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main.go
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main.go
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/*
* Copyright 2019 Martin Helmich <martin@helmich.me>
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package main
import (
"flag"
"fmt"
"net/http"
"os"
"os/signal"
"sync"
"syscall"
"github.com/martin-helmich/prometheus-nginxlog-exporter/config"
"github.com/martin-helmich/prometheus-nginxlog-exporter/discovery"
"github.com/martin-helmich/prometheus-nginxlog-exporter/prof"
"github.com/martin-helmich/prometheus-nginxlog-exporter/relabeling"
"github.com/martin-helmich/prometheus-nginxlog-exporter/tail"
"github.com/prometheus/client_golang/prometheus"
"github.com/satyrius/gonx"
)
// Metrics is a struct containing pointers to all metrics that should be
// exposed to Prometheus
type Metrics struct {
countTotal *prometheus.CounterVec
bytesTotal *prometheus.CounterVec
upstreamSeconds *prometheus.SummaryVec
upstreamSecondsHist *prometheus.HistogramVec
responseSeconds *prometheus.SummaryVec
responseSecondsHist *prometheus.HistogramVec
parseErrorsTotal prometheus.Counter
}
// Init initializes a metrics struct
func (m *Metrics) Init(cfg *config.NamespaceConfig) {
cfg.MustCompile()
labels := cfg.OrderedLabelNames
for _, r := range relabeling.DefaultRelabelings {
labels = append(labels, r.TargetLabel)
}
for i := range cfg.RelabelConfigs {
labels = append(labels, cfg.RelabelConfigs[i].TargetLabel)
}
m.countTotal = prometheus.NewCounterVec(prometheus.CounterOpts{
Namespace: cfg.Name,
Name: "http_response_count_total",
Help: "Amount of processed HTTP requests",
}, labels)
m.bytesTotal = prometheus.NewCounterVec(prometheus.CounterOpts{
Namespace: cfg.Name,
Name: "http_response_size_bytes",
Help: "Total amount of transferred bytes",
}, labels)
m.upstreamSeconds = prometheus.NewSummaryVec(prometheus.SummaryOpts{
Namespace: cfg.Name,
Name: "http_upstream_time_seconds",
Help: "Time needed by upstream servers to handle requests",
}, labels)
m.upstreamSecondsHist = prometheus.NewHistogramVec(prometheus.HistogramOpts{
Namespace: cfg.Name,
Name: "http_upstream_time_seconds_hist",
Help: "Time needed by upstream servers to handle requests",
}, labels)
m.responseSeconds = prometheus.NewSummaryVec(prometheus.SummaryOpts{
Namespace: cfg.Name,
Name: "http_response_time_seconds",
Help: "Time needed by NGINX to handle requests",
}, labels)
m.responseSecondsHist = prometheus.NewHistogramVec(prometheus.HistogramOpts{
Namespace: cfg.Name,
Name: "http_response_time_seconds_hist",
Help: "Time needed by NGINX to handle requests",
}, labels)
m.parseErrorsTotal = prometheus.NewCounter(prometheus.CounterOpts{
Namespace: cfg.Name,
Name: "parse_errors_total",
Help: "Total number of log file lines that could not be parsed",
})
prometheus.MustRegister(m.countTotal)
prometheus.MustRegister(m.bytesTotal)
prometheus.MustRegister(m.upstreamSeconds)
prometheus.MustRegister(m.upstreamSecondsHist)
prometheus.MustRegister(m.responseSeconds)
prometheus.MustRegister(m.responseSecondsHist)
prometheus.MustRegister(m.parseErrorsTotal)
}
func main() {
var opts config.StartupFlags
var cfg = config.Config{
Listen: config.ListenConfig{
Port: 4040,
Address: "0.0.0.0",
},
}
flag.IntVar(&opts.ListenPort, "listen-port", 4040, "HTTP port to listen on")
flag.StringVar(&opts.Format, "format", `$remote_addr - $remote_user [$time_local] "$request" $status $body_bytes_sent "$http_referer" "$http_user_agent" "$http_x_forwarded_for"`, "NGINX access log format")
flag.StringVar(&opts.Namespace, "namespace", "nginx", "namespace to use for metric names")
flag.StringVar(&opts.ConfigFile, "config-file", "", "Configuration file to read from")
flag.BoolVar(&opts.EnableExperimentalFeatures, "enable-experimental", false, "Set this flag to enable experimental features")
flag.StringVar(&opts.CPUProfile, "cpuprofile", "", "write cpu profile to `file`")
flag.StringVar(&opts.MemProfile, "memprofile", "", "write memory profile to `file`")
flag.Parse()
opts.Filenames = flag.Args()
sigChan := make(chan os.Signal, 1)
stopChan := make(chan bool)
stopHandlers := sync.WaitGroup{}
signal.Notify(sigChan, os.Interrupt, syscall.SIGTERM)
signal.Notify(sigChan, os.Interrupt, syscall.SIGINT)
go func() {
sig := <-sigChan
fmt.Printf("caught term %s. exiting\n", sig)
close(stopChan)
stopHandlers.Wait()
os.Exit(0)
}()
prof.SetupCPUProfiling(opts.CPUProfile, stopChan, &stopHandlers)
prof.SetupMemoryProfiling(opts.MemProfile, stopChan, &stopHandlers)
loadConfig(&opts, &cfg)
fmt.Printf("using configuration %+v\n", cfg)
if stabilityError := cfg.StabilityWarnings(); stabilityError != nil && !opts.EnableExperimentalFeatures {
fmt.Fprintf(os.Stderr, "Your configuration file contains an option that is explicitly labeled as experimental feature:\n\n %s\n\n", stabilityError.Error())
fmt.Fprintln(os.Stderr, "Use the -enable-experimental flag or the enable_experimental option to enable these features. Use them at your own peril.")
os.Exit(1)
}
if cfg.Consul.Enable {
setupConsul(&cfg, stopChan, &stopHandlers)
}
for _, ns := range cfg.Namespaces {
fmt.Printf("starting listener for namespace %s\n", ns.Name)
go processNamespace(ns)
}
listenAddr := fmt.Sprintf("%s:%d", cfg.Listen.Address, cfg.Listen.Port)
fmt.Printf("running HTTP server on address %s\n", listenAddr)
http.Handle("/metrics", prometheus.Handler())
http.ListenAndServe(listenAddr, nil)
}
func loadConfig(opts *config.StartupFlags, cfg *config.Config) {
if opts.ConfigFile != "" {
fmt.Printf("loading configuration file %s\n", opts.ConfigFile)
if err := config.LoadConfigFromFile(cfg, opts.ConfigFile); err != nil {
panic(err)
}
} else if err := config.LoadConfigFromFlags(cfg, opts); err != nil {
panic(err)
}
}
func setupConsul(cfg *config.Config, stopChan <-chan bool, stopHandlers *sync.WaitGroup) {
registrator, err := discovery.NewConsulRegistrator(cfg)
if err != nil {
panic(err)
}
fmt.Printf("registering service in Consul\n")
if err := registrator.RegisterConsul(); err != nil {
panic(err)
}
go func() {
<-stopChan
fmt.Printf("unregistering service in Consul\n")
registrator.UnregisterConsul()
stopHandlers.Done()
}()
stopHandlers.Add(1)
}
func processNamespace(nsCfg config.NamespaceConfig) {
parser := gonx.NewParser(nsCfg.Format)
metrics := Metrics{}
metrics.Init(&nsCfg)
for _, f := range nsCfg.SourceFiles {
t, err := tail.NewFollower(f)
if err != nil {
panic(err)
}
t.OnError(func(err error) {
panic(err)
})
go processSourceFile(nsCfg, t, parser, &metrics)
}
}
func processSourceFile(nsCfg config.NamespaceConfig, t tail.Follower, parser *gonx.Parser, metrics *Metrics) {
relabelings := relabeling.NewRelabelings(nsCfg.RelabelConfigs)
relabelings = append(relabeling.DefaultRelabelings, relabelings...)
staticLabelValues := nsCfg.OrderedLabelValues
totalLabelCount := len(staticLabelValues) + len(relabelings)
relabelLabelOffset := len(staticLabelValues)
labelValues := make([]string, totalLabelCount)
for i := range staticLabelValues {
labelValues[i] = staticLabelValues[i]
}
for line := range t.Lines() {
entry, err := parser.ParseString(line.Text)
if err != nil {
fmt.Printf("error while parsing line '%s': %s\n", line.Text, err)
metrics.parseErrorsTotal.Inc()
continue
}
for i := range relabelings {
if str, err := entry.Field(relabelings[i].SourceValue); err == nil {
mapped, err := relabelings[i].Map(str)
if err == nil {
labelValues[i+relabelLabelOffset] = mapped
}
}
}
metrics.countTotal.WithLabelValues(labelValues...).Inc()
if bytes, err := entry.FloatField("body_bytes_sent"); err == nil {
metrics.bytesTotal.WithLabelValues(labelValues...).Add(bytes)
}
if upstreamTime, err := entry.FloatField("upstream_response_time"); err == nil {
metrics.upstreamSeconds.WithLabelValues(labelValues...).Observe(upstreamTime)
metrics.upstreamSecondsHist.WithLabelValues(labelValues...).Observe(upstreamTime)
}
if responseTime, err := entry.FloatField("request_time"); err == nil {
metrics.responseSeconds.WithLabelValues(labelValues...).Observe(responseTime)
metrics.responseSecondsHist.WithLabelValues(labelValues...).Observe(responseTime)
}
}
}