Merge branch 'akpm'
[linux-2.6/next.git] / fs / sysfs / dir.c
blobc3646d93a032b9b90e35830551b5b6ac7e7e1361
1 /*
2 * fs/sysfs/dir.c - sysfs core and dir operation implementation
4 * Copyright (c) 2001-3 Patrick Mochel
5 * Copyright (c) 2007 SUSE Linux Products GmbH
6 * Copyright (c) 2007 Tejun Heo <teheo@suse.de>
8 * This file is released under the GPLv2.
10 * Please see Documentation/filesystems/sysfs.txt for more information.
13 #undef DEBUG
15 #include <linux/fs.h>
16 #include <linux/mount.h>
17 #include <linux/module.h>
18 #include <linux/kobject.h>
19 #include <linux/namei.h>
20 #include <linux/idr.h>
21 #include <linux/completion.h>
22 #include <linux/mutex.h>
23 #include <linux/slab.h>
24 #include <linux/security.h>
25 #include "sysfs.h"
27 DEFINE_MUTEX(sysfs_mutex);
28 DEFINE_SPINLOCK(sysfs_assoc_lock);
30 static DEFINE_SPINLOCK(sysfs_ino_lock);
31 static DEFINE_IDA(sysfs_ino_ida);
33 /**
34 * sysfs_link_sibling - link sysfs_dirent into sibling list
35 * @sd: sysfs_dirent of interest
37 * Link @sd into its sibling list which starts from
38 * sd->s_parent->s_dir.children.
40 * Locking:
41 * mutex_lock(sysfs_mutex)
43 static void sysfs_link_sibling(struct sysfs_dirent *sd)
45 struct sysfs_dirent *parent_sd = sd->s_parent;
47 struct rb_node **p;
48 struct rb_node *parent;
50 if (sysfs_type(sd) == SYSFS_DIR)
51 parent_sd->s_dir.subdirs++;
53 p = &parent_sd->s_dir.inode_tree.rb_node;
54 parent = NULL;
55 while (*p) {
56 parent = *p;
57 #define node rb_entry(parent, struct sysfs_dirent, inode_node)
58 if (sd->s_ino < node->s_ino) {
59 p = &node->inode_node.rb_left;
60 } else if (sd->s_ino > node->s_ino) {
61 p = &node->inode_node.rb_right;
62 } else {
63 printk(KERN_CRIT "sysfs: inserting duplicate inode '%lx'\n", sd->s_ino);
64 BUG();
66 #undef node
68 rb_link_node(&sd->inode_node, parent, p);
69 rb_insert_color(&sd->inode_node, &parent_sd->s_dir.inode_tree);
71 p = &parent_sd->s_dir.name_tree.rb_node;
72 parent = NULL;
73 while (*p) {
74 int c;
75 parent = *p;
76 #define node rb_entry(parent, struct sysfs_dirent, name_node)
77 c = strcmp(sd->s_name, node->s_name);
78 if (c < 0) {
79 p = &node->name_node.rb_left;
80 } else {
81 p = &node->name_node.rb_right;
83 #undef node
85 rb_link_node(&sd->name_node, parent, p);
86 rb_insert_color(&sd->name_node, &parent_sd->s_dir.name_tree);
89 /**
90 * sysfs_unlink_sibling - unlink sysfs_dirent from sibling list
91 * @sd: sysfs_dirent of interest
93 * Unlink @sd from its sibling list which starts from
94 * sd->s_parent->s_dir.children.
96 * Locking:
97 * mutex_lock(sysfs_mutex)
99 static void sysfs_unlink_sibling(struct sysfs_dirent *sd)
101 if (sysfs_type(sd) == SYSFS_DIR)
102 sd->s_parent->s_dir.subdirs--;
104 rb_erase(&sd->inode_node, &sd->s_parent->s_dir.inode_tree);
105 rb_erase(&sd->name_node, &sd->s_parent->s_dir.name_tree);
109 * sysfs_get_active - get an active reference to sysfs_dirent
110 * @sd: sysfs_dirent to get an active reference to
112 * Get an active reference of @sd. This function is noop if @sd
113 * is NULL.
115 * RETURNS:
116 * Pointer to @sd on success, NULL on failure.
118 struct sysfs_dirent *sysfs_get_active(struct sysfs_dirent *sd)
120 if (unlikely(!sd))
121 return NULL;
123 while (1) {
124 int v, t;
126 v = atomic_read(&sd->s_active);
127 if (unlikely(v < 0))
128 return NULL;
130 t = atomic_cmpxchg(&sd->s_active, v, v + 1);
131 if (likely(t == v)) {
132 rwsem_acquire_read(&sd->dep_map, 0, 1, _RET_IP_);
133 return sd;
135 if (t < 0)
136 return NULL;
138 cpu_relax();
143 * sysfs_put_active - put an active reference to sysfs_dirent
144 * @sd: sysfs_dirent to put an active reference to
146 * Put an active reference to @sd. This function is noop if @sd
147 * is NULL.
149 void sysfs_put_active(struct sysfs_dirent *sd)
151 int v;
153 if (unlikely(!sd))
154 return;
156 rwsem_release(&sd->dep_map, 1, _RET_IP_);
157 v = atomic_dec_return(&sd->s_active);
158 if (likely(v != SD_DEACTIVATED_BIAS))
159 return;
161 /* atomic_dec_return() is a mb(), we'll always see the updated
162 * sd->u.completion.
164 complete(sd->u.completion);
168 * sysfs_deactivate - deactivate sysfs_dirent
169 * @sd: sysfs_dirent to deactivate
171 * Deny new active references and drain existing ones.
173 static void sysfs_deactivate(struct sysfs_dirent *sd)
175 DECLARE_COMPLETION_ONSTACK(wait);
176 int v;
178 BUG_ON(!(sd->s_flags & SYSFS_FLAG_REMOVED));
180 if (!(sysfs_type(sd) & SYSFS_ACTIVE_REF))
181 return;
183 sd->u.completion = (void *)&wait;
185 rwsem_acquire(&sd->dep_map, 0, 0, _RET_IP_);
186 /* atomic_add_return() is a mb(), put_active() will always see
187 * the updated sd->u.completion.
189 v = atomic_add_return(SD_DEACTIVATED_BIAS, &sd->s_active);
191 if (v != SD_DEACTIVATED_BIAS) {
192 lock_contended(&sd->dep_map, _RET_IP_);
193 wait_for_completion(&wait);
196 lock_acquired(&sd->dep_map, _RET_IP_);
197 rwsem_release(&sd->dep_map, 1, _RET_IP_);
200 static int sysfs_alloc_ino(ino_t *pino)
202 int ino, rc;
204 retry:
205 spin_lock(&sysfs_ino_lock);
206 rc = ida_get_new_above(&sysfs_ino_ida, 2, &ino);
207 spin_unlock(&sysfs_ino_lock);
209 if (rc == -EAGAIN) {
210 if (ida_pre_get(&sysfs_ino_ida, GFP_KERNEL))
211 goto retry;
212 rc = -ENOMEM;
215 *pino = ino;
216 return rc;
219 static void sysfs_free_ino(ino_t ino)
221 spin_lock(&sysfs_ino_lock);
222 ida_remove(&sysfs_ino_ida, ino);
223 spin_unlock(&sysfs_ino_lock);
226 void release_sysfs_dirent(struct sysfs_dirent * sd)
228 struct sysfs_dirent *parent_sd;
230 repeat:
231 /* Moving/renaming is always done while holding reference.
232 * sd->s_parent won't change beneath us.
234 parent_sd = sd->s_parent;
236 if (sysfs_type(sd) == SYSFS_KOBJ_LINK)
237 sysfs_put(sd->s_symlink.target_sd);
238 if (sysfs_type(sd) & SYSFS_COPY_NAME)
239 kfree(sd->s_name);
240 if (sd->s_iattr && sd->s_iattr->ia_secdata)
241 security_release_secctx(sd->s_iattr->ia_secdata,
242 sd->s_iattr->ia_secdata_len);
243 kfree(sd->s_iattr);
244 sysfs_free_ino(sd->s_ino);
245 kmem_cache_free(sysfs_dir_cachep, sd);
247 sd = parent_sd;
248 if (sd && atomic_dec_and_test(&sd->s_count))
249 goto repeat;
252 static int sysfs_dentry_delete(const struct dentry *dentry)
254 struct sysfs_dirent *sd = dentry->d_fsdata;
255 return !!(sd->s_flags & SYSFS_FLAG_REMOVED);
258 static int sysfs_dentry_revalidate(struct dentry *dentry, struct nameidata *nd)
260 struct sysfs_dirent *sd;
261 int is_dir;
263 if (nd->flags & LOOKUP_RCU)
264 return -ECHILD;
266 sd = dentry->d_fsdata;
267 mutex_lock(&sysfs_mutex);
269 /* The sysfs dirent has been deleted */
270 if (sd->s_flags & SYSFS_FLAG_REMOVED)
271 goto out_bad;
273 /* The sysfs dirent has been moved? */
274 if (dentry->d_parent->d_fsdata != sd->s_parent)
275 goto out_bad;
277 /* The sysfs dirent has been renamed */
278 if (strcmp(dentry->d_name.name, sd->s_name) != 0)
279 goto out_bad;
281 mutex_unlock(&sysfs_mutex);
282 out_valid:
283 return 1;
284 out_bad:
285 /* Remove the dentry from the dcache hashes.
286 * If this is a deleted dentry we use d_drop instead of d_delete
287 * so sysfs doesn't need to cope with negative dentries.
289 * If this is a dentry that has simply been renamed we
290 * use d_drop to remove it from the dcache lookup on its
291 * old parent. If this dentry persists later when a lookup
292 * is performed at its new name the dentry will be readded
293 * to the dcache hashes.
295 is_dir = (sysfs_type(sd) == SYSFS_DIR);
296 mutex_unlock(&sysfs_mutex);
297 if (is_dir) {
298 /* If we have submounts we must allow the vfs caches
299 * to lie about the state of the filesystem to prevent
300 * leaks and other nasty things.
302 if (have_submounts(dentry))
303 goto out_valid;
304 shrink_dcache_parent(dentry);
306 d_drop(dentry);
307 return 0;
310 static void sysfs_dentry_iput(struct dentry *dentry, struct inode *inode)
312 struct sysfs_dirent * sd = dentry->d_fsdata;
314 sysfs_put(sd);
315 iput(inode);
318 static const struct dentry_operations sysfs_dentry_ops = {
319 .d_revalidate = sysfs_dentry_revalidate,
320 .d_delete = sysfs_dentry_delete,
321 .d_iput = sysfs_dentry_iput,
324 struct sysfs_dirent *sysfs_new_dirent(const char *name, umode_t mode, int type)
326 char *dup_name = NULL;
327 struct sysfs_dirent *sd;
329 if (type & SYSFS_COPY_NAME) {
330 name = dup_name = kstrdup(name, GFP_KERNEL);
331 if (!name)
332 return NULL;
335 sd = kmem_cache_zalloc(sysfs_dir_cachep, GFP_KERNEL);
336 if (!sd)
337 goto err_out1;
339 if (sysfs_alloc_ino(&sd->s_ino))
340 goto err_out2;
342 atomic_set(&sd->s_count, 1);
343 atomic_set(&sd->s_active, 0);
345 sd->s_name = name;
346 sd->s_mode = mode;
347 sd->s_flags = type;
349 return sd;
351 err_out2:
352 kmem_cache_free(sysfs_dir_cachep, sd);
353 err_out1:
354 kfree(dup_name);
355 return NULL;
359 * sysfs_addrm_start - prepare for sysfs_dirent add/remove
360 * @acxt: pointer to sysfs_addrm_cxt to be used
361 * @parent_sd: parent sysfs_dirent
363 * This function is called when the caller is about to add or
364 * remove sysfs_dirent under @parent_sd. This function acquires
365 * sysfs_mutex. @acxt is used to keep and pass context to
366 * other addrm functions.
368 * LOCKING:
369 * Kernel thread context (may sleep). sysfs_mutex is locked on
370 * return.
372 void sysfs_addrm_start(struct sysfs_addrm_cxt *acxt,
373 struct sysfs_dirent *parent_sd)
375 memset(acxt, 0, sizeof(*acxt));
376 acxt->parent_sd = parent_sd;
378 mutex_lock(&sysfs_mutex);
382 * __sysfs_add_one - add sysfs_dirent to parent without warning
383 * @acxt: addrm context to use
384 * @sd: sysfs_dirent to be added
386 * Get @acxt->parent_sd and set sd->s_parent to it and increment
387 * nlink of parent inode if @sd is a directory and link into the
388 * children list of the parent.
390 * This function should be called between calls to
391 * sysfs_addrm_start() and sysfs_addrm_finish() and should be
392 * passed the same @acxt as passed to sysfs_addrm_start().
394 * LOCKING:
395 * Determined by sysfs_addrm_start().
397 * RETURNS:
398 * 0 on success, -EEXIST if entry with the given name already
399 * exists.
401 int __sysfs_add_one(struct sysfs_addrm_cxt *acxt, struct sysfs_dirent *sd)
403 struct sysfs_inode_attrs *ps_iattr;
405 if (sysfs_find_dirent(acxt->parent_sd, sd->s_ns, sd->s_name))
406 return -EEXIST;
408 sd->s_parent = sysfs_get(acxt->parent_sd);
410 sysfs_link_sibling(sd);
412 /* Update timestamps on the parent */
413 ps_iattr = acxt->parent_sd->s_iattr;
414 if (ps_iattr) {
415 struct iattr *ps_iattrs = &ps_iattr->ia_iattr;
416 ps_iattrs->ia_ctime = ps_iattrs->ia_mtime = CURRENT_TIME;
419 return 0;
423 * sysfs_pathname - return full path to sysfs dirent
424 * @sd: sysfs_dirent whose path we want
425 * @path: caller allocated buffer
427 * Gives the name "/" to the sysfs_root entry; any path returned
428 * is relative to wherever sysfs is mounted.
430 * XXX: does no error checking on @path size
432 static char *sysfs_pathname(struct sysfs_dirent *sd, char *path)
434 if (sd->s_parent) {
435 sysfs_pathname(sd->s_parent, path);
436 strcat(path, "/");
438 strcat(path, sd->s_name);
439 return path;
443 * sysfs_add_one - add sysfs_dirent to parent
444 * @acxt: addrm context to use
445 * @sd: sysfs_dirent to be added
447 * Get @acxt->parent_sd and set sd->s_parent to it and increment
448 * nlink of parent inode if @sd is a directory and link into the
449 * children list of the parent.
451 * This function should be called between calls to
452 * sysfs_addrm_start() and sysfs_addrm_finish() and should be
453 * passed the same @acxt as passed to sysfs_addrm_start().
455 * LOCKING:
456 * Determined by sysfs_addrm_start().
458 * RETURNS:
459 * 0 on success, -EEXIST if entry with the given name already
460 * exists.
462 int sysfs_add_one(struct sysfs_addrm_cxt *acxt, struct sysfs_dirent *sd)
464 int ret;
466 ret = __sysfs_add_one(acxt, sd);
467 if (ret == -EEXIST) {
468 char *path = kzalloc(PATH_MAX, GFP_KERNEL);
469 WARN(1, KERN_WARNING
470 "sysfs: cannot create duplicate filename '%s'\n",
471 (path == NULL) ? sd->s_name :
472 strcat(strcat(sysfs_pathname(acxt->parent_sd, path), "/"),
473 sd->s_name));
474 kfree(path);
477 return ret;
481 * sysfs_remove_one - remove sysfs_dirent from parent
482 * @acxt: addrm context to use
483 * @sd: sysfs_dirent to be removed
485 * Mark @sd removed and drop nlink of parent inode if @sd is a
486 * directory. @sd is unlinked from the children list.
488 * This function should be called between calls to
489 * sysfs_addrm_start() and sysfs_addrm_finish() and should be
490 * passed the same @acxt as passed to sysfs_addrm_start().
492 * LOCKING:
493 * Determined by sysfs_addrm_start().
495 void sysfs_remove_one(struct sysfs_addrm_cxt *acxt, struct sysfs_dirent *sd)
497 struct sysfs_inode_attrs *ps_iattr;
499 BUG_ON(sd->s_flags & SYSFS_FLAG_REMOVED);
501 sysfs_unlink_sibling(sd);
503 /* Update timestamps on the parent */
504 ps_iattr = acxt->parent_sd->s_iattr;
505 if (ps_iattr) {
506 struct iattr *ps_iattrs = &ps_iattr->ia_iattr;
507 ps_iattrs->ia_ctime = ps_iattrs->ia_mtime = CURRENT_TIME;
510 sd->s_flags |= SYSFS_FLAG_REMOVED;
511 sd->u.removed_list = acxt->removed;
512 acxt->removed = sd;
516 * sysfs_addrm_finish - finish up sysfs_dirent add/remove
517 * @acxt: addrm context to finish up
519 * Finish up sysfs_dirent add/remove. Resources acquired by
520 * sysfs_addrm_start() are released and removed sysfs_dirents are
521 * cleaned up.
523 * LOCKING:
524 * sysfs_mutex is released.
526 void sysfs_addrm_finish(struct sysfs_addrm_cxt *acxt)
528 /* release resources acquired by sysfs_addrm_start() */
529 mutex_unlock(&sysfs_mutex);
531 /* kill removed sysfs_dirents */
532 while (acxt->removed) {
533 struct sysfs_dirent *sd = acxt->removed;
535 acxt->removed = sd->u.removed_list;
537 sysfs_deactivate(sd);
538 unmap_bin_file(sd);
539 sysfs_put(sd);
544 * sysfs_find_dirent - find sysfs_dirent with the given name
545 * @parent_sd: sysfs_dirent to search under
546 * @name: name to look for
548 * Look for sysfs_dirent with name @name under @parent_sd.
550 * LOCKING:
551 * mutex_lock(sysfs_mutex)
553 * RETURNS:
554 * Pointer to sysfs_dirent if found, NULL if not.
556 struct sysfs_dirent *sysfs_find_dirent(struct sysfs_dirent *parent_sd,
557 const void *ns,
558 const unsigned char *name)
560 struct rb_node *p = parent_sd->s_dir.name_tree.rb_node;
561 struct sysfs_dirent *found = NULL;
563 while (p) {
564 int c;
565 #define node rb_entry(p, struct sysfs_dirent, name_node)
566 c = strcmp(name, node->s_name);
567 if (c < 0) {
568 p = node->name_node.rb_left;
569 } else if (c > 0) {
570 p = node->name_node.rb_right;
571 } else {
572 found = node;
573 p = node->name_node.rb_left;
575 #undef node
578 if (found && ns) {
579 while (found->s_ns && found->s_ns != ns) {
580 p = rb_next(&found->name_node);
581 if (!p)
582 return NULL;
583 found = rb_entry(p, struct sysfs_dirent, name_node);
584 if (strcmp(name, found->s_name))
585 return NULL;
589 return found;
593 * sysfs_get_dirent - find and get sysfs_dirent with the given name
594 * @parent_sd: sysfs_dirent to search under
595 * @name: name to look for
597 * Look for sysfs_dirent with name @name under @parent_sd and get
598 * it if found.
600 * LOCKING:
601 * Kernel thread context (may sleep). Grabs sysfs_mutex.
603 * RETURNS:
604 * Pointer to sysfs_dirent if found, NULL if not.
606 struct sysfs_dirent *sysfs_get_dirent(struct sysfs_dirent *parent_sd,
607 const void *ns,
608 const unsigned char *name)
610 struct sysfs_dirent *sd;
612 mutex_lock(&sysfs_mutex);
613 sd = sysfs_find_dirent(parent_sd, ns, name);
614 sysfs_get(sd);
615 mutex_unlock(&sysfs_mutex);
617 return sd;
619 EXPORT_SYMBOL_GPL(sysfs_get_dirent);
621 static int create_dir(struct kobject *kobj, struct sysfs_dirent *parent_sd,
622 enum kobj_ns_type type, const void *ns, const char *name,
623 struct sysfs_dirent **p_sd)
625 umode_t mode = S_IFDIR| S_IRWXU | S_IRUGO | S_IXUGO;
626 struct sysfs_addrm_cxt acxt;
627 struct sysfs_dirent *sd;
628 int rc;
630 /* allocate */
631 sd = sysfs_new_dirent(name, mode, SYSFS_DIR);
632 if (!sd)
633 return -ENOMEM;
635 sd->s_flags |= (type << SYSFS_NS_TYPE_SHIFT);
636 sd->s_ns = ns;
637 sd->s_dir.kobj = kobj;
639 /* link in */
640 sysfs_addrm_start(&acxt, parent_sd);
641 rc = sysfs_add_one(&acxt, sd);
642 sysfs_addrm_finish(&acxt);
644 if (rc == 0)
645 *p_sd = sd;
646 else
647 sysfs_put(sd);
649 return rc;
652 int sysfs_create_subdir(struct kobject *kobj, const char *name,
653 struct sysfs_dirent **p_sd)
655 return create_dir(kobj, kobj->sd,
656 KOBJ_NS_TYPE_NONE, NULL, name, p_sd);
660 * sysfs_read_ns_type: return associated ns_type
661 * @kobj: the kobject being queried
663 * Each kobject can be tagged with exactly one namespace type
664 * (i.e. network or user). Return the ns_type associated with
665 * this object if any
667 static enum kobj_ns_type sysfs_read_ns_type(struct kobject *kobj)
669 const struct kobj_ns_type_operations *ops;
670 enum kobj_ns_type type;
672 ops = kobj_child_ns_ops(kobj);
673 if (!ops)
674 return KOBJ_NS_TYPE_NONE;
676 type = ops->type;
677 BUG_ON(type <= KOBJ_NS_TYPE_NONE);
678 BUG_ON(type >= KOBJ_NS_TYPES);
679 BUG_ON(!kobj_ns_type_registered(type));
681 return type;
685 * sysfs_create_dir - create a directory for an object.
686 * @kobj: object we're creating directory for.
688 int sysfs_create_dir(struct kobject * kobj)
690 enum kobj_ns_type type;
691 struct sysfs_dirent *parent_sd, *sd;
692 const void *ns = NULL;
693 int error = 0;
695 BUG_ON(!kobj);
697 if (kobj->parent)
698 parent_sd = kobj->parent->sd;
699 else
700 parent_sd = &sysfs_root;
702 if (sysfs_ns_type(parent_sd))
703 ns = kobj->ktype->namespace(kobj);
704 type = sysfs_read_ns_type(kobj);
706 error = create_dir(kobj, parent_sd, type, ns, kobject_name(kobj), &sd);
707 if (!error)
708 kobj->sd = sd;
709 return error;
712 static struct dentry * sysfs_lookup(struct inode *dir, struct dentry *dentry,
713 struct nameidata *nd)
715 struct dentry *ret = NULL;
716 struct dentry *parent = dentry->d_parent;
717 struct sysfs_dirent *parent_sd = parent->d_fsdata;
718 struct sysfs_dirent *sd;
719 struct inode *inode;
720 enum kobj_ns_type type;
721 const void *ns;
723 mutex_lock(&sysfs_mutex);
725 type = sysfs_ns_type(parent_sd);
726 ns = sysfs_info(dir->i_sb)->ns[type];
728 sd = sysfs_find_dirent(parent_sd, ns, dentry->d_name.name);
730 /* no such entry */
731 if (!sd) {
732 ret = ERR_PTR(-ENOENT);
733 goto out_unlock;
736 /* attach dentry and inode */
737 inode = sysfs_get_inode(dir->i_sb, sd);
738 if (!inode) {
739 ret = ERR_PTR(-ENOMEM);
740 goto out_unlock;
743 /* instantiate and hash dentry */
744 ret = d_find_alias(inode);
745 if (!ret) {
746 d_set_d_op(dentry, &sysfs_dentry_ops);
747 dentry->d_fsdata = sysfs_get(sd);
748 d_add(dentry, inode);
749 } else {
750 d_move(ret, dentry);
751 iput(inode);
754 out_unlock:
755 mutex_unlock(&sysfs_mutex);
756 return ret;
759 const struct inode_operations sysfs_dir_inode_operations = {
760 .lookup = sysfs_lookup,
761 .permission = sysfs_permission,
762 .setattr = sysfs_setattr,
763 .getattr = sysfs_getattr,
764 .setxattr = sysfs_setxattr,
767 static void remove_dir(struct sysfs_dirent *sd)
769 struct sysfs_addrm_cxt acxt;
771 sysfs_addrm_start(&acxt, sd->s_parent);
772 sysfs_remove_one(&acxt, sd);
773 sysfs_addrm_finish(&acxt);
776 void sysfs_remove_subdir(struct sysfs_dirent *sd)
778 remove_dir(sd);
782 static void __sysfs_remove_dir(struct sysfs_dirent *dir_sd)
784 struct sysfs_addrm_cxt acxt;
785 struct rb_node *pos;
787 if (!dir_sd)
788 return;
790 pr_debug("sysfs %s: removing dir\n", dir_sd->s_name);
791 sysfs_addrm_start(&acxt, dir_sd);
792 pos = rb_first(&dir_sd->s_dir.inode_tree);
793 while (pos) {
794 struct sysfs_dirent *sd = rb_entry(pos, struct sysfs_dirent, inode_node);
795 pos = rb_next(pos);
796 if (sysfs_type(sd) != SYSFS_DIR)
797 sysfs_remove_one(&acxt, sd);
799 sysfs_addrm_finish(&acxt);
801 remove_dir(dir_sd);
805 * sysfs_remove_dir - remove an object's directory.
806 * @kobj: object.
808 * The only thing special about this is that we remove any files in
809 * the directory before we remove the directory, and we've inlined
810 * what used to be sysfs_rmdir() below, instead of calling separately.
813 void sysfs_remove_dir(struct kobject * kobj)
815 struct sysfs_dirent *sd = kobj->sd;
817 spin_lock(&sysfs_assoc_lock);
818 kobj->sd = NULL;
819 spin_unlock(&sysfs_assoc_lock);
821 __sysfs_remove_dir(sd);
824 int sysfs_rename(struct sysfs_dirent *sd,
825 struct sysfs_dirent *new_parent_sd, const void *new_ns,
826 const char *new_name)
828 const char *dup_name = NULL;
829 int error;
831 mutex_lock(&sysfs_mutex);
833 error = 0;
834 if ((sd->s_parent == new_parent_sd) && (sd->s_ns == new_ns) &&
835 (strcmp(sd->s_name, new_name) == 0))
836 goto out; /* nothing to rename */
838 error = -EEXIST;
839 if (sysfs_find_dirent(new_parent_sd, new_ns, new_name))
840 goto out;
842 /* rename sysfs_dirent */
843 if (strcmp(sd->s_name, new_name) != 0) {
844 error = -ENOMEM;
845 new_name = dup_name = kstrdup(new_name, GFP_KERNEL);
846 if (!new_name)
847 goto out;
849 dup_name = sd->s_name;
850 sd->s_name = new_name;
853 /* Remove from old parent's list and insert into new parent's list. */
854 if (sd->s_parent != new_parent_sd) {
855 sysfs_unlink_sibling(sd);
856 sysfs_get(new_parent_sd);
857 sysfs_put(sd->s_parent);
858 sd->s_parent = new_parent_sd;
859 sysfs_link_sibling(sd);
861 sd->s_ns = new_ns;
863 error = 0;
864 out:
865 mutex_unlock(&sysfs_mutex);
866 kfree(dup_name);
867 return error;
870 int sysfs_rename_dir(struct kobject *kobj, const char *new_name)
872 struct sysfs_dirent *parent_sd = kobj->sd->s_parent;
873 const void *new_ns = NULL;
875 if (sysfs_ns_type(parent_sd))
876 new_ns = kobj->ktype->namespace(kobj);
878 return sysfs_rename(kobj->sd, parent_sd, new_ns, new_name);
881 int sysfs_move_dir(struct kobject *kobj, struct kobject *new_parent_kobj)
883 struct sysfs_dirent *sd = kobj->sd;
884 struct sysfs_dirent *new_parent_sd;
885 const void *new_ns = NULL;
887 BUG_ON(!sd->s_parent);
888 if (sysfs_ns_type(sd->s_parent))
889 new_ns = kobj->ktype->namespace(kobj);
890 new_parent_sd = new_parent_kobj && new_parent_kobj->sd ?
891 new_parent_kobj->sd : &sysfs_root;
893 return sysfs_rename(sd, new_parent_sd, new_ns, sd->s_name);
896 /* Relationship between s_mode and the DT_xxx types */
897 static inline unsigned char dt_type(struct sysfs_dirent *sd)
899 return (sd->s_mode >> 12) & 15;
902 static int sysfs_dir_release(struct inode *inode, struct file *filp)
904 sysfs_put(filp->private_data);
905 return 0;
908 static struct sysfs_dirent *sysfs_dir_pos(const void *ns,
909 struct sysfs_dirent *parent_sd, ino_t ino, struct sysfs_dirent *pos)
911 if (pos) {
912 int valid = !(pos->s_flags & SYSFS_FLAG_REMOVED) &&
913 pos->s_parent == parent_sd &&
914 ino == pos->s_ino;
915 sysfs_put(pos);
916 if (!valid)
917 pos = NULL;
919 if (!pos && (ino > 1) && (ino < INT_MAX)) {
920 struct rb_node *p = parent_sd->s_dir.inode_tree.rb_node;
921 while (p) {
922 #define node rb_entry(p, struct sysfs_dirent, inode_node)
923 if (ino < node->s_ino) {
924 pos = node;
925 p = node->inode_node.rb_left;
926 } else if (ino > node->s_ino) {
927 p = node->inode_node.rb_right;
928 } else {
929 pos = node;
930 break;
932 #undef node
935 while (pos && pos->s_ns && pos->s_ns != ns) {
936 struct rb_node *p = rb_next(&pos->inode_node);
937 if (!p)
938 pos = NULL;
939 else
940 pos = rb_entry(p, struct sysfs_dirent, inode_node);
942 return pos;
945 static struct sysfs_dirent *sysfs_dir_next_pos(const void *ns,
946 struct sysfs_dirent *parent_sd, ino_t ino, struct sysfs_dirent *pos)
948 pos = sysfs_dir_pos(ns, parent_sd, ino, pos);
949 if (pos) do {
950 struct rb_node *p = rb_next(&pos->inode_node);
951 if (!p)
952 pos = NULL;
953 else
954 pos = rb_entry(p, struct sysfs_dirent, inode_node);
955 } while (pos && pos->s_ns && pos->s_ns != ns);
956 return pos;
959 static int sysfs_readdir(struct file * filp, void * dirent, filldir_t filldir)
961 struct dentry *dentry = filp->f_path.dentry;
962 struct sysfs_dirent * parent_sd = dentry->d_fsdata;
963 struct sysfs_dirent *pos = filp->private_data;
964 enum kobj_ns_type type;
965 const void *ns;
966 ino_t ino;
968 type = sysfs_ns_type(parent_sd);
969 ns = sysfs_info(dentry->d_sb)->ns[type];
971 if (filp->f_pos == 0) {
972 ino = parent_sd->s_ino;
973 if (filldir(dirent, ".", 1, filp->f_pos, ino, DT_DIR) == 0)
974 filp->f_pos++;
976 if (filp->f_pos == 1) {
977 if (parent_sd->s_parent)
978 ino = parent_sd->s_parent->s_ino;
979 else
980 ino = parent_sd->s_ino;
981 if (filldir(dirent, "..", 2, filp->f_pos, ino, DT_DIR) == 0)
982 filp->f_pos++;
984 mutex_lock(&sysfs_mutex);
985 for (pos = sysfs_dir_pos(ns, parent_sd, filp->f_pos, pos);
986 pos;
987 pos = sysfs_dir_next_pos(ns, parent_sd, filp->f_pos, pos)) {
988 const char * name;
989 unsigned int type;
990 int len, ret;
992 name = pos->s_name;
993 len = strlen(name);
994 ino = pos->s_ino;
995 type = dt_type(pos);
996 filp->f_pos = ino;
997 filp->private_data = sysfs_get(pos);
999 mutex_unlock(&sysfs_mutex);
1000 ret = filldir(dirent, name, len, filp->f_pos, ino, type);
1001 mutex_lock(&sysfs_mutex);
1002 if (ret < 0)
1003 break;
1005 mutex_unlock(&sysfs_mutex);
1006 if ((filp->f_pos > 1) && !pos) { /* EOF */
1007 filp->f_pos = INT_MAX;
1008 filp->private_data = NULL;
1010 return 0;
1014 const struct file_operations sysfs_dir_operations = {
1015 .read = generic_read_dir,
1016 .readdir = sysfs_readdir,
1017 .release = sysfs_dir_release,
1018 .llseek = generic_file_llseek,