UNPKG

dynamodb-dashboard

Version:
467 lines (465 loc) 27.1 kB
"use strict"; Object.defineProperty(exports, "__esModule", { value: true }); exports["default"] = void 0; var _aws = _interopRequireDefault(require("../config/aws")); var _dynamodb = require("../constants/dynamodb"); var _dynamodb2 = require("../utils/dynamodb"); var _database = _interopRequireDefault(require("./database.service")); var _clientDynamodb = require("@aws-sdk/client-dynamodb"); function _interopRequireDefault(e) { return e && e.__esModule ? e : { "default": e }; } function _typeof(o) { "@babel/helpers - typeof"; return _typeof = "function" == typeof Symbol && "symbol" == typeof Symbol.iterator ? function (o) { return typeof o; } : function (o) { return o && "function" == typeof Symbol && o.constructor === Symbol && o !== Symbol.prototype ? "symbol" : typeof o; }, _typeof(o); } function ownKeys(e, r) { var t = Object.keys(e); if (Object.getOwnPropertySymbols) { var o = Object.getOwnPropertySymbols(e); r && (o = o.filter(function (r) { return Object.getOwnPropertyDescriptor(e, r).enumerable; })), t.push.apply(t, o); } return t; } function _objectSpread(e) { for (var r = 1; r < arguments.length; r++) { var t = null != arguments[r] ? arguments[r] : {}; r % 2 ? ownKeys(Object(t), !0).forEach(function (r) { _defineProperty(e, r, t[r]); }) : Object.getOwnPropertyDescriptors ? Object.defineProperties(e, Object.getOwnPropertyDescriptors(t)) : ownKeys(Object(t)).forEach(function (r) { Object.defineProperty(e, r, Object.getOwnPropertyDescriptor(t, r)); }); } return e; } function _defineProperty(e, r, t) { return (r = _toPropertyKey(r)) in e ? Object.defineProperty(e, r, { value: t, enumerable: !0, configurable: !0, writable: !0 }) : e[r] = t, e; } function _regeneratorRuntime() { "use strict"; var r = _regenerator(), e = r.m(_regeneratorRuntime), t = (Object.getPrototypeOf ? Object.getPrototypeOf(e) : e.__proto__).constructor; function n(r) { var e = "function" == typeof r && r.constructor; return !!e && (e === t || "GeneratorFunction" === (e.displayName || e.name)); } var o = { "throw": 1, "return": 2, "break": 3, "continue": 3 }; function a(r) { var e, t; return function (n) { e || (e = { stop: function stop() { return t(n.a, 2); }, "catch": function _catch() { return n.v; }, abrupt: function abrupt(r, e) { return t(n.a, o[r], e); }, delegateYield: function delegateYield(r, o, a) { return e.resultName = o, t(n.d, _regeneratorValues(r), a); }, finish: function finish(r) { return t(n.f, r); } }, t = function t(r, _t, o) { n.p = e.prev, n.n = e.next; try { return r(_t, o); } finally { e.next = n.n; } }), e.resultName && (e[e.resultName] = n.v, e.resultName = void 0), e.sent = n.v, e.next = n.n; try { return r.call(this, e); } finally { n.p = e.prev, n.n = e.next; } }; } return (_regeneratorRuntime = function _regeneratorRuntime() { return { wrap: function wrap(e, t, n, o) { return r.w(a(e), t, n, o && o.reverse()); }, isGeneratorFunction: n, mark: r.m, awrap: function awrap(r, e) { return new _OverloadYield(r, e); }, AsyncIterator: _regeneratorAsyncIterator, async: function async(r, e, t, o, u) { return (n(e) ? _regeneratorAsyncGen : _regeneratorAsync)(a(r), e, t, o, u); }, keys: _regeneratorKeys, values: _regeneratorValues }; })(); } function _regeneratorValues(e) { if (null != e) { var t = e["function" == typeof Symbol && Symbol.iterator || "@@iterator"], r = 0; if (t) return t.call(e); if ("function" == typeof e.next) return e; if (!isNaN(e.length)) return { next: function next() { return e && r >= e.length && (e = void 0), { value: e && e[r++], done: !e }; } }; } throw new TypeError(_typeof(e) + " is not iterable"); } function _regeneratorKeys(e) { var n = Object(e), r = []; for (var t in n) r.unshift(t); return function e() { for (; r.length;) if ((t = r.pop()) in n) return e.value = t, e.done = !1, e; return e.done = !0, e; }; } function _regeneratorAsync(n, e, r, t, o) { var a = _regeneratorAsyncGen(n, e, r, t, o); return a.next().then(function (n) { return n.done ? n.value : a.next(); }); } function _regeneratorAsyncGen(r, e, t, o, n) { return new _regeneratorAsyncIterator(_regenerator().w(r, e, t, o), n || Promise); } function _regeneratorAsyncIterator(t, e) { function n(r, o, i, f) { try { var c = t[r](o), u = c.value; return u instanceof _OverloadYield ? e.resolve(u.v).then(function (t) { n("next", t, i, f); }, function (t) { n("throw", t, i, f); }) : e.resolve(u).then(function (t) { c.value = t, i(c); }, function (t) { return n("throw", t, i, f); }); } catch (t) { f(t); } } var r; this.next || (_regeneratorDefine2(_regeneratorAsyncIterator.prototype), _regeneratorDefine2(_regeneratorAsyncIterator.prototype, "function" == typeof Symbol && Symbol.asyncIterator || "@asyncIterator", function () { return this; })), _regeneratorDefine2(this, "_invoke", function (t, o, i) { function f() { return new e(function (e, r) { n(t, i, e, r); }); } return r = r ? r.then(f, f) : f(); }, !0); } function _regenerator() { /*! regenerator-runtime -- Copyright (c) 2014-present, Facebook, Inc. -- license (MIT): https://github.com/babel/babel/blob/main/packages/babel-helpers/LICENSE */ var e, t, r = "function" == typeof Symbol ? Symbol : {}, n = r.iterator || "@@iterator", o = r.toStringTag || "@@toStringTag"; function i(r, n, o, i) { var c = n && n.prototype instanceof Generator ? n : Generator, u = Object.create(c.prototype); return _regeneratorDefine2(u, "_invoke", function (r, n, o) { var i, c, u, f = 0, p = o || [], y = !1, G = { p: 0, n: 0, v: e, a: d, f: d.bind(e, 4), d: function d(t, r) { return i = t, c = 0, u = e, G.n = r, a; } }; function d(r, n) { for (c = r, u = n, t = 0; !y && f && !o && t < p.length; t++) { var o, i = p[t], d = G.p, l = i[2]; r > 3 ? (o = l === n) && (c = i[4] || 3, u = i[5] === e ? i[3] : i[5], i[4] = 3, i[5] = e) : i[0] <= d && ((o = r < 2 && d < i[1]) ? (c = 0, G.v = n, G.n = i[1]) : d < l && (o = r < 3 || i[0] > n || n > l) && (i[4] = r, i[5] = n, G.n = l, c = 0)); } if (o || r > 1) return a; throw y = !0, n; } return function (o, p, l) { if (f > 1) throw TypeError("Generator is already running"); for (y && 1 === p && d(p, l), c = p, u = l; (t = c < 2 ? e : u) || !y;) { i || (c ? c < 3 ? (c > 1 && (G.n = -1), d(c, u)) : G.n = u : G.v = u); try { if (f = 2, i) { if (c || (o = "next"), t = i[o]) { if (!(t = t.call(i, u))) throw TypeError("iterator result is not an object"); if (!t.done) return t; u = t.value, c < 2 && (c = 0); } else 1 === c && (t = i["return"]) && t.call(i), c < 2 && (u = TypeError("The iterator does not provide a '" + o + "' method"), c = 1); i = e; } else if ((t = (y = G.n < 0) ? u : r.call(n, G)) !== a) break; } catch (t) { i = e, c = 1, u = t; } finally { f = 1; } } return { value: t, done: y }; }; }(r, o, i), !0), u; } var a = {}; function Generator() {} function GeneratorFunction() {} function GeneratorFunctionPrototype() {} t = Object.getPrototypeOf; var c = [][n] ? t(t([][n]())) : (_regeneratorDefine2(t = {}, n, function () { return this; }), t), u = GeneratorFunctionPrototype.prototype = Generator.prototype = Object.create(c); function f(e) { return Object.setPrototypeOf ? Object.setPrototypeOf(e, GeneratorFunctionPrototype) : (e.__proto__ = GeneratorFunctionPrototype, _regeneratorDefine2(e, o, "GeneratorFunction")), e.prototype = Object.create(u), e; } return GeneratorFunction.prototype = GeneratorFunctionPrototype, _regeneratorDefine2(u, "constructor", GeneratorFunctionPrototype), _regeneratorDefine2(GeneratorFunctionPrototype, "constructor", GeneratorFunction), GeneratorFunction.displayName = "GeneratorFunction", _regeneratorDefine2(GeneratorFunctionPrototype, o, "GeneratorFunction"), _regeneratorDefine2(u), _regeneratorDefine2(u, o, "Generator"), _regeneratorDefine2(u, n, function () { return this; }), _regeneratorDefine2(u, "toString", function () { return "[object Generator]"; }), (_regenerator = function _regenerator() { return { w: i, m: f }; })(); } function _regeneratorDefine2(e, r, n, t) { var i = Object.defineProperty; try { i({}, "", {}); } catch (e) { i = 0; } _regeneratorDefine2 = function _regeneratorDefine(e, r, n, t) { if (r) i ? i(e, r, { value: n, enumerable: !t, configurable: !t, writable: !t }) : e[r] = n;else { var o = function o(r, n) { _regeneratorDefine2(e, r, function (e) { return this._invoke(r, n, e); }); }; o("next", 0), o("throw", 1), o("return", 2); } }, _regeneratorDefine2(e, r, n, t); } function _toConsumableArray(r) { return _arrayWithoutHoles(r) || _iterableToArray(r) || _unsupportedIterableToArray(r) || _nonIterableSpread(); } function _nonIterableSpread() { throw new TypeError("Invalid attempt to spread non-iterable instance.\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method."); } function _unsupportedIterableToArray(r, a) { if (r) { if ("string" == typeof r) return _arrayLikeToArray(r, a); var t = {}.toString.call(r).slice(8, -1); return "Object" === t && r.constructor && (t = r.constructor.name), "Map" === t || "Set" === t ? Array.from(r) : "Arguments" === t || /^(?:Ui|I)nt(?:8|16|32)(?:Clamped)?Array$/.test(t) ? _arrayLikeToArray(r, a) : void 0; } } function _iterableToArray(r) { if ("undefined" != typeof Symbol && null != r[Symbol.iterator] || null != r["@@iterator"]) return Array.from(r); } function _arrayWithoutHoles(r) { if (Array.isArray(r)) return _arrayLikeToArray(r); } function _arrayLikeToArray(r, a) { (null == a || a > r.length) && (a = r.length); for (var e = 0, n = Array(a); e < a; e++) n[e] = r[e]; return n; } function asyncGeneratorStep(n, t, e, r, o, a, c) { try { var i = n[a](c), u = i.value; } catch (n) { return void e(n); } i.done ? t(u) : Promise.resolve(u).then(r, o); } function _asyncToGenerator(n) { return function () { var t = this, e = arguments; return new Promise(function (r, o) { var a = n.apply(t, e); function _next(n) { asyncGeneratorStep(a, r, o, _next, _throw, "next", n); } function _throw(n) { asyncGeneratorStep(a, r, o, _next, _throw, "throw", n); } _next(void 0); }); }; } function _classCallCheck(a, n) { if (!(a instanceof n)) throw new TypeError("Cannot call a class as a function"); } function _defineProperties(e, r) { for (var t = 0; t < r.length; t++) { var o = r[t]; o.enumerable = o.enumerable || !1, o.configurable = !0, "value" in o && (o.writable = !0), Object.defineProperty(e, _toPropertyKey(o.key), o); } } function _createClass(e, r, t) { return r && _defineProperties(e.prototype, r), t && _defineProperties(e, t), Object.defineProperty(e, "prototype", { writable: !1 }), e; } function _toPropertyKey(t) { var i = _toPrimitive(t, "string"); return "symbol" == _typeof(i) ? i : i + ""; } function _toPrimitive(t, r) { if ("object" != _typeof(t) || !t) return t; var e = t[Symbol.toPrimitive]; if (void 0 !== e) { var i = e.call(t, r || "default"); if ("object" != _typeof(i)) return i; throw new TypeError("@@toPrimitive must return a primitive value."); } return ("string" === r ? String : Number)(t); } function _awaitAsyncGenerator(e) { return new _OverloadYield(e, 0); } function _wrapAsyncGenerator(e) { return function () { return new AsyncGenerator(e.apply(this, arguments)); }; } function AsyncGenerator(e) { var r, t; function resume(r, t) { try { var n = e[r](t), o = n.value, u = o instanceof _OverloadYield; Promise.resolve(u ? o.v : o).then(function (t) { if (u) { var i = "return" === r ? "return" : "next"; if (!o.k || t.done) return resume(i, t); t = e[i](t).value; } settle(n.done ? "return" : "normal", t); }, function (e) { resume("throw", e); }); } catch (e) { settle("throw", e); } } function settle(e, n) { switch (e) { case "return": r.resolve({ value: n, done: !0 }); break; case "throw": r.reject(n); break; default: r.resolve({ value: n, done: !1 }); } (r = r.next) ? resume(r.key, r.arg) : t = null; } this._invoke = function (e, n) { return new Promise(function (o, u) { var i = { key: e, arg: n, resolve: o, reject: u, next: null }; t ? t = t.next = i : (r = t = i, resume(e, n)); }); }, "function" != typeof e["return"] && (this["return"] = void 0); } AsyncGenerator.prototype["function" == typeof Symbol && Symbol.asyncIterator || "@@asyncIterator"] = function () { return this; }, AsyncGenerator.prototype.next = function (e) { return this._invoke("next", e); }, AsyncGenerator.prototype["throw"] = function (e) { return this._invoke("throw", e); }, AsyncGenerator.prototype["return"] = function (e) { return this._invoke("return", e); }; function _OverloadYield(e, d) { this.v = e, this.k = d; } var TableServiceProvider = exports["default"] = /*#__PURE__*/function () { /** * @param {AWS} _AWS_ * @param {object} credentials */ function TableServiceProvider() { var _AWS_ = arguments.length > 0 && arguments[0] !== undefined ? arguments[0] : _aws["default"]; _classCallCheck(this, TableServiceProvider); this.AWS = _AWS_; } /** * @returns {Promise<Array<object>>} */ return _createClass(TableServiceProvider, [{ key: "all", value: (function () { var _all = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee() { var tables, params, response; return _regeneratorRuntime().wrap(function _callee$(_context) { while (1) switch (_context.prev = _context.next) { case 0: tables = []; params = {}; case 2: _context.next = 4; return this.AWS.dynamodb.listTables(params); case 4: response = _context.sent; tables.push.apply(tables, _toConsumableArray(response.TableNames)); params.ExclusiveStartTableName = response.LastEvaluatedTableName; case 7: if (params.ExclusiveStartTableName) { _context.next = 2; break; } case 8: return _context.abrupt("return", tables); case 9: case "end": return _context.stop(); } }, _callee, this); })); function all() { return _all.apply(this, arguments); } return all; }() /** * @param {object} params * * @returns {Promise<object>} */ ) }, { key: "create", value: (function () { var _create = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee2(params) { var options, response, _args2 = arguments; return _regeneratorRuntime().wrap(function _callee2$(_context2) { while (1) switch (_context2.prev = _context2.next) { case 0: options = _args2.length > 1 && _args2[1] !== undefined ? _args2[1] : {}; _context2.next = 3; return this.AWS.dynamodb.createTable(params, options); case 3: response = _context2.sent; return _context2.abrupt("return", response); case 5: case "end": return _context2.stop(); } }, _callee2, this); })); function create(_x) { return _create.apply(this, arguments); } return create; }() /** * @param {object} params * * @returns {Promise<object>} */ ) }, { key: "describe", value: (function () { var _describe = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee3(tableName, options) { var response; return _regeneratorRuntime().wrap(function _callee3$(_context3) { while (1) switch (_context3.prev = _context3.next) { case 0: _context3.next = 2; return this.AWS.dynamodb.describeTable({ TableName: tableName }, options); case 2: response = _context3.sent; return _context3.abrupt("return", response); case 4: case "end": return _context3.stop(); } }, _callee3, this); })); function describe(_x2, _x3) { return _describe.apply(this, arguments); } return describe; }() /** * @param {string} tableName * * @returns {Promise<object>} */ ) }, { key: "describeTimeToLive", value: (function () { var _describeTimeToLive = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee4(tableName) { var response; return _regeneratorRuntime().wrap(function _callee4$(_context4) { while (1) switch (_context4.prev = _context4.next) { case 0: _context4.next = 2; return this.AWS.dynamodb.describeTimeToLive({ TableName: tableName }); case 2: response = _context4.sent; return _context4.abrupt("return", response); case 4: case "end": return _context4.stop(); } }, _callee4, this); })); function describeTimeToLive(_x4) { return _describeTimeToLive.apply(this, arguments); } return describeTimeToLive; }() /** * @param {string} tableName * * @returns {Promise<object>} */ ) }, { key: "disableTimeToLive", value: (function () { var _disableTimeToLive = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee5(tableName) { var response; return _regeneratorRuntime().wrap(function _callee5$(_context5) { while (1) switch (_context5.prev = _context5.next) { case 0: _context5.next = 2; return this.AWS.dynamodb.describeTimeToLive({ TableName: tableName }); case 2: response = _context5.sent; if (!response.TimeToLiveDescription.AttributeName) { _context5.next = 7; break; } _context5.next = 6; return this.AWS.dynamodb.updateTimeToLive({ TableName: tableName, TimeToLiveSpecification: { Enabled: false, AttributeName: response.TimeToLiveDescription.AttributeName } }); case 6: response = _context5.sent; case 7: return _context5.abrupt("return", response); case 8: case "end": return _context5.stop(); } }, _callee5, this); })); function disableTimeToLive(_x5) { return _disableTimeToLive.apply(this, arguments); } return disableTimeToLive; }() /** * @param {string} tableName * @param {object} params * * @returns {Promise<object>} */ ) }, { key: "updateTimeToLive", value: (function () { var _updateTimeToLive = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee6(tableName, params) { var response; return _regeneratorRuntime().wrap(function _callee6$(_context6) { while (1) switch (_context6.prev = _context6.next) { case 0: _context6.next = 2; return this.AWS.dynamodb.updateTimeToLive(_objectSpread({ TableName: tableName }, params)); case 2: response = _context6.sent; return _context6.abrupt("return", response); case 4: case "end": return _context6.stop(); } }, _callee6, this); })); function updateTimeToLive(_x6, _x7) { return _updateTimeToLive.apply(this, arguments); } return updateTimeToLive; }() /** * @param {string} tableName * * @returns {Promise<object>} */ ) }, { key: "destroy", value: (function () { var _destroy = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee7(tableName) { var options, response, _args7 = arguments; return _regeneratorRuntime().wrap(function _callee7$(_context7) { while (1) switch (_context7.prev = _context7.next) { case 0: options = _args7.length > 1 && _args7[1] !== undefined ? _args7[1] : {}; _context7.next = 3; return this.AWS.dynamodb.deleteTable({ TableName: tableName }, options); case 3: response = _context7.sent; return _context7.abrupt("return", response); case 5: case "end": return _context7.stop(); } }, _callee7, this); })); function destroy(_x8) { return _destroy.apply(this, arguments); } return destroy; }() /** * @param {string} tableName * * @returns {Promise<object>} */ ) }, { key: "truncate", value: (function () { var _truncate = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee8(tableName) { var response; return _regeneratorRuntime().wrap(function _callee8$(_context8) { while (1) switch (_context8.prev = _context8.next) { case 0: _context8.next = 2; return this.describe(tableName); case 2: response = _context8.sent; _context8.next = 5; return this.destroy(tableName); case 5: _context8.next = 7; return this.create((0, _dynamodb2.constructSchema)(response.Table)); case 7: return _context8.abrupt("return", response); case 8: case "end": return _context8.stop(); } }, _callee8, this); })); function truncate(_x9) { return _truncate.apply(this, arguments); } return truncate; }() /** * @param {string} tableName * @param {object} params * * @returns {Promise<object>} */ ) }, { key: "update", value: (function () { var _update = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee9(tableName, params) { var response; return _regeneratorRuntime().wrap(function _callee9$(_context9) { while (1) switch (_context9.prev = _context9.next) { case 0: _context9.next = 2; return this.AWS.dynamodb.updateTable(_objectSpread({ TableName: tableName }, params)); case 2: response = _context9.sent; return _context9.abrupt("return", response); case 4: case "end": return _context9.stop(); } }, _callee9, this); })); function update(_x0, _x1) { return _update.apply(this, arguments); } return update; }() /** * @param {string} sourceTableName * @param {string} targetTableName * @param {DatabaseServiceProvider} DatabaseServiceProvider * * @returns {Promise} */ ) }], [{ key: "restore", value: function restore(sourceTableName, targetTableName, DatabaseServiceProvider, AbortController) { return _wrapAsyncGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee0() { var abortSignal, _yield$_awaitAsyncGen, Table, params, schema, response, _response$Items, Items, _response$LastEvaluat, LastEvaluatedKey; return _regeneratorRuntime().wrap(function _callee0$(_context0) { while (1) switch (_context0.prev = _context0.next) { case 0: abortSignal = AbortController.signal; _context0.next = 3; return _awaitAsyncGenerator(DatabaseServiceProvider.SOURCE.TableService.describe(sourceTableName, { abortSignal: abortSignal })); case 3: _yield$_awaitAsyncGen = _context0.sent; Table = _yield$_awaitAsyncGen.Table; _context0.next = 7; return _awaitAsyncGenerator(Promise.allSettled([DatabaseServiceProvider.TARGET.TableService.destroy(targetTableName, { abortSignal: abortSignal }), (0, _clientDynamodb.waitUntilTableNotExists)({ client: DatabaseServiceProvider.TARGET.AWS.dynamodb, maxWaitTime: 60, abortSignal: abortSignal, maxDelay: 5, minDelay: 1 }, { TableName: targetTableName })])); case 7: _context0.next = 9; return _awaitAsyncGenerator(Promise.allSettled([DatabaseServiceProvider.TARGET.TableService.create(_objectSpread(_objectSpread({}, (0, _dynamodb2.constructSchema)(Table)), {}, { TableName: targetTableName }), { abortSignal: abortSignal }), (0, _clientDynamodb.waitUntilTableExists)({ client: DatabaseServiceProvider.TARGET.AWS.dynamodb, maxWaitTime: 60, abortSignal: abortSignal, maxDelay: 5, minDelay: 1 }, { TableName: targetTableName })])); case 9: params = { Limit: 500 }; schema = Table.KeySchema.map(function (_ref) { var AttributeName = _ref.AttributeName; return AttributeName; }); case 11: _context0.next = 13; return _awaitAsyncGenerator(DatabaseServiceProvider.SOURCE.ItemService.fetch(_dynamodb.OPERATIONS.SCAN, sourceTableName, params, { abortSignal: abortSignal })); case 13: response = _context0.sent; _response$Items = response.Items, Items = _response$Items === void 0 ? [] : _response$Items, _response$LastEvaluat = response.LastEvaluatedKey, LastEvaluatedKey = _response$LastEvaluat === void 0 ? null : _response$LastEvaluat; // eslint-disable-next-line no-await-in-loop _context0.next = 17; return _awaitAsyncGenerator(Promise.all(Items.map(function (item) { return DatabaseServiceProvider.TARGET.ItemService.create(targetTableName, schema, item, { abortSignal: abortSignal }); }))); case 17: _context0.next = 19; return _awaitAsyncGenerator(DatabaseServiceProvider.compare(sourceTableName, targetTableName)); case 19: _context0.next = 21; return _context0.sent; case 21: params.ExclusiveStartKey = LastEvaluatedKey; case 22: if (params.ExclusiveStartKey) { _context0.next = 11; break; } case 23: case "end": return _context0.stop(); } }, _callee0); }))(); } }]); }();