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179 lines
4.2 KiB
179 lines
4.2 KiB
package events
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import (
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"fmt"
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"sync"
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"github.com/sirupsen/logrus"
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)
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// Broadcaster sends events to multiple, reliable Sinks. The goal of this
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// component is to dispatch events to configured endpoints. Reliability can be
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// provided by wrapping incoming sinks.
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type Broadcaster struct {
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sinks []Sink
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events chan Event
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adds chan configureRequest
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removes chan configureRequest
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shutdown chan struct{}
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closed chan struct{}
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once sync.Once
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}
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// NewBroadcaster appends one or more sinks to the list of sinks. The
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// broadcaster behavior will be affected by the properties of the sink.
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// Generally, the sink should accept all messages and deal with reliability on
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// its own. Use of EventQueue and RetryingSink should be used here.
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func NewBroadcaster(sinks ...Sink) *Broadcaster {
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b := Broadcaster{
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sinks: sinks,
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events: make(chan Event),
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adds: make(chan configureRequest),
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removes: make(chan configureRequest),
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shutdown: make(chan struct{}),
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closed: make(chan struct{}),
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}
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// Start the broadcaster
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go b.run()
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return &b
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}
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// Write accepts an event to be dispatched to all sinks. This method will never
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// fail and should never block (hopefully!). The caller cedes the memory to the
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// broadcaster and should not modify it after calling write.
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func (b *Broadcaster) Write(event Event) error {
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select {
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case b.events <- event:
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case <-b.closed:
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return ErrSinkClosed
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}
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return nil
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}
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// Add the sink to the broadcaster.
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//
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// The provided sink must be comparable with equality. Typically, this just
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// works with a regular pointer type.
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func (b *Broadcaster) Add(sink Sink) error {
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return b.configure(b.adds, sink)
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}
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// Remove the provided sink.
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func (b *Broadcaster) Remove(sink Sink) error {
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return b.configure(b.removes, sink)
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}
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type configureRequest struct {
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sink Sink
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response chan error
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}
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func (b *Broadcaster) configure(ch chan configureRequest, sink Sink) error {
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response := make(chan error, 1)
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for {
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select {
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case ch <- configureRequest{
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sink: sink,
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response: response}:
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ch = nil
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case err := <-response:
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return err
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case <-b.closed:
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return ErrSinkClosed
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}
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}
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}
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// Close the broadcaster, ensuring that all messages are flushed to the
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// underlying sink before returning.
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func (b *Broadcaster) Close() error {
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b.once.Do(func() {
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close(b.shutdown)
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})
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<-b.closed
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return nil
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}
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// run is the main broadcast loop, started when the broadcaster is created.
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// Under normal conditions, it waits for events on the event channel. After
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// Close is called, this goroutine will exit.
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func (b *Broadcaster) run() {
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defer close(b.closed)
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remove := func(target Sink) {
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for i, sink := range b.sinks {
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if sink == target {
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b.sinks = append(b.sinks[:i], b.sinks[i+1:]...)
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break
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}
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}
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}
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for {
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select {
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case event := <-b.events:
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for _, sink := range b.sinks {
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if err := sink.Write(event); err != nil {
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if err == ErrSinkClosed {
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// remove closed sinks
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remove(sink)
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continue
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}
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logrus.WithField("event", event).WithField("events.sink", sink).WithError(err).
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Errorf("broadcaster: dropping event")
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}
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}
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case request := <-b.adds:
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// while we have to iterate for add/remove, common iteration for
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// send is faster against slice.
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var found bool
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for _, sink := range b.sinks {
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if request.sink == sink {
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found = true
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break
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}
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}
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if !found {
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b.sinks = append(b.sinks, request.sink)
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}
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// b.sinks[request.sink] = struct{}{}
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request.response <- nil
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case request := <-b.removes:
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remove(request.sink)
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request.response <- nil
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case <-b.shutdown:
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// close all the underlying sinks
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for _, sink := range b.sinks {
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if err := sink.Close(); err != nil && err != ErrSinkClosed {
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logrus.WithField("events.sink", sink).WithError(err).
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Errorf("broadcaster: closing sink failed")
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}
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}
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return
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}
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}
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}
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func (b *Broadcaster) String() string {
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// Serialize copy of this broadcaster without the sync.Once, to avoid
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// a data race.
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b2 := map[string]interface{}{
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"sinks": b.sinks,
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"events": b.events,
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"adds": b.adds,
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"removes": b.removes,
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"shutdown": b.shutdown,
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"closed": b.closed,
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}
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return fmt.Sprint(b2)
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}
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