1 // SPDX-License-Identifier: GPL-2.0-or-later
4 * Copyright Jonathan Naylor G4KLX (g4klx@g4klx.demon.co.uk)
5 * Copyright Alan Cox GW4PTS (alan@lxorguk.ukuu.org.uk)
6 * Copyright Darryl Miles G7LED (dlm@g7led.demon.co.uk)
8 #include <linux/module.h>
9 #include <linux/moduleparam.h>
10 #include <linux/capability.h>
11 #include <linux/errno.h>
12 #include <linux/types.h>
13 #include <linux/socket.h>
15 #include <linux/slab.h>
16 #include <linux/kernel.h>
17 #include <linux/sched/signal.h>
18 #include <linux/timer.h>
19 #include <linux/string.h>
20 #include <linux/sockios.h>
21 #include <linux/net.h>
22 #include <linux/stat.h>
24 #include <linux/inet.h>
25 #include <linux/netdevice.h>
26 #include <linux/if_arp.h>
27 #include <linux/skbuff.h>
28 #include <net/net_namespace.h>
30 #include <linux/uaccess.h>
31 #include <linux/fcntl.h>
32 #include <linux/termios.h> /* For TIOCINQ/OUTQ */
34 #include <linux/interrupt.h>
35 #include <linux/notifier.h>
36 #include <net/netrom.h>
37 #include <linux/proc_fs.h>
38 #include <linux/seq_file.h>
40 #include <net/tcp_states.h>
42 #include <linux/init.h>
44 static int nr_ndevs
= 4;
46 int sysctl_netrom_default_path_quality
= NR_DEFAULT_QUAL
;
47 int sysctl_netrom_obsolescence_count_initialiser
= NR_DEFAULT_OBS
;
48 int sysctl_netrom_network_ttl_initialiser
= NR_DEFAULT_TTL
;
49 int sysctl_netrom_transport_timeout
= NR_DEFAULT_T1
;
50 int sysctl_netrom_transport_maximum_tries
= NR_DEFAULT_N2
;
51 int sysctl_netrom_transport_acknowledge_delay
= NR_DEFAULT_T2
;
52 int sysctl_netrom_transport_busy_delay
= NR_DEFAULT_T4
;
53 int sysctl_netrom_transport_requested_window_size
= NR_DEFAULT_WINDOW
;
54 int sysctl_netrom_transport_no_activity_timeout
= NR_DEFAULT_IDLE
;
55 int sysctl_netrom_routing_control
= NR_DEFAULT_ROUTING
;
56 int sysctl_netrom_link_fails_count
= NR_DEFAULT_FAILS
;
57 int sysctl_netrom_reset_circuit
= NR_DEFAULT_RESET
;
59 static unsigned short circuit
= 0x101;
61 static HLIST_HEAD(nr_list
);
62 static DEFINE_SPINLOCK(nr_list_lock
);
64 static const struct proto_ops nr_proto_ops
;
67 * Socket removal during an interrupt is now safe.
69 static void nr_remove_socket(struct sock
*sk
)
71 spin_lock_bh(&nr_list_lock
);
73 spin_unlock_bh(&nr_list_lock
);
77 * Kill all bound sockets on a dropped device.
79 static void nr_kill_by_device(struct net_device
*dev
)
83 spin_lock_bh(&nr_list_lock
);
84 sk_for_each(s
, &nr_list
)
85 if (nr_sk(s
)->device
== dev
)
86 nr_disconnect(s
, ENETUNREACH
);
87 spin_unlock_bh(&nr_list_lock
);
91 * Handle device status changes.
93 static int nr_device_event(struct notifier_block
*this, unsigned long event
, void *ptr
)
95 struct net_device
*dev
= netdev_notifier_info_to_dev(ptr
);
97 if (!net_eq(dev_net(dev
), &init_net
))
100 if (event
!= NETDEV_DOWN
)
103 nr_kill_by_device(dev
);
104 nr_rt_device_down(dev
);
110 * Add a socket to the bound sockets list.
112 static void nr_insert_socket(struct sock
*sk
)
114 spin_lock_bh(&nr_list_lock
);
115 sk_add_node(sk
, &nr_list
);
116 spin_unlock_bh(&nr_list_lock
);
120 * Find a socket that wants to accept the Connect Request we just
123 static struct sock
*nr_find_listener(ax25_address
*addr
)
127 spin_lock_bh(&nr_list_lock
);
128 sk_for_each(s
, &nr_list
)
129 if (!ax25cmp(&nr_sk(s
)->source_addr
, addr
) &&
130 s
->sk_state
== TCP_LISTEN
) {
136 spin_unlock_bh(&nr_list_lock
);
141 * Find a connected NET/ROM socket given my circuit IDs.
143 static struct sock
*nr_find_socket(unsigned char index
, unsigned char id
)
147 spin_lock_bh(&nr_list_lock
);
148 sk_for_each(s
, &nr_list
) {
149 struct nr_sock
*nr
= nr_sk(s
);
151 if (nr
->my_index
== index
&& nr
->my_id
== id
) {
158 spin_unlock_bh(&nr_list_lock
);
163 * Find a connected NET/ROM socket given their circuit IDs.
165 static struct sock
*nr_find_peer(unsigned char index
, unsigned char id
,
170 spin_lock_bh(&nr_list_lock
);
171 sk_for_each(s
, &nr_list
) {
172 struct nr_sock
*nr
= nr_sk(s
);
174 if (nr
->your_index
== index
&& nr
->your_id
== id
&&
175 !ax25cmp(&nr
->dest_addr
, dest
)) {
182 spin_unlock_bh(&nr_list_lock
);
187 * Find next free circuit ID.
189 static unsigned short nr_find_next_circuit(void)
191 unsigned short id
= circuit
;
199 if (i
!= 0 && j
!= 0) {
200 if ((sk
=nr_find_socket(i
, j
)) == NULL
)
214 void nr_destroy_socket(struct sock
*);
217 * Handler for deferred kills.
219 static void nr_destroy_timer(struct timer_list
*t
)
221 struct sock
*sk
= from_timer(sk
, t
, sk_timer
);
224 nr_destroy_socket(sk
);
230 * This is called from user mode and the timers. Thus it protects itself
231 * against interrupt users but doesn't worry about being called during
232 * work. Once it is removed from the queue no interrupt or bottom half
233 * will touch it and we are (fairly 8-) ) safe.
235 void nr_destroy_socket(struct sock
*sk
)
239 nr_remove_socket(sk
);
241 nr_stop_heartbeat(sk
);
245 nr_stop_idletimer(sk
);
247 nr_clear_queues(sk
); /* Flush the queues */
249 while ((skb
= skb_dequeue(&sk
->sk_receive_queue
)) != NULL
) {
250 if (skb
->sk
!= sk
) { /* A pending connection */
251 /* Queue the unaccepted socket for death */
252 sock_set_flag(skb
->sk
, SOCK_DEAD
);
253 nr_start_heartbeat(skb
->sk
);
254 nr_sk(skb
->sk
)->state
= NR_STATE_0
;
260 if (sk_has_allocations(sk
)) {
261 /* Defer: outstanding buffers */
262 sk
->sk_timer
.function
= nr_destroy_timer
;
263 sk
->sk_timer
.expires
= jiffies
+ 2 * HZ
;
264 add_timer(&sk
->sk_timer
);
270 * Handling for system calls applied via the various interfaces to a
271 * NET/ROM socket object.
274 static int nr_setsockopt(struct socket
*sock
, int level
, int optname
,
275 char __user
*optval
, unsigned int optlen
)
277 struct sock
*sk
= sock
->sk
;
278 struct nr_sock
*nr
= nr_sk(sk
);
281 if (level
!= SOL_NETROM
)
284 if (optlen
< sizeof(unsigned int))
287 if (get_user(opt
, (unsigned int __user
*)optval
))
292 if (opt
< 1 || opt
> ULONG_MAX
/ HZ
)
298 if (opt
< 1 || opt
> ULONG_MAX
/ HZ
)
304 if (opt
< 1 || opt
> 31)
310 if (opt
< 1 || opt
> ULONG_MAX
/ HZ
)
316 if (opt
> ULONG_MAX
/ (60 * HZ
))
318 nr
->idle
= opt
* 60 * HZ
;
326 static int nr_getsockopt(struct socket
*sock
, int level
, int optname
,
327 char __user
*optval
, int __user
*optlen
)
329 struct sock
*sk
= sock
->sk
;
330 struct nr_sock
*nr
= nr_sk(sk
);
334 if (level
!= SOL_NETROM
)
337 if (get_user(len
, optlen
))
361 val
= nr
->idle
/ (60 * HZ
);
368 len
= min_t(unsigned int, len
, sizeof(int));
370 if (put_user(len
, optlen
))
373 return copy_to_user(optval
, &val
, len
) ? -EFAULT
: 0;
376 static int nr_listen(struct socket
*sock
, int backlog
)
378 struct sock
*sk
= sock
->sk
;
381 if (sk
->sk_state
!= TCP_LISTEN
) {
382 memset(&nr_sk(sk
)->user_addr
, 0, AX25_ADDR_LEN
);
383 sk
->sk_max_ack_backlog
= backlog
;
384 sk
->sk_state
= TCP_LISTEN
;
393 static struct proto nr_proto
= {
395 .owner
= THIS_MODULE
,
396 .obj_size
= sizeof(struct nr_sock
),
399 static int nr_create(struct net
*net
, struct socket
*sock
, int protocol
,
405 if (!net_eq(net
, &init_net
))
406 return -EAFNOSUPPORT
;
408 if (sock
->type
!= SOCK_SEQPACKET
|| protocol
!= 0)
409 return -ESOCKTNOSUPPORT
;
411 sk
= sk_alloc(net
, PF_NETROM
, GFP_ATOMIC
, &nr_proto
, kern
);
417 sock_init_data(sock
, sk
);
419 sock
->ops
= &nr_proto_ops
;
420 sk
->sk_protocol
= protocol
;
422 skb_queue_head_init(&nr
->ack_queue
);
423 skb_queue_head_init(&nr
->reseq_queue
);
424 skb_queue_head_init(&nr
->frag_queue
);
429 msecs_to_jiffies(sysctl_netrom_transport_timeout
);
431 msecs_to_jiffies(sysctl_netrom_transport_acknowledge_delay
);
433 msecs_to_jiffies(sysctl_netrom_transport_maximum_tries
);
435 msecs_to_jiffies(sysctl_netrom_transport_busy_delay
);
437 msecs_to_jiffies(sysctl_netrom_transport_no_activity_timeout
);
438 nr
->window
= sysctl_netrom_transport_requested_window_size
;
441 nr
->state
= NR_STATE_0
;
446 static struct sock
*nr_make_new(struct sock
*osk
)
449 struct nr_sock
*nr
, *onr
;
451 if (osk
->sk_type
!= SOCK_SEQPACKET
)
454 sk
= sk_alloc(sock_net(osk
), PF_NETROM
, GFP_ATOMIC
, osk
->sk_prot
, 0);
460 sock_init_data(NULL
, sk
);
462 sk
->sk_type
= osk
->sk_type
;
463 sk
->sk_priority
= osk
->sk_priority
;
464 sk
->sk_protocol
= osk
->sk_protocol
;
465 sk
->sk_rcvbuf
= osk
->sk_rcvbuf
;
466 sk
->sk_sndbuf
= osk
->sk_sndbuf
;
467 sk
->sk_state
= TCP_ESTABLISHED
;
468 sock_copy_flags(sk
, osk
);
470 skb_queue_head_init(&nr
->ack_queue
);
471 skb_queue_head_init(&nr
->reseq_queue
);
472 skb_queue_head_init(&nr
->frag_queue
);
482 nr
->idle
= onr
->idle
;
483 nr
->window
= onr
->window
;
485 nr
->device
= onr
->device
;
486 nr
->bpqext
= onr
->bpqext
;
491 static int nr_release(struct socket
*sock
)
493 struct sock
*sk
= sock
->sk
;
496 if (sk
== NULL
) return 0;
507 nr_disconnect(sk
, 0);
508 nr_destroy_socket(sk
);
514 nr_write_internal(sk
, NR_DISCREQ
);
515 nr_start_t1timer(sk
);
518 nr_stop_idletimer(sk
);
519 nr
->state
= NR_STATE_2
;
520 sk
->sk_state
= TCP_CLOSE
;
521 sk
->sk_shutdown
|= SEND_SHUTDOWN
;
522 sk
->sk_state_change(sk
);
523 sock_set_flag(sk
, SOCK_DESTROY
);
537 static int nr_bind(struct socket
*sock
, struct sockaddr
*uaddr
, int addr_len
)
539 struct sock
*sk
= sock
->sk
;
540 struct nr_sock
*nr
= nr_sk(sk
);
541 struct full_sockaddr_ax25
*addr
= (struct full_sockaddr_ax25
*)uaddr
;
542 struct net_device
*dev
;
543 ax25_uid_assoc
*user
;
544 ax25_address
*source
;
547 if (!sock_flag(sk
, SOCK_ZAPPED
)) {
551 if (addr_len
< sizeof(struct sockaddr_ax25
) || addr_len
> sizeof(struct full_sockaddr_ax25
)) {
555 if (addr_len
< (addr
->fsa_ax25
.sax25_ndigis
* sizeof(ax25_address
) + sizeof(struct sockaddr_ax25
))) {
559 if (addr
->fsa_ax25
.sax25_family
!= AF_NETROM
) {
563 if ((dev
= nr_dev_get(&addr
->fsa_ax25
.sax25_call
)) == NULL
) {
565 return -EADDRNOTAVAIL
;
569 * Only the super user can set an arbitrary user callsign.
571 if (addr
->fsa_ax25
.sax25_ndigis
== 1) {
572 if (!capable(CAP_NET_BIND_SERVICE
)) {
577 nr
->user_addr
= addr
->fsa_digipeater
[0];
578 nr
->source_addr
= addr
->fsa_ax25
.sax25_call
;
580 source
= &addr
->fsa_ax25
.sax25_call
;
582 user
= ax25_findbyuid(current_euid());
584 nr
->user_addr
= user
->call
;
587 if (ax25_uid_policy
&& !capable(CAP_NET_BIND_SERVICE
)) {
592 nr
->user_addr
= *source
;
595 nr
->source_addr
= *source
;
599 nr_insert_socket(sk
);
601 sock_reset_flag(sk
, SOCK_ZAPPED
);
608 static int nr_connect(struct socket
*sock
, struct sockaddr
*uaddr
,
609 int addr_len
, int flags
)
611 struct sock
*sk
= sock
->sk
;
612 struct nr_sock
*nr
= nr_sk(sk
);
613 struct sockaddr_ax25
*addr
= (struct sockaddr_ax25
*)uaddr
;
614 ax25_address
*source
= NULL
;
615 ax25_uid_assoc
*user
;
616 struct net_device
*dev
;
620 if (sk
->sk_state
== TCP_ESTABLISHED
&& sock
->state
== SS_CONNECTING
) {
621 sock
->state
= SS_CONNECTED
;
622 goto out_release
; /* Connect completed during a ERESTARTSYS event */
625 if (sk
->sk_state
== TCP_CLOSE
&& sock
->state
== SS_CONNECTING
) {
626 sock
->state
= SS_UNCONNECTED
;
631 if (sk
->sk_state
== TCP_ESTABLISHED
) {
632 err
= -EISCONN
; /* No reconnect on a seqpacket socket */
636 sk
->sk_state
= TCP_CLOSE
;
637 sock
->state
= SS_UNCONNECTED
;
639 if (addr_len
!= sizeof(struct sockaddr_ax25
) && addr_len
!= sizeof(struct full_sockaddr_ax25
)) {
643 if (addr
->sax25_family
!= AF_NETROM
) {
647 if (sock_flag(sk
, SOCK_ZAPPED
)) { /* Must bind first - autobinding in this may or may not work */
648 sock_reset_flag(sk
, SOCK_ZAPPED
);
650 if ((dev
= nr_dev_first()) == NULL
) {
654 source
= (ax25_address
*)dev
->dev_addr
;
656 user
= ax25_findbyuid(current_euid());
658 nr
->user_addr
= user
->call
;
661 if (ax25_uid_policy
&& !capable(CAP_NET_ADMIN
)) {
666 nr
->user_addr
= *source
;
669 nr
->source_addr
= *source
;
673 nr_insert_socket(sk
); /* Finish the bind */
676 nr
->dest_addr
= addr
->sax25_call
;
679 circuit
= nr_find_next_circuit();
682 nr
->my_index
= circuit
/ 256;
683 nr
->my_id
= circuit
% 256;
687 /* Move to connecting socket, start sending Connect Requests */
688 sock
->state
= SS_CONNECTING
;
689 sk
->sk_state
= TCP_SYN_SENT
;
691 nr_establish_data_link(sk
);
693 nr
->state
= NR_STATE_1
;
695 nr_start_heartbeat(sk
);
698 if (sk
->sk_state
!= TCP_ESTABLISHED
&& (flags
& O_NONBLOCK
)) {
704 * A Connect Ack with Choke or timeout or failed routing will go to
707 if (sk
->sk_state
== TCP_SYN_SENT
) {
711 prepare_to_wait(sk_sleep(sk
), &wait
,
713 if (sk
->sk_state
!= TCP_SYN_SENT
)
715 if (!signal_pending(current
)) {
724 finish_wait(sk_sleep(sk
), &wait
);
729 if (sk
->sk_state
!= TCP_ESTABLISHED
) {
730 sock
->state
= SS_UNCONNECTED
;
731 err
= sock_error(sk
); /* Always set at this point */
735 sock
->state
= SS_CONNECTED
;
743 static int nr_accept(struct socket
*sock
, struct socket
*newsock
, int flags
,
752 if ((sk
= sock
->sk
) == NULL
)
756 if (sk
->sk_type
!= SOCK_SEQPACKET
) {
761 if (sk
->sk_state
!= TCP_LISTEN
) {
767 * The write queue this time is holding sockets ready to use
768 * hooked into the SABM we saved
771 prepare_to_wait(sk_sleep(sk
), &wait
, TASK_INTERRUPTIBLE
);
772 skb
= skb_dequeue(&sk
->sk_receive_queue
);
776 if (flags
& O_NONBLOCK
) {
780 if (!signal_pending(current
)) {
789 finish_wait(sk_sleep(sk
), &wait
);
794 sock_graft(newsk
, newsock
);
796 /* Now attach up the new socket */
798 sk_acceptq_removed(sk
);
806 static int nr_getname(struct socket
*sock
, struct sockaddr
*uaddr
,
809 struct full_sockaddr_ax25
*sax
= (struct full_sockaddr_ax25
*)uaddr
;
810 struct sock
*sk
= sock
->sk
;
811 struct nr_sock
*nr
= nr_sk(sk
);
814 memset(&sax
->fsa_ax25
, 0, sizeof(struct sockaddr_ax25
));
818 if (sk
->sk_state
!= TCP_ESTABLISHED
) {
822 sax
->fsa_ax25
.sax25_family
= AF_NETROM
;
823 sax
->fsa_ax25
.sax25_ndigis
= 1;
824 sax
->fsa_ax25
.sax25_call
= nr
->user_addr
;
825 memset(sax
->fsa_digipeater
, 0, sizeof(sax
->fsa_digipeater
));
826 sax
->fsa_digipeater
[0] = nr
->dest_addr
;
827 uaddr_len
= sizeof(struct full_sockaddr_ax25
);
829 sax
->fsa_ax25
.sax25_family
= AF_NETROM
;
830 sax
->fsa_ax25
.sax25_ndigis
= 0;
831 sax
->fsa_ax25
.sax25_call
= nr
->source_addr
;
832 uaddr_len
= sizeof(struct sockaddr_ax25
);
839 int nr_rx_frame(struct sk_buff
*skb
, struct net_device
*dev
)
843 struct nr_sock
*nr_make
;
844 ax25_address
*src
, *dest
, *user
;
845 unsigned short circuit_index
, circuit_id
;
846 unsigned short peer_circuit_index
, peer_circuit_id
;
847 unsigned short frametype
, flags
, window
, timeout
;
853 * skb->data points to the netrom frame start
856 src
= (ax25_address
*)(skb
->data
+ 0);
857 dest
= (ax25_address
*)(skb
->data
+ 7);
859 circuit_index
= skb
->data
[15];
860 circuit_id
= skb
->data
[16];
861 peer_circuit_index
= skb
->data
[17];
862 peer_circuit_id
= skb
->data
[18];
863 frametype
= skb
->data
[19] & 0x0F;
864 flags
= skb
->data
[19] & 0xF0;
867 * Check for an incoming IP over NET/ROM frame.
869 if (frametype
== NR_PROTOEXT
&&
870 circuit_index
== NR_PROTO_IP
&& circuit_id
== NR_PROTO_IP
) {
871 skb_pull(skb
, NR_NETWORK_LEN
+ NR_TRANSPORT_LEN
);
872 skb_reset_transport_header(skb
);
874 return nr_rx_ip(skb
, dev
);
878 * Find an existing socket connection, based on circuit ID, if it's
879 * a Connect Request base it on their circuit ID.
881 * Circuit ID 0/0 is not valid but it could still be a "reset" for a
882 * circuit that no longer exists at the other end ...
887 if (circuit_index
== 0 && circuit_id
== 0) {
888 if (frametype
== NR_CONNACK
&& flags
== NR_CHOKE_FLAG
)
889 sk
= nr_find_peer(peer_circuit_index
, peer_circuit_id
, src
);
891 if (frametype
== NR_CONNREQ
)
892 sk
= nr_find_peer(circuit_index
, circuit_id
, src
);
894 sk
= nr_find_socket(circuit_index
, circuit_id
);
899 skb_reset_transport_header(skb
);
901 if (frametype
== NR_CONNACK
&& skb
->len
== 22)
902 nr_sk(sk
)->bpqext
= 1;
904 nr_sk(sk
)->bpqext
= 0;
906 ret
= nr_process_rx_frame(sk
, skb
);
913 * Now it should be a CONNREQ.
915 if (frametype
!= NR_CONNREQ
) {
917 * Here it would be nice to be able to send a reset but
918 * NET/ROM doesn't have one. We've tried to extend the protocol
919 * by sending NR_CONNACK | NR_CHOKE_FLAGS replies but that
920 * apparently kills BPQ boxes... :-(
921 * So now we try to follow the established behaviour of
922 * G8PZT's Xrouter which is sending packets with command type 7
923 * as an extension of the protocol.
925 if (sysctl_netrom_reset_circuit
&&
926 (frametype
!= NR_RESET
|| flags
!= 0))
927 nr_transmit_reset(skb
, 1);
932 sk
= nr_find_listener(dest
);
934 user
= (ax25_address
*)(skb
->data
+ 21);
936 if (sk
== NULL
|| sk_acceptq_is_full(sk
) ||
937 (make
= nr_make_new(sk
)) == NULL
) {
938 nr_transmit_refusal(skb
, 0);
946 window
= skb
->data
[20];
950 skb
->destructor
= sock_efree
;
951 make
->sk_state
= TCP_ESTABLISHED
;
953 /* Fill in his circuit details */
954 nr_make
= nr_sk(make
);
955 nr_make
->source_addr
= *dest
;
956 nr_make
->dest_addr
= *src
;
957 nr_make
->user_addr
= *user
;
959 nr_make
->your_index
= circuit_index
;
960 nr_make
->your_id
= circuit_id
;
963 circuit
= nr_find_next_circuit();
966 nr_make
->my_index
= circuit
/ 256;
967 nr_make
->my_id
= circuit
% 256;
971 /* Window negotiation */
972 if (window
< nr_make
->window
)
973 nr_make
->window
= window
;
975 /* L4 timeout negotiation */
976 if (skb
->len
== 37) {
977 timeout
= skb
->data
[36] * 256 + skb
->data
[35];
978 if (timeout
* HZ
< nr_make
->t1
)
979 nr_make
->t1
= timeout
* HZ
;
985 nr_write_internal(make
, NR_CONNACK
);
987 nr_make
->condition
= 0x00;
992 nr_make
->state
= NR_STATE_3
;
993 sk_acceptq_added(sk
);
994 skb_queue_head(&sk
->sk_receive_queue
, skb
);
996 if (!sock_flag(sk
, SOCK_DEAD
))
997 sk
->sk_data_ready(sk
);
1002 nr_insert_socket(make
);
1004 nr_start_heartbeat(make
);
1005 nr_start_idletimer(make
);
1010 static int nr_sendmsg(struct socket
*sock
, struct msghdr
*msg
, size_t len
)
1012 struct sock
*sk
= sock
->sk
;
1013 struct nr_sock
*nr
= nr_sk(sk
);
1014 DECLARE_SOCKADDR(struct sockaddr_ax25
*, usax
, msg
->msg_name
);
1016 struct sockaddr_ax25 sax
;
1017 struct sk_buff
*skb
;
1018 unsigned char *asmptr
;
1021 if (msg
->msg_flags
& ~(MSG_DONTWAIT
|MSG_EOR
|MSG_CMSG_COMPAT
))
1025 if (sock_flag(sk
, SOCK_ZAPPED
)) {
1026 err
= -EADDRNOTAVAIL
;
1030 if (sk
->sk_shutdown
& SEND_SHUTDOWN
) {
1031 send_sig(SIGPIPE
, current
, 0);
1036 if (nr
->device
== NULL
) {
1042 if (msg
->msg_namelen
< sizeof(sax
)) {
1047 if (ax25cmp(&nr
->dest_addr
, &sax
.sax25_call
) != 0) {
1051 if (sax
.sax25_family
!= AF_NETROM
) {
1056 if (sk
->sk_state
!= TCP_ESTABLISHED
) {
1060 sax
.sax25_family
= AF_NETROM
;
1061 sax
.sax25_call
= nr
->dest_addr
;
1064 /* Build a packet - the conventional user limit is 236 bytes. We can
1065 do ludicrously large NetROM frames but must not overflow */
1071 size
= len
+ NR_NETWORK_LEN
+ NR_TRANSPORT_LEN
;
1073 if ((skb
= sock_alloc_send_skb(sk
, size
, msg
->msg_flags
& MSG_DONTWAIT
, &err
)) == NULL
)
1076 skb_reserve(skb
, size
- len
);
1077 skb_reset_transport_header(skb
);
1080 * Push down the NET/ROM header
1083 asmptr
= skb_push(skb
, NR_TRANSPORT_LEN
);
1085 /* Build a NET/ROM Transport header */
1087 *asmptr
++ = nr
->your_index
;
1088 *asmptr
++ = nr
->your_id
;
1089 *asmptr
++ = 0; /* To be filled in later */
1090 *asmptr
++ = 0; /* Ditto */
1091 *asmptr
++ = NR_INFO
;
1094 * Put the data on the end
1098 /* User data follows immediately after the NET/ROM transport header */
1099 if (memcpy_from_msg(skb_transport_header(skb
), msg
, len
)) {
1105 if (sk
->sk_state
!= TCP_ESTABLISHED
) {
1111 nr_output(sk
, skb
); /* Shove it onto the queue */
1119 static int nr_recvmsg(struct socket
*sock
, struct msghdr
*msg
, size_t size
,
1122 struct sock
*sk
= sock
->sk
;
1123 DECLARE_SOCKADDR(struct sockaddr_ax25
*, sax
, msg
->msg_name
);
1125 struct sk_buff
*skb
;
1129 * This works for seqpacket too. The receiver has ordered the queue for
1130 * us! We do one quick check first though
1134 if (sk
->sk_state
!= TCP_ESTABLISHED
) {
1139 /* Now we can treat all alike */
1140 if ((skb
= skb_recv_datagram(sk
, flags
& ~MSG_DONTWAIT
, flags
& MSG_DONTWAIT
, &er
)) == NULL
) {
1145 skb_reset_transport_header(skb
);
1148 if (copied
> size
) {
1150 msg
->msg_flags
|= MSG_TRUNC
;
1153 er
= skb_copy_datagram_msg(skb
, 0, msg
, copied
);
1155 skb_free_datagram(sk
, skb
);
1161 memset(sax
, 0, sizeof(*sax
));
1162 sax
->sax25_family
= AF_NETROM
;
1163 skb_copy_from_linear_data_offset(skb
, 7, sax
->sax25_call
.ax25_call
,
1165 msg
->msg_namelen
= sizeof(*sax
);
1168 skb_free_datagram(sk
, skb
);
1175 static int nr_ioctl(struct socket
*sock
, unsigned int cmd
, unsigned long arg
)
1177 struct sock
*sk
= sock
->sk
;
1178 void __user
*argp
= (void __user
*)arg
;
1185 amount
= sk
->sk_sndbuf
- sk_wmem_alloc_get(sk
);
1189 return put_user(amount
, (int __user
*)argp
);
1193 struct sk_buff
*skb
;
1197 /* These two are safe on a single CPU system as only user tasks fiddle here */
1198 if ((skb
= skb_peek(&sk
->sk_receive_queue
)) != NULL
)
1201 return put_user(amount
, (int __user
*)argp
);
1206 case SIOCGIFDSTADDR
:
1207 case SIOCSIFDSTADDR
:
1208 case SIOCGIFBRDADDR
:
1209 case SIOCSIFBRDADDR
:
1210 case SIOCGIFNETMASK
:
1211 case SIOCSIFNETMASK
:
1219 if (!capable(CAP_NET_ADMIN
))
1221 return nr_rt_ioctl(cmd
, argp
);
1224 return -ENOIOCTLCMD
;
1230 #ifdef CONFIG_PROC_FS
1232 static void *nr_info_start(struct seq_file
*seq
, loff_t
*pos
)
1234 spin_lock_bh(&nr_list_lock
);
1235 return seq_hlist_start_head(&nr_list
, *pos
);
1238 static void *nr_info_next(struct seq_file
*seq
, void *v
, loff_t
*pos
)
1240 return seq_hlist_next(v
, &nr_list
, pos
);
1243 static void nr_info_stop(struct seq_file
*seq
, void *v
)
1245 spin_unlock_bh(&nr_list_lock
);
1248 static int nr_info_show(struct seq_file
*seq
, void *v
)
1250 struct sock
*s
= sk_entry(v
);
1251 struct net_device
*dev
;
1253 const char *devname
;
1256 if (v
== SEQ_START_TOKEN
)
1258 "user_addr dest_node src_node dev my your st vs vr va t1 t2 t4 idle n2 wnd Snd-Q Rcv-Q inode\n");
1265 if ((dev
= nr
->device
) == NULL
)
1268 devname
= dev
->name
;
1270 seq_printf(seq
, "%-9s ", ax2asc(buf
, &nr
->user_addr
));
1271 seq_printf(seq
, "%-9s ", ax2asc(buf
, &nr
->dest_addr
));
1273 "%-9s %-3s %02X/%02X %02X/%02X %2d %3d %3d %3d %3lu/%03lu %2lu/%02lu %3lu/%03lu %3lu/%03lu %2d/%02d %3d %5d %5d %ld\n",
1274 ax2asc(buf
, &nr
->source_addr
),
1284 ax25_display_timer(&nr
->t1timer
) / HZ
,
1286 ax25_display_timer(&nr
->t2timer
) / HZ
,
1288 ax25_display_timer(&nr
->t4timer
) / HZ
,
1290 ax25_display_timer(&nr
->idletimer
) / (60 * HZ
),
1291 nr
->idle
/ (60 * HZ
),
1295 sk_wmem_alloc_get(s
),
1296 sk_rmem_alloc_get(s
),
1297 s
->sk_socket
? SOCK_INODE(s
->sk_socket
)->i_ino
: 0L);
1304 static const struct seq_operations nr_info_seqops
= {
1305 .start
= nr_info_start
,
1306 .next
= nr_info_next
,
1307 .stop
= nr_info_stop
,
1308 .show
= nr_info_show
,
1310 #endif /* CONFIG_PROC_FS */
1312 static const struct net_proto_family nr_family_ops
= {
1313 .family
= PF_NETROM
,
1314 .create
= nr_create
,
1315 .owner
= THIS_MODULE
,
1318 static const struct proto_ops nr_proto_ops
= {
1319 .family
= PF_NETROM
,
1320 .owner
= THIS_MODULE
,
1321 .release
= nr_release
,
1323 .connect
= nr_connect
,
1324 .socketpair
= sock_no_socketpair
,
1325 .accept
= nr_accept
,
1326 .getname
= nr_getname
,
1327 .poll
= datagram_poll
,
1329 .gettstamp
= sock_gettstamp
,
1330 .listen
= nr_listen
,
1331 .shutdown
= sock_no_shutdown
,
1332 .setsockopt
= nr_setsockopt
,
1333 .getsockopt
= nr_getsockopt
,
1334 .sendmsg
= nr_sendmsg
,
1335 .recvmsg
= nr_recvmsg
,
1336 .mmap
= sock_no_mmap
,
1337 .sendpage
= sock_no_sendpage
,
1340 static struct notifier_block nr_dev_notifier
= {
1341 .notifier_call
= nr_device_event
,
1344 static struct net_device
**dev_nr
;
1346 static struct ax25_protocol nr_pid
= {
1347 .pid
= AX25_P_NETROM
,
1348 .func
= nr_route_frame
1351 static struct ax25_linkfail nr_linkfail_notifier
= {
1352 .func
= nr_link_failed
,
1355 static int __init
nr_proto_init(void)
1358 int rc
= proto_register(&nr_proto
, 0);
1363 if (nr_ndevs
> 0x7fffffff/sizeof(struct net_device
*)) {
1364 pr_err("NET/ROM: %s - nr_ndevs parameter too large\n",
1367 goto unregister_proto
;
1370 dev_nr
= kcalloc(nr_ndevs
, sizeof(struct net_device
*), GFP_KERNEL
);
1372 pr_err("NET/ROM: %s - unable to allocate device array\n",
1375 goto unregister_proto
;
1378 for (i
= 0; i
< nr_ndevs
; i
++) {
1379 char name
[IFNAMSIZ
];
1380 struct net_device
*dev
;
1382 sprintf(name
, "nr%d", i
);
1383 dev
= alloc_netdev(0, name
, NET_NAME_UNKNOWN
, nr_setup
);
1390 rc
= register_netdev(dev
);
1398 rc
= sock_register(&nr_family_ops
);
1402 rc
= register_netdevice_notifier(&nr_dev_notifier
);
1406 ax25_register_pid(&nr_pid
);
1407 ax25_linkfail_register(&nr_linkfail_notifier
);
1409 #ifdef CONFIG_SYSCTL
1410 rc
= nr_register_sysctl();
1418 if (!proc_create_seq("nr", 0444, init_net
.proc_net
, &nr_info_seqops
))
1420 if (!proc_create_seq("nr_neigh", 0444, init_net
.proc_net
,
1423 if (!proc_create_seq("nr_nodes", 0444, init_net
.proc_net
,
1430 remove_proc_entry("nr_neigh", init_net
.proc_net
);
1432 remove_proc_entry("nr", init_net
.proc_net
);
1435 nr_loopback_clear();
1438 #ifdef CONFIG_SYSCTL
1439 nr_unregister_sysctl();
1442 ax25_linkfail_release(&nr_linkfail_notifier
);
1443 ax25_protocol_release(AX25_P_NETROM
);
1444 unregister_netdevice_notifier(&nr_dev_notifier
);
1446 sock_unregister(PF_NETROM
);
1449 unregister_netdev(dev_nr
[i
]);
1450 free_netdev(dev_nr
[i
]);
1454 proto_unregister(&nr_proto
);
1458 module_init(nr_proto_init
);
1460 module_param(nr_ndevs
, int, 0);
1461 MODULE_PARM_DESC(nr_ndevs
, "number of NET/ROM devices");
1463 MODULE_AUTHOR("Jonathan Naylor G4KLX <g4klx@g4klx.demon.co.uk>");
1464 MODULE_DESCRIPTION("The amateur radio NET/ROM network and transport layer protocol");
1465 MODULE_LICENSE("GPL");
1466 MODULE_ALIAS_NETPROTO(PF_NETROM
);
1468 static void __exit
nr_exit(void)
1472 remove_proc_entry("nr", init_net
.proc_net
);
1473 remove_proc_entry("nr_neigh", init_net
.proc_net
);
1474 remove_proc_entry("nr_nodes", init_net
.proc_net
);
1475 nr_loopback_clear();
1479 #ifdef CONFIG_SYSCTL
1480 nr_unregister_sysctl();
1483 ax25_linkfail_release(&nr_linkfail_notifier
);
1484 ax25_protocol_release(AX25_P_NETROM
);
1486 unregister_netdevice_notifier(&nr_dev_notifier
);
1488 sock_unregister(PF_NETROM
);
1490 for (i
= 0; i
< nr_ndevs
; i
++) {
1491 struct net_device
*dev
= dev_nr
[i
];
1493 unregister_netdev(dev
);
1499 proto_unregister(&nr_proto
);
1501 module_exit(nr_exit
);