outbound_session.rs 24 KB

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  1. /* This file is part of DarkFi (https://dark.fi)
  2. *
  3. * Copyright (C) 2020-2024 Dyne.org foundation
  4. *
  5. * This program is free software: you can redistribute it and/or modify
  6. * it under the terms of the GNU Affero General Public License as
  7. * published by the Free Software Foundation, either version 3 of the
  8. * License, or (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU Affero General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU Affero General Public License
  16. * along with this program. If not, see <https://www.gnu.org/licenses/>.
  17. */
  18. //! Outbound connections session. Manages the creation of outbound sessions.
  19. //! Used to create an outbound session and to stop and start the session.
  20. //!
  21. //! Class consists of a weak pointer to the p2p interface and a vector of
  22. //! outbound connection slots. Using a weak pointer to p2p allows us to
  23. //! avoid circular dependencies. The vector of slots is wrapped in a mutex
  24. //! lock. This is switched on every time we instantiate a connection slot
  25. //! and insures that no other part of the program uses the slots at the
  26. //! same time.
  27. use std::{
  28. sync::{
  29. atomic::{AtomicU32, Ordering},
  30. Arc, Weak,
  31. },
  32. time::{Duration, Instant},
  33. };
  34. use async_trait::async_trait;
  35. use futures::stream::{FuturesUnordered, StreamExt};
  36. use log::{debug, error, info, warn};
  37. use smol::lock::Mutex;
  38. use url::Url;
  39. use super::{
  40. super::{
  41. channel::ChannelPtr,
  42. connector::Connector,
  43. dnet::{self, dnetev, DnetEvent},
  44. hosts::{HostColor, HostState},
  45. message::GetAddrsMessage,
  46. p2p::{P2p, P2pPtr},
  47. },
  48. Session, SessionBitFlag, SESSION_OUTBOUND,
  49. };
  50. use crate::{
  51. system::{sleep, timeout::timeout, CondVar, LazyWeak, StoppableTask, StoppableTaskPtr},
  52. Error, Result,
  53. };
  54. pub type OutboundSessionPtr = Arc<OutboundSession>;
  55. /// Defines outbound connections session.
  56. pub struct OutboundSession {
  57. /// Weak pointer to parent p2p object
  58. pub(in crate::net) p2p: LazyWeak<P2p>,
  59. /// Outbound connection slots
  60. slots: Mutex<Vec<Arc<Slot>>>,
  61. /// Peer discovery task
  62. peer_discovery: Arc<PeerDiscovery>,
  63. }
  64. impl OutboundSession {
  65. /// Create a new outbound session.
  66. pub(crate) fn new() -> OutboundSessionPtr {
  67. let self_ = Arc::new(Self {
  68. p2p: LazyWeak::new(),
  69. slots: Mutex::new(Vec::new()),
  70. peer_discovery: PeerDiscovery::new(),
  71. });
  72. self_.peer_discovery.session.init(self_.clone());
  73. self_
  74. }
  75. /// Start the outbound session. Runs the channel connect loop.
  76. pub(crate) async fn start(self: Arc<Self>) {
  77. let n_slots = self.p2p().settings().outbound_connections;
  78. info!(target: "net::outbound_session", "[P2P] Starting {} outbound connection slots.", n_slots);
  79. // Activate mutex lock on connection slots.
  80. let mut slots = self.slots.lock().await;
  81. let mut futures = FuturesUnordered::new();
  82. let self_ = Arc::downgrade(&self);
  83. for i in 0..n_slots as u32 {
  84. let slot = Slot::new(self_.clone(), i);
  85. futures.push(slot.clone().start());
  86. slots.push(slot);
  87. }
  88. while (futures.next().await).is_some() {}
  89. self.peer_discovery.clone().start().await;
  90. }
  91. /// Stops the outbound session.
  92. pub(crate) async fn stop(&self) {
  93. let slots = &*self.slots.lock().await;
  94. let mut futures = FuturesUnordered::new();
  95. for slot in slots {
  96. futures.push(slot.clone().stop());
  97. }
  98. while (futures.next().await).is_some() {}
  99. self.peer_discovery.clone().stop().await;
  100. }
  101. pub async fn slot_info(&self) -> Vec<u32> {
  102. let mut info = Vec::new();
  103. let slots = &*self.slots.lock().await;
  104. for slot in slots {
  105. info.push(slot.channel_id.load(Ordering::Relaxed));
  106. }
  107. info
  108. }
  109. fn wakeup_peer_discovery(&self) {
  110. self.peer_discovery.notify()
  111. }
  112. async fn wakeup_slots(&self) {
  113. let slots = &*self.slots.lock().await;
  114. for slot in slots {
  115. slot.notify();
  116. }
  117. }
  118. }
  119. #[async_trait]
  120. impl Session for OutboundSession {
  121. fn p2p(&self) -> P2pPtr {
  122. self.p2p.upgrade()
  123. }
  124. fn type_id(&self) -> SessionBitFlag {
  125. SESSION_OUTBOUND
  126. }
  127. }
  128. #[repr(u8)]
  129. #[derive(Clone, Debug)]
  130. enum SlotPreference {
  131. /// Highest preference that corresponds to the `anchor_connect_count` and
  132. /// `white_count_count` preferences configured in Settings.
  133. First = 0,
  134. /// Reduced preference in case we don't have sufficient hosts to satisfy
  135. /// our highest preference.
  136. Second = 1,
  137. /// Lowest preference if we still haven't been able to find a host.
  138. Last = 2,
  139. }
  140. struct Slot {
  141. slot: u32,
  142. process: StoppableTaskPtr,
  143. wakeup_self: CondVar,
  144. session: Weak<OutboundSession>,
  145. connector: Connector,
  146. // For debugging
  147. channel_id: AtomicU32,
  148. }
  149. impl Slot {
  150. fn new(session: Weak<OutboundSession>, slot: u32) -> Arc<Self> {
  151. let settings = session.upgrade().unwrap().p2p().settings();
  152. Arc::new(Self {
  153. slot,
  154. process: StoppableTask::new(),
  155. wakeup_self: CondVar::new(),
  156. session: session.clone(),
  157. connector: Connector::new(settings, session),
  158. channel_id: AtomicU32::new(0),
  159. })
  160. }
  161. async fn start(self: Arc<Self>) {
  162. let ex = self.p2p().executor();
  163. self.process.clone().start(
  164. self.run(),
  165. |res| async {
  166. match res {
  167. Ok(()) | Err(Error::NetworkServiceStopped) => {}
  168. Err(e) => error!("net::outbound_session {}", e),
  169. }
  170. },
  171. Error::NetworkServiceStopped,
  172. ex,
  173. );
  174. }
  175. async fn stop(self: Arc<Self>) {
  176. self.connector.stop();
  177. self.process.stop().await;
  178. }
  179. /// Address selection algorithm that works as follows: up to
  180. /// anchor_count, select from the anchorlist. Up to white_count,
  181. /// select from the whitelist. For all other slots, select from
  182. /// the greylist (this is SlotPreference::First).
  183. ///
  184. /// If we didn't find an address with this selection logic, downgrade
  185. /// SlotPreference to Second. Up to anchor_count, select from the
  186. /// whitelist, up until white_count, select from the greylist.
  187. ///
  188. /// If we still didn't find an address, downgrade SlotPreference to Last
  189. /// and select from the greylist. In all other cases, return an empty
  190. /// vector. This will trigger fetch_addrs() to return None and initiate
  191. /// peer discovery.
  192. ///
  193. /// Selecting from the greylist for some % of the slots is necessary
  194. /// and healthy since we require the network retains some unreliable
  195. /// connections. A network that purely favors uptime over unreliable
  196. /// connections may be vulnerable to sybil by attackers with good uptime.
  197. async fn fetch_addrs_with_preference(&self, preference: SlotPreference) -> Vec<(Url, u64)> {
  198. let slot = self.slot;
  199. let settings = self.p2p().settings();
  200. let hosts = &self.p2p().hosts().container;
  201. let white_count = settings.white_connect_count;
  202. let anchor_count = settings.anchor_connect_count;
  203. let transports = &settings.allowed_transports;
  204. let transport_mixing = settings.transport_mixing;
  205. debug!(target: "net::outbound_session::fetch_addrs_with_preference()",
  206. "slot={}, preference={:?}", slot, preference);
  207. match preference {
  208. SlotPreference::First => {
  209. if slot < anchor_count {
  210. hosts.fetch(HostColor::Gold, transports, transport_mixing).await
  211. } else if slot < white_count {
  212. hosts.fetch(HostColor::White, transports, transport_mixing).await
  213. } else {
  214. hosts.fetch(HostColor::Grey, transports, transport_mixing).await
  215. }
  216. }
  217. SlotPreference::Second => {
  218. if slot < anchor_count {
  219. hosts.fetch(HostColor::White, transports, transport_mixing).await
  220. } else if slot < white_count {
  221. hosts.fetch(HostColor::Grey, transports, transport_mixing).await
  222. } else {
  223. vec![]
  224. }
  225. }
  226. SlotPreference::Last => {
  227. if slot < anchor_count {
  228. hosts.fetch(HostColor::Grey, transports, transport_mixing).await
  229. } else {
  230. vec![]
  231. }
  232. }
  233. }
  234. }
  235. // Fetch an address we can connect to acccording to the white and anchor connection counts
  236. // configured in Settings.
  237. async fn fetch_addrs(&self) -> Option<(Url, u64)> {
  238. let hosts = self.p2p().hosts();
  239. // First select an addresses that match our white and anchor requirements configured in
  240. // Settings.
  241. let addrs = self.fetch_addrs_with_preference(SlotPreference::First).await;
  242. if !addrs.is_empty() {
  243. return hosts.check_addrs(addrs).await;
  244. }
  245. // If no addresses were returned, go for the second best thing (white and grey).
  246. let addrs = self.fetch_addrs_with_preference(SlotPreference::Second).await;
  247. if !addrs.is_empty() {
  248. return hosts.check_addrs(addrs).await;
  249. }
  250. // If we still have no addresses, go for the least favored option.
  251. let addrs = self.fetch_addrs_with_preference(SlotPreference::Last).await;
  252. if !addrs.is_empty() {
  253. return hosts.check_addrs(addrs).await;
  254. }
  255. // If we still don't have an address, return None and do peer discovery.
  256. None
  257. }
  258. // We first try to make connections to the addresses on our anchor list. We then find some
  259. // whitelist connections according to the whitelist percent default. Finally, any remaining
  260. // connections we make from the greylist.
  261. async fn run(self: Arc<Self>) -> Result<()> {
  262. let hosts = self.p2p().hosts();
  263. loop {
  264. // Activate the slot
  265. debug!(
  266. target: "net::outbound_session::try_connect()",
  267. "[P2P] Finding a host to connect to for outbound slot #{}",
  268. self.slot,
  269. );
  270. // Do peer discovery if we don't have any peers on the Grey, White or Gold list
  271. // (first time connecting to the network).
  272. if hosts.container.is_empty(HostColor::Grey).await &&
  273. hosts.container.is_empty(HostColor::White).await &&
  274. hosts.container.is_empty(HostColor::Gold).await
  275. {
  276. dnetev!(self, OutboundSlotSleeping, {
  277. slot: self.slot,
  278. });
  279. self.wakeup_self.reset();
  280. // Peer discovery
  281. self.session().wakeup_peer_discovery();
  282. // Wait to be woken up by peer discovery
  283. self.wakeup_self.wait().await;
  284. continue
  285. }
  286. let addr = if let Some(addr) = self.fetch_addrs().await {
  287. debug!(target: "net::outbound_session::run()", "Fetched address: {:?}", addr);
  288. addr
  289. } else {
  290. debug!(target: "net::outbound_session::run()", "No address found! Activating peer discovery...");
  291. dnetev!(self, OutboundSlotSleeping, {
  292. slot: self.slot,
  293. });
  294. self.wakeup_self.reset();
  295. // Peer discovery
  296. self.session().wakeup_peer_discovery();
  297. // Wait to be woken up by peer discovery
  298. self.wakeup_self.wait().await;
  299. continue
  300. };
  301. let host = addr.0;
  302. let last_seen = addr.1;
  303. let slot = self.slot;
  304. info!(
  305. target: "net::outbound_session::try_connect()",
  306. "[P2P] Connecting outbound slot #{} [{}]",
  307. slot, host,
  308. );
  309. dnetev!(self, OutboundSlotConnecting, {
  310. slot,
  311. addr: host.clone(),
  312. });
  313. let (addr, channel) = match self.try_connect(host.clone(), last_seen).await {
  314. Ok(connect_info) => connect_info,
  315. Err(err) => {
  316. debug!(
  317. target: "net::outbound_session::try_connect()",
  318. "[P2P] Outbound slot #{} connection failed: {}",
  319. slot, err
  320. );
  321. dnetev!(self, OutboundSlotDisconnected, {
  322. slot,
  323. err: err.to_string()
  324. });
  325. self.channel_id.store(0, Ordering::Relaxed);
  326. continue
  327. }
  328. };
  329. info!(
  330. target: "net::outbound_session::try_connect()",
  331. "[P2P] Outbound slot #{} connected [{}]",
  332. slot, addr
  333. );
  334. dnetev!(self, OutboundSlotConnected, {
  335. slot: self.slot,
  336. addr: addr.clone(),
  337. channel_id: channel.info.id
  338. });
  339. // At this point we've managed to connect.
  340. let stop_sub = channel.subscribe_stop().await.expect("Channel should not be stopped");
  341. // Setup new channel
  342. if let Err(err) =
  343. self.session().register_channel(channel.clone(), self.p2p().executor()).await
  344. {
  345. info!(
  346. target: "net::outbound_session",
  347. "[P2P] Outbound slot #{} disconnected: {}",
  348. slot, err
  349. );
  350. dnetev!(self, OutboundSlotDisconnected, {
  351. slot: self.slot,
  352. err: err.to_string()
  353. });
  354. self.channel_id.store(0, Ordering::Relaxed);
  355. continue
  356. }
  357. self.channel_id.store(channel.info.id, Ordering::Relaxed);
  358. // Wait for channel to close
  359. stop_sub.receive().await;
  360. self.channel_id.store(0, Ordering::Relaxed);
  361. }
  362. }
  363. /// Start making an outbound connection, using provided [`Connector`].
  364. /// Tries to find a valid address to connect to, otherwise does peer
  365. /// discovery. The peer discovery loops until some peer we can connect
  366. /// to is found. Once connected, registers the channel, removes it from
  367. /// the list of pending channels, and starts sending messages across the
  368. /// channel. In case of any failures, a network error is returned and the
  369. /// main connect loop (parent of this function) will iterate again.
  370. async fn try_connect(&self, addr: Url, last_seen: u64) -> Result<(Url, ChannelPtr)> {
  371. match self.connector.connect(&addr).await {
  372. Ok((addr_final, channel)) => Ok((addr_final, channel)),
  373. Err(e) => {
  374. debug!(
  375. target: "net::outbound_session::try_connect()",
  376. "[P2P] Unable to connect outbound slot #{} [{}]: {}",
  377. self.slot, addr, e
  378. );
  379. // At this point we failed to connect. We'll downgrade this peer now.
  380. self.p2p().hosts().move_host(&addr, last_seen, HostColor::Grey).await?;
  381. // Mark its state as Suspend, which sends it to the Refinery for processing.
  382. self.p2p().hosts().try_register(addr.clone(), HostState::Suspend).await.unwrap();
  383. // Notify that channel processing failed
  384. self.p2p().hosts().channel_subscriber.notify(Err(Error::ConnectFailed)).await;
  385. Err(Error::ConnectFailed)
  386. }
  387. }
  388. }
  389. fn notify(&self) {
  390. self.wakeup_self.notify()
  391. }
  392. fn session(&self) -> OutboundSessionPtr {
  393. self.session.upgrade().unwrap()
  394. }
  395. fn p2p(&self) -> P2pPtr {
  396. self.session().p2p()
  397. }
  398. }
  399. /// Defines a common interface for multiple peer discovery processes.
  400. ///
  401. /// NOTE: Currently only one Peer Discovery implementation exists. Making
  402. /// Peer Discovery generic enables us to support network swarming, since
  403. /// the peer discovery process will differ depending on whether it occurs
  404. /// on the overlay network or a subnet.
  405. #[async_trait]
  406. pub trait PeerDiscoveryBase {
  407. async fn start(self: Arc<Self>);
  408. async fn stop(self: Arc<Self>);
  409. async fn run(self: Arc<Self>);
  410. async fn wait(&self) -> bool;
  411. fn notify(&self);
  412. fn session(&self) -> OutboundSessionPtr;
  413. fn p2p(&self) -> P2pPtr;
  414. }
  415. /// Main PeerDiscovery process that loops through connected channels
  416. /// and sends out a `GetAddrs` when it is active. If there are no
  417. /// connected channels after two attempts, connect to our seed nodes
  418. /// and perform `SeedSyncSession`.
  419. struct PeerDiscovery {
  420. process: StoppableTaskPtr,
  421. wakeup_self: CondVar,
  422. session: LazyWeak<OutboundSession>,
  423. }
  424. impl PeerDiscovery {
  425. fn new() -> Arc<Self> {
  426. Arc::new(Self {
  427. process: StoppableTask::new(),
  428. wakeup_self: CondVar::new(),
  429. session: LazyWeak::new(),
  430. })
  431. }
  432. }
  433. #[async_trait]
  434. impl PeerDiscoveryBase for PeerDiscovery {
  435. async fn start(self: Arc<Self>) {
  436. let ex = self.p2p().executor();
  437. self.process.clone().start(
  438. async move {
  439. self.run().await;
  440. unreachable!();
  441. },
  442. // Ignore stop handler
  443. |_| async {},
  444. Error::NetworkServiceStopped,
  445. ex,
  446. );
  447. }
  448. async fn stop(self: Arc<Self>) {
  449. self.process.stop().await;
  450. }
  451. /// Activate peer discovery if not active already. For the first two
  452. /// attempts, this will loop through all connected P2P channels and send
  453. /// out a `GetAddrs` message to request more peers. Other parts of the
  454. /// P2P stack will then handle the incoming addresses and place them in
  455. /// the hosts list.
  456. ///
  457. /// On the third attempt, and if we still haven't made any connections,
  458. /// this function will then call `p2p.seed()` which triggers a
  459. /// `SeedSyncSession` that will connect to configured seeds and request
  460. /// peers from them.
  461. ///
  462. /// This function will also sleep `outbound_peer_discovery_attempt_time`
  463. /// seconds after broadcasting in order to let the P2P stack receive and
  464. /// work through the addresses it is expecting.
  465. async fn run(self: Arc<Self>) {
  466. let mut current_attempt = 0;
  467. loop {
  468. dnetev!(self, OutboundPeerDiscovery, {
  469. attempt: current_attempt,
  470. state: "wait",
  471. });
  472. // wait to be woken up by notify()
  473. let sleep_was_instant = self.wait().await;
  474. let p2p = self.p2p();
  475. if sleep_was_instant {
  476. // Try again
  477. current_attempt += 1;
  478. } else {
  479. // reset back to start
  480. current_attempt = 1;
  481. }
  482. if current_attempt >= 4 {
  483. debug!("current attempt: {}", current_attempt);
  484. info!(
  485. target: "net::outbound_session::peer_discovery()",
  486. "[P2P] Sleeping and trying again..."
  487. );
  488. dnetev!(self, OutboundPeerDiscovery, {
  489. attempt: current_attempt,
  490. state: "sleep",
  491. });
  492. sleep(p2p.settings().outbound_peer_discovery_cooloff_time).await;
  493. current_attempt = 1;
  494. }
  495. // First 2 times try sending GetAddr to the network.
  496. // 3rd time do a seed sync.
  497. if p2p.is_connected().await && current_attempt <= 2 {
  498. // Broadcast the GetAddrs message to all active channels.
  499. // If we have no active channels, we will perform a SeedSyncSession instead.
  500. info!(
  501. target: "net::outbound_session::peer_discovery()",
  502. "[P2P] Requesting addrs from active channels. Attempt: {}",
  503. current_attempt
  504. );
  505. dnetev!(self, OutboundPeerDiscovery, {
  506. attempt: current_attempt,
  507. state: "getaddr",
  508. });
  509. let get_addrs = GetAddrsMessage {
  510. max: p2p.settings().outbound_connections as u32,
  511. transports: p2p.settings().allowed_transports.clone(),
  512. };
  513. p2p.broadcast(&get_addrs).await;
  514. // Wait for a hosts store update event
  515. let store_sub = self.p2p().hosts().subscribe_store().await;
  516. let result = timeout(
  517. Duration::from_secs(p2p.settings().outbound_peer_discovery_attempt_time),
  518. store_sub.receive(),
  519. )
  520. .await;
  521. match result {
  522. Ok(addrs_len) => {
  523. info!(
  524. target: "net::outbound_session::peer_discovery()",
  525. "[P2P] Discovered {} addrs", addrs_len
  526. );
  527. }
  528. Err(_) => {
  529. warn!(
  530. target: "net::outbound_session::peer_discovery()",
  531. "[P2P] Peer discovery waiting for addrs timed out."
  532. );
  533. // Just do seed next time
  534. current_attempt = 3;
  535. }
  536. }
  537. // NOTE: not every call to subscribe() in net/ has a
  538. // corresponding unsubscribe(). To do this we need async
  539. // Drop. For now it's sufficient for subscribers to be
  540. // de-allocated when the Session completes.
  541. store_sub.unsubscribe().await;
  542. } else {
  543. info!(
  544. target: "net::outbound_session::peer_discovery()",
  545. "[P2P] Seeding hosts. Attempt: {}",
  546. current_attempt
  547. );
  548. dnetev!(self, OutboundPeerDiscovery, {
  549. attempt: current_attempt,
  550. state: "seed",
  551. });
  552. p2p.clone().seed().await;
  553. if p2p.clone().session_seedsync().failed().await {
  554. error!(
  555. target: "net::outbound_session::peer_discovery()",
  556. "[P2P] Network reseed failed!"
  557. );
  558. }
  559. }
  560. self.wakeup_self.reset();
  561. self.session().wakeup_slots().await;
  562. // Give some time for new connections to be established
  563. sleep(p2p.settings().outbound_peer_discovery_attempt_time).await;
  564. }
  565. }
  566. /// Blocks execution until we receive a notification from notify().
  567. /// `wakeup_self.wait()` resets the condition variable (`CondVar`) and waits
  568. /// for a call from `notify()`. Returns `true` if the function completed
  569. /// instantly (i.e. no wait occured). Returns false otherwise.
  570. async fn wait(&self) -> bool {
  571. let wakeup_start = Instant::now();
  572. self.wakeup_self.wait().await;
  573. let wakeup_end = Instant::now();
  574. let epsilon = Duration::from_millis(200);
  575. wakeup_end - wakeup_start <= epsilon
  576. }
  577. /// Wakeup peer discovery by sending a notification to `wakeup_self`.
  578. /// Uses the underlying `CondVar` method `notify()`. Subsequent calls
  579. /// to this do nothing until `wait()` is called.
  580. fn notify(&self) {
  581. self.wakeup_self.notify()
  582. }
  583. fn session(&self) -> OutboundSessionPtr {
  584. self.session.upgrade()
  585. }
  586. fn p2p(&self) -> P2pPtr {
  587. self.session().p2p()
  588. }
  589. }