Files
seaweedfs/telemetry/server/storage/prometheus.go
T
Chris LuandGitHub c194924d13 telemetry: per-cluster size over time on the dashboard (#10417)
The dashboard charted one summed disk-usage line, so a step in the total
gave no hint which cluster moved. A new panel stacks each cluster's daily
size as its own band: the top of the stack is the fleet total, each band
is one cluster, and the clusters past the twentieth are summed into an
"other" band so the stack still adds up to the total.

The series is built from the per-cluster daily histories and served by
/api/cluster-sizes. Clusters report roughly once a day at no fixed hour,
so a day with no report carries the previous value forward — dropping it
to zero would sag the total every day as the clusters that have not
reported yet fall out from under it. A cluster that stops reporting past
the active window ends at its last sample instead of holding capacity
forever. Ranking is by the most recent day, tie-broken on cluster id so
the colors do not shuffle between refreshes.

Hover and click resolve to the band under the pointer: Chart.js's builtin
interaction modes match the nearest line, which on a stack of thin bands
is rarely the band being pointed at. Clicking one fills the per-cluster
history lookup below it.
2026-07-24 01:43:48 -07:00

318 lines
9.8 KiB
Go

package storage
import (
"sort"
"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 2 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
}
func (s *PrometheusStorage) GetMetrics(days int) (map[string]interface{}, error) {
s.mu.RLock()
defer s.mu.RUnlock()
// Return current metrics from in-memory storage, aggregated per day
// in the parallel-array shape the dashboard charts expect.
// Historical data should be queried from Prometheus directly.
cutoff := time.Now().AddDate(0, 0, -days)
serverCountByDate := make(map[string]int64)
diskUsageByDate := make(map[string]uint64)
for _, instance := range s.instances {
if instance.ReceivedAt.After(cutoff) {
date := instance.ReceivedAt.Format("2006-01-02")
serverCountByDate[date] += int64(instance.TelemetryData.VolumeServerCount)
diskUsageByDate[date] += instance.TelemetryData.TotalDiskBytes
}
}
dates := make([]string, 0, len(serverCountByDate))
for date := range serverCountByDate {
dates = append(dates, date)
}
sort.Strings(dates)
serverCounts := make([]int64, 0, len(dates))
diskUsage := make([]uint64, 0, len(dates))
for _, date := range dates {
serverCounts = append(serverCounts, serverCountByDate[date])
diskUsage = append(diskUsage, diskUsageByDate[date])
}
return map[string]interface{}{
"dates": 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
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 >=2 distinct UTC days
// (histories hold one sample per day), so one-shot reports
// can't skew the distributions below.
if len(s.histories[instance.TelemetryData.TopologyId]) >= confirmDays {
confirmedInstances++
versionsConfirmed[instance.TelemetryData.Version]++
osConfirmed[instance.TelemetryData.Os]++
}
}
}
// Before any cluster has two days 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,
"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,
}
}