707 lines
21 KiB
Go
707 lines
21 KiB
Go
//go:generate ../../../tools/readme_config_includer/generator
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package stackdriver
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import (
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"context"
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_ "embed"
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"errors"
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"fmt"
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"math"
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"strconv"
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"strings"
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"sync"
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"time"
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monitoring "cloud.google.com/go/monitoring/apiv3/v2"
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"cloud.google.com/go/monitoring/apiv3/v2/monitoringpb"
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"google.golang.org/api/iterator"
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distributionpb "google.golang.org/genproto/googleapis/api/distribution"
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metricpb "google.golang.org/genproto/googleapis/api/metric"
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"google.golang.org/protobuf/types/known/durationpb"
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"google.golang.org/protobuf/types/known/timestamppb"
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"github.com/influxdata/telegraf"
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"github.com/influxdata/telegraf/config"
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"github.com/influxdata/telegraf/internal/limiter"
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"github.com/influxdata/telegraf/metric"
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"github.com/influxdata/telegraf/plugins/inputs" // Imports the Stackdriver Monitoring client package.
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"github.com/influxdata/telegraf/selfstat"
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)
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//go:embed sample.conf
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var sampleConfig string
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var (
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defaultCacheTTL = config.Duration(1 * time.Hour)
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defaultWindow = config.Duration(1 * time.Minute)
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defaultDelay = config.Duration(5 * time.Minute)
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)
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const (
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defaultRateLimit = 14
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)
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type (
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Stackdriver struct {
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Project string `toml:"project"`
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RateLimit int `toml:"rate_limit"`
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Window config.Duration `toml:"window"`
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Delay config.Duration `toml:"delay"`
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CacheTTL config.Duration `toml:"cache_ttl"`
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MetricTypePrefixInclude []string `toml:"metric_type_prefix_include"`
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MetricTypePrefixExclude []string `toml:"metric_type_prefix_exclude"`
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GatherRawDistributionBuckets bool `toml:"gather_raw_distribution_buckets"`
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DistributionAggregationAligners []string `toml:"distribution_aggregation_aligners"`
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Filter *listTimeSeriesFilter `toml:"filter"`
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Log telegraf.Logger `toml:"-"`
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client metricClient
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timeSeriesConfCache *timeSeriesConfCache
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prevEnd time.Time
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}
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// listTimeSeriesFilter contains resource labels and metric labels
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listTimeSeriesFilter struct {
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ResourceLabels []*label `json:"resource_labels"`
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MetricLabels []*label `json:"metric_labels"`
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UserLabels []*label `json:"user_labels"`
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SystemLabels []*label `json:"system_labels"`
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}
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// label contains key and value
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label struct {
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Key string `toml:"key"`
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Value string `toml:"value"`
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}
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// timeSeriesConfCache caches generated timeseries configurations
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timeSeriesConfCache struct {
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TTL time.Duration
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Generated time.Time
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TimeSeriesConfs []*timeSeriesConf
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}
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// Internal structure which holds our configuration for a particular GCP time series.
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timeSeriesConf struct {
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// The influx measurement name this time series maps to
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measurement string
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// The prefix to use before any influx field names that we'll write for
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// this time series. (Or, if we only decide to write one field name, this
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// field just holds the value of the field name.)
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fieldKey string
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// The GCP API request that we'll use to fetch data for this time series.
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listTimeSeriesRequest *monitoringpb.ListTimeSeriesRequest
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}
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// stackdriverMetricClient is a metric client for stackdriver
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stackdriverMetricClient struct {
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log telegraf.Logger
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conn *monitoring.MetricClient
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listMetricDescriptorsCalls selfstat.Stat
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listTimeSeriesCalls selfstat.Stat
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}
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// metricClient is convenient for testing
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metricClient interface {
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listMetricDescriptors(ctx context.Context, req *monitoringpb.ListMetricDescriptorsRequest) (<-chan *metricpb.MetricDescriptor, error)
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listTimeSeries(ctx context.Context, req *monitoringpb.ListTimeSeriesRequest) (<-chan *monitoringpb.TimeSeries, error)
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close() error
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}
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lockedSeriesGrouper struct {
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sync.Mutex
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*metric.SeriesGrouper
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}
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)
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func (*Stackdriver) SampleConfig() string {
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return sampleConfig
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}
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func (s *Stackdriver) Gather(acc telegraf.Accumulator) error {
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ctx := context.Background()
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if s.RateLimit == 0 {
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s.RateLimit = defaultRateLimit
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}
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err := s.initializeStackdriverClient(ctx)
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if err != nil {
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return err
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}
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start, end := s.updateWindow(s.prevEnd)
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s.prevEnd = end
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tsConfs, err := s.generateTimeSeriesConfs(ctx, start, end)
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if err != nil {
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return err
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}
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lmtr := limiter.NewRateLimiter(s.RateLimit, time.Second)
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defer lmtr.Stop()
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grouper := &lockedSeriesGrouper{
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SeriesGrouper: metric.NewSeriesGrouper(),
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}
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var wg sync.WaitGroup
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wg.Add(len(tsConfs))
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for _, tsConf := range tsConfs {
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<-lmtr.C
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go func(tsConf *timeSeriesConf) {
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defer wg.Done()
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acc.AddError(s.gatherTimeSeries(ctx, grouper, tsConf))
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}(tsConf)
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}
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wg.Wait()
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for _, groupedMetric := range grouper.Metrics() {
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acc.AddMetric(groupedMetric)
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}
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return nil
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}
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func (s *Stackdriver) initializeStackdriverClient(ctx context.Context) error {
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if s.client == nil {
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client, err := monitoring.NewMetricClient(ctx)
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if err != nil {
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return fmt.Errorf("failed to create stackdriver monitoring client: %w", err)
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}
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tags := map[string]string{
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"project_id": s.Project,
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}
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listMetricDescriptorsCalls := selfstat.Register(
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"stackdriver", "list_metric_descriptors_calls", tags)
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listTimeSeriesCalls := selfstat.Register(
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"stackdriver", "list_timeseries_calls", tags)
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s.client = &stackdriverMetricClient{
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log: s.Log,
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conn: client,
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listMetricDescriptorsCalls: listMetricDescriptorsCalls,
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listTimeSeriesCalls: listTimeSeriesCalls,
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}
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}
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return nil
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}
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// Returns the start and end time for the next collection.
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func (s *Stackdriver) updateWindow(prevEnd time.Time) (start, end time.Time) {
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if time.Duration(s.Window) != 0 {
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start = time.Now().Add(-time.Duration(s.Delay)).Add(-time.Duration(s.Window))
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} else if prevEnd.IsZero() {
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start = time.Now().Add(-time.Duration(s.Delay)).Add(-time.Duration(defaultWindow))
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} else {
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start = prevEnd
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}
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end = time.Now().Add(-time.Duration(s.Delay))
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return start, end
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}
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// Generate a list of timeSeriesConfig structs by making a listMetricDescriptors
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// API request and filtering the result against our configuration.
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func (s *Stackdriver) generateTimeSeriesConfs(ctx context.Context, startTime, endTime time.Time) ([]*timeSeriesConf, error) {
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if s.timeSeriesConfCache != nil && s.timeSeriesConfCache.isValid() {
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// Update interval for timeseries requests in timeseries cache
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interval := &monitoringpb.TimeInterval{
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EndTime: ×tamppb.Timestamp{Seconds: endTime.Unix()},
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StartTime: ×tamppb.Timestamp{Seconds: startTime.Unix()},
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}
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for _, timeSeriesConf := range s.timeSeriesConfCache.TimeSeriesConfs {
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timeSeriesConf.listTimeSeriesRequest.Interval = interval
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}
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return s.timeSeriesConfCache.TimeSeriesConfs, nil
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}
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ret := make([]*timeSeriesConf, 0)
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req := &monitoringpb.ListMetricDescriptorsRequest{
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Name: "projects/" + s.Project,
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}
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filters := s.newListMetricDescriptorsFilters()
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if len(filters) == 0 {
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filters = []string{""}
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}
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for _, filter := range filters {
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// Add filter for list metric descriptors if
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// includeMetricTypePrefixes is specified,
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// this is more efficient than iterating over
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// all metric descriptors
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req.Filter = filter
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mdRespChan, err := s.client.listMetricDescriptors(ctx, req)
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if err != nil {
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return nil, err
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}
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for metricDescriptor := range mdRespChan {
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metricType := metricDescriptor.Type
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valueType := metricDescriptor.ValueType
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if filter == "" && !s.includeMetricType(metricType) {
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continue
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}
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if valueType == metricpb.MetricDescriptor_DISTRIBUTION {
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if s.GatherRawDistributionBuckets {
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tsConf := s.newTimeSeriesConf(metricType, startTime, endTime)
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ret = append(ret, tsConf)
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}
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for _, alignerStr := range s.DistributionAggregationAligners {
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tsConf := s.newTimeSeriesConf(metricType, startTime, endTime)
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tsConf.initForAggregate(alignerStr)
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ret = append(ret, tsConf)
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}
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} else {
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ret = append(ret, s.newTimeSeriesConf(metricType, startTime, endTime))
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}
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}
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}
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s.timeSeriesConfCache = &timeSeriesConfCache{
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TimeSeriesConfs: ret,
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Generated: time.Now(),
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TTL: time.Duration(s.CacheTTL),
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}
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return ret, nil
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}
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// Generates filter for list metric descriptors request
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func (s *Stackdriver) newListMetricDescriptorsFilters() []string {
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if len(s.MetricTypePrefixInclude) == 0 {
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return nil
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}
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metricTypeFilters := make([]string, 0, len(s.MetricTypePrefixInclude))
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for _, metricTypePrefix := range s.MetricTypePrefixInclude {
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metricTypeFilters = append(metricTypeFilters, fmt.Sprintf(`metric.type = starts_with(%q)`, metricTypePrefix))
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}
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return metricTypeFilters
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}
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// Generate filter string for ListTimeSeriesRequest
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func (s *Stackdriver) newListTimeSeriesFilter(metricType string) string {
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functions := []string{
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"starts_with",
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"ends_with",
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"has_substring",
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"one_of",
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}
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filterString := fmt.Sprintf(`metric.type = %q`, metricType)
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if s.Filter == nil {
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return filterString
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}
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var valueFmt string
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if len(s.Filter.ResourceLabels) > 0 {
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resourceLabelsFilter := make([]string, 0, len(s.Filter.ResourceLabels))
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for _, resourceLabel := range s.Filter.ResourceLabels {
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// check if resource label value contains function
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if includeExcludeHelper(resourceLabel.Value, functions, nil) {
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valueFmt = `resource.labels.%s = %s`
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} else {
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valueFmt = `resource.labels.%s = "%s"`
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}
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resourceLabelsFilter = append(resourceLabelsFilter, fmt.Sprintf(valueFmt, resourceLabel.Key, resourceLabel.Value))
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}
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if len(resourceLabelsFilter) == 1 {
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filterString += " AND " + resourceLabelsFilter[0]
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} else {
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filterString += fmt.Sprintf(" AND (%s)", strings.Join(resourceLabelsFilter, " OR "))
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}
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}
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if len(s.Filter.MetricLabels) > 0 {
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metricLabelsFilter := make([]string, 0, len(s.Filter.MetricLabels))
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for _, metricLabel := range s.Filter.MetricLabels {
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// check if metric label value contains function
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if includeExcludeHelper(metricLabel.Value, functions, nil) {
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valueFmt = `metric.labels.%s = %s`
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} else {
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valueFmt = `metric.labels.%s = "%s"`
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}
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metricLabelsFilter = append(metricLabelsFilter, fmt.Sprintf(valueFmt, metricLabel.Key, metricLabel.Value))
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}
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if len(metricLabelsFilter) == 1 {
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filterString += " AND " + metricLabelsFilter[0]
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} else {
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filterString += fmt.Sprintf(" AND (%s)", strings.Join(metricLabelsFilter, " OR "))
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}
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}
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if len(s.Filter.UserLabels) > 0 {
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userLabelsFilter := make([]string, 0, len(s.Filter.UserLabels))
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for _, metricLabel := range s.Filter.UserLabels {
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// check if metric label value contains function
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if includeExcludeHelper(metricLabel.Value, functions, nil) {
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valueFmt = `metadata.user_labels."%s" = %s`
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} else {
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valueFmt = `metadata.user_labels."%s" = "%s"`
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}
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userLabelsFilter = append(userLabelsFilter, fmt.Sprintf(valueFmt, metricLabel.Key, metricLabel.Value))
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}
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if len(userLabelsFilter) == 1 {
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filterString += " AND " + userLabelsFilter[0]
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} else {
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filterString += fmt.Sprintf(" AND (%s)", strings.Join(userLabelsFilter, " OR "))
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}
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}
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if len(s.Filter.SystemLabels) > 0 {
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systemLabelsFilter := make([]string, 0, len(s.Filter.SystemLabels))
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for _, metricLabel := range s.Filter.SystemLabels {
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// check if metric label value contains function
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if includeExcludeHelper(metricLabel.Value, functions, nil) {
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valueFmt = `metadata.system_labels."%s" = %s`
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} else {
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valueFmt = `metadata.system_labels."%s" = "%s"`
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}
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systemLabelsFilter = append(systemLabelsFilter, fmt.Sprintf(valueFmt, metricLabel.Key, metricLabel.Value))
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}
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if len(systemLabelsFilter) == 1 {
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filterString += " AND " + systemLabelsFilter[0]
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} else {
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filterString += fmt.Sprintf(" AND (%s)", strings.Join(systemLabelsFilter, " OR "))
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}
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}
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return filterString
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}
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// Create and initialize a timeSeriesConf for a given GCP metric type with defaults taken from the gcp_stackdriver plugin configuration.
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func (s *Stackdriver) newTimeSeriesConf(metricType string, startTime, endTime time.Time) *timeSeriesConf {
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filter := s.newListTimeSeriesFilter(metricType)
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interval := &monitoringpb.TimeInterval{
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EndTime: ×tamppb.Timestamp{Seconds: endTime.Unix()},
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StartTime: ×tamppb.Timestamp{Seconds: startTime.Unix()},
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}
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tsReq := &monitoringpb.ListTimeSeriesRequest{
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Name: "projects/" + s.Project,
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Filter: filter,
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Interval: interval,
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}
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cfg := &timeSeriesConf{
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measurement: metricType,
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fieldKey: "value",
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listTimeSeriesRequest: tsReq,
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}
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// GCP metric types have at least one slash, but we'll be defensive anyway.
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slashIdx := strings.LastIndex(metricType, "/")
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if slashIdx > 0 {
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cfg.measurement = metricType[:slashIdx]
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cfg.fieldKey = metricType[slashIdx+1:]
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}
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return cfg
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}
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// Test whether a particular GCP metric type should be scraped by this plugin
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// by checking the plugin name against the configuration's
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// "includeMetricTypePrefixes" and "excludeMetricTypePrefixes"
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func (s *Stackdriver) includeMetricType(metricType string) bool {
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k := metricType
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inc := s.MetricTypePrefixInclude
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exc := s.MetricTypePrefixExclude
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return includeExcludeHelper(k, inc, exc)
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}
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// Do the work to gather an individual time series. Runs inside a timeseries-specific goroutine.
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func (s *Stackdriver) gatherTimeSeries(ctx context.Context, grouper *lockedSeriesGrouper, tsConf *timeSeriesConf) error {
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tsReq := tsConf.listTimeSeriesRequest
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tsRespChan, err := s.client.listTimeSeries(ctx, tsReq)
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if err != nil {
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return err
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}
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for tsDesc := range tsRespChan {
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tags := map[string]string{
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"resource_type": tsDesc.Resource.Type,
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}
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for k, v := range tsDesc.Resource.Labels {
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tags[k] = v
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}
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for k, v := range tsDesc.Metric.Labels {
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tags[k] = v
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}
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for _, p := range tsDesc.Points {
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ts := time.Unix(p.Interval.EndTime.Seconds, 0)
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if tsDesc.ValueType == metricpb.MetricDescriptor_DISTRIBUTION {
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dist := p.Value.GetDistributionValue()
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if err := addDistribution(dist, tags, ts, grouper, tsConf); err != nil {
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return err
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}
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} else {
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var value interface{}
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// Types that are valid to be assigned to Value
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// See: https://godoc.org/google.golang.org/genproto/googleapis/monitoring/v3#TypedValue
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switch tsDesc.ValueType {
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case metricpb.MetricDescriptor_BOOL:
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value = p.Value.GetBoolValue()
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case metricpb.MetricDescriptor_INT64:
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value = p.Value.GetInt64Value()
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case metricpb.MetricDescriptor_DOUBLE:
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value = p.Value.GetDoubleValue()
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case metricpb.MetricDescriptor_STRING:
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value = p.Value.GetStringValue()
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}
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grouper.Add(tsConf.measurement, tags, ts, tsConf.fieldKey, value)
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}
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}
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}
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return nil
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}
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// addDistribution adds metrics from a distribution value type.
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func addDistribution(dist *distributionpb.Distribution, tags map[string]string, ts time.Time,
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grouper *lockedSeriesGrouper, tsConf *timeSeriesConf,
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) error {
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field := tsConf.fieldKey
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name := tsConf.measurement
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grouper.Add(name, tags, ts, field+"_count", dist.Count)
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grouper.Add(name, tags, ts, field+"_mean", dist.Mean)
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grouper.Add(name, tags, ts, field+"_sum_of_squared_deviation", dist.SumOfSquaredDeviation)
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if dist.Range != nil {
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grouper.Add(name, tags, ts, field+"_range_min", dist.Range.Min)
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grouper.Add(name, tags, ts, field+"_range_max", dist.Range.Max)
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}
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bucket, err := newBucket(dist)
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if err != nil {
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return err
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}
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numBuckets := bucket.amount()
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var i int32
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var count int64
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for i = 0; i < numBuckets; i++ {
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// The last bucket is the overflow bucket, and includes all values
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// greater than the previous bound.
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if i == numBuckets-1 {
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tags["lt"] = "+Inf"
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} else {
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upperBound := bucket.upperBound(i)
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tags["lt"] = strconv.FormatFloat(upperBound, 'f', -1, 64)
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}
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// Add to the cumulative count; trailing buckets with value 0 are
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// omitted from the response.
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if i < int32(len(dist.BucketCounts)) {
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count += dist.BucketCounts[i]
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}
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grouper.Add(name, tags, ts, field+"_bucket", count)
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}
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return nil
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}
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// Add adds a field key and value to the series.
|
|
func (g *lockedSeriesGrouper) Add(measurement string, tags map[string]string, tm time.Time, field string, fieldValue interface{}) {
|
|
g.Lock()
|
|
defer g.Unlock()
|
|
g.SeriesGrouper.Add(measurement, tags, tm, field, fieldValue)
|
|
}
|
|
|
|
// listMetricDescriptors implements metricClient interface
|
|
func (smc *stackdriverMetricClient) listMetricDescriptors(ctx context.Context,
|
|
req *monitoringpb.ListMetricDescriptorsRequest,
|
|
) (<-chan *metricpb.MetricDescriptor, error) {
|
|
mdChan := make(chan *metricpb.MetricDescriptor, 1000)
|
|
|
|
go func() {
|
|
smc.log.Debugf("List metric descriptor request filter: %s", req.Filter)
|
|
defer close(mdChan)
|
|
|
|
// Iterate over metric descriptors and send them to buffered channel
|
|
mdResp := smc.conn.ListMetricDescriptors(ctx, req)
|
|
smc.listMetricDescriptorsCalls.Incr(1)
|
|
for {
|
|
mdDesc, mdErr := mdResp.Next()
|
|
if mdErr != nil {
|
|
if !errors.Is(mdErr, iterator.Done) {
|
|
smc.log.Errorf("Failed iterating metric descriptor responses: %q: %v", req.String(), mdErr)
|
|
}
|
|
break
|
|
}
|
|
mdChan <- mdDesc
|
|
}
|
|
}()
|
|
|
|
return mdChan, nil
|
|
}
|
|
|
|
// listTimeSeries implements metricClient interface
|
|
func (smc *stackdriverMetricClient) listTimeSeries(
|
|
ctx context.Context,
|
|
req *monitoringpb.ListTimeSeriesRequest,
|
|
) (<-chan *monitoringpb.TimeSeries, error) {
|
|
tsChan := make(chan *monitoringpb.TimeSeries, 1000)
|
|
|
|
go func() {
|
|
smc.log.Debugf("List time series request filter: %s", req.Filter)
|
|
defer close(tsChan)
|
|
|
|
// Iterate over timeseries and send them to buffered channel
|
|
tsResp := smc.conn.ListTimeSeries(ctx, req)
|
|
smc.listTimeSeriesCalls.Incr(1)
|
|
for {
|
|
tsDesc, tsErr := tsResp.Next()
|
|
if tsErr != nil {
|
|
if !errors.Is(tsErr, iterator.Done) {
|
|
smc.log.Errorf("Failed iterating time series responses: %q: %v", req.String(), tsErr)
|
|
}
|
|
break
|
|
}
|
|
tsChan <- tsDesc
|
|
}
|
|
}()
|
|
|
|
return tsChan, nil
|
|
}
|
|
|
|
// close implements metricClient interface
|
|
func (smc *stackdriverMetricClient) close() error {
|
|
return smc.conn.Close()
|
|
}
|
|
|
|
// Change this configuration to query an aggregate by specifying an "aligner".
|
|
// In GCP monitoring, "aligning" is aggregation performed *within* a time
|
|
// series, to distill a pile of data points down to a single data point for
|
|
// some given time period (here, we specify 60s as our time period). This is
|
|
// especially useful for scraping GCP "distribution" metric types, whose raw
|
|
// data amounts to a ~60 bucket histogram, which is fairly hard to query and
|
|
// visualize in the TICK stack.
|
|
func (t *timeSeriesConf) initForAggregate(alignerStr string) {
|
|
// Check if alignerStr is valid
|
|
alignerInt, isValid := monitoringpb.Aggregation_Aligner_value[alignerStr]
|
|
if !isValid {
|
|
alignerStr = monitoringpb.Aggregation_Aligner_name[alignerInt]
|
|
}
|
|
aligner := monitoringpb.Aggregation_Aligner(alignerInt)
|
|
agg := &monitoringpb.Aggregation{
|
|
AlignmentPeriod: &durationpb.Duration{Seconds: 60},
|
|
PerSeriesAligner: aligner,
|
|
}
|
|
t.fieldKey = t.fieldKey + "_" + strings.ToLower(alignerStr)
|
|
t.listTimeSeriesRequest.Aggregation = agg
|
|
}
|
|
|
|
// isValid checks timeseriesconf cache validity
|
|
func (c *timeSeriesConfCache) isValid() bool {
|
|
return c.TimeSeriesConfs != nil && time.Since(c.Generated) < c.TTL
|
|
}
|
|
|
|
func includeExcludeHelper(key string, includes, excludes []string) bool {
|
|
if len(includes) > 0 {
|
|
for _, includeStr := range includes {
|
|
if strings.HasPrefix(key, includeStr) {
|
|
return true
|
|
}
|
|
}
|
|
return false
|
|
}
|
|
if len(excludes) > 0 {
|
|
for _, excludeStr := range excludes {
|
|
if strings.HasPrefix(key, excludeStr) {
|
|
return false
|
|
}
|
|
}
|
|
return true
|
|
}
|
|
return true
|
|
}
|
|
|
|
type buckets interface {
|
|
amount() int32
|
|
upperBound(i int32) float64
|
|
}
|
|
|
|
type linearBuckets struct {
|
|
*distributionpb.Distribution_BucketOptions_Linear
|
|
}
|
|
|
|
func (l *linearBuckets) amount() int32 {
|
|
return l.NumFiniteBuckets + 2
|
|
}
|
|
|
|
func (l *linearBuckets) upperBound(i int32) float64 {
|
|
return l.Offset + (l.Width * float64(i))
|
|
}
|
|
|
|
type exponentialBuckets struct {
|
|
*distributionpb.Distribution_BucketOptions_Exponential
|
|
}
|
|
|
|
func (e *exponentialBuckets) amount() int32 {
|
|
return e.NumFiniteBuckets + 2
|
|
}
|
|
|
|
func (e *exponentialBuckets) upperBound(i int32) float64 {
|
|
width := math.Pow(e.GrowthFactor, float64(i))
|
|
return e.Scale * width
|
|
}
|
|
|
|
type explicitBuckets struct {
|
|
*distributionpb.Distribution_BucketOptions_Explicit
|
|
}
|
|
|
|
func (e *explicitBuckets) amount() int32 {
|
|
return int32(len(e.Bounds)) + 1
|
|
}
|
|
|
|
func (e *explicitBuckets) upperBound(i int32) float64 {
|
|
return e.Bounds[i]
|
|
}
|
|
|
|
func newBucket(dist *distributionpb.Distribution) (buckets, error) {
|
|
linBuckets := dist.BucketOptions.GetLinearBuckets()
|
|
if linBuckets != nil {
|
|
var l linearBuckets
|
|
l.Distribution_BucketOptions_Linear = linBuckets
|
|
return &l, nil
|
|
}
|
|
|
|
expoBuckets := dist.BucketOptions.GetExponentialBuckets()
|
|
if expoBuckets != nil {
|
|
var e exponentialBuckets
|
|
e.Distribution_BucketOptions_Exponential = expoBuckets
|
|
return &e, nil
|
|
}
|
|
|
|
explBuckets := dist.BucketOptions.GetExplicitBuckets()
|
|
if explBuckets != nil {
|
|
var e explicitBuckets
|
|
e.Distribution_BucketOptions_Explicit = explBuckets
|
|
return &e, nil
|
|
}
|
|
|
|
return nil, errors.New("no buckets available")
|
|
}
|
|
|
|
func init() {
|
|
inputs.Add("stackdriver", func() telegraf.Input {
|
|
return &Stackdriver{
|
|
CacheTTL: defaultCacheTTL,
|
|
RateLimit: defaultRateLimit,
|
|
Delay: defaultDelay,
|
|
GatherRawDistributionBuckets: true,
|
|
}
|
|
})
|
|
}
|