1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* 3 * Copyright (C) 2008 Red Hat, Inc., Eric Paris <eparis@redhat.com> 4 */ 5 6 #include <linux/dcache.h> 7 #include <linux/fs.h> 8 #include <linux/gfp.h> 9 #include <linux/init.h> 10 #include <linux/module.h> 11 #include <linux/mount.h> 12 #include <linux/srcu.h> 13 14 #include <linux/fsnotify_backend.h> 15 #include "fsnotify.h" 16 17 /* 18 * Clear all of the marks on an inode when it is being evicted from core 19 */ 20 void __fsnotify_inode_delete(struct inode *inode) 21 { 22 fsnotify_clear_marks_by_inode(inode); 23 } 24 EXPORT_SYMBOL_GPL(__fsnotify_inode_delete); 25 26 void __fsnotify_vfsmount_delete(struct vfsmount *mnt) 27 { 28 fsnotify_clear_marks_by_mount(mnt); 29 } 30 31 /** 32 * fsnotify_unmount_inodes - an sb is unmounting. handle any watched inodes. 33 * @sb: superblock being unmounted. 34 * 35 * Called during unmount with no locks held, so needs to be safe against 36 * concurrent modifiers. We temporarily drop sb->s_inode_list_lock and CAN block. 37 */ 38 static void fsnotify_unmount_inodes(struct super_block *sb) 39 { 40 struct inode *inode, *iput_inode = NULL; 41 42 spin_lock(&sb->s_inode_list_lock); 43 list_for_each_entry(inode, &sb->s_inodes, i_sb_list) { 44 /* 45 * We cannot __iget() an inode in state I_FREEING, 46 * I_WILL_FREE, or I_NEW which is fine because by that point 47 * the inode cannot have any associated watches. 48 */ 49 spin_lock(&inode->i_lock); 50 if (inode->i_state & (I_FREEING|I_WILL_FREE|I_NEW)) { 51 spin_unlock(&inode->i_lock); 52 continue; 53 } 54 55 /* 56 * If i_count is zero, the inode cannot have any watches and 57 * doing an __iget/iput with SB_ACTIVE clear would actually 58 * evict all inodes with zero i_count from icache which is 59 * unnecessarily violent and may in fact be illegal to do. 60 * However, we should have been called /after/ evict_inodes 61 * removed all zero refcount inodes, in any case. Test to 62 * be sure. 63 */ 64 if (!atomic_read(&inode->i_count)) { 65 spin_unlock(&inode->i_lock); 66 continue; 67 } 68 69 __iget(inode); 70 spin_unlock(&inode->i_lock); 71 spin_unlock(&sb->s_inode_list_lock); 72 73 if (iput_inode) 74 iput(iput_inode); 75 76 /* for each watch, send FS_UNMOUNT and then remove it */ 77 fsnotify_inode(inode, FS_UNMOUNT); 78 79 fsnotify_inode_delete(inode); 80 81 iput_inode = inode; 82 83 cond_resched(); 84 spin_lock(&sb->s_inode_list_lock); 85 } 86 spin_unlock(&sb->s_inode_list_lock); 87 88 if (iput_inode) 89 iput(iput_inode); 90 /* Wait for outstanding inode references from connectors */ 91 wait_var_event(&sb->s_fsnotify_inode_refs, 92 !atomic_long_read(&sb->s_fsnotify_inode_refs)); 93 } 94 95 void fsnotify_sb_delete(struct super_block *sb) 96 { 97 fsnotify_unmount_inodes(sb); 98 fsnotify_clear_marks_by_sb(sb); 99 } 100 101 /* 102 * Given an inode, first check if we care what happens to our children. Inotify 103 * and dnotify both tell their parents about events. If we care about any event 104 * on a child we run all of our children and set a dentry flag saying that the 105 * parent cares. Thus when an event happens on a child it can quickly tell if 106 * if there is a need to find a parent and send the event to the parent. 107 */ 108 void __fsnotify_update_child_dentry_flags(struct inode *inode) 109 { 110 struct dentry *alias; 111 int watched; 112 113 if (!S_ISDIR(inode->i_mode)) 114 return; 115 116 /* determine if the children should tell inode about their events */ 117 watched = fsnotify_inode_watches_children(inode); 118 119 spin_lock(&inode->i_lock); 120 /* run all of the dentries associated with this inode. Since this is a 121 * directory, there damn well better only be one item on this list */ 122 hlist_for_each_entry(alias, &inode->i_dentry, d_u.d_alias) { 123 struct dentry *child; 124 125 /* run all of the children of the original inode and fix their 126 * d_flags to indicate parental interest (their parent is the 127 * original inode) */ 128 spin_lock(&alias->d_lock); 129 list_for_each_entry(child, &alias->d_subdirs, d_child) { 130 if (!child->d_inode) 131 continue; 132 133 spin_lock_nested(&child->d_lock, DENTRY_D_LOCK_NESTED); 134 if (watched) 135 child->d_flags |= DCACHE_FSNOTIFY_PARENT_WATCHED; 136 else 137 child->d_flags &= ~DCACHE_FSNOTIFY_PARENT_WATCHED; 138 spin_unlock(&child->d_lock); 139 } 140 spin_unlock(&alias->d_lock); 141 } 142 spin_unlock(&inode->i_lock); 143 } 144 145 /* Are inode/sb/mount interested in parent and name info with this event? */ 146 static bool fsnotify_event_needs_parent(struct inode *inode, struct mount *mnt, 147 __u32 mask) 148 { 149 __u32 marks_mask = 0; 150 151 /* We only send parent/name to inode/sb/mount for events on non-dir */ 152 if (mask & FS_ISDIR) 153 return false; 154 155 /* Did either inode/sb/mount subscribe for events with parent/name? */ 156 marks_mask |= fsnotify_parent_needed_mask(inode->i_fsnotify_mask); 157 marks_mask |= fsnotify_parent_needed_mask(inode->i_sb->s_fsnotify_mask); 158 if (mnt) 159 marks_mask |= fsnotify_parent_needed_mask(mnt->mnt_fsnotify_mask); 160 161 /* Did they subscribe for this event with parent/name info? */ 162 return mask & marks_mask; 163 } 164 165 /* 166 * Notify this dentry's parent about a child's events with child name info 167 * if parent is watching or if inode/sb/mount are interested in events with 168 * parent and name info. 169 * 170 * Notify only the child without name info if parent is not watching and 171 * inode/sb/mount are not interested in events with parent and name info. 172 */ 173 int __fsnotify_parent(struct dentry *dentry, __u32 mask, const void *data, 174 int data_type) 175 { 176 const struct path *path = fsnotify_data_path(data, data_type); 177 struct mount *mnt = path ? real_mount(path->mnt) : NULL; 178 struct inode *inode = d_inode(dentry); 179 struct dentry *parent; 180 bool parent_watched = dentry->d_flags & DCACHE_FSNOTIFY_PARENT_WATCHED; 181 bool parent_needed, parent_interested; 182 __u32 p_mask; 183 struct inode *p_inode = NULL; 184 struct name_snapshot name; 185 struct qstr *file_name = NULL; 186 int ret = 0; 187 188 /* 189 * Do inode/sb/mount care about parent and name info on non-dir? 190 * Do they care about any event at all? 191 */ 192 if (!inode->i_fsnotify_marks && !inode->i_sb->s_fsnotify_marks && 193 (!mnt || !mnt->mnt_fsnotify_marks) && !parent_watched) 194 return 0; 195 196 parent = NULL; 197 parent_needed = fsnotify_event_needs_parent(inode, mnt, mask); 198 if (!parent_watched && !parent_needed) 199 goto notify; 200 201 /* Does parent inode care about events on children? */ 202 parent = dget_parent(dentry); 203 p_inode = parent->d_inode; 204 p_mask = fsnotify_inode_watches_children(p_inode); 205 if (unlikely(parent_watched && !p_mask)) 206 __fsnotify_update_child_dentry_flags(p_inode); 207 208 /* 209 * Include parent/name in notification either if some notification 210 * groups require parent info or the parent is interested in this event. 211 */ 212 parent_interested = mask & p_mask & ALL_FSNOTIFY_EVENTS; 213 if (parent_needed || parent_interested) { 214 /* When notifying parent, child should be passed as data */ 215 WARN_ON_ONCE(inode != fsnotify_data_inode(data, data_type)); 216 217 /* Notify both parent and child with child name info */ 218 take_dentry_name_snapshot(&name, dentry); 219 file_name = &name.name; 220 if (parent_interested) 221 mask |= FS_EVENT_ON_CHILD; 222 } 223 224 notify: 225 ret = fsnotify(mask, data, data_type, p_inode, file_name, inode, 0); 226 227 if (file_name) 228 release_dentry_name_snapshot(&name); 229 dput(parent); 230 231 return ret; 232 } 233 EXPORT_SYMBOL_GPL(__fsnotify_parent); 234 235 static int fsnotify_handle_event(struct fsnotify_group *group, __u32 mask, 236 const void *data, int data_type, 237 struct inode *dir, const struct qstr *name, 238 u32 cookie, struct fsnotify_iter_info *iter_info) 239 { 240 struct fsnotify_mark *inode_mark = fsnotify_iter_inode_mark(iter_info); 241 struct fsnotify_mark *child_mark = fsnotify_iter_child_mark(iter_info); 242 struct inode *inode = fsnotify_data_inode(data, data_type); 243 const struct fsnotify_ops *ops = group->ops; 244 int ret; 245 246 if (WARN_ON_ONCE(!ops->handle_inode_event)) 247 return 0; 248 249 if (WARN_ON_ONCE(fsnotify_iter_sb_mark(iter_info)) || 250 WARN_ON_ONCE(fsnotify_iter_vfsmount_mark(iter_info))) 251 return 0; 252 253 /* 254 * An event can be sent on child mark iterator instead of inode mark 255 * iterator because of other groups that have interest of this inode 256 * and have marks on both parent and child. We can simplify this case. 257 */ 258 if (!inode_mark) { 259 inode_mark = child_mark; 260 child_mark = NULL; 261 dir = NULL; 262 name = NULL; 263 } 264 265 ret = ops->handle_inode_event(inode_mark, mask, inode, dir, name); 266 if (ret || !child_mark) 267 return ret; 268 269 /* 270 * Some events can be sent on both parent dir and child marks 271 * (e.g. FS_ATTRIB). If both parent dir and child are watching, 272 * report the event once to parent dir with name and once to child 273 * without name. 274 */ 275 return ops->handle_inode_event(child_mark, mask, inode, NULL, NULL); 276 } 277 278 static int send_to_group(__u32 mask, const void *data, int data_type, 279 struct inode *dir, const struct qstr *file_name, 280 u32 cookie, struct fsnotify_iter_info *iter_info) 281 { 282 struct fsnotify_group *group = NULL; 283 __u32 test_mask = (mask & ALL_FSNOTIFY_EVENTS); 284 __u32 marks_mask = 0; 285 __u32 marks_ignored_mask = 0; 286 struct fsnotify_mark *mark; 287 int type; 288 289 if (WARN_ON(!iter_info->report_mask)) 290 return 0; 291 292 /* clear ignored on inode modification */ 293 if (mask & FS_MODIFY) { 294 fsnotify_foreach_obj_type(type) { 295 if (!fsnotify_iter_should_report_type(iter_info, type)) 296 continue; 297 mark = iter_info->marks[type]; 298 if (mark && 299 !(mark->flags & FSNOTIFY_MARK_FLAG_IGNORED_SURV_MODIFY)) 300 mark->ignored_mask = 0; 301 } 302 } 303 304 fsnotify_foreach_obj_type(type) { 305 if (!fsnotify_iter_should_report_type(iter_info, type)) 306 continue; 307 mark = iter_info->marks[type]; 308 /* does the object mark tell us to do something? */ 309 if (mark) { 310 group = mark->group; 311 marks_mask |= mark->mask; 312 marks_ignored_mask |= mark->ignored_mask; 313 } 314 } 315 316 pr_debug("%s: group=%p mask=%x marks_mask=%x marks_ignored_mask=%x data=%p data_type=%d dir=%p cookie=%d\n", 317 __func__, group, mask, marks_mask, marks_ignored_mask, 318 data, data_type, dir, cookie); 319 320 if (!(test_mask & marks_mask & ~marks_ignored_mask)) 321 return 0; 322 323 if (group->ops->handle_event) { 324 return group->ops->handle_event(group, mask, data, data_type, dir, 325 file_name, cookie, iter_info); 326 } 327 328 return fsnotify_handle_event(group, mask, data, data_type, dir, 329 file_name, cookie, iter_info); 330 } 331 332 static struct fsnotify_mark *fsnotify_first_mark(struct fsnotify_mark_connector **connp) 333 { 334 struct fsnotify_mark_connector *conn; 335 struct hlist_node *node = NULL; 336 337 conn = srcu_dereference(*connp, &fsnotify_mark_srcu); 338 if (conn) 339 node = srcu_dereference(conn->list.first, &fsnotify_mark_srcu); 340 341 return hlist_entry_safe(node, struct fsnotify_mark, obj_list); 342 } 343 344 static struct fsnotify_mark *fsnotify_next_mark(struct fsnotify_mark *mark) 345 { 346 struct hlist_node *node = NULL; 347 348 if (mark) 349 node = srcu_dereference(mark->obj_list.next, 350 &fsnotify_mark_srcu); 351 352 return hlist_entry_safe(node, struct fsnotify_mark, obj_list); 353 } 354 355 /* 356 * iter_info is a multi head priority queue of marks. 357 * Pick a subset of marks from queue heads, all with the 358 * same group and set the report_mask for selected subset. 359 * Returns the report_mask of the selected subset. 360 */ 361 static unsigned int fsnotify_iter_select_report_types( 362 struct fsnotify_iter_info *iter_info) 363 { 364 struct fsnotify_group *max_prio_group = NULL; 365 struct fsnotify_mark *mark; 366 int type; 367 368 /* Choose max prio group among groups of all queue heads */ 369 fsnotify_foreach_obj_type(type) { 370 mark = iter_info->marks[type]; 371 if (mark && 372 fsnotify_compare_groups(max_prio_group, mark->group) > 0) 373 max_prio_group = mark->group; 374 } 375 376 if (!max_prio_group) 377 return 0; 378 379 /* Set the report mask for marks from same group as max prio group */ 380 iter_info->report_mask = 0; 381 fsnotify_foreach_obj_type(type) { 382 mark = iter_info->marks[type]; 383 if (mark && 384 fsnotify_compare_groups(max_prio_group, mark->group) == 0) 385 fsnotify_iter_set_report_type(iter_info, type); 386 } 387 388 return iter_info->report_mask; 389 } 390 391 /* 392 * Pop from iter_info multi head queue, the marks that were iterated in the 393 * current iteration step. 394 */ 395 static void fsnotify_iter_next(struct fsnotify_iter_info *iter_info) 396 { 397 int type; 398 399 fsnotify_foreach_obj_type(type) { 400 if (fsnotify_iter_should_report_type(iter_info, type)) 401 iter_info->marks[type] = 402 fsnotify_next_mark(iter_info->marks[type]); 403 } 404 } 405 406 /* 407 * fsnotify - This is the main call to fsnotify. 408 * 409 * The VFS calls into hook specific functions in linux/fsnotify.h. 410 * Those functions then in turn call here. Here will call out to all of the 411 * registered fsnotify_group. Those groups can then use the notification event 412 * in whatever means they feel necessary. 413 * 414 * @mask: event type and flags 415 * @data: object that event happened on 416 * @data_type: type of object for fanotify_data_XXX() accessors 417 * @dir: optional directory associated with event - 418 * if @file_name is not NULL, this is the directory that 419 * @file_name is relative to 420 * @file_name: optional file name associated with event 421 * @inode: optional inode associated with event - 422 * either @dir or @inode must be non-NULL. 423 * if both are non-NULL event may be reported to both. 424 * @cookie: inotify rename cookie 425 */ 426 int fsnotify(__u32 mask, const void *data, int data_type, struct inode *dir, 427 const struct qstr *file_name, struct inode *inode, u32 cookie) 428 { 429 const struct path *path = fsnotify_data_path(data, data_type); 430 struct fsnotify_iter_info iter_info = {}; 431 struct super_block *sb; 432 struct mount *mnt = NULL; 433 struct inode *child = NULL; 434 int ret = 0; 435 __u32 test_mask, marks_mask; 436 437 if (path) 438 mnt = real_mount(path->mnt); 439 440 if (!inode) { 441 /* Dirent event - report on TYPE_INODE to dir */ 442 inode = dir; 443 } else if (mask & FS_EVENT_ON_CHILD) { 444 /* 445 * Event on child - report on TYPE_INODE to dir if it is 446 * watching children and on TYPE_CHILD to child. 447 */ 448 child = inode; 449 inode = dir; 450 } 451 sb = inode->i_sb; 452 453 /* 454 * Optimization: srcu_read_lock() has a memory barrier which can 455 * be expensive. It protects walking the *_fsnotify_marks lists. 456 * However, if we do not walk the lists, we do not have to do 457 * SRCU because we have no references to any objects and do not 458 * need SRCU to keep them "alive". 459 */ 460 if (!sb->s_fsnotify_marks && 461 (!mnt || !mnt->mnt_fsnotify_marks) && 462 (!inode || !inode->i_fsnotify_marks) && 463 (!child || !child->i_fsnotify_marks)) 464 return 0; 465 466 marks_mask = sb->s_fsnotify_mask; 467 if (mnt) 468 marks_mask |= mnt->mnt_fsnotify_mask; 469 if (inode) 470 marks_mask |= inode->i_fsnotify_mask; 471 if (child) 472 marks_mask |= child->i_fsnotify_mask; 473 474 475 /* 476 * if this is a modify event we may need to clear the ignored masks 477 * otherwise return if none of the marks care about this type of event. 478 */ 479 test_mask = (mask & ALL_FSNOTIFY_EVENTS); 480 if (!(mask & FS_MODIFY) && !(test_mask & marks_mask)) 481 return 0; 482 483 iter_info.srcu_idx = srcu_read_lock(&fsnotify_mark_srcu); 484 485 iter_info.marks[FSNOTIFY_OBJ_TYPE_SB] = 486 fsnotify_first_mark(&sb->s_fsnotify_marks); 487 if (mnt) { 488 iter_info.marks[FSNOTIFY_OBJ_TYPE_VFSMOUNT] = 489 fsnotify_first_mark(&mnt->mnt_fsnotify_marks); 490 } 491 if (inode) { 492 iter_info.marks[FSNOTIFY_OBJ_TYPE_INODE] = 493 fsnotify_first_mark(&inode->i_fsnotify_marks); 494 } 495 if (child) { 496 iter_info.marks[FSNOTIFY_OBJ_TYPE_CHILD] = 497 fsnotify_first_mark(&child->i_fsnotify_marks); 498 } 499 500 /* 501 * We need to merge inode/vfsmount/sb mark lists so that e.g. inode mark 502 * ignore masks are properly reflected for mount/sb mark notifications. 503 * That's why this traversal is so complicated... 504 */ 505 while (fsnotify_iter_select_report_types(&iter_info)) { 506 ret = send_to_group(mask, data, data_type, dir, file_name, 507 cookie, &iter_info); 508 509 if (ret && (mask & ALL_FSNOTIFY_PERM_EVENTS)) 510 goto out; 511 512 fsnotify_iter_next(&iter_info); 513 } 514 ret = 0; 515 out: 516 srcu_read_unlock(&fsnotify_mark_srcu, iter_info.srcu_idx); 517 518 return ret; 519 } 520 EXPORT_SYMBOL_GPL(fsnotify); 521 522 static __init int fsnotify_init(void) 523 { 524 int ret; 525 526 BUILD_BUG_ON(HWEIGHT32(ALL_FSNOTIFY_BITS) != 25); 527 528 ret = init_srcu_struct(&fsnotify_mark_srcu); 529 if (ret) 530 panic("initializing fsnotify_mark_srcu"); 531 532 fsnotify_mark_connector_cachep = KMEM_CACHE(fsnotify_mark_connector, 533 SLAB_PANIC); 534 535 return 0; 536 } 537 core_initcall(fsnotify_init); 538