1 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
3 #include <linux/workqueue.h>
4 #include <linux/rtnetlink.h>
5 #include <linux/cache.h>
6 #include <linux/slab.h>
7 #include <linux/list.h>
8 #include <linux/delay.h>
9 #include <linux/sched.h>
10 #include <linux/idr.h>
11 #include <linux/rculist.h>
12 #include <linux/nsproxy.h>
14 #include <linux/proc_ns.h>
15 #include <linux/file.h>
16 #include <linux/export.h>
17 #include <linux/user_namespace.h>
18 #include <linux/net_namespace.h>
19 #include <linux/sched/task.h>
22 #include <net/netlink.h>
23 #include <net/net_namespace.h>
24 #include <net/netns/generic.h>
27 * Our network namespace constructor/destructor lists
30 static LIST_HEAD(pernet_list
);
31 static struct list_head
*first_device
= &pernet_list
;
32 DEFINE_MUTEX(net_mutex
);
34 LIST_HEAD(net_namespace_list
);
35 EXPORT_SYMBOL_GPL(net_namespace_list
);
37 struct net init_net
= {
38 .count
= ATOMIC_INIT(1),
39 .dev_base_head
= LIST_HEAD_INIT(init_net
.dev_base_head
),
41 EXPORT_SYMBOL(init_net
);
43 static bool init_net_initialized
;
45 #define MIN_PERNET_OPS_ID \
46 ((sizeof(struct net_generic) + sizeof(void *) - 1) / sizeof(void *))
48 #define INITIAL_NET_GEN_PTRS 13 /* +1 for len +2 for rcu_head */
50 static unsigned int max_gen_ptrs
= INITIAL_NET_GEN_PTRS
;
52 static struct net_generic
*net_alloc_generic(void)
54 struct net_generic
*ng
;
55 unsigned int generic_size
= offsetof(struct net_generic
, ptr
[max_gen_ptrs
]);
57 ng
= kzalloc(generic_size
, GFP_KERNEL
);
59 ng
->s
.len
= max_gen_ptrs
;
64 static int net_assign_generic(struct net
*net
, unsigned int id
, void *data
)
66 struct net_generic
*ng
, *old_ng
;
68 BUG_ON(!mutex_is_locked(&net_mutex
));
69 BUG_ON(id
< MIN_PERNET_OPS_ID
);
71 old_ng
= rcu_dereference_protected(net
->gen
,
72 lockdep_is_held(&net_mutex
));
73 if (old_ng
->s
.len
> id
) {
74 old_ng
->ptr
[id
] = data
;
78 ng
= net_alloc_generic();
83 * Some synchronisation notes:
85 * The net_generic explores the net->gen array inside rcu
86 * read section. Besides once set the net->gen->ptr[x]
87 * pointer never changes (see rules in netns/generic.h).
89 * That said, we simply duplicate this array and schedule
90 * the old copy for kfree after a grace period.
93 memcpy(&ng
->ptr
[MIN_PERNET_OPS_ID
], &old_ng
->ptr
[MIN_PERNET_OPS_ID
],
94 (old_ng
->s
.len
- MIN_PERNET_OPS_ID
) * sizeof(void *));
97 rcu_assign_pointer(net
->gen
, ng
);
98 kfree_rcu(old_ng
, s
.rcu
);
102 static int ops_init(const struct pernet_operations
*ops
, struct net
*net
)
107 if (ops
->id
&& ops
->size
) {
108 data
= kzalloc(ops
->size
, GFP_KERNEL
);
112 err
= net_assign_generic(net
, *ops
->id
, data
);
118 err
= ops
->init(net
);
129 static void ops_free(const struct pernet_operations
*ops
, struct net
*net
)
131 if (ops
->id
&& ops
->size
) {
132 kfree(net_generic(net
, *ops
->id
));
136 static void ops_exit_list(const struct pernet_operations
*ops
,
137 struct list_head
*net_exit_list
)
141 list_for_each_entry(net
, net_exit_list
, exit_list
)
145 ops
->exit_batch(net_exit_list
);
148 static void ops_free_list(const struct pernet_operations
*ops
,
149 struct list_head
*net_exit_list
)
152 if (ops
->size
&& ops
->id
) {
153 list_for_each_entry(net
, net_exit_list
, exit_list
)
158 /* should be called with nsid_lock held */
159 static int alloc_netid(struct net
*net
, struct net
*peer
, int reqid
)
161 int min
= 0, max
= 0;
168 return idr_alloc(&net
->netns_ids
, peer
, min
, max
, GFP_ATOMIC
);
171 /* This function is used by idr_for_each(). If net is equal to peer, the
172 * function returns the id so that idr_for_each() stops. Because we cannot
173 * returns the id 0 (idr_for_each() will not stop), we return the magic value
174 * NET_ID_ZERO (-1) for it.
176 #define NET_ID_ZERO -1
177 static int net_eq_idr(int id
, void *net
, void *peer
)
179 if (net_eq(net
, peer
))
180 return id
? : NET_ID_ZERO
;
184 /* Should be called with nsid_lock held. If a new id is assigned, the bool alloc
185 * is set to true, thus the caller knows that the new id must be notified via
188 static int __peernet2id_alloc(struct net
*net
, struct net
*peer
, bool *alloc
)
190 int id
= idr_for_each(&net
->netns_ids
, net_eq_idr
, peer
);
191 bool alloc_it
= *alloc
;
195 /* Magic value for id 0. */
196 if (id
== NET_ID_ZERO
)
202 id
= alloc_netid(net
, peer
, -1);
204 return id
>= 0 ? id
: NETNSA_NSID_NOT_ASSIGNED
;
207 return NETNSA_NSID_NOT_ASSIGNED
;
210 /* should be called with nsid_lock held */
211 static int __peernet2id(struct net
*net
, struct net
*peer
)
215 return __peernet2id_alloc(net
, peer
, &no
);
218 static void rtnl_net_notifyid(struct net
*net
, int cmd
, int id
);
219 /* This function returns the id of a peer netns. If no id is assigned, one will
220 * be allocated and returned.
222 int peernet2id_alloc(struct net
*net
, struct net
*peer
)
227 if (atomic_read(&net
->count
) == 0)
228 return NETNSA_NSID_NOT_ASSIGNED
;
229 spin_lock_bh(&net
->nsid_lock
);
230 alloc
= atomic_read(&peer
->count
) == 0 ? false : true;
231 id
= __peernet2id_alloc(net
, peer
, &alloc
);
232 spin_unlock_bh(&net
->nsid_lock
);
233 if (alloc
&& id
>= 0)
234 rtnl_net_notifyid(net
, RTM_NEWNSID
, id
);
238 /* This function returns, if assigned, the id of a peer netns. */
239 int peernet2id(struct net
*net
, struct net
*peer
)
243 spin_lock_bh(&net
->nsid_lock
);
244 id
= __peernet2id(net
, peer
);
245 spin_unlock_bh(&net
->nsid_lock
);
248 EXPORT_SYMBOL(peernet2id
);
250 /* This function returns true is the peer netns has an id assigned into the
253 bool peernet_has_id(struct net
*net
, struct net
*peer
)
255 return peernet2id(net
, peer
) >= 0;
258 struct net
*get_net_ns_by_id(struct net
*net
, int id
)
266 spin_lock_bh(&net
->nsid_lock
);
267 peer
= idr_find(&net
->netns_ids
, id
);
270 spin_unlock_bh(&net
->nsid_lock
);
277 * setup_net runs the initializers for the network namespace object.
279 static __net_init
int setup_net(struct net
*net
, struct user_namespace
*user_ns
)
281 /* Must be called with net_mutex held */
282 const struct pernet_operations
*ops
, *saved_ops
;
284 LIST_HEAD(net_exit_list
);
286 atomic_set(&net
->count
, 1);
287 refcount_set(&net
->passive
, 1);
288 net
->dev_base_seq
= 1;
289 net
->user_ns
= user_ns
;
290 idr_init(&net
->netns_ids
);
291 spin_lock_init(&net
->nsid_lock
);
293 list_for_each_entry(ops
, &pernet_list
, list
) {
294 error
= ops_init(ops
, net
);
302 /* Walk through the list backwards calling the exit functions
303 * for the pernet modules whose init functions did not fail.
305 list_add(&net
->exit_list
, &net_exit_list
);
307 list_for_each_entry_continue_reverse(ops
, &pernet_list
, list
)
308 ops_exit_list(ops
, &net_exit_list
);
311 list_for_each_entry_continue_reverse(ops
, &pernet_list
, list
)
312 ops_free_list(ops
, &net_exit_list
);
318 static int __net_init
net_defaults_init_net(struct net
*net
)
320 net
->core
.sysctl_somaxconn
= SOMAXCONN
;
324 static struct pernet_operations net_defaults_ops
= {
325 .init
= net_defaults_init_net
,
328 static __init
int net_defaults_init(void)
330 if (register_pernet_subsys(&net_defaults_ops
))
331 panic("Cannot initialize net default settings");
336 core_initcall(net_defaults_init
);
339 static struct ucounts
*inc_net_namespaces(struct user_namespace
*ns
)
341 return inc_ucount(ns
, current_euid(), UCOUNT_NET_NAMESPACES
);
344 static void dec_net_namespaces(struct ucounts
*ucounts
)
346 dec_ucount(ucounts
, UCOUNT_NET_NAMESPACES
);
349 static struct kmem_cache
*net_cachep
;
350 static struct workqueue_struct
*netns_wq
;
352 static struct net
*net_alloc(void)
354 struct net
*net
= NULL
;
355 struct net_generic
*ng
;
357 ng
= net_alloc_generic();
361 net
= kmem_cache_zalloc(net_cachep
, GFP_KERNEL
);
365 rcu_assign_pointer(net
->gen
, ng
);
374 static void net_free(struct net
*net
)
376 kfree(rcu_access_pointer(net
->gen
));
377 kmem_cache_free(net_cachep
, net
);
380 void net_drop_ns(void *p
)
383 if (ns
&& refcount_dec_and_test(&ns
->passive
))
387 struct net
*copy_net_ns(unsigned long flags
,
388 struct user_namespace
*user_ns
, struct net
*old_net
)
390 struct ucounts
*ucounts
;
394 if (!(flags
& CLONE_NEWNET
))
395 return get_net(old_net
);
397 ucounts
= inc_net_namespaces(user_ns
);
399 return ERR_PTR(-ENOSPC
);
403 dec_net_namespaces(ucounts
);
404 return ERR_PTR(-ENOMEM
);
407 get_user_ns(user_ns
);
409 rv
= mutex_lock_killable(&net_mutex
);
412 dec_net_namespaces(ucounts
);
413 put_user_ns(user_ns
);
417 net
->ucounts
= ucounts
;
418 rv
= setup_net(net
, user_ns
);
421 list_add_tail_rcu(&net
->list
, &net_namespace_list
);
424 mutex_unlock(&net_mutex
);
426 dec_net_namespaces(ucounts
);
427 put_user_ns(user_ns
);
434 static DEFINE_SPINLOCK(cleanup_list_lock
);
435 static LIST_HEAD(cleanup_list
); /* Must hold cleanup_list_lock to touch */
437 static void cleanup_net(struct work_struct
*work
)
439 const struct pernet_operations
*ops
;
440 struct net
*net
, *tmp
;
441 struct list_head net_kill_list
;
442 LIST_HEAD(net_exit_list
);
444 /* Atomically snapshot the list of namespaces to cleanup */
445 spin_lock_irq(&cleanup_list_lock
);
446 list_replace_init(&cleanup_list
, &net_kill_list
);
447 spin_unlock_irq(&cleanup_list_lock
);
449 mutex_lock(&net_mutex
);
451 /* Don't let anyone else find us. */
453 list_for_each_entry(net
, &net_kill_list
, cleanup_list
) {
454 list_del_rcu(&net
->list
);
455 list_add_tail(&net
->exit_list
, &net_exit_list
);
459 spin_lock_bh(&tmp
->nsid_lock
);
460 id
= __peernet2id(tmp
, net
);
462 idr_remove(&tmp
->netns_ids
, id
);
463 spin_unlock_bh(&tmp
->nsid_lock
);
465 rtnl_net_notifyid(tmp
, RTM_DELNSID
, id
);
467 spin_lock_bh(&net
->nsid_lock
);
468 idr_destroy(&net
->netns_ids
);
469 spin_unlock_bh(&net
->nsid_lock
);
475 * Another CPU might be rcu-iterating the list, wait for it.
476 * This needs to be before calling the exit() notifiers, so
477 * the rcu_barrier() below isn't sufficient alone.
481 /* Run all of the network namespace exit methods */
482 list_for_each_entry_reverse(ops
, &pernet_list
, list
)
483 ops_exit_list(ops
, &net_exit_list
);
485 /* Free the net generic variables */
486 list_for_each_entry_reverse(ops
, &pernet_list
, list
)
487 ops_free_list(ops
, &net_exit_list
);
489 mutex_unlock(&net_mutex
);
491 /* Ensure there are no outstanding rcu callbacks using this
496 /* Finally it is safe to free my network namespace structure */
497 list_for_each_entry_safe(net
, tmp
, &net_exit_list
, exit_list
) {
498 list_del_init(&net
->exit_list
);
499 dec_net_namespaces(net
->ucounts
);
500 put_user_ns(net
->user_ns
);
506 * net_ns_barrier - wait until concurrent net_cleanup_work is done
508 * cleanup_net runs from work queue and will first remove namespaces
509 * from the global list, then run net exit functions.
511 * Call this in module exit path to make sure that all netns
512 * ->exit ops have been invoked before the function is removed.
514 void net_ns_barrier(void)
516 mutex_lock(&net_mutex
);
517 mutex_unlock(&net_mutex
);
519 EXPORT_SYMBOL(net_ns_barrier
);
521 static DECLARE_WORK(net_cleanup_work
, cleanup_net
);
523 void __put_net(struct net
*net
)
525 /* Cleanup the network namespace in process context */
528 spin_lock_irqsave(&cleanup_list_lock
, flags
);
529 list_add(&net
->cleanup_list
, &cleanup_list
);
530 spin_unlock_irqrestore(&cleanup_list_lock
, flags
);
532 queue_work(netns_wq
, &net_cleanup_work
);
534 EXPORT_SYMBOL_GPL(__put_net
);
536 struct net
*get_net_ns_by_fd(int fd
)
539 struct ns_common
*ns
;
542 file
= proc_ns_fget(fd
);
544 return ERR_CAST(file
);
546 ns
= get_proc_ns(file_inode(file
));
547 if (ns
->ops
== &netns_operations
)
548 net
= get_net(container_of(ns
, struct net
, ns
));
550 net
= ERR_PTR(-EINVAL
);
557 struct net
*get_net_ns_by_fd(int fd
)
559 return ERR_PTR(-EINVAL
);
562 EXPORT_SYMBOL_GPL(get_net_ns_by_fd
);
564 struct net
*get_net_ns_by_pid(pid_t pid
)
566 struct task_struct
*tsk
;
569 /* Lookup the network namespace */
570 net
= ERR_PTR(-ESRCH
);
572 tsk
= find_task_by_vpid(pid
);
574 struct nsproxy
*nsproxy
;
576 nsproxy
= tsk
->nsproxy
;
578 net
= get_net(nsproxy
->net_ns
);
584 EXPORT_SYMBOL_GPL(get_net_ns_by_pid
);
586 static __net_init
int net_ns_net_init(struct net
*net
)
589 net
->ns
.ops
= &netns_operations
;
591 return ns_alloc_inum(&net
->ns
);
594 static __net_exit
void net_ns_net_exit(struct net
*net
)
596 ns_free_inum(&net
->ns
);
599 static struct pernet_operations __net_initdata net_ns_ops
= {
600 .init
= net_ns_net_init
,
601 .exit
= net_ns_net_exit
,
604 static const struct nla_policy rtnl_net_policy
[NETNSA_MAX
+ 1] = {
605 [NETNSA_NONE
] = { .type
= NLA_UNSPEC
},
606 [NETNSA_NSID
] = { .type
= NLA_S32
},
607 [NETNSA_PID
] = { .type
= NLA_U32
},
608 [NETNSA_FD
] = { .type
= NLA_U32
},
611 static int rtnl_net_newid(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
612 struct netlink_ext_ack
*extack
)
614 struct net
*net
= sock_net(skb
->sk
);
615 struct nlattr
*tb
[NETNSA_MAX
+ 1];
620 err
= nlmsg_parse(nlh
, sizeof(struct rtgenmsg
), tb
, NETNSA_MAX
,
621 rtnl_net_policy
, extack
);
624 if (!tb
[NETNSA_NSID
]) {
625 NL_SET_ERR_MSG(extack
, "nsid is missing");
628 nsid
= nla_get_s32(tb
[NETNSA_NSID
]);
630 if (tb
[NETNSA_PID
]) {
631 peer
= get_net_ns_by_pid(nla_get_u32(tb
[NETNSA_PID
]));
632 nla
= tb
[NETNSA_PID
];
633 } else if (tb
[NETNSA_FD
]) {
634 peer
= get_net_ns_by_fd(nla_get_u32(tb
[NETNSA_FD
]));
637 NL_SET_ERR_MSG(extack
, "Peer netns reference is missing");
641 NL_SET_BAD_ATTR(extack
, nla
);
642 NL_SET_ERR_MSG(extack
, "Peer netns reference is invalid");
643 return PTR_ERR(peer
);
646 spin_lock_bh(&net
->nsid_lock
);
647 if (__peernet2id(net
, peer
) >= 0) {
648 spin_unlock_bh(&net
->nsid_lock
);
650 NL_SET_BAD_ATTR(extack
, nla
);
651 NL_SET_ERR_MSG(extack
,
652 "Peer netns already has a nsid assigned");
656 err
= alloc_netid(net
, peer
, nsid
);
657 spin_unlock_bh(&net
->nsid_lock
);
659 rtnl_net_notifyid(net
, RTM_NEWNSID
, err
);
661 } else if (err
== -ENOSPC
&& nsid
>= 0) {
663 NL_SET_BAD_ATTR(extack
, tb
[NETNSA_NSID
]);
664 NL_SET_ERR_MSG(extack
, "The specified nsid is already used");
671 static int rtnl_net_get_size(void)
673 return NLMSG_ALIGN(sizeof(struct rtgenmsg
))
674 + nla_total_size(sizeof(s32
)) /* NETNSA_NSID */
678 static int rtnl_net_fill(struct sk_buff
*skb
, u32 portid
, u32 seq
, int flags
,
679 int cmd
, struct net
*net
, int nsid
)
681 struct nlmsghdr
*nlh
;
682 struct rtgenmsg
*rth
;
684 nlh
= nlmsg_put(skb
, portid
, seq
, cmd
, sizeof(*rth
), flags
);
688 rth
= nlmsg_data(nlh
);
689 rth
->rtgen_family
= AF_UNSPEC
;
691 if (nla_put_s32(skb
, NETNSA_NSID
, nsid
))
692 goto nla_put_failure
;
698 nlmsg_cancel(skb
, nlh
);
702 static int rtnl_net_getid(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
703 struct netlink_ext_ack
*extack
)
705 struct net
*net
= sock_net(skb
->sk
);
706 struct nlattr
*tb
[NETNSA_MAX
+ 1];
712 err
= nlmsg_parse(nlh
, sizeof(struct rtgenmsg
), tb
, NETNSA_MAX
,
713 rtnl_net_policy
, extack
);
716 if (tb
[NETNSA_PID
]) {
717 peer
= get_net_ns_by_pid(nla_get_u32(tb
[NETNSA_PID
]));
718 nla
= tb
[NETNSA_PID
];
719 } else if (tb
[NETNSA_FD
]) {
720 peer
= get_net_ns_by_fd(nla_get_u32(tb
[NETNSA_FD
]));
723 NL_SET_ERR_MSG(extack
, "Peer netns reference is missing");
728 NL_SET_BAD_ATTR(extack
, nla
);
729 NL_SET_ERR_MSG(extack
, "Peer netns reference is invalid");
730 return PTR_ERR(peer
);
733 msg
= nlmsg_new(rtnl_net_get_size(), GFP_KERNEL
);
739 id
= peernet2id(net
, peer
);
740 err
= rtnl_net_fill(msg
, NETLINK_CB(skb
).portid
, nlh
->nlmsg_seq
, 0,
741 RTM_NEWNSID
, net
, id
);
745 err
= rtnl_unicast(msg
, net
, NETLINK_CB(skb
).portid
);
755 struct rtnl_net_dump_cb
{
758 struct netlink_callback
*cb
;
763 static int rtnl_net_dumpid_one(int id
, void *peer
, void *data
)
765 struct rtnl_net_dump_cb
*net_cb
= (struct rtnl_net_dump_cb
*)data
;
768 if (net_cb
->idx
< net_cb
->s_idx
)
771 ret
= rtnl_net_fill(net_cb
->skb
, NETLINK_CB(net_cb
->cb
->skb
).portid
,
772 net_cb
->cb
->nlh
->nlmsg_seq
, NLM_F_MULTI
,
773 RTM_NEWNSID
, net_cb
->net
, id
);
782 static int rtnl_net_dumpid(struct sk_buff
*skb
, struct netlink_callback
*cb
)
784 struct net
*net
= sock_net(skb
->sk
);
785 struct rtnl_net_dump_cb net_cb
= {
790 .s_idx
= cb
->args
[0],
793 spin_lock_bh(&net
->nsid_lock
);
794 idr_for_each(&net
->netns_ids
, rtnl_net_dumpid_one
, &net_cb
);
795 spin_unlock_bh(&net
->nsid_lock
);
797 cb
->args
[0] = net_cb
.idx
;
801 static void rtnl_net_notifyid(struct net
*net
, int cmd
, int id
)
806 msg
= nlmsg_new(rtnl_net_get_size(), GFP_KERNEL
);
810 err
= rtnl_net_fill(msg
, 0, 0, 0, cmd
, net
, id
);
814 rtnl_notify(msg
, net
, 0, RTNLGRP_NSID
, NULL
, 0);
820 rtnl_set_sk_err(net
, RTNLGRP_NSID
, err
);
823 static int __init
net_ns_init(void)
825 struct net_generic
*ng
;
828 net_cachep
= kmem_cache_create("net_namespace", sizeof(struct net
),
832 /* Create workqueue for cleanup */
833 netns_wq
= create_singlethread_workqueue("netns");
835 panic("Could not create netns workq");
838 ng
= net_alloc_generic();
840 panic("Could not allocate generic netns");
842 rcu_assign_pointer(init_net
.gen
, ng
);
844 mutex_lock(&net_mutex
);
845 if (setup_net(&init_net
, &init_user_ns
))
846 panic("Could not setup the initial network namespace");
848 init_net_initialized
= true;
851 list_add_tail_rcu(&init_net
.list
, &net_namespace_list
);
854 mutex_unlock(&net_mutex
);
856 register_pernet_subsys(&net_ns_ops
);
858 rtnl_register(PF_UNSPEC
, RTM_NEWNSID
, rtnl_net_newid
, NULL
, NULL
);
859 rtnl_register(PF_UNSPEC
, RTM_GETNSID
, rtnl_net_getid
, rtnl_net_dumpid
,
865 pure_initcall(net_ns_init
);
868 static int __register_pernet_operations(struct list_head
*list
,
869 struct pernet_operations
*ops
)
873 LIST_HEAD(net_exit_list
);
875 list_add_tail(&ops
->list
, list
);
876 if (ops
->init
|| (ops
->id
&& ops
->size
)) {
878 error
= ops_init(ops
, net
);
881 list_add_tail(&net
->exit_list
, &net_exit_list
);
887 /* If I have an error cleanup all namespaces I initialized */
888 list_del(&ops
->list
);
889 ops_exit_list(ops
, &net_exit_list
);
890 ops_free_list(ops
, &net_exit_list
);
894 static void __unregister_pernet_operations(struct pernet_operations
*ops
)
897 LIST_HEAD(net_exit_list
);
899 list_del(&ops
->list
);
901 list_add_tail(&net
->exit_list
, &net_exit_list
);
902 ops_exit_list(ops
, &net_exit_list
);
903 ops_free_list(ops
, &net_exit_list
);
908 static int __register_pernet_operations(struct list_head
*list
,
909 struct pernet_operations
*ops
)
911 if (!init_net_initialized
) {
912 list_add_tail(&ops
->list
, list
);
916 return ops_init(ops
, &init_net
);
919 static void __unregister_pernet_operations(struct pernet_operations
*ops
)
921 if (!init_net_initialized
) {
922 list_del(&ops
->list
);
924 LIST_HEAD(net_exit_list
);
925 list_add(&init_net
.exit_list
, &net_exit_list
);
926 ops_exit_list(ops
, &net_exit_list
);
927 ops_free_list(ops
, &net_exit_list
);
931 #endif /* CONFIG_NET_NS */
933 static DEFINE_IDA(net_generic_ids
);
935 static int register_pernet_operations(struct list_head
*list
,
936 struct pernet_operations
*ops
)
942 error
= ida_get_new_above(&net_generic_ids
, MIN_PERNET_OPS_ID
, ops
->id
);
944 if (error
== -EAGAIN
) {
945 ida_pre_get(&net_generic_ids
, GFP_KERNEL
);
950 max_gen_ptrs
= max(max_gen_ptrs
, *ops
->id
+ 1);
952 error
= __register_pernet_operations(list
, ops
);
956 ida_remove(&net_generic_ids
, *ops
->id
);
962 static void unregister_pernet_operations(struct pernet_operations
*ops
)
965 __unregister_pernet_operations(ops
);
968 ida_remove(&net_generic_ids
, *ops
->id
);
972 * register_pernet_subsys - register a network namespace subsystem
973 * @ops: pernet operations structure for the subsystem
975 * Register a subsystem which has init and exit functions
976 * that are called when network namespaces are created and
977 * destroyed respectively.
979 * When registered all network namespace init functions are
980 * called for every existing network namespace. Allowing kernel
981 * modules to have a race free view of the set of network namespaces.
983 * When a new network namespace is created all of the init
984 * methods are called in the order in which they were registered.
986 * When a network namespace is destroyed all of the exit methods
987 * are called in the reverse of the order with which they were
990 int register_pernet_subsys(struct pernet_operations
*ops
)
993 mutex_lock(&net_mutex
);
994 error
= register_pernet_operations(first_device
, ops
);
995 mutex_unlock(&net_mutex
);
998 EXPORT_SYMBOL_GPL(register_pernet_subsys
);
1001 * unregister_pernet_subsys - unregister a network namespace subsystem
1002 * @ops: pernet operations structure to manipulate
1004 * Remove the pernet operations structure from the list to be
1005 * used when network namespaces are created or destroyed. In
1006 * addition run the exit method for all existing network
1009 void unregister_pernet_subsys(struct pernet_operations
*ops
)
1011 mutex_lock(&net_mutex
);
1012 unregister_pernet_operations(ops
);
1013 mutex_unlock(&net_mutex
);
1015 EXPORT_SYMBOL_GPL(unregister_pernet_subsys
);
1018 * register_pernet_device - register a network namespace device
1019 * @ops: pernet operations structure for the subsystem
1021 * Register a device which has init and exit functions
1022 * that are called when network namespaces are created and
1023 * destroyed respectively.
1025 * When registered all network namespace init functions are
1026 * called for every existing network namespace. Allowing kernel
1027 * modules to have a race free view of the set of network namespaces.
1029 * When a new network namespace is created all of the init
1030 * methods are called in the order in which they were registered.
1032 * When a network namespace is destroyed all of the exit methods
1033 * are called in the reverse of the order with which they were
1036 int register_pernet_device(struct pernet_operations
*ops
)
1039 mutex_lock(&net_mutex
);
1040 error
= register_pernet_operations(&pernet_list
, ops
);
1041 if (!error
&& (first_device
== &pernet_list
))
1042 first_device
= &ops
->list
;
1043 mutex_unlock(&net_mutex
);
1046 EXPORT_SYMBOL_GPL(register_pernet_device
);
1049 * unregister_pernet_device - unregister a network namespace netdevice
1050 * @ops: pernet operations structure to manipulate
1052 * Remove the pernet operations structure from the list to be
1053 * used when network namespaces are created or destroyed. In
1054 * addition run the exit method for all existing network
1057 void unregister_pernet_device(struct pernet_operations
*ops
)
1059 mutex_lock(&net_mutex
);
1060 if (&ops
->list
== first_device
)
1061 first_device
= first_device
->next
;
1062 unregister_pernet_operations(ops
);
1063 mutex_unlock(&net_mutex
);
1065 EXPORT_SYMBOL_GPL(unregister_pernet_device
);
1067 #ifdef CONFIG_NET_NS
1068 static struct ns_common
*netns_get(struct task_struct
*task
)
1070 struct net
*net
= NULL
;
1071 struct nsproxy
*nsproxy
;
1074 nsproxy
= task
->nsproxy
;
1076 net
= get_net(nsproxy
->net_ns
);
1079 return net
? &net
->ns
: NULL
;
1082 static inline struct net
*to_net_ns(struct ns_common
*ns
)
1084 return container_of(ns
, struct net
, ns
);
1087 static void netns_put(struct ns_common
*ns
)
1089 put_net(to_net_ns(ns
));
1092 static int netns_install(struct nsproxy
*nsproxy
, struct ns_common
*ns
)
1094 struct net
*net
= to_net_ns(ns
);
1096 if (!ns_capable(net
->user_ns
, CAP_SYS_ADMIN
) ||
1097 !ns_capable(current_user_ns(), CAP_SYS_ADMIN
))
1100 put_net(nsproxy
->net_ns
);
1101 nsproxy
->net_ns
= get_net(net
);
1105 static struct user_namespace
*netns_owner(struct ns_common
*ns
)
1107 return to_net_ns(ns
)->user_ns
;
1110 const struct proc_ns_operations netns_operations
= {
1112 .type
= CLONE_NEWNET
,
1115 .install
= netns_install
,
1116 .owner
= netns_owner
,