349 lines
9.9 KiB
Go
349 lines
9.9 KiB
Go
package driver
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import (
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"context"
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"fmt"
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"log"
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"regexp"
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"sync"
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"time"
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docker "github.com/fsouza/go-dockerclient"
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"github.com/hashicorp/nomad/nomad/structs"
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)
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var (
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// createCoordinator allows us to only create a single coordinator
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createCoordinator sync.Once
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// globalCoordinator is the shared coordinator and should only be retreived
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// using the GetDockerCoordinator() method.
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globalCoordinator *dockerCoordinator
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// imageNotFoundMatcher is a regex expression that matches the image not
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// found error Docker returns.
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imageNotFoundMatcher = regexp.MustCompile(`Error: image .+ not found`)
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)
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// pullFuture is a sharable future for retrieving a pulled images ID and any
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// error that may have occurred during the pull.
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type pullFuture struct {
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waitCh chan struct{}
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err error
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imageID string
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}
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// newPullFuture returns a new pull future
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func newPullFuture() *pullFuture {
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return &pullFuture{
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waitCh: make(chan struct{}),
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}
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}
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// wait waits till the future has a result
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func (p *pullFuture) wait() *pullFuture {
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<-p.waitCh
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return p
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}
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// result returns the results of the future and should only ever be called after
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// wait returns.
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func (p *pullFuture) result() (imageID string, err error) {
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return p.imageID, p.err
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}
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// set is used to set the results and unblock any waiter. This may only be
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// called once.
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func (p *pullFuture) set(imageID string, err error) {
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p.imageID = imageID
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p.err = err
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close(p.waitCh)
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}
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// DockerImageClient provides the methods required to do CRUD operations on the
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// Docker images
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type DockerImageClient interface {
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PullImage(opts docker.PullImageOptions, auth docker.AuthConfiguration) error
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InspectImage(id string) (*docker.Image, error)
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RemoveImage(id string) error
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}
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// dockerCoordinatorConfig is used to configure the Docker coordinator.
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type dockerCoordinatorConfig struct {
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// logger is the logger the coordinator should use
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logger *log.Logger
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// cleanup marks whether images should be deleting when the reference count
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// is zero
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cleanup bool
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// client is the Docker client to use for communicating with Docker
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client DockerImageClient
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// removeDelay is the delay between an image's reference count going to
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// zero and the image actually being deleted.
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removeDelay time.Duration
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}
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// dockerCoordinator is used to coordinate actions against images to prevent
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// racy deletions. It can be thought of as a reference counter on images.
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type dockerCoordinator struct {
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*dockerCoordinatorConfig
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// imageLock is used to lock access to all images
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imageLock sync.Mutex
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// pullFutures is used to allow multiple callers to pull the same image but
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// only have one request be sent to Docker
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pullFutures map[string]*pullFuture
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// imageRefCount is the reference count of image IDs
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imageRefCount map[string]map[string]struct{}
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// deleteFuture is indexed by image ID and has a cancable delete future
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deleteFuture map[string]context.CancelFunc
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}
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// NewDockerCoordinator returns a new Docker coordinator
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func NewDockerCoordinator(config *dockerCoordinatorConfig) *dockerCoordinator {
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if config.client == nil {
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return nil
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}
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return &dockerCoordinator{
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dockerCoordinatorConfig: config,
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pullFutures: make(map[string]*pullFuture),
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imageRefCount: make(map[string]map[string]struct{}),
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deleteFuture: make(map[string]context.CancelFunc),
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}
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}
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// GetDockerCoordinator returns the shared dockerCoordinator instance
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func GetDockerCoordinator(config *dockerCoordinatorConfig) *dockerCoordinator {
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createCoordinator.Do(func() {
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globalCoordinator = NewDockerCoordinator(config)
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})
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return globalCoordinator
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}
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// PullImage is used to pull an image. It returns the pulled imaged ID or an
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// error that occurred during the pull
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func (d *dockerCoordinator) PullImage(image string, authOptions *docker.AuthConfiguration, callerID string) (imageID string, err error) {
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// Get the future
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d.imageLock.Lock()
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future, ok := d.pullFutures[image]
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if !ok {
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// Make the future
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future = newPullFuture()
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d.pullFutures[image] = future
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go d.pullImageImpl(image, authOptions, future)
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}
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d.imageLock.Unlock()
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// We unlock while we wait since this can take a while
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id, err := future.wait().result()
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d.imageLock.Lock()
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defer d.imageLock.Unlock()
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// Delete the future since we don't need it and we don't want to cache an
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// image being there if it has possibly been manually deleted (outside of
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// Nomad).
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if _, ok := d.pullFutures[image]; ok {
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delete(d.pullFutures, image)
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}
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// If we are cleaning up, we increment the reference count on the image
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if err == nil && d.cleanup {
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d.incrementImageReferenceImpl(id, image, callerID)
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}
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return id, err
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}
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// pullImageImpl is the implementation of pulling an image. The results are
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// returned via the passed future
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func (d *dockerCoordinator) pullImageImpl(image string, authOptions *docker.AuthConfiguration, future *pullFuture) {
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// Parse the repo and tag
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repo, tag := docker.ParseRepositoryTag(image)
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if tag == "" {
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tag = "latest"
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}
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pullOptions := docker.PullImageOptions{
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Repository: repo,
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Tag: tag,
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}
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// Attempt to pull the image
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var auth docker.AuthConfiguration
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if authOptions != nil {
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auth = *authOptions
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}
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err := d.client.PullImage(pullOptions, auth)
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if err != nil {
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d.logger.Printf("[ERR] driver.docker: failed pulling container %s:%s: %s", repo, tag, err)
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future.set("", recoverablePullError(err, image))
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return
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}
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d.logger.Printf("[DEBUG] driver.docker: docker pull %s:%s succeeded", repo, tag)
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dockerImage, err := d.client.InspectImage(image)
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if err != nil {
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d.logger.Printf("[ERR] driver.docker: failed getting image id for %q: %v", image, err)
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future.set("", recoverableErrTimeouts(err))
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return
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}
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future.set(dockerImage.ID, nil)
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return
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}
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// IncrementImageReference is used to increment an image reference count
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func (d *dockerCoordinator) IncrementImageReference(imageID, imageName, callerID string) {
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d.imageLock.Lock()
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defer d.imageLock.Unlock()
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if d.cleanup {
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d.incrementImageReferenceImpl(imageID, imageName, callerID)
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}
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}
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// incrementImageReferenceImpl assumes the lock is held
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func (d *dockerCoordinator) incrementImageReferenceImpl(imageID, imageName, callerID string) {
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// Cancel any pending delete
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if cancel, ok := d.deleteFuture[imageID]; ok {
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d.logger.Printf("[DEBUG] driver.docker: cancelling removal of image %q", imageName)
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cancel()
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delete(d.deleteFuture, imageID)
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}
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// Increment the reference
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references, ok := d.imageRefCount[imageID]
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if !ok {
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references = make(map[string]struct{})
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d.imageRefCount[imageID] = references
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}
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if _, ok := references[callerID]; !ok {
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references[callerID] = struct{}{}
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d.logger.Printf("[DEBUG] driver.docker: image %q (%v) reference count incremented: %d", imageName, imageID, len(references))
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}
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}
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// RemoveImage removes the given image. If there are any errors removing the
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// image, the remove is retried internally.
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func (d *dockerCoordinator) RemoveImage(imageID, callerID string) {
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d.imageLock.Lock()
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defer d.imageLock.Unlock()
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if !d.cleanup {
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return
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}
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references, ok := d.imageRefCount[imageID]
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if !ok {
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d.logger.Printf("[WARN] driver.docker: RemoveImage on non-referenced counted image id %q", imageID)
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return
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}
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// Decrement the reference count
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delete(references, callerID)
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count := len(references)
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d.logger.Printf("[DEBUG] driver.docker: image id %q reference count decremented: %d", imageID, count)
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// Nothing to do
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if count != 0 {
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return
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}
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// This should never be the case but we safefty guard so we don't leak a
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// cancel.
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if cancel, ok := d.deleteFuture[imageID]; ok {
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d.logger.Printf("[ERR] driver.docker: image id %q has lingering delete future", imageID)
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cancel()
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}
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// Setup a future to delete the image
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ctx, cancel := context.WithCancel(context.Background())
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d.deleteFuture[imageID] = cancel
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go d.removeImageImpl(imageID, ctx)
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// Delete the key from the reference count
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delete(d.imageRefCount, imageID)
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}
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// removeImageImpl is used to remove an image. It wil wait the specified remove
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// delay to remove the image. If the context is cancalled before that the image
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// removal will be cancelled.
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func (d *dockerCoordinator) removeImageImpl(id string, ctx context.Context) {
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// Wait for the delay or a cancellation event
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select {
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case <-ctx.Done():
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// We have been cancelled
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return
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case <-time.After(d.removeDelay):
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}
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// Ensure we are suppose to delete. Do a short check while holding the lock
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// so there can't be interleaving. There is still the smallest chance that
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// the delete occurs after the image has been pulled but before it has been
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// incremented. For handling that we just treat it as a recoverable error in
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// the docker driver.
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d.imageLock.Lock()
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select {
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case <-ctx.Done():
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d.imageLock.Unlock()
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return
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default:
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}
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d.imageLock.Unlock()
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for i := 0; i < 3; i++ {
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err := d.client.RemoveImage(id)
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if err == nil {
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break
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}
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if err == docker.ErrNoSuchImage {
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d.logger.Printf("[DEBUG] driver.docker: unable to cleanup image %q: does not exist", id)
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return
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}
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if derr, ok := err.(*docker.Error); ok && derr.Status == 409 {
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d.logger.Printf("[DEBUG] driver.docker: unable to cleanup image %q: still in use", id)
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return
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}
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// Retry on unknown errors
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d.logger.Printf("[DEBUG] driver.docker: failed to remove image %q (attempt %d): %v", id, i+1, err)
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select {
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case <-ctx.Done():
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// We have been cancelled
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return
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case <-time.After(3 * time.Second):
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}
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}
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d.logger.Printf("[DEBUG] driver.docker: cleanup removed downloaded image: %q", id)
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// Cleanup the future from the map and free the context by cancelling it
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d.imageLock.Lock()
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if cancel, ok := d.deleteFuture[id]; ok {
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delete(d.deleteFuture, id)
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cancel()
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}
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d.imageLock.Unlock()
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}
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// recoverablePullError wraps the error gotten when trying to pull and image if
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// the error is recoverable.
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func recoverablePullError(err error, image string) error {
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recoverable := true
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if imageNotFoundMatcher.MatchString(err.Error()) {
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recoverable = false
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}
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return structs.NewRecoverableError(fmt.Errorf("Failed to pull `%s`: %s", image, err), recoverable)
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}
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