]> CyberLeo.Net >> Repos - FreeBSD/FreeBSD.git/blob - contrib/unbound/daemon/daemon.c
Fix multiple vulnerabilities in unbound.
[FreeBSD/FreeBSD.git] / contrib / unbound / daemon / daemon.c
1 /*
2  * daemon/daemon.c - collection of workers that handles requests.
3  *
4  * Copyright (c) 2007, NLnet Labs. All rights reserved.
5  *
6  * This software is open source.
7  * 
8  * Redistribution and use in source and binary forms, with or without
9  * modification, are permitted provided that the following conditions
10  * are met:
11  * 
12  * Redistributions of source code must retain the above copyright notice,
13  * this list of conditions and the following disclaimer.
14  * 
15  * Redistributions in binary form must reproduce the above copyright notice,
16  * this list of conditions and the following disclaimer in the documentation
17  * and/or other materials provided with the distribution.
18  * 
19  * Neither the name of the NLNET LABS nor the names of its contributors may
20  * be used to endorse or promote products derived from this software without
21  * specific prior written permission.
22  * 
23  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
24  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
25  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
26  * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
27  * HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
28  * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED
29  * TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
30  * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
31  * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
32  * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
33  * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34  */
35
36 /**
37  * \file
38  *
39  * The daemon consists of global settings and a number of workers.
40  */
41
42 #include "config.h"
43 #ifdef HAVE_OPENSSL_ERR_H
44 #include <openssl/err.h>
45 #endif
46
47 #ifdef HAVE_OPENSSL_RAND_H
48 #include <openssl/rand.h>
49 #endif
50
51 #ifdef HAVE_OPENSSL_CONF_H
52 #include <openssl/conf.h>
53 #endif
54
55 #ifdef HAVE_OPENSSL_ENGINE_H
56 #include <openssl/engine.h>
57 #endif
58
59 #ifdef HAVE_TIME_H
60 #include <time.h>
61 #endif
62 #include <sys/time.h>
63
64 #ifdef HAVE_NSS
65 /* nss3 */
66 #include "nss.h"
67 #endif
68
69 #include "daemon/daemon.h"
70 #include "daemon/worker.h"
71 #include "daemon/remote.h"
72 #include "daemon/acl_list.h"
73 #include "util/log.h"
74 #include "util/config_file.h"
75 #include "util/data/msgreply.h"
76 #include "util/shm_side/shm_main.h"
77 #include "util/storage/lookup3.h"
78 #include "util/storage/slabhash.h"
79 #include "util/tcp_conn_limit.h"
80 #include "services/listen_dnsport.h"
81 #include "services/cache/rrset.h"
82 #include "services/cache/infra.h"
83 #include "services/localzone.h"
84 #include "services/view.h"
85 #include "services/modstack.h"
86 #include "services/authzone.h"
87 #include "util/module.h"
88 #include "util/random.h"
89 #include "util/tube.h"
90 #include "util/net_help.h"
91 #include "sldns/keyraw.h"
92 #include "respip/respip.h"
93 #include <signal.h>
94
95 #ifdef HAVE_SYSTEMD
96 #include <systemd/sd-daemon.h>
97 #endif
98
99 /** How many quit requests happened. */
100 static int sig_record_quit = 0;
101 /** How many reload requests happened. */
102 static int sig_record_reload = 0;
103
104 #if HAVE_DECL_SSL_COMP_GET_COMPRESSION_METHODS
105 /** cleaner ssl memory freeup */
106 static void* comp_meth = NULL;
107 #endif
108 /** remove buffers for parsing and init */
109 int ub_c_lex_destroy(void);
110
111 /** used when no other sighandling happens, so we don't die
112   * when multiple signals in quick succession are sent to us. 
113   * @param sig: signal number.
114   * @return signal handler return type (void or int).
115   */
116 static RETSIGTYPE record_sigh(int sig)
117 {
118 #ifdef LIBEVENT_SIGNAL_PROBLEM
119         /* cannot log, verbose here because locks may be held */
120         /* quit on signal, no cleanup and statistics, 
121            because installed libevent version is not threadsafe */
122         exit(0);
123 #endif 
124         switch(sig)
125         {
126                 case SIGTERM:
127 #ifdef SIGQUIT
128                 case SIGQUIT:
129 #endif
130 #ifdef SIGBREAK
131                 case SIGBREAK:
132 #endif
133                 case SIGINT:
134                         sig_record_quit++;
135                         break;
136 #ifdef SIGHUP
137                 case SIGHUP:
138                         sig_record_reload++;
139                         break;
140 #endif
141 #ifdef SIGPIPE
142                 case SIGPIPE:
143                         break;
144 #endif
145                 default:
146                         /* ignoring signal */
147                         break;
148         }
149 }
150
151 /** 
152  * Signal handling during the time when netevent is disabled.
153  * Stores signals to replay later.
154  */
155 static void
156 signal_handling_record(void)
157 {
158         if( signal(SIGTERM, record_sigh) == SIG_ERR ||
159 #ifdef SIGQUIT
160                 signal(SIGQUIT, record_sigh) == SIG_ERR ||
161 #endif
162 #ifdef SIGBREAK
163                 signal(SIGBREAK, record_sigh) == SIG_ERR ||
164 #endif
165 #ifdef SIGHUP
166                 signal(SIGHUP, record_sigh) == SIG_ERR ||
167 #endif
168 #ifdef SIGPIPE
169                 signal(SIGPIPE, SIG_IGN) == SIG_ERR ||
170 #endif
171                 signal(SIGINT, record_sigh) == SIG_ERR
172                 )
173                 log_err("install sighandler: %s", strerror(errno));
174 }
175
176 /**
177  * Replay old signals.
178  * @param wrk: worker that handles signals.
179  */
180 static void
181 signal_handling_playback(struct worker* wrk)
182 {
183 #ifdef SIGHUP
184         if(sig_record_reload)
185                 worker_sighandler(SIGHUP, wrk);
186 #endif
187         if(sig_record_quit)
188                 worker_sighandler(SIGTERM, wrk);
189         sig_record_quit = 0;
190         sig_record_reload = 0;
191 }
192
193 struct daemon* 
194 daemon_init(void)
195 {
196         struct daemon* daemon = (struct daemon*)calloc(1, 
197                 sizeof(struct daemon));
198 #ifdef USE_WINSOCK
199         int r;
200         WSADATA wsa_data;
201 #endif
202         if(!daemon)
203                 return NULL;
204 #ifdef USE_WINSOCK
205         r = WSAStartup(MAKEWORD(2,2), &wsa_data);
206         if(r != 0) {
207                 fatal_exit("could not init winsock. WSAStartup: %s",
208                         wsa_strerror(r));
209         }
210 #endif /* USE_WINSOCK */
211         signal_handling_record();
212         checklock_start();
213 #ifdef HAVE_SSL
214 #  ifdef HAVE_ERR_LOAD_CRYPTO_STRINGS
215         ERR_load_crypto_strings();
216 #  endif
217 #if OPENSSL_VERSION_NUMBER < 0x10100000 || !defined(HAVE_OPENSSL_INIT_SSL)
218         ERR_load_SSL_strings();
219 #endif
220 #  ifdef USE_GOST
221         (void)sldns_key_EVP_load_gost_id();
222 #  endif
223 #  if OPENSSL_VERSION_NUMBER < 0x10100000 || !defined(HAVE_OPENSSL_INIT_CRYPTO)
224 #    ifndef S_SPLINT_S
225         OpenSSL_add_all_algorithms();
226 #    endif
227 #  else
228         OPENSSL_init_crypto(OPENSSL_INIT_ADD_ALL_CIPHERS
229                 | OPENSSL_INIT_ADD_ALL_DIGESTS
230                 | OPENSSL_INIT_LOAD_CRYPTO_STRINGS, NULL);
231 #  endif
232 #  if HAVE_DECL_SSL_COMP_GET_COMPRESSION_METHODS
233         /* grab the COMP method ptr because openssl leaks it */
234         comp_meth = (void*)SSL_COMP_get_compression_methods();
235 #  endif
236 #  if OPENSSL_VERSION_NUMBER < 0x10100000 || !defined(HAVE_OPENSSL_INIT_SSL)
237         (void)SSL_library_init();
238 #  else
239         (void)OPENSSL_init_ssl(OPENSSL_INIT_LOAD_SSL_STRINGS, NULL);
240 #  endif
241 #  if defined(HAVE_SSL) && defined(OPENSSL_THREADS) && !defined(THREADS_DISABLED)
242         if(!ub_openssl_lock_init())
243                 fatal_exit("could not init openssl locks");
244 #  endif
245 #elif defined(HAVE_NSS)
246         if(NSS_NoDB_Init(NULL) != SECSuccess)
247                 fatal_exit("could not init NSS");
248 #endif /* HAVE_SSL or HAVE_NSS */
249 #ifdef HAVE_TZSET
250         /* init timezone info while we are not chrooted yet */
251         tzset();
252 #endif
253         daemon->need_to_exit = 0;
254         modstack_init(&daemon->mods);
255         if(!(daemon->env = (struct module_env*)calloc(1, 
256                 sizeof(*daemon->env)))) {
257                 free(daemon);
258                 return NULL;
259         }
260         /* init edns_known_options */
261         if(!edns_known_options_init(daemon->env)) {
262                 free(daemon->env);
263                 free(daemon);
264                 return NULL;
265         }
266         alloc_init(&daemon->superalloc, NULL, 0);
267         daemon->acl = acl_list_create();
268         if(!daemon->acl) {
269                 edns_known_options_delete(daemon->env);
270                 free(daemon->env);
271                 free(daemon);
272                 return NULL;
273         }
274         daemon->tcl = tcl_list_create();
275         if(!daemon->tcl) {
276                 acl_list_delete(daemon->acl);
277                 edns_known_options_delete(daemon->env);
278                 free(daemon->env);
279                 free(daemon);
280                 return NULL;
281         }
282         if(gettimeofday(&daemon->time_boot, NULL) < 0)
283                 log_err("gettimeofday: %s", strerror(errno));
284         daemon->time_last_stat = daemon->time_boot;
285         if((daemon->env->auth_zones = auth_zones_create()) == 0) {
286                 acl_list_delete(daemon->acl);
287                 tcl_list_delete(daemon->tcl);
288                 edns_known_options_delete(daemon->env);
289                 free(daemon->env);
290                 free(daemon);
291                 return NULL;
292         }
293         return daemon;  
294 }
295
296 int 
297 daemon_open_shared_ports(struct daemon* daemon)
298 {
299         log_assert(daemon);
300         if(daemon->cfg->port != daemon->listening_port) {
301                 size_t i;
302                 struct listen_port* p0;
303                 daemon->reuseport = 0;
304                 /* free and close old ports */
305                 if(daemon->ports != NULL) {
306                         for(i=0; i<daemon->num_ports; i++)
307                                 listening_ports_free(daemon->ports[i]);
308                         free(daemon->ports);
309                         daemon->ports = NULL;
310                 }
311                 /* see if we want to reuseport */
312 #ifdef SO_REUSEPORT
313                 if(daemon->cfg->so_reuseport && daemon->cfg->num_threads > 0)
314                         daemon->reuseport = 1;
315 #endif
316                 /* try to use reuseport */
317                 p0 = listening_ports_open(daemon->cfg, &daemon->reuseport);
318                 if(!p0) {
319                         listening_ports_free(p0);
320                         return 0;
321                 }
322                 if(daemon->reuseport) {
323                         /* reuseport was successful, allocate for it */
324                         daemon->num_ports = (size_t)daemon->cfg->num_threads;
325                 } else {
326                         /* do the normal, singleportslist thing,
327                          * reuseport not enabled or did not work */
328                         daemon->num_ports = 1;
329                 }
330                 if(!(daemon->ports = (struct listen_port**)calloc(
331                         daemon->num_ports, sizeof(*daemon->ports)))) {
332                         listening_ports_free(p0);
333                         return 0;
334                 }
335                 daemon->ports[0] = p0;
336                 if(daemon->reuseport) {
337                         /* continue to use reuseport */
338                         for(i=1; i<daemon->num_ports; i++) {
339                                 if(!(daemon->ports[i]=
340                                         listening_ports_open(daemon->cfg,
341                                                 &daemon->reuseport))
342                                         || !daemon->reuseport ) {
343                                         for(i=0; i<daemon->num_ports; i++)
344                                                 listening_ports_free(daemon->ports[i]);
345                                         free(daemon->ports);
346                                         daemon->ports = NULL;
347                                         return 0;
348                                 }
349                         }
350                 }
351                 daemon->listening_port = daemon->cfg->port;
352         }
353         if(!daemon->cfg->remote_control_enable && daemon->rc_port) {
354                 listening_ports_free(daemon->rc_ports);
355                 daemon->rc_ports = NULL;
356                 daemon->rc_port = 0;
357         }
358         if(daemon->cfg->remote_control_enable && 
359                 daemon->cfg->control_port != daemon->rc_port) {
360                 listening_ports_free(daemon->rc_ports);
361                 if(!(daemon->rc_ports=daemon_remote_open_ports(daemon->cfg)))
362                         return 0;
363                 daemon->rc_port = daemon->cfg->control_port;
364         }
365         return 1;
366 }
367
368 /**
369  * Setup modules. setup module stack.
370  * @param daemon: the daemon
371  */
372 static void daemon_setup_modules(struct daemon* daemon)
373 {
374         daemon->env->cfg = daemon->cfg;
375         daemon->env->alloc = &daemon->superalloc;
376         daemon->env->worker = NULL;
377         daemon->env->need_to_validate = 0; /* set by module init below */
378         if(!modstack_setup(&daemon->mods, daemon->cfg->module_conf, 
379                 daemon->env)) {
380                 fatal_exit("failed to setup modules");
381         }
382         log_edns_known_options(VERB_ALGO, daemon->env);
383 }
384
385 /**
386  * Obtain allowed port numbers, concatenate the list, and shuffle them
387  * (ready to be handed out to threads).
388  * @param daemon: the daemon. Uses rand and cfg.
389  * @param shufport: the portlist output.
390  * @return number of ports available.
391  */
392 static int daemon_get_shufport(struct daemon* daemon, int* shufport)
393 {
394         int i, n, k, temp;
395         int avail = 0;
396         for(i=0; i<65536; i++) {
397                 if(daemon->cfg->outgoing_avail_ports[i]) {
398                         shufport[avail++] = daemon->cfg->
399                                 outgoing_avail_ports[i];
400                 }
401         }
402         if(avail == 0)
403                 fatal_exit("no ports are permitted for UDP, add "
404                         "with outgoing-port-permit");
405         /* Knuth shuffle */
406         n = avail;
407         while(--n > 0) {
408                 k = ub_random_max(daemon->rand, n+1); /* 0<= k<= n */
409                 temp = shufport[k];
410                 shufport[k] = shufport[n];
411                 shufport[n] = temp;
412         }
413         return avail;
414 }
415
416 /**
417  * Allocate empty worker structures. With backptr and thread-number,
418  * from 0..numthread initialised. Used as user arguments to new threads.
419  * Creates the daemon random generator if it does not exist yet.
420  * The random generator stays existing between reloads with a unique state.
421  * @param daemon: the daemon with (new) config settings.
422  */
423 static void 
424 daemon_create_workers(struct daemon* daemon)
425 {
426         int i, numport;
427         int* shufport;
428         log_assert(daemon && daemon->cfg);
429         if(!daemon->rand) {
430                 daemon->rand = ub_initstate(NULL);
431                 if(!daemon->rand)
432                         fatal_exit("could not init random generator");
433                 hash_set_raninit((uint32_t)ub_random(daemon->rand));
434         }
435         shufport = (int*)calloc(65536, sizeof(int));
436         if(!shufport)
437                 fatal_exit("out of memory during daemon init");
438         numport = daemon_get_shufport(daemon, shufport);
439         verbose(VERB_ALGO, "total of %d outgoing ports available", numport);
440         
441         daemon->num = (daemon->cfg->num_threads?daemon->cfg->num_threads:1);
442         if(daemon->reuseport && (int)daemon->num < (int)daemon->num_ports) {
443                 log_warn("cannot reduce num-threads to %d because so-reuseport "
444                         "so continuing with %d threads.", (int)daemon->num,
445                         (int)daemon->num_ports);
446                 daemon->num = (int)daemon->num_ports;
447         }
448         daemon->workers = (struct worker**)calloc((size_t)daemon->num, 
449                 sizeof(struct worker*));
450         if(!daemon->workers)
451                 fatal_exit("out of memory during daemon init");
452         if(daemon->cfg->dnstap) {
453 #ifdef USE_DNSTAP
454                 daemon->dtenv = dt_create(daemon->cfg->dnstap_socket_path,
455                         (unsigned int)daemon->num);
456                 if (!daemon->dtenv)
457                         fatal_exit("dt_create failed");
458                 dt_apply_cfg(daemon->dtenv, daemon->cfg);
459 #else
460                 fatal_exit("dnstap enabled in config but not built with dnstap support");
461 #endif
462         }
463         for(i=0; i<daemon->num; i++) {
464                 if(!(daemon->workers[i] = worker_create(daemon, i,
465                         shufport+numport*i/daemon->num, 
466                         numport*(i+1)/daemon->num - numport*i/daemon->num)))
467                         /* the above is not ports/numthr, due to rounding */
468                         fatal_exit("could not create worker");
469         }
470         free(shufport);
471 }
472
473 #ifdef THREADS_DISABLED
474 /**
475  * Close all pipes except for the numbered thread.
476  * @param daemon: daemon to close pipes in.
477  * @param thr: thread number 0..num-1 of thread to skip.
478  */
479 static void close_other_pipes(struct daemon* daemon, int thr)
480 {
481         int i;
482         for(i=0; i<daemon->num; i++)
483                 if(i!=thr) {
484                         if(i==0) {
485                                 /* only close read part, need to write stats */
486                                 tube_close_read(daemon->workers[i]->cmd);
487                         } else {
488                                 /* complete close channel to others */
489                                 tube_delete(daemon->workers[i]->cmd);
490                                 daemon->workers[i]->cmd = NULL;
491                         }
492                 }
493 }
494 #endif /* THREADS_DISABLED */
495
496 /**
497  * Function to start one thread. 
498  * @param arg: user argument.
499  * @return: void* user return value could be used for thread_join results.
500  */
501 static void* 
502 thread_start(void* arg)
503 {
504         struct worker* worker = (struct worker*)arg;
505         int port_num = 0;
506         log_thread_set(&worker->thread_num);
507         ub_thread_blocksigs();
508 #ifdef THREADS_DISABLED
509         /* close pipe ends used by main */
510         tube_close_write(worker->cmd);
511         close_other_pipes(worker->daemon, worker->thread_num);
512 #endif
513 #ifdef SO_REUSEPORT
514         if(worker->daemon->cfg->so_reuseport)
515                 port_num = worker->thread_num % worker->daemon->num_ports;
516         else
517                 port_num = 0;
518 #endif
519         if(!worker_init(worker, worker->daemon->cfg,
520                         worker->daemon->ports[port_num], 0))
521                 fatal_exit("Could not initialize thread");
522
523         worker_work(worker);
524         return NULL;
525 }
526
527 /**
528  * Fork and init the other threads. Main thread returns for special handling.
529  * @param daemon: the daemon with other threads to fork.
530  */
531 static void
532 daemon_start_others(struct daemon* daemon)
533 {
534         int i;
535         log_assert(daemon);
536         verbose(VERB_ALGO, "start threads");
537         /* skip i=0, is this thread */
538         for(i=1; i<daemon->num; i++) {
539                 ub_thread_create(&daemon->workers[i]->thr_id,
540                         thread_start, daemon->workers[i]);
541 #ifdef THREADS_DISABLED
542                 /* close pipe end of child */
543                 tube_close_read(daemon->workers[i]->cmd);
544 #endif /* no threads */
545         }
546 }
547
548 /**
549  * Stop the other threads.
550  * @param daemon: the daemon with other threads.
551  */
552 static void
553 daemon_stop_others(struct daemon* daemon)
554 {
555         int i;
556         log_assert(daemon);
557         verbose(VERB_ALGO, "stop threads");
558         /* skip i=0, is this thread */
559         /* use i=0 buffer for sending cmds; because we are #0 */
560         for(i=1; i<daemon->num; i++) {
561                 worker_send_cmd(daemon->workers[i], worker_cmd_quit);
562         }
563         /* wait for them to quit */
564         for(i=1; i<daemon->num; i++) {
565                 /* join it to make sure its dead */
566                 verbose(VERB_ALGO, "join %d", i);
567                 ub_thread_join(daemon->workers[i]->thr_id);
568                 verbose(VERB_ALGO, "join success %d", i);
569         }
570 }
571
572 void 
573 daemon_fork(struct daemon* daemon)
574 {
575         int have_view_respip_cfg = 0;
576 #ifdef HAVE_SYSTEMD
577         int ret;
578 #endif
579
580         log_assert(daemon);
581         if(!(daemon->views = views_create()))
582                 fatal_exit("Could not create views: out of memory");
583         /* create individual views and their localzone/data trees */
584         if(!views_apply_cfg(daemon->views, daemon->cfg))
585                 fatal_exit("Could not set up views");
586
587         if(!acl_list_apply_cfg(daemon->acl, daemon->cfg, daemon->views))
588                 fatal_exit("Could not setup access control list");
589         if(!tcl_list_apply_cfg(daemon->tcl, daemon->cfg))
590                 fatal_exit("Could not setup TCP connection limits");
591         if(daemon->cfg->dnscrypt) {
592 #ifdef USE_DNSCRYPT
593                 daemon->dnscenv = dnsc_create();
594                 if (!daemon->dnscenv)
595                         fatal_exit("dnsc_create failed");
596                 dnsc_apply_cfg(daemon->dnscenv, daemon->cfg);
597 #else
598                 fatal_exit("dnscrypt enabled in config but unbound was not built with "
599                                    "dnscrypt support");
600 #endif
601         }
602         /* create global local_zones */
603         if(!(daemon->local_zones = local_zones_create()))
604                 fatal_exit("Could not create local zones: out of memory");
605         if(!local_zones_apply_cfg(daemon->local_zones, daemon->cfg))
606                 fatal_exit("Could not set up local zones");
607
608         /* process raw response-ip configuration data */
609         if(!(daemon->respip_set = respip_set_create()))
610                 fatal_exit("Could not create response IP set");
611         if(!respip_global_apply_cfg(daemon->respip_set, daemon->cfg))
612                 fatal_exit("Could not set up response IP set");
613         if(!respip_views_apply_cfg(daemon->views, daemon->cfg,
614                 &have_view_respip_cfg))
615                 fatal_exit("Could not set up per-view response IP sets");
616         daemon->use_response_ip = !respip_set_is_empty(daemon->respip_set) ||
617                 have_view_respip_cfg;
618         
619         /* read auth zonefiles */
620         if(!auth_zones_apply_cfg(daemon->env->auth_zones, daemon->cfg, 1,
621                 &daemon->use_rpz))
622                 fatal_exit("auth_zones could not be setup");
623
624         /* setup modules */
625         daemon_setup_modules(daemon);
626
627         /* response-ip-xxx options don't work as expected without the respip
628          * module.  To avoid run-time operational surprise we reject such
629          * configuration. */
630         if(daemon->use_response_ip &&
631                 modstack_find(&daemon->mods, "respip") < 0)
632                 fatal_exit("response-ip options require respip module");
633         /* RPZ response ip triggers don't work as expected without the respip
634          * module.  To avoid run-time operational surprise we reject such
635          * configuration. */
636         if(daemon->use_rpz &&
637                 modstack_find(&daemon->mods, "respip") < 0)
638                 fatal_exit("RPZ requires the respip module");
639
640         /* first create all the worker structures, so we can pass
641          * them to the newly created threads. 
642          */
643         daemon_create_workers(daemon);
644
645 #if defined(HAVE_EV_LOOP) || defined(HAVE_EV_DEFAULT_LOOP)
646         /* in libev the first inited base gets signals */
647         if(!worker_init(daemon->workers[0], daemon->cfg, daemon->ports[0], 1))
648                 fatal_exit("Could not initialize main thread");
649 #endif
650         
651         /* Now create the threads and init the workers.
652          * By the way, this is thread #0 (the main thread).
653          */
654         daemon_start_others(daemon);
655
656         /* Special handling for the main thread. This is the thread
657          * that handles signals and remote control.
658          */
659 #if !(defined(HAVE_EV_LOOP) || defined(HAVE_EV_DEFAULT_LOOP))
660         /* libevent has the last inited base get signals (or any base) */
661         if(!worker_init(daemon->workers[0], daemon->cfg, daemon->ports[0], 1))
662                 fatal_exit("Could not initialize main thread");
663 #endif
664         signal_handling_playback(daemon->workers[0]);
665
666         if (!shm_main_init(daemon))
667                 log_warn("SHM has failed");
668
669         /* Start resolver service on main thread. */
670 #ifdef HAVE_SYSTEMD
671         ret = sd_notify(0, "READY=1");
672         if(ret <= 0 && getenv("NOTIFY_SOCKET"))
673                 fatal_exit("sd_notify failed %s: %s. Make sure that unbound has "
674                                 "access/permission to use the socket presented by systemd.",
675                                 getenv("NOTIFY_SOCKET"),
676                                 (ret==0?"no $NOTIFY_SOCKET": strerror(-ret)));
677 #endif
678         log_info("start of service (%s).", PACKAGE_STRING);
679         worker_work(daemon->workers[0]);
680 #ifdef HAVE_SYSTEMD
681         if (daemon->workers[0]->need_to_exit)
682                 sd_notify(0, "STOPPING=1");
683         else
684                 sd_notify(0, "RELOADING=1");
685 #endif
686         log_info("service stopped (%s).", PACKAGE_STRING);
687
688         /* we exited! a signal happened! Stop other threads */
689         daemon_stop_others(daemon);
690
691         /* Shutdown SHM */
692         shm_main_shutdown(daemon);
693
694         daemon->need_to_exit = daemon->workers[0]->need_to_exit;
695 }
696
697 void 
698 daemon_cleanup(struct daemon* daemon)
699 {
700         int i;
701         log_assert(daemon);
702         /* before stopping main worker, handle signals ourselves, so we
703            don't die on multiple reload signals for example. */
704         signal_handling_record();
705         log_thread_set(NULL);
706         /* clean up caches because
707          * a) RRset IDs will be recycled after a reload, causing collisions
708          * b) validation config can change, thus rrset, msg, keycache clear */
709         slabhash_clear(&daemon->env->rrset_cache->table);
710         slabhash_clear(daemon->env->msg_cache);
711         local_zones_delete(daemon->local_zones);
712         daemon->local_zones = NULL;
713         respip_set_delete(daemon->respip_set);
714         daemon->respip_set = NULL;
715         views_delete(daemon->views);
716         daemon->views = NULL;
717         if(daemon->env->auth_zones)
718                 auth_zones_cleanup(daemon->env->auth_zones);
719         /* key cache is cleared by module desetup during next daemon_fork() */
720         daemon_remote_clear(daemon->rc);
721         for(i=0; i<daemon->num; i++)
722                 worker_delete(daemon->workers[i]);
723         free(daemon->workers);
724         daemon->workers = NULL;
725         daemon->num = 0;
726         alloc_clear_special(&daemon->superalloc);
727 #ifdef USE_DNSTAP
728         dt_delete(daemon->dtenv);
729         daemon->dtenv = NULL;
730 #endif
731 #ifdef USE_DNSCRYPT
732         dnsc_delete(daemon->dnscenv);
733         daemon->dnscenv = NULL;
734 #endif
735         daemon->cfg = NULL;
736 }
737
738 void 
739 daemon_delete(struct daemon* daemon)
740 {
741         size_t i;
742         if(!daemon)
743                 return;
744         modstack_desetup(&daemon->mods, daemon->env);
745         daemon_remote_delete(daemon->rc);
746         for(i = 0; i < daemon->num_ports; i++)
747                 listening_ports_free(daemon->ports[i]);
748         free(daemon->ports);
749         listening_ports_free(daemon->rc_ports);
750         if(daemon->env) {
751                 slabhash_delete(daemon->env->msg_cache);
752                 rrset_cache_delete(daemon->env->rrset_cache);
753                 infra_delete(daemon->env->infra_cache);
754                 edns_known_options_delete(daemon->env);
755                 auth_zones_delete(daemon->env->auth_zones);
756         }
757         ub_randfree(daemon->rand);
758         alloc_clear(&daemon->superalloc);
759         acl_list_delete(daemon->acl);
760         tcl_list_delete(daemon->tcl);
761         free(daemon->chroot);
762         free(daemon->pidfile);
763         free(daemon->env);
764 #ifdef HAVE_SSL
765         listen_sslctx_delete_ticket_keys();
766         SSL_CTX_free((SSL_CTX*)daemon->listen_sslctx);
767         SSL_CTX_free((SSL_CTX*)daemon->connect_sslctx);
768 #endif
769         free(daemon);
770         /* lex cleanup */
771         ub_c_lex_destroy();
772         /* libcrypto cleanup */
773 #ifdef HAVE_SSL
774 #  if defined(USE_GOST) && defined(HAVE_LDNS_KEY_EVP_UNLOAD_GOST)
775         sldns_key_EVP_unload_gost();
776 #  endif
777 #  if HAVE_DECL_SSL_COMP_GET_COMPRESSION_METHODS && HAVE_DECL_SK_SSL_COMP_POP_FREE
778 #    ifndef S_SPLINT_S
779 #      if OPENSSL_VERSION_NUMBER < 0x10100000
780         sk_SSL_COMP_pop_free(comp_meth, (void(*)())CRYPTO_free);
781 #      endif
782 #    endif
783 #  endif
784 #  ifdef HAVE_OPENSSL_CONFIG
785         EVP_cleanup();
786 #  if (OPENSSL_VERSION_NUMBER < 0x10100000) && !defined(OPENSSL_NO_ENGINE)
787         ENGINE_cleanup();
788 #  endif
789         CONF_modules_free();
790 #  endif
791 #  ifdef HAVE_CRYPTO_CLEANUP_ALL_EX_DATA
792         CRYPTO_cleanup_all_ex_data(); /* safe, no more threads right now */
793 #  endif
794 #  ifdef HAVE_ERR_FREE_STRINGS
795         ERR_free_strings();
796 #  endif
797 #  if OPENSSL_VERSION_NUMBER < 0x10100000
798         RAND_cleanup();
799 #  endif
800 #  if defined(HAVE_SSL) && defined(OPENSSL_THREADS) && !defined(THREADS_DISABLED)
801         ub_openssl_lock_delete();
802 #  endif
803 #ifndef HAVE_ARC4RANDOM
804         _ARC4_LOCK_DESTROY();
805 #endif
806 #elif defined(HAVE_NSS)
807         NSS_Shutdown();
808 #endif /* HAVE_SSL or HAVE_NSS */
809         checklock_stop();
810 #ifdef USE_WINSOCK
811         if(WSACleanup() != 0) {
812                 log_err("Could not WSACleanup: %s", 
813                         wsa_strerror(WSAGetLastError()));
814         }
815 #endif
816 }
817
818 void daemon_apply_cfg(struct daemon* daemon, struct config_file* cfg)
819 {
820         daemon->cfg = cfg;
821         config_apply(cfg);
822         if(!slabhash_is_size(daemon->env->msg_cache, cfg->msg_cache_size,
823                 cfg->msg_cache_slabs)) {
824                 slabhash_delete(daemon->env->msg_cache);
825                 daemon->env->msg_cache = slabhash_create(cfg->msg_cache_slabs,
826                         HASH_DEFAULT_STARTARRAY, cfg->msg_cache_size,
827                         msgreply_sizefunc, query_info_compare,
828                         query_entry_delete, reply_info_delete, NULL);
829                 if(!daemon->env->msg_cache) {
830                         fatal_exit("malloc failure updating config settings");
831                 }
832         }
833         if((daemon->env->rrset_cache = rrset_cache_adjust(
834                 daemon->env->rrset_cache, cfg, &daemon->superalloc)) == 0)
835                 fatal_exit("malloc failure updating config settings");
836         if((daemon->env->infra_cache = infra_adjust(daemon->env->infra_cache,
837                 cfg))==0)
838                 fatal_exit("malloc failure updating config settings");
839 }