writer.go 2.7 KB

12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667686970717273747576
  1. package metrics
  2. import (
  3. "fmt"
  4. "io"
  5. "time"
  6. )
  7. // Output each metric in the given registry periodically using the given
  8. // io.Writer.
  9. func Write(r Registry, d time.Duration, w io.Writer) {
  10. for {
  11. WriteOnce(r, w)
  12. time.Sleep(d)
  13. }
  14. }
  15. func WriteOnce(r Registry, w io.Writer) {
  16. r.Each(func(name string, i interface{}) {
  17. switch metric := i.(type) {
  18. case Counter:
  19. fmt.Fprintf(w, "counter %s\n", name)
  20. fmt.Fprintf(w, " count: %9d\n", metric.Count())
  21. case Gauge:
  22. fmt.Fprintf(w, "gauge %s\n", name)
  23. fmt.Fprintf(w, " value: %9d\n", metric.Value())
  24. case GaugeFloat64:
  25. fmt.Fprintf(w, "gauge %s\n", name)
  26. fmt.Fprintf(w, " value: %f\n", metric.Value())
  27. case Healthcheck:
  28. metric.Check()
  29. fmt.Fprintf(w, "healthcheck %s\n", name)
  30. fmt.Fprintf(w, " error: %v\n", metric.Error())
  31. case Histogram:
  32. h := metric.Snapshot()
  33. ps := h.Percentiles([]float64{0.5, 0.75, 0.95, 0.99, 0.999})
  34. fmt.Fprintf(w, "histogram %s\n", name)
  35. fmt.Fprintf(w, " count: %9d\n", h.Count())
  36. fmt.Fprintf(w, " min: %9d\n", h.Min())
  37. fmt.Fprintf(w, " max: %9d\n", h.Max())
  38. fmt.Fprintf(w, " mean: %12.2f\n", h.Mean())
  39. fmt.Fprintf(w, " stddev: %12.2f\n", h.StdDev())
  40. fmt.Fprintf(w, " median: %12.2f\n", ps[0])
  41. fmt.Fprintf(w, " 75%%: %12.2f\n", ps[1])
  42. fmt.Fprintf(w, " 95%%: %12.2f\n", ps[2])
  43. fmt.Fprintf(w, " 99%%: %12.2f\n", ps[3])
  44. fmt.Fprintf(w, " 99.9%%: %12.2f\n", ps[4])
  45. case Meter:
  46. m := metric.Snapshot()
  47. fmt.Fprintf(w, "meter %s\n", name)
  48. fmt.Fprintf(w, " count: %9d\n", m.Count())
  49. fmt.Fprintf(w, " 1-min rate: %12.2f\n", m.Rate1())
  50. fmt.Fprintf(w, " 5-min rate: %12.2f\n", m.Rate5())
  51. fmt.Fprintf(w, " 15-min rate: %12.2f\n", m.Rate15())
  52. fmt.Fprintf(w, " mean rate: %12.2f\n", m.RateMean())
  53. case Timer:
  54. t := metric.Snapshot()
  55. ps := t.Percentiles([]float64{0.5, 0.75, 0.95, 0.99, 0.999})
  56. fmt.Fprintf(w, "timer %s\n", name)
  57. fmt.Fprintf(w, " count: %9d\n", t.Count())
  58. fmt.Fprintf(w, " min: %9d\n", t.Min())
  59. fmt.Fprintf(w, " max: %9d\n", t.Max())
  60. fmt.Fprintf(w, " mean: %12.2f\n", t.Mean())
  61. fmt.Fprintf(w, " stddev: %12.2f\n", t.StdDev())
  62. fmt.Fprintf(w, " median: %12.2f\n", ps[0])
  63. fmt.Fprintf(w, " 75%%: %12.2f\n", ps[1])
  64. fmt.Fprintf(w, " 95%%: %12.2f\n", ps[2])
  65. fmt.Fprintf(w, " 99%%: %12.2f\n", ps[3])
  66. fmt.Fprintf(w, " 99.9%%: %12.2f\n", ps[4])
  67. fmt.Fprintf(w, " 1-min rate: %12.2f\n", t.Rate1())
  68. fmt.Fprintf(w, " 5-min rate: %12.2f\n", t.Rate5())
  69. fmt.Fprintf(w, " 15-min rate: %12.2f\n", t.Rate15())
  70. fmt.Fprintf(w, " mean rate: %12.2f\n", t.RateMean())
  71. }
  72. })
  73. }