ppp_synctty.c 18 KB

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  1. /*
  2. * PPP synchronous tty channel driver for Linux.
  3. *
  4. * This is a ppp channel driver that can be used with tty device drivers
  5. * that are frame oriented, such as synchronous HDLC devices.
  6. *
  7. * Complete PPP frames without encoding/decoding are exchanged between
  8. * the channel driver and the device driver.
  9. *
  10. * The async map IOCTL codes are implemented to keep the user mode
  11. * applications happy if they call them. Synchronous PPP does not use
  12. * the async maps.
  13. *
  14. * Copyright 1999 Paul Mackerras.
  15. *
  16. * Also touched by the grubby hands of Paul Fulghum paulkf@microgate.com
  17. *
  18. * This program is free software; you can redistribute it and/or
  19. * modify it under the terms of the GNU General Public License
  20. * as published by the Free Software Foundation; either version
  21. * 2 of the License, or (at your option) any later version.
  22. *
  23. * This driver provides the encapsulation and framing for sending
  24. * and receiving PPP frames over sync serial lines. It relies on
  25. * the generic PPP layer to give it frames to send and to process
  26. * received frames. It implements the PPP line discipline.
  27. *
  28. * Part of the code in this driver was inspired by the old async-only
  29. * PPP driver, written by Michael Callahan and Al Longyear, and
  30. * subsequently hacked by Paul Mackerras.
  31. *
  32. * ==FILEVERSION 20040616==
  33. */
  34. #include <linux/module.h>
  35. #include <linux/kernel.h>
  36. #include <linux/skbuff.h>
  37. #include <linux/tty.h>
  38. #include <linux/netdevice.h>
  39. #include <linux/poll.h>
  40. #include <linux/ppp_defs.h>
  41. #include <linux/if_ppp.h>
  42. #include <linux/ppp_channel.h>
  43. #include <linux/spinlock.h>
  44. #include <linux/init.h>
  45. #include <asm/uaccess.h>
  46. #include <asm/semaphore.h>
  47. #define PPP_VERSION "2.4.2"
  48. /* Structure for storing local state. */
  49. struct syncppp {
  50. struct tty_struct *tty;
  51. unsigned int flags;
  52. unsigned int rbits;
  53. int mru;
  54. spinlock_t xmit_lock;
  55. spinlock_t recv_lock;
  56. unsigned long xmit_flags;
  57. u32 xaccm[8];
  58. u32 raccm;
  59. unsigned int bytes_sent;
  60. unsigned int bytes_rcvd;
  61. struct sk_buff *tpkt;
  62. unsigned long last_xmit;
  63. struct sk_buff_head rqueue;
  64. struct tasklet_struct tsk;
  65. atomic_t refcnt;
  66. struct semaphore dead_sem;
  67. struct ppp_channel chan; /* interface to generic ppp layer */
  68. };
  69. /* Bit numbers in xmit_flags */
  70. #define XMIT_WAKEUP 0
  71. #define XMIT_FULL 1
  72. /* Bits in rbits */
  73. #define SC_RCV_BITS (SC_RCV_B7_1|SC_RCV_B7_0|SC_RCV_ODDP|SC_RCV_EVNP)
  74. #define PPPSYNC_MAX_RQLEN 32 /* arbitrary */
  75. /*
  76. * Prototypes.
  77. */
  78. static struct sk_buff* ppp_sync_txmunge(struct syncppp *ap, struct sk_buff *);
  79. static int ppp_sync_send(struct ppp_channel *chan, struct sk_buff *skb);
  80. static int ppp_sync_ioctl(struct ppp_channel *chan, unsigned int cmd,
  81. unsigned long arg);
  82. static void ppp_sync_process(unsigned long arg);
  83. static int ppp_sync_push(struct syncppp *ap);
  84. static void ppp_sync_flush_output(struct syncppp *ap);
  85. static void ppp_sync_input(struct syncppp *ap, const unsigned char *buf,
  86. char *flags, int count);
  87. static struct ppp_channel_ops sync_ops = {
  88. ppp_sync_send,
  89. ppp_sync_ioctl
  90. };
  91. /*
  92. * Utility procedures to print a buffer in hex/ascii
  93. */
  94. static void
  95. ppp_print_hex (register __u8 * out, const __u8 * in, int count)
  96. {
  97. register __u8 next_ch;
  98. static const char hex[] = "0123456789ABCDEF";
  99. while (count-- > 0) {
  100. next_ch = *in++;
  101. *out++ = hex[(next_ch >> 4) & 0x0F];
  102. *out++ = hex[next_ch & 0x0F];
  103. ++out;
  104. }
  105. }
  106. static void
  107. ppp_print_char (register __u8 * out, const __u8 * in, int count)
  108. {
  109. register __u8 next_ch;
  110. while (count-- > 0) {
  111. next_ch = *in++;
  112. if (next_ch < 0x20 || next_ch > 0x7e)
  113. *out++ = '.';
  114. else {
  115. *out++ = next_ch;
  116. if (next_ch == '%') /* printk/syslogd has a bug !! */
  117. *out++ = '%';
  118. }
  119. }
  120. *out = '\0';
  121. }
  122. static void
  123. ppp_print_buffer (const char *name, const __u8 *buf, int count)
  124. {
  125. __u8 line[44];
  126. if (name != NULL)
  127. printk(KERN_DEBUG "ppp_synctty: %s, count = %d\n", name, count);
  128. while (count > 8) {
  129. memset (line, 32, 44);
  130. ppp_print_hex (line, buf, 8);
  131. ppp_print_char (&line[8 * 3], buf, 8);
  132. printk(KERN_DEBUG "%s\n", line);
  133. count -= 8;
  134. buf += 8;
  135. }
  136. if (count > 0) {
  137. memset (line, 32, 44);
  138. ppp_print_hex (line, buf, count);
  139. ppp_print_char (&line[8 * 3], buf, count);
  140. printk(KERN_DEBUG "%s\n", line);
  141. }
  142. }
  143. /*
  144. * Routines implementing the synchronous PPP line discipline.
  145. */
  146. /*
  147. * We have a potential race on dereferencing tty->disc_data,
  148. * because the tty layer provides no locking at all - thus one
  149. * cpu could be running ppp_synctty_receive while another
  150. * calls ppp_synctty_close, which zeroes tty->disc_data and
  151. * frees the memory that ppp_synctty_receive is using. The best
  152. * way to fix this is to use a rwlock in the tty struct, but for now
  153. * we use a single global rwlock for all ttys in ppp line discipline.
  154. *
  155. * FIXME: Fixed in tty_io nowdays.
  156. */
  157. static DEFINE_RWLOCK(disc_data_lock);
  158. static struct syncppp *sp_get(struct tty_struct *tty)
  159. {
  160. struct syncppp *ap;
  161. read_lock(&disc_data_lock);
  162. ap = tty->disc_data;
  163. if (ap != NULL)
  164. atomic_inc(&ap->refcnt);
  165. read_unlock(&disc_data_lock);
  166. return ap;
  167. }
  168. static void sp_put(struct syncppp *ap)
  169. {
  170. if (atomic_dec_and_test(&ap->refcnt))
  171. up(&ap->dead_sem);
  172. }
  173. /*
  174. * Called when a tty is put into sync-PPP line discipline.
  175. */
  176. static int
  177. ppp_sync_open(struct tty_struct *tty)
  178. {
  179. struct syncppp *ap;
  180. int err;
  181. ap = kmalloc(sizeof(*ap), GFP_KERNEL);
  182. err = -ENOMEM;
  183. if (ap == 0)
  184. goto out;
  185. /* initialize the syncppp structure */
  186. memset(ap, 0, sizeof(*ap));
  187. ap->tty = tty;
  188. ap->mru = PPP_MRU;
  189. spin_lock_init(&ap->xmit_lock);
  190. spin_lock_init(&ap->recv_lock);
  191. ap->xaccm[0] = ~0U;
  192. ap->xaccm[3] = 0x60000000U;
  193. ap->raccm = ~0U;
  194. skb_queue_head_init(&ap->rqueue);
  195. tasklet_init(&ap->tsk, ppp_sync_process, (unsigned long) ap);
  196. atomic_set(&ap->refcnt, 1);
  197. init_MUTEX_LOCKED(&ap->dead_sem);
  198. ap->chan.private = ap;
  199. ap->chan.ops = &sync_ops;
  200. ap->chan.mtu = PPP_MRU;
  201. ap->chan.hdrlen = 2; /* for A/C bytes */
  202. err = ppp_register_channel(&ap->chan);
  203. if (err)
  204. goto out_free;
  205. tty->disc_data = ap;
  206. tty->receive_room = 65536;
  207. return 0;
  208. out_free:
  209. kfree(ap);
  210. out:
  211. return err;
  212. }
  213. /*
  214. * Called when the tty is put into another line discipline
  215. * or it hangs up. We have to wait for any cpu currently
  216. * executing in any of the other ppp_synctty_* routines to
  217. * finish before we can call ppp_unregister_channel and free
  218. * the syncppp struct. This routine must be called from
  219. * process context, not interrupt or softirq context.
  220. */
  221. static void
  222. ppp_sync_close(struct tty_struct *tty)
  223. {
  224. struct syncppp *ap;
  225. write_lock_irq(&disc_data_lock);
  226. ap = tty->disc_data;
  227. tty->disc_data = NULL;
  228. write_unlock_irq(&disc_data_lock);
  229. if (ap == 0)
  230. return;
  231. /*
  232. * We have now ensured that nobody can start using ap from now
  233. * on, but we have to wait for all existing users to finish.
  234. * Note that ppp_unregister_channel ensures that no calls to
  235. * our channel ops (i.e. ppp_sync_send/ioctl) are in progress
  236. * by the time it returns.
  237. */
  238. if (!atomic_dec_and_test(&ap->refcnt))
  239. down(&ap->dead_sem);
  240. tasklet_kill(&ap->tsk);
  241. ppp_unregister_channel(&ap->chan);
  242. skb_queue_purge(&ap->rqueue);
  243. if (ap->tpkt != 0)
  244. kfree_skb(ap->tpkt);
  245. kfree(ap);
  246. }
  247. /*
  248. * Called on tty hangup in process context.
  249. *
  250. * Wait for I/O to driver to complete and unregister PPP channel.
  251. * This is already done by the close routine, so just call that.
  252. */
  253. static int ppp_sync_hangup(struct tty_struct *tty)
  254. {
  255. ppp_sync_close(tty);
  256. return 0;
  257. }
  258. /*
  259. * Read does nothing - no data is ever available this way.
  260. * Pppd reads and writes packets via /dev/ppp instead.
  261. */
  262. static ssize_t
  263. ppp_sync_read(struct tty_struct *tty, struct file *file,
  264. unsigned char __user *buf, size_t count)
  265. {
  266. return -EAGAIN;
  267. }
  268. /*
  269. * Write on the tty does nothing, the packets all come in
  270. * from the ppp generic stuff.
  271. */
  272. static ssize_t
  273. ppp_sync_write(struct tty_struct *tty, struct file *file,
  274. const unsigned char *buf, size_t count)
  275. {
  276. return -EAGAIN;
  277. }
  278. static int
  279. ppp_synctty_ioctl(struct tty_struct *tty, struct file *file,
  280. unsigned int cmd, unsigned long arg)
  281. {
  282. struct syncppp *ap = sp_get(tty);
  283. int __user *p = (int __user *)arg;
  284. int err, val;
  285. if (ap == 0)
  286. return -ENXIO;
  287. err = -EFAULT;
  288. switch (cmd) {
  289. case PPPIOCGCHAN:
  290. err = -ENXIO;
  291. if (ap == 0)
  292. break;
  293. err = -EFAULT;
  294. if (put_user(ppp_channel_index(&ap->chan), p))
  295. break;
  296. err = 0;
  297. break;
  298. case PPPIOCGUNIT:
  299. err = -ENXIO;
  300. if (ap == 0)
  301. break;
  302. err = -EFAULT;
  303. if (put_user(ppp_unit_number(&ap->chan), p))
  304. break;
  305. err = 0;
  306. break;
  307. case TCGETS:
  308. case TCGETA:
  309. err = n_tty_ioctl(tty, file, cmd, arg);
  310. break;
  311. case TCFLSH:
  312. /* flush our buffers and the serial port's buffer */
  313. if (arg == TCIOFLUSH || arg == TCOFLUSH)
  314. ppp_sync_flush_output(ap);
  315. err = n_tty_ioctl(tty, file, cmd, arg);
  316. break;
  317. case FIONREAD:
  318. val = 0;
  319. if (put_user(val, p))
  320. break;
  321. err = 0;
  322. break;
  323. default:
  324. err = -ENOIOCTLCMD;
  325. }
  326. sp_put(ap);
  327. return err;
  328. }
  329. /* No kernel lock - fine */
  330. static unsigned int
  331. ppp_sync_poll(struct tty_struct *tty, struct file *file, poll_table *wait)
  332. {
  333. return 0;
  334. }
  335. /*
  336. * This can now be called from hard interrupt level as well
  337. * as soft interrupt level or mainline.
  338. */
  339. static void
  340. ppp_sync_receive(struct tty_struct *tty, const unsigned char *buf,
  341. char *cflags, int count)
  342. {
  343. struct syncppp *ap = sp_get(tty);
  344. unsigned long flags;
  345. if (ap == 0)
  346. return;
  347. spin_lock_irqsave(&ap->recv_lock, flags);
  348. ppp_sync_input(ap, buf, cflags, count);
  349. spin_unlock_irqrestore(&ap->recv_lock, flags);
  350. if (!skb_queue_empty(&ap->rqueue))
  351. tasklet_schedule(&ap->tsk);
  352. sp_put(ap);
  353. if (test_and_clear_bit(TTY_THROTTLED, &tty->flags)
  354. && tty->driver->unthrottle)
  355. tty->driver->unthrottle(tty);
  356. }
  357. static void
  358. ppp_sync_wakeup(struct tty_struct *tty)
  359. {
  360. struct syncppp *ap = sp_get(tty);
  361. clear_bit(TTY_DO_WRITE_WAKEUP, &tty->flags);
  362. if (ap == 0)
  363. return;
  364. set_bit(XMIT_WAKEUP, &ap->xmit_flags);
  365. tasklet_schedule(&ap->tsk);
  366. sp_put(ap);
  367. }
  368. static struct tty_ldisc ppp_sync_ldisc = {
  369. .owner = THIS_MODULE,
  370. .magic = TTY_LDISC_MAGIC,
  371. .name = "pppsync",
  372. .open = ppp_sync_open,
  373. .close = ppp_sync_close,
  374. .hangup = ppp_sync_hangup,
  375. .read = ppp_sync_read,
  376. .write = ppp_sync_write,
  377. .ioctl = ppp_synctty_ioctl,
  378. .poll = ppp_sync_poll,
  379. .receive_buf = ppp_sync_receive,
  380. .write_wakeup = ppp_sync_wakeup,
  381. };
  382. static int __init
  383. ppp_sync_init(void)
  384. {
  385. int err;
  386. err = tty_register_ldisc(N_SYNC_PPP, &ppp_sync_ldisc);
  387. if (err != 0)
  388. printk(KERN_ERR "PPP_sync: error %d registering line disc.\n",
  389. err);
  390. return err;
  391. }
  392. /*
  393. * The following routines provide the PPP channel interface.
  394. */
  395. static int
  396. ppp_sync_ioctl(struct ppp_channel *chan, unsigned int cmd, unsigned long arg)
  397. {
  398. struct syncppp *ap = chan->private;
  399. int err, val;
  400. u32 accm[8];
  401. void __user *argp = (void __user *)arg;
  402. u32 __user *p = argp;
  403. err = -EFAULT;
  404. switch (cmd) {
  405. case PPPIOCGFLAGS:
  406. val = ap->flags | ap->rbits;
  407. if (put_user(val, (int __user *) argp))
  408. break;
  409. err = 0;
  410. break;
  411. case PPPIOCSFLAGS:
  412. if (get_user(val, (int __user *) argp))
  413. break;
  414. ap->flags = val & ~SC_RCV_BITS;
  415. spin_lock_irq(&ap->recv_lock);
  416. ap->rbits = val & SC_RCV_BITS;
  417. spin_unlock_irq(&ap->recv_lock);
  418. err = 0;
  419. break;
  420. case PPPIOCGASYNCMAP:
  421. if (put_user(ap->xaccm[0], p))
  422. break;
  423. err = 0;
  424. break;
  425. case PPPIOCSASYNCMAP:
  426. if (get_user(ap->xaccm[0], p))
  427. break;
  428. err = 0;
  429. break;
  430. case PPPIOCGRASYNCMAP:
  431. if (put_user(ap->raccm, p))
  432. break;
  433. err = 0;
  434. break;
  435. case PPPIOCSRASYNCMAP:
  436. if (get_user(ap->raccm, p))
  437. break;
  438. err = 0;
  439. break;
  440. case PPPIOCGXASYNCMAP:
  441. if (copy_to_user(argp, ap->xaccm, sizeof(ap->xaccm)))
  442. break;
  443. err = 0;
  444. break;
  445. case PPPIOCSXASYNCMAP:
  446. if (copy_from_user(accm, argp, sizeof(accm)))
  447. break;
  448. accm[2] &= ~0x40000000U; /* can't escape 0x5e */
  449. accm[3] |= 0x60000000U; /* must escape 0x7d, 0x7e */
  450. memcpy(ap->xaccm, accm, sizeof(ap->xaccm));
  451. err = 0;
  452. break;
  453. case PPPIOCGMRU:
  454. if (put_user(ap->mru, (int __user *) argp))
  455. break;
  456. err = 0;
  457. break;
  458. case PPPIOCSMRU:
  459. if (get_user(val, (int __user *) argp))
  460. break;
  461. if (val < PPP_MRU)
  462. val = PPP_MRU;
  463. ap->mru = val;
  464. err = 0;
  465. break;
  466. default:
  467. err = -ENOTTY;
  468. }
  469. return err;
  470. }
  471. /*
  472. * This is called at softirq level to deliver received packets
  473. * to the ppp_generic code, and to tell the ppp_generic code
  474. * if we can accept more output now.
  475. */
  476. static void ppp_sync_process(unsigned long arg)
  477. {
  478. struct syncppp *ap = (struct syncppp *) arg;
  479. struct sk_buff *skb;
  480. /* process received packets */
  481. while ((skb = skb_dequeue(&ap->rqueue)) != NULL) {
  482. if (skb->len == 0) {
  483. /* zero length buffers indicate error */
  484. ppp_input_error(&ap->chan, 0);
  485. kfree_skb(skb);
  486. }
  487. else
  488. ppp_input(&ap->chan, skb);
  489. }
  490. /* try to push more stuff out */
  491. if (test_bit(XMIT_WAKEUP, &ap->xmit_flags) && ppp_sync_push(ap))
  492. ppp_output_wakeup(&ap->chan);
  493. }
  494. /*
  495. * Procedures for encapsulation and framing.
  496. */
  497. struct sk_buff*
  498. ppp_sync_txmunge(struct syncppp *ap, struct sk_buff *skb)
  499. {
  500. int proto;
  501. unsigned char *data;
  502. int islcp;
  503. data = skb->data;
  504. proto = (data[0] << 8) + data[1];
  505. /* LCP packets with codes between 1 (configure-request)
  506. * and 7 (code-reject) must be sent as though no options
  507. * have been negotiated.
  508. */
  509. islcp = proto == PPP_LCP && 1 <= data[2] && data[2] <= 7;
  510. /* compress protocol field if option enabled */
  511. if (data[0] == 0 && (ap->flags & SC_COMP_PROT) && !islcp)
  512. skb_pull(skb,1);
  513. /* prepend address/control fields if necessary */
  514. if ((ap->flags & SC_COMP_AC) == 0 || islcp) {
  515. if (skb_headroom(skb) < 2) {
  516. struct sk_buff *npkt = dev_alloc_skb(skb->len + 2);
  517. if (npkt == NULL) {
  518. kfree_skb(skb);
  519. return NULL;
  520. }
  521. skb_reserve(npkt,2);
  522. memcpy(skb_put(npkt,skb->len), skb->data, skb->len);
  523. kfree_skb(skb);
  524. skb = npkt;
  525. }
  526. skb_push(skb,2);
  527. skb->data[0] = PPP_ALLSTATIONS;
  528. skb->data[1] = PPP_UI;
  529. }
  530. ap->last_xmit = jiffies;
  531. if (skb && ap->flags & SC_LOG_OUTPKT)
  532. ppp_print_buffer ("send buffer", skb->data, skb->len);
  533. return skb;
  534. }
  535. /*
  536. * Transmit-side routines.
  537. */
  538. /*
  539. * Send a packet to the peer over an sync tty line.
  540. * Returns 1 iff the packet was accepted.
  541. * If the packet was not accepted, we will call ppp_output_wakeup
  542. * at some later time.
  543. */
  544. static int
  545. ppp_sync_send(struct ppp_channel *chan, struct sk_buff *skb)
  546. {
  547. struct syncppp *ap = chan->private;
  548. ppp_sync_push(ap);
  549. if (test_and_set_bit(XMIT_FULL, &ap->xmit_flags))
  550. return 0; /* already full */
  551. skb = ppp_sync_txmunge(ap, skb);
  552. if (skb != NULL)
  553. ap->tpkt = skb;
  554. else
  555. clear_bit(XMIT_FULL, &ap->xmit_flags);
  556. ppp_sync_push(ap);
  557. return 1;
  558. }
  559. /*
  560. * Push as much data as possible out to the tty.
  561. */
  562. static int
  563. ppp_sync_push(struct syncppp *ap)
  564. {
  565. int sent, done = 0;
  566. struct tty_struct *tty = ap->tty;
  567. int tty_stuffed = 0;
  568. if (!spin_trylock_bh(&ap->xmit_lock))
  569. return 0;
  570. for (;;) {
  571. if (test_and_clear_bit(XMIT_WAKEUP, &ap->xmit_flags))
  572. tty_stuffed = 0;
  573. if (!tty_stuffed && ap->tpkt != 0) {
  574. set_bit(TTY_DO_WRITE_WAKEUP, &tty->flags);
  575. sent = tty->driver->write(tty, ap->tpkt->data, ap->tpkt->len);
  576. if (sent < 0)
  577. goto flush; /* error, e.g. loss of CD */
  578. if (sent < ap->tpkt->len) {
  579. tty_stuffed = 1;
  580. } else {
  581. kfree_skb(ap->tpkt);
  582. ap->tpkt = NULL;
  583. clear_bit(XMIT_FULL, &ap->xmit_flags);
  584. done = 1;
  585. }
  586. continue;
  587. }
  588. /* haven't made any progress */
  589. spin_unlock_bh(&ap->xmit_lock);
  590. if (!(test_bit(XMIT_WAKEUP, &ap->xmit_flags)
  591. || (!tty_stuffed && ap->tpkt != 0)))
  592. break;
  593. if (!spin_trylock_bh(&ap->xmit_lock))
  594. break;
  595. }
  596. return done;
  597. flush:
  598. if (ap->tpkt != 0) {
  599. kfree_skb(ap->tpkt);
  600. ap->tpkt = NULL;
  601. clear_bit(XMIT_FULL, &ap->xmit_flags);
  602. done = 1;
  603. }
  604. spin_unlock_bh(&ap->xmit_lock);
  605. return done;
  606. }
  607. /*
  608. * Flush output from our internal buffers.
  609. * Called for the TCFLSH ioctl.
  610. */
  611. static void
  612. ppp_sync_flush_output(struct syncppp *ap)
  613. {
  614. int done = 0;
  615. spin_lock_bh(&ap->xmit_lock);
  616. if (ap->tpkt != NULL) {
  617. kfree_skb(ap->tpkt);
  618. ap->tpkt = NULL;
  619. clear_bit(XMIT_FULL, &ap->xmit_flags);
  620. done = 1;
  621. }
  622. spin_unlock_bh(&ap->xmit_lock);
  623. if (done)
  624. ppp_output_wakeup(&ap->chan);
  625. }
  626. /*
  627. * Receive-side routines.
  628. */
  629. /* called when the tty driver has data for us.
  630. *
  631. * Data is frame oriented: each call to ppp_sync_input is considered
  632. * a whole frame. If the 1st flag byte is non-zero then the whole
  633. * frame is considered to be in error and is tossed.
  634. */
  635. static void
  636. ppp_sync_input(struct syncppp *ap, const unsigned char *buf,
  637. char *flags, int count)
  638. {
  639. struct sk_buff *skb;
  640. unsigned char *p;
  641. if (count == 0)
  642. return;
  643. if (ap->flags & SC_LOG_INPKT)
  644. ppp_print_buffer ("receive buffer", buf, count);
  645. /* stuff the chars in the skb */
  646. if ((skb = dev_alloc_skb(ap->mru + PPP_HDRLEN + 2)) == 0) {
  647. printk(KERN_ERR "PPPsync: no memory (input pkt)\n");
  648. goto err;
  649. }
  650. /* Try to get the payload 4-byte aligned */
  651. if (buf[0] != PPP_ALLSTATIONS)
  652. skb_reserve(skb, 2 + (buf[0] & 1));
  653. if (flags != 0 && *flags) {
  654. /* error flag set, ignore frame */
  655. goto err;
  656. } else if (count > skb_tailroom(skb)) {
  657. /* packet overflowed MRU */
  658. goto err;
  659. }
  660. p = skb_put(skb, count);
  661. memcpy(p, buf, count);
  662. /* strip address/control field if present */
  663. p = skb->data;
  664. if (p[0] == PPP_ALLSTATIONS && p[1] == PPP_UI) {
  665. /* chop off address/control */
  666. if (skb->len < 3)
  667. goto err;
  668. p = skb_pull(skb, 2);
  669. }
  670. /* decompress protocol field if compressed */
  671. if (p[0] & 1) {
  672. /* protocol is compressed */
  673. skb_push(skb, 1)[0] = 0;
  674. } else if (skb->len < 2)
  675. goto err;
  676. /* queue the frame to be processed */
  677. skb_queue_tail(&ap->rqueue, skb);
  678. return;
  679. err:
  680. /* queue zero length packet as error indication */
  681. if (skb || (skb = dev_alloc_skb(0))) {
  682. skb_trim(skb, 0);
  683. skb_queue_tail(&ap->rqueue, skb);
  684. }
  685. }
  686. static void __exit
  687. ppp_sync_cleanup(void)
  688. {
  689. if (tty_unregister_ldisc(N_SYNC_PPP) != 0)
  690. printk(KERN_ERR "failed to unregister Sync PPP line discipline\n");
  691. }
  692. module_init(ppp_sync_init);
  693. module_exit(ppp_sync_cleanup);
  694. MODULE_LICENSE("GPL");
  695. MODULE_ALIAS_LDISC(N_SYNC_PPP);