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3b5fac462d
The LXC driver was deprecated in Docker 1.8. Following the deprecation rules, we can remove a deprecated feature after two major releases. LXC won't be supported anymore starting on Docker 1.10. Signed-off-by: David Calavera <david.calavera@gmail.com>
391 lines
11 KiB
Go
391 lines
11 KiB
Go
package daemon
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import (
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"io"
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"io/ioutil"
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"strings"
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"sync"
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"time"
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"github.com/Sirupsen/logrus"
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"github.com/docker/docker/daemon/execdriver"
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derr "github.com/docker/docker/errors"
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"github.com/docker/docker/pkg/broadcaster"
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"github.com/docker/docker/pkg/ioutils"
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"github.com/docker/docker/pkg/pools"
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"github.com/docker/docker/pkg/promise"
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"github.com/docker/docker/pkg/stringid"
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"github.com/docker/docker/pkg/stringutils"
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"github.com/docker/docker/runconfig"
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)
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// ExecConfig holds the configurations for execs. The Daemon keeps
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// track of both running and finished execs so that they can be
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// examined both during and after completion.
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type ExecConfig struct {
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sync.Mutex
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ID string
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Running bool
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ExitCode int
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ProcessConfig *execdriver.ProcessConfig
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streamConfig
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OpenStdin bool
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OpenStderr bool
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OpenStdout bool
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Container *Container
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canRemove bool
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// waitStart will be closed immediately after the exec is really started.
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waitStart chan struct{}
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}
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type execStore struct {
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s map[string]*ExecConfig
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sync.RWMutex
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}
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func newExecStore() *execStore {
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return &execStore{s: make(map[string]*ExecConfig, 0)}
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}
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func (e *execStore) Add(id string, ExecConfig *ExecConfig) {
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e.Lock()
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e.s[id] = ExecConfig
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e.Unlock()
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}
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func (e *execStore) Get(id string) *ExecConfig {
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e.RLock()
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res := e.s[id]
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e.RUnlock()
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return res
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}
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func (e *execStore) Delete(id string) {
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e.Lock()
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delete(e.s, id)
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e.Unlock()
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}
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func (e *execStore) List() []string {
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var IDs []string
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e.RLock()
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for id := range e.s {
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IDs = append(IDs, id)
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}
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e.RUnlock()
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return IDs
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}
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func (ExecConfig *ExecConfig) resize(h, w int) error {
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select {
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case <-ExecConfig.waitStart:
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case <-time.After(time.Second):
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return derr.ErrorCodeExecResize.WithArgs(ExecConfig.ID)
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}
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return ExecConfig.ProcessConfig.Terminal.Resize(h, w)
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}
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func (d *Daemon) registerExecCommand(ExecConfig *ExecConfig) {
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// Storing execs in container in order to kill them gracefully whenever the container is stopped or removed.
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ExecConfig.Container.execCommands.Add(ExecConfig.ID, ExecConfig)
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// Storing execs in daemon for easy access via remote API.
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d.execCommands.Add(ExecConfig.ID, ExecConfig)
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}
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// ExecExists looks up the exec instance and returns a bool if it exists or not.
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// It will also return the error produced by `getExecConfig`
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func (d *Daemon) ExecExists(name string) (bool, error) {
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if _, err := d.getExecConfig(name); err != nil {
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return false, err
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}
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return true, nil
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}
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// getExecConfig looks up the exec instance by name. If the container associated
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// with the exec instance is stopped or paused, it will return an error.
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func (d *Daemon) getExecConfig(name string) (*ExecConfig, error) {
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ec := d.execCommands.Get(name)
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// If the exec is found but its container is not in the daemon's list of
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// containers then it must have been delete, in which case instead of
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// saying the container isn't running, we should return a 404 so that
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// the user sees the same error now that they will after the
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// 5 minute clean-up loop is run which erases old/dead execs.
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if ec != nil && d.containers.Get(ec.Container.ID) != nil {
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if !ec.Container.IsRunning() {
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return nil, derr.ErrorCodeContainerNotRunning.WithArgs(ec.Container.ID, ec.Container.State.String())
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}
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if ec.Container.isPaused() {
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return nil, derr.ErrorCodeExecPaused.WithArgs(ec.Container.ID)
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}
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return ec, nil
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}
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return nil, derr.ErrorCodeNoExecID.WithArgs(name)
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}
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func (d *Daemon) unregisterExecCommand(ExecConfig *ExecConfig) {
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ExecConfig.Container.execCommands.Delete(ExecConfig.ID)
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d.execCommands.Delete(ExecConfig.ID)
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}
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func (d *Daemon) getActiveContainer(name string) (*Container, error) {
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container, err := d.Get(name)
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if err != nil {
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return nil, err
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}
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if !container.IsRunning() {
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return nil, derr.ErrorCodeNotRunning.WithArgs(name)
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}
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if container.isPaused() {
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return nil, derr.ErrorCodeExecPaused.WithArgs(name)
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}
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return container, nil
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}
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// ContainerExecCreate sets up an exec in a running container.
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func (d *Daemon) ContainerExecCreate(config *runconfig.ExecConfig) (string, error) {
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container, err := d.getActiveContainer(config.Container)
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if err != nil {
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return "", err
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}
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cmd := stringutils.NewStrSlice(config.Cmd...)
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entrypoint, args := d.getEntrypointAndArgs(stringutils.NewStrSlice(), cmd)
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user := config.User
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if len(user) == 0 {
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user = container.Config.User
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}
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processConfig := &execdriver.ProcessConfig{
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Tty: config.Tty,
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Entrypoint: entrypoint,
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Arguments: args,
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User: user,
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Privileged: config.Privileged,
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}
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ExecConfig := &ExecConfig{
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ID: stringid.GenerateNonCryptoID(),
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OpenStdin: config.AttachStdin,
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OpenStdout: config.AttachStdout,
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OpenStderr: config.AttachStderr,
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streamConfig: streamConfig{},
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ProcessConfig: processConfig,
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Container: container,
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Running: false,
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waitStart: make(chan struct{}),
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}
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d.registerExecCommand(ExecConfig)
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d.LogContainerEvent(container, "exec_create: "+ExecConfig.ProcessConfig.Entrypoint+" "+strings.Join(ExecConfig.ProcessConfig.Arguments, " "))
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return ExecConfig.ID, nil
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}
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// ContainerExecStart starts a previously set up exec instance. The
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// std streams are set up.
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func (d *Daemon) ContainerExecStart(name string, stdin io.ReadCloser, stdout io.Writer, stderr io.Writer) error {
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var (
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cStdin io.ReadCloser
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cStdout, cStderr io.Writer
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)
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ec, err := d.getExecConfig(name)
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if err != nil {
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return derr.ErrorCodeNoExecID.WithArgs(name)
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}
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ec.Lock()
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if ec.Running {
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ec.Unlock()
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return derr.ErrorCodeExecRunning.WithArgs(ec.ID)
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}
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ec.Running = true
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ec.Unlock()
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logrus.Debugf("starting exec command %s in container %s", ec.ID, ec.Container.ID)
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container := ec.Container
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d.LogContainerEvent(container, "exec_start: "+ec.ProcessConfig.Entrypoint+" "+strings.Join(ec.ProcessConfig.Arguments, " "))
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if ec.OpenStdin {
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r, w := io.Pipe()
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go func() {
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defer w.Close()
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defer logrus.Debugf("Closing buffered stdin pipe")
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pools.Copy(w, stdin)
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}()
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cStdin = r
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}
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if ec.OpenStdout {
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cStdout = stdout
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}
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if ec.OpenStderr {
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cStderr = stderr
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}
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ec.streamConfig.stderr = new(broadcaster.Unbuffered)
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ec.streamConfig.stdout = new(broadcaster.Unbuffered)
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// Attach to stdin
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if ec.OpenStdin {
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ec.streamConfig.stdin, ec.streamConfig.stdinPipe = io.Pipe()
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} else {
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ec.streamConfig.stdinPipe = ioutils.NopWriteCloser(ioutil.Discard) // Silently drop stdin
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}
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attachErr := attach(&ec.streamConfig, ec.OpenStdin, true, ec.ProcessConfig.Tty, cStdin, cStdout, cStderr)
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execErr := make(chan error)
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// Note, the ExecConfig data will be removed when the container
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// itself is deleted. This allows us to query it (for things like
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// the exitStatus) even after the cmd is done running.
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go func() {
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execErr <- d.containerExec(container, ec)
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}()
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select {
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case err := <-attachErr:
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if err != nil {
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return derr.ErrorCodeExecAttach.WithArgs(err)
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}
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return nil
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case err := <-execErr:
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if aErr := <-attachErr; aErr != nil && err == nil {
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return derr.ErrorCodeExecAttach.WithArgs(aErr)
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}
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if err == nil {
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return nil
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}
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// Maybe the container stopped while we were trying to exec
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if !container.IsRunning() {
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return derr.ErrorCodeExecContainerStopped
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}
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return derr.ErrorCodeExecCantRun.WithArgs(ec.ID, container.ID, err)
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}
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}
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// Exec calls the underlying exec driver to run
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func (d *Daemon) Exec(c *Container, ExecConfig *ExecConfig, pipes *execdriver.Pipes, startCallback execdriver.DriverCallback) (int, error) {
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hooks := execdriver.Hooks{
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Start: startCallback,
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}
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exitStatus, err := d.execDriver.Exec(c.command, ExecConfig.ProcessConfig, pipes, hooks)
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// On err, make sure we don't leave ExitCode at zero
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if err != nil && exitStatus == 0 {
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exitStatus = 128
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}
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ExecConfig.ExitCode = exitStatus
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ExecConfig.Running = false
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return exitStatus, err
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}
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// execCommandGC runs a ticker to clean up the daemon references
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// of exec configs that are no longer part of the container.
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func (d *Daemon) execCommandGC() {
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for range time.Tick(5 * time.Minute) {
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var (
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cleaned int
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liveExecCommands = d.containerExecIds()
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)
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for id, config := range d.execCommands.s {
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if config.canRemove {
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cleaned++
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d.execCommands.Delete(id)
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} else {
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if _, exists := liveExecCommands[id]; !exists {
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config.canRemove = true
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}
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}
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}
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if cleaned > 0 {
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logrus.Debugf("clean %d unused exec commands", cleaned)
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}
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}
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}
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// containerExecIds returns a list of all the current exec ids that are in use
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// and running inside a container.
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func (d *Daemon) containerExecIds() map[string]struct{} {
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ids := map[string]struct{}{}
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for _, c := range d.containers.List() {
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for _, id := range c.execCommands.List() {
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ids[id] = struct{}{}
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}
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}
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return ids
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}
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func (d *Daemon) containerExec(container *Container, ec *ExecConfig) error {
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container.Lock()
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defer container.Unlock()
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callback := func(processConfig *execdriver.ProcessConfig, pid int, chOOM <-chan struct{}) error {
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if processConfig.Tty {
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// The callback is called after the process Start()
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// so we are in the parent process. In TTY mode, stdin/out/err is the PtySlave
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// which we close here.
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if c, ok := processConfig.Stdout.(io.Closer); ok {
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c.Close()
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}
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}
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close(ec.waitStart)
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return nil
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}
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// We use a callback here instead of a goroutine and an chan for
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// synchronization purposes
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cErr := promise.Go(func() error { return d.monitorExec(container, ec, callback) })
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// Exec should not return until the process is actually running
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select {
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case <-ec.waitStart:
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case err := <-cErr:
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return err
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}
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return nil
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}
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func (d *Daemon) monitorExec(container *Container, ExecConfig *ExecConfig, callback execdriver.DriverCallback) error {
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var (
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err error
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exitCode int
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)
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pipes := execdriver.NewPipes(ExecConfig.streamConfig.stdin, ExecConfig.streamConfig.stdout, ExecConfig.streamConfig.stderr, ExecConfig.OpenStdin)
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exitCode, err = d.Exec(container, ExecConfig, pipes, callback)
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if err != nil {
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logrus.Errorf("Error running command in existing container %s: %s", container.ID, err)
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}
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logrus.Debugf("Exec task in container %s exited with code %d", container.ID, exitCode)
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if ExecConfig.OpenStdin {
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if err := ExecConfig.streamConfig.stdin.Close(); err != nil {
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logrus.Errorf("Error closing stdin while running in %s: %s", container.ID, err)
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}
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}
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if err := ExecConfig.streamConfig.stdout.Clean(); err != nil {
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logrus.Errorf("Error closing stdout while running in %s: %s", container.ID, err)
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}
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if err := ExecConfig.streamConfig.stderr.Clean(); err != nil {
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logrus.Errorf("Error closing stderr while running in %s: %s", container.ID, err)
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}
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if ExecConfig.ProcessConfig.Terminal != nil {
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if err := ExecConfig.ProcessConfig.Terminal.Close(); err != nil {
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logrus.Errorf("Error closing terminal while running in container %s: %s", container.ID, err)
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}
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}
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// remove the exec command from the container's store only and not the
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// daemon's store so that the exec command can be inspected.
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container.execCommands.Delete(ExecConfig.ID)
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return err
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}
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