ppp_tty.c revision 1.11 1 1.11 christos /* $NetBSD: ppp_tty.c,v 1.11 1997/03/12 20:27:01 christos Exp $ */
2 1.11 christos /* Id: ppp_tty.c,v 1.3 1996/07/01 01:04:11 paulus Exp */
3 1.1 paulus
4 1.1 paulus /*
5 1.1 paulus * ppp_tty.c - Point-to-Point Protocol (PPP) driver for asynchronous
6 1.1 paulus * tty devices.
7 1.1 paulus *
8 1.1 paulus * Copyright (c) 1989 Carnegie Mellon University.
9 1.1 paulus * All rights reserved.
10 1.1 paulus *
11 1.1 paulus * Redistribution and use in source and binary forms are permitted
12 1.1 paulus * provided that the above copyright notice and this paragraph are
13 1.1 paulus * duplicated in all such forms and that any documentation,
14 1.1 paulus * advertising materials, and other materials related to such
15 1.1 paulus * distribution and use acknowledge that the software was developed
16 1.1 paulus * by Carnegie Mellon University. The name of the
17 1.1 paulus * University may not be used to endorse or promote products derived
18 1.1 paulus * from this software without specific prior written permission.
19 1.1 paulus * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR
20 1.1 paulus * IMPLIED WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED
21 1.1 paulus * WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR A PARTICULAR PURPOSE.
22 1.1 paulus *
23 1.1 paulus * Drew D. Perkins
24 1.1 paulus * Carnegie Mellon University
25 1.1 paulus * 4910 Forbes Ave.
26 1.1 paulus * Pittsburgh, PA 15213
27 1.1 paulus * (412) 268-8576
28 1.1 paulus * ddp (at) andrew.cmu.edu
29 1.1 paulus *
30 1.1 paulus * Based on:
31 1.1 paulus * @(#)if_sl.c 7.6.1.2 (Berkeley) 2/15/89
32 1.1 paulus *
33 1.1 paulus * Copyright (c) 1987 Regents of the University of California.
34 1.1 paulus * All rights reserved.
35 1.1 paulus *
36 1.1 paulus * Redistribution and use in source and binary forms are permitted
37 1.1 paulus * provided that the above copyright notice and this paragraph are
38 1.1 paulus * duplicated in all such forms and that any documentation,
39 1.1 paulus * advertising materials, and other materials related to such
40 1.1 paulus * distribution and use acknowledge that the software was developed
41 1.1 paulus * by the University of California, Berkeley. The name of the
42 1.1 paulus * University may not be used to endorse or promote products derived
43 1.1 paulus * from this software without specific prior written permission.
44 1.1 paulus * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR
45 1.1 paulus * IMPLIED WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED
46 1.1 paulus * WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR A PARTICULAR PURPOSE.
47 1.1 paulus *
48 1.1 paulus * Serial Line interface
49 1.1 paulus *
50 1.1 paulus * Rick Adams
51 1.1 paulus * Center for Seismic Studies
52 1.1 paulus * 1300 N 17th Street, Suite 1450
53 1.1 paulus * Arlington, Virginia 22209
54 1.1 paulus * (703)276-7900
55 1.1 paulus * rick (at) seismo.ARPA
56 1.1 paulus * seismo!rick
57 1.1 paulus *
58 1.1 paulus * Pounded on heavily by Chris Torek (chris (at) mimsy.umd.edu, umcp-cs!chris).
59 1.1 paulus * Converted to 4.3BSD Beta by Chris Torek.
60 1.1 paulus * Other changes made at Berkeley, based in part on code by Kirk Smith.
61 1.1 paulus *
62 1.1 paulus * Converted to 4.3BSD+ 386BSD by Brad Parker (brad (at) cayman.com)
63 1.1 paulus * Added VJ tcp header compression; more unified ioctls
64 1.1 paulus *
65 1.1 paulus * Extensively modified by Paul Mackerras (paulus (at) cs.anu.edu.au).
66 1.1 paulus * Cleaned up a lot of the mbuf-related code to fix bugs that
67 1.1 paulus * caused system crashes and packet corruption. Changed pppstart
68 1.11 christos * so that it doesn't just give up with a "collision" if the whole
69 1.1 paulus * packet doesn't fit in the output ring buffer.
70 1.1 paulus *
71 1.1 paulus * Added priority queueing for interactive IP packets, following
72 1.1 paulus * the model of if_sl.c, plus hooks for bpf.
73 1.1 paulus * Paul Mackerras (paulus (at) cs.anu.edu.au).
74 1.1 paulus */
75 1.1 paulus
76 1.1 paulus /* from if_sl.c,v 1.11 84/10/04 12:54:47 rick Exp */
77 1.1 paulus /* from NetBSD: if_ppp.c,v 1.15.2.2 1994/07/28 05:17:58 cgd Exp */
78 1.1 paulus
79 1.1 paulus #include "ppp.h"
80 1.1 paulus #if NPPP > 0
81 1.1 paulus
82 1.1 paulus #define VJC
83 1.1 paulus #define PPP_COMPRESS
84 1.1 paulus
85 1.1 paulus #include <sys/param.h>
86 1.1 paulus #include <sys/proc.h>
87 1.1 paulus #include <sys/mbuf.h>
88 1.1 paulus #include <sys/dkstat.h>
89 1.1 paulus #include <sys/socket.h>
90 1.1 paulus #include <sys/ioctl.h>
91 1.1 paulus #include <sys/file.h>
92 1.1 paulus #include <sys/tty.h>
93 1.1 paulus #include <sys/kernel.h>
94 1.1 paulus #include <sys/conf.h>
95 1.1 paulus #include <sys/vnode.h>
96 1.4 christos #include <sys/systm.h>
97 1.1 paulus
98 1.1 paulus #include <net/if.h>
99 1.1 paulus #include <net/if_types.h>
100 1.1 paulus
101 1.1 paulus #ifdef VJC
102 1.1 paulus #include <netinet/in.h>
103 1.1 paulus #include <netinet/in_systm.h>
104 1.1 paulus #include <netinet/ip.h>
105 1.1 paulus #include <net/slcompress.h>
106 1.1 paulus #endif
107 1.1 paulus
108 1.11 christos #ifdef PPP_FILTER
109 1.5 paulus #include <net/bpf.h>
110 1.11 christos #endif
111 1.1 paulus #include <net/ppp_defs.h>
112 1.1 paulus #include <net/if_ppp.h>
113 1.1 paulus #include <net/if_pppvar.h>
114 1.1 paulus
115 1.1 paulus int pppopen __P((dev_t dev, struct tty *tp));
116 1.1 paulus int pppclose __P((struct tty *tp, int flag));
117 1.1 paulus int pppread __P((struct tty *tp, struct uio *uio, int flag));
118 1.1 paulus int pppwrite __P((struct tty *tp, struct uio *uio, int flag));
119 1.1 paulus int ppptioctl __P((struct tty *tp, u_long cmd, caddr_t data, int flag,
120 1.1 paulus struct proc *));
121 1.1 paulus int pppinput __P((int c, struct tty *tp));
122 1.1 paulus int pppstart __P((struct tty *tp));
123 1.1 paulus
124 1.1 paulus static u_int16_t pppfcs __P((u_int16_t fcs, u_char *cp, int len));
125 1.1 paulus static void pppasyncstart __P((struct ppp_softc *));
126 1.1 paulus static void pppasyncctlp __P((struct ppp_softc *));
127 1.1 paulus static void pppasyncrelinq __P((struct ppp_softc *));
128 1.1 paulus static void ppp_timeout __P((void *));
129 1.1 paulus static void pppgetm __P((struct ppp_softc *sc));
130 1.1 paulus static void pppdumpb __P((u_char *b, int l));
131 1.1 paulus static void ppplogchar __P((struct ppp_softc *, int));
132 1.1 paulus
133 1.1 paulus /*
134 1.1 paulus * Some useful mbuf macros not in mbuf.h.
135 1.1 paulus */
136 1.1 paulus #define M_IS_CLUSTER(m) ((m)->m_flags & M_EXT)
137 1.1 paulus
138 1.1 paulus #define M_DATASTART(m) \
139 1.1 paulus (M_IS_CLUSTER(m) ? (m)->m_ext.ext_buf : \
140 1.1 paulus (m)->m_flags & M_PKTHDR ? (m)->m_pktdat : (m)->m_dat)
141 1.1 paulus
142 1.1 paulus #define M_DATASIZE(m) \
143 1.1 paulus (M_IS_CLUSTER(m) ? (m)->m_ext.ext_size : \
144 1.1 paulus (m)->m_flags & M_PKTHDR ? MHLEN: MLEN)
145 1.1 paulus
146 1.1 paulus /*
147 1.1 paulus * Does c need to be escaped?
148 1.1 paulus */
149 1.1 paulus #define ESCAPE_P(c) (sc->sc_asyncmap[(c) >> 5] & (1 << ((c) & 0x1F)))
150 1.1 paulus
151 1.1 paulus /*
152 1.1 paulus * Procedures for using an async tty interface for PPP.
153 1.1 paulus */
154 1.1 paulus
155 1.1 paulus /* This is a NetBSD-1.0 or later kernel. */
156 1.1 paulus #define CCOUNT(q) ((q)->c_cc)
157 1.1 paulus
158 1.11 christos #define PPP_LOWAT 100 /* Process more output when < LOWAT on queue */
159 1.1 paulus #define PPP_HIWAT 400 /* Don't start a new packet if HIWAT on que */
160 1.1 paulus
161 1.1 paulus /*
162 1.1 paulus * Line specific open routine for async tty devices.
163 1.1 paulus * Attach the given tty to the first available ppp unit.
164 1.1 paulus * Called from device open routine or ttioctl.
165 1.1 paulus */
166 1.1 paulus /* ARGSUSED */
167 1.1 paulus int
168 1.1 paulus pppopen(dev, tp)
169 1.1 paulus dev_t dev;
170 1.1 paulus register struct tty *tp;
171 1.1 paulus {
172 1.1 paulus struct proc *p = curproc; /* XXX */
173 1.1 paulus register struct ppp_softc *sc;
174 1.4 christos int error, s;
175 1.1 paulus
176 1.4 christos if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
177 1.1 paulus return (error);
178 1.1 paulus
179 1.1 paulus s = spltty();
180 1.1 paulus
181 1.1 paulus if (tp->t_line == PPPDISC) {
182 1.1 paulus sc = (struct ppp_softc *) tp->t_sc;
183 1.1 paulus if (sc != NULL && sc->sc_devp == (void *) tp) {
184 1.1 paulus splx(s);
185 1.1 paulus return (0);
186 1.1 paulus }
187 1.1 paulus }
188 1.1 paulus
189 1.1 paulus if ((sc = pppalloc(p->p_pid)) == NULL) {
190 1.1 paulus splx(s);
191 1.1 paulus return ENXIO;
192 1.1 paulus }
193 1.1 paulus
194 1.1 paulus if (sc->sc_relinq)
195 1.1 paulus (*sc->sc_relinq)(sc); /* get previous owner to relinquish the unit */
196 1.1 paulus
197 1.1 paulus sc->sc_ilen = 0;
198 1.1 paulus sc->sc_m = NULL;
199 1.1 paulus bzero(sc->sc_asyncmap, sizeof(sc->sc_asyncmap));
200 1.1 paulus sc->sc_asyncmap[0] = 0xffffffff;
201 1.1 paulus sc->sc_asyncmap[3] = 0x60000000;
202 1.1 paulus sc->sc_rasyncmap = 0;
203 1.1 paulus sc->sc_devp = (void *) tp;
204 1.1 paulus sc->sc_start = pppasyncstart;
205 1.1 paulus sc->sc_ctlp = pppasyncctlp;
206 1.1 paulus sc->sc_relinq = pppasyncrelinq;
207 1.1 paulus sc->sc_outm = NULL;
208 1.1 paulus pppgetm(sc);
209 1.1 paulus sc->sc_if.if_flags |= IFF_RUNNING;
210 1.3 mycroft sc->sc_if.if_baudrate = tp->t_ospeed;
211 1.1 paulus
212 1.1 paulus tp->t_sc = (caddr_t) sc;
213 1.1 paulus ttyflush(tp, FREAD | FWRITE);
214 1.1 paulus
215 1.1 paulus splx(s);
216 1.1 paulus return (0);
217 1.1 paulus }
218 1.1 paulus
219 1.1 paulus /*
220 1.1 paulus * Line specific close routine, called from device close routine
221 1.1 paulus * and from ttioctl.
222 1.1 paulus * Detach the tty from the ppp unit.
223 1.1 paulus * Mimics part of ttyclose().
224 1.1 paulus */
225 1.1 paulus int
226 1.1 paulus pppclose(tp, flag)
227 1.1 paulus struct tty *tp;
228 1.1 paulus int flag;
229 1.1 paulus {
230 1.1 paulus register struct ppp_softc *sc;
231 1.1 paulus int s;
232 1.1 paulus
233 1.1 paulus s = spltty();
234 1.5 paulus ttyflush(tp, FREAD|FWRITE);
235 1.1 paulus tp->t_line = 0;
236 1.1 paulus sc = (struct ppp_softc *) tp->t_sc;
237 1.1 paulus if (sc != NULL) {
238 1.1 paulus tp->t_sc = NULL;
239 1.1 paulus if (tp == (struct tty *) sc->sc_devp) {
240 1.1 paulus pppasyncrelinq(sc);
241 1.1 paulus pppdealloc(sc);
242 1.1 paulus }
243 1.1 paulus }
244 1.1 paulus splx(s);
245 1.1 paulus return 0;
246 1.1 paulus }
247 1.1 paulus
248 1.1 paulus /*
249 1.1 paulus * Relinquish the interface unit to another device.
250 1.1 paulus */
251 1.1 paulus static void
252 1.1 paulus pppasyncrelinq(sc)
253 1.1 paulus struct ppp_softc *sc;
254 1.1 paulus {
255 1.1 paulus int s;
256 1.1 paulus
257 1.1 paulus s = spltty();
258 1.1 paulus if (sc->sc_outm) {
259 1.1 paulus m_freem(sc->sc_outm);
260 1.1 paulus sc->sc_outm = NULL;
261 1.1 paulus }
262 1.1 paulus if (sc->sc_m) {
263 1.1 paulus m_freem(sc->sc_m);
264 1.1 paulus sc->sc_m = NULL;
265 1.1 paulus }
266 1.1 paulus if (sc->sc_flags & SC_TIMEOUT) {
267 1.1 paulus untimeout(ppp_timeout, (void *) sc);
268 1.1 paulus sc->sc_flags &= ~SC_TIMEOUT;
269 1.1 paulus }
270 1.1 paulus splx(s);
271 1.1 paulus }
272 1.1 paulus
273 1.1 paulus /*
274 1.1 paulus * Line specific (tty) read routine.
275 1.1 paulus */
276 1.1 paulus int
277 1.1 paulus pppread(tp, uio, flag)
278 1.1 paulus register struct tty *tp;
279 1.1 paulus struct uio *uio;
280 1.1 paulus int flag;
281 1.1 paulus {
282 1.1 paulus register struct ppp_softc *sc = (struct ppp_softc *)tp->t_sc;
283 1.1 paulus struct mbuf *m, *m0;
284 1.1 paulus register int s;
285 1.1 paulus int error = 0;
286 1.1 paulus
287 1.1 paulus if (sc == NULL)
288 1.1 paulus return 0;
289 1.1 paulus /*
290 1.1 paulus * Loop waiting for input, checking that nothing disasterous
291 1.1 paulus * happens in the meantime.
292 1.1 paulus */
293 1.1 paulus s = spltty();
294 1.1 paulus for (;;) {
295 1.1 paulus if (tp != (struct tty *) sc->sc_devp || tp->t_line != PPPDISC) {
296 1.1 paulus splx(s);
297 1.1 paulus return 0;
298 1.1 paulus }
299 1.1 paulus if (sc->sc_inq.ifq_head != NULL)
300 1.1 paulus break;
301 1.1 paulus if ((tp->t_state & TS_CARR_ON) == 0 && (tp->t_cflag & CLOCAL) == 0
302 1.1 paulus && (tp->t_state & TS_ISOPEN)) {
303 1.1 paulus splx(s);
304 1.1 paulus return 0; /* end of file */
305 1.1 paulus }
306 1.1 paulus if (tp->t_state & TS_ASYNC || flag & IO_NDELAY) {
307 1.1 paulus splx(s);
308 1.1 paulus return (EWOULDBLOCK);
309 1.1 paulus }
310 1.1 paulus error = ttysleep(tp, (caddr_t)&tp->t_rawq, TTIPRI|PCATCH, ttyin, 0);
311 1.1 paulus if (error) {
312 1.1 paulus splx(s);
313 1.1 paulus return error;
314 1.1 paulus }
315 1.1 paulus }
316 1.1 paulus
317 1.1 paulus /* Pull place-holder byte out of canonical queue */
318 1.1 paulus getc(&tp->t_canq);
319 1.1 paulus
320 1.1 paulus /* Get the packet from the input queue */
321 1.1 paulus IF_DEQUEUE(&sc->sc_inq, m0);
322 1.1 paulus splx(s);
323 1.1 paulus
324 1.1 paulus for (m = m0; m && uio->uio_resid; m = m->m_next)
325 1.4 christos if ((error = uiomove(mtod(m, u_char *), m->m_len, uio)) != 0)
326 1.1 paulus break;
327 1.1 paulus m_freem(m0);
328 1.1 paulus return (error);
329 1.1 paulus }
330 1.1 paulus
331 1.1 paulus /*
332 1.1 paulus * Line specific (tty) write routine.
333 1.1 paulus */
334 1.1 paulus int
335 1.1 paulus pppwrite(tp, uio, flag)
336 1.1 paulus register struct tty *tp;
337 1.1 paulus struct uio *uio;
338 1.1 paulus int flag;
339 1.1 paulus {
340 1.1 paulus register struct ppp_softc *sc = (struct ppp_softc *)tp->t_sc;
341 1.1 paulus struct mbuf *m, *m0, **mp;
342 1.1 paulus struct sockaddr dst;
343 1.1 paulus int len, error;
344 1.1 paulus
345 1.1 paulus if ((tp->t_state & TS_CARR_ON) == 0 && (tp->t_cflag & CLOCAL) == 0)
346 1.1 paulus return 0; /* wrote 0 bytes */
347 1.1 paulus if (tp->t_line != PPPDISC)
348 1.1 paulus return (EINVAL);
349 1.1 paulus if (sc == NULL || tp != (struct tty *) sc->sc_devp)
350 1.1 paulus return EIO;
351 1.1 paulus if (uio->uio_resid > sc->sc_if.if_mtu + PPP_HDRLEN ||
352 1.1 paulus uio->uio_resid < PPP_HDRLEN)
353 1.1 paulus return (EMSGSIZE);
354 1.1 paulus for (mp = &m0; uio->uio_resid; mp = &m->m_next) {
355 1.1 paulus MGET(m, M_WAIT, MT_DATA);
356 1.11 christos if ((*mp = m) == NULL) {
357 1.11 christos m_freem(m0);
358 1.11 christos return (ENOBUFS);
359 1.11 christos }
360 1.1 paulus m->m_len = 0;
361 1.1 paulus if (uio->uio_resid >= MCLBYTES / 2)
362 1.1 paulus MCLGET(m, M_DONTWAIT);
363 1.1 paulus len = M_TRAILINGSPACE(m);
364 1.1 paulus if (len > uio->uio_resid)
365 1.1 paulus len = uio->uio_resid;
366 1.4 christos if ((error = uiomove(mtod(m, u_char *), len, uio)) != 0) {
367 1.1 paulus m_freem(m0);
368 1.1 paulus return (error);
369 1.1 paulus }
370 1.1 paulus m->m_len = len;
371 1.1 paulus }
372 1.1 paulus dst.sa_family = AF_UNSPEC;
373 1.1 paulus bcopy(mtod(m0, u_char *), dst.sa_data, PPP_HDRLEN);
374 1.1 paulus m0->m_data += PPP_HDRLEN;
375 1.1 paulus m0->m_len -= PPP_HDRLEN;
376 1.11 christos return ((*sc->sc_if.if_output)(&sc->sc_if, m0, &dst, (struct rtentry *)0));
377 1.1 paulus }
378 1.1 paulus
379 1.1 paulus /*
380 1.1 paulus * Line specific (tty) ioctl routine.
381 1.1 paulus * This discipline requires that tty device drivers call
382 1.1 paulus * the line specific l_ioctl routine from their ioctl routines.
383 1.1 paulus */
384 1.1 paulus /* ARGSUSED */
385 1.1 paulus int
386 1.1 paulus ppptioctl(tp, cmd, data, flag, p)
387 1.1 paulus struct tty *tp;
388 1.1 paulus u_long cmd;
389 1.1 paulus caddr_t data;
390 1.1 paulus int flag;
391 1.1 paulus struct proc *p;
392 1.1 paulus {
393 1.1 paulus struct ppp_softc *sc = (struct ppp_softc *) tp->t_sc;
394 1.1 paulus int error, s;
395 1.1 paulus
396 1.1 paulus if (sc == NULL || tp != (struct tty *) sc->sc_devp)
397 1.1 paulus return -1;
398 1.1 paulus
399 1.1 paulus error = 0;
400 1.1 paulus switch (cmd) {
401 1.1 paulus case PPPIOCSASYNCMAP:
402 1.4 christos if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
403 1.1 paulus break;
404 1.1 paulus sc->sc_asyncmap[0] = *(u_int *)data;
405 1.1 paulus break;
406 1.1 paulus
407 1.1 paulus case PPPIOCGASYNCMAP:
408 1.1 paulus *(u_int *)data = sc->sc_asyncmap[0];
409 1.1 paulus break;
410 1.1 paulus
411 1.1 paulus case PPPIOCSRASYNCMAP:
412 1.4 christos if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
413 1.1 paulus break;
414 1.1 paulus sc->sc_rasyncmap = *(u_int *)data;
415 1.1 paulus break;
416 1.1 paulus
417 1.1 paulus case PPPIOCGRASYNCMAP:
418 1.1 paulus *(u_int *)data = sc->sc_rasyncmap;
419 1.1 paulus break;
420 1.1 paulus
421 1.1 paulus case PPPIOCSXASYNCMAP:
422 1.4 christos if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
423 1.1 paulus break;
424 1.1 paulus s = spltty();
425 1.1 paulus bcopy(data, sc->sc_asyncmap, sizeof(sc->sc_asyncmap));
426 1.1 paulus sc->sc_asyncmap[1] = 0; /* mustn't escape 0x20 - 0x3f */
427 1.1 paulus sc->sc_asyncmap[2] &= ~0x40000000; /* mustn't escape 0x5e */
428 1.1 paulus sc->sc_asyncmap[3] |= 0x60000000; /* must escape 0x7d, 0x7e */
429 1.1 paulus splx(s);
430 1.1 paulus break;
431 1.1 paulus
432 1.1 paulus case PPPIOCGXASYNCMAP:
433 1.1 paulus bcopy(sc->sc_asyncmap, data, sizeof(sc->sc_asyncmap));
434 1.1 paulus break;
435 1.1 paulus
436 1.1 paulus default:
437 1.1 paulus error = pppioctl(sc, cmd, data, flag, p);
438 1.1 paulus if (error == 0 && cmd == PPPIOCSMRU)
439 1.1 paulus pppgetm(sc);
440 1.1 paulus }
441 1.1 paulus
442 1.1 paulus return error;
443 1.1 paulus }
444 1.1 paulus
445 1.1 paulus /*
446 1.1 paulus * FCS lookup table as calculated by genfcstab.
447 1.1 paulus */
448 1.1 paulus static u_int16_t fcstab[256] = {
449 1.1 paulus 0x0000, 0x1189, 0x2312, 0x329b, 0x4624, 0x57ad, 0x6536, 0x74bf,
450 1.1 paulus 0x8c48, 0x9dc1, 0xaf5a, 0xbed3, 0xca6c, 0xdbe5, 0xe97e, 0xf8f7,
451 1.1 paulus 0x1081, 0x0108, 0x3393, 0x221a, 0x56a5, 0x472c, 0x75b7, 0x643e,
452 1.1 paulus 0x9cc9, 0x8d40, 0xbfdb, 0xae52, 0xdaed, 0xcb64, 0xf9ff, 0xe876,
453 1.1 paulus 0x2102, 0x308b, 0x0210, 0x1399, 0x6726, 0x76af, 0x4434, 0x55bd,
454 1.1 paulus 0xad4a, 0xbcc3, 0x8e58, 0x9fd1, 0xeb6e, 0xfae7, 0xc87c, 0xd9f5,
455 1.1 paulus 0x3183, 0x200a, 0x1291, 0x0318, 0x77a7, 0x662e, 0x54b5, 0x453c,
456 1.1 paulus 0xbdcb, 0xac42, 0x9ed9, 0x8f50, 0xfbef, 0xea66, 0xd8fd, 0xc974,
457 1.1 paulus 0x4204, 0x538d, 0x6116, 0x709f, 0x0420, 0x15a9, 0x2732, 0x36bb,
458 1.1 paulus 0xce4c, 0xdfc5, 0xed5e, 0xfcd7, 0x8868, 0x99e1, 0xab7a, 0xbaf3,
459 1.1 paulus 0x5285, 0x430c, 0x7197, 0x601e, 0x14a1, 0x0528, 0x37b3, 0x263a,
460 1.1 paulus 0xdecd, 0xcf44, 0xfddf, 0xec56, 0x98e9, 0x8960, 0xbbfb, 0xaa72,
461 1.1 paulus 0x6306, 0x728f, 0x4014, 0x519d, 0x2522, 0x34ab, 0x0630, 0x17b9,
462 1.1 paulus 0xef4e, 0xfec7, 0xcc5c, 0xddd5, 0xa96a, 0xb8e3, 0x8a78, 0x9bf1,
463 1.1 paulus 0x7387, 0x620e, 0x5095, 0x411c, 0x35a3, 0x242a, 0x16b1, 0x0738,
464 1.1 paulus 0xffcf, 0xee46, 0xdcdd, 0xcd54, 0xb9eb, 0xa862, 0x9af9, 0x8b70,
465 1.1 paulus 0x8408, 0x9581, 0xa71a, 0xb693, 0xc22c, 0xd3a5, 0xe13e, 0xf0b7,
466 1.1 paulus 0x0840, 0x19c9, 0x2b52, 0x3adb, 0x4e64, 0x5fed, 0x6d76, 0x7cff,
467 1.1 paulus 0x9489, 0x8500, 0xb79b, 0xa612, 0xd2ad, 0xc324, 0xf1bf, 0xe036,
468 1.1 paulus 0x18c1, 0x0948, 0x3bd3, 0x2a5a, 0x5ee5, 0x4f6c, 0x7df7, 0x6c7e,
469 1.1 paulus 0xa50a, 0xb483, 0x8618, 0x9791, 0xe32e, 0xf2a7, 0xc03c, 0xd1b5,
470 1.1 paulus 0x2942, 0x38cb, 0x0a50, 0x1bd9, 0x6f66, 0x7eef, 0x4c74, 0x5dfd,
471 1.1 paulus 0xb58b, 0xa402, 0x9699, 0x8710, 0xf3af, 0xe226, 0xd0bd, 0xc134,
472 1.1 paulus 0x39c3, 0x284a, 0x1ad1, 0x0b58, 0x7fe7, 0x6e6e, 0x5cf5, 0x4d7c,
473 1.1 paulus 0xc60c, 0xd785, 0xe51e, 0xf497, 0x8028, 0x91a1, 0xa33a, 0xb2b3,
474 1.1 paulus 0x4a44, 0x5bcd, 0x6956, 0x78df, 0x0c60, 0x1de9, 0x2f72, 0x3efb,
475 1.1 paulus 0xd68d, 0xc704, 0xf59f, 0xe416, 0x90a9, 0x8120, 0xb3bb, 0xa232,
476 1.1 paulus 0x5ac5, 0x4b4c, 0x79d7, 0x685e, 0x1ce1, 0x0d68, 0x3ff3, 0x2e7a,
477 1.1 paulus 0xe70e, 0xf687, 0xc41c, 0xd595, 0xa12a, 0xb0a3, 0x8238, 0x93b1,
478 1.1 paulus 0x6b46, 0x7acf, 0x4854, 0x59dd, 0x2d62, 0x3ceb, 0x0e70, 0x1ff9,
479 1.1 paulus 0xf78f, 0xe606, 0xd49d, 0xc514, 0xb1ab, 0xa022, 0x92b9, 0x8330,
480 1.1 paulus 0x7bc7, 0x6a4e, 0x58d5, 0x495c, 0x3de3, 0x2c6a, 0x1ef1, 0x0f78
481 1.1 paulus };
482 1.1 paulus
483 1.1 paulus /*
484 1.1 paulus * Calculate a new FCS given the current FCS and the new data.
485 1.1 paulus */
486 1.1 paulus static u_int16_t
487 1.1 paulus pppfcs(fcs, cp, len)
488 1.1 paulus register u_int16_t fcs;
489 1.1 paulus register u_char *cp;
490 1.1 paulus register int len;
491 1.1 paulus {
492 1.1 paulus while (len--)
493 1.1 paulus fcs = PPP_FCS(fcs, *cp++);
494 1.1 paulus return (fcs);
495 1.1 paulus }
496 1.1 paulus
497 1.1 paulus /*
498 1.11 christos * This gets called at splsoftnet from if_ppp.c at various times
499 1.11 christos * when there is data ready to be sent.
500 1.1 paulus */
501 1.1 paulus static void
502 1.1 paulus pppasyncstart(sc)
503 1.1 paulus register struct ppp_softc *sc;
504 1.1 paulus {
505 1.1 paulus register struct tty *tp = (struct tty *) sc->sc_devp;
506 1.1 paulus register struct mbuf *m;
507 1.1 paulus register int len;
508 1.1 paulus register u_char *start, *stop, *cp;
509 1.4 christos int n, ndone, done, idle;
510 1.1 paulus struct mbuf *m2;
511 1.11 christos int s;
512 1.1 paulus
513 1.1 paulus idle = 0;
514 1.1 paulus while (CCOUNT(&tp->t_outq) < PPP_HIWAT) {
515 1.1 paulus /*
516 1.1 paulus * See if we have an existing packet partly sent.
517 1.1 paulus * If not, get a new packet and start sending it.
518 1.1 paulus */
519 1.1 paulus m = sc->sc_outm;
520 1.1 paulus if (m == NULL) {
521 1.1 paulus /*
522 1.1 paulus * Get another packet to be sent.
523 1.1 paulus */
524 1.1 paulus m = ppp_dequeue(sc);
525 1.1 paulus if (m == NULL) {
526 1.1 paulus idle = 1;
527 1.1 paulus break;
528 1.1 paulus }
529 1.1 paulus
530 1.1 paulus /*
531 1.1 paulus * The extra PPP_FLAG will start up a new packet, and thus
532 1.1 paulus * will flush any accumulated garbage. We do this whenever
533 1.1 paulus * the line may have been idle for some time.
534 1.1 paulus */
535 1.1 paulus if (CCOUNT(&tp->t_outq) == 0) {
536 1.5 paulus ++sc->sc_stats.ppp_obytes;
537 1.1 paulus (void) putc(PPP_FLAG, &tp->t_outq);
538 1.1 paulus }
539 1.1 paulus
540 1.1 paulus /* Calculate the FCS for the first mbuf's worth. */
541 1.1 paulus sc->sc_outfcs = pppfcs(PPP_INITFCS, mtod(m, u_char *), m->m_len);
542 1.3 mycroft sc->sc_if.if_lastchange = time;
543 1.1 paulus }
544 1.1 paulus
545 1.1 paulus for (;;) {
546 1.1 paulus start = mtod(m, u_char *);
547 1.1 paulus len = m->m_len;
548 1.1 paulus stop = start + len;
549 1.1 paulus while (len > 0) {
550 1.1 paulus /*
551 1.1 paulus * Find out how many bytes in the string we can
552 1.1 paulus * handle without doing something special.
553 1.1 paulus */
554 1.1 paulus for (cp = start; cp < stop; cp++)
555 1.1 paulus if (ESCAPE_P(*cp))
556 1.1 paulus break;
557 1.1 paulus n = cp - start;
558 1.1 paulus if (n) {
559 1.1 paulus /* NetBSD (0.9 or later), 4.3-Reno or similar. */
560 1.1 paulus ndone = n - b_to_q(start, n, &tp->t_outq);
561 1.1 paulus len -= ndone;
562 1.1 paulus start += ndone;
563 1.5 paulus sc->sc_stats.ppp_obytes += ndone;
564 1.1 paulus
565 1.1 paulus if (ndone < n)
566 1.1 paulus break; /* packet doesn't fit */
567 1.1 paulus }
568 1.1 paulus /*
569 1.1 paulus * If there are characters left in the mbuf,
570 1.11 christos * the first one must be special.
571 1.1 paulus * Put it out in a different form.
572 1.1 paulus */
573 1.1 paulus if (len) {
574 1.11 christos s = spltty();
575 1.1 paulus if (putc(PPP_ESCAPE, &tp->t_outq))
576 1.1 paulus break;
577 1.1 paulus if (putc(*start ^ PPP_TRANS, &tp->t_outq)) {
578 1.1 paulus (void) unputc(&tp->t_outq);
579 1.11 christos splx(s);
580 1.1 paulus break;
581 1.1 paulus }
582 1.11 christos splx(s);
583 1.5 paulus sc->sc_stats.ppp_obytes += 2;
584 1.1 paulus start++;
585 1.1 paulus len--;
586 1.1 paulus }
587 1.1 paulus }
588 1.1 paulus
589 1.1 paulus /*
590 1.1 paulus * If we didn't empty this mbuf, remember where we're up to.
591 1.1 paulus * If we emptied the last mbuf, try to add the FCS and closing
592 1.1 paulus * flag, and if we can't, leave sc_outm pointing to m, but with
593 1.1 paulus * m->m_len == 0, to remind us to output the FCS and flag later.
594 1.1 paulus */
595 1.1 paulus done = len == 0;
596 1.1 paulus if (done && m->m_next == NULL) {
597 1.1 paulus u_char *p, *q;
598 1.1 paulus int c;
599 1.1 paulus u_char endseq[8];
600 1.1 paulus
601 1.1 paulus /*
602 1.1 paulus * We may have to escape the bytes in the FCS.
603 1.1 paulus */
604 1.1 paulus p = endseq;
605 1.1 paulus c = ~sc->sc_outfcs & 0xFF;
606 1.1 paulus if (ESCAPE_P(c)) {
607 1.1 paulus *p++ = PPP_ESCAPE;
608 1.1 paulus *p++ = c ^ PPP_TRANS;
609 1.1 paulus } else
610 1.1 paulus *p++ = c;
611 1.1 paulus c = (~sc->sc_outfcs >> 8) & 0xFF;
612 1.1 paulus if (ESCAPE_P(c)) {
613 1.1 paulus *p++ = PPP_ESCAPE;
614 1.1 paulus *p++ = c ^ PPP_TRANS;
615 1.1 paulus } else
616 1.1 paulus *p++ = c;
617 1.1 paulus *p++ = PPP_FLAG;
618 1.1 paulus
619 1.1 paulus /*
620 1.1 paulus * Try to output the FCS and flag. If the bytes
621 1.1 paulus * don't all fit, back out.
622 1.1 paulus */
623 1.11 christos s = spltty();
624 1.1 paulus for (q = endseq; q < p; ++q)
625 1.1 paulus if (putc(*q, &tp->t_outq)) {
626 1.1 paulus done = 0;
627 1.1 paulus for (; q > endseq; --q)
628 1.1 paulus unputc(&tp->t_outq);
629 1.1 paulus break;
630 1.1 paulus }
631 1.11 christos splx(s);
632 1.11 christos if (done)
633 1.11 christos sc->sc_stats.ppp_obytes += q - endseq;
634 1.1 paulus }
635 1.1 paulus
636 1.1 paulus if (!done) {
637 1.1 paulus /* remember where we got to */
638 1.1 paulus m->m_data = start;
639 1.1 paulus m->m_len = len;
640 1.1 paulus break;
641 1.1 paulus }
642 1.1 paulus
643 1.1 paulus /* Finished with this mbuf; free it and move on. */
644 1.1 paulus MFREE(m, m2);
645 1.1 paulus m = m2;
646 1.1 paulus if (m == NULL) {
647 1.1 paulus /* Finished a packet */
648 1.1 paulus break;
649 1.1 paulus }
650 1.1 paulus sc->sc_outfcs = pppfcs(sc->sc_outfcs, mtod(m, u_char *), m->m_len);
651 1.1 paulus }
652 1.1 paulus
653 1.1 paulus /*
654 1.11 christos * If m == NULL, we have finished a packet.
655 1.11 christos * If m != NULL, we've either done as much work this time
656 1.11 christos * as we need to, or else we've filled up the output queue.
657 1.1 paulus */
658 1.1 paulus sc->sc_outm = m;
659 1.1 paulus if (m)
660 1.1 paulus break;
661 1.1 paulus }
662 1.1 paulus
663 1.11 christos /* Call pppstart to start output again if necessary. */
664 1.11 christos s = spltty();
665 1.11 christos pppstart(tp);
666 1.11 christos
667 1.11 christos /*
668 1.11 christos * This timeout is needed for operation on a pseudo-tty,
669 1.11 christos * because the pty code doesn't call pppstart after it has
670 1.11 christos * drained the t_outq.
671 1.11 christos */
672 1.11 christos if (!idle && (sc->sc_flags & SC_TIMEOUT) == 0) {
673 1.11 christos timeout(ppp_timeout, (void *) sc, 1);
674 1.11 christos sc->sc_flags |= SC_TIMEOUT;
675 1.11 christos }
676 1.11 christos
677 1.11 christos splx(s);
678 1.11 christos }
679 1.11 christos
680 1.11 christos /*
681 1.11 christos * This gets called when a received packet is placed on
682 1.11 christos * the inq, at splsoftnet.
683 1.11 christos */
684 1.11 christos static void
685 1.11 christos pppasyncctlp(sc)
686 1.11 christos struct ppp_softc *sc;
687 1.11 christos {
688 1.11 christos struct tty *tp;
689 1.11 christos int s;
690 1.11 christos
691 1.11 christos /* Put a placeholder byte in canq for ttselect()/ttnread(). */
692 1.11 christos s = spltty();
693 1.11 christos tp = (struct tty *) sc->sc_devp;
694 1.11 christos putc(0, &tp->t_canq);
695 1.11 christos ttwakeup(tp);
696 1.11 christos splx(s);
697 1.11 christos }
698 1.11 christos
699 1.11 christos /*
700 1.11 christos * Start output on async tty interface. If the transmit queue
701 1.11 christos * has drained sufficiently, arrange for pppasyncstart to be
702 1.11 christos * called later at splsoftnet.
703 1.11 christos * Called at spltty or higher.
704 1.11 christos */
705 1.11 christos int
706 1.11 christos pppstart(tp)
707 1.11 christos register struct tty *tp;
708 1.11 christos {
709 1.11 christos register struct ppp_softc *sc = (struct ppp_softc *) tp->t_sc;
710 1.11 christos
711 1.1 paulus /*
712 1.1 paulus * If there is stuff in the output queue, send it now.
713 1.1 paulus * We are being called in lieu of ttstart and must do what it would.
714 1.1 paulus */
715 1.1 paulus if (tp->t_oproc != NULL)
716 1.1 paulus (*tp->t_oproc)(tp);
717 1.1 paulus
718 1.1 paulus /*
719 1.11 christos * If the transmit queue has drained and the tty has not hung up
720 1.11 christos * or been disconnected from the ppp unit, then tell if_ppp.c that
721 1.11 christos * we need more output.
722 1.1 paulus */
723 1.11 christos if (CCOUNT(&tp->t_outq) < PPP_LOWAT
724 1.11 christos && !((tp->t_state & TS_CARR_ON) == 0 && (tp->t_cflag & CLOCAL) == 0)
725 1.11 christos && sc != NULL && tp == (struct tty *) sc->sc_devp) {
726 1.11 christos ppp_restart(sc);
727 1.1 paulus }
728 1.1 paulus
729 1.1 paulus return 0;
730 1.1 paulus }
731 1.1 paulus
732 1.1 paulus /*
733 1.1 paulus * Timeout routine - try to start some more output.
734 1.1 paulus */
735 1.1 paulus static void
736 1.1 paulus ppp_timeout(x)
737 1.1 paulus void *x;
738 1.1 paulus {
739 1.1 paulus struct ppp_softc *sc = (struct ppp_softc *) x;
740 1.1 paulus struct tty *tp = (struct tty *) sc->sc_devp;
741 1.1 paulus int s;
742 1.1 paulus
743 1.1 paulus s = spltty();
744 1.1 paulus sc->sc_flags &= ~SC_TIMEOUT;
745 1.1 paulus pppstart(tp);
746 1.1 paulus splx(s);
747 1.1 paulus }
748 1.1 paulus
749 1.1 paulus /*
750 1.1 paulus * Allocate enough mbuf to handle current MRU.
751 1.1 paulus */
752 1.1 paulus static void
753 1.1 paulus pppgetm(sc)
754 1.1 paulus register struct ppp_softc *sc;
755 1.1 paulus {
756 1.1 paulus struct mbuf *m, **mp;
757 1.1 paulus int len;
758 1.1 paulus
759 1.1 paulus mp = &sc->sc_m;
760 1.1 paulus for (len = sc->sc_mru + PPP_HDRLEN + PPP_FCSLEN; len > 0; ){
761 1.1 paulus if ((m = *mp) == NULL) {
762 1.1 paulus MGETHDR(m, M_DONTWAIT, MT_DATA);
763 1.1 paulus if (m == NULL)
764 1.1 paulus break;
765 1.1 paulus *mp = m;
766 1.1 paulus MCLGET(m, M_DONTWAIT);
767 1.1 paulus }
768 1.1 paulus len -= M_DATASIZE(m);
769 1.1 paulus mp = &m->m_next;
770 1.1 paulus }
771 1.1 paulus }
772 1.1 paulus
773 1.1 paulus /*
774 1.1 paulus * tty interface receiver interrupt.
775 1.1 paulus */
776 1.1 paulus static unsigned paritytab[8] = {
777 1.1 paulus 0x96696996, 0x69969669, 0x69969669, 0x96696996,
778 1.1 paulus 0x69969669, 0x96696996, 0x96696996, 0x69969669
779 1.1 paulus };
780 1.1 paulus
781 1.1 paulus int
782 1.1 paulus pppinput(c, tp)
783 1.1 paulus int c;
784 1.1 paulus register struct tty *tp;
785 1.1 paulus {
786 1.1 paulus register struct ppp_softc *sc;
787 1.1 paulus struct mbuf *m;
788 1.1 paulus int ilen, s;
789 1.1 paulus
790 1.1 paulus sc = (struct ppp_softc *) tp->t_sc;
791 1.1 paulus if (sc == NULL || tp != (struct tty *) sc->sc_devp)
792 1.1 paulus return 0;
793 1.1 paulus
794 1.1 paulus ++tk_nin;
795 1.5 paulus ++sc->sc_stats.ppp_ibytes;
796 1.1 paulus
797 1.1 paulus if (c & TTY_FE) {
798 1.1 paulus /* framing error or overrun on this char - abort packet */
799 1.1 paulus if (sc->sc_flags & SC_DEBUG)
800 1.10 christos printf("%s: bad char %x\n", sc->sc_if.if_xname, c);
801 1.1 paulus goto flush;
802 1.1 paulus }
803 1.1 paulus
804 1.1 paulus c &= 0xff;
805 1.1 paulus
806 1.5 paulus /*
807 1.5 paulus * Handle software flow control of output.
808 1.5 paulus */
809 1.5 paulus if (tp->t_iflag & IXON) {
810 1.5 paulus if (c == tp->t_cc[VSTOP] && tp->t_cc[VSTOP] != _POSIX_VDISABLE) {
811 1.5 paulus if ((tp->t_state & TS_TTSTOP) == 0) {
812 1.5 paulus tp->t_state |= TS_TTSTOP;
813 1.5 paulus (*cdevsw[major(tp->t_dev)].d_stop)(tp, 0);
814 1.5 paulus }
815 1.5 paulus return 0;
816 1.5 paulus }
817 1.5 paulus if (c == tp->t_cc[VSTART] && tp->t_cc[VSTART] != _POSIX_VDISABLE) {
818 1.5 paulus tp->t_state &= ~TS_TTSTOP;
819 1.5 paulus if (tp->t_oproc != NULL)
820 1.5 paulus (*tp->t_oproc)(tp);
821 1.5 paulus return 0;
822 1.5 paulus }
823 1.5 paulus }
824 1.5 paulus
825 1.11 christos s = spltty();
826 1.1 paulus if (c & 0x80)
827 1.1 paulus sc->sc_flags |= SC_RCV_B7_1;
828 1.1 paulus else
829 1.1 paulus sc->sc_flags |= SC_RCV_B7_0;
830 1.1 paulus if (paritytab[c >> 5] & (1 << (c & 0x1F)))
831 1.1 paulus sc->sc_flags |= SC_RCV_ODDP;
832 1.1 paulus else
833 1.1 paulus sc->sc_flags |= SC_RCV_EVNP;
834 1.11 christos splx(s);
835 1.1 paulus
836 1.1 paulus if (sc->sc_flags & SC_LOG_RAWIN)
837 1.1 paulus ppplogchar(sc, c);
838 1.1 paulus
839 1.1 paulus if (c == PPP_FLAG) {
840 1.1 paulus ilen = sc->sc_ilen;
841 1.1 paulus sc->sc_ilen = 0;
842 1.1 paulus
843 1.1 paulus if (sc->sc_rawin_count > 0)
844 1.1 paulus ppplogchar(sc, -1);
845 1.1 paulus
846 1.1 paulus /*
847 1.1 paulus * If SC_ESCAPED is set, then we've seen the packet
848 1.1 paulus * abort sequence "}~".
849 1.1 paulus */
850 1.1 paulus if (sc->sc_flags & (SC_FLUSH | SC_ESCAPED)
851 1.4 christos || (ilen > 0 && sc->sc_fcs != PPP_GOODFCS)) {
852 1.11 christos s = spltty();
853 1.1 paulus sc->sc_flags |= SC_PKTLOST; /* note the dropped packet */
854 1.1 paulus if ((sc->sc_flags & (SC_FLUSH | SC_ESCAPED)) == 0){
855 1.1 paulus if (sc->sc_flags & SC_DEBUG)
856 1.10 christos printf("%s: bad fcs %x\n", sc->sc_if.if_xname,
857 1.9 christos sc->sc_fcs);
858 1.1 paulus sc->sc_if.if_ierrors++;
859 1.5 paulus sc->sc_stats.ppp_ierrors++;
860 1.1 paulus } else
861 1.1 paulus sc->sc_flags &= ~(SC_FLUSH | SC_ESCAPED);
862 1.1 paulus splx(s);
863 1.1 paulus return 0;
864 1.1 paulus }
865 1.1 paulus
866 1.1 paulus if (ilen < PPP_HDRLEN + PPP_FCSLEN) {
867 1.1 paulus if (ilen) {
868 1.1 paulus if (sc->sc_flags & SC_DEBUG)
869 1.10 christos printf("%s: too short (%d)\n", sc->sc_if.if_xname, ilen);
870 1.11 christos s = spltty();
871 1.1 paulus sc->sc_if.if_ierrors++;
872 1.5 paulus sc->sc_stats.ppp_ierrors++;
873 1.1 paulus sc->sc_flags |= SC_PKTLOST;
874 1.11 christos splx(s);
875 1.1 paulus }
876 1.1 paulus return 0;
877 1.1 paulus }
878 1.1 paulus
879 1.1 paulus /*
880 1.1 paulus * Remove FCS trailer. Somewhat painful...
881 1.1 paulus */
882 1.1 paulus ilen -= 2;
883 1.1 paulus if (--sc->sc_mc->m_len == 0) {
884 1.1 paulus for (m = sc->sc_m; m->m_next != sc->sc_mc; m = m->m_next)
885 1.1 paulus ;
886 1.1 paulus sc->sc_mc = m;
887 1.1 paulus }
888 1.1 paulus sc->sc_mc->m_len--;
889 1.1 paulus
890 1.1 paulus /* excise this mbuf chain */
891 1.1 paulus m = sc->sc_m;
892 1.1 paulus sc->sc_m = sc->sc_mc->m_next;
893 1.1 paulus sc->sc_mc->m_next = NULL;
894 1.1 paulus
895 1.1 paulus ppppktin(sc, m, sc->sc_flags & SC_PKTLOST);
896 1.11 christos if (sc->sc_flags & SC_PKTLOST) {
897 1.11 christos s = spltty();
898 1.11 christos sc->sc_flags &= ~SC_PKTLOST;
899 1.11 christos splx(s);
900 1.11 christos }
901 1.1 paulus
902 1.1 paulus pppgetm(sc);
903 1.1 paulus return 0;
904 1.1 paulus }
905 1.1 paulus
906 1.1 paulus if (sc->sc_flags & SC_FLUSH) {
907 1.1 paulus if (sc->sc_flags & SC_LOG_FLUSH)
908 1.1 paulus ppplogchar(sc, c);
909 1.1 paulus return 0;
910 1.1 paulus }
911 1.1 paulus
912 1.11 christos if (c < 0x20 && (sc->sc_rasyncmap & (1 << c)))
913 1.1 paulus return 0;
914 1.1 paulus
915 1.11 christos s = spltty();
916 1.1 paulus if (sc->sc_flags & SC_ESCAPED) {
917 1.1 paulus sc->sc_flags &= ~SC_ESCAPED;
918 1.1 paulus c ^= PPP_TRANS;
919 1.1 paulus } else if (c == PPP_ESCAPE) {
920 1.1 paulus sc->sc_flags |= SC_ESCAPED;
921 1.1 paulus splx(s);
922 1.1 paulus return 0;
923 1.1 paulus }
924 1.11 christos splx(s);
925 1.1 paulus
926 1.1 paulus /*
927 1.1 paulus * Initialize buffer on first octet received.
928 1.1 paulus * First octet could be address or protocol (when compressing
929 1.1 paulus * address/control).
930 1.1 paulus * Second octet is control.
931 1.1 paulus * Third octet is first or second (when compressing protocol)
932 1.1 paulus * octet of protocol.
933 1.1 paulus * Fourth octet is second octet of protocol.
934 1.1 paulus */
935 1.1 paulus if (sc->sc_ilen == 0) {
936 1.1 paulus /* reset the first input mbuf */
937 1.1 paulus if (sc->sc_m == NULL) {
938 1.1 paulus pppgetm(sc);
939 1.1 paulus if (sc->sc_m == NULL) {
940 1.1 paulus if (sc->sc_flags & SC_DEBUG)
941 1.10 christos printf("%s: no input mbufs!\n", sc->sc_if.if_xname);
942 1.1 paulus goto flush;
943 1.1 paulus }
944 1.1 paulus }
945 1.1 paulus m = sc->sc_m;
946 1.1 paulus m->m_len = 0;
947 1.1 paulus m->m_data = M_DATASTART(sc->sc_m);
948 1.1 paulus sc->sc_mc = m;
949 1.1 paulus sc->sc_mp = mtod(m, char *);
950 1.1 paulus sc->sc_fcs = PPP_INITFCS;
951 1.1 paulus if (c != PPP_ALLSTATIONS) {
952 1.1 paulus if (sc->sc_flags & SC_REJ_COMP_AC) {
953 1.1 paulus if (sc->sc_flags & SC_DEBUG)
954 1.10 christos printf("%s: garbage received: 0x%x (need 0xFF)\n",
955 1.9 christos sc->sc_if.if_xname, c);
956 1.1 paulus goto flush;
957 1.1 paulus }
958 1.1 paulus *sc->sc_mp++ = PPP_ALLSTATIONS;
959 1.1 paulus *sc->sc_mp++ = PPP_UI;
960 1.1 paulus sc->sc_ilen += 2;
961 1.1 paulus m->m_len += 2;
962 1.1 paulus }
963 1.1 paulus }
964 1.1 paulus if (sc->sc_ilen == 1 && c != PPP_UI) {
965 1.1 paulus if (sc->sc_flags & SC_DEBUG)
966 1.10 christos printf("%s: missing UI (0x3), got 0x%x\n",
967 1.9 christos sc->sc_if.if_xname, c);
968 1.1 paulus goto flush;
969 1.1 paulus }
970 1.1 paulus if (sc->sc_ilen == 2 && (c & 1) == 1) {
971 1.1 paulus /* a compressed protocol */
972 1.1 paulus *sc->sc_mp++ = 0;
973 1.1 paulus sc->sc_ilen++;
974 1.1 paulus sc->sc_mc->m_len++;
975 1.1 paulus }
976 1.1 paulus if (sc->sc_ilen == 3 && (c & 1) == 0) {
977 1.1 paulus if (sc->sc_flags & SC_DEBUG)
978 1.10 christos printf("%s: bad protocol %x\n", sc->sc_if.if_xname,
979 1.9 christos (sc->sc_mp[-1] << 8) + c);
980 1.1 paulus goto flush;
981 1.1 paulus }
982 1.1 paulus
983 1.1 paulus /* packet beyond configured mru? */
984 1.1 paulus if (++sc->sc_ilen > sc->sc_mru + PPP_HDRLEN + PPP_FCSLEN) {
985 1.1 paulus if (sc->sc_flags & SC_DEBUG)
986 1.10 christos printf("%s: packet too big\n", sc->sc_if.if_xname);
987 1.1 paulus goto flush;
988 1.1 paulus }
989 1.1 paulus
990 1.1 paulus /* is this mbuf full? */
991 1.1 paulus m = sc->sc_mc;
992 1.1 paulus if (M_TRAILINGSPACE(m) <= 0) {
993 1.1 paulus if (m->m_next == NULL) {
994 1.1 paulus pppgetm(sc);
995 1.1 paulus if (m->m_next == NULL) {
996 1.1 paulus if (sc->sc_flags & SC_DEBUG)
997 1.10 christos printf("%s: too few input mbufs!\n", sc->sc_if.if_xname);
998 1.1 paulus goto flush;
999 1.1 paulus }
1000 1.1 paulus }
1001 1.1 paulus sc->sc_mc = m = m->m_next;
1002 1.1 paulus m->m_len = 0;
1003 1.1 paulus m->m_data = M_DATASTART(m);
1004 1.1 paulus sc->sc_mp = mtod(m, char *);
1005 1.1 paulus }
1006 1.1 paulus
1007 1.1 paulus ++m->m_len;
1008 1.1 paulus *sc->sc_mp++ = c;
1009 1.1 paulus sc->sc_fcs = PPP_FCS(sc->sc_fcs, c);
1010 1.1 paulus return 0;
1011 1.1 paulus
1012 1.1 paulus flush:
1013 1.1 paulus if (!(sc->sc_flags & SC_FLUSH)) {
1014 1.11 christos s = spltty();
1015 1.1 paulus sc->sc_if.if_ierrors++;
1016 1.5 paulus sc->sc_stats.ppp_ierrors++;
1017 1.1 paulus sc->sc_flags |= SC_FLUSH;
1018 1.11 christos splx(s);
1019 1.1 paulus if (sc->sc_flags & SC_LOG_FLUSH)
1020 1.1 paulus ppplogchar(sc, c);
1021 1.1 paulus }
1022 1.1 paulus return 0;
1023 1.1 paulus }
1024 1.1 paulus
1025 1.1 paulus #define MAX_DUMP_BYTES 128
1026 1.1 paulus
1027 1.1 paulus static void
1028 1.1 paulus ppplogchar(sc, c)
1029 1.1 paulus struct ppp_softc *sc;
1030 1.1 paulus int c;
1031 1.1 paulus {
1032 1.1 paulus if (c >= 0)
1033 1.1 paulus sc->sc_rawin[sc->sc_rawin_count++] = c;
1034 1.1 paulus if (sc->sc_rawin_count >= sizeof(sc->sc_rawin)
1035 1.4 christos || (c < 0 && sc->sc_rawin_count > 0)) {
1036 1.10 christos printf("%s input: ", sc->sc_if.if_xname);
1037 1.1 paulus pppdumpb(sc->sc_rawin, sc->sc_rawin_count);
1038 1.1 paulus sc->sc_rawin_count = 0;
1039 1.1 paulus }
1040 1.1 paulus }
1041 1.1 paulus
1042 1.1 paulus static void
1043 1.1 paulus pppdumpb(b, l)
1044 1.1 paulus u_char *b;
1045 1.1 paulus int l;
1046 1.1 paulus {
1047 1.1 paulus char buf[3*MAX_DUMP_BYTES+4];
1048 1.1 paulus char *bp = buf;
1049 1.1 paulus static char digits[] = "0123456789abcdef";
1050 1.1 paulus
1051 1.1 paulus while (l--) {
1052 1.1 paulus if (bp >= buf + sizeof(buf) - 3) {
1053 1.1 paulus *bp++ = '>';
1054 1.1 paulus break;
1055 1.1 paulus }
1056 1.1 paulus *bp++ = digits[*b >> 4]; /* convert byte to ascii hex */
1057 1.1 paulus *bp++ = digits[*b++ & 0xf];
1058 1.1 paulus *bp++ = ' ';
1059 1.1 paulus }
1060 1.1 paulus
1061 1.1 paulus *bp = 0;
1062 1.10 christos printf("%s\n", buf);
1063 1.1 paulus }
1064 1.1 paulus
1065 1.1 paulus #endif /* NPPP > 0 */
1066