func send_gauge(client statsd.Statter, v []string, name string, position int64) { stat := fmt.Sprint(v[0], ".", name) value, _ := strconv.ParseInt(v[position], 10, 64) fmt.Println(fmt.Sprint(stat, ":", value, "|g")) err := client.Gauge(stat, value, 1.0) if err != nil { log.Printf("Error sending metric: %+v", err) } }
func pushMem(client statsd.Statter, mem Mem) error { var err error err = client.Gauge("mem.resident", mem.Resident, 1.0) if err != nil { return err } err = client.Gauge("mem.virtual", mem.Virtual, 1.0) if err != nil { return err } err = client.Gauge("mem.mapped", mem.Mapped, 1.0) if err != nil { return err } err = client.Gauge("mem.mapped_with_journal", mem.MappedWithJournal, 1.0) if err != nil { return err } return nil }
func pushExtraInfo(client statsd.Statter, info ExtraInfo) error { var err error err = client.Gauge("extra.page_faults", info.PageFaults, 1.0) if err != nil { return err } err = client.Gauge("extra.heap_usage", info.HeapUsageInBytes, 1.0) if err != nil { return err } return nil }
func pushConnections(client statsd.Statter, connections Connections) error { var err error // Connections err = client.Gauge("connections.current", int64(connections.Current), 1.0) if err != nil { return err } err = client.Gauge("connections.available", int64(connections.Available), 1.0) if err != nil { return err } err = client.Gauge("connections.created", int64(connections.TotalCreated), 1.0) if err != nil { return err } return nil }
func sendGauges(client statsd.Statter, gauges map[string]int64) { for gauge, value := range gauges { client.Gauge(gauge, value, 1.0) } }
func main() { // command line flags var opts struct { HostPort string `long:"host" default:"127.0.0.1:8125" description:"host:port of statsd server"` Prefix string `long:"prefix" default:"test-client" description:"Statsd prefix"` StatType string `long:"type" default:"count" description:"stat type to send. Can be timing, count, guage"` StatValue int64 `long:"value" default:"1" description:"Value to send"` Name string `short:"n" long:"name" default:"counter" description:"stat name"` Rate float32 `short:"r" long:"rate" default:"1.0" description:"sample rate"` Volume int `short:"c" long:"count" default:"1000" description:"Number of stats to send. Volume."` Noop bool `long:"noop" default:"false" description:"Use noop client"` Duration time.Duration `short:"d" long:"duration" default:"10s" description:"How long to spread the volume across. Each second of duration volume/seconds events will be sent."` } // parse said flags _, err := flags.Parse(&opts) if err != nil { if e, ok := err.(*flags.Error); ok { if e.Type == flags.ErrHelp { os.Exit(0) } } fmt.Printf("Error: %+v\n", err) os.Exit(1) } var client statsd.Statter if !opts.Noop { client, err = statsd.New(opts.HostPort, opts.Prefix) if err != nil { log.Fatal(err) } defer client.Close() } else { client, err = statsd.NewNoop(opts.HostPort, opts.Prefix) } var stat func(stat string, value int64, rate float32) error switch opts.StatType { case "count": stat = func(stat string, value int64, rate float32) error { return client.Inc(stat, value, rate) } case "gauge": stat = func(stat string, value int64, rate float32) error { return client.Gauge(stat, value, rate) } case "timing": stat = func(stat string, value int64, rate float32) error { return client.Timing(stat, value, rate) } default: log.Fatal("Unsupported state type") } pertick := opts.Volume / int(opts.Duration.Seconds()) / 10 // add some extra tiem, because the first tick takes a while ender := time.After(opts.Duration + 100*time.Millisecond) c := time.Tick(time.Second / 10) count := 0 for { select { case <-c: for x := 0; x < pertick; x++ { err := stat(opts.Name, opts.StatValue, opts.Rate) if err != nil { log.Printf("Got Error: %+v", err) break } count += 1 } case <-ender: log.Printf("%d events called", count) os.Exit(0) return } } }
func pushGlobalLocks(client statsd.Statter, glob GlobalLock) error { var err error err = client.Gauge("global_lock.total_time", glob.TotalTime, 1.0) if err != nil { return err } err = client.Gauge("global_lock.lock_time", glob.LockTime, 1.0) if err != nil { return err } err = client.Gauge("global_lock.active_readers", glob.ActiveClients.Readers, 1.0) if err != nil { return err } err = client.Gauge("global_lock.active_writers", glob.ActiveClients.Writers, 1.0) if err != nil { return err } err = client.Gauge("global_lock.active_total", glob.ActiveClients.Total, 1.0) if err != nil { return err } err = client.Gauge("global_lock.queued_readers", glob.CurrentQueue.Readers, 1.0) if err != nil { return err } err = client.Gauge("global_lock.queued_writers", glob.CurrentQueue.Writers, 1.0) if err != nil { return err } err = client.Gauge("global_lock.queued_total", glob.CurrentQueue.Total, 1.0) if err != nil { return err } return nil }
func pushOpcounters(client statsd.Statter, opscounters Opcounters) error { var err error // Ops Counters (non-RS) err = client.Gauge("ops.inserts", opscounters.Insert, 1.0) if err != nil { return err } err = client.Gauge("ops.queries", opscounters.Query, 1.0) if err != nil { return err } err = client.Gauge("ops.updates", opscounters.Update, 1.0) if err != nil { return err } err = client.Gauge("ops.deletes", opscounters.Delete, 1.0) if err != nil { return err } err = client.Gauge("ops.getmores", opscounters.GetMore, 1.0) if err != nil { return err } err = client.Gauge("ops.commands", opscounters.Command, 1.0) if err != nil { return err } return nil }
// ProfileCmd runs forever, sending Go runtime statistics to StatsD. func ProfileCmd(stats statsd.Statter) { c := time.Tick(1 * time.Second) for range c { var memoryStats runtime.MemStats runtime.ReadMemStats(&memoryStats) stats.Gauge("Gostats.Goroutines", int64(runtime.NumGoroutine()), 1.0) stats.Gauge("Gostats.Heap.Alloc", int64(memoryStats.HeapAlloc), 1.0) stats.Gauge("Gostats.Heap.Objects", int64(memoryStats.HeapObjects), 1.0) stats.Gauge("Gostats.Heap.Idle", int64(memoryStats.HeapIdle), 1.0) stats.Gauge("Gostats.Heap.InUse", int64(memoryStats.HeapInuse), 1.0) stats.Gauge("Gostats.Heap.Released", int64(memoryStats.HeapReleased), 1.0) // Calculate average and last and convert from nanoseconds to milliseconds gcPauseAvg := (int64(memoryStats.PauseTotalNs) / int64(len(memoryStats.PauseNs))) / 1000000 lastGC := int64(memoryStats.PauseNs[(memoryStats.NumGC+255)%256]) / 1000000 stats.Timing("Gostats.Gc.PauseAvg", gcPauseAvg, 1.0) stats.Gauge("Gostats.Gc.LastPauseTook", lastGC, 1.0) stats.Gauge("Gostats.Gc.NextAt", int64(memoryStats.NextGC), 1.0) } }