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1 // SPDX-License-Identifier: GPL-2.0-only
2 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
3 
4 #include <linux/workqueue.h>
5 #include <linux/rtnetlink.h>
6 #include <linux/cache.h>
7 #include <linux/slab.h>
8 #include <linux/list.h>
9 #include <linux/delay.h>
10 #include <linux/sched.h>
11 #include <linux/idr.h>
12 #include <linux/rculist.h>
13 #include <linux/nsproxy.h>
14 #include <linux/fs.h>
15 #include <linux/proc_ns.h>
16 #include <linux/file.h>
17 #include <linux/export.h>
18 #include <linux/user_namespace.h>
19 #include <linux/net_namespace.h>
20 #include <linux/sched/task.h>
21 #include <linux/uidgid.h>
22 #include <linux/cookie.h>
23 
24 #include <net/sock.h>
25 #include <net/netlink.h>
26 #include <net/net_namespace.h>
27 #include <net/netns/generic.h>
28 
29 /*
30  *	Our network namespace constructor/destructor lists
31  */
32 
33 static LIST_HEAD(pernet_list);
34 static struct list_head *first_device = &pernet_list;
35 
36 LIST_HEAD(net_namespace_list);
37 EXPORT_SYMBOL_GPL(net_namespace_list);
38 
39 /* Protects net_namespace_list. Nests iside rtnl_lock() */
40 DECLARE_RWSEM(net_rwsem);
41 EXPORT_SYMBOL_GPL(net_rwsem);
42 
43 #ifdef CONFIG_KEYS
44 static struct key_tag init_net_key_domain = { .usage = REFCOUNT_INIT(1) };
45 #endif
46 
47 struct net init_net = {
48 	.count		= REFCOUNT_INIT(1),
49 	.dev_base_head	= LIST_HEAD_INIT(init_net.dev_base_head),
50 #ifdef CONFIG_KEYS
51 	.key_domain	= &init_net_key_domain,
52 #endif
53 };
54 EXPORT_SYMBOL(init_net);
55 
56 static bool init_net_initialized;
57 /*
58  * pernet_ops_rwsem: protects: pernet_list, net_generic_ids,
59  * init_net_initialized and first_device pointer.
60  * This is internal net namespace object. Please, don't use it
61  * outside.
62  */
63 DECLARE_RWSEM(pernet_ops_rwsem);
64 EXPORT_SYMBOL_GPL(pernet_ops_rwsem);
65 
66 #define MIN_PERNET_OPS_ID	\
67 	((sizeof(struct net_generic) + sizeof(void *) - 1) / sizeof(void *))
68 
69 #define INITIAL_NET_GEN_PTRS	13 /* +1 for len +2 for rcu_head */
70 
71 static unsigned int max_gen_ptrs = INITIAL_NET_GEN_PTRS;
72 
73 DEFINE_COOKIE(net_cookie);
74 
__net_gen_cookie(struct net * net)75 u64 __net_gen_cookie(struct net *net)
76 {
77 	while (1) {
78 		u64 res = atomic64_read(&net->net_cookie);
79 
80 		if (res)
81 			return res;
82 		res = gen_cookie_next(&net_cookie);
83 		atomic64_cmpxchg(&net->net_cookie, 0, res);
84 	}
85 }
86 
net_alloc_generic(void)87 static struct net_generic *net_alloc_generic(void)
88 {
89 	unsigned int gen_ptrs = READ_ONCE(max_gen_ptrs);
90 	unsigned int generic_size;
91 	struct net_generic *ng;
92 
93 	generic_size = offsetof(struct net_generic, ptr[gen_ptrs]);
94 
95 	ng = kzalloc(generic_size, GFP_KERNEL);
96 	if (ng)
97 		ng->s.len = gen_ptrs;
98 
99 	return ng;
100 }
101 
net_assign_generic(struct net * net,unsigned int id,void * data)102 static int net_assign_generic(struct net *net, unsigned int id, void *data)
103 {
104 	struct net_generic *ng, *old_ng;
105 
106 	BUG_ON(id < MIN_PERNET_OPS_ID);
107 
108 	old_ng = rcu_dereference_protected(net->gen,
109 					   lockdep_is_held(&pernet_ops_rwsem));
110 	if (old_ng->s.len > id) {
111 		old_ng->ptr[id] = data;
112 		return 0;
113 	}
114 
115 	ng = net_alloc_generic();
116 	if (ng == NULL)
117 		return -ENOMEM;
118 
119 	/*
120 	 * Some synchronisation notes:
121 	 *
122 	 * The net_generic explores the net->gen array inside rcu
123 	 * read section. Besides once set the net->gen->ptr[x]
124 	 * pointer never changes (see rules in netns/generic.h).
125 	 *
126 	 * That said, we simply duplicate this array and schedule
127 	 * the old copy for kfree after a grace period.
128 	 */
129 
130 	memcpy(&ng->ptr[MIN_PERNET_OPS_ID], &old_ng->ptr[MIN_PERNET_OPS_ID],
131 	       (old_ng->s.len - MIN_PERNET_OPS_ID) * sizeof(void *));
132 	ng->ptr[id] = data;
133 
134 	rcu_assign_pointer(net->gen, ng);
135 	kfree_rcu(old_ng, s.rcu);
136 	return 0;
137 }
138 
ops_init(const struct pernet_operations * ops,struct net * net)139 static int ops_init(const struct pernet_operations *ops, struct net *net)
140 {
141 	struct net_generic *ng;
142 	int err = -ENOMEM;
143 	void *data = NULL;
144 
145 	if (ops->id && ops->size) {
146 		data = kzalloc(ops->size, GFP_KERNEL);
147 		if (!data)
148 			goto out;
149 
150 		err = net_assign_generic(net, *ops->id, data);
151 		if (err)
152 			goto cleanup;
153 	}
154 	err = 0;
155 	if (ops->init)
156 		err = ops->init(net);
157 	if (!err)
158 		return 0;
159 
160 	if (ops->id && ops->size) {
161 		ng = rcu_dereference_protected(net->gen,
162 					       lockdep_is_held(&pernet_ops_rwsem));
163 		ng->ptr[*ops->id] = NULL;
164 	}
165 
166 cleanup:
167 	kfree(data);
168 
169 out:
170 	return err;
171 }
172 
ops_free(const struct pernet_operations * ops,struct net * net)173 static void ops_free(const struct pernet_operations *ops, struct net *net)
174 {
175 	if (ops->id && ops->size) {
176 		kfree(net_generic(net, *ops->id));
177 	}
178 }
179 
ops_pre_exit_list(const struct pernet_operations * ops,struct list_head * net_exit_list)180 static void ops_pre_exit_list(const struct pernet_operations *ops,
181 			      struct list_head *net_exit_list)
182 {
183 	struct net *net;
184 
185 	if (ops->pre_exit) {
186 		list_for_each_entry(net, net_exit_list, exit_list)
187 			ops->pre_exit(net);
188 	}
189 }
190 
ops_exit_list(const struct pernet_operations * ops,struct list_head * net_exit_list)191 static void ops_exit_list(const struct pernet_operations *ops,
192 			  struct list_head *net_exit_list)
193 {
194 	struct net *net;
195 	if (ops->exit) {
196 		list_for_each_entry(net, net_exit_list, exit_list) {
197 			ops->exit(net);
198 			cond_resched();
199 		}
200 	}
201 	if (ops->exit_batch)
202 		ops->exit_batch(net_exit_list);
203 }
204 
ops_free_list(const struct pernet_operations * ops,struct list_head * net_exit_list)205 static void ops_free_list(const struct pernet_operations *ops,
206 			  struct list_head *net_exit_list)
207 {
208 	struct net *net;
209 	if (ops->size && ops->id) {
210 		list_for_each_entry(net, net_exit_list, exit_list)
211 			ops_free(ops, net);
212 	}
213 }
214 
215 /* should be called with nsid_lock held */
alloc_netid(struct net * net,struct net * peer,int reqid)216 static int alloc_netid(struct net *net, struct net *peer, int reqid)
217 {
218 	int min = 0, max = 0;
219 
220 	if (reqid >= 0) {
221 		min = reqid;
222 		max = reqid + 1;
223 	}
224 
225 	return idr_alloc(&net->netns_ids, peer, min, max, GFP_ATOMIC);
226 }
227 
228 /* This function is used by idr_for_each(). If net is equal to peer, the
229  * function returns the id so that idr_for_each() stops. Because we cannot
230  * returns the id 0 (idr_for_each() will not stop), we return the magic value
231  * NET_ID_ZERO (-1) for it.
232  */
233 #define NET_ID_ZERO -1
net_eq_idr(int id,void * net,void * peer)234 static int net_eq_idr(int id, void *net, void *peer)
235 {
236 	if (net_eq(net, peer))
237 		return id ? : NET_ID_ZERO;
238 	return 0;
239 }
240 
241 /* Must be called from RCU-critical section or with nsid_lock held */
__peernet2id(const struct net * net,struct net * peer)242 static int __peernet2id(const struct net *net, struct net *peer)
243 {
244 	int id = idr_for_each(&net->netns_ids, net_eq_idr, peer);
245 
246 	/* Magic value for id 0. */
247 	if (id == NET_ID_ZERO)
248 		return 0;
249 	if (id > 0)
250 		return id;
251 
252 	return NETNSA_NSID_NOT_ASSIGNED;
253 }
254 
255 static void rtnl_net_notifyid(struct net *net, int cmd, int id, u32 portid,
256 			      struct nlmsghdr *nlh, gfp_t gfp);
257 /* This function returns the id of a peer netns. If no id is assigned, one will
258  * be allocated and returned.
259  */
peernet2id_alloc(struct net * net,struct net * peer,gfp_t gfp)260 int peernet2id_alloc(struct net *net, struct net *peer, gfp_t gfp)
261 {
262 	int id;
263 
264 	if (refcount_read(&net->count) == 0)
265 		return NETNSA_NSID_NOT_ASSIGNED;
266 
267 	spin_lock_bh(&net->nsid_lock);
268 	id = __peernet2id(net, peer);
269 	if (id >= 0) {
270 		spin_unlock_bh(&net->nsid_lock);
271 		return id;
272 	}
273 
274 	/* When peer is obtained from RCU lists, we may race with
275 	 * its cleanup. Check whether it's alive, and this guarantees
276 	 * we never hash a peer back to net->netns_ids, after it has
277 	 * just been idr_remove()'d from there in cleanup_net().
278 	 */
279 	if (!maybe_get_net(peer)) {
280 		spin_unlock_bh(&net->nsid_lock);
281 		return NETNSA_NSID_NOT_ASSIGNED;
282 	}
283 
284 	id = alloc_netid(net, peer, -1);
285 	spin_unlock_bh(&net->nsid_lock);
286 
287 	put_net(peer);
288 	if (id < 0)
289 		return NETNSA_NSID_NOT_ASSIGNED;
290 
291 	rtnl_net_notifyid(net, RTM_NEWNSID, id, 0, NULL, gfp);
292 
293 	return id;
294 }
295 EXPORT_SYMBOL_GPL(peernet2id_alloc);
296 
297 /* This function returns, if assigned, the id of a peer netns. */
peernet2id(const struct net * net,struct net * peer)298 int peernet2id(const struct net *net, struct net *peer)
299 {
300 	int id;
301 
302 	rcu_read_lock();
303 	id = __peernet2id(net, peer);
304 	rcu_read_unlock();
305 
306 	return id;
307 }
308 EXPORT_SYMBOL(peernet2id);
309 
310 /* This function returns true is the peer netns has an id assigned into the
311  * current netns.
312  */
peernet_has_id(const struct net * net,struct net * peer)313 bool peernet_has_id(const struct net *net, struct net *peer)
314 {
315 	return peernet2id(net, peer) >= 0;
316 }
317 
get_net_ns_by_id(const struct net * net,int id)318 struct net *get_net_ns_by_id(const struct net *net, int id)
319 {
320 	struct net *peer;
321 
322 	if (id < 0)
323 		return NULL;
324 
325 	rcu_read_lock();
326 	peer = idr_find(&net->netns_ids, id);
327 	if (peer)
328 		peer = maybe_get_net(peer);
329 	rcu_read_unlock();
330 
331 	return peer;
332 }
333 
334 /*
335  * setup_net runs the initializers for the network namespace object.
336  */
setup_net(struct net * net,struct user_namespace * user_ns)337 static __net_init int setup_net(struct net *net, struct user_namespace *user_ns)
338 {
339 	/* Must be called with pernet_ops_rwsem held */
340 	const struct pernet_operations *ops, *saved_ops;
341 	int error = 0;
342 	LIST_HEAD(net_exit_list);
343 
344 	refcount_set(&net->count, 1);
345 	refcount_set(&net->passive, 1);
346 	get_random_bytes(&net->hash_mix, sizeof(u32));
347 	net->dev_base_seq = 1;
348 	net->user_ns = user_ns;
349 	idr_init(&net->netns_ids);
350 	spin_lock_init(&net->nsid_lock);
351 	mutex_init(&net->ipv4.ra_mutex);
352 
353 	list_for_each_entry(ops, &pernet_list, list) {
354 		error = ops_init(ops, net);
355 		if (error < 0)
356 			goto out_undo;
357 	}
358 	down_write(&net_rwsem);
359 	list_add_tail_rcu(&net->list, &net_namespace_list);
360 	up_write(&net_rwsem);
361 out:
362 	return error;
363 
364 out_undo:
365 	/* Walk through the list backwards calling the exit functions
366 	 * for the pernet modules whose init functions did not fail.
367 	 */
368 	list_add(&net->exit_list, &net_exit_list);
369 	saved_ops = ops;
370 	list_for_each_entry_continue_reverse(ops, &pernet_list, list)
371 		ops_pre_exit_list(ops, &net_exit_list);
372 
373 	synchronize_rcu();
374 
375 	ops = saved_ops;
376 	list_for_each_entry_continue_reverse(ops, &pernet_list, list)
377 		ops_exit_list(ops, &net_exit_list);
378 
379 	ops = saved_ops;
380 	list_for_each_entry_continue_reverse(ops, &pernet_list, list)
381 		ops_free_list(ops, &net_exit_list);
382 
383 	rcu_barrier();
384 	goto out;
385 }
386 
net_defaults_init_net(struct net * net)387 static int __net_init net_defaults_init_net(struct net *net)
388 {
389 	net->core.sysctl_somaxconn = SOMAXCONN;
390 	return 0;
391 }
392 
393 static struct pernet_operations net_defaults_ops = {
394 	.init = net_defaults_init_net,
395 };
396 
net_defaults_init(void)397 static __init int net_defaults_init(void)
398 {
399 	if (register_pernet_subsys(&net_defaults_ops))
400 		panic("Cannot initialize net default settings");
401 
402 	return 0;
403 }
404 
405 core_initcall(net_defaults_init);
406 
407 #ifdef CONFIG_NET_NS
inc_net_namespaces(struct user_namespace * ns)408 static struct ucounts *inc_net_namespaces(struct user_namespace *ns)
409 {
410 	return inc_ucount(ns, current_euid(), UCOUNT_NET_NAMESPACES);
411 }
412 
dec_net_namespaces(struct ucounts * ucounts)413 static void dec_net_namespaces(struct ucounts *ucounts)
414 {
415 	dec_ucount(ucounts, UCOUNT_NET_NAMESPACES);
416 }
417 
418 static struct kmem_cache *net_cachep __ro_after_init;
419 static struct workqueue_struct *netns_wq;
420 
net_alloc(void)421 static struct net *net_alloc(void)
422 {
423 	struct net *net = NULL;
424 	struct net_generic *ng;
425 
426 	ng = net_alloc_generic();
427 	if (!ng)
428 		goto out;
429 
430 	net = kmem_cache_zalloc(net_cachep, GFP_KERNEL);
431 	if (!net)
432 		goto out_free;
433 
434 #ifdef CONFIG_KEYS
435 	net->key_domain = kzalloc(sizeof(struct key_tag), GFP_KERNEL);
436 	if (!net->key_domain)
437 		goto out_free_2;
438 	refcount_set(&net->key_domain->usage, 1);
439 #endif
440 
441 	rcu_assign_pointer(net->gen, ng);
442 out:
443 	return net;
444 
445 #ifdef CONFIG_KEYS
446 out_free_2:
447 	kmem_cache_free(net_cachep, net);
448 	net = NULL;
449 #endif
450 out_free:
451 	kfree(ng);
452 	goto out;
453 }
454 
net_free(struct net * net)455 static void net_free(struct net *net)
456 {
457 	kfree(rcu_access_pointer(net->gen));
458 	kmem_cache_free(net_cachep, net);
459 }
460 
net_drop_ns(void * p)461 void net_drop_ns(void *p)
462 {
463 	struct net *ns = p;
464 	if (ns && refcount_dec_and_test(&ns->passive))
465 		net_free(ns);
466 }
467 
copy_net_ns(unsigned long flags,struct user_namespace * user_ns,struct net * old_net)468 struct net *copy_net_ns(unsigned long flags,
469 			struct user_namespace *user_ns, struct net *old_net)
470 {
471 	struct ucounts *ucounts;
472 	struct net *net;
473 	int rv;
474 
475 	if (!(flags & CLONE_NEWNET))
476 		return get_net(old_net);
477 
478 	ucounts = inc_net_namespaces(user_ns);
479 	if (!ucounts)
480 		return ERR_PTR(-ENOSPC);
481 
482 	net = net_alloc();
483 	if (!net) {
484 		rv = -ENOMEM;
485 		goto dec_ucounts;
486 	}
487 	refcount_set(&net->passive, 1);
488 	net->ucounts = ucounts;
489 	get_user_ns(user_ns);
490 
491 	rv = down_read_killable(&pernet_ops_rwsem);
492 	if (rv < 0)
493 		goto put_userns;
494 
495 	rv = setup_net(net, user_ns);
496 
497 	up_read(&pernet_ops_rwsem);
498 
499 	if (rv < 0) {
500 put_userns:
501 #ifdef CONFIG_KEYS
502 		key_remove_domain(net->key_domain);
503 #endif
504 		put_user_ns(user_ns);
505 		net_drop_ns(net);
506 dec_ucounts:
507 		dec_net_namespaces(ucounts);
508 		return ERR_PTR(rv);
509 	}
510 	return net;
511 }
512 
513 /**
514  * net_ns_get_ownership - get sysfs ownership data for @net
515  * @net: network namespace in question (can be NULL)
516  * @uid: kernel user ID for sysfs objects
517  * @gid: kernel group ID for sysfs objects
518  *
519  * Returns the uid/gid pair of root in the user namespace associated with the
520  * given network namespace.
521  */
net_ns_get_ownership(const struct net * net,kuid_t * uid,kgid_t * gid)522 void net_ns_get_ownership(const struct net *net, kuid_t *uid, kgid_t *gid)
523 {
524 	if (net) {
525 		kuid_t ns_root_uid = make_kuid(net->user_ns, 0);
526 		kgid_t ns_root_gid = make_kgid(net->user_ns, 0);
527 
528 		if (uid_valid(ns_root_uid))
529 			*uid = ns_root_uid;
530 
531 		if (gid_valid(ns_root_gid))
532 			*gid = ns_root_gid;
533 	} else {
534 		*uid = GLOBAL_ROOT_UID;
535 		*gid = GLOBAL_ROOT_GID;
536 	}
537 }
538 EXPORT_SYMBOL_GPL(net_ns_get_ownership);
539 
unhash_nsid(struct net * net,struct net * last)540 static void unhash_nsid(struct net *net, struct net *last)
541 {
542 	struct net *tmp;
543 	/* This function is only called from cleanup_net() work,
544 	 * and this work is the only process, that may delete
545 	 * a net from net_namespace_list. So, when the below
546 	 * is executing, the list may only grow. Thus, we do not
547 	 * use for_each_net_rcu() or net_rwsem.
548 	 */
549 	for_each_net(tmp) {
550 		int id;
551 
552 		spin_lock_bh(&tmp->nsid_lock);
553 		id = __peernet2id(tmp, net);
554 		if (id >= 0)
555 			idr_remove(&tmp->netns_ids, id);
556 		spin_unlock_bh(&tmp->nsid_lock);
557 		if (id >= 0)
558 			rtnl_net_notifyid(tmp, RTM_DELNSID, id, 0, NULL,
559 					  GFP_KERNEL);
560 		if (tmp == last)
561 			break;
562 	}
563 	spin_lock_bh(&net->nsid_lock);
564 	idr_destroy(&net->netns_ids);
565 	spin_unlock_bh(&net->nsid_lock);
566 }
567 
568 static LLIST_HEAD(cleanup_list);
569 
cleanup_net(struct work_struct * work)570 static void cleanup_net(struct work_struct *work)
571 {
572 	const struct pernet_operations *ops;
573 	struct net *net, *tmp, *last;
574 	struct llist_node *net_kill_list;
575 	LIST_HEAD(net_exit_list);
576 
577 	/* Atomically snapshot the list of namespaces to cleanup */
578 	net_kill_list = llist_del_all(&cleanup_list);
579 
580 	down_read(&pernet_ops_rwsem);
581 
582 	/* Don't let anyone else find us. */
583 	down_write(&net_rwsem);
584 	llist_for_each_entry(net, net_kill_list, cleanup_list)
585 		list_del_rcu(&net->list);
586 	/* Cache last net. After we unlock rtnl, no one new net
587 	 * added to net_namespace_list can assign nsid pointer
588 	 * to a net from net_kill_list (see peernet2id_alloc()).
589 	 * So, we skip them in unhash_nsid().
590 	 *
591 	 * Note, that unhash_nsid() does not delete nsid links
592 	 * between net_kill_list's nets, as they've already
593 	 * deleted from net_namespace_list. But, this would be
594 	 * useless anyway, as netns_ids are destroyed there.
595 	 */
596 	last = list_last_entry(&net_namespace_list, struct net, list);
597 	up_write(&net_rwsem);
598 
599 	llist_for_each_entry(net, net_kill_list, cleanup_list) {
600 		unhash_nsid(net, last);
601 		list_add_tail(&net->exit_list, &net_exit_list);
602 	}
603 
604 	/* Run all of the network namespace pre_exit methods */
605 	list_for_each_entry_reverse(ops, &pernet_list, list)
606 		ops_pre_exit_list(ops, &net_exit_list);
607 
608 	/*
609 	 * Another CPU might be rcu-iterating the list, wait for it.
610 	 * This needs to be before calling the exit() notifiers, so
611 	 * the rcu_barrier() below isn't sufficient alone.
612 	 * Also the pre_exit() and exit() methods need this barrier.
613 	 */
614 	synchronize_rcu();
615 
616 	/* Run all of the network namespace exit methods */
617 	list_for_each_entry_reverse(ops, &pernet_list, list)
618 		ops_exit_list(ops, &net_exit_list);
619 
620 	/* Free the net generic variables */
621 	list_for_each_entry_reverse(ops, &pernet_list, list)
622 		ops_free_list(ops, &net_exit_list);
623 
624 	up_read(&pernet_ops_rwsem);
625 
626 	/* Ensure there are no outstanding rcu callbacks using this
627 	 * network namespace.
628 	 */
629 	rcu_barrier();
630 
631 	/* Finally it is safe to free my network namespace structure */
632 	list_for_each_entry_safe(net, tmp, &net_exit_list, exit_list) {
633 		list_del_init(&net->exit_list);
634 		dec_net_namespaces(net->ucounts);
635 #ifdef CONFIG_KEYS
636 		key_remove_domain(net->key_domain);
637 #endif
638 		put_user_ns(net->user_ns);
639 		net_drop_ns(net);
640 	}
641 }
642 
643 /**
644  * net_ns_barrier - wait until concurrent net_cleanup_work is done
645  *
646  * cleanup_net runs from work queue and will first remove namespaces
647  * from the global list, then run net exit functions.
648  *
649  * Call this in module exit path to make sure that all netns
650  * ->exit ops have been invoked before the function is removed.
651  */
net_ns_barrier(void)652 void net_ns_barrier(void)
653 {
654 	down_write(&pernet_ops_rwsem);
655 	up_write(&pernet_ops_rwsem);
656 }
657 EXPORT_SYMBOL(net_ns_barrier);
658 
659 static DECLARE_WORK(net_cleanup_work, cleanup_net);
660 
__put_net(struct net * net)661 void __put_net(struct net *net)
662 {
663 	/* Cleanup the network namespace in process context */
664 	if (llist_add(&net->cleanup_list, &cleanup_list))
665 		queue_work(netns_wq, &net_cleanup_work);
666 }
667 EXPORT_SYMBOL_GPL(__put_net);
668 
669 /**
670  * get_net_ns - increment the refcount of the network namespace
671  * @ns: common namespace (net)
672  *
673  * Returns the net's common namespace.
674  */
get_net_ns(struct ns_common * ns)675 struct ns_common *get_net_ns(struct ns_common *ns)
676 {
677 	return &get_net(container_of(ns, struct net, ns))->ns;
678 }
679 EXPORT_SYMBOL_GPL(get_net_ns);
680 
get_net_ns_by_fd(int fd)681 struct net *get_net_ns_by_fd(int fd)
682 {
683 	struct file *file;
684 	struct ns_common *ns;
685 	struct net *net;
686 
687 	file = proc_ns_fget(fd);
688 	if (IS_ERR(file))
689 		return ERR_CAST(file);
690 
691 	ns = get_proc_ns(file_inode(file));
692 	if (ns->ops == &netns_operations)
693 		net = get_net(container_of(ns, struct net, ns));
694 	else
695 		net = ERR_PTR(-EINVAL);
696 
697 	fput(file);
698 	return net;
699 }
700 
701 #else
get_net_ns_by_fd(int fd)702 struct net *get_net_ns_by_fd(int fd)
703 {
704 	return ERR_PTR(-EINVAL);
705 }
706 #endif
707 EXPORT_SYMBOL_GPL(get_net_ns_by_fd);
708 
get_net_ns_by_pid(pid_t pid)709 struct net *get_net_ns_by_pid(pid_t pid)
710 {
711 	struct task_struct *tsk;
712 	struct net *net;
713 
714 	/* Lookup the network namespace */
715 	net = ERR_PTR(-ESRCH);
716 	rcu_read_lock();
717 	tsk = find_task_by_vpid(pid);
718 	if (tsk) {
719 		struct nsproxy *nsproxy;
720 		task_lock(tsk);
721 		nsproxy = tsk->nsproxy;
722 		if (nsproxy)
723 			net = get_net(nsproxy->net_ns);
724 		task_unlock(tsk);
725 	}
726 	rcu_read_unlock();
727 	return net;
728 }
729 EXPORT_SYMBOL_GPL(get_net_ns_by_pid);
730 
net_ns_net_init(struct net * net)731 static __net_init int net_ns_net_init(struct net *net)
732 {
733 #ifdef CONFIG_NET_NS
734 	net->ns.ops = &netns_operations;
735 #endif
736 	return ns_alloc_inum(&net->ns);
737 }
738 
net_ns_net_exit(struct net * net)739 static __net_exit void net_ns_net_exit(struct net *net)
740 {
741 	ns_free_inum(&net->ns);
742 }
743 
744 static struct pernet_operations __net_initdata net_ns_ops = {
745 	.init = net_ns_net_init,
746 	.exit = net_ns_net_exit,
747 };
748 
749 static const struct nla_policy rtnl_net_policy[NETNSA_MAX + 1] = {
750 	[NETNSA_NONE]		= { .type = NLA_UNSPEC },
751 	[NETNSA_NSID]		= { .type = NLA_S32 },
752 	[NETNSA_PID]		= { .type = NLA_U32 },
753 	[NETNSA_FD]		= { .type = NLA_U32 },
754 	[NETNSA_TARGET_NSID]	= { .type = NLA_S32 },
755 };
756 
rtnl_net_newid(struct sk_buff * skb,struct nlmsghdr * nlh,struct netlink_ext_ack * extack)757 static int rtnl_net_newid(struct sk_buff *skb, struct nlmsghdr *nlh,
758 			  struct netlink_ext_ack *extack)
759 {
760 	struct net *net = sock_net(skb->sk);
761 	struct nlattr *tb[NETNSA_MAX + 1];
762 	struct nlattr *nla;
763 	struct net *peer;
764 	int nsid, err;
765 
766 	err = nlmsg_parse_deprecated(nlh, sizeof(struct rtgenmsg), tb,
767 				     NETNSA_MAX, rtnl_net_policy, extack);
768 	if (err < 0)
769 		return err;
770 	if (!tb[NETNSA_NSID]) {
771 		NL_SET_ERR_MSG(extack, "nsid is missing");
772 		return -EINVAL;
773 	}
774 	nsid = nla_get_s32(tb[NETNSA_NSID]);
775 
776 	if (tb[NETNSA_PID]) {
777 		peer = get_net_ns_by_pid(nla_get_u32(tb[NETNSA_PID]));
778 		nla = tb[NETNSA_PID];
779 	} else if (tb[NETNSA_FD]) {
780 		peer = get_net_ns_by_fd(nla_get_u32(tb[NETNSA_FD]));
781 		nla = tb[NETNSA_FD];
782 	} else {
783 		NL_SET_ERR_MSG(extack, "Peer netns reference is missing");
784 		return -EINVAL;
785 	}
786 	if (IS_ERR(peer)) {
787 		NL_SET_BAD_ATTR(extack, nla);
788 		NL_SET_ERR_MSG(extack, "Peer netns reference is invalid");
789 		return PTR_ERR(peer);
790 	}
791 
792 	spin_lock_bh(&net->nsid_lock);
793 	if (__peernet2id(net, peer) >= 0) {
794 		spin_unlock_bh(&net->nsid_lock);
795 		err = -EEXIST;
796 		NL_SET_BAD_ATTR(extack, nla);
797 		NL_SET_ERR_MSG(extack,
798 			       "Peer netns already has a nsid assigned");
799 		goto out;
800 	}
801 
802 	err = alloc_netid(net, peer, nsid);
803 	spin_unlock_bh(&net->nsid_lock);
804 	if (err >= 0) {
805 		rtnl_net_notifyid(net, RTM_NEWNSID, err, NETLINK_CB(skb).portid,
806 				  nlh, GFP_KERNEL);
807 		err = 0;
808 	} else if (err == -ENOSPC && nsid >= 0) {
809 		err = -EEXIST;
810 		NL_SET_BAD_ATTR(extack, tb[NETNSA_NSID]);
811 		NL_SET_ERR_MSG(extack, "The specified nsid is already used");
812 	}
813 out:
814 	put_net(peer);
815 	return err;
816 }
817 
rtnl_net_get_size(void)818 static int rtnl_net_get_size(void)
819 {
820 	return NLMSG_ALIGN(sizeof(struct rtgenmsg))
821 	       + nla_total_size(sizeof(s32)) /* NETNSA_NSID */
822 	       + nla_total_size(sizeof(s32)) /* NETNSA_CURRENT_NSID */
823 	       ;
824 }
825 
826 struct net_fill_args {
827 	u32 portid;
828 	u32 seq;
829 	int flags;
830 	int cmd;
831 	int nsid;
832 	bool add_ref;
833 	int ref_nsid;
834 };
835 
rtnl_net_fill(struct sk_buff * skb,struct net_fill_args * args)836 static int rtnl_net_fill(struct sk_buff *skb, struct net_fill_args *args)
837 {
838 	struct nlmsghdr *nlh;
839 	struct rtgenmsg *rth;
840 
841 	nlh = nlmsg_put(skb, args->portid, args->seq, args->cmd, sizeof(*rth),
842 			args->flags);
843 	if (!nlh)
844 		return -EMSGSIZE;
845 
846 	rth = nlmsg_data(nlh);
847 	rth->rtgen_family = AF_UNSPEC;
848 
849 	if (nla_put_s32(skb, NETNSA_NSID, args->nsid))
850 		goto nla_put_failure;
851 
852 	if (args->add_ref &&
853 	    nla_put_s32(skb, NETNSA_CURRENT_NSID, args->ref_nsid))
854 		goto nla_put_failure;
855 
856 	nlmsg_end(skb, nlh);
857 	return 0;
858 
859 nla_put_failure:
860 	nlmsg_cancel(skb, nlh);
861 	return -EMSGSIZE;
862 }
863 
rtnl_net_valid_getid_req(struct sk_buff * skb,const struct nlmsghdr * nlh,struct nlattr ** tb,struct netlink_ext_ack * extack)864 static int rtnl_net_valid_getid_req(struct sk_buff *skb,
865 				    const struct nlmsghdr *nlh,
866 				    struct nlattr **tb,
867 				    struct netlink_ext_ack *extack)
868 {
869 	int i, err;
870 
871 	if (!netlink_strict_get_check(skb))
872 		return nlmsg_parse_deprecated(nlh, sizeof(struct rtgenmsg),
873 					      tb, NETNSA_MAX, rtnl_net_policy,
874 					      extack);
875 
876 	err = nlmsg_parse_deprecated_strict(nlh, sizeof(struct rtgenmsg), tb,
877 					    NETNSA_MAX, rtnl_net_policy,
878 					    extack);
879 	if (err)
880 		return err;
881 
882 	for (i = 0; i <= NETNSA_MAX; i++) {
883 		if (!tb[i])
884 			continue;
885 
886 		switch (i) {
887 		case NETNSA_PID:
888 		case NETNSA_FD:
889 		case NETNSA_NSID:
890 		case NETNSA_TARGET_NSID:
891 			break;
892 		default:
893 			NL_SET_ERR_MSG(extack, "Unsupported attribute in peer netns getid request");
894 			return -EINVAL;
895 		}
896 	}
897 
898 	return 0;
899 }
900 
rtnl_net_getid(struct sk_buff * skb,struct nlmsghdr * nlh,struct netlink_ext_ack * extack)901 static int rtnl_net_getid(struct sk_buff *skb, struct nlmsghdr *nlh,
902 			  struct netlink_ext_ack *extack)
903 {
904 	struct net *net = sock_net(skb->sk);
905 	struct nlattr *tb[NETNSA_MAX + 1];
906 	struct net_fill_args fillargs = {
907 		.portid = NETLINK_CB(skb).portid,
908 		.seq = nlh->nlmsg_seq,
909 		.cmd = RTM_NEWNSID,
910 	};
911 	struct net *peer, *target = net;
912 	struct nlattr *nla;
913 	struct sk_buff *msg;
914 	int err;
915 
916 	err = rtnl_net_valid_getid_req(skb, nlh, tb, extack);
917 	if (err < 0)
918 		return err;
919 	if (tb[NETNSA_PID]) {
920 		peer = get_net_ns_by_pid(nla_get_u32(tb[NETNSA_PID]));
921 		nla = tb[NETNSA_PID];
922 	} else if (tb[NETNSA_FD]) {
923 		peer = get_net_ns_by_fd(nla_get_u32(tb[NETNSA_FD]));
924 		nla = tb[NETNSA_FD];
925 	} else if (tb[NETNSA_NSID]) {
926 		peer = get_net_ns_by_id(net, nla_get_s32(tb[NETNSA_NSID]));
927 		if (!peer)
928 			peer = ERR_PTR(-ENOENT);
929 		nla = tb[NETNSA_NSID];
930 	} else {
931 		NL_SET_ERR_MSG(extack, "Peer netns reference is missing");
932 		return -EINVAL;
933 	}
934 
935 	if (IS_ERR(peer)) {
936 		NL_SET_BAD_ATTR(extack, nla);
937 		NL_SET_ERR_MSG(extack, "Peer netns reference is invalid");
938 		return PTR_ERR(peer);
939 	}
940 
941 	if (tb[NETNSA_TARGET_NSID]) {
942 		int id = nla_get_s32(tb[NETNSA_TARGET_NSID]);
943 
944 		target = rtnl_get_net_ns_capable(NETLINK_CB(skb).sk, id);
945 		if (IS_ERR(target)) {
946 			NL_SET_BAD_ATTR(extack, tb[NETNSA_TARGET_NSID]);
947 			NL_SET_ERR_MSG(extack,
948 				       "Target netns reference is invalid");
949 			err = PTR_ERR(target);
950 			goto out;
951 		}
952 		fillargs.add_ref = true;
953 		fillargs.ref_nsid = peernet2id(net, peer);
954 	}
955 
956 	msg = nlmsg_new(rtnl_net_get_size(), GFP_KERNEL);
957 	if (!msg) {
958 		err = -ENOMEM;
959 		goto out;
960 	}
961 
962 	fillargs.nsid = peernet2id(target, peer);
963 	err = rtnl_net_fill(msg, &fillargs);
964 	if (err < 0)
965 		goto err_out;
966 
967 	err = rtnl_unicast(msg, net, NETLINK_CB(skb).portid);
968 	goto out;
969 
970 err_out:
971 	nlmsg_free(msg);
972 out:
973 	if (fillargs.add_ref)
974 		put_net(target);
975 	put_net(peer);
976 	return err;
977 }
978 
979 struct rtnl_net_dump_cb {
980 	struct net *tgt_net;
981 	struct net *ref_net;
982 	struct sk_buff *skb;
983 	struct net_fill_args fillargs;
984 	int idx;
985 	int s_idx;
986 };
987 
988 /* Runs in RCU-critical section. */
rtnl_net_dumpid_one(int id,void * peer,void * data)989 static int rtnl_net_dumpid_one(int id, void *peer, void *data)
990 {
991 	struct rtnl_net_dump_cb *net_cb = (struct rtnl_net_dump_cb *)data;
992 	int ret;
993 
994 	if (net_cb->idx < net_cb->s_idx)
995 		goto cont;
996 
997 	net_cb->fillargs.nsid = id;
998 	if (net_cb->fillargs.add_ref)
999 		net_cb->fillargs.ref_nsid = __peernet2id(net_cb->ref_net, peer);
1000 	ret = rtnl_net_fill(net_cb->skb, &net_cb->fillargs);
1001 	if (ret < 0)
1002 		return ret;
1003 
1004 cont:
1005 	net_cb->idx++;
1006 	return 0;
1007 }
1008 
rtnl_valid_dump_net_req(const struct nlmsghdr * nlh,struct sock * sk,struct rtnl_net_dump_cb * net_cb,struct netlink_callback * cb)1009 static int rtnl_valid_dump_net_req(const struct nlmsghdr *nlh, struct sock *sk,
1010 				   struct rtnl_net_dump_cb *net_cb,
1011 				   struct netlink_callback *cb)
1012 {
1013 	struct netlink_ext_ack *extack = cb->extack;
1014 	struct nlattr *tb[NETNSA_MAX + 1];
1015 	int err, i;
1016 
1017 	err = nlmsg_parse_deprecated_strict(nlh, sizeof(struct rtgenmsg), tb,
1018 					    NETNSA_MAX, rtnl_net_policy,
1019 					    extack);
1020 	if (err < 0)
1021 		return err;
1022 
1023 	for (i = 0; i <= NETNSA_MAX; i++) {
1024 		if (!tb[i])
1025 			continue;
1026 
1027 		if (i == NETNSA_TARGET_NSID) {
1028 			struct net *net;
1029 
1030 			net = rtnl_get_net_ns_capable(sk, nla_get_s32(tb[i]));
1031 			if (IS_ERR(net)) {
1032 				NL_SET_BAD_ATTR(extack, tb[i]);
1033 				NL_SET_ERR_MSG(extack,
1034 					       "Invalid target network namespace id");
1035 				return PTR_ERR(net);
1036 			}
1037 			net_cb->fillargs.add_ref = true;
1038 			net_cb->ref_net = net_cb->tgt_net;
1039 			net_cb->tgt_net = net;
1040 		} else {
1041 			NL_SET_BAD_ATTR(extack, tb[i]);
1042 			NL_SET_ERR_MSG(extack,
1043 				       "Unsupported attribute in dump request");
1044 			return -EINVAL;
1045 		}
1046 	}
1047 
1048 	return 0;
1049 }
1050 
rtnl_net_dumpid(struct sk_buff * skb,struct netlink_callback * cb)1051 static int rtnl_net_dumpid(struct sk_buff *skb, struct netlink_callback *cb)
1052 {
1053 	struct rtnl_net_dump_cb net_cb = {
1054 		.tgt_net = sock_net(skb->sk),
1055 		.skb = skb,
1056 		.fillargs = {
1057 			.portid = NETLINK_CB(cb->skb).portid,
1058 			.seq = cb->nlh->nlmsg_seq,
1059 			.flags = NLM_F_MULTI,
1060 			.cmd = RTM_NEWNSID,
1061 		},
1062 		.idx = 0,
1063 		.s_idx = cb->args[0],
1064 	};
1065 	int err = 0;
1066 
1067 	if (cb->strict_check) {
1068 		err = rtnl_valid_dump_net_req(cb->nlh, skb->sk, &net_cb, cb);
1069 		if (err < 0)
1070 			goto end;
1071 	}
1072 
1073 	rcu_read_lock();
1074 	idr_for_each(&net_cb.tgt_net->netns_ids, rtnl_net_dumpid_one, &net_cb);
1075 	rcu_read_unlock();
1076 
1077 	cb->args[0] = net_cb.idx;
1078 end:
1079 	if (net_cb.fillargs.add_ref)
1080 		put_net(net_cb.tgt_net);
1081 	return err < 0 ? err : skb->len;
1082 }
1083 
rtnl_net_notifyid(struct net * net,int cmd,int id,u32 portid,struct nlmsghdr * nlh,gfp_t gfp)1084 static void rtnl_net_notifyid(struct net *net, int cmd, int id, u32 portid,
1085 			      struct nlmsghdr *nlh, gfp_t gfp)
1086 {
1087 	struct net_fill_args fillargs = {
1088 		.portid = portid,
1089 		.seq = nlh ? nlh->nlmsg_seq : 0,
1090 		.cmd = cmd,
1091 		.nsid = id,
1092 	};
1093 	struct sk_buff *msg;
1094 	int err = -ENOMEM;
1095 
1096 	msg = nlmsg_new(rtnl_net_get_size(), gfp);
1097 	if (!msg)
1098 		goto out;
1099 
1100 	err = rtnl_net_fill(msg, &fillargs);
1101 	if (err < 0)
1102 		goto err_out;
1103 
1104 	rtnl_notify(msg, net, portid, RTNLGRP_NSID, nlh, gfp);
1105 	return;
1106 
1107 err_out:
1108 	nlmsg_free(msg);
1109 out:
1110 	rtnl_set_sk_err(net, RTNLGRP_NSID, err);
1111 }
1112 
net_ns_init(void)1113 static int __init net_ns_init(void)
1114 {
1115 	struct net_generic *ng;
1116 
1117 #ifdef CONFIG_NET_NS
1118 	net_cachep = kmem_cache_create("net_namespace", sizeof(struct net),
1119 					SMP_CACHE_BYTES,
1120 					SLAB_PANIC|SLAB_ACCOUNT, NULL);
1121 
1122 	/* Create workqueue for cleanup */
1123 	netns_wq = create_singlethread_workqueue("netns");
1124 	if (!netns_wq)
1125 		panic("Could not create netns workq");
1126 #endif
1127 
1128 	ng = net_alloc_generic();
1129 	if (!ng)
1130 		panic("Could not allocate generic netns");
1131 
1132 	rcu_assign_pointer(init_net.gen, ng);
1133 
1134 	preempt_disable();
1135 	__net_gen_cookie(&init_net);
1136 	preempt_enable();
1137 
1138 	down_write(&pernet_ops_rwsem);
1139 	if (setup_net(&init_net, &init_user_ns))
1140 		panic("Could not setup the initial network namespace");
1141 
1142 	init_net_initialized = true;
1143 	up_write(&pernet_ops_rwsem);
1144 
1145 	if (register_pernet_subsys(&net_ns_ops))
1146 		panic("Could not register network namespace subsystems");
1147 
1148 	rtnl_register(PF_UNSPEC, RTM_NEWNSID, rtnl_net_newid, NULL,
1149 		      RTNL_FLAG_DOIT_UNLOCKED);
1150 	rtnl_register(PF_UNSPEC, RTM_GETNSID, rtnl_net_getid, rtnl_net_dumpid,
1151 		      RTNL_FLAG_DOIT_UNLOCKED);
1152 
1153 	return 0;
1154 }
1155 
1156 pure_initcall(net_ns_init);
1157 
1158 #ifdef CONFIG_NET_NS
__register_pernet_operations(struct list_head * list,struct pernet_operations * ops)1159 static int __register_pernet_operations(struct list_head *list,
1160 					struct pernet_operations *ops)
1161 {
1162 	struct net *net;
1163 	int error;
1164 	LIST_HEAD(net_exit_list);
1165 
1166 	list_add_tail(&ops->list, list);
1167 	if (ops->init || (ops->id && ops->size)) {
1168 		/* We held write locked pernet_ops_rwsem, and parallel
1169 		 * setup_net() and cleanup_net() are not possible.
1170 		 */
1171 		for_each_net(net) {
1172 			error = ops_init(ops, net);
1173 			if (error)
1174 				goto out_undo;
1175 			list_add_tail(&net->exit_list, &net_exit_list);
1176 		}
1177 	}
1178 	return 0;
1179 
1180 out_undo:
1181 	/* If I have an error cleanup all namespaces I initialized */
1182 	list_del(&ops->list);
1183 	ops_pre_exit_list(ops, &net_exit_list);
1184 	synchronize_rcu();
1185 	ops_exit_list(ops, &net_exit_list);
1186 	ops_free_list(ops, &net_exit_list);
1187 	return error;
1188 }
1189 
__unregister_pernet_operations(struct pernet_operations * ops)1190 static void __unregister_pernet_operations(struct pernet_operations *ops)
1191 {
1192 	struct net *net;
1193 	LIST_HEAD(net_exit_list);
1194 
1195 	list_del(&ops->list);
1196 	/* See comment in __register_pernet_operations() */
1197 	for_each_net(net)
1198 		list_add_tail(&net->exit_list, &net_exit_list);
1199 	ops_pre_exit_list(ops, &net_exit_list);
1200 	synchronize_rcu();
1201 	ops_exit_list(ops, &net_exit_list);
1202 	ops_free_list(ops, &net_exit_list);
1203 }
1204 
1205 #else
1206 
__register_pernet_operations(struct list_head * list,struct pernet_operations * ops)1207 static int __register_pernet_operations(struct list_head *list,
1208 					struct pernet_operations *ops)
1209 {
1210 	if (!init_net_initialized) {
1211 		list_add_tail(&ops->list, list);
1212 		return 0;
1213 	}
1214 
1215 	return ops_init(ops, &init_net);
1216 }
1217 
__unregister_pernet_operations(struct pernet_operations * ops)1218 static void __unregister_pernet_operations(struct pernet_operations *ops)
1219 {
1220 	if (!init_net_initialized) {
1221 		list_del(&ops->list);
1222 	} else {
1223 		LIST_HEAD(net_exit_list);
1224 		list_add(&init_net.exit_list, &net_exit_list);
1225 		ops_pre_exit_list(ops, &net_exit_list);
1226 		synchronize_rcu();
1227 		ops_exit_list(ops, &net_exit_list);
1228 		ops_free_list(ops, &net_exit_list);
1229 	}
1230 }
1231 
1232 #endif /* CONFIG_NET_NS */
1233 
1234 static DEFINE_IDA(net_generic_ids);
1235 
register_pernet_operations(struct list_head * list,struct pernet_operations * ops)1236 static int register_pernet_operations(struct list_head *list,
1237 				      struct pernet_operations *ops)
1238 {
1239 	int error;
1240 
1241 	if (ops->id) {
1242 		error = ida_alloc_min(&net_generic_ids, MIN_PERNET_OPS_ID,
1243 				GFP_KERNEL);
1244 		if (error < 0)
1245 			return error;
1246 		*ops->id = error;
1247 		/* This does not require READ_ONCE as writers already hold
1248 		 * pernet_ops_rwsem. But WRITE_ONCE is needed to protect
1249 		 * net_alloc_generic.
1250 		 */
1251 		WRITE_ONCE(max_gen_ptrs, max(max_gen_ptrs, *ops->id + 1));
1252 	}
1253 	error = __register_pernet_operations(list, ops);
1254 	if (error) {
1255 		rcu_barrier();
1256 		if (ops->id)
1257 			ida_free(&net_generic_ids, *ops->id);
1258 	}
1259 
1260 	return error;
1261 }
1262 
unregister_pernet_operations(struct pernet_operations * ops)1263 static void unregister_pernet_operations(struct pernet_operations *ops)
1264 {
1265 	__unregister_pernet_operations(ops);
1266 	rcu_barrier();
1267 	if (ops->id)
1268 		ida_free(&net_generic_ids, *ops->id);
1269 }
1270 
1271 /**
1272  *      register_pernet_subsys - register a network namespace subsystem
1273  *	@ops:  pernet operations structure for the subsystem
1274  *
1275  *	Register a subsystem which has init and exit functions
1276  *	that are called when network namespaces are created and
1277  *	destroyed respectively.
1278  *
1279  *	When registered all network namespace init functions are
1280  *	called for every existing network namespace.  Allowing kernel
1281  *	modules to have a race free view of the set of network namespaces.
1282  *
1283  *	When a new network namespace is created all of the init
1284  *	methods are called in the order in which they were registered.
1285  *
1286  *	When a network namespace is destroyed all of the exit methods
1287  *	are called in the reverse of the order with which they were
1288  *	registered.
1289  */
register_pernet_subsys(struct pernet_operations * ops)1290 int register_pernet_subsys(struct pernet_operations *ops)
1291 {
1292 	int error;
1293 	down_write(&pernet_ops_rwsem);
1294 	error =  register_pernet_operations(first_device, ops);
1295 	up_write(&pernet_ops_rwsem);
1296 	return error;
1297 }
1298 EXPORT_SYMBOL_GPL(register_pernet_subsys);
1299 
1300 /**
1301  *      unregister_pernet_subsys - unregister a network namespace subsystem
1302  *	@ops: pernet operations structure to manipulate
1303  *
1304  *	Remove the pernet operations structure from the list to be
1305  *	used when network namespaces are created or destroyed.  In
1306  *	addition run the exit method for all existing network
1307  *	namespaces.
1308  */
unregister_pernet_subsys(struct pernet_operations * ops)1309 void unregister_pernet_subsys(struct pernet_operations *ops)
1310 {
1311 	down_write(&pernet_ops_rwsem);
1312 	unregister_pernet_operations(ops);
1313 	up_write(&pernet_ops_rwsem);
1314 }
1315 EXPORT_SYMBOL_GPL(unregister_pernet_subsys);
1316 
1317 /**
1318  *      register_pernet_device - register a network namespace device
1319  *	@ops:  pernet operations structure for the subsystem
1320  *
1321  *	Register a device which has init and exit functions
1322  *	that are called when network namespaces are created and
1323  *	destroyed respectively.
1324  *
1325  *	When registered all network namespace init functions are
1326  *	called for every existing network namespace.  Allowing kernel
1327  *	modules to have a race free view of the set of network namespaces.
1328  *
1329  *	When a new network namespace is created all of the init
1330  *	methods are called in the order in which they were registered.
1331  *
1332  *	When a network namespace is destroyed all of the exit methods
1333  *	are called in the reverse of the order with which they were
1334  *	registered.
1335  */
register_pernet_device(struct pernet_operations * ops)1336 int register_pernet_device(struct pernet_operations *ops)
1337 {
1338 	int error;
1339 	down_write(&pernet_ops_rwsem);
1340 	error = register_pernet_operations(&pernet_list, ops);
1341 	if (!error && (first_device == &pernet_list))
1342 		first_device = &ops->list;
1343 	up_write(&pernet_ops_rwsem);
1344 	return error;
1345 }
1346 EXPORT_SYMBOL_GPL(register_pernet_device);
1347 
1348 /**
1349  *      unregister_pernet_device - unregister a network namespace netdevice
1350  *	@ops: pernet operations structure to manipulate
1351  *
1352  *	Remove the pernet operations structure from the list to be
1353  *	used when network namespaces are created or destroyed.  In
1354  *	addition run the exit method for all existing network
1355  *	namespaces.
1356  */
unregister_pernet_device(struct pernet_operations * ops)1357 void unregister_pernet_device(struct pernet_operations *ops)
1358 {
1359 	down_write(&pernet_ops_rwsem);
1360 	if (&ops->list == first_device)
1361 		first_device = first_device->next;
1362 	unregister_pernet_operations(ops);
1363 	up_write(&pernet_ops_rwsem);
1364 }
1365 EXPORT_SYMBOL_GPL(unregister_pernet_device);
1366 
1367 #ifdef CONFIG_NET_NS
netns_get(struct task_struct * task)1368 static struct ns_common *netns_get(struct task_struct *task)
1369 {
1370 	struct net *net = NULL;
1371 	struct nsproxy *nsproxy;
1372 
1373 	task_lock(task);
1374 	nsproxy = task->nsproxy;
1375 	if (nsproxy)
1376 		net = get_net(nsproxy->net_ns);
1377 	task_unlock(task);
1378 
1379 	return net ? &net->ns : NULL;
1380 }
1381 
to_net_ns(struct ns_common * ns)1382 static inline struct net *to_net_ns(struct ns_common *ns)
1383 {
1384 	return container_of(ns, struct net, ns);
1385 }
1386 
netns_put(struct ns_common * ns)1387 static void netns_put(struct ns_common *ns)
1388 {
1389 	put_net(to_net_ns(ns));
1390 }
1391 
netns_install(struct nsset * nsset,struct ns_common * ns)1392 static int netns_install(struct nsset *nsset, struct ns_common *ns)
1393 {
1394 	struct nsproxy *nsproxy = nsset->nsproxy;
1395 	struct net *net = to_net_ns(ns);
1396 
1397 	if (!ns_capable(net->user_ns, CAP_SYS_ADMIN) ||
1398 	    !ns_capable(nsset->cred->user_ns, CAP_SYS_ADMIN))
1399 		return -EPERM;
1400 
1401 	put_net(nsproxy->net_ns);
1402 	nsproxy->net_ns = get_net(net);
1403 	return 0;
1404 }
1405 
netns_owner(struct ns_common * ns)1406 static struct user_namespace *netns_owner(struct ns_common *ns)
1407 {
1408 	return to_net_ns(ns)->user_ns;
1409 }
1410 
1411 const struct proc_ns_operations netns_operations = {
1412 	.name		= "net",
1413 	.type		= CLONE_NEWNET,
1414 	.get		= netns_get,
1415 	.put		= netns_put,
1416 	.install	= netns_install,
1417 	.owner		= netns_owner,
1418 };
1419 #endif
1420