mirror of
https://gitlab.winehq.org/wine/wine-gecko.git
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17660cf146
--HG-- rename : services/sync/tests/unit/test_utils_json.js => services/common/tests/unit/test_utils_json.js
406 lines
10 KiB
JavaScript
406 lines
10 KiB
JavaScript
/* Any copyright is dedicated to the Public Domain.
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http://creativecommons.org/publicdomain/zero/1.0/ */
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Cu.import("resource://services-common/utils.js");
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Cu.import("resource://services-common/async.js");
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Cu.import("resource://services-sync/identity.js");
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Cu.import("resource://services-sync/util.js");
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Cu.import("resource://services-sync/record.js");
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Cu.import("resource://services-sync/engines.js");
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let btoa;
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let atob;
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let provider = {
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getFile: function(prop, persistent) {
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persistent.value = true;
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switch (prop) {
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case "ExtPrefDL":
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return [Services.dirsvc.get("CurProcD", Ci.nsIFile)];
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default:
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throw Cr.NS_ERROR_FAILURE;
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}
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},
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QueryInterface: XPCOMUtils.generateQI([Ci.nsIDirectoryServiceProvider])
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};
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Services.dirsvc.QueryInterface(Ci.nsIDirectoryService).registerProvider(provider);
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let timer;
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function waitForZeroTimer(callback) {
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// First wait >100ms (nsITimers can take up to that much time to fire, so
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// we can account for the timer in delayedAutoconnect) and then two event
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// loop ticks (to account for the Utils.nextTick() in autoConnect).
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let ticks = 2;
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function wait() {
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if (ticks) {
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ticks -= 1;
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Utils.nextTick(wait);
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return;
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}
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callback();
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}
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timer = Utils.namedTimer(wait, 150, {}, "timer");
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}
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btoa = Cu.import("resource://services-common/log4moz.js").btoa;
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atob = Cu.import("resource://services-common/log4moz.js").atob;
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// This is needed for loadAddonTestFunctions().
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let gGlobalScope = this;
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function ExtensionsTestPath(path) {
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if (path[0] != "/") {
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throw Error("Path must begin with '/': " + path);
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}
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return "../../../../toolkit/mozapps/extensions/test/xpcshell" + path;
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}
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/**
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* Loads the AddonManager test functions by importing its test file.
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*
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* This should be called in the global scope of any test file needing to
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* interface with the AddonManager. It should only be called once, or the
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* universe will end.
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*/
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function loadAddonTestFunctions() {
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const path = ExtensionsTestPath("/head_addons.js");
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let file = do_get_file(path);
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let uri = Services.io.newFileURI(file);
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Services.scriptloader.loadSubScript(uri.spec, gGlobalScope);
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createAppInfo("xpcshell@tests.mozilla.org", "XPCShell", "1", "1.9.2");
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}
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function getAddonInstall(name) {
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let f = do_get_file(ExtensionsTestPath("/addons/" + name + ".xpi"));
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let cb = Async.makeSyncCallback();
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AddonManager.getInstallForFile(f, cb);
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return Async.waitForSyncCallback(cb);
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}
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/**
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* Obtains an addon from the add-on manager by id.
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*
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* This is merely a synchronous wrapper.
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*
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* @param id
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* ID of add-on to fetch
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* @return addon object on success or undefined or null on failure
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*/
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function getAddonFromAddonManagerByID(id) {
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let cb = Async.makeSyncCallback();
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AddonManager.getAddonByID(id, cb);
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return Async.waitForSyncCallback(cb);
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}
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/**
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* Installs an add-on synchronously from an addonInstall
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*
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* @param install addonInstall instance to install
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*/
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function installAddonFromInstall(install) {
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let cb = Async.makeSyncCallback();
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let listener = {onInstallEnded: cb};
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AddonManager.addInstallListener(listener);
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install.install();
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Async.waitForSyncCallback(cb);
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AddonManager.removeAddonListener(listener);
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do_check_neq(null, install.addon);
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do_check_neq(null, install.addon.syncGUID);
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return install.addon;
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}
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/**
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* Convenience function to install an add-on from the extensions unit tests.
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*
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* @param name
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* String name of add-on to install. e.g. test_install1
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* @return addon object that was installed
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*/
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function installAddon(name) {
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let install = getAddonInstall(name);
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do_check_neq(null, install);
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return installAddonFromInstall(install);
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}
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/**
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* Convenience function to uninstall an add-on synchronously.
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*
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* @param addon
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* Addon instance to uninstall
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*/
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function uninstallAddon(addon) {
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let cb = Async.makeSyncCallback();
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let listener = {onUninstalled: function(uninstalled) {
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if (uninstalled.id == addon.id) {
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AddonManager.removeAddonListener(listener);
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cb(uninstalled);
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}
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}};
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AddonManager.addAddonListener(listener);
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addon.uninstall();
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Async.waitForSyncCallback(cb);
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}
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function FakeFilesystemService(contents) {
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this.fakeContents = contents;
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let self = this;
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Utils.jsonSave = function jsonSave(filePath, that, obj, callback) {
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let json = typeof obj == "function" ? obj.call(that) : obj;
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self.fakeContents["weave/" + filePath + ".json"] = JSON.stringify(json);
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callback.call(that);
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};
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Utils.jsonLoad = function jsonLoad(filePath, that, callback) {
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let obj;
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let json = self.fakeContents["weave/" + filePath + ".json"];
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if (json) {
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obj = JSON.parse(json);
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}
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callback.call(that, obj);
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};
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};
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function FakeGUIDService() {
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let latestGUID = 0;
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Utils.makeGUID = function fake_makeGUID() {
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return "fake-guid-" + latestGUID++;
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};
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}
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function fakeSHA256HMAC(message) {
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message = message.substr(0, 64);
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while (message.length < 64) {
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message += " ";
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}
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return message;
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}
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/*
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* Mock implementation of WeaveCrypto. It does not encrypt or
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* decrypt, merely returning the input verbatim.
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*/
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function FakeCryptoService() {
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this.counter = 0;
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delete Svc.Crypto; // get rid of the getter first
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Svc.Crypto = this;
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CryptoWrapper.prototype.ciphertextHMAC = function ciphertextHMAC(keyBundle) {
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return fakeSHA256HMAC(this.ciphertext);
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};
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}
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FakeCryptoService.prototype = {
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encrypt: function(aClearText, aSymmetricKey, aIV) {
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return aClearText;
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},
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decrypt: function(aCipherText, aSymmetricKey, aIV) {
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return aCipherText;
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},
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generateRandomKey: function() {
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return btoa("fake-symmetric-key-" + this.counter++);
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},
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generateRandomIV: function() {
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// A base64-encoded IV is 24 characters long
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return btoa("fake-fake-fake-random-iv");
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},
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expandData : function expandData(data, len) {
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return data;
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},
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deriveKeyFromPassphrase : function (passphrase, salt, keyLength) {
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return "some derived key string composed of bytes";
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},
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generateRandomBytes: function(aByteCount) {
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return "not-so-random-now-are-we-HA-HA-HA! >:)".slice(aByteCount);
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}
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};
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function setBasicCredentials(username, password, syncKey) {
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let auth = Identity;
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auth.username = username;
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auth.basicPassword = password;
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auth.syncKey = syncKey;
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}
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function SyncTestingInfrastructure(username, password, syncKey) {
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Cu.import("resource://services-sync/service.js");
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Identity.account = username || "foo";
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Identity.basicPassword = password || "password";
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Identity.syncKey = syncKey || "foo";
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Service.serverURL = TEST_SERVER_URL;
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Service.clusterURL = TEST_CLUSTER_URL;
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this.logStats = initTestLogging();
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this.fakeFilesystem = new FakeFilesystemService({});
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this.fakeGUIDService = new FakeGUIDService();
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this.fakeCryptoService = new FakeCryptoService();
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}
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_("Setting the identity for passphrase");
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Cu.import("resource://services-sync/identity.js");
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/*
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* Test setup helpers.
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*/
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// Turn WBO cleartext into fake "encrypted" payload as it goes over the wire.
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function encryptPayload(cleartext) {
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if (typeof cleartext == "object") {
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cleartext = JSON.stringify(cleartext);
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}
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return {ciphertext: cleartext, // ciphertext == cleartext with fake crypto
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IV: "irrelevant",
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hmac: fakeSHA256HMAC(cleartext, Utils.makeHMACKey(""))};
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}
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function generateNewKeys(collections) {
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let wbo = CollectionKeys.generateNewKeysWBO(collections);
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let modified = new_timestamp();
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CollectionKeys.setContents(wbo.cleartext, modified);
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}
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/*
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* A fake engine implementation.
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* This is used all over the place.
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*
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* Complete with record, store, and tracker implementations.
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*/
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function RotaryRecord(collection, id) {
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CryptoWrapper.call(this, collection, id);
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}
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RotaryRecord.prototype = {
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__proto__: CryptoWrapper.prototype
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};
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Utils.deferGetSet(RotaryRecord, "cleartext", ["denomination"]);
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function RotaryStore() {
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Store.call(this, "Rotary");
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this.items = {};
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}
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RotaryStore.prototype = {
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__proto__: Store.prototype,
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create: function Store_create(record) {
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this.items[record.id] = record.denomination;
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},
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remove: function Store_remove(record) {
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delete this.items[record.id];
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},
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update: function Store_update(record) {
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this.items[record.id] = record.denomination;
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},
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itemExists: function Store_itemExists(id) {
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return (id in this.items);
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},
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createRecord: function(id, collection) {
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let record = new RotaryRecord(collection, id);
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if (!(id in this.items)) {
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record.deleted = true;
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return record;
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}
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record.denomination = this.items[id] || "Data for new record: " + id;
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return record;
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},
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changeItemID: function(oldID, newID) {
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if (oldID in this.items) {
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this.items[newID] = this.items[oldID];
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}
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delete this.items[oldID];
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},
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getAllIDs: function() {
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let ids = {};
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for (let id in this.items) {
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ids[id] = true;
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}
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return ids;
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},
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wipe: function() {
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this.items = {};
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}
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};
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function RotaryTracker() {
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Tracker.call(this, "Rotary");
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}
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RotaryTracker.prototype = {
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__proto__: Tracker.prototype
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};
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function RotaryEngine() {
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SyncEngine.call(this, "Rotary");
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// Ensure that the engine starts with a clean slate.
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this.toFetch = [];
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this.previousFailed = [];
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}
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RotaryEngine.prototype = {
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__proto__: SyncEngine.prototype,
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_storeObj: RotaryStore,
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_trackerObj: RotaryTracker,
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_recordObj: RotaryRecord,
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_findDupe: function(item) {
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// This is a semaphore used for testing proper reconciling on dupe
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// detection.
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if (item.id == "DUPE_INCOMING") {
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return "DUPE_LOCAL";
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}
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for (let [id, value] in Iterator(this._store.items)) {
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if (item.denomination == value) {
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return id;
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}
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}
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}
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};
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deepCopy: function deepCopy(thing, noSort) {
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if (typeof(thing) != "object" || thing == null){
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return thing;
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}
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let ret;
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if (Array.isArray(thing)) {
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ret = [];
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for (let i = 0; i < thing.length; i++){
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ret.push(deepCopy(thing[i], noSort));
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}
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} else {
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ret = {};
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let props = [p for (p in thing)];
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if (!noSort){
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props = props.sort();
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}
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props.forEach(function(k) ret[k] = deepCopy(thing[k], noSort));
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}
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return ret;
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};
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