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run.go
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run.go
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package buildah
import (
"bufio"
"bytes"
"encoding/json"
"fmt"
"io"
"io/ioutil"
"net"
"os"
"os/exec"
"path/filepath"
"runtime"
"strconv"
"strings"
"sync"
"syscall"
"time"
"github.com/containernetworking/cni/libcni"
"github.com/containers/buildah/bind"
"github.com/containers/buildah/chroot"
"github.com/containers/buildah/util"
"github.com/containers/libpod/pkg/secrets"
"github.com/containers/storage/pkg/idtools"
"github.com/containers/storage/pkg/ioutils"
"github.com/containers/storage/pkg/reexec"
units "github.com/docker/go-units"
digest "github.com/opencontainers/go-digest"
"github.com/opencontainers/runtime-spec/specs-go"
"github.com/opencontainers/runtime-tools/generate"
"github.com/opencontainers/selinux/go-selinux/label"
"github.com/pkg/errors"
"github.com/sirupsen/logrus"
"golang.org/x/crypto/ssh/terminal"
"golang.org/x/sys/unix"
)
const (
// runUsingRuntimeCommand is a command we use as a key for reexec
runUsingRuntimeCommand = Package + "-oci-runtime"
)
// TerminalPolicy takes the value DefaultTerminal, WithoutTerminal, or WithTerminal.
type TerminalPolicy int
const (
// DefaultTerminal indicates that this Run invocation should be
// connected to a pseudoterminal if we're connected to a terminal.
DefaultTerminal TerminalPolicy = iota
// WithoutTerminal indicates that this Run invocation should NOT be
// connected to a pseudoterminal.
WithoutTerminal
// WithTerminal indicates that this Run invocation should be connected
// to a pseudoterminal.
WithTerminal
)
// String converts a TerminalPoliicy into a string.
func (t TerminalPolicy) String() string {
switch t {
case DefaultTerminal:
return "DefaultTerminal"
case WithoutTerminal:
return "WithoutTerminal"
case WithTerminal:
return "WithTerminal"
}
return fmt.Sprintf("unrecognized terminal setting %d", t)
}
// NamespaceOption controls how we set up a namespace when launching processes.
type NamespaceOption struct {
// Name specifies the type of namespace, typically matching one of the
// ...Namespace constants defined in
// github.com/opencontainers/runtime-spec/specs-go.
Name string
// Host is used to force our processes to use the host's namespace of
// this type.
Host bool
// Path is the path of the namespace to attach our process to, if Host
// is not set. If Host is not set and Path is also empty, a new
// namespace will be created for the process that we're starting.
// If Name is specs.NetworkNamespace, if Path doesn't look like an
// absolute path, it is treated as a comma-separated list of CNI
// configuration names which will be selected from among all of the CNI
// network configurations which we find.
Path string
}
// NamespaceOptions provides some helper methods for a slice of NamespaceOption
// structs.
type NamespaceOptions []NamespaceOption
// IDMappingOptions controls how we set up UID/GID mapping when we set up a
// user namespace.
type IDMappingOptions struct {
HostUIDMapping bool
HostGIDMapping bool
UIDMap []specs.LinuxIDMapping
GIDMap []specs.LinuxIDMapping
}
// Isolation provides a way to specify whether we're supposed to use a proper
// OCI runtime, or some other method for running commands.
type Isolation int
const (
// IsolationDefault is whatever we think will work best.
IsolationDefault Isolation = iota
// IsolationOCI is a proper OCI runtime.
IsolationOCI
// IsolationChroot is a more chroot-like environment: less isolation,
// but with fewer requirements.
IsolationChroot
// IsolationOCIRootless is a proper OCI runtime in rootless mode.
IsolationOCIRootless
)
// String converts a Isolation into a string.
func (i Isolation) String() string {
switch i {
case IsolationDefault:
return "IsolationDefault"
case IsolationOCI:
return "IsolationOCI"
case IsolationChroot:
return "IsolationChroot"
case IsolationOCIRootless:
return "IsolationOCIRootless"
}
return fmt.Sprintf("unrecognized isolation type %d", i)
}
// RunOptions can be used to alter how a command is run in the container.
type RunOptions struct {
// Hostname is the hostname we set for the running container.
Hostname string
// Isolation is either IsolationDefault, IsolationOCI, IsolationChroot, or IsolationOCIRootless.
Isolation Isolation
// Runtime is the name of the runtime to run. It should accept the
// same arguments that runc does, and produce similar output.
Runtime string
// Args adds global arguments for the runtime.
Args []string
// NoPivot adds the --no-pivot runtime flag.
NoPivot bool
// Mounts are additional mount points which we want to provide.
Mounts []specs.Mount
// Env is additional environment variables to set.
Env []string
// User is the user as whom to run the command.
User string
// WorkingDir is an override for the working directory.
WorkingDir string
// Shell is default shell to run in a container.
Shell string
// Cmd is an override for the configured default command.
Cmd []string
// Entrypoint is an override for the configured entry point.
Entrypoint []string
// NamespaceOptions controls how we set up the namespaces for the process.
NamespaceOptions NamespaceOptions
// ConfigureNetwork controls whether or not network interfaces and
// routing are configured for a new network namespace (i.e., when not
// joining another's namespace and not just using the host's
// namespace), effectively deciding whether or not the process has a
// usable network.
ConfigureNetwork NetworkConfigurationPolicy
// CNIPluginPath is the location of CNI plugin helpers, if they should be
// run from a location other than the default location.
CNIPluginPath string
// CNIConfigDir is the location of CNI configuration files, if the files in
// the default configuration directory shouldn't be used.
CNIConfigDir string
// Terminal provides a way to specify whether or not the command should
// be run with a pseudoterminal. By default (DefaultTerminal), a
// terminal is used if os.Stdout is connected to a terminal, but that
// decision can be overridden by specifying either WithTerminal or
// WithoutTerminal.
Terminal TerminalPolicy
// TerminalSize provides a way to set the number of rows and columns in
// a pseudo-terminal, if we create one, and Stdin/Stdout/Stderr aren't
// connected to a terminal.
TerminalSize *specs.Box
// The stdin/stdout/stderr descriptors to use. If set to nil, the
// corresponding files in the "os" package are used as defaults.
Stdin io.Reader `json:"-"`
Stdout io.Writer `json:"-"`
Stderr io.Writer `json:"-"`
// Quiet tells the run to turn off output to stdout.
Quiet bool
// AddCapabilities is a list of capabilities to add to the default set.
AddCapabilities []string
// DropCapabilities is a list of capabilities to remove from the default set,
// after processing the AddCapabilities set. If a capability appears in both
// lists, it will be dropped.
DropCapabilities []string
}
// DefaultNamespaceOptions returns the default namespace settings from the
// runtime-tools generator library.
func DefaultNamespaceOptions() (NamespaceOptions, error) {
options := NamespaceOptions{
{Name: string(specs.CgroupNamespace), Host: true},
{Name: string(specs.IPCNamespace), Host: true},
{Name: string(specs.MountNamespace), Host: true},
{Name: string(specs.NetworkNamespace), Host: true},
{Name: string(specs.PIDNamespace), Host: true},
{Name: string(specs.UserNamespace), Host: true},
{Name: string(specs.UTSNamespace), Host: true},
}
g, err := generate.New("linux")
if err != nil {
return options, errors.Wrapf(err, "error generating new 'linux' runtime spec")
}
spec := g.Config
if spec.Linux != nil {
for _, ns := range spec.Linux.Namespaces {
options.AddOrReplace(NamespaceOption{
Name: string(ns.Type),
Path: ns.Path,
})
}
}
return options, nil
}
// Find the configuration for the namespace of the given type. If there are
// duplicates, find the _last_ one of the type, since we assume it was appended
// more recently.
func (n *NamespaceOptions) Find(namespace string) *NamespaceOption {
for i := range *n {
j := len(*n) - 1 - i
if (*n)[j].Name == namespace {
return &((*n)[j])
}
}
return nil
}
// AddOrReplace either adds or replaces the configuration for a given namespace.
func (n *NamespaceOptions) AddOrReplace(options ...NamespaceOption) {
nextOption:
for _, option := range options {
for i := range *n {
j := len(*n) - 1 - i
if (*n)[j].Name == option.Name {
(*n)[j] = option
continue nextOption
}
}
*n = append(*n, option)
}
}
func addRlimits(ulimit []string, g *generate.Generator) error {
var (
ul *units.Ulimit
err error
)
for _, u := range ulimit {
if ul, err = units.ParseUlimit(u); err != nil {
return errors.Wrapf(err, "ulimit option %q requires name=SOFT:HARD, failed to be parsed", u)
}
g.AddProcessRlimits("RLIMIT_"+strings.ToUpper(ul.Name), uint64(ul.Hard), uint64(ul.Soft))
}
return nil
}
func addHosts(hosts []string, w io.Writer) error {
buf := bufio.NewWriter(w)
for _, host := range hosts {
values := strings.SplitN(host, ":", 2)
if len(values) != 2 {
return errors.Errorf("unable to parse host entry %q: incorrect format", host)
}
if values[0] == "" {
return errors.Errorf("hostname in host entry %q is empty", host)
}
if values[1] == "" {
return errors.Errorf("IP address in host entry %q is empty", host)
}
fmt.Fprintf(buf, "%s\t%s\n", values[1], values[0])
}
return buf.Flush()
}
func addHostsToFile(hosts []string, filename string) error {
if len(hosts) == 0 {
return nil
}
file, err := os.OpenFile(filename, os.O_APPEND|os.O_WRONLY, os.ModeAppend)
if err != nil {
return errors.Wrapf(err, "error creating hosts file %q", filename)
}
defer file.Close()
return addHosts(hosts, file)
}
func addCommonOptsToSpec(commonOpts *CommonBuildOptions, g *generate.Generator) error {
// Resources - CPU
if commonOpts.CPUPeriod != 0 {
g.SetLinuxResourcesCPUPeriod(commonOpts.CPUPeriod)
}
if commonOpts.CPUQuota != 0 {
g.SetLinuxResourcesCPUQuota(commonOpts.CPUQuota)
}
if commonOpts.CPUShares != 0 {
g.SetLinuxResourcesCPUShares(commonOpts.CPUShares)
}
if commonOpts.CPUSetCPUs != "" {
g.SetLinuxResourcesCPUCpus(commonOpts.CPUSetCPUs)
}
if commonOpts.CPUSetMems != "" {
g.SetLinuxResourcesCPUMems(commonOpts.CPUSetMems)
}
// Resources - Memory
if commonOpts.Memory != 0 {
g.SetLinuxResourcesMemoryLimit(commonOpts.Memory)
}
if commonOpts.MemorySwap != 0 {
g.SetLinuxResourcesMemorySwap(commonOpts.MemorySwap)
}
// cgroup membership
if commonOpts.CgroupParent != "" {
g.SetLinuxCgroupsPath(commonOpts.CgroupParent)
}
// Other process resource limits
if err := addRlimits(commonOpts.Ulimit, g); err != nil {
return err
}
logrus.Debugf("Resources: %#v", commonOpts)
return nil
}
func (b *Builder) setupMounts(mountPoint string, spec *specs.Spec, bundlePath string, optionMounts []specs.Mount, bindFiles map[string]string, builtinVolumes, volumeMounts []string, shmSize string, namespaceOptions NamespaceOptions) error {
// Start building a new list of mounts.
var mounts []specs.Mount
haveMount := func(destination string) bool {
for _, mount := range mounts {
if mount.Destination == destination {
// Already have something to mount there.
return true
}
}
return false
}
ipc := namespaceOptions.Find(string(specs.IPCNamespace))
hostIPC := ipc == nil || ipc.Host
net := namespaceOptions.Find(string(specs.NetworkNamespace))
hostNetwork := net == nil || net.Host
user := namespaceOptions.Find(string(specs.UserNamespace))
hostUser := user == nil || user.Host
// Copy mounts from the generated list.
mountCgroups := true
specMounts := []specs.Mount{}
for _, specMount := range spec.Mounts {
// Override some of the mounts from the generated list if we're doing different things with namespaces.
if specMount.Destination == "/dev/shm" {
specMount.Options = []string{"nosuid", "noexec", "nodev", "mode=1777", "size=" + shmSize}
if hostIPC && !hostUser {
if _, err := os.Stat("/dev/shm"); err != nil && os.IsNotExist(err) {
logrus.Debugf("/dev/shm is not present, not binding into container")
continue
}
specMount = specs.Mount{
Source: "/dev/shm",
Type: "bind",
Destination: "/dev/shm",
Options: []string{bind.NoBindOption, "rbind", "nosuid", "noexec", "nodev"},
}
}
}
if specMount.Destination == "/dev/mqueue" {
if hostIPC && !hostUser {
if _, err := os.Stat("/dev/mqueue"); err != nil && os.IsNotExist(err) {
logrus.Debugf("/dev/mqueue is not present, not binding into container")
continue
}
specMount = specs.Mount{
Source: "/dev/mqueue",
Type: "bind",
Destination: "/dev/mqueue",
Options: []string{bind.NoBindOption, "rbind", "nosuid", "noexec", "nodev"},
}
}
}
if specMount.Destination == "/sys" {
if hostNetwork && !hostUser {
mountCgroups = false
if _, err := os.Stat("/sys"); err != nil && os.IsNotExist(err) {
logrus.Debugf("/sys is not present, not binding into container")
continue
}
specMount = specs.Mount{
Source: "/sys",
Type: "bind",
Destination: "/sys",
Options: []string{bind.NoBindOption, "rbind", "nosuid", "noexec", "nodev", "ro"},
}
}
}
specMounts = append(specMounts, specMount)
}
// Add a mount for the cgroups filesystem, unless we're already
// recursively bind mounting all of /sys, in which case we shouldn't
// bother with it.
sysfsMount := []specs.Mount{}
if mountCgroups {
sysfsMount = []specs.Mount{{
Destination: "/sys/fs/cgroup",
Type: "cgroup",
Source: "cgroup",
Options: []string{bind.NoBindOption, "nosuid", "noexec", "nodev", "relatime", "ro"},
}}
}
// Get the list of files we need to bind into the container.
bindFileMounts, err := runSetupBoundFiles(bundlePath, bindFiles)
if err != nil {
return err
}
// After this point we need to know the per-container persistent storage directory.
cdir, err := b.store.ContainerDirectory(b.ContainerID)
if err != nil {
return errors.Wrapf(err, "error determining work directory for container %q", b.ContainerID)
}
// Figure out which UID and GID to tell the secrets package to use
// for files that it creates.
rootUID, rootGID, err := util.GetHostRootIDs(spec)
if err != nil {
return err
}
// Get the list of secrets mounts.
secretMounts := secrets.SecretMountsWithUIDGID(b.MountLabel, cdir, b.DefaultMountsFilePath, cdir, int(rootUID), int(rootGID))
// Add temporary copies of the contents of volume locations at the
// volume locations, unless we already have something there.
copyWithTar := b.copyWithTar(nil, nil)
builtins, err := runSetupBuiltinVolumes(b.MountLabel, mountPoint, cdir, copyWithTar, builtinVolumes, int(rootUID), int(rootGID))
if err != nil {
return err
}
// Get the list of explicitly-specified volume mounts.
volumes, err := runSetupVolumeMounts(spec.Linux.MountLabel, volumeMounts, optionMounts)
if err != nil {
return err
}
// Add them all, in the preferred order, except where they conflict with something that was previously added.
for _, mount := range append(append(append(append(append(volumes, builtins...), secretMounts...), bindFileMounts...), specMounts...), sysfsMount...) {
if haveMount(mount.Destination) {
// Already mounting something there, no need to bother with this one.
continue
}
// Add the mount.
mounts = append(mounts, mount)
}
// Set the list in the spec.
spec.Mounts = mounts
return nil
}
func runSetupBoundFiles(bundlePath string, bindFiles map[string]string) (mounts []specs.Mount, err error) {
for dest, src := range bindFiles {
options := []string{"rbind"}
if strings.HasPrefix(src, bundlePath) {
options = append(options, bind.NoBindOption)
}
mounts = append(mounts, specs.Mount{
Source: src,
Destination: dest,
Type: "bind",
Options: options,
})
}
return mounts, nil
}
func runSetupBuiltinVolumes(mountLabel, mountPoint, containerDir string, copyWithTar func(srcPath, dstPath string) error, builtinVolumes []string, rootUID, rootGID int) ([]specs.Mount, error) {
var mounts []specs.Mount
hostOwner := idtools.IDPair{UID: rootUID, GID: rootGID}
// Add temporary copies of the contents of volume locations at the
// volume locations, unless we already have something there.
for _, volume := range builtinVolumes {
subdir := digest.Canonical.FromString(volume).Hex()
volumePath := filepath.Join(containerDir, "buildah-volumes", subdir)
srcPath := filepath.Join(mountPoint, volume)
initializeVolume := false
// If we need to, initialize the volume path's initial contents.
if _, err := os.Stat(volumePath); err != nil {
if !os.IsNotExist(err) {
return nil, errors.Wrapf(err, "failed to stat %q for volume %q", volumePath, volume)
}
logrus.Debugf("setting up built-in volume at %q", volumePath)
if err = os.MkdirAll(volumePath, 0755); err != nil {
return nil, errors.Wrapf(err, "error creating directory %q for volume %q", volumePath, volume)
}
if err = label.Relabel(volumePath, mountLabel, false); err != nil {
return nil, errors.Wrapf(err, "error relabeling directory %q for volume %q", volumePath, volume)
}
initializeVolume = true
}
stat, err := os.Stat(srcPath)
if err != nil {
if !os.IsNotExist(err) {
return nil, errors.Wrapf(err, "failed to stat %q for volume %q", srcPath, volume)
}
if err = idtools.MkdirAllAndChownNew(srcPath, 0755, hostOwner); err != nil {
return nil, errors.Wrapf(err, "error creating directory %q for volume %q", srcPath, volume)
}
if stat, err = os.Stat(srcPath); err != nil {
return nil, errors.Wrapf(err, "failed to stat %q for volume %q", srcPath, volume)
}
}
if initializeVolume {
if err = os.Chmod(volumePath, stat.Mode().Perm()); err != nil {
return nil, errors.Wrapf(err, "failed to chmod %q for volume %q", volumePath, volume)
}
if err = os.Chown(volumePath, int(stat.Sys().(*syscall.Stat_t).Uid), int(stat.Sys().(*syscall.Stat_t).Gid)); err != nil {
return nil, errors.Wrapf(err, "error chowning directory %q for volume %q", volumePath, volume)
}
if err = copyWithTar(srcPath, volumePath); err != nil && !os.IsNotExist(errors.Cause(err)) {
return nil, errors.Wrapf(err, "error populating directory %q for volume %q using contents of %q", volumePath, volume, srcPath)
}
}
// Add the bind mount.
mounts = append(mounts, specs.Mount{
Source: volumePath,
Destination: volume,
Type: "bind",
Options: []string{"bind"},
})
}
return mounts, nil
}
func runSetupVolumeMounts(mountLabel string, volumeMounts []string, optionMounts []specs.Mount) ([]specs.Mount, error) {
var mounts []specs.Mount
parseMount := func(host, container string, options []string) (specs.Mount, error) {
var foundrw, foundro, foundz, foundZ bool
var rootProp string
for _, opt := range options {
switch opt {
case "rw":
foundrw = true
case "ro":
foundro = true
case "z":
foundz = true
case "Z":
foundZ = true
case "private", "rprivate", "slave", "rslave", "shared", "rshared":
rootProp = opt
}
}
if !foundrw && !foundro {
options = append(options, "rw")
}
if foundz {
if err := label.Relabel(host, mountLabel, true); err != nil {
return specs.Mount{}, errors.Wrapf(err, "relabeling %q failed", host)
}
}
if foundZ {
if err := label.Relabel(host, mountLabel, false); err != nil {
return specs.Mount{}, errors.Wrapf(err, "relabeling %q failed", host)
}
}
if rootProp == "" {
options = append(options, "private")
}
return specs.Mount{
Destination: container,
Type: "bind",
Source: host,
Options: options,
}, nil
}
// Bind mount volumes specified for this particular Run() invocation
for _, i := range optionMounts {
logrus.Debugf("setting up mounted volume at %q", i.Destination)
mount, err := parseMount(i.Source, i.Destination, append(i.Options, "rbind"))
if err != nil {
return nil, err
}
mounts = append(mounts, mount)
}
// Bind mount volumes given by the user when the container was created
for _, i := range volumeMounts {
var options []string
spliti := strings.Split(i, ":")
if len(spliti) > 2 {
options = strings.Split(spliti[2], ",")
}
options = append(options, "rbind")
mount, err := parseMount(spliti[0], spliti[1], options)
if err != nil {
return nil, err
}
mounts = append(mounts, mount)
}
return mounts, nil
}
// addNetworkConfig copies files from host and sets them up to bind mount into container
func (b *Builder) addNetworkConfig(rdir, hostPath string, chownOpts *idtools.IDPair) (string, error) {
copyFileWithTar := b.copyFileWithTar(chownOpts, nil)
cfile := filepath.Join(rdir, filepath.Base(hostPath))
if err := copyFileWithTar(hostPath, cfile); err != nil {
return "", errors.Wrapf(err, "error copying %q for container %q", cfile, b.ContainerID)
}
if err := label.Relabel(cfile, b.MountLabel, false); err != nil {
return "", errors.Wrapf(err, "error relabeling %q in container %q", cfile, b.ContainerID)
}
return cfile, nil
}
func setupMaskedPaths(g *generate.Generator) {
for _, mp := range []string{
"/proc/acpi",
"/proc/kcore",
"/proc/keys",
"/proc/latency_stats",
"/proc/timer_list",
"/proc/timer_stats",
"/proc/sched_debug",
"/proc/scsi",
"/sys/firmware",
} {
g.AddLinuxMaskedPaths(mp)
}
}
func setupReadOnlyPaths(g *generate.Generator) {
for _, rp := range []string{
"/proc/asound",
"/proc/bus",
"/proc/fs",
"/proc/irq",
"/proc/sys",
"/proc/sysrq-trigger",
} {
g.AddLinuxReadonlyPaths(rp)
}
}
func setupCapAdd(g *generate.Generator, caps ...string) error {
for _, cap := range caps {
if err := g.AddProcessCapabilityBounding(cap); err != nil {
return errors.Wrapf(err, "error adding %q to the bounding capability set", cap)
}
if err := g.AddProcessCapabilityEffective(cap); err != nil {
return errors.Wrapf(err, "error adding %q to the effective capability set", cap)
}
if err := g.AddProcessCapabilityInheritable(cap); err != nil {
return errors.Wrapf(err, "error adding %q to the inheritable capability set", cap)
}
if err := g.AddProcessCapabilityPermitted(cap); err != nil {
return errors.Wrapf(err, "error adding %q to the permitted capability set", cap)
}
if err := g.AddProcessCapabilityAmbient(cap); err != nil {
return errors.Wrapf(err, "error adding %q to the ambient capability set", cap)
}
}
return nil
}
func setupCapDrop(g *generate.Generator, caps ...string) error {
for _, cap := range caps {
if err := g.DropProcessCapabilityBounding(cap); err != nil {
return errors.Wrapf(err, "error removing %q from the bounding capability set", cap)
}
if err := g.DropProcessCapabilityEffective(cap); err != nil {
return errors.Wrapf(err, "error removing %q from the effective capability set", cap)
}
if err := g.DropProcessCapabilityInheritable(cap); err != nil {
return errors.Wrapf(err, "error removing %q from the inheritable capability set", cap)
}
if err := g.DropProcessCapabilityPermitted(cap); err != nil {
return errors.Wrapf(err, "error removing %q from the permitted capability set", cap)
}
if err := g.DropProcessCapabilityAmbient(cap); err != nil {
return errors.Wrapf(err, "error removing %q from the ambient capability set", cap)
}
}
return nil
}
func setupCapabilities(g *generate.Generator, firstAdds, firstDrops, secondAdds, secondDrops []string) error {
g.ClearProcessCapabilities()
if err := setupCapAdd(g, util.DefaultCapabilities...); err != nil {
return err
}
if err := setupCapAdd(g, firstAdds...); err != nil {
return err
}
if err := setupCapDrop(g, firstDrops...); err != nil {
return err
}
if err := setupCapAdd(g, secondAdds...); err != nil {
return err
}
return setupCapDrop(g, secondDrops...)
}
func setupTerminal(g *generate.Generator, terminalPolicy TerminalPolicy, terminalSize *specs.Box) {
switch terminalPolicy {
case DefaultTerminal:
onTerminal := terminal.IsTerminal(unix.Stdin) && terminal.IsTerminal(unix.Stdout) && terminal.IsTerminal(unix.Stderr)
if onTerminal {
logrus.Debugf("stdio is a terminal, defaulting to using a terminal")
} else {
logrus.Debugf("stdio is not a terminal, defaulting to not using a terminal")
}
g.SetProcessTerminal(onTerminal)
case WithTerminal:
g.SetProcessTerminal(true)
case WithoutTerminal:
g.SetProcessTerminal(false)
}
if terminalSize != nil {
g.SetProcessConsoleSize(terminalSize.Width, terminalSize.Height)
}
}
func setupNamespaces(g *generate.Generator, namespaceOptions NamespaceOptions, idmapOptions IDMappingOptions, policy NetworkConfigurationPolicy) (configureNetwork bool, configureNetworks []string, configureUTS bool, err error) {
// Set namespace options in the container configuration.
configureUserns := false
specifiedNetwork := false
for _, namespaceOption := range namespaceOptions {
switch namespaceOption.Name {
case string(specs.UserNamespace):
configureUserns = false
if !namespaceOption.Host && namespaceOption.Path == "" {
configureUserns = true
}
case string(specs.NetworkNamespace):
specifiedNetwork = true
configureNetwork = false
if !namespaceOption.Host && (namespaceOption.Path == "" || !filepath.IsAbs(namespaceOption.Path)) {
if namespaceOption.Path != "" && !filepath.IsAbs(namespaceOption.Path) {
configureNetworks = strings.Split(namespaceOption.Path, ",")
namespaceOption.Path = ""
}
configureNetwork = (policy != NetworkDisabled)
}
case string(specs.UTSNamespace):
configureUTS = false
if !namespaceOption.Host && namespaceOption.Path == "" {
configureUTS = true
}
}
if namespaceOption.Host {
if err := g.RemoveLinuxNamespace(namespaceOption.Name); err != nil {
return false, nil, false, errors.Wrapf(err, "error removing %q namespace for run", namespaceOption.Name)
}
} else if err := g.AddOrReplaceLinuxNamespace(namespaceOption.Name, namespaceOption.Path); err != nil {
if namespaceOption.Path == "" {
return false, nil, false, errors.Wrapf(err, "error adding new %q namespace for run", namespaceOption.Name)
}
return false, nil, false, errors.Wrapf(err, "error adding %q namespace %q for run", namespaceOption.Name, namespaceOption.Path)
}
}
// If we've got mappings, we're going to have to create a user namespace.
if len(idmapOptions.UIDMap) > 0 || len(idmapOptions.GIDMap) > 0 || configureUserns {
if err := g.AddOrReplaceLinuxNamespace(specs.UserNamespace, ""); err != nil {
return false, nil, false, errors.Wrapf(err, "error adding new %q namespace for run", string(specs.UserNamespace))
}
hostUidmap, hostGidmap, err := util.GetHostIDMappings("")
if err != nil {
return false, nil, false, err
}
for _, m := range idmapOptions.UIDMap {
g.AddLinuxUIDMapping(m.HostID, m.ContainerID, m.Size)
}
if len(idmapOptions.UIDMap) == 0 {
for _, m := range hostUidmap {
g.AddLinuxUIDMapping(m.ContainerID, m.ContainerID, m.Size)
}
}
for _, m := range idmapOptions.GIDMap {
g.AddLinuxGIDMapping(m.HostID, m.ContainerID, m.Size)
}
if len(idmapOptions.GIDMap) == 0 {
for _, m := range hostGidmap {
g.AddLinuxGIDMapping(m.ContainerID, m.ContainerID, m.Size)
}
}
if !specifiedNetwork {
if err := g.AddOrReplaceLinuxNamespace(specs.NetworkNamespace, ""); err != nil {
return false, nil, false, errors.Wrapf(err, "error adding new %q namespace for run", string(specs.NetworkNamespace))
}
configureNetwork = (policy != NetworkDisabled)
}
} else {
if err := g.RemoveLinuxNamespace(specs.UserNamespace); err != nil {
return false, nil, false, errors.Wrapf(err, "error removing %q namespace for run", string(specs.UserNamespace))
}
if !specifiedNetwork {
if err := g.RemoveLinuxNamespace(specs.NetworkNamespace); err != nil {
return false, nil, false, errors.Wrapf(err, "error removing %q namespace for run", string(specs.NetworkNamespace))
}
}
}
if configureNetwork {
for name, val := range util.DefaultNetworkSysctl {
g.AddLinuxSysctl(name, val)
}
}
return configureNetwork, configureNetworks, configureUTS, nil
}
// Search for a command that isn't given as an absolute path using the $PATH
// under the rootfs. We can't resolve absolute symbolic links without
// chroot()ing, which we may not be able to do, so just accept a link as a
// valid resolution.
func runLookupPath(g *generate.Generator, command []string) []string {
// Look for the configured $PATH.
spec := g.Spec()
envPath := ""
for i := range spec.Process.Env {
if strings.HasPrefix(spec.Process.Env[i], "PATH=") {
envPath = spec.Process.Env[i]
}
}
// If there is no configured $PATH, supply one.
if envPath == "" {
defaultPath := "/usr/local/bin:/usr/local/sbin:/usr/bin:/usr/sbin:/bin:/sbin"
envPath = "PATH=" + defaultPath
g.AddProcessEnv("PATH", defaultPath)
}
// No command, nothing to do.
if len(command) == 0 {
return command
}
// Command is already an absolute path, use it as-is.
if filepath.IsAbs(command[0]) {
return command
}
// For each element in the PATH,
for _, pathEntry := range filepath.SplitList(envPath[5:]) {
// if it's the empty string, it's ".", which is the Cwd,
if pathEntry == "" {
pathEntry = spec.Process.Cwd
}
// build the absolute path which it might be,
candidate := filepath.Join(pathEntry, command[0])
// check if it's there,
if fi, err := os.Lstat(filepath.Join(spec.Root.Path, candidate)); fi != nil && err == nil {
// and if it's not a directory, and either a symlink or executable,
if !fi.IsDir() && ((fi.Mode()&os.ModeSymlink != 0) || (fi.Mode()&0111 != 0)) {
// use that.
return append([]string{candidate}, command[1:]...)
}
}
}
return command
}
func (b *Builder) configureUIDGID(g *generate.Generator, mountPoint string, options RunOptions) error {
// Set the user UID/GID/supplemental group list/capabilities lists.
user, err := b.user(mountPoint, options.User)
if err != nil {
return err
}
if err := setupCapabilities(g, b.AddCapabilities, b.DropCapabilities, options.AddCapabilities, options.DropCapabilities); err != nil {
return err
}
g.SetProcessUID(user.UID)
g.SetProcessGID(user.GID)
for _, gid := range user.AdditionalGids {
g.AddProcessAdditionalGid(gid)
}
// Remove capabilities if not running as root except Bounding set
if user.UID != 0 {
bounding := g.Config.Process.Capabilities.Bounding
g.ClearProcessCapabilities()
g.Config.Process.Capabilities.Bounding = bounding
}
return nil
}
func (b *Builder) configureEnvironment(g *generate.Generator, options RunOptions) {
g.ClearProcessEnv()
for _, envSpec := range append(b.Env(), options.Env...) {
env := strings.SplitN(envSpec, "=", 2)
if len(env) > 1 {
g.AddProcessEnv(env[0], env[1])
}
}
for src, dest := range b.Args {
g.AddProcessEnv(src, dest)
}
}
func (b *Builder) configureNamespaces(g *generate.Generator, options RunOptions) (bool, []string, error) {
defaultNamespaceOptions, err := DefaultNamespaceOptions()
if err != nil {
return false, nil, err
}
namespaceOptions := defaultNamespaceOptions
namespaceOptions.AddOrReplace(b.NamespaceOptions...)
namespaceOptions.AddOrReplace(options.NamespaceOptions...)
networkPolicy := options.ConfigureNetwork
if networkPolicy == NetworkDefault {
networkPolicy = b.ConfigureNetwork
}
configureNetwork, configureNetworks, configureUTS, err := setupNamespaces(g, namespaceOptions, b.IDMappingOptions, networkPolicy)
if err != nil {
return false, nil, err
}
if configureUTS {
if options.Hostname != "" {
g.SetHostname(options.Hostname)
} else if b.Hostname() != "" {
g.SetHostname(b.Hostname())
}
} else {
g.SetHostname("")
}
return configureNetwork, configureNetworks, nil
}
// Run runs the specified command in the container's root filesystem.
func (b *Builder) Run(command []string, options RunOptions) error {
p, err := ioutil.TempDir("", Package)
if err != nil {
return errors.Wrapf(err, "run: error creating temporary directory under %q", os.TempDir())
}
// On some hosts like AH, /tmp is a symlink and we need an
// absolute path.
path, err := filepath.EvalSymlinks(p)
if err != nil {
return errors.Wrapf(err, "run: error evaluating %q for symbolic links", p)
}
logrus.Debugf("using %q to hold bundle data", path)
defer func() {
if err2 := os.RemoveAll(path); err2 != nil {
logrus.Errorf("error removing %q: %v", path, err2)
}
}()
gp, err := generate.New("linux")
if err != nil {
return errors.Wrapf(err, "error generating new 'linux' runtime spec")
}
g := &gp
isolation := options.Isolation
if isolation == IsolationDefault {
isolation = b.Isolation
if isolation == IsolationDefault {
isolation = IsolationOCI
}
}
if err := checkAndOverrideIsolationOptions(isolation, &options); err != nil {
return err
}
b.configureEnvironment(g, options)
if b.CommonBuildOpts == nil {
return errors.Errorf("Invalid format on container you must recreate the container")
}
if err := addCommonOptsToSpec(b.CommonBuildOpts, g); err != nil {
return err
}
if options.WorkingDir != "" {