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- /* This file is part of DarkFi (https://dark.fi)
- *
- * Copyright (C) 2020-2023 Dyne.org foundation
- *
- * This program is free software: you can redistribute it and/or modify
- * it under the terms of the GNU Affero General Public License as
- * published by the Free Software Foundation, either version 3 of the
- * License, or (at your option) any later version.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU Affero General Public License for more details.
- *
- * You should have received a copy of the GNU Affero General Public License
- * along with this program. If not, see <https://www.gnu.org/licenses/>.
- */
- //! Outbound connections session. Manages the creation of outbound sessions.
- //! Used to create an outbound session and to stop and start the session.
- //!
- //! Class consists of a weak pointer to the p2p interface and a vector of
- //! outbound connection slots. Using a weak pointer to p2p allows us to
- //! avoid circular dependencies. The vector of slots is wrapped in a mutex
- //! lock. This is switched on every time we instantiate a connection slot
- //! and insures that no other part of the program uses the slots at the
- //! same time.
- use std::{
- collections::HashSet,
- sync::{Arc, Weak},
- };
- use async_trait::async_trait;
- use log::{debug, error, info, warn};
- use smol::{lock::Mutex, Executor};
- use url::Url;
- use super::{
- super::{
- channel::ChannelPtr,
- connector::Connector,
- dnet::{self, dnetev, DnetEvent},
- message::GetAddrsMessage,
- p2p::{P2p, P2pPtr},
- },
- Session, SessionBitFlag, SESSION_OUTBOUND,
- };
- use crate::{
- system::{sleep, StoppableTask, StoppableTaskPtr, Subscriber, SubscriberPtr},
- Error, Result,
- };
- pub type OutboundSessionPtr = Arc<OutboundSession>;
- /// Connection state
- #[derive(Eq, PartialEq, Copy, Clone, Debug)]
- pub enum OutboundState {
- Open,
- Pending,
- Connected,
- }
- impl std::fmt::Display for OutboundState {
- fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result {
- write!(
- f,
- "{}",
- match self {
- Self::Open => "open",
- Self::Pending => "pending",
- Self::Connected => "connected",
- }
- )
- }
- }
- /// Defines outbound connections session.
- pub struct OutboundSession {
- /// Weak pointer to parent p2p object
- p2p: Weak<P2p>,
- /// Outbound connection slots
- connect_slots: Mutex<Vec<StoppableTaskPtr>>,
- /// Subscriber used to signal channels processing
- channel_subscriber: SubscriberPtr<Result<ChannelPtr>>,
- /// Flag to toggle channel_subscriber notifications
- notify: Mutex<bool>,
- }
- impl OutboundSession {
- /// Create a new outbound session.
- pub fn new(p2p: Weak<P2p>) -> OutboundSessionPtr {
- Arc::new(Self {
- p2p,
- connect_slots: Mutex::new(vec![]),
- channel_subscriber: Subscriber::new(),
- notify: Mutex::new(false),
- })
- }
- /// Start the outbound session. Runs the channel connect loop.
- pub async fn start(self: Arc<Self>) -> Result<()> {
- let ex = self.p2p().executor();
- let n_slots = self.p2p().settings().outbound_connections;
- info!(target: "net::outbound_session", "[P2P] Starting {} outbound connection slots.", n_slots);
- // Activate mutex lock on connection slots.
- let mut connect_slots = self.connect_slots.lock().await;
- for i in 0..n_slots as u32 {
- let task = StoppableTask::new();
- task.clone().start(
- self.clone().channel_connect_loop(i),
- // Ignore stop handler
- |_| async {},
- Error::NetworkServiceStopped,
- ex.clone(),
- );
- connect_slots.push(task);
- }
- Ok(())
- }
- /// Stops the outbound session.
- pub async fn stop(&self) {
- let connect_slots = &*self.connect_slots.lock().await;
- for slot in connect_slots {
- slot.stop().await;
- }
- }
- /// Creates a connector object and tries to connect using it.
- pub async fn channel_connect_loop(self: Arc<Self>, slot: u32) -> Result<()> {
- let ex = self.p2p().executor();
- let parent = Arc::downgrade(&self);
- let connector = Connector::new(self.p2p().settings(), Arc::new(parent));
- // Retrieve whitelisted outbound transports
- let transports = &self.p2p().settings().allowed_transports;
- // This is the main outbound connection loop where we try to establish
- // a connection in the slot. The `try_connect` function will block in
- // case the connection was sucessfully established. If it fails, then
- // we will wait for a defined number of seconds and try to fill the
- // slot again. This function should never exit during the lifetime of
- // the P2P network, as it is supposed to represent an outbound slot we
- // want to fill.
- // The actual connection logic and peer selection is in `try_connect`.
- // If the connection is successful, `try_connect` will wait for a stop
- // signal and then exit. Once it exits, we'll run `try_connect` again
- // and attempt to fill the slot with another peer.
- loop {
- match self.try_connect(slot, &connector, transports, ex.clone()).await {
- Ok(()) => {
- info!(
- target: "net::outbound_session",
- "[P2P] Outbound slot #{} disconnected",
- slot
- );
- }
- Err(e) => {
- error!(
- target: "net::outbound_session",
- "[P2P] Outbound slot #{} connection failed: {}",
- slot, e,
- );
- dnetev!(self, OutboundDisconnected, {
- slot,
- err: e.to_string()
- });
- }
- }
- }
- }
- /// Start making an outbound connection, using provided [`Connector`].
- /// Tries to find a valid address to connect to, otherwise does peer
- /// discovery. The peer discovery loops until some peer we can connect
- /// to is found. Once connected, registers the channel, removes it from
- /// the list of pending channels, and starts sending messages across the
- /// channel. In case of any failures, a network error is returned and the
- /// main connect loop (parent of this function) will iterate again.
- async fn try_connect(
- &self,
- slot: u32,
- connector: &Connector,
- transports: &[String],
- ex: Arc<Executor<'_>>,
- ) -> Result<()> {
- debug!(
- target: "net::outbound_session::try_connect()",
- "[P2P] Finding a host to connect to for outbound slot #{}",
- slot,
- );
- // Find an address to connect to. We also do peer discovery here if needed.
- let addr = self.load_address(slot, transports).await?;
- info!(
- target: "net::outbound_session::try_connect()",
- "[P2P] Connecting outbound slot #{} [{}]",
- slot, addr,
- );
- dnetev!(self, OutboundConnecting, {
- slot,
- addr: addr.clone(),
- });
- match connector.connect(&addr).await {
- Ok((url, channel)) => {
- info!(
- target: "net::outbound_session::try_connect()",
- "[P2P] Outbound slot #{} connected [{}]",
- slot, url
- );
- dnetev!(self, OutboundConnected, {
- slot,
- addr: addr.clone(),
- channel_id: channel.info.id
- });
- let stop_sub =
- channel.subscribe_stop().await.expect("Channel should not be stopped");
- // Register the new channel
- self.register_channel(channel.clone(), ex.clone()).await?;
- // Channel is now connected but not yet setup
- // Remove pending lock since register_channel will add the channel to p2p
- self.p2p().remove_pending(&addr).await;
- // Notify that channel processing has been finished
- if *self.notify.lock().await {
- self.channel_subscriber.notify(Ok(channel)).await;
- }
- // Wait for channel to close
- stop_sub.receive().await;
- return Ok(())
- }
- Err(e) => {
- error!(
- target: "net::outbound_session::try_connect()",
- "[P2P] Unable to connect outbound slot #{} [{}]: {}",
- slot, addr, e
- );
- }
- }
- // At this point we failed to connect. We'll quarantine this peer now.
- self.p2p().hosts().quarantine(&addr).await;
- // Notify that channel processing failed
- if *self.notify.lock().await {
- self.channel_subscriber.notify(Err(Error::ConnectFailed)).await;
- }
- Err(Error::ConnectFailed)
- }
- /// Loops through host addresses to find an outbound address that we can
- /// connect to. Check whether the address is valid by making sure it isn't
- /// our own inbound address, then checks whether it is already connected
- /// (exists) or connecting (pending). If no address was found, we'll attempt
- /// to do peer discovery and try to fill the slot again.
- async fn load_address(&self, slot: u32, transports: &[String]) -> Result<Url> {
- loop {
- let p2p = self.p2p();
- let retry_sleep = p2p.settings().outbound_connect_timeout;
- if *p2p.peer_discovery_running.lock().await {
- debug!(
- target: "net::outbound_session::load_address()",
- "[P2P] #{} Peer discovery active, waiting {} seconds...",
- slot, retry_sleep,
- );
- sleep(retry_sleep).await;
- }
- // Collect hosts
- let mut hosts = HashSet::new();
- // If transport mixing is enabled, then for example we're allowed to
- // use tor:// to connect to tcp:// and tor+tls:// to connect to tcp+tls://.
- // However, **do not** mix tor:// and tcp+tls://, nor tor+tls:// and tcp://.
- let transport_mixing = self.p2p().settings().transport_mixing;
- macro_rules! mix_transport {
- ($a:expr, $b:expr) => {
- if transports.contains(&$a.to_string()) && transport_mixing {
- let mut a_to_b = p2p.hosts().load_with_schemes(&[$b.to_string()]).await;
- for addr in a_to_b.iter_mut() {
- addr.set_scheme($a).unwrap();
- hosts.insert(addr.clone());
- }
- }
- };
- }
- mix_transport!("tor", "tcp");
- mix_transport!("tor+tls", "tcp+tls");
- mix_transport!("nym", "tcp");
- mix_transport!("nym+tls", "tcp+tls");
- // And now the actual requested transports
- for addr in p2p.hosts().load_with_schemes(transports).await {
- hosts.insert(addr);
- }
- // Try to find an unused host in the set.
- for host in &hosts {
- // Check if we already have this connection established
- if p2p.exists(host).await {
- continue
- }
- // Check if we already have this configured as a manual peer
- if p2p.settings().peers.contains(host) {
- continue
- }
- // Obtain a lock on this address to prevent duplicate connection
- if !p2p.add_pending(host).await {
- continue
- }
- return Ok(host.clone())
- }
- // We didn't find a host to connect to, let's try to find more peers.
- info!(
- target: "net::outbound_session::load_address()",
- "[P2P] Outbound #{}: No peers found. Starting peer discovery...",
- slot,
- );
- // NOTE: A design decision here is to do a sleep inside peer_discovery()
- // so that there's a certain period (outbound_connect_timeout) of time
- // to send the GetAddr, receive Addrs, and sort things out. By sleeping
- // inside peer_discovery, it will block here in the slot sessions, while
- // other slots can keep trying to find hosts. This is also why we sleep
- // in the beginning of this loop if peer discovery is currently active.
- self.peer_discovery(slot).await;
- }
- }
- /// Activate peer discovery if not active already. This will loop through all
- /// connected P2P channels and send out a `GetAddrs` message to request more
- /// peers. Other parts of the P2P stack will then handle the incoming addresses
- /// and place them in the hosts list.
- /// This function will also sleep `Settings::outbound_connect_timeout` seconds
- /// after broadcasting in order to let the P2P stack receive and work through
- /// the addresses it is expecting.
- async fn peer_discovery(&self, slot: u32) {
- let p2p = self.p2p();
- if *p2p.peer_discovery_running.lock().await {
- info!(
- target: "net::outbound_session::peer_discovery()",
- "[P2P] Outbound #{}: Peer discovery already active",
- slot,
- );
- return
- }
- info!(
- target: "net::outbound_session::peer_discovery()",
- "[P2P] Outbound #{}: Started peer discovery",
- slot,
- );
- *p2p.peer_discovery_running.lock().await = true;
- // Broadcast the GetAddrs message to all active channels.
- // If we have no active channels, we will perform a SeedSyncSession instead.
- if p2p.random_channel().await.is_some() {
- let get_addrs = GetAddrsMessage { max: p2p.settings().outbound_connections as u32 };
- info!(
- target: "net::outbound_session::peer_discovery()",
- "[P2P] Outbound #{}: Broadcasting GetAddrs across active channels",
- slot,
- );
- p2p.broadcast(&get_addrs).await;
- } else {
- warn!(
- target: "net::outbound_session::peer_discovery()",
- "[P2P] No connected channels found for peer discovery. Reseeding.",
- );
- if let Err(e) = p2p.clone().reseed().await {
- error!(
- target: "net::outbound_session::peer_discovery()",
- "[P2P] Network reseed failed: {}", e,
- );
- }
- }
- // Now sleep to let the GetAddrs propagate, and hopefully
- // in the meantime we'll get some peers.
- debug!(
- target: "net::outbound_session::peer_discovery()",
- "[P2P] Outbound #{}: Sleeping {} seconds",
- slot, p2p.settings().outbound_connect_timeout,
- );
- sleep(p2p.settings().outbound_connect_timeout).await;
- *p2p.peer_discovery_running.lock().await = false;
- }
- /// Enable channel_subscriber notifications.
- pub async fn enable_notify(self: Arc<Self>) {
- *self.notify.lock().await = true;
- }
- /// Disable channel_subscriber notifications.
- pub async fn disable_notify(self: Arc<Self>) {
- *self.notify.lock().await = false;
- }
- }
- #[async_trait]
- impl Session for OutboundSession {
- fn p2p(&self) -> P2pPtr {
- self.p2p.upgrade().unwrap()
- }
- fn type_id(&self) -> SessionBitFlag {
- SESSION_OUTBOUND
- }
- }
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