Merge remote-tracking branch 'mfd/for-mfd-next'
[deliverable/linux.git] / net / core / net_namespace.c
CommitLineData
e005d193
JP
1#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
2
5f256bec
EB
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>
9dd776b6 9#include <linux/sched.h>
c93cf61f 10#include <linux/idr.h>
11a28d37 11#include <linux/rculist.h>
30ffee84 12#include <linux/nsproxy.h>
0bb80f24
DH
13#include <linux/fs.h>
14#include <linux/proc_ns.h>
f0630529 15#include <linux/file.h>
bc3b2d7f 16#include <linux/export.h>
038e7332 17#include <linux/user_namespace.h>
0c7aecd4 18#include <linux/net_namespace.h>
0c7aecd4
ND
19#include <net/sock.h>
20#include <net/netlink.h>
5f256bec 21#include <net/net_namespace.h>
dec827d1 22#include <net/netns/generic.h>
5f256bec
EB
23
24/*
25 * Our network namespace constructor/destructor lists
26 */
27
28static LIST_HEAD(pernet_list);
29static struct list_head *first_device = &pernet_list;
200b916f 30DEFINE_MUTEX(net_mutex);
5f256bec 31
5f256bec 32LIST_HEAD(net_namespace_list);
b76a461f 33EXPORT_SYMBOL_GPL(net_namespace_list);
5f256bec 34
734b6541
RM
35struct net init_net = {
36 .dev_base_head = LIST_HEAD_INIT(init_net.dev_base_head),
37};
ff4b9502 38EXPORT_SYMBOL(init_net);
5f256bec 39
f8c46cb3
DT
40static bool init_net_initialized;
41
dec827d1
PE
42#define INITIAL_NET_GEN_PTRS 13 /* +1 for len +2 for rcu_head */
43
073862ba
ED
44static unsigned int max_gen_ptrs = INITIAL_NET_GEN_PTRS;
45
46static struct net_generic *net_alloc_generic(void)
47{
48 struct net_generic *ng;
49 size_t generic_size = offsetof(struct net_generic, ptr[max_gen_ptrs]);
50
51 ng = kzalloc(generic_size, GFP_KERNEL);
52 if (ng)
53 ng->len = max_gen_ptrs;
54
55 return ng;
56}
57
05fceb4a
JP
58static int net_assign_generic(struct net *net, int id, void *data)
59{
60 struct net_generic *ng, *old_ng;
61
62 BUG_ON(!mutex_is_locked(&net_mutex));
63 BUG_ON(id == 0);
64
1c87733d
ED
65 old_ng = rcu_dereference_protected(net->gen,
66 lockdep_is_held(&net_mutex));
67 ng = old_ng;
05fceb4a
JP
68 if (old_ng->len >= id)
69 goto assign;
70
073862ba 71 ng = net_alloc_generic();
05fceb4a
JP
72 if (ng == NULL)
73 return -ENOMEM;
74
75 /*
76 * Some synchronisation notes:
77 *
78 * The net_generic explores the net->gen array inside rcu
79 * read section. Besides once set the net->gen->ptr[x]
80 * pointer never changes (see rules in netns/generic.h).
81 *
82 * That said, we simply duplicate this array and schedule
83 * the old copy for kfree after a grace period.
84 */
85
05fceb4a
JP
86 memcpy(&ng->ptr, &old_ng->ptr, old_ng->len * sizeof(void*));
87
88 rcu_assign_pointer(net->gen, ng);
04d4dfed 89 kfree_rcu(old_ng, rcu);
05fceb4a
JP
90assign:
91 ng->ptr[id - 1] = data;
92 return 0;
93}
94
f875bae0
EB
95static int ops_init(const struct pernet_operations *ops, struct net *net)
96{
b922934d
JA
97 int err = -ENOMEM;
98 void *data = NULL;
99
f875bae0 100 if (ops->id && ops->size) {
b922934d 101 data = kzalloc(ops->size, GFP_KERNEL);
f875bae0 102 if (!data)
b922934d 103 goto out;
f875bae0
EB
104
105 err = net_assign_generic(net, *ops->id, data);
b922934d
JA
106 if (err)
107 goto cleanup;
f875bae0 108 }
b922934d 109 err = 0;
f875bae0 110 if (ops->init)
b922934d
JA
111 err = ops->init(net);
112 if (!err)
113 return 0;
114
115cleanup:
116 kfree(data);
117
118out:
119 return err;
f875bae0
EB
120}
121
122static void ops_free(const struct pernet_operations *ops, struct net *net)
123{
124 if (ops->id && ops->size) {
125 int id = *ops->id;
126 kfree(net_generic(net, id));
127 }
128}
129
72ad937a
EB
130static void ops_exit_list(const struct pernet_operations *ops,
131 struct list_head *net_exit_list)
132{
133 struct net *net;
134 if (ops->exit) {
135 list_for_each_entry(net, net_exit_list, exit_list)
136 ops->exit(net);
137 }
72ad937a
EB
138 if (ops->exit_batch)
139 ops->exit_batch(net_exit_list);
140}
141
142static void ops_free_list(const struct pernet_operations *ops,
143 struct list_head *net_exit_list)
144{
145 struct net *net;
146 if (ops->size && ops->id) {
147 list_for_each_entry(net, net_exit_list, exit_list)
148 ops_free(ops, net);
149 }
150}
151
95f38411 152/* should be called with nsid_lock held */
0c7aecd4
ND
153static int alloc_netid(struct net *net, struct net *peer, int reqid)
154{
3138dbf8 155 int min = 0, max = 0;
0c7aecd4 156
0c7aecd4
ND
157 if (reqid >= 0) {
158 min = reqid;
159 max = reqid + 1;
160 }
161
95f38411 162 return idr_alloc(&net->netns_ids, peer, min, max, GFP_ATOMIC);
0c7aecd4
ND
163}
164
165/* This function is used by idr_for_each(). If net is equal to peer, the
166 * function returns the id so that idr_for_each() stops. Because we cannot
167 * returns the id 0 (idr_for_each() will not stop), we return the magic value
168 * NET_ID_ZERO (-1) for it.
169 */
170#define NET_ID_ZERO -1
171static int net_eq_idr(int id, void *net, void *peer)
172{
173 if (net_eq(net, peer))
174 return id ? : NET_ID_ZERO;
175 return 0;
176}
177
95f38411
ND
178/* Should be called with nsid_lock held. If a new id is assigned, the bool alloc
179 * is set to true, thus the caller knows that the new id must be notified via
180 * rtnl.
181 */
3138dbf8 182static int __peernet2id_alloc(struct net *net, struct net *peer, bool *alloc)
0c7aecd4
ND
183{
184 int id = idr_for_each(&net->netns_ids, net_eq_idr, peer);
3138dbf8 185 bool alloc_it = *alloc;
0c7aecd4 186
3138dbf8
ND
187 *alloc = false;
188
0c7aecd4
ND
189 /* Magic value for id 0. */
190 if (id == NET_ID_ZERO)
191 return 0;
192 if (id > 0)
193 return id;
194
3138dbf8 195 if (alloc_it) {
109582af 196 id = alloc_netid(net, peer, -1);
3138dbf8 197 *alloc = true;
109582af
ND
198 return id >= 0 ? id : NETNSA_NSID_NOT_ASSIGNED;
199 }
0c7aecd4 200
109582af 201 return NETNSA_NSID_NOT_ASSIGNED;
0c7aecd4
ND
202}
203
95f38411 204/* should be called with nsid_lock held */
3138dbf8
ND
205static int __peernet2id(struct net *net, struct net *peer)
206{
207 bool no = false;
208
209 return __peernet2id_alloc(net, peer, &no);
210}
211
212static void rtnl_net_notifyid(struct net *net, int cmd, int id);
0c7aecd4
ND
213/* This function returns the id of a peer netns. If no id is assigned, one will
214 * be allocated and returned.
215 */
7a0877d4 216int peernet2id_alloc(struct net *net, struct net *peer)
0c7aecd4 217{
95f38411 218 bool alloc;
3138dbf8 219 int id;
0c7aecd4 220
bc51dddf 221 spin_lock_bh(&net->nsid_lock);
95f38411 222 alloc = atomic_read(&peer->count) == 0 ? false : true;
3138dbf8 223 id = __peernet2id_alloc(net, peer, &alloc);
bc51dddf 224 spin_unlock_bh(&net->nsid_lock);
3138dbf8
ND
225 if (alloc && id >= 0)
226 rtnl_net_notifyid(net, RTM_NEWNSID, id);
227 return id;
0c7aecd4
ND
228}
229
95f38411 230/* This function returns, if assigned, the id of a peer netns. */
59324cf3 231int peernet2id(struct net *net, struct net *peer)
95f38411 232{
95f38411
ND
233 int id;
234
bc51dddf 235 spin_lock_bh(&net->nsid_lock);
95f38411 236 id = __peernet2id(net, peer);
bc51dddf 237 spin_unlock_bh(&net->nsid_lock);
95f38411
ND
238 return id;
239}
38f507f1 240EXPORT_SYMBOL(peernet2id);
95f38411 241
59324cf3
ND
242/* This function returns true is the peer netns has an id assigned into the
243 * current netns.
244 */
245bool peernet_has_id(struct net *net, struct net *peer)
246{
247 return peernet2id(net, peer) >= 0;
248}
249
0c7aecd4
ND
250struct net *get_net_ns_by_id(struct net *net, int id)
251{
252 struct net *peer;
253
254 if (id < 0)
255 return NULL;
256
257 rcu_read_lock();
bc51dddf 258 spin_lock_bh(&net->nsid_lock);
0c7aecd4
ND
259 peer = idr_find(&net->netns_ids, id);
260 if (peer)
261 get_net(peer);
bc51dddf 262 spin_unlock_bh(&net->nsid_lock);
0c7aecd4
ND
263 rcu_read_unlock();
264
265 return peer;
266}
267
5f256bec
EB
268/*
269 * setup_net runs the initializers for the network namespace object.
270 */
038e7332 271static __net_init int setup_net(struct net *net, struct user_namespace *user_ns)
5f256bec
EB
272{
273 /* Must be called with net_mutex held */
f875bae0 274 const struct pernet_operations *ops, *saved_ops;
486a87f1 275 int error = 0;
72ad937a 276 LIST_HEAD(net_exit_list);
5f256bec 277
5f256bec 278 atomic_set(&net->count, 1);
a685e089 279 atomic_set(&net->passive, 1);
4e985ada 280 net->dev_base_seq = 1;
038e7332 281 net->user_ns = user_ns;
0c7aecd4 282 idr_init(&net->netns_ids);
de133464 283 spin_lock_init(&net->nsid_lock);
486a87f1 284
768f3591 285 list_for_each_entry(ops, &pernet_list, list) {
f875bae0
EB
286 error = ops_init(ops, net);
287 if (error < 0)
288 goto out_undo;
5f256bec
EB
289 }
290out:
291 return error;
768f3591 292
5f256bec
EB
293out_undo:
294 /* Walk through the list backwards calling the exit functions
295 * for the pernet modules whose init functions did not fail.
296 */
72ad937a 297 list_add(&net->exit_list, &net_exit_list);
f875bae0 298 saved_ops = ops;
72ad937a
EB
299 list_for_each_entry_continue_reverse(ops, &pernet_list, list)
300 ops_exit_list(ops, &net_exit_list);
301
f875bae0
EB
302 ops = saved_ops;
303 list_for_each_entry_continue_reverse(ops, &pernet_list, list)
72ad937a 304 ops_free_list(ops, &net_exit_list);
310928d9
DL
305
306 rcu_barrier();
5f256bec
EB
307 goto out;
308}
309
6a1a3b9f 310
ebe47d47
CN
311#ifdef CONFIG_NET_NS
312static struct kmem_cache *net_cachep;
313static struct workqueue_struct *netns_wq;
314
486a87f1 315static struct net *net_alloc(void)
45a19b0a 316{
486a87f1
DL
317 struct net *net = NULL;
318 struct net_generic *ng;
319
320 ng = net_alloc_generic();
321 if (!ng)
322 goto out;
323
324 net = kmem_cache_zalloc(net_cachep, GFP_KERNEL);
45a19b0a 325 if (!net)
486a87f1 326 goto out_free;
45a19b0a 327
486a87f1
DL
328 rcu_assign_pointer(net->gen, ng);
329out:
330 return net;
331
332out_free:
333 kfree(ng);
334 goto out;
335}
336
337static void net_free(struct net *net)
338{
416c51e1 339 kfree(rcu_access_pointer(net->gen));
45a19b0a
JFS
340 kmem_cache_free(net_cachep, net);
341}
342
a685e089
AV
343void net_drop_ns(void *p)
344{
345 struct net *ns = p;
346 if (ns && atomic_dec_and_test(&ns->passive))
347 net_free(ns);
348}
349
038e7332
EB
350struct net *copy_net_ns(unsigned long flags,
351 struct user_namespace *user_ns, struct net *old_net)
9dd776b6 352{
088eb2d9
AD
353 struct net *net;
354 int rv;
9dd776b6 355
911cb193
RL
356 if (!(flags & CLONE_NEWNET))
357 return get_net(old_net);
358
088eb2d9
AD
359 net = net_alloc();
360 if (!net)
361 return ERR_PTR(-ENOMEM);
038e7332
EB
362
363 get_user_ns(user_ns);
364
9dd776b6 365 mutex_lock(&net_mutex);
038e7332 366 rv = setup_net(net, user_ns);
088eb2d9 367 if (rv == 0) {
486a87f1 368 rtnl_lock();
11a28d37 369 list_add_tail_rcu(&net->list, &net_namespace_list);
486a87f1
DL
370 rtnl_unlock();
371 }
9dd776b6 372 mutex_unlock(&net_mutex);
088eb2d9 373 if (rv < 0) {
038e7332 374 put_user_ns(user_ns);
a685e089 375 net_drop_ns(net);
088eb2d9
AD
376 return ERR_PTR(rv);
377 }
378 return net;
379}
486a87f1 380
2b035b39
EB
381static DEFINE_SPINLOCK(cleanup_list_lock);
382static LIST_HEAD(cleanup_list); /* Must hold cleanup_list_lock to touch */
383
6a1a3b9f
PE
384static void cleanup_net(struct work_struct *work)
385{
f875bae0 386 const struct pernet_operations *ops;
6d458f5b 387 struct net *net, *tmp;
1818ce4d 388 struct list_head net_kill_list;
72ad937a 389 LIST_HEAD(net_exit_list);
6a1a3b9f 390
2b035b39
EB
391 /* Atomically snapshot the list of namespaces to cleanup */
392 spin_lock_irq(&cleanup_list_lock);
393 list_replace_init(&cleanup_list, &net_kill_list);
394 spin_unlock_irq(&cleanup_list_lock);
6a1a3b9f
PE
395
396 mutex_lock(&net_mutex);
397
398 /* Don't let anyone else find us. */
399 rtnl_lock();
72ad937a 400 list_for_each_entry(net, &net_kill_list, cleanup_list) {
2b035b39 401 list_del_rcu(&net->list);
72ad937a 402 list_add_tail(&net->exit_list, &net_exit_list);
6d458f5b 403 for_each_net(tmp) {
95f38411 404 int id;
6d458f5b 405
bc51dddf 406 spin_lock_bh(&tmp->nsid_lock);
95f38411
ND
407 id = __peernet2id(tmp, net);
408 if (id >= 0)
6d458f5b 409 idr_remove(&tmp->netns_ids, id);
bc51dddf 410 spin_unlock_bh(&tmp->nsid_lock);
95f38411
ND
411 if (id >= 0)
412 rtnl_net_notifyid(tmp, RTM_DELNSID, id);
6d458f5b 413 }
bc51dddf 414 spin_lock_bh(&net->nsid_lock);
6d458f5b 415 idr_destroy(&net->netns_ids);
bc51dddf 416 spin_unlock_bh(&net->nsid_lock);
6d458f5b 417
72ad937a 418 }
6a1a3b9f
PE
419 rtnl_unlock();
420
11a28d37
JB
421 /*
422 * Another CPU might be rcu-iterating the list, wait for it.
423 * This needs to be before calling the exit() notifiers, so
424 * the rcu_barrier() below isn't sufficient alone.
425 */
426 synchronize_rcu();
427
6a1a3b9f 428 /* Run all of the network namespace exit methods */
72ad937a
EB
429 list_for_each_entry_reverse(ops, &pernet_list, list)
430 ops_exit_list(ops, &net_exit_list);
431
f875bae0 432 /* Free the net generic variables */
72ad937a
EB
433 list_for_each_entry_reverse(ops, &pernet_list, list)
434 ops_free_list(ops, &net_exit_list);
6a1a3b9f
PE
435
436 mutex_unlock(&net_mutex);
437
438 /* Ensure there are no outstanding rcu callbacks using this
439 * network namespace.
440 */
441 rcu_barrier();
442
443 /* Finally it is safe to free my network namespace structure */
72ad937a
EB
444 list_for_each_entry_safe(net, tmp, &net_exit_list, exit_list) {
445 list_del_init(&net->exit_list);
038e7332 446 put_user_ns(net->user_ns);
a685e089 447 net_drop_ns(net);
2b035b39 448 }
6a1a3b9f 449}
2b035b39 450static DECLARE_WORK(net_cleanup_work, cleanup_net);
6a1a3b9f
PE
451
452void __put_net(struct net *net)
453{
454 /* Cleanup the network namespace in process context */
2b035b39
EB
455 unsigned long flags;
456
457 spin_lock_irqsave(&cleanup_list_lock, flags);
458 list_add(&net->cleanup_list, &cleanup_list);
459 spin_unlock_irqrestore(&cleanup_list_lock, flags);
460
461 queue_work(netns_wq, &net_cleanup_work);
6a1a3b9f
PE
462}
463EXPORT_SYMBOL_GPL(__put_net);
464
956c9207
SR
465struct net *get_net_ns_by_fd(int fd)
466{
956c9207 467 struct file *file;
33c42940 468 struct ns_common *ns;
956c9207
SR
469 struct net *net;
470
956c9207 471 file = proc_ns_fget(fd);
c316e6a3
AV
472 if (IS_ERR(file))
473 return ERR_CAST(file);
956c9207 474
f77c8014 475 ns = get_proc_ns(file_inode(file));
33c42940
AV
476 if (ns->ops == &netns_operations)
477 net = get_net(container_of(ns, struct net, ns));
c316e6a3
AV
478 else
479 net = ERR_PTR(-EINVAL);
956c9207 480
c316e6a3 481 fput(file);
956c9207
SR
482 return net;
483}
484
6a1a3b9f 485#else
956c9207
SR
486struct net *get_net_ns_by_fd(int fd)
487{
488 return ERR_PTR(-EINVAL);
489}
6a1a3b9f 490#endif
4b681c82 491EXPORT_SYMBOL_GPL(get_net_ns_by_fd);
6a1a3b9f 492
30ffee84
JB
493struct net *get_net_ns_by_pid(pid_t pid)
494{
495 struct task_struct *tsk;
496 struct net *net;
497
498 /* Lookup the network namespace */
499 net = ERR_PTR(-ESRCH);
500 rcu_read_lock();
501 tsk = find_task_by_vpid(pid);
502 if (tsk) {
503 struct nsproxy *nsproxy;
728dba3a
EB
504 task_lock(tsk);
505 nsproxy = tsk->nsproxy;
30ffee84
JB
506 if (nsproxy)
507 net = get_net(nsproxy->net_ns);
728dba3a 508 task_unlock(tsk);
30ffee84
JB
509 }
510 rcu_read_unlock();
511 return net;
512}
513EXPORT_SYMBOL_GPL(get_net_ns_by_pid);
514
98f842e6
EB
515static __net_init int net_ns_net_init(struct net *net)
516{
33c42940
AV
517#ifdef CONFIG_NET_NS
518 net->ns.ops = &netns_operations;
519#endif
6344c433 520 return ns_alloc_inum(&net->ns);
98f842e6
EB
521}
522
523static __net_exit void net_ns_net_exit(struct net *net)
524{
6344c433 525 ns_free_inum(&net->ns);
98f842e6
EB
526}
527
528static struct pernet_operations __net_initdata net_ns_ops = {
529 .init = net_ns_net_init,
530 .exit = net_ns_net_exit,
531};
532
3ee5256d 533static const struct nla_policy rtnl_net_policy[NETNSA_MAX + 1] = {
0c7aecd4
ND
534 [NETNSA_NONE] = { .type = NLA_UNSPEC },
535 [NETNSA_NSID] = { .type = NLA_S32 },
536 [NETNSA_PID] = { .type = NLA_U32 },
537 [NETNSA_FD] = { .type = NLA_U32 },
538};
539
540static int rtnl_net_newid(struct sk_buff *skb, struct nlmsghdr *nlh)
541{
542 struct net *net = sock_net(skb->sk);
543 struct nlattr *tb[NETNSA_MAX + 1];
544 struct net *peer;
545 int nsid, err;
546
547 err = nlmsg_parse(nlh, sizeof(struct rtgenmsg), tb, NETNSA_MAX,
548 rtnl_net_policy);
549 if (err < 0)
550 return err;
551 if (!tb[NETNSA_NSID])
552 return -EINVAL;
553 nsid = nla_get_s32(tb[NETNSA_NSID]);
554
555 if (tb[NETNSA_PID])
556 peer = get_net_ns_by_pid(nla_get_u32(tb[NETNSA_PID]));
557 else if (tb[NETNSA_FD])
558 peer = get_net_ns_by_fd(nla_get_u32(tb[NETNSA_FD]));
559 else
560 return -EINVAL;
561 if (IS_ERR(peer))
562 return PTR_ERR(peer);
563
bc51dddf 564 spin_lock_bh(&net->nsid_lock);
3138dbf8 565 if (__peernet2id(net, peer) >= 0) {
bc51dddf 566 spin_unlock_bh(&net->nsid_lock);
0c7aecd4
ND
567 err = -EEXIST;
568 goto out;
569 }
570
571 err = alloc_netid(net, peer, nsid);
bc51dddf 572 spin_unlock_bh(&net->nsid_lock);
3138dbf8
ND
573 if (err >= 0) {
574 rtnl_net_notifyid(net, RTM_NEWNSID, err);
0c7aecd4 575 err = 0;
3138dbf8 576 }
0c7aecd4
ND
577out:
578 put_net(peer);
579 return err;
580}
581
582static int rtnl_net_get_size(void)
583{
584 return NLMSG_ALIGN(sizeof(struct rtgenmsg))
585 + nla_total_size(sizeof(s32)) /* NETNSA_NSID */
586 ;
587}
588
589static int rtnl_net_fill(struct sk_buff *skb, u32 portid, u32 seq, int flags,
cab3c8ec 590 int cmd, struct net *net, int nsid)
0c7aecd4
ND
591{
592 struct nlmsghdr *nlh;
593 struct rtgenmsg *rth;
0c7aecd4
ND
594
595 nlh = nlmsg_put(skb, portid, seq, cmd, sizeof(*rth), flags);
596 if (!nlh)
597 return -EMSGSIZE;
598
599 rth = nlmsg_data(nlh);
600 rth->rtgen_family = AF_UNSPEC;
601
cab3c8ec 602 if (nla_put_s32(skb, NETNSA_NSID, nsid))
0c7aecd4
ND
603 goto nla_put_failure;
604
605 nlmsg_end(skb, nlh);
606 return 0;
607
608nla_put_failure:
609 nlmsg_cancel(skb, nlh);
610 return -EMSGSIZE;
611}
612
613static int rtnl_net_getid(struct sk_buff *skb, struct nlmsghdr *nlh)
614{
615 struct net *net = sock_net(skb->sk);
616 struct nlattr *tb[NETNSA_MAX + 1];
617 struct sk_buff *msg;
0c7aecd4 618 struct net *peer;
cab3c8ec 619 int err, id;
0c7aecd4
ND
620
621 err = nlmsg_parse(nlh, sizeof(struct rtgenmsg), tb, NETNSA_MAX,
622 rtnl_net_policy);
623 if (err < 0)
624 return err;
625 if (tb[NETNSA_PID])
626 peer = get_net_ns_by_pid(nla_get_u32(tb[NETNSA_PID]));
627 else if (tb[NETNSA_FD])
628 peer = get_net_ns_by_fd(nla_get_u32(tb[NETNSA_FD]));
629 else
630 return -EINVAL;
631
632 if (IS_ERR(peer))
633 return PTR_ERR(peer);
634
635 msg = nlmsg_new(rtnl_net_get_size(), GFP_KERNEL);
636 if (!msg) {
637 err = -ENOMEM;
638 goto out;
639 }
640
95f38411 641 id = peernet2id(net, peer);
0c7aecd4 642 err = rtnl_net_fill(msg, NETLINK_CB(skb).portid, nlh->nlmsg_seq, 0,
b04096ff 643 RTM_NEWNSID, net, id);
0c7aecd4
ND
644 if (err < 0)
645 goto err_out;
646
647 err = rtnl_unicast(msg, net, NETLINK_CB(skb).portid);
648 goto out;
649
650err_out:
651 nlmsg_free(msg);
652out:
653 put_net(peer);
654 return err;
655}
656
a143c40c
ND
657struct rtnl_net_dump_cb {
658 struct net *net;
659 struct sk_buff *skb;
660 struct netlink_callback *cb;
661 int idx;
662 int s_idx;
663};
664
665static int rtnl_net_dumpid_one(int id, void *peer, void *data)
666{
667 struct rtnl_net_dump_cb *net_cb = (struct rtnl_net_dump_cb *)data;
668 int ret;
669
670 if (net_cb->idx < net_cb->s_idx)
671 goto cont;
672
673 ret = rtnl_net_fill(net_cb->skb, NETLINK_CB(net_cb->cb->skb).portid,
674 net_cb->cb->nlh->nlmsg_seq, NLM_F_MULTI,
cab3c8ec 675 RTM_NEWNSID, net_cb->net, id);
a143c40c
ND
676 if (ret < 0)
677 return ret;
678
679cont:
680 net_cb->idx++;
681 return 0;
682}
683
684static int rtnl_net_dumpid(struct sk_buff *skb, struct netlink_callback *cb)
685{
686 struct net *net = sock_net(skb->sk);
687 struct rtnl_net_dump_cb net_cb = {
688 .net = net,
689 .skb = skb,
690 .cb = cb,
691 .idx = 0,
692 .s_idx = cb->args[0],
693 };
694
bc51dddf 695 spin_lock_bh(&net->nsid_lock);
a143c40c 696 idr_for_each(&net->netns_ids, rtnl_net_dumpid_one, &net_cb);
bc51dddf 697 spin_unlock_bh(&net->nsid_lock);
a143c40c
ND
698
699 cb->args[0] = net_cb.idx;
700 return skb->len;
701}
702
cab3c8ec 703static void rtnl_net_notifyid(struct net *net, int cmd, int id)
9a963454
ND
704{
705 struct sk_buff *msg;
706 int err = -ENOMEM;
707
708 msg = nlmsg_new(rtnl_net_get_size(), GFP_KERNEL);
709 if (!msg)
710 goto out;
711
cab3c8ec 712 err = rtnl_net_fill(msg, 0, 0, 0, cmd, net, id);
9a963454
ND
713 if (err < 0)
714 goto err_out;
715
716 rtnl_notify(msg, net, 0, RTNLGRP_NSID, NULL, 0);
717 return;
718
719err_out:
720 nlmsg_free(msg);
721out:
722 rtnl_set_sk_err(net, RTNLGRP_NSID, err);
723}
724
5f256bec
EB
725static int __init net_ns_init(void)
726{
486a87f1 727 struct net_generic *ng;
5f256bec 728
d57a9212 729#ifdef CONFIG_NET_NS
5f256bec
EB
730 net_cachep = kmem_cache_create("net_namespace", sizeof(struct net),
731 SMP_CACHE_BYTES,
732 SLAB_PANIC, NULL);
3ef1355d
BT
733
734 /* Create workqueue for cleanup */
735 netns_wq = create_singlethread_workqueue("netns");
736 if (!netns_wq)
737 panic("Could not create netns workq");
d57a9212 738#endif
3ef1355d 739
486a87f1
DL
740 ng = net_alloc_generic();
741 if (!ng)
742 panic("Could not allocate generic netns");
743
744 rcu_assign_pointer(init_net.gen, ng);
745
5f256bec 746 mutex_lock(&net_mutex);
038e7332 747 if (setup_net(&init_net, &init_user_ns))
ca0f3112 748 panic("Could not setup the initial network namespace");
5f256bec 749
f8c46cb3
DT
750 init_net_initialized = true;
751
f4618d39 752 rtnl_lock();
11a28d37 753 list_add_tail_rcu(&init_net.list, &net_namespace_list);
f4618d39 754 rtnl_unlock();
5f256bec
EB
755
756 mutex_unlock(&net_mutex);
5f256bec 757
98f842e6
EB
758 register_pernet_subsys(&net_ns_ops);
759
0c7aecd4 760 rtnl_register(PF_UNSPEC, RTM_NEWNSID, rtnl_net_newid, NULL, NULL);
a143c40c
ND
761 rtnl_register(PF_UNSPEC, RTM_GETNSID, rtnl_net_getid, rtnl_net_dumpid,
762 NULL);
0c7aecd4 763
5f256bec
EB
764 return 0;
765}
766
767pure_initcall(net_ns_init);
768
ed160e83 769#ifdef CONFIG_NET_NS
f875bae0
EB
770static int __register_pernet_operations(struct list_head *list,
771 struct pernet_operations *ops)
5f256bec 772{
72ad937a 773 struct net *net;
5f256bec 774 int error;
72ad937a 775 LIST_HEAD(net_exit_list);
5f256bec 776
5f256bec 777 list_add_tail(&ops->list, list);
f875bae0 778 if (ops->init || (ops->id && ops->size)) {
1dba323b 779 for_each_net(net) {
f875bae0 780 error = ops_init(ops, net);
5f256bec
EB
781 if (error)
782 goto out_undo;
72ad937a 783 list_add_tail(&net->exit_list, &net_exit_list);
5f256bec
EB
784 }
785 }
1dba323b 786 return 0;
5f256bec
EB
787
788out_undo:
789 /* If I have an error cleanup all namespaces I initialized */
790 list_del(&ops->list);
72ad937a
EB
791 ops_exit_list(ops, &net_exit_list);
792 ops_free_list(ops, &net_exit_list);
1dba323b 793 return error;
5f256bec
EB
794}
795
f875bae0 796static void __unregister_pernet_operations(struct pernet_operations *ops)
5f256bec
EB
797{
798 struct net *net;
72ad937a 799 LIST_HEAD(net_exit_list);
5f256bec
EB
800
801 list_del(&ops->list);
72ad937a
EB
802 for_each_net(net)
803 list_add_tail(&net->exit_list, &net_exit_list);
804 ops_exit_list(ops, &net_exit_list);
805 ops_free_list(ops, &net_exit_list);
5f256bec
EB
806}
807
ed160e83
DL
808#else
809
f875bae0
EB
810static int __register_pernet_operations(struct list_head *list,
811 struct pernet_operations *ops)
ed160e83 812{
f8c46cb3
DT
813 if (!init_net_initialized) {
814 list_add_tail(&ops->list, list);
815 return 0;
816 }
817
b922934d 818 return ops_init(ops, &init_net);
ed160e83
DL
819}
820
f875bae0 821static void __unregister_pernet_operations(struct pernet_operations *ops)
ed160e83 822{
f8c46cb3
DT
823 if (!init_net_initialized) {
824 list_del(&ops->list);
825 } else {
826 LIST_HEAD(net_exit_list);
827 list_add(&init_net.exit_list, &net_exit_list);
828 ops_exit_list(ops, &net_exit_list);
829 ops_free_list(ops, &net_exit_list);
830 }
ed160e83 831}
f875bae0
EB
832
833#endif /* CONFIG_NET_NS */
ed160e83 834
c93cf61f
PE
835static DEFINE_IDA(net_generic_ids);
836
f875bae0
EB
837static int register_pernet_operations(struct list_head *list,
838 struct pernet_operations *ops)
839{
840 int error;
841
842 if (ops->id) {
843again:
844 error = ida_get_new_above(&net_generic_ids, 1, ops->id);
845 if (error < 0) {
846 if (error == -EAGAIN) {
847 ida_pre_get(&net_generic_ids, GFP_KERNEL);
848 goto again;
849 }
850 return error;
851 }
073862ba 852 max_gen_ptrs = max_t(unsigned int, max_gen_ptrs, *ops->id);
f875bae0
EB
853 }
854 error = __register_pernet_operations(list, ops);
3a765eda
EB
855 if (error) {
856 rcu_barrier();
857 if (ops->id)
858 ida_remove(&net_generic_ids, *ops->id);
859 }
f875bae0
EB
860
861 return error;
862}
863
864static void unregister_pernet_operations(struct pernet_operations *ops)
865{
866
867 __unregister_pernet_operations(ops);
3a765eda 868 rcu_barrier();
f875bae0
EB
869 if (ops->id)
870 ida_remove(&net_generic_ids, *ops->id);
871}
872
5f256bec
EB
873/**
874 * register_pernet_subsys - register a network namespace subsystem
875 * @ops: pernet operations structure for the subsystem
876 *
877 * Register a subsystem which has init and exit functions
878 * that are called when network namespaces are created and
879 * destroyed respectively.
880 *
881 * When registered all network namespace init functions are
882 * called for every existing network namespace. Allowing kernel
883 * modules to have a race free view of the set of network namespaces.
884 *
885 * When a new network namespace is created all of the init
886 * methods are called in the order in which they were registered.
887 *
888 * When a network namespace is destroyed all of the exit methods
889 * are called in the reverse of the order with which they were
890 * registered.
891 */
892int register_pernet_subsys(struct pernet_operations *ops)
893{
894 int error;
895 mutex_lock(&net_mutex);
896 error = register_pernet_operations(first_device, ops);
897 mutex_unlock(&net_mutex);
898 return error;
899}
900EXPORT_SYMBOL_GPL(register_pernet_subsys);
901
902/**
903 * unregister_pernet_subsys - unregister a network namespace subsystem
904 * @ops: pernet operations structure to manipulate
905 *
906 * Remove the pernet operations structure from the list to be
53379e57 907 * used when network namespaces are created or destroyed. In
5f256bec
EB
908 * addition run the exit method for all existing network
909 * namespaces.
910 */
b3c981d2 911void unregister_pernet_subsys(struct pernet_operations *ops)
5f256bec
EB
912{
913 mutex_lock(&net_mutex);
b3c981d2 914 unregister_pernet_operations(ops);
5f256bec
EB
915 mutex_unlock(&net_mutex);
916}
917EXPORT_SYMBOL_GPL(unregister_pernet_subsys);
918
919/**
920 * register_pernet_device - register a network namespace device
921 * @ops: pernet operations structure for the subsystem
922 *
923 * Register a device which has init and exit functions
924 * that are called when network namespaces are created and
925 * destroyed respectively.
926 *
927 * When registered all network namespace init functions are
928 * called for every existing network namespace. Allowing kernel
929 * modules to have a race free view of the set of network namespaces.
930 *
931 * When a new network namespace is created all of the init
932 * methods are called in the order in which they were registered.
933 *
934 * When a network namespace is destroyed all of the exit methods
935 * are called in the reverse of the order with which they were
936 * registered.
937 */
938int register_pernet_device(struct pernet_operations *ops)
939{
940 int error;
941 mutex_lock(&net_mutex);
942 error = register_pernet_operations(&pernet_list, ops);
943 if (!error && (first_device == &pernet_list))
944 first_device = &ops->list;
945 mutex_unlock(&net_mutex);
946 return error;
947}
948EXPORT_SYMBOL_GPL(register_pernet_device);
949
950/**
951 * unregister_pernet_device - unregister a network namespace netdevice
952 * @ops: pernet operations structure to manipulate
953 *
954 * Remove the pernet operations structure from the list to be
53379e57 955 * used when network namespaces are created or destroyed. In
5f256bec
EB
956 * addition run the exit method for all existing network
957 * namespaces.
958 */
959void unregister_pernet_device(struct pernet_operations *ops)
960{
961 mutex_lock(&net_mutex);
962 if (&ops->list == first_device)
963 first_device = first_device->next;
964 unregister_pernet_operations(ops);
965 mutex_unlock(&net_mutex);
966}
967EXPORT_SYMBOL_GPL(unregister_pernet_device);
13b6f576
EB
968
969#ifdef CONFIG_NET_NS
64964528 970static struct ns_common *netns_get(struct task_struct *task)
13b6f576 971{
f0630529
EB
972 struct net *net = NULL;
973 struct nsproxy *nsproxy;
974
728dba3a
EB
975 task_lock(task);
976 nsproxy = task->nsproxy;
f0630529
EB
977 if (nsproxy)
978 net = get_net(nsproxy->net_ns);
728dba3a 979 task_unlock(task);
f0630529 980
ff24870f
AV
981 return net ? &net->ns : NULL;
982}
983
984static inline struct net *to_net_ns(struct ns_common *ns)
985{
986 return container_of(ns, struct net, ns);
13b6f576
EB
987}
988
64964528 989static void netns_put(struct ns_common *ns)
13b6f576 990{
ff24870f 991 put_net(to_net_ns(ns));
13b6f576
EB
992}
993
64964528 994static int netns_install(struct nsproxy *nsproxy, struct ns_common *ns)
13b6f576 995{
ff24870f 996 struct net *net = to_net_ns(ns);
142e1d1d 997
5e4a0847 998 if (!ns_capable(net->user_ns, CAP_SYS_ADMIN) ||
c7b96acf 999 !ns_capable(current_user_ns(), CAP_SYS_ADMIN))
142e1d1d
EB
1000 return -EPERM;
1001
13b6f576 1002 put_net(nsproxy->net_ns);
142e1d1d 1003 nsproxy->net_ns = get_net(net);
13b6f576
EB
1004 return 0;
1005}
1006
1007const struct proc_ns_operations netns_operations = {
1008 .name = "net",
1009 .type = CLONE_NEWNET,
1010 .get = netns_get,
1011 .put = netns_put,
1012 .install = netns_install,
1013};
1014#endif
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