telegraf/plugins/inputs/elasticsearch/elasticsearch.go

395 lines
11 KiB
Go

package elasticsearch
import (
"encoding/json"
"fmt"
"net/http"
"regexp"
"sync"
"time"
"github.com/influxdata/telegraf"
"github.com/influxdata/telegraf/internal"
"github.com/influxdata/telegraf/plugins/inputs"
jsonparser "github.com/influxdata/telegraf/plugins/parsers/json"
"io/ioutil"
"strings"
)
// mask for masking username/password from error messages
var mask = regexp.MustCompile(`https?:\/\/\S+:\S+@`)
// Nodestats are always generated, so simply define a constant for these endpoints
const statsPath = "/_nodes/stats"
const statsPathLocal = "/_nodes/_local/stats"
type nodeStat struct {
Host string `json:"host"`
Name string `json:"name"`
Attributes map[string]string `json:"attributes"`
Indices interface{} `json:"indices"`
OS interface{} `json:"os"`
Process interface{} `json:"process"`
JVM interface{} `json:"jvm"`
ThreadPool interface{} `json:"thread_pool"`
FS interface{} `json:"fs"`
Transport interface{} `json:"transport"`
HTTP interface{} `json:"http"`
Breakers interface{} `json:"breakers"`
}
type clusterHealth struct {
ClusterName string `json:"cluster_name"`
Status string `json:"status"`
TimedOut bool `json:"timed_out"`
NumberOfNodes int `json:"number_of_nodes"`
NumberOfDataNodes int `json:"number_of_data_nodes"`
ActivePrimaryShards int `json:"active_primary_shards"`
ActiveShards int `json:"active_shards"`
RelocatingShards int `json:"relocating_shards"`
InitializingShards int `json:"initializing_shards"`
UnassignedShards int `json:"unassigned_shards"`
Indices map[string]indexHealth `json:"indices"`
}
type indexHealth struct {
Status string `json:"status"`
NumberOfShards int `json:"number_of_shards"`
NumberOfReplicas int `json:"number_of_replicas"`
ActivePrimaryShards int `json:"active_primary_shards"`
ActiveShards int `json:"active_shards"`
RelocatingShards int `json:"relocating_shards"`
InitializingShards int `json:"initializing_shards"`
UnassignedShards int `json:"unassigned_shards"`
}
type clusterStats struct {
NodeName string `json:"node_name"`
ClusterName string `json:"cluster_name"`
Status string `json:"status"`
Indices interface{} `json:"indices"`
Nodes interface{} `json:"nodes"`
}
type catMaster struct {
NodeID string `json:"id"`
NodeIP string `json:"ip"`
NodeName string `json:"node"`
}
const sampleConfig = `
## specify a list of one or more Elasticsearch servers
# you can add username and password to your url to use basic authentication:
# servers = ["http://user:pass@localhost:9200"]
servers = ["http://localhost:9200"]
## Timeout for HTTP requests to the elastic search server(s)
http_timeout = "5s"
## When local is true (the default), the node will read only its own stats.
## Set local to false when you want to read the node stats from all nodes
## of the cluster.
local = true
## Set cluster_health to true when you want to also obtain cluster health stats
cluster_health = false
## Set cluster_stats to true when you want to also obtain cluster stats from the
## Master node.
cluster_stats = false
## Optional SSL Config
# ssl_ca = "/etc/telegraf/ca.pem"
# ssl_cert = "/etc/telegraf/cert.pem"
# ssl_key = "/etc/telegraf/key.pem"
## Use SSL but skip chain & host verification
# insecure_skip_verify = false
`
// Elasticsearch is a plugin to read stats from one or many Elasticsearch
// servers.
type Elasticsearch struct {
Local bool
Servers []string
HttpTimeout internal.Duration
ClusterHealth bool
ClusterStats bool
SSLCA string `toml:"ssl_ca"` // Path to CA file
SSLCert string `toml:"ssl_cert"` // Path to host cert file
SSLKey string `toml:"ssl_key"` // Path to cert key file
InsecureSkipVerify bool // Use SSL but skip chain & host verification
client *http.Client
catMasterResponseTokens []string
isMaster bool
}
// NewElasticsearch return a new instance of Elasticsearch
func NewElasticsearch() *Elasticsearch {
return &Elasticsearch{
HttpTimeout: internal.Duration{Duration: time.Second * 5},
}
}
// SampleConfig returns sample configuration for this plugin.
func (e *Elasticsearch) SampleConfig() string {
return sampleConfig
}
// Description returns the plugin description.
func (e *Elasticsearch) Description() string {
return "Read stats from one or more Elasticsearch servers or clusters"
}
// Gather reads the stats from Elasticsearch and writes it to the
// Accumulator.
func (e *Elasticsearch) Gather(acc telegraf.Accumulator) error {
if e.client == nil {
client, err := e.createHttpClient()
if err != nil {
return err
}
e.client = client
}
var wg sync.WaitGroup
wg.Add(len(e.Servers))
for _, serv := range e.Servers {
go func(s string, acc telegraf.Accumulator) {
defer wg.Done()
var url string
if e.Local {
url = s + statsPathLocal
} else {
url = s + statsPath
}
e.isMaster = false
if e.ClusterStats {
// get cat/master information here so NodeStats can determine
// whether this node is the Master
e.setCatMaster(s + "/_cat/master")
}
// Always gather node states
if err := e.gatherNodeStats(url, acc); err != nil {
acc.AddError(fmt.Errorf(mask.ReplaceAllString(err.Error(), "http(s)://XXX:XXX@")))
return
}
if e.ClusterHealth {
url = s + "/_cluster/health?level=indices"
if err := e.gatherClusterHealth(url, acc); err != nil {
acc.AddError(fmt.Errorf(mask.ReplaceAllString(err.Error(), "http(s)://XXX:XXX@")))
return
}
}
if e.ClusterStats && e.isMaster {
if err := e.gatherClusterStats(s+"/_cluster/stats", acc); err != nil {
acc.AddError(fmt.Errorf(mask.ReplaceAllString(err.Error(), "http(s)://XXX:XXX@")))
return
}
}
}(serv, acc)
}
wg.Wait()
return nil
}
func (e *Elasticsearch) createHttpClient() (*http.Client, error) {
tlsCfg, err := internal.GetTLSConfig(e.SSLCert, e.SSLKey, e.SSLCA, e.InsecureSkipVerify)
if err != nil {
return nil, err
}
tr := &http.Transport{
ResponseHeaderTimeout: e.HttpTimeout.Duration,
TLSClientConfig: tlsCfg,
}
client := &http.Client{
Transport: tr,
Timeout: e.HttpTimeout.Duration,
}
return client, nil
}
func (e *Elasticsearch) gatherNodeStats(url string, acc telegraf.Accumulator) error {
nodeStats := &struct {
ClusterName string `json:"cluster_name"`
Nodes map[string]*nodeStat `json:"nodes"`
}{}
if err := e.gatherJsonData(url, nodeStats); err != nil {
return err
}
for id, n := range nodeStats.Nodes {
tags := map[string]string{
"node_id": id,
"node_host": n.Host,
"node_name": n.Name,
"cluster_name": nodeStats.ClusterName,
}
if e.ClusterStats {
// check for master
e.isMaster = (id == e.catMasterResponseTokens[0])
}
for k, v := range n.Attributes {
tags["node_attribute_"+k] = v
}
stats := map[string]interface{}{
"indices": n.Indices,
"os": n.OS,
"process": n.Process,
"jvm": n.JVM,
"thread_pool": n.ThreadPool,
"fs": n.FS,
"transport": n.Transport,
"http": n.HTTP,
"breakers": n.Breakers,
}
now := time.Now()
for p, s := range stats {
f := jsonparser.JSONFlattener{}
// parse Json, ignoring strings and bools
err := f.FlattenJSON("", s)
if err != nil {
return err
}
acc.AddFields("elasticsearch_"+p, f.Fields, tags, now)
}
}
return nil
}
func (e *Elasticsearch) gatherClusterHealth(url string, acc telegraf.Accumulator) error {
healthStats := &clusterHealth{}
if err := e.gatherJsonData(url, healthStats); err != nil {
return err
}
measurementTime := time.Now()
clusterFields := map[string]interface{}{
"status": healthStats.Status,
"timed_out": healthStats.TimedOut,
"number_of_nodes": healthStats.NumberOfNodes,
"number_of_data_nodes": healthStats.NumberOfDataNodes,
"active_primary_shards": healthStats.ActivePrimaryShards,
"active_shards": healthStats.ActiveShards,
"relocating_shards": healthStats.RelocatingShards,
"initializing_shards": healthStats.InitializingShards,
"unassigned_shards": healthStats.UnassignedShards,
}
acc.AddFields(
"elasticsearch_cluster_health",
clusterFields,
map[string]string{"name": healthStats.ClusterName},
measurementTime,
)
for name, health := range healthStats.Indices {
indexFields := map[string]interface{}{
"status": health.Status,
"number_of_shards": health.NumberOfShards,
"number_of_replicas": health.NumberOfReplicas,
"active_primary_shards": health.ActivePrimaryShards,
"active_shards": health.ActiveShards,
"relocating_shards": health.RelocatingShards,
"initializing_shards": health.InitializingShards,
"unassigned_shards": health.UnassignedShards,
}
acc.AddFields(
"elasticsearch_indices",
indexFields,
map[string]string{"index": name},
measurementTime,
)
}
return nil
}
func (e *Elasticsearch) gatherClusterStats(url string, acc telegraf.Accumulator) error {
clusterStats := &clusterStats{}
if err := e.gatherJsonData(url, clusterStats); err != nil {
return err
}
now := time.Now()
tags := map[string]string{
"node_name": clusterStats.NodeName,
"cluster_name": clusterStats.ClusterName,
"status": clusterStats.Status,
}
stats := map[string]interface{}{
"nodes": clusterStats.Nodes,
"indices": clusterStats.Indices,
}
for p, s := range stats {
f := jsonparser.JSONFlattener{}
// parse json, including bools and strings
err := f.FullFlattenJSON("", s, true, true)
if err != nil {
return err
}
acc.AddFields("elasticsearch_clusterstats_"+p, f.Fields, tags, now)
}
return nil
}
func (e *Elasticsearch) setCatMaster(url string) error {
r, err := e.client.Get(url)
if err != nil {
return err
}
defer r.Body.Close()
if r.StatusCode != http.StatusOK {
// NOTE: we are not going to read/discard r.Body under the assumption we'd prefer
// to let the underlying transport close the connection and re-establish a new one for
// future calls.
return fmt.Errorf("status-code %d, expected %d", r.StatusCode, http.StatusOK)
}
response, err := ioutil.ReadAll(r.Body)
if err != nil {
return err
}
e.catMasterResponseTokens = strings.Split(string(response), " ")
return nil
}
func (e *Elasticsearch) gatherJsonData(url string, v interface{}) error {
r, err := e.client.Get(url)
if err != nil {
return err
}
defer r.Body.Close()
if r.StatusCode != http.StatusOK {
// NOTE: we are not going to read/discard r.Body under the assumption we'd prefer
// to let the underlying transport close the connection and re-establish a new one for
// future calls.
return fmt.Errorf("elasticsearch: API responded with status-code %d, expected %d",
r.StatusCode, http.StatusOK)
}
if err = json.NewDecoder(r.Body).Decode(v); err != nil {
return err
}
return nil
}
func init() {
inputs.Add("elasticsearch", func() telegraf.Input {
return NewElasticsearch()
})
}