agreement_tests.rs 8.7 KB

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  1. #[macro_use]
  2. extern crate anyhow;
  3. extern crate bytes;
  4. extern crate labrpc;
  5. extern crate ruaft;
  6. use rand::{thread_rng, Rng};
  7. mod config;
  8. #[test]
  9. fn basic_agreement() -> config::Result<()> {
  10. const SERVERS: usize = 5;
  11. let cfg = config::make_config(SERVERS, false);
  12. let _guard = cfg.deferred_cleanup();
  13. cfg.begin("Test (2B): basic agreement");
  14. for index in 1..4 {
  15. let committed = cfg.committed_count(index)?;
  16. assert_eq!(0, committed.0, "some have committed before start()");
  17. let commit_index = cfg.one(index as i32 * 100, SERVERS, false)?;
  18. assert_eq!(
  19. index, commit_index,
  20. "got index {} but expected {}",
  21. commit_index, index
  22. );
  23. }
  24. drop(_guard);
  25. Ok(())
  26. }
  27. #[test]
  28. fn fail_agree() -> config::Result<()> {
  29. const SERVERS: usize = 3;
  30. let cfg = config::make_config(SERVERS, false);
  31. let _guard = cfg.deferred_cleanup();
  32. cfg.begin("Test (2B): agreement despite follower disconnection");
  33. cfg.one(101, SERVERS, false)?;
  34. // follower network disconnection
  35. let leader = cfg.check_one_leader()?;
  36. cfg.disconnect((leader + 1) % SERVERS);
  37. // agree despite one disconnected server?
  38. cfg.one(102, SERVERS - 1, false)?;
  39. cfg.one(103, SERVERS - 1, false)?;
  40. config::sleep_election_timeouts(1);
  41. cfg.one(104, SERVERS - 1, false)?;
  42. cfg.one(105, SERVERS - 1, false)?;
  43. // re-connect
  44. cfg.connect((leader + 1) % SERVERS);
  45. // agree with full set of servers?
  46. cfg.one(106, SERVERS, true)?;
  47. config::sleep_election_timeouts(1);
  48. cfg.one(107, SERVERS, true)?;
  49. cfg.end();
  50. drop(_guard);
  51. Ok(())
  52. }
  53. #[test]
  54. fn fail_no_agree() -> config::Result<()> {
  55. const SERVERS: usize = 5;
  56. let cfg = config::make_config(SERVERS, false);
  57. let _guard = cfg.deferred_cleanup();
  58. cfg.begin("Test (2B): no agreement if too many followers disconnect");
  59. cfg.one(10, SERVERS, false)?;
  60. // 3 of 5 followers disconnect
  61. let leader = cfg.check_one_leader()?;
  62. cfg.disconnect((leader + 1) % SERVERS);
  63. cfg.disconnect((leader + 2) % SERVERS);
  64. cfg.disconnect((leader + 3) % SERVERS);
  65. let result = cfg.leader_start(leader, 20);
  66. assert!(result.is_some(), "leader rejected start()");
  67. let index = result.unwrap().1;
  68. assert_eq!(2, index, "expected index 2, got {}", index);
  69. config::sleep_election_timeouts(2);
  70. let (commit_count, _) = cfg.committed_count(index)?;
  71. assert_eq!(
  72. 0, commit_count,
  73. "{} committed but no majority",
  74. commit_count
  75. );
  76. // repair
  77. cfg.connect((leader + 1) % SERVERS);
  78. cfg.connect((leader + 2) % SERVERS);
  79. cfg.connect((leader + 3) % SERVERS);
  80. // the disconnected majority may have chosen a leader from
  81. // among their own ranks, forgetting index 2.
  82. let leader2 = cfg.check_one_leader()?;
  83. let result = cfg.leader_start(leader2, 30);
  84. assert!(result.is_some(), "leader2 rejected start()");
  85. let index = result.unwrap().1;
  86. assert!(index == 2 || index == 3, "unexpected index {}", index);
  87. cfg.one(1000, SERVERS, true)?;
  88. cfg.end();
  89. drop(_guard);
  90. Ok(())
  91. }
  92. #[test]
  93. fn rejoin() -> config::Result<()> {
  94. const SERVERS: usize = 3;
  95. let cfg = config::make_config(SERVERS, false);
  96. let _guard = cfg.deferred_cleanup();
  97. cfg.begin("Test (2B): rejoin of partitioned leader");
  98. cfg.one(101, SERVERS, true)?;
  99. // leader network failure
  100. let leader1 = cfg.check_one_leader()?;
  101. cfg.disconnect(leader1);
  102. // make old leader try to agree on some entries
  103. cfg.leader_start(leader1, 102);
  104. cfg.leader_start(leader1, 103);
  105. cfg.leader_start(leader1, 104);
  106. // new leader commits, also for index=2
  107. cfg.one(103, 2, true)?;
  108. // new leader network failure
  109. let leader2 = cfg.check_one_leader()?;
  110. cfg.disconnect(leader2);
  111. // old leader connected again
  112. cfg.connect(leader1);
  113. cfg.one(104, 2, true)?;
  114. // all together now
  115. cfg.connect(leader2);
  116. cfg.one(105, SERVERS, true)?;
  117. cfg.end();
  118. drop(_guard);
  119. Ok(())
  120. }
  121. #[test]
  122. fn backup() -> config::Result<()> {
  123. const SERVERS: usize = 5;
  124. let cfg = config::make_config(SERVERS, false);
  125. let _guard = cfg.deferred_cleanup();
  126. cfg.begin(
  127. "Test (2B): leader backs up quickly over incorrect follower logs",
  128. );
  129. cfg.one(thread_rng().gen(), SERVERS, true)?;
  130. // put leader and one follower in a partition
  131. let leader1 = cfg.check_one_leader()?;
  132. cfg.disconnect((leader1 + 2) % SERVERS);
  133. cfg.disconnect((leader1 + 3) % SERVERS);
  134. cfg.disconnect((leader1 + 4) % SERVERS);
  135. // submit lots of commands that won't commit
  136. for _ in 0..SERVERS {
  137. cfg.leader_start(leader1, thread_rng().gen());
  138. }
  139. config::sleep_election_timeouts(2);
  140. cfg.disconnect((leader1 + 0) % SERVERS);
  141. cfg.disconnect((leader1 + 1) % SERVERS);
  142. // allow other partition to recover
  143. cfg.connect((leader1 + 2) % SERVERS);
  144. cfg.connect((leader1 + 3) % SERVERS);
  145. cfg.connect((leader1 + 4) % SERVERS);
  146. // lots of successful commands to new group.
  147. for _ in 0..50 {
  148. cfg.one(thread_rng().gen(), 3, true)?;
  149. }
  150. // now another partitioned leader and one follower
  151. let leader2 = cfg.check_one_leader()?;
  152. let mut other = (leader1 + 2) % SERVERS;
  153. if leader2 == other {
  154. other = (leader2 + 1) % SERVERS;
  155. }
  156. cfg.disconnect(other);
  157. // lots more commands that won't commit
  158. for _ in 0..50 {
  159. cfg.leader_start(leader2, thread_rng().gen());
  160. }
  161. config::sleep_election_timeouts(2);
  162. // bring original leader back to life,
  163. for i in 0..SERVERS {
  164. cfg.disconnect(i);
  165. }
  166. cfg.connect((leader1 + 0) % SERVERS);
  167. cfg.connect((leader1 + 1) % SERVERS);
  168. cfg.connect(other);
  169. // lots of successful commands to new group.
  170. for _ in 0..50 {
  171. cfg.one(thread_rng().gen(), 3, true)?;
  172. }
  173. // now everyone
  174. for i in 0..SERVERS {
  175. cfg.connect(i);
  176. }
  177. cfg.one(thread_rng().gen(), SERVERS, true)?;
  178. cfg.end();
  179. drop(_guard);
  180. Ok(())
  181. }
  182. #[test]
  183. fn count() -> config::Result<()> {
  184. const SERVERS: usize = 3;
  185. let cfg = config::make_config(SERVERS, false);
  186. let _guard = cfg.deferred_cleanup();
  187. cfg.begin("Test (2B): RPC counts aren't too high");
  188. cfg.check_one_leader()?;
  189. let total = cfg.total_rpcs();
  190. assert!(
  191. total >= 1 && total <= 30,
  192. "too many or few RPCs ({}) to elect initial leader",
  193. total
  194. );
  195. let mut retries = 0;
  196. let (success, total) = loop {
  197. if retries == 5 {
  198. break (false, 0);
  199. }
  200. if retries != 0 {
  201. config::sleep_millis(3000);
  202. }
  203. retries += 1;
  204. let leader = cfg.check_one_leader()?;
  205. let start_total = cfg.total_rpcs();
  206. const ITERS: usize = 10;
  207. let (term, start_index) = match cfg.leader_start(leader, 1) {
  208. Some(pair) => pair,
  209. None => continue,
  210. };
  211. let mut cmds = vec![];
  212. for i in 1..(ITERS + 2) {
  213. let cmd: i32 = thread_rng().gen();
  214. cmds.push(cmd);
  215. let index = match cfg.leader_start(leader, cmd) {
  216. Some((new_term, index)) => {
  217. if new_term == term {
  218. Some(index)
  219. } else {
  220. None
  221. }
  222. }
  223. None => None,
  224. };
  225. if let Some(index) = index {
  226. assert_eq!(start_index + i, index, "start() failed");
  227. } else {
  228. retries = 0;
  229. break;
  230. }
  231. }
  232. if retries == 0 {
  233. continue;
  234. }
  235. for i in 1..(ITERS + 1) {
  236. let cmd = cfg.wait(start_index + i, SERVERS, Some(term))?;
  237. if let Some(cmd) = cmd {
  238. assert_eq!(
  239. cmd,
  240. cmds[i - 1],
  241. "wrong value {} committed for index {}; expected {:?}",
  242. cmd,
  243. start_index + i,
  244. cmds
  245. )
  246. } else {
  247. retries = 0;
  248. break;
  249. }
  250. }
  251. if term != cfg.check_terms()?.expect("terms should be agreed on") {
  252. retries = 0;
  253. }
  254. if retries == 0 {
  255. continue;
  256. }
  257. let diff = cfg.total_rpcs() - start_total;
  258. if diff > (ITERS + 1 + 3) * 3 {
  259. panic!("too many RPCs ({}) for {} entries", diff, ITERS);
  260. }
  261. break (true, cfg.total_rpcs());
  262. };
  263. assert!(success, "term change too often");
  264. config::sleep_election_timeouts(1);
  265. let diff = cfg.total_rpcs() - total;
  266. assert!(diff < 3 * 20, "too many RPCs ({}) for 1 second of idleness");
  267. cfg.end();
  268. drop(_guard);
  269. Ok(())
  270. }