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Michael Crosby 3c25c9b9cf Eval mount destination after each mount
User specified mounts much be evaluated after each mount because
symlinks in nested mounts can invalidate the next mount.

Also check that any bind mounts are not inside /proc or /sys to ensure
that we are able to mask over certian paths inside.

Signed-off-by: Michael Crosby <crosbymichael@gmail.com>
2015-05-07 14:38:44 -07:00
apparmor also check if "/sbin/apparmor_parser" exists when deciding if apparmor is enabled 2015-04-14 19:18:33 +02:00
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capabilities_linux.go Linux has added a new capability audit_read 2015-02-24 08:09:32 -05:00
console.go Add GetPath on namespace config 2015-02-12 10:38:43 -08:00
console_linux.go fix some typos in source code comments 2015-04-20 02:35:51 +00:00
container.go fix some typos in source code comments 2015-04-20 02:35:51 +00:00
container_linux.go Replace aliased imports of logrus 2015-05-06 21:14:04 +08:00
container_linux_test.go Ensure that state always contains pathes to all namespaces 2015-04-07 14:50:08 -07:00
container_nouserns_linux.go Change os-prefix file naming to standard postfix naming 2015-02-23 10:41:26 -08:00
container_userns_linux.go Change os-prefix file naming to standard postfix naming 2015-02-23 10:41:26 -08:00
error.go process: add Wait(), Signal() and Pid() methods 2015-02-23 23:40:41 +03:00
error_test.go Add testing for linux factory Load 2014-12-05 15:24:42 -08:00
factory.go Fix a typo in factory.go 2015-04-12 21:26:22 +00:00
factory_linux.go Move childPipe to the end of FD set 2015-04-08 14:14:51 -07:00
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generic_error_test.go Add testing for linux factory Load 2014-12-05 15:24:42 -08:00
init_linux.go Replace aliased imports of logrus 2015-05-06 21:14:04 +08:00
network_linux.go Hairpin NAT network configuration 2015-03-11 13:42:37 -07:00
notify_linux.go Add the file close operation before function return to release resource 2015-03-04 14:56:50 +08:00
notify_linux_test.go rename test files so we can really test them 2015-02-26 09:49:57 +08:00
process.go fix some typos in source code comments 2015-04-20 02:35:51 +00:00
process_linux.go Check for cmd.Process not-nilness in setnsProcess.terminate() 2015-04-22 11:30:42 -07:00
rootfs_linux.go Eval mount destination after each mount 2015-05-07 14:38:44 -07:00
rootfs_linux_test.go Eval mount destination after each mount 2015-05-07 14:38:44 -07:00
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standard_init_linux.go Adds functionality to set system properties. 2015-04-22 22:17:30 -04:00
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README.md

libcontainer - reference implementation for containers ![Build Status](https://jenkins.dockerproject.com/buildStatus/icon?job=Libcontainer Master)

Libcontainer provides a native Go implementation for creating containers with namespaces, cgroups, capabilities, and filesystem access controls. It allows you to manage the lifecycle of the container performing additional operations after the container is created.

Container

A container is a self contained execution environment that shares the kernel of the host system and which is (optionally) isolated from other containers in the system.

Using libcontainer

To create a container you first have to initialize an instance of a factory that will handle the creation and initialization for a container.

Because containers are spawned in a two step process you will need to provide arguments to a binary that will be executed as the init process for the container. To use the current binary that is spawning the containers and acting as the parent you can use os.Args[0] and we have a command called init setup.

root, err := libcontainer.New("/var/lib/container", libcontainer.InitArgs(os.Args[0], "init"))
if err != nil {
    log.Fatal(err)
}

Once you have an instance of the factory created we can create a configuration struct describing how the container is to be created. A sample would look similar to this:

config := &configs.Config{
    Rootfs: rootfs,
    Capabilities: []string{
        "CHOWN",
        "DAC_OVERRIDE",
        "FSETID",
        "FOWNER",
        "MKNOD",
        "NET_RAW",
        "SETGID",
        "SETUID",
        "SETFCAP",
        "SETPCAP",
        "NET_BIND_SERVICE",
        "SYS_CHROOT",
        "KILL",
        "AUDIT_WRITE",
    },
    Namespaces: configs.Namespaces([]configs.Namespace{
        {Type: configs.NEWNS},
        {Type: configs.NEWUTS},
        {Type: configs.NEWIPC},
        {Type: configs.NEWPID},
        {Type: configs.NEWNET},
    }),
    Cgroups: &configs.Cgroup{
        Name:            "test-container",
        Parent:          "system",
        AllowAllDevices: false,
        AllowedDevices:  configs.DefaultAllowedDevices,
    },

    Devices:  configs.DefaultAutoCreatedDevices,
    Hostname: "testing",
    Networks: []*configs.Network{
        {
            Type:    "loopback",
            Address: "127.0.0.1/0",
            Gateway: "localhost",
        },
    },
    Rlimits: []configs.Rlimit{
        {
            Type: syscall.RLIMIT_NOFILE,
            Hard: uint64(1024),
            Soft: uint64(1024),
        },
    },
}

Once you have the configuration populated you can create a container:

container, err := root.Create("container-id", config)

To spawn bash as the initial process inside the container and have the processes pid returned in order to wait, signal, or kill the process:

process := &libcontainer.Process{
    Args:   []string{"/bin/bash"},
    Env:    []string{"PATH=/bin"},
    User:   "daemon",
    Stdin:  os.Stdin,
    Stdout: os.Stdout,
    Stderr: os.Stderr,
}

err := container.Start(process)
if err != nil {
    log.Fatal(err)
}

// wait for the process to finish.
status, err := process.Wait()
if err != nil {
    log.Fatal(err)
}

// destroy the container.
container.Destroy()

Additional ways to interact with a running container are:

// return all the pids for all processes running inside the container.
processes, err := container.Processes() 

// get detailed cpu, memory, io, and network statistics for the container and 
// it's processes.
stats, err := container.Stats()


// pause all processes inside the container.
container.Pause()

// resume all paused processes.
container.Resume()

nsinit

nsinit is a cli application which demonstrates the use of libcontainer.
It is able to spawn new containers or join existing containers. A root filesystem must be provided for use along with a container configuration file.

To build nsinit, run make binary. It will save the binary into bundles/nsinit.

To use nsinit, cd into a Linux rootfs and copy a container.json file into the directory with your specified configuration. Environment, networking, and different capabilities for the container are specified in this file. The configuration is used for each process executed inside the container.

See the sample_configs folder for examples of what the container configuration should look like.

To execute /bin/bash in the current directory as a container just run the following as root:

nsinit exec --tty /bin/bash

If you wish to spawn another process inside the container while your current bash session is running, run the same command again to get another bash shell (or change the command). If the original process (PID 1) dies, all other processes spawned inside the container will be killed and the namespace will be removed.

You can identify if a process is running in a container by looking to see if state.json is in the root of the directory.

You may also specify an alternate root place where the container.json file is read and where the state.json file will be saved.

Future

See the roadmap.

Code and documentation copyright 2014 Docker, inc. Code released under the Apache 2.0 license. Docs released under Creative commons.

Hacking on libcontainer

First of all, please familiarise yourself with the libcontainer Principles.

If you're a contributor or aspiring contributor, you should read the Contributors' Guide.

If you're a maintainer or aspiring maintainer, you should read the Maintainers' Guide and "How can I become a maintainer?" in the Contributors' Guide.