2 * This program is free software; you can redistribute it and/or modify
3 * it under the terms of the GNU General Public License as published by
4 * the Free Software Foundation; either version 2 of the License, or
5 * (at your option) any later version.
7 * Copyright (C) Jonathan Naylor G4KLX (g4klx@g4klx.demon.co.uk)
8 * Copyright (C) Alan Cox GW4PTS (alan@lxorguk.ukuu.org.uk)
9 * Copyright (C) Terry Dawson VK2KTJ (terry@animats.net)
10 * Copyright (C) Tomi Manninen OH2BNS (oh2bns@sral.fi)
13 #include <linux/capability.h>
14 #include <linux/module.h>
15 #include <linux/moduleparam.h>
16 #include <linux/init.h>
17 #include <linux/errno.h>
18 #include <linux/types.h>
19 #include <linux/socket.h>
21 #include <linux/kernel.h>
22 #include <linux/sched.h>
23 #include <linux/spinlock.h>
24 #include <linux/timer.h>
25 #include <linux/string.h>
26 #include <linux/sockios.h>
27 #include <linux/net.h>
28 #include <linux/stat.h>
29 #include <net/net_namespace.h>
31 #include <linux/inet.h>
32 #include <linux/netdevice.h>
33 #include <linux/if_arp.h>
34 #include <linux/skbuff.h>
36 #include <asm/system.h>
37 #include <asm/uaccess.h>
38 #include <linux/fcntl.h>
39 #include <linux/termios.h>
41 #include <linux/interrupt.h>
42 #include <linux/notifier.h>
44 #include <linux/proc_fs.h>
45 #include <linux/seq_file.h>
46 #include <net/tcp_states.h>
50 static int rose_ndevs
= 10;
52 int sysctl_rose_restart_request_timeout
= ROSE_DEFAULT_T0
;
53 int sysctl_rose_call_request_timeout
= ROSE_DEFAULT_T1
;
54 int sysctl_rose_reset_request_timeout
= ROSE_DEFAULT_T2
;
55 int sysctl_rose_clear_request_timeout
= ROSE_DEFAULT_T3
;
56 int sysctl_rose_no_activity_timeout
= ROSE_DEFAULT_IDLE
;
57 int sysctl_rose_ack_hold_back_timeout
= ROSE_DEFAULT_HB
;
58 int sysctl_rose_routing_control
= ROSE_DEFAULT_ROUTING
;
59 int sysctl_rose_link_fail_timeout
= ROSE_DEFAULT_FAIL_TIMEOUT
;
60 int sysctl_rose_maximum_vcs
= ROSE_DEFAULT_MAXVC
;
61 int sysctl_rose_window_size
= ROSE_DEFAULT_WINDOW_SIZE
;
63 static HLIST_HEAD(rose_list
);
64 static DEFINE_SPINLOCK(rose_list_lock
);
66 static struct proto_ops rose_proto_ops
;
68 ax25_address rose_callsign
;
71 * ROSE network devices are virtual network devices encapsulating ROSE
72 * frames into AX.25 which will be sent through an AX.25 device, so form a
73 * special "super class" of normal net devices; split their locks off into a
74 * separate class since they always nest.
76 static struct lock_class_key rose_netdev_xmit_lock_key
;
79 * Convert a ROSE address into text.
81 const char *rose2asc(const rose_address
*addr
)
83 static char buffer
[11];
85 if (addr
->rose_addr
[0] == 0x00 && addr
->rose_addr
[1] == 0x00 &&
86 addr
->rose_addr
[2] == 0x00 && addr
->rose_addr
[3] == 0x00 &&
87 addr
->rose_addr
[4] == 0x00) {
90 sprintf(buffer
, "%02X%02X%02X%02X%02X", addr
->rose_addr
[0] & 0xFF,
91 addr
->rose_addr
[1] & 0xFF,
92 addr
->rose_addr
[2] & 0xFF,
93 addr
->rose_addr
[3] & 0xFF,
94 addr
->rose_addr
[4] & 0xFF);
101 * Compare two ROSE addresses, 0 == equal.
103 int rosecmp(rose_address
*addr1
, rose_address
*addr2
)
107 for (i
= 0; i
< 5; i
++)
108 if (addr1
->rose_addr
[i
] != addr2
->rose_addr
[i
])
115 * Compare two ROSE addresses for only mask digits, 0 == equal.
117 int rosecmpm(rose_address
*addr1
, rose_address
*addr2
, unsigned short mask
)
124 for (i
= 0; i
< mask
; i
++) {
128 if ((addr1
->rose_addr
[j
] & 0x0F) != (addr2
->rose_addr
[j
] & 0x0F))
131 if ((addr1
->rose_addr
[j
] & 0xF0) != (addr2
->rose_addr
[j
] & 0xF0))
140 * Socket removal during an interrupt is now safe.
142 static void rose_remove_socket(struct sock
*sk
)
144 spin_lock_bh(&rose_list_lock
);
145 sk_del_node_init(sk
);
146 spin_unlock_bh(&rose_list_lock
);
150 * Kill all bound sockets on a broken link layer connection to a
151 * particular neighbour.
153 void rose_kill_by_neigh(struct rose_neigh
*neigh
)
156 struct hlist_node
*node
;
158 spin_lock_bh(&rose_list_lock
);
159 sk_for_each(s
, node
, &rose_list
) {
160 struct rose_sock
*rose
= rose_sk(s
);
162 if (rose
->neighbour
== neigh
) {
163 rose_disconnect(s
, ENETUNREACH
, ROSE_OUT_OF_ORDER
, 0);
164 rose
->neighbour
->use
--;
165 rose
->neighbour
= NULL
;
168 spin_unlock_bh(&rose_list_lock
);
172 * Kill all bound sockets on a dropped device.
174 static void rose_kill_by_device(struct net_device
*dev
)
177 struct hlist_node
*node
;
179 spin_lock_bh(&rose_list_lock
);
180 sk_for_each(s
, node
, &rose_list
) {
181 struct rose_sock
*rose
= rose_sk(s
);
183 if (rose
->device
== dev
) {
184 rose_disconnect(s
, ENETUNREACH
, ROSE_OUT_OF_ORDER
, 0);
185 rose
->neighbour
->use
--;
189 spin_unlock_bh(&rose_list_lock
);
193 * Handle device status changes.
195 static int rose_device_event(struct notifier_block
*this, unsigned long event
,
198 struct net_device
*dev
= (struct net_device
*)ptr
;
200 if (dev_net(dev
) != &init_net
)
203 if (event
!= NETDEV_DOWN
)
208 rose_kill_by_device(dev
);
211 rose_link_device_down(dev
);
212 rose_rt_device_down(dev
);
220 * Add a socket to the bound sockets list.
222 static void rose_insert_socket(struct sock
*sk
)
225 spin_lock_bh(&rose_list_lock
);
226 sk_add_node(sk
, &rose_list
);
227 spin_unlock_bh(&rose_list_lock
);
231 * Find a socket that wants to accept the Call Request we just
234 static struct sock
*rose_find_listener(rose_address
*addr
, ax25_address
*call
)
237 struct hlist_node
*node
;
239 spin_lock_bh(&rose_list_lock
);
240 sk_for_each(s
, node
, &rose_list
) {
241 struct rose_sock
*rose
= rose_sk(s
);
243 if (!rosecmp(&rose
->source_addr
, addr
) &&
244 !ax25cmp(&rose
->source_call
, call
) &&
245 !rose
->source_ndigis
&& s
->sk_state
== TCP_LISTEN
)
249 sk_for_each(s
, node
, &rose_list
) {
250 struct rose_sock
*rose
= rose_sk(s
);
252 if (!rosecmp(&rose
->source_addr
, addr
) &&
253 !ax25cmp(&rose
->source_call
, &null_ax25_address
) &&
254 s
->sk_state
== TCP_LISTEN
)
259 spin_unlock_bh(&rose_list_lock
);
264 * Find a connected ROSE socket given my LCI and device.
266 struct sock
*rose_find_socket(unsigned int lci
, struct rose_neigh
*neigh
)
269 struct hlist_node
*node
;
271 spin_lock_bh(&rose_list_lock
);
272 sk_for_each(s
, node
, &rose_list
) {
273 struct rose_sock
*rose
= rose_sk(s
);
275 if (rose
->lci
== lci
&& rose
->neighbour
== neigh
)
280 spin_unlock_bh(&rose_list_lock
);
285 * Find a unique LCI for a given device.
287 unsigned int rose_new_lci(struct rose_neigh
*neigh
)
291 if (neigh
->dce_mode
) {
292 for (lci
= 1; lci
<= sysctl_rose_maximum_vcs
; lci
++)
293 if (rose_find_socket(lci
, neigh
) == NULL
&& rose_route_free_lci(lci
, neigh
) == NULL
)
296 for (lci
= sysctl_rose_maximum_vcs
; lci
> 0; lci
--)
297 if (rose_find_socket(lci
, neigh
) == NULL
&& rose_route_free_lci(lci
, neigh
) == NULL
)
307 void rose_destroy_socket(struct sock
*);
310 * Handler for deferred kills.
312 static void rose_destroy_timer(unsigned long data
)
314 rose_destroy_socket((struct sock
*)data
);
318 * This is called from user mode and the timers. Thus it protects itself
319 * against interrupt users but doesn't worry about being called during
320 * work. Once it is removed from the queue no interrupt or bottom half
321 * will touch it and we are (fairly 8-) ) safe.
323 void rose_destroy_socket(struct sock
*sk
)
327 rose_remove_socket(sk
);
328 rose_stop_heartbeat(sk
);
329 rose_stop_idletimer(sk
);
332 rose_clear_queues(sk
); /* Flush the queues */
334 while ((skb
= skb_dequeue(&sk
->sk_receive_queue
)) != NULL
) {
335 if (skb
->sk
!= sk
) { /* A pending connection */
336 /* Queue the unaccepted socket for death */
337 sock_set_flag(skb
->sk
, SOCK_DEAD
);
338 rose_start_heartbeat(skb
->sk
);
339 rose_sk(skb
->sk
)->state
= ROSE_STATE_0
;
345 if (atomic_read(&sk
->sk_wmem_alloc
) ||
346 atomic_read(&sk
->sk_rmem_alloc
)) {
347 /* Defer: outstanding buffers */
348 setup_timer(&sk
->sk_timer
, rose_destroy_timer
,
350 sk
->sk_timer
.expires
= jiffies
+ 10 * HZ
;
351 add_timer(&sk
->sk_timer
);
357 * Handling for system calls applied via the various interfaces to a
358 * ROSE socket object.
361 static int rose_setsockopt(struct socket
*sock
, int level
, int optname
,
362 char __user
*optval
, int optlen
)
364 struct sock
*sk
= sock
->sk
;
365 struct rose_sock
*rose
= rose_sk(sk
);
368 if (level
!= SOL_ROSE
)
371 if (optlen
< sizeof(int))
374 if (get_user(opt
, (int __user
*)optval
))
379 rose
->defer
= opt
? 1 : 0;
409 rose
->idle
= opt
* 60 * HZ
;
413 rose
->qbitincl
= opt
? 1 : 0;
421 static int rose_getsockopt(struct socket
*sock
, int level
, int optname
,
422 char __user
*optval
, int __user
*optlen
)
424 struct sock
*sk
= sock
->sk
;
425 struct rose_sock
*rose
= rose_sk(sk
);
429 if (level
!= SOL_ROSE
)
432 if (get_user(len
, optlen
))
460 val
= rose
->idle
/ (60 * HZ
);
464 val
= rose
->qbitincl
;
471 len
= min_t(unsigned int, len
, sizeof(int));
473 if (put_user(len
, optlen
))
476 return copy_to_user(optval
, &val
, len
) ? -EFAULT
: 0;
479 static int rose_listen(struct socket
*sock
, int backlog
)
481 struct sock
*sk
= sock
->sk
;
483 if (sk
->sk_state
!= TCP_LISTEN
) {
484 struct rose_sock
*rose
= rose_sk(sk
);
486 rose
->dest_ndigis
= 0;
487 memset(&rose
->dest_addr
, 0, ROSE_ADDR_LEN
);
488 memset(&rose
->dest_call
, 0, AX25_ADDR_LEN
);
489 memset(rose
->dest_digis
, 0, AX25_ADDR_LEN
* ROSE_MAX_DIGIS
);
490 sk
->sk_max_ack_backlog
= backlog
;
491 sk
->sk_state
= TCP_LISTEN
;
498 static struct proto rose_proto
= {
500 .owner
= THIS_MODULE
,
501 .obj_size
= sizeof(struct rose_sock
),
504 static int rose_create(struct net
*net
, struct socket
*sock
, int protocol
)
507 struct rose_sock
*rose
;
509 if (net
!= &init_net
)
510 return -EAFNOSUPPORT
;
512 if (sock
->type
!= SOCK_SEQPACKET
|| protocol
!= 0)
513 return -ESOCKTNOSUPPORT
;
515 sk
= sk_alloc(net
, PF_ROSE
, GFP_ATOMIC
, &rose_proto
);
521 sock_init_data(sock
, sk
);
523 skb_queue_head_init(&rose
->ack_queue
);
525 skb_queue_head_init(&rose
->frag_queue
);
529 sock
->ops
= &rose_proto_ops
;
530 sk
->sk_protocol
= protocol
;
532 init_timer(&rose
->timer
);
533 init_timer(&rose
->idletimer
);
535 rose
->t1
= msecs_to_jiffies(sysctl_rose_call_request_timeout
);
536 rose
->t2
= msecs_to_jiffies(sysctl_rose_reset_request_timeout
);
537 rose
->t3
= msecs_to_jiffies(sysctl_rose_clear_request_timeout
);
538 rose
->hb
= msecs_to_jiffies(sysctl_rose_ack_hold_back_timeout
);
539 rose
->idle
= msecs_to_jiffies(sysctl_rose_no_activity_timeout
);
541 rose
->state
= ROSE_STATE_0
;
546 static struct sock
*rose_make_new(struct sock
*osk
)
549 struct rose_sock
*rose
, *orose
;
551 if (osk
->sk_type
!= SOCK_SEQPACKET
)
554 sk
= sk_alloc(sock_net(osk
), PF_ROSE
, GFP_ATOMIC
, &rose_proto
);
560 sock_init_data(NULL
, sk
);
562 skb_queue_head_init(&rose
->ack_queue
);
564 skb_queue_head_init(&rose
->frag_queue
);
568 sk
->sk_type
= osk
->sk_type
;
569 sk
->sk_socket
= osk
->sk_socket
;
570 sk
->sk_priority
= osk
->sk_priority
;
571 sk
->sk_protocol
= osk
->sk_protocol
;
572 sk
->sk_rcvbuf
= osk
->sk_rcvbuf
;
573 sk
->sk_sndbuf
= osk
->sk_sndbuf
;
574 sk
->sk_state
= TCP_ESTABLISHED
;
575 sk
->sk_sleep
= osk
->sk_sleep
;
576 sock_copy_flags(sk
, osk
);
578 init_timer(&rose
->timer
);
579 init_timer(&rose
->idletimer
);
581 orose
= rose_sk(osk
);
582 rose
->t1
= orose
->t1
;
583 rose
->t2
= orose
->t2
;
584 rose
->t3
= orose
->t3
;
585 rose
->hb
= orose
->hb
;
586 rose
->idle
= orose
->idle
;
587 rose
->defer
= orose
->defer
;
588 rose
->device
= orose
->device
;
589 rose
->qbitincl
= orose
->qbitincl
;
594 static int rose_release(struct socket
*sock
)
596 struct sock
*sk
= sock
->sk
;
597 struct rose_sock
*rose
;
599 if (sk
== NULL
) return 0;
606 switch (rose
->state
) {
609 rose_disconnect(sk
, 0, -1, -1);
611 rose_destroy_socket(sk
);
615 rose
->neighbour
->use
--;
617 rose_disconnect(sk
, 0, -1, -1);
619 rose_destroy_socket(sk
);
626 rose_clear_queues(sk
);
627 rose_stop_idletimer(sk
);
628 rose_write_internal(sk
, ROSE_CLEAR_REQUEST
);
629 rose_start_t3timer(sk
);
630 rose
->state
= ROSE_STATE_2
;
631 sk
->sk_state
= TCP_CLOSE
;
632 sk
->sk_shutdown
|= SEND_SHUTDOWN
;
633 sk
->sk_state_change(sk
);
634 sock_set_flag(sk
, SOCK_DEAD
);
635 sock_set_flag(sk
, SOCK_DESTROY
);
649 static int rose_bind(struct socket
*sock
, struct sockaddr
*uaddr
, int addr_len
)
651 struct sock
*sk
= sock
->sk
;
652 struct rose_sock
*rose
= rose_sk(sk
);
653 struct sockaddr_rose
*addr
= (struct sockaddr_rose
*)uaddr
;
654 struct net_device
*dev
;
655 ax25_address
*source
;
656 ax25_uid_assoc
*user
;
659 if (!sock_flag(sk
, SOCK_ZAPPED
))
662 if (addr_len
!= sizeof(struct sockaddr_rose
) && addr_len
!= sizeof(struct full_sockaddr_rose
))
665 if (addr
->srose_family
!= AF_ROSE
)
668 if (addr_len
== sizeof(struct sockaddr_rose
) && addr
->srose_ndigis
> 1)
671 if (addr
->srose_ndigis
> ROSE_MAX_DIGIS
)
674 if ((dev
= rose_dev_get(&addr
->srose_addr
)) == NULL
) {
675 SOCK_DEBUG(sk
, "ROSE: bind failed: invalid address\n");
676 return -EADDRNOTAVAIL
;
679 source
= &addr
->srose_call
;
681 user
= ax25_findbyuid(current
->euid
);
683 rose
->source_call
= user
->call
;
686 if (ax25_uid_policy
&& !capable(CAP_NET_BIND_SERVICE
))
688 rose
->source_call
= *source
;
691 rose
->source_addr
= addr
->srose_addr
;
693 rose
->source_ndigis
= addr
->srose_ndigis
;
695 if (addr_len
== sizeof(struct full_sockaddr_rose
)) {
696 struct full_sockaddr_rose
*full_addr
= (struct full_sockaddr_rose
*)uaddr
;
697 for (n
= 0 ; n
< addr
->srose_ndigis
; n
++)
698 rose
->source_digis
[n
] = full_addr
->srose_digis
[n
];
700 if (rose
->source_ndigis
== 1) {
701 rose
->source_digis
[0] = addr
->srose_digi
;
705 rose_insert_socket(sk
);
707 sock_reset_flag(sk
, SOCK_ZAPPED
);
708 SOCK_DEBUG(sk
, "ROSE: socket is bound\n");
712 static int rose_connect(struct socket
*sock
, struct sockaddr
*uaddr
, int addr_len
, int flags
)
714 struct sock
*sk
= sock
->sk
;
715 struct rose_sock
*rose
= rose_sk(sk
);
716 struct sockaddr_rose
*addr
= (struct sockaddr_rose
*)uaddr
;
717 unsigned char cause
, diagnostic
;
718 struct net_device
*dev
;
719 ax25_uid_assoc
*user
;
722 if (addr_len
!= sizeof(struct sockaddr_rose
) && addr_len
!= sizeof(struct full_sockaddr_rose
))
725 if (addr
->srose_family
!= AF_ROSE
)
728 if (addr_len
== sizeof(struct sockaddr_rose
) && addr
->srose_ndigis
> 1)
731 if (addr
->srose_ndigis
> ROSE_MAX_DIGIS
)
734 /* Source + Destination digis should not exceed ROSE_MAX_DIGIS */
735 if ((rose
->source_ndigis
+ addr
->srose_ndigis
) > ROSE_MAX_DIGIS
)
740 if (sk
->sk_state
== TCP_ESTABLISHED
&& sock
->state
== SS_CONNECTING
) {
741 /* Connect completed during a ERESTARTSYS event */
742 sock
->state
= SS_CONNECTED
;
746 if (sk
->sk_state
== TCP_CLOSE
&& sock
->state
== SS_CONNECTING
) {
747 sock
->state
= SS_UNCONNECTED
;
752 if (sk
->sk_state
== TCP_ESTABLISHED
) {
753 /* No reconnect on a seqpacket socket */
758 sk
->sk_state
= TCP_CLOSE
;
759 sock
->state
= SS_UNCONNECTED
;
761 rose
->neighbour
= rose_get_neigh(&addr
->srose_addr
, &cause
,
763 if (!rose
->neighbour
) {
768 rose
->lci
= rose_new_lci(rose
->neighbour
);
774 if (sock_flag(sk
, SOCK_ZAPPED
)) { /* Must bind first - autobinding in this may or may not work */
775 sock_reset_flag(sk
, SOCK_ZAPPED
);
777 if ((dev
= rose_dev_first()) == NULL
) {
782 user
= ax25_findbyuid(current
->euid
);
788 memcpy(&rose
->source_addr
, dev
->dev_addr
, ROSE_ADDR_LEN
);
789 rose
->source_call
= user
->call
;
793 rose_insert_socket(sk
); /* Finish the bind */
796 rose
->dest_addr
= addr
->srose_addr
;
797 rose
->dest_call
= addr
->srose_call
;
798 rose
->rand
= ((long)rose
& 0xFFFF) + rose
->lci
;
799 rose
->dest_ndigis
= addr
->srose_ndigis
;
801 if (addr_len
== sizeof(struct full_sockaddr_rose
)) {
802 struct full_sockaddr_rose
*full_addr
= (struct full_sockaddr_rose
*)uaddr
;
803 for (n
= 0 ; n
< addr
->srose_ndigis
; n
++)
804 rose
->dest_digis
[n
] = full_addr
->srose_digis
[n
];
806 if (rose
->dest_ndigis
== 1) {
807 rose
->dest_digis
[0] = addr
->srose_digi
;
811 /* Move to connecting socket, start sending Connect Requests */
812 sock
->state
= SS_CONNECTING
;
813 sk
->sk_state
= TCP_SYN_SENT
;
815 rose
->state
= ROSE_STATE_1
;
817 rose
->neighbour
->use
++;
819 rose_write_internal(sk
, ROSE_CALL_REQUEST
);
820 rose_start_heartbeat(sk
);
821 rose_start_t1timer(sk
);
824 if (sk
->sk_state
!= TCP_ESTABLISHED
&& (flags
& O_NONBLOCK
)) {
830 * A Connect Ack with Choke or timeout or failed routing will go to
833 if (sk
->sk_state
== TCP_SYN_SENT
) {
837 prepare_to_wait(sk
->sk_sleep
, &wait
,
839 if (sk
->sk_state
!= TCP_SYN_SENT
)
841 if (!signal_pending(current
)) {
850 finish_wait(sk
->sk_sleep
, &wait
);
856 if (sk
->sk_state
!= TCP_ESTABLISHED
) {
857 /* Try next neighbour */
858 rose
->neighbour
= rose_get_neigh(&addr
->srose_addr
, &cause
, &diagnostic
);
860 goto rose_try_next_neigh
;
862 /* No more neighbours */
863 sock
->state
= SS_UNCONNECTED
;
864 err
= sock_error(sk
); /* Always set at this point */
868 sock
->state
= SS_CONNECTED
;
876 static int rose_accept(struct socket
*sock
, struct socket
*newsock
, int flags
)
884 if ((sk
= sock
->sk
) == NULL
)
888 if (sk
->sk_type
!= SOCK_SEQPACKET
) {
893 if (sk
->sk_state
!= TCP_LISTEN
) {
899 * The write queue this time is holding sockets ready to use
900 * hooked into the SABM we saved
903 prepare_to_wait(sk
->sk_sleep
, &wait
, TASK_INTERRUPTIBLE
);
905 skb
= skb_dequeue(&sk
->sk_receive_queue
);
909 if (flags
& O_NONBLOCK
) {
913 if (!signal_pending(current
)) {
922 finish_wait(sk
->sk_sleep
, &wait
);
927 newsk
->sk_socket
= newsock
;
928 newsk
->sk_sleep
= &newsock
->wait
;
930 /* Now attach up the new socket */
933 sk
->sk_ack_backlog
--;
942 static int rose_getname(struct socket
*sock
, struct sockaddr
*uaddr
,
943 int *uaddr_len
, int peer
)
945 struct full_sockaddr_rose
*srose
= (struct full_sockaddr_rose
*)uaddr
;
946 struct sock
*sk
= sock
->sk
;
947 struct rose_sock
*rose
= rose_sk(sk
);
951 if (sk
->sk_state
!= TCP_ESTABLISHED
)
953 srose
->srose_family
= AF_ROSE
;
954 srose
->srose_addr
= rose
->dest_addr
;
955 srose
->srose_call
= rose
->dest_call
;
956 srose
->srose_ndigis
= rose
->dest_ndigis
;
957 for (n
= 0; n
< rose
->dest_ndigis
; n
++)
958 srose
->srose_digis
[n
] = rose
->dest_digis
[n
];
960 srose
->srose_family
= AF_ROSE
;
961 srose
->srose_addr
= rose
->source_addr
;
962 srose
->srose_call
= rose
->source_call
;
963 srose
->srose_ndigis
= rose
->source_ndigis
;
964 for (n
= 0; n
< rose
->source_ndigis
; n
++)
965 srose
->srose_digis
[n
] = rose
->source_digis
[n
];
968 *uaddr_len
= sizeof(struct full_sockaddr_rose
);
972 int rose_rx_call_request(struct sk_buff
*skb
, struct net_device
*dev
, struct rose_neigh
*neigh
, unsigned int lci
)
976 struct rose_sock
*make_rose
;
977 struct rose_facilities_struct facilities
;
980 skb
->sk
= NULL
; /* Initially we don't know who it's for */
983 * skb->data points to the rose frame start
985 memset(&facilities
, 0x00, sizeof(struct rose_facilities_struct
));
987 len
= (((skb
->data
[3] >> 4) & 0x0F) + 1) >> 1;
988 len
+= (((skb
->data
[3] >> 0) & 0x0F) + 1) >> 1;
989 if (!rose_parse_facilities(skb
->data
+ len
+ 4, &facilities
)) {
990 rose_transmit_clear_request(neigh
, lci
, ROSE_INVALID_FACILITY
, 76);
994 sk
= rose_find_listener(&facilities
.source_addr
, &facilities
.source_call
);
997 * We can't accept the Call Request.
999 if (sk
== NULL
|| sk_acceptq_is_full(sk
) ||
1000 (make
= rose_make_new(sk
)) == NULL
) {
1001 rose_transmit_clear_request(neigh
, lci
, ROSE_NETWORK_CONGESTION
, 120);
1006 make
->sk_state
= TCP_ESTABLISHED
;
1007 make_rose
= rose_sk(make
);
1009 make_rose
->lci
= lci
;
1010 make_rose
->dest_addr
= facilities
.dest_addr
;
1011 make_rose
->dest_call
= facilities
.dest_call
;
1012 make_rose
->dest_ndigis
= facilities
.dest_ndigis
;
1013 for (n
= 0 ; n
< facilities
.dest_ndigis
; n
++)
1014 make_rose
->dest_digis
[n
] = facilities
.dest_digis
[n
];
1015 make_rose
->source_addr
= facilities
.source_addr
;
1016 make_rose
->source_call
= facilities
.source_call
;
1017 make_rose
->source_ndigis
= facilities
.source_ndigis
;
1018 for (n
= 0 ; n
< facilities
.source_ndigis
; n
++)
1019 make_rose
->source_digis
[n
]= facilities
.source_digis
[n
];
1020 make_rose
->neighbour
= neigh
;
1021 make_rose
->device
= dev
;
1022 make_rose
->facilities
= facilities
;
1024 make_rose
->neighbour
->use
++;
1026 if (rose_sk(sk
)->defer
) {
1027 make_rose
->state
= ROSE_STATE_5
;
1029 rose_write_internal(make
, ROSE_CALL_ACCEPTED
);
1030 make_rose
->state
= ROSE_STATE_3
;
1031 rose_start_idletimer(make
);
1034 make_rose
->condition
= 0x00;
1039 sk
->sk_ack_backlog
++;
1041 rose_insert_socket(make
);
1043 skb_queue_head(&sk
->sk_receive_queue
, skb
);
1045 rose_start_heartbeat(make
);
1047 if (!sock_flag(sk
, SOCK_DEAD
))
1048 sk
->sk_data_ready(sk
, skb
->len
);
1053 static int rose_sendmsg(struct kiocb
*iocb
, struct socket
*sock
,
1054 struct msghdr
*msg
, size_t len
)
1056 struct sock
*sk
= sock
->sk
;
1057 struct rose_sock
*rose
= rose_sk(sk
);
1058 struct sockaddr_rose
*usrose
= (struct sockaddr_rose
*)msg
->msg_name
;
1060 struct full_sockaddr_rose srose
;
1061 struct sk_buff
*skb
;
1062 unsigned char *asmptr
;
1063 int n
, size
, qbit
= 0;
1065 if (msg
->msg_flags
& ~(MSG_DONTWAIT
|MSG_EOR
|MSG_CMSG_COMPAT
))
1068 if (sock_flag(sk
, SOCK_ZAPPED
))
1069 return -EADDRNOTAVAIL
;
1071 if (sk
->sk_shutdown
& SEND_SHUTDOWN
) {
1072 send_sig(SIGPIPE
, current
, 0);
1076 if (rose
->neighbour
== NULL
|| rose
->device
== NULL
)
1077 return -ENETUNREACH
;
1079 if (usrose
!= NULL
) {
1080 if (msg
->msg_namelen
!= sizeof(struct sockaddr_rose
) && msg
->msg_namelen
!= sizeof(struct full_sockaddr_rose
))
1082 memset(&srose
, 0, sizeof(struct full_sockaddr_rose
));
1083 memcpy(&srose
, usrose
, msg
->msg_namelen
);
1084 if (rosecmp(&rose
->dest_addr
, &srose
.srose_addr
) != 0 ||
1085 ax25cmp(&rose
->dest_call
, &srose
.srose_call
) != 0)
1087 if (srose
.srose_ndigis
!= rose
->dest_ndigis
)
1089 if (srose
.srose_ndigis
== rose
->dest_ndigis
) {
1090 for (n
= 0 ; n
< srose
.srose_ndigis
; n
++)
1091 if (ax25cmp(&rose
->dest_digis
[n
],
1092 &srose
.srose_digis
[n
]))
1095 if (srose
.srose_family
!= AF_ROSE
)
1098 if (sk
->sk_state
!= TCP_ESTABLISHED
)
1101 srose
.srose_family
= AF_ROSE
;
1102 srose
.srose_addr
= rose
->dest_addr
;
1103 srose
.srose_call
= rose
->dest_call
;
1104 srose
.srose_ndigis
= rose
->dest_ndigis
;
1105 for (n
= 0 ; n
< rose
->dest_ndigis
; n
++)
1106 srose
.srose_digis
[n
] = rose
->dest_digis
[n
];
1109 SOCK_DEBUG(sk
, "ROSE: sendto: Addresses built.\n");
1111 /* Build a packet */
1112 SOCK_DEBUG(sk
, "ROSE: sendto: building packet.\n");
1113 size
= len
+ AX25_BPQ_HEADER_LEN
+ AX25_MAX_HEADER_LEN
+ ROSE_MIN_LEN
;
1115 if ((skb
= sock_alloc_send_skb(sk
, size
, msg
->msg_flags
& MSG_DONTWAIT
, &err
)) == NULL
)
1118 skb_reserve(skb
, AX25_BPQ_HEADER_LEN
+ AX25_MAX_HEADER_LEN
+ ROSE_MIN_LEN
);
1121 * Put the data on the end
1123 SOCK_DEBUG(sk
, "ROSE: Appending user data\n");
1125 skb_reset_transport_header(skb
);
1128 err
= memcpy_fromiovec(skb_transport_header(skb
), msg
->msg_iov
, len
);
1135 * If the Q BIT Include socket option is in force, the first
1136 * byte of the user data is the logical value of the Q Bit.
1138 if (rose
->qbitincl
) {
1139 qbit
= skb
->data
[0];
1144 * Push down the ROSE header
1146 asmptr
= skb_push(skb
, ROSE_MIN_LEN
);
1148 SOCK_DEBUG(sk
, "ROSE: Building Network Header.\n");
1150 /* Build a ROSE Network header */
1151 asmptr
[0] = ((rose
->lci
>> 8) & 0x0F) | ROSE_GFI
;
1152 asmptr
[1] = (rose
->lci
>> 0) & 0xFF;
1153 asmptr
[2] = ROSE_DATA
;
1156 asmptr
[0] |= ROSE_Q_BIT
;
1158 SOCK_DEBUG(sk
, "ROSE: Built header.\n");
1160 SOCK_DEBUG(sk
, "ROSE: Transmitting buffer\n");
1162 if (sk
->sk_state
!= TCP_ESTABLISHED
) {
1168 #define ROSE_PACLEN (256-ROSE_MIN_LEN)
1169 if (skb
->len
- ROSE_MIN_LEN
> ROSE_PACLEN
) {
1170 unsigned char header
[ROSE_MIN_LEN
];
1171 struct sk_buff
*skbn
;
1175 /* Save a copy of the Header */
1176 skb_copy_from_linear_data(skb
, header
, ROSE_MIN_LEN
);
1177 skb_pull(skb
, ROSE_MIN_LEN
);
1179 frontlen
= skb_headroom(skb
);
1181 while (skb
->len
> 0) {
1182 if ((skbn
= sock_alloc_send_skb(sk
, frontlen
+ ROSE_PACLEN
, 0, &err
)) == NULL
) {
1191 skb_reserve(skbn
, frontlen
);
1193 lg
= (ROSE_PACLEN
> skb
->len
) ? skb
->len
: ROSE_PACLEN
;
1195 /* Copy the user data */
1196 skb_copy_from_linear_data(skb
, skb_put(skbn
, lg
), lg
);
1199 /* Duplicate the Header */
1200 skb_push(skbn
, ROSE_MIN_LEN
);
1201 skb_copy_to_linear_data(skbn
, header
, ROSE_MIN_LEN
);
1204 skbn
->data
[2] |= M_BIT
;
1206 skb_queue_tail(&sk
->sk_write_queue
, skbn
); /* Throw it on the queue */
1212 skb_queue_tail(&sk
->sk_write_queue
, skb
); /* Throw it on the queue */
1215 skb_queue_tail(&sk
->sk_write_queue
, skb
); /* Shove it onto the queue */
1224 static int rose_recvmsg(struct kiocb
*iocb
, struct socket
*sock
,
1225 struct msghdr
*msg
, size_t size
, int flags
)
1227 struct sock
*sk
= sock
->sk
;
1228 struct rose_sock
*rose
= rose_sk(sk
);
1229 struct sockaddr_rose
*srose
= (struct sockaddr_rose
*)msg
->msg_name
;
1231 unsigned char *asmptr
;
1232 struct sk_buff
*skb
;
1236 * This works for seqpacket too. The receiver has ordered the queue for
1237 * us! We do one quick check first though
1239 if (sk
->sk_state
!= TCP_ESTABLISHED
)
1242 /* Now we can treat all alike */
1243 if ((skb
= skb_recv_datagram(sk
, flags
& ~MSG_DONTWAIT
, flags
& MSG_DONTWAIT
, &er
)) == NULL
)
1246 qbit
= (skb
->data
[0] & ROSE_Q_BIT
) == ROSE_Q_BIT
;
1248 skb_pull(skb
, ROSE_MIN_LEN
);
1250 if (rose
->qbitincl
) {
1251 asmptr
= skb_push(skb
, 1);
1255 skb_reset_transport_header(skb
);
1258 if (copied
> size
) {
1260 msg
->msg_flags
|= MSG_TRUNC
;
1263 skb_copy_datagram_iovec(skb
, 0, msg
->msg_iov
, copied
);
1265 if (srose
!= NULL
) {
1266 srose
->srose_family
= AF_ROSE
;
1267 srose
->srose_addr
= rose
->dest_addr
;
1268 srose
->srose_call
= rose
->dest_call
;
1269 srose
->srose_ndigis
= rose
->dest_ndigis
;
1270 if (msg
->msg_namelen
>= sizeof(struct full_sockaddr_rose
)) {
1271 struct full_sockaddr_rose
*full_srose
= (struct full_sockaddr_rose
*)msg
->msg_name
;
1272 for (n
= 0 ; n
< rose
->dest_ndigis
; n
++)
1273 full_srose
->srose_digis
[n
] = rose
->dest_digis
[n
];
1274 msg
->msg_namelen
= sizeof(struct full_sockaddr_rose
);
1276 if (rose
->dest_ndigis
>= 1) {
1277 srose
->srose_ndigis
= 1;
1278 srose
->srose_digi
= rose
->dest_digis
[0];
1280 msg
->msg_namelen
= sizeof(struct sockaddr_rose
);
1284 skb_free_datagram(sk
, skb
);
1290 static int rose_ioctl(struct socket
*sock
, unsigned int cmd
, unsigned long arg
)
1292 struct sock
*sk
= sock
->sk
;
1293 struct rose_sock
*rose
= rose_sk(sk
);
1294 void __user
*argp
= (void __user
*)arg
;
1299 amount
= sk
->sk_sndbuf
- atomic_read(&sk
->sk_wmem_alloc
);
1302 return put_user(amount
, (unsigned int __user
*) argp
);
1306 struct sk_buff
*skb
;
1308 /* These two are safe on a single CPU system as only user tasks fiddle here */
1309 if ((skb
= skb_peek(&sk
->sk_receive_queue
)) != NULL
)
1311 return put_user(amount
, (unsigned int __user
*) argp
);
1315 return sock_get_timestamp(sk
, (struct timeval __user
*) argp
);
1318 return sock_get_timestampns(sk
, (struct timespec __user
*) argp
);
1322 case SIOCGIFDSTADDR
:
1323 case SIOCSIFDSTADDR
:
1324 case SIOCGIFBRDADDR
:
1325 case SIOCSIFBRDADDR
:
1326 case SIOCGIFNETMASK
:
1327 case SIOCSIFNETMASK
:
1335 if (!capable(CAP_NET_ADMIN
))
1337 return rose_rt_ioctl(cmd
, argp
);
1339 case SIOCRSGCAUSE
: {
1340 struct rose_cause_struct rose_cause
;
1341 rose_cause
.cause
= rose
->cause
;
1342 rose_cause
.diagnostic
= rose
->diagnostic
;
1343 return copy_to_user(argp
, &rose_cause
, sizeof(struct rose_cause_struct
)) ? -EFAULT
: 0;
1346 case SIOCRSSCAUSE
: {
1347 struct rose_cause_struct rose_cause
;
1348 if (copy_from_user(&rose_cause
, argp
, sizeof(struct rose_cause_struct
)))
1350 rose
->cause
= rose_cause
.cause
;
1351 rose
->diagnostic
= rose_cause
.diagnostic
;
1356 if (!capable(CAP_NET_ADMIN
)) return -EPERM
;
1357 if (ax25cmp(&rose_callsign
, &null_ax25_address
) != 0)
1358 ax25_listen_release(&rose_callsign
, NULL
);
1359 if (copy_from_user(&rose_callsign
, argp
, sizeof(ax25_address
)))
1361 if (ax25cmp(&rose_callsign
, &null_ax25_address
) != 0)
1362 return ax25_listen_register(&rose_callsign
, NULL
);
1367 return copy_to_user(argp
, &rose_callsign
, sizeof(ax25_address
)) ? -EFAULT
: 0;
1370 if (rose
->state
== ROSE_STATE_5
) {
1371 rose_write_internal(sk
, ROSE_CALL_ACCEPTED
);
1372 rose_start_idletimer(sk
);
1373 rose
->condition
= 0x00;
1378 rose
->state
= ROSE_STATE_3
;
1383 return -ENOIOCTLCMD
;
1389 #ifdef CONFIG_PROC_FS
1390 static void *rose_info_start(struct seq_file
*seq
, loff_t
*pos
)
1391 __acquires(rose_list_lock
)
1395 struct hlist_node
*node
;
1397 spin_lock_bh(&rose_list_lock
);
1399 return SEQ_START_TOKEN
;
1402 sk_for_each(s
, node
, &rose_list
) {
1410 static void *rose_info_next(struct seq_file
*seq
, void *v
, loff_t
*pos
)
1414 return (v
== SEQ_START_TOKEN
) ? sk_head(&rose_list
)
1415 : sk_next((struct sock
*)v
);
1418 static void rose_info_stop(struct seq_file
*seq
, void *v
)
1419 __releases(rose_list_lock
)
1421 spin_unlock_bh(&rose_list_lock
);
1424 static int rose_info_show(struct seq_file
*seq
, void *v
)
1428 if (v
== SEQ_START_TOKEN
)
1430 "dest_addr dest_call src_addr src_call dev lci neigh st vs vr va t t1 t2 t3 hb idle Snd-Q Rcv-Q inode\n");
1434 struct rose_sock
*rose
= rose_sk(s
);
1435 const char *devname
, *callsign
;
1436 const struct net_device
*dev
= rose
->device
;
1441 devname
= dev
->name
;
1443 seq_printf(seq
, "%-10s %-9s ",
1444 rose2asc(&rose
->dest_addr
),
1445 ax2asc(buf
, &rose
->dest_call
));
1447 if (ax25cmp(&rose
->source_call
, &null_ax25_address
) == 0)
1448 callsign
= "??????-?";
1450 callsign
= ax2asc(buf
, &rose
->source_call
);
1453 "%-10s %-9s %-5s %3.3X %05d %d %d %d %d %3lu %3lu %3lu %3lu %3lu %3lu/%03lu %5d %5d %ld\n",
1454 rose2asc(&rose
->source_addr
),
1458 (rose
->neighbour
) ? rose
->neighbour
->number
: 0,
1463 ax25_display_timer(&rose
->timer
) / HZ
,
1468 ax25_display_timer(&rose
->idletimer
) / (60 * HZ
),
1469 rose
->idle
/ (60 * HZ
),
1470 atomic_read(&s
->sk_wmem_alloc
),
1471 atomic_read(&s
->sk_rmem_alloc
),
1472 s
->sk_socket
? SOCK_INODE(s
->sk_socket
)->i_ino
: 0L);
1478 static const struct seq_operations rose_info_seqops
= {
1479 .start
= rose_info_start
,
1480 .next
= rose_info_next
,
1481 .stop
= rose_info_stop
,
1482 .show
= rose_info_show
,
1485 static int rose_info_open(struct inode
*inode
, struct file
*file
)
1487 return seq_open(file
, &rose_info_seqops
);
1490 static const struct file_operations rose_info_fops
= {
1491 .owner
= THIS_MODULE
,
1492 .open
= rose_info_open
,
1494 .llseek
= seq_lseek
,
1495 .release
= seq_release
,
1497 #endif /* CONFIG_PROC_FS */
1499 static struct net_proto_family rose_family_ops
= {
1501 .create
= rose_create
,
1502 .owner
= THIS_MODULE
,
1505 static struct proto_ops rose_proto_ops
= {
1507 .owner
= THIS_MODULE
,
1508 .release
= rose_release
,
1510 .connect
= rose_connect
,
1511 .socketpair
= sock_no_socketpair
,
1512 .accept
= rose_accept
,
1513 .getname
= rose_getname
,
1514 .poll
= datagram_poll
,
1515 .ioctl
= rose_ioctl
,
1516 .listen
= rose_listen
,
1517 .shutdown
= sock_no_shutdown
,
1518 .setsockopt
= rose_setsockopt
,
1519 .getsockopt
= rose_getsockopt
,
1520 .sendmsg
= rose_sendmsg
,
1521 .recvmsg
= rose_recvmsg
,
1522 .mmap
= sock_no_mmap
,
1523 .sendpage
= sock_no_sendpage
,
1526 static struct notifier_block rose_dev_notifier
= {
1527 .notifier_call
= rose_device_event
,
1530 static struct net_device
**dev_rose
;
1532 static struct ax25_protocol rose_pid
= {
1534 .func
= rose_route_frame
1537 static struct ax25_linkfail rose_linkfail_notifier
= {
1538 .func
= rose_link_failed
1541 static int __init
rose_proto_init(void)
1546 if (rose_ndevs
> 0x7FFFFFFF/sizeof(struct net_device
*)) {
1547 printk(KERN_ERR
"ROSE: rose_proto_init - rose_ndevs parameter to large\n");
1552 rc
= proto_register(&rose_proto
, 0);
1556 rose_callsign
= null_ax25_address
;
1558 dev_rose
= kzalloc(rose_ndevs
* sizeof(struct net_device
*), GFP_KERNEL
);
1559 if (dev_rose
== NULL
) {
1560 printk(KERN_ERR
"ROSE: rose_proto_init - unable to allocate device structure\n");
1562 goto out_proto_unregister
;
1565 for (i
= 0; i
< rose_ndevs
; i
++) {
1566 struct net_device
*dev
;
1567 char name
[IFNAMSIZ
];
1569 sprintf(name
, "rose%d", i
);
1570 dev
= alloc_netdev(sizeof(struct net_device_stats
),
1573 printk(KERN_ERR
"ROSE: rose_proto_init - unable to allocate memory\n");
1577 rc
= register_netdev(dev
);
1579 printk(KERN_ERR
"ROSE: netdevice registration failed\n");
1583 lockdep_set_class(&dev
->_xmit_lock
, &rose_netdev_xmit_lock_key
);
1587 sock_register(&rose_family_ops
);
1588 register_netdevice_notifier(&rose_dev_notifier
);
1590 ax25_register_pid(&rose_pid
);
1591 ax25_linkfail_register(&rose_linkfail_notifier
);
1593 #ifdef CONFIG_SYSCTL
1594 rose_register_sysctl();
1596 rose_loopback_init();
1598 rose_add_loopback_neigh();
1600 proc_net_fops_create(&init_net
, "rose", S_IRUGO
, &rose_info_fops
);
1601 proc_net_fops_create(&init_net
, "rose_neigh", S_IRUGO
, &rose_neigh_fops
);
1602 proc_net_fops_create(&init_net
, "rose_nodes", S_IRUGO
, &rose_nodes_fops
);
1603 proc_net_fops_create(&init_net
, "rose_routes", S_IRUGO
, &rose_routes_fops
);
1608 unregister_netdev(dev_rose
[i
]);
1609 free_netdev(dev_rose
[i
]);
1612 out_proto_unregister
:
1613 proto_unregister(&rose_proto
);
1616 module_init(rose_proto_init
);
1618 module_param(rose_ndevs
, int, 0);
1619 MODULE_PARM_DESC(rose_ndevs
, "number of ROSE devices");
1621 MODULE_AUTHOR("Jonathan Naylor G4KLX <g4klx@g4klx.demon.co.uk>");
1622 MODULE_DESCRIPTION("The amateur radio ROSE network layer protocol");
1623 MODULE_LICENSE("GPL");
1624 MODULE_ALIAS_NETPROTO(PF_ROSE
);
1626 static void __exit
rose_exit(void)
1630 proc_net_remove(&init_net
, "rose");
1631 proc_net_remove(&init_net
, "rose_neigh");
1632 proc_net_remove(&init_net
, "rose_nodes");
1633 proc_net_remove(&init_net
, "rose_routes");
1634 rose_loopback_clear();
1638 ax25_protocol_release(AX25_P_ROSE
);
1639 ax25_linkfail_release(&rose_linkfail_notifier
);
1641 if (ax25cmp(&rose_callsign
, &null_ax25_address
) != 0)
1642 ax25_listen_release(&rose_callsign
, NULL
);
1644 #ifdef CONFIG_SYSCTL
1645 rose_unregister_sysctl();
1647 unregister_netdevice_notifier(&rose_dev_notifier
);
1649 sock_unregister(PF_ROSE
);
1651 for (i
= 0; i
< rose_ndevs
; i
++) {
1652 struct net_device
*dev
= dev_rose
[i
];
1655 unregister_netdev(dev
);
1661 proto_unregister(&rose_proto
);
1664 module_exit(rose_exit
);