syslogd.c revision 1.124 1 /* $NetBSD: syslogd.c,v 1.124 2017/09/10 17:01:07 ginsbach Exp $ */
2
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 #include <sys/cdefs.h>
33 #ifndef lint
34 __COPYRIGHT("@(#) Copyright (c) 1983, 1988, 1993, 1994\
35 The Regents of the University of California. All rights reserved.");
36 #endif /* not lint */
37
38 #ifndef lint
39 #if 0
40 static char sccsid[] = "@(#)syslogd.c 8.3 (Berkeley) 4/4/94";
41 #else
42 __RCSID("$NetBSD: syslogd.c,v 1.124 2017/09/10 17:01:07 ginsbach Exp $");
43 #endif
44 #endif /* not lint */
45
46 /*
47 * syslogd -- log system messages
48 *
49 * This program implements a system log. It takes a series of lines.
50 * Each line may have a priority, signified as "<n>" as
51 * the first characters of the line. If this is
52 * not present, a default priority is used.
53 *
54 * To kill syslogd, send a signal 15 (terminate). A signal 1 (hup) will
55 * cause it to reread its configuration file.
56 *
57 * Defined Constants:
58 *
59 * MAXLINE -- the maximimum line length that can be handled.
60 * DEFUPRI -- the default priority for user messages
61 * DEFSPRI -- the default priority for kernel messages
62 *
63 * Author: Eric Allman
64 * extensive changes by Ralph Campbell
65 * more extensive changes by Eric Allman (again)
66 * Extension to log by program name as well as facility and priority
67 * by Peter da Silva.
68 * -U and -v by Harlan Stenn.
69 * Priority comparison code by Harlan Stenn.
70 * TLS, syslog-protocol, and syslog-sign code by Martin Schuette.
71 */
72 #define SYSLOG_NAMES
73 #include <sys/stat.h>
74 #include <poll.h>
75 #include "syslogd.h"
76 #include "extern.h"
77
78 #ifndef DISABLE_SIGN
79 #include "sign.h"
80 struct sign_global_t GlobalSign = {
81 .rsid = 0,
82 .sig2_delims = STAILQ_HEAD_INITIALIZER(GlobalSign.sig2_delims)
83 };
84 #endif /* !DISABLE_SIGN */
85
86 #ifndef DISABLE_TLS
87 #include "tls.h"
88 #endif /* !DISABLE_TLS */
89
90 #ifdef LIBWRAP
91 int allow_severity = LOG_AUTH|LOG_INFO;
92 int deny_severity = LOG_AUTH|LOG_WARNING;
93 #endif
94
95 const char *ConfFile = _PATH_LOGCONF;
96 char ctty[] = _PATH_CONSOLE;
97
98 /*
99 * Queue of about-to-be-dead processes we should watch out for.
100 */
101 TAILQ_HEAD(, deadq_entry) deadq_head = TAILQ_HEAD_INITIALIZER(deadq_head);
102
103 typedef struct deadq_entry {
104 pid_t dq_pid;
105 int dq_timeout;
106 TAILQ_ENTRY(deadq_entry) dq_entries;
107 } *dq_t;
108
109 /*
110 * The timeout to apply to processes waiting on the dead queue. Unit
111 * of measure is "mark intervals", i.e. 20 minutes by default.
112 * Processes on the dead queue will be terminated after that time.
113 */
114 #define DQ_TIMO_INIT 2
115
116 /*
117 * Intervals at which we flush out "message repeated" messages,
118 * in seconds after previous message is logged. After each flush,
119 * we move to the next interval until we reach the largest.
120 */
121 int repeatinterval[] = { 30, 120, 600 }; /* # of secs before flush */
122 #define MAXREPEAT ((sizeof(repeatinterval) / sizeof(repeatinterval[0])) - 1)
123 #define REPEATTIME(f) ((f)->f_time + repeatinterval[(f)->f_repeatcount])
124 #define BACKOFF(f) { if ((size_t)(++(f)->f_repeatcount) > MAXREPEAT) \
125 (f)->f_repeatcount = MAXREPEAT; \
126 }
127
128 /* values for f_type */
129 #define F_UNUSED 0 /* unused entry */
130 #define F_FILE 1 /* regular file */
131 #define F_TTY 2 /* terminal */
132 #define F_CONSOLE 3 /* console terminal */
133 #define F_FORW 4 /* remote machine */
134 #define F_USERS 5 /* list of users */
135 #define F_WALL 6 /* everyone logged on */
136 #define F_PIPE 7 /* pipe to program */
137 #define F_FIFO 8 /* mkfifo(2) file */
138 #define F_TLS 9
139
140 struct TypeInfo {
141 const char *name;
142 char *queue_length_string;
143 const char *default_length_string;
144 char *queue_size_string;
145 const char *default_size_string;
146 int64_t queue_length;
147 int64_t queue_size;
148 int max_msg_length;
149 } TypeInfo[] = {
150 /* numeric values are set in init()
151 * -1 in length/size or max_msg_length means infinite */
152 {"UNUSED", NULL, "0", NULL, "0", 0, 0, 0},
153 {"FILE", NULL, "1024", NULL, "1M", 0, 0, 16384},
154 {"TTY", NULL, "0", NULL, "0", 0, 0, 1024},
155 {"CONSOLE", NULL, "0", NULL, "0", 0, 0, 1024},
156 {"FORW", NULL, "0", NULL, "1M", 0, 0, 16384},
157 {"USERS", NULL, "0", NULL, "0", 0, 0, 1024},
158 {"WALL", NULL, "0", NULL, "0", 0, 0, 1024},
159 {"PIPE", NULL, "1024", NULL, "1M", 0, 0, 16384},
160 {"FIFO", NULL, "1024", NULL, "1M", 0, 0, 16384},
161 #ifndef DISABLE_TLS
162 {"TLS", NULL, "-1", NULL, "16M", 0, 0, 16384}
163 #endif /* !DISABLE_TLS */
164 };
165
166 struct filed *Files = NULL;
167 struct filed consfile;
168
169 time_t now;
170 int Debug = D_NONE; /* debug flag */
171 int daemonized = 0; /* we are not daemonized yet */
172 char *LocalFQDN = NULL; /* our FQDN */
173 char *oldLocalFQDN = NULL; /* our previous FQDN */
174 char LocalHostName[MAXHOSTNAMELEN]; /* our hostname */
175 struct socketEvent *finet; /* Internet datagram sockets and events */
176 int *funix; /* Unix domain datagram sockets */
177 #ifndef DISABLE_TLS
178 struct socketEvent *TLS_Listen_Set; /* TLS/TCP sockets and events */
179 #endif /* !DISABLE_TLS */
180 int Initialized = 0; /* set when we have initialized ourselves */
181 int ShuttingDown; /* set when we die() */
182 int MarkInterval = 20 * 60; /* interval between marks in seconds */
183 int MarkSeq = 0; /* mark sequence number */
184 int SecureMode = 0; /* listen only on unix domain socks */
185 int UseNameService = 1; /* make domain name queries */
186 int NumForwards = 0; /* number of forwarding actions in conf file */
187 char **LogPaths; /* array of pathnames to read messages from */
188 int NoRepeat = 0; /* disable "repeated"; log always */
189 int RemoteAddDate = 0; /* always add date to messages from network */
190 int SyncKernel = 0; /* write kernel messages synchronously */
191 int UniquePriority = 0; /* only log specified priority */
192 int LogFacPri = 0; /* put facility and priority in log messages: */
193 /* 0=no, 1=numeric, 2=names */
194 bool BSDOutputFormat = true; /* if true emit traditional BSD Syslog lines,
195 * otherwise new syslog-protocol lines
196 *
197 * Open Issue: having a global flag is the
198 * easiest solution. If we get a more detailed
199 * config file this could/should be changed
200 * into a destination-specific flag.
201 * Most output code should be ready to handle
202 * this, it will only break some syslog-sign
203 * configurations (e.g. with SG="0").
204 */
205 char appname[] = "syslogd";/* the APPNAME for own messages */
206 char *include_pid = NULL; /* include PID in own messages */
207
208
209 /* init and setup */
210 void usage(void) __attribute__((__noreturn__));
211 void logpath_add(char ***, int *, int *, const char *);
212 void logpath_fileadd(char ***, int *, int *, const char *);
213 void init(int fd, short event, void *ev); /* SIGHUP kevent dispatch routine */
214 struct socketEvent*
215 socksetup(int, const char *);
216 int getmsgbufsize(void);
217 char *getLocalFQDN(void);
218 void trim_anydomain(char *);
219 /* pipe & subprocess handling */
220 int p_open(char *, pid_t *);
221 void deadq_enter(pid_t, const char *);
222 int deadq_remove(pid_t);
223 void log_deadchild(pid_t, int, const char *);
224 void reapchild(int fd, short event, void *ev); /* SIGCHLD kevent dispatch routine */
225 /* input message parsing & formatting */
226 const char *cvthname(struct sockaddr_storage *);
227 void printsys(char *);
228 struct buf_msg *printline_syslogprotocol(const char*, char*, int, int);
229 struct buf_msg *printline_bsdsyslog(const char*, char*, int, int);
230 struct buf_msg *printline_kernelprintf(const char*, char*, int, int);
231 size_t check_timestamp(unsigned char *, char **, bool, bool);
232 char *copy_utf8_ascii(char*, size_t);
233 uint_fast32_t get_utf8_value(const char*);
234 unsigned valid_utf8(const char *);
235 static unsigned check_sd(char*);
236 static unsigned check_msgid(char *);
237 /* event handling */
238 static void dispatch_read_klog(int fd, short event, void *ev);
239 static void dispatch_read_finet(int fd, short event, void *ev);
240 static void dispatch_read_funix(int fd, short event, void *ev);
241 static void domark(int fd, short event, void *ev); /* timer kevent dispatch routine */
242 /* log messages */
243 void logmsg_async(int, const char *, const char *, int);
244 void logmsg(struct buf_msg *);
245 int matches_spec(const char *, const char *,
246 char *(*)(const char *, const char *));
247 void udp_send(struct filed *, char *, size_t);
248 void wallmsg(struct filed *, struct iovec *, size_t);
249 /* buffer & queue functions */
250 size_t message_queue_purge(struct filed *f, size_t, int);
251 size_t message_allqueues_check(void);
252 static struct buf_queue *
253 find_qentry_to_delete(const struct buf_queue_head *, int, bool);
254 struct buf_queue *
255 message_queue_add(struct filed *, struct buf_msg *);
256 size_t buf_queue_obj_size(struct buf_queue*);
257 /* configuration & parsing */
258 void cfline(size_t, const char *, struct filed *, const char *,
259 const char *);
260 void read_config_file(FILE*, struct filed**);
261 void store_sign_delim_sg2(char*);
262 int decode(const char *, CODE *);
263 bool copy_config_value(const char *, char **, const char **,
264 const char *, int);
265 bool copy_config_value_word(char **, const char **);
266
267 /* config parsing */
268 #ifndef DISABLE_TLS
269 void free_cred_SLIST(struct peer_cred_head *);
270 static inline void
271 free_incoming_tls_sockets(void);
272 #endif /* !DISABLE_TLS */
273 static int writev1(int, struct iovec *, size_t);
274
275 /* for make_timestamp() */
276 char timestamp[MAX_TIMESTAMPLEN + 1];
277 /*
278 * Global line buffer. Since we only process one event at a time,
279 * a global one will do. But for klog, we use own buffer so that
280 * partial line at the end of buffer can be deferred.
281 */
282 char *linebuf, *klog_linebuf;
283 size_t linebufsize, klog_linebufoff;
284
285 static const char *bindhostname = NULL;
286
287 #ifndef DISABLE_TLS
288 struct TLS_Incoming TLS_Incoming_Head = \
289 SLIST_HEAD_INITIALIZER(TLS_Incoming_Head);
290 extern char *SSL_ERRCODE[];
291 struct tls_global_options_t tls_opt;
292 #endif /* !DISABLE_TLS */
293
294 int
295 main(int argc, char *argv[])
296 {
297 int ch, j, fklog;
298 int funixsize = 0, funixmaxsize = 0;
299 struct sockaddr_un sunx;
300 char **pp;
301 struct event *ev;
302 uid_t uid = 0;
303 gid_t gid = 0;
304 char *user = NULL;
305 char *group = NULL;
306 const char *root = "/";
307 char *endp;
308 struct group *gr;
309 struct passwd *pw;
310 unsigned long l;
311
312 /* should we set LC_TIME="C" to ensure correct timestamps&parsing? */
313 (void)setlocale(LC_ALL, "");
314
315 while ((ch = getopt(argc, argv, "b:dnsSf:m:o:p:P:ru:g:t:TUv")) != -1)
316 switch(ch) {
317 case 'b':
318 bindhostname = optarg;
319 break;
320 case 'd': /* debug */
321 Debug = D_DEFAULT;
322 /* is there a way to read the integer value
323 * for Debug as an optional argument? */
324 break;
325 case 'f': /* configuration file */
326 ConfFile = optarg;
327 break;
328 case 'g':
329 group = optarg;
330 if (*group == '\0')
331 usage();
332 break;
333 case 'm': /* mark interval */
334 MarkInterval = atoi(optarg) * 60;
335 break;
336 case 'n': /* turn off DNS queries */
337 UseNameService = 0;
338 break;
339 case 'o': /* message format */
340 #define EQ(a) (strncmp(optarg, # a, sizeof(# a) - 1) == 0)
341 if (EQ(bsd) || EQ(rfc3264))
342 BSDOutputFormat = true;
343 else if (EQ(syslog) || EQ(rfc5424))
344 BSDOutputFormat = false;
345 else
346 usage();
347 /* TODO: implement additional output option "osyslog"
348 * for old syslogd behaviour as introduced after
349 * FreeBSD PR#bin/7055.
350 */
351 break;
352 case 'p': /* path */
353 logpath_add(&LogPaths, &funixsize,
354 &funixmaxsize, optarg);
355 break;
356 case 'P': /* file of paths */
357 logpath_fileadd(&LogPaths, &funixsize,
358 &funixmaxsize, optarg);
359 break;
360 case 'r': /* disable "repeated" compression */
361 NoRepeat++;
362 break;
363 case 's': /* no network listen mode */
364 SecureMode++;
365 break;
366 case 'S':
367 SyncKernel = 1;
368 break;
369 case 't':
370 root = optarg;
371 if (*root == '\0')
372 usage();
373 break;
374 case 'T':
375 RemoteAddDate = 1;
376 break;
377 case 'u':
378 user = optarg;
379 if (*user == '\0')
380 usage();
381 break;
382 case 'U': /* only log specified priority */
383 UniquePriority = 1;
384 break;
385 case 'v': /* log facility and priority */
386 if (LogFacPri < 2)
387 LogFacPri++;
388 break;
389 default:
390 usage();
391 }
392 if ((argc -= optind) != 0)
393 usage();
394
395 setlinebuf(stdout);
396 tzset(); /* init TZ information for localtime. */
397
398 if (user != NULL) {
399 if (isdigit((unsigned char)*user)) {
400 errno = 0;
401 endp = NULL;
402 l = strtoul(user, &endp, 0);
403 if (errno || *endp != '\0')
404 goto getuser;
405 uid = (uid_t)l;
406 if (uid != l) {/* TODO: never executed */
407 errno = 0;
408 logerror("UID out of range");
409 die(0, 0, NULL);
410 }
411 } else {
412 getuser:
413 if ((pw = getpwnam(user)) != NULL) {
414 uid = pw->pw_uid;
415 } else {
416 errno = 0;
417 logerror("Cannot find user `%s'", user);
418 die(0, 0, NULL);
419 }
420 }
421 }
422
423 if (group != NULL) {
424 if (isdigit((unsigned char)*group)) {
425 errno = 0;
426 endp = NULL;
427 l = strtoul(group, &endp, 0);
428 if (errno || *endp != '\0')
429 goto getgroup;
430 gid = (gid_t)l;
431 if (gid != l) {/* TODO: never executed */
432 errno = 0;
433 logerror("GID out of range");
434 die(0, 0, NULL);
435 }
436 } else {
437 getgroup:
438 if ((gr = getgrnam(group)) != NULL) {
439 gid = gr->gr_gid;
440 } else {
441 errno = 0;
442 logerror("Cannot find group `%s'", group);
443 die(0, 0, NULL);
444 }
445 }
446 }
447
448 if (access(root, F_OK | R_OK)) {
449 logerror("Cannot access `%s'", root);
450 die(0, 0, NULL);
451 }
452
453 consfile.f_type = F_CONSOLE;
454 (void)strlcpy(consfile.f_un.f_fname, ctty,
455 sizeof(consfile.f_un.f_fname));
456 linebufsize = getmsgbufsize();
457 if (linebufsize < MAXLINE)
458 linebufsize = MAXLINE;
459 linebufsize++;
460
461 if (!(linebuf = malloc(linebufsize))) {
462 logerror("Couldn't allocate buffer");
463 die(0, 0, NULL);
464 }
465 if (!(klog_linebuf = malloc(linebufsize))) {
466 logerror("Couldn't allocate buffer for klog");
467 die(0, 0, NULL);
468 }
469
470
471 #ifndef SUN_LEN
472 #define SUN_LEN(unp) (strlen((unp)->sun_path) + 2)
473 #endif
474 if (funixsize == 0)
475 logpath_add(&LogPaths, &funixsize,
476 &funixmaxsize, _PATH_LOG);
477 funix = malloc(sizeof(*funix) * funixsize);
478 if (funix == NULL) {
479 logerror("Couldn't allocate funix descriptors");
480 die(0, 0, NULL);
481 }
482 for (j = 0, pp = LogPaths; *pp; pp++, j++) {
483 DPRINTF(D_NET, "Making unix dgram socket `%s'\n", *pp);
484 unlink(*pp);
485 memset(&sunx, 0, sizeof(sunx));
486 sunx.sun_family = AF_LOCAL;
487 (void)strncpy(sunx.sun_path, *pp, sizeof(sunx.sun_path));
488 funix[j] = socket(AF_LOCAL, SOCK_DGRAM, 0);
489 if (funix[j] < 0 || bind(funix[j],
490 (struct sockaddr *)&sunx, SUN_LEN(&sunx)) < 0 ||
491 chmod(*pp, 0666) < 0) {
492 logerror("Cannot create `%s'", *pp);
493 die(0, 0, NULL);
494 }
495 DPRINTF(D_NET, "Listening on unix dgram socket `%s'\n", *pp);
496 }
497
498 if ((fklog = open(_PATH_KLOG, O_RDONLY, 0)) < 0) {
499 DPRINTF(D_FILE, "Can't open `%s' (%d)\n", _PATH_KLOG, errno);
500 } else {
501 DPRINTF(D_FILE, "Listening on kernel log `%s' with fd %d\n",
502 _PATH_KLOG, fklog);
503 }
504
505 #if (!defined(DISABLE_TLS) && !defined(DISABLE_SIGN))
506 /* basic OpenSSL init */
507 SSL_load_error_strings();
508 (void) SSL_library_init();
509 OpenSSL_add_all_digests();
510 /* OpenSSL PRNG needs /dev/urandom, thus initialize before chroot() */
511 if (!RAND_status()) {
512 errno = 0;
513 logerror("Unable to initialize OpenSSL PRNG");
514 } else {
515 DPRINTF(D_TLS, "Initializing PRNG\n");
516 }
517 #endif /* (!defined(DISABLE_TLS) && !defined(DISABLE_SIGN)) */
518 #ifndef DISABLE_SIGN
519 /* initialize rsid -- we will use that later to determine
520 * whether sign_global_init() was already called */
521 GlobalSign.rsid = 0;
522 #endif /* !DISABLE_SIGN */
523 #if (IETF_NUM_PRIVALUES != (LOG_NFACILITIES<<3))
524 logerror("Warning: system defines %d priority values, but "
525 "syslog-protocol/syslog-sign specify %d values",
526 LOG_NFACILITIES, SIGN_NUM_PRIVALS);
527 #endif
528
529 /*
530 * All files are open, we can drop privileges and chroot
531 */
532 DPRINTF(D_MISC, "Attempt to chroot to `%s'\n", root);
533 if (chroot(root) == -1) {
534 logerror("Failed to chroot to `%s'", root);
535 die(0, 0, NULL);
536 }
537 DPRINTF(D_MISC, "Attempt to set GID/EGID to `%d'\n", gid);
538 if (setgid(gid) || setegid(gid)) {
539 logerror("Failed to set gid to `%d'", gid);
540 die(0, 0, NULL);
541 }
542 DPRINTF(D_MISC, "Attempt to set UID/EUID to `%d'\n", uid);
543 if (setuid(uid) || seteuid(uid)) {
544 logerror("Failed to set uid to `%d'", uid);
545 die(0, 0, NULL);
546 }
547 /*
548 * We cannot detach from the terminal before we are sure we won't
549 * have a fatal error, because error message would not go to the
550 * terminal and would not be logged because syslogd dies.
551 * All die() calls are behind us, we can call daemon()
552 */
553 if (!Debug) {
554 (void)daemon(0, 0);
555 daemonized = 1;
556 /* tuck my process id away, if i'm not in debug mode */
557 #ifdef __NetBSD_Version__
558 pidfile(NULL);
559 #endif /* __NetBSD_Version__ */
560 }
561
562 #define MAX_PID_LEN 5
563 include_pid = malloc(MAX_PID_LEN+1);
564 snprintf(include_pid, MAX_PID_LEN+1, "%d", getpid());
565
566 /*
567 * Create the global kernel event descriptor.
568 *
569 * NOTE: We MUST do this after daemon(), bacause the kqueue()
570 * API dictates that kqueue descriptors are not inherited
571 * across forks (lame!).
572 */
573 (void)event_init();
574
575 /*
576 * We must read the configuration file for the first time
577 * after the kqueue descriptor is created, because we install
578 * events during this process.
579 */
580 init(0, 0, NULL);
581
582 /*
583 * Always exit on SIGTERM. Also exit on SIGINT and SIGQUIT
584 * if we're debugging.
585 */
586 (void)signal(SIGTERM, SIG_IGN);
587 (void)signal(SIGINT, SIG_IGN);
588 (void)signal(SIGQUIT, SIG_IGN);
589
590 ev = allocev();
591 signal_set(ev, SIGTERM, die, ev);
592 EVENT_ADD(ev);
593
594 if (Debug) {
595 ev = allocev();
596 signal_set(ev, SIGINT, die, ev);
597 EVENT_ADD(ev);
598 ev = allocev();
599 signal_set(ev, SIGQUIT, die, ev);
600 EVENT_ADD(ev);
601 }
602
603 ev = allocev();
604 signal_set(ev, SIGCHLD, reapchild, ev);
605 EVENT_ADD(ev);
606
607 ev = allocev();
608 schedule_event(&ev,
609 &((struct timeval){TIMERINTVL, 0}),
610 domark, ev);
611
612 (void)signal(SIGPIPE, SIG_IGN); /* We'll catch EPIPE instead. */
613
614 /* Re-read configuration on SIGHUP. */
615 (void) signal(SIGHUP, SIG_IGN);
616 ev = allocev();
617 signal_set(ev, SIGHUP, init, ev);
618 EVENT_ADD(ev);
619
620 #ifndef DISABLE_TLS
621 ev = allocev();
622 signal_set(ev, SIGUSR1, dispatch_force_tls_reconnect, ev);
623 EVENT_ADD(ev);
624 #endif /* !DISABLE_TLS */
625
626 if (fklog >= 0) {
627 ev = allocev();
628 DPRINTF(D_EVENT,
629 "register klog for fd %d with ev@%p\n", fklog, ev);
630 event_set(ev, fklog, EV_READ | EV_PERSIST,
631 dispatch_read_klog, ev);
632 EVENT_ADD(ev);
633 }
634 for (j = 0, pp = LogPaths; *pp; pp++, j++) {
635 ev = allocev();
636 event_set(ev, funix[j], EV_READ | EV_PERSIST,
637 dispatch_read_funix, ev);
638 EVENT_ADD(ev);
639 }
640
641 DPRINTF(D_MISC, "Off & running....\n");
642
643 j = event_dispatch();
644 /* normal termination via die(), reaching this is an error */
645 DPRINTF(D_MISC, "event_dispatch() returned %d\n", j);
646 die(0, 0, NULL);
647 /*NOTREACHED*/
648 return 0;
649 }
650
651 void
652 usage(void)
653 {
654
655 (void)fprintf(stderr,
656 "usage: %s [-dnrSsTUv] [-b bind_address] [-f config_file] [-g group]\n"
657 "\t[-m mark_interval] [-P file_list] [-p log_socket\n"
658 "\t[-p log_socket2 ...]] [-t chroot_dir] [-u user]\n",
659 getprogname());
660 exit(1);
661 }
662
663 /*
664 * Dispatch routine for reading /dev/klog
665 *
666 * Note: slightly different semantic in dispatch_read functions:
667 * - read_klog() might give multiple messages in linebuf and
668 * leaves the task of splitting them to printsys()
669 * - all other read functions receive one message and
670 * then call printline() with one buffer.
671 */
672 static void
673 dispatch_read_klog(int fd, short event, void *ev)
674 {
675 ssize_t rv;
676 size_t resid = linebufsize - klog_linebufoff;
677
678 DPRINTF((D_CALL|D_EVENT), "Kernel log active (%d, %d, %p)"
679 " with linebuf@%p, length %zu)\n", fd, event, ev,
680 klog_linebuf, linebufsize);
681
682 rv = read(fd, &klog_linebuf[klog_linebufoff], resid - 1);
683 if (rv > 0) {
684 klog_linebuf[klog_linebufoff + rv] = '\0';
685 printsys(klog_linebuf);
686 } else if (rv < 0 && errno != EINTR) {
687 /*
688 * /dev/klog has croaked. Disable the event
689 * so it won't bother us again.
690 */
691 logerror("klog failed");
692 event_del(ev);
693 }
694 }
695
696 /*
697 * Dispatch routine for reading Unix domain sockets.
698 */
699 static void
700 dispatch_read_funix(int fd, short event, void *ev)
701 {
702 struct sockaddr_un myname, fromunix;
703 ssize_t rv;
704 socklen_t sunlen;
705
706 sunlen = sizeof(myname);
707 if (getsockname(fd, (struct sockaddr *)&myname, &sunlen) != 0) {
708 /*
709 * This should never happen, so ensure that it doesn't
710 * happen again.
711 */
712 logerror("getsockname() unix failed");
713 event_del(ev);
714 return;
715 }
716
717 #define SUN_PATHLEN(su) \
718 ((su)->sun_len - (sizeof(*(su)) - sizeof((su)->sun_path)))
719
720 DPRINTF((D_CALL|D_EVENT|D_NET), "Unix socket (%.*s) active (%d, %d %p)"
721 " with linebuf@%p, size %zu)\n", (int)SUN_PATHLEN(&myname),
722 myname.sun_path, fd, event, ev, linebuf, linebufsize-1);
723
724 sunlen = sizeof(fromunix);
725 rv = recvfrom(fd, linebuf, linebufsize-1, 0,
726 (struct sockaddr *)&fromunix, &sunlen);
727 if (rv > 0) {
728 linebuf[rv] = '\0';
729 printline(LocalFQDN, linebuf, 0);
730 } else if (rv < 0 && errno != EINTR) {
731 logerror("recvfrom() unix `%.*s'",
732 (int)SUN_PATHLEN(&myname), myname.sun_path);
733 }
734 }
735
736 /*
737 * Dispatch routine for reading Internet sockets.
738 */
739 static void
740 dispatch_read_finet(int fd, short event, void *ev)
741 {
742 #ifdef LIBWRAP
743 struct request_info req;
744 #endif
745 struct sockaddr_storage frominet;
746 ssize_t rv;
747 socklen_t len;
748 int reject = 0;
749
750 DPRINTF((D_CALL|D_EVENT|D_NET), "inet socket active (%d, %d %p) "
751 " with linebuf@%p, size %zu)\n",
752 fd, event, ev, linebuf, linebufsize-1);
753
754 #ifdef LIBWRAP
755 request_init(&req, RQ_DAEMON, appname, RQ_FILE, fd, NULL);
756 fromhost(&req);
757 reject = !hosts_access(&req);
758 if (reject)
759 DPRINTF(D_NET, "access denied\n");
760 #endif
761
762 len = sizeof(frominet);
763 rv = recvfrom(fd, linebuf, linebufsize-1, 0,
764 (struct sockaddr *)&frominet, &len);
765 if (rv == 0 || (rv < 0 && errno == EINTR))
766 return;
767 else if (rv < 0) {
768 logerror("recvfrom inet");
769 return;
770 }
771
772 linebuf[rv] = '\0';
773 if (!reject)
774 printline(cvthname(&frominet), linebuf,
775 RemoteAddDate ? ADDDATE : 0);
776 }
777
778 /*
779 * given a pointer to an array of char *'s, a pointer to its current
780 * size and current allocated max size, and a new char * to add, add
781 * it, update everything as necessary, possibly allocating a new array
782 */
783 void
784 logpath_add(char ***lp, int *szp, int *maxszp, const char *new)
785 {
786 char **nlp;
787 int newmaxsz;
788
789 DPRINTF(D_FILE, "Adding `%s' to the %p logpath list\n", new, *lp);
790 if (*szp == *maxszp) {
791 if (*maxszp == 0) {
792 newmaxsz = 4; /* start of with enough for now */
793 *lp = NULL;
794 } else
795 newmaxsz = *maxszp * 2;
796 nlp = realloc(*lp, sizeof(char *) * (newmaxsz + 1));
797 if (nlp == NULL) {
798 logerror("Couldn't allocate line buffer");
799 die(0, 0, NULL);
800 }
801 *lp = nlp;
802 *maxszp = newmaxsz;
803 }
804 if (((*lp)[(*szp)++] = strdup(new)) == NULL) {
805 logerror("Couldn't allocate logpath");
806 die(0, 0, NULL);
807 }
808 (*lp)[(*szp)] = NULL; /* always keep it NULL terminated */
809 }
810
811 /* do a file of log sockets */
812 void
813 logpath_fileadd(char ***lp, int *szp, int *maxszp, const char *file)
814 {
815 FILE *fp;
816 char *line;
817 size_t len;
818
819 fp = fopen(file, "r");
820 if (fp == NULL) {
821 logerror("Could not open socket file list `%s'", file);
822 die(0, 0, NULL);
823 }
824
825 while ((line = fgetln(fp, &len)) != NULL) {
826 line[len - 1] = 0;
827 logpath_add(lp, szp, maxszp, line);
828 }
829 fclose(fp);
830 }
831
832 /*
833 * checks UTF-8 codepoint
834 * returns either its length in bytes or 0 if *input is invalid
835 */
836 unsigned
837 valid_utf8(const char *c) {
838 unsigned rc, nb;
839
840 /* first byte gives sequence length */
841 if ((*c & 0x80) == 0x00) return 1; /* 0bbbbbbb -- ASCII */
842 else if ((*c & 0xc0) == 0x80) return 0; /* 10bbbbbb -- trailing byte */
843 else if ((*c & 0xe0) == 0xc0) nb = 2; /* 110bbbbb */
844 else if ((*c & 0xf0) == 0xe0) nb = 3; /* 1110bbbb */
845 else if ((*c & 0xf8) == 0xf0) nb = 4; /* 11110bbb */
846 else return 0; /* UTF-8 allows only up to 4 bytes */
847
848 /* catch overlong encodings */
849 if ((*c & 0xfe) == 0xc0)
850 return 0; /* 1100000b ... */
851 else if (((*c & 0xff) == 0xe0) && ((*(c+1) & 0xe0) == 0x80))
852 return 0; /* 11100000 100bbbbb ... */
853 else if (((*c & 0xff) == 0xf0) && ((*(c+1) & 0xf0) == 0x80))
854 return 0; /* 11110000 1000bbbb ... ... */
855
856 /* and also filter UTF-16 surrogates (=invalid in UTF-8) */
857 if (((*c & 0xff) == 0xed) && ((*(c+1) & 0xe0) == 0xa0))
858 return 0; /* 11101101 101bbbbb ... */
859
860 rc = nb;
861 /* check trailing bytes */
862 switch (nb) {
863 default: return 0;
864 case 4: if ((*(c+3) & 0xc0) != 0x80) return 0; /*FALLTHROUGH*/
865 case 3: if ((*(c+2) & 0xc0) != 0x80) return 0; /*FALLTHROUGH*/
866 case 2: if ((*(c+1) & 0xc0) != 0x80) return 0; /*FALLTHROUGH*/
867 }
868 return rc;
869 }
870 #define UTF8CHARMAX 4
871
872 /*
873 * read UTF-8 value
874 * returns a the codepoint number
875 */
876 uint_fast32_t
877 get_utf8_value(const char *c) {
878 uint_fast32_t sum;
879 unsigned nb, i;
880
881 /* first byte gives sequence length */
882 if ((*c & 0x80) == 0x00) return *c;/* 0bbbbbbb -- ASCII */
883 else if ((*c & 0xc0) == 0x80) return 0; /* 10bbbbbb -- trailing byte */
884 else if ((*c & 0xe0) == 0xc0) { /* 110bbbbb */
885 nb = 2;
886 sum = (*c & ~0xe0) & 0xff;
887 } else if ((*c & 0xf0) == 0xe0) { /* 1110bbbb */
888 nb = 3;
889 sum = (*c & ~0xf0) & 0xff;
890 } else if ((*c & 0xf8) == 0xf0) { /* 11110bbb */
891 nb = 4;
892 sum = (*c & ~0xf8) & 0xff;
893 } else return 0; /* UTF-8 allows only up to 4 bytes */
894
895 /* check trailing bytes -- 10bbbbbb */
896 i = 1;
897 while (i < nb) {
898 sum <<= 6;
899 sum |= ((*(c+i) & ~0xc0) & 0xff);
900 i++;
901 }
902 return sum;
903 }
904
905 /* note previous versions transscribe
906 * control characters, e.g. \007 --> "^G"
907 * did anyone rely on that?
908 *
909 * this new version works on only one buffer and
910 * replaces control characters with a space
911 */
912 #define NEXTFIELD(ptr) if (*(p) == ' ') (p)++; /* SP */ \
913 else { \
914 DPRINTF(D_DATA, "format error\n"); \
915 if (*(p) == '\0') start = (p); \
916 goto all_syslog_msg; \
917 }
918 #define FORCE2ASCII(c) ((iscntrl((unsigned char)(c)) && (c) != '\t') \
919 ? ((c) == '\n' ? ' ' : '?') \
920 : (c) & 0177)
921
922 /* following syslog-protocol */
923 #define printusascii(ch) (ch >= 33 && ch <= 126)
924 #define sdname(ch) (ch != '=' && ch != ' ' \
925 && ch != ']' && ch != '"' \
926 && printusascii(ch))
927
928 /* checks whether the first word of string p can be interpreted as
929 * a syslog-protocol MSGID and if so returns its length.
930 *
931 * otherwise returns 0
932 */
933 static unsigned
934 check_msgid(char *p)
935 {
936 char *q = p;
937
938 /* consider the NILVALUE to be valid */
939 if (*q == '-' && *(q+1) == ' ')
940 return 1;
941
942 for (;;) {
943 if (*q == ' ')
944 return q - p;
945 else if (*q == '\0' || !printusascii(*q) || q - p >= MSGID_MAX)
946 return 0;
947 else
948 q++;
949 }
950 }
951
952 /*
953 * returns number of chars found in SD at beginning of string p
954 * thus returns 0 if no valid SD is found
955 *
956 * if ascii == true then substitute all non-ASCII chars
957 * otherwise use syslog-protocol rules to allow UTF-8 in values
958 * note: one pass for filtering and scanning, so a found SD
959 * is always filtered, but an invalid one could be partially
960 * filtered up to the format error.
961 */
962 static unsigned
963 check_sd(char* p)
964 {
965 char *q = p;
966 bool esc = false;
967
968 /* consider the NILVALUE to be valid */
969 if (*q == '-' && (*(q+1) == ' ' || *(q+1) == '\0'))
970 return 1;
971
972 for(;;) { /* SD-ELEMENT */
973 if (*q++ != '[') return 0;
974 /* SD-ID */
975 if (!sdname(*q)) return 0;
976 while (sdname(*q)) {
977 *q = FORCE2ASCII(*q);
978 q++;
979 }
980 for(;;) { /* SD-PARAM */
981 if (*q == ']') {
982 q++;
983 if (*q == ' ' || *q == '\0') return q - p;
984 else if (*q == '[') break;
985 } else if (*q++ != ' ') return 0;
986
987 /* PARAM-NAME */
988 if (!sdname(*q)) return 0;
989 while (sdname(*q)) {
990 *q = FORCE2ASCII(*q);
991 q++;
992 }
993
994 if (*q++ != '=') return 0;
995 if (*q++ != '"') return 0;
996
997 for(;;) { /* PARAM-VALUE */
998 if (esc) {
999 esc = false;
1000 if (*q == '\\' || *q == '"' ||
1001 *q == ']') {
1002 q++;
1003 continue;
1004 }
1005 /* no else because invalid
1006 * escape sequences are accepted */
1007 }
1008 else if (*q == '"') break;
1009 else if (*q == '\0' || *q == ']') return 0;
1010 else if (*q == '\\') esc = true;
1011 else {
1012 int i;
1013 i = valid_utf8(q);
1014 if (i == 0)
1015 *q = '?';
1016 else if (i == 1)
1017 *q = FORCE2ASCII(*q);
1018 else /* multi byte char */
1019 q += (i-1);
1020 }
1021 q++;
1022 }
1023 q++;
1024 }
1025 }
1026 }
1027
1028 struct buf_msg *
1029 printline_syslogprotocol(const char *hname, char *msg,
1030 int flags, int pri)
1031 {
1032 struct buf_msg *buffer;
1033 char *p, *start;
1034 unsigned sdlen = 0, i = 0;
1035 bool utf8allowed = false; /* for some fields */
1036
1037 DPRINTF((D_CALL|D_BUFFER|D_DATA), "printline_syslogprotocol("
1038 "\"%s\", \"%s\", %d, %d)\n", hname, msg, flags, pri);
1039
1040 buffer = buf_msg_new(0);
1041 p = msg;
1042 p += check_timestamp((unsigned char*) p,
1043 &buffer->timestamp, true, !BSDOutputFormat);
1044 DPRINTF(D_DATA, "Got timestamp \"%s\"\n", buffer->timestamp);
1045
1046 if (flags & ADDDATE) {
1047 FREEPTR(buffer->timestamp);
1048 buffer->timestamp = make_timestamp(NULL, !BSDOutputFormat, 0);
1049 }
1050
1051 start = p;
1052 NEXTFIELD(p);
1053 /* extract host */
1054 for (start = p;; p++) {
1055 if ((*p == ' ' || *p == '\0')
1056 && start == p-1 && *(p-1) == '-') {
1057 /* NILVALUE */
1058 break;
1059 } else if ((*p == ' ' || *p == '\0')
1060 && (start != p-1 || *(p-1) != '-')) {
1061 buffer->host = strndup(start, p - start);
1062 break;
1063 } else {
1064 *p = FORCE2ASCII(*p);
1065 }
1066 }
1067 /* p @ SP after host */
1068 DPRINTF(D_DATA, "Got host \"%s\"\n", buffer->host);
1069
1070 /* extract app-name */
1071 NEXTFIELD(p);
1072 for (start = p;; p++) {
1073 if ((*p == ' ' || *p == '\0')
1074 && start == p-1 && *(p-1) == '-') {
1075 /* NILVALUE */
1076 break;
1077 } else if ((*p == ' ' || *p == '\0')
1078 && (start != p-1 || *(p-1) != '-')) {
1079 buffer->prog = strndup(start, p - start);
1080 break;
1081 } else {
1082 *p = FORCE2ASCII(*p);
1083 }
1084 }
1085 DPRINTF(D_DATA, "Got prog \"%s\"\n", buffer->prog);
1086
1087 /* extract procid */
1088 NEXTFIELD(p);
1089 for (start = p;; p++) {
1090 if ((*p == ' ' || *p == '\0')
1091 && start == p-1 && *(p-1) == '-') {
1092 /* NILVALUE */
1093 break;
1094 } else if ((*p == ' ' || *p == '\0')
1095 && (start != p-1 || *(p-1) != '-')) {
1096 buffer->pid = strndup(start, p - start);
1097 start = p;
1098 break;
1099 } else {
1100 *p = FORCE2ASCII(*p);
1101 }
1102 }
1103 DPRINTF(D_DATA, "Got pid \"%s\"\n", buffer->pid);
1104
1105 /* extract msgid */
1106 NEXTFIELD(p);
1107 for (start = p;; p++) {
1108 if ((*p == ' ' || *p == '\0')
1109 && start == p-1 && *(p-1) == '-') {
1110 /* NILVALUE */
1111 start = p+1;
1112 break;
1113 } else if ((*p == ' ' || *p == '\0')
1114 && (start != p-1 || *(p-1) != '-')) {
1115 buffer->msgid = strndup(start, p - start);
1116 start = p+1;
1117 break;
1118 } else {
1119 *p = FORCE2ASCII(*p);
1120 }
1121 }
1122 DPRINTF(D_DATA, "Got msgid \"%s\"\n", buffer->msgid);
1123
1124 /* extract SD */
1125 NEXTFIELD(p);
1126 start = p;
1127 sdlen = check_sd(p);
1128 DPRINTF(D_DATA, "check_sd(\"%s\") returned %d\n", p, sdlen);
1129
1130 if (sdlen == 1 && *p == '-') {
1131 /* NILVALUE */
1132 p++;
1133 } else if (sdlen > 1) {
1134 buffer->sd = strndup(p, sdlen);
1135 p += sdlen;
1136 } else {
1137 DPRINTF(D_DATA, "format error\n");
1138 }
1139 if (*p == '\0') start = p;
1140 else if (*p == ' ') start = ++p; /* SP */
1141 DPRINTF(D_DATA, "Got SD \"%s\"\n", buffer->sd);
1142
1143 /* and now the message itself
1144 * note: move back to last start to check for BOM
1145 */
1146 all_syslog_msg:
1147 p = start;
1148
1149 /* check for UTF-8-BOM */
1150 if (IS_BOM(p)) {
1151 DPRINTF(D_DATA, "UTF-8 BOM\n");
1152 utf8allowed = true;
1153 p += 3;
1154 }
1155
1156 if (*p != '\0' && !utf8allowed) {
1157 size_t msglen;
1158
1159 msglen = strlen(p);
1160 assert(!buffer->msg);
1161 buffer->msg = copy_utf8_ascii(p, msglen);
1162 buffer->msgorig = buffer->msg;
1163 buffer->msglen = buffer->msgsize = strlen(buffer->msg)+1;
1164 } else if (*p != '\0' && utf8allowed) {
1165 while (*p != '\0') {
1166 i = valid_utf8(p);
1167 if (i == 0)
1168 *p++ = '?';
1169 else if (i == 1)
1170 *p = FORCE2ASCII(*p);
1171 p += i;
1172 }
1173 assert(p != start);
1174 assert(!buffer->msg);
1175 buffer->msg = strndup(start, p - start);
1176 buffer->msgorig = buffer->msg;
1177 buffer->msglen = buffer->msgsize = 1 + p - start;
1178 }
1179 DPRINTF(D_DATA, "Got msg \"%s\"\n", buffer->msg);
1180
1181 buffer->recvhost = strdup(hname);
1182 buffer->pri = pri;
1183 buffer->flags = flags;
1184
1185 return buffer;
1186 }
1187
1188 /* copies an input into a new ASCII buffer
1189 * ASCII controls are converted to format "^X"
1190 * multi-byte UTF-8 chars are converted to format "<ab><cd>"
1191 */
1192 #define INIT_BUFSIZE 512
1193 char *
1194 copy_utf8_ascii(char *p, size_t p_len)
1195 {
1196 size_t idst = 0, isrc = 0, dstsize = INIT_BUFSIZE, i;
1197 char *dst, *tmp_dst;
1198
1199 MALLOC(dst, dstsize);
1200 while (isrc < p_len) {
1201 if (dstsize < idst + 10) {
1202 /* check for enough space for \0 and a UTF-8
1203 * conversion; longest possible is <U+123456> */
1204 tmp_dst = realloc(dst, dstsize + INIT_BUFSIZE);
1205 if (!tmp_dst)
1206 break;
1207 dst = tmp_dst;
1208 dstsize += INIT_BUFSIZE;
1209 }
1210
1211 i = valid_utf8(&p[isrc]);
1212 if (i == 0) { /* invalid encoding */
1213 dst[idst++] = '?';
1214 isrc++;
1215 } else if (i == 1) { /* check printable */
1216 if (iscntrl((unsigned char)p[isrc])
1217 && p[isrc] != '\t') {
1218 if (p[isrc] == '\n') {
1219 dst[idst++] = ' ';
1220 isrc++;
1221 } else {
1222 dst[idst++] = '^';
1223 dst[idst++] = p[isrc++] ^ 0100;
1224 }
1225 } else
1226 dst[idst++] = p[isrc++];
1227 } else { /* convert UTF-8 to ASCII */
1228 dst[idst++] = '<';
1229 idst += snprintf(&dst[idst], dstsize - idst, "U+%x",
1230 get_utf8_value(&p[isrc]));
1231 isrc += i;
1232 dst[idst++] = '>';
1233 }
1234 }
1235 dst[idst] = '\0';
1236
1237 /* shrink buffer to right size */
1238 tmp_dst = realloc(dst, idst+1);
1239 if (tmp_dst)
1240 return tmp_dst;
1241 else
1242 return dst;
1243 }
1244
1245 struct buf_msg *
1246 printline_bsdsyslog(const char *hname, char *msg,
1247 int flags, int pri)
1248 {
1249 struct buf_msg *buffer;
1250 char *p, *start;
1251 unsigned msgidlen = 0, sdlen = 0;
1252
1253 DPRINTF((D_CALL|D_BUFFER|D_DATA), "printline_bsdsyslog("
1254 "\"%s\", \"%s\", %d, %d)\n", hname, msg, flags, pri);
1255
1256 buffer = buf_msg_new(0);
1257 p = msg;
1258 p += check_timestamp((unsigned char*) p,
1259 &buffer->timestamp, false, !BSDOutputFormat);
1260 DPRINTF(D_DATA, "Got timestamp \"%s\"\n", buffer->timestamp);
1261
1262 if (flags & ADDDATE || !buffer->timestamp) {
1263 FREEPTR(buffer->timestamp);
1264 buffer->timestamp = make_timestamp(NULL, !BSDOutputFormat, 0);
1265 }
1266
1267 if (*p == ' ') p++; /* SP */
1268 else goto all_bsd_msg;
1269 /* in any error case we skip header parsing and
1270 * treat all following data as message content */
1271
1272 /* extract host */
1273 for (start = p;; p++) {
1274 if (*p == ' ' || *p == '\0') {
1275 buffer->host = strndup(start, p - start);
1276 break;
1277 } else if (*p == '[' || (*p == ':'
1278 && (*(p+1) == ' ' || *(p+1) == '\0'))) {
1279 /* no host in message */
1280 buffer->host = strdup(hname);
1281 buffer->prog = strndup(start, p - start);
1282 break;
1283 } else {
1284 *p = FORCE2ASCII(*p);
1285 }
1286 }
1287 DPRINTF(D_DATA, "Got host \"%s\"\n", buffer->host);
1288 /* p @ SP after host, or @ :/[ after prog */
1289
1290 /* extract program */
1291 if (!buffer->prog) {
1292 if (*p == ' ') p++; /* SP */
1293 else goto all_bsd_msg;
1294
1295 for (start = p;; p++) {
1296 if (*p == ' ' || *p == '\0') { /* error */
1297 goto all_bsd_msg;
1298 } else if (*p == '[' || (*p == ':'
1299 && (*(p+1) == ' ' || *(p+1) == '\0'))) {
1300 buffer->prog = strndup(start, p - start);
1301 break;
1302 } else {
1303 *p = FORCE2ASCII(*p);
1304 }
1305 }
1306 }
1307 DPRINTF(D_DATA, "Got prog \"%s\"\n", buffer->prog);
1308 start = p;
1309
1310 /* p @ :/[ after prog */
1311 if (*p == '[') {
1312 p++;
1313 if (*p == ' ') p++; /* SP */
1314 for (start = p;; p++) {
1315 if (*p == ' ' || *p == '\0') { /* error */
1316 goto all_bsd_msg;
1317 } else if (*p == ']') {
1318 buffer->pid = strndup(start, p - start);
1319 break;
1320 } else {
1321 *p = FORCE2ASCII(*p);
1322 }
1323 }
1324 }
1325 DPRINTF(D_DATA, "Got pid \"%s\"\n", buffer->pid);
1326
1327 if (*p == ']') p++;
1328 if (*p == ':') p++;
1329 if (*p == ' ') p++;
1330
1331 /* p @ msgid, @ opening [ of SD or @ first byte of message
1332 * accept either case and try to detect MSGID and SD fields
1333 *
1334 * only limitation: we do not accept UTF-8 data in
1335 * BSD Syslog messages -- so all SD values are ASCII-filtered
1336 *
1337 * I have found one scenario with 'unexpected' behaviour:
1338 * if there is only a SD intended, but a) it is short enough
1339 * to be a MSGID and b) the first word of the message can also
1340 * be parsed as an SD.
1341 * example:
1342 * "<35>Jul 6 12:39:08 tag[123]: [exampleSDID@0] - hello"
1343 * --> parsed as
1344 * MSGID = "[exampleSDID@0]"
1345 * SD = "-"
1346 * MSG = "hello"
1347 */
1348 start = p;
1349 msgidlen = check_msgid(p);
1350 if (msgidlen) /* check for SD in 2nd field */
1351 sdlen = check_sd(p+msgidlen+1);
1352
1353 if (msgidlen && sdlen) {
1354 /* MSGID in 1st and SD in 2nd field
1355 * now check for NILVALUEs and copy */
1356 if (msgidlen == 1 && *p == '-') {
1357 p++; /* - */
1358 p++; /* SP */
1359 DPRINTF(D_DATA, "Got MSGID \"-\"\n");
1360 } else {
1361 /* only has ASCII chars after check_msgid() */
1362 buffer->msgid = strndup(p, msgidlen);
1363 p += msgidlen;
1364 p++; /* SP */
1365 DPRINTF(D_DATA, "Got MSGID \"%s\"\n",
1366 buffer->msgid);
1367 }
1368 } else {
1369 /* either no msgid or no SD in 2nd field
1370 * --> check 1st field for SD */
1371 DPRINTF(D_DATA, "No MSGID\n");
1372 sdlen = check_sd(p);
1373 }
1374
1375 if (sdlen == 0) {
1376 DPRINTF(D_DATA, "No SD\n");
1377 } else if (sdlen > 1) {
1378 buffer->sd = copy_utf8_ascii(p, sdlen);
1379 DPRINTF(D_DATA, "Got SD \"%s\"\n", buffer->sd);
1380 } else if (sdlen == 1 && *p == '-') {
1381 p++;
1382 DPRINTF(D_DATA, "Got SD \"-\"\n");
1383 } else {
1384 DPRINTF(D_DATA, "Error\n");
1385 }
1386
1387 if (*p == ' ') p++;
1388 start = p;
1389 /* and now the message itself
1390 * note: do not reset start, because we might come here
1391 * by goto and want to have the incomplete field as part
1392 * of the msg
1393 */
1394 all_bsd_msg:
1395 if (*p != '\0') {
1396 size_t msglen = strlen(p);
1397 buffer->msg = copy_utf8_ascii(p, msglen);
1398 buffer->msgorig = buffer->msg;
1399 buffer->msglen = buffer->msgsize = strlen(buffer->msg)+1;
1400 }
1401 DPRINTF(D_DATA, "Got msg \"%s\"\n", buffer->msg);
1402
1403 buffer->recvhost = strdup(hname);
1404 buffer->pri = pri;
1405 buffer->flags = flags | BSDSYSLOG;
1406
1407 return buffer;
1408 }
1409
1410 struct buf_msg *
1411 printline_kernelprintf(const char *hname, char *msg,
1412 int flags, int pri)
1413 {
1414 struct buf_msg *buffer;
1415 char *p;
1416 unsigned sdlen = 0;
1417
1418 DPRINTF((D_CALL|D_BUFFER|D_DATA), "printline_kernelprintf("
1419 "\"%s\", \"%s\", %d, %d)\n", hname, msg, flags, pri);
1420
1421 buffer = buf_msg_new(0);
1422 buffer->timestamp = make_timestamp(NULL, !BSDOutputFormat, 0);
1423 buffer->pri = pri;
1424 buffer->flags = flags;
1425
1426 /* assume there is no MSGID but there might be SD */
1427 p = msg;
1428 sdlen = check_sd(p);
1429
1430 if (sdlen == 0) {
1431 DPRINTF(D_DATA, "No SD\n");
1432 } else if (sdlen > 1) {
1433 buffer->sd = copy_utf8_ascii(p, sdlen);
1434 DPRINTF(D_DATA, "Got SD \"%s\"\n", buffer->sd);
1435 } else if (sdlen == 1 && *p == '-') {
1436 p++;
1437 DPRINTF(D_DATA, "Got SD \"-\"\n");
1438 } else {
1439 DPRINTF(D_DATA, "Error\n");
1440 }
1441
1442 if (*p == ' ') p++;
1443 if (*p != '\0') {
1444 size_t msglen = strlen(p);
1445 buffer->msg = copy_utf8_ascii(p, msglen);
1446 buffer->msgorig = buffer->msg;
1447 buffer->msglen = buffer->msgsize = strlen(buffer->msg)+1;
1448 }
1449 DPRINTF(D_DATA, "Got msg \"%s\"\n", buffer->msg);
1450
1451 return buffer;
1452 }
1453
1454 /*
1455 * Take a raw input line, read priority and version, call the
1456 * right message parsing function, then call logmsg().
1457 */
1458 void
1459 printline(const char *hname, char *msg, int flags)
1460 {
1461 struct buf_msg *buffer;
1462 int pri;
1463 char *p, *q;
1464 long n;
1465 bool bsdsyslog = true;
1466
1467 DPRINTF((D_CALL|D_BUFFER|D_DATA),
1468 "printline(\"%s\", \"%s\", %d)\n", hname, msg, flags);
1469
1470 /* test for special codes */
1471 pri = DEFUPRI;
1472 p = msg;
1473 if (*p == '<') {
1474 errno = 0;
1475 n = strtol(p + 1, &q, 10);
1476 if (*q == '>' && n >= 0 && n < INT_MAX && errno == 0) {
1477 p = q + 1;
1478 pri = (int)n;
1479 /* check for syslog-protocol version */
1480 if (*p == '1' && p[1] == ' ') {
1481 p += 2; /* skip version and space */
1482 bsdsyslog = false;
1483 } else {
1484 bsdsyslog = true;
1485 }
1486 }
1487 }
1488 if (pri & ~(LOG_FACMASK|LOG_PRIMASK))
1489 pri = DEFUPRI;
1490
1491 /*
1492 * Don't allow users to log kernel messages.
1493 * NOTE: Since LOG_KERN == 0, this will also match
1494 * messages with no facility specified.
1495 */
1496 if ((pri & LOG_FACMASK) == LOG_KERN)
1497 pri = LOG_MAKEPRI(LOG_USER, LOG_PRI(pri));
1498
1499 if (bsdsyslog) {
1500 buffer = printline_bsdsyslog(hname, p, flags, pri);
1501 } else {
1502 buffer = printline_syslogprotocol(hname, p, flags, pri);
1503 }
1504 logmsg(buffer);
1505 DELREF(buffer);
1506 }
1507
1508 /*
1509 * Take a raw input line from /dev/klog, split and format similar to syslog().
1510 */
1511 void
1512 printsys(char *msg)
1513 {
1514 int n, is_printf, pri, flags;
1515 char *p, *q;
1516 struct buf_msg *buffer;
1517
1518 klog_linebufoff = 0;
1519 for (p = msg; *p != '\0'; ) {
1520 bool bsdsyslog = true;
1521
1522 is_printf = 1;
1523 flags = ISKERNEL | ADDDATE | BSDSYSLOG;
1524 if (SyncKernel)
1525 flags |= SYNC_FILE;
1526 if (is_printf) /* kernel printf's come out on console */
1527 flags |= IGN_CONS;
1528 pri = DEFSPRI;
1529
1530 if (*p == '<') {
1531 errno = 0;
1532 n = (int)strtol(p + 1, &q, 10);
1533 if (*q == '>' && n >= 0 && n < INT_MAX && errno == 0) {
1534 p = q + 1;
1535 is_printf = 0;
1536 pri = n;
1537 if (*p == '1') { /* syslog-protocol version */
1538 p += 2; /* skip version and space */
1539 bsdsyslog = false;
1540 } else {
1541 bsdsyslog = true;
1542 }
1543 }
1544 }
1545 for (q = p; *q != '\0' && *q != '\n'; q++)
1546 /* look for end of line; no further checks.
1547 * trust the kernel to send ASCII only */;
1548 if (*q != '\0')
1549 *q++ = '\0';
1550 else {
1551 memcpy(linebuf, p, klog_linebufoff = q - p);
1552 break;
1553 }
1554
1555 if (pri &~ (LOG_FACMASK|LOG_PRIMASK))
1556 pri = DEFSPRI;
1557
1558 /* allow all kinds of input from kernel */
1559 if (is_printf)
1560 buffer = printline_kernelprintf(
1561 LocalFQDN, p, flags, pri);
1562 else {
1563 if (bsdsyslog)
1564 buffer = printline_bsdsyslog(
1565 LocalFQDN, p, flags, pri);
1566 else
1567 buffer = printline_syslogprotocol(
1568 LocalFQDN, p, flags, pri);
1569 }
1570
1571 /* set fields left open */
1572 if (!buffer->prog)
1573 buffer->prog = strdup(_PATH_UNIX);
1574 if (!buffer->host)
1575 buffer->host = LocalFQDN;
1576 if (!buffer->recvhost)
1577 buffer->recvhost = LocalFQDN;
1578
1579 logmsg(buffer);
1580 DELREF(buffer);
1581 p = q;
1582 }
1583 }
1584
1585 /*
1586 * Check to see if `name' matches the provided specification, using the
1587 * specified strstr function.
1588 */
1589 int
1590 matches_spec(const char *name, const char *spec,
1591 char *(*check)(const char *, const char *))
1592 {
1593 const char *s;
1594 const char *cursor;
1595 char prev, next;
1596 size_t len;
1597
1598 if (name[0] == '\0')
1599 return 0;
1600
1601 if (strchr(name, ',')) /* sanity */
1602 return 0;
1603
1604 len = strlen(name);
1605 cursor = spec;
1606 while ((s = (*check)(cursor, name)) != NULL) {
1607 prev = s == spec ? ',' : *(s - 1);
1608 cursor = s + len;
1609 next = *cursor;
1610
1611 if (prev == ',' && (next == '\0' || next == ','))
1612 return 1;
1613 }
1614
1615 return 0;
1616 }
1617
1618 /*
1619 * wrapper with old function signature,
1620 * keeps calling code shorter and hides buffer allocation
1621 */
1622 void
1623 logmsg_async(int pri, const char *sd, const char *msg, int flags)
1624 {
1625 struct buf_msg *buffer;
1626 size_t msglen;
1627
1628 DPRINTF((D_CALL|D_DATA), "logmsg_async(%d, \"%s\", \"%s\", %d)\n",
1629 pri, sd, msg, flags);
1630
1631 if (msg) {
1632 msglen = strlen(msg);
1633 msglen++; /* adds \0 */
1634 buffer = buf_msg_new(msglen);
1635 buffer->msglen = strlcpy(buffer->msg, msg, msglen) + 1;
1636 } else {
1637 buffer = buf_msg_new(0);
1638 }
1639 if (sd) buffer->sd = strdup(sd);
1640 buffer->timestamp = make_timestamp(NULL, !BSDOutputFormat, 0);
1641 buffer->prog = appname;
1642 buffer->pid = include_pid;
1643 buffer->recvhost = buffer->host = LocalFQDN;
1644 buffer->pri = pri;
1645 buffer->flags = flags;
1646
1647 logmsg(buffer);
1648 DELREF(buffer);
1649 }
1650
1651 /* read timestamp in from_buf, convert into a timestamp in to_buf
1652 *
1653 * returns length of timestamp found in from_buf (= number of bytes consumed)
1654 */
1655 size_t
1656 check_timestamp(unsigned char *from_buf, char **to_buf,
1657 bool from_iso, bool to_iso)
1658 {
1659 unsigned char *q;
1660 int p;
1661 bool found_ts = false;
1662
1663 DPRINTF((D_CALL|D_DATA), "check_timestamp(%p = \"%s\", from_iso=%d, "
1664 "to_iso=%d)\n", from_buf, from_buf, from_iso, to_iso);
1665
1666 if (!from_buf) return 0;
1667 /*
1668 * Check to see if msg looks non-standard.
1669 * looks at every char because we do not have a msg length yet
1670 */
1671 /* detailed checking adapted from Albert Mietus' sl_timestamp.c */
1672 if (from_iso) {
1673 if (from_buf[4] == '-' && from_buf[7] == '-'
1674 && from_buf[10] == 'T' && from_buf[13] == ':'
1675 && from_buf[16] == ':'
1676 && isdigit(from_buf[0]) && isdigit(from_buf[1])
1677 && isdigit(from_buf[2]) && isdigit(from_buf[3]) /* YYYY */
1678 && isdigit(from_buf[5]) && isdigit(from_buf[6])
1679 && isdigit(from_buf[8]) && isdigit(from_buf[9]) /* mm dd */
1680 && isdigit(from_buf[11]) && isdigit(from_buf[12]) /* HH */
1681 && isdigit(from_buf[14]) && isdigit(from_buf[15]) /* MM */
1682 && isdigit(from_buf[17]) && isdigit(from_buf[18]) /* SS */
1683 ) {
1684 /* time-secfrac */
1685 if (from_buf[19] == '.')
1686 for (p=20; isdigit(from_buf[p]); p++) /* NOP*/;
1687 else
1688 p = 19;
1689 /* time-offset */
1690 if (from_buf[p] == 'Z'
1691 || ((from_buf[p] == '+' || from_buf[p] == '-')
1692 && from_buf[p+3] == ':'
1693 && isdigit(from_buf[p+1]) && isdigit(from_buf[p+2])
1694 && isdigit(from_buf[p+4]) && isdigit(from_buf[p+5])
1695 ))
1696 found_ts = true;
1697 }
1698 } else {
1699 if (from_buf[3] == ' ' && from_buf[6] == ' '
1700 && from_buf[9] == ':' && from_buf[12] == ':'
1701 && (from_buf[4] == ' ' || isdigit(from_buf[4]))
1702 && isdigit(from_buf[5]) /* dd */
1703 && isdigit(from_buf[7]) && isdigit(from_buf[8]) /* HH */
1704 && isdigit(from_buf[10]) && isdigit(from_buf[11]) /* MM */
1705 && isdigit(from_buf[13]) && isdigit(from_buf[14]) /* SS */
1706 && isupper(from_buf[0]) && islower(from_buf[1]) /* month */
1707 && islower(from_buf[2]))
1708 found_ts = true;
1709 }
1710 if (!found_ts) {
1711 if (from_buf[0] == '-' && from_buf[1] == ' ') {
1712 /* NILVALUE */
1713 if (to_iso) {
1714 /* with ISO = syslog-protocol output leave
1715 * it as is, because it is better to have
1716 * no timestamp than a wrong one.
1717 */
1718 *to_buf = strdup("-");
1719 } else {
1720 /* with BSD Syslog the field is reqired
1721 * so replace it with current time
1722 */
1723 *to_buf = make_timestamp(NULL, false, 0);
1724 }
1725 return 2;
1726 }
1727 *to_buf = make_timestamp(NULL, false, 0);
1728 return 0;
1729 }
1730
1731 if (!from_iso && !to_iso) {
1732 /* copy BSD timestamp */
1733 DPRINTF(D_CALL, "check_timestamp(): copy BSD timestamp\n");
1734 *to_buf = strndup((char *)from_buf, BSD_TIMESTAMPLEN);
1735 return BSD_TIMESTAMPLEN;
1736 } else if (from_iso && to_iso) {
1737 /* copy ISO timestamp */
1738 DPRINTF(D_CALL, "check_timestamp(): copy ISO timestamp\n");
1739 if (!(q = (unsigned char *) strchr((char *)from_buf, ' ')))
1740 q = from_buf + strlen((char *)from_buf);
1741 *to_buf = strndup((char *)from_buf, q - from_buf);
1742 return q - from_buf;
1743 } else if (from_iso && !to_iso) {
1744 /* convert ISO->BSD */
1745 struct tm parsed;
1746 time_t timeval;
1747 char tsbuf[MAX_TIMESTAMPLEN];
1748 int i = 0, j;
1749
1750 DPRINTF(D_CALL, "check_timestamp(): convert ISO->BSD\n");
1751 for(i = 0; i < MAX_TIMESTAMPLEN && from_buf[i] != '\0'
1752 && from_buf[i] != '.' && from_buf[i] != ' '; i++)
1753 tsbuf[i] = from_buf[i]; /* copy date & time */
1754 j = i;
1755 for(; i < MAX_TIMESTAMPLEN && from_buf[i] != '\0'
1756 && from_buf[i] != '+' && from_buf[i] != '-'
1757 && from_buf[i] != 'Z' && from_buf[i] != ' '; i++)
1758 ; /* skip fraction digits */
1759 for(; i < MAX_TIMESTAMPLEN && from_buf[i] != '\0'
1760 && from_buf[i] != ':' && from_buf[i] != ' ' ; i++, j++)
1761 tsbuf[j] = from_buf[i]; /* copy TZ */
1762 if (from_buf[i] == ':') i++; /* skip colon */
1763 for(; i < MAX_TIMESTAMPLEN && from_buf[i] != '\0'
1764 && from_buf[i] != ' ' ; i++, j++)
1765 tsbuf[j] = from_buf[i]; /* copy TZ */
1766
1767 (void)memset(&parsed, 0, sizeof(parsed));
1768 (void)strptime(tsbuf, "%FT%T%z", &parsed);
1769 parsed.tm_isdst = -1;
1770 timeval = mktime(&parsed);
1771
1772 *to_buf = make_timestamp(&timeval, false, BSD_TIMESTAMPLEN);
1773 return i;
1774 } else if (!from_iso && to_iso) {
1775 /* convert BSD->ISO */
1776 struct tm parsed;
1777 struct tm *current;
1778 time_t timeval;
1779
1780 (void)memset(&parsed, 0, sizeof(parsed));
1781 parsed.tm_isdst = -1;
1782 DPRINTF(D_CALL, "check_timestamp(): convert BSD->ISO\n");
1783 strptime((char *)from_buf, "%b %d %T", &parsed);
1784 current = gmtime(&now);
1785
1786 /* use current year and timezone */
1787 parsed.tm_isdst = current->tm_isdst;
1788 parsed.tm_gmtoff = current->tm_gmtoff;
1789 parsed.tm_year = current->tm_year;
1790 if (current->tm_mon == 0 && parsed.tm_mon == 11)
1791 parsed.tm_year--;
1792
1793 timeval = mktime(&parsed);
1794 *to_buf = make_timestamp(&timeval, true, MAX_TIMESTAMPLEN - 1);
1795
1796 return BSD_TIMESTAMPLEN;
1797 } else {
1798 DPRINTF(D_MISC,
1799 "Executing unreachable code in check_timestamp()\n");
1800 return 0;
1801 }
1802 }
1803
1804 /*
1805 * Log a message to the appropriate log files, users, etc. based on
1806 * the priority.
1807 */
1808 void
1809 logmsg(struct buf_msg *buffer)
1810 {
1811 struct filed *f;
1812 int fac, omask, prilev;
1813
1814 DPRINTF((D_CALL|D_BUFFER), "logmsg: buffer@%p, pri 0%o/%d, flags 0x%x,"
1815 " timestamp \"%s\", from \"%s\", sd \"%s\", msg \"%s\"\n",
1816 buffer, buffer->pri, buffer->pri, buffer->flags,
1817 buffer->timestamp, buffer->recvhost, buffer->sd, buffer->msg);
1818
1819 omask = sigblock(sigmask(SIGHUP)|sigmask(SIGALRM));
1820
1821 /* sanity check */
1822 assert(buffer->refcount == 1);
1823 assert(buffer->msglen <= buffer->msgsize);
1824 assert(buffer->msgorig <= buffer->msg);
1825 assert((buffer->msg && buffer->msglen == strlen(buffer->msg)+1)
1826 || (!buffer->msg && !buffer->msglen));
1827 if (!buffer->msg && !buffer->sd && !buffer->msgid)
1828 DPRINTF(D_BUFFER, "Empty message?\n");
1829
1830 /* extract facility and priority level */
1831 if (buffer->flags & MARK)
1832 fac = LOG_NFACILITIES;
1833 else
1834 fac = LOG_FAC(buffer->pri);
1835 prilev = LOG_PRI(buffer->pri);
1836
1837 /* log the message to the particular outputs */
1838 if (!Initialized) {
1839 f = &consfile;
1840 f->f_file = open(ctty, O_WRONLY | O_NDELAY, 0);
1841
1842 if (f->f_file >= 0) {
1843 DELREF(f->f_prevmsg);
1844 f->f_prevmsg = NEWREF(buffer);
1845 fprintlog(f, NEWREF(buffer), NULL);
1846 DELREF(buffer);
1847 (void)close(f->f_file);
1848 }
1849 (void)sigsetmask(omask);
1850 return;
1851 }
1852
1853 for (f = Files; f; f = f->f_next) {
1854 char *h; /* host to use for comparing */
1855
1856 /* skip messages that are incorrect priority */
1857 if (!MATCH_PRI(f, fac, prilev)
1858 || f->f_pmask[fac] == INTERNAL_NOPRI)
1859 continue;
1860
1861 /* skip messages with the incorrect host name */
1862 /* compare with host (which is supposedly more correct), */
1863 /* but fallback to recvhost if host is NULL */
1864 h = (buffer->host != NULL) ? buffer->host : buffer->recvhost;
1865 if (f->f_host != NULL && h != NULL) {
1866 char shost[MAXHOSTNAMELEN + 1];
1867
1868 if (BSDOutputFormat) {
1869 (void)strlcpy(shost, h, sizeof(shost));
1870 trim_anydomain(shost);
1871 h = shost;
1872 }
1873 switch (f->f_host[0]) {
1874 case '+':
1875 if (! matches_spec(h, f->f_host + 1,
1876 strcasestr))
1877 continue;
1878 break;
1879 case '-':
1880 if (matches_spec(h, f->f_host + 1,
1881 strcasestr))
1882 continue;
1883 break;
1884 }
1885 }
1886
1887 /* skip messages with the incorrect program name */
1888 if (f->f_program != NULL && buffer->prog != NULL) {
1889 switch (f->f_program[0]) {
1890 case '+':
1891 if (!matches_spec(buffer->prog,
1892 f->f_program + 1, strstr))
1893 continue;
1894 break;
1895 case '-':
1896 if (matches_spec(buffer->prog,
1897 f->f_program + 1, strstr))
1898 continue;
1899 break;
1900 default:
1901 if (!matches_spec(buffer->prog,
1902 f->f_program, strstr))
1903 continue;
1904 break;
1905 }
1906 }
1907
1908 if (f->f_type == F_CONSOLE && (buffer->flags & IGN_CONS))
1909 continue;
1910
1911 /* don't output marks to recently written files */
1912 if ((buffer->flags & MARK)
1913 && (now - f->f_time) < MarkInterval / 2)
1914 continue;
1915
1916 /*
1917 * suppress duplicate lines to this file unless NoRepeat
1918 */
1919 #define MSG_FIELD_EQ(x) ((!buffer->x && !f->f_prevmsg->x) || \
1920 (buffer->x && f->f_prevmsg->x && !strcmp(buffer->x, f->f_prevmsg->x)))
1921
1922 if ((buffer->flags & MARK) == 0 &&
1923 f->f_prevmsg &&
1924 buffer->msglen == f->f_prevmsg->msglen &&
1925 !NoRepeat &&
1926 MSG_FIELD_EQ(host) &&
1927 MSG_FIELD_EQ(sd) &&
1928 MSG_FIELD_EQ(msg)
1929 ) {
1930 f->f_prevcount++;
1931 DPRINTF(D_DATA, "Msg repeated %d times, %ld sec of %d\n",
1932 f->f_prevcount, (long)(now - f->f_time),
1933 repeatinterval[f->f_repeatcount]);
1934 /*
1935 * If domark would have logged this by now,
1936 * flush it now (so we don't hold isolated messages),
1937 * but back off so we'll flush less often
1938 * in the future.
1939 */
1940 if (now > REPEATTIME(f)) {
1941 fprintlog(f, NEWREF(buffer), NULL);
1942 DELREF(buffer);
1943 BACKOFF(f);
1944 }
1945 } else {
1946 /* new line, save it */
1947 if (f->f_prevcount)
1948 fprintlog(f, NULL, NULL);
1949 f->f_repeatcount = 0;
1950 DELREF(f->f_prevmsg);
1951 f->f_prevmsg = NEWREF(buffer);
1952 fprintlog(f, NEWREF(buffer), NULL);
1953 DELREF(buffer);
1954 }
1955 }
1956 (void)sigsetmask(omask);
1957 }
1958
1959 /*
1960 * format one buffer into output format given by flag BSDOutputFormat
1961 * line is allocated and has to be free()d by caller
1962 * size_t pointers are optional, if not NULL then they will return
1963 * different lenghts used for formatting and output
1964 */
1965 #define OUT(x) ((x)?(x):"-")
1966 bool
1967 format_buffer(struct buf_msg *buffer, char **line, size_t *ptr_linelen,
1968 size_t *ptr_msglen, size_t *ptr_tlsprefixlen, size_t *ptr_prilen)
1969 {
1970 #define FPBUFSIZE 30
1971 static char ascii_empty[] = "";
1972 char fp_buf[FPBUFSIZE] = "\0";
1973 char *hostname, *shorthostname = NULL;
1974 char *ascii_sd = ascii_empty;
1975 char *ascii_msg = ascii_empty;
1976 size_t linelen, msglen, tlsprefixlen, prilen, j;
1977
1978 DPRINTF(D_CALL, "format_buffer(%p)\n", buffer);
1979 if (!buffer) return false;
1980
1981 /* All buffer fields are set with strdup(). To avoid problems
1982 * on memory exhaustion we allow them to be empty and replace
1983 * the essential fields with already allocated generic values.
1984 */
1985 if (!buffer->timestamp)
1986 buffer->timestamp = timestamp;
1987 if (!buffer->host && !buffer->recvhost)
1988 buffer->host = LocalFQDN;
1989
1990 if (LogFacPri) {
1991 const char *f_s = NULL, *p_s = NULL;
1992 int fac = buffer->pri & LOG_FACMASK;
1993 int pri = LOG_PRI(buffer->pri);
1994 char f_n[5], p_n[5];
1995
1996 if (LogFacPri > 1) {
1997 CODE *c;
1998
1999 for (c = facilitynames; c->c_name != NULL; c++) {
2000 if (c->c_val == fac) {
2001 f_s = c->c_name;
2002 break;
2003 }
2004 }
2005 for (c = prioritynames; c->c_name != NULL; c++) {
2006 if (c->c_val == pri) {
2007 p_s = c->c_name;
2008 break;
2009 }
2010 }
2011 }
2012 if (f_s == NULL) {
2013 snprintf(f_n, sizeof(f_n), "%d", LOG_FAC(fac));
2014 f_s = f_n;
2015 }
2016 if (p_s == NULL) {
2017 snprintf(p_n, sizeof(p_n), "%d", pri);
2018 p_s = p_n;
2019 }
2020 snprintf(fp_buf, sizeof(fp_buf), "<%s.%s>", f_s, p_s);
2021 }
2022
2023 /* hostname or FQDN */
2024 hostname = (buffer->host ? buffer->host : buffer->recvhost);
2025 if (BSDOutputFormat
2026 && (shorthostname = strdup(hostname))) {
2027 /* if the previous BSD output format with "host [recvhost]:"
2028 * gets implemented, this is the right place to distinguish
2029 * between buffer->host and buffer->recvhost
2030 */
2031 trim_anydomain(shorthostname);
2032 hostname = shorthostname;
2033 }
2034
2035 /* new message formatting:
2036 * instead of using iov always assemble one complete TLS-ready line
2037 * with length and priority (depending on BSDOutputFormat either in
2038 * BSD Syslog or syslog-protocol format)
2039 *
2040 * additionally save the length of the prefixes,
2041 * so UDP destinations can skip the length prefix and
2042 * file/pipe/wall destinations can omit length and priority
2043 */
2044 /* first determine required space */
2045 if (BSDOutputFormat) {
2046 /* only output ASCII chars */
2047 if (buffer->sd)
2048 ascii_sd = copy_utf8_ascii(buffer->sd,
2049 strlen(buffer->sd));
2050 if (buffer->msg) {
2051 if (IS_BOM(buffer->msg))
2052 ascii_msg = copy_utf8_ascii(buffer->msg,
2053 buffer->msglen - 1);
2054 else /* assume already converted at input */
2055 ascii_msg = buffer->msg;
2056 }
2057 msglen = snprintf(NULL, 0, "<%d>%s%.15s %s %s%s%s%s: %s%s%s",
2058 buffer->pri, fp_buf, buffer->timestamp,
2059 hostname, OUT(buffer->prog),
2060 buffer->pid ? "[" : "",
2061 buffer->pid ? buffer->pid : "",
2062 buffer->pid ? "]" : "", ascii_sd,
2063 (buffer->sd && buffer->msg ? " ": ""), ascii_msg);
2064 } else
2065 msglen = snprintf(NULL, 0, "<%d>1 %s%s %s %s %s %s %s%s%s",
2066 buffer->pri, fp_buf, buffer->timestamp,
2067 hostname, OUT(buffer->prog), OUT(buffer->pid),
2068 OUT(buffer->msgid), OUT(buffer->sd),
2069 (buffer->msg ? " ": ""),
2070 (buffer->msg ? buffer->msg: ""));
2071 /* add space for length prefix */
2072 tlsprefixlen = 0;
2073 for (j = msglen; j; j /= 10)
2074 tlsprefixlen++;
2075 /* one more for the space */
2076 tlsprefixlen++;
2077
2078 prilen = snprintf(NULL, 0, "<%d>", buffer->pri);
2079 if (!BSDOutputFormat)
2080 prilen += 2; /* version char and space */
2081 MALLOC(*line, msglen + tlsprefixlen + 1);
2082 if (BSDOutputFormat)
2083 linelen = snprintf(*line,
2084 msglen + tlsprefixlen + 1,
2085 "%zu <%d>%s%.15s %s %s%s%s%s: %s%s%s",
2086 msglen, buffer->pri, fp_buf, buffer->timestamp,
2087 hostname, OUT(buffer->prog),
2088 (buffer->pid ? "[" : ""),
2089 (buffer->pid ? buffer->pid : ""),
2090 (buffer->pid ? "]" : ""), ascii_sd,
2091 (buffer->sd && buffer->msg ? " ": ""), ascii_msg);
2092 else
2093 linelen = snprintf(*line,
2094 msglen + tlsprefixlen + 1,
2095 "%zu <%d>1 %s%s %s %s %s %s %s%s%s",
2096 msglen, buffer->pri, fp_buf, buffer->timestamp,
2097 hostname, OUT(buffer->prog), OUT(buffer->pid),
2098 OUT(buffer->msgid), OUT(buffer->sd),
2099 (buffer->msg ? " ": ""),
2100 (buffer->msg ? buffer->msg: ""));
2101 DPRINTF(D_DATA, "formatted %zu octets to: '%.*s' (linelen %zu, "
2102 "msglen %zu, tlsprefixlen %zu, prilen %zu)\n", linelen,
2103 (int)linelen, *line, linelen, msglen, tlsprefixlen, prilen);
2104
2105 FREEPTR(shorthostname);
2106 if (ascii_sd != ascii_empty)
2107 FREEPTR(ascii_sd);
2108 if (ascii_msg != ascii_empty && ascii_msg != buffer->msg)
2109 FREEPTR(ascii_msg);
2110
2111 if (ptr_linelen) *ptr_linelen = linelen;
2112 if (ptr_msglen) *ptr_msglen = msglen;
2113 if (ptr_tlsprefixlen) *ptr_tlsprefixlen = tlsprefixlen;
2114 if (ptr_prilen) *ptr_prilen = prilen;
2115 return true;
2116 }
2117
2118 /*
2119 * if qentry == NULL: new message, if temporarily undeliverable it will be enqueued
2120 * if qentry != NULL: a temporarily undeliverable message will not be enqueued,
2121 * but after delivery be removed from the queue
2122 */
2123 void
2124 fprintlog(struct filed *f, struct buf_msg *passedbuffer, struct buf_queue *qentry)
2125 {
2126 static char crnl[] = "\r\n";
2127 struct buf_msg *buffer = passedbuffer;
2128 struct iovec iov[4];
2129 struct iovec *v = iov;
2130 bool error = false;
2131 int e = 0, len = 0;
2132 size_t msglen, linelen, tlsprefixlen, prilen;
2133 char *p, *line = NULL, *lineptr = NULL;
2134 #ifndef DISABLE_SIGN
2135 bool newhash = false;
2136 #endif
2137 #define REPBUFSIZE 80
2138 char greetings[200];
2139 #define ADDEV() do { v++; assert((size_t)(v - iov) < A_CNT(iov)); } while(/*CONSTCOND*/0)
2140
2141 DPRINTF(D_CALL, "fprintlog(%p, %p, %p)\n", f, buffer, qentry);
2142
2143 f->f_time = now;
2144
2145 /* increase refcount here and lower again at return.
2146 * this enables the buffer in the else branch to be freed
2147 * --> every branch needs one NEWREF() or buf_msg_new()! */
2148 if (buffer) {
2149 (void)NEWREF(buffer);
2150 } else {
2151 if (f->f_prevcount > 1) {
2152 /* possible syslog-sign incompatibility:
2153 * assume destinations f1 and f2 share one SG and
2154 * get the same message sequence.
2155 *
2156 * now both f1 and f2 generate "repeated" messages
2157 * "repeated" messages are different due to different
2158 * timestamps
2159 * the SG will get hashes for the two "repeated" messages
2160 *
2161 * now both f1 and f2 are just fine, but a verification
2162 * will report that each 'lost' a message, i.e. the
2163 * other's "repeated" message
2164 *
2165 * conditions for 'safe configurations':
2166 * - use NoRepeat option,
2167 * - use SG 3, or
2168 * - have exactly one destination for every PRI
2169 */
2170 buffer = buf_msg_new(REPBUFSIZE);
2171 buffer->msglen = snprintf(buffer->msg, REPBUFSIZE,
2172 "last message repeated %d times", f->f_prevcount);
2173 buffer->timestamp = make_timestamp(NULL,
2174 !BSDOutputFormat, 0);
2175 buffer->pri = f->f_prevmsg->pri;
2176 buffer->host = LocalFQDN;
2177 buffer->prog = appname;
2178 buffer->pid = include_pid;
2179
2180 } else {
2181 buffer = NEWREF(f->f_prevmsg);
2182 }
2183 }
2184
2185 /* no syslog-sign messages to tty/console/... */
2186 if ((buffer->flags & SIGN_MSG)
2187 && ((f->f_type == F_UNUSED)
2188 || (f->f_type == F_TTY)
2189 || (f->f_type == F_CONSOLE)
2190 || (f->f_type == F_USERS)
2191 || (f->f_type == F_WALL)
2192 || (f->f_type == F_FIFO))) {
2193 DELREF(buffer);
2194 return;
2195 }
2196
2197 /* buffering works only for few types */
2198 if (qentry
2199 && (f->f_type != F_TLS)
2200 && (f->f_type != F_PIPE)
2201 && (f->f_type != F_FILE)
2202 && (f->f_type != F_FIFO)) {
2203 errno = 0;
2204 logerror("Warning: unexpected message type %d in buffer",
2205 f->f_type);
2206 DELREF(buffer);
2207 return;
2208 }
2209
2210 if (!format_buffer(buffer, &line,
2211 &linelen, &msglen, &tlsprefixlen, &prilen)) {
2212 DPRINTF(D_CALL, "format_buffer() failed, skip message\n");
2213 DELREF(buffer);
2214 return;
2215 }
2216 /* assert maximum message length */
2217 if (TypeInfo[f->f_type].max_msg_length != -1
2218 && (size_t)TypeInfo[f->f_type].max_msg_length
2219 < linelen - tlsprefixlen - prilen) {
2220 linelen = TypeInfo[f->f_type].max_msg_length
2221 + tlsprefixlen + prilen;
2222 DPRINTF(D_DATA, "truncating oversized message to %zu octets\n",
2223 linelen);
2224 }
2225
2226 #ifndef DISABLE_SIGN
2227 /* keep state between appending the hash (before buffer is sent)
2228 * and possibly sending a SB (after buffer is sent): */
2229 /* get hash */
2230 if (!(buffer->flags & SIGN_MSG) && !qentry) {
2231 char *hash = NULL;
2232 struct signature_group_t *sg;
2233
2234 if ((sg = sign_get_sg(buffer->pri, f)) != NULL) {
2235 if (sign_msg_hash(line + tlsprefixlen, &hash))
2236 newhash = sign_append_hash(hash, sg);
2237 else
2238 DPRINTF(D_SIGN,
2239 "Unable to hash line \"%s\"\n", line);
2240 }
2241 }
2242 #endif /* !DISABLE_SIGN */
2243
2244 /* set start and length of buffer and/or fill iovec */
2245 switch (f->f_type) {
2246 case F_UNUSED:
2247 /* nothing */
2248 break;
2249 case F_TLS:
2250 /* nothing, as TLS uses whole buffer to send */
2251 lineptr = line;
2252 len = linelen;
2253 break;
2254 case F_FORW:
2255 lineptr = line + tlsprefixlen;
2256 len = linelen - tlsprefixlen;
2257 break;
2258 case F_PIPE:
2259 case F_FIFO:
2260 case F_FILE: /* fallthrough */
2261 if (f->f_flags & FFLAG_FULL) {
2262 v->iov_base = line + tlsprefixlen;
2263 v->iov_len = linelen - tlsprefixlen;
2264 } else {
2265 v->iov_base = line + tlsprefixlen + prilen;
2266 v->iov_len = linelen - tlsprefixlen - prilen;
2267 }
2268 ADDEV();
2269 v->iov_base = &crnl[1];
2270 v->iov_len = 1;
2271 ADDEV();
2272 break;
2273 case F_CONSOLE:
2274 case F_TTY:
2275 /* filter non-ASCII */
2276 p = line;
2277 while (*p) {
2278 *p = FORCE2ASCII(*p);
2279 p++;
2280 }
2281 v->iov_base = line + tlsprefixlen + prilen;
2282 v->iov_len = linelen - tlsprefixlen - prilen;
2283 ADDEV();
2284 v->iov_base = crnl;
2285 v->iov_len = 2;
2286 ADDEV();
2287 break;
2288 case F_WALL:
2289 v->iov_base = greetings;
2290 v->iov_len = snprintf(greetings, sizeof(greetings),
2291 "\r\n\7Message from syslogd@%s at %s ...\r\n",
2292 (buffer->host ? buffer->host : buffer->recvhost),
2293 buffer->timestamp);
2294 ADDEV();
2295 case F_USERS: /* fallthrough */
2296 /* filter non-ASCII */
2297 p = line;
2298 while (*p) {
2299 *p = FORCE2ASCII(*p);
2300 p++;
2301 }
2302 v->iov_base = line + tlsprefixlen + prilen;
2303 v->iov_len = linelen - tlsprefixlen - prilen;
2304 ADDEV();
2305 v->iov_base = &crnl[1];
2306 v->iov_len = 1;
2307 ADDEV();
2308 break;
2309 }
2310
2311 /* send */
2312 switch (f->f_type) {
2313 case F_UNUSED:
2314 DPRINTF(D_MISC, "Logging to %s\n", TypeInfo[f->f_type].name);
2315 break;
2316
2317 case F_FORW:
2318 DPRINTF(D_MISC, "Logging to %s %s\n",
2319 TypeInfo[f->f_type].name, f->f_un.f_forw.f_hname);
2320 udp_send(f, lineptr, len);
2321 break;
2322
2323 #ifndef DISABLE_TLS
2324 case F_TLS:
2325 DPRINTF(D_MISC, "Logging to %s %s\n",
2326 TypeInfo[f->f_type].name,
2327 f->f_un.f_tls.tls_conn->hostname);
2328 /* make sure every message gets queued once
2329 * it will be removed when sendmsg is sent and free()d */
2330 if (!qentry)
2331 qentry = message_queue_add(f, NEWREF(buffer));
2332 (void)tls_send(f, lineptr, len, qentry);
2333 break;
2334 #endif /* !DISABLE_TLS */
2335
2336 case F_PIPE:
2337 DPRINTF(D_MISC, "Logging to %s %s\n",
2338 TypeInfo[f->f_type].name, f->f_un.f_pipe.f_pname);
2339 if (f->f_un.f_pipe.f_pid == 0) {
2340 /* (re-)open */
2341 if ((f->f_file = p_open(f->f_un.f_pipe.f_pname,
2342 &f->f_un.f_pipe.f_pid)) < 0) {
2343 f->f_type = F_UNUSED;
2344 logerror("%s", f->f_un.f_pipe.f_pname);
2345 message_queue_freeall(f);
2346 break;
2347 } else if (!qentry) /* prevent recursion */
2348 SEND_QUEUE(f);
2349 }
2350 if (writev(f->f_file, iov, v - iov) < 0) {
2351 e = errno;
2352 if (f->f_un.f_pipe.f_pid > 0) {
2353 (void) close(f->f_file);
2354 deadq_enter(f->f_un.f_pipe.f_pid,
2355 f->f_un.f_pipe.f_pname);
2356 }
2357 f->f_un.f_pipe.f_pid = 0;
2358 /*
2359 * If the error was EPIPE, then what is likely
2360 * has happened is we have a command that is
2361 * designed to take a single message line and
2362 * then exit, but we tried to feed it another
2363 * one before we reaped the child and thus
2364 * reset our state.
2365 *
2366 * Well, now we've reset our state, so try opening
2367 * the pipe and sending the message again if EPIPE
2368 * was the error.
2369 */
2370 if (e == EPIPE) {
2371 if ((f->f_file = p_open(f->f_un.f_pipe.f_pname,
2372 &f->f_un.f_pipe.f_pid)) < 0) {
2373 f->f_type = F_UNUSED;
2374 logerror("%s", f->f_un.f_pipe.f_pname);
2375 message_queue_freeall(f);
2376 break;
2377 }
2378 if (writev(f->f_file, iov, v - iov) < 0) {
2379 e = errno;
2380 if (f->f_un.f_pipe.f_pid > 0) {
2381 (void) close(f->f_file);
2382 deadq_enter(f->f_un.f_pipe.f_pid,
2383 f->f_un.f_pipe.f_pname);
2384 }
2385 f->f_un.f_pipe.f_pid = 0;
2386 error = true; /* enqueue on return */
2387 } else
2388 e = 0;
2389 }
2390 if (e != 0 && !error) {
2391 errno = e;
2392 logerror("%s", f->f_un.f_pipe.f_pname);
2393 }
2394 }
2395 if (e == 0 && qentry) { /* sent buffered msg */
2396 message_queue_remove(f, qentry);
2397 }
2398 break;
2399
2400 case F_CONSOLE:
2401 if (buffer->flags & IGN_CONS) {
2402 DPRINTF(D_MISC, "Logging to %s (ignored)\n",
2403 TypeInfo[f->f_type].name);
2404 break;
2405 }
2406 /* FALLTHROUGH */
2407
2408 case F_TTY:
2409 case F_FILE:
2410 DPRINTF(D_MISC, "Logging to %s %s\n",
2411 TypeInfo[f->f_type].name, f->f_un.f_fname);
2412 again:
2413 if ((f->f_type == F_FILE ? writev(f->f_file, iov, v - iov) :
2414 writev1(f->f_file, iov, v - iov)) < 0) {
2415 e = errno;
2416 if (f->f_type == F_FILE && e == ENOSPC) {
2417 int lasterror = f->f_lasterror;
2418 f->f_lasterror = e;
2419 if (lasterror != e)
2420 logerror("%s", f->f_un.f_fname);
2421 error = true; /* enqueue on return */
2422 }
2423 (void)close(f->f_file);
2424 /*
2425 * Check for errors on TTY's due to loss of tty
2426 */
2427 if ((e == EIO || e == EBADF) && f->f_type != F_FILE) {
2428 f->f_file = open(f->f_un.f_fname,
2429 O_WRONLY|O_APPEND|O_NONBLOCK, 0);
2430 if (f->f_file < 0) {
2431 f->f_type = F_UNUSED;
2432 logerror("%s", f->f_un.f_fname);
2433 message_queue_freeall(f);
2434 } else
2435 goto again;
2436 } else {
2437 f->f_type = F_UNUSED;
2438 errno = e;
2439 f->f_lasterror = e;
2440 logerror("%s", f->f_un.f_fname);
2441 message_queue_freeall(f);
2442 }
2443 } else {
2444 f->f_lasterror = 0;
2445 if ((buffer->flags & SYNC_FILE)
2446 && (f->f_flags & FFLAG_SYNC))
2447 (void)fsync(f->f_file);
2448 /* Problem with files: We cannot check beforehand if
2449 * they would be writeable and call send_queue() first.
2450 * So we call send_queue() after a successful write,
2451 * which means the first message will be out of order.
2452 */
2453 if (!qentry) /* prevent recursion */
2454 SEND_QUEUE(f);
2455 else if (qentry) /* sent buffered msg */
2456 message_queue_remove(f, qentry);
2457 }
2458 break;
2459
2460 case F_FIFO:
2461 DPRINTF(D_MISC, "Logging to %s %s\n",
2462 TypeInfo[f->f_type].name, f->f_un.f_fname);
2463 if (f->f_file < 0) {
2464 f->f_file =
2465 open(f->f_un.f_fname, O_WRONLY|O_NONBLOCK, 0);
2466 e = errno;
2467 if (f->f_file < 0 && e == ENXIO) {
2468 /* Drop messages with no reader */
2469 if (qentry)
2470 message_queue_remove(f, qentry);
2471 break;
2472 }
2473 }
2474
2475 if (f->f_file >= 0 && writev(f->f_file, iov, v - iov) < 0) {
2476 e = errno;
2477
2478 /* Enqueue if the fifo buffer is full */
2479 if (e == EAGAIN) {
2480 if (f->f_lasterror != e)
2481 logerror("%s", f->f_un.f_fname);
2482 f->f_lasterror = e;
2483 error = true; /* enqueue on return */
2484 break;
2485 }
2486
2487 close(f->f_file);
2488 f->f_file = -1;
2489
2490 /* Drop messages with no reader */
2491 if (e == EPIPE) {
2492 if (qentry)
2493 message_queue_remove(f, qentry);
2494 break;
2495 }
2496 }
2497
2498 if (f->f_file < 0) {
2499 f->f_type = F_UNUSED;
2500 errno = e;
2501 f->f_lasterror = e;
2502 logerror("%s", f->f_un.f_fname);
2503 message_queue_freeall(f);
2504 break;
2505 }
2506
2507 f->f_lasterror = 0;
2508 if (!qentry) /* prevent recursion (see comment for F_FILE) */
2509 SEND_QUEUE(f);
2510 if (qentry) /* sent buffered msg */
2511 message_queue_remove(f, qentry);
2512 break;
2513
2514 case F_USERS:
2515 case F_WALL:
2516 DPRINTF(D_MISC, "Logging to %s\n", TypeInfo[f->f_type].name);
2517 wallmsg(f, iov, v - iov);
2518 break;
2519 }
2520 f->f_prevcount = 0;
2521
2522 if (error && !qentry)
2523 message_queue_add(f, NEWREF(buffer));
2524 #ifndef DISABLE_SIGN
2525 if (newhash) {
2526 struct signature_group_t *sg;
2527 sg = sign_get_sg(buffer->pri, f);
2528 (void)sign_send_signature_block(sg, false);
2529 }
2530 #endif /* !DISABLE_SIGN */
2531 /* this belongs to the ad-hoc buffer at the first if(buffer) */
2532 DELREF(buffer);
2533 /* TLS frees on its own */
2534 if (f->f_type != F_TLS)
2535 FREEPTR(line);
2536 }
2537
2538 /* send one line by UDP */
2539 void
2540 udp_send(struct filed *f, char *line, size_t len)
2541 {
2542 int lsent, fail, retry, j;
2543 struct addrinfo *r;
2544
2545 DPRINTF((D_NET|D_CALL), "udp_send(f=%p, line=\"%s\", "
2546 "len=%zu) to dest.\n", f, line, len);
2547
2548 if (!finet)
2549 return;
2550
2551 lsent = -1;
2552 fail = 0;
2553 assert(f->f_type == F_FORW);
2554 for (r = f->f_un.f_forw.f_addr; r; r = r->ai_next) {
2555 retry = 0;
2556 for (j = 0; j < finet->fd; j++) {
2557 if (finet[j+1].af != r->ai_family)
2558 continue;
2559 sendagain:
2560 lsent = sendto(finet[j+1].fd, line, len, 0,
2561 r->ai_addr, r->ai_addrlen);
2562 if (lsent == -1) {
2563 switch (errno) {
2564 case ENOBUFS:
2565 /* wait/retry/drop */
2566 if (++retry < 5) {
2567 usleep(1000);
2568 goto sendagain;
2569 }
2570 break;
2571 case EHOSTDOWN:
2572 case EHOSTUNREACH:
2573 case ENETDOWN:
2574 /* drop */
2575 break;
2576 default:
2577 /* busted */
2578 fail++;
2579 break;
2580 }
2581 } else if ((size_t)lsent == len)
2582 break;
2583 }
2584 if ((size_t)lsent != len && fail) {
2585 f->f_type = F_UNUSED;
2586 logerror("sendto() failed");
2587 }
2588 }
2589 }
2590
2591 /*
2592 * WALLMSG -- Write a message to the world at large
2593 *
2594 * Write the specified message to either the entire
2595 * world, or a list of approved users.
2596 */
2597 void
2598 wallmsg(struct filed *f, struct iovec *iov, size_t iovcnt)
2599 {
2600 #ifdef __NetBSD_Version__
2601 static int reenter; /* avoid calling ourselves */
2602 int i;
2603 char *p;
2604 struct utmpentry *ep;
2605
2606 if (reenter++)
2607 return;
2608
2609 (void)getutentries(NULL, &ep);
2610 /* NOSTRICT */
2611 for (; ep; ep = ep->next) {
2612 if (f->f_type == F_WALL) {
2613 if ((p = ttymsg(iov, iovcnt, ep->line, TTYMSGTIME))
2614 != NULL) {
2615 errno = 0; /* already in msg */
2616 logerror("%s", p);
2617 }
2618 continue;
2619 }
2620 /* should we send the message to this user? */
2621 for (i = 0; i < MAXUNAMES; i++) {
2622 if (!f->f_un.f_uname[i][0])
2623 break;
2624 if (strcmp(f->f_un.f_uname[i], ep->name) == 0) {
2625 struct stat st;
2626 char tty[MAXPATHLEN];
2627 snprintf(tty, sizeof(tty), "%s/%s", _PATH_DEV,
2628 ep->line);
2629 if (stat(tty, &st) != -1 &&
2630 (st.st_mode & S_IWGRP) == 0)
2631 break;
2632
2633 if ((p = ttymsg(iov, iovcnt, ep->line,
2634 TTYMSGTIME)) != NULL) {
2635 errno = 0; /* already in msg */
2636 logerror("%s", p);
2637 }
2638 break;
2639 }
2640 }
2641 }
2642 reenter = 0;
2643 #endif /* __NetBSD_Version__ */
2644 }
2645
2646 void
2647 /*ARGSUSED*/
2648 reapchild(int fd, short event, void *ev)
2649 {
2650 int status;
2651 pid_t pid;
2652 struct filed *f;
2653
2654 while ((pid = wait3(&status, WNOHANG, NULL)) > 0) {
2655 if (!Initialized || ShuttingDown) {
2656 /*
2657 * Be silent while we are initializing or
2658 * shutting down.
2659 */
2660 continue;
2661 }
2662
2663 if (deadq_remove(pid))
2664 continue;
2665
2666 /* Now, look in the list of active processes. */
2667 for (f = Files; f != NULL; f = f->f_next) {
2668 if (f->f_type == F_PIPE &&
2669 f->f_un.f_pipe.f_pid == pid) {
2670 (void) close(f->f_file);
2671 f->f_un.f_pipe.f_pid = 0;
2672 log_deadchild(pid, status,
2673 f->f_un.f_pipe.f_pname);
2674 break;
2675 }
2676 }
2677 }
2678 }
2679
2680 /*
2681 * Return a printable representation of a host address (FQDN if available)
2682 */
2683 const char *
2684 cvthname(struct sockaddr_storage *f)
2685 {
2686 int error;
2687 int niflag = NI_DGRAM;
2688 static char host[NI_MAXHOST], ip[NI_MAXHOST];
2689
2690 error = getnameinfo((struct sockaddr*)f, ((struct sockaddr*)f)->sa_len,
2691 ip, sizeof ip, NULL, 0, NI_NUMERICHOST|niflag);
2692
2693 DPRINTF(D_CALL, "cvthname(%s)\n", ip);
2694
2695 if (error) {
2696 DPRINTF(D_NET, "Malformed from address %s\n",
2697 gai_strerror(error));
2698 return "???";
2699 }
2700
2701 if (!UseNameService)
2702 return ip;
2703
2704 error = getnameinfo((struct sockaddr*)f, ((struct sockaddr*)f)->sa_len,
2705 host, sizeof host, NULL, 0, niflag);
2706 if (error) {
2707 DPRINTF(D_NET, "Host name for your address (%s) unknown\n", ip);
2708 return ip;
2709 }
2710
2711 return host;
2712 }
2713
2714 void
2715 trim_anydomain(char *host)
2716 {
2717 bool onlydigits = true;
2718 int i;
2719
2720 if (!BSDOutputFormat)
2721 return;
2722
2723 /* if non-digits found, then assume hostname and cut at first dot (this
2724 * case also covers IPv6 addresses which should not contain dots),
2725 * if only digits then assume IPv4 address and do not cut at all */
2726 for (i = 0; host[i]; i++) {
2727 if (host[i] == '.' && !onlydigits)
2728 host[i] = '\0';
2729 else if (!isdigit((unsigned char)host[i]) && host[i] != '.')
2730 onlydigits = false;
2731 }
2732 }
2733
2734 static void
2735 /*ARGSUSED*/
2736 domark(int fd, short event, void *ev)
2737 {
2738 struct event *ev_pass = (struct event *)ev;
2739 struct filed *f;
2740 dq_t q, nextq;
2741 sigset_t newmask, omask;
2742
2743 schedule_event(&ev_pass,
2744 &((struct timeval){TIMERINTVL, 0}),
2745 domark, ev_pass);
2746 DPRINTF((D_CALL|D_EVENT), "domark()\n");
2747
2748 BLOCK_SIGNALS(omask, newmask);
2749 now = time(NULL);
2750 MarkSeq += TIMERINTVL;
2751 if (MarkSeq >= MarkInterval) {
2752 logmsg_async(LOG_INFO, NULL, "-- MARK --", ADDDATE|MARK);
2753 MarkSeq = 0;
2754 }
2755
2756 for (f = Files; f; f = f->f_next) {
2757 if (f->f_prevcount && now >= REPEATTIME(f)) {
2758 DPRINTF(D_DATA, "Flush %s: repeated %d times, %d sec.\n",
2759 TypeInfo[f->f_type].name, f->f_prevcount,
2760 repeatinterval[f->f_repeatcount]);
2761 fprintlog(f, NULL, NULL);
2762 BACKOFF(f);
2763 }
2764 }
2765 message_allqueues_check();
2766 RESTORE_SIGNALS(omask);
2767
2768 /* Walk the dead queue, and see if we should signal somebody. */
2769 for (q = TAILQ_FIRST(&deadq_head); q != NULL; q = nextq) {
2770 nextq = TAILQ_NEXT(q, dq_entries);
2771 switch (q->dq_timeout) {
2772 case 0:
2773 /* Already signalled once, try harder now. */
2774 if (kill(q->dq_pid, SIGKILL) != 0)
2775 (void) deadq_remove(q->dq_pid);
2776 break;
2777
2778 case 1:
2779 /*
2780 * Timed out on the dead queue, send terminate
2781 * signal. Note that we leave the removal from
2782 * the dead queue to reapchild(), which will
2783 * also log the event (unless the process
2784 * didn't even really exist, in case we simply
2785 * drop it from the dead queue).
2786 */
2787 if (kill(q->dq_pid, SIGTERM) != 0) {
2788 (void) deadq_remove(q->dq_pid);
2789 break;
2790 }
2791 /* FALLTHROUGH */
2792
2793 default:
2794 q->dq_timeout--;
2795 }
2796 }
2797 #ifndef DISABLE_SIGN
2798 if (GlobalSign.rsid) { /* check if initialized */
2799 struct signature_group_t *sg;
2800 STAILQ_FOREACH(sg, &GlobalSign.SigGroups, entries) {
2801 sign_send_certificate_block(sg);
2802 }
2803 }
2804 #endif /* !DISABLE_SIGN */
2805 }
2806
2807 /*
2808 * Print syslogd errors some place.
2809 */
2810 void
2811 logerror(const char *fmt, ...)
2812 {
2813 static int logerror_running;
2814 va_list ap;
2815 char tmpbuf[BUFSIZ];
2816 char buf[BUFSIZ];
2817 char *outbuf;
2818
2819 /* If there's an error while trying to log an error, give up. */
2820 if (logerror_running)
2821 return;
2822 logerror_running = 1;
2823
2824 va_start(ap, fmt);
2825 (void)vsnprintf(tmpbuf, sizeof(tmpbuf), fmt, ap);
2826 va_end(ap);
2827
2828 if (errno) {
2829 (void)snprintf(buf, sizeof(buf), "%s: %s",
2830 tmpbuf, strerror(errno));
2831 outbuf = buf;
2832 } else {
2833 (void)snprintf(buf, sizeof(buf), "%s", tmpbuf);
2834 outbuf = tmpbuf;
2835 }
2836
2837 if (daemonized)
2838 logmsg_async(LOG_SYSLOG|LOG_ERR, NULL, outbuf, ADDDATE);
2839 if (!daemonized && Debug)
2840 DPRINTF(D_MISC, "%s\n", outbuf);
2841 if (!daemonized && !Debug)
2842 printf("%s\n", outbuf);
2843
2844 logerror_running = 0;
2845 }
2846
2847 /*
2848 * Print syslogd info some place.
2849 */
2850 void
2851 loginfo(const char *fmt, ...)
2852 {
2853 va_list ap;
2854 char buf[BUFSIZ];
2855
2856 va_start(ap, fmt);
2857 (void)vsnprintf(buf, sizeof(buf), fmt, ap);
2858 va_end(ap);
2859
2860 DPRINTF(D_MISC, "%s\n", buf);
2861 logmsg_async(LOG_SYSLOG|LOG_INFO, NULL, buf, ADDDATE);
2862 }
2863
2864 #ifndef DISABLE_TLS
2865 static inline void
2866 free_incoming_tls_sockets(void)
2867 {
2868 struct TLS_Incoming_Conn *tls_in;
2869 int i;
2870
2871 /*
2872 * close all listening and connected TLS sockets
2873 */
2874 if (TLS_Listen_Set)
2875 for (i = 0; i < TLS_Listen_Set->fd; i++) {
2876 if (close(TLS_Listen_Set[i+1].fd) == -1)
2877 logerror("close() failed");
2878 DEL_EVENT(TLS_Listen_Set[i+1].ev);
2879 FREEPTR(TLS_Listen_Set[i+1].ev);
2880 }
2881 FREEPTR(TLS_Listen_Set);
2882 /* close/free incoming TLS connections */
2883 while (!SLIST_EMPTY(&TLS_Incoming_Head)) {
2884 tls_in = SLIST_FIRST(&TLS_Incoming_Head);
2885 SLIST_REMOVE_HEAD(&TLS_Incoming_Head, entries);
2886 FREEPTR(tls_in->inbuf);
2887 free_tls_conn(tls_in->tls_conn);
2888 free(tls_in);
2889 }
2890 }
2891 #endif /* !DISABLE_TLS */
2892
2893 void
2894 /*ARGSUSED*/
2895 die(int fd, short event, void *ev)
2896 {
2897 struct filed *f, *next;
2898 char **p;
2899 sigset_t newmask, omask;
2900 int i;
2901 size_t j;
2902
2903 ShuttingDown = 1; /* Don't log SIGCHLDs. */
2904 /* prevent recursive signals */
2905 BLOCK_SIGNALS(omask, newmask);
2906
2907 errno = 0;
2908 if (ev != NULL)
2909 logerror("Exiting on signal %d", fd);
2910 else
2911 logerror("Fatal error, exiting");
2912
2913 /*
2914 * flush any pending output
2915 */
2916 for (f = Files; f != NULL; f = f->f_next) {
2917 /* flush any pending output */
2918 if (f->f_prevcount)
2919 fprintlog(f, NULL, NULL);
2920 SEND_QUEUE(f);
2921 }
2922
2923 #ifndef DISABLE_TLS
2924 free_incoming_tls_sockets();
2925 #endif /* !DISABLE_TLS */
2926 #ifndef DISABLE_SIGN
2927 sign_global_free();
2928 #endif /* !DISABLE_SIGN */
2929
2930 /*
2931 * Close all open log files.
2932 */
2933 for (f = Files; f != NULL; f = next) {
2934 message_queue_freeall(f);
2935
2936 switch (f->f_type) {
2937 case F_FILE:
2938 case F_TTY:
2939 case F_CONSOLE:
2940 case F_FIFO:
2941 if (f->f_file >= 0)
2942 (void)close(f->f_file);
2943 break;
2944 case F_PIPE:
2945 if (f->f_un.f_pipe.f_pid > 0) {
2946 (void)close(f->f_file);
2947 }
2948 f->f_un.f_pipe.f_pid = 0;
2949 break;
2950 case F_FORW:
2951 if (f->f_un.f_forw.f_addr)
2952 freeaddrinfo(f->f_un.f_forw.f_addr);
2953 break;
2954 #ifndef DISABLE_TLS
2955 case F_TLS:
2956 free_tls_conn(f->f_un.f_tls.tls_conn);
2957 break;
2958 #endif /* !DISABLE_TLS */
2959 }
2960 next = f->f_next;
2961 DELREF(f->f_prevmsg);
2962 FREEPTR(f->f_program);
2963 FREEPTR(f->f_host);
2964 DEL_EVENT(f->f_sq_event);
2965 free((char *)f);
2966 }
2967
2968 /*
2969 * Close all open UDP sockets
2970 */
2971 if (finet) {
2972 for (i = 0; i < finet->fd; i++) {
2973 if (close(finet[i+1].fd) < 0) {
2974 logerror("close() failed");
2975 die(0, 0, NULL);
2976 }
2977 DEL_EVENT(finet[i+1].ev);
2978 FREEPTR(finet[i+1].ev);
2979 }
2980 FREEPTR(finet);
2981 }
2982
2983 /* free config options */
2984 for (j = 0; j < A_CNT(TypeInfo); j++) {
2985 FREEPTR(TypeInfo[j].queue_length_string);
2986 FREEPTR(TypeInfo[j].queue_size_string);
2987 }
2988
2989 #ifndef DISABLE_TLS
2990 FREEPTR(tls_opt.CAdir);
2991 FREEPTR(tls_opt.CAfile);
2992 FREEPTR(tls_opt.keyfile);
2993 FREEPTR(tls_opt.certfile);
2994 FREEPTR(tls_opt.x509verify);
2995 FREEPTR(tls_opt.bindhost);
2996 FREEPTR(tls_opt.bindport);
2997 FREEPTR(tls_opt.server);
2998 FREEPTR(tls_opt.gen_cert);
2999 free_cred_SLIST(&tls_opt.cert_head);
3000 free_cred_SLIST(&tls_opt.fprint_head);
3001 FREE_SSL_CTX(tls_opt.global_TLS_CTX);
3002 #endif /* !DISABLE_TLS */
3003
3004 FREEPTR(funix);
3005 for (p = LogPaths; p && *p; p++)
3006 unlink(*p);
3007 exit(0);
3008 }
3009
3010 #ifndef DISABLE_SIGN
3011 /*
3012 * get one "sign_delim_sg2" item, convert and store in ordered queue
3013 */
3014 void
3015 store_sign_delim_sg2(char *tmp_buf)
3016 {
3017 struct string_queue *sqentry, *sqe1, *sqe2;
3018
3019 if(!(sqentry = malloc(sizeof(*sqentry)))) {
3020 logerror("Unable to allocate memory");
3021 return;
3022 }
3023 /*LINTED constcond/null effect */
3024 assert(sizeof(int64_t) == sizeof(uint_fast64_t));
3025 if (dehumanize_number(tmp_buf, (int64_t*) &(sqentry->key)) == -1
3026 || sqentry->key > (LOG_NFACILITIES<<3)) {
3027 DPRINTF(D_PARSE, "invalid sign_delim_sg2: %s\n", tmp_buf);
3028 free(sqentry);
3029 FREEPTR(tmp_buf);
3030 return;
3031 }
3032 sqentry->data = tmp_buf;
3033
3034 if (STAILQ_EMPTY(&GlobalSign.sig2_delims)) {
3035 STAILQ_INSERT_HEAD(&GlobalSign.sig2_delims,
3036 sqentry, entries);
3037 return;
3038 }
3039
3040 /* keep delimiters sorted */
3041 sqe1 = sqe2 = STAILQ_FIRST(&GlobalSign.sig2_delims);
3042 if (sqe1->key > sqentry->key) {
3043 STAILQ_INSERT_HEAD(&GlobalSign.sig2_delims,
3044 sqentry, entries);
3045 return;
3046 }
3047
3048 while ((sqe1 = sqe2)
3049 && (sqe2 = STAILQ_NEXT(sqe1, entries))) {
3050 if (sqe2->key > sqentry->key) {
3051 break;
3052 } else if (sqe2->key == sqentry->key) {
3053 DPRINTF(D_PARSE, "duplicate sign_delim_sg2: %s\n",
3054 tmp_buf);
3055 FREEPTR(sqentry);
3056 FREEPTR(tmp_buf);
3057 return;
3058 }
3059 }
3060 STAILQ_INSERT_AFTER(&GlobalSign.sig2_delims, sqe1, sqentry, entries);
3061 }
3062 #endif /* !DISABLE_SIGN */
3063
3064 /*
3065 * read syslog.conf
3066 */
3067 void
3068 read_config_file(FILE *cf, struct filed **f_ptr)
3069 {
3070 size_t linenum = 0;
3071 size_t i;
3072 struct filed *f, **nextp;
3073 char cline[LINE_MAX];
3074 char prog[NAME_MAX + 1];
3075 char host[MAXHOSTNAMELEN];
3076 const char *p;
3077 char *q;
3078 bool found_keyword;
3079 #ifndef DISABLE_TLS
3080 struct peer_cred *cred = NULL;
3081 struct peer_cred_head *credhead = NULL;
3082 #endif /* !DISABLE_TLS */
3083 #ifndef DISABLE_SIGN
3084 char *sign_sg_str = NULL;
3085 #endif /* !DISABLE_SIGN */
3086 #if (!defined(DISABLE_TLS) || !defined(DISABLE_SIGN))
3087 char *tmp_buf = NULL;
3088 #endif /* (!defined(DISABLE_TLS) || !defined(DISABLE_SIGN)) */
3089 /* central list of recognized configuration keywords
3090 * and an address for their values as strings */
3091 const struct config_keywords {
3092 const char *keyword;
3093 char **variable;
3094 } config_keywords[] = {
3095 #ifndef DISABLE_TLS
3096 /* TLS settings */
3097 {"tls_ca", &tls_opt.CAfile},
3098 {"tls_cadir", &tls_opt.CAdir},
3099 {"tls_cert", &tls_opt.certfile},
3100 {"tls_key", &tls_opt.keyfile},
3101 {"tls_verify", &tls_opt.x509verify},
3102 {"tls_bindport", &tls_opt.bindport},
3103 {"tls_bindhost", &tls_opt.bindhost},
3104 {"tls_server", &tls_opt.server},
3105 {"tls_gen_cert", &tls_opt.gen_cert},
3106 /* special cases in parsing */
3107 {"tls_allow_fingerprints",&tmp_buf},
3108 {"tls_allow_clientcerts", &tmp_buf},
3109 /* buffer settings */
3110 {"tls_queue_length", &TypeInfo[F_TLS].queue_length_string},
3111 {"tls_queue_size", &TypeInfo[F_TLS].queue_size_string},
3112 #endif /* !DISABLE_TLS */
3113 {"file_queue_length", &TypeInfo[F_FILE].queue_length_string},
3114 {"pipe_queue_length", &TypeInfo[F_PIPE].queue_length_string},
3115 {"fifo_queue_length", &TypeInfo[F_FIFO].queue_length_string},
3116 {"file_queue_size", &TypeInfo[F_FILE].queue_size_string},
3117 {"pipe_queue_size", &TypeInfo[F_PIPE].queue_size_string},
3118 {"fifo_queue_size", &TypeInfo[F_FIFO].queue_size_string},
3119 #ifndef DISABLE_SIGN
3120 /* syslog-sign setting */
3121 {"sign_sg", &sign_sg_str},
3122 /* also special case in parsing */
3123 {"sign_delim_sg2", &tmp_buf},
3124 #endif /* !DISABLE_SIGN */
3125 };
3126
3127 DPRINTF(D_CALL, "read_config_file()\n");
3128
3129 /* free all previous config options */
3130 for (i = 0; i < A_CNT(TypeInfo); i++) {
3131 if (TypeInfo[i].queue_length_string
3132 && TypeInfo[i].queue_length_string
3133 != TypeInfo[i].default_length_string) {
3134 FREEPTR(TypeInfo[i].queue_length_string);
3135 TypeInfo[i].queue_length_string =
3136 strdup(TypeInfo[i].default_length_string);
3137 }
3138 if (TypeInfo[i].queue_size_string
3139 && TypeInfo[i].queue_size_string
3140 != TypeInfo[i].default_size_string) {
3141 FREEPTR(TypeInfo[i].queue_size_string);
3142 TypeInfo[i].queue_size_string =
3143 strdup(TypeInfo[i].default_size_string);
3144 }
3145 }
3146 for (i = 0; i < A_CNT(config_keywords); i++)
3147 FREEPTR(*config_keywords[i].variable);
3148 /*
3149 * global settings
3150 */
3151 while (fgets(cline, sizeof(cline), cf) != NULL) {
3152 linenum++;
3153 for (p = cline; isspace((unsigned char)*p); ++p)
3154 continue;
3155 if ((*p == '\0') || (*p == '#'))
3156 continue;
3157
3158 for (i = 0; i < A_CNT(config_keywords); i++) {
3159 if (copy_config_value(config_keywords[i].keyword,
3160 config_keywords[i].variable, &p, ConfFile,
3161 linenum)) {
3162 DPRINTF((D_PARSE|D_MEM),
3163 "found option %s, saved @%p\n",
3164 config_keywords[i].keyword,
3165 *config_keywords[i].variable);
3166 #ifndef DISABLE_SIGN
3167 if (!strcmp("sign_delim_sg2",
3168 config_keywords[i].keyword))
3169 do {
3170 store_sign_delim_sg2(tmp_buf);
3171 } while (copy_config_value_word(
3172 &tmp_buf, &p));
3173
3174 #endif /* !DISABLE_SIGN */
3175
3176 #ifndef DISABLE_TLS
3177 /* special cases with multiple parameters */
3178 if (!strcmp("tls_allow_fingerprints",
3179 config_keywords[i].keyword))
3180 credhead = &tls_opt.fprint_head;
3181 else if (!strcmp("tls_allow_clientcerts",
3182 config_keywords[i].keyword))
3183 credhead = &tls_opt.cert_head;
3184
3185 if (credhead) do {
3186 if(!(cred = malloc(sizeof(*cred)))) {
3187 logerror("Unable to "
3188 "allocate memory");
3189 break;
3190 }
3191 cred->data = tmp_buf;
3192 tmp_buf = NULL;
3193 SLIST_INSERT_HEAD(credhead,
3194 cred, entries);
3195 } while /* additional values? */
3196 (copy_config_value_word(&tmp_buf, &p));
3197 credhead = NULL;
3198 break;
3199 #endif /* !DISABLE_TLS */
3200 }
3201 }
3202 }
3203 /* convert strings to integer values */
3204 for (i = 0; i < A_CNT(TypeInfo); i++) {
3205 if (!TypeInfo[i].queue_length_string
3206 || dehumanize_number(TypeInfo[i].queue_length_string,
3207 &TypeInfo[i].queue_length) == -1)
3208 if (dehumanize_number(TypeInfo[i].default_length_string,
3209 &TypeInfo[i].queue_length) == -1)
3210 abort();
3211 if (!TypeInfo[i].queue_size_string
3212 || dehumanize_number(TypeInfo[i].queue_size_string,
3213 &TypeInfo[i].queue_size) == -1)
3214 if (dehumanize_number(TypeInfo[i].default_size_string,
3215 &TypeInfo[i].queue_size) == -1)
3216 abort();
3217 }
3218
3219 #ifndef DISABLE_SIGN
3220 if (sign_sg_str) {
3221 if (sign_sg_str[1] == '\0'
3222 && (sign_sg_str[0] == '0' || sign_sg_str[0] == '1'
3223 || sign_sg_str[0] == '2' || sign_sg_str[0] == '3'))
3224 GlobalSign.sg = sign_sg_str[0] - '0';
3225 else {
3226 GlobalSign.sg = SIGN_SG;
3227 DPRINTF(D_MISC, "Invalid sign_sg value `%s', "
3228 "use default value `%d'\n",
3229 sign_sg_str, GlobalSign.sg);
3230 }
3231 } else /* disable syslog-sign */
3232 GlobalSign.sg = -1;
3233 #endif /* !DISABLE_SIGN */
3234
3235 rewind(cf);
3236 linenum = 0;
3237 /*
3238 * Foreach line in the conf table, open that file.
3239 */
3240 f = NULL;
3241 nextp = &f;
3242
3243 strcpy(prog, "*");
3244 strcpy(host, "*");
3245 while (fgets(cline, sizeof(cline), cf) != NULL) {
3246 linenum++;
3247 found_keyword = false;
3248 /*
3249 * check for end-of-section, comments, strip off trailing
3250 * spaces and newline character. #!prog is treated specially:
3251 * following lines apply only to that program.
3252 */
3253 for (p = cline; isspace((unsigned char)*p); ++p)
3254 continue;
3255 if (*p == '\0')
3256 continue;
3257 if (*p == '#') {
3258 p++;
3259 if (*p != '!' && *p != '+' && *p != '-')
3260 continue;
3261 }
3262
3263 for (i = 0; i < A_CNT(config_keywords); i++) {
3264 if (!strncasecmp(p, config_keywords[i].keyword,
3265 strlen(config_keywords[i].keyword))) {
3266 DPRINTF(D_PARSE,
3267 "skip cline %zu with keyword %s\n",
3268 linenum, config_keywords[i].keyword);
3269 found_keyword = true;
3270 }
3271 }
3272 if (found_keyword)
3273 continue;
3274
3275 if (*p == '+' || *p == '-') {
3276 host[0] = *p++;
3277 while (isspace((unsigned char)*p))
3278 p++;
3279 if (*p == '\0' || *p == '*') {
3280 strcpy(host, "*");
3281 continue;
3282 }
3283 /* the +hostname expression will continue
3284 * to use the LocalHostName, not the FQDN */
3285 for (i = 1; i < MAXHOSTNAMELEN - 1; i++) {
3286 if (*p == '@') {
3287 (void)strncpy(&host[i], LocalHostName,
3288 sizeof(host) - 1 - i);
3289 host[sizeof(host) - 1] = '\0';
3290 i = strlen(host) - 1;
3291 p++;
3292 continue;
3293 }
3294 if (!isalnum((unsigned char)*p) &&
3295 *p != '.' && *p != '-' && *p != ',')
3296 break;
3297 host[i] = *p++;
3298 }
3299 host[i] = '\0';
3300 continue;
3301 }
3302 if (*p == '!') {
3303 p++;
3304 while (isspace((unsigned char)*p))
3305 p++;
3306 if (*p == '\0' || *p == '*') {
3307 strcpy(prog, "*");
3308 continue;
3309 }
3310 for (i = 0; i < NAME_MAX; i++) {
3311 if (!isprint((unsigned char)p[i]))
3312 break;
3313 prog[i] = p[i];
3314 }
3315 prog[i] = '\0';
3316 continue;
3317 }
3318 for (q = strchr(cline, '\0'); isspace((unsigned char)*--q);)
3319 continue;
3320 *++q = '\0';
3321 if ((f = calloc(1, sizeof(*f))) == NULL) {
3322 logerror("alloc failed");
3323 die(0, 0, NULL);
3324 }
3325 if (!*f_ptr) *f_ptr = f; /* return first node */
3326 *nextp = f;
3327 nextp = &f->f_next;
3328 cfline(linenum, cline, f, prog, host);
3329 }
3330 }
3331
3332 /*
3333 * INIT -- Initialize syslogd from configuration table
3334 */
3335 void
3336 /*ARGSUSED*/
3337 init(int fd, short event, void *ev)
3338 {
3339 FILE *cf;
3340 int i;
3341 struct filed *f, *newf, **nextp, *f2;
3342 char *p;
3343 sigset_t newmask, omask;
3344 #ifndef DISABLE_TLS
3345 char *tls_status_msg = NULL;
3346 struct peer_cred *cred = NULL;
3347 #endif /* !DISABLE_TLS */
3348
3349 /* prevent recursive signals */
3350 BLOCK_SIGNALS(omask, newmask);
3351
3352 DPRINTF((D_EVENT|D_CALL), "init\n");
3353
3354 /*
3355 * be careful about dependencies and order of actions:
3356 * 1. flush buffer queues
3357 * 2. flush -sign SBs
3358 * 3. flush/delete buffer queue again, in case an SB got there
3359 * 4. close files/connections
3360 */
3361
3362 /*
3363 * flush any pending output
3364 */
3365 for (f = Files; f != NULL; f = f->f_next) {
3366 /* flush any pending output */
3367 if (f->f_prevcount)
3368 fprintlog(f, NULL, NULL);
3369 SEND_QUEUE(f);
3370 }
3371 /* some actions only on SIGHUP and not on first start */
3372 if (Initialized) {
3373 #ifndef DISABLE_SIGN
3374 sign_global_free();
3375 #endif /* !DISABLE_SIGN */
3376 #ifndef DISABLE_TLS
3377 free_incoming_tls_sockets();
3378 #endif /* !DISABLE_TLS */
3379 Initialized = 0;
3380 }
3381 /*
3382 * Close all open log files.
3383 */
3384 for (f = Files; f != NULL; f = f->f_next) {
3385 switch (f->f_type) {
3386 case F_FILE:
3387 case F_TTY:
3388 case F_CONSOLE:
3389 (void)close(f->f_file);
3390 break;
3391 case F_PIPE:
3392 if (f->f_un.f_pipe.f_pid > 0) {
3393 (void)close(f->f_file);
3394 deadq_enter(f->f_un.f_pipe.f_pid,
3395 f->f_un.f_pipe.f_pname);
3396 }
3397 f->f_un.f_pipe.f_pid = 0;
3398 break;
3399 case F_FORW:
3400 if (f->f_un.f_forw.f_addr)
3401 freeaddrinfo(f->f_un.f_forw.f_addr);
3402 break;
3403 #ifndef DISABLE_TLS
3404 case F_TLS:
3405 free_tls_sslptr(f->f_un.f_tls.tls_conn);
3406 break;
3407 #endif /* !DISABLE_TLS */
3408 }
3409 }
3410
3411 /*
3412 * Close all open UDP sockets
3413 */
3414 if (finet) {
3415 for (i = 0; i < finet->fd; i++) {
3416 if (close(finet[i+1].fd) < 0) {
3417 logerror("close() failed");
3418 die(0, 0, NULL);
3419 }
3420 DEL_EVENT(finet[i+1].ev);
3421 FREEPTR(finet[i+1].ev);
3422 }
3423 FREEPTR(finet);
3424 }
3425
3426 /* get FQDN and hostname/domain */
3427 FREEPTR(oldLocalFQDN);
3428 oldLocalFQDN = LocalFQDN;
3429 LocalFQDN = getLocalFQDN();
3430 if ((p = strchr(LocalFQDN, '.')) != NULL)
3431 (void)strlcpy(LocalHostName, LocalFQDN, 1+p-LocalFQDN);
3432 else
3433 (void)strlcpy(LocalHostName, LocalFQDN, sizeof(LocalHostName));
3434
3435 /*
3436 * Reset counter of forwarding actions
3437 */
3438
3439 NumForwards=0;
3440
3441 /* new destination list to replace Files */
3442 newf = NULL;
3443 nextp = &newf;
3444
3445 /* open the configuration file */
3446 if ((cf = fopen(ConfFile, "r")) == NULL) {
3447 DPRINTF(D_FILE, "Cannot open `%s'\n", ConfFile);
3448 *nextp = (struct filed *)calloc(1, sizeof(*f));
3449 cfline(0, "*.ERR\t/dev/console", *nextp, "*", "*");
3450 (*nextp)->f_next = (struct filed *)calloc(1, sizeof(*f));
3451 cfline(0, "*.PANIC\t*", (*nextp)->f_next, "*", "*");
3452 Initialized = 1;
3453 RESTORE_SIGNALS(omask);
3454 return;
3455 }
3456
3457 #ifndef DISABLE_TLS
3458 /* init with new TLS_CTX
3459 * as far as I see one cannot change the cert/key of an existing CTX
3460 */
3461 FREE_SSL_CTX(tls_opt.global_TLS_CTX);
3462
3463 free_cred_SLIST(&tls_opt.cert_head);
3464 free_cred_SLIST(&tls_opt.fprint_head);
3465 #endif /* !DISABLE_TLS */
3466
3467 /* read and close configuration file */
3468 read_config_file(cf, &newf);
3469 newf = *nextp;
3470 (void)fclose(cf);
3471 DPRINTF(D_MISC, "read_config_file() returned newf=%p\n", newf);
3472
3473 #define MOVE_QUEUE(dst, src) do { \
3474 struct buf_queue *buf; \
3475 STAILQ_CONCAT(&dst->f_qhead, &src->f_qhead); \
3476 STAILQ_FOREACH(buf, &dst->f_qhead, entries) { \
3477 dst->f_qelements++; \
3478 dst->f_qsize += buf_queue_obj_size(buf); \
3479 } \
3480 src->f_qsize = 0; \
3481 src->f_qelements = 0; \
3482 } while (/*CONSTCOND*/0)
3483
3484 /*
3485 * Free old log files.
3486 */
3487 for (f = Files; f != NULL;) {
3488 struct filed *ftmp;
3489
3490 /* check if a new logfile is equal, if so pass the queue */
3491 for (f2 = newf; f2 != NULL; f2 = f2->f_next) {
3492 if (f->f_type == f2->f_type
3493 && ((f->f_type == F_PIPE
3494 && !strcmp(f->f_un.f_pipe.f_pname,
3495 f2->f_un.f_pipe.f_pname))
3496 #ifndef DISABLE_TLS
3497 || (f->f_type == F_TLS
3498 && !strcmp(f->f_un.f_tls.tls_conn->hostname,
3499 f2->f_un.f_tls.tls_conn->hostname)
3500 && !strcmp(f->f_un.f_tls.tls_conn->port,
3501 f2->f_un.f_tls.tls_conn->port))
3502 #endif /* !DISABLE_TLS */
3503 || (f->f_type == F_FORW
3504 && !strcmp(f->f_un.f_forw.f_hname,
3505 f2->f_un.f_forw.f_hname)))) {
3506 DPRINTF(D_BUFFER, "move queue from f@%p "
3507 "to f2@%p\n", f, f2);
3508 MOVE_QUEUE(f2, f);
3509 }
3510 }
3511 message_queue_freeall(f);
3512 DELREF(f->f_prevmsg);
3513 #ifndef DISABLE_TLS
3514 if (f->f_type == F_TLS)
3515 free_tls_conn(f->f_un.f_tls.tls_conn);
3516 #endif /* !DISABLE_TLS */
3517 FREEPTR(f->f_program);
3518 FREEPTR(f->f_host);
3519 DEL_EVENT(f->f_sq_event);
3520
3521 ftmp = f->f_next;
3522 free((char *)f);
3523 f = ftmp;
3524 }
3525 Files = newf;
3526 Initialized = 1;
3527
3528 if (Debug) {
3529 for (f = Files; f; f = f->f_next) {
3530 for (i = 0; i <= LOG_NFACILITIES; i++)
3531 if (f->f_pmask[i] == INTERNAL_NOPRI)
3532 printf("X ");
3533 else
3534 printf("%d ", f->f_pmask[i]);
3535 printf("%s: ", TypeInfo[f->f_type].name);
3536 switch (f->f_type) {
3537 case F_FILE:
3538 case F_TTY:
3539 case F_CONSOLE:
3540 case F_FIFO:
3541 printf("%s", f->f_un.f_fname);
3542 break;
3543
3544 case F_FORW:
3545 printf("%s", f->f_un.f_forw.f_hname);
3546 break;
3547 #ifndef DISABLE_TLS
3548 case F_TLS:
3549 printf("[%s]", f->f_un.f_tls.tls_conn->hostname);
3550 break;
3551 #endif /* !DISABLE_TLS */
3552 case F_PIPE:
3553 printf("%s", f->f_un.f_pipe.f_pname);
3554 break;
3555
3556 case F_USERS:
3557 for (i = 0;
3558 i < MAXUNAMES && *f->f_un.f_uname[i]; i++)
3559 printf("%s, ", f->f_un.f_uname[i]);
3560 break;
3561 }
3562 if (f->f_program != NULL)
3563 printf(" (%s)", f->f_program);
3564 printf("\n");
3565 }
3566 }
3567
3568 finet = socksetup(PF_UNSPEC, bindhostname);
3569 if (finet) {
3570 if (SecureMode) {
3571 for (i = 0; i < finet->fd; i++) {
3572 if (shutdown(finet[i+1].fd, SHUT_RD) < 0) {
3573 logerror("shutdown() failed");
3574 die(0, 0, NULL);
3575 }
3576 }
3577 } else
3578 DPRINTF(D_NET, "Listening on inet and/or inet6 socket\n");
3579 DPRINTF(D_NET, "Sending on inet and/or inet6 socket\n");
3580 }
3581
3582 #ifndef DISABLE_TLS
3583 /* TLS setup -- after all local destinations opened */
3584 DPRINTF(D_PARSE, "Parsed options: tls_ca: %s, tls_cadir: %s, "
3585 "tls_cert: %s, tls_key: %s, tls_verify: %s, "
3586 "bind: %s:%s, max. queue_lengths: %"
3587 PRId64 ", %" PRId64 ", %" PRId64 ", "
3588 "max. queue_sizes: %"
3589 PRId64 ", %" PRId64 ", %" PRId64 "\n",
3590 tls_opt.CAfile, tls_opt.CAdir,
3591 tls_opt.certfile, tls_opt.keyfile, tls_opt.x509verify,
3592 tls_opt.bindhost, tls_opt.bindport,
3593 TypeInfo[F_TLS].queue_length, TypeInfo[F_FILE].queue_length,
3594 TypeInfo[F_PIPE].queue_length,
3595 TypeInfo[F_TLS].queue_size, TypeInfo[F_FILE].queue_size,
3596 TypeInfo[F_PIPE].queue_size);
3597 SLIST_FOREACH(cred, &tls_opt.cert_head, entries) {
3598 DPRINTF(D_PARSE, "Accepting peer certificate "
3599 "from file: \"%s\"\n", cred->data);
3600 }
3601 SLIST_FOREACH(cred, &tls_opt.fprint_head, entries) {
3602 DPRINTF(D_PARSE, "Accepting peer certificate with "
3603 "fingerprint: \"%s\"\n", cred->data);
3604 }
3605
3606 /* Note: The order of initialization is important because syslog-sign
3607 * should use the TLS cert for signing. -- So we check first if TLS
3608 * will be used and initialize it before starting -sign.
3609 *
3610 * This means that if we are a client without TLS destinations TLS
3611 * will not be initialized and syslog-sign will generate a new key.
3612 * -- Even if the user has set a usable tls_cert.
3613 * Is this the expected behaviour? The alternative would be to always
3614 * initialize the TLS structures, even if they will not be needed
3615 * (or only needed to read the DSA key for -sign).
3616 */
3617
3618 /* Initialize TLS only if used */
3619 if (tls_opt.server)
3620 tls_status_msg = init_global_TLS_CTX();
3621 else
3622 for (f = Files; f; f = f->f_next) {
3623 if (f->f_type != F_TLS)
3624 continue;
3625 tls_status_msg = init_global_TLS_CTX();
3626 break;
3627 }
3628
3629 #endif /* !DISABLE_TLS */
3630
3631 #ifndef DISABLE_SIGN
3632 /* only initialize -sign if actually used */
3633 if (GlobalSign.sg == 0 || GlobalSign.sg == 1 || GlobalSign.sg == 2)
3634 (void)sign_global_init(Files);
3635 else if (GlobalSign.sg == 3)
3636 for (f = Files; f; f = f->f_next)
3637 if (f->f_flags & FFLAG_SIGN) {
3638 (void)sign_global_init(Files);
3639 break;
3640 }
3641 #endif /* !DISABLE_SIGN */
3642
3643 #ifndef DISABLE_TLS
3644 if (tls_status_msg) {
3645 loginfo("%s", tls_status_msg);
3646 free(tls_status_msg);
3647 }
3648 DPRINTF((D_NET|D_TLS), "Preparing sockets for TLS\n");
3649 TLS_Listen_Set =
3650 socksetup_tls(PF_UNSPEC, tls_opt.bindhost, tls_opt.bindport);
3651
3652 for (f = Files; f; f = f->f_next) {
3653 if (f->f_type != F_TLS)
3654 continue;
3655 if (!tls_connect(f->f_un.f_tls.tls_conn)) {
3656 logerror("Unable to connect to TLS server %s",
3657 f->f_un.f_tls.tls_conn->hostname);
3658 /* Reconnect after x seconds */
3659 schedule_event(&f->f_un.f_tls.tls_conn->event,
3660 &((struct timeval){TLS_RECONNECT_SEC, 0}),
3661 tls_reconnect, f->f_un.f_tls.tls_conn);
3662 }
3663 }
3664 #endif /* !DISABLE_TLS */
3665
3666 loginfo("restart");
3667 /*
3668 * Log a change in hostname, but only on a restart (we detect this
3669 * by checking to see if we're passed a kevent).
3670 */
3671 if (oldLocalFQDN && strcmp(oldLocalFQDN, LocalFQDN) != 0)
3672 loginfo("host name changed, \"%s\" to \"%s\"",
3673 oldLocalFQDN, LocalFQDN);
3674
3675 RESTORE_SIGNALS(omask);
3676 }
3677
3678 /*
3679 * Crack a configuration file line
3680 */
3681 void
3682 cfline(size_t linenum, const char *line, struct filed *f, const char *prog,
3683 const char *host)
3684 {
3685 struct addrinfo hints, *res;
3686 int error, i, pri, syncfile;
3687 const char *p, *q;
3688 char *bp;
3689 char buf[MAXLINE];
3690 struct stat sb;
3691
3692 DPRINTF((D_CALL|D_PARSE),
3693 "cfline(%zu, \"%s\", f, \"%s\", \"%s\")\n",
3694 linenum, line, prog, host);
3695
3696 errno = 0; /* keep strerror() stuff out of logerror messages */
3697
3698 /* clear out file entry */
3699 memset(f, 0, sizeof(*f));
3700 for (i = 0; i <= LOG_NFACILITIES; i++)
3701 f->f_pmask[i] = INTERNAL_NOPRI;
3702 STAILQ_INIT(&f->f_qhead);
3703
3704 /*
3705 * There should not be any space before the log facility.
3706 * Check this is okay, complain and fix if it is not.
3707 */
3708 q = line;
3709 if (isblank((unsigned char)*line)) {
3710 errno = 0;
3711 logerror("Warning: `%s' space or tab before the log facility",
3712 line);
3713 /* Fix: strip all spaces/tabs before the log facility */
3714 while (*q++ && isblank((unsigned char)*q))
3715 /* skip blanks */;
3716 line = q;
3717 }
3718
3719 /*
3720 * q is now at the first char of the log facility
3721 * There should be at least one tab after the log facility
3722 * Check this is okay, and complain and fix if it is not.
3723 */
3724 q = line + strlen(line);
3725 while (!isblank((unsigned char)*q) && (q != line))
3726 q--;
3727 if ((q == line) && strlen(line)) {
3728 /* No tabs or space in a non empty line: complain */
3729 errno = 0;
3730 logerror(
3731 "Error: `%s' log facility or log target missing",
3732 line);
3733 return;
3734 }
3735
3736 /* save host name, if any */
3737 if (*host == '*')
3738 f->f_host = NULL;
3739 else {
3740 f->f_host = strdup(host);
3741 trim_anydomain(&f->f_host[1]); /* skip +/- at beginning */
3742 }
3743
3744 /* save program name, if any */
3745 if (*prog == '*')
3746 f->f_program = NULL;
3747 else
3748 f->f_program = strdup(prog);
3749
3750 /* scan through the list of selectors */
3751 for (p = line; *p && !isblank((unsigned char)*p);) {
3752 int pri_done, pri_cmp, pri_invert;
3753
3754 /* find the end of this facility name list */
3755 for (q = p; *q && !isblank((unsigned char)*q) && *q++ != '.'; )
3756 continue;
3757
3758 /* get the priority comparison */
3759 pri_cmp = 0;
3760 pri_done = 0;
3761 pri_invert = 0;
3762 if (*q == '!') {
3763 pri_invert = 1;
3764 q++;
3765 }
3766 while (! pri_done) {
3767 switch (*q) {
3768 case '<':
3769 pri_cmp = PRI_LT;
3770 q++;
3771 break;
3772 case '=':
3773 pri_cmp = PRI_EQ;
3774 q++;
3775 break;
3776 case '>':
3777 pri_cmp = PRI_GT;
3778 q++;
3779 break;
3780 default:
3781 pri_done = 1;
3782 break;
3783 }
3784 }
3785
3786 /* collect priority name */
3787 for (bp = buf; *q && !strchr("\t ,;", *q); )
3788 *bp++ = *q++;
3789 *bp = '\0';
3790
3791 /* skip cruft */
3792 while (strchr(",;", *q))
3793 q++;
3794
3795 /* decode priority name */
3796 if (*buf == '*') {
3797 pri = LOG_PRIMASK + 1;
3798 pri_cmp = PRI_LT | PRI_EQ | PRI_GT;
3799 } else {
3800 pri = decode(buf, prioritynames);
3801 if (pri < 0) {
3802 errno = 0;
3803 logerror("Unknown priority name `%s'", buf);
3804 return;
3805 }
3806 }
3807 if (pri_cmp == 0)
3808 pri_cmp = UniquePriority ? PRI_EQ
3809 : PRI_EQ | PRI_GT;
3810 if (pri_invert)
3811 pri_cmp ^= PRI_LT | PRI_EQ | PRI_GT;
3812
3813 /* scan facilities */
3814 while (*p && !strchr("\t .;", *p)) {
3815 for (bp = buf; *p && !strchr("\t ,;.", *p); )
3816 *bp++ = *p++;
3817 *bp = '\0';
3818 if (*buf == '*')
3819 for (i = 0; i < LOG_NFACILITIES; i++) {
3820 f->f_pmask[i] = pri;
3821 f->f_pcmp[i] = pri_cmp;
3822 }
3823 else {
3824 i = decode(buf, facilitynames);
3825 if (i < 0) {
3826 errno = 0;
3827 logerror("Unknown facility name `%s'",
3828 buf);
3829 return;
3830 }
3831 f->f_pmask[i >> 3] = pri;
3832 f->f_pcmp[i >> 3] = pri_cmp;
3833 }
3834 while (*p == ',' || *p == ' ')
3835 p++;
3836 }
3837
3838 p = q;
3839 }
3840
3841 /* skip to action part */
3842 while (isblank((unsigned char)*p))
3843 p++;
3844
3845 /*
3846 * should this be "#ifndef DISABLE_SIGN" or is it a general option?
3847 * '+' before file destination: write with PRI field for later
3848 * verification
3849 */
3850 if (*p == '+') {
3851 f->f_flags |= FFLAG_FULL;
3852 p++;
3853 }
3854 if (*p == '-') {
3855 syncfile = 0;
3856 p++;
3857 } else
3858 syncfile = 1;
3859
3860 switch (*p) {
3861 case '@':
3862 #ifndef DISABLE_SIGN
3863 if (GlobalSign.sg == 3)
3864 f->f_flags |= FFLAG_SIGN;
3865 #endif /* !DISABLE_SIGN */
3866 #ifndef DISABLE_TLS
3867 if (*(p+1) == '[') {
3868 /* TLS destination */
3869 if (!parse_tls_destination(p, f, linenum)) {
3870 logerror("Unable to parse action %s", p);
3871 break;
3872 }
3873 f->f_type = F_TLS;
3874 break;
3875 }
3876 #endif /* !DISABLE_TLS */
3877 (void)strlcpy(f->f_un.f_forw.f_hname, ++p,
3878 sizeof(f->f_un.f_forw.f_hname));
3879 memset(&hints, 0, sizeof(hints));
3880 hints.ai_family = AF_UNSPEC;
3881 hints.ai_socktype = SOCK_DGRAM;
3882 hints.ai_protocol = 0;
3883 error = getaddrinfo(f->f_un.f_forw.f_hname, "syslog", &hints,
3884 &res);
3885 if (error) {
3886 errno = 0;
3887 logerror("%s", gai_strerror(error));
3888 break;
3889 }
3890 f->f_un.f_forw.f_addr = res;
3891 f->f_type = F_FORW;
3892 NumForwards++;
3893 break;
3894
3895 case '/':
3896 #ifndef DISABLE_SIGN
3897 if (GlobalSign.sg == 3)
3898 f->f_flags |= FFLAG_SIGN;
3899 #endif /* !DISABLE_SIGN */
3900 (void)strlcpy(f->f_un.f_fname, p, sizeof(f->f_un.f_fname));
3901 if ((f->f_file = open(p, O_WRONLY|O_APPEND|O_NONBLOCK, 0)) < 0)
3902 {
3903 f->f_type = F_UNUSED;
3904 logerror("%s", p);
3905 break;
3906 }
3907 if (!fstat(f->f_file, &sb) && S_ISFIFO(sb.st_mode)) {
3908 f->f_file = -1;
3909 f->f_type = F_FIFO;
3910 break;
3911 }
3912
3913 if (isatty(f->f_file)) {
3914 f->f_type = F_TTY;
3915 if (strcmp(p, ctty) == 0)
3916 f->f_type = F_CONSOLE;
3917 } else
3918 f->f_type = F_FILE;
3919
3920 if (syncfile)
3921 f->f_flags |= FFLAG_SYNC;
3922 break;
3923
3924 case '|':
3925 #ifndef DISABLE_SIGN
3926 if (GlobalSign.sg == 3)
3927 f->f_flags |= FFLAG_SIGN;
3928 #endif
3929 f->f_un.f_pipe.f_pid = 0;
3930 (void) strlcpy(f->f_un.f_pipe.f_pname, p + 1,
3931 sizeof(f->f_un.f_pipe.f_pname));
3932 f->f_type = F_PIPE;
3933 break;
3934
3935 case '*':
3936 f->f_type = F_WALL;
3937 break;
3938
3939 default:
3940 for (i = 0; i < MAXUNAMES && *p; i++) {
3941 for (q = p; *q && *q != ','; )
3942 q++;
3943 (void)strncpy(f->f_un.f_uname[i], p, UT_NAMESIZE);
3944 if ((q - p) > UT_NAMESIZE)
3945 f->f_un.f_uname[i][UT_NAMESIZE] = '\0';
3946 else
3947 f->f_un.f_uname[i][q - p] = '\0';
3948 while (*q == ',' || *q == ' ')
3949 q++;
3950 p = q;
3951 }
3952 f->f_type = F_USERS;
3953 break;
3954 }
3955 }
3956
3957
3958 /*
3959 * Decode a symbolic name to a numeric value
3960 */
3961 int
3962 decode(const char *name, CODE *codetab)
3963 {
3964 CODE *c;
3965 char *p, buf[40];
3966
3967 if (isdigit((unsigned char)*name))
3968 return atoi(name);
3969
3970 for (p = buf; *name && p < &buf[sizeof(buf) - 1]; p++, name++) {
3971 if (isupper((unsigned char)*name))
3972 *p = tolower((unsigned char)*name);
3973 else
3974 *p = *name;
3975 }
3976 *p = '\0';
3977 for (c = codetab; c->c_name; c++)
3978 if (!strcmp(buf, c->c_name))
3979 return c->c_val;
3980
3981 return -1;
3982 }
3983
3984 /*
3985 * Retrieve the size of the kernel message buffer, via sysctl.
3986 */
3987 int
3988 getmsgbufsize(void)
3989 {
3990 #ifdef __NetBSD_Version__
3991 int msgbufsize, mib[2];
3992 size_t size;
3993
3994 mib[0] = CTL_KERN;
3995 mib[1] = KERN_MSGBUFSIZE;
3996 size = sizeof msgbufsize;
3997 if (sysctl(mib, 2, &msgbufsize, &size, NULL, 0) == -1) {
3998 DPRINTF(D_MISC, "Couldn't get kern.msgbufsize\n");
3999 return 0;
4000 }
4001 return msgbufsize;
4002 #else
4003 return MAXLINE;
4004 #endif /* __NetBSD_Version__ */
4005 }
4006
4007 /*
4008 * Retrieve the hostname, via sysctl.
4009 */
4010 char *
4011 getLocalFQDN(void)
4012 {
4013 int mib[2];
4014 char *hostname;
4015 size_t len;
4016
4017 mib[0] = CTL_KERN;
4018 mib[1] = KERN_HOSTNAME;
4019 sysctl(mib, 2, NULL, &len, NULL, 0);
4020
4021 if (!(hostname = malloc(len))) {
4022 logerror("Unable to allocate memory");
4023 die(0,0,NULL);
4024 } else if (sysctl(mib, 2, hostname, &len, NULL, 0) == -1) {
4025 DPRINTF(D_MISC, "Couldn't get kern.hostname\n");
4026 (void)gethostname(hostname, sizeof(len));
4027 }
4028 return hostname;
4029 }
4030
4031 struct socketEvent *
4032 socksetup(int af, const char *hostname)
4033 {
4034 struct addrinfo hints, *res, *r;
4035 int error, maxs;
4036 int on = 1;
4037 struct socketEvent *s, *socks;
4038
4039 if(SecureMode && !NumForwards)
4040 return NULL;
4041
4042 memset(&hints, 0, sizeof(hints));
4043 hints.ai_flags = AI_PASSIVE;
4044 hints.ai_family = af;
4045 hints.ai_socktype = SOCK_DGRAM;
4046 error = getaddrinfo(hostname, "syslog", &hints, &res);
4047 if (error) {
4048 errno = 0;
4049 logerror("%s", gai_strerror(error));
4050 die(0, 0, NULL);
4051 }
4052
4053 /* Count max number of sockets we may open */
4054 for (maxs = 0, r = res; r; r = r->ai_next, maxs++)
4055 continue;
4056 socks = calloc(maxs+1, sizeof(*socks));
4057 if (!socks) {
4058 logerror("Couldn't allocate memory for sockets");
4059 die(0, 0, NULL);
4060 }
4061
4062 socks->fd = 0; /* num of sockets counter at start of array */
4063 s = socks + 1;
4064 for (r = res; r; r = r->ai_next) {
4065 s->fd = socket(r->ai_family, r->ai_socktype, r->ai_protocol);
4066 if (s->fd < 0) {
4067 logerror("socket() failed");
4068 continue;
4069 }
4070 s->af = r->ai_family;
4071 if (r->ai_family == AF_INET6 && setsockopt(s->fd, IPPROTO_IPV6,
4072 IPV6_V6ONLY, &on, sizeof(on)) < 0) {
4073 logerror("setsockopt(IPV6_V6ONLY) failed");
4074 close(s->fd);
4075 continue;
4076 }
4077
4078 if (!SecureMode) {
4079 if (bind(s->fd, r->ai_addr, r->ai_addrlen) < 0) {
4080 logerror("bind() failed");
4081 close(s->fd);
4082 continue;
4083 }
4084 s->ev = allocev();
4085 event_set(s->ev, s->fd, EV_READ | EV_PERSIST,
4086 dispatch_read_finet, s->ev);
4087 if (event_add(s->ev, NULL) == -1) {
4088 DPRINTF((D_EVENT|D_NET),
4089 "Failure in event_add()\n");
4090 } else {
4091 DPRINTF((D_EVENT|D_NET),
4092 "Listen on UDP port "
4093 "(event@%p)\n", s->ev);
4094 }
4095 }
4096
4097 socks->fd++; /* num counter */
4098 s++;
4099 }
4100
4101 if (res)
4102 freeaddrinfo(res);
4103 if (socks->fd == 0) {
4104 free (socks);
4105 if(Debug)
4106 return NULL;
4107 else
4108 die(0, 0, NULL);
4109 }
4110 return socks;
4111 }
4112
4113 /*
4114 * Fairly similar to popen(3), but returns an open descriptor, as opposed
4115 * to a FILE *.
4116 */
4117 int
4118 p_open(char *prog, pid_t *rpid)
4119 {
4120 static char sh[] = "sh", mc[] = "-c";
4121 int pfd[2], nulldesc, i;
4122 pid_t pid;
4123 char *argv[4]; /* sh -c cmd NULL */
4124
4125 if (pipe(pfd) == -1)
4126 return -1;
4127 if ((nulldesc = open(_PATH_DEVNULL, O_RDWR)) == -1) {
4128 /* We are royally screwed anyway. */
4129 return -1;
4130 }
4131
4132 switch ((pid = fork())) {
4133 case -1:
4134 (void) close(nulldesc);
4135 return -1;
4136
4137 case 0:
4138 argv[0] = sh;
4139 argv[1] = mc;
4140 argv[2] = prog;
4141 argv[3] = NULL;
4142
4143 (void) setsid(); /* avoid catching SIGHUPs. */
4144
4145 /*
4146 * Reset ignored signals to their default behavior.
4147 */
4148 (void)signal(SIGTERM, SIG_DFL);
4149 (void)signal(SIGINT, SIG_DFL);
4150 (void)signal(SIGQUIT, SIG_DFL);
4151 (void)signal(SIGPIPE, SIG_DFL);
4152 (void)signal(SIGHUP, SIG_DFL);
4153
4154 dup2(pfd[0], STDIN_FILENO);
4155 dup2(nulldesc, STDOUT_FILENO);
4156 dup2(nulldesc, STDERR_FILENO);
4157 for (i = getdtablesize(); i > 2; i--)
4158 (void) close(i);
4159
4160 (void) execvp(_PATH_BSHELL, argv);
4161 _exit(255);
4162 }
4163
4164 (void) close(nulldesc);
4165 (void) close(pfd[0]);
4166
4167 /*
4168 * Avoid blocking on a hung pipe. With O_NONBLOCK, we are
4169 * supposed to get an EWOULDBLOCK on writev(2), which is
4170 * caught by the logic above anyway, which will in turn
4171 * close the pipe, and fork a new logging subprocess if
4172 * necessary. The stale subprocess will be killed some
4173 * time later unless it terminated itself due to closing
4174 * its input pipe.
4175 */
4176 if (fcntl(pfd[1], F_SETFL, O_NONBLOCK) == -1) {
4177 /* This is bad. */
4178 logerror("Warning: cannot change pipe to pid %d to "
4179 "non-blocking.", (int) pid);
4180 }
4181 *rpid = pid;
4182 return pfd[1];
4183 }
4184
4185 void
4186 deadq_enter(pid_t pid, const char *name)
4187 {
4188 dq_t p;
4189 int status;
4190
4191 /*
4192 * Be paranoid: if we can't signal the process, don't enter it
4193 * into the dead queue (perhaps it's already dead). If possible,
4194 * we try to fetch and log the child's status.
4195 */
4196 if (kill(pid, 0) != 0) {
4197 if (waitpid(pid, &status, WNOHANG) > 0)
4198 log_deadchild(pid, status, name);
4199 return;
4200 }
4201
4202 p = malloc(sizeof(*p));
4203 if (p == NULL) {
4204 logerror("panic: out of memory!");
4205 exit(1);
4206 }
4207
4208 p->dq_pid = pid;
4209 p->dq_timeout = DQ_TIMO_INIT;
4210 TAILQ_INSERT_TAIL(&deadq_head, p, dq_entries);
4211 }
4212
4213 int
4214 deadq_remove(pid_t pid)
4215 {
4216 dq_t q;
4217
4218 for (q = TAILQ_FIRST(&deadq_head); q != NULL;
4219 q = TAILQ_NEXT(q, dq_entries)) {
4220 if (q->dq_pid == pid) {
4221 TAILQ_REMOVE(&deadq_head, q, dq_entries);
4222 free(q);
4223 return 1;
4224 }
4225 }
4226 return 0;
4227 }
4228
4229 void
4230 log_deadchild(pid_t pid, int status, const char *name)
4231 {
4232 int code;
4233 char buf[256];
4234 const char *reason;
4235
4236 /* Keep strerror() struff out of logerror messages. */
4237 errno = 0;
4238 if (WIFSIGNALED(status)) {
4239 reason = "due to signal";
4240 code = WTERMSIG(status);
4241 } else {
4242 reason = "with status";
4243 code = WEXITSTATUS(status);
4244 if (code == 0)
4245 return;
4246 }
4247 (void) snprintf(buf, sizeof(buf),
4248 "Logging subprocess %d (%s) exited %s %d.",
4249 pid, name, reason, code);
4250 logerror("%s", buf);
4251 }
4252
4253 struct event *
4254 allocev(void)
4255 {
4256 struct event *ev;
4257
4258 if (!(ev = calloc(1, sizeof(*ev))))
4259 logerror("Unable to allocate memory");
4260 return ev;
4261 }
4262
4263 /* *ev is allocated if necessary */
4264 void
4265 schedule_event(struct event **ev, struct timeval *tv,
4266 void (*cb)(int, short, void *), void *arg)
4267 {
4268 if (!*ev && !(*ev = allocev())) {
4269 return;
4270 }
4271 event_set(*ev, 0, 0, cb, arg);
4272 DPRINTF(D_EVENT, "event_add(%s@%p)\n", "schedule_ev", *ev); \
4273 if (event_add(*ev, tv) == -1) {
4274 DPRINTF(D_EVENT, "Failure in event_add()\n");
4275 }
4276 }
4277
4278 #ifndef DISABLE_TLS
4279 /* abbreviation for freeing credential lists */
4280 void
4281 free_cred_SLIST(struct peer_cred_head *head)
4282 {
4283 struct peer_cred *cred;
4284
4285 while (!SLIST_EMPTY(head)) {
4286 cred = SLIST_FIRST(head);
4287 SLIST_REMOVE_HEAD(head, entries);
4288 FREEPTR(cred->data);
4289 free(cred);
4290 }
4291 }
4292 #endif /* !DISABLE_TLS */
4293
4294 /*
4295 * send message queue after reconnect
4296 */
4297 /*ARGSUSED*/
4298 void
4299 send_queue(int fd, short event, void *arg)
4300 {
4301 struct filed *f = (struct filed *) arg;
4302 struct buf_queue *qentry;
4303 #define SQ_CHUNK_SIZE 250
4304 size_t cnt = 0;
4305
4306 #ifndef DISABLE_TLS
4307 if (f->f_type == F_TLS) {
4308 /* use a flag to prevent recursive calls to send_queue() */
4309 if (f->f_un.f_tls.tls_conn->send_queue)
4310 return;
4311 else
4312 f->f_un.f_tls.tls_conn->send_queue = true;
4313 }
4314 DPRINTF((D_DATA|D_CALL), "send_queue(f@%p with %zu msgs, "
4315 "cnt@%p = %zu)\n", f, f->f_qelements, &cnt, cnt);
4316 #endif /* !DISABLE_TLS */
4317
4318 while ((qentry = STAILQ_FIRST(&f->f_qhead))) {
4319 #ifndef DISABLE_TLS
4320 /* send_queue() might be called with an unconnected destination
4321 * from init() or die() or one message might take longer,
4322 * leaving the connection in state ST_WAITING and thus not
4323 * ready for the next message.
4324 * this check is a shortcut to skip these unnecessary calls */
4325 if (f->f_type == F_TLS
4326 && f->f_un.f_tls.tls_conn->state != ST_TLS_EST) {
4327 DPRINTF(D_TLS, "abort send_queue(cnt@%p = %zu) "
4328 "on TLS connection in state %d\n",
4329 &cnt, cnt, f->f_un.f_tls.tls_conn->state);
4330 return;
4331 }
4332 #endif /* !DISABLE_TLS */
4333 fprintlog(f, qentry->msg, qentry);
4334
4335 /* Sending a long queue can take some time during which
4336 * SIGHUP and SIGALRM are blocked and no events are handled.
4337 * To avoid that we only send SQ_CHUNK_SIZE messages at once
4338 * and then reschedule ourselves to continue. Thus the control
4339 * will return first from all signal-protected functions so a
4340 * possible SIGHUP/SIGALRM is handled and then back to the
4341 * main loop which can handle possible input.
4342 */
4343 if (++cnt >= SQ_CHUNK_SIZE) {
4344 if (!f->f_sq_event) { /* alloc on demand */
4345 f->f_sq_event = allocev();
4346 event_set(f->f_sq_event, 0, 0, send_queue, f);
4347 }
4348 if (event_add(f->f_sq_event, &((struct timeval){0, 1})) == -1) {
4349 DPRINTF(D_EVENT, "Failure in event_add()\n");
4350 }
4351 break;
4352 }
4353 }
4354 #ifndef DISABLE_TLS
4355 if (f->f_type == F_TLS)
4356 f->f_un.f_tls.tls_conn->send_queue = false;
4357 #endif
4358
4359 }
4360
4361 /*
4362 * finds the next queue element to delete
4363 *
4364 * has stateful behaviour, before using it call once with reset = true
4365 * after that every call will return one next queue elemen to delete,
4366 * depending on strategy either the oldest or the one with the lowest priority
4367 */
4368 static struct buf_queue *
4369 find_qentry_to_delete(const struct buf_queue_head *head, int strategy,
4370 bool reset)
4371 {
4372 static int pri;
4373 static struct buf_queue *qentry_static;
4374
4375 struct buf_queue *qentry_tmp;
4376
4377 if (reset || STAILQ_EMPTY(head)) {
4378 pri = LOG_DEBUG;
4379 qentry_static = STAILQ_FIRST(head);
4380 return NULL;
4381 }
4382
4383 /* find elements to delete */
4384 if (strategy == PURGE_BY_PRIORITY) {
4385 qentry_tmp = qentry_static;
4386 if (!qentry_tmp) return NULL;
4387 while ((qentry_tmp = STAILQ_NEXT(qentry_tmp, entries)) != NULL)
4388 {
4389 if (LOG_PRI(qentry_tmp->msg->pri) == pri) {
4390 /* save the successor, because qentry_tmp
4391 * is probably deleted by the caller */
4392 qentry_static = STAILQ_NEXT(qentry_tmp, entries);
4393 return qentry_tmp;
4394 }
4395 }
4396 /* nothing found in while loop --> next pri */
4397 if (--pri)
4398 return find_qentry_to_delete(head, strategy, false);
4399 else
4400 return NULL;
4401 } else /* strategy == PURGE_OLDEST or other value */ {
4402 qentry_tmp = qentry_static;
4403 qentry_static = STAILQ_NEXT(qentry_tmp, entries);
4404 return qentry_tmp; /* is NULL on empty queue */
4405 }
4406 }
4407
4408 /* note on TAILQ: newest message added at TAIL,
4409 * oldest to be removed is FIRST
4410 */
4411 /*
4412 * checks length of a destination's message queue
4413 * if del_entries == 0 then assert queue length is
4414 * less or equal to configured number of queue elements
4415 * otherwise del_entries tells how many entries to delete
4416 *
4417 * returns the number of removed queue elements
4418 * (which not necessarily means free'd messages)
4419 *
4420 * strategy PURGE_OLDEST to delete oldest entry, e.g. after it was resent
4421 * strategy PURGE_BY_PRIORITY to delete messages with lowest priority first,
4422 * this is much slower but might be desirable when unsent messages have
4423 * to be deleted, e.g. in call from domark()
4424 */
4425 size_t
4426 message_queue_purge(struct filed *f, size_t del_entries, int strategy)
4427 {
4428 size_t removed = 0;
4429 struct buf_queue *qentry = NULL;
4430
4431 DPRINTF((D_CALL|D_BUFFER), "purge_message_queue(%p, %zu, %d) with "
4432 "f_qelements=%zu and f_qsize=%zu\n",
4433 f, del_entries, strategy,
4434 f->f_qelements, f->f_qsize);
4435
4436 /* reset state */
4437 (void)find_qentry_to_delete(&f->f_qhead, strategy, true);
4438
4439 while (removed < del_entries
4440 || (TypeInfo[f->f_type].queue_length != -1
4441 && (size_t)TypeInfo[f->f_type].queue_length <= f->f_qelements)
4442 || (TypeInfo[f->f_type].queue_size != -1
4443 && (size_t)TypeInfo[f->f_type].queue_size <= f->f_qsize)) {
4444 qentry = find_qentry_to_delete(&f->f_qhead, strategy, 0);
4445 if (message_queue_remove(f, qentry))
4446 removed++;
4447 else
4448 break;
4449 }
4450 return removed;
4451 }
4452
4453 /* run message_queue_purge() for all destinations to free memory */
4454 size_t
4455 message_allqueues_purge(void)
4456 {
4457 size_t sum = 0;
4458 struct filed *f;
4459
4460 for (f = Files; f; f = f->f_next)
4461 sum += message_queue_purge(f,
4462 f->f_qelements/10, PURGE_BY_PRIORITY);
4463
4464 DPRINTF(D_BUFFER,
4465 "message_allqueues_purge(): removed %zu buffer entries\n", sum);
4466 return sum;
4467 }
4468
4469 /* run message_queue_purge() for all destinations to check limits */
4470 size_t
4471 message_allqueues_check(void)
4472 {
4473 size_t sum = 0;
4474 struct filed *f;
4475
4476 for (f = Files; f; f = f->f_next)
4477 sum += message_queue_purge(f, 0, PURGE_BY_PRIORITY);
4478 DPRINTF(D_BUFFER,
4479 "message_allqueues_check(): removed %zu buffer entries\n", sum);
4480 return sum;
4481 }
4482
4483 struct buf_msg *
4484 buf_msg_new(const size_t len)
4485 {
4486 struct buf_msg *newbuf;
4487
4488 CALLOC(newbuf, sizeof(*newbuf));
4489
4490 if (len) { /* len = 0 is valid */
4491 MALLOC(newbuf->msg, len);
4492 newbuf->msgorig = newbuf->msg;
4493 newbuf->msgsize = len;
4494 }
4495 return NEWREF(newbuf);
4496 }
4497
4498 void
4499 buf_msg_free(struct buf_msg *buf)
4500 {
4501 if (!buf)
4502 return;
4503
4504 buf->refcount--;
4505 if (buf->refcount == 0) {
4506 FREEPTR(buf->timestamp);
4507 /* small optimizations: the host/recvhost may point to the
4508 * global HostName/FQDN. of course this must not be free()d
4509 * same goes for appname and include_pid
4510 */
4511 if (buf->recvhost != buf->host
4512 && buf->recvhost != LocalHostName
4513 && buf->recvhost != LocalFQDN
4514 && buf->recvhost != oldLocalFQDN)
4515 FREEPTR(buf->recvhost);
4516 if (buf->host != LocalHostName
4517 && buf->host != LocalFQDN
4518 && buf->host != oldLocalFQDN)
4519 FREEPTR(buf->host);
4520 if (buf->prog != appname)
4521 FREEPTR(buf->prog);
4522 if (buf->pid != include_pid)
4523 FREEPTR(buf->pid);
4524 FREEPTR(buf->msgid);
4525 FREEPTR(buf->sd);
4526 FREEPTR(buf->msgorig); /* instead of msg */
4527 FREEPTR(buf);
4528 }
4529 }
4530
4531 size_t
4532 buf_queue_obj_size(struct buf_queue *qentry)
4533 {
4534 size_t sum = 0;
4535
4536 if (!qentry)
4537 return 0;
4538 sum += sizeof(*qentry)
4539 + sizeof(*qentry->msg)
4540 + qentry->msg->msgsize
4541 + SAFEstrlen(qentry->msg->timestamp)+1
4542 + SAFEstrlen(qentry->msg->msgid)+1;
4543 if (qentry->msg->prog
4544 && qentry->msg->prog != include_pid)
4545 sum += strlen(qentry->msg->prog)+1;
4546 if (qentry->msg->pid
4547 && qentry->msg->pid != appname)
4548 sum += strlen(qentry->msg->pid)+1;
4549 if (qentry->msg->recvhost
4550 && qentry->msg->recvhost != LocalHostName
4551 && qentry->msg->recvhost != LocalFQDN
4552 && qentry->msg->recvhost != oldLocalFQDN)
4553 sum += strlen(qentry->msg->recvhost)+1;
4554 if (qentry->msg->host
4555 && qentry->msg->host != LocalHostName
4556 && qentry->msg->host != LocalFQDN
4557 && qentry->msg->host != oldLocalFQDN)
4558 sum += strlen(qentry->msg->host)+1;
4559
4560 return sum;
4561 }
4562
4563 bool
4564 message_queue_remove(struct filed *f, struct buf_queue *qentry)
4565 {
4566 if (!f || !qentry || !qentry->msg)
4567 return false;
4568
4569 assert(!STAILQ_EMPTY(&f->f_qhead));
4570 STAILQ_REMOVE(&f->f_qhead, qentry, buf_queue, entries);
4571 f->f_qelements--;
4572 f->f_qsize -= buf_queue_obj_size(qentry);
4573
4574 DPRINTF(D_BUFFER, "msg @%p removed from queue @%p, new qlen = %zu\n",
4575 qentry->msg, f, f->f_qelements);
4576 DELREF(qentry->msg);
4577 FREEPTR(qentry);
4578 return true;
4579 }
4580
4581 /*
4582 * returns *qentry on success and NULL on error
4583 */
4584 struct buf_queue *
4585 message_queue_add(struct filed *f, struct buf_msg *buffer)
4586 {
4587 struct buf_queue *qentry;
4588
4589 /* check on every call or only every n-th time? */
4590 message_queue_purge(f, 0, PURGE_BY_PRIORITY);
4591
4592 while (!(qentry = malloc(sizeof(*qentry)))
4593 && message_queue_purge(f, 1, PURGE_OLDEST))
4594 continue;
4595 if (!qentry) {
4596 logerror("Unable to allocate memory");
4597 DPRINTF(D_BUFFER, "queue empty, no memory, msg dropped\n");
4598 return NULL;
4599 } else {
4600 qentry->msg = buffer;
4601 f->f_qelements++;
4602 f->f_qsize += buf_queue_obj_size(qentry);
4603 STAILQ_INSERT_TAIL(&f->f_qhead, qentry, entries);
4604
4605 DPRINTF(D_BUFFER, "msg @%p queued @%p, qlen = %zu\n",
4606 buffer, f, f->f_qelements);
4607 return qentry;
4608 }
4609 }
4610
4611 void
4612 message_queue_freeall(struct filed *f)
4613 {
4614 struct buf_queue *qentry;
4615
4616 if (!f) return;
4617 DPRINTF(D_MEM, "message_queue_freeall(f@%p) with f_qhead@%p\n", f,
4618 &f->f_qhead);
4619
4620 while (!STAILQ_EMPTY(&f->f_qhead)) {
4621 qentry = STAILQ_FIRST(&f->f_qhead);
4622 STAILQ_REMOVE(&f->f_qhead, qentry, buf_queue, entries);
4623 DELREF(qentry->msg);
4624 FREEPTR(qentry);
4625 }
4626
4627 f->f_qelements = 0;
4628 f->f_qsize = 0;
4629 }
4630
4631 #ifndef DISABLE_TLS
4632 /* utility function for tls_reconnect() */
4633 struct filed *
4634 get_f_by_conninfo(struct tls_conn_settings *conn_info)
4635 {
4636 struct filed *f;
4637
4638 for (f = Files; f; f = f->f_next) {
4639 if ((f->f_type == F_TLS) && f->f_un.f_tls.tls_conn == conn_info)
4640 return f;
4641 }
4642 DPRINTF(D_TLS, "get_f_by_conninfo() called on invalid conn_info\n");
4643 return NULL;
4644 }
4645
4646 /*
4647 * Called on signal.
4648 * Lets the admin reconnect without waiting for the reconnect timer expires.
4649 */
4650 /*ARGSUSED*/
4651 void
4652 dispatch_force_tls_reconnect(int fd, short event, void *ev)
4653 {
4654 struct filed *f;
4655 DPRINTF((D_TLS|D_CALL|D_EVENT), "dispatch_force_tls_reconnect()\n");
4656 for (f = Files; f; f = f->f_next) {
4657 if (f->f_type == F_TLS &&
4658 f->f_un.f_tls.tls_conn->state == ST_NONE)
4659 tls_reconnect(fd, event, f->f_un.f_tls.tls_conn);
4660 }
4661 }
4662 #endif /* !DISABLE_TLS */
4663
4664 /*
4665 * return a timestamp in a static buffer,
4666 * either format the timestamp given by parameter in_now
4667 * or use the current time if in_now is NULL.
4668 */
4669 char *
4670 make_timestamp(time_t *in_now, bool iso, size_t tlen)
4671 {
4672 int frac_digits = 6;
4673 struct timeval tv;
4674 time_t mytime;
4675 struct tm ltime;
4676 int len = 0;
4677 int tzlen = 0;
4678 /* uses global var: time_t now; */
4679
4680 if (in_now) {
4681 mytime = *in_now;
4682 } else {
4683 gettimeofday(&tv, NULL);
4684 mytime = now = tv.tv_sec;
4685 }
4686
4687 if (!iso) {
4688 strlcpy(timestamp, ctime(&mytime) + 4, sizeof(timestamp));
4689 timestamp[BSD_TIMESTAMPLEN] = '\0';
4690 } else {
4691 localtime_r(&mytime, <ime);
4692 len += strftime(timestamp, sizeof(timestamp), "%FT%T", <ime);
4693 snprintf(×tamp[len], frac_digits + 2, ".%.*jd",
4694 frac_digits, (intmax_t)tv.tv_usec);
4695 len += frac_digits + 1;
4696 tzlen = strftime(×tamp[len], sizeof(timestamp) - len, "%z",
4697 <ime);
4698 len += tzlen;
4699
4700 if (tzlen == 5) {
4701 /* strftime gives "+0200", but we need "+02:00" */
4702 timestamp[len + 2] = '\0';
4703 timestamp[len + 1] = timestamp[len];
4704 timestamp[len] = timestamp[len - 1];
4705 timestamp[len - 1] = timestamp[len - 2];
4706 timestamp[len - 2] = ':';
4707 }
4708 }
4709
4710 switch (tlen) {
4711 case (size_t)-1:
4712 return timestamp;
4713 case 0:
4714 return strdup(timestamp);
4715 default:
4716 return strndup(timestamp, tlen);
4717 }
4718 }
4719
4720 /* auxillary code to allocate memory and copy a string */
4721 bool
4722 copy_string(char **mem, const char *p, const char *q)
4723 {
4724 const size_t len = 1 + q - p;
4725 if (!(*mem = malloc(len))) {
4726 logerror("Unable to allocate memory for config");
4727 return false;
4728 }
4729 strlcpy(*mem, p, len);
4730 return true;
4731 }
4732
4733 /* keyword has to end with ", everything until next " is copied */
4734 bool
4735 copy_config_value_quoted(const char *keyword, char **mem, const char **p)
4736 {
4737 const char *q;
4738 if (strncasecmp(*p, keyword, strlen(keyword)))
4739 return false;
4740 q = *p += strlen(keyword);
4741 if (!(q = strchr(*p, '"'))) {
4742 errno = 0;
4743 logerror("unterminated \"\n");
4744 return false;
4745 }
4746 if (!(copy_string(mem, *p, q)))
4747 return false;
4748 *p = ++q;
4749 return true;
4750 }
4751
4752 /* for config file:
4753 * following = required but whitespace allowed, quotes optional
4754 * if numeric, then conversion to integer and no memory allocation
4755 */
4756 bool
4757 copy_config_value(const char *keyword, char **mem,
4758 const char **p, const char *file, int line)
4759 {
4760 if (strncasecmp(*p, keyword, strlen(keyword)))
4761 return false;
4762 *p += strlen(keyword);
4763
4764 while (isspace((unsigned char)**p))
4765 *p += 1;
4766 if (**p != '=') {
4767 errno = 0;
4768 logerror("expected \"=\" in file %s, line %d", file, line);
4769 return false;
4770 }
4771 *p += 1;
4772
4773 return copy_config_value_word(mem, p);
4774 }
4775
4776 /* copy next parameter from a config line */
4777 bool
4778 copy_config_value_word(char **mem, const char **p)
4779 {
4780 const char *q;
4781 while (isspace((unsigned char)**p))
4782 *p += 1;
4783 if (**p == '"')
4784 return copy_config_value_quoted("\"", mem, p);
4785
4786 /* without quotes: find next whitespace or end of line */
4787 (void)((q = strchr(*p, ' ')) || (q = strchr(*p, '\t'))
4788 || (q = strchr(*p, '\n')) || (q = strchr(*p, '\0')));
4789
4790 if (q-*p == 0 || !(copy_string(mem, *p, q)))
4791 return false;
4792
4793 *p = ++q;
4794 return true;
4795 }
4796
4797 static int
4798 writev1(int fd, struct iovec *iov, size_t count)
4799 {
4800 ssize_t nw = 0, tot = 0;
4801 size_t ntries = 5;
4802
4803 if (count == 0)
4804 return 0;
4805 while (ntries--) {
4806 switch ((nw = writev(fd, iov, count))) {
4807 case -1:
4808 if (errno == EAGAIN || errno == EWOULDBLOCK) {
4809 struct pollfd pfd;
4810 pfd.fd = fd;
4811 pfd.events = POLLOUT;
4812 pfd.revents = 0;
4813 (void)poll(&pfd, 1, 500);
4814 continue;
4815 }
4816 return -1;
4817 case 0:
4818 return 0;
4819 default:
4820 tot += nw;
4821 while (nw > 0) {
4822 if (iov->iov_len > (size_t)nw) {
4823 iov->iov_len -= nw;
4824 iov->iov_base =
4825 (char *)iov->iov_base + nw;
4826 break;
4827 } else {
4828 if (--count == 0)
4829 return tot;
4830 nw -= iov->iov_len;
4831 iov++;
4832 }
4833 }
4834 }
4835 }
4836 return tot == 0 ? nw : tot;
4837 }
4838
4839 #ifndef NDEBUG
4840 void
4841 dbprintf(const char *fname, const char *funname,
4842 size_t lnum, const char *fmt, ...)
4843 {
4844 va_list ap;
4845 char *ts;
4846
4847 ts = make_timestamp(NULL, true, (size_t)-1);
4848 printf("%s:%s:%s:%.4zu\t", ts, fname, funname, lnum);
4849
4850 va_start(ap, fmt);
4851 vprintf(fmt, ap);
4852 va_end(ap);
4853 }
4854 #endif
4855