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handler.go
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handler.go
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package cagent
import (
"context"
"encoding/json"
"net/http"
"os"
"runtime"
"time"
"github.com/cloudradar-monitoring/selfupdate"
"github.com/pkg/errors"
"github.com/shirou/gopsutil/mem"
log "github.com/sirupsen/logrus"
"github.com/cloudradar-monitoring/cagent/pkg/common"
"github.com/cloudradar-monitoring/cagent/pkg/hwinfo"
"github.com/cloudradar-monitoring/cagent/pkg/jobmon"
"github.com/cloudradar-monitoring/cagent/pkg/monitoring/docker"
"github.com/cloudradar-monitoring/cagent/pkg/monitoring/networking"
"github.com/cloudradar-monitoring/cagent/pkg/monitoring/processes"
"github.com/cloudradar-monitoring/cagent/pkg/monitoring/sensors"
"github.com/cloudradar-monitoring/cagent/pkg/monitoring/services"
"github.com/cloudradar-monitoring/cagent/pkg/monitoring/updates"
)
type Cleaner interface {
Cleanup() error
}
// cleanupCommand allow to group multiple Cleanup steps into one object
type cleanupCommand struct {
steps []func() error
}
var (
// 429 error
ErrHubTooManyRequests = errors.New("Hub replied with a 429 error code")
// 5xx error code
ErrHubServerError = errors.New("Hub replied with a 5xx error code")
// 401 error code
ErrHubUnauthorized = errors.New("Hub replied with a 401 error code")
)
func (c *cleanupCommand) AddStep(f func() error) {
c.steps = append(c.steps, f)
}
func (c *cleanupCommand) Cleanup() error {
errs := common.ErrorCollector{}
for _, step := range c.steps {
errs.Add(step())
}
return errs.Combine()
}
func (ca *Cagent) Run(outputFile *os.File, interrupt chan struct{}) {
defer func() {
if err := recover(); err != nil {
log.Errorf("Unexpected error occurred (main routine): %s", err)
panic(err)
}
}()
retries := 0
retryIn := secToDuration(ca.Config.Interval)
var firstRetry time.Time
var measurements common.MeasurementsMap
var cleaner Cleaner
for {
if retries == 0 {
log.Debug("Run: collectMeasurements")
measurements, cleaner = ca.collectMeasurements(ca.Config.OperationMode == OperationModeFull)
}
err := ca.reportMeasurements(measurements, outputFile)
if err == nil {
err = cleaner.Cleanup()
}
if err != nil {
if err == ErrHubTooManyRequests {
// for error code 429, wait 10 seconds and try again
retryIn = 10 * time.Second
log.Infof("Run: HTTP 429, too many requests, retrying in %v", retryIn)
} else if err == ErrHubUnauthorized {
// increase sleep time by 30 seconds until it is 1 hour
if ca.Config.Sleep < 60*60 {
ca.Config.Sleep += 30
}
retries = 0
retryIn = time.Duration(ca.Config.Sleep) * time.Second
log.Infof("Run: failed to send measurements to hub. unable to authorize with provided Hub credentials (HTTP 401). waiting %v seconds until next attempt", ca.Config.Sleep)
} else if err == ErrHubServerError {
// for error codes 5xx, wait for configured amount of time and try again
retryIn = time.Duration(ca.Config.OnHTTP5xxRetryInterval) * time.Second
if retries == 0 {
firstRetry = time.Now()
}
retries++
if retries > ca.Config.OnHTTP5xxRetries {
retries = 0
retryIn = secToDuration(ca.Config.Interval) - time.Since(firstRetry)
if retryIn < 0 {
retryIn = 0
}
log.Errorf("Run: hub connection error, next run in %v s (out of %v s)", retryIn, secToDuration(ca.Config.Interval))
} else {
log.Infof("Run: hub connection error %d/%d, retrying in %v s", retries, ca.Config.OnHTTP5xxRetries, ca.Config.OnHTTP5xxRetryInterval)
}
} else {
log.Error(err)
}
}
select {
case <-interrupt:
return
case <-time.After(retryIn):
continue
}
}
}
func (ca *Cagent) RunOnce(outputFile *os.File, fullMode bool) error {
measurements, cleaner := ca.collectMeasurements(fullMode)
err := ca.reportMeasurements(measurements, outputFile)
if err == nil {
err = cleaner.Cleanup()
}
return err
}
func (ca *Cagent) collectMeasurements(fullMode bool) (common.MeasurementsMap, Cleaner) {
var errCollector = common.ErrorCollector{}
var cleanupCommand = &cleanupCommand{}
var measurements = make(common.MeasurementsMap)
var cfg = ca.Config
if ca.Config.CPUMonitoring {
cpum, err := ca.CPUWatcher().Results()
errCollector.Add(err)
measurements = measurements.AddWithPrefix("cpu.", cpum)
}
if ca.Config.FSMonitoring {
fsResults, err := ca.GetFileSystemWatcher().Results()
errCollector.Add(err)
measurements = measurements.AddWithPrefix("fs.", fsResults)
}
var memStat *mem.VirtualMemoryStat
if ca.Config.MemMonitoring {
var mem common.MeasurementsMap
var err error
mem, memStat, err = ca.MemResults()
errCollector.Add(err)
measurements = measurements.AddWithPrefix("mem.", mem)
}
if ca.Config.CPUMonitoring {
cpuUtilisationAnalysisResult, cpuUtilisationAnalysisIsActive, err := ca.CPUUtilisationAnalyser().Results()
errCollector.Add(err)
measurements = measurements.AddWithPrefix("cpu_utilisation_analysis.", cpuUtilisationAnalysisResult)
if cpuUtilisationAnalysisIsActive {
measurements = measurements.AddWithPrefix(
"cpu_utilisation_analysis.",
common.MeasurementsMap{"settings": cfg.CPUUtilisationAnalysis},
)
}
}
if fullMode {
info, err := ca.HostInfoResults()
errCollector.Add(err)
measurements = measurements.AddWithPrefix("system.", info)
ipResults, err := networking.IPAddresses()
errCollector.Add(err)
measurements = measurements.AddWithPrefix("system.", ipResults)
if ca.Config.NetMonitoring {
netResults, err := ca.GetNetworkWatcher().Results()
errCollector.Add(err)
measurements = measurements.AddWithPrefix("net.", netResults)
}
proc, processList, err := processes.GetMeasurements(memStat, &ca.Config.ProcessMonitoring)
errCollector.Add(err)
measurements = measurements.AddWithPrefix("proc.", proc)
ports, err := ca.PortsResult(processList)
errCollector.Add(err)
measurements = measurements.AddWithPrefix("listeningports.", ports)
if ca.Config.MemMonitoring {
swap, err := ca.SwapResults()
errCollector.Add(err)
measurements = measurements.AddWithPrefix("swap.", swap)
}
ca.getVMStatMeasurements(func(name string, meas common.MeasurementsMap, err error) {
if err == nil {
measurements = measurements.AddWithPrefix("virt."+name+".", meas)
}
errCollector.Add(err)
})
ca.hwInventory.Do(func() {
hwInfo, err := hwinfo.Inventory()
errCollector.Add(err)
if hwInfo != nil {
measurements = measurements.AddInnerWithPrefix("hw.inventory", hwInfo)
}
})
if cfg.SystemUpdatesChecks.Enabled && cfg.SystemUpdatesChecks.CheckInterval > 0 {
watcher := updates.GetWatcher(cfg.SystemUpdatesChecks.FetchTimeout, cfg.SystemUpdatesChecks.CheckInterval)
u, err := watcher.GetSystemUpdatesInfo()
if err != updates.ErrorDisabledOnHost {
errCollector.Add(err)
var prefix string
if runtime.GOOS == "windows" {
prefix = "windows_update."
} else {
prefix = "linux_update."
}
measurements = measurements.AddWithPrefix(prefix, u)
}
}
servicesList, err := services.ListServices(cfg.DiscoverAutostartingServicesOnly)
if err != services.ErrorNotImplementedForOS {
errCollector.Add(err)
}
measurements = measurements.AddWithPrefix("services.", servicesList)
if cfg.DockerMonitoring.Enabled {
containersList, err := docker.ListContainers()
if err != docker.ErrorNotImplementedForOS && err != docker.ErrorDockerNotAvailable {
errCollector.Add(err)
}
measurements = measurements.AddWithPrefix("docker.", containersList)
}
if cfg.TemperatureMonitoring {
temperatures, err := sensors.ReadTemperatureSensors()
errCollector.Add(err)
measurements = measurements.AddWithPrefix("temperatures.", common.MeasurementsMap{"list": temperatures})
}
moduleReports, err := ca.collectModulesMeasurements()
errCollector.Add(err)
measurements = measurements.AddWithPrefix("", common.MeasurementsMap{"modules": moduleReports})
smartMeas := ca.getSMARTMeasurements()
if len(smartMeas) > 0 {
measurements = measurements.AddInnerWithPrefix("smartmon", smartMeas)
}
spool := jobmon.NewSpoolManager(cfg.JobMonitoring.SpoolDirPath, log.StandardLogger())
ids, jobs, err := spool.GetFinishedJobs()
errCollector.Add(err)
measurements = measurements.AddWithPrefix("", common.MeasurementsMap{"jobmon": jobs})
cleanupCommand.AddStep(func() error {
return spool.RemoveJobs(ids)
})
}
measurements["operation_mode"] = cfg.OperationMode
if errCollector.HasErrors() {
measurements["message"] = errCollector.Combine()
measurements["cagent.success"] = 0
} else {
measurements["cagent.success"] = 1
}
return measurements, cleanupCommand
}
func (ca *Cagent) reportMeasurements(measurements common.MeasurementsMap, outputFile *os.File) error {
result := &Result{
Timestamp: time.Now().Unix(),
Measurements: measurements,
}
if outputFile != nil {
err := json.NewEncoder(outputFile).Encode(result)
if err != nil {
return errors.Wrap(err, "failed to JSON encode measurement result")
}
return nil
}
if ca.Config.Logs.HubFile != "" {
ca.prettyPrintMeasurementsToFile(measurements, ca.Config.Logs.HubFile)
}
ctx, cancelFn := context.WithTimeout(context.Background(), 5*time.Minute)
defer cancelFn()
err := ca.PostResultToHub(ctx, result)
if err != nil {
if err == ErrHubTooManyRequests || err == ErrHubServerError || err == ErrHubUnauthorized {
return err
}
err = errors.Wrap(err, "failed to POST measurement result to Hub")
}
return err
}
func (ca *Cagent) RunHeartbeat(interrupt chan struct{}) {
if ca.Config.Updates.Enabled {
ca.selfUpdater = selfupdate.StartChecking()
}
var firstRetry time.Time
retries := 0
retryIn := secToDuration(ca.Config.HeartbeatInterval)
for {
err := ca.sendHeartbeat()
if err != nil {
if err == ErrHubTooManyRequests {
// for error code 429, wait 10 seconds and try again
retryIn = 10 * time.Second
log.Infof("RunHeartbeat: HTTP 429, too many requests, retrying in %v", retryIn)
} else if err == ErrHubUnauthorized {
// increase sleep time by 30 seconds until it is 1 hour
if ca.Config.Sleep < 60*60 {
ca.Config.Sleep += 30
}
retries = 0
retryIn = time.Duration(ca.Config.Sleep) * time.Second
log.Infof("Run: failed to send heartbeat to hub. unable to authorize with provided Hub credentials (HTTP 401). waiting %v seconds until next attempt", ca.Config.Sleep)
} else if err == ErrHubServerError {
// for error codes 5xx, wait for configured amount of time and try again
retryIn = time.Duration(ca.Config.OnHTTP5xxRetryInterval) * time.Second
if retries == 0 {
firstRetry = time.Now()
}
retries++
if retries > ca.Config.OnHTTP5xxRetries {
retries = 0
retryIn = secToDuration(ca.Config.HeartbeatInterval) - time.Since(firstRetry)
if retryIn < 0 {
retryIn = 0
}
log.Errorf("RunHeartbeat: hub connection error, next run in %v s (out of %v s)", retryIn, secToDuration(ca.Config.HeartbeatInterval))
} else {
log.Infof("RunHeartbeat: hub connection error %d/%d, retrying in %v s", retries, ca.Config.OnHTTP5xxRetries, ca.Config.OnHTTP5xxRetryInterval)
}
} else {
log.WithError(err).Error("failed to send heartbeat to Hub")
}
}
select {
case <-interrupt:
return
case <-time.After(retryIn):
continue
}
}
}
func (ca *Cagent) sendHeartbeat() error {
ca.initHubClientOnce()
err := ca.validateHubURL("hub_url")
if err != nil {
return err
}
// no need to wait more than heartbeat interval
ctx, cancelFn := context.WithTimeout(context.Background(), secToDuration(ca.Config.HeartbeatInterval))
defer cancelFn()
req, err := http.NewRequest("GET", ca.Config.HubURL, nil)
if err != nil {
return errors.WithStack(err)
}
req.Header.Add("User-Agent", ca.userAgent())
if len(ca.Config.HubUser) > 0 {
req.SetBasicAuth(ca.Config.HubUser, ca.Config.HubPassword)
}
req = req.WithContext(ctx)
resp, err := ca.hubClient.Do(req)
if resp != nil {
if resp.StatusCode == http.StatusTooManyRequests {
return ErrHubTooManyRequests
}
if resp.StatusCode == http.StatusUnauthorized {
return ErrHubUnauthorized
}
if resp.StatusCode >= 500 && resp.StatusCode <= 599 {
return ErrHubServerError
}
}
if err = ca.checkClientError(resp, err, "hub_user", "hub_password"); err != nil {
return errors.WithStack(err)
}
log.Debugf("Heartbeat sent. Status: %d", resp.StatusCode)
return err
}
func (ca *Cagent) prettyPrintMeasurementsToFile(measurements common.MeasurementsMap, file string) {
fl, err := os.OpenFile(file, os.O_RDWR|os.O_CREATE|os.O_APPEND, 0666)
if err != nil {
log.WithError(err).Error("failed to open hub log file")
return
}
defer fl.Close()
enc := json.NewEncoder(fl)
enc.SetIndent("", " ")
if err = enc.Encode(measurements); err != nil {
log.WithError(err).Error("failed to JSON encode pretty printed measurement result to log file")
}
}
func secToDuration(seconds float64) time.Duration {
return time.Duration(int64(float64(time.Second) * seconds))
}