63a9869dcef367fe653afc8747b138e1f9ee1ae9
[samba.git] / source3 / smbd / server.c
1 /*
2    Unix SMB/CIFS implementation.
3    Main SMB server routines
4    Copyright (C) Andrew Tridgell                1992-1998
5    Copyright (C) Martin Pool                    2002
6    Copyright (C) Jelmer Vernooij                2002-2003
7    Copyright (C) Volker Lendecke                1993-2007
8    Copyright (C) Jeremy Allison                 1993-2007
9
10    This program is free software; you can redistribute it and/or modify
11    it under the terms of the GNU General Public License as published by
12    the Free Software Foundation; either version 3 of the License, or
13    (at your option) any later version.
14
15    This program is distributed in the hope that it will be useful,
16    but WITHOUT ANY WARRANTY; without even the implied warranty of
17    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
18    GNU General Public License for more details.
19
20    You should have received a copy of the GNU General Public License
21    along with this program.  If not, see <http://www.gnu.org/licenses/>.
22 */
23
24 #include "includes.h"
25 #include "smbd/globals.h"
26
27 static_decl_rpc;
28
29 #ifdef WITH_DFS
30 extern int dcelogin_atmost_once;
31 #endif /* WITH_DFS */
32
33 int smbd_server_fd(void)
34 {
35         return server_fd;
36 }
37
38 static void smbd_set_server_fd(int fd)
39 {
40         server_fd = fd;
41 }
42
43 int get_client_fd(void)
44 {
45         return server_fd;
46 }
47
48 struct event_context *smbd_event_context(void)
49 {
50         if (!smbd_event_ctx) {
51                 smbd_event_ctx = event_context_init(talloc_autofree_context());
52         }
53         if (!smbd_event_ctx) {
54                 smb_panic("Could not init smbd event context");
55         }
56         return smbd_event_ctx;
57 }
58
59 struct messaging_context *smbd_messaging_context(void)
60 {
61         if (smbd_msg_ctx == NULL) {
62                 smbd_msg_ctx = messaging_init(talloc_autofree_context(),
63                                               server_id_self(),
64                                               smbd_event_context());
65         }
66         if (smbd_msg_ctx == NULL) {
67                 DEBUG(0, ("Could not init smbd messaging context.\n"));
68         }
69         return smbd_msg_ctx;
70 }
71
72 struct memcache *smbd_memcache(void)
73 {
74         if (!smbd_memcache_ctx) {
75                 smbd_memcache_ctx = memcache_init(talloc_autofree_context(),
76                                                   lp_max_stat_cache_size()*1024);
77         }
78         if (!smbd_memcache_ctx) {
79                 smb_panic("Could not init smbd memcache");
80         }
81
82         return smbd_memcache_ctx;
83 }
84
85 /*******************************************************************
86  What to do when smb.conf is updated.
87  ********************************************************************/
88
89 static void smb_conf_updated(struct messaging_context *msg,
90                              void *private_data,
91                              uint32_t msg_type,
92                              struct server_id server_id,
93                              DATA_BLOB *data)
94 {
95         DEBUG(10,("smb_conf_updated: Got message saying smb.conf was "
96                   "updated. Reloading.\n"));
97         change_to_root_user();
98         reload_services(False);
99 }
100
101
102 /*******************************************************************
103  Delete a statcache entry.
104  ********************************************************************/
105
106 static void smb_stat_cache_delete(struct messaging_context *msg,
107                                   void *private_data,
108                                   uint32_t msg_tnype,
109                                   struct server_id server_id,
110                                   DATA_BLOB *data)
111 {
112         const char *name = (const char *)data->data;
113         DEBUG(10,("smb_stat_cache_delete: delete name %s\n", name));
114         stat_cache_delete(name);
115 }
116
117 /****************************************************************************
118   Send a SIGTERM to our process group.
119 *****************************************************************************/
120
121 static void  killkids(void)
122 {
123         if(am_parent) kill(0,SIGTERM);
124 }
125
126 /****************************************************************************
127  Process a sam sync message - not sure whether to do this here or
128  somewhere else.
129 ****************************************************************************/
130
131 static void msg_sam_sync(struct messaging_context *msg,
132                          void *private_data,
133                          uint32_t msg_type,
134                          struct server_id server_id,
135                          DATA_BLOB *data)
136 {
137         DEBUG(10, ("** sam sync message received, ignoring\n"));
138 }
139
140 static void msg_exit_server(struct messaging_context *msg,
141                             void *private_data,
142                             uint32_t msg_type,
143                             struct server_id server_id,
144                             DATA_BLOB *data)
145 {
146         DEBUG(3, ("got a SHUTDOWN message\n"));
147         exit_server_cleanly(NULL);
148 }
149
150 #ifdef DEVELOPER
151 static void msg_inject_fault(struct messaging_context *msg,
152                              void *private_data,
153                              uint32_t msg_type,
154                              struct server_id src,
155                              DATA_BLOB *data)
156 {
157         int sig;
158
159         if (data->length != sizeof(sig)) {
160                 
161                 DEBUG(0, ("Process %s sent bogus signal injection request\n",
162                           procid_str_static(&src)));
163                 return;
164         }
165
166         sig = *(int *)data->data;
167         if (sig == -1) {
168                 exit_server("internal error injected");
169                 return;
170         }
171
172 #if HAVE_STRSIGNAL
173         DEBUG(0, ("Process %s requested injection of signal %d (%s)\n",
174                   procid_str_static(&src), sig, strsignal(sig)));
175 #else
176         DEBUG(0, ("Process %s requested injection of signal %d\n",
177                   procid_str_static(&src), sig));
178 #endif
179
180         kill(sys_getpid(), sig);
181 }
182 #endif /* DEVELOPER */
183
184 /*
185  * Parent smbd process sets its own debug level first and then
186  * sends a message to all the smbd children to adjust their debug
187  * level to that of the parent.
188  */
189
190 static void smbd_msg_debug(struct messaging_context *msg_ctx,
191                            void *private_data,
192                            uint32_t msg_type,
193                            struct server_id server_id,
194                            DATA_BLOB *data)
195 {
196         struct child_pid *child;
197
198         debug_message(msg_ctx, private_data, MSG_DEBUG, server_id, data);
199
200         for (child = children; child != NULL; child = child->next) {
201                 messaging_send_buf(msg_ctx, pid_to_procid(child->pid),
202                                    MSG_DEBUG,
203                                    data->data,
204                                    strlen((char *) data->data) + 1);
205         }
206 }
207
208 static void add_child_pid(pid_t pid)
209 {
210         struct child_pid *child;
211
212         child = SMB_MALLOC_P(struct child_pid);
213         if (child == NULL) {
214                 DEBUG(0, ("Could not add child struct -- malloc failed\n"));
215                 return;
216         }
217         child->pid = pid;
218         DLIST_ADD(children, child);
219         num_children += 1;
220 }
221
222 /*
223   at most every smbd:cleanuptime seconds (default 20), we scan the BRL
224   and locking database for entries to cleanup. As a side effect this
225   also cleans up dead entries in the connections database (due to the
226   traversal in message_send_all()
227
228   Using a timer for this prevents a flood of traversals when a large
229   number of clients disconnect at the same time (perhaps due to a
230   network outage).  
231 */
232
233 static void cleanup_timeout_fn(struct event_context *event_ctx,
234                                 struct timed_event *te,
235                                 struct timeval now,
236                                 void *private_data)
237 {
238         struct timed_event **cleanup_te = (struct timed_event **)private_data;
239
240         DEBUG(1,("Cleaning up brl and lock database after unclean shutdown\n"));
241         message_send_all(smbd_messaging_context(), MSG_SMB_UNLOCK, NULL, 0, NULL);
242         messaging_send_buf(smbd_messaging_context(), procid_self(), 
243                                 MSG_SMB_BRL_VALIDATE, NULL, 0);
244         /* mark the cleanup as having been done */
245         (*cleanup_te) = NULL;
246 }
247
248 static void remove_child_pid(pid_t pid, bool unclean_shutdown)
249 {
250         struct child_pid *child;
251         static struct timed_event *cleanup_te;
252
253         if (unclean_shutdown) {
254                 /* a child terminated uncleanly so tickle all
255                    processes to see if they can grab any of the
256                    pending locks
257                 */
258                 DEBUG(3,(__location__ " Unclean shutdown of pid %u\n", 
259                         (unsigned int)pid));
260                 if (!cleanup_te) {
261                         /* call the cleanup timer, but not too often */
262                         int cleanup_time = lp_parm_int(-1, "smbd", "cleanuptime", 20);
263                         cleanup_te = event_add_timed(smbd_event_context(), NULL,
264                                                 timeval_current_ofs(cleanup_time, 0),
265                                                 cleanup_timeout_fn, 
266                                                 &cleanup_te);
267                         DEBUG(1,("Scheduled cleanup of brl and lock database after unclean shutdown\n"));
268                 }
269         }
270
271         for (child = children; child != NULL; child = child->next) {
272                 if (child->pid == pid) {
273                         struct child_pid *tmp = child;
274                         DLIST_REMOVE(children, child);
275                         SAFE_FREE(tmp);
276                         num_children -= 1;
277                         return;
278                 }
279         }
280
281         /* not all forked child processes are added to the children list */
282         DEBUG(1, ("Could not find child %d -- ignoring\n", (int)pid));
283 }
284
285 /****************************************************************************
286  Have we reached the process limit ?
287 ****************************************************************************/
288
289 static bool allowable_number_of_smbd_processes(void)
290 {
291         int max_processes = lp_max_smbd_processes();
292
293         if (!max_processes)
294                 return True;
295
296         return num_children < max_processes;
297 }
298
299 static void smbd_sig_chld_handler(struct tevent_context *ev,
300                                   struct tevent_signal *se,
301                                   int signum,
302                                   int count,
303                                   void *siginfo,
304                                   void *private_data)
305 {
306         pid_t pid;
307         int status;
308
309         while ((pid = sys_waitpid(-1, &status, WNOHANG)) > 0) {
310                 bool unclean_shutdown = False;
311
312                 /* If the child terminated normally, assume
313                    it was an unclean shutdown unless the
314                    status is 0
315                 */
316                 if (WIFEXITED(status)) {
317                         unclean_shutdown = WEXITSTATUS(status);
318                 }
319                 /* If the child terminated due to a signal
320                    we always assume it was unclean.
321                 */
322                 if (WIFSIGNALED(status)) {
323                         unclean_shutdown = True;
324                 }
325                 remove_child_pid(pid, unclean_shutdown);
326         }
327 }
328
329 static void smbd_setup_sig_chld_handler(void)
330 {
331         struct tevent_signal *se;
332
333         se = tevent_add_signal(smbd_event_context(),
334                                smbd_event_context(),
335                                SIGCHLD, 0,
336                                smbd_sig_chld_handler,
337                                NULL);
338         if (!se) {
339                 exit_server("failed to setup SIGCHLD handler");
340         }
341 }
342
343 struct smbd_open_socket;
344
345 struct smbd_parent_context {
346         bool interactive;
347
348         /* the list of listening sockets */
349         struct smbd_open_socket *sockets;
350 };
351
352 struct smbd_open_socket {
353         struct smbd_open_socket *prev, *next;
354         struct smbd_parent_context *parent;
355         int fd;
356         struct tevent_fd *fde;
357 };
358
359 static void smbd_open_socket_close_fn(struct tevent_context *ev,
360                                       struct tevent_fd *fde,
361                                       int fd,
362                                       void *private_data)
363 {
364         /* this might be the socket_wrapper swrap_close() */
365         close(fd);
366 }
367
368 static void smbd_accept_connection(struct tevent_context *ev,
369                                    struct tevent_fd *fde,
370                                    uint16_t flags,
371                                    void *private_data)
372 {
373         struct smbd_open_socket *s = talloc_get_type_abort(private_data,
374                                      struct smbd_open_socket);
375         struct sockaddr_storage addr;
376         socklen_t in_addrlen = sizeof(addr);
377         pid_t pid = 0;
378
379         smbd_set_server_fd(accept(s->fd,(struct sockaddr *)&addr,&in_addrlen));
380
381         if (smbd_server_fd() == -1 && errno == EINTR)
382                 return;
383
384         if (smbd_server_fd() == -1) {
385                 DEBUG(0,("open_sockets_smbd: accept: %s\n",
386                          strerror(errno)));
387                 return;
388         }
389
390         if (s->parent->interactive) {
391                 smbd_process();
392                 exit_server_cleanly("end of interactive mode");
393                 return;
394         }
395
396         if (!allowable_number_of_smbd_processes()) {
397                 close(smbd_server_fd());
398                 smbd_set_server_fd(-1);
399                 return;
400         }
401
402         pid = sys_fork();
403         if (pid == 0) {
404                 NTSTATUS status = NT_STATUS_OK;
405                 /* Child code ... */
406                 am_parent = 0;
407
408                 /* Stop zombies, the parent explicitly handles
409                  * them, counting worker smbds. */
410                 CatchChild();
411
412                 /* close our standard file
413                    descriptors */
414                 close_low_fds(False);
415
416                 /*
417                  * Can't use TALLOC_FREE here. Nulling out the argument to it
418                  * would overwrite memory we've just freed.
419                  */
420                 talloc_free(s->parent);
421                 s = NULL;
422
423                 status = reinit_after_fork(smbd_messaging_context(),
424                                            smbd_event_context(), true);
425                 if (!NT_STATUS_IS_OK(status)) {
426                         if (NT_STATUS_EQUAL(status,
427                                             NT_STATUS_TOO_MANY_OPENED_FILES)) {
428                                 DEBUG(0,("child process cannot initialize "
429                                          "because too many files are open\n"));
430                                 goto exit;
431                         }
432                         DEBUG(0,("reinit_after_fork() failed\n"));
433                         smb_panic("reinit_after_fork() failed");
434                 }
435
436                 smbd_setup_sig_term_handler();
437                 smbd_setup_sig_hup_handler();
438
439                 smbd_process();
440          exit:
441                 exit_server_cleanly("end of child");
442                 return;
443         } else if (pid < 0) {
444                 DEBUG(0,("smbd_accept_connection: sys_fork() failed: %s\n",
445                          strerror(errno)));
446         }
447
448         /* The parent doesn't need this socket */
449         close(smbd_server_fd());
450
451         /* Sun May 6 18:56:14 2001 ackley@cs.unm.edu:
452                 Clear the closed fd info out of server_fd --
453                 and more importantly, out of client_fd in
454                 util_sock.c, to avoid a possible
455                 getpeername failure if we reopen the logs
456                 and use %I in the filename.
457         */
458
459         smbd_set_server_fd(-1);
460
461         if (pid != 0) {
462                 add_child_pid(pid);
463         }
464
465         /* Force parent to check log size after
466          * spawning child.  Fix from
467          * klausr@ITAP.Physik.Uni-Stuttgart.De.  The
468          * parent smbd will log to logserver.smb.  It
469          * writes only two messages for each child
470          * started/finished. But each child writes,
471          * say, 50 messages also in logserver.smb,
472          * begining with the debug_count of the
473          * parent, before the child opens its own log
474          * file logserver.client. In a worst case
475          * scenario the size of logserver.smb would be
476          * checked after about 50*50=2500 messages
477          * (ca. 100kb).
478          * */
479         force_check_log_size();
480 }
481
482 static bool smbd_open_one_socket(struct smbd_parent_context *parent,
483                                  const struct sockaddr_storage *ifss,
484                                  uint16_t port)
485 {
486         struct smbd_open_socket *s;
487
488         s = talloc(parent, struct smbd_open_socket);
489         if (!s) {
490                 return false;
491         }
492
493         s->parent = parent;
494         s->fd = open_socket_in(SOCK_STREAM,
495                                port,
496                                parent->sockets == NULL ? 0 : 2,
497                                ifss,
498                                true);
499         if (s->fd == -1) {
500                 DEBUG(0,("smbd_open_once_socket: open_socket_in: "
501                         "%s\n", strerror(errno)));
502                 TALLOC_FREE(s);
503                 /*
504                  * We ignore an error here, as we've done before
505                  */
506                 return true;
507         }
508
509         /* ready to listen */
510         set_socket_options(s->fd, "SO_KEEPALIVE");
511         set_socket_options(s->fd, lp_socket_options());
512
513         /* Set server socket to
514          * non-blocking for the accept. */
515         set_blocking(s->fd, False);
516
517         if (listen(s->fd, SMBD_LISTEN_BACKLOG) == -1) {
518                 DEBUG(0,("open_sockets_smbd: listen: "
519                         "%s\n", strerror(errno)));
520                         close(s->fd);
521                 TALLOC_FREE(s);
522                 return false;
523         }
524
525         s->fde = tevent_add_fd(smbd_event_context(),
526                                s,
527                                s->fd, TEVENT_FD_READ,
528                                smbd_accept_connection,
529                                s);
530         if (!s->fde) {
531                 DEBUG(0,("open_sockets_smbd: "
532                          "tevent_add_fd: %s\n",
533                          strerror(errno)));
534                 close(s->fd);
535                 TALLOC_FREE(s);
536                 return false;
537         }
538         tevent_fd_set_close_fn(s->fde, smbd_open_socket_close_fn);
539
540         DLIST_ADD_END(parent->sockets, s, struct smbd_open_socket *);
541
542         return true;
543 }
544
545 static bool parent_housekeeping_fn(const struct timeval *now, void *private_data)
546 {
547         DEBUG(5, ("houskeeping\n"));
548         /* check if we need to reload services */
549         check_reload(time(NULL));
550         return true;
551 }
552
553 /****************************************************************************
554  Open the socket communication.
555 ****************************************************************************/
556
557 static bool open_sockets_smbd(struct smbd_parent_context *parent,
558                               const char *smb_ports)
559 {
560         int num_interfaces = iface_count();
561         int i;
562         char *ports;
563         unsigned dns_port = 0;
564
565 #ifdef HAVE_ATEXIT
566         atexit(killkids);
567 #endif
568
569         /* Stop zombies */
570         smbd_setup_sig_chld_handler();
571
572         /* use a reasonable default set of ports - listing on 445 and 139 */
573         if (!smb_ports) {
574                 ports = lp_smb_ports();
575                 if (!ports || !*ports) {
576                         ports = talloc_strdup(talloc_tos(), SMB_PORTS);
577                 } else {
578                         ports = talloc_strdup(talloc_tos(), ports);
579                 }
580         } else {
581                 ports = talloc_strdup(talloc_tos(), smb_ports);
582         }
583
584         if (lp_interfaces() && lp_bind_interfaces_only()) {
585                 /* We have been given an interfaces line, and been
586                    told to only bind to those interfaces. Create a
587                    socket per interface and bind to only these.
588                 */
589
590                 /* Now open a listen socket for each of the
591                    interfaces. */
592                 for(i = 0; i < num_interfaces; i++) {
593                         const struct sockaddr_storage *ifss =
594                                         iface_n_sockaddr_storage(i);
595                         char *tok;
596                         const char *ptr;
597
598                         if (ifss == NULL) {
599                                 DEBUG(0,("open_sockets_smbd: "
600                                         "interface %d has NULL IP address !\n",
601                                         i));
602                                 continue;
603                         }
604
605                         for (ptr=ports;
606                              next_token_talloc(talloc_tos(),&ptr, &tok, " \t,");) {
607                                 unsigned port = atoi(tok);
608                                 if (port == 0 || port > 0xffff) {
609                                         continue;
610                                 }
611
612                                 /* Keep the first port for mDNS service
613                                  * registration.
614                                  */
615                                 if (dns_port == 0) {
616                                         dns_port = port;
617                                 }
618
619                                 if (!smbd_open_one_socket(parent, ifss, port)) {
620                                         return false;
621                                 }
622                         }
623                 }
624         } else {
625                 /* Just bind to 0.0.0.0 - accept connections
626                    from anywhere. */
627
628                 char *tok;
629                 const char *ptr;
630                 const char *sock_addr = lp_socket_address();
631                 char *sock_tok;
632                 const char *sock_ptr;
633
634                 if (strequal(sock_addr, "0.0.0.0") ||
635                     strequal(sock_addr, "::")) {
636 #if HAVE_IPV6
637                         sock_addr = "::,0.0.0.0";
638 #else
639                         sock_addr = "0.0.0.0";
640 #endif
641                 }
642
643                 for (sock_ptr=sock_addr;
644                      next_token_talloc(talloc_tos(), &sock_ptr, &sock_tok, " \t,"); ) {
645                         for (ptr=ports; next_token_talloc(talloc_tos(), &ptr, &tok, " \t,"); ) {
646                                 struct sockaddr_storage ss;
647
648                                 unsigned port = atoi(tok);
649                                 if (port == 0 || port > 0xffff) {
650                                         continue;
651                                 }
652
653                                 /* Keep the first port for mDNS service
654                                  * registration.
655                                  */
656                                 if (dns_port == 0) {
657                                         dns_port = port;
658                                 }
659
660                                 /* open an incoming socket */
661                                 if (!interpret_string_addr(&ss, sock_tok,
662                                                 AI_NUMERICHOST|AI_PASSIVE)) {
663                                         continue;
664                                 }
665
666                                 if (!smbd_open_one_socket(parent, &ss, port)) {
667                                         return false;
668                                 }
669                         }
670                 }
671         }
672
673         if (parent->sockets == NULL) {
674                 DEBUG(0,("open_sockets_smbd: No "
675                         "sockets available to bind to.\n"));
676                 return false;
677         }
678
679         /* Setup the main smbd so that we can get messages. Note that
680            do this after starting listening. This is needed as when in
681            clustered mode, ctdb won't allow us to start doing database
682            operations until it has gone thru a full startup, which
683            includes checking to see that smbd is listening. */
684         claim_connection(NULL,"",
685                          FLAG_MSG_GENERAL|FLAG_MSG_SMBD|FLAG_MSG_DBWRAP);
686
687         if (!(event_add_idle(smbd_event_context(), NULL,
688                              timeval_set(SMBD_HOUSEKEEPING_INTERVAL, 0),
689                              "parent_housekeeping", parent_housekeeping_fn,
690                              parent))) {
691                 DEBUG(0, ("Could not add housekeeping event\n"));
692                 exit(1);
693         }
694
695         /* Listen to messages */
696
697         messaging_register(smbd_messaging_context(), NULL,
698                            MSG_SMB_SAM_SYNC, msg_sam_sync);
699         messaging_register(smbd_messaging_context(), NULL,
700                            MSG_SHUTDOWN, msg_exit_server);
701         messaging_register(smbd_messaging_context(), NULL,
702                            MSG_SMB_FILE_RENAME, msg_file_was_renamed);
703         messaging_register(smbd_messaging_context(), NULL,
704                            MSG_SMB_CONF_UPDATED, smb_conf_updated);
705         messaging_register(smbd_messaging_context(), NULL,
706                            MSG_SMB_STAT_CACHE_DELETE, smb_stat_cache_delete);
707         messaging_register(smbd_messaging_context(), NULL,
708                            MSG_DEBUG, smbd_msg_debug);
709         brl_register_msgs(smbd_messaging_context());
710
711 #ifdef CLUSTER_SUPPORT
712         if (lp_clustering()) {
713                 ctdbd_register_reconfigure(messaging_ctdbd_connection());
714         }
715 #endif
716
717 #ifdef DEVELOPER
718         messaging_register(smbd_messaging_context(), NULL,
719                            MSG_SMB_INJECT_FAULT, msg_inject_fault);
720 #endif
721
722         if (dns_port != 0) {
723 #ifdef WITH_DNSSD_SUPPORT
724                 smbd_setup_mdns_registration(smbd_event_context(),
725                                              parent, dns_port);
726 #endif
727 #ifdef WITH_AVAHI_SUPPORT
728                 void *avahi_conn;
729
730                 avahi_conn = avahi_start_register(
731                         smbd_event_context(), smbd_event_context(), dns_port);
732                 if (avahi_conn == NULL) {
733                         DEBUG(10, ("avahi_start_register failed\n"));
734                 }
735 #endif
736         }
737
738         return true;
739 }
740
741 static void smbd_parent_loop(struct smbd_parent_context *parent)
742 {
743         /* now accept incoming connections - forking a new process
744            for each incoming connection */
745         DEBUG(2,("waiting for connections\n"));
746         while (1) {
747                 int ret;
748                 TALLOC_CTX *frame = talloc_stackframe();
749
750                 ret = tevent_loop_once(smbd_event_context());
751                 if (ret != 0) {
752                         exit_server_cleanly("tevent_loop_once() error");
753                 }
754
755                 TALLOC_FREE(frame);
756         } /* end while 1 */
757
758 /* NOTREACHED   return True; */
759 }
760
761 /***************************************************************************
762  purge stale printers and reload from pre-populated pcap cache
763 ***************************************************************************/
764 void reload_printers(void)
765 {
766         int snum;
767         int n_services = lp_numservices();
768         int pnum = lp_servicenumber(PRINTERS_NAME);
769         const char *pname;
770
771         DEBUG(10, ("reloading printer services from pcap cache\n"));
772         for (snum = 0; snum < n_services; snum++) {
773                 /* avoid removing PRINTERS_NAME or non-autoloaded printers */
774                 if (snum == pnum || !(lp_snum_ok(snum) && lp_print_ok(snum) &&
775                                       lp_autoloaded(snum)))
776                         continue;
777
778                 pname = lp_printername(snum);
779                 if (!pcap_printername_ok(pname)) {
780                         DEBUG(3, ("removing stale printer %s\n", pname));
781
782                         if (is_printer_published(NULL, snum, NULL))
783                                 nt_printer_publish(NULL, snum, DSPRINT_UNPUBLISH);
784                         del_a_printer(pname);
785                         lp_killservice(snum);
786                 }
787         }
788
789         load_printers();
790 }
791
792 /****************************************************************************
793  Reload the services file.
794 **************************************************************************/
795
796 bool reload_services(bool test)
797 {
798         bool ret;
799
800         if (lp_loaded()) {
801                 char *fname = lp_configfile();
802                 if (file_exist(fname) &&
803                     !strcsequal(fname, get_dyn_CONFIGFILE())) {
804                         set_dyn_CONFIGFILE(fname);
805                         test = False;
806                 }
807                 TALLOC_FREE(fname);
808         }
809
810         reopen_logs();
811
812         if (test && !lp_file_list_changed())
813                 return(True);
814
815         lp_killunused(conn_snum_used);
816
817         ret = lp_load(get_dyn_CONFIGFILE(), False, False, True, True);
818
819         pcap_cache_reload(&reload_printers);
820
821         /* perhaps the config filename is now set */
822         if (!test)
823                 reload_services(True);
824
825         reopen_logs();
826
827         load_interfaces();
828
829         if (smbd_server_fd() != -1) {
830                 set_socket_options(smbd_server_fd(),"SO_KEEPALIVE");
831                 set_socket_options(smbd_server_fd(), lp_socket_options());
832         }
833
834         mangle_reset_cache();
835         reset_stat_cache();
836
837         /* this forces service parameters to be flushed */
838         set_current_service(NULL,0,True);
839
840         return(ret);
841 }
842
843 /****************************************************************************
844  Exit the server.
845 ****************************************************************************/
846
847 /* Reasons for shutting down a server process. */
848 enum server_exit_reason { SERVER_EXIT_NORMAL, SERVER_EXIT_ABNORMAL };
849
850 static void exit_server_common(enum server_exit_reason how,
851         const char *const reason) _NORETURN_;
852
853 static void exit_server_common(enum server_exit_reason how,
854         const char *const reason)
855 {
856         bool had_open_conn = false;
857         struct smbd_server_connection *sconn = smbd_server_conn;
858
859         if (!exit_firsttime)
860                 exit(0);
861         exit_firsttime = false;
862
863         change_to_root_user();
864
865         if (sconn && sconn->smb1.negprot.auth_context) {
866                 struct auth_context *a = sconn->smb1.negprot.auth_context;
867                 a->free(&sconn->smb1.negprot.auth_context);
868         }
869
870         if (sconn) {
871                 had_open_conn = conn_close_all(sconn);
872                 invalidate_all_vuids(sconn);
873         }
874
875         /* 3 second timeout. */
876         print_notify_send_messages(smbd_messaging_context(), 3);
877
878         /* delete our entry in the connections database. */
879         yield_connection(NULL,"");
880
881 #ifdef WITH_DFS
882         if (dcelogin_atmost_once) {
883                 dfs_unlogin();
884         }
885 #endif
886
887 #ifdef USE_DMAPI
888         /* Destroy Samba DMAPI session only if we are master smbd process */
889         if (am_parent) {
890                 if (!dmapi_destroy_session()) {
891                         DEBUG(0,("Unable to close Samba DMAPI session\n"));
892                 }
893         }
894 #endif
895
896         locking_end();
897         printing_end();
898
899         /*
900          * we need to force the order of freeing the following,
901          * because smbd_msg_ctx is not a talloc child of smbd_server_conn.
902          */
903         sconn = NULL;
904         TALLOC_FREE(smbd_server_conn);
905         TALLOC_FREE(smbd_msg_ctx);
906         TALLOC_FREE(smbd_event_ctx);
907
908         if (how != SERVER_EXIT_NORMAL) {
909                 int oldlevel = DEBUGLEVEL;
910
911                 DEBUGLEVEL = 10;
912
913                 DEBUGSEP(0);
914                 DEBUG(0,("Abnormal server exit: %s\n",
915                         reason ? reason : "no explanation provided"));
916                 DEBUGSEP(0);
917
918                 log_stack_trace();
919
920                 DEBUGLEVEL = oldlevel;
921                 dump_core();
922
923         } else {    
924                 DEBUG(3,("Server exit (%s)\n",
925                         (reason ? reason : "normal exit")));
926                 if (am_parent) {
927                         pidfile_unlink();
928                 }
929                 gencache_stabilize();
930         }
931
932         /* if we had any open SMB connections when we exited then we
933            need to tell the parent smbd so that it can trigger a retry
934            of any locks we may have been holding or open files we were
935            blocking */
936         if (had_open_conn) {
937                 exit(1);
938         } else {
939                 exit(0);
940         }
941 }
942
943 void exit_server(const char *const explanation)
944 {
945         exit_server_common(SERVER_EXIT_ABNORMAL, explanation);
946 }
947
948 void exit_server_cleanly(const char *const explanation)
949 {
950         exit_server_common(SERVER_EXIT_NORMAL, explanation);
951 }
952
953 void exit_server_fault(void)
954 {
955         exit_server("critical server fault");
956 }
957
958 /****************************************************************************
959  Initialise connect, service and file structs.
960 ****************************************************************************/
961
962 static bool init_structs(void )
963 {
964         /*
965          * Set the machine NETBIOS name if not already
966          * set from the config file.
967          */
968
969         if (!init_names())
970                 return False;
971
972         file_init();
973
974         if (!secrets_init())
975                 return False;
976
977         return True;
978 }
979
980 /****************************************************************************
981  main program.
982 ****************************************************************************/
983
984 /* Declare prototype for build_options() to avoid having to run it through
985    mkproto.h.  Mixing $(builddir) and $(srcdir) source files in the current
986    prototype generation system is too complicated. */
987
988 extern void build_options(bool screen);
989
990  int main(int argc,const char *argv[])
991 {
992         /* shall I run as a daemon */
993         bool is_daemon = false;
994         bool interactive = false;
995         bool Fork = true;
996         bool no_process_group = false;
997         bool log_stdout = false;
998         char *ports = NULL;
999         char *profile_level = NULL;
1000         int opt;
1001         poptContext pc;
1002         bool print_build_options = False;
1003         enum {
1004                 OPT_DAEMON = 1000,
1005                 OPT_INTERACTIVE,
1006                 OPT_FORK,
1007                 OPT_NO_PROCESS_GROUP,
1008                 OPT_LOG_STDOUT
1009         };
1010         struct poptOption long_options[] = {
1011         POPT_AUTOHELP
1012         {"daemon", 'D', POPT_ARG_NONE, NULL, OPT_DAEMON, "Become a daemon (default)" },
1013         {"interactive", 'i', POPT_ARG_NONE, NULL, OPT_INTERACTIVE, "Run interactive (not a daemon)"},
1014         {"foreground", 'F', POPT_ARG_NONE, NULL, OPT_FORK, "Run daemon in foreground (for daemontools, etc.)" },
1015         {"no-process-group", '\0', POPT_ARG_NONE, NULL, OPT_NO_PROCESS_GROUP, "Don't create a new process group" },
1016         {"log-stdout", 'S', POPT_ARG_NONE, NULL, OPT_LOG_STDOUT, "Log to stdout" },
1017         {"build-options", 'b', POPT_ARG_NONE, NULL, 'b', "Print build options" },
1018         {"port", 'p', POPT_ARG_STRING, &ports, 0, "Listen on the specified ports"},
1019         {"profiling-level", 'P', POPT_ARG_STRING, &profile_level, 0, "Set profiling level","PROFILE_LEVEL"},
1020         POPT_COMMON_SAMBA
1021         POPT_COMMON_DYNCONFIG
1022         POPT_TABLEEND
1023         };
1024         struct smbd_parent_context *parent = NULL;
1025         TALLOC_CTX *frame = talloc_stackframe(); /* Setup tos. */
1026
1027         smbd_init_globals();
1028
1029         TimeInit();
1030
1031 #ifdef HAVE_SET_AUTH_PARAMETERS
1032         set_auth_parameters(argc,argv);
1033 #endif
1034
1035         pc = poptGetContext("smbd", argc, argv, long_options, 0);
1036         while((opt = poptGetNextOpt(pc)) != -1) {
1037                 switch (opt)  {
1038                 case OPT_DAEMON:
1039                         is_daemon = true;
1040                         break;
1041                 case OPT_INTERACTIVE:
1042                         interactive = true;
1043                         break;
1044                 case OPT_FORK:
1045                         Fork = false;
1046                         break;
1047                 case OPT_NO_PROCESS_GROUP:
1048                         no_process_group = true;
1049                         break;
1050                 case OPT_LOG_STDOUT:
1051                         log_stdout = true;
1052                         break;
1053                 case 'b':
1054                         print_build_options = True;
1055                         break;
1056                 default:
1057                         d_fprintf(stderr, "\nInvalid option %s: %s\n\n",
1058                                   poptBadOption(pc, 0), poptStrerror(opt));
1059                         poptPrintUsage(pc, stderr, 0);
1060                         exit(1);
1061                 }
1062         }
1063         poptFreeContext(pc);
1064
1065         if (interactive) {
1066                 Fork = False;
1067                 log_stdout = True;
1068         }
1069
1070         setup_logging(argv[0],log_stdout);
1071
1072         if (print_build_options) {
1073                 build_options(True); /* Display output to screen as well as debug */
1074                 exit(0);
1075         }
1076
1077         load_case_tables();
1078
1079 #ifdef HAVE_SETLUID
1080         /* needed for SecureWare on SCO */
1081         setluid(0);
1082 #endif
1083
1084         sec_init();
1085
1086         set_remote_machine_name("smbd", False);
1087
1088         if (interactive && (DEBUGLEVEL >= 9)) {
1089                 talloc_enable_leak_report();
1090         }
1091
1092         if (log_stdout && Fork) {
1093                 DEBUG(0,("ERROR: Can't log to stdout (-S) unless daemon is in foreground (-F) or interactive (-i)\n"));
1094                 exit(1);
1095         }
1096
1097         /* we want to re-seed early to prevent time delays causing
1098            client problems at a later date. (tridge) */
1099         generate_random_buffer(NULL, 0);
1100
1101         /* make absolutely sure we run as root - to handle cases where people
1102            are crazy enough to have it setuid */
1103
1104         gain_root_privilege();
1105         gain_root_group_privilege();
1106
1107         fault_setup((void (*)(void *))exit_server_fault);
1108         dump_core_setup("smbd");
1109
1110         /* we are never interested in SIGPIPE */
1111         BlockSignals(True,SIGPIPE);
1112
1113 #if defined(SIGFPE)
1114         /* we are never interested in SIGFPE */
1115         BlockSignals(True,SIGFPE);
1116 #endif
1117
1118 #if defined(SIGUSR2)
1119         /* We are no longer interested in USR2 */
1120         BlockSignals(True,SIGUSR2);
1121 #endif
1122
1123         /* POSIX demands that signals are inherited. If the invoking process has
1124          * these signals masked, we will have problems, as we won't recieve them. */
1125         BlockSignals(False, SIGHUP);
1126         BlockSignals(False, SIGUSR1);
1127         BlockSignals(False, SIGTERM);
1128
1129         /* Ensure we leave no zombies until we
1130          * correctly set up child handling below. */
1131
1132         CatchChild();
1133
1134         /* we want total control over the permissions on created files,
1135            so set our umask to 0 */
1136         umask(0);
1137
1138         init_sec_ctx();
1139
1140         reopen_logs();
1141
1142         DEBUG(0,("smbd version %s started.\n", samba_version_string()));
1143         DEBUGADD(0,("%s\n", COPYRIGHT_STARTUP_MESSAGE));
1144
1145         DEBUG(2,("uid=%d gid=%d euid=%d egid=%d\n",
1146                  (int)getuid(),(int)getgid(),(int)geteuid(),(int)getegid()));
1147
1148         /* Output the build options to the debug log */ 
1149         build_options(False);
1150
1151         if (sizeof(uint16) < 2 || sizeof(uint32) < 4) {
1152                 DEBUG(0,("ERROR: Samba is not configured correctly for the word size on your machine\n"));
1153                 exit(1);
1154         }
1155
1156         if (!lp_load_initial_only(get_dyn_CONFIGFILE())) {
1157                 DEBUG(0, ("error opening config file\n"));
1158                 exit(1);
1159         }
1160
1161         if (smbd_messaging_context() == NULL)
1162                 exit(1);
1163
1164         if (!reload_services(False))
1165                 return(-1);     
1166
1167         init_structs();
1168
1169 #ifdef WITH_PROFILE
1170         if (!profile_setup(smbd_messaging_context(), False)) {
1171                 DEBUG(0,("ERROR: failed to setup profiling\n"));
1172                 return -1;
1173         }
1174         if (profile_level != NULL) {
1175                 int pl = atoi(profile_level);
1176                 struct server_id src;
1177
1178                 DEBUG(1, ("setting profiling level: %s\n",profile_level));
1179                 src.pid = getpid();
1180                 set_profile_level(pl, src);
1181         }
1182 #endif
1183
1184         DEBUG(3,( "loaded services\n"));
1185
1186         if (!is_daemon && !is_a_socket(0)) {
1187                 if (!interactive)
1188                         DEBUG(0,("standard input is not a socket, assuming -D option\n"));
1189
1190                 /*
1191                  * Setting is_daemon here prevents us from eventually calling
1192                  * the open_sockets_inetd()
1193                  */
1194
1195                 is_daemon = True;
1196         }
1197
1198         if (is_daemon && !interactive) {
1199                 DEBUG( 3, ( "Becoming a daemon.\n" ) );
1200                 become_daemon(Fork, no_process_group);
1201         }
1202
1203 #if HAVE_SETPGID
1204         /*
1205          * If we're interactive we want to set our own process group for
1206          * signal management.
1207          */
1208         if (interactive && !no_process_group)
1209                 setpgid( (pid_t)0, (pid_t)0);
1210 #endif
1211
1212         if (!directory_exist(lp_lockdir()))
1213                 mkdir(lp_lockdir(), 0755);
1214
1215         if (is_daemon)
1216                 pidfile_create("smbd");
1217
1218         if (!NT_STATUS_IS_OK(reinit_after_fork(smbd_messaging_context(),
1219                              smbd_event_context(), false))) {
1220                 DEBUG(0,("reinit_after_fork() failed\n"));
1221                 exit(1);
1222         }
1223
1224         smbd_setup_sig_term_handler();
1225         smbd_setup_sig_hup_handler();
1226
1227         /* Setup all the TDB's - including CLEAR_IF_FIRST tdb's. */
1228
1229         if (smbd_memcache() == NULL) {
1230                 exit(1);
1231         }
1232
1233         memcache_set_global(smbd_memcache());
1234
1235         /* Initialise the password backed before the global_sam_sid
1236            to ensure that we fetch from ldap before we make a domain sid up */
1237
1238         if(!initialize_password_db(False, smbd_event_context()))
1239                 exit(1);
1240
1241         if (!secrets_init()) {
1242                 DEBUG(0, ("ERROR: smbd can not open secrets.tdb\n"));
1243                 exit(1);
1244         }
1245
1246         if(!get_global_sam_sid()) {
1247                 DEBUG(0,("ERROR: Samba cannot create a SAM SID.\n"));
1248                 exit(1);
1249         }
1250
1251         if (!session_init())
1252                 exit(1);
1253
1254         if (!connections_init(True))
1255                 exit(1);
1256
1257         if (!locking_init())
1258                 exit(1);
1259
1260         namecache_enable();
1261
1262         if (!W_ERROR_IS_OK(registry_init_full()))
1263                 exit(1);
1264
1265 #if 0
1266         if (!init_svcctl_db())
1267                 exit(1);
1268 #endif
1269
1270         if (!print_backend_init(smbd_messaging_context()))
1271                 exit(1);
1272
1273         if (!init_guest_info()) {
1274                 DEBUG(0,("ERROR: failed to setup guest info.\n"));
1275                 return -1;
1276         }
1277
1278         /* Open the share_info.tdb here, so we don't have to open
1279            after the fork on every single connection.  This is a small
1280            performance improvment and reduces the total number of system
1281            fds used. */
1282         if (!share_info_db_init()) {
1283                 DEBUG(0,("ERROR: failed to load share info db.\n"));
1284                 exit(1);
1285         }
1286
1287         /* only start the background queue daemon if we are 
1288            running as a daemon -- bad things will happen if
1289            smbd is launched via inetd and we fork a copy of 
1290            ourselves here */
1291
1292         if (is_daemon && !interactive
1293             && lp_parm_bool(-1, "smbd", "backgroundqueue", true)) {
1294                 start_background_queue();
1295         }
1296
1297         if (!is_daemon) {
1298                 /* inetd mode */
1299                 TALLOC_FREE(frame);
1300
1301                 /* Started from inetd. fd 0 is the socket. */
1302                 /* We will abort gracefully when the client or remote system
1303                    goes away */
1304                 smbd_set_server_fd(dup(0));
1305
1306                 /* close our standard file descriptors */
1307                 close_low_fds(False); /* Don't close stderr */
1308
1309 #ifdef HAVE_ATEXIT
1310                 atexit(killkids);
1311 #endif
1312
1313                 /* Stop zombies */
1314                 smbd_setup_sig_chld_handler();
1315
1316                 smbd_process();
1317
1318                 exit_server_cleanly(NULL);
1319                 return(0);
1320         }
1321
1322         parent = talloc_zero(smbd_event_context(), struct smbd_parent_context);
1323         if (!parent) {
1324                 exit_server("talloc(struct smbd_parent_context) failed");
1325         }
1326         parent->interactive = interactive;
1327
1328         if (!open_sockets_smbd(parent, ports))
1329                 exit_server("open_sockets_smbd() failed");
1330
1331         TALLOC_FREE(frame);
1332         /* make sure we always have a valid stackframe */
1333         frame = talloc_stackframe();
1334
1335         smbd_parent_loop(parent);
1336
1337         exit_server_cleanly(NULL);
1338         TALLOC_FREE(frame);
1339         return(0);
1340 }