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haproxy_exporter.go
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haproxy_exporter.go
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package main
import (
"crypto/tls"
"encoding/csv"
"errors"
"fmt"
"io"
"io/ioutil"
"net"
"net/http"
_ "net/http/pprof"
"net/url"
"sort"
"strconv"
"strings"
"sync"
"time"
"github.com/prometheus/client_golang/prometheus"
"github.com/prometheus/common/log"
"github.com/prometheus/common/version"
"gopkg.in/alecthomas/kingpin.v2"
)
const (
namespace = "haproxy" // For Prometheus metrics.
// HAProxy 1.4
// # pxname,svname,qcur,qmax,scur,smax,slim,stot,bin,bout,dreq,dresp,ereq,econ,eresp,wretr,wredis,status,weight,act,bck,chkfail,chkdown,lastchg,downtime,qlimit,pid,iid,sid,throttle,lbtot,tracked,type,rate,rate_lim,rate_max,check_status,check_code,check_duration,hrsp_1xx,hrsp_2xx,hrsp_3xx,hrsp_4xx,hrsp_5xx,hrsp_other,hanafail,req_rate,req_rate_max,req_tot,cli_abrt,srv_abrt,
// HAProxy 1.5
// pxname,svname,qcur,qmax,scur,smax,slim,stot,bin,bout,dreq,dresp,ereq,econ,eresp,wretr,wredis,status,weight,act,bck,chkfail,chkdown,lastchg,downtime,qlimit,pid,iid,sid,throttle,lbtot,tracked,type,rate,rate_lim,rate_max,check_status,check_code,check_duration,hrsp_1xx,hrsp_2xx,hrsp_3xx,hrsp_4xx,hrsp_5xx,hrsp_other,hanafail,req_rate,req_rate_max,req_tot,cli_abrt,srv_abrt,comp_in,comp_out,comp_byp,comp_rsp,lastsess,
// HAProxy 1.5.19
// pxname,svname,qcur,qmax,scur,smax,slim,stot,bin,bout,dreq,dresp,ereq,econ,eresp,wretr,wredis,status,weight,act,bck,chkfail,chkdown,lastchg,downtime,qlimit,pid,iid,sid,throttle,lbtot,tracked,type,rate,rate_lim,rate_max,check_status,check_code,check_duration,hrsp_1xx,hrsp_2xx,hrsp_3xx,hrsp_4xx,hrsp_5xx,hrsp_other,hanafail,req_rate,req_rate_max,req_tot,cli_abrt,srv_abrt,comp_in,comp_out,comp_byp,comp_rsp,lastsess,last_chk,last_agt,qtime,ctime,rtime,ttime,
// HAProxy 1.7
// pxname,svname,qcur,qmax,scur,smax,slim,stot,bin,bout,dreq,dresp,ereq,econ,eresp,wretr,wredis,status,weight,act,bck,chkfail,chkdown,lastchg,downtime,qlimit,pid,iid,sid,throttle,lbtot,tracked,type,rate,rate_lim,rate_max,check_status,check_code,check_duration,hrsp_1xx,hrsp_2xx,hrsp_3xx,hrsp_4xx,hrsp_5xx,hrsp_other,hanafail,req_rate,req_rate_max,req_tot,cli_abrt,srv_abrt,comp_in,comp_out,comp_byp,comp_rsp,lastsess,last_chk,last_agt,qtime,ctime,rtime,ttime,agent_status,agent_code,agent_duration,check_desc,agent_desc,check_rise,check_fall,check_health,agent_rise,agent_fall,agent_health,addr,cookie,mode,algo,conn_rate,conn_rate_max,conn_tot,intercepted,dcon,dses
minimumCsvFieldCount = 33
statusField = 17
qtimeMsField = 58
ctimeMsField = 59
rtimeMsField = 60
ttimeMsField = 61
)
var (
frontendLabelNames = []string{"frontend"}
backendLabelNames = []string{"backend"}
serverLabelNames = []string{"backend", "server"}
)
func newFrontendMetric(metricName string, docString string, constLabels prometheus.Labels) *prometheus.GaugeVec {
return prometheus.NewGaugeVec(
prometheus.GaugeOpts{
Namespace: namespace,
Name: "frontend_" + metricName,
Help: docString,
ConstLabels: constLabels,
},
frontendLabelNames,
)
}
func newBackendMetric(metricName string, docString string, constLabels prometheus.Labels) *prometheus.GaugeVec {
return prometheus.NewGaugeVec(
prometheus.GaugeOpts{
Namespace: namespace,
Name: "backend_" + metricName,
Help: docString,
ConstLabels: constLabels,
},
backendLabelNames,
)
}
func newServerMetric(metricName string, docString string, constLabels prometheus.Labels) *prometheus.GaugeVec {
return prometheus.NewGaugeVec(
prometheus.GaugeOpts{
Namespace: namespace,
Name: "server_" + metricName,
Help: docString,
ConstLabels: constLabels,
},
serverLabelNames,
)
}
type metrics map[int]*prometheus.GaugeVec
func (m metrics) String() string {
keys := make([]int, 0, len(m))
for k := range m {
keys = append(keys, k)
}
sort.Ints(keys)
s := make([]string, len(keys))
for i, k := range keys {
s[i] = strconv.Itoa(k)
}
return strings.Join(s, ",")
}
var (
serverMetrics = metrics{
2: newServerMetric("current_queue", "Current number of queued requests assigned to this server.", nil),
3: newServerMetric("max_queue", "Maximum observed number of queued requests assigned to this server.", nil),
4: newServerMetric("current_sessions", "Current number of active sessions.", nil),
5: newServerMetric("max_sessions", "Maximum observed number of active sessions.", nil),
6: newServerMetric("limit_sessions", "Configured session limit.", nil),
7: newServerMetric("sessions_total", "Total number of sessions.", nil),
8: newServerMetric("bytes_in_total", "Current total of incoming bytes.", nil),
9: newServerMetric("bytes_out_total", "Current total of outgoing bytes.", nil),
13: newServerMetric("connection_errors_total", "Total of connection errors.", nil),
14: newServerMetric("response_errors_total", "Total of response errors.", nil),
15: newServerMetric("retry_warnings_total", "Total of retry warnings.", nil),
16: newServerMetric("redispatch_warnings_total", "Total of redispatch warnings.", nil),
17: newServerMetric("up", "Current health status of the server (1 = UP, 0 = DOWN).", nil),
18: newServerMetric("weight", "Current weight of the server.", nil),
21: newServerMetric("check_failures_total", "Total number of failed health checks.", nil),
24: newServerMetric("downtime_seconds_total", "Total downtime in seconds.", nil),
33: newServerMetric("current_session_rate", "Current number of sessions per second over last elapsed second.", nil),
35: newServerMetric("max_session_rate", "Maximum observed number of sessions per second.", nil),
38: newServerMetric("check_duration_milliseconds", "Previously run health check duration, in milliseconds", nil),
39: newServerMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "1xx"}),
40: newServerMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "2xx"}),
41: newServerMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "3xx"}),
42: newServerMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "4xx"}),
43: newServerMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "5xx"}),
44: newServerMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "other"}),
}
)
// Exporter collects HAProxy stats from the given URI and exports them using
// the prometheus metrics package.
type Exporter struct {
URI string
mutex sync.RWMutex
fetch func() (io.ReadCloser, error)
up prometheus.Gauge
totalScrapes, csvParseFailures prometheus.Counter
frontendMetrics, backendMetrics, serverMetrics map[int]*prometheus.GaugeVec
}
// NewExporter returns an initialized Exporter.
func NewExporter(uri string, sslVerify bool, selectedServerMetrics map[int]*prometheus.GaugeVec, timeout time.Duration) (*Exporter, error) {
u, err := url.Parse(uri)
if err != nil {
return nil, err
}
var fetch func() (io.ReadCloser, error)
switch u.Scheme {
case "http", "https", "file":
fetch = fetchHTTP(uri, sslVerify, timeout)
case "unix":
fetch = fetchUnix(u, timeout)
default:
return nil, fmt.Errorf("unsupported scheme: %q", u.Scheme)
}
return &Exporter{
URI: uri,
fetch: fetch,
up: prometheus.NewGauge(prometheus.GaugeOpts{
Namespace: namespace,
Name: "up",
Help: "Was the last scrape of haproxy successful.",
}),
totalScrapes: prometheus.NewCounter(prometheus.CounterOpts{
Namespace: namespace,
Name: "exporter_total_scrapes",
Help: "Current total HAProxy scrapes.",
}),
csvParseFailures: prometheus.NewCounter(prometheus.CounterOpts{
Namespace: namespace,
Name: "exporter_csv_parse_failures",
Help: "Number of errors while parsing CSV.",
}),
frontendMetrics: map[int]*prometheus.GaugeVec{
4: newFrontendMetric("current_sessions", "Current number of active sessions.", nil),
5: newFrontendMetric("max_sessions", "Maximum observed number of active sessions.", nil),
6: newFrontendMetric("limit_sessions", "Configured session limit.", nil),
7: newFrontendMetric("sessions_total", "Total number of sessions.", nil),
8: newFrontendMetric("bytes_in_total", "Current total of incoming bytes.", nil),
9: newFrontendMetric("bytes_out_total", "Current total of outgoing bytes.", nil),
10: newFrontendMetric("requests_denied_total", "Total of requests denied for security.", nil),
12: newFrontendMetric("request_errors_total", "Total of request errors.", nil),
33: newFrontendMetric("current_session_rate", "Current number of sessions per second over last elapsed second.", nil),
34: newFrontendMetric("limit_session_rate", "Configured limit on new sessions per second.", nil),
35: newFrontendMetric("max_session_rate", "Maximum observed number of sessions per second.", nil),
39: newFrontendMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "1xx"}),
40: newFrontendMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "2xx"}),
41: newFrontendMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "3xx"}),
42: newFrontendMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "4xx"}),
43: newFrontendMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "5xx"}),
44: newFrontendMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "other"}),
48: newFrontendMetric("http_requests_total", "Total HTTP requests.", nil),
79: newFrontendMetric("connections_total", "Total number of connections", nil),
},
backendMetrics: map[int]*prometheus.GaugeVec{
2: newBackendMetric("current_queue", "Current number of queued requests not assigned to any server.", nil),
3: newBackendMetric("max_queue", "Maximum observed number of queued requests not assigned to any server.", nil),
4: newBackendMetric("current_sessions", "Current number of active sessions.", nil),
5: newBackendMetric("max_sessions", "Maximum observed number of active sessions.", nil),
6: newBackendMetric("limit_sessions", "Configured session limit.", nil),
7: newBackendMetric("sessions_total", "Total number of sessions.", nil),
8: newBackendMetric("bytes_in_total", "Current total of incoming bytes.", nil),
9: newBackendMetric("bytes_out_total", "Current total of outgoing bytes.", nil),
13: newBackendMetric("connection_errors_total", "Total of connection errors.", nil),
14: newBackendMetric("response_errors_total", "Total of response errors.", nil),
15: newBackendMetric("retry_warnings_total", "Total of retry warnings.", nil),
16: newBackendMetric("redispatch_warnings_total", "Total of redispatch warnings.", nil),
17: newBackendMetric("up", "Current health status of the backend (1 = UP, 0 = DOWN).", nil),
18: newBackendMetric("weight", "Total weight of the servers in the backend.", nil),
19: newBackendMetric("current_server", "Current number of active servers", nil),
33: newBackendMetric("current_session_rate", "Current number of sessions per second over last elapsed second.", nil),
35: newBackendMetric("max_session_rate", "Maximum number of sessions per second.", nil),
39: newBackendMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "1xx"}),
40: newBackendMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "2xx"}),
41: newBackendMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "3xx"}),
42: newBackendMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "4xx"}),
43: newBackendMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "5xx"}),
44: newBackendMetric("http_responses_total", "Total of HTTP responses.", prometheus.Labels{"code": "other"}),
58: newBackendMetric("http_queue_time_average_seconds", "Avg. HTTP queue time for last 1024 successful connections.", nil),
59: newBackendMetric("http_connect_time_average_seconds", "Avg. HTTP connect time for last 1024 successful connections.", nil),
60: newBackendMetric("http_response_time_average_seconds", "Avg. HTTP response time for last 1024 successful connections.", nil),
61: newBackendMetric("http_total_time_average_seconds", "Avg. HTTP total time for last 1024 successful connections.", nil),
},
serverMetrics: selectedServerMetrics,
}, nil
}
// Describe describes all the metrics ever exported by the HAProxy exporter. It
// implements prometheus.Collector.
func (e *Exporter) Describe(ch chan<- *prometheus.Desc) {
for _, m := range e.frontendMetrics {
m.Describe(ch)
}
for _, m := range e.backendMetrics {
m.Describe(ch)
}
for _, m := range e.serverMetrics {
m.Describe(ch)
}
ch <- e.up.Desc()
ch <- e.totalScrapes.Desc()
ch <- e.csvParseFailures.Desc()
}
// Collect fetches the stats from configured HAProxy location and delivers them
// as Prometheus metrics. It implements prometheus.Collector.
func (e *Exporter) Collect(ch chan<- prometheus.Metric) {
e.mutex.Lock() // To protect metrics from concurrent collects.
defer e.mutex.Unlock()
e.resetMetrics()
e.scrape()
ch <- e.up
ch <- e.totalScrapes
ch <- e.csvParseFailures
e.collectMetrics(ch)
}
func fetchHTTP(uri string, sslVerify bool, timeout time.Duration) func() (io.ReadCloser, error) {
tr := &http.Transport{TLSClientConfig: &tls.Config{InsecureSkipVerify: !sslVerify}}
client := http.Client{
Timeout: timeout,
Transport: tr,
}
return func() (io.ReadCloser, error) {
resp, err := client.Get(uri)
if err != nil {
return nil, err
}
if !(resp.StatusCode >= 200 && resp.StatusCode < 300) {
resp.Body.Close()
return nil, fmt.Errorf("HTTP status %d", resp.StatusCode)
}
return resp.Body, nil
}
}
func fetchUnix(u *url.URL, timeout time.Duration) func() (io.ReadCloser, error) {
return func() (io.ReadCloser, error) {
f, err := net.DialTimeout("unix", u.Path, timeout)
if err != nil {
return nil, err
}
if err := f.SetDeadline(time.Now().Add(timeout)); err != nil {
f.Close()
return nil, err
}
cmd := "show stat\n"
n, err := io.WriteString(f, cmd)
if err != nil {
f.Close()
return nil, err
}
if n != len(cmd) {
f.Close()
return nil, errors.New("write error")
}
return f, nil
}
}
func (e *Exporter) scrape() {
e.totalScrapes.Inc()
body, err := e.fetch()
if err != nil {
e.up.Set(0)
log.Errorf("Can't scrape HAProxy: %v", err)
return
}
defer body.Close()
e.up.Set(1)
reader := csv.NewReader(body)
reader.TrailingComma = true
reader.Comment = '#'
loop:
for {
row, err := reader.Read()
switch err {
case nil:
case io.EOF:
break loop
default:
if _, ok := err.(*csv.ParseError); ok {
log.Errorf("Can't read CSV: %v", err)
e.csvParseFailures.Inc()
continue loop
}
log.Errorf("Unexpected error while reading CSV: %v", err)
e.up.Set(0)
break loop
}
e.parseRow(row)
}
}
func (e *Exporter) resetMetrics() {
for _, m := range e.frontendMetrics {
m.Reset()
}
for _, m := range e.backendMetrics {
m.Reset()
}
for _, m := range e.serverMetrics {
m.Reset()
}
}
func (e *Exporter) collectMetrics(metrics chan<- prometheus.Metric) {
for _, m := range e.frontendMetrics {
m.Collect(metrics)
}
for _, m := range e.backendMetrics {
m.Collect(metrics)
}
for _, m := range e.serverMetrics {
m.Collect(metrics)
}
}
func (e *Exporter) parseRow(csvRow []string) {
if len(csvRow) < minimumCsvFieldCount {
log.Errorf("Parser expected at least %d CSV fields, but got: %d", minimumCsvFieldCount, len(csvRow))
e.csvParseFailures.Inc()
return
}
pxname, svname, typ := csvRow[0], csvRow[1], csvRow[32]
const (
frontend = "0"
backend = "1"
server = "2"
listener = "3"
)
switch typ {
case frontend:
e.exportCsvFields(e.frontendMetrics, csvRow, pxname)
case backend:
e.exportCsvFields(e.backendMetrics, csvRow, pxname)
case server:
e.exportCsvFields(e.serverMetrics, csvRow, pxname, svname)
}
}
func parseStatusField(value string) int64 {
switch value {
case "UP", "UP 1/3", "UP 2/3", "OPEN", "no check":
return 1
case "DOWN", "DOWN 1/2", "NOLB", "MAINT":
return 0
}
return 0
}
func (e *Exporter) exportCsvFields(metrics map[int]*prometheus.GaugeVec, csvRow []string, labels ...string) {
for fieldIdx, metric := range metrics {
if fieldIdx > len(csvRow)-1 {
break
}
valueStr := csvRow[fieldIdx]
if valueStr == "" {
continue
}
var err error = nil
var value float64
var valueInt int64
switch fieldIdx {
case statusField:
valueInt = parseStatusField(valueStr)
value = float64(valueInt)
case qtimeMsField, ctimeMsField, rtimeMsField, ttimeMsField:
value, err = strconv.ParseFloat(valueStr, 64)
value /= 1000
default:
valueInt, err = strconv.ParseInt(valueStr, 10, 64)
value = float64(valueInt)
}
if err != nil {
log.Errorf("Can't parse CSV field value %s: %v", valueStr, err)
e.csvParseFailures.Inc()
continue
}
metric.WithLabelValues(labels...).Set(value)
}
}
// filterServerMetrics returns the set of server metrics specified by the comma
// separated filter.
func filterServerMetrics(filter string) (map[int]*prometheus.GaugeVec, error) {
metrics := map[int]*prometheus.GaugeVec{}
if len(filter) == 0 {
return metrics, nil
}
selected := map[int]struct{}{}
for _, f := range strings.Split(filter, ",") {
field, err := strconv.Atoi(f)
if err != nil {
return nil, fmt.Errorf("invalid server metric field number: %v", f)
}
selected[field] = struct{}{}
}
for field, metric := range serverMetrics {
if _, ok := selected[field]; ok {
metrics[field] = metric
}
}
return metrics, nil
}
func main() {
const pidFileHelpText = `Path to HAProxy pid file.
If provided, the standard process metrics get exported for the HAProxy
process, prefixed with 'haproxy_process_...'. The haproxy_process exporter
needs to have read access to files owned by the HAProxy process. Depends on
the availability of /proc.
https://prometheus.io/docs/instrumenting/writing_clientlibs/#process-metrics.`
var (
listenAddress = kingpin.Flag("web.listen-address", "Address to listen on for web interface and telemetry.").Default(":9101").String()
metricsPath = kingpin.Flag("web.telemetry-path", "Path under which to expose metrics.").Default("/metrics").String()
haProxyScrapeURI = kingpin.Flag("haproxy.scrape-uri", "URI on which to scrape HAProxy.").Default("http://localhost/;csv").String()
haProxySSLVerify = kingpin.Flag("haproxy.ssl-verify", "Flag that enables SSL certificate verification for the scrape URI").Default("true").Bool()
haProxyServerMetricFields = kingpin.Flag("haproxy.server-metric-fields", "Comma-separated list of exported server metrics. See http://cbonte.github.io/haproxy-dconv/configuration-1.5.html#9.1").Default(serverMetrics.String()).String()
haProxyTimeout = kingpin.Flag("haproxy.timeout", "Timeout for trying to get stats from HAProxy.").Default("5s").Duration()
haProxyPidFile = kingpin.Flag("haproxy.pid-file", pidFileHelpText).Default("").String()
)
log.AddFlags(kingpin.CommandLine)
kingpin.Version(version.Print("haproxy_exporter"))
kingpin.HelpFlag.Short('h')
kingpin.Parse()
selectedServerMetrics, err := filterServerMetrics(*haProxyServerMetricFields)
if err != nil {
log.Fatal(err)
}
log.Infoln("Starting haproxy_exporter", version.Info())
log.Infoln("Build context", version.BuildContext())
exporter, err := NewExporter(*haProxyScrapeURI, *haProxySSLVerify, selectedServerMetrics, *haProxyTimeout)
if err != nil {
log.Fatal(err)
}
prometheus.MustRegister(exporter)
prometheus.MustRegister(version.NewCollector("haproxy_exporter"))
if *haProxyPidFile != "" {
procExporter := prometheus.NewProcessCollectorPIDFn(
func() (int, error) {
content, err := ioutil.ReadFile(*haProxyPidFile)
if err != nil {
return 0, fmt.Errorf("Can't read pid file: %s", err)
}
value, err := strconv.Atoi(strings.TrimSpace(string(content)))
if err != nil {
return 0, fmt.Errorf("Can't parse pid file: %s", err)
}
return value, nil
}, namespace)
prometheus.MustRegister(procExporter)
}
log.Infoln("Listening on", *listenAddress)
http.Handle(*metricsPath, prometheus.Handler())
http.HandleFunc("/", func(w http.ResponseWriter, r *http.Request) {
w.Write([]byte(`<html>
<head><title>Haproxy Exporter</title></head>
<body>
<h1>Haproxy Exporter</h1>
<p><a href='` + *metricsPath + `'>Metrics</a></p>
</body>
</html>`))
})
log.Fatal(http.ListenAndServe(*listenAddress, nil))
}