276 lines
6.3 KiB
Go
276 lines
6.3 KiB
Go
package cloudwatch
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import (
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"log"
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"math"
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"sort"
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"strings"
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"time"
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"github.com/aws/aws-sdk-go/aws"
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"github.com/aws/aws-sdk-go/service/cloudwatch"
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"github.com/aws/aws-sdk-go/service/sts"
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"github.com/influxdata/telegraf"
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internalaws "github.com/influxdata/telegraf/internal/config/aws"
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"github.com/influxdata/telegraf/plugins/outputs"
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)
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type CloudWatch struct {
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Region string `toml:"region"`
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AccessKey string `toml:"access_key"`
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SecretKey string `toml:"secret_key"`
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RoleARN string `toml:"role_arn"`
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Profile string `toml:"profile"`
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Filename string `toml:"shared_credential_file"`
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Token string `toml:"token"`
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Namespace string `toml:"namespace"` // CloudWatch Metrics Namespace
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svc *cloudwatch.CloudWatch
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}
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var sampleConfig = `
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## Amazon REGION
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region = "us-east-1"
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## Amazon Credentials
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## Credentials are loaded in the following order
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## 1) Assumed credentials via STS if role_arn is specified
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## 2) explicit credentials from 'access_key' and 'secret_key'
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## 3) shared profile from 'profile'
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## 4) environment variables
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## 5) shared credentials file
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## 6) EC2 Instance Profile
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#access_key = ""
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#secret_key = ""
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#token = ""
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#role_arn = ""
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#profile = ""
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#shared_credential_file = ""
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## Namespace for the CloudWatch MetricDatums
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namespace = "InfluxData/Telegraf"
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`
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func (c *CloudWatch) SampleConfig() string {
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return sampleConfig
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}
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func (c *CloudWatch) Description() string {
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return "Configuration for AWS CloudWatch output."
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}
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func (c *CloudWatch) Connect() error {
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credentialConfig := &internalaws.CredentialConfig{
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Region: c.Region,
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AccessKey: c.AccessKey,
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SecretKey: c.SecretKey,
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RoleARN: c.RoleARN,
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Profile: c.Profile,
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Filename: c.Filename,
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Token: c.Token,
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}
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configProvider := credentialConfig.Credentials()
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stsService := sts.New(configProvider)
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params := &sts.GetSessionTokenInput{}
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_, err := stsService.GetSessionToken(params)
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if err != nil {
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log.Printf("E! cloudwatch: Cannot use credentials to connect to AWS : %+v \n", err.Error())
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return err
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}
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c.svc = cloudwatch.New(configProvider)
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return nil
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}
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func (c *CloudWatch) Close() error {
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return nil
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}
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func (c *CloudWatch) Write(metrics []telegraf.Metric) error {
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for _, m := range metrics {
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err := c.WriteSinglePoint(m)
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if err != nil {
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return err
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}
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}
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return nil
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}
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// Write data for a single point. A point can have many fields and one field
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// is equal to one MetricDatum. There is a limit on how many MetricDatums a
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// request can have so we process one Point at a time.
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func (c *CloudWatch) WriteSinglePoint(point telegraf.Metric) error {
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datums := BuildMetricDatum(point)
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const maxDatumsPerCall = 20 // PutMetricData only supports up to 20 data metrics per call
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for _, partition := range PartitionDatums(maxDatumsPerCall, datums) {
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err := c.WriteToCloudWatch(partition)
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if err != nil {
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return err
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}
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}
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return nil
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}
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func (c *CloudWatch) WriteToCloudWatch(datums []*cloudwatch.MetricDatum) error {
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params := &cloudwatch.PutMetricDataInput{
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MetricData: datums,
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Namespace: aws.String(c.Namespace),
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}
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_, err := c.svc.PutMetricData(params)
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if err != nil {
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log.Printf("E! CloudWatch: Unable to write to CloudWatch : %+v \n", err.Error())
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}
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return err
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}
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// Partition the MetricDatums into smaller slices of a max size so that are under the limit
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// for the AWS API calls.
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func PartitionDatums(size int, datums []*cloudwatch.MetricDatum) [][]*cloudwatch.MetricDatum {
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numberOfPartitions := len(datums) / size
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if len(datums)%size != 0 {
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numberOfPartitions += 1
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}
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partitions := make([][]*cloudwatch.MetricDatum, numberOfPartitions)
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for i := 0; i < numberOfPartitions; i++ {
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start := size * i
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end := size * (i + 1)
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if end > len(datums) {
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end = len(datums)
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}
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partitions[i] = datums[start:end]
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}
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return partitions
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}
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// Make a MetricDatum for each field in a Point. Only fields with values that can be
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// converted to float64 are supported. Non-supported fields are skipped.
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func BuildMetricDatum(point telegraf.Metric) []*cloudwatch.MetricDatum {
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datums := make([]*cloudwatch.MetricDatum, len(point.Fields()))
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i := 0
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var value float64
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for k, v := range point.Fields() {
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switch t := v.(type) {
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case int:
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value = float64(t)
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case int32:
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value = float64(t)
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case int64:
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value = float64(t)
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case float64:
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value = t
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case bool:
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if t {
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value = 1
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} else {
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value = 0
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}
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case time.Time:
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value = float64(t.Unix())
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default:
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// Skip unsupported type.
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datums = datums[:len(datums)-1]
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continue
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}
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// Do CloudWatch boundary checking
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// Constraints at: http://docs.aws.amazon.com/AmazonCloudWatch/latest/APIReference/API_MetricDatum.html
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if math.IsNaN(value) {
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datums = datums[:len(datums)-1]
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continue
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}
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if math.IsInf(value, 0) {
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datums = datums[:len(datums)-1]
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continue
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}
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if value > 0 && value < float64(8.515920e-109) {
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datums = datums[:len(datums)-1]
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continue
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}
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if value > float64(1.174271e+108) {
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datums = datums[:len(datums)-1]
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continue
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}
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datums[i] = &cloudwatch.MetricDatum{
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MetricName: aws.String(strings.Join([]string{point.Name(), k}, "_")),
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Value: aws.Float64(value),
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Dimensions: BuildDimensions(point.Tags()),
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Timestamp: aws.Time(point.Time()),
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}
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i += 1
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}
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return datums
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}
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// Make a list of Dimensions by using a Point's tags. CloudWatch supports up to
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// 10 dimensions per metric so we only keep up to the first 10 alphabetically.
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// This always includes the "host" tag if it exists.
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func BuildDimensions(mTags map[string]string) []*cloudwatch.Dimension {
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const MaxDimensions = 10
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dimensions := make([]*cloudwatch.Dimension, int(math.Min(float64(len(mTags)), MaxDimensions)))
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i := 0
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// This is pretty ugly but we always want to include the "host" tag if it exists.
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if host, ok := mTags["host"]; ok {
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dimensions[i] = &cloudwatch.Dimension{
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Name: aws.String("host"),
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Value: aws.String(host),
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}
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i += 1
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}
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var keys []string
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for k := range mTags {
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if k != "host" {
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keys = append(keys, k)
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}
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}
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sort.Strings(keys)
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for _, k := range keys {
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if i >= MaxDimensions {
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break
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}
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dimensions[i] = &cloudwatch.Dimension{
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Name: aws.String(k),
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Value: aws.String(mTags[k]),
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}
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i += 1
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}
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return dimensions
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}
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func init() {
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outputs.Add("cloudwatch", func() telegraf.Output {
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return &CloudWatch{}
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})
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}
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