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usermodehelper: export call_usermodehelper_exec() and call_usermodehelper_setup()
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CommitLineData
1da177e4
LT
1/*
2 kmod, the new module loader (replaces kerneld)
3 Kirk Petersen
4
5 Reorganized not to be a daemon by Adam Richter, with guidance
6 from Greg Zornetzer.
7
8 Modified to avoid chroot and file sharing problems.
9 Mikael Pettersson
10
11 Limit the concurrent number of kmod modprobes to catch loops from
12 "modprobe needs a service that is in a module".
13 Keith Owens <kaos@ocs.com.au> December 1999
14
15 Unblock all signals when we exec a usermode process.
16 Shuu Yamaguchi <shuu@wondernetworkresources.com> December 2000
17
18 call_usermodehelper wait flag, and remove exec_usermodehelper.
19 Rusty Russell <rusty@rustcorp.com.au> Jan 2003
20*/
1da177e4
LT
21#include <linux/module.h>
22#include <linux/sched.h>
23#include <linux/syscalls.h>
24#include <linux/unistd.h>
25#include <linux/kmod.h>
1da177e4 26#include <linux/slab.h>
1da177e4 27#include <linux/completion.h>
17f60a7d 28#include <linux/cred.h>
1da177e4 29#include <linux/file.h>
9f3acc31 30#include <linux/fdtable.h>
1da177e4
LT
31#include <linux/workqueue.h>
32#include <linux/security.h>
33#include <linux/mount.h>
34#include <linux/kernel.h>
35#include <linux/init.h>
d025c9db 36#include <linux/resource.h>
8cdd4936
RW
37#include <linux/notifier.h>
38#include <linux/suspend.h>
b298d289 39#include <linux/rwsem.h>
a74fb73c 40#include <linux/ptrace.h>
0fdff3ec 41#include <linux/async.h>
1da177e4
LT
42#include <asm/uaccess.h>
43
7ead8b83
LZ
44#include <trace/events/module.h>
45
1da177e4
LT
46extern int max_threads;
47
48static struct workqueue_struct *khelper_wq;
49
0f20784d
TH
50/*
51 * kmod_thread_locker is used for deadlock avoidance. There is no explicit
52 * locking to protect this global - it is private to the singleton khelper
53 * thread and should only ever be modified by that thread.
54 */
55static const struct task_struct *kmod_thread_locker;
56
17f60a7d
EP
57#define CAP_BSET (void *)1
58#define CAP_PI (void *)2
59
60static kernel_cap_t usermodehelper_bset = CAP_FULL_SET;
61static kernel_cap_t usermodehelper_inheritable = CAP_FULL_SET;
62static DEFINE_SPINLOCK(umh_sysctl_lock);
b298d289 63static DECLARE_RWSEM(umhelper_sem);
17f60a7d 64
a1ef5adb 65#ifdef CONFIG_MODULES
1da177e4
LT
66
67/*
68 modprobe_path is set via /proc/sys.
69*/
70char modprobe_path[KMOD_PATH_LEN] = "/sbin/modprobe";
71
1cc684ab
ON
72static void free_modprobe_argv(struct subprocess_info *info)
73{
74 kfree(info->argv[3]); /* check call_modprobe() */
75 kfree(info->argv);
76}
77
3e63a93b
ON
78static int call_modprobe(char *module_name, int wait)
79{
80 static char *envp[] = {
81 "HOME=/",
82 "TERM=linux",
83 "PATH=/sbin:/usr/sbin:/bin:/usr/bin",
84 NULL
85 };
86
1cc684ab
ON
87 char **argv = kmalloc(sizeof(char *[5]), GFP_KERNEL);
88 if (!argv)
89 goto out;
90
91 module_name = kstrdup(module_name, GFP_KERNEL);
92 if (!module_name)
93 goto free_argv;
94
95 argv[0] = modprobe_path;
96 argv[1] = "-q";
97 argv[2] = "--";
98 argv[3] = module_name; /* check free_modprobe_argv() */
99 argv[4] = NULL;
3e63a93b
ON
100
101 return call_usermodehelper_fns(modprobe_path, argv, envp,
1cc684ab
ON
102 wait | UMH_KILLABLE, NULL, free_modprobe_argv, NULL);
103free_argv:
104 kfree(argv);
105out:
106 return -ENOMEM;
3e63a93b
ON
107}
108
1da177e4 109/**
acae0515
AV
110 * __request_module - try to load a kernel module
111 * @wait: wait (or not) for the operation to complete
bd4207c9
RD
112 * @fmt: printf style format string for the name of the module
113 * @...: arguments as specified in the format string
1da177e4
LT
114 *
115 * Load a module using the user mode module loader. The function returns
116 * zero on success or a negative errno code on failure. Note that a
117 * successful module load does not mean the module did not then unload
118 * and exit on an error of its own. Callers must check that the service
119 * they requested is now available not blindly invoke it.
120 *
121 * If module auto-loading support is disabled then this function
122 * becomes a no-operation.
123 */
acae0515 124int __request_module(bool wait, const char *fmt, ...)
1da177e4
LT
125{
126 va_list args;
127 char module_name[MODULE_NAME_LEN];
128 unsigned int max_modprobes;
129 int ret;
1da177e4
LT
130 static atomic_t kmod_concurrent = ATOMIC_INIT(0);
131#define MAX_KMOD_CONCURRENT 50 /* Completely arbitrary value - KAO */
132 static int kmod_loop_msg;
133
0fdff3ec
TH
134 /*
135 * We don't allow synchronous module loading from async. Module
136 * init may invoke async_synchronize_full() which will end up
137 * waiting for this task which already is waiting for the module
138 * loading to complete, leading to a deadlock.
139 */
140 WARN_ON_ONCE(wait && current_is_async());
141
1da177e4
LT
142 va_start(args, fmt);
143 ret = vsnprintf(module_name, MODULE_NAME_LEN, fmt, args);
144 va_end(args);
145 if (ret >= MODULE_NAME_LEN)
146 return -ENAMETOOLONG;
147
dd8dbf2e
EP
148 ret = security_kernel_module_request(module_name);
149 if (ret)
150 return ret;
151
1da177e4
LT
152 /* If modprobe needs a service that is in a module, we get a recursive
153 * loop. Limit the number of running kmod threads to max_threads/2 or
154 * MAX_KMOD_CONCURRENT, whichever is the smaller. A cleaner method
155 * would be to run the parents of this process, counting how many times
156 * kmod was invoked. That would mean accessing the internals of the
157 * process tables to get the command line, proc_pid_cmdline is static
158 * and it is not worth changing the proc code just to handle this case.
159 * KAO.
160 *
161 * "trace the ppid" is simple, but will fail if someone's
162 * parent exits. I think this is as good as it gets. --RR
163 */
164 max_modprobes = min(max_threads/2, MAX_KMOD_CONCURRENT);
165 atomic_inc(&kmod_concurrent);
166 if (atomic_read(&kmod_concurrent) > max_modprobes) {
167 /* We may be blaming an innocent here, but unlikely */
37252db6 168 if (kmod_loop_msg < 5) {
1da177e4
LT
169 printk(KERN_ERR
170 "request_module: runaway loop modprobe %s\n",
171 module_name);
37252db6
JK
172 kmod_loop_msg++;
173 }
1da177e4
LT
174 atomic_dec(&kmod_concurrent);
175 return -ENOMEM;
176 }
177
7ead8b83
LZ
178 trace_module_request(module_name, wait, _RET_IP_);
179
3e63a93b 180 ret = call_modprobe(module_name, wait ? UMH_WAIT_PROC : UMH_WAIT_EXEC);
a06a4dc3 181
1da177e4
LT
182 atomic_dec(&kmod_concurrent);
183 return ret;
184}
acae0515 185EXPORT_SYMBOL(__request_module);
118a9069 186#endif /* CONFIG_MODULES */
1da177e4 187
1da177e4
LT
188/*
189 * This is the task which runs the usermode application
190 */
191static int ____call_usermodehelper(void *data)
192{
193 struct subprocess_info *sub_info = data;
17f60a7d 194 struct cred *new;
1da177e4
LT
195 int retval;
196
1da177e4
LT
197 spin_lock_irq(&current->sighand->siglock);
198 flush_signal_handlers(current, 1);
1da177e4
LT
199 spin_unlock_irq(&current->sighand->siglock);
200
201 /* We can run anywhere, unlike our parent keventd(). */
1a2142af 202 set_cpus_allowed_ptr(current, cpu_all_mask);
1da177e4 203
b73a7e76
JE
204 /*
205 * Our parent is keventd, which runs with elevated scheduling priority.
206 * Avoid propagating that into the userspace child.
207 */
208 set_user_nice(current, 0);
209
17f60a7d
EP
210 retval = -ENOMEM;
211 new = prepare_kernel_cred(current);
212 if (!new)
213 goto fail;
214
215 spin_lock(&umh_sysctl_lock);
216 new->cap_bset = cap_intersect(usermodehelper_bset, new->cap_bset);
217 new->cap_inheritable = cap_intersect(usermodehelper_inheritable,
218 new->cap_inheritable);
219 spin_unlock(&umh_sysctl_lock);
220
87966996
DH
221 if (sub_info->init) {
222 retval = sub_info->init(sub_info, new);
223 if (retval) {
224 abort_creds(new);
225 goto fail;
226 }
227 }
228
17f60a7d
EP
229 commit_creds(new);
230
ae903caa
AV
231 retval = do_execve(sub_info->path,
232 (const char __user *const __user *)sub_info->argv,
233 (const char __user *const __user *)sub_info->envp);
a74fb73c
AV
234 if (!retval)
235 return 0;
1da177e4
LT
236
237 /* Exec failed? */
a06a4dc3 238fail:
1da177e4 239 sub_info->retval = retval;
fb45550d 240 do_exit(0);
1da177e4
LT
241}
242
0f20784d
TH
243static int call_helper(void *data)
244{
245 /* Worker thread started blocking khelper thread. */
246 kmod_thread_locker = current;
247 return ____call_usermodehelper(data);
248}
249
ae3cef73 250static void call_usermodehelper_freeinfo(struct subprocess_info *info)
0ab4dc92
JF
251{
252 if (info->cleanup)
a06a4dc3 253 (*info->cleanup)(info);
0ab4dc92
JF
254 kfree(info);
255}
0ab4dc92 256
b3449922
ON
257static void umh_complete(struct subprocess_info *sub_info)
258{
d0bd587a
ON
259 struct completion *comp = xchg(&sub_info->complete, NULL);
260 /*
261 * See call_usermodehelper_exec(). If xchg() returns NULL
262 * we own sub_info, the UMH_KILLABLE caller has gone away.
263 */
264 if (comp)
265 complete(comp);
266 else
267 call_usermodehelper_freeinfo(sub_info);
b3449922
ON
268}
269
1da177e4
LT
270/* Keventd can't block, but this (a child) can. */
271static int wait_for_helper(void *data)
272{
273 struct subprocess_info *sub_info = data;
274 pid_t pid;
1da177e4 275
7d642242
ON
276 /* If SIGCLD is ignored sys_wait4 won't populate the status. */
277 spin_lock_irq(&current->sighand->siglock);
278 current->sighand->action[SIGCHLD-1].sa.sa_handler = SIG_DFL;
279 spin_unlock_irq(&current->sighand->siglock);
1da177e4
LT
280
281 pid = kernel_thread(____call_usermodehelper, sub_info, SIGCHLD);
282 if (pid < 0) {
283 sub_info->retval = pid;
284 } else {
7d642242 285 int ret = -ECHILD;
1da177e4
LT
286 /*
287 * Normally it is bogus to call wait4() from in-kernel because
288 * wait4() wants to write the exit code to a userspace address.
289 * But wait_for_helper() always runs as keventd, and put_user()
290 * to a kernel address works OK for kernel threads, due to their
291 * having an mm_segment_t which spans the entire address space.
292 *
293 * Thus the __user pointer cast is valid here.
294 */
111dbe0c
BS
295 sys_wait4(pid, (int __user *)&ret, 0, NULL);
296
297 /*
298 * If ret is 0, either ____call_usermodehelper failed and the
299 * real error code is already in sub_info->retval or
300 * sub_info->retval is 0 anyway, so don't mess with it then.
301 */
302 if (ret)
303 sub_info->retval = ret;
1da177e4
LT
304 }
305
b3449922 306 umh_complete(sub_info);
fb45550d 307 do_exit(0);
1da177e4
LT
308}
309
310/* This is run by khelper thread */
65f27f38 311static void __call_usermodehelper(struct work_struct *work)
1da177e4 312{
65f27f38
DH
313 struct subprocess_info *sub_info =
314 container_of(work, struct subprocess_info, work);
9d944ef3 315 int wait = sub_info->wait & ~UMH_KILLABLE;
d47419cd 316 pid_t pid;
1da177e4
LT
317
318 /* CLONE_VFORK: wait until the usermode helper has execve'd
319 * successfully We need the data structures to stay around
320 * until that is done. */
d47419cd 321 if (wait == UMH_WAIT_PROC)
1da177e4
LT
322 pid = kernel_thread(wait_for_helper, sub_info,
323 CLONE_FS | CLONE_FILES | SIGCHLD);
0f20784d
TH
324 else {
325 pid = kernel_thread(call_helper, sub_info,
1da177e4 326 CLONE_VFORK | SIGCHLD);
0f20784d
TH
327 /* Worker thread stopped blocking khelper thread. */
328 kmod_thread_locker = NULL;
329 }
1da177e4 330
86313c48
JF
331 switch (wait) {
332 case UMH_NO_WAIT:
d47419cd 333 call_usermodehelper_freeinfo(sub_info);
86313c48 334 break;
a98f0dd3 335
86313c48
JF
336 case UMH_WAIT_PROC:
337 if (pid > 0)
338 break;
86313c48 339 /* FALLTHROUGH */
86313c48 340 case UMH_WAIT_EXEC:
04b1c384
ON
341 if (pid < 0)
342 sub_info->retval = pid;
b3449922 343 umh_complete(sub_info);
86313c48 344 }
1da177e4
LT
345}
346
ccd4b65a
RW
347/*
348 * If set, call_usermodehelper_exec() will exit immediately returning -EBUSY
349 * (used for preventing user land processes from being created after the user
350 * land has been frozen during a system-wide hibernation or suspend operation).
b298d289 351 * Should always be manipulated under umhelper_sem acquired for write.
ccd4b65a 352 */
247bc037 353static enum umh_disable_depth usermodehelper_disabled = UMH_DISABLED;
ccd4b65a
RW
354
355/* Number of helpers running */
356static atomic_t running_helpers = ATOMIC_INIT(0);
357
358/*
5307427a 359 * Wait queue head used by usermodehelper_disable() to wait for all running
ccd4b65a
RW
360 * helpers to finish.
361 */
362static DECLARE_WAIT_QUEUE_HEAD(running_helpers_waitq);
363
9b78c1da
RW
364/*
365 * Used by usermodehelper_read_lock_wait() to wait for usermodehelper_disabled
366 * to become 'false'.
367 */
368static DECLARE_WAIT_QUEUE_HEAD(usermodehelper_disabled_waitq);
369
ccd4b65a
RW
370/*
371 * Time to wait for running_helpers to become zero before the setting of
5307427a 372 * usermodehelper_disabled in usermodehelper_disable() fails
ccd4b65a
RW
373 */
374#define RUNNING_HELPERS_TIMEOUT (5 * HZ)
375
fe2e39d8 376int usermodehelper_read_trylock(void)
b298d289 377{
247bc037 378 DEFINE_WAIT(wait);
fe2e39d8
RW
379 int ret = 0;
380
b298d289 381 down_read(&umhelper_sem);
247bc037
RW
382 for (;;) {
383 prepare_to_wait(&usermodehelper_disabled_waitq, &wait,
384 TASK_INTERRUPTIBLE);
385 if (!usermodehelper_disabled)
386 break;
387
388 if (usermodehelper_disabled == UMH_DISABLED)
389 ret = -EAGAIN;
390
fe2e39d8 391 up_read(&umhelper_sem);
247bc037
RW
392
393 if (ret)
394 break;
395
396 schedule();
397 try_to_freeze();
398
399 down_read(&umhelper_sem);
fe2e39d8 400 }
247bc037 401 finish_wait(&usermodehelper_disabled_waitq, &wait);
fe2e39d8 402 return ret;
b298d289 403}
fe2e39d8 404EXPORT_SYMBOL_GPL(usermodehelper_read_trylock);
b298d289 405
9b78c1da
RW
406long usermodehelper_read_lock_wait(long timeout)
407{
408 DEFINE_WAIT(wait);
409
410 if (timeout < 0)
411 return -EINVAL;
412
413 down_read(&umhelper_sem);
414 for (;;) {
415 prepare_to_wait(&usermodehelper_disabled_waitq, &wait,
416 TASK_UNINTERRUPTIBLE);
417 if (!usermodehelper_disabled)
418 break;
419
420 up_read(&umhelper_sem);
421
422 timeout = schedule_timeout(timeout);
423 if (!timeout)
424 break;
425
426 down_read(&umhelper_sem);
427 }
428 finish_wait(&usermodehelper_disabled_waitq, &wait);
429 return timeout;
430}
431EXPORT_SYMBOL_GPL(usermodehelper_read_lock_wait);
432
fe2e39d8 433void usermodehelper_read_unlock(void)
b298d289
SB
434{
435 up_read(&umhelper_sem);
436}
fe2e39d8 437EXPORT_SYMBOL_GPL(usermodehelper_read_unlock);
b298d289 438
9b78c1da 439/**
247bc037 440 * __usermodehelper_set_disable_depth - Modify usermodehelper_disabled.
9b3c98cd 441 * @depth: New value to assign to usermodehelper_disabled.
247bc037
RW
442 *
443 * Change the value of usermodehelper_disabled (under umhelper_sem locked for
444 * writing) and wakeup tasks waiting for it to change.
9b78c1da 445 */
247bc037 446void __usermodehelper_set_disable_depth(enum umh_disable_depth depth)
9b78c1da
RW
447{
448 down_write(&umhelper_sem);
247bc037 449 usermodehelper_disabled = depth;
9b78c1da
RW
450 wake_up(&usermodehelper_disabled_waitq);
451 up_write(&umhelper_sem);
452}
453
1bfcf130 454/**
247bc037
RW
455 * __usermodehelper_disable - Prevent new helpers from being started.
456 * @depth: New value to assign to usermodehelper_disabled.
457 *
458 * Set usermodehelper_disabled to @depth and wait for running helpers to exit.
1bfcf130 459 */
247bc037 460int __usermodehelper_disable(enum umh_disable_depth depth)
8cdd4936 461{
ccd4b65a
RW
462 long retval;
463
247bc037
RW
464 if (!depth)
465 return -EINVAL;
466
b298d289 467 down_write(&umhelper_sem);
247bc037 468 usermodehelper_disabled = depth;
b298d289
SB
469 up_write(&umhelper_sem);
470
1bfcf130
RW
471 /*
472 * From now on call_usermodehelper_exec() won't start any new
473 * helpers, so it is sufficient if running_helpers turns out to
474 * be zero at one point (it may be increased later, but that
475 * doesn't matter).
476 */
477 retval = wait_event_timeout(running_helpers_waitq,
ccd4b65a
RW
478 atomic_read(&running_helpers) == 0,
479 RUNNING_HELPERS_TIMEOUT);
1bfcf130
RW
480 if (retval)
481 return 0;
8cdd4936 482
247bc037 483 __usermodehelper_set_disable_depth(UMH_ENABLED);
1bfcf130
RW
484 return -EAGAIN;
485}
486
ccd4b65a
RW
487static void helper_lock(void)
488{
489 atomic_inc(&running_helpers);
490 smp_mb__after_atomic_inc();
491}
492
493static void helper_unlock(void)
494{
495 if (atomic_dec_and_test(&running_helpers))
496 wake_up(&running_helpers_waitq);
497}
ccd4b65a 498
1da177e4 499/**
0ab4dc92 500 * call_usermodehelper_setup - prepare to call a usermode helper
61df47c8
RD
501 * @path: path to usermode executable
502 * @argv: arg vector for process
503 * @envp: environment for process
ac331d15 504 * @gfp_mask: gfp mask for memory allocation
938e4b22
LDM
505 * @cleanup: a cleanup function
506 * @init: an init function
507 * @data: arbitrary context sensitive data
0ab4dc92 508 *
61df47c8 509 * Returns either %NULL on allocation failure, or a subprocess_info
0ab4dc92
JF
510 * structure. This should be passed to call_usermodehelper_exec to
511 * exec the process and free the structure.
938e4b22
LDM
512 *
513 * The init function is used to customize the helper process prior to
514 * exec. A non-zero return code causes the process to error out, exit,
515 * and return the failure to the calling process
516 *
517 * The cleanup function is just before ethe subprocess_info is about to
518 * be freed. This can be used for freeing the argv and envp. The
519 * Function must be runnable in either a process context or the
520 * context in which call_usermodehelper_exec is called.
0ab4dc92 521 */
ac331d15 522struct subprocess_info *call_usermodehelper_setup(char *path, char **argv,
938e4b22
LDM
523 char **envp, gfp_t gfp_mask,
524 int (*init)(struct subprocess_info *info, struct cred *new),
525 void (*cleanup)(struct subprocess_info *info),
526 void *data)
0ab4dc92
JF
527{
528 struct subprocess_info *sub_info;
ac331d15 529 sub_info = kzalloc(sizeof(struct subprocess_info), gfp_mask);
0ab4dc92
JF
530 if (!sub_info)
531 goto out;
532
533 INIT_WORK(&sub_info->work, __call_usermodehelper);
534 sub_info->path = path;
535 sub_info->argv = argv;
536 sub_info->envp = envp;
938e4b22
LDM
537
538 sub_info->cleanup = cleanup;
539 sub_info->init = init;
540 sub_info->data = data;
0ab4dc92
JF
541 out:
542 return sub_info;
543}
938e4b22 544EXPORT_SYMBOL(call_usermodehelper_setup);
0ab4dc92 545
0ab4dc92
JF
546/**
547 * call_usermodehelper_exec - start a usermode application
548 * @sub_info: information about the subprocessa
1da177e4 549 * @wait: wait for the application to finish and return status.
a98f0dd3
AK
550 * when -1 don't wait at all, but you get no useful error back when
551 * the program couldn't be exec'ed. This makes it safe to call
552 * from interrupt context.
1da177e4
LT
553 *
554 * Runs a user-space application. The application is started
555 * asynchronously if wait is not set, and runs as a child of keventd.
556 * (ie. it runs with full root capabilities).
1da177e4 557 */
9d944ef3 558int call_usermodehelper_exec(struct subprocess_info *sub_info, int wait)
1da177e4 559{
60be6b9a 560 DECLARE_COMPLETION_ONSTACK(done);
78468033 561 int retval = 0;
1da177e4 562
ccd4b65a 563 helper_lock();
78468033 564 if (sub_info->path[0] == '\0')
0ab4dc92 565 goto out;
1da177e4 566
8cdd4936 567 if (!khelper_wq || usermodehelper_disabled) {
0ab4dc92
JF
568 retval = -EBUSY;
569 goto out;
570 }
0f20784d
TH
571 /*
572 * Worker thread must not wait for khelper thread at below
573 * wait_for_completion() if the thread was created with CLONE_VFORK
574 * flag, for khelper thread is already waiting for the thread at
575 * wait_for_completion() in do_fork().
576 */
577 if (wait != UMH_NO_WAIT && current == kmod_thread_locker) {
578 retval = -EBUSY;
579 goto out;
580 }
a98f0dd3 581
a98f0dd3 582 sub_info->complete = &done;
a98f0dd3
AK
583 sub_info->wait = wait;
584
585 queue_work(khelper_wq, &sub_info->work);
78468033
NC
586 if (wait == UMH_NO_WAIT) /* task has freed sub_info */
587 goto unlock;
d0bd587a
ON
588
589 if (wait & UMH_KILLABLE) {
590 retval = wait_for_completion_killable(&done);
591 if (!retval)
592 goto wait_done;
593
594 /* umh_complete() will see NULL and free sub_info */
595 if (xchg(&sub_info->complete, NULL))
596 goto unlock;
597 /* fallthrough, umh_complete() was already called */
598 }
599
1da177e4 600 wait_for_completion(&done);
d0bd587a 601wait_done:
a98f0dd3 602 retval = sub_info->retval;
78468033 603out:
0ab4dc92 604 call_usermodehelper_freeinfo(sub_info);
78468033 605unlock:
ccd4b65a 606 helper_unlock();
a98f0dd3 607 return retval;
1da177e4 608}
938e4b22 609EXPORT_SYMBOL(call_usermodehelper_exec);
785042f2 610
79c743dd
AM
611/*
612 * call_usermodehelper_fns() will not run the caller-provided cleanup function
613 * if a memory allocation failure is experienced. So the caller might need to
614 * check the call_usermodehelper_fns() return value: if it is -ENOMEM, perform
615 * the necessaary cleanup within the caller.
616 */
785042f2
BH
617int call_usermodehelper_fns(
618 char *path, char **argv, char **envp, int wait,
619 int (*init)(struct subprocess_info *info, struct cred *new),
620 void (*cleanup)(struct subprocess_info *), void *data)
621{
622 struct subprocess_info *info;
623 gfp_t gfp_mask = (wait == UMH_NO_WAIT) ? GFP_ATOMIC : GFP_KERNEL;
624
938e4b22
LDM
625 info = call_usermodehelper_setup(path, argv, envp, gfp_mask,
626 init, cleanup, data);
785042f2
BH
627
628 if (info == NULL)
629 return -ENOMEM;
630
785042f2
BH
631 return call_usermodehelper_exec(info, wait);
632}
633EXPORT_SYMBOL(call_usermodehelper_fns);
1da177e4 634
17f60a7d
EP
635static int proc_cap_handler(struct ctl_table *table, int write,
636 void __user *buffer, size_t *lenp, loff_t *ppos)
637{
638 struct ctl_table t;
639 unsigned long cap_array[_KERNEL_CAPABILITY_U32S];
640 kernel_cap_t new_cap;
641 int err, i;
642
643 if (write && (!capable(CAP_SETPCAP) ||
644 !capable(CAP_SYS_MODULE)))
645 return -EPERM;
646
647 /*
648 * convert from the global kernel_cap_t to the ulong array to print to
649 * userspace if this is a read.
650 */
651 spin_lock(&umh_sysctl_lock);
652 for (i = 0; i < _KERNEL_CAPABILITY_U32S; i++) {
653 if (table->data == CAP_BSET)
654 cap_array[i] = usermodehelper_bset.cap[i];
655 else if (table->data == CAP_PI)
656 cap_array[i] = usermodehelper_inheritable.cap[i];
657 else
658 BUG();
659 }
660 spin_unlock(&umh_sysctl_lock);
661
662 t = *table;
663 t.data = &cap_array;
664
665 /*
666 * actually read or write and array of ulongs from userspace. Remember
667 * these are least significant 32 bits first
668 */
669 err = proc_doulongvec_minmax(&t, write, buffer, lenp, ppos);
670 if (err < 0)
671 return err;
672
673 /*
674 * convert from the sysctl array of ulongs to the kernel_cap_t
675 * internal representation
676 */
677 for (i = 0; i < _KERNEL_CAPABILITY_U32S; i++)
678 new_cap.cap[i] = cap_array[i];
679
680 /*
681 * Drop everything not in the new_cap (but don't add things)
682 */
683 spin_lock(&umh_sysctl_lock);
684 if (write) {
685 if (table->data == CAP_BSET)
686 usermodehelper_bset = cap_intersect(usermodehelper_bset, new_cap);
687 if (table->data == CAP_PI)
688 usermodehelper_inheritable = cap_intersect(usermodehelper_inheritable, new_cap);
689 }
690 spin_unlock(&umh_sysctl_lock);
691
692 return 0;
693}
694
695struct ctl_table usermodehelper_table[] = {
696 {
697 .procname = "bset",
698 .data = CAP_BSET,
699 .maxlen = _KERNEL_CAPABILITY_U32S * sizeof(unsigned long),
700 .mode = 0600,
701 .proc_handler = proc_cap_handler,
702 },
703 {
704 .procname = "inheritable",
705 .data = CAP_PI,
706 .maxlen = _KERNEL_CAPABILITY_U32S * sizeof(unsigned long),
707 .mode = 0600,
708 .proc_handler = proc_cap_handler,
709 },
710 { }
711};
712
1da177e4
LT
713void __init usermodehelper_init(void)
714{
715 khelper_wq = create_singlethread_workqueue("khelper");
716 BUG_ON(!khelper_wq);
717}