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ebcb7d6b40
Use strongly typed errors to set HTTP status codes. Error interfaces are defined in the api/errors package and errors returned from controllers are checked against these interfaces. Errors can be wraeped in a pkg/errors.Causer, as long as somewhere in the line of causes one of the interfaces is implemented. The special error interfaces take precedence over Causer, meaning if both Causer and one of the new error interfaces are implemented, the Causer is not traversed. Signed-off-by: Brian Goff <cpuguy83@gmail.com>
181 lines
5.5 KiB
Go
181 lines
5.5 KiB
Go
package daemon
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import (
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"context"
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"fmt"
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"runtime"
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"strings"
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"syscall"
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"time"
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containerpkg "github.com/docker/docker/container"
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"github.com/docker/docker/pkg/signal"
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"github.com/pkg/errors"
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"github.com/sirupsen/logrus"
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)
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type errNoSuchProcess struct {
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pid int
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signal int
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}
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func (e errNoSuchProcess) Error() string {
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return fmt.Sprintf("Cannot kill process (pid=%d) with signal %d: no such process.", e.pid, e.signal)
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}
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func (errNoSuchProcess) NotFound() {}
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// isErrNoSuchProcess returns true if the error
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// is an instance of errNoSuchProcess.
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func isErrNoSuchProcess(err error) bool {
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_, ok := err.(errNoSuchProcess)
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return ok
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}
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// ContainerKill sends signal to the container
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// If no signal is given (sig 0), then Kill with SIGKILL and wait
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// for the container to exit.
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// If a signal is given, then just send it to the container and return.
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func (daemon *Daemon) ContainerKill(name string, sig uint64) error {
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container, err := daemon.GetContainer(name)
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if err != nil {
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return err
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}
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if sig != 0 && !signal.ValidSignalForPlatform(syscall.Signal(sig)) {
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return fmt.Errorf("The %s daemon does not support signal %d", runtime.GOOS, sig)
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}
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// If no signal is passed, or SIGKILL, perform regular Kill (SIGKILL + wait())
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if sig == 0 || syscall.Signal(sig) == syscall.SIGKILL {
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return daemon.Kill(container)
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}
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return daemon.killWithSignal(container, int(sig))
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}
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// killWithSignal sends the container the given signal. This wrapper for the
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// host specific kill command prepares the container before attempting
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// to send the signal. An error is returned if the container is paused
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// or not running, or if there is a problem returned from the
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// underlying kill command.
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func (daemon *Daemon) killWithSignal(container *containerpkg.Container, sig int) error {
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logrus.Debugf("Sending kill signal %d to container %s", sig, container.ID)
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container.Lock()
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defer container.Unlock()
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if !container.Running {
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return errNotRunning(container.ID)
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}
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var unpause bool
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if container.Config.StopSignal != "" && syscall.Signal(sig) != syscall.SIGKILL {
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containerStopSignal, err := signal.ParseSignal(container.Config.StopSignal)
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if err != nil {
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return err
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}
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if containerStopSignal == syscall.Signal(sig) {
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container.ExitOnNext()
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unpause = container.Paused
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}
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} else {
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container.ExitOnNext()
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unpause = container.Paused
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}
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if !daemon.IsShuttingDown() {
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container.HasBeenManuallyStopped = true
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}
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// if the container is currently restarting we do not need to send the signal
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// to the process. Telling the monitor that it should exit on its next event
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// loop is enough
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if container.Restarting {
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return nil
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}
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if err := daemon.kill(container, sig); err != nil {
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err = errors.Wrapf(err, "Cannot kill container %s", container.ID)
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// if container or process not exists, ignore the error
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// TODO: we shouldn't have to parse error strings from containerd
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if strings.Contains(err.Error(), "container not found") ||
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strings.Contains(err.Error(), "no such process") {
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logrus.Warnf("container kill failed because of 'container not found' or 'no such process': %s", err.Error())
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unpause = false
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} else {
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return err
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}
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}
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if unpause {
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// above kill signal will be sent once resume is finished
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if err := daemon.containerd.Resume(container.ID); err != nil {
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logrus.Warn("Cannot unpause container %s: %s", container.ID, err)
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}
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}
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attributes := map[string]string{
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"signal": fmt.Sprintf("%d", sig),
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}
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daemon.LogContainerEventWithAttributes(container, "kill", attributes)
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return nil
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}
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// Kill forcefully terminates a container.
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func (daemon *Daemon) Kill(container *containerpkg.Container) error {
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if !container.IsRunning() {
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return errNotRunning(container.ID)
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}
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// 1. Send SIGKILL
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if err := daemon.killPossiblyDeadProcess(container, int(syscall.SIGKILL)); err != nil {
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// While normally we might "return err" here we're not going to
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// because if we can't stop the container by this point then
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// it's probably because it's already stopped. Meaning, between
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// the time of the IsRunning() call above and now it stopped.
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// Also, since the err return will be environment specific we can't
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// look for any particular (common) error that would indicate
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// that the process is already dead vs something else going wrong.
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// So, instead we'll give it up to 2 more seconds to complete and if
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// by that time the container is still running, then the error
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// we got is probably valid and so we return it to the caller.
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if isErrNoSuchProcess(err) {
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return nil
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}
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ctx, cancel := context.WithTimeout(context.Background(), 2*time.Second)
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defer cancel()
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if status := <-container.Wait(ctx, containerpkg.WaitConditionNotRunning); status.Err() != nil {
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return err
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}
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}
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// 2. Wait for the process to die, in last resort, try to kill the process directly
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if err := killProcessDirectly(container); err != nil {
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if isErrNoSuchProcess(err) {
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return nil
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}
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return err
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}
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// Wait for exit with no timeout.
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// Ignore returned status.
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_ = <-container.Wait(context.Background(), containerpkg.WaitConditionNotRunning)
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return nil
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}
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// killPossibleDeadProcess is a wrapper around killSig() suppressing "no such process" error.
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func (daemon *Daemon) killPossiblyDeadProcess(container *containerpkg.Container, sig int) error {
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err := daemon.killWithSignal(container, sig)
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if err == syscall.ESRCH {
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e := errNoSuchProcess{container.GetPID(), sig}
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logrus.Debug(e)
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return e
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}
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return err
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}
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func (daemon *Daemon) kill(c *containerpkg.Container, sig int) error {
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return daemon.containerd.Signal(c.ID, sig)
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}
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