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608 lines
21 KiB
JavaScript
608 lines
21 KiB
JavaScript
/* -*- Mode: js; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* 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 file,
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* You can obtain one at http://mozilla.org/MPL/2.0/. */
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"use strict";
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const {classes: Cc, interfaces: Ci, utils: Cu, results: Cr} = Components;
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Cu.import("resource://gre/modules/XPCOMUtils.jsm");
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Cu.import("resource://gre/modules/Services.jsm");
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Cu.import("resource://gre/modules/Promise.jsm");
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var RIL = {};
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Cu.import("resource://gre/modules/ril_consts.js", RIL);
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const GONK_TELEPHONYPROVIDER_CONTRACTID =
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"@mozilla.org/telephony/gonktelephonyprovider;1";
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const GONK_TELEPHONYPROVIDER_CID =
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Components.ID("{67d26434-d063-4d28-9f48-5b3189788155}");
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const NS_XPCOM_SHUTDOWN_OBSERVER_ID = "xpcom-shutdown";
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const NS_PREFBRANCH_PREFCHANGE_TOPIC_ID = "nsPref:changed";
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const kPrefRilNumRadioInterfaces = "ril.numRadioInterfaces";
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const kPrefRilDebuggingEnabled = "ril.debugging.enabled";
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const kPrefDefaultServiceId = "dom.telephony.defaultServiceId";
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const nsIAudioManager = Ci.nsIAudioManager;
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const nsITelephonyProvider = Ci.nsITelephonyProvider;
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const CALL_WAKELOCK_TIMEOUT = 5000;
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let DEBUG;
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function debug(s) {
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dump("TelephonyProvider: " + s + "\n");
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}
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XPCOMUtils.defineLazyGetter(this, "gAudioManager", function getAudioManager() {
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try {
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return Cc["@mozilla.org/telephony/audiomanager;1"]
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.getService(nsIAudioManager);
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} catch (ex) {
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//TODO on the phone this should not fall back as silently.
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// Fake nsIAudioManager implementation so that we can run the telephony
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// code in a non-Gonk build.
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if (DEBUG) debug("Using fake audio manager.");
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return {
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microphoneMuted: false,
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masterVolume: 1.0,
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masterMuted: false,
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phoneState: nsIAudioManager.PHONE_STATE_CURRENT,
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_forceForUse: {},
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setForceForUse: function setForceForUse(usage, force) {
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this._forceForUse[usage] = force;
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},
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getForceForUse: function setForceForUse(usage) {
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return this._forceForUse[usage] || nsIAudioManager.FORCE_NONE;
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}
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};
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}
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});
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XPCOMUtils.defineLazyServiceGetter(this, "gRadioInterfaceLayer",
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"@mozilla.org/ril;1",
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"nsIRadioInterfaceLayer");
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XPCOMUtils.defineLazyServiceGetter(this, "gPowerManagerService",
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"@mozilla.org/power/powermanagerservice;1",
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"nsIPowerManagerService");
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XPCOMUtils.defineLazyServiceGetter(this, "gSystemMessenger",
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"@mozilla.org/system-message-internal;1",
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"nsISystemMessagesInternal");
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XPCOMUtils.defineLazyGetter(this, "gPhoneNumberUtils", function () {
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let ns = {};
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Cu.import("resource://gre/modules/PhoneNumberUtils.jsm", ns);
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return ns.PhoneNumberUtils;
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});
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function TelephonyProvider() {
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this._numClients = gRadioInterfaceLayer.numRadioInterfaces;
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this._listeners = [];
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this._updateDebugFlag();
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this.defaultServiceId = this._getDefaultServiceId();
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Services.prefs.addObserver(kPrefRilDebuggingEnabled, this, false);
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Services.prefs.addObserver(kPrefDefaultServiceId, this, false);
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Services.obs.addObserver(this, NS_XPCOM_SHUTDOWN_OBSERVER_ID, false);
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}
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TelephonyProvider.prototype = {
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classID: GONK_TELEPHONYPROVIDER_CID,
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classInfo: XPCOMUtils.generateCI({classID: GONK_TELEPHONYPROVIDER_CID,
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contractID: GONK_TELEPHONYPROVIDER_CONTRACTID,
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classDescription: "TelephonyProvider",
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interfaces: [Ci.nsITelephonyProvider,
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Ci.nsIGonkTelephonyProvider],
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flags: Ci.nsIClassInfo.SINGLETON}),
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QueryInterface: XPCOMUtils.generateQI([Ci.nsITelephonyProvider,
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Ci.nsIGonkTelephonyProvider,
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Ci.nsIObserver]),
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// The following attributes/functions are used for acquiring/releasing the
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// CPU wake lock when the RIL handles the incoming call. Note that we need
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// a timer to bound the lock's life cycle to avoid exhausting the battery.
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_callRingWakeLock: null,
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_callRingWakeLockTimer: null,
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_acquireCallRingWakeLock: function _acquireCallRingWakeLock() {
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if (!this._callRingWakeLock) {
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if (DEBUG) debug("Acquiring a CPU wake lock for handling incoming call.");
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this._callRingWakeLock = gPowerManagerService.newWakeLock("cpu");
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}
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if (!this._callRingWakeLockTimer) {
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if (DEBUG) debug("Creating a timer for releasing the CPU wake lock.");
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this._callRingWakeLockTimer =
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Cc["@mozilla.org/timer;1"].createInstance(Ci.nsITimer);
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}
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if (DEBUG) debug("Setting the timer for releasing the CPU wake lock.");
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this._callRingWakeLockTimer
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.initWithCallback(this._releaseCallRingWakeLock.bind(this),
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CALL_WAKELOCK_TIMEOUT, Ci.nsITimer.TYPE_ONE_SHOT);
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},
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_releaseCallRingWakeLock: function _releaseCallRingWakeLock() {
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if (DEBUG) debug("Releasing the CPU wake lock for handling incoming call.");
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if (this._callRingWakeLockTimer) {
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this._callRingWakeLockTimer.cancel();
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}
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if (this._callRingWakeLock) {
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this._callRingWakeLock.unlock();
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this._callRingWakeLock = null;
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}
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},
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_getClient: function _getClient(aClientId) {
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return gRadioInterfaceLayer.getRadioInterface(aClientId);
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},
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// An array of nsITelephonyListener instances.
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_listeners: null,
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_notifyAllListeners: function _notifyAllListeners(aMethodName, aArgs) {
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let listeners = this._listeners.slice();
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for (let listener of listeners) {
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if (this._listeners.indexOf(listener) == -1) {
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// Listener has been unregistered in previous run.
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continue;
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}
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let handler = listener[aMethodName];
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try {
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handler.apply(listener, aArgs);
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} catch (e) {
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debug("listener for " + aMethodName + " threw an exception: " + e);
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}
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}
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},
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_matchActiveCall: function _matchActiveCall(aCall) {
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if (this._activeCall &&
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this._activeCall.callIndex == aCall.callIndex &&
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this._activeCall.clientId == aCall.clientId) {
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return true;
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}
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return false;
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},
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/**
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* Track the active call and update the audio system as its state changes.
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*/
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_activeCall: null,
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_updateCallAudioState: function _updateCallAudioState(aCall,
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aConferenceState) {
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if (aConferenceState === nsITelephonyProvider.CALL_STATE_CONNECTED) {
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gAudioManager.phoneState = nsIAudioManager.PHONE_STATE_IN_CALL;
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if (this.speakerEnabled) {
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gAudioManager.setForceForUse(nsIAudioManager.USE_COMMUNICATION,
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nsIAudioManager.FORCE_SPEAKER);
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}
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return;
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}
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if (aConferenceState === nsITelephonyProvider.CALL_STATE_UNKNOWN ||
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aConferenceState === nsITelephonyProvider.CALL_STATE_HELD) {
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if (!this._activeCall) {
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gAudioManager.phoneState = nsIAudioManager.PHONE_STATE_NORMAL;
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}
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return;
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}
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if (!aCall) {
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return;
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}
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if (aCall.isConference) {
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if (this._matchActiveCall(aCall)) {
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this._activeCall = null;
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}
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return;
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}
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switch (aCall.state) {
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case nsITelephonyProvider.CALL_STATE_DIALING: // Fall through...
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case nsITelephonyProvider.CALL_STATE_ALERTING:
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case nsITelephonyProvider.CALL_STATE_CONNECTED:
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aCall.isActive = true;
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this._activeCall = aCall;
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gAudioManager.phoneState = nsIAudioManager.PHONE_STATE_IN_CALL;
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if (this.speakerEnabled) {
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gAudioManager.setForceForUse(nsIAudioManager.USE_COMMUNICATION,
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nsIAudioManager.FORCE_SPEAKER);
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}
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if (DEBUG) {
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debug("Active call, put audio system into PHONE_STATE_IN_CALL: " +
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gAudioManager.phoneState);
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}
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break;
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case nsITelephonyProvider.CALL_STATE_INCOMING:
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aCall.isActive = false;
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if (!this._activeCall) {
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// We can change the phone state into RINGTONE only when there's
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// no active call.
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gAudioManager.phoneState = nsIAudioManager.PHONE_STATE_RINGTONE;
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if (DEBUG) {
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debug("Incoming call, put audio system into PHONE_STATE_RINGTONE: " +
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gAudioManager.phoneState);
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}
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}
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break;
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case nsITelephonyProvider.CALL_STATE_HELD: // Fall through...
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case nsITelephonyProvider.CALL_STATE_DISCONNECTED:
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aCall.isActive = false;
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if (this._matchActiveCall(aCall)) {
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// Previously active call is not active now.
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this._activeCall = null;
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}
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if (!this._activeCall) {
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// No active call. Disable the audio.
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gAudioManager.phoneState = nsIAudioManager.PHONE_STATE_NORMAL;
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if (DEBUG) {
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debug("No active call, put audio system into PHONE_STATE_NORMAL: " +
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gAudioManager.phoneState);
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}
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}
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break;
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}
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},
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_convertRILCallState: function _convertRILCallState(aState) {
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switch (aState) {
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case RIL.CALL_STATE_UNKNOWN:
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return nsITelephonyProvider.CALL_STATE_UNKNOWN;
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case RIL.CALL_STATE_ACTIVE:
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return nsITelephonyProvider.CALL_STATE_CONNECTED;
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case RIL.CALL_STATE_HOLDING:
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return nsITelephonyProvider.CALL_STATE_HELD;
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case RIL.CALL_STATE_DIALING:
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return nsITelephonyProvider.CALL_STATE_DIALING;
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case RIL.CALL_STATE_ALERTING:
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return nsITelephonyProvider.CALL_STATE_ALERTING;
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case RIL.CALL_STATE_INCOMING:
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case RIL.CALL_STATE_WAITING:
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return nsITelephonyProvider.CALL_STATE_INCOMING;
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default:
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throw new Error("Unknown rilCallState: " + aState);
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}
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},
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_convertRILSuppSvcNotification: function _convertRILSuppSvcNotification(aNotification) {
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switch (aNotification) {
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case RIL.GECKO_SUPP_SVC_NOTIFICATION_REMOTE_HELD:
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return nsITelephonyProvider.NOTIFICATION_REMOTE_HELD;
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case RIL.GECKO_SUPP_SVC_NOTIFICATION_REMOTE_RESUMED:
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return nsITelephonyProvider.NOTIFICATION_REMOTE_RESUMED;
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default:
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throw new Error("Unknown rilSuppSvcNotification: " + aNotification);
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}
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},
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_validateNumber: function _validateNumber(aNumber) {
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// note: isPlainPhoneNumber also accepts USSD and SS numbers
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if (gPhoneNumberUtils.isPlainPhoneNumber(aNumber)) {
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return true;
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}
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let errorMsg = RIL.RIL_CALL_FAILCAUSE_TO_GECKO_CALL_ERROR[RIL.CALL_FAIL_UNOBTAINABLE_NUMBER];
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let currentThread = Services.tm.currentThread;
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currentThread.dispatch(this.notifyCallError.bind(this, -1, errorMsg),
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Ci.nsIThread.DISPATCH_NORMAL);
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if (DEBUG) {
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debug("Number '" + aNumber + "' doesn't seem to be a viable number. Drop.");
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}
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return false;
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},
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_updateDebugFlag: function _updateDebugFlag() {
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try {
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DEBUG = RIL.DEBUG_RIL ||
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Services.prefs.getBoolPref(kPrefRilDebuggingEnabled);
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} catch (e) {}
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},
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_getDefaultServiceId: function _getDefaultServiceId() {
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let id = Services.prefs.getIntPref(kPrefDefaultServiceId);
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let numRil = Services.prefs.getIntPref(kPrefRilNumRadioInterfaces);
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if (id >= numRil || id < 0) {
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id = 0;
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}
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return id;
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},
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/**
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* nsITelephonyProvider interface.
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*/
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defaultServiceId: 0,
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registerListener: function(aListener) {
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if (this._listeners.indexOf(aListener) >= 0) {
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throw Cr.NS_ERROR_UNEXPECTED;
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}
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this._listeners.push(aListener);
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},
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unregisterListener: function(aListener) {
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let index = this._listeners.indexOf(aListener);
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if (index < 0) {
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throw Cr.NS_ERROR_UNEXPECTED;
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}
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this._listeners.splice(index, 1);
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},
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_enumerateCallsForClient: function _enumerateCallsForClient(aClientId,
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aListener) {
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if (DEBUG) debug("Enumeration of calls for client " + aClientId);
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let deferred = Promise.defer();
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this._getClient(aClientId).sendWorkerMessage("enumerateCalls", null,
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(function(response) {
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for (let call of response.calls) {
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call.clientId = aClientId;
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call.state = this._convertRILCallState(call.state);
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call.isActive = this._matchActiveCall(call);
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aListener.enumerateCallState(call.clientId, call.callIndex,
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call.state, call.number,
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call.isActive, call.isOutgoing,
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call.isEmergency, call.isConference);
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}
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deferred.resolve();
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return false;
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}).bind(this));
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return deferred.promise;
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},
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enumerateCalls: function(aListener) {
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if (DEBUG) debug("Requesting enumeration of calls for callback");
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let promise = Promise.resolve();
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for (let i = 0; i < this._numClients; ++i) {
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promise = promise.then(this._enumerateCallsForClient.bind(this, i, aListener));
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}
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promise.then(function() {
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aListener.enumerateCallStateComplete();
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});
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},
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dial: function(aClientId, aNumber, aIsEmergency) {
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if (DEBUG) debug("Dialing " + (aIsEmergency ? "emergency " : "") + aNumber);
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// we don't try to be too clever here, as the phone is probably in the
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// locked state. Let's just check if it's a number without normalizing
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if (!aIsEmergency) {
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aNumber = gPhoneNumberUtils.normalize(aNumber);
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}
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if (this._validateNumber(aNumber)) {
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this._getClient(aClientId).sendWorkerMessage("dial", {
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number: aNumber,
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isDialEmergency: aIsEmergency
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});
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}
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},
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hangUp: function(aClientId, aCallIndex) {
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this._getClient(aClientId).sendWorkerMessage("hangUp", { callIndex: aCallIndex });
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},
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startTone: function(aClientId, aDtmfChar) {
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this._getClient(aClientId).sendWorkerMessage("startTone", { dtmfChar: aDtmfChar });
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},
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stopTone: function(aClientId) {
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this._getClient(aClientId).sendWorkerMessage("stopTone");
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},
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answerCall: function(aClientId, aCallIndex) {
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this._getClient(aClientId).sendWorkerMessage("answerCall", { callIndex: aCallIndex });
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},
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rejectCall: function(aClientId, aCallIndex) {
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this._getClient(aClientId).sendWorkerMessage("rejectCall", { callIndex: aCallIndex });
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},
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holdCall: function(aClientId, aCallIndex) {
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this._getClient(aClientId).sendWorkerMessage("holdCall", { callIndex: aCallIndex });
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},
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resumeCall: function(aClientId, aCallIndex) {
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this._getClient(aClientId).sendWorkerMessage("resumeCall", { callIndex: aCallIndex });
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},
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conferenceCall: function conferenceCall(aClientId) {
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this._getClient(aClientId).sendWorkerMessage("conferenceCall");
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},
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separateCall: function separateCall(aClientId, aCallIndex) {
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this._getClient(aClientId).sendWorkerMessage("separateCall", { callIndex: aCallIndex });
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},
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holdConference: function holdConference(aClientId) {
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this._getClient(aClientId).sendWorkerMessage("holdConference");
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},
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resumeConference: function resumeConference(aClientId) {
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this._getClient(aClientId).sendWorkerMessage("resumeConference");
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},
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get microphoneMuted() {
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return gAudioManager.microphoneMuted;
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},
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set microphoneMuted(aMuted) {
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if (aMuted == this.microphoneMuted) {
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return;
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}
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gAudioManager.microphoneMuted = aMuted;
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if (!this._activeCall) {
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gAudioManager.phoneState = nsIAudioManager.PHONE_STATE_NORMAL;
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}
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},
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get speakerEnabled() {
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let force = gAudioManager.getForceForUse(nsIAudioManager.USE_COMMUNICATION);
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return (force == nsIAudioManager.FORCE_SPEAKER);
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},
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set speakerEnabled(aEnabled) {
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if (aEnabled == this.speakerEnabled) {
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return;
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}
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let force = aEnabled ? nsIAudioManager.FORCE_SPEAKER :
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nsIAudioManager.FORCE_NONE;
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gAudioManager.setForceForUse(nsIAudioManager.USE_COMMUNICATION, force);
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if (!this._activeCall) {
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gAudioManager.phoneState = nsIAudioManager.PHONE_STATE_NORMAL;
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}
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},
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/**
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* nsIGonkTelephonyProvider interface.
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*/
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/**
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* Handle call disconnects by updating our current state and the audio system.
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*/
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notifyCallDisconnected: function notifyCallDisconnected(aClientId, aCall) {
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if (DEBUG) debug("handleCallDisconnected: " + JSON.stringify(aCall));
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aCall.state = nsITelephonyProvider.CALL_STATE_DISCONNECTED;
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let duration = ("started" in aCall && typeof aCall.started == "number") ?
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new Date().getTime() - aCall.started : 0;
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let data = {
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number: aCall.number,
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duration: duration,
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direction: aCall.isOutgoing ? "outgoing" : "incoming"
|
|
};
|
|
gSystemMessenger.broadcastMessage("telephony-call-ended", data);
|
|
|
|
this._updateCallAudioState(aCall, null);
|
|
|
|
this._notifyAllListeners("callStateChanged", [aClientId,
|
|
aCall.callIndex,
|
|
aCall.state,
|
|
aCall.number,
|
|
aCall.isActive,
|
|
aCall.isOutgoing,
|
|
aCall.isEmergency,
|
|
aCall.isConference]);
|
|
},
|
|
|
|
/**
|
|
* Handle call error.
|
|
*/
|
|
notifyCallError: function notifyCallError(aClientId, aCallIndex, aErrorMsg) {
|
|
this._notifyAllListeners("notifyError", [aClientId, aCallIndex, aErrorMsg]);
|
|
},
|
|
|
|
/**
|
|
* Handle an incoming call.
|
|
*
|
|
* Not much is known about this call at this point, but it's enough
|
|
* to start bringing up the Phone app already.
|
|
*/
|
|
notifyCallRing: function notifyCallRing() {
|
|
// We need to acquire a CPU wake lock to avoid the system falling into
|
|
// the sleep mode when the RIL handles the incoming call.
|
|
this._acquireCallRingWakeLock();
|
|
|
|
gSystemMessenger.broadcastMessage("telephony-new-call", {});
|
|
},
|
|
|
|
/**
|
|
* Handle call state changes by updating our current state and the audio
|
|
* system.
|
|
*/
|
|
notifyCallStateChanged: function notifyCallStateChanged(aClientId, aCall) {
|
|
if (DEBUG) debug("handleCallStateChange: " + JSON.stringify(aCall));
|
|
|
|
aCall.state = this._convertRILCallState(aCall.state);
|
|
if (aCall.state == nsITelephonyProvider.CALL_STATE_DIALING) {
|
|
gSystemMessenger.broadcastMessage("telephony-new-call", {});
|
|
}
|
|
|
|
this._updateCallAudioState(aCall, null);
|
|
|
|
this._notifyAllListeners("callStateChanged", [aClientId,
|
|
aCall.callIndex,
|
|
aCall.state,
|
|
aCall.number,
|
|
aCall.isActive,
|
|
aCall.isOutgoing,
|
|
aCall.isEmergency,
|
|
aCall.isConference]);
|
|
},
|
|
|
|
notifyCdmaCallWaiting: function notifyCdmaCallWaiting(aClientId, aNumber) {
|
|
// We need to acquire a CPU wake lock to avoid the system falling into
|
|
// the sleep mode when the RIL handles the incoming call.
|
|
this._acquireCallRingWakeLock();
|
|
|
|
this._notifyAllListeners("notifyCdmaCallWaiting", [aClientId, aNumber]);
|
|
},
|
|
|
|
notifySupplementaryService:
|
|
function notifySupplementaryService(aClientId, aCallIndex, aNotification) {
|
|
let notification = this._convertRILSuppSvcNotification(aNotification);
|
|
this._notifyAllListeners("supplementaryServiceNotification",
|
|
[aClientId, aCallIndex, notification]);
|
|
},
|
|
|
|
notifyConferenceCallStateChanged: function notifyConferenceCallStateChanged(aState) {
|
|
if (DEBUG) debug("handleConferenceCallStateChanged: " + aState);
|
|
aState = this._convertRILCallState(aState);
|
|
this._updateCallAudioState(null, aState);
|
|
|
|
this._notifyAllListeners("conferenceCallStateChanged", [aState]);
|
|
},
|
|
|
|
notifyConferenceError: function notifyConferenceError(aName, aMessage) {
|
|
if (DEBUG) debug("handleConferenceError: " + aName + "." +
|
|
" Error details: " + aMessage);
|
|
this._notifyAllListeners("notifyConferenceError", [aName, aMessage]);
|
|
},
|
|
|
|
/**
|
|
* nsIObserver interface.
|
|
*/
|
|
|
|
observe: function observe(aSubject, aTopic, aData) {
|
|
switch (aTopic) {
|
|
case NS_PREFBRANCH_PREFCHANGE_TOPIC_ID:
|
|
if (aData === kPrefRilDebuggingEnabled) {
|
|
this._updateDebugFlag();
|
|
} else if (aData === kPrefDefaultServiceId) {
|
|
this.defaultServiceId = this._getDefaultServiceId();
|
|
}
|
|
break;
|
|
|
|
case NS_XPCOM_SHUTDOWN_OBSERVER_ID:
|
|
// Release the CPU wake lock for handling the incoming call.
|
|
this._releaseCallRingWakeLock();
|
|
|
|
Services.obs.removeObserver(this, NS_XPCOM_SHUTDOWN_OBSERVER_ID);
|
|
break;
|
|
}
|
|
}
|
|
};
|
|
|
|
this.NSGetFactory = XPCOMUtils.generateNSGetFactory([TelephonyProvider]);
|