BACKPORT: fs: kernfs: add poll file operation
[GitHub/LineageOS/android_kernel_motorola_exynos9610.git] / include / linux / kernfs.h
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1/*
2 * kernfs.h - pseudo filesystem decoupled from vfs locking
3 *
4 * This file is released under the GPLv2.
5 */
6
7#ifndef __LINUX_KERNFS_H
8#define __LINUX_KERNFS_H
9
879f40d1 10#include <linux/kernel.h>
5d0e26bb 11#include <linux/err.h>
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12#include <linux/list.h>
13#include <linux/mutex.h>
bc755553 14#include <linux/idr.h>
517e64f5 15#include <linux/lockdep.h>
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16#include <linux/rbtree.h>
17#include <linux/atomic.h>
abd54f02 18#include <linux/wait.h>
879f40d1 19
5d60418e 20struct file;
917f56ca 21struct dentry;
5d60418e 22struct iattr;
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23struct seq_file;
24struct vm_area_struct;
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25struct super_block;
26struct file_system_type;
339f1852 27struct poll_table_struct;
5d60418e 28
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29struct kernfs_open_node;
30struct kernfs_iattrs;
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31
32enum kernfs_node_type {
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33 KERNFS_DIR = 0x0001,
34 KERNFS_FILE = 0x0002,
35 KERNFS_LINK = 0x0004,
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36};
37
df23fc39 38#define KERNFS_TYPE_MASK 0x000f
df23fc39 39#define KERNFS_FLAG_MASK ~KERNFS_TYPE_MASK
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40
41enum kernfs_node_flag {
d35258ef 42 KERNFS_ACTIVATED = 0x0010,
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43 KERNFS_NS = 0x0020,
44 KERNFS_HAS_SEQ_SHOW = 0x0040,
45 KERNFS_HAS_MMAP = 0x0080,
46 KERNFS_LOCKDEP = 0x0100,
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47 KERNFS_SUICIDAL = 0x0400,
48 KERNFS_SUICIDED = 0x0800,
ea015218 49 KERNFS_EMPTY_DIR = 0x1000,
0e67db2f 50 KERNFS_HAS_RELEASE = 0x2000,
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51};
52
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53/* @flags for kernfs_create_root() */
54enum kernfs_root_flag {
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55 /*
56 * kernfs_nodes are created in the deactivated state and invisible.
57 * They require explicit kernfs_activate() to become visible. This
58 * can be used to make related nodes become visible atomically
59 * after all nodes are created successfully.
60 */
61 KERNFS_ROOT_CREATE_DEACTIVATED = 0x0001,
62
63 /*
64 * For regular flies, if the opener has CAP_DAC_OVERRIDE, open(2)
65 * succeeds regardless of the RW permissions. sysfs had an extra
66 * layer of enforcement where open(2) fails with -EACCES regardless
67 * of CAP_DAC_OVERRIDE if the permission doesn't have the
68 * respective read or write access at all (none of S_IRUGO or
69 * S_IWUGO) or the respective operation isn't implemented. The
70 * following flag enables that behavior.
71 */
72 KERNFS_ROOT_EXTRA_OPEN_PERM_CHECK = 0x0002,
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73
74 /*
75 * The filesystem supports exportfs operation, so userspace can use
76 * fhandle to access nodes of the fs.
77 */
78 KERNFS_ROOT_SUPPORT_EXPORTOP = 0x0004,
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79};
80
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81/* type-specific structures for kernfs_node union members */
82struct kernfs_elem_dir {
cf9e5a73 83 unsigned long subdirs;
adc5e8b5 84 /* children rbtree starts here and goes through kn->rb */
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85 struct rb_root children;
86
87 /*
88 * The kernfs hierarchy this directory belongs to. This fits
324a56e1 89 * better directly in kernfs_node but is here to save space.
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90 */
91 struct kernfs_root *root;
92};
93
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94struct kernfs_elem_symlink {
95 struct kernfs_node *target_kn;
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96};
97
324a56e1 98struct kernfs_elem_attr {
cf9e5a73 99 const struct kernfs_ops *ops;
c525aadd 100 struct kernfs_open_node *open;
cf9e5a73 101 loff_t size;
ecca47ce 102 struct kernfs_node *notify_next; /* for kernfs_notify() */
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103};
104
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105/* represent a kernfs node */
106union kernfs_node_id {
107 struct {
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108 /*
109 * blktrace will export this struct as a simplified 'struct
110 * fid' (which is a big data struction), so userspace can use
111 * it to find kernfs node. The layout must match the first two
112 * fields of 'struct fid' exactly.
113 */
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114 u32 ino;
115 u32 generation;
116 };
117 u64 id;
118};
119
cf9e5a73 120/*
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121 * kernfs_node - the building block of kernfs hierarchy. Each and every
122 * kernfs node is represented by single kernfs_node. Most fields are
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123 * private to kernfs and shouldn't be accessed directly by kernfs users.
124 *
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125 * As long as s_count reference is held, the kernfs_node itself is
126 * accessible. Dereferencing elem or any other outer entity requires
127 * active reference.
cf9e5a73 128 */
324a56e1 129struct kernfs_node {
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130 atomic_t count;
131 atomic_t active;
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132#ifdef CONFIG_DEBUG_LOCK_ALLOC
133 struct lockdep_map dep_map;
134#endif
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135 /*
136 * Use kernfs_get_parent() and kernfs_name/path() instead of
137 * accessing the following two fields directly. If the node is
138 * never moved to a different parent, it is safe to access the
139 * parent directly.
140 */
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141 struct kernfs_node *parent;
142 const char *name;
cf9e5a73 143
adc5e8b5 144 struct rb_node rb;
cf9e5a73 145
adc5e8b5 146 const void *ns; /* namespace tag */
9b0925a6 147 unsigned int hash; /* ns + name hash */
cf9e5a73 148 union {
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149 struct kernfs_elem_dir dir;
150 struct kernfs_elem_symlink symlink;
151 struct kernfs_elem_attr attr;
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152 };
153
154 void *priv;
155
c53cd490 156 union kernfs_node_id id;
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157 unsigned short flags;
158 umode_t mode;
c525aadd 159 struct kernfs_iattrs *iattr;
cf9e5a73 160};
b8441ed2 161
80b9bbef 162/*
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163 * kernfs_syscall_ops may be specified on kernfs_create_root() to support
164 * syscalls. These optional callbacks are invoked on the matching syscalls
165 * and can perform any kernfs operations which don't necessarily have to be
166 * the exact operation requested. An active reference is held for each
167 * kernfs_node parameter.
80b9bbef 168 */
90c07c89 169struct kernfs_syscall_ops {
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170 int (*remount_fs)(struct kernfs_root *root, int *flags, char *data);
171 int (*show_options)(struct seq_file *sf, struct kernfs_root *root);
172
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173 int (*mkdir)(struct kernfs_node *parent, const char *name,
174 umode_t mode);
175 int (*rmdir)(struct kernfs_node *kn);
176 int (*rename)(struct kernfs_node *kn, struct kernfs_node *new_parent,
177 const char *new_name);
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178 int (*show_path)(struct seq_file *sf, struct kernfs_node *kn,
179 struct kernfs_root *root);
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180};
181
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182struct kernfs_root {
183 /* published fields */
324a56e1 184 struct kernfs_node *kn;
d35258ef 185 unsigned int flags; /* KERNFS_ROOT_* flags */
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186
187 /* private fields, do not use outside kernfs proper */
7d35079f 188 struct idr ino_idr;
4a3ef68a 189 u32 next_generation;
90c07c89 190 struct kernfs_syscall_ops *syscall_ops;
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191
192 /* list of kernfs_super_info of this root, protected by kernfs_mutex */
193 struct list_head supers;
194
abd54f02 195 wait_queue_head_t deactivate_waitq;
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196};
197
c525aadd 198struct kernfs_open_file {
dd8a5b03 199 /* published fields */
324a56e1 200 struct kernfs_node *kn;
dd8a5b03 201 struct file *file;
0e67db2f 202 struct seq_file *seq_file;
2536390d 203 void *priv;
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204
205 /* private fields, do not use outside kernfs proper */
206 struct mutex mutex;
e4234a1f 207 struct mutex prealloc_mutex;
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208 int event;
209 struct list_head list;
2b75869b 210 char *prealloc_buf;
dd8a5b03 211
b7ce40cf 212 size_t atomic_write_len;
a1d82aff 213 bool mmapped:1;
0e67db2f 214 bool released:1;
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215 const struct vm_operations_struct *vm_ops;
216};
217
f6acf8bb 218struct kernfs_ops {
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219 /*
220 * Optional open/release methods. Both are called with
221 * @of->seq_file populated.
222 */
223 int (*open)(struct kernfs_open_file *of);
224 void (*release)(struct kernfs_open_file *of);
225
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226 /*
227 * Read is handled by either seq_file or raw_read().
228 *
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229 * If seq_show() is present, seq_file path is active. Other seq
230 * operations are optional and if not implemented, the behavior is
231 * equivalent to single_open(). @sf->private points to the
c525aadd 232 * associated kernfs_open_file.
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233 *
234 * read() is bounced through kernel buffer and a read larger than
235 * PAGE_SIZE results in partial operation of PAGE_SIZE.
236 */
237 int (*seq_show)(struct seq_file *sf, void *v);
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238
239 void *(*seq_start)(struct seq_file *sf, loff_t *ppos);
240 void *(*seq_next)(struct seq_file *sf, void *v, loff_t *ppos);
241 void (*seq_stop)(struct seq_file *sf, void *v);
f6acf8bb 242
c525aadd 243 ssize_t (*read)(struct kernfs_open_file *of, char *buf, size_t bytes,
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244 loff_t off);
245
246 /*
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247 * write() is bounced through kernel buffer. If atomic_write_len
248 * is not set, a write larger than PAGE_SIZE results in partial
249 * operations of PAGE_SIZE chunks. If atomic_write_len is set,
250 * writes upto the specified size are executed atomically but
251 * larger ones are rejected with -E2BIG.
f6acf8bb 252 */
4d3773c4 253 size_t atomic_write_len;
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254 /*
255 * "prealloc" causes a buffer to be allocated at open for
256 * all read/write requests. As ->seq_show uses seq_read()
257 * which does its own allocation, it is incompatible with
258 * ->prealloc. Provide ->read and ->write with ->prealloc.
259 */
260 bool prealloc;
c525aadd 261 ssize_t (*write)(struct kernfs_open_file *of, char *buf, size_t bytes,
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262 loff_t off);
263
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264 unsigned int (*poll)(struct kernfs_open_file *of,
265 struct poll_table_struct *pt);
266
c525aadd 267 int (*mmap)(struct kernfs_open_file *of, struct vm_area_struct *vma);
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268
269#ifdef CONFIG_DEBUG_LOCK_ALLOC
270 struct lock_class_key lockdep_key;
271#endif
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272};
273
ba341d55 274#ifdef CONFIG_KERNFS
879f40d1 275
df23fc39 276static inline enum kernfs_node_type kernfs_type(struct kernfs_node *kn)
cf9e5a73 277{
df23fc39 278 return kn->flags & KERNFS_TYPE_MASK;
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279}
280
281/**
282 * kernfs_enable_ns - enable namespace under a directory
324a56e1 283 * @kn: directory of interest, should be empty
cf9e5a73 284 *
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285 * This is to be called right after @kn is created to enable namespace
286 * under it. All children of @kn must have non-NULL namespace tags and
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287 * only the ones which match the super_block's tag will be visible.
288 */
324a56e1 289static inline void kernfs_enable_ns(struct kernfs_node *kn)
cf9e5a73 290{
df23fc39 291 WARN_ON_ONCE(kernfs_type(kn) != KERNFS_DIR);
adc5e8b5 292 WARN_ON_ONCE(!RB_EMPTY_ROOT(&kn->dir.children));
df23fc39 293 kn->flags |= KERNFS_NS;
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294}
295
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296/**
297 * kernfs_ns_enabled - test whether namespace is enabled
324a56e1 298 * @kn: the node to test
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299 *
300 * Test whether namespace filtering is enabled for the children of @ns.
301 */
324a56e1 302static inline bool kernfs_ns_enabled(struct kernfs_node *kn)
ac9bba03 303{
df23fc39 304 return kn->flags & KERNFS_NS;
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305}
306
3eef34ad 307int kernfs_name(struct kernfs_node *kn, char *buf, size_t buflen);
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308int kernfs_path_from_node(struct kernfs_node *root_kn, struct kernfs_node *kn,
309 char *buf, size_t buflen);
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310void pr_cont_kernfs_name(struct kernfs_node *kn);
311void pr_cont_kernfs_path(struct kernfs_node *kn);
312struct kernfs_node *kernfs_get_parent(struct kernfs_node *kn);
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313struct kernfs_node *kernfs_find_and_get_ns(struct kernfs_node *parent,
314 const char *name, const void *ns);
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315struct kernfs_node *kernfs_walk_and_get_ns(struct kernfs_node *parent,
316 const char *path, const void *ns);
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317void kernfs_get(struct kernfs_node *kn);
318void kernfs_put(struct kernfs_node *kn);
ccf73cf3 319
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320struct kernfs_node *kernfs_node_from_dentry(struct dentry *dentry);
321struct kernfs_root *kernfs_root_from_sb(struct super_block *sb);
fb02915f 322struct inode *kernfs_get_inode(struct super_block *sb, struct kernfs_node *kn);
0c23b225 323
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324struct dentry *kernfs_node_dentry(struct kernfs_node *kn,
325 struct super_block *sb);
90c07c89 326struct kernfs_root *kernfs_create_root(struct kernfs_syscall_ops *scops,
d35258ef 327 unsigned int flags, void *priv);
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328void kernfs_destroy_root(struct kernfs_root *root);
329
324a56e1 330struct kernfs_node *kernfs_create_dir_ns(struct kernfs_node *parent,
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331 const char *name, umode_t mode,
332 void *priv, const void *ns);
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333struct kernfs_node *kernfs_create_empty_dir(struct kernfs_node *parent,
334 const char *name);
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335struct kernfs_node *__kernfs_create_file(struct kernfs_node *parent,
336 const char *name,
337 umode_t mode, loff_t size,
338 const struct kernfs_ops *ops,
339 void *priv, const void *ns,
2063d608 340 struct lock_class_key *key);
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341struct kernfs_node *kernfs_create_link(struct kernfs_node *parent,
342 const char *name,
343 struct kernfs_node *target);
d35258ef 344void kernfs_activate(struct kernfs_node *kn);
324a56e1 345void kernfs_remove(struct kernfs_node *kn);
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346void kernfs_break_active_protection(struct kernfs_node *kn);
347void kernfs_unbreak_active_protection(struct kernfs_node *kn);
348bool kernfs_remove_self(struct kernfs_node *kn);
324a56e1 349int kernfs_remove_by_name_ns(struct kernfs_node *parent, const char *name,
879f40d1 350 const void *ns);
324a56e1 351int kernfs_rename_ns(struct kernfs_node *kn, struct kernfs_node *new_parent,
890ece16 352 const char *new_name, const void *new_ns);
324a56e1 353int kernfs_setattr(struct kernfs_node *kn, const struct iattr *iattr);
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354unsigned int kernfs_generic_poll(struct kernfs_open_file *of,
355 struct poll_table_struct *pt);
324a56e1 356void kernfs_notify(struct kernfs_node *kn);
879f40d1 357
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358const void *kernfs_super_ns(struct super_block *sb);
359struct dentry *kernfs_mount_ns(struct file_system_type *fs_type, int flags,
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360 struct kernfs_root *root, unsigned long magic,
361 bool *new_sb_created, const void *ns);
4b93dc9b 362void kernfs_kill_sb(struct super_block *sb);
4e26445f 363struct super_block *kernfs_pin_sb(struct kernfs_root *root, const void *ns);
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364
365void kernfs_init(void);
366
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367struct kernfs_node *kernfs_get_node_by_id(struct kernfs_root *root,
368 const union kernfs_node_id *id);
ba341d55 369#else /* CONFIG_KERNFS */
879f40d1 370
df23fc39 371static inline enum kernfs_node_type kernfs_type(struct kernfs_node *kn)
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372{ return 0; } /* whatever */
373
324a56e1 374static inline void kernfs_enable_ns(struct kernfs_node *kn) { }
cf9e5a73 375
324a56e1 376static inline bool kernfs_ns_enabled(struct kernfs_node *kn)
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377{ return false; }
378
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379static inline int kernfs_name(struct kernfs_node *kn, char *buf, size_t buflen)
380{ return -ENOSYS; }
381
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382static inline int kernfs_path_from_node(struct kernfs_node *root_kn,
383 struct kernfs_node *kn,
384 char *buf, size_t buflen)
385{ return -ENOSYS; }
386
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387static inline void pr_cont_kernfs_name(struct kernfs_node *kn) { }
388static inline void pr_cont_kernfs_path(struct kernfs_node *kn) { }
389
390static inline struct kernfs_node *kernfs_get_parent(struct kernfs_node *kn)
391{ return NULL; }
392
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393static inline struct kernfs_node *
394kernfs_find_and_get_ns(struct kernfs_node *parent, const char *name,
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395 const void *ns)
396{ return NULL; }
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397static inline struct kernfs_node *
398kernfs_walk_and_get_ns(struct kernfs_node *parent, const char *path,
399 const void *ns)
400{ return NULL; }
ccf73cf3 401
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402static inline void kernfs_get(struct kernfs_node *kn) { }
403static inline void kernfs_put(struct kernfs_node *kn) { }
ccf73cf3 404
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405static inline struct kernfs_node *kernfs_node_from_dentry(struct dentry *dentry)
406{ return NULL; }
407
408static inline struct kernfs_root *kernfs_root_from_sb(struct super_block *sb)
409{ return NULL; }
410
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411static inline struct inode *
412kernfs_get_inode(struct super_block *sb, struct kernfs_node *kn)
413{ return NULL; }
414
80b9bbef 415static inline struct kernfs_root *
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416kernfs_create_root(struct kernfs_syscall_ops *scops, unsigned int flags,
417 void *priv)
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418{ return ERR_PTR(-ENOSYS); }
419
420static inline void kernfs_destroy_root(struct kernfs_root *root) { }
421
324a56e1 422static inline struct kernfs_node *
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423kernfs_create_dir_ns(struct kernfs_node *parent, const char *name,
424 umode_t mode, void *priv, const void *ns)
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425{ return ERR_PTR(-ENOSYS); }
426
324a56e1 427static inline struct kernfs_node *
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428__kernfs_create_file(struct kernfs_node *parent, const char *name,
429 umode_t mode, loff_t size, const struct kernfs_ops *ops,
dfeb0750 430 void *priv, const void *ns, struct lock_class_key *key)
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431{ return ERR_PTR(-ENOSYS); }
432
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433static inline struct kernfs_node *
434kernfs_create_link(struct kernfs_node *parent, const char *name,
435 struct kernfs_node *target)
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436{ return ERR_PTR(-ENOSYS); }
437
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438static inline void kernfs_activate(struct kernfs_node *kn) { }
439
324a56e1 440static inline void kernfs_remove(struct kernfs_node *kn) { }
879f40d1 441
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442static inline bool kernfs_remove_self(struct kernfs_node *kn)
443{ return false; }
444
324a56e1 445static inline int kernfs_remove_by_name_ns(struct kernfs_node *kn,
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446 const char *name, const void *ns)
447{ return -ENOSYS; }
448
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449static inline int kernfs_rename_ns(struct kernfs_node *kn,
450 struct kernfs_node *new_parent,
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451 const char *new_name, const void *new_ns)
452{ return -ENOSYS; }
453
324a56e1 454static inline int kernfs_setattr(struct kernfs_node *kn,
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455 const struct iattr *iattr)
456{ return -ENOSYS; }
457
324a56e1 458static inline void kernfs_notify(struct kernfs_node *kn) { }
024f6471 459
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460static inline const void *kernfs_super_ns(struct super_block *sb)
461{ return NULL; }
462
463static inline struct dentry *
464kernfs_mount_ns(struct file_system_type *fs_type, int flags,
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465 struct kernfs_root *root, unsigned long magic,
466 bool *new_sb_created, const void *ns)
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467{ return ERR_PTR(-ENOSYS); }
468
469static inline void kernfs_kill_sb(struct super_block *sb) { }
470
471static inline void kernfs_init(void) { }
472
ba341d55 473#endif /* CONFIG_KERNFS */
879f40d1 474
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475/**
476 * kernfs_path - build full path of a given node
477 * @kn: kernfs_node of interest
478 * @buf: buffer to copy @kn's name into
479 * @buflen: size of @buf
480 *
481 * Builds and returns the full path of @kn in @buf of @buflen bytes. The
482 * path is built from the end of @buf so the returned pointer usually
483 * doesn't match @buf. If @buf isn't long enough, @buf is nul terminated
484 * and %NULL is returned.
485 */
486static inline int kernfs_path(struct kernfs_node *kn, char *buf, size_t buflen)
487{
488 return kernfs_path_from_node(kn, NULL, buf, buflen);
489}
490
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491static inline struct kernfs_node *
492kernfs_find_and_get(struct kernfs_node *kn, const char *name)
ccf73cf3 493{
324a56e1 494 return kernfs_find_and_get_ns(kn, name, NULL);
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495}
496
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497static inline struct kernfs_node *
498kernfs_walk_and_get(struct kernfs_node *kn, const char *path)
499{
500 return kernfs_walk_and_get_ns(kn, path, NULL);
501}
502
324a56e1 503static inline struct kernfs_node *
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504kernfs_create_dir(struct kernfs_node *parent, const char *name, umode_t mode,
505 void *priv)
93b2b8e4 506{
bb8b9d09 507 return kernfs_create_dir_ns(parent, name, mode, priv, NULL);
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508}
509
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510static inline struct kernfs_node *
511kernfs_create_file_ns(struct kernfs_node *parent, const char *name,
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512 umode_t mode, loff_t size, const struct kernfs_ops *ops,
513 void *priv, const void *ns)
514{
515 struct lock_class_key *key = NULL;
516
517#ifdef CONFIG_DEBUG_LOCK_ALLOC
518 key = (struct lock_class_key *)&ops->lockdep_key;
519#endif
2063d608 520 return __kernfs_create_file(parent, name, mode, size, ops, priv, ns,
dfeb0750 521 key);
517e64f5
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522}
523
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524static inline struct kernfs_node *
525kernfs_create_file(struct kernfs_node *parent, const char *name, umode_t mode,
496f7394
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526 loff_t size, const struct kernfs_ops *ops, void *priv)
527{
528 return kernfs_create_file_ns(parent, name, mode, size, ops, priv, NULL);
529}
530
324a56e1 531static inline int kernfs_remove_by_name(struct kernfs_node *parent,
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532 const char *name)
533{
534 return kernfs_remove_by_name_ns(parent, name, NULL);
535}
536
0c23b225
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537static inline int kernfs_rename(struct kernfs_node *kn,
538 struct kernfs_node *new_parent,
539 const char *new_name)
540{
541 return kernfs_rename_ns(kn, new_parent, new_name, NULL);
542}
543
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544static inline struct dentry *
545kernfs_mount(struct file_system_type *fs_type, int flags,
26fc9cd2
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546 struct kernfs_root *root, unsigned long magic,
547 bool *new_sb_created)
4b93dc9b 548{
26fc9cd2
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549 return kernfs_mount_ns(fs_type, flags, root,
550 magic, new_sb_created, NULL);
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551}
552
b8441ed2 553#endif /* __LINUX_KERNFS_H */