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1 /*
2 * if_ppp.c - Point-to-Point Protocol (PPP) Asynchronous driver.
4 * Copyright (c) 1989 Carnegie Mellon University.
5 * All rights reserved.
7 * Redistribution and use in source and binary forms are permitted
8 * provided that the above copyright notice and this paragraph are
9 * duplicated in all such forms and that any documentation,
10 * advertising materials, and other materials related to such
11 * distribution and use acknowledge that the software was developed
12 * by Carnegie Mellon University. The name of the
13 * University may not be used to endorse or promote products derived
14 * from this software without specific prior written permission.
15 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR
16 * IMPLIED WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED
17 * WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR A PARTICULAR PURPOSE.
19 * Drew D. Perkins
20 * Carnegie Mellon University
21 * 4910 Forbes Ave.
22 * Pittsburgh, PA 15213
23 * (412) 268-8576
24 * ddp@andrew.cmu.edu
26 * Based on:
27 * @(#)if_sl.c 7.6.1.2 (Berkeley) 2/15/89
29 * Copyright (c) 1987 Regents of the University of California.
30 * All rights reserved.
32 * Redistribution and use in source and binary forms are permitted
33 * provided that the above copyright notice and this paragraph are
34 * duplicated in all such forms and that any documentation,
35 * advertising materials, and other materials related to such
36 * distribution and use acknowledge that the software was developed
37 * by the University of California, Berkeley. The name of the
38 * University may not be used to endorse or promote products derived
39 * from this software without specific prior written permission.
40 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR
41 * IMPLIED WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED
42 * WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR A PARTICULAR PURPOSE.
44 * Serial Line interface
46 * Rick Adams
47 * Center for Seismic Studies
48 * 1300 N 17th Street, Suite 1450
49 * Arlington, Virginia 22209
50 * (703)276-7900
51 * rick@seismo.ARPA
52 * seismo!rick
54 * Pounded on heavily by Chris Torek (chris@mimsy.umd.edu, umcp-cs!chris).
55 * Converted to 4.3BSD Beta by Chris Torek.
56 * Other changes made at Berkeley, based in part on code by Kirk Smith.
58 * Converted to 4.3BSD+ 386BSD by Brad Parker (brad@cayman.com)
59 * Added VJ tcp header compression; more unified ioctls
61 * Extensively modified by Paul Mackerras (paulus@cs.anu.edu.au).
62 * Cleaned up a lot of the mbuf-related code to fix bugs that
63 * caused system crashes and packet corruption. Changed pppstart
64 * so that it doesn't just give up with a collision if the whole
65 * packet doesn't fit in the output ring buffer.
67 * Added priority queueing for interactive IP packets, following
68 * the model of if_sl.c, plus hooks for bpf.
69 * Paul Mackerras (paulus@cs.anu.edu.au).
72 /* $FreeBSD: src/sys/net/if_ppp.c,v 1.67.2.4 2002/04/14 21:41:48 luigi Exp $ */
73 /* $DragonFly: src/sys/net/ppp/if_ppp.c,v 1.38 2008/05/14 11:59:23 sephe Exp $ */
74 /* from if_sl.c,v 1.11 84/10/04 12:54:47 rick Exp */
75 /* from NetBSD: if_ppp.c,v 1.15.2.2 1994/07/28 05:17:58 cgd Exp */
77 #include "use_ppp.h"
79 #include "opt_inet.h"
80 #include "opt_ipx.h"
81 #include "opt_ppp.h"
83 #ifdef INET
84 #define VJC
85 #endif
86 #define PPP_COMPRESS
88 #include <sys/param.h>
89 #include <sys/systm.h>
90 #include <sys/proc.h>
91 #include <sys/mbuf.h>
92 #include <sys/socket.h>
93 #include <sys/filio.h>
94 #include <sys/sockio.h>
95 #include <sys/kernel.h>
96 #include <sys/time.h>
97 #include <sys/malloc.h>
99 #include <sys/msgport2.h>
101 #include <net/if.h>
102 #include <net/if_types.h>
103 #include <net/ifq_var.h>
104 #include <net/netisr.h>
105 #include <net/bpf.h>
107 #ifdef INET
108 #include <netinet/in.h>
109 #include <netinet/in_systm.h>
110 #include <netinet/in_var.h>
111 #include <netinet/ip.h>
112 #endif
114 #ifdef IPX
115 #include <netproto/ipx/ipx.h>
116 #include <netproto/ipx/ipx_if.h>
117 #endif
119 #ifdef VJC
120 #include <net/slcompress.h>
121 #endif
123 #include "if_ppp.h"
124 #include "if_pppvar.h"
126 /* minimise diffs */
127 #ifndef splsoftnet
128 #define splsoftnet splnet
129 #endif
131 #ifdef PPP_COMPRESS
132 #define PACKETPTR struct mbuf *
133 #include <net/ppp_layer/ppp_comp.h>
134 #endif
136 struct ppp_softc ppp_softc[NPPP];
138 /* XXX layering violation */
139 extern void pppasyncattach (void *);
141 static void pppattach (void *);
142 PSEUDO_SET(pppattach, if_ppp);
144 static int pppsioctl (struct ifnet *ifp, u_long cmd, caddr_t data,
145 struct ucred *);
147 static void ppp_requeue (struct ppp_softc *);
148 static void ppp_ccp (struct ppp_softc *, struct mbuf *m, int rcvd);
149 static void ppp_ccp_closed (struct ppp_softc *);
150 static void ppp_inproc (struct ppp_softc *, struct mbuf *);
151 static void pppdumpm (struct mbuf *m0);
152 static void ppp_ifstart(struct ifnet *ifp);
155 * Some useful mbuf macros not in mbuf.h.
157 #define M_IS_CLUSTER(m) ((m)->m_flags & M_EXT)
159 #define M_DATASTART(m) \
160 (M_IS_CLUSTER(m) ? (m)->m_ext.ext_buf : \
161 (m)->m_flags & M_PKTHDR ? (m)->m_pktdat : (m)->m_dat)
163 #define M_DATASIZE(m) \
164 (M_IS_CLUSTER(m) ? (m)->m_ext.ext_size : \
165 (m)->m_flags & M_PKTHDR ? MHLEN: MLEN)
168 * We steal two bits in the mbuf m_flags, to mark high-priority packets
169 * for output, and received packets following lost/corrupted packets.
171 #define M_HIGHPRI M_PROTO2 /* output packet for sc_fastq */
172 #define M_ERRMARK M_PROTO3 /* steal a bit in mbuf m_flags */
175 #ifdef PPP_COMPRESS
177 * List of compressors we know about.
178 * We leave some space so maybe we can modload compressors.
181 extern struct compressor ppp_bsd_compress;
182 extern struct compressor ppp_deflate, ppp_deflate_draft;
184 static struct compressor *ppp_compressors[8] = {
185 #if DO_BSD_COMPRESS && defined(PPP_BSDCOMP)
186 &ppp_bsd_compress,
187 #endif
188 #if DO_DEFLATE && defined(PPP_DEFLATE)
189 &ppp_deflate,
190 &ppp_deflate_draft,
191 #endif
192 NULL
194 #endif /* PPP_COMPRESS */
197 * Software interrupt routine, called at spl[soft]net.
199 static void
200 pppintr(struct netmsg *msg)
202 struct mbuf *m;
203 struct ppp_softc *sc;
204 int i;
207 * Packets are never sent to this netisr so the message must always
208 * be replied. Interlock processing and notification by replying
209 * the message first.
211 lwkt_replymsg(&msg->nm_lmsg, 0);
213 sc = ppp_softc;
214 for (i = 0; i < NPPP; ++i, ++sc) {
215 lwkt_serialize_enter(sc->sc_if.if_serializer);
216 if (!(sc->sc_flags & SC_TBUSY)
217 && (!ifq_is_empty(&sc->sc_if.if_snd) || !IF_QEMPTY(&sc->sc_fastq))) {
218 sc->sc_flags |= SC_TBUSY;
219 (*sc->sc_start)(sc);
221 for (;;) {
222 IF_DEQUEUE(&sc->sc_rawq, m);
223 if (m == NULL)
224 break;
225 ppp_inproc(sc, m);
227 lwkt_serialize_exit(sc->sc_if.if_serializer);
232 * Called from boot code to establish ppp interfaces.
234 static void
235 pppattach(void *dummy)
237 struct ppp_softc *sc;
238 int i = 0;
240 for (sc = ppp_softc; i < NPPP; sc++) {
241 if_initname(&(sc->sc_if), "ppp", i++);
242 sc->sc_if.if_softc = sc;
243 sc->sc_if.if_mtu = PPP_MTU;
244 sc->sc_if.if_flags = IFF_POINTOPOINT | IFF_MULTICAST;
245 sc->sc_if.if_type = IFT_PPP;
246 sc->sc_if.if_hdrlen = PPP_HDRLEN;
247 sc->sc_if.if_ioctl = pppsioctl;
248 sc->sc_if.if_output = pppoutput;
249 sc->sc_if.if_start = ppp_ifstart;
250 ifq_set_maxlen(&sc->sc_if.if_snd, IFQ_MAXLEN);
251 ifq_set_ready(&sc->sc_if.if_snd);
252 sc->sc_inq.ifq_maxlen = IFQ_MAXLEN;
253 sc->sc_fastq.ifq_maxlen = IFQ_MAXLEN;
254 sc->sc_rawq.ifq_maxlen = IFQ_MAXLEN;
255 callout_init(&sc->sc_timeout);
256 if_attach(&sc->sc_if, NULL);
257 bpfattach(&sc->sc_if, DLT_PPP, PPP_HDRLEN);
259 netisr_register(NETISR_PPP, cpu0_portfn, pppintr);
261 * XXX layering violation - if_ppp can work over any lower level
262 * transport that cares to attach to it.
264 pppasyncattach(dummy);
268 * Allocate a ppp interface unit and initialize it.
270 struct ppp_softc *
271 pppalloc(struct thread *td)
273 int nppp, i;
274 struct ppp_softc *sc;
276 for (nppp = 0, sc = ppp_softc; nppp < NPPP; nppp++, sc++)
277 if (sc->sc_xfer == td) {
278 sc->sc_xfer = NULL;
279 return sc;
281 for (nppp = 0, sc = ppp_softc; nppp < NPPP; nppp++, sc++)
282 if (sc->sc_devp == NULL)
283 break;
284 if (nppp >= NPPP)
285 return NULL;
287 sc->sc_flags = 0;
288 sc->sc_mru = PPP_MRU;
289 sc->sc_relinq = NULL;
290 bzero((char *)&sc->sc_stats, sizeof(sc->sc_stats));
291 #ifdef VJC
292 MALLOC(sc->sc_comp, struct slcompress *, sizeof(struct slcompress),
293 M_DEVBUF, M_WAITOK);
294 sl_compress_init(sc->sc_comp, -1);
295 #endif
296 #ifdef PPP_COMPRESS
297 sc->sc_xc_state = NULL;
298 sc->sc_rc_state = NULL;
299 #endif /* PPP_COMPRESS */
300 for (i = 0; i < NUM_NP; ++i)
301 sc->sc_npmode[i] = NPMODE_ERROR;
302 sc->sc_npqueue = NULL;
303 sc->sc_npqtail = &sc->sc_npqueue;
304 sc->sc_last_sent = sc->sc_last_recv = time_second;
306 return sc;
310 * Deallocate a ppp unit. Must be called at splsoftnet or higher.
312 void
313 pppdealloc(struct ppp_softc *sc)
315 struct mbuf *m;
317 if_down(&sc->sc_if);
318 sc->sc_if.if_flags &= ~(IFF_UP|IFF_RUNNING);
319 getmicrotime(&sc->sc_if.if_lastchange);
320 sc->sc_devp = NULL;
321 sc->sc_xfer = NULL;
322 for (;;) {
323 IF_DEQUEUE(&sc->sc_rawq, m);
324 if (m == NULL)
325 break;
326 m_freem(m);
328 for (;;) {
329 IF_DEQUEUE(&sc->sc_inq, m);
330 if (m == NULL)
331 break;
332 m_freem(m);
334 for (;;) {
335 IF_DEQUEUE(&sc->sc_fastq, m);
336 if (m == NULL)
337 break;
338 m_freem(m);
340 while ((m = sc->sc_npqueue) != NULL) {
341 sc->sc_npqueue = m->m_nextpkt;
342 m_freem(m);
344 #ifdef PPP_COMPRESS
345 ppp_ccp_closed(sc);
346 sc->sc_xc_state = NULL;
347 sc->sc_rc_state = NULL;
348 #endif /* PPP_COMPRESS */
349 #ifdef PPP_FILTER
350 if (sc->sc_pass_filt.bf_insns != 0) {
351 kfree(sc->sc_pass_filt.bf_insns, M_DEVBUF);
352 sc->sc_pass_filt.bf_insns = 0;
353 sc->sc_pass_filt.bf_len = 0;
355 if (sc->sc_active_filt.bf_insns != 0) {
356 kfree(sc->sc_active_filt.bf_insns, M_DEVBUF);
357 sc->sc_active_filt.bf_insns = 0;
358 sc->sc_active_filt.bf_len = 0;
360 #endif /* PPP_FILTER */
361 #ifdef VJC
362 if (sc->sc_comp != 0) {
363 kfree(sc->sc_comp, M_DEVBUF);
364 sc->sc_comp = 0;
366 #endif
370 * Ioctl routine for generic ppp devices.
373 pppioctl(struct ppp_softc *sc, u_long cmd, caddr_t data,
374 int flag, struct ucred *cred)
376 int error, flags, mru, npx;
377 u_int nb;
378 struct ppp_option_data *odp;
379 struct compressor **cp;
380 struct npioctl *npi;
381 time_t t;
382 #ifdef PPP_FILTER
383 struct bpf_program *bp, *nbp;
384 struct bpf_insn *newcode, *oldcode;
385 int newcodelen;
386 #endif /* PPP_FILTER */
387 #ifdef PPP_COMPRESS
388 u_char ccp_option[CCP_MAX_OPTION_LENGTH];
389 #endif
391 switch (cmd) {
392 case FIONREAD:
393 *(int *)data = sc->sc_inq.ifq_len;
394 break;
396 case PPPIOCGUNIT:
397 *(int *)data = sc->sc_if.if_dunit;
398 break;
400 case PPPIOCGFLAGS:
401 *(u_int *)data = sc->sc_flags;
402 break;
404 case PPPIOCSFLAGS:
405 if ((error = suser_cred(cred, 0)) != 0)
406 return (error);
407 flags = *(int *)data & SC_MASK;
408 crit_enter();
409 #ifdef PPP_COMPRESS
410 if (sc->sc_flags & SC_CCP_OPEN && !(flags & SC_CCP_OPEN))
411 ppp_ccp_closed(sc);
412 #endif
413 sc->sc_flags = (sc->sc_flags & ~SC_MASK) | flags;
414 crit_exit();
415 break;
417 case PPPIOCSMRU:
418 if ((error = suser_cred(cred, 0)) != 0)
419 return (error);
420 mru = *(int *)data;
421 if (mru >= PPP_MRU && mru <= PPP_MAXMRU)
422 sc->sc_mru = mru;
423 break;
425 case PPPIOCGMRU:
426 *(int *)data = sc->sc_mru;
427 break;
429 #ifdef VJC
430 case PPPIOCSMAXCID:
431 if ((error = suser_cred(cred, 0)) != 0)
432 return (error);
433 if (sc->sc_comp) {
434 crit_enter();
435 sl_compress_init(sc->sc_comp, *(int *)data);
436 crit_exit();
438 break;
439 #endif
441 case PPPIOCXFERUNIT:
442 if ((error = suser_cred(cred, 0)) != 0)
443 return (error);
444 sc->sc_xfer = curthread;
445 break;
447 #ifdef PPP_COMPRESS
448 case PPPIOCSCOMPRESS:
449 if ((error = suser_cred(cred, 0)) != 0)
450 return (error);
451 odp = (struct ppp_option_data *) data;
452 nb = odp->length;
453 if (nb > sizeof(ccp_option))
454 nb = sizeof(ccp_option);
455 if ((error = copyin(odp->ptr, ccp_option, nb)) != 0)
456 return (error);
457 if (ccp_option[1] < 2) /* preliminary check on the length byte */
458 return (EINVAL);
459 for (cp = ppp_compressors; *cp != NULL; ++cp)
460 if ((*cp)->compress_proto == ccp_option[0]) {
462 * Found a handler for the protocol - try to allocate
463 * a compressor or decompressor.
465 error = 0;
466 if (odp->transmit) {
467 crit_enter();
468 if (sc->sc_xc_state != NULL)
469 (*sc->sc_xcomp->comp_free)(sc->sc_xc_state);
470 sc->sc_xcomp = *cp;
471 sc->sc_xc_state = (*cp)->comp_alloc(ccp_option, nb);
472 if (sc->sc_xc_state == NULL) {
473 if (sc->sc_flags & SC_DEBUG)
474 kprintf("%s: comp_alloc failed\n",
475 sc->sc_if.if_xname);
476 error = ENOBUFS;
478 sc->sc_flags &= ~SC_COMP_RUN;
479 crit_exit();
480 } else {
481 crit_enter();
482 if (sc->sc_rc_state != NULL)
483 (*sc->sc_rcomp->decomp_free)(sc->sc_rc_state);
484 sc->sc_rcomp = *cp;
485 sc->sc_rc_state = (*cp)->decomp_alloc(ccp_option, nb);
486 if (sc->sc_rc_state == NULL) {
487 if (sc->sc_flags & SC_DEBUG)
488 kprintf("%s: decomp_alloc failed\n",
489 sc->sc_if.if_xname);
490 error = ENOBUFS;
492 sc->sc_flags &= ~SC_DECOMP_RUN;
493 crit_exit();
495 return (error);
497 if (sc->sc_flags & SC_DEBUG)
498 kprintf("%s: no compressor for [%x %x %x], %x\n",
499 sc->sc_if.if_xname, ccp_option[0], ccp_option[1],
500 ccp_option[2], nb);
501 return (EINVAL); /* no handler found */
502 #endif /* PPP_COMPRESS */
504 case PPPIOCGNPMODE:
505 case PPPIOCSNPMODE:
506 npi = (struct npioctl *) data;
507 switch (npi->protocol) {
508 case PPP_IP:
509 npx = NP_IP;
510 break;
511 default:
512 return EINVAL;
514 if (cmd == PPPIOCGNPMODE) {
515 npi->mode = sc->sc_npmode[npx];
516 } else {
517 if ((error = suser_cred(cred, 0)) != 0)
518 return (error);
519 if (npi->mode != sc->sc_npmode[npx]) {
520 crit_enter();
521 sc->sc_npmode[npx] = npi->mode;
522 if (npi->mode != NPMODE_QUEUE) {
523 ppp_requeue(sc);
524 (*sc->sc_start)(sc);
526 crit_exit();
529 break;
531 case PPPIOCGIDLE:
532 crit_enter();
533 t = time_second;
534 ((struct ppp_idle *)data)->xmit_idle = t - sc->sc_last_sent;
535 ((struct ppp_idle *)data)->recv_idle = t - sc->sc_last_recv;
536 crit_exit();
537 break;
539 #ifdef PPP_FILTER
540 case PPPIOCSPASS:
541 case PPPIOCSACTIVE:
542 nbp = (struct bpf_program *) data;
543 if ((unsigned) nbp->bf_len > BPF_MAXINSNS)
544 return EINVAL;
545 newcodelen = nbp->bf_len * sizeof(struct bpf_insn);
546 if (newcodelen != 0) {
547 MALLOC(newcode, struct bpf_insn *, newcodelen, M_DEVBUF, M_WAITOK);
548 if ((error = copyin((caddr_t)nbp->bf_insns, (caddr_t)newcode,
549 newcodelen)) != 0) {
550 kfree(newcode, M_DEVBUF);
551 return error;
553 if (!bpf_validate(newcode, nbp->bf_len)) {
554 kfree(newcode, M_DEVBUF);
555 return EINVAL;
557 } else
558 newcode = 0;
559 bp = (cmd == PPPIOCSPASS)? &sc->sc_pass_filt: &sc->sc_active_filt;
560 oldcode = bp->bf_insns;
561 crit_enter();
562 bp->bf_len = nbp->bf_len;
563 bp->bf_insns = newcode;
564 crit_exit();
565 if (oldcode != 0)
566 kfree(oldcode, M_DEVBUF);
567 break;
568 #endif
570 default:
571 return (ENOIOCTL);
573 return (0);
577 * Process an ioctl request to the ppp network interface.
579 static int
580 pppsioctl(struct ifnet *ifp, u_long cmd, caddr_t data, struct ucred *cr)
582 struct ppp_softc *sc = &ppp_softc[ifp->if_dunit];
583 struct ifaddr *ifa = (struct ifaddr *)data;
584 struct ifreq *ifr = (struct ifreq *)data;
585 struct ppp_stats *psp;
586 #ifdef PPP_COMPRESS
587 struct ppp_comp_stats *pcp;
588 #endif
589 int error = 0;
591 crit_enter();
593 switch (cmd) {
594 case SIOCSIFFLAGS:
595 if ((ifp->if_flags & IFF_RUNNING) == 0)
596 ifp->if_flags &= ~IFF_UP;
597 break;
599 case SIOCSIFADDR:
600 case SIOCAIFADDR:
601 switch(ifa->ifa_addr->sa_family) {
602 #ifdef INET
603 case AF_INET:
604 break;
605 #endif
606 #ifdef IPX
607 case AF_IPX:
608 break;
609 #endif
610 default:
611 error = EAFNOSUPPORT;
612 break;
614 break;
616 case SIOCSIFDSTADDR:
617 switch(ifa->ifa_addr->sa_family) {
618 #ifdef INET
619 case AF_INET:
620 break;
621 #endif
622 #ifdef IPX
623 case AF_IPX:
624 break;
625 #endif
626 default:
627 error = EAFNOSUPPORT;
628 break;
630 break;
632 case SIOCSIFMTU:
633 if ((error = suser_cred(cr, 0)) != 0)
634 break;
635 if (ifr->ifr_mtu > PPP_MAXMTU)
636 error = EINVAL;
637 else {
638 sc->sc_if.if_mtu = ifr->ifr_mtu;
639 if (sc->sc_setmtu)
640 (*sc->sc_setmtu)(sc);
642 break;
644 case SIOCGIFMTU:
645 ifr->ifr_mtu = sc->sc_if.if_mtu;
646 break;
648 case SIOCADDMULTI:
649 case SIOCDELMULTI:
650 if (ifr == 0) {
651 error = EAFNOSUPPORT;
652 break;
654 switch(ifr->ifr_addr.sa_family) {
655 #ifdef INET
656 case AF_INET:
657 break;
658 #endif
659 default:
660 error = EAFNOSUPPORT;
661 break;
663 break;
665 case SIOCGPPPSTATS:
666 psp = &((struct ifpppstatsreq *) data)->stats;
667 bzero(psp, sizeof(*psp));
668 psp->p = sc->sc_stats;
669 #if defined(VJC) && !defined(SL_NO_STATS)
670 if (sc->sc_comp) {
671 psp->vj.vjs_packets = sc->sc_comp->sls_packets;
672 psp->vj.vjs_compressed = sc->sc_comp->sls_compressed;
673 psp->vj.vjs_searches = sc->sc_comp->sls_searches;
674 psp->vj.vjs_misses = sc->sc_comp->sls_misses;
675 psp->vj.vjs_uncompressedin = sc->sc_comp->sls_uncompressedin;
676 psp->vj.vjs_compressedin = sc->sc_comp->sls_compressedin;
677 psp->vj.vjs_errorin = sc->sc_comp->sls_errorin;
678 psp->vj.vjs_tossed = sc->sc_comp->sls_tossed;
680 #endif /* VJC */
681 break;
683 #ifdef PPP_COMPRESS
684 case SIOCGPPPCSTATS:
685 pcp = &((struct ifpppcstatsreq *) data)->stats;
686 bzero(pcp, sizeof(*pcp));
687 if (sc->sc_xc_state != NULL)
688 (*sc->sc_xcomp->comp_stat)(sc->sc_xc_state, &pcp->c);
689 if (sc->sc_rc_state != NULL)
690 (*sc->sc_rcomp->decomp_stat)(sc->sc_rc_state, &pcp->d);
691 break;
692 #endif /* PPP_COMPRESS */
694 default:
695 error = ENOTTY;
697 crit_exit();
698 return (error);
702 * Queue a packet. Start transmission if not active.
703 * Packet is placed in Information field of PPP frame.
704 * Called at splnet as the if->if_output handler.
705 * Called at splnet from pppwrite().
707 static int
708 pppoutput_serialized(struct ifnet *ifp, struct mbuf *m0, struct sockaddr *dst,
709 struct rtentry *rtp)
711 struct ppp_softc *sc = &ppp_softc[ifp->if_dunit];
712 int protocol, address, control;
713 u_char *cp;
714 int error;
715 struct ip *ip;
716 struct ifqueue *ifq;
717 enum NPmode mode;
718 int len;
719 struct mbuf *m;
720 struct altq_pktattr pktattr;
722 if (sc->sc_devp == NULL || (ifp->if_flags & IFF_RUNNING) == 0
723 || ((ifp->if_flags & IFF_UP) == 0 && dst->sa_family != AF_UNSPEC)) {
724 error = ENETDOWN; /* sort of */
725 goto bad;
728 ifq_classify(&ifp->if_snd, m0, dst->sa_family, &pktattr);
731 * Compute PPP header.
733 m0->m_flags &= ~M_HIGHPRI;
734 switch (dst->sa_family) {
735 #ifdef INET
736 case AF_INET:
737 address = PPP_ALLSTATIONS;
738 control = PPP_UI;
739 protocol = PPP_IP;
740 mode = sc->sc_npmode[NP_IP];
743 * If this packet has the "low delay" bit set in the IP header,
744 * put it on the fastq instead.
746 ip = mtod(m0, struct ip *);
747 if (ip->ip_tos & IPTOS_LOWDELAY)
748 m0->m_flags |= M_HIGHPRI;
749 break;
750 #endif
751 #ifdef IPX
752 case AF_IPX:
754 * This is pretty bogus.. We dont have an ipxcp module in pppd
755 * yet to configure the link parameters. Sigh. I guess a
756 * manual ifconfig would do.... -Peter
758 address = PPP_ALLSTATIONS;
759 control = PPP_UI;
760 protocol = PPP_IPX;
761 mode = NPMODE_PASS;
762 break;
763 #endif
764 case AF_UNSPEC:
765 address = PPP_ADDRESS(dst->sa_data);
766 control = PPP_CONTROL(dst->sa_data);
767 protocol = PPP_PROTOCOL(dst->sa_data);
768 mode = NPMODE_PASS;
769 break;
770 default:
771 kprintf("%s: af%d not supported\n", ifp->if_xname, dst->sa_family);
772 error = EAFNOSUPPORT;
773 goto bad;
777 * Drop this packet, or return an error, if necessary.
779 if (mode == NPMODE_ERROR) {
780 error = ENETDOWN;
781 goto bad;
783 if (mode == NPMODE_DROP) {
784 error = 0;
785 goto bad;
789 * Add PPP header. If no space in first mbuf, allocate another.
790 * (This assumes M_LEADINGSPACE is always 0 for a cluster mbuf.)
792 if (M_LEADINGSPACE(m0) < PPP_HDRLEN) {
793 m0 = m_prepend(m0, PPP_HDRLEN, MB_DONTWAIT);
794 if (m0 == 0) {
795 error = ENOBUFS;
796 goto bad;
798 m0->m_len = 0;
799 } else
800 m0->m_data -= PPP_HDRLEN;
802 cp = mtod(m0, u_char *);
803 *cp++ = address;
804 *cp++ = control;
805 *cp++ = protocol >> 8;
806 *cp++ = protocol & 0xff;
807 m0->m_len += PPP_HDRLEN;
809 len = 0;
810 for (m = m0; m != 0; m = m->m_next)
811 len += m->m_len;
813 if (sc->sc_flags & SC_LOG_OUTPKT) {
814 kprintf("%s output: ", ifp->if_xname);
815 pppdumpm(m0);
818 if ((protocol & 0x8000) == 0) {
819 #ifdef PPP_FILTER
821 * Apply the pass and active filters to the packet,
822 * but only if it is a data packet.
824 *mtod(m0, u_char *) = 1; /* indicates outbound */
825 if (sc->sc_pass_filt.bf_insns != 0
826 && bpf_filter(sc->sc_pass_filt.bf_insns, (u_char *) m0,
827 len, 0) == 0) {
828 error = 0; /* drop this packet */
829 goto bad;
833 * Update the time we sent the most recent packet.
835 if (sc->sc_active_filt.bf_insns == 0
836 || bpf_filter(sc->sc_active_filt.bf_insns, (u_char *) m0, len, 0))
837 sc->sc_last_sent = time_second;
839 *mtod(m0, u_char *) = address;
840 #else
842 * Update the time we sent the most recent data packet.
844 sc->sc_last_sent = time_second;
845 #endif /* PPP_FILTER */
848 BPF_MTAP(ifp, m0);
851 * Put the packet on the appropriate queue.
853 crit_enter();
854 if (mode == NPMODE_QUEUE) {
855 /* XXX we should limit the number of packets on this queue */
856 *sc->sc_npqtail = m0;
857 m0->m_nextpkt = NULL;
858 sc->sc_npqtail = &m0->m_nextpkt;
859 } else {
860 /* fastq and if_snd are emptied at spl[soft]net now */
861 if ((m0->m_flags & M_HIGHPRI) && !ifq_is_enabled(&sc->sc_if.if_snd)) {
862 ifq = &sc->sc_fastq;
863 if (IF_QFULL(ifq) && dst->sa_family != AF_UNSPEC) {
864 IF_DROP(ifq);
865 m_freem(m0);
866 error = ENOBUFS;
867 } else {
868 IF_ENQUEUE(ifq, m0);
869 error = 0;
871 } else {
872 ASSERT_SERIALIZED(sc->sc_if.if_serializer);
873 error = ifq_enqueue(&sc->sc_if.if_snd, m0, &pktattr);
875 if (error) {
876 crit_exit();
877 sc->sc_if.if_oerrors++;
878 sc->sc_stats.ppp_oerrors++;
879 return (error);
881 (*sc->sc_start)(sc);
883 getmicrotime(&ifp->if_lastchange);
884 ifp->if_opackets++;
885 ifp->if_obytes += len;
887 crit_exit();
888 return (0);
890 bad:
891 m_freem(m0);
892 return (error);
896 pppoutput(struct ifnet *ifp, struct mbuf *m0, struct sockaddr *dst,
897 struct rtentry *rtp)
899 int error;
901 lwkt_serialize_enter(ifp->if_serializer);
902 error = pppoutput_serialized(ifp, m0, dst, rtp);
903 lwkt_serialize_exit(ifp->if_serializer);
905 return error;
909 * After a change in the NPmode for some NP, move packets from the
910 * npqueue to the send queue or the fast queue as appropriate.
911 * Should be called at spl[soft]net.
913 static void
914 ppp_requeue(struct ppp_softc *sc)
916 struct mbuf *m, **mpp;
917 struct ifqueue *ifq;
918 enum NPmode mode;
919 int error;
921 for (mpp = &sc->sc_npqueue; (m = *mpp) != NULL; ) {
922 switch (PPP_PROTOCOL(mtod(m, u_char *))) {
923 case PPP_IP:
924 mode = sc->sc_npmode[NP_IP];
925 break;
926 default:
927 mode = NPMODE_PASS;
930 switch (mode) {
931 case NPMODE_PASS:
933 * This packet can now go on one of the queues to be sent.
935 *mpp = m->m_nextpkt;
936 m->m_nextpkt = NULL;
937 if ((m->m_flags & M_HIGHPRI) && !ifq_is_enabled(&sc->sc_if.if_snd)) {
938 ifq = &sc->sc_fastq;
939 if (IF_QFULL(ifq)) {
940 IF_DROP(ifq);
941 error = ENOBUFS;
942 } else {
943 IF_ENQUEUE(ifq, m);
944 error = 0;
946 } else {
947 lwkt_serialize_enter(sc->sc_if.if_serializer);
948 error = ifq_enqueue(&sc->sc_if.if_snd, m, NULL);
949 lwkt_serialize_exit(sc->sc_if.if_serializer);
951 if (error) {
952 sc->sc_if.if_oerrors++;
953 sc->sc_stats.ppp_oerrors++;
955 break;
957 case NPMODE_DROP:
958 case NPMODE_ERROR:
959 *mpp = m->m_nextpkt;
960 m_freem(m);
961 break;
963 case NPMODE_QUEUE:
964 mpp = &m->m_nextpkt;
965 break;
968 sc->sc_npqtail = mpp;
972 * Transmitter has finished outputting some stuff;
973 * remember to call sc->sc_start later at splsoftnet.
975 void
976 ppp_restart(struct ppp_softc *sc)
978 crit_enter();
979 sc->sc_flags &= ~SC_TBUSY;
980 schednetisr(NETISR_PPP);
981 crit_exit();
986 * Get a packet to send. This procedure is intended to be called at
987 * splsoftnet, since it may involve time-consuming operations such as
988 * applying VJ compression, packet compression, address/control and/or
989 * protocol field compression to the packet.
991 struct mbuf *
992 ppp_dequeue(struct ppp_softc *sc)
994 struct mbuf *m, *mp;
995 u_char *cp;
996 int address, control, protocol;
999 * Grab a packet to send: first try the fast queue, then the
1000 * normal queue.
1002 IF_DEQUEUE(&sc->sc_fastq, m);
1003 if (m == NULL)
1004 m = ifq_dequeue(&sc->sc_if.if_snd, NULL);
1005 if (m == NULL)
1006 return NULL;
1008 ++sc->sc_stats.ppp_opackets;
1011 * Extract the ppp header of the new packet.
1012 * The ppp header will be in one mbuf.
1014 cp = mtod(m, u_char *);
1015 address = PPP_ADDRESS(cp);
1016 control = PPP_CONTROL(cp);
1017 protocol = PPP_PROTOCOL(cp);
1019 switch (protocol) {
1020 case PPP_IP:
1021 #ifdef VJC
1023 * If the packet is a TCP/IP packet, see if we can compress it.
1025 if ((sc->sc_flags & SC_COMP_TCP) && sc->sc_comp != NULL) {
1026 struct ip *ip;
1027 int type;
1029 mp = m;
1030 ip = (struct ip *) (cp + PPP_HDRLEN);
1031 if (mp->m_len <= PPP_HDRLEN) {
1032 mp = mp->m_next;
1033 if (mp == NULL)
1034 break;
1035 ip = mtod(mp, struct ip *);
1037 /* this code assumes the IP/TCP header is in one non-shared mbuf */
1038 if (ip->ip_p == IPPROTO_TCP) {
1039 type = sl_compress_tcp(mp, ip, sc->sc_comp,
1040 !(sc->sc_flags & SC_NO_TCP_CCID));
1041 switch (type) {
1042 case TYPE_UNCOMPRESSED_TCP:
1043 protocol = PPP_VJC_UNCOMP;
1044 break;
1045 case TYPE_COMPRESSED_TCP:
1046 protocol = PPP_VJC_COMP;
1047 cp = mtod(m, u_char *);
1048 cp[0] = address; /* header has moved */
1049 cp[1] = control;
1050 cp[2] = 0;
1051 break;
1053 cp[3] = protocol; /* update protocol in PPP header */
1056 #endif /* VJC */
1057 break;
1059 #ifdef PPP_COMPRESS
1060 case PPP_CCP:
1061 ppp_ccp(sc, m, 0);
1062 break;
1063 #endif /* PPP_COMPRESS */
1066 #ifdef PPP_COMPRESS
1067 if (protocol != PPP_LCP && protocol != PPP_CCP
1068 && sc->sc_xc_state && (sc->sc_flags & SC_COMP_RUN)) {
1069 struct mbuf *mcomp = NULL;
1070 int slen, clen;
1072 slen = 0;
1073 for (mp = m; mp != NULL; mp = mp->m_next)
1074 slen += mp->m_len;
1075 clen = (*sc->sc_xcomp->compress)
1076 (sc->sc_xc_state, &mcomp, m, slen, sc->sc_if.if_mtu + PPP_HDRLEN);
1077 if (mcomp != NULL) {
1078 if (sc->sc_flags & SC_CCP_UP) {
1079 /* Send the compressed packet instead of the original. */
1080 m_freem(m);
1081 m = mcomp;
1082 cp = mtod(m, u_char *);
1083 protocol = cp[3];
1084 } else {
1085 /* Can't transmit compressed packets until CCP is up. */
1086 m_freem(mcomp);
1090 #endif /* PPP_COMPRESS */
1093 * Compress the address/control and protocol, if possible.
1095 if (sc->sc_flags & SC_COMP_AC && address == PPP_ALLSTATIONS &&
1096 control == PPP_UI && protocol != PPP_ALLSTATIONS &&
1097 protocol != PPP_LCP) {
1098 /* can compress address/control */
1099 m->m_data += 2;
1100 m->m_len -= 2;
1102 if (sc->sc_flags & SC_COMP_PROT && protocol < 0xFF) {
1103 /* can compress protocol */
1104 if (mtod(m, u_char *) == cp) {
1105 cp[2] = cp[1]; /* move address/control up */
1106 cp[1] = cp[0];
1108 ++m->m_data;
1109 --m->m_len;
1112 return m;
1115 #ifdef PPP_COMPRESS
1117 * Handle a CCP packet. `rcvd' is 1 if the packet was received,
1118 * 0 if it is about to be transmitted.
1120 static void
1121 ppp_ccp(struct ppp_softc *sc, struct mbuf *m, int rcvd)
1123 u_char *dp, *ep;
1124 struct mbuf *mp;
1125 int slen;
1128 * Get a pointer to the data after the PPP header.
1130 if (m->m_len <= PPP_HDRLEN) {
1131 mp = m->m_next;
1132 if (mp == NULL)
1133 return;
1134 dp = (mp != NULL)? mtod(mp, u_char *): NULL;
1135 } else {
1136 mp = m;
1137 dp = mtod(mp, u_char *) + PPP_HDRLEN;
1140 ep = mtod(mp, u_char *) + mp->m_len;
1141 if (dp + CCP_HDRLEN > ep)
1142 return;
1143 slen = CCP_LENGTH(dp);
1144 if (dp + slen > ep) {
1145 if (sc->sc_flags & SC_DEBUG)
1146 kprintf("if_ppp/ccp: not enough data in mbuf (%p+%x > %p+%x)\n",
1147 dp, slen, mtod(mp, u_char *), mp->m_len);
1148 return;
1151 switch (CCP_CODE(dp)) {
1152 case CCP_CONFREQ:
1153 case CCP_TERMREQ:
1154 case CCP_TERMACK:
1155 /* CCP must be going down - disable compression */
1156 if (sc->sc_flags & SC_CCP_UP) {
1157 crit_enter();
1158 sc->sc_flags &= ~(SC_CCP_UP | SC_COMP_RUN | SC_DECOMP_RUN);
1159 crit_exit();
1161 break;
1163 case CCP_CONFACK:
1164 if (sc->sc_flags & SC_CCP_OPEN && !(sc->sc_flags & SC_CCP_UP)
1165 && slen >= CCP_HDRLEN + CCP_OPT_MINLEN
1166 && slen >= CCP_OPT_LENGTH(dp + CCP_HDRLEN) + CCP_HDRLEN) {
1167 if (!rcvd) {
1168 /* we're agreeing to send compressed packets. */
1169 if (sc->sc_xc_state != NULL
1170 && (*sc->sc_xcomp->comp_init)
1171 (sc->sc_xc_state, dp + CCP_HDRLEN, slen - CCP_HDRLEN,
1172 sc->sc_if.if_dunit, 0, sc->sc_flags & SC_DEBUG)) {
1173 crit_enter();
1174 sc->sc_flags |= SC_COMP_RUN;
1175 crit_exit();
1177 } else {
1178 /* peer is agreeing to send compressed packets. */
1179 if (sc->sc_rc_state != NULL
1180 && (*sc->sc_rcomp->decomp_init)
1181 (sc->sc_rc_state, dp + CCP_HDRLEN, slen - CCP_HDRLEN,
1182 sc->sc_if.if_dunit, 0, sc->sc_mru,
1183 sc->sc_flags & SC_DEBUG)) {
1184 crit_enter();
1185 sc->sc_flags |= SC_DECOMP_RUN;
1186 sc->sc_flags &= ~(SC_DC_ERROR | SC_DC_FERROR);
1187 crit_exit();
1191 break;
1193 case CCP_RESETACK:
1194 if (sc->sc_flags & SC_CCP_UP) {
1195 if (!rcvd) {
1196 if (sc->sc_xc_state && (sc->sc_flags & SC_COMP_RUN))
1197 (*sc->sc_xcomp->comp_reset)(sc->sc_xc_state);
1198 } else {
1199 if (sc->sc_rc_state && (sc->sc_flags & SC_DECOMP_RUN)) {
1200 (*sc->sc_rcomp->decomp_reset)(sc->sc_rc_state);
1201 crit_enter();
1202 sc->sc_flags &= ~SC_DC_ERROR;
1203 crit_exit();
1207 break;
1212 * CCP is down; free (de)compressor state if necessary.
1214 static void
1215 ppp_ccp_closed(struct ppp_softc *sc)
1217 if (sc->sc_xc_state) {
1218 (*sc->sc_xcomp->comp_free)(sc->sc_xc_state);
1219 sc->sc_xc_state = NULL;
1221 if (sc->sc_rc_state) {
1222 (*sc->sc_rcomp->decomp_free)(sc->sc_rc_state);
1223 sc->sc_rc_state = NULL;
1226 #endif /* PPP_COMPRESS */
1229 * PPP packet input routine.
1230 * The caller has checked and removed the FCS and has inserted
1231 * the address/control bytes and the protocol high byte if they
1232 * were omitted.
1234 void
1235 ppppktin(struct ppp_softc *sc, struct mbuf *m, int lost)
1237 crit_enter();
1239 if (lost)
1240 m->m_flags |= M_ERRMARK;
1241 IF_ENQUEUE(&sc->sc_rawq, m);
1242 schednetisr(NETISR_PPP);
1244 crit_exit();
1248 * Process a received PPP packet, doing decompression as necessary.
1249 * Should be called at splsoftnet.
1251 #define COMPTYPE(proto) ((proto) == PPP_VJC_COMP? TYPE_COMPRESSED_TCP: \
1252 TYPE_UNCOMPRESSED_TCP)
1254 static void
1255 ppp_inproc(struct ppp_softc *sc, struct mbuf *m)
1257 struct ifnet *ifp = &sc->sc_if;
1258 int isr;
1259 int ilen = 0, xlen, proto, rv;
1260 u_char *cp, adrs, ctrl;
1261 struct mbuf *mp, *dmp = NULL;
1262 u_char *iphdr;
1263 u_int hlen;
1265 ASSERT_SERIALIZED(ifp->if_serializer);
1267 sc->sc_stats.ppp_ipackets++;
1269 if (sc->sc_flags & SC_LOG_INPKT) {
1270 ilen = 0;
1271 for (mp = m; mp != NULL; mp = mp->m_next)
1272 ilen += mp->m_len;
1273 kprintf("%s: got %d bytes\n", ifp->if_xname, ilen);
1274 pppdumpm(m);
1277 cp = mtod(m, u_char *);
1278 adrs = PPP_ADDRESS(cp);
1279 ctrl = PPP_CONTROL(cp);
1280 proto = PPP_PROTOCOL(cp);
1282 if (m->m_flags & M_ERRMARK) {
1283 m->m_flags &= ~M_ERRMARK;
1284 crit_enter();
1285 sc->sc_flags |= SC_VJ_RESET;
1286 crit_exit();
1289 #ifdef PPP_COMPRESS
1291 * Decompress this packet if necessary, update the receiver's
1292 * dictionary, or take appropriate action on a CCP packet.
1294 if (proto == PPP_COMP && sc->sc_rc_state && (sc->sc_flags & SC_DECOMP_RUN)
1295 && !(sc->sc_flags & SC_DC_ERROR) && !(sc->sc_flags & SC_DC_FERROR)) {
1296 /* decompress this packet */
1297 rv = (*sc->sc_rcomp->decompress)(sc->sc_rc_state, m, &dmp);
1298 if (rv == DECOMP_OK) {
1299 m_freem(m);
1300 if (dmp == NULL) {
1301 /* no error, but no decompressed packet produced */
1302 return;
1304 m = dmp;
1305 cp = mtod(m, u_char *);
1306 proto = PPP_PROTOCOL(cp);
1308 } else {
1310 * An error has occurred in decompression.
1311 * Pass the compressed packet up to pppd, which may take
1312 * CCP down or issue a Reset-Req.
1314 if (sc->sc_flags & SC_DEBUG)
1315 kprintf("%s: decompress failed %d\n", ifp->if_xname, rv);
1316 crit_enter();
1317 sc->sc_flags |= SC_VJ_RESET;
1318 if (rv == DECOMP_ERROR)
1319 sc->sc_flags |= SC_DC_ERROR;
1320 else
1321 sc->sc_flags |= SC_DC_FERROR;
1322 crit_exit();
1325 } else {
1326 if (sc->sc_rc_state && (sc->sc_flags & SC_DECOMP_RUN)) {
1327 (*sc->sc_rcomp->incomp)(sc->sc_rc_state, m);
1329 if (proto == PPP_CCP) {
1330 ppp_ccp(sc, m, 1);
1333 #endif
1335 ilen = 0;
1336 for (mp = m; mp != NULL; mp = mp->m_next)
1337 ilen += mp->m_len;
1339 #ifdef VJC
1340 if (sc->sc_flags & SC_VJ_RESET) {
1342 * If we've missed a packet, we must toss subsequent compressed
1343 * packets which don't have an explicit connection ID.
1345 if (sc->sc_comp)
1346 sl_uncompress_tcp(NULL, 0, TYPE_ERROR, sc->sc_comp);
1347 crit_enter();
1348 sc->sc_flags &= ~SC_VJ_RESET;
1349 crit_exit();
1353 * See if we have a VJ-compressed packet to uncompress.
1355 if (proto == PPP_VJC_COMP) {
1356 if ((sc->sc_flags & SC_REJ_COMP_TCP) || sc->sc_comp == 0)
1357 goto bad;
1359 xlen = sl_uncompress_tcp_core(cp + PPP_HDRLEN, m->m_len - PPP_HDRLEN,
1360 ilen - PPP_HDRLEN, TYPE_COMPRESSED_TCP,
1361 sc->sc_comp, &iphdr, &hlen);
1363 if (xlen <= 0) {
1364 if (sc->sc_flags & SC_DEBUG)
1365 kprintf("%s: VJ uncompress failed on type comp\n",
1366 ifp->if_xname);
1367 goto bad;
1370 /* Copy the PPP and IP headers into a new mbuf. */
1371 MGETHDR(mp, MB_DONTWAIT, MT_DATA);
1372 if (mp == NULL)
1373 goto bad;
1374 mp->m_len = 0;
1375 mp->m_next = NULL;
1376 if (hlen + PPP_HDRLEN > MHLEN) {
1377 MCLGET(mp, MB_DONTWAIT);
1378 if (M_TRAILINGSPACE(mp) < hlen + PPP_HDRLEN) {
1379 m_freem(mp);
1380 goto bad; /* lose if big headers and no clusters */
1383 cp = mtod(mp, u_char *);
1384 cp[0] = adrs;
1385 cp[1] = ctrl;
1386 cp[2] = 0;
1387 cp[3] = PPP_IP;
1388 proto = PPP_IP;
1389 bcopy(iphdr, cp + PPP_HDRLEN, hlen);
1390 mp->m_len = hlen + PPP_HDRLEN;
1393 * Trim the PPP and VJ headers off the old mbuf
1394 * and stick the new and old mbufs together.
1396 m->m_data += PPP_HDRLEN + xlen;
1397 m->m_len -= PPP_HDRLEN + xlen;
1398 if (m->m_len <= M_TRAILINGSPACE(mp)) {
1399 bcopy(mtod(m, u_char *), mtod(mp, u_char *) + mp->m_len, m->m_len);
1400 mp->m_len += m->m_len;
1401 mp->m_next = m_free(m);
1402 } else {
1403 mp->m_next = m;
1405 m = mp;
1406 ilen += hlen - xlen;
1408 } else if (proto == PPP_VJC_UNCOMP) {
1409 if ((sc->sc_flags & SC_REJ_COMP_TCP) || sc->sc_comp == 0)
1410 goto bad;
1412 xlen = sl_uncompress_tcp_core(cp + PPP_HDRLEN, m->m_len - PPP_HDRLEN,
1413 ilen - PPP_HDRLEN, TYPE_UNCOMPRESSED_TCP,
1414 sc->sc_comp, &iphdr, &hlen);
1416 if (xlen < 0) {
1417 if (sc->sc_flags & SC_DEBUG)
1418 kprintf("%s: VJ uncompress failed on type uncomp\n",
1419 ifp->if_xname);
1420 goto bad;
1423 proto = PPP_IP;
1424 cp[3] = PPP_IP;
1426 #endif /* VJC */
1429 * If the packet will fit in a header mbuf, don't waste a
1430 * whole cluster on it.
1432 if (ilen <= MHLEN && M_IS_CLUSTER(m)) {
1433 MGETHDR(mp, MB_DONTWAIT, MT_DATA);
1434 if (mp != NULL) {
1435 m_copydata(m, 0, ilen, mtod(mp, caddr_t));
1436 m_freem(m);
1437 m = mp;
1438 m->m_len = ilen;
1441 m->m_pkthdr.len = ilen;
1442 m->m_pkthdr.rcvif = ifp;
1444 if ((proto & 0x8000) == 0) {
1445 #ifdef PPP_FILTER
1447 * See whether we want to pass this packet, and
1448 * if it counts as link activity.
1450 adrs = *mtod(m, u_char *); /* save address field */
1451 *mtod(m, u_char *) = 0; /* indicate inbound */
1452 if (sc->sc_pass_filt.bf_insns != 0
1453 && bpf_filter(sc->sc_pass_filt.bf_insns, (u_char *) m,
1454 ilen, 0) == 0) {
1455 /* drop this packet */
1456 m_freem(m);
1457 return;
1459 if (sc->sc_active_filt.bf_insns == 0
1460 || bpf_filter(sc->sc_active_filt.bf_insns, (u_char *) m, ilen, 0))
1461 sc->sc_last_recv = time_second;
1463 *mtod(m, u_char *) = adrs;
1464 #else
1466 * Record the time that we received this packet.
1468 sc->sc_last_recv = time_second;
1469 #endif /* PPP_FILTER */
1472 BPF_MTAP(&sc->sc_if, m);
1474 isr = -1;
1475 switch (proto) {
1476 #ifdef INET
1477 case PPP_IP:
1479 * IP packet - take off the ppp header and pass it up to IP.
1481 if ((ifp->if_flags & IFF_UP) == 0
1482 || sc->sc_npmode[NP_IP] != NPMODE_PASS) {
1483 /* interface is down - drop the packet. */
1484 m_freem(m);
1485 return;
1487 m->m_pkthdr.len -= PPP_HDRLEN;
1488 m->m_data += PPP_HDRLEN;
1489 m->m_len -= PPP_HDRLEN;
1490 if (ipflow_fastforward(m, ifp->if_serializer))
1491 return;
1492 isr = NETISR_IP;
1493 break;
1494 #endif
1495 #ifdef IPX
1496 case PPP_IPX:
1498 * IPX packet - take off the ppp header and pass it up to IPX.
1500 if ((sc->sc_if.if_flags & IFF_UP) == 0
1501 /* XXX: || sc->sc_npmode[NP_IPX] != NPMODE_PASS*/) {
1502 /* interface is down - drop the packet. */
1503 m_freem(m);
1504 return;
1506 m->m_pkthdr.len -= PPP_HDRLEN;
1507 m->m_data += PPP_HDRLEN;
1508 m->m_len -= PPP_HDRLEN;
1509 isr = NETISR_IPX;
1510 sc->sc_last_recv = time_second; /* update time of last pkt rcvd */
1511 break;
1512 #endif
1514 default:
1516 * Some other protocol - place on input queue for read().
1518 break;
1522 * If we found a netproto just pass it to the proto. Otherwise queue
1523 * the packet to the tty (e.g. pppd). Note that sc_ctlp() must be
1524 * called EXACTLY once per packet queued.
1526 if (isr == -1) {
1527 rv = IF_HANDOFF(&sc->sc_inq, m, NULL);
1528 if (rv)
1529 (*sc->sc_ctlp)(sc);
1530 } else {
1531 rv = (netisr_queue(isr, m) == 0);
1533 if (!rv) {
1534 if (sc->sc_flags & SC_DEBUG)
1535 kprintf("%s: input queue full\n", ifp->if_xname);
1536 ifp->if_iqdrops++;
1537 goto bad;
1540 ifp->if_ipackets++;
1541 ifp->if_ibytes += ilen;
1542 getmicrotime(&ifp->if_lastchange);
1544 return;
1546 bad:
1547 m_freem(m);
1548 sc->sc_if.if_ierrors++;
1549 sc->sc_stats.ppp_ierrors++;
1552 #define MAX_DUMP_BYTES 128
1554 static void
1555 pppdumpm(struct mbuf *m0)
1557 char buf[3*MAX_DUMP_BYTES+4];
1558 char *bp = buf;
1559 struct mbuf *m;
1561 for (m = m0; m; m = m->m_next) {
1562 int l = m->m_len;
1563 u_char *rptr = (u_char *)m->m_data;
1565 while (l--) {
1566 if (bp > buf + sizeof(buf) - 4)
1567 goto done;
1568 *bp++ = hex2ascii(*rptr >> 4);
1569 *bp++ = hex2ascii(*rptr++ & 0xf);
1572 if (m->m_next) {
1573 if (bp > buf + sizeof(buf) - 3)
1574 goto done;
1575 *bp++ = '|';
1576 } else
1577 *bp++ = ' ';
1579 done:
1580 if (m)
1581 *bp++ = '>';
1582 *bp = 0;
1583 kprintf("%s\n", buf);
1587 * a wrapper to transmit a packet from if_start since ALTQ uses
1588 * if_start to send a packet.
1590 static void
1591 ppp_ifstart(struct ifnet *ifp)
1593 struct ppp_softc *sc;
1595 sc = ifp->if_softc;
1596 (*sc->sc_start)(sc);