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[mirror_ubuntu-zesty-kernel.git] / fs / proc / proc_sysctl.c
CommitLineData
77b14db5
EB
1/*
2 * /proc/sys support
3 */
1e0edd3f 4#include <linux/init.h>
77b14db5 5#include <linux/sysctl.h>
f1ecf068 6#include <linux/poll.h>
77b14db5 7#include <linux/proc_fs.h>
87ebdc00 8#include <linux/printk.h>
77b14db5 9#include <linux/security.h>
40401530 10#include <linux/sched.h>
34286d66 11#include <linux/namei.h>
40401530 12#include <linux/mm.h>
1f87f0b5 13#include <linux/module.h>
77b14db5
EB
14#include "internal.h"
15
d72f71eb 16static const struct dentry_operations proc_sys_dentry_operations;
77b14db5 17static const struct file_operations proc_sys_file_operations;
03a44825 18static const struct inode_operations proc_sys_inode_operations;
9043476f
AV
19static const struct file_operations proc_sys_dir_file_operations;
20static const struct inode_operations proc_sys_dir_operations;
77b14db5 21
f9bd6733
EB
22/* Support for permanently empty directories */
23
24struct ctl_table sysctl_mount_point[] = {
25 { }
26};
27
28static bool is_empty_dir(struct ctl_table_header *head)
29{
30 return head->ctl_table[0].child == sysctl_mount_point;
31}
32
33static void set_empty_dir(struct ctl_dir *dir)
34{
35 dir->header.ctl_table[0].child = sysctl_mount_point;
36}
37
38static void clear_empty_dir(struct ctl_dir *dir)
39
40{
41 dir->header.ctl_table[0].child = NULL;
42}
43
f1ecf068
LDM
44void proc_sys_poll_notify(struct ctl_table_poll *poll)
45{
46 if (!poll)
47 return;
48
49 atomic_inc(&poll->event);
50 wake_up_interruptible(&poll->wait);
51}
52
a194558e
EB
53static struct ctl_table root_table[] = {
54 {
55 .procname = "",
7ec66d06 56 .mode = S_IFDIR|S_IRUGO|S_IXUGO,
a194558e
EB
57 },
58 { }
59};
0e47c99d 60static struct ctl_table_root sysctl_table_root = {
0e47c99d 61 .default_set.dir.header = {
7ec66d06
EB
62 {{.count = 1,
63 .nreg = 1,
ac13ac6f 64 .ctl_table = root_table }},
0e47c99d 65 .ctl_table_arg = root_table,
7ec66d06
EB
66 .root = &sysctl_table_root,
67 .set = &sysctl_table_root.default_set,
68 },
1f87f0b5 69};
1f87f0b5
EB
70
71static DEFINE_SPINLOCK(sysctl_lock);
72
7ec66d06 73static void drop_sysctl_table(struct ctl_table_header *header);
0e47c99d 74static int sysctl_follow_link(struct ctl_table_header **phead,
13bcc6a2 75 struct ctl_table **pentry);
0e47c99d
EB
76static int insert_links(struct ctl_table_header *head);
77static void put_links(struct ctl_table_header *header);
7ec66d06 78
6980128f
EB
79static void sysctl_print_dir(struct ctl_dir *dir)
80{
81 if (dir->header.parent)
82 sysctl_print_dir(dir->header.parent);
87ebdc00 83 pr_cont("%s/", dir->header.ctl_table[0].procname);
6980128f
EB
84}
85
076c3eed
EB
86static int namecmp(const char *name1, int len1, const char *name2, int len2)
87{
88 int minlen;
89 int cmp;
90
91 minlen = len1;
92 if (minlen > len2)
93 minlen = len2;
94
95 cmp = memcmp(name1, name2, minlen);
96 if (cmp == 0)
97 cmp = len1 - len2;
98 return cmp;
99}
100
60f126d9 101/* Called under sysctl_lock */
076c3eed 102static struct ctl_table *find_entry(struct ctl_table_header **phead,
0e47c99d 103 struct ctl_dir *dir, const char *name, int namelen)
076c3eed
EB
104{
105 struct ctl_table_header *head;
106 struct ctl_table *entry;
ac13ac6f 107 struct rb_node *node = dir->root.rb_node;
076c3eed 108
ac13ac6f
EB
109 while (node)
110 {
111 struct ctl_node *ctl_node;
112 const char *procname;
113 int cmp;
114
115 ctl_node = rb_entry(node, struct ctl_node, node);
116 head = ctl_node->header;
117 entry = &head->ctl_table[ctl_node - head->node];
118 procname = entry->procname;
119
120 cmp = namecmp(name, namelen, procname, strlen(procname));
121 if (cmp < 0)
122 node = node->rb_left;
123 else if (cmp > 0)
124 node = node->rb_right;
125 else {
126 *phead = head;
127 return entry;
076c3eed
EB
128 }
129 }
130 return NULL;
131}
132
ac13ac6f
EB
133static int insert_entry(struct ctl_table_header *head, struct ctl_table *entry)
134{
135 struct rb_node *node = &head->node[entry - head->ctl_table].node;
136 struct rb_node **p = &head->parent->root.rb_node;
137 struct rb_node *parent = NULL;
138 const char *name = entry->procname;
139 int namelen = strlen(name);
140
141 while (*p) {
142 struct ctl_table_header *parent_head;
143 struct ctl_table *parent_entry;
144 struct ctl_node *parent_node;
145 const char *parent_name;
146 int cmp;
147
148 parent = *p;
149 parent_node = rb_entry(parent, struct ctl_node, node);
150 parent_head = parent_node->header;
151 parent_entry = &parent_head->ctl_table[parent_node - parent_head->node];
152 parent_name = parent_entry->procname;
153
154 cmp = namecmp(name, namelen, parent_name, strlen(parent_name));
155 if (cmp < 0)
156 p = &(*p)->rb_left;
157 else if (cmp > 0)
158 p = &(*p)->rb_right;
159 else {
87ebdc00 160 pr_err("sysctl duplicate entry: ");
ac13ac6f 161 sysctl_print_dir(head->parent);
87ebdc00 162 pr_cont("/%s\n", entry->procname);
ac13ac6f
EB
163 return -EEXIST;
164 }
165 }
166
167 rb_link_node(node, parent, p);
ea5272f5 168 rb_insert_color(node, &head->parent->root);
ac13ac6f
EB
169 return 0;
170}
171
172static void erase_entry(struct ctl_table_header *head, struct ctl_table *entry)
173{
174 struct rb_node *node = &head->node[entry - head->ctl_table].node;
175
176 rb_erase(node, &head->parent->root);
177}
178
e0d04529
EB
179static void init_header(struct ctl_table_header *head,
180 struct ctl_table_root *root, struct ctl_table_set *set,
ac13ac6f 181 struct ctl_node *node, struct ctl_table *table)
e0d04529 182{
7ec66d06 183 head->ctl_table = table;
e0d04529 184 head->ctl_table_arg = table;
e0d04529
EB
185 head->used = 0;
186 head->count = 1;
187 head->nreg = 1;
188 head->unregistering = NULL;
189 head->root = root;
190 head->set = set;
191 head->parent = NULL;
ac13ac6f
EB
192 head->node = node;
193 if (node) {
194 struct ctl_table *entry;
4c199a93 195 for (entry = table; entry->procname; entry++, node++)
ac13ac6f 196 node->header = head;
ac13ac6f 197 }
e0d04529
EB
198}
199
8425d6aa
EB
200static void erase_header(struct ctl_table_header *head)
201{
ac13ac6f
EB
202 struct ctl_table *entry;
203 for (entry = head->ctl_table; entry->procname; entry++)
204 erase_entry(head, entry);
8425d6aa
EB
205}
206
0e47c99d 207static int insert_header(struct ctl_dir *dir, struct ctl_table_header *header)
8425d6aa 208{
ac13ac6f 209 struct ctl_table *entry;
0e47c99d
EB
210 int err;
211
f9bd6733
EB
212 /* Is this a permanently empty directory? */
213 if (is_empty_dir(&dir->header))
214 return -EROFS;
215
216 /* Am I creating a permanently empty directory? */
217 if (header->ctl_table == sysctl_mount_point) {
218 if (!RB_EMPTY_ROOT(&dir->root))
219 return -EINVAL;
220 set_empty_dir(dir);
221 }
222
0e47c99d 223 dir->header.nreg++;
7ec66d06 224 header->parent = dir;
0e47c99d
EB
225 err = insert_links(header);
226 if (err)
227 goto fail_links;
ac13ac6f
EB
228 for (entry = header->ctl_table; entry->procname; entry++) {
229 err = insert_entry(header, entry);
230 if (err)
231 goto fail;
232 }
0e47c99d 233 return 0;
ac13ac6f
EB
234fail:
235 erase_header(header);
236 put_links(header);
0e47c99d 237fail_links:
f9bd6733
EB
238 if (header->ctl_table == sysctl_mount_point)
239 clear_empty_dir(dir);
0e47c99d
EB
240 header->parent = NULL;
241 drop_sysctl_table(&dir->header);
242 return err;
8425d6aa
EB
243}
244
1f87f0b5
EB
245/* called under sysctl_lock */
246static int use_table(struct ctl_table_header *p)
247{
248 if (unlikely(p->unregistering))
249 return 0;
250 p->used++;
251 return 1;
252}
253
254/* called under sysctl_lock */
255static void unuse_table(struct ctl_table_header *p)
256{
257 if (!--p->used)
258 if (unlikely(p->unregistering))
259 complete(p->unregistering);
260}
261
262/* called under sysctl_lock, will reacquire if has to wait */
263static void start_unregistering(struct ctl_table_header *p)
264{
265 /*
266 * if p->used is 0, nobody will ever touch that entry again;
267 * we'll eliminate all paths to it before dropping sysctl_lock
268 */
269 if (unlikely(p->used)) {
270 struct completion wait;
271 init_completion(&wait);
272 p->unregistering = &wait;
273 spin_unlock(&sysctl_lock);
274 wait_for_completion(&wait);
275 spin_lock(&sysctl_lock);
276 } else {
277 /* anything non-NULL; we'll never dereference it */
278 p->unregistering = ERR_PTR(-EINVAL);
279 }
280 /*
281 * do not remove from the list until nobody holds it; walking the
282 * list in do_sysctl() relies on that.
283 */
8425d6aa 284 erase_header(p);
1f87f0b5
EB
285}
286
287static void sysctl_head_get(struct ctl_table_header *head)
288{
289 spin_lock(&sysctl_lock);
290 head->count++;
291 spin_unlock(&sysctl_lock);
292}
293
294void sysctl_head_put(struct ctl_table_header *head)
295{
296 spin_lock(&sysctl_lock);
297 if (!--head->count)
298 kfree_rcu(head, rcu);
299 spin_unlock(&sysctl_lock);
300}
301
302static struct ctl_table_header *sysctl_head_grab(struct ctl_table_header *head)
303{
ab4a1f24 304 BUG_ON(!head);
1f87f0b5
EB
305 spin_lock(&sysctl_lock);
306 if (!use_table(head))
307 head = ERR_PTR(-ENOENT);
308 spin_unlock(&sysctl_lock);
309 return head;
310}
311
312static void sysctl_head_finish(struct ctl_table_header *head)
313{
314 if (!head)
315 return;
316 spin_lock(&sysctl_lock);
317 unuse_table(head);
318 spin_unlock(&sysctl_lock);
319}
320
321static struct ctl_table_set *
13bcc6a2 322lookup_header_set(struct ctl_table_root *root)
1f87f0b5
EB
323{
324 struct ctl_table_set *set = &root->default_set;
325 if (root->lookup)
13bcc6a2 326 set = root->lookup(root);
1f87f0b5
EB
327 return set;
328}
329
076c3eed 330static struct ctl_table *lookup_entry(struct ctl_table_header **phead,
7ec66d06 331 struct ctl_dir *dir,
076c3eed
EB
332 const char *name, int namelen)
333{
334 struct ctl_table_header *head;
335 struct ctl_table *entry;
076c3eed
EB
336
337 spin_lock(&sysctl_lock);
0e47c99d
EB
338 entry = find_entry(&head, dir, name, namelen);
339 if (entry && use_table(head))
340 *phead = head;
341 else
342 entry = NULL;
076c3eed
EB
343 spin_unlock(&sysctl_lock);
344 return entry;
345}
346
ac13ac6f 347static struct ctl_node *first_usable_entry(struct rb_node *node)
1f87f0b5 348{
ac13ac6f 349 struct ctl_node *ctl_node;
1f87f0b5 350
ac13ac6f
EB
351 for (;node; node = rb_next(node)) {
352 ctl_node = rb_entry(node, struct ctl_node, node);
353 if (use_table(ctl_node->header))
354 return ctl_node;
1f87f0b5 355 }
1f87f0b5
EB
356 return NULL;
357}
358
7ec66d06 359static void first_entry(struct ctl_dir *dir,
6a75ce16
EB
360 struct ctl_table_header **phead, struct ctl_table **pentry)
361{
ac13ac6f 362 struct ctl_table_header *head = NULL;
7ec66d06 363 struct ctl_table *entry = NULL;
ac13ac6f 364 struct ctl_node *ctl_node;
6a75ce16
EB
365
366 spin_lock(&sysctl_lock);
ac13ac6f 367 ctl_node = first_usable_entry(rb_first(&dir->root));
6a75ce16 368 spin_unlock(&sysctl_lock);
ac13ac6f
EB
369 if (ctl_node) {
370 head = ctl_node->header;
371 entry = &head->ctl_table[ctl_node - head->node];
372 }
6a75ce16
EB
373 *phead = head;
374 *pentry = entry;
375}
376
7ec66d06 377static void next_entry(struct ctl_table_header **phead, struct ctl_table **pentry)
1f87f0b5 378{
6a75ce16
EB
379 struct ctl_table_header *head = *phead;
380 struct ctl_table *entry = *pentry;
ac13ac6f 381 struct ctl_node *ctl_node = &head->node[entry - head->ctl_table];
6a75ce16 382
ac13ac6f
EB
383 spin_lock(&sysctl_lock);
384 unuse_table(head);
385
386 ctl_node = first_usable_entry(rb_next(&ctl_node->node));
387 spin_unlock(&sysctl_lock);
388 head = NULL;
389 if (ctl_node) {
390 head = ctl_node->header;
391 entry = &head->ctl_table[ctl_node - head->node];
6a75ce16
EB
392 }
393 *phead = head;
394 *pentry = entry;
1f87f0b5
EB
395}
396
397void register_sysctl_root(struct ctl_table_root *root)
398{
1f87f0b5
EB
399}
400
401/*
402 * sysctl_perm does NOT grant the superuser all rights automatically, because
403 * some sysctl variables are readonly even to root.
404 */
405
406static int test_perm(int mode, int op)
407{
091bd3ea 408 if (uid_eq(current_euid(), GLOBAL_ROOT_UID))
1f87f0b5 409 mode >>= 6;
091bd3ea 410 else if (in_egroup_p(GLOBAL_ROOT_GID))
1f87f0b5
EB
411 mode >>= 3;
412 if ((op & ~mode & (MAY_READ|MAY_WRITE|MAY_EXEC)) == 0)
413 return 0;
414 return -EACCES;
415}
416
73f7ef43 417static int sysctl_perm(struct ctl_table_header *head, struct ctl_table *table, int op)
1f87f0b5 418{
73f7ef43 419 struct ctl_table_root *root = head->root;
1f87f0b5
EB
420 int mode;
421
422 if (root->permissions)
73f7ef43 423 mode = root->permissions(head, table);
1f87f0b5
EB
424 else
425 mode = table->mode;
426
427 return test_perm(mode, op);
428}
429
9043476f
AV
430static struct inode *proc_sys_make_inode(struct super_block *sb,
431 struct ctl_table_header *head, struct ctl_table *table)
77b14db5 432{
e79c6a4f 433 struct ctl_table_root *root = head->root;
77b14db5 434 struct inode *inode;
9043476f 435 struct proc_inode *ei;
77b14db5 436
9043476f 437 inode = new_inode(sb);
77b14db5
EB
438 if (!inode)
439 goto out;
440
85fe4025
CH
441 inode->i_ino = get_next_ino();
442
9043476f 443 sysctl_head_get(head);
77b14db5 444 ei = PROC_I(inode);
9043476f
AV
445 ei->sysctl = head;
446 ei->sysctl_entry = table;
447
078cd827 448 inode->i_mtime = inode->i_atime = inode->i_ctime = current_time(inode);
9043476f 449 inode->i_mode = table->mode;
7ec66d06 450 if (!S_ISDIR(table->mode)) {
9043476f
AV
451 inode->i_mode |= S_IFREG;
452 inode->i_op = &proc_sys_inode_operations;
453 inode->i_fop = &proc_sys_file_operations;
454 } else {
455 inode->i_mode |= S_IFDIR;
9043476f
AV
456 inode->i_op = &proc_sys_dir_operations;
457 inode->i_fop = &proc_sys_dir_file_operations;
f9bd6733
EB
458 if (is_empty_dir(head))
459 make_empty_dir_inode(inode);
9043476f 460 }
e79c6a4f
DT
461
462 if (root->set_ownership)
463 root->set_ownership(head, table, &inode->i_uid, &inode->i_gid);
464
77b14db5
EB
465out:
466 return inode;
467}
468
81324364 469static struct ctl_table_header *grab_header(struct inode *inode)
77b14db5 470{
3cc3e046
EB
471 struct ctl_table_header *head = PROC_I(inode)->sysctl;
472 if (!head)
0e47c99d 473 head = &sysctl_table_root.default_set.dir.header;
3cc3e046 474 return sysctl_head_grab(head);
9043476f 475}
77b14db5 476
9043476f 477static struct dentry *proc_sys_lookup(struct inode *dir, struct dentry *dentry,
00cd8dd3 478 unsigned int flags)
9043476f
AV
479{
480 struct ctl_table_header *head = grab_header(dir);
9043476f 481 struct ctl_table_header *h = NULL;
dc12e909 482 const struct qstr *name = &dentry->d_name;
9043476f
AV
483 struct ctl_table *p;
484 struct inode *inode;
485 struct dentry *err = ERR_PTR(-ENOENT);
7ec66d06 486 struct ctl_dir *ctl_dir;
0e47c99d 487 int ret;
77b14db5 488
9043476f
AV
489 if (IS_ERR(head))
490 return ERR_CAST(head);
77b14db5 491
7ec66d06 492 ctl_dir = container_of(head, struct ctl_dir, header);
77b14db5 493
7ec66d06 494 p = lookup_entry(&h, ctl_dir, name->name, name->len);
9043476f 495 if (!p)
77b14db5
EB
496 goto out;
497
4e757320 498 if (S_ISLNK(p->mode)) {
13bcc6a2 499 ret = sysctl_follow_link(&h, &p);
4e757320
EB
500 err = ERR_PTR(ret);
501 if (ret)
502 goto out;
503 }
0e47c99d 504
77b14db5 505 err = ERR_PTR(-ENOMEM);
9043476f 506 inode = proc_sys_make_inode(dir->i_sb, h ? h : head, p);
77b14db5
EB
507 if (!inode)
508 goto out;
509
510 err = NULL;
fb045adb 511 d_set_d_op(dentry, &proc_sys_dentry_operations);
77b14db5
EB
512 d_add(dentry, inode);
513
514out:
6bf61045
FR
515 if (h)
516 sysctl_head_finish(h);
77b14db5
EB
517 sysctl_head_finish(head);
518 return err;
519}
520
7708bfb1
PE
521static ssize_t proc_sys_call_handler(struct file *filp, void __user *buf,
522 size_t count, loff_t *ppos, int write)
77b14db5 523{
496ad9aa 524 struct inode *inode = file_inode(filp);
9043476f
AV
525 struct ctl_table_header *head = grab_header(inode);
526 struct ctl_table *table = PROC_I(inode)->sysctl_entry;
2a2da53b
DH
527 ssize_t error;
528 size_t res;
77b14db5 529
9043476f
AV
530 if (IS_ERR(head))
531 return PTR_ERR(head);
77b14db5
EB
532
533 /*
534 * At this point we know that the sysctl was not unregistered
535 * and won't be until we finish.
536 */
537 error = -EPERM;
73f7ef43 538 if (sysctl_perm(head, table, write ? MAY_WRITE : MAY_READ))
77b14db5
EB
539 goto out;
540
9043476f
AV
541 /* if that can happen at all, it should be -EINVAL, not -EISDIR */
542 error = -EINVAL;
543 if (!table->proc_handler)
544 goto out;
545
77b14db5
EB
546 /* careful: calling conventions are nasty here */
547 res = count;
8d65af78 548 error = table->proc_handler(table, write, buf, &res, ppos);
77b14db5
EB
549 if (!error)
550 error = res;
551out:
552 sysctl_head_finish(head);
553
554 return error;
555}
556
7708bfb1 557static ssize_t proc_sys_read(struct file *filp, char __user *buf,
77b14db5
EB
558 size_t count, loff_t *ppos)
559{
7708bfb1
PE
560 return proc_sys_call_handler(filp, (void __user *)buf, count, ppos, 0);
561}
77b14db5 562
7708bfb1
PE
563static ssize_t proc_sys_write(struct file *filp, const char __user *buf,
564 size_t count, loff_t *ppos)
565{
566 return proc_sys_call_handler(filp, (void __user *)buf, count, ppos, 1);
77b14db5
EB
567}
568
f1ecf068
LDM
569static int proc_sys_open(struct inode *inode, struct file *filp)
570{
4e474a00 571 struct ctl_table_header *head = grab_header(inode);
f1ecf068
LDM
572 struct ctl_table *table = PROC_I(inode)->sysctl_entry;
573
4e474a00
LDM
574 /* sysctl was unregistered */
575 if (IS_ERR(head))
576 return PTR_ERR(head);
577
f1ecf068
LDM
578 if (table->poll)
579 filp->private_data = proc_sys_poll_event(table->poll);
580
4e474a00
LDM
581 sysctl_head_finish(head);
582
f1ecf068
LDM
583 return 0;
584}
585
586static unsigned int proc_sys_poll(struct file *filp, poll_table *wait)
587{
496ad9aa 588 struct inode *inode = file_inode(filp);
4e474a00 589 struct ctl_table_header *head = grab_header(inode);
f1ecf068 590 struct ctl_table *table = PROC_I(inode)->sysctl_entry;
f1ecf068 591 unsigned int ret = DEFAULT_POLLMASK;
4e474a00
LDM
592 unsigned long event;
593
594 /* sysctl was unregistered */
595 if (IS_ERR(head))
596 return POLLERR | POLLHUP;
f1ecf068
LDM
597
598 if (!table->proc_handler)
599 goto out;
600
601 if (!table->poll)
602 goto out;
603
4e474a00 604 event = (unsigned long)filp->private_data;
f1ecf068
LDM
605 poll_wait(filp, &table->poll->wait, wait);
606
607 if (event != atomic_read(&table->poll->event)) {
608 filp->private_data = proc_sys_poll_event(table->poll);
609 ret = POLLIN | POLLRDNORM | POLLERR | POLLPRI;
610 }
611
612out:
4e474a00
LDM
613 sysctl_head_finish(head);
614
f1ecf068
LDM
615 return ret;
616}
77b14db5 617
f0c3b509
AV
618static bool proc_sys_fill_cache(struct file *file,
619 struct dir_context *ctx,
9043476f
AV
620 struct ctl_table_header *head,
621 struct ctl_table *table)
77b14db5 622{
f0c3b509 623 struct dentry *child, *dir = file->f_path.dentry;
77b14db5
EB
624 struct inode *inode;
625 struct qstr qname;
626 ino_t ino = 0;
627 unsigned type = DT_UNKNOWN;
77b14db5
EB
628
629 qname.name = table->procname;
630 qname.len = strlen(table->procname);
8387ff25 631 qname.hash = full_name_hash(dir, qname.name, qname.len);
77b14db5 632
77b14db5
EB
633 child = d_lookup(dir, &qname);
634 if (!child) {
76aab3ab
AV
635 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(wq);
636 child = d_alloc_parallel(dir, &qname, &wq);
637 if (IS_ERR(child))
638 return false;
639 if (d_in_lookup(child)) {
9043476f
AV
640 inode = proc_sys_make_inode(dir->d_sb, head, table);
641 if (!inode) {
76aab3ab 642 d_lookup_done(child);
9043476f 643 dput(child);
f0c3b509 644 return false;
77b14db5 645 }
76aab3ab
AV
646 d_set_d_op(child, &proc_sys_dentry_operations);
647 d_add(child, inode);
77b14db5
EB
648 }
649 }
2b0143b5 650 inode = d_inode(child);
9043476f
AV
651 ino = inode->i_ino;
652 type = inode->i_mode >> 12;
77b14db5 653 dput(child);
f0c3b509 654 return dir_emit(ctx, qname.name, qname.len, ino, type);
9043476f
AV
655}
656
f0c3b509
AV
657static bool proc_sys_link_fill_cache(struct file *file,
658 struct dir_context *ctx,
0e47c99d
EB
659 struct ctl_table_header *head,
660 struct ctl_table *table)
661{
f0c3b509 662 bool ret = true;
0e47c99d
EB
663 head = sysctl_head_grab(head);
664
4e757320
EB
665 if (S_ISLNK(table->mode)) {
666 /* It is not an error if we can not follow the link ignore it */
13bcc6a2 667 int err = sysctl_follow_link(&head, &table);
4e757320
EB
668 if (err)
669 goto out;
670 }
0e47c99d 671
f0c3b509 672 ret = proc_sys_fill_cache(file, ctx, head, table);
0e47c99d
EB
673out:
674 sysctl_head_finish(head);
675 return ret;
676}
677
e5eea098 678static int scan(struct ctl_table_header *head, struct ctl_table *table,
9043476f 679 unsigned long *pos, struct file *file,
f0c3b509 680 struct dir_context *ctx)
9043476f 681{
f0c3b509 682 bool res;
9043476f 683
f0c3b509
AV
684 if ((*pos)++ < ctx->pos)
685 return true;
9043476f 686
0e47c99d 687 if (unlikely(S_ISLNK(table->mode)))
f0c3b509 688 res = proc_sys_link_fill_cache(file, ctx, head, table);
0e47c99d 689 else
f0c3b509 690 res = proc_sys_fill_cache(file, ctx, head, table);
9043476f 691
f0c3b509
AV
692 if (res)
693 ctx->pos = *pos;
9043476f 694
6a75ce16 695 return res;
77b14db5
EB
696}
697
f0c3b509 698static int proc_sys_readdir(struct file *file, struct dir_context *ctx)
77b14db5 699{
f0c3b509 700 struct ctl_table_header *head = grab_header(file_inode(file));
9043476f 701 struct ctl_table_header *h = NULL;
6a75ce16 702 struct ctl_table *entry;
7ec66d06 703 struct ctl_dir *ctl_dir;
77b14db5 704 unsigned long pos;
9043476f
AV
705
706 if (IS_ERR(head))
707 return PTR_ERR(head);
77b14db5 708
7ec66d06 709 ctl_dir = container_of(head, struct ctl_dir, header);
77b14db5 710
f0c3b509 711 if (!dir_emit_dots(file, ctx))
93362fa4 712 goto out;
f0c3b509 713
77b14db5
EB
714 pos = 2;
715
7ec66d06 716 for (first_entry(ctl_dir, &h, &entry); h; next_entry(&h, &entry)) {
f0c3b509 717 if (!scan(h, entry, &pos, file, ctx)) {
9043476f
AV
718 sysctl_head_finish(h);
719 break;
77b14db5
EB
720 }
721 }
93362fa4 722out:
77b14db5 723 sysctl_head_finish(head);
f0c3b509 724 return 0;
77b14db5
EB
725}
726
10556cb2 727static int proc_sys_permission(struct inode *inode, int mask)
77b14db5
EB
728{
729 /*
730 * sysctl entries that are not writeable,
731 * are _NOT_ writeable, capabilities or not.
732 */
f696a365
MS
733 struct ctl_table_header *head;
734 struct ctl_table *table;
77b14db5
EB
735 int error;
736
f696a365
MS
737 /* Executable files are not allowed under /proc/sys/ */
738 if ((mask & MAY_EXEC) && S_ISREG(inode->i_mode))
739 return -EACCES;
740
741 head = grab_header(inode);
9043476f
AV
742 if (IS_ERR(head))
743 return PTR_ERR(head);
77b14db5 744
f696a365 745 table = PROC_I(inode)->sysctl_entry;
9043476f
AV
746 if (!table) /* global root - r-xr-xr-x */
747 error = mask & MAY_WRITE ? -EACCES : 0;
748 else /* Use the permissions on the sysctl table entry */
73f7ef43 749 error = sysctl_perm(head, table, mask & ~MAY_NOT_BLOCK);
77b14db5 750
77b14db5
EB
751 sysctl_head_finish(head);
752 return error;
753}
754
755static int proc_sys_setattr(struct dentry *dentry, struct iattr *attr)
756{
2b0143b5 757 struct inode *inode = d_inode(dentry);
a6071d80 758 struct user_namespace *s_user_ns;
77b14db5
EB
759 int error;
760
761 if (attr->ia_valid & (ATTR_MODE | ATTR_UID | ATTR_GID))
762 return -EPERM;
763
a6071d80
EB
764 /* Don't let anyone mess with weird proc files */
765 s_user_ns = inode->i_sb->s_user_ns;
766 if (!kuid_has_mapping(s_user_ns, inode->i_uid) ||
767 !kgid_has_mapping(s_user_ns, inode->i_gid))
768 return -EPERM;
769
31051c85 770 error = setattr_prepare(dentry, attr);
1025774c
CH
771 if (error)
772 return error;
773
1025774c
CH
774 setattr_copy(inode, attr);
775 mark_inode_dirty(inode);
776 return 0;
77b14db5
EB
777}
778
9043476f
AV
779static int proc_sys_getattr(struct vfsmount *mnt, struct dentry *dentry, struct kstat *stat)
780{
2b0143b5 781 struct inode *inode = d_inode(dentry);
9043476f
AV
782 struct ctl_table_header *head = grab_header(inode);
783 struct ctl_table *table = PROC_I(inode)->sysctl_entry;
784
785 if (IS_ERR(head))
786 return PTR_ERR(head);
787
788 generic_fillattr(inode, stat);
789 if (table)
790 stat->mode = (stat->mode & S_IFMT) | table->mode;
791
792 sysctl_head_finish(head);
793 return 0;
794}
795
77b14db5 796static const struct file_operations proc_sys_file_operations = {
f1ecf068
LDM
797 .open = proc_sys_open,
798 .poll = proc_sys_poll,
77b14db5
EB
799 .read = proc_sys_read,
800 .write = proc_sys_write,
6038f373 801 .llseek = default_llseek,
9043476f
AV
802};
803
804static const struct file_operations proc_sys_dir_file_operations = {
887df078 805 .read = generic_read_dir,
f50752ea 806 .iterate_shared = proc_sys_readdir,
3222a3e5 807 .llseek = generic_file_llseek,
77b14db5
EB
808};
809
03a44825 810static const struct inode_operations proc_sys_inode_operations = {
9043476f
AV
811 .permission = proc_sys_permission,
812 .setattr = proc_sys_setattr,
813 .getattr = proc_sys_getattr,
814};
815
816static const struct inode_operations proc_sys_dir_operations = {
77b14db5
EB
817 .lookup = proc_sys_lookup,
818 .permission = proc_sys_permission,
819 .setattr = proc_sys_setattr,
9043476f 820 .getattr = proc_sys_getattr,
77b14db5
EB
821};
822
0b728e19 823static int proc_sys_revalidate(struct dentry *dentry, unsigned int flags)
77b14db5 824{
0b728e19 825 if (flags & LOOKUP_RCU)
34286d66 826 return -ECHILD;
2b0143b5 827 return !PROC_I(d_inode(dentry))->sysctl->unregistering;
9043476f
AV
828}
829
fe15ce44 830static int proc_sys_delete(const struct dentry *dentry)
9043476f 831{
2b0143b5 832 return !!PROC_I(d_inode(dentry))->sysctl->unregistering;
9043476f
AV
833}
834
1f87f0b5
EB
835static int sysctl_is_seen(struct ctl_table_header *p)
836{
837 struct ctl_table_set *set = p->set;
838 int res;
839 spin_lock(&sysctl_lock);
840 if (p->unregistering)
841 res = 0;
842 else if (!set->is_seen)
843 res = 1;
844 else
845 res = set->is_seen(set);
846 spin_unlock(&sysctl_lock);
847 return res;
848}
849
6fa67e70 850static int proc_sys_compare(const struct dentry *dentry,
621e155a 851 unsigned int len, const char *str, const struct qstr *name)
9043476f 852{
dfef6dcd 853 struct ctl_table_header *head;
da53be12
LT
854 struct inode *inode;
855
31e6b01f
NP
856 /* Although proc doesn't have negative dentries, rcu-walk means
857 * that inode here can be NULL */
dfef6dcd 858 /* AV: can it, indeed? */
2b0143b5 859 inode = d_inode_rcu(dentry);
31e6b01f 860 if (!inode)
dfef6dcd 861 return 1;
621e155a 862 if (name->len != len)
9043476f 863 return 1;
621e155a 864 if (memcmp(name->name, str, len))
9043476f 865 return 1;
dfef6dcd
AV
866 head = rcu_dereference(PROC_I(inode)->sysctl);
867 return !head || !sysctl_is_seen(head);
77b14db5
EB
868}
869
d72f71eb 870static const struct dentry_operations proc_sys_dentry_operations = {
77b14db5 871 .d_revalidate = proc_sys_revalidate,
9043476f
AV
872 .d_delete = proc_sys_delete,
873 .d_compare = proc_sys_compare,
77b14db5
EB
874};
875
0e47c99d
EB
876static struct ctl_dir *find_subdir(struct ctl_dir *dir,
877 const char *name, int namelen)
1f87f0b5 878{
7ec66d06
EB
879 struct ctl_table_header *head;
880 struct ctl_table *entry;
1f87f0b5 881
0e47c99d 882 entry = find_entry(&head, dir, name, namelen);
7ec66d06
EB
883 if (!entry)
884 return ERR_PTR(-ENOENT);
51f72f4a
EB
885 if (!S_ISDIR(entry->mode))
886 return ERR_PTR(-ENOTDIR);
887 return container_of(head, struct ctl_dir, header);
7ec66d06
EB
888}
889
890static struct ctl_dir *new_dir(struct ctl_table_set *set,
0e47c99d 891 const char *name, int namelen)
7ec66d06
EB
892{
893 struct ctl_table *table;
894 struct ctl_dir *new;
ac13ac6f 895 struct ctl_node *node;
7ec66d06 896 char *new_name;
1f87f0b5 897
ac13ac6f
EB
898 new = kzalloc(sizeof(*new) + sizeof(struct ctl_node) +
899 sizeof(struct ctl_table)*2 + namelen + 1,
900 GFP_KERNEL);
7ec66d06 901 if (!new)
1f87f0b5
EB
902 return NULL;
903
ac13ac6f
EB
904 node = (struct ctl_node *)(new + 1);
905 table = (struct ctl_table *)(node + 1);
7ec66d06
EB
906 new_name = (char *)(table + 2);
907 memcpy(new_name, name, namelen);
908 new_name[namelen] = '\0';
909 table[0].procname = new_name;
910 table[0].mode = S_IFDIR|S_IRUGO|S_IXUGO;
ac13ac6f 911 init_header(&new->header, set->dir.header.root, set, node, table);
7ec66d06
EB
912
913 return new;
1f87f0b5
EB
914}
915
60f126d9
EB
916/**
917 * get_subdir - find or create a subdir with the specified name.
918 * @dir: Directory to create the subdirectory in
919 * @name: The name of the subdirectory to find or create
920 * @namelen: The length of name
921 *
922 * Takes a directory with an elevated reference count so we know that
923 * if we drop the lock the directory will not go away. Upon success
924 * the reference is moved from @dir to the returned subdirectory.
925 * Upon error an error code is returned and the reference on @dir is
926 * simply dropped.
927 */
0e47c99d
EB
928static struct ctl_dir *get_subdir(struct ctl_dir *dir,
929 const char *name, int namelen)
1f87f0b5 930{
0e47c99d 931 struct ctl_table_set *set = dir->header.set;
7ec66d06 932 struct ctl_dir *subdir, *new = NULL;
0eb97f38 933 int err;
1f87f0b5 934
7ec66d06 935 spin_lock(&sysctl_lock);
0e47c99d 936 subdir = find_subdir(dir, name, namelen);
7ec66d06
EB
937 if (!IS_ERR(subdir))
938 goto found;
939 if (PTR_ERR(subdir) != -ENOENT)
940 goto failed;
941
942 spin_unlock(&sysctl_lock);
943 new = new_dir(set, name, namelen);
944 spin_lock(&sysctl_lock);
945 subdir = ERR_PTR(-ENOMEM);
946 if (!new)
947 goto failed;
948
60f126d9 949 /* Was the subdir added while we dropped the lock? */
0e47c99d 950 subdir = find_subdir(dir, name, namelen);
7ec66d06
EB
951 if (!IS_ERR(subdir))
952 goto found;
953 if (PTR_ERR(subdir) != -ENOENT)
954 goto failed;
955
60f126d9 956 /* Nope. Use the our freshly made directory entry. */
0eb97f38
EB
957 err = insert_header(dir, &new->header);
958 subdir = ERR_PTR(err);
959 if (err)
0e47c99d 960 goto failed;
7ec66d06
EB
961 subdir = new;
962found:
963 subdir->header.nreg++;
964failed:
a1c83681 965 if (IS_ERR(subdir)) {
87ebdc00 966 pr_err("sysctl could not get directory: ");
6980128f 967 sysctl_print_dir(dir);
87ebdc00 968 pr_cont("/%*.*s %ld\n",
7ec66d06 969 namelen, namelen, name, PTR_ERR(subdir));
1f87f0b5 970 }
7ec66d06
EB
971 drop_sysctl_table(&dir->header);
972 if (new)
973 drop_sysctl_table(&new->header);
974 spin_unlock(&sysctl_lock);
975 return subdir;
1f87f0b5
EB
976}
977
0e47c99d
EB
978static struct ctl_dir *xlate_dir(struct ctl_table_set *set, struct ctl_dir *dir)
979{
980 struct ctl_dir *parent;
981 const char *procname;
982 if (!dir->header.parent)
983 return &set->dir;
984 parent = xlate_dir(set, dir->header.parent);
985 if (IS_ERR(parent))
986 return parent;
987 procname = dir->header.ctl_table[0].procname;
988 return find_subdir(parent, procname, strlen(procname));
989}
990
991static int sysctl_follow_link(struct ctl_table_header **phead,
13bcc6a2 992 struct ctl_table **pentry)
0e47c99d
EB
993{
994 struct ctl_table_header *head;
995 struct ctl_table_root *root;
996 struct ctl_table_set *set;
997 struct ctl_table *entry;
998 struct ctl_dir *dir;
999 int ret;
1000
0e47c99d
EB
1001 ret = 0;
1002 spin_lock(&sysctl_lock);
1003 root = (*pentry)->data;
13bcc6a2 1004 set = lookup_header_set(root);
0e47c99d
EB
1005 dir = xlate_dir(set, (*phead)->parent);
1006 if (IS_ERR(dir))
1007 ret = PTR_ERR(dir);
1008 else {
1009 const char *procname = (*pentry)->procname;
1010 head = NULL;
1011 entry = find_entry(&head, dir, procname, strlen(procname));
1012 ret = -ENOENT;
1013 if (entry && use_table(head)) {
1014 unuse_table(*phead);
1015 *phead = head;
1016 *pentry = entry;
1017 ret = 0;
1018 }
1019 }
1020
1021 spin_unlock(&sysctl_lock);
1022 return ret;
1023}
1024
7c60c48f 1025static int sysctl_err(const char *path, struct ctl_table *table, char *fmt, ...)
1f87f0b5 1026{
7c60c48f
EB
1027 struct va_format vaf;
1028 va_list args;
1f87f0b5 1029
7c60c48f
EB
1030 va_start(args, fmt);
1031 vaf.fmt = fmt;
1032 vaf.va = &args;
1033
87ebdc00
AM
1034 pr_err("sysctl table check failed: %s/%s %pV\n",
1035 path, table->procname, &vaf);
1f87f0b5 1036
7c60c48f
EB
1037 va_end(args);
1038 return -EINVAL;
1f87f0b5
EB
1039}
1040
7c60c48f 1041static int sysctl_check_table(const char *path, struct ctl_table *table)
1f87f0b5 1042{
7c60c48f 1043 int err = 0;
1f87f0b5 1044 for (; table->procname; table++) {
1f87f0b5 1045 if (table->child)
7c60c48f
EB
1046 err = sysctl_err(path, table, "Not a file");
1047
1048 if ((table->proc_handler == proc_dostring) ||
1049 (table->proc_handler == proc_dointvec) ||
1050 (table->proc_handler == proc_dointvec_minmax) ||
1051 (table->proc_handler == proc_dointvec_jiffies) ||
1052 (table->proc_handler == proc_dointvec_userhz_jiffies) ||
1053 (table->proc_handler == proc_dointvec_ms_jiffies) ||
1054 (table->proc_handler == proc_doulongvec_minmax) ||
1055 (table->proc_handler == proc_doulongvec_ms_jiffies_minmax)) {
1056 if (!table->data)
1057 err = sysctl_err(path, table, "No data");
1058 if (!table->maxlen)
1059 err = sysctl_err(path, table, "No maxlen");
1060 }
1061 if (!table->proc_handler)
1062 err = sysctl_err(path, table, "No proc_handler");
1063
1064 if ((table->mode & (S_IRUGO|S_IWUGO)) != table->mode)
1065 err = sysctl_err(path, table, "bogus .mode 0%o",
1066 table->mode);
1f87f0b5 1067 }
7c60c48f 1068 return err;
1f87f0b5 1069}
1f87f0b5 1070
0e47c99d
EB
1071static struct ctl_table_header *new_links(struct ctl_dir *dir, struct ctl_table *table,
1072 struct ctl_table_root *link_root)
1073{
1074 struct ctl_table *link_table, *entry, *link;
1075 struct ctl_table_header *links;
ac13ac6f 1076 struct ctl_node *node;
0e47c99d
EB
1077 char *link_name;
1078 int nr_entries, name_bytes;
1079
1080 name_bytes = 0;
1081 nr_entries = 0;
1082 for (entry = table; entry->procname; entry++) {
1083 nr_entries++;
1084 name_bytes += strlen(entry->procname) + 1;
1085 }
1086
1087 links = kzalloc(sizeof(struct ctl_table_header) +
ac13ac6f 1088 sizeof(struct ctl_node)*nr_entries +
0e47c99d
EB
1089 sizeof(struct ctl_table)*(nr_entries + 1) +
1090 name_bytes,
1091 GFP_KERNEL);
1092
1093 if (!links)
1094 return NULL;
1095
ac13ac6f
EB
1096 node = (struct ctl_node *)(links + 1);
1097 link_table = (struct ctl_table *)(node + nr_entries);
0e47c99d
EB
1098 link_name = (char *)&link_table[nr_entries + 1];
1099
1100 for (link = link_table, entry = table; entry->procname; link++, entry++) {
1101 int len = strlen(entry->procname) + 1;
1102 memcpy(link_name, entry->procname, len);
1103 link->procname = link_name;
1104 link->mode = S_IFLNK|S_IRWXUGO;
1105 link->data = link_root;
1106 link_name += len;
1107 }
ac13ac6f 1108 init_header(links, dir->header.root, dir->header.set, node, link_table);
0e47c99d
EB
1109 links->nreg = nr_entries;
1110
1111 return links;
1112}
1113
1114static bool get_links(struct ctl_dir *dir,
1115 struct ctl_table *table, struct ctl_table_root *link_root)
1116{
1117 struct ctl_table_header *head;
1118 struct ctl_table *entry, *link;
1119
1120 /* Are there links available for every entry in table? */
1121 for (entry = table; entry->procname; entry++) {
1122 const char *procname = entry->procname;
1123 link = find_entry(&head, dir, procname, strlen(procname));
1124 if (!link)
1125 return false;
1126 if (S_ISDIR(link->mode) && S_ISDIR(entry->mode))
1127 continue;
1128 if (S_ISLNK(link->mode) && (link->data == link_root))
1129 continue;
1130 return false;
1131 }
1132
1133 /* The checks passed. Increase the registration count on the links */
1134 for (entry = table; entry->procname; entry++) {
1135 const char *procname = entry->procname;
1136 link = find_entry(&head, dir, procname, strlen(procname));
1137 head->nreg++;
1138 }
1139 return true;
1140}
1141
1142static int insert_links(struct ctl_table_header *head)
1143{
1144 struct ctl_table_set *root_set = &sysctl_table_root.default_set;
1145 struct ctl_dir *core_parent = NULL;
1146 struct ctl_table_header *links;
1147 int err;
1148
1149 if (head->set == root_set)
1150 return 0;
1151
1152 core_parent = xlate_dir(root_set, head->parent);
1153 if (IS_ERR(core_parent))
1154 return 0;
1155
1156 if (get_links(core_parent, head->ctl_table, head->root))
1157 return 0;
1158
1159 core_parent->header.nreg++;
1160 spin_unlock(&sysctl_lock);
1161
1162 links = new_links(core_parent, head->ctl_table, head->root);
1163
1164 spin_lock(&sysctl_lock);
1165 err = -ENOMEM;
1166 if (!links)
1167 goto out;
1168
1169 err = 0;
1170 if (get_links(core_parent, head->ctl_table, head->root)) {
1171 kfree(links);
1172 goto out;
1173 }
1174
1175 err = insert_header(core_parent, links);
1176 if (err)
1177 kfree(links);
1178out:
1179 drop_sysctl_table(&core_parent->header);
1180 return err;
1181}
1182
1f87f0b5 1183/**
f728019b 1184 * __register_sysctl_table - register a leaf sysctl table
60a47a2e 1185 * @set: Sysctl tree to register on
1f87f0b5
EB
1186 * @path: The path to the directory the sysctl table is in.
1187 * @table: the top-level table structure
1188 *
1189 * Register a sysctl table hierarchy. @table should be a filled in ctl_table
1190 * array. A completely 0 filled entry terminates the table.
1191 *
1192 * The members of the &struct ctl_table structure are used as follows:
1193 *
1194 * procname - the name of the sysctl file under /proc/sys. Set to %NULL to not
1195 * enter a sysctl file
1196 *
1197 * data - a pointer to data for use by proc_handler
1198 *
1199 * maxlen - the maximum size in bytes of the data
1200 *
f728019b 1201 * mode - the file permissions for the /proc/sys file
1f87f0b5 1202 *
f728019b 1203 * child - must be %NULL.
1f87f0b5
EB
1204 *
1205 * proc_handler - the text handler routine (described below)
1206 *
1f87f0b5
EB
1207 * extra1, extra2 - extra pointers usable by the proc handler routines
1208 *
1209 * Leaf nodes in the sysctl tree will be represented by a single file
1210 * under /proc; non-leaf nodes will be represented by directories.
1211 *
f728019b
EB
1212 * There must be a proc_handler routine for any terminal nodes.
1213 * Several default handlers are available to cover common cases -
1f87f0b5
EB
1214 *
1215 * proc_dostring(), proc_dointvec(), proc_dointvec_jiffies(),
1216 * proc_dointvec_userhz_jiffies(), proc_dointvec_minmax(),
1217 * proc_doulongvec_ms_jiffies_minmax(), proc_doulongvec_minmax()
1218 *
1219 * It is the handler's job to read the input buffer from user memory
1220 * and process it. The handler should return 0 on success.
1221 *
1222 * This routine returns %NULL on a failure to register, and a pointer
1223 * to the table header on success.
1224 */
6e9d5164 1225struct ctl_table_header *__register_sysctl_table(
60a47a2e 1226 struct ctl_table_set *set,
6e9d5164 1227 const char *path, struct ctl_table *table)
1f87f0b5 1228{
60a47a2e 1229 struct ctl_table_root *root = set->dir.header.root;
1f87f0b5 1230 struct ctl_table_header *header;
6e9d5164 1231 const char *name, *nextname;
7ec66d06 1232 struct ctl_dir *dir;
ac13ac6f
EB
1233 struct ctl_table *entry;
1234 struct ctl_node *node;
1235 int nr_entries = 0;
1236
1237 for (entry = table; entry->procname; entry++)
1238 nr_entries++;
1f87f0b5 1239
ac13ac6f
EB
1240 header = kzalloc(sizeof(struct ctl_table_header) +
1241 sizeof(struct ctl_node)*nr_entries, GFP_KERNEL);
1f87f0b5
EB
1242 if (!header)
1243 return NULL;
1244
ac13ac6f
EB
1245 node = (struct ctl_node *)(header + 1);
1246 init_header(header, root, set, node, table);
7ec66d06
EB
1247 if (sysctl_check_table(path, table))
1248 goto fail;
1249
1250 spin_lock(&sysctl_lock);
0e47c99d 1251 dir = &set->dir;
60f126d9 1252 /* Reference moved down the diretory tree get_subdir */
7ec66d06
EB
1253 dir->header.nreg++;
1254 spin_unlock(&sysctl_lock);
1f87f0b5 1255
7ec66d06 1256 /* Find the directory for the ctl_table */
6e9d5164
EB
1257 for (name = path; name; name = nextname) {
1258 int namelen;
1259 nextname = strchr(name, '/');
1260 if (nextname) {
1261 namelen = nextname - name;
1262 nextname++;
1263 } else {
1264 namelen = strlen(name);
1265 }
1266 if (namelen == 0)
1267 continue;
1f87f0b5 1268
0e47c99d 1269 dir = get_subdir(dir, name, namelen);
7ec66d06
EB
1270 if (IS_ERR(dir))
1271 goto fail;
1f87f0b5 1272 }
0e47c99d 1273
1f87f0b5 1274 spin_lock(&sysctl_lock);
0e47c99d 1275 if (insert_header(dir, header))
7ec66d06 1276 goto fail_put_dir_locked;
0e47c99d 1277
7ec66d06 1278 drop_sysctl_table(&dir->header);
1f87f0b5
EB
1279 spin_unlock(&sysctl_lock);
1280
1281 return header;
0e47c99d 1282
7ec66d06
EB
1283fail_put_dir_locked:
1284 drop_sysctl_table(&dir->header);
7c60c48f
EB
1285 spin_unlock(&sysctl_lock);
1286fail:
1287 kfree(header);
1288 dump_stack();
1289 return NULL;
1f87f0b5
EB
1290}
1291
fea478d4
EB
1292/**
1293 * register_sysctl - register a sysctl table
1294 * @path: The path to the directory the sysctl table is in.
1295 * @table: the table structure
1296 *
1297 * Register a sysctl table. @table should be a filled in ctl_table
1298 * array. A completely 0 filled entry terminates the table.
1299 *
1300 * See __register_sysctl_table for more details.
1301 */
1302struct ctl_table_header *register_sysctl(const char *path, struct ctl_table *table)
1303{
1304 return __register_sysctl_table(&sysctl_table_root.default_set,
1305 path, table);
1306}
1307EXPORT_SYMBOL(register_sysctl);
1308
6e9d5164
EB
1309static char *append_path(const char *path, char *pos, const char *name)
1310{
1311 int namelen;
1312 namelen = strlen(name);
1313 if (((pos - path) + namelen + 2) >= PATH_MAX)
1314 return NULL;
1315 memcpy(pos, name, namelen);
1316 pos[namelen] = '/';
1317 pos[namelen + 1] = '\0';
1318 pos += namelen + 1;
1319 return pos;
1320}
1321
f728019b
EB
1322static int count_subheaders(struct ctl_table *table)
1323{
1324 int has_files = 0;
1325 int nr_subheaders = 0;
1326 struct ctl_table *entry;
1327
1328 /* special case: no directory and empty directory */
1329 if (!table || !table->procname)
1330 return 1;
1331
1332 for (entry = table; entry->procname; entry++) {
1333 if (entry->child)
1334 nr_subheaders += count_subheaders(entry->child);
1335 else
1336 has_files = 1;
1337 }
1338 return nr_subheaders + has_files;
1339}
1340
1341static int register_leaf_sysctl_tables(const char *path, char *pos,
60a47a2e 1342 struct ctl_table_header ***subheader, struct ctl_table_set *set,
f728019b
EB
1343 struct ctl_table *table)
1344{
1345 struct ctl_table *ctl_table_arg = NULL;
1346 struct ctl_table *entry, *files;
1347 int nr_files = 0;
1348 int nr_dirs = 0;
1349 int err = -ENOMEM;
1350
1351 for (entry = table; entry->procname; entry++) {
1352 if (entry->child)
1353 nr_dirs++;
1354 else
1355 nr_files++;
1356 }
1357
1358 files = table;
1359 /* If there are mixed files and directories we need a new table */
1360 if (nr_dirs && nr_files) {
1361 struct ctl_table *new;
1362 files = kzalloc(sizeof(struct ctl_table) * (nr_files + 1),
1363 GFP_KERNEL);
1364 if (!files)
1365 goto out;
1366
1367 ctl_table_arg = files;
1368 for (new = files, entry = table; entry->procname; entry++) {
1369 if (entry->child)
1370 continue;
1371 *new = *entry;
1372 new++;
1373 }
1374 }
1375
1376 /* Register everything except a directory full of subdirectories */
1377 if (nr_files || !nr_dirs) {
1378 struct ctl_table_header *header;
60a47a2e 1379 header = __register_sysctl_table(set, path, files);
f728019b
EB
1380 if (!header) {
1381 kfree(ctl_table_arg);
1382 goto out;
1383 }
1384
1385 /* Remember if we need to free the file table */
1386 header->ctl_table_arg = ctl_table_arg;
1387 **subheader = header;
1388 (*subheader)++;
1389 }
1390
1391 /* Recurse into the subdirectories. */
1392 for (entry = table; entry->procname; entry++) {
1393 char *child_pos;
1394
1395 if (!entry->child)
1396 continue;
1397
1398 err = -ENAMETOOLONG;
1399 child_pos = append_path(path, pos, entry->procname);
1400 if (!child_pos)
1401 goto out;
1402
1403 err = register_leaf_sysctl_tables(path, child_pos, subheader,
60a47a2e 1404 set, entry->child);
f728019b
EB
1405 pos[0] = '\0';
1406 if (err)
1407 goto out;
1408 }
1409 err = 0;
1410out:
1411 /* On failure our caller will unregister all registered subheaders */
1412 return err;
1413}
1414
6e9d5164
EB
1415/**
1416 * __register_sysctl_paths - register a sysctl table hierarchy
60a47a2e 1417 * @set: Sysctl tree to register on
6e9d5164
EB
1418 * @path: The path to the directory the sysctl table is in.
1419 * @table: the top-level table structure
1420 *
1421 * Register a sysctl table hierarchy. @table should be a filled in ctl_table
1422 * array. A completely 0 filled entry terminates the table.
1423 *
1424 * See __register_sysctl_table for more details.
1425 */
1426struct ctl_table_header *__register_sysctl_paths(
60a47a2e 1427 struct ctl_table_set *set,
6e9d5164
EB
1428 const struct ctl_path *path, struct ctl_table *table)
1429{
ec6a5266 1430 struct ctl_table *ctl_table_arg = table;
f728019b
EB
1431 int nr_subheaders = count_subheaders(table);
1432 struct ctl_table_header *header = NULL, **subheaders, **subheader;
6e9d5164
EB
1433 const struct ctl_path *component;
1434 char *new_path, *pos;
1435
1436 pos = new_path = kmalloc(PATH_MAX, GFP_KERNEL);
1437 if (!new_path)
1438 return NULL;
1439
1440 pos[0] = '\0';
1441 for (component = path; component->procname; component++) {
1442 pos = append_path(new_path, pos, component->procname);
1443 if (!pos)
1444 goto out;
1445 }
ec6a5266
EB
1446 while (table->procname && table->child && !table[1].procname) {
1447 pos = append_path(new_path, pos, table->procname);
1448 if (!pos)
1449 goto out;
1450 table = table->child;
1451 }
f728019b 1452 if (nr_subheaders == 1) {
60a47a2e 1453 header = __register_sysctl_table(set, new_path, table);
f728019b
EB
1454 if (header)
1455 header->ctl_table_arg = ctl_table_arg;
1456 } else {
1457 header = kzalloc(sizeof(*header) +
1458 sizeof(*subheaders)*nr_subheaders, GFP_KERNEL);
1459 if (!header)
1460 goto out;
1461
1462 subheaders = (struct ctl_table_header **) (header + 1);
1463 subheader = subheaders;
ec6a5266 1464 header->ctl_table_arg = ctl_table_arg;
f728019b
EB
1465
1466 if (register_leaf_sysctl_tables(new_path, pos, &subheader,
60a47a2e 1467 set, table))
f728019b
EB
1468 goto err_register_leaves;
1469 }
1470
6e9d5164
EB
1471out:
1472 kfree(new_path);
1473 return header;
f728019b
EB
1474
1475err_register_leaves:
1476 while (subheader > subheaders) {
1477 struct ctl_table_header *subh = *(--subheader);
1478 struct ctl_table *table = subh->ctl_table_arg;
1479 unregister_sysctl_table(subh);
1480 kfree(table);
1481 }
1482 kfree(header);
1483 header = NULL;
1484 goto out;
6e9d5164
EB
1485}
1486
1f87f0b5
EB
1487/**
1488 * register_sysctl_table_path - register a sysctl table hierarchy
1489 * @path: The path to the directory the sysctl table is in.
1490 * @table: the top-level table structure
1491 *
1492 * Register a sysctl table hierarchy. @table should be a filled in ctl_table
1493 * array. A completely 0 filled entry terminates the table.
1494 *
1495 * See __register_sysctl_paths for more details.
1496 */
1497struct ctl_table_header *register_sysctl_paths(const struct ctl_path *path,
1498 struct ctl_table *table)
1499{
60a47a2e 1500 return __register_sysctl_paths(&sysctl_table_root.default_set,
1f87f0b5
EB
1501 path, table);
1502}
1503EXPORT_SYMBOL(register_sysctl_paths);
1504
1505/**
1506 * register_sysctl_table - register a sysctl table hierarchy
1507 * @table: the top-level table structure
1508 *
1509 * Register a sysctl table hierarchy. @table should be a filled in ctl_table
1510 * array. A completely 0 filled entry terminates the table.
1511 *
1512 * See register_sysctl_paths for more details.
1513 */
1514struct ctl_table_header *register_sysctl_table(struct ctl_table *table)
1515{
1516 static const struct ctl_path null_path[] = { {} };
1517
1518 return register_sysctl_paths(null_path, table);
1519}
1520EXPORT_SYMBOL(register_sysctl_table);
1521
0e47c99d
EB
1522static void put_links(struct ctl_table_header *header)
1523{
1524 struct ctl_table_set *root_set = &sysctl_table_root.default_set;
1525 struct ctl_table_root *root = header->root;
1526 struct ctl_dir *parent = header->parent;
1527 struct ctl_dir *core_parent;
1528 struct ctl_table *entry;
1529
1530 if (header->set == root_set)
1531 return;
1532
1533 core_parent = xlate_dir(root_set, parent);
1534 if (IS_ERR(core_parent))
1535 return;
1536
1537 for (entry = header->ctl_table; entry->procname; entry++) {
1538 struct ctl_table_header *link_head;
1539 struct ctl_table *link;
1540 const char *name = entry->procname;
1541
1542 link = find_entry(&link_head, core_parent, name, strlen(name));
1543 if (link &&
1544 ((S_ISDIR(link->mode) && S_ISDIR(entry->mode)) ||
1545 (S_ISLNK(link->mode) && (link->data == root)))) {
1546 drop_sysctl_table(link_head);
1547 }
1548 else {
87ebdc00 1549 pr_err("sysctl link missing during unregister: ");
0e47c99d 1550 sysctl_print_dir(parent);
87ebdc00 1551 pr_cont("/%s\n", name);
0e47c99d
EB
1552 }
1553 }
1554}
1555
938aaa4f
EB
1556static void drop_sysctl_table(struct ctl_table_header *header)
1557{
7ec66d06
EB
1558 struct ctl_dir *parent = header->parent;
1559
938aaa4f
EB
1560 if (--header->nreg)
1561 return;
1562
0e47c99d 1563 put_links(header);
938aaa4f 1564 start_unregistering(header);
938aaa4f
EB
1565 if (!--header->count)
1566 kfree_rcu(header, rcu);
7ec66d06
EB
1567
1568 if (parent)
1569 drop_sysctl_table(&parent->header);
938aaa4f
EB
1570}
1571
1f87f0b5
EB
1572/**
1573 * unregister_sysctl_table - unregister a sysctl table hierarchy
1574 * @header: the header returned from register_sysctl_table
1575 *
1576 * Unregisters the sysctl table and all children. proc entries may not
1577 * actually be removed until they are no longer used by anyone.
1578 */
1579void unregister_sysctl_table(struct ctl_table_header * header)
1580{
f728019b 1581 int nr_subheaders;
1f87f0b5
EB
1582 might_sleep();
1583
1584 if (header == NULL)
1585 return;
1586
f728019b
EB
1587 nr_subheaders = count_subheaders(header->ctl_table_arg);
1588 if (unlikely(nr_subheaders > 1)) {
1589 struct ctl_table_header **subheaders;
1590 int i;
1591
1592 subheaders = (struct ctl_table_header **)(header + 1);
1593 for (i = nr_subheaders -1; i >= 0; i--) {
1594 struct ctl_table_header *subh = subheaders[i];
1595 struct ctl_table *table = subh->ctl_table_arg;
1596 unregister_sysctl_table(subh);
1597 kfree(table);
1598 }
1599 kfree(header);
1600 return;
1601 }
1602
1f87f0b5 1603 spin_lock(&sysctl_lock);
938aaa4f 1604 drop_sysctl_table(header);
1f87f0b5
EB
1605 spin_unlock(&sysctl_lock);
1606}
1607EXPORT_SYMBOL(unregister_sysctl_table);
1608
0e47c99d 1609void setup_sysctl_set(struct ctl_table_set *set,
9eb47c26 1610 struct ctl_table_root *root,
1f87f0b5
EB
1611 int (*is_seen)(struct ctl_table_set *))
1612{
1347440d 1613 memset(set, 0, sizeof(*set));
0e47c99d 1614 set->is_seen = is_seen;
ac13ac6f 1615 init_header(&set->dir.header, root, set, NULL, root_table);
1f87f0b5
EB
1616}
1617
97324cd8
EB
1618void retire_sysctl_set(struct ctl_table_set *set)
1619{
ac13ac6f 1620 WARN_ON(!RB_EMPTY_ROOT(&set->dir.root));
97324cd8 1621}
1f87f0b5 1622
1e0edd3f 1623int __init proc_sys_init(void)
77b14db5 1624{
e1675231
AD
1625 struct proc_dir_entry *proc_sys_root;
1626
77b14db5 1627 proc_sys_root = proc_mkdir("sys", NULL);
9043476f
AV
1628 proc_sys_root->proc_iops = &proc_sys_dir_operations;
1629 proc_sys_root->proc_fops = &proc_sys_dir_file_operations;
77b14db5 1630 proc_sys_root->nlink = 0;
de4e83bd
EB
1631
1632 return sysctl_init();
77b14db5 1633}