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server.go
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server.go
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package docker
import (
"encoding/json"
"errors"
"fmt"
"github.com/dotcloud/docker/archive"
"github.com/dotcloud/docker/auth"
"github.com/dotcloud/docker/dockerversion"
"github.com/dotcloud/docker/engine"
"github.com/dotcloud/docker/pkg/graphdb"
"github.com/dotcloud/docker/registry"
"github.com/dotcloud/docker/runconfig"
"github.com/dotcloud/docker/utils"
"io"
"io/ioutil"
"log"
"net/http"
"net/url"
"os"
"os/exec"
"os/signal"
"path"
"path/filepath"
"runtime"
"strconv"
"strings"
"sync"
"syscall"
"time"
)
func (srv *Server) Close() error {
return srv.runtime.Close()
}
func init() {
engine.Register("initserver", jobInitServer)
}
// jobInitApi runs the remote api server `srv` as a daemon,
// Only one api server can run at the same time - this is enforced by a pidfile.
// The signals SIGINT, SIGQUIT and SIGTERM are intercepted for cleanup.
func jobInitServer(job *engine.Job) engine.Status {
job.Logf("Creating server")
srv, err := NewServer(job.Eng, DaemonConfigFromJob(job))
if err != nil {
return job.Error(err)
}
if srv.runtime.config.Pidfile != "" {
job.Logf("Creating pidfile")
if err := utils.CreatePidFile(srv.runtime.config.Pidfile); err != nil {
// FIXME: do we need fatal here instead of returning a job error?
log.Fatal(err)
}
}
job.Logf("Setting up signal traps")
c := make(chan os.Signal, 1)
signal.Notify(c, os.Interrupt, syscall.SIGTERM, syscall.SIGQUIT)
go func() {
sig := <-c
log.Printf("Received signal '%v', exiting\n", sig)
utils.RemovePidFile(srv.runtime.config.Pidfile)
srv.Close()
os.Exit(0)
}()
job.Eng.Hack_SetGlobalVar("httpapi.server", srv)
job.Eng.Hack_SetGlobalVar("httpapi.runtime", srv.runtime)
for name, handler := range map[string]engine.Handler{
"export": srv.ContainerExport,
"create": srv.ContainerCreate,
"stop": srv.ContainerStop,
"restart": srv.ContainerRestart,
"start": srv.ContainerStart,
"kill": srv.ContainerKill,
"wait": srv.ContainerWait,
"tag": srv.ImageTag,
"resize": srv.ContainerResize,
"commit": srv.ContainerCommit,
"info": srv.DockerInfo,
"container_delete": srv.ContainerDestroy,
"image_export": srv.ImageExport,
"images": srv.Images,
"history": srv.ImageHistory,
"viz": srv.ImagesViz,
"container_copy": srv.ContainerCopy,
"insert": srv.ImageInsert,
"attach": srv.ContainerAttach,
"search": srv.ImagesSearch,
"changes": srv.ContainerChanges,
"top": srv.ContainerTop,
"load": srv.ImageLoad,
"build": srv.Build,
"pull": srv.ImagePull,
"import": srv.ImageImport,
"image_delete": srv.ImageDelete,
"inspect": srv.JobInspect,
"events": srv.Events,
"push": srv.ImagePush,
"containers": srv.Containers,
"auth": srv.Auth,
} {
if err := job.Eng.Register(name, handler); err != nil {
return job.Error(err)
}
}
return engine.StatusOK
}
// simpleVersionInfo is a simple implementation of
// the interface VersionInfo, which is used
// to provide version information for some product,
// component, etc. It stores the product name and the version
// in string and returns them on calls to Name() and Version().
type simpleVersionInfo struct {
name string
version string
}
func (v *simpleVersionInfo) Name() string {
return v.name
}
func (v *simpleVersionInfo) Version() string {
return v.version
}
// ContainerKill send signal to the container
// If no signal is given (sig 0), then Kill with SIGKILL and wait
// for the container to exit.
// If a signal is given, then just send it to the container and return.
func (srv *Server) ContainerKill(job *engine.Job) engine.Status {
signalMap := map[string]syscall.Signal{
"HUP": syscall.SIGHUP,
"INT": syscall.SIGINT,
"QUIT": syscall.SIGQUIT,
"ILL": syscall.SIGILL,
"TRAP": syscall.SIGTRAP,
"ABRT": syscall.SIGABRT,
"BUS": syscall.SIGBUS,
"FPE": syscall.SIGFPE,
"KILL": syscall.SIGKILL,
"USR1": syscall.SIGUSR1,
"SEGV": syscall.SIGSEGV,
"USR2": syscall.SIGUSR2,
"PIPE": syscall.SIGPIPE,
"ALRM": syscall.SIGALRM,
"TERM": syscall.SIGTERM,
//"STKFLT": syscall.SIGSTKFLT,
"CHLD": syscall.SIGCHLD,
"CONT": syscall.SIGCONT,
"STOP": syscall.SIGSTOP,
"TSTP": syscall.SIGTSTP,
"TTIN": syscall.SIGTTIN,
"TTOU": syscall.SIGTTOU,
"URG": syscall.SIGURG,
"XCPU": syscall.SIGXCPU,
"XFSZ": syscall.SIGXFSZ,
"VTALRM": syscall.SIGVTALRM,
"PROF": syscall.SIGPROF,
"WINCH": syscall.SIGWINCH,
"IO": syscall.SIGIO,
//"PWR": syscall.SIGPWR,
"SYS": syscall.SIGSYS,
}
if n := len(job.Args); n < 1 || n > 2 {
return job.Errorf("Usage: %s CONTAINER [SIGNAL]", job.Name)
}
name := job.Args[0]
var sig uint64
if len(job.Args) == 2 && job.Args[1] != "" {
sig = uint64(signalMap[job.Args[1]])
if sig == 0 {
var err error
// The largest legal signal is 31, so let's parse on 5 bits
sig, err = strconv.ParseUint(job.Args[1], 10, 5)
if err != nil {
return job.Errorf("Invalid signal: %s", job.Args[1])
}
}
}
if container := srv.runtime.Get(name); container != nil {
// If no signal is passed, or SIGKILL, perform regular Kill (SIGKILL + wait())
if sig == 0 || syscall.Signal(sig) == syscall.SIGKILL {
if err := container.Kill(); err != nil {
return job.Errorf("Cannot kill container %s: %s", name, err)
}
srv.LogEvent("kill", container.ID, srv.runtime.repositories.ImageName(container.Image))
} else {
// Otherwise, just send the requested signal
if err := container.kill(int(sig)); err != nil {
return job.Errorf("Cannot kill container %s: %s", name, err)
}
// FIXME: Add event for signals
}
} else {
return job.Errorf("No such container: %s", name)
}
return engine.StatusOK
}
func (srv *Server) Auth(job *engine.Job) engine.Status {
var (
err error
authConfig = &auth.AuthConfig{}
)
job.GetenvJson("authConfig", authConfig)
// TODO: this is only done here because auth and registry need to be merged into one pkg
if addr := authConfig.ServerAddress; addr != "" && addr != auth.IndexServerAddress() {
addr, err = registry.ExpandAndVerifyRegistryUrl(addr)
if err != nil {
return job.Error(err)
}
authConfig.ServerAddress = addr
}
status, err := auth.Login(authConfig, srv.HTTPRequestFactory(nil))
if err != nil {
return job.Error(err)
}
job.Printf("%s\n", status)
return engine.StatusOK
}
func (srv *Server) Events(job *engine.Job) engine.Status {
if len(job.Args) != 1 {
return job.Errorf("Usage: %s FROM", job.Name)
}
var (
from = job.Args[0]
since = job.GetenvInt64("since")
)
sendEvent := func(event *utils.JSONMessage) error {
b, err := json.Marshal(event)
if err != nil {
return fmt.Errorf("JSON error")
}
_, err = job.Stdout.Write(b)
if err != nil {
// On error, evict the listener
utils.Errorf("%s", err)
srv.Lock()
delete(srv.listeners, from)
srv.Unlock()
return err
}
return nil
}
listener := make(chan utils.JSONMessage)
srv.Lock()
srv.listeners[from] = listener
srv.Unlock()
job.Stdout.Write(nil) // flush
if since != 0 {
// If since, send previous events that happened after the timestamp
for _, event := range srv.GetEvents() {
if event.Time >= since {
err := sendEvent(&event)
if err != nil && err.Error() == "JSON error" {
continue
}
if err != nil {
job.Error(err)
return engine.StatusErr
}
}
}
}
for event := range listener {
err := sendEvent(&event)
if err != nil && err.Error() == "JSON error" {
continue
}
if err != nil {
return job.Error(err)
}
}
return engine.StatusOK
}
func (srv *Server) ContainerExport(job *engine.Job) engine.Status {
if len(job.Args) != 1 {
return job.Errorf("Usage: %s container_id", job.Name)
}
name := job.Args[0]
if container := srv.runtime.Get(name); container != nil {
data, err := container.Export()
if err != nil {
return job.Errorf("%s: %s", name, err)
}
defer data.Close()
// Stream the entire contents of the container (basically a volatile snapshot)
if _, err := io.Copy(job.Stdout, data); err != nil {
return job.Errorf("%s: %s", name, err)
}
// FIXME: factor job-specific LogEvent to engine.Job.Run()
srv.LogEvent("export", container.ID, srv.runtime.repositories.ImageName(container.Image))
return engine.StatusOK
}
return job.Errorf("No such container: %s", name)
}
// ImageExport exports all images with the given tag. All versions
// containing the same tag are exported. The resulting output is an
// uncompressed tar ball.
// name is the set of tags to export.
// out is the writer where the images are written to.
func (srv *Server) ImageExport(job *engine.Job) engine.Status {
if len(job.Args) != 1 {
return job.Errorf("Usage: %s CONTAINER\n", job.Name)
}
name := job.Args[0]
// get image json
tempdir, err := ioutil.TempDir("", "docker-export-")
if err != nil {
return job.Error(err)
}
defer os.RemoveAll(tempdir)
utils.Debugf("Serializing %s", name)
rootRepo, err := srv.runtime.repositories.Get(name)
if err != nil {
return job.Error(err)
}
if rootRepo != nil {
for _, id := range rootRepo {
image, err := srv.ImageInspect(id)
if err != nil {
return job.Error(err)
}
if err := srv.exportImage(image, tempdir); err != nil {
return job.Error(err)
}
}
// write repositories
rootRepoMap := map[string]Repository{}
rootRepoMap[name] = rootRepo
rootRepoJson, _ := json.Marshal(rootRepoMap)
if err := ioutil.WriteFile(path.Join(tempdir, "repositories"), rootRepoJson, os.ModeAppend); err != nil {
return job.Error(err)
}
} else {
image, err := srv.ImageInspect(name)
if err != nil {
return job.Error(err)
}
if err := srv.exportImage(image, tempdir); err != nil {
return job.Error(err)
}
}
fs, err := archive.Tar(tempdir, archive.Uncompressed)
if err != nil {
return job.Error(err)
}
defer fs.Close()
if _, err := io.Copy(job.Stdout, fs); err != nil {
return job.Error(err)
}
return engine.StatusOK
}
func (srv *Server) exportImage(image *Image, tempdir string) error {
for i := image; i != nil; {
// temporary directory
tmpImageDir := path.Join(tempdir, i.ID)
if err := os.Mkdir(tmpImageDir, os.ModeDir); err != nil {
if os.IsExist(err) {
return nil
}
return err
}
var version = "1.0"
var versionBuf = []byte(version)
if err := ioutil.WriteFile(path.Join(tmpImageDir, "VERSION"), versionBuf, os.ModeAppend); err != nil {
return err
}
// serialize json
b, err := json.Marshal(i)
if err != nil {
return err
}
if err := ioutil.WriteFile(path.Join(tmpImageDir, "json"), b, os.ModeAppend); err != nil {
return err
}
// serialize filesystem
fs, err := i.TarLayer()
if err != nil {
return err
}
defer fs.Close()
fsTar, err := os.Create(path.Join(tmpImageDir, "layer.tar"))
if err != nil {
return err
}
if _, err = io.Copy(fsTar, fs); err != nil {
return err
}
fsTar.Close()
// find parent
if i.Parent != "" {
i, err = srv.ImageInspect(i.Parent)
if err != nil {
return err
}
} else {
i = nil
}
}
return nil
}
func (srv *Server) Build(job *engine.Job) engine.Status {
if len(job.Args) != 0 {
return job.Errorf("Usage: %s\n", job.Name)
}
var (
remoteURL = job.Getenv("remote")
repoName = job.Getenv("t")
suppressOutput = job.GetenvBool("q")
noCache = job.GetenvBool("nocache")
rm = job.GetenvBool("rm")
authConfig = &auth.AuthConfig{}
configFile = &auth.ConfigFile{}
tag string
context io.ReadCloser
)
job.GetenvJson("authConfig", authConfig)
job.GetenvJson("configFile", configFile)
repoName, tag = utils.ParseRepositoryTag(repoName)
if remoteURL == "" {
context = ioutil.NopCloser(job.Stdin)
} else if utils.IsGIT(remoteURL) {
if !strings.HasPrefix(remoteURL, "git://") {
remoteURL = "https://" + remoteURL
}
root, err := ioutil.TempDir("", "docker-build-git")
if err != nil {
return job.Error(err)
}
defer os.RemoveAll(root)
if output, err := exec.Command("git", "clone", "--recursive", remoteURL, root).CombinedOutput(); err != nil {
return job.Errorf("Error trying to use git: %s (%s)", err, output)
}
c, err := archive.Tar(root, archive.Uncompressed)
if err != nil {
return job.Error(err)
}
context = c
} else if utils.IsURL(remoteURL) {
f, err := utils.Download(remoteURL)
if err != nil {
return job.Error(err)
}
defer f.Body.Close()
dockerFile, err := ioutil.ReadAll(f.Body)
if err != nil {
return job.Error(err)
}
c, err := archive.Generate("Dockerfile", string(dockerFile))
if err != nil {
return job.Error(err)
}
context = c
}
defer context.Close()
sf := utils.NewStreamFormatter(job.GetenvBool("json"))
b := NewBuildFile(srv,
&StdoutFormater{
Writer: job.Stdout,
StreamFormatter: sf,
},
&StderrFormater{
Writer: job.Stdout,
StreamFormatter: sf,
},
!suppressOutput, !noCache, rm, job.Stdout, sf, authConfig, configFile)
id, err := b.Build(context)
if err != nil {
return job.Error(err)
}
if repoName != "" {
srv.runtime.repositories.Set(repoName, tag, id, false)
}
return engine.StatusOK
}
// Loads a set of images into the repository. This is the complementary of ImageExport.
// The input stream is an uncompressed tar ball containing images and metadata.
func (srv *Server) ImageLoad(job *engine.Job) engine.Status {
tmpImageDir, err := ioutil.TempDir("", "docker-import-")
if err != nil {
return job.Error(err)
}
defer os.RemoveAll(tmpImageDir)
var (
repoTarFile = path.Join(tmpImageDir, "repo.tar")
repoDir = path.Join(tmpImageDir, "repo")
)
tarFile, err := os.Create(repoTarFile)
if err != nil {
return job.Error(err)
}
if _, err := io.Copy(tarFile, job.Stdin); err != nil {
return job.Error(err)
}
tarFile.Close()
repoFile, err := os.Open(repoTarFile)
if err != nil {
return job.Error(err)
}
if err := os.Mkdir(repoDir, os.ModeDir); err != nil {
return job.Error(err)
}
if err := archive.Untar(repoFile, repoDir, nil); err != nil {
return job.Error(err)
}
dirs, err := ioutil.ReadDir(repoDir)
if err != nil {
return job.Error(err)
}
for _, d := range dirs {
if d.IsDir() {
if err := srv.recursiveLoad(d.Name(), tmpImageDir); err != nil {
return job.Error(err)
}
}
}
repositoriesJson, err := ioutil.ReadFile(path.Join(tmpImageDir, "repo", "repositories"))
if err == nil {
repositories := map[string]Repository{}
if err := json.Unmarshal(repositoriesJson, &repositories); err != nil {
return job.Error(err)
}
for imageName, tagMap := range repositories {
for tag, address := range tagMap {
if err := srv.runtime.repositories.Set(imageName, tag, address, true); err != nil {
return job.Error(err)
}
}
}
} else if !os.IsNotExist(err) {
return job.Error(err)
}
return engine.StatusOK
}
func (srv *Server) recursiveLoad(address, tmpImageDir string) error {
if _, err := srv.ImageInspect(address); err != nil {
utils.Debugf("Loading %s", address)
imageJson, err := ioutil.ReadFile(path.Join(tmpImageDir, "repo", address, "json"))
if err != nil {
utils.Debugf("Error reading json", err)
return err
}
layer, err := os.Open(path.Join(tmpImageDir, "repo", address, "layer.tar"))
if err != nil {
utils.Debugf("Error reading embedded tar", err)
return err
}
img, err := NewImgJSON(imageJson)
if err != nil {
utils.Debugf("Error unmarshalling json", err)
return err
}
if img.Parent != "" {
if !srv.runtime.graph.Exists(img.Parent) {
if err := srv.recursiveLoad(img.Parent, tmpImageDir); err != nil {
return err
}
}
}
if err := srv.runtime.graph.Register(imageJson, layer, img); err != nil {
return err
}
}
utils.Debugf("Completed processing %s", address)
return nil
}
func (srv *Server) ImagesSearch(job *engine.Job) engine.Status {
if n := len(job.Args); n != 1 {
return job.Errorf("Usage: %s TERM", job.Name)
}
var (
term = job.Args[0]
metaHeaders = map[string][]string{}
authConfig = &auth.AuthConfig{}
)
job.GetenvJson("authConfig", authConfig)
job.GetenvJson("metaHeaders", metaHeaders)
r, err := registry.NewRegistry(authConfig, srv.HTTPRequestFactory(metaHeaders), auth.IndexServerAddress())
if err != nil {
return job.Error(err)
}
results, err := r.SearchRepositories(term)
if err != nil {
return job.Error(err)
}
outs := engine.NewTable("star_count", 0)
for _, result := range results.Results {
out := &engine.Env{}
out.Import(result)
outs.Add(out)
}
outs.ReverseSort()
if _, err := outs.WriteListTo(job.Stdout); err != nil {
return job.Error(err)
}
return engine.StatusOK
}
func (srv *Server) ImageInsert(job *engine.Job) engine.Status {
if len(job.Args) != 3 {
return job.Errorf("Usage: %s IMAGE URL PATH\n", job.Name)
}
var (
name = job.Args[0]
url = job.Args[1]
path = job.Args[2]
)
sf := utils.NewStreamFormatter(job.GetenvBool("json"))
out := utils.NewWriteFlusher(job.Stdout)
img, err := srv.runtime.repositories.LookupImage(name)
if err != nil {
return job.Error(err)
}
file, err := utils.Download(url)
if err != nil {
return job.Error(err)
}
defer file.Body.Close()
config, _, _, err := runconfig.Parse([]string{img.ID, "echo", "insert", url, path}, srv.runtime.sysInfo)
if err != nil {
return job.Error(err)
}
c, _, err := srv.runtime.Create(config, "")
if err != nil {
return job.Error(err)
}
if err := c.Inject(utils.ProgressReader(file.Body, int(file.ContentLength), out, sf, false, utils.TruncateID(img.ID), "Downloading"), path); err != nil {
return job.Error(err)
}
// FIXME: Handle custom repo, tag comment, author
img, err = srv.runtime.Commit(c, "", "", img.Comment, img.Author, nil)
if err != nil {
out.Write(sf.FormatError(err))
return engine.StatusErr
}
out.Write(sf.FormatStatus("", img.ID))
return engine.StatusOK
}
func (srv *Server) ImagesViz(job *engine.Job) engine.Status {
images, _ := srv.runtime.graph.Map()
if images == nil {
return engine.StatusOK
}
job.Stdout.Write([]byte("digraph docker {\n"))
var (
parentImage *Image
err error
)
for _, image := range images {
parentImage, err = image.GetParent()
if err != nil {
return job.Errorf("Error while getting parent image: %v", err)
}
if parentImage != nil {
job.Stdout.Write([]byte(" \"" + parentImage.ID + "\" -> \"" + image.ID + "\"\n"))
} else {
job.Stdout.Write([]byte(" base -> \"" + image.ID + "\" [style=invis]\n"))
}
}
reporefs := make(map[string][]string)
for name, repository := range srv.runtime.repositories.Repositories {
for tag, id := range repository {
reporefs[utils.TruncateID(id)] = append(reporefs[utils.TruncateID(id)], fmt.Sprintf("%s:%s", name, tag))
}
}
for id, repos := range reporefs {
job.Stdout.Write([]byte(" \"" + id + "\" [label=\"" + id + "\\n" + strings.Join(repos, "\\n") + "\",shape=box,fillcolor=\"paleturquoise\",style=\"filled,rounded\"];\n"))
}
job.Stdout.Write([]byte(" base [style=invisible]\n}\n"))
return engine.StatusOK
}
func (srv *Server) Images(job *engine.Job) engine.Status {
var (
allImages map[string]*Image
err error
)
if job.GetenvBool("all") {
allImages, err = srv.runtime.graph.Map()
} else {
allImages, err = srv.runtime.graph.Heads()
}
if err != nil {
return job.Error(err)
}
lookup := make(map[string]*engine.Env)
for name, repository := range srv.runtime.repositories.Repositories {
if job.Getenv("filter") != "" {
if match, _ := path.Match(job.Getenv("filter"), name); !match {
continue
}
}
for tag, id := range repository {
image, err := srv.runtime.graph.Get(id)
if err != nil {
log.Printf("Warning: couldn't load %s from %s/%s: %s", id, name, tag, err)
continue
}
if out, exists := lookup[id]; exists {
out.SetList("RepoTags", append(out.GetList("RepoTags"), fmt.Sprintf("%s:%s", name, tag)))
} else {
out := &engine.Env{}
delete(allImages, id)
out.Set("ParentId", image.Parent)
out.SetList("RepoTags", []string{fmt.Sprintf("%s:%s", name, tag)})
out.Set("Id", image.ID)
out.SetInt64("Created", image.Created.Unix())
out.SetInt64("Size", image.Size)
out.SetInt64("VirtualSize", image.getParentsSize(0)+image.Size)
lookup[id] = out
}
}
}
outs := engine.NewTable("Created", len(lookup))
for _, value := range lookup {
outs.Add(value)
}
// Display images which aren't part of a repository/tag
if job.Getenv("filter") == "" {
for _, image := range allImages {
out := &engine.Env{}
out.Set("ParentId", image.Parent)
out.SetList("RepoTags", []string{"<none>:<none>"})
out.Set("Id", image.ID)
out.SetInt64("Created", image.Created.Unix())
out.SetInt64("Size", image.Size)
out.SetInt64("VirtualSize", image.getParentsSize(0)+image.Size)
outs.Add(out)
}
}
outs.ReverseSort()
if _, err := outs.WriteListTo(job.Stdout); err != nil {
return job.Error(err)
}
return engine.StatusOK
}
func (srv *Server) DockerInfo(job *engine.Job) engine.Status {
images, _ := srv.runtime.graph.Map()
var imgcount int
if images == nil {
imgcount = 0
} else {
imgcount = len(images)
}
kernelVersion := "<unknown>"
if kv, err := utils.GetKernelVersion(); err == nil {
kernelVersion = kv.String()
}
// if we still have the original dockerinit binary from before we copied it locally, let's return the path to that, since that's more intuitive (the copied path is trivial to derive by hand given VERSION)
initPath := utils.DockerInitPath("")
if initPath == "" {
// if that fails, we'll just return the path from the runtime
initPath = srv.runtime.sysInitPath
}
v := &engine.Env{}
v.SetInt("Containers", len(srv.runtime.List()))
v.SetInt("Images", imgcount)
v.Set("Driver", srv.runtime.driver.String())
v.SetJson("DriverStatus", srv.runtime.driver.Status())
v.SetBool("MemoryLimit", srv.runtime.sysInfo.MemoryLimit)
v.SetBool("SwapLimit", srv.runtime.sysInfo.SwapLimit)
v.SetBool("IPv4Forwarding", !srv.runtime.sysInfo.IPv4ForwardingDisabled)
v.SetBool("Debug", os.Getenv("DEBUG") != "")
v.SetInt("NFd", utils.GetTotalUsedFds())
v.SetInt("NGoroutines", runtime.NumGoroutine())
v.Set("ExecutionDriver", srv.runtime.execDriver.Name())
v.SetInt("NEventsListener", len(srv.events))
v.Set("KernelVersion", kernelVersion)
v.Set("IndexServerAddress", auth.IndexServerAddress())
v.Set("InitSha1", dockerversion.INITSHA1)
v.Set("InitPath", initPath)
if _, err := v.WriteTo(job.Stdout); err != nil {
return job.Error(err)
}
return engine.StatusOK
}
func (srv *Server) ImageHistory(job *engine.Job) engine.Status {
if n := len(job.Args); n != 1 {
return job.Errorf("Usage: %s IMAGE", job.Name)
}
name := job.Args[0]
image, err := srv.runtime.repositories.LookupImage(name)
if err != nil {
return job.Error(err)
}
lookupMap := make(map[string][]string)
for name, repository := range srv.runtime.repositories.Repositories {
for tag, id := range repository {
// If the ID already has a reverse lookup, do not update it unless for "latest"
if _, exists := lookupMap[id]; !exists {
lookupMap[id] = []string{}
}
lookupMap[id] = append(lookupMap[id], name+":"+tag)
}
}
outs := engine.NewTable("Created", 0)
err = image.WalkHistory(func(img *Image) error {
out := &engine.Env{}
out.Set("Id", img.ID)
out.SetInt64("Created", img.Created.Unix())
out.Set("CreatedBy", strings.Join(img.ContainerConfig.Cmd, " "))
out.SetList("Tags", lookupMap[img.ID])
out.SetInt64("Size", img.Size)
outs.Add(out)
return nil
})
outs.ReverseSort()
if _, err := outs.WriteListTo(job.Stdout); err != nil {
return job.Error(err)
}
return engine.StatusOK
}
func (srv *Server) ContainerTop(job *engine.Job) engine.Status {
if len(job.Args) != 1 && len(job.Args) != 2 {
return job.Errorf("Not enough arguments. Usage: %s CONTAINER [PS_ARGS]\n", job.Name)
}
var (
name = job.Args[0]
psArgs = "-ef"
)
if len(job.Args) == 2 && job.Args[1] != "" {
psArgs = job.Args[1]
}
if container := srv.runtime.Get(name); container != nil {
if !container.State.IsRunning() {
return job.Errorf("Container %s is not running", name)
}
pids, err := srv.runtime.execDriver.GetPidsForContainer(container.ID)
if err != nil {
return job.Error(err)
}
output, err := exec.Command("ps", psArgs).Output()
if err != nil {
return job.Errorf("Error running ps: %s", err)
}
lines := strings.Split(string(output), "\n")
header := strings.Fields(lines[0])
out := &engine.Env{}
out.SetList("Titles", header)
pidIndex := -1
for i, name := range header {
if name == "PID" {
pidIndex = i
}
}
if pidIndex == -1 {
return job.Errorf("Couldn't find PID field in ps output")
}
processes := [][]string{}
for _, line := range lines[1:] {
if len(line) == 0 {
continue
}
fields := strings.Fields(line)
p, err := strconv.Atoi(fields[pidIndex])
if err != nil {
return job.Errorf("Unexpected pid '%s': %s", fields[pidIndex], err)
}
for _, pid := range pids {
if pid == p {
// Make sure number of fields equals number of header titles
// merging "overhanging" fields
process := fields[:len(header)-1]
process = append(process, strings.Join(fields[len(header)-1:], " "))
processes = append(processes, process)
}
}
}
out.SetJson("Processes", processes)
out.WriteTo(job.Stdout)
return engine.StatusOK
}
return job.Errorf("No such container: %s", name)
}
func (srv *Server) ContainerChanges(job *engine.Job) engine.Status {
if n := len(job.Args); n != 1 {
return job.Errorf("Usage: %s CONTAINER", job.Name)
}
name := job.Args[0]
if container := srv.runtime.Get(name); container != nil {
outs := engine.NewTable("", 0)
changes, err := container.Changes()
if err != nil {
return job.Error(err)
}
for _, change := range changes {
out := &engine.Env{}
if err := out.Import(change); err != nil {
return job.Error(err)
}
outs.Add(out)
}
if _, err := outs.WriteListTo(job.Stdout); err != nil {
return job.Error(err)
}
} else {
return job.Errorf("No such container: %s", name)
}
return engine.StatusOK
}
func (srv *Server) Containers(job *engine.Job) engine.Status {
var (
foundBefore bool
displayed int
all = job.GetenvBool("all")
since = job.Getenv("since")
before = job.Getenv("before")
n = job.GetenvInt("limit")
size = job.GetenvBool("size")
)
outs := engine.NewTable("Created", 0)
names := map[string][]string{}
srv.runtime.containerGraph.Walk("/", func(p string, e *graphdb.Entity) error {
names[e.ID()] = append(names[e.ID()], p)
return nil
}, -1)
for _, container := range srv.runtime.List() {
if !container.State.IsRunning() && !all && n <= 0 && since == "" && before == "" {
continue