mirror of
https://gitlab.com/pulsechaincom/lighthouse-pulse.git
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113b40f321
## Issue Addressed #1384 Only catch, as currently implemented, when dialing the multiaddr nodes, there is no way to ask the peer manager if they are already connected or dialing
204 lines
6.7 KiB
Rust
204 lines
6.7 KiB
Rust
#![cfg(test)]
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use eth2_libp2p::Enr;
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use eth2_libp2p::EnrExt;
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use eth2_libp2p::Multiaddr;
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use eth2_libp2p::Service as LibP2PService;
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use eth2_libp2p::{Libp2pEvent, NetworkConfig};
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use slog::{debug, error, o, Drain};
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use std::net::{TcpListener, UdpSocket};
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use std::time::Duration;
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use types::{EnrForkId, MinimalEthSpec};
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type E = MinimalEthSpec;
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use tempdir::TempDir;
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pub struct Libp2pInstance(LibP2PService<E>, exit_future::Signal);
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impl std::ops::Deref for Libp2pInstance {
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type Target = LibP2PService<E>;
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fn deref(&self) -> &Self::Target {
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&self.0
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}
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}
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impl std::ops::DerefMut for Libp2pInstance {
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fn deref_mut(&mut self) -> &mut Self::Target {
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&mut self.0
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}
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}
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pub fn build_log(level: slog::Level, enabled: bool) -> slog::Logger {
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let decorator = slog_term::TermDecorator::new().build();
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let drain = slog_term::FullFormat::new(decorator).build().fuse();
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let drain = slog_async::Async::new(drain).build().fuse();
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if enabled {
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slog::Logger::root(drain.filter_level(level).fuse(), o!())
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} else {
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slog::Logger::root(drain.filter(|_| false).fuse(), o!())
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}
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}
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// A bit of hack to find an unused port.
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///
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/// Does not guarantee that the given port is unused after the function exists, just that it was
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/// unused before the function started (i.e., it does not reserve a port).
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pub fn unused_port(transport: &str) -> Result<u16, String> {
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let local_addr = match transport {
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"tcp" => {
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let listener = TcpListener::bind("127.0.0.1:0").map_err(|e| {
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format!("Failed to create TCP listener to find unused port: {:?}", e)
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})?;
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listener.local_addr().map_err(|e| {
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format!(
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"Failed to read TCP listener local_addr to find unused port: {:?}",
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e
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)
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})?
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}
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"udp" => {
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let socket = UdpSocket::bind("127.0.0.1:0")
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.map_err(|e| format!("Failed to create UDP socket to find unused port: {:?}", e))?;
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socket.local_addr().map_err(|e| {
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format!(
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"Failed to read UDP socket local_addr to find unused port: {:?}",
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e
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)
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})?
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}
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_ => return Err("Invalid transport to find unused port".into()),
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};
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Ok(local_addr.port())
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}
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pub fn build_config(port: u16, mut boot_nodes: Vec<Enr>) -> NetworkConfig {
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let mut config = NetworkConfig::default();
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let path = TempDir::new(&format!("libp2p_test{}", port)).unwrap();
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config.libp2p_port = port; // tcp port
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config.discovery_port = port; // udp port
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config.enr_tcp_port = Some(port);
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config.enr_udp_port = Some(port);
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config.enr_address = Some("127.0.0.1".parse().unwrap());
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config.boot_nodes_enr.append(&mut boot_nodes);
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config.network_dir = path.into_path();
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// Reduce gossipsub heartbeat parameters
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config.gs_config.heartbeat_initial_delay = Duration::from_millis(500);
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config.gs_config.heartbeat_interval = Duration::from_millis(500);
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config
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}
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pub async fn build_libp2p_instance(boot_nodes: Vec<Enr>, log: slog::Logger) -> Libp2pInstance {
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let port = unused_port("tcp").unwrap();
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let config = build_config(port, boot_nodes);
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// launch libp2p service
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let (signal, exit) = exit_future::signal();
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let executor =
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environment::TaskExecutor::new(tokio::runtime::Handle::current(), exit, log.clone());
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Libp2pInstance(
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LibP2PService::new(executor, &config, EnrForkId::default(), &log)
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.await
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.expect("should build libp2p instance")
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.1,
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signal,
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)
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}
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#[allow(dead_code)]
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pub fn get_enr(node: &LibP2PService<E>) -> Enr {
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let enr = node.swarm.local_enr().clone();
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enr
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}
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// Returns `n` libp2p peers in fully connected topology.
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#[allow(dead_code)]
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pub async fn build_full_mesh(log: slog::Logger, n: usize) -> Vec<Libp2pInstance> {
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let mut nodes = Vec::with_capacity(n);
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for _ in 0..n {
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nodes.push(build_libp2p_instance(vec![], log.clone()).await);
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}
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let multiaddrs: Vec<Multiaddr> = nodes
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.iter()
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.map(|x| get_enr(&x).multiaddr()[1].clone())
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.collect();
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for (i, node) in nodes.iter_mut().enumerate().take(n) {
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for (j, multiaddr) in multiaddrs.iter().enumerate().skip(i) {
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if i != j {
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match libp2p::Swarm::dial_addr(&mut node.swarm, multiaddr.clone()) {
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Ok(()) => debug!(log, "Connected"),
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Err(_) => error!(log, "Failed to connect"),
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};
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}
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}
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}
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nodes
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}
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// Constructs a pair of nodes with separate loggers. The sender dials the receiver.
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// This returns a (sender, receiver) pair.
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#[allow(dead_code)]
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pub async fn build_node_pair(log: &slog::Logger) -> (Libp2pInstance, Libp2pInstance) {
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let sender_log = log.new(o!("who" => "sender"));
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let receiver_log = log.new(o!("who" => "receiver"));
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let mut sender = build_libp2p_instance(vec![], sender_log).await;
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let mut receiver = build_libp2p_instance(vec![], receiver_log).await;
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let receiver_multiaddr = receiver.swarm.local_enr().multiaddr()[1].clone();
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// let the two nodes set up listeners
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let sender_fut = async {
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loop {
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if let Libp2pEvent::NewListenAddr(_) = sender.next_event().await {
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return;
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}
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}
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};
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let receiver_fut = async {
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loop {
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if let Libp2pEvent::NewListenAddr(_) = receiver.next_event().await {
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return;
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}
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}
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};
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let joined = futures::future::join(sender_fut, receiver_fut);
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// wait for either both nodes to listen or a timeout
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tokio::select! {
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_ = tokio::time::delay_for(Duration::from_millis(500)) => {}
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_ = joined => {}
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}
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match libp2p::Swarm::dial_addr(&mut sender.swarm, receiver_multiaddr.clone()) {
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Ok(()) => {
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debug!(log, "Sender dialed receiver"; "address" => format!("{:?}", receiver_multiaddr))
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}
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Err(_) => error!(log, "Dialing failed"),
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};
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(sender, receiver)
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}
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// Returns `n` peers in a linear topology
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#[allow(dead_code)]
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pub async fn build_linear(log: slog::Logger, n: usize) -> Vec<Libp2pInstance> {
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let mut nodes = Vec::with_capacity(n);
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for _ in 0..n {
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nodes.push(build_libp2p_instance(vec![], log.clone()).await);
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}
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let multiaddrs: Vec<Multiaddr> = nodes
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.iter()
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.map(|x| get_enr(&x).multiaddr()[1].clone())
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.collect();
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for i in 0..n - 1 {
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match libp2p::Swarm::dial_addr(&mut nodes[i].swarm, multiaddrs[i + 1].clone()) {
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Ok(()) => debug!(log, "Connected"),
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Err(_) => error!(log, "Failed to connect"),
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};
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}
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nodes
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}
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