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/net/x25/af_x25.c

https://github.com/Mengqi/linux-2.6
C | 1825 lines | 1392 code | 259 blank | 174 comment | 264 complexity | 86dc913e21daaf90eda1c34e4a94cfcb MD5 | raw file
  1. /*
  2. * X.25 Packet Layer release 002
  3. *
  4. * This is ALPHA test software. This code may break your machine,
  5. * randomly fail to work with new releases, misbehave and/or generally
  6. * screw up. It might even work.
  7. *
  8. * This code REQUIRES 2.1.15 or higher
  9. *
  10. * This module:
  11. * This module is free software; you can redistribute it and/or
  12. * modify it under the terms of the GNU General Public License
  13. * as published by the Free Software Foundation; either version
  14. * 2 of the License, or (at your option) any later version.
  15. *
  16. * History
  17. * X.25 001 Jonathan Naylor Started coding.
  18. * X.25 002 Jonathan Naylor Centralised disconnect handling.
  19. * New timer architecture.
  20. * 2000-03-11 Henner Eisen MSG_EOR handling more POSIX compliant.
  21. * 2000-03-22 Daniela Squassoni Allowed disabling/enabling of
  22. * facilities negotiation and increased
  23. * the throughput upper limit.
  24. * 2000-08-27 Arnaldo C. Melo s/suser/capable/ + micro cleanups
  25. * 2000-09-04 Henner Eisen Set sock->state in x25_accept().
  26. * Fixed x25_output() related skb leakage.
  27. * 2000-10-02 Henner Eisen Made x25_kick() single threaded per socket.
  28. * 2000-10-27 Henner Eisen MSG_DONTWAIT for fragment allocation.
  29. * 2000-11-14 Henner Eisen Closing datalink from NETDEV_GOING_DOWN
  30. * 2002-10-06 Arnaldo C. Melo Get rid of cli/sti, move proc stuff to
  31. * x25_proc.c, using seq_file
  32. * 2005-04-02 Shaun Pereira Selective sub address matching
  33. * with call user data
  34. * 2005-04-15 Shaun Pereira Fast select with no restriction on
  35. * response
  36. */
  37. #include <linux/module.h>
  38. #include <linux/capability.h>
  39. #include <linux/errno.h>
  40. #include <linux/kernel.h>
  41. #include <linux/sched.h>
  42. #include <linux/timer.h>
  43. #include <linux/string.h>
  44. #include <linux/net.h>
  45. #include <linux/netdevice.h>
  46. #include <linux/if_arp.h>
  47. #include <linux/skbuff.h>
  48. #include <linux/slab.h>
  49. #include <net/sock.h>
  50. #include <net/tcp_states.h>
  51. #include <asm/uaccess.h>
  52. #include <linux/fcntl.h>
  53. #include <linux/termios.h> /* For TIOCINQ/OUTQ */
  54. #include <linux/notifier.h>
  55. #include <linux/init.h>
  56. #include <linux/compat.h>
  57. #include <linux/ctype.h>
  58. #include <net/x25.h>
  59. #include <net/compat.h>
  60. int sysctl_x25_restart_request_timeout = X25_DEFAULT_T20;
  61. int sysctl_x25_call_request_timeout = X25_DEFAULT_T21;
  62. int sysctl_x25_reset_request_timeout = X25_DEFAULT_T22;
  63. int sysctl_x25_clear_request_timeout = X25_DEFAULT_T23;
  64. int sysctl_x25_ack_holdback_timeout = X25_DEFAULT_T2;
  65. int sysctl_x25_forward = 0;
  66. HLIST_HEAD(x25_list);
  67. DEFINE_RWLOCK(x25_list_lock);
  68. static const struct proto_ops x25_proto_ops;
  69. static struct x25_address null_x25_address = {" "};
  70. #ifdef CONFIG_COMPAT
  71. struct compat_x25_subscrip_struct {
  72. char device[200-sizeof(compat_ulong_t)];
  73. compat_ulong_t global_facil_mask;
  74. compat_uint_t extended;
  75. };
  76. #endif
  77. int x25_parse_address_block(struct sk_buff *skb,
  78. struct x25_address *called_addr,
  79. struct x25_address *calling_addr)
  80. {
  81. unsigned char len;
  82. int needed;
  83. int rc;
  84. if (skb->len < 1) {
  85. /* packet has no address block */
  86. rc = 0;
  87. goto empty;
  88. }
  89. len = *skb->data;
  90. needed = 1 + (len >> 4) + (len & 0x0f);
  91. if (skb->len < needed) {
  92. /* packet is too short to hold the addresses it claims
  93. to hold */
  94. rc = -1;
  95. goto empty;
  96. }
  97. return x25_addr_ntoa(skb->data, called_addr, calling_addr);
  98. empty:
  99. *called_addr->x25_addr = 0;
  100. *calling_addr->x25_addr = 0;
  101. return rc;
  102. }
  103. int x25_addr_ntoa(unsigned char *p, struct x25_address *called_addr,
  104. struct x25_address *calling_addr)
  105. {
  106. unsigned int called_len, calling_len;
  107. char *called, *calling;
  108. unsigned int i;
  109. called_len = (*p >> 0) & 0x0F;
  110. calling_len = (*p >> 4) & 0x0F;
  111. called = called_addr->x25_addr;
  112. calling = calling_addr->x25_addr;
  113. p++;
  114. for (i = 0; i < (called_len + calling_len); i++) {
  115. if (i < called_len) {
  116. if (i % 2 != 0) {
  117. *called++ = ((*p >> 0) & 0x0F) + '0';
  118. p++;
  119. } else {
  120. *called++ = ((*p >> 4) & 0x0F) + '0';
  121. }
  122. } else {
  123. if (i % 2 != 0) {
  124. *calling++ = ((*p >> 0) & 0x0F) + '0';
  125. p++;
  126. } else {
  127. *calling++ = ((*p >> 4) & 0x0F) + '0';
  128. }
  129. }
  130. }
  131. *called = *calling = '\0';
  132. return 1 + (called_len + calling_len + 1) / 2;
  133. }
  134. int x25_addr_aton(unsigned char *p, struct x25_address *called_addr,
  135. struct x25_address *calling_addr)
  136. {
  137. unsigned int called_len, calling_len;
  138. char *called, *calling;
  139. int i;
  140. called = called_addr->x25_addr;
  141. calling = calling_addr->x25_addr;
  142. called_len = strlen(called);
  143. calling_len = strlen(calling);
  144. *p++ = (calling_len << 4) | (called_len << 0);
  145. for (i = 0; i < (called_len + calling_len); i++) {
  146. if (i < called_len) {
  147. if (i % 2 != 0) {
  148. *p |= (*called++ - '0') << 0;
  149. p++;
  150. } else {
  151. *p = 0x00;
  152. *p |= (*called++ - '0') << 4;
  153. }
  154. } else {
  155. if (i % 2 != 0) {
  156. *p |= (*calling++ - '0') << 0;
  157. p++;
  158. } else {
  159. *p = 0x00;
  160. *p |= (*calling++ - '0') << 4;
  161. }
  162. }
  163. }
  164. return 1 + (called_len + calling_len + 1) / 2;
  165. }
  166. /*
  167. * Socket removal during an interrupt is now safe.
  168. */
  169. static void x25_remove_socket(struct sock *sk)
  170. {
  171. write_lock_bh(&x25_list_lock);
  172. sk_del_node_init(sk);
  173. write_unlock_bh(&x25_list_lock);
  174. }
  175. /*
  176. * Kill all bound sockets on a dropped device.
  177. */
  178. static void x25_kill_by_device(struct net_device *dev)
  179. {
  180. struct sock *s;
  181. struct hlist_node *node;
  182. write_lock_bh(&x25_list_lock);
  183. sk_for_each(s, node, &x25_list)
  184. if (x25_sk(s)->neighbour && x25_sk(s)->neighbour->dev == dev)
  185. x25_disconnect(s, ENETUNREACH, 0, 0);
  186. write_unlock_bh(&x25_list_lock);
  187. }
  188. /*
  189. * Handle device status changes.
  190. */
  191. static int x25_device_event(struct notifier_block *this, unsigned long event,
  192. void *ptr)
  193. {
  194. struct net_device *dev = ptr;
  195. struct x25_neigh *nb;
  196. if (!net_eq(dev_net(dev), &init_net))
  197. return NOTIFY_DONE;
  198. if (dev->type == ARPHRD_X25
  199. #if defined(CONFIG_LLC) || defined(CONFIG_LLC_MODULE)
  200. || dev->type == ARPHRD_ETHER
  201. #endif
  202. ) {
  203. switch (event) {
  204. case NETDEV_UP:
  205. x25_link_device_up(dev);
  206. break;
  207. case NETDEV_GOING_DOWN:
  208. nb = x25_get_neigh(dev);
  209. if (nb) {
  210. x25_terminate_link(nb);
  211. x25_neigh_put(nb);
  212. }
  213. break;
  214. case NETDEV_DOWN:
  215. x25_kill_by_device(dev);
  216. x25_route_device_down(dev);
  217. x25_link_device_down(dev);
  218. break;
  219. }
  220. }
  221. return NOTIFY_DONE;
  222. }
  223. /*
  224. * Add a socket to the bound sockets list.
  225. */
  226. static void x25_insert_socket(struct sock *sk)
  227. {
  228. write_lock_bh(&x25_list_lock);
  229. sk_add_node(sk, &x25_list);
  230. write_unlock_bh(&x25_list_lock);
  231. }
  232. /*
  233. * Find a socket that wants to accept the Call Request we just
  234. * received. Check the full list for an address/cud match.
  235. * If no cuds match return the next_best thing, an address match.
  236. * Note: if a listening socket has cud set it must only get calls
  237. * with matching cud.
  238. */
  239. static struct sock *x25_find_listener(struct x25_address *addr,
  240. struct sk_buff *skb)
  241. {
  242. struct sock *s;
  243. struct sock *next_best;
  244. struct hlist_node *node;
  245. read_lock_bh(&x25_list_lock);
  246. next_best = NULL;
  247. sk_for_each(s, node, &x25_list)
  248. if ((!strcmp(addr->x25_addr,
  249. x25_sk(s)->source_addr.x25_addr) ||
  250. !strcmp(addr->x25_addr,
  251. null_x25_address.x25_addr)) &&
  252. s->sk_state == TCP_LISTEN) {
  253. /*
  254. * Found a listening socket, now check the incoming
  255. * call user data vs this sockets call user data
  256. */
  257. if(skb->len > 0 && x25_sk(s)->cudmatchlength > 0) {
  258. if((memcmp(x25_sk(s)->calluserdata.cuddata,
  259. skb->data,
  260. x25_sk(s)->cudmatchlength)) == 0) {
  261. sock_hold(s);
  262. goto found;
  263. }
  264. } else
  265. next_best = s;
  266. }
  267. if (next_best) {
  268. s = next_best;
  269. sock_hold(s);
  270. goto found;
  271. }
  272. s = NULL;
  273. found:
  274. read_unlock_bh(&x25_list_lock);
  275. return s;
  276. }
  277. /*
  278. * Find a connected X.25 socket given my LCI and neighbour.
  279. */
  280. static struct sock *__x25_find_socket(unsigned int lci, struct x25_neigh *nb)
  281. {
  282. struct sock *s;
  283. struct hlist_node *node;
  284. sk_for_each(s, node, &x25_list)
  285. if (x25_sk(s)->lci == lci && x25_sk(s)->neighbour == nb) {
  286. sock_hold(s);
  287. goto found;
  288. }
  289. s = NULL;
  290. found:
  291. return s;
  292. }
  293. struct sock *x25_find_socket(unsigned int lci, struct x25_neigh *nb)
  294. {
  295. struct sock *s;
  296. read_lock_bh(&x25_list_lock);
  297. s = __x25_find_socket(lci, nb);
  298. read_unlock_bh(&x25_list_lock);
  299. return s;
  300. }
  301. /*
  302. * Find a unique LCI for a given device.
  303. */
  304. static unsigned int x25_new_lci(struct x25_neigh *nb)
  305. {
  306. unsigned int lci = 1;
  307. struct sock *sk;
  308. read_lock_bh(&x25_list_lock);
  309. while ((sk = __x25_find_socket(lci, nb)) != NULL) {
  310. sock_put(sk);
  311. if (++lci == 4096) {
  312. lci = 0;
  313. break;
  314. }
  315. }
  316. read_unlock_bh(&x25_list_lock);
  317. return lci;
  318. }
  319. /*
  320. * Deferred destroy.
  321. */
  322. static void __x25_destroy_socket(struct sock *);
  323. /*
  324. * handler for deferred kills.
  325. */
  326. static void x25_destroy_timer(unsigned long data)
  327. {
  328. x25_destroy_socket_from_timer((struct sock *)data);
  329. }
  330. /*
  331. * This is called from user mode and the timers. Thus it protects itself
  332. * against interrupt users but doesn't worry about being called during
  333. * work. Once it is removed from the queue no interrupt or bottom half
  334. * will touch it and we are (fairly 8-) ) safe.
  335. * Not static as it's used by the timer
  336. */
  337. static void __x25_destroy_socket(struct sock *sk)
  338. {
  339. struct sk_buff *skb;
  340. x25_stop_heartbeat(sk);
  341. x25_stop_timer(sk);
  342. x25_remove_socket(sk);
  343. x25_clear_queues(sk); /* Flush the queues */
  344. while ((skb = skb_dequeue(&sk->sk_receive_queue)) != NULL) {
  345. if (skb->sk != sk) { /* A pending connection */
  346. /*
  347. * Queue the unaccepted socket for death
  348. */
  349. skb->sk->sk_state = TCP_LISTEN;
  350. sock_set_flag(skb->sk, SOCK_DEAD);
  351. x25_start_heartbeat(skb->sk);
  352. x25_sk(skb->sk)->state = X25_STATE_0;
  353. }
  354. kfree_skb(skb);
  355. }
  356. if (sk_has_allocations(sk)) {
  357. /* Defer: outstanding buffers */
  358. sk->sk_timer.expires = jiffies + 10 * HZ;
  359. sk->sk_timer.function = x25_destroy_timer;
  360. sk->sk_timer.data = (unsigned long)sk;
  361. add_timer(&sk->sk_timer);
  362. } else {
  363. /* drop last reference so sock_put will free */
  364. __sock_put(sk);
  365. }
  366. }
  367. void x25_destroy_socket_from_timer(struct sock *sk)
  368. {
  369. sock_hold(sk);
  370. bh_lock_sock(sk);
  371. __x25_destroy_socket(sk);
  372. bh_unlock_sock(sk);
  373. sock_put(sk);
  374. }
  375. /*
  376. * Handling for system calls applied via the various interfaces to a
  377. * X.25 socket object.
  378. */
  379. static int x25_setsockopt(struct socket *sock, int level, int optname,
  380. char __user *optval, unsigned int optlen)
  381. {
  382. int opt;
  383. struct sock *sk = sock->sk;
  384. int rc = -ENOPROTOOPT;
  385. if (level != SOL_X25 || optname != X25_QBITINCL)
  386. goto out;
  387. rc = -EINVAL;
  388. if (optlen < sizeof(int))
  389. goto out;
  390. rc = -EFAULT;
  391. if (get_user(opt, (int __user *)optval))
  392. goto out;
  393. if (opt)
  394. set_bit(X25_Q_BIT_FLAG, &x25_sk(sk)->flags);
  395. else
  396. clear_bit(X25_Q_BIT_FLAG, &x25_sk(sk)->flags);
  397. rc = 0;
  398. out:
  399. return rc;
  400. }
  401. static int x25_getsockopt(struct socket *sock, int level, int optname,
  402. char __user *optval, int __user *optlen)
  403. {
  404. struct sock *sk = sock->sk;
  405. int val, len, rc = -ENOPROTOOPT;
  406. if (level != SOL_X25 || optname != X25_QBITINCL)
  407. goto out;
  408. rc = -EFAULT;
  409. if (get_user(len, optlen))
  410. goto out;
  411. len = min_t(unsigned int, len, sizeof(int));
  412. rc = -EINVAL;
  413. if (len < 0)
  414. goto out;
  415. rc = -EFAULT;
  416. if (put_user(len, optlen))
  417. goto out;
  418. val = test_bit(X25_Q_BIT_FLAG, &x25_sk(sk)->flags);
  419. rc = copy_to_user(optval, &val, len) ? -EFAULT : 0;
  420. out:
  421. return rc;
  422. }
  423. static int x25_listen(struct socket *sock, int backlog)
  424. {
  425. struct sock *sk = sock->sk;
  426. int rc = -EOPNOTSUPP;
  427. lock_sock(sk);
  428. if (sk->sk_state != TCP_LISTEN) {
  429. memset(&x25_sk(sk)->dest_addr, 0, X25_ADDR_LEN);
  430. sk->sk_max_ack_backlog = backlog;
  431. sk->sk_state = TCP_LISTEN;
  432. rc = 0;
  433. }
  434. release_sock(sk);
  435. return rc;
  436. }
  437. static struct proto x25_proto = {
  438. .name = "X25",
  439. .owner = THIS_MODULE,
  440. .obj_size = sizeof(struct x25_sock),
  441. };
  442. static struct sock *x25_alloc_socket(struct net *net)
  443. {
  444. struct x25_sock *x25;
  445. struct sock *sk = sk_alloc(net, AF_X25, GFP_ATOMIC, &x25_proto);
  446. if (!sk)
  447. goto out;
  448. sock_init_data(NULL, sk);
  449. x25 = x25_sk(sk);
  450. skb_queue_head_init(&x25->ack_queue);
  451. skb_queue_head_init(&x25->fragment_queue);
  452. skb_queue_head_init(&x25->interrupt_in_queue);
  453. skb_queue_head_init(&x25->interrupt_out_queue);
  454. out:
  455. return sk;
  456. }
  457. static int x25_create(struct net *net, struct socket *sock, int protocol,
  458. int kern)
  459. {
  460. struct sock *sk;
  461. struct x25_sock *x25;
  462. int rc = -EAFNOSUPPORT;
  463. if (!net_eq(net, &init_net))
  464. goto out;
  465. rc = -ESOCKTNOSUPPORT;
  466. if (sock->type != SOCK_SEQPACKET)
  467. goto out;
  468. rc = -EINVAL;
  469. if (protocol)
  470. goto out;
  471. rc = -ENOBUFS;
  472. if ((sk = x25_alloc_socket(net)) == NULL)
  473. goto out;
  474. x25 = x25_sk(sk);
  475. sock_init_data(sock, sk);
  476. x25_init_timers(sk);
  477. sock->ops = &x25_proto_ops;
  478. sk->sk_protocol = protocol;
  479. sk->sk_backlog_rcv = x25_backlog_rcv;
  480. x25->t21 = sysctl_x25_call_request_timeout;
  481. x25->t22 = sysctl_x25_reset_request_timeout;
  482. x25->t23 = sysctl_x25_clear_request_timeout;
  483. x25->t2 = sysctl_x25_ack_holdback_timeout;
  484. x25->state = X25_STATE_0;
  485. x25->cudmatchlength = 0;
  486. set_bit(X25_ACCPT_APPRV_FLAG, &x25->flags); /* normally no cud */
  487. /* on call accept */
  488. x25->facilities.winsize_in = X25_DEFAULT_WINDOW_SIZE;
  489. x25->facilities.winsize_out = X25_DEFAULT_WINDOW_SIZE;
  490. x25->facilities.pacsize_in = X25_DEFAULT_PACKET_SIZE;
  491. x25->facilities.pacsize_out = X25_DEFAULT_PACKET_SIZE;
  492. x25->facilities.throughput = 0; /* by default don't negotiate
  493. throughput */
  494. x25->facilities.reverse = X25_DEFAULT_REVERSE;
  495. x25->dte_facilities.calling_len = 0;
  496. x25->dte_facilities.called_len = 0;
  497. memset(x25->dte_facilities.called_ae, '\0',
  498. sizeof(x25->dte_facilities.called_ae));
  499. memset(x25->dte_facilities.calling_ae, '\0',
  500. sizeof(x25->dte_facilities.calling_ae));
  501. rc = 0;
  502. out:
  503. return rc;
  504. }
  505. static struct sock *x25_make_new(struct sock *osk)
  506. {
  507. struct sock *sk = NULL;
  508. struct x25_sock *x25, *ox25;
  509. if (osk->sk_type != SOCK_SEQPACKET)
  510. goto out;
  511. if ((sk = x25_alloc_socket(sock_net(osk))) == NULL)
  512. goto out;
  513. x25 = x25_sk(sk);
  514. sk->sk_type = osk->sk_type;
  515. sk->sk_priority = osk->sk_priority;
  516. sk->sk_protocol = osk->sk_protocol;
  517. sk->sk_rcvbuf = osk->sk_rcvbuf;
  518. sk->sk_sndbuf = osk->sk_sndbuf;
  519. sk->sk_state = TCP_ESTABLISHED;
  520. sk->sk_backlog_rcv = osk->sk_backlog_rcv;
  521. sock_copy_flags(sk, osk);
  522. ox25 = x25_sk(osk);
  523. x25->t21 = ox25->t21;
  524. x25->t22 = ox25->t22;
  525. x25->t23 = ox25->t23;
  526. x25->t2 = ox25->t2;
  527. x25->flags = ox25->flags;
  528. x25->facilities = ox25->facilities;
  529. x25->dte_facilities = ox25->dte_facilities;
  530. x25->cudmatchlength = ox25->cudmatchlength;
  531. clear_bit(X25_INTERRUPT_FLAG, &x25->flags);
  532. x25_init_timers(sk);
  533. out:
  534. return sk;
  535. }
  536. static int x25_release(struct socket *sock)
  537. {
  538. struct sock *sk = sock->sk;
  539. struct x25_sock *x25;
  540. if (!sk)
  541. return 0;
  542. x25 = x25_sk(sk);
  543. sock_hold(sk);
  544. lock_sock(sk);
  545. switch (x25->state) {
  546. case X25_STATE_0:
  547. case X25_STATE_2:
  548. x25_disconnect(sk, 0, 0, 0);
  549. __x25_destroy_socket(sk);
  550. goto out;
  551. case X25_STATE_1:
  552. case X25_STATE_3:
  553. case X25_STATE_4:
  554. x25_clear_queues(sk);
  555. x25_write_internal(sk, X25_CLEAR_REQUEST);
  556. x25_start_t23timer(sk);
  557. x25->state = X25_STATE_2;
  558. sk->sk_state = TCP_CLOSE;
  559. sk->sk_shutdown |= SEND_SHUTDOWN;
  560. sk->sk_state_change(sk);
  561. sock_set_flag(sk, SOCK_DEAD);
  562. sock_set_flag(sk, SOCK_DESTROY);
  563. break;
  564. }
  565. sock_orphan(sk);
  566. out:
  567. release_sock(sk);
  568. sock_put(sk);
  569. return 0;
  570. }
  571. static int x25_bind(struct socket *sock, struct sockaddr *uaddr, int addr_len)
  572. {
  573. struct sock *sk = sock->sk;
  574. struct sockaddr_x25 *addr = (struct sockaddr_x25 *)uaddr;
  575. int len, i, rc = 0;
  576. if (!sock_flag(sk, SOCK_ZAPPED) ||
  577. addr_len != sizeof(struct sockaddr_x25) ||
  578. addr->sx25_family != AF_X25) {
  579. rc = -EINVAL;
  580. goto out;
  581. }
  582. len = strlen(addr->sx25_addr.x25_addr);
  583. for (i = 0; i < len; i++) {
  584. if (!isdigit(addr->sx25_addr.x25_addr[i])) {
  585. rc = -EINVAL;
  586. goto out;
  587. }
  588. }
  589. lock_sock(sk);
  590. x25_sk(sk)->source_addr = addr->sx25_addr;
  591. x25_insert_socket(sk);
  592. sock_reset_flag(sk, SOCK_ZAPPED);
  593. release_sock(sk);
  594. SOCK_DEBUG(sk, "x25_bind: socket is bound\n");
  595. out:
  596. return rc;
  597. }
  598. static int x25_wait_for_connection_establishment(struct sock *sk)
  599. {
  600. DECLARE_WAITQUEUE(wait, current);
  601. int rc;
  602. add_wait_queue_exclusive(sk_sleep(sk), &wait);
  603. for (;;) {
  604. __set_current_state(TASK_INTERRUPTIBLE);
  605. rc = -ERESTARTSYS;
  606. if (signal_pending(current))
  607. break;
  608. rc = sock_error(sk);
  609. if (rc) {
  610. sk->sk_socket->state = SS_UNCONNECTED;
  611. break;
  612. }
  613. rc = 0;
  614. if (sk->sk_state != TCP_ESTABLISHED) {
  615. release_sock(sk);
  616. schedule();
  617. lock_sock(sk);
  618. } else
  619. break;
  620. }
  621. __set_current_state(TASK_RUNNING);
  622. remove_wait_queue(sk_sleep(sk), &wait);
  623. return rc;
  624. }
  625. static int x25_connect(struct socket *sock, struct sockaddr *uaddr,
  626. int addr_len, int flags)
  627. {
  628. struct sock *sk = sock->sk;
  629. struct x25_sock *x25 = x25_sk(sk);
  630. struct sockaddr_x25 *addr = (struct sockaddr_x25 *)uaddr;
  631. struct x25_route *rt;
  632. int rc = 0;
  633. lock_sock(sk);
  634. if (sk->sk_state == TCP_ESTABLISHED && sock->state == SS_CONNECTING) {
  635. sock->state = SS_CONNECTED;
  636. goto out; /* Connect completed during a ERESTARTSYS event */
  637. }
  638. rc = -ECONNREFUSED;
  639. if (sk->sk_state == TCP_CLOSE && sock->state == SS_CONNECTING) {
  640. sock->state = SS_UNCONNECTED;
  641. goto out;
  642. }
  643. rc = -EISCONN; /* No reconnect on a seqpacket socket */
  644. if (sk->sk_state == TCP_ESTABLISHED)
  645. goto out;
  646. sk->sk_state = TCP_CLOSE;
  647. sock->state = SS_UNCONNECTED;
  648. rc = -EINVAL;
  649. if (addr_len != sizeof(struct sockaddr_x25) ||
  650. addr->sx25_family != AF_X25)
  651. goto out;
  652. rc = -ENETUNREACH;
  653. rt = x25_get_route(&addr->sx25_addr);
  654. if (!rt)
  655. goto out;
  656. x25->neighbour = x25_get_neigh(rt->dev);
  657. if (!x25->neighbour)
  658. goto out_put_route;
  659. x25_limit_facilities(&x25->facilities, x25->neighbour);
  660. x25->lci = x25_new_lci(x25->neighbour);
  661. if (!x25->lci)
  662. goto out_put_neigh;
  663. rc = -EINVAL;
  664. if (sock_flag(sk, SOCK_ZAPPED)) /* Must bind first - autobinding does not work */
  665. goto out_put_neigh;
  666. if (!strcmp(x25->source_addr.x25_addr, null_x25_address.x25_addr))
  667. memset(&x25->source_addr, '\0', X25_ADDR_LEN);
  668. x25->dest_addr = addr->sx25_addr;
  669. /* Move to connecting socket, start sending Connect Requests */
  670. sock->state = SS_CONNECTING;
  671. sk->sk_state = TCP_SYN_SENT;
  672. x25->state = X25_STATE_1;
  673. x25_write_internal(sk, X25_CALL_REQUEST);
  674. x25_start_heartbeat(sk);
  675. x25_start_t21timer(sk);
  676. /* Now the loop */
  677. rc = -EINPROGRESS;
  678. if (sk->sk_state != TCP_ESTABLISHED && (flags & O_NONBLOCK))
  679. goto out_put_neigh;
  680. rc = x25_wait_for_connection_establishment(sk);
  681. if (rc)
  682. goto out_put_neigh;
  683. sock->state = SS_CONNECTED;
  684. rc = 0;
  685. out_put_neigh:
  686. if (rc)
  687. x25_neigh_put(x25->neighbour);
  688. out_put_route:
  689. x25_route_put(rt);
  690. out:
  691. release_sock(sk);
  692. return rc;
  693. }
  694. static int x25_wait_for_data(struct sock *sk, long timeout)
  695. {
  696. DECLARE_WAITQUEUE(wait, current);
  697. int rc = 0;
  698. add_wait_queue_exclusive(sk_sleep(sk), &wait);
  699. for (;;) {
  700. __set_current_state(TASK_INTERRUPTIBLE);
  701. if (sk->sk_shutdown & RCV_SHUTDOWN)
  702. break;
  703. rc = -ERESTARTSYS;
  704. if (signal_pending(current))
  705. break;
  706. rc = -EAGAIN;
  707. if (!timeout)
  708. break;
  709. rc = 0;
  710. if (skb_queue_empty(&sk->sk_receive_queue)) {
  711. release_sock(sk);
  712. timeout = schedule_timeout(timeout);
  713. lock_sock(sk);
  714. } else
  715. break;
  716. }
  717. __set_current_state(TASK_RUNNING);
  718. remove_wait_queue(sk_sleep(sk), &wait);
  719. return rc;
  720. }
  721. static int x25_accept(struct socket *sock, struct socket *newsock, int flags)
  722. {
  723. struct sock *sk = sock->sk;
  724. struct sock *newsk;
  725. struct sk_buff *skb;
  726. int rc = -EINVAL;
  727. if (!sk)
  728. goto out;
  729. rc = -EOPNOTSUPP;
  730. if (sk->sk_type != SOCK_SEQPACKET)
  731. goto out;
  732. lock_sock(sk);
  733. rc = -EINVAL;
  734. if (sk->sk_state != TCP_LISTEN)
  735. goto out2;
  736. rc = x25_wait_for_data(sk, sk->sk_rcvtimeo);
  737. if (rc)
  738. goto out2;
  739. skb = skb_dequeue(&sk->sk_receive_queue);
  740. rc = -EINVAL;
  741. if (!skb->sk)
  742. goto out2;
  743. newsk = skb->sk;
  744. sock_graft(newsk, newsock);
  745. /* Now attach up the new socket */
  746. skb->sk = NULL;
  747. kfree_skb(skb);
  748. sk->sk_ack_backlog--;
  749. newsock->state = SS_CONNECTED;
  750. rc = 0;
  751. out2:
  752. release_sock(sk);
  753. out:
  754. return rc;
  755. }
  756. static int x25_getname(struct socket *sock, struct sockaddr *uaddr,
  757. int *uaddr_len, int peer)
  758. {
  759. struct sockaddr_x25 *sx25 = (struct sockaddr_x25 *)uaddr;
  760. struct sock *sk = sock->sk;
  761. struct x25_sock *x25 = x25_sk(sk);
  762. int rc = 0;
  763. if (peer) {
  764. if (sk->sk_state != TCP_ESTABLISHED) {
  765. rc = -ENOTCONN;
  766. goto out;
  767. }
  768. sx25->sx25_addr = x25->dest_addr;
  769. } else
  770. sx25->sx25_addr = x25->source_addr;
  771. sx25->sx25_family = AF_X25;
  772. *uaddr_len = sizeof(*sx25);
  773. out:
  774. return rc;
  775. }
  776. int x25_rx_call_request(struct sk_buff *skb, struct x25_neigh *nb,
  777. unsigned int lci)
  778. {
  779. struct sock *sk;
  780. struct sock *make;
  781. struct x25_sock *makex25;
  782. struct x25_address source_addr, dest_addr;
  783. struct x25_facilities facilities;
  784. struct x25_dte_facilities dte_facilities;
  785. int len, addr_len, rc;
  786. /*
  787. * Remove the LCI and frame type.
  788. */
  789. skb_pull(skb, X25_STD_MIN_LEN);
  790. /*
  791. * Extract the X.25 addresses and convert them to ASCII strings,
  792. * and remove them.
  793. *
  794. * Address block is mandatory in call request packets
  795. */
  796. addr_len = x25_parse_address_block(skb, &source_addr, &dest_addr);
  797. if (addr_len <= 0)
  798. goto out_clear_request;
  799. skb_pull(skb, addr_len);
  800. /*
  801. * Get the length of the facilities, skip past them for the moment
  802. * get the call user data because this is needed to determine
  803. * the correct listener
  804. *
  805. * Facilities length is mandatory in call request packets
  806. */
  807. if (skb->len < 1)
  808. goto out_clear_request;
  809. len = skb->data[0] + 1;
  810. if (skb->len < len)
  811. goto out_clear_request;
  812. skb_pull(skb,len);
  813. /*
  814. * Find a listener for the particular address/cud pair.
  815. */
  816. sk = x25_find_listener(&source_addr,skb);
  817. skb_push(skb,len);
  818. if (sk != NULL && sk_acceptq_is_full(sk)) {
  819. goto out_sock_put;
  820. }
  821. /*
  822. * We dont have any listeners for this incoming call.
  823. * Try forwarding it.
  824. */
  825. if (sk == NULL) {
  826. skb_push(skb, addr_len + X25_STD_MIN_LEN);
  827. if (sysctl_x25_forward &&
  828. x25_forward_call(&dest_addr, nb, skb, lci) > 0)
  829. {
  830. /* Call was forwarded, dont process it any more */
  831. kfree_skb(skb);
  832. rc = 1;
  833. goto out;
  834. } else {
  835. /* No listeners, can't forward, clear the call */
  836. goto out_clear_request;
  837. }
  838. }
  839. /*
  840. * Try to reach a compromise on the requested facilities.
  841. */
  842. len = x25_negotiate_facilities(skb, sk, &facilities, &dte_facilities);
  843. if (len == -1)
  844. goto out_sock_put;
  845. /*
  846. * current neighbour/link might impose additional limits
  847. * on certain facilties
  848. */
  849. x25_limit_facilities(&facilities, nb);
  850. /*
  851. * Try to create a new socket.
  852. */
  853. make = x25_make_new(sk);
  854. if (!make)
  855. goto out_sock_put;
  856. /*
  857. * Remove the facilities
  858. */
  859. skb_pull(skb, len);
  860. skb->sk = make;
  861. make->sk_state = TCP_ESTABLISHED;
  862. makex25 = x25_sk(make);
  863. makex25->lci = lci;
  864. makex25->dest_addr = dest_addr;
  865. makex25->source_addr = source_addr;
  866. makex25->neighbour = nb;
  867. makex25->facilities = facilities;
  868. makex25->dte_facilities= dte_facilities;
  869. makex25->vc_facil_mask = x25_sk(sk)->vc_facil_mask;
  870. /* ensure no reverse facil on accept */
  871. makex25->vc_facil_mask &= ~X25_MASK_REVERSE;
  872. /* ensure no calling address extension on accept */
  873. makex25->vc_facil_mask &= ~X25_MASK_CALLING_AE;
  874. makex25->cudmatchlength = x25_sk(sk)->cudmatchlength;
  875. /* Normally all calls are accepted immediately */
  876. if (test_bit(X25_ACCPT_APPRV_FLAG, &makex25->flags)) {
  877. x25_write_internal(make, X25_CALL_ACCEPTED);
  878. makex25->state = X25_STATE_3;
  879. }
  880. /*
  881. * Incoming Call User Data.
  882. */
  883. skb_copy_from_linear_data(skb, makex25->calluserdata.cuddata, skb->len);
  884. makex25->calluserdata.cudlength = skb->len;
  885. sk->sk_ack_backlog++;
  886. x25_insert_socket(make);
  887. skb_queue_head(&sk->sk_receive_queue, skb);
  888. x25_start_heartbeat(make);
  889. if (!sock_flag(sk, SOCK_DEAD))
  890. sk->sk_data_ready(sk, skb->len);
  891. rc = 1;
  892. sock_put(sk);
  893. out:
  894. return rc;
  895. out_sock_put:
  896. sock_put(sk);
  897. out_clear_request:
  898. rc = 0;
  899. x25_transmit_clear_request(nb, lci, 0x01);
  900. goto out;
  901. }
  902. static int x25_sendmsg(struct kiocb *iocb, struct socket *sock,
  903. struct msghdr *msg, size_t len)
  904. {
  905. struct sock *sk = sock->sk;
  906. struct x25_sock *x25 = x25_sk(sk);
  907. struct sockaddr_x25 *usx25 = (struct sockaddr_x25 *)msg->msg_name;
  908. struct sockaddr_x25 sx25;
  909. struct sk_buff *skb;
  910. unsigned char *asmptr;
  911. int noblock = msg->msg_flags & MSG_DONTWAIT;
  912. size_t size;
  913. int qbit = 0, rc = -EINVAL;
  914. lock_sock(sk);
  915. if (msg->msg_flags & ~(MSG_DONTWAIT|MSG_OOB|MSG_EOR|MSG_CMSG_COMPAT))
  916. goto out;
  917. /* we currently don't support segmented records at the user interface */
  918. if (!(msg->msg_flags & (MSG_EOR|MSG_OOB)))
  919. goto out;
  920. rc = -EADDRNOTAVAIL;
  921. if (sock_flag(sk, SOCK_ZAPPED))
  922. goto out;
  923. rc = -EPIPE;
  924. if (sk->sk_shutdown & SEND_SHUTDOWN) {
  925. send_sig(SIGPIPE, current, 0);
  926. goto out;
  927. }
  928. rc = -ENETUNREACH;
  929. if (!x25->neighbour)
  930. goto out;
  931. if (usx25) {
  932. rc = -EINVAL;
  933. if (msg->msg_namelen < sizeof(sx25))
  934. goto out;
  935. memcpy(&sx25, usx25, sizeof(sx25));
  936. rc = -EISCONN;
  937. if (strcmp(x25->dest_addr.x25_addr, sx25.sx25_addr.x25_addr))
  938. goto out;
  939. rc = -EINVAL;
  940. if (sx25.sx25_family != AF_X25)
  941. goto out;
  942. } else {
  943. /*
  944. * FIXME 1003.1g - if the socket is like this because
  945. * it has become closed (not started closed) we ought
  946. * to SIGPIPE, EPIPE;
  947. */
  948. rc = -ENOTCONN;
  949. if (sk->sk_state != TCP_ESTABLISHED)
  950. goto out;
  951. sx25.sx25_family = AF_X25;
  952. sx25.sx25_addr = x25->dest_addr;
  953. }
  954. /* Sanity check the packet size */
  955. if (len > 65535) {
  956. rc = -EMSGSIZE;
  957. goto out;
  958. }
  959. SOCK_DEBUG(sk, "x25_sendmsg: sendto: Addresses built.\n");
  960. /* Build a packet */
  961. SOCK_DEBUG(sk, "x25_sendmsg: sendto: building packet.\n");
  962. if ((msg->msg_flags & MSG_OOB) && len > 32)
  963. len = 32;
  964. size = len + X25_MAX_L2_LEN + X25_EXT_MIN_LEN;
  965. release_sock(sk);
  966. skb = sock_alloc_send_skb(sk, size, noblock, &rc);
  967. lock_sock(sk);
  968. if (!skb)
  969. goto out;
  970. X25_SKB_CB(skb)->flags = msg->msg_flags;
  971. skb_reserve(skb, X25_MAX_L2_LEN + X25_EXT_MIN_LEN);
  972. /*
  973. * Put the data on the end
  974. */
  975. SOCK_DEBUG(sk, "x25_sendmsg: Copying user data\n");
  976. skb_reset_transport_header(skb);
  977. skb_put(skb, len);
  978. rc = memcpy_fromiovec(skb_transport_header(skb), msg->msg_iov, len);
  979. if (rc)
  980. goto out_kfree_skb;
  981. /*
  982. * If the Q BIT Include socket option is in force, the first
  983. * byte of the user data is the logical value of the Q Bit.
  984. */
  985. if (test_bit(X25_Q_BIT_FLAG, &x25->flags)) {
  986. qbit = skb->data[0];
  987. skb_pull(skb, 1);
  988. }
  989. /*
  990. * Push down the X.25 header
  991. */
  992. SOCK_DEBUG(sk, "x25_sendmsg: Building X.25 Header.\n");
  993. if (msg->msg_flags & MSG_OOB) {
  994. if (x25->neighbour->extended) {
  995. asmptr = skb_push(skb, X25_STD_MIN_LEN);
  996. *asmptr++ = ((x25->lci >> 8) & 0x0F) | X25_GFI_EXTSEQ;
  997. *asmptr++ = (x25->lci >> 0) & 0xFF;
  998. *asmptr++ = X25_INTERRUPT;
  999. } else {
  1000. asmptr = skb_push(skb, X25_STD_MIN_LEN);
  1001. *asmptr++ = ((x25->lci >> 8) & 0x0F) | X25_GFI_STDSEQ;
  1002. *asmptr++ = (x25->lci >> 0) & 0xFF;
  1003. *asmptr++ = X25_INTERRUPT;
  1004. }
  1005. } else {
  1006. if (x25->neighbour->extended) {
  1007. /* Build an Extended X.25 header */
  1008. asmptr = skb_push(skb, X25_EXT_MIN_LEN);
  1009. *asmptr++ = ((x25->lci >> 8) & 0x0F) | X25_GFI_EXTSEQ;
  1010. *asmptr++ = (x25->lci >> 0) & 0xFF;
  1011. *asmptr++ = X25_DATA;
  1012. *asmptr++ = X25_DATA;
  1013. } else {
  1014. /* Build an Standard X.25 header */
  1015. asmptr = skb_push(skb, X25_STD_MIN_LEN);
  1016. *asmptr++ = ((x25->lci >> 8) & 0x0F) | X25_GFI_STDSEQ;
  1017. *asmptr++ = (x25->lci >> 0) & 0xFF;
  1018. *asmptr++ = X25_DATA;
  1019. }
  1020. if (qbit)
  1021. skb->data[0] |= X25_Q_BIT;
  1022. }
  1023. SOCK_DEBUG(sk, "x25_sendmsg: Built header.\n");
  1024. SOCK_DEBUG(sk, "x25_sendmsg: Transmitting buffer\n");
  1025. rc = -ENOTCONN;
  1026. if (sk->sk_state != TCP_ESTABLISHED)
  1027. goto out_kfree_skb;
  1028. if (msg->msg_flags & MSG_OOB)
  1029. skb_queue_tail(&x25->interrupt_out_queue, skb);
  1030. else {
  1031. rc = x25_output(sk, skb);
  1032. len = rc;
  1033. if (rc < 0)
  1034. kfree_skb(skb);
  1035. else if (test_bit(X25_Q_BIT_FLAG, &x25->flags))
  1036. len++;
  1037. }
  1038. x25_kick(sk);
  1039. rc = len;
  1040. out:
  1041. release_sock(sk);
  1042. return rc;
  1043. out_kfree_skb:
  1044. kfree_skb(skb);
  1045. goto out;
  1046. }
  1047. static int x25_recvmsg(struct kiocb *iocb, struct socket *sock,
  1048. struct msghdr *msg, size_t size,
  1049. int flags)
  1050. {
  1051. struct sock *sk = sock->sk;
  1052. struct x25_sock *x25 = x25_sk(sk);
  1053. struct sockaddr_x25 *sx25 = (struct sockaddr_x25 *)msg->msg_name;
  1054. size_t copied;
  1055. int qbit;
  1056. struct sk_buff *skb;
  1057. unsigned char *asmptr;
  1058. int rc = -ENOTCONN;
  1059. lock_sock(sk);
  1060. /*
  1061. * This works for seqpacket too. The receiver has ordered the queue for
  1062. * us! We do one quick check first though
  1063. */
  1064. if (sk->sk_state != TCP_ESTABLISHED)
  1065. goto out;
  1066. if (flags & MSG_OOB) {
  1067. rc = -EINVAL;
  1068. if (sock_flag(sk, SOCK_URGINLINE) ||
  1069. !skb_peek(&x25->interrupt_in_queue))
  1070. goto out;
  1071. skb = skb_dequeue(&x25->interrupt_in_queue);
  1072. skb_pull(skb, X25_STD_MIN_LEN);
  1073. /*
  1074. * No Q bit information on Interrupt data.
  1075. */
  1076. if (test_bit(X25_Q_BIT_FLAG, &x25->flags)) {
  1077. asmptr = skb_push(skb, 1);
  1078. *asmptr = 0x00;
  1079. }
  1080. msg->msg_flags |= MSG_OOB;
  1081. } else {
  1082. /* Now we can treat all alike */
  1083. release_sock(sk);
  1084. skb = skb_recv_datagram(sk, flags & ~MSG_DONTWAIT,
  1085. flags & MSG_DONTWAIT, &rc);
  1086. lock_sock(sk);
  1087. if (!skb)
  1088. goto out;
  1089. qbit = (skb->data[0] & X25_Q_BIT) == X25_Q_BIT;
  1090. skb_pull(skb, x25->neighbour->extended ?
  1091. X25_EXT_MIN_LEN : X25_STD_MIN_LEN);
  1092. if (test_bit(X25_Q_BIT_FLAG, &x25->flags)) {
  1093. asmptr = skb_push(skb, 1);
  1094. *asmptr = qbit;
  1095. }
  1096. }
  1097. skb_reset_transport_header(skb);
  1098. copied = skb->len;
  1099. if (copied > size) {
  1100. copied = size;
  1101. msg->msg_flags |= MSG_TRUNC;
  1102. }
  1103. /* Currently, each datagram always contains a complete record */
  1104. msg->msg_flags |= MSG_EOR;
  1105. rc = skb_copy_datagram_iovec(skb, 0, msg->msg_iov, copied);
  1106. if (rc)
  1107. goto out_free_dgram;
  1108. if (sx25) {
  1109. sx25->sx25_family = AF_X25;
  1110. sx25->sx25_addr = x25->dest_addr;
  1111. }
  1112. msg->msg_namelen = sizeof(struct sockaddr_x25);
  1113. x25_check_rbuf(sk);
  1114. rc = copied;
  1115. out_free_dgram:
  1116. skb_free_datagram(sk, skb);
  1117. out:
  1118. release_sock(sk);
  1119. return rc;
  1120. }
  1121. static int x25_ioctl(struct socket *sock, unsigned int cmd, unsigned long arg)
  1122. {
  1123. struct sock *sk = sock->sk;
  1124. struct x25_sock *x25 = x25_sk(sk);
  1125. void __user *argp = (void __user *)arg;
  1126. int rc;
  1127. switch (cmd) {
  1128. case TIOCOUTQ: {
  1129. int amount;
  1130. amount = sk->sk_sndbuf - sk_wmem_alloc_get(sk);
  1131. if (amount < 0)
  1132. amount = 0;
  1133. rc = put_user(amount, (unsigned int __user *)argp);
  1134. break;
  1135. }
  1136. case TIOCINQ: {
  1137. struct sk_buff *skb;
  1138. int amount = 0;
  1139. /*
  1140. * These two are safe on a single CPU system as
  1141. * only user tasks fiddle here
  1142. */
  1143. lock_sock(sk);
  1144. if ((skb = skb_peek(&sk->sk_receive_queue)) != NULL)
  1145. amount = skb->len;
  1146. release_sock(sk);
  1147. rc = put_user(amount, (unsigned int __user *)argp);
  1148. break;
  1149. }
  1150. case SIOCGSTAMP:
  1151. rc = -EINVAL;
  1152. if (sk)
  1153. rc = sock_get_timestamp(sk,
  1154. (struct timeval __user *)argp);
  1155. break;
  1156. case SIOCGSTAMPNS:
  1157. rc = -EINVAL;
  1158. if (sk)
  1159. rc = sock_get_timestampns(sk,
  1160. (struct timespec __user *)argp);
  1161. break;
  1162. case SIOCGIFADDR:
  1163. case SIOCSIFADDR:
  1164. case SIOCGIFDSTADDR:
  1165. case SIOCSIFDSTADDR:
  1166. case SIOCGIFBRDADDR:
  1167. case SIOCSIFBRDADDR:
  1168. case SIOCGIFNETMASK:
  1169. case SIOCSIFNETMASK:
  1170. case SIOCGIFMETRIC:
  1171. case SIOCSIFMETRIC:
  1172. rc = -EINVAL;
  1173. break;
  1174. case SIOCADDRT:
  1175. case SIOCDELRT:
  1176. rc = -EPERM;
  1177. if (!capable(CAP_NET_ADMIN))
  1178. break;
  1179. rc = x25_route_ioctl(cmd, argp);
  1180. break;
  1181. case SIOCX25GSUBSCRIP:
  1182. rc = x25_subscr_ioctl(cmd, argp);
  1183. break;
  1184. case SIOCX25SSUBSCRIP:
  1185. rc = -EPERM;
  1186. if (!capable(CAP_NET_ADMIN))
  1187. break;
  1188. rc = x25_subscr_ioctl(cmd, argp);
  1189. break;
  1190. case SIOCX25GFACILITIES: {
  1191. lock_sock(sk);
  1192. rc = copy_to_user(argp, &x25->facilities,
  1193. sizeof(x25->facilities))
  1194. ? -EFAULT : 0;
  1195. release_sock(sk);
  1196. break;
  1197. }
  1198. case SIOCX25SFACILITIES: {
  1199. struct x25_facilities facilities;
  1200. rc = -EFAULT;
  1201. if (copy_from_user(&facilities, argp, sizeof(facilities)))
  1202. break;
  1203. rc = -EINVAL;
  1204. lock_sock(sk);
  1205. if (sk->sk_state != TCP_LISTEN &&
  1206. sk->sk_state != TCP_CLOSE)
  1207. goto out_fac_release;
  1208. if (facilities.pacsize_in < X25_PS16 ||
  1209. facilities.pacsize_in > X25_PS4096)
  1210. goto out_fac_release;
  1211. if (facilities.pacsize_out < X25_PS16 ||
  1212. facilities.pacsize_out > X25_PS4096)
  1213. goto out_fac_release;
  1214. if (facilities.winsize_in < 1 ||
  1215. facilities.winsize_in > 127)
  1216. goto out_fac_release;
  1217. if (facilities.throughput) {
  1218. int out = facilities.throughput & 0xf0;
  1219. int in = facilities.throughput & 0x0f;
  1220. if (!out)
  1221. facilities.throughput |=
  1222. X25_DEFAULT_THROUGHPUT << 4;
  1223. else if (out < 0x30 || out > 0xD0)
  1224. goto out_fac_release;
  1225. if (!in)
  1226. facilities.throughput |=
  1227. X25_DEFAULT_THROUGHPUT;
  1228. else if (in < 0x03 || in > 0x0D)
  1229. goto out_fac_release;
  1230. }
  1231. if (facilities.reverse &&
  1232. (facilities.reverse & 0x81) != 0x81)
  1233. goto out_fac_release;
  1234. x25->facilities = facilities;
  1235. rc = 0;
  1236. out_fac_release:
  1237. release_sock(sk);
  1238. break;
  1239. }
  1240. case SIOCX25GDTEFACILITIES: {
  1241. lock_sock(sk);
  1242. rc = copy_to_user(argp, &x25->dte_facilities,
  1243. sizeof(x25->dte_facilities));
  1244. release_sock(sk);
  1245. if (rc)
  1246. rc = -EFAULT;
  1247. break;
  1248. }
  1249. case SIOCX25SDTEFACILITIES: {
  1250. struct x25_dte_facilities dtefacs;
  1251. rc = -EFAULT;
  1252. if (copy_from_user(&dtefacs, argp, sizeof(dtefacs)))
  1253. break;
  1254. rc = -EINVAL;
  1255. lock_sock(sk);
  1256. if (sk->sk_state != TCP_LISTEN &&
  1257. sk->sk_state != TCP_CLOSE)
  1258. goto out_dtefac_release;
  1259. if (dtefacs.calling_len > X25_MAX_AE_LEN)
  1260. goto out_dtefac_release;
  1261. if (dtefacs.calling_ae == NULL)
  1262. goto out_dtefac_release;
  1263. if (dtefacs.called_len > X25_MAX_AE_LEN)
  1264. goto out_dtefac_release;
  1265. if (dtefacs.called_ae == NULL)
  1266. goto out_dtefac_release;
  1267. x25->dte_facilities = dtefacs;
  1268. rc = 0;
  1269. out_dtefac_release:
  1270. release_sock(sk);
  1271. break;
  1272. }
  1273. case SIOCX25GCALLUSERDATA: {
  1274. lock_sock(sk);
  1275. rc = copy_to_user(argp, &x25->calluserdata,
  1276. sizeof(x25->calluserdata))
  1277. ? -EFAULT : 0;
  1278. release_sock(sk);
  1279. break;
  1280. }
  1281. case SIOCX25SCALLUSERDATA: {
  1282. struct x25_calluserdata calluserdata;
  1283. rc = -EFAULT;
  1284. if (copy_from_user(&calluserdata, argp, sizeof(calluserdata)))
  1285. break;
  1286. rc = -EINVAL;
  1287. if (calluserdata.cudlength > X25_MAX_CUD_LEN)
  1288. break;
  1289. lock_sock(sk);
  1290. x25->calluserdata = calluserdata;
  1291. release_sock(sk);
  1292. rc = 0;
  1293. break;
  1294. }
  1295. case SIOCX25GCAUSEDIAG: {
  1296. lock_sock(sk);
  1297. rc = copy_to_user(argp, &x25->causediag, sizeof(x25->causediag))
  1298. ? -EFAULT : 0;
  1299. release_sock(sk);
  1300. break;
  1301. }
  1302. case SIOCX25SCAUSEDIAG: {
  1303. struct x25_causediag causediag;
  1304. rc = -EFAULT;
  1305. if (copy_from_user(&causediag, argp, sizeof(causediag)))
  1306. break;
  1307. lock_sock(sk);
  1308. x25->causediag = causediag;
  1309. release_sock(sk);
  1310. rc = 0;
  1311. break;
  1312. }
  1313. case SIOCX25SCUDMATCHLEN: {
  1314. struct x25_subaddr sub_addr;
  1315. rc = -EINVAL;
  1316. lock_sock(sk);
  1317. if(sk->sk_state != TCP_CLOSE)
  1318. goto out_cud_release;
  1319. rc = -EFAULT;
  1320. if (copy_from_user(&sub_addr, argp,
  1321. sizeof(sub_addr)))
  1322. goto out_cud_release;
  1323. rc = -EINVAL;
  1324. if (sub_addr.cudmatchlength > X25_MAX_CUD_LEN)
  1325. goto out_cud_release;
  1326. x25->cudmatchlength = sub_addr.cudmatchlength;
  1327. rc = 0;
  1328. out_cud_release:
  1329. release_sock(sk);
  1330. break;
  1331. }
  1332. case SIOCX25CALLACCPTAPPRV: {
  1333. rc = -EINVAL;
  1334. lock_sock(sk);
  1335. if (sk->sk_state != TCP_CLOSE)
  1336. break;
  1337. clear_bit(X25_ACCPT_APPRV_FLAG, &x25->flags);
  1338. release_sock(sk);
  1339. rc = 0;
  1340. break;
  1341. }
  1342. case SIOCX25SENDCALLACCPT: {
  1343. rc = -EINVAL;
  1344. lock_sock(sk);
  1345. if (sk->sk_state != TCP_ESTABLISHED)
  1346. break;
  1347. /* must call accptapprv above */
  1348. if (test_bit(X25_ACCPT_APPRV_FLAG, &x25->flags))
  1349. break;
  1350. x25_write_internal(sk, X25_CALL_ACCEPTED);
  1351. x25->state = X25_STATE_3;
  1352. release_sock(sk);
  1353. rc = 0;
  1354. break;
  1355. }
  1356. default:
  1357. rc = -ENOIOCTLCMD;
  1358. break;
  1359. }
  1360. return rc;
  1361. }
  1362. static const struct net_proto_family x25_family_ops = {
  1363. .family = AF_X25,
  1364. .create = x25_create,
  1365. .owner = THIS_MODULE,
  1366. };
  1367. #ifdef CONFIG_COMPAT
  1368. static int compat_x25_subscr_ioctl(unsigned int cmd,
  1369. struct compat_x25_subscrip_struct __user *x25_subscr32)
  1370. {
  1371. struct compat_x25_subscrip_struct x25_subscr;
  1372. struct x25_neigh *nb;
  1373. struct net_device *dev;
  1374. int rc = -EINVAL;
  1375. rc = -EFAULT;
  1376. if (copy_from_user(&x25_subscr, x25_subscr32, sizeof(*x25_subscr32)))
  1377. goto out;
  1378. rc = -EINVAL;
  1379. dev = x25_dev_get(x25_subscr.device);
  1380. if (dev == NULL)
  1381. goto out;
  1382. nb = x25_get_neigh(dev);
  1383. if (nb == NULL)
  1384. goto out_dev_put;
  1385. dev_put(dev);
  1386. if (cmd == SIOCX25GSUBSCRIP) {
  1387. read_lock_bh(&x25_neigh_list_lock);
  1388. x25_subscr.extended = nb->extended;
  1389. x25_subscr.global_facil_mask = nb->global_facil_mask;
  1390. read_unlock_bh(&x25_neigh_list_lock);
  1391. rc = copy_to_user(x25_subscr32, &x25_subscr,
  1392. sizeof(*x25_subscr32)) ? -EFAULT : 0;
  1393. } else {
  1394. rc = -EINVAL;
  1395. if (x25_subscr.extended == 0 || x25_subscr.extended == 1) {
  1396. rc = 0;
  1397. write_lock_bh(&x25_neigh_list_lock);
  1398. nb->extended = x25_subscr.extended;
  1399. nb->global_facil_mask = x25_subscr.global_facil_mask;
  1400. write_unlock_bh(&x25_neigh_list_lock);
  1401. }
  1402. }
  1403. x25_neigh_put(nb);
  1404. out:
  1405. return rc;
  1406. out_dev_put:
  1407. dev_put(dev);
  1408. goto out;
  1409. }
  1410. static int compat_x25_ioctl(struct socket *sock, unsigned int cmd,
  1411. unsigned long arg)
  1412. {
  1413. void __user *argp = compat_ptr(arg);
  1414. struct sock *sk = sock->sk;
  1415. int rc = -ENOIOCTLCMD;
  1416. switch(cmd) {
  1417. case TIOCOUTQ:
  1418. case TIOCINQ:
  1419. rc = x25_ioctl(sock, cmd, (unsigned long)argp);
  1420. break;
  1421. case SIOCGSTAMP:
  1422. rc = -EINVAL;
  1423. if (sk)
  1424. rc = compat_sock_get_timestamp(sk,
  1425. (struct timeval __user*)argp);
  1426. break;
  1427. case SIOCGSTAMPNS:
  1428. rc = -EINVAL;
  1429. if (sk)
  1430. rc = compat_sock_get_timestampns(sk,
  1431. (struct timespec __user*)argp);
  1432. break;
  1433. case SIOCGIFADDR:
  1434. case SIOCSIFADDR:
  1435. case SIOCGIFDSTADDR:
  1436. case SIOCSIFDSTADDR:
  1437. case SIOCGIFBRDADDR:
  1438. case SIOCSIFBRDADDR:
  1439. case SIOCGIFNETMASK:
  1440. case SIOCSIFNETMASK:
  1441. case SIOCGIFMETRIC:
  1442. case SIOCSIFMETRIC:
  1443. rc = -EINVAL;
  1444. break;
  1445. case SIOCADDRT:
  1446. case SIOCDELRT:
  1447. rc = -EPERM;
  1448. if (!capable(CAP_NET_ADMIN))
  1449. break;
  1450. rc = x25_route_ioctl(cmd, argp);
  1451. break;
  1452. case SIOCX25GSUBSCRIP:
  1453. rc = compat_x25_subscr_ioctl(cmd, argp);
  1454. break;
  1455. case SIOCX25SSUBSCRIP:
  1456. rc = -EPERM;
  1457. if (!capable(CAP_NET_ADMIN))
  1458. break;
  1459. rc = compat_x25_subscr_ioctl(cmd, argp);
  1460. break;
  1461. case SIOCX25GFACILITIES:
  1462. case SIOCX25SFACILITIES:
  1463. case SIOCX25GDTEFACILITIES:
  1464. case SIOCX25SDTEFACILITIES:
  1465. case SIOCX25GCALLUSERDATA:
  1466. case SIOCX25SCALLUSERDATA:
  1467. case SIOCX25GCAUSEDIAG:
  1468. case SIOCX25SCAUSEDIAG:
  1469. case SIOCX25SCUDMATCHLEN:
  1470. case SIOCX25CALLACCPTAPPRV:
  1471. case SIOCX25SENDCALLACCPT:
  1472. rc = x25_ioctl(sock, cmd, (unsigned long)argp);
  1473. break;
  1474. default:
  1475. rc = -ENOIOCTLCMD;
  1476. break;
  1477. }
  1478. return rc;
  1479. }
  1480. #endif
  1481. static const struct proto_ops x25_proto_ops = {
  1482. .family = AF_X25,
  1483. .owner = THIS_MODULE,
  1484. .release = x25_release,
  1485. .bind = x25_bind,
  1486. .connect = x25_connect,
  1487. .socketpair = sock_no_socketpair,
  1488. .accept = x25_accept,
  1489. .getname = x25_getname,
  1490. .poll = datagram_poll,
  1491. .ioctl = x25_ioctl,
  1492. #ifdef CONFIG_COMPAT
  1493. .compat_ioctl = compat_x25_ioctl,
  1494. #endif
  1495. .listen = x25_listen,
  1496. .shutdown = sock_no_shutdown,
  1497. .setsockopt = x25_setsockopt,
  1498. .getsockopt = x25_getsockopt,
  1499. .sendmsg = x25_sendmsg,
  1500. .recvmsg = x25_recvmsg,
  1501. .mmap = sock_no_mmap,
  1502. .sendpage = sock_no_sendpage,
  1503. };
  1504. static struct packet_type x25_packet_type __read_mostly = {
  1505. .type = cpu_to_be16(ETH_P_X25),
  1506. .func = x25_lapb_receive_frame,
  1507. };
  1508. static struct notifier_block x25_dev_notifier = {
  1509. .notifier_call = x25_device_event,
  1510. };
  1511. void x25_kill_by_neigh(struct x25_neigh *nb)
  1512. {
  1513. struct sock *s;
  1514. struct hlist_node *node;
  1515. write_lock_bh(&x25_list_lock);
  1516. sk_for_each(s, node, &x25_list)
  1517. if (x25_sk(s)->neighbour == nb)
  1518. x25_disconnect(s, ENETUNREACH, 0, 0);
  1519. write_unlock_bh(&x25_list_lock);
  1520. /* Remove any related forwards */
  1521. x25_clear_forward_by_dev(nb->dev);
  1522. }
  1523. static int __init x25_init(void)
  1524. {
  1525. int rc = proto_register(&x25_proto, 0);
  1526. if (rc != 0)
  1527. goto out;
  1528. rc = sock_register(&x25_family_ops);
  1529. if (rc != 0)
  1530. goto out_proto;
  1531. dev_add_pack(&x25_packet_type);
  1532. rc = register_netdevice_notifier(&x25_dev_notifier);
  1533. if (rc != 0)
  1534. goto out_sock;
  1535. printk(KERN_INFO "X.25 for Linux Version 0.2\n");
  1536. x25_register_sysctl();
  1537. rc = x25_proc_init();
  1538. if (rc != 0)
  1539. goto out_dev;
  1540. out:
  1541. return rc;
  1542. out_dev:
  1543. unregister_netdevice_notifier(&x25_dev_notifier);
  1544. out_sock:
  1545. sock_unregister(AF_X25);
  1546. out_proto:
  1547. proto_unregister(&x25_proto);
  1548. goto out;
  1549. }
  1550. module_init(x25_init);
  1551. static void __exit x25_exit(void)
  1552. {
  1553. x25_proc_exit();
  1554. x25_link_free();
  1555. x25_route_free();
  1556. x25_unregister_sysctl();
  1557. unregister_netdevice_notifier(&x25_dev_notifier);
  1558. dev_remove_pack(&x25_packet_type);
  1559. sock_unregister(AF_X25);
  1560. proto_unregister(&x25_proto);
  1561. }
  1562. module_exit(x25_exit);
  1563. MODULE_AUTHOR("Jonathan Naylor <g4klx@g4klx.demon.co.uk>");
  1564. MODULE_DESCRIPTION("The X.25 Packet Layer network layer protocol");
  1565. MODULE_LICENSE("GPL");
  1566. MODULE_ALIAS_NETPROTO(PF_X25);