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udev: util - use log_level_from_string()
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7fafc032 1/*
1298001e 2 * Copyright (C) 2004-2012 Kay Sievers <kay@vrfy.org>
2f6cbd19 3 * Copyright (C) 2004 Chris Friesen <chris_friesen@sympatico.ca>
bb38678e
SJR
4 * Copyright (C) 2009 Canonical Ltd.
5 * Copyright (C) 2009 Scott James Remnant <scott@netsplit.com>
7fafc032 6 *
55e9959b
KS
7 * This program is free software: you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation, either version 2 of the License, or
10 * (at your option) any later version.
7fafc032 11 *
55e9959b
KS
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
7fafc032 16 *
55e9959b
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17 * You should have received a copy of the GNU General Public License
18 * along with this program. If not, see <http://www.gnu.org/licenses/>.
7fafc032
KS
19 */
20
a695feae 21#include <stddef.h>
7fafc032
KS
22#include <signal.h>
23#include <unistd.h>
24#include <errno.h>
25#include <stdio.h>
26#include <stdlib.h>
c3804728 27#include <stdbool.h>
7fafc032 28#include <string.h>
085cce37 29#include <ctype.h>
085cce37 30#include <fcntl.h>
0b3dfb3d 31#include <time.h>
b52a01ee 32#include <getopt.h>
78230c0d 33#include <dirent.h>
3ebdb81e 34#include <sys/file.h>
820fc48f 35#include <sys/time.h>
1e03b754
KS
36#include <sys/prctl.h>
37#include <sys/socket.h>
a65aa40f 38#include <sys/un.h>
1e03b754 39#include <sys/signalfd.h>
ff2c503d 40#include <sys/epoll.h>
ede34445 41#include <sys/mount.h>
3210a72b 42#include <sys/poll.h>
138068d6 43#include <sys/wait.h>
dc117daa 44#include <sys/stat.h>
c895fd00 45#include <sys/ioctl.h>
01618658 46#include <sys/inotify.h>
761dfddc 47#include <sys/utsname.h>
7fafc032
KS
48
49#include "udev.h"
f3a740a5 50#include "udev-util.h"
4c83d994 51#include "rtnl-util.h"
392ef7a2 52#include "sd-daemon.h"
194bbe33 53#include "cgroup-util.h"
5ba2dc25 54#include "dev-setup.h"
a5c32cff 55#include "fileio.h"
7fafc032 56
80df994c 57void udev_main_log(struct udev *udev, int priority,
912541b0 58 const char *file, int line, const char *fn,
9ec6e95b 59 const char *format, va_list args) {
baa30fbc 60 log_metav(priority, file, line, fn, format, args);
7d563a17
KS
61}
62
d7ddce18 63static struct udev_rules *rules;
d59f11e1 64static struct udev_ctrl *udev_ctrl;
1e03b754 65static struct udev_monitor *monitor;
3c6ee190 66static int worker_watch[2] = { -1, -1 };
ff2c503d
KS
67static int fd_signal = -1;
68static int fd_ep = -1;
69static int fd_inotify = -1;
c3804728 70static bool stop_exec_queue;
7c85d636 71static bool reload;
87d55ff6 72static int children;
bba7a484
TG
73static bool arg_debug = false;
74static int arg_daemonize = false;
75static int arg_resolve_names = 1;
76static int arg_children_max;
77static int arg_exec_delay;
78static usec_t arg_event_timeout_usec = 180 * USEC_PER_SEC;
79static usec_t arg_event_timeout_warn_usec = 180 * USEC_PER_SEC / 3;
2181d30a 80static sigset_t sigmask_orig;
ff2c503d
KS
81static UDEV_LIST(event_list);
82static UDEV_LIST(worker_list);
e3dc56a2 83static char *udev_cgroup;
c3804728 84static bool udev_exit;
1e03b754 85
1e03b754 86enum event_state {
912541b0
KS
87 EVENT_UNDEF,
88 EVENT_QUEUED,
89 EVENT_RUNNING,
1e03b754
KS
90};
91
92struct event {
912541b0
KS
93 struct udev_list_node node;
94 struct udev *udev;
95 struct udev_device *dev;
96 enum event_state state;
97 int exitcode;
98 unsigned long long int delaying_seqnum;
99 unsigned long long int seqnum;
100 const char *devpath;
101 size_t devpath_len;
102 const char *devpath_old;
103 dev_t devnum;
912541b0 104 int ifindex;
ea6039a3 105 bool is_block;
1e03b754
KS
106};
107
9ec6e95b 108static inline struct event *node_to_event(struct udev_list_node *node) {
b27ee00b 109 return container_of(node, struct event, node);
1e03b754
KS
110}
111
ff2c503d
KS
112static void event_queue_cleanup(struct udev *udev, enum event_state type);
113
1e03b754 114enum worker_state {
912541b0
KS
115 WORKER_UNDEF,
116 WORKER_RUNNING,
117 WORKER_IDLE,
118 WORKER_KILLED,
1e03b754
KS
119};
120
121struct worker {
912541b0
KS
122 struct udev_list_node node;
123 struct udev *udev;
124 int refcount;
125 pid_t pid;
126 struct udev_monitor *monitor;
127 enum worker_state state;
128 struct event *event;
40fe8b11 129 usec_t event_start_usec;
67117413 130 bool event_warned;
1e03b754
KS
131};
132
133/* passed from worker to main process */
134struct worker_message {
912541b0
KS
135 pid_t pid;
136 int exitcode;
1e03b754
KS
137};
138
9ec6e95b 139static inline struct worker *node_to_worker(struct udev_list_node *node) {
b27ee00b 140 return container_of(node, struct worker, node);
7e027927
KS
141}
142
9ec6e95b 143static void event_queue_delete(struct event *event) {
912541b0 144 udev_list_node_remove(&event->node);
912541b0
KS
145 udev_device_unref(event->dev);
146 free(event);
aa8734ff 147}
7a770250 148
9ec6e95b 149static struct worker *worker_ref(struct worker *worker) {
912541b0
KS
150 worker->refcount++;
151 return worker;
bc113de9
KS
152}
153
9ec6e95b 154static void worker_cleanup(struct worker *worker) {
912541b0
KS
155 udev_list_node_remove(&worker->node);
156 udev_monitor_unref(worker->monitor);
157 children--;
158 free(worker);
ff2c503d
KS
159}
160
9ec6e95b 161static void worker_unref(struct worker *worker) {
912541b0
KS
162 worker->refcount--;
163 if (worker->refcount > 0)
164 return;
9f6445e3 165 log_debug("worker [%u] cleaned up", worker->pid);
912541b0 166 worker_cleanup(worker);
ff2c503d
KS
167}
168
9ec6e95b 169static void worker_list_cleanup(struct udev *udev) {
912541b0 170 struct udev_list_node *loop, *tmp;
ff2c503d 171
912541b0
KS
172 udev_list_node_foreach_safe(loop, tmp, &worker_list) {
173 struct worker *worker = node_to_worker(loop);
ff2c503d 174
912541b0
KS
175 worker_cleanup(worker);
176 }
fc465079
KS
177}
178
9ec6e95b 179static void worker_new(struct event *event) {
912541b0
KS
180 struct udev *udev = event->udev;
181 struct worker *worker;
182 struct udev_monitor *worker_monitor;
183 pid_t pid;
184
185 /* listen for new events */
186 worker_monitor = udev_monitor_new_from_netlink(udev, NULL);
187 if (worker_monitor == NULL)
188 return;
189 /* allow the main daemon netlink address to send devices to the worker */
190 udev_monitor_allow_unicast_sender(worker_monitor, monitor);
191 udev_monitor_enable_receiving(worker_monitor);
192
955d98c9 193 worker = new0(struct worker, 1);
912541b0
KS
194 if (worker == NULL) {
195 udev_monitor_unref(worker_monitor);
196 return;
197 }
198 /* worker + event reference */
199 worker->refcount = 2;
200 worker->udev = udev;
201
202 pid = fork();
203 switch (pid) {
204 case 0: {
205 struct udev_device *dev = NULL;
206 int fd_monitor;
4c83d994 207 _cleanup_rtnl_unref_ sd_rtnl *rtnl = NULL;
912541b0
KS
208 struct epoll_event ep_signal, ep_monitor;
209 sigset_t mask;
210 int rc = EXIT_SUCCESS;
211
43095991 212 /* take initial device from queue */
912541b0
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213 dev = event->dev;
214 event->dev = NULL;
215
216 free(worker);
217 worker_list_cleanup(udev);
218 event_queue_cleanup(udev, EVENT_UNDEF);
912541b0
KS
219 udev_monitor_unref(monitor);
220 udev_ctrl_unref(udev_ctrl);
221 close(fd_signal);
222 close(fd_ep);
223 close(worker_watch[READ_END]);
224
225 sigfillset(&mask);
226 fd_signal = signalfd(-1, &mask, SFD_NONBLOCK|SFD_CLOEXEC);
227 if (fd_signal < 0) {
9f6445e3 228 log_error("error creating signalfd %m");
912541b0
KS
229 rc = 2;
230 goto out;
231 }
232
233 fd_ep = epoll_create1(EPOLL_CLOEXEC);
234 if (fd_ep < 0) {
9f6445e3 235 log_error("error creating epoll fd: %m");
912541b0
KS
236 rc = 3;
237 goto out;
238 }
239
29804cc1 240 memzero(&ep_signal, sizeof(struct epoll_event));
912541b0
KS
241 ep_signal.events = EPOLLIN;
242 ep_signal.data.fd = fd_signal;
243
244 fd_monitor = udev_monitor_get_fd(worker_monitor);
29804cc1 245 memzero(&ep_monitor, sizeof(struct epoll_event));
912541b0
KS
246 ep_monitor.events = EPOLLIN;
247 ep_monitor.data.fd = fd_monitor;
248
249 if (epoll_ctl(fd_ep, EPOLL_CTL_ADD, fd_signal, &ep_signal) < 0 ||
250 epoll_ctl(fd_ep, EPOLL_CTL_ADD, fd_monitor, &ep_monitor) < 0) {
9f6445e3 251 log_error("fail to add fds to epoll: %m");
912541b0
KS
252 rc = 4;
253 goto out;
254 }
255
256 /* request TERM signal if parent exits */
257 prctl(PR_SET_PDEATHSIG, SIGTERM);
258
145dae7e 259 /* reset OOM score, we only protect the main daemon */
574d5f2d 260 write_string_file("/proc/self/oom_score_adj", "0");
145dae7e 261
912541b0
KS
262 for (;;) {
263 struct udev_event *udev_event;
264 struct worker_message msg;
3ebdb81e 265 int fd_lock = -1;
bf9bead1 266 int err = 0;
912541b0 267
9f6445e3 268 log_debug("seq %llu running", udev_device_get_seqnum(dev));
912541b0
KS
269 udev_event = udev_event_new(dev);
270 if (udev_event == NULL) {
271 rc = 5;
272 goto out;
273 }
274
275 /* needed for SIGCHLD/SIGTERM in spawn() */
276 udev_event->fd_signal = fd_signal;
277
bba7a484
TG
278 if (arg_exec_delay > 0)
279 udev_event->exec_delay = arg_exec_delay;
912541b0 280
3ebdb81e 281 /*
2e5b17d0 282 * Take a shared lock on the device node; this establishes
3ebdb81e 283 * a concept of device "ownership" to serialize device
2e5b17d0 284 * access. External processes holding an exclusive lock will
3ebdb81e 285 * cause udev to skip the event handling; in the case udev
2e5b17d0 286 * acquired the lock, the external process can block until
3ebdb81e
KS
287 * udev has finished its event handling.
288 */
2e5b17d0
KS
289 if (!streq_ptr(udev_device_get_action(dev), "remove") &&
290 streq_ptr("block", udev_device_get_subsystem(dev)) &&
291 !startswith(udev_device_get_sysname(dev), "dm-") &&
292 !startswith(udev_device_get_sysname(dev), "md")) {
3ebdb81e
KS
293 struct udev_device *d = dev;
294
295 if (streq_ptr("partition", udev_device_get_devtype(d)))
296 d = udev_device_get_parent(d);
297
298 if (d) {
299 fd_lock = open(udev_device_get_devnode(d), O_RDONLY|O_CLOEXEC|O_NOFOLLOW|O_NONBLOCK);
300 if (fd_lock >= 0 && flock(fd_lock, LOCK_SH|LOCK_NB) < 0) {
301 log_debug("Unable to flock(%s), skipping event handling: %m", udev_device_get_devnode(d));
302 err = -EWOULDBLOCK;
3d06f418 303 fd_lock = safe_close(fd_lock);
3ebdb81e
KS
304 goto skip;
305 }
306 }
307 }
308
4c83d994
TG
309 /* needed for renaming netifs */
310 udev_event->rtnl = rtnl;
311
912541b0 312 /* apply rules, create node, symlinks */
bba7a484 313 udev_event_execute_rules(udev_event, arg_event_timeout_usec, arg_event_timeout_warn_usec, rules, &sigmask_orig);
912541b0 314
bba7a484 315 udev_event_execute_run(udev_event, arg_event_timeout_usec, arg_event_timeout_warn_usec, &sigmask_orig);
912541b0 316
4c83d994
TG
317 /* in case rtnl was initialized */
318 rtnl = sd_rtnl_ref(udev_event->rtnl);
319
912541b0 320 /* apply/restore inotify watch */
bf9bead1 321 if (udev_event->inotify_watch) {
912541b0
KS
322 udev_watch_begin(udev, dev);
323 udev_device_update_db(dev);
324 }
325
3d06f418 326 safe_close(fd_lock);
3ebdb81e 327
912541b0
KS
328 /* send processed event back to libudev listeners */
329 udev_monitor_send_device(worker_monitor, NULL, dev);
330
3ebdb81e 331skip:
912541b0 332 /* send udevd the result of the event execution */
29804cc1 333 memzero(&msg, sizeof(struct worker_message));
3ebdb81e 334 msg.exitcode = err;
912541b0
KS
335 msg.pid = getpid();
336 send(worker_watch[WRITE_END], &msg, sizeof(struct worker_message), 0);
337
9f6445e3 338 log_debug("seq %llu processed with %i", udev_device_get_seqnum(dev), err);
912541b0
KS
339
340 udev_device_unref(dev);
341 dev = NULL;
342
73814ca2
CW
343 if (udev_event->sigterm) {
344 udev_event_unref(udev_event);
47e737dc 345 goto out;
73814ca2
CW
346 }
347
348 udev_event_unref(udev_event);
47e737dc 349
912541b0
KS
350 /* wait for more device messages from main udevd, or term signal */
351 while (dev == NULL) {
352 struct epoll_event ev[4];
353 int fdcount;
354 int i;
355
8fef0ff2 356 fdcount = epoll_wait(fd_ep, ev, ELEMENTSOF(ev), -1);
912541b0
KS
357 if (fdcount < 0) {
358 if (errno == EINTR)
359 continue;
9f6445e3 360 log_error("failed to poll: %m");
912541b0
KS
361 goto out;
362 }
363
364 for (i = 0; i < fdcount; i++) {
365 if (ev[i].data.fd == fd_monitor && ev[i].events & EPOLLIN) {
366 dev = udev_monitor_receive_device(worker_monitor);
367 break;
368 } else if (ev[i].data.fd == fd_signal && ev[i].events & EPOLLIN) {
369 struct signalfd_siginfo fdsi;
370 ssize_t size;
371
372 size = read(fd_signal, &fdsi, sizeof(struct signalfd_siginfo));
373 if (size != sizeof(struct signalfd_siginfo))
374 continue;
375 switch (fdsi.ssi_signo) {
376 case SIGTERM:
377 goto out;
378 }
379 }
380 }
381 }
382 }
82063a88 383out:
912541b0 384 udev_device_unref(dev);
3d06f418
KS
385 safe_close(fd_signal);
386 safe_close(fd_ep);
912541b0
KS
387 close(fd_inotify);
388 close(worker_watch[WRITE_END]);
389 udev_rules_unref(rules);
e64fae55 390 udev_builtin_exit(udev);
912541b0
KS
391 udev_monitor_unref(worker_monitor);
392 udev_unref(udev);
baa30fbc 393 log_close();
912541b0
KS
394 exit(rc);
395 }
396 case -1:
397 udev_monitor_unref(worker_monitor);
398 event->state = EVENT_QUEUED;
399 free(worker);
9f6445e3 400 log_error("fork of child failed: %m");
912541b0
KS
401 break;
402 default:
403 /* close monitor, but keep address around */
404 udev_monitor_disconnect(worker_monitor);
405 worker->monitor = worker_monitor;
406 worker->pid = pid;
407 worker->state = WORKER_RUNNING;
40fe8b11 408 worker->event_start_usec = now(CLOCK_MONOTONIC);
67117413 409 worker->event_warned = false;
912541b0
KS
410 worker->event = event;
411 event->state = EVENT_RUNNING;
412 udev_list_node_append(&worker->node, &worker_list);
413 children++;
9f6445e3 414 log_debug("seq %llu forked new worker [%u]", udev_device_get_seqnum(event->dev), pid);
912541b0
KS
415 break;
416 }
7fafc032
KS
417}
418
9ec6e95b 419static void event_run(struct event *event) {
912541b0
KS
420 struct udev_list_node *loop;
421
422 udev_list_node_foreach(loop, &worker_list) {
423 struct worker *worker = node_to_worker(loop);
424 ssize_t count;
425
426 if (worker->state != WORKER_IDLE)
427 continue;
428
429 count = udev_monitor_send_device(monitor, worker->monitor, event->dev);
430 if (count < 0) {
9f6445e3 431 log_error("worker [%u] did not accept message %zi (%m), kill it", worker->pid, count);
912541b0
KS
432 kill(worker->pid, SIGKILL);
433 worker->state = WORKER_KILLED;
434 continue;
435 }
436 worker_ref(worker);
437 worker->event = event;
438 worker->state = WORKER_RUNNING;
40fe8b11 439 worker->event_start_usec = now(CLOCK_MONOTONIC);
67117413 440 worker->event_warned = false;
912541b0
KS
441 event->state = EVENT_RUNNING;
442 return;
443 }
444
bba7a484
TG
445 if (children >= arg_children_max) {
446 if (arg_children_max > 1)
9f6445e3 447 log_debug("maximum number (%i) of children reached", children);
912541b0
KS
448 return;
449 }
450
451 /* start new worker and pass initial device */
452 worker_new(event);
1e03b754
KS
453}
454
9ec6e95b 455static int event_queue_insert(struct udev_device *dev) {
912541b0
KS
456 struct event *event;
457
955d98c9 458 event = new0(struct event, 1);
912541b0
KS
459 if (event == NULL)
460 return -1;
461
462 event->udev = udev_device_get_udev(dev);
463 event->dev = dev;
464 event->seqnum = udev_device_get_seqnum(dev);
465 event->devpath = udev_device_get_devpath(dev);
466 event->devpath_len = strlen(event->devpath);
467 event->devpath_old = udev_device_get_devpath_old(dev);
468 event->devnum = udev_device_get_devnum(dev);
ea6039a3 469 event->is_block = streq("block", udev_device_get_subsystem(dev));
912541b0
KS
470 event->ifindex = udev_device_get_ifindex(dev);
471
9f6445e3 472 log_debug("seq %llu queued, '%s' '%s'", udev_device_get_seqnum(dev),
912541b0
KS
473 udev_device_get_action(dev), udev_device_get_subsystem(dev));
474
475 event->state = EVENT_QUEUED;
476 udev_list_node_append(&event->node, &event_list);
477 return 0;
fc465079
KS
478}
479
9ec6e95b 480static void worker_kill(struct udev *udev) {
912541b0 481 struct udev_list_node *loop;
1e03b754 482
912541b0
KS
483 udev_list_node_foreach(loop, &worker_list) {
484 struct worker *worker = node_to_worker(loop);
1e03b754 485
912541b0
KS
486 if (worker->state == WORKER_KILLED)
487 continue;
1e03b754 488
912541b0
KS
489 worker->state = WORKER_KILLED;
490 kill(worker->pid, SIGTERM);
491 }
1e03b754
KS
492}
493
e3196993 494/* lookup event for identical, parent, child device */
9ec6e95b 495static bool is_devpath_busy(struct event *event) {
912541b0
KS
496 struct udev_list_node *loop;
497 size_t common;
498
499 /* check if queue contains events we depend on */
500 udev_list_node_foreach(loop, &event_list) {
501 struct event *loop_event = node_to_event(loop);
502
503 /* we already found a later event, earlier can not block us, no need to check again */
504 if (loop_event->seqnum < event->delaying_seqnum)
505 continue;
506
507 /* event we checked earlier still exists, no need to check again */
508 if (loop_event->seqnum == event->delaying_seqnum)
509 return true;
510
511 /* found ourself, no later event can block us */
512 if (loop_event->seqnum >= event->seqnum)
513 break;
514
515 /* check major/minor */
516 if (major(event->devnum) != 0 && event->devnum == loop_event->devnum && event->is_block == loop_event->is_block)
517 return true;
518
519 /* check network device ifindex */
520 if (event->ifindex != 0 && event->ifindex == loop_event->ifindex)
521 return true;
522
523 /* check our old name */
090be865 524 if (event->devpath_old != NULL && streq(loop_event->devpath, event->devpath_old)) {
912541b0
KS
525 event->delaying_seqnum = loop_event->seqnum;
526 return true;
527 }
528
529 /* compare devpath */
530 common = MIN(loop_event->devpath_len, event->devpath_len);
531
532 /* one devpath is contained in the other? */
533 if (memcmp(loop_event->devpath, event->devpath, common) != 0)
534 continue;
535
536 /* identical device event found */
537 if (loop_event->devpath_len == event->devpath_len) {
538 /* devices names might have changed/swapped in the meantime */
539 if (major(event->devnum) != 0 && (event->devnum != loop_event->devnum || event->is_block != loop_event->is_block))
540 continue;
541 if (event->ifindex != 0 && event->ifindex != loop_event->ifindex)
542 continue;
543 event->delaying_seqnum = loop_event->seqnum;
544 return true;
545 }
546
547 /* parent device event found */
548 if (event->devpath[common] == '/') {
549 event->delaying_seqnum = loop_event->seqnum;
550 return true;
551 }
552
553 /* child device event found */
554 if (loop_event->devpath[common] == '/') {
555 event->delaying_seqnum = loop_event->seqnum;
556 return true;
557 }
558
559 /* no matching device */
560 continue;
561 }
562
563 return false;
7fafc032
KS
564}
565
9ec6e95b 566static void event_queue_start(struct udev *udev) {
912541b0 567 struct udev_list_node *loop;
8ab44e3f 568
912541b0
KS
569 udev_list_node_foreach(loop, &event_list) {
570 struct event *event = node_to_event(loop);
0bc74ea7 571
912541b0
KS
572 if (event->state != EVENT_QUEUED)
573 continue;
0bc74ea7 574
912541b0 575 /* do not start event if parent or child event is still running */
baa30fbc 576 if (is_devpath_busy(event))
912541b0 577 continue;
fc465079 578
912541b0
KS
579 event_run(event);
580 }
1e03b754
KS
581}
582
9ec6e95b 583static void event_queue_cleanup(struct udev *udev, enum event_state match_type) {
912541b0 584 struct udev_list_node *loop, *tmp;
ff2c503d 585
912541b0
KS
586 udev_list_node_foreach_safe(loop, tmp, &event_list) {
587 struct event *event = node_to_event(loop);
ff2c503d 588
912541b0
KS
589 if (match_type != EVENT_UNDEF && match_type != event->state)
590 continue;
ff2c503d 591
9ea28c55 592 event_queue_delete(event);
912541b0 593 }
ff2c503d
KS
594}
595
9ec6e95b 596static void worker_returned(int fd_worker) {
912541b0
KS
597 for (;;) {
598 struct worker_message msg;
599 ssize_t size;
600 struct udev_list_node *loop;
601
602 size = recv(fd_worker, &msg, sizeof(struct worker_message), MSG_DONTWAIT);
603 if (size != sizeof(struct worker_message))
604 break;
605
606 /* lookup worker who sent the signal */
607 udev_list_node_foreach(loop, &worker_list) {
608 struct worker *worker = node_to_worker(loop);
609
610 if (worker->pid != msg.pid)
611 continue;
612
613 /* worker returned */
e64fae55
KS
614 if (worker->event) {
615 worker->event->exitcode = msg.exitcode;
9ea28c55 616 event_queue_delete(worker->event);
e64fae55
KS
617 worker->event = NULL;
618 }
912541b0
KS
619 if (worker->state != WORKER_KILLED)
620 worker->state = WORKER_IDLE;
621 worker_unref(worker);
622 break;
623 }
624 }
88f4b648
KS
625}
626
3b47c739 627/* receive the udevd message from userspace */
9ec6e95b 628static struct udev_ctrl_connection *handle_ctrl_msg(struct udev_ctrl *uctrl) {
912541b0
KS
629 struct udev *udev = udev_ctrl_get_udev(uctrl);
630 struct udev_ctrl_connection *ctrl_conn;
631 struct udev_ctrl_msg *ctrl_msg = NULL;
632 const char *str;
633 int i;
634
635 ctrl_conn = udev_ctrl_get_connection(uctrl);
636 if (ctrl_conn == NULL)
637 goto out;
638
639 ctrl_msg = udev_ctrl_receive_msg(ctrl_conn);
640 if (ctrl_msg == NULL)
641 goto out;
642
643 i = udev_ctrl_get_set_log_level(ctrl_msg);
644 if (i >= 0) {
ed14edc0 645 log_debug("udevd message (SET_LOG_LEVEL) received, log_priority=%i", i);
baa30fbc 646 log_set_max_level(i);
912541b0 647 udev_set_log_priority(udev, i);
194bbe33 648 worker_kill(udev);
912541b0
KS
649 }
650
651 if (udev_ctrl_get_stop_exec_queue(ctrl_msg) > 0) {
9f6445e3 652 log_debug("udevd message (STOP_EXEC_QUEUE) received");
912541b0
KS
653 stop_exec_queue = true;
654 }
655
656 if (udev_ctrl_get_start_exec_queue(ctrl_msg) > 0) {
9f6445e3 657 log_debug("udevd message (START_EXEC_QUEUE) received");
912541b0
KS
658 stop_exec_queue = false;
659 }
660
661 if (udev_ctrl_get_reload(ctrl_msg) > 0) {
9f6445e3 662 log_debug("udevd message (RELOAD) received");
912541b0
KS
663 reload = true;
664 }
665
666 str = udev_ctrl_get_set_env(ctrl_msg);
667 if (str != NULL) {
668 char *key;
669
670 key = strdup(str);
671 if (key != NULL) {
672 char *val;
673
674 val = strchr(key, '=');
675 if (val != NULL) {
676 val[0] = '\0';
677 val = &val[1];
678 if (val[0] == '\0') {
9f6445e3 679 log_debug("udevd message (ENV) received, unset '%s'", key);
912541b0
KS
680 udev_add_property(udev, key, NULL);
681 } else {
9f6445e3 682 log_debug("udevd message (ENV) received, set '%s=%s'", key, val);
912541b0
KS
683 udev_add_property(udev, key, val);
684 }
685 } else {
9f6445e3 686 log_error("wrong key format '%s'", key);
912541b0
KS
687 }
688 free(key);
689 }
194bbe33 690 worker_kill(udev);
912541b0
KS
691 }
692
693 i = udev_ctrl_get_set_children_max(ctrl_msg);
694 if (i >= 0) {
9f6445e3 695 log_debug("udevd message (SET_MAX_CHILDREN) received, children_max=%i", i);
bba7a484 696 arg_children_max = i;
912541b0
KS
697 }
698
699 if (udev_ctrl_get_ping(ctrl_msg) > 0)
9f6445e3 700 log_debug("udevd message (SYNC) received");
912541b0
KS
701
702 if (udev_ctrl_get_exit(ctrl_msg) > 0) {
9f6445e3 703 log_debug("udevd message (EXIT) received");
912541b0
KS
704 udev_exit = true;
705 /* keep reference to block the client until we exit */
706 udev_ctrl_connection_ref(ctrl_conn);
707 }
ff2c503d 708out:
912541b0
KS
709 udev_ctrl_msg_unref(ctrl_msg);
710 return udev_ctrl_connection_unref(ctrl_conn);
88f4b648 711}
4a231017 712
f3a740a5 713static int synthesize_change(struct udev_device *dev) {
edd32000 714 char filename[UTIL_PATH_SIZE];
f3a740a5 715 int r;
edd32000 716
f3a740a5 717 if (streq_ptr("block", udev_device_get_subsystem(dev)) &&
ede34445 718 streq_ptr("disk", udev_device_get_devtype(dev)) &&
638ca89c 719 !startswith(udev_device_get_sysname(dev), "dm-")) {
e9fc29f4
KS
720 bool part_table_read = false;
721 bool has_partitions = false;
ede34445 722 int fd;
f3a740a5
KS
723 struct udev *udev = udev_device_get_udev(dev);
724 _cleanup_udev_enumerate_unref_ struct udev_enumerate *e = NULL;
725 struct udev_list_entry *item;
726
ede34445 727 /*
e9fc29f4
KS
728 * Try to re-read the partition table. This only succeeds if
729 * none of the devices is busy. The kernel returns 0 if no
730 * partition table is found, and we will not get an event for
731 * the disk.
ede34445 732 */
02ba8fb3 733 fd = open(udev_device_get_devnode(dev), O_RDONLY|O_CLOEXEC|O_NOFOLLOW|O_NONBLOCK);
ede34445 734 if (fd >= 0) {
02ba8fb3
KS
735 r = flock(fd, LOCK_EX|LOCK_NB);
736 if (r >= 0)
737 r = ioctl(fd, BLKRRPART, 0);
738
ede34445
KS
739 close(fd);
740 if (r >= 0)
e9fc29f4 741 part_table_read = true;
ede34445
KS
742 }
743
e9fc29f4 744 /* search for partitions */
f3a740a5
KS
745 e = udev_enumerate_new(udev);
746 if (!e)
747 return -ENOMEM;
748
749 r = udev_enumerate_add_match_parent(e, dev);
750 if (r < 0)
751 return r;
752
753 r = udev_enumerate_add_match_subsystem(e, "block");
754 if (r < 0)
755 return r;
756
757 r = udev_enumerate_scan_devices(e);
47a3fa0f
TA
758 if (r < 0)
759 return r;
e9fc29f4
KS
760
761 udev_list_entry_foreach(item, udev_enumerate_get_list_entry(e)) {
762 _cleanup_udev_device_unref_ struct udev_device *d = NULL;
763
764 d = udev_device_new_from_syspath(udev, udev_list_entry_get_name(item));
765 if (!d)
766 continue;
767
768 if (!streq_ptr("partition", udev_device_get_devtype(d)))
769 continue;
770
771 has_partitions = true;
772 break;
773 }
774
775 /*
776 * We have partitions and re-read the table, the kernel already sent
777 * out a "change" event for the disk, and "remove/add" for all
778 * partitions.
779 */
780 if (part_table_read && has_partitions)
781 return 0;
782
783 /*
784 * We have partitions but re-reading the partition table did not
785 * work, synthesize "change" for the disk and all partitions.
786 */
787 log_debug("device %s closed, synthesising 'change'", udev_device_get_devnode(dev));
788 strscpyl(filename, sizeof(filename), udev_device_get_syspath(dev), "/uevent", NULL);
789 write_string_file(filename, "change");
790
f3a740a5
KS
791 udev_list_entry_foreach(item, udev_enumerate_get_list_entry(e)) {
792 _cleanup_udev_device_unref_ struct udev_device *d = NULL;
793
794 d = udev_device_new_from_syspath(udev, udev_list_entry_get_name(item));
795 if (!d)
796 continue;
797
798 if (!streq_ptr("partition", udev_device_get_devtype(d)))
799 continue;
800
801 log_debug("device %s closed, synthesising partition '%s' 'change'",
802 udev_device_get_devnode(dev), udev_device_get_devnode(d));
803 strscpyl(filename, sizeof(filename), udev_device_get_syspath(d), "/uevent", NULL);
804 write_string_file(filename, "change");
805 }
ede34445
KS
806
807 return 0;
f3a740a5
KS
808 }
809
ede34445
KS
810 log_debug("device %s closed, synthesising 'change'", udev_device_get_devnode(dev));
811 strscpyl(filename, sizeof(filename), udev_device_get_syspath(dev), "/uevent", NULL);
812 write_string_file(filename, "change");
813
f3a740a5 814 return 0;
edd32000
KS
815}
816
9ec6e95b 817static int handle_inotify(struct udev *udev) {
912541b0
KS
818 int nbytes, pos;
819 char *buf;
820 struct inotify_event *ev;
edd32000 821 int r;
912541b0 822
edd32000
KS
823 r = ioctl(fd_inotify, FIONREAD, &nbytes);
824 if (r < 0 || nbytes <= 0)
825 return -errno;
912541b0
KS
826
827 buf = malloc(nbytes);
edd32000 828 if (!buf) {
9f6445e3 829 log_error("error getting buffer for inotify");
edd32000 830 return -ENOMEM;
912541b0
KS
831 }
832
833 nbytes = read(fd_inotify, buf, nbytes);
834
835 for (pos = 0; pos < nbytes; pos += sizeof(struct inotify_event) + ev->len) {
836 struct udev_device *dev;
837
838 ev = (struct inotify_event *)(buf + pos);
839 dev = udev_watch_lookup(udev, ev->wd);
edd32000
KS
840 if (!dev)
841 continue;
912541b0 842
edd32000
KS
843 log_debug("inotify event: %x for %s", ev->mask, udev_device_get_devnode(dev));
844 if (ev->mask & IN_CLOSE_WRITE)
845 synthesize_change(dev);
846 else if (ev->mask & IN_IGNORED)
847 udev_watch_end(udev, dev);
912541b0 848
edd32000 849 udev_device_unref(dev);
912541b0
KS
850 }
851
852 free(buf);
853 return 0;
bd284db1
SJR
854}
855
9ec6e95b 856static void handle_signal(struct udev *udev, int signo) {
912541b0
KS
857 switch (signo) {
858 case SIGINT:
859 case SIGTERM:
860 udev_exit = true;
861 break;
862 case SIGCHLD:
863 for (;;) {
864 pid_t pid;
865 int status;
866 struct udev_list_node *loop, *tmp;
867
868 pid = waitpid(-1, &status, WNOHANG);
869 if (pid <= 0)
870 break;
871
872 udev_list_node_foreach_safe(loop, tmp, &worker_list) {
873 struct worker *worker = node_to_worker(loop);
874
875 if (worker->pid != pid)
876 continue;
9f6445e3 877 log_debug("worker [%u] exit", pid);
912541b0
KS
878
879 if (WIFEXITED(status)) {
880 if (WEXITSTATUS(status) != 0)
9f6445e3 881 log_error("worker [%u] exit with return code %i",
97fec53e 882 pid, WEXITSTATUS(status));
912541b0 883 } else if (WIFSIGNALED(status)) {
9f6445e3 884 log_error("worker [%u] terminated by signal %i (%s)",
97fec53e 885 pid, WTERMSIG(status), strsignal(WTERMSIG(status)));
912541b0 886 } else if (WIFSTOPPED(status)) {
9f6445e3 887 log_error("worker [%u] stopped", pid);
912541b0 888 } else if (WIFCONTINUED(status)) {
9f6445e3 889 log_error("worker [%u] continued", pid);
912541b0 890 } else {
9f6445e3 891 log_error("worker [%u] exit with status 0x%04x", pid, status);
912541b0
KS
892 }
893
894 if (!WIFEXITED(status) || WEXITSTATUS(status) != 0) {
e64fae55 895 if (worker->event) {
9f6445e3 896 log_error("worker [%u] failed while handling '%s'",
baa30fbc 897 pid, worker->event->devpath);
912541b0 898 worker->event->exitcode = -32;
9ea28c55
KS
899 event_queue_delete(worker->event);
900
912541b0
KS
901 /* drop reference taken for state 'running' */
902 worker_unref(worker);
903 }
904 }
905 worker_unref(worker);
906 break;
907 }
908 }
909 break;
910 case SIGHUP:
911 reload = true;
912 break;
913 }
f27125f9 914}
915
9ec6e95b 916static int systemd_fds(struct udev *udev, int *rctrl, int *rnetlink) {
912541b0
KS
917 int ctrl = -1, netlink = -1;
918 int fd, n;
919
920 n = sd_listen_fds(true);
921 if (n <= 0)
922 return -1;
923
924 for (fd = SD_LISTEN_FDS_START; fd < n + SD_LISTEN_FDS_START; fd++) {
925 if (sd_is_socket(fd, AF_LOCAL, SOCK_SEQPACKET, -1)) {
926 if (ctrl >= 0)
927 return -1;
928 ctrl = fd;
929 continue;
930 }
931
932 if (sd_is_socket(fd, AF_NETLINK, SOCK_RAW, -1)) {
933 if (netlink >= 0)
934 return -1;
935 netlink = fd;
936 continue;
937 }
938
939 return -1;
940 }
941
942 if (ctrl < 0 || netlink < 0)
943 return -1;
944
9f6445e3 945 log_debug("ctrl=%i netlink=%i", ctrl, netlink);
912541b0
KS
946 *rctrl = ctrl;
947 *rnetlink = netlink;
948 return 0;
7459bcdc
KS
949}
950
e6f86cac
KS
951/*
952 * read the kernel commandline, in case we need to get into debug mode
953 * udev.log-priority=<level> syslog priority
954 * udev.children-max=<number of workers> events are fully serialized if set to 1
955 * udev.exec-delay=<number of seconds> delay execution of every executed program
956 */
9ec6e95b 957static void kernel_cmdline_options(struct udev *udev) {
74df0fca 958 _cleanup_free_ char *line = NULL;
a2a5291b 959 const char *word, *state;
e6f86cac 960 size_t l;
74df0fca 961 int r;
e6f86cac 962
74df0fca
LP
963 r = proc_cmdline(&line);
964 if (r < 0)
965 log_warning("Failed to read /proc/cmdline, ignoring: %s", strerror(-r));
966 if (r <= 0)
e6f86cac
KS
967 return;
968
a2a5291b 969 FOREACH_WORD_QUOTED(word, l, line, state) {
e6f86cac
KS
970 char *s, *opt;
971
a2a5291b 972 s = strndup(word, l);
e6f86cac
KS
973 if (!s)
974 break;
975
976 /* accept the same options for the initrd, prefixed with "rd." */
977 if (in_initrd() && startswith(s, "rd."))
978 opt = s + 3;
979 else
980 opt = s;
981
023b9d33
KS
982 if (startswith(opt, "udev.log-priority=")) {
983 int prio;
e6f86cac 984
023b9d33
KS
985 prio = util_log_priority(opt + 18);
986 log_set_max_level(prio);
987 udev_set_log_priority(udev, prio);
988 } else if (startswith(opt, "udev.children-max=")) {
bba7a484 989 arg_children_max = strtoul(opt + 18, NULL, 0);
023b9d33 990 } else if (startswith(opt, "udev.exec-delay=")) {
bba7a484 991 arg_exec_delay = strtoul(opt + 16, NULL, 0);
9719859c 992 } else if (startswith(opt, "udev.event-timeout=")) {
bba7a484
TG
993 arg_event_timeout_usec = strtoul(opt + 16, NULL, 0) * USEC_PER_SEC;
994 arg_event_timeout_warn_usec = (arg_event_timeout_usec / 3) ? : 1;
023b9d33 995 }
e6f86cac
KS
996
997 free(s);
998 }
e6f86cac
KS
999}
1000
ed216e1f
TG
1001static void help(void) {
1002 printf("%s [OPTIONS...]\n\n"
1003 "Manages devices.\n\n"
1004 " --daemon\n"
1005 " --debug\n"
1006 " --children-max=<maximum number of workers>\n"
1007 " --exec-delay=<seconds to wait before executing RUN=>\n"
1008 " --event-timeout=<seconds to wait before terminating an event>\n"
1009 " --resolve-names=early|late|never\n"
1010 " --version\n"
1011 " --help\n"
1012 , program_invocation_short_name);
1013}
1014
bba7a484 1015static int parse_argv(int argc, char *argv[]) {
912541b0 1016 static const struct option options[] = {
bba7a484
TG
1017 { "daemon", no_argument, NULL, 'd' },
1018 { "debug", no_argument, NULL, 'D' },
1019 { "children-max", required_argument, NULL, 'c' },
1020 { "exec-delay", required_argument, NULL, 'e' },
1021 { "event-timeout", required_argument, NULL, 't' },
1022 { "resolve-names", required_argument, NULL, 'N' },
1023 { "help", no_argument, NULL, 'h' },
1024 { "version", no_argument, NULL, 'V' },
912541b0
KS
1025 {}
1026 };
689a97f5 1027
bba7a484 1028 int c;
689a97f5 1029
bba7a484
TG
1030 assert(argc >= 0);
1031 assert(argv);
912541b0 1032
bba7a484 1033 while ((c = getopt_long(argc, argv, "c:de:DtN:hV", options, NULL)) >= 0) {
912541b0 1034
bba7a484 1035 switch (c) {
912541b0 1036
912541b0 1037 case 'd':
bba7a484 1038 arg_daemonize = true;
912541b0
KS
1039 break;
1040 case 'c':
bba7a484 1041 arg_children_max = strtoul(optarg, NULL, 0);
912541b0
KS
1042 break;
1043 case 'e':
bba7a484 1044 arg_exec_delay = strtoul(optarg, NULL, 0);
912541b0 1045 break;
9719859c 1046 case 't':
bba7a484
TG
1047 arg_event_timeout_usec = strtoul(optarg, NULL, 0) * USEC_PER_SEC;
1048 arg_event_timeout_warn_usec = (arg_event_timeout_usec / 3) ? : 1;
9719859c 1049 break;
912541b0 1050 case 'D':
bba7a484 1051 arg_debug = true;
912541b0
KS
1052 break;
1053 case 'N':
090be865 1054 if (streq(optarg, "early")) {
bba7a484 1055 arg_resolve_names = 1;
090be865 1056 } else if (streq(optarg, "late")) {
bba7a484 1057 arg_resolve_names = 0;
090be865 1058 } else if (streq(optarg, "never")) {
bba7a484 1059 arg_resolve_names = -1;
912541b0 1060 } else {
9f6445e3 1061 log_error("resolve-names must be early, late or never");
bba7a484 1062 return 0;
912541b0
KS
1063 }
1064 break;
1065 case 'h':
ed216e1f 1066 help();
bba7a484 1067 return 0;
912541b0
KS
1068 case 'V':
1069 printf("%s\n", VERSION);
bba7a484
TG
1070 return 0;
1071 case '?':
1072 return -EINVAL;
912541b0 1073 default:
bba7a484
TG
1074 assert_not_reached("Unhandled option");
1075
912541b0
KS
1076 }
1077 }
1078
bba7a484
TG
1079 return 1;
1080}
1081
1082int main(int argc, char *argv[]) {
1083 struct udev *udev;
1084 sigset_t mask;
1085 int fd_ctrl = -1;
1086 int fd_netlink = -1;
1087 int fd_worker = -1;
3f56f784
TG
1088 struct epoll_event ep_ctrl = { .events = EPOLLIN };
1089 struct epoll_event ep_inotify = { .events = EPOLLIN };
1090 struct epoll_event ep_signal = { .events = EPOLLIN };
1091 struct epoll_event ep_netlink = { .events = EPOLLIN };
1092 struct epoll_event ep_worker = { .events = EPOLLIN };
bba7a484
TG
1093 struct udev_ctrl_connection *ctrl_conn = NULL;
1094 int rc = 1, r;
1095
1096 udev = udev_new();
1097 if (udev == NULL)
1098 goto exit;
1099
1100 log_set_target(LOG_TARGET_AUTO);
1101 log_parse_environment();
1102 log_open();
1103
1104 udev_set_log_fn(udev, udev_main_log);
1105 log_set_max_level(udev_get_log_priority(udev));
1106
bba7a484
TG
1107 r = parse_argv(argc, argv);
1108 if (r <= 0)
1109 goto exit;
1110
e6f86cac 1111 kernel_cmdline_options(udev);
912541b0 1112
bba7a484
TG
1113 if (arg_debug) {
1114 log_set_max_level(LOG_DEBUG);
1115 udev_set_log_priority(udev, LOG_DEBUG);
1116 }
1117
912541b0 1118 if (getuid() != 0) {
9f6445e3 1119 log_error("root privileges required");
912541b0
KS
1120 goto exit;
1121 }
1122
ebc164ef
TG
1123 label_init("/dev");
1124
912541b0
KS
1125 /* set umask before creating any file/directory */
1126 chdir("/");
1127 umask(022);
1128
6ada823a 1129 mkdir("/run/udev", 0755);
912541b0 1130
01ed0e23 1131 dev_setup(NULL);
912541b0
KS
1132
1133 /* before opening new files, make sure std{in,out,err} fds are in a sane state */
bba7a484 1134 if (arg_daemonize) {
912541b0
KS
1135 int fd;
1136
1137 fd = open("/dev/null", O_RDWR);
1138 if (fd >= 0) {
1139 if (write(STDOUT_FILENO, 0, 0) < 0)
1140 dup2(fd, STDOUT_FILENO);
1141 if (write(STDERR_FILENO, 0, 0) < 0)
1142 dup2(fd, STDERR_FILENO);
1143 if (fd > STDERR_FILENO)
1144 close(fd);
1145 } else {
9f6445e3 1146 log_error("cannot open /dev/null");
912541b0
KS
1147 }
1148 }
1149
1150 if (systemd_fds(udev, &fd_ctrl, &fd_netlink) >= 0) {
c5315881 1151 /* get control and netlink socket from systemd */
912541b0
KS
1152 udev_ctrl = udev_ctrl_new_from_fd(udev, fd_ctrl);
1153 if (udev_ctrl == NULL) {
baa30fbc 1154 log_error("error taking over udev control socket");
912541b0
KS
1155 rc = 1;
1156 goto exit;
1157 }
1158
1159 monitor = udev_monitor_new_from_netlink_fd(udev, "kernel", fd_netlink);
1160 if (monitor == NULL) {
9f6445e3 1161 log_error("error taking over netlink socket");
912541b0
KS
1162 rc = 3;
1163 goto exit;
1164 }
194bbe33
KS
1165
1166 /* get our own cgroup, we regularly kill everything udev has left behind */
7027ff61 1167 if (cg_pid_get_path(SYSTEMD_CGROUP_CONTROLLER, 0, &udev_cgroup) < 0)
194bbe33 1168 udev_cgroup = NULL;
912541b0
KS
1169 } else {
1170 /* open control and netlink socket */
1171 udev_ctrl = udev_ctrl_new(udev);
1172 if (udev_ctrl == NULL) {
baa30fbc 1173 log_error("error initializing udev control socket");
912541b0
KS
1174 rc = 1;
1175 goto exit;
1176 }
1177 fd_ctrl = udev_ctrl_get_fd(udev_ctrl);
1178
1179 monitor = udev_monitor_new_from_netlink(udev, "kernel");
1180 if (monitor == NULL) {
9f6445e3 1181 log_error("error initializing netlink socket");
912541b0
KS
1182 rc = 3;
1183 goto exit;
1184 }
1185 fd_netlink = udev_monitor_get_fd(monitor);
1186 }
1187
1188 if (udev_monitor_enable_receiving(monitor) < 0) {
9f6445e3 1189 log_error("error binding netlink socket");
912541b0
KS
1190 rc = 3;
1191 goto exit;
1192 }
1193
1194 if (udev_ctrl_enable_receiving(udev_ctrl) < 0) {
9f6445e3 1195 log_error("error binding udev control socket");
912541b0
KS
1196 rc = 1;
1197 goto exit;
1198 }
1199
9ea28c55 1200 udev_monitor_set_receive_buffer_size(monitor, 128 * 1024 * 1024);
912541b0 1201
4d6dac13
TG
1202 log_info("starting version " VERSION "\n");
1203
1204 udev_builtin_init(udev);
1205
1206 rules = udev_rules_new(udev, arg_resolve_names);
1207 if (rules == NULL) {
1208 log_error("error reading rules");
1209 goto exit;
1210 }
1211
1212 rc = udev_rules_apply_static_dev_perms(rules);
1213 if (rc < 0)
1214 log_error("failed to apply permissions on static device nodes - %s", strerror(-rc));
1215
bba7a484 1216 if (arg_daemonize) {
912541b0 1217 pid_t pid;
912541b0
KS
1218
1219 pid = fork();
1220 switch (pid) {
1221 case 0:
1222 break;
1223 case -1:
9f6445e3 1224 log_error("fork of daemon failed: %m");
912541b0
KS
1225 rc = 4;
1226 goto exit;
1227 default:
1228 rc = EXIT_SUCCESS;
1229 goto exit_daemonize;
1230 }
1231
1232 setsid();
1233
574d5f2d 1234 write_string_file("/proc/self/oom_score_adj", "-1000");
912541b0
KS
1235 } else {
1236 sd_notify(1, "READY=1");
1237 }
1238
3f56f784
TG
1239 if (arg_children_max <= 0) {
1240 cpu_set_t cpu_set;
1241
1242 arg_children_max = 8;
1243
1244 if (sched_getaffinity(0, sizeof (cpu_set), &cpu_set) == 0) {
1245 arg_children_max += CPU_COUNT(&cpu_set) * 2;
1246 }
1247 }
1248 log_debug("set children_max to %u", arg_children_max);
1249
1250 udev_list_node_init(&event_list);
1251 udev_list_node_init(&worker_list);
1252
912541b0
KS
1253 fd_inotify = udev_watch_init(udev);
1254 if (fd_inotify < 0) {
9f6445e3 1255 log_error("error initializing inotify");
912541b0
KS
1256 rc = 4;
1257 goto exit;
1258 }
1259 udev_watch_restore(udev);
1260
1261 /* block and listen to all signals on signalfd */
1262 sigfillset(&mask);
1263 sigprocmask(SIG_SETMASK, &mask, &sigmask_orig);
1264 fd_signal = signalfd(-1, &mask, SFD_NONBLOCK|SFD_CLOEXEC);
1265 if (fd_signal < 0) {
9f6445e3 1266 log_error("error creating signalfd");
912541b0
KS
1267 rc = 5;
1268 goto exit;
1269 }
1270
1271 /* unnamed socket from workers to the main daemon */
1272 if (socketpair(AF_LOCAL, SOCK_DGRAM|SOCK_CLOEXEC, 0, worker_watch) < 0) {
9f6445e3 1273 log_error("error creating socketpair");
912541b0
KS
1274 rc = 6;
1275 goto exit;
1276 }
1277 fd_worker = worker_watch[READ_END];
1278
912541b0 1279 ep_ctrl.data.fd = fd_ctrl;
912541b0 1280 ep_inotify.data.fd = fd_inotify;
912541b0 1281 ep_signal.data.fd = fd_signal;
912541b0 1282 ep_netlink.data.fd = fd_netlink;
912541b0
KS
1283 ep_worker.data.fd = fd_worker;
1284
1285 fd_ep = epoll_create1(EPOLL_CLOEXEC);
1286 if (fd_ep < 0) {
9f6445e3 1287 log_error("error creating epoll fd: %m");
912541b0
KS
1288 goto exit;
1289 }
1290 if (epoll_ctl(fd_ep, EPOLL_CTL_ADD, fd_ctrl, &ep_ctrl) < 0 ||
1291 epoll_ctl(fd_ep, EPOLL_CTL_ADD, fd_inotify, &ep_inotify) < 0 ||
1292 epoll_ctl(fd_ep, EPOLL_CTL_ADD, fd_signal, &ep_signal) < 0 ||
1293 epoll_ctl(fd_ep, EPOLL_CTL_ADD, fd_netlink, &ep_netlink) < 0 ||
1294 epoll_ctl(fd_ep, EPOLL_CTL_ADD, fd_worker, &ep_worker) < 0) {
9f6445e3 1295 log_error("fail to add fds to epoll: %m");
912541b0
KS
1296 goto exit;
1297 }
1298
912541b0 1299 for (;;) {
40fe8b11 1300 static usec_t last_usec;
912541b0
KS
1301 struct epoll_event ev[8];
1302 int fdcount;
1303 int timeout;
1304 bool is_worker, is_signal, is_inotify, is_netlink, is_ctrl;
1305 int i;
1306
1307 if (udev_exit) {
1308 /* close sources of new events and discard buffered events */
1309 if (fd_ctrl >= 0) {
1310 epoll_ctl(fd_ep, EPOLL_CTL_DEL, fd_ctrl, NULL);
1311 fd_ctrl = -1;
1312 }
1313 if (monitor != NULL) {
1314 epoll_ctl(fd_ep, EPOLL_CTL_DEL, fd_netlink, NULL);
1315 udev_monitor_unref(monitor);
1316 monitor = NULL;
1317 }
1318 if (fd_inotify >= 0) {
1319 epoll_ctl(fd_ep, EPOLL_CTL_DEL, fd_inotify, NULL);
1320 close(fd_inotify);
1321 fd_inotify = -1;
1322 }
1323
1324 /* discard queued events and kill workers */
1325 event_queue_cleanup(udev, EVENT_QUEUED);
194bbe33 1326 worker_kill(udev);
912541b0
KS
1327
1328 /* exit after all has cleaned up */
9ea28c55 1329 if (udev_list_node_is_empty(&event_list) && children == 0)
912541b0
KS
1330 break;
1331
1332 /* timeout at exit for workers to finish */
9ea28c55
KS
1333 timeout = 30 * MSEC_PER_SEC;
1334 } else if (udev_list_node_is_empty(&event_list) && children == 0) {
e64fae55 1335 /* we are idle */
912541b0 1336 timeout = -1;
194bbe33
KS
1337
1338 /* cleanup possible left-over processes in our cgroup */
1339 if (udev_cgroup)
1340 cg_kill(SYSTEMD_CGROUP_CONTROLLER, udev_cgroup, SIGKILL, false, true, NULL);
e64fae55
KS
1341 } else {
1342 /* kill idle or hanging workers */
9ea28c55 1343 timeout = 3 * MSEC_PER_SEC;
912541b0 1344 }
9ea28c55
KS
1345
1346 /* tell settle that we are busy or idle */
1347 if (!udev_list_node_is_empty(&event_list)) {
1348 int fd;
1349
1350 fd = open("/run/udev/queue", O_WRONLY|O_CREAT|O_CLOEXEC|O_TRUNC|O_NOFOLLOW, 0444);
1351 if (fd >= 0)
1352 close(fd);
1353 } else {
1354 unlink("/run/udev/queue");
1355 }
1356
8fef0ff2 1357 fdcount = epoll_wait(fd_ep, ev, ELEMENTSOF(ev), timeout);
912541b0
KS
1358 if (fdcount < 0)
1359 continue;
1360
1361 if (fdcount == 0) {
e64fae55
KS
1362 struct udev_list_node *loop;
1363
1364 /* timeout */
912541b0 1365 if (udev_exit) {
9f6445e3 1366 log_error("timeout, giving up waiting for workers to finish");
912541b0
KS
1367 break;
1368 }
1369
e64fae55
KS
1370 /* kill idle workers */
1371 if (udev_list_node_is_empty(&event_list)) {
9f6445e3 1372 log_debug("cleanup idle workers");
194bbe33 1373 worker_kill(udev);
e64fae55
KS
1374 }
1375
1376 /* check for hanging events */
1377 udev_list_node_foreach(loop, &worker_list) {
1378 struct worker *worker = node_to_worker(loop);
67117413 1379 usec_t ts;
e64fae55
KS
1380
1381 if (worker->state != WORKER_RUNNING)
1382 continue;
1383
67117413
TG
1384 ts = now(CLOCK_MONOTONIC);
1385
bba7a484
TG
1386 if ((ts - worker->event_start_usec) > arg_event_timeout_warn_usec) {
1387 if ((ts - worker->event_start_usec) > arg_event_timeout_usec) {
67117413
TG
1388 log_error("worker [%u] %s timeout; kill it", worker->pid, worker->event->devpath);
1389 kill(worker->pid, SIGKILL);
1390 worker->state = WORKER_KILLED;
1391
1392 /* drop reference taken for state 'running' */
1393 worker_unref(worker);
1394 log_error("seq %llu '%s' killed", udev_device_get_seqnum(worker->event->dev), worker->event->devpath);
1395 worker->event->exitcode = -64;
1396 event_queue_delete(worker->event);
1397 worker->event = NULL;
1398 } else if (!worker->event_warned) {
1399 log_warning("worker [%u] %s is taking a long time", worker->pid, worker->event->devpath);
1400 worker->event_warned = true;
1401 }
e64fae55
KS
1402 }
1403 }
1404
912541b0
KS
1405 }
1406
1407 is_worker = is_signal = is_inotify = is_netlink = is_ctrl = false;
1408 for (i = 0; i < fdcount; i++) {
1409 if (ev[i].data.fd == fd_worker && ev[i].events & EPOLLIN)
1410 is_worker = true;
1411 else if (ev[i].data.fd == fd_netlink && ev[i].events & EPOLLIN)
1412 is_netlink = true;
1413 else if (ev[i].data.fd == fd_signal && ev[i].events & EPOLLIN)
1414 is_signal = true;
1415 else if (ev[i].data.fd == fd_inotify && ev[i].events & EPOLLIN)
1416 is_inotify = true;
1417 else if (ev[i].data.fd == fd_ctrl && ev[i].events & EPOLLIN)
1418 is_ctrl = true;
1419 }
1420
1421 /* check for changed config, every 3 seconds at most */
9ea28c55 1422 if ((now(CLOCK_MONOTONIC) - last_usec) > 3 * USEC_PER_SEC) {
6ada823a 1423 if (udev_rules_check_timestamp(rules))
912541b0
KS
1424 reload = true;
1425 if (udev_builtin_validate(udev))
1426 reload = true;
1427
40fe8b11 1428 last_usec = now(CLOCK_MONOTONIC);
912541b0
KS
1429 }
1430
1431 /* reload requested, HUP signal received, rules changed, builtin changed */
1432 if (reload) {
194bbe33 1433 worker_kill(udev);
912541b0
KS
1434 rules = udev_rules_unref(rules);
1435 udev_builtin_exit(udev);
7781e063 1436 reload = false;
912541b0
KS
1437 }
1438
1439 /* event has finished */
1440 if (is_worker)
1441 worker_returned(fd_worker);
1442
1443 if (is_netlink) {
1444 struct udev_device *dev;
1445
1446 dev = udev_monitor_receive_device(monitor);
1447 if (dev != NULL) {
40fe8b11 1448 udev_device_set_usec_initialized(dev, now(CLOCK_MONOTONIC));
912541b0
KS
1449 if (event_queue_insert(dev) < 0)
1450 udev_device_unref(dev);
1451 }
1452 }
1453
1454 /* start new events */
1455 if (!udev_list_node_is_empty(&event_list) && !udev_exit && !stop_exec_queue) {
7781e063 1456 udev_builtin_init(udev);
912541b0 1457 if (rules == NULL)
bba7a484 1458 rules = udev_rules_new(udev, arg_resolve_names);
912541b0
KS
1459 if (rules != NULL)
1460 event_queue_start(udev);
1461 }
1462
1463 if (is_signal) {
1464 struct signalfd_siginfo fdsi;
1465 ssize_t size;
1466
1467 size = read(fd_signal, &fdsi, sizeof(struct signalfd_siginfo));
1468 if (size == sizeof(struct signalfd_siginfo))
1469 handle_signal(udev, fdsi.ssi_signo);
1470 }
1471
1472 /* we are shutting down, the events below are not handled anymore */
1473 if (udev_exit)
1474 continue;
1475
1476 /* device node watch */
1477 if (is_inotify)
1478 handle_inotify(udev);
1479
1480 /*
1481 * This needs to be after the inotify handling, to make sure,
1482 * that the ping is send back after the possibly generated
1483 * "change" events by the inotify device node watch.
1484 *
1485 * A single time we may receive a client connection which we need to
1486 * keep open to block the client. It will be closed right before we
1487 * exit.
1488 */
1489 if (is_ctrl)
1490 ctrl_conn = handle_ctrl_msg(udev_ctrl);
1491 }
1492
1493 rc = EXIT_SUCCESS;
53921bfa 1494exit:
912541b0 1495 udev_ctrl_cleanup(udev_ctrl);
9ea28c55 1496 unlink("/run/udev/queue");
1f5a5100 1497exit_daemonize:
912541b0
KS
1498 if (fd_ep >= 0)
1499 close(fd_ep);
1500 worker_list_cleanup(udev);
1501 event_queue_cleanup(udev, EVENT_UNDEF);
1502 udev_rules_unref(rules);
1503 udev_builtin_exit(udev);
1504 if (fd_signal >= 0)
1505 close(fd_signal);
1506 if (worker_watch[READ_END] >= 0)
1507 close(worker_watch[READ_END]);
1508 if (worker_watch[WRITE_END] >= 0)
1509 close(worker_watch[WRITE_END]);
1510 udev_monitor_unref(monitor);
912541b0
KS
1511 udev_ctrl_connection_unref(ctrl_conn);
1512 udev_ctrl_unref(udev_ctrl);
e9a5ef7c 1513 label_finish();
912541b0 1514 udev_unref(udev);
baa30fbc 1515 log_close();
912541b0 1516 return rc;
7fafc032 1517}