mirror of
https://github.com/fluencelabs/rust-libp2p
synced 2025-05-05 07:32:16 +00:00
Enable advanced dialing requests both on `Swarm` and via `NetworkBehaviourAction`. Users can now trigger a dial with a specific set of addresses, optionally extended via `NetworkBehaviour::addresses_of_peer`. In addition the whole process is now modelled in a type safe way via the builder pattern. Example of a `NetworkBehaviour` requesting a dial to a specific peer with a set of addresses additionally extended through `NetworkBehaviour::addresses_of_peer`: ```rust NetworkBehaviourAction::Dial { opts: DialOpts::peer_id(peer_id) .condition(PeerCondition::Always) .addresses(addresses) .extend_addresses_through_behaviour() .build(), handler, } ``` Example of a user requesting a dial to an unknown peer with a single address via `Swarm`: ```rust swarm1.dial( DialOpts::unknown_peer_id() .address(addr2.clone()) .build() ) ```
274 lines
9.6 KiB
Rust
274 lines
9.6 KiB
Rust
// Copyright 2019 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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//! Integration tests for the `Ping` network behaviour.
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use futures::{channel::mpsc, prelude::*};
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use libp2p_core::{
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identity,
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muxing::StreamMuxerBox,
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transport::{self, Transport},
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upgrade, Multiaddr, PeerId,
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};
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use libp2p_mplex as mplex;
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use libp2p_noise as noise;
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use libp2p_ping as ping;
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use libp2p_swarm::{dial_opts::DialOpts, DummyBehaviour, KeepAlive, Swarm, SwarmEvent};
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use libp2p_tcp::TcpConfig;
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use libp2p_yamux as yamux;
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use quickcheck::*;
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use rand::prelude::*;
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use std::{num::NonZeroU8, time::Duration};
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#[test]
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fn ping_pong() {
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fn prop(count: NonZeroU8, muxer: MuxerChoice) {
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let cfg = ping::Config::new()
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.with_keep_alive(true)
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.with_interval(Duration::from_millis(10));
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let (peer1_id, trans) = mk_transport(muxer);
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let mut swarm1 = Swarm::new(trans, ping::Behaviour::new(cfg.clone()), peer1_id.clone());
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let (peer2_id, trans) = mk_transport(muxer);
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let mut swarm2 = Swarm::new(trans, ping::Behaviour::new(cfg), peer2_id.clone());
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let (mut tx, mut rx) = mpsc::channel::<Multiaddr>(1);
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let pid1 = peer1_id.clone();
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let addr = "/ip4/127.0.0.1/tcp/0".parse().unwrap();
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swarm1.listen_on(addr).unwrap();
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let mut count1 = count.get();
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let mut count2 = count.get();
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let peer1 = async move {
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loop {
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match swarm1.select_next_some().await {
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SwarmEvent::NewListenAddr { address, .. } => tx.send(address).await.unwrap(),
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SwarmEvent::Behaviour(ping::Event {
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peer,
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result: Ok(ping::Success::Ping { rtt }),
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}) => {
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count1 -= 1;
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if count1 == 0 {
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return (pid1.clone(), peer, rtt);
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}
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}
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SwarmEvent::Behaviour(ping::Event { result: Err(e), .. }) => {
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panic!("Ping failure: {:?}", e)
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}
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_ => {}
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}
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}
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};
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let pid2 = peer2_id.clone();
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let peer2 = async move {
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swarm2.dial(rx.next().await.unwrap()).unwrap();
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loop {
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match swarm2.select_next_some().await {
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SwarmEvent::Behaviour(ping::Event {
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peer,
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result: Ok(ping::Success::Ping { rtt }),
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}) => {
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count2 -= 1;
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if count2 == 0 {
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return (pid2.clone(), peer, rtt);
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}
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}
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SwarmEvent::Behaviour(ping::Event { result: Err(e), .. }) => {
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panic!("Ping failure: {:?}", e)
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}
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_ => {}
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}
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}
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};
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let result = future::select(Box::pin(peer1), Box::pin(peer2));
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let ((p1, p2, rtt), _) = async_std::task::block_on(result).factor_first();
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assert!(p1 == peer1_id && p2 == peer2_id || p1 == peer2_id && p2 == peer1_id);
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assert!(rtt < Duration::from_millis(50));
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}
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QuickCheck::new().tests(10).quickcheck(prop as fn(_, _))
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}
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/// Tests that the connection is closed upon a configurable
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/// number of consecutive ping failures.
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#[test]
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fn max_failures() {
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fn prop(max_failures: NonZeroU8, muxer: MuxerChoice) {
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let cfg = ping::Config::new()
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.with_keep_alive(true)
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.with_interval(Duration::from_millis(10))
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.with_timeout(Duration::from_millis(0))
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.with_max_failures(max_failures.into());
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let (peer1_id, trans) = mk_transport(muxer);
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let mut swarm1 = Swarm::new(trans, ping::Behaviour::new(cfg.clone()), peer1_id.clone());
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let (peer2_id, trans) = mk_transport(muxer);
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let mut swarm2 = Swarm::new(trans, ping::Behaviour::new(cfg), peer2_id.clone());
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let (mut tx, mut rx) = mpsc::channel::<Multiaddr>(1);
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let addr = "/ip4/127.0.0.1/tcp/0".parse().unwrap();
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swarm1.listen_on(addr).unwrap();
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let peer1 = async move {
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let mut count1: u8 = 0;
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loop {
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match swarm1.select_next_some().await {
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SwarmEvent::NewListenAddr { address, .. } => tx.send(address).await.unwrap(),
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SwarmEvent::Behaviour(ping::Event {
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result: Ok(ping::Success::Ping { .. }),
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..
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}) => {
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count1 = 0; // there may be an occasional success
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}
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SwarmEvent::Behaviour(ping::Event { result: Err(_), .. }) => {
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count1 += 1;
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}
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SwarmEvent::ConnectionClosed { .. } => return count1,
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_ => {}
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}
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}
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};
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let peer2 = async move {
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swarm2.dial(rx.next().await.unwrap()).unwrap();
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let mut count2: u8 = 0;
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loop {
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match swarm2.select_next_some().await {
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SwarmEvent::Behaviour(ping::Event {
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result: Ok(ping::Success::Ping { .. }),
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..
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}) => {
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count2 = 0; // there may be an occasional success
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}
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SwarmEvent::Behaviour(ping::Event { result: Err(_), .. }) => {
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count2 += 1;
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}
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SwarmEvent::ConnectionClosed { .. } => return count2,
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_ => {}
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}
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}
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};
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let future = future::join(peer1, peer2);
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let (count1, count2) = async_std::task::block_on(future);
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assert_eq!(u8::max(count1, count2), max_failures.get() - 1);
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}
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QuickCheck::new().tests(10).quickcheck(prop as fn(_, _))
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}
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#[test]
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fn unsupported_doesnt_fail() {
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let (peer1_id, trans) = mk_transport(MuxerChoice::Mplex);
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let mut swarm1 = Swarm::new(
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trans,
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DummyBehaviour::with_keep_alive(KeepAlive::Yes),
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peer1_id.clone(),
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);
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let (peer2_id, trans) = mk_transport(MuxerChoice::Mplex);
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let mut swarm2 = Swarm::new(
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trans,
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ping::Behaviour::new(ping::Config::new().with_keep_alive(true)),
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peer2_id.clone(),
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);
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let (mut tx, mut rx) = mpsc::channel::<Multiaddr>(1);
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let addr = "/ip4/127.0.0.1/tcp/0".parse().unwrap();
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swarm1.listen_on(addr).unwrap();
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async_std::task::spawn(async move {
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loop {
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match swarm1.select_next_some().await {
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SwarmEvent::NewListenAddr { address, .. } => tx.send(address).await.unwrap(),
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_ => {}
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}
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}
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});
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let result = async_std::task::block_on(async move {
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swarm2.dial(rx.next().await.unwrap()).unwrap();
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loop {
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match swarm2.select_next_some().await {
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SwarmEvent::Behaviour(ping::Event {
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result: Err(ping::Failure::Unsupported),
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..
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}) => {
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swarm2.disconnect_peer_id(peer1_id).unwrap();
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}
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SwarmEvent::ConnectionClosed { cause: Some(e), .. } => {
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break Err(e);
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}
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SwarmEvent::ConnectionClosed { cause: None, .. } => {
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break Ok(());
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}
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_ => {}
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}
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}
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});
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result.expect("node with ping should not fail connection due to unsupported protocol");
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}
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fn mk_transport(muxer: MuxerChoice) -> (PeerId, transport::Boxed<(PeerId, StreamMuxerBox)>) {
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let id_keys = identity::Keypair::generate_ed25519();
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let peer_id = id_keys.public().to_peer_id();
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let noise_keys = noise::Keypair::<noise::X25519Spec>::new()
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.into_authentic(&id_keys)
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.unwrap();
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(
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peer_id,
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TcpConfig::new()
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.nodelay(true)
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.upgrade(upgrade::Version::V1)
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.authenticate(noise::NoiseConfig::xx(noise_keys).into_authenticated())
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.multiplex(match muxer {
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MuxerChoice::Yamux => upgrade::EitherUpgrade::A(yamux::YamuxConfig::default()),
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MuxerChoice::Mplex => upgrade::EitherUpgrade::B(mplex::MplexConfig::default()),
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})
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.boxed(),
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)
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}
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#[derive(Debug, Copy, Clone)]
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enum MuxerChoice {
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Mplex,
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Yamux,
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}
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impl Arbitrary for MuxerChoice {
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fn arbitrary<G: Gen>(g: &mut G) -> MuxerChoice {
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*[MuxerChoice::Mplex, MuxerChoice::Yamux].choose(g).unwrap()
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}
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}
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