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scheduler-unstable_mock.development.js 22KB

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  1. /** @license React v0.18.0
  2. * scheduler-unstable_mock.development.js
  3. *
  4. * Copyright (c) Facebook, Inc. and its affiliates.
  5. *
  6. * This source code is licensed under the MIT license found in the
  7. * LICENSE file in the root directory of this source tree.
  8. */
  9. 'use strict';
  10. if (process.env.NODE_ENV !== "production") {
  11. (function() {
  12. 'use strict';
  13. Object.defineProperty(exports, '__esModule', { value: true });
  14. var enableSchedulerDebugging = false;
  15. var enableProfiling = true;
  16. var currentTime = 0;
  17. var scheduledCallback = null;
  18. var scheduledTimeout = null;
  19. var timeoutTime = -1;
  20. var yieldedValues = null;
  21. var expectedNumberOfYields = -1;
  22. var didStop = false;
  23. var isFlushing = false;
  24. var needsPaint = false;
  25. var shouldYieldForPaint = false;
  26. function requestHostCallback(callback) {
  27. scheduledCallback = callback;
  28. }
  29. function requestHostTimeout(callback, ms) {
  30. scheduledTimeout = callback;
  31. timeoutTime = currentTime + ms;
  32. }
  33. function cancelHostTimeout() {
  34. scheduledTimeout = null;
  35. timeoutTime = -1;
  36. }
  37. function shouldYieldToHost() {
  38. if (expectedNumberOfYields !== -1 && yieldedValues !== null && yieldedValues.length >= expectedNumberOfYields || shouldYieldForPaint && needsPaint) {
  39. // We yielded at least as many values as expected. Stop flushing.
  40. didStop = true;
  41. return true;
  42. }
  43. return false;
  44. }
  45. function getCurrentTime() {
  46. return currentTime;
  47. }
  48. function forceFrameRate() {// No-op
  49. }
  50. // Should only be used via an assertion helper that inspects the yielded values.
  51. function unstable_flushNumberOfYields(count) {
  52. if (isFlushing) {
  53. throw new Error('Already flushing work.');
  54. }
  55. if (scheduledCallback !== null) {
  56. var cb = scheduledCallback;
  57. expectedNumberOfYields = count;
  58. isFlushing = true;
  59. try {
  60. var hasMoreWork = true;
  61. do {
  62. hasMoreWork = cb(true, currentTime);
  63. } while (hasMoreWork && !didStop);
  64. if (!hasMoreWork) {
  65. scheduledCallback = null;
  66. }
  67. } finally {
  68. expectedNumberOfYields = -1;
  69. didStop = false;
  70. isFlushing = false;
  71. }
  72. }
  73. }
  74. function unstable_flushUntilNextPaint() {
  75. if (isFlushing) {
  76. throw new Error('Already flushing work.');
  77. }
  78. if (scheduledCallback !== null) {
  79. var cb = scheduledCallback;
  80. shouldYieldForPaint = true;
  81. needsPaint = false;
  82. isFlushing = true;
  83. try {
  84. var hasMoreWork = true;
  85. do {
  86. hasMoreWork = cb(true, currentTime);
  87. } while (hasMoreWork && !didStop);
  88. if (!hasMoreWork) {
  89. scheduledCallback = null;
  90. }
  91. } finally {
  92. shouldYieldForPaint = false;
  93. didStop = false;
  94. isFlushing = false;
  95. }
  96. }
  97. }
  98. function unstable_flushExpired() {
  99. if (isFlushing) {
  100. throw new Error('Already flushing work.');
  101. }
  102. if (scheduledCallback !== null) {
  103. isFlushing = true;
  104. try {
  105. var hasMoreWork = scheduledCallback(false, currentTime);
  106. if (!hasMoreWork) {
  107. scheduledCallback = null;
  108. }
  109. } finally {
  110. isFlushing = false;
  111. }
  112. }
  113. }
  114. function unstable_flushAllWithoutAsserting() {
  115. // Returns false if no work was flushed.
  116. if (isFlushing) {
  117. throw new Error('Already flushing work.');
  118. }
  119. if (scheduledCallback !== null) {
  120. var cb = scheduledCallback;
  121. isFlushing = true;
  122. try {
  123. var hasMoreWork = true;
  124. do {
  125. hasMoreWork = cb(true, currentTime);
  126. } while (hasMoreWork);
  127. if (!hasMoreWork) {
  128. scheduledCallback = null;
  129. }
  130. return true;
  131. } finally {
  132. isFlushing = false;
  133. }
  134. } else {
  135. return false;
  136. }
  137. }
  138. function unstable_clearYields() {
  139. if (yieldedValues === null) {
  140. return [];
  141. }
  142. var values = yieldedValues;
  143. yieldedValues = null;
  144. return values;
  145. }
  146. function unstable_flushAll() {
  147. if (yieldedValues !== null) {
  148. throw new Error('Log is not empty. Assert on the log of yielded values before ' + 'flushing additional work.');
  149. }
  150. unstable_flushAllWithoutAsserting();
  151. if (yieldedValues !== null) {
  152. throw new Error('While flushing work, something yielded a value. Use an ' + 'assertion helper to assert on the log of yielded values, e.g. ' + 'expect(Scheduler).toFlushAndYield([...])');
  153. }
  154. }
  155. function unstable_yieldValue(value) {
  156. if (yieldedValues === null) {
  157. yieldedValues = [value];
  158. } else {
  159. yieldedValues.push(value);
  160. }
  161. }
  162. function unstable_advanceTime(ms) {
  163. currentTime += ms;
  164. if (!isFlushing) {
  165. if (scheduledTimeout !== null && timeoutTime <= currentTime) {
  166. scheduledTimeout(currentTime);
  167. timeoutTime = -1;
  168. scheduledTimeout = null;
  169. }
  170. unstable_flushExpired();
  171. }
  172. }
  173. function requestPaint() {
  174. needsPaint = true;
  175. }
  176. function push(heap, node) {
  177. var index = heap.length;
  178. heap.push(node);
  179. siftUp(heap, node, index);
  180. }
  181. function peek(heap) {
  182. var first = heap[0];
  183. return first === undefined ? null : first;
  184. }
  185. function pop(heap) {
  186. var first = heap[0];
  187. if (first !== undefined) {
  188. var last = heap.pop();
  189. if (last !== first) {
  190. heap[0] = last;
  191. siftDown(heap, last, 0);
  192. }
  193. return first;
  194. } else {
  195. return null;
  196. }
  197. }
  198. function siftUp(heap, node, i) {
  199. var index = i;
  200. while (true) {
  201. var parentIndex = Math.floor((index - 1) / 2);
  202. var parent = heap[parentIndex];
  203. if (parent !== undefined && compare(parent, node) > 0) {
  204. // The parent is larger. Swap positions.
  205. heap[parentIndex] = node;
  206. heap[index] = parent;
  207. index = parentIndex;
  208. } else {
  209. // The parent is smaller. Exit.
  210. return;
  211. }
  212. }
  213. }
  214. function siftDown(heap, node, i) {
  215. var index = i;
  216. var length = heap.length;
  217. while (index < length) {
  218. var leftIndex = (index + 1) * 2 - 1;
  219. var left = heap[leftIndex];
  220. var rightIndex = leftIndex + 1;
  221. var right = heap[rightIndex]; // If the left or right node is smaller, swap with the smaller of those.
  222. if (left !== undefined && compare(left, node) < 0) {
  223. if (right !== undefined && compare(right, left) < 0) {
  224. heap[index] = right;
  225. heap[rightIndex] = node;
  226. index = rightIndex;
  227. } else {
  228. heap[index] = left;
  229. heap[leftIndex] = node;
  230. index = leftIndex;
  231. }
  232. } else if (right !== undefined && compare(right, node) < 0) {
  233. heap[index] = right;
  234. heap[rightIndex] = node;
  235. index = rightIndex;
  236. } else {
  237. // Neither child is smaller. Exit.
  238. return;
  239. }
  240. }
  241. }
  242. function compare(a, b) {
  243. // Compare sort index first, then task id.
  244. var diff = a.sortIndex - b.sortIndex;
  245. return diff !== 0 ? diff : a.id - b.id;
  246. }
  247. // TODO: Use symbols?
  248. var NoPriority = 0;
  249. var ImmediatePriority = 1;
  250. var UserBlockingPriority = 2;
  251. var NormalPriority = 3;
  252. var LowPriority = 4;
  253. var IdlePriority = 5;
  254. var runIdCounter = 0;
  255. var mainThreadIdCounter = 0;
  256. var profilingStateSize = 4;
  257. var sharedProfilingBuffer = enableProfiling ? // $FlowFixMe Flow doesn't know about SharedArrayBuffer
  258. typeof SharedArrayBuffer === 'function' ? new SharedArrayBuffer(profilingStateSize * Int32Array.BYTES_PER_ELEMENT) : // $FlowFixMe Flow doesn't know about ArrayBuffer
  259. typeof ArrayBuffer === 'function' ? new ArrayBuffer(profilingStateSize * Int32Array.BYTES_PER_ELEMENT) : null // Don't crash the init path on IE9
  260. : null;
  261. var profilingState = enableProfiling && sharedProfilingBuffer !== null ? new Int32Array(sharedProfilingBuffer) : []; // We can't read this but it helps save bytes for null checks
  262. var PRIORITY = 0;
  263. var CURRENT_TASK_ID = 1;
  264. var CURRENT_RUN_ID = 2;
  265. var QUEUE_SIZE = 3;
  266. if (enableProfiling) {
  267. profilingState[PRIORITY] = NoPriority; // This is maintained with a counter, because the size of the priority queue
  268. // array might include canceled tasks.
  269. profilingState[QUEUE_SIZE] = 0;
  270. profilingState[CURRENT_TASK_ID] = 0;
  271. } // Bytes per element is 4
  272. var INITIAL_EVENT_LOG_SIZE = 131072;
  273. var MAX_EVENT_LOG_SIZE = 524288; // Equivalent to 2 megabytes
  274. var eventLogSize = 0;
  275. var eventLogBuffer = null;
  276. var eventLog = null;
  277. var eventLogIndex = 0;
  278. var TaskStartEvent = 1;
  279. var TaskCompleteEvent = 2;
  280. var TaskErrorEvent = 3;
  281. var TaskCancelEvent = 4;
  282. var TaskRunEvent = 5;
  283. var TaskYieldEvent = 6;
  284. var SchedulerSuspendEvent = 7;
  285. var SchedulerResumeEvent = 8;
  286. function logEvent(entries) {
  287. if (eventLog !== null) {
  288. var offset = eventLogIndex;
  289. eventLogIndex += entries.length;
  290. if (eventLogIndex + 1 > eventLogSize) {
  291. eventLogSize *= 2;
  292. if (eventLogSize > MAX_EVENT_LOG_SIZE) {
  293. console.error("Scheduler Profiling: Event log exceeded maximum size. Don't " + 'forget to call `stopLoggingProfilingEvents()`.');
  294. stopLoggingProfilingEvents();
  295. return;
  296. }
  297. var newEventLog = new Int32Array(eventLogSize * 4);
  298. newEventLog.set(eventLog);
  299. eventLogBuffer = newEventLog.buffer;
  300. eventLog = newEventLog;
  301. }
  302. eventLog.set(entries, offset);
  303. }
  304. }
  305. function startLoggingProfilingEvents() {
  306. eventLogSize = INITIAL_EVENT_LOG_SIZE;
  307. eventLogBuffer = new ArrayBuffer(eventLogSize * 4);
  308. eventLog = new Int32Array(eventLogBuffer);
  309. eventLogIndex = 0;
  310. }
  311. function stopLoggingProfilingEvents() {
  312. var buffer = eventLogBuffer;
  313. eventLogSize = 0;
  314. eventLogBuffer = null;
  315. eventLog = null;
  316. eventLogIndex = 0;
  317. return buffer;
  318. }
  319. function markTaskStart(task, ms) {
  320. if (enableProfiling) {
  321. profilingState[QUEUE_SIZE]++;
  322. if (eventLog !== null) {
  323. // performance.now returns a float, representing milliseconds. When the
  324. // event is logged, it's coerced to an int. Convert to microseconds to
  325. // maintain extra degrees of precision.
  326. logEvent([TaskStartEvent, ms * 1000, task.id, task.priorityLevel]);
  327. }
  328. }
  329. }
  330. function markTaskCompleted(task, ms) {
  331. if (enableProfiling) {
  332. profilingState[PRIORITY] = NoPriority;
  333. profilingState[CURRENT_TASK_ID] = 0;
  334. profilingState[QUEUE_SIZE]--;
  335. if (eventLog !== null) {
  336. logEvent([TaskCompleteEvent, ms * 1000, task.id]);
  337. }
  338. }
  339. }
  340. function markTaskCanceled(task, ms) {
  341. if (enableProfiling) {
  342. profilingState[QUEUE_SIZE]--;
  343. if (eventLog !== null) {
  344. logEvent([TaskCancelEvent, ms * 1000, task.id]);
  345. }
  346. }
  347. }
  348. function markTaskErrored(task, ms) {
  349. if (enableProfiling) {
  350. profilingState[PRIORITY] = NoPriority;
  351. profilingState[CURRENT_TASK_ID] = 0;
  352. profilingState[QUEUE_SIZE]--;
  353. if (eventLog !== null) {
  354. logEvent([TaskErrorEvent, ms * 1000, task.id]);
  355. }
  356. }
  357. }
  358. function markTaskRun(task, ms) {
  359. if (enableProfiling) {
  360. runIdCounter++;
  361. profilingState[PRIORITY] = task.priorityLevel;
  362. profilingState[CURRENT_TASK_ID] = task.id;
  363. profilingState[CURRENT_RUN_ID] = runIdCounter;
  364. if (eventLog !== null) {
  365. logEvent([TaskRunEvent, ms * 1000, task.id, runIdCounter]);
  366. }
  367. }
  368. }
  369. function markTaskYield(task, ms) {
  370. if (enableProfiling) {
  371. profilingState[PRIORITY] = NoPriority;
  372. profilingState[CURRENT_TASK_ID] = 0;
  373. profilingState[CURRENT_RUN_ID] = 0;
  374. if (eventLog !== null) {
  375. logEvent([TaskYieldEvent, ms * 1000, task.id, runIdCounter]);
  376. }
  377. }
  378. }
  379. function markSchedulerSuspended(ms) {
  380. if (enableProfiling) {
  381. mainThreadIdCounter++;
  382. if (eventLog !== null) {
  383. logEvent([SchedulerSuspendEvent, ms * 1000, mainThreadIdCounter]);
  384. }
  385. }
  386. }
  387. function markSchedulerUnsuspended(ms) {
  388. if (enableProfiling) {
  389. if (eventLog !== null) {
  390. logEvent([SchedulerResumeEvent, ms * 1000, mainThreadIdCounter]);
  391. }
  392. }
  393. }
  394. /* eslint-disable no-var */
  395. // Math.pow(2, 30) - 1
  396. // 0b111111111111111111111111111111
  397. var maxSigned31BitInt = 1073741823; // Times out immediately
  398. var IMMEDIATE_PRIORITY_TIMEOUT = -1; // Eventually times out
  399. var USER_BLOCKING_PRIORITY = 250;
  400. var NORMAL_PRIORITY_TIMEOUT = 5000;
  401. var LOW_PRIORITY_TIMEOUT = 10000; // Never times out
  402. var IDLE_PRIORITY = maxSigned31BitInt; // Tasks are stored on a min heap
  403. var taskQueue = [];
  404. var timerQueue = []; // Incrementing id counter. Used to maintain insertion order.
  405. var taskIdCounter = 1; // Pausing the scheduler is useful for debugging.
  406. var isSchedulerPaused = false;
  407. var currentTask = null;
  408. var currentPriorityLevel = NormalPriority; // This is set while performing work, to prevent re-entrancy.
  409. var isPerformingWork = false;
  410. var isHostCallbackScheduled = false;
  411. var isHostTimeoutScheduled = false;
  412. function advanceTimers(currentTime) {
  413. // Check for tasks that are no longer delayed and add them to the queue.
  414. var timer = peek(timerQueue);
  415. while (timer !== null) {
  416. if (timer.callback === null) {
  417. // Timer was cancelled.
  418. pop(timerQueue);
  419. } else if (timer.startTime <= currentTime) {
  420. // Timer fired. Transfer to the task queue.
  421. pop(timerQueue);
  422. timer.sortIndex = timer.expirationTime;
  423. push(taskQueue, timer);
  424. if (enableProfiling) {
  425. markTaskStart(timer, currentTime);
  426. timer.isQueued = true;
  427. }
  428. } else {
  429. // Remaining timers are pending.
  430. return;
  431. }
  432. timer = peek(timerQueue);
  433. }
  434. }
  435. function handleTimeout(currentTime) {
  436. isHostTimeoutScheduled = false;
  437. advanceTimers(currentTime);
  438. if (!isHostCallbackScheduled) {
  439. if (peek(taskQueue) !== null) {
  440. isHostCallbackScheduled = true;
  441. requestHostCallback(flushWork);
  442. } else {
  443. var firstTimer = peek(timerQueue);
  444. if (firstTimer !== null) {
  445. requestHostTimeout(handleTimeout, firstTimer.startTime - currentTime);
  446. }
  447. }
  448. }
  449. }
  450. function flushWork(hasTimeRemaining, initialTime) {
  451. if (enableProfiling) {
  452. markSchedulerUnsuspended(initialTime);
  453. } // We'll need a host callback the next time work is scheduled.
  454. isHostCallbackScheduled = false;
  455. if (isHostTimeoutScheduled) {
  456. // We scheduled a timeout but it's no longer needed. Cancel it.
  457. isHostTimeoutScheduled = false;
  458. cancelHostTimeout();
  459. }
  460. isPerformingWork = true;
  461. var previousPriorityLevel = currentPriorityLevel;
  462. try {
  463. if (enableProfiling) {
  464. try {
  465. return workLoop(hasTimeRemaining, initialTime);
  466. } catch (error) {
  467. if (currentTask !== null) {
  468. var currentTime = getCurrentTime();
  469. markTaskErrored(currentTask, currentTime);
  470. currentTask.isQueued = false;
  471. }
  472. throw error;
  473. }
  474. } else {
  475. // No catch in prod codepath.
  476. return workLoop(hasTimeRemaining, initialTime);
  477. }
  478. } finally {
  479. currentTask = null;
  480. currentPriorityLevel = previousPriorityLevel;
  481. isPerformingWork = false;
  482. if (enableProfiling) {
  483. var _currentTime = getCurrentTime();
  484. markSchedulerSuspended(_currentTime);
  485. }
  486. }
  487. }
  488. function workLoop(hasTimeRemaining, initialTime) {
  489. var currentTime = initialTime;
  490. advanceTimers(currentTime);
  491. currentTask = peek(taskQueue);
  492. while (currentTask !== null && !(enableSchedulerDebugging && isSchedulerPaused)) {
  493. if (currentTask.expirationTime > currentTime && (!hasTimeRemaining || shouldYieldToHost())) {
  494. // This currentTask hasn't expired, and we've reached the deadline.
  495. break;
  496. }
  497. var callback = currentTask.callback;
  498. if (callback !== null) {
  499. currentTask.callback = null;
  500. currentPriorityLevel = currentTask.priorityLevel;
  501. var didUserCallbackTimeout = currentTask.expirationTime <= currentTime;
  502. markTaskRun(currentTask, currentTime);
  503. var continuationCallback = callback(didUserCallbackTimeout);
  504. currentTime = getCurrentTime();
  505. if (typeof continuationCallback === 'function') {
  506. currentTask.callback = continuationCallback;
  507. markTaskYield(currentTask, currentTime);
  508. } else {
  509. if (enableProfiling) {
  510. markTaskCompleted(currentTask, currentTime);
  511. currentTask.isQueued = false;
  512. }
  513. if (currentTask === peek(taskQueue)) {
  514. pop(taskQueue);
  515. }
  516. }
  517. advanceTimers(currentTime);
  518. } else {
  519. pop(taskQueue);
  520. }
  521. currentTask = peek(taskQueue);
  522. } // Return whether there's additional work
  523. if (currentTask !== null) {
  524. return true;
  525. } else {
  526. var firstTimer = peek(timerQueue);
  527. if (firstTimer !== null) {
  528. requestHostTimeout(handleTimeout, firstTimer.startTime - currentTime);
  529. }
  530. return false;
  531. }
  532. }
  533. function unstable_runWithPriority(priorityLevel, eventHandler) {
  534. switch (priorityLevel) {
  535. case ImmediatePriority:
  536. case UserBlockingPriority:
  537. case NormalPriority:
  538. case LowPriority:
  539. case IdlePriority:
  540. break;
  541. default:
  542. priorityLevel = NormalPriority;
  543. }
  544. var previousPriorityLevel = currentPriorityLevel;
  545. currentPriorityLevel = priorityLevel;
  546. try {
  547. return eventHandler();
  548. } finally {
  549. currentPriorityLevel = previousPriorityLevel;
  550. }
  551. }
  552. function unstable_next(eventHandler) {
  553. var priorityLevel;
  554. switch (currentPriorityLevel) {
  555. case ImmediatePriority:
  556. case UserBlockingPriority:
  557. case NormalPriority:
  558. // Shift down to normal priority
  559. priorityLevel = NormalPriority;
  560. break;
  561. default:
  562. // Anything lower than normal priority should remain at the current level.
  563. priorityLevel = currentPriorityLevel;
  564. break;
  565. }
  566. var previousPriorityLevel = currentPriorityLevel;
  567. currentPriorityLevel = priorityLevel;
  568. try {
  569. return eventHandler();
  570. } finally {
  571. currentPriorityLevel = previousPriorityLevel;
  572. }
  573. }
  574. function unstable_wrapCallback(callback) {
  575. var parentPriorityLevel = currentPriorityLevel;
  576. return function () {
  577. // This is a fork of runWithPriority, inlined for performance.
  578. var previousPriorityLevel = currentPriorityLevel;
  579. currentPriorityLevel = parentPriorityLevel;
  580. try {
  581. return callback.apply(this, arguments);
  582. } finally {
  583. currentPriorityLevel = previousPriorityLevel;
  584. }
  585. };
  586. }
  587. function timeoutForPriorityLevel(priorityLevel) {
  588. switch (priorityLevel) {
  589. case ImmediatePriority:
  590. return IMMEDIATE_PRIORITY_TIMEOUT;
  591. case UserBlockingPriority:
  592. return USER_BLOCKING_PRIORITY;
  593. case IdlePriority:
  594. return IDLE_PRIORITY;
  595. case LowPriority:
  596. return LOW_PRIORITY_TIMEOUT;
  597. case NormalPriority:
  598. default:
  599. return NORMAL_PRIORITY_TIMEOUT;
  600. }
  601. }
  602. function unstable_scheduleCallback(priorityLevel, callback, options) {
  603. var currentTime = getCurrentTime();
  604. var startTime;
  605. var timeout;
  606. if (typeof options === 'object' && options !== null) {
  607. var delay = options.delay;
  608. if (typeof delay === 'number' && delay > 0) {
  609. startTime = currentTime + delay;
  610. } else {
  611. startTime = currentTime;
  612. }
  613. timeout = typeof options.timeout === 'number' ? options.timeout : timeoutForPriorityLevel(priorityLevel);
  614. } else {
  615. timeout = timeoutForPriorityLevel(priorityLevel);
  616. startTime = currentTime;
  617. }
  618. var expirationTime = startTime + timeout;
  619. var newTask = {
  620. id: taskIdCounter++,
  621. callback: callback,
  622. priorityLevel: priorityLevel,
  623. startTime: startTime,
  624. expirationTime: expirationTime,
  625. sortIndex: -1
  626. };
  627. if (enableProfiling) {
  628. newTask.isQueued = false;
  629. }
  630. if (startTime > currentTime) {
  631. // This is a delayed task.
  632. newTask.sortIndex = startTime;
  633. push(timerQueue, newTask);
  634. if (peek(taskQueue) === null && newTask === peek(timerQueue)) {
  635. // All tasks are delayed, and this is the task with the earliest delay.
  636. if (isHostTimeoutScheduled) {
  637. // Cancel an existing timeout.
  638. cancelHostTimeout();
  639. } else {
  640. isHostTimeoutScheduled = true;
  641. } // Schedule a timeout.
  642. requestHostTimeout(handleTimeout, startTime - currentTime);
  643. }
  644. } else {
  645. newTask.sortIndex = expirationTime;
  646. push(taskQueue, newTask);
  647. if (enableProfiling) {
  648. markTaskStart(newTask, currentTime);
  649. newTask.isQueued = true;
  650. } // Schedule a host callback, if needed. If we're already performing work,
  651. // wait until the next time we yield.
  652. if (!isHostCallbackScheduled && !isPerformingWork) {
  653. isHostCallbackScheduled = true;
  654. requestHostCallback(flushWork);
  655. }
  656. }
  657. return newTask;
  658. }
  659. function unstable_pauseExecution() {
  660. isSchedulerPaused = true;
  661. }
  662. function unstable_continueExecution() {
  663. isSchedulerPaused = false;
  664. if (!isHostCallbackScheduled && !isPerformingWork) {
  665. isHostCallbackScheduled = true;
  666. requestHostCallback(flushWork);
  667. }
  668. }
  669. function unstable_getFirstCallbackNode() {
  670. return peek(taskQueue);
  671. }
  672. function unstable_cancelCallback(task) {
  673. if (enableProfiling) {
  674. if (task.isQueued) {
  675. var currentTime = getCurrentTime();
  676. markTaskCanceled(task, currentTime);
  677. task.isQueued = false;
  678. }
  679. } // Null out the callback to indicate the task has been canceled. (Can't
  680. // remove from the queue because you can't remove arbitrary nodes from an
  681. // array based heap, only the first one.)
  682. task.callback = null;
  683. }
  684. function unstable_getCurrentPriorityLevel() {
  685. return currentPriorityLevel;
  686. }
  687. function unstable_shouldYield() {
  688. var currentTime = getCurrentTime();
  689. advanceTimers(currentTime);
  690. var firstTask = peek(taskQueue);
  691. return firstTask !== currentTask && currentTask !== null && firstTask !== null && firstTask.callback !== null && firstTask.startTime <= currentTime && firstTask.expirationTime < currentTask.expirationTime || shouldYieldToHost();
  692. }
  693. var unstable_requestPaint = requestPaint;
  694. var unstable_Profiling = enableProfiling ? {
  695. startLoggingProfilingEvents: startLoggingProfilingEvents,
  696. stopLoggingProfilingEvents: stopLoggingProfilingEvents,
  697. sharedProfilingBuffer: sharedProfilingBuffer
  698. } : null;
  699. exports.unstable_flushAllWithoutAsserting = unstable_flushAllWithoutAsserting;
  700. exports.unstable_flushNumberOfYields = unstable_flushNumberOfYields;
  701. exports.unstable_flushExpired = unstable_flushExpired;
  702. exports.unstable_clearYields = unstable_clearYields;
  703. exports.unstable_flushUntilNextPaint = unstable_flushUntilNextPaint;
  704. exports.unstable_flushAll = unstable_flushAll;
  705. exports.unstable_yieldValue = unstable_yieldValue;
  706. exports.unstable_advanceTime = unstable_advanceTime;
  707. exports.unstable_ImmediatePriority = ImmediatePriority;
  708. exports.unstable_UserBlockingPriority = UserBlockingPriority;
  709. exports.unstable_NormalPriority = NormalPriority;
  710. exports.unstable_IdlePriority = IdlePriority;
  711. exports.unstable_LowPriority = LowPriority;
  712. exports.unstable_runWithPriority = unstable_runWithPriority;
  713. exports.unstable_next = unstable_next;
  714. exports.unstable_scheduleCallback = unstable_scheduleCallback;
  715. exports.unstable_cancelCallback = unstable_cancelCallback;
  716. exports.unstable_wrapCallback = unstable_wrapCallback;
  717. exports.unstable_getCurrentPriorityLevel = unstable_getCurrentPriorityLevel;
  718. exports.unstable_shouldYield = unstable_shouldYield;
  719. exports.unstable_requestPaint = unstable_requestPaint;
  720. exports.unstable_continueExecution = unstable_continueExecution;
  721. exports.unstable_pauseExecution = unstable_pauseExecution;
  722. exports.unstable_getFirstCallbackNode = unstable_getFirstCallbackNode;
  723. exports.unstable_now = getCurrentTime;
  724. exports.unstable_forceFrameRate = forceFrameRate;
  725. exports.unstable_Profiling = unstable_Profiling;
  726. })();
  727. }