyLookup(
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fallback=lambda self: self._LocalProxy__wrapped, is_attr=True
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)
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# __del__ should only delete the proxy
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__repr__ = _ProxyLookup( # type: ignore
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repr, fallback=lambda self: f"<{type(self).__name__} unbound>"
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)
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__str__ = _ProxyLookup(str) # type: ignore
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__bytes__ = _ProxyLookup(bytes)
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__format__ = _ProxyLookup() # type: ignore
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__lt__ = _ProxyLookup(operator.lt)
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__le__ = _ProxyLookup(operator.le)
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__eq__ = _ProxyLookup(operator.eq) # type: ignore
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__ne__ = _ProxyLookup(operator.ne) # type: ignore
|
|
__gt__ = _ProxyLookup(operator.gt)
|
|
__ge__ = _ProxyLookup(operator.ge)
|
|
__hash__ = _ProxyLookup(hash) # type: ignore
|
|
__bool__ = _ProxyLookup(bool, fallback=lambda self: False)
|
|
__getattr__ = _ProxyLookup(getattr)
|
|
# __getattribute__ triggered through __getattr__
|
|
__setattr__ = _ProxyLookup(setattr) # type: ignore
|
|
__delattr__ = _ProxyLookup(delattr) # type: ignore
|
|
__dir__ = _ProxyLookup(dir, fallback=lambda self: []) # type: ignore
|
|
# __get__ (proxying descriptor not supported)
|
|
# __set__ (descriptor)
|
|
# __delete__ (descriptor)
|
|
# __set_name__ (descriptor)
|
|
# __objclass__ (descriptor)
|
|
# __slots__ used by proxy itself
|
|
# __dict__ (__getattr__)
|
|
# __weakref__ (__getattr__)
|
|
# __init_subclass__ (proxying metaclass not supported)
|
|
# __prepare__ (metaclass)
|
|
__class__ = _ProxyLookup(
|
|
fallback=lambda self: type(self), is_attr=True
|
|
) # type: ignore
|
|
__instancecheck__ = _ProxyLookup(lambda self, other: isinstance(other, self))
|
|
__subclasscheck__ = _ProxyLookup(lambda self, other: issubclass(other, self))
|
|
# __class_getitem__ triggered through __getitem__
|
|
__call__ = _ProxyLookup(lambda self, *args, **kwargs: self(*args, **kwargs))
|
|
__len__ = _ProxyLookup(len)
|
|
__length_hint__ = _ProxyLookup(operator.length_hint)
|
|
__getitem__ = _ProxyLookup(operator.getitem)
|
|
__setitem__ = _ProxyLookup(operator.setitem)
|
|
__delitem__ = _ProxyLookup(operator.delitem)
|
|
# __missing__ triggered through __getitem__
|
|
__iter__ = _ProxyLookup(iter)
|
|
__next__ = _ProxyLookup(next)
|
|
__reversed__ = _ProxyLookup(reversed)
|
|
__contains__ = _ProxyLookup(operator.contains)
|
|
__add__ = _ProxyLookup(operator.add)
|
|
__sub__ = _ProxyLookup(operator.sub)
|
|
__mul__ = _ProxyLookup(operator.mul)
|
|
__matmul__ = _ProxyLookup(operator.matmul)
|
|
__truediv__ = _ProxyLookup(operator.truediv)
|
|
__floordiv__ = _ProxyLookup(operator.floordiv)
|
|
__mod__ = _ProxyLookup(operator.mod)
|
|
__divmod__ = _ProxyLookup(divmod)
|
|
__pow__ = _ProxyLookup(pow)
|
|
__lshift__ = _ProxyLookup(operator.lshift)
|
|
__rshift__ = _ProxyLookup(operator.rshift)
|
|
__and__ = _ProxyLookup(operator.and_)
|
|
__xor__ = _ProxyLookup(operator.xor)
|
|
__or__ = _ProxyLookup(operator.or_)
|
|
__radd__ = _ProxyLookup(_l_to_r_op(operator.add))
|
|
__rsub__ = _ProxyLookup(_l_to_r_op(operator.sub))
|
|
__rmul__ = _ProxyLookup(_l_to_r_op(operator.mul))
|
|
__rmatmul__ = _ProxyLookup(_l_to_r_op(operator.matmul))
|
|
__rtruediv__ = _ProxyLookup(_l_to_r_op(operator.truediv))
|
|
__rfloordiv__ = _ProxyLookup(_l_to_r_op(operator.floordiv))
|
|
__rmod__ = _ProxyLookup(_l_to_r_op(operator.mod))
|
|
__rdivmod__ = _ProxyLookup(_l_to_r_op(divmod))
|
|
__rpow__ = _ProxyLookup(_l_to_r_op(pow))
|
|
__rlshift__ = _ProxyLookup(_l_to_r_op(operator.lshift))
|
|
__rrshift__ = _ProxyLookup(_l_to_r_op(operator.rshift))
|
|
__rand__ = _ProxyLookup(_l_to_r_op(operator.and_))
|
|
__rxor__ = _ProxyLookup(_l_to_r_op(operator.xor))
|
|
__ror__ = _ProxyLookup(_l_to_r_op(operator.or_))
|
|
__iadd__ = _ProxyIOp(operator.iadd)
|
|
__isub__ = _ProxyIOp(operator.isub)
|
|
__imul__ = _ProxyIOp(operator.imul)
|
|
__imatmul__ = _ProxyIOp(operator.imatmul)
|
|
__itruediv__ = _ProxyIOp(operator.itruediv)
|
|
__ifloordiv__ = _ProxyIOp(operator.ifloordiv)
|
|
__imod__ = _ProxyIOp(operator.imod)
|
|
__ipow__ = _ProxyIOp(operator.ipow)
|
|
__ilshift__ = _ProxyIOp(operator.ilshift)
|
|
__irshift__ = _ProxyIOp(operator.irshift)
|
|
__iand__ = _ProxyIOp(operator.iand)
|
|
__ixor__ = _ProxyIOp(operator.ixor)
|
|
__ior__ = _ProxyIOp(operator.ior)
|
|
__neg__ = _ProxyLookup(operator.neg)
|
|
__pos__ = _ProxyLookup(operator.pos)
|
|
__abs__ = _ProxyLookup(abs)
|
|
__invert__ = _ProxyLookup(operator.invert)
|
|
__complex__ = _ProxyLookup(complex)
|
|
__int__ = _ProxyLookup(int)
|
|
__float__ = _ProxyLookup(float)
|
|
__index__ = _ProxyLookup(operator.index)
|
|
__round__ = _ProxyLookup(round)
|
|
__trunc__ = _ProxyLookup(math.trunc)
|
|
__floor__ = _ProxyLookup(math.floor)
|
|
__ceil__ = _ProxyLookup(math.ceil)
|
|
__enter__ = _ProxyLookup()
|
|
__exit__ = _ProxyLookup()
|
|
__await__ = _ProxyLookup()
|
|
__aiter__ = _ProxyLookup()
|
|
__anext__ = _ProxyLookup()
|
|
__aenter__ = _ProxyLookup()
|
|
__aexit__ = _ProxyLookup()
|
|
__copy__ = _ProxyLookup(copy.copy)
|
|
__deepcopy__ = _ProxyLookup(copy.deepcopy)
|
|
# __getnewargs_ex__ (pickle through proxy not supported)
|
|
# __getnewargs__ (pickle)
|
|
# __getstate__ (pickle)
|
|
# __setstate__ (pickle)
|
|
# __reduce__ (pickle)
|
|
# __reduce_ex__ (pickle)
|