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Copilot 75e32f4d87 Implement NATS connection pooling and fix connection leaks (#2840)
* Initial plan

* Implement NATS connection pool with configuration options

Co-authored-by: asim <17530+asim@users.noreply.github.com>

* Implement connection pool for transport/nats

Co-authored-by: asim <17530+asim@users.noreply.github.com>

* Fix connection leaks in events/natsjs and config/source/nats

Co-authored-by: asim <17530+asim@users.noreply.github.com>

* Fix race condition in connection pool lastUsed field access

Co-authored-by: asim <17530+asim@users.noreply.github.com>

* Remove unused maxIdle field from connection pools

Co-authored-by: asim <17530+asim@users.noreply.github.com>

---------

Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com>
Co-authored-by: asim <17530+asim@users.noreply.github.com>
2026-02-03 11:43:45 +00:00

288 行
6.6 KiB
Go

// Package natsjs provides a NATS Jetstream implementation of the events.Stream interface.
package natsjs
import (
"context"
"encoding/json"
"fmt"
"io"
"strings"
"time"
"github.com/google/uuid"
nats "github.com/nats-io/nats.go"
"github.com/pkg/errors"
"go-micro.dev/v5/events"
"go-micro.dev/v5/logger"
)
const (
defaultClusterID = "micro"
)
// NewStream returns an initialized nats stream or an error if the connection to the nats
// server could not be established.
func NewStream(opts ...Option) (events.Stream, error) {
// parse the options
options := Options{
ClientID: uuid.New().String(),
ClusterID: defaultClusterID,
Logger: logger.DefaultLogger,
}
for _, o := range opts {
o(&options)
}
s := &stream{opts: options}
conn, natsJetStreamCtx, err := connectToNatsJetStream(options)
if err != nil {
return nil, fmt.Errorf("error connecting to nats cluster %v: %w", options.ClusterID, err)
}
s.conn = conn
s.natsJetStreamCtx = natsJetStreamCtx
return s, nil
}
type stream struct {
opts Options
conn *nats.Conn // store connection for lifecycle management
natsJetStreamCtx nats.JetStreamContext
}
func connectToNatsJetStream(options Options) (*nats.Conn, nats.JetStreamContext, error) {
nopts := nats.GetDefaultOptions()
if options.TLSConfig != nil {
nopts.Secure = true
nopts.TLSConfig = options.TLSConfig
}
if options.NkeyConfig != "" {
nopts.Nkey = options.NkeyConfig
}
if len(options.Address) > 0 {
nopts.Servers = strings.Split(options.Address, ",")
}
if options.Name != "" {
nopts.Name = options.Name
}
if options.Username != "" && options.Password != "" {
nopts.User = options.Username
nopts.Password = options.Password
}
conn, err := nopts.Connect()
if err != nil {
tls := nopts.TLSConfig != nil
return nil, nil, fmt.Errorf("error connecting to nats at %v with tls enabled (%v): %w", options.Address, tls, err)
}
js, err := conn.JetStream()
if err != nil {
conn.Close() // Close connection if JetStream context fails
return nil, nil, fmt.Errorf("error while obtaining JetStream context: %w", err)
}
return conn, js, nil
}
// Publish a message to a topic.
func (s *stream) Publish(topic string, msg interface{}, opts ...events.PublishOption) error {
// validate the topic
if len(topic) == 0 {
return events.ErrMissingTopic
}
// parse the options
options := events.PublishOptions{
Timestamp: time.Now(),
}
for _, o := range opts {
o(&options)
}
// encode the message if it's not already encoded
var payload []byte
if p, ok := msg.([]byte); ok {
payload = p
} else {
p, err := json.Marshal(msg)
if err != nil {
return events.ErrEncodingMessage
}
payload = p
}
// construct the event
event := &events.Event{
ID: uuid.New().String(),
Topic: topic,
Timestamp: options.Timestamp,
Metadata: options.Metadata,
Payload: payload,
}
// serialize the event to bytes
bytes, err := json.Marshal(event)
if err != nil {
return errors.Wrap(err, "Error encoding event")
}
// publish the event to the topic's channel
// publish synchronously if configured
if s.opts.SyncPublish {
_, err := s.natsJetStreamCtx.Publish(event.Topic, bytes)
if err != nil {
err = errors.Wrap(err, "Error publishing message to topic")
}
return err
}
// publish asynchronously by default
if _, err := s.natsJetStreamCtx.PublishAsync(event.Topic, bytes); err != nil {
return errors.Wrap(err, "Error publishing message to topic")
}
return nil
}
// Consume from a topic.
func (s *stream) Consume(topic string, opts ...events.ConsumeOption) (<-chan events.Event, error) {
// validate the topic
if len(topic) == 0 {
return nil, events.ErrMissingTopic
}
log := s.opts.Logger
// parse the options
options := events.ConsumeOptions{
Group: uuid.New().String(),
}
for _, o := range opts {
o(&options)
}
// setup the subscriber
channel := make(chan events.Event)
handleMsg := func(msg *nats.Msg) {
ctx, cancel := context.WithCancel(context.TODO())
defer cancel()
// decode the message
var evt events.Event
if err := json.Unmarshal(msg.Data, &evt); err != nil {
log.Logf(logger.ErrorLevel, "Error decoding message: %v", err)
// not acknowledging the message is the way to indicate an error occurred
return
}
if options.AutoAck {
// set up the ack funcs
evt.SetAckFunc(func() error {
return msg.Ack()
})
evt.SetNackFunc(func() error {
return msg.Nak()
})
} else {
// set up the ack funcs
evt.SetAckFunc(func() error {
return nil
})
evt.SetNackFunc(func() error {
return nil
})
}
// push onto the channel and wait for the consumer to take the event off before we acknowledge it.
channel <- evt
if !options.AutoAck {
return
}
if err := msg.Ack(nats.Context(ctx)); err != nil {
log.Logf(logger.ErrorLevel, "Error acknowledging message: %v", err)
}
}
// ensure that a stream exists for that topic
_, err := s.natsJetStreamCtx.StreamInfo(topic)
if err != nil {
cfg := &nats.StreamConfig{
Name: topic,
}
if s.opts.RetentionPolicy != 0 {
cfg.Retention = nats.RetentionPolicy(s.opts.RetentionPolicy)
}
if s.opts.MaxAge > 0 {
cfg.MaxAge = s.opts.MaxAge
}
_, err = s.natsJetStreamCtx.AddStream(cfg)
if err != nil {
return nil, errors.Wrap(err, "Stream did not exist and adding a stream failed")
}
}
// setup the options
subOpts := []nats.SubOpt{}
if options.CustomRetries {
subOpts = append(subOpts, nats.MaxDeliver(options.GetRetryLimit()))
}
if options.AutoAck {
subOpts = append(subOpts, nats.AckAll())
} else {
subOpts = append(subOpts, nats.AckExplicit())
}
if !options.Offset.IsZero() {
subOpts = append(subOpts, nats.StartTime(options.Offset))
} else {
subOpts = append(subOpts, nats.DeliverNew())
}
if options.AckWait > 0 {
subOpts = append(subOpts, nats.AckWait(options.AckWait))
}
// connect the subscriber via a queue group only if durable streams are enabled
if !s.opts.DisableDurableStreams {
subOpts = append(subOpts, nats.Durable(options.Group))
_, err = s.natsJetStreamCtx.QueueSubscribe(topic, options.Group, handleMsg, subOpts...)
} else {
subOpts = append(subOpts, nats.ConsumerName(options.Group))
_, err = s.natsJetStreamCtx.Subscribe(topic, handleMsg, subOpts...)
}
if err != nil {
return nil, errors.Wrap(err, "Error subscribing to topic")
}
return channel, nil
}
// Close implements io.Closer and closes the underlying NATS connection.
// This method is optional but recommended to prevent connection leaks.
func (s *stream) Close() error {
if s.conn != nil {
s.conn.Close()
s.conn = nil
}
return nil
}
// Ensure stream implements io.Closer
var _ io.Closer = (*stream)(nil)