forked from mirrors/gecko-dev
906 lines
29 KiB
JavaScript
906 lines
29 KiB
JavaScript
/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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/* eslint-env mozilla/frame-script */
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"use strict";
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var Cu = Components.utils;
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var Cc = Components.classes;
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var Ci = Components.interfaces;
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var Cr = Components.results;
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Cu.import("resource://gre/modules/XPCOMUtils.jsm", this);
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Cu.import("resource://gre/modules/Timer.jsm", this);
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Cu.import("resource://gre/modules/Services.jsm", this);
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XPCOMUtils.defineLazyModuleGetter(this, "TelemetryStopwatch",
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"resource://gre/modules/TelemetryStopwatch.jsm");
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function debug(msg) {
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Services.console.logStringMessage("SessionStoreContent: " + msg);
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}
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XPCOMUtils.defineLazyModuleGetter(this, "FormData",
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"resource://gre/modules/FormData.jsm");
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XPCOMUtils.defineLazyModuleGetter(this, "Preferences",
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"resource://gre/modules/Preferences.jsm");
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XPCOMUtils.defineLazyModuleGetter(this, "DocShellCapabilities",
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"resource:///modules/sessionstore/DocShellCapabilities.jsm");
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XPCOMUtils.defineLazyModuleGetter(this, "PageStyle",
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"resource:///modules/sessionstore/PageStyle.jsm");
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XPCOMUtils.defineLazyModuleGetter(this, "ScrollPosition",
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"resource://gre/modules/ScrollPosition.jsm");
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XPCOMUtils.defineLazyModuleGetter(this, "SessionHistory",
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"resource://gre/modules/sessionstore/SessionHistory.jsm");
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XPCOMUtils.defineLazyModuleGetter(this, "SessionStorage",
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"resource:///modules/sessionstore/SessionStorage.jsm");
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Cu.import("resource:///modules/sessionstore/FrameTree.jsm", this);
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var gFrameTree = new FrameTree(this);
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Cu.import("resource:///modules/sessionstore/ContentRestore.jsm", this);
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XPCOMUtils.defineLazyGetter(this, "gContentRestore",
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() => { return new ContentRestore(this) });
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// The current epoch.
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var gCurrentEpoch = 0;
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// A bound to the size of data to store for DOM Storage.
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const DOM_STORAGE_LIMIT_PREF = "browser.sessionstore.dom_storage_limit";
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// This pref controls whether or not we send updates to the parent on a timeout
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// or not, and should only be used for tests or debugging.
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const TIMEOUT_DISABLED_PREF = "browser.sessionstore.debug.no_auto_updates";
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const kNoIndex = Number.MAX_SAFE_INTEGER;
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const kLastIndex = Number.MAX_SAFE_INTEGER - 1;
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/**
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* Returns a lazy function that will evaluate the given
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* function |fn| only once and cache its return value.
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*/
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function createLazy(fn) {
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let cached = false;
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let cachedValue = null;
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return function lazy() {
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if (!cached) {
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cachedValue = fn();
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cached = true;
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}
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return cachedValue;
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};
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}
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/**
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* Listens for and handles content events that we need for the
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* session store service to be notified of state changes in content.
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*/
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var EventListener = {
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init() {
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addEventListener("load", this, true);
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},
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handleEvent(event) {
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// Ignore load events from subframes.
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if (event.target != content.document) {
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return;
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}
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if (content.document.documentURI.startsWith("about:reader")) {
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if (event.type == "load" &&
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!content.document.body.classList.contains("loaded")) {
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// Don't restore the scroll position of an about:reader page at this
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// point; listen for the custom event dispatched from AboutReader.jsm.
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content.addEventListener("AboutReaderContentReady", this);
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return;
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}
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content.removeEventListener("AboutReaderContentReady", this);
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}
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// Restore the form data and scroll position. If we're not currently
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// restoring a tab state then this call will simply be a noop.
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gContentRestore.restoreDocument();
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}
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};
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/**
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* Listens for and handles messages sent by the session store service.
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*/
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var MessageListener = {
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MESSAGES: [
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"SessionStore:restoreHistory",
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"SessionStore:restoreTabContent",
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"SessionStore:resetRestore",
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"SessionStore:flush",
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"SessionStore:becomeActiveProcess",
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],
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init() {
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this.MESSAGES.forEach(m => addMessageListener(m, this));
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},
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receiveMessage({name, data}) {
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// The docShell might be gone. Don't process messages,
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// that will just lead to errors anyway.
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if (!docShell) {
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return;
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}
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// A fresh tab always starts with epoch=0. The parent has the ability to
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// override that to signal a new era in this tab's life. This enables it
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// to ignore async messages that were already sent but not yet received
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// and would otherwise confuse the internal tab state.
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if (data.epoch && data.epoch != gCurrentEpoch) {
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gCurrentEpoch = data.epoch;
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}
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switch (name) {
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case "SessionStore:restoreHistory":
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this.restoreHistory(data);
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break;
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case "SessionStore:restoreTabContent":
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if (data.isRemotenessUpdate) {
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let histogram = Services.telemetry.getKeyedHistogramById("FX_TAB_REMOTE_NAVIGATION_DELAY_MS");
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histogram.add("SessionStore:restoreTabContent",
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Services.telemetry.msSystemNow() - data.requestTime);
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}
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this.restoreTabContent(data);
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break;
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case "SessionStore:resetRestore":
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gContentRestore.resetRestore();
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break;
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case "SessionStore:flush":
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this.flush(data);
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break;
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case "SessionStore:becomeActiveProcess":
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let shistory = docShell.QueryInterface(Ci.nsIWebNavigation).sessionHistory;
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// Check if we are at the end of the current session history, if we are,
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// it is safe for us to collect and transmit our session history, so
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// transmit all of it. Otherwise, we only want to transmit our index changes,
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// so collect from kLastIndex.
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if (shistory.globalCount - shistory.globalIndexOffset == shistory.count) {
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SessionHistoryListener.collect();
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} else {
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SessionHistoryListener.collectFrom(kLastIndex);
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}
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break;
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default:
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debug("received unknown message '" + name + "'");
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break;
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}
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},
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restoreHistory({epoch, tabData, loadArguments, isRemotenessUpdate}) {
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gContentRestore.restoreHistory(tabData, loadArguments, {
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// Note: The callbacks passed here will only be used when a load starts
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// that was not initiated by sessionstore itself. This can happen when
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// some code calls browser.loadURI() or browser.reload() on a pending
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// browser/tab.
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onLoadStarted() {
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// Notify the parent that the tab is no longer pending.
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sendAsyncMessage("SessionStore:restoreTabContentStarted", {epoch});
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},
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onLoadFinished() {
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// Tell SessionStore.jsm that it may want to restore some more tabs,
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// since it restores a max of MAX_CONCURRENT_TAB_RESTORES at a time.
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sendAsyncMessage("SessionStore:restoreTabContentComplete", {epoch});
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}
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});
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if (Services.appinfo.processType == Services.appinfo.PROCESS_TYPE_DEFAULT) {
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// For non-remote tabs, when restoreHistory finishes, we send a synchronous
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// message to SessionStore.jsm so that it can run SSTabRestoring. Users of
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// SSTabRestoring seem to get confused if chrome and content are out of
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// sync about the state of the restore (particularly regarding
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// docShell.currentURI). Using a synchronous message is the easiest way
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// to temporarily synchronize them.
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//
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// For remote tabs, because all nsIWebProgress notifications are sent
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// asynchronously using messages, we get the same-order guarantees of the
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// message manager, and can use an async message.
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sendSyncMessage("SessionStore:restoreHistoryComplete", {epoch, isRemotenessUpdate});
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} else {
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sendAsyncMessage("SessionStore:restoreHistoryComplete", {epoch, isRemotenessUpdate});
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}
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},
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restoreTabContent({loadArguments, isRemotenessUpdate, reason}) {
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let epoch = gCurrentEpoch;
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// We need to pass the value of didStartLoad back to SessionStore.jsm.
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let didStartLoad = gContentRestore.restoreTabContent(loadArguments, isRemotenessUpdate, () => {
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// Tell SessionStore.jsm that it may want to restore some more tabs,
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// since it restores a max of MAX_CONCURRENT_TAB_RESTORES at a time.
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sendAsyncMessage("SessionStore:restoreTabContentComplete", {epoch, isRemotenessUpdate});
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});
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sendAsyncMessage("SessionStore:restoreTabContentStarted", {
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epoch, isRemotenessUpdate, reason,
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});
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if (!didStartLoad) {
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// Pretend that the load succeeded so that event handlers fire correctly.
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sendAsyncMessage("SessionStore:restoreTabContentComplete", {epoch, isRemotenessUpdate});
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}
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},
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flush({id}) {
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// Flush the message queue, send the latest updates.
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MessageQueue.send({flushID: id});
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}
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};
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/**
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* Listens for changes to the session history. Whenever the user navigates
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* we will collect URLs and everything belonging to session history.
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*
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* Causes a SessionStore:update message to be sent that contains the current
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* session history.
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*
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* Example:
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* {entries: [{url: "about:mozilla", ...}, ...], index: 1}
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*/
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var SessionHistoryListener = {
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init() {
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// The frame tree observer is needed to handle initial subframe loads.
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// It will redundantly invalidate with the SHistoryListener in some cases
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// but these invalidations are very cheap.
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gFrameTree.addObserver(this);
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// By adding the SHistoryListener immediately, we will unfortunately be
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// notified of every history entry as the tab is restored. We don't bother
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// waiting to add the listener later because these notifications are cheap.
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// We will likely only collect once since we are batching collection on
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// a delay.
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docShell.QueryInterface(Ci.nsIWebNavigation).sessionHistory.
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addSHistoryListener(this);
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// Collect data if we start with a non-empty shistory.
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if (!SessionHistory.isEmpty(docShell)) {
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this.collect();
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// When a tab is detached from the window, for the new window there is a
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// new SessionHistoryListener created. Normally it is empty at this point
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// but in a test env. the initial about:blank might have a children in which
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// case we fire off a history message here with about:blank in it. If we
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// don't do it ASAP then there is going to be a browser swap and the parent
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// will be all confused by that message.
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MessageQueue.send();
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}
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// Listen for page title changes.
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addEventListener("DOMTitleChanged", this);
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},
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uninit() {
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let sessionHistory = docShell.QueryInterface(Ci.nsIWebNavigation).sessionHistory;
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if (sessionHistory) {
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sessionHistory.removeSHistoryListener(this);
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}
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},
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collect() {
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// We want to send down a historychange even for full collects in case our
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// session history is a partial session history, in which case we don't have
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// enough information for a full update. collectFrom(-1) tells the collect
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// function to collect all data avaliable in this process.
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if (docShell) {
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this.collectFrom(-1);
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}
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},
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_fromIdx: kNoIndex,
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// History can grow relatively big with the nested elements, so if we don't have to, we
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// don't want to send the entire history all the time. For a simple optimization
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// we keep track of the smallest index from after any change has occured and we just send
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// the elements from that index. If something more complicated happens we just clear it
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// and send the entire history. We always send the additional info like the current selected
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// index (so for going back and forth between history entries we set the index to kLastIndex
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// if nothing else changed send an empty array and the additonal info like the selected index)
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collectFrom(idx) {
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if (this._fromIdx <= idx) {
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// If we already know that we need to update history fromn index N we can ignore any changes
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// tha happened with an element with index larger than N.
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// Note: initially we use kNoIndex which is MAX_SAFE_INTEGER which means we don't ignore anything
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// here, and in case of navigation in the history back and forth we use kLastIndex which ignores
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// only the subsequent navigations, but not any new elements added.
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return;
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}
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this._fromIdx = idx;
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MessageQueue.push("historychange", () => {
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if (this._fromIdx === kNoIndex) {
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return null;
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}
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let history = SessionHistory.collect(docShell, this._fromIdx);
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this._fromIdx = kNoIndex;
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return history;
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});
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},
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handleEvent(event) {
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this.collect();
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},
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onFrameTreeCollected() {
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this.collect();
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},
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onFrameTreeReset() {
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this.collect();
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},
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OnHistoryNewEntry(newURI, oldIndex) {
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// We ought to collect the previously current entry as well, see bug 1350567.
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this.collectFrom(oldIndex);
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},
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OnHistoryGoBack(backURI) {
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// We ought to collect the previously current entry as well, see bug 1350567.
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this.collectFrom(kLastIndex);
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return true;
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},
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OnHistoryGoForward(forwardURI) {
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// We ought to collect the previously current entry as well, see bug 1350567.
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this.collectFrom(kLastIndex);
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return true;
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},
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OnHistoryGotoIndex(index, gotoURI) {
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// We ought to collect the previously current entry as well, see bug 1350567.
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this.collectFrom(kLastIndex);
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return true;
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},
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OnHistoryPurge(numEntries) {
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this.collect();
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return true;
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},
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OnHistoryReload(reloadURI, reloadFlags) {
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this.collect();
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return true;
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},
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OnHistoryReplaceEntry(index) {
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this.collect();
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},
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OnLengthChanged(aCount) {
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// Ignore, the method is implemented so that XPConnect doesn't throw!
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},
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OnIndexChanged(aIndex) {
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// Ignore, the method is implemented so that XPConnect doesn't throw!
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},
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QueryInterface: XPCOMUtils.generateQI([
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Ci.nsISHistoryListener,
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Ci.nsISupportsWeakReference
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])
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};
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/**
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* Listens for scroll position changes. Whenever the user scrolls the top-most
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* frame we update the scroll position and will restore it when requested.
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*
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* Causes a SessionStore:update message to be sent that contains the current
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* scroll positions as a tree of strings. If no frame of the whole frame tree
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* is scrolled this will return null so that we don't tack a property onto
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* the tabData object in the parent process.
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*
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* Example:
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* {scroll: "100,100", children: [null, null, {scroll: "200,200"}]}
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*/
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var ScrollPositionListener = {
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init() {
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addEventListener("scroll", this);
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gFrameTree.addObserver(this);
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},
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handleEvent(event) {
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let frame = event.target.defaultView;
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// Don't collect scroll data for frames created at or after the load event
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// as SessionStore can't restore scroll data for those.
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if (gFrameTree.contains(frame)) {
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MessageQueue.push("scroll", () => this.collect());
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}
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},
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onFrameTreeCollected() {
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MessageQueue.push("scroll", () => this.collect());
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},
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onFrameTreeReset() {
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MessageQueue.push("scroll", () => null);
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},
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collect() {
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return gFrameTree.map(ScrollPosition.collect);
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}
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};
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/**
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* Listens for changes to input elements. Whenever the value of an input
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* element changes we will re-collect data for the current frame tree and send
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* a message to the parent process.
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*
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* Causes a SessionStore:update message to be sent that contains the form data
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* for all reachable frames.
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*
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* Example:
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* {
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* formdata: {url: "http://mozilla.org/", id: {input_id: "input value"}},
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* children: [
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* null,
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* {url: "http://sub.mozilla.org/", id: {input_id: "input value 2"}}
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* ]
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* }
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*/
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var FormDataListener = {
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init() {
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addEventListener("input", this, true);
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addEventListener("change", this, true);
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gFrameTree.addObserver(this);
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},
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handleEvent(event) {
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let frame = event.target.ownerGlobal;
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// Don't collect form data for frames created at or after the load event
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// as SessionStore can't restore form data for those.
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if (gFrameTree.contains(frame)) {
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MessageQueue.push("formdata", () => this.collect());
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}
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},
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onFrameTreeReset() {
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MessageQueue.push("formdata", () => null);
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},
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collect() {
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return gFrameTree.map(FormData.collect);
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}
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};
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/**
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* Listens for changes to the page style. Whenever a different page style is
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* selected or author styles are enabled/disabled we send a message with the
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* currently applied style to the chrome process.
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*
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* Causes a SessionStore:update message to be sent that contains the currently
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* selected pageStyle for all reachable frames.
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*
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* Example:
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* {pageStyle: "Dusk", children: [null, {pageStyle: "Mozilla"}]}
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*/
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var PageStyleListener = {
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init() {
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Services.obs.addObserver(this, "author-style-disabled-changed");
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Services.obs.addObserver(this, "style-sheet-applicable-state-changed");
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gFrameTree.addObserver(this);
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},
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uninit() {
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Services.obs.removeObserver(this, "author-style-disabled-changed");
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Services.obs.removeObserver(this, "style-sheet-applicable-state-changed");
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},
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observe(subject, topic) {
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let frame = subject.defaultView;
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if (frame && gFrameTree.contains(frame)) {
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MessageQueue.push("pageStyle", () => this.collect());
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}
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},
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collect() {
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return PageStyle.collect(docShell, gFrameTree);
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},
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onFrameTreeCollected() {
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MessageQueue.push("pageStyle", () => this.collect());
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},
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onFrameTreeReset() {
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MessageQueue.push("pageStyle", () => null);
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}
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};
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/**
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* Listens for changes to docShell capabilities. Whenever a new load is started
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* we need to re-check the list of capabilities and send message when it has
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* changed.
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*
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* Causes a SessionStore:update message to be sent that contains the currently
|
|
* disabled docShell capabilities (all nsIDocShell.allow* properties set to
|
|
* false) as a string - i.e. capability names separate by commas.
|
|
*/
|
|
var DocShellCapabilitiesListener = {
|
|
/**
|
|
* This field is used to compare the last docShell capabilities to the ones
|
|
* that have just been collected. If nothing changed we won't send a message.
|
|
*/
|
|
_latestCapabilities: "",
|
|
|
|
init() {
|
|
gFrameTree.addObserver(this);
|
|
},
|
|
|
|
/**
|
|
* onFrameTreeReset() is called as soon as we start loading a page.
|
|
*/
|
|
onFrameTreeReset() {
|
|
// The order of docShell capabilities cannot change while we're running
|
|
// so calling join() without sorting before is totally sufficient.
|
|
let caps = DocShellCapabilities.collect(docShell).join(",");
|
|
|
|
// Send new data only when the capability list changes.
|
|
if (caps != this._latestCapabilities) {
|
|
this._latestCapabilities = caps;
|
|
MessageQueue.push("disallow", () => caps || null);
|
|
}
|
|
}
|
|
};
|
|
|
|
/**
|
|
* Listens for changes to the DOMSessionStorage. Whenever new keys are added,
|
|
* existing ones removed or changed, or the storage is cleared we will send a
|
|
* message to the parent process containing up-to-date sessionStorage data.
|
|
*
|
|
* Causes a SessionStore:update message to be sent that contains the current
|
|
* DOMSessionStorage contents. The data is a nested object using host names
|
|
* as keys and per-host DOMSessionStorage data as values.
|
|
*/
|
|
var SessionStorageListener = {
|
|
init() {
|
|
addEventListener("MozSessionStorageChanged", this, true);
|
|
Services.obs.addObserver(this, "browser:purge-domain-data");
|
|
gFrameTree.addObserver(this);
|
|
},
|
|
|
|
uninit() {
|
|
Services.obs.removeObserver(this, "browser:purge-domain-data");
|
|
},
|
|
|
|
handleEvent(event) {
|
|
if (gFrameTree.contains(event.target)) {
|
|
this.collectFromEvent(event);
|
|
}
|
|
},
|
|
|
|
observe() {
|
|
// Collect data on the next tick so that any other observer
|
|
// that needs to purge data can do its work first.
|
|
setTimeout(() => this.collect(), 0);
|
|
},
|
|
|
|
// We don't want to send all the session storage data for all the frames
|
|
// for every change. So if only a few value changed we send them over as
|
|
// a "storagechange" event. If however for some reason before we send these
|
|
// changes we have to send over the entire sessions storage data, we just
|
|
// reset these changes.
|
|
_changes: undefined,
|
|
|
|
resetChanges() {
|
|
this._changes = undefined;
|
|
},
|
|
|
|
collectFromEvent(event) {
|
|
if (!docShell) {
|
|
return;
|
|
}
|
|
|
|
// How much data does DOMSessionStorage contain?
|
|
let usage = content.QueryInterface(Ci.nsIInterfaceRequestor)
|
|
.getInterface(Ci.nsIDOMWindowUtils)
|
|
.getStorageUsage(event.storageArea);
|
|
Services.telemetry.getHistogramById("FX_SESSION_RESTORE_DOM_STORAGE_SIZE_ESTIMATE_CHARS").add(usage);
|
|
|
|
// Don't store any data if we exceed the limit. Wipe any data we previously
|
|
// collected so that we don't confuse websites with partial state.
|
|
if (usage > Preferences.get(DOM_STORAGE_LIMIT_PREF)) {
|
|
MessageQueue.push("storage", () => null);
|
|
return;
|
|
}
|
|
|
|
let {url, key, newValue} = event;
|
|
let uri = Services.io.newURI(url);
|
|
let domain = uri.prePath;
|
|
if (!this._changes) {
|
|
this._changes = {};
|
|
}
|
|
if (!this._changes[domain]) {
|
|
this._changes[domain] = {};
|
|
}
|
|
this._changes[domain][key] = newValue;
|
|
|
|
MessageQueue.push("storagechange", () => {
|
|
let tmp = this._changes;
|
|
// If there were multiple changes we send them merged.
|
|
// First one will collect all the changes the rest of
|
|
// these messages will be ignored.
|
|
this.resetChanges();
|
|
return tmp;
|
|
});
|
|
},
|
|
|
|
collect() {
|
|
if (!docShell) {
|
|
return;
|
|
}
|
|
|
|
// We need the entire session storage, let's reset the pending individual change
|
|
// messages.
|
|
this.resetChanges();
|
|
|
|
MessageQueue.push("storage", () => {
|
|
return SessionStorage.collect(docShell, gFrameTree);
|
|
});
|
|
},
|
|
|
|
onFrameTreeCollected() {
|
|
this.collect();
|
|
},
|
|
|
|
onFrameTreeReset() {
|
|
this.collect();
|
|
}
|
|
};
|
|
|
|
/**
|
|
* Listen for changes to the privacy status of the tab.
|
|
* By definition, tabs start in non-private mode.
|
|
*
|
|
* Causes a SessionStore:update message to be sent for
|
|
* field "isPrivate". This message contains
|
|
* |true| if the tab is now private
|
|
* |null| if the tab is now public - the field is therefore
|
|
* not saved.
|
|
*/
|
|
var PrivacyListener = {
|
|
init() {
|
|
docShell.addWeakPrivacyTransitionObserver(this);
|
|
|
|
// Check that value at startup as it might have
|
|
// been set before the frame script was loaded.
|
|
if (docShell.QueryInterface(Ci.nsILoadContext).usePrivateBrowsing) {
|
|
MessageQueue.push("isPrivate", () => true);
|
|
}
|
|
},
|
|
|
|
// Ci.nsIPrivacyTransitionObserver
|
|
privateModeChanged(enabled) {
|
|
MessageQueue.push("isPrivate", () => enabled || null);
|
|
},
|
|
|
|
QueryInterface: XPCOMUtils.generateQI([Ci.nsIPrivacyTransitionObserver,
|
|
Ci.nsISupportsWeakReference])
|
|
};
|
|
|
|
/**
|
|
* A message queue that takes collected data and will take care of sending it
|
|
* to the chrome process. It allows flushing using synchronous messages and
|
|
* takes care of any race conditions that might occur because of that. Changes
|
|
* will be batched if they're pushed in quick succession to avoid a message
|
|
* flood.
|
|
*/
|
|
var MessageQueue = {
|
|
/**
|
|
* A map (string -> lazy fn) holding lazy closures of all queued data
|
|
* collection routines. These functions will return data collected from the
|
|
* docShell.
|
|
*/
|
|
_data: new Map(),
|
|
|
|
/**
|
|
* The delay (in ms) used to delay sending changes after data has been
|
|
* invalidated.
|
|
*/
|
|
BATCH_DELAY_MS: 1000,
|
|
|
|
/**
|
|
* The current timeout ID, null if there is no queue data. We use timeouts
|
|
* to damp a flood of data changes and send lots of changes as one batch.
|
|
*/
|
|
_timeout: null,
|
|
|
|
/**
|
|
* Whether or not sending batched messages on a timer is disabled. This should
|
|
* only be used for debugging or testing. If you need to access this value,
|
|
* you should probably use the timeoutDisabled getter.
|
|
*/
|
|
_timeoutDisabled: false,
|
|
|
|
/**
|
|
* True if batched messages are not being fired on a timer. This should only
|
|
* ever be true when debugging or during tests.
|
|
*/
|
|
get timeoutDisabled() {
|
|
return this._timeoutDisabled;
|
|
},
|
|
|
|
/**
|
|
* Disables sending batched messages on a timer. Also cancels any pending
|
|
* timers.
|
|
*/
|
|
set timeoutDisabled(val) {
|
|
this._timeoutDisabled = val;
|
|
|
|
if (val && this._timeout) {
|
|
clearTimeout(this._timeout);
|
|
this._timeout = null;
|
|
}
|
|
|
|
return val;
|
|
},
|
|
|
|
init() {
|
|
this.timeoutDisabled =
|
|
Services.prefs.getBoolPref(TIMEOUT_DISABLED_PREF);
|
|
|
|
Services.prefs.addObserver(TIMEOUT_DISABLED_PREF, this);
|
|
},
|
|
|
|
uninit() {
|
|
Services.prefs.removeObserver(TIMEOUT_DISABLED_PREF, this);
|
|
},
|
|
|
|
observe(subject, topic, data) {
|
|
if (topic == "nsPref:changed" && data == TIMEOUT_DISABLED_PREF) {
|
|
this.timeoutDisabled =
|
|
Services.prefs.getBoolPref(TIMEOUT_DISABLED_PREF);
|
|
}
|
|
},
|
|
|
|
/**
|
|
* Pushes a given |value| onto the queue. The given |key| represents the type
|
|
* of data that is stored and can override data that has been queued before
|
|
* but has not been sent to the parent process, yet.
|
|
*
|
|
* @param key (string)
|
|
* A unique identifier specific to the type of data this is passed.
|
|
* @param fn (function)
|
|
* A function that returns the value that will be sent to the parent
|
|
* process.
|
|
*/
|
|
push(key, fn) {
|
|
this._data.set(key, createLazy(fn));
|
|
|
|
if (!this._timeout && !this._timeoutDisabled) {
|
|
// Wait a little before sending the message to batch multiple changes.
|
|
this._timeout = setTimeout(() => this.send(), this.BATCH_DELAY_MS);
|
|
}
|
|
},
|
|
|
|
/**
|
|
* Sends queued data to the chrome process.
|
|
*
|
|
* @param options (object)
|
|
* {flushID: 123} to specify that this is a flush
|
|
* {isFinal: true} to signal this is the final message sent on unload
|
|
*/
|
|
send(options = {}) {
|
|
// Looks like we have been called off a timeout after the tab has been
|
|
// closed. The docShell is gone now and we can just return here as there
|
|
// is nothing to do.
|
|
if (!docShell) {
|
|
return;
|
|
}
|
|
|
|
if (this._timeout) {
|
|
clearTimeout(this._timeout);
|
|
this._timeout = null;
|
|
}
|
|
|
|
let flushID = (options && options.flushID) || 0;
|
|
let histID = "FX_SESSION_RESTORE_CONTENT_COLLECT_DATA_MS";
|
|
|
|
let data = {};
|
|
for (let [key, func] of this._data) {
|
|
if (key != "isPrivate") {
|
|
TelemetryStopwatch.startKeyed(histID, key);
|
|
}
|
|
|
|
let value = func();
|
|
|
|
if (key != "isPrivate") {
|
|
TelemetryStopwatch.finishKeyed(histID, key);
|
|
}
|
|
|
|
if (value || (key != "storagechange" && key != "historychange")) {
|
|
data[key] = value;
|
|
}
|
|
}
|
|
|
|
this._data.clear();
|
|
|
|
try {
|
|
// Send all data to the parent process.
|
|
sendAsyncMessage("SessionStore:update", {
|
|
data, flushID,
|
|
isFinal: options.isFinal || false,
|
|
epoch: gCurrentEpoch
|
|
});
|
|
} catch (ex) {
|
|
if (ex && ex.result == Cr.NS_ERROR_OUT_OF_MEMORY) {
|
|
Services.telemetry.getHistogramById("FX_SESSION_RESTORE_SEND_UPDATE_CAUSED_OOM").add(1);
|
|
sendAsyncMessage("SessionStore:error");
|
|
}
|
|
}
|
|
},
|
|
};
|
|
|
|
EventListener.init();
|
|
MessageListener.init();
|
|
FormDataListener.init();
|
|
PageStyleListener.init();
|
|
SessionHistoryListener.init();
|
|
SessionStorageListener.init();
|
|
ScrollPositionListener.init();
|
|
DocShellCapabilitiesListener.init();
|
|
PrivacyListener.init();
|
|
MessageQueue.init();
|
|
|
|
function handleRevivedTab() {
|
|
if (!content) {
|
|
removeEventListener("pagehide", handleRevivedTab);
|
|
return;
|
|
}
|
|
|
|
if (content.document.documentURI.startsWith("about:tabcrashed")) {
|
|
if (Services.appinfo.processType != Services.appinfo.PROCESS_TYPE_DEFAULT) {
|
|
// Sanity check - we'd better be loading this in a non-remote browser.
|
|
throw new Error("We seem to be navigating away from about:tabcrashed in " +
|
|
"a non-remote browser. This should really never happen.");
|
|
}
|
|
|
|
removeEventListener("pagehide", handleRevivedTab);
|
|
|
|
// Notify the parent.
|
|
sendAsyncMessage("SessionStore:crashedTabRevived");
|
|
}
|
|
}
|
|
|
|
// If we're browsing from the tab crashed UI to a blacklisted URI that keeps
|
|
// this browser non-remote, we'll handle that in a pagehide event.
|
|
addEventListener("pagehide", handleRevivedTab);
|
|
|
|
addEventListener("unload", () => {
|
|
// Upon frameLoader destruction, send a final update message to
|
|
// the parent and flush all data currently held in the child.
|
|
MessageQueue.send({isFinal: true});
|
|
|
|
// If we're browsing from the tab crashed UI to a URI that causes the tab
|
|
// to go remote again, we catch this in the unload event handler, because
|
|
// swapping out the non-remote browser for a remote one in
|
|
// tabbrowser.xml's updateBrowserRemoteness doesn't cause the pagehide
|
|
// event to be fired.
|
|
handleRevivedTab();
|
|
|
|
// Remove all registered nsIObservers.
|
|
PageStyleListener.uninit();
|
|
SessionStorageListener.uninit();
|
|
SessionHistoryListener.uninit();
|
|
MessageQueue.uninit();
|
|
|
|
// Remove progress listeners.
|
|
gContentRestore.resetRestore();
|
|
|
|
// We don't need to take care of any gFrameTree observers as the gFrameTree
|
|
// will die with the content script. The same goes for the privacy transition
|
|
// observer that will die with the docShell when the tab is closed.
|
|
});
|