Files
seaweedfs/telemetry/server/storage/prometheus.go
T
Chris LuandGitHub 71a8c77a36 telemetry: let the dashboard pick the confirmation window (#10904)
* telemetry: let the dashboard pick the confirmation window

* telemetry: cover the serialized threshold map through the stats handler
2026-08-23 21:48:33 -07:00

323 lines
10 KiB
Go

package storage
import (
"sync"
"time"
"github.com/prometheus/client_golang/prometheus"
"github.com/prometheus/client_golang/prometheus/promauto"
"github.com/seaweedfs/seaweedfs/telemetry/proto"
)
type PrometheusStorage struct {
// Prometheus metrics
totalClusters prometheus.Gauge
activeClusters prometheus.Gauge
confirmedClusters prometheus.Gauge
volumeServerCount *prometheus.GaugeVec
totalDiskBytes *prometheus.GaugeVec
totalVolumeCount *prometheus.GaugeVec
filerCount *prometheus.GaugeVec
brokerCount *prometheus.GaugeVec
clusterInfo *prometheus.GaugeVec
telemetryReceived prometheus.Counter
// In-memory storage for API endpoints (if needed)
mu sync.RWMutex
instances map[string]*telemetryData
histories map[string][]HistorySample
stats map[string]interface{}
dirty bool // instances changed since the last successful state save
}
// telemetryData is an internal struct that includes the received timestamp
type telemetryData struct {
*proto.TelemetryData
ReceivedAt time.Time `json:"received_at"`
}
func NewPrometheusStorage() *PrometheusStorage {
return newPrometheusStorage(prometheus.DefaultRegisterer)
}
func newPrometheusStorage(reg prometheus.Registerer) *PrometheusStorage {
promauto := promauto.With(reg)
return &PrometheusStorage{
totalClusters: promauto.NewGauge(prometheus.GaugeOpts{
Name: "seaweedfs_telemetry_total_clusters",
Help: "Total number of unique SeaweedFS clusters (last 30 days)",
}),
activeClusters: promauto.NewGauge(prometheus.GaugeOpts{
Name: "seaweedfs_telemetry_active_clusters",
Help: "Number of active SeaweedFS clusters (last 7 days)",
}),
confirmedClusters: promauto.NewGauge(prometheus.GaugeOpts{
Name: "seaweedfs_telemetry_confirmed_clusters",
Help: "Active clusters seen on at least 7 distinct days (last 7 days)",
}),
volumeServerCount: promauto.NewGaugeVec(prometheus.GaugeOpts{
Name: "seaweedfs_telemetry_volume_servers",
Help: "Number of volume servers per cluster",
}, []string{"cluster_id"}),
totalDiskBytes: promauto.NewGaugeVec(prometheus.GaugeOpts{
Name: "seaweedfs_telemetry_disk_bytes",
Help: "Total disk usage in bytes per cluster",
}, []string{"cluster_id"}),
totalVolumeCount: promauto.NewGaugeVec(prometheus.GaugeOpts{
Name: "seaweedfs_telemetry_volume_count",
Help: "Total number of volumes per cluster",
}, []string{"cluster_id"}),
filerCount: promauto.NewGaugeVec(prometheus.GaugeOpts{
Name: "seaweedfs_telemetry_filer_count",
Help: "Number of filer servers per cluster",
}, []string{"cluster_id"}),
brokerCount: promauto.NewGaugeVec(prometheus.GaugeOpts{
Name: "seaweedfs_telemetry_broker_count",
Help: "Number of broker servers per cluster",
}, []string{"cluster_id"}),
clusterInfo: promauto.NewGaugeVec(prometheus.GaugeOpts{
Name: "seaweedfs_telemetry_cluster_info",
Help: "Cluster information (always 1, labels contain metadata)",
}, []string{"cluster_id", "version", "os"}),
telemetryReceived: promauto.NewCounter(prometheus.CounterOpts{
Name: "seaweedfs_telemetry_reports_received_total",
Help: "Total number of telemetry reports received",
}),
instances: make(map[string]*telemetryData),
histories: make(map[string][]HistorySample),
stats: make(map[string]interface{}),
}
}
func (s *PrometheusStorage) StoreTelemetry(data *proto.TelemetryData) error {
s.mu.Lock()
defer s.mu.Unlock()
// Drop the cluster_info series recorded under the previous label set when
// a cluster reports back with a different version or OS, so it is not
// counted under two versions at once.
if prev, ok := s.instances[data.TopologyId]; ok &&
(prev.TelemetryData.Version != data.Version || prev.TelemetryData.Os != data.Os) {
s.clusterInfo.Delete(infoLabels(prev.TelemetryData))
}
s.setClusterMetrics(data)
s.telemetryReceived.Inc()
// Store in memory for API endpoints
receivedAt := time.Now().UTC()
s.instances[data.TopologyId] = &telemetryData{
TelemetryData: data,
ReceivedAt: receivedAt,
}
s.appendHistory(data, receivedAt)
s.dirty = true
// Update aggregated stats
s.updateStats()
return nil
}
// setClusterMetrics records a report's values on the Prometheus gauges.
// Value gauges are keyed by cluster_id only so a cluster's series continues
// across upgrades; version/os metadata lives on cluster_info (join with
// `* on(cluster_id) group_left(version, os)`). Callers must hold s.mu.
func (s *PrometheusStorage) setClusterMetrics(data *proto.TelemetryData) {
labels := prometheus.Labels{
"cluster_id": data.TopologyId,
}
s.volumeServerCount.With(labels).Set(float64(data.VolumeServerCount))
s.totalDiskBytes.With(labels).Set(float64(data.TotalDiskBytes))
s.totalVolumeCount.With(labels).Set(float64(data.TotalVolumeCount))
s.filerCount.With(labels).Set(float64(data.FilerCount))
s.brokerCount.With(labels).Set(float64(data.BrokerCount))
s.clusterInfo.With(infoLabels(data)).Set(1)
}
func (s *PrometheusStorage) GetStats() (map[string]interface{}, error) {
s.mu.RLock()
defer s.mu.RUnlock()
// Return cached stats
result := make(map[string]interface{})
for k, v := range s.stats {
result[k] = v
}
return result, nil
}
func (s *PrometheusStorage) GetInstances(limit int) ([]*telemetryData, error) {
s.mu.RLock()
defer s.mu.RUnlock()
var instances []*telemetryData
count := 0
for _, instance := range s.instances {
if count >= limit {
break
}
instances = append(instances, instance)
count++
}
return instances, nil
}
// GetMetrics returns fleet-wide daily totals across confirmed clusters for the
// last `days` days, in the parallel-array shape the dashboard charts expect.
// Totals come from the daily histories rather than from s.instances, which holds
// only each cluster's most recent report and so would credit every cluster to
// the single day it last reported on.
func (s *PrometheusStorage) GetMetrics(days int) (map[string]interface{}, error) {
s.mu.RLock()
defer s.mu.RUnlock()
histories := s.seriesHistories()
axis := newDailySeries(days, histories)
activeSince := time.Now().UTC().AddDate(0, 0, -activeDays).Unix()
diskUsage := make([]uint64, len(axis.dates))
serverCounts := make([]int64, len(axis.dates))
for _, history := range histories {
if disk, ok := align(axis, history, activeSince, diskBytes); ok {
for i, v := range disk {
diskUsage[i] += v
}
}
if servers, ok := align(axis, history, activeSince, serverCount); ok {
for i, v := range servers {
serverCounts[i] += int64(v)
}
}
}
return map[string]interface{}{
"dates": axis.dates,
"server_counts": serverCounts,
"disk_usage": diskUsage,
}, nil
}
func (s *PrometheusStorage) updateStats() {
now := time.Now()
last7Days := now.AddDate(0, 0, -activeDays)
last30Days := now.AddDate(0, 0, -30)
totalInstances := 0
activeInstances := 0
confirmedInstances := 0
confirmedByDays := make(map[int]int, len(confirmThresholds))
for _, threshold := range confirmThresholds {
confirmedByDays[threshold] = 0
}
versionsAll := make(map[string]int)
osAll := make(map[string]int)
versionsConfirmed := make(map[string]int)
osConfirmed := make(map[string]int)
for _, instance := range s.instances {
if instance.ReceivedAt.After(last30Days) {
totalInstances++
}
if instance.ReceivedAt.After(last7Days) {
activeInstances++
versionsAll[instance.TelemetryData.Version]++
osAll[instance.TelemetryData.Os]++
// A cluster is confirmed once seen on confirmDays distinct UTC
// days (histories hold one sample per day), so short-lived
// clusters can't skew the distributions below.
daysSeen := len(s.histories[instance.TelemetryData.TopologyId])
for _, threshold := range confirmThresholds {
if daysSeen >= threshold {
confirmedByDays[threshold]++
}
}
if daysSeen >= confirmDays {
confirmedInstances++
versionsConfirmed[instance.TelemetryData.Version]++
osConfirmed[instance.TelemetryData.Os]++
}
}
}
// Before any cluster has a week of history (fresh server with no
// prior state), fall back to all active clusters so the dashboard
// distributions aren't empty.
versions, osDistribution := versionsConfirmed, osConfirmed
if confirmedInstances == 0 {
versions, osDistribution = versionsAll, osAll
}
// Update Prometheus gauges
s.totalClusters.Set(float64(totalInstances))
s.activeClusters.Set(float64(activeInstances))
s.confirmedClusters.Set(float64(confirmedInstances))
// Update cached stats for API
s.stats = map[string]interface{}{
"total_instances": totalInstances,
"active_instances": activeInstances,
"confirmed_instances": confirmedInstances,
"confirmed_by_days": confirmedByDays,
"versions": versions,
"os_distribution": osDistribution,
}
}
// CleanupOldInstances removes instances older than the specified duration
func (s *PrometheusStorage) CleanupOldInstances(maxAge time.Duration) {
s.mu.Lock()
defer s.mu.Unlock()
cutoff := time.Now().Add(-maxAge)
for instanceID, instance := range s.instances {
if instance.ReceivedAt.Before(cutoff) {
delete(s.instances, instanceID)
s.deleteClusterMetrics(instance.TelemetryData)
s.dirty = true
}
}
for id, h := range s.histories {
if _, ok := s.instances[id]; !ok {
delete(s.histories, id)
s.dirty = true
continue
}
i := 0
for i < len(h) && time.Unix(h[i].Ts, 0).Before(cutoff) {
i++
}
if i > 0 {
s.histories[id] = append([]HistorySample(nil), h[i:]...)
s.dirty = true
}
}
s.updateStats()
}
// deleteClusterMetrics removes all gauges stored for the given report's
// cluster. Callers must hold s.mu.
func (s *PrometheusStorage) deleteClusterMetrics(data *proto.TelemetryData) {
labels := prometheus.Labels{
"cluster_id": data.TopologyId,
}
s.volumeServerCount.Delete(labels)
s.totalDiskBytes.Delete(labels)
s.totalVolumeCount.Delete(labels)
s.filerCount.Delete(labels)
s.brokerCount.Delete(labels)
s.clusterInfo.Delete(infoLabels(data))
}
// infoLabels is the full label set used by the cluster_info metric.
func infoLabels(data *proto.TelemetryData) prometheus.Labels {
return prometheus.Labels{
"cluster_id": data.TopologyId,
"version": data.Version,
"os": data.Os,
}
}