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7e20285e70
The -*- file variable lines -*- establish per-file settings that Emacs will pick up. This patch makes the following changes to those lines (and touches nothing else): - Never set the buffer's mode. Years ago, Emacs did not have a good JavaScript mode, so it made sense to use Java or C++ mode in .js files. However, Emacs has had js-mode for years now; it's perfectly serviceable, and is available and enabled by default in all major Emacs packagings. Selecting a mode in the -*- file variable line -*- is almost always the wrong thing to do anyway. It overrides Emacs's default choice, which is (now) reasonable; and even worse, it overrides settings the user might have made in their '.emacs' file for that file extension. It's only useful when there's something specific about that particular file that makes a particular mode appropriate. - Correctly propagate settings that establish the correct indentation level for this file: c-basic-offset and js2-basic-offset should be js-indent-level. Whatever value they're given should be preserved; different parts of our tree use different indentation styles. - We don't use tabs in Mozilla JS code. Always set indent-tabs-mode: nil. Remove tab-width: settings, at least in files that don't contain tab characters. - Remove js2-mode settings that belong in the user's .emacs file, like js2-skip-preprocessor-directives.
373 lines
12 KiB
JavaScript
373 lines
12 KiB
JavaScript
/* -*- js-indent-level: 2; indent-tabs-mode: nil -*- */
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/* vim: set ft=javascript ts=2 et sw=2 tw=80: */
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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 Cu = Components.utils;
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const Ci = Components.interfaces;
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const Cc = Components.classes;
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const Cr = Components.results;
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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/identity/LogUtils.jsm");
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Cu.import("resource://gre/modules/identity/IdentityStore.jsm");
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this.EXPORTED_SYMBOLS = ["RelyingParty"];
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XPCOMUtils.defineLazyModuleGetter(this, "objectCopy",
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"resource://gre/modules/identity/IdentityUtils.jsm");
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XPCOMUtils.defineLazyModuleGetter(this,
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"jwcrypto",
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"resource://gre/modules/identity/jwcrypto.jsm");
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function log(...aMessageArgs) {
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Logger.log.apply(Logger, ["RP"].concat(aMessageArgs));
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}
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function reportError(...aMessageArgs) {
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Logger.reportError.apply(Logger, ["RP"].concat(aMessageArgs));
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}
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function IdentityRelyingParty() {
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// The store is a singleton shared among Identity, RelyingParty, and
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// IdentityProvider. The Identity module takes care of resetting
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// state in the _store on shutdown.
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this._store = IdentityStore;
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this.reset();
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}
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IdentityRelyingParty.prototype = {
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QueryInterface: XPCOMUtils.generateQI([Ci.nsISupports, Ci.nsIObserver]),
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observe: function observe(aSubject, aTopic, aData) {
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switch (aTopic) {
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case "quit-application-granted":
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Services.obs.removeObserver(this, "quit-application-granted");
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this.shutdown();
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break;
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}
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},
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reset: function RP_reset() {
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// Forget all documents that call in. (These are sometimes
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// referred to as callers.)
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this._rpFlows = {};
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},
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shutdown: function RP_shutdown() {
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this.reset();
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Services.obs.removeObserver(this, "quit-application-granted");
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},
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/**
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* Register a listener for a given windowID as a result of a call to
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* navigator.id.watch().
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*
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* @param aCaller
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* (Object) an object that represents the caller document, and
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* is expected to have properties:
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* - id (unique, e.g. uuid)
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* - loggedInUser (string or null)
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* - origin (string)
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*
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* and a bunch of callbacks
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* - doReady()
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* - doLogin()
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* - doLogout()
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* - doError()
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* - doCancel()
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*
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*/
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watch: function watch(aRpCaller) {
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this._rpFlows[aRpCaller.id] = aRpCaller;
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let origin = aRpCaller.origin;
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let state = this._store.getLoginState(origin) || { isLoggedIn: false, email: null };
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log("watch: rpId:", aRpCaller.id,
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"origin:", origin,
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"loggedInUser:", aRpCaller.loggedInUser,
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"loggedIn:", state.isLoggedIn,
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"email:", state.email);
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// If the user is already logged in, then there are three cases
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// to deal with:
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//
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// 1. the email is valid and unchanged: 'ready'
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// 2. the email is null: 'login'; 'ready'
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// 3. the email has changed: 'login'; 'ready'
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if (state.isLoggedIn) {
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if (state.email && aRpCaller.loggedInUser === state.email) {
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this._notifyLoginStateChanged(aRpCaller.id, state.email);
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return aRpCaller.doReady();
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} else if (aRpCaller.loggedInUser === null) {
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// Generate assertion for existing login
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let options = {loggedInUser: state.email, origin: origin};
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return this._doLogin(aRpCaller, options);
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} else {
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// A loggedInUser different from state.email has been specified.
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// Change login identity.
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let options = {loggedInUser: state.email, origin: origin};
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return this._doLogin(aRpCaller, options);
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}
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// If the user is not logged in, there are two cases:
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//
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// 1. a logged in email was provided: 'ready'; 'logout'
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// 2. not logged in, no email given: 'ready';
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} else {
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if (aRpCaller.loggedInUser) {
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return this._doLogout(aRpCaller, {origin: origin});
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} else {
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return aRpCaller.doReady();
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}
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}
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},
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/**
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* A utility for watch() to set state and notify the dom
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* on login
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*
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* Note that this calls _getAssertion
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*/
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_doLogin: function _doLogin(aRpCaller, aOptions, aAssertion) {
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log("_doLogin: rpId:", aRpCaller.id, "origin:", aOptions.origin);
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let loginWithAssertion = function loginWithAssertion(assertion) {
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this._store.setLoginState(aOptions.origin, true, aOptions.loggedInUser);
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this._notifyLoginStateChanged(aRpCaller.id, aOptions.loggedInUser);
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aRpCaller.doLogin(assertion);
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aRpCaller.doReady();
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}.bind(this);
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if (aAssertion) {
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loginWithAssertion(aAssertion);
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} else {
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this._getAssertion(aOptions, function gotAssertion(err, assertion) {
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if (err) {
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reportError("_doLogin:", "Failed to get assertion on login attempt:", err);
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this._doLogout(aRpCaller);
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} else {
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loginWithAssertion(assertion);
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}
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}.bind(this));
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}
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},
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/**
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* A utility for watch() to set state and notify the dom
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* on logout.
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*/
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_doLogout: function _doLogout(aRpCaller, aOptions) {
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log("_doLogout: rpId:", aRpCaller.id, "origin:", aOptions.origin);
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let state = this._store.getLoginState(aOptions.origin) || {};
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state.isLoggedIn = false;
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this._notifyLoginStateChanged(aRpCaller.id, null);
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aRpCaller.doLogout();
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aRpCaller.doReady();
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},
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/**
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* For use with login or logout, emit 'identity-login-state-changed'
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*
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* The notification will send the rp caller id in the properties,
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* and the email of the user in the message.
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*
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* @param aRpCallerId
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* (integer) The id of the RP caller
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*
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* @param aIdentity
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* (string) The email of the user whose login state has changed
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*/
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_notifyLoginStateChanged: function _notifyLoginStateChanged(aRpCallerId, aIdentity) {
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log("_notifyLoginStateChanged: rpId:", aRpCallerId, "identity:", aIdentity);
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let options = {rpId: aRpCallerId};
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Services.obs.notifyObservers({wrappedJSObject: options},
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"identity-login-state-changed",
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aIdentity);
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},
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/**
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* Initiate a login with user interaction as a result of a call to
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* navigator.id.request().
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*
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* @param aRPId
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* (integer) the id of the doc object obtained in .watch()
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*
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* @param aOptions
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* (Object) options including privacyPolicy, termsOfService
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*/
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request: function request(aRPId, aOptions) {
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log("request: rpId:", aRPId);
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let rp = this._rpFlows[aRPId];
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// Notify UX to display identity picker.
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// Pass the doc id to UX so it can pass it back to us later.
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let options = {rpId: aRPId, origin: rp.origin};
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objectCopy(aOptions, options);
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// Append URLs after resolving
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let baseURI = Services.io.newURI(rp.origin, null, null);
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for (let optionName of ["privacyPolicy", "termsOfService"]) {
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if (aOptions[optionName]) {
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options[optionName] = baseURI.resolve(aOptions[optionName]);
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}
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}
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Services.obs.notifyObservers({wrappedJSObject: options}, "identity-request", null);
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},
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/**
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* Invoked when a user wishes to logout of a site (for instance, when clicking
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* on an in-content logout button).
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*
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* @param aRpCallerId
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* (integer) the id of the doc object obtained in .watch()
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*
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*/
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logout: function logout(aRpCallerId) {
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log("logout: RP caller id:", aRpCallerId);
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let rp = this._rpFlows[aRpCallerId];
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if (rp && rp.origin) {
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let origin = rp.origin;
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log("logout: origin:", origin);
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this._doLogout(rp, {origin: origin});
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} else {
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log("logout: no RP found with id:", aRpCallerId);
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}
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// We don't delete this._rpFlows[aRpCallerId], because
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// the user might log back in again.
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},
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getDefaultEmailForOrigin: function getDefaultEmailForOrigin(aOrigin) {
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let identities = this.getIdentitiesForSite(aOrigin);
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let result = identities.lastUsed || null;
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log("getDefaultEmailForOrigin:", aOrigin, "->", result);
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return result;
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},
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/**
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* Return the list of identities a user may want to use to login to aOrigin.
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*/
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getIdentitiesForSite: function getIdentitiesForSite(aOrigin) {
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let rv = { result: [] };
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for (let id in this._store.getIdentities()) {
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rv.result.push(id);
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}
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let loginState = this._store.getLoginState(aOrigin);
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if (loginState && loginState.email)
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rv.lastUsed = loginState.email;
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return rv;
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},
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/**
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* Obtain a BrowserID assertion with the specified characteristics.
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*
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* @param aCallback
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* (Function) Callback to be called with (err, assertion) where 'err'
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* can be an Error or NULL, and 'assertion' can be NULL or a valid
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* BrowserID assertion. If no callback is provided, an exception is
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* thrown.
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*
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* @param aOptions
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* (Object) An object that may contain the following properties:
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*
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* "audience" : The audience for which the assertion is to be
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* issued. If this property is not set an exception
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* will be thrown.
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*
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* Any properties not listed above will be ignored.
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*/
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_getAssertion: function _getAssertion(aOptions, aCallback) {
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let audience = aOptions.origin;
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let email = aOptions.loggedInUser || this.getDefaultEmailForOrigin(audience);
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log("_getAssertion: audience:", audience, "email:", email);
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if (!audience) {
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throw "audience required for _getAssertion";
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}
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// We might not have any identity info for this email
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if (!this._store.fetchIdentity(email)) {
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this._store.addIdentity(email, null, null);
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}
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let cert = this._store.fetchIdentity(email)['cert'];
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if (cert) {
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this._generateAssertion(audience, email, function generatedAssertion(err, assertion) {
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if (err) {
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log("ERROR: _getAssertion:", err);
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}
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log("_getAssertion: generated assertion:", assertion);
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return aCallback(err, assertion);
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});
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}
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},
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/**
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* Generate an assertion, including provisioning via IdP if necessary,
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* but no user interaction, so if provisioning fails, aCallback is invoked
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* with an error.
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*
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* @param aAudience
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* (string) web origin
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*
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* @param aIdentity
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* (string) the email we're logging in with
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*
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* @param aCallback
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* (function) callback to invoke on completion
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* with first-positional parameter the error.
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*/
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_generateAssertion: function _generateAssertion(aAudience, aIdentity, aCallback) {
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log("_generateAssertion: audience:", aAudience, "identity:", aIdentity);
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let id = this._store.fetchIdentity(aIdentity);
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if (! (id && id.cert)) {
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let errStr = "Cannot generate an assertion without a certificate";
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log("ERROR: _generateAssertion:", errStr);
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aCallback(errStr);
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return;
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}
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let kp = id.keyPair;
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if (!kp) {
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let errStr = "Cannot generate an assertion without a keypair";
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log("ERROR: _generateAssertion:", errStr);
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aCallback(errStr);
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return;
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}
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jwcrypto.generateAssertion(id.cert, kp, aAudience, aCallback);
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},
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/**
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* Clean up references to the provisioning flow for the specified RP.
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*/
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_cleanUpProvisionFlow: function RP_cleanUpProvisionFlow(aRPId, aProvId) {
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let rp = this._rpFlows[aRPId];
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if (rp) {
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delete rp['provId'];
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} else {
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log("Error: Couldn't delete provision flow ", aProvId, " for RP ", aRPId);
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}
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},
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};
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this.RelyingParty = new IdentityRelyingParty();
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