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https://github.com/hoernschen/dendrite.git
synced 2024-12-27 07:28:27 +00:00
Tweaks to latest events updater (#1045)
* Comment out updaters a bit, add overwrite flag to latest events * Make sure we don't send fast-forwarded state changes over federation, start with empty set when overwriting * Remove redundant check for overwrite
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5c221f0655
commit
9ef30bb13b
4 changed files with 101 additions and 23 deletions
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@ -52,13 +52,15 @@ func processRoomEvent(
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headered := input.Event
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event := headered.Unwrap()
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// Check that the event passes authentication checks and work out the numeric IDs for the auth events.
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// Check that the event passes authentication checks and work out
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// the numeric IDs for the auth events.
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authEventNIDs, err := checkAuthEvents(ctx, db, headered, input.AuthEventIDs)
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if err != nil {
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logrus.WithError(err).WithField("event_id", event.EventID()).WithField("auth_event_ids", input.AuthEventIDs).Error("processRoomEvent.checkAuthEvents failed for event")
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return
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}
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// If we don't have a transaction ID then get one.
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if input.TransactionID != nil {
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tdID := input.TransactionID
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eventID, err = db.GetTransactionEventID(
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@ -70,17 +72,21 @@ func processRoomEvent(
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}
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}
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// Store the event
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// Store the event.
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roomNID, stateAtEvent, err := db.StoreEvent(ctx, event, input.TransactionID, authEventNIDs)
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if err != nil {
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return
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}
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// For outliers we can stop after we've stored the event itself as it
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// doesn't have any associated state to store and we don't need to
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// notify anyone about it.
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if input.Kind == api.KindOutlier {
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// For outliers we can stop after we've stored the event itself as it
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// doesn't have any associated state to store and we don't need to
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// notify anyone about it.
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logrus.WithField("event_id", event.EventID()).WithField("type", event.Type()).WithField("room", event.RoomID()).Info("Stored outlier")
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logrus.WithFields(logrus.Fields{
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"event_id": event.EventID(),
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"type": event.Type(),
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"room": event.RoomID(),
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}).Info("Stored outlier")
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return event.EventID(), nil
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}
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@ -93,10 +99,21 @@ func processRoomEvent(
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}
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}
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if err = updateLatestEvents(
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ctx, // context
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db, // roomserver database
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ow, // output event writer
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roomNID, // room NID to update
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stateAtEvent, // state at event (below)
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event, // event
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input.SendAsServer, // send as server
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input.TransactionID, // transaction ID
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); err != nil {
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return
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}
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// Update the extremities of the event graph for the room
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return event.EventID(), updateLatestEvents(
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ctx, db, ow, roomNID, stateAtEvent, event, input.SendAsServer, input.TransactionID,
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)
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return event.EventID(), nil
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}
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func calculateAndSetState(
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@ -111,6 +128,9 @@ func calculateAndSetState(
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roomState := state.NewStateResolution(db)
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if input.HasState {
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// TODO: Check here if we think we're in the room already.
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stateAtEvent.Overwrite = true
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// We've been told what the state at the event is so we don't need to calculate it.
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// Check that those state events are in the database and store the state.
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var entries []types.StateEntry
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@ -122,6 +142,8 @@ func calculateAndSetState(
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return err
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}
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} else {
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stateAtEvent.Overwrite = false
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// We haven't been told what the state at the event is so we need to calculate it from the prev_events
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if stateAtEvent.BeforeStateSnapshotNID, err = roomState.CalculateAndStoreStateBeforeEvent(ctx, event, roomNID); err != nil {
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return err
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@ -69,10 +69,17 @@ func updateLatestEvents(
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}()
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u := latestEventsUpdater{
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ctx: ctx, db: db, updater: updater, ow: ow, roomNID: roomNID,
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stateAtEvent: stateAtEvent, event: event, sendAsServer: sendAsServer,
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ctx: ctx,
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db: db,
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updater: updater,
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ow: ow,
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roomNID: roomNID,
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stateAtEvent: stateAtEvent,
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event: event,
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sendAsServer: sendAsServer,
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transactionID: transactionID,
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}
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if err = u.doUpdateLatestEvents(); err != nil {
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return err
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}
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@ -115,38 +122,65 @@ type latestEventsUpdater struct {
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func (u *latestEventsUpdater) doUpdateLatestEvents() error {
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prevEvents := u.event.PrevEvents()
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oldLatest := u.updater.LatestEvents()
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u.lastEventIDSent = u.updater.LastEventIDSent()
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u.oldStateNID = u.updater.CurrentStateSnapshotNID()
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// If we are doing a regular event update then we will get the
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// previous latest events to use as a part of the calculation. If
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// we are overwriting the latest events because we have a complete
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// state snapshot from somewhere else, e.g. a federated room join,
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// then start with an empty set - none of the forward extremities
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// that we knew about before matter anymore.
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oldLatest := []types.StateAtEventAndReference{}
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if !u.stateAtEvent.Overwrite {
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oldLatest = u.updater.LatestEvents()
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}
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// If the event has already been written to the output log then we
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// don't need to do anything, as we've handled it already.
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hasBeenSent, err := u.updater.HasEventBeenSent(u.stateAtEvent.EventNID)
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if err != nil {
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return err
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} else if hasBeenSent {
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// Already sent this event so we can stop processing
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return nil
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}
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// Update the roomserver_previous_events table with references. This
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// is effectively tracking the structure of the DAG.
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if err = u.updater.StorePreviousEvents(u.stateAtEvent.EventNID, prevEvents); err != nil {
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return err
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}
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// Get the event reference for our new event. This will be used when
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// determining if the event is referenced by an existing event.
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eventReference := u.event.EventReference()
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// Check if this event is already referenced by another event in the room.
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// Check if our new event is already referenced by an existing event
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// in the room. If it is then it isn't a latest event.
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alreadyReferenced, err := u.updater.IsReferenced(eventReference)
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if err != nil {
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return err
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}
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u.latest = calculateLatest(oldLatest, alreadyReferenced, prevEvents, types.StateAtEventAndReference{
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EventReference: eventReference,
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StateAtEvent: u.stateAtEvent,
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})
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// Work out what the latest events are.
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u.latest = calculateLatest(
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oldLatest,
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alreadyReferenced,
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prevEvents,
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types.StateAtEventAndReference{
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EventReference: eventReference,
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StateAtEvent: u.stateAtEvent,
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},
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)
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// Now that we know what the latest events are, it's time to get the
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// latest state.
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if err = u.latestState(); err != nil {
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return err
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}
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// If we need to generate any output events then here's where we do it.
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// TODO: Move this!
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updates, err := updateMemberships(u.ctx, u.db, u.updater, u.removed, u.added)
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if err != nil {
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return err
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@ -181,10 +215,15 @@ func (u *latestEventsUpdater) latestState() error {
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var err error
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roomState := state.NewStateResolution(u.db)
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// Get a list of the current latest events.
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latestStateAtEvents := make([]types.StateAtEvent, len(u.latest))
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for i := range u.latest {
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latestStateAtEvents[i] = u.latest[i].StateAtEvent
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}
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// Takes the NIDs of the latest events and creates a state snapshot
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// of the state after the events. The snapshot state will be resolved
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// using the correct state resolution algorithm for the room.
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u.newStateNID, err = roomState.CalculateAndStoreStateAfterEvents(
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u.ctx, u.roomNID, latestStateAtEvents,
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)
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@ -192,6 +231,18 @@ func (u *latestEventsUpdater) latestState() error {
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return err
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}
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// If we are overwriting the state then we should make sure that we
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// don't send anything out over federation again, it will very likely
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// be a repeat.
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if u.stateAtEvent.Overwrite {
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u.sendAsServer = ""
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}
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// Now that we have a new state snapshot based on the latest events,
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// we can compare that new snapshot to the previous one and see what
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// has changed. This gives us one list of removed state events and
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// another list of added ones. Replacing a value for a state-key tuple
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// will result one removed (the old event) and one added (the new event).
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u.removed, u.added, err = roomState.DifferenceBetweeenStateSnapshots(
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u.ctx, u.oldStateNID, u.newStateNID,
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)
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@ -199,6 +250,8 @@ func (u *latestEventsUpdater) latestState() error {
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return err
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}
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// Also work out the state before the event removes and the event
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// adds.
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u.stateBeforeEventRemoves, u.stateBeforeEventAdds, err = roomState.DifferenceBetweeenStateSnapshots(
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u.ctx, u.newStateNID, u.stateAtEvent.BeforeStateSnapshotNID,
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)
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@ -16,7 +16,6 @@ package internal
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import (
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"context"
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"errors"
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"fmt"
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"github.com/matrix-org/dendrite/roomserver/api"
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@ -108,10 +107,10 @@ func updateMembership(
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}
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if add == nil {
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// This shouldn't happen. Returning an error here is better than panicking
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// in the membership updater functions later on.
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// TODO: Why does this happen to begin with?
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return updates, errors.New("add should not be nil")
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// This can happen when we have rejoined a room and suddenly we have a
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// divergence between the former state and the new one. We don't want to
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// act on removals and apparently there are no adds, so stop here.
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return updates, nil
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}
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mu, err := updater.MembershipUpdater(targetUserNID)
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@ -75,6 +75,10 @@ func (a StateEntry) LessThan(b StateEntry) bool {
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// StateAtEvent is the state before and after a matrix event.
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type StateAtEvent struct {
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// Should this state overwrite the latest events and memberships of the room?
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// This might be necessary when rejoining a federated room after a period of
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// absence, as our state and latest events will be out of date.
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Overwrite bool
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// The state before the event.
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BeforeStateSnapshotNID StateSnapshotNID
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// The state entry for the event itself, allows us to calculate the state after the event.
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