1 /*-
2 * SPDX-License-Identifier: BSD-3-Clause
3 *
4 * Copyright (c) 1983, 1988, 1993, 1994
5 * The Regents of the University of California. All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. Neither the name of the University nor the names of its contributors
16 * may be used to endorse or promote products derived from this software
17 * without specific prior written permission.
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
20 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
23 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 * SUCH DAMAGE.
30 */
31 /*-
32 * SPDX-License-Identifier: BSD-2-Clause
33 *
34 * Copyright (c) 2018 Prodrive Technologies, https://prodrive-technologies.com/
35 * Author: Ed Schouten <ed@FreeBSD.org>
36 *
37 * Redistribution and use in source and binary forms, with or without
38 * modification, are permitted provided that the following conditions
39 * are met:
40 * 1. Redistributions of source code must retain the above copyright
41 * notice, this list of conditions and the following disclaimer.
42 * 2. Redistributions in binary form must reproduce the above copyright
43 * notice, this list of conditions and the following disclaimer in the
44 * documentation and/or other materials provided with the distribution.
45 *
46 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
47 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
48 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
49 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
50 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
51 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
52 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
53 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
54 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
55 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
56 * SUCH DAMAGE.
57 */
58
59 /*
60 * syslogd -- log system messages
61 *
62 * This program implements a system log. It takes a series of lines.
63 * Each line may have a priority, signified as "<n>" as
64 * the first characters of the line. If this is
65 * not present, a default priority is used.
66 *
67 * To kill syslogd, send a signal 15 (terminate). A signal 1 (hup) will
68 * cause it to reread its configuration file.
69 *
70 * Author: Eric Allman
71 * extensive changes by Ralph Campbell
72 * more extensive changes by Eric Allman (again)
73 * Extension to log by program name as well as facility and priority
74 * by Peter da Silva.
75 * -u and -v by Harlan Stenn.
76 * Priority comparison code by Harlan Stenn.
77 */
78
79 #define DEFUPRI (LOG_USER|LOG_NOTICE)
80 #define DEFSPRI (LOG_KERN|LOG_CRIT)
81 #define TIMERINTVL 30 /* interval for checking flush, mark */
82 #define TTYMSGTIME 1 /* timeout passed to ttymsg */
83 #define RCVBUF_MINSIZE (80 * 1024) /* minimum size of dgram rcv buffer */
84
85 #include <sys/param.h>
86 #include <sys/event.h>
87 #include <sys/ioctl.h>
88 #include <sys/mman.h>
89 #include <sys/procdesc.h>
90 #include <sys/queue.h>
91 #include <sys/resource.h>
92 #include <sys/socket.h>
93 #include <sys/stat.h>
94 #include <sys/syslimits.h>
95 #include <sys/time.h>
96 #include <sys/uio.h>
97 #include <sys/un.h>
98 #include <sys/wait.h>
99
100 #if defined(INET) || defined(INET6)
101 #include <netinet/in.h>
102 #include <arpa/inet.h>
103 #endif
104
105 #include <assert.h>
106 #include <ctype.h>
107 #include <dirent.h>
108 #include <err.h>
109 #include <errno.h>
110 #include <fcntl.h>
111 #include <fnmatch.h>
112 #include <libgen.h>
113 #include <libutil.h>
114 #include <limits.h>
115 #include <netdb.h>
116 #include <paths.h>
117 #include <poll.h>
118 #include <regex.h>
119 #include <signal.h>
120 #include <stdbool.h>
121 #include <stddef.h>
122 #include <stdio.h>
123 #include <stdlib.h>
124 #include <string.h>
125 #include <sysexits.h>
126 #include <unistd.h>
127 #include <utmpx.h>
128
129 #include "pathnames.h"
130 #include "syslogd.h"
131 #include "syslogd_cap.h"
132
133 const char *ConfFile = _PATH_LOGCONF;
134 static const char *PidFile = _PATH_LOGPID;
135 static const char include_str[] = "include";
136 static const char include_ext[] = ".conf";
137
138 #define dprintf if (Debug) printf
139
140 #define sstosa(ss) ((struct sockaddr *)(ss))
141 #ifdef INET
142 #define sstosin(ss) ((struct sockaddr_in *)(void *)(ss))
143 #define satosin(sa) ((struct sockaddr_in *)(void *)(sa))
144 #endif
145 #ifdef INET6
146 #define sstosin6(ss) ((struct sockaddr_in6 *)(void *)(ss))
147 #define satosin6(sa) ((struct sockaddr_in6 *)(void *)(sa))
148 #define s6_addr32 __u6_addr.__u6_addr32
149 #define IN6_ARE_MASKED_ADDR_EQUAL(d, a, m) ( \
150 (((d)->s6_addr32[0] ^ (a)->s6_addr32[0]) & (m)->s6_addr32[0]) == 0 && \
151 (((d)->s6_addr32[1] ^ (a)->s6_addr32[1]) & (m)->s6_addr32[1]) == 0 && \
152 (((d)->s6_addr32[2] ^ (a)->s6_addr32[2]) & (m)->s6_addr32[2]) == 0 && \
153 (((d)->s6_addr32[3] ^ (a)->s6_addr32[3]) & (m)->s6_addr32[3]) == 0 )
154 #endif
155
156 /*
157 * List of peers and sockets that can't be bound until
158 * flags have been parsed.
159 */
160 struct peer {
161 const char *pe_name;
162 const char *pe_serv;
163 mode_t pe_mode;
164 STAILQ_ENTRY(peer) next;
165 };
166 static STAILQ_HEAD(, peer) pqueue = STAILQ_HEAD_INITIALIZER(pqueue);
167
168 /*
169 * Sockets used for logging; monitored by kevent().
170 */
171 struct socklist {
172 struct addrinfo sl_ai;
173 #define sl_sa sl_ai.ai_addr
174 #define sl_salen sl_ai.ai_addrlen
175 #define sl_family sl_ai.ai_family
176 int sl_socket;
177 char *sl_name;
178 int sl_dirfd;
179 int (*sl_recv)(struct socklist *);
180 STAILQ_ENTRY(socklist) next;
181 };
182 static STAILQ_HEAD(, socklist) shead = STAILQ_HEAD_INITIALIZER(shead);
183
184 /*
185 * Flags to logmsg().
186 */
187
188 #define IGN_CONS 0x001 /* don't print on console */
189 #define SYNC_FILE 0x002 /* do fsync on file after printing */
190 #define MARK 0x008 /* this message is a mark */
191 #define ISKERNEL 0x010 /* kernel generated message */
192
193 /* Traditional syslog timestamp format. */
194 #define RFC3164_DATELEN 15
195 #define RFC3164_DATEFMT "%b %e %H:%M:%S"
196
197 /*
198 * FORMAT_BSD_LEGACY and FORMAT_RFC3164_STRICT are two variations of
199 * the RFC 3164 logging format.
200 */
201 #define IS_RFC3164_FORMAT (output_format == FORMAT_BSD_LEGACY || \
202 output_format == FORMAT_RFC3164_STRICT)
203
204 static STAILQ_HEAD(, filed) fhead =
205 STAILQ_HEAD_INITIALIZER(fhead); /* Log files that we write to */
206 static struct filed consfile; /* Console */
207
208 /*
209 * Queue of about-to-be dead processes we should watch out for.
210 */
211 struct deadq_entry {
212 int dq_procdesc;
213 int dq_timeout;
214 TAILQ_ENTRY(deadq_entry) dq_entries;
215 };
216 static TAILQ_HEAD(, deadq_entry) deadq_head =
217 TAILQ_HEAD_INITIALIZER(deadq_head);
218
219 /*
220 * The timeout to apply to processes waiting on the dead queue. Unit
221 * of measure is `mark intervals', i.e. 20 minutes by default.
222 * Processes on the dead queue will be terminated after that time.
223 */
224
225 #define DQ_TIMO_INIT 2
226
227 /*
228 * Network addresses that are allowed to log to us.
229 */
230 struct allowedpeer {
231 bool isnumeric;
232 u_short port;
233 union {
234 struct {
235 struct sockaddr_storage addr;
236 struct sockaddr_storage mask;
237 } numeric;
238 char *name;
239 } u;
240 #define a_addr u.numeric.addr
241 #define a_mask u.numeric.mask
242 #define a_name u.name
243 STAILQ_ENTRY(allowedpeer) next;
244 };
245 static STAILQ_HEAD(, allowedpeer) aphead = STAILQ_HEAD_INITIALIZER(aphead);
246
247 /*
248 * Intervals at which we flush out "message repeated" messages,
249 * in seconds after previous message is logged. After each flush,
250 * we move to the next interval until we reach the largest.
251 */
252 static int repeatinterval[] = { 30, 120, 600 }; /* # of secs before flush */
253 #define MAXREPEAT (nitems(repeatinterval) - 1)
254 #define REPEATTIME(f) ((f)->f_time + repeatinterval[(f)->f_repeatcount])
255 #define BACKOFF(f) do { \
256 if (++(f)->f_repeatcount > MAXREPEAT) \
257 (f)->f_repeatcount = MAXREPEAT; \
258 } while (0)
259
260 static const char *TypeNames[] = {
261 "UNUSED",
262 "FILE",
263 "TTY",
264 "CONSOLE",
265 "FORW",
266 "USERS",
267 "WALL",
268 "PIPE",
269 };
270
271 static const int sigcatch[] = {
272 SIGHUP,
273 SIGINT,
274 SIGQUIT,
275 SIGPIPE,
276 SIGALRM,
277 SIGTERM,
278 SIGCHLD,
279 };
280
281 /*
282 * Communication channels between syslogd and libcasper
283 * services. These channels are used to request external
284 * resources while in capability mode.
285 */
286 #ifdef WITH_CASPER
287 static cap_channel_t *cap_syslogd;
288 static cap_channel_t *cap_net;
289 #endif
290
291 static int nulldesc; /* /dev/null descriptor */
292 static bool Debug; /* debug flag */
293 static bool Foreground = false; /* Run in foreground, instead of daemonizing */
294 static bool resolve = true; /* resolve hostname */
295 char LocalHostName[MAXHOSTNAMELEN]; /* our hostname */
296 static const char *LocalDomain; /* our local domain name */
297 static bool Initialized; /* set when we have initialized ourselves */
298 static int MarkInterval = 20 * 60; /* interval between marks in seconds */
299 static int MarkSeq; /* mark sequence number */
300 static bool NoBind; /* don't bind() as suggested by RFC 3164 */
301 static int SecureMode; /* when true, receive only unix domain socks */
302 static int MaxForwardLen = 1024; /* max length of forwared message */
303 #ifdef INET6
304 static int family = PF_UNSPEC; /* protocol family (IPv4, IPv6 or both) */
305 #else
306 static int family = PF_INET; /* protocol family (IPv4 only) */
307 #endif
308 static int mask_C1 = 1; /* mask characters from 0x80 - 0x9F */
309 static int send_to_all; /* send message to all IPv4/IPv6 addresses */
310 static int use_bootfile; /* log entire bootfile for every kern msg */
311 static int no_compress; /* don't compress messages (1=pipes, 2=all) */
312 static int logflags = O_WRONLY|O_APPEND; /* flags used to open log files */
313
314 static char bootfile[MAXPATHLEN]; /* booted kernel file */
315
316 static bool RemoteAddDate; /* Always set the date on remote messages */
317 static bool RemoteHostname; /* Log remote hostname from the message */
318
319 static bool UniquePriority; /* Only log specified priority? */
320 static int LogFacPri; /* Put facility and priority in log message: */
321 /* 0=no, 1=numeric, 2=names */
322 static bool KeepKernFac; /* Keep remotely logged kernel facility */
323 static bool needdofsync = true; /* Are any file(s) waiting to be fsynced? */
324 static struct pidfh *pfh;
325 static enum {
326 FORMAT_BSD_LEGACY, /* default, RFC 3164 with legacy deviations */
327 FORMAT_RFC3164_STRICT, /* compliant to RFC 3164 recommendataions */
328 FORMAT_RFC5424, /* RFC 5424 format */
329 } output_format = FORMAT_BSD_LEGACY;
330 static int kq; /* kqueue(2) descriptor. */
331
332 struct iovlist;
333
334 static bool allowaddr(char *);
335 static void addpeer(const char *, const char *, mode_t);
336 static void addsock(const char *, const char *, mode_t);
337 static void cfline(nvlist_t *, const char *, const char *, const char *,
338 const char *);
339 static const char *cvthname(struct sockaddr *);
340 static struct deadq_entry *deadq_enter(int);
341 static void deadq_remove(struct deadq_entry *);
342 static int decode(const char *, const CODE *);
343 static void die(int) __dead2;
344 static void dofsync(void);
345 static void fprintlog_first(struct filed *, const char *, const char *,
346 const char *, const char *, const char *, const char *, int);
347 static void fprintlog_write(struct filed *, struct iovlist *, int);
348 static void fprintlog_successive(struct filed *, int);
349 static void init(bool);
350 static void logmsg(int, const struct logtime *, const char *, const char *,
351 const char *, const char *, const char *, const char *, int);
352 static void log_deadchild(int, int, const struct filed *);
353 static void markit(void);
354 static struct socklist *socksetup(struct addrinfo *, const char *, mode_t);
355 static int socklist_recv_file(struct socklist *);
356 static int socklist_recv_sock(struct socklist *);
357 static int skip_message(const char *, const char *, int);
358 static int evaluate_prop_filter(const struct prop_filter *filter,
359 const char *value);
360 static nvlist_t *prop_filter_compile(const char *);
361 static void parsemsg(const char *, char *);
362 static void printsys(char *);
363 static void usage(void);
364 static bool validate(struct sockaddr *, const char *);
365 static void unmapped(struct sockaddr *);
366 static int waitdaemon(int);
367 static void increase_rcvbuf(int);
368
369 static void
close_filed(struct filed * f)370 close_filed(struct filed *f)
371 {
372 if (f->f_type == F_FORW && f->f_addr_fds != NULL) {
373 free(f->f_addrs);
374 for (size_t i = 0; i < f->f_num_addr_fds; ++i)
375 close(f->f_addr_fds[i]);
376 free(f->f_addr_fds);
377 f->f_addr_fds = NULL;
378 f->f_num_addr_fds = 0;
379 } else if (f->f_type == F_PIPE && f->f_procdesc != -1) {
380 f->f_dq = deadq_enter(f->f_procdesc);
381 }
382
383 f->f_type = F_UNUSED;
384
385 if (f->f_file != -1)
386 (void)close(f->f_file);
387 f->f_file = -1;
388 }
389
390 static void
addpeer(const char * name,const char * serv,mode_t mode)391 addpeer(const char *name, const char *serv, mode_t mode)
392 {
393 struct peer *pe = calloc(1, sizeof(*pe));
394 if (pe == NULL)
395 err(1, "malloc failed");
396 pe->pe_name = name;
397 pe->pe_serv = serv;
398 pe->pe_mode = mode;
399 STAILQ_INSERT_TAIL(&pqueue, pe, next);
400 }
401
402 static void
addsock(const char * name,const char * serv,mode_t mode)403 addsock(const char *name, const char *serv, mode_t mode)
404 {
405 struct addrinfo hints = { }, *res, *res0;
406 struct socklist *sl;
407 int error;
408 char *cp, *msgbuf;
409
410 /*
411 * We have to handle this case for backwards compatibility:
412 * If there are two (or more) colons but no '[' and ']',
413 * assume this is an inet6 address without a service.
414 */
415 if (name != NULL) {
416 #ifdef INET6
417 if (name[0] == '[' &&
418 (cp = strchr(name + 1, ']')) != NULL) {
419 name = &name[1];
420 *cp = '\0';
421 if (cp[1] == ':' && cp[2] != '\0')
422 serv = cp + 2;
423 } else {
424 #endif
425 cp = strchr(name, ':');
426 if (cp != NULL && strchr(cp + 1, ':') == NULL) {
427 *cp = '\0';
428 if (cp[1] != '\0')
429 serv = cp + 1;
430 if (cp == name)
431 name = NULL;
432 }
433 #ifdef INET6
434 }
435 #endif
436 }
437 hints.ai_family = AF_UNSPEC;
438 hints.ai_socktype = SOCK_DGRAM;
439 hints.ai_flags = AI_PASSIVE;
440 if (name != NULL)
441 dprintf("Trying peer: %s\n", name);
442 if (serv == NULL)
443 serv = "syslog";
444 error = getaddrinfo(name, serv, &hints, &res0);
445 if (error == EAI_NONAME && name == NULL && SecureMode > 1) {
446 /*
447 * If we're in secure mode, we won't open inet sockets anyway.
448 * This failure can arise legitimately when running in a jail
449 * without networking.
450 */
451 return;
452 }
453 if (error) {
454 asprintf(&msgbuf, "getaddrinfo failed for %s%s: %s",
455 name == NULL ? "" : name, serv,
456 gai_strerror(error));
457 errno = 0;
458 if (msgbuf == NULL)
459 logerror(gai_strerror(error));
460 else
461 logerror(msgbuf);
462 free(msgbuf);
463 die(0);
464 }
465 for (res = res0; res != NULL; res = res->ai_next) {
466 sl = socksetup(res, name, mode);
467 if (sl == NULL)
468 continue;
469 STAILQ_INSERT_TAIL(&shead, sl, next);
470 }
471 freeaddrinfo(res0);
472 }
473
474 static void
addfile(int fd)475 addfile(int fd)
476 {
477 struct socklist *sl = calloc(1, sizeof(*sl));
478 if (sl == NULL)
479 err(1, "malloc failed");
480 sl->sl_socket = fd;
481 sl->sl_recv = socklist_recv_file;
482 STAILQ_INSERT_TAIL(&shead, sl, next);
483 }
484
485 int
main(int argc,char * argv[])486 main(int argc, char *argv[])
487 {
488 struct sigaction act = { };
489 struct kevent ev;
490 struct socklist *sl;
491 pid_t spid;
492 int ch, ppipe_w = -1, s;
493 char *p;
494 bool bflag = false, pflag = false, Sflag = false;
495
496 if (madvise(NULL, 0, MADV_PROTECT) != 0)
497 dprintf("madvise() failed: %s\n", strerror(errno));
498
499 while ((ch = getopt(argc, argv, "468Aa:b:cCdf:FHkl:M:m:nNoO:p:P:sS:Tuv"))
500 != -1)
501 switch (ch) {
502 #ifdef INET
503 case '4':
504 family = PF_INET;
505 break;
506 #endif
507 #ifdef INET6
508 case '6':
509 family = PF_INET6;
510 break;
511 #endif
512 case '8':
513 mask_C1 = 0;
514 break;
515 case 'A':
516 send_to_all = true;
517 break;
518 case 'a': /* allow specific network addresses only */
519 if (!allowaddr(optarg))
520 usage();
521 break;
522 case 'b':
523 bflag = true;
524 p = strchr(optarg, ']');
525 if (p != NULL)
526 p = strchr(p + 1, ':');
527 else {
528 p = strchr(optarg, ':');
529 if (p != NULL && strchr(p + 1, ':') != NULL)
530 p = NULL; /* backward compatibility */
531 }
532 if (p == NULL) {
533 /* A hostname or filename only. */
534 addpeer(optarg, "syslog", 0);
535 } else {
536 /* The case of "name:service". */
537 *p++ = '\0';
538 addpeer(strlen(optarg) == 0 ? NULL : optarg,
539 p, 0);
540 }
541 break;
542 case 'c':
543 no_compress++;
544 break;
545 case 'C':
546 logflags |= O_CREAT;
547 break;
548 case 'd': /* debug */
549 Debug = true;
550 break;
551 case 'f': /* configuration file */
552 ConfFile = optarg;
553 break;
554 case 'F': /* run in foreground instead of daemon */
555 Foreground = true;
556 break;
557 case 'H':
558 RemoteHostname = true;
559 break;
560 case 'k': /* keep remote kern fac */
561 KeepKernFac = true;
562 break;
563 case 'l':
564 case 'p':
565 case 'S':
566 {
567 long perml;
568 mode_t mode;
569 char *name, *ep;
570
571 if (ch == 'l')
572 mode = DEFFILEMODE;
573 else if (ch == 'p') {
574 mode = DEFFILEMODE;
575 pflag = true;
576 } else {
577 mode = S_IRUSR | S_IWUSR;
578 Sflag = true;
579 }
580 if (optarg[0] == '/')
581 name = optarg;
582 else if ((name = strchr(optarg, ':')) != NULL) {
583 *name++ = '\0';
584 if (name[0] != '/')
585 errx(1, "socket name must be absolute "
586 "path");
587 if (isdigit(*optarg)) {
588 perml = strtol(optarg, &ep, 8);
589 if (*ep || perml < 0 ||
590 perml & ~(S_IRWXU|S_IRWXG|S_IRWXO))
591 errx(1, "invalid mode %s, exiting",
592 optarg);
593 mode = (mode_t )perml;
594 } else
595 errx(1, "invalid mode %s, exiting",
596 optarg);
597 } else
598 errx(1, "invalid filename %s, exiting",
599 optarg);
600 addpeer(name, NULL, mode);
601 break;
602 }
603 case 'M': /* max length of forwarded message */
604 MaxForwardLen = atoi(optarg);
605 if (MaxForwardLen < 480)
606 errx(1, "minimum length limit of forwarded "
607 "messages is 480 bytes");
608 break;
609 case 'm': /* mark interval */
610 MarkInterval = atoi(optarg) * 60;
611 break;
612 case 'N':
613 NoBind = true;
614 if (!SecureMode)
615 SecureMode = 1;
616 break;
617 case 'n':
618 resolve = false;
619 break;
620 case 'O':
621 if (strcmp(optarg, "bsd") == 0 ||
622 strcmp(optarg, "rfc3164") == 0)
623 output_format = FORMAT_BSD_LEGACY;
624 else if (strcmp(optarg, "rfc3164-strict") == 0)
625 output_format = FORMAT_RFC3164_STRICT;
626 else if (strcmp(optarg, "syslog") == 0 ||
627 strcmp(optarg, "rfc5424") == 0)
628 output_format = FORMAT_RFC5424;
629 else
630 usage();
631 break;
632 case 'o':
633 use_bootfile = true;
634 break;
635 case 'P': /* path for alt. PID */
636 PidFile = optarg;
637 break;
638 case 's': /* no network mode */
639 SecureMode++;
640 break;
641 case 'T':
642 RemoteAddDate = true;
643 break;
644 case 'u': /* only log specified priority */
645 UniquePriority = true;
646 break;
647 case 'v': /* log facility and priority */
648 LogFacPri++;
649 break;
650 default:
651 usage();
652 }
653 if ((argc -= optind) != 0)
654 usage();
655
656 if (IS_RFC3164_FORMAT && MaxForwardLen > 1024)
657 errx(1, "RFC 3164 messages may not exceed 1024 bytes");
658
659 pfh = pidfile_open(PidFile, 0600, &spid);
660 if (pfh == NULL) {
661 if (errno == EEXIST)
662 errx(1, "syslogd already running, pid: %d", spid);
663 warn("cannot open pid file");
664 }
665
666 /*
667 * Now that flags have been parsed, we know if we're in
668 * secure mode. Add peers to the socklist, if allowed.
669 */
670 while (!STAILQ_EMPTY(&pqueue)) {
671 struct peer *pe = STAILQ_FIRST(&pqueue);
672 STAILQ_REMOVE_HEAD(&pqueue, next);
673 addsock(pe->pe_name, pe->pe_serv, pe->pe_mode);
674 free(pe);
675 }
676 /* Listen by default: /dev/klog. */
677 s = open(_PATH_KLOG, O_RDONLY | O_NONBLOCK | O_CLOEXEC, 0);
678 if (s < 0) {
679 dprintf("can't open %s (%d)\n", _PATH_KLOG, errno);
680 } else {
681 addfile(s);
682 }
683 /* Listen by default: *:514 if no -b flag. */
684 if (bflag == 0)
685 addsock(NULL, "syslog", 0);
686 /* Listen by default: /var/run/log if no -p flag. */
687 if (pflag == 0)
688 addsock(_PATH_LOG, NULL, DEFFILEMODE);
689 /* Listen by default: /var/run/logpriv if no -S flag. */
690 if (Sflag == 0)
691 addsock(_PATH_LOG_PRIV, NULL, S_IRUSR | S_IWUSR);
692
693 consfile.f_type = F_CONSOLE;
694 consfile.f_file = -1;
695 (void)strlcpy(consfile.f_fname, _PATH_CONSOLE + sizeof(_PATH_DEV) - 1,
696 sizeof(consfile.f_fname));
697
698 nulldesc = open(_PATH_DEVNULL, O_RDWR);
699 if (nulldesc == -1) {
700 warn("cannot open %s", _PATH_DEVNULL);
701 pidfile_remove(pfh);
702 exit(1);
703 }
704
705 (void)strlcpy(bootfile, getbootfile(), sizeof(bootfile));
706
707 if (!Foreground && !Debug)
708 ppipe_w = waitdaemon(30);
709 else if (Debug)
710 setlinebuf(stdout);
711
712 kq = kqueue();
713 if (kq == -1) {
714 warn("failed to initialize kqueue");
715 pidfile_remove(pfh);
716 exit(1);
717 }
718 STAILQ_FOREACH(sl, &shead, next) {
719 if (sl->sl_recv == NULL)
720 continue;
721 EV_SET(&ev, sl->sl_socket, EVFILT_READ, EV_ADD, 0, 0, sl);
722 if (kevent(kq, &ev, 1, NULL, 0, NULL) == -1) {
723 warn("failed to add kevent to kqueue");
724 pidfile_remove(pfh);
725 exit(1);
726 }
727 }
728
729 /*
730 * Syslogd will not reap its children via wait().
731 * When SIGCHLD is ignored, zombie processes are
732 * not created. A child's PID will be recycled
733 * upon its exit.
734 */
735 act.sa_handler = SIG_IGN;
736 for (size_t i = 0; i < nitems(sigcatch); ++i) {
737 EV_SET(&ev, sigcatch[i], EVFILT_SIGNAL, EV_ADD, 0, 0, NULL);
738 if (kevent(kq, &ev, 1, NULL, 0, NULL) == -1) {
739 warn("failed to add kevent to kqueue");
740 pidfile_remove(pfh);
741 exit(1);
742 }
743 if (sigaction(sigcatch[i], &act, NULL) == -1) {
744 warn("failed to apply signal handler");
745 pidfile_remove(pfh);
746 exit(1);
747 }
748 }
749 (void)alarm(TIMERINTVL);
750
751 /* tuck my process id away */
752 pidfile_write(pfh);
753
754 dprintf("off & running....\n");
755 init(false);
756 for (;;) {
757 if (needdofsync) {
758 dofsync();
759 if (ppipe_w != -1) {
760 /*
761 * Close our end of the pipe so our
762 * parent knows that we have finished
763 * initialization.
764 */
765 (void)close(ppipe_w);
766 ppipe_w = -1;
767 }
768 }
769 if (kevent(kq, NULL, 0, &ev, 1, NULL) == -1) {
770 if (errno != EINTR)
771 logerror("kevent");
772 continue;
773 }
774 switch (ev.filter) {
775 case EVFILT_READ:
776 sl = ev.udata;
777 if (sl->sl_socket != -1 && sl->sl_recv != NULL)
778 sl->sl_recv(sl);
779 break;
780 case EVFILT_SIGNAL:
781 switch (ev.ident) {
782 case SIGHUP:
783 /* Reload */
784 init(true);
785 break;
786 case SIGINT:
787 case SIGQUIT:
788 /* Ignore these unless -F and / or -d */
789 if (!Foreground && !Debug)
790 break;
791 /* FALLTHROUGH */
792 case SIGTERM:
793 /* Terminate */
794 die(ev.ident);
795 break;
796 case SIGALRM:
797 /* Mark and flush */
798 markit();
799 break;
800 }
801 break;
802 case EVFILT_PROCDESC:
803 if ((ev.fflags & NOTE_EXIT) != 0) {
804 struct filed *f = ev.udata;
805
806 log_deadchild(f->f_procdesc, ev.data, f);
807 (void)close(f->f_procdesc);
808
809 f->f_procdesc = -1;
810 if (f->f_dq != NULL) {
811 deadq_remove(f->f_dq);
812 f->f_dq = NULL;
813 }
814
815 /*
816 * If it is unused, then it was already closed.
817 * Free the file data in this case.
818 */
819 if (f->f_type == F_UNUSED)
820 free(f);
821 }
822 break;
823 }
824 }
825 }
826
827 static int
socklist_recv_sock(struct socklist * sl)828 socklist_recv_sock(struct socklist *sl)
829 {
830 struct sockaddr_storage ss;
831 struct sockaddr *sa = (struct sockaddr *)&ss;
832 socklen_t sslen;
833 const char *hname;
834 char line[MAXLINE + 1];
835 int len;
836
837 sslen = sizeof(ss);
838 len = recvfrom(sl->sl_socket, line, sizeof(line) - 1, 0, sa, &sslen);
839 dprintf("received sa_len = %d\n", sslen);
840 if (len == 0)
841 return (-1);
842 if (len < 0) {
843 if (errno != EINTR)
844 logerror("recvfrom");
845 return (-1);
846 }
847 /* Received valid data. */
848 line[len] = '\0';
849 if (sl->sl_sa != NULL && sl->sl_family == AF_LOCAL)
850 hname = LocalHostName;
851 else {
852 hname = cvthname(sa);
853 unmapped(sa);
854 if (validate(sa, hname) == 0) {
855 dprintf("Message from %s was ignored.", hname);
856 return (-1);
857 }
858 }
859 parsemsg(hname, line);
860
861 return (0);
862 }
863
864 static void
unmapped(struct sockaddr * sa)865 unmapped(struct sockaddr *sa)
866 {
867 #if defined(INET) && defined(INET6)
868 struct sockaddr_in6 *sin6;
869 struct sockaddr_in sin;
870
871 if (sa == NULL ||
872 sa->sa_family != AF_INET6 ||
873 sa->sa_len != sizeof(*sin6))
874 return;
875 sin6 = satosin6(sa);
876 if (!IN6_IS_ADDR_V4MAPPED(&sin6->sin6_addr))
877 return;
878 sin = (struct sockaddr_in){
879 .sin_family = AF_INET,
880 .sin_len = sizeof(sin),
881 .sin_port = sin6->sin6_port
882 };
883 memcpy(&sin.sin_addr, &sin6->sin6_addr.s6_addr[12],
884 sizeof(sin.sin_addr));
885 memcpy(sa, &sin, sizeof(sin));
886 #else
887 if (sa == NULL)
888 return;
889 #endif
890 }
891
892 static void
usage(void)893 usage(void)
894 {
895
896 fprintf(stderr,
897 "usage: syslogd [-468ACcdFHknosTuv] [-a allowed_peer]\n"
898 " [-b bind_address] [-f config_file]\n"
899 " [-l [mode:]path] [-M fwd_length]\n"
900 " [-m mark_interval] [-O format] [-P pid_file]\n"
901 " [-p log_socket] [-S logpriv_socket]\n");
902 exit(1);
903 }
904
905 /*
906 * Removes characters from log messages that are unsafe to display.
907 * TODO: Permit UTF-8 strings that include a BOM per RFC 5424?
908 */
909 static void
parsemsg_remove_unsafe_characters(const char * in,char * out,size_t outlen)910 parsemsg_remove_unsafe_characters(const char *in, char *out, size_t outlen)
911 {
912 char *q;
913 int c;
914
915 q = out;
916 while ((c = (unsigned char)*in++) != '\0' && q < out + outlen - 4) {
917 if (mask_C1 && (c & 0x80) && c < 0xA0) {
918 c &= 0x7F;
919 *q++ = 'M';
920 *q++ = '-';
921 }
922 if (isascii(c) && iscntrl(c)) {
923 if (c == '\n') {
924 *q++ = ' ';
925 } else if (c == '\t') {
926 *q++ = '\t';
927 } else {
928 *q++ = '^';
929 *q++ = c ^ 0100;
930 }
931 } else {
932 *q++ = c;
933 }
934 }
935 *q = '\0';
936 }
937
938 /*
939 * Parses a syslog message according to RFC 5424, assuming that PRI and
940 * VERSION (i.e., "<%d>1 ") have already been parsed by parsemsg(). The
941 * parsed result is passed to logmsg().
942 */
943 static void
parsemsg_rfc5424(const char * from,int pri,char * msg)944 parsemsg_rfc5424(const char *from, int pri, char *msg)
945 {
946 const struct logtime *timestamp;
947 struct logtime timestamp_remote;
948 const char *omsg, *hostname, *app_name, *procid, *msgid,
949 *structured_data;
950 char line[MAXLINE + 1];
951
952 #define FAIL_IF(field, expr) do { \
953 if (expr) { \
954 dprintf("Failed to parse " field " from %s: %s\n", \
955 from, omsg); \
956 return; \
957 } \
958 } while (0)
959 #define PARSE_CHAR(field, sep) do { \
960 FAIL_IF(field, *msg != sep); \
961 ++msg; \
962 } while (0)
963 #define IF_NOT_NILVALUE(var) \
964 if (msg[0] == '-' && msg[1] == ' ') { \
965 msg += 2; \
966 var = NULL; \
967 } else if (msg[0] == '-' && msg[1] == '\0') { \
968 ++msg; \
969 var = NULL; \
970 } else
971
972 omsg = msg;
973 IF_NOT_NILVALUE(timestamp) {
974 /* Parse RFC 3339-like timestamp. */
975 #define PARSE_NUMBER(dest, length, min, max) do { \
976 int i, v; \
977 \
978 v = 0; \
979 for (i = 0; i < length; ++i) { \
980 FAIL_IF("TIMESTAMP", *msg < '0' || *msg > '9'); \
981 v = v * 10 + *msg++ - '0'; \
982 } \
983 FAIL_IF("TIMESTAMP", v < min || v > max); \
984 dest = v; \
985 } while (0)
986 /* Date and time. */
987 memset(×tamp_remote, 0, sizeof(timestamp_remote));
988 PARSE_NUMBER(timestamp_remote.tm.tm_year, 4, 0, 9999);
989 timestamp_remote.tm.tm_year -= 1900;
990 PARSE_CHAR("TIMESTAMP", '-');
991 PARSE_NUMBER(timestamp_remote.tm.tm_mon, 2, 1, 12);
992 --timestamp_remote.tm.tm_mon;
993 PARSE_CHAR("TIMESTAMP", '-');
994 PARSE_NUMBER(timestamp_remote.tm.tm_mday, 2, 1, 31);
995 PARSE_CHAR("TIMESTAMP", 'T');
996 PARSE_NUMBER(timestamp_remote.tm.tm_hour, 2, 0, 23);
997 PARSE_CHAR("TIMESTAMP", ':');
998 PARSE_NUMBER(timestamp_remote.tm.tm_min, 2, 0, 59);
999 PARSE_CHAR("TIMESTAMP", ':');
1000 PARSE_NUMBER(timestamp_remote.tm.tm_sec, 2, 0, 59);
1001 /* Perform normalization. */
1002 timegm(×tamp_remote.tm);
1003 /* Optional: fractional seconds. */
1004 if (msg[0] == '.' && msg[1] >= '0' && msg[1] <= '9') {
1005 int i;
1006
1007 ++msg;
1008 for (i = 100000; i != 0; i /= 10) {
1009 if (*msg < '0' || *msg > '9')
1010 break;
1011 timestamp_remote.usec += (*msg++ - '0') * i;
1012 }
1013 }
1014 /* Timezone. */
1015 if (*msg == 'Z') {
1016 /* UTC. */
1017 ++msg;
1018 } else {
1019 int sign, tz_hour, tz_min;
1020
1021 /* Local time zone offset. */
1022 FAIL_IF("TIMESTAMP", *msg != '-' && *msg != '+');
1023 sign = *msg++ == '-' ? -1 : 1;
1024 PARSE_NUMBER(tz_hour, 2, 0, 23);
1025 PARSE_CHAR("TIMESTAMP", ':');
1026 PARSE_NUMBER(tz_min, 2, 0, 59);
1027 timestamp_remote.tm.tm_gmtoff =
1028 sign * (tz_hour * 3600 + tz_min * 60);
1029 }
1030 #undef PARSE_NUMBER
1031 PARSE_CHAR("TIMESTAMP", ' ');
1032 timestamp = RemoteAddDate ? NULL : ×tamp_remote;
1033 }
1034
1035 /* String fields part of the HEADER. */
1036 #define PARSE_STRING(field, var) \
1037 IF_NOT_NILVALUE(var) { \
1038 var = msg; \
1039 while (*msg >= '!' && *msg <= '~') \
1040 ++msg; \
1041 FAIL_IF(field, var == msg); \
1042 PARSE_CHAR(field, ' '); \
1043 msg[-1] = '\0'; \
1044 }
1045 PARSE_STRING("HOSTNAME", hostname);
1046 if (hostname == NULL || !RemoteHostname)
1047 hostname = from;
1048 PARSE_STRING("APP-NAME", app_name);
1049 PARSE_STRING("PROCID", procid);
1050 PARSE_STRING("MSGID", msgid);
1051 #undef PARSE_STRING
1052
1053 /* Structured data. */
1054 #define PARSE_SD_NAME() do { \
1055 const char *start; \
1056 \
1057 start = msg; \
1058 while (*msg >= '!' && *msg <= '~' && *msg != '=' && \
1059 *msg != ']' && *msg != '"') \
1060 ++msg; \
1061 FAIL_IF("STRUCTURED-NAME", start == msg); \
1062 } while (0)
1063 IF_NOT_NILVALUE(structured_data) {
1064 structured_data = msg;
1065 /* SD-ELEMENT. */
1066 while (*msg == '[') {
1067 ++msg;
1068 /* SD-ID. */
1069 PARSE_SD_NAME();
1070 /* SD-PARAM. */
1071 while (*msg == ' ') {
1072 ++msg;
1073 /* PARAM-NAME. */
1074 PARSE_SD_NAME();
1075 PARSE_CHAR("STRUCTURED-NAME", '=');
1076 PARSE_CHAR("STRUCTURED-NAME", '"');
1077 while (*msg != '"') {
1078 FAIL_IF("STRUCTURED-NAME",
1079 *msg == '\0');
1080 if (*msg++ == '\\') {
1081 FAIL_IF("STRUCTURED-NAME",
1082 *msg == '\0');
1083 ++msg;
1084 }
1085 }
1086 ++msg;
1087 }
1088 PARSE_CHAR("STRUCTURED-NAME", ']');
1089 }
1090 PARSE_CHAR("STRUCTURED-NAME", ' ');
1091 msg[-1] = '\0';
1092 }
1093 #undef PARSE_SD_NAME
1094
1095 #undef FAIL_IF
1096 #undef PARSE_CHAR
1097 #undef IF_NOT_NILVALUE
1098
1099 parsemsg_remove_unsafe_characters(msg, line, sizeof(line));
1100 logmsg(pri, timestamp, hostname, app_name, procid, msgid,
1101 structured_data, line, 0);
1102 }
1103
1104 /*
1105 * Returns the length of the application name ("TAG" in RFC 3164
1106 * terminology) and process ID from a message if present.
1107 */
1108 static void
parsemsg_rfc3164_get_app_name_procid(const char * msg,size_t * app_name_length_p,ptrdiff_t * procid_begin_offset_p,size_t * procid_length_p)1109 parsemsg_rfc3164_get_app_name_procid(const char *msg, size_t *app_name_length_p,
1110 ptrdiff_t *procid_begin_offset_p, size_t *procid_length_p)
1111 {
1112 const char *m, *procid_begin;
1113 size_t app_name_length, procid_length;
1114
1115 m = msg;
1116
1117 /* Application name. */
1118 app_name_length = strspn(m,
1119 "abcdefghijklmnopqrstuvwxyz"
1120 "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
1121 "0123456789"
1122 "_-/");
1123 if (app_name_length == 0)
1124 goto bad;
1125 m += app_name_length;
1126
1127 /* Process identifier (optional). */
1128 if (*m == '[') {
1129 procid_begin = ++m;
1130 procid_length = strspn(m, "0123456789");
1131 if (procid_length == 0)
1132 goto bad;
1133 m += procid_length;
1134 if (*m++ != ']')
1135 goto bad;
1136 } else {
1137 procid_begin = NULL;
1138 procid_length = 0;
1139 }
1140
1141 /* Separator. */
1142 if (m[0] != ':' || m[1] != ' ')
1143 goto bad;
1144
1145 *app_name_length_p = app_name_length;
1146 if (procid_begin_offset_p != NULL)
1147 *procid_begin_offset_p =
1148 procid_begin == NULL ? 0 : procid_begin - msg;
1149 if (procid_length_p != NULL)
1150 *procid_length_p = procid_length;
1151 return;
1152 bad:
1153 *app_name_length_p = 0;
1154 if (procid_begin_offset_p != NULL)
1155 *procid_begin_offset_p = 0;
1156 if (procid_length_p != NULL)
1157 *procid_length_p = 0;
1158 }
1159
1160 /*
1161 * Trims the application name ("TAG" in RFC 3164 terminology) and
1162 * process ID from a message if present.
1163 */
1164 static void
parsemsg_rfc3164_app_name_procid(char ** msg,const char ** app_name,const char ** procid)1165 parsemsg_rfc3164_app_name_procid(char **msg, const char **app_name,
1166 const char **procid)
1167 {
1168 char *m, *app_name_begin, *procid_begin;
1169 size_t app_name_length, procid_length;
1170 ptrdiff_t procid_begin_offset;
1171
1172 m = *msg;
1173 app_name_begin = m;
1174
1175 parsemsg_rfc3164_get_app_name_procid(app_name_begin, &app_name_length,
1176 &procid_begin_offset, &procid_length);
1177 if (app_name_length == 0)
1178 goto bad;
1179 procid_begin = procid_begin_offset == 0 ? NULL :
1180 app_name_begin + procid_begin_offset;
1181
1182 /* Split strings from input. */
1183 app_name_begin[app_name_length] = '\0';
1184 m += app_name_length;
1185 if (procid_begin != NULL) {
1186 procid_begin[procid_length] = '\0';
1187 /* Skip "[PID]". */
1188 m += procid_length + 2;
1189 }
1190
1191 /* Skip separator ": ". */
1192 *msg = m + 2;
1193 *app_name = app_name_begin;
1194 *procid = procid_begin;
1195 return;
1196 bad:
1197 *app_name = NULL;
1198 *procid = NULL;
1199 }
1200
1201 /*
1202 * Parses a syslog message according to RFC 3164, assuming that PRI
1203 * (i.e., "<%d>") has already been parsed by parsemsg(). The parsed
1204 * result is passed to logmsg().
1205 */
1206 static void
parsemsg_rfc3164(const char * from,int pri,char * msg)1207 parsemsg_rfc3164(const char *from, int pri, char *msg)
1208 {
1209 struct tm tm_parsed;
1210 const struct logtime *timestamp;
1211 struct logtime timestamp_remote;
1212 const char *app_name, *procid;
1213 size_t i, msglen;
1214 char line[MAXLINE + 1];
1215
1216 /*
1217 * Parse the TIMESTAMP provided by the remote side. If none is
1218 * found, assume this is not an RFC 3164 formatted message,
1219 * only containing a TAG and a MSG.
1220 */
1221 timestamp = NULL;
1222 if (strptime(msg, RFC3164_DATEFMT, &tm_parsed) ==
1223 msg + RFC3164_DATELEN && msg[RFC3164_DATELEN] == ' ') {
1224 msg += RFC3164_DATELEN + 1;
1225 if (!RemoteAddDate) {
1226 struct tm tm_now;
1227 time_t t_now;
1228 int year;
1229
1230 /*
1231 * As the timestamp does not contain the year
1232 * number, daylight saving time information, nor
1233 * a time zone, attempt to infer it. Due to
1234 * clock skews, the timestamp may even be part
1235 * of the next year. Use the last year for which
1236 * the timestamp is at most one week in the
1237 * future.
1238 *
1239 * This loop can only run for at most three
1240 * iterations before terminating.
1241 */
1242 t_now = time(NULL);
1243 localtime_r(&t_now, &tm_now);
1244 for (year = tm_now.tm_year + 1;; --year) {
1245 assert(year >= tm_now.tm_year - 1);
1246 timestamp_remote.tm = tm_parsed;
1247 timestamp_remote.tm.tm_year = year;
1248 timestamp_remote.tm.tm_isdst = -1;
1249 timestamp_remote.usec = 0;
1250 if (mktime(×tamp_remote.tm) <
1251 t_now + 7 * 24 * 60 * 60)
1252 break;
1253 }
1254 timestamp = ×tamp_remote;
1255 }
1256
1257 /*
1258 * A single space character MUST also follow the HOSTNAME field.
1259 */
1260 msglen = strlen(msg);
1261 for (i = 0; i < MIN(MAXHOSTNAMELEN, msglen); i++) {
1262 if (msg[i] == ' ') {
1263 if (RemoteHostname) {
1264 msg[i] = '\0';
1265 from = msg;
1266 }
1267 msg += i + 1;
1268 break;
1269 }
1270 /*
1271 * Support non RFC compliant messages, without hostname.
1272 */
1273 if (msg[i] == ':')
1274 break;
1275 }
1276 if (i == MIN(MAXHOSTNAMELEN, msglen)) {
1277 dprintf("Invalid HOSTNAME from %s: %s\n", from, msg);
1278 return;
1279 }
1280 }
1281
1282 /* Remove the TAG, if present. */
1283 parsemsg_rfc3164_app_name_procid(&msg, &app_name, &procid);
1284 parsemsg_remove_unsafe_characters(msg, line, sizeof(line));
1285 logmsg(pri, timestamp, from, app_name, procid, NULL, NULL, line, 0);
1286 }
1287
1288 /*
1289 * Takes a raw input line, extracts PRI and determines whether the
1290 * message is formatted according to RFC 3164 or RFC 5424. Continues
1291 * parsing of addition fields in the message according to those
1292 * standards and prints the message on the appropriate log files.
1293 */
1294 static void
parsemsg(const char * from,char * msg)1295 parsemsg(const char *from, char *msg)
1296 {
1297 char *q;
1298 long n;
1299 size_t i;
1300 int pri;
1301
1302 i = -1;
1303 pri = DEFUPRI;
1304
1305 /* Parse PRI. */
1306 if (msg[0] == '<' && isdigit(msg[1])) {
1307 for (i = 2; i <= 4; i++) {
1308 if (msg[i] == '>') {
1309 errno = 0;
1310 n = strtol(msg + 1, &q, 10);
1311 if (errno == 0 && *q == msg[i] && n >= 0 && n <= INT_MAX) {
1312 pri = n;
1313 msg += i + 1;
1314 i = 0;
1315 }
1316 break;
1317 }
1318 }
1319 }
1320
1321 if (pri &~ (LOG_FACMASK|LOG_PRIMASK))
1322 pri = DEFUPRI;
1323
1324 /*
1325 * Don't allow users to log kernel messages.
1326 * NOTE: since LOG_KERN == 0 this will also match
1327 * messages with no facility specified.
1328 */
1329 if ((pri & LOG_FACMASK) == LOG_KERN && !KeepKernFac)
1330 pri = LOG_MAKEPRI(LOG_USER, LOG_PRI(pri));
1331
1332 /* Parse VERSION. */
1333 if (i == 0 && msg[0] == '1' && msg[1] == ' ')
1334 parsemsg_rfc5424(from, pri, msg + 2);
1335 else
1336 parsemsg_rfc3164(from, pri, msg);
1337 }
1338
1339 /*
1340 * Read /dev/klog while data are available, split into lines.
1341 */
1342 static int
socklist_recv_file(struct socklist * sl)1343 socklist_recv_file(struct socklist *sl)
1344 {
1345 char *p, *q, line[MAXLINE + 1];
1346 int len, i;
1347
1348 len = 0;
1349 for (;;) {
1350 i = read(sl->sl_socket, line + len, MAXLINE - 1 - len);
1351 if (i > 0) {
1352 line[i + len] = '\0';
1353 } else {
1354 if (i < 0 && errno != EINTR && errno != EAGAIN) {
1355 logerror("klog");
1356 close(sl->sl_socket);
1357 sl->sl_socket = -1;
1358 }
1359 break;
1360 }
1361
1362 for (p = line; (q = strchr(p, '\n')) != NULL; p = q + 1) {
1363 *q = '\0';
1364 printsys(p);
1365 }
1366 len = strlen(p);
1367 if (len >= MAXLINE - 1) {
1368 printsys(p);
1369 len = 0;
1370 }
1371 if (len > 0)
1372 memmove(line, p, len + 1);
1373 }
1374 if (len > 0)
1375 printsys(line);
1376
1377 return (len);
1378 }
1379
1380 /*
1381 * Take a raw input line from /dev/klog, format similar to syslog().
1382 */
1383 static void
printsys(char * msg)1384 printsys(char *msg)
1385 {
1386 char *p, *q;
1387 long n;
1388 int flags, isprintf, pri;
1389
1390 flags = ISKERNEL | SYNC_FILE; /* fsync after write */
1391 p = msg;
1392 pri = DEFSPRI;
1393 isprintf = 1;
1394 if (*p == '<') {
1395 errno = 0;
1396 n = strtol(p + 1, &q, 10);
1397 if (*q == '>' && n >= 0 && n < INT_MAX && errno == 0) {
1398 p = q + 1;
1399 pri = n;
1400 isprintf = 0;
1401 }
1402 }
1403 /*
1404 * Kernel printf's and LOG_CONSOLE messages have been displayed
1405 * on the console already.
1406 */
1407 if (isprintf || (pri & LOG_FACMASK) == LOG_CONSOLE)
1408 flags |= IGN_CONS;
1409 if (pri &~ (LOG_FACMASK|LOG_PRIMASK))
1410 pri = DEFSPRI;
1411 logmsg(pri, NULL, LocalHostName, "kernel", NULL, NULL, NULL, p, flags);
1412 }
1413
1414 static time_t now;
1415
1416 /*
1417 * Match a program or host name against a specification.
1418 * Return a non-0 value if the message must be ignored
1419 * based on the specification.
1420 */
1421 static int
skip_message(const char * name,const char * spec,int checkcase)1422 skip_message(const char *name, const char *spec, int checkcase)
1423 {
1424 const char *s;
1425 char prev, next;
1426 int exclude = 0;
1427 /* Behaviour on explicit match */
1428
1429 if (spec == NULL || *spec == '\0')
1430 return (0);
1431 switch (*spec) {
1432 case '-':
1433 exclude = 1;
1434 /*FALLTHROUGH*/
1435 case '+':
1436 spec++;
1437 break;
1438 default:
1439 break;
1440 }
1441 if (checkcase)
1442 s = strstr (spec, name);
1443 else
1444 s = strcasestr (spec, name);
1445
1446 if (s != NULL) {
1447 prev = (s == spec ? ',' : *(s - 1));
1448 next = *(s + strlen (name));
1449
1450 if (prev == ',' && (next == '\0' || next == ','))
1451 /* Explicit match: skip iff the spec is an
1452 exclusive one. */
1453 return (exclude);
1454 }
1455
1456 /* No explicit match for this name: skip the message iff
1457 the spec is an inclusive one. */
1458 return (!exclude);
1459 }
1460
1461 /*
1462 * Match some property of the message against a filter.
1463 * Return a non-0 value if the message must be ignored
1464 * based on the filter.
1465 */
1466 static int
evaluate_prop_filter(const struct prop_filter * filter,const char * value)1467 evaluate_prop_filter(const struct prop_filter *filter, const char *value)
1468 {
1469 const char *s = NULL;
1470 const int exclude = ((filter->cmp_flags & FILT_FLAG_EXCLUDE) > 0);
1471 size_t valuelen;
1472
1473 if (value == NULL)
1474 return (-1);
1475
1476 if (filter->cmp_type == FILT_CMP_REGEX) {
1477 if (regexec(filter->pflt_re, value, 0, NULL, 0) == 0)
1478 return (exclude);
1479 else
1480 return (!exclude);
1481 }
1482
1483 valuelen = strlen(value);
1484
1485 /* a shortcut for equal with different length is always false */
1486 if (filter->cmp_type == FILT_CMP_EQUAL &&
1487 valuelen != strlen(filter->pflt_strval))
1488 return (!exclude);
1489
1490 if (filter->cmp_flags & FILT_FLAG_ICASE)
1491 s = strcasestr(value, filter->pflt_strval);
1492 else
1493 s = strstr(value, filter->pflt_strval);
1494
1495 /*
1496 * FILT_CMP_CONTAINS true if s
1497 * FILT_CMP_STARTS true if s && s == value
1498 * FILT_CMP_EQUAL true if s && s == value &&
1499 * valuelen == filter->pflt_strlen
1500 * (and length match is checked
1501 * already)
1502 */
1503
1504 switch (filter->cmp_type) {
1505 case FILT_CMP_STARTS:
1506 case FILT_CMP_EQUAL:
1507 if (s != value)
1508 return (!exclude);
1509 /* FALLTHROUGH */
1510 case FILT_CMP_CONTAINS:
1511 if (s)
1512 return (exclude);
1513 else
1514 return (!exclude);
1515 break;
1516 default:
1517 /* unknown cmp_type */
1518 break;
1519 }
1520
1521 return (-1);
1522 }
1523
1524 /*
1525 * Logs a message to the appropriate log files, users, etc. based on the
1526 * priority. Log messages are formatted according to RFC 3164 or
1527 * RFC 5424 in subsequent fprintlog_*() functions.
1528 */
1529 static void
logmsg(int pri,const struct logtime * timestamp,const char * hostname,const char * app_name,const char * procid,const char * msgid,const char * structured_data,const char * msg,int flags)1530 logmsg(int pri, const struct logtime *timestamp, const char *hostname,
1531 const char *app_name, const char *procid, const char *msgid,
1532 const char *structured_data, const char *msg, int flags)
1533 {
1534 struct timeval tv;
1535 struct logtime timestamp_now;
1536 struct filed *f;
1537 size_t savedlen;
1538 int fac, prilev;
1539 char saved[MAXSVLINE], kernel_app_name[100];
1540
1541 dprintf("logmsg: pri %o, flags %x, from %s, msg %s\n",
1542 pri, flags, hostname, msg);
1543
1544 (void)gettimeofday(&tv, NULL);
1545 now = tv.tv_sec;
1546 if (timestamp == NULL) {
1547 localtime_r(&now, ×tamp_now.tm);
1548 timestamp_now.usec = tv.tv_usec;
1549 timestamp = ×tamp_now;
1550 }
1551
1552 /* extract facility and priority level */
1553 if (flags & MARK)
1554 fac = LOG_NFACILITIES;
1555 else
1556 fac = LOG_FAC(pri);
1557
1558 /* Check maximum facility number. */
1559 if (fac > LOG_NFACILITIES)
1560 return;
1561
1562 prilev = LOG_PRI(pri);
1563
1564 /*
1565 * Lookup kernel app name from log prefix if present.
1566 * This is only used for local program specification matching.
1567 */
1568 if (flags & ISKERNEL) {
1569 size_t kernel_app_name_length;
1570
1571 parsemsg_rfc3164_get_app_name_procid(msg,
1572 &kernel_app_name_length, NULL, NULL);
1573 if (kernel_app_name_length != 0) {
1574 strlcpy(kernel_app_name, msg,
1575 MIN(sizeof(kernel_app_name),
1576 kernel_app_name_length + 1));
1577 } else
1578 kernel_app_name[0] = '\0';
1579 }
1580
1581 /* log the message to the particular outputs */
1582 if (!Initialized) {
1583 consfile.f_lasttime = *timestamp;
1584 fprintlog_first(&consfile, hostname, app_name, procid,
1585 msgid, structured_data, msg, flags);
1586 return;
1587 }
1588
1589 /*
1590 * Store all of the fields of the message, except the timestamp,
1591 * in a single string. This string is used to detect duplicate
1592 * messages.
1593 */
1594 assert(hostname != NULL);
1595 assert(msg != NULL);
1596 savedlen = snprintf(saved, sizeof(saved),
1597 "%d %s %s %s %s %s %s", pri, hostname,
1598 app_name == NULL ? "-" : app_name, procid == NULL ? "-" : procid,
1599 msgid == NULL ? "-" : msgid,
1600 structured_data == NULL ? "-" : structured_data, msg);
1601
1602 STAILQ_FOREACH(f, &fhead, next) {
1603 /* skip messages that are incorrect priority */
1604 if (!(((f->f_pcmp[fac] & PRI_EQ) && (f->f_pmask[fac] == prilev))
1605 ||((f->f_pcmp[fac] & PRI_LT) && (f->f_pmask[fac] < prilev))
1606 ||((f->f_pcmp[fac] & PRI_GT) && (f->f_pmask[fac] > prilev))
1607 )
1608 || f->f_pmask[fac] == INTERNAL_NOPRI)
1609 continue;
1610
1611 /* skip messages with the incorrect hostname */
1612 if (skip_message(hostname, f->f_host, 0))
1613 continue;
1614
1615 /* skip messages with the incorrect program name */
1616 if (flags & ISKERNEL && kernel_app_name[0] != '\0') {
1617 if (skip_message(kernel_app_name, f->f_program, 1))
1618 continue;
1619 } else if (skip_message(app_name == NULL ? "" : app_name,
1620 f->f_program, 1))
1621 continue;
1622
1623 /* skip messages if a property does not match filter */
1624 if (f->f_prop_filter != NULL &&
1625 f->f_prop_filter->prop_type != FILT_PROP_NOOP) {
1626 switch (f->f_prop_filter->prop_type) {
1627 case FILT_PROP_MSG:
1628 if (evaluate_prop_filter(f->f_prop_filter,
1629 msg))
1630 continue;
1631 break;
1632 case FILT_PROP_HOSTNAME:
1633 if (evaluate_prop_filter(f->f_prop_filter,
1634 hostname))
1635 continue;
1636 break;
1637 case FILT_PROP_PROGNAME:
1638 if (evaluate_prop_filter(f->f_prop_filter,
1639 app_name == NULL ? "" : app_name))
1640 continue;
1641 break;
1642 default:
1643 continue;
1644 }
1645 }
1646
1647 /* skip message to console if it has already been printed */
1648 if (f->f_type == F_CONSOLE && (flags & IGN_CONS))
1649 continue;
1650
1651 /* don't output marks to recently written files */
1652 if ((flags & MARK) && (now - f->f_time) < MarkInterval / 2)
1653 continue;
1654
1655 /*
1656 * suppress duplicate lines to this file
1657 */
1658 if (no_compress - (f->f_type != F_PIPE) < 1 &&
1659 (flags & MARK) == 0 && savedlen == f->f_prevlen &&
1660 strcmp(saved, f->f_prevline) == 0) {
1661 f->f_lasttime = *timestamp;
1662 f->f_prevcount++;
1663 dprintf("msg repeated %d times, %ld sec of %d\n",
1664 f->f_prevcount, (long)(now - f->f_time),
1665 repeatinterval[f->f_repeatcount]);
1666 /*
1667 * If domark would have logged this by now,
1668 * flush it now (so we don't hold isolated messages),
1669 * but back off so we'll flush less often
1670 * in the future.
1671 */
1672 if (now > REPEATTIME(f)) {
1673 fprintlog_successive(f, flags);
1674 BACKOFF(f);
1675 }
1676 } else {
1677 /* new line, save it */
1678 if (f->f_prevcount)
1679 fprintlog_successive(f, 0);
1680 f->f_repeatcount = 0;
1681 f->f_prevpri = pri;
1682 f->f_lasttime = *timestamp;
1683 static_assert(sizeof(f->f_prevline) == sizeof(saved),
1684 "Space to store saved line incorrect");
1685 (void)strcpy(f->f_prevline, saved);
1686 f->f_prevlen = savedlen;
1687 fprintlog_first(f, hostname, app_name, procid, msgid,
1688 structured_data, msg, flags);
1689 }
1690 }
1691 }
1692
1693 static void
dofsync(void)1694 dofsync(void)
1695 {
1696 struct filed *f;
1697
1698 STAILQ_FOREACH(f, &fhead, next) {
1699 if (f->f_type == F_FILE &&
1700 (f->f_flags & FFLAG_NEEDSYNC) != 0) {
1701 f->f_flags &= ~FFLAG_NEEDSYNC;
1702 (void)fsync(f->f_file);
1703 }
1704 }
1705 needdofsync = false;
1706 }
1707
1708 static void
iovlist_init(struct iovlist * il)1709 iovlist_init(struct iovlist *il)
1710 {
1711
1712 il->iovcnt = 0;
1713 il->totalsize = 0;
1714 }
1715
1716 static void
iovlist_append(struct iovlist * il,const char * str)1717 iovlist_append(struct iovlist *il, const char *str)
1718 {
1719 size_t size;
1720
1721 /* Discard components if we've run out of iovecs. */
1722 if (il->iovcnt < nitems(il->iov)) {
1723 size = strlen(str);
1724 il->iov[il->iovcnt++] = (struct iovec){
1725 .iov_base = __DECONST(char *, str),
1726 .iov_len = size,
1727 };
1728 il->totalsize += size;
1729 }
1730 }
1731
1732 #if defined(INET) || defined(INET6)
1733 static void
iovlist_truncate(struct iovlist * il,size_t size)1734 iovlist_truncate(struct iovlist *il, size_t size)
1735 {
1736 struct iovec *last;
1737 size_t diff;
1738
1739 while (il->totalsize > size) {
1740 diff = il->totalsize - size;
1741 last = &il->iov[il->iovcnt - 1];
1742 if (diff >= last->iov_len) {
1743 /* Remove the last iovec entirely. */
1744 --il->iovcnt;
1745 il->totalsize -= last->iov_len;
1746 } else {
1747 /* Remove the last iovec partially. */
1748 last->iov_len -= diff;
1749 il->totalsize -= diff;
1750 }
1751 }
1752 }
1753 #endif
1754
1755 static void
fprintlog_write(struct filed * f,struct iovlist * il,int flags)1756 fprintlog_write(struct filed *f, struct iovlist *il, int flags)
1757 {
1758 switch (f->f_type) {
1759 case F_FORW: {
1760 ssize_t lsent;
1761
1762 if (Debug) {
1763 int domain, sockfd = f->f_addr_fds[0];
1764 socklen_t len = sizeof(domain);
1765
1766 if (getsockopt(sockfd, SOL_SOCKET, SO_DOMAIN,
1767 &domain, &len) < 0)
1768 err(1, "getsockopt");
1769
1770 printf(" %s", f->f_hname);
1771 switch (domain) {
1772 #ifdef INET
1773 case AF_INET: {
1774 struct sockaddr_in sin;
1775
1776 len = sizeof(sin);
1777 if (getpeername(sockfd,
1778 (struct sockaddr *)&sin, &len) < 0)
1779 err(1, "getpeername");
1780 printf(":%d\n", ntohs(sin.sin_port));
1781 break;
1782 }
1783 #endif
1784 #ifdef INET6
1785 case AF_INET6: {
1786 struct sockaddr_in6 sin6;
1787
1788 len = sizeof(sin6);
1789 if (getpeername(sockfd,
1790 (struct sockaddr *)&sin6, &len) < 0)
1791 err(1, "getpeername");
1792 printf(":%d\n", ntohs(sin6.sin6_port));
1793 break;
1794 }
1795 #endif
1796 default:
1797 printf("\n");
1798 }
1799 }
1800
1801 #if defined(INET) || defined(INET6)
1802 /* Truncate messages to maximum forward length. */
1803 iovlist_truncate(il, MaxForwardLen);
1804 #endif
1805
1806 lsent = 0;
1807 for (size_t i = 0; i < f->f_num_addr_fds; ++i) {
1808 struct msghdr msg = {
1809 .msg_iov = il->iov,
1810 .msg_iovlen = il->iovcnt,
1811 };
1812
1813 lsent = sendmsg(f->f_addr_fds[i], &msg, 0);
1814 if (lsent == (ssize_t)il->totalsize && !send_to_all)
1815 break;
1816 }
1817 dprintf("lsent/totalsize: %zd/%zu\n", lsent, il->totalsize);
1818 if (lsent != (ssize_t)il->totalsize) {
1819 int e = errno;
1820 logerror("sendto");
1821 errno = e;
1822 switch (errno) {
1823 case ENOBUFS:
1824 case ENETDOWN:
1825 case ENETUNREACH:
1826 case EHOSTUNREACH:
1827 case EHOSTDOWN:
1828 case EADDRNOTAVAIL:
1829 case EAGAIN:
1830 case ECONNREFUSED:
1831 break;
1832 /* case EBADF: */
1833 /* case EACCES: */
1834 /* case ENOTSOCK: */
1835 /* case EFAULT: */
1836 /* case EMSGSIZE: */
1837 default:
1838 dprintf("removing entry: errno=%d\n", e);
1839 f->f_type = F_UNUSED;
1840 break;
1841 }
1842 }
1843 break;
1844 }
1845
1846 case F_FILE:
1847 dprintf(" %s\n", f->f_fname);
1848 iovlist_append(il, "\n");
1849 if (writev(f->f_file, il->iov, il->iovcnt) < 0) {
1850 /*
1851 * If writev(2) fails for potentially transient errors
1852 * like the filesystem being full, ignore it.
1853 * Otherwise remove this logfile from the list.
1854 */
1855 if (errno != ENOSPC) {
1856 int e = errno;
1857 close_filed(f);
1858 errno = e;
1859 logerror(f->f_fname);
1860 }
1861 } else if ((flags & SYNC_FILE) && (f->f_flags & FFLAG_SYNC)) {
1862 f->f_flags |= FFLAG_NEEDSYNC;
1863 needdofsync = true;
1864 }
1865 break;
1866
1867 case F_PIPE:
1868 dprintf(" %s\n", f->f_pname);
1869 iovlist_append(il, "\n");
1870 if (f->f_procdesc == -1) {
1871 struct kevent ev;
1872 struct filed *f_in_list;
1873 size_t i = 0;
1874
1875 STAILQ_FOREACH(f_in_list, &fhead, next) {
1876 if (f_in_list == f)
1877 break;
1878 ++i;
1879 }
1880 f->f_file = cap_p_open(cap_syslogd, i, f->f_pname,
1881 &f->f_procdesc);
1882 if (f->f_file < 0) {
1883 logerror(f->f_pname);
1884 break;
1885 }
1886 EV_SET(&ev, f->f_procdesc, EVFILT_PROCDESC, EV_ADD,
1887 NOTE_EXIT, 0, f);
1888 if (kevent(kq, &ev, 1, NULL, 0, NULL) == -1) {
1889 logerror("failed to add procdesc kevent");
1890 exit(1);
1891 }
1892 }
1893 if (writev(f->f_file, il->iov, il->iovcnt) < 0) {
1894 logerror(f->f_pname);
1895 f->f_dq = deadq_enter(f->f_procdesc);
1896 }
1897 break;
1898
1899 case F_CONSOLE:
1900 if (flags & IGN_CONS) {
1901 dprintf(" (ignored)\n");
1902 break;
1903 }
1904 /* FALLTHROUGH */
1905
1906 case F_TTY:
1907 dprintf(" %s%s\n", _PATH_DEV, f->f_fname);
1908 iovlist_append(il, "\r\n");
1909 errno = 0; /* ttymsg() only sometimes returns an errno */
1910 if (cap_ttymsg(cap_syslogd, il->iov, il->iovcnt, f->f_fname, 10,
1911 true) != 0) {
1912 f->f_type = F_UNUSED;
1913 logerror(f->f_fname);
1914 }
1915 break;
1916
1917 case F_USERS:
1918 case F_WALL:
1919 dprintf("\n");
1920 iovlist_append(il, "\r\n");
1921 cap_wallmsg(cap_syslogd, f, il->iov, il->iovcnt);
1922 break;
1923 default:
1924 break;
1925 }
1926 }
1927
1928 static void
fprintlog_rfc5424(struct filed * f,const char * hostname,const char * app_name,const char * procid,const char * msgid,const char * structured_data,const char * msg,int flags)1929 fprintlog_rfc5424(struct filed *f, const char *hostname, const char *app_name,
1930 const char *procid, const char *msgid, const char *structured_data,
1931 const char *msg, int flags)
1932 {
1933 struct iovlist il;
1934 suseconds_t usec;
1935 int i;
1936 char timebuf[33], priority_number[5];
1937
1938 iovlist_init(&il);
1939 if (f->f_type == F_WALL)
1940 iovlist_append(&il, "\r\n\aMessage from syslogd ...\r\n");
1941 iovlist_append(&il, "<");
1942 snprintf(priority_number, sizeof(priority_number), "%d", f->f_prevpri);
1943 iovlist_append(&il, priority_number);
1944 iovlist_append(&il, ">1 ");
1945 if (strftime(timebuf, sizeof(timebuf), "%FT%T.______%z",
1946 &f->f_lasttime.tm) == sizeof(timebuf) - 2) {
1947 /* Add colon to the time zone offset, which %z doesn't do. */
1948 timebuf[32] = '\0';
1949 timebuf[31] = timebuf[30];
1950 timebuf[30] = timebuf[29];
1951 timebuf[29] = ':';
1952
1953 /* Overwrite space for microseconds with actual value. */
1954 usec = f->f_lasttime.usec;
1955 for (i = 25; i >= 20; --i) {
1956 timebuf[i] = usec % 10 + '0';
1957 usec /= 10;
1958 }
1959 iovlist_append(&il, timebuf);
1960 } else
1961 iovlist_append(&il, "-");
1962 iovlist_append(&il, " ");
1963 iovlist_append(&il, hostname);
1964 iovlist_append(&il, " ");
1965 iovlist_append(&il, app_name == NULL ? "-" : app_name);
1966 iovlist_append(&il, " ");
1967 iovlist_append(&il, procid == NULL ? "-" : procid);
1968 iovlist_append(&il, " ");
1969 iovlist_append(&il, msgid == NULL ? "-" : msgid);
1970 iovlist_append(&il, " ");
1971 iovlist_append(&il, structured_data == NULL ? "-" : structured_data);
1972 iovlist_append(&il, " ");
1973 iovlist_append(&il, msg);
1974
1975 fprintlog_write(f, &il, flags);
1976 }
1977
1978 static void
fprintlog_rfc3164(struct filed * f,const char * hostname,const char * app_name,const char * procid,const char * msg,int flags)1979 fprintlog_rfc3164(struct filed *f, const char *hostname, const char *app_name,
1980 const char *procid, const char *msg, int flags)
1981 {
1982 struct iovlist il;
1983 const CODE *c;
1984 int facility, priority;
1985 char timebuf[RFC3164_DATELEN + 1], facility_number[5],
1986 priority_number[5];
1987 bool facility_found, priority_found;
1988
1989 if (strftime(timebuf, sizeof(timebuf), RFC3164_DATEFMT,
1990 &f->f_lasttime.tm) == 0)
1991 timebuf[0] = '\0';
1992
1993 iovlist_init(&il);
1994 switch (f->f_type) {
1995 case F_FORW:
1996 /* Message forwarded over the network. */
1997 iovlist_append(&il, "<");
1998 snprintf(priority_number, sizeof(priority_number), "%d",
1999 f->f_prevpri);
2000 iovlist_append(&il, priority_number);
2001 iovlist_append(&il, ">");
2002 iovlist_append(&il, timebuf);
2003 if (output_format == FORMAT_RFC3164_STRICT) {
2004 iovlist_append(&il, " ");
2005 iovlist_append(&il, hostname);
2006 } else if (strcasecmp(hostname, LocalHostName) != 0) {
2007 iovlist_append(&il, " Forwarded from ");
2008 iovlist_append(&il, hostname);
2009 iovlist_append(&il, ":");
2010 }
2011 iovlist_append(&il, " ");
2012 break;
2013
2014 case F_WALL:
2015 /* Message written to terminals. */
2016 iovlist_append(&il, "\r\n\aMessage from syslogd@");
2017 iovlist_append(&il, hostname);
2018 iovlist_append(&il, " at ");
2019 iovlist_append(&il, timebuf);
2020 iovlist_append(&il, " ...\r\n");
2021 break;
2022
2023 default:
2024 /* Message written to files. */
2025 iovlist_append(&il, timebuf);
2026 iovlist_append(&il, " ");
2027
2028 if (LogFacPri) {
2029 iovlist_append(&il, "<");
2030
2031 facility = f->f_prevpri & LOG_FACMASK;
2032 facility_found = false;
2033 if (LogFacPri > 1) {
2034 for (c = facilitynames; c->c_name; c++) {
2035 if (c->c_val == facility) {
2036 iovlist_append(&il, c->c_name);
2037 facility_found = true;
2038 break;
2039 }
2040 }
2041 }
2042 if (!facility_found) {
2043 snprintf(facility_number,
2044 sizeof(facility_number), "%d",
2045 LOG_FAC(facility));
2046 iovlist_append(&il, facility_number);
2047 }
2048
2049 iovlist_append(&il, ".");
2050
2051 priority = LOG_PRI(f->f_prevpri);
2052 priority_found = false;
2053 if (LogFacPri > 1) {
2054 for (c = prioritynames; c->c_name; c++) {
2055 if (c->c_val == priority) {
2056 iovlist_append(&il, c->c_name);
2057 priority_found = true;
2058 break;
2059 }
2060 }
2061 }
2062 if (!priority_found) {
2063 snprintf(priority_number,
2064 sizeof(priority_number), "%d", priority);
2065 iovlist_append(&il, priority_number);
2066 }
2067
2068 iovlist_append(&il, "> ");
2069 }
2070
2071 iovlist_append(&il, hostname);
2072 iovlist_append(&il, " ");
2073 break;
2074 }
2075
2076 /* Message body with application name and process ID prefixed. */
2077 if (app_name != NULL) {
2078 iovlist_append(&il, app_name);
2079 if (procid != NULL) {
2080 iovlist_append(&il, "[");
2081 iovlist_append(&il, procid);
2082 iovlist_append(&il, "]");
2083 }
2084 iovlist_append(&il, ": ");
2085 }
2086 iovlist_append(&il, msg);
2087
2088 fprintlog_write(f, &il, flags);
2089 }
2090
2091 static void
fprintlog_first(struct filed * f,const char * hostname,const char * app_name,const char * procid,const char * msgid __unused,const char * structured_data __unused,const char * msg,int flags)2092 fprintlog_first(struct filed *f, const char *hostname, const char *app_name,
2093 const char *procid, const char *msgid __unused,
2094 const char *structured_data __unused, const char *msg, int flags)
2095 {
2096
2097 dprintf("Logging to %s", TypeNames[f->f_type]);
2098 f->f_time = now;
2099 f->f_prevcount = 0;
2100 if (f->f_type == F_UNUSED) {
2101 dprintf("\n");
2102 return;
2103 }
2104
2105 if (IS_RFC3164_FORMAT)
2106 fprintlog_rfc3164(f, hostname, app_name, procid, msg, flags);
2107 else
2108 fprintlog_rfc5424(f, hostname, app_name, procid, msgid,
2109 structured_data, msg, flags);
2110 }
2111
2112 /*
2113 * Prints a message to a log file that the previously logged message was
2114 * received multiple times.
2115 */
2116 static void
fprintlog_successive(struct filed * f,int flags)2117 fprintlog_successive(struct filed *f, int flags)
2118 {
2119 char msg[100];
2120
2121 assert(f->f_prevcount > 0);
2122 snprintf(msg, sizeof(msg), "last message repeated %d times",
2123 f->f_prevcount);
2124 fprintlog_first(f, LocalHostName, "syslogd", NULL, NULL, NULL, msg,
2125 flags);
2126 }
2127
2128 /*
2129 * WALLMSG -- Write a message to the world at large
2130 *
2131 * Write the specified message to either the entire
2132 * world, or a list of approved users.
2133 *
2134 * Note: This function is wrapped by cap_wallmsg() when Capsicum support is
2135 * enabled so ttymsg() can be called.
2136 */
2137 void
wallmsg(const struct filed * f,struct iovec * iov,const int iovlen)2138 wallmsg(const struct filed *f, struct iovec *iov, const int iovlen)
2139 {
2140 static int reenter; /* avoid calling ourselves */
2141 struct utmpx *ut;
2142 int i;
2143
2144 if (reenter++)
2145 return;
2146 setutxent();
2147 /* NOSTRICT */
2148 while ((ut = getutxent()) != NULL) {
2149 if (ut->ut_type != USER_PROCESS)
2150 continue;
2151 if (f->f_type == F_WALL) {
2152 if (ttymsg(iov, iovlen, ut->ut_line, TTYMSGTIME,
2153 false) != 0 && errno != ENOENT)
2154 dprintf("%s: %m\n", ut->ut_line);
2155 continue;
2156 }
2157 /* should we send the message to this user? */
2158 for (i = 0; i < MAXUNAMES; i++) {
2159 if (!f->f_uname[i][0])
2160 break;
2161 if (strcmp(f->f_uname[i], ut->ut_user) == 0) {
2162 if (ttymsg(iov, iovlen, ut->ut_line, TTYMSGTIME,
2163 true) != 0 && errno != ENOENT)
2164 dprintf("%s: %m\n", ut->ut_line);
2165 break;
2166 }
2167 }
2168 }
2169 endutxent();
2170 reenter = 0;
2171 }
2172
2173 /*
2174 * Return a printable representation of a host address.
2175 */
2176 static const char *
cvthname(struct sockaddr * f)2177 cvthname(struct sockaddr *f)
2178 {
2179 int error, hl;
2180 static char hname[NI_MAXHOST], ip[NI_MAXHOST];
2181
2182 dprintf("cvthname(%d) len = %d\n", f->sa_family, f->sa_len);
2183 error = cap_getnameinfo(cap_net, f, f->sa_len, ip, sizeof(ip), NULL, 0,
2184 NI_NUMERICHOST);
2185 if (error) {
2186 dprintf("Malformed from address %s\n", gai_strerror(error));
2187 return ("???");
2188 }
2189 dprintf("cvthname(%s)\n", ip);
2190
2191 if (!resolve)
2192 return (ip);
2193
2194 error = cap_getnameinfo(cap_net, f, f->sa_len, hname, sizeof(hname),
2195 NULL, 0, NI_NAMEREQD);
2196 if (error) {
2197 dprintf("Host name for your address (%s) unknown\n", ip);
2198 return (ip);
2199 }
2200 hl = strlen(hname);
2201 if (hl > 0 && hname[hl-1] == '.')
2202 hname[--hl] = '\0';
2203 /* RFC 5424 prefers logging FQDNs. */
2204 if (IS_RFC3164_FORMAT)
2205 trimdomain(hname, hl);
2206 return (hname);
2207 }
2208
2209 /*
2210 * Print syslogd errors some place.
2211 */
2212 void
logerror(const char * msg)2213 logerror(const char *msg)
2214 {
2215 char buf[512];
2216 static int recursed = 0;
2217
2218 /* If there's an error while trying to log an error, give up. */
2219 if (recursed)
2220 return;
2221 recursed++;
2222 if (errno != 0) {
2223 (void)snprintf(buf, sizeof(buf), "%s: %s", msg,
2224 strerror(errno));
2225 msg = buf;
2226 }
2227 errno = 0;
2228 dprintf("%s\n", msg);
2229 logmsg(LOG_SYSLOG|LOG_ERR, NULL, LocalHostName, "syslogd", NULL, NULL,
2230 NULL, msg, 0);
2231 recursed--;
2232 }
2233
2234 static void
die(int signo)2235 die(int signo)
2236 {
2237 struct filed *f;
2238 struct socklist *sl;
2239 char buf[100];
2240
2241 STAILQ_FOREACH(f, &fhead, next) {
2242 /* flush any pending output */
2243 if (f->f_prevcount)
2244 fprintlog_successive(f, 0);
2245 }
2246 if (signo) {
2247 dprintf("syslogd: exiting on signal %d\n", signo);
2248 (void)snprintf(buf, sizeof(buf), "exiting on signal %d", signo);
2249 errno = 0;
2250 logerror(buf);
2251 }
2252 STAILQ_FOREACH(sl, &shead, next) {
2253 if (sl->sl_sa != NULL && sl->sl_family == AF_LOCAL) {
2254 if (unlinkat(sl->sl_dirfd, sl->sl_name, 0) == -1) {
2255 dprintf("Failed to unlink %s: %s", sl->sl_name,
2256 strerror(errno));
2257 }
2258 }
2259 }
2260 pidfile_remove(pfh);
2261
2262 exit(1);
2263 }
2264
2265 static int
configfiles(const struct dirent * dp)2266 configfiles(const struct dirent *dp)
2267 {
2268 const char *p;
2269 size_t ext_len;
2270
2271 if (dp->d_name[0] == '.')
2272 return (0);
2273
2274 ext_len = sizeof(include_ext) -1;
2275
2276 if (dp->d_namlen <= ext_len)
2277 return (0);
2278
2279 p = &dp->d_name[dp->d_namlen - ext_len];
2280 if (strcmp(p, include_ext) != 0)
2281 return (0);
2282
2283 return (1);
2284 }
2285
2286 static nvlist_t *
parseconfigfile(FILE * cf,bool allow_includes,nvlist_t * nvl_conf)2287 parseconfigfile(FILE *cf, bool allow_includes, nvlist_t *nvl_conf)
2288 {
2289 FILE *cf2;
2290 struct dirent **ent;
2291 char cline[LINE_MAX];
2292 char host[MAXHOSTNAMELEN];
2293 char prog[LINE_MAX];
2294 char file[MAXPATHLEN];
2295 char pfilter[LINE_MAX];
2296 char *p, *tmp;
2297 int i, nents;
2298 size_t include_len;
2299
2300 /*
2301 * Foreach line in the conf table, open that file.
2302 */
2303 include_len = sizeof(include_str) - 1;
2304 (void)strlcpy(host, "*", sizeof(host));
2305 (void)strlcpy(prog, "*", sizeof(prog));
2306 (void)strlcpy(pfilter, "*", sizeof(pfilter));
2307 while (fgets(cline, sizeof(cline), cf) != NULL) {
2308 /*
2309 * check for end-of-section, comments, strip off trailing
2310 * spaces and newline character. #!prog is treated specially:
2311 * following lines apply only to that program.
2312 */
2313 for (p = cline; isspace(*p); ++p)
2314 continue;
2315 if (*p == '\0')
2316 continue;
2317 if (allow_includes &&
2318 strncmp(p, include_str, include_len) == 0 &&
2319 isspace(p[include_len])) {
2320 p += include_len;
2321 while (isspace(*p))
2322 p++;
2323 tmp = p;
2324 while (*tmp != '\0' && !isspace(*tmp))
2325 tmp++;
2326 *tmp = '\0';
2327 dprintf("Trying to include files in '%s'\n", p);
2328 nents = scandir(p, &ent, configfiles, alphasort);
2329 if (nents == -1) {
2330 dprintf("Unable to open '%s': %s\n", p,
2331 strerror(errno));
2332 continue;
2333 }
2334 for (i = 0; i < nents; i++) {
2335 if (snprintf(file, sizeof(file), "%s/%s", p,
2336 ent[i]->d_name) >= (int)sizeof(file)) {
2337 dprintf("ignoring path too long: "
2338 "'%s/%s'\n", p, ent[i]->d_name);
2339 free(ent[i]);
2340 continue;
2341 }
2342 free(ent[i]);
2343 cf2 = fopen(file, "r");
2344 if (cf2 == NULL)
2345 continue;
2346 dprintf("reading %s\n", file);
2347 parseconfigfile(cf2, false, nvl_conf);
2348 fclose(cf2);
2349 }
2350 free(ent);
2351 continue;
2352 }
2353 if (*p == '#') {
2354 p++;
2355 if (*p == '\0' || strchr("!+-:", *p) == NULL)
2356 continue;
2357 }
2358 if (*p == '+' || *p == '-') {
2359 host[0] = *p++;
2360 while (isspace(*p))
2361 p++;
2362 if (*p == '\0' || *p == '*') {
2363 (void)strlcpy(host, "*", sizeof(host));
2364 continue;
2365 }
2366 if (*p == '@')
2367 p = LocalHostName;
2368 for (i = 1; i < MAXHOSTNAMELEN - 1; i++) {
2369 if (!isalnum(*p) && *p != '.' && *p != '-'
2370 && *p != ',' && *p != ':' && *p != '%')
2371 break;
2372 host[i] = *p++;
2373 }
2374 host[i] = '\0';
2375 continue;
2376 }
2377 if (*p == '!') {
2378 p++;
2379 while (isspace(*p))
2380 p++;
2381 if (*p == '\0' || *p == '*') {
2382 (void)strlcpy(prog, "*", sizeof(prog));
2383 continue;
2384 }
2385 for (i = 0; i < LINE_MAX - 1; i++) {
2386 if (!isprint(p[i]) || isspace(p[i]))
2387 break;
2388 prog[i] = p[i];
2389 }
2390 prog[i] = '\0';
2391 continue;
2392 }
2393 if (*p == ':') {
2394 p++;
2395 while (isspace(*p))
2396 p++;
2397 if (*p == '\0' || *p == '*') {
2398 (void)strlcpy(pfilter, "*", sizeof(pfilter));
2399 continue;
2400 }
2401 (void)strlcpy(pfilter, p, sizeof(pfilter));
2402 continue;
2403 }
2404 for (p = cline + 1; *p != '\0'; p++) {
2405 if (*p != '#')
2406 continue;
2407 if (*(p - 1) == '\\') {
2408 strcpy(p - 1, p);
2409 p--;
2410 continue;
2411 }
2412 *p = '\0';
2413 break;
2414 }
2415 for (i = strlen(cline) - 1; i >= 0 && isspace(cline[i]); i--)
2416 cline[i] = '\0';
2417 cfline(nvl_conf, cline, prog, host, pfilter);
2418
2419 }
2420 return (nvl_conf);
2421 }
2422
2423 /*
2424 * Read configuration file and create filed entries for each line.
2425 *
2426 * Note: This function is wrapped by cap_readconfigfile() when Capsicum
2427 * support is enabled so resources can be acquired outside of the security
2428 * sandbox.
2429 */
2430 nvlist_t *
readconfigfile(const char * path)2431 readconfigfile(const char *path)
2432 {
2433 FILE *cf;
2434 nvlist_t *nvl_conf = nvlist_create(0);
2435
2436 if ((cf = fopen(path, "r")) != NULL) {
2437 nvl_conf = parseconfigfile(cf, true, nvl_conf);
2438 (void)fclose(cf);
2439 } else {
2440 dprintf("cannot open %s\n", path);
2441 cfline(nvl_conf, "*.ERR\t/dev/console", "*", "*", "*");
2442 cfline(nvl_conf, "*.PANIC\t*", "*", "*", "*");
2443 }
2444 return (nvl_conf);
2445 }
2446
2447 static void
fill_flist(nvlist_t * nvl_conf)2448 fill_flist(nvlist_t *nvl_conf)
2449 {
2450 const nvlist_t * const *filed_list;
2451 size_t nfileds;
2452
2453 if (!nvlist_exists_nvlist_array(nvl_conf, "filed_list"))
2454 return;
2455 filed_list = nvlist_get_nvlist_array(nvl_conf, "filed_list",
2456 &nfileds);
2457 for (size_t i = 0; i < nfileds; ++i) {
2458 struct filed *f;
2459
2460 f = nvlist_to_filed(filed_list[i]);
2461 STAILQ_INSERT_TAIL(&fhead, f, next);
2462 }
2463 nvlist_destroy(nvl_conf);
2464 }
2465
2466 /*
2467 * Close all open log files.
2468 */
2469 void
closelogfiles(void)2470 closelogfiles(void)
2471 {
2472 struct filed *f;
2473
2474 while (!STAILQ_EMPTY(&fhead)) {
2475 f = STAILQ_FIRST(&fhead);
2476 STAILQ_REMOVE_HEAD(&fhead, next);
2477
2478 /* flush any pending output */
2479 if (f->f_prevcount)
2480 fprintlog_successive(f, 0);
2481
2482 switch (f->f_type) {
2483 case F_FILE:
2484 case F_FORW:
2485 case F_CONSOLE:
2486 case F_TTY:
2487 case F_PIPE:
2488 close_filed(f);
2489 break;
2490 default:
2491 break;
2492 }
2493
2494 if (f->f_prop_filter) {
2495 switch (f->f_prop_filter->cmp_type) {
2496 case FILT_CMP_REGEX:
2497 regfree(f->f_prop_filter->pflt_re);
2498 free(f->f_prop_filter->pflt_re);
2499 /* FALLTHROUGH */
2500 case FILT_CMP_CONTAINS:
2501 case FILT_CMP_EQUAL:
2502 case FILT_CMP_STARTS:
2503 free(f->f_prop_filter->pflt_strval);
2504 break;
2505 }
2506 free(f->f_prop_filter);
2507 }
2508
2509 /*
2510 * If a piped process is running, then defer the filed
2511 * cleanup until it exits.
2512 */
2513 if (f->f_type != F_PIPE || f->f_procdesc == -1)
2514 free(f);
2515 }
2516 }
2517
2518 static void
syslogd_cap_enter(void)2519 syslogd_cap_enter(void)
2520 {
2521 #ifdef WITH_CASPER
2522 cap_channel_t *cap_casper;
2523 cap_net_limit_t *limit;
2524
2525 cap_casper = cap_init();
2526 if (cap_casper == NULL)
2527 err(1, "Failed to communicate with libcasper");
2528 cap_syslogd = cap_service_open(cap_casper, "syslogd.casper");
2529 if (cap_syslogd == NULL)
2530 err(1, "Failed to open the syslogd.casper libcasper service");
2531 cap_net = cap_service_open(cap_casper, "system.net");
2532 if (cap_net == NULL)
2533 err(1, "Failed to open the system.net libcasper service");
2534 cap_close(cap_casper);
2535 limit = cap_net_limit_init(cap_net,
2536 CAPNET_ADDR2NAME | CAPNET_NAME2ADDR);
2537 if (limit == NULL)
2538 err(1, "Failed to create system.net limits");
2539 if (cap_net_limit(limit) == -1)
2540 err(1, "Failed to apply system.net limits");
2541 caph_cache_tzdata();
2542 caph_cache_catpages();
2543 if (caph_enter_casper() == -1)
2544 err(1, "Failed to enter capability mode");
2545 #endif
2546 }
2547
2548 /*
2549 * INIT -- Initialize syslogd from configuration table
2550 */
2551 static void
init(bool reload)2552 init(bool reload)
2553 {
2554 int i;
2555 char *p;
2556 char oldLocalHostName[MAXHOSTNAMELEN];
2557 char hostMsg[2*MAXHOSTNAMELEN+40];
2558 char bootfileMsg[MAXLINE + 1];
2559
2560 dprintf("init\n");
2561
2562 /*
2563 * Load hostname (may have changed).
2564 */
2565 if (reload)
2566 (void)strlcpy(oldLocalHostName, LocalHostName,
2567 sizeof(oldLocalHostName));
2568 if (gethostname(LocalHostName, sizeof(LocalHostName)))
2569 err(EX_OSERR, "gethostname() failed");
2570 if ((p = strchr(LocalHostName, '.')) != NULL) {
2571 /* RFC 5424 prefers logging FQDNs. */
2572 if (IS_RFC3164_FORMAT)
2573 *p = '\0';
2574 LocalDomain = p + 1;
2575 } else {
2576 LocalDomain = "";
2577 }
2578
2579 #ifndef WITH_CASPER
2580 /*
2581 * XXX: Disable when running in capability mode, for now.
2582 * This requires a new interface in the tzcode module to
2583 * get running without capability violations.
2584 *
2585 * Load / reload timezone data (in case it changed).
2586 *
2587 * Just calling tzset() again does not work, the timezone code
2588 * caches the result. However, by setting the TZ variable, one
2589 * can defeat the caching and have the timezone code really
2590 * reload the timezone data. Respect any initial setting of
2591 * TZ, in case the system is configured specially.
2592 */
2593 dprintf("loading timezone data via tzset()\n");
2594 if (getenv("TZ")) {
2595 tzset();
2596 } else {
2597 setenv("TZ", ":/etc/localtime", 1);
2598 tzset();
2599 unsetenv("TZ");
2600 }
2601 #endif
2602
2603 if (!reload) {
2604 struct tm tm;
2605 /* Cache time files before entering capability mode. */
2606 timegm(&tm);
2607 syslogd_cap_enter();
2608 }
2609
2610 Initialized = false;
2611 closelogfiles();
2612 fill_flist(cap_readconfigfile(cap_syslogd, ConfFile));
2613 Initialized = true;
2614
2615 if (Debug) {
2616 struct filed *f;
2617 int port;
2618
2619 STAILQ_FOREACH(f, &fhead, next) {
2620 for (i = 0; i <= LOG_NFACILITIES; i++)
2621 if (f->f_pmask[i] == INTERNAL_NOPRI)
2622 printf("X ");
2623 else
2624 printf("%d ", f->f_pmask[i]);
2625 printf("%s: ", TypeNames[f->f_type]);
2626 switch (f->f_type) {
2627 case F_FILE:
2628 printf("%s", f->f_fname);
2629 break;
2630
2631 case F_CONSOLE:
2632 case F_TTY:
2633 printf("%s%s", _PATH_DEV, f->f_fname);
2634 break;
2635
2636 case F_FORW: {
2637 int domain, sockfd = f->f_addr_fds[0];
2638 socklen_t len = sizeof(domain);
2639
2640 if (getsockopt(sockfd, SOL_SOCKET, SO_DOMAIN,
2641 &domain, &len) < 0)
2642 err(1, "getsockopt");
2643
2644 switch (domain) {
2645 #ifdef INET
2646 case AF_INET: {
2647 struct sockaddr_in sin;
2648
2649 len = sizeof(sin);
2650 if (getpeername(sockfd, (struct sockaddr *)&sin, &len) < 0)
2651 err(1, "getpeername");
2652 port = ntohs(sin.sin_port);
2653 break;
2654 }
2655 #endif
2656 #ifdef INET6
2657 case AF_INET6: {
2658 struct sockaddr_in6 sin6;
2659
2660 len = sizeof(sin6);
2661 if (getpeername(sockfd, (struct sockaddr *)&sin6, &len) < 0)
2662 err(1, "getpeername");
2663 port = ntohs(sin6.sin6_port);
2664 break;
2665 }
2666 #endif
2667 default:
2668 port = 0;
2669 }
2670 if (port != 514) {
2671 printf("%s:%d", f->f_hname, port);
2672 } else {
2673 printf("%s", f->f_hname);
2674 }
2675 break;
2676 }
2677
2678 case F_PIPE:
2679 printf("%s", f->f_pname);
2680 break;
2681
2682 case F_USERS:
2683 for (i = 0; i < MAXUNAMES && *f->f_uname[i]; i++)
2684 printf("%s, ", f->f_uname[i]);
2685 break;
2686 default:
2687 break;
2688 }
2689 if (*f->f_program != '\0')
2690 printf(" (%s)", f->f_program);
2691 printf("\n");
2692 }
2693 }
2694
2695 logmsg(LOG_SYSLOG | LOG_INFO, NULL, LocalHostName, "syslogd", NULL,
2696 NULL, NULL, "restart", 0);
2697 dprintf("syslogd: restarted\n");
2698 /*
2699 * Log a change in hostname, but only on reload.
2700 */
2701 if (reload && strcmp(oldLocalHostName, LocalHostName) != 0) {
2702 (void)snprintf(hostMsg, sizeof(hostMsg),
2703 "hostname changed, \"%s\" to \"%s\"",
2704 oldLocalHostName, LocalHostName);
2705 logmsg(LOG_SYSLOG | LOG_INFO, NULL, LocalHostName, "syslogd",
2706 NULL, NULL, NULL, hostMsg, 0);
2707 dprintf("%s\n", hostMsg);
2708 }
2709 /*
2710 * Log the kernel boot file if we aren't going to use it as
2711 * the prefix, and if this is *not* a reload.
2712 */
2713 if (!reload && !use_bootfile) {
2714 (void)snprintf(bootfileMsg, sizeof(bootfileMsg),
2715 "kernel boot file is %s", bootfile);
2716 logmsg(LOG_KERN | LOG_INFO, NULL, LocalHostName, "syslogd",
2717 NULL, NULL, NULL, bootfileMsg, 0);
2718 dprintf("%s\n", bootfileMsg);
2719 }
2720 }
2721
2722 /*
2723 * Compile property-based filter.
2724 */
2725 static nvlist_t *
prop_filter_compile(const char * cfilter)2726 prop_filter_compile(const char *cfilter)
2727 {
2728 nvlist_t *nvl_pfilter;
2729 struct prop_filter pfilter = { };
2730 char *filter, *filter_endpos, *filter_begpos, *p;
2731 char **ap, *argv[2] = {NULL, NULL};
2732 int escaped;
2733
2734 filter = strdup(cfilter);
2735 if (filter == NULL)
2736 err(1, "strdup");
2737 filter_begpos = filter;
2738
2739 /*
2740 * Here's some filter examples mentioned in syslog.conf(5)
2741 * 'msg, contains, ".*Deny.*"'
2742 * 'programname, regex, "^bird6?$"'
2743 * 'hostname, icase_ereregex, "^server-(dcA|podB)-rack1[0-9]{2}\\..*"'
2744 */
2745
2746 /*
2747 * Split filter into 3 parts: property name (argv[0]),
2748 * cmp type (argv[1]) and lvalue for comparison (filter).
2749 */
2750 for (ap = argv; (*ap = strsep(&filter, ", \t\n")) != NULL;) {
2751 if (**ap != '\0')
2752 if (++ap >= &argv[2])
2753 break;
2754 }
2755
2756 if (argv[0] == NULL || argv[1] == NULL) {
2757 dprintf("filter parse error");
2758 goto error;
2759 }
2760
2761 /* fill in prop_type */
2762 if (strcasecmp(argv[0], "msg") == 0)
2763 pfilter.prop_type = FILT_PROP_MSG;
2764 else if (strcasecmp(argv[0], "hostname") == 0)
2765 pfilter.prop_type = FILT_PROP_HOSTNAME;
2766 else if (strcasecmp(argv[0], "source") == 0)
2767 pfilter.prop_type = FILT_PROP_HOSTNAME;
2768 else if (strcasecmp(argv[0], "programname") == 0)
2769 pfilter.prop_type = FILT_PROP_PROGNAME;
2770 else {
2771 dprintf("unknown property");
2772 goto error;
2773 }
2774
2775 /* full in cmp_flags (i.e. !contains, icase_regex, etc.) */
2776 if (*argv[1] == '!') {
2777 pfilter.cmp_flags |= FILT_FLAG_EXCLUDE;
2778 argv[1]++;
2779 }
2780 if (strncasecmp(argv[1], "icase_", (sizeof("icase_") - 1)) == 0) {
2781 pfilter.cmp_flags |= FILT_FLAG_ICASE;
2782 argv[1] += sizeof("icase_") - 1;
2783 }
2784
2785 /* fill in cmp_type */
2786 if (strcasecmp(argv[1], "contains") == 0)
2787 pfilter.cmp_type = FILT_CMP_CONTAINS;
2788 else if (strcasecmp(argv[1], "isequal") == 0)
2789 pfilter.cmp_type = FILT_CMP_EQUAL;
2790 else if (strcasecmp(argv[1], "startswith") == 0)
2791 pfilter.cmp_type = FILT_CMP_STARTS;
2792 else if (strcasecmp(argv[1], "regex") == 0)
2793 pfilter.cmp_type = FILT_CMP_REGEX;
2794 else if (strcasecmp(argv[1], "ereregex") == 0) {
2795 pfilter.cmp_type = FILT_CMP_REGEX;
2796 pfilter.cmp_flags |= FILT_FLAG_EXTENDED;
2797 } else {
2798 dprintf("unknown cmp function");
2799 goto error;
2800 }
2801
2802 /*
2803 * Handle filter value
2804 */
2805
2806 /* ' ".*Deny.*"' */
2807 /* remove leading whitespace and check for '"' next character */
2808 filter += strspn(filter, ", \t\n");
2809 if (*filter != '"' || strlen(filter) < 3) {
2810 dprintf("property value parse error");
2811 goto error;
2812 }
2813 filter++;
2814
2815 /* '.*Deny.*"' */
2816 /* process possible backslash (\") escaping */
2817 escaped = 0;
2818 filter_endpos = filter;
2819 for (p = filter; *p != '\0'; p++) {
2820 if (*p == '\\' && !escaped) {
2821 escaped = 1;
2822 /* do not shift filter_endpos */
2823 continue;
2824 }
2825 if (*p == '"' && !escaped) {
2826 p++;
2827 break;
2828 }
2829 /* we've seen some esc symbols, need to compress the line */
2830 if (filter_endpos != p)
2831 *filter_endpos = *p;
2832
2833 filter_endpos++;
2834 escaped = 0;
2835 }
2836
2837 *filter_endpos = '\0';
2838 /* '.*Deny.*' */
2839
2840 /* We should not have anything but whitespace left after closing '"' */
2841 if (*p != '\0' && strspn(p, " \t\n") != strlen(p)) {
2842 dprintf("property value parse error");
2843 goto error;
2844 }
2845
2846 pfilter.pflt_strval = filter;
2847 /* An nvlist is heap allocated heap here. */
2848 nvl_pfilter = prop_filter_to_nvlist(&pfilter);
2849
2850 free(filter_begpos);
2851 return (nvl_pfilter);
2852 error:
2853 free(filter_begpos);
2854 return (NULL);
2855 }
2856
2857 static const char *
parse_selector(const char * p,struct filed * f)2858 parse_selector(const char *p, struct filed *f)
2859 {
2860 int i, pri;
2861 int pri_done = 0, pri_cmp = 0, pri_invert = 0;
2862 char *bp, buf[LINE_MAX];
2863 const char *q;
2864
2865 /* find the end of this facility name list */
2866 for (q = p; *q && *q != '\t' && *q != ' ' && *q++ != '.';)
2867 continue;
2868
2869 /* get the priority comparison */
2870 if (*q == '!') {
2871 pri_invert = 1;
2872 q++;
2873 }
2874 while (!pri_done) {
2875 switch (*q) {
2876 case '<':
2877 pri_cmp |= PRI_LT;
2878 q++;
2879 break;
2880 case '=':
2881 pri_cmp |= PRI_EQ;
2882 q++;
2883 break;
2884 case '>':
2885 pri_cmp |= PRI_GT;
2886 q++;
2887 break;
2888 default:
2889 pri_done++;
2890 break;
2891 }
2892 }
2893
2894 /* collect priority name */
2895 for (bp = buf; *q != '\0' && !strchr("\t,; ", *q); )
2896 *bp++ = *q++;
2897 *bp = '\0';
2898
2899 /* skip cruft */
2900 while (strchr(",;", *q))
2901 q++;
2902
2903 /* decode priority name */
2904 if (*buf == '*') {
2905 pri = LOG_PRIMASK;
2906 pri_cmp = PRI_LT | PRI_EQ | PRI_GT;
2907 } else {
2908 /* Ignore trailing spaces. */
2909 for (i = strlen(buf) - 1; i >= 0 && buf[i] == ' '; i--)
2910 buf[i] = '\0';
2911
2912 pri = decode(buf, prioritynames);
2913 if (pri < 0) {
2914 warnx("unknown priority name \"%s\", setting to 'info'",
2915 buf);
2916 pri = LOG_INFO;
2917 }
2918 }
2919 if (!pri_cmp)
2920 pri_cmp = UniquePriority ? PRI_EQ : (PRI_EQ | PRI_GT);
2921 if (pri_invert)
2922 pri_cmp ^= PRI_LT | PRI_EQ | PRI_GT;
2923
2924 /* scan facilities */
2925 while (*p != '\0' && !strchr("\t.; ", *p)) {
2926 for (bp = buf; *p != '\0' && !strchr("\t,;. ", *p); )
2927 *bp++ = *p++;
2928 *bp = '\0';
2929
2930 if (*buf == '*') {
2931 for (i = 0; i < LOG_NFACILITIES; i++) {
2932 f->f_pmask[i] = pri;
2933 f->f_pcmp[i] = pri_cmp;
2934 }
2935 } else {
2936 i = decode(buf, facilitynames);
2937 if (i < 0) {
2938 warnx("unknown facility name \"%s\", ignoring",
2939 buf);
2940 } else {
2941 f->f_pmask[i >> 3] = pri;
2942 f->f_pcmp[i >> 3] = pri_cmp;
2943 }
2944 }
2945 while (*p == ',' || *p == ' ')
2946 p++;
2947 }
2948 return (q);
2949 }
2950
2951 static int
maybe_dup_forw_socket(const nvlist_t * nvl,const struct sockaddr * rsa,const struct sockaddr * lsa)2952 maybe_dup_forw_socket(const nvlist_t *nvl, const struct sockaddr *rsa,
2953 const struct sockaddr *lsa)
2954 {
2955 const nvlist_t * const *line;
2956 size_t linecount;
2957
2958 if (!nvlist_exists_nvlist_array(nvl, "filed_list"))
2959 return (-1);
2960 line = nvlist_get_nvlist_array(nvl, "filed_list", &linecount);
2961 for (size_t i = 0; i < linecount; i++) {
2962 const struct forw_addr *forw;
2963 const int *fdp;
2964 size_t fdc;
2965
2966 if (nvlist_get_number(line[i], "f_type") != F_FORW)
2967 continue;
2968 fdp = nvlist_get_descriptor_array(line[i], "f_addr_fds", &fdc);
2969 forw = nvlist_get_binary(line[i], "f_addrs", NULL);
2970 for (size_t j = 0; j < fdc; j++) {
2971 int fd;
2972
2973 if (memcmp(&forw[j].raddr, rsa, rsa->sa_len) != 0 ||
2974 memcmp(&forw[j].laddr, lsa, lsa->sa_len) != 0)
2975 continue;
2976
2977 fd = dup(fdp[j]);
2978 if (fd < 0)
2979 err(1, "dup");
2980 return (fd);
2981 }
2982 }
2983
2984 return (-1);
2985 }
2986
2987 /*
2988 * Create a UDP socket that will forward messages from "lai" to "ai".
2989 * Capsicum doesn't permit connect() or sendto(), so we can't reuse the (bound)
2990 * sockets used to listen for messages.
2991 */
2992 static int
make_forw_socket(const nvlist_t * nvl,struct addrinfo * ai,struct addrinfo * lai)2993 make_forw_socket(const nvlist_t *nvl, struct addrinfo *ai, struct addrinfo *lai)
2994 {
2995 int s;
2996
2997 s = socket(ai->ai_family, ai->ai_socktype, 0);
2998 if (s < 0)
2999 err(1, "socket");
3000 if (lai != NULL) {
3001 if (setsockopt(s, SOL_SOCKET, SO_REUSEPORT, &(int){1},
3002 sizeof(int)) < 0)
3003 err(1, "setsockopt");
3004 if (bind(s, lai->ai_addr, lai->ai_addrlen) < 0)
3005 err(1, "bind");
3006 }
3007 if (connect(s, ai->ai_addr, ai->ai_addrlen) < 0) {
3008 if (errno == EADDRINUSE && lai != NULL) {
3009 int s1;
3010
3011 s1 = maybe_dup_forw_socket(nvl, ai->ai_addr,
3012 lai->ai_addr);
3013 if (s1 < 0)
3014 errc(1, EADDRINUSE, "connect");
3015 (void)close(s);
3016 s = s1;
3017 } else {
3018 err(1, "connect");
3019 }
3020 }
3021 /* Make it a write-only socket. */
3022 if (shutdown(s, SHUT_RD) < 0)
3023 err(1, "shutdown");
3024
3025 return (s);
3026 }
3027
3028 static void
make_forw_socket_array(const nvlist_t * nvl,struct filed * f,struct addrinfo * res)3029 make_forw_socket_array(const nvlist_t *nvl, struct filed *f,
3030 struct addrinfo *res)
3031 {
3032 struct addrinfo *ai;
3033 size_t i;
3034
3035 f->f_num_addr_fds = 0;
3036
3037 /* How many sockets do we need? */
3038 for (ai = res; ai != NULL; ai = ai->ai_next) {
3039 struct socklist *boundsock;
3040 int count;
3041
3042 count = 0;
3043 STAILQ_FOREACH(boundsock, &shead, next) {
3044 if (boundsock->sl_ai.ai_family == ai->ai_family)
3045 count++;
3046 }
3047 if (count == 0)
3048 count = 1;
3049 f->f_num_addr_fds += count;
3050 }
3051
3052 f->f_addr_fds = calloc(f->f_num_addr_fds, sizeof(*f->f_addr_fds));
3053 f->f_addrs = calloc(f->f_num_addr_fds, sizeof(*f->f_addrs));
3054 if (f->f_addr_fds == NULL || f->f_addrs == NULL)
3055 err(1, "malloc failed");
3056
3057 /*
3058 * Create our forwarding sockets: for each bound socket
3059 * belonging to the destination address, create one socket
3060 * connected to the destination and bound to the address of the
3061 * listening socket.
3062 */
3063 i = 0;
3064 for (ai = res; ai != NULL; ai = ai->ai_next) {
3065 struct socklist *boundsock;
3066 int count;
3067
3068 count = 0;
3069 STAILQ_FOREACH(boundsock, &shead, next) {
3070 if (boundsock->sl_ai.ai_family ==
3071 ai->ai_family) {
3072 memcpy(&f->f_addrs[i].raddr, ai->ai_addr,
3073 ai->ai_addrlen);
3074 memcpy(&f->f_addrs[i].laddr,
3075 boundsock->sl_ai.ai_addr,
3076 boundsock->sl_ai.ai_addrlen);
3077 f->f_addr_fds[i++] = make_forw_socket(nvl, ai,
3078 &boundsock->sl_ai);
3079 count++;
3080 }
3081 }
3082 if (count == 0) {
3083 memcpy(&f->f_addrs[i].raddr, ai->ai_addr,
3084 ai->ai_addrlen);
3085 f->f_addr_fds[i++] = make_forw_socket(nvl, ai, NULL);
3086 }
3087 }
3088 assert(i == f->f_num_addr_fds);
3089 }
3090
3091 static void
parse_action(const nvlist_t * nvl,const char * p,struct filed * f)3092 parse_action(const nvlist_t *nvl, const char *p, struct filed *f)
3093 {
3094 struct addrinfo hints, *res;
3095 size_t i;
3096 int error;
3097 const char *q;
3098 bool syncfile;
3099
3100 if (*p == '-') {
3101 syncfile = false;
3102 p++;
3103 } else
3104 syncfile = true;
3105
3106 f->f_file = -1;
3107 switch (*p) {
3108 case '@':
3109 {
3110 char *tp;
3111 char endkey = ':';
3112 /*
3113 * scan forward to see if there is a port defined.
3114 * so we can't use strlcpy..
3115 */
3116 i = sizeof(f->f_hname);
3117 tp = f->f_hname;
3118 p++;
3119
3120 /*
3121 * an ipv6 address should start with a '[' in that case
3122 * we should scan for a ']'
3123 */
3124 if (*p == '[') {
3125 p++;
3126 endkey = ']';
3127 }
3128 while (*p && (*p != endkey) && (i-- > 0)) {
3129 *tp++ = *p++;
3130 }
3131 if (endkey == ']' && *p == endkey)
3132 p++;
3133 *tp = '\0';
3134 }
3135 /* See if we copied a domain and have a port */
3136 if (*p == ':')
3137 p++;
3138 else
3139 p = NULL;
3140
3141 hints = (struct addrinfo){
3142 .ai_family = family,
3143 .ai_socktype = SOCK_DGRAM
3144 };
3145 error = getaddrinfo(f->f_hname, p ? p : "syslog", &hints, &res);
3146 if (error) {
3147 dprintf("%s\n", gai_strerror(error));
3148 break;
3149 }
3150 make_forw_socket_array(nvl, f, res);
3151 freeaddrinfo(res);
3152 f->f_type = F_FORW;
3153 break;
3154
3155 case '/':
3156 if ((f->f_file = open(p, logflags, 0600)) < 0) {
3157 f->f_type = F_UNUSED;
3158 dprintf("%s\n", p);
3159 break;
3160 }
3161 if (syncfile)
3162 f->f_flags |= FFLAG_SYNC;
3163 if (isatty(f->f_file)) {
3164 if (strcmp(p, _PATH_CONSOLE) == 0)
3165 f->f_type = F_CONSOLE;
3166 else
3167 f->f_type = F_TTY;
3168 (void)strlcpy(f->f_fname, p + sizeof(_PATH_DEV) - 1,
3169 sizeof(f->f_fname));
3170 } else {
3171 (void)strlcpy(f->f_fname, p, sizeof(f->f_fname));
3172 f->f_type = F_FILE;
3173 }
3174 break;
3175
3176 case '|':
3177 f->f_procdesc = -1;
3178 (void)strlcpy(f->f_pname, p + 1, sizeof(f->f_pname));
3179 f->f_type = F_PIPE;
3180 break;
3181
3182 case '*':
3183 f->f_type = F_WALL;
3184 break;
3185
3186 default:
3187 for (i = 0; i < MAXUNAMES && *p; i++) {
3188 for (q = p; *q && *q != ','; )
3189 q++;
3190 (void)strncpy(f->f_uname[i], p, MAXLOGNAME - 1);
3191 if ((q - p) >= MAXLOGNAME)
3192 f->f_uname[i][MAXLOGNAME - 1] = '\0';
3193 else
3194 f->f_uname[i][q - p] = '\0';
3195 while (*q == ',' || *q == ' ')
3196 q++;
3197 p = q;
3198 }
3199 f->f_type = F_USERS;
3200 break;
3201 }
3202 }
3203
3204 /*
3205 * Convert a configuration file line to an nvlist and add to "nvl", which
3206 * contains all of the log configuration processed thus far.
3207 */
3208 static void
cfline(nvlist_t * nvl,const char * line,const char * prog,const char * host,const char * pfilter)3209 cfline(nvlist_t *nvl, const char *line, const char *prog, const char *host,
3210 const char *pfilter)
3211 {
3212 nvlist_t *nvl_filed;
3213 struct filed f = { };
3214 const char *p;
3215
3216 dprintf("cfline(\"%s\", f, \"%s\", \"%s\", \"%s\")\n", line, prog,
3217 host, pfilter);
3218
3219 for (int i = 0; i <= LOG_NFACILITIES; i++)
3220 f.f_pmask[i] = INTERNAL_NOPRI;
3221
3222 /* save hostname if any */
3223 if (host != NULL && *host != '*') {
3224 int hl;
3225
3226 strlcpy(f.f_host, host, sizeof(f.f_host));
3227 hl = strlen(f.f_host);
3228 if (hl > 0 && f.f_host[hl-1] == '.')
3229 f.f_host[--hl] = '\0';
3230 /* RFC 5424 prefers logging FQDNs. */
3231 if (IS_RFC3164_FORMAT)
3232 trimdomain(f.f_host, hl);
3233 }
3234
3235 /* save program name if any */
3236 if (prog != NULL && *prog != '*')
3237 strlcpy(f.f_program, prog, sizeof(f.f_program));
3238
3239 /* scan through the list of selectors */
3240 for (p = line; *p != '\0' && *p != '\t' && *p != ' ';)
3241 p = parse_selector(p, &f);
3242
3243 /* skip to action part */
3244 while (*p == '\t' || *p == ' ')
3245 p++;
3246 parse_action(nvl, p, &f);
3247
3248 /* An nvlist is heap allocated heap here. */
3249 nvl_filed = filed_to_nvlist(&f);
3250 close_filed(&f);
3251
3252 if (pfilter && *pfilter != '*') {
3253 nvlist_t *nvl_pfilter;
3254
3255 nvl_pfilter = prop_filter_compile(pfilter);
3256 if (nvl_pfilter == NULL)
3257 err(1, "filter compile error");
3258 nvlist_add_nvlist(nvl_filed, "f_prop_filter", nvl_pfilter);
3259 }
3260
3261 nvlist_append_nvlist_array(nvl, "filed_list", nvl_filed);
3262 nvlist_destroy(nvl_filed);
3263 }
3264
3265 /*
3266 * Decode a symbolic name to a numeric value
3267 */
3268 static int
decode(const char * name,const CODE * codetab)3269 decode(const char *name, const CODE *codetab)
3270 {
3271 const CODE *c;
3272 char *p, buf[40];
3273
3274 if (isdigit(*name))
3275 return (atoi(name));
3276
3277 for (p = buf; *name && p < &buf[sizeof(buf) - 1]; p++, name++) {
3278 if (isupper(*name))
3279 *p = tolower(*name);
3280 else
3281 *p = *name;
3282 }
3283 *p = '\0';
3284 for (c = codetab; c->c_name; c++)
3285 if (!strcmp(buf, c->c_name))
3286 return (c->c_val);
3287
3288 return (-1);
3289 }
3290
3291 static void
markit(void)3292 markit(void)
3293 {
3294 struct filed *f;
3295 struct deadq_entry *dq, *dq0;
3296
3297 now = time((time_t *)NULL);
3298 MarkSeq += TIMERINTVL;
3299 if (MarkSeq >= MarkInterval) {
3300 logmsg(LOG_INFO, NULL, LocalHostName, NULL, NULL, NULL, NULL,
3301 "-- MARK --", MARK);
3302 MarkSeq = 0;
3303 }
3304
3305 STAILQ_FOREACH(f, &fhead, next) {
3306 if (f->f_prevcount && now >= REPEATTIME(f)) {
3307 dprintf("flush %s: repeated %d times, %d sec.\n",
3308 TypeNames[f->f_type], f->f_prevcount,
3309 repeatinterval[f->f_repeatcount]);
3310 fprintlog_successive(f, 0);
3311 BACKOFF(f);
3312 }
3313 }
3314
3315 /* Walk the dead queue, and see if we should signal somebody. */
3316 TAILQ_FOREACH_SAFE(dq, &deadq_head, dq_entries, dq0) {
3317 switch (dq->dq_timeout) {
3318 case 0:
3319 /* Already signalled once, try harder now. */
3320 (void)pdkill(dq->dq_procdesc, SIGKILL);
3321 break;
3322
3323 case 1:
3324 (void)pdkill(dq->dq_procdesc, SIGTERM);
3325 /* FALLTHROUGH. */
3326 default:
3327 dq->dq_timeout--;
3328 }
3329 }
3330 (void)alarm(TIMERINTVL);
3331 }
3332
3333 /*
3334 * fork off and become a daemon, but wait for the child to come online
3335 * before returning to the parent, or we get disk thrashing at boot etc.
3336 */
3337 static int
waitdaemon(int maxwait)3338 waitdaemon(int maxwait)
3339 {
3340 struct pollfd pollfd;
3341 int events, pipefd[2], status;
3342 pid_t pid;
3343
3344 if (pipe(pipefd) == -1) {
3345 warn("failed to daemonize, pipe");
3346 die(0);
3347 }
3348 pid = fork();
3349 if (pid == -1) {
3350 warn("failed to daemonize, fork");
3351 die(0);
3352 } else if (pid > 0) {
3353 close(pipefd[1]);
3354 pollfd.fd = pipefd[0];
3355 pollfd.events = POLLHUP;
3356 events = poll(&pollfd, 1, maxwait * 1000);
3357 if (events == -1)
3358 err(1, "failed to daemonize, poll");
3359 else if (events == 0)
3360 errx(1, "timed out waiting for child");
3361 if (waitpid(pid, &status, WNOHANG) > 0) {
3362 if (WIFEXITED(status))
3363 errx(1, "child pid %d exited with return code %d",
3364 pid, WEXITSTATUS(status));
3365 if (WIFSIGNALED(status))
3366 errx(1, "child pid %d exited on signal %d%s",
3367 pid, WTERMSIG(status),
3368 WCOREDUMP(status) ? " (core dumped)" : "");
3369 }
3370 exit(0);
3371 }
3372 close(pipefd[0]);
3373 if (setsid() == -1) {
3374 warn("failed to daemonize, setsid");
3375 die(0);
3376 }
3377 (void)chdir("/");
3378 (void)dup2(nulldesc, STDIN_FILENO);
3379 (void)dup2(nulldesc, STDOUT_FILENO);
3380 (void)dup2(nulldesc, STDERR_FILENO);
3381 return (pipefd[1]);
3382 }
3383
3384 /*
3385 * Add `s' to the list of allowable peer addresses to accept messages
3386 * from.
3387 *
3388 * `s' is a string in the form:
3389 *
3390 * [*]domainname[:{servicename|portnumber|*}]
3391 *
3392 * or
3393 *
3394 * netaddr/maskbits[:{servicename|portnumber|*}]
3395 *
3396 * Returns false on error, true if the argument was valid.
3397 */
3398 static bool
3399 #if defined(INET) || defined(INET6)
allowaddr(char * s)3400 allowaddr(char *s)
3401 #else
3402 allowaddr(char *s __unused)
3403 #endif
3404 {
3405 #if defined(INET) || defined(INET6)
3406 char *cp1, *cp2;
3407 struct allowedpeer *ap;
3408 struct servent *se;
3409 int masklen = -1;
3410 struct addrinfo hints, *res = NULL;
3411 #ifdef INET
3412 in_addr_t *addrp, *maskp;
3413 #endif
3414 #ifdef INET6
3415 uint32_t *addr6p, *mask6p;
3416 #endif
3417 char ip[NI_MAXHOST];
3418
3419 ap = calloc(1, sizeof(*ap));
3420 if (ap == NULL)
3421 err(1, "malloc failed");
3422
3423 #ifdef INET6
3424 if (*s != '[' || (cp1 = strchr(s + 1, ']')) == NULL)
3425 #endif
3426 cp1 = s;
3427 if ((cp1 = strrchr(cp1, ':'))) {
3428 /* service/port provided */
3429 *cp1++ = '\0';
3430 if (strlen(cp1) == 1 && *cp1 == '*')
3431 /* any port allowed */
3432 ap->port = 0;
3433 else if ((se = getservbyname(cp1, "udp"))) {
3434 ap->port = ntohs(se->s_port);
3435 } else {
3436 ap->port = strtol(cp1, &cp2, 0);
3437 /* port not numeric */
3438 if (*cp2 != '\0')
3439 goto err;
3440 }
3441 } else {
3442 if ((se = getservbyname("syslog", "udp")))
3443 ap->port = ntohs(se->s_port);
3444 else
3445 /* sanity, should not happen */
3446 ap->port = 514;
3447 }
3448
3449 if ((cp1 = strchr(s, '/')) != NULL &&
3450 strspn(cp1 + 1, "0123456789") == strlen(cp1 + 1)) {
3451 *cp1 = '\0';
3452 if ((masklen = atoi(cp1 + 1)) < 0)
3453 goto err;
3454 }
3455 #ifdef INET6
3456 if (*s == '[') {
3457 cp2 = s + strlen(s) - 1;
3458 if (*cp2 == ']') {
3459 ++s;
3460 *cp2 = '\0';
3461 } else {
3462 cp2 = NULL;
3463 }
3464 } else {
3465 cp2 = NULL;
3466 }
3467 #endif
3468 hints = (struct addrinfo){
3469 .ai_family = PF_UNSPEC,
3470 .ai_socktype = SOCK_DGRAM,
3471 .ai_flags = AI_PASSIVE | AI_NUMERICHOST
3472 };
3473 if (getaddrinfo(s, NULL, &hints, &res) == 0) {
3474 ap->isnumeric = true;
3475 memcpy(&ap->a_addr, res->ai_addr, res->ai_addrlen);
3476 ap->a_mask = (struct sockaddr_storage){
3477 .ss_family = res->ai_family,
3478 .ss_len = res->ai_addrlen
3479 };
3480 switch (res->ai_family) {
3481 #ifdef INET
3482 case AF_INET:
3483 maskp = &sstosin(&ap->a_mask)->sin_addr.s_addr;
3484 addrp = &sstosin(&ap->a_addr)->sin_addr.s_addr;
3485 if (masklen < 0) {
3486 /* use default netmask */
3487 if (IN_CLASSA(ntohl(*addrp)))
3488 *maskp = htonl(IN_CLASSA_NET);
3489 else if (IN_CLASSB(ntohl(*addrp)))
3490 *maskp = htonl(IN_CLASSB_NET);
3491 else
3492 *maskp = htonl(IN_CLASSC_NET);
3493 } else if (masklen == 0) {
3494 *maskp = 0;
3495 } else if (masklen <= 32) {
3496 /* convert masklen to netmask */
3497 *maskp = htonl(~((1 << (32 - masklen)) - 1));
3498 } else {
3499 goto err;
3500 }
3501 /* Lose any host bits in the network number. */
3502 *addrp &= *maskp;
3503 break;
3504 #endif
3505 #ifdef INET6
3506 case AF_INET6:
3507 if (masklen > 128)
3508 goto err;
3509
3510 if (masklen < 0)
3511 masklen = 128;
3512 mask6p = (uint32_t *)&sstosin6(&ap->a_mask)->sin6_addr.s6_addr32[0];
3513 addr6p = (uint32_t *)&sstosin6(&ap->a_addr)->sin6_addr.s6_addr32[0];
3514 /* convert masklen to netmask */
3515 while (masklen > 0) {
3516 if (masklen < 32) {
3517 *mask6p =
3518 htonl(~(0xffffffff >> masklen));
3519 *addr6p &= *mask6p;
3520 break;
3521 } else {
3522 *mask6p++ = 0xffffffff;
3523 addr6p++;
3524 masklen -= 32;
3525 }
3526 }
3527 break;
3528 #endif
3529 default:
3530 goto err;
3531 }
3532 freeaddrinfo(res);
3533 } else {
3534 /* arg `s' is domain name */
3535 ap->isnumeric = false;
3536 ap->a_name = s;
3537 if (cp1)
3538 *cp1 = '/';
3539 #ifdef INET6
3540 if (cp2) {
3541 *cp2 = ']';
3542 --s;
3543 }
3544 #endif
3545 }
3546 STAILQ_INSERT_TAIL(&aphead, ap, next);
3547
3548 if (Debug) {
3549 printf("allowaddr: rule ");
3550 if (ap->isnumeric) {
3551 printf("numeric, ");
3552 getnameinfo(sstosa(&ap->a_addr),
3553 (sstosa(&ap->a_addr))->sa_len,
3554 ip, sizeof(ip), NULL, 0, NI_NUMERICHOST);
3555 printf("addr = %s, ", ip);
3556 getnameinfo(sstosa(&ap->a_mask),
3557 (sstosa(&ap->a_mask))->sa_len,
3558 ip, sizeof(ip), NULL, 0, NI_NUMERICHOST);
3559 printf("mask = %s; ", ip);
3560 } else {
3561 printf("domainname = %s; ", ap->a_name);
3562 }
3563 printf("port = %d\n", ap->port);
3564 }
3565
3566 return (true);
3567 err:
3568 if (res != NULL)
3569 freeaddrinfo(res);
3570 free(ap);
3571 #endif
3572 return (false);
3573 }
3574
3575 /*
3576 * Validate that the remote peer has permission to log to us.
3577 */
3578 static bool
validate(struct sockaddr * sa,const char * hname)3579 validate(struct sockaddr *sa, const char *hname)
3580 {
3581 int i;
3582 char name[NI_MAXHOST], ip[NI_MAXHOST], port[NI_MAXSERV];
3583 struct allowedpeer *ap;
3584 #ifdef INET
3585 struct sockaddr_in *sin4, *a4p = NULL, *m4p = NULL;
3586 #endif
3587 #ifdef INET6
3588 struct sockaddr_in6 *sin6, *a6p = NULL, *m6p = NULL;
3589 #endif
3590 struct addrinfo hints, *res;
3591 u_short sport;
3592
3593 /* traditional behaviour, allow everything */
3594 if (STAILQ_EMPTY(&aphead))
3595 return (true);
3596
3597 (void)strlcpy(name, hname, sizeof(name));
3598 hints = (struct addrinfo){
3599 .ai_family = PF_UNSPEC,
3600 .ai_socktype = SOCK_DGRAM,
3601 .ai_flags = AI_PASSIVE | AI_NUMERICHOST
3602 };
3603 if (cap_getaddrinfo(cap_net, name, NULL, &hints, &res) == 0)
3604 freeaddrinfo(res);
3605 else if (strchr(name, '.') == NULL) {
3606 strlcat(name, ".", sizeof(name));
3607 strlcat(name, LocalDomain, sizeof(name));
3608 }
3609 if (cap_getnameinfo(cap_net, sa, sa->sa_len, ip, sizeof(ip), port,
3610 sizeof(port), NI_NUMERICHOST | NI_NUMERICSERV) != 0)
3611 return (false); /* for safety, should not occur */
3612 dprintf("validate: dgram from IP %s, port %s, name %s;\n",
3613 ip, port, name);
3614 sport = atoi(port);
3615
3616 /* now, walk down the list */
3617 i = 0;
3618 STAILQ_FOREACH(ap, &aphead, next) {
3619 i++;
3620 if (ap->port != 0 && ap->port != sport) {
3621 dprintf("rejected in rule %d due to port mismatch.\n",
3622 i);
3623 continue;
3624 }
3625
3626 if (ap->isnumeric) {
3627 if (ap->a_addr.ss_family != sa->sa_family) {
3628 dprintf("rejected in rule %d due to address family mismatch.\n", i);
3629 continue;
3630 }
3631 #ifdef INET
3632 else if (ap->a_addr.ss_family == AF_INET) {
3633 sin4 = satosin(sa);
3634 a4p = satosin(&ap->a_addr);
3635 m4p = satosin(&ap->a_mask);
3636 if ((sin4->sin_addr.s_addr & m4p->sin_addr.s_addr)
3637 != a4p->sin_addr.s_addr) {
3638 dprintf("rejected in rule %d due to IP mismatch.\n", i);
3639 continue;
3640 }
3641 }
3642 #endif
3643 #ifdef INET6
3644 else if (ap->a_addr.ss_family == AF_INET6) {
3645 sin6 = satosin6(sa);
3646 a6p = satosin6(&ap->a_addr);
3647 m6p = satosin6(&ap->a_mask);
3648 if (a6p->sin6_scope_id != 0 &&
3649 sin6->sin6_scope_id != a6p->sin6_scope_id) {
3650 dprintf("rejected in rule %d due to scope mismatch.\n", i);
3651 continue;
3652 }
3653 if (!IN6_ARE_MASKED_ADDR_EQUAL(&sin6->sin6_addr,
3654 &a6p->sin6_addr, &m6p->sin6_addr)) {
3655 dprintf("rejected in rule %d due to IP mismatch.\n", i);
3656 continue;
3657 }
3658 }
3659 #endif
3660 else
3661 continue;
3662 } else {
3663 if (fnmatch(ap->a_name, name, FNM_NOESCAPE) ==
3664 FNM_NOMATCH) {
3665 dprintf("rejected in rule %d due to name "
3666 "mismatch.\n", i);
3667 continue;
3668 }
3669 }
3670 dprintf("accepted in rule %d.\n", i);
3671 return (true); /* hooray! */
3672 }
3673 return (false);
3674 }
3675
3676 /*
3677 * Fairly similar to popen(3), but returns an open descriptor, as
3678 * opposed to a FILE *.
3679 *
3680 * Note: This function is wrapped by cap_p_open() when Capsicum support is
3681 * enabled, which allows piped processes to run outside of the capability
3682 * sandbox.
3683 */
3684 int
p_open(const char * prog,int * rpd)3685 p_open(const char *prog, int *rpd)
3686 {
3687 struct sigaction act = { };
3688 int pfd[2], pd;
3689 pid_t pid;
3690 char *argv[4]; /* sh -c cmd NULL */
3691
3692 if (pipe(pfd) == -1)
3693 return (-1);
3694
3695 switch ((pid = pdfork(&pd, PD_CLOEXEC))) {
3696 case -1:
3697 return (-1);
3698
3699 case 0:
3700 (void)setsid(); /* Avoid catching SIGHUPs. */
3701 argv[0] = strdup("sh");
3702 argv[1] = strdup("-c");
3703 argv[2] = strdup(prog);
3704 argv[3] = NULL;
3705 if (argv[0] == NULL || argv[1] == NULL || argv[2] == NULL)
3706 err(1, "strdup");
3707
3708 alarm(0);
3709 act.sa_handler = SIG_DFL;
3710 for (size_t i = 0; i < nitems(sigcatch); ++i) {
3711 if (sigaction(sigcatch[i], &act, NULL) == -1)
3712 err(1, "sigaction");
3713 }
3714
3715 dup2(pfd[0], STDIN_FILENO);
3716 dup2(nulldesc, STDOUT_FILENO);
3717 dup2(nulldesc, STDERR_FILENO);
3718 closefrom(STDERR_FILENO + 1);
3719
3720 (void)execvp(_PATH_BSHELL, argv);
3721 _exit(255);
3722 }
3723 close(pfd[0]);
3724 /*
3725 * Avoid blocking on a hung pipe. With O_NONBLOCK, we are
3726 * supposed to get an EWOULDBLOCK on writev(2), which is
3727 * caught by the logic above anyway, which will in turn close
3728 * the pipe, and fork a new logging subprocess if necessary.
3729 * The stale subprocess will be killed some time later unless
3730 * it terminated itself due to closing its input pipe (so we
3731 * get rid of really dead puppies).
3732 */
3733 if (fcntl(pfd[1], F_SETFL, O_NONBLOCK) == -1) {
3734 /* This is bad. */
3735 dprintf("Warning: cannot change pipe to PID %d to non-blocking"
3736 "behaviour.", pid);
3737 }
3738 *rpd = pd;
3739 return (pfd[1]);
3740 }
3741
3742 static struct deadq_entry *
deadq_enter(int pd)3743 deadq_enter(int pd)
3744 {
3745 struct deadq_entry *dq;
3746
3747 if (pd == -1)
3748 return (NULL);
3749
3750 dq = malloc(sizeof(*dq));
3751 if (dq == NULL) {
3752 logerror("malloc");
3753 exit(1);
3754 }
3755
3756 dq->dq_procdesc = pd;
3757 dq->dq_timeout = DQ_TIMO_INIT;
3758 TAILQ_INSERT_TAIL(&deadq_head, dq, dq_entries);
3759 return (dq);
3760 }
3761
3762 static void
deadq_remove(struct deadq_entry * dq)3763 deadq_remove(struct deadq_entry *dq)
3764 {
3765 TAILQ_REMOVE(&deadq_head, dq, dq_entries);
3766 free(dq);
3767 }
3768
3769 static void
log_deadchild(int pd,int status,const struct filed * f)3770 log_deadchild(int pd, int status, const struct filed *f)
3771 {
3772 pid_t pid;
3773 int code;
3774 char buf[256];
3775 const char *reason;
3776
3777 errno = 0; /* Keep strerror() stuff out of logerror messages. */
3778 if (WIFSIGNALED(status)) {
3779 reason = "due to signal";
3780 code = WTERMSIG(status);
3781 } else {
3782 reason = "with status";
3783 code = WEXITSTATUS(status);
3784 if (code == 0)
3785 return;
3786 }
3787 if (pdgetpid(pd, &pid) == -1)
3788 err(1, "pdgetpid");
3789 (void)snprintf(buf, sizeof(buf),
3790 "Logging subprocess %d (%s) exited %s %d.",
3791 pid, f->f_pname, reason, code);
3792 logerror(buf);
3793 }
3794
3795 static struct socklist *
socksetup(struct addrinfo * ai,const char * name,mode_t mode)3796 socksetup(struct addrinfo *ai, const char *name, mode_t mode)
3797 {
3798 struct socklist *sl;
3799 int (*sl_recv)(struct socklist *);
3800 int s, optval = 1;
3801
3802 if (ai->ai_family != AF_LOCAL && SecureMode > 1) {
3803 /* Only AF_LOCAL in secure mode. */
3804 return (NULL);
3805 }
3806 if (family != AF_UNSPEC && ai->ai_family != AF_LOCAL &&
3807 ai->ai_family != family)
3808 return (NULL);
3809
3810 s = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol);
3811 if (s < 0) {
3812 logerror("socket");
3813 return (NULL);
3814 }
3815 #ifdef INET6
3816 if (ai->ai_family == AF_INET6) {
3817 if (setsockopt(s, IPPROTO_IPV6, IPV6_V6ONLY, &optval,
3818 sizeof(int)) < 0) {
3819 logerror("setsockopt(IPV6_V6ONLY)");
3820 close(s);
3821 return (NULL);
3822 }
3823 }
3824 #endif
3825 if (setsockopt(s, SOL_SOCKET, SO_REUSEADDR, &optval,
3826 sizeof(int)) < 0) {
3827 logerror("setsockopt(SO_REUSEADDR)");
3828 close(s);
3829 return (NULL);
3830 }
3831
3832 /*
3833 * Bind INET and UNIX-domain sockets.
3834 *
3835 * A UNIX-domain socket is always bound to a pathname
3836 * regardless of -N flag.
3837 *
3838 * For INET sockets, RFC 3164 recommends that client
3839 * side message should come from the privileged syslogd port.
3840 *
3841 * If the system administrator chooses not to obey
3842 * this, we can skip the bind() step so that the
3843 * system will choose a port for us.
3844 */
3845 if (ai->ai_family == AF_LOCAL)
3846 unlink(name);
3847 if (ai->ai_family == AF_LOCAL || NoBind == 0 || name != NULL) {
3848 mode_t mask;
3849 int error;
3850
3851 if (ai->ai_family == AF_LOCAL && fchmod(s, mode) < 0) {
3852 dprintf("fchmod %s: %s\n", name, strerror(errno));
3853 close(s);
3854 return (NULL);
3855 }
3856
3857 if (setsockopt(s, SOL_SOCKET, SO_REUSEPORT, &(int){1},
3858 sizeof(int)) < 0) {
3859 logerror("setsockopt(SO_REUSEPORT)");
3860 close(s);
3861 return (NULL);
3862 }
3863
3864 /*
3865 * For AF_LOCAL sockets, the process umask is applied to the
3866 * mode set above, so temporarily clear it to ensure that the
3867 * socket always has the correct permissions.
3868 */
3869 mask = umask(0);
3870 error = bind(s, ai->ai_addr, ai->ai_addrlen);
3871 (void)umask(mask);
3872 if (error < 0) {
3873 logerror("bind");
3874 close(s);
3875 return (NULL);
3876 }
3877 if (ai->ai_family == AF_LOCAL || SecureMode == 0)
3878 increase_rcvbuf(s);
3879 }
3880 dprintf("new socket fd is %d\n", s);
3881 sl_recv = socklist_recv_sock;
3882 #if defined(INET) || defined(INET6)
3883 if (SecureMode && (ai->ai_family == AF_INET ||
3884 ai->ai_family == AF_INET6)) {
3885 dprintf("shutdown\n");
3886 /* Forbid communication in secure mode. */
3887 if (shutdown(s, SHUT_RD) < 0 && errno != ENOTCONN) {
3888 logerror("shutdown");
3889 if (!Debug)
3890 die(0);
3891 }
3892 sl_recv = NULL;
3893 } else
3894 #endif
3895 dprintf("listening on socket\n");
3896 dprintf("sending on socket\n");
3897 /* Copy *ai->ai_addr to the tail of struct socklist if any. */
3898 sl = calloc(1, sizeof(*sl) + ai->ai_addrlen);
3899 if (sl == NULL)
3900 err(1, "malloc failed");
3901 sl->sl_socket = s;
3902 if (ai->ai_family == AF_LOCAL) {
3903 char *name2 = strdup(name);
3904 if (name2 == NULL)
3905 err(1, "strdup failed");
3906 sl->sl_name = strdup(basename(name2));
3907 sl->sl_dirfd = open(dirname(name2), O_DIRECTORY);
3908 if (sl->sl_name == NULL || sl->sl_dirfd == -1)
3909 err(1, "failed to save dir info for %s", name);
3910 free(name2);
3911 }
3912 sl->sl_recv = sl_recv;
3913 (void)memcpy(&sl->sl_ai, ai, sizeof(*ai));
3914 if (ai->ai_addrlen > 0) {
3915 (void)memcpy((sl + 1), ai->ai_addr, ai->ai_addrlen);
3916 sl->sl_sa = (struct sockaddr *)(sl + 1);
3917 } else {
3918 sl->sl_sa = NULL;
3919 }
3920 return (sl);
3921 }
3922
3923 static void
increase_rcvbuf(int fd)3924 increase_rcvbuf(int fd)
3925 {
3926 socklen_t len;
3927
3928 if (getsockopt(fd, SOL_SOCKET, SO_RCVBUF, &len,
3929 &(socklen_t){sizeof(len)}) == 0) {
3930 if (len < RCVBUF_MINSIZE) {
3931 len = RCVBUF_MINSIZE;
3932 setsockopt(fd, SOL_SOCKET, SO_RCVBUF, &len, sizeof(len));
3933 }
3934 }
3935 }
3936