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101 lines
3.6 KiB
Go
101 lines
3.6 KiB
Go
package watchdog
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import (
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"context"
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"log"
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"sync"
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"time"
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"github.com/TwiN/gatus/v5/alerting"
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"github.com/TwiN/gatus/v5/config"
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"github.com/TwiN/gatus/v5/config/maintenance"
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"github.com/TwiN/gatus/v5/core"
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"github.com/TwiN/gatus/v5/metrics"
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"github.com/TwiN/gatus/v5/storage/store"
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)
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var (
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// monitoringMutex is used to prevent multiple endpoint from being evaluated at the same time.
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// Without this, conditions using response time may become inaccurate.
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monitoringMutex sync.Mutex
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ctx context.Context
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cancelFunc context.CancelFunc
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)
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// Monitor loops over each endpoint and starts a goroutine to monitor each endpoint separately
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func Monitor(cfg *config.Config) {
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ctx, cancelFunc = context.WithCancel(context.Background())
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for _, endpoint := range cfg.Endpoints {
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if endpoint.IsEnabled() {
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// To prevent multiple requests from running at the same time, we'll wait for a little before each iteration
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time.Sleep(777 * time.Millisecond)
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go monitor(endpoint, cfg.Alerting, cfg.Maintenance, cfg.DisableMonitoringLock, cfg.Metrics, cfg.Debug, ctx)
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}
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}
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}
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// monitor a single endpoint in a loop
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func monitor(endpoint *core.Endpoint, alertingConfig *alerting.Config, maintenanceConfig *maintenance.Config, disableMonitoringLock, enabledMetrics, debug bool, ctx context.Context) {
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// Run it immediately on start
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execute(endpoint, alertingConfig, maintenanceConfig, disableMonitoringLock, enabledMetrics, debug)
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// Loop for the next executions
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for {
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select {
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case <-ctx.Done():
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log.Printf("[watchdog][monitor] Canceling current execution of group=%s; endpoint=%s", endpoint.Group, endpoint.Name)
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return
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case <-time.After(endpoint.Interval):
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execute(endpoint, alertingConfig, maintenanceConfig, disableMonitoringLock, enabledMetrics, debug)
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}
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}
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}
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func execute(endpoint *core.Endpoint, alertingConfig *alerting.Config, maintenanceConfig *maintenance.Config, disableMonitoringLock, enabledMetrics, debug bool) {
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if !disableMonitoringLock {
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// By placing the lock here, we prevent multiple endpoints from being monitored at the exact same time, which
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// could cause performance issues and return inaccurate results
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monitoringMutex.Lock()
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}
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if debug {
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log.Printf("[watchdog][execute] Monitoring group=%s; endpoint=%s", endpoint.Group, endpoint.Name)
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}
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result := endpoint.EvaluateHealth()
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if enabledMetrics {
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metrics.PublishMetricsForEndpoint(endpoint, result)
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}
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UpdateEndpointStatuses(endpoint, result)
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log.Printf(
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"[watchdog][execute] Monitored group=%s; endpoint=%s; success=%v; errors=%d; duration=%s",
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endpoint.Group,
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endpoint.Name,
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result.Success,
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len(result.Errors),
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result.Duration.Round(time.Millisecond),
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)
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if !maintenanceConfig.IsUnderMaintenance() {
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// TODO: Consider moving this after the monitoring lock is unlocked? I mean, how much noise can a single alerting provider cause...
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HandleAlerting(endpoint, result, alertingConfig, debug)
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} else if debug {
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log.Println("[watchdog][execute] Not handling alerting because currently in the maintenance window")
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}
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if debug {
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log.Printf("[watchdog][execute] Waiting for interval=%s before monitoring group=%s endpoint=%s again", endpoint.Interval, endpoint.Group, endpoint.Name)
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}
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if !disableMonitoringLock {
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monitoringMutex.Unlock()
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}
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}
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// UpdateEndpointStatuses updates the slice of endpoint statuses
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func UpdateEndpointStatuses(endpoint *core.Endpoint, result *core.Result) {
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if err := store.Get().Insert(endpoint, result); err != nil {
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log.Println("[watchdog][UpdateEndpointStatuses] Failed to insert data in storage:", err.Error())
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}
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}
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// Shutdown stops monitoring all endpoints
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func Shutdown() {
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cancelFunc()
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}
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