xref: /freebsd/usr.sbin/ppp/bundle.c (revision a1a4f1a0d87b594d3f17a97dc0127eec1417e6f6)
1 /*-
2  * Copyright (c) 1998 Brian Somers <brian@Awfulhak.org>
3  * All rights reserved.
4  *
5  * Redistribution and use in source and binary forms, with or without
6  * modification, are permitted provided that the following conditions
7  * are met:
8  * 1. Redistributions of source code must retain the above copyright
9  *    notice, this list of conditions and the following disclaimer.
10  * 2. Redistributions in binary form must reproduce the above copyright
11  *    notice, this list of conditions and the following disclaimer in the
12  *    documentation and/or other materials provided with the distribution.
13  *
14  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
15  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
18  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24  * SUCH DAMAGE.
25  *
26  * $FreeBSD$
27  */
28 
29 #include <sys/param.h>
30 #include <sys/socket.h>
31 #include <netinet/in.h>
32 #include <net/if.h>
33 #include <net/if_tun.h>		/* For TUNSIFMODE & TUNSLMODE */
34 #include <arpa/inet.h>
35 #include <net/route.h>
36 #include <netinet/in_systm.h>
37 #include <netinet/ip.h>
38 #include <sys/un.h>
39 
40 #include <errno.h>
41 #include <fcntl.h>
42 #include <paths.h>
43 #include <stdio.h>
44 #include <stdlib.h>
45 #include <string.h>
46 #include <sys/uio.h>
47 #include <sys/wait.h>
48 #include <termios.h>
49 #include <unistd.h>
50 
51 #include "layer.h"
52 #include "defs.h"
53 #include "command.h"
54 #include "mbuf.h"
55 #include "log.h"
56 #include "id.h"
57 #include "timer.h"
58 #include "fsm.h"
59 #include "iplist.h"
60 #include "lqr.h"
61 #include "hdlc.h"
62 #include "throughput.h"
63 #include "slcompress.h"
64 #include "ipcp.h"
65 #include "filter.h"
66 #include "descriptor.h"
67 #include "route.h"
68 #include "lcp.h"
69 #include "ccp.h"
70 #include "link.h"
71 #include "mp.h"
72 #ifndef NORADIUS
73 #include "radius.h"
74 #endif
75 #include "bundle.h"
76 #include "async.h"
77 #include "physical.h"
78 #include "auth.h"
79 #include "proto.h"
80 #include "chap.h"
81 #include "tun.h"
82 #include "prompt.h"
83 #include "chat.h"
84 #include "cbcp.h"
85 #include "datalink.h"
86 #include "ip.h"
87 #include "iface.h"
88 
89 #define SCATTER_SEGMENTS 6	/* version, datalink, name, physical,
90                                    throughput, device */
91 #define SOCKET_OVERHEAD	100	/* additional buffer space for large */
92                                 /* {recv,send}msg() calls            */
93 
94 static int bundle_RemainingIdleTime(struct bundle *);
95 
96 static const char *PhaseNames[] = {
97   "Dead", "Establish", "Authenticate", "Network", "Terminate"
98 };
99 
100 const char *
101 bundle_PhaseName(struct bundle *bundle)
102 {
103   return bundle->phase <= PHASE_TERMINATE ?
104     PhaseNames[bundle->phase] : "unknown";
105 }
106 
107 void
108 bundle_NewPhase(struct bundle *bundle, u_int new)
109 {
110   if (new == bundle->phase)
111     return;
112 
113   if (new <= PHASE_TERMINATE)
114     log_Printf(LogPHASE, "bundle: %s\n", PhaseNames[new]);
115 
116   switch (new) {
117   case PHASE_DEAD:
118     log_DisplayPrompts();
119     bundle->phase = new;
120     break;
121 
122   case PHASE_ESTABLISH:
123     bundle->phase = new;
124     break;
125 
126   case PHASE_AUTHENTICATE:
127     bundle->phase = new;
128     log_DisplayPrompts();
129     break;
130 
131   case PHASE_NETWORK:
132     fsm_Up(&bundle->ncp.ipcp.fsm);
133     fsm_Open(&bundle->ncp.ipcp.fsm);
134     bundle->phase = new;
135     log_DisplayPrompts();
136     break;
137 
138   case PHASE_TERMINATE:
139     bundle->phase = new;
140     mp_Down(&bundle->ncp.mp);
141     log_DisplayPrompts();
142     break;
143   }
144 }
145 
146 static void
147 bundle_LayerStart(void *v, struct fsm *fp)
148 {
149   /* The given FSM is about to start up ! */
150 }
151 
152 
153 static void
154 bundle_Notify(struct bundle *bundle, char c)
155 {
156   if (bundle->notify.fd != -1) {
157     if (write(bundle->notify.fd, &c, 1) == 1)
158       log_Printf(LogPHASE, "Parent notified of success.\n");
159     else
160       log_Printf(LogPHASE, "Failed to notify parent of success.\n");
161     close(bundle->notify.fd);
162     bundle->notify.fd = -1;
163   }
164 }
165 
166 static void
167 bundle_ClearQueues(void *v)
168 {
169   struct bundle *bundle = (struct bundle *)v;
170   struct datalink *dl;
171 
172   log_Printf(LogPHASE, "Clearing choked output queue\n");
173   timer_Stop(&bundle->choked.timer);
174 
175   /*
176    * Emergency time:
177    *
178    * We've had a full queue for PACKET_DEL_SECS seconds without being
179    * able to get rid of any of the packets.  We've probably given up
180    * on the redials at this point, and the queued data has almost
181    * definitely been timed out by the layer above.  As this is preventing
182    * us from reading the TUN_NAME device (we don't want to buffer stuff
183    * indefinitely), we may as well nuke this data and start with a clean
184    * slate !
185    *
186    * Unfortunately, this has the side effect of shafting any compression
187    * dictionaries in use (causing the relevant RESET_REQ/RESET_ACK).
188    */
189 
190   ip_DeleteQueue(&bundle->ncp.ipcp);
191   mp_DeleteQueue(&bundle->ncp.mp);
192   for (dl = bundle->links; dl; dl = dl->next)
193     physical_DeleteQueue(dl->physical);
194 }
195 
196 static void
197 bundle_LinkAdded(struct bundle *bundle, struct datalink *dl)
198 {
199   bundle->phys_type.all |= dl->physical->type;
200   if (dl->state == DATALINK_OPEN)
201     bundle->phys_type.open |= dl->physical->type;
202 
203   if ((bundle->phys_type.open & (PHYS_DEDICATED|PHYS_DDIAL))
204       != bundle->phys_type.open && bundle->idle.timer.state == TIMER_STOPPED)
205     /* We may need to start our idle timer */
206     bundle_StartIdleTimer(bundle);
207 }
208 
209 void
210 bundle_LinksRemoved(struct bundle *bundle)
211 {
212   struct datalink *dl;
213 
214   bundle->phys_type.all = bundle->phys_type.open = 0;
215   for (dl = bundle->links; dl; dl = dl->next)
216     bundle_LinkAdded(bundle, dl);
217 
218   bundle_CalculateBandwidth(bundle);
219   mp_CheckAutoloadTimer(&bundle->ncp.mp);
220 
221   if ((bundle->phys_type.open & (PHYS_DEDICATED|PHYS_DDIAL))
222       == bundle->phys_type.open)
223     bundle_StopIdleTimer(bundle);
224 }
225 
226 static void
227 bundle_LayerUp(void *v, struct fsm *fp)
228 {
229   /*
230    * The given fsm is now up
231    * If it's an LCP, adjust our phys_mode.open value and check the
232    * autoload timer.
233    * If it's the first NCP, calculate our bandwidth
234    * If it's the first NCP, set our ``upat'' time
235    * If it's the first NCP, start the idle timer.
236    * If it's an NCP, tell our -background parent to go away.
237    * If it's the first NCP, start the autoload timer
238    */
239   struct bundle *bundle = (struct bundle *)v;
240 
241   if (fp->proto == PROTO_LCP) {
242     struct physical *p = link2physical(fp->link);
243 
244     bundle_LinkAdded(bundle, p->dl);
245     mp_CheckAutoloadTimer(&bundle->ncp.mp);
246   } else if (fp->proto == PROTO_IPCP) {
247     bundle_CalculateBandwidth(fp->bundle);
248     time(&bundle->upat);
249     bundle_StartIdleTimer(bundle);
250     bundle_Notify(bundle, EX_NORMAL);
251     mp_CheckAutoloadTimer(&fp->bundle->ncp.mp);
252   }
253 }
254 
255 static void
256 bundle_LayerDown(void *v, struct fsm *fp)
257 {
258   /*
259    * The given FSM has been told to come down.
260    * If it's our last NCP, stop the idle timer.
261    * If it's our last NCP, clear our ``upat'' value.
262    * If it's our last NCP, stop the autoload timer
263    * If it's an LCP, adjust our phys_type.open value and any timers.
264    * If it's an LCP and we're in multilink mode, adjust our tun
265    * speed and make sure our minimum sequence number is adjusted.
266    */
267 
268   struct bundle *bundle = (struct bundle *)v;
269 
270   if (fp->proto == PROTO_IPCP) {
271     bundle_StopIdleTimer(bundle);
272     bundle->upat = 0;
273     mp_StopAutoloadTimer(&bundle->ncp.mp);
274   } else if (fp->proto == PROTO_LCP) {
275     bundle_LinksRemoved(bundle);  /* adjust timers & phys_type values */
276     if (bundle->ncp.mp.active) {
277       struct datalink *dl;
278       struct datalink *lost;
279 
280       lost = NULL;
281       for (dl = bundle->links; dl; dl = dl->next)
282         if (fp == &dl->physical->link.lcp.fsm)
283           lost = dl;
284 
285       bundle_CalculateBandwidth(bundle);
286 
287       if (lost)
288         mp_LinkLost(&bundle->ncp.mp, lost);
289       else
290         log_Printf(LogALERT, "Oops, lost an unrecognised datalink (%s) !\n",
291                    fp->link->name);
292     }
293   }
294 }
295 
296 static void
297 bundle_LayerFinish(void *v, struct fsm *fp)
298 {
299   /* The given fsm is now down (fp cannot be NULL)
300    *
301    * If it's the last LCP, fsm_Down all NCPs
302    * If it's the last NCP, fsm_Close all LCPs
303    */
304 
305   struct bundle *bundle = (struct bundle *)v;
306   struct datalink *dl;
307 
308   if (fp->proto == PROTO_IPCP) {
309     if (bundle_Phase(bundle) != PHASE_DEAD)
310       bundle_NewPhase(bundle, PHASE_TERMINATE);
311     for (dl = bundle->links; dl; dl = dl->next)
312       datalink_Close(dl, CLOSE_NORMAL);
313     fsm2initial(fp);
314   } else if (fp->proto == PROTO_LCP) {
315     int others_active;
316 
317     others_active = 0;
318     for (dl = bundle->links; dl; dl = dl->next)
319       if (fp != &dl->physical->link.lcp.fsm &&
320           dl->state != DATALINK_CLOSED && dl->state != DATALINK_HANGUP)
321         others_active++;
322 
323     if (!others_active)
324       fsm2initial(&bundle->ncp.ipcp.fsm);
325   }
326 }
327 
328 int
329 bundle_LinkIsUp(const struct bundle *bundle)
330 {
331   return bundle->ncp.ipcp.fsm.state == ST_OPENED;
332 }
333 
334 void
335 bundle_Close(struct bundle *bundle, const char *name, int how)
336 {
337   /*
338    * Please close the given datalink.
339    * If name == NULL or name is the last datalink, fsm_Close all NCPs
340    * (except our MP)
341    * If it isn't the last datalink, just Close that datalink.
342    */
343 
344   struct datalink *dl, *this_dl;
345   int others_active;
346 
347   others_active = 0;
348   this_dl = NULL;
349 
350   for (dl = bundle->links; dl; dl = dl->next) {
351     if (name && !strcasecmp(name, dl->name))
352       this_dl = dl;
353     if (name == NULL || this_dl == dl) {
354       switch (how) {
355         case CLOSE_LCP:
356           datalink_DontHangup(dl);
357           /* fall through */
358         case CLOSE_STAYDOWN:
359           datalink_StayDown(dl);
360           break;
361       }
362     } else if (dl->state != DATALINK_CLOSED && dl->state != DATALINK_HANGUP)
363       others_active++;
364   }
365 
366   if (name && this_dl == NULL) {
367     log_Printf(LogWARN, "%s: Invalid datalink name\n", name);
368     return;
369   }
370 
371   if (!others_active) {
372     bundle_StopIdleTimer(bundle);
373     if (bundle->ncp.ipcp.fsm.state > ST_CLOSED ||
374         bundle->ncp.ipcp.fsm.state == ST_STARTING)
375       fsm_Close(&bundle->ncp.ipcp.fsm);
376     else {
377       fsm2initial(&bundle->ncp.ipcp.fsm);
378       for (dl = bundle->links; dl; dl = dl->next)
379         datalink_Close(dl, how);
380     }
381   } else if (this_dl && this_dl->state != DATALINK_CLOSED &&
382              this_dl->state != DATALINK_HANGUP)
383     datalink_Close(this_dl, how);
384 }
385 
386 void
387 bundle_Down(struct bundle *bundle, int how)
388 {
389   struct datalink *dl;
390 
391   for (dl = bundle->links; dl; dl = dl->next)
392     datalink_Down(dl, how);
393 }
394 
395 static int
396 bundle_UpdateSet(struct descriptor *d, fd_set *r, fd_set *w, fd_set *e, int *n)
397 {
398   struct bundle *bundle = descriptor2bundle(d);
399   struct datalink *dl;
400   int result, queued, nlinks;
401 
402   result = 0;
403 
404   /* If there are aren't many packets queued, look for some more. */
405   for (nlinks = 0, dl = bundle->links; dl; dl = dl->next)
406     nlinks++;
407 
408   if (nlinks) {
409     queued = r ? bundle_FillQueues(bundle) : ip_QueueLen(&bundle->ncp.ipcp);
410 
411     if (r && (bundle->phase == PHASE_NETWORK ||
412               bundle->phys_type.all & PHYS_AUTO)) {
413       /* enough surplus so that we can tell if we're getting swamped */
414       if (queued < 20) {
415         /* Not enough - select() for more */
416         if (bundle->choked.timer.state == TIMER_RUNNING)
417           timer_Stop(&bundle->choked.timer);	/* Not needed any more */
418         FD_SET(bundle->dev.fd, r);
419         if (*n < bundle->dev.fd + 1)
420           *n = bundle->dev.fd + 1;
421         log_Printf(LogTIMER, "%s: fdset(r) %d\n", TUN_NAME, bundle->dev.fd);
422         result++;
423       } else if (bundle->choked.timer.state == TIMER_STOPPED) {
424         bundle->choked.timer.func = bundle_ClearQueues;
425         bundle->choked.timer.name = "output choke";
426         bundle->choked.timer.load = bundle->cfg.choked.timeout * SECTICKS;
427         bundle->choked.timer.arg = bundle;
428         timer_Start(&bundle->choked.timer);
429       }
430     }
431   }
432 
433 #ifndef NORADIUS
434   result += descriptor_UpdateSet(&bundle->radius.desc, r, w, e, n);
435 #endif
436 
437   /* Which links need a select() ? */
438   for (dl = bundle->links; dl; dl = dl->next)
439     result += descriptor_UpdateSet(&dl->desc, r, w, e, n);
440 
441   /*
442    * This *MUST* be called after the datalink UpdateSet()s as it
443    * might be ``holding'' one of the datalinks (death-row) and
444    * wants to be able to de-select() it from the descriptor set.
445    */
446   result += descriptor_UpdateSet(&bundle->ncp.mp.server.desc, r, w, e, n);
447 
448   return result;
449 }
450 
451 static int
452 bundle_IsSet(struct descriptor *d, const fd_set *fdset)
453 {
454   struct bundle *bundle = descriptor2bundle(d);
455   struct datalink *dl;
456 
457   for (dl = bundle->links; dl; dl = dl->next)
458     if (descriptor_IsSet(&dl->desc, fdset))
459       return 1;
460 
461 #ifndef NORADIUS
462   if (descriptor_IsSet(&bundle->radius.desc, fdset))
463     return 1;
464 #endif
465 
466   if (descriptor_IsSet(&bundle->ncp.mp.server.desc, fdset))
467     return 1;
468 
469   return FD_ISSET(bundle->dev.fd, fdset);
470 }
471 
472 static void
473 bundle_DescriptorRead(struct descriptor *d, struct bundle *bundle,
474                       const fd_set *fdset)
475 {
476   struct datalink *dl;
477 
478   if (descriptor_IsSet(&bundle->ncp.mp.server.desc, fdset))
479     descriptor_Read(&bundle->ncp.mp.server.desc, bundle, fdset);
480 
481   for (dl = bundle->links; dl; dl = dl->next)
482     if (descriptor_IsSet(&dl->desc, fdset))
483       descriptor_Read(&dl->desc, bundle, fdset);
484 
485 #ifndef NORADIUS
486   if (descriptor_IsSet(&bundle->radius.desc, fdset))
487     descriptor_Read(&bundle->radius.desc, bundle, fdset);
488 #endif
489 
490   if (FD_ISSET(bundle->dev.fd, fdset)) {
491     struct tun_data tun;
492     int n, pri;
493 
494     /* something to read from tun */
495     n = read(bundle->dev.fd, &tun, sizeof tun);
496     if (n < 0) {
497       log_Printf(LogWARN, "read from %s: %s\n", TUN_NAME, strerror(errno));
498       return;
499     }
500     n -= sizeof tun - sizeof tun.data;
501     if (n <= 0) {
502       log_Printf(LogERROR, "read from %s: Only %d bytes read ?\n", TUN_NAME, n);
503       return;
504     }
505     if (!tun_check_header(tun, AF_INET))
506       return;
507 
508     if (((struct ip *)tun.data)->ip_dst.s_addr ==
509         bundle->ncp.ipcp.my_ip.s_addr) {
510       /* we've been asked to send something addressed *to* us :( */
511       if (Enabled(bundle, OPT_LOOPBACK)) {
512         pri = PacketCheck(bundle, tun.data, n, &bundle->filter.in);
513         if (pri >= 0) {
514           n += sizeof tun - sizeof tun.data;
515           write(bundle->dev.fd, &tun, n);
516           log_Printf(LogDEBUG, "Looped back packet addressed to myself\n");
517         }
518         return;
519       } else
520         log_Printf(LogDEBUG, "Oops - forwarding packet addressed to myself\n");
521     }
522 
523     /*
524      * Process on-demand dialup. Output packets are queued within tunnel
525      * device until IPCP is opened.
526      */
527 
528     if (bundle_Phase(bundle) == PHASE_DEAD) {
529       /*
530        * Note, we must be in AUTO mode :-/ otherwise our interface should
531        * *not* be UP and we can't receive data
532        */
533       if ((pri = PacketCheck(bundle, tun.data, n, &bundle->filter.dial)) >= 0)
534         bundle_Open(bundle, NULL, PHYS_AUTO, 0);
535       else
536         /*
537          * Drop the packet.  If we were to queue it, we'd just end up with
538          * a pile of timed-out data in our output queue by the time we get
539          * around to actually dialing.  We'd also prematurely reach the
540          * threshold at which we stop select()ing to read() the tun
541          * device - breaking auto-dial.
542          */
543         return;
544     }
545 
546     pri = PacketCheck(bundle, tun.data, n, &bundle->filter.out);
547     if (pri >= 0)
548       ip_Enqueue(&bundle->ncp.ipcp, pri, tun.data, n);
549   }
550 }
551 
552 static int
553 bundle_DescriptorWrite(struct descriptor *d, struct bundle *bundle,
554                        const fd_set *fdset)
555 {
556   struct datalink *dl;
557   int result = 0;
558 
559   /* This is not actually necessary as struct mpserver doesn't Write() */
560   if (descriptor_IsSet(&bundle->ncp.mp.server.desc, fdset))
561     descriptor_Write(&bundle->ncp.mp.server.desc, bundle, fdset);
562 
563   for (dl = bundle->links; dl; dl = dl->next)
564     if (descriptor_IsSet(&dl->desc, fdset))
565       result += descriptor_Write(&dl->desc, bundle, fdset);
566 
567   return result;
568 }
569 
570 void
571 bundle_LockTun(struct bundle *bundle)
572 {
573   FILE *lockfile;
574   char pidfile[MAXPATHLEN];
575 
576   snprintf(pidfile, sizeof pidfile, "%stun%d.pid", _PATH_VARRUN, bundle->unit);
577   lockfile = ID0fopen(pidfile, "w");
578   if (lockfile != NULL) {
579     fprintf(lockfile, "%d\n", (int)getpid());
580     fclose(lockfile);
581   }
582 #ifndef RELEASE_CRUNCH
583   else
584     log_Printf(LogERROR, "Warning: Can't create %s: %s\n",
585                pidfile, strerror(errno));
586 #endif
587 }
588 
589 static void
590 bundle_UnlockTun(struct bundle *bundle)
591 {
592   char pidfile[MAXPATHLEN];
593 
594   snprintf(pidfile, sizeof pidfile, "%stun%d.pid", _PATH_VARRUN, bundle->unit);
595   ID0unlink(pidfile);
596 }
597 
598 struct bundle *
599 bundle_Create(const char *prefix, int type, const char **argv)
600 {
601   static struct bundle bundle;		/* there can be only one */
602   int enoentcount, err;
603   const char *ifname;
604 #if defined(TUNSIFMODE) || defined(TUNSLMODE)
605   int iff;
606 #endif
607 
608   if (bundle.iface != NULL) {	/* Already allocated ! */
609     log_Printf(LogALERT, "bundle_Create:  There's only one BUNDLE !\n");
610     return NULL;
611   }
612 
613   err = ENOENT;
614   enoentcount = 0;
615   for (bundle.unit = 0; ; bundle.unit++) {
616     snprintf(bundle.dev.Name, sizeof bundle.dev.Name, "%s%d",
617              prefix, bundle.unit);
618     bundle.dev.fd = ID0open(bundle.dev.Name, O_RDWR);
619     if (bundle.dev.fd >= 0)
620       break;
621     else if (errno == ENXIO) {
622       err = errno;
623       break;
624     } else if (errno == ENOENT) {
625       if (++enoentcount > 2)
626 	break;
627     } else
628       err = errno;
629   }
630 
631   if (bundle.dev.fd < 0) {
632     log_Printf(LogWARN, "No available tunnel devices found (%s).\n",
633               strerror(err));
634     return NULL;
635   }
636 
637   log_SetTun(bundle.unit);
638   bundle.argv = argv;
639   bundle.argv0 = argv[0];
640   bundle.argv1 = argv[1];
641 
642   ifname = strrchr(bundle.dev.Name, '/');
643   if (ifname == NULL)
644     ifname = bundle.dev.Name;
645   else
646     ifname++;
647 
648   bundle.iface = iface_Create(ifname);
649   if (bundle.iface == NULL) {
650     close(bundle.dev.fd);
651     return NULL;
652   }
653 
654 #ifdef TUNSIFMODE
655   /* Make sure we're POINTOPOINT */
656   iff = IFF_POINTOPOINT;
657   if (ID0ioctl(bundle.dev.fd, TUNSIFMODE, &iff) < 0)
658     log_Printf(LogERROR, "bundle_Create: ioctl(TUNSIFMODE): %s\n",
659 	       strerror(errno));
660 #endif
661 
662 #ifdef TUNSLMODE
663   /* Make sure we're POINTOPOINT */
664   iff = 0;
665   if (ID0ioctl(bundle.dev.fd, TUNSLMODE, &iff) < 0)
666     log_Printf(LogERROR, "bundle_Create: ioctl(TUNSLMODE): %s\n",
667 	       strerror(errno));
668 #endif
669 
670   if (!iface_SetFlags(bundle.iface, IFF_UP)) {
671     iface_Destroy(bundle.iface);
672     bundle.iface = NULL;
673     close(bundle.dev.fd);
674     return NULL;
675   }
676 
677   log_Printf(LogPHASE, "Using interface: %s\n", ifname);
678 
679   bundle.bandwidth = 0;
680   bundle.routing_seq = 0;
681   bundle.phase = PHASE_DEAD;
682   bundle.CleaningUp = 0;
683   bundle.NatEnabled = 0;
684 
685   bundle.fsm.LayerStart = bundle_LayerStart;
686   bundle.fsm.LayerUp = bundle_LayerUp;
687   bundle.fsm.LayerDown = bundle_LayerDown;
688   bundle.fsm.LayerFinish = bundle_LayerFinish;
689   bundle.fsm.object = &bundle;
690 
691   bundle.cfg.idle.timeout = NCP_IDLE_TIMEOUT;
692   bundle.cfg.idle.min_timeout = 0;
693   *bundle.cfg.auth.name = '\0';
694   *bundle.cfg.auth.key = '\0';
695   bundle.cfg.opt = OPT_SROUTES | OPT_IDCHECK | OPT_LOOPBACK |
696                    OPT_THROUGHPUT | OPT_UTMP;
697   *bundle.cfg.label = '\0';
698   bundle.cfg.mtu = DEF_MTU;
699   bundle.cfg.choked.timeout = CHOKED_TIMEOUT;
700   bundle.phys_type.all = type;
701   bundle.phys_type.open = 0;
702   bundle.upat = 0;
703 
704   bundle.links = datalink_Create("deflink", &bundle, type);
705   if (bundle.links == NULL) {
706     log_Printf(LogALERT, "Cannot create data link: %s\n", strerror(errno));
707     iface_Destroy(bundle.iface);
708     bundle.iface = NULL;
709     close(bundle.dev.fd);
710     return NULL;
711   }
712 
713   bundle.desc.type = BUNDLE_DESCRIPTOR;
714   bundle.desc.UpdateSet = bundle_UpdateSet;
715   bundle.desc.IsSet = bundle_IsSet;
716   bundle.desc.Read = bundle_DescriptorRead;
717   bundle.desc.Write = bundle_DescriptorWrite;
718 
719   mp_Init(&bundle.ncp.mp, &bundle);
720 
721   /* Send over the first physical link by default */
722   ipcp_Init(&bundle.ncp.ipcp, &bundle, &bundle.links->physical->link,
723             &bundle.fsm);
724 
725   memset(&bundle.filter, '\0', sizeof bundle.filter);
726   bundle.filter.in.fragok = bundle.filter.in.logok = 1;
727   bundle.filter.in.name = "IN";
728   bundle.filter.out.fragok = bundle.filter.out.logok = 1;
729   bundle.filter.out.name = "OUT";
730   bundle.filter.dial.name = "DIAL";
731   bundle.filter.dial.logok = 1;
732   bundle.filter.alive.name = "ALIVE";
733   bundle.filter.alive.logok = 1;
734   {
735     int	i;
736     for (i = 0; i < MAXFILTERS; i++) {
737         bundle.filter.in.rule[i].f_action = A_NONE;
738         bundle.filter.out.rule[i].f_action = A_NONE;
739         bundle.filter.dial.rule[i].f_action = A_NONE;
740         bundle.filter.alive.rule[i].f_action = A_NONE;
741     }
742   }
743   memset(&bundle.idle.timer, '\0', sizeof bundle.idle.timer);
744   bundle.idle.done = 0;
745   bundle.notify.fd = -1;
746   memset(&bundle.choked.timer, '\0', sizeof bundle.choked.timer);
747 #ifndef NORADIUS
748   radius_Init(&bundle.radius);
749 #endif
750 
751   /* Clean out any leftover crud */
752   iface_Clear(bundle.iface, IFACE_CLEAR_ALL);
753 
754   bundle_LockTun(&bundle);
755 
756   return &bundle;
757 }
758 
759 static void
760 bundle_DownInterface(struct bundle *bundle)
761 {
762   route_IfDelete(bundle, 1);
763   iface_ClearFlags(bundle->iface, IFF_UP);
764 }
765 
766 void
767 bundle_Destroy(struct bundle *bundle)
768 {
769   struct datalink *dl;
770 
771   /*
772    * Clean up the interface.  We don't need to timer_Stop()s, mp_Down(),
773    * ipcp_CleanInterface() and bundle_DownInterface() unless we're getting
774    * out under exceptional conditions such as a descriptor exception.
775    */
776   timer_Stop(&bundle->idle.timer);
777   timer_Stop(&bundle->choked.timer);
778   mp_Down(&bundle->ncp.mp);
779   ipcp_CleanInterface(&bundle->ncp.ipcp);
780   bundle_DownInterface(bundle);
781 
782 #ifndef NORADIUS
783   /* Tell the radius server the bad news */
784   radius_Destroy(&bundle->radius);
785 #endif
786 
787   /* Again, these are all DATALINK_CLOSED unless we're abending */
788   dl = bundle->links;
789   while (dl)
790     dl = datalink_Destroy(dl);
791 
792   close(bundle->dev.fd);
793   bundle_UnlockTun(bundle);
794 
795   /* In case we never made PHASE_NETWORK */
796   bundle_Notify(bundle, EX_ERRDEAD);
797 
798   iface_Destroy(bundle->iface);
799   bundle->iface = NULL;
800 }
801 
802 struct rtmsg {
803   struct rt_msghdr m_rtm;
804   char m_space[64];
805 };
806 
807 int
808 bundle_SetRoute(struct bundle *bundle, int cmd, struct in_addr dst,
809                 struct in_addr gateway, struct in_addr mask, int bang, int ssh)
810 {
811   struct rtmsg rtmes;
812   int s, nb, wb;
813   char *cp;
814   const char *cmdstr;
815   struct sockaddr_in rtdata;
816   int result = 1;
817 
818   if (bang)
819     cmdstr = (cmd == RTM_ADD ? "Add!" : "Delete!");
820   else
821     cmdstr = (cmd == RTM_ADD ? "Add" : "Delete");
822   s = ID0socket(PF_ROUTE, SOCK_RAW, 0);
823   if (s < 0) {
824     log_Printf(LogERROR, "bundle_SetRoute: socket(): %s\n", strerror(errno));
825     return result;
826   }
827   memset(&rtmes, '\0', sizeof rtmes);
828   rtmes.m_rtm.rtm_version = RTM_VERSION;
829   rtmes.m_rtm.rtm_type = cmd;
830   rtmes.m_rtm.rtm_addrs = RTA_DST;
831   rtmes.m_rtm.rtm_seq = ++bundle->routing_seq;
832   rtmes.m_rtm.rtm_pid = getpid();
833   rtmes.m_rtm.rtm_flags = RTF_UP | RTF_GATEWAY | RTF_STATIC;
834 
835   if (cmd == RTM_ADD || cmd == RTM_CHANGE) {
836     if (bundle->ncp.ipcp.cfg.sendpipe > 0) {
837       rtmes.m_rtm.rtm_rmx.rmx_sendpipe = bundle->ncp.ipcp.cfg.sendpipe;
838       rtmes.m_rtm.rtm_inits |= RTV_SPIPE;
839     }
840     if (bundle->ncp.ipcp.cfg.recvpipe > 0) {
841       rtmes.m_rtm.rtm_rmx.rmx_recvpipe = bundle->ncp.ipcp.cfg.recvpipe;
842       rtmes.m_rtm.rtm_inits |= RTV_RPIPE;
843     }
844   }
845 
846   memset(&rtdata, '\0', sizeof rtdata);
847   rtdata.sin_len = sizeof rtdata;
848   rtdata.sin_family = AF_INET;
849   rtdata.sin_port = 0;
850   rtdata.sin_addr = dst;
851 
852   cp = rtmes.m_space;
853   memcpy(cp, &rtdata, rtdata.sin_len);
854   cp += rtdata.sin_len;
855   if (cmd == RTM_ADD) {
856     if (gateway.s_addr == INADDR_ANY) {
857       if (!ssh)
858         log_Printf(LogERROR, "bundle_SetRoute: Cannot add a route with"
859                    " destination 0.0.0.0\n");
860       close(s);
861       return result;
862     } else {
863       rtdata.sin_addr = gateway;
864       memcpy(cp, &rtdata, rtdata.sin_len);
865       cp += rtdata.sin_len;
866       rtmes.m_rtm.rtm_addrs |= RTA_GATEWAY;
867     }
868   }
869 
870   if (dst.s_addr == INADDR_ANY)
871     mask.s_addr = INADDR_ANY;
872 
873   if (cmd == RTM_ADD || dst.s_addr == INADDR_ANY) {
874     rtdata.sin_addr = mask;
875     memcpy(cp, &rtdata, rtdata.sin_len);
876     cp += rtdata.sin_len;
877     rtmes.m_rtm.rtm_addrs |= RTA_NETMASK;
878   }
879 
880   nb = cp - (char *) &rtmes;
881   rtmes.m_rtm.rtm_msglen = nb;
882   wb = ID0write(s, &rtmes, nb);
883   if (wb < 0) {
884     log_Printf(LogTCPIP, "bundle_SetRoute failure:\n");
885     log_Printf(LogTCPIP, "bundle_SetRoute:  Cmd = %s\n", cmdstr);
886     log_Printf(LogTCPIP, "bundle_SetRoute:  Dst = %s\n", inet_ntoa(dst));
887     log_Printf(LogTCPIP, "bundle_SetRoute:  Gateway = %s\n", inet_ntoa(gateway));
888     log_Printf(LogTCPIP, "bundle_SetRoute:  Mask = %s\n", inet_ntoa(mask));
889 failed:
890     if (cmd == RTM_ADD && (rtmes.m_rtm.rtm_errno == EEXIST ||
891                            (rtmes.m_rtm.rtm_errno == 0 && errno == EEXIST))) {
892       if (!bang) {
893         log_Printf(LogWARN, "Add route failed: %s already exists\n",
894 		  dst.s_addr == 0 ? "default" : inet_ntoa(dst));
895         result = 0;	/* Don't add to our dynamic list */
896       } else {
897         rtmes.m_rtm.rtm_type = cmd = RTM_CHANGE;
898         if ((wb = ID0write(s, &rtmes, nb)) < 0)
899           goto failed;
900       }
901     } else if (cmd == RTM_DELETE &&
902              (rtmes.m_rtm.rtm_errno == ESRCH ||
903               (rtmes.m_rtm.rtm_errno == 0 && errno == ESRCH))) {
904       if (!bang)
905         log_Printf(LogWARN, "Del route failed: %s: Non-existent\n",
906                   inet_ntoa(dst));
907     } else if (rtmes.m_rtm.rtm_errno == 0) {
908       if (!ssh || errno != ENETUNREACH)
909         log_Printf(LogWARN, "%s route failed: %s: errno: %s\n", cmdstr,
910                    inet_ntoa(dst), strerror(errno));
911     } else
912       log_Printf(LogWARN, "%s route failed: %s: %s\n",
913 		 cmdstr, inet_ntoa(dst), strerror(rtmes.m_rtm.rtm_errno));
914   }
915   log_Printf(LogDEBUG, "wrote %d: cmd = %s, dst = %x, gateway = %x\n",
916             wb, cmdstr, (unsigned)dst.s_addr, (unsigned)gateway.s_addr);
917   close(s);
918 
919   return result;
920 }
921 
922 void
923 bundle_LinkClosed(struct bundle *bundle, struct datalink *dl)
924 {
925   /*
926    * Our datalink has closed.
927    * CleanDatalinks() (called from DoLoop()) will remove closed
928    * BACKGROUND and DIRECT links.
929    * If it's the last data link, enter phase DEAD.
930    *
931    * NOTE: dl may not be in our list (bundle_SendDatalink()) !
932    */
933 
934   struct datalink *odl;
935   int other_links;
936 
937   log_SetTtyCommandMode(dl);
938 
939   other_links = 0;
940   for (odl = bundle->links; odl; odl = odl->next)
941     if (odl != dl && odl->state != DATALINK_CLOSED)
942       other_links++;
943 
944   if (!other_links) {
945     if (dl->physical->type != PHYS_AUTO)	/* Not in -auto mode */
946       bundle_DownInterface(bundle);
947     fsm2initial(&bundle->ncp.ipcp.fsm);
948     bundle_NewPhase(bundle, PHASE_DEAD);
949     bundle_StopIdleTimer(bundle);
950   }
951 }
952 
953 void
954 bundle_Open(struct bundle *bundle, const char *name, int mask, int force)
955 {
956   /*
957    * Please open the given datalink, or all if name == NULL
958    */
959   struct datalink *dl;
960 
961   for (dl = bundle->links; dl; dl = dl->next)
962     if (name == NULL || !strcasecmp(dl->name, name)) {
963       if ((mask & dl->physical->type) &&
964           (dl->state == DATALINK_CLOSED ||
965            (force && dl->state == DATALINK_OPENING &&
966             dl->dial.timer.state == TIMER_RUNNING))) {
967         if (force)	/* Ignore redial timeout ? */
968           timer_Stop(&dl->dial.timer);
969         datalink_Up(dl, 1, 1);
970         if (mask & PHYS_AUTO)
971           /* Only one AUTO link at a time */
972           break;
973       }
974       if (name != NULL)
975         break;
976     }
977 }
978 
979 struct datalink *
980 bundle2datalink(struct bundle *bundle, const char *name)
981 {
982   struct datalink *dl;
983 
984   if (name != NULL) {
985     for (dl = bundle->links; dl; dl = dl->next)
986       if (!strcasecmp(dl->name, name))
987         return dl;
988   } else if (bundle->links && !bundle->links->next)
989     return bundle->links;
990 
991   return NULL;
992 }
993 
994 int
995 bundle_FillQueues(struct bundle *bundle)
996 {
997   int total;
998 
999   if (bundle->ncp.mp.active)
1000     total = mp_FillQueues(bundle);
1001   else {
1002     struct datalink *dl;
1003     int add;
1004 
1005     for (total = 0, dl = bundle->links; dl; dl = dl->next)
1006       if (dl->state == DATALINK_OPEN) {
1007         add = link_QueueLen(&dl->physical->link);
1008         if (add == 0 && dl->physical->out == NULL)
1009           add = ip_PushPacket(&dl->physical->link, bundle);
1010         total += add;
1011       }
1012   }
1013 
1014   return total + ip_QueueLen(&bundle->ncp.ipcp);
1015 }
1016 
1017 int
1018 bundle_ShowLinks(struct cmdargs const *arg)
1019 {
1020   struct datalink *dl;
1021   struct pppThroughput *t;
1022   int secs;
1023 
1024   for (dl = arg->bundle->links; dl; dl = dl->next) {
1025     prompt_Printf(arg->prompt, "Name: %s [%s, %s]",
1026                   dl->name, mode2Nam(dl->physical->type), datalink_State(dl));
1027     if (dl->physical->link.throughput.rolling && dl->state == DATALINK_OPEN)
1028       prompt_Printf(arg->prompt, " bandwidth %d, %llu bps (%llu bytes/sec)",
1029                     dl->mp.bandwidth ? dl->mp.bandwidth :
1030                                        physical_GetSpeed(dl->physical),
1031                     dl->physical->link.throughput.OctetsPerSecond * 8,
1032                     dl->physical->link.throughput.OctetsPerSecond);
1033     prompt_Printf(arg->prompt, "\n");
1034   }
1035 
1036   t = &arg->bundle->ncp.mp.link.throughput;
1037   secs = t->downtime ? 0 : throughput_uptime(t);
1038   if (secs > t->SamplePeriod)
1039     secs = t->SamplePeriod;
1040   if (secs)
1041     prompt_Printf(arg->prompt, "Currently averaging %llu bps (%llu bytes/sec)"
1042                   " over the last %d secs\n", t->OctetsPerSecond * 8,
1043                   t->OctetsPerSecond, secs);
1044 
1045   return 0;
1046 }
1047 
1048 static const char *
1049 optval(struct bundle *bundle, int bit)
1050 {
1051   return (bundle->cfg.opt & bit) ? "enabled" : "disabled";
1052 }
1053 
1054 int
1055 bundle_ShowStatus(struct cmdargs const *arg)
1056 {
1057   int remaining;
1058 
1059   prompt_Printf(arg->prompt, "Phase %s\n", bundle_PhaseName(arg->bundle));
1060   prompt_Printf(arg->prompt, " Title:         %s\n", arg->bundle->argv[0]);
1061   prompt_Printf(arg->prompt, " Device:        %s\n", arg->bundle->dev.Name);
1062   prompt_Printf(arg->prompt, " Interface:     %s @ %lubps",
1063                 arg->bundle->iface->name, arg->bundle->bandwidth);
1064 
1065   if (arg->bundle->upat) {
1066     int secs = time(NULL) - arg->bundle->upat;
1067 
1068     prompt_Printf(arg->prompt, ", up time %d:%02d:%02d", secs / 3600,
1069                   (secs / 60) % 60, secs % 60);
1070   }
1071 
1072   prompt_Printf(arg->prompt, "\n\nDefaults:\n");
1073   prompt_Printf(arg->prompt, " Label:         %s\n", arg->bundle->cfg.label);
1074   prompt_Printf(arg->prompt, " Auth name:     %s\n",
1075                 arg->bundle->cfg.auth.name);
1076 
1077   prompt_Printf(arg->prompt, " Choked Timer:  %ds\n",
1078                 arg->bundle->cfg.choked.timeout);
1079 
1080 #ifndef NORADIUS
1081   radius_Show(&arg->bundle->radius, arg->prompt);
1082 #endif
1083 
1084   prompt_Printf(arg->prompt, " Idle Timer:    ");
1085   if (arg->bundle->cfg.idle.timeout) {
1086     prompt_Printf(arg->prompt, "%ds", arg->bundle->cfg.idle.timeout);
1087     if (arg->bundle->cfg.idle.min_timeout)
1088       prompt_Printf(arg->prompt, ", min %ds",
1089                     arg->bundle->cfg.idle.min_timeout);
1090     remaining = bundle_RemainingIdleTime(arg->bundle);
1091     if (remaining != -1)
1092       prompt_Printf(arg->prompt, " (%ds remaining)", remaining);
1093     prompt_Printf(arg->prompt, "\n");
1094   } else
1095     prompt_Printf(arg->prompt, "disabled\n");
1096   prompt_Printf(arg->prompt, " MTU:           ");
1097   if (arg->bundle->cfg.mtu)
1098     prompt_Printf(arg->prompt, "%d\n", arg->bundle->cfg.mtu);
1099   else
1100     prompt_Printf(arg->prompt, "unspecified\n");
1101 
1102   prompt_Printf(arg->prompt, " sendpipe:      ");
1103   if (arg->bundle->ncp.ipcp.cfg.sendpipe > 0)
1104     prompt_Printf(arg->prompt, "%-20ld", arg->bundle->ncp.ipcp.cfg.sendpipe);
1105   else
1106     prompt_Printf(arg->prompt, "unspecified         ");
1107   prompt_Printf(arg->prompt, " recvpipe:      ");
1108   if (arg->bundle->ncp.ipcp.cfg.recvpipe > 0)
1109     prompt_Printf(arg->prompt, "%ld\n", arg->bundle->ncp.ipcp.cfg.recvpipe);
1110   else
1111     prompt_Printf(arg->prompt, "unspecified\n");
1112 
1113   prompt_Printf(arg->prompt, " Sticky Routes: %-20.20s",
1114                 optval(arg->bundle, OPT_SROUTES));
1115   prompt_Printf(arg->prompt, " ID check:      %s\n",
1116                 optval(arg->bundle, OPT_IDCHECK));
1117   prompt_Printf(arg->prompt, " Keep-Session:  %-20.20s",
1118                 optval(arg->bundle, OPT_KEEPSESSION));
1119   prompt_Printf(arg->prompt, " Loopback:      %s\n",
1120                 optval(arg->bundle, OPT_LOOPBACK));
1121   prompt_Printf(arg->prompt, " PasswdAuth:    %-20.20s",
1122                 optval(arg->bundle, OPT_PASSWDAUTH));
1123   prompt_Printf(arg->prompt, " Proxy:         %s\n",
1124                 optval(arg->bundle, OPT_PROXY));
1125   prompt_Printf(arg->prompt, " Proxyall:      %-20.20s",
1126                 optval(arg->bundle, OPT_PROXYALL));
1127   prompt_Printf(arg->prompt, " Throughput:    %s\n",
1128                 optval(arg->bundle, OPT_THROUGHPUT));
1129   prompt_Printf(arg->prompt, " Utmp Logging:  %-20.20s",
1130                 optval(arg->bundle, OPT_UTMP));
1131   prompt_Printf(arg->prompt, " Iface-Alias:   %s\n",
1132                 optval(arg->bundle, OPT_IFACEALIAS));
1133 
1134   return 0;
1135 }
1136 
1137 static void
1138 bundle_IdleTimeout(void *v)
1139 {
1140   struct bundle *bundle = (struct bundle *)v;
1141 
1142   log_Printf(LogPHASE, "Idle timer expired.\n");
1143   bundle_StopIdleTimer(bundle);
1144   bundle_Close(bundle, NULL, CLOSE_STAYDOWN);
1145 }
1146 
1147 /*
1148  *  Start Idle timer. If timeout is reached, we call bundle_Close() to
1149  *  close LCP and link.
1150  */
1151 void
1152 bundle_StartIdleTimer(struct bundle *bundle)
1153 {
1154   timer_Stop(&bundle->idle.timer);
1155   if ((bundle->phys_type.open & (PHYS_DEDICATED|PHYS_DDIAL)) !=
1156       bundle->phys_type.open && bundle->cfg.idle.timeout) {
1157     int secs;
1158 
1159     secs = bundle->cfg.idle.timeout;
1160     if (bundle->cfg.idle.min_timeout > secs && bundle->upat) {
1161       int up = time(NULL) - bundle->upat;
1162 
1163       if ((long long)bundle->cfg.idle.min_timeout - up > (long long)secs)
1164         secs = bundle->cfg.idle.min_timeout - up;
1165     }
1166     bundle->idle.timer.func = bundle_IdleTimeout;
1167     bundle->idle.timer.name = "idle";
1168     bundle->idle.timer.load = secs * SECTICKS;
1169     bundle->idle.timer.arg = bundle;
1170     timer_Start(&bundle->idle.timer);
1171     bundle->idle.done = time(NULL) + secs;
1172   }
1173 }
1174 
1175 void
1176 bundle_SetIdleTimer(struct bundle *bundle, int timeout, int min_timeout)
1177 {
1178   bundle->cfg.idle.timeout = timeout;
1179   if (min_timeout >= 0)
1180     bundle->cfg.idle.min_timeout = min_timeout;
1181   if (bundle_LinkIsUp(bundle))
1182     bundle_StartIdleTimer(bundle);
1183 }
1184 
1185 void
1186 bundle_StopIdleTimer(struct bundle *bundle)
1187 {
1188   timer_Stop(&bundle->idle.timer);
1189   bundle->idle.done = 0;
1190 }
1191 
1192 static int
1193 bundle_RemainingIdleTime(struct bundle *bundle)
1194 {
1195   if (bundle->idle.done)
1196     return bundle->idle.done - time(NULL);
1197   return -1;
1198 }
1199 
1200 int
1201 bundle_IsDead(struct bundle *bundle)
1202 {
1203   return !bundle->links || (bundle->phase == PHASE_DEAD && bundle->CleaningUp);
1204 }
1205 
1206 static struct datalink *
1207 bundle_DatalinkLinkout(struct bundle *bundle, struct datalink *dl)
1208 {
1209   struct datalink **dlp;
1210 
1211   for (dlp = &bundle->links; *dlp; dlp = &(*dlp)->next)
1212     if (*dlp == dl) {
1213       *dlp = dl->next;
1214       dl->next = NULL;
1215       bundle_LinksRemoved(bundle);
1216       return dl;
1217     }
1218 
1219   return NULL;
1220 }
1221 
1222 static void
1223 bundle_DatalinkLinkin(struct bundle *bundle, struct datalink *dl)
1224 {
1225   struct datalink **dlp = &bundle->links;
1226 
1227   while (*dlp)
1228     dlp = &(*dlp)->next;
1229 
1230   *dlp = dl;
1231   dl->next = NULL;
1232 
1233   bundle_LinkAdded(bundle, dl);
1234   mp_CheckAutoloadTimer(&bundle->ncp.mp);
1235 }
1236 
1237 void
1238 bundle_CleanDatalinks(struct bundle *bundle)
1239 {
1240   struct datalink **dlp = &bundle->links;
1241   int found = 0;
1242 
1243   while (*dlp)
1244     if ((*dlp)->state == DATALINK_CLOSED &&
1245         (*dlp)->physical->type & (PHYS_DIRECT|PHYS_BACKGROUND)) {
1246       *dlp = datalink_Destroy(*dlp);
1247       found++;
1248     } else
1249       dlp = &(*dlp)->next;
1250 
1251   if (found)
1252     bundle_LinksRemoved(bundle);
1253 }
1254 
1255 int
1256 bundle_DatalinkClone(struct bundle *bundle, struct datalink *dl,
1257                      const char *name)
1258 {
1259   if (bundle2datalink(bundle, name)) {
1260     log_Printf(LogWARN, "Clone: %s: name already exists\n", name);
1261     return 0;
1262   }
1263 
1264   bundle_DatalinkLinkin(bundle, datalink_Clone(dl, name));
1265   return 1;
1266 }
1267 
1268 void
1269 bundle_DatalinkRemove(struct bundle *bundle, struct datalink *dl)
1270 {
1271   dl = bundle_DatalinkLinkout(bundle, dl);
1272   if (dl)
1273     datalink_Destroy(dl);
1274 }
1275 
1276 void
1277 bundle_SetLabel(struct bundle *bundle, const char *label)
1278 {
1279   if (label)
1280     strncpy(bundle->cfg.label, label, sizeof bundle->cfg.label - 1);
1281   else
1282     *bundle->cfg.label = '\0';
1283 }
1284 
1285 const char *
1286 bundle_GetLabel(struct bundle *bundle)
1287 {
1288   return *bundle->cfg.label ? bundle->cfg.label : NULL;
1289 }
1290 
1291 void
1292 bundle_ReceiveDatalink(struct bundle *bundle, int s, struct sockaddr_un *sun)
1293 {
1294   char cmsgbuf[sizeof(struct cmsghdr) + sizeof(int)];
1295   struct cmsghdr *cmsg = (struct cmsghdr *)cmsgbuf;
1296   struct msghdr msg;
1297   struct iovec iov[SCATTER_SEGMENTS];
1298   struct datalink *dl;
1299   int niov, link_fd, expect, f;
1300   pid_t pid;
1301 
1302   log_Printf(LogPHASE, "Receiving datalink\n");
1303 
1304   /* Create our scatter/gather array */
1305   niov = 1;
1306   iov[0].iov_len = strlen(Version) + 1;
1307   iov[0].iov_base = (char *)malloc(iov[0].iov_len);
1308   if (datalink2iov(NULL, iov, &niov, sizeof iov / sizeof *iov, 0) == -1) {
1309     close(s);
1310     return;
1311   }
1312 
1313   pid = getpid();
1314   write(s, &pid, sizeof pid);
1315 
1316   for (f = expect = 0; f < niov; f++)
1317     expect += iov[f].iov_len;
1318 
1319   /* Set up our message */
1320   cmsg->cmsg_len = sizeof cmsgbuf;
1321   cmsg->cmsg_level = SOL_SOCKET;
1322   cmsg->cmsg_type = 0;
1323 
1324   memset(&msg, '\0', sizeof msg);
1325   msg.msg_name = (caddr_t)sun;
1326   msg.msg_namelen = sizeof *sun;
1327   msg.msg_iov = iov;
1328   msg.msg_iovlen = niov;
1329   msg.msg_control = cmsgbuf;
1330   msg.msg_controllen = sizeof cmsgbuf;
1331 
1332   log_Printf(LogDEBUG, "Expecting %d scatter/gather bytes\n", expect);
1333   f = expect + 100;
1334   setsockopt(s, SOL_SOCKET, SO_RCVBUF, &f, sizeof f);
1335   if ((f = recvmsg(s, &msg, MSG_WAITALL)) != expect) {
1336     if (f == -1)
1337       log_Printf(LogERROR, "Failed recvmsg: %s\n", strerror(errno));
1338     else
1339       log_Printf(LogERROR, "Failed recvmsg: Got %d, not %d\n", f, expect);
1340     while (niov--)
1341       free(iov[niov].iov_base);
1342     close(s);
1343     return;
1344   }
1345 
1346   write(s, "!", 1);	/* ACK */
1347   close(s);
1348 
1349   if (cmsg->cmsg_type != SCM_RIGHTS) {
1350     log_Printf(LogERROR, "Recvmsg: no descriptor received !\n");
1351     while (niov--)
1352       free(iov[niov].iov_base);
1353     return;
1354   }
1355 
1356   /* We've successfully received an open file descriptor through our socket */
1357   log_Printf(LogDEBUG, "Receiving device descriptor\n");
1358   link_fd = *(int *)CMSG_DATA(cmsg);
1359 
1360   if (strncmp(Version, iov[0].iov_base, iov[0].iov_len)) {
1361     log_Printf(LogWARN, "Cannot receive datalink, incorrect version"
1362                " (\"%.*s\", not \"%s\")\n", (int)iov[0].iov_len,
1363                (char *)iov[0].iov_base, Version);
1364     close(link_fd);
1365     while (niov--)
1366       free(iov[niov].iov_base);
1367     return;
1368   }
1369 
1370   niov = 1;
1371   dl = iov2datalink(bundle, iov, &niov, sizeof iov / sizeof *iov, link_fd);
1372   if (dl) {
1373     bundle_DatalinkLinkin(bundle, dl);
1374     datalink_AuthOk(dl);
1375     bundle_CalculateBandwidth(dl->bundle);
1376   } else
1377     close(link_fd);
1378 
1379   free(iov[0].iov_base);
1380 }
1381 
1382 void
1383 bundle_SendDatalink(struct datalink *dl, int s, struct sockaddr_un *sun)
1384 {
1385   char cmsgbuf[sizeof(struct cmsghdr) + sizeof(int)], ack;
1386   struct cmsghdr *cmsg = (struct cmsghdr *)cmsgbuf;
1387   struct msghdr msg;
1388   struct iovec iov[SCATTER_SEGMENTS];
1389   int niov, link_fd, f, expect, newsid;
1390   pid_t newpid;
1391 
1392   log_Printf(LogPHASE, "Transmitting datalink %s\n", dl->name);
1393 
1394   bundle_LinkClosed(dl->bundle, dl);
1395   bundle_DatalinkLinkout(dl->bundle, dl);
1396 
1397   /* Build our scatter/gather array */
1398   iov[0].iov_len = strlen(Version) + 1;
1399   iov[0].iov_base = strdup(Version);
1400   niov = 1;
1401 
1402   read(s, &newpid, sizeof newpid);
1403   link_fd = datalink2iov(dl, iov, &niov, sizeof iov / sizeof *iov, newpid);
1404 
1405   if (link_fd != -1) {
1406     memset(&msg, '\0', sizeof msg);
1407 
1408     msg.msg_name = (caddr_t)sun;
1409     msg.msg_namelen = sizeof *sun;
1410     msg.msg_iov = iov;
1411     msg.msg_iovlen = niov;
1412 
1413     cmsg->cmsg_len = sizeof cmsgbuf;
1414     cmsg->cmsg_level = SOL_SOCKET;
1415     cmsg->cmsg_type = SCM_RIGHTS;
1416     *(int *)CMSG_DATA(cmsg) = link_fd;
1417     msg.msg_control = cmsgbuf;
1418     msg.msg_controllen = sizeof cmsgbuf;
1419 
1420     for (f = expect = 0; f < niov; f++)
1421       expect += iov[f].iov_len;
1422 
1423     log_Printf(LogDEBUG, "Sending %d bytes in scatter/gather array\n", expect);
1424 
1425     f = expect + SOCKET_OVERHEAD;
1426     setsockopt(s, SOL_SOCKET, SO_SNDBUF, &f, sizeof f);
1427     if (sendmsg(s, &msg, 0) == -1)
1428       log_Printf(LogERROR, "Failed sendmsg: %s\n", strerror(errno));
1429     /* We must get the ACK before closing the descriptor ! */
1430     read(s, &ack, 1);
1431 
1432     newsid = Enabled(dl->bundle, OPT_KEEPSESSION) ||
1433              tcgetpgrp(link_fd) == getpgrp();
1434     close(link_fd);
1435     if (newsid)
1436       bundle_setsid(dl->bundle, 1);
1437   }
1438   close(s);
1439 
1440   while (niov--)
1441     free(iov[niov].iov_base);
1442 }
1443 
1444 int
1445 bundle_RenameDatalink(struct bundle *bundle, struct datalink *ndl,
1446                       const char *name)
1447 {
1448   struct datalink *dl;
1449 
1450   if (!strcasecmp(ndl->name, name))
1451     return 1;
1452 
1453   for (dl = bundle->links; dl; dl = dl->next)
1454     if (!strcasecmp(dl->name, name))
1455       return 0;
1456 
1457   datalink_Rename(ndl, name);
1458   return 1;
1459 }
1460 
1461 int
1462 bundle_SetMode(struct bundle *bundle, struct datalink *dl, int mode)
1463 {
1464   int omode;
1465 
1466   omode = dl->physical->type;
1467   if (omode == mode)
1468     return 1;
1469 
1470   if (mode == PHYS_AUTO && !(bundle->phys_type.all & PHYS_AUTO))
1471     /* First auto link */
1472     if (bundle->ncp.ipcp.peer_ip.s_addr == INADDR_ANY) {
1473       log_Printf(LogWARN, "You must `set ifaddr' or `open' before"
1474                  " changing mode to %s\n", mode2Nam(mode));
1475       return 0;
1476     }
1477 
1478   if (!datalink_SetMode(dl, mode))
1479     return 0;
1480 
1481   if (mode == PHYS_AUTO && !(bundle->phys_type.all & PHYS_AUTO) &&
1482       bundle->phase != PHASE_NETWORK)
1483     /* First auto link, we need an interface */
1484     ipcp_InterfaceUp(&bundle->ncp.ipcp);
1485 
1486   /* Regenerate phys_type and adjust idle timer */
1487   bundle_LinksRemoved(bundle);
1488 
1489   return 1;
1490 }
1491 
1492 void
1493 bundle_setsid(struct bundle *bundle, int holdsession)
1494 {
1495   /*
1496    * Lose the current session.  This means getting rid of our pid
1497    * too so that the tty device will really go away, and any getty
1498    * etc will be allowed to restart.
1499    */
1500   pid_t pid, orig;
1501   int fds[2];
1502   char done;
1503   struct datalink *dl;
1504 
1505   orig = getpid();
1506   if (pipe(fds) == -1) {
1507     log_Printf(LogERROR, "pipe: %s\n", strerror(errno));
1508     return;
1509   }
1510   switch ((pid = fork())) {
1511     case -1:
1512       log_Printf(LogERROR, "fork: %s\n", strerror(errno));
1513       close(fds[0]);
1514       close(fds[1]);
1515       return;
1516     case 0:
1517       close(fds[1]);
1518       read(fds[0], &done, 1);		/* uu_locks are mine ! */
1519       close(fds[0]);
1520       if (pipe(fds) == -1) {
1521         log_Printf(LogERROR, "pipe(2): %s\n", strerror(errno));
1522         return;
1523       }
1524       switch ((pid = fork())) {
1525         case -1:
1526           log_Printf(LogERROR, "fork(2): %s\n", strerror(errno));
1527           close(fds[0]);
1528           close(fds[1]);
1529           return;
1530         case 0:
1531           close(fds[1]);
1532           bundle_LockTun(bundle);	/* update pid */
1533           read(fds[0], &done, 1);	/* uu_locks are mine ! */
1534           close(fds[0]);
1535           setsid();
1536           log_Printf(LogPHASE, "%d -> %d: %s session control\n",
1537                      (int)orig, (int)getpid(),
1538                      holdsession ? "Passed" : "Dropped");
1539           timer_InitService(0);		/* Start the Timer Service */
1540           break;
1541         default:
1542           close(fds[0]);
1543           /* Give away all our physical locks (to the final process) */
1544           for (dl = bundle->links; dl; dl = dl->next)
1545             if (dl->state != DATALINK_CLOSED)
1546               physical_ChangedPid(dl->physical, pid);
1547           write(fds[1], "!", 1);	/* done */
1548           close(fds[1]);
1549           exit(0);
1550           break;
1551       }
1552       break;
1553     default:
1554       close(fds[0]);
1555       /* Give away all our physical locks (to the intermediate process) */
1556       for (dl = bundle->links; dl; dl = dl->next)
1557         if (dl->state != DATALINK_CLOSED)
1558           physical_ChangedPid(dl->physical, pid);
1559       write(fds[1], "!", 1);	/* done */
1560       close(fds[1]);
1561       if (holdsession) {
1562         int fd, status;
1563 
1564         timer_TermService();
1565         signal(SIGPIPE, SIG_DFL);
1566         signal(SIGALRM, SIG_DFL);
1567         signal(SIGHUP, SIG_DFL);
1568         signal(SIGTERM, SIG_DFL);
1569         signal(SIGINT, SIG_DFL);
1570         signal(SIGQUIT, SIG_DFL);
1571         for (fd = getdtablesize(); fd >= 0; fd--)
1572           close(fd);
1573         setuid(geteuid());
1574         /*
1575          * Reap the intermediate process.  As we're not exiting but the
1576          * intermediate is, we don't want it to become defunct.
1577          */
1578         waitpid(pid, &status, 0);
1579         /* Tweak our process arguments.... */
1580         bundle->argv[0] = "session owner";
1581         bundle->argv[1] = NULL;
1582         /*
1583          * Hang around for a HUP.  This should happen as soon as the
1584          * ppp that we passed our ctty descriptor to closes it.
1585          * NOTE: If this process dies, the passed descriptor becomes
1586          *       invalid and will give a select() error by setting one
1587          *       of the error fds, aborting the other ppp.  We don't
1588          *       want that to happen !
1589          */
1590         pause();
1591       }
1592       exit(0);
1593       break;
1594   }
1595 }
1596 
1597 int
1598 bundle_HighestState(struct bundle *bundle)
1599 {
1600   struct datalink *dl;
1601   int result = DATALINK_CLOSED;
1602 
1603   for (dl = bundle->links; dl; dl = dl->next)
1604     if (result < dl->state)
1605       result = dl->state;
1606 
1607   return result;
1608 }
1609 
1610 int
1611 bundle_Exception(struct bundle *bundle, int fd)
1612 {
1613   struct datalink *dl;
1614 
1615   for (dl = bundle->links; dl; dl = dl->next)
1616     if (dl->physical->fd == fd) {
1617       datalink_Down(dl, CLOSE_NORMAL);
1618       return 1;
1619     }
1620 
1621   return 0;
1622 }
1623 
1624 void
1625 bundle_AdjustFilters(struct bundle *bundle, struct in_addr *my_ip,
1626                      struct in_addr *peer_ip)
1627 {
1628   filter_AdjustAddr(&bundle->filter.in, my_ip, peer_ip);
1629   filter_AdjustAddr(&bundle->filter.out, my_ip, peer_ip);
1630   filter_AdjustAddr(&bundle->filter.dial, my_ip, peer_ip);
1631   filter_AdjustAddr(&bundle->filter.alive, my_ip, peer_ip);
1632 }
1633 
1634 void
1635 bundle_CalculateBandwidth(struct bundle *bundle)
1636 {
1637   struct datalink *dl;
1638   int mtu, sp;
1639 
1640   bundle->bandwidth = 0;
1641   mtu = 0;
1642   for (dl = bundle->links; dl; dl = dl->next)
1643     if (dl->state == DATALINK_OPEN) {
1644       if ((sp = dl->mp.bandwidth) == 0 &&
1645           (sp = physical_GetSpeed(dl->physical)) == 0)
1646         log_Printf(LogDEBUG, "%s: %s: Cannot determine bandwidth\n",
1647                    dl->name, dl->physical->name.full);
1648       else
1649         bundle->bandwidth += sp;
1650       if (!bundle->ncp.mp.active) {
1651         mtu = dl->physical->link.lcp.his_mru;
1652         break;
1653       }
1654     }
1655 
1656   if(bundle->bandwidth == 0)
1657     bundle->bandwidth = 115200;		/* Shrug */
1658 
1659   if (bundle->ncp.mp.active)
1660     mtu = bundle->ncp.mp.peer_mrru;
1661   else if (!mtu)
1662     mtu = 1500;
1663 
1664 #ifndef NORADIUS
1665   if (bundle->radius.valid && bundle->radius.mtu && bundle->radius.mtu < mtu) {
1666     log_Printf(LogLCP, "Reducing MTU to radius value %lu\n",
1667                bundle->radius.mtu);
1668     mtu = bundle->radius.mtu;
1669   }
1670 #endif
1671 
1672   tun_configure(bundle, mtu);
1673 }
1674 
1675 void
1676 bundle_AutoAdjust(struct bundle *bundle, int percent, int what)
1677 {
1678   struct datalink *dl, *choice, *otherlinkup;
1679 
1680   choice = otherlinkup = NULL;
1681   for (dl = bundle->links; dl; dl = dl->next)
1682     if (dl->physical->type == PHYS_AUTO) {
1683       if (dl->state == DATALINK_OPEN) {
1684         if (what == AUTO_DOWN) {
1685           if (choice)
1686             otherlinkup = choice;
1687           choice = dl;
1688         }
1689       } else if (dl->state == DATALINK_CLOSED) {
1690         if (what == AUTO_UP) {
1691           choice = dl;
1692           break;
1693         }
1694       } else {
1695         /* An auto link in an intermediate state - forget it for the moment */
1696         choice = NULL;
1697         break;
1698       }
1699     } else if (dl->state == DATALINK_OPEN && what == AUTO_DOWN)
1700       otherlinkup = dl;
1701 
1702   if (choice) {
1703     if (what == AUTO_UP) {
1704       log_Printf(LogPHASE, "%d%% saturation -> Opening link ``%s''\n",
1705                  percent, choice->name);
1706       datalink_Up(choice, 1, 1);
1707       mp_StopAutoloadTimer(&bundle->ncp.mp);
1708     } else if (otherlinkup) {	/* Only bring the second-last link down */
1709       log_Printf(LogPHASE, "%d%% saturation -> Closing link ``%s''\n",
1710                  percent, choice->name);
1711       datalink_Down(choice, CLOSE_NORMAL);
1712       mp_StopAutoloadTimer(&bundle->ncp.mp);
1713     }
1714   }
1715 }
1716 
1717 int
1718 bundle_WantAutoloadTimer(struct bundle *bundle)
1719 {
1720   struct datalink *dl;
1721   int autolink, opened;
1722 
1723   if (bundle->phase == PHASE_NETWORK) {
1724     for (autolink = opened = 0, dl = bundle->links; dl; dl = dl->next)
1725       if (dl->physical->type == PHYS_AUTO) {
1726         if (++autolink == 2 || (autolink == 1 && opened))
1727           /* Two auto links or one auto and one open in NETWORK phase */
1728           return 1;
1729       } else if (dl->state == DATALINK_OPEN) {
1730         opened++;
1731         if (autolink)
1732           /* One auto and one open link in NETWORK phase */
1733           return 1;
1734       }
1735   }
1736 
1737   return 0;
1738 }
1739