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Tejun Heob8441ed2013-11-24 09:54:58 -05001/*
2 * fs/kernfs/mount.c - kernfs mount implementation
3 *
4 * Copyright (c) 2001-3 Patrick Mochel
5 * Copyright (c) 2007 SUSE Linux Products GmbH
6 * Copyright (c) 2007, 2013 Tejun Heo <tj@kernel.org>
7 *
8 * This file is released under the GPLv2.
9 */
Tejun Heofa736a92013-11-28 14:54:44 -050010
11#include <linux/fs.h>
12#include <linux/mount.h>
13#include <linux/init.h>
14#include <linux/magic.h>
15#include <linux/slab.h>
16#include <linux/pagemap.h>
Aditya Kalifb3c8312016-01-29 02:54:08 -060017#include <linux/namei.h>
Tejun Heofa736a92013-11-28 14:54:44 -050018
19#include "kernfs-internal.h"
20
Tejun Heoa797bfc2013-12-11 14:11:57 -050021struct kmem_cache *kernfs_node_cache;
Tejun Heofa736a92013-11-28 14:54:44 -050022
Tejun Heo6a7fed42014-02-03 14:09:10 -050023static int kernfs_sop_remount_fs(struct super_block *sb, int *flags, char *data)
24{
25 struct kernfs_root *root = kernfs_info(sb)->root;
26 struct kernfs_syscall_ops *scops = root->syscall_ops;
27
28 if (scops && scops->remount_fs)
29 return scops->remount_fs(root, flags, data);
30 return 0;
31}
32
33static int kernfs_sop_show_options(struct seq_file *sf, struct dentry *dentry)
34{
35 struct kernfs_root *root = kernfs_root(dentry->d_fsdata);
36 struct kernfs_syscall_ops *scops = root->syscall_ops;
37
38 if (scops && scops->show_options)
39 return scops->show_options(sf, root);
40 return 0;
41}
42
Li Zefanf41c5932014-02-14 16:57:27 +080043const struct super_operations kernfs_sops = {
Tejun Heofa736a92013-11-28 14:54:44 -050044 .statfs = simple_statfs,
45 .drop_inode = generic_delete_inode,
Tejun Heoc637b8a2013-12-11 14:11:58 -050046 .evict_inode = kernfs_evict_inode,
Tejun Heo6a7fed42014-02-03 14:09:10 -050047
48 .remount_fs = kernfs_sop_remount_fs,
49 .show_options = kernfs_sop_show_options,
Tejun Heofa736a92013-11-28 14:54:44 -050050};
51
Tejun Heo0c23b222014-02-03 14:09:15 -050052/**
53 * kernfs_root_from_sb - determine kernfs_root associated with a super_block
54 * @sb: the super_block in question
55 *
56 * Return the kernfs_root associated with @sb. If @sb is not a kernfs one,
57 * %NULL is returned.
58 */
59struct kernfs_root *kernfs_root_from_sb(struct super_block *sb)
60{
61 if (sb->s_op == &kernfs_sops)
62 return kernfs_info(sb)->root;
63 return NULL;
64}
65
Aditya Kalifb3c8312016-01-29 02:54:08 -060066/*
67 * find the next ancestor in the path down to @child, where @parent was the
68 * ancestor whose descendant we want to find.
69 *
70 * Say the path is /a/b/c/d. @child is d, @parent is NULL. We return the root
71 * node. If @parent is b, then we return the node for c.
72 * Passing in d as @parent is not ok.
73 */
74static struct kernfs_node *find_next_ancestor(struct kernfs_node *child,
75 struct kernfs_node *parent)
76{
77 if (child == parent) {
78 pr_crit_once("BUG in find_next_ancestor: called with parent == child");
79 return NULL;
80 }
81
82 while (child->parent != parent) {
83 if (!child->parent)
84 return NULL;
85 child = child->parent;
86 }
87
88 return child;
89}
90
91/**
92 * kernfs_node_dentry - get a dentry for the given kernfs_node
93 * @kn: kernfs_node for which a dentry is needed
94 * @sb: the kernfs super_block
95 */
96struct dentry *kernfs_node_dentry(struct kernfs_node *kn,
97 struct super_block *sb)
98{
99 struct dentry *dentry;
100 struct kernfs_node *knparent = NULL;
101
102 BUG_ON(sb->s_op != &kernfs_sops);
103
104 dentry = dget(sb->s_root);
105
106 /* Check if this is the root kernfs_node */
107 if (!kn->parent)
108 return dentry;
109
110 knparent = find_next_ancestor(kn, NULL);
111 if (WARN_ON(!knparent))
112 return ERR_PTR(-EINVAL);
113
114 do {
115 struct dentry *dtmp;
116 struct kernfs_node *kntmp;
117
118 if (kn == knparent)
119 return dentry;
120 kntmp = find_next_ancestor(kn, knparent);
121 if (WARN_ON(!kntmp))
122 return ERR_PTR(-EINVAL);
Al Viro779b8392016-04-11 08:42:55 -0400123 dtmp = lookup_one_len_unlocked(kntmp->name, dentry,
124 strlen(kntmp->name));
Aditya Kalifb3c8312016-01-29 02:54:08 -0600125 dput(dentry);
126 if (IS_ERR(dtmp))
127 return dtmp;
128 knparent = kntmp;
129 dentry = dtmp;
130 } while (true);
131}
132
Jianyu Zhan26fc9cd2014-04-26 15:40:28 +0800133static int kernfs_fill_super(struct super_block *sb, unsigned long magic)
Tejun Heofa736a92013-11-28 14:54:44 -0500134{
Tejun Heoc525aad2013-12-11 14:11:55 -0500135 struct kernfs_super_info *info = kernfs_info(sb);
Tejun Heofa736a92013-11-28 14:54:44 -0500136 struct inode *inode;
137 struct dentry *root;
138
Tejun Heo7d568a82014-04-09 11:07:30 -0400139 info->sb = sb;
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300140 sb->s_blocksize = PAGE_SIZE;
141 sb->s_blocksize_bits = PAGE_SHIFT;
Jianyu Zhan26fc9cd2014-04-26 15:40:28 +0800142 sb->s_magic = magic;
Tejun Heoa797bfc2013-12-11 14:11:57 -0500143 sb->s_op = &kernfs_sops;
Tejun Heofa736a92013-11-28 14:54:44 -0500144 sb->s_time_gran = 1;
145
146 /* get root inode, initialize and unlock it */
Tejun Heoa797bfc2013-12-11 14:11:57 -0500147 mutex_lock(&kernfs_mutex);
Tejun Heoc637b8a2013-12-11 14:11:58 -0500148 inode = kernfs_get_inode(sb, info->root->kn);
Tejun Heoa797bfc2013-12-11 14:11:57 -0500149 mutex_unlock(&kernfs_mutex);
Tejun Heofa736a92013-11-28 14:54:44 -0500150 if (!inode) {
Tejun Heoc637b8a2013-12-11 14:11:58 -0500151 pr_debug("kernfs: could not get root inode\n");
Tejun Heofa736a92013-11-28 14:54:44 -0500152 return -ENOMEM;
153 }
154
155 /* instantiate and link root dentry */
156 root = d_make_root(inode);
157 if (!root) {
158 pr_debug("%s: could not get root dentry!\n", __func__);
159 return -ENOMEM;
160 }
Tejun Heo324a56e2013-12-11 14:11:53 -0500161 kernfs_get(info->root->kn);
162 root->d_fsdata = info->root->kn;
Tejun Heofa736a92013-11-28 14:54:44 -0500163 sb->s_root = root;
Tejun Heoa797bfc2013-12-11 14:11:57 -0500164 sb->s_d_op = &kernfs_dops;
Tejun Heofa736a92013-11-28 14:54:44 -0500165 return 0;
166}
167
Tejun Heoc637b8a2013-12-11 14:11:58 -0500168static int kernfs_test_super(struct super_block *sb, void *data)
Tejun Heofa736a92013-11-28 14:54:44 -0500169{
Tejun Heoc525aad2013-12-11 14:11:55 -0500170 struct kernfs_super_info *sb_info = kernfs_info(sb);
171 struct kernfs_super_info *info = data;
Tejun Heofa736a92013-11-28 14:54:44 -0500172
173 return sb_info->root == info->root && sb_info->ns == info->ns;
174}
175
Tejun Heoc637b8a2013-12-11 14:11:58 -0500176static int kernfs_set_super(struct super_block *sb, void *data)
Tejun Heofa736a92013-11-28 14:54:44 -0500177{
178 int error;
179 error = set_anon_super(sb, data);
180 if (!error)
181 sb->s_fs_info = data;
182 return error;
183}
184
185/**
186 * kernfs_super_ns - determine the namespace tag of a kernfs super_block
187 * @sb: super_block of interest
188 *
189 * Return the namespace tag associated with kernfs super_block @sb.
190 */
191const void *kernfs_super_ns(struct super_block *sb)
192{
Tejun Heoc525aad2013-12-11 14:11:55 -0500193 struct kernfs_super_info *info = kernfs_info(sb);
Tejun Heofa736a92013-11-28 14:54:44 -0500194
195 return info->ns;
196}
197
198/**
199 * kernfs_mount_ns - kernfs mount helper
200 * @fs_type: file_system_type of the fs being mounted
201 * @flags: mount flags specified for the mount
202 * @root: kernfs_root of the hierarchy being mounted
Jianyu Zhan26fc9cd2014-04-26 15:40:28 +0800203 * @magic: file system specific magic number
Li Zefanfed95ba2014-02-25 19:28:44 +0800204 * @new_sb_created: tell the caller if we allocated a new superblock
Tejun Heofa736a92013-11-28 14:54:44 -0500205 * @ns: optional namespace tag of the mount
206 *
207 * This is to be called from each kernfs user's file_system_type->mount()
208 * implementation, which should pass through the specified @fs_type and
209 * @flags, and specify the hierarchy and namespace tag to mount via @root
210 * and @ns, respectively.
211 *
212 * The return value can be passed to the vfs layer verbatim.
213 */
214struct dentry *kernfs_mount_ns(struct file_system_type *fs_type, int flags,
Jianyu Zhan26fc9cd2014-04-26 15:40:28 +0800215 struct kernfs_root *root, unsigned long magic,
216 bool *new_sb_created, const void *ns)
Tejun Heofa736a92013-11-28 14:54:44 -0500217{
218 struct super_block *sb;
Tejun Heoc525aad2013-12-11 14:11:55 -0500219 struct kernfs_super_info *info;
Tejun Heofa736a92013-11-28 14:54:44 -0500220 int error;
221
222 info = kzalloc(sizeof(*info), GFP_KERNEL);
223 if (!info)
224 return ERR_PTR(-ENOMEM);
225
226 info->root = root;
227 info->ns = ns;
228
Tejun Heoc637b8a2013-12-11 14:11:58 -0500229 sb = sget(fs_type, kernfs_test_super, kernfs_set_super, flags, info);
Tejun Heofa736a92013-11-28 14:54:44 -0500230 if (IS_ERR(sb) || sb->s_fs_info != info)
231 kfree(info);
232 if (IS_ERR(sb))
233 return ERR_CAST(sb);
Li Zefanfed95ba2014-02-25 19:28:44 +0800234
235 if (new_sb_created)
236 *new_sb_created = !sb->s_root;
237
Tejun Heofa736a92013-11-28 14:54:44 -0500238 if (!sb->s_root) {
Tejun Heo7d568a82014-04-09 11:07:30 -0400239 struct kernfs_super_info *info = kernfs_info(sb);
240
Jianyu Zhan26fc9cd2014-04-26 15:40:28 +0800241 error = kernfs_fill_super(sb, magic);
Tejun Heofa736a92013-11-28 14:54:44 -0500242 if (error) {
243 deactivate_locked_super(sb);
244 return ERR_PTR(error);
245 }
246 sb->s_flags |= MS_ACTIVE;
Tejun Heo7d568a82014-04-09 11:07:30 -0400247
248 mutex_lock(&kernfs_mutex);
249 list_add(&info->node, &root->supers);
250 mutex_unlock(&kernfs_mutex);
Tejun Heofa736a92013-11-28 14:54:44 -0500251 }
252
253 return dget(sb->s_root);
254}
255
256/**
257 * kernfs_kill_sb - kill_sb for kernfs
258 * @sb: super_block being killed
259 *
260 * This can be used directly for file_system_type->kill_sb(). If a kernfs
261 * user needs extra cleanup, it can implement its own kill_sb() and call
262 * this function at the end.
263 */
264void kernfs_kill_sb(struct super_block *sb)
265{
Tejun Heoc525aad2013-12-11 14:11:55 -0500266 struct kernfs_super_info *info = kernfs_info(sb);
Tejun Heo324a56e2013-12-11 14:11:53 -0500267 struct kernfs_node *root_kn = sb->s_root->d_fsdata;
Tejun Heofa736a92013-11-28 14:54:44 -0500268
Tejun Heo7d568a82014-04-09 11:07:30 -0400269 mutex_lock(&kernfs_mutex);
270 list_del(&info->node);
271 mutex_unlock(&kernfs_mutex);
272
Tejun Heofa736a92013-11-28 14:54:44 -0500273 /*
274 * Remove the superblock from fs_supers/s_instances
Tejun Heoc525aad2013-12-11 14:11:55 -0500275 * so we can't find it, before freeing kernfs_super_info.
Tejun Heofa736a92013-11-28 14:54:44 -0500276 */
277 kill_anon_super(sb);
278 kfree(info);
Tejun Heo324a56e2013-12-11 14:11:53 -0500279 kernfs_put(root_kn);
Tejun Heofa736a92013-11-28 14:54:44 -0500280}
281
Li Zefan4e264452014-06-30 11:50:28 +0800282/**
283 * kernfs_pin_sb: try to pin the superblock associated with a kernfs_root
284 * @kernfs_root: the kernfs_root in question
285 * @ns: the namespace tag
286 *
287 * Pin the superblock so the superblock won't be destroyed in subsequent
288 * operations. This can be used to block ->kill_sb() which may be useful
289 * for kernfs users which dynamically manage superblocks.
290 *
291 * Returns NULL if there's no superblock associated to this kernfs_root, or
292 * -EINVAL if the superblock is being freed.
293 */
294struct super_block *kernfs_pin_sb(struct kernfs_root *root, const void *ns)
295{
296 struct kernfs_super_info *info;
297 struct super_block *sb = NULL;
298
299 mutex_lock(&kernfs_mutex);
300 list_for_each_entry(info, &root->supers, node) {
301 if (info->ns == ns) {
302 sb = info->sb;
303 if (!atomic_inc_not_zero(&info->sb->s_active))
304 sb = ERR_PTR(-EINVAL);
305 break;
306 }
307 }
308 mutex_unlock(&kernfs_mutex);
309 return sb;
310}
311
Tejun Heofa736a92013-11-28 14:54:44 -0500312void __init kernfs_init(void)
313{
Tejun Heoa797bfc2013-12-11 14:11:57 -0500314 kernfs_node_cache = kmem_cache_create("kernfs_node_cache",
Tejun Heo324a56e2013-12-11 14:11:53 -0500315 sizeof(struct kernfs_node),
Tejun Heofa736a92013-11-28 14:54:44 -0500316 0, SLAB_PANIC, NULL);
Tejun Heofa736a92013-11-28 14:54:44 -0500317}