forked from coolaj86/goldilocks.js
226 lines
6.8 KiB
JavaScript
226 lines
6.8 KiB
JavaScript
'use strict';
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var PromiseA = require('bluebird');
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var path = require('path');
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var fs = PromiseA.promisifyAll(require('fs'));
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var jwt = require('jsonwebtoken');
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var crypto = require('crypto');
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module.exports.create = function (deps, conf) {
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var hrIds = require('human-readable-ids').humanReadableIds;
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var scmp = require('scmp');
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var storageDir = path.join(__dirname, '..', 'var');
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function read(fileName) {
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return fs.readFileAsync(path.join(storageDir, fileName))
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.then(JSON.parse, function (err) {
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if (err.code === 'ENOENT') {
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return {};
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}
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throw err;
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});
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}
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function write(fileName, obj) {
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return fs.mkdirAsync(storageDir).catch(function (err) {
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if (err.code !== 'EEXIST') {
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console.error('failed to mkdir', storageDir, err.toString());
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}
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}).then(function () {
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return fs.writeFileAsync(path.join(storageDir, fileName), JSON.stringify(obj), 'utf8');
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});
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}
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var owners = {
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_filename: 'owners.json'
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, all: function () {
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return read(this._filename).then(function (owners) {
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return Object.keys(owners).map(function (id) {
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var owner = owners[id];
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owner.id = id;
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return owner;
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});
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});
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}
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, get: function (id) {
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// While we could directly read the owners file and access the id directly from
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// the resulting object I'm not sure of the details of how the object key lookup
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// works or whether that would expose us to timing attacks.
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// See https://codahale.com/a-lesson-in-timing-attacks/
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return this.all().then(function (owners) {
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return owners.filter(function (owner) {
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return scmp(id, owner.id);
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})[0];
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});
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}
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, exists: function (id) {
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return this.get(id).then(function (owner) {
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return !!owner;
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});
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}
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, set: function (id, obj) {
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var self = this;
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return read(self._filename).then(function (owners) {
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obj.id = id;
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owners[id] = obj;
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return write(self._filename, owners);
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});
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}
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};
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var confCb;
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var config = {
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save: function (changes) {
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deps.messenger.send({
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type: 'com.daplie.goldilocks/config'
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, changes: changes
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});
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return new deps.PromiseA(function (resolve, reject) {
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var timeoutId = setTimeout(function () {
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reject(new Error('Did not receive config update from main process in a reasonable time'));
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confCb = null;
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}, 15*1000);
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confCb = function (config) {
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confCb = null;
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clearTimeout(timeoutId);
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resolve(config);
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};
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});
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}
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};
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function updateConf(config) {
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if (confCb) {
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confCb(config);
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}
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}
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var userTokens = {
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_filename: 'user-tokens.json'
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, _cache: {}
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, _convertToken: function convertToken(id, token) {
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// convert the token into something that looks more like what OAuth3 uses internally
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// as sessions so we can use it with OAuth3. We don't use OAuth3's internal session
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// storage because it effectively only supports storing tokens based on provider URI.
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// We also use the token as the `access_token` instead of `refresh_token` because the
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// refresh functionality is closely tied to the storage.
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var decoded = jwt.decode(token);
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if (!decoded) {
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return null;
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}
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return {
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id: id
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, access_token: token
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, token: decoded
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, provider_uri: decoded.iss || decoded.issuer || decoded.provider_uri
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, client_uri: decoded.azp
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, scope: decoded.scp || decoded.scope || decoded.grants
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};
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}
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, all: function allUserTokens() {
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var self = this;
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if (self._cacheComplete) {
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return deps.PromiseA.resolve(Object.values(self._cache));
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}
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return read(self._filename).then(function (tokens) {
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// We will read every single token into our cache, so it will be complete once we finish
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// creating the result (it's set out of order so we can directly return the result).
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self._cacheComplete = true;
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return Object.keys(tokens).map(function (id) {
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self._cache[id] = self._convertToken(id, tokens[id]);
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return self._cache[id];
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});
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});
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}
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, get: function getUserToken(id) {
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var self = this;
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if (self._cache.hasOwnProperty(id) || self._cacheComplete) {
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return deps.PromiseA.resolve(self._cache[id] || null);
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}
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return read(self._filename).then(function (tokens) {
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self._cache[id] = self._convertToken(id, tokens[id]);
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return self._cache[id];
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});
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}
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, save: function saveUserToken(newToken) {
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var self = this;
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return read(self._filename).then(function (tokens) {
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var rawToken;
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if (typeof newToken === 'string') {
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rawToken = newToken;
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} else {
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rawToken = newToken.refresh_token || newToken.access_token;
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}
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if (typeof rawToken !== 'string') {
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throw new Error('cannot save invalid session: missing refresh_token and access_token');
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}
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var decoded = jwt.decode(rawToken);
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var idHash = crypto.createHash('sha256');
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idHash.update(decoded.sub || decoded.ppid || decoded.appScopedId || '');
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idHash.update(decoded.iss || decoded.issuer || '');
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idHash.update(decoded.aud || decoded.audience || '');
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var scope = decoded.scope || decoded.scp || decoded.grants || '';
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idHash.update(scope.split(/[,\s]+/mg).sort().join(','));
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var id = idHash.digest('hex');
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tokens[id] = rawToken;
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return write(self._filename, tokens).then(function () {
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// Delete the current cache so that if this is an update it will refresh
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// the cache once we read the ID.
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delete self._cache[id];
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return self.get(id);
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});
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});
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}
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, remove: function removeUserToken(id) {
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var self = this;
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return read(self._filename).then(function (tokens) {
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var present = delete tokens[id];
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if (!present) {
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return present;
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}
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return write(self._filename, tokens).then(function () {
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delete self._cache[id];
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return true;
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});
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});
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}
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};
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var mdnsId = {
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_filename: 'mdns-id'
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, get: function () {
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var self = this;
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return read("mdns-id").then(function (result) {
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if (typeof result !== 'string') {
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throw new Error('mDNS ID not present');
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}
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return result;
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}).catch(function () {
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return self.set(hrIds.random());
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});
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}
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, set: function (value) {
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var self = this;
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return write(self._filename, value).then(function () {
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return self.get();
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});
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}
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};
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return {
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owners: owners
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, config: config
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, updateConf: updateConf
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, tokens: userTokens
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, mdnsId: mdnsId
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};
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};
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