raft.rs 23 KB

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  1. use async_std::{
  2. sync::{Arc, Mutex},
  3. task,
  4. };
  5. use std::{cmp::min, collections::HashMap, net::SocketAddr, path::PathBuf, time::Duration};
  6. use async_executor::Executor;
  7. use futures::{select, FutureExt};
  8. use log::{debug, error, info, warn};
  9. use rand::{rngs::OsRng, Rng, RngCore};
  10. use crate::{
  11. net,
  12. util::serial::{deserialize, serialize, Decodable, Encodable},
  13. Error, Result,
  14. };
  15. use super::{
  16. BroadcastMsgRequest, DataStore, Log, LogRequest, LogResponse, Logs, MapLength, NetMsg,
  17. NetMsgMethod, NodeId, ProtocolRaft, Role, SyncRequest, SyncResponse, VoteRequest, VoteResponse,
  18. };
  19. const HEARTBEATTIMEOUT: u64 = 100;
  20. const TIMEOUT: u64 = 300;
  21. const TIMEOUT_NODES: u64 = 300;
  22. pub type Broadcast<T> = (async_channel::Sender<T>, async_channel::Receiver<T>);
  23. type Sender = (async_channel::Sender<NetMsg>, async_channel::Receiver<NetMsg>);
  24. pub struct Raft<T> {
  25. // this will be derived from the ip
  26. // if the node doesn't have an id then will become a listener and doesn't have the right
  27. // to request/response votes or response a confirmation for log
  28. id: Option<NodeId>,
  29. // these five vars should be on local storage
  30. current_term: u64,
  31. voted_for: Option<NodeId>,
  32. logs: Logs,
  33. commit_length: u64,
  34. role: Role,
  35. current_leader: Option<NodeId>,
  36. votes_received: Vec<NodeId>,
  37. sent_length: MapLength,
  38. acked_length: MapLength,
  39. nodes: Arc<Mutex<HashMap<NodeId, SocketAddr>>>,
  40. last_term: u64,
  41. sender: Sender,
  42. broadcast_msg: Broadcast<T>,
  43. broadcast_commits: Broadcast<T>,
  44. datastore: DataStore<T>,
  45. }
  46. impl<T: Decodable + Encodable + Clone> Raft<T> {
  47. pub fn new(addr: Option<SocketAddr>, db_path: PathBuf) -> Result<Self> {
  48. if db_path.to_str().is_none() {
  49. error!(target: "raft", "datastore path is incorrect");
  50. return Err(Error::ParseFailed("unable to parse pathbuf to str"))
  51. };
  52. let db_path_str = db_path.to_str().unwrap();
  53. let mut current_term = 0;
  54. let mut voted_for = None;
  55. let mut logs = Logs(vec![]);
  56. let mut commit_length = 0;
  57. let datastore = if db_path.exists() {
  58. let datastore = DataStore::new(db_path_str)?;
  59. current_term = datastore.current_term.get_last()?.unwrap_or(0);
  60. voted_for = datastore.voted_for.get_last()?.flatten();
  61. logs = Logs(datastore.logs.get_all()?);
  62. commit_length = datastore.commits_length.get_last()?.unwrap_or(0);
  63. datastore
  64. } else {
  65. DataStore::new(db_path_str)?
  66. };
  67. // broadcasting channels
  68. let broadcast_msg = async_channel::unbounded::<T>();
  69. let broadcast_commits = async_channel::unbounded::<T>();
  70. let sender = async_channel::unbounded::<NetMsg>();
  71. Ok(Self {
  72. id: addr.map(NodeId::from),
  73. current_term,
  74. voted_for,
  75. logs,
  76. commit_length,
  77. role: Role::Follower,
  78. current_leader: None,
  79. votes_received: vec![],
  80. sent_length: MapLength(HashMap::new()),
  81. acked_length: MapLength(HashMap::new()),
  82. nodes: Arc::new(Mutex::new(HashMap::new())),
  83. last_term: 0,
  84. sender,
  85. broadcast_msg,
  86. broadcast_commits,
  87. datastore,
  88. })
  89. }
  90. pub async fn start(
  91. &mut self,
  92. net_settings: net::Settings,
  93. executor: Arc<Executor<'_>>,
  94. stop_signal: async_channel::Receiver<()>,
  95. ) -> Result<()> {
  96. let (p2p_snd, receive_queues) = async_channel::unbounded::<NetMsg>();
  97. let p2p = net::P2p::new(net_settings).await;
  98. let p2p = p2p.clone();
  99. let registry = p2p.protocol_registry();
  100. let seen_net_msg = Arc::new(Mutex::new(vec![]));
  101. let self_id = self.id.clone();
  102. registry
  103. .register(net::SESSION_ALL, move |channel, p2p| {
  104. let self_id = self_id.clone();
  105. let sender = p2p_snd.clone();
  106. let seen_net_msg_cloned = seen_net_msg.clone();
  107. async move {
  108. ProtocolRaft::init(self_id, channel, sender, p2p, seen_net_msg_cloned).await
  109. }
  110. })
  111. .await;
  112. // P2p performs seed session
  113. p2p.clone().start(executor.clone()).await?;
  114. let executor_cloned = executor.clone();
  115. let p2p_task = executor_cloned.spawn(p2p.clone().run(executor.clone()));
  116. let p2p_cloned = p2p.clone();
  117. let p2p_recv = self.sender.1.clone();
  118. let p2p_recv_task = executor.spawn(async move {
  119. loop {
  120. let msg: NetMsg = match p2p_recv.recv().await {
  121. Ok(m) => m,
  122. Err(e) => {
  123. error!(target: "raft", "error occurred while receiving a msg: {}", e);
  124. continue
  125. }
  126. };
  127. match p2p_cloned.broadcast(msg).await {
  128. Ok(_) => {}
  129. Err(e) => {
  130. error!(target: "raft", "error occurred during broadcasting a msg: {}", e);
  131. continue
  132. }
  133. }
  134. }
  135. });
  136. let self_nodes = self.nodes.clone();
  137. let p2p_cloned = p2p.clone();
  138. let self_id = self.id.clone();
  139. let load_ips_task = executor.spawn(async move {
  140. if self_id.is_none() {
  141. return
  142. }
  143. loop {
  144. debug!(target: "raft", "load node ids from p2p hosts ips");
  145. task::sleep(Duration::from_millis(TIMEOUT_NODES * 10)).await;
  146. let hosts = p2p_cloned.hosts().clone();
  147. let nodes_ip = hosts.load_all().await.clone();
  148. let mut nodes = self_nodes.lock().await;
  149. for ip in nodes_ip.iter() {
  150. nodes.insert(NodeId::from(*ip), *ip);
  151. }
  152. }
  153. });
  154. if self.id.is_none() {
  155. let last_term =
  156. if !self.logs.0.is_empty() { self.logs.0.last().unwrap().term } else { 0 };
  157. let sync_request = SyncRequest { logs_len: self.logs.len(), last_term };
  158. info!("send sync request");
  159. self.send(None, &serialize(&sync_request), NetMsgMethod::SyncRequest, None).await?;
  160. loop {
  161. select! {
  162. msg = receive_queues.recv().fuse() => {
  163. let msg = msg?;
  164. if msg.method == NetMsgMethod::SyncResponse {
  165. info!("receive sync response");
  166. let sr: SyncResponse = deserialize(&msg.payload)?;
  167. if sr.wipe {
  168. self.set_commit_length(&0)?;
  169. self.push_logs(&sr.logs)?;
  170. } else {
  171. for log in sr.logs.0.iter() {
  172. self.push_log(log)?;
  173. }
  174. }
  175. if !self.logs.is_empty() {
  176. self.set_current_term(&self.logs.0.last().unwrap().term.clone())?;
  177. }
  178. if self.commit_length > sr.commit_length {
  179. self.set_commit_length(&0)?;
  180. }
  181. for i in self.commit_length..sr.commit_length {
  182. self.push_commit(&self.logs.get(i)?.msg).await?;
  183. }
  184. self.set_commit_length(&sr.commit_length)?;
  185. self.current_leader = Some(sr.leader_id);
  186. break
  187. }},
  188. _ = stop_signal.recv().fuse() => break,
  189. }
  190. }
  191. }
  192. let mut rng = rand::thread_rng();
  193. let broadcast_msg_rv = self.broadcast_msg.1.clone();
  194. loop {
  195. let timeout: Duration = if self.role == Role::Leader {
  196. Duration::from_millis(HEARTBEATTIMEOUT)
  197. } else {
  198. Duration::from_millis(rng.gen_range(0..200) + TIMEOUT)
  199. };
  200. let result: Result<()>;
  201. select! {
  202. m = receive_queues.recv().fuse() => result = self.handle_method(m?).await,
  203. m = broadcast_msg_rv.recv().fuse() => result = self.broadcast_msg(&m?,None).await,
  204. _ = task::sleep(timeout).fuse() => {
  205. result = if self.role == Role::Leader {
  206. self.send_heartbeat().await
  207. }else {
  208. self.send_vote_request().await
  209. };
  210. },
  211. _ = stop_signal.recv().fuse() => break,
  212. }
  213. match result {
  214. Ok(_) => {}
  215. Err(e) => warn!(target: "raft", "warn: {}", e),
  216. }
  217. }
  218. warn!(target: "raft", "Raft start() Exit Signal");
  219. load_ips_task.cancel().await;
  220. p2p_recv_task.cancel().await;
  221. p2p_task.cancel().await;
  222. self.datastore.cancel().await?;
  223. Ok(())
  224. }
  225. pub fn get_commits(&self) -> async_channel::Receiver<T> {
  226. self.broadcast_commits.1.clone()
  227. }
  228. pub fn get_broadcast(&self) -> async_channel::Sender<T> {
  229. self.broadcast_msg.0.clone()
  230. }
  231. async fn broadcast_msg(&mut self, msg: &T, msg_id: Option<u64>) -> Result<()> {
  232. if self.role == Role::Leader {
  233. let msg = serialize(msg);
  234. let log = Log { msg, term: self.current_term };
  235. self.push_log(&log)?;
  236. self.acked_length.insert(&self.id.clone().unwrap(), self.logs.len());
  237. } else {
  238. let b_msg = BroadcastMsgRequest(serialize(msg));
  239. self.send(
  240. self.current_leader.clone(),
  241. &serialize(&b_msg),
  242. NetMsgMethod::BroadcastRequest,
  243. msg_id,
  244. )
  245. .await?;
  246. }
  247. info!(target: "raft",
  248. "Node has id: {}, Node status: {:?}, broadcast a msg id: {:?} ",
  249. self.id.is_some(),
  250. self.role, msg_id
  251. );
  252. Ok(())
  253. }
  254. async fn handle_method(&mut self, msg: NetMsg) -> Result<()> {
  255. match msg.method {
  256. NetMsgMethod::LogResponse => {
  257. let lr: LogResponse = deserialize(&msg.payload)?;
  258. self.receive_log_response(lr).await?;
  259. }
  260. NetMsgMethod::LogRequest => {
  261. let lr: LogRequest = deserialize(&msg.payload)?;
  262. self.receive_log_request(lr).await?;
  263. }
  264. NetMsgMethod::VoteResponse => {
  265. let vr: VoteResponse = deserialize(&msg.payload)?;
  266. self.receive_vote_response(vr).await?;
  267. }
  268. NetMsgMethod::VoteRequest => {
  269. let vr: VoteRequest = deserialize(&msg.payload)?;
  270. self.receive_vote_request(vr).await?;
  271. }
  272. NetMsgMethod::BroadcastRequest => {
  273. let vr: BroadcastMsgRequest = deserialize(&msg.payload)?;
  274. let d: T = deserialize(&vr.0)?;
  275. self.broadcast_msg(&d, Some(msg.id)).await?;
  276. }
  277. NetMsgMethod::SyncRequest => {
  278. info!("receive sync request");
  279. let sr: SyncRequest = deserialize(&msg.payload)?;
  280. self.receive_sync_request(&sr, msg.id).await?;
  281. }
  282. NetMsgMethod::SyncResponse => {}
  283. }
  284. debug!(
  285. target: "raft",
  286. "{} {:?} receive msg id: {} recipient_id: {:?} method: {:?} ",
  287. self.id.is_some(), self.role, msg.id, &msg.recipient_id.is_some(), &msg.method
  288. );
  289. Ok(())
  290. }
  291. async fn receive_sync_request(&self, sr: &SyncRequest, msg_id: u64) -> Result<()> {
  292. if self.id.is_none() {
  293. return Ok(())
  294. }
  295. if self.role == Role::Leader {
  296. let mut wipe = false;
  297. let logs = if sr.logs_len == 0 {
  298. self.logs.clone()
  299. } else if self.logs.len() >= sr.logs_len &&
  300. self.logs.get(sr.logs_len - 1)?.term == sr.last_term
  301. {
  302. self.logs.slice_from(sr.logs_len).unwrap()
  303. } else {
  304. wipe = true;
  305. self.logs.clone()
  306. };
  307. let sync_response = SyncResponse {
  308. logs,
  309. commit_length: self.commit_length,
  310. leader_id: self.id.clone().unwrap(),
  311. wipe,
  312. };
  313. info!("send sync response");
  314. for _ in 0..2 {
  315. self.send(
  316. self.current_leader.clone(),
  317. &serialize(&sync_response),
  318. NetMsgMethod::SyncResponse,
  319. None,
  320. )
  321. .await?;
  322. }
  323. } else {
  324. self.send(
  325. self.current_leader.clone(),
  326. &serialize(sr),
  327. NetMsgMethod::SyncRequest,
  328. Some(msg_id),
  329. )
  330. .await?;
  331. }
  332. Ok(())
  333. }
  334. async fn send(
  335. &self,
  336. recipient_id: Option<NodeId>,
  337. payload: &[u8],
  338. method: NetMsgMethod,
  339. msg_id: Option<u64>,
  340. ) -> Result<()> {
  341. let random_id = if msg_id.is_some() { msg_id.unwrap() } else { OsRng.next_u64() };
  342. debug!(
  343. target: "raft",
  344. "{} {:?} send a msg id: {} recipient_id: {:?} method: {:?} ",
  345. self.id.is_some(), self.role, random_id, &recipient_id.is_some(), &method
  346. );
  347. let net_msg = NetMsg { id: random_id, recipient_id, payload: payload.to_vec(), method };
  348. self.sender.0.send(net_msg).await?;
  349. Ok(())
  350. }
  351. async fn send_heartbeat(&self) -> Result<()> {
  352. if self.role == Role::Leader {
  353. let nodes = self.nodes.lock().await;
  354. let nodes_cloned = nodes.clone();
  355. drop(nodes);
  356. for node in nodes_cloned.iter() {
  357. self.update_logs(node.0).await?;
  358. }
  359. }
  360. Ok(())
  361. }
  362. async fn send_vote_request(&mut self) -> Result<()> {
  363. // this will prevent the listener node to become a candidate
  364. if self.id.is_none() {
  365. return Ok(())
  366. }
  367. let self_id = self.id.clone().unwrap();
  368. self.set_current_term(&(self.current_term + 1))?;
  369. self.role = Role::Candidate;
  370. self.set_voted_for(&Some(self_id.clone()))?;
  371. self.votes_received.push(self_id.clone());
  372. self.reset_last_term();
  373. let request = VoteRequest {
  374. node_id: self_id,
  375. current_term: self.current_term,
  376. log_length: self.logs.len(),
  377. last_term: self.last_term,
  378. };
  379. let payload = serialize(&request);
  380. self.send(None, &payload, NetMsgMethod::VoteRequest, None).await
  381. }
  382. async fn receive_vote_request(&mut self, vr: VoteRequest) -> Result<()> {
  383. if self.id.is_none() {
  384. return Ok(())
  385. }
  386. if vr.current_term > self.current_term {
  387. self.set_current_term(&vr.current_term)?;
  388. self.set_voted_for(&None)?;
  389. self.role = Role::Follower;
  390. }
  391. self.reset_last_term();
  392. // check the logs of the candidate
  393. let vote_ok = (vr.last_term > self.last_term) ||
  394. (vr.last_term == self.last_term && vr.log_length >= self.logs.len());
  395. // slef.voted_for equal to vr.node_id or is None or voted to someone else
  396. let vote = if let Some(voted_for) = self.voted_for.as_ref() {
  397. *voted_for == vr.node_id
  398. } else {
  399. true
  400. };
  401. let mut response = VoteResponse {
  402. node_id: self.id.clone().unwrap(),
  403. current_term: self.current_term,
  404. ok: false,
  405. };
  406. if vr.current_term == self.current_term && vote_ok && vote {
  407. self.set_voted_for(&Some(vr.node_id.clone()))?;
  408. response.set_ok(true);
  409. }
  410. let payload = serialize(&response);
  411. self.send(Some(vr.node_id), &payload, NetMsgMethod::VoteResponse, None).await
  412. }
  413. async fn receive_vote_response(&mut self, vr: VoteResponse) -> Result<()> {
  414. if self.role == Role::Candidate && vr.current_term == self.current_term && vr.ok {
  415. self.votes_received.push(vr.node_id);
  416. let nodes = self.nodes.lock().await;
  417. let nodes_cloned = nodes.clone();
  418. drop(nodes);
  419. if self.votes_received.len() >= ((nodes_cloned.len() + 1) / 2) {
  420. self.role = Role::Leader;
  421. self.current_leader = Some(self.id.clone().unwrap());
  422. for node in nodes_cloned.iter() {
  423. self.sent_length.insert(node.0, self.logs.len());
  424. self.acked_length.insert(node.0, 0);
  425. }
  426. }
  427. } else if vr.current_term > self.current_term {
  428. self.set_current_term(&vr.current_term)?;
  429. self.role = Role::Follower;
  430. self.set_voted_for(&None)?;
  431. }
  432. Ok(())
  433. }
  434. async fn update_logs(&self, node_id: &NodeId) -> Result<()> {
  435. let prefix_len = match self.sent_length.get(node_id) {
  436. Ok(len) => len,
  437. Err(_) => {
  438. // return if failed to index
  439. return Ok(())
  440. }
  441. };
  442. let suffix: Logs = if self.logs.slice_from(prefix_len).is_some() {
  443. self.logs.slice_from(prefix_len).unwrap()
  444. } else {
  445. return Ok(())
  446. };
  447. let mut prefix_term = 0;
  448. if prefix_len > 0 {
  449. prefix_term = self.logs.get(prefix_len - 1)?.term;
  450. }
  451. let request = LogRequest {
  452. leader_id: self.id.clone().unwrap(),
  453. current_term: self.current_term,
  454. prefix_len,
  455. prefix_term,
  456. commit_length: self.commit_length,
  457. suffix,
  458. };
  459. let payload = serialize(&request);
  460. self.send(Some(node_id.clone()), &payload, NetMsgMethod::LogRequest, None).await
  461. }
  462. async fn receive_log_request(&mut self, lr: LogRequest) -> Result<()> {
  463. if lr.current_term > self.current_term {
  464. self.set_current_term(&lr.current_term)?;
  465. self.set_voted_for(&None)?;
  466. }
  467. if lr.current_term == self.current_term {
  468. self.role = Role::Follower;
  469. self.current_leader = Some(lr.leader_id.clone());
  470. }
  471. let mut ok = (self.logs.len() >= lr.prefix_len) &&
  472. (lr.prefix_len == 0 || self.logs.get(lr.prefix_len - 1)?.term == lr.prefix_term);
  473. let mut ack = 0;
  474. if lr.current_term == self.current_term && ok {
  475. self.append_log(lr.prefix_len, lr.commit_length, &lr.suffix).await?;
  476. ack = lr.prefix_len + lr.suffix.len();
  477. } else {
  478. ok = false;
  479. }
  480. if self.id.is_none() {
  481. return Ok(())
  482. }
  483. let response = LogResponse {
  484. node_id: self.id.clone().unwrap(),
  485. current_term: self.current_term,
  486. ack,
  487. ok,
  488. };
  489. let payload = serialize(&response);
  490. self.send(Some(lr.leader_id.clone()), &payload, NetMsgMethod::LogResponse, None).await
  491. }
  492. async fn receive_log_response(&mut self, lr: LogResponse) -> Result<()> {
  493. if lr.current_term == self.current_term && self.role == Role::Leader {
  494. if lr.ok && lr.ack >= self.acked_length.get(&lr.node_id)? {
  495. self.sent_length.insert(&lr.node_id, lr.ack);
  496. self.acked_length.insert(&lr.node_id, lr.ack);
  497. self.commit_log().await?;
  498. } else if self.sent_length.get(&lr.node_id)? > 0 {
  499. self.sent_length.insert(&lr.node_id, self.sent_length.get(&lr.node_id)? - 1);
  500. }
  501. } else if lr.current_term > self.current_term {
  502. self.set_current_term(&lr.current_term)?;
  503. self.role = Role::Follower;
  504. self.set_voted_for(&None)?;
  505. }
  506. Ok(())
  507. }
  508. fn reset_last_term(&mut self) {
  509. self.last_term = 0;
  510. if let Some(log) = self.logs.0.last() {
  511. self.last_term = log.term;
  512. }
  513. }
  514. fn acks(&self, nodes: HashMap<NodeId, SocketAddr>, length: u64) -> HashMap<NodeId, SocketAddr> {
  515. nodes
  516. .into_iter()
  517. .filter(|n| {
  518. let len = self.acked_length.get(&n.0);
  519. len.is_ok() && len.unwrap() >= length
  520. })
  521. .collect()
  522. }
  523. async fn commit_log(&mut self) -> Result<()> {
  524. let nodes_ptr = self.nodes.lock().await;
  525. let min_acks = ((nodes_ptr.len() + 1) / 2) as usize;
  526. let nodes = nodes_ptr.clone();
  527. drop(nodes_ptr);
  528. let mut ready: Vec<u64> = vec![];
  529. for len in 1..(self.logs.len() + 1) {
  530. if self.acks(nodes.clone(), len).len() >= min_acks {
  531. ready.push(len);
  532. }
  533. }
  534. if ready.is_empty() {
  535. return Ok(())
  536. }
  537. let max_ready = *ready.iter().max().unwrap();
  538. if max_ready > self.commit_length && self.logs.get(max_ready - 1)?.term == self.current_term
  539. {
  540. for i in self.commit_length..max_ready {
  541. self.push_commit(&self.logs.get(i)?.msg).await?;
  542. }
  543. self.set_commit_length(&max_ready)?;
  544. }
  545. Ok(())
  546. }
  547. async fn append_log(
  548. &mut self,
  549. prefix_len: u64,
  550. leader_commit: u64,
  551. suffix: &Logs,
  552. ) -> Result<()> {
  553. if !suffix.is_empty() && self.logs.len() > prefix_len {
  554. let index = min(self.logs.len(), prefix_len + suffix.len()) - 1;
  555. if self.logs.get(index)?.term != suffix.get(index - prefix_len)?.term {
  556. self.push_logs(&self.logs.slice_to(prefix_len))?;
  557. }
  558. }
  559. if prefix_len + suffix.len() > self.logs.len() {
  560. for i in (self.logs.len() - prefix_len)..suffix.len() {
  561. self.push_log(&suffix.get(i)?)?;
  562. }
  563. }
  564. if leader_commit > self.commit_length {
  565. for i in self.commit_length..leader_commit {
  566. self.push_commit(&self.logs.get(i)?.msg).await?;
  567. }
  568. self.set_commit_length(&leader_commit)?;
  569. }
  570. Ok(())
  571. }
  572. fn set_commit_length(&mut self, i: &u64) -> Result<()> {
  573. self.commit_length = *i;
  574. self.datastore.commits_length.insert(i)
  575. }
  576. fn set_current_term(&mut self, i: &u64) -> Result<()> {
  577. self.current_term = *i;
  578. self.datastore.current_term.insert(i)
  579. }
  580. fn set_voted_for(&mut self, i: &Option<NodeId>) -> Result<()> {
  581. self.voted_for = i.clone();
  582. self.datastore.voted_for.insert(i)
  583. }
  584. async fn push_commit(&mut self, commit: &[u8]) -> Result<()> {
  585. let commit: T = deserialize(commit)?;
  586. self.broadcast_commits.0.send(commit.clone()).await?;
  587. self.datastore.commits.insert(&commit)
  588. }
  589. fn push_log(&mut self, i: &Log) -> Result<()> {
  590. self.logs.push(i);
  591. self.datastore.logs.insert(i)
  592. }
  593. fn push_logs(&mut self, i: &Logs) -> Result<()> {
  594. self.logs = i.clone();
  595. self.datastore.logs.wipe_insert_all(&i.to_vec())
  596. }
  597. }