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1 wakaba 1.82 <!DOCTYPE html><html lang=en-US-x-hixie><meta charset=ascii><title>Web Workers</title><link href=/style/specification rel=stylesheet><link href=/images/icon rel=icon><body class=draft>
2     <div class=head>
3     <p><a class=logo href=http://www.whatwg.org/ rel=home><img alt=WHATWG src=/images/logo></a></p>
4     <h1>Web Workers</h1>
5 wakaba 1.122 <h2 class="no-num no-toc" id=draft-recommendation-&mdash;-date:-01-jan-1901>Draft Recommendation &mdash; 4 August 2009</h2>
6 wakaba 1.82 <p>You can take part in this work. <a href=http://www.whatwg.org/mailing-list>Join the working group's discussion list.</a></p>
7     <p><strong>Web designers!</strong> We have a <a href=http://blog.whatwg.org/faq/>FAQ</a>, a <a href=http://forums.whatwg.org/>forum</a>, and a <a href=http://www.whatwg.org/mailing-list#help>help mailing list</a> for you!</p>
8     <dl><dt>This version:</dt>
9     <dd><a href=http://www.whatwg.org/specs/web-workers/current-work/>http://whatwg.org/ww</a></dd>
10     <dt>Version history:</dt>
11     <dd>Twitter messages (non-editorial changes only): <a href=http://twitter.com/WHATWG>http://twitter.com/WHATWG</a></dd>
12     <dd>Commit-Watchers mailing list: <a href=http://lists.whatwg.org/listinfo.cgi/commit-watchers-whatwg.org>http://lists.whatwg.org/listinfo.cgi/commit-watchers-whatwg.org</a></dd>
13     <dd>Interactive Web interface: <a href=http://html5.org/tools/web-workers-tracker>http://html5.org/tools/web-workers-tracker</a></dd>
14     <dd>Subversion interface: <a href=http://svn.whatwg.org/webworkers/>http://svn.whatwg.org/webworkers/</a></dd>
15     <dt>Issues:</dt>
16     <dd>To send feedback: <a href=http://www.whatwg.org/mailing-list>[email protected]</a></dd>
17     <dd>To view and vote on feedback: <a href=http://www.whatwg.org/issues/>http://www.whatwg.org/issues/</a></dd>
18     <dt>Editor:</dt>
19     <dd>Ian Hickson, Google, [email protected]</dd>
20     </dl><p class=copyright>&copy; Copyright 2004-2008 Apple Computer, Inc.,
21     Mozilla Foundation, and Opera Software ASA.</p>
22     <p class=copyright>You are granted a license to use, reproduce
23     and create derivative works of this document.</p>
24     </div>
25    
26     <hr><h2 class="no-num no-toc" id=abstract>Abstract</h2>
27    
28     <p>This specification defines an API that allows Web application
29     authors to spawn background workers running scripts in parallel to
30     their main page. This allows for thread-like operation with
31     message-passing as the coordination mechanism.</p>
32    
33    
34     <h2 class="no-num no-toc" id=status>Status of this document</h2>
35    
36     <p><strong>This is a work in progress!</strong> This document is
37     changing on a daily if not hourly basis in response to comments and
38     as a general part of its development process. Comments are very
39     welcome, please send them to <a href=mailto:[email protected]>[email protected]</a>. Thank
40     you.</p>
41    
42     <p>The current focus is in developing a first draft proposal.</p>
43    
44     <p>Implementors should be aware that this specification is not
45     stable. <strong>Implementors who are not taking part in the
46     discussions are likely to find the specification changing out from
47     under them in incompatible ways.</strong> Vendors interested in
48     implementing this specification before it eventually reaches the
49     call for implementations should join the <a href=/mailing-list>WHATWG mailing list</a> and take part in the
50     discussions.</p>
51    
52     <p>This specification is also being produced by the <a href=http://www.w3.org/2008/webapps/>W3C Web Apps WG</a>. The two
53     specifications are identical from the table of contents onwards.</p>
54    
55     <h2 class="no-num no-toc" id=contents>Table of contents</h2>
56    
57     <!--begin-toc-->
58     <ol class=toc>
59     <li><a href=#introduction><span class=secno>1 </span>Introduction</a>
60     <ol>
61     <li><a href=#scope><span class=secno>1.1 </span>Scope</a></li>
62     <li><a href=#tutorial><span class=secno>1.2 </span>Tutorial</a>
63     <ol>
64     <li><a href=#a-background-number-crunching-worker><span class=secno>1.2.1 </span>A background number-crunching worker</a></li>
65     <li><a href=#a-worker-for-updating-a-client-side-database><span class=secno>1.2.2 </span>A worker for updating a client-side database</a></li>
66     <li><a href=#worker-used-for-background-i/o><span class=secno>1.2.3 </span>Worker used for background I/O</a></li>
67     <li><a href=#shared-workers><span class=secno>1.2.4 </span>Shared workers</a></li>
68     <li><a href=#delegation><span class=secno>1.2.5 </span>Delegation</a></li>
69     <li><a href=#providing-libraries><span class=secno>1.2.6 </span>Providing libraries</a></ol></ol></li>
70 wakaba 1.110 <li><a href=#conformance-requirements><span class=secno>2 </span>Conformance requirements</a>
71 wakaba 1.82 <ol>
72 wakaba 1.110 <li><a href=#dependencies><span class=secno>2.1 </span>Dependencies</a></ol></li>
73     <li><a href=#terminology><span class=secno>3 </span>Terminology</a></li>
74     <li><a href=#infrastructure><span class=secno>4 </span>Infrastructure</a>
75     <ol>
76     <li><a href=#the-global-scope><span class=secno>4.1 </span>The global scope</a>
77 wakaba 1.82 <ol>
78 wakaba 1.110 <li><a href=#the-workerglobalscope-abstract-interface><span class=secno>4.1.1 </span>The <code>WorkerGlobalScope</code> abstract interface</a></li>
79     <li><a href=#dedicated-workers-and-the-dedicatedworkerglobalscope-interface><span class=secno>4.1.2 </span>Dedicated workers and the <code>DedicatedWorkerGlobalScope</code> interface</a></li>
80     <li><a href=#shared-workers-and-the-sharedworkerglobalscope-inteface><span class=secno>4.1.3 </span>Shared workers and the <code>SharedWorkerGlobalScope</code> inteface</a></ol></li>
81     <li><a href=#base-urls-and-origins-of-workers><span class=secno>4.2 </span>Base URLs and origins of workers</a></li>
82     <li><a href=#decoding-scripts><span class=secno>4.3 </span>Decoding scripts</a></li>
83     <li><a href=#the-event-loop><span class=secno>4.4 </span>The event loop</a></li>
84     <li><a href="#the-worker's-lifetime"><span class=secno>4.5 </span>The worker's lifetime</a></li>
85     <li><a href=#processing-model><span class=secno>4.6 </span>Processing model</a></li>
86     <li><a href=#runtime-script-errors><span class=secno>4.7 </span>Runtime script errors</a></li>
87     <li><a href=#creating-workers><span class=secno>4.8 </span>Creating workers</a>
88 wakaba 1.82 <ol>
89 wakaba 1.110 <li><a href=#the-abstractworker-abstract-interface><span class=secno>4.8.1 </span>The <code>AbstractWorker</code> abstract interface</a></li>
90     <li><a href=#dedicated-workers-and-the-worker-interface><span class=secno>4.8.2 </span>Dedicated workers and the <code>Worker</code> interface</a></li>
91     <li><a href=#shared-workers-and-the-sharedworker-interface><span class=secno>4.8.3 </span>Shared workers and the <code>SharedWorker</code> interface</a></ol></ol></li>
92     <li><a href=#apis-available-to-workers><span class=secno>5 </span>APIs available to workers</a>
93 wakaba 1.82 <ol>
94 wakaba 1.110 <li><a href=#importing-scripts-and-libraries><span class=secno>5.1 </span>Importing scripts and libraries</a></li>
95     <li><a href=#the-navigator-object><span class=secno>5.2 </span>The <code title=worker-Navigator>Navigator</code> object</a></li>
96     <li><a href=#apis-defined-in-other-specifications><span class=secno>5.3 </span>APIs defined in other specifications</a></li>
97     <li><a href=#interface-objects-and-constructors><span class=secno>5.4 </span>Interface objects and constructors</a></li>
98     <li><a href=#worker-locations><span class=secno>5.5 </span>Worker locations</a></ol></li>
99 wakaba 1.82 <li><a class=no-num href=#references>References</a></li>
100     <li><a class=no-num href=#acknowledgements>Acknowledgements</a></ol>
101     <!--end-toc-->
102     <hr><h2 id=introduction><span class=secno>1 </span>Introduction</h2>
103    
104     <h3 id=scope><span class=secno>1.1 </span>Scope</h3>
105    
106 wakaba 1.106 <p><i>This section is non-normative.</i></p>
107 wakaba 1.82
108     <p>This specification defines an API for running scripts in the
109     background independently of any user interface scripts.</p>
110    
111     <p>This allows for long-running scripts that are not interrupted by
112     scripts that respond to clicks or other user interactions, and
113     allows long tasks to be executed without yielding to keep the page
114     responsive.</p>
115    
116     <p>Workers (as these background scripts are called herein) are
117     relatively heavy-weight, and are not intended to be used in large
118     numbers. For example, it would be inappropriate to launch one worker
119     for each pixel of a four megapixel image. The examples below show
120     some appropriate uses of workers.</p>
121    
122     <p>Generally, workers are expected to be long-lived, have a high
123     start-up performance cost, and a high per-instance memory cost.</p>
124    
125    
126     <h3 id=tutorial><span class=secno>1.2 </span>Tutorial</h3>
127    
128 wakaba 1.106 <p><i>This section is non-normative.</i></p>
129 wakaba 1.82
130     <p>There are a variety of uses that workers can be put to. The
131     following subsections show various examples of this use.</p>
132    
133     <h4 id=a-background-number-crunching-worker><span class=secno>1.2.1 </span>A background number-crunching worker</h4>
134    
135 wakaba 1.106 <p><i>This section is non-normative.</i></p>
136 wakaba 1.82
137     <p>The simplest use of workers is for performing a computationally
138     expensive task without interrupting the user interface.</p>
139    
140     <p>In this example, the main document spawns a worker to
141     (na&iuml;vely) compute prime numbers, and progressively displays the
142     most recently found prime number.</p>
143    
144     <p>The main page is as follows:</p>
145    
146     <pre>&lt;!DOCTYPE HTML&gt;
147     &lt;html&gt;
148     &lt;head&gt;
149     &lt;title&gt;Worker example: One-core computation&lt;/title&gt;
150     &lt;/head&gt;
151     &lt;body&gt;
152     &lt;p&gt;The highest prime number discovered so far is: &lt;output id="result"&gt;&lt;/output&gt;&lt;/p&gt;
153     &lt;script&gt;
154     var worker = new Worker('worker.js');
155     worker.onmessage = function (event) {
156     document.getElementById('result').textContent = event.data;
157     };
158     &lt;/script&gt;
159     &lt;/body&gt;
160     &lt;/html&gt;</pre>
161    
162     <p>The <code title=dom-Worker><a href=#dom-worker>Worker()</a></code> constructor call
163     creates a worker and returns a <code><a href=#worker>Worker</a></code> object
164     representing that worker, which is used to communicate with the
165     worker. That object's <code title=handler-Worker-onmessage><a href=#handler-worker-onmessage>onmessage</a></code> event handler
166     attribute allows the code to receive messages from the worker.</p>
167    
168     <p>The worker itself is as follows:</p>
169    
170     <pre>var n = 1;
171     search: while (true) {
172     n += 1;
173     for (var i = 2; i &lt;= Math.sqrt(n); i += 1)
174     if (n % i == 0)
175     continue search;
176     // found a prime!
177     postMessage(n);
178     }</pre>
179    
180     <p>The bulk of this code is simply an unoptimized search for a prime
181     number. To send a message back to the page, the <code title=dom-DedicatedWorkerGlobalScope-postMessage><a href=#dom-dedicatedworkerglobalscope-postmessage>postMessage()</a></code>
182     method is used to post a message when a prime is found.</p>
183    
184     <p><a href=http://www.whatwg.org/demos/workers/primes/page.html>View this example online</a>.</p>
185    
186    
187    
188     <h4 id=a-worker-for-updating-a-client-side-database><span class=secno>1.2.2 </span>A worker for updating a client-side database</h4>
189    
190 wakaba 1.106 <p><i>This section is non-normative.</i></p>
191 wakaba 1.82
192     <p>In this example, the main document spawns a worker whose only
193     task is to listen for notifications from the server, and, when
194     appropriate, either add or remove data from the client-side
195     database.</p>
196    
197     <p>Since no communication occurs between the worker and the main
198     page, the main page can start the worker by just doing:</p>
199    
200     <pre>&lt;script&gt;
201     new Worker('worker.js');
202     &lt;/script&gt;</pre>
203    
204     <p>The worker itself is as follows:</p>
205    
206     <pre>var server = new WebSocket('ws://whatwg.org/database');
207     var database = openDatabase('demobase', '1.0', 'Demo Database', 10240);
208     server.onmessage = function (event) {
209     // data is in the format "command key value"
210     var data = event.data.split(' ');
211     switch (data[0]) {
212     case '+':
213     database.transaction(function(tx) {
214     tx.executeSql('INSERT INTO pairs (key, value) VALUES (?, ?)', data[1], data[2]);
215     });
216     case '-':
217     database.transaction(function(tx) {
218     tx.executeSql('DELETE FROM pairs WHERE key=? AND value=?', data[1], data[2]);
219     });
220     }
221     };</pre>
222    
223     <p>This connects to the server using the <code>WebSocket</code>
224     mechanism and opens the local database (which, we presume, has been
225     created earlier). The worker then just listens for messages from the
226     server and acts on them as appropriate, forever (or until the main
227     page is closed).</p>
228    
229     <p><a href=http://www.whatwg.org/demos/workers/database-updater/page.html>View
230     this example online</a>. (This example will not actually function,
231     since the server does not actually exist and the database is not
232     created by this sample code.)</p>
233    
234    
235    
236     <h4 id=worker-used-for-background-i/o><span class=secno>1.2.3 </span>Worker used for background I/O</h4>
237    
238 wakaba 1.106 <p><i>This section is non-normative.</i></p>
239 wakaba 1.82
240     <p>In this example, the main document uses two workers, one for
241     fetching stock updates for at regular intervals, and one for
242     fetching performing search queries that the user requests.</p>
243    
244     <p>The main page is as follows:</p>
245    
246     <pre>&lt;!DOCTYPE HTML&gt;
247     &lt;html&gt;
248     &lt;head&gt;
249     &lt;title&gt;Worker example: Stock ticker&lt;/title&gt;
250     &lt;script&gt;
251     // TICKER
252     var symbol = 'GOOG'; // default symbol to watch
253     var ticker = new Worker('ticker.js');
254    
255     // SEARCHER
256     var searcher = new Worker('searcher.js');
257     function search(query) {
258     searcher.postMessage(query);
259     }
260    
261     // SYMBOL SELECTION UI
262     function select(newSymbol) {
263     symbol = newSymbol;
264     ticker.postMessage(symbol);
265     }
266     &lt;/script&gt;
267     &lt;/head&gt;
268     &lt;body onload="search('')"&gt;
269     &lt;p&gt;&lt;output id="symbol"&gt;&lt;/output&gt; &lt;output id="value"&gt;&lt;/output&gt;&lt;/p&gt;
270     &lt;script&gt;
271     ticker.onmessage = function (event) {
272     var data = event.data.split(' ');
273     document.getElementById('symbol').textContent = data[0];
274     document.getElementById('value').textContent = data[1];
275     };
276     ticker.postMessage(symbol);
277     &lt;/script&gt;
278     &lt;p&gt;&lt;label&gt;Search: &lt;input type="text" autofocus oninput="search(this.value)"&gt;&lt;/label&gt;&lt;/p&gt;
279     &lt;ul id="results"&gt;&lt;/ul&gt;
280     &lt;script&gt;
281     searcher.onmessage = function (event) {
282     var data = event.data.split(' ');
283     var results = document.getElementById('results');
284     while (results.hasChildNodes()) // clear previous results
285     results.removeChild(results.firstChild);
286     for (var i = 0; i &lt; data.length; i += 1) {
287     // add a list item with a button for each result
288     var li = document.createElement('li');
289     var button = document.createElement('button');
290     button.value = data[i];
291     button.type = 'button';
292     button.onclick = function () { select(this.value); };
293     button.textContent = data[i];
294     li.appendChild(button);
295     results.appendChild(li);
296     }
297     };
298     &lt;/script&gt;
299     &lt;p&gt;(The data in this example is not real. Try searching for "Google" or "Apple".)&lt;/p&gt;
300     &lt;/body&gt;
301     &lt;/html&gt;</pre>
302    
303     <p>The two workers use a common library for performing the actual
304     network calls. This library is as follows:</p>
305    
306     <pre>function get(url) {
307     try {
308     var xhr = new XMLHttpRequest();
309     xhr.open('GET', url, false);
310     xhr.send();
311     return xhr.responseText;
312     } catch (e) {
313     return ''; // turn all errors into empty results
314     }
315     }</pre>
316    
317     <p>The stock updater worker is as follows:</p>
318    
319     <pre>importScripts('io.js');
320     var timer;
321     var symbol;
322     function update() {
323     postMessage(symbol + ' ' + get('stock.cgi?' + symbol));
324     timer = setTimeout(update, 10000);
325     }
326     onmessage = function (event) {
327     if (timer)
328     clearTimeout(timer);
329     symbol = event.data;
330     update();
331     };</pre>
332    
333     <p>The search query worker is as follows:</p>
334    
335     <pre>importScripts('io.js');
336     onmessage = function (event) {
337     postMessage(get('search.cgi?' + event.data));
338     };</pre>
339    
340     <p><a href=http://www.whatwg.org/demos/workers/stocks/page.html>View this example online</a>.</p>
341    
342    
343     <h4 id=shared-workers><span class=secno>1.2.4 </span>Shared workers</h4>
344    
345 wakaba 1.106 <p><i>This section is non-normative.</i></p>
346 wakaba 1.82
347     <p>In this example, multiple windows (viewers) can be opened that
348     are all viewing the same map. All the windows share the same map
349     information, with a single worker coordinating all the viewers. Each
350     viewer can move around independently, but if they set any data on
351     the map, all the viewers are updated.</p>
352    
353     <p>The main page isn't interesting, it merely provides a way to open
354     the viewers:</p>
355    
356     <pre>&lt;!DOCTYPE HTML&gt;
357     &lt;html&gt;
358     &lt;head&gt;
359     &lt;title&gt;Workers example: Multiviewer&lt;/title&gt;
360     &lt;script&gt;
361     function openViewer() {
362     window.open('viewer.html');
363     }
364     &lt;/script&gt;
365     &lt;/head&gt;
366     &lt;body&gt;
367     &lt;p&gt;&lt;button type=button onclick="openViewer()"&gt;Open a new
368     viewer&lt;/button&gt;&lt;/p&gt;
369     &lt;p&gt;Each viewer opens in a new window. You can have as many viewers
370     as you like, they all view the same data.&lt;/p&gt;
371     &lt;/body&gt;
372     &lt;/html&gt;</pre>
373    
374     <p>The viewer is more involved:</p>
375    
376     <pre>&lt;!DOCTYPE HTML&gt;
377     &lt;html&gt;
378     &lt;head&gt;
379     &lt;title&gt;Workers example: Multiviewer viewer&lt;/title&gt;
380     &lt;script&gt;
381     var worker = new SharedWorker('worker.js', 'core');
382    
383     // CONFIGURATION
384     function configure(event) {
385     if (event.data.substr(0, 4) != 'cfg ') return;
386     var name = event.data.substr(4).split(' ', 1);
387     // update display to mention our name is name
388     document.getElementsByTagName('h1')[0].textContent += ' ' + name;
389     // no longer need this listener
390     worker.port.removeEventListener('message', configure, false);
391     }
392     worker.port.addEventListener('message', configure, false);
393    
394     // MAP
395     function paintMap(event) {
396     if (event.data.substr(0, 4) != 'map ') return;
397     var data = event.data.substr(4).split(',');
398     // display tiles data[0] .. data[8]
399     var canvas = document.getElementById('map');
400     var context = canvas.getContext('2d');
401     for (var y = 0; y &lt; 3; y += 1) {
402     for (var x = 0; x &lt; 3; x += 1) {
403     var tile = data[y * 3 + x];
404     if (tile == '0')
405     context.fillStyle = 'green';
406     else
407     context.fillStyle = 'maroon';
408     fillRect(x * 50, y * 50, 50, 50);
409     }
410     }
411     }
412     worker.port.addEventListener('message', paintMap, false);
413    
414     // PUBLIC CHAT
415     function updatePublicChat(event) {
416     if (event.data.substr(0, 4) != 'txt ') return;
417     var name = event.data.substr(4).split(' ', 1);
418     var message = event.data.substr(4 + length(name) + 1);
419     // display "&lt;name&gt; message" in public chat
420     var dialog = document.getElementById('public');
421     var dt = document.createElement('dt');
422     dt.textContent = name;
423     dialog.appendChild(dt);
424     var dd = document.createElement('dd');
425     dd.textContent = message;
426     dialog.appendChild(dd);
427     }
428     worker.port.addEventListener('message', updatePublicChat, false);
429    
430     // PRIVATE CHAT
431     function startPrivateChat(event) {
432     if (event.data.substr(0, 4) != 'msg ') return;
433     var name = event.data.substr(4).split(' ', 1);
434     var port = event.ports[0];
435     // display a private chat UI
436     var ul = document.getElementById('private');
437     var li = document.createElement('li');
438     var h3 = document.createElement('h3');
439     h3.textContent = 'Private chat with ' + name;
440     li.appendChild(h3);
441     var dialog = document.createElement('dialog');
442     var addMessage = function(name, message) {
443     var dt = document.createElement('dt');
444     dt.textContent = name;
445     dialog.appendChild(dt);
446     var dd = document.createElement('dd');
447     dd.textContent = message;
448     dialog.appendChild(dd);
449     };
450     port.onmessage = function (event) {
451     addMessage(name, event.data);
452     };
453     li.appendChild(dialog);
454     var form = document.createElement('form');
455     var p = document.createElement('p');
456     var input = document.createElement('input');
457     input.size = 50;
458     p.appendChild(input);
459     p.appendChild(document.createTextNode(' '));
460     var button = document.createElement('button');
461     button.textContent = 'Post';
462     p.appendChild(button);
463     form.onsubmit = function () {
464     port.postMessage(input.value);
465     addMessage('me', input.value);
466     input.value = '';
467     return false;
468     };
469     form.appendChild(p);
470     li.appendChild(form);
471     }
472     worker.port.addEventListener('message', startPrivateChat, false);
473     &lt;/script&gt;
474     &lt;/head&gt;
475     &lt;body&gt;
476     &lt;h1&gt;Viewer&lt;/h1&gt;
477     &lt;h2&gt;Map&lt;/h2&gt;
478     &lt;p&gt;&lt;canvas id="map" height=150 width=150&gt;&lt;/canvas&gt;&lt;/p&gt;
479     &lt;p&gt;
480     &lt;button type=button onclick="worker.port.postMessage('mov left')"&gt;Left&lt;/button&gt;
481     &lt;button type=button onclick="worker.port.postMessage('mov up')"&gt;Up&lt;/button&gt;
482     &lt;button type=button onclick="worker.port.postMessage('mov down')"&gt;Down&lt;/button&gt;
483     &lt;button type=button onclick="worker.port.postMessage('mov right')"&gt;Right&lt;/button&gt;
484     &lt;button type=button onclick="worker.port.postMessage('set 0')"&gt;Set 0&lt;/button&gt;
485     &lt;button type=button onclick="worker.port.postMessage('set 1')"&gt;Set 1&lt;/button&gt;
486     &lt;/p&gt;
487     &lt;h2&gt;Public Chat&lt;/h2&gt;
488     &lt;dialog id="public"&gt;&lt;/dialog&gt;
489     &lt;form onsubmit="worker.port.postMessage('txt ' + message.value); message.value = ''; return false;"&gt;
490     &lt;p&gt;
491     &lt;input type="text" name="message" size="50"&gt;
492     &lt;button&gt;Post&lt;/button&gt;
493     &lt;/p&gt;
494     &lt;/form&gt;
495     &lt;h2&gt;Private Chat&lt;/h2&gt;
496     &lt;ul id="private"&gt;&lt;/ul&gt;
497     &lt;/body&gt;
498     &lt;/html&gt;
499     </pre>
500    
501     <p>There are several key things worth noting about the way the
502     viewer is written.</p>
503    
504     <p><strong>Multiple listeners</strong>. Instead of a single message
505     processing function, the code here attaches multiple event
506     listeners, each one performing a quick check to see if it is
507     relevant for the message. In this example it doesn't make much
508     difference, but if multiple authors wanted to collaborate using a
509     single port to communicate with a worker, it would allow for
510     independent code instead of changes having to all be made to a
511     single event handling function.</p>
512    
513     <p>Registering event listeners in this way also allows you to
514     unregister specific listeners when you are done with them, as is
515     done with the <code title="">configure()</code> method in this
516     example.</p>
517    
518     <p>Finally, the worker:</p>
519    
520     <pre>
521     var nextName = 0;
522     function getNextName() {
523     // this could use more friendly names
524     // but for now just return a number
525     return nextName++;
526     }
527    
528     var map = [
529     [0, 0, 0, 0, 0, 0, 0],
530     [1, 1, 0, 1, 0, 1, 1],
531     [0, 1, 0, 1, 0, 0, 0],
532     [0, 1, 0, 1, 0, 1, 1],
533     [0, 0, 0, 1, 0, 0, 0],
534     [1, 0, 0, 1, 1, 1, 1],
535     [1, 1, 0, 1, 1, 0, 1],
536     ];
537    
538     function wrapX(x) {
539     if (x &lt; 0) return wrapX(x + map[0].length);
540     if (x &gt;= map[0].length) return wrapX(x - map[0].length);
541     return x;
542     }
543    
544     function wrapY(y) {
545     if (y &lt; 0) return wrapY(y + map.length);
546     if (y &gt;= map[0].length) return wrapY(y - map.length);
547     return y;
548     }
549    
550     function sendMapData(callback) {
551     var data = '';
552     for (var y = viewer.y-1; y &lt;= viewer.y+1; y += 1) {
553     for (var x = viewer.x-1; x &lt;= viewer.x+1; x += 1) {
554     if (data != '')
555     data += ',';
556     data += map[y][x];
557     }
558     }
559     callback('map ' + data);
560     }
561    
562     var viewers = {};
563     onconnect = function (event) {
564     event.ports[0]._name = getNextName();
565     event.ports[0]._data = { port: event.port, x: 0, y: 0, };
566     viewers[event.ports[0]._name] = event.port._data;
567     event.ports[0].postMessage('cfg ' + name);
568     event.ports[0].onmessage = getMessage;
569     sendMapData(event.ports[0].postMessage);
570     };
571    
572     function getMessage(event) {
573     switch (event.data.substr(0, 4)) {
574     case 'mov ':
575     var direction = event.data.substr(4);
576     var dx = 0;
577     var dy = 0;
578     switch (direction) {
579     case 'up': dy = -1; break;
580     case 'down': dy = 1; break;
581     case 'left': dx = -1; break;
582     case 'right': dx = 1; break;
583     }
584     event.target._data.x = wrapX(event.target._data.x + dx);
585     event.target._data.y = wrapY(event.target._data.y + dy);
586     sendMapData(event.target.postMessage);
587     break;
588     case 'set ':
589     var value = event.data.substr(4);
590     map[event.target._data.y][event.target._data.x] = value;
591     for (var viewer in viewers)
592     sendMapData(viewers[viewer].port.postMessage);
593     break;
594     case 'txt ':
595     var name = event.target._name;
596     var message = event.data.substr(4);
597     for (var viewer in viewers)
598     viewers[viewer].port.postMessage('txt ' + name + ' ' + message);
599     break;
600     case 'msg ':
601     var party1 = event._data;
602     var party2 = viewers[event.data.substr(4).split(' ', 1)];
603     if (party2) {
604     var channel = new MessageChannel();
605     party1.port.postMessage('msg ' + party2.name, [channel.port1]);
606     party2.port.postMessage('msg ' + party1.name, [channel.port2]);
607     }
608     break;
609     }
610     }</pre>
611    
612     <p><strong>Connecting to multiple pages</strong>. The script uses
613     the <code title=handler-SharedWorkerGlobalScope-onconnect><a href=#handler-sharedworkerglobalscope-onconnect>onconnect</a></code>
614     event listener to listen for multiple connections.</p>
615    
616     <p><strong>Direct channels</strong>. When the worker receives a
617     "msg" message from one viewer naming another viewer, it sets up a
618     direct connection between the two, so that the two viewers can
619     communicate directly without the worker having to proxy all the
620     messages.</p>
621    
622     <p><a href=http://www.whatwg.org/demos/workers/multiviewer/page.html>View this example online</a>.</p>
623    
624    
625     <h4 id=delegation><span class=secno>1.2.5 </span>Delegation</h4>
626    
627 wakaba 1.106 <p><i>This section is non-normative.</i></p>
628 wakaba 1.82
629     <p>With multicore CPUs becoming prevalent, one way to obtain better
630     performance is to split computationally expensive tasks amongst
631     multiple workers. In this example, a computationally expensive task
632     that is to be performed for every number from 1 to 10,000,000 is
633     farmed out to ten subworkers.</p>
634    
635     <p>The main page is as follows, it just reports the result:</p>
636    
637     <pre>&lt;!DOCTYPE HTML&gt;
638     &lt;html&gt;
639     &lt;head&gt;
640     &lt;title&gt;Worker example: One-core computation&lt;/title&gt;
641     &lt;/head&gt;
642     &lt;body&gt;
643     &lt;p&gt;The highest prime number discovered so far is: &lt;output id="result"&gt;&lt;/output&gt;&lt;/p&gt;
644     &lt;script&gt;
645     var worker = new Worker('worker.js');
646     worker.onmessage = function (event) {
647     document.getElementById('result').textContent = event.data;
648     };
649     &lt;/script&gt;
650     &lt;/body&gt;
651     &lt;/html&gt;</pre>
652    
653     <p>The worker itself is as follows:</p>
654    
655     <pre>// settings
656     var num_workers = 10;
657     var items_per_worker = 1000000;
658    
659     // start the workers
660     var result = 0;
661     var pending_workers = num_workers;
662     for (var i = 0; i &lt; num_workers; i += 1) {
663     var worker = new Worker('core.js');
664     worker.postMessage(i * items_per_worker);
665     worker.postMessage((i+1) * items_per_worker);
666     worker.onmessage = storeResult;
667     }
668    
669     // handle the results
670     function storeResult(event) {
671     result += 1*event.data;
672     pending_workers -= 1;
673     if (pending_workers &lt;= 0)
674     postMessage(result); // finished!
675     }</pre>
676    
677     <p>It consists of a loop to start the subworkers, and then a handler
678     that waits for all the subworkers to respond.</p>
679    
680     <p>The subworkers are implemented as follows:</p>
681    
682     <pre>var start;
683     onmessage = getStart;
684     function getStart(event) {
685     start = 1*event.data;
686     onmessage = getEnd;
687     }
688    
689     var end;
690     function getEnd(event) {
691     end = 1*event.data;
692     onmessage = null;
693     work();
694     }
695    
696     function work() {
697     var result = 0;
698     for (var i = start; i &lt; end; i += 1) {
699     // perform some complex calculation here
700     result += 1;
701     }
702     postMessage(result);
703     close();
704     }</pre>
705    
706     <p>They receive two numbers in two events, perform the computation
707     for the range of numbers thus specified, and then report the result
708     back to the parent.</p>
709    
710     <p><a href=http://www.whatwg.org/demos/workers/multicore/page.html>View this example online</a>.</p>
711    
712    
713     <h4 id=providing-libraries><span class=secno>1.2.6 </span>Providing libraries</h4>
714    
715 wakaba 1.106 <p><i>This section is non-normative.</i></p>
716 wakaba 1.82
717     <p>Suppose that a cryptography library is made available that
718     provides three tasks:</p>
719    
720     <dl><dt>Generate a public/private key pair</dt>
721    
722     <dd>Takes a port, on which it will send two messages, first the
723     public key and then the private key.</dd>
724    
725     <dt>Given a plaintext and a public key, return the corresponding cyphertext</dt>
726    
727     <dd>Takes a port, to which any number of messages can be sent, the
728     first giving the public key, and the remainder giving the
729     plaintext, each of which is encrypted and then sent on that same
730     channel as the cyphertext. The user can close the port when it is
731     done encrypting content.</dd>
732    
733     <dt>Given a cyphertext and a private key, return the corresponding plaintext</dt>
734    
735     <dd>Takes a port, to which any number of messages can be sent, the
736     first giving the private key, and the remainder giving the
737     cyphertext, each of which is decrypted and then sent on that same
738     channel as the plaintext. The user can close the port when it is
739     done decrypting content.</dd>
740    
741     </dl><p>The library itself is as follows:</p>
742    
743     <pre>function handleMessage(e) {
744     if (e.data == "genkeys")
745     genkeys(e.ports[0]);
746     else if (e.data == "encrypt")
747     encrypt(e.ports[0]);
748     else if (e.data == "decrypt")
749     decrypt(e.ports[0]);
750     }
751    
752     function genkeys(p) {
753     var keys = _generateKeyPair();
754     p.postMessage(keys[0]);
755     p.postMessage(keys[1]);
756     }
757    
758     function encrypt(p) {
759     var key, state = 0;
760     p.onmessage = function (e) {
761     if (state == 0) {
762     key = e.data;
763     state = 1;
764     } else {
765     p.postMessage(_encrypt(key, e.data));
766     }
767     };
768     }
769    
770     function decrypt(p) {
771     var key, state = 0;
772     p.onmessage = function (e) {
773     if (state == 0) {
774     key = e.data;
775     state = 1;
776     } else {
777     p.postMessage(_decrypt(key, e.data));
778     }
779     };
780     }
781    
782     // support being used as a shared worker as well as a dedicated worker
783     if (this.onmessage) // dedicated worker
784     onmessage = handleMessage;
785     else // shared worker
786     onconnect = function (e) { e.port.onmessage = handleMessage; }
787    
788    
789     // the "crypto" functions:
790    
791     function _generateKeyPair() {
792     return [Math.random(), Math.random()];
793     }
794    
795     function _encrypt(k, s) {
796     return 'encrypted-' + k + ' ' + s;
797     }
798    
799     function _decrypt(k, s) {
800     return s.substr(s.indexOf(' ')+1);
801     }</pre>
802    
803     <p>Note that the crypto functions here are just stubs and don't do
804     real cryptography.</p>
805    
806     <p>This library could be used as follows:</p>
807    
808     <pre>&lt;!DOCTYPE HTML&gt;
809     &lt;html&gt;
810     &lt;head&gt;
811     &lt;title&gt;Worker example: Crypto library&lt;/title&gt;
812     &lt;script&gt;
813     var crytoLib = new Worker('libcrypto-v1.js'); // or could use 'libcrypto-v2.js'
814     function getKeys() {
815     var state = 0;
816     cryptoLib.startConversation("genkeys").onmessage = function (e) {
817     if (state == 0)
818     document.getElementById('public').value = e.data;
819     else if (state == 1)
820     document.getElementById('private').value = e.data;
821     state += 1;
822     };
823     }
824     function enc() {
825     var port = cryptoLib.startConversation("encrypt");
826     port.postMessage(document.getElementById('public').value);
827     port.postMessage(document.getElementById('input').value);
828     port.onmessage = function (e) {
829     document.getElementById('input').value = e.data;
830     port.close();
831     };
832     }
833     function dec() {
834     var port = cryptoLib.startConversation("decrypt");
835     port.postMessage(document.getElementById('private').value);
836     port.postMessage(document.getElementById('input').value);
837     port.onmessage = function (e) {
838     document.getElementById('input').value = e.data;
839     port.close();
840     };
841     }
842     &lt;/script&gt;
843     &lt;style&gt;
844     textarea { display: block; }
845     &lt;/style&gt;
846     &lt;/head&gt;
847     &lt;body onload="getKeys()"&gt;
848     &lt;fieldset&gt;
849     &lt;legend&gt;Keys&lt;/legend&gt;
850     &lt;p&gt;&lt;label&gt;Public Key: &lt;textarea id="public"&gt;&lt;/textarea&gt;&lt;/label&gt;&lt;/p&gt;
851     &lt;p&gt;&lt;label&gt;Private Key: &lt;textarea id="private"&gt;&lt;/textarea&gt;&lt;/label&gt;&lt;/p&gt;
852     &lt;/fieldset&gt;
853     &lt;p&gt;&lt;label&gt;Input: &lt;textarea id="input"&gt;&lt;/textarea&gt;&lt;/label&gt;&lt;/p&gt;
854     &lt;p&gt;&lt;button onclick="enc()"&gt;Encrypt&lt;/button&gt; &lt;button onclick="dec()"&gt;Decrypt&lt;/button&gt;&lt;/p&gt;
855     &lt;/body&gt;
856     &lt;/html&gt;</pre>
857    
858     <p>A later version of the API, though, might want to offload all the
859     crypto work onto subworkers. This could be done as follows:</p>
860    
861     <pre>function handleMessage(e) {
862     if (e.data == "genkeys")
863     genkeys(e.ports[0]);
864     else if (e.data == "encrypt")
865     encrypt(e.ports[0]);
866     else if (e.data == "decrypt")
867     decrypt(e.ports[0]);
868     }
869    
870     function genkeys(p) {
871     var generator = new Worker('libcrypto-v2-generator.js');
872     generator.postMessage('', [p]);
873     }
874    
875     function encrypt(p) {
876     p.onmessage = function (e) {
877     var key = e.data;
878     var encryptor = new Worker('libcrypto-v2-encryptor.js');
879     encryptor.postMessage(key, [p]);
880     };
881     }
882    
883     function encrypt(p) {
884     p.onmessage = function (e) {
885     var key = e.data;
886     var decryptor = new Worker('libcrypto-v2-decryptor.js');
887     decryptor.postMessage(key, [p]);
888     };
889     }
890    
891     // support being used as a shared worker as well as a dedicated worker
892     if (this.onmessage) // dedicated worker
893     onmessage = handleMessage;
894     else // shared worker
895     onconnect = function (e) { e.ports[0].onmessage = handleMessage };
896     </pre>
897    
898     <p>The little subworkers would then be as follows.</p>
899    
900     <p>For generating key pairs:</p>
901    
902     <pre>onmessage = function (e) {
903     var k = _generateKeyPair();
904     e.ports[0].postMessage(k[0]);
905     e.ports[0].postMessage(k[1]);
906     close();
907     }
908    
909     function _generateKeyPair() {
910     return [Math.random(), Math.random()];
911     }</pre>
912    
913     <p>For encrypting:</p>
914    
915     <pre>onmessage = function (e) {
916     var key = e.data;
917     e.ports[0].onmessage = function (e) {
918     var s = e.data;
919     postMessage(_encrypt(key, s));
920     }
921     }
922    
923     function _encrypt(k, s) {
924     return 'encrypted-' + k + ' ' + s;
925     }</pre>
926    
927     <p>For decrypting:</p>
928    
929     <pre>onmessage = function (e) {
930     var key = e.data;
931     e.ports[0].onmessage = function (e) {
932     var s = e.data;
933     postMessage(_decrypt(key, s));
934     }
935     }
936    
937     function _decrypt(k, s) {
938     return s.substr(s.indexOf(' ')+1);
939     }</pre>
940    
941     <p>Notice how the users of the API don't have to even know that this
942     is happening &mdash; the API hasn't changed; the library can
943     delegate to subworkers without changing its API, even though it is
944     accepting data using message channels.</p>
945    
946     <p><a href=http://www.whatwg.org/demos/workers/crypto/page.html>View this example online</a>.</p>
947    
948    
949    
950    
951     <h2 id=conformance-requirements><span class=secno>2 </span>Conformance requirements</h2>
952    
953     <p>All diagrams, examples, and notes in this specification are
954     non-normative, as are all sections explicitly marked non-normative.
955     Everything else in this specification is normative.</p>
956    
957     <p>The key words "MUST", "MUST NOT", "REQUIRED", <!--"SHALL", "SHALL
958     NOT",--> "SHOULD", "SHOULD NOT", "RECOMMENDED", "MAY", and
959     "OPTIONAL" in the normative parts of this document are to be
960     interpreted as described in RFC2119. For readability, these words do
961     not appear in all uppercase letters in this specification. <a href=#refsRFC2119>[RFC2119]</a></p>
962    
963     <p>Requirements phrased in the imperative as part of algorithms
964     (such as "strip any leading space characters" or "return false and
965     abort these steps") are to be interpreted with the meaning of the
966     key word ("must", "should", "may", etc) used in introducing the
967     algorithm.</p>
968    
969     <p>Some conformance requirements are phrased as requirements on
970     attributes, methods or objects. Such requirements are to be
971     interpreted as requirements on user agents.</p>
972    
973     <p>Conformance requirements phrased as algorithms or specific steps
974     may be implemented in any manner, so long as the end result is
975     equivalent. (In particular, the algorithms defined in this
976     specification are intended to be easy to follow, and not intended to
977     be performant.)</p>
978    
979     <p>The only conformance class defined by this specification is user
980     agents.</p>
981    
982     <p>User agents may impose implementation-specific limits on
983     otherwise unconstrained inputs, e.g. to prevent denial of service
984     attacks, to guard against running out of memory, or to work around
985     platform-specific limitations.</p>
986    
987    
988 wakaba 1.110 <h3 id=dependencies><span class=secno>2.1 </span>Dependencies</h3>
989 wakaba 1.82
990     <p>This specification relies on several other underlying
991     specifications.</p>
992    
993     <dl><dt>HTML5</dt>
994    
995     <dd>
996    
997     <p>Many fundamental concepts from HTML5 are used by this
998     specification. <a href=#refsHTML5>[HTML5]</a></p>
999    
1000     </dd>
1001    
1002     <dt>WebIDL</dt>
1003    
1004     <dd>
1005    
1006     <p>The IDL blocks in this specification use the semantics of the
1007     WebIDL specification. <a href=#refsWebIDL>[WebIDL]</a></p>
1008    
1009     </dd>
1010    
1011 wakaba 1.110 </dl><h2 id=terminology><span class=secno>3 </span>Terminology</h2>
1012 wakaba 1.82
1013     <p>The construction "a <code title="">Foo</code> object", where
1014     <code title="">Foo</code> is actually an interface, is sometimes
1015     used instead of the more accurate "an object implementing the
1016     interface <code title="">Foo</code>".</p>
1017    
1018     <p>The term DOM is used to refer to the API set made available to
1019     scripts in Web applications, and does not necessarily imply the
1020     existence of an actual <code>Document</code> object or of any other
1021     <code>Node</code> objects as defined in the DOM Core
1022     specifications. <a href=#refsDOM3CORE>[DOM3CORE]</a></p>
1023    
1024     <p>A DOM attribute is said to be <em>getting</em> when its value is
1025     being retrieved (e.g. by author script), and is said to be
1026     <em>setting</em> when a new value is assigned to it.</p>
1027    
1028     <p>The term "JavaScript" is used to refer to ECMA262, rather than
1029     the official term ECMAScript, since the term JavaScript is more
1030     widely known. <a href=#refsECMA262>[ECMA262]</a></p>
1031    
1032    
1033 wakaba 1.110 <h2 id=infrastructure><span class=secno>4 </span>Infrastructure</h2>
1034 wakaba 1.82
1035     <p>There are two kinds of workers; dedicated workers, and shared
1036     workers. Dedicated workers, once created, and are linked to their
1037     creator; but message ports can be used to communicate from a
1038     dedicated worker to multiple other browsing contexts or
1039     workers. Shared workers, on the other hand, are named, and once
1040     created any script running in the same <span>origin</span> can
1041     obtain a reference to that worker and communicate with it.</p>
1042    
1043    
1044 wakaba 1.110 <h3 id=the-global-scope><span class=secno>4.1 </span>The global scope</h3>
1045 wakaba 1.82
1046     <p>The global scope is the "inside" of a worker.</p>
1047    
1048 wakaba 1.110 <h4 id=the-workerglobalscope-abstract-interface><span class=secno>4.1.1 </span>The <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> abstract interface</h4>
1049 wakaba 1.82
1050     <pre class=idl>interface <dfn id=workerglobalscope>WorkerGlobalScope</dfn> {
1051     readonly attribute <a href=#workerglobalscope>WorkerGlobalScope</a> <a href=#dom-workerglobalscope-self title=dom-WorkerGlobalScope-self>self</a>;
1052     readonly attribute <a href=#workerlocation>WorkerLocation</a> <a href=#dom-workerglobalscope-location title=dom-WorkerGlobalScope-location>location</a>;
1053     // also implements everything on <a href=#workerutils>WorkerUtils</a>
1054    
1055     void <a href=#dom-workerglobalscope-close title=dom-WorkerGlobalScope-close>close</a>();
1056 wakaba 1.108 <!-- v2-onclose attribute <span>Function</span> <span title="handler-WorkerGlobalScope-onclose">onclose</span>;
1057     --> attribute <span>Function</span> <a href=#handler-workerglobalscope-onerror title=handler-WorkerGlobalScope-onerror>onerror</a>;
1058 wakaba 1.82 };</pre>
1059    
1060     <p>Objects implementing the <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> interface
1061     must also implement the <code>EventTarget</code> interface.</p>
1062    
1063     <p>The <dfn id=dom-workerglobalscope-self title=dom-WorkerGlobalScope-self><code>self</code></dfn> attribute
1064     must return the <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object itself.</p>
1065    
1066     <p>The <dfn id=dom-workerglobalscope-location title=dom-WorkerGlobalScope-location><code>location</code></dfn>
1067     attribute must return the <code><a href=#workerlocation>WorkerLocation</a></code> object created
1068     for the <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object when the worker was
1069     created. It represents the <span>absolute URL</span> of the script
1070 wakaba 1.83 that was used to initialize the worker, after any redirects.</p>
1071 wakaba 1.82
1072     <hr><p>When a script invokes the <dfn id=dom-workerglobalscope-close title=dom-WorkerGlobalScope-close><code>close()</code></dfn>
1073     method on a <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object, the user agent
1074     must run the following steps (atomically):</p>
1075    
1076     <ol><li><p>Discard any <span title=concept-task>tasks</span> that
1077     have been added to the <span>event loop</span>'s <span title="task
1078     queue">task queues</span>.</p>
1079    
1080     <!-- v2-onclose
1081     <li><p><span>Queue a task</span> to <span>fire a simple
1082     event</span> called <code title="event-close">close</code> at the
1083     <code>WorkerGlobalScope</code> object.</p></li>
1084     -->
1085    
1086     <li><p>Set the worker's <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object's
1087     <a href=#dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</a> flag to
1088     true. (This prevents any further tasks from being queued.)</li>
1089    
1090     <li><p>Disentangle all the ports in the list of <a href="#the-worker's-ports">the worker's
1091     ports</a>.</li>
1092    
1093     </ol><p>The following are the <span>event handler attributes</span> (and their corresponding <span title="event handler event type">event handler event types</span>)
1094     that must be supported, as DOM attributes, by objects implementing
1095     the <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> interface:</p>
1096    
1097     <table><thead><tr><th><span title="event handler attributes">event handler attribute</span> <th><span>Event handler event type</span>
1098     <tbody><!-- v2-onclose <tr><td><dfn title="handler-WorkerGlobalScope-onclose"><code>onclose</code></dfn> <td> <code title="event-close">close</code> --><tr><td><dfn id=handler-workerglobalscope-onerror title=handler-WorkerGlobalScope-onerror><code>onerror</code></dfn> <td> <code title=event-error>error</code>
1099 wakaba 1.110 </table><h4 id=dedicated-workers-and-the-dedicatedworkerglobalscope-interface><span class=secno>4.1.2 </span>Dedicated workers and the <code><a href=#dedicatedworkerglobalscope>DedicatedWorkerGlobalScope</a></code> interface</h4>
1100 wakaba 1.82
1101 wakaba 1.93 <pre class=idl>[NoInterfaceObject, Supplemental] interface <dfn id=dedicatedworkerglobalscope>DedicatedWorkerGlobalScope</dfn> : <a href=#workerglobalscope>WorkerGlobalScope</a> {
1102 wakaba 1.82 void <a href=#dom-dedicatedworkerglobalscope-postmessage title=dom-DedicatedWorkerGlobalScope-postMessage>postMessage</a>(in any message, [Optional] in <span>MessagePortArray</span> ports);<!--
1103     <span>MessagePort</span> <span title="dom-DedicatedWorkerGlobalScope-startConversation">startConversation</span>(in any message);-->
1104 wakaba 1.108 attribute <span>Function</span> <a href=#handler-dedicatedworkerglobalscope-onmessage title=handler-DedicatedWorkerGlobalScope-onmessage>onmessage</a>;
1105 wakaba 1.82 };</pre>
1106    
1107     <p><code><a href=#dedicatedworkerglobalscope>DedicatedWorkerGlobalScope</a></code> objects act as if they
1108     had an implicit <code>MessagePort</code> associated with them. This
1109     port is part of a channel that is set up when the worker is created,
1110     but it is not exposed. This object must never be garbage collected
1111     before the <code><a href=#dedicatedworkerglobalscope>DedicatedWorkerGlobalScope</a></code> object.</p>
1112    
1113     <p>All messages received by that port must immediately be retargeted
1114     at the <code><a href=#dedicatedworkerglobalscope>DedicatedWorkerGlobalScope</a></code> object.</p>
1115    
1116     <p>The <dfn id=dom-dedicatedworkerglobalscope-postmessage title=dom-DedicatedWorkerGlobalScope-postMessage><code>postMessage()</code></dfn><!--
1117     and <dfn
1118     title="dom-DedicatedWorkerGlobalScope-startConversation"><code>startConversation()</code></dfn>-->
1119     method<!--s (startConversation)--> on
1120     <code><a href=#dedicatedworkerglobalscope>DedicatedWorkerGlobalScope</a></code> objects must act as if, when
1121     invoked, it<!--/they (startConversation)--> immediately invoked the
1122     method of the same name on the port, with the same arguments, and
1123     returned the same return value.</p>
1124    
1125     <p>The following are the <span>event handler attributes</span> (and
1126     their corresponding <span title="event handler event type">event
1127     handler event types</span>) that must be supported, as DOM
1128     attributes, by objects implementing the
1129     <code><a href=#dedicatedworkerglobalscope>DedicatedWorkerGlobalScope</a></code> interface:</p>
1130    
1131     <table><thead><tr><th><span title="event handler attributes">event handler attribute</span> <th><span>Event handler event type</span>
1132     <tbody><tr><td><dfn id=handler-dedicatedworkerglobalscope-onmessage title=handler-DedicatedWorkerGlobalScope-onmessage><code>onmessage</code></dfn> <td> <code title=event-message>message</code>
1133     </table><p>For the purposes of the <span>offline application cache</span>
1134     networking model, a dedicated worker is an extension of the
1135     <span>cache host</span> from which it was created.</p>
1136    
1137    
1138    
1139 wakaba 1.110 <h4 id=shared-workers-and-the-sharedworkerglobalscope-inteface><span class=secno>4.1.3 </span>Shared workers and the <code><a href=#sharedworkerglobalscope>SharedWorkerGlobalScope</a></code> inteface</h4>
1140 wakaba 1.82
1141 wakaba 1.93 <pre class=idl>[NoInterfaceObject, Supplemental] interface <dfn id=sharedworkerglobalscope>SharedWorkerGlobalScope</dfn> : <a href=#workerglobalscope>WorkerGlobalScope</a> {
1142 wakaba 1.82 readonly attribute DOMString <a href=#dom-sharedworkerglobalscope-name title=dom-SharedWorkerGlobalScope-name>name</a>;
1143     readonly attribute <span>ApplicationCache</span> <a href=#dom-sharedworkerglobalscope-applicationcache title=dom-SharedWorkerGlobalScope-applicationCache>applicationCache</a>;
1144 wakaba 1.108 attribute <span>Function</span> <a href=#handler-sharedworkerglobalscope-onconnect title=handler-SharedWorkerGlobalScope-onconnect>onconnect</a>;
1145 wakaba 1.82 };</pre>
1146    
1147     <p>Shared workers receive message ports through <code title=event-WorkerGlobalScope-connect>connect</code> events on
1148     their global object for each connection.</p>
1149    
1150     <p>The <dfn id=dom-sharedworkerglobalscope-name title=dom-SharedWorkerGlobalScope-name><code>name</code></dfn>
1151     attribute must return the value it was assigned when the
1152     <code><a href=#sharedworkerglobalscope>SharedWorkerGlobalScope</a></code> object was created by the
1153     "<a href=#run-a-worker>run a worker</a>" algorithm. Its value represents the name
1154     that can be used to obtain a reference to the worker using the
1155     <code><a href=#sharedworker>SharedWorker</a></code> constructor.</p>
1156    
1157     <p>The following are the <span>event handler attributes</span> (and
1158     their corresponding <span title="event handler event type">event
1159     handler event types</span>) that must be supported, as DOM
1160     attributes, by objects implementing the
1161     <code><a href=#sharedworkerglobalscope>SharedWorkerGlobalScope</a></code> interface:</p>
1162    
1163     <table><thead><tr><th><span title="event handler attributes">event handler attribute</span> <th><span>Event handler event type</span>
1164     <tbody><tr><td><dfn id=handler-sharedworkerglobalscope-onconnect title=handler-SharedWorkerGlobalScope-onconnect><code>onconnect</code></dfn> <td> <code title=event-connect>connect</code>
1165     </table><p>For the purposes of the <span>offline application cache</span>
1166     networking model, a shared worker is its own <span>cache
1167     host</span>. The <a href=#run-a-worker>run a worker</a> algorithm takes care of
1168     associating the worker with an <span>application cache</span>.</p>
1169    
1170     <p class=note>The <dfn id=dom-sharedworkerglobalscope-applicationcache title=dom-SharedWorkerGlobalScope-applicationCache><code>applicationCache</code></dfn>
1171     attribute returns the <code>ApplicationCache</code> object for the
1172     worker.</p><!-- normative conf criteria is in the appcache section
1173     -->
1174    
1175    
1176 wakaba 1.110 <h3 id=base-urls-and-origins-of-workers><span class=secno>4.2 </span>Base URLs and origins of workers</h3>
1177 wakaba 1.82
1178     <p>Both the <span>origin</span> and <span>effective script
1179     origin</span> of scripts running in workers are the
1180     <span>origin</span> of the <span>absolute URL</span> given in that
1181     the worker's <code title=dom-WorkerGlobalScope-location><a href=#dom-workerglobalscope-location>location</a></code> attribute
1182     represents.</p>
1183    
1184    
1185 wakaba 1.110 <h3 id=decoding-scripts><span class=secno>4.3 </span>Decoding scripts</h3>
1186 wakaba 1.82
1187     <p>When a user agent is to <dfn id=decode-a-script-resource>decode a script resource</dfn> to
1188     obtain its source in Unicode, it must run the following steps:</p>
1189    
1190     <ol><li>
1191    
1192     <p>Let <var title="">character encoding</var> be <i title="">unknown</i>.</p>
1193    
1194     </li>
1195    
1196     <li>
1197    
1198     <p>For each of the rows in the following table, starting with the
1199     first one and going down, if the resource has as many or more
1200     bytes available than the number of bytes in the first column, and
1201     the first bytes of the resource match the bytes given in the first
1202     column, then let <var title="">character encoding</var> be the
1203     encoding given in the cell in the second column of that row:</p>
1204    
1205     <!-- this table is present in several forms in this file; keep them in sync -->
1206     <table><thead><tr><th>Bytes in Hexadecimal
1207     <th>Encoding
1208     <tbody><!-- nobody uses this
1209     <tr>
1210     <td>00 00 FE FF
1211     <td>UTF-32BE
1212     <tr>
1213     <td>FF FE 00 00
1214     <td>UTF-32LE
1215     --><tr><td>FE FF
1216     <td>UTF-16BE
1217     <tr><td>FF FE
1218     <td>UTF-16LE
1219     <tr><td>EF BB BF
1220     <td>UTF-8
1221     <!-- nobody uses this
1222     <tr>
1223     <td>DD 73 66 73
1224     <td>UTF-EBCDIC
1225     -->
1226     </table><p class=note>This step looks for Unicode Byte Order Marks
1227     (BOMs).</p>
1228    
1229     </li>
1230    
1231     <li>
1232    
1233     <p>If <var title="">character encoding</var> is still <i title="">unknown</i>, apply the <span>algorithm for extracting an
1234     encoding from a Content-Type</span> to the resource's <span title=Content-Type>Content Type metadata</span>; if this returns
1235     an encoding, and the user agent supports that encoding, then let
1236     <var title="">character encoding</var> be that encoding.</p>
1237    
1238     </li>
1239    
1240     <li>
1241    
1242     <p>If <var title="">character encoding</var> is still <i title="">unknown</i>, then let <var title="">character
1243     encoding</var> be UTF-8.</p>
1244    
1245     </li>
1246    
1247     <li>
1248    
1249     <p>Convert the resource to Unicode using the character encoding
1250     given by <var title="">character encoding</var>.</p>
1251    
1252     <p>Return the text that is so obtained.</p>
1253    
1254     </li>
1255    
1256 wakaba 1.110 </ol><h3 id=the-event-loop><span class=secno>4.4 </span>The event loop</h3>
1257 wakaba 1.82
1258 wakaba 1.83 <p>Each <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object has an <span>event
1259     loop</span> distinct from those defined for <span title="unit of
1260     related similar-origin browsing contexts">units of related
1261     similar-origin browsing contexts</span>. This <span>event
1262     loop</span> has no associated <span>browsing context</span>, and its
1263     <span title="task queue">task queues</span> only have events,
1264     callbacks, and networking activity as <span title=concept-task>tasks</span>. The processing model of these
1265     <span title="event loop">event loops</span> is defined below in the
1266     <a href=#run-a-worker>run a worker</a> algorithm.</p>
1267 wakaba 1.82
1268     <p>Each <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object also has a <dfn id=dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</dfn> flag, which must
1269     initially be false, but which can get set to true by the algorithms
1270     in the processing model section below.</p>
1271    
1272     <p>Once the <code><a href=#workerglobalscope>WorkerGlobalScope</a></code>'s <a href=#dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</a> flag is set to
1273     true, the <span>event loop</span>'s <span title="task queue">task
1274     queues</span> must discard any further <span title=concept-task>tasks</span> that would be added to them (tasks
1275     already on the queue are unaffected unless otherwise
1276     specified). Effectively, once the <a href=#dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</a> flag is true,
1277     timers stop firing, notifications for all pending asynchronous
1278     operations are dropped, etc.</p>
1279    
1280    
1281 wakaba 1.104
1282 wakaba 1.110 <h3 id="the-worker's-lifetime"><span class=secno>4.5 </span>The worker's lifetime</h3>
1283 wakaba 1.82
1284     <p>Workers communicate with other workers and with <span title="browsing context">browsing contexts</span> through <span title="channel messaging">message channels</span> and their
1285     <code>MessagePort</code> objects.</p>
1286    
1287     <p>Each <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> <var title="">worker global
1288     scope</var> has a list of <dfn id="the-worker's-ports">the worker's ports</dfn>, which
1289     consists of all the <code>MessagePort</code> objects that are
1290     entangled with another port and that have one (but only one) port
1291     owned by <var title="">worker global scope</var>. This list includes
1292     <!--all the <code>MessagePort</code> objects that are in events
1293     pending in the <span>event loop</span>, as well as (commented out
1294     because in practice it makes no difference either way as far as I
1295     can tell, and it would be hard to strictly implement since these
1296     ports might not yet be across the thread boundary)--> the implicit
1297     <code>MessagePort</code> in the case of <a href=#dedicatedworkerglobalscope title=DedicatedWorkerGlobalScope>dedicated workers</a>.</p>
1298    
1299     <p>Each <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> also has a list of <dfn id="the-worker's-workers">the
1300     worker's workers</dfn>. Initially this list is empty; it is
1301     populated when the worker creates or obtains further workers.</p>
1302    
1303     <p>Finally, each <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> also has a list of
1304     <dfn id="the-worker's-documents">the worker's <code>Document</code>s</dfn>. Initially this list
1305     is empty; it is populated when the worker is created.</p>
1306    
1307     <p>Whenever a <code>Document</code> <var title="">d</var> is <dfn id="add-a-document-to-the-worker's-documents" title="add a document to the worker's documents">added to the
1308     worker's <code>Document</code>s</dfn>, the user agent must, for each
1309     worker in the list of <a href="#the-worker's-workers">the worker's workers</a> whose list
1310     of <a href="#the-worker's-documents">the worker's <code>Document</code>s</a> does not contain
1311     <var title="">d</var>, <a href="#add-a-document-to-the-worker's-documents" title="add a document to the worker's
1312     documents">add <var title="">d</var> to <var title="">q</var>'s
1313     <code>WorkerGlobalScope</code> owner's list of <span>the worker's
1314     <code>Document</code>s</span></a>.</p> <!-- suggestions welcome
1315     on making this sentence into understandable English -->
1316    
1317     <p>Whenever a <code>Document</code> object is <span title="discard a
1318     Document">discarded</span>, it must be removed from the list of
1319     <a href="#the-worker's-documents">the worker's <code>Document</code>s</a> of each worker
1320     whose list contains that <code>Document</code>.</p>
1321    
1322     <p>Given a <span>script's global scope</span> <var title="">o</var>
1323     when creating or obtaining a worker, the <dfn id=list-of-relevant-document-objects-to-add>list of relevant
1324     <code>Document</code> objects to add</dfn> depends on the type of
1325     <var title="">o</var>. If <var title="">o</var> is a
1326     <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object (i.e. if we are creating a
1327     nested worker), then the relevant <code>Document</code>s are the
1328     <code>Document</code>s that are in <var title="">o</var>'s own list
1329     of <a href="#the-worker's-documents">the worker's <code>Document</code>s</a>. Otherwise, <var title="">o</var> is a <code>Window</code> object, and the relevant
1330     <code>Document</code> is just the <code>Document</code> that is the
1331     <span>active document</span> of the <code>Window</code> object <var title="">o</var>.</p>
1332    
1333     <hr><p>A worker is said to be a <dfn id=permissible-worker>permissible worker</dfn> if its
1334     list of <a href="#the-worker's-documents">the worker's <code>Document</code>s</a> is not
1335     empty.</p>
1336    
1337     <p>A worker is said to be a <dfn id=protected-worker>protected worker</dfn> if it is a
1338     <a href=#permissible-worker>permissible worker</a> and either it has outstanding
1339     timers, database transactions, or network connections, or its list
1340     of <a href="#the-worker's-ports">the worker's ports</a> is not empty, or its
1341     <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> is actually a
1342     <code><a href=#sharedworkerglobalscope>SharedWorkerGlobalScope</a></code> object (i.e. the worker is a
1343     shared worker).</p>
1344    
1345     <p>A worker is said to be an <dfn id=active-needed-worker>active needed worker</dfn> if any
1346     of the <code>Document</code> objects in <a href="#the-worker's-documents">the worker's
1347     <code>Document</code>s</a> are <span>fully active</span>.</p>
1348    
1349     <p>A worker is said to be a <dfn id=suspendable-worker>suspendable worker</dfn> if it is
1350     not an <a href=#active-needed-worker>active needed worker</a> but it is a
1351     <a href=#permissible-worker>permissible worker</a>.</p>
1352    
1353    
1354 wakaba 1.110 <h3 id=processing-model><span class=secno>4.6 </span>Processing model</h3>
1355 wakaba 1.82
1356     <p>When a user agent is to <dfn id=run-a-worker>run a worker</dfn> for a script with
1357     <span>URL</span> <var title="">url</var>, a browsing context <var title="">owner browsing context</var>, and with global scope <var title="">worker global scope</var>, it must run the following
1358     steps:</p>
1359    
1360     <ol><li>
1361    
1362     <p>Create a completely separate and parallel execution environment
1363     (i.e. a separate thread or process or equivalent construct), and
1364     run the rest of these steps asynchronously in that context.</p>
1365    
1366     </li>
1367    
1368     <li><p>If <var title="">worker global scope</var> is actually a
1369     <code><a href=#sharedworkerglobalscope>SharedWorkerGlobalScope</a></code> object (i.e. the worker is a
1370     shared worker), and there are any <span title="relevant application
1371     cache">relevant application caches</span> that are identified by a
1372     manifest URL with the <span>same origin</span> as <var title="">url</var> and that have <var title="">url</var> as one of
1373     their entries, <em>not</em> excluding entries marked as <span title=concept-appcache-foreign>foreign</span>, then associate the
1374     <var title="">worker global scope</var> with the <span title=concept-appcache-selection>most appropriate application
1375     cache</span> of those that match.</li>
1376    
1377     <li>
1378    
1379     <p>Attempt to <span>fetch</span> the resource identified by <var title="">url</var>.</p>
1380    
1381 wakaba 1.83 <p>If the attempt fails, or if the attempt involves any redirects
1382     to URIs that do not have the <span>same origin</span> as <var title="">url</var> (even if the final URI is at the <span>same
1383     origin</span> as the original <var title="">url</var>), then for
1384     each <code><a href=#worker>Worker</a></code> or <code><a href=#sharedworker>SharedWorker</a></code> object
1385     associated with <var title="">worker global scope</var>,
1386     <span>queue a task</span> to <span>fire a simple event</span>
1387     called <code title=event-error>error</code> at that
1388     object. Abort these steps.</p>
1389 wakaba 1.82
1390     <p>If the attempt succeeds, then <a href=#decode-a-script-resource title="decode a script
1391     resource">decode the script resource</a> to obtain its <var title="">source</var>.</p>
1392    
1393     <p>Let <var title="">language</var> be JavaScript.</p>
1394    
1395     <p class=note>As with <code>script</code> elements, the MIME
1396     type of the script is ignored. Unlike with <code>script</code>
1397     elements, there is no way to override the type. It's always
1398     assumed to be JavaScript.</p> <!-- XXX people will complain about
1399     this. I guess we might want to examine the MIME type... -->
1400    
1401     </li>
1402    
1403     <li>
1404    
1405     <p>A new <span title=concept-script>script</span> is now
1406     created, as follows.</p>
1407    
1408     <p>Create a new <span>script execution environment</span>
1409     set up as appropriate for the scripting language <var title="">language</var>.</p>
1410    
1411     <p>Parse/compile/initialize <var title="">source</var> using that
1412     <span>script execution environment</span>, as appropriate for <var title="">language</var>, and thus obtain a <span>list of code
1413     entry-points</span>; set the <i>initial code entry-point</i> to
1414     the entry-point for any executable code to be immediately run.</p>
1415    
1416     <p>Set the <span>script's global object</span> to <var title="">worker global scope</var>.</p>
1417    
1418     <p>Set the <span>script's browsing context</span> to <var title="">owner browsing context</var>.</p>
1419    
1420     <p>Set the <span>script's URL character encoding</span> to
1421     UTF-8. (This is just used for encoding non-ASCII characters in the
1422     query component of URLs.)</p>
1423    
1424     <p>Set the <span>script's base URL</span> to <var title="">url</var>.</p>
1425    
1426     </li>
1427    
1428     <li>
1429    
1430     <p><strong>Closing orphan workers</strong>: Start monitoring the
1431     worker such that no sooner than it stops being either a
1432     <a href=#protected-worker>protected worker</a> or a <a href=#suspendable-worker>suspendable
1433     worker</a>, and no later than it stops being a
1434     <a href=#permissible-worker>permissible worker</a>, <var title="">worker global
1435     scope</var>'s <a href=#dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</a> flag is set
1436     to true<!-- v2-onclose and <span title="queue a task">a task is
1437     queued</span> to <span>fire a simple event</span> called <code
1438     title="event-close">close</code> at <var title="">worker global
1439     scope</var>-->.</p>
1440    
1441     </li>
1442    
1443     <li>
1444    
1445     <p><strong>Suspending workers</strong>: Start monitoring the
1446     worker, such that whenever <var title="">worker global
1447     scope</var>'s <a href=#dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</a> flag is false
1448     and the worker is a <a href=#suspendable-worker>suspendable worker</a>, the user
1449     agent suspends execution of script in that worker until such time
1450     as either the <a href=#dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</a> flag switches
1451     to true or the worker stops being a <a href=#suspendable-worker>suspendable
1452     worker</a>.</p>
1453    
1454     </li>
1455    
1456     <li>
1457    
1458     <p><span title="jump to a code entry-point">Jump</span> to the
1459     <span title=concept-script>script</span>'s <i>initial code
1460     entry-point</i>, and let that run until it either returns, fails
1461     to catch an exception, or gets prematurely aborted by the
1462     "<a href=#kill-a-worker>kill a worker</a>" or "<a href=#terminate-a-worker>terminate a worker</a>"
1463     algorithms defined below.</p>
1464    
1465 wakaba 1.122 <!-- v2-onclose
1466     <p class="note">If the script gets aborted by the "<span>kill a
1467     worker</span>" algorithm, then that same algorithm will cause
1468     there to only be a single <span title="concept-task">task</span>
1469 wakaba 1.82 in the <span>event loop</span> at the next step, namely the task
1470 wakaba 1.122 for the <code title="message-close">close</code> event. The
1471     "<span>terminate a worker</span>" algorithm removes all the
1472 wakaba 1.82 events.</p>
1473 wakaba 1.122 -->
1474 wakaba 1.82
1475     </li>
1476    
1477     <li><p>If <var title="">worker global scope</var> is actually a
1478     <code><a href=#dedicatedworkerglobalscope>DedicatedWorkerGlobalScope</a></code> object (i.e. the worker is
1479     a dedicated worker), then enable the <span>port message
1480     queue</span> of the worker's implicit port.</li>
1481    
1482     <li>
1483    
1484     <p><i title="">Event loop</i>: Wait until either there is a <span title=concept-task>task</span> in one of the <span>event
1485     loop</span>'s <span title="task queue">task queues</span> or <var title="">worker global scope</var>'s <a href=#dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</a> flag is set
1486     to true.</p>
1487    
1488     </li>
1489    
1490     <li>
1491    
1492     <p>Run the oldest task on one of the <span>event loop</span>'s
1493     <span title="task queue">task queues</span>, if any. The user
1494     agent may pick any <span>task queue</span>.</p>
1495    
1496     <p class=note>The handling of events or the execution of
1497     callbacks might get prematurely aborted by the "<a href=#kill-a-worker>kill a
1498     worker</a>" or "<a href=#terminate-a-worker>terminate a worker</a>" algorithms
1499     defined below.</p>
1500    
1501     </li>
1502    
1503     <li>
1504    
1505     <p>Remove the task run in the previous step, if any, from its
1506     <span>task queue</span>.</p>
1507    
1508     </li>
1509    
1510     <li>
1511    
1512     <p>If there are any more events in the <span>event loop</span>'s
1513     <span title="task queue">task queues</span> or if <var title="">worker global scope</var>'s <a href=#dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</a> flag is set
1514     to false, then jump back to the step above labeled <i>event
1515     loop</i>.</p>
1516    
1517     </li>
1518    
1519     <li>
1520    
1521     <p>If there are any outstanding transactions that have callbacks
1522     that involve <span title=concept-script>scripts</span> whose
1523     <span title="script's global object">global object</span> is the
1524     <var title="">worker global scope</var>, roll them back (without
1525     invoking any of the callbacks).</p>
1526    
1527     </li>
1528    
1529     <li>
1530    
1531     <p>Empty the <var title="">worker global scope</var>'s <span>list
1532     of active timeouts</span> and its <span>list of active
1533     intervals</span>.</p>
1534    
1535     </li>
1536    
1537     <!-- v2-onclose
1538     <li>
1539    
1540     <p>For each <code>Worker</code> or <code>SharedWorker</code>
1541     object associated with <var title="">worker global scope</var>,
1542     <span>queue a task</span> to <span>fire a simple event</span>
1543     called <code title="event-close">close</code> at that object.</p>
1544    
1545     </li>
1546     -->
1547     </ol><hr><p>When a user agent is to <dfn id=kill-a-worker>kill a worker</dfn> it must
1548     run the following steps in parallel with the worker's main loop (the
1549     "<a href=#run-a-worker>run a worker</a>" processing model defined above):</p>
1550    
1551     <ol><!-- v2-onclose
1552     <li><p>If the worker's <code>WorkerGlobalScope</code> object's
1553     <span title="dom-WorkerGlobalScope-closing">closing</span> flag is
1554     false, <span>queue a task</span> to <span>fire a simple
1555     event</span> called <code title="event-close">close</code> at the
1556     worker's <code>WorkerGlobalScope</code> object.</p></li>
1557     --><li><p>Set the worker's <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object's <a href=#dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</a> flag to
1558     true.</li>
1559    
1560     <!-- v2-onclose
1561     <li><p>Wait a user-agent-defined amount of time. If the "<span>run
1562     a worker</span>" processing model defined above immediately starts
1563     running event listeners registered for the <code
1564     title="event-close">close</code> event, this time should not be
1565     zero &mdash; the idea is that the <code
1566     title="event-close">close</code> event can be used to clean up
1567     when shutting down unexpectedly.</p></li>
1568     -->
1569    
1570     <li><p>If there are any <span title=concept-task>tasks</span>
1571     queued in the <span>event loop</span>'s <span title="task
1572     queue">task queues</span><!-- v2-onclose other than the <code
1573     title="event-close">close</code> event that this algorithm just
1574     added-->, discard them without processing them.</li>
1575    
1576     <!-- v2-onclose
1577     <li><p>If the <code title="event-close">close</code> event that
1578     this algorithm just queued hasn't yet been dispatched, then abort
1579     the script currently running in the worker.</p></li>
1580     -->
1581    
1582     <li><p>Wait a user-agent-defined amount of time.</li>
1583    
1584     <li><p>Abort the script currently running in the worker<!--
1585     v2-onclose (if any script is running, then it will be a handler for
1586     the <code title="event-close">close</code> event)-->.</li>
1587    
1588     </ol><p>User agents may invoke the "<a href=#kill-a-worker>kill a worker</a>"
1589     processing model on a worker at any time, e.g. in response to user
1590     requests, in response to CPU quota management, or when a worker
1591     stops being an <a href=#active-needed-worker>active needed worker</a> if the worker
1592     continues executing even after its <a href=#dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</a> flag was
1593     set to true.</p>
1594    
1595     <hr><p>When a user agent is to <dfn id=terminate-a-worker>terminate a worker</dfn> it must run
1596     the following steps in parallel with the worker's main loop (the
1597     "<a href=#run-a-worker>run a worker</a>" processing model defined above):</p>
1598    
1599     <ol><li><p>Set the worker's <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object's
1600     <a href=#dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</a> flag to
1601     true.</li>
1602    
1603     <li><p>If there are any <span title=concept-task>tasks</span>
1604     queued in the <span>event loop</span>'s <span title="task
1605     queue">task queues</span>, discard them without processing
1606     them.</li>
1607    
1608     <li><p>Abort the script currently running in the worker.</li>
1609    
1610     <li><p>If the worker's <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object is
1611     actually a <code><a href=#dedicatedworkerglobalscope>DedicatedWorkerGlobalScope</a></code> object (i.e. the
1612     worker is a dedicated worker), then empty the <span>port message
1613     queue</span> of the port that the worker's implicit port is
1614     entangled with.</li>
1615    
1616 wakaba 1.104 </ol><hr><p>The <span>task source</span> for the tasks mentioned above is the
1617     <span>DOM manipulation task source</span>.</p>
1618    
1619    
1620 wakaba 1.110 <h3 id=runtime-script-errors><span class=secno>4.7 </span>Runtime script errors</h3>
1621 wakaba 1.82
1622 wakaba 1.108 <p>Whenever an uncaught runtime script error occurs in one of the
1623     worker's scripts, if the error did not occur while handling a
1624     previous script error, the user agent must <span>report the
1625     error</span> using the <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object's <code title=handler-WorkerGlobalScope-onerror><a href=#handler-workerglobalscope-onerror>onerror</a></code>
1626     attribute. <a href=#refsHTML5>[HTML5]</a></p>
1627 wakaba 1.82
1628     <p>For shared workers, if the error is still <i title=concept-error-nothandled>not handled</i> afterwards, or if
1629 wakaba 1.91 the error occurred while handling a previous script error, the error
1630 wakaba 1.108 should be reported to the user. <a href=#refsHTML5>[HTML5]</a></p>
1631 wakaba 1.82
1632     <p>For dedicated workers, if the error is still <i title=concept-error-nothandled>not handled</i> afterwards, or if
1633 wakaba 1.91 the error occurred while handling a previous script error, the user
1634 wakaba 1.82 agent must <span>queue a task</span> to <a href=#fire-a-worker-error-event>fire a worker error
1635     event</a> at the <code><a href=#worker>Worker</a></code> object associated with the
1636     worker.</p>
1637    
1638     <p>When the user agent is to <dfn id=fire-a-worker-error-event>fire a worker error event</dfn> at
1639     a <code><a href=#worker>Worker</a></code> object, it must dispatch an event that uses
1640     the <code><a href=#errorevent>ErrorEvent</a></code> interface, with the name <code title=event-error>error</code>, that doesn't bubble and is
1641     cancelable, with its <code title=dom-ErrorEvent-message><a href=#dom-errorevent-message>message</a></code>, <code title=dom-ErrorEvent-filename><a href=#dom-errorevent-filename>filename</a></code>, and <code title=dom-ErrorEvent-lineno><a href=#dom-errorevent-lineno>lineno</a></code> attributes set
1642     appropriately. The default action of this event depends on whether
1643     the <code><a href=#worker>Worker</a></code> object is itself in a worker. If it is, and
1644     that worker is also a dedicated worker, then the user agent must
1645     again <span>queue a task</span> to <a href=#fire-a-worker-error-event>fire a worker error
1646     event</a> at the <code><a href=#worker>Worker</a></code> object associated with
1647     <em>that</em> worker. Otherwise, then the error should be reported
1648     to the user.</p>
1649    
1650 wakaba 1.104 <p>The <span>task source</span> for the tasks mentioned above is the
1651     <span>DOM manipulation task source</span>.</p>
1652    
1653 wakaba 1.82 <hr><pre class=idl>interface <dfn id=errorevent>ErrorEvent</dfn> : Event {
1654 wakaba 1.109 readonly attribute DOMString <a href=#dom-errorevent-message title=dom-ErrorEvent-message>message</a>;
1655     readonly attribute DOMString <a href=#dom-errorevent-filename title=dom-ErrorEvent-filename>filename</a>;
1656 wakaba 1.82 readonly attribute unsigned long <a href=#dom-errorevent-lineno title=dom-ErrorEvent-lineno>lineno</a>;
1657 wakaba 1.109 void <a href=#dom-errorevent-initerrorevent title=dom-ErrorEvent-initErrorEvent>initErrorEvent</a>(in DOMString typeArg, in boolean canBubbleArg, in boolean cancelableArg, in DOMString messageArg, in DOMString filenameArg, in unsigned long linenoArg);
1658     void <a href=#dom-errorevent-initerroreventns title=dom-ErrorEvent-initErrorEventNS>initErrorEventNS</a>(in DOMString namespaceURIArg, in DOMString typeArg, in boolean canBubbleArg, in boolean cancelableArg, in DOMString messageArg, in DOMString filenameArg, in unsigned long linenoArg);
1659 wakaba 1.82 };</pre>
1660    
1661     <p>The <dfn id=dom-errorevent-initerrorevent title=dom-ErrorEvent-initErrorEvent><code>initErrorEvent()</code></dfn>
1662     and <dfn id=dom-errorevent-initerroreventns title=dom-ErrorEvent-initErrorEventNS><code>initErrorEventNS()</code></dfn>
1663     methods must initialize the event in a manner analogous to the
1664     similarly-named methods in the DOM3 Events interfaces. <a href=#refsDOM3EVENTS>[DOM3EVENTS]</a></p>
1665    
1666     <p>The <dfn id=dom-errorevent-message title=dom-ErrorEvent-message><code>message</code></dfn>
1667     attribute represents the error message.</p>
1668    
1669     <p>The <dfn id=dom-errorevent-filename title=dom-ErrorEvent-filename><code>filename</code></dfn>
1670     attribute represents the <span>absolute URL</span> of the script in
1671 wakaba 1.91 which the error originally occurred.</p>
1672 wakaba 1.82
1673     <p>The <dfn id=dom-errorevent-lineno title=dom-ErrorEvent-lineno><code>lineno</code></dfn>
1674 wakaba 1.91 attribute represents the line number where the error occurred in the
1675 wakaba 1.82 script.</p>
1676    
1677    
1678    
1679 wakaba 1.110 <h3 id=creating-workers><span class=secno>4.8 </span>Creating workers</h3>
1680 wakaba 1.82
1681 wakaba 1.110 <h4 id=the-abstractworker-abstract-interface><span class=secno>4.8.1 </span>The <code><a href=#abstractworker>AbstractWorker</a></code> abstract interface</h4>
1682 wakaba 1.82
1683     <pre class=idl>interface <dfn id=abstractworker>AbstractWorker</dfn> {
1684 wakaba 1.108 attribute <span>Function</span> <a href=#handler-abstractworker-onerror title=handler-AbstractWorker-onerror>onerror</a>;
1685     <!-- v2-onclose attribute <span>Function</span> <span title="handler-AbstractWorker-onclose">onclose</span>; -->
1686 wakaba 1.82 };</pre>
1687    
1688     <p>Objects implementing the <code><a href=#abstractworker>AbstractWorker</a></code> interface
1689     must also implement the <code>EventTarget</code> interface.</p>
1690    
1691     <p>The following are the <span>event handler attributes</span> (and their corresponding <span title="event handler event type">event handler event types</span>)
1692     that must be supported, as DOM attributes, by objects implementing
1693     the <code><a href=#abstractworker>AbstractWorker</a></code> interface:</p>
1694    
1695     <table><thead><tr><th><span title="event handler attributes">event handler attribute</span> <th><span>Event handler event type</span>
1696     <tbody><tr><td><dfn id=handler-abstractworker-onerror title=handler-AbstractWorker-onerror><code>onerror</code></dfn> <td> <code title=event-error>error</code>
1697     <!-- v2-onclose <tr><td><dfn title="handler-AbstractWorker-onclose"><code>onclose</code></dfn> <td> <code title="event-close">close</code> -->
1698 wakaba 1.110 </table><h4 id=dedicated-workers-and-the-worker-interface><span class=secno>4.8.2 </span>Dedicated workers and the <code><a href=#worker>Worker</a></code> interface</h4>
1699 wakaba 1.82
1700     <pre class=idl>[<a href=#dom-worker title=dom-Worker>Constructor</a>(in DOMString scriptURL)]
1701     interface <dfn id=worker>Worker</dfn> : <a href=#abstractworker>AbstractWorker</a> {
1702     void <a href=#dom-worker-terminate title=dom-Worker-terminate>terminate</a>();
1703    
1704     void <a href=#dom-worker-postmessage title=dom-Worker-postMessage>postMessage</a>(in any message, [Optional] in <span>MessagePortArray</span> ports);<!--
1705     <span>MessagePort</span> <span title="dom-Worker-startConversation">startConversation</span>(in any message);-->
1706 wakaba 1.108 attribute <span>Function</span> <a href=#handler-worker-onmessage title=handler-Worker-onmessage>onmessage</a>;
1707 wakaba 1.82 };</pre>
1708    
1709     <p>The <dfn id=dom-worker-terminate title=dom-Worker-terminate><code>terminate()</code></dfn> method,
1710     when invoked, must cause the "<a href=#terminate-a-worker>terminate a worker</a>"
1711     algorithm to be run on the worker with with the object is
1712     associated.</p>
1713    
1714     <p><code><a href=#worker>Worker</a></code> objects act as if they had an implicit
1715     <code>MessagePort</code> associated with them. This port is part of
1716     a channel that is set up when the worker is created, but it is not
1717     exposed. This object must never be garbage collected before the
1718     <code><a href=#worker>Worker</a></code> object.</p>
1719    
1720     <p>All messages received by that port must immediately be retargeted
1721     at the <code><a href=#worker>Worker</a></code> object.</p>
1722    
1723     <p>The <dfn id=dom-worker-postmessage title=dom-Worker-postMessage><code>postMessage()</code></dfn><!--
1724     and <dfn
1725     title="dom-Worker-startConversation"><code>startConversation()</code></dfn>-->
1726     method<!--s (startConversation)--> on <code><a href=#worker>Worker</a></code> objects
1727     must act as if, when invoked, it<!--/they (startConversation)-->
1728     immediately invoked the method of the same name on the port, with
1729     the same arguments, and returned the same return value.</p>
1730    
1731     <p>The following are the <span>event handler attributes</span> (and their corresponding <span title="event handler event type">event handler event types</span>)
1732     that must be supported, as DOM attributes, by objects implementing
1733     the <code><a href=#worker>Worker</a></code> interface:</p>
1734    
1735     <table><thead><tr><th><span title="event handler attributes">event handler attribute</span> <th><span>Event handler event type</span>
1736     <tbody><tr><td><dfn id=handler-worker-onmessage title=handler-Worker-onmessage><code>onmessage</code></dfn> <td> <code title=event-message>message</code>
1737     </table><hr><p>When the <dfn id=dom-worker title=dom-Worker><code>Worker(<var title="">scriptURL</var>)</code></dfn> constructor is invoked, the
1738     user agent must run the following steps:</p>
1739    
1740 wakaba 1.92 <ol><li><p><span title="resolve a url">Resolve</span> the <var title="">scriptURL</var> argument relative to the <span>first
1741     script</span>'s <span title="script's base URL">base URL</span>,
1742     when the method is invoked.</li>
1743 wakaba 1.82
1744     <li><p>If this fails, throw a <code>SYNTAX_ERR</code>
1745     exception.</li>
1746    
1747     <li><p>If the <span>origin</span> of the resulting <span>absolute
1748     URL</span> is not the <span title="same origin">same</span> as the
1749     origin of the <span title=concept-script>script</span> that
1750     invoked the constructor, then throw a <span>security
1751     exception</span>.</li>
1752    
1753     <li><p><span>Create a new <code><a href=#dedicatedworkerglobalscope>DedicatedWorkerGlobalScope</a></code>
1754     object</span>. Let <var title="">worker global scope</var> be this
1755     new object.</li>
1756    
1757     <li><p>Create a new <code><a href=#worker>Worker</a></code> object, associated with
1758     <var title="">worker global scope</var>. Let <var title="">worker</var> be this new object.</li>
1759    
1760     <li><p><span>Create a <code>MessagePort</code> object</span> owned
1761     by the <span title="script's global scope">global scope</span> of
1762     the <span title=concept-script>script</span> that invoked the
1763     constructor. Let this be the <var title="">outside
1764     port</var>.</li>
1765    
1766     <li><p>Associate the <var title="">outside port</var> with <var title="">worker</var>.</li>
1767    
1768     <li><p><span>Create a <code>MessagePort</code> object</span> owned
1769     by <var title="">worker global scope</var>. Let <var title="">inside port</var> be this new object.</li>
1770    
1771     <li><p>Associate <var title="">inside port</var> with <var title="">worker global scope</var>.</li>
1772    
1773     <li><p><span>Entangle</span> <var title="">outside port</var> and
1774     <var title="">inside port</var>.</li>
1775    
1776     <li><p>Return <var title="">worker</var>, and run the following
1777     steps asynchronously.</li>
1778    
1779     <li><p>Enable <var title="">inside port</var>'s <span>port message
1780     queue</span>.</li>
1781    
1782     <li><p>Enable <var title="">outside port</var>'s <span>port message
1783     queue</span>.</li>
1784    
1785     <li>
1786    
1787     <p>Let <var title="">docs</var> be the <a href=#list-of-relevant-document-objects-to-add>list of relevant
1788     <code>Document</code> objects to add</a> given the <span title="script's global scope">global scope</span> of the <span title=concept-script>script</span> that invoked the
1789     constructor.</p>
1790    
1791     </li>
1792    
1793     <li>
1794    
1795     <p><a href="#add-a-document-to-the-worker's-documents" title="add a document to the worker's documents">Add to
1796     <var title="">worker global scope</var>'s list of <span>the
1797     worker's <code>Document</code>s</span></a> the
1798     <code>Document</code> objects in <var title="">docs</var>.</p>
1799    
1800     </li>
1801    
1802     <li>
1803    
1804     <p>If the <span title="script's global scope">global scope</span>
1805     of the <span title=concept-script>script</span> that invoked the
1806     constructor is a <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object (i.e. we
1807     are creating a nested worker), add <var title="">worker global
1808     scope</var> to the list of <a href="#the-worker's-workers">the worker's workers</a> of the
1809     <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object that is the <span title="script's global scope">global scope</span> of the <span title=concept-script>script</span> that invoked the
1810     constructor.</p>
1811    
1812     </li>
1813    
1814     <li>
1815    
1816     <p><a href=#run-a-worker>Run a worker</a> for the resulting <span>absolute
1817     URL</span>, with the <span>script browsing context</span> of the
1818     script that invoked the method as the <var title="">owner browsing
1819     context</var>, and with <var title="">worker global scope</var> as
1820     the global scope.</p>
1821    
1822     </li>
1823    
1824 wakaba 1.95 </ol><p>This constructor must be visible when the <span>script's global
1825     scope</span> is either a <code>Window</code> object or an object
1826     implementing the <code><a href=#workerutils>WorkerUtils</a></code> interface.</p>
1827    
1828    
1829 wakaba 1.110 <h4 id=shared-workers-and-the-sharedworker-interface><span class=secno>4.8.3 </span>Shared workers and the <code><a href=#sharedworker>SharedWorker</a></code> interface</h4>
1830 wakaba 1.82
1831     <pre class=idl>[<a href=#dom-sharedworker title=dom-SharedWorker>Constructor</a>(in DOMString scriptURL, in DOMString name)]
1832     interface <dfn id=sharedworker>SharedWorker</dfn> : <a href=#abstractworker>AbstractWorker</a> {
1833     readonly attribute <span>MessagePort</span> <a href=#dom-sharedworker-port title=dom-SharedWorker-port>port</a>;
1834     };</pre>
1835    
1836     <p>The <dfn id=dom-sharedworker-port title=dom-SharedWorker-port><code>port</code></dfn>
1837     attribute must return the value it was assigned by the object's
1838     constructor. It represents the <code>MessagePort</code> for
1839     communicating with the shared worker.</p>
1840    
1841     <p>When the <dfn id=dom-sharedworker title=dom-SharedWorker><code>SharedWorker(<var title="">scriptURL</var>, <var title="">name</var>)</code></dfn>
1842     constructor is invoked, the user agent must run the following
1843     steps:</p>
1844    
1845     <ol><li><p><span title="resolve a url">Resolve</span> the <var title="">scriptURL</var> argument.</li>
1846    
1847     <li><p>If this fails, throw a <code>SYNTAX_ERR</code>
1848     exception.</li>
1849    
1850     <li><p>If the <span>origin</span> of the resulting <span>absolute
1851     URL</span> is not the <span title="same origin">same</span> as the
1852     origin of the script that invoked the constructor, then throw a
1853     <span>security exception</span>.</li>
1854    
1855     <li>
1856    
1857     <p>Let <var title="">docs</var> be the <a href=#list-of-relevant-document-objects-to-add>list of relevant
1858     <code>Document</code> objects to add</a> given the <span title="script's global scope">global scope</span> of the <span title=concept-script>script</span> that invoked the
1859     constructor.</p>
1860    
1861     </li>
1862    
1863     <li>
1864    
1865     <p>Execute the following substeps atomically:</p>
1866    
1867     <ol><li><p>Create a new <code><a href=#sharedworker>SharedWorker</a></code> object, which will
1868     shortly be associated with a <code><a href=#sharedworkerglobalscope>SharedWorkerGlobalScope</a></code>
1869     object. Let this <code><a href=#sharedworker>SharedWorker</a></code> object be <var title="">worker</var>.</li>
1870    
1871     <li><p><span>Create a <code>MessagePort</code> object</span>
1872     owned by the <span title="script's global scope">global
1873     scope</span> of the script that invoked the method. Let this be
1874     the <var title="">outside port</var>.</li>
1875    
1876     <li><p>Assign <var title="">outside port</var> to the <code title=dom-SharedWorker-port><a href=#dom-sharedworker-port>port</a></code> attribute of <var title="">worker</var>.</li>
1877    
1878     <li>
1879    
1880     <p>If there exists a <code><a href=#sharedworkerglobalscope>SharedWorkerGlobalScope</a></code> object
1881     whose <a href=#dom-workerglobalscope-closing title=dom-WorkerGlobalScope-closing>closing</a>
1882     flag is false, whose <code title=dom-WorkerGlobalScope-name>name</code> attribute is
1883     exactly equal to the <var title="">name</var> argument, and
1884     whose <code title=dom-WorkerGlobalScope-location><a href=#dom-workerglobalscope-location>location</a></code> attribute
1885     represents an <span>absolute URL</span> that has the <span>same
1886     origin</span> as the resulting <span>absolute URL</span>, then
1887     run these substeps:</p>
1888    
1889     <ol><li><p>Let <var title="">worker global scope</var> be that
1890     <code><a href=#sharedworkerglobalscope>SharedWorkerGlobalScope</a></code> object.</li>
1891    
1892     <li><p>If <var title="">worker global scope</var>'s <code title=dom-WorkerGlobalScope-location><a href=#dom-workerglobalscope-location>location</a></code>
1893     attribute represents an <span>absolute URL</span> that is not
1894     exactly equal to the resulting <span>absolute URL</span>, then
1895     throw a <code>URL_MISMATCH_ERR</code> exception and abort all
1896     these steps.</li>
1897    
1898     <li><p>Associate <var title="">worker</var> with <var title="">worker global scope</var>.</li>
1899    
1900     <li><p><span>Create a <code>MessagePort</code> object</span>
1901     owned by <var title="">worker global scope</var>. Let this
1902     be the <var title="">inside port</var>.</li>
1903    
1904     <li><p><span>Entangle</span> <var title="">outside port</var>
1905     and <var title="">inside port</var>.</li>
1906    
1907     <li><p>Return <var title="">worker</var> and perform the next
1908     step asynchronously.</li>
1909    
1910     <li><p>Create an event that uses the <code>MessageEvent</code>
1911     interface, with the name <code title=event-connect>connect</code>, which does not bubble, is
1912     not cancelable, has no default action, has a <code title=dom-MessageEvent-data>data</code> attribute whose value
1913     is the empty string and has a <code title=dom-MessageEvent-ports>ports</code> attribute whose
1914     value is an array containing only the newly created port, and
1915     <span>queue a task</span> to dispatch the event at <var title="">worker global scope</var>.</li>
1916    
1917     <li>
1918    
1919     <p><a href="#add-a-document-to-the-worker's-documents" title="add a document to the worker's documents">Add to
1920     <var title="">worker global scope</var>'s list of <span>the
1921     worker's <code>Document</code>s</span></a> the
1922     <code>Document</code> objects in <var title="">docs</var>.</p>
1923    
1924     </li>
1925    
1926     <li>
1927    
1928     <p>If the <span title="script's global scope">global
1929     scope</span> of the <span title=concept-script>script</span>
1930     that invoked the constructor is a
1931     <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object, add <var title="">worker global scope</var> to the list of <a href="#the-worker's-workers">the
1932     worker's workers</a> of the <code><a href=#workerglobalscope>WorkerGlobalScope</a></code>
1933     object that is the <span title="script's global scope">global
1934     scope</span> of the <span title=concept-script>script</span>
1935     that invoked the constructor.</p>
1936    
1937     </li>
1938    
1939     <li><p>Abort all these steps.</li>
1940    
1941     </ol></li>
1942    
1943     <li><p><span>Create a new <code><a href=#sharedworkerglobalscope>SharedWorkerGlobalScope</a></code>
1944     object</span>. Let <var title="">worker global scope</var> be
1945     this new object.</li>
1946    
1947     <li><p>Associate <var title="">worker</var> with <var title="">worker global scope</var>.</li>
1948    
1949     <li><p>Set the <code title=dom-SharedWorkerGlobalScope-name><a href=#dom-sharedworkerglobalscope-name>name</a></code> attribute of
1950     <var title="">worker global scope</var> to <var title="">name</var>.</li>
1951    
1952     <li><p><span>Create a <code>MessagePort</code> object</span>
1953     owned by <var title="">worker global scope</var>. Let <var title="">inside port</var> be this new object.</li>
1954    
1955     <li><p><span>Entangle</span> <var title="">outside port</var> and
1956     <var title="">inside port</var>.</li>
1957    
1958     </ol></li>
1959    
1960     <li><p>Return <var title="">worker</var> and perform the remaining
1961     steps asynchronously.</li>
1962    
1963     <li><p>Create an event that uses the <code>MessageEvent</code>
1964     interface, with the name <code title=event-connect>connect</code>, which does not bubble, is not
1965     cancelable, has no default action, has a <code title=dom-MessageEvent-data>data</code> attribute whose value is
1966     the empty string and has a <code title=dom-MessageEvent-ports>ports</code> attribute whose value
1967     is an array containing only the newly created port, and <span>queue
1968     a task</span> to dispatch the event at <var title="">worker global
1969     scope</var>.</li>
1970    
1971     <li>
1972    
1973     <p><a href="#add-a-document-to-the-worker's-documents" title="add a document to the worker's documents">Add to
1974     <var title="">worker global scope</var>'s list of <span>the
1975     worker's <code>Document</code>s</span></a> the
1976     <code>Document</code> objects in <var title="">docs</var>.</p>
1977    
1978     </li>
1979    
1980     <li>
1981    
1982     <p>If the <span title="script's global scope">global scope</span>
1983     of the <span title=concept-script>script</span> that invoked the
1984     constructor is a <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object, add <var title="">worker global scope</var> to the list of <a href="#the-worker's-workers">the
1985     worker's workers</a> of the <code><a href=#workerglobalscope>WorkerGlobalScope</a></code>
1986     object that is the <span title="script's global scope">global
1987     scope</span> of the <span title=concept-script>script</span>
1988     that invoked the constructor.</p>
1989    
1990     </li>
1991    
1992     <li>
1993    
1994     <p><a href=#run-a-worker>Run a worker</a> for the resulting <span>absolute
1995     URL</span>, with the <span>script browsing context</span> of the
1996     script that invoked the method as the <var title="">owner browsing
1997     context</var>, and with <var title="">worker global scope</var> as
1998     the global scope.</p>
1999    
2000     </li>
2001    
2002 wakaba 1.95 </ol><p>This constructor must be visible when the <span>script's global
2003     scope</span> is either a <code>Window</code> object or an object
2004     implementing the <code><a href=#workerutils>WorkerUtils</a></code> interface.</p>
2005 wakaba 1.104
2006     <p>The <span>task source</span> for the tasks mentioned above is the
2007     <span>DOM manipulation task source</span>.</p>
2008 wakaba 1.95
2009    
2010    
2011 wakaba 1.110 <h2 id=apis-available-to-workers><span class=secno>5 </span>APIs available to workers</h2>
2012 wakaba 1.82
2013 wakaba 1.93 <pre class=idl>[NoInterfaceObject, ImplementedOn=WorkerGlobalScope, Supplemental] interface <dfn id=workerutils>WorkerUtils</dfn> {
2014 wakaba 1.82 void <a href=#dom-workerglobalscope-importscripts title=dom-WorkerGlobalScope-importScripts>importScripts</a>([Variadic] in DOMString urls);
2015     readonly attribute <a href=#worker-navigator title=worker-Navigator>Navigator</a> <a href=#dom-worker-navigator title=dom-worker-navigator>navigator</a>;
2016     };</pre>
2017    
2018     <p>Objects that implement the <code><a href=#workerglobalscope>WorkerGlobalScope</a></code>
2019     interface must also implement the <code><a href=#workerutils>WorkerUtils</a></code>
2020     interface.</p>
2021    
2022     <p>Objects that implement the <code><a href=#workerutils>WorkerUtils</a></code> interface
2023     must also implement the <code>WindowTimers</code> interface. (This
2024     interface provides the <code title="">setTimeout()</code> method and
2025     its friends.)</p><!-- XXX ref -->
2026    
2027     <!-- XXX ApplicationCache -->
2028    
2029     <!-- XXX debugging: void log(in DOMString s); // log to console -->
2030    
2031     <hr><p>The DOM APIs (<code>Node</code> objects, <code>Document</code>
2032     objects, etc) are not available to workers in this version of this
2033     specification.</p>
2034    
2035    
2036 wakaba 1.110 <h3 id=importing-scripts-and-libraries><span class=secno>5.1 </span>Importing scripts and libraries</h3>
2037 wakaba 1.82
2038     <p>When a script invokes the <dfn id=dom-workerglobalscope-importscripts title=dom-WorkerGlobalScope-importScripts><code>importScripts(<var title="">urls</var>)</code></dfn> method on a
2039     <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object, the user agent must run the
2040     following steps:</p>
2041    
2042     <ol><li><p>If there are no arguments, return without doing
2043     anything. Abort these steps.</li>
2044    
2045     <li><p><span title="resolve a url">Resolve</span> each
2046     argument.</li>
2047    
2048     <li><p>If any fail, throw a <code>SYNTAX_ERR</code>
2049     exception.</li>
2050    
2051     <!--
2052     <li><p>If any of the resulting <span title="absolute URL">absolute
2053     URLs</span> have an <span>origin</span> that is not the <span
2054     title="same origin">same</span> as the origin of the script that
2055     invoked the method, then throw a <span>security
2056     exception</span>.</p></li>
2057     -->
2058    
2059     <li>
2060    
2061     <p>Attempt to <span>fetch</span> each resource identified by the
2062     resulting <span title="absolute URLs">absolute URL</span>.</p>
2063    
2064     </li>
2065    
2066     <li>
2067    
2068     <p>For each argument in turn, in the order given, starting with
2069     the first one, run these substeps:</p>
2070    
2071     <ol><li>
2072    
2073     <p>Wait for the fetching attempt for the corresponding resource
2074     to complete.</p>
2075    
2076     <p>If the fetching attempt failed, throw a
2077     <code>NETWORK_ERR</code> exception and abort all these
2078     steps.</p>
2079    
2080     <p>If the attempt succeeds, then <a href=#decode-a-script-resource title="decode a script
2081     resource">decode the script resource</a> to obtain its <var title="">source</var>.</p>
2082    
2083     <p>Let <var title="">language</var> be JavaScript.</p>
2084    
2085     <p class=note>As with the worker's script, the script here is
2086     always assumed to be JavaScript, regardless of the MIME
2087     type.</p> <!-- XXX -->
2088    
2089     </li>
2090    
2091     <li>
2092    
2093     <p><span>Create a script</span>, using <var title="">source</var> as the script source and <var title="">language</var> as the scripting language, using the
2094     same global object, browsing context, character encoding, base
2095     URL, and script group as the <span title=concept-script>script</span> that was created by the
2096     worker's <a href=#run-a-worker>run a worker</a> algorithm.</p>
2097    
2098     <p>Let the newly created <span title=concept-script>script</span> run until it either
2099     returns, fails to parse, fails to catch an exception, or gets
2100     prematurely aborted by the "<a href=#kill-a-worker>kill a worker</a>" or
2101     "<a href=#terminate-a-worker>terminate a worker</a>" algorithms defined above.</p>
2102    
2103     <p>If it failed to parse, then throw a
2104     <code>SyntaxError</code><!-- XXX ref? --> exception and abort
2105     all these steps.</p>
2106    
2107     <p>If an exception was raised or if the script was prematurely
2108     aborted, then abort all these steps, letting the exception or
2109     aborting continue to be processed by the script that called the
2110     <code title=dom-WorkerGlobalScope-importScripts><a href=#dom-workerglobalscope-importscripts>importScripts()</a></code>
2111     method.</p>
2112    
2113     <p>If the "<a href=#kill-a-worker>kill a worker</a>" or "<a href=#terminate-a-worker>terminate a
2114     worker</a>" algorithms abort the script then abort all these
2115     steps.</p>
2116    
2117     </li>
2118    
2119     </ol></li>
2120    
2121 wakaba 1.110 </ol><h3 id=the-navigator-object><span class=secno>5.2 </span>The <code title=worker-Navigator><a href=#worker-navigator>Navigator</a></code> object</h3>
2122 wakaba 1.82
2123     <p>The <dfn id=dom-worker-navigator title=dom-worker-navigator><code>navigator</code></dfn> attribute
2124     of the <code><a href=#workerutils>WorkerUtils</a></code> interface must return an instance of
2125     the <code title=worker-Navigator><a href=#worker-navigator>Navigator</a></code> interface, which
2126     represents the identity and state of the user agent (the
2127     client):</p>
2128    
2129     <pre class=idl>interface <dfn id=worker-navigator title=worker-Navigator>Navigator</dfn> {
2130     // objects implementing this interface also implement the interfaces listed below
2131     };</pre>
2132    
2133     <p>Objects implementing the <code title=worker-Navigator><a href=#worker-navigator>Navigator</a></code> interface must also
2134     implement the <span>NavigatorID</span> and
2135 wakaba 1.84 <span>NavigatorOnLine</span> interfaces. <a href=#refsHTML5>[HTML5]</a></p>
2136 wakaba 1.82
2137     <p class=note>The <code title=worker-Navigator><a href=#worker-navigator>Navigator</a></code>
2138     interface defined in this specification is different than the one
2139 wakaba 1.84 defined in the HTML specification.</p>
2140 wakaba 1.82
2141    
2142    
2143 wakaba 1.110 <h3 id=apis-defined-in-other-specifications><span class=secno>5.3 </span>APIs defined in other specifications</h3>
2144 wakaba 1.82
2145     <p>The <code title=dom-opendatabase>openDatabase()</code> and
2146     <code title=dom-opendatabase-sync>openDatabaseSync()</code>
2147 wakaba 1.108 methods are defined in the Web Database specification. <a href=#refsWEBDATABASE>[WEBDATABASE]</a></p>
2148 wakaba 1.82
2149    
2150    
2151 wakaba 1.110 <h3 id=interface-objects-and-constructors><span class=secno>5.4 </span>Interface objects and constructors</h3>
2152 wakaba 1.82
2153     <p>There must be no interface objects and constructors available in
2154     the global scope of scripts whose <span>script execution
2155     context</span> is a <code><a href=#workerglobalscope>WorkerGlobalScope</a></code> object except for
2156     the following:</p>
2157    
2158     <ul><li><p><code>XMLHttpRequest</code> and all interface objects and
2159     constructors defined by the XMLHttpRequest specifications, except
2160     that the <span>document response entity body</span> must always be
2161     null. <a href=#refsXHR>[XHR]</a></li>
2162    
2163     <li><p>The <code>WebSocket</code> interface object and
2164     constructor. <a href=#refsWEBSOCKET>[WEBSOCKET]</a></li>
2165    
2166     <li><p>The <code>EventSource</code> interface object and
2167     constructor. <a href=#refsEVENTSOURCE>[EVENTSOURCE]</a></li>
2168    
2169     <li><p>The <code>MessageChannel</code> interface object and
2170     constructor. <a href=#refsHTML5>[HTML5]</a></li>
2171    
2172     <li><p>The <code title=dom-Worker><a href=#dom-worker>Worker()</a></code> and <code title=dom-SharedWorker><a href=#dom-sharedworker>SharedWorker(<var title="">url</var>)</a></code> constructors.</li>
2173    
2174 wakaba 1.110 </ul><h3 id=worker-locations><span class=secno>5.5 </span>Worker locations</h3>
2175 wakaba 1.82
2176     <pre class=idl>interface <dfn id=workerlocation>WorkerLocation</dfn> {
2177     readonly attribute DOMString <a href=#dom-workerlocation-href title=dom-WorkerLocation-href>href</a>;
2178     readonly attribute DOMString <a href=#dom-workerlocation-protocol title=dom-WorkerLocation-protocol>protocol</a>;
2179     readonly attribute DOMString <a href=#dom-workerlocation-host title=dom-WorkerLocation-host>host</a>;
2180     readonly attribute DOMString <a href=#dom-workerlocation-hostname title=dom-WorkerLocation-hostname>hostname</a>;
2181     readonly attribute DOMString <a href=#dom-workerlocation-port title=dom-WorkerLocation-port>port</a>;
2182     readonly attribute DOMString <a href=#dom-workerlocation-pathname title=dom-WorkerLocation-pathname>pathname</a>;
2183     readonly attribute DOMString <a href=#dom-workerlocation-search title=dom-WorkerLocation-search>search</a>;
2184     readonly attribute DOMString <a href=#dom-workerlocation-hash title=dom-WorkerLocation-hash>hash</a>;
2185     };</pre>
2186    
2187     <p>A <code><a href=#workerlocation>WorkerLocation</a></code> object represents an <span>absolute
2188     URL</span> set at its creation.</p>
2189    
2190     <p>The <dfn id=dom-workerlocation-href title=dom-WorkerLocation-href><code>href</code></dfn>
2191     attribute must return the <span>absolute URL</span> that the object
2192     represents.</p>
2193    
2194     <p>The <code><a href=#workerlocation>WorkerLocation</a></code> interface also has the complement
2195     of <span>URL decomposition attributes</span>, <dfn id=dom-workerlocation-protocol title=dom-WorkerLocation-protocol><code>protocol</code></dfn>,
2196     <dfn id=dom-workerlocation-host title=dom-WorkerLocation-host><code>host</code></dfn>, <dfn id=dom-workerlocation-port title=dom-WorkerLocation-port><code>port</code></dfn>, <dfn id=dom-workerlocation-hostname title=dom-WorkerLocation-hostname><code>hostname</code></dfn>,
2197     <dfn id=dom-workerlocation-pathname title=dom-WorkerLocation-pathname><code>pathname</code></dfn>,
2198     <dfn id=dom-workerlocation-search title=dom-WorkerLocation-search><code>search</code></dfn>,
2199     and <dfn id=dom-workerlocation-hash title=dom-WorkerLocation-hash><code>hash</code></dfn>. These must
2200     follow the rules given for URL decomposition attributes, with the
2201     <span title=concept-uda-input>input</span> being the
2202     <span>absolute URL</span> that the object represents (same as the
2203     <code title=dom-WorkerLocation-href><a href=#dom-workerlocation-href>href</a></code> attribute), and
2204     the <span title=concept-uda-setter>common setter action</span>
2205     being a no-op, since the attributes are defined to be readonly. <a href=#refsHTML5>[HTML5]</a></p>
2206    
2207    
2208     <h2 class=no-num id=references>References</h2>
2209    
2210     <p class=big-issue>This section will be written in a future
2211     draft.<!--XXX--></p>
2212    
2213    
2214     <h2 class=no-num id=acknowledgements>Acknowledgements</h2> <!-- ACKS -->
2215    
2216     <p>Thanks to
2217    
2218     Aaron Boodman,
2219     &#1040;&#1083;&#1077;&#1082;&#1089;&#1077;&#1081; &#1055;&#1088;&#1086;&#1089;&#1082;&#1091;&#1088;&#1103;&#1082;&#1086;&#1074; (Alexey Proskuryakov),
2220     Anne van Kesteren,
2221     Ben Turner,
2222     Dmitry Titov,
2223     Drew Wilson,
2224     Jeremy Orlow,
2225     Jonas Sicking,
2226     Justin James,
2227     Kevin Hakanson,
2228     Maciej Stachowiak,
2229     Michael Nordman,
2230     Mike Smith,
2231    
2232     and
2233    
2234     Philip Taylor
2235    
2236     for their useful and substantial comments.</p>
2237    
2238     <p>Huge thanks to the whole Gears team, who pioneered this
2239     technology and whose experience has been a huge influence on this
2240     specification.</p>
2241    
2242    

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