syslogd.c revision 174316
1/*
2 * Copyright (c) 1983, 1988, 1993, 1994
3 *	The Regents of the University of California.  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 * 4. Neither the name of the University nor the names of its contributors
14 *    may be used to endorse or promote products derived from this software
15 *    without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
18 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20 * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
21 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
22 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
23 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
24 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
25 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
26 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
27 * SUCH DAMAGE.
28 */
29
30#ifndef lint
31static const char copyright[] =
32"@(#) Copyright (c) 1983, 1988, 1993, 1994\n\
33	The Regents of the University of California.  All rights reserved.\n";
34#endif /* not lint */
35
36#ifndef lint
37#if 0
38static char sccsid[] = "@(#)syslogd.c	8.3 (Berkeley) 4/4/94";
39#endif
40#endif /* not lint */
41
42#include <sys/cdefs.h>
43__FBSDID("$FreeBSD: head/usr.sbin/syslogd/syslogd.c 174316 2007-12-05 18:00:41Z obrien $");
44
45/*
46 *  syslogd -- log system messages
47 *
48 * This program implements a system log. It takes a series of lines.
49 * Each line may have a priority, signified as "<n>" as
50 * the first characters of the line.  If this is
51 * not present, a default priority is used.
52 *
53 * To kill syslogd, send a signal 15 (terminate).  A signal 1 (hup) will
54 * cause it to reread its configuration file.
55 *
56 * Defined Constants:
57 *
58 * MAXLINE -- the maximum line length that can be handled.
59 * DEFUPRI -- the default priority for user messages
60 * DEFSPRI -- the default priority for kernel messages
61 *
62 * Author: Eric Allman
63 * extensive changes by Ralph Campbell
64 * more extensive changes by Eric Allman (again)
65 * Extension to log by program name as well as facility and priority
66 *   by Peter da Silva.
67 * -u and -v by Harlan Stenn.
68 * Priority comparison code by Harlan Stenn.
69 */
70
71#define	MAXLINE		1024		/* maximum line length */
72#define	MAXSVLINE	120		/* maximum saved line length */
73#define	DEFUPRI		(LOG_USER|LOG_NOTICE)
74#define	DEFSPRI		(LOG_KERN|LOG_CRIT)
75#define	TIMERINTVL	30		/* interval for checking flush, mark */
76#define	TTYMSGTIME	1		/* timeout passed to ttymsg */
77
78#include <sys/param.h>
79#include <sys/ioctl.h>
80#include <sys/stat.h>
81#include <sys/wait.h>
82#include <sys/socket.h>
83#include <sys/queue.h>
84#include <sys/uio.h>
85#include <sys/un.h>
86#include <sys/time.h>
87#include <sys/resource.h>
88#include <sys/syslimits.h>
89#include <sys/types.h>
90
91#include <netinet/in.h>
92#include <netdb.h>
93#include <arpa/inet.h>
94
95#include <ctype.h>
96#include <err.h>
97#include <errno.h>
98#include <fcntl.h>
99#include <libutil.h>
100#include <limits.h>
101#include <paths.h>
102#include <signal.h>
103#include <stdio.h>
104#include <stdlib.h>
105#include <string.h>
106#include <sysexits.h>
107#include <unistd.h>
108#include <utmp.h>
109
110#include "pathnames.h"
111#include "ttymsg.h"
112
113#define SYSLOG_NAMES
114#include <sys/syslog.h>
115
116const char	*ConfFile = _PATH_LOGCONF;
117const char	*PidFile = _PATH_LOGPID;
118const char	ctty[] = _PATH_CONSOLE;
119
120#define	dprintf		if (Debug) printf
121
122#define	MAXUNAMES	20	/* maximum number of user names */
123
124/*
125 * Unix sockets.
126 * We have two default sockets, one with 666 permissions,
127 * and one for privileged programs.
128 */
129struct funix {
130	int			s;
131	char			*name;
132	mode_t			mode;
133	STAILQ_ENTRY(funix)	next;
134};
135struct funix funix_secure =	{ -1, _PATH_LOG_PRIV, S_IRUSR | S_IWUSR,
136				{ NULL } };
137struct funix funix_default =	{ -1, _PATH_LOG, DEFFILEMODE,
138				{ &funix_secure } };
139
140STAILQ_HEAD(, funix) funixes =	{ &funix_default,
141				&(funix_secure.next.stqe_next) };
142
143/*
144 * Flags to logmsg().
145 */
146
147#define	IGN_CONS	0x001	/* don't print on console */
148#define	SYNC_FILE	0x002	/* do fsync on file after printing */
149#define	ADDDATE		0x004	/* add a date to the message */
150#define	MARK		0x008	/* this message is a mark */
151#define	ISKERNEL	0x010	/* kernel generated message */
152
153/*
154 * This structure represents the files that will have log
155 * copies printed.
156 * We require f_file to be valid if f_type is F_FILE, F_CONSOLE, F_TTY
157 * or if f_type if F_PIPE and f_pid > 0.
158 */
159
160struct filed {
161	struct	filed *f_next;		/* next in linked list */
162	short	f_type;			/* entry type, see below */
163	short	f_file;			/* file descriptor */
164	time_t	f_time;			/* time this was last written */
165	char	*f_host;		/* host from which to recd. */
166	u_char	f_pmask[LOG_NFACILITIES+1];	/* priority mask */
167	u_char	f_pcmp[LOG_NFACILITIES+1];	/* compare priority */
168#define PRI_LT	0x1
169#define PRI_EQ	0x2
170#define PRI_GT	0x4
171	char	*f_program;		/* program this applies to */
172	union {
173		char	f_uname[MAXUNAMES][UT_NAMESIZE+1];
174		struct {
175			char	f_hname[MAXHOSTNAMELEN];
176			struct addrinfo *f_addr;
177
178		} f_forw;		/* forwarding address */
179		char	f_fname[MAXPATHLEN];
180		struct {
181			char	f_pname[MAXPATHLEN];
182			pid_t	f_pid;
183		} f_pipe;
184	} f_un;
185	char	f_prevline[MAXSVLINE];		/* last message logged */
186	char	f_lasttime[16];			/* time of last occurrence */
187	char	f_prevhost[MAXHOSTNAMELEN];	/* host from which recd. */
188	int	f_prevpri;			/* pri of f_prevline */
189	int	f_prevlen;			/* length of f_prevline */
190	int	f_prevcount;			/* repetition cnt of prevline */
191	u_int	f_repeatcount;			/* number of "repeated" msgs */
192	int	f_flags;			/* file-specific flags */
193#define	FFLAG_SYNC 0x01
194#define	FFLAG_NEEDSYNC	0x02
195};
196
197/*
198 * Queue of about-to-be dead processes we should watch out for.
199 */
200
201TAILQ_HEAD(stailhead, deadq_entry) deadq_head;
202struct stailhead *deadq_headp;
203
204struct deadq_entry {
205	pid_t				dq_pid;
206	int				dq_timeout;
207	TAILQ_ENTRY(deadq_entry)	dq_entries;
208};
209
210/*
211 * The timeout to apply to processes waiting on the dead queue.  Unit
212 * of measure is `mark intervals', i.e. 20 minutes by default.
213 * Processes on the dead queue will be terminated after that time.
214 */
215
216#define	 DQ_TIMO_INIT	2
217
218typedef struct deadq_entry *dq_t;
219
220
221/*
222 * Struct to hold records of network addresses that are allowed to log
223 * to us.
224 */
225struct allowedpeer {
226	int isnumeric;
227	u_short port;
228	union {
229		struct {
230			struct sockaddr_storage addr;
231			struct sockaddr_storage mask;
232		} numeric;
233		char *name;
234	} u;
235#define a_addr u.numeric.addr
236#define a_mask u.numeric.mask
237#define a_name u.name
238};
239
240
241/*
242 * Intervals at which we flush out "message repeated" messages,
243 * in seconds after previous message is logged.  After each flush,
244 * we move to the next interval until we reach the largest.
245 */
246int	repeatinterval[] = { 30, 120, 600 };	/* # of secs before flush */
247#define	MAXREPEAT ((sizeof(repeatinterval) / sizeof(repeatinterval[0])) - 1)
248#define	REPEATTIME(f)	((f)->f_time + repeatinterval[(f)->f_repeatcount])
249#define	BACKOFF(f)	{ if (++(f)->f_repeatcount > MAXREPEAT) \
250				 (f)->f_repeatcount = MAXREPEAT; \
251			}
252
253/* values for f_type */
254#define F_UNUSED	0		/* unused entry */
255#define F_FILE		1		/* regular file */
256#define F_TTY		2		/* terminal */
257#define F_CONSOLE	3		/* console terminal */
258#define F_FORW		4		/* remote machine */
259#define F_USERS		5		/* list of users */
260#define F_WALL		6		/* everyone logged on */
261#define F_PIPE		7		/* pipe to program */
262
263const char *TypeNames[8] = {
264	"UNUSED",	"FILE",		"TTY",		"CONSOLE",
265	"FORW",		"USERS",	"WALL",		"PIPE"
266};
267
268static struct filed *Files;	/* Log files that we write to */
269static struct filed consfile;	/* Console */
270
271static int	Debug;		/* debug flag */
272static int	resolve = 1;	/* resolve hostname */
273static char	LocalHostName[MAXHOSTNAMELEN];	/* our hostname */
274static const char *LocalDomain;	/* our local domain name */
275static int	*finet;		/* Internet datagram socket */
276static int	fklog = -1;	/* /dev/klog */
277static int	Initialized;	/* set when we have initialized ourselves */
278static int	MarkInterval = 20 * 60;	/* interval between marks in seconds */
279static int	MarkSeq;	/* mark sequence number */
280static int	SecureMode;	/* when true, receive only unix domain socks */
281#ifdef INET6
282static int	family = PF_UNSPEC; /* protocol family (IPv4, IPv6 or both) */
283#else
284static int	family = PF_INET; /* protocol family (IPv4 only) */
285#endif
286static int	send_to_all;	/* send message to all IPv4/IPv6 addresses */
287static int	use_bootfile;	/* log entire bootfile for every kern msg */
288static int	no_compress;	/* don't compress messages (1=pipes, 2=all) */
289static int	logflags = O_WRONLY|O_APPEND; /* flags used to open log files */
290
291static char	bootfile[MAXLINE+1]; /* booted kernel file */
292
293struct allowedpeer *AllowedPeers; /* List of allowed peers */
294static int	NumAllowed;	/* Number of entries in AllowedPeers */
295
296static int	UniquePriority;	/* Only log specified priority? */
297static int	LogFacPri;	/* Put facility and priority in log message: */
298				/* 0=no, 1=numeric, 2=names */
299static int	KeepKernFac;	/* Keep remotely logged kernel facility */
300static int	needdofsync = 0; /* Are any file(s) waiting to be fsynced? */
301static struct pidfh *pfh;
302
303volatile sig_atomic_t MarkSet, WantDie;
304
305static int	allowaddr(char *);
306static void	cfline(const char *, struct filed *,
307		    const char *, const char *);
308static const char *cvthname(struct sockaddr *);
309static void	deadq_enter(pid_t, const char *);
310static int	deadq_remove(pid_t);
311static int	decode(const char *, CODE *);
312static void	die(int);
313static void	dodie(int);
314static void	dofsync(void);
315static void	domark(int);
316static void	fprintlog(struct filed *, int, const char *);
317static int	*socksetup(int, const char *);
318static void	init(int);
319static void	logerror(const char *);
320static void	logmsg(int, const char *, const char *, int);
321static void	log_deadchild(pid_t, int, const char *);
322static void	markit(void);
323static int	skip_message(const char *, const char *, int);
324static void	printline(const char *, char *);
325static void	printsys(char *);
326static int	p_open(const char *, pid_t *);
327static void	readklog(void);
328static void	reapchild(int);
329static void	usage(void);
330static int	validate(struct sockaddr *, const char *);
331static void	unmapped(struct sockaddr *);
332static void	wallmsg(struct filed *, struct iovec *);
333static int	waitdaemon(int, int, int);
334static void	timedout(int);
335static void	double_rbuf(int);
336
337int
338main(int argc, char *argv[])
339{
340	int ch, i, fdsrmax = 0, l;
341	struct sockaddr_un sunx, fromunix;
342	struct sockaddr_storage frominet;
343	fd_set *fdsr = NULL;
344	char line[MAXLINE + 1];
345	const char *bindhostname, *hname;
346	struct timeval tv, *tvp;
347	struct sigaction sact;
348	struct funix *fx, *fx1;
349	sigset_t mask;
350	pid_t ppid = 1, spid;
351	socklen_t len;
352
353	bindhostname = NULL;
354	while ((ch = getopt(argc, argv, "46Aa:b:cCdf:kl:m:nop:P:sS:uv")) != -1)
355		switch (ch) {
356		case '4':
357			family = PF_INET;
358			break;
359#ifdef INET6
360		case '6':
361			family = PF_INET6;
362			break;
363#endif
364		case 'A':
365			send_to_all++;
366			break;
367		case 'a':		/* allow specific network addresses only */
368			if (allowaddr(optarg) == -1)
369				usage();
370			break;
371		case 'b':
372			bindhostname = optarg;
373			break;
374		case 'c':
375			no_compress++;
376			break;
377		case 'C':
378			logflags |= O_CREAT;
379			break;
380		case 'd':		/* debug */
381			Debug++;
382			break;
383		case 'f':		/* configuration file */
384			ConfFile = optarg;
385			break;
386		case 'k':		/* keep remote kern fac */
387			KeepKernFac = 1;
388			break;
389		case 'l':
390		    {
391			long	perml;
392			mode_t	mode;
393			char	*name, *ep;
394
395			if (optarg[0] == '/') {
396				mode = DEFFILEMODE;
397				name = optarg;
398			} else if ((name = strchr(optarg, ':')) != NULL) {
399				*name++ = '\0';
400				if (name[0] != '/')
401					errx(1, "socket name must be absolute "
402					    "path");
403				if (isdigit(*optarg)) {
404					perml = strtol(optarg, &ep, 8);
405				    if (*ep || perml < 0 ||
406					perml & ~(S_IRWXU|S_IRWXG|S_IRWXO))
407					    errx(1, "invalid mode %s, exiting",
408						optarg);
409				    mode = (mode_t )perml;
410				} else
411					errx(1, "invalid mode %s, exiting",
412					    optarg);
413			} else	/* doesn't begin with '/', and no ':' */
414				errx(1, "can't parse path %s", optarg);
415
416			if (strlen(name) >= sizeof(sunx.sun_path))
417				errx(1, "%s path too long, exiting", name);
418			if ((fx = malloc(sizeof(struct funix))) == NULL)
419				errx(1, "malloc failed");
420			fx->s = -1;
421			fx->name = name;
422			fx->mode = mode;
423			STAILQ_INSERT_TAIL(&funixes, fx, next);
424			break;
425		   }
426		case 'm':		/* mark interval */
427			MarkInterval = atoi(optarg) * 60;
428			break;
429		case 'n':
430			resolve = 0;
431			break;
432		case 'o':
433			use_bootfile = 1;
434			break;
435		case 'p':		/* path */
436			if (strlen(optarg) >= sizeof(sunx.sun_path))
437				errx(1, "%s path too long, exiting", optarg);
438			funix_default.name = optarg;
439			break;
440		case 'P':		/* path for alt. PID */
441			PidFile = optarg;
442			break;
443		case 's':		/* no network mode */
444			SecureMode++;
445			break;
446		case 'S':		/* path for privileged originator */
447			if (strlen(optarg) >= sizeof(sunx.sun_path))
448				errx(1, "%s path too long, exiting", optarg);
449			funix_secure.name = optarg;
450			break;
451		case 'u':		/* only log specified priority */
452			UniquePriority++;
453			break;
454		case 'v':		/* log facility and priority */
455		  	LogFacPri++;
456			break;
457		default:
458			usage();
459		}
460	if ((argc -= optind) != 0)
461		usage();
462
463	pfh = pidfile_open(PidFile, 0600, &spid);
464	if (pfh == NULL) {
465		if (errno == EEXIST)
466			errx(1, "syslogd already running, pid: %d", spid);
467		warn("cannot open pid file");
468	}
469
470	if (!Debug) {
471		ppid = waitdaemon(0, 0, 30);
472		if (ppid < 0) {
473			warn("could not become daemon");
474			pidfile_remove(pfh);
475			exit(1);
476		}
477	} else {
478		setlinebuf(stdout);
479	}
480
481	if (NumAllowed)
482		endservent();
483
484	consfile.f_type = F_CONSOLE;
485	(void)strlcpy(consfile.f_un.f_fname, ctty + sizeof _PATH_DEV - 1,
486	    sizeof(consfile.f_un.f_fname));
487	(void)strlcpy(bootfile, getbootfile(), sizeof(bootfile));
488	(void)signal(SIGTERM, dodie);
489	(void)signal(SIGINT, Debug ? dodie : SIG_IGN);
490	(void)signal(SIGQUIT, Debug ? dodie : SIG_IGN);
491	/*
492	 * We don't want the SIGCHLD and SIGHUP handlers to interfere
493	 * with each other; they are likely candidates for being called
494	 * simultaneously (SIGHUP closes pipe descriptor, process dies,
495	 * SIGCHLD happens).
496	 */
497	sigemptyset(&mask);
498	sigaddset(&mask, SIGHUP);
499	sact.sa_handler = reapchild;
500	sact.sa_mask = mask;
501	sact.sa_flags = SA_RESTART;
502	(void)sigaction(SIGCHLD, &sact, NULL);
503	(void)signal(SIGALRM, domark);
504	(void)signal(SIGPIPE, SIG_IGN);	/* We'll catch EPIPE instead. */
505	(void)alarm(TIMERINTVL);
506
507	TAILQ_INIT(&deadq_head);
508
509#ifndef SUN_LEN
510#define SUN_LEN(unp) (strlen((unp)->sun_path) + 2)
511#endif
512	STAILQ_FOREACH_SAFE(fx, &funixes, next, fx1) {
513		(void)unlink(fx->name);
514		memset(&sunx, 0, sizeof(sunx));
515		sunx.sun_family = AF_UNIX;
516		(void)strlcpy(sunx.sun_path, fx->name, sizeof(sunx.sun_path));
517		fx->s = socket(AF_UNIX, SOCK_DGRAM, 0);
518		if (fx->s < 0 ||
519		    bind(fx->s, (struct sockaddr *)&sunx, SUN_LEN(&sunx)) < 0 ||
520		    chmod(fx->name, fx->mode) < 0) {
521			(void)snprintf(line, sizeof line,
522					"cannot create %s", fx->name);
523			logerror(line);
524			dprintf("cannot create %s (%d)\n", fx->name, errno);
525			if (fx == &funix_default || fx == &funix_secure)
526				die(0);
527			else {
528				STAILQ_REMOVE(&funixes, fx, funix, next);
529				continue;
530			}
531			double_rbuf(fx->s);
532		}
533	}
534	if (SecureMode <= 1)
535		finet = socksetup(family, bindhostname);
536
537	if (finet) {
538		if (SecureMode) {
539			for (i = 0; i < *finet; i++) {
540				if (shutdown(finet[i+1], SHUT_RD) < 0) {
541					logerror("shutdown");
542					if (!Debug)
543						die(0);
544				}
545			}
546		} else {
547			dprintf("listening on inet and/or inet6 socket\n");
548		}
549		dprintf("sending on inet and/or inet6 socket\n");
550	}
551
552	if ((fklog = open(_PATH_KLOG, O_RDONLY, 0)) >= 0)
553		if (fcntl(fklog, F_SETFL, O_NONBLOCK) < 0)
554			fklog = -1;
555	if (fklog < 0)
556		dprintf("can't open %s (%d)\n", _PATH_KLOG, errno);
557
558	/* tuck my process id away */
559	pidfile_write(pfh);
560
561	dprintf("off & running....\n");
562
563	init(0);
564	/* prevent SIGHUP and SIGCHLD handlers from running in parallel */
565	sigemptyset(&mask);
566	sigaddset(&mask, SIGCHLD);
567	sact.sa_handler = init;
568	sact.sa_mask = mask;
569	sact.sa_flags = SA_RESTART;
570	(void)sigaction(SIGHUP, &sact, NULL);
571
572	tvp = &tv;
573	tv.tv_sec = tv.tv_usec = 0;
574
575	if (fklog != -1 && fklog > fdsrmax)
576		fdsrmax = fklog;
577	if (finet && !SecureMode) {
578		for (i = 0; i < *finet; i++) {
579		    if (finet[i+1] != -1 && finet[i+1] > fdsrmax)
580			fdsrmax = finet[i+1];
581		}
582	}
583	STAILQ_FOREACH(fx, &funixes, next)
584		if (fx->s > fdsrmax)
585			fdsrmax = fx->s;
586
587	fdsr = (fd_set *)calloc(howmany(fdsrmax+1, NFDBITS),
588	    sizeof(fd_mask));
589	if (fdsr == NULL)
590		errx(1, "calloc fd_set");
591
592	for (;;) {
593		if (MarkSet)
594			markit();
595		if (WantDie)
596			die(WantDie);
597
598		bzero(fdsr, howmany(fdsrmax+1, NFDBITS) *
599		    sizeof(fd_mask));
600
601		if (fklog != -1)
602			FD_SET(fklog, fdsr);
603		if (finet && !SecureMode) {
604			for (i = 0; i < *finet; i++) {
605				if (finet[i+1] != -1)
606					FD_SET(finet[i+1], fdsr);
607			}
608		}
609		STAILQ_FOREACH(fx, &funixes, next)
610			FD_SET(fx->s, fdsr);
611
612		i = select(fdsrmax+1, fdsr, NULL, NULL,
613		    needdofsync ? &tv : tvp);
614		switch (i) {
615		case 0:
616			dofsync();
617			needdofsync = 0;
618			if (tvp) {
619				tvp = NULL;
620				if (ppid != 1)
621					kill(ppid, SIGALRM);
622			}
623			continue;
624		case -1:
625			if (errno != EINTR)
626				logerror("select");
627			continue;
628		}
629		if (fklog != -1 && FD_ISSET(fklog, fdsr))
630			readklog();
631		if (finet && !SecureMode) {
632			for (i = 0; i < *finet; i++) {
633				if (FD_ISSET(finet[i+1], fdsr)) {
634					len = sizeof(frominet);
635					l = recvfrom(finet[i+1], line, MAXLINE,
636					     0, (struct sockaddr *)&frominet,
637					     &len);
638					if (l > 0) {
639						line[l] = '\0';
640						hname = cvthname((struct sockaddr *)&frominet);
641						unmapped((struct sockaddr *)&frominet);
642						if (validate((struct sockaddr *)&frominet, hname))
643							printline(hname, line);
644					} else if (l < 0 && errno != EINTR)
645						logerror("recvfrom inet");
646				}
647			}
648		}
649		STAILQ_FOREACH(fx, &funixes, next) {
650			if (FD_ISSET(fx->s, fdsr)) {
651				len = sizeof(fromunix);
652				l = recvfrom(fx->s, line, MAXLINE, 0,
653				    (struct sockaddr *)&fromunix, &len);
654				if (l > 0) {
655					line[l] = '\0';
656					printline(LocalHostName, line);
657				} else if (l < 0 && errno != EINTR)
658					logerror("recvfrom unix");
659			}
660		}
661	}
662	if (fdsr)
663		free(fdsr);
664}
665
666static void
667unmapped(struct sockaddr *sa)
668{
669	struct sockaddr_in6 *sin6;
670	struct sockaddr_in sin4;
671
672	if (sa->sa_family != AF_INET6)
673		return;
674	if (sa->sa_len != sizeof(struct sockaddr_in6) ||
675	    sizeof(sin4) > sa->sa_len)
676		return;
677	sin6 = (struct sockaddr_in6 *)sa;
678	if (!IN6_IS_ADDR_V4MAPPED(&sin6->sin6_addr))
679		return;
680
681	memset(&sin4, 0, sizeof(sin4));
682	sin4.sin_family = AF_INET;
683	sin4.sin_len = sizeof(struct sockaddr_in);
684	memcpy(&sin4.sin_addr, &sin6->sin6_addr.s6_addr[12],
685	       sizeof(sin4.sin_addr));
686	sin4.sin_port = sin6->sin6_port;
687
688	memcpy(sa, &sin4, sin4.sin_len);
689}
690
691static void
692usage(void)
693{
694
695	fprintf(stderr, "%s\n%s\n%s\n%s\n",
696		"usage: syslogd [-46ACcdknosuv] [-a allowed_peer]",
697		"               [-b bind_address] [-f config_file]",
698		"               [-l [mode:]path] [-m mark_interval]",
699		"               [-P pid_file] [-p log_socket]");
700	exit(1);
701}
702
703/*
704 * Take a raw input line, decode the message, and print the message
705 * on the appropriate log files.
706 */
707static void
708printline(const char *hname, char *msg)
709{
710	char *p, *q;
711	long n;
712	int c, pri;
713	char line[MAXLINE + 1];
714
715	/* test for special codes */
716	p = msg;
717	pri = DEFUPRI;
718	if (*p == '<') {
719		errno = 0;
720		n = strtol(p + 1, &q, 10);
721		if (*q == '>' && n >= 0 && n < INT_MAX && errno == 0) {
722			p = q + 1;
723			pri = n;
724		}
725	}
726	if (pri &~ (LOG_FACMASK|LOG_PRIMASK))
727		pri = DEFUPRI;
728
729	/*
730	 * Don't allow users to log kernel messages.
731	 * NOTE: since LOG_KERN == 0 this will also match
732	 *       messages with no facility specified.
733	 */
734	if ((pri & LOG_FACMASK) == LOG_KERN && !KeepKernFac)
735		pri = LOG_MAKEPRI(LOG_USER, LOG_PRI(pri));
736
737	q = line;
738
739	while ((c = (unsigned char)*p++) != '\0' &&
740	    q < &line[sizeof(line) - 4]) {
741		if ((c & 0x80) && c < 0xA0) {
742			c &= 0x7F;
743			*q++ = 'M';
744			*q++ = '-';
745		}
746		if (isascii(c) && iscntrl(c)) {
747			if (c == '\n') {
748				*q++ = ' ';
749			} else if (c == '\t') {
750				*q++ = '\t';
751			} else {
752				*q++ = '^';
753				*q++ = c ^ 0100;
754			}
755		} else {
756			*q++ = c;
757		}
758	}
759	*q = '\0';
760
761	logmsg(pri, line, hname, 0);
762}
763
764/*
765 * Read /dev/klog while data are available, split into lines.
766 */
767static void
768readklog(void)
769{
770	char *p, *q, line[MAXLINE + 1];
771	int len, i;
772
773	len = 0;
774	for (;;) {
775		i = read(fklog, line + len, MAXLINE - 1 - len);
776		if (i > 0) {
777			line[i + len] = '\0';
778		} else {
779			if (i < 0 && errno != EINTR && errno != EAGAIN) {
780				logerror("klog");
781				fklog = -1;
782			}
783			break;
784		}
785
786		for (p = line; (q = strchr(p, '\n')) != NULL; p = q + 1) {
787			*q = '\0';
788			printsys(p);
789		}
790		len = strlen(p);
791		if (len >= MAXLINE - 1) {
792			printsys(p);
793			len = 0;
794		}
795		if (len > 0)
796			memmove(line, p, len + 1);
797	}
798	if (len > 0)
799		printsys(line);
800}
801
802/*
803 * Take a raw input line from /dev/klog, format similar to syslog().
804 */
805static void
806printsys(char *msg)
807{
808	char *p, *q;
809	long n;
810	int flags, isprintf, pri;
811
812	flags = ISKERNEL | SYNC_FILE | ADDDATE;	/* fsync after write */
813	p = msg;
814	pri = DEFSPRI;
815	isprintf = 1;
816	if (*p == '<') {
817		errno = 0;
818		n = strtol(p + 1, &q, 10);
819		if (*q == '>' && n >= 0 && n < INT_MAX && errno == 0) {
820			p = q + 1;
821			pri = n;
822			isprintf = 0;
823		}
824	}
825	/*
826	 * Kernel printf's and LOG_CONSOLE messages have been displayed
827	 * on the console already.
828	 */
829	if (isprintf || (pri & LOG_FACMASK) == LOG_CONSOLE)
830		flags |= IGN_CONS;
831	if (pri &~ (LOG_FACMASK|LOG_PRIMASK))
832		pri = DEFSPRI;
833	logmsg(pri, p, LocalHostName, flags);
834}
835
836static time_t	now;
837
838/*
839 * Match a program or host name against a specification.
840 * Return a non-0 value if the message must be ignored
841 * based on the specification.
842 */
843static int
844skip_message(const char *name, const char *spec, int checkcase)
845{
846	const char *s;
847	char prev, next;
848	int exclude = 0;
849	/* Behaviour on explicit match */
850
851	if (spec == NULL)
852		return 0;
853	switch (*spec) {
854	case '-':
855		exclude = 1;
856		/*FALLTHROUGH*/
857	case '+':
858		spec++;
859		break;
860	default:
861		break;
862	}
863	if (checkcase)
864		s = strstr (spec, name);
865	else
866		s = strcasestr (spec, name);
867
868	if (s != NULL) {
869		prev = (s == spec ? ',' : *(s - 1));
870		next = *(s + strlen (name));
871
872		if (prev == ',' && (next == '\0' || next == ','))
873			/* Explicit match: skip iff the spec is an
874			   exclusive one. */
875			return exclude;
876	}
877
878	/* No explicit match for this name: skip the message iff
879	   the spec is an inclusive one. */
880	return !exclude;
881}
882
883/*
884 * Log a message to the appropriate log files, users, etc. based on
885 * the priority.
886 */
887static void
888logmsg(int pri, const char *msg, const char *from, int flags)
889{
890	struct filed *f;
891	int i, fac, msglen, omask, prilev;
892	const char *timestamp;
893 	char prog[NAME_MAX+1];
894	char buf[MAXLINE+1];
895
896	dprintf("logmsg: pri %o, flags %x, from %s, msg %s\n",
897	    pri, flags, from, msg);
898
899	omask = sigblock(sigmask(SIGHUP)|sigmask(SIGALRM));
900
901	/*
902	 * Check to see if msg looks non-standard.
903	 */
904	msglen = strlen(msg);
905	if (msglen < 16 || msg[3] != ' ' || msg[6] != ' ' ||
906	    msg[9] != ':' || msg[12] != ':' || msg[15] != ' ')
907		flags |= ADDDATE;
908
909	(void)time(&now);
910	if (flags & ADDDATE) {
911		timestamp = ctime(&now) + 4;
912	} else {
913		timestamp = msg;
914		msg += 16;
915		msglen -= 16;
916	}
917
918	/* skip leading blanks */
919	while (isspace(*msg)) {
920		msg++;
921		msglen--;
922	}
923
924	/* extract facility and priority level */
925	if (flags & MARK)
926		fac = LOG_NFACILITIES;
927	else
928		fac = LOG_FAC(pri);
929
930	/* Check maximum facility number. */
931	if (fac > LOG_NFACILITIES) {
932		(void)sigsetmask(omask);
933		return;
934	}
935
936	prilev = LOG_PRI(pri);
937
938	/* extract program name */
939	for (i = 0; i < NAME_MAX; i++) {
940		if (!isprint(msg[i]) || msg[i] == ':' || msg[i] == '[' ||
941		    msg[i] == '/' || isspace(msg[i]))
942			break;
943		prog[i] = msg[i];
944	}
945	prog[i] = 0;
946
947	/* add kernel prefix for kernel messages */
948	if (flags & ISKERNEL) {
949		snprintf(buf, sizeof(buf), "%s: %s",
950		    use_bootfile ? bootfile : "kernel", msg);
951		msg = buf;
952		msglen = strlen(buf);
953	}
954
955	/* log the message to the particular outputs */
956	if (!Initialized) {
957		f = &consfile;
958		f->f_file = open(ctty, O_WRONLY, 0);
959
960		if (f->f_file >= 0) {
961			(void)strlcpy(f->f_lasttime, timestamp,
962				sizeof(f->f_lasttime));
963			fprintlog(f, flags, msg);
964			(void)close(f->f_file);
965		}
966		(void)sigsetmask(omask);
967		return;
968	}
969	for (f = Files; f; f = f->f_next) {
970		/* skip messages that are incorrect priority */
971		if (!(((f->f_pcmp[fac] & PRI_EQ) && (f->f_pmask[fac] == prilev))
972		     ||((f->f_pcmp[fac] & PRI_LT) && (f->f_pmask[fac] < prilev))
973		     ||((f->f_pcmp[fac] & PRI_GT) && (f->f_pmask[fac] > prilev))
974		     )
975		    || f->f_pmask[fac] == INTERNAL_NOPRI)
976			continue;
977
978		/* skip messages with the incorrect hostname */
979		if (skip_message(from, f->f_host, 0))
980			continue;
981
982		/* skip messages with the incorrect program name */
983		if (skip_message(prog, f->f_program, 1))
984			continue;
985
986		/* skip message to console if it has already been printed */
987		if (f->f_type == F_CONSOLE && (flags & IGN_CONS))
988			continue;
989
990		/* don't output marks to recently written files */
991		if ((flags & MARK) && (now - f->f_time) < MarkInterval / 2)
992			continue;
993
994		/*
995		 * suppress duplicate lines to this file
996		 */
997		if (no_compress - (f->f_type != F_PIPE) < 1 &&
998		    (flags & MARK) == 0 && msglen == f->f_prevlen &&
999		    !strcmp(msg, f->f_prevline) &&
1000		    !strcasecmp(from, f->f_prevhost)) {
1001			(void)strlcpy(f->f_lasttime, timestamp,
1002				sizeof(f->f_lasttime));
1003			f->f_prevcount++;
1004			dprintf("msg repeated %d times, %ld sec of %d\n",
1005			    f->f_prevcount, (long)(now - f->f_time),
1006			    repeatinterval[f->f_repeatcount]);
1007			/*
1008			 * If domark would have logged this by now,
1009			 * flush it now (so we don't hold isolated messages),
1010			 * but back off so we'll flush less often
1011			 * in the future.
1012			 */
1013			if (now > REPEATTIME(f)) {
1014				fprintlog(f, flags, (char *)NULL);
1015				BACKOFF(f);
1016			}
1017		} else {
1018			/* new line, save it */
1019			if (f->f_prevcount)
1020				fprintlog(f, 0, (char *)NULL);
1021			f->f_repeatcount = 0;
1022			f->f_prevpri = pri;
1023			(void)strlcpy(f->f_lasttime, timestamp,
1024				sizeof(f->f_lasttime));
1025			(void)strlcpy(f->f_prevhost, from,
1026			    sizeof(f->f_prevhost));
1027			if (msglen < MAXSVLINE) {
1028				f->f_prevlen = msglen;
1029				(void)strlcpy(f->f_prevline, msg, sizeof(f->f_prevline));
1030				fprintlog(f, flags, (char *)NULL);
1031			} else {
1032				f->f_prevline[0] = 0;
1033				f->f_prevlen = 0;
1034				fprintlog(f, flags, msg);
1035			}
1036		}
1037	}
1038	(void)sigsetmask(omask);
1039}
1040
1041static void
1042dofsync(void)
1043{
1044	struct filed *f;
1045
1046	for (f = Files; f; f = f->f_next) {
1047		if ((f->f_type == F_FILE) &&
1048		    (f->f_flags & FFLAG_NEEDSYNC)) {
1049			f->f_flags &= ~FFLAG_NEEDSYNC;
1050			(void)fsync(f->f_file);
1051		}
1052	}
1053}
1054
1055static void
1056fprintlog(struct filed *f, int flags, const char *msg)
1057{
1058	struct iovec iov[7];
1059	struct iovec *v;
1060	struct addrinfo *r;
1061	int i, l, lsent = 0;
1062	char line[MAXLINE + 1], repbuf[80], greetings[200], *wmsg = NULL;
1063	char nul[] = "", space[] = " ", lf[] = "\n", crlf[] = "\r\n";
1064	const char *msgret;
1065
1066	v = iov;
1067	if (f->f_type == F_WALL) {
1068		v->iov_base = greetings;
1069		v->iov_len = snprintf(greetings, sizeof greetings,
1070		    "\r\n\7Message from syslogd@%s at %.24s ...\r\n",
1071		    f->f_prevhost, ctime(&now));
1072		if (v->iov_len > 0)
1073			v++;
1074		v->iov_base = nul;
1075		v->iov_len = 0;
1076		v++;
1077	} else {
1078		v->iov_base = f->f_lasttime;
1079		v->iov_len = 15;
1080		v++;
1081		v->iov_base = space;
1082		v->iov_len = 1;
1083		v++;
1084	}
1085
1086	if (LogFacPri) {
1087	  	static char fp_buf[30];	/* Hollow laugh */
1088		int fac = f->f_prevpri & LOG_FACMASK;
1089		int pri = LOG_PRI(f->f_prevpri);
1090		const char *f_s = NULL;
1091		char f_n[5];	/* Hollow laugh */
1092		const char *p_s = NULL;
1093		char p_n[5];	/* Hollow laugh */
1094
1095		if (LogFacPri > 1) {
1096		  CODE *c;
1097
1098		  for (c = facilitynames; c->c_name; c++) {
1099		    if (c->c_val == fac) {
1100		      f_s = c->c_name;
1101		      break;
1102		    }
1103		  }
1104		  for (c = prioritynames; c->c_name; c++) {
1105		    if (c->c_val == pri) {
1106		      p_s = c->c_name;
1107		      break;
1108		    }
1109		  }
1110		}
1111		if (!f_s) {
1112		  snprintf(f_n, sizeof f_n, "%d", LOG_FAC(fac));
1113		  f_s = f_n;
1114		}
1115		if (!p_s) {
1116		  snprintf(p_n, sizeof p_n, "%d", pri);
1117		  p_s = p_n;
1118		}
1119		snprintf(fp_buf, sizeof fp_buf, "<%s.%s> ", f_s, p_s);
1120		v->iov_base = fp_buf;
1121		v->iov_len = strlen(fp_buf);
1122	} else {
1123		v->iov_base = nul;
1124		v->iov_len = 0;
1125	}
1126	v++;
1127
1128	v->iov_base = f->f_prevhost;
1129	v->iov_len = strlen(v->iov_base);
1130	v++;
1131	v->iov_base = space;
1132	v->iov_len = 1;
1133	v++;
1134
1135	if (msg) {
1136		wmsg = strdup(msg); /* XXX iov_base needs a `const' sibling. */
1137		if (wmsg == NULL) {
1138			logerror("strdup");
1139			exit(1);
1140		}
1141		v->iov_base = wmsg;
1142		v->iov_len = strlen(msg);
1143	} else if (f->f_prevcount > 1) {
1144		v->iov_base = repbuf;
1145		v->iov_len = snprintf(repbuf, sizeof repbuf,
1146		    "last message repeated %d times", f->f_prevcount);
1147	} else {
1148		v->iov_base = f->f_prevline;
1149		v->iov_len = f->f_prevlen;
1150	}
1151	v++;
1152
1153	dprintf("Logging to %s", TypeNames[f->f_type]);
1154	f->f_time = now;
1155
1156	switch (f->f_type) {
1157		int port;
1158	case F_UNUSED:
1159		dprintf("\n");
1160		break;
1161
1162	case F_FORW:
1163		port = (int)ntohs(((struct sockaddr_in *)
1164			    (f->f_un.f_forw.f_addr->ai_addr))->sin_port);
1165		if (port != 514) {
1166			dprintf(" %s:%d\n", f->f_un.f_forw.f_hname, port);
1167		} else {
1168			dprintf(" %s\n", f->f_un.f_forw.f_hname);
1169		}
1170		/* check for local vs remote messages */
1171		if (strcasecmp(f->f_prevhost, LocalHostName))
1172			l = snprintf(line, sizeof line - 1,
1173			    "<%d>%.15s Forwarded from %s: %s",
1174			    f->f_prevpri, (char *)iov[0].iov_base,
1175			    f->f_prevhost, (char *)iov[5].iov_base);
1176		else
1177			l = snprintf(line, sizeof line - 1, "<%d>%.15s %s",
1178			     f->f_prevpri, (char *)iov[0].iov_base,
1179			    (char *)iov[5].iov_base);
1180		if (l < 0)
1181			l = 0;
1182		else if (l > MAXLINE)
1183			l = MAXLINE;
1184
1185		if (finet) {
1186			for (r = f->f_un.f_forw.f_addr; r; r = r->ai_next) {
1187				for (i = 0; i < *finet; i++) {
1188#if 0
1189					/*
1190					 * should we check AF first, or just
1191					 * trial and error? FWD
1192					 */
1193					if (r->ai_family ==
1194					    address_family_of(finet[i+1]))
1195#endif
1196					lsent = sendto(finet[i+1], line, l, 0,
1197					    r->ai_addr, r->ai_addrlen);
1198					if (lsent == l)
1199						break;
1200				}
1201				if (lsent == l && !send_to_all)
1202					break;
1203			}
1204			dprintf("lsent/l: %d/%d\n", lsent, l);
1205			if (lsent != l) {
1206				int e = errno;
1207				logerror("sendto");
1208				errno = e;
1209				switch (errno) {
1210				case ENOBUFS:
1211				case ENETDOWN:
1212				case EHOSTUNREACH:
1213				case EHOSTDOWN:
1214					break;
1215				/* case EBADF: */
1216				/* case EACCES: */
1217				/* case ENOTSOCK: */
1218				/* case EFAULT: */
1219				/* case EMSGSIZE: */
1220				/* case EAGAIN: */
1221				/* case ENOBUFS: */
1222				/* case ECONNREFUSED: */
1223				default:
1224					dprintf("removing entry\n");
1225					f->f_type = F_UNUSED;
1226					break;
1227				}
1228			}
1229		}
1230		break;
1231
1232	case F_FILE:
1233		dprintf(" %s\n", f->f_un.f_fname);
1234		v->iov_base = lf;
1235		v->iov_len = 1;
1236		if (writev(f->f_file, iov, 7) < 0) {
1237			/*
1238			 * If writev(2) fails for potentially transient errors
1239			 * like the * filesystem being full, ignore it.
1240			 * Otherwise remove * this logfile from the list.
1241			 */
1242			if (errno != ENOSPC) {
1243				int e = errno;
1244				(void)close(f->f_file);
1245				f->f_type = F_UNUSED;
1246				errno = e;
1247				logerror(f->f_un.f_fname);
1248			}
1249		} else if ((flags & SYNC_FILE) && (f->f_flags & FFLAG_SYNC)) {
1250			f->f_flags |= FFLAG_NEEDSYNC;
1251			needdofsync = 1;
1252		}
1253		break;
1254
1255	case F_PIPE:
1256		dprintf(" %s\n", f->f_un.f_pipe.f_pname);
1257		v->iov_base = lf;
1258		v->iov_len = 1;
1259		if (f->f_un.f_pipe.f_pid == 0) {
1260			if ((f->f_file = p_open(f->f_un.f_pipe.f_pname,
1261						&f->f_un.f_pipe.f_pid)) < 0) {
1262				f->f_type = F_UNUSED;
1263				logerror(f->f_un.f_pipe.f_pname);
1264				break;
1265			}
1266		}
1267		if (writev(f->f_file, iov, 7) < 0) {
1268			int e = errno;
1269			(void)close(f->f_file);
1270			if (f->f_un.f_pipe.f_pid > 0)
1271				deadq_enter(f->f_un.f_pipe.f_pid,
1272					    f->f_un.f_pipe.f_pname);
1273			f->f_un.f_pipe.f_pid = 0;
1274			errno = e;
1275			logerror(f->f_un.f_pipe.f_pname);
1276		}
1277		break;
1278
1279	case F_CONSOLE:
1280		if (flags & IGN_CONS) {
1281			dprintf(" (ignored)\n");
1282			break;
1283		}
1284		/* FALLTHROUGH */
1285
1286	case F_TTY:
1287		dprintf(" %s%s\n", _PATH_DEV, f->f_un.f_fname);
1288		v->iov_base = crlf;
1289		v->iov_len = 2;
1290
1291		errno = 0;	/* ttymsg() only sometimes returns an errno */
1292		if ((msgret = ttymsg(iov, 7, f->f_un.f_fname, 10))) {
1293			f->f_type = F_UNUSED;
1294			logerror(msgret);
1295		}
1296		break;
1297
1298	case F_USERS:
1299	case F_WALL:
1300		dprintf("\n");
1301		v->iov_base = crlf;
1302		v->iov_len = 2;
1303		wallmsg(f, iov);
1304		break;
1305	}
1306	f->f_prevcount = 0;
1307	if (msg)
1308		free(wmsg);
1309}
1310
1311/*
1312 *  WALLMSG -- Write a message to the world at large
1313 *
1314 *	Write the specified message to either the entire
1315 *	world, or a list of approved users.
1316 */
1317static void
1318wallmsg(struct filed *f, struct iovec *iov)
1319{
1320	static int reenter;			/* avoid calling ourselves */
1321	FILE *uf;
1322	struct utmp ut;
1323	int i;
1324	const char *p;
1325	char line[sizeof(ut.ut_line) + 1];
1326
1327	if (reenter++)
1328		return;
1329	if ((uf = fopen(_PATH_UTMP, "r")) == NULL) {
1330		logerror(_PATH_UTMP);
1331		reenter = 0;
1332		return;
1333	}
1334	/* NOSTRICT */
1335	while (fread((char *)&ut, sizeof(ut), 1, uf) == 1) {
1336		if (ut.ut_name[0] == '\0')
1337			continue;
1338		/* We must use strncpy since ut_* may not be NUL terminated. */
1339		strncpy(line, ut.ut_line, sizeof(line) - 1);
1340		line[sizeof(line) - 1] = '\0';
1341		if (f->f_type == F_WALL) {
1342			if ((p = ttymsg(iov, 7, line, TTYMSGTIME)) != NULL) {
1343				errno = 0;	/* already in msg */
1344				logerror(p);
1345			}
1346			continue;
1347		}
1348		/* should we send the message to this user? */
1349		for (i = 0; i < MAXUNAMES; i++) {
1350			if (!f->f_un.f_uname[i][0])
1351				break;
1352			if (!strncmp(f->f_un.f_uname[i], ut.ut_name,
1353			    UT_NAMESIZE)) {
1354				if ((p = ttymsg(iov, 7, line, TTYMSGTIME))
1355								!= NULL) {
1356					errno = 0;	/* already in msg */
1357					logerror(p);
1358				}
1359				break;
1360			}
1361		}
1362	}
1363	(void)fclose(uf);
1364	reenter = 0;
1365}
1366
1367static void
1368reapchild(int signo __unused)
1369{
1370	int status;
1371	pid_t pid;
1372	struct filed *f;
1373
1374	while ((pid = wait3(&status, WNOHANG, (struct rusage *)NULL)) > 0) {
1375		if (!Initialized)
1376			/* Don't tell while we are initting. */
1377			continue;
1378
1379		/* First, look if it's a process from the dead queue. */
1380		if (deadq_remove(pid))
1381			goto oncemore;
1382
1383		/* Now, look in list of active processes. */
1384		for (f = Files; f; f = f->f_next)
1385			if (f->f_type == F_PIPE &&
1386			    f->f_un.f_pipe.f_pid == pid) {
1387				(void)close(f->f_file);
1388				f->f_un.f_pipe.f_pid = 0;
1389				log_deadchild(pid, status,
1390					      f->f_un.f_pipe.f_pname);
1391				break;
1392			}
1393	  oncemore:
1394		continue;
1395	}
1396}
1397
1398/*
1399 * Return a printable representation of a host address.
1400 */
1401static const char *
1402cvthname(struct sockaddr *f)
1403{
1404	int error, hl;
1405	sigset_t omask, nmask;
1406	static char hname[NI_MAXHOST], ip[NI_MAXHOST];
1407
1408	error = getnameinfo((struct sockaddr *)f,
1409			    ((struct sockaddr *)f)->sa_len,
1410			    ip, sizeof ip, NULL, 0, NI_NUMERICHOST);
1411	dprintf("cvthname(%s)\n", ip);
1412
1413	if (error) {
1414		dprintf("Malformed from address %s\n", gai_strerror(error));
1415		return ("???");
1416	}
1417	if (!resolve)
1418		return (ip);
1419
1420	sigemptyset(&nmask);
1421	sigaddset(&nmask, SIGHUP);
1422	sigprocmask(SIG_BLOCK, &nmask, &omask);
1423	error = getnameinfo((struct sockaddr *)f,
1424			    ((struct sockaddr *)f)->sa_len,
1425			    hname, sizeof hname, NULL, 0, NI_NAMEREQD);
1426	sigprocmask(SIG_SETMASK, &omask, NULL);
1427	if (error) {
1428		dprintf("Host name for your address (%s) unknown\n", ip);
1429		return (ip);
1430	}
1431	hl = strlen(hname);
1432	if (hl > 0 && hname[hl-1] == '.')
1433		hname[--hl] = '\0';
1434	trimdomain(hname, hl);
1435	return (hname);
1436}
1437
1438static void
1439dodie(int signo)
1440{
1441
1442	WantDie = signo;
1443}
1444
1445static void
1446domark(int signo __unused)
1447{
1448
1449	MarkSet = 1;
1450}
1451
1452/*
1453 * Print syslogd errors some place.
1454 */
1455static void
1456logerror(const char *type)
1457{
1458	char buf[512];
1459	static int recursed = 0;
1460
1461	/* If there's an error while trying to log an error, give up. */
1462	if (recursed)
1463		return;
1464	recursed++;
1465	if (errno)
1466		(void)snprintf(buf,
1467		    sizeof buf, "syslogd: %s: %s", type, strerror(errno));
1468	else
1469		(void)snprintf(buf, sizeof buf, "syslogd: %s", type);
1470	errno = 0;
1471	dprintf("%s\n", buf);
1472	logmsg(LOG_SYSLOG|LOG_ERR, buf, LocalHostName, ADDDATE);
1473	recursed--;
1474}
1475
1476static void
1477die(int signo)
1478{
1479	struct filed *f;
1480	struct funix *fx;
1481	int was_initialized;
1482	char buf[100];
1483
1484	was_initialized = Initialized;
1485	Initialized = 0;	/* Don't log SIGCHLDs. */
1486	for (f = Files; f != NULL; f = f->f_next) {
1487		/* flush any pending output */
1488		if (f->f_prevcount)
1489			fprintlog(f, 0, (char *)NULL);
1490		if (f->f_type == F_PIPE && f->f_un.f_pipe.f_pid > 0) {
1491			(void)close(f->f_file);
1492			f->f_un.f_pipe.f_pid = 0;
1493		}
1494	}
1495	Initialized = was_initialized;
1496	if (signo) {
1497		dprintf("syslogd: exiting on signal %d\n", signo);
1498		(void)snprintf(buf, sizeof(buf), "exiting on signal %d", signo);
1499		errno = 0;
1500		logerror(buf);
1501	}
1502	STAILQ_FOREACH(fx, &funixes, next)
1503		(void)unlink(fx->name);
1504	pidfile_remove(pfh);
1505
1506	exit(1);
1507}
1508
1509/*
1510 *  INIT -- Initialize syslogd from configuration table
1511 */
1512static void
1513init(int signo)
1514{
1515	int i;
1516	FILE *cf;
1517	struct filed *f, *next, **nextp;
1518	char *p;
1519	char cline[LINE_MAX];
1520 	char prog[NAME_MAX+1];
1521	char host[MAXHOSTNAMELEN];
1522	char oldLocalHostName[MAXHOSTNAMELEN];
1523	char hostMsg[2*MAXHOSTNAMELEN+40];
1524	char bootfileMsg[LINE_MAX];
1525
1526	dprintf("init\n");
1527
1528	/*
1529	 * Load hostname (may have changed).
1530	 */
1531	if (signo != 0)
1532		(void)strlcpy(oldLocalHostName, LocalHostName,
1533		    sizeof(oldLocalHostName));
1534	if (gethostname(LocalHostName, sizeof(LocalHostName)))
1535		err(EX_OSERR, "gethostname() failed");
1536	if ((p = strchr(LocalHostName, '.')) != NULL) {
1537		*p++ = '\0';
1538		LocalDomain = p;
1539	} else {
1540		LocalDomain = "";
1541	}
1542
1543	/*
1544	 *  Close all open log files.
1545	 */
1546	Initialized = 0;
1547	for (f = Files; f != NULL; f = next) {
1548		/* flush any pending output */
1549		if (f->f_prevcount)
1550			fprintlog(f, 0, (char *)NULL);
1551
1552		switch (f->f_type) {
1553		case F_FILE:
1554		case F_FORW:
1555		case F_CONSOLE:
1556		case F_TTY:
1557			(void)close(f->f_file);
1558			break;
1559		case F_PIPE:
1560			if (f->f_un.f_pipe.f_pid > 0) {
1561				(void)close(f->f_file);
1562				deadq_enter(f->f_un.f_pipe.f_pid,
1563					    f->f_un.f_pipe.f_pname);
1564			}
1565			f->f_un.f_pipe.f_pid = 0;
1566			break;
1567		}
1568		next = f->f_next;
1569		if (f->f_program) free(f->f_program);
1570		if (f->f_host) free(f->f_host);
1571		free((char *)f);
1572	}
1573	Files = NULL;
1574	nextp = &Files;
1575
1576	/* open the configuration file */
1577	if ((cf = fopen(ConfFile, "r")) == NULL) {
1578		dprintf("cannot open %s\n", ConfFile);
1579		*nextp = (struct filed *)calloc(1, sizeof(*f));
1580		if (*nextp == NULL) {
1581			logerror("calloc");
1582			exit(1);
1583		}
1584		cfline("*.ERR\t/dev/console", *nextp, "*", "*");
1585		(*nextp)->f_next = (struct filed *)calloc(1, sizeof(*f));
1586		if ((*nextp)->f_next == NULL) {
1587			logerror("calloc");
1588			exit(1);
1589		}
1590		cfline("*.PANIC\t*", (*nextp)->f_next, "*", "*");
1591		Initialized = 1;
1592		return;
1593	}
1594
1595	/*
1596	 *  Foreach line in the conf table, open that file.
1597	 */
1598	f = NULL;
1599	(void)strlcpy(host, "*", sizeof(host));
1600	(void)strlcpy(prog, "*", sizeof(prog));
1601	while (fgets(cline, sizeof(cline), cf) != NULL) {
1602		/*
1603		 * check for end-of-section, comments, strip off trailing
1604		 * spaces and newline character. #!prog is treated specially:
1605		 * following lines apply only to that program.
1606		 */
1607		for (p = cline; isspace(*p); ++p)
1608			continue;
1609		if (*p == 0)
1610			continue;
1611		if (*p == '#') {
1612			p++;
1613			if (*p != '!' && *p != '+' && *p != '-')
1614				continue;
1615		}
1616		if (*p == '+' || *p == '-') {
1617			host[0] = *p++;
1618			while (isspace(*p))
1619				p++;
1620			if ((!*p) || (*p == '*')) {
1621				(void)strlcpy(host, "*", sizeof(host));
1622				continue;
1623			}
1624			if (*p == '@')
1625				p = LocalHostName;
1626			for (i = 1; i < MAXHOSTNAMELEN - 1; i++) {
1627				if (!isalnum(*p) && *p != '.' && *p != '-'
1628				    && *p != ',' && *p != ':' && *p != '%')
1629					break;
1630				host[i] = *p++;
1631			}
1632			host[i] = '\0';
1633			continue;
1634		}
1635		if (*p == '!') {
1636			p++;
1637			while (isspace(*p)) p++;
1638			if ((!*p) || (*p == '*')) {
1639				(void)strlcpy(prog, "*", sizeof(prog));
1640				continue;
1641			}
1642			for (i = 0; i < NAME_MAX; i++) {
1643				if (!isprint(p[i]) || isspace(p[i]))
1644					break;
1645				prog[i] = p[i];
1646			}
1647			prog[i] = 0;
1648			continue;
1649		}
1650		for (i = strlen(cline) - 1; i >= 0 && isspace(cline[i]); i--)
1651			cline[i] = '\0';
1652		f = (struct filed *)calloc(1, sizeof(*f));
1653		if (f == NULL) {
1654			logerror("calloc");
1655			exit(1);
1656		}
1657		*nextp = f;
1658		nextp = &f->f_next;
1659		cfline(cline, f, prog, host);
1660	}
1661
1662	/* close the configuration file */
1663	(void)fclose(cf);
1664
1665	Initialized = 1;
1666
1667	if (Debug) {
1668		int port;
1669		for (f = Files; f; f = f->f_next) {
1670			for (i = 0; i <= LOG_NFACILITIES; i++)
1671				if (f->f_pmask[i] == INTERNAL_NOPRI)
1672					printf("X ");
1673				else
1674					printf("%d ", f->f_pmask[i]);
1675			printf("%s: ", TypeNames[f->f_type]);
1676			switch (f->f_type) {
1677			case F_FILE:
1678				printf("%s", f->f_un.f_fname);
1679				break;
1680
1681			case F_CONSOLE:
1682			case F_TTY:
1683				printf("%s%s", _PATH_DEV, f->f_un.f_fname);
1684				break;
1685
1686			case F_FORW:
1687				port = (int)ntohs(((struct sockaddr_in *)
1688				    (f->f_un.f_forw.f_addr->ai_addr))->sin_port);
1689				if (port != 514) {
1690					printf("%s:%d",
1691						f->f_un.f_forw.f_hname, port);
1692				} else {
1693					printf("%s", f->f_un.f_forw.f_hname);
1694				}
1695				break;
1696
1697			case F_PIPE:
1698				printf("%s", f->f_un.f_pipe.f_pname);
1699				break;
1700
1701			case F_USERS:
1702				for (i = 0; i < MAXUNAMES && *f->f_un.f_uname[i]; i++)
1703					printf("%s, ", f->f_un.f_uname[i]);
1704				break;
1705			}
1706			if (f->f_program)
1707				printf(" (%s)", f->f_program);
1708			printf("\n");
1709		}
1710	}
1711
1712	logmsg(LOG_SYSLOG|LOG_INFO, "syslogd: restart", LocalHostName, ADDDATE);
1713	dprintf("syslogd: restarted\n");
1714	/*
1715	 * Log a change in hostname, but only on a restart.
1716	 */
1717	if (signo != 0 && strcmp(oldLocalHostName, LocalHostName) != 0) {
1718		(void)snprintf(hostMsg, sizeof(hostMsg),
1719		    "syslogd: hostname changed, \"%s\" to \"%s\"",
1720		    oldLocalHostName, LocalHostName);
1721		logmsg(LOG_SYSLOG|LOG_INFO, hostMsg, LocalHostName, ADDDATE);
1722		dprintf("%s\n", hostMsg);
1723	}
1724	/*
1725	 * Log the kernel boot file if we aren't going to use it as
1726	 * the prefix, and if this is *not* a restart.
1727	 */
1728	if (signo == 0 && !use_bootfile) {
1729		(void)snprintf(bootfileMsg, sizeof(bootfileMsg),
1730		    "syslogd: kernel boot file is %s", bootfile);
1731		logmsg(LOG_KERN|LOG_INFO, bootfileMsg, LocalHostName, ADDDATE);
1732		dprintf("%s\n", bootfileMsg);
1733	}
1734}
1735
1736/*
1737 * Crack a configuration file line
1738 */
1739static void
1740cfline(const char *line, struct filed *f, const char *prog, const char *host)
1741{
1742	struct addrinfo hints, *res;
1743	int error, i, pri, syncfile;
1744	const char *p, *q;
1745	char *bp;
1746	char buf[MAXLINE], ebuf[100];
1747
1748	dprintf("cfline(\"%s\", f, \"%s\", \"%s\")\n", line, prog, host);
1749
1750	errno = 0;	/* keep strerror() stuff out of logerror messages */
1751
1752	/* clear out file entry */
1753	memset(f, 0, sizeof(*f));
1754	for (i = 0; i <= LOG_NFACILITIES; i++)
1755		f->f_pmask[i] = INTERNAL_NOPRI;
1756
1757	/* save hostname if any */
1758	if (host && *host == '*')
1759		host = NULL;
1760	if (host) {
1761		int hl;
1762
1763		f->f_host = strdup(host);
1764		if (f->f_host == NULL) {
1765			logerror("strdup");
1766			exit(1);
1767		}
1768		hl = strlen(f->f_host);
1769		if (hl > 0 && f->f_host[hl-1] == '.')
1770			f->f_host[--hl] = '\0';
1771		trimdomain(f->f_host, hl);
1772	}
1773
1774	/* save program name if any */
1775	if (prog && *prog == '*')
1776		prog = NULL;
1777	if (prog) {
1778		f->f_program = strdup(prog);
1779		if (f->f_program == NULL) {
1780			logerror("strdup");
1781			exit(1);
1782		}
1783	}
1784
1785	/* scan through the list of selectors */
1786	for (p = line; *p && *p != '\t' && *p != ' ';) {
1787		int pri_done;
1788		int pri_cmp;
1789		int pri_invert;
1790
1791		/* find the end of this facility name list */
1792		for (q = p; *q && *q != '\t' && *q != ' ' && *q++ != '.'; )
1793			continue;
1794
1795		/* get the priority comparison */
1796		pri_cmp = 0;
1797		pri_done = 0;
1798		pri_invert = 0;
1799		if (*q == '!') {
1800			pri_invert = 1;
1801			q++;
1802		}
1803		while (!pri_done) {
1804			switch (*q) {
1805			case '<':
1806				pri_cmp |= PRI_LT;
1807				q++;
1808				break;
1809			case '=':
1810				pri_cmp |= PRI_EQ;
1811				q++;
1812				break;
1813			case '>':
1814				pri_cmp |= PRI_GT;
1815				q++;
1816				break;
1817			default:
1818				pri_done++;
1819				break;
1820			}
1821		}
1822
1823		/* collect priority name */
1824		for (bp = buf; *q && !strchr("\t,; ", *q); )
1825			*bp++ = *q++;
1826		*bp = '\0';
1827
1828		/* skip cruft */
1829		while (strchr(",;", *q))
1830			q++;
1831
1832		/* decode priority name */
1833		if (*buf == '*') {
1834			pri = LOG_PRIMASK + 1;
1835			pri_cmp = PRI_LT | PRI_EQ | PRI_GT;
1836		} else {
1837			/* Ignore trailing spaces. */
1838			for (i = strlen(buf) - 1; i >= 0 && buf[i] == ' '; i--)
1839				buf[i] = '\0';
1840
1841			pri = decode(buf, prioritynames);
1842			if (pri < 0) {
1843				(void)snprintf(ebuf, sizeof ebuf,
1844				    "unknown priority name \"%s\"", buf);
1845				logerror(ebuf);
1846				return;
1847			}
1848		}
1849		if (!pri_cmp)
1850			pri_cmp = (UniquePriority)
1851				  ? (PRI_EQ)
1852				  : (PRI_EQ | PRI_GT)
1853				  ;
1854		if (pri_invert)
1855			pri_cmp ^= PRI_LT | PRI_EQ | PRI_GT;
1856
1857		/* scan facilities */
1858		while (*p && !strchr("\t.; ", *p)) {
1859			for (bp = buf; *p && !strchr("\t,;. ", *p); )
1860				*bp++ = *p++;
1861			*bp = '\0';
1862
1863			if (*buf == '*') {
1864				for (i = 0; i < LOG_NFACILITIES; i++) {
1865					f->f_pmask[i] = pri;
1866					f->f_pcmp[i] = pri_cmp;
1867				}
1868			} else {
1869				i = decode(buf, facilitynames);
1870				if (i < 0) {
1871					(void)snprintf(ebuf, sizeof ebuf,
1872					    "unknown facility name \"%s\"",
1873					    buf);
1874					logerror(ebuf);
1875					return;
1876				}
1877				f->f_pmask[i >> 3] = pri;
1878				f->f_pcmp[i >> 3] = pri_cmp;
1879			}
1880			while (*p == ',' || *p == ' ')
1881				p++;
1882		}
1883
1884		p = q;
1885	}
1886
1887	/* skip to action part */
1888	while (*p == '\t' || *p == ' ')
1889		p++;
1890
1891	if (*p == '-') {
1892		syncfile = 0;
1893		p++;
1894	} else
1895		syncfile = 1;
1896
1897	switch (*p) {
1898	case '@':
1899		{
1900			char *tp;
1901			/*
1902			 * scan forward to see if there is a port defined.
1903			 * so we can't use strlcpy..
1904			 */
1905			i = sizeof(f->f_un.f_forw.f_hname);
1906			tp = f->f_un.f_forw.f_hname;
1907			p++;
1908
1909			while (*p && (*p != ':') && (i-- > 0)) {
1910				*tp++ = *p++;
1911			}
1912			*tp = '\0';
1913		}
1914		/* See if we copied a domain and have a port */
1915		if (*p == ':')
1916			p++;
1917		else
1918			p = NULL;
1919
1920		memset(&hints, 0, sizeof(hints));
1921		hints.ai_family = family;
1922		hints.ai_socktype = SOCK_DGRAM;
1923		error = getaddrinfo(f->f_un.f_forw.f_hname,
1924				p ? p : "syslog", &hints, &res);
1925		if (error) {
1926			logerror(gai_strerror(error));
1927			break;
1928		}
1929		f->f_un.f_forw.f_addr = res;
1930		f->f_type = F_FORW;
1931		break;
1932
1933	case '/':
1934		if ((f->f_file = open(p, logflags, 0600)) < 0) {
1935			f->f_type = F_UNUSED;
1936			logerror(p);
1937			break;
1938		}
1939		if (syncfile)
1940			f->f_flags |= FFLAG_SYNC;
1941		if (isatty(f->f_file)) {
1942			if (strcmp(p, ctty) == 0)
1943				f->f_type = F_CONSOLE;
1944			else
1945				f->f_type = F_TTY;
1946			(void)strlcpy(f->f_un.f_fname, p + sizeof(_PATH_DEV) - 1,
1947			    sizeof(f->f_un.f_fname));
1948		} else {
1949			(void)strlcpy(f->f_un.f_fname, p, sizeof(f->f_un.f_fname));
1950			f->f_type = F_FILE;
1951		}
1952		break;
1953
1954	case '|':
1955		f->f_un.f_pipe.f_pid = 0;
1956		(void)strlcpy(f->f_un.f_fname, p + 1, sizeof(f->f_un.f_fname));
1957		f->f_type = F_PIPE;
1958		break;
1959
1960	case '*':
1961		f->f_type = F_WALL;
1962		break;
1963
1964	default:
1965		for (i = 0; i < MAXUNAMES && *p; i++) {
1966			for (q = p; *q && *q != ','; )
1967				q++;
1968			(void)strncpy(f->f_un.f_uname[i], p, UT_NAMESIZE);
1969			if ((q - p) > UT_NAMESIZE)
1970				f->f_un.f_uname[i][UT_NAMESIZE] = '\0';
1971			else
1972				f->f_un.f_uname[i][q - p] = '\0';
1973			while (*q == ',' || *q == ' ')
1974				q++;
1975			p = q;
1976		}
1977		f->f_type = F_USERS;
1978		break;
1979	}
1980}
1981
1982
1983/*
1984 *  Decode a symbolic name to a numeric value
1985 */
1986static int
1987decode(const char *name, CODE *codetab)
1988{
1989	CODE *c;
1990	char *p, buf[40];
1991
1992	if (isdigit(*name))
1993		return (atoi(name));
1994
1995	for (p = buf; *name && p < &buf[sizeof(buf) - 1]; p++, name++) {
1996		if (isupper(*name))
1997			*p = tolower(*name);
1998		else
1999			*p = *name;
2000	}
2001	*p = '\0';
2002	for (c = codetab; c->c_name; c++)
2003		if (!strcmp(buf, c->c_name))
2004			return (c->c_val);
2005
2006	return (-1);
2007}
2008
2009static void
2010markit(void)
2011{
2012	struct filed *f;
2013	dq_t q, next;
2014
2015	now = time((time_t *)NULL);
2016	MarkSeq += TIMERINTVL;
2017	if (MarkSeq >= MarkInterval) {
2018		logmsg(LOG_INFO, "-- MARK --",
2019		    LocalHostName, ADDDATE|MARK);
2020		MarkSeq = 0;
2021	}
2022
2023	for (f = Files; f; f = f->f_next) {
2024		if (f->f_prevcount && now >= REPEATTIME(f)) {
2025			dprintf("flush %s: repeated %d times, %d sec.\n",
2026			    TypeNames[f->f_type], f->f_prevcount,
2027			    repeatinterval[f->f_repeatcount]);
2028			fprintlog(f, 0, (char *)NULL);
2029			BACKOFF(f);
2030		}
2031	}
2032
2033	/* Walk the dead queue, and see if we should signal somebody. */
2034	for (q = TAILQ_FIRST(&deadq_head); q != NULL; q = next) {
2035		next = TAILQ_NEXT(q, dq_entries);
2036
2037		switch (q->dq_timeout) {
2038		case 0:
2039			/* Already signalled once, try harder now. */
2040			if (kill(q->dq_pid, SIGKILL) != 0)
2041				(void)deadq_remove(q->dq_pid);
2042			break;
2043
2044		case 1:
2045			/*
2046			 * Timed out on dead queue, send terminate
2047			 * signal.  Note that we leave the removal
2048			 * from the dead queue to reapchild(), which
2049			 * will also log the event (unless the process
2050			 * didn't even really exist, in case we simply
2051			 * drop it from the dead queue).
2052			 */
2053			if (kill(q->dq_pid, SIGTERM) != 0)
2054				(void)deadq_remove(q->dq_pid);
2055			/* FALLTHROUGH */
2056
2057		default:
2058			q->dq_timeout--;
2059		}
2060	}
2061	MarkSet = 0;
2062	(void)alarm(TIMERINTVL);
2063}
2064
2065/*
2066 * fork off and become a daemon, but wait for the child to come online
2067 * before returing to the parent, or we get disk thrashing at boot etc.
2068 * Set a timer so we don't hang forever if it wedges.
2069 */
2070static int
2071waitdaemon(int nochdir, int noclose, int maxwait)
2072{
2073	int fd;
2074	int status;
2075	pid_t pid, childpid;
2076
2077	switch (childpid = fork()) {
2078	case -1:
2079		return (-1);
2080	case 0:
2081		break;
2082	default:
2083		signal(SIGALRM, timedout);
2084		alarm(maxwait);
2085		while ((pid = wait3(&status, 0, NULL)) != -1) {
2086			if (WIFEXITED(status))
2087				errx(1, "child pid %d exited with return code %d",
2088					pid, WEXITSTATUS(status));
2089			if (WIFSIGNALED(status))
2090				errx(1, "child pid %d exited on signal %d%s",
2091					pid, WTERMSIG(status),
2092					WCOREDUMP(status) ? " (core dumped)" :
2093					"");
2094			if (pid == childpid)	/* it's gone... */
2095				break;
2096		}
2097		exit(0);
2098	}
2099
2100	if (setsid() == -1)
2101		return (-1);
2102
2103	if (!nochdir)
2104		(void)chdir("/");
2105
2106	if (!noclose && (fd = open(_PATH_DEVNULL, O_RDWR, 0)) != -1) {
2107		(void)dup2(fd, STDIN_FILENO);
2108		(void)dup2(fd, STDOUT_FILENO);
2109		(void)dup2(fd, STDERR_FILENO);
2110		if (fd > 2)
2111			(void)close (fd);
2112	}
2113	return (getppid());
2114}
2115
2116/*
2117 * We get a SIGALRM from the child when it's running and finished doing it's
2118 * fsync()'s or O_SYNC writes for all the boot messages.
2119 *
2120 * We also get a signal from the kernel if the timer expires, so check to
2121 * see what happened.
2122 */
2123static void
2124timedout(int sig __unused)
2125{
2126	int left;
2127	left = alarm(0);
2128	signal(SIGALRM, SIG_DFL);
2129	if (left == 0)
2130		errx(1, "timed out waiting for child");
2131	else
2132		_exit(0);
2133}
2134
2135/*
2136 * Add `s' to the list of allowable peer addresses to accept messages
2137 * from.
2138 *
2139 * `s' is a string in the form:
2140 *
2141 *    [*]domainname[:{servicename|portnumber|*}]
2142 *
2143 * or
2144 *
2145 *    netaddr/maskbits[:{servicename|portnumber|*}]
2146 *
2147 * Returns -1 on error, 0 if the argument was valid.
2148 */
2149static int
2150allowaddr(char *s)
2151{
2152	char *cp1, *cp2;
2153	struct allowedpeer ap;
2154	struct servent *se;
2155	int masklen = -1, i;
2156	struct addrinfo hints, *res;
2157	struct in_addr *addrp, *maskp;
2158	u_int32_t *addr6p, *mask6p;
2159	char ip[NI_MAXHOST];
2160
2161#ifdef INET6
2162	if (*s != '[' || (cp1 = strchr(s + 1, ']')) == NULL)
2163#endif
2164		cp1 = s;
2165	if ((cp1 = strrchr(cp1, ':'))) {
2166		/* service/port provided */
2167		*cp1++ = '\0';
2168		if (strlen(cp1) == 1 && *cp1 == '*')
2169			/* any port allowed */
2170			ap.port = 0;
2171		else if ((se = getservbyname(cp1, "udp"))) {
2172			ap.port = ntohs(se->s_port);
2173		} else {
2174			ap.port = strtol(cp1, &cp2, 0);
2175			if (*cp2 != '\0')
2176				return (-1); /* port not numeric */
2177		}
2178	} else {
2179		if ((se = getservbyname("syslog", "udp")))
2180			ap.port = ntohs(se->s_port);
2181		else
2182			/* sanity, should not happen */
2183			ap.port = 514;
2184	}
2185
2186	if ((cp1 = strchr(s, '/')) != NULL &&
2187	    strspn(cp1 + 1, "0123456789") == strlen(cp1 + 1)) {
2188		*cp1 = '\0';
2189		if ((masklen = atoi(cp1 + 1)) < 0)
2190			return (-1);
2191	}
2192#ifdef INET6
2193	if (*s == '[') {
2194		cp2 = s + strlen(s) - 1;
2195		if (*cp2 == ']') {
2196			++s;
2197			*cp2 = '\0';
2198		} else {
2199			cp2 = NULL;
2200		}
2201	} else {
2202		cp2 = NULL;
2203	}
2204#endif
2205	memset(&hints, 0, sizeof(hints));
2206	hints.ai_family = PF_UNSPEC;
2207	hints.ai_socktype = SOCK_DGRAM;
2208	hints.ai_flags = AI_PASSIVE | AI_NUMERICHOST;
2209	if (getaddrinfo(s, NULL, &hints, &res) == 0) {
2210		ap.isnumeric = 1;
2211		memcpy(&ap.a_addr, res->ai_addr, res->ai_addrlen);
2212		memset(&ap.a_mask, 0, sizeof(ap.a_mask));
2213		ap.a_mask.ss_family = res->ai_family;
2214		if (res->ai_family == AF_INET) {
2215			ap.a_mask.ss_len = sizeof(struct sockaddr_in);
2216			maskp = &((struct sockaddr_in *)&ap.a_mask)->sin_addr;
2217			addrp = &((struct sockaddr_in *)&ap.a_addr)->sin_addr;
2218			if (masklen < 0) {
2219				/* use default netmask */
2220				if (IN_CLASSA(ntohl(addrp->s_addr)))
2221					maskp->s_addr = htonl(IN_CLASSA_NET);
2222				else if (IN_CLASSB(ntohl(addrp->s_addr)))
2223					maskp->s_addr = htonl(IN_CLASSB_NET);
2224				else
2225					maskp->s_addr = htonl(IN_CLASSC_NET);
2226			} else if (masklen <= 32) {
2227				/* convert masklen to netmask */
2228				if (masklen == 0)
2229					maskp->s_addr = 0;
2230				else
2231					maskp->s_addr = htonl(~((1 << (32 - masklen)) - 1));
2232			} else {
2233				freeaddrinfo(res);
2234				return (-1);
2235			}
2236			/* Lose any host bits in the network number. */
2237			addrp->s_addr &= maskp->s_addr;
2238		}
2239#ifdef INET6
2240		else if (res->ai_family == AF_INET6 && masklen <= 128) {
2241			ap.a_mask.ss_len = sizeof(struct sockaddr_in6);
2242			if (masklen < 0)
2243				masklen = 128;
2244			mask6p = (u_int32_t *)&((struct sockaddr_in6 *)&ap.a_mask)->sin6_addr;
2245			/* convert masklen to netmask */
2246			while (masklen > 0) {
2247				if (masklen < 32) {
2248					*mask6p = htonl(~(0xffffffff >> masklen));
2249					break;
2250				}
2251				*mask6p++ = 0xffffffff;
2252				masklen -= 32;
2253			}
2254			/* Lose any host bits in the network number. */
2255			mask6p = (u_int32_t *)&((struct sockaddr_in6 *)&ap.a_mask)->sin6_addr;
2256			addr6p = (u_int32_t *)&((struct sockaddr_in6 *)&ap.a_addr)->sin6_addr;
2257			for (i = 0; i < 4; i++)
2258				addr6p[i] &= mask6p[i];
2259		}
2260#endif
2261		else {
2262			freeaddrinfo(res);
2263			return (-1);
2264		}
2265		freeaddrinfo(res);
2266	} else {
2267		/* arg `s' is domain name */
2268		ap.isnumeric = 0;
2269		ap.a_name = s;
2270		if (cp1)
2271			*cp1 = '/';
2272#ifdef INET6
2273		if (cp2) {
2274			*cp2 = ']';
2275			--s;
2276		}
2277#endif
2278	}
2279
2280	if (Debug) {
2281		printf("allowaddr: rule %d: ", NumAllowed);
2282		if (ap.isnumeric) {
2283			printf("numeric, ");
2284			getnameinfo((struct sockaddr *)&ap.a_addr,
2285				    ((struct sockaddr *)&ap.a_addr)->sa_len,
2286				    ip, sizeof ip, NULL, 0, NI_NUMERICHOST);
2287			printf("addr = %s, ", ip);
2288			getnameinfo((struct sockaddr *)&ap.a_mask,
2289				    ((struct sockaddr *)&ap.a_mask)->sa_len,
2290				    ip, sizeof ip, NULL, 0, NI_NUMERICHOST);
2291			printf("mask = %s; ", ip);
2292		} else {
2293			printf("domainname = %s; ", ap.a_name);
2294		}
2295		printf("port = %d\n", ap.port);
2296	}
2297
2298	if ((AllowedPeers = realloc(AllowedPeers,
2299				    ++NumAllowed * sizeof(struct allowedpeer)))
2300	    == NULL) {
2301		logerror("realloc");
2302		exit(1);
2303	}
2304	memcpy(&AllowedPeers[NumAllowed - 1], &ap, sizeof(struct allowedpeer));
2305	return (0);
2306}
2307
2308/*
2309 * Validate that the remote peer has permission to log to us.
2310 */
2311static int
2312validate(struct sockaddr *sa, const char *hname)
2313{
2314	int i, j, reject;
2315	size_t l1, l2;
2316	char *cp, name[NI_MAXHOST], ip[NI_MAXHOST], port[NI_MAXSERV];
2317	struct allowedpeer *ap;
2318	struct sockaddr_in *sin4, *a4p = NULL, *m4p = NULL;
2319	struct sockaddr_in6 *sin6, *a6p = NULL, *m6p = NULL;
2320	struct addrinfo hints, *res;
2321	u_short sport;
2322
2323	if (NumAllowed == 0)
2324		/* traditional behaviour, allow everything */
2325		return (1);
2326
2327	(void)strlcpy(name, hname, sizeof(name));
2328	memset(&hints, 0, sizeof(hints));
2329	hints.ai_family = PF_UNSPEC;
2330	hints.ai_socktype = SOCK_DGRAM;
2331	hints.ai_flags = AI_PASSIVE | AI_NUMERICHOST;
2332	if (getaddrinfo(name, NULL, &hints, &res) == 0)
2333		freeaddrinfo(res);
2334	else if (strchr(name, '.') == NULL) {
2335		strlcat(name, ".", sizeof name);
2336		strlcat(name, LocalDomain, sizeof name);
2337	}
2338	if (getnameinfo(sa, sa->sa_len, ip, sizeof ip, port, sizeof port,
2339			NI_NUMERICHOST | NI_NUMERICSERV) != 0)
2340		return (0);	/* for safety, should not occur */
2341	dprintf("validate: dgram from IP %s, port %s, name %s;\n",
2342		ip, port, name);
2343	sport = atoi(port);
2344
2345	/* now, walk down the list */
2346	for (i = 0, ap = AllowedPeers; i < NumAllowed; i++, ap++) {
2347		if (ap->port != 0 && ap->port != sport) {
2348			dprintf("rejected in rule %d due to port mismatch.\n", i);
2349			continue;
2350		}
2351
2352		if (ap->isnumeric) {
2353			if (ap->a_addr.ss_family != sa->sa_family) {
2354				dprintf("rejected in rule %d due to address family mismatch.\n", i);
2355				continue;
2356			}
2357			if (ap->a_addr.ss_family == AF_INET) {
2358				sin4 = (struct sockaddr_in *)sa;
2359				a4p = (struct sockaddr_in *)&ap->a_addr;
2360				m4p = (struct sockaddr_in *)&ap->a_mask;
2361				if ((sin4->sin_addr.s_addr & m4p->sin_addr.s_addr)
2362				    != a4p->sin_addr.s_addr) {
2363					dprintf("rejected in rule %d due to IP mismatch.\n", i);
2364					continue;
2365				}
2366			}
2367#ifdef INET6
2368			else if (ap->a_addr.ss_family == AF_INET6) {
2369				sin6 = (struct sockaddr_in6 *)sa;
2370				a6p = (struct sockaddr_in6 *)&ap->a_addr;
2371				m6p = (struct sockaddr_in6 *)&ap->a_mask;
2372				if (a6p->sin6_scope_id != 0 &&
2373				    sin6->sin6_scope_id != a6p->sin6_scope_id) {
2374					dprintf("rejected in rule %d due to scope mismatch.\n", i);
2375					continue;
2376				}
2377				reject = 0;
2378				for (j = 0; j < 16; j += 4) {
2379					if ((*(u_int32_t *)&sin6->sin6_addr.s6_addr[j] & *(u_int32_t *)&m6p->sin6_addr.s6_addr[j])
2380					    != *(u_int32_t *)&a6p->sin6_addr.s6_addr[j]) {
2381						++reject;
2382						break;
2383					}
2384				}
2385				if (reject) {
2386					dprintf("rejected in rule %d due to IP mismatch.\n", i);
2387					continue;
2388				}
2389			}
2390#endif
2391			else
2392				continue;
2393		} else {
2394			cp = ap->a_name;
2395			l1 = strlen(name);
2396			if (*cp == '*') {
2397				/* allow wildmatch */
2398				cp++;
2399				l2 = strlen(cp);
2400				if (l2 > l1 || memcmp(cp, &name[l1 - l2], l2) != 0) {
2401					dprintf("rejected in rule %d due to name mismatch.\n", i);
2402					continue;
2403				}
2404			} else {
2405				/* exact match */
2406				l2 = strlen(cp);
2407				if (l2 != l1 || memcmp(cp, name, l1) != 0) {
2408					dprintf("rejected in rule %d due to name mismatch.\n", i);
2409					continue;
2410				}
2411			}
2412		}
2413		dprintf("accepted in rule %d.\n", i);
2414		return (1);	/* hooray! */
2415	}
2416	return (0);
2417}
2418
2419/*
2420 * Fairly similar to popen(3), but returns an open descriptor, as
2421 * opposed to a FILE *.
2422 */
2423static int
2424p_open(const char *prog, pid_t *rpid)
2425{
2426	int pfd[2], nulldesc, i;
2427	pid_t pid;
2428	sigset_t omask, mask;
2429	char *argv[4]; /* sh -c cmd NULL */
2430	char errmsg[200];
2431
2432	if (pipe(pfd) == -1)
2433		return (-1);
2434	if ((nulldesc = open(_PATH_DEVNULL, O_RDWR)) == -1)
2435		/* we are royally screwed anyway */
2436		return (-1);
2437
2438	sigemptyset(&mask);
2439	sigaddset(&mask, SIGALRM);
2440	sigaddset(&mask, SIGHUP);
2441	sigprocmask(SIG_BLOCK, &mask, &omask);
2442	switch ((pid = fork())) {
2443	case -1:
2444		sigprocmask(SIG_SETMASK, &omask, 0);
2445		close(nulldesc);
2446		return (-1);
2447
2448	case 0:
2449		argv[0] = strdup("sh");
2450		argv[1] = strdup("-c");
2451		argv[2] = strdup(prog);
2452		argv[3] = NULL;
2453		if (argv[0] == NULL || argv[1] == NULL || argv[2] == NULL) {
2454			logerror("strdup");
2455			exit(1);
2456		}
2457
2458		alarm(0);
2459		(void)setsid();	/* Avoid catching SIGHUPs. */
2460
2461		/*
2462		 * Throw away pending signals, and reset signal
2463		 * behaviour to standard values.
2464		 */
2465		signal(SIGALRM, SIG_IGN);
2466		signal(SIGHUP, SIG_IGN);
2467		sigprocmask(SIG_SETMASK, &omask, 0);
2468		signal(SIGPIPE, SIG_DFL);
2469		signal(SIGQUIT, SIG_DFL);
2470		signal(SIGALRM, SIG_DFL);
2471		signal(SIGHUP, SIG_DFL);
2472
2473		dup2(pfd[0], STDIN_FILENO);
2474		dup2(nulldesc, STDOUT_FILENO);
2475		dup2(nulldesc, STDERR_FILENO);
2476		for (i = getdtablesize(); i > 2; i--)
2477			(void)close(i);
2478
2479		(void)execvp(_PATH_BSHELL, argv);
2480		_exit(255);
2481	}
2482
2483	sigprocmask(SIG_SETMASK, &omask, 0);
2484	close(nulldesc);
2485	close(pfd[0]);
2486	/*
2487	 * Avoid blocking on a hung pipe.  With O_NONBLOCK, we are
2488	 * supposed to get an EWOULDBLOCK on writev(2), which is
2489	 * caught by the logic above anyway, which will in turn close
2490	 * the pipe, and fork a new logging subprocess if necessary.
2491	 * The stale subprocess will be killed some time later unless
2492	 * it terminated itself due to closing its input pipe (so we
2493	 * get rid of really dead puppies).
2494	 */
2495	if (fcntl(pfd[1], F_SETFL, O_NONBLOCK) == -1) {
2496		/* This is bad. */
2497		(void)snprintf(errmsg, sizeof errmsg,
2498			       "Warning: cannot change pipe to PID %d to "
2499			       "non-blocking behaviour.",
2500			       (int)pid);
2501		logerror(errmsg);
2502	}
2503	*rpid = pid;
2504	return (pfd[1]);
2505}
2506
2507static void
2508deadq_enter(pid_t pid, const char *name)
2509{
2510	dq_t p;
2511	int status;
2512
2513	/*
2514	 * Be paranoid, if we can't signal the process, don't enter it
2515	 * into the dead queue (perhaps it's already dead).  If possible,
2516	 * we try to fetch and log the child's status.
2517	 */
2518	if (kill(pid, 0) != 0) {
2519		if (waitpid(pid, &status, WNOHANG) > 0)
2520			log_deadchild(pid, status, name);
2521		return;
2522	}
2523
2524	p = malloc(sizeof(struct deadq_entry));
2525	if (p == NULL) {
2526		logerror("malloc");
2527		exit(1);
2528	}
2529
2530	p->dq_pid = pid;
2531	p->dq_timeout = DQ_TIMO_INIT;
2532	TAILQ_INSERT_TAIL(&deadq_head, p, dq_entries);
2533}
2534
2535static int
2536deadq_remove(pid_t pid)
2537{
2538	dq_t q;
2539
2540	TAILQ_FOREACH(q, &deadq_head, dq_entries) {
2541		if (q->dq_pid == pid) {
2542			TAILQ_REMOVE(&deadq_head, q, dq_entries);
2543				free(q);
2544				return (1);
2545		}
2546	}
2547
2548	return (0);
2549}
2550
2551static void
2552log_deadchild(pid_t pid, int status, const char *name)
2553{
2554	int code;
2555	char buf[256];
2556	const char *reason;
2557
2558	errno = 0; /* Keep strerror() stuff out of logerror messages. */
2559	if (WIFSIGNALED(status)) {
2560		reason = "due to signal";
2561		code = WTERMSIG(status);
2562	} else {
2563		reason = "with status";
2564		code = WEXITSTATUS(status);
2565		if (code == 0)
2566			return;
2567	}
2568	(void)snprintf(buf, sizeof buf,
2569		       "Logging subprocess %d (%s) exited %s %d.",
2570		       pid, name, reason, code);
2571	logerror(buf);
2572}
2573
2574static int *
2575socksetup(int af, const char *bindhostname)
2576{
2577	struct addrinfo hints, *res, *r;
2578	int error, maxs, *s, *socks;
2579
2580	memset(&hints, 0, sizeof(hints));
2581	hints.ai_flags = AI_PASSIVE;
2582	hints.ai_family = af;
2583	hints.ai_socktype = SOCK_DGRAM;
2584	error = getaddrinfo(bindhostname, "syslog", &hints, &res);
2585	if (error) {
2586		logerror(gai_strerror(error));
2587		errno = 0;
2588		die(0);
2589	}
2590
2591	/* Count max number of sockets we may open */
2592	for (maxs = 0, r = res; r; r = r->ai_next, maxs++);
2593	socks = malloc((maxs+1) * sizeof(int));
2594	if (socks == NULL) {
2595		logerror("couldn't allocate memory for sockets");
2596		die(0);
2597	}
2598
2599	*socks = 0;   /* num of sockets counter at start of array */
2600	s = socks + 1;
2601	for (r = res; r; r = r->ai_next) {
2602		int on = 1;
2603		*s = socket(r->ai_family, r->ai_socktype, r->ai_protocol);
2604		if (*s < 0) {
2605			logerror("socket");
2606			continue;
2607		}
2608		if (r->ai_family == AF_INET6) {
2609			if (setsockopt(*s, IPPROTO_IPV6, IPV6_V6ONLY,
2610				       (char *)&on, sizeof (on)) < 0) {
2611				logerror("setsockopt");
2612				close(*s);
2613				continue;
2614			}
2615		}
2616		if (setsockopt(*s, SOL_SOCKET, SO_REUSEADDR,
2617			       (char *)&on, sizeof (on)) < 0) {
2618			logerror("setsockopt");
2619			close(*s);
2620			continue;
2621		}
2622		if (bind(*s, r->ai_addr, r->ai_addrlen) < 0) {
2623			close(*s);
2624			logerror("bind");
2625			continue;
2626		}
2627
2628		double_rbuf(*s);
2629
2630		(*socks)++;
2631		s++;
2632	}
2633
2634	if (*socks == 0) {
2635		free(socks);
2636		if (Debug)
2637			return (NULL);
2638		else
2639			die(0);
2640	}
2641	if (res)
2642		freeaddrinfo(res);
2643
2644	return (socks);
2645}
2646
2647static void
2648double_rbuf(int fd)
2649{
2650	socklen_t slen, len;
2651
2652	if (getsockopt(fd, SOL_SOCKET, SO_RCVBUF, &len, &slen) == 0) {
2653		len *= 2;
2654		setsockopt(fd, SOL_SOCKET, SO_RCVBUF, &len, slen);
2655	}
2656}
2657