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318 lines
10 KiB
318 lines
10 KiB
5 days ago
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from __future__ import annotations
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import warnings
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from collections import OrderedDict, deque
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from dataclasses import dataclass, field
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from types import TracebackType
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from typing import Generic, NamedTuple, TypeVar
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from .. import (
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BrokenResourceError,
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ClosedResourceError,
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EndOfStream,
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WouldBlock,
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)
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from .._core._testing import TaskInfo, get_current_task
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from ..abc import Event, ObjectReceiveStream, ObjectSendStream
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from ..lowlevel import checkpoint
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T_Item = TypeVar("T_Item")
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T_co = TypeVar("T_co", covariant=True)
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T_contra = TypeVar("T_contra", contravariant=True)
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class MemoryObjectStreamStatistics(NamedTuple):
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current_buffer_used: int #: number of items stored in the buffer
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#: maximum number of items that can be stored on this stream (or :data:`math.inf`)
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max_buffer_size: float
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open_send_streams: int #: number of unclosed clones of the send stream
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open_receive_streams: int #: number of unclosed clones of the receive stream
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#: number of tasks blocked on :meth:`MemoryObjectSendStream.send`
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tasks_waiting_send: int
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#: number of tasks blocked on :meth:`MemoryObjectReceiveStream.receive`
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tasks_waiting_receive: int
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@dataclass(eq=False)
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class MemoryObjectItemReceiver(Generic[T_Item]):
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task_info: TaskInfo = field(init=False, default_factory=get_current_task)
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item: T_Item = field(init=False)
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def __repr__(self) -> str:
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# When item is not defined, we get following error with default __repr__:
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# AttributeError: 'MemoryObjectItemReceiver' object has no attribute 'item'
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item = getattr(self, "item", None)
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return f"{self.__class__.__name__}(task_info={self.task_info}, item={item!r})"
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@dataclass(eq=False)
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class MemoryObjectStreamState(Generic[T_Item]):
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max_buffer_size: float = field()
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buffer: deque[T_Item] = field(init=False, default_factory=deque)
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open_send_channels: int = field(init=False, default=0)
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open_receive_channels: int = field(init=False, default=0)
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waiting_receivers: OrderedDict[Event, MemoryObjectItemReceiver[T_Item]] = field(
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init=False, default_factory=OrderedDict
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)
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waiting_senders: OrderedDict[Event, T_Item] = field(
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init=False, default_factory=OrderedDict
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)
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def statistics(self) -> MemoryObjectStreamStatistics:
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return MemoryObjectStreamStatistics(
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len(self.buffer),
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self.max_buffer_size,
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self.open_send_channels,
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self.open_receive_channels,
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len(self.waiting_senders),
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len(self.waiting_receivers),
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)
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@dataclass(eq=False)
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class MemoryObjectReceiveStream(Generic[T_co], ObjectReceiveStream[T_co]):
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_state: MemoryObjectStreamState[T_co]
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_closed: bool = field(init=False, default=False)
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def __post_init__(self) -> None:
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self._state.open_receive_channels += 1
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def receive_nowait(self) -> T_co:
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"""
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Receive the next item if it can be done without waiting.
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:return: the received item
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:raises ~anyio.ClosedResourceError: if this send stream has been closed
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:raises ~anyio.EndOfStream: if the buffer is empty and this stream has been
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closed from the sending end
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:raises ~anyio.WouldBlock: if there are no items in the buffer and no tasks
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waiting to send
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"""
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if self._closed:
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raise ClosedResourceError
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if self._state.waiting_senders:
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# Get the item from the next sender
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send_event, item = self._state.waiting_senders.popitem(last=False)
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self._state.buffer.append(item)
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send_event.set()
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if self._state.buffer:
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return self._state.buffer.popleft()
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elif not self._state.open_send_channels:
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raise EndOfStream
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raise WouldBlock
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async def receive(self) -> T_co:
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await checkpoint()
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try:
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return self.receive_nowait()
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except WouldBlock:
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# Add ourselves in the queue
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receive_event = Event()
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receiver = MemoryObjectItemReceiver[T_co]()
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self._state.waiting_receivers[receive_event] = receiver
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try:
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await receive_event.wait()
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finally:
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self._state.waiting_receivers.pop(receive_event, None)
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try:
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return receiver.item
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except AttributeError:
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raise EndOfStream
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def clone(self) -> MemoryObjectReceiveStream[T_co]:
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"""
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Create a clone of this receive stream.
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Each clone can be closed separately. Only when all clones have been closed will
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the receiving end of the memory stream be considered closed by the sending ends.
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:return: the cloned stream
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"""
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if self._closed:
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raise ClosedResourceError
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return MemoryObjectReceiveStream(_state=self._state)
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def close(self) -> None:
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"""
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Close the stream.
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This works the exact same way as :meth:`aclose`, but is provided as a special
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case for the benefit of synchronous callbacks.
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"""
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if not self._closed:
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self._closed = True
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self._state.open_receive_channels -= 1
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if self._state.open_receive_channels == 0:
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send_events = list(self._state.waiting_senders.keys())
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for event in send_events:
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event.set()
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async def aclose(self) -> None:
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self.close()
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def statistics(self) -> MemoryObjectStreamStatistics:
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"""
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Return statistics about the current state of this stream.
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.. versionadded:: 3.0
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"""
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return self._state.statistics()
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def __enter__(self) -> MemoryObjectReceiveStream[T_co]:
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return self
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def __exit__(
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self,
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exc_type: type[BaseException] | None,
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exc_val: BaseException | None,
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exc_tb: TracebackType | None,
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) -> None:
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self.close()
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def __del__(self) -> None:
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if not self._closed:
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warnings.warn(
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f"Unclosed <{self.__class__.__name__} at {id(self):x}>",
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ResourceWarning,
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source=self,
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)
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@dataclass(eq=False)
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class MemoryObjectSendStream(Generic[T_contra], ObjectSendStream[T_contra]):
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_state: MemoryObjectStreamState[T_contra]
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_closed: bool = field(init=False, default=False)
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def __post_init__(self) -> None:
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self._state.open_send_channels += 1
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def send_nowait(self, item: T_contra) -> None:
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"""
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Send an item immediately if it can be done without waiting.
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:param item: the item to send
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:raises ~anyio.ClosedResourceError: if this send stream has been closed
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:raises ~anyio.BrokenResourceError: if the stream has been closed from the
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receiving end
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:raises ~anyio.WouldBlock: if the buffer is full and there are no tasks waiting
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to receive
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"""
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if self._closed:
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raise ClosedResourceError
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if not self._state.open_receive_channels:
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raise BrokenResourceError
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while self._state.waiting_receivers:
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receive_event, receiver = self._state.waiting_receivers.popitem(last=False)
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if not receiver.task_info.has_pending_cancellation():
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receiver.item = item
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receive_event.set()
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return
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if len(self._state.buffer) < self._state.max_buffer_size:
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self._state.buffer.append(item)
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else:
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raise WouldBlock
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async def send(self, item: T_contra) -> None:
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"""
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Send an item to the stream.
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If the buffer is full, this method blocks until there is again room in the
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buffer or the item can be sent directly to a receiver.
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:param item: the item to send
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:raises ~anyio.ClosedResourceError: if this send stream has been closed
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:raises ~anyio.BrokenResourceError: if the stream has been closed from the
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receiving end
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"""
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await checkpoint()
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try:
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self.send_nowait(item)
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except WouldBlock:
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# Wait until there's someone on the receiving end
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send_event = Event()
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self._state.waiting_senders[send_event] = item
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try:
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await send_event.wait()
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except BaseException:
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self._state.waiting_senders.pop(send_event, None)
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raise
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if send_event in self._state.waiting_senders:
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del self._state.waiting_senders[send_event]
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raise BrokenResourceError from None
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def clone(self) -> MemoryObjectSendStream[T_contra]:
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"""
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Create a clone of this send stream.
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Each clone can be closed separately. Only when all clones have been closed will
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the sending end of the memory stream be considered closed by the receiving ends.
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:return: the cloned stream
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"""
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if self._closed:
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raise ClosedResourceError
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return MemoryObjectSendStream(_state=self._state)
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def close(self) -> None:
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"""
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Close the stream.
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This works the exact same way as :meth:`aclose`, but is provided as a special
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case for the benefit of synchronous callbacks.
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"""
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if not self._closed:
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self._closed = True
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self._state.open_send_channels -= 1
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if self._state.open_send_channels == 0:
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receive_events = list(self._state.waiting_receivers.keys())
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self._state.waiting_receivers.clear()
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for event in receive_events:
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event.set()
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async def aclose(self) -> None:
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self.close()
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def statistics(self) -> MemoryObjectStreamStatistics:
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"""
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Return statistics about the current state of this stream.
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.. versionadded:: 3.0
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"""
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return self._state.statistics()
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def __enter__(self) -> MemoryObjectSendStream[T_contra]:
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return self
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def __exit__(
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self,
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exc_type: type[BaseException] | None,
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exc_val: BaseException | None,
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exc_tb: TracebackType | None,
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) -> None:
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self.close()
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def __del__(self) -> None:
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if not self._closed:
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warnings.warn(
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f"Unclosed <{self.__class__.__name__} at {id(self):x}>",
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ResourceWarning,
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source=self,
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)
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