dnotify.c 11 KB

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  1. /*
  2. * Directory notifications for Linux.
  3. *
  4. * Copyright (C) 2000,2001,2002 Stephen Rothwell
  5. *
  6. * Copyright (C) 2009 Eric Paris <Red Hat Inc>
  7. * dnotify was largly rewritten to use the new fsnotify infrastructure
  8. *
  9. * This program is free software; you can redistribute it and/or modify it
  10. * under the terms of the GNU General Public License as published by the
  11. * Free Software Foundation; either version 2, or (at your option) any
  12. * later version.
  13. *
  14. * This program is distributed in the hope that it will be useful, but
  15. * WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  17. * General Public License for more details.
  18. */
  19. #include <linux/fs.h>
  20. #include <linux/module.h>
  21. #include <linux/sched.h>
  22. #include <linux/dnotify.h>
  23. #include <linux/init.h>
  24. #include <linux/spinlock.h>
  25. #include <linux/slab.h>
  26. #include <linux/fdtable.h>
  27. #include <linux/fsnotify_backend.h>
  28. int dir_notify_enable __read_mostly = 1;
  29. static struct kmem_cache *dnotify_struct_cache __read_mostly;
  30. static struct kmem_cache *dnotify_mark_cache __read_mostly;
  31. static struct fsnotify_group *dnotify_group __read_mostly;
  32. /*
  33. * dnotify will attach one of these to each inode (i_fsnotify_marks) which
  34. * is being watched by dnotify. If multiple userspace applications are watching
  35. * the same directory with dnotify their information is chained in dn
  36. */
  37. struct dnotify_mark {
  38. struct fsnotify_mark fsn_mark;
  39. struct dnotify_struct *dn;
  40. };
  41. /*
  42. * When a process starts or stops watching an inode the set of events which
  43. * dnotify cares about for that inode may change. This function runs the
  44. * list of everything receiving dnotify events about this directory and calculates
  45. * the set of all those events. After it updates what dnotify is interested in
  46. * it calls the fsnotify function so it can update the set of all events relevant
  47. * to this inode.
  48. */
  49. static void dnotify_recalc_inode_mask(struct fsnotify_mark *fsn_mark)
  50. {
  51. __u32 new_mask, old_mask;
  52. struct dnotify_struct *dn;
  53. struct dnotify_mark *dn_mark = container_of(fsn_mark,
  54. struct dnotify_mark,
  55. fsn_mark);
  56. assert_spin_locked(&fsn_mark->lock);
  57. old_mask = fsn_mark->mask;
  58. new_mask = 0;
  59. for (dn = dn_mark->dn; dn != NULL; dn = dn->dn_next)
  60. new_mask |= (dn->dn_mask & ~FS_DN_MULTISHOT);
  61. fsnotify_set_mark_mask_locked(fsn_mark, new_mask);
  62. if (old_mask == new_mask)
  63. return;
  64. if (fsn_mark->i.inode)
  65. fsnotify_recalc_inode_mask(fsn_mark->i.inode);
  66. }
  67. /*
  68. * Mains fsnotify call where events are delivered to dnotify.
  69. * Find the dnotify mark on the relevant inode, run the list of dnotify structs
  70. * on that mark and determine which of them has expressed interest in receiving
  71. * events of this type. When found send the correct process and signal and
  72. * destroy the dnotify struct if it was not registered to receive multiple
  73. * events.
  74. */
  75. static int dnotify_handle_event(struct fsnotify_group *group,
  76. struct fsnotify_mark *inode_mark,
  77. struct fsnotify_mark *vfsmount_mark,
  78. struct fsnotify_event *event)
  79. {
  80. struct dnotify_mark *dn_mark;
  81. struct inode *to_tell;
  82. struct dnotify_struct *dn;
  83. struct dnotify_struct **prev;
  84. struct fown_struct *fown;
  85. __u32 test_mask = event->mask & ~FS_EVENT_ON_CHILD;
  86. BUG_ON(vfsmount_mark);
  87. to_tell = event->to_tell;
  88. dn_mark = container_of(inode_mark, struct dnotify_mark, fsn_mark);
  89. spin_lock(&inode_mark->lock);
  90. prev = &dn_mark->dn;
  91. while ((dn = *prev) != NULL) {
  92. if ((dn->dn_mask & test_mask) == 0) {
  93. prev = &dn->dn_next;
  94. continue;
  95. }
  96. fown = &dn->dn_filp->f_owner;
  97. send_sigio(fown, dn->dn_fd, POLL_MSG);
  98. if (dn->dn_mask & FS_DN_MULTISHOT)
  99. prev = &dn->dn_next;
  100. else {
  101. *prev = dn->dn_next;
  102. kmem_cache_free(dnotify_struct_cache, dn);
  103. dnotify_recalc_inode_mask(inode_mark);
  104. }
  105. }
  106. spin_unlock(&inode_mark->lock);
  107. return 0;
  108. }
  109. /*
  110. * Given an inode and mask determine if dnotify would be interested in sending
  111. * userspace notification for that pair.
  112. */
  113. static bool dnotify_should_send_event(struct fsnotify_group *group,
  114. struct inode *inode,
  115. struct fsnotify_mark *inode_mark,
  116. struct fsnotify_mark *vfsmount_mark,
  117. __u32 mask, void *data, int data_type)
  118. {
  119. /* not a dir, dnotify doesn't care */
  120. if (!S_ISDIR(inode->i_mode))
  121. return false;
  122. return true;
  123. }
  124. static void dnotify_free_mark(struct fsnotify_mark *fsn_mark)
  125. {
  126. struct dnotify_mark *dn_mark = container_of(fsn_mark,
  127. struct dnotify_mark,
  128. fsn_mark);
  129. BUG_ON(dn_mark->dn);
  130. kmem_cache_free(dnotify_mark_cache, dn_mark);
  131. }
  132. static struct fsnotify_ops dnotify_fsnotify_ops = {
  133. .handle_event = dnotify_handle_event,
  134. .should_send_event = dnotify_should_send_event,
  135. .free_group_priv = NULL,
  136. .freeing_mark = NULL,
  137. .free_event_priv = NULL,
  138. };
  139. /*
  140. * Called every time a file is closed. Looks first for a dnotify mark on the
  141. * inode. If one is found run all of the ->dn structures attached to that
  142. * mark for one relevant to this process closing the file and remove that
  143. * dnotify_struct. If that was the last dnotify_struct also remove the
  144. * fsnotify_mark.
  145. */
  146. void dnotify_flush(struct file *filp, fl_owner_t id)
  147. {
  148. struct fsnotify_mark *fsn_mark;
  149. struct dnotify_mark *dn_mark;
  150. struct dnotify_struct *dn;
  151. struct dnotify_struct **prev;
  152. struct inode *inode;
  153. inode = file_inode(filp);
  154. if (!S_ISDIR(inode->i_mode))
  155. return;
  156. fsn_mark = fsnotify_find_inode_mark(dnotify_group, inode);
  157. if (!fsn_mark)
  158. return;
  159. dn_mark = container_of(fsn_mark, struct dnotify_mark, fsn_mark);
  160. mutex_lock(&dnotify_group->mark_mutex);
  161. spin_lock(&fsn_mark->lock);
  162. prev = &dn_mark->dn;
  163. while ((dn = *prev) != NULL) {
  164. if ((dn->dn_owner == id) && (dn->dn_filp == filp)) {
  165. *prev = dn->dn_next;
  166. kmem_cache_free(dnotify_struct_cache, dn);
  167. dnotify_recalc_inode_mask(fsn_mark);
  168. break;
  169. }
  170. prev = &dn->dn_next;
  171. }
  172. spin_unlock(&fsn_mark->lock);
  173. /* nothing else could have found us thanks to the dnotify_groups
  174. mark_mutex */
  175. if (dn_mark->dn == NULL)
  176. fsnotify_destroy_mark_locked(fsn_mark, dnotify_group);
  177. mutex_unlock(&dnotify_group->mark_mutex);
  178. fsnotify_put_mark(fsn_mark);
  179. }
  180. /* this conversion is done only at watch creation */
  181. static __u32 convert_arg(unsigned long arg)
  182. {
  183. __u32 new_mask = FS_EVENT_ON_CHILD;
  184. if (arg & DN_MULTISHOT)
  185. new_mask |= FS_DN_MULTISHOT;
  186. if (arg & DN_DELETE)
  187. new_mask |= (FS_DELETE | FS_MOVED_FROM);
  188. if (arg & DN_MODIFY)
  189. new_mask |= FS_MODIFY;
  190. if (arg & DN_ACCESS)
  191. new_mask |= FS_ACCESS;
  192. if (arg & DN_ATTRIB)
  193. new_mask |= FS_ATTRIB;
  194. if (arg & DN_RENAME)
  195. new_mask |= FS_DN_RENAME;
  196. if (arg & DN_CREATE)
  197. new_mask |= (FS_CREATE | FS_MOVED_TO);
  198. return new_mask;
  199. }
  200. /*
  201. * If multiple processes watch the same inode with dnotify there is only one
  202. * dnotify mark in inode->i_fsnotify_marks but we chain a dnotify_struct
  203. * onto that mark. This function either attaches the new dnotify_struct onto
  204. * that list, or it |= the mask onto an existing dnofiy_struct.
  205. */
  206. static int attach_dn(struct dnotify_struct *dn, struct dnotify_mark *dn_mark,
  207. fl_owner_t id, int fd, struct file *filp, __u32 mask)
  208. {
  209. struct dnotify_struct *odn;
  210. odn = dn_mark->dn;
  211. while (odn != NULL) {
  212. /* adding more events to existing dnofiy_struct? */
  213. if ((odn->dn_owner == id) && (odn->dn_filp == filp)) {
  214. odn->dn_fd = fd;
  215. odn->dn_mask |= mask;
  216. return -EEXIST;
  217. }
  218. odn = odn->dn_next;
  219. }
  220. dn->dn_mask = mask;
  221. dn->dn_fd = fd;
  222. dn->dn_filp = filp;
  223. dn->dn_owner = id;
  224. dn->dn_next = dn_mark->dn;
  225. dn_mark->dn = dn;
  226. return 0;
  227. }
  228. /*
  229. * When a process calls fcntl to attach a dnotify watch to a directory it ends
  230. * up here. Allocate both a mark for fsnotify to add and a dnotify_struct to be
  231. * attached to the fsnotify_mark.
  232. */
  233. int fcntl_dirnotify(int fd, struct file *filp, unsigned long arg)
  234. {
  235. struct dnotify_mark *new_dn_mark, *dn_mark;
  236. struct fsnotify_mark *new_fsn_mark, *fsn_mark;
  237. struct dnotify_struct *dn;
  238. struct inode *inode;
  239. fl_owner_t id = current->files;
  240. struct file *f;
  241. int destroy = 0, error = 0;
  242. __u32 mask;
  243. /* we use these to tell if we need to kfree */
  244. new_fsn_mark = NULL;
  245. dn = NULL;
  246. if (!dir_notify_enable) {
  247. error = -EINVAL;
  248. goto out_err;
  249. }
  250. /* a 0 mask means we are explicitly removing the watch */
  251. if ((arg & ~DN_MULTISHOT) == 0) {
  252. dnotify_flush(filp, id);
  253. error = 0;
  254. goto out_err;
  255. }
  256. /* dnotify only works on directories */
  257. inode = file_inode(filp);
  258. if (!S_ISDIR(inode->i_mode)) {
  259. error = -ENOTDIR;
  260. goto out_err;
  261. }
  262. /* expect most fcntl to add new rather than augment old */
  263. dn = kmem_cache_alloc(dnotify_struct_cache, GFP_KERNEL);
  264. if (!dn) {
  265. error = -ENOMEM;
  266. goto out_err;
  267. }
  268. /* new fsnotify mark, we expect most fcntl calls to add a new mark */
  269. new_dn_mark = kmem_cache_alloc(dnotify_mark_cache, GFP_KERNEL);
  270. if (!new_dn_mark) {
  271. error = -ENOMEM;
  272. goto out_err;
  273. }
  274. /* convert the userspace DN_* "arg" to the internal FS_* defines in fsnotify */
  275. mask = convert_arg(arg);
  276. /* set up the new_fsn_mark and new_dn_mark */
  277. new_fsn_mark = &new_dn_mark->fsn_mark;
  278. fsnotify_init_mark(new_fsn_mark, dnotify_free_mark);
  279. new_fsn_mark->mask = mask;
  280. new_dn_mark->dn = NULL;
  281. /* this is needed to prevent the fcntl/close race described below */
  282. mutex_lock(&dnotify_group->mark_mutex);
  283. /* add the new_fsn_mark or find an old one. */
  284. fsn_mark = fsnotify_find_inode_mark(dnotify_group, inode);
  285. if (fsn_mark) {
  286. dn_mark = container_of(fsn_mark, struct dnotify_mark, fsn_mark);
  287. spin_lock(&fsn_mark->lock);
  288. } else {
  289. fsnotify_add_mark_locked(new_fsn_mark, dnotify_group, inode,
  290. NULL, 0);
  291. spin_lock(&new_fsn_mark->lock);
  292. fsn_mark = new_fsn_mark;
  293. dn_mark = new_dn_mark;
  294. /* we used new_fsn_mark, so don't free it */
  295. new_fsn_mark = NULL;
  296. }
  297. rcu_read_lock();
  298. f = fcheck(fd);
  299. rcu_read_unlock();
  300. /* if (f != filp) means that we lost a race and another task/thread
  301. * actually closed the fd we are still playing with before we grabbed
  302. * the dnotify_groups mark_mutex and fsn_mark->lock. Since closing the
  303. * fd is the only time we clean up the marks we need to get our mark
  304. * off the list. */
  305. if (f != filp) {
  306. /* if we added ourselves, shoot ourselves, it's possible that
  307. * the flush actually did shoot this fsn_mark. That's fine too
  308. * since multiple calls to destroy_mark is perfectly safe, if
  309. * we found a dn_mark already attached to the inode, just sod
  310. * off silently as the flush at close time dealt with it.
  311. */
  312. if (dn_mark == new_dn_mark)
  313. destroy = 1;
  314. goto out;
  315. }
  316. error = __f_setown(filp, task_pid(current), PIDTYPE_PID, 0);
  317. if (error) {
  318. /* if we added, we must shoot */
  319. if (dn_mark == new_dn_mark)
  320. destroy = 1;
  321. goto out;
  322. }
  323. error = attach_dn(dn, dn_mark, id, fd, filp, mask);
  324. /* !error means that we attached the dn to the dn_mark, so don't free it */
  325. if (!error)
  326. dn = NULL;
  327. /* -EEXIST means that we didn't add this new dn and used an old one.
  328. * that isn't an error (and the unused dn should be freed) */
  329. else if (error == -EEXIST)
  330. error = 0;
  331. dnotify_recalc_inode_mask(fsn_mark);
  332. out:
  333. spin_unlock(&fsn_mark->lock);
  334. if (destroy)
  335. fsnotify_destroy_mark_locked(fsn_mark, dnotify_group);
  336. mutex_unlock(&dnotify_group->mark_mutex);
  337. fsnotify_put_mark(fsn_mark);
  338. out_err:
  339. if (new_fsn_mark)
  340. fsnotify_put_mark(new_fsn_mark);
  341. if (dn)
  342. kmem_cache_free(dnotify_struct_cache, dn);
  343. return error;
  344. }
  345. static int __init dnotify_init(void)
  346. {
  347. dnotify_struct_cache = KMEM_CACHE(dnotify_struct, SLAB_PANIC);
  348. dnotify_mark_cache = KMEM_CACHE(dnotify_mark, SLAB_PANIC);
  349. dnotify_group = fsnotify_alloc_group(&dnotify_fsnotify_ops);
  350. if (IS_ERR(dnotify_group))
  351. panic("unable to allocate fsnotify group for dnotify\n");
  352. return 0;
  353. }
  354. module_init(dnotify_init)