mirror of
https://github.com/roytam1/palemoon27.git
synced 2026-05-27 13:28:42 +00:00
2e02aab9a7
- Bug 1198458: Webrtc updated to branch 43; pull made 2015-09-29 09:00AM PDT rs=jesup (c45a789c99) - Bug 1159489: WebRTC bitrate limits for video depend on input resolution and framerate r=pkerr (e3691a247c) - Bug 1132318: merge SelectSendFrameRate with SelectSendResolution r=bwc (bcc232994c) - Bug 1182289: Clean up dispatches in WebrtcGmpVideoEncoder/Decoder. r=jesup, a=abillings (b5e2030b07) - Bug 1167306: Fix preprocessor goof that disabled the load manager and some preference handling. r=jesup (0cc0dee688) - Bug 1198458: Rollup of changes previously applied to media/webrtc/trunk/webrtc and fixes to those rs=jesup r=froyd,jib,bwc,jesup,gcp,sotaro,pkerr,pehrsons (fe384d5e63) - Bug 1198458 Unbreak build on BSDs by fixing non-POSIX thread includes/usage. r=jesup (4ad8e88c17) - Bug 1198458: Fix typo in merges in OMX rs=bustage,kwierso on a CLOSED TREE (211b3b1a3f) - Bug 1226146: fix sndio audio_device backend after webrtc 43 landing in bug 1198458 r=jesup NPOTB (2b10ba3e86) - Bug 1231106 - Make BSDs fall-through to ASSERT as well. r=jesup (775d4fedae) - Bug 1231109 - Drop FreeBSD checks for unsupported versions. r=jld r=jesup (3cd55166fd) - Bug 1161079: Fix VideoCodecStats to allow for collecting encoder and decoder stats r=jib (1f98af8939) - add limits to fix gcc12 compile (d78098980f) - Bug 1193495 - Part 1: Test case. r=mt (add2ded009) - Bug 1193495 - Part 2: Maintain clones of supported codecs for each level, and do necessary checking to prevent payload-type clashes. r=mt (d45a24dba7) - Bug 1191301 - Re-enable the use of media.navigator.video.use_tmmbr pref. r=bwc (d2723821d4) - Bug 1094447 - Use UDP/TLS/RTP/SAVPF for audio/video m-lines. r=drno (e8e1dafd0a) - Bug 1173599 - a=imageattr support. r=mt (612fc343d7) - Bug 1173601 - Add a=simulcast support. r=mt (7c5303bacb) - Bug 1203246 - Factor track negotiation stuff out of JsepSessionImpl, and other simplification. r=mt (b71c809b78) - Bug 1212907 - a=rid support. r=mt (7479ab6984) - Bug 1212908 - Update a=simulcast to match new grammar in 03 draft. r=mt (e205d3b0dd) - Bug 1192390 - Part 1: Lay architectural groundwork for simulcast negotiation. r=mt r=jesup (e75dda3139) - Bug 1223160 - added SDP parser file reader. r=bwc (6752195791) - Bug 1192390 - Part 2: Simulcast and RID negotiation. r=mt (51b151ef52) - fix some warnings stuff (fed8f513a8) - Bug 1161317: Fix bug where sendonly video RTCP would be treated as outgoing RTP r=jesup (e24371fbe0) - Bug 1226347: Import cherry-pick of AEC changes from 43->48 (delay-agnostic AEC). r=pkerr (d3a074f4d8) - Bug 1226347 - Part 2: Allow control of AEC via prefs. r=rjesup (58f142005b) - Bug 1228788 - Force QT device release to happen on the main thread. r=jesup (885e9d1236) - Bug 1162218 - Make worker idle thread timeouts more strict, r=baku. (a7d2106987) - No bug. Remove a stray debugging printf of mine. r=me. (77b84cda62) - minor (22564a666e) - Bug 1224237 - Remove the !baseURL check from ServiceWorkerContainer::Register;r=bkelly (8b13c4dc49) - Bug 1196157 - Marks left by performance marks should print the domain of the application and not the complete URL. r=baku (d133708d8d) - Bug 1211970 - "Muted errors in workers are not correctly reported to the console". r=bz (42c15275f4) - Bug 1208559 - Tests. r=bholley (e16a30caa5) - Bug 1045891 - Tests for child-src r=ckerschb (90aa832cd0) - Bug 1223647: CSP erroneously inherited into dedicated workers. r=ckerschb (6fd8d9bfc9) - Bug 1218433 - Use AsyncOpen2 in dom/workers/ScriptLoader.cpp - part 1, r=sicking (a7e9187e52) - Bug 1218433 - Use AsyncOpen2 in dom/workers/ScriptLoader.cpp - part 3 - WPT, r=sicking, r=Ms2ger (e5e3c69f6a) - Bug 1218433 - Use AsyncOpen2 in dom/workers/ScriptLoader.cpp - part 2 - WPT, r=sicking, r=Ms2ger (1dd2d871ec) - Bug 1211967 - Fix how we report errors when loading a worker from a data url, r=bz (8517368daa) - nsRefPtr - RefPtr (34bb404530) - Bug 1231055 - Fix tags usage in PluginProvider. r=dtownsend (870b0e71eb) - bug 1228792 - remove use of array comprehensions r=mossop (3e31f18e83) - bug 1228792 - use standard version of catch r=mossop (f306557ca2) - Bug 1228009. Geolocation code needs to handle failures on its ErrorResults. r=smaug (8778a9e264) - Bug 1228707. Add a away to call Web IDL callbacks while ignoring any errors from them, and use it in a few places. r=smaug (a414e0d711) - Bug 1201692. Add a fast path to ExplicitChildIterator::Seek for the common case of seeking an actual DOM child of the parent node. r=wchen (01234ad43a) - Bug 1202186 - use nsISensitiveInfoHidden for console methods, r=baku (888b4506ad) - Bug 1223774 - Console API should check if the outer window exists, r=smaug (e0d7f408dc) - Bug 1200551 - Handle multiple %c formatters without a string between them by using only the last one for styling;r=baku,r=past (463550117a) - Bug 1213719 - Back out bug 1170314 for duplicate functionality. r=smaug (ae74e0ad52) - Bug 1154076 followup: Mark ConsoleRunnable::Run() as override. rs=ehsan (337181faab) - Bug 1127703 - "Support iteration on FormData" r=bz (4ddd461e99) - Bug 1230509 - BlobImplFile should return false in IsDateUnknown and IsSizeUnknown, r=bz (1079bfe2ab) - Bug 1198095 - FileReader should dispatch an error if the blob changes size in the meantime the read is executed, r=bz (263993a172) - Bug 1231094 - patch 1 - nsDOMFileReader to mozilla::dom::FileReader, r=sicking (aa8c3ff373) - Bug 1231094 - patch 2 - Get rid of FileIOObject, r=sicking (44af1e17dd) - Bug 1231100 - Get rid of nsIDOMFileReader - patch 1, r=sicking (c909d9d793) - Bug 1231100 - Get rid of nsIDOMFileReader - patch 2, r=sicking (4d3da1c566) - Bug 1161183: Don't show the add-on version in the list view. r=dao (002d8f6fb1) - Bug 1229519: Fix toolkit/modules to pass eslint checks. r=mak (8bbd9c8fe0)
393 lines
9.9 KiB
JavaScript
393 lines
9.9 KiB
JavaScript
/* Any copyright is dedicated to the Public Domain.
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http://creativecommons.org/publicdomain/zero/1.0/ */
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/**
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* This file tests the DeferredTask.jsm module.
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*/
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////////////////////////////////////////////////////////////////////////////////
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/// Globals
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const { classes: Cc, interfaces: Ci, utils: Cu, results: Cr } = Components;
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Cu.import("resource://gre/modules/XPCOMUtils.jsm");
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XPCOMUtils.defineLazyModuleGetter(this, "DeferredTask",
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"resource://gre/modules/DeferredTask.jsm");
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XPCOMUtils.defineLazyModuleGetter(this, "Promise",
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"resource://gre/modules/Promise.jsm");
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/**
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* Due to the nature of this module, most of the tests are time-dependent. All
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* the timeouts are designed to occur at multiples of this granularity value,
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* in milliseconds, that should be high enough to prevent intermittent failures,
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* but low enough to prevent an excessive overall test execution time.
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*/
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const T = 100;
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/**
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* Waits for the specified timeout before resolving the returned promise.
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*/
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function promiseTimeout(aTimeoutMs)
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{
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let deferred = Promise.defer();
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do_timeout(aTimeoutMs, deferred.resolve);
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return deferred.promise;
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}
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function run_test()
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{
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run_next_test();
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}
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////////////////////////////////////////////////////////////////////////////////
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//// Tests
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/**
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* Creates a simple DeferredTask and executes it once.
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*/
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add_test(function test_arm_simple()
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{
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new DeferredTask(run_next_test, 10).arm();
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});
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/**
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* Checks that the delay set for the task is respected.
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*/
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add_test(function test_arm_delay_respected()
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{
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let executed1 = false;
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let executed2 = false;
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new DeferredTask(function () {
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executed1 = true;
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do_check_false(executed2);
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}, 1*T).arm();
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new DeferredTask(function () {
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executed2 = true;
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do_check_true(executed1);
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run_next_test();
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}, 2*T).arm();
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});
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/**
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* Checks that calling "arm" again does not introduce further delay.
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*/
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add_test(function test_arm_delay_notrestarted()
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{
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let executed = false;
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// Create a task that will run later.
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let deferredTask = new DeferredTask(() => { executed = true; }, 4*T);
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deferredTask.arm();
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// Before the task starts, call "arm" again.
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do_timeout(2*T, () => deferredTask.arm());
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// The "arm" call should not have introduced further delays.
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do_timeout(5*T, function () {
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do_check_true(executed);
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run_next_test();
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});
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});
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/**
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* Checks that a task runs only once when armed multiple times synchronously.
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*/
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add_test(function test_arm_coalesced()
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{
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let executed = false;
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let deferredTask = new DeferredTask(function () {
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do_check_false(executed);
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executed = true;
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run_next_test();
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}, 50);
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deferredTask.arm();
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deferredTask.arm();
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});
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/**
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* Checks that a task runs only once when armed multiple times synchronously,
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* even when it has been created with a delay of zero milliseconds.
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*/
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add_test(function test_arm_coalesced_nodelay()
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{
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let executed = false;
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let deferredTask = new DeferredTask(function () {
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do_check_false(executed);
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executed = true;
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run_next_test();
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}, 0);
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deferredTask.arm();
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deferredTask.arm();
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});
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/**
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* Checks that a task can be armed again while running.
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*/
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add_test(function test_arm_recursive()
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{
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let executed = false;
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let deferredTask = new DeferredTask(function () {
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if (!executed) {
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executed = true;
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deferredTask.arm();
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} else {
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run_next_test();
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}
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}, 50);
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deferredTask.arm();
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});
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/**
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* Checks that calling "arm" while an asynchronous task is running waits until
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* the task is finished before restarting the delay.
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*/
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add_test(function test_arm_async()
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{
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let finishedExecution = false;
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let finishedExecutionAgain = false;
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// Create a task that will run later.
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let deferredTask = new DeferredTask(function* () {
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yield promiseTimeout(4*T);
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if (!finishedExecution) {
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finishedExecution = true;
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} else if (!finishedExecutionAgain) {
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finishedExecutionAgain = true;
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}
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}, 2*T);
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deferredTask.arm();
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// While the task is running, call "arm" again. This will result in a wait
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// of 2*T until the task finishes, then another 2*T for the normal task delay
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// specified on construction.
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do_timeout(4*T, function () {
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do_check_true(deferredTask.isRunning);
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do_check_false(finishedExecution);
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deferredTask.arm();
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});
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// This will fail in case the task was started without waiting 2*T after it
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// has finished.
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do_timeout(7*T, function () {
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do_check_false(deferredTask.isRunning);
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do_check_true(finishedExecution);
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});
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// This is in the middle of the second execution.
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do_timeout(10*T, function () {
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do_check_true(deferredTask.isRunning);
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do_check_false(finishedExecutionAgain);
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});
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// Wait enough time to verify that the task was executed as expected.
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do_timeout(13*T, function () {
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do_check_false(deferredTask.isRunning);
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do_check_true(finishedExecutionAgain);
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run_next_test();
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});
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});
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/**
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* Checks that an armed task can be disarmed.
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*/
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add_test(function test_disarm()
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{
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// Create a task that will run later.
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let deferredTask = new DeferredTask(function () {
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do_throw("This task should not run.");
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}, 2*T);
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deferredTask.arm();
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// Disable execution later, but before the task starts.
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do_timeout(1*T, () => deferredTask.disarm());
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// Wait enough time to verify that the task did not run.
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do_timeout(3*T, run_next_test);
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});
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/**
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* Checks that calling "disarm" allows the delay to be restarted.
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*/
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add_test(function test_disarm_delay_restarted()
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{
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let executed = false;
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let deferredTask = new DeferredTask(() => { executed = true; }, 4*T);
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deferredTask.arm();
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do_timeout(2*T, function () {
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deferredTask.disarm();
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deferredTask.arm();
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});
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do_timeout(5*T, function () {
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do_check_false(executed);
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});
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do_timeout(7*T, function () {
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do_check_true(executed);
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run_next_test();
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});
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});
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/**
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* Checks that calling "disarm" while an asynchronous task is running does not
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* prevent the task to finish.
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*/
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add_test(function test_disarm_async()
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{
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let finishedExecution = false;
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let deferredTask = new DeferredTask(function* () {
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deferredTask.arm();
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yield promiseTimeout(2*T);
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finishedExecution = true;
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}, 1*T);
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deferredTask.arm();
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do_timeout(2*T, function () {
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do_check_true(deferredTask.isRunning);
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do_check_true(deferredTask.isArmed);
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do_check_false(finishedExecution);
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deferredTask.disarm();
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});
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do_timeout(4*T, function () {
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do_check_false(deferredTask.isRunning);
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do_check_false(deferredTask.isArmed);
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do_check_true(finishedExecution);
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run_next_test();
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});
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});
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/**
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* Checks that calling "arm" immediately followed by "disarm" while an
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* asynchronous task is running does not cause it to run again.
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*/
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add_test(function test_disarm_immediate_async()
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{
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let executed = false;
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let deferredTask = new DeferredTask(function* () {
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do_check_false(executed);
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executed = true;
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yield promiseTimeout(2*T);
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}, 1*T);
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deferredTask.arm();
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do_timeout(2*T, function () {
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do_check_true(deferredTask.isRunning);
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do_check_false(deferredTask.isArmed);
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deferredTask.arm();
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deferredTask.disarm();
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});
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do_timeout(4*T, function () {
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do_check_true(executed);
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do_check_false(deferredTask.isRunning);
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do_check_false(deferredTask.isArmed);
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run_next_test();
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});
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});
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/**
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* Checks the isArmed and isRunning properties with a synchronous task.
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*/
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add_test(function test_isArmed_isRunning()
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{
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let deferredTask = new DeferredTask(function () {
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do_check_true(deferredTask.isRunning);
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do_check_false(deferredTask.isArmed);
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deferredTask.arm();
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do_check_true(deferredTask.isArmed);
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deferredTask.disarm();
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do_check_false(deferredTask.isArmed);
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run_next_test();
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}, 50);
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do_check_false(deferredTask.isArmed);
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deferredTask.arm();
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do_check_true(deferredTask.isArmed);
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do_check_false(deferredTask.isRunning);
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});
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/**
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* Checks that the "finalize" method executes a synchronous task.
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*/
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add_test(function test_finalize()
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{
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let executed = false;
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let timePassed = false;
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let deferredTask = new DeferredTask(function () {
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do_check_false(timePassed);
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executed = true;
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}, 2*T);
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deferredTask.arm();
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do_timeout(1*T, () => { timePassed = true; });
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// This should trigger the immediate execution of the task.
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deferredTask.finalize().then(function () {
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do_check_true(executed);
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run_next_test();
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});
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});
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/**
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* Checks that the "finalize" method executes the task again from start to
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* finish in case it is already running.
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*/
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add_test(function test_finalize_executes_entirely()
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{
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let executed = false;
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let executedAgain = false;
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let timePassed = false;
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let deferredTask = new DeferredTask(function* () {
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// The first time, we arm the timer again and set up the finalization.
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if (!executed) {
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deferredTask.arm();
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do_check_true(deferredTask.isArmed);
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do_check_true(deferredTask.isRunning);
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deferredTask.finalize().then(function () {
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// When we reach this point, the task must be finished.
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do_check_true(executedAgain);
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do_check_false(timePassed);
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do_check_false(deferredTask.isArmed);
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do_check_false(deferredTask.isRunning);
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run_next_test();
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});
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// The second execution triggered by the finalization waits 1*T for the
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// current task to finish (see the timeout below), but then it must not
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// wait for the 2*T specified on construction as normal task delay. The
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// second execution will finish after the timeout below has passed again,
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// for a total of 2*T of wait time.
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do_timeout(3*T, () => { timePassed = true; });
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}
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yield promiseTimeout(1*T);
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// Just before finishing, indicate if we completed the second execution.
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if (executed) {
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do_check_true(deferredTask.isRunning);
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executedAgain = true;
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} else {
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executed = true;
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}
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}, 2*T);
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deferredTask.arm();
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});
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