chiark / gitweb /
skip entire rule containing device naming keys, if no device can be named
[elogind.git] / udev / udevd.c
1 /*
2  * Copyright (C) 2004-2008 Kay Sievers <kay.sievers@vrfy.org>
3  * Copyright (C) 2004 Chris Friesen <chris_friesen@sympatico.ca>
4  *
5  * This program is free software: you can redistribute it and/or modify
6  * it under the terms of the GNU General Public License as published by
7  * the Free Software Foundation, either version 2 of the License, or
8  * (at your option) any later version.
9  *
10  * This program is distributed in the hope that it will be useful,
11  * but WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13  * GNU General Public License for more details.
14  *
15  * You should have received a copy of the GNU General Public License
16  * along with this program.  If not, see <http://www.gnu.org/licenses/>.
17  */
18
19 #include <stddef.h>
20 #include <signal.h>
21 #include <unistd.h>
22 #include <errno.h>
23 #include <stdio.h>
24 #include <stdlib.h>
25 #include <string.h>
26 #include <ctype.h>
27 #include <fcntl.h>
28 #include <time.h>
29 #include <getopt.h>
30 #include <sys/select.h>
31 #include <sys/wait.h>
32 #include <sys/stat.h>
33 #include <sys/ioctl.h>
34 #ifdef HAVE_INOTIFY
35 #include <sys/inotify.h>
36 #endif
37
38 #include "udev.h"
39
40 #define UDEVD_PRIORITY                  -4
41 #define UDEV_PRIORITY                   -2
42
43 /* maximum limit of forked childs */
44 #define UDEVD_MAX_CHILDS                256
45
46 static int debug;
47
48 static void log_fn(struct udev *udev, int priority,
49                    const char *file, int line, const char *fn,
50                    const char *format, va_list args)
51 {
52         if (debug) {
53                 fprintf(stderr, "[%d] %s: ", (int) getpid(), fn);
54                 vfprintf(stderr, format, args);
55         } else {
56                 vsyslog(priority, format, args);
57         }
58 }
59
60 static int debug_trace;
61 static struct udev_rules *rules;
62 static struct udev_ctrl *udev_ctrl;
63 static struct udev_monitor *kernel_monitor;
64 static int inotify_fd = -1;
65 static int signal_pipe[2] = {-1, -1};
66 static volatile int sigchilds_waiting;
67 static volatile int udev_exit;
68 static volatile int reload_config;
69 static int run_exec_q;
70 static int stop_exec_q;
71 static int max_childs;
72 static int childs;
73 static struct udev_list_node event_list;
74
75 enum event_state {
76         EVENT_QUEUED,
77         EVENT_FINISHED,
78         EVENT_FAILED,
79 };
80
81 static struct udev_event *node_to_event(struct udev_list_node *node)
82 {
83         char *event;
84
85         event = (char *)node;
86         event -= offsetof(struct udev_event, node);
87         return (struct udev_event *)event;
88 }
89
90 static void export_event_state(struct udev_event *event, enum event_state state)
91 {
92         char filename[UTIL_PATH_SIZE];
93         char filename_failed[UTIL_PATH_SIZE];
94         size_t start;
95
96         /* location of queue file */
97         snprintf(filename, sizeof(filename), "%s/.udev/queue/%llu",
98                  udev_get_dev_path(event->udev), udev_device_get_seqnum(event->dev));
99
100         /* location of failed file */
101         util_strlcpy(filename_failed, udev_get_dev_path(event->udev), sizeof(filename_failed));
102         util_strlcat(filename_failed, "/", sizeof(filename_failed));
103         start = util_strlcat(filename_failed, ".udev/failed/", sizeof(filename_failed));
104         util_strlcat(filename_failed, udev_device_get_devpath(event->dev), sizeof(filename_failed));
105         util_path_encode(&filename_failed[start], sizeof(filename_failed) - start);
106
107         switch (state) {
108         case EVENT_QUEUED:
109                 if(unlink(filename_failed) == 0)
110                         util_delete_path(event->udev, filename_failed);
111                 util_create_path(event->udev, filename);
112                 udev_selinux_setfscreatecon(event->udev, filename, S_IFLNK);
113                 symlink(udev_device_get_devpath(event->dev), filename);
114                 udev_selinux_resetfscreatecon(event->udev);
115                 break;
116         case EVENT_FINISHED:
117                 if (udev_device_get_devpath_old(event->dev) != NULL) {
118                         /* "move" event - rename failed file to current name, do not delete failed */
119                         char filename_failed_old[UTIL_PATH_SIZE];
120
121                         util_strlcpy(filename_failed_old, udev_get_dev_path(event->udev), sizeof(filename_failed_old));
122                         util_strlcat(filename_failed_old, "/", sizeof(filename_failed_old));
123                         start = util_strlcat(filename_failed_old, ".udev/failed/", sizeof(filename_failed_old));
124                         util_strlcat(filename_failed_old, udev_device_get_devpath_old(event->dev), sizeof(filename_failed_old));
125                         util_path_encode(&filename_failed_old[start], sizeof(filename) - start);
126
127                         if (rename(filename_failed_old, filename_failed) == 0)
128                                 info(event->udev, "renamed devpath, moved failed state of '%s' to %s'\n",
129                                      udev_device_get_devpath_old(event->dev), udev_device_get_devpath(event->dev));
130                 } else {
131                         if (unlink(filename_failed) == 0)
132                                 util_delete_path(event->udev, filename_failed);
133                 }
134
135                 unlink(filename);
136
137                 /* clean up possibly empty queue directory */
138                 if (udev_list_is_empty(&event_list))
139                         util_delete_path(event->udev, filename);
140                 break;
141         case EVENT_FAILED:
142                 /* move failed event to the failed directory */
143                 util_create_path(event->udev, filename_failed);
144                 rename(filename, filename_failed);
145
146                 /* clean up possibly empty queue directory */
147                 if (udev_list_is_empty(&event_list))
148                         util_delete_path(event->udev, filename);
149                 break;
150         }
151
152         return;
153 }
154
155 static void event_queue_delete(struct udev_event *event)
156 {
157         udev_list_node_remove(&event->node);
158
159         /* mark as failed, if "add" event returns non-zero */
160         if (event->exitstatus && strcmp(udev_device_get_action(event->dev), "add") == 0)
161                 export_event_state(event, EVENT_FAILED);
162         else
163                 export_event_state(event, EVENT_FINISHED);
164
165         udev_device_unref(event->dev);
166         udev_event_unref(event);
167 }
168
169 static void asmlinkage event_sig_handler(int signum)
170 {
171         if (signum == SIGALRM)
172                 exit(1);
173 }
174
175 static void event_fork(struct udev_event *event)
176 {
177         pid_t pid;
178         struct sigaction act;
179         int err;
180
181         if (debug_trace) {
182                 event->trace = 1;
183                 fprintf(stderr, "fork %s (%llu)\n",
184                        udev_device_get_syspath(event->dev),
185                        udev_device_get_seqnum(event->dev));
186         }
187
188         pid = fork();
189         switch (pid) {
190         case 0:
191                 /* child */
192                 udev_monitor_unref(kernel_monitor);
193                 udev_ctrl_unref(udev_ctrl);
194                 if (inotify_fd >= 0)
195                         close(inotify_fd);
196                 close(signal_pipe[READ_END]);
197                 close(signal_pipe[WRITE_END]);
198                 logging_close();
199                 logging_init("udevd-event");
200                 setpriority(PRIO_PROCESS, 0, UDEV_PRIORITY);
201
202                 /* set signal handlers */
203                 memset(&act, 0x00, sizeof(act));
204                 act.sa_handler = (void (*)(int)) event_sig_handler;
205                 sigemptyset (&act.sa_mask);
206                 act.sa_flags = 0;
207                 sigaction(SIGALRM, &act, NULL);
208
209                 /* reset to default */
210                 act.sa_handler = SIG_DFL;
211                 sigaction(SIGINT, &act, NULL);
212                 sigaction(SIGTERM, &act, NULL);
213                 sigaction(SIGCHLD, &act, NULL);
214                 sigaction(SIGHUP, &act, NULL);
215
216                 /* set timeout to prevent hanging processes */
217                 alarm(UDEV_EVENT_TIMEOUT);
218
219                 /* apply rules, create node, symlinks */
220                 err = udev_event_execute_rules(event, rules);
221
222                 /* rules may change/disable the timeout */
223                 if (udev_device_get_event_timeout(event->dev) >= 0)
224                         alarm(udev_device_get_event_timeout(event->dev));
225
226                 /* execute RUN= */
227                 if (err == 0 && !event->ignore_device && udev_get_run(event->udev))
228                         udev_event_execute_run(event);
229
230                 info(event->udev, "seq %llu exit with %i\n", udev_device_get_seqnum(event->dev), err);
231                 logging_close();
232                 if (err != 0)
233                         exit(1);
234                 exit(0);
235         case -1:
236                 err(event->udev, "fork of child failed: %m\n");
237                 event_queue_delete(event);
238                 break;
239         default:
240                 /* get SIGCHLD in main loop */
241                 info(event->udev, "seq %llu forked, pid [%d], '%s' '%s', %ld seconds old\n",
242                      udev_device_get_seqnum(event->dev),
243                      pid,
244                      udev_device_get_action(event->dev),
245                      udev_device_get_subsystem(event->dev),
246                      time(NULL) - event->queue_time);
247                 event->pid = pid;
248                 childs++;
249         }
250 }
251
252 static void event_queue_insert(struct udev_event *event)
253 {
254         char filename[UTIL_PATH_SIZE];
255         int fd;
256
257         event->queue_time = time(NULL);
258
259         export_event_state(event, EVENT_QUEUED);
260         info(event->udev, "seq %llu queued, '%s' '%s'\n", udev_device_get_seqnum(event->dev),
261              udev_device_get_action(event->dev), udev_device_get_subsystem(event->dev));
262
263         util_strlcpy(filename, udev_get_dev_path(event->udev), sizeof(filename));
264         util_strlcat(filename, "/.udev/uevent_seqnum", sizeof(filename));
265         fd = open(filename, O_WRONLY|O_TRUNC|O_CREAT, 0644);
266         if (fd >= 0) {
267                 char str[32];
268                 int len;
269
270                 len = sprintf(str, "%llu\n", udev_device_get_seqnum(event->dev));
271                 write(fd, str, len);
272                 close(fd);
273         }
274
275
276         udev_list_node_append(&event->node, &event_list);
277         run_exec_q = 1;
278
279         /* run all events with a timeout set immediately */
280         if (udev_device_get_timeout(event->dev) > 0) {
281                 event_fork(event);
282                 return;
283         }
284 }
285
286 static int mem_size_mb(void)
287 {
288         FILE* f;
289         char buf[4096];
290         long int memsize = -1;
291
292         f = fopen("/proc/meminfo", "r");
293         if (f == NULL)
294                 return -1;
295
296         while (fgets(buf, sizeof(buf), f) != NULL) {
297                 long int value;
298
299                 if (sscanf(buf, "MemTotal: %ld kB", &value) == 1) {
300                         memsize = value / 1024;
301                         break;
302                 }
303         }
304
305         fclose(f);
306         return memsize;
307 }
308
309 static int compare_devpath(const char *running, const char *waiting)
310 {
311         int i = 0;
312
313         while (running[i] != '\0' && running[i] == waiting[i])
314                 i++;
315
316         /* identical device event found */
317         if (running[i] == '\0' && waiting[i] == '\0')
318                 return 1;
319
320         /* parent device event found */
321         if (running[i] == '\0' && waiting[i] == '/')
322                 return 2;
323
324         /* child device event found */
325         if (running[i] == '/' && waiting[i] == '\0')
326                 return 3;
327
328         /* no matching event */
329         return 0;
330 }
331
332 /* lookup event for identical, parent, child, or physical device */
333 static int devpath_busy(struct udev_event *event)
334 {
335         struct udev_list_node *loop;
336
337         if (event->delaying_seqnum > 0) {
338         }
339         /* check if queue contains events we depend on */
340         udev_list_node_foreach(loop, &event_list) {
341                 struct udev_event *loop_event = node_to_event(loop);
342
343                 /* we already found a later event, earlier can not block us, no need to check again */
344                 if (udev_device_get_seqnum(loop_event->dev) < event->delaying_seqnum)
345                         continue;
346
347                 /* event we checked earlier still exists, no need to check again */
348                 if (udev_device_get_seqnum(loop_event->dev) == event->delaying_seqnum)
349                         return 2;
350
351                 /* found ourself, no later event can block us */
352                 if (udev_device_get_seqnum(loop_event->dev) >= udev_device_get_seqnum(event->dev))
353                         break;
354
355                 /* check our old name */
356                 if (udev_device_get_devpath_old(event->dev) != NULL)
357                         if (strcmp(udev_device_get_devpath(loop_event->dev), udev_device_get_devpath_old(event->dev)) == 0) {
358                                 event->delaying_seqnum = udev_device_get_seqnum(loop_event->dev);
359                                 return 3;
360                         }
361
362                 /* check identical, parent, or child device event */
363                 if (compare_devpath(udev_device_get_devpath(loop_event->dev), udev_device_get_devpath(event->dev)) != 0) {
364                         dbg(event->udev, "%llu, device event still pending %llu (%s)\n",
365                             udev_device_get_seqnum(event->dev),
366                             udev_device_get_seqnum(loop_event->dev),
367                             udev_device_get_devpath(loop_event->dev));
368                         event->delaying_seqnum = udev_device_get_seqnum(loop_event->dev);
369                         return 4;
370                 }
371
372                 /* check for our major:minor number */
373                 if (major(udev_device_get_devnum(event->dev)) > 0 &&
374                     udev_device_get_devnum(loop_event->dev) == udev_device_get_devnum(event->dev) &&
375                     strcmp(udev_device_get_subsystem(event->dev), udev_device_get_subsystem(loop_event->dev)) == 0) {
376                         dbg(event->udev, "%llu, device event still pending %llu (%d:%d)\n",
377                             udev_device_get_seqnum(event->dev),
378                             udev_device_get_seqnum(loop_event->dev),
379                             major(udev_device_get_devnum(loop_event->dev)), minor(udev_device_get_devnum(loop_event->dev)));
380                         event->delaying_seqnum = udev_device_get_seqnum(loop_event->dev);
381                         return 5;
382                 }
383
384                 /* check physical device event (special case of parent) */
385                 if (udev_device_get_physdevpath(event->dev) != NULL &&
386                     strcmp(udev_device_get_action(event->dev), "add") == 0)
387                         if (compare_devpath(udev_device_get_devpath(loop_event->dev),
388                                             udev_device_get_physdevpath(event->dev)) != 0) {
389                                 dbg(event->udev, "%llu, physical device event still pending %llu (%s)\n",
390                                     udev_device_get_seqnum(event->dev),
391                                     udev_device_get_seqnum(loop_event->dev),
392                                     udev_device_get_devpath(loop_event->dev));
393                                 event->delaying_seqnum = udev_device_get_seqnum(loop_event->dev);
394                                 return 6;
395                         }
396         }
397         return 0;
398 }
399
400 /* serializes events for the identical and parent and child devices */
401 static void event_queue_manager(struct udev *udev)
402 {
403         struct udev_list_node *loop;
404         struct udev_list_node *tmp;
405
406         if (udev_list_is_empty(&event_list)) {
407                 if (childs > 0) {
408                         err(udev, "event list empty, but childs count is %i", childs);
409                         childs = 0;
410                 }
411                 return;
412         }
413
414         udev_list_node_foreach_safe(loop, tmp, &event_list) {
415                 struct udev_event *loop_event = node_to_event(loop);
416
417                 if (childs >= max_childs) {
418                         info(udev, "maximum number (%i) of childs reached\n", childs);
419                         break;
420                 }
421
422                 if (loop_event->pid != 0)
423                         continue;
424
425                 /* do not start event if parent or child event is still running */
426                 if (devpath_busy(loop_event) != 0) {
427                         dbg(udev, "delay seq %llu (%s)\n",
428                             udev_device_get_seqnum(loop_event->dev),
429                             udev_device_get_devpath(loop_event->dev));
430                         continue;
431                 }
432
433                 event_fork(loop_event);
434                 dbg(udev, "moved seq %llu to running list\n", udev_device_get_seqnum(loop_event->dev));
435         }
436 }
437
438 /* receive the udevd message from userspace */
439 static void handle_ctrl_msg(struct udev_ctrl *uctrl)
440 {
441         struct udev *udev = udev_ctrl_get_udev(uctrl);
442         struct udev_ctrl_msg *ctrl_msg;
443         const char *str;
444         int i;
445
446         ctrl_msg = udev_ctrl_receive_msg(uctrl);
447         if (ctrl_msg == NULL)
448                 return;
449
450         i = udev_ctrl_get_set_log_level(ctrl_msg);
451         if (i >= 0) {
452                 info(udev, "udevd message (SET_LOG_PRIORITY) received, log_priority=%i\n", i);
453                 udev_set_log_priority(udev, i);
454         }
455
456         if (udev_ctrl_get_stop_exec_queue(ctrl_msg) > 0) {
457                 info(udev, "udevd message (STOP_EXEC_QUEUE) received\n");
458                 stop_exec_q = 1;
459         }
460
461         if (udev_ctrl_get_start_exec_queue(ctrl_msg) > 0) {
462                 info(udev, "udevd message (START_EXEC_QUEUE) received\n");
463                 stop_exec_q = 0;
464                 event_queue_manager(udev);
465         }
466
467         if (udev_ctrl_get_reload_rules(ctrl_msg) > 0) {
468                 info(udev, "udevd message (RELOAD_RULES) received\n");
469                 reload_config = 1;
470         }
471
472         str = udev_ctrl_get_set_env(ctrl_msg);
473         if (str != NULL) {
474                 char *key;
475
476                 key = strdup(str);
477                 if (key != NULL) {
478                         char *val;
479
480                         val = strchr(key, '=');
481                         if (val != NULL) {
482                                 val[0] = '\0';
483                                 val = &val[1];
484                                 if (val[0] == '\0') {
485                                         info(udev, "udevd message (ENV) received, unset '%s'\n", key);
486                                         udev_add_property(udev, key, NULL);
487                                 } else {
488                                         info(udev, "udevd message (ENV) received, set '%s=%s'\n", key, val);
489                                         udev_add_property(udev, key, val);
490                                 }
491                         } else {
492                                 err(udev, "wrong key format '%s'\n", key);
493                         }
494                         free(key);
495                 }
496         }
497
498         i = udev_ctrl_get_set_max_childs(ctrl_msg);
499         if (i >= 0) {
500                 info(udev, "udevd message (SET_MAX_CHILDS) received, max_childs=%i\n", i);
501                 max_childs = i;
502         }
503         udev_ctrl_msg_unref(ctrl_msg);
504 }
505
506 static void asmlinkage sig_handler(int signum)
507 {
508         switch (signum) {
509                 case SIGINT:
510                 case SIGTERM:
511                         udev_exit = 1;
512                         break;
513                 case SIGCHLD:
514                         /* set flag, then write to pipe if needed */
515                         sigchilds_waiting = 1;
516                         break;
517                 case SIGHUP:
518                         reload_config = 1;
519                         break;
520         }
521
522         /* write to pipe, which will wakeup select() in our mainloop */
523         write(signal_pipe[WRITE_END], "", 1);
524 }
525
526 static void udev_done(int pid, int exitstatus)
527 {
528         struct udev_list_node *loop;
529
530         /* find event associated with pid and delete it */
531         udev_list_node_foreach(loop, &event_list) {
532                 struct udev_event *loop_event = node_to_event(loop);
533
534                 if (loop_event->pid == pid) {
535                         info(loop_event->udev, "seq %llu cleanup, pid [%d], status %i, %ld seconds old\n",
536                              udev_device_get_seqnum(loop_event->dev), loop_event->pid,
537                              exitstatus, time(NULL) - loop_event->queue_time);
538                         loop_event->exitstatus = exitstatus;
539                         if (debug_trace)
540                                 fprintf(stderr, "exit %s (%llu)\n",
541                                        udev_device_get_syspath(loop_event->dev),
542                                        udev_device_get_seqnum(loop_event->dev));
543                         event_queue_delete(loop_event);
544                         childs--;
545
546                         /* there may be dependent events waiting */
547                         run_exec_q = 1;
548                         return;
549                 }
550         }
551 }
552
553 static void reap_sigchilds(void)
554 {
555         pid_t pid;
556         int status;
557
558         while (1) {
559                 pid = waitpid(-1, &status, WNOHANG);
560                 if (pid <= 0)
561                         break;
562                 if (WIFEXITED(status))
563                         status = WEXITSTATUS(status);
564                 else if (WIFSIGNALED(status))
565                         status = WTERMSIG(status) + 128;
566                 else
567                         status = 0;
568                 udev_done(pid, status);
569         }
570 }
571
572 static void export_initial_seqnum(struct udev *udev)
573 {
574         char filename[UTIL_PATH_SIZE];
575         int fd;
576         char seqnum[32];
577         ssize_t len = 0;
578
579         util_strlcpy(filename, udev_get_sys_path(udev), sizeof(filename));
580         util_strlcat(filename, "/kernel/uevent_seqnum", sizeof(filename));
581         fd = open(filename, O_RDONLY);
582         if (fd >= 0) {
583                 len = read(fd, seqnum, sizeof(seqnum)-1);
584                 close(fd);
585         }
586         if (len <= 0) {
587                 strcpy(seqnum, "0\n");
588                 len = 3;
589         }
590         util_strlcpy(filename, udev_get_dev_path(udev), sizeof(filename));
591         util_strlcat(filename, "/.udev/uevent_seqnum", sizeof(filename));
592         util_create_path(udev, filename);
593         fd = open(filename, O_WRONLY|O_TRUNC|O_CREAT, 0644);
594         if (fd >= 0) {
595                 write(fd, seqnum, len);
596                 close(fd);
597         }
598 }
599
600 int main(int argc, char *argv[])
601 {
602         struct udev *udev;
603         int err;
604         int fd;
605         struct sigaction act;
606         fd_set readfds;
607         const char *value;
608         int daemonize = 0;
609         static const struct option options[] = {
610                 { "daemon", no_argument, NULL, 'd' },
611                 { "debug-trace", no_argument, NULL, 't' },
612                 { "debug", no_argument, NULL, 'D' },
613                 { "help", no_argument, NULL, 'h' },
614                 { "version", no_argument, NULL, 'V' },
615                 {}
616         };
617         int rc = 1;
618         int maxfd;
619
620         udev = udev_new();
621         if (udev == NULL)
622                 goto exit;
623
624         logging_init("udevd");
625         udev_set_log_fn(udev, log_fn);
626         info(udev, "version %s\n", VERSION);
627         udev_selinux_init(udev);
628
629         while (1) {
630                 int option;
631
632                 option = getopt_long(argc, argv, "dDthV", options, NULL);
633                 if (option == -1)
634                         break;
635
636                 switch (option) {
637                 case 'd':
638                         daemonize = 1;
639                         break;
640                 case 't':
641                         debug_trace = 1;
642                         break;
643                 case 'D':
644                         debug = 1;
645                         if (udev_get_log_priority(udev) < LOG_INFO)
646                                 udev_set_log_priority(udev, LOG_INFO);
647                         break;
648                 case 'h':
649                         printf("Usage: udevd [--help] [--daemon] [--debug-trace] [--debug] [--version]\n");
650                         goto exit;
651                 case 'V':
652                         printf("%s\n", VERSION);
653                         goto exit;
654                 default:
655                         goto exit;
656                 }
657         }
658
659         if (getuid() != 0) {
660                 fprintf(stderr, "root privileges required\n");
661                 err(udev, "root privileges required\n");
662                 goto exit;
663         }
664
665         /* make sure std{in,out,err} fd's are in a sane state */
666         fd = open("/dev/null", O_RDWR);
667         if (fd < 0) {
668                 fprintf(stderr, "cannot open /dev/null\n");
669                 err(udev, "cannot open /dev/null\n");
670         }
671         if (write(STDOUT_FILENO, 0, 0) < 0)
672                 dup2(fd, STDOUT_FILENO);
673         if (write(STDERR_FILENO, 0, 0) < 0)
674                 dup2(fd, STDERR_FILENO);
675
676         /* init control socket, bind() ensures, that only one udevd instance is running */
677         udev_ctrl = udev_ctrl_new_from_socket(udev, UDEV_CTRL_SOCK_PATH);
678         if (udev_ctrl == NULL) {
679                 fprintf(stderr, "error initializing control socket");
680                 err(udev, "error initializing udevd socket");
681                 rc = 1;
682                 goto exit;
683         }
684
685         if (udev_ctrl_enable_receiving(udev_ctrl) < 0) {
686                 fprintf(stderr, "error binding control socket, seems udevd is already running\n");
687                 err(udev, "error binding control socket, seems udevd is already running\n");
688                 rc = 1;
689                 goto exit;
690         }
691
692         kernel_monitor = udev_monitor_new_from_netlink(udev);
693         if (kernel_monitor == NULL || udev_monitor_enable_receiving(kernel_monitor) < 0) {
694                 fprintf(stderr, "error initializing netlink socket\n");
695                 err(udev, "error initializing netlink socket\n");
696                 rc = 3;
697                 goto exit;
698         }
699         udev_monitor_set_receive_buffer_size(kernel_monitor, 128*1024*1024);
700
701         err = pipe(signal_pipe);
702         if (err < 0) {
703                 err(udev, "error getting pipes: %m\n");
704                 goto exit;
705         }
706
707         err = fcntl(signal_pipe[READ_END], F_GETFL, 0);
708         if (err < 0) {
709                 err(udev, "error fcntl on read pipe: %m\n");
710                 goto exit;
711         }
712         err = fcntl(signal_pipe[READ_END], F_SETFL, err | O_NONBLOCK);
713         if (err < 0) {
714                 err(udev, "error fcntl on read pipe: %m\n");
715                 goto exit;
716         }
717
718         err = fcntl(signal_pipe[WRITE_END], F_GETFL, 0);
719         if (err < 0) {
720                 err(udev, "error fcntl on write pipe: %m\n");
721                 goto exit;
722         }
723         err = fcntl(signal_pipe[WRITE_END], F_SETFL, err | O_NONBLOCK);
724         if (err < 0) {
725                 err(udev, "error fcntl on write pipe: %m\n");
726                 goto exit;
727         }
728
729         rules = udev_rules_new(udev, 1);
730         if (rules == NULL) {
731                 err(udev, "error reading rules\n");
732                 goto exit;
733         }
734         udev_list_init(&event_list);
735         export_initial_seqnum(udev);
736
737         if (daemonize) {
738                 pid_t pid;
739
740                 pid = fork();
741                 switch (pid) {
742                 case 0:
743                         dbg(udev, "daemonized fork running\n");
744                         break;
745                 case -1:
746                         err(udev, "fork of daemon failed: %m\n");
747                         rc = 4;
748                         goto exit;
749                 default:
750                         dbg(udev, "child [%u] running, parent exits\n", pid);
751                         rc = 0;
752                         goto exit;
753                 }
754         }
755
756         /* redirect std{out,err} */
757         if (!debug && !debug_trace) {
758                 dup2(fd, STDIN_FILENO);
759                 dup2(fd, STDOUT_FILENO);
760                 dup2(fd, STDERR_FILENO);
761         }
762         if (fd > STDERR_FILENO)
763                 close(fd);
764
765         /* set scheduling priority for the daemon */
766         setpriority(PRIO_PROCESS, 0, UDEVD_PRIORITY);
767
768         chdir("/");
769         umask(022);
770         setsid();
771
772         /* OOM_DISABLE == -17 */
773         fd = open("/proc/self/oom_adj", O_RDWR);
774         if (fd < 0)
775                 err(udev, "error disabling OOM: %m\n");
776         else {
777                 write(fd, "-17", 3);
778                 close(fd);
779         }
780
781         fd = open("/dev/kmsg", O_WRONLY);
782         if (fd > 0) {
783                 const char *ver_str = "<6>udev: starting version " VERSION "\n";
784                 char path[UTIL_PATH_SIZE];
785                 struct stat statbuf;
786
787                 write(fd, ver_str, strlen(ver_str));
788                 util_strlcpy(path, udev_get_sys_path(udev), sizeof(path));
789                 util_strlcat(path, "/class/mem/null", sizeof(path));
790                 if (lstat(path, &statbuf) == 0) {
791                         if (S_ISDIR(statbuf.st_mode)) {
792                                 const char *depr_str = "<6>udev: deprecated sysfs layout (kernel too old, "
793                                                         "or CONFIG_SYSFS_DEPRECATED) is unsupported, some "
794                                                         "udev features may fail\n";
795
796                                 write(fd, depr_str, strlen(depr_str));
797                         }
798                 }
799                 close(fd);
800         }
801
802         /* set signal handlers */
803         memset(&act, 0x00, sizeof(struct sigaction));
804         act.sa_handler = (void (*)(int)) sig_handler;
805         sigemptyset(&act.sa_mask);
806         act.sa_flags = SA_RESTART;
807         sigaction(SIGINT, &act, NULL);
808         sigaction(SIGTERM, &act, NULL);
809         sigaction(SIGCHLD, &act, NULL);
810         sigaction(SIGHUP, &act, NULL);
811
812         /* watch rules directory */
813         inotify_fd = inotify_init();
814         if (inotify_fd >= 0) {
815                 if (udev_get_rules_path(udev) != NULL) {
816                         inotify_add_watch(inotify_fd, udev_get_rules_path(udev),
817                                           IN_CREATE | IN_DELETE | IN_MOVE | IN_CLOSE_WRITE);
818                 } else {
819                         char filename[UTIL_PATH_SIZE];
820
821                         inotify_add_watch(inotify_fd, UDEV_PREFIX "/lib/udev/rules.d",
822                                           IN_CREATE | IN_DELETE | IN_MOVE | IN_CLOSE_WRITE);
823                         inotify_add_watch(inotify_fd, SYSCONFDIR "/udev/rules.d",
824                                           IN_CREATE | IN_DELETE | IN_MOVE | IN_CLOSE_WRITE);
825
826                         /* watch dynamic rules directory */
827                         util_strlcpy(filename, udev_get_dev_path(udev), sizeof(filename));
828                         util_strlcat(filename, "/.udev/rules.d", sizeof(filename));
829                         inotify_add_watch(inotify_fd, filename,
830                                           IN_CREATE | IN_DELETE | IN_MOVE | IN_CLOSE_WRITE);
831                 }
832         } else if (errno == ENOSYS)
833                 err(udev, "the kernel does not support inotify, udevd can't monitor rules file changes\n");
834         else
835                 err(udev, "inotify_init failed: %m\n");
836
837         /* in trace mode run one event after the other */
838         if (debug_trace) {
839                 max_childs = 1;
840         } else {
841                 int memsize = mem_size_mb();
842                 if (memsize > 0)
843                         max_childs = 128 + (memsize / 4);
844                 else
845                         max_childs = UDEVD_MAX_CHILDS;
846         }
847         /* possibly overwrite maximum limit of executed events */
848         value = getenv("UDEVD_MAX_CHILDS");
849         if (value)
850                 max_childs = strtoul(value, NULL, 10);
851         info(udev, "initialize max_childs to %u\n", max_childs);
852
853         maxfd = udev_ctrl_get_fd(udev_ctrl);
854         maxfd = UDEV_MAX(maxfd, udev_monitor_get_fd(kernel_monitor));
855         maxfd = UDEV_MAX(maxfd, signal_pipe[READ_END]);
856         maxfd = UDEV_MAX(maxfd, inotify_fd);
857         while (!udev_exit) {
858                 int fdcount;
859
860                 FD_ZERO(&readfds);
861                 FD_SET(signal_pipe[READ_END], &readfds);
862                 FD_SET(udev_ctrl_get_fd(udev_ctrl), &readfds);
863                 FD_SET(udev_monitor_get_fd(kernel_monitor), &readfds);
864                 if (inotify_fd >= 0)
865                         FD_SET(inotify_fd, &readfds);
866                 fdcount = select(maxfd+1, &readfds, NULL, NULL, NULL);
867                 if (fdcount < 0) {
868                         if (errno != EINTR)
869                                 err(udev, "error in select: %m\n");
870                         continue;
871                 }
872
873                 /* get control message */
874                 if (FD_ISSET(udev_ctrl_get_fd(udev_ctrl), &readfds))
875                         handle_ctrl_msg(udev_ctrl);
876
877                 /* get kernel uevent */
878                 if (FD_ISSET(udev_monitor_get_fd(kernel_monitor), &readfds)) {
879                         struct udev_device *dev;
880
881                         dev = udev_monitor_receive_device(kernel_monitor);
882                         if (dev != NULL) {
883                                 struct udev_event *event;
884
885                                 event = udev_event_new(dev);
886                                 if (event != NULL)
887                                         event_queue_insert(event);
888                                 else
889                                         udev_device_unref(dev);
890                         }
891                 }
892
893                 /* received a signal, clear our notification pipe */
894                 if (FD_ISSET(signal_pipe[READ_END], &readfds)) {
895                         char buf[256];
896
897                         read(signal_pipe[READ_END], &buf, sizeof(buf));
898                 }
899
900                 /* rules directory inotify watch */
901                 if ((inotify_fd >= 0) && FD_ISSET(inotify_fd, &readfds)) {
902                         int nbytes;
903
904                         /* discard all possible events, we can just reload the config */
905                         if ((ioctl(inotify_fd, FIONREAD, &nbytes) == 0) && nbytes > 0) {
906                                 char *buf;
907
908                                 reload_config = 1;
909                                 buf = malloc(nbytes);
910                                 if (buf == NULL) {
911                                         err(udev, "error getting buffer for inotify, disable watching\n");
912                                         close(inotify_fd);
913                                         inotify_fd = -1;
914                                 }
915                                 read(inotify_fd, buf, nbytes);
916                                 free(buf);
917                         }
918                 }
919
920                 /* rules changed, set by inotify or a HUP signal */
921                 if (reload_config) {
922                         struct udev_rules *rules_new;
923
924                         reload_config = 0;
925                         rules_new = udev_rules_new(udev, 1);
926                         if (rules_new != NULL) {
927                                 udev_rules_unref(rules);
928                                 rules = rules_new;
929                         }
930                 }
931
932                 if (sigchilds_waiting) {
933                         sigchilds_waiting = 0;
934                         reap_sigchilds();
935                 }
936
937                 if (run_exec_q) {
938                         run_exec_q = 0;
939                         if (!stop_exec_q)
940                                 event_queue_manager(udev);
941                 }
942         }
943         rc = 0;
944
945 exit:
946         udev_rules_unref(rules);
947
948         if (signal_pipe[READ_END] >= 0)
949                 close(signal_pipe[READ_END]);
950         if (signal_pipe[WRITE_END] >= 0)
951                 close(signal_pipe[WRITE_END]);
952
953         udev_ctrl_unref(udev_ctrl);
954         if (inotify_fd >= 0)
955                 close(inotify_fd);
956         udev_monitor_unref(kernel_monitor);
957
958         udev_selinux_exit(udev);
959         udev_unref(udev);
960         logging_close();
961         return rc;
962 }