librato.go 7.1 KB

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  1. package librato
  2. import (
  3. "fmt"
  4. "github.com/rcrowley/go-metrics"
  5. "log"
  6. "math"
  7. "regexp"
  8. "time"
  9. )
  10. // a regexp for extracting the unit from time.Duration.String
  11. var unitRegexp = regexp.MustCompile("[^\\d]+$")
  12. // a helper that turns a time.Duration into librato display attributes for timer metrics
  13. func translateTimerAttributes(d time.Duration) (attrs map[string]interface{}) {
  14. attrs = make(map[string]interface{})
  15. attrs[DisplayTransform] = fmt.Sprintf("x/%d", int64(d))
  16. attrs[DisplayUnitsShort] = string(unitRegexp.Find([]byte(d.String())))
  17. return
  18. }
  19. type Reporter struct {
  20. Email, Token string
  21. Source string
  22. Interval time.Duration
  23. Registry metrics.Registry
  24. Percentiles []float64 // percentiles to report on histogram metrics
  25. TimerAttributes map[string]interface{} // units in which timers will be displayed
  26. }
  27. func NewReporter(r metrics.Registry, d time.Duration, e string, t string, s string, p []float64, u time.Duration) *Reporter {
  28. return &Reporter{e, t, s, d, r, p, translateTimerAttributes(u)}
  29. }
  30. func Librato(r metrics.Registry, d time.Duration, e string, t string, s string, p []float64, u time.Duration) {
  31. NewReporter(r, d, e, t, s, p, u).Run()
  32. }
  33. func (self *Reporter) Run() {
  34. ticker := time.Tick(self.Interval)
  35. metricsApi := &LibratoClient{self.Email, self.Token}
  36. for now := range ticker {
  37. var metrics Batch
  38. var err error
  39. if metrics, err = self.BuildRequest(now, self.Registry); err != nil {
  40. log.Printf("ERROR constructing librato request body %s", err)
  41. }
  42. if err := metricsApi.PostMetrics(metrics); err != nil {
  43. log.Printf("ERROR sending metrics to librato %s", err)
  44. }
  45. }
  46. }
  47. // calculate sum of squares from data provided by metrics.Histogram
  48. // see http://en.wikipedia.org/wiki/Standard_deviation#Rapid_calculation_methods
  49. func sumSquares(s metrics.Sample) float64 {
  50. count := float64(s.Count())
  51. sumSquared := math.Pow(count*s.Mean(), 2)
  52. sumSquares := math.Pow(count*s.StdDev(), 2) + sumSquared/count
  53. if math.IsNaN(sumSquares) {
  54. return 0.0
  55. }
  56. return sumSquares
  57. }
  58. func sumSquaresTimer(t metrics.Timer) float64 {
  59. count := float64(t.Count())
  60. sumSquared := math.Pow(count*t.Mean(), 2)
  61. sumSquares := math.Pow(count*t.StdDev(), 2) + sumSquared/count
  62. if math.IsNaN(sumSquares) {
  63. return 0.0
  64. }
  65. return sumSquares
  66. }
  67. func (self *Reporter) BuildRequest(now time.Time, r metrics.Registry) (snapshot Batch, err error) {
  68. snapshot = Batch{
  69. MeasureTime: now.Unix(),
  70. Source: self.Source,
  71. }
  72. snapshot.MeasureTime = now.Unix()
  73. snapshot.Gauges = make([]Measurement, 0)
  74. snapshot.Counters = make([]Measurement, 0)
  75. histogramGaugeCount := 1 + len(self.Percentiles)
  76. r.Each(func(name string, metric interface{}) {
  77. measurement := Measurement{}
  78. measurement[Period] = self.Interval.Seconds()
  79. switch m := metric.(type) {
  80. case metrics.Counter:
  81. measurement[Name] = fmt.Sprintf("%s.%s", name, "count")
  82. measurement[Value] = float64(m.Count())
  83. measurement[Attributes] = map[string]interface{}{
  84. DisplayUnitsLong: Operations,
  85. DisplayUnitsShort: OperationsShort,
  86. DisplayMin: "0",
  87. }
  88. snapshot.Counters = append(snapshot.Counters, measurement)
  89. case metrics.Gauge:
  90. measurement[Name] = name
  91. measurement[Value] = float64(m.Value())
  92. snapshot.Gauges = append(snapshot.Gauges, measurement)
  93. case metrics.GaugeFloat64:
  94. measurement[Name] = name
  95. measurement[Value] = float64(m.Value())
  96. snapshot.Gauges = append(snapshot.Gauges, measurement)
  97. case metrics.Histogram:
  98. if m.Count() > 0 {
  99. gauges := make([]Measurement, histogramGaugeCount, histogramGaugeCount)
  100. s := m.Sample()
  101. measurement[Name] = fmt.Sprintf("%s.%s", name, "hist")
  102. measurement[Count] = uint64(s.Count())
  103. measurement[Sum] = s.Sum()
  104. measurement[Max] = float64(s.Max())
  105. measurement[Min] = float64(s.Min())
  106. measurement[SumSquares] = sumSquares(s)
  107. gauges[0] = measurement
  108. for i, p := range self.Percentiles {
  109. gauges[i+1] = Measurement{
  110. Name: fmt.Sprintf("%s.%.2f", measurement[Name], p),
  111. Value: s.Percentile(p),
  112. Period: measurement[Period],
  113. }
  114. }
  115. snapshot.Gauges = append(snapshot.Gauges, gauges...)
  116. }
  117. case metrics.Meter:
  118. measurement[Name] = name
  119. measurement[Value] = float64(m.Count())
  120. snapshot.Counters = append(snapshot.Counters, measurement)
  121. snapshot.Gauges = append(snapshot.Gauges,
  122. Measurement{
  123. Name: fmt.Sprintf("%s.%s", name, "1min"),
  124. Value: m.Rate1(),
  125. Period: int64(self.Interval.Seconds()),
  126. Attributes: map[string]interface{}{
  127. DisplayUnitsLong: Operations,
  128. DisplayUnitsShort: OperationsShort,
  129. DisplayMin: "0",
  130. },
  131. },
  132. Measurement{
  133. Name: fmt.Sprintf("%s.%s", name, "5min"),
  134. Value: m.Rate5(),
  135. Period: int64(self.Interval.Seconds()),
  136. Attributes: map[string]interface{}{
  137. DisplayUnitsLong: Operations,
  138. DisplayUnitsShort: OperationsShort,
  139. DisplayMin: "0",
  140. },
  141. },
  142. Measurement{
  143. Name: fmt.Sprintf("%s.%s", name, "15min"),
  144. Value: m.Rate15(),
  145. Period: int64(self.Interval.Seconds()),
  146. Attributes: map[string]interface{}{
  147. DisplayUnitsLong: Operations,
  148. DisplayUnitsShort: OperationsShort,
  149. DisplayMin: "0",
  150. },
  151. },
  152. )
  153. case metrics.Timer:
  154. measurement[Name] = name
  155. measurement[Value] = float64(m.Count())
  156. snapshot.Counters = append(snapshot.Counters, measurement)
  157. if m.Count() > 0 {
  158. libratoName := fmt.Sprintf("%s.%s", name, "timer.mean")
  159. gauges := make([]Measurement, histogramGaugeCount, histogramGaugeCount)
  160. gauges[0] = Measurement{
  161. Name: libratoName,
  162. Count: uint64(m.Count()),
  163. Sum: m.Mean() * float64(m.Count()),
  164. Max: float64(m.Max()),
  165. Min: float64(m.Min()),
  166. SumSquares: sumSquaresTimer(m),
  167. Period: int64(self.Interval.Seconds()),
  168. Attributes: self.TimerAttributes,
  169. }
  170. for i, p := range self.Percentiles {
  171. gauges[i+1] = Measurement{
  172. Name: fmt.Sprintf("%s.timer.%2.0f", name, p*100),
  173. Value: m.Percentile(p),
  174. Period: int64(self.Interval.Seconds()),
  175. Attributes: self.TimerAttributes,
  176. }
  177. }
  178. snapshot.Gauges = append(snapshot.Gauges, gauges...)
  179. snapshot.Gauges = append(snapshot.Gauges,
  180. Measurement{
  181. Name: fmt.Sprintf("%s.%s", name, "rate.1min"),
  182. Value: m.Rate1(),
  183. Period: int64(self.Interval.Seconds()),
  184. Attributes: map[string]interface{}{
  185. DisplayUnitsLong: Operations,
  186. DisplayUnitsShort: OperationsShort,
  187. DisplayMin: "0",
  188. },
  189. },
  190. Measurement{
  191. Name: fmt.Sprintf("%s.%s", name, "rate.5min"),
  192. Value: m.Rate5(),
  193. Period: int64(self.Interval.Seconds()),
  194. Attributes: map[string]interface{}{
  195. DisplayUnitsLong: Operations,
  196. DisplayUnitsShort: OperationsShort,
  197. DisplayMin: "0",
  198. },
  199. },
  200. Measurement{
  201. Name: fmt.Sprintf("%s.%s", name, "rate.15min"),
  202. Value: m.Rate15(),
  203. Period: int64(self.Interval.Seconds()),
  204. Attributes: map[string]interface{}{
  205. DisplayUnitsLong: Operations,
  206. DisplayUnitsShort: OperationsShort,
  207. DisplayMin: "0",
  208. },
  209. },
  210. )
  211. }
  212. }
  213. })
  214. return
  215. }