EventLoopSchedulerTest.cs 14 KB

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  1. // Licensed to the .NET Foundation under one or more agreements.
  2. // The .NET Foundation licenses this file to you under the MIT License.
  3. // See the LICENSE file in the project root for more information.
  4. using System;
  5. using System.Collections.Generic;
  6. using System.Diagnostics;
  7. using System.Reactive.Concurrency;
  8. using System.Reactive.Disposables;
  9. using System.Reactive.Linq;
  10. using System.Threading;
  11. using Microsoft.Reactive.Testing;
  12. using Microsoft.VisualStudio.TestTools.UnitTesting;
  13. #if STRESS
  14. using ReactiveTests.Stress.Schedulers;
  15. #endif
  16. using Assert = Xunit.Assert;
  17. namespace ReactiveTests.Tests
  18. {
  19. [TestClass]
  20. public class EventLoopSchedulerTest
  21. {
  22. private static readonly TimeSpan MaxWaitTime = TimeSpan.FromSeconds(10);
  23. [TestMethod]
  24. public void EventLoop_ArgumentChecking()
  25. {
  26. using var el = new EventLoopScheduler();
  27. #pragma warning disable CA1806 // (Unused new instance.) We expect the constructor to throw.
  28. ReactiveAssert.Throws<ArgumentNullException>(() => new EventLoopScheduler(null));
  29. ReactiveAssert.Throws<ArgumentNullException>(() => el.Schedule(42, default));
  30. ReactiveAssert.Throws<ArgumentNullException>(() => el.Schedule(42, DateTimeOffset.Now, default));
  31. ReactiveAssert.Throws<ArgumentNullException>(() => el.Schedule(42, TimeSpan.Zero, default));
  32. ReactiveAssert.Throws<ArgumentNullException>(() => el.SchedulePeriodic(42, TimeSpan.FromSeconds(1), default));
  33. ReactiveAssert.Throws<ArgumentOutOfRangeException>(() => el.SchedulePeriodic(42, TimeSpan.FromSeconds(-1), _ => _));
  34. #pragma warning restore CA1806
  35. }
  36. [TestMethod]
  37. public void EventLoop_Now()
  38. {
  39. using var el = new EventLoopScheduler();
  40. var res = el.Now - DateTime.Now;
  41. Assert.True(res.Seconds < 1);
  42. }
  43. [TestMethod]
  44. public void EventLoop_DisposeWithInFlightActions()
  45. {
  46. using var scheduler = new EventLoopScheduler();
  47. using var subscription = Observable
  48. .Range(1, 10)
  49. .ObserveOn(scheduler)
  50. .Subscribe(_ => Thread.Sleep(50));
  51. Thread.Sleep(50);
  52. }
  53. [TestMethod]
  54. public void EventLoop_ScheduleAction()
  55. {
  56. var ran = false;
  57. var gate = new Semaphore(0, 1);
  58. using var el = new EventLoopScheduler();
  59. el.Schedule(() =>
  60. {
  61. ran = true;
  62. gate.Release();
  63. });
  64. Assert.True(gate.WaitOne(MaxWaitTime), "Timeout!");
  65. Assert.True(ran);
  66. }
  67. [TestMethod]
  68. public void EventLoop_DifferentThread()
  69. {
  70. var id = default(int);
  71. var gate = new Semaphore(0, 1);
  72. using var el = new EventLoopScheduler();
  73. el.Schedule(() =>
  74. {
  75. id = Environment.CurrentManagedThreadId;
  76. gate.Release();
  77. });
  78. Assert.True(gate.WaitOne(MaxWaitTime), "Timeout!");
  79. Assert.NotEqual(Environment.CurrentManagedThreadId, id);
  80. }
  81. [TestMethod]
  82. public void EventLoop_ScheduleOrderedActions()
  83. {
  84. var results = new List<int>();
  85. var gate = new Semaphore(0, 1);
  86. using var el = new EventLoopScheduler();
  87. el.Schedule(() => results.Add(0));
  88. el.Schedule(() =>
  89. {
  90. results.Add(1);
  91. gate.Release();
  92. });
  93. Assert.True(gate.WaitOne(MaxWaitTime), "Timeout!");
  94. results.AssertEqual(0, 1);
  95. }
  96. [TestMethod]
  97. public void EventLoop_SchedulerDisposed()
  98. {
  99. var d = 0;
  100. var e = new ManualResetEvent(false);
  101. var f = new ManualResetEvent(false);
  102. var results = new List<int>();
  103. using var el = new EventLoopScheduler();
  104. el.Schedule(() => results.Add(0));
  105. el.Schedule(() =>
  106. {
  107. el.Dispose();
  108. e.Set();
  109. results.Add(1);
  110. try
  111. {
  112. el.Schedule(() => { throw new Exception("Should be disposed!"); });
  113. f.Set();
  114. }
  115. catch (ObjectDisposedException)
  116. {
  117. // BREAKING CHANGE v2 > v1.x - New exception behavior.
  118. Interlocked.Increment(ref d);
  119. f.Set();
  120. }
  121. });
  122. e.WaitOne();
  123. try
  124. {
  125. el.Schedule(() => results.Add(2));
  126. }
  127. catch (ObjectDisposedException)
  128. {
  129. // BREAKING CHANGE v2 > v1.x - New exception behavior.
  130. Interlocked.Increment(ref d);
  131. }
  132. f.WaitOne();
  133. results.AssertEqual(0, 1);
  134. Assert.Equal(2, d);
  135. }
  136. [TestMethod]
  137. public void EventLoop_ScheduleTimeOrderedActions()
  138. {
  139. var results = new List<int>();
  140. var gate = new Semaphore(0, 1);
  141. using var el = new EventLoopScheduler();
  142. el.Schedule(TimeSpan.FromMilliseconds(50), () => results.Add(1));
  143. el.Schedule(TimeSpan.FromMilliseconds(100), () =>
  144. {
  145. results.Add(0);
  146. gate.Release();
  147. });
  148. Assert.True(gate.WaitOne(MaxWaitTime), "Timeout!");
  149. results.AssertEqual(1, 0);
  150. }
  151. [TestMethod]
  152. public void EventLoop_ScheduleOrderedAndTimedActions()
  153. {
  154. var results = new List<int>();
  155. var gate = new Semaphore(0, 1);
  156. using var el = new EventLoopScheduler();
  157. el.Schedule(() => results.Add(1));
  158. el.Schedule(TimeSpan.FromMilliseconds(100), () =>
  159. {
  160. results.Add(0);
  161. gate.Release();
  162. });
  163. Assert.True(gate.WaitOne(MaxWaitTime), "Timeout!");
  164. results.AssertEqual(1, 0);
  165. }
  166. [TestMethod]
  167. public void EventLoop_ScheduleTimeOrderedInFlightActions()
  168. {
  169. var results = new List<int>();
  170. var gate = new Semaphore(0, 1);
  171. using var el = new EventLoopScheduler();
  172. el.Schedule(TimeSpan.FromMilliseconds(100), () =>
  173. {
  174. results.Add(0);
  175. el.Schedule(TimeSpan.FromMilliseconds(50), () => results.Add(1));
  176. el.Schedule(TimeSpan.FromMilliseconds(100), () =>
  177. {
  178. results.Add(2);
  179. gate.Release();
  180. });
  181. });
  182. Assert.True(gate.WaitOne(MaxWaitTime), "Timeout!");
  183. results.AssertEqual(0, 1, 2);
  184. }
  185. [TestMethod]
  186. public void EventLoop_ScheduleTimeAndOrderedInFlightActions()
  187. {
  188. var results = new List<int>();
  189. var gate = new Semaphore(0, 1);
  190. using var el = new EventLoopScheduler();
  191. el.Schedule(TimeSpan.FromMilliseconds(100), () =>
  192. {
  193. results.Add(0);
  194. el.Schedule(() => results.Add(4));
  195. el.Schedule(TimeSpan.FromMilliseconds(50), () => results.Add(1));
  196. el.Schedule(TimeSpan.FromMilliseconds(100), () =>
  197. {
  198. results.Add(2);
  199. gate.Release();
  200. });
  201. });
  202. Assert.True(gate.WaitOne(MaxWaitTime), "Timeout!");
  203. results.AssertEqual(0, 4, 1, 2);
  204. }
  205. [TestMethod]
  206. public void EventLoop_ScheduleActionNested()
  207. {
  208. var ran = false;
  209. using var el = new EventLoopScheduler();
  210. var gate = new Semaphore(0, 1);
  211. el.Schedule(() => el.Schedule(() =>
  212. {
  213. ran = true;
  214. gate.Release();
  215. }));
  216. Assert.True(gate.WaitOne(MaxWaitTime), "Timeout!");
  217. Assert.True(ran);
  218. }
  219. [TestMethod]
  220. public void EventLoop_ScheduleActionDue()
  221. {
  222. var ran = false;
  223. using var el = new EventLoopScheduler();
  224. var sw = new Stopwatch();
  225. var gate = new Semaphore(0, 1);
  226. sw.Start();
  227. el.Schedule(TimeSpan.FromSeconds(0.2), () =>
  228. {
  229. ran = true;
  230. sw.Stop();
  231. gate.Release();
  232. });
  233. Assert.True(gate.WaitOne(MaxWaitTime), "Timeout!");
  234. Assert.True(ran, "ran");
  235. Assert.True(sw.ElapsedMilliseconds > 180, "due " + sw.ElapsedMilliseconds);
  236. }
  237. [TestMethod]
  238. public void EventLoop_ScheduleActionDueNested()
  239. {
  240. var ran = false;
  241. using var el = new EventLoopScheduler();
  242. var gate = new Semaphore(0, 1);
  243. var sw = new Stopwatch();
  244. sw.Start();
  245. el.Schedule(TimeSpan.FromSeconds(0.2), () =>
  246. {
  247. sw.Stop();
  248. sw.Start();
  249. el.Schedule(TimeSpan.FromSeconds(0.2), () =>
  250. {
  251. sw.Stop();
  252. ran = true;
  253. gate.Release();
  254. });
  255. });
  256. Assert.True(gate.WaitOne(MaxWaitTime), "Timeout!");
  257. Assert.True(ran, "ran");
  258. Assert.True(sw.ElapsedMilliseconds > 380, "due " + sw.ElapsedMilliseconds);
  259. }
  260. #if !NO_PERF
  261. [TestMethod]
  262. public void Stopwatch()
  263. {
  264. using var el = new EventLoopScheduler();
  265. StopwatchTest.Run(el);
  266. }
  267. #endif
  268. [TestMethod]
  269. public void EventLoop_Immediate()
  270. {
  271. var M = 1000;
  272. var N = 4;
  273. for (var i = 0; i < N; i++)
  274. {
  275. for (var j = 1; j <= M; j *= 10)
  276. {
  277. using var e = new EventLoopScheduler();
  278. using var d = new CompositeDisposable();
  279. var cd = new CountdownEvent(j);
  280. for (var k = 0; k < j; k++)
  281. {
  282. d.Add(e.Schedule(() => cd.Signal()));
  283. }
  284. if (!cd.Wait(10000))
  285. {
  286. Assert.True(false, "j = " + j);
  287. }
  288. }
  289. }
  290. }
  291. [TestMethod]
  292. public void EventLoop_TimeCollisions()
  293. {
  294. var M = 1000;
  295. var N = 4;
  296. for (var i = 0; i < N; i++)
  297. {
  298. for (var j = 1; j <= M; j *= 10)
  299. {
  300. using var e = new EventLoopScheduler();
  301. using var d = new CompositeDisposable();
  302. var cd = new CountdownEvent(j);
  303. for (var k = 0; k < j; k++)
  304. {
  305. d.Add(e.Schedule(TimeSpan.FromMilliseconds(100), () => cd.Signal()));
  306. }
  307. if (!cd.Wait(10000))
  308. {
  309. Assert.True(false, "j = " + j);
  310. }
  311. }
  312. }
  313. }
  314. [TestMethod]
  315. public void EventLoop_Spread()
  316. {
  317. var M = 1000;
  318. var N = 4;
  319. for (var i = 0; i < N; i++)
  320. {
  321. for (var j = 1; j <= M; j *= 10)
  322. {
  323. using var e = new EventLoopScheduler();
  324. using var d = new CompositeDisposable();
  325. var cd = new CountdownEvent(j);
  326. for (var k = 0; k < j; k++)
  327. {
  328. d.Add(e.Schedule(TimeSpan.FromMilliseconds(k), () => cd.Signal()));
  329. }
  330. if (!cd.Wait(10000))
  331. {
  332. Assert.True(false, "j = " + j);
  333. }
  334. }
  335. }
  336. }
  337. [TestMethod]
  338. public void EventLoop_Periodic()
  339. {
  340. var n = 0;
  341. using var s = new EventLoopScheduler();
  342. var e = new ManualResetEvent(false);
  343. var d = s.SchedulePeriodic(TimeSpan.FromMilliseconds(25), () =>
  344. {
  345. if (Interlocked.Increment(ref n) == 10)
  346. {
  347. e.Set();
  348. }
  349. });
  350. if (!e.WaitOne(10000))
  351. {
  352. Assert.True(false);
  353. }
  354. d.Dispose();
  355. }
  356. #if STRESS
  357. [TestMethod]
  358. public void EventLoop_Stress()
  359. {
  360. EventLoop.NoSemaphoreFullException();
  361. }
  362. #endif
  363. #if DESKTOPCLR
  364. [TestMethod]
  365. public void EventLoop_CorrectWorkStealing()
  366. {
  367. const int workItemCount = 100;
  368. var failureCount = 0;
  369. var countdown = new CountdownEvent(workItemCount);
  370. var dueTime = DateTimeOffset.Now + TimeSpan.FromSeconds(1);
  371. using (var d = new CompositeDisposable())
  372. {
  373. for (var i = 0; i < workItemCount; i++)
  374. {
  375. var scheduler = new EventLoopScheduler();
  376. scheduler.Schedule(() =>
  377. {
  378. var schedulerThread = Thread.CurrentThread;
  379. scheduler.Schedule(dueTime, () =>
  380. {
  381. if (Thread.CurrentThread != schedulerThread)
  382. {
  383. Interlocked.Increment(ref failureCount);
  384. }
  385. countdown.Signal();
  386. });
  387. });
  388. d.Add(scheduler);
  389. }
  390. countdown.Wait();
  391. }
  392. Assert.Equal(0, failureCount);
  393. }
  394. #endif
  395. }
  396. }