af_ax25.c 45 KB

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  1. // SPDX-License-Identifier: GPL-2.0-or-later
  2. /*
  3. *
  4. * Copyright (C) Alan Cox GW4PTS ([email protected])
  5. * Copyright (C) Jonathan Naylor G4KLX ([email protected])
  6. * Copyright (C) Darryl Miles G7LED ([email protected])
  7. * Copyright (C) Steven Whitehouse GW7RRM ([email protected])
  8. * Copyright (C) Joerg Reuter DL1BKE ([email protected])
  9. * Copyright (C) Hans-Joachim Hetscher DD8NE ([email protected])
  10. * Copyright (C) Hans Alblas PE1AYX ([email protected])
  11. * Copyright (C) Frederic Rible F1OAT ([email protected])
  12. */
  13. #include <linux/capability.h>
  14. #include <linux/module.h>
  15. #include <linux/errno.h>
  16. #include <linux/types.h>
  17. #include <linux/socket.h>
  18. #include <linux/in.h>
  19. #include <linux/kernel.h>
  20. #include <linux/sched/signal.h>
  21. #include <linux/timer.h>
  22. #include <linux/string.h>
  23. #include <linux/sockios.h>
  24. #include <linux/net.h>
  25. #include <linux/slab.h>
  26. #include <net/ax25.h>
  27. #include <linux/inet.h>
  28. #include <linux/netdevice.h>
  29. #include <linux/if_arp.h>
  30. #include <linux/skbuff.h>
  31. #include <net/sock.h>
  32. #include <linux/uaccess.h>
  33. #include <linux/fcntl.h>
  34. #include <linux/termios.h> /* For TIOCINQ/OUTQ */
  35. #include <linux/mm.h>
  36. #include <linux/interrupt.h>
  37. #include <linux/notifier.h>
  38. #include <linux/proc_fs.h>
  39. #include <linux/stat.h>
  40. #include <linux/sysctl.h>
  41. #include <linux/init.h>
  42. #include <linux/spinlock.h>
  43. #include <net/net_namespace.h>
  44. #include <net/tcp_states.h>
  45. #include <net/ip.h>
  46. #include <net/arp.h>
  47. HLIST_HEAD(ax25_list);
  48. DEFINE_SPINLOCK(ax25_list_lock);
  49. static const struct proto_ops ax25_proto_ops;
  50. static void ax25_free_sock(struct sock *sk)
  51. {
  52. ax25_cb_put(sk_to_ax25(sk));
  53. }
  54. /*
  55. * Socket removal during an interrupt is now safe.
  56. */
  57. static void ax25_cb_del(ax25_cb *ax25)
  58. {
  59. spin_lock_bh(&ax25_list_lock);
  60. if (!hlist_unhashed(&ax25->ax25_node)) {
  61. hlist_del_init(&ax25->ax25_node);
  62. ax25_cb_put(ax25);
  63. }
  64. spin_unlock_bh(&ax25_list_lock);
  65. }
  66. /*
  67. * Kill all bound sockets on a dropped device.
  68. */
  69. static void ax25_kill_by_device(struct net_device *dev)
  70. {
  71. ax25_dev *ax25_dev;
  72. ax25_cb *s;
  73. struct sock *sk;
  74. if ((ax25_dev = ax25_dev_ax25dev(dev)) == NULL)
  75. return;
  76. ax25_dev->device_up = false;
  77. spin_lock_bh(&ax25_list_lock);
  78. again:
  79. ax25_for_each(s, &ax25_list) {
  80. if (s->ax25_dev == ax25_dev) {
  81. sk = s->sk;
  82. if (!sk) {
  83. spin_unlock_bh(&ax25_list_lock);
  84. ax25_disconnect(s, ENETUNREACH);
  85. s->ax25_dev = NULL;
  86. ax25_cb_del(s);
  87. spin_lock_bh(&ax25_list_lock);
  88. goto again;
  89. }
  90. sock_hold(sk);
  91. spin_unlock_bh(&ax25_list_lock);
  92. lock_sock(sk);
  93. ax25_disconnect(s, ENETUNREACH);
  94. s->ax25_dev = NULL;
  95. if (sk->sk_socket) {
  96. netdev_put(ax25_dev->dev,
  97. &ax25_dev->dev_tracker);
  98. ax25_dev_put(ax25_dev);
  99. }
  100. ax25_cb_del(s);
  101. release_sock(sk);
  102. spin_lock_bh(&ax25_list_lock);
  103. sock_put(sk);
  104. /* The entry could have been deleted from the
  105. * list meanwhile and thus the next pointer is
  106. * no longer valid. Play it safe and restart
  107. * the scan. Forward progress is ensured
  108. * because we set s->ax25_dev to NULL and we
  109. * are never passed a NULL 'dev' argument.
  110. */
  111. goto again;
  112. }
  113. }
  114. spin_unlock_bh(&ax25_list_lock);
  115. }
  116. /*
  117. * Handle device status changes.
  118. */
  119. static int ax25_device_event(struct notifier_block *this, unsigned long event,
  120. void *ptr)
  121. {
  122. struct net_device *dev = netdev_notifier_info_to_dev(ptr);
  123. if (!net_eq(dev_net(dev), &init_net))
  124. return NOTIFY_DONE;
  125. /* Reject non AX.25 devices */
  126. if (dev->type != ARPHRD_AX25)
  127. return NOTIFY_DONE;
  128. switch (event) {
  129. case NETDEV_UP:
  130. ax25_dev_device_up(dev);
  131. break;
  132. case NETDEV_DOWN:
  133. ax25_kill_by_device(dev);
  134. ax25_rt_device_down(dev);
  135. ax25_dev_device_down(dev);
  136. break;
  137. default:
  138. break;
  139. }
  140. return NOTIFY_DONE;
  141. }
  142. /*
  143. * Add a socket to the bound sockets list.
  144. */
  145. void ax25_cb_add(ax25_cb *ax25)
  146. {
  147. spin_lock_bh(&ax25_list_lock);
  148. ax25_cb_hold(ax25);
  149. hlist_add_head(&ax25->ax25_node, &ax25_list);
  150. spin_unlock_bh(&ax25_list_lock);
  151. }
  152. /*
  153. * Find a socket that wants to accept the SABM we have just
  154. * received.
  155. */
  156. struct sock *ax25_find_listener(ax25_address *addr, int digi,
  157. struct net_device *dev, int type)
  158. {
  159. ax25_cb *s;
  160. spin_lock(&ax25_list_lock);
  161. ax25_for_each(s, &ax25_list) {
  162. if ((s->iamdigi && !digi) || (!s->iamdigi && digi))
  163. continue;
  164. if (s->sk && !ax25cmp(&s->source_addr, addr) &&
  165. s->sk->sk_type == type && s->sk->sk_state == TCP_LISTEN) {
  166. /* If device is null we match any device */
  167. if (s->ax25_dev == NULL || s->ax25_dev->dev == dev) {
  168. sock_hold(s->sk);
  169. spin_unlock(&ax25_list_lock);
  170. return s->sk;
  171. }
  172. }
  173. }
  174. spin_unlock(&ax25_list_lock);
  175. return NULL;
  176. }
  177. /*
  178. * Find an AX.25 socket given both ends.
  179. */
  180. struct sock *ax25_get_socket(ax25_address *my_addr, ax25_address *dest_addr,
  181. int type)
  182. {
  183. struct sock *sk = NULL;
  184. ax25_cb *s;
  185. spin_lock(&ax25_list_lock);
  186. ax25_for_each(s, &ax25_list) {
  187. if (s->sk && !ax25cmp(&s->source_addr, my_addr) &&
  188. !ax25cmp(&s->dest_addr, dest_addr) &&
  189. s->sk->sk_type == type) {
  190. sk = s->sk;
  191. sock_hold(sk);
  192. break;
  193. }
  194. }
  195. spin_unlock(&ax25_list_lock);
  196. return sk;
  197. }
  198. /*
  199. * Find an AX.25 control block given both ends. It will only pick up
  200. * floating AX.25 control blocks or non Raw socket bound control blocks.
  201. */
  202. ax25_cb *ax25_find_cb(const ax25_address *src_addr, ax25_address *dest_addr,
  203. ax25_digi *digi, struct net_device *dev)
  204. {
  205. ax25_cb *s;
  206. spin_lock_bh(&ax25_list_lock);
  207. ax25_for_each(s, &ax25_list) {
  208. if (s->sk && s->sk->sk_type != SOCK_SEQPACKET)
  209. continue;
  210. if (s->ax25_dev == NULL)
  211. continue;
  212. if (ax25cmp(&s->source_addr, src_addr) == 0 && ax25cmp(&s->dest_addr, dest_addr) == 0 && s->ax25_dev->dev == dev) {
  213. if (digi != NULL && digi->ndigi != 0) {
  214. if (s->digipeat == NULL)
  215. continue;
  216. if (ax25digicmp(s->digipeat, digi) != 0)
  217. continue;
  218. } else {
  219. if (s->digipeat != NULL && s->digipeat->ndigi != 0)
  220. continue;
  221. }
  222. ax25_cb_hold(s);
  223. spin_unlock_bh(&ax25_list_lock);
  224. return s;
  225. }
  226. }
  227. spin_unlock_bh(&ax25_list_lock);
  228. return NULL;
  229. }
  230. EXPORT_SYMBOL(ax25_find_cb);
  231. void ax25_send_to_raw(ax25_address *addr, struct sk_buff *skb, int proto)
  232. {
  233. ax25_cb *s;
  234. struct sk_buff *copy;
  235. spin_lock(&ax25_list_lock);
  236. ax25_for_each(s, &ax25_list) {
  237. if (s->sk != NULL && ax25cmp(&s->source_addr, addr) == 0 &&
  238. s->sk->sk_type == SOCK_RAW &&
  239. s->sk->sk_protocol == proto &&
  240. s->ax25_dev->dev == skb->dev &&
  241. atomic_read(&s->sk->sk_rmem_alloc) <= s->sk->sk_rcvbuf) {
  242. if ((copy = skb_clone(skb, GFP_ATOMIC)) == NULL)
  243. continue;
  244. if (sock_queue_rcv_skb(s->sk, copy) != 0)
  245. kfree_skb(copy);
  246. }
  247. }
  248. spin_unlock(&ax25_list_lock);
  249. }
  250. /*
  251. * Deferred destroy.
  252. */
  253. void ax25_destroy_socket(ax25_cb *);
  254. /*
  255. * Handler for deferred kills.
  256. */
  257. static void ax25_destroy_timer(struct timer_list *t)
  258. {
  259. ax25_cb *ax25 = from_timer(ax25, t, dtimer);
  260. struct sock *sk;
  261. sk=ax25->sk;
  262. bh_lock_sock(sk);
  263. sock_hold(sk);
  264. ax25_destroy_socket(ax25);
  265. bh_unlock_sock(sk);
  266. sock_put(sk);
  267. }
  268. /*
  269. * This is called from user mode and the timers. Thus it protects itself
  270. * against interrupt users but doesn't worry about being called during
  271. * work. Once it is removed from the queue no interrupt or bottom half
  272. * will touch it and we are (fairly 8-) ) safe.
  273. */
  274. void ax25_destroy_socket(ax25_cb *ax25)
  275. {
  276. struct sk_buff *skb;
  277. ax25_cb_del(ax25);
  278. ax25_stop_heartbeat(ax25);
  279. ax25_stop_t1timer(ax25);
  280. ax25_stop_t2timer(ax25);
  281. ax25_stop_t3timer(ax25);
  282. ax25_stop_idletimer(ax25);
  283. ax25_clear_queues(ax25); /* Flush the queues */
  284. if (ax25->sk != NULL) {
  285. while ((skb = skb_dequeue(&ax25->sk->sk_receive_queue)) != NULL) {
  286. if (skb->sk != ax25->sk) {
  287. /* A pending connection */
  288. ax25_cb *sax25 = sk_to_ax25(skb->sk);
  289. /* Queue the unaccepted socket for death */
  290. sock_orphan(skb->sk);
  291. /* 9A4GL: hack to release unaccepted sockets */
  292. skb->sk->sk_state = TCP_LISTEN;
  293. ax25_start_heartbeat(sax25);
  294. sax25->state = AX25_STATE_0;
  295. }
  296. kfree_skb(skb);
  297. }
  298. skb_queue_purge(&ax25->sk->sk_write_queue);
  299. }
  300. if (ax25->sk != NULL) {
  301. if (sk_has_allocations(ax25->sk)) {
  302. /* Defer: outstanding buffers */
  303. timer_setup(&ax25->dtimer, ax25_destroy_timer, 0);
  304. ax25->dtimer.expires = jiffies + 2 * HZ;
  305. add_timer(&ax25->dtimer);
  306. } else {
  307. struct sock *sk=ax25->sk;
  308. ax25->sk=NULL;
  309. sock_put(sk);
  310. }
  311. } else {
  312. ax25_cb_put(ax25);
  313. }
  314. }
  315. /*
  316. * dl1bke 960311: set parameters for existing AX.25 connections,
  317. * includes a KILL command to abort any connection.
  318. * VERY useful for debugging ;-)
  319. */
  320. static int ax25_ctl_ioctl(const unsigned int cmd, void __user *arg)
  321. {
  322. struct ax25_ctl_struct ax25_ctl;
  323. ax25_digi digi;
  324. ax25_dev *ax25_dev;
  325. ax25_cb *ax25;
  326. unsigned int k;
  327. int ret = 0;
  328. if (copy_from_user(&ax25_ctl, arg, sizeof(ax25_ctl)))
  329. return -EFAULT;
  330. if (ax25_ctl.digi_count > AX25_MAX_DIGIS)
  331. return -EINVAL;
  332. if (ax25_ctl.arg > ULONG_MAX / HZ && ax25_ctl.cmd != AX25_KILL)
  333. return -EINVAL;
  334. ax25_dev = ax25_addr_ax25dev(&ax25_ctl.port_addr);
  335. if (!ax25_dev)
  336. return -ENODEV;
  337. digi.ndigi = ax25_ctl.digi_count;
  338. for (k = 0; k < digi.ndigi; k++)
  339. digi.calls[k] = ax25_ctl.digi_addr[k];
  340. ax25 = ax25_find_cb(&ax25_ctl.source_addr, &ax25_ctl.dest_addr, &digi, ax25_dev->dev);
  341. if (!ax25) {
  342. ax25_dev_put(ax25_dev);
  343. return -ENOTCONN;
  344. }
  345. switch (ax25_ctl.cmd) {
  346. case AX25_KILL:
  347. ax25_send_control(ax25, AX25_DISC, AX25_POLLON, AX25_COMMAND);
  348. #ifdef CONFIG_AX25_DAMA_SLAVE
  349. if (ax25_dev->dama.slave && ax25->ax25_dev->values[AX25_VALUES_PROTOCOL] == AX25_PROTO_DAMA_SLAVE)
  350. ax25_dama_off(ax25);
  351. #endif
  352. ax25_disconnect(ax25, ENETRESET);
  353. break;
  354. case AX25_WINDOW:
  355. if (ax25->modulus == AX25_MODULUS) {
  356. if (ax25_ctl.arg < 1 || ax25_ctl.arg > 7)
  357. goto einval_put;
  358. } else {
  359. if (ax25_ctl.arg < 1 || ax25_ctl.arg > 63)
  360. goto einval_put;
  361. }
  362. ax25->window = ax25_ctl.arg;
  363. break;
  364. case AX25_T1:
  365. if (ax25_ctl.arg < 1 || ax25_ctl.arg > ULONG_MAX / HZ)
  366. goto einval_put;
  367. ax25->rtt = (ax25_ctl.arg * HZ) / 2;
  368. ax25->t1 = ax25_ctl.arg * HZ;
  369. break;
  370. case AX25_T2:
  371. if (ax25_ctl.arg < 1 || ax25_ctl.arg > ULONG_MAX / HZ)
  372. goto einval_put;
  373. ax25->t2 = ax25_ctl.arg * HZ;
  374. break;
  375. case AX25_N2:
  376. if (ax25_ctl.arg < 1 || ax25_ctl.arg > 31)
  377. goto einval_put;
  378. ax25->n2count = 0;
  379. ax25->n2 = ax25_ctl.arg;
  380. break;
  381. case AX25_T3:
  382. if (ax25_ctl.arg > ULONG_MAX / HZ)
  383. goto einval_put;
  384. ax25->t3 = ax25_ctl.arg * HZ;
  385. break;
  386. case AX25_IDLE:
  387. if (ax25_ctl.arg > ULONG_MAX / (60 * HZ))
  388. goto einval_put;
  389. ax25->idle = ax25_ctl.arg * 60 * HZ;
  390. break;
  391. case AX25_PACLEN:
  392. if (ax25_ctl.arg < 16 || ax25_ctl.arg > 65535)
  393. goto einval_put;
  394. ax25->paclen = ax25_ctl.arg;
  395. break;
  396. default:
  397. goto einval_put;
  398. }
  399. out_put:
  400. ax25_dev_put(ax25_dev);
  401. ax25_cb_put(ax25);
  402. return ret;
  403. einval_put:
  404. ret = -EINVAL;
  405. goto out_put;
  406. }
  407. static void ax25_fillin_cb_from_dev(ax25_cb *ax25, ax25_dev *ax25_dev)
  408. {
  409. ax25->rtt = msecs_to_jiffies(ax25_dev->values[AX25_VALUES_T1]) / 2;
  410. ax25->t1 = msecs_to_jiffies(ax25_dev->values[AX25_VALUES_T1]);
  411. ax25->t2 = msecs_to_jiffies(ax25_dev->values[AX25_VALUES_T2]);
  412. ax25->t3 = msecs_to_jiffies(ax25_dev->values[AX25_VALUES_T3]);
  413. ax25->n2 = ax25_dev->values[AX25_VALUES_N2];
  414. ax25->paclen = ax25_dev->values[AX25_VALUES_PACLEN];
  415. ax25->idle = msecs_to_jiffies(ax25_dev->values[AX25_VALUES_IDLE]);
  416. ax25->backoff = ax25_dev->values[AX25_VALUES_BACKOFF];
  417. if (ax25_dev->values[AX25_VALUES_AXDEFMODE]) {
  418. ax25->modulus = AX25_EMODULUS;
  419. ax25->window = ax25_dev->values[AX25_VALUES_EWINDOW];
  420. } else {
  421. ax25->modulus = AX25_MODULUS;
  422. ax25->window = ax25_dev->values[AX25_VALUES_WINDOW];
  423. }
  424. }
  425. /*
  426. * Fill in a created AX.25 created control block with the default
  427. * values for a particular device.
  428. */
  429. void ax25_fillin_cb(ax25_cb *ax25, ax25_dev *ax25_dev)
  430. {
  431. ax25->ax25_dev = ax25_dev;
  432. if (ax25->ax25_dev != NULL) {
  433. ax25_fillin_cb_from_dev(ax25, ax25_dev);
  434. return;
  435. }
  436. /*
  437. * No device, use kernel / AX.25 spec default values
  438. */
  439. ax25->rtt = msecs_to_jiffies(AX25_DEF_T1) / 2;
  440. ax25->t1 = msecs_to_jiffies(AX25_DEF_T1);
  441. ax25->t2 = msecs_to_jiffies(AX25_DEF_T2);
  442. ax25->t3 = msecs_to_jiffies(AX25_DEF_T3);
  443. ax25->n2 = AX25_DEF_N2;
  444. ax25->paclen = AX25_DEF_PACLEN;
  445. ax25->idle = msecs_to_jiffies(AX25_DEF_IDLE);
  446. ax25->backoff = AX25_DEF_BACKOFF;
  447. if (AX25_DEF_AXDEFMODE) {
  448. ax25->modulus = AX25_EMODULUS;
  449. ax25->window = AX25_DEF_EWINDOW;
  450. } else {
  451. ax25->modulus = AX25_MODULUS;
  452. ax25->window = AX25_DEF_WINDOW;
  453. }
  454. }
  455. /*
  456. * Create an empty AX.25 control block.
  457. */
  458. ax25_cb *ax25_create_cb(void)
  459. {
  460. ax25_cb *ax25;
  461. if ((ax25 = kzalloc(sizeof(*ax25), GFP_ATOMIC)) == NULL)
  462. return NULL;
  463. refcount_set(&ax25->refcount, 1);
  464. skb_queue_head_init(&ax25->write_queue);
  465. skb_queue_head_init(&ax25->frag_queue);
  466. skb_queue_head_init(&ax25->ack_queue);
  467. skb_queue_head_init(&ax25->reseq_queue);
  468. ax25_setup_timers(ax25);
  469. ax25_fillin_cb(ax25, NULL);
  470. ax25->state = AX25_STATE_0;
  471. return ax25;
  472. }
  473. /*
  474. * Handling for system calls applied via the various interfaces to an
  475. * AX25 socket object
  476. */
  477. static int ax25_setsockopt(struct socket *sock, int level, int optname,
  478. sockptr_t optval, unsigned int optlen)
  479. {
  480. struct sock *sk = sock->sk;
  481. ax25_cb *ax25;
  482. struct net_device *dev;
  483. char devname[IFNAMSIZ];
  484. unsigned int opt;
  485. int res = 0;
  486. if (level != SOL_AX25)
  487. return -ENOPROTOOPT;
  488. if (optlen < sizeof(unsigned int))
  489. return -EINVAL;
  490. if (copy_from_sockptr(&opt, optval, sizeof(unsigned int)))
  491. return -EFAULT;
  492. lock_sock(sk);
  493. ax25 = sk_to_ax25(sk);
  494. switch (optname) {
  495. case AX25_WINDOW:
  496. if (ax25->modulus == AX25_MODULUS) {
  497. if (opt < 1 || opt > 7) {
  498. res = -EINVAL;
  499. break;
  500. }
  501. } else {
  502. if (opt < 1 || opt > 63) {
  503. res = -EINVAL;
  504. break;
  505. }
  506. }
  507. ax25->window = opt;
  508. break;
  509. case AX25_T1:
  510. if (opt < 1 || opt > UINT_MAX / HZ) {
  511. res = -EINVAL;
  512. break;
  513. }
  514. ax25->rtt = (opt * HZ) >> 1;
  515. ax25->t1 = opt * HZ;
  516. break;
  517. case AX25_T2:
  518. if (opt < 1 || opt > UINT_MAX / HZ) {
  519. res = -EINVAL;
  520. break;
  521. }
  522. ax25->t2 = opt * HZ;
  523. break;
  524. case AX25_N2:
  525. if (opt < 1 || opt > 31) {
  526. res = -EINVAL;
  527. break;
  528. }
  529. ax25->n2 = opt;
  530. break;
  531. case AX25_T3:
  532. if (opt < 1 || opt > UINT_MAX / HZ) {
  533. res = -EINVAL;
  534. break;
  535. }
  536. ax25->t3 = opt * HZ;
  537. break;
  538. case AX25_IDLE:
  539. if (opt > UINT_MAX / (60 * HZ)) {
  540. res = -EINVAL;
  541. break;
  542. }
  543. ax25->idle = opt * 60 * HZ;
  544. break;
  545. case AX25_BACKOFF:
  546. if (opt > 2) {
  547. res = -EINVAL;
  548. break;
  549. }
  550. ax25->backoff = opt;
  551. break;
  552. case AX25_EXTSEQ:
  553. ax25->modulus = opt ? AX25_EMODULUS : AX25_MODULUS;
  554. break;
  555. case AX25_PIDINCL:
  556. ax25->pidincl = opt ? 1 : 0;
  557. break;
  558. case AX25_IAMDIGI:
  559. ax25->iamdigi = opt ? 1 : 0;
  560. break;
  561. case AX25_PACLEN:
  562. if (opt < 16 || opt > 65535) {
  563. res = -EINVAL;
  564. break;
  565. }
  566. ax25->paclen = opt;
  567. break;
  568. case SO_BINDTODEVICE:
  569. if (optlen > IFNAMSIZ - 1)
  570. optlen = IFNAMSIZ - 1;
  571. memset(devname, 0, sizeof(devname));
  572. if (copy_from_sockptr(devname, optval, optlen)) {
  573. res = -EFAULT;
  574. break;
  575. }
  576. if (sk->sk_type == SOCK_SEQPACKET &&
  577. (sock->state != SS_UNCONNECTED ||
  578. sk->sk_state == TCP_LISTEN)) {
  579. res = -EADDRNOTAVAIL;
  580. break;
  581. }
  582. rtnl_lock();
  583. dev = __dev_get_by_name(&init_net, devname);
  584. if (!dev) {
  585. rtnl_unlock();
  586. res = -ENODEV;
  587. break;
  588. }
  589. ax25->ax25_dev = ax25_dev_ax25dev(dev);
  590. if (!ax25->ax25_dev) {
  591. rtnl_unlock();
  592. res = -ENODEV;
  593. break;
  594. }
  595. ax25_fillin_cb(ax25, ax25->ax25_dev);
  596. rtnl_unlock();
  597. break;
  598. default:
  599. res = -ENOPROTOOPT;
  600. }
  601. release_sock(sk);
  602. return res;
  603. }
  604. static int ax25_getsockopt(struct socket *sock, int level, int optname,
  605. char __user *optval, int __user *optlen)
  606. {
  607. struct sock *sk = sock->sk;
  608. ax25_cb *ax25;
  609. struct ax25_dev *ax25_dev;
  610. char devname[IFNAMSIZ];
  611. void *valptr;
  612. int val = 0;
  613. int maxlen, length;
  614. if (level != SOL_AX25)
  615. return -ENOPROTOOPT;
  616. if (get_user(maxlen, optlen))
  617. return -EFAULT;
  618. if (maxlen < 1)
  619. return -EFAULT;
  620. valptr = (void *) &val;
  621. length = min_t(unsigned int, maxlen, sizeof(int));
  622. lock_sock(sk);
  623. ax25 = sk_to_ax25(sk);
  624. switch (optname) {
  625. case AX25_WINDOW:
  626. val = ax25->window;
  627. break;
  628. case AX25_T1:
  629. val = ax25->t1 / HZ;
  630. break;
  631. case AX25_T2:
  632. val = ax25->t2 / HZ;
  633. break;
  634. case AX25_N2:
  635. val = ax25->n2;
  636. break;
  637. case AX25_T3:
  638. val = ax25->t3 / HZ;
  639. break;
  640. case AX25_IDLE:
  641. val = ax25->idle / (60 * HZ);
  642. break;
  643. case AX25_BACKOFF:
  644. val = ax25->backoff;
  645. break;
  646. case AX25_EXTSEQ:
  647. val = (ax25->modulus == AX25_EMODULUS);
  648. break;
  649. case AX25_PIDINCL:
  650. val = ax25->pidincl;
  651. break;
  652. case AX25_IAMDIGI:
  653. val = ax25->iamdigi;
  654. break;
  655. case AX25_PACLEN:
  656. val = ax25->paclen;
  657. break;
  658. case SO_BINDTODEVICE:
  659. ax25_dev = ax25->ax25_dev;
  660. if (ax25_dev != NULL && ax25_dev->dev != NULL) {
  661. strscpy(devname, ax25_dev->dev->name, sizeof(devname));
  662. length = strlen(devname) + 1;
  663. } else {
  664. *devname = '\0';
  665. length = 1;
  666. }
  667. valptr = (void *) devname;
  668. break;
  669. default:
  670. release_sock(sk);
  671. return -ENOPROTOOPT;
  672. }
  673. release_sock(sk);
  674. if (put_user(length, optlen))
  675. return -EFAULT;
  676. return copy_to_user(optval, valptr, length) ? -EFAULT : 0;
  677. }
  678. static int ax25_listen(struct socket *sock, int backlog)
  679. {
  680. struct sock *sk = sock->sk;
  681. int res = 0;
  682. lock_sock(sk);
  683. if (sk->sk_type == SOCK_SEQPACKET && sk->sk_state != TCP_LISTEN) {
  684. sk->sk_max_ack_backlog = backlog;
  685. sk->sk_state = TCP_LISTEN;
  686. goto out;
  687. }
  688. res = -EOPNOTSUPP;
  689. out:
  690. release_sock(sk);
  691. return res;
  692. }
  693. /*
  694. * XXX: when creating ax25_sock we should update the .obj_size setting
  695. * below.
  696. */
  697. static struct proto ax25_proto = {
  698. .name = "AX25",
  699. .owner = THIS_MODULE,
  700. .obj_size = sizeof(struct ax25_sock),
  701. };
  702. static int ax25_create(struct net *net, struct socket *sock, int protocol,
  703. int kern)
  704. {
  705. struct sock *sk;
  706. ax25_cb *ax25;
  707. if (protocol < 0 || protocol > U8_MAX)
  708. return -EINVAL;
  709. if (!net_eq(net, &init_net))
  710. return -EAFNOSUPPORT;
  711. switch (sock->type) {
  712. case SOCK_DGRAM:
  713. if (protocol == 0 || protocol == PF_AX25)
  714. protocol = AX25_P_TEXT;
  715. break;
  716. case SOCK_SEQPACKET:
  717. switch (protocol) {
  718. case 0:
  719. case PF_AX25: /* For CLX */
  720. protocol = AX25_P_TEXT;
  721. break;
  722. case AX25_P_SEGMENT:
  723. #ifdef CONFIG_INET
  724. case AX25_P_ARP:
  725. case AX25_P_IP:
  726. #endif
  727. #ifdef CONFIG_NETROM
  728. case AX25_P_NETROM:
  729. #endif
  730. #ifdef CONFIG_ROSE
  731. case AX25_P_ROSE:
  732. #endif
  733. return -ESOCKTNOSUPPORT;
  734. #ifdef CONFIG_NETROM_MODULE
  735. case AX25_P_NETROM:
  736. if (ax25_protocol_is_registered(AX25_P_NETROM))
  737. return -ESOCKTNOSUPPORT;
  738. break;
  739. #endif
  740. #ifdef CONFIG_ROSE_MODULE
  741. case AX25_P_ROSE:
  742. if (ax25_protocol_is_registered(AX25_P_ROSE))
  743. return -ESOCKTNOSUPPORT;
  744. break;
  745. #endif
  746. default:
  747. break;
  748. }
  749. break;
  750. case SOCK_RAW:
  751. if (!capable(CAP_NET_RAW))
  752. return -EPERM;
  753. break;
  754. default:
  755. return -ESOCKTNOSUPPORT;
  756. }
  757. sk = sk_alloc(net, PF_AX25, GFP_ATOMIC, &ax25_proto, kern);
  758. if (sk == NULL)
  759. return -ENOMEM;
  760. ax25 = ax25_sk(sk)->cb = ax25_create_cb();
  761. if (!ax25) {
  762. sk_free(sk);
  763. return -ENOMEM;
  764. }
  765. sock_init_data(sock, sk);
  766. sk->sk_destruct = ax25_free_sock;
  767. sock->ops = &ax25_proto_ops;
  768. sk->sk_protocol = protocol;
  769. ax25->sk = sk;
  770. return 0;
  771. }
  772. struct sock *ax25_make_new(struct sock *osk, struct ax25_dev *ax25_dev)
  773. {
  774. struct sock *sk;
  775. ax25_cb *ax25, *oax25;
  776. sk = sk_alloc(sock_net(osk), PF_AX25, GFP_ATOMIC, osk->sk_prot, 0);
  777. if (sk == NULL)
  778. return NULL;
  779. if ((ax25 = ax25_create_cb()) == NULL) {
  780. sk_free(sk);
  781. return NULL;
  782. }
  783. switch (osk->sk_type) {
  784. case SOCK_DGRAM:
  785. break;
  786. case SOCK_SEQPACKET:
  787. break;
  788. default:
  789. sk_free(sk);
  790. ax25_cb_put(ax25);
  791. return NULL;
  792. }
  793. sock_init_data(NULL, sk);
  794. sk->sk_type = osk->sk_type;
  795. sk->sk_priority = osk->sk_priority;
  796. sk->sk_protocol = osk->sk_protocol;
  797. sk->sk_rcvbuf = osk->sk_rcvbuf;
  798. sk->sk_sndbuf = osk->sk_sndbuf;
  799. sk->sk_state = TCP_ESTABLISHED;
  800. sock_copy_flags(sk, osk);
  801. oax25 = sk_to_ax25(osk);
  802. ax25->modulus = oax25->modulus;
  803. ax25->backoff = oax25->backoff;
  804. ax25->pidincl = oax25->pidincl;
  805. ax25->iamdigi = oax25->iamdigi;
  806. ax25->rtt = oax25->rtt;
  807. ax25->t1 = oax25->t1;
  808. ax25->t2 = oax25->t2;
  809. ax25->t3 = oax25->t3;
  810. ax25->n2 = oax25->n2;
  811. ax25->idle = oax25->idle;
  812. ax25->paclen = oax25->paclen;
  813. ax25->window = oax25->window;
  814. ax25->ax25_dev = ax25_dev;
  815. ax25->source_addr = oax25->source_addr;
  816. if (oax25->digipeat != NULL) {
  817. ax25->digipeat = kmemdup(oax25->digipeat, sizeof(ax25_digi),
  818. GFP_ATOMIC);
  819. if (ax25->digipeat == NULL) {
  820. sk_free(sk);
  821. ax25_cb_put(ax25);
  822. return NULL;
  823. }
  824. }
  825. ax25_sk(sk)->cb = ax25;
  826. sk->sk_destruct = ax25_free_sock;
  827. ax25->sk = sk;
  828. return sk;
  829. }
  830. static int ax25_release(struct socket *sock)
  831. {
  832. struct sock *sk = sock->sk;
  833. ax25_cb *ax25;
  834. ax25_dev *ax25_dev;
  835. if (sk == NULL)
  836. return 0;
  837. sock_hold(sk);
  838. lock_sock(sk);
  839. sock_orphan(sk);
  840. ax25 = sk_to_ax25(sk);
  841. ax25_dev = ax25->ax25_dev;
  842. if (sk->sk_type == SOCK_SEQPACKET) {
  843. switch (ax25->state) {
  844. case AX25_STATE_0:
  845. if (!sock_flag(ax25->sk, SOCK_DEAD)) {
  846. release_sock(sk);
  847. ax25_disconnect(ax25, 0);
  848. lock_sock(sk);
  849. }
  850. ax25_destroy_socket(ax25);
  851. break;
  852. case AX25_STATE_1:
  853. case AX25_STATE_2:
  854. ax25_send_control(ax25, AX25_DISC, AX25_POLLON, AX25_COMMAND);
  855. release_sock(sk);
  856. ax25_disconnect(ax25, 0);
  857. lock_sock(sk);
  858. if (!sock_flag(ax25->sk, SOCK_DESTROY))
  859. ax25_destroy_socket(ax25);
  860. break;
  861. case AX25_STATE_3:
  862. case AX25_STATE_4:
  863. ax25_clear_queues(ax25);
  864. ax25->n2count = 0;
  865. switch (ax25->ax25_dev->values[AX25_VALUES_PROTOCOL]) {
  866. case AX25_PROTO_STD_SIMPLEX:
  867. case AX25_PROTO_STD_DUPLEX:
  868. ax25_send_control(ax25,
  869. AX25_DISC,
  870. AX25_POLLON,
  871. AX25_COMMAND);
  872. ax25_stop_t2timer(ax25);
  873. ax25_stop_t3timer(ax25);
  874. ax25_stop_idletimer(ax25);
  875. break;
  876. #ifdef CONFIG_AX25_DAMA_SLAVE
  877. case AX25_PROTO_DAMA_SLAVE:
  878. ax25_stop_t3timer(ax25);
  879. ax25_stop_idletimer(ax25);
  880. break;
  881. #endif
  882. }
  883. ax25_calculate_t1(ax25);
  884. ax25_start_t1timer(ax25);
  885. ax25->state = AX25_STATE_2;
  886. sk->sk_state = TCP_CLOSE;
  887. sk->sk_shutdown |= SEND_SHUTDOWN;
  888. sk->sk_state_change(sk);
  889. sock_set_flag(sk, SOCK_DESTROY);
  890. break;
  891. default:
  892. break;
  893. }
  894. } else {
  895. sk->sk_state = TCP_CLOSE;
  896. sk->sk_shutdown |= SEND_SHUTDOWN;
  897. sk->sk_state_change(sk);
  898. ax25_destroy_socket(ax25);
  899. }
  900. if (ax25_dev) {
  901. if (!ax25_dev->device_up) {
  902. del_timer_sync(&ax25->timer);
  903. del_timer_sync(&ax25->t1timer);
  904. del_timer_sync(&ax25->t2timer);
  905. del_timer_sync(&ax25->t3timer);
  906. del_timer_sync(&ax25->idletimer);
  907. }
  908. netdev_put(ax25_dev->dev, &ax25->dev_tracker);
  909. ax25_dev_put(ax25_dev);
  910. }
  911. sock->sk = NULL;
  912. release_sock(sk);
  913. sock_put(sk);
  914. return 0;
  915. }
  916. /*
  917. * We support a funny extension here so you can (as root) give any callsign
  918. * digipeated via a local address as source. This hack is obsolete now
  919. * that we've implemented support for SO_BINDTODEVICE. It is however small
  920. * and trivially backward compatible.
  921. */
  922. static int ax25_bind(struct socket *sock, struct sockaddr *uaddr, int addr_len)
  923. {
  924. struct sock *sk = sock->sk;
  925. struct full_sockaddr_ax25 *addr = (struct full_sockaddr_ax25 *)uaddr;
  926. ax25_dev *ax25_dev = NULL;
  927. ax25_uid_assoc *user;
  928. ax25_address call;
  929. ax25_cb *ax25;
  930. int err = 0;
  931. if (addr_len != sizeof(struct sockaddr_ax25) &&
  932. addr_len != sizeof(struct full_sockaddr_ax25))
  933. /* support for old structure may go away some time
  934. * ax25_bind(): uses old (6 digipeater) socket structure.
  935. */
  936. if ((addr_len < sizeof(struct sockaddr_ax25) + sizeof(ax25_address) * 6) ||
  937. (addr_len > sizeof(struct full_sockaddr_ax25)))
  938. return -EINVAL;
  939. if (addr->fsa_ax25.sax25_family != AF_AX25)
  940. return -EINVAL;
  941. user = ax25_findbyuid(current_euid());
  942. if (user) {
  943. call = user->call;
  944. ax25_uid_put(user);
  945. } else {
  946. if (ax25_uid_policy && !capable(CAP_NET_ADMIN))
  947. return -EACCES;
  948. call = addr->fsa_ax25.sax25_call;
  949. }
  950. lock_sock(sk);
  951. ax25 = sk_to_ax25(sk);
  952. if (!sock_flag(sk, SOCK_ZAPPED)) {
  953. err = -EINVAL;
  954. goto out;
  955. }
  956. ax25->source_addr = call;
  957. /*
  958. * User already set interface with SO_BINDTODEVICE
  959. */
  960. if (ax25->ax25_dev != NULL)
  961. goto done;
  962. if (addr_len > sizeof(struct sockaddr_ax25) && addr->fsa_ax25.sax25_ndigis == 1) {
  963. if (ax25cmp(&addr->fsa_digipeater[0], &null_ax25_address) != 0 &&
  964. (ax25_dev = ax25_addr_ax25dev(&addr->fsa_digipeater[0])) == NULL) {
  965. err = -EADDRNOTAVAIL;
  966. goto out;
  967. }
  968. } else {
  969. if ((ax25_dev = ax25_addr_ax25dev(&addr->fsa_ax25.sax25_call)) == NULL) {
  970. err = -EADDRNOTAVAIL;
  971. goto out;
  972. }
  973. }
  974. if (ax25_dev) {
  975. ax25_fillin_cb(ax25, ax25_dev);
  976. netdev_hold(ax25_dev->dev, &ax25->dev_tracker, GFP_ATOMIC);
  977. }
  978. done:
  979. ax25_cb_add(ax25);
  980. sock_reset_flag(sk, SOCK_ZAPPED);
  981. out:
  982. release_sock(sk);
  983. return err;
  984. }
  985. /*
  986. * FIXME: nonblock behaviour looks like it may have a bug.
  987. */
  988. static int __must_check ax25_connect(struct socket *sock,
  989. struct sockaddr *uaddr, int addr_len, int flags)
  990. {
  991. struct sock *sk = sock->sk;
  992. ax25_cb *ax25 = sk_to_ax25(sk), *ax25t;
  993. struct full_sockaddr_ax25 *fsa = (struct full_sockaddr_ax25 *)uaddr;
  994. ax25_digi *digi = NULL;
  995. int ct = 0, err = 0;
  996. /*
  997. * some sanity checks. code further down depends on this
  998. */
  999. if (addr_len == sizeof(struct sockaddr_ax25))
  1000. /* support for this will go away in early 2.5.x
  1001. * ax25_connect(): uses obsolete socket structure
  1002. */
  1003. ;
  1004. else if (addr_len != sizeof(struct full_sockaddr_ax25))
  1005. /* support for old structure may go away some time
  1006. * ax25_connect(): uses old (6 digipeater) socket structure.
  1007. */
  1008. if ((addr_len < sizeof(struct sockaddr_ax25) + sizeof(ax25_address) * 6) ||
  1009. (addr_len > sizeof(struct full_sockaddr_ax25)))
  1010. return -EINVAL;
  1011. if (fsa->fsa_ax25.sax25_family != AF_AX25)
  1012. return -EINVAL;
  1013. lock_sock(sk);
  1014. /* deal with restarts */
  1015. if (sock->state == SS_CONNECTING) {
  1016. switch (sk->sk_state) {
  1017. case TCP_SYN_SENT: /* still trying */
  1018. err = -EINPROGRESS;
  1019. goto out_release;
  1020. case TCP_ESTABLISHED: /* connection established */
  1021. sock->state = SS_CONNECTED;
  1022. goto out_release;
  1023. case TCP_CLOSE: /* connection refused */
  1024. sock->state = SS_UNCONNECTED;
  1025. err = -ECONNREFUSED;
  1026. goto out_release;
  1027. }
  1028. }
  1029. if (sk->sk_state == TCP_ESTABLISHED && sk->sk_type == SOCK_SEQPACKET) {
  1030. err = -EISCONN; /* No reconnect on a seqpacket socket */
  1031. goto out_release;
  1032. }
  1033. sk->sk_state = TCP_CLOSE;
  1034. sock->state = SS_UNCONNECTED;
  1035. kfree(ax25->digipeat);
  1036. ax25->digipeat = NULL;
  1037. /*
  1038. * Handle digi-peaters to be used.
  1039. */
  1040. if (addr_len > sizeof(struct sockaddr_ax25) &&
  1041. fsa->fsa_ax25.sax25_ndigis != 0) {
  1042. /* Valid number of digipeaters ? */
  1043. if (fsa->fsa_ax25.sax25_ndigis < 1 ||
  1044. fsa->fsa_ax25.sax25_ndigis > AX25_MAX_DIGIS ||
  1045. addr_len < sizeof(struct sockaddr_ax25) +
  1046. sizeof(ax25_address) * fsa->fsa_ax25.sax25_ndigis) {
  1047. err = -EINVAL;
  1048. goto out_release;
  1049. }
  1050. if ((digi = kmalloc(sizeof(ax25_digi), GFP_KERNEL)) == NULL) {
  1051. err = -ENOBUFS;
  1052. goto out_release;
  1053. }
  1054. digi->ndigi = fsa->fsa_ax25.sax25_ndigis;
  1055. digi->lastrepeat = -1;
  1056. while (ct < fsa->fsa_ax25.sax25_ndigis) {
  1057. if ((fsa->fsa_digipeater[ct].ax25_call[6] &
  1058. AX25_HBIT) && ax25->iamdigi) {
  1059. digi->repeated[ct] = 1;
  1060. digi->lastrepeat = ct;
  1061. } else {
  1062. digi->repeated[ct] = 0;
  1063. }
  1064. digi->calls[ct] = fsa->fsa_digipeater[ct];
  1065. ct++;
  1066. }
  1067. }
  1068. /*
  1069. * Must bind first - autobinding in this may or may not work. If
  1070. * the socket is already bound, check to see if the device has
  1071. * been filled in, error if it hasn't.
  1072. */
  1073. if (sock_flag(sk, SOCK_ZAPPED)) {
  1074. /* check if we can remove this feature. It is broken. */
  1075. printk(KERN_WARNING "ax25_connect(): %s uses autobind, please contact [email protected]\n",
  1076. current->comm);
  1077. if ((err = ax25_rt_autobind(ax25, &fsa->fsa_ax25.sax25_call)) < 0) {
  1078. kfree(digi);
  1079. goto out_release;
  1080. }
  1081. ax25_fillin_cb(ax25, ax25->ax25_dev);
  1082. ax25_cb_add(ax25);
  1083. } else {
  1084. if (ax25->ax25_dev == NULL) {
  1085. kfree(digi);
  1086. err = -EHOSTUNREACH;
  1087. goto out_release;
  1088. }
  1089. }
  1090. if (sk->sk_type == SOCK_SEQPACKET &&
  1091. (ax25t=ax25_find_cb(&ax25->source_addr, &fsa->fsa_ax25.sax25_call, digi,
  1092. ax25->ax25_dev->dev))) {
  1093. kfree(digi);
  1094. err = -EADDRINUSE; /* Already such a connection */
  1095. ax25_cb_put(ax25t);
  1096. goto out_release;
  1097. }
  1098. ax25->dest_addr = fsa->fsa_ax25.sax25_call;
  1099. ax25->digipeat = digi;
  1100. /* First the easy one */
  1101. if (sk->sk_type != SOCK_SEQPACKET) {
  1102. sock->state = SS_CONNECTED;
  1103. sk->sk_state = TCP_ESTABLISHED;
  1104. goto out_release;
  1105. }
  1106. /* Move to connecting socket, ax.25 lapb WAIT_UA.. */
  1107. sock->state = SS_CONNECTING;
  1108. sk->sk_state = TCP_SYN_SENT;
  1109. switch (ax25->ax25_dev->values[AX25_VALUES_PROTOCOL]) {
  1110. case AX25_PROTO_STD_SIMPLEX:
  1111. case AX25_PROTO_STD_DUPLEX:
  1112. ax25_std_establish_data_link(ax25);
  1113. break;
  1114. #ifdef CONFIG_AX25_DAMA_SLAVE
  1115. case AX25_PROTO_DAMA_SLAVE:
  1116. ax25->modulus = AX25_MODULUS;
  1117. ax25->window = ax25->ax25_dev->values[AX25_VALUES_WINDOW];
  1118. if (ax25->ax25_dev->dama.slave)
  1119. ax25_ds_establish_data_link(ax25);
  1120. else
  1121. ax25_std_establish_data_link(ax25);
  1122. break;
  1123. #endif
  1124. }
  1125. ax25->state = AX25_STATE_1;
  1126. ax25_start_heartbeat(ax25);
  1127. /* Now the loop */
  1128. if (sk->sk_state != TCP_ESTABLISHED && (flags & O_NONBLOCK)) {
  1129. err = -EINPROGRESS;
  1130. goto out_release;
  1131. }
  1132. if (sk->sk_state == TCP_SYN_SENT) {
  1133. DEFINE_WAIT(wait);
  1134. for (;;) {
  1135. prepare_to_wait(sk_sleep(sk), &wait,
  1136. TASK_INTERRUPTIBLE);
  1137. if (sk->sk_state != TCP_SYN_SENT)
  1138. break;
  1139. if (!signal_pending(current)) {
  1140. release_sock(sk);
  1141. schedule();
  1142. lock_sock(sk);
  1143. continue;
  1144. }
  1145. err = -ERESTARTSYS;
  1146. break;
  1147. }
  1148. finish_wait(sk_sleep(sk), &wait);
  1149. if (err)
  1150. goto out_release;
  1151. }
  1152. if (sk->sk_state != TCP_ESTABLISHED) {
  1153. /* Not in ABM, not in WAIT_UA -> failed */
  1154. sock->state = SS_UNCONNECTED;
  1155. err = sock_error(sk); /* Always set at this point */
  1156. goto out_release;
  1157. }
  1158. sock->state = SS_CONNECTED;
  1159. err = 0;
  1160. out_release:
  1161. release_sock(sk);
  1162. return err;
  1163. }
  1164. static int ax25_accept(struct socket *sock, struct socket *newsock, int flags,
  1165. bool kern)
  1166. {
  1167. struct sk_buff *skb;
  1168. struct sock *newsk;
  1169. DEFINE_WAIT(wait);
  1170. struct sock *sk;
  1171. int err = 0;
  1172. if (sock->state != SS_UNCONNECTED)
  1173. return -EINVAL;
  1174. if ((sk = sock->sk) == NULL)
  1175. return -EINVAL;
  1176. lock_sock(sk);
  1177. if (sk->sk_type != SOCK_SEQPACKET) {
  1178. err = -EOPNOTSUPP;
  1179. goto out;
  1180. }
  1181. if (sk->sk_state != TCP_LISTEN) {
  1182. err = -EINVAL;
  1183. goto out;
  1184. }
  1185. /*
  1186. * The read queue this time is holding sockets ready to use
  1187. * hooked into the SABM we saved
  1188. */
  1189. for (;;) {
  1190. prepare_to_wait(sk_sleep(sk), &wait, TASK_INTERRUPTIBLE);
  1191. skb = skb_dequeue(&sk->sk_receive_queue);
  1192. if (skb)
  1193. break;
  1194. if (flags & O_NONBLOCK) {
  1195. err = -EWOULDBLOCK;
  1196. break;
  1197. }
  1198. if (!signal_pending(current)) {
  1199. release_sock(sk);
  1200. schedule();
  1201. lock_sock(sk);
  1202. continue;
  1203. }
  1204. err = -ERESTARTSYS;
  1205. break;
  1206. }
  1207. finish_wait(sk_sleep(sk), &wait);
  1208. if (err)
  1209. goto out;
  1210. newsk = skb->sk;
  1211. sock_graft(newsk, newsock);
  1212. /* Now attach up the new socket */
  1213. kfree_skb(skb);
  1214. sk_acceptq_removed(sk);
  1215. newsock->state = SS_CONNECTED;
  1216. out:
  1217. release_sock(sk);
  1218. return err;
  1219. }
  1220. static int ax25_getname(struct socket *sock, struct sockaddr *uaddr,
  1221. int peer)
  1222. {
  1223. struct full_sockaddr_ax25 *fsa = (struct full_sockaddr_ax25 *)uaddr;
  1224. struct sock *sk = sock->sk;
  1225. unsigned char ndigi, i;
  1226. ax25_cb *ax25;
  1227. int err = 0;
  1228. memset(fsa, 0, sizeof(*fsa));
  1229. lock_sock(sk);
  1230. ax25 = sk_to_ax25(sk);
  1231. if (peer != 0) {
  1232. if (sk->sk_state != TCP_ESTABLISHED) {
  1233. err = -ENOTCONN;
  1234. goto out;
  1235. }
  1236. fsa->fsa_ax25.sax25_family = AF_AX25;
  1237. fsa->fsa_ax25.sax25_call = ax25->dest_addr;
  1238. if (ax25->digipeat != NULL) {
  1239. ndigi = ax25->digipeat->ndigi;
  1240. fsa->fsa_ax25.sax25_ndigis = ndigi;
  1241. for (i = 0; i < ndigi; i++)
  1242. fsa->fsa_digipeater[i] =
  1243. ax25->digipeat->calls[i];
  1244. }
  1245. } else {
  1246. fsa->fsa_ax25.sax25_family = AF_AX25;
  1247. fsa->fsa_ax25.sax25_call = ax25->source_addr;
  1248. fsa->fsa_ax25.sax25_ndigis = 1;
  1249. if (ax25->ax25_dev != NULL) {
  1250. memcpy(&fsa->fsa_digipeater[0],
  1251. ax25->ax25_dev->dev->dev_addr, AX25_ADDR_LEN);
  1252. } else {
  1253. fsa->fsa_digipeater[0] = null_ax25_address;
  1254. }
  1255. }
  1256. err = sizeof (struct full_sockaddr_ax25);
  1257. out:
  1258. release_sock(sk);
  1259. return err;
  1260. }
  1261. static int ax25_sendmsg(struct socket *sock, struct msghdr *msg, size_t len)
  1262. {
  1263. DECLARE_SOCKADDR(struct sockaddr_ax25 *, usax, msg->msg_name);
  1264. struct sock *sk = sock->sk;
  1265. struct sockaddr_ax25 sax;
  1266. struct sk_buff *skb;
  1267. ax25_digi dtmp, *dp;
  1268. ax25_cb *ax25;
  1269. size_t size;
  1270. int lv, err, addr_len = msg->msg_namelen;
  1271. if (msg->msg_flags & ~(MSG_DONTWAIT|MSG_EOR|MSG_CMSG_COMPAT))
  1272. return -EINVAL;
  1273. lock_sock(sk);
  1274. ax25 = sk_to_ax25(sk);
  1275. if (sock_flag(sk, SOCK_ZAPPED)) {
  1276. err = -EADDRNOTAVAIL;
  1277. goto out;
  1278. }
  1279. if (sk->sk_shutdown & SEND_SHUTDOWN) {
  1280. send_sig(SIGPIPE, current, 0);
  1281. err = -EPIPE;
  1282. goto out;
  1283. }
  1284. if (ax25->ax25_dev == NULL) {
  1285. err = -ENETUNREACH;
  1286. goto out;
  1287. }
  1288. if (len > ax25->ax25_dev->dev->mtu) {
  1289. err = -EMSGSIZE;
  1290. goto out;
  1291. }
  1292. if (usax != NULL) {
  1293. if (usax->sax25_family != AF_AX25) {
  1294. err = -EINVAL;
  1295. goto out;
  1296. }
  1297. if (addr_len == sizeof(struct sockaddr_ax25))
  1298. /* ax25_sendmsg(): uses obsolete socket structure */
  1299. ;
  1300. else if (addr_len != sizeof(struct full_sockaddr_ax25))
  1301. /* support for old structure may go away some time
  1302. * ax25_sendmsg(): uses old (6 digipeater)
  1303. * socket structure.
  1304. */
  1305. if ((addr_len < sizeof(struct sockaddr_ax25) + sizeof(ax25_address) * 6) ||
  1306. (addr_len > sizeof(struct full_sockaddr_ax25))) {
  1307. err = -EINVAL;
  1308. goto out;
  1309. }
  1310. if (addr_len > sizeof(struct sockaddr_ax25) && usax->sax25_ndigis != 0) {
  1311. int ct = 0;
  1312. struct full_sockaddr_ax25 *fsa = (struct full_sockaddr_ax25 *)usax;
  1313. /* Valid number of digipeaters ? */
  1314. if (usax->sax25_ndigis < 1 ||
  1315. usax->sax25_ndigis > AX25_MAX_DIGIS ||
  1316. addr_len < sizeof(struct sockaddr_ax25) +
  1317. sizeof(ax25_address) * usax->sax25_ndigis) {
  1318. err = -EINVAL;
  1319. goto out;
  1320. }
  1321. dtmp.ndigi = usax->sax25_ndigis;
  1322. while (ct < usax->sax25_ndigis) {
  1323. dtmp.repeated[ct] = 0;
  1324. dtmp.calls[ct] = fsa->fsa_digipeater[ct];
  1325. ct++;
  1326. }
  1327. dtmp.lastrepeat = 0;
  1328. }
  1329. sax = *usax;
  1330. if (sk->sk_type == SOCK_SEQPACKET &&
  1331. ax25cmp(&ax25->dest_addr, &sax.sax25_call)) {
  1332. err = -EISCONN;
  1333. goto out;
  1334. }
  1335. if (usax->sax25_ndigis == 0)
  1336. dp = NULL;
  1337. else
  1338. dp = &dtmp;
  1339. } else {
  1340. /*
  1341. * FIXME: 1003.1g - if the socket is like this because
  1342. * it has become closed (not started closed) and is VC
  1343. * we ought to SIGPIPE, EPIPE
  1344. */
  1345. if (sk->sk_state != TCP_ESTABLISHED) {
  1346. err = -ENOTCONN;
  1347. goto out;
  1348. }
  1349. sax.sax25_family = AF_AX25;
  1350. sax.sax25_call = ax25->dest_addr;
  1351. dp = ax25->digipeat;
  1352. }
  1353. /* Build a packet */
  1354. /* Assume the worst case */
  1355. size = len + ax25->ax25_dev->dev->hard_header_len;
  1356. skb = sock_alloc_send_skb(sk, size, msg->msg_flags&MSG_DONTWAIT, &err);
  1357. if (skb == NULL)
  1358. goto out;
  1359. skb_reserve(skb, size - len);
  1360. /* User data follows immediately after the AX.25 data */
  1361. if (memcpy_from_msg(skb_put(skb, len), msg, len)) {
  1362. err = -EFAULT;
  1363. kfree_skb(skb);
  1364. goto out;
  1365. }
  1366. skb_reset_network_header(skb);
  1367. /* Add the PID if one is not supplied by the user in the skb */
  1368. if (!ax25->pidincl)
  1369. *(u8 *)skb_push(skb, 1) = sk->sk_protocol;
  1370. if (sk->sk_type == SOCK_SEQPACKET) {
  1371. /* Connected mode sockets go via the LAPB machine */
  1372. if (sk->sk_state != TCP_ESTABLISHED) {
  1373. kfree_skb(skb);
  1374. err = -ENOTCONN;
  1375. goto out;
  1376. }
  1377. /* Shove it onto the queue and kick */
  1378. ax25_output(ax25, ax25->paclen, skb);
  1379. err = len;
  1380. goto out;
  1381. }
  1382. skb_push(skb, 1 + ax25_addr_size(dp));
  1383. /* Building AX.25 Header */
  1384. /* Build an AX.25 header */
  1385. lv = ax25_addr_build(skb->data, &ax25->source_addr, &sax.sax25_call,
  1386. dp, AX25_COMMAND, AX25_MODULUS);
  1387. skb_set_transport_header(skb, lv);
  1388. *skb_transport_header(skb) = AX25_UI;
  1389. /* Datagram frames go straight out of the door as UI */
  1390. ax25_queue_xmit(skb, ax25->ax25_dev->dev);
  1391. err = len;
  1392. out:
  1393. release_sock(sk);
  1394. return err;
  1395. }
  1396. static int ax25_recvmsg(struct socket *sock, struct msghdr *msg, size_t size,
  1397. int flags)
  1398. {
  1399. struct sock *sk = sock->sk;
  1400. struct sk_buff *skb, *last;
  1401. struct sk_buff_head *sk_queue;
  1402. int copied;
  1403. int err = 0;
  1404. int off = 0;
  1405. long timeo;
  1406. lock_sock(sk);
  1407. /*
  1408. * This works for seqpacket too. The receiver has ordered the
  1409. * queue for us! We do one quick check first though
  1410. */
  1411. if (sk->sk_type == SOCK_SEQPACKET && sk->sk_state != TCP_ESTABLISHED) {
  1412. err = -ENOTCONN;
  1413. goto out;
  1414. }
  1415. /* We need support for non-blocking reads. */
  1416. sk_queue = &sk->sk_receive_queue;
  1417. skb = __skb_try_recv_datagram(sk, sk_queue, flags, &off, &err, &last);
  1418. /* If no packet is available, release_sock(sk) and try again. */
  1419. if (!skb) {
  1420. if (err != -EAGAIN)
  1421. goto out;
  1422. release_sock(sk);
  1423. timeo = sock_rcvtimeo(sk, flags & MSG_DONTWAIT);
  1424. while (timeo && !__skb_wait_for_more_packets(sk, sk_queue, &err,
  1425. &timeo, last)) {
  1426. skb = __skb_try_recv_datagram(sk, sk_queue, flags, &off,
  1427. &err, &last);
  1428. if (skb)
  1429. break;
  1430. if (err != -EAGAIN)
  1431. goto done;
  1432. }
  1433. if (!skb)
  1434. goto done;
  1435. lock_sock(sk);
  1436. }
  1437. if (!sk_to_ax25(sk)->pidincl)
  1438. skb_pull(skb, 1); /* Remove PID */
  1439. skb_reset_transport_header(skb);
  1440. copied = skb->len;
  1441. if (copied > size) {
  1442. copied = size;
  1443. msg->msg_flags |= MSG_TRUNC;
  1444. }
  1445. skb_copy_datagram_msg(skb, 0, msg, copied);
  1446. if (msg->msg_name) {
  1447. ax25_digi digi;
  1448. ax25_address src;
  1449. const unsigned char *mac = skb_mac_header(skb);
  1450. DECLARE_SOCKADDR(struct sockaddr_ax25 *, sax, msg->msg_name);
  1451. memset(sax, 0, sizeof(struct full_sockaddr_ax25));
  1452. ax25_addr_parse(mac + 1, skb->data - mac - 1, &src, NULL,
  1453. &digi, NULL, NULL);
  1454. sax->sax25_family = AF_AX25;
  1455. /* We set this correctly, even though we may not let the
  1456. application know the digi calls further down (because it
  1457. did NOT ask to know them). This could get political... **/
  1458. sax->sax25_ndigis = digi.ndigi;
  1459. sax->sax25_call = src;
  1460. if (sax->sax25_ndigis != 0) {
  1461. int ct;
  1462. struct full_sockaddr_ax25 *fsa = (struct full_sockaddr_ax25 *)sax;
  1463. for (ct = 0; ct < digi.ndigi; ct++)
  1464. fsa->fsa_digipeater[ct] = digi.calls[ct];
  1465. }
  1466. msg->msg_namelen = sizeof(struct full_sockaddr_ax25);
  1467. }
  1468. skb_free_datagram(sk, skb);
  1469. err = copied;
  1470. out:
  1471. release_sock(sk);
  1472. done:
  1473. return err;
  1474. }
  1475. static int ax25_shutdown(struct socket *sk, int how)
  1476. {
  1477. /* FIXME - generate DM and RNR states */
  1478. return -EOPNOTSUPP;
  1479. }
  1480. static int ax25_ioctl(struct socket *sock, unsigned int cmd, unsigned long arg)
  1481. {
  1482. struct sock *sk = sock->sk;
  1483. void __user *argp = (void __user *)arg;
  1484. int res = 0;
  1485. lock_sock(sk);
  1486. switch (cmd) {
  1487. case TIOCOUTQ: {
  1488. long amount;
  1489. amount = sk->sk_sndbuf - sk_wmem_alloc_get(sk);
  1490. if (amount < 0)
  1491. amount = 0;
  1492. res = put_user(amount, (int __user *)argp);
  1493. break;
  1494. }
  1495. case TIOCINQ: {
  1496. struct sk_buff *skb;
  1497. long amount = 0L;
  1498. /* These two are safe on a single CPU system as only user tasks fiddle here */
  1499. if ((skb = skb_peek(&sk->sk_receive_queue)) != NULL)
  1500. amount = skb->len;
  1501. res = put_user(amount, (int __user *) argp);
  1502. break;
  1503. }
  1504. case SIOCAX25ADDUID: /* Add a uid to the uid/call map table */
  1505. case SIOCAX25DELUID: /* Delete a uid from the uid/call map table */
  1506. case SIOCAX25GETUID: {
  1507. struct sockaddr_ax25 sax25;
  1508. if (copy_from_user(&sax25, argp, sizeof(sax25))) {
  1509. res = -EFAULT;
  1510. break;
  1511. }
  1512. res = ax25_uid_ioctl(cmd, &sax25);
  1513. break;
  1514. }
  1515. case SIOCAX25NOUID: { /* Set the default policy (default/bar) */
  1516. long amount;
  1517. if (!capable(CAP_NET_ADMIN)) {
  1518. res = -EPERM;
  1519. break;
  1520. }
  1521. if (get_user(amount, (long __user *)argp)) {
  1522. res = -EFAULT;
  1523. break;
  1524. }
  1525. if (amount < 0 || amount > AX25_NOUID_BLOCK) {
  1526. res = -EINVAL;
  1527. break;
  1528. }
  1529. ax25_uid_policy = amount;
  1530. res = 0;
  1531. break;
  1532. }
  1533. case SIOCADDRT:
  1534. case SIOCDELRT:
  1535. case SIOCAX25OPTRT:
  1536. if (!capable(CAP_NET_ADMIN)) {
  1537. res = -EPERM;
  1538. break;
  1539. }
  1540. res = ax25_rt_ioctl(cmd, argp);
  1541. break;
  1542. case SIOCAX25CTLCON:
  1543. if (!capable(CAP_NET_ADMIN)) {
  1544. res = -EPERM;
  1545. break;
  1546. }
  1547. res = ax25_ctl_ioctl(cmd, argp);
  1548. break;
  1549. case SIOCAX25GETINFO:
  1550. case SIOCAX25GETINFOOLD: {
  1551. ax25_cb *ax25 = sk_to_ax25(sk);
  1552. struct ax25_info_struct ax25_info;
  1553. ax25_info.t1 = ax25->t1 / HZ;
  1554. ax25_info.t2 = ax25->t2 / HZ;
  1555. ax25_info.t3 = ax25->t3 / HZ;
  1556. ax25_info.idle = ax25->idle / (60 * HZ);
  1557. ax25_info.n2 = ax25->n2;
  1558. ax25_info.t1timer = ax25_display_timer(&ax25->t1timer) / HZ;
  1559. ax25_info.t2timer = ax25_display_timer(&ax25->t2timer) / HZ;
  1560. ax25_info.t3timer = ax25_display_timer(&ax25->t3timer) / HZ;
  1561. ax25_info.idletimer = ax25_display_timer(&ax25->idletimer) / (60 * HZ);
  1562. ax25_info.n2count = ax25->n2count;
  1563. ax25_info.state = ax25->state;
  1564. ax25_info.rcv_q = sk_rmem_alloc_get(sk);
  1565. ax25_info.snd_q = sk_wmem_alloc_get(sk);
  1566. ax25_info.vs = ax25->vs;
  1567. ax25_info.vr = ax25->vr;
  1568. ax25_info.va = ax25->va;
  1569. ax25_info.vs_max = ax25->vs; /* reserved */
  1570. ax25_info.paclen = ax25->paclen;
  1571. ax25_info.window = ax25->window;
  1572. /* old structure? */
  1573. if (cmd == SIOCAX25GETINFOOLD) {
  1574. static int warned = 0;
  1575. if (!warned) {
  1576. printk(KERN_INFO "%s uses old SIOCAX25GETINFO\n",
  1577. current->comm);
  1578. warned=1;
  1579. }
  1580. if (copy_to_user(argp, &ax25_info, sizeof(struct ax25_info_struct_deprecated))) {
  1581. res = -EFAULT;
  1582. break;
  1583. }
  1584. } else {
  1585. if (copy_to_user(argp, &ax25_info, sizeof(struct ax25_info_struct))) {
  1586. res = -EINVAL;
  1587. break;
  1588. }
  1589. }
  1590. res = 0;
  1591. break;
  1592. }
  1593. case SIOCAX25ADDFWD:
  1594. case SIOCAX25DELFWD: {
  1595. struct ax25_fwd_struct ax25_fwd;
  1596. if (!capable(CAP_NET_ADMIN)) {
  1597. res = -EPERM;
  1598. break;
  1599. }
  1600. if (copy_from_user(&ax25_fwd, argp, sizeof(ax25_fwd))) {
  1601. res = -EFAULT;
  1602. break;
  1603. }
  1604. res = ax25_fwd_ioctl(cmd, &ax25_fwd);
  1605. break;
  1606. }
  1607. case SIOCGIFADDR:
  1608. case SIOCSIFADDR:
  1609. case SIOCGIFDSTADDR:
  1610. case SIOCSIFDSTADDR:
  1611. case SIOCGIFBRDADDR:
  1612. case SIOCSIFBRDADDR:
  1613. case SIOCGIFNETMASK:
  1614. case SIOCSIFNETMASK:
  1615. case SIOCGIFMETRIC:
  1616. case SIOCSIFMETRIC:
  1617. res = -EINVAL;
  1618. break;
  1619. default:
  1620. res = -ENOIOCTLCMD;
  1621. break;
  1622. }
  1623. release_sock(sk);
  1624. return res;
  1625. }
  1626. #ifdef CONFIG_PROC_FS
  1627. static void *ax25_info_start(struct seq_file *seq, loff_t *pos)
  1628. __acquires(ax25_list_lock)
  1629. {
  1630. spin_lock_bh(&ax25_list_lock);
  1631. return seq_hlist_start(&ax25_list, *pos);
  1632. }
  1633. static void *ax25_info_next(struct seq_file *seq, void *v, loff_t *pos)
  1634. {
  1635. return seq_hlist_next(v, &ax25_list, pos);
  1636. }
  1637. static void ax25_info_stop(struct seq_file *seq, void *v)
  1638. __releases(ax25_list_lock)
  1639. {
  1640. spin_unlock_bh(&ax25_list_lock);
  1641. }
  1642. static int ax25_info_show(struct seq_file *seq, void *v)
  1643. {
  1644. ax25_cb *ax25 = hlist_entry(v, struct ax25_cb, ax25_node);
  1645. char buf[11];
  1646. int k;
  1647. /*
  1648. * New format:
  1649. * magic dev src_addr dest_addr,digi1,digi2,.. st vs vr va t1 t1 t2 t2 t3 t3 idle idle n2 n2 rtt window paclen Snd-Q Rcv-Q inode
  1650. */
  1651. seq_printf(seq, "%p %s %s%s ",
  1652. ax25,
  1653. ax25->ax25_dev == NULL? "???" : ax25->ax25_dev->dev->name,
  1654. ax2asc(buf, &ax25->source_addr),
  1655. ax25->iamdigi? "*":"");
  1656. seq_printf(seq, "%s", ax2asc(buf, &ax25->dest_addr));
  1657. for (k=0; (ax25->digipeat != NULL) && (k < ax25->digipeat->ndigi); k++) {
  1658. seq_printf(seq, ",%s%s",
  1659. ax2asc(buf, &ax25->digipeat->calls[k]),
  1660. ax25->digipeat->repeated[k]? "*":"");
  1661. }
  1662. seq_printf(seq, " %d %d %d %d %lu %lu %lu %lu %lu %lu %lu %lu %d %d %lu %d %d",
  1663. ax25->state,
  1664. ax25->vs, ax25->vr, ax25->va,
  1665. ax25_display_timer(&ax25->t1timer) / HZ, ax25->t1 / HZ,
  1666. ax25_display_timer(&ax25->t2timer) / HZ, ax25->t2 / HZ,
  1667. ax25_display_timer(&ax25->t3timer) / HZ, ax25->t3 / HZ,
  1668. ax25_display_timer(&ax25->idletimer) / (60 * HZ),
  1669. ax25->idle / (60 * HZ),
  1670. ax25->n2count, ax25->n2,
  1671. ax25->rtt / HZ,
  1672. ax25->window,
  1673. ax25->paclen);
  1674. if (ax25->sk != NULL) {
  1675. seq_printf(seq, " %d %d %lu\n",
  1676. sk_wmem_alloc_get(ax25->sk),
  1677. sk_rmem_alloc_get(ax25->sk),
  1678. sock_i_ino(ax25->sk));
  1679. } else {
  1680. seq_puts(seq, " * * *\n");
  1681. }
  1682. return 0;
  1683. }
  1684. static const struct seq_operations ax25_info_seqops = {
  1685. .start = ax25_info_start,
  1686. .next = ax25_info_next,
  1687. .stop = ax25_info_stop,
  1688. .show = ax25_info_show,
  1689. };
  1690. #endif
  1691. static const struct net_proto_family ax25_family_ops = {
  1692. .family = PF_AX25,
  1693. .create = ax25_create,
  1694. .owner = THIS_MODULE,
  1695. };
  1696. static const struct proto_ops ax25_proto_ops = {
  1697. .family = PF_AX25,
  1698. .owner = THIS_MODULE,
  1699. .release = ax25_release,
  1700. .bind = ax25_bind,
  1701. .connect = ax25_connect,
  1702. .socketpair = sock_no_socketpair,
  1703. .accept = ax25_accept,
  1704. .getname = ax25_getname,
  1705. .poll = datagram_poll,
  1706. .ioctl = ax25_ioctl,
  1707. .gettstamp = sock_gettstamp,
  1708. .listen = ax25_listen,
  1709. .shutdown = ax25_shutdown,
  1710. .setsockopt = ax25_setsockopt,
  1711. .getsockopt = ax25_getsockopt,
  1712. .sendmsg = ax25_sendmsg,
  1713. .recvmsg = ax25_recvmsg,
  1714. .mmap = sock_no_mmap,
  1715. .sendpage = sock_no_sendpage,
  1716. };
  1717. /*
  1718. * Called by socket.c on kernel start up
  1719. */
  1720. static struct packet_type ax25_packet_type __read_mostly = {
  1721. .type = cpu_to_be16(ETH_P_AX25),
  1722. .func = ax25_kiss_rcv,
  1723. };
  1724. static struct notifier_block ax25_dev_notifier = {
  1725. .notifier_call = ax25_device_event,
  1726. };
  1727. static int __init ax25_init(void)
  1728. {
  1729. int rc = proto_register(&ax25_proto, 0);
  1730. if (rc != 0)
  1731. goto out;
  1732. sock_register(&ax25_family_ops);
  1733. dev_add_pack(&ax25_packet_type);
  1734. register_netdevice_notifier(&ax25_dev_notifier);
  1735. proc_create_seq("ax25_route", 0444, init_net.proc_net, &ax25_rt_seqops);
  1736. proc_create_seq("ax25", 0444, init_net.proc_net, &ax25_info_seqops);
  1737. proc_create_seq("ax25_calls", 0444, init_net.proc_net,
  1738. &ax25_uid_seqops);
  1739. out:
  1740. return rc;
  1741. }
  1742. module_init(ax25_init);
  1743. MODULE_AUTHOR("Jonathan Naylor G4KLX <[email protected]>");
  1744. MODULE_DESCRIPTION("The amateur radio AX.25 link layer protocol");
  1745. MODULE_LICENSE("GPL");
  1746. MODULE_ALIAS_NETPROTO(PF_AX25);
  1747. static void __exit ax25_exit(void)
  1748. {
  1749. remove_proc_entry("ax25_route", init_net.proc_net);
  1750. remove_proc_entry("ax25", init_net.proc_net);
  1751. remove_proc_entry("ax25_calls", init_net.proc_net);
  1752. unregister_netdevice_notifier(&ax25_dev_notifier);
  1753. dev_remove_pack(&ax25_packet_type);
  1754. sock_unregister(PF_AX25);
  1755. proto_unregister(&ax25_proto);
  1756. ax25_rt_free();
  1757. ax25_uid_free();
  1758. ax25_dev_free();
  1759. }
  1760. module_exit(ax25_exit);