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https://github.com/1f349/dendrite.git
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Get missing event tweaks (#1514)
* Adjust backfill to send backward extremity with state before other backfilled events, include prev_events with no state amongst missing events * Not finished refactor * Fix test * Remove isInboundTxn * Remove debug logging
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0804594a61
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@ -183,7 +183,7 @@ func (t *txnReq) processTransaction(ctx context.Context) (*gomatrixserverlib.Res
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// Process the events.
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for _, e := range pdus {
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if err := t.processEvent(ctx, e.Unwrap(), true); err != nil {
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if err := t.processEvent(ctx, e.Unwrap()); err != nil {
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// If the error is due to the event itself being bad then we skip
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// it and move onto the next event. We report an error so that the
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// sender knows that we have skipped processing it.
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@ -338,11 +338,15 @@ func (t *txnReq) processDeviceListUpdate(ctx context.Context, e gomatrixserverli
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}
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}
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func (t *txnReq) processEvent(ctx context.Context, e gomatrixserverlib.Event, isInboundTxn bool) error {
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func (t *txnReq) processEvent(ctx context.Context, e gomatrixserverlib.Event) error {
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logger := util.GetLogger(ctx).WithField("event_id", e.EventID()).WithField("room_id", e.RoomID())
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// Work out if the roomserver knows everything it needs to know to auth
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// the event.
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// the event. This includes the prev_events and auth_events.
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// NOTE! This is going to include prev_events that have an empty state
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// snapshot. This is because we will need to re-request the event, and
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// it's /state_ids, in order for it to exist in the roomserver correctly
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// before the roomserver tries to work out
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stateReq := api.QueryMissingAuthPrevEventsRequest{
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RoomID: e.RoomID(),
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AuthEventIDs: e.AuthEventIDs(),
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@ -410,7 +414,7 @@ func (t *txnReq) processEvent(ctx context.Context, e gomatrixserverlib.Event, is
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if len(stateResp.MissingPrevEventIDs) > 0 {
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logger.Infof("Event refers to %d unknown prev_events", len(stateResp.MissingPrevEventIDs))
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return t.processEventWithMissingState(ctx, e, stateResp.RoomVersion, isInboundTxn)
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return t.processEventWithMissingState(ctx, e, stateResp.RoomVersion)
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}
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// pass the event to the roomserver which will do auth checks
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@ -438,7 +442,7 @@ func checkAllowedByState(e gomatrixserverlib.Event, stateEvents []gomatrixserver
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return gomatrixserverlib.Allowed(e, &authUsingState)
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}
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func (t *txnReq) processEventWithMissingState(ctx context.Context, e gomatrixserverlib.Event, roomVersion gomatrixserverlib.RoomVersion, isInboundTxn bool) error {
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func (t *txnReq) processEventWithMissingState(ctx context.Context, e gomatrixserverlib.Event, roomVersion gomatrixserverlib.RoomVersion) error {
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// Do this with a fresh context, so that we keep working even if the
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// original request times out. With any luck, by the time the remote
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// side retries, we'll have fetched the missing state.
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@ -464,39 +468,82 @@ func (t *txnReq) processEventWithMissingState(ctx context.Context, e gomatrixser
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// - fill in the gap completely then process event `e` returning no backwards extremity
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// - fail to fill in the gap and tell us to terminate the transaction err=not nil
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// - fail to fill in the gap and tell us to fetch state at the new backwards extremity, and to not terminate the transaction
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backwardsExtremity, err := t.getMissingEvents(gmectx, e, roomVersion, isInboundTxn)
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newEvents, err := t.getMissingEvents(gmectx, e, roomVersion)
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if err != nil {
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return err
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}
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if backwardsExtremity == nil {
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// we filled in the gap!
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if len(newEvents) == 0 {
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return nil
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}
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backwardsExtremity := &newEvents[0]
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newEvents = newEvents[1:]
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// at this point we know we're going to have a gap: we need to work out the room state at the new backwards extremity.
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// security: we have to do state resolution on the new backwards extremity (TODO: WHY)
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// Therefore, we cannot just query /state_ids with this event to get the state before. Instead, we need to query
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// the state AFTER all the prev_events for this event, then apply state resolution to that to get the state before the event.
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var states []*gomatrixserverlib.RespState
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needed := gomatrixserverlib.StateNeededForAuth([]gomatrixserverlib.Event{*backwardsExtremity}).Tuples()
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for _, prevEventID := range backwardsExtremity.PrevEventIDs() {
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// Look up what the state is after the backward extremity. This will either
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// come from the roomserver, if we know all the required events, or it will
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// come from a remote server via /state_ids if not.
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var prevState *gomatrixserverlib.RespState
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prevState, err = t.lookupStateAfterEvent(gmectx, roomVersion, backwardsExtremity.RoomID(), prevEventID, needed)
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if err != nil {
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util.GetLogger(ctx).WithError(err).Errorf("Failed to lookup state after prev_event: %s", prevEventID)
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return err
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}
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// Append the state onto the collected state. We'll run this through the
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// state resolution next.
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states = append(states, prevState)
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}
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// Now that we have collected all of the state from the prev_events, we'll
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// run the state through the appropriate state resolution algorithm for the
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// room. This does a couple of things:
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// 1. Ensures that the state is deduplicated fully for each state-key tuple
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// 2. Ensures that we pick the latest events from both sets, in the case that
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// one of the prev_events is quite a bit older than the others
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resolvedState, err := t.resolveStatesAndCheck(gmectx, roomVersion, states, backwardsExtremity)
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if err != nil {
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util.GetLogger(ctx).WithError(err).Errorf("Failed to resolve state conflicts for event %s", backwardsExtremity.EventID())
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return err
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}
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// pass the event along with the state to the roomserver using a background context so we don't
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// needlessly expire
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return api.SendEventWithState(context.Background(), t.rsAPI, resolvedState, e.Headered(roomVersion), t.haveEventIDs())
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// First of all, send the backward extremity into the roomserver with the
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// newly resolved state. This marks the "oldest" point in the backfill and
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// sets the baseline state for any new events after this.
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err = api.SendEventWithState(
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context.Background(),
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t.rsAPI,
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resolvedState,
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backwardsExtremity.Headered(roomVersion),
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t.haveEventIDs(),
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)
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if err != nil {
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return fmt.Errorf("api.SendEventWithState: %w", err)
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}
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// Then send all of the newer backfilled events, of which will all be newer
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// than the backward extremity, into the roomserver without state. This way
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// they will automatically fast-forward based on the room state at the
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// extremity in the last step.
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headeredNewEvents := make([]gomatrixserverlib.HeaderedEvent, len(newEvents))
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for i, newEvent := range newEvents {
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headeredNewEvents[i] = newEvent.Headered(roomVersion)
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}
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if err = api.SendEvents(
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context.Background(),
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t.rsAPI,
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append(headeredNewEvents, e.Headered(roomVersion)),
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api.DoNotSendToOtherServers,
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nil,
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); err != nil {
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return fmt.Errorf("api.SendEvents: %w", err)
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}
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return nil
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}
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// lookupStateAfterEvent returns the room state after `eventID`, which is the state before eventID with the state of `eventID` (if it's a state event)
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@ -652,11 +699,7 @@ retryAllowedState:
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// This function recursively calls txnReq.processEvent with the missing events, which will be processed before this function returns.
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// This means that we may recursively call this function, as we spider back up prev_events.
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// nolint:gocyclo
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func (t *txnReq) getMissingEvents(ctx context.Context, e gomatrixserverlib.Event, roomVersion gomatrixserverlib.RoomVersion, isInboundTxn bool) (backwardsExtremity *gomatrixserverlib.Event, err error) {
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if !isInboundTxn {
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// we've recursed here, so just take a state snapshot please!
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return &e, nil
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}
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func (t *txnReq) getMissingEvents(ctx context.Context, e gomatrixserverlib.Event, roomVersion gomatrixserverlib.RoomVersion) (newEvents []gomatrixserverlib.Event, err error) {
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logger := util.GetLogger(ctx).WithField("event_id", e.EventID()).WithField("room_id", e.RoomID())
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needed := gomatrixserverlib.StateNeededForAuth([]gomatrixserverlib.Event{e})
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// query latest events (our trusted forward extremities)
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@ -667,7 +710,7 @@ func (t *txnReq) getMissingEvents(ctx context.Context, e gomatrixserverlib.Event
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var res api.QueryLatestEventsAndStateResponse
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if err = t.rsAPI.QueryLatestEventsAndState(ctx, &req, &res); err != nil {
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logger.WithError(err).Warn("Failed to query latest events")
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return &e, nil
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return nil, err
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}
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latestEvents := make([]string, len(res.LatestEvents))
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for i := range res.LatestEvents {
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@ -726,7 +769,7 @@ func (t *txnReq) getMissingEvents(ctx context.Context, e gomatrixserverlib.Event
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logger.Infof("get_missing_events returned %d events", len(missingResp.Events))
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// topologically sort and sanity check that we are making forward progress
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newEvents := gomatrixserverlib.ReverseTopologicalOrdering(missingResp.Events, gomatrixserverlib.TopologicalOrderByPrevEvents)
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newEvents = gomatrixserverlib.ReverseTopologicalOrdering(missingResp.Events, gomatrixserverlib.TopologicalOrderByPrevEvents)
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shouldHaveSomeEventIDs := e.PrevEventIDs()
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hasPrevEvent := false
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Event:
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@ -749,16 +792,9 @@ Event:
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err: err,
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}
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}
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// process the missing events then the event which started this whole thing
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for _, ev := range append(newEvents, e) {
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err := t.processEvent(ctx, ev, false)
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if err != nil {
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return nil, err
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}
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}
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// we processed everything!
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return nil, nil
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return newEvents, nil
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}
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func (t *txnReq) lookupMissingStateViaState(ctx context.Context, roomID, eventID string, roomVersion gomatrixserverlib.RoomVersion) (
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@ -516,6 +516,23 @@ func TestTransactionFetchMissingPrevEvents(t *testing.T) {
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var rsAPI *testRoomserverAPI // ref here so we can refer to inputRoomEvents inside these functions
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rsAPI = &testRoomserverAPI{
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queryEventsByID: func(req *api.QueryEventsByIDRequest) api.QueryEventsByIDResponse {
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res := api.QueryEventsByIDResponse{}
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for _, ev := range testEvents {
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for _, id := range req.EventIDs {
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if ev.EventID() == id {
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res.Events = append(res.Events, ev)
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}
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}
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}
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return res
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},
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queryStateAfterEvents: func(req *api.QueryStateAfterEventsRequest) api.QueryStateAfterEventsResponse {
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return api.QueryStateAfterEventsResponse{
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PrevEventsExist: true,
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StateEvents: testEvents[:5],
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}
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},
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queryMissingAuthPrevEvents: func(req *api.QueryMissingAuthPrevEventsRequest) api.QueryMissingAuthPrevEventsResponse {
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missingPrevEvent := []string{"missing_prev_event"}
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if len(req.PrevEventIDs) == 1 {
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@ -122,7 +122,7 @@ func (r *Queryer) QueryMissingAuthPrevEvents(
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}
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for _, prevEventID := range request.PrevEventIDs {
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if nids, err := r.DB.EventNIDs(ctx, []string{prevEventID}); err != nil || len(nids) == 0 {
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if state, err := r.DB.StateAtEventIDs(ctx, []string{prevEventID}); err != nil || len(state) == 0 {
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response.MissingPrevEventIDs = append(response.MissingPrevEventIDs, prevEventID)
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}
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}
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