286 lines
7.3 KiB
Go
286 lines
7.3 KiB
Go
package kafka
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import (
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"crypto/tls"
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"fmt"
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"strings"
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"github.com/influxdata/telegraf"
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tlsint "github.com/influxdata/telegraf/internal/tls"
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"github.com/influxdata/telegraf/plugins/outputs"
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"github.com/influxdata/telegraf/plugins/serializers"
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"github.com/Shopify/sarama"
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)
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var ValidTopicSuffixMethods = []string{
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"",
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"measurement",
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"tags",
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}
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type (
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Kafka struct {
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// Kafka brokers to send metrics to
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Brokers []string
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// Kafka topic
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Topic string
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// Kafka client id
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ClientID string `toml:"client_id"`
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// Kafka topic suffix option
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TopicSuffix TopicSuffix `toml:"topic_suffix"`
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// Routing Key Tag
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RoutingTag string `toml:"routing_tag"`
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// Compression Codec Tag
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CompressionCodec int
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// RequiredAcks Tag
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RequiredAcks int
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// MaxRetry Tag
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MaxRetry int
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// Legacy TLS config options
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// TLS client certificate
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Certificate string
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// TLS client key
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Key string
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// TLS certificate authority
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CA string
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tlsint.ClientConfig
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// SASL Username
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SASLUsername string `toml:"sasl_username"`
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// SASL Password
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SASLPassword string `toml:"sasl_password"`
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tlsConfig tls.Config
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producer sarama.SyncProducer
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serializer serializers.Serializer
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}
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TopicSuffix struct {
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Method string `toml:"method"`
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Keys []string `toml:"keys"`
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Separator string `toml:"separator"`
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}
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)
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var sampleConfig = `
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## URLs of kafka brokers
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brokers = ["localhost:9092"]
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## Kafka topic for producer messages
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topic = "telegraf"
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## Optional Client id
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# client_id = "Telegraf"
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## Optional topic suffix configuration.
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## If the section is omitted, no suffix is used.
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## Following topic suffix methods are supported:
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## measurement - suffix equals to separator + measurement's name
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## tags - suffix equals to separator + specified tags' values
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## interleaved with separator
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## Suffix equals to "_" + measurement name
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# [outputs.kafka.topic_suffix]
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# method = "measurement"
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# separator = "_"
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## Suffix equals to "__" + measurement's "foo" tag value.
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## If there's no such a tag, suffix equals to an empty string
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# [outputs.kafka.topic_suffix]
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# method = "tags"
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# keys = ["foo"]
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# separator = "__"
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## Suffix equals to "_" + measurement's "foo" and "bar"
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## tag values, separated by "_". If there is no such tags,
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## their values treated as empty strings.
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# [outputs.kafka.topic_suffix]
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# method = "tags"
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# keys = ["foo", "bar"]
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# separator = "_"
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## Telegraf tag to use as a routing key
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## ie, if this tag exists, its value will be used as the routing key
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routing_tag = "host"
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## CompressionCodec represents the various compression codecs recognized by
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## Kafka in messages.
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## 0 : No compression
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## 1 : Gzip compression
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## 2 : Snappy compression
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# compression_codec = 0
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## RequiredAcks is used in Produce Requests to tell the broker how many
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## replica acknowledgements it must see before responding
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## 0 : the producer never waits for an acknowledgement from the broker.
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## This option provides the lowest latency but the weakest durability
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## guarantees (some data will be lost when a server fails).
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## 1 : the producer gets an acknowledgement after the leader replica has
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## received the data. This option provides better durability as the
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## client waits until the server acknowledges the request as successful
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## (only messages that were written to the now-dead leader but not yet
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## replicated will be lost).
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## -1: the producer gets an acknowledgement after all in-sync replicas have
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## received the data. This option provides the best durability, we
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## guarantee that no messages will be lost as long as at least one in
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## sync replica remains.
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# required_acks = -1
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## The maximum number of times to retry sending a metric before failing
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## until the next flush.
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# max_retry = 3
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## Optional TLS Config
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# tls_ca = "/etc/telegraf/ca.pem"
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# tls_cert = "/etc/telegraf/cert.pem"
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# tls_key = "/etc/telegraf/key.pem"
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## Use TLS but skip chain & host verification
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# insecure_skip_verify = false
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## Optional SASL Config
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# sasl_username = "kafka"
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# sasl_password = "secret"
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## Data format to output.
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## Each data format has its own unique set of configuration options, read
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## more about them here:
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## https://github.com/influxdata/telegraf/blob/master/docs/DATA_FORMATS_OUTPUT.md
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# data_format = "influx"
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`
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func ValidateTopicSuffixMethod(method string) error {
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for _, validMethod := range ValidTopicSuffixMethods {
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if method == validMethod {
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return nil
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}
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}
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return fmt.Errorf("Unknown topic suffix method provided: %s", method)
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}
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func (k *Kafka) GetTopicName(metric telegraf.Metric) string {
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var topicName string
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switch k.TopicSuffix.Method {
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case "measurement":
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topicName = k.Topic + k.TopicSuffix.Separator + metric.Name()
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case "tags":
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var topicNameComponents []string
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topicNameComponents = append(topicNameComponents, k.Topic)
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for _, tag := range k.TopicSuffix.Keys {
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tagValue := metric.Tags()[tag]
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if tagValue != "" {
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topicNameComponents = append(topicNameComponents, tagValue)
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}
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}
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topicName = strings.Join(topicNameComponents, k.TopicSuffix.Separator)
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default:
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topicName = k.Topic
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}
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return topicName
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}
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func (k *Kafka) SetSerializer(serializer serializers.Serializer) {
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k.serializer = serializer
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}
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func (k *Kafka) Connect() error {
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err := ValidateTopicSuffixMethod(k.TopicSuffix.Method)
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if err != nil {
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return err
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}
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config := sarama.NewConfig()
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if k.ClientID != "" {
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config.ClientID = k.ClientID
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} else {
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config.ClientID = "Telegraf"
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}
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config.Producer.RequiredAcks = sarama.RequiredAcks(k.RequiredAcks)
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config.Producer.Compression = sarama.CompressionCodec(k.CompressionCodec)
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config.Producer.Retry.Max = k.MaxRetry
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config.Producer.Return.Successes = true
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// Legacy support ssl config
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if k.Certificate != "" {
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k.TLSCert = k.Certificate
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k.TLSCA = k.CA
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k.TLSKey = k.Key
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}
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tlsConfig, err := k.ClientConfig.TLSConfig()
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if err != nil {
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return err
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}
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if tlsConfig != nil {
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config.Net.TLS.Config = tlsConfig
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config.Net.TLS.Enable = true
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}
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if k.SASLUsername != "" && k.SASLPassword != "" {
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config.Net.SASL.User = k.SASLUsername
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config.Net.SASL.Password = k.SASLPassword
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config.Net.SASL.Enable = true
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}
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producer, err := sarama.NewSyncProducer(k.Brokers, config)
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if err != nil {
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return err
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}
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k.producer = producer
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return nil
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}
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func (k *Kafka) Close() error {
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return k.producer.Close()
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}
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func (k *Kafka) SampleConfig() string {
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return sampleConfig
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}
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func (k *Kafka) Description() string {
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return "Configuration for the Kafka server to send metrics to"
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}
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func (k *Kafka) Write(metrics []telegraf.Metric) error {
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if len(metrics) == 0 {
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return nil
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}
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for _, metric := range metrics {
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buf, err := k.serializer.Serialize(metric)
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if err != nil {
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return err
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}
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topicName := k.GetTopicName(metric)
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m := &sarama.ProducerMessage{
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Topic: topicName,
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Value: sarama.ByteEncoder(buf),
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}
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if h, ok := metric.Tags()[k.RoutingTag]; ok {
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m.Key = sarama.StringEncoder(h)
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}
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_, _, err = k.producer.SendMessage(m)
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if err != nil {
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return fmt.Errorf("FAILED to send kafka message: %s\n", err)
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}
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}
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return nil
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}
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func init() {
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outputs.Add("kafka", func() telegraf.Output {
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return &Kafka{
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MaxRetry: 3,
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RequiredAcks: -1,
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}
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})
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}
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