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udev: use Hashmap for storing PROGRAM or BUILTIN
[thirdparty/systemd.git] / src / udev / udevd.c
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e7145211 1/* SPDX-License-Identifier: GPL-2.0+ */
7fafc032 2/*
810adae9
LP
3 * Copyright © 2004 Chris Friesen <chris_friesen@sympatico.ca>
4 * Copyright © 2009 Canonical Ltd.
5 * Copyright © 2009 Scott James Remnant <scott@netsplit.com>
7fafc032
KS
6 */
7
7fafc032 8#include <errno.h>
618234a5
LP
9#include <fcntl.h>
10#include <getopt.h>
11#include <signal.h>
12#include <stdbool.h>
13#include <stddef.h>
7fafc032
KS
14#include <stdio.h>
15#include <stdlib.h>
16#include <string.h>
618234a5 17#include <sys/epoll.h>
3ebdb81e 18#include <sys/file.h>
618234a5
LP
19#include <sys/inotify.h>
20#include <sys/ioctl.h>
21#include <sys/mount.h>
1e03b754 22#include <sys/prctl.h>
1e03b754 23#include <sys/signalfd.h>
618234a5 24#include <sys/socket.h>
dc117daa 25#include <sys/stat.h>
618234a5
LP
26#include <sys/time.h>
27#include <sys/wait.h>
28#include <unistd.h>
7fafc032 29
392ef7a2 30#include "sd-daemon.h"
693d371d 31#include "sd-event.h"
8314de1d 32
b5efdb8a 33#include "alloc-util.h"
194bbe33 34#include "cgroup-util.h"
618234a5 35#include "cpu-set-util.h"
5ba2dc25 36#include "dev-setup.h"
70068602 37#include "device-util.h"
3ffd4af2 38#include "fd-util.h"
a5c32cff 39#include "fileio.h"
f97b34a6 40#include "format-util.h"
f4f15635 41#include "fs-util.h"
a505965d 42#include "hashmap.h"
c004493c 43#include "io-util.h"
70068602 44#include "libudev-device-internal.h"
40a57716 45#include "list.h"
618234a5 46#include "netlink-util.h"
6bedfcbb 47#include "parse-util.h"
4e731273 48#include "proc-cmdline.h"
618234a5
LP
49#include "process-util.h"
50#include "selinux-util.h"
51#include "signal-util.h"
8f328d36 52#include "socket-util.h"
07630cea 53#include "string-util.h"
618234a5 54#include "terminal-util.h"
07a26e42 55#include "udev-builtin.h"
7d68eb1b 56#include "udev-ctrl.h"
618234a5 57#include "udev-util.h"
70068602 58#include "udev-watch.h"
618234a5 59#include "udev.h"
ee104e11 60#include "user-util.h"
7fafc032 61
bba7a484
TG
62static bool arg_debug = false;
63static int arg_daemonize = false;
64static int arg_resolve_names = 1;
020328e1 65static unsigned arg_children_max;
bba7a484
TG
66static int arg_exec_delay;
67static usec_t arg_event_timeout_usec = 180 * USEC_PER_SEC;
68static usec_t arg_event_timeout_warn_usec = 180 * USEC_PER_SEC / 3;
c0c6806b
TG
69
70typedef struct Manager {
693d371d 71 sd_event *event;
c0c6806b 72 Hashmap *workers;
40a57716 73 LIST_HEAD(struct event, events);
c26d1879 74 const char *cgroup;
cb49a4f2 75 pid_t pid; /* the process that originally allocated the manager object */
c0c6806b 76
ecb17862 77 struct udev_rules *rules;
c0c6806b
TG
78 struct udev_list properties;
79
80 struct udev_monitor *monitor;
81 struct udev_ctrl *ctrl;
82 struct udev_ctrl_connection *ctrl_conn_blocking;
e237d8cb 83 int fd_inotify;
e237d8cb
TG
84 int worker_watch[2];
85
693d371d
TG
86 sd_event_source *ctrl_event;
87 sd_event_source *uevent_event;
88 sd_event_source *inotify_event;
89
7c4c7e89
TG
90 usec_t last_usec;
91
c0c6806b 92 bool stop_exec_queue:1;
c0c6806b
TG
93 bool exit:1;
94} Manager;
1e03b754 95
1e03b754 96enum event_state {
912541b0
KS
97 EVENT_UNDEF,
98 EVENT_QUEUED,
99 EVENT_RUNNING,
1e03b754
KS
100};
101
102struct event {
40a57716 103 LIST_FIELDS(struct event, event);
cb49a4f2 104 Manager *manager;
912541b0 105 struct udev_device *dev;
6969c349 106 struct udev_device *dev_kernel;
c6aa11f2 107 struct worker *worker;
912541b0 108 enum event_state state;
912541b0
KS
109 unsigned long long int delaying_seqnum;
110 unsigned long long int seqnum;
111 const char *devpath;
112 size_t devpath_len;
113 const char *devpath_old;
114 dev_t devnum;
912541b0 115 int ifindex;
ea6039a3 116 bool is_block;
693d371d
TG
117 sd_event_source *timeout_warning;
118 sd_event_source *timeout;
1e03b754
KS
119};
120
ecb17862 121static void event_queue_cleanup(Manager *manager, enum event_state type);
ff2c503d 122
1e03b754 123enum worker_state {
912541b0
KS
124 WORKER_UNDEF,
125 WORKER_RUNNING,
126 WORKER_IDLE,
127 WORKER_KILLED,
1e03b754
KS
128};
129
130struct worker {
c0c6806b 131 Manager *manager;
912541b0
KS
132 pid_t pid;
133 struct udev_monitor *monitor;
134 enum worker_state state;
135 struct event *event;
1e03b754
KS
136};
137
138/* passed from worker to main process */
139struct worker_message {
1e03b754
KS
140};
141
c6aa11f2 142static void event_free(struct event *event) {
cb49a4f2
TG
143 int r;
144
c6aa11f2
TG
145 if (!event)
146 return;
40a57716 147 assert(event->manager);
c6aa11f2 148
40a57716 149 LIST_REMOVE(event, event->manager->events, event);
912541b0 150 udev_device_unref(event->dev);
6969c349 151 udev_device_unref(event->dev_kernel);
c6aa11f2 152
693d371d
TG
153 sd_event_source_unref(event->timeout_warning);
154 sd_event_source_unref(event->timeout);
155
c6aa11f2
TG
156 if (event->worker)
157 event->worker->event = NULL;
158
40a57716 159 if (LIST_IS_EMPTY(event->manager->events)) {
cb49a4f2 160 /* only clean up the queue from the process that created it */
df0ff127 161 if (event->manager->pid == getpid_cached()) {
cb49a4f2
TG
162 r = unlink("/run/udev/queue");
163 if (r < 0)
164 log_warning_errno(errno, "could not unlink /run/udev/queue: %m");
165 }
166 }
167
912541b0 168 free(event);
aa8734ff 169}
7a770250 170
c6aa11f2
TG
171static void worker_free(struct worker *worker) {
172 if (!worker)
173 return;
bc113de9 174
c0c6806b
TG
175 assert(worker->manager);
176
4a0b58c4 177 hashmap_remove(worker->manager->workers, PID_TO_PTR(worker->pid));
912541b0 178 udev_monitor_unref(worker->monitor);
c6aa11f2
TG
179 event_free(worker->event);
180
c6aa11f2 181 free(worker);
ff2c503d
KS
182}
183
c0c6806b 184static void manager_workers_free(Manager *manager) {
a505965d
TG
185 struct worker *worker;
186 Iterator i;
ff2c503d 187
c0c6806b
TG
188 assert(manager);
189
190 HASHMAP_FOREACH(worker, manager->workers, i)
c6aa11f2 191 worker_free(worker);
a505965d 192
c0c6806b 193 manager->workers = hashmap_free(manager->workers);
fc465079
KS
194}
195
c0c6806b 196static int worker_new(struct worker **ret, Manager *manager, struct udev_monitor *worker_monitor, pid_t pid) {
a505965d
TG
197 _cleanup_free_ struct worker *worker = NULL;
198 int r;
3a19b32a
TG
199
200 assert(ret);
c0c6806b 201 assert(manager);
3a19b32a
TG
202 assert(worker_monitor);
203 assert(pid > 1);
204
205 worker = new0(struct worker, 1);
206 if (!worker)
207 return -ENOMEM;
208
c0c6806b 209 worker->manager = manager;
3a19b32a
TG
210 /* close monitor, but keep address around */
211 udev_monitor_disconnect(worker_monitor);
212 worker->monitor = udev_monitor_ref(worker_monitor);
213 worker->pid = pid;
a505965d 214
c0c6806b 215 r = hashmap_ensure_allocated(&manager->workers, NULL);
a505965d
TG
216 if (r < 0)
217 return r;
218
4a0b58c4 219 r = hashmap_put(manager->workers, PID_TO_PTR(pid), worker);
a505965d
TG
220 if (r < 0)
221 return r;
222
ae2a15bc 223 *ret = TAKE_PTR(worker);
3a19b32a
TG
224
225 return 0;
226}
227
4fa4d885
TG
228static int on_event_timeout(sd_event_source *s, uint64_t usec, void *userdata) {
229 struct event *event = userdata;
230
231 assert(event);
232 assert(event->worker);
233
234 kill_and_sigcont(event->worker->pid, SIGKILL);
235 event->worker->state = WORKER_KILLED;
236
237 log_error("seq %llu '%s' killed", udev_device_get_seqnum(event->dev), event->devpath);
238
239 return 1;
240}
241
242static int on_event_timeout_warning(sd_event_source *s, uint64_t usec, void *userdata) {
243 struct event *event = userdata;
244
245 assert(event);
246
247 log_warning("seq %llu '%s' is taking a long time", udev_device_get_seqnum(event->dev), event->devpath);
248
249 return 1;
250}
251
39c19cf1 252static void worker_attach_event(struct worker *worker, struct event *event) {
693d371d
TG
253 sd_event *e;
254 uint64_t usec;
693d371d 255
c6aa11f2 256 assert(worker);
693d371d 257 assert(worker->manager);
c6aa11f2
TG
258 assert(event);
259 assert(!event->worker);
260 assert(!worker->event);
261
39c19cf1 262 worker->state = WORKER_RUNNING;
39c19cf1
TG
263 worker->event = event;
264 event->state = EVENT_RUNNING;
c6aa11f2 265 event->worker = worker;
693d371d
TG
266
267 e = worker->manager->event;
268
3285baa8 269 assert_se(sd_event_now(e, CLOCK_MONOTONIC, &usec) >= 0);
693d371d 270
3285baa8 271 (void) sd_event_add_time(e, &event->timeout_warning, CLOCK_MONOTONIC,
693d371d
TG
272 usec + arg_event_timeout_warn_usec, USEC_PER_SEC, on_event_timeout_warning, event);
273
3285baa8 274 (void) sd_event_add_time(e, &event->timeout, CLOCK_MONOTONIC,
693d371d 275 usec + arg_event_timeout_usec, USEC_PER_SEC, on_event_timeout, event);
39c19cf1
TG
276}
277
e237d8cb
TG
278static void manager_free(Manager *manager) {
279 if (!manager)
280 return;
281
2024ed61 282 udev_builtin_exit();
b2d21d93 283
693d371d
TG
284 sd_event_source_unref(manager->ctrl_event);
285 sd_event_source_unref(manager->uevent_event);
286 sd_event_source_unref(manager->inotify_event);
287
693d371d 288 sd_event_unref(manager->event);
e237d8cb
TG
289 manager_workers_free(manager);
290 event_queue_cleanup(manager, EVENT_UNDEF);
291
292 udev_monitor_unref(manager->monitor);
293 udev_ctrl_unref(manager->ctrl);
294 udev_ctrl_connection_unref(manager->ctrl_conn_blocking);
295
296 udev_list_cleanup(&manager->properties);
297 udev_rules_unref(manager->rules);
e237d8cb 298
e237d8cb
TG
299 safe_close(manager->fd_inotify);
300 safe_close_pair(manager->worker_watch);
301
302 free(manager);
303}
304
305DEFINE_TRIVIAL_CLEANUP_FUNC(Manager*, manager_free);
306
9a73bd7c
TG
307static int worker_send_message(int fd) {
308 struct worker_message message = {};
309
310 return loop_write(fd, &message, sizeof(message), false);
311}
312
fee854ee
RK
313static bool shall_lock_device(struct udev_device *dev) {
314 const char *sysname;
315
316 if (!streq_ptr("block", udev_device_get_subsystem(dev)))
317 return false;
318
319 sysname = udev_device_get_sysname(dev);
320 return !startswith(sysname, "dm-") &&
321 !startswith(sysname, "md") &&
322 !startswith(sysname, "drbd");
323}
324
c0c6806b 325static void worker_spawn(Manager *manager, struct event *event) {
8e766630 326 _cleanup_(udev_monitor_unrefp) struct udev_monitor *worker_monitor = NULL;
912541b0 327 pid_t pid;
b6aab8ef 328 int r = 0;
912541b0
KS
329
330 /* listen for new events */
2024ed61 331 worker_monitor = udev_monitor_new_from_netlink(NULL, NULL);
912541b0
KS
332 if (worker_monitor == NULL)
333 return;
334 /* allow the main daemon netlink address to send devices to the worker */
c0c6806b 335 udev_monitor_allow_unicast_sender(worker_monitor, manager->monitor);
b6aab8ef
TG
336 r = udev_monitor_enable_receiving(worker_monitor);
337 if (r < 0)
338 log_error_errno(r, "worker: could not enable receiving of device: %m");
912541b0 339
912541b0
KS
340 pid = fork();
341 switch (pid) {
342 case 0: {
343 struct udev_device *dev = NULL;
4afd3348 344 _cleanup_(sd_netlink_unrefp) sd_netlink *rtnl = NULL;
912541b0 345 int fd_monitor;
e237d8cb 346 _cleanup_close_ int fd_signal = -1, fd_ep = -1;
2dd9f98d
TG
347 struct epoll_event ep_signal = { .events = EPOLLIN };
348 struct epoll_event ep_monitor = { .events = EPOLLIN };
912541b0 349 sigset_t mask;
912541b0 350
43095991 351 /* take initial device from queue */
1cc6c93a 352 dev = TAKE_PTR(event->dev);
912541b0 353
39fd2ca1
TG
354 unsetenv("NOTIFY_SOCKET");
355
c0c6806b 356 manager_workers_free(manager);
ecb17862 357 event_queue_cleanup(manager, EVENT_UNDEF);
6d1b1e0b 358
e237d8cb 359 manager->monitor = udev_monitor_unref(manager->monitor);
6d1b1e0b 360 manager->ctrl_conn_blocking = udev_ctrl_connection_unref(manager->ctrl_conn_blocking);
e237d8cb 361 manager->ctrl = udev_ctrl_unref(manager->ctrl);
e237d8cb 362 manager->worker_watch[READ_END] = safe_close(manager->worker_watch[READ_END]);
912541b0 363
693d371d
TG
364 manager->ctrl_event = sd_event_source_unref(manager->ctrl_event);
365 manager->uevent_event = sd_event_source_unref(manager->uevent_event);
366 manager->inotify_event = sd_event_source_unref(manager->inotify_event);
367
368 manager->event = sd_event_unref(manager->event);
369
912541b0
KS
370 sigfillset(&mask);
371 fd_signal = signalfd(-1, &mask, SFD_NONBLOCK|SFD_CLOEXEC);
372 if (fd_signal < 0) {
6af5e6a4 373 r = log_error_errno(errno, "error creating signalfd %m");
912541b0
KS
374 goto out;
375 }
2dd9f98d
TG
376 ep_signal.data.fd = fd_signal;
377
378 fd_monitor = udev_monitor_get_fd(worker_monitor);
379 ep_monitor.data.fd = fd_monitor;
912541b0
KS
380
381 fd_ep = epoll_create1(EPOLL_CLOEXEC);
382 if (fd_ep < 0) {
6af5e6a4 383 r = log_error_errno(errno, "error creating epoll fd: %m");
912541b0
KS
384 goto out;
385 }
386
912541b0
KS
387 if (epoll_ctl(fd_ep, EPOLL_CTL_ADD, fd_signal, &ep_signal) < 0 ||
388 epoll_ctl(fd_ep, EPOLL_CTL_ADD, fd_monitor, &ep_monitor) < 0) {
6af5e6a4 389 r = log_error_errno(errno, "fail to add fds to epoll: %m");
912541b0
KS
390 goto out;
391 }
392
045e00cf
ZJS
393 /* Request TERM signal if parent exits.
394 Ignore error, not much we can do in that case. */
395 (void) prctl(PR_SET_PDEATHSIG, SIGTERM);
912541b0 396
045e00cf 397 /* Reset OOM score, we only protect the main daemon. */
ad118bda 398 write_string_file("/proc/self/oom_score_adj", "0", 0);
145dae7e 399
912541b0
KS
400 for (;;) {
401 struct udev_event *udev_event;
6af5e6a4 402 int fd_lock = -1;
912541b0 403
3b64e4d4
TG
404 assert(dev);
405
9f6445e3 406 log_debug("seq %llu running", udev_device_get_seqnum(dev));
912541b0
KS
407 udev_event = udev_event_new(dev);
408 if (udev_event == NULL) {
6af5e6a4 409 r = -ENOMEM;
912541b0
KS
410 goto out;
411 }
412
bba7a484
TG
413 if (arg_exec_delay > 0)
414 udev_event->exec_delay = arg_exec_delay;
912541b0 415
3ebdb81e 416 /*
2e5b17d0 417 * Take a shared lock on the device node; this establishes
3ebdb81e 418 * a concept of device "ownership" to serialize device
2e5b17d0 419 * access. External processes holding an exclusive lock will
3ebdb81e 420 * cause udev to skip the event handling; in the case udev
2e5b17d0 421 * acquired the lock, the external process can block until
3ebdb81e
KS
422 * udev has finished its event handling.
423 */
2e5b17d0 424 if (!streq_ptr(udev_device_get_action(dev), "remove") &&
fee854ee 425 shall_lock_device(dev)) {
3ebdb81e
KS
426 struct udev_device *d = dev;
427
428 if (streq_ptr("partition", udev_device_get_devtype(d)))
429 d = udev_device_get_parent(d);
430
431 if (d) {
432 fd_lock = open(udev_device_get_devnode(d), O_RDONLY|O_CLOEXEC|O_NOFOLLOW|O_NONBLOCK);
433 if (fd_lock >= 0 && flock(fd_lock, LOCK_SH|LOCK_NB) < 0) {
56f64d95 434 log_debug_errno(errno, "Unable to flock(%s), skipping event handling: %m", udev_device_get_devnode(d));
3d06f418 435 fd_lock = safe_close(fd_lock);
3ebdb81e
KS
436 goto skip;
437 }
438 }
439 }
440
4c83d994
TG
441 /* needed for renaming netifs */
442 udev_event->rtnl = rtnl;
443
912541b0 444 /* apply rules, create node, symlinks */
adeba500
KS
445 udev_event_execute_rules(udev_event,
446 arg_event_timeout_usec, arg_event_timeout_warn_usec,
c0c6806b 447 &manager->properties,
8314de1d 448 manager->rules);
adeba500
KS
449
450 udev_event_execute_run(udev_event,
8314de1d 451 arg_event_timeout_usec, arg_event_timeout_warn_usec);
912541b0 452
523c620b
TG
453 if (udev_event->rtnl)
454 /* in case rtnl was initialized */
1c4baffc 455 rtnl = sd_netlink_ref(udev_event->rtnl);
4c83d994 456
912541b0 457 /* apply/restore inotify watch */
bf9bead1 458 if (udev_event->inotify_watch) {
70068602 459 udev_watch_begin(dev->device);
912541b0
KS
460 udev_device_update_db(dev);
461 }
462
3d06f418 463 safe_close(fd_lock);
3ebdb81e 464
912541b0
KS
465 /* send processed event back to libudev listeners */
466 udev_monitor_send_device(worker_monitor, NULL, dev);
467
3ebdb81e 468skip:
4914cb2d 469 log_debug("seq %llu processed", udev_device_get_seqnum(dev));
b66f29a1 470
912541b0 471 /* send udevd the result of the event execution */
e237d8cb 472 r = worker_send_message(manager->worker_watch[WRITE_END]);
b66f29a1 473 if (r < 0)
9a73bd7c 474 log_error_errno(r, "failed to send result of seq %llu to main daemon: %m",
b66f29a1 475 udev_device_get_seqnum(dev));
912541b0
KS
476
477 udev_device_unref(dev);
478 dev = NULL;
479
73814ca2 480 udev_event_unref(udev_event);
47e737dc 481
912541b0
KS
482 /* wait for more device messages from main udevd, or term signal */
483 while (dev == NULL) {
484 struct epoll_event ev[4];
485 int fdcount;
486 int i;
487
8fef0ff2 488 fdcount = epoll_wait(fd_ep, ev, ELEMENTSOF(ev), -1);
912541b0
KS
489 if (fdcount < 0) {
490 if (errno == EINTR)
491 continue;
6af5e6a4 492 r = log_error_errno(errno, "failed to poll: %m");
912541b0
KS
493 goto out;
494 }
495
496 for (i = 0; i < fdcount; i++) {
497 if (ev[i].data.fd == fd_monitor && ev[i].events & EPOLLIN) {
498 dev = udev_monitor_receive_device(worker_monitor);
499 break;
500 } else if (ev[i].data.fd == fd_signal && ev[i].events & EPOLLIN) {
501 struct signalfd_siginfo fdsi;
502 ssize_t size;
503
504 size = read(fd_signal, &fdsi, sizeof(struct signalfd_siginfo));
505 if (size != sizeof(struct signalfd_siginfo))
506 continue;
507 switch (fdsi.ssi_signo) {
508 case SIGTERM:
509 goto out;
510 }
511 }
512 }
513 }
514 }
82063a88 515out:
912541b0 516 udev_device_unref(dev);
e237d8cb 517 manager_free(manager);
baa30fbc 518 log_close();
8b46c3fc 519 _exit(r < 0 ? EXIT_FAILURE : EXIT_SUCCESS);
912541b0
KS
520 }
521 case -1:
912541b0 522 event->state = EVENT_QUEUED;
56f64d95 523 log_error_errno(errno, "fork of child failed: %m");
912541b0
KS
524 break;
525 default:
e03c7cc2
TG
526 {
527 struct worker *worker;
528
c0c6806b 529 r = worker_new(&worker, manager, worker_monitor, pid);
3a19b32a 530 if (r < 0)
e03c7cc2 531 return;
e03c7cc2 532
39c19cf1
TG
533 worker_attach_event(worker, event);
534
1fa2f38f 535 log_debug("seq %llu forked new worker ["PID_FMT"]", udev_device_get_seqnum(event->dev), pid);
912541b0
KS
536 break;
537 }
e03c7cc2 538 }
7fafc032
KS
539}
540
c0c6806b 541static void event_run(Manager *manager, struct event *event) {
a505965d
TG
542 struct worker *worker;
543 Iterator i;
912541b0 544
c0c6806b
TG
545 assert(manager);
546 assert(event);
547
548 HASHMAP_FOREACH(worker, manager->workers, i) {
912541b0
KS
549 ssize_t count;
550
551 if (worker->state != WORKER_IDLE)
552 continue;
553
c0c6806b 554 count = udev_monitor_send_device(manager->monitor, worker->monitor, event->dev);
912541b0 555 if (count < 0) {
1fa2f38f
ZJS
556 log_error_errno(errno, "worker ["PID_FMT"] did not accept message %zi (%m), kill it",
557 worker->pid, count);
cb542e84 558 (void) kill(worker->pid, SIGKILL);
912541b0
KS
559 worker->state = WORKER_KILLED;
560 continue;
561 }
39c19cf1 562 worker_attach_event(worker, event);
912541b0
KS
563 return;
564 }
565
c0c6806b 566 if (hashmap_size(manager->workers) >= arg_children_max) {
bba7a484 567 if (arg_children_max > 1)
c0c6806b 568 log_debug("maximum number (%i) of children reached", hashmap_size(manager->workers));
912541b0
KS
569 return;
570 }
571
572 /* start new worker and pass initial device */
c0c6806b 573 worker_spawn(manager, event);
1e03b754
KS
574}
575
ecb17862 576static int event_queue_insert(Manager *manager, struct udev_device *dev) {
912541b0 577 struct event *event;
cb49a4f2 578 int r;
912541b0 579
ecb17862
TG
580 assert(manager);
581 assert(dev);
582
040e6896
TG
583 /* only one process can add events to the queue */
584 if (manager->pid == 0)
df0ff127 585 manager->pid = getpid_cached();
040e6896 586
df0ff127 587 assert(manager->pid == getpid_cached());
cb49a4f2 588
955d98c9 589 event = new0(struct event, 1);
cb49a4f2
TG
590 if (!event)
591 return -ENOMEM;
912541b0 592
cb49a4f2 593 event->manager = manager;
912541b0 594 event->dev = dev;
6969c349
TG
595 event->dev_kernel = udev_device_shallow_clone(dev);
596 udev_device_copy_properties(event->dev_kernel, dev);
912541b0
KS
597 event->seqnum = udev_device_get_seqnum(dev);
598 event->devpath = udev_device_get_devpath(dev);
599 event->devpath_len = strlen(event->devpath);
600 event->devpath_old = udev_device_get_devpath_old(dev);
601 event->devnum = udev_device_get_devnum(dev);
ea6039a3 602 event->is_block = streq("block", udev_device_get_subsystem(dev));
912541b0
KS
603 event->ifindex = udev_device_get_ifindex(dev);
604
9f6445e3 605 log_debug("seq %llu queued, '%s' '%s'", udev_device_get_seqnum(dev),
912541b0
KS
606 udev_device_get_action(dev), udev_device_get_subsystem(dev));
607
608 event->state = EVENT_QUEUED;
cb49a4f2 609
40a57716 610 if (LIST_IS_EMPTY(manager->events)) {
cb49a4f2
TG
611 r = touch("/run/udev/queue");
612 if (r < 0)
613 log_warning_errno(r, "could not touch /run/udev/queue: %m");
614 }
615
40a57716 616 LIST_APPEND(event, manager->events, event);
cb49a4f2 617
912541b0 618 return 0;
fc465079
KS
619}
620
c0c6806b 621static void manager_kill_workers(Manager *manager) {
a505965d
TG
622 struct worker *worker;
623 Iterator i;
1e03b754 624
c0c6806b
TG
625 assert(manager);
626
627 HASHMAP_FOREACH(worker, manager->workers, i) {
912541b0
KS
628 if (worker->state == WORKER_KILLED)
629 continue;
1e03b754 630
912541b0 631 worker->state = WORKER_KILLED;
cb542e84 632 (void) kill(worker->pid, SIGTERM);
912541b0 633 }
1e03b754
KS
634}
635
e3196993 636/* lookup event for identical, parent, child device */
ecb17862 637static bool is_devpath_busy(Manager *manager, struct event *event) {
40a57716 638 struct event *loop_event;
912541b0
KS
639 size_t common;
640
641 /* check if queue contains events we depend on */
40a57716 642 LIST_FOREACH(event, loop_event, manager->events) {
87ac8d99 643 /* we already found a later event, earlier cannot block us, no need to check again */
912541b0
KS
644 if (loop_event->seqnum < event->delaying_seqnum)
645 continue;
646
647 /* event we checked earlier still exists, no need to check again */
648 if (loop_event->seqnum == event->delaying_seqnum)
649 return true;
650
651 /* found ourself, no later event can block us */
652 if (loop_event->seqnum >= event->seqnum)
653 break;
654
655 /* check major/minor */
656 if (major(event->devnum) != 0 && event->devnum == loop_event->devnum && event->is_block == loop_event->is_block)
657 return true;
658
659 /* check network device ifindex */
660 if (event->ifindex != 0 && event->ifindex == loop_event->ifindex)
661 return true;
662
663 /* check our old name */
090be865 664 if (event->devpath_old != NULL && streq(loop_event->devpath, event->devpath_old)) {
912541b0
KS
665 event->delaying_seqnum = loop_event->seqnum;
666 return true;
667 }
668
669 /* compare devpath */
670 common = MIN(loop_event->devpath_len, event->devpath_len);
671
672 /* one devpath is contained in the other? */
673 if (memcmp(loop_event->devpath, event->devpath, common) != 0)
674 continue;
675
676 /* identical device event found */
677 if (loop_event->devpath_len == event->devpath_len) {
678 /* devices names might have changed/swapped in the meantime */
679 if (major(event->devnum) != 0 && (event->devnum != loop_event->devnum || event->is_block != loop_event->is_block))
680 continue;
681 if (event->ifindex != 0 && event->ifindex != loop_event->ifindex)
682 continue;
683 event->delaying_seqnum = loop_event->seqnum;
684 return true;
685 }
686
687 /* parent device event found */
688 if (event->devpath[common] == '/') {
689 event->delaying_seqnum = loop_event->seqnum;
690 return true;
691 }
692
693 /* child device event found */
694 if (loop_event->devpath[common] == '/') {
695 event->delaying_seqnum = loop_event->seqnum;
696 return true;
697 }
698
699 /* no matching device */
700 continue;
701 }
702
703 return false;
7fafc032
KS
704}
705
693d371d
TG
706static int on_exit_timeout(sd_event_source *s, uint64_t usec, void *userdata) {
707 Manager *manager = userdata;
708
709 assert(manager);
710
711 log_error_errno(ETIMEDOUT, "giving up waiting for workers to finish");
712
713 sd_event_exit(manager->event, -ETIMEDOUT);
714
715 return 1;
716}
717
62d43dac 718static void manager_exit(Manager *manager) {
693d371d
TG
719 uint64_t usec;
720 int r;
62d43dac
TG
721
722 assert(manager);
723
724 manager->exit = true;
725
b79aacbf
TG
726 sd_notify(false,
727 "STOPPING=1\n"
728 "STATUS=Starting shutdown...");
729
62d43dac 730 /* close sources of new events and discard buffered events */
693d371d 731 manager->ctrl_event = sd_event_source_unref(manager->ctrl_event);
ab7854df 732 manager->ctrl = udev_ctrl_unref(manager->ctrl);
62d43dac 733
693d371d 734 manager->inotify_event = sd_event_source_unref(manager->inotify_event);
ab7854df 735 manager->fd_inotify = safe_close(manager->fd_inotify);
62d43dac 736
693d371d 737 manager->uevent_event = sd_event_source_unref(manager->uevent_event);
ab7854df 738 manager->monitor = udev_monitor_unref(manager->monitor);
62d43dac
TG
739
740 /* discard queued events and kill workers */
741 event_queue_cleanup(manager, EVENT_QUEUED);
742 manager_kill_workers(manager);
693d371d 743
3285baa8 744 assert_se(sd_event_now(manager->event, CLOCK_MONOTONIC, &usec) >= 0);
693d371d 745
3285baa8 746 r = sd_event_add_time(manager->event, NULL, CLOCK_MONOTONIC,
693d371d
TG
747 usec + 30 * USEC_PER_SEC, USEC_PER_SEC, on_exit_timeout, manager);
748 if (r < 0)
749 return;
62d43dac
TG
750}
751
752/* reload requested, HUP signal received, rules changed, builtin changed */
753static void manager_reload(Manager *manager) {
754
755 assert(manager);
756
b79aacbf
TG
757 sd_notify(false,
758 "RELOADING=1\n"
759 "STATUS=Flushing configuration...");
760
62d43dac
TG
761 manager_kill_workers(manager);
762 manager->rules = udev_rules_unref(manager->rules);
2024ed61 763 udev_builtin_exit();
b79aacbf 764
1ef72b55
MS
765 sd_notifyf(false,
766 "READY=1\n"
767 "STATUS=Processing with %u children at max", arg_children_max);
62d43dac
TG
768}
769
c0c6806b 770static void event_queue_start(Manager *manager) {
40a57716 771 struct event *event;
693d371d 772 usec_t usec;
8ab44e3f 773
c0c6806b
TG
774 assert(manager);
775
40a57716 776 if (LIST_IS_EMPTY(manager->events) ||
7c4c7e89
TG
777 manager->exit || manager->stop_exec_queue)
778 return;
779
3285baa8 780 assert_se(sd_event_now(manager->event, CLOCK_MONOTONIC, &usec) >= 0);
38a03f06
LP
781 /* check for changed config, every 3 seconds at most */
782 if (manager->last_usec == 0 ||
783 (usec - manager->last_usec) > 3 * USEC_PER_SEC) {
784 if (udev_rules_check_timestamp(manager->rules) ||
2024ed61 785 udev_builtin_validate())
38a03f06 786 manager_reload(manager);
693d371d 787
38a03f06 788 manager->last_usec = usec;
7c4c7e89
TG
789 }
790
2024ed61 791 udev_builtin_init();
7c4c7e89
TG
792
793 if (!manager->rules) {
2024ed61 794 manager->rules = udev_rules_new(arg_resolve_names);
7c4c7e89
TG
795 if (!manager->rules)
796 return;
797 }
798
40a57716 799 LIST_FOREACH(event,event,manager->events) {
912541b0
KS
800 if (event->state != EVENT_QUEUED)
801 continue;
0bc74ea7 802
912541b0 803 /* do not start event if parent or child event is still running */
ecb17862 804 if (is_devpath_busy(manager, event))
912541b0 805 continue;
fc465079 806
c0c6806b 807 event_run(manager, event);
912541b0 808 }
1e03b754
KS
809}
810
ecb17862 811static void event_queue_cleanup(Manager *manager, enum event_state match_type) {
40a57716 812 struct event *event, *tmp;
ff2c503d 813
40a57716 814 LIST_FOREACH_SAFE(event, event, tmp, manager->events) {
912541b0
KS
815 if (match_type != EVENT_UNDEF && match_type != event->state)
816 continue;
ff2c503d 817
c6aa11f2 818 event_free(event);
912541b0 819 }
ff2c503d
KS
820}
821
e82e8fa5 822static int on_worker(sd_event_source *s, int fd, uint32_t revents, void *userdata) {
c0c6806b
TG
823 Manager *manager = userdata;
824
825 assert(manager);
826
912541b0
KS
827 for (;;) {
828 struct worker_message msg;
979558f3
TG
829 struct iovec iovec = {
830 .iov_base = &msg,
831 .iov_len = sizeof(msg),
832 };
833 union {
834 struct cmsghdr cmsghdr;
835 uint8_t buf[CMSG_SPACE(sizeof(struct ucred))];
836 } control = {};
837 struct msghdr msghdr = {
838 .msg_iov = &iovec,
839 .msg_iovlen = 1,
840 .msg_control = &control,
841 .msg_controllen = sizeof(control),
842 };
843 struct cmsghdr *cmsg;
912541b0 844 ssize_t size;
979558f3 845 struct ucred *ucred = NULL;
a505965d 846 struct worker *worker;
912541b0 847
e82e8fa5 848 size = recvmsg(fd, &msghdr, MSG_DONTWAIT);
979558f3 849 if (size < 0) {
738a7907
TG
850 if (errno == EINTR)
851 continue;
852 else if (errno == EAGAIN)
853 /* nothing more to read */
854 break;
979558f3 855
e82e8fa5 856 return log_error_errno(errno, "failed to receive message: %m");
979558f3
TG
857 } else if (size != sizeof(struct worker_message)) {
858 log_warning_errno(EIO, "ignoring worker message with invalid size %zi bytes", size);
e82e8fa5 859 continue;
979558f3
TG
860 }
861
2a1288ff 862 CMSG_FOREACH(cmsg, &msghdr) {
979558f3
TG
863 if (cmsg->cmsg_level == SOL_SOCKET &&
864 cmsg->cmsg_type == SCM_CREDENTIALS &&
865 cmsg->cmsg_len == CMSG_LEN(sizeof(struct ucred)))
866 ucred = (struct ucred*) CMSG_DATA(cmsg);
867 }
868
869 if (!ucred || ucred->pid <= 0) {
870 log_warning_errno(EIO, "ignoring worker message without valid PID");
871 continue;
872 }
912541b0
KS
873
874 /* lookup worker who sent the signal */
4a0b58c4 875 worker = hashmap_get(manager->workers, PID_TO_PTR(ucred->pid));
a505965d
TG
876 if (!worker) {
877 log_debug("worker ["PID_FMT"] returned, but is no longer tracked", ucred->pid);
878 continue;
912541b0 879 }
c0bbfd72 880
a505965d
TG
881 if (worker->state != WORKER_KILLED)
882 worker->state = WORKER_IDLE;
883
884 /* worker returned */
885 event_free(worker->event);
912541b0 886 }
e82e8fa5 887
8302fe5a
TG
888 /* we have free workers, try to schedule events */
889 event_queue_start(manager);
890
e82e8fa5
TG
891 return 1;
892}
893
894static int on_uevent(sd_event_source *s, int fd, uint32_t revents, void *userdata) {
c0c6806b 895 Manager *manager = userdata;
e82e8fa5
TG
896 struct udev_device *dev;
897 int r;
898
c0c6806b 899 assert(manager);
e82e8fa5 900
c0c6806b 901 dev = udev_monitor_receive_device(manager->monitor);
e82e8fa5
TG
902 if (dev) {
903 udev_device_ensure_usec_initialized(dev, NULL);
ecb17862 904 r = event_queue_insert(manager, dev);
e82e8fa5
TG
905 if (r < 0)
906 udev_device_unref(dev);
8302fe5a
TG
907 else
908 /* we have fresh events, try to schedule them */
909 event_queue_start(manager);
e82e8fa5
TG
910 }
911
912 return 1;
88f4b648
KS
913}
914
3b47c739 915/* receive the udevd message from userspace */
e82e8fa5 916static int on_ctrl_msg(sd_event_source *s, int fd, uint32_t revents, void *userdata) {
c0c6806b 917 Manager *manager = userdata;
8e766630
LP
918 _cleanup_(udev_ctrl_connection_unrefp) struct udev_ctrl_connection *ctrl_conn = NULL;
919 _cleanup_(udev_ctrl_msg_unrefp) struct udev_ctrl_msg *ctrl_msg = NULL;
912541b0
KS
920 const char *str;
921 int i;
922
c0c6806b 923 assert(manager);
e4f66b77 924
c0c6806b 925 ctrl_conn = udev_ctrl_get_connection(manager->ctrl);
e4f66b77 926 if (!ctrl_conn)
e82e8fa5 927 return 1;
912541b0
KS
928
929 ctrl_msg = udev_ctrl_receive_msg(ctrl_conn);
e4f66b77 930 if (!ctrl_msg)
e82e8fa5 931 return 1;
912541b0
KS
932
933 i = udev_ctrl_get_set_log_level(ctrl_msg);
934 if (i >= 0) {
ed14edc0 935 log_debug("udevd message (SET_LOG_LEVEL) received, log_priority=%i", i);
baa30fbc 936 log_set_max_level(i);
c0c6806b 937 manager_kill_workers(manager);
912541b0
KS
938 }
939
940 if (udev_ctrl_get_stop_exec_queue(ctrl_msg) > 0) {
9f6445e3 941 log_debug("udevd message (STOP_EXEC_QUEUE) received");
c0c6806b 942 manager->stop_exec_queue = true;
912541b0
KS
943 }
944
945 if (udev_ctrl_get_start_exec_queue(ctrl_msg) > 0) {
9f6445e3 946 log_debug("udevd message (START_EXEC_QUEUE) received");
c0c6806b 947 manager->stop_exec_queue = false;
8302fe5a 948 event_queue_start(manager);
912541b0
KS
949 }
950
951 if (udev_ctrl_get_reload(ctrl_msg) > 0) {
9f6445e3 952 log_debug("udevd message (RELOAD) received");
62d43dac 953 manager_reload(manager);
912541b0
KS
954 }
955
956 str = udev_ctrl_get_set_env(ctrl_msg);
957 if (str != NULL) {
c0c6806b 958 _cleanup_free_ char *key = NULL;
912541b0
KS
959
960 key = strdup(str);
c0c6806b 961 if (key) {
912541b0
KS
962 char *val;
963
964 val = strchr(key, '=');
965 if (val != NULL) {
966 val[0] = '\0';
967 val = &val[1];
968 if (val[0] == '\0') {
9f6445e3 969 log_debug("udevd message (ENV) received, unset '%s'", key);
c0c6806b 970 udev_list_entry_add(&manager->properties, key, NULL);
912541b0 971 } else {
9f6445e3 972 log_debug("udevd message (ENV) received, set '%s=%s'", key, val);
c0c6806b 973 udev_list_entry_add(&manager->properties, key, val);
912541b0 974 }
c0c6806b 975 } else
9f6445e3 976 log_error("wrong key format '%s'", key);
912541b0 977 }
c0c6806b 978 manager_kill_workers(manager);
912541b0
KS
979 }
980
981 i = udev_ctrl_get_set_children_max(ctrl_msg);
982 if (i >= 0) {
9f6445e3 983 log_debug("udevd message (SET_MAX_CHILDREN) received, children_max=%i", i);
bba7a484 984 arg_children_max = i;
1ef72b55
MS
985
986 (void) sd_notifyf(false,
987 "READY=1\n"
988 "STATUS=Processing with %u children at max", arg_children_max);
912541b0
KS
989 }
990
cb49a4f2 991 if (udev_ctrl_get_ping(ctrl_msg) > 0)
9f6445e3 992 log_debug("udevd message (SYNC) received");
912541b0
KS
993
994 if (udev_ctrl_get_exit(ctrl_msg) > 0) {
9f6445e3 995 log_debug("udevd message (EXIT) received");
62d43dac 996 manager_exit(manager);
c0c6806b
TG
997 /* keep reference to block the client until we exit
998 TODO: deal with several blocking exit requests */
999 manager->ctrl_conn_blocking = udev_ctrl_connection_ref(ctrl_conn);
912541b0 1000 }
e4f66b77 1001
e82e8fa5 1002 return 1;
88f4b648 1003}
4a231017 1004
70068602
YW
1005static int synthesize_change(sd_device *dev) {
1006 const char *subsystem, *sysname, *devname, *syspath, *devtype;
1007 char filename[PATH_MAX];
f3a740a5 1008 int r;
edd32000 1009
70068602
YW
1010 r = sd_device_get_subsystem(dev, &subsystem);
1011 if (r < 0)
1012 return r;
1013
1014 r = sd_device_get_sysname(dev, &sysname);
1015 if (r < 0)
1016 return r;
1017
1018 r = sd_device_get_devname(dev, &devname);
1019 if (r < 0)
1020 return r;
1021
1022 r = sd_device_get_syspath(dev, &syspath);
1023 if (r < 0)
1024 return r;
1025
1026 r = sd_device_get_devtype(dev, &devtype);
1027 if (r < 0)
1028 return r;
1029
1030 if (streq_ptr("block", subsystem) &&
1031 streq_ptr("disk", devtype) &&
1032 !startswith(sysname, "dm-")) {
1033 _cleanup_(sd_device_enumerator_unrefp) sd_device_enumerator *e = NULL;
1034 bool part_table_read = false, has_partitions = false;
1035 sd_device *d;
ede34445 1036 int fd;
f3a740a5 1037
ede34445 1038 /*
e9fc29f4
KS
1039 * Try to re-read the partition table. This only succeeds if
1040 * none of the devices is busy. The kernel returns 0 if no
1041 * partition table is found, and we will not get an event for
1042 * the disk.
ede34445 1043 */
70068602 1044 fd = open(devname, O_RDONLY|O_CLOEXEC|O_NOFOLLOW|O_NONBLOCK);
ede34445 1045 if (fd >= 0) {
02ba8fb3
KS
1046 r = flock(fd, LOCK_EX|LOCK_NB);
1047 if (r >= 0)
1048 r = ioctl(fd, BLKRRPART, 0);
1049
ede34445
KS
1050 close(fd);
1051 if (r >= 0)
e9fc29f4 1052 part_table_read = true;
ede34445
KS
1053 }
1054
e9fc29f4 1055 /* search for partitions */
70068602 1056 r = sd_device_enumerator_new(&e);
f3a740a5
KS
1057 if (r < 0)
1058 return r;
1059
70068602 1060 r = sd_device_enumerator_allow_uninitialized(e);
f3a740a5
KS
1061 if (r < 0)
1062 return r;
1063
70068602 1064 r = sd_device_enumerator_add_match_parent(e, dev);
47a3fa0f
TA
1065 if (r < 0)
1066 return r;
e9fc29f4 1067
70068602
YW
1068 r = sd_device_enumerator_add_match_subsystem(e, "block", true);
1069 if (r < 0)
1070 return r;
e9fc29f4 1071
70068602
YW
1072 FOREACH_DEVICE(e, d) {
1073 const char *t;
e9fc29f4 1074
70068602
YW
1075 if (sd_device_get_devtype(d, &t) < 0 ||
1076 !streq("partition", t))
e9fc29f4
KS
1077 continue;
1078
1079 has_partitions = true;
1080 break;
1081 }
1082
1083 /*
1084 * We have partitions and re-read the table, the kernel already sent
1085 * out a "change" event for the disk, and "remove/add" for all
1086 * partitions.
1087 */
1088 if (part_table_read && has_partitions)
1089 return 0;
1090
1091 /*
1092 * We have partitions but re-reading the partition table did not
1093 * work, synthesize "change" for the disk and all partitions.
1094 */
70068602
YW
1095 log_debug("Device '%s' is closed, synthesising 'change'", devname);
1096 strscpyl(filename, sizeof(filename), syspath, "/uevent", NULL);
4c1fc3e4 1097 write_string_file(filename, "change", WRITE_STRING_FILE_CREATE);
e9fc29f4 1098
70068602
YW
1099 FOREACH_DEVICE(e, d) {
1100 const char *t, *n, *s;
f3a740a5 1101
70068602
YW
1102 if (sd_device_get_devtype(d, &t) < 0 ||
1103 !streq("partition", t))
f3a740a5
KS
1104 continue;
1105
70068602
YW
1106 if (sd_device_get_devname(d, &n) < 0 ||
1107 sd_device_get_syspath(d, &s) < 0)
f3a740a5
KS
1108 continue;
1109
70068602
YW
1110 log_debug("Device '%s' is closed, synthesising partition '%s' 'change'", devname, n);
1111 strscpyl(filename, sizeof(filename), s, "/uevent", NULL);
4c1fc3e4 1112 write_string_file(filename, "change", WRITE_STRING_FILE_CREATE);
f3a740a5 1113 }
ede34445
KS
1114
1115 return 0;
f3a740a5
KS
1116 }
1117
70068602
YW
1118 log_debug("Device %s is closed, synthesising 'change'", devname);
1119 strscpyl(filename, sizeof(filename), syspath, "/uevent", NULL);
4c1fc3e4 1120 write_string_file(filename, "change", WRITE_STRING_FILE_CREATE);
ede34445 1121
f3a740a5 1122 return 0;
edd32000
KS
1123}
1124
e82e8fa5 1125static int on_inotify(sd_event_source *s, int fd, uint32_t revents, void *userdata) {
c0c6806b 1126 Manager *manager = userdata;
0254e944 1127 union inotify_event_buffer buffer;
f7c1ad4f
LP
1128 struct inotify_event *e;
1129 ssize_t l;
912541b0 1130
c0c6806b 1131 assert(manager);
e82e8fa5
TG
1132
1133 l = read(fd, &buffer, sizeof(buffer));
f7c1ad4f 1134 if (l < 0) {
3742095b 1135 if (IN_SET(errno, EAGAIN, EINTR))
e82e8fa5 1136 return 1;
912541b0 1137
f7c1ad4f 1138 return log_error_errno(errno, "Failed to read inotify fd: %m");
912541b0
KS
1139 }
1140
f7c1ad4f 1141 FOREACH_INOTIFY_EVENT(e, buffer, l) {
70068602
YW
1142 _cleanup_(sd_device_unrefp) sd_device *dev = NULL;
1143 const char *devnode;
1144
1145 if (udev_watch_lookup(e->wd, &dev) < 0)
1146 continue;
912541b0 1147
70068602 1148 if (sd_device_get_devname(dev, &devnode) < 0)
edd32000 1149 continue;
912541b0 1150
70068602 1151 log_debug("inotify event: %x for %s", e->mask, devnode);
a8389097 1152 if (e->mask & IN_CLOSE_WRITE) {
edd32000 1153 synthesize_change(dev);
a8389097
TG
1154
1155 /* settle might be waiting on us to determine the queue
1156 * state. If we just handled an inotify event, we might have
1157 * generated a "change" event, but we won't have queued up
1158 * the resultant uevent yet. Do that.
1159 */
c0c6806b 1160 on_uevent(NULL, -1, 0, manager);
a8389097 1161 } else if (e->mask & IN_IGNORED)
2024ed61 1162 udev_watch_end(dev);
912541b0
KS
1163 }
1164
e82e8fa5 1165 return 1;
bd284db1
SJR
1166}
1167
0561329d 1168static int on_sigterm(sd_event_source *s, const struct signalfd_siginfo *si, void *userdata) {
c0c6806b
TG
1169 Manager *manager = userdata;
1170
1171 assert(manager);
1172
62d43dac 1173 manager_exit(manager);
912541b0 1174
e82e8fa5
TG
1175 return 1;
1176}
912541b0 1177
0561329d 1178static int on_sighup(sd_event_source *s, const struct signalfd_siginfo *si, void *userdata) {
c0c6806b
TG
1179 Manager *manager = userdata;
1180
1181 assert(manager);
1182
62d43dac 1183 manager_reload(manager);
912541b0 1184
e82e8fa5
TG
1185 return 1;
1186}
912541b0 1187
e82e8fa5 1188static int on_sigchld(sd_event_source *s, const struct signalfd_siginfo *si, void *userdata) {
c0c6806b
TG
1189 Manager *manager = userdata;
1190
1191 assert(manager);
1192
e82e8fa5
TG
1193 for (;;) {
1194 pid_t pid;
1195 int status;
1196 struct worker *worker;
d1317d02 1197
e82e8fa5
TG
1198 pid = waitpid(-1, &status, WNOHANG);
1199 if (pid <= 0)
f29328d6 1200 break;
e82e8fa5 1201
4a0b58c4 1202 worker = hashmap_get(manager->workers, PID_TO_PTR(pid));
e82e8fa5
TG
1203 if (!worker) {
1204 log_warning("worker ["PID_FMT"] is unknown, ignoring", pid);
f29328d6 1205 continue;
912541b0 1206 }
e82e8fa5
TG
1207
1208 if (WIFEXITED(status)) {
1209 if (WEXITSTATUS(status) == 0)
1210 log_debug("worker ["PID_FMT"] exited", pid);
1211 else
1212 log_warning("worker ["PID_FMT"] exited with return code %i", pid, WEXITSTATUS(status));
1213 } else if (WIFSIGNALED(status)) {
76341acc 1214 log_warning("worker ["PID_FMT"] terminated by signal %i (%s)", pid, WTERMSIG(status), signal_to_string(WTERMSIG(status)));
e82e8fa5
TG
1215 } else if (WIFSTOPPED(status)) {
1216 log_info("worker ["PID_FMT"] stopped", pid);
f29328d6 1217 continue;
e82e8fa5
TG
1218 } else if (WIFCONTINUED(status)) {
1219 log_info("worker ["PID_FMT"] continued", pid);
f29328d6 1220 continue;
e82e8fa5
TG
1221 } else
1222 log_warning("worker ["PID_FMT"] exit with status 0x%04x", pid, status);
1223
1224 if (!WIFEXITED(status) || WEXITSTATUS(status) != 0) {
1225 if (worker->event) {
1226 log_error("worker ["PID_FMT"] failed while handling '%s'", pid, worker->event->devpath);
1227 /* delete state from disk */
1228 udev_device_delete_db(worker->event->dev);
1229 udev_device_tag_index(worker->event->dev, NULL, false);
1230 /* forward kernel event without amending it */
c0c6806b 1231 udev_monitor_send_device(manager->monitor, NULL, worker->event->dev_kernel);
e82e8fa5
TG
1232 }
1233 }
1234
1235 worker_free(worker);
912541b0 1236 }
e82e8fa5 1237
8302fe5a
TG
1238 /* we can start new workers, try to schedule events */
1239 event_queue_start(manager);
1240
e82e8fa5 1241 return 1;
f27125f9 1242}
1243
693d371d
TG
1244static int on_post(sd_event_source *s, void *userdata) {
1245 Manager *manager = userdata;
1246 int r;
1247
1248 assert(manager);
1249
40a57716 1250 if (LIST_IS_EMPTY(manager->events)) {
693d371d
TG
1251 /* no pending events */
1252 if (!hashmap_isempty(manager->workers)) {
1253 /* there are idle workers */
1254 log_debug("cleanup idle workers");
1255 manager_kill_workers(manager);
1256 } else {
1257 /* we are idle */
1258 if (manager->exit) {
1259 r = sd_event_exit(manager->event, 0);
1260 if (r < 0)
1261 return r;
1262 } else if (manager->cgroup)
1263 /* cleanup possible left-over processes in our cgroup */
1d98fef1 1264 cg_kill(SYSTEMD_CGROUP_CONTROLLER, manager->cgroup, SIGKILL, CGROUP_IGNORE_SELF, NULL, NULL, NULL);
693d371d
TG
1265 }
1266 }
1267
1268 return 1;
1269}
1270
fcff1e72
TG
1271static int listen_fds(int *rctrl, int *rnetlink) {
1272 int ctrl_fd = -1, netlink_fd = -1;
f59118ec 1273 int fd, n, r;
912541b0 1274
fcff1e72
TG
1275 assert(rctrl);
1276 assert(rnetlink);
1277
912541b0 1278 n = sd_listen_fds(true);
fcff1e72
TG
1279 if (n < 0)
1280 return n;
912541b0
KS
1281
1282 for (fd = SD_LISTEN_FDS_START; fd < n + SD_LISTEN_FDS_START; fd++) {
1283 if (sd_is_socket(fd, AF_LOCAL, SOCK_SEQPACKET, -1)) {
fcff1e72
TG
1284 if (ctrl_fd >= 0)
1285 return -EINVAL;
1286 ctrl_fd = fd;
912541b0
KS
1287 continue;
1288 }
1289
1290 if (sd_is_socket(fd, AF_NETLINK, SOCK_RAW, -1)) {
fcff1e72
TG
1291 if (netlink_fd >= 0)
1292 return -EINVAL;
1293 netlink_fd = fd;
912541b0
KS
1294 continue;
1295 }
1296
fcff1e72 1297 return -EINVAL;
912541b0
KS
1298 }
1299
f59118ec 1300 if (ctrl_fd < 0) {
8e766630 1301 _cleanup_(udev_ctrl_unrefp) struct udev_ctrl *ctrl = NULL;
f59118ec 1302
2024ed61 1303 ctrl = udev_ctrl_new();
f59118ec
TG
1304 if (!ctrl)
1305 return log_error_errno(EINVAL, "error initializing udev control socket");
1306
1307 r = udev_ctrl_enable_receiving(ctrl);
1308 if (r < 0)
1309 return log_error_errno(EINVAL, "error binding udev control socket");
1310
1311 fd = udev_ctrl_get_fd(ctrl);
1312 if (fd < 0)
1313 return log_error_errno(EIO, "could not get ctrl fd");
fcff1e72 1314
f59118ec
TG
1315 ctrl_fd = fcntl(fd, F_DUPFD_CLOEXEC, 3);
1316 if (ctrl_fd < 0)
1317 return log_error_errno(errno, "could not dup ctrl fd: %m");
1318 }
1319
1320 if (netlink_fd < 0) {
8e766630 1321 _cleanup_(udev_monitor_unrefp) struct udev_monitor *monitor = NULL;
f59118ec 1322
2024ed61 1323 monitor = udev_monitor_new_from_netlink(NULL, "kernel");
f59118ec
TG
1324 if (!monitor)
1325 return log_error_errno(EINVAL, "error initializing netlink socket");
1326
1327 (void) udev_monitor_set_receive_buffer_size(monitor, 128 * 1024 * 1024);
1328
1329 r = udev_monitor_enable_receiving(monitor);
1330 if (r < 0)
1331 return log_error_errno(EINVAL, "error binding netlink socket");
1332
1333 fd = udev_monitor_get_fd(monitor);
1334 if (fd < 0)
1335 return log_error_errno(netlink_fd, "could not get uevent fd: %m");
1336
1337 netlink_fd = fcntl(fd, F_DUPFD_CLOEXEC, 3);
a92cf784 1338 if (netlink_fd < 0)
f59118ec
TG
1339 return log_error_errno(errno, "could not dup netlink fd: %m");
1340 }
fcff1e72
TG
1341
1342 *rctrl = ctrl_fd;
1343 *rnetlink = netlink_fd;
912541b0 1344
912541b0 1345 return 0;
7459bcdc
KS
1346}
1347
e6f86cac 1348/*
3f85ef0f 1349 * read the kernel command line, in case we need to get into debug mode
1d84ad94
LP
1350 * udev.log_priority=<level> syslog priority
1351 * udev.children_max=<number of workers> events are fully serialized if set to 1
1352 * udev.exec_delay=<number of seconds> delay execution of every executed program
1353 * udev.event_timeout=<number of seconds> seconds to wait before terminating an event
e6f86cac 1354 */
96287a49 1355static int parse_proc_cmdline_item(const char *key, const char *value, void *data) {
92e72467 1356 int r = 0;
e6f86cac 1357
614a823c 1358 assert(key);
e6f86cac 1359
614a823c
TG
1360 if (!value)
1361 return 0;
e6f86cac 1362
1d84ad94
LP
1363 if (proc_cmdline_key_streq(key, "udev.log_priority")) {
1364
1365 if (proc_cmdline_value_missing(key, value))
1366 return 0;
1367
92e72467
ZJS
1368 r = util_log_priority(value);
1369 if (r >= 0)
1370 log_set_max_level(r);
1d84ad94
LP
1371
1372 } else if (proc_cmdline_key_streq(key, "udev.event_timeout")) {
1373
1374 if (proc_cmdline_value_missing(key, value))
1375 return 0;
1376
92e72467
ZJS
1377 r = safe_atou64(value, &arg_event_timeout_usec);
1378 if (r >= 0) {
1379 arg_event_timeout_usec *= USEC_PER_SEC;
1380 arg_event_timeout_warn_usec = (arg_event_timeout_usec / 3) ? : 1;
1381 }
1d84ad94
LP
1382
1383 } else if (proc_cmdline_key_streq(key, "udev.children_max")) {
1384
1385 if (proc_cmdline_value_missing(key, value))
1386 return 0;
1387
020328e1 1388 r = safe_atou(value, &arg_children_max);
1d84ad94
LP
1389
1390 } else if (proc_cmdline_key_streq(key, "udev.exec_delay")) {
1391
1392 if (proc_cmdline_value_missing(key, value))
1393 return 0;
1394
614a823c 1395 r = safe_atoi(value, &arg_exec_delay);
1d84ad94
LP
1396
1397 } else if (startswith(key, "udev."))
92e72467 1398 log_warning("Unknown udev kernel command line option \"%s\"", key);
614a823c 1399
92e72467
ZJS
1400 if (r < 0)
1401 log_warning_errno(r, "Failed to parse \"%s=%s\", ignoring: %m", key, value);
1d84ad94 1402
614a823c 1403 return 0;
e6f86cac
KS
1404}
1405
37ec0fdd
LP
1406static int help(void) {
1407 _cleanup_free_ char *link = NULL;
1408 int r;
1409
1410 r = terminal_urlify_man("systemd-udevd.service", "8", &link);
1411 if (r < 0)
1412 return log_oom();
1413
ed216e1f
TG
1414 printf("%s [OPTIONS...]\n\n"
1415 "Manages devices.\n\n"
5ac0162c 1416 " -h --help Print this message\n"
2d19c17e
MF
1417 " -V --version Print version of the program\n"
1418 " -d --daemon Detach and run in the background\n"
1419 " -D --debug Enable debug output\n"
1420 " -c --children-max=INT Set maximum number of workers\n"
1421 " -e --exec-delay=SECONDS Seconds to wait before executing RUN=\n"
1422 " -t --event-timeout=SECONDS Seconds to wait before terminating an event\n"
1423 " -N --resolve-names=early|late|never\n"
5ac0162c 1424 " When to resolve users and groups\n"
37ec0fdd
LP
1425 "\nSee the %s for details.\n"
1426 , program_invocation_short_name
1427 , link
1428 );
1429
1430 return 0;
ed216e1f
TG
1431}
1432
bba7a484 1433static int parse_argv(int argc, char *argv[]) {
912541b0 1434 static const struct option options[] = {
bba7a484
TG
1435 { "daemon", no_argument, NULL, 'd' },
1436 { "debug", no_argument, NULL, 'D' },
1437 { "children-max", required_argument, NULL, 'c' },
1438 { "exec-delay", required_argument, NULL, 'e' },
1439 { "event-timeout", required_argument, NULL, 't' },
1440 { "resolve-names", required_argument, NULL, 'N' },
1441 { "help", no_argument, NULL, 'h' },
1442 { "version", no_argument, NULL, 'V' },
912541b0
KS
1443 {}
1444 };
689a97f5 1445
bba7a484 1446 int c;
689a97f5 1447
bba7a484
TG
1448 assert(argc >= 0);
1449 assert(argv);
912541b0 1450
e14b6f21 1451 while ((c = getopt_long(argc, argv, "c:de:Dt:N:hV", options, NULL)) >= 0) {
f1e8664e 1452 int r;
912541b0 1453
bba7a484 1454 switch (c) {
912541b0 1455
912541b0 1456 case 'd':
bba7a484 1457 arg_daemonize = true;
912541b0
KS
1458 break;
1459 case 'c':
020328e1 1460 r = safe_atou(optarg, &arg_children_max);
6f5cf8a8
TG
1461 if (r < 0)
1462 log_warning("Invalid --children-max ignored: %s", optarg);
912541b0
KS
1463 break;
1464 case 'e':
6f5cf8a8
TG
1465 r = safe_atoi(optarg, &arg_exec_delay);
1466 if (r < 0)
1467 log_warning("Invalid --exec-delay ignored: %s", optarg);
912541b0 1468 break;
9719859c 1469 case 't':
f1e8664e
TG
1470 r = safe_atou64(optarg, &arg_event_timeout_usec);
1471 if (r < 0)
65fea570 1472 log_warning("Invalid --event-timeout ignored: %s", optarg);
6f5cf8a8
TG
1473 else {
1474 arg_event_timeout_usec *= USEC_PER_SEC;
1475 arg_event_timeout_warn_usec = (arg_event_timeout_usec / 3) ? : 1;
1476 }
9719859c 1477 break;
912541b0 1478 case 'D':
bba7a484 1479 arg_debug = true;
912541b0
KS
1480 break;
1481 case 'N':
090be865 1482 if (streq(optarg, "early")) {
bba7a484 1483 arg_resolve_names = 1;
090be865 1484 } else if (streq(optarg, "late")) {
bba7a484 1485 arg_resolve_names = 0;
090be865 1486 } else if (streq(optarg, "never")) {
bba7a484 1487 arg_resolve_names = -1;
912541b0 1488 } else {
9f6445e3 1489 log_error("resolve-names must be early, late or never");
bba7a484 1490 return 0;
912541b0
KS
1491 }
1492 break;
1493 case 'h':
37ec0fdd 1494 return help();
912541b0 1495 case 'V':
948aaa7c 1496 printf("%s\n", PACKAGE_VERSION);
bba7a484
TG
1497 return 0;
1498 case '?':
1499 return -EINVAL;
912541b0 1500 default:
bba7a484
TG
1501 assert_not_reached("Unhandled option");
1502
912541b0
KS
1503 }
1504 }
1505
bba7a484
TG
1506 return 1;
1507}
1508
b7f74dd4 1509static int manager_new(Manager **ret, int fd_ctrl, int fd_uevent, const char *cgroup) {
c0c6806b 1510 _cleanup_(manager_freep) Manager *manager = NULL;
6d5e65f6 1511 int r, fd_worker;
c0c6806b
TG
1512
1513 assert(ret);
11b1dd8c
TG
1514 assert(fd_ctrl >= 0);
1515 assert(fd_uevent >= 0);
c0c6806b
TG
1516
1517 manager = new0(Manager, 1);
1518 if (!manager)
1519 return log_oom();
1520
e237d8cb
TG
1521 manager->fd_inotify = -1;
1522 manager->worker_watch[WRITE_END] = -1;
1523 manager->worker_watch[READ_END] = -1;
1524
2024ed61 1525 udev_builtin_init();
b2d21d93 1526
2024ed61 1527 manager->rules = udev_rules_new(arg_resolve_names);
ecb17862
TG
1528 if (!manager->rules)
1529 return log_error_errno(ENOMEM, "error reading rules");
1530
40a57716 1531 LIST_HEAD_INIT(manager->events);
2024ed61 1532 udev_list_init(NULL, &manager->properties, true);
ecb17862 1533
c26d1879
TG
1534 manager->cgroup = cgroup;
1535
2024ed61 1536 manager->ctrl = udev_ctrl_new_from_fd(fd_ctrl);
f59118ec
TG
1537 if (!manager->ctrl)
1538 return log_error_errno(EINVAL, "error taking over udev control socket");
e237d8cb 1539
2024ed61 1540 manager->monitor = udev_monitor_new_from_netlink_fd(NULL, "kernel", fd_uevent);
f59118ec
TG
1541 if (!manager->monitor)
1542 return log_error_errno(EINVAL, "error taking over netlink socket");
e237d8cb
TG
1543
1544 /* unnamed socket from workers to the main daemon */
1545 r = socketpair(AF_LOCAL, SOCK_DGRAM|SOCK_CLOEXEC, 0, manager->worker_watch);
1546 if (r < 0)
1547 return log_error_errno(errno, "error creating socketpair: %m");
1548
693d371d 1549 fd_worker = manager->worker_watch[READ_END];
e237d8cb 1550
6d5e65f6 1551 r = setsockopt(fd_worker, SOL_SOCKET, SO_PASSCRED, &const_int_one, sizeof(const_int_one));
e237d8cb
TG
1552 if (r < 0)
1553 return log_error_errno(errno, "could not enable SO_PASSCRED: %m");
1554
2024ed61 1555 manager->fd_inotify = udev_watch_init();
e237d8cb
TG
1556 if (manager->fd_inotify < 0)
1557 return log_error_errno(ENOMEM, "error initializing inotify");
1558
2024ed61 1559 udev_watch_restore();
e237d8cb
TG
1560
1561 /* block and listen to all signals on signalfd */
72c0a2c2 1562 assert_se(sigprocmask_many(SIG_BLOCK, NULL, SIGTERM, SIGINT, SIGHUP, SIGCHLD, -1) >= 0);
693d371d 1563
49f997f3
TG
1564 r = sd_event_default(&manager->event);
1565 if (r < 0)
709f6e46 1566 return log_error_errno(r, "could not allocate event loop: %m");
49f997f3 1567
693d371d
TG
1568 r = sd_event_add_signal(manager->event, NULL, SIGINT, on_sigterm, manager);
1569 if (r < 0)
1570 return log_error_errno(r, "error creating sigint event source: %m");
1571
1572 r = sd_event_add_signal(manager->event, NULL, SIGTERM, on_sigterm, manager);
1573 if (r < 0)
1574 return log_error_errno(r, "error creating sigterm event source: %m");
1575
1576 r = sd_event_add_signal(manager->event, NULL, SIGHUP, on_sighup, manager);
1577 if (r < 0)
1578 return log_error_errno(r, "error creating sighup event source: %m");
1579
1580 r = sd_event_add_signal(manager->event, NULL, SIGCHLD, on_sigchld, manager);
1581 if (r < 0)
1582 return log_error_errno(r, "error creating sigchld event source: %m");
1583
1584 r = sd_event_set_watchdog(manager->event, true);
1585 if (r < 0)
1586 return log_error_errno(r, "error creating watchdog event source: %m");
1587
11b1dd8c 1588 r = sd_event_add_io(manager->event, &manager->ctrl_event, fd_ctrl, EPOLLIN, on_ctrl_msg, manager);
693d371d
TG
1589 if (r < 0)
1590 return log_error_errno(r, "error creating ctrl event source: %m");
1591
1592 /* This needs to be after the inotify and uevent handling, to make sure
1593 * that the ping is send back after fully processing the pending uevents
1594 * (including the synthetic ones we may create due to inotify events).
1595 */
1596 r = sd_event_source_set_priority(manager->ctrl_event, SD_EVENT_PRIORITY_IDLE);
1597 if (r < 0)
1598 return log_error_errno(r, "cold not set IDLE event priority for ctrl event source: %m");
1599
1600 r = sd_event_add_io(manager->event, &manager->inotify_event, manager->fd_inotify, EPOLLIN, on_inotify, manager);
1601 if (r < 0)
1602 return log_error_errno(r, "error creating inotify event source: %m");
1603
11b1dd8c 1604 r = sd_event_add_io(manager->event, &manager->uevent_event, fd_uevent, EPOLLIN, on_uevent, manager);
693d371d
TG
1605 if (r < 0)
1606 return log_error_errno(r, "error creating uevent event source: %m");
1607
1608 r = sd_event_add_io(manager->event, NULL, fd_worker, EPOLLIN, on_worker, manager);
1609 if (r < 0)
1610 return log_error_errno(r, "error creating worker event source: %m");
1611
1612 r = sd_event_add_post(manager->event, NULL, on_post, manager);
1613 if (r < 0)
1614 return log_error_errno(r, "error creating post event source: %m");
e237d8cb 1615
1cc6c93a 1616 *ret = TAKE_PTR(manager);
11b1dd8c 1617
86c3bece 1618 return 0;
c0c6806b
TG
1619}
1620
077fc5e2 1621static int run(int fd_ctrl, int fd_uevent, const char *cgroup) {
c0c6806b 1622 _cleanup_(manager_freep) Manager *manager = NULL;
077fc5e2
DH
1623 int r;
1624
1625 r = manager_new(&manager, fd_ctrl, fd_uevent, cgroup);
1626 if (r < 0) {
1627 r = log_error_errno(r, "failed to allocate manager object: %m");
1628 goto exit;
1629 }
1630
1631 r = udev_rules_apply_static_dev_perms(manager->rules);
1632 if (r < 0)
1633 log_error_errno(r, "failed to apply permissions on static device nodes: %m");
1634
1ef72b55
MS
1635 (void) sd_notifyf(false,
1636 "READY=1\n"
1637 "STATUS=Processing with %u children at max", arg_children_max);
077fc5e2
DH
1638
1639 r = sd_event_loop(manager->event);
1640 if (r < 0) {
1641 log_error_errno(r, "event loop failed: %m");
1642 goto exit;
1643 }
1644
1645 sd_event_get_exit_code(manager->event, &r);
1646
1647exit:
1648 sd_notify(false,
1649 "STOPPING=1\n"
1650 "STATUS=Shutting down...");
1651 if (manager)
1652 udev_ctrl_cleanup(manager->ctrl);
1653 return r;
1654}
1655
1656int main(int argc, char *argv[]) {
c26d1879 1657 _cleanup_free_ char *cgroup = NULL;
efa1606e 1658 int fd_ctrl = -1, fd_uevent = -1;
e5d7bce1 1659 int r;
bba7a484 1660
bba7a484 1661 log_set_target(LOG_TARGET_AUTO);
b237a168 1662 udev_parse_config();
bba7a484
TG
1663 log_parse_environment();
1664 log_open();
1665
bba7a484
TG
1666 r = parse_argv(argc, argv);
1667 if (r <= 0)
1668 goto exit;
1669
1d84ad94 1670 r = proc_cmdline_parse(parse_proc_cmdline_item, NULL, PROC_CMDLINE_STRIP_RD_PREFIX);
614a823c
TG
1671 if (r < 0)
1672 log_warning_errno(r, "failed to parse kernel command line, ignoring: %m");
912541b0 1673
78d3e041
KS
1674 if (arg_debug) {
1675 log_set_target(LOG_TARGET_CONSOLE);
bba7a484 1676 log_set_max_level(LOG_DEBUG);
78d3e041 1677 }
bba7a484 1678
fba868fa
LP
1679 r = must_be_root();
1680 if (r < 0)
912541b0 1681 goto exit;
912541b0 1682
712cebf1
TG
1683 if (arg_children_max == 0) {
1684 cpu_set_t cpu_set;
e438c57a 1685 unsigned long mem_limit;
ebc164ef 1686
712cebf1 1687 arg_children_max = 8;
d457ff83 1688
ece174c5 1689 if (sched_getaffinity(0, sizeof(cpu_set), &cpu_set) == 0)
920b52e4 1690 arg_children_max += CPU_COUNT(&cpu_set) * 2;
912541b0 1691
e438c57a
MW
1692 mem_limit = physical_memory() / (128LU*1024*1024);
1693 arg_children_max = MAX(10U, MIN(arg_children_max, mem_limit));
1694
712cebf1 1695 log_debug("set children_max to %u", arg_children_max);
d457ff83 1696 }
912541b0 1697
712cebf1
TG
1698 /* set umask before creating any file/directory */
1699 r = chdir("/");
1700 if (r < 0) {
1701 r = log_error_errno(errno, "could not change dir to /: %m");
1702 goto exit;
1703 }
194bbe33 1704
712cebf1 1705 umask(022);
912541b0 1706
c3dacc8b 1707 r = mac_selinux_init();
712cebf1
TG
1708 if (r < 0) {
1709 log_error_errno(r, "could not initialize labelling: %m");
1710 goto exit;
912541b0
KS
1711 }
1712
dae8b82e
ZJS
1713 r = mkdir_errno_wrapper("/run/udev", 0755);
1714 if (r < 0 && r != -EEXIST) {
1715 log_error_errno(r, "could not create /run/udev: %m");
712cebf1
TG
1716 goto exit;
1717 }
1718
03cfe0d5 1719 dev_setup(NULL, UID_INVALID, GID_INVALID);
912541b0 1720
c26d1879
TG
1721 if (getppid() == 1) {
1722 /* get our own cgroup, we regularly kill everything udev has left behind
1723 we only do this on systemd systems, and only if we are directly spawned
1724 by PID1. otherwise we are not guaranteed to have a dedicated cgroup */
1725 r = cg_pid_get_path(SYSTEMD_CGROUP_CONTROLLER, 0, &cgroup);
11b9fb15 1726 if (r < 0) {
a2d61f07 1727 if (IN_SET(r, -ENOENT, -ENOMEDIUM))
11b9fb15
TG
1728 log_debug_errno(r, "did not find dedicated cgroup: %m");
1729 else
1730 log_warning_errno(r, "failed to get cgroup: %m");
1731 }
c26d1879
TG
1732 }
1733
b7f74dd4
TG
1734 r = listen_fds(&fd_ctrl, &fd_uevent);
1735 if (r < 0) {
1736 r = log_error_errno(r, "could not listen on fds: %m");
1737 goto exit;
1738 }
1739
bba7a484 1740 if (arg_daemonize) {
912541b0 1741 pid_t pid;
912541b0 1742
948aaa7c 1743 log_info("starting version " PACKAGE_VERSION);
3cbb2057 1744
40e749b5 1745 /* connect /dev/null to stdin, stdout, stderr */
c76cf844
AK
1746 if (log_get_max_level() < LOG_DEBUG) {
1747 r = make_null_stdio();
1748 if (r < 0)
1749 log_warning_errno(r, "Failed to redirect standard streams to /dev/null: %m");
1750 }
1751
912541b0
KS
1752 pid = fork();
1753 switch (pid) {
1754 case 0:
1755 break;
1756 case -1:
6af5e6a4 1757 r = log_error_errno(errno, "fork of daemon failed: %m");
912541b0
KS
1758 goto exit;
1759 default:
f53d1fcd
TG
1760 mac_selinux_finish();
1761 log_close();
1762 _exit(EXIT_SUCCESS);
912541b0
KS
1763 }
1764
1765 setsid();
1766
ad118bda 1767 write_string_file("/proc/self/oom_score_adj", "-1000", 0);
7500cd5e 1768 }
912541b0 1769
077fc5e2 1770 r = run(fd_ctrl, fd_uevent, cgroup);
693d371d 1771
53921bfa 1772exit:
cc56fafe 1773 mac_selinux_finish();
baa30fbc 1774 log_close();
6af5e6a4 1775 return r < 0 ? EXIT_FAILURE : EXIT_SUCCESS;
7fafc032 1776}