2 * NETLINK Kernel-user communication protocol.
4 * Authors: Alan Cox <alan@redhat.com>
5 * Alexey Kuznetsov <kuznet@ms2.inr.ac.ru>
7 * This program is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU General Public License
9 * as published by the Free Software Foundation; either version
10 * 2 of the License, or (at your option) any later version.
12 * Tue Jun 26 14:36:48 MEST 2001 Herbert "herp" Rosmanith
13 * added netlink_proto_exit
14 * Tue Jan 22 18:32:44 BRST 2002 Arnaldo C. de Melo <acme@conectiva.com.br>
15 * use nlk_sk, as sk->protinfo is on a diet 8)
16 * Fri Jul 22 19:51:12 MEST 2005 Harald Welte <laforge@gnumonks.org>
17 * - inc module use count of module that owns
18 * the kernel socket in case userspace opens
19 * socket of same protocol
20 * - remove all module support, since netlink is
21 * mandatory if CONFIG_NET=y these days
24 #include <linux/module.h>
26 #include <linux/capability.h>
27 #include <linux/kernel.h>
28 #include <linux/init.h>
29 #include <linux/signal.h>
30 #include <linux/sched.h>
31 #include <linux/errno.h>
32 #include <linux/string.h>
33 #include <linux/stat.h>
34 #include <linux/socket.h>
36 #include <linux/fcntl.h>
37 #include <linux/termios.h>
38 #include <linux/sockios.h>
39 #include <linux/net.h>
41 #include <linux/slab.h>
42 #include <asm/uaccess.h>
43 #include <linux/skbuff.h>
44 #include <linux/netdevice.h>
45 #include <linux/rtnetlink.h>
46 #include <linux/proc_fs.h>
47 #include <linux/seq_file.h>
48 #include <linux/notifier.h>
49 #include <linux/security.h>
50 #include <linux/jhash.h>
51 #include <linux/jiffies.h>
52 #include <linux/random.h>
53 #include <linux/bitops.h>
55 #include <linux/types.h>
56 #include <linux/audit.h>
57 #include <linux/selinux.h>
58 #include <linux/mutex.h>
62 #include <net/netlink.h>
64 #define NLGRPSZ(x) (ALIGN(x, sizeof(unsigned long) * 8) / 8)
65 #define NLGRPLONGS(x) (NLGRPSZ(x)/sizeof(unsigned long))
68 /* struct sock has to be the first member of netlink_sock */
76 unsigned long *groups
;
78 wait_queue_head_t wait
;
79 struct netlink_callback
*cb
;
80 struct mutex
*cb_mutex
;
81 struct mutex cb_def_mutex
;
82 void (*data_ready
)(struct sock
*sk
, int bytes
);
83 struct module
*module
;
86 #define NETLINK_KERNEL_SOCKET 0x1
87 #define NETLINK_RECV_PKTINFO 0x2
89 static inline struct netlink_sock
*nlk_sk(struct sock
*sk
)
91 return (struct netlink_sock
*)sk
;
95 struct hlist_head
*table
;
96 unsigned long rehash_time
;
101 unsigned int entries
;
102 unsigned int max_shift
;
107 struct netlink_table
{
108 struct nl_pid_hash hash
;
109 struct hlist_head mc_list
;
110 unsigned long *listeners
;
111 unsigned int nl_nonroot
;
113 struct mutex
*cb_mutex
;
114 struct module
*module
;
118 static struct netlink_table
*nl_table
;
120 static DECLARE_WAIT_QUEUE_HEAD(nl_table_wait
);
122 static int netlink_dump(struct sock
*sk
);
123 static void netlink_destroy_callback(struct netlink_callback
*cb
);
124 static void netlink_queue_skip(struct nlmsghdr
*nlh
, struct sk_buff
*skb
);
126 static DEFINE_RWLOCK(nl_table_lock
);
127 static atomic_t nl_table_users
= ATOMIC_INIT(0);
129 static ATOMIC_NOTIFIER_HEAD(netlink_chain
);
131 static u32
netlink_group_mask(u32 group
)
133 return group
? 1 << (group
- 1) : 0;
136 static struct hlist_head
*nl_pid_hashfn(struct nl_pid_hash
*hash
, u32 pid
)
138 return &hash
->table
[jhash_1word(pid
, hash
->rnd
) & hash
->mask
];
141 static void netlink_sock_destruct(struct sock
*sk
)
143 struct netlink_sock
*nlk
= nlk_sk(sk
);
147 nlk
->cb
->done(nlk
->cb
);
148 netlink_destroy_callback(nlk
->cb
);
151 skb_queue_purge(&sk
->sk_receive_queue
);
153 if (!sock_flag(sk
, SOCK_DEAD
)) {
154 printk("Freeing alive netlink socket %p\n", sk
);
157 BUG_TRAP(!atomic_read(&sk
->sk_rmem_alloc
));
158 BUG_TRAP(!atomic_read(&sk
->sk_wmem_alloc
));
159 BUG_TRAP(!nlk_sk(sk
)->groups
);
162 /* This lock without WQ_FLAG_EXCLUSIVE is good on UP and it is _very_ bad on SMP.
163 * Look, when several writers sleep and reader wakes them up, all but one
164 * immediately hit write lock and grab all the cpus. Exclusive sleep solves
165 * this, _but_ remember, it adds useless work on UP machines.
168 static void netlink_table_grab(void)
170 write_lock_irq(&nl_table_lock
);
172 if (atomic_read(&nl_table_users
)) {
173 DECLARE_WAITQUEUE(wait
, current
);
175 add_wait_queue_exclusive(&nl_table_wait
, &wait
);
177 set_current_state(TASK_UNINTERRUPTIBLE
);
178 if (atomic_read(&nl_table_users
) == 0)
180 write_unlock_irq(&nl_table_lock
);
182 write_lock_irq(&nl_table_lock
);
185 __set_current_state(TASK_RUNNING
);
186 remove_wait_queue(&nl_table_wait
, &wait
);
190 static __inline__
void netlink_table_ungrab(void)
192 write_unlock_irq(&nl_table_lock
);
193 wake_up(&nl_table_wait
);
196 static __inline__
void
197 netlink_lock_table(void)
199 /* read_lock() synchronizes us to netlink_table_grab */
201 read_lock(&nl_table_lock
);
202 atomic_inc(&nl_table_users
);
203 read_unlock(&nl_table_lock
);
206 static __inline__
void
207 netlink_unlock_table(void)
209 if (atomic_dec_and_test(&nl_table_users
))
210 wake_up(&nl_table_wait
);
213 static __inline__
struct sock
*netlink_lookup(int protocol
, u32 pid
)
215 struct nl_pid_hash
*hash
= &nl_table
[protocol
].hash
;
216 struct hlist_head
*head
;
218 struct hlist_node
*node
;
220 read_lock(&nl_table_lock
);
221 head
= nl_pid_hashfn(hash
, pid
);
222 sk_for_each(sk
, node
, head
) {
223 if (nlk_sk(sk
)->pid
== pid
) {
230 read_unlock(&nl_table_lock
);
234 static inline struct hlist_head
*nl_pid_hash_alloc(size_t size
)
236 if (size
<= PAGE_SIZE
)
237 return kmalloc(size
, GFP_ATOMIC
);
239 return (struct hlist_head
*)
240 __get_free_pages(GFP_ATOMIC
, get_order(size
));
243 static inline void nl_pid_hash_free(struct hlist_head
*table
, size_t size
)
245 if (size
<= PAGE_SIZE
)
248 free_pages((unsigned long)table
, get_order(size
));
251 static int nl_pid_hash_rehash(struct nl_pid_hash
*hash
, int grow
)
253 unsigned int omask
, mask
, shift
;
255 struct hlist_head
*otable
, *table
;
258 omask
= mask
= hash
->mask
;
259 osize
= size
= (mask
+ 1) * sizeof(*table
);
263 if (++shift
> hash
->max_shift
)
269 table
= nl_pid_hash_alloc(size
);
273 memset(table
, 0, size
);
274 otable
= hash
->table
;
278 get_random_bytes(&hash
->rnd
, sizeof(hash
->rnd
));
280 for (i
= 0; i
<= omask
; i
++) {
282 struct hlist_node
*node
, *tmp
;
284 sk_for_each_safe(sk
, node
, tmp
, &otable
[i
])
285 __sk_add_node(sk
, nl_pid_hashfn(hash
, nlk_sk(sk
)->pid
));
288 nl_pid_hash_free(otable
, osize
);
289 hash
->rehash_time
= jiffies
+ 10 * 60 * HZ
;
293 static inline int nl_pid_hash_dilute(struct nl_pid_hash
*hash
, int len
)
295 int avg
= hash
->entries
>> hash
->shift
;
297 if (unlikely(avg
> 1) && nl_pid_hash_rehash(hash
, 1))
300 if (unlikely(len
> avg
) && time_after(jiffies
, hash
->rehash_time
)) {
301 nl_pid_hash_rehash(hash
, 0);
308 static const struct proto_ops netlink_ops
;
311 netlink_update_listeners(struct sock
*sk
)
313 struct netlink_table
*tbl
= &nl_table
[sk
->sk_protocol
];
314 struct hlist_node
*node
;
318 for (i
= 0; i
< NLGRPLONGS(tbl
->groups
); i
++) {
320 sk_for_each_bound(sk
, node
, &tbl
->mc_list
) {
321 if (i
< NLGRPLONGS(nlk_sk(sk
)->ngroups
))
322 mask
|= nlk_sk(sk
)->groups
[i
];
324 tbl
->listeners
[i
] = mask
;
326 /* this function is only called with the netlink table "grabbed", which
327 * makes sure updates are visible before bind or setsockopt return. */
330 static int netlink_insert(struct sock
*sk
, u32 pid
)
332 struct nl_pid_hash
*hash
= &nl_table
[sk
->sk_protocol
].hash
;
333 struct hlist_head
*head
;
334 int err
= -EADDRINUSE
;
336 struct hlist_node
*node
;
339 netlink_table_grab();
340 head
= nl_pid_hashfn(hash
, pid
);
342 sk_for_each(osk
, node
, head
) {
343 if (nlk_sk(osk
)->pid
== pid
)
355 if (BITS_PER_LONG
> 32 && unlikely(hash
->entries
>= UINT_MAX
))
358 if (len
&& nl_pid_hash_dilute(hash
, len
))
359 head
= nl_pid_hashfn(hash
, pid
);
361 nlk_sk(sk
)->pid
= pid
;
362 sk_add_node(sk
, head
);
366 netlink_table_ungrab();
370 static void netlink_remove(struct sock
*sk
)
372 netlink_table_grab();
373 if (sk_del_node_init(sk
))
374 nl_table
[sk
->sk_protocol
].hash
.entries
--;
375 if (nlk_sk(sk
)->subscriptions
)
376 __sk_del_bind_node(sk
);
377 netlink_table_ungrab();
380 static struct proto netlink_proto
= {
382 .owner
= THIS_MODULE
,
383 .obj_size
= sizeof(struct netlink_sock
),
386 static int __netlink_create(struct socket
*sock
, struct mutex
*cb_mutex
,
390 struct netlink_sock
*nlk
;
392 sock
->ops
= &netlink_ops
;
394 sk
= sk_alloc(PF_NETLINK
, GFP_KERNEL
, &netlink_proto
, 1);
398 sock_init_data(sock
, sk
);
402 nlk
->cb_mutex
= cb_mutex
;
404 nlk
->cb_mutex
= &nlk
->cb_def_mutex
;
405 mutex_init(nlk
->cb_mutex
);
407 init_waitqueue_head(&nlk
->wait
);
409 sk
->sk_destruct
= netlink_sock_destruct
;
410 sk
->sk_protocol
= protocol
;
414 static int netlink_create(struct socket
*sock
, int protocol
)
416 struct module
*module
= NULL
;
417 struct mutex
*cb_mutex
;
418 struct netlink_sock
*nlk
;
421 sock
->state
= SS_UNCONNECTED
;
423 if (sock
->type
!= SOCK_RAW
&& sock
->type
!= SOCK_DGRAM
)
424 return -ESOCKTNOSUPPORT
;
426 if (protocol
<0 || protocol
>= MAX_LINKS
)
427 return -EPROTONOSUPPORT
;
429 netlink_lock_table();
431 if (!nl_table
[protocol
].registered
) {
432 netlink_unlock_table();
433 request_module("net-pf-%d-proto-%d", PF_NETLINK
, protocol
);
434 netlink_lock_table();
437 if (nl_table
[protocol
].registered
&&
438 try_module_get(nl_table
[protocol
].module
))
439 module
= nl_table
[protocol
].module
;
440 cb_mutex
= nl_table
[protocol
].cb_mutex
;
441 netlink_unlock_table();
443 if ((err
= __netlink_create(sock
, cb_mutex
, protocol
)) < 0)
446 nlk
= nlk_sk(sock
->sk
);
447 nlk
->module
= module
;
456 static int netlink_release(struct socket
*sock
)
458 struct sock
*sk
= sock
->sk
;
459 struct netlink_sock
*nlk
;
469 * OK. Socket is unlinked, any packets that arrive now
474 wake_up_interruptible_all(&nlk
->wait
);
476 skb_queue_purge(&sk
->sk_write_queue
);
478 if (nlk
->pid
&& !nlk
->subscriptions
) {
479 struct netlink_notify n
= {
480 .protocol
= sk
->sk_protocol
,
483 atomic_notifier_call_chain(&netlink_chain
,
484 NETLINK_URELEASE
, &n
);
487 module_put(nlk
->module
);
489 netlink_table_grab();
490 if (nlk
->flags
& NETLINK_KERNEL_SOCKET
) {
491 kfree(nl_table
[sk
->sk_protocol
].listeners
);
492 nl_table
[sk
->sk_protocol
].module
= NULL
;
493 nl_table
[sk
->sk_protocol
].registered
= 0;
494 } else if (nlk
->subscriptions
)
495 netlink_update_listeners(sk
);
496 netlink_table_ungrab();
505 static int netlink_autobind(struct socket
*sock
)
507 struct sock
*sk
= sock
->sk
;
508 struct nl_pid_hash
*hash
= &nl_table
[sk
->sk_protocol
].hash
;
509 struct hlist_head
*head
;
511 struct hlist_node
*node
;
512 s32 pid
= current
->tgid
;
514 static s32 rover
= -4097;
518 netlink_table_grab();
519 head
= nl_pid_hashfn(hash
, pid
);
520 sk_for_each(osk
, node
, head
) {
521 if (nlk_sk(osk
)->pid
== pid
) {
522 /* Bind collision, search negative pid values. */
526 netlink_table_ungrab();
530 netlink_table_ungrab();
532 err
= netlink_insert(sk
, pid
);
533 if (err
== -EADDRINUSE
)
536 /* If 2 threads race to autobind, that is fine. */
543 static inline int netlink_capable(struct socket
*sock
, unsigned int flag
)
545 return (nl_table
[sock
->sk
->sk_protocol
].nl_nonroot
& flag
) ||
546 capable(CAP_NET_ADMIN
);
550 netlink_update_subscriptions(struct sock
*sk
, unsigned int subscriptions
)
552 struct netlink_sock
*nlk
= nlk_sk(sk
);
554 if (nlk
->subscriptions
&& !subscriptions
)
555 __sk_del_bind_node(sk
);
556 else if (!nlk
->subscriptions
&& subscriptions
)
557 sk_add_bind_node(sk
, &nl_table
[sk
->sk_protocol
].mc_list
);
558 nlk
->subscriptions
= subscriptions
;
561 static int netlink_realloc_groups(struct sock
*sk
)
563 struct netlink_sock
*nlk
= nlk_sk(sk
);
565 unsigned long *new_groups
;
568 netlink_table_grab();
570 groups
= nl_table
[sk
->sk_protocol
].groups
;
571 if (!nl_table
[sk
->sk_protocol
].registered
) {
576 if (nlk
->ngroups
>= groups
)
579 new_groups
= krealloc(nlk
->groups
, NLGRPSZ(groups
), GFP_ATOMIC
);
580 if (new_groups
== NULL
) {
584 memset((char*)new_groups
+ NLGRPSZ(nlk
->ngroups
), 0,
585 NLGRPSZ(groups
) - NLGRPSZ(nlk
->ngroups
));
587 nlk
->groups
= new_groups
;
588 nlk
->ngroups
= groups
;
590 netlink_table_ungrab();
594 static int netlink_bind(struct socket
*sock
, struct sockaddr
*addr
, int addr_len
)
596 struct sock
*sk
= sock
->sk
;
597 struct netlink_sock
*nlk
= nlk_sk(sk
);
598 struct sockaddr_nl
*nladdr
= (struct sockaddr_nl
*)addr
;
601 if (nladdr
->nl_family
!= AF_NETLINK
)
604 /* Only superuser is allowed to listen multicasts */
605 if (nladdr
->nl_groups
) {
606 if (!netlink_capable(sock
, NL_NONROOT_RECV
))
608 err
= netlink_realloc_groups(sk
);
614 if (nladdr
->nl_pid
!= nlk
->pid
)
617 err
= nladdr
->nl_pid
?
618 netlink_insert(sk
, nladdr
->nl_pid
) :
619 netlink_autobind(sock
);
624 if (!nladdr
->nl_groups
&& (nlk
->groups
== NULL
|| !(u32
)nlk
->groups
[0]))
627 netlink_table_grab();
628 netlink_update_subscriptions(sk
, nlk
->subscriptions
+
629 hweight32(nladdr
->nl_groups
) -
630 hweight32(nlk
->groups
[0]));
631 nlk
->groups
[0] = (nlk
->groups
[0] & ~0xffffffffUL
) | nladdr
->nl_groups
;
632 netlink_update_listeners(sk
);
633 netlink_table_ungrab();
638 static int netlink_connect(struct socket
*sock
, struct sockaddr
*addr
,
642 struct sock
*sk
= sock
->sk
;
643 struct netlink_sock
*nlk
= nlk_sk(sk
);
644 struct sockaddr_nl
*nladdr
=(struct sockaddr_nl
*)addr
;
646 if (addr
->sa_family
== AF_UNSPEC
) {
647 sk
->sk_state
= NETLINK_UNCONNECTED
;
652 if (addr
->sa_family
!= AF_NETLINK
)
655 /* Only superuser is allowed to send multicasts */
656 if (nladdr
->nl_groups
&& !netlink_capable(sock
, NL_NONROOT_SEND
))
660 err
= netlink_autobind(sock
);
663 sk
->sk_state
= NETLINK_CONNECTED
;
664 nlk
->dst_pid
= nladdr
->nl_pid
;
665 nlk
->dst_group
= ffs(nladdr
->nl_groups
);
671 static int netlink_getname(struct socket
*sock
, struct sockaddr
*addr
, int *addr_len
, int peer
)
673 struct sock
*sk
= sock
->sk
;
674 struct netlink_sock
*nlk
= nlk_sk(sk
);
675 struct sockaddr_nl
*nladdr
=(struct sockaddr_nl
*)addr
;
677 nladdr
->nl_family
= AF_NETLINK
;
679 *addr_len
= sizeof(*nladdr
);
682 nladdr
->nl_pid
= nlk
->dst_pid
;
683 nladdr
->nl_groups
= netlink_group_mask(nlk
->dst_group
);
685 nladdr
->nl_pid
= nlk
->pid
;
686 nladdr
->nl_groups
= nlk
->groups
? nlk
->groups
[0] : 0;
691 static void netlink_overrun(struct sock
*sk
)
693 if (!test_and_set_bit(0, &nlk_sk(sk
)->state
)) {
694 sk
->sk_err
= ENOBUFS
;
695 sk
->sk_error_report(sk
);
699 static struct sock
*netlink_getsockbypid(struct sock
*ssk
, u32 pid
)
701 int protocol
= ssk
->sk_protocol
;
703 struct netlink_sock
*nlk
;
705 sock
= netlink_lookup(protocol
, pid
);
707 return ERR_PTR(-ECONNREFUSED
);
709 /* Don't bother queuing skb if kernel socket has no input function */
711 if ((nlk
->pid
== 0 && !nlk
->data_ready
) ||
712 (sock
->sk_state
== NETLINK_CONNECTED
&&
713 nlk
->dst_pid
!= nlk_sk(ssk
)->pid
)) {
715 return ERR_PTR(-ECONNREFUSED
);
720 struct sock
*netlink_getsockbyfilp(struct file
*filp
)
722 struct inode
*inode
= filp
->f_path
.dentry
->d_inode
;
725 if (!S_ISSOCK(inode
->i_mode
))
726 return ERR_PTR(-ENOTSOCK
);
728 sock
= SOCKET_I(inode
)->sk
;
729 if (sock
->sk_family
!= AF_NETLINK
)
730 return ERR_PTR(-EINVAL
);
737 * Attach a skb to a netlink socket.
738 * The caller must hold a reference to the destination socket. On error, the
739 * reference is dropped. The skb is not send to the destination, just all
740 * all error checks are performed and memory in the queue is reserved.
742 * < 0: error. skb freed, reference to sock dropped.
744 * 1: repeat lookup - reference dropped while waiting for socket memory.
746 int netlink_attachskb(struct sock
*sk
, struct sk_buff
*skb
, int nonblock
,
747 long timeo
, struct sock
*ssk
)
749 struct netlink_sock
*nlk
;
753 if (atomic_read(&sk
->sk_rmem_alloc
) > sk
->sk_rcvbuf
||
754 test_bit(0, &nlk
->state
)) {
755 DECLARE_WAITQUEUE(wait
, current
);
757 if (!ssk
|| nlk_sk(ssk
)->pid
== 0)
764 __set_current_state(TASK_INTERRUPTIBLE
);
765 add_wait_queue(&nlk
->wait
, &wait
);
767 if ((atomic_read(&sk
->sk_rmem_alloc
) > sk
->sk_rcvbuf
||
768 test_bit(0, &nlk
->state
)) &&
769 !sock_flag(sk
, SOCK_DEAD
))
770 timeo
= schedule_timeout(timeo
);
772 __set_current_state(TASK_RUNNING
);
773 remove_wait_queue(&nlk
->wait
, &wait
);
776 if (signal_pending(current
)) {
778 return sock_intr_errno(timeo
);
782 skb_set_owner_r(skb
, sk
);
786 int netlink_sendskb(struct sock
*sk
, struct sk_buff
*skb
, int protocol
)
790 skb_queue_tail(&sk
->sk_receive_queue
, skb
);
791 sk
->sk_data_ready(sk
, len
);
796 void netlink_detachskb(struct sock
*sk
, struct sk_buff
*skb
)
802 static inline struct sk_buff
*netlink_trim(struct sk_buff
*skb
,
809 delta
= skb
->end
- skb
->tail
;
810 if (delta
* 2 < skb
->truesize
)
813 if (skb_shared(skb
)) {
814 struct sk_buff
*nskb
= skb_clone(skb
, allocation
);
821 if (!pskb_expand_head(skb
, 0, -delta
, allocation
))
822 skb
->truesize
-= delta
;
827 int netlink_unicast(struct sock
*ssk
, struct sk_buff
*skb
, u32 pid
, int nonblock
)
833 skb
= netlink_trim(skb
, gfp_any());
835 timeo
= sock_sndtimeo(ssk
, nonblock
);
837 sk
= netlink_getsockbypid(ssk
, pid
);
842 err
= netlink_attachskb(sk
, skb
, nonblock
, timeo
, ssk
);
848 return netlink_sendskb(sk
, skb
, ssk
->sk_protocol
);
851 int netlink_has_listeners(struct sock
*sk
, unsigned int group
)
854 unsigned long *listeners
;
856 BUG_ON(!(nlk_sk(sk
)->flags
& NETLINK_KERNEL_SOCKET
));
859 listeners
= rcu_dereference(nl_table
[sk
->sk_protocol
].listeners
);
861 if (group
- 1 < nl_table
[sk
->sk_protocol
].groups
)
862 res
= test_bit(group
- 1, listeners
);
868 EXPORT_SYMBOL_GPL(netlink_has_listeners
);
870 static __inline__
int netlink_broadcast_deliver(struct sock
*sk
, struct sk_buff
*skb
)
872 struct netlink_sock
*nlk
= nlk_sk(sk
);
874 if (atomic_read(&sk
->sk_rmem_alloc
) <= sk
->sk_rcvbuf
&&
875 !test_bit(0, &nlk
->state
)) {
876 skb_set_owner_r(skb
, sk
);
877 skb_queue_tail(&sk
->sk_receive_queue
, skb
);
878 sk
->sk_data_ready(sk
, skb
->len
);
879 return atomic_read(&sk
->sk_rmem_alloc
) > sk
->sk_rcvbuf
;
884 struct netlink_broadcast_data
{
885 struct sock
*exclude_sk
;
892 struct sk_buff
*skb
, *skb2
;
895 static inline int do_one_broadcast(struct sock
*sk
,
896 struct netlink_broadcast_data
*p
)
898 struct netlink_sock
*nlk
= nlk_sk(sk
);
901 if (p
->exclude_sk
== sk
)
904 if (nlk
->pid
== p
->pid
|| p
->group
- 1 >= nlk
->ngroups
||
905 !test_bit(p
->group
- 1, nlk
->groups
))
914 if (p
->skb2
== NULL
) {
915 if (skb_shared(p
->skb
)) {
916 p
->skb2
= skb_clone(p
->skb
, p
->allocation
);
918 p
->skb2
= skb_get(p
->skb
);
920 * skb ownership may have been set when
921 * delivered to a previous socket.
926 if (p
->skb2
== NULL
) {
928 /* Clone failed. Notify ALL listeners. */
930 } else if ((val
= netlink_broadcast_deliver(sk
, p
->skb2
)) < 0) {
943 int netlink_broadcast(struct sock
*ssk
, struct sk_buff
*skb
, u32 pid
,
944 u32 group
, gfp_t allocation
)
946 struct netlink_broadcast_data info
;
947 struct hlist_node
*node
;
950 skb
= netlink_trim(skb
, allocation
);
952 info
.exclude_sk
= ssk
;
958 info
.allocation
= allocation
;
962 /* While we sleep in clone, do not allow to change socket list */
964 netlink_lock_table();
966 sk_for_each_bound(sk
, node
, &nl_table
[ssk
->sk_protocol
].mc_list
)
967 do_one_broadcast(sk
, &info
);
971 netlink_unlock_table();
974 kfree_skb(info
.skb2
);
976 if (info
.delivered
) {
977 if (info
.congested
&& (allocation
& __GFP_WAIT
))
986 struct netlink_set_err_data
{
987 struct sock
*exclude_sk
;
993 static inline int do_one_set_err(struct sock
*sk
,
994 struct netlink_set_err_data
*p
)
996 struct netlink_sock
*nlk
= nlk_sk(sk
);
998 if (sk
== p
->exclude_sk
)
1001 if (nlk
->pid
== p
->pid
|| p
->group
- 1 >= nlk
->ngroups
||
1002 !test_bit(p
->group
- 1, nlk
->groups
))
1005 sk
->sk_err
= p
->code
;
1006 sk
->sk_error_report(sk
);
1011 void netlink_set_err(struct sock
*ssk
, u32 pid
, u32 group
, int code
)
1013 struct netlink_set_err_data info
;
1014 struct hlist_node
*node
;
1017 info
.exclude_sk
= ssk
;
1022 read_lock(&nl_table_lock
);
1024 sk_for_each_bound(sk
, node
, &nl_table
[ssk
->sk_protocol
].mc_list
)
1025 do_one_set_err(sk
, &info
);
1027 read_unlock(&nl_table_lock
);
1030 /* must be called with netlink table grabbed */
1031 static void netlink_update_socket_mc(struct netlink_sock
*nlk
,
1035 int old
, new = !!is_new
, subscriptions
;
1037 old
= test_bit(group
- 1, nlk
->groups
);
1038 subscriptions
= nlk
->subscriptions
- old
+ new;
1040 __set_bit(group
- 1, nlk
->groups
);
1042 __clear_bit(group
- 1, nlk
->groups
);
1043 netlink_update_subscriptions(&nlk
->sk
, subscriptions
);
1044 netlink_update_listeners(&nlk
->sk
);
1047 static int netlink_setsockopt(struct socket
*sock
, int level
, int optname
,
1048 char __user
*optval
, int optlen
)
1050 struct sock
*sk
= sock
->sk
;
1051 struct netlink_sock
*nlk
= nlk_sk(sk
);
1052 unsigned int val
= 0;
1055 if (level
!= SOL_NETLINK
)
1056 return -ENOPROTOOPT
;
1058 if (optlen
>= sizeof(int) &&
1059 get_user(val
, (unsigned int __user
*)optval
))
1063 case NETLINK_PKTINFO
:
1065 nlk
->flags
|= NETLINK_RECV_PKTINFO
;
1067 nlk
->flags
&= ~NETLINK_RECV_PKTINFO
;
1070 case NETLINK_ADD_MEMBERSHIP
:
1071 case NETLINK_DROP_MEMBERSHIP
: {
1072 if (!netlink_capable(sock
, NL_NONROOT_RECV
))
1074 err
= netlink_realloc_groups(sk
);
1077 if (!val
|| val
- 1 >= nlk
->ngroups
)
1079 netlink_table_grab();
1080 netlink_update_socket_mc(nlk
, val
,
1081 optname
== NETLINK_ADD_MEMBERSHIP
);
1082 netlink_table_ungrab();
1092 static int netlink_getsockopt(struct socket
*sock
, int level
, int optname
,
1093 char __user
*optval
, int __user
*optlen
)
1095 struct sock
*sk
= sock
->sk
;
1096 struct netlink_sock
*nlk
= nlk_sk(sk
);
1099 if (level
!= SOL_NETLINK
)
1100 return -ENOPROTOOPT
;
1102 if (get_user(len
, optlen
))
1108 case NETLINK_PKTINFO
:
1109 if (len
< sizeof(int))
1112 val
= nlk
->flags
& NETLINK_RECV_PKTINFO
? 1 : 0;
1113 if (put_user(len
, optlen
) ||
1114 put_user(val
, optval
))
1124 static void netlink_cmsg_recv_pktinfo(struct msghdr
*msg
, struct sk_buff
*skb
)
1126 struct nl_pktinfo info
;
1128 info
.group
= NETLINK_CB(skb
).dst_group
;
1129 put_cmsg(msg
, SOL_NETLINK
, NETLINK_PKTINFO
, sizeof(info
), &info
);
1132 static inline void netlink_rcv_wake(struct sock
*sk
)
1134 struct netlink_sock
*nlk
= nlk_sk(sk
);
1136 if (skb_queue_empty(&sk
->sk_receive_queue
))
1137 clear_bit(0, &nlk
->state
);
1138 if (!test_bit(0, &nlk
->state
))
1139 wake_up_interruptible(&nlk
->wait
);
1142 static int netlink_sendmsg(struct kiocb
*kiocb
, struct socket
*sock
,
1143 struct msghdr
*msg
, size_t len
)
1145 struct sock_iocb
*siocb
= kiocb_to_siocb(kiocb
);
1146 struct sock
*sk
= sock
->sk
;
1147 struct netlink_sock
*nlk
= nlk_sk(sk
);
1148 struct sockaddr_nl
*addr
=msg
->msg_name
;
1151 struct sk_buff
*skb
;
1153 struct scm_cookie scm
;
1155 if (msg
->msg_flags
&MSG_OOB
)
1158 if (NULL
== siocb
->scm
)
1160 err
= scm_send(sock
, msg
, siocb
->scm
);
1164 if (msg
->msg_namelen
) {
1165 if (addr
->nl_family
!= AF_NETLINK
)
1167 dst_pid
= addr
->nl_pid
;
1168 dst_group
= ffs(addr
->nl_groups
);
1169 if (dst_group
&& !netlink_capable(sock
, NL_NONROOT_SEND
))
1172 dst_pid
= nlk
->dst_pid
;
1173 dst_group
= nlk
->dst_group
;
1177 err
= netlink_autobind(sock
);
1183 if (len
> sk
->sk_sndbuf
- 32)
1186 skb
= alloc_skb(len
, GFP_KERNEL
);
1190 NETLINK_CB(skb
).pid
= nlk
->pid
;
1191 NETLINK_CB(skb
).dst_group
= dst_group
;
1192 NETLINK_CB(skb
).loginuid
= audit_get_loginuid(current
->audit_context
);
1193 selinux_get_task_sid(current
, &(NETLINK_CB(skb
).sid
));
1194 memcpy(NETLINK_CREDS(skb
), &siocb
->scm
->creds
, sizeof(struct ucred
));
1196 /* What can I do? Netlink is asynchronous, so that
1197 we will have to save current capabilities to
1198 check them, when this message will be delivered
1199 to corresponding kernel module. --ANK (980802)
1203 if (memcpy_fromiovec(skb_put(skb
,len
), msg
->msg_iov
, len
)) {
1208 err
= security_netlink_send(sk
, skb
);
1215 atomic_inc(&skb
->users
);
1216 netlink_broadcast(sk
, skb
, dst_pid
, dst_group
, GFP_KERNEL
);
1218 err
= netlink_unicast(sk
, skb
, dst_pid
, msg
->msg_flags
&MSG_DONTWAIT
);
1224 static int netlink_recvmsg(struct kiocb
*kiocb
, struct socket
*sock
,
1225 struct msghdr
*msg
, size_t len
,
1228 struct sock_iocb
*siocb
= kiocb_to_siocb(kiocb
);
1229 struct scm_cookie scm
;
1230 struct sock
*sk
= sock
->sk
;
1231 struct netlink_sock
*nlk
= nlk_sk(sk
);
1232 int noblock
= flags
&MSG_DONTWAIT
;
1234 struct sk_buff
*skb
;
1242 skb
= skb_recv_datagram(sk
,flags
,noblock
,&err
);
1246 msg
->msg_namelen
= 0;
1250 msg
->msg_flags
|= MSG_TRUNC
;
1254 skb_reset_transport_header(skb
);
1255 err
= skb_copy_datagram_iovec(skb
, 0, msg
->msg_iov
, copied
);
1257 if (msg
->msg_name
) {
1258 struct sockaddr_nl
*addr
= (struct sockaddr_nl
*)msg
->msg_name
;
1259 addr
->nl_family
= AF_NETLINK
;
1261 addr
->nl_pid
= NETLINK_CB(skb
).pid
;
1262 addr
->nl_groups
= netlink_group_mask(NETLINK_CB(skb
).dst_group
);
1263 msg
->msg_namelen
= sizeof(*addr
);
1266 if (nlk
->flags
& NETLINK_RECV_PKTINFO
)
1267 netlink_cmsg_recv_pktinfo(msg
, skb
);
1269 if (NULL
== siocb
->scm
) {
1270 memset(&scm
, 0, sizeof(scm
));
1273 siocb
->scm
->creds
= *NETLINK_CREDS(skb
);
1274 if (flags
& MSG_TRUNC
)
1276 skb_free_datagram(sk
, skb
);
1278 if (nlk
->cb
&& atomic_read(&sk
->sk_rmem_alloc
) <= sk
->sk_rcvbuf
/ 2)
1281 scm_recv(sock
, msg
, siocb
->scm
, flags
);
1283 netlink_rcv_wake(sk
);
1284 return err
? : copied
;
1287 static void netlink_data_ready(struct sock
*sk
, int len
)
1289 struct netlink_sock
*nlk
= nlk_sk(sk
);
1291 if (nlk
->data_ready
)
1292 nlk
->data_ready(sk
, len
);
1293 netlink_rcv_wake(sk
);
1297 * We export these functions to other modules. They provide a
1298 * complete set of kernel non-blocking support for message
1303 netlink_kernel_create(int unit
, unsigned int groups
,
1304 void (*input
)(struct sock
*sk
, int len
),
1305 struct mutex
*cb_mutex
, struct module
*module
)
1307 struct socket
*sock
;
1309 struct netlink_sock
*nlk
;
1310 unsigned long *listeners
= NULL
;
1314 if (unit
<0 || unit
>=MAX_LINKS
)
1317 if (sock_create_lite(PF_NETLINK
, SOCK_DGRAM
, unit
, &sock
))
1320 if (__netlink_create(sock
, cb_mutex
, unit
) < 0)
1321 goto out_sock_release
;
1326 listeners
= kzalloc(NLGRPSZ(groups
), GFP_KERNEL
);
1328 goto out_sock_release
;
1331 sk
->sk_data_ready
= netlink_data_ready
;
1333 nlk_sk(sk
)->data_ready
= input
;
1335 if (netlink_insert(sk
, 0))
1336 goto out_sock_release
;
1339 nlk
->flags
|= NETLINK_KERNEL_SOCKET
;
1341 netlink_table_grab();
1342 nl_table
[unit
].groups
= groups
;
1343 nl_table
[unit
].listeners
= listeners
;
1344 nl_table
[unit
].cb_mutex
= cb_mutex
;
1345 nl_table
[unit
].module
= module
;
1346 nl_table
[unit
].registered
= 1;
1347 netlink_table_ungrab();
1358 * netlink_change_ngroups - change number of multicast groups
1360 * This changes the number of multicast groups that are available
1361 * on a certain netlink family. Note that it is not possible to
1362 * change the number of groups to below 32. Also note that it does
1363 * not implicitly call netlink_clear_multicast_users() when the
1364 * number of groups is reduced.
1366 * @sk: The kernel netlink socket, as returned by netlink_kernel_create().
1367 * @groups: The new number of groups.
1369 int netlink_change_ngroups(struct sock
*sk
, unsigned int groups
)
1371 unsigned long *listeners
, *old
= NULL
;
1372 struct netlink_table
*tbl
= &nl_table
[sk
->sk_protocol
];
1378 netlink_table_grab();
1379 if (NLGRPSZ(tbl
->groups
) < NLGRPSZ(groups
)) {
1380 listeners
= kzalloc(NLGRPSZ(groups
), GFP_ATOMIC
);
1385 old
= tbl
->listeners
;
1386 memcpy(listeners
, old
, NLGRPSZ(tbl
->groups
));
1387 rcu_assign_pointer(tbl
->listeners
, listeners
);
1389 tbl
->groups
= groups
;
1392 netlink_table_ungrab();
1397 EXPORT_SYMBOL(netlink_change_ngroups
);
1400 * netlink_clear_multicast_users - kick off multicast listeners
1402 * This function removes all listeners from the given group.
1403 * @ksk: The kernel netlink socket, as returned by
1404 * netlink_kernel_create().
1405 * @group: The multicast group to clear.
1407 void netlink_clear_multicast_users(struct sock
*ksk
, unsigned int group
)
1410 struct hlist_node
*node
;
1411 struct netlink_table
*tbl
= &nl_table
[ksk
->sk_protocol
];
1413 netlink_table_grab();
1415 sk_for_each_bound(sk
, node
, &tbl
->mc_list
)
1416 netlink_update_socket_mc(nlk_sk(sk
), group
, 0);
1418 netlink_table_ungrab();
1420 EXPORT_SYMBOL(netlink_clear_multicast_users
);
1422 void netlink_set_nonroot(int protocol
, unsigned int flags
)
1424 if ((unsigned int)protocol
< MAX_LINKS
)
1425 nl_table
[protocol
].nl_nonroot
= flags
;
1428 static void netlink_destroy_callback(struct netlink_callback
*cb
)
1436 * It looks a bit ugly.
1437 * It would be better to create kernel thread.
1440 static int netlink_dump(struct sock
*sk
)
1442 struct netlink_sock
*nlk
= nlk_sk(sk
);
1443 struct netlink_callback
*cb
;
1444 struct sk_buff
*skb
;
1445 struct nlmsghdr
*nlh
;
1446 int len
, err
= -ENOBUFS
;
1448 skb
= sock_rmalloc(sk
, NLMSG_GOODSIZE
, 0, GFP_KERNEL
);
1452 mutex_lock(nlk
->cb_mutex
);
1460 len
= cb
->dump(skb
, cb
);
1463 mutex_unlock(nlk
->cb_mutex
);
1464 skb_queue_tail(&sk
->sk_receive_queue
, skb
);
1465 sk
->sk_data_ready(sk
, len
);
1469 nlh
= nlmsg_put_answer(skb
, cb
, NLMSG_DONE
, sizeof(len
), NLM_F_MULTI
);
1473 memcpy(nlmsg_data(nlh
), &len
, sizeof(len
));
1475 skb_queue_tail(&sk
->sk_receive_queue
, skb
);
1476 sk
->sk_data_ready(sk
, skb
->len
);
1481 mutex_unlock(nlk
->cb_mutex
);
1483 netlink_destroy_callback(cb
);
1487 mutex_unlock(nlk
->cb_mutex
);
1493 int netlink_dump_start(struct sock
*ssk
, struct sk_buff
*skb
,
1494 struct nlmsghdr
*nlh
,
1495 int (*dump
)(struct sk_buff
*skb
, struct netlink_callback
*),
1496 int (*done
)(struct netlink_callback
*))
1498 struct netlink_callback
*cb
;
1500 struct netlink_sock
*nlk
;
1502 cb
= kzalloc(sizeof(*cb
), GFP_KERNEL
);
1509 atomic_inc(&skb
->users
);
1512 sk
= netlink_lookup(ssk
->sk_protocol
, NETLINK_CB(skb
).pid
);
1514 netlink_destroy_callback(cb
);
1515 return -ECONNREFUSED
;
1518 /* A dump is in progress... */
1519 mutex_lock(nlk
->cb_mutex
);
1521 mutex_unlock(nlk
->cb_mutex
);
1522 netlink_destroy_callback(cb
);
1527 mutex_unlock(nlk
->cb_mutex
);
1532 /* We successfully started a dump, by returning -EINTR we
1533 * signal the queue mangement to interrupt processing of
1534 * any netlink messages so userspace gets a chance to read
1539 void netlink_ack(struct sk_buff
*in_skb
, struct nlmsghdr
*nlh
, int err
)
1541 struct sk_buff
*skb
;
1542 struct nlmsghdr
*rep
;
1543 struct nlmsgerr
*errmsg
;
1544 size_t payload
= sizeof(*errmsg
);
1546 /* error messages get the original request appened */
1548 payload
+= nlmsg_len(nlh
);
1550 skb
= nlmsg_new(payload
, GFP_KERNEL
);
1554 sk
= netlink_lookup(in_skb
->sk
->sk_protocol
,
1555 NETLINK_CB(in_skb
).pid
);
1557 sk
->sk_err
= ENOBUFS
;
1558 sk
->sk_error_report(sk
);
1564 rep
= __nlmsg_put(skb
, NETLINK_CB(in_skb
).pid
, nlh
->nlmsg_seq
,
1565 NLMSG_ERROR
, sizeof(struct nlmsgerr
), 0);
1566 errmsg
= nlmsg_data(rep
);
1567 errmsg
->error
= err
;
1568 memcpy(&errmsg
->msg
, nlh
, err
? nlh
->nlmsg_len
: sizeof(*nlh
));
1569 netlink_unicast(in_skb
->sk
, skb
, NETLINK_CB(in_skb
).pid
, MSG_DONTWAIT
);
1572 static int netlink_rcv_skb(struct sk_buff
*skb
, int (*cb
)(struct sk_buff
*,
1575 struct nlmsghdr
*nlh
;
1578 while (skb
->len
>= nlmsg_total_size(0)) {
1579 nlh
= nlmsg_hdr(skb
);
1582 if (nlh
->nlmsg_len
< NLMSG_HDRLEN
|| skb
->len
< nlh
->nlmsg_len
)
1585 /* Only requests are handled by the kernel */
1586 if (!(nlh
->nlmsg_flags
& NLM_F_REQUEST
))
1589 /* Skip control messages */
1590 if (nlh
->nlmsg_type
< NLMSG_MIN_TYPE
)
1594 if (err
== -EINTR
) {
1595 /* Not an error, but we interrupt processing */
1596 netlink_queue_skip(nlh
, skb
);
1600 if (nlh
->nlmsg_flags
& NLM_F_ACK
|| err
)
1601 netlink_ack(skb
, nlh
, err
);
1603 netlink_queue_skip(nlh
, skb
);
1610 * nelink_run_queue - Process netlink receive queue.
1611 * @sk: Netlink socket containing the queue
1612 * @qlen: Place to store queue length upon entry
1613 * @cb: Callback function invoked for each netlink message found
1615 * Processes as much as there was in the queue upon entry and invokes
1616 * a callback function for each netlink message found. The callback
1617 * function may refuse a message by returning a negative error code
1618 * but setting the error pointer to 0 in which case this function
1619 * returns with a qlen != 0.
1621 * qlen must be initialized to 0 before the initial entry, afterwards
1622 * the function may be called repeatedly until qlen reaches 0.
1624 * The callback function may return -EINTR to signal that processing
1625 * of netlink messages shall be interrupted. In this case the message
1626 * currently being processed will NOT be requeued onto the receive
1629 void netlink_run_queue(struct sock
*sk
, unsigned int *qlen
,
1630 int (*cb
)(struct sk_buff
*, struct nlmsghdr
*))
1632 struct sk_buff
*skb
;
1634 if (!*qlen
|| *qlen
> skb_queue_len(&sk
->sk_receive_queue
))
1635 *qlen
= skb_queue_len(&sk
->sk_receive_queue
);
1637 for (; *qlen
; (*qlen
)--) {
1638 skb
= skb_dequeue(&sk
->sk_receive_queue
);
1639 if (netlink_rcv_skb(skb
, cb
)) {
1641 skb_queue_head(&sk
->sk_receive_queue
, skb
);
1654 * netlink_queue_skip - Skip netlink message while processing queue.
1655 * @nlh: Netlink message to be skipped
1656 * @skb: Socket buffer containing the netlink messages.
1658 * Pulls the given netlink message off the socket buffer so the next
1659 * call to netlink_queue_run() will not reconsider the message.
1661 static void netlink_queue_skip(struct nlmsghdr
*nlh
, struct sk_buff
*skb
)
1663 int msglen
= NLMSG_ALIGN(nlh
->nlmsg_len
);
1665 if (msglen
> skb
->len
)
1668 skb_pull(skb
, msglen
);
1672 * nlmsg_notify - send a notification netlink message
1673 * @sk: netlink socket to use
1674 * @skb: notification message
1675 * @pid: destination netlink pid for reports or 0
1676 * @group: destination multicast group or 0
1677 * @report: 1 to report back, 0 to disable
1678 * @flags: allocation flags
1680 int nlmsg_notify(struct sock
*sk
, struct sk_buff
*skb
, u32 pid
,
1681 unsigned int group
, int report
, gfp_t flags
)
1686 int exclude_pid
= 0;
1689 atomic_inc(&skb
->users
);
1693 /* errors reported via destination sk->sk_err */
1694 nlmsg_multicast(sk
, skb
, exclude_pid
, group
, flags
);
1698 err
= nlmsg_unicast(sk
, skb
, pid
);
1703 #ifdef CONFIG_PROC_FS
1704 struct nl_seq_iter
{
1709 static struct sock
*netlink_seq_socket_idx(struct seq_file
*seq
, loff_t pos
)
1711 struct nl_seq_iter
*iter
= seq
->private;
1714 struct hlist_node
*node
;
1717 for (i
=0; i
<MAX_LINKS
; i
++) {
1718 struct nl_pid_hash
*hash
= &nl_table
[i
].hash
;
1720 for (j
= 0; j
<= hash
->mask
; j
++) {
1721 sk_for_each(s
, node
, &hash
->table
[j
]) {
1734 static void *netlink_seq_start(struct seq_file
*seq
, loff_t
*pos
)
1736 read_lock(&nl_table_lock
);
1737 return *pos
? netlink_seq_socket_idx(seq
, *pos
- 1) : SEQ_START_TOKEN
;
1740 static void *netlink_seq_next(struct seq_file
*seq
, void *v
, loff_t
*pos
)
1743 struct nl_seq_iter
*iter
;
1748 if (v
== SEQ_START_TOKEN
)
1749 return netlink_seq_socket_idx(seq
, 0);
1755 iter
= seq
->private;
1757 j
= iter
->hash_idx
+ 1;
1760 struct nl_pid_hash
*hash
= &nl_table
[i
].hash
;
1762 for (; j
<= hash
->mask
; j
++) {
1763 s
= sk_head(&hash
->table
[j
]);
1772 } while (++i
< MAX_LINKS
);
1777 static void netlink_seq_stop(struct seq_file
*seq
, void *v
)
1779 read_unlock(&nl_table_lock
);
1783 static int netlink_seq_show(struct seq_file
*seq
, void *v
)
1785 if (v
== SEQ_START_TOKEN
)
1787 "sk Eth Pid Groups "
1788 "Rmem Wmem Dump Locks\n");
1791 struct netlink_sock
*nlk
= nlk_sk(s
);
1793 seq_printf(seq
, "%p %-3d %-6d %08x %-8d %-8d %p %d\n",
1797 nlk
->groups
? (u32
)nlk
->groups
[0] : 0,
1798 atomic_read(&s
->sk_rmem_alloc
),
1799 atomic_read(&s
->sk_wmem_alloc
),
1801 atomic_read(&s
->sk_refcnt
)
1808 static const struct seq_operations netlink_seq_ops
= {
1809 .start
= netlink_seq_start
,
1810 .next
= netlink_seq_next
,
1811 .stop
= netlink_seq_stop
,
1812 .show
= netlink_seq_show
,
1816 static int netlink_seq_open(struct inode
*inode
, struct file
*file
)
1818 struct seq_file
*seq
;
1819 struct nl_seq_iter
*iter
;
1822 iter
= kzalloc(sizeof(*iter
), GFP_KERNEL
);
1826 err
= seq_open(file
, &netlink_seq_ops
);
1832 seq
= file
->private_data
;
1833 seq
->private = iter
;
1837 static const struct file_operations netlink_seq_fops
= {
1838 .owner
= THIS_MODULE
,
1839 .open
= netlink_seq_open
,
1841 .llseek
= seq_lseek
,
1842 .release
= seq_release_private
,
1847 int netlink_register_notifier(struct notifier_block
*nb
)
1849 return atomic_notifier_chain_register(&netlink_chain
, nb
);
1852 int netlink_unregister_notifier(struct notifier_block
*nb
)
1854 return atomic_notifier_chain_unregister(&netlink_chain
, nb
);
1857 static const struct proto_ops netlink_ops
= {
1858 .family
= PF_NETLINK
,
1859 .owner
= THIS_MODULE
,
1860 .release
= netlink_release
,
1861 .bind
= netlink_bind
,
1862 .connect
= netlink_connect
,
1863 .socketpair
= sock_no_socketpair
,
1864 .accept
= sock_no_accept
,
1865 .getname
= netlink_getname
,
1866 .poll
= datagram_poll
,
1867 .ioctl
= sock_no_ioctl
,
1868 .listen
= sock_no_listen
,
1869 .shutdown
= sock_no_shutdown
,
1870 .setsockopt
= netlink_setsockopt
,
1871 .getsockopt
= netlink_getsockopt
,
1872 .sendmsg
= netlink_sendmsg
,
1873 .recvmsg
= netlink_recvmsg
,
1874 .mmap
= sock_no_mmap
,
1875 .sendpage
= sock_no_sendpage
,
1878 static struct net_proto_family netlink_family_ops
= {
1879 .family
= PF_NETLINK
,
1880 .create
= netlink_create
,
1881 .owner
= THIS_MODULE
, /* for consistency 8) */
1884 static int __init
netlink_proto_init(void)
1886 struct sk_buff
*dummy_skb
;
1890 int err
= proto_register(&netlink_proto
, 0);
1895 BUILD_BUG_ON(sizeof(struct netlink_skb_parms
) > sizeof(dummy_skb
->cb
));
1897 nl_table
= kcalloc(MAX_LINKS
, sizeof(*nl_table
), GFP_KERNEL
);
1901 if (num_physpages
>= (128 * 1024))
1902 max
= num_physpages
>> (21 - PAGE_SHIFT
);
1904 max
= num_physpages
>> (23 - PAGE_SHIFT
);
1906 order
= get_bitmask_order(max
) - 1 + PAGE_SHIFT
;
1907 max
= (1UL << order
) / sizeof(struct hlist_head
);
1908 order
= get_bitmask_order(max
> UINT_MAX
? UINT_MAX
: max
) - 1;
1910 for (i
= 0; i
< MAX_LINKS
; i
++) {
1911 struct nl_pid_hash
*hash
= &nl_table
[i
].hash
;
1913 hash
->table
= nl_pid_hash_alloc(1 * sizeof(*hash
->table
));
1916 nl_pid_hash_free(nl_table
[i
].hash
.table
,
1917 1 * sizeof(*hash
->table
));
1921 memset(hash
->table
, 0, 1 * sizeof(*hash
->table
));
1922 hash
->max_shift
= order
;
1925 hash
->rehash_time
= jiffies
;
1928 sock_register(&netlink_family_ops
);
1929 #ifdef CONFIG_PROC_FS
1930 proc_net_fops_create("netlink", 0, &netlink_seq_fops
);
1932 /* The netlink device handler may be needed early. */
1937 panic("netlink_init: Cannot allocate nl_table\n");
1940 core_initcall(netlink_proto_init
);
1942 EXPORT_SYMBOL(netlink_ack
);
1943 EXPORT_SYMBOL(netlink_run_queue
);
1944 EXPORT_SYMBOL(netlink_broadcast
);
1945 EXPORT_SYMBOL(netlink_dump_start
);
1946 EXPORT_SYMBOL(netlink_kernel_create
);
1947 EXPORT_SYMBOL(netlink_register_notifier
);
1948 EXPORT_SYMBOL(netlink_set_nonroot
);
1949 EXPORT_SYMBOL(netlink_unicast
);
1950 EXPORT_SYMBOL(netlink_unregister_notifier
);
1951 EXPORT_SYMBOL(nlmsg_notify
);