"use strict"; Object.defineProperty(exports, "__esModule", { value: true }); exports.ClientWidgetApi = void 0; var _events = require("events"); var _PostmessageTransport = require("./transport/PostmessageTransport"); var _WidgetApiDirection = require("./interfaces/WidgetApiDirection"); var _WidgetApiAction = require("./interfaces/WidgetApiAction"); var _Capabilities = require("./interfaces/Capabilities"); var _ApiVersion = require("./interfaces/ApiVersion"); var _WidgetEventCapability = require("./models/WidgetEventCapability"); var _GetOpenIDAction = require("./interfaces/GetOpenIDAction"); var _SimpleObservable = require("./util/SimpleObservable"); var _Symbols = require("./Symbols"); var _UpdateDelayedEventAction = require("./interfaces/UpdateDelayedEventAction"); 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 ? 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String : Number)(t); } function _asyncIterator(r) { var n, t, o, e = 2; for ("undefined" != typeof Symbol && (t = Symbol.asyncIterator, o = Symbol.iterator); e--;) { if (t && null != (n = r[t])) return n.call(r); if (o && null != (n = r[o])) return new AsyncFromSyncIterator(n.call(r)); t = "@@asyncIterator", o = "@@iterator"; } throw new TypeError("Object is not async iterable"); } function AsyncFromSyncIterator(r) { function AsyncFromSyncIteratorContinuation(r) { if (Object(r) !== r) return Promise.reject(new TypeError(r + " is not an object.")); var n = r.done; return Promise.resolve(r.value).then(function (r) { return { value: r, done: n }; }); } return AsyncFromSyncIterator = function AsyncFromSyncIterator(r) { this.s = r, this.n = r.next; }, AsyncFromSyncIterator.prototype = { s: null, n: null, next: function next() { return AsyncFromSyncIteratorContinuation(this.n.apply(this.s, arguments)); }, "return": function _return(r) { var n = this.s["return"]; return void 0 === n ? Promise.resolve({ value: r, done: !0 }) : AsyncFromSyncIteratorContinuation(n.apply(this.s, arguments)); }, "throw": function _throw(r) { var n = this.s["return"]; return void 0 === n ? Promise.reject(r) : AsyncFromSyncIteratorContinuation(n.apply(this.s, arguments)); } }, new AsyncFromSyncIterator(r); } /* * Copyright 2020 - 2024 The Matrix.org Foundation C.I.C. * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ /** * API handler for the client side of widgets. This raises events * for each action received as `action:${action}` (eg: "action:screenshot"). * Default handling can be prevented by using preventDefault() on the * raised event. The default handling varies for each action: ones * which the SDK can handle safely are acknowledged appropriately and * ones which are unhandled (custom or require the client to do something) * are rejected with an error. * * Events which are preventDefault()ed must reply using the transport. * The events raised will have a default of an IWidgetApiRequest * interface. * * When the ClientWidgetApi is ready to start sending requests, it will * raise a "ready" CustomEvent. After the ready event fires, actions can * be sent and the transport will be ready. * * When the widget has indicated it has loaded, this class raises a * "preparing" CustomEvent. The preparing event does not indicate that * the widget is ready to receive communications - that is signified by * the ready event exclusively. * * This class only handles one widget at a time. */ var ClientWidgetApi = /*#__PURE__*/function (_EventEmitter) { _inherits(ClientWidgetApi, _EventEmitter); var _super = _createSuper(ClientWidgetApi); /** * Creates a new client widget API. This will instantiate the transport * and start everything. When the iframe is loaded under the widget's * conditions, a "ready" event will be raised. * @param {Widget} widget The widget to communicate with. * @param {HTMLIFrameElement} iframe The iframe the widget is in. * @param {WidgetDriver} driver The driver for this widget/client. */ function ClientWidgetApi(widget, iframe, driver) { var _this; _classCallCheck(this, ClientWidgetApi); _this = _super.call(this); _this.widget = widget; _this.driver = driver; _defineProperty(_assertThisInitialized(_this), "transport", void 0); _defineProperty(_assertThisInitialized(_this), "cachedWidgetVersions", null); // contentLoadedActionSent is used to check that only one ContentLoaded request is send. _defineProperty(_assertThisInitialized(_this), "contentLoadedActionSent", false); _defineProperty(_assertThisInitialized(_this), "allowedCapabilities", new Set()); _defineProperty(_assertThisInitialized(_this), "allowedEvents", []); _defineProperty(_assertThisInitialized(_this), "isStopped", false); _defineProperty(_assertThisInitialized(_this), "turnServers", null); _defineProperty(_assertThisInitialized(_this), "contentLoadedWaitTimer", void 0); // Stores pending requests to push a room's state to the widget _defineProperty(_assertThisInitialized(_this), "pushRoomStateTasks", new Set()); // Room ID → event type → state key → events to be pushed _defineProperty(_assertThisInitialized(_this), "pushRoomStateResult", new Map()); _defineProperty(_assertThisInitialized(_this), "flushRoomStateTask", null); _defineProperty(_assertThisInitialized(_this), "viewedRoomId", null); if (!(iframe !== null && iframe !== void 0 && iframe.contentWindow)) { throw new Error("No iframe supplied"); } if (!widget) { throw new Error("Invalid widget"); } if (!driver) { throw new Error("Invalid driver"); } _this.transport = new _PostmessageTransport.PostmessageTransport(_WidgetApiDirection.WidgetApiDirection.ToWidget, widget.id, iframe.contentWindow, globalThis); _this.transport.targetOrigin = widget.origin; _this.transport.on("message", _this.handleMessage.bind(_assertThisInitialized(_this))); iframe.addEventListener("load", _this.onIframeLoad.bind(_assertThisInitialized(_this))); _this.transport.start(); return _this; } _createClass(ClientWidgetApi, [{ key: "hasCapability", value: function hasCapability(capability) { return this.allowedCapabilities.has(capability); } }, { key: "canUseRoomTimeline", value: function canUseRoomTimeline(roomId) { return this.hasCapability("org.matrix.msc2762.timeline:".concat(_Symbols.Symbols.AnyRoom)) || this.hasCapability("org.matrix.msc2762.timeline:".concat(roomId)); } }, { key: "canSendRoomEvent", value: function canSendRoomEvent(eventType) { var msgtype = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : null; return this.allowedEvents.some(function (e) { return e.matchesAsRoomEvent(_WidgetEventCapability.EventDirection.Send, eventType, msgtype); }); } }, { key: "canSendStateEvent", value: function canSendStateEvent(eventType, stateKey) { return this.allowedEvents.some(function (e) { return e.matchesAsStateEvent(_WidgetEventCapability.EventDirection.Send, eventType, stateKey); }); } }, { key: "canSendToDeviceEvent", value: function canSendToDeviceEvent(eventType) { return this.allowedEvents.some(function (e) { return e.matchesAsToDeviceEvent(_WidgetEventCapability.EventDirection.Send, eventType); }); } }, { key: "canReceiveRoomEvent", value: function canReceiveRoomEvent(eventType) { var msgtype = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : null; return this.allowedEvents.some(function (e) { return e.matchesAsRoomEvent(_WidgetEventCapability.EventDirection.Receive, eventType, msgtype); }); } }, { key: "canReceiveStateEvent", value: function canReceiveStateEvent(eventType, stateKey) { return this.allowedEvents.some(function (e) { return e.matchesAsStateEvent(_WidgetEventCapability.EventDirection.Receive, eventType, stateKey); }); } }, { key: "canReceiveToDeviceEvent", value: function canReceiveToDeviceEvent(eventType) { return this.allowedEvents.some(function (e) { return e.matchesAsToDeviceEvent(_WidgetEventCapability.EventDirection.Receive, eventType); }); } }, { key: "canReceiveRoomAccountData", value: function canReceiveRoomAccountData(eventType) { return this.allowedEvents.some(function (e) { return e.matchesAsRoomAccountData(_WidgetEventCapability.EventDirection.Receive, eventType); }); } }, { key: "stop", value: function stop() { this.isStopped = true; this.transport.stop(); } }, { key: "getWidgetVersions", value: function () { var _getWidgetVersions = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee() { var r; return _regeneratorRuntime().wrap(function _callee$(_context) { while (1) switch (_context.prev = _context.next) { case 0: if (!Array.isArray(this.cachedWidgetVersions)) { _context.next = 2; break; } return _context.abrupt("return", this.cachedWidgetVersions); case 2: _context.prev = 2; _context.next = 5; return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.SupportedApiVersions, {}); case 5: r = _context.sent; this.cachedWidgetVersions = r.supported_versions; return _context.abrupt("return", r.supported_versions); case 10: _context.prev = 10; _context.t0 = _context["catch"](2); console.warn("non-fatal error getting supported widget versions: ", _context.t0); return _context.abrupt("return", []); case 14: case "end": return _context.stop(); } }, _callee, this, [[2, 10]]); })); function getWidgetVersions() { return _getWidgetVersions.apply(this, arguments); } return getWidgetVersions; }() }, { key: "beginCapabilities", value: function beginCapabilities() { var _this2 = this; // widget has loaded - tell all the listeners that this.emit("preparing"); var requestedCaps; this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.Capabilities, {}).then(function (caps) { requestedCaps = caps.capabilities; return _this2.driver.validateCapabilities(new Set(caps.capabilities)); }).then(function (allowedCaps) { _this2.allowCapabilities(_toConsumableArray(allowedCaps), requestedCaps); _this2.emit("ready"); })["catch"](function (e) { _this2.emit("error:preparing", e); }); } }, { key: "allowCapabilities", value: function allowCapabilities(allowed, requested) { var _this$allowedEvents, _this3 = this; console.log("Widget ".concat(this.widget.id, " is allowed capabilities:"), allowed); var _iterator2 = _createForOfIteratorHelper(allowed), _step2; try { for (_iterator2.s(); !(_step2 = _iterator2.n()).done;) { var c = _step2.value; this.allowedCapabilities.add(c); } } catch (err) { _iterator2.e(err); } finally { _iterator2.f(); } var allowedEvents = _WidgetEventCapability.WidgetEventCapability.findEventCapabilities(allowed); (_this$allowedEvents = this.allowedEvents).push.apply(_this$allowedEvents, _toConsumableArray(allowedEvents)); this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.NotifyCapabilities, { requested: requested, approved: Array.from(this.allowedCapabilities) })["catch"](function (e) { console.warn("non-fatal error notifying widget of approved capabilities:", e); }).then(function () { _this3.emit("capabilitiesNotified"); }); // Push the initial room state for all rooms with a timeline capability var _iterator3 = _createForOfIteratorHelper(allowed), _step3; try { for (_iterator3.s(); !(_step3 = _iterator3.n()).done;) { var _c = _step3.value; if ((0, _Capabilities.isTimelineCapability)(_c)) { var roomId = (0, _Capabilities.getTimelineRoomIDFromCapability)(_c); if (roomId === _Symbols.Symbols.AnyRoom) { var _iterator5 = _createForOfIteratorHelper(this.driver.getKnownRooms()), _step5; try { for (_iterator5.s(); !(_step5 = _iterator5.n()).done;) { var _roomId = _step5.value; this.pushRoomState(_roomId); } } catch (err) { _iterator5.e(err); } finally { _iterator5.f(); } } else { this.pushRoomState(roomId); } } } } catch (err) { _iterator3.e(err); } finally { _iterator3.f(); } if (allowed.includes(_Capabilities.MatrixCapabilities.MSC4407ReceiveStickyEvent)) { console.debug("Widget ".concat(this.widget.id, " is allowed to receive sticky events, check current sticky state.")); // If the widget can receive sticky events, push all sticky events in known rooms now. // Sticky events are like a state, and passed history is needed to get the full state. var roomIds = allowed.filter(function (capability) { return (0, _Capabilities.isTimelineCapability)(capability); }).map(function (timelineCapability) { return (0, _Capabilities.getTimelineRoomIDFromCapability)(timelineCapability); }).flatMap(function (roomIdOrWildcard) { if (roomIdOrWildcard === _Symbols.Symbols.AnyRoom) { // Do we support getting sticky state for any room? return _this3.driver.getKnownRooms(); } else { return roomIdOrWildcard; } }); console.debug("Widget ".concat(this.widget.id, " is allowed to receive sticky events in rooms:"), roomIds); var _iterator4 = _createForOfIteratorHelper(roomIds), _step4; try { var _loop = function _loop() { var roomId = _step4.value; _this3.pushStickyState(roomId)["catch"](function (err) { console.error("Failed to push sticky events to widget ".concat(_this3.widget.id, " for room ").concat(roomId, ":"), err); }); }; for (_iterator4.s(); !(_step4 = _iterator4.n()).done;) { _loop(); } } catch (err) { _iterator4.e(err); } finally { _iterator4.f(); } } // If new events are allowed and the currently viewed room isn't covered // by a timeline capability, then we know that there could be some state // in the viewed room that the widget hasn't learned about yet- push it. if (allowedEvents.length > 0 && this.viewedRoomId !== null && !this.canUseRoomTimeline(this.viewedRoomId)) { this.pushRoomState(this.viewedRoomId); } } }, { key: "onIframeLoad", value: function onIframeLoad(ev) { if (this.widget.waitForIframeLoad) { // If the widget is set to waitForIframeLoad the capabilities immediately get setup after load. // The client does not wait for the ContentLoaded action. this.beginCapabilities(); } else { // Reaching this means, that the Iframe got reloaded/loaded and // the clientApi is awaiting the FIRST ContentLoaded action. console.log("waitForIframeLoad is false: waiting for widget to send contentLoaded"); this.contentLoadedWaitTimer = setTimeout(function () { console.error("Widget specified waitForIframeLoad=false but timed out waiting for contentLoaded event!"); }, 10000); this.contentLoadedActionSent = false; } } }, { key: "handleContentLoadedAction", value: function handleContentLoadedAction(action) { if (this.contentLoadedWaitTimer !== undefined) { clearTimeout(this.contentLoadedWaitTimer); this.contentLoadedWaitTimer = undefined; } if (this.contentLoadedActionSent) { throw new Error("Improper sequence: ContentLoaded Action can only be sent once after the widget loaded " + "and should only be used if waitForIframeLoad is false (default=true)"); } if (this.widget.waitForIframeLoad) { this.transport.reply(action, { error: { message: "Improper sequence: not expecting ContentLoaded event if " + "waitForIframeLoad is true (default=true)" } }); } else { this.transport.reply(action, {}); this.beginCapabilities(); } this.contentLoadedActionSent = true; } }, { key: "replyVersions", value: function replyVersions(request) { this.transport.reply(request, { supported_versions: _ApiVersion.CurrentApiVersions }); } }, { key: "supportsUpdateState", value: function () { var _supportsUpdateState = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee2() { return _regeneratorRuntime().wrap(function _callee2$(_context2) { while (1) switch (_context2.prev = _context2.next) { case 0: _context2.next = 2; return this.getWidgetVersions(); case 2: return _context2.abrupt("return", _context2.sent.includes(_ApiVersion.UnstableApiVersion.MSC2762_UPDATE_STATE)); case 3: case "end": return _context2.stop(); } }, _callee2, this); })); function supportsUpdateState() { return _supportsUpdateState.apply(this, arguments); } return supportsUpdateState; }() }, { key: "handleCapabilitiesRenegotiate", value: function handleCapabilitiesRenegotiate(request) { var _request$data, _this4 = this; // acknowledge first this.transport.reply(request, {}); var requested = ((_request$data = request.data) === null || _request$data === void 0 ? void 0 : _request$data.capabilities) || []; var newlyRequested = new Set(requested.filter(function (r) { return !_this4.hasCapability(r); })); if (newlyRequested.size === 0) { // Nothing to do - skip validation this.allowCapabilities([], []); } this.driver.validateCapabilities(newlyRequested).then(function (allowed) { return _this4.allowCapabilities(_toConsumableArray(allowed), _toConsumableArray(newlyRequested)); }); } }, { key: "handleNavigate", value: function handleNavigate(request) { var _request$data2, _this5 = this; if (!this.hasCapability(_Capabilities.MatrixCapabilities.MSC2931Navigate)) { return this.transport.reply(request, { error: { message: "Missing capability" } }); } if (!((_request$data2 = request.data) !== null && _request$data2 !== void 0 && _request$data2.uri.startsWith("https://matrix.to/#"))) { return this.transport.reply(request, { error: { message: "Invalid matrix.to URI" } }); } var onErr = function onErr(e) { console.error("[ClientWidgetApi] Failed to handle navigation: ", e); _this5.handleDriverError(e, request, "Error handling navigation"); }; try { this.driver.navigate(request.data.uri.toString())["catch"](function (e) { return onErr(e); }).then(function () { return _this5.transport.reply(request, {}); }); } catch (e) { return onErr(e); } } }, { key: "handleOIDC", value: function handleOIDC(request) { var _this6 = this; var phase = 1; // 1 = initial request, 2 = after user manual confirmation var replyState = function replyState(state, credential) { credential = credential || {}; if (phase > 1) { return _this6.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.OpenIDCredentials, _objectSpread({ state: state, original_request_id: request.requestId }, credential)); } else { return _this6.transport.reply(request, _objectSpread({ state: state }, credential)); } }; var replyError = function replyError(msg) { console.error("[ClientWidgetApi] Failed to handle OIDC: ", msg); if (phase > 1) { // We don't have a way to indicate that a random error happened in this flow, so // just block the attempt. return replyState(_GetOpenIDAction.OpenIDRequestState.Blocked); } else { return _this6.transport.reply(request, { error: { message: msg } }); } }; var observer = new _SimpleObservable.SimpleObservable(function (update) { if (update.state === _GetOpenIDAction.OpenIDRequestState.PendingUserConfirmation && phase > 1) { observer.close(); return replyError("client provided out-of-phase response to OIDC flow"); } if (update.state === _GetOpenIDAction.OpenIDRequestState.PendingUserConfirmation) { replyState(update.state); phase++; return; } if (update.state === _GetOpenIDAction.OpenIDRequestState.Allowed && !update.token) { return replyError("client provided invalid OIDC token for an allowed request"); } if (update.state === _GetOpenIDAction.OpenIDRequestState.Blocked) { update.token = undefined; // just in case the client did something weird } observer.close(); return replyState(update.state, update.token); }); this.driver.askOpenID(observer); } }, { key: "handleReadRoomAccountData", value: function handleReadRoomAccountData(request) { var _this7 = this; var events = this.driver.readRoomAccountData(request.data.type); if (!this.canReceiveRoomAccountData(request.data.type)) { return this.transport.reply(request, { error: { message: "Cannot read room account data of this type" } }); } return events.then(function (evs) { _this7.transport.reply(request, { events: evs }); }); } }, { key: "handleReadEvents", value: function () { var _handleReadEvents = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee3(request) { var _this8 = this; var askRoomIds, _iterator6, _step6, roomId, limit, since, stateKey, msgtype, _stateKey, events; return _regeneratorRuntime().wrap(function _callee3$(_context3) { while (1) switch (_context3.prev = _context3.next) { case 0: if (request.data.type) { _context3.next = 2; break; } return _context3.abrupt("return", this.transport.reply(request, { error: { message: "Invalid request - missing event type" } })); case 2: if (!(request.data.limit !== undefined && (!request.data.limit || request.data.limit < 0))) { _context3.next = 4; break; } return _context3.abrupt("return", this.transport.reply(request, { error: { message: "Invalid request - limit out of range" } })); case 4: if (!(request.data.room_ids === undefined)) { _context3.next = 8; break; } askRoomIds = this.viewedRoomId === null ? [] : [this.viewedRoomId]; _context3.next = 30; break; case 8: if (!(request.data.room_ids === _Symbols.Symbols.AnyRoom)) { _context3.next = 12; break; } askRoomIds = this.driver.getKnownRooms().filter(function (roomId) { return _this8.canUseRoomTimeline(roomId); }); _context3.next = 30; break; case 12: askRoomIds = request.data.room_ids; _iterator6 = _createForOfIteratorHelper(askRoomIds); _context3.prev = 14; _iterator6.s(); case 16: if ((_step6 = _iterator6.n()).done) { _context3.next = 22; break; } roomId = _step6.value; if (this.canUseRoomTimeline(roomId)) { _context3.next = 20; break; } return _context3.abrupt("return", this.transport.reply(request, { error: { message: "Unable to access room timeline: ".concat(roomId) } })); case 20: _context3.next = 16; break; case 22: _context3.next = 27; break; case 24: _context3.prev = 24; _context3.t0 = _context3["catch"](14); _iterator6.e(_context3.t0); case 27: _context3.prev = 27; _iterator6.f(); return _context3.finish(27); case 30: limit = request.data.limit || 0; since = request.data.since; stateKey = undefined; msgtype = undefined; if (!(request.data.state_key !== undefined)) { _context3.next = 40; break; } stateKey = request.data.state_key === true ? undefined : request.data.state_key.toString(); if (this.canReceiveStateEvent(request.data.type, (_stateKey = stateKey) !== null && _stateKey !== void 0 ? _stateKey : null)) { _context3.next = 38; break; } return _context3.abrupt("return", this.transport.reply(request, { error: { message: "Cannot read state events of this type" } })); case 38: _context3.next = 43; break; case 40: msgtype = request.data.msgtype; if (this.canReceiveRoomEvent(request.data.type, msgtype)) { _context3.next = 43; break; } return _context3.abrupt("return", this.transport.reply(request, { error: { message: "Cannot read room events of this type" } })); case 43: if (!(request.data.room_ids === undefined && askRoomIds.length === 0)) { _context3.next = 50; break; } // For backwards compatibility we still call the deprecated // readRoomEvents and readStateEvents methods in case the client isn't // letting us know the currently viewed room via setViewedRoomId // // This can be considered as a deprecated implementation. // A driver should call `setViewedRoomId` on the widget messaging and implement the new readRoomState and readRoomTimeline // Methods. // This block makes sure that it is also possible to not use setViewedRoomId. // readRoomTimeline and readRoomState are required however! Otherwise widget requests that include // `room_ids` will fail. console.warn("The widgetDriver uses deprecated behaviour:\n It does not set the viewedRoomId using `setViewedRoomId`"); _context3.next = 47; return ( // This returns [] with the current driver of Element Web. // Add default implementations of the `readRoomEvents` and `readStateEvents` // methods to use `readRoomTimeline` and `readRoomState` if they are not overwritten. request.data.state_key === undefined ? this.driver.readRoomEvents(request.data.type, msgtype, limit, null, since) : this.driver.readStateEvents(request.data.type, stateKey, limit, null) ); case 47: events = _context3.sent; _context3.next = 68; break; case 50: _context3.next = 52; return this.supportsUpdateState(); case 52: if (!_context3.sent) { _context3.next = 58; break; } _context3.next = 55; return Promise.all(askRoomIds.map(function (roomId) { return _this8.driver.readRoomTimeline(roomId, request.data.type, msgtype, stateKey, limit, since); })); case 55: events = _context3.sent.flat(1); _context3.next = 68; break; case 58: if (!(request.data.state_key === undefined)) { _context3.next = 64; break; } _context3.next = 61; return Promise.all(askRoomIds.map(function (roomId) { return _this8.driver.readRoomTimeline(roomId, request.data.type, msgtype, stateKey, limit, since); })); case 61: _context3.t1 = _context3.sent; _context3.next = 67; break; case 64: _context3.next = 66; return Promise.all(askRoomIds.map(function (roomId) { return _this8.driver.readRoomState(roomId, request.data.type, stateKey); })); case 66: _context3.t1 = _context3.sent; case 67: events = _context3.t1.flat(1); case 68: this.transport.reply(request, { events: events }); case 69: case "end": return _context3.stop(); } }, _callee3, this, [[14, 24, 27, 30]]); })); function handleReadEvents(_x) { return _handleReadEvents.apply(this, arguments); } return handleReadEvents; }() }, { key: "handleSendEvent", value: function handleSendEvent(request) { var _this9 = this; if (!request.data.type) { return this.transport.reply(request, { error: { message: "Invalid request - missing event type" } }); } if (!!request.data.room_id && !this.canUseRoomTimeline(request.data.room_id)) { return this.transport.reply(request, { error: { message: "Unable to access room timeline: ".concat(request.data.room_id) } }); } if (request.data.parent_delay_id !== undefined) { console.warn("Data includes parent_delay_id, but the widgetDriver ignores it"); } var delay = request.data.delay; if (delay !== undefined && !this.hasCapability(_Capabilities.MatrixCapabilities.MSC4157SendDelayedEvent)) { return this.transport.reply(request, { error: { message: "Missing capability for ".concat(_Capabilities.MatrixCapabilities.MSC4157SendDelayedEvent) } }); } var isStickyEvent = request.data.sticky_duration_ms !== undefined; if (isStickyEvent && !this.hasCapability(_Capabilities.MatrixCapabilities.MSC4407SendStickyEvent)) { return this.transport.reply(request, { error: { message: "Missing capability for ".concat(_Capabilities.MatrixCapabilities.MSC4407SendStickyEvent) } }); } var sendEventPromise; if (request.data.state_key !== undefined) { if (!this.canSendStateEvent(request.data.type, request.data.state_key)) { return this.transport.reply(request, { error: { message: "Cannot send state events of this type" } }); } if (isStickyEvent) { return this.transport.reply(request, { error: { message: "Cannot send a state event with a sticky duration" } }); } if (delay !== undefined) { sendEventPromise = this.driver.sendDelayedEvent(delay, request.data.type, request.data.content || {}, request.data.state_key, request.data.room_id); } else { sendEventPromise = this.driver.sendEvent(request.data.type, request.data.content || {}, request.data.state_key, request.data.room_id); } } else { var content = request.data.content || {}; var msgtype = content["msgtype"]; if (!this.canSendRoomEvent(request.data.type, msgtype)) { return this.transport.reply(request, { error: { message: "Cannot send room events of this type" } }); } // Events can be sticky, delayed, both, or neither. The following // section of code takes the common parameters and uses the correct // function depending on the request type. var params = [request.data.type, content, null, // not sending a state event request.data.room_id]; if (delay !== undefined && request.data.sticky_duration_ms) { sendEventPromise = this.driver.sendDelayedStickyEvent(delay, request.data.sticky_duration_ms, request.data.type, content, request.data.room_id); } else if (delay !== undefined) { var _this$driver; sendEventPromise = (_this$driver = this.driver).sendDelayedEvent.apply(_this$driver, [delay].concat(params)); } else if (request.data.sticky_duration_ms) { sendEventPromise = this.driver.sendStickyEvent(request.data.sticky_duration_ms, request.data.type, content, request.data.room_id); } else { var _this$driver2; sendEventPromise = (_this$driver2 = this.driver).sendEvent.apply(_this$driver2, params); } } sendEventPromise.then(function (sentEvent) { return _this9.transport.reply(request, _objectSpread({ room_id: sentEvent.roomId }, "eventId" in sentEvent ? { event_id: sentEvent.eventId } : { delay_id: sentEvent.delayId })); })["catch"](function (e) { console.error("error sending event: ", e); _this9.handleDriverError(e, request, "Error sending event"); }); } }, { key: "handleUpdateDelayedEvent", value: function handleUpdateDelayedEvent(request) { var _this0 = this; if (!request.data.delay_id) { return this.transport.reply(request, { error: { message: "Invalid request - missing delay_id" } }); } if (!this.hasCapability(_Capabilities.MatrixCapabilities.MSC4157UpdateDelayedEvent)) { return this.transport.reply(request, { error: { message: "Missing capability" } }); } var updateDelayedEvent; switch (request.data.action) { case _UpdateDelayedEventAction.UpdateDelayedEventAction.Cancel: updateDelayedEvent = this.driver.cancelScheduledDelayedEvent; break; case _UpdateDelayedEventAction.UpdateDelayedEventAction.Restart: updateDelayedEvent = this.driver.restartScheduledDelayedEvent; break; case _UpdateDelayedEventAction.UpdateDelayedEventAction.Send: updateDelayedEvent = this.driver.sendScheduledDelayedEvent; break; default: return this.transport.reply(request, { error: { message: "Invalid request - unsupported action" } }); } updateDelayedEvent.call(this.driver, request.data.delay_id).then(function () { return _this0.transport.reply(request, {}); })["catch"](function (e) { console.error("error updating delayed event: ", e); _this0.handleDriverError(e, request, "Error updating delayed event"); }); } }, { key: "handleSendToDevice", value: function () { var _handleSendToDevice = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee4(request) { return _regeneratorRuntime().wrap(function _callee4$(_context4) { while (1) switch (_context4.prev = _context4.next) { case 0: if (request.data.type) { _context4.next = 4; break; } this.transport.reply(request, { error: { message: "Invalid request - missing event type" } }); _context4.next = 26; break; case 4: if (request.data.messages) { _context4.next = 8; break; } this.transport.reply(request, { error: { message: "Invalid request - missing event contents" } }); _context4.next = 26; break; case 8: if (!(typeof request.data.encrypted !== "boolean")) { _context4.next = 12; break; } this.transport.reply(request, { error: { message: "Invalid request - missing encryption flag" } }); _context4.next = 26; break; case 12: if (this.canSendToDeviceEvent(request.data.type)) { _context4.next = 16; break; } this.transport.reply(request, { error: { message: "Cannot send to-device events of this type" } }); _context4.next = 26; break; case 16: _context4.prev = 16; _context4.next = 19; return this.driver.sendToDevice(request.data.type, request.data.encrypted, request.data.messages); case 19: this.transport.reply(request, {}); _context4.next = 26; break; case 22: _context4.prev = 22; _context4.t0 = _context4["catch"](16); console.error("error sending to-device event", _context4.t0); this.handleDriverError(_context4.t0, request, "Error sending event"); case 26: case "end": return _context4.stop(); } }, _callee4, this, [[16, 22]]); })); function handleSendToDevice(_x2) { return _handleSendToDevice.apply(this, arguments); } return handleSendToDevice; }() }, { key: "pollTurnServers", value: function () { var _pollTurnServers = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee5(turnServers, initialServer) { var _iteratorAbruptCompletion, _didIteratorError, _iteratorError, _iterator, _step, server; return _regeneratorRuntime().wrap(function _callee5$(_context5) { while (1) switch (_context5.prev = _context5.next) { case 0: _context5.prev = 0; _context5.next = 3; return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.UpdateTurnServers, initialServer // it's compatible, but missing the index signature ); case 3: // Pick the generator up where we left off _iteratorAbruptCompletion = false; _didIteratorError = false; _context5.prev = 5; _iterator = _asyncIterator(turnServers); case 7: _context5.next = 9; return _iterator.next(); case 9: if (!(_iteratorAbruptCompletion = !(_step = _context5.sent).done)) { _context5.next = 16; break; } server = _step.value; _context5.next = 13; return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.UpdateTurnServers, server // it's compatible, but missing the index signature ); case 13: _iteratorAbruptCompletion = false; _context5.next = 7; break; case 16: _context5.next = 22; break; case 18: _context5.prev = 18; _context5.t0 = _context5["catch"](5); _didIteratorError = true; _iteratorError = _context5.t0; case 22: _context5.prev = 22; _context5.prev = 23; if (!(_iteratorAbruptCompletion && _iterator["return"] != null)) { _context5.next = 27; break; } _context5.next = 27; return _iterator["return"](); case 27: _context5.prev = 27; if (!_didIteratorError) { _context5.next = 30; break; } throw _iteratorError; case 30: return _context5.finish(27); case 31: return _context5.finish(22); case 32: _context5.next = 37; break; case 34: _context5.prev = 34; _context5.t1 = _context5["catch"](0); console.error("error polling for TURN servers", _context5.t1); case 37: case "end": return _context5.stop(); } }, _callee5, this, [[0, 34], [5, 18, 22, 32], [23,, 27, 31]]); })); function pollTurnServers(_x3, _x4) { return _pollTurnServers.apply(this, arguments); } return pollTurnServers; }() }, { key: "handleWatchTurnServers", value: function () { var _handleWatchTurnServers = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee6(request) { var turnServers, _yield$turnServers$ne, done, value; return _regeneratorRuntime().wrap(function _callee6$(_context6) { while (1) switch (_context6.prev = _context6.next) { case 0: if (this.hasCapability(_Capabilities.MatrixCapabilities.MSC3846TurnServers)) { _context6.next = 4; break; } this.transport.reply(request, { error: { message: "Missing capability" } }); _context6.next = 26; break; case 4: if (!this.turnServers) { _context6.next = 8; break; } // We're already polling, so this is a no-op this.transport.reply(request, {}); _context6.next = 26; break; case 8: _context6.prev = 8; turnServers = this.driver.getTurnServers(); // Peek at the first result, so we can at least verify that the // client isn't banned from getting TURN servers entirely _context6.next = 12; return turnServers.next(); case 12: _yield$turnServers$ne = _context6.sent; done = _yield$turnServers$ne.done; value = _yield$turnServers$ne.value; if (!done) { _context6.next = 17; break; } throw new Error("Client refuses to provide any TURN servers"); case 17: this.transport.reply(request, {}); // Start the poll loop, sending the widget the initial result this.pollTurnServers(turnServers, value); this.turnServers = turnServers; _context6.next = 26; break; case 22: _context6.prev = 22; _context6.t0 = _context6["catch"](8); console.error("error getting first TURN server results", _context6.t0); this.transport.reply(request, { error: { message: "TURN servers not available" } }); case 26: case "end": return _context6.stop(); } }, _callee6, this, [[8, 22]]); })); function handleWatchTurnServers(_x5) { return _handleWatchTurnServers.apply(this, arguments); } return handleWatchTurnServers; }() }, { key: "handleUnwatchTurnServers", value: function () { var _handleUnwatchTurnServers = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee7(request) { return _regeneratorRuntime().wrap(function _callee7$(_context7) { while (1) switch (_context7.prev = _context7.next) { case 0: if (this.hasCapability(_Capabilities.MatrixCapabilities.MSC3846TurnServers)) { _context7.next = 4; break; } this.transport.reply(request, { error: { message: "Missing capability" } }); _context7.next = 12; break; case 4: if (this.turnServers) { _context7.next = 8; break; } // We weren't polling anyways, so this is a no-op this.transport.reply(request, {}); _context7.next = 12; break; case 8: _context7.next = 10; return this.turnServers["return"](undefined); case 10: this.turnServers = null; this.transport.reply(request, {}); case 12: case "end": return _context7.stop(); } }, _callee7, this); })); function handleUnwatchTurnServers(_x6) { return _handleUnwatchTurnServers.apply(this, arguments); } return handleUnwatchTurnServers; }() }, { key: "handleReadRelations", value: function () { var _handleReadRelations = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee8(request) { var _this1 = this; var result, chunk; return _regeneratorRuntime().wrap(function _callee8$(_context8) { while (1) switch (_context8.prev = _context8.next) { case 0: if (request.data.event_id) { _context8.next = 2; break; } return _context8.abrupt("return", this.transport.reply(request, { error: { message: "Invalid request - missing event ID" } })); case 2: if (!(request.data.limit !== undefined && request.data.limit < 0)) { _context8.next = 4; break; } return _context8.abrupt("return", this.transport.reply(request, { error: { message: "Invalid request - limit out of range" } })); case 4: if (!(request.data.room_id !== undefined && !this.canUseRoomTimeline(request.data.room_id))) { _context8.next = 6; break; } return _context8.abrupt("return", this.transport.reply(request, { error: { message: "Unable to access room timeline: ".concat(request.data.room_id) } })); case 6: _context8.prev = 6; _context8.next = 9; return this.driver.readEventRelations(request.data.event_id, request.data.room_id, request.data.rel_type, request.data.event_type, request.data.from, request.data.to, request.data.limit, request.data.direction); case 9: result = _context8.sent; // only return events that the user has the permission to receive chunk = result.chunk.filter(function (e) { if (e.state_key !== undefined) { return _this1.canReceiveStateEvent(e.type, e.state_key); } else { return _this1.canReceiveRoomEvent(e.type, e.content["msgtype"]); } }); return _context8.abrupt("return", this.transport.reply(request, { chunk: chunk, prev_batch: result.prevBatch, next_batch: result.nextBatch })); case 14: _context8.prev = 14; _context8.t0 = _context8["catch"](6); console.error("error getting the relations", _context8.t0); this.handleDriverError(_context8.t0, request, "Unexpected error while reading relations"); case 18: case "end": return _context8.stop(); } }, _callee8, this, [[6, 14]]); })); function handleReadRelations(_x7) { return _handleReadRelations.apply(this, arguments); } return handleReadRelations; }() }, { key: "handleUserDirectorySearch", value: function () { var _handleUserDirectorySearch = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee9(request) { var result; return _regeneratorRuntime().wrap(function _callee9$(_context9) { while (1) switch (_context9.prev = _context9.next) { case 0: if (this.hasCapability(_Capabilities.MatrixCapabilities.MSC3973UserDirectorySearch)) { _context9.next = 2; break; } return _context9.abrupt("return", this.transport.reply(request, { error: { message: "Missing capability" } })); case 2: if (!(typeof request.data.search_term !== "string")) { _context9.next = 4; break; } return _context9.abrupt("return", this.transport.reply(request, { error: { message: "Invalid request - missing search term" } })); case 4: if (!(request.data.limit !== undefined && request.data.limit < 0)) { _context9.next = 6; break; } return _context9.abrupt("return", this.transport.reply(request, { error: { message: "Invalid request - limit out of range" } })); case 6: _context9.prev = 6; _context9.next = 9; return this.driver.searchUserDirectory(request.data.search_term, request.data.limit); case 9: result = _context9.sent; return _context9.abrupt("return", this.transport.reply(request, { limited: result.limited, results: result.results.map(function (r) { return { user_id: r.userId, display_name: r.displayName, avatar_url: r.avatarUrl }; }) })); case 13: _context9.prev = 13; _context9.t0 = _context9["catch"](6); console.error("error searching in the user directory", _context9.t0); this.handleDriverError(_context9.t0, request, "Unexpected error while searching in the user directory"); case 17: case "end": return _context9.stop(); } }, _callee9, this, [[6, 13]]); })); function handleUserDirectorySearch(_x8) { return _handleUserDirectorySearch.apply(this, arguments); } return handleUserDirectorySearch; }() }, { key: "handleGetMediaConfig", value: function () { var _handleGetMediaConfig = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee0(request) { var result; return _regeneratorRuntime().wrap(function _callee0$(_context0) { while (1) switch (_context0.prev = _context0.next) { case 0: if (this.hasCapability(_Capabilities.MatrixCapabilities.MSC4039UploadFile)) { _context0.next = 2; break; } return _context0.abrupt("return", this.transport.reply(request, { error: { message: "Missing capability" } })); case 2: _context0.prev = 2; _context0.next = 5; return this.driver.getMediaConfig(); case 5: result = _context0.sent; return _context0.abrupt("return", this.transport.reply(request, result)); case 9: _context0.prev = 9; _context0.t0 = _context0["catch"](2); console.error("error while getting the media configuration", _context0.t0); this.handleDriverError(_context0.t0, request, "Unexpected error while getting the media configuration"); case 13: case "end": return _context0.stop(); } }, _callee0, this, [[2, 9]]); })); function handleGetMediaConfig(_x9) { return _handleGetMediaConfig.apply(this, arguments); } return handleGetMediaConfig; }() }, { key: "handleRtcTransports", value: function () { var _handleRtcTransports = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee1(request) { var result; return _regeneratorRuntime().wrap(function _callee1$(_context1) { while (1) switch (_context1.prev = _context1.next) { case 0: if (this.hasCapability(_Capabilities.MatrixCapabilities.MSC4515RtcTransports)) { _context1.next = 2; break; } return _context1.abrupt("return", this.transport.reply(request, { error: { message: "Missing capability" } })); case 2: _context1.prev = 2; _context1.next = 5; return this.driver.getRtcTransports(); case 5: result = _context1.sent; return _context1.abrupt("return", this.transport.reply(request, { rtc_transports: result.rtc_transports })); case 9: _context1.prev = 9; _context1.t0 = _context1["catch"](2); console.error("error while getting the RTC transports", _context1.t0); this.handleDriverError(_context1.t0, request, "Unexpected error while getting the RTC transports"); case 13: case "end": return _context1.stop(); } }, _callee1, this, [[2, 9]]); })); function handleRtcTransports(_x0) { return _handleRtcTransports.apply(this, arguments); } return handleRtcTransports; }() }, { key: "handleUploadFile", value: function () { var _handleUploadFile = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee10(request) { var result; return _regeneratorRuntime().wrap(function _callee10$(_context10) { while (1) switch (_context10.prev = _context10.next) { case 0: if (this.hasCapability(_Capabilities.MatrixCapabilities.MSC4039UploadFile)) { _context10.next = 2; break; } return _context10.abrupt("return", this.transport.reply(request, { error: { message: "Missing capability" } })); case 2: _context10.prev = 2; _context10.next = 5; return this.driver.uploadFile(request.data.file); case 5: result = _context10.sent; return _context10.abrupt("return", this.transport.reply(request, { content_uri: result.contentUri })); case 9: _context10.prev = 9; _context10.t0 = _context10["catch"](2); console.error("error while uploading a file", _context10.t0); this.handleDriverError(_context10.t0, request, "Unexpected error while uploading a file"); case 13: case "end": return _context10.stop(); } }, _callee10, this, [[2, 9]]); })); function handleUploadFile(_x1) { return _handleUploadFile.apply(this, arguments); } return handleUploadFile; }() }, { key: "handleDownloadFile", value: function () { var _handleDownloadFile = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee11(request) { var result; return _regeneratorRuntime().wrap(function _callee11$(_context11) { while (1) switch (_context11.prev = _context11.next) { case 0: if (this.hasCapability(_Capabilities.MatrixCapabilities.MSC4039DownloadFile)) { _context11.next = 2; break; } return _context11.abrupt("return", this.transport.reply(request, { error: { message: "Missing capability" } })); case 2: _context11.prev = 2; _context11.next = 5; return this.driver.downloadFile(request.data.content_uri); case 5: result = _context11.sent; return _context11.abrupt("return", this.transport.reply(request, { file: result.file })); case 9: _context11.prev = 9; _context11.t0 = _context11["catch"](2); console.error("error while downloading a file", _context11.t0); this.handleDriverError(_context11.t0, request, "Unexpected error while downloading a file"); case 13: case "end": return _context11.stop(); } }, _callee11, this, [[2, 9]]); })); function handleDownloadFile(_x10) { return _handleDownloadFile.apply(this, arguments); } return handleDownloadFile; }() }, { key: "handleRtcLivekitGetToken", value: function () { var _handleRtcLivekitGetToken = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee12(request) { var result; return _regeneratorRuntime().wrap(function _callee12$(_context12) { while (1) switch (_context12.prev = _context12.next) { case 0: if (this.hasCapability(_Capabilities.MatrixCapabilities.MSC4533RtcLivekitGetToken)) { _context12.next = 2; break; } return _context12.abrupt("return", this.transport.reply(request, { error: { message: "Missing capability" } })); case 2: _context12.prev = 2; _context12.next = 5; return this.driver.getRtcLivekitToken(request.data); case 5: result = _context12.sent; return _context12.abrupt("return", this.transport.reply(request, result)); case 9: _context12.prev = 9; _context12.t0 = _context12["catch"](2); console.error("error while getting a LiveKit token", _context12.t0); this.handleDriverError(_context12.t0, request, "Unexpected error while getting a LiveKit token"); case 13: case "end": return _context12.stop(); } }, _callee12, this, [[2, 9]]); })); function handleRtcLivekitGetToken(_x11) { return _handleRtcLivekitGetToken.apply(this, arguments); } return handleRtcLivekitGetToken; }() }, { key: "handleRtcLivekitDelegateDelayedLeave", value: function () { var _handleRtcLivekitDelegateDelayedLeave = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee13(request) { var result; return _regeneratorRuntime().wrap(function _callee13$(_context13) { while (1) switch (_context13.prev = _context13.next) { case 0: if (this.hasCapability(_Capabilities.MatrixCapabilities.MSC4533RtcLivekitDelegateDelayedLeave)) { _context13.next = 2; break; } return _context13.abrupt("return", this.transport.reply(request, { error: { message: "Missing capability" } })); case 2: _context13.prev = 2; _context13.next = 5; return this.driver.delegateRtcLivekitDelayedLeave(request.data); case 5: result = _context13.sent; return _context13.abrupt("return", this.transport.reply(request, result)); case 9: _context13.prev = 9; _context13.t0 = _context13["catch"](2); console.error("error while delegating a LiveKit delayed leave", _context13.t0); this.handleDriverError(_context13.t0, request, "Unexpected error while delegating a LiveKit delayed leave"); case 13: case "end": return _context13.stop(); } }, _callee13, this, [[2, 9]]); })); function handleRtcLivekitDelegateDelayedLeave(_x12) { return _handleRtcLivekitDelegateDelayedLeave.apply(this, arguments); } return handleRtcLivekitDelegateDelayedLeave; }() }, { key: "handleDriverError", value: function handleDriverError(e, request, message) { var data = this.driver.processError(e); this.transport.reply(request, { error: _objectSpread({ message: message }, data) }); } }, { key: "handleMessage", value: function handleMessage(ev) { if (this.isStopped) return; var actionEv = new CustomEvent("action:".concat(ev.detail.action), { detail: ev.detail, cancelable: true }); this.emit("action:".concat(ev.detail.action), actionEv); if (!actionEv.defaultPrevented) { switch (ev.detail.action) { case _WidgetApiAction.WidgetApiFromWidgetAction.ContentLoaded: return this.handleContentLoadedAction(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.SupportedApiVersions: return this.replyVersions(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.SendEvent: return this.handleSendEvent(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.SendToDevice: return this.handleSendToDevice(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.GetOpenIDCredentials: return this.handleOIDC(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.MSC2931Navigate: return this.handleNavigate(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.MSC2974RenegotiateCapabilities: return this.handleCapabilitiesRenegotiate(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.MSC2876ReadEvents: return this.handleReadEvents(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.WatchTurnServers: return this.handleWatchTurnServers(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.UnwatchTurnServers: return this.handleUnwatchTurnServers(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.MSC3869ReadRelations: return this.handleReadRelations(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.MSC3973UserDirectorySearch: return this.handleUserDirectorySearch(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.BeeperReadRoomAccountData: return this.handleReadRoomAccountData(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.MSC4039GetMediaConfigAction: return this.handleGetMediaConfig(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.MSC4515GetRtcTransports: return this.handleRtcTransports(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.MSC4039UploadFileAction: return this.handleUploadFile(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.MSC4039DownloadFileAction: return this.handleDownloadFile(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.MSC4157UpdateDelayedEvent: return this.handleUpdateDelayedEvent(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.MSC4533RtcLivekitGetToken: return this.handleRtcLivekitGetToken(ev.detail); case _WidgetApiAction.WidgetApiFromWidgetAction.MSC4533RtcLivekitDelegateDelayedLeave: return this.handleRtcLivekitDelegateDelayedLeave(ev.detail); default: return this.transport.reply(ev.detail, { error: { message: "Unknown or unsupported from-widget action: " + ev.detail.action } }); } } } /** * Informs the widget that the client's theme has changed. * @param theme The theme data, as an object with arbitrary contents. */ }, { key: "updateTheme", value: function updateTheme(theme) { return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.ThemeChange, theme); } /** * Informs the widget that the client's language has changed. * @param lang The BCP 47 identifier representing the client's current language. */ }, { key: "updateLanguage", value: function updateLanguage(lang) { return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.LanguageChange, { lang: lang }); } /** * Takes a screenshot of the widget. * @returns Resolves to the widget's screenshot. * @throws Throws if there is a problem. */ }, { key: "takeScreenshot", value: function takeScreenshot() { return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.TakeScreenshot, {}); } /** * Alerts the widget to whether or not it is currently visible. * @param {boolean} isVisible Whether the widget is visible or not. * @returns {Promise} Resolves when the widget acknowledges the update. */ }, { key: "updateVisibility", value: function updateVisibility(isVisible) { return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.UpdateVisibility, { visible: isVisible }); } }, { key: "sendWidgetConfig", value: function sendWidgetConfig(data) { return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.WidgetConfig, data).then(); } }, { key: "notifyModalWidgetButtonClicked", value: function notifyModalWidgetButtonClicked(id) { return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.ButtonClicked, { id: id }).then(); } }, { key: "notifyModalWidgetClose", value: function notifyModalWidgetClose(data) { return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.CloseModalWidget, data).then(); } /** * Feeds an event to the widget. As a client you are expected to call this * for every new event in every room to which you are joined or invited. * @param {IRoomEvent} rawEvent The event to (try to) send to the widget. * @param {string} currentViewedRoomId The room ID the user is currently * interacting with. Not the room ID of the event. * @returns {Promise} Resolves when delivered or if the widget is not * able to read the event due to permissions, rejects if the widget failed * to handle the event. * @deprecated It is recommended to communicate the viewed room ID by calling * {@link ClientWidgetApi.setViewedRoomId} rather than passing it to this * method. */ }, { key: "feedEvent", value: function () { var _feedEvent = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee14(rawEvent, currentViewedRoomId) { var _rawEvent$content; return _regeneratorRuntime().wrap(function _callee14$(_context14) { while (1) switch (_context14.prev = _context14.next) { case 0: if (currentViewedRoomId !== undefined) this.setViewedRoomId(currentViewedRoomId); if (!(rawEvent.room_id !== this.viewedRoomId && !this.canUseRoomTimeline(rawEvent.room_id))) { _context14.next = 3; break; } return _context14.abrupt("return"); case 3: if (!(rawEvent.state_key !== undefined && rawEvent.state_key !== null)) { _context14.next = 8; break; } if (this.canReceiveStateEvent(rawEvent.type, rawEvent.state_key)) { _context14.next = 6; break; } return _context14.abrupt("return"); case 6: _context14.next = 10; break; case 8: if (this.canReceiveRoomEvent(rawEvent.type, (_rawEvent$content = rawEvent.content) === null || _rawEvent$content === void 0 ? void 0 : _rawEvent$content["msgtype"])) { _context14.next = 10; break; } return _context14.abrupt("return"); case 10: _context14.next = 12; return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.SendEvent, // it's compatible, but missing the index signature rawEvent); case 12: case "end": return _context14.stop(); } }, _callee14, this); })); function feedEvent(_x13, _x14) { return _feedEvent.apply(this, arguments); } return feedEvent; }() /** * Feeds a to-device event to the widget. As a client you are expected to * call this for every to-device event you receive. * @param {IRoomEvent} rawEvent The event to (try to) send to the widget. * @param {boolean} encrypted Whether the event contents were encrypted. * @returns {Promise} Resolves when delivered or if the widget is not * able to receive the event due to permissions, rejects if the widget * failed to handle the event. */ }, { key: "feedToDevice", value: (function () { var _feedToDevice = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee15(message, encrypted) { return _regeneratorRuntime().wrap(function _callee15$(_context15) { while (1) switch (_context15.prev = _context15.next) { case 0: if (!this.canReceiveToDeviceEvent(message.type)) { _context15.next = 3; break; } _context15.next = 3; return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.SendToDevice, _objectSpread(_objectSpread({}, message), {}, { encrypted: encrypted })); case 3: case "end": return _context15.stop(); } }, _callee15, this); })); function feedToDevice(_x15, _x16) { return _feedToDevice.apply(this, arguments); } return feedToDevice; }()) }, { key: "setViewedRoomId", value: /** * Indicate that a room is being viewed (making it possible for the widget * to interact with it). */ function setViewedRoomId(roomId) { this.viewedRoomId = roomId; // If the widget doesn't have timeline permissions for the room then // this is its opportunity to learn the room state. We push the entire // room state, which could be redundant if this room had been viewed // once before, but it's easier than selectively pushing just the bits // of state that changed while the room was in the background. if (roomId !== null && !this.canUseRoomTimeline(roomId)) this.pushRoomState(roomId); } }, { key: "flushRoomState", value: function () { var _flushRoomState = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee16() { var events, _iterator7, _step7, eventTypeMap, _iterator8, _step8, stateKeyMap; return _regeneratorRuntime().wrap(function _callee16$(_context16) { while (1) switch (_context16.prev = _context16.next) { case 0: _context16.prev = 0; case 1: _context16.next = 3; return Promise.all(this.pushRoomStateTasks); case 3: if (this.pushRoomStateTasks.size > 0) { _context16.next = 1; break; } case 4: events = []; _iterator7 = _createForOfIteratorHelper(this.pushRoomStateResult.values()); try { for (_iterator7.s(); !(_step7 = _iterator7.n()).done;) { eventTypeMap = _step7.value; _iterator8 = _createForOfIteratorHelper(eventTypeMap.values()); try { for (_iterator8.s(); !(_step8 = _iterator8.n()).done;) { stateKeyMap = _step8.value; events.push.apply(events, _toConsumableArray(stateKeyMap.values())); } } catch (err) { _iterator8.e(err); } finally { _iterator8.f(); } } } catch (err) { _iterator7.e(err); } finally { _iterator7.f(); } _context16.next = 9; return this.getWidgetVersions(); case 9: if (!_context16.sent.includes(_ApiVersion.UnstableApiVersion.MSC2762_UPDATE_STATE)) { _context16.next = 12; break; } _context16.next = 12; return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.UpdateState, { state: events }); case 12: _context16.prev = 12; this.flushRoomStateTask = null; return _context16.finish(12); case 15: case "end": return _context16.stop(); } }, _callee16, this, [[0,, 12, 15]]); })); function flushRoomState() { return _flushRoomState.apply(this, arguments); } return flushRoomState; }() /** * Reads the current sticky state of the room and pushes it to the widget. * * It will only push events that the widget is allowed to receive. * @param roomId * @private */ }, { key: "pushStickyState", value: (function () { var _pushStickyState = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee18(roomId) { var _this10 = this; return _regeneratorRuntime().wrap(function _callee18$(_context18) { while (1) switch (_context18.prev = _context18.next) { case 0: console.debug("Pushing sticky state to widget for room", roomId); return _context18.abrupt("return", this.driver.readStickyEvents(roomId).then(function (events) { // filter to the allowed sticky events var filtered = events.filter(function (e) { var _e$content; return _this10.canReceiveRoomEvent(e.type, typeof ((_e$content = e.content) === null || _e$content === void 0 ? void 0 : _e$content.msgtype) === "string" ? e.content.msgtype : null); }); return { roomId: roomId, stickyEvents: filtered }; }).then(/*#__PURE__*/function () { var _ref2 = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee17(_ref) { var roomId, stickyEvents, promises; return _regeneratorRuntime().wrap(function _callee17$(_context17) { while (1) switch (_context17.prev = _context17.next) { case 0: roomId = _ref.roomId, stickyEvents = _ref.stickyEvents; console.debug("Pushing", stickyEvents.length, "sticky events to widget for room", roomId); promises = stickyEvents.map(function (rawEvent) { return _this10.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.SendEvent, // copied from feedEvent; it's compatible, but missing the index signature rawEvent); }); _context17.next = 5; return Promise.all(promises); case 5: case "end": return _context17.stop(); } }, _callee17); })); return function (_x18) { return _ref2.apply(this, arguments); }; }())); case 2: case "end": return _context18.stop(); } }, _callee18, this); })); function pushStickyState(_x17) { return _pushStickyState.apply(this, arguments); } return pushStickyState; }() /** * Read the room's state and push all entries that the widget is allowed to * read through to the widget. */ ) }, { key: "pushRoomState", value: function pushRoomState(roomId) { var _this11 = this; var _iterator9 = _createForOfIteratorHelper(this.allowedEvents), _step9; try { var _loop2 = function _loop2() { var cap = _step9.value; if (cap.kind === _WidgetEventCapability.EventKind.State && cap.direction === _WidgetEventCapability.EventDirection.Receive) { var _cap$keyStr, _this11$flushRoomStat; // Initiate the task var events = _this11.driver.readRoomState(roomId, cap.eventType, (_cap$keyStr = cap.keyStr) !== null && _cap$keyStr !== void 0 ? _cap$keyStr : undefined); var task = events.then(function (events) { // When complete, queue the resulting events to be // pushed to the widget var _iterator0 = _createForOfIteratorHelper(events), _step0; try { for (_iterator0.s(); !(_step0 = _iterator0.n()).done;) { var event = _step0.value; var eventTypeMap = _this11.pushRoomStateResult.get(roomId); if (eventTypeMap === undefined) { eventTypeMap = new Map(); _this11.pushRoomStateResult.set(roomId, eventTypeMap); } var stateKeyMap = eventTypeMap.get(cap.eventType); if (stateKeyMap === undefined) { stateKeyMap = new Map(); eventTypeMap.set(cap.eventType, stateKeyMap); } if (!stateKeyMap.has(event.state_key)) stateKeyMap.set(event.state_key, event); } } catch (err) { _iterator0.e(err); } finally { _iterator0.f(); } }, function (e) { return console.error("Failed to read room state for ".concat(roomId, " (").concat(cap.eventType, ", ").concat(cap.keyStr, ")"), e); }).then(function () { // Mark request as no longer pending _this11.pushRoomStateTasks["delete"](task); }); // Mark task as pending _this11.pushRoomStateTasks.add(task); // Assuming no other tasks are already happening concurrently, // schedule the widget action that actually pushes the events (_this11$flushRoomStat = _this11.flushRoomStateTask) !== null && _this11$flushRoomStat !== void 0 ? _this11$flushRoomStat : _this11.flushRoomStateTask = _this11.flushRoomState(); _this11.flushRoomStateTask["catch"](function (e) { return console.error("Failed to push room state", e); }); } }; for (_iterator9.s(); !(_step9 = _iterator9.n()).done;) { _loop2(); } } catch (err) { _iterator9.e(err); } finally { _iterator9.f(); } } /** * Feeds a room state update to the widget. As a client you are expected to * call this for every state update in every room to which you are joined or * invited. * @param {IRoomEvent} rawEvent The state event corresponding to the updated * room state entry. * @returns {Promise} Resolves when delivered or if the widget is not * able to receive the room state due to permissions, rejects if the * widget failed to handle the update. */ }, { key: "feedStateUpdate", value: (function () { var _feedStateUpdate = _asyncToGenerator(/*#__PURE__*/_regeneratorRuntime().mark(function _callee19(rawEvent) { var eventTypeMap, stateKeyMap; return _regeneratorRuntime().wrap(function _callee19$(_context19) { while (1) switch (_context19.prev = _context19.next) { case 0: if (!(rawEvent.state_key === undefined)) { _context19.next = 2; break; } throw new Error("Not a state event"); case 2: if (!((rawEvent.room_id === this.viewedRoomId || this.canUseRoomTimeline(rawEvent.room_id)) && this.canReceiveStateEvent(rawEvent.type, rawEvent.state_key))) { _context19.next = 21; break; } if (!(this.pushRoomStateTasks.size === 0)) { _context19.next = 11; break; } _context19.next = 6; return this.getWidgetVersions(); case 6: if (!_context19.sent.includes(_ApiVersion.UnstableApiVersion.MSC2762_UPDATE_STATE)) { _context19.next = 9; break; } _context19.next = 9; return this.transport.send(_WidgetApiAction.WidgetApiToWidgetAction.UpdateState, { state: [rawEvent] }); case 9: _context19.next = 21; break; case 11: // Lump the update in with whatever data will be sent in the // initial push later. Even if we set it to an "outdated" entry // here, we can count on any newer entries being passed to this // same method eventually; this won't cause stuck state. eventTypeMap = this.pushRoomStateResult.get(rawEvent.room_id); if (eventTypeMap === undefined) { eventTypeMap = new Map(); this.pushRoomStateResult.set(rawEvent.room_id, eventTypeMap); } stateKeyMap = eventTypeMap.get(rawEvent.type); if (stateKeyMap === undefined) { stateKeyMap = new Map(); eventTypeMap.set(rawEvent.type, stateKeyMap); } if (!stateKeyMap.has(rawEvent.type)) stateKeyMap.set(rawEvent.state_key, rawEvent); case 16: _context19.next = 18; return Promise.all(this.pushRoomStateTasks); case 18: if (this.pushRoomStateTasks.size > 0) { _context19.next = 16; break; } case 19: _context19.next = 21; return this.flushRoomStateTask; case 21: case "end": return _context19.stop(); } }, _callee19, this); })); function feedStateUpdate(_x19) { return _feedStateUpdate.apply(this, arguments); } return feedStateUpdate; }()) }]); return ClientWidgetApi; }(_events.EventEmitter); exports.ClientWidgetApi = ClientWidgetApi; //# sourceMappingURL=ClientWidgetApi.js.map