fanotify_user.c 21 KB

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  1. #include <linux/fanotify.h>
  2. #include <linux/fcntl.h>
  3. #include <linux/file.h>
  4. #include <linux/fs.h>
  5. #include <linux/anon_inodes.h>
  6. #include <linux/fsnotify_backend.h>
  7. #include <linux/init.h>
  8. #include <linux/mount.h>
  9. #include <linux/namei.h>
  10. #include <linux/poll.h>
  11. #include <linux/security.h>
  12. #include <linux/syscalls.h>
  13. #include <linux/slab.h>
  14. #include <linux/types.h>
  15. #include <linux/uaccess.h>
  16. #include <asm/ioctls.h>
  17. #include "../../mount.h"
  18. #define FANOTIFY_DEFAULT_MAX_EVENTS 16384
  19. #define FANOTIFY_DEFAULT_MAX_MARKS 8192
  20. #define FANOTIFY_DEFAULT_MAX_LISTENERS 128
  21. extern const struct fsnotify_ops fanotify_fsnotify_ops;
  22. static struct kmem_cache *fanotify_mark_cache __read_mostly;
  23. static struct kmem_cache *fanotify_response_event_cache __read_mostly;
  24. struct fanotify_response_event {
  25. struct list_head list;
  26. __s32 fd;
  27. struct fsnotify_event *event;
  28. };
  29. /*
  30. * Get an fsnotify notification event if one exists and is small
  31. * enough to fit in "count". Return an error pointer if the count
  32. * is not large enough.
  33. *
  34. * Called with the group->notification_mutex held.
  35. */
  36. static struct fsnotify_event *get_one_event(struct fsnotify_group *group,
  37. size_t count)
  38. {
  39. BUG_ON(!mutex_is_locked(&group->notification_mutex));
  40. pr_debug("%s: group=%p count=%zd\n", __func__, group, count);
  41. if (fsnotify_notify_queue_is_empty(group))
  42. return NULL;
  43. if (FAN_EVENT_METADATA_LEN > count)
  44. return ERR_PTR(-EINVAL);
  45. /* held the notification_mutex the whole time, so this is the
  46. * same event we peeked above */
  47. return fsnotify_remove_notify_event(group);
  48. }
  49. static int create_fd(struct fsnotify_group *group,
  50. struct fsnotify_event *event,
  51. struct file **file)
  52. {
  53. int client_fd;
  54. struct file *new_file;
  55. pr_debug("%s: group=%p event=%p\n", __func__, group, event);
  56. client_fd = get_unused_fd();
  57. if (client_fd < 0)
  58. return client_fd;
  59. if (event->data_type != FSNOTIFY_EVENT_PATH) {
  60. WARN_ON(1);
  61. put_unused_fd(client_fd);
  62. return -EINVAL;
  63. }
  64. /*
  65. * we need a new file handle for the userspace program so it can read even if it was
  66. * originally opened O_WRONLY.
  67. */
  68. /* it's possible this event was an overflow event. in that case dentry and mnt
  69. * are NULL; That's fine, just don't call dentry open */
  70. if (event->path.dentry && event->path.mnt)
  71. new_file = dentry_open(&event->path,
  72. group->fanotify_data.f_flags | FMODE_NONOTIFY,
  73. current_cred());
  74. else
  75. new_file = ERR_PTR(-EOVERFLOW);
  76. if (IS_ERR(new_file)) {
  77. /*
  78. * we still send an event even if we can't open the file. this
  79. * can happen when say tasks are gone and we try to open their
  80. * /proc files or we try to open a WRONLY file like in sysfs
  81. * we just send the errno to userspace since there isn't much
  82. * else we can do.
  83. */
  84. put_unused_fd(client_fd);
  85. client_fd = PTR_ERR(new_file);
  86. } else {
  87. *file = new_file;
  88. }
  89. return client_fd;
  90. }
  91. static int fill_event_metadata(struct fsnotify_group *group,
  92. struct fanotify_event_metadata *metadata,
  93. struct fsnotify_event *event,
  94. struct file **file)
  95. {
  96. int ret = 0;
  97. pr_debug("%s: group=%p metadata=%p event=%p\n", __func__,
  98. group, metadata, event);
  99. *file = NULL;
  100. metadata->event_len = FAN_EVENT_METADATA_LEN;
  101. metadata->metadata_len = FAN_EVENT_METADATA_LEN;
  102. metadata->vers = FANOTIFY_METADATA_VERSION;
  103. metadata->mask = event->mask & FAN_ALL_OUTGOING_EVENTS;
  104. metadata->pid = pid_vnr(event->tgid);
  105. if (unlikely(event->mask & FAN_Q_OVERFLOW))
  106. metadata->fd = FAN_NOFD;
  107. else {
  108. metadata->fd = create_fd(group, event, file);
  109. if (metadata->fd < 0)
  110. ret = metadata->fd;
  111. }
  112. return ret;
  113. }
  114. #ifdef CONFIG_FANOTIFY_ACCESS_PERMISSIONS
  115. static struct fanotify_response_event *dequeue_re(struct fsnotify_group *group,
  116. __s32 fd)
  117. {
  118. struct fanotify_response_event *re, *return_re = NULL;
  119. mutex_lock(&group->fanotify_data.access_mutex);
  120. list_for_each_entry(re, &group->fanotify_data.access_list, list) {
  121. if (re->fd != fd)
  122. continue;
  123. list_del_init(&re->list);
  124. return_re = re;
  125. break;
  126. }
  127. mutex_unlock(&group->fanotify_data.access_mutex);
  128. pr_debug("%s: found return_re=%p\n", __func__, return_re);
  129. return return_re;
  130. }
  131. static int process_access_response(struct fsnotify_group *group,
  132. struct fanotify_response *response_struct)
  133. {
  134. struct fanotify_response_event *re;
  135. __s32 fd = response_struct->fd;
  136. __u32 response = response_struct->response;
  137. pr_debug("%s: group=%p fd=%d response=%d\n", __func__, group,
  138. fd, response);
  139. /*
  140. * make sure the response is valid, if invalid we do nothing and either
  141. * userspace can send a valid response or we will clean it up after the
  142. * timeout
  143. */
  144. switch (response) {
  145. case FAN_ALLOW:
  146. case FAN_DENY:
  147. break;
  148. default:
  149. return -EINVAL;
  150. }
  151. if (fd < 0)
  152. return -EINVAL;
  153. re = dequeue_re(group, fd);
  154. if (!re)
  155. return -ENOENT;
  156. re->event->response = response;
  157. wake_up(&group->fanotify_data.access_waitq);
  158. kmem_cache_free(fanotify_response_event_cache, re);
  159. return 0;
  160. }
  161. static int prepare_for_access_response(struct fsnotify_group *group,
  162. struct fsnotify_event *event,
  163. __s32 fd)
  164. {
  165. struct fanotify_response_event *re;
  166. if (!(event->mask & FAN_ALL_PERM_EVENTS))
  167. return 0;
  168. re = kmem_cache_alloc(fanotify_response_event_cache, GFP_KERNEL);
  169. if (!re)
  170. return -ENOMEM;
  171. re->event = event;
  172. re->fd = fd;
  173. mutex_lock(&group->fanotify_data.access_mutex);
  174. if (atomic_read(&group->fanotify_data.bypass_perm)) {
  175. mutex_unlock(&group->fanotify_data.access_mutex);
  176. kmem_cache_free(fanotify_response_event_cache, re);
  177. event->response = FAN_ALLOW;
  178. return 0;
  179. }
  180. list_add_tail(&re->list, &group->fanotify_data.access_list);
  181. mutex_unlock(&group->fanotify_data.access_mutex);
  182. return 0;
  183. }
  184. #else
  185. static int prepare_for_access_response(struct fsnotify_group *group,
  186. struct fsnotify_event *event,
  187. __s32 fd)
  188. {
  189. return 0;
  190. }
  191. #endif
  192. static ssize_t copy_event_to_user(struct fsnotify_group *group,
  193. struct fsnotify_event *event,
  194. char __user *buf)
  195. {
  196. struct fanotify_event_metadata fanotify_event_metadata;
  197. struct file *f;
  198. int fd, ret;
  199. pr_debug("%s: group=%p event=%p\n", __func__, group, event);
  200. ret = fill_event_metadata(group, &fanotify_event_metadata, event, &f);
  201. if (ret < 0)
  202. goto out;
  203. fd = fanotify_event_metadata.fd;
  204. ret = -EFAULT;
  205. if (copy_to_user(buf, &fanotify_event_metadata,
  206. fanotify_event_metadata.event_len))
  207. goto out_close_fd;
  208. ret = prepare_for_access_response(group, event, fd);
  209. if (ret)
  210. goto out_close_fd;
  211. if (fd != FAN_NOFD)
  212. fd_install(fd, f);
  213. return fanotify_event_metadata.event_len;
  214. out_close_fd:
  215. if (fd != FAN_NOFD) {
  216. put_unused_fd(fd);
  217. fput(f);
  218. }
  219. out:
  220. #ifdef CONFIG_FANOTIFY_ACCESS_PERMISSIONS
  221. if (event->mask & FAN_ALL_PERM_EVENTS) {
  222. event->response = FAN_DENY;
  223. wake_up(&group->fanotify_data.access_waitq);
  224. }
  225. #endif
  226. return ret;
  227. }
  228. /* intofiy userspace file descriptor functions */
  229. static unsigned int fanotify_poll(struct file *file, poll_table *wait)
  230. {
  231. struct fsnotify_group *group = file->private_data;
  232. int ret = 0;
  233. poll_wait(file, &group->notification_waitq, wait);
  234. mutex_lock(&group->notification_mutex);
  235. if (!fsnotify_notify_queue_is_empty(group))
  236. ret = POLLIN | POLLRDNORM;
  237. mutex_unlock(&group->notification_mutex);
  238. return ret;
  239. }
  240. static ssize_t fanotify_read(struct file *file, char __user *buf,
  241. size_t count, loff_t *pos)
  242. {
  243. struct fsnotify_group *group;
  244. struct fsnotify_event *kevent;
  245. char __user *start;
  246. int ret;
  247. DEFINE_WAIT(wait);
  248. start = buf;
  249. group = file->private_data;
  250. pr_debug("%s: group=%p\n", __func__, group);
  251. while (1) {
  252. prepare_to_wait(&group->notification_waitq, &wait, TASK_INTERRUPTIBLE);
  253. mutex_lock(&group->notification_mutex);
  254. kevent = get_one_event(group, count);
  255. mutex_unlock(&group->notification_mutex);
  256. if (kevent) {
  257. ret = PTR_ERR(kevent);
  258. if (IS_ERR(kevent))
  259. break;
  260. ret = copy_event_to_user(group, kevent, buf);
  261. fsnotify_put_event(kevent);
  262. if (ret < 0)
  263. break;
  264. buf += ret;
  265. count -= ret;
  266. continue;
  267. }
  268. ret = -EAGAIN;
  269. if (file->f_flags & O_NONBLOCK)
  270. break;
  271. ret = -ERESTARTSYS;
  272. if (signal_pending(current))
  273. break;
  274. if (start != buf)
  275. break;
  276. schedule();
  277. }
  278. finish_wait(&group->notification_waitq, &wait);
  279. if (start != buf && ret != -EFAULT)
  280. ret = buf - start;
  281. return ret;
  282. }
  283. static ssize_t fanotify_write(struct file *file, const char __user *buf, size_t count, loff_t *pos)
  284. {
  285. #ifdef CONFIG_FANOTIFY_ACCESS_PERMISSIONS
  286. struct fanotify_response response = { .fd = -1, .response = -1 };
  287. struct fsnotify_group *group;
  288. int ret;
  289. group = file->private_data;
  290. if (count > sizeof(response))
  291. count = sizeof(response);
  292. pr_debug("%s: group=%p count=%zu\n", __func__, group, count);
  293. if (copy_from_user(&response, buf, count))
  294. return -EFAULT;
  295. ret = process_access_response(group, &response);
  296. if (ret < 0)
  297. count = ret;
  298. return count;
  299. #else
  300. return -EINVAL;
  301. #endif
  302. }
  303. static int fanotify_release(struct inode *ignored, struct file *file)
  304. {
  305. struct fsnotify_group *group = file->private_data;
  306. #ifdef CONFIG_FANOTIFY_ACCESS_PERMISSIONS
  307. struct fanotify_response_event *re, *lre;
  308. mutex_lock(&group->fanotify_data.access_mutex);
  309. atomic_inc(&group->fanotify_data.bypass_perm);
  310. list_for_each_entry_safe(re, lre, &group->fanotify_data.access_list, list) {
  311. pr_debug("%s: found group=%p re=%p event=%p\n", __func__, group,
  312. re, re->event);
  313. list_del_init(&re->list);
  314. re->event->response = FAN_ALLOW;
  315. kmem_cache_free(fanotify_response_event_cache, re);
  316. }
  317. mutex_unlock(&group->fanotify_data.access_mutex);
  318. wake_up(&group->fanotify_data.access_waitq);
  319. #endif
  320. /* matches the fanotify_init->fsnotify_alloc_group */
  321. fsnotify_put_group(group);
  322. return 0;
  323. }
  324. static long fanotify_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
  325. {
  326. struct fsnotify_group *group;
  327. struct fsnotify_event_holder *holder;
  328. void __user *p;
  329. int ret = -ENOTTY;
  330. size_t send_len = 0;
  331. group = file->private_data;
  332. p = (void __user *) arg;
  333. switch (cmd) {
  334. case FIONREAD:
  335. mutex_lock(&group->notification_mutex);
  336. list_for_each_entry(holder, &group->notification_list, event_list)
  337. send_len += FAN_EVENT_METADATA_LEN;
  338. mutex_unlock(&group->notification_mutex);
  339. ret = put_user(send_len, (int __user *) p);
  340. break;
  341. }
  342. return ret;
  343. }
  344. static const struct file_operations fanotify_fops = {
  345. .poll = fanotify_poll,
  346. .read = fanotify_read,
  347. .write = fanotify_write,
  348. .fasync = NULL,
  349. .release = fanotify_release,
  350. .unlocked_ioctl = fanotify_ioctl,
  351. .compat_ioctl = fanotify_ioctl,
  352. .llseek = noop_llseek,
  353. };
  354. static void fanotify_free_mark(struct fsnotify_mark *fsn_mark)
  355. {
  356. kmem_cache_free(fanotify_mark_cache, fsn_mark);
  357. }
  358. static int fanotify_find_path(int dfd, const char __user *filename,
  359. struct path *path, unsigned int flags)
  360. {
  361. int ret;
  362. pr_debug("%s: dfd=%d filename=%p flags=%x\n", __func__,
  363. dfd, filename, flags);
  364. if (filename == NULL) {
  365. struct fd f = fdget(dfd);
  366. ret = -EBADF;
  367. if (!f.file)
  368. goto out;
  369. ret = -ENOTDIR;
  370. if ((flags & FAN_MARK_ONLYDIR) &&
  371. !(S_ISDIR(f.file->f_path.dentry->d_inode->i_mode))) {
  372. fdput(f);
  373. goto out;
  374. }
  375. *path = f.file->f_path;
  376. path_get(path);
  377. fdput(f);
  378. } else {
  379. unsigned int lookup_flags = 0;
  380. if (!(flags & FAN_MARK_DONT_FOLLOW))
  381. lookup_flags |= LOOKUP_FOLLOW;
  382. if (flags & FAN_MARK_ONLYDIR)
  383. lookup_flags |= LOOKUP_DIRECTORY;
  384. ret = user_path_at(dfd, filename, lookup_flags, path);
  385. if (ret)
  386. goto out;
  387. }
  388. /* you can only watch an inode if you have read permissions on it */
  389. ret = inode_permission(path->dentry->d_inode, MAY_READ);
  390. if (ret)
  391. path_put(path);
  392. out:
  393. return ret;
  394. }
  395. static __u32 fanotify_mark_remove_from_mask(struct fsnotify_mark *fsn_mark,
  396. __u32 mask,
  397. unsigned int flags)
  398. {
  399. __u32 oldmask;
  400. spin_lock(&fsn_mark->lock);
  401. if (!(flags & FAN_MARK_IGNORED_MASK)) {
  402. oldmask = fsn_mark->mask;
  403. fsnotify_set_mark_mask_locked(fsn_mark, (oldmask & ~mask));
  404. } else {
  405. oldmask = fsn_mark->ignored_mask;
  406. fsnotify_set_mark_ignored_mask_locked(fsn_mark, (oldmask & ~mask));
  407. }
  408. spin_unlock(&fsn_mark->lock);
  409. if (!(oldmask & ~mask))
  410. fsnotify_destroy_mark(fsn_mark);
  411. return mask & oldmask;
  412. }
  413. static int fanotify_remove_vfsmount_mark(struct fsnotify_group *group,
  414. struct vfsmount *mnt, __u32 mask,
  415. unsigned int flags)
  416. {
  417. struct fsnotify_mark *fsn_mark = NULL;
  418. __u32 removed;
  419. fsn_mark = fsnotify_find_vfsmount_mark(group, mnt);
  420. if (!fsn_mark)
  421. return -ENOENT;
  422. removed = fanotify_mark_remove_from_mask(fsn_mark, mask, flags);
  423. fsnotify_put_mark(fsn_mark);
  424. if (removed & real_mount(mnt)->mnt_fsnotify_mask)
  425. fsnotify_recalc_vfsmount_mask(mnt);
  426. return 0;
  427. }
  428. static int fanotify_remove_inode_mark(struct fsnotify_group *group,
  429. struct inode *inode, __u32 mask,
  430. unsigned int flags)
  431. {
  432. struct fsnotify_mark *fsn_mark = NULL;
  433. __u32 removed;
  434. fsn_mark = fsnotify_find_inode_mark(group, inode);
  435. if (!fsn_mark)
  436. return -ENOENT;
  437. removed = fanotify_mark_remove_from_mask(fsn_mark, mask, flags);
  438. /* matches the fsnotify_find_inode_mark() */
  439. fsnotify_put_mark(fsn_mark);
  440. if (removed & inode->i_fsnotify_mask)
  441. fsnotify_recalc_inode_mask(inode);
  442. return 0;
  443. }
  444. static __u32 fanotify_mark_add_to_mask(struct fsnotify_mark *fsn_mark,
  445. __u32 mask,
  446. unsigned int flags)
  447. {
  448. __u32 oldmask = -1;
  449. spin_lock(&fsn_mark->lock);
  450. if (!(flags & FAN_MARK_IGNORED_MASK)) {
  451. oldmask = fsn_mark->mask;
  452. fsnotify_set_mark_mask_locked(fsn_mark, (oldmask | mask));
  453. } else {
  454. __u32 tmask = fsn_mark->ignored_mask | mask;
  455. fsnotify_set_mark_ignored_mask_locked(fsn_mark, tmask);
  456. if (flags & FAN_MARK_IGNORED_SURV_MODIFY)
  457. fsn_mark->flags |= FSNOTIFY_MARK_FLAG_IGNORED_SURV_MODIFY;
  458. }
  459. if (!(flags & FAN_MARK_ONDIR)) {
  460. __u32 tmask = fsn_mark->ignored_mask | FAN_ONDIR;
  461. fsnotify_set_mark_ignored_mask_locked(fsn_mark, tmask);
  462. }
  463. spin_unlock(&fsn_mark->lock);
  464. return mask & ~oldmask;
  465. }
  466. static int fanotify_add_vfsmount_mark(struct fsnotify_group *group,
  467. struct vfsmount *mnt, __u32 mask,
  468. unsigned int flags)
  469. {
  470. struct fsnotify_mark *fsn_mark;
  471. __u32 added;
  472. int ret = 0;
  473. fsn_mark = fsnotify_find_vfsmount_mark(group, mnt);
  474. if (!fsn_mark) {
  475. if (atomic_read(&group->num_marks) > group->fanotify_data.max_marks)
  476. return -ENOSPC;
  477. fsn_mark = kmem_cache_alloc(fanotify_mark_cache, GFP_KERNEL);
  478. if (!fsn_mark)
  479. return -ENOMEM;
  480. fsnotify_init_mark(fsn_mark, fanotify_free_mark);
  481. ret = fsnotify_add_mark(fsn_mark, group, NULL, mnt, 0);
  482. if (ret)
  483. goto err;
  484. }
  485. added = fanotify_mark_add_to_mask(fsn_mark, mask, flags);
  486. if (added & ~real_mount(mnt)->mnt_fsnotify_mask)
  487. fsnotify_recalc_vfsmount_mask(mnt);
  488. err:
  489. fsnotify_put_mark(fsn_mark);
  490. return ret;
  491. }
  492. static int fanotify_add_inode_mark(struct fsnotify_group *group,
  493. struct inode *inode, __u32 mask,
  494. unsigned int flags)
  495. {
  496. struct fsnotify_mark *fsn_mark;
  497. __u32 added;
  498. int ret = 0;
  499. pr_debug("%s: group=%p inode=%p\n", __func__, group, inode);
  500. /*
  501. * If some other task has this inode open for write we should not add
  502. * an ignored mark, unless that ignored mark is supposed to survive
  503. * modification changes anyway.
  504. */
  505. if ((flags & FAN_MARK_IGNORED_MASK) &&
  506. !(flags & FAN_MARK_IGNORED_SURV_MODIFY) &&
  507. (atomic_read(&inode->i_writecount) > 0))
  508. return 0;
  509. fsn_mark = fsnotify_find_inode_mark(group, inode);
  510. if (!fsn_mark) {
  511. if (atomic_read(&group->num_marks) > group->fanotify_data.max_marks)
  512. return -ENOSPC;
  513. fsn_mark = kmem_cache_alloc(fanotify_mark_cache, GFP_KERNEL);
  514. if (!fsn_mark)
  515. return -ENOMEM;
  516. fsnotify_init_mark(fsn_mark, fanotify_free_mark);
  517. ret = fsnotify_add_mark(fsn_mark, group, inode, NULL, 0);
  518. if (ret)
  519. goto err;
  520. }
  521. added = fanotify_mark_add_to_mask(fsn_mark, mask, flags);
  522. if (added & ~inode->i_fsnotify_mask)
  523. fsnotify_recalc_inode_mask(inode);
  524. err:
  525. fsnotify_put_mark(fsn_mark);
  526. return ret;
  527. }
  528. /* fanotify syscalls */
  529. SYSCALL_DEFINE2(fanotify_init, unsigned int, flags, unsigned int, event_f_flags)
  530. {
  531. struct fsnotify_group *group;
  532. int f_flags, fd;
  533. struct user_struct *user;
  534. pr_debug("%s: flags=%d event_f_flags=%d\n",
  535. __func__, flags, event_f_flags);
  536. if (!capable(CAP_SYS_ADMIN))
  537. return -EPERM;
  538. if (flags & ~FAN_ALL_INIT_FLAGS)
  539. return -EINVAL;
  540. user = get_current_user();
  541. if (atomic_read(&user->fanotify_listeners) > FANOTIFY_DEFAULT_MAX_LISTENERS) {
  542. free_uid(user);
  543. return -EMFILE;
  544. }
  545. f_flags = O_RDWR | FMODE_NONOTIFY;
  546. if (flags & FAN_CLOEXEC)
  547. f_flags |= O_CLOEXEC;
  548. if (flags & FAN_NONBLOCK)
  549. f_flags |= O_NONBLOCK;
  550. /* fsnotify_alloc_group takes a ref. Dropped in fanotify_release */
  551. group = fsnotify_alloc_group(&fanotify_fsnotify_ops);
  552. if (IS_ERR(group)) {
  553. free_uid(user);
  554. return PTR_ERR(group);
  555. }
  556. group->fanotify_data.user = user;
  557. atomic_inc(&user->fanotify_listeners);
  558. group->fanotify_data.f_flags = event_f_flags;
  559. #ifdef CONFIG_FANOTIFY_ACCESS_PERMISSIONS
  560. mutex_init(&group->fanotify_data.access_mutex);
  561. init_waitqueue_head(&group->fanotify_data.access_waitq);
  562. INIT_LIST_HEAD(&group->fanotify_data.access_list);
  563. atomic_set(&group->fanotify_data.bypass_perm, 0);
  564. #endif
  565. switch (flags & FAN_ALL_CLASS_BITS) {
  566. case FAN_CLASS_NOTIF:
  567. group->priority = FS_PRIO_0;
  568. break;
  569. case FAN_CLASS_CONTENT:
  570. group->priority = FS_PRIO_1;
  571. break;
  572. case FAN_CLASS_PRE_CONTENT:
  573. group->priority = FS_PRIO_2;
  574. break;
  575. default:
  576. fd = -EINVAL;
  577. goto out_put_group;
  578. }
  579. if (flags & FAN_UNLIMITED_QUEUE) {
  580. fd = -EPERM;
  581. if (!capable(CAP_SYS_ADMIN))
  582. goto out_put_group;
  583. group->max_events = UINT_MAX;
  584. } else {
  585. group->max_events = FANOTIFY_DEFAULT_MAX_EVENTS;
  586. }
  587. if (flags & FAN_UNLIMITED_MARKS) {
  588. fd = -EPERM;
  589. if (!capable(CAP_SYS_ADMIN))
  590. goto out_put_group;
  591. group->fanotify_data.max_marks = UINT_MAX;
  592. } else {
  593. group->fanotify_data.max_marks = FANOTIFY_DEFAULT_MAX_MARKS;
  594. }
  595. fd = anon_inode_getfd("[fanotify]", &fanotify_fops, group, f_flags);
  596. if (fd < 0)
  597. goto out_put_group;
  598. return fd;
  599. out_put_group:
  600. fsnotify_put_group(group);
  601. return fd;
  602. }
  603. SYSCALL_DEFINE(fanotify_mark)(int fanotify_fd, unsigned int flags,
  604. __u64 mask, int dfd,
  605. const char __user * pathname)
  606. {
  607. struct inode *inode = NULL;
  608. struct vfsmount *mnt = NULL;
  609. struct fsnotify_group *group;
  610. struct fd f;
  611. struct path path;
  612. int ret;
  613. pr_debug("%s: fanotify_fd=%d flags=%x dfd=%d pathname=%p mask=%llx\n",
  614. __func__, fanotify_fd, flags, dfd, pathname, mask);
  615. /* we only use the lower 32 bits as of right now. */
  616. if (mask & ((__u64)0xffffffff << 32))
  617. return -EINVAL;
  618. if (flags & ~FAN_ALL_MARK_FLAGS)
  619. return -EINVAL;
  620. switch (flags & (FAN_MARK_ADD | FAN_MARK_REMOVE | FAN_MARK_FLUSH)) {
  621. case FAN_MARK_ADD: /* fallthrough */
  622. case FAN_MARK_REMOVE:
  623. if (!mask)
  624. return -EINVAL;
  625. case FAN_MARK_FLUSH:
  626. break;
  627. default:
  628. return -EINVAL;
  629. }
  630. if (mask & FAN_ONDIR) {
  631. flags |= FAN_MARK_ONDIR;
  632. mask &= ~FAN_ONDIR;
  633. }
  634. #ifdef CONFIG_FANOTIFY_ACCESS_PERMISSIONS
  635. if (mask & ~(FAN_ALL_EVENTS | FAN_ALL_PERM_EVENTS | FAN_EVENT_ON_CHILD))
  636. #else
  637. if (mask & ~(FAN_ALL_EVENTS | FAN_EVENT_ON_CHILD))
  638. #endif
  639. return -EINVAL;
  640. f = fdget(fanotify_fd);
  641. if (unlikely(!f.file))
  642. return -EBADF;
  643. /* verify that this is indeed an fanotify instance */
  644. ret = -EINVAL;
  645. if (unlikely(f.file->f_op != &fanotify_fops))
  646. goto fput_and_out;
  647. group = f.file->private_data;
  648. /*
  649. * group->priority == FS_PRIO_0 == FAN_CLASS_NOTIF. These are not
  650. * allowed to set permissions events.
  651. */
  652. ret = -EINVAL;
  653. if (mask & FAN_ALL_PERM_EVENTS &&
  654. group->priority == FS_PRIO_0)
  655. goto fput_and_out;
  656. ret = fanotify_find_path(dfd, pathname, &path, flags);
  657. if (ret)
  658. goto fput_and_out;
  659. /* inode held in place by reference to path; group by fget on fd */
  660. if (!(flags & FAN_MARK_MOUNT))
  661. inode = path.dentry->d_inode;
  662. else
  663. mnt = path.mnt;
  664. /* create/update an inode mark */
  665. switch (flags & (FAN_MARK_ADD | FAN_MARK_REMOVE | FAN_MARK_FLUSH)) {
  666. case FAN_MARK_ADD:
  667. if (flags & FAN_MARK_MOUNT)
  668. ret = fanotify_add_vfsmount_mark(group, mnt, mask, flags);
  669. else
  670. ret = fanotify_add_inode_mark(group, inode, mask, flags);
  671. break;
  672. case FAN_MARK_REMOVE:
  673. if (flags & FAN_MARK_MOUNT)
  674. ret = fanotify_remove_vfsmount_mark(group, mnt, mask, flags);
  675. else
  676. ret = fanotify_remove_inode_mark(group, inode, mask, flags);
  677. break;
  678. case FAN_MARK_FLUSH:
  679. if (flags & FAN_MARK_MOUNT)
  680. fsnotify_clear_vfsmount_marks_by_group(group);
  681. else
  682. fsnotify_clear_inode_marks_by_group(group);
  683. break;
  684. default:
  685. ret = -EINVAL;
  686. }
  687. path_put(&path);
  688. fput_and_out:
  689. fdput(f);
  690. return ret;
  691. }
  692. #ifdef CONFIG_HAVE_SYSCALL_WRAPPERS
  693. asmlinkage long SyS_fanotify_mark(long fanotify_fd, long flags, __u64 mask,
  694. long dfd, long pathname)
  695. {
  696. return SYSC_fanotify_mark((int) fanotify_fd, (unsigned int) flags,
  697. mask, (int) dfd,
  698. (const char __user *) pathname);
  699. }
  700. SYSCALL_ALIAS(sys_fanotify_mark, SyS_fanotify_mark);
  701. #endif
  702. /*
  703. * fanotify_user_setup - Our initialization function. Note that we cannot return
  704. * error because we have compiled-in VFS hooks. So an (unlikely) failure here
  705. * must result in panic().
  706. */
  707. static int __init fanotify_user_setup(void)
  708. {
  709. fanotify_mark_cache = KMEM_CACHE(fsnotify_mark, SLAB_PANIC);
  710. fanotify_response_event_cache = KMEM_CACHE(fanotify_response_event,
  711. SLAB_PANIC);
  712. return 0;
  713. }
  714. device_initcall(fanotify_user_setup);