ObserveOnTest.cs 20 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 Apache 2.0 License.
  3. // See the LICENSE file in the project root for more information.
  4. using System;
  5. using System.Collections.Generic;
  6. using System.Linq;
  7. using System.Reactive.Concurrency;
  8. using System.Reactive.Disposables;
  9. using System.Reactive.Linq;
  10. using System.Reactive.Subjects;
  11. using System.Threading;
  12. using Microsoft.Reactive.Testing;
  13. using ReactiveTests.Dummies;
  14. using Xunit;
  15. namespace ReactiveTests.Tests
  16. {
  17. public class ObserveOnTest : TestBase
  18. {
  19. #region + TestBase +
  20. [Fact]
  21. public void ObserveOn_ArgumentChecking()
  22. {
  23. var someObservable = Observable.Empty<int>();
  24. #if HAS_WINFORMS
  25. ReactiveAssert.Throws<ArgumentNullException>(() => Observable.ObserveOn<int>(default(IObservable<int>), new ControlScheduler(new Label())));
  26. ReactiveAssert.Throws<ArgumentNullException>(() => Observable.ObserveOn<int>(someObservable, default(ControlScheduler)));
  27. ReactiveAssert.Throws<ArgumentNullException>(() => ControlObservable.ObserveOn<int>(default(IObservable<int>), new Label()));
  28. ReactiveAssert.Throws<ArgumentNullException>(() => ControlObservable.ObserveOn<int>(someObservable, default(Label)));
  29. #endif
  30. #if HAS_DISPATCHER
  31. #if USE_SL_DISPATCHER
  32. ReactiveAssert.Throws<ArgumentNullException>(() => Observable.ObserveOn<int>(default(IObservable<int>), new DispatcherScheduler(System.Windows.Deployment.Current.Dispatcher)));
  33. #else
  34. ReactiveAssert.Throws<ArgumentNullException>(() => Observable.ObserveOn<int>(default(IObservable<int>), new DispatcherScheduler(Dispatcher.CurrentDispatcher)));
  35. #endif
  36. ReactiveAssert.Throws<ArgumentNullException>(() => Observable.ObserveOn<int>(someObservable, default(DispatcherScheduler)));
  37. #if USE_SL_DISPATCHER
  38. ReactiveAssert.Throws<ArgumentNullException>(() => DispatcherObservable.ObserveOn<int>(default(IObservable<int>), System.Windows.Deployment.Current.Dispatcher));
  39. #else
  40. ReactiveAssert.Throws<ArgumentNullException>(() => DispatcherObservable.ObserveOn<int>(default(IObservable<int>), Dispatcher.CurrentDispatcher));
  41. #endif
  42. ReactiveAssert.Throws<ArgumentNullException>(() => DispatcherObservable.ObserveOn<int>(someObservable, default(Dispatcher)));
  43. ReactiveAssert.Throws<ArgumentNullException>(() => DispatcherObservable.ObserveOnDispatcher<int>(default(IObservable<int>)));
  44. #endif
  45. ReactiveAssert.Throws<ArgumentNullException>(() => Observable.ObserveOn<int>(default, new SynchronizationContext()));
  46. ReactiveAssert.Throws<ArgumentNullException>(() => Observable.ObserveOn(someObservable, default(SynchronizationContext)));
  47. }
  48. #if HAS_WINFORMS
  49. [Fact]
  50. public void ObserveOn_Control()
  51. {
  52. var lbl = CreateLabel();
  53. var evt = new ManualResetEvent(false);
  54. bool okay = true;
  55. Observable.Range(0, 10, NewThreadScheduler.Default).ObserveOn(lbl).Subscribe(x =>
  56. {
  57. lbl.Text = x.ToString();
  58. okay &= (SynchronizationContext.Current is System.Windows.Forms.WindowsFormsSynchronizationContext);
  59. }, () => evt.Set());
  60. evt.WaitOne();
  61. Application.Exit();
  62. Assert.True(okay);
  63. }
  64. [Fact]
  65. public void ObserveOn_ControlScheduler()
  66. {
  67. var lbl = CreateLabel();
  68. var evt = new ManualResetEvent(false);
  69. bool okay = true;
  70. Observable.Range(0, 10, NewThreadScheduler.Default).ObserveOn(new ControlScheduler(lbl)).Subscribe(x =>
  71. {
  72. lbl.Text = x.ToString();
  73. okay &= (SynchronizationContext.Current is System.Windows.Forms.WindowsFormsSynchronizationContext);
  74. }, () => evt.Set());
  75. evt.WaitOne();
  76. Application.Exit();
  77. Assert.True(okay);
  78. }
  79. private Label CreateLabel()
  80. {
  81. var loaded = new ManualResetEvent(false);
  82. var lbl = default(Label);
  83. var t = new Thread(() =>
  84. {
  85. lbl = new Label();
  86. var frm = new Form { Controls = { lbl }, Width = 0, Height = 0, FormBorderStyle = FormBorderStyle.None, ShowInTaskbar = false };
  87. frm.Load += (_, __) =>
  88. {
  89. loaded.Set();
  90. };
  91. Application.Run(frm);
  92. });
  93. t.SetApartmentState(ApartmentState.STA);
  94. t.Start();
  95. loaded.WaitOne();
  96. return lbl;
  97. }
  98. #endif
  99. #if HAS_DISPATCHER
  100. [Fact]
  101. [Asynchronous]
  102. public void ObserveOn_Dispatcher()
  103. {
  104. var dispatcher = DispatcherHelpers.EnsureDispatcher();
  105. RunAsync(evt =>
  106. {
  107. bool okay = true;
  108. Observable.Range(0, 10, NewThreadScheduler.Default).ObserveOn(dispatcher).Subscribe(x =>
  109. {
  110. okay &= (SynchronizationContext.Current is System.Windows.Threading.DispatcherSynchronizationContext);
  111. }, () =>
  112. {
  113. Assert.True(okay);
  114. dispatcher.InvokeShutdown();
  115. evt.Set();
  116. });
  117. });
  118. }
  119. [Fact]
  120. [Asynchronous]
  121. public void ObserveOn_DispatcherScheduler()
  122. {
  123. var dispatcher = DispatcherHelpers.EnsureDispatcher();
  124. RunAsync(evt =>
  125. {
  126. bool okay = true;
  127. Observable.Range(0, 10, NewThreadScheduler.Default).ObserveOn(new DispatcherScheduler(dispatcher)).Subscribe(x =>
  128. {
  129. okay &= (SynchronizationContext.Current is System.Windows.Threading.DispatcherSynchronizationContext);
  130. }, () =>
  131. {
  132. Assert.True(okay);
  133. dispatcher.InvokeShutdown();
  134. evt.Set();
  135. });
  136. });
  137. }
  138. [Fact]
  139. [Asynchronous]
  140. public void ObserveOn_CurrentDispatcher()
  141. {
  142. var dispatcher = DispatcherHelpers.EnsureDispatcher();
  143. RunAsync(evt =>
  144. {
  145. bool okay = true;
  146. dispatcher.BeginInvoke(new Action(() =>
  147. {
  148. Observable.Range(0, 10, NewThreadScheduler.Default).ObserveOnDispatcher().Subscribe(x =>
  149. {
  150. okay &= (SynchronizationContext.Current is System.Windows.Threading.DispatcherSynchronizationContext);
  151. }, () =>
  152. {
  153. Assert.True(okay);
  154. dispatcher.InvokeShutdown();
  155. evt.Set();
  156. });
  157. }));
  158. });
  159. }
  160. [Fact]
  161. [Asynchronous]
  162. public void ObserveOn_Error()
  163. {
  164. var dispatcher = DispatcherHelpers.EnsureDispatcher();
  165. RunAsync(evt =>
  166. {
  167. var ex = new Exception();
  168. bool okay = true;
  169. dispatcher.BeginInvoke(new Action(() =>
  170. {
  171. Observable.Throw<int>(ex).ObserveOnDispatcher().Subscribe(x =>
  172. {
  173. okay &= (SynchronizationContext.Current is System.Windows.Threading.DispatcherSynchronizationContext);
  174. },
  175. e =>
  176. {
  177. Assert.True(okay);
  178. Assert.Same(ex, e);
  179. dispatcher.InvokeShutdown();
  180. evt.Set();
  181. },
  182. () =>
  183. {
  184. Assert.True(false);
  185. dispatcher.InvokeShutdown();
  186. evt.Set();
  187. });
  188. }));
  189. });
  190. }
  191. #endif
  192. #endregion + TestBase +
  193. }
  194. public class ObserveOnReactiveTest : ReactiveTest
  195. {
  196. [Fact]
  197. public void ObserveOn_Scheduler_ArgumentChecking()
  198. {
  199. ReactiveAssert.Throws<ArgumentNullException>(() => Observable.ObserveOn(default(IObservable<int>), DummyScheduler.Instance));
  200. ReactiveAssert.Throws<ArgumentNullException>(() => Observable.ObserveOn(DummyObservable<int>.Instance, default(IScheduler)));
  201. }
  202. [Fact]
  203. public void ObserveOn_Scheduler_Completed()
  204. {
  205. var scheduler = new TestScheduler();
  206. var xs = scheduler.CreateHotObservable(
  207. OnNext(90, 1),
  208. OnNext(120, 2),
  209. OnNext(230, 3),
  210. OnNext(240, 4),
  211. OnNext(310, 5),
  212. OnNext(470, 6),
  213. OnCompleted<int>(530)
  214. );
  215. var results = scheduler.Start(() =>
  216. xs.ObserveOn(scheduler)
  217. );
  218. results.Messages.AssertEqual(
  219. OnNext(231, 3),
  220. OnNext(241, 4),
  221. OnNext(311, 5),
  222. OnNext(471, 6),
  223. OnCompleted<int>(531)
  224. );
  225. #if !NO_PERF
  226. // BREAKING CHANGE v2 > v1.x -> More aggressive disposal behavior
  227. xs.Subscriptions.AssertEqual(
  228. Subscribe(200, 531)
  229. );
  230. #else
  231. //
  232. // TODO: Check platform discrepancies
  233. //
  234. //xs.Subscriptions.AssertEqual(
  235. // Subscribe(200, 1000)
  236. //);
  237. #endif
  238. }
  239. [Fact]
  240. public void ObserveOn_Scheduler_Error()
  241. {
  242. var scheduler = new TestScheduler();
  243. var ex = new Exception();
  244. var xs = scheduler.CreateHotObservable(
  245. OnNext(90, 1),
  246. OnNext(120, 2),
  247. OnNext(230, 3),
  248. OnNext(240, 4),
  249. OnNext(310, 5),
  250. OnNext(470, 6),
  251. OnError<int>(530, ex)
  252. );
  253. var results = scheduler.Start(() =>
  254. xs.ObserveOn(scheduler)
  255. );
  256. results.Messages.AssertEqual(
  257. OnNext(231, 3),
  258. OnNext(241, 4),
  259. OnNext(311, 5),
  260. OnNext(471, 6),
  261. OnError<int>(531, ex)
  262. );
  263. #if !NO_PERF
  264. // BREAKING CHANGE v2 > v1.x -> More aggressive disposal behavior
  265. xs.Subscriptions.AssertEqual(
  266. Subscribe(200, 531)
  267. );
  268. #else
  269. //
  270. // TODO: Check platform discrepancies
  271. //
  272. //xs.Subscriptions.AssertEqual(
  273. // Subscribe(200, 1000)
  274. //);
  275. #endif
  276. }
  277. [Fact]
  278. public void ObserveOn_Scheduler_Dispose()
  279. {
  280. var scheduler = new TestScheduler();
  281. var xs = scheduler.CreateHotObservable(
  282. OnNext(90, 1),
  283. OnNext(120, 2),
  284. OnNext(230, 3),
  285. OnNext(240, 4),
  286. OnNext(310, 5),
  287. OnNext(470, 6)
  288. );
  289. var results = scheduler.Start(() =>
  290. xs.ObserveOn(scheduler)
  291. );
  292. results.Messages.AssertEqual(
  293. OnNext(231, 3),
  294. OnNext(241, 4),
  295. OnNext(311, 5),
  296. OnNext(471, 6)
  297. );
  298. xs.Subscriptions.AssertEqual(
  299. Subscribe(200, 1000)
  300. );
  301. }
  302. [Fact]
  303. public void ObserveOn_Scheduler_SameTime()
  304. {
  305. var scheduler = new TestScheduler();
  306. var xs = scheduler.CreateHotObservable(
  307. OnNext(210, 1),
  308. OnNext(210, 2)
  309. );
  310. var results = scheduler.Start(() =>
  311. xs.ObserveOn(scheduler)
  312. );
  313. results.Messages.AssertEqual(
  314. OnNext(211, 1),
  315. OnNext(212, 2)
  316. );
  317. xs.Subscriptions.AssertEqual(
  318. Subscribe(200, 1000)
  319. );
  320. }
  321. [Fact]
  322. public void ObserveOn_Scheduler_OnNextThrows()
  323. {
  324. var e = new ManualResetEvent(false);
  325. var scheduler = new MyScheduler(e);
  326. Observable.Range(0, 10, Scheduler.Default).ObserveOn(scheduler).Subscribe(
  327. x =>
  328. {
  329. if (x == 5)
  330. {
  331. throw new Exception();
  332. }
  333. }
  334. );
  335. e.WaitOne();
  336. Assert.NotNull(scheduler._exception);
  337. }
  338. private class MyScheduler : IScheduler
  339. {
  340. internal Exception _exception;
  341. private ManualResetEvent _evt;
  342. public MyScheduler(ManualResetEvent e)
  343. {
  344. _evt = e;
  345. }
  346. public DateTimeOffset Now
  347. {
  348. get { throw new NotImplementedException(); }
  349. }
  350. public IDisposable Schedule<TState>(TState state, Func<IScheduler, TState, IDisposable> action)
  351. {
  352. try
  353. {
  354. return action(this, state);
  355. }
  356. catch (Exception ex)
  357. {
  358. _exception = ex;
  359. _evt.Set();
  360. return Disposable.Empty;
  361. }
  362. }
  363. public IDisposable Schedule<TState>(TState state, TimeSpan dueTime, Func<IScheduler, TState, IDisposable> action)
  364. {
  365. throw new NotImplementedException();
  366. }
  367. public IDisposable Schedule<TState>(TState state, DateTimeOffset dueTime, Func<IScheduler, TState, IDisposable> action)
  368. {
  369. throw new NotImplementedException();
  370. }
  371. }
  372. #if !NO_PERF
  373. [Fact]
  374. public void ObserveOn_LongRunning_Simple()
  375. {
  376. var started = default(ManualResetEvent);
  377. var stopped = default(ManualResetEvent);
  378. var scheduler = new TestLongRunningScheduler(e => started = e, e => stopped = e);
  379. var s = new Subject<int>();
  380. var end = new ManualResetEvent(false);
  381. var lst = new List<int>();
  382. s.ObserveOn(scheduler).Subscribe(lst.Add, () => end.Set());
  383. s.OnNext(1);
  384. s.OnNext(2);
  385. s.OnNext(3);
  386. s.OnCompleted();
  387. end.WaitOne();
  388. Assert.True(lst.SequenceEqual(new[] { 1, 2, 3 }));
  389. }
  390. [Fact]
  391. public void ObserveOn_LongRunning_Error()
  392. {
  393. var started = default(ManualResetEvent);
  394. var stopped = default(ManualResetEvent);
  395. var scheduler = new TestLongRunningScheduler(e => started = e, e => stopped = e);
  396. var s = new Subject<int>();
  397. var end = new ManualResetEvent(false);
  398. var err = default(Exception);
  399. s.ObserveOn(scheduler).Subscribe(_ => { }, ex => { err = ex; end.Set(); });
  400. s.OnNext(1);
  401. s.OnNext(2);
  402. s.OnNext(3);
  403. var ex_ = new Exception();
  404. s.OnError(ex_);
  405. end.WaitOne();
  406. Assert.Same(ex_, err);
  407. }
  408. #if !NO_THREAD
  409. [Fact]
  410. public void ObserveOn_LongRunning_TimeVariance()
  411. {
  412. var started = default(ManualResetEvent);
  413. var stopped = default(ManualResetEvent);
  414. var scheduler = new TestLongRunningScheduler(e => started = e, e => stopped = e);
  415. var s = new Subject<int>();
  416. var end = new ManualResetEvent(false);
  417. s.ObserveOn(scheduler).Subscribe(_ => { }, () => end.Set());
  418. s.OnNext(1); // Ensure active
  419. started.WaitOne();
  420. Thread.Sleep(100); // Try to enter the dispatcher event wait state
  421. for (var i = 0; i < 1000; i++)
  422. {
  423. if (i % 100 == 0)
  424. {
  425. Thread.Sleep(10);
  426. }
  427. s.OnNext(i);
  428. }
  429. s.OnCompleted();
  430. end.WaitOne();
  431. }
  432. #endif
  433. [Fact]
  434. public void ObserveOn_LongRunning_HoldUpDuringDispatchAndFail()
  435. {
  436. var started = default(ManualResetEvent);
  437. var stopped = default(ManualResetEvent);
  438. var scheduler = new TestLongRunningScheduler(e => started = e, e => stopped = e);
  439. var s = new Subject<int>();
  440. var onNext = new ManualResetEvent(false);
  441. var resume = new ManualResetEvent(false);
  442. var lst = new List<int>();
  443. var err = default(Exception);
  444. var end = new ManualResetEvent(false);
  445. s.ObserveOn(scheduler).Subscribe(x => { lst.Add(x); onNext.Set(); resume.WaitOne(); }, ex_ => { err = ex_; end.Set(); });
  446. s.OnNext(1);
  447. onNext.WaitOne();
  448. s.OnNext(2);
  449. s.OnNext(3);
  450. var ex = new Exception();
  451. s.OnError(ex);
  452. resume.Set();
  453. end.WaitOne();
  454. Assert.True(lst.SequenceEqual(new[] { 1, 2, 3 }));
  455. Assert.Same(ex, err);
  456. }
  457. [Fact]
  458. public void ObserveOn_LongRunning_Cancel()
  459. {
  460. var started = default(ManualResetEvent);
  461. var stopped = default(ManualResetEvent);
  462. var scheduler = new TestLongRunningScheduler(e => started = e, e => stopped = e);
  463. var s = new Subject<int>();
  464. var lst = new List<int>();
  465. var end = new ManualResetEvent(false);
  466. var running = new ManualResetEvent(false);
  467. var d = s.ObserveOn(scheduler).Subscribe(x => { lst.Add(x); running.Set(); });
  468. s.OnNext(0);
  469. started.WaitOne();
  470. s.OnNext(1);
  471. s.OnNext(2);
  472. s.OnNext(3);
  473. running.WaitOne();
  474. d.Dispose();
  475. stopped.WaitOne();
  476. s.OnNext(4);
  477. Assert.True(lst.Count > 0 && !lst.Contains(4));
  478. }
  479. [Fact]
  480. public void ObserveOn_LongRunning_OnNextThrows()
  481. {
  482. var started = default(ManualResetEvent);
  483. var stopped = default(ManualResetEvent);
  484. var exception = default(Exception);
  485. var scheduler = new TestLongRunningScheduler(e => started = e, e => stopped = e, ex => exception = ex);
  486. var s = new Subject<int>();
  487. var lst = new List<int>();
  488. var end = new ManualResetEvent(false);
  489. var running = new ManualResetEvent(false);
  490. var d = s.ObserveOn(scheduler).Subscribe(x => { lst.Add(x); running.Set(); if (x == 3) { throw new Exception(); } });
  491. s.OnNext(0);
  492. started.WaitOne();
  493. s.OnNext(1);
  494. s.OnNext(2);
  495. s.OnNext(3);
  496. running.WaitOne();
  497. s.OnNext(4);
  498. stopped.WaitOne();
  499. Assert.NotNull(exception);
  500. }
  501. #endif
  502. [Fact]
  503. public void ObserveOn_SynchronizationContext_Simple()
  504. {
  505. var scheduler = new TestScheduler();
  506. var xs = scheduler.CreateHotObservable(
  507. OnNext(90, 1),
  508. OnNext(120, 2),
  509. OnNext(230, 3),
  510. OnNext(240, 4),
  511. OnNext(310, 5),
  512. OnNext(470, 6),
  513. OnCompleted<int>(530)
  514. );
  515. var results = scheduler.Start(() =>
  516. xs.ObserveOn(new MyCtx(scheduler))
  517. );
  518. results.Messages.AssertEqual(
  519. OnNext(231, 3),
  520. OnNext(241, 4),
  521. OnNext(311, 5),
  522. OnNext(471, 6),
  523. OnCompleted<int>(531)
  524. );
  525. xs.Subscriptions.AssertEqual(
  526. Subscribe(200, 531)
  527. );
  528. }
  529. [Fact]
  530. public void ObserveOn_EventLoop_Long()
  531. {
  532. var _scheduler1 = new EventLoopScheduler();
  533. var N = 1_000_000;
  534. var cde = new CountdownEvent(1);
  535. Observable.Range(1, N).ObserveOn(_scheduler1)
  536. .Subscribe(v => { }, () => cde.Signal());
  537. Assert.True(cde.Wait(5000), "Timeout!");
  538. }
  539. }
  540. internal class MyCtx : SynchronizationContext
  541. {
  542. private IScheduler _scheduler;
  543. public MyCtx(IScheduler scheduler)
  544. {
  545. _scheduler = scheduler;
  546. }
  547. public override void Post(SendOrPostCallback d, object state)
  548. {
  549. _scheduler.Schedule(state, (self, s) => { d(s); return Disposable.Empty; });
  550. }
  551. }
  552. }