draft of falling back to reading entries since last decrypted event key
this change notifyRoomKey(s) to only take one room key at a time to simplify things
This commit is contained in:
parent
a8392dc684
commit
9d41e122a0
5 changed files with 165 additions and 76 deletions
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@ -59,12 +59,12 @@ export class DeviceMessageHandler {
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return {roomKeys};
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return {roomKeys};
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}
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}
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_applyDecryptChanges(rooms, {roomKeys}) {
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async _applyDecryptChanges(rooms, {roomKeys}) {
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if (roomKeys && roomKeys.length) {
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if (Array.isArray(roomKeys)) {
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const roomKeysByRoom = groupBy(roomKeys, s => s.roomId);
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for (const roomKey of roomKeys) {
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for (const [roomId, roomKeys] of roomKeysByRoom) {
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const room = rooms.get(roomKey.roomId);
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const room = rooms.get(roomId);
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// TODO: this is less parallized than it could be (like sync)
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room?.notifyRoomKeys(roomKeys);
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await room?.notifyRoomKey(roomKey);
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}
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}
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}
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}
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}
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}
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@ -101,7 +101,7 @@ export class DeviceMessageHandler {
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throw err;
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throw err;
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}
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}
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await txn.complete();
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await txn.complete();
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this._applyDecryptChanges(rooms, changes);
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await this._applyDecryptChanges(rooms, changes);
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}
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}
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async _getPendingEvents(txn) {
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async _getPendingEvents(txn) {
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@ -42,8 +42,12 @@ export class RoomEncryption {
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this._megolmBackfillCache = this._megolmDecryption.createSessionCache();
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this._megolmBackfillCache = this._megolmDecryption.createSessionCache();
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this._megolmSyncCache = this._megolmDecryption.createSessionCache();
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this._megolmSyncCache = this._megolmDecryption.createSessionCache();
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// not `event_id`, but an internal event id passed in to the decrypt methods
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// session => event ids of messages we tried to decrypt and the session was missing
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this._eventIdsByMissingSession = new Map();
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this._missingSessions = new SessionToEventIdsMap();
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// sessions that may or may not be missing, but that while
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// looking for a particular session came up as a candidate and were
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// added to the cache to prevent further lookups from storage
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this._missingSessionCandidates = new SessionToEventIdsMap();
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this._senderDeviceCache = new Map();
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this._senderDeviceCache = new Map();
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this._storage = storage;
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this._storage = storage;
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this._sessionBackup = sessionBackup;
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this._sessionBackup = sessionBackup;
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@ -57,8 +61,7 @@ export class RoomEncryption {
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return;
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return;
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}
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}
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this._sessionBackup = sessionBackup;
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this._sessionBackup = sessionBackup;
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for(const key of this._eventIdsByMissingSession.keys()) {
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for(const {senderKey, sessionId} of this._missingSessions.getSessions()) {
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const {senderKey, sessionId} = decodeMissingSessionKey(key);
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await this._requestMissingSessionFromBackup(senderKey, sessionId, null);
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await this._requestMissingSessionFromBackup(senderKey, sessionId, null);
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}
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}
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}
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}
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@ -115,13 +118,17 @@ export class RoomEncryption {
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if (customCache) {
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if (customCache) {
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customCache.dispose();
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customCache.dispose();
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}
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}
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return new DecryptionPreparation(preparation, errors, {isTimelineOpen, source}, this);
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return new DecryptionPreparation(preparation, errors, {isTimelineOpen, source}, this, events);
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}
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}
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async _processDecryptionResults(results, errors, flags, txn) {
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async _processDecryptionResults(events, results, errors, flags, txn) {
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for (const error of errors.values()) {
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for (const event of events) {
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if (error.code === "MEGOLM_NO_SESSION") {
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const error = errors.get(event.event_id);
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this._addMissingSessionEvent(error.event, flags.source);
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if (error?.code === "MEGOLM_NO_SESSION") {
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this._addMissingSessionEvent(event, flags.source);
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} else {
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this._missingSessions.removeEvent(event);
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this._missingSessionCandidates.removeEvent(event);
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}
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}
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}
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}
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if (flags.isTimelineOpen) {
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if (flags.isTimelineOpen) {
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@ -145,17 +152,12 @@ export class RoomEncryption {
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}
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}
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_addMissingSessionEvent(event, source) {
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_addMissingSessionEvent(event, source) {
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const isNewSession = this._missingSessions.addEvent(event);
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if (isNewSession) {
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const senderKey = event.content?.["sender_key"];
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const senderKey = event.content?.["sender_key"];
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const sessionId = event.content?.["session_id"];
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const sessionId = event.content?.["session_id"];
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const key = encodeMissingSessionKey(senderKey, sessionId);
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let eventIds = this._eventIdsByMissingSession.get(key);
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// new missing session
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if (!eventIds) {
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this._requestMissingSessionFromBackup(senderKey, sessionId, source);
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this._requestMissingSessionFromBackup(senderKey, sessionId, source);
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eventIds = new Set();
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this._eventIdsByMissingSession.set(key, eventIds);
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}
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}
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eventIds.add(event.event_id);
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}
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}
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async _requestMissingSessionFromBackup(senderKey, sessionId, source) {
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async _requestMissingSessionFromBackup(senderKey, sessionId, source) {
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@ -163,7 +165,7 @@ export class RoomEncryption {
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// and only after that proceed to request from backup
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// and only after that proceed to request from backup
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if (source === DecryptionSource.Sync) {
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if (source === DecryptionSource.Sync) {
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await this._clock.createTimeout(10000).elapsed();
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await this._clock.createTimeout(10000).elapsed();
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if (this._disposed || !this._eventIdsByMissingSession.has(encodeMissingSessionKey(senderKey, sessionId))) {
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if (this._disposed || !this._missingSessions.hasSession(senderKey, sessionId)) {
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return;
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return;
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}
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}
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}
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}
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@ -192,8 +194,8 @@ export class RoomEncryption {
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await txn.complete();
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await txn.complete();
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if (roomKey) {
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if (roomKey) {
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// this will call into applyRoomKeys below
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// this will reattempt decryption
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await this._room.notifyRoomKeys([roomKey]);
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await this._room.notifyRoomKey(roomKey);
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}
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}
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} else if (session?.algorithm) {
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} else if (session?.algorithm) {
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console.info(`Backed-up session of unknown algorithm: ${session.algorithm}`);
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console.info(`Backed-up session of unknown algorithm: ${session.algorithm}`);
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@ -212,18 +214,17 @@ export class RoomEncryption {
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* @param {Array<RoomKeyDescription>} roomKeys
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* @param {Array<RoomKeyDescription>} roomKeys
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* @return {Array<string>} the event ids that should be retried to decrypt
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* @return {Array<string>} the event ids that should be retried to decrypt
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*/
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*/
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applyRoomKeys(roomKeys) {
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getEventIdsForRoomKey(roomKey) {
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// retry decryption with the new sessions
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let eventIds = this._missingSessions.getEventIds(roomKey.senderKey, roomKey.sessionId);
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const retryEventIds = [];
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if (!eventIds) {
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for (const roomKey of roomKeys) {
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eventIds = this._missingSessionCandidates.getEventIds(roomKey.senderKey, roomKey.sessionId);
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const key = encodeMissingSessionKey(roomKey.senderKey, roomKey.sessionId);
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const entriesForSession = this._eventIdsByMissingSession.get(key);
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if (entriesForSession) {
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this._eventIdsByMissingSession.delete(key);
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retryEventIds.push(...entriesForSession);
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}
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}
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return eventIds;
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}
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}
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return retryEventIds;
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findAndCacheEntriesForRoomKey(roomKey, candidateEntries) {
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// add all to _missingSessionCandidates
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// filter messages to roomKey
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}
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}
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async encrypt(type, content, hsApi) {
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async encrypt(type, content, hsApi) {
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@ -354,11 +355,12 @@ export class RoomEncryption {
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* the decryption results before turning them
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* the decryption results before turning them
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*/
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*/
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class DecryptionPreparation {
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class DecryptionPreparation {
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constructor(megolmDecryptionPreparation, extraErrors, flags, roomEncryption) {
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constructor(megolmDecryptionPreparation, extraErrors, flags, roomEncryption, events) {
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this._megolmDecryptionPreparation = megolmDecryptionPreparation;
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this._megolmDecryptionPreparation = megolmDecryptionPreparation;
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this._extraErrors = extraErrors;
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this._extraErrors = extraErrors;
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this._flags = flags;
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this._flags = flags;
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this._roomEncryption = roomEncryption;
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this._roomEncryption = roomEncryption;
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this._events = events;
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}
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}
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async decrypt() {
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async decrypt() {
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@ -366,7 +368,8 @@ class DecryptionPreparation {
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await this._megolmDecryptionPreparation.decrypt(),
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await this._megolmDecryptionPreparation.decrypt(),
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this._extraErrors,
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this._extraErrors,
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this._flags,
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this._flags,
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this._roomEncryption);
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this._roomEncryption,
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this._events);
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}
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}
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dispose() {
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dispose() {
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@ -375,17 +378,18 @@ class DecryptionPreparation {
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}
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}
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class DecryptionChanges {
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class DecryptionChanges {
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constructor(megolmDecryptionChanges, extraErrors, flags, roomEncryption) {
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constructor(megolmDecryptionChanges, extraErrors, flags, roomEncryption, events) {
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this._megolmDecryptionChanges = megolmDecryptionChanges;
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this._megolmDecryptionChanges = megolmDecryptionChanges;
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this._extraErrors = extraErrors;
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this._extraErrors = extraErrors;
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this._flags = flags;
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this._flags = flags;
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this._roomEncryption = roomEncryption;
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this._roomEncryption = roomEncryption;
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this._events = events;
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}
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}
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async write(txn) {
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async write(txn) {
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const {results, errors} = await this._megolmDecryptionChanges.write(txn);
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const {results, errors} = await this._megolmDecryptionChanges.write(txn);
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mergeMap(this._extraErrors, errors);
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mergeMap(this._extraErrors, errors);
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await this._roomEncryption._processDecryptionResults(results, errors, this._flags, txn);
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await this._roomEncryption._processDecryptionResults(this._events, results, errors, this._flags, txn);
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return new BatchDecryptionResult(results, errors);
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return new BatchDecryptionResult(results, errors);
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}
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}
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}
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}
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@ -410,3 +414,58 @@ class BatchDecryptionResult {
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}
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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 SessionToEventIdsMap {
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constructor() {
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this._eventIdsBySession = new Map();
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}
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addEvent(event) {
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let isNewSession = false;
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const senderKey = event.content?.["sender_key"];
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const sessionId = event.content?.["session_id"];
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const key = encodeMissingSessionKey(senderKey, sessionId);
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let eventIds = this._eventIdsBySession.get(key);
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// new missing session
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if (!eventIds) {
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eventIds = new Set();
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this._eventIdsBySession.set(key, eventIds);
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isNewSession = true;
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}
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eventIds.add(event.event_id);
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return isNewSession;
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}
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getEventIds(senderKey, sessionId) {
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const key = encodeMissingSessionKey(senderKey, sessionId);
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const entriesForSession = this._eventIdsBySession.get(key);
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if (entriesForSession) {
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return [...entriesForSession];
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}
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}
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getSessions() {
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return Array.from(this._eventIdsBySession.keys()).map(decodeMissingSessionKey);
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}
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hasSession(senderKey, sessionId) {
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return this._eventIdsBySession.has(encodeMissingSessionKey(senderKey, sessionId));
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}
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removeEvent(event) {
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let hasRemovedSession = false;
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const senderKey = event.content?.["sender_key"];
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const sessionId = event.content?.["session_id"];
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const key = encodeMissingSessionKey(senderKey, sessionId);
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let eventIds = this._eventIdsBySession.get(key);
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if (eventIds) {
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if (eventIds.delete(event.event_id)) {
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if (!eventIds.length) {
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this._eventIdsBySession.delete(key);
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hasRemovedSession = true;
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}
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}
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}
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return hasRemovedSession;
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}
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}
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@ -52,31 +52,53 @@ export class Room extends EventEmitter {
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this._clock = clock;
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this._clock = clock;
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}
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}
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_readEntriesToRetryDecryption(retryEventIds) {
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_readRetryDecryptCandidateEntries(sinceEventKey, txn) {
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const readFromEventKey = retryEventIds.length !== 0;
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if (sinceEventKey) {
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const stores =
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return readFromWithTxn(sinceEventKey, Direction.Forward, Number.MAX_SAFE_INTEGER, txn);
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const txn = await this._storage.readTxn([
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} else {
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this._storage.storeNames.timelineEvents,
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// all messages for room
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this._storage.storeNames.inboundGroupSessions,
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return readFromWithTxn(this._syncWriter.lastMessageKey, Direction.Backward, Number.MAX_SAFE_INTEGER, txn);
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]);
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}
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}
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}
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async notifyRoomKeys(roomKeys) {
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async notifyRoomKey(roomKey) {
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if (this._roomEncryption) {
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if (!this._roomEncryption) {
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let retryEventIds = this._roomEncryption.applyRoomKeys(roomKeys);
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return;
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if (retryEventIds.length) {
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}
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const retryEntries = [];
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const retryEventIds = this._roomEncryption.getEventIdsForRoomKey(roomKey);
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const txn = await this._storage.readTxn([
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const stores = [
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this._storage.storeNames.timelineEvents,
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this._storage.storeNames.timelineEvents,
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this._storage.storeNames.inboundGroupSessions,
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this._storage.storeNames.inboundGroupSessions,
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]);
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];
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let txn;
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let retryEntries;
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if (retryEventIds) {
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retryEntries = [];
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txn = await this._storage.readTxn(stores);
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for (const eventId of retryEventIds) {
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for (const eventId of retryEventIds) {
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const storageEntry = await txn.timelineEvents.getByEventId(this._roomId, eventId);
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const storageEntry = await txn.timelineEvents.getByEventId(this._roomId, eventId);
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if (storageEntry) {
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if (storageEntry) {
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retryEntries.push(new EventEntry(storageEntry, this._fragmentIdComparer));
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retryEntries.push(new EventEntry(storageEntry, this._fragmentIdComparer));
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}
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}
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}
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}
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} else {
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// we only look for messages since lastDecryptedEventKey because
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// the timeline must be closed (otherwise getEventIdsForRoomKey would have found the event ids)
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// and to update the summary we only care about events since lastDecryptedEventKey
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const key = this._summary.data.lastDecryptedEventKey;
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// key might be missing if we haven't decrypted any events in this room
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const sinceEventKey = key && new EventKey(key.fragmentId, key.entryIndex);
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// check we have not already decrypted the most recent event in the room
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// otherwise we know that the messages for this room key will not update the room summary
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if (!sinceEventKey || !sinceEventKey.equals(this._syncWriter.lastMessageKey)) {
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txn = await this._storage.readTxn(stores.concat(this._storage.storeNames.timelineFragments));
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const candidateEntries = await this._readRetryDecryptCandidateEntries(sinceEventKey, txn);
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retryEntries = this._roomEncryption.findAndCacheEntriesForRoomKey(roomKey, candidateEntries);
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}
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}
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if (retryEntries?.length) {
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const decryptRequest = this._decryptEntries(DecryptionSource.Retry, retryEntries, txn);
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const decryptRequest = this._decryptEntries(DecryptionSource.Retry, retryEntries, txn);
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// this will close txn while awaiting decryption
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await decryptRequest.complete();
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await decryptRequest.complete();
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this._timeline?.replaceEntries(retryEntries);
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this._timeline?.replaceEntries(retryEntries);
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@ -90,7 +112,6 @@ export class Room extends EventEmitter {
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}
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}
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}
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}
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}
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}
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}
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_setEncryption(roomEncryption) {
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_setEncryption(roomEncryption) {
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if (roomEncryption && !this._roomEncryption) {
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if (roomEncryption && !this._roomEncryption) {
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@ -203,7 +224,7 @@ export class Room extends EventEmitter {
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heroChanges = await this._heroes.calculateChanges(summaryChanges.heroes, memberChanges, txn);
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heroChanges = await this._heroes.calculateChanges(summaryChanges.heroes, memberChanges, txn);
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}
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}
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let removedPendingEvents;
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let removedPendingEvents;
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if (roomResponse.timeline && roomResponse.timeline.events) {
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if (Array.isArray(roomResponse.timeline?.events)) {
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removedPendingEvents = this._sendQueue.removeRemoteEchos(roomResponse.timeline.events, txn);
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removedPendingEvents = this._sendQueue.removeRemoteEchos(roomResponse.timeline.events, txn);
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}
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}
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return {
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return {
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@ -63,6 +63,10 @@ export class EventKey {
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toString() {
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toString() {
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return `[${this.fragmentId}/${this.eventIndex}]`;
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return `[${this.fragmentId}/${this.eventIndex}]`;
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}
|
}
|
||||||
|
|
||||||
|
equals(other) {
|
||||||
|
return this.fragmentId === other?.fragmentId && this.eventIndex === other?.eventIndex;
|
||||||
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
export function xtests() {
|
export function xtests() {
|
||||||
|
|
|
@ -46,6 +46,7 @@ export async function readFromWithTxn(eventKey, direction, amount, r, txn) {
|
||||||
while (entries.length < amount && eventKey) {
|
while (entries.length < amount && eventKey) {
|
||||||
let eventsWithinFragment;
|
let eventsWithinFragment;
|
||||||
if (direction.isForward) {
|
if (direction.isForward) {
|
||||||
|
// TODO: should we pass amount - entries.length here?
|
||||||
eventsWithinFragment = await timelineStore.eventsAfter(this._roomId, eventKey, amount);
|
eventsWithinFragment = await timelineStore.eventsAfter(this._roomId, eventKey, amount);
|
||||||
} else {
|
} else {
|
||||||
eventsWithinFragment = await timelineStore.eventsBefore(this._roomId, eventKey, amount);
|
eventsWithinFragment = await timelineStore.eventsBefore(this._roomId, eventKey, amount);
|
||||||
|
@ -56,6 +57,10 @@ export async function readFromWithTxn(eventKey, direction, amount, r, txn) {
|
||||||
|
|
||||||
if (entries.length < amount) {
|
if (entries.length < amount) {
|
||||||
const fragment = await fragmentStore.get(this._roomId, eventKey.fragmentId);
|
const fragment = await fragmentStore.get(this._roomId, eventKey.fragmentId);
|
||||||
|
// TODO: why does the first fragment not need to be added? (the next *is* added below)
|
||||||
|
// it looks like this would be fine when loading in the sync island
|
||||||
|
// (as the live fragment should be added already) but not for permalinks when we support them
|
||||||
|
//
|
||||||
// this._fragmentIdComparer.addFragment(fragment);
|
// this._fragmentIdComparer.addFragment(fragment);
|
||||||
let fragmentEntry = new FragmentBoundaryEntry(fragment, direction.isBackward, this._fragmentIdComparer);
|
let fragmentEntry = new FragmentBoundaryEntry(fragment, direction.isBackward, this._fragmentIdComparer);
|
||||||
// append or prepend fragmentEntry, reuse func from GapWriter?
|
// append or prepend fragmentEntry, reuse func from GapWriter?
|
||||||
|
|
Reference in a new issue