mirror of
https://github.com/fluencelabs/rust-libp2p
synced 2025-05-03 22:52:16 +00:00
* Rework boxing during transport construction. * Cleanup * Fix chat-tokio example. * Update changelogs and versions.
363 lines
14 KiB
Rust
363 lines
14 KiB
Rust
// 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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use crate::handler::{IdentifyHandler, IdentifyHandlerEvent};
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use crate::protocol::{IdentifyInfo, ReplySubstream};
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use futures::prelude::*;
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use libp2p_core::{
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ConnectedPoint,
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Multiaddr,
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PeerId,
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PublicKey,
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connection::ConnectionId,
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upgrade::{ReadOneError, UpgradeError}
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};
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use libp2p_swarm::{
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NegotiatedSubstream,
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NetworkBehaviour,
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NetworkBehaviourAction,
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PollParameters,
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ProtocolsHandler,
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ProtocolsHandlerUpgrErr
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};
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use std::{
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collections::{HashMap, VecDeque},
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io,
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pin::Pin,
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task::Context,
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task::Poll
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};
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/// Network behaviour that automatically identifies nodes periodically, returns information
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/// about them, and answers identify queries from other nodes.
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pub struct Identify {
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/// Protocol version to send back to remotes.
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protocol_version: String,
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/// Agent version to send back to remotes.
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agent_version: String,
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/// The public key of the local node. To report on the wire.
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local_public_key: PublicKey,
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/// For each peer we're connected to, the observed address to send back to it.
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observed_addresses: HashMap<PeerId, HashMap<ConnectionId, Multiaddr>>,
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/// Pending replies to send.
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pending_replies: VecDeque<Reply>,
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/// Pending events to be emitted when polled.
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events: VecDeque<NetworkBehaviourAction<(), IdentifyEvent>>,
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}
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/// A pending reply to an inbound identification request.
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enum Reply {
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/// The reply is queued for sending.
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Queued {
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peer: PeerId,
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io: ReplySubstream<NegotiatedSubstream>,
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observed: Multiaddr
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},
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/// The reply is being sent.
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Sending {
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peer: PeerId,
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io: Pin<Box<dyn Future<Output = Result<(), io::Error>> + Send>>,
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}
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}
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impl Identify {
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/// Creates a new `Identify` network behaviour.
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pub fn new(protocol_version: String, agent_version: String, local_public_key: PublicKey) -> Self {
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Identify {
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protocol_version,
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agent_version,
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local_public_key,
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observed_addresses: HashMap::new(),
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pending_replies: VecDeque::new(),
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events: VecDeque::new(),
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}
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}
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}
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impl NetworkBehaviour for Identify {
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type ProtocolsHandler = IdentifyHandler;
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type OutEvent = IdentifyEvent;
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fn new_handler(&mut self) -> Self::ProtocolsHandler {
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IdentifyHandler::new()
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}
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fn addresses_of_peer(&mut self, _: &PeerId) -> Vec<Multiaddr> {
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Vec::new()
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}
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fn inject_connected(&mut self, _: &PeerId) {
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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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let addr = match endpoint {
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ConnectedPoint::Dialer { address } => address.clone(),
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ConnectedPoint::Listener { send_back_addr, .. } => send_back_addr.clone(),
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};
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self.observed_addresses.entry(peer_id.clone()).or_default().insert(*conn, addr);
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}
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fn inject_connection_closed(&mut self, peer_id: &PeerId, conn: &ConnectionId, _: &ConnectedPoint) {
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if let Some(addrs) = self.observed_addresses.get_mut(peer_id) {
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addrs.remove(conn);
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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.observed_addresses.remove(peer_id);
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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 ProtocolsHandler>::OutEvent,
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) {
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match event {
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IdentifyHandlerEvent::Identified(remote) => {
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self.events.push_back(
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NetworkBehaviourAction::GenerateEvent(
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IdentifyEvent::Received {
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peer_id,
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info: remote.info,
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observed_addr: remote.observed_addr.clone(),
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}));
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self.events.push_back(
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NetworkBehaviourAction::ReportObservedAddr {
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address: remote.observed_addr,
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});
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}
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IdentifyHandlerEvent::Identify(sender) => {
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let observed = self.observed_addresses.get(&peer_id)
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.and_then(|addrs| addrs.get(&connection))
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.expect("`inject_event` is only called with an established connection \
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and `inject_connection_established` ensures there is an entry; qed");
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self.pending_replies.push_back(
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Reply::Queued {
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peer: peer_id,
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io: sender,
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observed: observed.clone()
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});
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}
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IdentifyHandlerEvent::IdentificationError(error) => {
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self.events.push_back(
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NetworkBehaviourAction::GenerateEvent(
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IdentifyEvent::Error { peer_id, error }));
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}
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}
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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 ProtocolsHandler>::InEvent,
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Self::OutEvent,
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>,
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> {
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if let Some(event) = self.events.pop_front() {
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return Poll::Ready(event);
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}
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if let Some(r) = self.pending_replies.pop_front() {
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// The protocol names can be bytes, but the identify protocol except UTF-8 strings.
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// There's not much we can do to solve this conflict except strip non-UTF-8 characters.
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let protocols: Vec<_> = params
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.supported_protocols()
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.map(|p| String::from_utf8_lossy(&p).to_string())
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.collect();
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let mut listen_addrs: Vec<_> = params.external_addresses().collect();
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listen_addrs.extend(params.listened_addresses());
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let mut sending = 0;
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let to_send = self.pending_replies.len() + 1;
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let mut reply = Some(r);
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loop {
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match reply {
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Some(Reply::Queued { peer, io, observed }) => {
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let info = IdentifyInfo {
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public_key: self.local_public_key.clone(),
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protocol_version: self.protocol_version.clone(),
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agent_version: self.agent_version.clone(),
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listen_addrs: listen_addrs.clone(),
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protocols: protocols.clone(),
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};
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let io = Box::pin(io.send(info, &observed));
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reply = Some(Reply::Sending { peer, io });
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}
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Some(Reply::Sending { peer, mut io }) => {
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sending += 1;
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match Future::poll(Pin::new(&mut io), cx) {
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Poll::Ready(Ok(())) => {
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let event = IdentifyEvent::Sent { peer_id: peer };
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return Poll::Ready(NetworkBehaviourAction::GenerateEvent(event));
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},
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Poll::Pending => {
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self.pending_replies.push_back(Reply::Sending { peer, io });
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if sending == to_send {
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// All remaining futures are NotReady
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break
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} else {
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reply = self.pending_replies.pop_front();
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}
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}
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Poll::Ready(Err(err)) => {
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let event = IdentifyEvent::Error {
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peer_id: peer,
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error: ProtocolsHandlerUpgrErr::Upgrade(UpgradeError::Apply(err.into()))
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};
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return Poll::Ready(NetworkBehaviourAction::GenerateEvent(event));
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},
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}
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}
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None => unreachable!()
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}
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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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/// Event emitted by the `Identify` behaviour.
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#[derive(Debug)]
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pub enum IdentifyEvent {
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/// Identifying information has been received from a peer.
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Received {
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/// The peer that has been identified.
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peer_id: PeerId,
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/// The information provided by the peer.
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info: IdentifyInfo,
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/// The address observed by the peer for the local node.
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observed_addr: Multiaddr,
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},
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/// Identifying information of the local node has been sent to a peer.
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Sent {
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/// The peer that the information has been sent to.
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peer_id: PeerId,
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},
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/// Error while attempting to identify the remote.
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Error {
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/// The peer with whom the error originated.
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peer_id: PeerId,
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/// The error that occurred.
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error: ProtocolsHandlerUpgrErr<ReadOneError>,
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},
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}
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#[cfg(test)]
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mod tests {
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use crate::{Identify, IdentifyEvent};
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use futures::{prelude::*, pin_mut};
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use libp2p_core::{
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identity,
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PeerId,
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muxing::StreamMuxerBox,
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transport,
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Transport,
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upgrade
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};
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use libp2p_noise as noise;
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use libp2p_tcp::TcpConfig;
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use libp2p_swarm::{Swarm, SwarmEvent};
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use libp2p_mplex::MplexConfig;
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fn transport() -> (identity::PublicKey, transport::Boxed<(PeerId, StreamMuxerBox)>) {
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let id_keys = identity::Keypair::generate_ed25519();
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let noise_keys = noise::Keypair::<noise::X25519Spec>::new().into_authentic(&id_keys).unwrap();
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let pubkey = id_keys.public();
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let transport = 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(MplexConfig::new())
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.boxed();
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(pubkey, transport)
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}
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#[test]
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fn periodic_id_works() {
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let (mut swarm1, pubkey1) = {
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let (pubkey, transport) = transport();
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let protocol = Identify::new("a".to_string(), "b".to_string(), pubkey.clone());
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let swarm = Swarm::new(transport, protocol, pubkey.clone().into_peer_id());
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(swarm, pubkey)
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};
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let (mut swarm2, pubkey2) = {
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let (pubkey, transport) = transport();
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let protocol = Identify::new("c".to_string(), "d".to_string(), pubkey.clone());
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let swarm = Swarm::new(transport, protocol, pubkey.clone().into_peer_id());
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(swarm, pubkey)
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};
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Swarm::listen_on(&mut swarm1, "/ip4/127.0.0.1/tcp/0".parse().unwrap()).unwrap();
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let listen_addr = async_std::task::block_on(async {
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loop {
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let swarm1_fut = swarm1.next_event();
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pin_mut!(swarm1_fut);
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match swarm1_fut.await {
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SwarmEvent::NewListenAddr(addr) => return addr,
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_ => {}
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}
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}
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});
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Swarm::dial_addr(&mut swarm2, listen_addr).unwrap();
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// nb. Either swarm may receive the `Identified` event first, upon which
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// it will permit the connection to be closed, as defined by
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// `IdentifyHandler::connection_keep_alive`. Hence the test succeeds if
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// either `Identified` event arrives correctly.
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async_std::task::block_on(async move {
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loop {
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let swarm1_fut = swarm1.next();
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pin_mut!(swarm1_fut);
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let swarm2_fut = swarm2.next();
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pin_mut!(swarm2_fut);
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match future::select(swarm1_fut, swarm2_fut).await.factor_second().0 {
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future::Either::Left(IdentifyEvent::Received { info, .. }) => {
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assert_eq!(info.public_key, pubkey2);
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assert_eq!(info.protocol_version, "c");
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assert_eq!(info.agent_version, "d");
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assert!(!info.protocols.is_empty());
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assert!(info.listen_addrs.is_empty());
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return;
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}
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future::Either::Right(IdentifyEvent::Received { info, .. }) => {
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assert_eq!(info.public_key, pubkey1);
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assert_eq!(info.protocol_version, "a");
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assert_eq!(info.agent_version, "b");
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assert!(!info.protocols.is_empty());
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assert_eq!(info.listen_addrs.len(), 1);
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return;
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}
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_ => {}
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}
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}
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})
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}
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}
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