telegraf/plugins/inputs/kafka_consumer/kafka_consumer.go

353 lines
8.5 KiB
Go
Raw Normal View History

//go:generate ../../../tools/readme_config_includer/generator
package kafka_consumer
import (
"context"
_ "embed"
2017-03-25 03:03:36 +08:00
"fmt"
"strings"
"sync"
"time"
"github.com/Shopify/sarama"
"github.com/influxdata/telegraf"
"github.com/influxdata/telegraf/config"
"github.com/influxdata/telegraf/internal"
"github.com/influxdata/telegraf/plugins/common/kafka"
2016-01-21 02:57:35 +08:00
"github.com/influxdata/telegraf/plugins/inputs"
"github.com/influxdata/telegraf/plugins/parsers"
)
2022-05-27 21:13:47 +08:00
// DO NOT REMOVE THE NEXT TWO LINES! This is required to embed the sampleConfig data.
//go:embed sample.conf
var sampleConfig string
const (
defaultMaxUndeliveredMessages = 1000
defaultMaxProcessingTime = config.Duration(100 * time.Millisecond)
defaultConsumerGroup = "telegraf_metrics_consumers"
reconnectDelay = 5 * time.Second
)
type empty struct{}
type semaphore chan empty
type KafkaConsumer struct {
Brokers []string `toml:"brokers"`
ConsumerGroup string `toml:"consumer_group"`
MaxMessageLen int `toml:"max_message_len"`
MaxUndeliveredMessages int `toml:"max_undelivered_messages"`
MaxProcessingTime config.Duration `toml:"max_processing_time"`
Offset string `toml:"offset"`
BalanceStrategy string `toml:"balance_strategy"`
Topics []string `toml:"topics"`
TopicTag string `toml:"topic_tag"`
kafka.ReadConfig
Log telegraf.Logger `toml:"-"`
ConsumerCreator ConsumerGroupCreator `toml:"-"`
consumer ConsumerGroup
config *sarama.Config
parser parsers.Parser
wg sync.WaitGroup
cancel context.CancelFunc
}
type ConsumerGroup interface {
Consume(ctx context.Context, topics []string, handler sarama.ConsumerGroupHandler) error
Errors() <-chan error
Close() error
}
type ConsumerGroupCreator interface {
Create(brokers []string, group string, cfg *sarama.Config) (ConsumerGroup, error)
}
type SaramaCreator struct{}
func (*SaramaCreator) Create(brokers []string, group string, cfg *sarama.Config) (ConsumerGroup, error) {
return sarama.NewConsumerGroup(brokers, group, cfg)
}
func (*KafkaConsumer) SampleConfig() string {
return sampleConfig
}
func (k *KafkaConsumer) SetParser(parser parsers.Parser) {
k.parser = parser
}
func (k *KafkaConsumer) Init() error {
if k.MaxUndeliveredMessages == 0 {
k.MaxUndeliveredMessages = defaultMaxUndeliveredMessages
}
if time.Duration(k.MaxProcessingTime) == 0 {
k.MaxProcessingTime = defaultMaxProcessingTime
}
if k.ConsumerGroup == "" {
k.ConsumerGroup = defaultConsumerGroup
}
cfg := sarama.NewConfig()
// Kafka version 0.10.2.0 is required for consumer groups.
cfg.Version = sarama.V0_10_2_0
if err := k.SetConfig(cfg); err != nil {
return err
}
switch strings.ToLower(k.Offset) {
case "oldest", "":
cfg.Consumer.Offsets.Initial = sarama.OffsetOldest
case "newest":
cfg.Consumer.Offsets.Initial = sarama.OffsetNewest
default:
return fmt.Errorf("invalid offset %q", k.Offset)
}
switch strings.ToLower(k.BalanceStrategy) {
case "range", "":
cfg.Consumer.Group.Rebalance.Strategy = sarama.BalanceStrategyRange
case "roundrobin":
cfg.Consumer.Group.Rebalance.Strategy = sarama.BalanceStrategyRoundRobin
case "sticky":
cfg.Consumer.Group.Rebalance.Strategy = sarama.BalanceStrategySticky
default:
return fmt.Errorf("invalid balance strategy %q", k.BalanceStrategy)
}
if k.ConsumerCreator == nil {
k.ConsumerCreator = &SaramaCreator{}
}
cfg.Consumer.MaxProcessingTime = time.Duration(k.MaxProcessingTime)
k.config = cfg
return nil
}
func (k *KafkaConsumer) Start(acc telegraf.Accumulator) error {
var err error
k.consumer, err = k.ConsumerCreator.Create(
k.Brokers,
k.ConsumerGroup,
k.config,
)
if err != nil {
return err
}
ctx, cancel := context.WithCancel(context.Background())
k.cancel = cancel
// Start consumer goroutine
k.wg.Add(1)
go func() {
defer k.wg.Done()
for ctx.Err() == nil {
handler := NewConsumerGroupHandler(acc, k.MaxUndeliveredMessages, k.parser, k.Log)
handler.MaxMessageLen = k.MaxMessageLen
handler.TopicTag = k.TopicTag
err := k.consumer.Consume(ctx, k.Topics, handler)
if err != nil {
acc.AddError(err)
// Ignore returned error as we cannot do anything about it anyway
//nolint:errcheck,revive
internal.SleepContext(ctx, reconnectDelay)
}
}
err = k.consumer.Close()
if err != nil {
acc.AddError(err)
}
}()
k.wg.Add(1)
go func() {
defer k.wg.Done()
for err := range k.consumer.Errors() {
acc.AddError(err)
}
}()
return nil
}
func (k *KafkaConsumer) Gather(_ telegraf.Accumulator) error {
return nil
}
func (k *KafkaConsumer) Stop() {
k.cancel()
k.wg.Wait()
}
// Message is an aggregate type binding the Kafka message and the session so
// that offsets can be updated.
type Message struct {
message *sarama.ConsumerMessage
session sarama.ConsumerGroupSession
}
func NewConsumerGroupHandler(acc telegraf.Accumulator, maxUndelivered int, parser parsers.Parser, log telegraf.Logger) *ConsumerGroupHandler {
handler := &ConsumerGroupHandler{
acc: acc.WithTracking(maxUndelivered),
sem: make(chan empty, maxUndelivered),
undelivered: make(map[telegraf.TrackingID]Message, maxUndelivered),
parser: parser,
log: log,
}
return handler
}
// ConsumerGroupHandler is a sarama.ConsumerGroupHandler implementation.
type ConsumerGroupHandler struct {
MaxMessageLen int
TopicTag string
acc telegraf.TrackingAccumulator
sem semaphore
parser parsers.Parser
wg sync.WaitGroup
cancel context.CancelFunc
mu sync.Mutex
undelivered map[telegraf.TrackingID]Message
log telegraf.Logger
}
// Setup is called once when a new session is opened. It setups up the handler
// and begins processing delivered messages.
func (h *ConsumerGroupHandler) Setup(sarama.ConsumerGroupSession) error {
h.undelivered = make(map[telegraf.TrackingID]Message)
ctx, cancel := context.WithCancel(context.Background())
h.cancel = cancel
h.wg.Add(1)
go func() {
defer h.wg.Done()
h.run(ctx)
}()
return nil
}
// Run processes any delivered metrics during the lifetime of the session.
func (h *ConsumerGroupHandler) run(ctx context.Context) {
for {
select {
case <-ctx.Done():
return
case track := <-h.acc.Delivered():
h.onDelivery(track)
}
}
}
func (h *ConsumerGroupHandler) onDelivery(track telegraf.DeliveryInfo) {
h.mu.Lock()
defer h.mu.Unlock()
msg, ok := h.undelivered[track.ID()]
if !ok {
h.log.Errorf("Could not mark message delivered: %d", track.ID())
return
}
if track.Delivered() {
msg.session.MarkMessage(msg.message, "")
}
delete(h.undelivered, track.ID())
<-h.sem
}
// Reserve blocks until there is an available slot for a new message.
func (h *ConsumerGroupHandler) Reserve(ctx context.Context) error {
select {
case <-ctx.Done():
return ctx.Err()
case h.sem <- empty{}:
return nil
}
}
func (h *ConsumerGroupHandler) release() {
<-h.sem
}
// Handle processes a message and if successful saves it to be acknowledged
// after delivery.
func (h *ConsumerGroupHandler) Handle(session sarama.ConsumerGroupSession, msg *sarama.ConsumerMessage) error {
if h.MaxMessageLen != 0 && len(msg.Value) > h.MaxMessageLen {
session.MarkMessage(msg, "")
h.release()
return fmt.Errorf("message exceeds max_message_len (actual %d, max %d)",
len(msg.Value), h.MaxMessageLen)
}
metrics, err := h.parser.Parse(msg.Value)
if err != nil {
h.release()
return err
}
if len(h.TopicTag) > 0 {
for _, metric := range metrics {
metric.AddTag(h.TopicTag, msg.Topic)
}
}
h.mu.Lock()
id := h.acc.AddTrackingMetricGroup(metrics)
h.undelivered[id] = Message{session: session, message: msg}
h.mu.Unlock()
return nil
}
// ConsumeClaim is called once each claim in a goroutine and must be
// thread-safe. Should run until the claim is closed.
func (h *ConsumerGroupHandler) ConsumeClaim(session sarama.ConsumerGroupSession, claim sarama.ConsumerGroupClaim) error {
ctx := session.Context()
for {
err := h.Reserve(ctx)
if err != nil {
return err
}
select {
case <-ctx.Done():
return nil
case msg, ok := <-claim.Messages():
if !ok {
return nil
}
err := h.Handle(session, msg)
if err != nil {
h.acc.AddError(err)
}
}
}
}
// Cleanup stops the internal goroutine and is called after all ConsumeClaim
// functions have completed.
func (h *ConsumerGroupHandler) Cleanup(sarama.ConsumerGroupSession) error {
h.cancel()
h.wg.Wait()
return nil
}
func init() {
inputs.Add("kafka_consumer", func() telegraf.Input {
return &KafkaConsumer{}
})
}