2018-09-14 13:18:10 +02:00
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// Copyright 2018 Parity Technologies (UK) Ltd.
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//
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// Permission is hereby granted, free of charge, to any person obtaining a
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// copy of this software and associated documentation files (the "Software"),
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// to deal in the Software without restriction, including without limitation
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// the rights to use, copy, modify, merge, publish, distribute, sublicense,
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// and/or sell copies of the Software, and to permit persons to whom the
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// Software is furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in
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// all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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// FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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// DEALINGS IN THE SOFTWARE.
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2018-10-01 11:18:00 +02:00
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use futures::prelude::*;
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2019-01-07 11:21:09 +01:00
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use crate::muxing;
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2018-09-14 13:18:10 +02:00
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use smallvec::SmallVec;
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use std::fmt;
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use std::io::Error as IoError;
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use std::sync::Arc;
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2018-11-08 03:01:33 +11:00
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// Implementation notes
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2018-09-14 13:18:10 +02:00
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// =================
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//
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// In order to minimize the risk of bugs in higher-level code, we want to avoid as much as
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// possible having a racy API. The behaviour of methods should be well-defined and predictable.
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//
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// In order to respect this coding practice, we should theoretically provide events such as "data
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// incoming on a substream", or "a substream is ready to be written". This would however make the
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// API of `NodeStream` really painful to use. Instead, we really want to provide an object that
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// implements the `AsyncRead` and `AsyncWrite` traits.
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//
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// This substream object raises the question of how to keep the `NodeStream` and the various
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2019-03-11 17:19:50 +01:00
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// substreams in sync without exposing a racy API. The answer is that the `NodeStream` holds
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// ownership of the connection. Shutting node the `NodeStream` or destroying it will close all the
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// existing substreams. The user of the `NodeStream` should be aware of that.
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2018-09-14 13:18:10 +02:00
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/// Implementation of `Stream` that handles a node.
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///
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/// The stream will receive substreams and can be used to open new outgoing substreams. Destroying
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/// the `NodeStream` will **not** close the existing substreams.
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///
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/// The stream will close once both the inbound and outbound channels are closed, and no more
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/// outbound substream attempt is pending.
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2018-10-17 10:17:40 +01:00
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pub struct NodeStream<TMuxer, TUserData>
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2018-09-14 13:18:10 +02:00
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where
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TMuxer: muxing::StreamMuxer,
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{
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/// The muxer used to manage substreams.
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muxer: Arc<TMuxer>,
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/// List of substreams we are currently opening.
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outbound_substreams: SmallVec<[(TUserData, TMuxer::OutboundSubstream); 8]>,
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}
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2019-03-11 17:19:50 +01:00
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/// Future that signals the remote that we have closed the connection.
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pub struct Close<TMuxer> {
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/// Muxer to close.
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muxer: Arc<TMuxer>,
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}
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2018-09-14 13:18:10 +02:00
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/// A successfully opened substream.
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pub type Substream<TMuxer> = muxing::SubstreamRef<Arc<TMuxer>>;
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/// Event that can happen on the `NodeStream`.
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pub enum NodeEvent<TMuxer, TUserData>
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where
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TMuxer: muxing::StreamMuxer,
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{
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/// A new inbound substream arrived.
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InboundSubstream {
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2019-03-11 17:19:50 +01:00
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/// The newly-opened substream. Will return EOF of an error if the `NodeStream` is
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/// destroyed or `close_graceful` is called.
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2018-09-14 13:18:10 +02:00
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substream: Substream<TMuxer>,
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},
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/// An outbound substream has successfully been opened.
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OutboundSubstream {
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/// User data that has been passed to the `open_substream` method.
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user_data: TUserData,
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2019-03-11 17:19:50 +01:00
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/// The newly-opened substream. Will return EOF of an error if the `NodeStream` is
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/// destroyed or `close_graceful` is called.
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2018-09-14 13:18:10 +02:00
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substream: Substream<TMuxer>,
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},
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}
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/// Identifier for a substream being opened.
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#[derive(Debug, Copy, Clone, Hash, PartialEq, Eq, PartialOrd, Ord)]
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pub struct OutboundSubstreamId(usize);
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2018-10-17 10:17:40 +01:00
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impl<TMuxer, TUserData> NodeStream<TMuxer, TUserData>
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2018-09-14 13:18:10 +02:00
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where
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TMuxer: muxing::StreamMuxer,
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{
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/// Creates a new node events stream.
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#[inline]
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2018-10-17 10:17:40 +01:00
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pub fn new(muxer: TMuxer) -> Self {
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2018-09-14 13:18:10 +02:00
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NodeStream {
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muxer: Arc::new(muxer),
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outbound_substreams: SmallVec::new(),
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}
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}
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/// Starts the process of opening a new outbound substream.
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///
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/// After calling this method, polling the stream should eventually produce either an
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/// `OutboundSubstream` event or an `OutboundClosed` event containing the user data that has
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/// been passed to this method.
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2019-03-11 17:19:50 +01:00
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pub fn open_substream(&mut self, user_data: TUserData) {
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2018-09-14 13:18:10 +02:00
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let raw = self.muxer.open_outbound();
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self.outbound_substreams.push((user_data, raw));
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}
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2019-02-20 16:25:34 +01:00
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/// Returns `true` if the remote has shown any sign of activity after the muxer has been open.
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///
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/// See `StreamMuxer::is_remote_acknowledged`.
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pub fn is_remote_acknowledged(&self) -> bool {
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self.muxer.is_remote_acknowledged()
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}
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2019-03-11 17:19:50 +01:00
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/// Destroys the node stream and returns all the pending outbound substreams, plus an object
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/// that signals the remote that we shut down the connection.
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#[must_use]
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pub fn close(mut self) -> (Close<TMuxer>, Vec<TUserData>) {
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let substreams = self.cancel_outgoing();
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let close = Close { muxer: self.muxer.clone() };
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(close, substreams)
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2018-10-15 10:42:11 +02:00
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}
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/// Destroys all outbound streams and returns the corresponding user data.
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pub fn cancel_outgoing(&mut self) -> Vec<TUserData> {
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2018-09-14 13:18:10 +02:00
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let mut out = Vec::with_capacity(self.outbound_substreams.len());
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for (user_data, outbound) in self.outbound_substreams.drain() {
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out.push(user_data);
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self.muxer.destroy_outbound(outbound);
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}
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out
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}
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2018-10-15 10:42:11 +02:00
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2019-03-11 17:19:50 +01:00
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/// Provides an API similar to `Future`.
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pub fn poll(&mut self) -> Poll<NodeEvent<TMuxer, TUserData>, IoError> {
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2018-09-14 13:18:10 +02:00
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// Polling inbound substream.
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2019-04-28 14:42:18 +03:00
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match self.muxer.poll_inbound().map_err(|e| e.into())? {
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2019-03-11 17:19:50 +01:00
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Async::Ready(substream) => {
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let substream = muxing::substream_from_ref(self.muxer.clone(), substream);
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return Ok(Async::Ready(NodeEvent::InboundSubstream {
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substream,
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}));
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2018-09-14 13:18:10 +02:00
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}
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2019-03-11 17:19:50 +01:00
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Async::NotReady => {}
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2018-09-14 13:18:10 +02:00
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}
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// Polling outbound substreams.
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// We remove each element from `outbound_substreams` one by one and add them back.
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for n in (0..self.outbound_substreams.len()).rev() {
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let (user_data, mut outbound) = self.outbound_substreams.swap_remove(n);
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match self.muxer.poll_outbound(&mut outbound) {
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2019-03-11 17:19:50 +01:00
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Ok(Async::Ready(substream)) => {
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2018-09-14 13:18:10 +02:00
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let substream = muxing::substream_from_ref(self.muxer.clone(), substream);
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self.muxer.destroy_outbound(outbound);
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2019-03-11 17:19:50 +01:00
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return Ok(Async::Ready(NodeEvent::OutboundSubstream {
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2018-09-14 13:18:10 +02:00
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user_data,
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substream,
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2019-03-11 17:19:50 +01:00
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}));
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2018-09-14 13:18:10 +02:00
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}
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Ok(Async::NotReady) => {
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self.outbound_substreams.push((user_data, outbound));
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}
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Err(err) => {
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self.muxer.destroy_outbound(outbound);
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2019-04-28 14:42:18 +03:00
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return Err(err.into());
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2018-09-14 13:18:10 +02:00
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}
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}
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}
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// Nothing happened. Register our task to be notified and return.
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Ok(Async::NotReady)
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}
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}
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2018-10-17 10:17:40 +01:00
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impl<TMuxer, TUserData> fmt::Debug for NodeStream<TMuxer, TUserData>
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2018-09-14 13:18:10 +02:00
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where
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TMuxer: muxing::StreamMuxer,
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{
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2019-02-11 14:58:15 +01:00
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> Result<(), fmt::Error> {
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2018-09-14 13:18:10 +02:00
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f.debug_struct("NodeStream")
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.field("outbound_substreams", &self.outbound_substreams.len())
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.finish()
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}
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}
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2018-10-17 10:17:40 +01:00
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impl<TMuxer, TUserData> Drop for NodeStream<TMuxer, TUserData>
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2018-09-14 13:18:10 +02:00
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where
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TMuxer: muxing::StreamMuxer,
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{
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fn drop(&mut self) {
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// The substreams that were produced will continue to work, as the muxer is held in an Arc.
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// However we will no longer process any further inbound or outbound substream, and we
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// therefore close everything.
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for (_, outbound) in self.outbound_substreams.drain() {
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self.muxer.destroy_outbound(outbound);
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}
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}
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}
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2019-03-11 17:19:50 +01:00
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impl<TMuxer> Future for Close<TMuxer>
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where
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TMuxer: muxing::StreamMuxer,
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{
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type Item = ();
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type Error = IoError;
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fn poll(&mut self) -> Poll<Self::Item, Self::Error> {
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2019-04-28 14:42:18 +03:00
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self.muxer.close().map_err(|e| e.into())
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2019-03-11 17:19:50 +01:00
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}
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}
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impl<TMuxer> fmt::Debug for Close<TMuxer>
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where
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TMuxer: muxing::StreamMuxer,
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{
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> Result<(), fmt::Error> {
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f.debug_struct("Close")
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.finish()
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}
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}
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2018-11-03 09:54:31 +01:00
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impl<TMuxer, TUserData> fmt::Debug for NodeEvent<TMuxer, TUserData>
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where
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TMuxer: muxing::StreamMuxer,
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TMuxer::Substream: fmt::Debug,
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TUserData: fmt::Debug,
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2018-09-14 13:18:10 +02:00
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{
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2019-02-11 14:58:15 +01:00
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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2018-09-14 13:18:10 +02:00
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match self {
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2018-11-03 09:54:31 +01:00
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NodeEvent::InboundSubstream { substream } => {
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f.debug_struct("NodeEvent::OutboundClosed")
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.field("substream", substream)
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2018-09-14 13:18:10 +02:00
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.finish()
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},
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2018-11-03 09:54:31 +01:00
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NodeEvent::OutboundSubstream { user_data, substream } => {
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f.debug_struct("NodeEvent::OutboundSubstream")
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.field("user_data", user_data)
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.field("substream", substream)
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2018-09-14 13:18:10 +02:00
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.finish()
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},
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}
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}
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2018-11-03 09:54:31 +01:00
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}
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2018-10-05 11:55:32 +02:00
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#[cfg(test)]
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mod node_stream {
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2019-01-07 11:21:09 +01:00
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use super::{NodeEvent, NodeStream};
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use crate::tests::dummy_muxer::{DummyMuxer, DummyConnectionState};
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use assert_matches::assert_matches;
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2018-10-17 10:17:40 +01:00
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use futures::prelude::*;
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2018-10-05 11:55:32 +02:00
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use tokio_mock_task::MockTask;
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2018-10-17 10:17:40 +01:00
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fn build_node_stream() -> NodeStream<DummyMuxer, Vec<u8>> {
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2018-10-05 11:55:32 +02:00
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let muxer = DummyMuxer::new();
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2018-10-17 10:17:40 +01:00
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NodeStream::<_, Vec<u8>>::new(muxer)
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2018-10-05 11:55:32 +02:00
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}
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#[test]
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fn closing_a_node_stream_destroys_substreams_and_returns_submitted_user_data() {
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let mut ns = build_node_stream();
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2019-03-11 17:19:50 +01:00
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ns.open_substream(vec![2]);
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ns.open_substream(vec![3]);
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ns.open_substream(vec![5]);
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2018-10-05 11:55:32 +02:00
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let user_data_submitted = ns.close();
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2019-03-11 17:19:50 +01:00
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assert_eq!(user_data_submitted.1, vec![
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2018-10-05 11:55:32 +02:00
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vec![2], vec![3], vec![5]
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]);
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}
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#[test]
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fn poll_returns_not_ready_when_there_is_nothing_to_do() {
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let mut task = MockTask::new();
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task.enter(|| {
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// ensure the address never resolves
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let mut muxer = DummyMuxer::new();
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// ensure muxer.poll_inbound() returns Async::NotReady
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muxer.set_inbound_connection_state(DummyConnectionState::Pending);
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// ensure muxer.poll_outbound() returns Async::NotReady
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muxer.set_outbound_connection_state(DummyConnectionState::Pending);
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2018-10-17 10:17:40 +01:00
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let mut ns = NodeStream::<_, Vec<u8>>::new(muxer);
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2018-10-05 11:55:32 +02:00
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assert_matches!(ns.poll(), Ok(Async::NotReady));
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});
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}
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#[test]
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fn poll_keeps_outbound_substreams_when_the_outgoing_connection_is_not_ready() {
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let mut muxer = DummyMuxer::new();
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2019-03-11 17:19:50 +01:00
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// ensure muxer.poll_inbound() returns Async::NotReady
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muxer.set_inbound_connection_state(DummyConnectionState::Pending);
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2018-10-05 11:55:32 +02:00
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// ensure muxer.poll_outbound() returns Async::NotReady
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|
|
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muxer.set_outbound_connection_state(DummyConnectionState::Pending);
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2018-10-17 10:17:40 +01:00
|
|
|
let mut ns = NodeStream::<_, Vec<u8>>::new(muxer);
|
2019-03-11 17:19:50 +01:00
|
|
|
ns.open_substream(vec![1]);
|
2018-10-05 11:55:32 +02:00
|
|
|
ns.poll().unwrap(); // poll past inbound
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|
|
|
ns.poll().unwrap(); // poll outbound
|
|
|
|
assert!(format!("{:?}", ns).contains("outbound_substreams: 1"));
|
|
|
|
}
|
|
|
|
|
|
|
|
#[test]
|
|
|
|
fn poll_returns_incoming_substream() {
|
|
|
|
let mut muxer = DummyMuxer::new();
|
2019-03-11 17:19:50 +01:00
|
|
|
// ensure muxer.poll_inbound() returns Async::Ready(subs)
|
2018-10-05 11:55:32 +02:00
|
|
|
muxer.set_inbound_connection_state(DummyConnectionState::Opened);
|
2018-10-17 10:17:40 +01:00
|
|
|
let mut ns = NodeStream::<_, Vec<u8>>::new(muxer);
|
2019-03-11 17:19:50 +01:00
|
|
|
assert_matches!(ns.poll(), Ok(Async::Ready(node_event)) => {
|
2018-10-05 11:55:32 +02:00
|
|
|
assert_matches!(node_event, NodeEvent::InboundSubstream{ substream: _ });
|
|
|
|
});
|
|
|
|
}
|
|
|
|
}
|