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v6.2
  1// SPDX-License-Identifier: GPL-2.0-only
  2/*
  3 * proc/fs/generic.c --- generic routines for the proc-fs
  4 *
  5 * This file contains generic proc-fs routines for handling
  6 * directories and files.
  7 * 
  8 * Copyright (C) 1991, 1992 Linus Torvalds.
  9 * Copyright (C) 1997 Theodore Ts'o
 10 */
 11
 12#include <linux/cache.h>
 13#include <linux/errno.h>
 14#include <linux/time.h>
 15#include <linux/proc_fs.h>
 16#include <linux/stat.h>
 17#include <linux/mm.h>
 18#include <linux/module.h>
 19#include <linux/namei.h>
 20#include <linux/slab.h>
 21#include <linux/printk.h>
 22#include <linux/mount.h>
 23#include <linux/init.h>
 24#include <linux/idr.h>
 
 25#include <linux/bitops.h>
 26#include <linux/spinlock.h>
 27#include <linux/completion.h>
 28#include <linux/uaccess.h>
 29#include <linux/seq_file.h>
 30
 31#include "internal.h"
 32
 33static DEFINE_RWLOCK(proc_subdir_lock);
 34
 35struct kmem_cache *proc_dir_entry_cache __ro_after_init;
 36
 37void pde_free(struct proc_dir_entry *pde)
 38{
 39	if (S_ISLNK(pde->mode))
 40		kfree(pde->data);
 41	if (pde->name != pde->inline_name)
 42		kfree(pde->name);
 43	kmem_cache_free(proc_dir_entry_cache, pde);
 44}
 45
 46static int proc_match(const char *name, struct proc_dir_entry *de, unsigned int len)
 47{
 48	if (len < de->namelen)
 49		return -1;
 50	if (len > de->namelen)
 51		return 1;
 52
 53	return memcmp(name, de->name, len);
 54}
 55
 56static struct proc_dir_entry *pde_subdir_first(struct proc_dir_entry *dir)
 57{
 58	return rb_entry_safe(rb_first(&dir->subdir), struct proc_dir_entry,
 59			     subdir_node);
 60}
 61
 62static struct proc_dir_entry *pde_subdir_next(struct proc_dir_entry *dir)
 63{
 64	return rb_entry_safe(rb_next(&dir->subdir_node), struct proc_dir_entry,
 65			     subdir_node);
 66}
 67
 68static struct proc_dir_entry *pde_subdir_find(struct proc_dir_entry *dir,
 69					      const char *name,
 70					      unsigned int len)
 71{
 72	struct rb_node *node = dir->subdir.rb_node;
 73
 74	while (node) {
 75		struct proc_dir_entry *de = rb_entry(node,
 76						     struct proc_dir_entry,
 77						     subdir_node);
 78		int result = proc_match(name, de, len);
 79
 80		if (result < 0)
 81			node = node->rb_left;
 82		else if (result > 0)
 83			node = node->rb_right;
 84		else
 85			return de;
 86	}
 87	return NULL;
 88}
 89
 90static bool pde_subdir_insert(struct proc_dir_entry *dir,
 91			      struct proc_dir_entry *de)
 92{
 93	struct rb_root *root = &dir->subdir;
 94	struct rb_node **new = &root->rb_node, *parent = NULL;
 95
 96	/* Figure out where to put new node */
 97	while (*new) {
 98		struct proc_dir_entry *this = rb_entry(*new,
 99						       struct proc_dir_entry,
100						       subdir_node);
101		int result = proc_match(de->name, this, de->namelen);
102
103		parent = *new;
104		if (result < 0)
105			new = &(*new)->rb_left;
106		else if (result > 0)
107			new = &(*new)->rb_right;
108		else
109			return false;
110	}
111
112	/* Add new node and rebalance tree. */
113	rb_link_node(&de->subdir_node, parent, new);
114	rb_insert_color(&de->subdir_node, root);
115	return true;
116}
117
118static int proc_notify_change(struct user_namespace *mnt_userns,
119			      struct dentry *dentry, struct iattr *iattr)
120{
121	struct inode *inode = d_inode(dentry);
122	struct proc_dir_entry *de = PDE(inode);
123	int error;
124
125	error = setattr_prepare(&init_user_ns, dentry, iattr);
126	if (error)
127		return error;
128
129	setattr_copy(&init_user_ns, inode, iattr);
130	mark_inode_dirty(inode);
131
132	proc_set_user(de, inode->i_uid, inode->i_gid);
133	de->mode = inode->i_mode;
134	return 0;
135}
136
137static int proc_getattr(struct user_namespace *mnt_userns,
138			const struct path *path, struct kstat *stat,
139			u32 request_mask, unsigned int query_flags)
140{
141	struct inode *inode = d_inode(path->dentry);
142	struct proc_dir_entry *de = PDE(inode);
143	if (de) {
144		nlink_t nlink = READ_ONCE(de->nlink);
145		if (nlink > 0) {
146			set_nlink(inode, nlink);
147		}
148	}
149
150	generic_fillattr(&init_user_ns, inode, stat);
151	return 0;
152}
153
154static const struct inode_operations proc_file_inode_operations = {
155	.setattr	= proc_notify_change,
156};
157
158/*
159 * This function parses a name such as "tty/driver/serial", and
160 * returns the struct proc_dir_entry for "/proc/tty/driver", and
161 * returns "serial" in residual.
162 */
163static int __xlate_proc_name(const char *name, struct proc_dir_entry **ret,
164			     const char **residual)
165{
166	const char     		*cp = name, *next;
167	struct proc_dir_entry	*de;
 
 
 
 
 
168
169	de = *ret ?: &proc_root;
170	while ((next = strchr(cp, '/')) != NULL) {
171		de = pde_subdir_find(de, cp, next - cp);
 
 
 
 
 
 
 
172		if (!de) {
173			WARN(1, "name '%s'\n", name);
174			return -ENOENT;
175		}
176		cp = next + 1;
177	}
178	*residual = cp;
179	*ret = de;
180	return 0;
181}
182
183static int xlate_proc_name(const char *name, struct proc_dir_entry **ret,
184			   const char **residual)
185{
186	int rv;
187
188	read_lock(&proc_subdir_lock);
189	rv = __xlate_proc_name(name, ret, residual);
190	read_unlock(&proc_subdir_lock);
191	return rv;
192}
193
194static DEFINE_IDA(proc_inum_ida);
 
195
196#define PROC_DYNAMIC_FIRST 0xF0000000U
197
198/*
199 * Return an inode number between PROC_DYNAMIC_FIRST and
200 * 0xffffffff, or zero on failure.
201 */
202int proc_alloc_inum(unsigned int *inum)
203{
204	int i;
 
205
206	i = ida_simple_get(&proc_inum_ida, 0, UINT_MAX - PROC_DYNAMIC_FIRST + 1,
207			   GFP_KERNEL);
208	if (i < 0)
209		return i;
 
 
 
 
 
 
 
210
211	*inum = PROC_DYNAMIC_FIRST + (unsigned int)i;
 
 
 
 
 
 
212	return 0;
213}
214
215void proc_free_inum(unsigned int inum)
216{
217	ida_simple_remove(&proc_inum_ida, inum - PROC_DYNAMIC_FIRST);
 
 
 
218}
219
220static int proc_misc_d_revalidate(struct dentry *dentry, unsigned int flags)
221{
222	if (flags & LOOKUP_RCU)
223		return -ECHILD;
224
225	if (atomic_read(&PDE(d_inode(dentry))->in_use) < 0)
226		return 0; /* revalidate */
227	return 1;
228}
229
230static int proc_misc_d_delete(const struct dentry *dentry)
231{
232	return atomic_read(&PDE(d_inode(dentry))->in_use) < 0;
233}
234
235static const struct dentry_operations proc_misc_dentry_ops = {
236	.d_revalidate	= proc_misc_d_revalidate,
237	.d_delete	= proc_misc_d_delete,
238};
239
240/*
241 * Don't create negative dentries here, return -ENOENT by hand
242 * instead.
243 */
244struct dentry *proc_lookup_de(struct inode *dir, struct dentry *dentry,
245			      struct proc_dir_entry *de)
246{
247	struct inode *inode;
248
249	read_lock(&proc_subdir_lock);
250	de = pde_subdir_find(de, dentry->d_name.name, dentry->d_name.len);
251	if (de) {
252		pde_get(de);
253		read_unlock(&proc_subdir_lock);
254		inode = proc_get_inode(dir->i_sb, de);
255		if (!inode)
256			return ERR_PTR(-ENOMEM);
257		d_set_d_op(dentry, de->proc_dops);
258		return d_splice_alias(inode, dentry);
 
 
 
 
259	}
260	read_unlock(&proc_subdir_lock);
261	return ERR_PTR(-ENOENT);
262}
263
264struct dentry *proc_lookup(struct inode *dir, struct dentry *dentry,
265		unsigned int flags)
266{
267	struct proc_fs_info *fs_info = proc_sb_info(dir->i_sb);
268
269	if (fs_info->pidonly == PROC_PIDONLY_ON)
270		return ERR_PTR(-ENOENT);
271
272	return proc_lookup_de(dir, dentry, PDE(dir));
273}
274
275/*
276 * This returns non-zero if at EOF, so that the /proc
277 * root directory can use this and check if it should
278 * continue with the <pid> entries..
279 *
280 * Note that the VFS-layer doesn't care about the return
281 * value of the readdir() call, as long as it's non-negative
282 * for success..
283 */
284int proc_readdir_de(struct file *file, struct dir_context *ctx,
285		    struct proc_dir_entry *de)
286{
287	int i;
288
289	if (!dir_emit_dots(file, ctx))
290		return 0;
291
 
 
292	i = ctx->pos - 2;
293	read_lock(&proc_subdir_lock);
294	de = pde_subdir_first(de);
295	for (;;) {
296		if (!de) {
297			read_unlock(&proc_subdir_lock);
298			return 0;
299		}
300		if (!i)
301			break;
302		de = pde_subdir_next(de);
303		i--;
304	}
305
306	do {
307		struct proc_dir_entry *next;
308		pde_get(de);
309		read_unlock(&proc_subdir_lock);
310		if (!dir_emit(ctx, de->name, de->namelen,
311			    de->low_ino, de->mode >> 12)) {
312			pde_put(de);
313			return 0;
314		}
 
315		ctx->pos++;
316		read_lock(&proc_subdir_lock);
317		next = pde_subdir_next(de);
318		pde_put(de);
319		de = next;
320	} while (de);
321	read_unlock(&proc_subdir_lock);
322	return 1;
323}
324
325int proc_readdir(struct file *file, struct dir_context *ctx)
326{
327	struct inode *inode = file_inode(file);
328	struct proc_fs_info *fs_info = proc_sb_info(inode->i_sb);
329
330	if (fs_info->pidonly == PROC_PIDONLY_ON)
331		return 1;
332
333	return proc_readdir_de(file, ctx, PDE(inode));
334}
335
336/*
337 * These are the generic /proc directory operations. They
338 * use the in-memory "struct proc_dir_entry" tree to parse
339 * the /proc directory.
340 */
341static const struct file_operations proc_dir_operations = {
342	.llseek			= generic_file_llseek,
343	.read			= generic_read_dir,
344	.iterate_shared		= proc_readdir,
345};
346
347static int proc_net_d_revalidate(struct dentry *dentry, unsigned int flags)
348{
349	return 0;
350}
351
352const struct dentry_operations proc_net_dentry_ops = {
353	.d_revalidate	= proc_net_d_revalidate,
354	.d_delete	= always_delete_dentry,
355};
356
357/*
358 * proc directories can do almost nothing..
359 */
360static const struct inode_operations proc_dir_inode_operations = {
361	.lookup		= proc_lookup,
362	.getattr	= proc_getattr,
363	.setattr	= proc_notify_change,
364};
365
366/* returns the registered entry, or frees dp and returns NULL on failure */
367struct proc_dir_entry *proc_register(struct proc_dir_entry *dir,
368		struct proc_dir_entry *dp)
369{
370	if (proc_alloc_inum(&dp->low_ino))
371		goto out_free_entry;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
372
373	write_lock(&proc_subdir_lock);
374	dp->parent = dir;
375	if (pde_subdir_insert(dir, dp) == false) {
376		WARN(1, "proc_dir_entry '%s/%s' already registered\n",
377		     dir->name, dp->name);
378		write_unlock(&proc_subdir_lock);
379		goto out_free_inum;
380	}
381	dir->nlink++;
382	write_unlock(&proc_subdir_lock);
383
384	return dp;
385out_free_inum:
386	proc_free_inum(dp->low_ino);
387out_free_entry:
388	pde_free(dp);
389	return NULL;
390}
391
392static struct proc_dir_entry *__proc_create(struct proc_dir_entry **parent,
393					  const char *name,
394					  umode_t mode,
395					  nlink_t nlink)
396{
397	struct proc_dir_entry *ent = NULL;
398	const char *fn;
399	struct qstr qstr;
 
 
 
 
400
401	if (xlate_proc_name(name, parent, &fn) != 0)
402		goto out;
403	qstr.name = fn;
404	qstr.len = strlen(fn);
405	if (qstr.len == 0 || qstr.len >= 256) {
406		WARN(1, "name len %u\n", qstr.len);
407		return NULL;
408	}
409	if (qstr.len == 1 && fn[0] == '.') {
410		WARN(1, "name '.'\n");
411		return NULL;
412	}
413	if (qstr.len == 2 && fn[0] == '.' && fn[1] == '.') {
414		WARN(1, "name '..'\n");
415		return NULL;
416	}
417	if (*parent == &proc_root && name_to_int(&qstr) != ~0U) {
418		WARN(1, "create '/proc/%s' by hand\n", qstr.name);
419		return NULL;
420	}
421	if (is_empty_pde(*parent)) {
422		WARN(1, "attempt to add to permanently empty directory");
423		return NULL;
424	}
425
426	ent = kmem_cache_zalloc(proc_dir_entry_cache, GFP_KERNEL);
427	if (!ent)
428		goto out;
429
430	if (qstr.len + 1 <= SIZEOF_PDE_INLINE_NAME) {
431		ent->name = ent->inline_name;
432	} else {
433		ent->name = kmalloc(qstr.len + 1, GFP_KERNEL);
434		if (!ent->name) {
435			pde_free(ent);
436			return NULL;
437		}
438	}
439
440	memcpy(ent->name, fn, qstr.len + 1);
441	ent->namelen = qstr.len;
 
 
 
 
442	ent->mode = mode;
443	ent->nlink = nlink;
444	ent->subdir = RB_ROOT;
445	refcount_set(&ent->refcnt, 1);
446	spin_lock_init(&ent->pde_unload_lock);
447	INIT_LIST_HEAD(&ent->pde_openers);
448	proc_set_user(ent, (*parent)->uid, (*parent)->gid);
449
450	ent->proc_dops = &proc_misc_dentry_ops;
451	/* Revalidate everything under /proc/${pid}/net */
452	if ((*parent)->proc_dops == &proc_net_dentry_ops)
453		pde_force_lookup(ent);
454
455out:
456	return ent;
457}
458
459struct proc_dir_entry *proc_symlink(const char *name,
460		struct proc_dir_entry *parent, const char *dest)
461{
462	struct proc_dir_entry *ent;
463
464	ent = __proc_create(&parent, name,
465			  (S_IFLNK | S_IRUGO | S_IWUGO | S_IXUGO),1);
466
467	if (ent) {
468		ent->data = kmalloc((ent->size=strlen(dest))+1, GFP_KERNEL);
469		if (ent->data) {
470			strcpy((char*)ent->data,dest);
471			ent->proc_iops = &proc_link_inode_operations;
472			ent = proc_register(parent, ent);
 
 
 
473		} else {
474			pde_free(ent);
475			ent = NULL;
476		}
477	}
478	return ent;
479}
480EXPORT_SYMBOL(proc_symlink);
481
482struct proc_dir_entry *_proc_mkdir(const char *name, umode_t mode,
483		struct proc_dir_entry *parent, void *data, bool force_lookup)
484{
485	struct proc_dir_entry *ent;
486
487	if (mode == 0)
488		mode = S_IRUGO | S_IXUGO;
489
490	ent = __proc_create(&parent, name, S_IFDIR | mode, 2);
491	if (ent) {
492		ent->data = data;
493		ent->proc_dir_ops = &proc_dir_operations;
494		ent->proc_iops = &proc_dir_inode_operations;
495		if (force_lookup) {
496			pde_force_lookup(ent);
497		}
498		ent = proc_register(parent, ent);
499	}
500	return ent;
501}
502EXPORT_SYMBOL_GPL(_proc_mkdir);
503
504struct proc_dir_entry *proc_mkdir_data(const char *name, umode_t mode,
505		struct proc_dir_entry *parent, void *data)
506{
507	return _proc_mkdir(name, mode, parent, data, false);
508}
509EXPORT_SYMBOL_GPL(proc_mkdir_data);
510
511struct proc_dir_entry *proc_mkdir_mode(const char *name, umode_t mode,
512				       struct proc_dir_entry *parent)
513{
514	return proc_mkdir_data(name, mode, parent, NULL);
515}
516EXPORT_SYMBOL(proc_mkdir_mode);
517
518struct proc_dir_entry *proc_mkdir(const char *name,
519		struct proc_dir_entry *parent)
520{
521	return proc_mkdir_data(name, 0, parent, NULL);
522}
523EXPORT_SYMBOL(proc_mkdir);
524
525struct proc_dir_entry *proc_create_mount_point(const char *name)
526{
527	umode_t mode = S_IFDIR | S_IRUGO | S_IXUGO;
528	struct proc_dir_entry *ent, *parent = NULL;
529
530	ent = __proc_create(&parent, name, mode, 2);
531	if (ent) {
532		ent->data = NULL;
533		ent->proc_dir_ops = NULL;
534		ent->proc_iops = NULL;
535		ent = proc_register(parent, ent);
536	}
537	return ent;
538}
539EXPORT_SYMBOL(proc_create_mount_point);
540
541struct proc_dir_entry *proc_create_reg(const char *name, umode_t mode,
542		struct proc_dir_entry **parent, void *data)
543{
544	struct proc_dir_entry *p;
545
546	if ((mode & S_IFMT) == 0)
547		mode |= S_IFREG;
548	if ((mode & S_IALLUGO) == 0)
549		mode |= S_IRUGO;
550	if (WARN_ON_ONCE(!S_ISREG(mode)))
551		return NULL;
552
553	p = __proc_create(parent, name, mode, 1);
554	if (p) {
555		p->proc_iops = &proc_file_inode_operations;
556		p->data = data;
557	}
558	return p;
559}
560
561static inline void pde_set_flags(struct proc_dir_entry *pde)
562{
563	if (pde->proc_ops->proc_flags & PROC_ENTRY_PERMANENT)
564		pde->flags |= PROC_ENTRY_PERMANENT;
565}
566
567struct proc_dir_entry *proc_create_data(const char *name, umode_t mode,
568		struct proc_dir_entry *parent,
569		const struct proc_ops *proc_ops, void *data)
570{
571	struct proc_dir_entry *p;
572
573	p = proc_create_reg(name, mode, &parent, data);
574	if (!p)
575		return NULL;
576	p->proc_ops = proc_ops;
577	pde_set_flags(p);
578	return proc_register(parent, p);
 
 
 
 
 
 
 
 
579}
580EXPORT_SYMBOL(proc_create_data);
581 
582struct proc_dir_entry *proc_create(const char *name, umode_t mode,
583				   struct proc_dir_entry *parent,
584				   const struct proc_ops *proc_ops)
585{
586	return proc_create_data(name, mode, parent, proc_ops, NULL);
587}
588EXPORT_SYMBOL(proc_create);
589
590static int proc_seq_open(struct inode *inode, struct file *file)
591{
592	struct proc_dir_entry *de = PDE(inode);
593
594	if (de->state_size)
595		return seq_open_private(file, de->seq_ops, de->state_size);
596	return seq_open(file, de->seq_ops);
597}
598
599static int proc_seq_release(struct inode *inode, struct file *file)
600{
601	struct proc_dir_entry *de = PDE(inode);
602
603	if (de->state_size)
604		return seq_release_private(inode, file);
605	return seq_release(inode, file);
606}
607
608static const struct proc_ops proc_seq_ops = {
609	/* not permanent -- can call into arbitrary seq_operations */
610	.proc_open	= proc_seq_open,
611	.proc_read_iter	= seq_read_iter,
612	.proc_lseek	= seq_lseek,
613	.proc_release	= proc_seq_release,
614};
615
616struct proc_dir_entry *proc_create_seq_private(const char *name, umode_t mode,
617		struct proc_dir_entry *parent, const struct seq_operations *ops,
618		unsigned int state_size, void *data)
619{
620	struct proc_dir_entry *p;
621
622	p = proc_create_reg(name, mode, &parent, data);
623	if (!p)
624		return NULL;
625	p->proc_ops = &proc_seq_ops;
626	p->seq_ops = ops;
627	p->state_size = state_size;
628	return proc_register(parent, p);
629}
630EXPORT_SYMBOL(proc_create_seq_private);
631
632static int proc_single_open(struct inode *inode, struct file *file)
633{
634	struct proc_dir_entry *de = PDE(inode);
635
636	return single_open(file, de->single_show, de->data);
637}
638
639static const struct proc_ops proc_single_ops = {
640	/* not permanent -- can call into arbitrary ->single_show */
641	.proc_open	= proc_single_open,
642	.proc_read_iter = seq_read_iter,
643	.proc_lseek	= seq_lseek,
644	.proc_release	= single_release,
645};
646
647struct proc_dir_entry *proc_create_single_data(const char *name, umode_t mode,
648		struct proc_dir_entry *parent,
649		int (*show)(struct seq_file *, void *), void *data)
650{
651	struct proc_dir_entry *p;
652
653	p = proc_create_reg(name, mode, &parent, data);
654	if (!p)
655		return NULL;
656	p->proc_ops = &proc_single_ops;
657	p->single_show = show;
658	return proc_register(parent, p);
659}
660EXPORT_SYMBOL(proc_create_single_data);
661
662void proc_set_size(struct proc_dir_entry *de, loff_t size)
663{
664	de->size = size;
665}
666EXPORT_SYMBOL(proc_set_size);
667
668void proc_set_user(struct proc_dir_entry *de, kuid_t uid, kgid_t gid)
669{
670	de->uid = uid;
671	de->gid = gid;
672}
673EXPORT_SYMBOL(proc_set_user);
674
 
 
 
 
 
 
 
 
 
675void pde_put(struct proc_dir_entry *pde)
676{
677	if (refcount_dec_and_test(&pde->refcnt)) {
678		proc_free_inum(pde->low_ino);
679		pde_free(pde);
680	}
681}
682
683/*
684 * Remove a /proc entry and free it if it's not currently in use.
685 */
686void remove_proc_entry(const char *name, struct proc_dir_entry *parent)
687{
 
688	struct proc_dir_entry *de = NULL;
689	const char *fn = name;
690	unsigned int len;
691
692	write_lock(&proc_subdir_lock);
693	if (__xlate_proc_name(name, &parent, &fn) != 0) {
694		write_unlock(&proc_subdir_lock);
695		return;
696	}
697	len = strlen(fn);
698
699	de = pde_subdir_find(parent, fn, len);
700	if (de) {
701		if (unlikely(pde_is_permanent(de))) {
702			WARN(1, "removing permanent /proc entry '%s'", de->name);
703			de = NULL;
704		} else {
705			rb_erase(&de->subdir_node, &parent->subdir);
706			if (S_ISDIR(de->mode))
707				parent->nlink--;
708		}
709	}
710	write_unlock(&proc_subdir_lock);
711	if (!de) {
712		WARN(1, "name '%s'\n", name);
713		return;
714	}
715
716	proc_entry_rundown(de);
717
718	WARN(pde_subdir_first(de),
719	     "%s: removing non-empty directory '%s/%s', leaking at least '%s'\n",
720	     __func__, de->parent->name, de->name, pde_subdir_first(de)->name);
 
 
 
721	pde_put(de);
722}
723EXPORT_SYMBOL(remove_proc_entry);
724
725int remove_proc_subtree(const char *name, struct proc_dir_entry *parent)
726{
 
727	struct proc_dir_entry *root = NULL, *de, *next;
728	const char *fn = name;
729	unsigned int len;
730
731	write_lock(&proc_subdir_lock);
732	if (__xlate_proc_name(name, &parent, &fn) != 0) {
733		write_unlock(&proc_subdir_lock);
734		return -ENOENT;
735	}
736	len = strlen(fn);
737
738	root = pde_subdir_find(parent, fn, len);
 
 
 
 
 
 
 
739	if (!root) {
740		write_unlock(&proc_subdir_lock);
741		return -ENOENT;
742	}
743	if (unlikely(pde_is_permanent(root))) {
744		write_unlock(&proc_subdir_lock);
745		WARN(1, "removing permanent /proc entry '%s/%s'",
746			root->parent->name, root->name);
747		return -EINVAL;
748	}
749	rb_erase(&root->subdir_node, &parent->subdir);
750
751	de = root;
752	while (1) {
753		next = pde_subdir_first(de);
754		if (next) {
755			if (unlikely(pde_is_permanent(next))) {
756				write_unlock(&proc_subdir_lock);
757				WARN(1, "removing permanent /proc entry '%s/%s'",
758					next->parent->name, next->name);
759				return -EINVAL;
760			}
761			rb_erase(&next->subdir_node, &de->subdir);
762			de = next;
763			continue;
764		}
 
 
 
765		next = de->parent;
766		if (S_ISDIR(de->mode))
767			next->nlink--;
768		write_unlock(&proc_subdir_lock);
769
770		proc_entry_rundown(de);
771		if (de == root)
772			break;
773		pde_put(de);
774
775		write_lock(&proc_subdir_lock);
776		de = next;
777	}
778	pde_put(root);
779	return 0;
780}
781EXPORT_SYMBOL(remove_proc_subtree);
782
783void *proc_get_parent_data(const struct inode *inode)
784{
785	struct proc_dir_entry *de = PDE(inode);
786	return de->parent->data;
787}
788EXPORT_SYMBOL_GPL(proc_get_parent_data);
789
790void proc_remove(struct proc_dir_entry *de)
791{
792	if (de)
793		remove_proc_subtree(de->name, de->parent);
794}
795EXPORT_SYMBOL(proc_remove);
796
797/*
798 * Pull a user buffer into memory and pass it to the file's write handler if
799 * one is supplied.  The ->write() method is permitted to modify the
800 * kernel-side buffer.
801 */
802ssize_t proc_simple_write(struct file *f, const char __user *ubuf, size_t size,
803			  loff_t *_pos)
804{
805	struct proc_dir_entry *pde = PDE(file_inode(f));
806	char *buf;
807	int ret;
808
809	if (!pde->write)
810		return -EACCES;
811	if (size == 0 || size > PAGE_SIZE - 1)
812		return -EINVAL;
813	buf = memdup_user_nul(ubuf, size);
814	if (IS_ERR(buf))
815		return PTR_ERR(buf);
816	ret = pde->write(f, buf, size);
817	kfree(buf);
818	return ret == 0 ? size : ret;
819}
v3.15
 
  1/*
  2 * proc/fs/generic.c --- generic routines for the proc-fs
  3 *
  4 * This file contains generic proc-fs routines for handling
  5 * directories and files.
  6 * 
  7 * Copyright (C) 1991, 1992 Linus Torvalds.
  8 * Copyright (C) 1997 Theodore Ts'o
  9 */
 10
 
 11#include <linux/errno.h>
 12#include <linux/time.h>
 13#include <linux/proc_fs.h>
 14#include <linux/stat.h>
 15#include <linux/mm.h>
 16#include <linux/module.h>
 
 17#include <linux/slab.h>
 18#include <linux/printk.h>
 19#include <linux/mount.h>
 20#include <linux/init.h>
 21#include <linux/idr.h>
 22#include <linux/namei.h>
 23#include <linux/bitops.h>
 24#include <linux/spinlock.h>
 25#include <linux/completion.h>
 26#include <asm/uaccess.h>
 
 27
 28#include "internal.h"
 29
 30DEFINE_SPINLOCK(proc_subdir_lock);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 31
 32static int proc_match(unsigned int len, const char *name, struct proc_dir_entry *de)
 
 33{
 34	if (de->namelen != len)
 35		return 0;
 36	return !memcmp(name, de->name, len);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 37}
 38
 39static int proc_notify_change(struct dentry *dentry, struct iattr *iattr)
 
 40{
 41	struct inode *inode = dentry->d_inode;
 42	struct proc_dir_entry *de = PDE(inode);
 43	int error;
 44
 45	error = inode_change_ok(inode, iattr);
 46	if (error)
 47		return error;
 48
 49	setattr_copy(inode, iattr);
 50	mark_inode_dirty(inode);
 51
 52	proc_set_user(de, inode->i_uid, inode->i_gid);
 53	de->mode = inode->i_mode;
 54	return 0;
 55}
 56
 57static int proc_getattr(struct vfsmount *mnt, struct dentry *dentry,
 58			struct kstat *stat)
 
 59{
 60	struct inode *inode = dentry->d_inode;
 61	struct proc_dir_entry *de = PROC_I(inode)->pde;
 62	if (de && de->nlink)
 63		set_nlink(inode, de->nlink);
 
 
 
 
 64
 65	generic_fillattr(inode, stat);
 66	return 0;
 67}
 68
 69static const struct inode_operations proc_file_inode_operations = {
 70	.setattr	= proc_notify_change,
 71};
 72
 73/*
 74 * This function parses a name such as "tty/driver/serial", and
 75 * returns the struct proc_dir_entry for "/proc/tty/driver", and
 76 * returns "serial" in residual.
 77 */
 78static int __xlate_proc_name(const char *name, struct proc_dir_entry **ret,
 79			     const char **residual)
 80{
 81	const char     		*cp = name, *next;
 82	struct proc_dir_entry	*de;
 83	unsigned int		len;
 84
 85	de = *ret;
 86	if (!de)
 87		de = &proc_root;
 88
 89	while (1) {
 90		next = strchr(cp, '/');
 91		if (!next)
 92			break;
 93
 94		len = next - cp;
 95		for (de = de->subdir; de ; de = de->next) {
 96			if (proc_match(len, cp, de))
 97				break;
 98		}
 99		if (!de) {
100			WARN(1, "name '%s'\n", name);
101			return -ENOENT;
102		}
103		cp += len + 1;
104	}
105	*residual = cp;
106	*ret = de;
107	return 0;
108}
109
110static int xlate_proc_name(const char *name, struct proc_dir_entry **ret,
111			   const char **residual)
112{
113	int rv;
114
115	spin_lock(&proc_subdir_lock);
116	rv = __xlate_proc_name(name, ret, residual);
117	spin_unlock(&proc_subdir_lock);
118	return rv;
119}
120
121static DEFINE_IDA(proc_inum_ida);
122static DEFINE_SPINLOCK(proc_inum_lock); /* protects the above */
123
124#define PROC_DYNAMIC_FIRST 0xF0000000U
125
126/*
127 * Return an inode number between PROC_DYNAMIC_FIRST and
128 * 0xffffffff, or zero on failure.
129 */
130int proc_alloc_inum(unsigned int *inum)
131{
132	unsigned int i;
133	int error;
134
135retry:
136	if (!ida_pre_get(&proc_inum_ida, GFP_KERNEL))
137		return -ENOMEM;
138
139	spin_lock_irq(&proc_inum_lock);
140	error = ida_get_new(&proc_inum_ida, &i);
141	spin_unlock_irq(&proc_inum_lock);
142	if (error == -EAGAIN)
143		goto retry;
144	else if (error)
145		return error;
146
147	if (i > UINT_MAX - PROC_DYNAMIC_FIRST) {
148		spin_lock_irq(&proc_inum_lock);
149		ida_remove(&proc_inum_ida, i);
150		spin_unlock_irq(&proc_inum_lock);
151		return -ENOSPC;
152	}
153	*inum = PROC_DYNAMIC_FIRST + i;
154	return 0;
155}
156
157void proc_free_inum(unsigned int inum)
158{
159	unsigned long flags;
160	spin_lock_irqsave(&proc_inum_lock, flags);
161	ida_remove(&proc_inum_ida, inum - PROC_DYNAMIC_FIRST);
162	spin_unlock_irqrestore(&proc_inum_lock, flags);
163}
164
165static void *proc_follow_link(struct dentry *dentry, struct nameidata *nd)
166{
167	nd_set_link(nd, __PDE_DATA(dentry->d_inode));
168	return NULL;
 
 
 
 
 
 
 
 
 
169}
170
171static const struct inode_operations proc_link_inode_operations = {
172	.readlink	= generic_readlink,
173	.follow_link	= proc_follow_link,
174};
175
176/*
177 * Don't create negative dentries here, return -ENOENT by hand
178 * instead.
179 */
180struct dentry *proc_lookup_de(struct proc_dir_entry *de, struct inode *dir,
181		struct dentry *dentry)
182{
183	struct inode *inode;
184
185	spin_lock(&proc_subdir_lock);
186	for (de = de->subdir; de ; de = de->next) {
187		if (de->namelen != dentry->d_name.len)
188			continue;
189		if (!memcmp(dentry->d_name.name, de->name, de->namelen)) {
190			pde_get(de);
191			spin_unlock(&proc_subdir_lock);
192			inode = proc_get_inode(dir->i_sb, de);
193			if (!inode)
194				return ERR_PTR(-ENOMEM);
195			d_set_d_op(dentry, &simple_dentry_operations);
196			d_add(dentry, inode);
197			return NULL;
198		}
199	}
200	spin_unlock(&proc_subdir_lock);
201	return ERR_PTR(-ENOENT);
202}
203
204struct dentry *proc_lookup(struct inode *dir, struct dentry *dentry,
205		unsigned int flags)
206{
207	return proc_lookup_de(PDE(dir), dir, dentry);
 
 
 
 
 
208}
209
210/*
211 * This returns non-zero if at EOF, so that the /proc
212 * root directory can use this and check if it should
213 * continue with the <pid> entries..
214 *
215 * Note that the VFS-layer doesn't care about the return
216 * value of the readdir() call, as long as it's non-negative
217 * for success..
218 */
219int proc_readdir_de(struct proc_dir_entry *de, struct file *file,
220		    struct dir_context *ctx)
221{
222	int i;
223
224	if (!dir_emit_dots(file, ctx))
225		return 0;
226
227	spin_lock(&proc_subdir_lock);
228	de = de->subdir;
229	i = ctx->pos - 2;
 
 
230	for (;;) {
231		if (!de) {
232			spin_unlock(&proc_subdir_lock);
233			return 0;
234		}
235		if (!i)
236			break;
237		de = de->next;
238		i--;
239	}
240
241	do {
242		struct proc_dir_entry *next;
243		pde_get(de);
244		spin_unlock(&proc_subdir_lock);
245		if (!dir_emit(ctx, de->name, de->namelen,
246			    de->low_ino, de->mode >> 12)) {
247			pde_put(de);
248			return 0;
249		}
250		spin_lock(&proc_subdir_lock);
251		ctx->pos++;
252		next = de->next;
 
253		pde_put(de);
254		de = next;
255	} while (de);
256	spin_unlock(&proc_subdir_lock);
257	return 1;
258}
259
260int proc_readdir(struct file *file, struct dir_context *ctx)
261{
262	struct inode *inode = file_inode(file);
 
263
264	return proc_readdir_de(PDE(inode), file, ctx);
 
 
 
265}
266
267/*
268 * These are the generic /proc directory operations. They
269 * use the in-memory "struct proc_dir_entry" tree to parse
270 * the /proc directory.
271 */
272static const struct file_operations proc_dir_operations = {
273	.llseek			= generic_file_llseek,
274	.read			= generic_read_dir,
275	.iterate		= proc_readdir,
 
 
 
 
 
 
 
 
 
 
276};
277
278/*
279 * proc directories can do almost nothing..
280 */
281static const struct inode_operations proc_dir_inode_operations = {
282	.lookup		= proc_lookup,
283	.getattr	= proc_getattr,
284	.setattr	= proc_notify_change,
285};
286
287static int proc_register(struct proc_dir_entry * dir, struct proc_dir_entry * dp)
 
 
288{
289	struct proc_dir_entry *tmp;
290	int ret;
291	
292	ret = proc_alloc_inum(&dp->low_ino);
293	if (ret)
294		return ret;
295
296	if (S_ISDIR(dp->mode)) {
297		dp->proc_fops = &proc_dir_operations;
298		dp->proc_iops = &proc_dir_inode_operations;
299		dir->nlink++;
300	} else if (S_ISLNK(dp->mode)) {
301		dp->proc_iops = &proc_link_inode_operations;
302	} else if (S_ISREG(dp->mode)) {
303		BUG_ON(dp->proc_fops == NULL);
304		dp->proc_iops = &proc_file_inode_operations;
305	} else {
306		WARN_ON(1);
307		return -EINVAL;
308	}
309
310	spin_lock(&proc_subdir_lock);
311
312	for (tmp = dir->subdir; tmp; tmp = tmp->next)
313		if (strcmp(tmp->name, dp->name) == 0) {
314			WARN(1, "proc_dir_entry '%s/%s' already registered\n",
315				dir->name, dp->name);
316			break;
317		}
318
319	dp->next = dir->subdir;
320	dp->parent = dir;
321	dir->subdir = dp;
322	spin_unlock(&proc_subdir_lock);
323
324	return 0;
 
 
 
 
 
 
 
 
 
 
 
325}
326
327static struct proc_dir_entry *__proc_create(struct proc_dir_entry **parent,
328					  const char *name,
329					  umode_t mode,
330					  nlink_t nlink)
331{
332	struct proc_dir_entry *ent = NULL;
333	const char *fn = name;
334	unsigned int len;
335
336	/* make sure name is valid */
337	if (!name || !strlen(name))
338		goto out;
339
340	if (xlate_proc_name(name, parent, &fn) != 0)
341		goto out;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
342
343	/* At this point there must not be any '/' characters beyond *fn */
344	if (strchr(fn, '/'))
345		goto out;
346
347	len = strlen(fn);
 
 
 
 
 
 
 
 
348
349	ent = kzalloc(sizeof(struct proc_dir_entry) + len + 1, GFP_KERNEL);
350	if (!ent)
351		goto out;
352
353	memcpy(ent->name, fn, len + 1);
354	ent->namelen = len;
355	ent->mode = mode;
356	ent->nlink = nlink;
357	atomic_set(&ent->count, 1);
 
358	spin_lock_init(&ent->pde_unload_lock);
359	INIT_LIST_HEAD(&ent->pde_openers);
 
 
 
 
 
 
 
360out:
361	return ent;
362}
363
364struct proc_dir_entry *proc_symlink(const char *name,
365		struct proc_dir_entry *parent, const char *dest)
366{
367	struct proc_dir_entry *ent;
368
369	ent = __proc_create(&parent, name,
370			  (S_IFLNK | S_IRUGO | S_IWUGO | S_IXUGO),1);
371
372	if (ent) {
373		ent->data = kmalloc((ent->size=strlen(dest))+1, GFP_KERNEL);
374		if (ent->data) {
375			strcpy((char*)ent->data,dest);
376			if (proc_register(parent, ent) < 0) {
377				kfree(ent->data);
378				kfree(ent);
379				ent = NULL;
380			}
381		} else {
382			kfree(ent);
383			ent = NULL;
384		}
385	}
386	return ent;
387}
388EXPORT_SYMBOL(proc_symlink);
389
390struct proc_dir_entry *proc_mkdir_data(const char *name, umode_t mode,
391		struct proc_dir_entry *parent, void *data)
392{
393	struct proc_dir_entry *ent;
394
395	if (mode == 0)
396		mode = S_IRUGO | S_IXUGO;
397
398	ent = __proc_create(&parent, name, S_IFDIR | mode, 2);
399	if (ent) {
400		ent->data = data;
401		if (proc_register(parent, ent) < 0) {
402			kfree(ent);
403			ent = NULL;
 
404		}
 
405	}
406	return ent;
407}
 
 
 
 
 
 
 
408EXPORT_SYMBOL_GPL(proc_mkdir_data);
409
410struct proc_dir_entry *proc_mkdir_mode(const char *name, umode_t mode,
411				       struct proc_dir_entry *parent)
412{
413	return proc_mkdir_data(name, mode, parent, NULL);
414}
415EXPORT_SYMBOL(proc_mkdir_mode);
416
417struct proc_dir_entry *proc_mkdir(const char *name,
418		struct proc_dir_entry *parent)
419{
420	return proc_mkdir_data(name, 0, parent, NULL);
421}
422EXPORT_SYMBOL(proc_mkdir);
423
424struct proc_dir_entry *proc_create_data(const char *name, umode_t mode,
425					struct proc_dir_entry *parent,
426					const struct file_operations *proc_fops,
427					void *data)
 
 
 
 
 
 
 
 
 
 
 
 
 
 
428{
429	struct proc_dir_entry *pde;
 
430	if ((mode & S_IFMT) == 0)
431		mode |= S_IFREG;
 
 
 
 
432
433	if (!S_ISREG(mode)) {
434		WARN_ON(1);	/* use proc_mkdir() */
435		return NULL;
 
436	}
 
 
 
 
 
 
 
 
 
 
 
 
 
 
437
438	if ((mode & S_IALLUGO) == 0)
439		mode |= S_IRUGO;
440	pde = __proc_create(&parent, name, mode, 1);
441	if (!pde)
442		goto out;
443	pde->proc_fops = proc_fops;
444	pde->data = data;
445	if (proc_register(parent, pde) < 0)
446		goto out_free;
447	return pde;
448out_free:
449	kfree(pde);
450out:
451	return NULL;
452}
453EXPORT_SYMBOL(proc_create_data);
454 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
455void proc_set_size(struct proc_dir_entry *de, loff_t size)
456{
457	de->size = size;
458}
459EXPORT_SYMBOL(proc_set_size);
460
461void proc_set_user(struct proc_dir_entry *de, kuid_t uid, kgid_t gid)
462{
463	de->uid = uid;
464	de->gid = gid;
465}
466EXPORT_SYMBOL(proc_set_user);
467
468static void free_proc_entry(struct proc_dir_entry *de)
469{
470	proc_free_inum(de->low_ino);
471
472	if (S_ISLNK(de->mode))
473		kfree(de->data);
474	kfree(de);
475}
476
477void pde_put(struct proc_dir_entry *pde)
478{
479	if (atomic_dec_and_test(&pde->count))
480		free_proc_entry(pde);
 
 
481}
482
483/*
484 * Remove a /proc entry and free it if it's not currently in use.
485 */
486void remove_proc_entry(const char *name, struct proc_dir_entry *parent)
487{
488	struct proc_dir_entry **p;
489	struct proc_dir_entry *de = NULL;
490	const char *fn = name;
491	unsigned int len;
492
493	spin_lock(&proc_subdir_lock);
494	if (__xlate_proc_name(name, &parent, &fn) != 0) {
495		spin_unlock(&proc_subdir_lock);
496		return;
497	}
498	len = strlen(fn);
499
500	for (p = &parent->subdir; *p; p=&(*p)->next ) {
501		if (proc_match(len, fn, *p)) {
502			de = *p;
503			*p = de->next;
504			de->next = NULL;
505			break;
 
 
 
506		}
507	}
508	spin_unlock(&proc_subdir_lock);
509	if (!de) {
510		WARN(1, "name '%s'\n", name);
511		return;
512	}
513
514	proc_entry_rundown(de);
515
516	if (S_ISDIR(de->mode))
517		parent->nlink--;
518	de->nlink = 0;
519	WARN(de->subdir, "%s: removing non-empty directory "
520			 "'%s/%s', leaking at least '%s'\n", __func__,
521			 de->parent->name, de->name, de->subdir->name);
522	pde_put(de);
523}
524EXPORT_SYMBOL(remove_proc_entry);
525
526int remove_proc_subtree(const char *name, struct proc_dir_entry *parent)
527{
528	struct proc_dir_entry **p;
529	struct proc_dir_entry *root = NULL, *de, *next;
530	const char *fn = name;
531	unsigned int len;
532
533	spin_lock(&proc_subdir_lock);
534	if (__xlate_proc_name(name, &parent, &fn) != 0) {
535		spin_unlock(&proc_subdir_lock);
536		return -ENOENT;
537	}
538	len = strlen(fn);
539
540	for (p = &parent->subdir; *p; p=&(*p)->next ) {
541		if (proc_match(len, fn, *p)) {
542			root = *p;
543			*p = root->next;
544			root->next = NULL;
545			break;
546		}
547	}
548	if (!root) {
549		spin_unlock(&proc_subdir_lock);
550		return -ENOENT;
551	}
 
 
 
 
 
 
 
 
552	de = root;
553	while (1) {
554		next = de->subdir;
555		if (next) {
556			de->subdir = next->next;
557			next->next = NULL;
 
 
 
 
 
558			de = next;
559			continue;
560		}
561		spin_unlock(&proc_subdir_lock);
562
563		proc_entry_rundown(de);
564		next = de->parent;
565		if (S_ISDIR(de->mode))
566			next->nlink--;
567		de->nlink = 0;
 
 
568		if (de == root)
569			break;
570		pde_put(de);
571
572		spin_lock(&proc_subdir_lock);
573		de = next;
574	}
575	pde_put(root);
576	return 0;
577}
578EXPORT_SYMBOL(remove_proc_subtree);
579
580void *proc_get_parent_data(const struct inode *inode)
581{
582	struct proc_dir_entry *de = PDE(inode);
583	return de->parent->data;
584}
585EXPORT_SYMBOL_GPL(proc_get_parent_data);
586
587void proc_remove(struct proc_dir_entry *de)
588{
589	if (de)
590		remove_proc_subtree(de->name, de->parent);
591}
592EXPORT_SYMBOL(proc_remove);
593
594void *PDE_DATA(const struct inode *inode)
 
 
 
 
 
 
595{
596	return __PDE_DATA(inode);
 
 
 
 
 
 
 
 
 
 
 
 
 
597}
598EXPORT_SYMBOL(PDE_DATA);