174bd59bbSPavel Emelyanov /* 274bd59bbSPavel Emelyanov * Pid namespaces 374bd59bbSPavel Emelyanov * 474bd59bbSPavel Emelyanov * Authors: 574bd59bbSPavel Emelyanov * (C) 2007 Pavel Emelyanov <xemul@openvz.org>, OpenVZ, SWsoft Inc. 674bd59bbSPavel Emelyanov * (C) 2007 Sukadev Bhattiprolu <sukadev@us.ibm.com>, IBM 774bd59bbSPavel Emelyanov * Many thanks to Oleg Nesterov for comments and help 874bd59bbSPavel Emelyanov * 974bd59bbSPavel Emelyanov */ 1074bd59bbSPavel Emelyanov 1174bd59bbSPavel Emelyanov #include <linux/pid.h> 1274bd59bbSPavel Emelyanov #include <linux/pid_namespace.h> 1349f4d8b9SEric W. Biederman #include <linux/user_namespace.h> 1474bd59bbSPavel Emelyanov #include <linux/syscalls.h> 1574bd59bbSPavel Emelyanov #include <linux/err.h> 160b6b030fSPavel Emelyanov #include <linux/acct.h> 175a0e3ad6STejun Heo #include <linux/slab.h> 180bb80f24SDavid Howells #include <linux/proc_ns.h> 19cf3f8921SDaniel Lezcano #include <linux/reboot.h> 20523a6a94SEric W. Biederman #include <linux/export.h> 2174bd59bbSPavel Emelyanov 2274bd59bbSPavel Emelyanov struct pid_cache { 2374bd59bbSPavel Emelyanov int nr_ids; 2474bd59bbSPavel Emelyanov char name[16]; 2574bd59bbSPavel Emelyanov struct kmem_cache *cachep; 2674bd59bbSPavel Emelyanov struct list_head list; 2774bd59bbSPavel Emelyanov }; 2874bd59bbSPavel Emelyanov 2974bd59bbSPavel Emelyanov static LIST_HEAD(pid_caches_lh); 3074bd59bbSPavel Emelyanov static DEFINE_MUTEX(pid_caches_mutex); 3174bd59bbSPavel Emelyanov static struct kmem_cache *pid_ns_cachep; 3274bd59bbSPavel Emelyanov 3374bd59bbSPavel Emelyanov /* 3474bd59bbSPavel Emelyanov * creates the kmem cache to allocate pids from. 3574bd59bbSPavel Emelyanov * @nr_ids: the number of numerical ids this pid will have to carry 3674bd59bbSPavel Emelyanov */ 3774bd59bbSPavel Emelyanov 3874bd59bbSPavel Emelyanov static struct kmem_cache *create_pid_cachep(int nr_ids) 3974bd59bbSPavel Emelyanov { 4074bd59bbSPavel Emelyanov struct pid_cache *pcache; 4174bd59bbSPavel Emelyanov struct kmem_cache *cachep; 4274bd59bbSPavel Emelyanov 4374bd59bbSPavel Emelyanov mutex_lock(&pid_caches_mutex); 4474bd59bbSPavel Emelyanov list_for_each_entry(pcache, &pid_caches_lh, list) 4574bd59bbSPavel Emelyanov if (pcache->nr_ids == nr_ids) 4674bd59bbSPavel Emelyanov goto out; 4774bd59bbSPavel Emelyanov 4874bd59bbSPavel Emelyanov pcache = kmalloc(sizeof(struct pid_cache), GFP_KERNEL); 4974bd59bbSPavel Emelyanov if (pcache == NULL) 5074bd59bbSPavel Emelyanov goto err_alloc; 5174bd59bbSPavel Emelyanov 5274bd59bbSPavel Emelyanov snprintf(pcache->name, sizeof(pcache->name), "pid_%d", nr_ids); 5374bd59bbSPavel Emelyanov cachep = kmem_cache_create(pcache->name, 5474bd59bbSPavel Emelyanov sizeof(struct pid) + (nr_ids - 1) * sizeof(struct upid), 5574bd59bbSPavel Emelyanov 0, SLAB_HWCACHE_ALIGN, NULL); 5674bd59bbSPavel Emelyanov if (cachep == NULL) 5774bd59bbSPavel Emelyanov goto err_cachep; 5874bd59bbSPavel Emelyanov 5974bd59bbSPavel Emelyanov pcache->nr_ids = nr_ids; 6074bd59bbSPavel Emelyanov pcache->cachep = cachep; 6174bd59bbSPavel Emelyanov list_add(&pcache->list, &pid_caches_lh); 6274bd59bbSPavel Emelyanov out: 6374bd59bbSPavel Emelyanov mutex_unlock(&pid_caches_mutex); 6474bd59bbSPavel Emelyanov return pcache->cachep; 6574bd59bbSPavel Emelyanov 6674bd59bbSPavel Emelyanov err_cachep: 6774bd59bbSPavel Emelyanov kfree(pcache); 6874bd59bbSPavel Emelyanov err_alloc: 6974bd59bbSPavel Emelyanov mutex_unlock(&pid_caches_mutex); 7074bd59bbSPavel Emelyanov return NULL; 7174bd59bbSPavel Emelyanov } 7274bd59bbSPavel Emelyanov 730a01f2ccSEric W. Biederman static void proc_cleanup_work(struct work_struct *work) 740a01f2ccSEric W. Biederman { 750a01f2ccSEric W. Biederman struct pid_namespace *ns = container_of(work, struct pid_namespace, proc_work); 760a01f2ccSEric W. Biederman pid_ns_release_proc(ns); 770a01f2ccSEric W. Biederman } 780a01f2ccSEric W. Biederman 79f2302505SAndrew Vagin /* MAX_PID_NS_LEVEL is needed for limiting size of 'struct pid' */ 80f2302505SAndrew Vagin #define MAX_PID_NS_LEVEL 32 81f2302505SAndrew Vagin 8249f4d8b9SEric W. Biederman static struct pid_namespace *create_pid_namespace(struct user_namespace *user_ns, 8349f4d8b9SEric W. Biederman struct pid_namespace *parent_pid_ns) 8474bd59bbSPavel Emelyanov { 8574bd59bbSPavel Emelyanov struct pid_namespace *ns; 86ed469a63SAlexey Dobriyan unsigned int level = parent_pid_ns->level + 1; 87f2302505SAndrew Vagin int i; 88f2302505SAndrew Vagin int err; 8974bd59bbSPavel Emelyanov 90f2302505SAndrew Vagin if (level > MAX_PID_NS_LEVEL) { 91f2302505SAndrew Vagin err = -EINVAL; 92f2302505SAndrew Vagin goto out; 93f2302505SAndrew Vagin } 94f2302505SAndrew Vagin 95f2302505SAndrew Vagin err = -ENOMEM; 9684406c15SPavel Emelyanov ns = kmem_cache_zalloc(pid_ns_cachep, GFP_KERNEL); 9774bd59bbSPavel Emelyanov if (ns == NULL) 9874bd59bbSPavel Emelyanov goto out; 9974bd59bbSPavel Emelyanov 10074bd59bbSPavel Emelyanov ns->pidmap[0].page = kzalloc(PAGE_SIZE, GFP_KERNEL); 10174bd59bbSPavel Emelyanov if (!ns->pidmap[0].page) 10274bd59bbSPavel Emelyanov goto out_free; 10374bd59bbSPavel Emelyanov 10474bd59bbSPavel Emelyanov ns->pid_cachep = create_pid_cachep(level + 1); 10574bd59bbSPavel Emelyanov if (ns->pid_cachep == NULL) 10674bd59bbSPavel Emelyanov goto out_free_map; 10774bd59bbSPavel Emelyanov 1086344c433SAl Viro err = ns_alloc_inum(&ns->ns); 10998f842e6SEric W. Biederman if (err) 11098f842e6SEric W. Biederman goto out_free_map; 11133c42940SAl Viro ns->ns.ops = &pidns_operations; 11298f842e6SEric W. Biederman 11374bd59bbSPavel Emelyanov kref_init(&ns->kref); 11474bd59bbSPavel Emelyanov ns->level = level; 115ed469a63SAlexey Dobriyan ns->parent = get_pid_ns(parent_pid_ns); 11649f4d8b9SEric W. Biederman ns->user_ns = get_user_ns(user_ns); 117c876ad76SEric W. Biederman ns->nr_hashed = PIDNS_HASH_ADDING; 1180a01f2ccSEric W. Biederman INIT_WORK(&ns->proc_work, proc_cleanup_work); 11974bd59bbSPavel Emelyanov 12074bd59bbSPavel Emelyanov set_bit(0, ns->pidmap[0].page); 12174bd59bbSPavel Emelyanov atomic_set(&ns->pidmap[0].nr_free, BITS_PER_PAGE - 1); 12274bd59bbSPavel Emelyanov 12384406c15SPavel Emelyanov for (i = 1; i < PIDMAP_ENTRIES; i++) 12474bd59bbSPavel Emelyanov atomic_set(&ns->pidmap[i].nr_free, BITS_PER_PAGE); 12574bd59bbSPavel Emelyanov 12674bd59bbSPavel Emelyanov return ns; 12774bd59bbSPavel Emelyanov 12874bd59bbSPavel Emelyanov out_free_map: 12974bd59bbSPavel Emelyanov kfree(ns->pidmap[0].page); 13074bd59bbSPavel Emelyanov out_free: 13174bd59bbSPavel Emelyanov kmem_cache_free(pid_ns_cachep, ns); 13274bd59bbSPavel Emelyanov out: 1334308eebbSEric W. Biederman return ERR_PTR(err); 13474bd59bbSPavel Emelyanov } 13574bd59bbSPavel Emelyanov 1361adfcb03SAl Viro static void delayed_free_pidns(struct rcu_head *p) 1371adfcb03SAl Viro { 1381adfcb03SAl Viro kmem_cache_free(pid_ns_cachep, 1391adfcb03SAl Viro container_of(p, struct pid_namespace, rcu)); 1401adfcb03SAl Viro } 1411adfcb03SAl Viro 14274bd59bbSPavel Emelyanov static void destroy_pid_namespace(struct pid_namespace *ns) 14374bd59bbSPavel Emelyanov { 14474bd59bbSPavel Emelyanov int i; 14574bd59bbSPavel Emelyanov 1466344c433SAl Viro ns_free_inum(&ns->ns); 14774bd59bbSPavel Emelyanov for (i = 0; i < PIDMAP_ENTRIES; i++) 14874bd59bbSPavel Emelyanov kfree(ns->pidmap[i].page); 14949f4d8b9SEric W. Biederman put_user_ns(ns->user_ns); 1501adfcb03SAl Viro call_rcu(&ns->rcu, delayed_free_pidns); 15174bd59bbSPavel Emelyanov } 15274bd59bbSPavel Emelyanov 15349f4d8b9SEric W. Biederman struct pid_namespace *copy_pid_ns(unsigned long flags, 15449f4d8b9SEric W. Biederman struct user_namespace *user_ns, struct pid_namespace *old_ns) 15574bd59bbSPavel Emelyanov { 15674bd59bbSPavel Emelyanov if (!(flags & CLONE_NEWPID)) 157dca4a979SAlexey Dobriyan return get_pid_ns(old_ns); 158225778d6SEric W. Biederman if (task_active_pid_ns(current) != old_ns) 159225778d6SEric W. Biederman return ERR_PTR(-EINVAL); 16049f4d8b9SEric W. Biederman return create_pid_namespace(user_ns, old_ns); 16174bd59bbSPavel Emelyanov } 16274bd59bbSPavel Emelyanov 163bbc2e3efSCyrill Gorcunov static void free_pid_ns(struct kref *kref) 16474bd59bbSPavel Emelyanov { 165bbc2e3efSCyrill Gorcunov struct pid_namespace *ns; 16674bd59bbSPavel Emelyanov 16774bd59bbSPavel Emelyanov ns = container_of(kref, struct pid_namespace, kref); 16874bd59bbSPavel Emelyanov destroy_pid_namespace(ns); 16974bd59bbSPavel Emelyanov } 170bbc2e3efSCyrill Gorcunov 171bbc2e3efSCyrill Gorcunov void put_pid_ns(struct pid_namespace *ns) 172bbc2e3efSCyrill Gorcunov { 173bbc2e3efSCyrill Gorcunov struct pid_namespace *parent; 174bbc2e3efSCyrill Gorcunov 175bbc2e3efSCyrill Gorcunov while (ns != &init_pid_ns) { 176bbc2e3efSCyrill Gorcunov parent = ns->parent; 177bbc2e3efSCyrill Gorcunov if (!kref_put(&ns->kref, free_pid_ns)) 178bbc2e3efSCyrill Gorcunov break; 179bbc2e3efSCyrill Gorcunov ns = parent; 180bbc2e3efSCyrill Gorcunov } 181bbc2e3efSCyrill Gorcunov } 182bbc2e3efSCyrill Gorcunov EXPORT_SYMBOL_GPL(put_pid_ns); 18374bd59bbSPavel Emelyanov 18474bd59bbSPavel Emelyanov void zap_pid_ns_processes(struct pid_namespace *pid_ns) 18574bd59bbSPavel Emelyanov { 18674bd59bbSPavel Emelyanov int nr; 18774bd59bbSPavel Emelyanov int rc; 18800c10bc1SEric W. Biederman struct task_struct *task, *me = current; 189751c644bSEric W. Biederman int init_pids = thread_group_leader(me) ? 1 : 2; 19000c10bc1SEric W. Biederman 191c876ad76SEric W. Biederman /* Don't allow any more processes into the pid namespace */ 192c876ad76SEric W. Biederman disable_pid_allocation(pid_ns); 193c876ad76SEric W. Biederman 194a53b8315SOleg Nesterov /* 195a53b8315SOleg Nesterov * Ignore SIGCHLD causing any terminated children to autoreap. 196a53b8315SOleg Nesterov * This speeds up the namespace shutdown, plus see the comment 197a53b8315SOleg Nesterov * below. 198a53b8315SOleg Nesterov */ 19900c10bc1SEric W. Biederman spin_lock_irq(&me->sighand->siglock); 20000c10bc1SEric W. Biederman me->sighand->action[SIGCHLD - 1].sa.sa_handler = SIG_IGN; 20100c10bc1SEric W. Biederman spin_unlock_irq(&me->sighand->siglock); 20274bd59bbSPavel Emelyanov 20374bd59bbSPavel Emelyanov /* 20474bd59bbSPavel Emelyanov * The last thread in the cgroup-init thread group is terminating. 20574bd59bbSPavel Emelyanov * Find remaining pid_ts in the namespace, signal and wait for them 20674bd59bbSPavel Emelyanov * to exit. 20774bd59bbSPavel Emelyanov * 20874bd59bbSPavel Emelyanov * Note: This signals each threads in the namespace - even those that 20974bd59bbSPavel Emelyanov * belong to the same thread group, To avoid this, we would have 21074bd59bbSPavel Emelyanov * to walk the entire tasklist looking a processes in this 21174bd59bbSPavel Emelyanov * namespace, but that could be unnecessarily expensive if the 21274bd59bbSPavel Emelyanov * pid namespace has just a few processes. Or we need to 21374bd59bbSPavel Emelyanov * maintain a tasklist for each pid namespace. 21474bd59bbSPavel Emelyanov * 21574bd59bbSPavel Emelyanov */ 21674bd59bbSPavel Emelyanov read_lock(&tasklist_lock); 21774bd59bbSPavel Emelyanov nr = next_pidmap(pid_ns, 1); 21874bd59bbSPavel Emelyanov while (nr > 0) { 219e4da026fSSukadev Bhattiprolu rcu_read_lock(); 220e4da026fSSukadev Bhattiprolu 221e4da026fSSukadev Bhattiprolu task = pid_task(find_vpid(nr), PIDTYPE_PID); 222a02d6fd6SOleg Nesterov if (task && !__fatal_signal_pending(task)) 223a02d6fd6SOleg Nesterov send_sig_info(SIGKILL, SEND_SIG_FORCED, task); 224e4da026fSSukadev Bhattiprolu 225e4da026fSSukadev Bhattiprolu rcu_read_unlock(); 226e4da026fSSukadev Bhattiprolu 22774bd59bbSPavel Emelyanov nr = next_pidmap(pid_ns, nr); 22874bd59bbSPavel Emelyanov } 22974bd59bbSPavel Emelyanov read_unlock(&tasklist_lock); 23074bd59bbSPavel Emelyanov 231a53b8315SOleg Nesterov /* 232a53b8315SOleg Nesterov * Reap the EXIT_ZOMBIE children we had before we ignored SIGCHLD. 233a53b8315SOleg Nesterov * sys_wait4() will also block until our children traced from the 234a53b8315SOleg Nesterov * parent namespace are detached and become EXIT_DEAD. 235a53b8315SOleg Nesterov */ 23674bd59bbSPavel Emelyanov do { 23774bd59bbSPavel Emelyanov clear_thread_flag(TIF_SIGPENDING); 23874bd59bbSPavel Emelyanov rc = sys_wait4(-1, NULL, __WALL, NULL); 23974bd59bbSPavel Emelyanov } while (rc != -ECHILD); 24074bd59bbSPavel Emelyanov 2416347e900SEric W. Biederman /* 242a53b8315SOleg Nesterov * sys_wait4() above can't reap the EXIT_DEAD children but we do not 243a53b8315SOleg Nesterov * really care, we could reparent them to the global init. We could 244a53b8315SOleg Nesterov * exit and reap ->child_reaper even if it is not the last thread in 245a53b8315SOleg Nesterov * this pid_ns, free_pid(nr_hashed == 0) calls proc_cleanup_work(), 246a53b8315SOleg Nesterov * pid_ns can not go away until proc_kill_sb() drops the reference. 247a53b8315SOleg Nesterov * 248a53b8315SOleg Nesterov * But this ns can also have other tasks injected by setns()+fork(). 249a53b8315SOleg Nesterov * Again, ignoring the user visible semantics we do not really need 250a53b8315SOleg Nesterov * to wait until they are all reaped, but they can be reparented to 251a53b8315SOleg Nesterov * us and thus we need to ensure that pid->child_reaper stays valid 252a53b8315SOleg Nesterov * until they all go away. See free_pid()->wake_up_process(). 253a53b8315SOleg Nesterov * 254a53b8315SOleg Nesterov * We rely on ignored SIGCHLD, an injected zombie must be autoreaped 255a53b8315SOleg Nesterov * if reparented. 2566347e900SEric W. Biederman */ 2576347e900SEric W. Biederman for (;;) { 258af4b8a83SEric W. Biederman set_current_state(TASK_UNINTERRUPTIBLE); 259751c644bSEric W. Biederman if (pid_ns->nr_hashed == init_pids) 2606347e900SEric W. Biederman break; 2616347e900SEric W. Biederman schedule(); 2626347e900SEric W. Biederman } 263af4b8a83SEric W. Biederman __set_current_state(TASK_RUNNING); 2646347e900SEric W. Biederman 265cf3f8921SDaniel Lezcano if (pid_ns->reboot) 266cf3f8921SDaniel Lezcano current->signal->group_exit_code = pid_ns->reboot; 267cf3f8921SDaniel Lezcano 2680b6b030fSPavel Emelyanov acct_exit_ns(pid_ns); 26974bd59bbSPavel Emelyanov return; 27074bd59bbSPavel Emelyanov } 27174bd59bbSPavel Emelyanov 27298ed57eeSCyrill Gorcunov #ifdef CONFIG_CHECKPOINT_RESTORE 273b8f566b0SPavel Emelyanov static int pid_ns_ctl_handler(struct ctl_table *table, int write, 274b8f566b0SPavel Emelyanov void __user *buffer, size_t *lenp, loff_t *ppos) 275b8f566b0SPavel Emelyanov { 27649f4d8b9SEric W. Biederman struct pid_namespace *pid_ns = task_active_pid_ns(current); 277b8f566b0SPavel Emelyanov struct ctl_table tmp = *table; 278b8f566b0SPavel Emelyanov 27949f4d8b9SEric W. Biederman if (write && !ns_capable(pid_ns->user_ns, CAP_SYS_ADMIN)) 280b8f566b0SPavel Emelyanov return -EPERM; 281b8f566b0SPavel Emelyanov 282b8f566b0SPavel Emelyanov /* 283b8f566b0SPavel Emelyanov * Writing directly to ns' last_pid field is OK, since this field 284b8f566b0SPavel Emelyanov * is volatile in a living namespace anyway and a code writing to 285b8f566b0SPavel Emelyanov * it should synchronize its usage with external means. 286b8f566b0SPavel Emelyanov */ 287b8f566b0SPavel Emelyanov 28849f4d8b9SEric W. Biederman tmp.data = &pid_ns->last_pid; 289579035dcSAndrew Vagin return proc_dointvec_minmax(&tmp, write, buffer, lenp, ppos); 290b8f566b0SPavel Emelyanov } 291b8f566b0SPavel Emelyanov 292579035dcSAndrew Vagin extern int pid_max; 293579035dcSAndrew Vagin static int zero = 0; 294b8f566b0SPavel Emelyanov static struct ctl_table pid_ns_ctl_table[] = { 295b8f566b0SPavel Emelyanov { 296b8f566b0SPavel Emelyanov .procname = "ns_last_pid", 297b8f566b0SPavel Emelyanov .maxlen = sizeof(int), 298b8f566b0SPavel Emelyanov .mode = 0666, /* permissions are checked in the handler */ 299b8f566b0SPavel Emelyanov .proc_handler = pid_ns_ctl_handler, 300579035dcSAndrew Vagin .extra1 = &zero, 301579035dcSAndrew Vagin .extra2 = &pid_max, 302b8f566b0SPavel Emelyanov }, 303b8f566b0SPavel Emelyanov { } 304b8f566b0SPavel Emelyanov }; 305b8f566b0SPavel Emelyanov static struct ctl_path kern_path[] = { { .procname = "kernel", }, { } }; 30698ed57eeSCyrill Gorcunov #endif /* CONFIG_CHECKPOINT_RESTORE */ 307b8f566b0SPavel Emelyanov 308cf3f8921SDaniel Lezcano int reboot_pid_ns(struct pid_namespace *pid_ns, int cmd) 309cf3f8921SDaniel Lezcano { 310cf3f8921SDaniel Lezcano if (pid_ns == &init_pid_ns) 311cf3f8921SDaniel Lezcano return 0; 312cf3f8921SDaniel Lezcano 313cf3f8921SDaniel Lezcano switch (cmd) { 314cf3f8921SDaniel Lezcano case LINUX_REBOOT_CMD_RESTART2: 315cf3f8921SDaniel Lezcano case LINUX_REBOOT_CMD_RESTART: 316cf3f8921SDaniel Lezcano pid_ns->reboot = SIGHUP; 317cf3f8921SDaniel Lezcano break; 318cf3f8921SDaniel Lezcano 319cf3f8921SDaniel Lezcano case LINUX_REBOOT_CMD_POWER_OFF: 320cf3f8921SDaniel Lezcano case LINUX_REBOOT_CMD_HALT: 321cf3f8921SDaniel Lezcano pid_ns->reboot = SIGINT; 322cf3f8921SDaniel Lezcano break; 323cf3f8921SDaniel Lezcano default: 324cf3f8921SDaniel Lezcano return -EINVAL; 325cf3f8921SDaniel Lezcano } 326cf3f8921SDaniel Lezcano 327cf3f8921SDaniel Lezcano read_lock(&tasklist_lock); 328cf3f8921SDaniel Lezcano force_sig(SIGKILL, pid_ns->child_reaper); 329cf3f8921SDaniel Lezcano read_unlock(&tasklist_lock); 330cf3f8921SDaniel Lezcano 331cf3f8921SDaniel Lezcano do_exit(0); 332cf3f8921SDaniel Lezcano 333cf3f8921SDaniel Lezcano /* Not reached */ 334cf3f8921SDaniel Lezcano return 0; 335cf3f8921SDaniel Lezcano } 336cf3f8921SDaniel Lezcano 3373c041184SAl Viro static inline struct pid_namespace *to_pid_ns(struct ns_common *ns) 3383c041184SAl Viro { 3393c041184SAl Viro return container_of(ns, struct pid_namespace, ns); 3403c041184SAl Viro } 3413c041184SAl Viro 34264964528SAl Viro static struct ns_common *pidns_get(struct task_struct *task) 34357e8391dSEric W. Biederman { 34457e8391dSEric W. Biederman struct pid_namespace *ns; 34557e8391dSEric W. Biederman 34657e8391dSEric W. Biederman rcu_read_lock(); 347d2308225SOleg Nesterov ns = task_active_pid_ns(task); 348d2308225SOleg Nesterov if (ns) 349d2308225SOleg Nesterov get_pid_ns(ns); 35057e8391dSEric W. Biederman rcu_read_unlock(); 35157e8391dSEric W. Biederman 3523c041184SAl Viro return ns ? &ns->ns : NULL; 35357e8391dSEric W. Biederman } 35457e8391dSEric W. Biederman 35564964528SAl Viro static void pidns_put(struct ns_common *ns) 35657e8391dSEric W. Biederman { 3573c041184SAl Viro put_pid_ns(to_pid_ns(ns)); 35857e8391dSEric W. Biederman } 35957e8391dSEric W. Biederman 36064964528SAl Viro static int pidns_install(struct nsproxy *nsproxy, struct ns_common *ns) 36157e8391dSEric W. Biederman { 36257e8391dSEric W. Biederman struct pid_namespace *active = task_active_pid_ns(current); 3633c041184SAl Viro struct pid_namespace *ancestor, *new = to_pid_ns(ns); 36457e8391dSEric W. Biederman 3655e4a0847SEric W. Biederman if (!ns_capable(new->user_ns, CAP_SYS_ADMIN) || 366c7b96acfSEric W. Biederman !ns_capable(current_user_ns(), CAP_SYS_ADMIN)) 36757e8391dSEric W. Biederman return -EPERM; 36857e8391dSEric W. Biederman 36957e8391dSEric W. Biederman /* 37057e8391dSEric W. Biederman * Only allow entering the current active pid namespace 37157e8391dSEric W. Biederman * or a child of the current active pid namespace. 37257e8391dSEric W. Biederman * 37357e8391dSEric W. Biederman * This is required for fork to return a usable pid value and 37457e8391dSEric W. Biederman * this maintains the property that processes and their 37557e8391dSEric W. Biederman * children can not escape their current pid namespace. 37657e8391dSEric W. Biederman */ 37757e8391dSEric W. Biederman if (new->level < active->level) 37857e8391dSEric W. Biederman return -EINVAL; 37957e8391dSEric W. Biederman 38057e8391dSEric W. Biederman ancestor = new; 38157e8391dSEric W. Biederman while (ancestor->level > active->level) 38257e8391dSEric W. Biederman ancestor = ancestor->parent; 38357e8391dSEric W. Biederman if (ancestor != active) 38457e8391dSEric W. Biederman return -EINVAL; 38557e8391dSEric W. Biederman 386c2b1df2eSAndy Lutomirski put_pid_ns(nsproxy->pid_ns_for_children); 387c2b1df2eSAndy Lutomirski nsproxy->pid_ns_for_children = get_pid_ns(new); 38857e8391dSEric W. Biederman return 0; 38957e8391dSEric W. Biederman } 39057e8391dSEric W. Biederman 391*a7306ed8SAndrey Vagin static struct ns_common *pidns_get_parent(struct ns_common *ns) 392*a7306ed8SAndrey Vagin { 393*a7306ed8SAndrey Vagin struct pid_namespace *active = task_active_pid_ns(current); 394*a7306ed8SAndrey Vagin struct pid_namespace *pid_ns, *p; 395*a7306ed8SAndrey Vagin 396*a7306ed8SAndrey Vagin /* See if the parent is in the current namespace */ 397*a7306ed8SAndrey Vagin pid_ns = p = to_pid_ns(ns)->parent; 398*a7306ed8SAndrey Vagin for (;;) { 399*a7306ed8SAndrey Vagin if (!p) 400*a7306ed8SAndrey Vagin return ERR_PTR(-EPERM); 401*a7306ed8SAndrey Vagin if (p == active) 402*a7306ed8SAndrey Vagin break; 403*a7306ed8SAndrey Vagin p = p->parent; 404*a7306ed8SAndrey Vagin } 405*a7306ed8SAndrey Vagin 406*a7306ed8SAndrey Vagin return &get_pid_ns(pid_ns)->ns; 407*a7306ed8SAndrey Vagin } 408*a7306ed8SAndrey Vagin 409bcac25a5SAndrey Vagin static struct user_namespace *pidns_owner(struct ns_common *ns) 410bcac25a5SAndrey Vagin { 411bcac25a5SAndrey Vagin return to_pid_ns(ns)->user_ns; 412bcac25a5SAndrey Vagin } 413bcac25a5SAndrey Vagin 41457e8391dSEric W. Biederman const struct proc_ns_operations pidns_operations = { 41557e8391dSEric W. Biederman .name = "pid", 41657e8391dSEric W. Biederman .type = CLONE_NEWPID, 41757e8391dSEric W. Biederman .get = pidns_get, 41857e8391dSEric W. Biederman .put = pidns_put, 41957e8391dSEric W. Biederman .install = pidns_install, 420bcac25a5SAndrey Vagin .owner = pidns_owner, 421*a7306ed8SAndrey Vagin .get_parent = pidns_get_parent, 42257e8391dSEric W. Biederman }; 42357e8391dSEric W. Biederman 42474bd59bbSPavel Emelyanov static __init int pid_namespaces_init(void) 42574bd59bbSPavel Emelyanov { 42674bd59bbSPavel Emelyanov pid_ns_cachep = KMEM_CACHE(pid_namespace, SLAB_PANIC); 42798ed57eeSCyrill Gorcunov 42898ed57eeSCyrill Gorcunov #ifdef CONFIG_CHECKPOINT_RESTORE 429b8f566b0SPavel Emelyanov register_sysctl_paths(kern_path, pid_ns_ctl_table); 43098ed57eeSCyrill Gorcunov #endif 43174bd59bbSPavel Emelyanov return 0; 43274bd59bbSPavel Emelyanov } 43374bd59bbSPavel Emelyanov 43474bd59bbSPavel Emelyanov __initcall(pid_namespaces_init); 435