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f13467ec 1/* SPDX-License-Identifier: GPL-2.0-or-later */
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>
618234a5
LP
11#include <stdbool.h>
12#include <stddef.h>
7fafc032
KS
13#include <stdio.h>
14#include <stdlib.h>
618234a5 15#include <sys/epoll.h>
3ebdb81e 16#include <sys/file.h>
618234a5
LP
17#include <sys/inotify.h>
18#include <sys/ioctl.h>
19#include <sys/mount.h>
1e03b754 20#include <sys/prctl.h>
1e03b754 21#include <sys/signalfd.h>
dc117daa 22#include <sys/stat.h>
618234a5
LP
23#include <sys/time.h>
24#include <sys/wait.h>
25#include <unistd.h>
7fafc032 26
392ef7a2 27#include "sd-daemon.h"
693d371d 28#include "sd-event.h"
8314de1d 29
b5efdb8a 30#include "alloc-util.h"
194bbe33 31#include "cgroup-util.h"
618234a5 32#include "cpu-set-util.h"
5ba2dc25 33#include "dev-setup.h"
7f2e3a14 34#include "device-monitor-private.h"
abde5ea8 35#include "device-private.h"
70068602 36#include "device-util.h"
6d63048a 37#include "event-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"
eefc66aa 44#include "limits-util.h"
40a57716 45#include "list.h"
0c5a109a 46#include "main-func.h"
5ea78a39 47#include "mkdir.h"
618234a5 48#include "netlink-util.h"
6bedfcbb 49#include "parse-util.h"
294bf0c3 50#include "pretty-print.h"
4e731273 51#include "proc-cmdline.h"
618234a5
LP
52#include "process-util.h"
53#include "selinux-util.h"
54#include "signal-util.h"
8f328d36 55#include "socket-util.h"
07630cea 56#include "string-util.h"
49fe5c09 57#include "strv.h"
5ea78a39 58#include "strxcpyx.h"
46f0fbd8 59#include "syslog-util.h"
63e2d171 60#include "udevd.h"
07a26e42 61#include "udev-builtin.h"
7d68eb1b 62#include "udev-ctrl.h"
25de7aa7 63#include "udev-event.h"
618234a5 64#include "udev-util.h"
70068602 65#include "udev-watch.h"
ee104e11 66#include "user-util.h"
47350c5f 67#include "version.h"
7fafc032 68
88bd5a32
FB
69#define WORKER_NUM_MAX 2048U
70
bba7a484
TG
71static bool arg_debug = false;
72static int arg_daemonize = false;
c4d44cba 73static ResolveNameTiming arg_resolve_name_timing = RESOLVE_NAME_EARLY;
216e8bbe 74static unsigned arg_children_max = 0;
6b92f429 75static usec_t arg_exec_delay_usec = 0;
bba7a484 76static usec_t arg_event_timeout_usec = 180 * USEC_PER_SEC;
e2099267 77static int arg_timeout_signal = SIGKILL;
95ac5230 78static bool arg_blockdev_read_only = false;
c0c6806b
TG
79
80typedef struct Manager {
693d371d 81 sd_event *event;
c0c6806b 82 Hashmap *workers;
40a57716 83 LIST_HEAD(struct event, events);
c26d1879 84 const char *cgroup;
cb49a4f2 85 pid_t pid; /* the process that originally allocated the manager object */
1a0bd015 86 int log_level;
c0c6806b 87
9a07157d 88 UdevRules *rules;
9b5150b6 89 Hashmap *properties;
c0c6806b 90
0bed242c
YW
91 sd_netlink *rtnl;
92
7f2e3a14 93 sd_device_monitor *monitor;
c0c6806b 94 struct udev_ctrl *ctrl;
e237d8cb
TG
95 int worker_watch[2];
96
df7ee959
YW
97 /* used by udev-watch */
98 int inotify_fd;
693d371d 99 sd_event_source *inotify_event;
df7ee959 100
eca195ec 101 sd_event_source *kill_workers_event;
693d371d 102
7c4c7e89
TG
103 usec_t last_usec;
104
481f24d1
YW
105 bool stop_exec_queue;
106 bool exit;
c0c6806b 107} Manager;
1e03b754 108
1e03b754 109enum event_state {
912541b0
KS
110 EVENT_UNDEF,
111 EVENT_QUEUED,
112 EVENT_RUNNING,
1e03b754
KS
113};
114
115struct event {
cb49a4f2 116 Manager *manager;
c6aa11f2 117 struct worker *worker;
912541b0 118 enum event_state state;
eb546b35
YW
119
120 sd_device *dev;
121 sd_device *dev_kernel; /* clone of originally received device */
122
123 uint64_t seqnum;
124 uint64_t delaying_seqnum;
d8f462b4
YW
125
126 sd_event_source *timeout_warning_event;
127 sd_event_source *timeout_event;
eb546b35
YW
128
129 LIST_FIELDS(struct event, event);
1e03b754
KS
130};
131
ecb17862 132static void event_queue_cleanup(Manager *manager, enum event_state type);
ff2c503d 133
1e03b754 134enum worker_state {
912541b0
KS
135 WORKER_UNDEF,
136 WORKER_RUNNING,
137 WORKER_IDLE,
138 WORKER_KILLED,
f257a8fc 139 WORKER_KILLING,
1e03b754
KS
140};
141
142struct worker {
c0c6806b 143 Manager *manager;
912541b0 144 pid_t pid;
7f2e3a14 145 sd_device_monitor *monitor;
912541b0
KS
146 enum worker_state state;
147 struct event *event;
1e03b754
KS
148};
149
150/* passed from worker to main process */
151struct worker_message {
1e03b754
KS
152};
153
c6aa11f2
TG
154static void event_free(struct event *event) {
155 if (!event)
156 return;
ba47b71c 157
40a57716 158 assert(event->manager);
c6aa11f2 159
40a57716 160 LIST_REMOVE(event, event->manager->events, event);
eb546b35
YW
161 sd_device_unref(event->dev);
162 sd_device_unref(event->dev_kernel);
c6aa11f2 163
d8f462b4
YW
164 sd_event_source_unref(event->timeout_warning_event);
165 sd_event_source_unref(event->timeout_event);
693d371d 166
c6aa11f2
TG
167 if (event->worker)
168 event->worker->event = NULL;
169
ba47b71c
YW
170 /* only clean up the queue from the process that created it */
171 if (LIST_IS_EMPTY(event->manager->events) &&
172 event->manager->pid == getpid_cached())
173 if (unlink("/run/udev/queue") < 0)
174 log_warning_errno(errno, "Failed to unlink /run/udev/queue: %m");
cb49a4f2 175
912541b0 176 free(event);
aa8734ff 177}
7a770250 178
75db809a 179static struct worker* worker_free(struct worker *worker) {
c6aa11f2 180 if (!worker)
75db809a 181 return NULL;
bc113de9 182
c0c6806b
TG
183 assert(worker->manager);
184
4a0b58c4 185 hashmap_remove(worker->manager->workers, PID_TO_PTR(worker->pid));
7f2e3a14 186 sd_device_monitor_unref(worker->monitor);
c6aa11f2
TG
187 event_free(worker->event);
188
75db809a 189 return mfree(worker);
ff2c503d
KS
190}
191
1f3f6bd0 192DEFINE_TRIVIAL_CLEANUP_FUNC(struct worker *, worker_free);
956833b4 193DEFINE_PRIVATE_HASH_OPS_WITH_VALUE_DESTRUCTOR(worker_hash_op, void, trivial_hash_func, trivial_compare_func, struct worker, worker_free);
fc465079 194
7f2e3a14 195static int worker_new(struct worker **ret, Manager *manager, sd_device_monitor *worker_monitor, pid_t pid) {
1f3f6bd0 196 _cleanup_(worker_freep) struct worker *worker = NULL;
a505965d 197 int r;
3a19b32a
TG
198
199 assert(ret);
c0c6806b 200 assert(manager);
3a19b32a
TG
201 assert(worker_monitor);
202 assert(pid > 1);
203
d4053464
YW
204 /* close monitor, but keep address around */
205 device_monitor_disconnect(worker_monitor);
206
207 worker = new(struct worker, 1);
3a19b32a
TG
208 if (!worker)
209 return -ENOMEM;
210
d4053464
YW
211 *worker = (struct worker) {
212 .manager = manager,
213 .monitor = sd_device_monitor_ref(worker_monitor),
214 .pid = pid,
215 };
a505965d 216
92a74c47 217 r = hashmap_ensure_put(&manager->workers, &worker_hash_op, PID_TO_PTR(pid), worker);
a505965d
TG
218 if (r < 0)
219 return r;
220
ae2a15bc 221 *ret = TAKE_PTR(worker);
3a19b32a
TG
222
223 return 0;
224}
225
4fa4d885
TG
226static int on_event_timeout(sd_event_source *s, uint64_t usec, void *userdata) {
227 struct event *event = userdata;
228
229 assert(event);
230 assert(event->worker);
231
e2099267 232 kill_and_sigcont(event->worker->pid, arg_timeout_signal);
4fa4d885
TG
233 event->worker->state = WORKER_KILLED;
234
eb546b35 235 log_device_error(event->dev, "Worker ["PID_FMT"] processing SEQNUM=%"PRIu64" killed", event->worker->pid, event->seqnum);
4fa4d885
TG
236
237 return 1;
238}
239
240static int on_event_timeout_warning(sd_event_source *s, uint64_t usec, void *userdata) {
241 struct event *event = userdata;
242
243 assert(event);
044497e2 244 assert(event->worker);
4fa4d885 245
eb546b35 246 log_device_warning(event->dev, "Worker ["PID_FMT"] processing SEQNUM=%"PRIu64" is taking a long time", event->worker->pid, event->seqnum);
4fa4d885
TG
247
248 return 1;
249}
250
39c19cf1 251static void worker_attach_event(struct worker *worker, struct event *event) {
693d371d 252 sd_event *e;
693d371d 253
c6aa11f2 254 assert(worker);
693d371d 255 assert(worker->manager);
c6aa11f2
TG
256 assert(event);
257 assert(!event->worker);
258 assert(!worker->event);
259
39c19cf1 260 worker->state = WORKER_RUNNING;
39c19cf1
TG
261 worker->event = event;
262 event->state = EVENT_RUNNING;
c6aa11f2 263 event->worker = worker;
693d371d
TG
264
265 e = worker->manager->event;
266
39cf0351
LP
267 (void) sd_event_add_time_relative(e, &event->timeout_warning_event, CLOCK_MONOTONIC,
268 udev_warn_timeout(arg_event_timeout_usec), USEC_PER_SEC,
269 on_event_timeout_warning, event);
693d371d 270
39cf0351
LP
271 (void) sd_event_add_time_relative(e, &event->timeout_event, CLOCK_MONOTONIC,
272 arg_event_timeout_usec, USEC_PER_SEC,
273 on_event_timeout, event);
39c19cf1
TG
274}
275
0bed242c
YW
276static void manager_clear_for_worker(Manager *manager) {
277 assert(manager);
278
0bed242c
YW
279 manager->inotify_event = sd_event_source_unref(manager->inotify_event);
280 manager->kill_workers_event = sd_event_source_unref(manager->kill_workers_event);
281
282 manager->event = sd_event_unref(manager->event);
283
956833b4 284 manager->workers = hashmap_free(manager->workers);
0bed242c
YW
285 event_queue_cleanup(manager, EVENT_UNDEF);
286
7f2e3a14 287 manager->monitor = sd_device_monitor_unref(manager->monitor);
0bed242c
YW
288 manager->ctrl = udev_ctrl_unref(manager->ctrl);
289
290 manager->worker_watch[READ_END] = safe_close(manager->worker_watch[READ_END]);
291}
292
75db809a 293static Manager* manager_free(Manager *manager) {
e237d8cb 294 if (!manager)
75db809a 295 return NULL;
e237d8cb 296
2024ed61 297 udev_builtin_exit();
b2d21d93 298
76e62a4d
YW
299 if (manager->pid == getpid_cached())
300 udev_ctrl_cleanup(manager->ctrl);
301
0bed242c 302 manager_clear_for_worker(manager);
693d371d 303
0bed242c 304 sd_netlink_unref(manager->rtnl);
e237d8cb 305
9b5150b6 306 hashmap_free_free_free(manager->properties);
981fae90 307 udev_rules_free(manager->rules);
e237d8cb 308
df7ee959 309 safe_close(manager->inotify_fd);
e237d8cb
TG
310 safe_close_pair(manager->worker_watch);
311
75db809a 312 return mfree(manager);
e237d8cb
TG
313}
314
315DEFINE_TRIVIAL_CLEANUP_FUNC(Manager*, manager_free);
316
9a73bd7c
TG
317static int worker_send_message(int fd) {
318 struct worker_message message = {};
319
320 return loop_write(fd, &message, sizeof(message), false);
321}
322
b97897e3 323static int worker_lock_block_device(sd_device *dev, int *ret_fd) {
0bed242c 324 _cleanup_close_ int fd = -1;
b97897e3
YW
325 const char *val;
326 int r;
fee854ee 327
0bed242c
YW
328 assert(dev);
329 assert(ret_fd);
330
a1130022
LP
331 /* Take a shared lock on the device node; this establishes a concept of device "ownership" to
332 * serialize device access. External processes holding an exclusive lock will cause udev to skip the
333 * event handling; in the case udev acquired the lock, the external process can block until udev has
334 * finished its event handling. */
335
336 if (device_for_action(dev, SD_DEVICE_REMOVE))
0bed242c
YW
337 return 0;
338
b97897e3
YW
339 r = sd_device_get_subsystem(dev, &val);
340 if (r < 0)
341 return log_device_debug_errno(dev, r, "Failed to get subsystem: %m");
342
343 if (!streq(val, "block"))
0bed242c 344 return 0;
fee854ee 345
b97897e3
YW
346 r = sd_device_get_sysname(dev, &val);
347 if (r < 0)
348 return log_device_debug_errno(dev, r, "Failed to get sysname: %m");
349
49fe5c09 350 if (STARTSWITH_SET(val, "dm-", "md", "drbd"))
0bed242c
YW
351 return 0;
352
b97897e3
YW
353 r = sd_device_get_devtype(dev, &val);
354 if (r < 0 && r != -ENOENT)
355 return log_device_debug_errno(dev, r, "Failed to get devtype: %m");
356 if (r >= 0 && streq(val, "partition")) {
357 r = sd_device_get_parent(dev, &dev);
358 if (r < 0)
359 return log_device_debug_errno(dev, r, "Failed to get parent device: %m");
360 }
0bed242c 361
b97897e3
YW
362 r = sd_device_get_devname(dev, &val);
363 if (r == -ENOENT)
0bed242c 364 return 0;
b97897e3
YW
365 if (r < 0)
366 return log_device_debug_errno(dev, r, "Failed to get devname: %m");
0bed242c 367
b97897e3
YW
368 fd = open(val, O_RDONLY|O_CLOEXEC|O_NOFOLLOW|O_NONBLOCK);
369 if (fd < 0) {
370 log_device_debug_errno(dev, errno, "Failed to open '%s', ignoring: %m", val);
0bed242c 371 return 0;
b97897e3 372 }
0bed242c
YW
373
374 if (flock(fd, LOCK_SH|LOCK_NB) < 0)
b97897e3 375 return log_device_debug_errno(dev, errno, "Failed to flock(%s): %m", val);
0bed242c
YW
376
377 *ret_fd = TAKE_FD(fd);
378 return 1;
fee854ee
RK
379}
380
95ac5230
LP
381static int worker_mark_block_device_read_only(sd_device *dev) {
382 _cleanup_close_ int fd = -1;
383 const char *val;
384 int state = 1, r;
385
386 assert(dev);
387
388 if (!arg_blockdev_read_only)
389 return 0;
390
391 /* Do this only once, when the block device is new. If the device is later retriggered let's not
392 * toggle the bit again, so that people can boot up with full read-only mode and then unset the bit
393 * for specific devices only. */
a1130022 394 if (!device_for_action(dev, SD_DEVICE_ADD))
95ac5230
LP
395 return 0;
396
397 r = sd_device_get_subsystem(dev, &val);
398 if (r < 0)
399 return log_device_debug_errno(dev, r, "Failed to get subsystem: %m");
400
401 if (!streq(val, "block"))
402 return 0;
403
404 r = sd_device_get_sysname(dev, &val);
405 if (r < 0)
406 return log_device_debug_errno(dev, r, "Failed to get sysname: %m");
407
408 /* Exclude synthetic devices for now, this is supposed to be a safety feature to avoid modification
409 * of physical devices, and what sits on top of those doesn't really matter if we don't allow the
cb713f16 410 * underlying block devices to receive changes. */
95ac5230
LP
411 if (STARTSWITH_SET(val, "dm-", "md", "drbd", "loop", "nbd", "zram"))
412 return 0;
413
414 r = sd_device_get_devname(dev, &val);
415 if (r == -ENOENT)
416 return 0;
417 if (r < 0)
418 return log_device_debug_errno(dev, r, "Failed to get devname: %m");
419
420 fd = open(val, O_RDONLY|O_CLOEXEC|O_NOFOLLOW|O_NONBLOCK);
421 if (fd < 0)
422 return log_device_debug_errno(dev, errno, "Failed to open '%s', ignoring: %m", val);
423
424 if (ioctl(fd, BLKROSET, &state) < 0)
425 return log_device_warning_errno(dev, errno, "Failed to mark block device '%s' read-only: %m", val);
426
427 log_device_info(dev, "Successfully marked block device '%s' read-only.", val);
428 return 0;
429}
430
abde5ea8 431static int worker_process_device(Manager *manager, sd_device *dev) {
2e088715 432 _cleanup_(udev_event_freep) UdevEvent *udev_event = NULL;
0bed242c
YW
433 _cleanup_close_ int fd_lock = -1;
434 int r;
912541b0 435
0bed242c
YW
436 assert(manager);
437 assert(dev);
438
b2d9e58f 439 log_device_uevent(dev, "Processing device");
abde5ea8 440
1a0bd015 441 udev_event = udev_event_new(dev, arg_exec_delay_usec, manager->rtnl, manager->log_level);
0bed242c
YW
442 if (!udev_event)
443 return -ENOMEM;
444
abde5ea8 445 r = worker_lock_block_device(dev, &fd_lock);
b8380cc6
LP
446 if (r == -EAGAIN) {
447 /* So this is a block device and the device is locked currently via the BSD advisory locks —
448 * someone else is exclusively using it. This means we don't run our udev rules now, to not
449 * interfere. However we want to know when the device is unlocked again, and retrigger the
450 * device again then, so that the rules are run eventually. For that we use IN_CLOSE_WRITE
451 * inotify watches (which isn't exactly the same as waiting for the BSD locks to release, but
452 * not totally off, as long as unlock+close() is done together, as it usually is).
453 *
454 * (The user-facing side of this: https://systemd.io/BLOCK_DEVICE_LOCKING)
455 *
456 * There's a bit of a chicken and egg problem here for this however: inotify watching is
457 * supposed to be enabled via an option set via udev rules (OPTIONS+="watch"). If we skip the
458 * udev rules here however (as we just said we do), we would thus never see that specific
459 * udev rule, and thus never turn on inotify watching. But in order to catch up eventually
460 * and run them we we need the inotify watching: hence a classic chicken and egg problem.
461 *
462 * Our way out here: if we see the block device locked, unconditionally watch the device via
463 * inotify, regardless of any explicit request via OPTIONS+="watch". Thus, a device that is
464 * currently locked via the BSD file locks will be treated as if we ran a single udev rule
465 * only for it: the one that turns on inotify watching for it. If we eventually see the
466 * inotify IN_CLOSE_WRITE event, and then run the rules after all and we then realize that
467 * this wasn't actually requested (i.e. no OPTIONS+="watch" set) we'll simply turn off the
468 * watching again (see below). Effectively this means: inotify watching is now enabled either
469 * a) when the udev rules say so, or b) while the device is locked.
470 *
471 * Worst case scenario hence: in the (unlikely) case someone locked the device and we clash
472 * with that we might do inotify watching for a brief moment for a device where we actually
473 * weren't supposed to. But that shouldn't be too bad, in particular as BSD locks being taken
474 * on a block device is kinda an indication that the inotify logic is desired too, to some
475 * degree — they go hand-in-hand after all. */
476
477 log_device_debug(dev, "Block device is currently locked, installing watch to wait until the lock is released.");
df7ee959 478 (void) udev_watch_begin(manager->inotify_fd, dev);
b8380cc6
LP
479
480 /* Now the watch is installed, let's lock the device again, maybe in the meantime things changed */
481 r = worker_lock_block_device(dev, &fd_lock);
482 }
b6aab8ef 483 if (r < 0)
0bed242c 484 return r;
912541b0 485
95ac5230
LP
486 (void) worker_mark_block_device_read_only(dev);
487
0bed242c 488 /* apply rules, create node, symlinks */
df7ee959
YW
489 r = udev_event_execute_rules(
490 udev_event,
491 manager->inotify_fd,
492 arg_event_timeout_usec,
493 arg_timeout_signal,
494 manager->properties,
495 manager->rules);
99058cd6
YW
496 if (r < 0)
497 return r;
498
e2099267 499 udev_event_execute_run(udev_event, arg_event_timeout_usec, arg_timeout_signal);
2dd9f98d 500
0bed242c
YW
501 if (!manager->rtnl)
502 /* in case rtnl was initialized */
503 manager->rtnl = sd_netlink_ref(udev_event->rtnl);
912541b0 504
0d77bc4a
YW
505 r = udev_event_process_inotify_watch(udev_event, manager->inotify_fd);
506 if (r < 0)
507 return r;
912541b0 508
b2d9e58f 509 log_device_uevent(dev, "Device processed");
0bed242c
YW
510 return 0;
511}
912541b0 512
e2130348
YW
513static int worker_device_monitor_handler(sd_device_monitor *monitor, sd_device *dev, void *userdata) {
514 Manager *manager = userdata;
515 int r;
516
517 assert(dev);
518 assert(manager);
519
520 r = worker_process_device(manager, dev);
5abee64e
LP
521 if (r == -EAGAIN)
522 /* if we couldn't acquire the flock(), then proceed quietly */
523 log_device_debug_errno(dev, r, "Device currently locked, not processing.");
524 else {
525 if (r < 0)
526 log_device_warning_errno(dev, r, "Failed to process device, ignoring: %m");
e2130348 527
5abee64e
LP
528 /* send processed event back to libudev listeners */
529 r = device_monitor_send_device(monitor, NULL, dev);
530 if (r < 0)
531 log_device_warning_errno(dev, r, "Failed to send device, ignoring: %m");
532 }
e2130348
YW
533
534 /* send udevd the result of the event execution */
535 r = worker_send_message(manager->worker_watch[WRITE_END]);
536 if (r < 0)
537 log_device_warning_errno(dev, r, "Failed to send signal to main daemon, ignoring: %m");
538
1a0bd015 539 /* Reset the log level, as it might be changed by "OPTIONS=log_level=". */
3cc6b14a 540 log_set_max_level(manager->log_level);
1a0bd015 541
e2130348
YW
542 return 1;
543}
544
7f2e3a14
YW
545static int worker_main(Manager *_manager, sd_device_monitor *monitor, sd_device *first_device) {
546 _cleanup_(sd_device_unrefp) sd_device *dev = first_device;
0bed242c 547 _cleanup_(manager_freep) Manager *manager = _manager;
44dcf454 548 int r;
145dae7e 549
0bed242c
YW
550 assert(manager);
551 assert(monitor);
552 assert(dev);
912541b0 553
44ee03d1 554 assert_se(unsetenv("NOTIFY_SOCKET") == 0);
3b64e4d4 555
e2130348
YW
556 assert_se(sigprocmask_many(SIG_BLOCK, NULL, SIGTERM, -1) >= 0);
557
558 /* Reset OOM score, we only protect the main daemon. */
559 r = set_oom_score_adjust(0);
560 if (r < 0)
561 log_debug_errno(r, "Failed to reset OOM score, ignoring: %m");
912541b0 562
7802194a 563 /* Clear unnecessary data in Manager object. */
e2130348 564 manager_clear_for_worker(manager);
3ebdb81e 565
e2130348
YW
566 r = sd_event_new(&manager->event);
567 if (r < 0)
568 return log_error_errno(r, "Failed to allocate event loop: %m");
912541b0 569
e2130348
YW
570 r = sd_event_add_signal(manager->event, NULL, SIGTERM, NULL, NULL);
571 if (r < 0)
572 return log_error_errno(r, "Failed to set SIGTERM event: %m");
4c83d994 573
e2130348
YW
574 r = sd_device_monitor_attach_event(monitor, manager->event);
575 if (r < 0)
576 return log_error_errno(r, "Failed to attach event loop to device monitor: %m");
912541b0 577
e2130348 578 r = sd_device_monitor_start(monitor, worker_device_monitor_handler, manager);
0bed242c 579 if (r < 0)
e2130348 580 return log_error_errno(r, "Failed to start device monitor: %m");
912541b0 581
e2130348 582 (void) sd_event_source_set_description(sd_device_monitor_get_event_source(monitor), "worker-device-monitor");
b66f29a1 583
e2130348
YW
584 /* Process first device */
585 (void) worker_device_monitor_handler(monitor, dev, manager);
912541b0 586
e2130348
YW
587 r = sd_event_loop(manager->event);
588 if (r < 0)
589 return log_error_errno(r, "Event loop failed: %m");
590
44dcf454 591 return 0;
0bed242c
YW
592}
593
7443654e 594static int worker_spawn(Manager *manager, struct event *event) {
7f2e3a14 595 _cleanup_(sd_device_monitor_unrefp) sd_device_monitor *worker_monitor = NULL;
7443654e 596 struct worker *worker;
0bed242c 597 pid_t pid;
7443654e 598 int r;
0bed242c
YW
599
600 /* listen for new events */
7f2e3a14
YW
601 r = device_monitor_new_full(&worker_monitor, MONITOR_GROUP_NONE, -1);
602 if (r < 0)
603 return r;
7443654e 604
0bed242c 605 /* allow the main daemon netlink address to send devices to the worker */
7f2e3a14
YW
606 r = device_monitor_allow_unicast_sender(worker_monitor, manager->monitor);
607 if (r < 0)
608 return log_error_errno(r, "Worker: Failed to set unicast sender: %m");
609
610 r = device_monitor_enable_receiving(worker_monitor);
0bed242c 611 if (r < 0)
7f2e3a14 612 return log_error_errno(r, "Worker: Failed to enable receiving of device: %m");
0bed242c 613
ff86c92e 614 r = safe_fork(NULL, FORK_DEATHSIG, &pid);
7443654e
YW
615 if (r < 0) {
616 event->state = EVENT_QUEUED;
617 return log_error_errno(r, "Failed to fork() worker: %m");
618 }
619 if (r == 0) {
b428efa5
MS
620 DEVICE_TRACE_POINT(worker_spawned, event->dev, getpid());
621
7443654e 622 /* Worker process */
eb546b35 623 r = worker_main(manager, worker_monitor, sd_device_ref(event->dev));
baa30fbc 624 log_close();
8b46c3fc 625 _exit(r < 0 ? EXIT_FAILURE : EXIT_SUCCESS);
912541b0 626 }
e03c7cc2 627
7443654e
YW
628 r = worker_new(&worker, manager, worker_monitor, pid);
629 if (r < 0)
630 return log_error_errno(r, "Failed to create worker object: %m");
e03c7cc2 631
7443654e 632 worker_attach_event(worker, event);
39c19cf1 633
eb546b35 634 log_device_debug(event->dev, "Worker ["PID_FMT"] is forked for processing SEQNUM=%"PRIu64".", pid, event->seqnum);
7443654e 635 return 0;
7fafc032
KS
636}
637
c0c6806b 638static void event_run(Manager *manager, struct event *event) {
5406c368 639 static bool log_children_max_reached = true;
a505965d 640 struct worker *worker;
7f2e3a14 641 int r;
912541b0 642
c0c6806b
TG
643 assert(manager);
644 assert(event);
645
b2d9e58f 646 log_device_uevent(event->dev, "Device ready for processing");
7600dbb8 647
90e74a66 648 HASHMAP_FOREACH(worker, manager->workers) {
912541b0
KS
649 if (worker->state != WORKER_IDLE)
650 continue;
651
eb546b35 652 r = device_monitor_send_device(manager->monitor, worker->monitor, event->dev);
7f2e3a14 653 if (r < 0) {
eb546b35 654 log_device_error_errno(event->dev, r, "Worker ["PID_FMT"] did not accept message, killing the worker: %m",
7f2e3a14 655 worker->pid);
cb542e84 656 (void) kill(worker->pid, SIGKILL);
912541b0
KS
657 worker->state = WORKER_KILLED;
658 continue;
659 }
39c19cf1 660 worker_attach_event(worker, event);
912541b0
KS
661 return;
662 }
663
c0c6806b 664 if (hashmap_size(manager->workers) >= arg_children_max) {
5406c368
FB
665
666 /* Avoid spamming the debug logs if the limit is already reached and
667 * many events still need to be processed */
668 if (log_children_max_reached && arg_children_max > 1) {
044497e2 669 log_debug("Maximum number (%u) of children reached.", hashmap_size(manager->workers));
5406c368
FB
670 log_children_max_reached = false;
671 }
912541b0
KS
672 return;
673 }
674
5406c368
FB
675 /* Re-enable the debug message for the next batch of events */
676 log_children_max_reached = true;
677
2df2152c
CG
678 /* fork with up-to-date SELinux label database, so the child inherits the up-to-date db
679 and, until the next SELinux policy changes, we safe further reloads in future children */
680 mac_selinux_maybe_reload();
681
912541b0 682 /* start new worker and pass initial device */
c0c6806b 683 worker_spawn(manager, event);
1e03b754
KS
684}
685
eb546b35
YW
686static int event_queue_insert(Manager *manager, sd_device *dev) {
687 _cleanup_(sd_device_unrefp) sd_device *clone = NULL;
912541b0 688 struct event *event;
eb546b35 689 uint64_t seqnum;
cb49a4f2 690 int r;
912541b0 691
ecb17862
TG
692 assert(manager);
693 assert(dev);
694
040e6896 695 /* only one process can add events to the queue */
df0ff127 696 assert(manager->pid == getpid_cached());
cb49a4f2 697
eb546b35 698 /* We only accepts devices received by device monitor. */
a1130022 699 r = sd_device_get_seqnum(dev, &seqnum);
eb546b35
YW
700 if (r < 0)
701 return r;
702
eb546b35
YW
703 /* Save original device to restore the state on failures. */
704 r = device_shallow_clone(dev, &clone);
705 if (r < 0)
706 return r;
707
708 r = device_copy_properties(clone, dev);
709 if (r < 0)
710 return r;
912541b0 711
eb546b35
YW
712 event = new(struct event, 1);
713 if (!event)
714 return -ENOMEM;
912541b0 715
eb546b35
YW
716 *event = (struct event) {
717 .manager = manager,
718 .dev = sd_device_ref(dev),
719 .dev_kernel = TAKE_PTR(clone),
720 .seqnum = seqnum,
721 .state = EVENT_QUEUED,
722 };
cb49a4f2 723
40a57716 724 if (LIST_IS_EMPTY(manager->events)) {
cb49a4f2
TG
725 r = touch("/run/udev/queue");
726 if (r < 0)
044497e2 727 log_warning_errno(r, "Failed to touch /run/udev/queue: %m");
cb49a4f2
TG
728 }
729
40a57716 730 LIST_APPEND(event, manager->events, event);
cb49a4f2 731
b2d9e58f 732 log_device_uevent(dev, "Device is queued");
eb546b35 733
912541b0 734 return 0;
fc465079
KS
735}
736
f257a8fc 737static void manager_kill_workers(Manager *manager, bool force) {
a505965d 738 struct worker *worker;
1e03b754 739
c0c6806b
TG
740 assert(manager);
741
90e74a66 742 HASHMAP_FOREACH(worker, manager->workers) {
912541b0
KS
743 if (worker->state == WORKER_KILLED)
744 continue;
1e03b754 745
f257a8fc
YG
746 if (worker->state == WORKER_RUNNING && !force) {
747 worker->state = WORKER_KILLING;
748 continue;
749 }
750
912541b0 751 worker->state = WORKER_KILLED;
cb542e84 752 (void) kill(worker->pid, SIGTERM);
912541b0 753 }
1e03b754
KS
754}
755
e3196993 756/* lookup event for identical, parent, child device */
eb546b35
YW
757static int is_device_busy(Manager *manager, struct event *event) {
758 const char *subsystem, *devpath, *devpath_old = NULL;
759 dev_t devnum = makedev(0, 0);
40a57716 760 struct event *loop_event;
eb546b35
YW
761 size_t devpath_len;
762 int r, ifindex = 0;
763 bool is_block;
764
765 r = sd_device_get_subsystem(event->dev, &subsystem);
766 if (r < 0)
767 return r;
768
769 is_block = streq(subsystem, "block");
770
771 r = sd_device_get_devpath(event->dev, &devpath);
772 if (r < 0)
773 return r;
774
775 devpath_len = strlen(devpath);
776
777 r = sd_device_get_property_value(event->dev, "DEVPATH_OLD", &devpath_old);
778 if (r < 0 && r != -ENOENT)
779 return r;
780
781 r = sd_device_get_devnum(event->dev, &devnum);
782 if (r < 0 && r != -ENOENT)
783 return r;
784
785 r = sd_device_get_ifindex(event->dev, &ifindex);
786 if (r < 0 && r != -ENOENT)
787 return r;
912541b0
KS
788
789 /* check if queue contains events we depend on */
40a57716 790 LIST_FOREACH(event, loop_event, manager->events) {
eb546b35
YW
791 size_t loop_devpath_len, common;
792 const char *loop_devpath;
793
87ac8d99 794 /* we already found a later event, earlier cannot block us, no need to check again */
912541b0
KS
795 if (loop_event->seqnum < event->delaying_seqnum)
796 continue;
797
798 /* event we checked earlier still exists, no need to check again */
799 if (loop_event->seqnum == event->delaying_seqnum)
800 return true;
801
802 /* found ourself, no later event can block us */
803 if (loop_event->seqnum >= event->seqnum)
804 break;
805
806 /* check major/minor */
eb546b35
YW
807 if (major(devnum) != 0) {
808 const char *s;
809 dev_t d;
810
811 if (sd_device_get_subsystem(loop_event->dev, &s) < 0)
812 continue;
813
814 if (sd_device_get_devnum(loop_event->dev, &d) >= 0 &&
815 devnum == d && is_block == streq(s, "block"))
86714116 816 goto set_delaying_seqnum;
eb546b35 817 }
912541b0
KS
818
819 /* check network device ifindex */
eb546b35
YW
820 if (ifindex > 0) {
821 int i;
822
823 if (sd_device_get_ifindex(loop_event->dev, &i) >= 0 &&
824 ifindex == i)
86714116 825 goto set_delaying_seqnum;
eb546b35
YW
826 }
827
828 if (sd_device_get_devpath(loop_event->dev, &loop_devpath) < 0)
829 continue;
912541b0
KS
830
831 /* check our old name */
0bd0407e
YW
832 if (devpath_old && streq(devpath_old, loop_devpath))
833 goto set_delaying_seqnum;
912541b0 834
eb546b35
YW
835 loop_devpath_len = strlen(loop_devpath);
836
912541b0 837 /* compare devpath */
eb546b35 838 common = MIN(devpath_len, loop_devpath_len);
912541b0
KS
839
840 /* one devpath is contained in the other? */
eb546b35 841 if (!strneq(devpath, loop_devpath, common))
912541b0
KS
842 continue;
843
844 /* identical device event found */
baa461fc 845 if (devpath_len == loop_devpath_len)
0bd0407e 846 goto set_delaying_seqnum;
912541b0
KS
847
848 /* parent device event found */
0bd0407e
YW
849 if (devpath[common] == '/')
850 goto set_delaying_seqnum;
912541b0
KS
851
852 /* child device event found */
0bd0407e
YW
853 if (loop_devpath[common] == '/')
854 goto set_delaying_seqnum;
912541b0
KS
855 }
856
857 return false;
0bd0407e
YW
858
859set_delaying_seqnum:
7600dbb8
UKK
860 log_device_debug(event->dev, "SEQNUM=%" PRIu64 " blocked by SEQNUM=%" PRIu64,
861 event->seqnum, loop_event->seqnum);
862
0bd0407e
YW
863 event->delaying_seqnum = loop_event->seqnum;
864 return true;
7fafc032
KS
865}
866
62d43dac 867static void manager_exit(Manager *manager) {
62d43dac
TG
868 assert(manager);
869
870 manager->exit = true;
871
b79aacbf
TG
872 sd_notify(false,
873 "STOPPING=1\n"
874 "STATUS=Starting shutdown...");
875
62d43dac 876 /* close sources of new events and discard buffered events */
ab7854df 877 manager->ctrl = udev_ctrl_unref(manager->ctrl);
62d43dac 878
693d371d 879 manager->inotify_event = sd_event_source_unref(manager->inotify_event);
df7ee959 880 manager->inotify_fd = safe_close(manager->inotify_fd);
62d43dac 881
3cabdc23
MW
882 manager->monitor = sd_device_monitor_unref(manager->monitor);
883
62d43dac
TG
884 /* discard queued events and kill workers */
885 event_queue_cleanup(manager, EVENT_QUEUED);
f257a8fc 886 manager_kill_workers(manager, true);
62d43dac
TG
887}
888
889/* reload requested, HUP signal received, rules changed, builtin changed */
890static void manager_reload(Manager *manager) {
891
892 assert(manager);
893
b79aacbf
TG
894 sd_notify(false,
895 "RELOADING=1\n"
896 "STATUS=Flushing configuration...");
897
f257a8fc 898 manager_kill_workers(manager, false);
981fae90 899 manager->rules = udev_rules_free(manager->rules);
2024ed61 900 udev_builtin_exit();
b79aacbf 901
1ef72b55
MS
902 sd_notifyf(false,
903 "READY=1\n"
904 "STATUS=Processing with %u children at max", arg_children_max);
62d43dac
TG
905}
906
eca195ec
YW
907static int on_kill_workers_event(sd_event_source *s, uint64_t usec, void *userdata) {
908 Manager *manager = userdata;
909
910 assert(manager);
911
912 log_debug("Cleanup idle workers");
f257a8fc 913 manager_kill_workers(manager, false);
eca195ec
YW
914
915 return 1;
916}
917
c0c6806b 918static void event_queue_start(Manager *manager) {
40a57716 919 struct event *event;
693d371d 920 usec_t usec;
0725c4b9 921 int r;
8ab44e3f 922
c0c6806b
TG
923 assert(manager);
924
40a57716 925 if (LIST_IS_EMPTY(manager->events) ||
7c4c7e89
TG
926 manager->exit || manager->stop_exec_queue)
927 return;
928
3285baa8 929 assert_se(sd_event_now(manager->event, CLOCK_MONOTONIC, &usec) >= 0);
38a03f06
LP
930 /* check for changed config, every 3 seconds at most */
931 if (manager->last_usec == 0 ||
33ad742a 932 usec - manager->last_usec > 3 * USEC_PER_SEC) {
38a03f06 933 if (udev_rules_check_timestamp(manager->rules) ||
2024ed61 934 udev_builtin_validate())
38a03f06 935 manager_reload(manager);
693d371d 936
38a03f06 937 manager->last_usec = usec;
7c4c7e89
TG
938 }
939
0725c4b9
YW
940 r = event_source_disable(manager->kill_workers_event);
941 if (r < 0)
942 log_warning_errno(r, "Failed to disable event source for cleaning up idle workers, ignoring: %m");
eca195ec 943
2024ed61 944 udev_builtin_init();
7c4c7e89
TG
945
946 if (!manager->rules) {
c238a1f5 947 r = udev_rules_load(&manager->rules, arg_resolve_name_timing);
1d791281
ZJS
948 if (r < 0) {
949 log_warning_errno(r, "Failed to read udev rules: %m");
7c4c7e89 950 return;
1d791281 951 }
7c4c7e89
TG
952 }
953
eb546b35 954 LIST_FOREACH(event, event, manager->events) {
912541b0
KS
955 if (event->state != EVENT_QUEUED)
956 continue;
0bc74ea7 957
912541b0 958 /* do not start event if parent or child event is still running */
eb546b35 959 if (is_device_busy(manager, event) != 0)
912541b0 960 continue;
fc465079 961
c0c6806b 962 event_run(manager, event);
912541b0 963 }
1e03b754
KS
964}
965
ecb17862 966static void event_queue_cleanup(Manager *manager, enum event_state match_type) {
40a57716 967 struct event *event, *tmp;
ff2c503d 968
40a57716 969 LIST_FOREACH_SAFE(event, event, tmp, manager->events) {
912541b0
KS
970 if (match_type != EVENT_UNDEF && match_type != event->state)
971 continue;
ff2c503d 972
c6aa11f2 973 event_free(event);
912541b0 974 }
ff2c503d
KS
975}
976
e82e8fa5 977static int on_worker(sd_event_source *s, int fd, uint32_t revents, void *userdata) {
c0c6806b
TG
978 Manager *manager = userdata;
979
980 assert(manager);
981
912541b0
KS
982 for (;;) {
983 struct worker_message msg;
979558f3
TG
984 struct iovec iovec = {
985 .iov_base = &msg,
986 .iov_len = sizeof(msg),
987 };
fb29cdbe 988 CMSG_BUFFER_TYPE(CMSG_SPACE(sizeof(struct ucred))) control;
979558f3
TG
989 struct msghdr msghdr = {
990 .msg_iov = &iovec,
991 .msg_iovlen = 1,
992 .msg_control = &control,
993 .msg_controllen = sizeof(control),
994 };
912541b0 995 ssize_t size;
371d72e0 996 struct ucred *ucred;
a505965d 997 struct worker *worker;
912541b0 998
3691bcf3
LP
999 size = recvmsg_safe(fd, &msghdr, MSG_DONTWAIT);
1000 if (size == -EINTR)
1001 continue;
1002 if (size == -EAGAIN)
1003 /* nothing more to read */
1004 break;
1005 if (size < 0)
1006 return log_error_errno(size, "Failed to receive message: %m");
1007
1008 cmsg_close_all(&msghdr);
979558f3 1009
3691bcf3 1010 if (size != sizeof(struct worker_message)) {
d4e98880 1011 log_warning("Ignoring worker message with invalid size %zi bytes", size);
e82e8fa5 1012 continue;
979558f3
TG
1013 }
1014
371d72e0 1015 ucred = CMSG_FIND_DATA(&msghdr, SOL_SOCKET, SCM_CREDENTIALS, struct ucred);
979558f3 1016 if (!ucred || ucred->pid <= 0) {
d4e98880 1017 log_warning("Ignoring worker message without valid PID");
979558f3
TG
1018 continue;
1019 }
912541b0
KS
1020
1021 /* lookup worker who sent the signal */
4a0b58c4 1022 worker = hashmap_get(manager->workers, PID_TO_PTR(ucred->pid));
a505965d 1023 if (!worker) {
044497e2 1024 log_debug("Worker ["PID_FMT"] returned, but is no longer tracked", ucred->pid);
a505965d 1025 continue;
912541b0 1026 }
c0bbfd72 1027
f257a8fc
YG
1028 if (worker->state == WORKER_KILLING) {
1029 worker->state = WORKER_KILLED;
1030 (void) kill(worker->pid, SIGTERM);
1031 } else if (worker->state != WORKER_KILLED)
a505965d
TG
1032 worker->state = WORKER_IDLE;
1033
1034 /* worker returned */
1035 event_free(worker->event);
912541b0 1036 }
e82e8fa5 1037
8302fe5a
TG
1038 /* we have free workers, try to schedule events */
1039 event_queue_start(manager);
1040
e82e8fa5
TG
1041 return 1;
1042}
1043
f00d2b6d 1044static int on_uevent(sd_device_monitor *monitor, sd_device *dev, void *userdata) {
c0c6806b 1045 Manager *manager = userdata;
e82e8fa5
TG
1046 int r;
1047
c0c6806b 1048 assert(manager);
e82e8fa5 1049
b428efa5
MS
1050 DEVICE_TRACE_POINT(kernel_uevent_received, dev);
1051
7f2e3a14
YW
1052 device_ensure_usec_initialized(dev, NULL);
1053
eb546b35
YW
1054 r = event_queue_insert(manager, dev);
1055 if (r < 0) {
1056 log_device_error_errno(dev, r, "Failed to insert device into event queue: %m");
7f2e3a14 1057 return 1;
eb546b35 1058 }
7f2e3a14
YW
1059
1060 /* we have fresh events, try to schedule them */
1061 event_queue_start(manager);
e82e8fa5
TG
1062
1063 return 1;
88f4b648
KS
1064}
1065
3b47c739 1066/* receive the udevd message from userspace */
d02c6f54 1067static int on_ctrl_msg(struct udev_ctrl *uctrl, enum udev_ctrl_msg_type type, const union udev_ctrl_msg_value *value, void *userdata) {
c0c6806b 1068 Manager *manager = userdata;
d02c6f54 1069 int r;
912541b0 1070
d02c6f54 1071 assert(value);
c0c6806b 1072 assert(manager);
e4f66b77 1073
d02c6f54
YW
1074 switch (type) {
1075 case UDEV_CTRL_SET_LOG_LEVEL:
64a3494c 1076 log_debug("Received udev control message (SET_LOG_LEVEL), setting log_level=%i", value->intval);
3cc6b14a 1077 log_set_max_level(value->intval);
1a0bd015 1078 manager->log_level = value->intval;
f257a8fc 1079 manager_kill_workers(manager, false);
d02c6f54
YW
1080 break;
1081 case UDEV_CTRL_STOP_EXEC_QUEUE:
044497e2 1082 log_debug("Received udev control message (STOP_EXEC_QUEUE)");
c0c6806b 1083 manager->stop_exec_queue = true;
d02c6f54
YW
1084 break;
1085 case UDEV_CTRL_START_EXEC_QUEUE:
044497e2 1086 log_debug("Received udev control message (START_EXEC_QUEUE)");
c0c6806b 1087 manager->stop_exec_queue = false;
8302fe5a 1088 event_queue_start(manager);
d02c6f54
YW
1089 break;
1090 case UDEV_CTRL_RELOAD:
044497e2 1091 log_debug("Received udev control message (RELOAD)");
62d43dac 1092 manager_reload(manager);
d02c6f54
YW
1093 break;
1094 case UDEV_CTRL_SET_ENV: {
9b5150b6 1095 _cleanup_free_ char *key = NULL, *val = NULL, *old_key = NULL, *old_val = NULL;
d02c6f54 1096 const char *eq;
9b5150b6 1097
d02c6f54 1098 eq = strchr(value->buf, '=');
9b5150b6 1099 if (!eq) {
d02c6f54 1100 log_error("Invalid key format '%s'", value->buf);
9b5150b6
YW
1101 return 1;
1102 }
1103
d02c6f54 1104 key = strndup(value->buf, eq - value->buf);
9b5150b6
YW
1105 if (!key) {
1106 log_oom();
1107 return 1;
1108 }
1109
1110 old_val = hashmap_remove2(manager->properties, key, (void **) &old_key);
1111
1112 r = hashmap_ensure_allocated(&manager->properties, &string_hash_ops);
1113 if (r < 0) {
1114 log_oom();
1115 return 1;
912541b0 1116 }
9b5150b6
YW
1117
1118 eq++;
f053fc33 1119 if (isempty(eq)) {
044497e2 1120 log_debug("Received udev control message (ENV), unsetting '%s'", key);
9b5150b6
YW
1121
1122 r = hashmap_put(manager->properties, key, NULL);
1123 if (r < 0) {
1124 log_oom();
1125 return 1;
1126 }
1127 } else {
1128 val = strdup(eq);
1129 if (!val) {
1130 log_oom();
1131 return 1;
1132 }
1133
044497e2 1134 log_debug("Received udev control message (ENV), setting '%s=%s'", key, val);
9b5150b6
YW
1135
1136 r = hashmap_put(manager->properties, key, val);
1137 if (r < 0) {
1138 log_oom();
1139 return 1;
1140 }
1141 }
1142
1143 key = val = NULL;
f257a8fc 1144 manager_kill_workers(manager, false);
d02c6f54 1145 break;
912541b0 1146 }
d02c6f54
YW
1147 case UDEV_CTRL_SET_CHILDREN_MAX:
1148 if (value->intval <= 0) {
1149 log_debug("Received invalid udev control message (SET_MAX_CHILDREN, %i), ignoring.", value->intval);
1150 return 0;
1151 }
912541b0 1152
d02c6f54
YW
1153 log_debug("Received udev control message (SET_MAX_CHILDREN), setting children_max=%i", value->intval);
1154 arg_children_max = value->intval;
1ef72b55
MS
1155
1156 (void) sd_notifyf(false,
1157 "READY=1\n"
1158 "STATUS=Processing with %u children at max", arg_children_max);
d02c6f54
YW
1159 break;
1160 case UDEV_CTRL_PING:
d30f43ee 1161 log_debug("Received udev control message (PING)");
d02c6f54
YW
1162 break;
1163 case UDEV_CTRL_EXIT:
044497e2 1164 log_debug("Received udev control message (EXIT)");
62d43dac 1165 manager_exit(manager);
d02c6f54
YW
1166 break;
1167 default:
1168 log_debug("Received unknown udev control message, ignoring");
912541b0 1169 }
e4f66b77 1170
e82e8fa5 1171 return 1;
88f4b648 1172}
4a231017 1173
25677a05 1174static int synthesize_change_one(sd_device *dev, sd_device *target) {
0584b17a
ZJS
1175 int r;
1176
25677a05
YW
1177 if (DEBUG_LOGGING) {
1178 const char *syspath = NULL;
1179 (void) sd_device_get_syspath(target, &syspath);
1180 log_device_debug(dev, "device is closed, synthesising 'change' on %s", strna(syspath));
1181 }
1182
1183 r = sd_device_trigger(target, SD_DEVICE_CHANGE);
0584b17a 1184 if (r < 0)
25677a05
YW
1185 return log_device_debug_errno(target, r, "Failed to trigger 'change' uevent: %m");
1186
b428efa5
MS
1187 DEVICE_TRACE_POINT(synthetic_change_event, dev);
1188
0584b17a
ZJS
1189 return 0;
1190}
1191
70068602 1192static int synthesize_change(sd_device *dev) {
25677a05 1193 const char *subsystem, *sysname, *devtype;
f3a740a5 1194 int r;
edd32000 1195
70068602
YW
1196 r = sd_device_get_subsystem(dev, &subsystem);
1197 if (r < 0)
1198 return r;
1199
25677a05 1200 r = sd_device_get_devtype(dev, &devtype);
70068602
YW
1201 if (r < 0)
1202 return r;
1203
25677a05 1204 r = sd_device_get_sysname(dev, &sysname);
70068602
YW
1205 if (r < 0)
1206 return r;
1207
25677a05
YW
1208 if (streq_ptr(subsystem, "block") &&
1209 streq_ptr(devtype, "disk") &&
70068602
YW
1210 !startswith(sysname, "dm-")) {
1211 _cleanup_(sd_device_enumerator_unrefp) sd_device_enumerator *e = NULL;
1212 bool part_table_read = false, has_partitions = false;
25677a05 1213 const char *devname;
70068602 1214 sd_device *d;
ede34445 1215 int fd;
f3a740a5 1216
25677a05
YW
1217 r = sd_device_get_devname(dev, &devname);
1218 if (r < 0)
1219 return r;
1220
1221 /* Try to re-read the partition table. This only succeeds if none of the devices is
1222 * busy. The kernel returns 0 if no partition table is found, and we will not get an
1223 * event for the disk. */
70068602 1224 fd = open(devname, O_RDONLY|O_CLOEXEC|O_NOFOLLOW|O_NONBLOCK);
ede34445 1225 if (fd >= 0) {
02ba8fb3
KS
1226 r = flock(fd, LOCK_EX|LOCK_NB);
1227 if (r >= 0)
1228 r = ioctl(fd, BLKRRPART, 0);
1229
ede34445
KS
1230 close(fd);
1231 if (r >= 0)
e9fc29f4 1232 part_table_read = true;
ede34445
KS
1233 }
1234
e9fc29f4 1235 /* search for partitions */
70068602 1236 r = sd_device_enumerator_new(&e);
f3a740a5
KS
1237 if (r < 0)
1238 return r;
1239
70068602 1240 r = sd_device_enumerator_allow_uninitialized(e);
f3a740a5
KS
1241 if (r < 0)
1242 return r;
1243
70068602 1244 r = sd_device_enumerator_add_match_parent(e, dev);
47a3fa0f
TA
1245 if (r < 0)
1246 return r;
e9fc29f4 1247
70068602
YW
1248 r = sd_device_enumerator_add_match_subsystem(e, "block", true);
1249 if (r < 0)
1250 return r;
e9fc29f4 1251
70068602
YW
1252 FOREACH_DEVICE(e, d) {
1253 const char *t;
e9fc29f4 1254
25677a05 1255 if (sd_device_get_devtype(d, &t) < 0 || !streq(t, "partition"))
e9fc29f4
KS
1256 continue;
1257
1258 has_partitions = true;
1259 break;
1260 }
1261
25677a05
YW
1262 /* We have partitions and re-read the table, the kernel already sent out a "change"
1263 * event for the disk, and "remove/add" for all partitions. */
e9fc29f4
KS
1264 if (part_table_read && has_partitions)
1265 return 0;
1266
25677a05
YW
1267 /* We have partitions but re-reading the partition table did not work, synthesize
1268 * "change" for the disk and all partitions. */
1269 (void) synthesize_change_one(dev, dev);
e9fc29f4 1270
70068602 1271 FOREACH_DEVICE(e, d) {
25677a05 1272 const char *t;
f3a740a5 1273
25677a05 1274 if (sd_device_get_devtype(d, &t) < 0 || !streq(t, "partition"))
f3a740a5
KS
1275 continue;
1276
25677a05 1277 (void) synthesize_change_one(dev, d);
f3a740a5 1278 }
ede34445 1279
0584b17a 1280 } else
25677a05 1281 (void) synthesize_change_one(dev, dev);
ede34445 1282
f3a740a5 1283 return 0;
edd32000
KS
1284}
1285
e82e8fa5 1286static int on_inotify(sd_event_source *s, int fd, uint32_t revents, void *userdata) {
c0c6806b 1287 Manager *manager = userdata;
0254e944 1288 union inotify_event_buffer buffer;
f7c1ad4f
LP
1289 struct inotify_event *e;
1290 ssize_t l;
0725c4b9 1291 int r;
912541b0 1292
c0c6806b 1293 assert(manager);
e82e8fa5 1294
0725c4b9
YW
1295 r = event_source_disable(manager->kill_workers_event);
1296 if (r < 0)
1297 log_warning_errno(r, "Failed to disable event source for cleaning up idle workers, ignoring: %m");
eca195ec 1298
e82e8fa5 1299 l = read(fd, &buffer, sizeof(buffer));
f7c1ad4f 1300 if (l < 0) {
3742095b 1301 if (IN_SET(errno, EAGAIN, EINTR))
e82e8fa5 1302 return 1;
912541b0 1303
f7c1ad4f 1304 return log_error_errno(errno, "Failed to read inotify fd: %m");
912541b0
KS
1305 }
1306
f7c1ad4f 1307 FOREACH_INOTIFY_EVENT(e, buffer, l) {
70068602
YW
1308 _cleanup_(sd_device_unrefp) sd_device *dev = NULL;
1309 const char *devnode;
1310
e7f781e4
YW
1311 r = device_new_from_watch_handle(&dev, e->wd);
1312 if (r < 0) {
1313 log_debug_errno(r, "Failed to create sd_device object from watch handle, ignoring: %m");
70068602 1314 continue;
e7f781e4 1315 }
912541b0 1316
70068602 1317 if (sd_device_get_devname(dev, &devnode) < 0)
edd32000 1318 continue;
912541b0 1319
7fe3324c 1320 log_device_debug(dev, "Inotify event: %x for %s", e->mask, devnode);
da143134 1321 if (e->mask & IN_CLOSE_WRITE)
e7f781e4
YW
1322 (void) synthesize_change(dev);
1323
1324 /* Do not handle IN_IGNORED here. It should be handled by worker in 'remove' uevent;
1325 * udev_event_execute_rules() -> event_execute_rules_on_remove() -> udev_watch_end(). */
912541b0
KS
1326 }
1327
e82e8fa5 1328 return 1;
bd284db1
SJR
1329}
1330
0561329d 1331static int on_sigterm(sd_event_source *s, const struct signalfd_siginfo *si, void *userdata) {
c0c6806b
TG
1332 Manager *manager = userdata;
1333
1334 assert(manager);
1335
62d43dac 1336 manager_exit(manager);
912541b0 1337
e82e8fa5
TG
1338 return 1;
1339}
912541b0 1340
0561329d 1341static int on_sighup(sd_event_source *s, const struct signalfd_siginfo *si, void *userdata) {
c0c6806b
TG
1342 Manager *manager = userdata;
1343
1344 assert(manager);
1345
62d43dac 1346 manager_reload(manager);
912541b0 1347
e82e8fa5
TG
1348 return 1;
1349}
912541b0 1350
e82e8fa5 1351static int on_sigchld(sd_event_source *s, const struct signalfd_siginfo *si, void *userdata) {
c0c6806b 1352 Manager *manager = userdata;
0725c4b9 1353 int r;
c0c6806b
TG
1354
1355 assert(manager);
1356
e82e8fa5
TG
1357 for (;;) {
1358 pid_t pid;
1359 int status;
1360 struct worker *worker;
d1317d02 1361
e82e8fa5
TG
1362 pid = waitpid(-1, &status, WNOHANG);
1363 if (pid <= 0)
f29328d6 1364 break;
e82e8fa5 1365
4a0b58c4 1366 worker = hashmap_get(manager->workers, PID_TO_PTR(pid));
e82e8fa5 1367 if (!worker) {
dc7faf2a 1368 log_warning("Worker ["PID_FMT"] is unknown, ignoring", pid);
f29328d6 1369 continue;
912541b0 1370 }
e82e8fa5
TG
1371
1372 if (WIFEXITED(status)) {
1373 if (WEXITSTATUS(status) == 0)
dc7faf2a 1374 log_debug("Worker ["PID_FMT"] exited", pid);
e82e8fa5 1375 else
dc7faf2a 1376 log_warning("Worker ["PID_FMT"] exited with return code %i", pid, WEXITSTATUS(status));
33ad742a 1377 } else if (WIFSIGNALED(status))
dc7faf2a 1378 log_warning("Worker ["PID_FMT"] terminated by signal %i (%s)", pid, WTERMSIG(status), signal_to_string(WTERMSIG(status)));
33ad742a 1379 else if (WIFSTOPPED(status)) {
dc7faf2a 1380 log_info("Worker ["PID_FMT"] stopped", pid);
f29328d6 1381 continue;
e82e8fa5 1382 } else if (WIFCONTINUED(status)) {
dc7faf2a 1383 log_info("Worker ["PID_FMT"] continued", pid);
f29328d6 1384 continue;
e82e8fa5 1385 } else
dc7faf2a 1386 log_warning("Worker ["PID_FMT"] exit with status 0x%04x", pid, status);
e82e8fa5 1387
05e6d9c6 1388 if ((!WIFEXITED(status) || WEXITSTATUS(status) != 0) && worker->event) {
eb546b35 1389 log_device_error(worker->event->dev, "Worker ["PID_FMT"] failed", pid);
dc7faf2a 1390
05e6d9c6 1391 /* delete state from disk */
eb546b35
YW
1392 device_delete_db(worker->event->dev);
1393 device_tag_index(worker->event->dev, NULL, false);
dc7faf2a 1394
030f4571
MW
1395 if (manager->monitor) {
1396 /* forward kernel event without amending it */
1397 r = device_monitor_send_device(manager->monitor, NULL, worker->event->dev_kernel);
1398 if (r < 0)
1399 log_device_error_errno(worker->event->dev_kernel, r, "Failed to send back device to kernel: %m");
1400 }
e82e8fa5
TG
1401 }
1402
1403 worker_free(worker);
912541b0 1404 }
e82e8fa5 1405
8302fe5a
TG
1406 /* we can start new workers, try to schedule events */
1407 event_queue_start(manager);
1408
eca195ec 1409 /* Disable unnecessary cleanup event */
0725c4b9
YW
1410 if (hashmap_isempty(manager->workers)) {
1411 r = event_source_disable(manager->kill_workers_event);
1412 if (r < 0)
1413 log_warning_errno(r, "Failed to disable event source for cleaning up idle workers, ignoring: %m");
1414 }
eca195ec 1415
e82e8fa5 1416 return 1;
f27125f9 1417}
1418
693d371d
TG
1419static int on_post(sd_event_source *s, void *userdata) {
1420 Manager *manager = userdata;
693d371d
TG
1421
1422 assert(manager);
1423
b6107f01
YW
1424 if (!LIST_IS_EMPTY(manager->events))
1425 return 1;
1426
1427 /* There are no pending events. Let's cleanup idle process. */
1428
1429 if (!hashmap_isempty(manager->workers)) {
1430 /* There are idle workers */
6d63048a
YW
1431 (void) event_reset_time(manager->event, &manager->kill_workers_event, CLOCK_MONOTONIC,
1432 now(CLOCK_MONOTONIC) + 3 * USEC_PER_SEC, USEC_PER_SEC,
1433 on_kill_workers_event, manager, 0, "kill-workers-event", false);
b6107f01 1434 return 1;
693d371d
TG
1435 }
1436
b6107f01
YW
1437 /* There are no idle workers. */
1438
1439 if (manager->exit)
1440 return sd_event_exit(manager->event, 0);
1441
1442 if (manager->cgroup)
1443 /* cleanup possible left-over processes in our cgroup */
1444 (void) cg_kill(SYSTEMD_CGROUP_CONTROLLER, manager->cgroup, SIGKILL, CGROUP_IGNORE_SELF, NULL, NULL, NULL);
1445
693d371d
TG
1446 return 1;
1447}
1448
c4b69e99 1449static int listen_fds(int *ret_ctrl, int *ret_netlink) {
fcff1e72 1450 int ctrl_fd = -1, netlink_fd = -1;
c4b69e99 1451 int fd, n;
912541b0 1452
c4b69e99
YW
1453 assert(ret_ctrl);
1454 assert(ret_netlink);
fcff1e72 1455
912541b0 1456 n = sd_listen_fds(true);
fcff1e72
TG
1457 if (n < 0)
1458 return n;
912541b0
KS
1459
1460 for (fd = SD_LISTEN_FDS_START; fd < n + SD_LISTEN_FDS_START; fd++) {
c52cff07 1461 if (sd_is_socket(fd, AF_LOCAL, SOCK_SEQPACKET, -1) > 0) {
fcff1e72
TG
1462 if (ctrl_fd >= 0)
1463 return -EINVAL;
1464 ctrl_fd = fd;
912541b0
KS
1465 continue;
1466 }
1467
c52cff07 1468 if (sd_is_socket(fd, AF_NETLINK, SOCK_RAW, -1) > 0) {
fcff1e72
TG
1469 if (netlink_fd >= 0)
1470 return -EINVAL;
1471 netlink_fd = fd;
912541b0
KS
1472 continue;
1473 }
1474
fcff1e72 1475 return -EINVAL;
912541b0
KS
1476 }
1477
c4b69e99
YW
1478 *ret_ctrl = ctrl_fd;
1479 *ret_netlink = netlink_fd;
912541b0 1480
912541b0 1481 return 0;
7459bcdc
KS
1482}
1483
e6f86cac 1484/*
3f85ef0f 1485 * read the kernel command line, in case we need to get into debug mode
64a3494c 1486 * udev.log_level=<level> syslog priority
1d84ad94
LP
1487 * udev.children_max=<number of workers> events are fully serialized if set to 1
1488 * udev.exec_delay=<number of seconds> delay execution of every executed program
1489 * udev.event_timeout=<number of seconds> seconds to wait before terminating an event
95ac5230 1490 * udev.blockdev_read_only<=bool> mark all block devices read-only when they appear
e6f86cac 1491 */
96287a49 1492static int parse_proc_cmdline_item(const char *key, const char *value, void *data) {
95ac5230 1493 int r;
e6f86cac 1494
614a823c 1495 assert(key);
e6f86cac 1496
64a3494c
FB
1497 if (proc_cmdline_key_streq(key, "udev.log_level") ||
1498 proc_cmdline_key_streq(key, "udev.log_priority")) { /* kept for backward compatibility */
1d84ad94
LP
1499
1500 if (proc_cmdline_value_missing(key, value))
1501 return 0;
1502
46f0fbd8 1503 r = log_level_from_string(value);
92e72467
ZJS
1504 if (r >= 0)
1505 log_set_max_level(r);
1d84ad94
LP
1506
1507 } else if (proc_cmdline_key_streq(key, "udev.event_timeout")) {
1508
1509 if (proc_cmdline_value_missing(key, value))
1510 return 0;
1511
9d9264ba 1512 r = parse_sec(value, &arg_event_timeout_usec);
1d84ad94
LP
1513
1514 } else if (proc_cmdline_key_streq(key, "udev.children_max")) {
1515
1516 if (proc_cmdline_value_missing(key, value))
1517 return 0;
1518
020328e1 1519 r = safe_atou(value, &arg_children_max);
1d84ad94
LP
1520
1521 } else if (proc_cmdline_key_streq(key, "udev.exec_delay")) {
1522
1523 if (proc_cmdline_value_missing(key, value))
1524 return 0;
1525
6b92f429 1526 r = parse_sec(value, &arg_exec_delay_usec);
1d84ad94 1527
e2099267 1528 } else if (proc_cmdline_key_streq(key, "udev.timeout_signal")) {
95ac5230 1529
e2099267
MS
1530 if (proc_cmdline_value_missing(key, value))
1531 return 0;
1532
1533 r = signal_from_string(value);
1534 if (r > 0)
1535 arg_timeout_signal = r;
95ac5230
LP
1536
1537 } else if (proc_cmdline_key_streq(key, "udev.blockdev_read_only")) {
1538
1539 if (!value)
1540 arg_blockdev_read_only = true;
1541 else {
1542 r = parse_boolean(value);
1543 if (r < 0)
1544 log_warning_errno(r, "Failed to parse udev.blockdev-read-only argument, ignoring: %s", value);
1545 else
1546 arg_blockdev_read_only = r;
1547 }
1548
1549 if (arg_blockdev_read_only)
1550 log_notice("All physical block devices will be marked read-only.");
1551
1552 return 0;
1553
1554 } else {
1555 if (startswith(key, "udev."))
1556 log_warning("Unknown udev kernel command line option \"%s\", ignoring.", key);
1557
1558 return 0;
1559 }
614a823c 1560
92e72467
ZJS
1561 if (r < 0)
1562 log_warning_errno(r, "Failed to parse \"%s=%s\", ignoring: %m", key, value);
1d84ad94 1563
614a823c 1564 return 0;
e6f86cac
KS
1565}
1566
37ec0fdd
LP
1567static int help(void) {
1568 _cleanup_free_ char *link = NULL;
1569 int r;
1570
1571 r = terminal_urlify_man("systemd-udevd.service", "8", &link);
1572 if (r < 0)
1573 return log_oom();
1574
ed216e1f 1575 printf("%s [OPTIONS...]\n\n"
d1109e12 1576 "Rule-based manager for device events and files.\n\n"
5ac0162c 1577 " -h --help Print this message\n"
2d19c17e
MF
1578 " -V --version Print version of the program\n"
1579 " -d --daemon Detach and run in the background\n"
1580 " -D --debug Enable debug output\n"
1581 " -c --children-max=INT Set maximum number of workers\n"
1582 " -e --exec-delay=SECONDS Seconds to wait before executing RUN=\n"
1583 " -t --event-timeout=SECONDS Seconds to wait before terminating an event\n"
1584 " -N --resolve-names=early|late|never\n"
5ac0162c 1585 " When to resolve users and groups\n"
bc556335
DDM
1586 "\nSee the %s for details.\n",
1587 program_invocation_short_name,
1588 link);
37ec0fdd
LP
1589
1590 return 0;
ed216e1f
TG
1591}
1592
bba7a484 1593static int parse_argv(int argc, char *argv[]) {
e2099267
MS
1594 enum {
1595 ARG_TIMEOUT_SIGNAL,
1596 };
1597
912541b0 1598 static const struct option options[] = {
e2099267
MS
1599 { "daemon", no_argument, NULL, 'd' },
1600 { "debug", no_argument, NULL, 'D' },
1601 { "children-max", required_argument, NULL, 'c' },
1602 { "exec-delay", required_argument, NULL, 'e' },
1603 { "event-timeout", required_argument, NULL, 't' },
1604 { "resolve-names", required_argument, NULL, 'N' },
1605 { "help", no_argument, NULL, 'h' },
1606 { "version", no_argument, NULL, 'V' },
1607 { "timeout-signal", required_argument, NULL, ARG_TIMEOUT_SIGNAL },
912541b0
KS
1608 {}
1609 };
689a97f5 1610
044497e2 1611 int c, r;
689a97f5 1612
bba7a484
TG
1613 assert(argc >= 0);
1614 assert(argv);
912541b0 1615
e14b6f21 1616 while ((c = getopt_long(argc, argv, "c:de:Dt:N:hV", options, NULL)) >= 0) {
bba7a484 1617 switch (c) {
912541b0 1618
912541b0 1619 case 'd':
bba7a484 1620 arg_daemonize = true;
912541b0
KS
1621 break;
1622 case 'c':
020328e1 1623 r = safe_atou(optarg, &arg_children_max);
6f5cf8a8 1624 if (r < 0)
389f9bf2 1625 log_warning_errno(r, "Failed to parse --children-max= value '%s', ignoring: %m", optarg);
912541b0
KS
1626 break;
1627 case 'e':
6b92f429 1628 r = parse_sec(optarg, &arg_exec_delay_usec);
6f5cf8a8 1629 if (r < 0)
6b92f429 1630 log_warning_errno(r, "Failed to parse --exec-delay= value '%s', ignoring: %m", optarg);
912541b0 1631 break;
e2099267
MS
1632 case ARG_TIMEOUT_SIGNAL:
1633 r = signal_from_string(optarg);
1634 if (r <= 0)
1635 log_warning_errno(r, "Failed to parse --timeout-signal= value '%s', ignoring: %m", optarg);
1636 else
1637 arg_timeout_signal = r;
1638
1639 break;
9719859c 1640 case 't':
9d9264ba 1641 r = parse_sec(optarg, &arg_event_timeout_usec);
f1e8664e 1642 if (r < 0)
9d9264ba 1643 log_warning_errno(r, "Failed to parse --event-timeout= value '%s', ignoring: %m", optarg);
9719859c 1644 break;
912541b0 1645 case 'D':
bba7a484 1646 arg_debug = true;
912541b0 1647 break;
c4d44cba
YW
1648 case 'N': {
1649 ResolveNameTiming t;
1650
1651 t = resolve_name_timing_from_string(optarg);
1652 if (t < 0)
1653 log_warning("Invalid --resolve-names= value '%s', ignoring.", optarg);
1654 else
1655 arg_resolve_name_timing = t;
912541b0 1656 break;
c4d44cba 1657 }
912541b0 1658 case 'h':
37ec0fdd 1659 return help();
912541b0 1660 case 'V':
681bd2c5 1661 printf("%s\n", GIT_VERSION);
bba7a484
TG
1662 return 0;
1663 case '?':
1664 return -EINVAL;
912541b0 1665 default:
04499a70 1666 assert_not_reached();
bba7a484 1667
912541b0
KS
1668 }
1669 }
1670
bba7a484
TG
1671 return 1;
1672}
1673
b7f74dd4 1674static int manager_new(Manager **ret, int fd_ctrl, int fd_uevent, const char *cgroup) {
c0c6806b 1675 _cleanup_(manager_freep) Manager *manager = NULL;
b5af8c8c 1676 int r;
c0c6806b
TG
1677
1678 assert(ret);
1679
6f19b42f 1680 manager = new(Manager, 1);
c0c6806b
TG
1681 if (!manager)
1682 return log_oom();
1683
6f19b42f 1684 *manager = (Manager) {
df7ee959 1685 .inotify_fd = -1,
6f19b42f
YW
1686 .worker_watch = { -1, -1 },
1687 .cgroup = cgroup,
1688 };
e237d8cb 1689
100bc5bf
YW
1690 r = udev_ctrl_new_from_fd(&manager->ctrl, fd_ctrl);
1691 if (r < 0)
1692 return log_error_errno(r, "Failed to initialize udev control socket: %m");
e237d8cb 1693
b5af8c8c
ZJS
1694 r = udev_ctrl_enable_receiving(manager->ctrl);
1695 if (r < 0)
1696 return log_error_errno(r, "Failed to bind udev control socket: %m");
c4b69e99 1697
7f2e3a14
YW
1698 r = device_monitor_new_full(&manager->monitor, MONITOR_GROUP_KERNEL, fd_uevent);
1699 if (r < 0)
1700 return log_error_errno(r, "Failed to initialize device monitor: %m");
e237d8cb 1701
1ffadeaa
FB
1702 /* Bump receiver buffer, but only if we are not called via socket activation, as in that
1703 * case systemd sets the receive buffer size for us, and the value in the .socket unit
1704 * should take full effect. */
e77f52e5
YW
1705 if (fd_uevent < 0) {
1706 r = sd_device_monitor_set_receive_buffer_size(manager->monitor, 128 * 1024 * 1024);
1707 if (r < 0)
1708 log_warning_errno(r, "Failed to set receive buffer size for device monitor, ignoring: %m");
1709 }
c4b69e99 1710
b5af8c8c
ZJS
1711 r = device_monitor_enable_receiving(manager->monitor);
1712 if (r < 0)
1713 return log_error_errno(r, "Failed to bind netlink socket: %m");
1714
1a0bd015
YW
1715 manager->log_level = log_get_max_level();
1716
b5af8c8c
ZJS
1717 *ret = TAKE_PTR(manager);
1718
1719 return 0;
1720}
1721
1722static int main_loop(Manager *manager) {
d02c6f54 1723 int fd_worker, r;
b5af8c8c 1724
76e62a4d
YW
1725 manager->pid = getpid_cached();
1726
e237d8cb
TG
1727 /* unnamed socket from workers to the main daemon */
1728 r = socketpair(AF_LOCAL, SOCK_DGRAM|SOCK_CLOEXEC, 0, manager->worker_watch);
1729 if (r < 0)
044497e2 1730 return log_error_errno(errno, "Failed to create socketpair for communicating with workers: %m");
e237d8cb 1731
693d371d 1732 fd_worker = manager->worker_watch[READ_END];
e237d8cb 1733
2ff48e98 1734 r = setsockopt_int(fd_worker, SOL_SOCKET, SO_PASSCRED, true);
e237d8cb 1735 if (r < 0)
044497e2 1736 return log_error_errno(r, "Failed to enable SO_PASSCRED: %m");
e237d8cb 1737
df7ee959
YW
1738 manager->inotify_fd = inotify_init1(IN_CLOEXEC);
1739 if (manager->inotify_fd < 0)
1740 return log_error_errno(errno, "Failed to create inotify descriptor: %m");
e237d8cb 1741
df7ee959 1742 udev_watch_restore(manager->inotify_fd);
e237d8cb
TG
1743
1744 /* block and listen to all signals on signalfd */
72c0a2c2 1745 assert_se(sigprocmask_many(SIG_BLOCK, NULL, SIGTERM, SIGINT, SIGHUP, SIGCHLD, -1) >= 0);
693d371d 1746
49f997f3
TG
1747 r = sd_event_default(&manager->event);
1748 if (r < 0)
044497e2 1749 return log_error_errno(r, "Failed to allocate event loop: %m");
49f997f3 1750
693d371d
TG
1751 r = sd_event_add_signal(manager->event, NULL, SIGINT, on_sigterm, manager);
1752 if (r < 0)
044497e2 1753 return log_error_errno(r, "Failed to create SIGINT event source: %m");
693d371d
TG
1754
1755 r = sd_event_add_signal(manager->event, NULL, SIGTERM, on_sigterm, manager);
1756 if (r < 0)
044497e2 1757 return log_error_errno(r, "Failed to create SIGTERM event source: %m");
693d371d
TG
1758
1759 r = sd_event_add_signal(manager->event, NULL, SIGHUP, on_sighup, manager);
1760 if (r < 0)
044497e2 1761 return log_error_errno(r, "Failed to create SIGHUP event source: %m");
693d371d
TG
1762
1763 r = sd_event_add_signal(manager->event, NULL, SIGCHLD, on_sigchld, manager);
1764 if (r < 0)
044497e2 1765 return log_error_errno(r, "Failed to create SIGCHLD event source: %m");
693d371d
TG
1766
1767 r = sd_event_set_watchdog(manager->event, true);
1768 if (r < 0)
044497e2 1769 return log_error_errno(r, "Failed to create watchdog event source: %m");
693d371d 1770
d02c6f54
YW
1771 r = udev_ctrl_attach_event(manager->ctrl, manager->event);
1772 if (r < 0)
1773 return log_error_errno(r, "Failed to attach event to udev control: %m");
b5af8c8c 1774
d02c6f54 1775 r = udev_ctrl_start(manager->ctrl, on_ctrl_msg, manager);
693d371d 1776 if (r < 0)
d02c6f54 1777 return log_error_errno(r, "Failed to start device monitor: %m");
693d371d
TG
1778
1779 /* This needs to be after the inotify and uevent handling, to make sure
1780 * that the ping is send back after fully processing the pending uevents
1781 * (including the synthetic ones we may create due to inotify events).
1782 */
d02c6f54 1783 r = sd_event_source_set_priority(udev_ctrl_get_event_source(manager->ctrl), SD_EVENT_PRIORITY_IDLE);
693d371d 1784 if (r < 0)
044497e2 1785 return log_error_errno(r, "Failed to set IDLE event priority for udev control event source: %m");
693d371d 1786
df7ee959 1787 r = sd_event_add_io(manager->event, &manager->inotify_event, manager->inotify_fd, EPOLLIN, on_inotify, manager);
693d371d 1788 if (r < 0)
044497e2 1789 return log_error_errno(r, "Failed to create inotify event source: %m");
693d371d 1790
f00d2b6d
YW
1791 r = sd_device_monitor_attach_event(manager->monitor, manager->event);
1792 if (r < 0)
1793 return log_error_errno(r, "Failed to attach event to device monitor: %m");
1794
1795 r = sd_device_monitor_start(manager->monitor, on_uevent, manager);
693d371d 1796 if (r < 0)
f00d2b6d
YW
1797 return log_error_errno(r, "Failed to start device monitor: %m");
1798
1799 (void) sd_event_source_set_description(sd_device_monitor_get_event_source(manager->monitor), "device-monitor");
693d371d
TG
1800
1801 r = sd_event_add_io(manager->event, NULL, fd_worker, EPOLLIN, on_worker, manager);
1802 if (r < 0)
044497e2 1803 return log_error_errno(r, "Failed to create worker event source: %m");
693d371d
TG
1804
1805 r = sd_event_add_post(manager->event, NULL, on_post, manager);
1806 if (r < 0)
044497e2 1807 return log_error_errno(r, "Failed to create post event source: %m");
e237d8cb 1808
b5af8c8c 1809 udev_builtin_init();
077fc5e2 1810
c238a1f5 1811 r = udev_rules_load(&manager->rules, arg_resolve_name_timing);
b5af8c8c
ZJS
1812 if (!manager->rules)
1813 return log_error_errno(r, "Failed to read udev rules: %m");
077fc5e2
DH
1814
1815 r = udev_rules_apply_static_dev_perms(manager->rules);
1816 if (r < 0)
044497e2 1817 log_error_errno(r, "Failed to apply permissions on static device nodes: %m");
077fc5e2 1818
1ef72b55
MS
1819 (void) sd_notifyf(false,
1820 "READY=1\n"
1821 "STATUS=Processing with %u children at max", arg_children_max);
077fc5e2
DH
1822
1823 r = sd_event_loop(manager->event);
44dcf454 1824 if (r < 0)
044497e2 1825 log_error_errno(r, "Event loop failed: %m");
077fc5e2 1826
077fc5e2
DH
1827 sd_notify(false,
1828 "STOPPING=1\n"
1829 "STATUS=Shutting down...");
077fc5e2
DH
1830 return r;
1831}
1832
63e2d171 1833int run_udevd(int argc, char *argv[]) {
c26d1879 1834 _cleanup_free_ char *cgroup = NULL;
b5af8c8c 1835 _cleanup_(manager_freep) Manager *manager = NULL;
efa1606e 1836 int fd_ctrl = -1, fd_uevent = -1;
e5d7bce1 1837 int r;
bba7a484 1838
bba7a484 1839 log_set_target(LOG_TARGET_AUTO);
6b413782 1840 log_open();
e2099267 1841 udev_parse_config_full(&arg_children_max, &arg_exec_delay_usec, &arg_event_timeout_usec, &arg_resolve_name_timing, &arg_timeout_signal);
bba7a484 1842 log_parse_environment();
6b413782 1843 log_open(); /* Done again to update after reading configuration. */
bba7a484 1844
bba7a484
TG
1845 r = parse_argv(argc, argv);
1846 if (r <= 0)
0c5a109a 1847 return r;
bba7a484 1848
1d84ad94 1849 r = proc_cmdline_parse(parse_proc_cmdline_item, NULL, PROC_CMDLINE_STRIP_RD_PREFIX);
614a823c 1850 if (r < 0)
044497e2 1851 log_warning_errno(r, "Failed to parse kernel command line, ignoring: %m");
912541b0 1852
78d3e041
KS
1853 if (arg_debug) {
1854 log_set_target(LOG_TARGET_CONSOLE);
bba7a484 1855 log_set_max_level(LOG_DEBUG);
78d3e041 1856 }
bba7a484 1857
fba868fa
LP
1858 r = must_be_root();
1859 if (r < 0)
0c5a109a 1860 return r;
912541b0 1861
712cebf1 1862 if (arg_children_max == 0) {
fe56acd8 1863 unsigned long cpu_limit, mem_limit, cpu_count = 1;
d457ff83 1864
fe56acd8
LP
1865 r = cpus_in_affinity_mask();
1866 if (r < 0)
1867 log_warning_errno(r, "Failed to determine number of local CPUs, ignoring: %m");
1868 else
1869 cpu_count = r;
88bd5a32
FB
1870
1871 cpu_limit = cpu_count * 2 + 16;
1872 mem_limit = MAX(physical_memory() / (128UL*1024*1024), 10U);
912541b0 1873
88bd5a32
FB
1874 arg_children_max = MIN(cpu_limit, mem_limit);
1875 arg_children_max = MIN(WORKER_NUM_MAX, arg_children_max);
e438c57a 1876
044497e2 1877 log_debug("Set children_max to %u", arg_children_max);
d457ff83 1878 }
912541b0 1879
712cebf1 1880 /* set umask before creating any file/directory */
712cebf1 1881 umask(022);
912541b0 1882
c3dacc8b 1883 r = mac_selinux_init();
0c5a109a 1884 if (r < 0)
a9ba0e32 1885 return r;
912541b0 1886
dae8b82e 1887 r = mkdir_errno_wrapper("/run/udev", 0755);
0c5a109a
ZJS
1888 if (r < 0 && r != -EEXIST)
1889 return log_error_errno(r, "Failed to create /run/udev: %m");
712cebf1 1890
31cbd202
YW
1891 if (getppid() == 1 && sd_booted() > 0) {
1892 /* Get our own cgroup, we regularly kill everything udev has left behind.
1893 * We only do this on systemd systems, and only if we are directly spawned
1894 * by PID1. Otherwise we are not guaranteed to have a dedicated cgroup. */
c26d1879 1895 r = cg_pid_get_path(SYSTEMD_CGROUP_CONTROLLER, 0, &cgroup);
11b9fb15 1896 if (r < 0) {
a2d61f07 1897 if (IN_SET(r, -ENOENT, -ENOMEDIUM))
044497e2 1898 log_debug_errno(r, "Dedicated cgroup not found: %m");
11b9fb15 1899 else
044497e2 1900 log_warning_errno(r, "Failed to get cgroup: %m");
11b9fb15 1901 }
c26d1879
TG
1902 }
1903
b7f74dd4 1904 r = listen_fds(&fd_ctrl, &fd_uevent);
0c5a109a
ZJS
1905 if (r < 0)
1906 return log_error_errno(r, "Failed to listen on fds: %m");
b7f74dd4 1907
b5af8c8c
ZJS
1908 r = manager_new(&manager, fd_ctrl, fd_uevent, cgroup);
1909 if (r < 0)
1910 return log_error_errno(r, "Failed to create manager: %m");
1911
bba7a484 1912 if (arg_daemonize) {
912541b0 1913 pid_t pid;
912541b0 1914
b5af8c8c 1915 log_info("Starting version " GIT_VERSION);
3cbb2057 1916
40e749b5 1917 /* connect /dev/null to stdin, stdout, stderr */
c76cf844
AK
1918 if (log_get_max_level() < LOG_DEBUG) {
1919 r = make_null_stdio();
1920 if (r < 0)
1921 log_warning_errno(r, "Failed to redirect standard streams to /dev/null: %m");
1922 }
1923
912541b0 1924 pid = fork();
0c5a109a
ZJS
1925 if (pid < 0)
1926 return log_error_errno(errno, "Failed to fork daemon: %m");
1927 if (pid > 0)
1928 /* parent */
1929 return 0;
912541b0 1930
0c5a109a 1931 /* child */
ece0fe12 1932 (void) setsid();
7500cd5e 1933 }
912541b0 1934
76e62a4d 1935 return main_loop(manager);
7fafc032 1936}