295 lines
9.2 KiB
Go
295 lines
9.2 KiB
Go
package stream
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import (
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"context"
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"fmt"
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"sync"
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"time"
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)
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// EventPublisher receives change events from Publish, and sends the events to
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// all subscribers of the event Topic.
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type EventPublisher struct {
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// snapCacheTTL controls how long we keep snapshots in our cache before
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// allowing them to be garbage collected and a new one made for subsequent
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// requests for that topic and key. In general this should be pretty short to
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// keep memory overhead of duplicated event data low - snapshots are typically
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// not that expensive, but having a cache for a few seconds can help
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// de-duplicate building the same snapshot over and over again when a
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// thundering herd of watchers all subscribe to the same topic within a few
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// seconds.
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snapCacheTTL time.Duration
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// This lock protects the topicBuffers, and snapCache
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lock sync.RWMutex
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// topicBuffers stores the head of the linked-list buffer to publish events to
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// for a topic.
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topicBuffers map[Topic]*eventBuffer
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// snapCache if a cache of EventSnapshots indexed by topic and key.
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// TODO(streaming): new snapshotCache struct for snapCache and snapCacheTTL
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snapCache map[Topic]map[string]*eventSnapshot
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subscriptions *subscriptions
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// publishCh is used to send messages from an active txn to a goroutine which
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// publishes events, so that publishing can happen asynchronously from
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// the Commit call in the FSM hot path.
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publishCh chan []Event
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snapshotHandlers SnapshotHandlers
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}
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type subscriptions struct {
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// lock for byToken. If both subscription.lock and EventPublisher.lock need
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// to be held, EventPublisher.lock MUST always be acquired first.
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lock sync.RWMutex
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// byToken is an mapping of active Subscriptions indexed by a the token and
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// a pointer to the request.
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// When the token is modified all subscriptions under that token will be
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// reloaded.
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// A subscription may be unsubscribed by using the pointer to the request.
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byToken map[string]map[*SubscribeRequest]*Subscription
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}
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// SnapshotHandlers is a mapping of Topic to a function which produces a snapshot
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// of events for the SubscribeRequest. Events are appended to the snapshot using SnapshotAppender.
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// The nil Topic is reserved and should not be used.
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type SnapshotHandlers map[Topic]SnapshotFunc
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// SnapshotFunc builds a snapshot for the subscription request, and appends the
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// events to the Snapshot using SnapshotAppender.
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// If err is not nil the SnapshotFunc must return a non-zero index.
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type SnapshotFunc func(SubscribeRequest, SnapshotAppender) (index uint64, err error)
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// SnapshotAppender appends groups of events to create a Snapshot of state.
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type SnapshotAppender interface {
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// Append events to the snapshot. Every event in the slice must have the same
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// Index, indicating that it is part of the same raft transaction.
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Append(events []Event)
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}
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// NewEventPublisher returns an EventPublisher for publishing change events.
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// Handlers are used to convert the memDB changes into events.
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// A goroutine is run in the background to publish events to all subscribes.
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// Cancelling the context will shutdown the goroutine, to free resources,
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// and stop all publishing.
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func NewEventPublisher(handlers SnapshotHandlers, snapCacheTTL time.Duration) *EventPublisher {
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e := &EventPublisher{
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snapCacheTTL: snapCacheTTL,
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topicBuffers: make(map[Topic]*eventBuffer),
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snapCache: make(map[Topic]map[string]*eventSnapshot),
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publishCh: make(chan []Event, 64),
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subscriptions: &subscriptions{
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byToken: make(map[string]map[*SubscribeRequest]*Subscription),
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},
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snapshotHandlers: handlers,
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}
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return e
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}
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// Publish events to all subscribers of the event Topic. The events will be shared
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// with all subscriptions, so the Payload used in Event.Payload must be immutable.
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func (e *EventPublisher) Publish(events []Event) {
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if len(events) > 0 {
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e.publishCh <- events
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}
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}
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// Run the event publisher until ctx is cancelled. Run should be called from a
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// goroutine to forward events from Publish to all the appropriate subscribers.
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func (e *EventPublisher) Run(ctx context.Context) {
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for {
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select {
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case <-ctx.Done():
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e.subscriptions.closeAll()
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return
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case update := <-e.publishCh:
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e.publishEvent(update)
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}
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}
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}
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// publishEvent appends the events to any applicable topic buffers. It handles
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// any closeSubscriptionPayload events by closing associated subscriptions.
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func (e *EventPublisher) publishEvent(events []Event) {
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eventsByTopic := make(map[Topic][]Event)
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for _, event := range events {
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if unsubEvent, ok := event.Payload.(closeSubscriptionPayload); ok {
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e.subscriptions.closeSubscriptionsForTokens(unsubEvent.tokensSecretIDs)
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continue
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}
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eventsByTopic[event.Topic] = append(eventsByTopic[event.Topic], event)
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}
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e.lock.Lock()
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defer e.lock.Unlock()
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for topic, events := range eventsByTopic {
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e.getTopicBuffer(topic).Append(events)
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}
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}
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// getTopicBuffer for the topic. Creates a new event buffer if one does not
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// already exist.
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//
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// EventPublisher.lock must be held to call this method.
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func (e *EventPublisher) getTopicBuffer(topic Topic) *eventBuffer {
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buf, ok := e.topicBuffers[topic]
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if !ok {
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buf = newEventBuffer()
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e.topicBuffers[topic] = buf
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}
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return buf
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}
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// Subscribe returns a new Subscription for the given request. A subscription
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// will receive an initial snapshot of events matching the request if req.Index > 0.
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// After the snapshot, events will be streamed as they are created.
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// Subscriptions may be closed, forcing the client to resubscribe (for example if
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// ACL policies changed or the state store is abandoned).
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//
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// When the caller is finished with the subscription for any reason, it must
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// call Subscription.Unsubscribe to free ACL tracking resources.
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func (e *EventPublisher) Subscribe(req *SubscribeRequest) (*Subscription, error) {
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handler, ok := e.snapshotHandlers[req.Topic]
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if !ok || req.Topic == nil {
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return nil, fmt.Errorf("unknown topic %v", req.Topic)
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}
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e.lock.Lock()
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defer e.lock.Unlock()
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topicHead := e.getTopicBuffer(req.Topic).Head()
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// If the client view is fresh, resume the stream.
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if req.Index > 0 && topicHead.HasEventIndex(req.Index) {
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buf := newEventBuffer()
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subscriptionHead := buf.Head()
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// splice the rest of the topic buffer onto the subscription buffer so
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// the subscription will receive new events.
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buf.AppendItem(topicHead.NextLink())
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return e.subscriptions.add(req, subscriptionHead), nil
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}
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snapFromCache := e.getCachedSnapshotLocked(req)
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if snapFromCache == nil {
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snap := newEventSnapshot()
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snap.appendAndSplice(*req, handler, topicHead)
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e.setCachedSnapshotLocked(req, snap)
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snapFromCache = snap
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}
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// If the request.Index is 0 the client has no view, send a full snapshot.
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if req.Index == 0 {
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return e.subscriptions.add(req, snapFromCache.First), nil
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}
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// otherwise the request has an Index, the client view is stale and must be reset
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// with a NewSnapshotToFollow event.
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result := newEventSnapshot()
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result.buffer.Append([]Event{{
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Topic: req.Topic,
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Payload: newSnapshotToFollow{},
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}})
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result.buffer.AppendItem(snapFromCache.First)
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return e.subscriptions.add(req, result.First), nil
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}
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func (s *subscriptions) add(req *SubscribeRequest, head *bufferItem) *Subscription {
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sub := newSubscription(*req, head, s.unsubscribe(req))
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s.lock.Lock()
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defer s.lock.Unlock()
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subsByToken, ok := s.byToken[req.Token]
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if !ok {
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subsByToken = make(map[*SubscribeRequest]*Subscription)
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s.byToken[req.Token] = subsByToken
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}
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subsByToken[req] = sub
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return sub
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}
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func (s *subscriptions) closeSubscriptionsForTokens(tokenSecretIDs []string) {
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s.lock.RLock()
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defer s.lock.RUnlock()
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for _, secretID := range tokenSecretIDs {
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if subs, ok := s.byToken[secretID]; ok {
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for _, sub := range subs {
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sub.forceClose()
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}
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}
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}
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}
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// unsubscribe returns a function that the subscription will call to remove
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// itself from the subsByToken.
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// This function is returned as a closure so that the caller doesn't need to keep
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// track of the SubscriptionRequest, and can not accidentally call unsubscribe with the
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// wrong pointer.
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func (s *subscriptions) unsubscribe(req *SubscribeRequest) func() {
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return func() {
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s.lock.Lock()
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defer s.lock.Unlock()
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subsByToken, ok := s.byToken[req.Token]
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if !ok {
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return
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}
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delete(subsByToken, req)
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if len(subsByToken) == 0 {
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delete(s.byToken, req.Token)
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}
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}
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}
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func (s *subscriptions) closeAll() {
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s.lock.Lock()
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defer s.lock.Unlock()
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for _, byRequest := range s.byToken {
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for _, sub := range byRequest {
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sub.forceClose()
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}
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}
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}
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// EventPublisher.lock must be held to call this method.
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func (e *EventPublisher) getCachedSnapshotLocked(req *SubscribeRequest) *eventSnapshot {
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topicSnaps, ok := e.snapCache[req.Topic]
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if !ok {
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topicSnaps = make(map[string]*eventSnapshot)
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e.snapCache[req.Topic] = topicSnaps
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}
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snap, ok := topicSnaps[snapCacheKey(req)]
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if ok && snap.err() == nil {
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return snap
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}
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return nil
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}
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// EventPublisher.lock must be held to call this method.
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func (e *EventPublisher) setCachedSnapshotLocked(req *SubscribeRequest, snap *eventSnapshot) {
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if e.snapCacheTTL == 0 {
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return
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}
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e.snapCache[req.Topic][snapCacheKey(req)] = snap
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// Setup a cache eviction
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time.AfterFunc(e.snapCacheTTL, func() {
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e.lock.Lock()
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defer e.lock.Unlock()
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delete(e.snapCache[req.Topic], snapCacheKey(req))
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})
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}
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func snapCacheKey(req *SubscribeRequest) string {
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return fmt.Sprintf(req.Namespace + "/" + req.Key)
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}
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