2021-05-07 16:13:49 +02:00
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/*
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Copyright 2020 Bruno Windels <bruno@windels.cloud>
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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import {EventEmitter} from "../../utils/EventEmitter.js";
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import {RoomSummary} from "./RoomSummary.js";
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import {GapWriter} from "./timeline/persistence/GapWriter.js";
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2021-06-03 16:42:09 +02:00
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import {RelationWriter} from "./timeline/persistence/RelationWriter.js";
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2021-05-07 16:13:49 +02:00
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import {Timeline} from "./timeline/Timeline.js";
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import {FragmentIdComparer} from "./timeline/FragmentIdComparer.js";
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import {WrappedError} from "../error.js"
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import {fetchOrLoadMembers} from "./members/load.js";
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import {MemberList} from "./members/MemberList.js";
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import {Heroes} from "./members/Heroes.js";
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import {EventEntry} from "./timeline/entries/EventEntry.js";
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import {ObservedEventMap} from "./ObservedEventMap.js";
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import {DecryptionSource} from "../e2ee/common.js";
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import {ensureLogItem} from "../../logging/utils.js";
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const EVENT_ENCRYPTED_TYPE = "m.room.encrypted";
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export class BaseRoom extends EventEmitter {
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constructor({roomId, storage, hsApi, mediaRepository, emitCollectionChange, user, createRoomEncryption, getSyncToken, platform}) {
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super();
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this._roomId = roomId;
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this._storage = storage;
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this._hsApi = hsApi;
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this._mediaRepository = mediaRepository;
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this._summary = new RoomSummary(roomId);
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this._fragmentIdComparer = new FragmentIdComparer([]);
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this._emitCollectionChange = emitCollectionChange;
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this._timeline = null;
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this._user = user;
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this._changedMembersDuringSync = null;
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this._memberList = null;
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this._createRoomEncryption = createRoomEncryption;
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this._roomEncryption = null;
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this._getSyncToken = getSyncToken;
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this._platform = platform;
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this._observedEvents = null;
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}
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async _eventIdsToEntries(eventIds, txn) {
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const retryEntries = [];
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await Promise.all(eventIds.map(async eventId => {
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const storageEntry = await txn.timelineEvents.getByEventId(this._roomId, eventId);
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if (storageEntry) {
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retryEntries.push(new EventEntry(storageEntry, this._fragmentIdComparer));
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}
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}));
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return retryEntries;
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}
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_getAdditionalTimelineRetryEntries(otherRetryEntries, roomKeys) {
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let retryTimelineEntries = this._roomEncryption.filterUndecryptedEventEntriesForKeys(this._timeline.remoteEntries, roomKeys);
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// filter out any entries already in retryEntries so we don't decrypt them twice
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const existingIds = otherRetryEntries.reduce((ids, e) => {ids.add(e.id); return ids;}, new Set());
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retryTimelineEntries = retryTimelineEntries.filter(e => !existingIds.has(e.id));
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return retryTimelineEntries;
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}
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/**
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* Used for retrying decryption from other sources than sync, like key backup.
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* @internal
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* @param {RoomKey} roomKey
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* @param {Array<string>} eventIds any event ids that should be retried. There might be more in the timeline though for this key.
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* @return {Promise}
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*/
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async notifyRoomKey(roomKey, eventIds, log) {
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if (!this._roomEncryption) {
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return;
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}
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const txn = await this._storage.readTxn([
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this._storage.storeNames.timelineEvents,
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this._storage.storeNames.inboundGroupSessions,
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]);
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let retryEntries = await this._eventIdsToEntries(eventIds, txn);
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if (this._timeline) {
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const retryTimelineEntries = this._getAdditionalTimelineRetryEntries(retryEntries, [roomKey]);
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retryEntries = retryEntries.concat(retryTimelineEntries);
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}
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if (retryEntries.length) {
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const decryptRequest = this._decryptEntries(DecryptionSource.Retry, retryEntries, txn, log);
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// this will close txn while awaiting decryption
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await decryptRequest.complete();
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this._timeline?.replaceEntries(retryEntries);
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// we would ideally write the room summary in the same txn as the groupSessionDecryptions in the
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// _decryptEntries entries and could even know which events have been decrypted for the first
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// time from DecryptionChanges.write and only pass those to the summary. As timeline changes
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// are not essential to the room summary, it's fine to write this in a separate txn for now.
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const changes = this._summary.data.applyTimelineEntries(retryEntries, false, false);
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if (await this._summary.writeAndApplyData(changes, this._storage)) {
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this._emitUpdate();
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}
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}
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}
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_setEncryption(roomEncryption) {
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if (roomEncryption && !this._roomEncryption) {
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this._roomEncryption = roomEncryption;
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if (this._timeline) {
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this._timeline.enableEncryption(this._decryptEntries.bind(this, DecryptionSource.Timeline));
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}
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return true;
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}
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return false;
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}
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/**
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* Used for decrypting when loading/filling the timeline, and retrying decryption,
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* not during sync, where it is split up during the multiple phases.
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*/
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_decryptEntries(source, entries, inboundSessionTxn, log = null) {
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const request = new DecryptionRequest(async (r, log) => {
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if (!inboundSessionTxn) {
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inboundSessionTxn = await this._storage.readTxn([this._storage.storeNames.inboundGroupSessions]);
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}
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if (r.cancelled) return;
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const events = entries.filter(entry => {
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return entry.eventType === EVENT_ENCRYPTED_TYPE;
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}).map(entry => entry.event);
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r.preparation = await this._roomEncryption.prepareDecryptAll(events, null, source, inboundSessionTxn);
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if (r.cancelled) return;
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const changes = await r.preparation.decrypt();
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r.preparation = null;
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if (r.cancelled) return;
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const stores = [this._storage.storeNames.groupSessionDecryptions];
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const isTimelineOpen = this._isTimelineOpen;
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if (isTimelineOpen) {
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// read to fetch devices if timeline is open
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stores.push(this._storage.storeNames.deviceIdentities);
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}
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const writeTxn = await this._storage.readWriteTxn(stores);
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let decryption;
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try {
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decryption = await changes.write(writeTxn, log);
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if (isTimelineOpen) {
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await decryption.verifySenders(writeTxn);
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}
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} catch (err) {
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writeTxn.abort();
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throw err;
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}
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await writeTxn.complete();
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// TODO: log decryption errors here
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decryption.applyToEntries(entries);
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if (this._observedEvents) {
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this._observedEvents.updateEvents(entries);
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}
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}, ensureLogItem(log));
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return request;
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}
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2021-05-27 09:11:57 +02:00
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// TODO: move this to Room
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2021-05-07 16:13:49 +02:00
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async _getSyncRetryDecryptEntries(newKeys, roomEncryption, txn) {
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const entriesPerKey = await Promise.all(newKeys.map(async key => {
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const retryEventIds = await roomEncryption.getEventIdsForMissingKey(key, txn);
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if (retryEventIds) {
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return this._eventIdsToEntries(retryEventIds, txn);
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}
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}));
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let retryEntries = entriesPerKey.reduce((allEntries, entries) => entries ? allEntries.concat(entries) : allEntries, []);
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// If we have the timeline open, see if there are more entries for the new keys
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// as we only store missing session information for synced events, not backfilled.
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// We want to decrypt all events we can though if the user is looking
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// at them when the timeline is open
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if (this._timeline) {
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const retryTimelineEntries = this._getAdditionalTimelineRetryEntries(retryEntries, newKeys);
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// make copies so we don't modify the original entry in writeSync, before the afterSync stage
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const retryTimelineEntriesCopies = retryTimelineEntries.map(e => e.clone());
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// add to other retry entries
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retryEntries = retryEntries.concat(retryTimelineEntriesCopies);
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}
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return retryEntries;
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}
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/** @package */
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async load(summary, txn, log) {
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log.set("id", this.id);
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try {
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// if called from sync, there is no summary yet
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if (summary) {
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this._summary.load(summary);
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}
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if (this._summary.data.encryption) {
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const roomEncryption = this._createRoomEncryption(this, this._summary.data.encryption);
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this._setEncryption(roomEncryption);
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}
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// need to load members for name?
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if (this._summary.data.needsHeroes) {
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this._heroes = new Heroes(this._roomId);
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const changes = await this._heroes.calculateChanges(this._summary.data.heroes, [], txn);
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this._heroes.applyChanges(changes, this._summary.data);
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}
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} catch (err) {
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throw new WrappedError(`Could not load room ${this._roomId}`, err);
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}
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}
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/** @public */
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async loadMemberList(log = null) {
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if (this._memberList) {
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// TODO: also await fetchOrLoadMembers promise here
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this._memberList.retain();
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return this._memberList;
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} else {
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const members = await fetchOrLoadMembers({
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summary: this._summary,
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roomId: this._roomId,
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hsApi: this._hsApi,
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storage: this._storage,
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syncToken: this._getSyncToken(),
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// to handle race between /members and /sync
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setChangedMembersMap: map => this._changedMembersDuringSync = map,
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log,
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}, this._platform.logger);
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this._memberList = new MemberList({
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members,
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closeCallback: () => { this._memberList = null; }
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});
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return this._memberList;
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}
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}
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/** @public */
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fillGap(fragmentEntry, amount, log = null) {
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// TODO move some/all of this out of BaseRoom
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return this._platform.logger.wrapOrRun(log, "fillGap", async log => {
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log.set("id", this.id);
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log.set("fragment", fragmentEntry.fragmentId);
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log.set("dir", fragmentEntry.direction.asApiString());
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if (fragmentEntry.edgeReached) {
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log.set("edgeReached", true);
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return;
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}
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const response = await this._hsApi.messages(this._roomId, {
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from: fragmentEntry.token,
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dir: fragmentEntry.direction.asApiString(),
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limit: amount,
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filter: {
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lazy_load_members: true,
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include_redundant_members: true,
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}
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}, {log}).response();
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const txn = await this._storage.readWriteTxn([
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this._storage.storeNames.pendingEvents,
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this._storage.storeNames.timelineEvents,
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2021-06-03 16:44:35 +02:00
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this._storage.storeNames.timelineRelations,
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2021-05-07 16:13:49 +02:00
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this._storage.storeNames.timelineFragments,
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]);
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let extraGapFillChanges;
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let gapResult;
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try {
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// detect remote echos of pending messages in the gap
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2021-05-21 10:47:48 +02:00
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extraGapFillChanges = await this._writeGapFill(response.chunk, txn, log);
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2021-05-07 16:13:49 +02:00
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// write new events into gap
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2021-06-03 16:42:09 +02:00
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const relationWriter = new RelationWriter({
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roomId: this._roomId,
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fragmentIdComparer: this._fragmentIdComparer,
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ownUserId: this._user.id,
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});
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2021-05-07 16:13:49 +02:00
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const gapWriter = new GapWriter({
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roomId: this._roomId,
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storage: this._storage,
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fragmentIdComparer: this._fragmentIdComparer,
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2021-06-03 16:42:09 +02:00
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relationWriter
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2021-05-07 16:13:49 +02:00
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});
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gapResult = await gapWriter.writeFragmentFill(fragmentEntry, response, txn, log);
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} catch (err) {
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txn.abort();
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throw err;
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}
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await txn.complete();
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if (this._roomEncryption) {
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const decryptRequest = this._decryptEntries(DecryptionSource.Timeline, gapResult.entries, null, log);
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await decryptRequest.complete();
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}
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// once txn is committed, update in-memory state & emit events
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for (const fragment of gapResult.fragments) {
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this._fragmentIdComparer.add(fragment);
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}
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if (extraGapFillChanges) {
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this._applyGapFill(extraGapFillChanges);
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}
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if (this._timeline) {
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2021-05-20 10:01:30 +02:00
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// these should not be added if not already there
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this._timeline.replaceEntries(gapResult.updatedEntries);
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2021-06-23 17:38:52 +02:00
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this._timeline.addEntries(gapResult.entries);
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2021-05-07 16:13:49 +02:00
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}
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});
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}
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/**
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allow sub classes to integrate in the gap fill lifecycle.
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JoinedRoom uses this update remote echos.
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*/
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2021-05-11 13:08:13 +02:00
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// eslint-disable-next-line no-unused-vars
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2021-05-21 10:47:48 +02:00
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async _writeGapFill(chunk, txn, log) {}
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2021-05-07 16:13:49 +02:00
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_applyGapFill() {}
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/** @public */
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get name() {
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if (this._heroes) {
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return this._heroes.roomName;
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}
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const summaryData = this._summary.data;
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if (summaryData.name) {
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return summaryData.name;
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}
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if (summaryData.canonicalAlias) {
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return summaryData.canonicalAlias;
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}
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return null;
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}
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/** @public */
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get id() {
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return this._roomId;
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}
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get avatarUrl() {
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if (this._summary.data.avatarUrl) {
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return this._summary.data.avatarUrl;
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} else if (this._heroes) {
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return this._heroes.roomAvatarUrl;
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}
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return null;
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}
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2021-06-30 01:50:42 +02:00
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get avatarColorId() {
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return this._heroes?.roomAvatarColorId || this._roomId
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}
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2021-05-07 16:13:49 +02:00
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get lastMessageTimestamp() {
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return this._summary.data.lastMessageTimestamp;
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}
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get isLowPriority() {
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const tags = this._summary.data.tags;
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return !!(tags && tags['m.lowpriority']);
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}
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get isEncrypted() {
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return !!this._summary.data.encryption;
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}
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get isJoined() {
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return this.membership === "join";
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}
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get isLeft() {
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return this.membership === "leave";
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}
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2021-06-04 13:12:39 +02:00
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get canonicalAlias() {
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return this._summary.data.canonicalAlias;
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}
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get joinedMemberCount() {
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return this._summary.data.joinCount;
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}
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2021-05-07 16:13:49 +02:00
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get mediaRepository() {
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return this._mediaRepository;
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}
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get membership() {
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return this._summary.data.membership;
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}
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enableSessionBackup(sessionBackup) {
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this._roomEncryption?.enableSessionBackup(sessionBackup);
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// TODO: do we really want to do this every time you open the app?
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if (this._timeline) {
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this._platform.logger.run("enableSessionBackup", log => {
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return this._roomEncryption.restoreMissingSessionsFromBackup(this._timeline.remoteEntries, log);
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});
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}
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}
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get _isTimelineOpen() {
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return !!this._timeline;
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}
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_emitUpdate() {
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// once for event emitter listeners
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this.emit("change");
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// and once for collection listeners
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this._emitCollectionChange(this);
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}
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/** @public */
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openTimeline(log = null) {
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return this._platform.logger.wrapOrRun(log, "open timeline", async log => {
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log.set("id", this.id);
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if (this._timeline) {
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throw new Error("not dealing with load race here for now");
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}
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this._timeline = new Timeline({
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roomId: this.id,
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storage: this._storage,
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fragmentIdComparer: this._fragmentIdComparer,
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pendingEvents: this._getPendingEvents(),
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closeCallback: () => {
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this._timeline = null;
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if (this._roomEncryption) {
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this._roomEncryption.notifyTimelineClosed();
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}
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},
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clock: this._platform.clock,
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logger: this._platform.logger,
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});
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2021-06-02 18:44:03 +02:00
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try {
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if (this._roomEncryption) {
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this._timeline.enableEncryption(this._decryptEntries.bind(this, DecryptionSource.Timeline));
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}
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await this._timeline.load(this._user, this.membership, log);
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} catch (err) {
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// this also clears this._timeline in the closeCallback
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this._timeline.dispose();
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throw err;
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2021-05-07 16:13:49 +02:00
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}
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return this._timeline;
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});
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}
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/* allow subclasses to provide an observable list with pending events when opening the timeline */
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_getPendingEvents() { return null; }
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observeEvent(eventId) {
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if (!this._observedEvents) {
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this._observedEvents = new ObservedEventMap(() => {
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this._observedEvents = null;
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});
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}
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let entry = null;
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if (this._timeline) {
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entry = this._timeline.getByEventId(eventId);
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}
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const observable = this._observedEvents.observe(eventId, entry);
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if (!entry) {
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// update in the background
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this._readEventById(eventId).then(entry => {
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observable.update(entry);
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}).catch(err => {
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console.warn(`could not load event ${eventId} from storage`, err);
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});
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}
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return observable;
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}
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async _readEventById(eventId) {
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let stores = [this._storage.storeNames.timelineEvents];
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if (this.isEncrypted) {
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stores.push(this._storage.storeNames.inboundGroupSessions);
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}
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const txn = await this._storage.readTxn(stores);
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const storageEntry = await txn.timelineEvents.getByEventId(this._roomId, eventId);
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if (storageEntry) {
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const entry = new EventEntry(storageEntry, this._fragmentIdComparer);
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if (entry.eventType === EVENT_ENCRYPTED_TYPE) {
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const request = this._decryptEntries(DecryptionSource.Timeline, [entry], txn);
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await request.complete();
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}
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return entry;
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}
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}
|
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|
|
dispose() {
|
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|
|
this._roomEncryption?.dispose();
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|
|
this._timeline?.dispose();
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|
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}
|
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|
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}
|
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|
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class DecryptionRequest {
|
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|
|
constructor(decryptFn, log) {
|
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|
|
this._cancelled = false;
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this.preparation = null;
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|
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this._promise = log.wrap("decryptEntries", log => decryptFn(this, log));
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|
|
}
|
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|
|
complete() {
|
|
|
|
return this._promise;
|
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|
|
}
|
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|
|
get cancelled() {
|
|
|
|
return this._cancelled;
|
|
|
|
}
|
|
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|
|
dispose() {
|
|
|
|
this._cancelled = true;
|
|
|
|
if (this.preparation) {
|
|
|
|
this.preparation.dispose();
|
|
|
|
}
|
|
|
|
}
|
|
|
|
}
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