 e36cb0b89c
			
		
	
	
	e36cb0b89c
	
	
	
		
			
			Convert the following where appropriate:
 (1) S_ISLNK(dentry->d_inode) to d_is_symlink(dentry).
 (2) S_ISREG(dentry->d_inode) to d_is_reg(dentry).
 (3) S_ISDIR(dentry->d_inode) to d_is_dir(dentry).  This is actually more
     complicated than it appears as some calls should be converted to
     d_can_lookup() instead.  The difference is whether the directory in
     question is a real dir with a ->lookup op or whether it's a fake dir with
     a ->d_automount op.
In some circumstances, we can subsume checks for dentry->d_inode not being
NULL into this, provided we the code isn't in a filesystem that expects
d_inode to be NULL if the dirent really *is* negative (ie. if we're going to
use d_inode() rather than d_backing_inode() to get the inode pointer).
Note that the dentry type field may be set to something other than
DCACHE_MISS_TYPE when d_inode is NULL in the case of unionmount, where the VFS
manages the fall-through from a negative dentry to a lower layer.  In such a
case, the dentry type of the negative union dentry is set to the same as the
type of the lower dentry.
However, if you know d_inode is not NULL at the call site, then you can use
the d_is_xxx() functions even in a filesystem.
There is one further complication: a 0,0 chardev dentry may be labelled
DCACHE_WHITEOUT_TYPE rather than DCACHE_SPECIAL_TYPE.  Strictly, this was
intended for special directory entry types that don't have attached inodes.
The following perl+coccinelle script was used:
use strict;
my @callers;
open($fd, 'git grep -l \'S_IS[A-Z].*->d_inode\' |') ||
    die "Can't grep for S_ISDIR and co. callers";
@callers = <$fd>;
close($fd);
unless (@callers) {
    print "No matches\n";
    exit(0);
}
my @cocci = (
    '@@',
    'expression E;',
    '@@',
    '',
    '- S_ISLNK(E->d_inode->i_mode)',
    '+ d_is_symlink(E)',
    '',
    '@@',
    'expression E;',
    '@@',
    '',
    '- S_ISDIR(E->d_inode->i_mode)',
    '+ d_is_dir(E)',
    '',
    '@@',
    'expression E;',
    '@@',
    '',
    '- S_ISREG(E->d_inode->i_mode)',
    '+ d_is_reg(E)' );
my $coccifile = "tmp.sp.cocci";
open($fd, ">$coccifile") || die $coccifile;
print($fd "$_\n") || die $coccifile foreach (@cocci);
close($fd);
foreach my $file (@callers) {
    chomp $file;
    print "Processing ", $file, "\n";
    system("spatch", "--sp-file", $coccifile, $file, "--in-place", "--no-show-diff") == 0 ||
	die "spatch failed";
}
[AV: overlayfs parts skipped]
Signed-off-by: David Howells <dhowells@redhat.com>
Signed-off-by: Al Viro <viro@zeniv.linux.org.uk>
		
	
			
		
			
				
	
	
		
			603 lines
		
	
	
	
		
			14 KiB
			
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			603 lines
		
	
	
	
		
			14 KiB
			
		
	
	
	
		
			C
		
	
	
	
	
	
| /* -*- c -*- --------------------------------------------------------------- *
 | |
|  *
 | |
|  * linux/fs/autofs/expire.c
 | |
|  *
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|  *  Copyright 1997-1998 Transmeta Corporation -- All Rights Reserved
 | |
|  *  Copyright 1999-2000 Jeremy Fitzhardinge <jeremy@goop.org>
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|  *  Copyright 2001-2006 Ian Kent <raven@themaw.net>
 | |
|  *
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|  * This file is part of the Linux kernel and is made available under
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|  * the terms of the GNU General Public License, version 2, or at your
 | |
|  * option, any later version, incorporated herein by reference.
 | |
|  *
 | |
|  * ------------------------------------------------------------------------- */
 | |
| 
 | |
| #include "autofs_i.h"
 | |
| 
 | |
| static unsigned long now;
 | |
| 
 | |
| /* Check if a dentry can be expired */
 | |
| static inline int autofs4_can_expire(struct dentry *dentry,
 | |
| 					unsigned long timeout, int do_now)
 | |
| {
 | |
| 	struct autofs_info *ino = autofs4_dentry_ino(dentry);
 | |
| 
 | |
| 	/* dentry in the process of being deleted */
 | |
| 	if (ino == NULL)
 | |
| 		return 0;
 | |
| 
 | |
| 	if (!do_now) {
 | |
| 		/* Too young to die */
 | |
| 		if (!timeout || time_after(ino->last_used + timeout, now))
 | |
| 			return 0;
 | |
| 	}
 | |
| 	return 1;
 | |
| }
 | |
| 
 | |
| /* Check a mount point for busyness */
 | |
| static int autofs4_mount_busy(struct vfsmount *mnt, struct dentry *dentry)
 | |
| {
 | |
| 	struct dentry *top = dentry;
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| 	struct path path = {.mnt = mnt, .dentry = dentry};
 | |
| 	int status = 1;
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| 
 | |
| 	DPRINTK("dentry %p %pd", dentry, dentry);
 | |
| 
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| 	path_get(&path);
 | |
| 
 | |
| 	if (!follow_down_one(&path))
 | |
| 		goto done;
 | |
| 
 | |
| 	if (is_autofs4_dentry(path.dentry)) {
 | |
| 		struct autofs_sb_info *sbi = autofs4_sbi(path.dentry->d_sb);
 | |
| 
 | |
| 		/* This is an autofs submount, we can't expire it */
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| 		if (autofs_type_indirect(sbi->type))
 | |
| 			goto done;
 | |
| 	}
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| 
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| 	/* Update the expiry counter if fs is busy */
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| 	if (!may_umount_tree(path.mnt)) {
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| 		struct autofs_info *ino = autofs4_dentry_ino(top);
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| 		ino->last_used = jiffies;
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| 		goto done;
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| 	}
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| 
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| 	status = 0;
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| done:
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| 	DPRINTK("returning = %d", status);
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| 	path_put(&path);
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| 	return status;
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| }
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| 
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| /*
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|  * Calculate and dget next entry in the subdirs list under root.
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|  */
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| static struct dentry *get_next_positive_subdir(struct dentry *prev,
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| 						struct dentry *root)
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| {
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| 	struct autofs_sb_info *sbi = autofs4_sbi(root->d_sb);
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| 	struct list_head *next;
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| 	struct dentry *q;
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| 
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| 	spin_lock(&sbi->lookup_lock);
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| 	spin_lock(&root->d_lock);
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| 
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| 	if (prev)
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| 		next = prev->d_child.next;
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| 	else {
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| 		prev = dget_dlock(root);
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| 		next = prev->d_subdirs.next;
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| 	}
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| 
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| cont:
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| 	if (next == &root->d_subdirs) {
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| 		spin_unlock(&root->d_lock);
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| 		spin_unlock(&sbi->lookup_lock);
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| 		dput(prev);
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| 		return NULL;
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| 	}
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| 
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| 	q = list_entry(next, struct dentry, d_child);
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| 
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| 	spin_lock_nested(&q->d_lock, DENTRY_D_LOCK_NESTED);
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| 	/* Already gone or negative dentry (under construction) - try next */
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| 	if (!d_count(q) || !simple_positive(q)) {
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| 		spin_unlock(&q->d_lock);
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| 		next = q->d_child.next;
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| 		goto cont;
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| 	}
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| 	dget_dlock(q);
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| 	spin_unlock(&q->d_lock);
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| 	spin_unlock(&root->d_lock);
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| 	spin_unlock(&sbi->lookup_lock);
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| 
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| 	dput(prev);
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| 
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| 	return q;
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| }
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| 
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| /*
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|  * Calculate and dget next entry in top down tree traversal.
 | |
|  */
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| static struct dentry *get_next_positive_dentry(struct dentry *prev,
 | |
| 						struct dentry *root)
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| {
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| 	struct autofs_sb_info *sbi = autofs4_sbi(root->d_sb);
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| 	struct list_head *next;
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| 	struct dentry *p, *ret;
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| 
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| 	if (prev == NULL)
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| 		return dget(root);
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| 
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| 	spin_lock(&sbi->lookup_lock);
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| relock:
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| 	p = prev;
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| 	spin_lock(&p->d_lock);
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| again:
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| 	next = p->d_subdirs.next;
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| 	if (next == &p->d_subdirs) {
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| 		while (1) {
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| 			struct dentry *parent;
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| 
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| 			if (p == root) {
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| 				spin_unlock(&p->d_lock);
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| 				spin_unlock(&sbi->lookup_lock);
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| 				dput(prev);
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| 				return NULL;
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| 			}
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| 
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| 			parent = p->d_parent;
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| 			if (!spin_trylock(&parent->d_lock)) {
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| 				spin_unlock(&p->d_lock);
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| 				cpu_relax();
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| 				goto relock;
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| 			}
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| 			spin_unlock(&p->d_lock);
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| 			next = p->d_child.next;
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| 			p = parent;
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| 			if (next != &parent->d_subdirs)
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| 				break;
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| 		}
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| 	}
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| 	ret = list_entry(next, struct dentry, d_child);
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| 
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| 	spin_lock_nested(&ret->d_lock, DENTRY_D_LOCK_NESTED);
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| 	/* Negative dentry - try next */
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| 	if (!simple_positive(ret)) {
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| 		spin_unlock(&p->d_lock);
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| 		lock_set_subclass(&ret->d_lock.dep_map, 0, _RET_IP_);
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| 		p = ret;
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| 		goto again;
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| 	}
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| 	dget_dlock(ret);
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| 	spin_unlock(&ret->d_lock);
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| 	spin_unlock(&p->d_lock);
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| 	spin_unlock(&sbi->lookup_lock);
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| 
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| 	dput(prev);
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| 
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| 	return ret;
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| }
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| 
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| /*
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|  * Check a direct mount point for busyness.
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|  * Direct mounts have similar expiry semantics to tree mounts.
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|  * The tree is not busy iff no mountpoints are busy and there are no
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|  * autofs submounts.
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|  */
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| static int autofs4_direct_busy(struct vfsmount *mnt,
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| 				struct dentry *top,
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| 				unsigned long timeout,
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| 				int do_now)
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| {
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| 	DPRINTK("top %p %pd", top, top);
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| 
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| 	/* If it's busy update the expiry counters */
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| 	if (!may_umount_tree(mnt)) {
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| 		struct autofs_info *ino = autofs4_dentry_ino(top);
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| 		if (ino)
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| 			ino->last_used = jiffies;
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| 		return 1;
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| 	}
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| 
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| 	/* Timeout of a direct mount is determined by its top dentry */
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| 	if (!autofs4_can_expire(top, timeout, do_now))
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| 		return 1;
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| 
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| 	return 0;
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| }
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| 
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| /* Check a directory tree of mount points for busyness
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|  * The tree is not busy iff no mountpoints are busy
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|  */
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| static int autofs4_tree_busy(struct vfsmount *mnt,
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| 	       		     struct dentry *top,
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| 			     unsigned long timeout,
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| 			     int do_now)
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| {
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| 	struct autofs_info *top_ino = autofs4_dentry_ino(top);
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| 	struct dentry *p;
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| 
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| 	DPRINTK("top %p %pd", top, top);
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| 
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| 	/* Negative dentry - give up */
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| 	if (!simple_positive(top))
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| 		return 1;
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| 
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| 	p = NULL;
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| 	while ((p = get_next_positive_dentry(p, top))) {
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| 		DPRINTK("dentry %p %pd", p, p);
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| 
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| 		/*
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| 		 * Is someone visiting anywhere in the subtree ?
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| 		 * If there's no mount we need to check the usage
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| 		 * count for the autofs dentry.
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| 		 * If the fs is busy update the expiry counter.
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| 		 */
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| 		if (d_mountpoint(p)) {
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| 			if (autofs4_mount_busy(mnt, p)) {
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| 				top_ino->last_used = jiffies;
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| 				dput(p);
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| 				return 1;
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| 			}
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| 		} else {
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| 			struct autofs_info *ino = autofs4_dentry_ino(p);
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| 			unsigned int ino_count = atomic_read(&ino->count);
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| 
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| 			/* allow for dget above and top is already dgot */
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| 			if (p == top)
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| 				ino_count += 2;
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| 			else
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| 				ino_count++;
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| 
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| 			if (d_count(p) > ino_count) {
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| 				top_ino->last_used = jiffies;
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| 				dput(p);
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| 				return 1;
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| 			}
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| 		}
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| 	}
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| 
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| 	/* Timeout of a tree mount is ultimately determined by its top dentry */
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| 	if (!autofs4_can_expire(top, timeout, do_now))
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| 		return 1;
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| 
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| 	return 0;
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| }
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| 
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| static struct dentry *autofs4_check_leaves(struct vfsmount *mnt,
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| 					   struct dentry *parent,
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| 					   unsigned long timeout,
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| 					   int do_now)
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| {
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| 	struct dentry *p;
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| 
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| 	DPRINTK("parent %p %pd", parent, parent);
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| 
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| 	p = NULL;
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| 	while ((p = get_next_positive_dentry(p, parent))) {
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| 		DPRINTK("dentry %p %pd", p, p);
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| 
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| 		if (d_mountpoint(p)) {
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| 			/* Can we umount this guy */
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| 			if (autofs4_mount_busy(mnt, p))
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| 				continue;
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| 
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| 			/* Can we expire this guy */
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| 			if (autofs4_can_expire(p, timeout, do_now))
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| 				return p;
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| 		}
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| 	}
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| 	return NULL;
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| }
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| 
 | |
| /* Check if we can expire a direct mount (possibly a tree) */
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| struct dentry *autofs4_expire_direct(struct super_block *sb,
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| 				     struct vfsmount *mnt,
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| 				     struct autofs_sb_info *sbi,
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| 				     int how)
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| {
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| 	unsigned long timeout;
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| 	struct dentry *root = dget(sb->s_root);
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| 	int do_now = how & AUTOFS_EXP_IMMEDIATE;
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| 	struct autofs_info *ino;
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| 
 | |
| 	if (!root)
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| 		return NULL;
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| 
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| 	now = jiffies;
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| 	timeout = sbi->exp_timeout;
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| 
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| 	spin_lock(&sbi->fs_lock);
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| 	ino = autofs4_dentry_ino(root);
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| 	/* No point expiring a pending mount */
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| 	if (ino->flags & AUTOFS_INF_PENDING)
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| 		goto out;
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| 	if (!autofs4_direct_busy(mnt, root, timeout, do_now)) {
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| 		ino->flags |= AUTOFS_INF_NO_RCU;
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| 		spin_unlock(&sbi->fs_lock);
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| 		synchronize_rcu();
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| 		spin_lock(&sbi->fs_lock);
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| 		if (!autofs4_direct_busy(mnt, root, timeout, do_now)) {
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| 			ino->flags |= AUTOFS_INF_EXPIRING;
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| 			smp_mb();
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| 			ino->flags &= ~AUTOFS_INF_NO_RCU;
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| 			init_completion(&ino->expire_complete);
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| 			spin_unlock(&sbi->fs_lock);
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| 			return root;
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| 		}
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| 		ino->flags &= ~AUTOFS_INF_NO_RCU;
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| 	}
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| out:
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| 	spin_unlock(&sbi->fs_lock);
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| 	dput(root);
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| 
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| 	return NULL;
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| }
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| 
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| /* Check if 'dentry' should expire, or return a nearby
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|  * dentry that is suitable.
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|  * If returned dentry is different from arg dentry,
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|  * then a dget() reference was taken, else not.
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|  */
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| static struct dentry *should_expire(struct dentry *dentry,
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| 				    struct vfsmount *mnt,
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| 				    unsigned long timeout,
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| 				    int how)
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| {
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| 	int do_now = how & AUTOFS_EXP_IMMEDIATE;
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| 	int exp_leaves = how & AUTOFS_EXP_LEAVES;
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| 	struct autofs_info *ino = autofs4_dentry_ino(dentry);
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| 	unsigned int ino_count;
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| 
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| 	/* No point expiring a pending mount */
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| 	if (ino->flags & AUTOFS_INF_PENDING)
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| 		return NULL;
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| 
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| 	/*
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| 	 * Case 1: (i) indirect mount or top level pseudo direct mount
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| 	 *	   (autofs-4.1).
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| 	 *	   (ii) indirect mount with offset mount, check the "/"
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| 	 *	   offset (autofs-5.0+).
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| 	 */
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| 	if (d_mountpoint(dentry)) {
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| 		DPRINTK("checking mountpoint %p %pd", dentry, dentry);
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| 
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| 		/* Can we umount this guy */
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| 		if (autofs4_mount_busy(mnt, dentry))
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| 			return NULL;
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| 
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| 		/* Can we expire this guy */
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| 		if (autofs4_can_expire(dentry, timeout, do_now))
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| 			return dentry;
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| 		return NULL;
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| 	}
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| 
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| 	if (dentry->d_inode && d_is_symlink(dentry)) {
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| 		DPRINTK("checking symlink %p %pd", dentry, dentry);
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| 		/*
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| 		 * A symlink can't be "busy" in the usual sense so
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| 		 * just check last used for expire timeout.
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| 		 */
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| 		if (autofs4_can_expire(dentry, timeout, do_now))
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| 			return dentry;
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| 		return NULL;
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| 	}
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| 
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| 	if (simple_empty(dentry))
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| 		return NULL;
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| 
 | |
| 	/* Case 2: tree mount, expire iff entire tree is not busy */
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| 	if (!exp_leaves) {
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| 		/* Path walk currently on this dentry? */
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| 		ino_count = atomic_read(&ino->count) + 1;
 | |
| 		if (d_count(dentry) > ino_count)
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| 			return NULL;
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| 
 | |
| 		if (!autofs4_tree_busy(mnt, dentry, timeout, do_now))
 | |
| 			return dentry;
 | |
| 	/*
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| 	 * Case 3: pseudo direct mount, expire individual leaves
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| 	 *	   (autofs-4.1).
 | |
| 	 */
 | |
| 	} else {
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| 		/* Path walk currently on this dentry? */
 | |
| 		struct dentry *expired;
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| 		ino_count = atomic_read(&ino->count) + 1;
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| 		if (d_count(dentry) > ino_count)
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| 			return NULL;
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| 
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| 		expired = autofs4_check_leaves(mnt, dentry, timeout, do_now);
 | |
| 		if (expired) {
 | |
| 			if (expired == dentry)
 | |
| 				dput(dentry);
 | |
| 			return expired;
 | |
| 		}
 | |
| 	}
 | |
| 	return NULL;
 | |
| }
 | |
| /*
 | |
|  * Find an eligible tree to time-out
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|  * A tree is eligible if :-
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|  *  - it is unused by any user process
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|  *  - it has been unused for exp_timeout time
 | |
|  */
 | |
| struct dentry *autofs4_expire_indirect(struct super_block *sb,
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| 				       struct vfsmount *mnt,
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| 				       struct autofs_sb_info *sbi,
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| 				       int how)
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| {
 | |
| 	unsigned long timeout;
 | |
| 	struct dentry *root = sb->s_root;
 | |
| 	struct dentry *dentry;
 | |
| 	struct dentry *expired;
 | |
| 	struct autofs_info *ino;
 | |
| 
 | |
| 	if (!root)
 | |
| 		return NULL;
 | |
| 
 | |
| 	now = jiffies;
 | |
| 	timeout = sbi->exp_timeout;
 | |
| 
 | |
| 	dentry = NULL;
 | |
| 	while ((dentry = get_next_positive_subdir(dentry, root))) {
 | |
| 		spin_lock(&sbi->fs_lock);
 | |
| 		ino = autofs4_dentry_ino(dentry);
 | |
| 		if (ino->flags & AUTOFS_INF_NO_RCU)
 | |
| 			expired = NULL;
 | |
| 		else
 | |
| 			expired = should_expire(dentry, mnt, timeout, how);
 | |
| 		if (!expired) {
 | |
| 			spin_unlock(&sbi->fs_lock);
 | |
| 			continue;
 | |
| 		}
 | |
| 		ino = autofs4_dentry_ino(expired);
 | |
| 		ino->flags |= AUTOFS_INF_NO_RCU;
 | |
| 		spin_unlock(&sbi->fs_lock);
 | |
| 		synchronize_rcu();
 | |
| 		spin_lock(&sbi->fs_lock);
 | |
| 		if (should_expire(expired, mnt, timeout, how)) {
 | |
| 			if (expired != dentry)
 | |
| 				dput(dentry);
 | |
| 			goto found;
 | |
| 		}
 | |
| 
 | |
| 		ino->flags &= ~AUTOFS_INF_NO_RCU;
 | |
| 		if (expired != dentry)
 | |
| 			dput(expired);
 | |
| 		spin_unlock(&sbi->fs_lock);
 | |
| 	}
 | |
| 	return NULL;
 | |
| 
 | |
| found:
 | |
| 	DPRINTK("returning %p %pd", expired, expired);
 | |
| 	ino->flags |= AUTOFS_INF_EXPIRING;
 | |
| 	smp_mb();
 | |
| 	ino->flags &= ~AUTOFS_INF_NO_RCU;
 | |
| 	init_completion(&ino->expire_complete);
 | |
| 	spin_unlock(&sbi->fs_lock);
 | |
| 	spin_lock(&sbi->lookup_lock);
 | |
| 	spin_lock(&expired->d_parent->d_lock);
 | |
| 	spin_lock_nested(&expired->d_lock, DENTRY_D_LOCK_NESTED);
 | |
| 	list_move(&expired->d_parent->d_subdirs, &expired->d_child);
 | |
| 	spin_unlock(&expired->d_lock);
 | |
| 	spin_unlock(&expired->d_parent->d_lock);
 | |
| 	spin_unlock(&sbi->lookup_lock);
 | |
| 	return expired;
 | |
| }
 | |
| 
 | |
| int autofs4_expire_wait(struct dentry *dentry, int rcu_walk)
 | |
| {
 | |
| 	struct autofs_sb_info *sbi = autofs4_sbi(dentry->d_sb);
 | |
| 	struct autofs_info *ino = autofs4_dentry_ino(dentry);
 | |
| 	int status;
 | |
| 
 | |
| 	/* Block on any pending expire */
 | |
| 	if (!(ino->flags & (AUTOFS_INF_EXPIRING | AUTOFS_INF_NO_RCU)))
 | |
| 		return 0;
 | |
| 	if (rcu_walk)
 | |
| 		return -ECHILD;
 | |
| 
 | |
| 	spin_lock(&sbi->fs_lock);
 | |
| 	if (ino->flags & AUTOFS_INF_EXPIRING) {
 | |
| 		spin_unlock(&sbi->fs_lock);
 | |
| 
 | |
| 		DPRINTK("waiting for expire %p name=%pd", dentry, dentry);
 | |
| 
 | |
| 		status = autofs4_wait(sbi, dentry, NFY_NONE);
 | |
| 		wait_for_completion(&ino->expire_complete);
 | |
| 
 | |
| 		DPRINTK("expire done status=%d", status);
 | |
| 
 | |
| 		if (d_unhashed(dentry))
 | |
| 			return -EAGAIN;
 | |
| 
 | |
| 		return status;
 | |
| 	}
 | |
| 	spin_unlock(&sbi->fs_lock);
 | |
| 
 | |
| 	return 0;
 | |
| }
 | |
| 
 | |
| /* Perform an expiry operation */
 | |
| int autofs4_expire_run(struct super_block *sb,
 | |
| 		      struct vfsmount *mnt,
 | |
| 		      struct autofs_sb_info *sbi,
 | |
| 		      struct autofs_packet_expire __user *pkt_p)
 | |
| {
 | |
| 	struct autofs_packet_expire pkt;
 | |
| 	struct autofs_info *ino;
 | |
| 	struct dentry *dentry;
 | |
| 	int ret = 0;
 | |
| 
 | |
| 	memset(&pkt,0,sizeof pkt);
 | |
| 
 | |
| 	pkt.hdr.proto_version = sbi->version;
 | |
| 	pkt.hdr.type = autofs_ptype_expire;
 | |
| 
 | |
| 	if ((dentry = autofs4_expire_indirect(sb, mnt, sbi, 0)) == NULL)
 | |
| 		return -EAGAIN;
 | |
| 
 | |
| 	pkt.len = dentry->d_name.len;
 | |
| 	memcpy(pkt.name, dentry->d_name.name, pkt.len);
 | |
| 	pkt.name[pkt.len] = '\0';
 | |
| 	dput(dentry);
 | |
| 
 | |
| 	if ( copy_to_user(pkt_p, &pkt, sizeof(struct autofs_packet_expire)) )
 | |
| 		ret = -EFAULT;
 | |
| 
 | |
| 	spin_lock(&sbi->fs_lock);
 | |
| 	ino = autofs4_dentry_ino(dentry);
 | |
| 	/* avoid rapid-fire expire attempts if expiry fails */
 | |
| 	ino->last_used = now;
 | |
| 	ino->flags &= ~AUTOFS_INF_EXPIRING;
 | |
| 	complete_all(&ino->expire_complete);
 | |
| 	spin_unlock(&sbi->fs_lock);
 | |
| 
 | |
| 	return ret;
 | |
| }
 | |
| 
 | |
| int autofs4_do_expire_multi(struct super_block *sb, struct vfsmount *mnt,
 | |
| 			    struct autofs_sb_info *sbi, int when)
 | |
| {
 | |
| 	struct dentry *dentry;
 | |
| 	int ret = -EAGAIN;
 | |
| 
 | |
| 	if (autofs_type_trigger(sbi->type))
 | |
| 		dentry = autofs4_expire_direct(sb, mnt, sbi, when);
 | |
| 	else
 | |
| 		dentry = autofs4_expire_indirect(sb, mnt, sbi, when);
 | |
| 
 | |
| 	if (dentry) {
 | |
| 		struct autofs_info *ino = autofs4_dentry_ino(dentry);
 | |
| 
 | |
| 		/* This is synchronous because it makes the daemon a
 | |
|                    little easier */
 | |
| 		ret = autofs4_wait(sbi, dentry, NFY_EXPIRE);
 | |
| 
 | |
| 		spin_lock(&sbi->fs_lock);
 | |
| 		/* avoid rapid-fire expire attempts if expiry fails */
 | |
| 		ino->last_used = now;
 | |
| 		ino->flags &= ~AUTOFS_INF_EXPIRING;
 | |
| 		complete_all(&ino->expire_complete);
 | |
| 		spin_unlock(&sbi->fs_lock);
 | |
| 		dput(dentry);
 | |
| 	}
 | |
| 
 | |
| 	return ret;
 | |
| }
 | |
| 
 | |
| /* Call repeatedly until it returns -EAGAIN, meaning there's nothing
 | |
|    more to be done */
 | |
| int autofs4_expire_multi(struct super_block *sb, struct vfsmount *mnt,
 | |
| 			struct autofs_sb_info *sbi, int __user *arg)
 | |
| {
 | |
| 	int do_now = 0;
 | |
| 
 | |
| 	if (arg && get_user(do_now, arg))
 | |
| 		return -EFAULT;
 | |
| 
 | |
| 	return autofs4_do_expire_multi(sb, mnt, sbi, do_now);
 | |
| }
 | |
| 
 |