tests.rs 63 KB

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  1. /*! Unit tests that require access to the testing-only function
  2. BridgeLine::random() or private fields */
  3. use super::bridge_table::BridgeLine;
  4. use super::proto::*;
  5. use super::*;
  6. use chrono::{Utc, DateTime, NaiveTime, Timelike};
  7. use rand::Rng;
  8. use statistical::{mean, standard_deviation};
  9. use std::collections::HashSet;
  10. use std::thread;
  11. use std::time::{Duration, Instant};
  12. #[cfg(feature = "fast")]
  13. const USERS: usize = 100;
  14. #[cfg(not(feature = "fast"))]
  15. const USERS: usize = 10000;
  16. /*cfg_if::cfg_if! {
  17. if #[cfg(feature = "fast")]{
  18. const USERS: usize = 10;
  19. } else {
  20. const USERS: usize = 10000;
  21. }
  22. }
  23. */
  24. struct PerfStat {
  25. // Report performance metrics for each test
  26. req_len: usize,
  27. resp_len: usize,
  28. req_t: Duration,
  29. resp_t: Duration,
  30. resp_handle_t: Duration,
  31. }
  32. struct TestHarness {
  33. bdb: BridgeDb,
  34. pub ba: BridgeAuth,
  35. }
  36. impl TestHarness {
  37. fn new() -> Self {
  38. TestHarness::new_buckets(5, 5)
  39. }
  40. fn new_buckets(num_buckets: u16, hot_spare: u16) -> Self {
  41. // Create a BridegDb
  42. let mut bdb = BridgeDb::new();
  43. // Create a BridgeAuth
  44. let mut ba = BridgeAuth::new(bdb.pubkey);
  45. // Make 3 x num_buckets open invitation bridges, in sets of 3
  46. for _ in 0..num_buckets {
  47. let bucket = [
  48. BridgeLine::random(),
  49. BridgeLine::random(),
  50. BridgeLine::random(),
  51. ];
  52. ba.add_openinv_bridges(bucket, &mut bdb);
  53. }
  54. // Add hot_spare more hot spare buckets
  55. for _ in 0..hot_spare {
  56. let bucket = [
  57. BridgeLine::random(),
  58. BridgeLine::random(),
  59. BridgeLine::random(),
  60. ];
  61. ba.add_spare_bucket(bucket);
  62. }
  63. // Create the encrypted bridge table
  64. ba.enc_bridge_table();
  65. Self { bdb, ba }
  66. }
  67. fn advance_days(&mut self, days: u16) {
  68. self.ba.advance_days(days);
  69. }
  70. fn open_invite(&mut self) -> (PerfStat, (cred::Lox, bridge_table::BridgeLine)) {
  71. // Issue an open invitation
  72. let inv = self.bdb.invite();
  73. let req_start = Instant::now();
  74. // Use it to get a Lox credential
  75. let (req, state) = open_invite::request(&inv);
  76. let encoded: Vec<u8> = bincode::serialize(&req).unwrap();
  77. let req_t = req_start.elapsed();
  78. let req_len = encoded.len();
  79. let resp_start = Instant::now();
  80. let decoded = bincode::deserialize(&encoded[..]).unwrap();
  81. let resp = self.ba.handle_open_invite(decoded).unwrap();
  82. let encoded_resp: Vec<u8> = bincode::serialize(&resp).unwrap();
  83. let resp_t = resp_start.elapsed();
  84. let resp_len = encoded_resp.len();
  85. let resp_handle_start = Instant::now();
  86. let decode_resp = bincode::deserialize(&encoded_resp[..]).unwrap();
  87. let (cred, bridgeline) =
  88. open_invite::handle_response(state, decode_resp, &self.ba.lox_pub).unwrap();
  89. let resp_handle_t = resp_handle_start.elapsed();
  90. (
  91. PerfStat {
  92. req_len,
  93. resp_len,
  94. req_t,
  95. resp_t,
  96. resp_handle_t,
  97. },
  98. (cred, bridgeline),
  99. )
  100. }
  101. fn trust_promotion(&mut self, cred: &cred::Lox) -> (PerfStat, cred::Migration) {
  102. let req_start = Instant::now();
  103. let (promreq, promstate) =
  104. trust_promotion::request(&cred, &self.ba.lox_pub, self.ba.today()).unwrap();
  105. let encoded: Vec<u8> = bincode::serialize(&promreq).unwrap();
  106. let req_t = req_start.elapsed();
  107. let req_len = encoded.len();
  108. let resp_start = Instant::now();
  109. let decoded = bincode::deserialize(&encoded[..]).unwrap();
  110. let promresp = self.ba.handle_trust_promotion(decoded).unwrap();
  111. let encoded_resp: Vec<u8> = bincode::serialize(&promresp).unwrap();
  112. let resp_t = resp_start.elapsed();
  113. let resp_len = encoded_resp.len();
  114. let resp_handle_start = Instant::now();
  115. let decode_resp = bincode::deserialize(&encoded_resp[..]).unwrap();
  116. let migcred = trust_promotion::handle_response(promstate, decode_resp).unwrap();
  117. let resp_handle_t = resp_handle_start.elapsed();
  118. (
  119. PerfStat {
  120. req_len,
  121. resp_len,
  122. req_t,
  123. resp_t,
  124. resp_handle_t,
  125. },
  126. migcred,
  127. )
  128. }
  129. fn level0_migration(
  130. &mut self,
  131. loxcred: &cred::Lox,
  132. migcred: &cred::Migration,
  133. ) -> (PerfStat, cred::Lox) {
  134. let req_start = Instant::now();
  135. let (migreq, migstate) =
  136. migration::request(loxcred, migcred, &self.ba.lox_pub, &self.ba.migration_pub).unwrap();
  137. let encoded: Vec<u8> = bincode::serialize(&migreq).unwrap();
  138. let req_t = req_start.elapsed();
  139. let req_len = encoded.len();
  140. let resp_start = Instant::now();
  141. let decoded = bincode::deserialize(&encoded[..]).unwrap();
  142. let migresp = self.ba.handle_migration(decoded).unwrap();
  143. let encoded_resp: Vec<u8> = bincode::serialize(&migresp).unwrap();
  144. let resp_t = resp_start.elapsed();
  145. let resp_len = encoded_resp.len();
  146. let resp_handle_start = Instant::now();
  147. let decode_resp: migration::Response = bincode::deserialize(&encoded_resp[..]).unwrap();
  148. let cred = migration::handle_response(migstate, decode_resp, &self.ba.lox_pub).unwrap();
  149. let resp_handle_t = resp_handle_start.elapsed();
  150. (
  151. PerfStat {
  152. req_len,
  153. resp_len,
  154. req_t,
  155. resp_t,
  156. resp_handle_t,
  157. },
  158. cred,
  159. )
  160. }
  161. fn level_up(&mut self, cred: &cred::Lox) -> (PerfStat, cred::Lox) {
  162. // Read the bucket in the credential to get today's Bucket
  163. // Reachability credential
  164. let (id, key) = bridge_table::from_scalar(cred.bucket).unwrap();
  165. let encbuckets = self.ba.enc_bridge_table();
  166. let bucket =
  167. bridge_table::BridgeTable::decrypt_bucket(id, &key, &encbuckets[id as usize]).unwrap();
  168. let reachcred = bucket.1.unwrap();
  169. // Use the Bucket Reachability credential to advance to the next
  170. // level
  171. let req_start = Instant::now();
  172. let (req, state) = level_up::request(
  173. &cred,
  174. &reachcred,
  175. &self.ba.lox_pub,
  176. &self.ba.reachability_pub,
  177. self.ba.today(),
  178. )
  179. .unwrap();
  180. let encoded: Vec<u8> = bincode::serialize(&req).unwrap();
  181. let req_t = req_start.elapsed();
  182. let req_len = encoded.len();
  183. let resp_start = Instant::now();
  184. let decoded = bincode::deserialize(&encoded[..]).unwrap();
  185. let resp = self.ba.handle_level_up(decoded).unwrap();
  186. let encoded_resp: Vec<u8> = bincode::serialize(&resp).unwrap();
  187. let resp_t = resp_start.elapsed();
  188. let resp_len = encoded_resp.len();
  189. let resp_handle_start = Instant::now();
  190. let decode_resp = bincode::deserialize(&encoded_resp[..]).unwrap();
  191. let cred = level_up::handle_response(state, decode_resp, &self.ba.lox_pub).unwrap();
  192. let resp_handle_t = resp_handle_start.elapsed();
  193. (
  194. PerfStat {
  195. req_len,
  196. resp_len,
  197. req_t,
  198. resp_t,
  199. resp_handle_t,
  200. },
  201. cred,
  202. )
  203. }
  204. fn issue_invite(&mut self, cred: &cred::Lox) -> (PerfStat, (cred::Lox, cred::Invitation)) {
  205. // Read the bucket in the credential to get today's Bucket
  206. // Reachability credential
  207. let (id, key) = bridge_table::from_scalar(cred.bucket).unwrap();
  208. let encbuckets = self.ba.enc_bridge_table();
  209. let bucket =
  210. bridge_table::BridgeTable::decrypt_bucket(id, &key, &encbuckets[id as usize]).unwrap();
  211. let reachcred = bucket.1.unwrap();
  212. let req_start = Instant::now();
  213. let (req, state) = issue_invite::request(
  214. &cred,
  215. &reachcred,
  216. &self.ba.lox_pub,
  217. &self.ba.reachability_pub,
  218. self.ba.today(),
  219. )
  220. .unwrap();
  221. let encoded: Vec<u8> = bincode::serialize(&req).unwrap();
  222. let req_t = req_start.elapsed();
  223. let req_len = encoded.len();
  224. let resp_start = Instant::now();
  225. let decoded = bincode::deserialize(&encoded[..]).unwrap();
  226. let resp = self.ba.handle_issue_invite(decoded).unwrap();
  227. let encoded_resp: Vec<u8> = bincode::serialize(&resp).unwrap();
  228. let resp_t = resp_start.elapsed();
  229. let resp_len = encoded_resp.len();
  230. let resp_handle_start = Instant::now();
  231. let decode_resp = bincode::deserialize(&encoded_resp[..]).unwrap();
  232. let (cred, invite) = issue_invite::handle_response(
  233. state,
  234. decode_resp,
  235. &self.ba.lox_pub,
  236. &self.ba.invitation_pub,
  237. )
  238. .unwrap();
  239. let resp_handle_t = resp_handle_start.elapsed();
  240. (
  241. PerfStat {
  242. req_len,
  243. resp_len,
  244. req_t,
  245. resp_t,
  246. resp_handle_t,
  247. },
  248. (cred, invite),
  249. )
  250. }
  251. fn redeem_invite(&mut self, inv: &cred::Invitation) -> (PerfStat, cred::Lox) {
  252. let req_start = Instant::now();
  253. let (req, state) =
  254. redeem_invite::request(&inv, &self.ba.invitation_pub, self.ba.today()).unwrap();
  255. let encoded: Vec<u8> = bincode::serialize(&req).unwrap();
  256. let req_t = req_start.elapsed();
  257. let req_len = encoded.len();
  258. let resp_start = Instant::now();
  259. let decoded = bincode::deserialize(&encoded[..]).unwrap();
  260. let resp = self.ba.handle_redeem_invite(decoded).unwrap();
  261. let encoded_resp: Vec<u8> = bincode::serialize(&resp).unwrap();
  262. let resp_t = resp_start.elapsed();
  263. let resp_len = encoded_resp.len();
  264. let resp_handle_start = Instant::now();
  265. let decode_resp = bincode::deserialize(&encoded_resp[..]).unwrap();
  266. let cred = redeem_invite::handle_response(state, decode_resp, &self.ba.lox_pub).unwrap();
  267. let resp_handle_t = resp_handle_start.elapsed();
  268. (
  269. PerfStat {
  270. req_len,
  271. resp_len,
  272. req_t,
  273. resp_t,
  274. resp_handle_t,
  275. },
  276. cred,
  277. )
  278. }
  279. fn check_blockage(&mut self, cred: &cred::Lox) -> (PerfStat, cred::Migration) {
  280. let req_start = Instant::now();
  281. let (req, state) = check_blockage::request(&cred, &self.ba.lox_pub).unwrap();
  282. let encoded: Vec<u8> = bincode::serialize(&req).unwrap();
  283. let req_t = req_start.elapsed();
  284. let req_len = encoded.len();
  285. let resp_start = Instant::now();
  286. let decoded = bincode::deserialize(&encoded[..]).unwrap();
  287. let resp = self.ba.handle_check_blockage(decoded).unwrap();
  288. let encoded_resp: Vec<u8> = bincode::serialize(&resp).unwrap();
  289. let resp_t = resp_start.elapsed();
  290. let resp_len = encoded_resp.len();
  291. let resp_handle_start = Instant::now();
  292. let decode_resp = bincode::deserialize(&encoded_resp[..]).unwrap();
  293. let migcred = check_blockage::handle_response(state, decode_resp).unwrap();
  294. let resp_handle_t = resp_handle_start.elapsed();
  295. (
  296. PerfStat {
  297. req_len,
  298. resp_len,
  299. req_t,
  300. resp_t,
  301. resp_handle_t,
  302. },
  303. migcred,
  304. )
  305. }
  306. fn blockage_migration(
  307. &mut self,
  308. cred: &cred::Lox,
  309. mig: &cred::Migration,
  310. ) -> (PerfStat, cred::Lox) {
  311. let req_start = Instant::now();
  312. let (req, state) =
  313. blockage_migration::request(&cred, &mig, &self.ba.lox_pub, &self.ba.migration_pub)
  314. .unwrap();
  315. let encoded: Vec<u8> = bincode::serialize(&req).unwrap();
  316. let req_t = req_start.elapsed();
  317. let req_len = encoded.len();
  318. let resp_start = Instant::now();
  319. let decoded = bincode::deserialize(&encoded[..]).unwrap();
  320. let resp = self.ba.handle_blockage_migration(decoded).unwrap();
  321. let encoded_resp: Vec<u8> = bincode::serialize(&resp).unwrap();
  322. let resp_t = resp_start.elapsed();
  323. let resp_len = encoded_resp.len();
  324. let resp_handle_start = Instant::now();
  325. let decode_resp: blockage_migration::Response =
  326. bincode::deserialize(&encoded_resp[..]).unwrap();
  327. let cred =
  328. blockage_migration::handle_response(state, decode_resp, &self.ba.lox_pub).unwrap();
  329. let resp_handle_t = resp_handle_start.elapsed();
  330. (
  331. PerfStat {
  332. req_len,
  333. resp_len,
  334. req_t,
  335. resp_t,
  336. resp_handle_t,
  337. },
  338. cred,
  339. )
  340. }
  341. }
  342. #[test]
  343. fn test_open_invite() {
  344. let mut th = TestHarness::new();
  345. // Join an untrusted user
  346. let (perf_stat, (cred, bridgeline)) = th.open_invite();
  347. // Check that we can use the credential to read a bucket
  348. let (id, key) = bridge_table::from_scalar(cred.bucket).unwrap();
  349. let encbuckets = th.ba.enc_bridge_table();
  350. let bucket =
  351. bridge_table::BridgeTable::decrypt_bucket(id, &key, &encbuckets[id as usize]).unwrap();
  352. print_test_results(perf_stat);
  353. println!("cred = {:?}", cred);
  354. println!("bucket = {:?}", bucket);
  355. println!("bridgeline = {:?}", bridgeline);
  356. assert!(bucket.1.is_none());
  357. assert!(th.ba.verify_lox(&cred));
  358. assert!(bridgeline == bucket.0[0]);
  359. }
  360. #[test]
  361. fn test_trust_promotion() {
  362. let mut th = TestHarness::new();
  363. let cred = th.open_invite().1 .0;
  364. assert!(th.ba.verify_lox(&cred));
  365. // Time passes
  366. th.advance_days(47);
  367. let (perf_stat, migcred) = th.trust_promotion(&cred);
  368. assert!(th.ba.verify_migration(&migcred));
  369. // Check that we can use the to_bucket in the Migration credenital
  370. // to read a bucket
  371. let (id, key) = bridge_table::from_scalar(migcred.to_bucket).unwrap();
  372. let encbuckets = th.ba.enc_bridge_table();
  373. let bucket =
  374. bridge_table::BridgeTable::decrypt_bucket(id, &key, &encbuckets[id as usize]).unwrap();
  375. print_test_results(perf_stat);
  376. println!("bucket = {:?}", bucket);
  377. assert!(th.ba.verify_reachability(&bucket.1.unwrap()));
  378. }
  379. #[test]
  380. fn test_level0_migration() {
  381. let mut th = TestHarness::new();
  382. let cred = th.open_invite().1 .0;
  383. assert!(th.ba.verify_lox(&cred));
  384. // Time passes
  385. th.advance_days(47);
  386. let (perf_stat, migcred) = th.trust_promotion(&cred);
  387. assert!(th.ba.verify_migration(&migcred));
  388. println!("--Trust Promotion to 1--\n");
  389. print_test_results(perf_stat);
  390. let (mperf_stat, newloxcred) = th.level0_migration(&cred, &migcred);
  391. println!("--Level 0 migration--\n");
  392. print_test_results(mperf_stat);
  393. assert!(th.ba.verify_lox(&newloxcred));
  394. println!("newloxcred = {:?}", newloxcred);
  395. // Check that we can use the credenital to read a bucket
  396. let (id, key) = bridge_table::from_scalar(newloxcred.bucket).unwrap();
  397. let encbuckets = th.ba.enc_bridge_table();
  398. let bucket =
  399. bridge_table::BridgeTable::decrypt_bucket(id, &key, &encbuckets[id as usize]).unwrap();
  400. println!("bucket = {:?}", bucket);
  401. assert!(th.ba.verify_reachability(&bucket.1.unwrap()));
  402. }
  403. #[test]
  404. fn test_level_up() {
  405. let mut th = TestHarness::new();
  406. // Join an untrusted user
  407. let cred = th.open_invite().1 .0;
  408. // Time passes
  409. th.advance_days(47);
  410. // Go up to level 1
  411. let (perf_stat, migcred) = th.trust_promotion(&cred);
  412. println!("--Trust Promotion to 1--\n");
  413. print_test_results(perf_stat);
  414. let (mperf_stat, cred1) = th.level0_migration(&cred, &migcred);
  415. println!("--New Level 1 Credential--\n");
  416. print_test_results(mperf_stat);
  417. assert!(scalar_u32(&cred1.trust_level).unwrap() == 1);
  418. // Time passes
  419. th.advance_days(20);
  420. let (two_perf_stat, cred2) = th.level_up(&cred1);
  421. assert!(scalar_u32(&cred2.trust_level).unwrap() == 2);
  422. println!("--Upgrade to Level 2--\n");
  423. print_test_results(two_perf_stat);
  424. println!("cred2 = {:?}", cred2);
  425. assert!(th.ba.verify_lox(&cred2));
  426. // Time passes
  427. th.advance_days(30);
  428. let (three_perf_stat, cred3) = th.level_up(&cred2);
  429. assert!(scalar_u32(&cred3.trust_level).unwrap() == 3);
  430. println!("--Upgrade to Level 3--\n");
  431. print_test_results(three_perf_stat);
  432. println!("cred3 = {:?}", cred3);
  433. assert!(th.ba.verify_lox(&cred3));
  434. // Time passes
  435. th.advance_days(60);
  436. let (four_perf_stat, cred4) = th.level_up(&cred3);
  437. assert!(scalar_u32(&cred3.trust_level).unwrap() == 3);
  438. println!("--Upgrade to Level 4--\n");
  439. print_test_results(four_perf_stat);
  440. println!("cred4 = {:?}", cred4);
  441. assert!(th.ba.verify_lox(&cred4));
  442. }
  443. #[test]
  444. fn test_issue_invite() {
  445. let mut th = TestHarness::new();
  446. // Join an untrusted user
  447. let cred = th.open_invite().1 .0;
  448. // Time passes
  449. th.advance_days(47);
  450. // Go up to level 1
  451. let (perf_stat, migcred) = th.trust_promotion(&cred);
  452. println!("--Trust Promotion to 1--\n");
  453. print_test_results(perf_stat);
  454. let (mperf_stat, cred1) = th.level0_migration(&cred, &migcred);
  455. println!("--New Level 1 Credential--\n");
  456. print_test_results(mperf_stat);
  457. assert!(scalar_u32(&cred1.trust_level).unwrap() == 1);
  458. // Time passes
  459. th.advance_days(20);
  460. // Go up to level 2
  461. let (two_perf_stat, cred2) = th.level_up(&cred1);
  462. println!("--Upgrade to Level 2--\n");
  463. print_test_results(two_perf_stat);
  464. assert!(scalar_u32(&cred2.trust_level).unwrap() == 2);
  465. println!("cred2 = {:?}", cred2);
  466. assert!(th.ba.verify_lox(&cred2));
  467. // Issue an invitation
  468. let (invite_perf_stat, (cred2a, invite)) = th.issue_invite(&cred2);
  469. println!("--Issue Invitation--\n");
  470. print_test_results(invite_perf_stat);
  471. assert!(th.ba.verify_lox(&cred2a));
  472. assert!(th.ba.verify_invitation(&invite));
  473. println!("cred2a = {:?}", cred2a);
  474. println!("invite = {:?}", invite);
  475. }
  476. #[test]
  477. fn test_redeem_invite() {
  478. let mut th = TestHarness::new();
  479. // Join an untrusted user
  480. let cred = th.open_invite().1 .0;
  481. // Time passes
  482. th.advance_days(47);
  483. // Go up to level 1
  484. let (perf_stat, migcred) = th.trust_promotion(&cred);
  485. println!("--Trust Promotion to 1--\n");
  486. print_test_results(perf_stat);
  487. let (mperf_stat, cred1) = th.level0_migration(&cred, &migcred);
  488. println!("--New Level 1 Credential--\n");
  489. print_test_results(mperf_stat);
  490. assert!(scalar_u32(&cred1.trust_level).unwrap() == 1);
  491. // Time passes
  492. th.advance_days(20);
  493. // Go up to level 2
  494. let (two_perf_stat, cred2) = th.level_up(&cred1);
  495. println!("--Upgrade to Level 2--\n");
  496. print_test_results(two_perf_stat);
  497. assert!(scalar_u32(&cred2.trust_level).unwrap() == 2);
  498. println!("cred2 = {:?}", cred2);
  499. assert!(th.ba.verify_lox(&cred2));
  500. // Issue an invitation to Bob
  501. let (invite_perf_stat, (cred2a, bob_invite)) = th.issue_invite(&cred2);
  502. println!("--Issue Invitation--\n");
  503. print_test_results(invite_perf_stat);
  504. assert!(th.ba.verify_lox(&cred2a));
  505. assert!(th.ba.verify_invitation(&bob_invite));
  506. println!("cred2a = {:?}", cred2a);
  507. println!("bob_invite = {:?}", bob_invite);
  508. // Time passes
  509. th.advance_days(12);
  510. // Bob joins the system
  511. let (bob_perf_stat, bob_cred) = th.redeem_invite(&bob_invite);
  512. println!("--Bob joins the system--\n");
  513. print_test_results(bob_perf_stat);
  514. assert!(th.ba.verify_lox(&bob_cred));
  515. println!("bob_cred = {:?}", bob_cred);
  516. }
  517. #[test]
  518. fn test_mark_unreachable() {
  519. let mut th = TestHarness::new();
  520. println!("spares = {:?}", th.ba.bridge_table.spares);
  521. println!("tmig = {:?}", th.ba.trustup_migration_table.table);
  522. println!("bmig = {:?}", th.ba.blockage_migration_table.table);
  523. println!("openinv = {:?}\n", th.bdb.openinv_buckets);
  524. // Mark a bridge in an untrusted bucket as unreachable
  525. let b6 = th.ba.bridge_table.buckets[6][0];
  526. th.ba.bridge_unreachable(&b6, &mut th.bdb);
  527. println!("spares = {:?}", th.ba.bridge_table.spares);
  528. println!("tmig = {:?}", th.ba.trustup_migration_table.table);
  529. println!("bmig = {:?}", th.ba.blockage_migration_table.table);
  530. println!("openinv = {:?}\n", th.bdb.openinv_buckets);
  531. // Mark another bridge grouped to the same trusted bucket as
  532. // unreachable
  533. let b7 = th.ba.bridge_table.buckets[7][0];
  534. th.ba.bridge_unreachable(&b7, &mut th.bdb);
  535. println!("spares = {:?}", th.ba.bridge_table.spares);
  536. println!("tmig = {:?}", th.ba.trustup_migration_table.table);
  537. println!("bmig = {:?}", th.ba.blockage_migration_table.table);
  538. println!("openinv = {:?}\n", th.bdb.openinv_buckets);
  539. // That will have introduced a blockage migration. Get the target
  540. let target: u32 = *th
  541. .ba
  542. .blockage_migration_table
  543. .table
  544. .iter()
  545. .next()
  546. .unwrap()
  547. .1;
  548. // Block two of the bridges in that target bucket
  549. let bt1 = th.ba.bridge_table.buckets[target as usize][1];
  550. let bt2 = th.ba.bridge_table.buckets[target as usize][2];
  551. th.ba.bridge_unreachable(&bt1, &mut th.bdb);
  552. th.ba.bridge_unreachable(&bt2, &mut th.bdb);
  553. println!("spares = {:?}", th.ba.bridge_table.spares);
  554. println!("tmig = {:?}", th.ba.trustup_migration_table.table);
  555. println!("bmig = {:?}", th.ba.blockage_migration_table.table);
  556. println!("openinv = {:?}\n", th.bdb.openinv_buckets);
  557. }
  558. #[test]
  559. fn test_blockage_migration() {
  560. let mut th = TestHarness::new();
  561. // Join an untrusted user
  562. let cred = th.open_invite().1 .0;
  563. // Time passes
  564. th.advance_days(47);
  565. // Go up to level 1
  566. let (_mperf_stat, migcred) = th.trust_promotion(&cred);
  567. let (_perf_stat, cred1) = th.level0_migration(&cred, &migcred);
  568. assert!(scalar_u32(&cred1.trust_level).unwrap() == 1);
  569. // Time passes
  570. th.advance_days(20);
  571. // Go up to level 2
  572. let (_two_perf_stat, cred2) = th.level_up(&cred1);
  573. assert!(scalar_u32(&cred2.trust_level).unwrap() == 2);
  574. println!("cred2 = {:?}", cred2);
  575. assert!(th.ba.verify_lox(&cred2));
  576. // Time passes
  577. th.advance_days(29);
  578. // Go up to level 3
  579. let (_three_perf_stat, cred3) = th.level_up(&cred2);
  580. assert!(scalar_u32(&cred3.trust_level).unwrap() == 3);
  581. println!("cred3 = {:?}", cred3);
  582. assert!(th.ba.verify_lox(&cred3));
  583. // Get our bridges
  584. let (id, key) = bridge_table::from_scalar(cred3.bucket).unwrap();
  585. let encbuckets = th.ba.enc_bridge_table();
  586. let bucket =
  587. bridge_table::BridgeTable::decrypt_bucket(id, &key, &encbuckets[id as usize]).unwrap();
  588. // We should have a Bridge Reachability credential
  589. assert!(bucket.1.is_some());
  590. // Oh, no! Two of our bridges are blocked!
  591. th.ba.bridge_unreachable(&bucket.0[0], &mut th.bdb);
  592. th.ba.bridge_unreachable(&bucket.0[2], &mut th.bdb);
  593. println!("spares = {:?}", th.ba.bridge_table.spares);
  594. println!("tmig = {:?}", th.ba.trustup_migration_table.table);
  595. println!("bmig = {:?}", th.ba.blockage_migration_table.table);
  596. println!("openinv = {:?}\n", th.bdb.openinv_buckets);
  597. // Time passes
  598. th.advance_days(1);
  599. let encbuckets2 = th.ba.enc_bridge_table();
  600. let bucket2 =
  601. bridge_table::BridgeTable::decrypt_bucket(id, &key, &encbuckets2[id as usize]).unwrap();
  602. // We should no longer have a Bridge Reachability credential
  603. assert!(bucket2.1.is_none());
  604. // See about getting a Migration credential for the blockage
  605. let (_block_perf_stat, migration) = th.check_blockage(&cred3);
  606. println!("migration = {:?}", migration);
  607. // Migrate
  608. let (_four_perf_stat, cred4) = th.blockage_migration(&cred3, &migration);
  609. println!("cred4 = {:?}", cred4);
  610. assert!(th.ba.verify_lox(&cred4));
  611. }
  612. #[test]
  613. fn stats_test_trust_levels() {
  614. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  615. for x in buckets {
  616. let mut th = TestHarness::new_buckets(x, x);
  617. let mut promo_req_size: Vec<f64> = Vec::new();
  618. let mut promo_resp_size: Vec<f64> = Vec::new();
  619. let mut promo_req_time: Vec<f64> = Vec::new();
  620. let mut promo_resp_time: Vec<f64> = Vec::new();
  621. let mut promo_resp_handle_time: Vec<f64> = Vec::new();
  622. let mut mig_req_size: Vec<f64> = Vec::new();
  623. let mut mig_resp_size: Vec<f64> = Vec::new();
  624. let mut mig_req_time: Vec<f64> = Vec::new();
  625. let mut mig_resp_time: Vec<f64> = Vec::new();
  626. let mut mig_resp_handle_time: Vec<f64> = Vec::new();
  627. let mut sec_req_size: Vec<f64> = Vec::new();
  628. let mut sec_resp_size: Vec<f64> = Vec::new();
  629. let mut sec_req_time: Vec<f64> = Vec::new();
  630. let mut sec_resp_time: Vec<f64> = Vec::new();
  631. let mut sec_resp_handle_time: Vec<f64> = Vec::new();
  632. let mut three_req_size: Vec<f64> = Vec::new();
  633. let mut three_resp_size: Vec<f64> = Vec::new();
  634. let mut three_req_time: Vec<f64> = Vec::new();
  635. let mut three_resp_time: Vec<f64> = Vec::new();
  636. let mut three_resp_handle_time: Vec<f64> = Vec::new();
  637. let mut four_req_size: Vec<f64> = Vec::new();
  638. let mut four_resp_size: Vec<f64> = Vec::new();
  639. let mut four_req_time: Vec<f64> = Vec::new();
  640. let mut four_resp_time: Vec<f64> = Vec::new();
  641. let mut four_resp_handle_time: Vec<f64> = Vec::new();
  642. let mut open_req_size: Vec<f64> = Vec::new();
  643. let mut open_resp_size: Vec<f64> = Vec::new();
  644. let mut open_req_time: Vec<f64> = Vec::new();
  645. let mut open_resp_time: Vec<f64> = Vec::new();
  646. let mut open_resp_handle_time: Vec<f64> = Vec::new();
  647. for _ in 0..USERS {
  648. let h: NaiveTime = DateTime::time(&Utc::now());
  649. if h.hour() == 23 && h.minute() == 59 {
  650. println!("Wait for UTC 00:00");
  651. thread::sleep(Duration::new(60,0));
  652. println!("Ready to work again");
  653. }
  654. let (open_perf_stat, cred) = th.open_invite();
  655. th.advance_days(30);
  656. let (tp_perf_stat, migcred) = th.trust_promotion(&cred.0);
  657. let (mig_perf_stat, cred1) = th.level0_migration(&cred.0, &migcred);
  658. th.advance_days(14);
  659. let (sec_perf_stat, cred2) = th.level_up(&cred1);
  660. th.advance_days(28);
  661. let (three_perf_stat, cred3) = th.level_up(&cred2);
  662. th.advance_days(56);
  663. let (four_perf_stat, _) = th.level_up(&cred3);
  664. open_req_size.push(open_perf_stat.req_len as f64);
  665. open_req_time.push(open_perf_stat.req_t.as_secs_f64());
  666. open_resp_size.push(open_perf_stat.resp_len as f64);
  667. open_resp_time.push(open_perf_stat.resp_t.as_secs_f64());
  668. open_resp_handle_time.push(open_perf_stat.resp_handle_t.as_secs_f64());
  669. promo_req_size.push(tp_perf_stat.req_len as f64);
  670. promo_req_time.push(tp_perf_stat.req_t.as_secs_f64());
  671. promo_resp_size.push(tp_perf_stat.resp_len as f64);
  672. promo_resp_time.push(tp_perf_stat.resp_t.as_secs_f64());
  673. promo_resp_handle_time.push(tp_perf_stat.resp_handle_t.as_secs_f64());
  674. mig_req_size.push(mig_perf_stat.req_len as f64);
  675. mig_req_time.push(mig_perf_stat.req_t.as_secs_f64());
  676. mig_resp_size.push(mig_perf_stat.resp_len as f64);
  677. mig_resp_time.push(mig_perf_stat.resp_t.as_secs_f64());
  678. mig_resp_handle_time.push(mig_perf_stat.resp_handle_t.as_secs_f64());
  679. sec_req_size.push(sec_perf_stat.req_len as f64);
  680. sec_req_time.push(sec_perf_stat.req_t.as_secs_f64());
  681. sec_resp_size.push(sec_perf_stat.resp_len as f64);
  682. sec_resp_time.push(sec_perf_stat.resp_t.as_secs_f64());
  683. sec_resp_handle_time.push(sec_perf_stat.resp_handle_t.as_secs_f64());
  684. three_req_size.push(three_perf_stat.req_len as f64);
  685. three_req_time.push(three_perf_stat.req_t.as_secs_f64());
  686. three_resp_size.push(three_perf_stat.resp_len as f64);
  687. three_resp_time.push(three_perf_stat.resp_t.as_secs_f64());
  688. three_resp_handle_time.push(three_perf_stat.resp_handle_t.as_secs_f64());
  689. four_req_size.push(four_perf_stat.req_len as f64);
  690. four_req_time.push(four_perf_stat.req_t.as_secs_f64());
  691. four_resp_size.push(four_perf_stat.resp_len as f64);
  692. four_resp_time.push(four_perf_stat.resp_t.as_secs_f64());
  693. four_resp_handle_time.push(four_perf_stat.resp_handle_t.as_secs_f64());
  694. }
  695. println!("\n***START: {}*3*2 BUCKETS LEVELS***\n", x);
  696. println!("\n----OPEN-INVITATION-{}---\n", x);
  697. print_stats_test_results(
  698. open_req_size,
  699. open_req_time,
  700. open_resp_size,
  701. open_resp_time,
  702. open_resp_handle_time,
  703. );
  704. println!("\n----TRUST-PROMOTION-1: 30 days-{}---\n", x);
  705. print_stats_test_results(
  706. promo_req_size,
  707. promo_req_time,
  708. promo_resp_size,
  709. promo_resp_time,
  710. promo_resp_handle_time,
  711. );
  712. println!("\n----TRUST-MIGRATION-0: 30 days-{}---\n", x);
  713. print_stats_test_results(
  714. mig_req_size,
  715. mig_req_time,
  716. mig_resp_size,
  717. mig_resp_time,
  718. mig_resp_handle_time,
  719. );
  720. println!("\n----LEVEL-UP-2: 44 days-{}---\n", x);
  721. print_stats_test_results(
  722. sec_req_size,
  723. sec_req_time,
  724. sec_resp_size,
  725. sec_resp_time,
  726. sec_resp_handle_time,
  727. );
  728. println!("\n----LEVEL-UP-3: 72 days---{}---\n", x);
  729. print_stats_test_results(
  730. three_req_size,
  731. three_req_time,
  732. three_resp_size,
  733. three_resp_time,
  734. three_resp_handle_time,
  735. );
  736. println!("\n----LEVEL-UP-4: 128 days---{}---\n", x);
  737. print_stats_test_results(
  738. four_req_size,
  739. four_req_time,
  740. four_resp_size,
  741. four_resp_time,
  742. four_resp_handle_time,
  743. );
  744. }
  745. }
  746. #[test]
  747. fn stats_test_invitations() {
  748. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  749. for x in buckets {
  750. let mut th = TestHarness::new_buckets(x, x);
  751. let mut req_size: Vec<f64> = Vec::new();
  752. let mut resp_size: Vec<f64> = Vec::new();
  753. let mut req_time: Vec<f64> = Vec::new();
  754. let mut resp_time: Vec<f64> = Vec::new();
  755. let mut resp_handle_time: Vec<f64> = Vec::new();
  756. let mut red_req_size: Vec<f64> = Vec::new();
  757. let mut red_resp_size: Vec<f64> = Vec::new();
  758. let mut red_req_time: Vec<f64> = Vec::new();
  759. let mut red_resp_time: Vec<f64> = Vec::new();
  760. let mut red_resp_handle_time: Vec<f64> = Vec::new();
  761. for _ in 0..USERS {
  762. let h: NaiveTime = DateTime::time(&Utc::now());
  763. if h.hour() == 23 && h.minute() == 59 {
  764. println!("Wait for UTC 00:00");
  765. thread::sleep(Duration::new(60,0));
  766. println!("Ready to work again");
  767. }
  768. let cred = th.open_invite().1 .0;
  769. th.advance_days(30);
  770. let (_, migcred) = th.trust_promotion(&cred);
  771. let (_, cred1) = th.level0_migration(&cred, &migcred);
  772. th.advance_days(14);
  773. let (_, cred2) = th.level_up(&cred1);
  774. th.advance_days(28);
  775. let (perf_stat, (_, invite)) = th.issue_invite(&cred2);
  776. let (bob_perf_stat, _) = th.redeem_invite(&invite);
  777. req_size.push(perf_stat.req_len as f64);
  778. req_time.push(perf_stat.req_t.as_secs_f64());
  779. resp_size.push(perf_stat.resp_len as f64);
  780. resp_time.push(perf_stat.resp_t.as_secs_f64());
  781. resp_handle_time.push(perf_stat.resp_handle_t.as_secs_f64());
  782. red_req_size.push(bob_perf_stat.req_len as f64);
  783. red_req_time.push(bob_perf_stat.req_t.as_secs_f64());
  784. red_resp_size.push(bob_perf_stat.resp_len as f64);
  785. red_resp_time.push(bob_perf_stat.resp_t.as_secs_f64());
  786. red_resp_handle_time.push(bob_perf_stat.resp_handle_t.as_secs_f64());
  787. }
  788. println!("\n***START: {}*3*2 BUCKETS INVITATIONS***\n", x);
  789. println!("\n----ISSUE-INVITATION-{}---\n", x);
  790. print_stats_test_results(req_size, req_time, resp_size, resp_time, resp_handle_time);
  791. println!("\n----REDEEM-INVITATION-{}---\n", x);
  792. print_stats_test_results(
  793. red_req_size,
  794. red_req_time,
  795. red_resp_size,
  796. red_resp_time,
  797. red_resp_handle_time,
  798. );
  799. }
  800. }
  801. #[test]
  802. fn stats_test_percent_blockage_migration_05() {
  803. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  804. println!("USERS:{}",USERS);
  805. for x in buckets {
  806. let mut th = TestHarness::new_buckets(x, x);
  807. let mut credentials: Vec<cred::Lox> = Vec::new();
  808. for _ in 0..USERS {
  809. let h: NaiveTime = DateTime::time(&Utc::now());
  810. if h.hour() == 23 && h.minute() == 59 {
  811. println!("Wait for UTC 00:00");
  812. thread::sleep(Duration::new(60,0));
  813. println!("Ready to work again");
  814. }
  815. let cred = th.open_invite().1 .0;
  816. th.advance_days(30);
  817. let (_, migcred) = th.trust_promotion(&cred);
  818. let (_, cred1) = th.level0_migration(&cred, &migcred);
  819. th.advance_days(14);
  820. let (_, cred2) = th.level_up(&cred1);
  821. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  822. let (_, bob_cred) = th.redeem_invite(&invite);
  823. th.advance_days(28);
  824. let (_, _) = th.level_up(&bob_cred);
  825. let (_, cred3) = th.level_up(&cred2a);
  826. credentials.push(cred3);
  827. }
  828. println!("\n***START: {}*3*2 BUCKETS 5***\n", x);
  829. block_bridges(&mut th, 5, credentials);
  830. }
  831. }
  832. #[test]
  833. fn stats_test_percent_blockage_migration_010() {
  834. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  835. for x in buckets {
  836. let mut th = TestHarness::new_buckets(x, x);
  837. let mut credentials: Vec<cred::Lox> = Vec::new();
  838. for _ in 0..USERS {
  839. let h: NaiveTime = DateTime::time(&Utc::now());
  840. if h.hour() == 23 && h.minute() == 59 {
  841. println!("Wait for UTC 00:00");
  842. thread::sleep(Duration::new(60,0));
  843. println!("Ready to work again");
  844. }
  845. let cred = th.open_invite().1 .0;
  846. th.advance_days(30);
  847. let (_, migcred) = th.trust_promotion(&cred);
  848. let (_, cred1) = th.level0_migration(&cred, &migcred);
  849. th.advance_days(14);
  850. let (_, cred2) = th.level_up(&cred1);
  851. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  852. let (_, bob_cred) = th.redeem_invite(&invite);
  853. th.advance_days(28);
  854. let (_, _) = th.level_up(&bob_cred);
  855. let (_, cred3) = th.level_up(&cred2a);
  856. credentials.push(cred3);
  857. }
  858. println!("\n***START: {}*3*2 BUCKETS 10***\n", x);
  859. block_bridges(&mut th, 10, credentials);
  860. }
  861. }
  862. #[test]
  863. fn stats_test_percent_blockage_migration_15() {
  864. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  865. for x in buckets {
  866. let mut th = TestHarness::new_buckets(x, x);
  867. let mut credentials: Vec<cred::Lox> = Vec::new();
  868. for _ in 0..USERS {
  869. let h: NaiveTime = DateTime::time(&Utc::now());
  870. if h.hour() == 23 && h.minute() == 59 {
  871. println!("Wait for UTC 00:00");
  872. thread::sleep(Duration::new(60,0));
  873. println!("Ready to work again");
  874. }
  875. let cred = th.open_invite().1 .0;
  876. th.advance_days(30);
  877. let (_, migcred) = th.trust_promotion(&cred);
  878. let (_, cred1) = th.level0_migration(&cred, &migcred);
  879. th.advance_days(14);
  880. let (_, cred2) = th.level_up(&cred1);
  881. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  882. let (_, bob_cred) = th.redeem_invite(&invite);
  883. th.advance_days(28);
  884. let (_, _) = th.level_up(&bob_cred);
  885. let (_, cred3) = th.level_up(&cred2a);
  886. credentials.push(cred3);
  887. }
  888. println!("\n***START: {}*3*2 BUCKETS 15***\n", x);
  889. block_bridges(&mut th, 15, credentials);
  890. }
  891. }
  892. #[test]
  893. fn stats_test_percent_blockage_migration_20() {
  894. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  895. for x in buckets {
  896. let mut th = TestHarness::new_buckets(x, x);
  897. let mut credentials: Vec<cred::Lox> = Vec::new();
  898. for _ in 0..USERS {
  899. let h: NaiveTime = DateTime::time(&Utc::now());
  900. if h.hour() == 23 && h.minute() == 59 {
  901. println!("Wait for UTC 00:00");
  902. thread::sleep(Duration::new(60,0));
  903. println!("Ready to work again");
  904. }
  905. let cred = th.open_invite().1 .0;
  906. th.advance_days(30);
  907. let (_, migcred) = th.trust_promotion(&cred);
  908. let (_, cred1) = th.level0_migration(&cred, &migcred);
  909. th.advance_days(14);
  910. let (_, cred2) = th.level_up(&cred1);
  911. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  912. let (_, bob_cred) = th.redeem_invite(&invite);
  913. th.advance_days(28);
  914. let (_, _) = th.level_up(&bob_cred);
  915. let (_, cred3) = th.level_up(&cred2a);
  916. credentials.push(cred3);
  917. }
  918. println!("\n***START: {}*3*2 BUCKETS 20***\n", x);
  919. block_bridges(&mut th, 20, credentials);
  920. }
  921. }
  922. #[test]
  923. fn stats_test_percent_blockage_migration_25() {
  924. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  925. for x in buckets {
  926. let mut th = TestHarness::new_buckets(x, x);
  927. let mut credentials: Vec<cred::Lox> = Vec::new();
  928. for _ in 0..USERS {
  929. let h: NaiveTime = DateTime::time(&Utc::now());
  930. if h.hour() == 23 && h.minute() == 59 {
  931. println!("Wait for UTC 00:00");
  932. thread::sleep(Duration::new(60,0));
  933. println!("Ready to work again");
  934. }
  935. let cred = th.open_invite().1 .0;
  936. th.advance_days(30);
  937. let (_, migcred) = th.trust_promotion(&cred);
  938. let (_, cred1) = th.level0_migration(&cred, &migcred);
  939. th.advance_days(14);
  940. let (_, cred2) = th.level_up(&cred1);
  941. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  942. let (_, bob_cred) = th.redeem_invite(&invite);
  943. th.advance_days(28);
  944. let (_, _) = th.level_up(&bob_cred);
  945. let (_, cred3) = th.level_up(&cred2a);
  946. credentials.push(cred3);
  947. }
  948. println!("\n***START: {}*3*2 BUCKETS 25***\n", x);
  949. block_bridges(&mut th, 25, credentials);
  950. }
  951. }
  952. #[test]
  953. fn stats_test_percent_blockage_migration_30() {
  954. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  955. for x in buckets {
  956. let mut th = TestHarness::new_buckets(x, x);
  957. let mut credentials: Vec<cred::Lox> = Vec::new();
  958. for _ in 0..USERS {
  959. let h: NaiveTime = DateTime::time(&Utc::now());
  960. if h.hour() == 23 && h.minute() == 59 {
  961. println!("Wait for UTC 00:00");
  962. thread::sleep(Duration::new(60,0));
  963. println!("Ready to work again");
  964. }
  965. let cred = th.open_invite().1 .0;
  966. th.advance_days(30);
  967. let (_, migcred) = th.trust_promotion(&cred);
  968. let (_, cred1) = th.level0_migration(&cred, &migcred);
  969. th.advance_days(14);
  970. let (_, cred2) = th.level_up(&cred1);
  971. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  972. let (_, bob_cred) = th.redeem_invite(&invite);
  973. th.advance_days(28);
  974. let (_, _) = th.level_up(&bob_cred);
  975. let (_, cred3) = th.level_up(&cred2a);
  976. credentials.push(cred3);
  977. }
  978. println!("\n***START: {}*3*2 BUCKETS 30***\n", x);
  979. block_bridges(&mut th, 30, credentials);
  980. }
  981. }
  982. #[test]
  983. fn stats_test_percent_blockage_migration_35() {
  984. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  985. for x in buckets {
  986. let mut th = TestHarness::new_buckets(x, x);
  987. let mut credentials: Vec<cred::Lox> = Vec::new();
  988. for _ in 0..USERS {
  989. let h: NaiveTime = DateTime::time(&Utc::now());
  990. if h.hour() == 23 && h.minute() == 59 {
  991. println!("Wait for UTC 00:00");
  992. thread::sleep(Duration::new(60,0));
  993. println!("Ready to work again");
  994. }
  995. let cred = th.open_invite().1 .0;
  996. th.advance_days(30);
  997. let (_, migcred) = th.trust_promotion(&cred);
  998. let (_, cred1) = th.level0_migration(&cred, &migcred);
  999. th.advance_days(14);
  1000. let (_, cred2) = th.level_up(&cred1);
  1001. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1002. let (_, bob_cred) = th.redeem_invite(&invite);
  1003. th.advance_days(28);
  1004. let (_, _) = th.level_up(&bob_cred);
  1005. let (_, cred3) = th.level_up(&cred2a);
  1006. credentials.push(cred3);
  1007. }
  1008. println!("\n***START: {}*3*2 BUCKETS 35***\n", x);
  1009. block_bridges(&mut th, 35, credentials);
  1010. }
  1011. }
  1012. #[test]
  1013. fn stats_test_percent_blockage_migration_40() {
  1014. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1015. for x in buckets {
  1016. let mut th = TestHarness::new_buckets(x, x);
  1017. let mut credentials: Vec<cred::Lox> = Vec::new();
  1018. for _ in 0..USERS {
  1019. let h: NaiveTime = DateTime::time(&Utc::now());
  1020. if h.hour() == 23 && h.minute() == 59 {
  1021. println!("Wait for UTC 00:00");
  1022. thread::sleep(Duration::new(60,0));
  1023. println!("Ready to work again");
  1024. }
  1025. let cred = th.open_invite().1 .0;
  1026. th.advance_days(30);
  1027. let (_, migcred) = th.trust_promotion(&cred);
  1028. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1029. th.advance_days(14);
  1030. let (_, cred2) = th.level_up(&cred1);
  1031. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1032. let (_, bob_cred) = th.redeem_invite(&invite);
  1033. th.advance_days(28);
  1034. let (_, _) = th.level_up(&bob_cred);
  1035. let (_, cred3) = th.level_up(&cred2a);
  1036. credentials.push(cred3);
  1037. }
  1038. println!("\n***START: {}*3*2 BUCKETS 40***\n", x);
  1039. block_bridges(&mut th, 40, credentials);
  1040. }
  1041. }
  1042. #[test]
  1043. fn stats_test_percent_blockage_migration_45() {
  1044. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1045. for x in buckets {
  1046. let mut th = TestHarness::new_buckets(x, x);
  1047. let mut credentials: Vec<cred::Lox> = Vec::new();
  1048. for _ in 0..USERS {
  1049. let h: NaiveTime = DateTime::time(&Utc::now());
  1050. if h.hour() == 23 && h.minute() == 59 {
  1051. println!("Wait for UTC 00:00");
  1052. thread::sleep(Duration::new(60,0));
  1053. println!("Ready to work again");
  1054. }
  1055. let cred = th.open_invite().1 .0;
  1056. th.advance_days(30);
  1057. let (_, migcred) = th.trust_promotion(&cred);
  1058. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1059. th.advance_days(14);
  1060. let (_, cred2) = th.level_up(&cred1);
  1061. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1062. let (_, bob_cred) = th.redeem_invite(&invite);
  1063. th.advance_days(28);
  1064. let (_, _) = th.level_up(&bob_cred);
  1065. let (_, cred3) = th.level_up(&cred2a);
  1066. credentials.push(cred3);
  1067. }
  1068. println!("\n***START: {}*3*2 BUCKETS 45***\n", x);
  1069. block_bridges(&mut th, 45, credentials);
  1070. }
  1071. }
  1072. #[test]
  1073. fn stats_test_percent_blockage_migration_50() {
  1074. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1075. for x in buckets {
  1076. let mut th = TestHarness::new_buckets(x, x);
  1077. let mut credentials: Vec<cred::Lox> = Vec::new();
  1078. for _ in 0..USERS {
  1079. let h: NaiveTime = DateTime::time(&Utc::now());
  1080. if h.hour() == 23 && h.minute() == 59 {
  1081. println!("Wait for UTC 00:00");
  1082. thread::sleep(Duration::new(60,0));
  1083. println!("Ready to work again");
  1084. }
  1085. let cred = th.open_invite().1 .0;
  1086. th.advance_days(30);
  1087. let (_, migcred) = th.trust_promotion(&cred);
  1088. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1089. th.advance_days(14);
  1090. let (_, cred2) = th.level_up(&cred1);
  1091. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1092. let (_, bob_cred) = th.redeem_invite(&invite);
  1093. th.advance_days(28);
  1094. let (_, _) = th.level_up(&bob_cred);
  1095. let (_, cred3) = th.level_up(&cred2a);
  1096. credentials.push(cred3);
  1097. }
  1098. println!("\n***START: {}*3*2 BUCKETS 50***\n", x);
  1099. block_bridges(&mut th, 50, credentials);
  1100. }
  1101. }
  1102. #[test]
  1103. fn stats_test_percent_blockage_migration_55() {
  1104. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1105. for x in buckets {
  1106. let mut th = TestHarness::new_buckets(x, x);
  1107. let mut credentials: Vec<cred::Lox> = Vec::new();
  1108. for _ in 0..USERS {
  1109. let h: NaiveTime = DateTime::time(&Utc::now());
  1110. if h.hour() == 23 && h.minute() == 59 {
  1111. println!("Wait for UTC 00:00");
  1112. thread::sleep(Duration::new(60,0));
  1113. println!("Ready to work again");
  1114. }
  1115. let cred = th.open_invite().1 .0;
  1116. th.advance_days(30);
  1117. let (_, migcred) = th.trust_promotion(&cred);
  1118. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1119. th.advance_days(14);
  1120. let (_, cred2) = th.level_up(&cred1);
  1121. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1122. let (_, bob_cred) = th.redeem_invite(&invite);
  1123. th.advance_days(28);
  1124. let (_, _) = th.level_up(&bob_cred);
  1125. let (_, cred3) = th.level_up(&cred2a);
  1126. credentials.push(cred3);
  1127. }
  1128. println!("\n***START: {}*3*2 BUCKETS 55***\n", x);
  1129. block_bridges(&mut th, 55, credentials);
  1130. }
  1131. }
  1132. #[test]
  1133. fn stats_test_percent_blockage_migration_60() {
  1134. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1135. for x in buckets {
  1136. let mut th = TestHarness::new_buckets(x, x);
  1137. let mut credentials: Vec<cred::Lox> = Vec::new();
  1138. for _ in 0..USERS {
  1139. let h: NaiveTime = DateTime::time(&Utc::now());
  1140. if h.hour() == 23 && h.minute() == 59 {
  1141. println!("Wait for UTC 00:00");
  1142. thread::sleep(Duration::new(60,0));
  1143. println!("Ready to work again");
  1144. }
  1145. let cred = th.open_invite().1 .0;
  1146. th.advance_days(30);
  1147. let (_, migcred) = th.trust_promotion(&cred);
  1148. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1149. th.advance_days(14);
  1150. let (_, cred2) = th.level_up(&cred1);
  1151. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1152. let (_, bob_cred) = th.redeem_invite(&invite);
  1153. th.advance_days(28);
  1154. let (_, _) = th.level_up(&bob_cred);
  1155. let (_, cred3) = th.level_up(&cred2a);
  1156. credentials.push(cred3);
  1157. }
  1158. println!("\n***START: {}*3*2 BUCKETS 60***\n", x);
  1159. block_bridges(&mut th, 60, credentials);
  1160. }
  1161. }
  1162. #[test]
  1163. fn stats_test_percent_blockage_migration_65() {
  1164. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1165. for x in buckets {
  1166. let mut th = TestHarness::new_buckets(x, x);
  1167. let mut credentials: Vec<cred::Lox> = Vec::new();
  1168. for _ in 0..USERS {
  1169. let h: NaiveTime = DateTime::time(&Utc::now());
  1170. if h.hour() == 23 && h.minute() == 59 {
  1171. println!("Wait for UTC 00:00");
  1172. thread::sleep(Duration::new(60,0));
  1173. println!("Ready to work again");
  1174. }
  1175. let cred = th.open_invite().1 .0;
  1176. th.advance_days(30);
  1177. let (_, migcred) = th.trust_promotion(&cred);
  1178. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1179. th.advance_days(14);
  1180. let (_, cred2) = th.level_up(&cred1);
  1181. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1182. let (_, bob_cred) = th.redeem_invite(&invite);
  1183. th.advance_days(28);
  1184. let (_, _) = th.level_up(&bob_cred);
  1185. let (_, cred3) = th.level_up(&cred2a);
  1186. credentials.push(cred3);
  1187. }
  1188. println!("\n***START: {}*3*2 BUCKETS 65***\n", x);
  1189. block_bridges(&mut th, 65, credentials);
  1190. }
  1191. }
  1192. #[test]
  1193. fn stats_test_percent_blockage_migration_70() {
  1194. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1195. for x in buckets {
  1196. let mut th = TestHarness::new_buckets(x, x);
  1197. let mut credentials: Vec<cred::Lox> = Vec::new();
  1198. for _ in 0..USERS {
  1199. let h: NaiveTime = DateTime::time(&Utc::now());
  1200. if h.hour() == 23 && h.minute() == 59 {
  1201. println!("Wait for UTC 00:00");
  1202. thread::sleep(Duration::new(60,0));
  1203. println!("Ready to work again");
  1204. }
  1205. let cred = th.open_invite().1 .0;
  1206. th.advance_days(30);
  1207. let (_, migcred) = th.trust_promotion(&cred);
  1208. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1209. th.advance_days(14);
  1210. let (_, cred2) = th.level_up(&cred1);
  1211. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1212. let (_, bob_cred) = th.redeem_invite(&invite);
  1213. th.advance_days(28);
  1214. let (_, _) = th.level_up(&bob_cred);
  1215. let (_, cred3) = th.level_up(&cred2a);
  1216. credentials.push(cred3);
  1217. }
  1218. println!("\n***START: {}*3*2 BUCKETS 70***\n", x);
  1219. block_bridges(&mut th, 70, credentials);
  1220. }
  1221. }
  1222. #[test]
  1223. fn stats_test_percent_blockage_migration_75() {
  1224. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1225. for x in buckets {
  1226. let mut th = TestHarness::new_buckets(x, x);
  1227. let mut credentials: Vec<cred::Lox> = Vec::new();
  1228. for _ in 0..USERS {
  1229. let h: NaiveTime = DateTime::time(&Utc::now());
  1230. if h.hour() == 23 && h.minute() == 59 {
  1231. println!("Wait for UTC 00:00");
  1232. thread::sleep(Duration::new(60,0));
  1233. println!("Ready to work again");
  1234. }
  1235. let cred = th.open_invite().1 .0;
  1236. th.advance_days(30);
  1237. let (_, migcred) = th.trust_promotion(&cred);
  1238. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1239. th.advance_days(14);
  1240. let (_, cred2) = th.level_up(&cred1);
  1241. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1242. let (_, bob_cred) = th.redeem_invite(&invite);
  1243. th.advance_days(28);
  1244. let (_, _) = th.level_up(&bob_cred);
  1245. let (_, cred3) = th.level_up(&cred2a);
  1246. credentials.push(cred3);
  1247. }
  1248. println!("\n***START: {}*3*2 BUCKETS 75***\n", x);
  1249. block_bridges(&mut th, 75, credentials);
  1250. }
  1251. }
  1252. #[test]
  1253. fn stats_test_percent_blockage_migration_80() {
  1254. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1255. for x in buckets {
  1256. let mut th = TestHarness::new_buckets(x, x);
  1257. let mut credentials: Vec<cred::Lox> = Vec::new();
  1258. for _ in 0..USERS {
  1259. let h: NaiveTime = DateTime::time(&Utc::now());
  1260. if h.hour() == 23 && h.minute() == 59 {
  1261. println!("Wait for UTC 00:00");
  1262. thread::sleep(Duration::new(60,0));
  1263. println!("Ready to work again");
  1264. }
  1265. let cred = th.open_invite().1 .0;
  1266. th.advance_days(30);
  1267. let (_, migcred) = th.trust_promotion(&cred);
  1268. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1269. th.advance_days(14);
  1270. let (_, cred2) = th.level_up(&cred1);
  1271. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1272. let (_, bob_cred) = th.redeem_invite(&invite);
  1273. th.advance_days(28);
  1274. let (_, _) = th.level_up(&bob_cred);
  1275. let (_, cred3) = th.level_up(&cred2a);
  1276. credentials.push(cred3);
  1277. }
  1278. println!("\n***START: {}*3*2 BUCKETS 80***\n", x);
  1279. block_bridges(&mut th, 80, credentials);
  1280. }
  1281. }
  1282. #[test]
  1283. fn stats_test_percent_blockage_migration_85() {
  1284. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1285. for x in buckets {
  1286. let mut th = TestHarness::new_buckets(x, x);
  1287. let mut credentials: Vec<cred::Lox> = Vec::new();
  1288. for _ in 0..USERS {
  1289. let h: NaiveTime = DateTime::time(&Utc::now());
  1290. if h.hour() == 23 && h.minute() == 59 {
  1291. println!("Wait for UTC 00:00");
  1292. thread::sleep(Duration::new(60,0));
  1293. println!("Ready to work again");
  1294. }
  1295. let cred = th.open_invite().1 .0;
  1296. th.advance_days(30);
  1297. let (_, migcred) = th.trust_promotion(&cred);
  1298. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1299. th.advance_days(14);
  1300. let (_, cred2) = th.level_up(&cred1);
  1301. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1302. let (_, bob_cred) = th.redeem_invite(&invite);
  1303. th.advance_days(28);
  1304. let (_, _) = th.level_up(&bob_cred);
  1305. let (_, cred3) = th.level_up(&cred2a);
  1306. credentials.push(cred3);
  1307. }
  1308. println!("\n***START: {}*3*2 BUCKETS 85***\n", x);
  1309. block_bridges(&mut th, 85, credentials);
  1310. }
  1311. }
  1312. #[test]
  1313. fn stats_test_percent_blockage_migration_90() {
  1314. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1315. for x in buckets {
  1316. let mut th = TestHarness::new_buckets(x, x);
  1317. let mut credentials: Vec<cred::Lox> = Vec::new();
  1318. for _ in 0..USERS {
  1319. let h: NaiveTime = DateTime::time(&Utc::now());
  1320. if h.hour() == 23 && h.minute() == 59 {
  1321. println!("Wait for UTC 00:00");
  1322. thread::sleep(Duration::new(60,0));
  1323. println!("Ready to work again");
  1324. }
  1325. let cred = th.open_invite().1 .0;
  1326. th.advance_days(30);
  1327. let (_, migcred) = th.trust_promotion(&cred);
  1328. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1329. th.advance_days(14);
  1330. let (_, cred2) = th.level_up(&cred1);
  1331. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1332. let (_, bob_cred) = th.redeem_invite(&invite);
  1333. th.advance_days(28);
  1334. let (_, _) = th.level_up(&bob_cred);
  1335. let (_, cred3) = th.level_up(&cred2a);
  1336. credentials.push(cred3);
  1337. }
  1338. println!("\n***START: {}*3*2 BUCKETS 90***\n", x);
  1339. block_bridges(&mut th, 90, credentials);
  1340. }
  1341. }
  1342. #[test]
  1343. fn stats_test_percent_blockage_migration_95() {
  1344. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1345. for x in buckets {
  1346. let mut th = TestHarness::new_buckets(x, x);
  1347. let mut credentials: Vec<cred::Lox> = Vec::new();
  1348. for _ in 0..USERS {
  1349. let h: NaiveTime = DateTime::time(&Utc::now());
  1350. if h.hour() == 23 && h.minute() == 59 {
  1351. println!("Wait for UTC 00:00");
  1352. thread::sleep(Duration::new(60,0));
  1353. println!("Ready to work again");
  1354. }
  1355. let cred = th.open_invite().1 .0;
  1356. th.advance_days(30);
  1357. let (_, migcred) = th.trust_promotion(&cred);
  1358. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1359. th.advance_days(14);
  1360. let (_, cred2) = th.level_up(&cred1);
  1361. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1362. let (_, bob_cred) = th.redeem_invite(&invite);
  1363. th.advance_days(28);
  1364. let (_, _) = th.level_up(&bob_cred);
  1365. let (_, cred3) = th.level_up(&cred2a);
  1366. credentials.push(cred3);
  1367. }
  1368. println!("\n***START: {}*3*2 BUCKETS 95***\n", x);
  1369. block_bridges(&mut th, 95, credentials);
  1370. }
  1371. }
  1372. #[test]
  1373. fn stats_test_percent_blockage_migration_100() {
  1374. let buckets: Vec<u16> = vec![150, 300, 450, 600, 750, 900, 1050, 1200, 1350, 1500];
  1375. for x in buckets {
  1376. let mut th = TestHarness::new_buckets(x, x);
  1377. let mut credentials: Vec<cred::Lox> = Vec::new();
  1378. for _ in 0..USERS {
  1379. let h: NaiveTime = DateTime::time(&Utc::now());
  1380. if h.hour() == 23 && h.minute() == 59 {
  1381. println!("Wait for UTC 00:00");
  1382. thread::sleep(Duration::new(60,0));
  1383. println!("Ready to work again");
  1384. }
  1385. let cred = th.open_invite().1 .0;
  1386. th.advance_days(30);
  1387. let (_, migcred) = th.trust_promotion(&cred);
  1388. let (_, cred1) = th.level0_migration(&cred, &migcred);
  1389. th.advance_days(14);
  1390. let (_, cred2) = th.level_up(&cred1);
  1391. let (_, (cred2a, invite)) = th.issue_invite(&cred2);
  1392. let (_, bob_cred) = th.redeem_invite(&invite);
  1393. th.advance_days(28);
  1394. let (_, _) = th.level_up(&bob_cred);
  1395. let (_, cred3) = th.level_up(&cred2a);
  1396. credentials.push(cred3);
  1397. }
  1398. println!("\n***START: {}*3*2 BUCKETS 100***\n", x);
  1399. block_bridges(&mut th, 100, credentials);
  1400. }
  1401. }
  1402. /// Blocks a percentage of the bridges for the passed Test Harness
  1403. /// excluding the hot spare buckets as they will not have been handed out.
  1404. /// The logic assumes hot spare buckets are appended to the end of the bridge_table
  1405. /// bucket list.
  1406. fn block_bridges(th: &mut TestHarness, percentage: usize, credentials: Vec<cred::Lox>) {
  1407. let blockable_num = th.ba.bridge_table.buckets.len()
  1408. - th.ba.bridge_table.spares.len()
  1409. - th.bdb.openinv_buckets.len();
  1410. let blockable_range = th.ba.bridge_table.buckets.len() - th.ba.bridge_table.spares.len();
  1411. let to_block: usize = (blockable_num * percentage / 100).into();
  1412. let mut block_index: HashSet<usize> = HashSet::new();
  1413. let mut rng = rand::thread_rng();
  1414. while block_index.len() <= to_block - 1 {
  1415. let rand_num = rng.gen_range(0, blockable_range);
  1416. if !th.bdb.openinv_buckets.contains(&(rand_num as u32)) {
  1417. block_index.insert(rand_num);
  1418. }
  1419. }
  1420. for index in block_index {
  1421. let b0 = th.ba.bridge_table.buckets[index][0];
  1422. let b1 = th.ba.bridge_table.buckets[index][1];
  1423. let b2 = th.ba.bridge_table.buckets[index][2];
  1424. th.ba.bridge_unreachable(&b0, &mut th.bdb);
  1425. th.ba.bridge_unreachable(&b1, &mut th.bdb);
  1426. th.ba.bridge_unreachable(&b2, &mut th.bdb);
  1427. }
  1428. let mut req_size: Vec<f64> = Vec::new();
  1429. let mut resp_size: Vec<f64> = Vec::new();
  1430. let mut req_time: Vec<f64> = Vec::new();
  1431. let mut resp_time: Vec<f64> = Vec::new();
  1432. let mut resp_handle_time: Vec<f64> = Vec::new();
  1433. let mut red_req_size: Vec<f64> = Vec::new();
  1434. let mut red_resp_size: Vec<f64> = Vec::new();
  1435. let mut red_req_time: Vec<f64> = Vec::new();
  1436. let mut red_resp_time: Vec<f64> = Vec::new();
  1437. let mut red_resp_handle_time: Vec<f64> = Vec::new();
  1438. for cred in credentials {
  1439. let (id, key) = bridge_table::from_scalar(cred.bucket).unwrap();
  1440. let encbuckets = th.ba.enc_bridge_table();
  1441. let bucket =
  1442. bridge_table::BridgeTable::decrypt_bucket(id, &key, &encbuckets[id as usize]).unwrap();
  1443. let mut count = 0;
  1444. for bridge_line in &bucket.0 {
  1445. if th.ba.bridge_table.reachable.contains_key(bridge_line) {
  1446. count = count + 1;
  1447. }
  1448. }
  1449. if count < 2 {
  1450. let (perf_stat, migration) = th.check_blockage(&cred);
  1451. let (block_perf_stat, _) = th.blockage_migration(&cred, &migration);
  1452. req_size.push(perf_stat.req_len as f64);
  1453. req_time.push(perf_stat.req_t.as_secs_f64());
  1454. resp_size.push(perf_stat.resp_len as f64);
  1455. resp_time.push(perf_stat.resp_t.as_secs_f64());
  1456. resp_handle_time.push(perf_stat.resp_handle_t.as_secs_f64());
  1457. red_req_size.push(block_perf_stat.req_len as f64);
  1458. red_req_time.push(block_perf_stat.req_t.as_secs_f64());
  1459. red_resp_size.push(block_perf_stat.resp_len as f64);
  1460. red_resp_time.push(block_perf_stat.resp_t.as_secs_f64());
  1461. red_resp_handle_time.push(block_perf_stat.resp_handle_t.as_secs_f64());
  1462. }
  1463. }
  1464. println!("\n----CHECK-BLOCKAGE-{}----\n", percentage);
  1465. print_stats_test_results(req_size, req_time, resp_size, resp_time, resp_handle_time);
  1466. println!("\n----BLOCKAGE-MIGRATION-{}----\n", percentage);
  1467. print_stats_test_results(
  1468. red_req_size,
  1469. red_req_time,
  1470. red_resp_size,
  1471. red_resp_time,
  1472. red_resp_handle_time,
  1473. );
  1474. }
  1475. fn print_test_results(perf_stat: PerfStat) {
  1476. println!("Request size = {:?} bytes", perf_stat.req_len);
  1477. println!("Request time = {:?}", perf_stat.req_t);
  1478. println!("Response size = {:?} bytes", perf_stat.resp_len);
  1479. println!("Response time = {:?}", perf_stat.resp_t);
  1480. println!("Response handle time = {:?}", perf_stat.resp_handle_t);
  1481. }
  1482. //fn print_time_test_results(perf_stat: PerfStat) {
  1483. // println!("Request time = {:?}", perf_stat.req_t);
  1484. // println!("Response time = {:?}", perf_stat.resp_t);
  1485. // println!("Response handle time = {:?}", perf_stat.resp_handle_t);
  1486. //}
  1487. fn print_stats_test_results(
  1488. req_size: Vec<f64>,
  1489. req_time: Vec<f64>,
  1490. resp_size: Vec<f64>,
  1491. resp_time: Vec<f64>,
  1492. resp_handle_time: Vec<f64>,
  1493. ) {
  1494. let mean_req_size = mean(&req_size);
  1495. let req_std_dev = standard_deviation(&req_size, Some(mean_req_size));
  1496. let mean_req_time = mean(&req_time);
  1497. let req_time_std_dev = standard_deviation(&req_time, Some(mean_req_time));
  1498. let mean_resp_size = mean(&resp_size);
  1499. let resp_std_dev = standard_deviation(&resp_size, Some(mean_resp_size));
  1500. let mean_resp_time = mean(&resp_time);
  1501. let resp_time_std_dev = standard_deviation(&resp_time, Some(mean_resp_time));
  1502. let mean_resp_handle_time = mean(&resp_handle_time);
  1503. let resp_handle_time_std_dev =
  1504. standard_deviation(&resp_handle_time, Some(mean_resp_handle_time));
  1505. println!("Average request size = {} bytes", mean_req_size);
  1506. println!("Request size standard deviation = {} bytes", req_std_dev);
  1507. println!(
  1508. "Average request time = {:?}",
  1509. Duration::from_secs_f64(mean_req_time)
  1510. );
  1511. println!(
  1512. "Request time standard deviation = {:?}",
  1513. Duration::from_secs_f64(req_time_std_dev)
  1514. );
  1515. println!("Average response size = {} bytes", mean_resp_size);
  1516. println!("Response standard deviation = {} bytes", resp_std_dev);
  1517. println!(
  1518. "Average response time = {:?}",
  1519. Duration::from_secs_f64(mean_resp_time)
  1520. );
  1521. println!(
  1522. "Response time standard deviation = {:?}",
  1523. Duration::from_secs_f64(resp_time_std_dev)
  1524. );
  1525. println!(
  1526. "Average response handling time = {:?}",
  1527. Duration::from_secs_f64(mean_resp_handle_time)
  1528. );
  1529. println!(
  1530. "Response handling time standard deviation = {:?}",
  1531. Duration::from_secs_f64(resp_handle_time_std_dev)
  1532. );
  1533. }