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1 /*
2  * main.c - Point-to-Point Protocol main module
3  *
4  * Copyright (c) 1984-2000 Carnegie Mellon University. All rights reserved.
5  *
6  * Redistribution and use in source and binary forms, with or without
7  * modification, are permitted provided that the following conditions
8  * are met:
9  *
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  *
13  * 2. Redistributions in binary form must reproduce the above copyright
14  *    notice, this list of conditions and the following disclaimer in
15  *    the documentation and/or other materials provided with the
16  *    distribution.
17  *
18  * 3. The name "Carnegie Mellon University" must not be used to
19  *    endorse or promote products derived from this software without
20  *    prior written permission. For permission or any legal
21  *    details, please contact
22  *      Office of Technology Transfer
23  *      Carnegie Mellon University
24  *      5000 Forbes Avenue
25  *      Pittsburgh, PA  15213-3890
26  *      (412) 268-4387, fax: (412) 268-7395
27  *      tech-transfer@andrew.cmu.edu
28  *
29  * 4. Redistributions of any form whatsoever must retain the following
30  *    acknowledgment:
31  *    "This product includes software developed by Computing Services
32  *     at Carnegie Mellon University (http://www.cmu.edu/computing/)."
33  *
34  * CARNEGIE MELLON UNIVERSITY DISCLAIMS ALL WARRANTIES WITH REGARD TO
35  * THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
36  * AND FITNESS, IN NO EVENT SHALL CARNEGIE MELLON UNIVERSITY BE LIABLE
37  * FOR ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
38  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN
39  * AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING
40  * OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
41  *
42  * Copyright (c) 1999-2004 Paul Mackerras. All rights reserved.
43  *
44  * Redistribution and use in source and binary forms, with or without
45  * modification, are permitted provided that the following conditions
46  * are met:
47  *
48  * 1. Redistributions of source code must retain the above copyright
49  *    notice, this list of conditions and the following disclaimer.
50  *
51  * 2. The name(s) of the authors of this software must not be used to
52  *    endorse or promote products derived from this software without
53  *    prior written permission.
54  *
55  * 3. Redistributions of any form whatsoever must retain the following
56  *    acknowledgment:
57  *    "This product includes software developed by Paul Mackerras
58  *     <paulus@samba.org>".
59  *
60  * THE AUTHORS OF THIS SOFTWARE DISCLAIM ALL WARRANTIES WITH REGARD TO
61  * THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
62  * AND FITNESS, IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY
63  * SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
64  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN
65  * AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING
66  * OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
67  */
68 
69 #define RCSID	"$Id: main.c,v 1.148 2004/11/13 12:05:48 paulus Exp $"
70 
71 #include <stdio.h>
72 #include <ctype.h>
73 #include <stdlib.h>
74 #include <string.h>
75 #include <unistd.h>
76 #include <signal.h>
77 #include <errno.h>
78 #include <fcntl.h>
79 #include <syslog.h>
80 #include <netdb.h>
81 #include <utmp.h>
82 #include <pwd.h>
83 #include <setjmp.h>
84 #include <sys/param.h>
85 #include <sys/types.h>
86 #include <sys/wait.h>
87 #include <sys/time.h>
88 #include <sys/resource.h>
89 #include <sys/stat.h>
90 #include <sys/socket.h>
91 #include <netinet/in.h>
92 #include <arpa/inet.h>
93 #include <cutils/properties.h>
94 
95 #include "pppd.h"
96 #include "magic.h"
97 #include "fsm.h"
98 #include "lcp.h"
99 #include "ipcp.h"
100 #ifdef INET6
101 #include "ipv6cp.h"
102 #endif
103 #include "upap.h"
104 #include "chap-new.h"
105 #include "eap.h"
106 #include "ccp.h"
107 #include "ecp.h"
108 #include "pathnames.h"
109 
110 #ifdef USE_TDB
111 #include "tdb.h"
112 #endif
113 
114 #ifdef CBCP_SUPPORT
115 #include "cbcp.h"
116 #endif
117 
118 #ifdef IPX_CHANGE
119 #include "ipxcp.h"
120 #endif /* IPX_CHANGE */
121 #ifdef AT_CHANGE
122 #include "atcp.h"
123 #endif
124 
125 static const char rcsid[] = RCSID;
126 
127 /* interface vars */
128 char ifname[32];		/* Interface name */
129 int ifunit;			/* Interface unit number */
130 
131 struct channel *the_channel;
132 
133 char *progname;			/* Name of this program */
134 char hostname[MAXNAMELEN];	/* Our hostname */
135 static char pidfilename[MAXPATHLEN];	/* name of pid file */
136 static char linkpidfile[MAXPATHLEN];	/* name of linkname pid file */
137 char ppp_devnam[MAXPATHLEN];	/* name of PPP tty (maybe ttypx) */
138 uid_t uid;			/* Our real user-id */
139 struct notifier *pidchange = NULL;
140 struct notifier *phasechange = NULL;
141 struct notifier *exitnotify = NULL;
142 struct notifier *sigreceived = NULL;
143 struct notifier *fork_notifier = NULL;
144 
145 int hungup;			/* terminal has been hung up */
146 int privileged;			/* we're running as real uid root */
147 int need_holdoff;		/* need holdoff period before restarting */
148 int detached;			/* have detached from terminal */
149 volatile int status;		/* exit status for pppd */
150 int unsuccess;			/* # unsuccessful connection attempts */
151 int do_callback;		/* != 0 if we should do callback next */
152 int doing_callback;		/* != 0 if we are doing callback */
153 int ppp_session_number;		/* Session number, for channels with such a
154 				   concept (eg PPPoE) */
155 int childwait_done;		/* have timed out waiting for children */
156 
157 #ifdef USE_TDB
158 TDB_CONTEXT *pppdb;		/* database for storing status etc. */
159 #endif
160 
161 char db_key[32];
162 
163 int (*holdoff_hook) __P((void)) = NULL;
164 int (*new_phase_hook) __P((int)) = NULL;
165 void (*snoop_recv_hook) __P((unsigned char *p, int len)) = NULL;
166 void (*snoop_send_hook) __P((unsigned char *p, int len)) = NULL;
167 
168 static int conn_running;	/* we have a [dis]connector running */
169 static int fd_loop;		/* fd for getting demand-dial packets */
170 
171 int fd_devnull;			/* fd for /dev/null */
172 int devfd = -1;			/* fd of underlying device */
173 int fd_ppp = -1;		/* fd for talking PPP */
174 int phase;			/* where the link is at */
175 int kill_link;
176 int asked_to_quit;
177 int open_ccp_flag;
178 int listen_time;
179 int got_sigusr2;
180 int got_sigterm;
181 int got_sighup;
182 
183 static sigset_t signals_handled;
184 static int waiting;
185 static sigjmp_buf sigjmp;
186 
187 char **script_env;		/* Env. variable values for scripts */
188 int s_env_nalloc;		/* # words avail at script_env */
189 
190 u_char outpacket_buf[PPP_MRU+PPP_HDRLEN]; /* buffer for outgoing packet */
191 u_char inpacket_buf[PPP_MRU+PPP_HDRLEN]; /* buffer for incoming packet */
192 
193 static int n_children;		/* # child processes still running */
194 static int got_sigchld;		/* set if we have received a SIGCHLD */
195 
196 int privopen;			/* don't lock, open device as root */
197 
198 char *no_ppp_msg = "Sorry - this system lacks PPP kernel support\n";
199 
200 GIDSET_TYPE groups[NGROUPS_MAX];/* groups the user is in */
201 int ngroups;			/* How many groups valid in groups */
202 
203 static struct timeval start_time;	/* Time when link was started. */
204 
205 static struct pppd_stats old_link_stats;
206 struct pppd_stats link_stats;
207 unsigned link_connect_time;
208 int link_stats_valid;
209 
210 int error_count;
211 
212 bool bundle_eof;
213 bool bundle_terminating;
214 
215 int sent_since_received = 0;
216 int sent_total = 0;
217 int received_total = 0;
218 
219 /*
220  * We maintain a list of child process pids and
221  * functions to call when they exit.
222  */
223 struct subprocess {
224     pid_t	pid;
225     char	*prog;
226     void	(*done) __P((void *));
227     void	*arg;
228     struct subprocess *next;
229 };
230 
231 static struct subprocess *children;
232 
233 /* Prototypes for procedures local to this file. */
234 
235 static void setup_signals __P((void));
236 static void create_pidfile __P((int pid));
237 static void create_linkpidfile __P((int pid));
238 static void cleanup __P((void));
239 static void get_input __P((void));
240 static void calltimeout __P((void));
241 static struct timeval *timeleft __P((struct timeval *));
242 static void kill_my_pg __P((int));
243 static void hup __P((int));
244 static void term __P((int));
245 static void chld __P((int));
246 static void toggle_debug __P((int));
247 static void open_ccp __P((int));
248 static void bad_signal __P((int));
249 static void holdoff_end __P((void *));
250 static int reap_kids __P((void));
251 static void childwait_end __P((void *));
252 
253 #ifdef USE_TDB
254 static void update_db_entry __P((void));
255 static void add_db_key __P((const char *));
256 static void delete_db_key __P((const char *));
257 static void cleanup_db __P((void));
258 #endif
259 
260 static void handle_events __P((void));
261 void print_link_stats __P((void));
262 
263 extern	char	*ttyname __P((int));
264 extern	char	*getlogin __P((void));
265 int main __P((int, char *[]));
266 
267 #ifdef ultrix
268 #undef	O_NONBLOCK
269 #define	O_NONBLOCK	O_NDELAY
270 #endif
271 
272 #ifdef ULTRIX
273 #define setlogmask(x)
274 #endif
275 
276 /*
277  * PPP Data Link Layer "protocol" table.
278  * One entry per supported protocol.
279  * The last entry must be NULL.
280  */
281 struct protent *protocols[] = {
282     &lcp_protent,
283     &pap_protent,
284     &chap_protent,
285 #ifdef CBCP_SUPPORT
286     &cbcp_protent,
287 #endif
288     &ipcp_protent,
289 #ifdef INET6
290     &ipv6cp_protent,
291 #endif
292     &ccp_protent,
293     &ecp_protent,
294 #ifdef IPX_CHANGE
295     &ipxcp_protent,
296 #endif
297 #ifdef AT_CHANGE
298     &atcp_protent,
299 #endif
300     &eap_protent,
301     NULL
302 };
303 
304 /*
305  * If PPP_DRV_NAME is not defined, use the default "ppp" as the device name.
306  */
307 #if !defined(PPP_DRV_NAME)
308 #define PPP_DRV_NAME	"ppp"
309 #endif /* !defined(PPP_DRV_NAME) */
310 
311 int
main(argc,argv)312 main(argc, argv)
313     int argc;
314     char *argv[];
315 {
316     int i, t;
317     char *p;
318     struct passwd *pw;
319     struct protent *protp;
320     char numbuf[16];
321 
322     link_stats_valid = 0;
323     new_phase(PHASE_INITIALIZE);
324 
325     script_env = NULL;
326 
327     /* Initialize syslog facilities */
328     reopen_log();
329 
330     if (gethostname(hostname, MAXNAMELEN) < 0 ) {
331 	option_error("Couldn't get hostname: %m");
332 	exit(1);
333     }
334     hostname[MAXNAMELEN-1] = 0;
335 
336     /* make sure we don't create world or group writable files. */
337     umask(umask(0777) | 022);
338 
339     uid = getuid();
340     privileged = uid == 0;
341     slprintf(numbuf, sizeof(numbuf), "%d", uid);
342     script_setenv("ORIG_UID", numbuf, 0);
343 
344     ngroups = getgroups(NGROUPS_MAX, groups);
345 
346     /*
347      * Initialize magic number generator now so that protocols may
348      * use magic numbers in initialization.
349      */
350     magic_init();
351 
352     /*
353      * Initialize each protocol.
354      */
355     for (i = 0; (protp = protocols[i]) != NULL; ++i)
356         (*protp->init)(0);
357 
358     /*
359      * Initialize the default channel.
360      */
361     tty_init();
362 
363 #ifdef ANDROID_CHANGES
364     {
365         extern void pppox_init();
366         pppox_init();
367         privileged = 1;
368     }
369 #endif
370 
371     progname = *argv;
372 
373     /*
374      * Parse, in order, the system options file, the user's options file,
375      * and the command line arguments.
376      */
377 #ifdef ANDROID_CHANGES
378     /* Android: only take options from commandline */
379     if (!parse_args(argc-1, argv+1))
380 	exit(EXIT_OPTION_ERROR);
381 
382 #else
383     if (!options_from_file(_PATH_SYSOPTIONS, !privileged, 0, 1)
384 	|| !options_from_user()
385 	|| !parse_args(argc-1, argv+1))
386 	exit(EXIT_OPTION_ERROR);
387 
388 #endif
389 
390     devnam_fixed = 1;		/* can no longer change device name */
391 
392     /*
393      * Work out the device name, if it hasn't already been specified,
394      * and parse the tty's options file.
395      */
396     if (the_channel->process_extra_options)
397 	(*the_channel->process_extra_options)();
398 
399     if (debug)
400 	setlogmask(LOG_UPTO(LOG_DEBUG));
401 
402 #ifndef ANDROID_CHANGES
403     /*
404      * Check that we are running as root.
405      */
406     if (geteuid() != 0) {
407 	option_error("must be root to run %s, since it is not setuid-root",
408 		     argv[0]);
409 	exit(EXIT_NOT_ROOT);
410     }
411 #endif
412 
413     if (!ppp_available()) {
414 	option_error("%s", no_ppp_msg);
415 	exit(EXIT_NO_KERNEL_SUPPORT);
416     }
417 
418     /*
419      * Check that the options given are valid and consistent.
420      */
421     check_options();
422     if (!sys_check_options())
423 	exit(EXIT_OPTION_ERROR);
424     auth_check_options();
425 #ifdef HAVE_MULTILINK
426     mp_check_options();
427 #endif
428     for (i = 0; (protp = protocols[i]) != NULL; ++i)
429 	if (protp->check_options != NULL)
430 	    (*protp->check_options)();
431     if (the_channel->check_options)
432 	(*the_channel->check_options)();
433 
434 
435     if (dump_options || dryrun) {
436 	init_pr_log(NULL, LOG_INFO);
437 	print_options(pr_log, NULL);
438 	end_pr_log();
439     }
440 
441     if (dryrun)
442 	die(0);
443 
444     /* Make sure fds 0, 1, 2 are open to somewhere. */
445     fd_devnull = open(_PATH_DEVNULL, O_RDWR);
446     if (fd_devnull < 0)
447 	fatal("Couldn't open %s: %m", _PATH_DEVNULL);
448     while (fd_devnull <= 2) {
449 	i = dup(fd_devnull);
450 	if (i < 0)
451 	    fatal("Critical shortage of file descriptors: dup failed: %m");
452 	fd_devnull = i;
453     }
454 
455     /*
456      * Initialize system-dependent stuff.
457      */
458     sys_init();
459 #ifdef USE_TDB
460     pppdb = tdb_open(_PATH_PPPDB, 0, 0, O_RDWR|O_CREAT, 0644);
461     if (pppdb != NULL) {
462 	slprintf(db_key, sizeof(db_key), "pppd%d", getpid());
463 	update_db_entry();
464     } else {
465 	warn("Warning: couldn't open ppp database %s", _PATH_PPPDB);
466 	if (multilink) {
467 	    warn("Warning: disabling multilink");
468 	    multilink = 0;
469 	}
470     }
471 #endif
472 
473     /*
474      * Detach ourselves from the terminal, if required,
475      * and identify who is running us.
476      */
477     if (!nodetach && !updetach)
478 	detach();
479     p = getlogin();
480     if (p == NULL) {
481 	pw = getpwuid(uid);
482 	if (pw != NULL && pw->pw_name != NULL)
483 	    p = pw->pw_name;
484 	else
485 	    p = "(unknown)";
486     }
487     syslog(LOG_NOTICE, "pppd %s started by %s, uid %d", VERSION, p, uid);
488     script_setenv("PPPLOGNAME", p, 0);
489 
490     if (devnam[0])
491 	script_setenv("DEVICE", devnam, 1);
492     slprintf(numbuf, sizeof(numbuf), "%d", getpid());
493     script_setenv("PPPD_PID", numbuf, 1);
494 
495     setup_signals();
496 
497     create_linkpidfile(getpid());
498 
499     waiting = 0;
500 
501     /*
502      * If we're doing dial-on-demand, set up the interface now.
503      */
504     if (demand) {
505 	/*
506 	 * Open the loopback channel and set it up to be the ppp interface.
507 	 */
508 	fd_loop = open_ppp_loopback();
509 	set_ifunit(1);
510 	/*
511 	 * Configure the interface and mark it up, etc.
512 	 */
513 	demand_conf();
514     }
515 
516     do_callback = 0;
517     for (;;) {
518 
519 	bundle_eof = 0;
520 	bundle_terminating = 0;
521 	listen_time = 0;
522 	need_holdoff = 1;
523 	devfd = -1;
524 	status = EXIT_OK;
525 	++unsuccess;
526 	doing_callback = do_callback;
527 	do_callback = 0;
528 
529 	if (demand && !doing_callback) {
530 	    /*
531 	     * Don't do anything until we see some activity.
532 	     */
533 	    new_phase(PHASE_DORMANT);
534 	    demand_unblock();
535 	    add_fd(fd_loop);
536 	    for (;;) {
537 		handle_events();
538 		if (asked_to_quit)
539 		    break;
540 		if (get_loop_output())
541 		    break;
542 	    }
543 	    remove_fd(fd_loop);
544 	    if (asked_to_quit)
545 		break;
546 
547 	    /*
548 	     * Now we want to bring up the link.
549 	     */
550 	    demand_block();
551 	    info("Starting link");
552 	}
553 
554 	gettimeofday(&start_time, NULL);
555 	script_unsetenv("CONNECT_TIME");
556 	script_unsetenv("BYTES_SENT");
557 	script_unsetenv("BYTES_RCVD");
558 
559 	lcp_open(0);		/* Start protocol */
560 	while (phase != PHASE_DEAD) {
561 	    handle_events();
562 	    get_input();
563 	    if (kill_link)
564 		lcp_close(0, "User request");
565 	    if (asked_to_quit) {
566 		bundle_terminating = 1;
567 		if (phase == PHASE_MASTER)
568 		    mp_bundle_terminated();
569 	    }
570 	    if (open_ccp_flag) {
571 		if (phase == PHASE_NETWORK || phase == PHASE_RUNNING) {
572 		    ccp_fsm[0].flags = OPT_RESTART; /* clears OPT_SILENT */
573 		    (*ccp_protent.open)(0);
574 		}
575 	    }
576 	}
577 
578 	if (!persist || asked_to_quit || (maxfail > 0 && unsuccess >= maxfail))
579 	    break;
580 
581 	if (demand)
582 	    demand_discard();
583 	t = need_holdoff? holdoff: 0;
584 	if (holdoff_hook)
585 	    t = (*holdoff_hook)();
586 	if (t > 0) {
587 	    new_phase(PHASE_HOLDOFF);
588 	    TIMEOUT(holdoff_end, NULL, t);
589 	    do {
590 		handle_events();
591 		if (kill_link)
592 		    new_phase(PHASE_DORMANT); /* allow signal to end holdoff */
593 	    } while (phase == PHASE_HOLDOFF);
594 	    if (!persist)
595 		break;
596 	}
597     }
598 
599     /* Wait for scripts to finish */
600     reap_kids();
601     if (n_children > 0) {
602 	if (child_wait > 0)
603 	    TIMEOUT(childwait_end, NULL, child_wait);
604 	if (debug) {
605 	    struct subprocess *chp;
606 	    dbglog("Waiting for %d child processes...", n_children);
607 	    for (chp = children; chp != NULL; chp = chp->next)
608 		dbglog("  script %s, pid %d", chp->prog, chp->pid);
609 	}
610 	while (n_children > 0 && !childwait_done) {
611 	    handle_events();
612 	    if (kill_link && !childwait_done)
613 		childwait_end(NULL);
614 	}
615     }
616 
617     die(status);
618     return 0;
619 }
620 
621 /*
622  * handle_events - wait for something to happen and respond to it.
623  */
624 static void
handle_events()625 handle_events()
626 {
627     struct timeval timo;
628 
629     kill_link = open_ccp_flag = 0;
630     if (sigsetjmp(sigjmp, 1) == 0) {
631 	sigprocmask(SIG_BLOCK, &signals_handled, NULL);
632 	if (got_sighup || got_sigterm || got_sigusr2 || got_sigchld) {
633 	    sigprocmask(SIG_UNBLOCK, &signals_handled, NULL);
634 	} else {
635 	    waiting = 1;
636 	    sigprocmask(SIG_UNBLOCK, &signals_handled, NULL);
637 	    wait_input(timeleft(&timo));
638 	}
639     }
640     waiting = 0;
641     calltimeout();
642     if (got_sighup) {
643 	info("Hangup (SIGHUP)");
644 	kill_link = 1;
645 	got_sighup = 0;
646 	if (status != EXIT_HANGUP)
647 	    status = EXIT_USER_REQUEST;
648     }
649     if (got_sigterm) {
650 	info("Terminating on signal %d", got_sigterm);
651 	kill_link = 1;
652 	asked_to_quit = 1;
653 	persist = 0;
654 	status = EXIT_USER_REQUEST;
655 	got_sigterm = 0;
656     }
657     if (got_sigchld) {
658 	got_sigchld = 0;
659 	reap_kids();	/* Don't leave dead kids lying around */
660     }
661     if (got_sigusr2) {
662 	open_ccp_flag = 1;
663 	got_sigusr2 = 0;
664     }
665 }
666 
667 /*
668  * setup_signals - initialize signal handling.
669  */
670 static void
setup_signals()671 setup_signals()
672 {
673     struct sigaction sa;
674 
675     /*
676      * Compute mask of all interesting signals and install signal handlers
677      * for each.  Only one signal handler may be active at a time.  Therefore,
678      * all other signals should be masked when any handler is executing.
679      */
680     sigemptyset(&signals_handled);
681     sigaddset(&signals_handled, SIGHUP);
682     sigaddset(&signals_handled, SIGINT);
683     sigaddset(&signals_handled, SIGTERM);
684     sigaddset(&signals_handled, SIGCHLD);
685     sigaddset(&signals_handled, SIGUSR2);
686 
687 #define SIGNAL(s, handler)	do { \
688 	sa.sa_handler = handler; \
689 	if (sigaction(s, &sa, NULL) < 0) \
690 	    fatal("Couldn't establish signal handler (%d): %m", s); \
691     } while (0)
692 
693     sa.sa_mask = signals_handled;
694     sa.sa_flags = 0;
695     SIGNAL(SIGHUP, hup);		/* Hangup */
696     SIGNAL(SIGINT, term);		/* Interrupt */
697     SIGNAL(SIGTERM, term);		/* Terminate */
698     SIGNAL(SIGCHLD, chld);
699 
700     SIGNAL(SIGUSR1, toggle_debug);	/* Toggle debug flag */
701     SIGNAL(SIGUSR2, open_ccp);		/* Reopen CCP */
702 
703     /*
704      * Install a handler for other signals which would otherwise
705      * cause pppd to exit without cleaning up.
706      */
707     SIGNAL(SIGABRT, bad_signal);
708     SIGNAL(SIGALRM, bad_signal);
709     SIGNAL(SIGFPE, bad_signal);
710     SIGNAL(SIGILL, bad_signal);
711     SIGNAL(SIGPIPE, bad_signal);
712     SIGNAL(SIGQUIT, bad_signal);
713     SIGNAL(SIGSEGV, bad_signal);
714 #ifdef SIGBUS
715     SIGNAL(SIGBUS, bad_signal);
716 #endif
717 #ifdef SIGEMT
718     SIGNAL(SIGEMT, bad_signal);
719 #endif
720 #ifdef SIGPOLL
721     SIGNAL(SIGPOLL, bad_signal);
722 #endif
723 #ifdef SIGPROF
724     SIGNAL(SIGPROF, bad_signal);
725 #endif
726 #ifdef SIGSYS
727     SIGNAL(SIGSYS, bad_signal);
728 #endif
729 #ifdef SIGTRAP
730     SIGNAL(SIGTRAP, bad_signal);
731 #endif
732 #ifdef SIGVTALRM
733     SIGNAL(SIGVTALRM, bad_signal);
734 #endif
735 #ifdef SIGXCPU
736     SIGNAL(SIGXCPU, bad_signal);
737 #endif
738 #ifdef SIGXFSZ
739     SIGNAL(SIGXFSZ, bad_signal);
740 #endif
741 
742     /*
743      * Apparently we can get a SIGPIPE when we call syslog, if
744      * syslogd has died and been restarted.  Ignoring it seems
745      * be sufficient.
746      */
747     signal(SIGPIPE, SIG_IGN);
748 }
749 
750 /*
751  * set_ifunit - do things we need to do once we know which ppp
752  * unit we are using.
753  */
754 void
set_ifunit(iskey)755 set_ifunit(iskey)
756     int iskey;
757 {
758     info("Using interface %s%d", PPP_DRV_NAME, ifunit);
759     slprintf(ifname, sizeof(ifname), "%s%d", PPP_DRV_NAME, ifunit);
760     script_setenv("IFNAME", ifname, iskey);
761     if (iskey) {
762 	create_pidfile(getpid());	/* write pid to file */
763 	create_linkpidfile(getpid());
764     }
765 }
766 
767 /*
768  * detach - detach us from the controlling terminal.
769  */
770 void
detach()771 detach()
772 {
773     int pid;
774     char numbuf[16];
775     int pipefd[2];
776 
777     if (detached)
778 	return;
779     if (pipe(pipefd) == -1)
780 	pipefd[0] = pipefd[1] = -1;
781     if ((pid = fork()) < 0) {
782 	error("Couldn't detach (fork failed: %m)");
783 	die(1);			/* or just return? */
784     }
785     if (pid != 0) {
786 	/* parent */
787 	notify(pidchange, pid);
788 	/* update pid files if they have been written already */
789 	if (pidfilename[0])
790 	    create_pidfile(pid);
791 	if (linkpidfile[0])
792 	    create_linkpidfile(pid);
793 	exit(0);		/* parent dies */
794     }
795     setsid();
796     chdir("/");
797     dup2(fd_devnull, 0);
798     dup2(fd_devnull, 1);
799     dup2(fd_devnull, 2);
800     detached = 1;
801     if (log_default)
802 	log_to_fd = -1;
803     slprintf(numbuf, sizeof(numbuf), "%d", getpid());
804     script_setenv("PPPD_PID", numbuf, 1);
805 
806     /* wait for parent to finish updating pid & lock files and die */
807     close(pipefd[1]);
808     complete_read(pipefd[0], numbuf, 1);
809     close(pipefd[0]);
810 }
811 
812 /*
813  * reopen_log - (re)open our connection to syslog.
814  */
815 void
reopen_log()816 reopen_log()
817 {
818 #ifndef ANDROID_CHANGES
819     openlog("pppd", LOG_PID | LOG_NDELAY, LOG_PPP);
820     setlogmask(LOG_UPTO(LOG_INFO));
821 #endif
822 }
823 
824 /*
825  * Create a file containing our process ID.
826  */
827 static void
create_pidfile(pid)828 create_pidfile(pid)
829     int pid;
830 {
831 #ifndef ANDROID_CHANGES
832     FILE *pidfile;
833 
834     slprintf(pidfilename, sizeof(pidfilename), "%s%s.pid",
835 	     _PATH_VARRUN, ifname);
836     if ((pidfile = fopen(pidfilename, "w")) != NULL) {
837 	fprintf(pidfile, "%d\n", pid);
838 	(void) fclose(pidfile);
839     } else {
840 	error("Failed to create pid file %s: %m", pidfilename);
841 	pidfilename[0] = 0;
842     }
843 #endif
844 }
845 
846 void
create_linkpidfile(pid)847 create_linkpidfile(pid)
848     int pid;
849 {
850 #ifndef ANDROID_CHANGES
851     FILE *pidfile;
852 
853     if (linkname[0] == 0)
854 	return;
855     script_setenv("LINKNAME", linkname, 1);
856     slprintf(linkpidfile, sizeof(linkpidfile), "%sppp-%s.pid",
857 	     _PATH_VARRUN, linkname);
858     if ((pidfile = fopen(linkpidfile, "w")) != NULL) {
859 	fprintf(pidfile, "%d\n", pid);
860 	if (ifname[0])
861 	    fprintf(pidfile, "%s\n", ifname);
862 	(void) fclose(pidfile);
863     } else {
864 	error("Failed to create pid file %s: %m", linkpidfile);
865 	linkpidfile[0] = 0;
866     }
867 #endif
868 }
869 
870 /*
871  * remove_pidfile - remove our pid files
872  */
remove_pidfiles()873 void remove_pidfiles()
874 {
875 #ifndef ANDROID_CHANGES
876     if (pidfilename[0] != 0 && unlink(pidfilename) < 0 && errno != ENOENT)
877 	warn("unable to delete pid file %s: %m", pidfilename);
878     pidfilename[0] = 0;
879     if (linkpidfile[0] != 0 && unlink(linkpidfile) < 0 && errno != ENOENT)
880 	warn("unable to delete pid file %s: %m", linkpidfile);
881     linkpidfile[0] = 0;
882 #endif
883 }
884 
885 /*
886  * holdoff_end - called via a timeout when the holdoff period ends.
887  */
888 static void
holdoff_end(arg)889 holdoff_end(arg)
890     void *arg;
891 {
892     new_phase(PHASE_DORMANT);
893 }
894 
895 /* List of protocol names, to make our messages a little more informative. */
896 struct protocol_list {
897     u_short	proto;
898     const char	*name;
899 } protocol_list[] = {
900     { 0x21,	"IP" },
901     { 0x23,	"OSI Network Layer" },
902     { 0x25,	"Xerox NS IDP" },
903     { 0x27,	"DECnet Phase IV" },
904     { 0x29,	"Appletalk" },
905     { 0x2b,	"Novell IPX" },
906     { 0x2d,	"VJ compressed TCP/IP" },
907     { 0x2f,	"VJ uncompressed TCP/IP" },
908     { 0x31,	"Bridging PDU" },
909     { 0x33,	"Stream Protocol ST-II" },
910     { 0x35,	"Banyan Vines" },
911     { 0x39,	"AppleTalk EDDP" },
912     { 0x3b,	"AppleTalk SmartBuffered" },
913     { 0x3d,	"Multi-Link" },
914     { 0x3f,	"NETBIOS Framing" },
915     { 0x41,	"Cisco Systems" },
916     { 0x43,	"Ascom Timeplex" },
917     { 0x45,	"Fujitsu Link Backup and Load Balancing (LBLB)" },
918     { 0x47,	"DCA Remote Lan" },
919     { 0x49,	"Serial Data Transport Protocol (PPP-SDTP)" },
920     { 0x4b,	"SNA over 802.2" },
921     { 0x4d,	"SNA" },
922     { 0x4f,	"IP6 Header Compression" },
923     { 0x6f,	"Stampede Bridging" },
924     { 0xfb,	"single-link compression" },
925     { 0xfd,	"1st choice compression" },
926     { 0x0201,	"802.1d Hello Packets" },
927     { 0x0203,	"IBM Source Routing BPDU" },
928     { 0x0205,	"DEC LANBridge100 Spanning Tree" },
929     { 0x0231,	"Luxcom" },
930     { 0x0233,	"Sigma Network Systems" },
931     { 0x8021,	"Internet Protocol Control Protocol" },
932     { 0x8023,	"OSI Network Layer Control Protocol" },
933     { 0x8025,	"Xerox NS IDP Control Protocol" },
934     { 0x8027,	"DECnet Phase IV Control Protocol" },
935     { 0x8029,	"Appletalk Control Protocol" },
936     { 0x802b,	"Novell IPX Control Protocol" },
937     { 0x8031,	"Bridging NCP" },
938     { 0x8033,	"Stream Protocol Control Protocol" },
939     { 0x8035,	"Banyan Vines Control Protocol" },
940     { 0x803d,	"Multi-Link Control Protocol" },
941     { 0x803f,	"NETBIOS Framing Control Protocol" },
942     { 0x8041,	"Cisco Systems Control Protocol" },
943     { 0x8043,	"Ascom Timeplex" },
944     { 0x8045,	"Fujitsu LBLB Control Protocol" },
945     { 0x8047,	"DCA Remote Lan Network Control Protocol (RLNCP)" },
946     { 0x8049,	"Serial Data Control Protocol (PPP-SDCP)" },
947     { 0x804b,	"SNA over 802.2 Control Protocol" },
948     { 0x804d,	"SNA Control Protocol" },
949     { 0x804f,	"IP6 Header Compression Control Protocol" },
950     { 0x006f,	"Stampede Bridging Control Protocol" },
951     { 0x80fb,	"Single Link Compression Control Protocol" },
952     { 0x80fd,	"Compression Control Protocol" },
953     { 0xc021,	"Link Control Protocol" },
954     { 0xc023,	"Password Authentication Protocol" },
955     { 0xc025,	"Link Quality Report" },
956     { 0xc027,	"Shiva Password Authentication Protocol" },
957     { 0xc029,	"CallBack Control Protocol (CBCP)" },
958     { 0xc081,	"Container Control Protocol" },
959     { 0xc223,	"Challenge Handshake Authentication Protocol" },
960     { 0xc281,	"Proprietary Authentication Protocol" },
961     { 0,	NULL },
962 };
963 
964 /*
965  * protocol_name - find a name for a PPP protocol.
966  */
967 const char *
protocol_name(proto)968 protocol_name(proto)
969     int proto;
970 {
971     struct protocol_list *lp;
972 
973     for (lp = protocol_list; lp->proto != 0; ++lp)
974 	if (proto == lp->proto)
975 	    return lp->name;
976     return NULL;
977 }
978 
979 /*
980  * get_input - called when incoming data is available.
981  */
982 static void
get_input()983 get_input()
984 {
985     int len, i;
986     u_char *p;
987     u_short protocol;
988     struct protent *protp;
989 
990     p = inpacket_buf;	/* point to beginning of packet buffer */
991 
992     len = read_packet(inpacket_buf);
993     if (len < 0)
994 	return;
995 
996     if (len == 0) {
997 	if (bundle_eof && multilink_master) {
998 	    notice("Last channel has disconnected");
999 	    mp_bundle_terminated();
1000 	    return;
1001 	}
1002 	notice("Modem hangup");
1003 	hungup = 1;
1004 	status = EXIT_HANGUP;
1005 	lcp_lowerdown(0);	/* serial link is no longer available */
1006 	link_terminated(0);
1007 	return;
1008     }
1009 
1010     if (len < PPP_HDRLEN) {
1011 	dbglog("received short packet:%.*B", len, p);
1012 	return;
1013     }
1014 
1015     dump_packet("rcvd", p, len);
1016     if (snoop_recv_hook) snoop_recv_hook(p, len);
1017 
1018     p += 2;				/* Skip address and control */
1019     GETSHORT(protocol, p);
1020     len -= PPP_HDRLEN;
1021 
1022     /*
1023      * Toss all non-LCP packets unless LCP is OPEN.
1024      */
1025     if (protocol != PPP_LCP && lcp_fsm[0].state != OPENED) {
1026 	dbglog("Discarded non-LCP packet when LCP not open");
1027 	return;
1028     }
1029 
1030     /*
1031      * Until we get past the authentication phase, toss all packets
1032      * except LCP, LQR and authentication packets.
1033      */
1034     if (phase <= PHASE_AUTHENTICATE
1035 	&& !(protocol == PPP_LCP || protocol == PPP_LQR
1036 	     || protocol == PPP_PAP || protocol == PPP_CHAP ||
1037 		protocol == PPP_EAP)) {
1038 	dbglog("discarding proto 0x%x in phase %d",
1039 		   protocol, phase);
1040 	return;
1041     }
1042 
1043     /*
1044      * Upcall the proper protocol input routine.
1045      */
1046     for (i = 0; (protp = protocols[i]) != NULL; ++i) {
1047 	if (protp->protocol == protocol && protp->enabled_flag) {
1048 	    (*protp->input)(0, p, len);
1049 	    return;
1050 	}
1051         if (protocol == (protp->protocol & ~0x8000) && protp->enabled_flag
1052 	    && protp->datainput != NULL) {
1053 	    (*protp->datainput)(0, p, len);
1054 	    return;
1055 	}
1056     }
1057 
1058     if (debug) {
1059 	const char *pname = protocol_name(protocol);
1060 	if (pname != NULL)
1061 	    warn("Unsupported protocol '%s' (0x%x) received", pname, protocol);
1062 	else
1063 	    warn("Unsupported protocol 0x%x received", protocol);
1064     }
1065     lcp_sprotrej(0, p - PPP_HDRLEN, len + PPP_HDRLEN);
1066 }
1067 
1068 /*
1069  * ppp_send_config - configure the transmit-side characteristics of
1070  * the ppp interface.  Returns -1, indicating an error, if the channel
1071  * send_config procedure called error() (or incremented error_count
1072  * itself), otherwise 0.
1073  */
1074 int
ppp_send_config(unit,mtu,accm,pcomp,accomp)1075 ppp_send_config(unit, mtu, accm, pcomp, accomp)
1076     int unit, mtu;
1077     u_int32_t accm;
1078     int pcomp, accomp;
1079 {
1080 	int errs;
1081 
1082 	if (the_channel->send_config == NULL)
1083 		return 0;
1084 	errs = error_count;
1085 	(*the_channel->send_config)(mtu, accm, pcomp, accomp);
1086 	return (error_count != errs)? -1: 0;
1087 }
1088 
1089 /*
1090  * ppp_recv_config - configure the receive-side characteristics of
1091  * the ppp interface.  Returns -1, indicating an error, if the channel
1092  * recv_config procedure called error() (or incremented error_count
1093  * itself), otherwise 0.
1094  */
1095 int
ppp_recv_config(unit,mru,accm,pcomp,accomp)1096 ppp_recv_config(unit, mru, accm, pcomp, accomp)
1097     int unit, mru;
1098     u_int32_t accm;
1099     int pcomp, accomp;
1100 {
1101 	int errs;
1102 
1103 	if (the_channel->recv_config == NULL)
1104 		return 0;
1105 	errs = error_count;
1106 	(*the_channel->recv_config)(mru, accm, pcomp, accomp);
1107 	return (error_count != errs)? -1: 0;
1108 }
1109 
1110 /*
1111  * new_phase - signal the start of a new phase of pppd's operation.
1112  */
1113 void
new_phase(p)1114 new_phase(p)
1115     int p;
1116 {
1117     phase = p;
1118     if (new_phase_hook)
1119 	(*new_phase_hook)(p);
1120     notify(phasechange, p);
1121 }
1122 
1123 /*
1124  * die - clean up state and exit with the specified status.
1125  */
1126 void
die(status)1127 die(status)
1128     int status;
1129 {
1130     if (!doing_multilink || multilink_master)
1131 	print_link_stats();
1132     cleanup();
1133     notify(exitnotify, status);
1134     syslog(LOG_INFO, "Exit.");
1135     exit(status);
1136 }
1137 
1138 /*
1139  * cleanup - restore anything which needs to be restored before we exit
1140  */
1141 /* ARGSUSED */
1142 static void
cleanup()1143 cleanup()
1144 {
1145     sys_cleanup();
1146 
1147     if (fd_ppp >= 0)
1148 	the_channel->disestablish_ppp(devfd);
1149     if (the_channel->cleanup)
1150 	(*the_channel->cleanup)();
1151     remove_pidfiles();
1152 
1153 #ifdef USE_TDB
1154     if (pppdb != NULL)
1155 	cleanup_db();
1156 #endif
1157 
1158 }
1159 
1160 void
print_link_stats()1161 print_link_stats()
1162 {
1163     /*
1164      * Print connect time and statistics.
1165      */
1166     if (link_stats_valid) {
1167        int t = (link_connect_time + 5) / 6;    /* 1/10ths of minutes */
1168        info("Connect time %d.%d minutes.", t/10, t%10);
1169        info("Sent %u bytes, received %u bytes.",
1170 	    link_stats.bytes_out, link_stats.bytes_in);
1171        link_stats_valid = 0;
1172     }
1173 }
1174 
1175 /*
1176  * reset_link_stats - "reset" stats when link goes up.
1177  */
1178 void
reset_link_stats(u)1179 reset_link_stats(u)
1180     int u;
1181 {
1182     if (!get_ppp_stats(u, &old_link_stats))
1183 	return;
1184     gettimeofday(&start_time, NULL);
1185 }
1186 
1187 /*
1188  * update_link_stats - get stats at link termination.
1189  */
1190 void
update_link_stats(u)1191 update_link_stats(u)
1192     int u;
1193 {
1194     struct timeval now;
1195     char numbuf[32];
1196 
1197     if (!get_ppp_stats(u, &link_stats)
1198 	|| gettimeofday(&now, NULL) < 0)
1199 	return;
1200     link_connect_time = now.tv_sec - start_time.tv_sec;
1201     link_stats_valid = 1;
1202 
1203     link_stats.bytes_in  -= old_link_stats.bytes_in;
1204     link_stats.bytes_out -= old_link_stats.bytes_out;
1205     link_stats.pkts_in   -= old_link_stats.pkts_in;
1206     link_stats.pkts_out  -= old_link_stats.pkts_out;
1207 
1208     slprintf(numbuf, sizeof(numbuf), "%u", link_connect_time);
1209     script_setenv("CONNECT_TIME", numbuf, 0);
1210     slprintf(numbuf, sizeof(numbuf), "%u", link_stats.bytes_out);
1211     script_setenv("BYTES_SENT", numbuf, 0);
1212     slprintf(numbuf, sizeof(numbuf), "%u", link_stats.bytes_in);
1213     script_setenv("BYTES_RCVD", numbuf, 0);
1214 }
1215 
1216 
1217 struct	callout {
1218     struct timeval	c_time;		/* time at which to call routine */
1219     void		*c_arg;		/* argument to routine */
1220     void		(*c_func) __P((void *)); /* routine */
1221     struct		callout *c_next;
1222 };
1223 
1224 static struct callout *callout = NULL;	/* Callout list */
1225 static struct timeval timenow;		/* Current time */
1226 
1227 /*
1228  * timeout - Schedule a timeout.
1229  */
1230 void
1231 timeout(func, arg, secs, usecs)
1232     void (*func) __P((void *));
1233     void *arg;
1234     int secs, usecs;
1235 {
1236     struct callout *newp, *p, **pp;
1237 
1238     /*
1239      * Allocate timeout.
1240      */
1241     if ((newp = (struct callout *) malloc(sizeof(struct callout))) == NULL)
1242 	fatal("Out of memory in timeout()!");
1243     newp->c_arg = arg;
1244     newp->c_func = func;
1245     gettimeofday(&timenow, NULL);
1246     newp->c_time.tv_sec = timenow.tv_sec + secs;
1247     newp->c_time.tv_usec = timenow.tv_usec + usecs;
1248     if (newp->c_time.tv_usec >= 1000000) {
1249 	newp->c_time.tv_sec += newp->c_time.tv_usec / 1000000;
1250 	newp->c_time.tv_usec %= 1000000;
1251     }
1252 
1253     /*
1254      * Find correct place and link it in.
1255      */
1256     for (pp = &callout; (p = *pp); pp = &p->c_next)
1257 	if (newp->c_time.tv_sec < p->c_time.tv_sec
1258 	    || (newp->c_time.tv_sec == p->c_time.tv_sec
1259 		&& newp->c_time.tv_usec < p->c_time.tv_usec))
1260 	    break;
1261     newp->c_next = p;
1262     *pp = newp;
1263 }
1264 
1265 
1266 /*
1267  * untimeout - Unschedule a timeout.
1268  */
1269 void
1270 untimeout(func, arg)
1271     void (*func) __P((void *));
1272     void *arg;
1273 {
1274     struct callout **copp, *freep;
1275 
1276     /*
1277      * Find first matching timeout and remove it from the list.
1278      */
1279     for (copp = &callout; (freep = *copp); copp = &freep->c_next)
1280 	if (freep->c_func == func && freep->c_arg == arg) {
1281 	    *copp = freep->c_next;
1282 	    free((char *) freep);
1283 	    break;
1284 	}
1285 }
1286 
1287 
1288 /*
1289  * calltimeout - Call any timeout routines which are now due.
1290  */
1291 static void
calltimeout()1292 calltimeout()
1293 {
1294     struct callout *p;
1295 
1296     while (callout != NULL) {
1297 	p = callout;
1298 
1299 	if (gettimeofday(&timenow, NULL) < 0)
1300 	    fatal("Failed to get time of day: %m");
1301 	if (!(p->c_time.tv_sec < timenow.tv_sec
1302 	      || (p->c_time.tv_sec == timenow.tv_sec
1303 		  && p->c_time.tv_usec <= timenow.tv_usec)))
1304 	    break;		/* no, it's not time yet */
1305 
1306 	callout = p->c_next;
1307 	(*p->c_func)(p->c_arg);
1308 
1309 	free((char *) p);
1310     }
1311 }
1312 
1313 
1314 /*
1315  * timeleft - return the length of time until the next timeout is due.
1316  */
1317 static struct timeval *
timeleft(tvp)1318 timeleft(tvp)
1319     struct timeval *tvp;
1320 {
1321     if (callout == NULL)
1322 	return NULL;
1323 
1324     gettimeofday(&timenow, NULL);
1325     tvp->tv_sec = callout->c_time.tv_sec - timenow.tv_sec;
1326     tvp->tv_usec = callout->c_time.tv_usec - timenow.tv_usec;
1327     if (tvp->tv_usec < 0) {
1328 	tvp->tv_usec += 1000000;
1329 	tvp->tv_sec -= 1;
1330     }
1331     if (tvp->tv_sec < 0)
1332 	tvp->tv_sec = tvp->tv_usec = 0;
1333 
1334     return tvp;
1335 }
1336 
1337 
1338 /*
1339  * kill_my_pg - send a signal to our process group, and ignore it ourselves.
1340  * We assume that sig is currently blocked.
1341  */
1342 static void
kill_my_pg(sig)1343 kill_my_pg(sig)
1344     int sig;
1345 {
1346     struct sigaction act, oldact;
1347 
1348     sigemptyset(&act.sa_mask);		/* unnecessary in fact */
1349     act.sa_handler = SIG_IGN;
1350     act.sa_flags = 0;
1351     kill(0, sig);
1352     /*
1353      * The kill() above made the signal pending for us, as well as
1354      * the rest of our process group, but we don't want it delivered
1355      * to us.  It is blocked at the moment.  Setting it to be ignored
1356      * will cause the pending signal to be discarded.  If we did the
1357      * kill() after setting the signal to be ignored, it is unspecified
1358      * (by POSIX) whether the signal is immediately discarded or left
1359      * pending, and in fact Linux would leave it pending, and so it
1360      * would be delivered after the current signal handler exits,
1361      * leading to an infinite loop.
1362      */
1363     sigaction(sig, &act, &oldact);
1364     sigaction(sig, &oldact, NULL);
1365 }
1366 
1367 
1368 /*
1369  * hup - Catch SIGHUP signal.
1370  *
1371  * Indicates that the physical layer has been disconnected.
1372  * We don't rely on this indication; if the user has sent this
1373  * signal, we just take the link down.
1374  */
1375 static void
hup(sig)1376 hup(sig)
1377     int sig;
1378 {
1379     /* can't log a message here, it can deadlock */
1380     got_sighup = 1;
1381     if (conn_running)
1382 	/* Send the signal to the [dis]connector process(es) also */
1383 	kill_my_pg(sig);
1384     notify(sigreceived, sig);
1385     if (waiting)
1386 	siglongjmp(sigjmp, 1);
1387 }
1388 
1389 
1390 /*
1391  * term - Catch SIGTERM signal and SIGINT signal (^C/del).
1392  *
1393  * Indicates that we should initiate a graceful disconnect and exit.
1394  */
1395 /*ARGSUSED*/
1396 static void
term(sig)1397 term(sig)
1398     int sig;
1399 {
1400     /* can't log a message here, it can deadlock */
1401     got_sigterm = sig;
1402     if (conn_running)
1403 	/* Send the signal to the [dis]connector process(es) also */
1404 	kill_my_pg(sig);
1405     notify(sigreceived, sig);
1406     if (waiting)
1407 	siglongjmp(sigjmp, 1);
1408 }
1409 
1410 
1411 /*
1412  * chld - Catch SIGCHLD signal.
1413  * Sets a flag so we will call reap_kids in the mainline.
1414  */
1415 static void
chld(sig)1416 chld(sig)
1417     int sig;
1418 {
1419     got_sigchld = 1;
1420     if (waiting)
1421 	siglongjmp(sigjmp, 1);
1422 }
1423 
1424 
1425 /*
1426  * toggle_debug - Catch SIGUSR1 signal.
1427  *
1428  * Toggle debug flag.
1429  */
1430 /*ARGSUSED*/
1431 static void
toggle_debug(sig)1432 toggle_debug(sig)
1433     int sig;
1434 {
1435     debug = !debug;
1436     if (debug) {
1437 	setlogmask(LOG_UPTO(LOG_DEBUG));
1438     } else {
1439 	setlogmask(LOG_UPTO(LOG_WARNING));
1440     }
1441 }
1442 
1443 
1444 /*
1445  * open_ccp - Catch SIGUSR2 signal.
1446  *
1447  * Try to (re)negotiate compression.
1448  */
1449 /*ARGSUSED*/
1450 static void
open_ccp(sig)1451 open_ccp(sig)
1452     int sig;
1453 {
1454     got_sigusr2 = 1;
1455     if (waiting)
1456 	siglongjmp(sigjmp, 1);
1457 }
1458 
1459 
1460 /*
1461  * bad_signal - We've caught a fatal signal.  Clean up state and exit.
1462  */
1463 static void
bad_signal(sig)1464 bad_signal(sig)
1465     int sig;
1466 {
1467     static int crashed = 0;
1468 
1469     if (crashed)
1470 	_exit(127);
1471     crashed = 1;
1472     error("Fatal signal %d", sig);
1473     if (conn_running)
1474 	kill_my_pg(SIGTERM);
1475     notify(sigreceived, sig);
1476     die(127);
1477 }
1478 
1479 /*
1480  * safe_fork - Create a child process.  The child closes all the
1481  * file descriptors that we don't want to leak to a script.
1482  * The parent waits for the child to do this before returning.
1483  * This also arranges for the specified fds to be dup'd to
1484  * fds 0, 1, 2 in the child.
1485  */
1486 pid_t
safe_fork(int infd,int outfd,int errfd)1487 safe_fork(int infd, int outfd, int errfd)
1488 {
1489 	pid_t pid;
1490 	int fd, pipefd[2];
1491 	char buf[1];
1492 
1493 	/* make sure fds 0, 1, 2 are occupied (probably not necessary) */
1494 	while ((fd = dup(fd_devnull)) >= 0) {
1495 		if (fd > 2) {
1496 			close(fd);
1497 			break;
1498 		}
1499 	}
1500 
1501 	if (pipe(pipefd) == -1)
1502 		pipefd[0] = pipefd[1] = -1;
1503 	pid = fork();
1504 	if (pid < 0) {
1505 		error("fork failed: %m");
1506 		return -1;
1507 	}
1508 	if (pid > 0) {
1509 		/* parent */
1510 		close(pipefd[1]);
1511 		/* this read() blocks until the close(pipefd[1]) below */
1512 		complete_read(pipefd[0], buf, 1);
1513 		close(pipefd[0]);
1514 		return pid;
1515 	}
1516 
1517 	/* Executing in the child */
1518 	sys_close();
1519 #ifdef USE_TDB
1520 	tdb_close(pppdb);
1521 #endif
1522 
1523 	/* make sure infd, outfd and errfd won't get tromped on below */
1524 	if (infd == 1 || infd == 2)
1525 		infd = dup(infd);
1526 	if (outfd == 0 || outfd == 2)
1527 		outfd = dup(outfd);
1528 	if (errfd == 0 || errfd == 1)
1529 		errfd = dup(errfd);
1530 
1531 	/* dup the in, out, err fds to 0, 1, 2 */
1532 	if (infd != 0)
1533 		dup2(infd, 0);
1534 	if (outfd != 1)
1535 		dup2(outfd, 1);
1536 	if (errfd != 2)
1537 		dup2(errfd, 2);
1538 
1539 #ifndef ANDROID_CHANGES
1540 	closelog();
1541 #endif
1542 	if (log_to_fd > 2)
1543 		close(log_to_fd);
1544 	if (the_channel->close)
1545 		(*the_channel->close)();
1546 	else
1547 		close(devfd);	/* some plugins don't have a close function */
1548 	close(fd_ppp);
1549 	close(fd_devnull);
1550 	if (infd != 0)
1551 		close(infd);
1552 	if (outfd != 1)
1553 		close(outfd);
1554 	if (errfd != 2)
1555 		close(errfd);
1556 
1557 	notify(fork_notifier, 0);
1558 	close(pipefd[0]);
1559 	/* this close unblocks the read() call above in the parent */
1560 	close(pipefd[1]);
1561 
1562 	return 0;
1563 }
1564 
1565 /*
1566  * device_script - run a program to talk to the specified fds
1567  * (e.g. to run the connector or disconnector script).
1568  * stderr gets connected to the log fd or to the _PATH_CONNERRS file.
1569  */
1570 int
device_script(program,in,out,dont_wait)1571 device_script(program, in, out, dont_wait)
1572     char *program;
1573     int in, out;
1574     int dont_wait;
1575 {
1576     int pid;
1577     int status = -1;
1578     int errfd;
1579 
1580     if (log_to_fd >= 0)
1581 	errfd = log_to_fd;
1582     else
1583 	errfd = open(_PATH_CONNERRS, O_WRONLY | O_APPEND | O_CREAT, 0600);
1584 
1585     ++conn_running;
1586     pid = safe_fork(in, out, errfd);
1587 
1588     if (pid != 0 && log_to_fd < 0)
1589 	close(errfd);
1590 
1591     if (pid < 0) {
1592 	--conn_running;
1593 	error("Failed to create child process: %m");
1594 	return -1;
1595     }
1596 
1597     if (pid != 0) {
1598 	if (dont_wait) {
1599 	    record_child(pid, program, NULL, NULL);
1600 	    status = 0;
1601 	} else {
1602 	    while (waitpid(pid, &status, 0) < 0) {
1603 		if (errno == EINTR)
1604 		    continue;
1605 		fatal("error waiting for (dis)connection process: %m");
1606 	    }
1607 	    --conn_running;
1608 	}
1609 	return (status == 0 ? 0 : -1);
1610     }
1611 
1612     /* here we are executing in the child */
1613 
1614     setgid(getgid());
1615     setuid(uid);
1616     if (getuid() != uid) {
1617 	fprintf(stderr, "pppd: setuid failed\n");
1618 	exit(1);
1619     }
1620     execl("/system/bin/sh", "sh", "-c", program, NULL);
1621     perror("pppd: could not exec /bin/sh");
1622     exit(99);
1623     /* NOTREACHED */
1624 }
1625 
1626 
1627 /*
1628  * run-program - execute a program with given arguments,
1629  * but don't wait for it.
1630  * If the program can't be executed, logs an error unless
1631  * must_exist is 0 and the program file doesn't exist.
1632  * Returns -1 if it couldn't fork, 0 if the file doesn't exist
1633  * or isn't an executable plain file, or the process ID of the child.
1634  * If done != NULL, (*done)(arg) will be called later (within
1635  * reap_kids) iff the return value is > 0.
1636  */
1637 pid_t
run_program(prog,args,must_exist,done,arg)1638 run_program(prog, args, must_exist, done, arg)
1639     char *prog;
1640     char **args;
1641     int must_exist;
1642     void (*done) __P((void *));
1643     void *arg;
1644 {
1645     int pid;
1646     struct stat sbuf;
1647 
1648 #ifdef ANDROID_CHANGES
1649     /* Originally linkname is used to create named pid files, which is
1650     * meaningless to android. Here we use it as a suffix of program names,
1651     * so different users can run their own program by specifying it. For
1652     * example, "/etc/ppp/ip-up-vpn" will be executed when IPCP is up and
1653     * linkname is "vpn". Note that "/" is not allowed for security reasons. */
1654     char file[MAXPATHLEN];
1655 
1656     if (linkname[0] && !strchr(linkname, '/')) {
1657         snprintf(file, MAXPATHLEN, "%s-%s", prog, linkname);
1658         file[MAXPATHLEN - 1] = '\0';
1659         prog = file;
1660     }
1661 #endif
1662 
1663     /*
1664      * First check if the file exists and is executable.
1665      * We don't use access() because that would use the
1666      * real user-id, which might not be root, and the script
1667      * might be accessible only to root.
1668      */
1669     errno = EINVAL;
1670     if (stat(prog, &sbuf) < 0 || !S_ISREG(sbuf.st_mode)
1671 	|| (sbuf.st_mode & (S_IXUSR|S_IXGRP|S_IXOTH)) == 0) {
1672 	if (must_exist || errno != ENOENT)
1673 	    warn("Can't execute %s: %m", prog);
1674 	return 0;
1675     }
1676 
1677     pid = safe_fork(fd_devnull, fd_devnull, fd_devnull);
1678     if (pid == -1) {
1679 	error("Failed to create child process for %s: %m", prog);
1680 	return -1;
1681     }
1682     if (pid != 0) {
1683 	if (debug)
1684 	    dbglog("Script %s started (pid %d)", prog, pid);
1685 	record_child(pid, prog, done, arg);
1686 	return pid;
1687     }
1688 
1689     /* Leave the current location */
1690     (void) setsid();	/* No controlling tty. */
1691     (void) umask (S_IRWXG|S_IRWXO);
1692     (void) chdir ("/");	/* no current directory. */
1693     setuid(0);		/* set real UID = root */
1694     setgid(getegid());
1695 
1696 #ifdef BSD
1697     /* Force the priority back to zero if pppd is running higher. */
1698     if (setpriority (PRIO_PROCESS, 0, 0) < 0)
1699 	warn("can't reset priority to 0: %m");
1700 #endif
1701 
1702     /* run the program */
1703     execve(prog, args, script_env);
1704     if (must_exist || errno != ENOENT) {
1705 #ifndef ANDROID_CHANGES
1706 	/* have to reopen the log, there's nowhere else
1707 	   for the message to go. */
1708 	reopen_log();
1709 	syslog(LOG_ERR, "Can't execute %s: %m", prog);
1710 	closelog();
1711 #else
1712 	error("Can't execute %s: %m", prog);
1713 #endif
1714     }
1715     _exit(-1);
1716 }
1717 
1718 
1719 /*
1720  * record_child - add a child process to the list for reap_kids
1721  * to use.
1722  */
1723 void
record_child(pid,prog,done,arg)1724 record_child(pid, prog, done, arg)
1725     int pid;
1726     char *prog;
1727     void (*done) __P((void *));
1728     void *arg;
1729 {
1730     struct subprocess *chp;
1731 
1732     ++n_children;
1733 
1734     chp = (struct subprocess *) malloc(sizeof(struct subprocess));
1735     if (chp == NULL) {
1736 	warn("losing track of %s process", prog);
1737     } else {
1738 	chp->pid = pid;
1739 	chp->prog = prog;
1740 	chp->done = done;
1741 	chp->arg = arg;
1742 	chp->next = children;
1743 	children = chp;
1744     }
1745 }
1746 
1747 /*
1748  * childwait_end - we got fed up waiting for the child processes to
1749  * exit, send them all a SIGTERM.
1750  */
1751 static void
childwait_end(arg)1752 childwait_end(arg)
1753     void *arg;
1754 {
1755     struct subprocess *chp;
1756 
1757     for (chp = children; chp != NULL; chp = chp->next) {
1758 	if (debug)
1759 	    dbglog("sending SIGTERM to process %d", chp->pid);
1760 	kill(chp->pid, SIGTERM);
1761     }
1762     childwait_done = 1;
1763 }
1764 
1765 /*
1766  * reap_kids - get status from any dead child processes,
1767  * and log a message for abnormal terminations.
1768  */
1769 static int
reap_kids()1770 reap_kids()
1771 {
1772     int pid, status;
1773     struct subprocess *chp, **prevp;
1774 
1775     if (n_children == 0)
1776 	return 0;
1777     while ((pid = waitpid(-1, &status, WNOHANG)) != -1 && pid != 0) {
1778 	for (prevp = &children; (chp = *prevp) != NULL; prevp = &chp->next) {
1779 	    if (chp->pid == pid) {
1780 		--n_children;
1781 		*prevp = chp->next;
1782 		break;
1783 	    }
1784 	}
1785 	if (WIFSIGNALED(status)) {
1786 	    warn("Child process %s (pid %d) terminated with signal %d",
1787 		 (chp? chp->prog: "??"), pid, WTERMSIG(status));
1788 	} else if (debug)
1789 	    dbglog("Script %s finished (pid %d), status = 0x%x",
1790 		   (chp? chp->prog: "??"), pid,
1791 		   WIFEXITED(status) ? WEXITSTATUS(status) : status);
1792 	if (chp && chp->done)
1793 	    (*chp->done)(chp->arg);
1794 	if (chp)
1795 	    free(chp);
1796     }
1797     if (pid == -1) {
1798 	if (errno == ECHILD)
1799 	    return -1;
1800 	if (errno != EINTR)
1801 	    error("Error waiting for child process: %m");
1802     }
1803     return 0;
1804 }
1805 
1806 /*
1807  * add_notifier - add a new function to be called when something happens.
1808  */
1809 void
add_notifier(notif,func,arg)1810 add_notifier(notif, func, arg)
1811     struct notifier **notif;
1812     notify_func func;
1813     void *arg;
1814 {
1815     struct notifier *np;
1816 
1817     np = malloc(sizeof(struct notifier));
1818     if (np == 0)
1819 	novm("notifier struct");
1820     np->next = *notif;
1821     np->func = func;
1822     np->arg = arg;
1823     *notif = np;
1824 }
1825 
1826 /*
1827  * remove_notifier - remove a function from the list of things to
1828  * be called when something happens.
1829  */
1830 void
remove_notifier(notif,func,arg)1831 remove_notifier(notif, func, arg)
1832     struct notifier **notif;
1833     notify_func func;
1834     void *arg;
1835 {
1836     struct notifier *np;
1837 
1838     for (; (np = *notif) != 0; notif = &np->next) {
1839 	if (np->func == func && np->arg == arg) {
1840 	    *notif = np->next;
1841 	    free(np);
1842 	    break;
1843 	}
1844     }
1845 }
1846 
1847 /*
1848  * notify - call a set of functions registered with add_notifier.
1849  */
1850 void
notify(notif,val)1851 notify(notif, val)
1852     struct notifier *notif;
1853     int val;
1854 {
1855     struct notifier *np;
1856 
1857     while ((np = notif) != 0) {
1858 	notif = np->next;
1859 	(*np->func)(np->arg, val);
1860     }
1861 }
1862 
1863 /*
1864  * novm - log an error message saying we ran out of memory, and die.
1865  */
1866 void
novm(msg)1867 novm(msg)
1868     char *msg;
1869 {
1870     fatal("Virtual memory exhausted allocating %s\n", msg);
1871 }
1872 
1873 /*
1874  * script_setenv - set an environment variable value to be used
1875  * for scripts that we run (e.g. ip-up, auth-up, etc.)
1876  */
1877 void
script_setenv(var,value,iskey)1878 script_setenv(var, value, iskey)
1879     char *var, *value;
1880     int iskey;
1881 {
1882     size_t varl = strlen(var);
1883     size_t vl = varl + strlen(value) + 2;
1884     int i;
1885     char *p, *newstring;
1886 
1887     newstring = (char *) malloc(vl+1);
1888     if (newstring == 0)
1889 	return;
1890     *newstring++ = iskey;
1891     slprintf(newstring, vl, "%s=%s", var, value);
1892 
1893     /* check if this variable is already set */
1894     if (script_env != 0) {
1895 	for (i = 0; (p = script_env[i]) != 0; ++i) {
1896 	    if (strncmp(p, var, varl) == 0 && p[varl] == '=') {
1897 #ifdef USE_TDB
1898 		if (p[-1] && pppdb != NULL)
1899 		    delete_db_key(p);
1900 #endif
1901 		free(p-1);
1902 		script_env[i] = newstring;
1903 #ifdef USE_TDB
1904 		if (iskey && pppdb != NULL)
1905 		    add_db_key(newstring);
1906 		update_db_entry();
1907 #endif
1908 		return;
1909 	    }
1910 	}
1911     } else {
1912 	/* no space allocated for script env. ptrs. yet */
1913 	i = 0;
1914 	script_env = (char **) malloc(16 * sizeof(char *));
1915 	if (script_env == 0)
1916 	    return;
1917 	s_env_nalloc = 16;
1918     }
1919 
1920     /* reallocate script_env with more space if needed */
1921     if (i + 1 >= s_env_nalloc) {
1922 	int new_n = i + 17;
1923 	char **newenv = (char **) realloc((void *)script_env,
1924 					  new_n * sizeof(char *));
1925 	if (newenv == 0)
1926 	    return;
1927 	script_env = newenv;
1928 	s_env_nalloc = new_n;
1929     }
1930 
1931     script_env[i] = newstring;
1932     script_env[i+1] = 0;
1933 
1934 #ifdef USE_TDB
1935     if (pppdb != NULL) {
1936 	if (iskey)
1937 	    add_db_key(newstring);
1938 	update_db_entry();
1939     }
1940 #endif
1941 }
1942 
1943 /*
1944  * script_unsetenv - remove a variable from the environment
1945  * for scripts.
1946  */
1947 void
script_unsetenv(var)1948 script_unsetenv(var)
1949     char *var;
1950 {
1951     int vl = strlen(var);
1952     int i;
1953     char *p;
1954 
1955     if (script_env == 0)
1956 	return;
1957     for (i = 0; (p = script_env[i]) != 0; ++i) {
1958 	if (strncmp(p, var, vl) == 0 && p[vl] == '=') {
1959 #ifdef USE_TDB
1960 	    if (p[-1] && pppdb != NULL)
1961 		delete_db_key(p);
1962 #endif
1963 	    free(p-1);
1964 	    while ((script_env[i] = script_env[i+1]) != 0)
1965 		++i;
1966 	    break;
1967 	}
1968     }
1969 #ifdef USE_TDB
1970     if (pppdb != NULL)
1971 	update_db_entry();
1972 #endif
1973 }
1974 
1975 /*
1976  * Any arbitrary string used as a key for locking the database.
1977  * It doesn't matter what it is as long as all pppds use the same string.
1978  */
1979 #define PPPD_LOCK_KEY	"pppd lock"
1980 
1981 /*
1982  * lock_db - get an exclusive lock on the TDB database.
1983  * Used to ensure atomicity of various lookup/modify operations.
1984  */
lock_db()1985 void lock_db()
1986 {
1987 #ifdef USE_TDB
1988 	TDB_DATA key;
1989 
1990 	key.dptr = PPPD_LOCK_KEY;
1991 	key.dsize = strlen(key.dptr);
1992 	tdb_chainlock(pppdb, key);
1993 #endif
1994 }
1995 
1996 /*
1997  * unlock_db - remove the exclusive lock obtained by lock_db.
1998  */
unlock_db()1999 void unlock_db()
2000 {
2001 #ifdef USE_TDB
2002 	TDB_DATA key;
2003 
2004 	key.dptr = PPPD_LOCK_KEY;
2005 	key.dsize = strlen(key.dptr);
2006 	tdb_chainunlock(pppdb, key);
2007 #endif
2008 }
2009 
2010 #ifdef USE_TDB
2011 /*
2012  * update_db_entry - update our entry in the database.
2013  */
2014 static void
update_db_entry()2015 update_db_entry()
2016 {
2017     TDB_DATA key, dbuf;
2018     int vlen, i;
2019     char *p, *q, *vbuf;
2020 
2021     if (script_env == NULL)
2022 	return;
2023     vlen = 0;
2024     for (i = 0; (p = script_env[i]) != 0; ++i)
2025 	vlen += strlen(p) + 1;
2026     vbuf = malloc(vlen + 1);
2027     if (vbuf == 0)
2028 	novm("database entry");
2029     q = vbuf;
2030     for (i = 0; (p = script_env[i]) != 0; ++i)
2031 	q += slprintf(q, vbuf + vlen - q, "%s;", p);
2032 
2033     key.dptr = db_key;
2034     key.dsize = strlen(db_key);
2035     dbuf.dptr = vbuf;
2036     dbuf.dsize = vlen;
2037     if (tdb_store(pppdb, key, dbuf, TDB_REPLACE))
2038 	error("tdb_store failed: %s", tdb_error(pppdb));
2039 
2040     if (vbuf)
2041         free(vbuf);
2042 
2043 }
2044 
2045 /*
2046  * add_db_key - add a key that we can use to look up our database entry.
2047  */
2048 static void
add_db_key(str)2049 add_db_key(str)
2050     const char *str;
2051 {
2052     TDB_DATA key, dbuf;
2053 
2054     key.dptr = (char *) str;
2055     key.dsize = strlen(str);
2056     dbuf.dptr = db_key;
2057     dbuf.dsize = strlen(db_key);
2058     if (tdb_store(pppdb, key, dbuf, TDB_REPLACE))
2059 	error("tdb_store key failed: %s", tdb_error(pppdb));
2060 }
2061 
2062 /*
2063  * delete_db_key - delete a key for looking up our database entry.
2064  */
2065 static void
delete_db_key(str)2066 delete_db_key(str)
2067     const char *str;
2068 {
2069     TDB_DATA key;
2070 
2071     key.dptr = (char *) str;
2072     key.dsize = strlen(str);
2073     tdb_delete(pppdb, key);
2074 }
2075 
2076 /*
2077  * cleanup_db - delete all the entries we put in the database.
2078  */
2079 static void
cleanup_db()2080 cleanup_db()
2081 {
2082     TDB_DATA key;
2083     int i;
2084     char *p;
2085 
2086     key.dptr = db_key;
2087     key.dsize = strlen(db_key);
2088     tdb_delete(pppdb, key);
2089     for (i = 0; (p = script_env[i]) != 0; ++i)
2090 	if (p[-1])
2091 	    delete_db_key(p);
2092 }
2093 #endif /* USE_TDB */
2094