hastd.c revision 234294
1/*-
2 * Copyright (c) 2009-2010 The FreeBSD Foundation
3 * Copyright (c) 2010-2011 Pawel Jakub Dawidek <pawel@dawidek.net>
4 * All rights reserved.
5 *
6 * This software was developed by Pawel Jakub Dawidek under sponsorship from
7 * the FreeBSD Foundation.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions
11 * are met:
12 * 1. Redistributions of source code must retain the above copyright
13 *    notice, this list of conditions and the following disclaimer.
14 * 2. Redistributions in binary form must reproduce the above copyright
15 *    notice, this list of conditions and the following disclaimer in the
16 *    documentation and/or other materials provided with the distribution.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE AUTHORS AND CONTRIBUTORS ``AS IS'' AND
19 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
20 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
21 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHORS OR CONTRIBUTORS BE LIABLE
22 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
23 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
24 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
25 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
26 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
27 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
28 * SUCH DAMAGE.
29 */
30
31#include <sys/cdefs.h>
32__FBSDID("$FreeBSD: stable/9/sbin/hastd/hastd.c 234294 2012-04-14 17:33:47Z trociny $");
33
34#include <sys/param.h>
35#include <sys/linker.h>
36#include <sys/module.h>
37#include <sys/stat.h>
38#include <sys/wait.h>
39
40#include <err.h>
41#include <errno.h>
42#include <libutil.h>
43#include <signal.h>
44#include <stdbool.h>
45#include <stdio.h>
46#include <stdlib.h>
47#include <string.h>
48#include <sysexits.h>
49#include <time.h>
50#include <unistd.h>
51
52#include <activemap.h>
53#include <pjdlog.h>
54
55#include "control.h"
56#include "event.h"
57#include "hast.h"
58#include "hast_proto.h"
59#include "hastd.h"
60#include "hooks.h"
61#include "subr.h"
62
63/* Path to configuration file. */
64const char *cfgpath = HAST_CONFIG;
65/* Hastd configuration. */
66static struct hastd_config *cfg;
67/* Was SIGINT or SIGTERM signal received? */
68bool sigexit_received = false;
69/* Path to pidfile. */
70static const char *pidfile;
71/* PID file handle. */
72struct pidfh *pfh;
73/* Do we run in foreground? */
74static bool foreground;
75
76/* How often check for hooks running for too long. */
77#define	REPORT_INTERVAL	5
78
79static void
80usage(void)
81{
82
83	errx(EX_USAGE, "[-dFh] [-c config] [-P pidfile]");
84}
85
86static void
87g_gate_load(void)
88{
89
90	if (modfind("g_gate") == -1) {
91		/* Not present in kernel, try loading it. */
92		if (kldload("geom_gate") == -1 || modfind("g_gate") == -1) {
93			if (errno != EEXIST) {
94				pjdlog_exit(EX_OSERR,
95				    "Unable to load geom_gate module");
96			}
97		}
98	}
99}
100
101void
102descriptors_cleanup(struct hast_resource *res)
103{
104	struct hast_resource *tres, *tmres;
105	struct hastd_listen *lst;
106
107	TAILQ_FOREACH_SAFE(tres, &cfg->hc_resources, hr_next, tmres) {
108		if (tres == res) {
109			PJDLOG_VERIFY(res->hr_role == HAST_ROLE_SECONDARY ||
110			    (res->hr_remotein == NULL &&
111			     res->hr_remoteout == NULL));
112			continue;
113		}
114		if (tres->hr_remotein != NULL)
115			proto_close(tres->hr_remotein);
116		if (tres->hr_remoteout != NULL)
117			proto_close(tres->hr_remoteout);
118		if (tres->hr_ctrl != NULL)
119			proto_close(tres->hr_ctrl);
120		if (tres->hr_event != NULL)
121			proto_close(tres->hr_event);
122		if (tres->hr_conn != NULL)
123			proto_close(tres->hr_conn);
124		TAILQ_REMOVE(&cfg->hc_resources, tres, hr_next);
125		free(tres);
126	}
127	if (cfg->hc_controlin != NULL)
128		proto_close(cfg->hc_controlin);
129	proto_close(cfg->hc_controlconn);
130	while ((lst = TAILQ_FIRST(&cfg->hc_listen)) != NULL) {
131		TAILQ_REMOVE(&cfg->hc_listen, lst, hl_next);
132		if (lst->hl_conn != NULL)
133			proto_close(lst->hl_conn);
134		free(lst);
135	}
136	(void)pidfile_close(pfh);
137	hook_fini();
138	pjdlog_fini();
139}
140
141static const char *
142dtype2str(mode_t mode)
143{
144
145	if (S_ISBLK(mode))
146		return ("block device");
147	else if (S_ISCHR(mode))
148		return ("character device");
149	else if (S_ISDIR(mode))
150		return ("directory");
151	else if (S_ISFIFO(mode))
152		return ("pipe or FIFO");
153	else if (S_ISLNK(mode))
154		return ("symbolic link");
155	else if (S_ISREG(mode))
156		return ("regular file");
157	else if (S_ISSOCK(mode))
158		return ("socket");
159	else if (S_ISWHT(mode))
160		return ("whiteout");
161	else
162		return ("unknown");
163}
164
165void
166descriptors_assert(const struct hast_resource *res, int pjdlogmode)
167{
168	char msg[256];
169	struct stat sb;
170	long maxfd;
171	bool isopen;
172	mode_t mode;
173	int fd;
174
175	/*
176	 * At this point descriptor to syslog socket is closed, so if we want
177	 * to log assertion message, we have to first store it in 'msg' local
178	 * buffer and then open syslog socket and log it.
179	 */
180	msg[0] = '\0';
181
182	maxfd = sysconf(_SC_OPEN_MAX);
183	if (maxfd == -1) {
184		pjdlog_init(pjdlogmode);
185		pjdlog_prefix_set("[%s] (%s) ", res->hr_name,
186		    role2str(res->hr_role));
187		pjdlog_errno(LOG_WARNING, "sysconf(_SC_OPEN_MAX) failed");
188		pjdlog_fini();
189		maxfd = 16384;
190	}
191	for (fd = 0; fd <= maxfd; fd++) {
192		if (fstat(fd, &sb) == 0) {
193			isopen = true;
194			mode = sb.st_mode;
195		} else if (errno == EBADF) {
196			isopen = false;
197			mode = 0;
198		} else {
199			(void)snprintf(msg, sizeof(msg),
200			    "Unable to fstat descriptor %d: %s", fd,
201			    strerror(errno));
202			break;
203		}
204		if (fd == STDIN_FILENO || fd == STDOUT_FILENO ||
205		    fd == STDERR_FILENO) {
206			if (!isopen) {
207				(void)snprintf(msg, sizeof(msg),
208				    "Descriptor %d (%s) is closed, but should be open.",
209				    fd, (fd == STDIN_FILENO ? "stdin" :
210				    (fd == STDOUT_FILENO ? "stdout" : "stderr")));
211				break;
212			}
213		} else if (fd == proto_descriptor(res->hr_event)) {
214			if (!isopen) {
215				(void)snprintf(msg, sizeof(msg),
216				    "Descriptor %d (event) is closed, but should be open.",
217				    fd);
218				break;
219			}
220			if (!S_ISSOCK(mode)) {
221				(void)snprintf(msg, sizeof(msg),
222				    "Descriptor %d (event) is %s, but should be %s.",
223				    fd, dtype2str(mode), dtype2str(S_IFSOCK));
224				break;
225			}
226		} else if (fd == proto_descriptor(res->hr_ctrl)) {
227			if (!isopen) {
228				(void)snprintf(msg, sizeof(msg),
229				    "Descriptor %d (ctrl) is closed, but should be open.",
230				    fd);
231				break;
232			}
233			if (!S_ISSOCK(mode)) {
234				(void)snprintf(msg, sizeof(msg),
235				    "Descriptor %d (ctrl) is %s, but should be %s.",
236				    fd, dtype2str(mode), dtype2str(S_IFSOCK));
237				break;
238			}
239		} else if (res->hr_role == HAST_ROLE_PRIMARY &&
240		    fd == proto_descriptor(res->hr_conn)) {
241			if (!isopen) {
242				(void)snprintf(msg, sizeof(msg),
243				    "Descriptor %d (conn) is closed, but should be open.",
244				    fd);
245				break;
246			}
247			if (!S_ISSOCK(mode)) {
248				(void)snprintf(msg, sizeof(msg),
249				    "Descriptor %d (conn) is %s, but should be %s.",
250				    fd, dtype2str(mode), dtype2str(S_IFSOCK));
251				break;
252			}
253		} else if (res->hr_role == HAST_ROLE_SECONDARY &&
254		    res->hr_conn != NULL &&
255		    fd == proto_descriptor(res->hr_conn)) {
256			if (isopen) {
257				(void)snprintf(msg, sizeof(msg),
258				    "Descriptor %d (conn) is open, but should be closed.",
259				    fd);
260				break;
261			}
262		} else if (res->hr_role == HAST_ROLE_SECONDARY &&
263		    fd == proto_descriptor(res->hr_remotein)) {
264			if (!isopen) {
265				(void)snprintf(msg, sizeof(msg),
266				    "Descriptor %d (remote in) is closed, but should be open.",
267				    fd);
268				break;
269			}
270			if (!S_ISSOCK(mode)) {
271				(void)snprintf(msg, sizeof(msg),
272				    "Descriptor %d (remote in) is %s, but should be %s.",
273				    fd, dtype2str(mode), dtype2str(S_IFSOCK));
274				break;
275			}
276		} else if (res->hr_role == HAST_ROLE_SECONDARY &&
277		    fd == proto_descriptor(res->hr_remoteout)) {
278			if (!isopen) {
279				(void)snprintf(msg, sizeof(msg),
280				    "Descriptor %d (remote out) is closed, but should be open.",
281				    fd);
282				break;
283			}
284			if (!S_ISSOCK(mode)) {
285				(void)snprintf(msg, sizeof(msg),
286				    "Descriptor %d (remote out) is %s, but should be %s.",
287				    fd, dtype2str(mode), dtype2str(S_IFSOCK));
288				break;
289			}
290		} else {
291			if (isopen) {
292				(void)snprintf(msg, sizeof(msg),
293				    "Descriptor %d is open (%s), but should be closed.",
294				    fd, dtype2str(mode));
295				break;
296			}
297		}
298	}
299	if (msg[0] != '\0') {
300		pjdlog_init(pjdlogmode);
301		pjdlog_prefix_set("[%s] (%s) ", res->hr_name,
302		    role2str(res->hr_role));
303		PJDLOG_ABORT("%s", msg);
304	}
305}
306
307static void
308child_exit_log(unsigned int pid, int status)
309{
310
311	if (WIFEXITED(status) && WEXITSTATUS(status) == 0) {
312		pjdlog_debug(1, "Worker process exited gracefully (pid=%u).",
313		    pid);
314	} else if (WIFSIGNALED(status)) {
315		pjdlog_error("Worker process killed (pid=%u, signal=%d).",
316		    pid, WTERMSIG(status));
317	} else {
318		pjdlog_error("Worker process exited ungracefully (pid=%u, exitcode=%d).",
319		    pid, WIFEXITED(status) ? WEXITSTATUS(status) : -1);
320	}
321}
322
323static void
324child_exit(void)
325{
326	struct hast_resource *res;
327	int status;
328	pid_t pid;
329
330	while ((pid = wait3(&status, WNOHANG, NULL)) > 0) {
331		/* Find resource related to the process that just exited. */
332		TAILQ_FOREACH(res, &cfg->hc_resources, hr_next) {
333			if (pid == res->hr_workerpid)
334				break;
335		}
336		if (res == NULL) {
337			/*
338			 * This can happen when new connection arrives and we
339			 * cancel child responsible for the old one or if this
340			 * was hook which we executed.
341			 */
342			hook_check_one(pid, status);
343			continue;
344		}
345		pjdlog_prefix_set("[%s] (%s) ", res->hr_name,
346		    role2str(res->hr_role));
347		child_exit_log(pid, status);
348		child_cleanup(res);
349		if (res->hr_role == HAST_ROLE_PRIMARY) {
350			/*
351			 * Restart child process if it was killed by signal
352			 * or exited because of temporary problem.
353			 */
354			if (WIFSIGNALED(status) ||
355			    (WIFEXITED(status) &&
356			     WEXITSTATUS(status) == EX_TEMPFAIL)) {
357				sleep(1);
358				pjdlog_info("Restarting worker process.");
359				hastd_primary(res);
360			} else {
361				res->hr_role = HAST_ROLE_INIT;
362				pjdlog_info("Changing resource role back to %s.",
363				    role2str(res->hr_role));
364			}
365		}
366		pjdlog_prefix_set("%s", "");
367	}
368}
369
370static bool
371resource_needs_restart(const struct hast_resource *res0,
372    const struct hast_resource *res1)
373{
374
375	PJDLOG_ASSERT(strcmp(res0->hr_name, res1->hr_name) == 0);
376
377	if (strcmp(res0->hr_provname, res1->hr_provname) != 0)
378		return (true);
379	if (strcmp(res0->hr_localpath, res1->hr_localpath) != 0)
380		return (true);
381	if (res0->hr_role == HAST_ROLE_INIT ||
382	    res0->hr_role == HAST_ROLE_SECONDARY) {
383		if (strcmp(res0->hr_remoteaddr, res1->hr_remoteaddr) != 0)
384			return (true);
385		if (strcmp(res0->hr_sourceaddr, res1->hr_sourceaddr) != 0)
386			return (true);
387		if (res0->hr_replication != res1->hr_replication)
388			return (true);
389		if (res0->hr_checksum != res1->hr_checksum)
390			return (true);
391		if (res0->hr_compression != res1->hr_compression)
392			return (true);
393		if (res0->hr_timeout != res1->hr_timeout)
394			return (true);
395		if (strcmp(res0->hr_exec, res1->hr_exec) != 0)
396			return (true);
397		/*
398		 * When metaflush has changed we don't really need restart,
399		 * but it is just easier this way.
400		 */
401		if (res0->hr_metaflush != res1->hr_metaflush)
402			return (true);
403	}
404	return (false);
405}
406
407static bool
408resource_needs_reload(const struct hast_resource *res0,
409    const struct hast_resource *res1)
410{
411
412	PJDLOG_ASSERT(strcmp(res0->hr_name, res1->hr_name) == 0);
413	PJDLOG_ASSERT(strcmp(res0->hr_provname, res1->hr_provname) == 0);
414	PJDLOG_ASSERT(strcmp(res0->hr_localpath, res1->hr_localpath) == 0);
415
416	if (res0->hr_role != HAST_ROLE_PRIMARY)
417		return (false);
418
419	if (strcmp(res0->hr_remoteaddr, res1->hr_remoteaddr) != 0)
420		return (true);
421	if (strcmp(res0->hr_sourceaddr, res1->hr_sourceaddr) != 0)
422		return (true);
423	if (res0->hr_replication != res1->hr_replication)
424		return (true);
425	if (res0->hr_checksum != res1->hr_checksum)
426		return (true);
427	if (res0->hr_compression != res1->hr_compression)
428		return (true);
429	if (res0->hr_timeout != res1->hr_timeout)
430		return (true);
431	if (strcmp(res0->hr_exec, res1->hr_exec) != 0)
432		return (true);
433	if (res0->hr_metaflush != res1->hr_metaflush)
434		return (true);
435	return (false);
436}
437
438static void
439resource_reload(const struct hast_resource *res)
440{
441	struct nv *nvin, *nvout;
442	int error;
443
444	PJDLOG_ASSERT(res->hr_role == HAST_ROLE_PRIMARY);
445
446	nvout = nv_alloc();
447	nv_add_uint8(nvout, CONTROL_RELOAD, "cmd");
448	nv_add_string(nvout, res->hr_remoteaddr, "remoteaddr");
449	nv_add_string(nvout, res->hr_sourceaddr, "sourceaddr");
450	nv_add_int32(nvout, (int32_t)res->hr_replication, "replication");
451	nv_add_int32(nvout, (int32_t)res->hr_checksum, "checksum");
452	nv_add_int32(nvout, (int32_t)res->hr_compression, "compression");
453	nv_add_int32(nvout, (int32_t)res->hr_timeout, "timeout");
454	nv_add_string(nvout, res->hr_exec, "exec");
455	nv_add_int32(nvout, (int32_t)res->hr_metaflush, "metaflush");
456	if (nv_error(nvout) != 0) {
457		nv_free(nvout);
458		pjdlog_error("Unable to allocate header for reload message.");
459		return;
460	}
461	if (hast_proto_send(res, res->hr_ctrl, nvout, NULL, 0) == -1) {
462		pjdlog_errno(LOG_ERR, "Unable to send reload message");
463		nv_free(nvout);
464		return;
465	}
466	nv_free(nvout);
467
468	/* Receive response. */
469	if (hast_proto_recv_hdr(res->hr_ctrl, &nvin) == -1) {
470		pjdlog_errno(LOG_ERR, "Unable to receive reload reply");
471		return;
472	}
473	error = nv_get_int16(nvin, "error");
474	nv_free(nvin);
475	if (error != 0) {
476		pjdlog_common(LOG_ERR, 0, error, "Reload failed");
477		return;
478	}
479}
480
481static void
482hastd_reload(void)
483{
484	struct hastd_config *newcfg;
485	struct hast_resource *nres, *cres, *tres;
486	struct hastd_listen *nlst, *clst;
487	struct pidfh *newpfh;
488	unsigned int nlisten;
489	uint8_t role;
490	pid_t otherpid;
491
492	pjdlog_info("Reloading configuration...");
493
494	newpfh = NULL;
495
496	newcfg = yy_config_parse(cfgpath, false);
497	if (newcfg == NULL)
498		goto failed;
499
500	/*
501	 * Check if control address has changed.
502	 */
503	if (strcmp(cfg->hc_controladdr, newcfg->hc_controladdr) != 0) {
504		if (proto_server(newcfg->hc_controladdr,
505		    &newcfg->hc_controlconn) == -1) {
506			pjdlog_errno(LOG_ERR,
507			    "Unable to listen on control address %s",
508			    newcfg->hc_controladdr);
509			goto failed;
510		}
511	}
512	/*
513	 * Check if any listen address has changed.
514	 */
515	nlisten = 0;
516	TAILQ_FOREACH(nlst, &newcfg->hc_listen, hl_next) {
517		TAILQ_FOREACH(clst, &cfg->hc_listen, hl_next) {
518			if (strcmp(nlst->hl_addr, clst->hl_addr) == 0)
519				break;
520		}
521		if (clst != NULL && clst->hl_conn != NULL) {
522			pjdlog_info("Keep listening on address %s.",
523			    nlst->hl_addr);
524			nlst->hl_conn = clst->hl_conn;
525			nlisten++;
526		} else if (proto_server(nlst->hl_addr, &nlst->hl_conn) == 0) {
527			pjdlog_info("Listening on new address %s.",
528			    nlst->hl_addr);
529			nlisten++;
530		} else {
531			pjdlog_errno(LOG_WARNING,
532			    "Unable to listen on address %s", nlst->hl_addr);
533		}
534	}
535	if (nlisten == 0) {
536		pjdlog_error("No addresses to listen on.");
537		goto failed;
538	}
539	/*
540	 * Check if pidfile's path has changed.
541	 */
542	if (!foreground && pidfile == NULL &&
543	    strcmp(cfg->hc_pidfile, newcfg->hc_pidfile) != 0) {
544		newpfh = pidfile_open(newcfg->hc_pidfile, 0600, &otherpid);
545		if (newpfh == NULL) {
546			if (errno == EEXIST) {
547				pjdlog_errno(LOG_WARNING,
548				    "Another hastd is already running, pidfile: %s, pid: %jd.",
549				    newcfg->hc_pidfile, (intmax_t)otherpid);
550			} else {
551				pjdlog_errno(LOG_WARNING,
552				    "Unable to open or create pidfile %s",
553				    newcfg->hc_pidfile);
554			}
555		} else if (pidfile_write(newpfh) == -1) {
556			/* Write PID to a file. */
557			pjdlog_errno(LOG_WARNING,
558			    "Unable to write PID to file %s",
559			    newcfg->hc_pidfile);
560		} else {
561			pjdlog_debug(1, "PID stored in %s.",
562			    newcfg->hc_pidfile);
563		}
564	}
565
566	/* No failures from now on. */
567
568	/*
569	 * Switch to new control socket.
570	 */
571	if (newcfg->hc_controlconn != NULL) {
572		pjdlog_info("Control socket changed from %s to %s.",
573		    cfg->hc_controladdr, newcfg->hc_controladdr);
574		proto_close(cfg->hc_controlconn);
575		cfg->hc_controlconn = newcfg->hc_controlconn;
576		newcfg->hc_controlconn = NULL;
577		strlcpy(cfg->hc_controladdr, newcfg->hc_controladdr,
578		    sizeof(cfg->hc_controladdr));
579	}
580	/*
581	 * Switch to new pidfile.
582	 */
583	if (newpfh != NULL) {
584		pjdlog_info("Pidfile changed from %s to %s.", cfg->hc_pidfile,
585		    newcfg->hc_pidfile);
586		(void)pidfile_remove(pfh);
587		pfh = newpfh;
588		(void)strlcpy(cfg->hc_pidfile, newcfg->hc_pidfile,
589		    sizeof(cfg->hc_pidfile));
590	}
591	/*
592	 * Switch to new listen addresses. Close all that were removed.
593	 */
594	while ((clst = TAILQ_FIRST(&cfg->hc_listen)) != NULL) {
595		TAILQ_FOREACH(nlst, &newcfg->hc_listen, hl_next) {
596			if (strcmp(nlst->hl_addr, clst->hl_addr) == 0)
597				break;
598		}
599		if (nlst == NULL && clst->hl_conn != NULL) {
600			proto_close(clst->hl_conn);
601			pjdlog_info("No longer listening on address %s.",
602			    clst->hl_addr);
603		}
604		TAILQ_REMOVE(&cfg->hc_listen, clst, hl_next);
605		free(clst);
606	}
607	TAILQ_CONCAT(&cfg->hc_listen, &newcfg->hc_listen, hl_next);
608
609	/*
610	 * Stop and remove resources that were removed from the configuration.
611	 */
612	TAILQ_FOREACH_SAFE(cres, &cfg->hc_resources, hr_next, tres) {
613		TAILQ_FOREACH(nres, &newcfg->hc_resources, hr_next) {
614			if (strcmp(cres->hr_name, nres->hr_name) == 0)
615				break;
616		}
617		if (nres == NULL) {
618			control_set_role(cres, HAST_ROLE_INIT);
619			TAILQ_REMOVE(&cfg->hc_resources, cres, hr_next);
620			pjdlog_info("Resource %s removed.", cres->hr_name);
621			free(cres);
622		}
623	}
624	/*
625	 * Move new resources to the current configuration.
626	 */
627	TAILQ_FOREACH_SAFE(nres, &newcfg->hc_resources, hr_next, tres) {
628		TAILQ_FOREACH(cres, &cfg->hc_resources, hr_next) {
629			if (strcmp(cres->hr_name, nres->hr_name) == 0)
630				break;
631		}
632		if (cres == NULL) {
633			TAILQ_REMOVE(&newcfg->hc_resources, nres, hr_next);
634			TAILQ_INSERT_TAIL(&cfg->hc_resources, nres, hr_next);
635			pjdlog_info("Resource %s added.", nres->hr_name);
636		}
637	}
638	/*
639	 * Deal with modified resources.
640	 * Depending on what has changed exactly we might want to perform
641	 * different actions.
642	 *
643	 * We do full resource restart in the following situations:
644	 * Resource role is INIT or SECONDARY.
645	 * Resource role is PRIMARY and path to local component or provider
646	 * name has changed.
647	 * In case of PRIMARY, the worker process will be killed and restarted,
648	 * which also means removing /dev/hast/<name> provider and
649	 * recreating it.
650	 *
651	 * We do just reload (send SIGHUP to worker process) if we act as
652	 * PRIMARY, but only if remote address, source address, replication
653	 * mode, timeout, execution path or metaflush has changed.
654	 * For those, there is no need to restart worker process.
655	 * If PRIMARY receives SIGHUP, it will reconnect if remote address or
656	 * source address has changed or it will set new timeout if only timeout
657	 * has changed or it will update metaflush if only metaflush has
658	 * changed.
659	 */
660	TAILQ_FOREACH_SAFE(nres, &newcfg->hc_resources, hr_next, tres) {
661		TAILQ_FOREACH(cres, &cfg->hc_resources, hr_next) {
662			if (strcmp(cres->hr_name, nres->hr_name) == 0)
663				break;
664		}
665		PJDLOG_ASSERT(cres != NULL);
666		if (resource_needs_restart(cres, nres)) {
667			pjdlog_info("Resource %s configuration was modified, restarting it.",
668			    cres->hr_name);
669			role = cres->hr_role;
670			control_set_role(cres, HAST_ROLE_INIT);
671			TAILQ_REMOVE(&cfg->hc_resources, cres, hr_next);
672			free(cres);
673			TAILQ_REMOVE(&newcfg->hc_resources, nres, hr_next);
674			TAILQ_INSERT_TAIL(&cfg->hc_resources, nres, hr_next);
675			control_set_role(nres, role);
676		} else if (resource_needs_reload(cres, nres)) {
677			pjdlog_info("Resource %s configuration was modified, reloading it.",
678			    cres->hr_name);
679			strlcpy(cres->hr_remoteaddr, nres->hr_remoteaddr,
680			    sizeof(cres->hr_remoteaddr));
681			strlcpy(cres->hr_sourceaddr, nres->hr_sourceaddr,
682			    sizeof(cres->hr_sourceaddr));
683			cres->hr_replication = nres->hr_replication;
684			cres->hr_checksum = nres->hr_checksum;
685			cres->hr_compression = nres->hr_compression;
686			cres->hr_timeout = nres->hr_timeout;
687			strlcpy(cres->hr_exec, nres->hr_exec,
688			    sizeof(cres->hr_exec));
689			cres->hr_metaflush = nres->hr_metaflush;
690			if (cres->hr_workerpid != 0)
691				resource_reload(cres);
692		}
693	}
694
695	yy_config_free(newcfg);
696	pjdlog_info("Configuration reloaded successfully.");
697	return;
698failed:
699	if (newcfg != NULL) {
700		if (newcfg->hc_controlconn != NULL)
701			proto_close(newcfg->hc_controlconn);
702		while ((nlst = TAILQ_FIRST(&newcfg->hc_listen)) != NULL) {
703			if (nlst->hl_conn != NULL) {
704				TAILQ_FOREACH(clst, &cfg->hc_listen, hl_next) {
705					if (strcmp(nlst->hl_addr,
706					    clst->hl_addr) == 0) {
707						break;
708					}
709				}
710				if (clst == NULL || clst->hl_conn == NULL)
711					proto_close(nlst->hl_conn);
712			}
713			TAILQ_REMOVE(&newcfg->hc_listen, nlst, hl_next);
714			free(nlst);
715		}
716		yy_config_free(newcfg);
717	}
718	if (newpfh != NULL)
719		(void)pidfile_remove(newpfh);
720	pjdlog_warning("Configuration not reloaded.");
721}
722
723static void
724terminate_workers(void)
725{
726	struct hast_resource *res;
727
728	pjdlog_info("Termination signal received, exiting.");
729	TAILQ_FOREACH(res, &cfg->hc_resources, hr_next) {
730		if (res->hr_workerpid == 0)
731			continue;
732		pjdlog_info("Terminating worker process (resource=%s, role=%s, pid=%u).",
733		    res->hr_name, role2str(res->hr_role), res->hr_workerpid);
734		if (kill(res->hr_workerpid, SIGTERM) == 0)
735			continue;
736		pjdlog_errno(LOG_WARNING,
737		    "Unable to send signal to worker process (resource=%s, role=%s, pid=%u).",
738		    res->hr_name, role2str(res->hr_role), res->hr_workerpid);
739	}
740}
741
742static void
743listen_accept(struct hastd_listen *lst)
744{
745	struct hast_resource *res;
746	struct proto_conn *conn;
747	struct nv *nvin, *nvout, *nverr;
748	const char *resname;
749	const unsigned char *token;
750	char laddr[256], raddr[256];
751	size_t size;
752	pid_t pid;
753	int status;
754
755	proto_local_address(lst->hl_conn, laddr, sizeof(laddr));
756	pjdlog_debug(1, "Accepting connection to %s.", laddr);
757
758	if (proto_accept(lst->hl_conn, &conn) == -1) {
759		pjdlog_errno(LOG_ERR, "Unable to accept connection %s", laddr);
760		return;
761	}
762
763	proto_local_address(conn, laddr, sizeof(laddr));
764	proto_remote_address(conn, raddr, sizeof(raddr));
765	pjdlog_info("Connection from %s to %s.", raddr, laddr);
766
767	/* Error in setting timeout is not critical, but why should it fail? */
768	if (proto_timeout(conn, HAST_TIMEOUT) == -1)
769		pjdlog_errno(LOG_WARNING, "Unable to set connection timeout");
770
771	nvin = nvout = nverr = NULL;
772
773	/*
774	 * Before receiving any data see if remote host have access to any
775	 * resource.
776	 */
777	TAILQ_FOREACH(res, &cfg->hc_resources, hr_next) {
778		if (proto_address_match(conn, res->hr_remoteaddr))
779			break;
780	}
781	if (res == NULL) {
782		pjdlog_error("Client %s isn't known.", raddr);
783		goto close;
784	}
785	/* Ok, remote host can access at least one resource. */
786
787	if (hast_proto_recv_hdr(conn, &nvin) == -1) {
788		pjdlog_errno(LOG_ERR, "Unable to receive header from %s",
789		    raddr);
790		goto close;
791	}
792
793	resname = nv_get_string(nvin, "resource");
794	if (resname == NULL) {
795		pjdlog_error("No 'resource' field in the header received from %s.",
796		    raddr);
797		goto close;
798	}
799	pjdlog_debug(2, "%s: resource=%s", raddr, resname);
800	token = nv_get_uint8_array(nvin, &size, "token");
801	/*
802	 * NULL token means that this is first connection.
803	 */
804	if (token != NULL && size != sizeof(res->hr_token)) {
805		pjdlog_error("Received token of invalid size from %s (expected %zu, got %zu).",
806		    raddr, sizeof(res->hr_token), size);
807		goto close;
808	}
809
810	/*
811	 * From now on we want to send errors to the remote node.
812	 */
813	nverr = nv_alloc();
814
815	/* Find resource related to this connection. */
816	TAILQ_FOREACH(res, &cfg->hc_resources, hr_next) {
817		if (strcmp(resname, res->hr_name) == 0)
818			break;
819	}
820	/* Have we found the resource? */
821	if (res == NULL) {
822		pjdlog_error("No resource '%s' as requested by %s.",
823		    resname, raddr);
824		nv_add_stringf(nverr, "errmsg", "Resource not configured.");
825		goto fail;
826	}
827
828	/* Now that we know resource name setup log prefix. */
829	pjdlog_prefix_set("[%s] (%s) ", res->hr_name, role2str(res->hr_role));
830
831	/* Does the remote host have access to this resource? */
832	if (!proto_address_match(conn, res->hr_remoteaddr)) {
833		pjdlog_error("Client %s has no access to the resource.", raddr);
834		nv_add_stringf(nverr, "errmsg", "No access to the resource.");
835		goto fail;
836	}
837	/* Is the resource marked as secondary? */
838	if (res->hr_role != HAST_ROLE_SECONDARY) {
839		pjdlog_warning("We act as %s for the resource and not as %s as requested by %s.",
840		    role2str(res->hr_role), role2str(HAST_ROLE_SECONDARY),
841		    raddr);
842		nv_add_stringf(nverr, "errmsg",
843		    "Remote node acts as %s for the resource and not as %s.",
844		    role2str(res->hr_role), role2str(HAST_ROLE_SECONDARY));
845		if (res->hr_role == HAST_ROLE_PRIMARY) {
846			/*
847			 * If we act as primary request the other side to wait
848			 * for us a bit, as we might be finishing cleanups.
849			 */
850			nv_add_uint8(nverr, 1, "wait");
851		}
852		goto fail;
853	}
854	/* Does token (if exists) match? */
855	if (token != NULL && memcmp(token, res->hr_token,
856	    sizeof(res->hr_token)) != 0) {
857		pjdlog_error("Token received from %s doesn't match.", raddr);
858		nv_add_stringf(nverr, "errmsg", "Token doesn't match.");
859		goto fail;
860	}
861	/*
862	 * If there is no token, but we have half-open connection
863	 * (only remotein) or full connection (worker process is running)
864	 * we have to cancel those and accept the new connection.
865	 */
866	if (token == NULL) {
867		PJDLOG_ASSERT(res->hr_remoteout == NULL);
868		pjdlog_debug(1, "Initial connection from %s.", raddr);
869		if (res->hr_workerpid != 0) {
870			PJDLOG_ASSERT(res->hr_remotein == NULL);
871			pjdlog_debug(1,
872			    "Worker process exists (pid=%u), stopping it.",
873			    (unsigned int)res->hr_workerpid);
874			/* Stop child process. */
875			if (kill(res->hr_workerpid, SIGINT) == -1) {
876				pjdlog_errno(LOG_ERR,
877				    "Unable to stop worker process (pid=%u)",
878				    (unsigned int)res->hr_workerpid);
879				/*
880				 * Other than logging the problem we
881				 * ignore it - nothing smart to do.
882				 */
883			}
884			/* Wait for it to exit. */
885			else if ((pid = waitpid(res->hr_workerpid,
886			    &status, 0)) != res->hr_workerpid) {
887				/* We can only log the problem. */
888				pjdlog_errno(LOG_ERR,
889				    "Waiting for worker process (pid=%u) failed",
890				    (unsigned int)res->hr_workerpid);
891			} else {
892				child_exit_log(res->hr_workerpid, status);
893			}
894			child_cleanup(res);
895		} else if (res->hr_remotein != NULL) {
896			char oaddr[256];
897
898			proto_remote_address(res->hr_remotein, oaddr,
899			    sizeof(oaddr));
900			pjdlog_debug(1,
901			    "Canceling half-open connection from %s on connection from %s.",
902			    oaddr, raddr);
903			proto_close(res->hr_remotein);
904			res->hr_remotein = NULL;
905		}
906	}
907
908	/*
909	 * Checks and cleanups are done.
910	 */
911
912	if (token == NULL) {
913		arc4random_buf(res->hr_token, sizeof(res->hr_token));
914		nvout = nv_alloc();
915		nv_add_uint8_array(nvout, res->hr_token,
916		    sizeof(res->hr_token), "token");
917		if (nv_error(nvout) != 0) {
918			pjdlog_common(LOG_ERR, 0, nv_error(nvout),
919			    "Unable to prepare return header for %s", raddr);
920			nv_add_stringf(nverr, "errmsg",
921			    "Remote node was unable to prepare return header: %s.",
922			    strerror(nv_error(nvout)));
923			goto fail;
924		}
925		if (hast_proto_send(NULL, conn, nvout, NULL, 0) == -1) {
926			int error = errno;
927
928			pjdlog_errno(LOG_ERR, "Unable to send response to %s",
929			    raddr);
930			nv_add_stringf(nverr, "errmsg",
931			    "Remote node was unable to send response: %s.",
932			    strerror(error));
933			goto fail;
934		}
935		res->hr_remotein = conn;
936		pjdlog_debug(1, "Incoming connection from %s configured.",
937		    raddr);
938	} else {
939		res->hr_remoteout = conn;
940		pjdlog_debug(1, "Outgoing connection to %s configured.", raddr);
941		hastd_secondary(res, nvin);
942	}
943	nv_free(nvin);
944	nv_free(nvout);
945	nv_free(nverr);
946	pjdlog_prefix_set("%s", "");
947	return;
948fail:
949	if (nv_error(nverr) != 0) {
950		pjdlog_common(LOG_ERR, 0, nv_error(nverr),
951		    "Unable to prepare error header for %s", raddr);
952		goto close;
953	}
954	if (hast_proto_send(NULL, conn, nverr, NULL, 0) == -1) {
955		pjdlog_errno(LOG_ERR, "Unable to send error to %s", raddr);
956		goto close;
957	}
958close:
959	if (nvin != NULL)
960		nv_free(nvin);
961	if (nvout != NULL)
962		nv_free(nvout);
963	if (nverr != NULL)
964		nv_free(nverr);
965	proto_close(conn);
966	pjdlog_prefix_set("%s", "");
967}
968
969static void
970connection_migrate(struct hast_resource *res)
971{
972	struct proto_conn *conn;
973	int16_t val = 0;
974
975	pjdlog_prefix_set("[%s] (%s) ", res->hr_name, role2str(res->hr_role));
976
977	PJDLOG_ASSERT(res->hr_role == HAST_ROLE_PRIMARY);
978
979	if (proto_recv(res->hr_conn, &val, sizeof(val)) == -1) {
980		pjdlog_errno(LOG_WARNING,
981		    "Unable to receive connection command");
982		return;
983	}
984	if (proto_client(res->hr_sourceaddr[0] != '\0' ? res->hr_sourceaddr : NULL,
985	    res->hr_remoteaddr, &conn) == -1) {
986		val = errno;
987		pjdlog_errno(LOG_WARNING,
988		    "Unable to create outgoing connection to %s",
989		    res->hr_remoteaddr);
990		goto out;
991	}
992	if (proto_connect(conn, -1) == -1) {
993		val = errno;
994		pjdlog_errno(LOG_WARNING, "Unable to connect to %s",
995		    res->hr_remoteaddr);
996		proto_close(conn);
997		goto out;
998	}
999	val = 0;
1000out:
1001	if (proto_send(res->hr_conn, &val, sizeof(val)) == -1) {
1002		pjdlog_errno(LOG_WARNING,
1003		    "Unable to send reply to connection request");
1004	}
1005	if (val == 0 && proto_connection_send(res->hr_conn, conn) == -1)
1006		pjdlog_errno(LOG_WARNING, "Unable to send connection");
1007
1008	pjdlog_prefix_set("%s", "");
1009}
1010
1011static void
1012check_signals(void)
1013{
1014	struct timespec sigtimeout;
1015	sigset_t mask;
1016	int signo;
1017
1018	sigtimeout.tv_sec = 0;
1019	sigtimeout.tv_nsec = 0;
1020
1021	PJDLOG_VERIFY(sigemptyset(&mask) == 0);
1022	PJDLOG_VERIFY(sigaddset(&mask, SIGHUP) == 0);
1023	PJDLOG_VERIFY(sigaddset(&mask, SIGINT) == 0);
1024	PJDLOG_VERIFY(sigaddset(&mask, SIGTERM) == 0);
1025	PJDLOG_VERIFY(sigaddset(&mask, SIGCHLD) == 0);
1026
1027	while ((signo = sigtimedwait(&mask, NULL, &sigtimeout)) != -1) {
1028		switch (signo) {
1029		case SIGINT:
1030		case SIGTERM:
1031			sigexit_received = true;
1032			terminate_workers();
1033			proto_close(cfg->hc_controlconn);
1034			exit(EX_OK);
1035			break;
1036		case SIGCHLD:
1037			child_exit();
1038			break;
1039		case SIGHUP:
1040			hastd_reload();
1041			break;
1042		default:
1043			PJDLOG_ABORT("Unexpected signal (%d).", signo);
1044		}
1045	}
1046}
1047
1048static void
1049main_loop(void)
1050{
1051	struct hast_resource *res;
1052	struct hastd_listen *lst;
1053	struct timeval seltimeout;
1054	int fd, maxfd, ret;
1055	time_t lastcheck, now;
1056	fd_set rfds;
1057
1058	lastcheck = time(NULL);
1059	seltimeout.tv_sec = REPORT_INTERVAL;
1060	seltimeout.tv_usec = 0;
1061
1062	for (;;) {
1063		check_signals();
1064
1065		/* Setup descriptors for select(2). */
1066		FD_ZERO(&rfds);
1067		maxfd = fd = proto_descriptor(cfg->hc_controlconn);
1068		PJDLOG_ASSERT(fd >= 0);
1069		FD_SET(fd, &rfds);
1070		TAILQ_FOREACH(lst, &cfg->hc_listen, hl_next) {
1071			if (lst->hl_conn == NULL)
1072				continue;
1073			fd = proto_descriptor(lst->hl_conn);
1074			PJDLOG_ASSERT(fd >= 0);
1075			FD_SET(fd, &rfds);
1076			maxfd = fd > maxfd ? fd : maxfd;
1077		}
1078		TAILQ_FOREACH(res, &cfg->hc_resources, hr_next) {
1079			if (res->hr_event == NULL)
1080				continue;
1081			fd = proto_descriptor(res->hr_event);
1082			PJDLOG_ASSERT(fd >= 0);
1083			FD_SET(fd, &rfds);
1084			maxfd = fd > maxfd ? fd : maxfd;
1085			if (res->hr_role == HAST_ROLE_PRIMARY) {
1086				/* Only primary workers asks for connections. */
1087				PJDLOG_ASSERT(res->hr_conn != NULL);
1088				fd = proto_descriptor(res->hr_conn);
1089				PJDLOG_ASSERT(fd >= 0);
1090				FD_SET(fd, &rfds);
1091				maxfd = fd > maxfd ? fd : maxfd;
1092			} else {
1093				PJDLOG_ASSERT(res->hr_conn == NULL);
1094			}
1095		}
1096
1097		PJDLOG_ASSERT(maxfd + 1 <= (int)FD_SETSIZE);
1098		ret = select(maxfd + 1, &rfds, NULL, NULL, &seltimeout);
1099		now = time(NULL);
1100		if (lastcheck + REPORT_INTERVAL <= now) {
1101			hook_check();
1102			lastcheck = now;
1103		}
1104		if (ret == 0) {
1105			/*
1106			 * select(2) timed out, so there should be no
1107			 * descriptors to check.
1108			 */
1109			continue;
1110		} else if (ret == -1) {
1111			if (errno == EINTR)
1112				continue;
1113			KEEP_ERRNO((void)pidfile_remove(pfh));
1114			pjdlog_exit(EX_OSERR, "select() failed");
1115		}
1116
1117		/*
1118		 * Check for signals before we do anything to update our
1119		 * info about terminated workers in the meantime.
1120		 */
1121		check_signals();
1122
1123		if (FD_ISSET(proto_descriptor(cfg->hc_controlconn), &rfds))
1124			control_handle(cfg);
1125		TAILQ_FOREACH(lst, &cfg->hc_listen, hl_next) {
1126			if (lst->hl_conn == NULL)
1127				continue;
1128			if (FD_ISSET(proto_descriptor(lst->hl_conn), &rfds))
1129				listen_accept(lst);
1130		}
1131		TAILQ_FOREACH(res, &cfg->hc_resources, hr_next) {
1132			if (res->hr_event == NULL)
1133				continue;
1134			if (FD_ISSET(proto_descriptor(res->hr_event), &rfds)) {
1135				if (event_recv(res) == 0)
1136					continue;
1137				/* The worker process exited? */
1138				proto_close(res->hr_event);
1139				res->hr_event = NULL;
1140				if (res->hr_conn != NULL) {
1141					proto_close(res->hr_conn);
1142					res->hr_conn = NULL;
1143				}
1144				continue;
1145			}
1146			if (res->hr_role == HAST_ROLE_PRIMARY) {
1147				PJDLOG_ASSERT(res->hr_conn != NULL);
1148				if (FD_ISSET(proto_descriptor(res->hr_conn),
1149				    &rfds)) {
1150					connection_migrate(res);
1151				}
1152			} else {
1153				PJDLOG_ASSERT(res->hr_conn == NULL);
1154			}
1155		}
1156	}
1157}
1158
1159static void
1160dummy_sighandler(int sig __unused)
1161{
1162	/* Nothing to do. */
1163}
1164
1165int
1166main(int argc, char *argv[])
1167{
1168	struct hastd_listen *lst;
1169	pid_t otherpid;
1170	int debuglevel;
1171	sigset_t mask;
1172
1173	foreground = false;
1174	debuglevel = 0;
1175
1176	for (;;) {
1177		int ch;
1178
1179		ch = getopt(argc, argv, "c:dFhP:");
1180		if (ch == -1)
1181			break;
1182		switch (ch) {
1183		case 'c':
1184			cfgpath = optarg;
1185			break;
1186		case 'd':
1187			debuglevel++;
1188			break;
1189		case 'F':
1190			foreground = true;
1191			break;
1192		case 'P':
1193			pidfile = optarg;
1194			break;
1195		case 'h':
1196		default:
1197			usage();
1198		}
1199	}
1200	argc -= optind;
1201	argv += optind;
1202
1203	pjdlog_init(PJDLOG_MODE_STD);
1204	pjdlog_debug_set(debuglevel);
1205
1206	g_gate_load();
1207
1208	/*
1209	 * When path to the configuration file is relative, obtain full path,
1210	 * so we can always find the file, even after daemonizing and changing
1211	 * working directory to /.
1212	 */
1213	if (cfgpath[0] != '/') {
1214		const char *newcfgpath;
1215
1216		newcfgpath = realpath(cfgpath, NULL);
1217		if (newcfgpath == NULL) {
1218			pjdlog_exit(EX_CONFIG,
1219			    "Unable to obtain full path of %s", cfgpath);
1220		}
1221		cfgpath = newcfgpath;
1222	}
1223
1224	cfg = yy_config_parse(cfgpath, true);
1225	PJDLOG_ASSERT(cfg != NULL);
1226
1227	if (pidfile != NULL) {
1228		if (strlcpy(cfg->hc_pidfile, pidfile,
1229		    sizeof(cfg->hc_pidfile)) >= sizeof(cfg->hc_pidfile)) {
1230			pjdlog_exitx(EX_CONFIG, "Pidfile path is too long.");
1231		}
1232	}
1233
1234	if (pidfile != NULL || !foreground) {
1235		pfh = pidfile_open(cfg->hc_pidfile, 0600, &otherpid);
1236		if (pfh == NULL) {
1237			if (errno == EEXIST) {
1238				pjdlog_exitx(EX_TEMPFAIL,
1239				    "Another hastd is already running, pidfile: %s, pid: %jd.",
1240				    cfg->hc_pidfile, (intmax_t)otherpid);
1241			}
1242			/*
1243			 * If we cannot create pidfile for other reasons,
1244			 * only warn.
1245			 */
1246			pjdlog_errno(LOG_WARNING,
1247			    "Unable to open or create pidfile %s",
1248			    cfg->hc_pidfile);
1249		}
1250	}
1251
1252	/*
1253	 * Restore default actions for interesting signals in case parent
1254	 * process (like init(8)) decided to ignore some of them (like SIGHUP).
1255	 */
1256	PJDLOG_VERIFY(signal(SIGHUP, SIG_DFL) != SIG_ERR);
1257	PJDLOG_VERIFY(signal(SIGINT, SIG_DFL) != SIG_ERR);
1258	PJDLOG_VERIFY(signal(SIGTERM, SIG_DFL) != SIG_ERR);
1259	/*
1260	 * Because SIGCHLD is ignored by default, setup dummy handler for it,
1261	 * so we can mask it.
1262	 */
1263	PJDLOG_VERIFY(signal(SIGCHLD, dummy_sighandler) != SIG_ERR);
1264
1265	PJDLOG_VERIFY(sigemptyset(&mask) == 0);
1266	PJDLOG_VERIFY(sigaddset(&mask, SIGHUP) == 0);
1267	PJDLOG_VERIFY(sigaddset(&mask, SIGINT) == 0);
1268	PJDLOG_VERIFY(sigaddset(&mask, SIGTERM) == 0);
1269	PJDLOG_VERIFY(sigaddset(&mask, SIGCHLD) == 0);
1270	PJDLOG_VERIFY(sigprocmask(SIG_SETMASK, &mask, NULL) == 0);
1271
1272	/* Listen on control address. */
1273	if (proto_server(cfg->hc_controladdr, &cfg->hc_controlconn) == -1) {
1274		KEEP_ERRNO((void)pidfile_remove(pfh));
1275		pjdlog_exit(EX_OSERR, "Unable to listen on control address %s",
1276		    cfg->hc_controladdr);
1277	}
1278	/* Listen for remote connections. */
1279	TAILQ_FOREACH(lst, &cfg->hc_listen, hl_next) {
1280		if (proto_server(lst->hl_addr, &lst->hl_conn) == -1) {
1281			KEEP_ERRNO((void)pidfile_remove(pfh));
1282			pjdlog_exit(EX_OSERR, "Unable to listen on address %s",
1283			    lst->hl_addr);
1284		}
1285	}
1286
1287	if (!foreground) {
1288		if (daemon(0, 0) == -1) {
1289			KEEP_ERRNO((void)pidfile_remove(pfh));
1290			pjdlog_exit(EX_OSERR, "Unable to daemonize");
1291		}
1292
1293		/* Start logging to syslog. */
1294		pjdlog_mode_set(PJDLOG_MODE_SYSLOG);
1295	}
1296	if (pidfile != NULL || !foreground) {
1297		/* Write PID to a file. */
1298		if (pidfile_write(pfh) == -1) {
1299			pjdlog_errno(LOG_WARNING,
1300			    "Unable to write PID to a file %s",
1301			    cfg->hc_pidfile);
1302		} else {
1303			pjdlog_debug(1, "PID stored in %s.", cfg->hc_pidfile);
1304		}
1305	}
1306
1307	pjdlog_info("Started successfully, running protocol version %d.",
1308	    HAST_PROTO_VERSION);
1309
1310	pjdlog_debug(1, "Listening on control address %s.",
1311	    cfg->hc_controladdr);
1312	TAILQ_FOREACH(lst, &cfg->hc_listen, hl_next)
1313		pjdlog_info("Listening on address %s.", lst->hl_addr);
1314
1315	hook_init();
1316
1317	main_loop();
1318
1319	exit(0);
1320}
1321