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|
package main
import (
"encoding/json"
"fmt"
"io"
"net"
"os"
"strconv"
"strings"
"syscall"
"github.com/docker/docker/api/types/container"
"github.com/docker/docker/pkg/signal"
"github.com/docker/go-connections/nat"
"github.com/docker/go-units"
"github.com/opencontainers/selinux/go-selinux/label"
"github.com/pkg/errors"
"github.com/projectatomic/libpod/libpod"
"github.com/projectatomic/libpod/pkg/inspect"
"github.com/projectatomic/libpod/pkg/util"
"github.com/sirupsen/logrus"
"github.com/urfave/cli"
)
type mountType string
// Type constants
const (
// TypeBind is the type for mounting host dir
TypeBind mountType = "bind"
// TypeVolume is the type for remote storage volumes
// TypeVolume mountType = "volume" // re-enable upon use
// TypeTmpfs is the type for mounting tmpfs
TypeTmpfs mountType = "tmpfs"
)
var (
defaultEnvVariables = map[string]string{
"PATH": "/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin",
"TERM": "xterm",
}
)
type createResourceConfig struct {
BlkioWeight uint16 // blkio-weight
BlkioWeightDevice []string // blkio-weight-device
CPUPeriod uint64 // cpu-period
CPUQuota int64 // cpu-quota
CPURtPeriod uint64 // cpu-rt-period
CPURtRuntime int64 // cpu-rt-runtime
CPUShares uint64 // cpu-shares
CPUs float64 // cpus
CPUsetCPUs string
CPUsetMems string // cpuset-mems
DeviceReadBps []string // device-read-bps
DeviceReadIOps []string // device-read-iops
DeviceWriteBps []string // device-write-bps
DeviceWriteIOps []string // device-write-iops
DisableOomKiller bool // oom-kill-disable
KernelMemory int64 // kernel-memory
Memory int64 //memory
MemoryReservation int64 // memory-reservation
MemorySwap int64 //memory-swap
MemorySwappiness int // memory-swappiness
OomScoreAdj int //oom-score-adj
PidsLimit int64 // pids-limit
ShmSize int64
Ulimit []string //ulimit
}
type createConfig struct {
Runtime *libpod.Runtime
Args []string
CapAdd []string // cap-add
CapDrop []string // cap-drop
CidFile string
CgroupParent string // cgroup-parent
Command []string
Detach bool // detach
Devices []string // device
DNSOpt []string //dns-opt
DNSSearch []string //dns-search
DNSServers []string //dns
Entrypoint []string //entrypoint
Env map[string]string //env
ExposedPorts map[nat.Port]struct{}
GroupAdd []uint32 // group-add
HostAdd []string //add-host
Hostname string //hostname
Image string
ImageID string
BuiltinImgVolumes map[string]struct{} // volumes defined in the image config
ImageVolumeType string // how to handle the image volume, either bind, tmpfs, or ignore
Interactive bool //interactive
IpcMode container.IpcMode //ipc
IP6Address string //ipv6
IPAddress string //ip
Labels map[string]string //label
LinkLocalIP []string // link-local-ip
LogDriver string // log-driver
LogDriverOpt []string // log-opt
MacAddress string //mac-address
Name string //name
NetMode container.NetworkMode //net
Network string //network
NetworkAlias []string //network-alias
PidMode container.PidMode //pid
NsUser string
Pod string //pod
PortBindings nat.PortMap
Privileged bool //privileged
Publish []string //publish
PublishAll bool //publish-all
Quiet bool //quiet
ReadOnlyRootfs bool //read-only
Resources createResourceConfig
Rm bool //rm
ShmDir string
SigProxy bool //sig-proxy
StopSignal syscall.Signal // stop-signal
StopTimeout uint // stop-timeout
Sysctl map[string]string //sysctl
Tmpfs []string // tmpfs
Tty bool //tty
User string //user
UtsMode container.UTSMode //uts
Volumes []string //volume
WorkDir string //workdir
MountLabel string //SecurityOpts
ProcessLabel string //SecurityOpts
NoNewPrivs bool //SecurityOpts
ApparmorProfile string //SecurityOpts
SeccompProfilePath string //SecurityOpts
SecurityOpts []string
}
var createDescription = "Creates a new container from the given image or" +
" storage and prepares it for running the specified command. The" +
" container ID is then printed to stdout. You can then start it at" +
" any time with the podman start <container_id> command. The container" +
" will be created with the initial state 'created'."
var createCommand = cli.Command{
Name: "create",
Usage: "create but do not start a container",
Description: createDescription,
Flags: createFlags,
Action: createCmd,
ArgsUsage: "IMAGE [COMMAND [ARG...]]",
SkipArgReorder: true,
UseShortOptionHandling: true,
}
func createCmd(c *cli.Context) error {
// TODO should allow user to create based off a directory on the host not just image
// Need CLI support for this
if err := validateFlags(c, createFlags); err != nil {
return err
}
if c.String("cidfile") != "" {
if err := libpod.WriteFile("", c.String("cidfile")); err != nil {
return errors.Wrapf(err, "unable to write cidfile %s", c.String("cidfile"))
}
}
if len(c.Args()) < 1 {
return errors.Errorf("image name or ID is required")
}
runtime, err := getRuntime(c)
if err != nil {
return errors.Wrapf(err, "error creating libpod runtime")
}
defer runtime.Shutdown(false)
imageName, _, data, err := imageData(c, runtime, c.Args()[0])
if err != nil {
return err
}
createConfig, err := parseCreateOpts(c, runtime, imageName, data)
if err != nil {
return err
}
useImageVolumes := createConfig.ImageVolumeType == "bind"
runtimeSpec, err := createConfigToOCISpec(createConfig)
if err != nil {
return err
}
options, err := createConfig.GetContainerCreateOptions()
if err != nil {
return errors.Wrapf(err, "unable to parse new container options")
}
// Gather up the options for NewContainer which consist of With... funcs
options = append(options, libpod.WithRootFSFromImage(createConfig.ImageID, createConfig.Image, useImageVolumes))
options = append(options, libpod.WithSELinuxLabels(createConfig.ProcessLabel, createConfig.MountLabel))
options = append(options, libpod.WithLabels(createConfig.Labels))
options = append(options, libpod.WithUser(createConfig.User))
options = append(options, libpod.WithShmDir(createConfig.ShmDir))
options = append(options, libpod.WithShmSize(createConfig.Resources.ShmSize))
ctr, err := runtime.NewContainer(runtimeSpec, options...)
if err != nil {
return err
}
createConfigJSON, err := json.Marshal(createConfig)
if err != nil {
return err
}
if err := ctr.AddArtifact("create-config", createConfigJSON); err != nil {
return err
}
logrus.Debug("new container created ", ctr.ID())
if c.String("cidfile") != "" {
err := libpod.WriteFile(ctr.ID(), c.String("cidfile"))
if err != nil {
logrus.Error(err)
}
}
fmt.Printf("%s\n", ctr.ID())
return nil
}
func parseSecurityOpt(config *createConfig, securityOpts []string) error {
var (
labelOpts []string
err error
)
if config.PidMode.IsHost() {
labelOpts = append(labelOpts, label.DisableSecOpt()...)
} else if config.PidMode.IsContainer() {
ctr, err := config.Runtime.LookupContainer(config.PidMode.Container())
if err != nil {
return errors.Wrapf(err, "container %q not found", config.PidMode.Container())
}
labelOpts = append(labelOpts, label.DupSecOpt(ctr.ProcessLabel())...)
}
if config.IpcMode.IsHost() {
labelOpts = append(labelOpts, label.DisableSecOpt()...)
} else if config.IpcMode.IsContainer() {
ctr, err := config.Runtime.LookupContainer(config.IpcMode.Container())
if err != nil {
return errors.Wrapf(err, "container %q not found", config.IpcMode.Container())
}
labelOpts = append(labelOpts, label.DupSecOpt(ctr.ProcessLabel())...)
}
for _, opt := range securityOpts {
if opt == "no-new-privileges" {
config.NoNewPrivs = true
} else {
con := strings.SplitN(opt, "=", 2)
if len(con) != 2 {
return fmt.Errorf("Invalid --security-opt 1: %q", opt)
}
switch con[0] {
case "label":
labelOpts = append(labelOpts, con[1])
case "apparmor":
config.ApparmorProfile = con[1]
case "seccomp":
config.SeccompProfilePath = con[1]
default:
return fmt.Errorf("Invalid --security-opt 2: %q", opt)
}
}
}
if config.SeccompProfilePath == "" {
if _, err := os.Stat(libpod.SeccompOverridePath); err == nil {
config.SeccompProfilePath = libpod.SeccompOverridePath
} else {
if !os.IsNotExist(err) {
return errors.Wrapf(err, "can't check if %q exists", libpod.SeccompOverridePath)
}
if _, err := os.Stat(libpod.SeccompDefaultPath); err != nil {
if !os.IsNotExist(err) {
return errors.Wrapf(err, "can't check if %q exists", libpod.SeccompDefaultPath)
}
} else {
config.SeccompProfilePath = libpod.SeccompDefaultPath
}
}
}
config.ProcessLabel, config.MountLabel, err = label.InitLabels(labelOpts)
return err
}
// isPortInPortBindings determines if an exposed host port is in user
// provided ports
func isPortInPortBindings(pb map[nat.Port][]nat.PortBinding, port nat.Port) bool {
var hostPorts []string
for _, i := range pb {
hostPorts = append(hostPorts, i[0].HostPort)
}
return util.StringInSlice(port.Port(), hostPorts)
}
// isPortInImagePorts determines if an exposed host port was given to us by metadata
// in the image itself
func isPortInImagePorts(exposedPorts map[string]struct{}, port string) bool {
for i := range exposedPorts {
fields := strings.Split(i, "/")
if port == fields[0] {
return true
}
}
return false
}
func exposedPorts(c *cli.Context, imageExposedPorts map[string]struct{}) (map[nat.Port][]nat.PortBinding, error) {
containerPorts := make(map[string]string)
// add expose ports from the image itself
for expose := range imageExposedPorts {
_, port := nat.SplitProtoPort(expose)
containerPorts[port] = ""
}
// add the expose ports from the user (--expose)
// can be single or a range
for _, expose := range c.StringSlice("expose") {
//support two formats for expose, original format <portnum>/[<proto>] or <startport-endport>/[<proto>]
_, port := nat.SplitProtoPort(expose)
//parse the start and end port and create a sequence of ports to expose
//if expose a port, the start and end port are the same
start, end, err := nat.ParsePortRange(port)
if err != nil {
return nil, fmt.Errorf("invalid range format for --expose: %s, error: %s", expose, err)
}
for i := start; i <= end; i++ {
containerPorts[strconv.Itoa(int(i))] = ""
}
}
// parse user input'd port bindings
pbPorts, portBindings, err := nat.ParsePortSpecs(c.StringSlice("publish"))
if err != nil {
return nil, err
}
// delete exposed container ports if being used by -p
for i := range pbPorts {
delete(containerPorts, i.Port())
}
// iterate container ports and make port bindings from them
if c.Bool("publish-all") {
for e := range containerPorts {
//support two formats for expose, original format <portnum>/[<proto>] or <startport-endport>/[<proto>]
//proto, port := nat.SplitProtoPort(e)
p, err := nat.NewPort("tcp", e)
if err != nil {
return nil, err
}
l, err := net.Listen("tcp", ":0")
if err != nil {
return nil, errors.Wrapf(err, "unable to get free port")
}
defer l.Close()
_, randomPort, err := net.SplitHostPort(l.Addr().String())
if err != nil {
return nil, errors.Wrapf(err, "unable to determine free port")
}
rp, err := strconv.Atoi(randomPort)
if err != nil {
return nil, errors.Wrapf(err, "unable to convert random port to int")
}
logrus.Debug(fmt.Sprintf("Using random host port %s with container port %d", randomPort, p.Int()))
portBindings[p] = CreatePortBinding(rp, "")
}
}
return portBindings, nil
}
// imageData pulls down the image if not stored locally and extracts the
// default container runtime data out of it. imageData returns the data
// to the caller. Example Data: Entrypoint, Env, WorkingDir, Labels ...
func imageData(c *cli.Context, runtime *libpod.Runtime, image string) (string, string, *inspect.ImageData, error) {
var (
err error
imageName, imageID string
)
// Deal with the image after all the args have been checked
createImage := runtime.NewImage(image)
imageName, imageID, _ = createImage.GetLocalImageName()
if createImage.LocalName == "" {
// The image wasnt found by the user input'd name or its fqname
// Pull the image
var writer io.Writer
if !c.Bool("quiet") {
writer = os.Stderr
}
createImage.Pull(writer)
}
createImage.LocalName = imageName
if imageName == "" {
imageName, err = createImage.GetFQName()
_, imageID, _ = createImage.GetLocalImageName()
}
if err != nil {
return "", "", nil, err
}
storageImage, err := runtime.GetImage(imageName)
if err != nil {
return "", "", nil, errors.Wrapf(err, "error getting storage image %q", image)
}
data, err := runtime.GetImageInspectInfo(*storageImage)
if err != nil {
return "", "", nil, errors.Wrapf(err, "error parsing image data %q", image)
}
return imageName, imageID, data, err
}
// Parses CLI options related to container creation into a config which can be
// parsed into an OCI runtime spec
func parseCreateOpts(c *cli.Context, runtime *libpod.Runtime, imageName string, data *inspect.ImageData) (*createConfig, error) {
var inputCommand, command []string
var memoryLimit, memoryReservation, memorySwap, memoryKernel int64
var blkioWeight uint16
imageID := data.ID
if len(c.Args()) > 1 {
inputCommand = c.Args()[1:]
}
sysctl, err := validateSysctl(c.StringSlice("sysctl"))
if err != nil {
return nil, errors.Wrapf(err, "invalid value for sysctl")
}
groupAdd, err := stringSlicetoUint32Slice(c.StringSlice("group-add"))
if err != nil {
return nil, errors.Wrapf(err, "invalid value for groups provided")
}
if c.String("memory") != "" {
memoryLimit, err = units.RAMInBytes(c.String("memory"))
if err != nil {
return nil, errors.Wrapf(err, "invalid value for memory")
}
}
if c.String("memory-reservation") != "" {
memoryReservation, err = units.RAMInBytes(c.String("memory-reservation"))
if err != nil {
return nil, errors.Wrapf(err, "invalid value for memory-reservation")
}
}
if c.String("memory-swap") != "" {
memorySwap, err = units.RAMInBytes(c.String("memory-swap"))
if err != nil {
return nil, errors.Wrapf(err, "invalid value for memory-swap")
}
}
if c.String("kernel-memory") != "" {
memoryKernel, err = units.RAMInBytes(c.String("kernel-memory"))
if err != nil {
return nil, errors.Wrapf(err, "invalid value for kernel-memory")
}
}
if c.String("blkio-weight") != "" {
u, err := strconv.ParseUint(c.String("blkio-weight"), 10, 16)
if err != nil {
return nil, errors.Wrapf(err, "invalid value for blkio-weight")
}
blkioWeight = uint16(u)
}
if err = parseVolumes(c.StringSlice("volume")); err != nil {
return nil, err
}
// Because we cannot do a non-terminal attach, we need to set tty to true
// if detach is not false
// TODO Allow non-terminal attach
tty := c.Bool("tty")
if !c.Bool("detach") && !tty {
tty = true
}
pidMode := container.PidMode(c.String("pid"))
if !pidMode.Valid() {
return nil, errors.Errorf("--pid %q is not valid", c.String("pid"))
}
if c.Bool("detach") && c.Bool("rm") {
return nil, errors.Errorf("--rm and --detach can not be specified together")
}
if c.Int64("cpu-period") != 0 && c.Float64("cpus") > 0 {
return nil, errors.Errorf("--cpu-period and --cpus cannot be set together")
}
if c.Int64("cpu-quota") != 0 && c.Float64("cpus") > 0 {
return nil, errors.Errorf("--cpu-quota and --cpus cannot be set together")
}
utsMode := container.UTSMode(c.String("uts"))
if !utsMode.Valid() {
return nil, errors.Errorf("--uts %q is not valid", c.String("uts"))
}
ipcMode := container.IpcMode(c.String("ipc"))
if !ipcMode.Valid() {
return nil, errors.Errorf("--ipc %q is not valid", ipcMode)
}
shmDir := ""
if ipcMode.IsHost() {
shmDir = "/dev/shm"
} else if ipcMode.IsContainer() {
ctr, err := runtime.LookupContainer(ipcMode.Container())
if err != nil {
return nil, errors.Wrapf(err, "container %q not found", ipcMode.Container())
}
shmDir = ctr.ShmDir()
}
// USER
user := c.String("user")
if user == "" {
user = data.ContainerConfig.User
}
// STOP SIGNAL
stopSignal := syscall.SIGTERM
signalString := data.ContainerConfig.StopSignal
if c.IsSet("stop-signal") {
signalString = c.String("stop-signal")
}
if signalString != "" {
stopSignal, err = signal.ParseSignal(signalString)
if err != nil {
return nil, err
}
}
// ENVIRONMENT VARIABLES
env := defaultEnvVariables
for _, e := range data.ContainerConfig.Env {
split := strings.SplitN(e, "=", 2)
if len(split) > 1 {
env[split[0]] = split[1]
} else {
env[split[0]] = ""
}
}
if err := readKVStrings(env, c.StringSlice("env-file"), c.StringSlice("env")); err != nil {
return nil, errors.Wrapf(err, "unable to process environment variables")
}
// LABEL VARIABLES
labels, err := getAllLabels(c.StringSlice("label-file"), c.StringSlice("label"))
if err != nil {
return nil, errors.Wrapf(err, "unable to process labels")
}
for key, val := range data.ContainerConfig.Labels {
if _, ok := labels[key]; !ok {
labels[key] = val
}
}
// WORKING DIRECTORY
workDir := "/"
if c.IsSet("workdir") {
workDir = c.String("workdir")
} else if data.ContainerConfig.WorkingDir != "" {
workDir = data.ContainerConfig.WorkingDir
}
// ENTRYPOINT
// User input entrypoint takes priority over image entrypoint
entrypoint := c.StringSlice("entrypoint")
if len(entrypoint) == 0 {
entrypoint = data.ContainerConfig.Entrypoint
}
// Build the command
// If we have an entry point, it goes first
if len(entrypoint) > 0 {
command = entrypoint
}
if len(inputCommand) > 0 {
// User command overrides data CMD
command = append(command, inputCommand...)
} else if len(data.ContainerConfig.Cmd) > 0 && !c.IsSet("entrypoint") {
// If not user command, add CMD
command = append(command, data.ContainerConfig.Cmd...)
}
if len(command) == 0 {
return nil, errors.Errorf("No command specified on command line or as CMD or ENTRYPOINT in this image")
}
// EXPOSED PORTS
portBindings, err := exposedPorts(c, data.ContainerConfig.ExposedPorts)
if err != nil {
return nil, err
}
// SHM SIze
shmSize, err := units.FromHumanSize(c.String("shm-size"))
if err != nil {
return nil, errors.Wrapf(err, "unable to translate --shm-size")
}
// Network
// Both --network and --net have default values of 'bridge'
// --net only overrides --network when --network is not explicitly
// set and --net is.
if c.IsSet("network") && c.IsSet("net") {
return nil, errors.Errorf("cannot use --network and --net together. use only --network instead")
}
networkMode := c.String("network")
if !c.IsSet("network") && c.IsSet("net") {
networkMode = c.String("net")
}
// Verify the additional hosts are in correct format
for _, host := range c.StringSlice("add-host") {
if _, err := validateExtraHost(host); err != nil {
return nil, err
}
}
// Check for . and dns-search domains
if util.StringInSlice(".", c.StringSlice("dns-search")) && len(c.StringSlice("dns-search")) > 1 {
return nil, errors.Errorf("cannot pass additional search domains when also specifying '.'")
}
ImageVolumes := data.ContainerConfig.Volumes
var imageVolType = map[string]string{
"bind": "",
"tmpfs": "",
"ignore": "",
}
if _, ok := imageVolType[c.String("image-volume")]; !ok {
return nil, errors.Errorf("invalid image-volume type %q. Pick one of bind, tmpfs, or ignore", c.String("image-volume"))
}
config := &createConfig{
Runtime: runtime,
BuiltinImgVolumes: ImageVolumes,
ImageVolumeType: c.String("image-volume"),
CapAdd: c.StringSlice("cap-add"),
CapDrop: c.StringSlice("cap-drop"),
CgroupParent: c.String("cgroup-parent"),
Command: command,
Detach: c.Bool("detach"),
Devices: c.StringSlice("device"),
DNSOpt: c.StringSlice("dns-opt"),
DNSSearch: c.StringSlice("dns-search"),
DNSServers: c.StringSlice("dns"),
Entrypoint: entrypoint,
Env: env,
//ExposedPorts: ports,
GroupAdd: groupAdd,
Hostname: c.String("hostname"),
HostAdd: c.StringSlice("add-host"),
Image: imageName,
ImageID: imageID,
Interactive: c.Bool("interactive"),
IP6Address: c.String("ipv6"),
IPAddress: c.String("ip"),
Labels: labels,
LinkLocalIP: c.StringSlice("link-local-ip"),
LogDriver: c.String("log-driver"),
LogDriverOpt: c.StringSlice("log-opt"),
MacAddress: c.String("mac-address"),
Name: c.String("name"),
Network: networkMode,
NetworkAlias: c.StringSlice("network-alias"),
IpcMode: ipcMode,
NetMode: container.NetworkMode(networkMode),
UtsMode: utsMode,
PidMode: pidMode,
Pod: c.String("pod"),
Privileged: c.Bool("privileged"),
Publish: c.StringSlice("publish"),
PublishAll: c.Bool("publish-all"),
PortBindings: portBindings,
Quiet: c.Bool("quiet"),
ReadOnlyRootfs: c.Bool("read-only"),
Resources: createResourceConfig{
BlkioWeight: blkioWeight,
BlkioWeightDevice: c.StringSlice("blkio-weight-device"),
CPUShares: c.Uint64("cpu-shares"),
CPUPeriod: c.Uint64("cpu-period"),
CPUsetCPUs: c.String("cpuset-cpus"),
CPUsetMems: c.String("cpuset-mems"),
CPUQuota: c.Int64("cpu-quota"),
CPURtPeriod: c.Uint64("cpu-rt-period"),
CPURtRuntime: c.Int64("cpu-rt-runtime"),
CPUs: c.Float64("cpus"),
DeviceReadBps: c.StringSlice("device-read-bps"),
DeviceReadIOps: c.StringSlice("device-read-iops"),
DeviceWriteBps: c.StringSlice("device-write-bps"),
DeviceWriteIOps: c.StringSlice("device-write-iops"),
DisableOomKiller: c.Bool("oom-kill-disable"),
ShmSize: shmSize,
Memory: memoryLimit,
MemoryReservation: memoryReservation,
MemorySwap: memorySwap,
MemorySwappiness: c.Int("memory-swappiness"),
KernelMemory: memoryKernel,
OomScoreAdj: c.Int("oom-score-adj"),
PidsLimit: c.Int64("pids-limit"),
Ulimit: c.StringSlice("ulimit"),
},
Rm: c.Bool("rm"),
ShmDir: shmDir,
SigProxy: c.Bool("sig-proxy"),
StopSignal: stopSignal,
StopTimeout: c.Uint("stop-timeout"),
Sysctl: sysctl,
Tmpfs: c.StringSlice("tmpfs"),
Tty: tty,
User: user,
Volumes: c.StringSlice("volume"),
WorkDir: workDir,
}
if !config.Privileged {
if err := parseSecurityOpt(config, c.StringSlice("security-opt")); err != nil {
return nil, err
}
}
config.SecurityOpts = c.StringSlice("security-opt")
warnings, err := verifyContainerResources(config, false)
if err != nil {
return nil, err
}
for _, warning := range warnings {
fmt.Fprintln(os.Stderr, warning)
}
return config, nil
}
//CreatePortBinding takes port (int) and IP (string) and creates an array of portbinding structs
func CreatePortBinding(hostPort int, hostIP string) []nat.PortBinding {
pb := nat.PortBinding{
HostPort: strconv.Itoa(hostPort),
}
pb.HostIP = hostIP
return []nat.PortBinding{pb}
}
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