mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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f8c8355ac7
* Adapt to rust-libp2p#1440. * Further adapt to libp2p/master. * Update to libp2p-0.17 * Finishing touches. * Remove stray TODO. * Incorporate review feedback. * Remove unused import.
352 lines
12 KiB
Rust
352 lines
12 KiB
Rust
// Copyright 2019-2020 Parity Technologies (UK) Ltd.
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// This file is part of Substrate.
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// Substrate is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Substrate is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Substrate. If not, see <http://www.gnu.org/licenses/>.
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use fnv::FnvHashMap;
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use futures::prelude::*;
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use libp2p::Multiaddr;
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use libp2p::core::connection::{ConnectionId, ListenerId};
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use libp2p::core::{ConnectedPoint, either::EitherOutput, PeerId, PublicKey};
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use libp2p::swarm::{IntoProtocolsHandler, IntoProtocolsHandlerSelect, ProtocolsHandler};
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use libp2p::swarm::{NetworkBehaviour, NetworkBehaviourAction, PollParameters};
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use libp2p::identify::{Identify, IdentifyEvent, IdentifyInfo};
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use libp2p::ping::{Ping, PingConfig, PingEvent, PingSuccess};
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use log::{debug, trace, error};
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use smallvec::SmallVec;
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use std::{error, io};
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use std::collections::hash_map::Entry;
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use std::pin::Pin;
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use std::task::{Context, Poll};
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use std::time::Duration;
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use wasm_timer::Instant;
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use crate::utils::interval;
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/// Time after we disconnect from a node before we purge its information from the cache.
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const CACHE_EXPIRE: Duration = Duration::from_secs(10 * 60);
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/// Interval at which we perform garbage collection on the node info.
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const GARBAGE_COLLECT_INTERVAL: Duration = Duration::from_secs(2 * 60);
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/// Implementation of `NetworkBehaviour` that holds information about nodes in cache for diagnostic
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/// purposes.
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pub struct DebugInfoBehaviour {
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/// Periodically ping nodes, and close the connection if it's unresponsive.
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ping: Ping,
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/// Periodically identifies the remote and responds to incoming requests.
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identify: Identify,
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/// Information that we know about all nodes.
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nodes_info: FnvHashMap<PeerId, NodeInfo>,
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/// Interval at which we perform garbage collection in `nodes_info`.
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garbage_collect: Pin<Box<dyn Stream<Item = ()> + Send>>,
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}
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/// Information about a node we're connected to.
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#[derive(Debug)]
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struct NodeInfo {
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/// When we will remove the entry about this node from the list, or `None` if we're connected
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/// to the node.
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info_expire: Option<Instant>,
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/// Non-empty list of connected endpoints, one per connection.
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endpoints: SmallVec<[ConnectedPoint; crate::MAX_CONNECTIONS_PER_PEER]>,
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/// Version reported by the remote, or `None` if unknown.
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client_version: Option<String>,
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/// Latest ping time with this node.
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latest_ping: Option<Duration>,
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}
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impl NodeInfo {
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fn new(endpoint: ConnectedPoint) -> Self {
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let mut endpoints = SmallVec::new();
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endpoints.push(endpoint);
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NodeInfo {
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info_expire: None,
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endpoints,
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client_version: None,
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latest_ping: None,
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}
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}
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}
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impl DebugInfoBehaviour {
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/// Builds a new `DebugInfoBehaviour`.
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pub fn new(
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user_agent: String,
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local_public_key: PublicKey,
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) -> Self {
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let identify = {
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let proto_version = "/substrate/1.0".to_string();
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Identify::new(proto_version, user_agent, local_public_key.clone())
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};
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DebugInfoBehaviour {
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ping: Ping::new(PingConfig::new()),
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identify,
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nodes_info: FnvHashMap::default(),
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garbage_collect: Box::pin(interval(GARBAGE_COLLECT_INTERVAL)),
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}
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}
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/// Borrows `self` and returns a struct giving access to the information about a node.
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///
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/// Returns `None` if we don't know anything about this node. Always returns `Some` for nodes
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/// we're connected to, meaning that if `None` is returned then we're not connected to that
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/// node.
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pub fn node(&self, peer_id: &PeerId) -> Option<Node> {
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self.nodes_info.get(peer_id).map(Node)
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}
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/// Inserts a ping time in the cache. Has no effect if we don't have any entry for that node,
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/// which shouldn't happen.
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fn handle_ping_report(&mut self, peer_id: &PeerId, ping_time: Duration) {
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trace!(target: "sub-libp2p", "Ping time with {:?}: {:?}", peer_id, ping_time);
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if let Some(entry) = self.nodes_info.get_mut(peer_id) {
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entry.latest_ping = Some(ping_time);
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} else {
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error!(target: "sub-libp2p",
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"Received ping from node we're not connected to {:?}", peer_id);
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}
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}
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/// Inserts an identify record in the cache. Has no effect if we don't have any entry for that
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/// node, which shouldn't happen.
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fn handle_identify_report(&mut self, peer_id: &PeerId, info: &IdentifyInfo) {
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trace!(target: "sub-libp2p", "Identified {:?} => {:?}", peer_id, info);
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if let Some(entry) = self.nodes_info.get_mut(peer_id) {
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entry.client_version = Some(info.agent_version.clone());
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} else {
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error!(target: "sub-libp2p",
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"Received pong from node we're not connected to {:?}", peer_id);
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}
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}
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}
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/// Gives access to the information about a node.
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pub struct Node<'a>(&'a NodeInfo);
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impl<'a> Node<'a> {
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/// Returns the endpoint of an established connection to the peer.
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pub fn endpoint(&self) -> &'a ConnectedPoint {
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&self.0.endpoints[0] // `endpoints` are non-empty by definition
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}
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/// Returns the latest version information we know of.
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pub fn client_version(&self) -> Option<&'a str> {
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self.0.client_version.as_ref().map(|s| &s[..])
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}
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/// Returns the latest ping time we know of for this node. `None` if we never successfully
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/// pinged this node.
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pub fn latest_ping(&self) -> Option<Duration> {
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self.0.latest_ping
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}
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}
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/// Event that can be emitted by the behaviour.
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#[derive(Debug)]
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pub enum DebugInfoEvent {
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/// We have obtained debug information from a peer, including the addresses it is listening
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/// on.
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Identified {
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/// Id of the peer that has been identified.
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peer_id: PeerId,
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/// Information about the peer.
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info: IdentifyInfo,
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},
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}
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impl NetworkBehaviour for DebugInfoBehaviour {
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type ProtocolsHandler = IntoProtocolsHandlerSelect<
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<Ping as NetworkBehaviour>::ProtocolsHandler,
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<Identify as NetworkBehaviour>::ProtocolsHandler
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>;
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type OutEvent = DebugInfoEvent;
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fn new_handler(&mut self) -> Self::ProtocolsHandler {
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IntoProtocolsHandler::select(self.ping.new_handler(), self.identify.new_handler())
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}
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fn addresses_of_peer(&mut self, peer_id: &PeerId) -> Vec<Multiaddr> {
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let mut list = self.ping.addresses_of_peer(peer_id);
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list.extend_from_slice(&self.identify.addresses_of_peer(peer_id));
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list
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}
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fn inject_connected(&mut self, peer_id: &PeerId) {
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self.ping.inject_connected(peer_id);
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self.identify.inject_connected(peer_id);
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}
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fn inject_connection_established(&mut self, peer_id: &PeerId, conn: &ConnectionId, endpoint: &ConnectedPoint) {
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self.ping.inject_connection_established(peer_id, conn, endpoint);
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self.identify.inject_connection_established(peer_id, conn, endpoint);
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match self.nodes_info.entry(peer_id.clone()) {
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Entry::Vacant(e) => {
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e.insert(NodeInfo::new(endpoint.clone()));
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}
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Entry::Occupied(e) => {
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let e = e.into_mut();
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if e.info_expire.as_ref().map(|exp| *exp < Instant::now()).unwrap_or(false) {
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e.client_version = None;
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e.latest_ping = None;
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}
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e.info_expire = None;
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e.endpoints.push(endpoint.clone());
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}
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}
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}
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fn inject_connection_closed(&mut self, peer_id: &PeerId, conn: &ConnectionId, endpoint: &ConnectedPoint) {
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self.ping.inject_connection_closed(peer_id, conn, endpoint);
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self.identify.inject_connection_closed(peer_id, conn, endpoint);
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if let Some(entry) = self.nodes_info.get_mut(peer_id) {
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entry.endpoints.retain(|ep| ep != endpoint)
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} else {
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error!(target: "sub-libp2p",
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"Unknown connection to {:?} closed: {:?}", peer_id, endpoint);
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}
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}
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fn inject_disconnected(&mut self, peer_id: &PeerId) {
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self.ping.inject_disconnected(peer_id);
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self.identify.inject_disconnected(peer_id);
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if let Some(entry) = self.nodes_info.get_mut(peer_id) {
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entry.info_expire = Some(Instant::now() + CACHE_EXPIRE);
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} else {
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error!(target: "sub-libp2p",
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"Disconnected from node we were not connected to {:?}", peer_id);
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}
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}
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fn inject_event(
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&mut self,
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peer_id: PeerId,
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connection: ConnectionId,
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event: <<Self::ProtocolsHandler as IntoProtocolsHandler>::Handler as ProtocolsHandler>::OutEvent
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) {
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match event {
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EitherOutput::First(event) => self.ping.inject_event(peer_id, connection, event),
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EitherOutput::Second(event) => self.identify.inject_event(peer_id, connection, event),
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}
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}
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fn inject_addr_reach_failure(&mut self, peer_id: Option<&PeerId>, addr: &Multiaddr, error: &dyn std::error::Error) {
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self.ping.inject_addr_reach_failure(peer_id, addr, error);
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self.identify.inject_addr_reach_failure(peer_id, addr, error);
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}
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fn inject_dial_failure(&mut self, peer_id: &PeerId) {
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self.ping.inject_dial_failure(peer_id);
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self.identify.inject_dial_failure(peer_id);
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}
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fn inject_new_listen_addr(&mut self, addr: &Multiaddr) {
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self.ping.inject_new_listen_addr(addr);
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self.identify.inject_new_listen_addr(addr);
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}
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fn inject_expired_listen_addr(&mut self, addr: &Multiaddr) {
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self.ping.inject_expired_listen_addr(addr);
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self.identify.inject_expired_listen_addr(addr);
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}
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fn inject_new_external_addr(&mut self, addr: &Multiaddr) {
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self.ping.inject_new_external_addr(addr);
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self.identify.inject_new_external_addr(addr);
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}
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fn inject_listener_error(&mut self, id: ListenerId, err: &(dyn error::Error + 'static)) {
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self.ping.inject_listener_error(id, err);
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self.identify.inject_listener_error(id, err);
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}
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fn inject_listener_closed(&mut self, id: ListenerId, reason: Result<(), &io::Error>) {
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self.ping.inject_listener_closed(id, reason);
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self.identify.inject_listener_closed(id, reason);
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}
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fn poll(
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&mut self,
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cx: &mut Context,
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params: &mut impl PollParameters
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) -> Poll<
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NetworkBehaviourAction<
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<<Self::ProtocolsHandler as IntoProtocolsHandler>::Handler as ProtocolsHandler>::InEvent,
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Self::OutEvent
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>
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> {
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loop {
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match self.ping.poll(cx, params) {
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Poll::Pending => break,
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Poll::Ready(NetworkBehaviourAction::GenerateEvent(ev)) => {
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if let PingEvent { peer, result: Ok(PingSuccess::Ping { rtt }) } = ev {
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self.handle_ping_report(&peer, rtt)
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}
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},
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Poll::Ready(NetworkBehaviourAction::DialAddress { address }) =>
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return Poll::Ready(NetworkBehaviourAction::DialAddress { address }),
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Poll::Ready(NetworkBehaviourAction::DialPeer { peer_id, condition }) =>
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return Poll::Ready(NetworkBehaviourAction::DialPeer { peer_id, condition }),
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Poll::Ready(NetworkBehaviourAction::NotifyHandler { peer_id, handler, event }) =>
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return Poll::Ready(NetworkBehaviourAction::NotifyHandler {
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peer_id,
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handler,
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event: EitherOutput::First(event)
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}),
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Poll::Ready(NetworkBehaviourAction::ReportObservedAddr { address }) =>
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return Poll::Ready(NetworkBehaviourAction::ReportObservedAddr { address }),
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}
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}
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loop {
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match self.identify.poll(cx, params) {
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Poll::Pending => break,
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Poll::Ready(NetworkBehaviourAction::GenerateEvent(event)) => {
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match event {
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IdentifyEvent::Received { peer_id, info, .. } => {
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self.handle_identify_report(&peer_id, &info);
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let event = DebugInfoEvent::Identified { peer_id, info };
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return Poll::Ready(NetworkBehaviourAction::GenerateEvent(event));
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}
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IdentifyEvent::Error { peer_id, error } =>
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debug!(target: "sub-libp2p", "Identification with peer {:?} failed => {}", peer_id, error),
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IdentifyEvent::Sent { .. } => {}
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}
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},
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Poll::Ready(NetworkBehaviourAction::DialAddress { address }) =>
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return Poll::Ready(NetworkBehaviourAction::DialAddress { address }),
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Poll::Ready(NetworkBehaviourAction::DialPeer { peer_id, condition }) =>
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return Poll::Ready(NetworkBehaviourAction::DialPeer { peer_id, condition }),
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Poll::Ready(NetworkBehaviourAction::NotifyHandler { peer_id, handler, event }) =>
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return Poll::Ready(NetworkBehaviourAction::NotifyHandler {
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peer_id,
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handler,
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event: EitherOutput::Second(event)
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}),
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Poll::Ready(NetworkBehaviourAction::ReportObservedAddr { address }) =>
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return Poll::Ready(NetworkBehaviourAction::ReportObservedAddr { address }),
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}
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}
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while let Poll::Ready(Some(())) = self.garbage_collect.poll_next_unpin(cx) {
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self.nodes_info.retain(|_, node| {
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node.info_expire.as_ref().map(|exp| *exp >= Instant::now()).unwrap_or(true)
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});
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}
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Poll::Pending
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}
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}
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