blob: e8ee4263d7b2e1da1f56635358a918de78463ab2 [file] [log] [blame]
xjb04a4022021-11-25 15:01:52 +08001/*
2 * Copyright (C) 2008 Red Hat, Inc., Eric Paris <eparis@redhat.com>
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License as published by
6 * the Free Software Foundation; either version 2, or (at your option)
7 * any later version.
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public License
15 * along with this program; see the file COPYING. If not, write to
16 * the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
17 */
18
19#include <linux/dcache.h>
20#include <linux/fs.h>
21#include <linux/gfp.h>
22#include <linux/init.h>
23#include <linux/module.h>
24#include <linux/mount.h>
25#include <linux/srcu.h>
26
27#include <linux/fsnotify_backend.h>
28#include "fsnotify.h"
29
30/*
31 * Clear all of the marks on an inode when it is being evicted from core
32 */
33void __fsnotify_inode_delete(struct inode *inode)
34{
35 fsnotify_clear_marks_by_inode(inode);
36}
37EXPORT_SYMBOL_GPL(__fsnotify_inode_delete);
38
39void __fsnotify_vfsmount_delete(struct vfsmount *mnt)
40{
41 fsnotify_clear_marks_by_mount(mnt);
42}
43
44/**
45 * fsnotify_unmount_inodes - an sb is unmounting. handle any watched inodes.
46 * @sb: superblock being unmounted.
47 *
48 * Called during unmount with no locks held, so needs to be safe against
49 * concurrent modifiers. We temporarily drop sb->s_inode_list_lock and CAN block.
50 */
51void fsnotify_unmount_inodes(struct super_block *sb)
52{
53 struct inode *inode, *iput_inode = NULL;
54
55 spin_lock(&sb->s_inode_list_lock);
56 list_for_each_entry(inode, &sb->s_inodes, i_sb_list) {
57 /*
58 * We cannot __iget() an inode in state I_FREEING,
59 * I_WILL_FREE, or I_NEW which is fine because by that point
60 * the inode cannot have any associated watches.
61 */
62 spin_lock(&inode->i_lock);
63 if (inode->i_state & (I_FREEING|I_WILL_FREE|I_NEW)) {
64 spin_unlock(&inode->i_lock);
65 continue;
66 }
67
68 /*
69 * If i_count is zero, the inode cannot have any watches and
70 * doing an __iget/iput with SB_ACTIVE clear would actually
71 * evict all inodes with zero i_count from icache which is
72 * unnecessarily violent and may in fact be illegal to do.
73 */
74 if (!atomic_read(&inode->i_count)) {
75 spin_unlock(&inode->i_lock);
76 continue;
77 }
78
79 __iget(inode);
80 spin_unlock(&inode->i_lock);
81 spin_unlock(&sb->s_inode_list_lock);
82
83 if (iput_inode)
84 iput(iput_inode);
85
86 /* for each watch, send FS_UNMOUNT and then remove it */
87 fsnotify(inode, FS_UNMOUNT, inode, FSNOTIFY_EVENT_INODE, NULL, 0);
88
89 fsnotify_inode_delete(inode);
90
91 iput_inode = inode;
92
93 cond_resched();
94 spin_lock(&sb->s_inode_list_lock);
95 }
96 spin_unlock(&sb->s_inode_list_lock);
97
98 if (iput_inode)
99 iput(iput_inode);
100 /* Wait for outstanding inode references from connectors */
101 wait_var_event(&sb->s_fsnotify_inode_refs,
102 !atomic_long_read(&sb->s_fsnotify_inode_refs));
103}
104
105/*
106 * Given an inode, first check if we care what happens to our children. Inotify
107 * and dnotify both tell their parents about events. If we care about any event
108 * on a child we run all of our children and set a dentry flag saying that the
109 * parent cares. Thus when an event happens on a child it can quickly tell if
110 * if there is a need to find a parent and send the event to the parent.
111 */
112void __fsnotify_update_child_dentry_flags(struct inode *inode)
113{
114 struct dentry *alias;
115 int watched;
116
117 if (!S_ISDIR(inode->i_mode))
118 return;
119
120 /* determine if the children should tell inode about their events */
121 watched = fsnotify_inode_watches_children(inode);
122
123 spin_lock(&inode->i_lock);
124 /* run all of the dentries associated with this inode. Since this is a
125 * directory, there damn well better only be one item on this list */
126 hlist_for_each_entry(alias, &inode->i_dentry, d_u.d_alias) {
127 struct dentry *child;
128
129 /* run all of the children of the original inode and fix their
130 * d_flags to indicate parental interest (their parent is the
131 * original inode) */
132 spin_lock(&alias->d_lock);
133 list_for_each_entry(child, &alias->d_subdirs, d_child) {
134 if (!child->d_inode)
135 continue;
136
137 spin_lock_nested(&child->d_lock, DENTRY_D_LOCK_NESTED);
138 if (watched)
139 child->d_flags |= DCACHE_FSNOTIFY_PARENT_WATCHED;
140 else
141 child->d_flags &= ~DCACHE_FSNOTIFY_PARENT_WATCHED;
142 spin_unlock(&child->d_lock);
143 }
144 spin_unlock(&alias->d_lock);
145 }
146 spin_unlock(&inode->i_lock);
147}
148
149/* Notify this dentry's parent about a child's events. */
150int __fsnotify_parent(const struct path *path, struct dentry *dentry, __u32 mask)
151{
152 struct dentry *parent;
153 struct inode *p_inode;
154 int ret = 0;
155
156 if (!dentry)
157 dentry = path->dentry;
158
159 if (!(dentry->d_flags & DCACHE_FSNOTIFY_PARENT_WATCHED))
160 return 0;
161
162 parent = dget_parent(dentry);
163 p_inode = parent->d_inode;
164
165 if (unlikely(!fsnotify_inode_watches_children(p_inode))) {
166 __fsnotify_update_child_dentry_flags(p_inode);
167 } else if (p_inode->i_fsnotify_mask & mask & ALL_FSNOTIFY_EVENTS) {
168 struct name_snapshot name;
169
170 /* we are notifying a parent so come up with the new mask which
171 * specifies these are events which came from a child. */
172 mask |= FS_EVENT_ON_CHILD;
173
174 take_dentry_name_snapshot(&name, dentry);
175 if (path)
176 ret = fsnotify(p_inode, mask, path, FSNOTIFY_EVENT_PATH,
177 name.name, 0);
178 else
179 ret = fsnotify(p_inode, mask, dentry->d_inode, FSNOTIFY_EVENT_INODE,
180 name.name, 0);
181 release_dentry_name_snapshot(&name);
182 }
183
184 dput(parent);
185
186 return ret;
187}
188EXPORT_SYMBOL_GPL(__fsnotify_parent);
189
190static int send_to_group(struct inode *to_tell,
191 __u32 mask, const void *data,
192 int data_is, u32 cookie,
193 const unsigned char *file_name,
194 struct fsnotify_iter_info *iter_info)
195{
196 struct fsnotify_group *group = NULL;
197 __u32 test_mask = (mask & ALL_FSNOTIFY_EVENTS);
198 __u32 marks_mask = 0;
199 __u32 marks_ignored_mask = 0;
200 struct fsnotify_mark *mark;
201 int type;
202
203 if (WARN_ON(!iter_info->report_mask))
204 return 0;
205
206 /* clear ignored on inode modification */
207 if (mask & FS_MODIFY) {
208 fsnotify_foreach_obj_type(type) {
209 if (!fsnotify_iter_should_report_type(iter_info, type))
210 continue;
211 mark = iter_info->marks[type];
212 if (mark &&
213 !(mark->flags & FSNOTIFY_MARK_FLAG_IGNORED_SURV_MODIFY))
214 mark->ignored_mask = 0;
215 }
216 }
217
218 fsnotify_foreach_obj_type(type) {
219 if (!fsnotify_iter_should_report_type(iter_info, type))
220 continue;
221 mark = iter_info->marks[type];
222 /* does the object mark tell us to do something? */
223 if (mark) {
224 group = mark->group;
225 marks_mask |= mark->mask;
226 marks_ignored_mask |= mark->ignored_mask;
227 }
228 }
229
230 pr_debug("%s: group=%p to_tell=%p mask=%x marks_mask=%x marks_ignored_mask=%x"
231 " data=%p data_is=%d cookie=%d\n",
232 __func__, group, to_tell, mask, marks_mask, marks_ignored_mask,
233 data, data_is, cookie);
234
235 if (!(test_mask & marks_mask & ~marks_ignored_mask))
236 return 0;
237
238 return group->ops->handle_event(group, to_tell, mask, data, data_is,
239 file_name, cookie, iter_info);
240}
241
242static struct fsnotify_mark *fsnotify_first_mark(struct fsnotify_mark_connector **connp)
243{
244 struct fsnotify_mark_connector *conn;
245 struct hlist_node *node = NULL;
246
247 conn = srcu_dereference(*connp, &fsnotify_mark_srcu);
248 if (conn)
249 node = srcu_dereference(conn->list.first, &fsnotify_mark_srcu);
250
251 return hlist_entry_safe(node, struct fsnotify_mark, obj_list);
252}
253
254static struct fsnotify_mark *fsnotify_next_mark(struct fsnotify_mark *mark)
255{
256 struct hlist_node *node = NULL;
257
258 if (mark)
259 node = srcu_dereference(mark->obj_list.next,
260 &fsnotify_mark_srcu);
261
262 return hlist_entry_safe(node, struct fsnotify_mark, obj_list);
263}
264
265/*
266 * iter_info is a multi head priority queue of marks.
267 * Pick a subset of marks from queue heads, all with the
268 * same group and set the report_mask for selected subset.
269 * Returns the report_mask of the selected subset.
270 */
271static unsigned int fsnotify_iter_select_report_types(
272 struct fsnotify_iter_info *iter_info)
273{
274 struct fsnotify_group *max_prio_group = NULL;
275 struct fsnotify_mark *mark;
276 int type;
277
278 /* Choose max prio group among groups of all queue heads */
279 fsnotify_foreach_obj_type(type) {
280 mark = iter_info->marks[type];
281 if (mark &&
282 fsnotify_compare_groups(max_prio_group, mark->group) > 0)
283 max_prio_group = mark->group;
284 }
285
286 if (!max_prio_group)
287 return 0;
288
289 /* Set the report mask for marks from same group as max prio group */
290 iter_info->report_mask = 0;
291 fsnotify_foreach_obj_type(type) {
292 mark = iter_info->marks[type];
293 if (mark &&
294 fsnotify_compare_groups(max_prio_group, mark->group) == 0)
295 fsnotify_iter_set_report_type(iter_info, type);
296 }
297
298 return iter_info->report_mask;
299}
300
301/*
302 * Pop from iter_info multi head queue, the marks that were iterated in the
303 * current iteration step.
304 */
305static void fsnotify_iter_next(struct fsnotify_iter_info *iter_info)
306{
307 int type;
308
309 fsnotify_foreach_obj_type(type) {
310 if (fsnotify_iter_should_report_type(iter_info, type))
311 iter_info->marks[type] =
312 fsnotify_next_mark(iter_info->marks[type]);
313 }
314}
315
316/*
317 * This is the main call to fsnotify. The VFS calls into hook specific functions
318 * in linux/fsnotify.h. Those functions then in turn call here. Here will call
319 * out to all of the registered fsnotify_group. Those groups can then use the
320 * notification event in whatever means they feel necessary.
321 */
322int fsnotify(struct inode *to_tell, __u32 mask, const void *data, int data_is,
323 const unsigned char *file_name, u32 cookie)
324{
325 struct fsnotify_iter_info iter_info = {};
326 struct mount *mnt;
327 int ret = 0;
328 __u32 test_mask = (mask & ALL_FSNOTIFY_EVENTS);
329
330 if (data_is == FSNOTIFY_EVENT_PATH)
331 mnt = real_mount(((const struct path *)data)->mnt);
332 else
333 mnt = NULL;
334
335 /* An event "on child" is not intended for a mount mark */
336 if (mask & FS_EVENT_ON_CHILD)
337 mnt = NULL;
338
339 /*
340 * Optimization: srcu_read_lock() has a memory barrier which can
341 * be expensive. It protects walking the *_fsnotify_marks lists.
342 * However, if we do not walk the lists, we do not have to do
343 * SRCU because we have no references to any objects and do not
344 * need SRCU to keep them "alive".
345 */
346 if (!to_tell->i_fsnotify_marks &&
347 (!mnt || !mnt->mnt_fsnotify_marks))
348 return 0;
349 /*
350 * if this is a modify event we may need to clear the ignored masks
351 * otherwise return if neither the inode nor the vfsmount care about
352 * this type of event.
353 */
354 if (!(mask & FS_MODIFY) &&
355 !(test_mask & to_tell->i_fsnotify_mask) &&
356 !(mnt && test_mask & mnt->mnt_fsnotify_mask))
357 return 0;
358
359 iter_info.srcu_idx = srcu_read_lock(&fsnotify_mark_srcu);
360
361 iter_info.marks[FSNOTIFY_OBJ_TYPE_INODE] =
362 fsnotify_first_mark(&to_tell->i_fsnotify_marks);
363 if (mnt) {
364 iter_info.marks[FSNOTIFY_OBJ_TYPE_VFSMOUNT] =
365 fsnotify_first_mark(&mnt->mnt_fsnotify_marks);
366 }
367
368 /*
369 * We need to merge inode & vfsmount mark lists so that inode mark
370 * ignore masks are properly reflected for mount mark notifications.
371 * That's why this traversal is so complicated...
372 */
373 while (fsnotify_iter_select_report_types(&iter_info)) {
374 ret = send_to_group(to_tell, mask, data, data_is, cookie,
375 file_name, &iter_info);
376
377 if (ret && (mask & ALL_FSNOTIFY_PERM_EVENTS))
378 goto out;
379
380 fsnotify_iter_next(&iter_info);
381 }
382 ret = 0;
383out:
384 srcu_read_unlock(&fsnotify_mark_srcu, iter_info.srcu_idx);
385
386 return ret;
387}
388EXPORT_SYMBOL_GPL(fsnotify);
389
390extern struct kmem_cache *fsnotify_mark_connector_cachep;
391
392static __init int fsnotify_init(void)
393{
394 int ret;
395
396 BUG_ON(hweight32(ALL_FSNOTIFY_BITS) != 23);
397
398 ret = init_srcu_struct(&fsnotify_mark_srcu);
399 if (ret)
400 panic("initializing fsnotify_mark_srcu");
401
402 fsnotify_mark_connector_cachep = KMEM_CACHE(fsnotify_mark_connector,
403 SLAB_PANIC);
404
405 return 0;
406}
407core_initcall(fsnotify_init);