319 lines
8.9 KiB
Go
319 lines
8.9 KiB
Go
package kgo
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import (
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"context"
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"strconv"
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"sync"
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"time"
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"github.com/twmb/franz-go/pkg/kadm"
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"github.com/twmb/franz-go/pkg/kgo"
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"go.unistack.org/micro/v3/broker"
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"go.unistack.org/micro/v3/logger"
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"go.unistack.org/micro/v3/metadata"
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"go.unistack.org/micro/v3/semconv"
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"go.unistack.org/micro/v3/tracer"
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)
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type tp struct {
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t string
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p int32
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}
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type consumer struct {
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c *kgo.Client
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topic string
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partition int32
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htracer *hookTracer
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opts broker.SubscribeOptions
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kopts broker.Options
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handler broker.Handler
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quit chan struct{}
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done chan struct{}
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recs chan kgo.FetchTopicPartition
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}
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type Subscriber struct {
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c *kgo.Client
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topic string
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htracer *hookTracer
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opts broker.SubscribeOptions
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kopts broker.Options
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handler broker.Handler
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closed bool
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done chan struct{}
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consumers map[tp]*consumer
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sync.RWMutex
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}
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func (s *Subscriber) Client() *kgo.Client {
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return s.c
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}
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func (s *Subscriber) Options() broker.SubscribeOptions {
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return s.opts
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}
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func (s *Subscriber) Topic() string {
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return s.topic
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}
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func (s *Subscriber) Unsubscribe(ctx context.Context) error {
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if s.closed {
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return nil
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}
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select {
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// case <-ctx.Done():
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// return ctx.Err()
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default:
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s.c.PauseFetchTopics(s.topic)
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s.c.CloseAllowingRebalance()
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kc := make(map[string][]int32)
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for ctp := range s.consumers {
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kc[ctp.t] = append(kc[ctp.t], ctp.p)
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}
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s.killConsumers(ctx, kc)
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close(s.done)
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s.closed = true
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s.c.ResumeFetchTopics(s.topic)
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}
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return nil
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}
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func (s *Subscriber) poll(ctx context.Context) {
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maxInflight := DefaultSubscribeMaxInflight
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if s.opts.Context != nil {
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if n, ok := s.opts.Context.Value(subscribeMaxInflightKey{}).(int); n > 0 && ok {
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maxInflight = n
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}
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}
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go func() {
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ac := kadm.NewClient(s.c)
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ticker := time.NewTicker(DefaultStatsInterval)
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for {
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select {
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case <-ctx.Done():
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ticker.Stop()
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return
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case <-ticker.C:
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dgls, err := ac.Lag(ctx, s.opts.Group)
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if err != nil || !dgls.Ok() {
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continue
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}
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dgl, ok := dgls[s.opts.Group]
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if !ok {
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continue
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}
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lmap, ok := dgl.Lag[s.topic]
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if !ok {
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continue
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}
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s.Lock()
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for p, l := range lmap {
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s.kopts.Meter.Counter(semconv.BrokerGroupLag, "topic", s.topic, "group", s.opts.Group, "partition", strconv.Itoa(int(p)), "lag", strconv.Itoa(int(l.Lag)))
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}
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s.Unlock()
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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 <-ctx.Done():
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s.c.CloseAllowingRebalance()
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return
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case <-s.done:
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return
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default:
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fetches := s.c.PollRecords(ctx, maxInflight)
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if !s.closed && fetches.IsClientClosed() {
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s.closed = true
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return
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}
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fetches.EachError(func(t string, p int32, err error) {
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s.kopts.Logger.Fatalf(ctx, "[kgo] fetch topic %s partition %d err: %v", t, p, err)
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})
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fetches.EachPartition(func(p kgo.FetchTopicPartition) {
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tp := tp{p.Topic, p.Partition}
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s.consumers[tp].recs <- p
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})
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s.c.AllowRebalance()
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}
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}
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}
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func (s *Subscriber) killConsumers(ctx context.Context, lost map[string][]int32) {
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var wg sync.WaitGroup
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defer wg.Wait()
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for topic, partitions := range lost {
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for _, partition := range partitions {
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tp := tp{topic, partition}
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pc := s.consumers[tp]
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delete(s.consumers, tp)
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close(pc.quit)
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s.kopts.Logger.Debugf(ctx, "[kgo] waiting for work to finish topic %s partition %d", topic, partition)
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wg.Add(1)
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go func() { <-pc.done; wg.Done() }()
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}
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}
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}
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func (s *Subscriber) lost(ctx context.Context, _ *kgo.Client, lost map[string][]int32) {
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s.kopts.Logger.Debugf(ctx, "[kgo] lost %#+v", lost)
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s.killConsumers(ctx, lost)
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}
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func (s *Subscriber) revoked(ctx context.Context, c *kgo.Client, revoked map[string][]int32) {
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s.kopts.Logger.Debugf(ctx, "[kgo] revoked %#+v", revoked)
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s.killConsumers(ctx, revoked)
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if err := c.CommitMarkedOffsets(ctx); err != nil {
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s.kopts.Logger.Errorf(ctx, "[kgo] revoked CommitMarkedOffsets err: %v", err)
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}
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}
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func (s *Subscriber) assigned(_ context.Context, c *kgo.Client, assigned map[string][]int32) {
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for topic, partitions := range assigned {
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for _, partition := range partitions {
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pc := &consumer{
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c: c,
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topic: topic,
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partition: partition,
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htracer: s.htracer,
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quit: make(chan struct{}),
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done: make(chan struct{}),
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recs: make(chan kgo.FetchTopicPartition, 100),
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handler: s.handler,
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kopts: s.kopts,
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opts: s.opts,
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}
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s.Lock()
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s.consumers[tp{topic, partition}] = pc
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s.Unlock()
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go pc.consume()
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}
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}
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}
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func (pc *consumer) consume() {
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defer close(pc.done)
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pc.kopts.Logger.Debugf(pc.kopts.Context, "starting, topic %s partition %d", pc.topic, pc.partition)
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defer pc.kopts.Logger.Debugf(pc.kopts.Context, "killing, topic %s partition %d", pc.topic, pc.partition)
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eh := pc.kopts.ErrorHandler
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if pc.opts.ErrorHandler != nil {
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eh = pc.opts.ErrorHandler
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}
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for {
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select {
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case <-pc.quit:
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return
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case p := <-pc.recs:
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for _, record := range p.Records {
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ctx, sp := pc.htracer.WithProcessSpan(record)
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ts := time.Now()
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pc.kopts.Meter.Counter(semconv.SubscribeMessageInflight, "endpoint", record.Topic, "topic", record.Topic).Inc()
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p := eventPool.Get().(*event)
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p.msg.Header = nil
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p.msg.Body = nil
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p.topic = record.Topic
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p.err = nil
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p.ack = false
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p.msg.Header = metadata.New(len(record.Headers))
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p.ctx = ctx
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for _, hdr := range record.Headers {
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p.msg.Header.Set(hdr.Key, string(hdr.Value))
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}
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if pc.kopts.Codec.String() == "noop" {
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p.msg.Body = record.Value
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} else if pc.opts.BodyOnly {
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p.msg.Body = record.Value
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} else {
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sp.AddEvent("codec unmarshal start")
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err := pc.kopts.Codec.Unmarshal(record.Value, p.msg)
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sp.AddEvent("codec unmarshal stop")
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if err != nil {
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sp.SetStatus(tracer.SpanStatusError, err.Error())
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pc.kopts.Meter.Counter(semconv.SubscribeMessageTotal, "endpoint", record.Topic, "topic", record.Topic, "status", "failure").Inc()
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p.err = err
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p.msg.Body = record.Value
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if eh != nil {
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_ = eh(p)
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pc.kopts.Meter.Counter(semconv.SubscribeMessageInflight, "endpoint", record.Topic, "topic", record.Topic).Dec()
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if p.ack {
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pc.c.MarkCommitRecords(record)
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} else {
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eventPool.Put(p)
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pc.kopts.Logger.Fatalf(pc.kopts.Context, "[kgo] ErrLostMessage wtf?")
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return
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}
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eventPool.Put(p)
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te := time.Since(ts)
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pc.kopts.Meter.Summary(semconv.SubscribeMessageLatencyMicroseconds, "endpoint", record.Topic, "topic", record.Topic).Update(te.Seconds())
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pc.kopts.Meter.Histogram(semconv.SubscribeMessageDurationSeconds, "endpoint", record.Topic, "topic", record.Topic).Update(te.Seconds())
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continue
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} else {
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if pc.kopts.Logger.V(logger.ErrorLevel) {
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pc.kopts.Logger.Errorf(pc.kopts.Context, "[kgo]: failed to unmarshal: %v", err)
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}
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}
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te := time.Since(ts)
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pc.kopts.Meter.Counter(semconv.SubscribeMessageInflight, "endpoint", record.Topic, "topic", record.Topic).Dec()
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pc.kopts.Meter.Summary(semconv.SubscribeMessageLatencyMicroseconds, "endpoint", record.Topic, "topic", record.Topic).Update(te.Seconds())
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pc.kopts.Meter.Histogram(semconv.SubscribeMessageDurationSeconds, "endpoint", record.Topic, "topic", record.Topic).Update(te.Seconds())
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eventPool.Put(p)
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pc.kopts.Logger.Fatalf(pc.kopts.Context, "[kgo] Unmarshal err not handled wtf?")
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sp.Finish()
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return
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}
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}
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sp.AddEvent("handler start")
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err := pc.handler(p)
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sp.AddEvent("handler stop")
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if err == nil {
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pc.kopts.Meter.Counter(semconv.SubscribeMessageTotal, "endpoint", record.Topic, "topic", record.Topic, "status", "success").Inc()
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} else {
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sp.SetStatus(tracer.SpanStatusError, err.Error())
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pc.kopts.Meter.Counter(semconv.SubscribeMessageTotal, "endpoint", record.Topic, "topic", record.Topic, "status", "failure").Inc()
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}
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pc.kopts.Meter.Counter(semconv.SubscribeMessageInflight, "endpoint", record.Topic, "topic", record.Topic).Dec()
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if err == nil && pc.opts.AutoAck {
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p.ack = true
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} else if err != nil {
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p.err = err
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if eh != nil {
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sp.AddEvent("error handler start")
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_ = eh(p)
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sp.AddEvent("error handler stop")
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} else {
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if pc.kopts.Logger.V(logger.ErrorLevel) {
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pc.kopts.Logger.Errorf(pc.kopts.Context, "[kgo]: subscriber error: %v", err)
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}
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}
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}
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te := time.Since(ts)
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pc.kopts.Meter.Summary(semconv.SubscribeMessageLatencyMicroseconds, "endpoint", record.Topic, "topic", record.Topic).Update(te.Seconds())
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pc.kopts.Meter.Histogram(semconv.SubscribeMessageDurationSeconds, "endpoint", record.Topic, "topic", record.Topic).Update(te.Seconds())
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if p.ack {
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eventPool.Put(p)
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pc.c.MarkCommitRecords(record)
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} else {
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eventPool.Put(p)
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pc.kopts.Logger.Fatalf(pc.kopts.Context, "[kgo] ErrLostMessage wtf?")
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sp.SetStatus(tracer.SpanStatusError, "ErrLostMessage")
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sp.Finish()
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return
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}
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sp.Finish()
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}
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}
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}
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}
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