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377 lines
10 KiB
Go
377 lines
10 KiB
Go
package cmd
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import (
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"math"
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"net/http"
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"os"
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"os/signal"
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"strconv"
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"strings"
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"syscall"
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"time"
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"github.com/containrrr/watchtower/internal/actions"
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"github.com/containrrr/watchtower/internal/flags"
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"github.com/containrrr/watchtower/internal/meta"
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"github.com/containrrr/watchtower/pkg/api"
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apiMetrics "github.com/containrrr/watchtower/pkg/api/metrics"
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"github.com/containrrr/watchtower/pkg/api/update"
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"github.com/containrrr/watchtower/pkg/container"
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"github.com/containrrr/watchtower/pkg/filters"
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"github.com/containrrr/watchtower/pkg/metrics"
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"github.com/containrrr/watchtower/pkg/notifications"
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t "github.com/containrrr/watchtower/pkg/types"
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"github.com/robfig/cron"
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log "github.com/sirupsen/logrus"
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"github.com/spf13/cobra"
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)
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var (
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client container.Client
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scheduleSpec string
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cleanup bool
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noRestart bool
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monitorOnly bool
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enableLabel bool
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notifier t.Notifier
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timeout time.Duration
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lifecycleHooks bool
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rollingRestart bool
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scope string
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)
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var rootCmd = NewRootCommand()
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// NewRootCommand creates the root command for watchtower
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func NewRootCommand() *cobra.Command {
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return &cobra.Command{
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Use: "watchtower",
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Short: "Automatically updates running Docker containers",
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Long: `
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Watchtower automatically updates running Docker containers whenever a new image is released.
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More information available at https://github.com/containrrr/watchtower/.
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`,
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Run: Run,
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PreRun: PreRun,
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}
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}
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func init() {
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flags.SetDefaults()
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flags.RegisterDockerFlags(rootCmd)
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flags.RegisterSystemFlags(rootCmd)
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flags.RegisterNotificationFlags(rootCmd)
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}
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// Execute the root func and exit in case of errors
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func Execute() {
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if err := rootCmd.Execute(); err != nil {
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log.Fatal(err)
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}
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}
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// PreRun is a lifecycle hook that runs before the command is executed.
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func PreRun(cmd *cobra.Command, _ []string) {
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f := cmd.PersistentFlags()
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flags.ProcessFlagAliases(f)
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if enabled, _ := f.GetBool("no-color"); enabled {
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log.SetFormatter(&log.TextFormatter{
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DisableColors: true,
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})
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} else {
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// enable logrus built-in support for https://bixense.com/clicolors/
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log.SetFormatter(&log.TextFormatter{
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EnvironmentOverrideColors: true,
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})
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}
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if enabled, _ := f.GetBool("debug"); enabled {
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log.SetLevel(log.DebugLevel)
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}
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if enabled, _ := f.GetBool("trace"); enabled {
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log.SetLevel(log.TraceLevel)
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}
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scheduleSpec, _ = f.GetString("schedule")
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flags.GetSecretsFromFiles(cmd)
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cleanup, noRestart, monitorOnly, timeout = flags.ReadFlags(cmd)
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if timeout < 0 {
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log.Fatal("Please specify a positive value for timeout value.")
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}
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enableLabel, _ = f.GetBool("label-enable")
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lifecycleHooks, _ = f.GetBool("enable-lifecycle-hooks")
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rollingRestart, _ = f.GetBool("rolling-restart")
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scope, _ = f.GetString("scope")
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if scope != "" {
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log.Debugf(`Using scope %q`, scope)
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}
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// configure environment vars for client
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err := flags.EnvConfig(cmd)
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if err != nil {
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log.Fatal(err)
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}
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noPull, _ := f.GetBool("no-pull")
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includeStopped, _ := f.GetBool("include-stopped")
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includeRestarting, _ := f.GetBool("include-restarting")
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reviveStopped, _ := f.GetBool("revive-stopped")
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removeVolumes, _ := f.GetBool("remove-volumes")
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warnOnHeadPullFailed, _ := f.GetString("warn-on-head-failure")
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if monitorOnly && noPull {
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log.Warn("Using `WATCHTOWER_NO_PULL` and `WATCHTOWER_MONITOR_ONLY` simultaneously might lead to no action being taken at all. If this is intentional, you may safely ignore this message.")
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}
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client = container.NewClient(container.ClientOptions{
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PullImages: !noPull,
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IncludeStopped: includeStopped,
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ReviveStopped: reviveStopped,
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RemoveVolumes: removeVolumes,
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IncludeRestarting: includeRestarting,
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WarnOnHeadFailed: container.WarningStrategy(warnOnHeadPullFailed),
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})
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notifier = notifications.NewNotifier(cmd)
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}
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// Run is the main execution flow of the command
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func Run(c *cobra.Command, names []string) {
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filter, filterDesc := filters.BuildFilter(names, enableLabel, scope)
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runOnce, _ := c.PersistentFlags().GetBool("run-once")
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enableUpdateAPI, _ := c.PersistentFlags().GetBool("http-api-update")
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enableMetricsAPI, _ := c.PersistentFlags().GetBool("http-api-metrics")
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unblockHTTPAPI, _ := c.PersistentFlags().GetBool("http-api-periodic-polls")
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apiToken, _ := c.PersistentFlags().GetString("http-api-token")
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if rollingRestart && monitorOnly {
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log.Fatal("Rolling restarts is not compatible with the global monitor only flag")
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}
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awaitDockerClient()
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if err := actions.CheckForSanity(client, filter, rollingRestart); err != nil {
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logNotifyExit(err)
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}
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if runOnce {
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writeStartupMessage(c, time.Time{}, filterDesc)
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runUpdatesWithNotifications(filter)
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notifier.Close()
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os.Exit(0)
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return
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}
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if err := actions.CheckForMultipleWatchtowerInstances(client, cleanup, scope); err != nil {
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logNotifyExit(err)
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}
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// The lock is shared between the scheduler and the HTTP API. It only allows one update to run at a time.
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updateLock := make(chan bool, 1)
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updateLock <- true
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httpAPI := api.New(apiToken)
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if enableUpdateAPI {
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updateHandler := update.New(func(images []string) { runUpdatesWithNotifications(filters.FilterByImage(images, filter)) }, updateLock)
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httpAPI.RegisterFunc(updateHandler.Path, updateHandler.Handle)
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// If polling isn't enabled the scheduler is never started and
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// we need to trigger the startup messages manually.
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if !unblockHTTPAPI {
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writeStartupMessage(c, time.Time{}, filterDesc)
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}
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}
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if enableMetricsAPI {
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metricsHandler := apiMetrics.New()
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httpAPI.RegisterHandler(metricsHandler.Path, metricsHandler.Handle)
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}
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if err := httpAPI.Start(enableUpdateAPI && !unblockHTTPAPI); err != nil && err != http.ErrServerClosed {
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log.Error("failed to start API", err)
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}
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if err := runUpgradesOnSchedule(c, filter, filterDesc, updateLock); err != nil {
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log.Error(err)
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}
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os.Exit(1)
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}
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func logNotifyExit(err error) {
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log.Error(err)
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notifier.Close()
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os.Exit(1)
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}
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func awaitDockerClient() {
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log.Debug("Sleeping for a second to ensure the docker api client has been properly initialized.")
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time.Sleep(1 * time.Second)
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}
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func formatDuration(d time.Duration) string {
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sb := strings.Builder{}
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hours := int64(d.Hours())
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minutes := int64(math.Mod(d.Minutes(), 60))
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seconds := int64(math.Mod(d.Seconds(), 60))
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if hours == 1 {
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sb.WriteString("1 hour")
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} else if hours != 0 {
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sb.WriteString(strconv.FormatInt(hours, 10))
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sb.WriteString(" hours")
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}
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if hours != 0 && (seconds != 0 || minutes != 0) {
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sb.WriteString(", ")
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}
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if minutes == 1 {
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sb.WriteString("1 minute")
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} else if minutes != 0 {
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sb.WriteString(strconv.FormatInt(minutes, 10))
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sb.WriteString(" minutes")
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}
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if minutes != 0 && (seconds != 0) {
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sb.WriteString(", ")
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}
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if seconds == 1 {
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sb.WriteString("1 second")
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} else if seconds != 0 || (hours == 0 && minutes == 0) {
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sb.WriteString(strconv.FormatInt(seconds, 10))
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sb.WriteString(" seconds")
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}
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return sb.String()
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}
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func writeStartupMessage(c *cobra.Command, sched time.Time, filtering string) {
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noStartupMessage, _ := c.PersistentFlags().GetBool("no-startup-message")
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enableUpdateAPI, _ := c.PersistentFlags().GetBool("http-api-update")
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var startupLog *log.Entry
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if noStartupMessage {
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startupLog = notifications.LocalLog
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} else {
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startupLog = log.NewEntry(log.StandardLogger())
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// Batch up startup messages to send them as a single notification
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notifier.StartNotification()
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}
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startupLog.Info("Watchtower ", meta.Version)
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notifierNames := notifier.GetNames()
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if len(notifierNames) > 0 {
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startupLog.Info("Using notifications: " + strings.Join(notifierNames, ", "))
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} else {
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startupLog.Info("Using no notifications")
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}
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startupLog.Info(filtering)
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if !sched.IsZero() {
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until := formatDuration(time.Until(sched))
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startupLog.Info("Scheduling first run: " + sched.Format("2006-01-02 15:04:05 -0700 MST"))
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startupLog.Info("Note that the first check will be performed in " + until)
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} else if runOnce, _ := c.PersistentFlags().GetBool("run-once"); runOnce {
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startupLog.Info("Running a one time update.")
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} else {
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startupLog.Info("Periodic runs are not enabled.")
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}
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if enableUpdateAPI {
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// TODO: make listen port configurable
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startupLog.Info("The HTTP API is enabled at :8080.")
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}
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if !noStartupMessage {
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// Send the queued up startup messages, not including the trace warning below (to make sure it's noticed)
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notifier.SendNotification(nil)
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}
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if log.IsLevelEnabled(log.TraceLevel) {
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startupLog.Warn("Trace level enabled: log will include sensitive information as credentials and tokens")
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}
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}
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func runUpgradesOnSchedule(c *cobra.Command, filter t.Filter, filtering string, lock chan bool) error {
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if lock == nil {
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lock = make(chan bool, 1)
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lock <- true
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}
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scheduler := cron.New()
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err := scheduler.AddFunc(
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scheduleSpec,
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func() {
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select {
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case v := <-lock:
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defer func() { lock <- v }()
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metric := runUpdatesWithNotifications(filter)
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metrics.RegisterScan(metric)
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default:
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// Update was skipped
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metrics.RegisterScan(nil)
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log.Debug("Skipped another update already running.")
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}
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nextRuns := scheduler.Entries()
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if len(nextRuns) > 0 {
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log.Debug("Scheduled next run: " + nextRuns[0].Next.String())
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}
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})
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if err != nil {
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return err
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}
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writeStartupMessage(c, scheduler.Entries()[0].Schedule.Next(time.Now()), filtering)
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scheduler.Start()
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// Graceful shut-down on SIGINT/SIGTERM
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interrupt := make(chan os.Signal, 1)
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signal.Notify(interrupt, os.Interrupt)
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signal.Notify(interrupt, syscall.SIGTERM)
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<-interrupt
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scheduler.Stop()
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log.Info("Waiting for running update to be finished...")
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<-lock
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return nil
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}
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func runUpdatesWithNotifications(filter t.Filter) *metrics.Metric {
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notifier.StartNotification()
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updateParams := t.UpdateParams{
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Filter: filter,
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Cleanup: cleanup,
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NoRestart: noRestart,
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Timeout: timeout,
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MonitorOnly: monitorOnly,
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LifecycleHooks: lifecycleHooks,
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RollingRestart: rollingRestart,
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}
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result, err := actions.Update(client, updateParams)
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if err != nil {
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log.Error(err)
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}
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notifier.SendNotification(result)
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metricResults := metrics.NewMetric(result)
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notifications.LocalLog.WithFields(log.Fields{
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"Scanned": metricResults.Scanned,
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"Updated": metricResults.Updated,
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"Failed": metricResults.Failed,
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}).Info("Session done")
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return metricResults
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}
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