xfs_inode.c 62.4 KB
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/*
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 * Copyright (c) 2000-2006 Silicon Graphics, Inc.
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 * All Rights Reserved.
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 *
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 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License as
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 * published by the Free Software Foundation.
 *
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 * This program is distributed in the hope that it would be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
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 *
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 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write the Free Software Foundation,
 * Inc.,  51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
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 */
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#include <linux/log2.h>

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#include "xfs.h"
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#include "xfs_fs.h"
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#include "xfs_format.h"
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#include "xfs_log.h"
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#include "xfs_inum.h"
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#include "xfs_trans.h"
#include "xfs_trans_priv.h"
#include "xfs_sb.h"
#include "xfs_ag.h"
#include "xfs_mount.h"
#include "xfs_bmap_btree.h"
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#include "xfs_alloc_btree.h"
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#include "xfs_ialloc_btree.h"
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#include "xfs_attr_sf.h"
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#include "xfs_dinode.h"
#include "xfs_inode.h"
#include "xfs_buf_item.h"
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#include "xfs_inode_item.h"
#include "xfs_btree.h"
#include "xfs_alloc.h"
#include "xfs_ialloc.h"
#include "xfs_bmap.h"
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#include "xfs_error.h"
#include "xfs_utils.h"
#include "xfs_quota.h"
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#include "xfs_filestream.h"
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#include "xfs_vnodeops.h"
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#include "xfs_cksum.h"
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#include "xfs_trace.h"
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#include "xfs_icache.h"
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kmem_zone_t *xfs_inode_zone;

/*
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 * Used in xfs_itruncate_extents().  This is the maximum number of extents
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 * freed from a file in a single transaction.
 */
#define	XFS_ITRUNC_MAX_EXTENTS	2

STATIC int xfs_iflush_int(xfs_inode_t *, xfs_buf_t *);

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/*
 * helper function to extract extent size hint from inode
 */
xfs_extlen_t
xfs_get_extsz_hint(
	struct xfs_inode	*ip)
{
	if ((ip->i_d.di_flags & XFS_DIFLAG_EXTSIZE) && ip->i_d.di_extsize)
		return ip->i_d.di_extsize;
	if (XFS_IS_REALTIME_INODE(ip))
		return ip->i_mount->m_sb.sb_rextsize;
	return 0;
}

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/*
 * This is a wrapper routine around the xfs_ilock() routine used to centralize
 * some grungy code.  It is used in places that wish to lock the inode solely
 * for reading the extents.  The reason these places can't just call
 * xfs_ilock(SHARED) is that the inode lock also guards to bringing in of the
 * extents from disk for a file in b-tree format.  If the inode is in b-tree
 * format, then we need to lock the inode exclusively until the extents are read
 * in.  Locking it exclusively all the time would limit our parallelism
 * unnecessarily, though.  What we do instead is check to see if the extents
 * have been read in yet, and only lock the inode exclusively if they have not.
 *
 * The function returns a value which should be given to the corresponding
 * xfs_iunlock_map_shared().  This value is the mode in which the lock was
 * actually taken.
 */
uint
xfs_ilock_map_shared(
	xfs_inode_t	*ip)
{
	uint	lock_mode;

	if ((ip->i_d.di_format == XFS_DINODE_FMT_BTREE) &&
	    ((ip->i_df.if_flags & XFS_IFEXTENTS) == 0)) {
		lock_mode = XFS_ILOCK_EXCL;
	} else {
		lock_mode = XFS_ILOCK_SHARED;
	}

	xfs_ilock(ip, lock_mode);

	return lock_mode;
}

/*
 * This is simply the unlock routine to go with xfs_ilock_map_shared().
 * All it does is call xfs_iunlock() with the given lock_mode.
 */
void
xfs_iunlock_map_shared(
	xfs_inode_t	*ip,
	unsigned int	lock_mode)
{
	xfs_iunlock(ip, lock_mode);
}

/*
 * The xfs inode contains 2 locks: a multi-reader lock called the
 * i_iolock and a multi-reader lock called the i_lock.  This routine
 * allows either or both of the locks to be obtained.
 *
 * The 2 locks should always be ordered so that the IO lock is
 * obtained first in order to prevent deadlock.
 *
 * ip -- the inode being locked
 * lock_flags -- this parameter indicates the inode's locks
 *       to be locked.  It can be:
 *		XFS_IOLOCK_SHARED,
 *		XFS_IOLOCK_EXCL,
 *		XFS_ILOCK_SHARED,
 *		XFS_ILOCK_EXCL,
 *		XFS_IOLOCK_SHARED | XFS_ILOCK_SHARED,
 *		XFS_IOLOCK_SHARED | XFS_ILOCK_EXCL,
 *		XFS_IOLOCK_EXCL | XFS_ILOCK_SHARED,
 *		XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL
 */
void
xfs_ilock(
	xfs_inode_t		*ip,
	uint			lock_flags)
{
	trace_xfs_ilock(ip, lock_flags, _RET_IP_);

	/*
	 * You can't set both SHARED and EXCL for the same lock,
	 * and only XFS_IOLOCK_SHARED, XFS_IOLOCK_EXCL, XFS_ILOCK_SHARED,
	 * and XFS_ILOCK_EXCL are valid values to set in lock_flags.
	 */
	ASSERT((lock_flags & (XFS_IOLOCK_SHARED | XFS_IOLOCK_EXCL)) !=
	       (XFS_IOLOCK_SHARED | XFS_IOLOCK_EXCL));
	ASSERT((lock_flags & (XFS_ILOCK_SHARED | XFS_ILOCK_EXCL)) !=
	       (XFS_ILOCK_SHARED | XFS_ILOCK_EXCL));
	ASSERT((lock_flags & ~(XFS_LOCK_MASK | XFS_LOCK_DEP_MASK)) == 0);

	if (lock_flags & XFS_IOLOCK_EXCL)
		mrupdate_nested(&ip->i_iolock, XFS_IOLOCK_DEP(lock_flags));
	else if (lock_flags & XFS_IOLOCK_SHARED)
		mraccess_nested(&ip->i_iolock, XFS_IOLOCK_DEP(lock_flags));

	if (lock_flags & XFS_ILOCK_EXCL)
		mrupdate_nested(&ip->i_lock, XFS_ILOCK_DEP(lock_flags));
	else if (lock_flags & XFS_ILOCK_SHARED)
		mraccess_nested(&ip->i_lock, XFS_ILOCK_DEP(lock_flags));
}

/*
 * This is just like xfs_ilock(), except that the caller
 * is guaranteed not to sleep.  It returns 1 if it gets
 * the requested locks and 0 otherwise.  If the IO lock is
 * obtained but the inode lock cannot be, then the IO lock
 * is dropped before returning.
 *
 * ip -- the inode being locked
 * lock_flags -- this parameter indicates the inode's locks to be
 *       to be locked.  See the comment for xfs_ilock() for a list
 *	 of valid values.
 */
int
xfs_ilock_nowait(
	xfs_inode_t		*ip,
	uint			lock_flags)
{
	trace_xfs_ilock_nowait(ip, lock_flags, _RET_IP_);

	/*
	 * You can't set both SHARED and EXCL for the same lock,
	 * and only XFS_IOLOCK_SHARED, XFS_IOLOCK_EXCL, XFS_ILOCK_SHARED,
	 * and XFS_ILOCK_EXCL are valid values to set in lock_flags.
	 */
	ASSERT((lock_flags & (XFS_IOLOCK_SHARED | XFS_IOLOCK_EXCL)) !=
	       (XFS_IOLOCK_SHARED | XFS_IOLOCK_EXCL));
	ASSERT((lock_flags & (XFS_ILOCK_SHARED | XFS_ILOCK_EXCL)) !=
	       (XFS_ILOCK_SHARED | XFS_ILOCK_EXCL));
	ASSERT((lock_flags & ~(XFS_LOCK_MASK | XFS_LOCK_DEP_MASK)) == 0);

	if (lock_flags & XFS_IOLOCK_EXCL) {
		if (!mrtryupdate(&ip->i_iolock))
			goto out;
	} else if (lock_flags & XFS_IOLOCK_SHARED) {
		if (!mrtryaccess(&ip->i_iolock))
			goto out;
	}
	if (lock_flags & XFS_ILOCK_EXCL) {
		if (!mrtryupdate(&ip->i_lock))
			goto out_undo_iolock;
	} else if (lock_flags & XFS_ILOCK_SHARED) {
		if (!mrtryaccess(&ip->i_lock))
			goto out_undo_iolock;
	}
	return 1;

 out_undo_iolock:
	if (lock_flags & XFS_IOLOCK_EXCL)
		mrunlock_excl(&ip->i_iolock);
	else if (lock_flags & XFS_IOLOCK_SHARED)
		mrunlock_shared(&ip->i_iolock);
 out:
	return 0;
}

/*
 * xfs_iunlock() is used to drop the inode locks acquired with
 * xfs_ilock() and xfs_ilock_nowait().  The caller must pass
 * in the flags given to xfs_ilock() or xfs_ilock_nowait() so
 * that we know which locks to drop.
 *
 * ip -- the inode being unlocked
 * lock_flags -- this parameter indicates the inode's locks to be
 *       to be unlocked.  See the comment for xfs_ilock() for a list
 *	 of valid values for this parameter.
 *
 */
void
xfs_iunlock(
	xfs_inode_t		*ip,
	uint			lock_flags)
{
	/*
	 * You can't set both SHARED and EXCL for the same lock,
	 * and only XFS_IOLOCK_SHARED, XFS_IOLOCK_EXCL, XFS_ILOCK_SHARED,
	 * and XFS_ILOCK_EXCL are valid values to set in lock_flags.
	 */
	ASSERT((lock_flags & (XFS_IOLOCK_SHARED | XFS_IOLOCK_EXCL)) !=
	       (XFS_IOLOCK_SHARED | XFS_IOLOCK_EXCL));
	ASSERT((lock_flags & (XFS_ILOCK_SHARED | XFS_ILOCK_EXCL)) !=
	       (XFS_ILOCK_SHARED | XFS_ILOCK_EXCL));
	ASSERT((lock_flags & ~(XFS_LOCK_MASK | XFS_LOCK_DEP_MASK)) == 0);
	ASSERT(lock_flags != 0);

	if (lock_flags & XFS_IOLOCK_EXCL)
		mrunlock_excl(&ip->i_iolock);
	else if (lock_flags & XFS_IOLOCK_SHARED)
		mrunlock_shared(&ip->i_iolock);

	if (lock_flags & XFS_ILOCK_EXCL)
		mrunlock_excl(&ip->i_lock);
	else if (lock_flags & XFS_ILOCK_SHARED)
		mrunlock_shared(&ip->i_lock);

	trace_xfs_iunlock(ip, lock_flags, _RET_IP_);
}

/*
 * give up write locks.  the i/o lock cannot be held nested
 * if it is being demoted.
 */
void
xfs_ilock_demote(
	xfs_inode_t		*ip,
	uint			lock_flags)
{
	ASSERT(lock_flags & (XFS_IOLOCK_EXCL|XFS_ILOCK_EXCL));
	ASSERT((lock_flags & ~(XFS_IOLOCK_EXCL|XFS_ILOCK_EXCL)) == 0);

	if (lock_flags & XFS_ILOCK_EXCL)
		mrdemote(&ip->i_lock);
	if (lock_flags & XFS_IOLOCK_EXCL)
		mrdemote(&ip->i_iolock);

	trace_xfs_ilock_demote(ip, lock_flags, _RET_IP_);
}

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#if defined(DEBUG) || defined(XFS_WARN)
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int
xfs_isilocked(
	xfs_inode_t		*ip,
	uint			lock_flags)
{
	if (lock_flags & (XFS_ILOCK_EXCL|XFS_ILOCK_SHARED)) {
		if (!(lock_flags & XFS_ILOCK_SHARED))
			return !!ip->i_lock.mr_writer;
		return rwsem_is_locked(&ip->i_lock.mr_lock);
	}

	if (lock_flags & (XFS_IOLOCK_EXCL|XFS_IOLOCK_SHARED)) {
		if (!(lock_flags & XFS_IOLOCK_SHARED))
			return !!ip->i_iolock.mr_writer;
		return rwsem_is_locked(&ip->i_iolock.mr_lock);
	}

	ASSERT(0);
	return 0;
}
#endif

void
__xfs_iflock(
	struct xfs_inode	*ip)
{
	wait_queue_head_t *wq = bit_waitqueue(&ip->i_flags, __XFS_IFLOCK_BIT);
	DEFINE_WAIT_BIT(wait, &ip->i_flags, __XFS_IFLOCK_BIT);

	do {
		prepare_to_wait_exclusive(wq, &wait.wait, TASK_UNINTERRUPTIBLE);
		if (xfs_isiflocked(ip))
			io_schedule();
	} while (!xfs_iflock_nowait(ip));

	finish_wait(wq, &wait.wait);
}

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/*
 * Check that none of the inode's in the buffer have a next
 * unlinked field of 0.
 */
#if defined(DEBUG)
void
xfs_inobp_check(
	xfs_mount_t	*mp,
	xfs_buf_t	*bp)
{
	int		i;
	int		j;
	xfs_dinode_t	*dip;

	j = mp->m_inode_cluster_size >> mp->m_sb.sb_inodelog;

	for (i = 0; i < j; i++) {
		dip = (xfs_dinode_t *)xfs_buf_offset(bp,
					i * mp->m_sb.sb_inodesize);
		if (!dip->di_next_unlinked)  {
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			xfs_alert(mp,
	"Detected bogus zero next_unlinked field in incore inode buffer 0x%p.",
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				bp);
			ASSERT(dip->di_next_unlinked);
		}
	}
}
#endif

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static void
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xfs_inode_buf_verify(
	struct xfs_buf	*bp)
{
	struct xfs_mount *mp = bp->b_target->bt_mount;
	int		i;
	int		ni;

	/*
	 * Validate the magic number and version of every inode in the buffer
	 */
	ni = XFS_BB_TO_FSB(mp, bp->b_length) * mp->m_sb.sb_inopblock;
	for (i = 0; i < ni; i++) {
		int		di_ok;
		xfs_dinode_t	*dip;

		dip = (struct xfs_dinode *)xfs_buf_offset(bp,
					(i << mp->m_sb.sb_inodelog));
		di_ok = dip->di_magic == cpu_to_be16(XFS_DINODE_MAGIC) &&
			    XFS_DINODE_GOOD_VERSION(dip->di_version);
		if (unlikely(XFS_TEST_ERROR(!di_ok, mp,
						XFS_ERRTAG_ITOBP_INOTOBP,
						XFS_RANDOM_ITOBP_INOTOBP))) {
			xfs_buf_ioerror(bp, EFSCORRUPTED);
			XFS_CORRUPTION_ERROR(__func__, XFS_ERRLEVEL_HIGH,
					     mp, dip);
#ifdef DEBUG
			xfs_emerg(mp,
				"bad inode magic/vsn daddr %lld #%d (magic=%x)",
				(unsigned long long)bp->b_bn, i,
				be16_to_cpu(dip->di_magic));
			ASSERT(0);
#endif
		}
	}
	xfs_inobp_check(mp, bp);
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}

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static void
xfs_inode_buf_read_verify(
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	struct xfs_buf	*bp)
{
	xfs_inode_buf_verify(bp);
}

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static void
xfs_inode_buf_write_verify(
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	struct xfs_buf	*bp)
{
	xfs_inode_buf_verify(bp);
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}

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const struct xfs_buf_ops xfs_inode_buf_ops = {
	.verify_read = xfs_inode_buf_read_verify,
	.verify_write = xfs_inode_buf_write_verify,
};


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/*
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 * This routine is called to map an inode to the buffer containing the on-disk
 * version of the inode.  It returns a pointer to the buffer containing the
 * on-disk inode in the bpp parameter, and in the dipp parameter it returns a
 * pointer to the on-disk inode within that buffer.
 *
 * If a non-zero error is returned, then the contents of bpp and dipp are
 * undefined.
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 */
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int
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xfs_imap_to_bp(
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	struct xfs_mount	*mp,
	struct xfs_trans	*tp,
	struct xfs_imap		*imap,
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	struct xfs_dinode       **dipp,
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	struct xfs_buf		**bpp,
	uint			buf_flags,
	uint			iget_flags)
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{
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	struct xfs_buf		*bp;
	int			error;
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	buf_flags |= XBF_UNMAPPED;
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	error = xfs_trans_read_buf(mp, tp, mp->m_ddev_targp, imap->im_blkno,
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				   (int)imap->im_len, buf_flags, &bp,
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				   &xfs_inode_buf_ops);
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	if (error) {
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		if (error == EAGAIN) {
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			ASSERT(buf_flags & XBF_TRYLOCK);
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			return error;
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		}
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		if (error == EFSCORRUPTED &&
		    (iget_flags & XFS_IGET_UNTRUSTED))
			return XFS_ERROR(EINVAL);
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		xfs_warn(mp, "%s: xfs_trans_read_buf() returned error %d.",
			__func__, error);
		return error;
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	}

	*bpp = bp;
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	*dipp = (struct xfs_dinode *)xfs_buf_offset(bp, imap->im_boffset);
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	return 0;
}

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STATIC void
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xfs_dinode_from_disk(
	xfs_icdinode_t		*to,
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	xfs_dinode_t		*from)
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{
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	to->di_magic = be16_to_cpu(from->di_magic);
	to->di_mode = be16_to_cpu(from->di_mode);
	to->di_version = from ->di_version;
	to->di_format = from->di_format;
	to->di_onlink = be16_to_cpu(from->di_onlink);
	to->di_uid = be32_to_cpu(from->di_uid);
	to->di_gid = be32_to_cpu(from->di_gid);
	to->di_nlink = be32_to_cpu(from->di_nlink);
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	to->di_projid_lo = be16_to_cpu(from->di_projid_lo);
	to->di_projid_hi = be16_to_cpu(from->di_projid_hi);
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	memcpy(to->di_pad, from->di_pad, sizeof(to->di_pad));
	to->di_flushiter = be16_to_cpu(from->di_flushiter);
	to->di_atime.t_sec = be32_to_cpu(from->di_atime.t_sec);
	to->di_atime.t_nsec = be32_to_cpu(from->di_atime.t_nsec);
	to->di_mtime.t_sec = be32_to_cpu(from->di_mtime.t_sec);
	to->di_mtime.t_nsec = be32_to_cpu(from->di_mtime.t_nsec);
	to->di_ctime.t_sec = be32_to_cpu(from->di_ctime.t_sec);
	to->di_ctime.t_nsec = be32_to_cpu(from->di_ctime.t_nsec);
	to->di_size = be64_to_cpu(from->di_size);
	to->di_nblocks = be64_to_cpu(from->di_nblocks);
	to->di_extsize = be32_to_cpu(from->di_extsize);
	to->di_nextents = be32_to_cpu(from->di_nextents);
	to->di_anextents = be16_to_cpu(from->di_anextents);
	to->di_forkoff = from->di_forkoff;
	to->di_aformat	= from->di_aformat;
	to->di_dmevmask	= be32_to_cpu(from->di_dmevmask);
	to->di_dmstate	= be16_to_cpu(from->di_dmstate);
	to->di_flags	= be16_to_cpu(from->di_flags);
	to->di_gen	= be32_to_cpu(from->di_gen);
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	if (to->di_version == 3) {
		to->di_changecount = be64_to_cpu(from->di_changecount);
		to->di_crtime.t_sec = be32_to_cpu(from->di_crtime.t_sec);
		to->di_crtime.t_nsec = be32_to_cpu(from->di_crtime.t_nsec);
		to->di_flags2 = be64_to_cpu(from->di_flags2);
		to->di_ino = be64_to_cpu(from->di_ino);
		to->di_lsn = be64_to_cpu(from->di_lsn);
		memcpy(to->di_pad2, from->di_pad2, sizeof(to->di_pad2));
		uuid_copy(&to->di_uuid, &from->di_uuid);
	}
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}

void
xfs_dinode_to_disk(
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	xfs_dinode_t		*to,
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	xfs_icdinode_t		*from)
{
	to->di_magic = cpu_to_be16(from->di_magic);
	to->di_mode = cpu_to_be16(from->di_mode);
	to->di_version = from ->di_version;
	to->di_format = from->di_format;
	to->di_onlink = cpu_to_be16(from->di_onlink);
	to->di_uid = cpu_to_be32(from->di_uid);
	to->di_gid = cpu_to_be32(from->di_gid);
	to->di_nlink = cpu_to_be32(from->di_nlink);
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	to->di_projid_lo = cpu_to_be16(from->di_projid_lo);
	to->di_projid_hi = cpu_to_be16(from->di_projid_hi);
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	memcpy(to->di_pad, from->di_pad, sizeof(to->di_pad));
	to->di_atime.t_sec = cpu_to_be32(from->di_atime.t_sec);
	to->di_atime.t_nsec = cpu_to_be32(from->di_atime.t_nsec);
	to->di_mtime.t_sec = cpu_to_be32(from->di_mtime.t_sec);
	to->di_mtime.t_nsec = cpu_to_be32(from->di_mtime.t_nsec);
	to->di_ctime.t_sec = cpu_to_be32(from->di_ctime.t_sec);
	to->di_ctime.t_nsec = cpu_to_be32(from->di_ctime.t_nsec);
	to->di_size = cpu_to_be64(from->di_size);
	to->di_nblocks = cpu_to_be64(from->di_nblocks);
	to->di_extsize = cpu_to_be32(from->di_extsize);
	to->di_nextents = cpu_to_be32(from->di_nextents);
	to->di_anextents = cpu_to_be16(from->di_anextents);
	to->di_forkoff = from->di_forkoff;
	to->di_aformat = from->di_aformat;
	to->di_dmevmask = cpu_to_be32(from->di_dmevmask);
	to->di_dmstate = cpu_to_be16(from->di_dmstate);
	to->di_flags = cpu_to_be16(from->di_flags);
	to->di_gen = cpu_to_be32(from->di_gen);
539 540 541 542 543 544 545 546 547 548

	if (from->di_version == 3) {
		to->di_changecount = cpu_to_be64(from->di_changecount);
		to->di_crtime.t_sec = cpu_to_be32(from->di_crtime.t_sec);
		to->di_crtime.t_nsec = cpu_to_be32(from->di_crtime.t_nsec);
		to->di_flags2 = cpu_to_be64(from->di_flags2);
		to->di_ino = cpu_to_be64(from->di_ino);
		to->di_lsn = cpu_to_be64(from->di_lsn);
		memcpy(to->di_pad2, from->di_pad2, sizeof(to->di_pad2));
		uuid_copy(&to->di_uuid, &from->di_uuid);
549 550 551
		to->di_flushiter = 0;
	} else {
		to->di_flushiter = cpu_to_be16(from->di_flushiter);
552
	}
L
Linus Torvalds 已提交
553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581
}

STATIC uint
_xfs_dic2xflags(
	__uint16_t		di_flags)
{
	uint			flags = 0;

	if (di_flags & XFS_DIFLAG_ANY) {
		if (di_flags & XFS_DIFLAG_REALTIME)
			flags |= XFS_XFLAG_REALTIME;
		if (di_flags & XFS_DIFLAG_PREALLOC)
			flags |= XFS_XFLAG_PREALLOC;
		if (di_flags & XFS_DIFLAG_IMMUTABLE)
			flags |= XFS_XFLAG_IMMUTABLE;
		if (di_flags & XFS_DIFLAG_APPEND)
			flags |= XFS_XFLAG_APPEND;
		if (di_flags & XFS_DIFLAG_SYNC)
			flags |= XFS_XFLAG_SYNC;
		if (di_flags & XFS_DIFLAG_NOATIME)
			flags |= XFS_XFLAG_NOATIME;
		if (di_flags & XFS_DIFLAG_NODUMP)
			flags |= XFS_XFLAG_NODUMP;
		if (di_flags & XFS_DIFLAG_RTINHERIT)
			flags |= XFS_XFLAG_RTINHERIT;
		if (di_flags & XFS_DIFLAG_PROJINHERIT)
			flags |= XFS_XFLAG_PROJINHERIT;
		if (di_flags & XFS_DIFLAG_NOSYMLINKS)
			flags |= XFS_XFLAG_NOSYMLINKS;
582 583 584 585
		if (di_flags & XFS_DIFLAG_EXTSIZE)
			flags |= XFS_XFLAG_EXTSIZE;
		if (di_flags & XFS_DIFLAG_EXTSZINHERIT)
			flags |= XFS_XFLAG_EXTSZINHERIT;
586 587
		if (di_flags & XFS_DIFLAG_NODEFRAG)
			flags |= XFS_XFLAG_NODEFRAG;
588 589
		if (di_flags & XFS_DIFLAG_FILESTREAM)
			flags |= XFS_XFLAG_FILESTREAM;
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590 591 592 593 594 595 596 597 598
	}

	return flags;
}

uint
xfs_ip2xflags(
	xfs_inode_t		*ip)
{
599
	xfs_icdinode_t		*dic = &ip->i_d;
L
Linus Torvalds 已提交
600

601
	return _xfs_dic2xflags(dic->di_flags) |
602
				(XFS_IFORK_Q(ip) ? XFS_XFLAG_HASATTR : 0);
L
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603 604 605 606
}

uint
xfs_dic2xflags(
607
	xfs_dinode_t		*dip)
L
Linus Torvalds 已提交
608
{
C
Christoph Hellwig 已提交
609
	return _xfs_dic2xflags(be16_to_cpu(dip->di_flags)) |
610
				(XFS_DFORK_Q(dip) ? XFS_XFLAG_HASATTR : 0);
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Linus Torvalds 已提交
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}

613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653
static bool
xfs_dinode_verify(
	struct xfs_mount	*mp,
	struct xfs_inode	*ip,
	struct xfs_dinode	*dip)
{
	if (dip->di_magic != cpu_to_be16(XFS_DINODE_MAGIC))
		return false;

	/* only version 3 or greater inodes are extensively verified here */
	if (dip->di_version < 3)
		return true;

	if (!xfs_sb_version_hascrc(&mp->m_sb))
		return false;
	if (!xfs_verify_cksum((char *)dip, mp->m_sb.sb_inodesize,
			      offsetof(struct xfs_dinode, di_crc)))
		return false;
	if (be64_to_cpu(dip->di_ino) != ip->i_ino)
		return false;
	if (!uuid_equal(&dip->di_uuid, &mp->m_sb.sb_uuid))
		return false;
	return true;
}

void
xfs_dinode_calc_crc(
	struct xfs_mount	*mp,
	struct xfs_dinode	*dip)
{
	__uint32_t		crc;

	if (dip->di_version < 3)
		return;

	ASSERT(xfs_sb_version_hascrc(&mp->m_sb));
	crc = xfs_start_cksum((char *)dip, mp->m_sb.sb_inodesize,
			      offsetof(struct xfs_dinode, di_crc));
	dip->di_crc = xfs_end_cksum(crc);
}

654
/*
655
 * Read the disk inode attributes into the in-core inode structure.
656
 *
657 658 659 660 661 662 663 664
 * For version 5 superblocks, if we are initialising a new inode and we are not
 * utilising the XFS_MOUNT_IKEEP inode cluster mode, we can simple build the new
 * inode core with a random generation number. If we are keeping inodes around,
 * we need to read the inode cluster to get the existing generation number off
 * disk. Further, if we are using version 4 superblocks (i.e. v1/v2 inode
 * format) then log recovery is dependent on the di_flushiter field being
 * initialised from the current on-disk value and hence we must also read the
 * inode off disk.
L
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 */
int
xfs_iread(
	xfs_mount_t	*mp,
	xfs_trans_t	*tp,
670 671
	xfs_inode_t	*ip,
	uint		iget_flags)
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{
	xfs_buf_t	*bp;
	xfs_dinode_t	*dip;
	int		error;

	/*
678
	 * Fill in the location information in the in-core inode.
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	 */
680
	error = xfs_imap(mp, tp, ip->i_ino, &ip->i_imap, iget_flags);
681
	if (error)
682
		return error;
683

684 685
	/* shortcut IO on inode allocation if possible */
	if ((iget_flags & XFS_IGET_CREATE) &&
686
	    xfs_sb_version_hascrc(&mp->m_sb) &&
687 688 689 690 691 692 693 694 695 696 697 698 699 700
	    !(mp->m_flags & XFS_MOUNT_IKEEP)) {
		/* initialise the on-disk inode core */
		memset(&ip->i_d, 0, sizeof(ip->i_d));
		ip->i_d.di_magic = XFS_DINODE_MAGIC;
		ip->i_d.di_gen = prandom_u32();
		if (xfs_sb_version_hascrc(&mp->m_sb)) {
			ip->i_d.di_version = 3;
			ip->i_d.di_ino = ip->i_ino;
			uuid_copy(&ip->i_d.di_uuid, &mp->m_sb.sb_uuid);
		} else
			ip->i_d.di_version = 2;
		return 0;
	}

701
	/*
702
	 * Get pointers to the on-disk inode and the buffer containing it.
703
	 */
704
	error = xfs_imap_to_bp(mp, tp, &ip->i_imap, &dip, &bp, 0, iget_flags);
705
	if (error)
706
		return error;
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708 709 710 711 712 713 714
	/* even unallocated inodes are verified */
	if (!xfs_dinode_verify(mp, ip, dip)) {
		xfs_alert(mp, "%s: validation failed for inode %lld failed",
				__func__, ip->i_ino);

		XFS_CORRUPTION_ERROR(__func__, XFS_ERRLEVEL_LOW, mp, dip);
		error = XFS_ERROR(EFSCORRUPTED);
715
		goto out_brelse;
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	}

	/*
	 * If the on-disk inode is already linked to a directory
	 * entry, copy all of the inode into the in-core inode.
721
	 * xfs_iformat_fork() handles copying in the inode format
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	 * specific information.
	 * Otherwise, just get the truly permanent information.
	 */
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	if (dip->di_mode) {
		xfs_dinode_from_disk(&ip->i_d, dip);
727
		error = xfs_iformat_fork(ip, dip);
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		if (error)  {
#ifdef DEBUG
730 731
			xfs_alert(mp, "%s: xfs_iformat() returned error %d",
				__func__, error);
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#endif /* DEBUG */
733
			goto out_brelse;
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		}
	} else {
736 737 738 739
		/*
		 * Partial initialisation of the in-core inode. Just the bits
		 * that xfs_ialloc won't overwrite or relies on being correct.
		 */
C
Christoph Hellwig 已提交
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		ip->i_d.di_magic = be16_to_cpu(dip->di_magic);
		ip->i_d.di_version = dip->di_version;
		ip->i_d.di_gen = be32_to_cpu(dip->di_gen);
		ip->i_d.di_flushiter = be16_to_cpu(dip->di_flushiter);
744 745 746 747 748 749

		if (dip->di_version == 3) {
			ip->i_d.di_ino = be64_to_cpu(dip->di_ino);
			uuid_copy(&ip->i_d.di_uuid, &dip->di_uuid);
		}

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		/*
		 * Make sure to pull in the mode here as well in
		 * case the inode is released without being used.
		 * This ensures that xfs_inactive() will see that
		 * the inode is already free and not try to mess
		 * with the uninitialized part of it.
		 */
		ip->i_d.di_mode = 0;
	}

	/*
	 * The inode format changed when we moved the link count and
	 * made it 32 bits long.  If this is an old format inode,
	 * convert it in memory to look like a new one.  If it gets
	 * flushed to disk we will convert back before flushing or
	 * logging it.  We zero out the new projid field and the old link
	 * count field.  We'll handle clearing the pad field (the remains
	 * of the old uuid field) when we actually convert the inode to
	 * the new format. We don't change the version number so that we
	 * can distinguish this from a real new format inode.
	 */
771
	if (ip->i_d.di_version == 1) {
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		ip->i_d.di_nlink = ip->i_d.di_onlink;
		ip->i_d.di_onlink = 0;
774
		xfs_set_projid(ip, 0);
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	}

	ip->i_delayed_blks = 0;

	/*
	 * Mark the buffer containing the inode as something to keep
	 * around for a while.  This helps to keep recently accessed
	 * meta-data in-core longer.
	 */
784
	xfs_buf_set_ref(bp, XFS_INO_REF);
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	/*
787 788 789
	 * Use xfs_trans_brelse() to release the buffer containing the on-disk
	 * inode, because it was acquired with xfs_trans_read_buf() in
	 * xfs_imap_to_bp() above.  If tp is NULL, this is just a normal
L
Linus Torvalds 已提交
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	 * brelse().  If we're within a transaction, then xfs_trans_brelse()
	 * will only release the buffer if it is not dirty within the
	 * transaction.  It will be OK to release the buffer in this case,
793 794 795 796
	 * because inodes on disk are never destroyed and we will be locking the
	 * new in-core inode before putting it in the cache where other
	 * processes can find it.  Thus we don't have to worry about the inode
	 * being changed just because we released the buffer.
L
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	 */
798 799 800
 out_brelse:
	xfs_trans_brelse(tp, bp);
	return error;
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}

/*
 * Allocate an inode on disk and return a copy of its in-core version.
 * The in-core inode is locked exclusively.  Set mode, nlink, and rdev
 * appropriately within the inode.  The uid and gid for the inode are
 * set according to the contents of the given cred structure.
 *
 * Use xfs_dialloc() to allocate the on-disk inode. If xfs_dialloc()
C
Carlos Maiolino 已提交
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 * has a free inode available, call xfs_iget() to obtain the in-core
 * version of the allocated inode.  Finally, fill in the inode and
 * log its initial contents.  In this case, ialloc_context would be
 * set to NULL.
L
Linus Torvalds 已提交
814
 *
C
Carlos Maiolino 已提交
815 816 817 818 819
 * If xfs_dialloc() does not have an available inode, it will replenish
 * its supply by doing an allocation. Since we can only do one
 * allocation within a transaction without deadlocks, we must commit
 * the current transaction before returning the inode itself.
 * In this case, therefore, we will set ialloc_context and return.
L
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 * The caller should then commit the current transaction, start a new
 * transaction, and call xfs_ialloc() again to actually get the inode.
 *
 * To ensure that some other process does not grab the inode that
 * was allocated during the first call to xfs_ialloc(), this routine
 * also returns the [locked] bp pointing to the head of the freelist
 * as ialloc_context.  The caller should hold this buffer across
 * the commit and pass it back into this routine on the second call.
D
David Chinner 已提交
828 829 830 831 832
 *
 * If we are allocating quota inodes, we do not have a parent inode
 * to attach to or associate with (i.e. pip == NULL) because they
 * are not linked into the directory structure - they are attached
 * directly to the superblock - and so have no parent.
L
Linus Torvalds 已提交
833 834 835 836 837
 */
int
xfs_ialloc(
	xfs_trans_t	*tp,
	xfs_inode_t	*pip,
A
Al Viro 已提交
838
	umode_t		mode,
839
	xfs_nlink_t	nlink,
L
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840
	xfs_dev_t	rdev,
841
	prid_t		prid,
L
Linus Torvalds 已提交
842 843 844 845
	int		okalloc,
	xfs_buf_t	**ialloc_context,
	xfs_inode_t	**ipp)
{
846
	struct xfs_mount *mp = tp->t_mountp;
L
Linus Torvalds 已提交
847 848 849 850
	xfs_ino_t	ino;
	xfs_inode_t	*ip;
	uint		flags;
	int		error;
851
	timespec_t	tv;
852
	int		filestreams = 0;
L
Linus Torvalds 已提交
853 854 855 856 857

	/*
	 * Call the space management code to pick
	 * the on-disk inode to be allocated.
	 */
D
David Chinner 已提交
858
	error = xfs_dialloc(tp, pip ? pip->i_ino : 0, mode, okalloc,
859
			    ialloc_context, &ino);
860
	if (error)
L
Linus Torvalds 已提交
861
		return error;
862
	if (*ialloc_context || ino == NULLFSINO) {
L
Linus Torvalds 已提交
863 864 865 866 867 868 869 870 871 872
		*ipp = NULL;
		return 0;
	}
	ASSERT(*ialloc_context == NULL);

	/*
	 * Get the in-core inode with the lock held exclusively.
	 * This is because we're setting fields here we need
	 * to prevent others from looking at until we're done.
	 */
873
	error = xfs_iget(mp, tp, ino, XFS_IGET_CREATE,
874
			 XFS_ILOCK_EXCL, &ip);
875
	if (error)
L
Linus Torvalds 已提交
876 877 878
		return error;
	ASSERT(ip != NULL);

A
Al Viro 已提交
879
	ip->i_d.di_mode = mode;
L
Linus Torvalds 已提交
880 881 882
	ip->i_d.di_onlink = 0;
	ip->i_d.di_nlink = nlink;
	ASSERT(ip->i_d.di_nlink == nlink);
883 884
	ip->i_d.di_uid = current_fsuid();
	ip->i_d.di_gid = current_fsgid();
885
	xfs_set_projid(ip, prid);
L
Linus Torvalds 已提交
886 887 888 889 890 891 892 893
	memset(&(ip->i_d.di_pad[0]), 0, sizeof(ip->i_d.di_pad));

	/*
	 * If the superblock version is up to where we support new format
	 * inodes and this is currently an old format inode, then change
	 * the inode version number now.  This way we only do the conversion
	 * here rather than here and in the flush/logging code.
	 */
894
	if (xfs_sb_version_hasnlink(&mp->m_sb) &&
895 896
	    ip->i_d.di_version == 1) {
		ip->i_d.di_version = 2;
L
Linus Torvalds 已提交
897 898 899 900 901 902 903 904 905
		/*
		 * We've already zeroed the old link count, the projid field,
		 * and the pad field.
		 */
	}

	/*
	 * Project ids won't be stored on disk if we are using a version 1 inode.
	 */
906
	if ((prid != 0) && (ip->i_d.di_version == 1))
L
Linus Torvalds 已提交
907 908
		xfs_bump_ino_vers2(tp, ip);

909
	if (pip && XFS_INHERIT_GID(pip)) {
L
Linus Torvalds 已提交
910
		ip->i_d.di_gid = pip->i_d.di_gid;
911
		if ((pip->i_d.di_mode & S_ISGID) && S_ISDIR(mode)) {
L
Linus Torvalds 已提交
912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929
			ip->i_d.di_mode |= S_ISGID;
		}
	}

	/*
	 * If the group ID of the new file does not match the effective group
	 * ID or one of the supplementary group IDs, the S_ISGID bit is cleared
	 * (and only if the irix_sgid_inherit compatibility variable is set).
	 */
	if ((irix_sgid_inherit) &&
	    (ip->i_d.di_mode & S_ISGID) &&
	    (!in_group_p((gid_t)ip->i_d.di_gid))) {
		ip->i_d.di_mode &= ~S_ISGID;
	}

	ip->i_d.di_size = 0;
	ip->i_d.di_nextents = 0;
	ASSERT(ip->i_d.di_nblocks == 0);
930 931 932 933 934 935 936

	nanotime(&tv);
	ip->i_d.di_mtime.t_sec = (__int32_t)tv.tv_sec;
	ip->i_d.di_mtime.t_nsec = (__int32_t)tv.tv_nsec;
	ip->i_d.di_atime = ip->i_d.di_mtime;
	ip->i_d.di_ctime = ip->i_d.di_mtime;

L
Linus Torvalds 已提交
937 938 939 940 941 942 943
	/*
	 * di_gen will have been taken care of in xfs_iread.
	 */
	ip->i_d.di_extsize = 0;
	ip->i_d.di_dmevmask = 0;
	ip->i_d.di_dmstate = 0;
	ip->i_d.di_flags = 0;
944 945 946 947 948 949 950 951 952 953 954 955 956

	if (ip->i_d.di_version == 3) {
		ASSERT(ip->i_d.di_ino == ino);
		ASSERT(uuid_equal(&ip->i_d.di_uuid, &mp->m_sb.sb_uuid));
		ip->i_d.di_crc = 0;
		ip->i_d.di_changecount = 1;
		ip->i_d.di_lsn = 0;
		ip->i_d.di_flags2 = 0;
		memset(&(ip->i_d.di_pad2[0]), 0, sizeof(ip->i_d.di_pad2));
		ip->i_d.di_crtime = ip->i_d.di_mtime;
	}


L
Linus Torvalds 已提交
957 958 959 960 961 962 963 964 965 966 967 968
	flags = XFS_ILOG_CORE;
	switch (mode & S_IFMT) {
	case S_IFIFO:
	case S_IFCHR:
	case S_IFBLK:
	case S_IFSOCK:
		ip->i_d.di_format = XFS_DINODE_FMT_DEV;
		ip->i_df.if_u2.if_rdev = rdev;
		ip->i_df.if_flags = 0;
		flags |= XFS_ILOG_DEV;
		break;
	case S_IFREG:
969 970 971 972 973 974
		/*
		 * we can't set up filestreams until after the VFS inode
		 * is set up properly.
		 */
		if (pip && xfs_inode_is_filestream(pip))
			filestreams = 1;
975
		/* fall through */
L
Linus Torvalds 已提交
976
	case S_IFDIR:
D
David Chinner 已提交
977
		if (pip && (pip->i_d.di_flags & XFS_DIFLAG_ANY)) {
978 979
			uint	di_flags = 0;

980
			if (S_ISDIR(mode)) {
981 982
				if (pip->i_d.di_flags & XFS_DIFLAG_RTINHERIT)
					di_flags |= XFS_DIFLAG_RTINHERIT;
983 984 985 986
				if (pip->i_d.di_flags & XFS_DIFLAG_EXTSZINHERIT) {
					di_flags |= XFS_DIFLAG_EXTSZINHERIT;
					ip->i_d.di_extsize = pip->i_d.di_extsize;
				}
987
			} else if (S_ISREG(mode)) {
C
Christoph Hellwig 已提交
988
				if (pip->i_d.di_flags & XFS_DIFLAG_RTINHERIT)
989
					di_flags |= XFS_DIFLAG_REALTIME;
990 991 992 993
				if (pip->i_d.di_flags & XFS_DIFLAG_EXTSZINHERIT) {
					di_flags |= XFS_DIFLAG_EXTSIZE;
					ip->i_d.di_extsize = pip->i_d.di_extsize;
				}
L
Linus Torvalds 已提交
994 995 996
			}
			if ((pip->i_d.di_flags & XFS_DIFLAG_NOATIME) &&
			    xfs_inherit_noatime)
997
				di_flags |= XFS_DIFLAG_NOATIME;
L
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			if ((pip->i_d.di_flags & XFS_DIFLAG_NODUMP) &&
			    xfs_inherit_nodump)
1000
				di_flags |= XFS_DIFLAG_NODUMP;
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			if ((pip->i_d.di_flags & XFS_DIFLAG_SYNC) &&
			    xfs_inherit_sync)
1003
				di_flags |= XFS_DIFLAG_SYNC;
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			if ((pip->i_d.di_flags & XFS_DIFLAG_NOSYMLINKS) &&
			    xfs_inherit_nosymlinks)
1006 1007 1008
				di_flags |= XFS_DIFLAG_NOSYMLINKS;
			if (pip->i_d.di_flags & XFS_DIFLAG_PROJINHERIT)
				di_flags |= XFS_DIFLAG_PROJINHERIT;
1009 1010 1011
			if ((pip->i_d.di_flags & XFS_DIFLAG_NODEFRAG) &&
			    xfs_inherit_nodefrag)
				di_flags |= XFS_DIFLAG_NODEFRAG;
1012 1013
			if (pip->i_d.di_flags & XFS_DIFLAG_FILESTREAM)
				di_flags |= XFS_DIFLAG_FILESTREAM;
1014
			ip->i_d.di_flags |= di_flags;
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		}
		/* FALLTHROUGH */
	case S_IFLNK:
		ip->i_d.di_format = XFS_DINODE_FMT_EXTENTS;
		ip->i_df.if_flags = XFS_IFEXTENTS;
		ip->i_df.if_bytes = ip->i_df.if_real_bytes = 0;
		ip->i_df.if_u1.if_extents = NULL;
		break;
	default:
		ASSERT(0);
	}
	/*
	 * Attribute fork settings for new inode.
	 */
	ip->i_d.di_aformat = XFS_DINODE_FMT_EXTENTS;
	ip->i_d.di_anextents = 0;

	/*
	 * Log the new values stuffed into the inode.
	 */
1035
	xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
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	xfs_trans_log_inode(tp, ip, flags);

1038
	/* now that we have an i_mode we can setup inode ops and unlock */
1039
	xfs_setup_inode(ip);
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1041 1042 1043 1044 1045 1046 1047 1048 1049
	/* now we have set up the vfs inode we can associate the filestream */
	if (filestreams) {
		error = xfs_filestream_associate(pip, ip);
		if (error < 0)
			return -error;
		if (!error)
			xfs_iflags_set(ip, XFS_IFILESTREAM);
	}

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	*ipp = ip;
	return 0;
}

/*
1055 1056 1057
 * Free up the underlying blocks past new_size.  The new size must be smaller
 * than the current size.  This routine can be used both for the attribute and
 * data fork, and does not modify the inode size, which is left to the caller.
L
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 *
1059 1060 1061 1062 1063 1064 1065 1066 1067
 * The transaction passed to this routine must have made a permanent log
 * reservation of at least XFS_ITRUNCATE_LOG_RES.  This routine may commit the
 * given transaction and start new ones, so make sure everything involved in
 * the transaction is tidy before calling here.  Some transaction will be
 * returned to the caller to be committed.  The incoming transaction must
 * already include the inode, and both inode locks must be held exclusively.
 * The inode must also be "held" within the transaction.  On return the inode
 * will be "held" within the returned transaction.  This routine does NOT
 * require any disk space to be reserved for it within the transaction.
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 *
1069 1070 1071 1072 1073
 * If we get an error, we must return with the inode locked and linked into the
 * current transaction. This keeps things simple for the higher level code,
 * because it always knows that the inode is locked and held in the transaction
 * that returns to it whether errors occur or not.  We don't mark the inode
 * dirty on error so that transactions can be easily aborted if possible.
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 */
int
1076 1077 1078 1079 1080
xfs_itruncate_extents(
	struct xfs_trans	**tpp,
	struct xfs_inode	*ip,
	int			whichfork,
	xfs_fsize_t		new_size)
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{
1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092
	struct xfs_mount	*mp = ip->i_mount;
	struct xfs_trans	*tp = *tpp;
	struct xfs_trans	*ntp;
	xfs_bmap_free_t		free_list;
	xfs_fsblock_t		first_block;
	xfs_fileoff_t		first_unmap_block;
	xfs_fileoff_t		last_block;
	xfs_filblks_t		unmap_len;
	int			committed;
	int			error = 0;
	int			done = 0;
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1094 1095 1096
	ASSERT(xfs_isilocked(ip, XFS_ILOCK_EXCL));
	ASSERT(!atomic_read(&VFS_I(ip)->i_count) ||
	       xfs_isilocked(ip, XFS_IOLOCK_EXCL));
1097
	ASSERT(new_size <= XFS_ISIZE(ip));
1098
	ASSERT(tp->t_flags & XFS_TRANS_PERM_LOG_RES);
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	ASSERT(ip->i_itemp != NULL);
1100
	ASSERT(ip->i_itemp->ili_lock_flags == 0);
1101
	ASSERT(!XFS_NOT_DQATTACHED(mp, ip));
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1103 1104
	trace_xfs_itruncate_extents_start(ip, new_size);

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	/*
	 * Since it is possible for space to become allocated beyond
	 * the end of the file (in a crash where the space is allocated
	 * but the inode size is not yet updated), simply remove any
	 * blocks which show up between the new EOF and the maximum
	 * possible file size.  If the first block to be removed is
	 * beyond the maximum file size (ie it is the same as last_block),
	 * then there is nothing to do.
	 */
1114
	first_unmap_block = XFS_B_TO_FSB(mp, (xfs_ufsize_t)new_size);
1115
	last_block = XFS_B_TO_FSB(mp, mp->m_super->s_maxbytes);
1116 1117 1118 1119 1120
	if (first_unmap_block == last_block)
		return 0;

	ASSERT(first_unmap_block < last_block);
	unmap_len = last_block - first_unmap_block + 1;
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	while (!done) {
1122
		xfs_bmap_init(&free_list, &first_block);
1123
		error = xfs_bunmapi(tp, ip,
1124
				    first_unmap_block, unmap_len,
1125
				    xfs_bmapi_aflag(whichfork),
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				    XFS_ITRUNC_MAX_EXTENTS,
1127
				    &first_block, &free_list,
1128
				    &done);
1129 1130
		if (error)
			goto out_bmap_cancel;
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		/*
		 * Duplicate the transaction that has the permanent
		 * reservation and commit the old transaction.
		 */
1136
		error = xfs_bmap_finish(&tp, &free_list, &committed);
1137
		if (committed)
1138
			xfs_trans_ijoin(tp, ip, 0);
1139 1140
		if (error)
			goto out_bmap_cancel;
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		if (committed) {
			/*
1144
			 * Mark the inode dirty so it will be logged and
1145
			 * moved forward in the log as part of every commit.
L
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			 */
1147
			xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
L
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		}
1149

1150 1151 1152
		ntp = xfs_trans_dup(tp);
		error = xfs_trans_commit(tp, 0);
		tp = ntp;
1153

1154
		xfs_trans_ijoin(tp, ip, 0);
1155

1156
		if (error)
1157 1158
			goto out;

1159
		/*
1160
		 * Transaction commit worked ok so we can drop the extra ticket
1161 1162
		 * reference that we gained in xfs_trans_dup()
		 */
1163 1164
		xfs_log_ticket_put(tp->t_ticket);
		error = xfs_trans_reserve(tp, 0,
1165 1166 1167 1168
					XFS_ITRUNCATE_LOG_RES(mp), 0,
					XFS_TRANS_PERM_LOG_RES,
					XFS_ITRUNCATE_LOG_COUNT);
		if (error)
1169
			goto out;
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	}
1171

1172 1173 1174 1175 1176 1177 1178 1179
	/*
	 * Always re-log the inode so that our permanent transaction can keep
	 * on rolling it forward in the log.
	 */
	xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);

	trace_xfs_itruncate_extents_end(ip, new_size);

1180 1181 1182 1183
out:
	*tpp = tp;
	return error;
out_bmap_cancel:
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	/*
1185 1186 1187
	 * If the bunmapi call encounters an error, return to the caller where
	 * the transaction can be properly aborted.  We just need to make sure
	 * we're not holding any resources that we were not when we came in.
L
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1188
	 */
1189 1190 1191 1192
	xfs_bmap_cancel(&free_list);
	goto out;
}

L
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1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221
/*
 * This is called when the inode's link count goes to 0.
 * We place the on-disk inode on a list in the AGI.  It
 * will be pulled from this list when the inode is freed.
 */
int
xfs_iunlink(
	xfs_trans_t	*tp,
	xfs_inode_t	*ip)
{
	xfs_mount_t	*mp;
	xfs_agi_t	*agi;
	xfs_dinode_t	*dip;
	xfs_buf_t	*agibp;
	xfs_buf_t	*ibp;
	xfs_agino_t	agino;
	short		bucket_index;
	int		offset;
	int		error;

	ASSERT(ip->i_d.di_nlink == 0);
	ASSERT(ip->i_d.di_mode != 0);

	mp = tp->t_mountp;

	/*
	 * Get the agi buffer first.  It ensures lock ordering
	 * on the list.
	 */
1222
	error = xfs_read_agi(mp, tp, XFS_INO_TO_AGNO(mp, ip->i_ino), &agibp);
1223
	if (error)
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		return error;
	agi = XFS_BUF_TO_AGI(agibp);
1226

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	/*
	 * Get the index into the agi hash table for the
	 * list this inode will go on.
	 */
	agino = XFS_INO_TO_AGINO(mp, ip->i_ino);
	ASSERT(agino != 0);
	bucket_index = agino % XFS_AGI_UNLINKED_BUCKETS;
	ASSERT(agi->agi_unlinked[bucket_index]);
1235
	ASSERT(be32_to_cpu(agi->agi_unlinked[bucket_index]) != agino);
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1237
	if (agi->agi_unlinked[bucket_index] != cpu_to_be32(NULLAGINO)) {
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		/*
		 * There is already another inode in the bucket we need
		 * to add ourselves to.  Add us at the front of the list.
		 * Here we put the head pointer into our next pointer,
		 * and then we fall through to point the head at us.
		 */
1244 1245
		error = xfs_imap_to_bp(mp, tp, &ip->i_imap, &dip, &ibp,
				       0, 0);
1246 1247 1248
		if (error)
			return error;

1249
		ASSERT(dip->di_next_unlinked == cpu_to_be32(NULLAGINO));
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		dip->di_next_unlinked = agi->agi_unlinked[bucket_index];
1251
		offset = ip->i_imap.im_boffset +
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			offsetof(xfs_dinode_t, di_next_unlinked);
1253 1254 1255 1256

		/* need to recalc the inode CRC if appropriate */
		xfs_dinode_calc_crc(mp, dip);

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		xfs_trans_inode_buf(tp, ibp);
		xfs_trans_log_buf(tp, ibp, offset,
				  (offset + sizeof(xfs_agino_t) - 1));
		xfs_inobp_check(mp, ibp);
	}

	/*
	 * Point the bucket head pointer at the inode being inserted.
	 */
	ASSERT(agino != 0);
1267
	agi->agi_unlinked[bucket_index] = cpu_to_be32(agino);
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	offset = offsetof(xfs_agi_t, agi_unlinked) +
		(sizeof(xfs_agino_t) * bucket_index);
	xfs_trans_log_buf(tp, agibp, offset,
			  (offset + sizeof(xfs_agino_t) - 1));
	return 0;
}

/*
 * Pull the on-disk inode from the AGI unlinked list.
 */
STATIC int
xfs_iunlink_remove(
	xfs_trans_t	*tp,
	xfs_inode_t	*ip)
{
	xfs_ino_t	next_ino;
	xfs_mount_t	*mp;
	xfs_agi_t	*agi;
	xfs_dinode_t	*dip;
	xfs_buf_t	*agibp;
	xfs_buf_t	*ibp;
	xfs_agnumber_t	agno;
	xfs_agino_t	agino;
	xfs_agino_t	next_agino;
	xfs_buf_t	*last_ibp;
1293
	xfs_dinode_t	*last_dip = NULL;
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	short		bucket_index;
1295
	int		offset, last_offset = 0;
L
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	int		error;

	mp = tp->t_mountp;
	agno = XFS_INO_TO_AGNO(mp, ip->i_ino);

	/*
	 * Get the agi buffer first.  It ensures lock ordering
	 * on the list.
	 */
1305 1306
	error = xfs_read_agi(mp, tp, agno, &agibp);
	if (error)
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		return error;
1308

L
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1309
	agi = XFS_BUF_TO_AGI(agibp);
1310

L
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	/*
	 * Get the index into the agi hash table for the
	 * list this inode will go on.
	 */
	agino = XFS_INO_TO_AGINO(mp, ip->i_ino);
	ASSERT(agino != 0);
	bucket_index = agino % XFS_AGI_UNLINKED_BUCKETS;
1318
	ASSERT(agi->agi_unlinked[bucket_index] != cpu_to_be32(NULLAGINO));
L
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	ASSERT(agi->agi_unlinked[bucket_index]);

1321
	if (be32_to_cpu(agi->agi_unlinked[bucket_index]) == agino) {
L
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1322
		/*
1323 1324 1325 1326 1327
		 * We're at the head of the list.  Get the inode's on-disk
		 * buffer to see if there is anyone after us on the list.
		 * Only modify our next pointer if it is not already NULLAGINO.
		 * This saves us the overhead of dealing with the buffer when
		 * there is no need to change it.
L
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1328
		 */
1329 1330
		error = xfs_imap_to_bp(mp, tp, &ip->i_imap, &dip, &ibp,
				       0, 0);
L
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1331
		if (error) {
1332
			xfs_warn(mp, "%s: xfs_imap_to_bp returned error %d.",
1333
				__func__, error);
L
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1334 1335
			return error;
		}
1336
		next_agino = be32_to_cpu(dip->di_next_unlinked);
L
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1337 1338
		ASSERT(next_agino != 0);
		if (next_agino != NULLAGINO) {
1339
			dip->di_next_unlinked = cpu_to_be32(NULLAGINO);
1340
			offset = ip->i_imap.im_boffset +
L
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1341
				offsetof(xfs_dinode_t, di_next_unlinked);
1342 1343 1344 1345

			/* need to recalc the inode CRC if appropriate */
			xfs_dinode_calc_crc(mp, dip);

L
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1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357
			xfs_trans_inode_buf(tp, ibp);
			xfs_trans_log_buf(tp, ibp, offset,
					  (offset + sizeof(xfs_agino_t) - 1));
			xfs_inobp_check(mp, ibp);
		} else {
			xfs_trans_brelse(tp, ibp);
		}
		/*
		 * Point the bucket head pointer at the next inode.
		 */
		ASSERT(next_agino != 0);
		ASSERT(next_agino != agino);
1358
		agi->agi_unlinked[bucket_index] = cpu_to_be32(next_agino);
L
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		offset = offsetof(xfs_agi_t, agi_unlinked) +
			(sizeof(xfs_agino_t) * bucket_index);
		xfs_trans_log_buf(tp, agibp, offset,
				  (offset + sizeof(xfs_agino_t) - 1));
	} else {
		/*
		 * We need to search the list for the inode being freed.
		 */
1367
		next_agino = be32_to_cpu(agi->agi_unlinked[bucket_index]);
L
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1368 1369
		last_ibp = NULL;
		while (next_agino != agino) {
C
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1370 1371 1372
			struct xfs_imap	imap;

			if (last_ibp)
L
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1373
				xfs_trans_brelse(tp, last_ibp);
C
Christoph Hellwig 已提交
1374 1375

			imap.im_blkno = 0;
L
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1376
			next_ino = XFS_AGINO_TO_INO(mp, agno, next_agino);
C
Christoph Hellwig 已提交
1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387

			error = xfs_imap(mp, tp, next_ino, &imap, 0);
			if (error) {
				xfs_warn(mp,
	"%s: xfs_imap returned error %d.",
					 __func__, error);
				return error;
			}

			error = xfs_imap_to_bp(mp, tp, &imap, &last_dip,
					       &last_ibp, 0, 0);
L
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1388
			if (error) {
1389
				xfs_warn(mp,
C
Christoph Hellwig 已提交
1390
	"%s: xfs_imap_to_bp returned error %d.",
1391
					__func__, error);
L
Linus Torvalds 已提交
1392 1393
				return error;
			}
C
Christoph Hellwig 已提交
1394 1395

			last_offset = imap.im_boffset;
1396
			next_agino = be32_to_cpu(last_dip->di_next_unlinked);
L
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1397 1398 1399
			ASSERT(next_agino != NULLAGINO);
			ASSERT(next_agino != 0);
		}
1400

L
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1401
		/*
1402 1403
		 * Now last_ibp points to the buffer previous to us on the
		 * unlinked list.  Pull us from the list.
L
Linus Torvalds 已提交
1404
		 */
1405 1406
		error = xfs_imap_to_bp(mp, tp, &ip->i_imap, &dip, &ibp,
				       0, 0);
L
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1407
		if (error) {
1408
			xfs_warn(mp, "%s: xfs_imap_to_bp(2) returned error %d.",
1409
				__func__, error);
L
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1410 1411
			return error;
		}
1412
		next_agino = be32_to_cpu(dip->di_next_unlinked);
L
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1413 1414 1415
		ASSERT(next_agino != 0);
		ASSERT(next_agino != agino);
		if (next_agino != NULLAGINO) {
1416
			dip->di_next_unlinked = cpu_to_be32(NULLAGINO);
1417
			offset = ip->i_imap.im_boffset +
L
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1418
				offsetof(xfs_dinode_t, di_next_unlinked);
1419 1420 1421 1422

			/* need to recalc the inode CRC if appropriate */
			xfs_dinode_calc_crc(mp, dip);

L
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1423 1424 1425 1426 1427 1428 1429 1430 1431 1432
			xfs_trans_inode_buf(tp, ibp);
			xfs_trans_log_buf(tp, ibp, offset,
					  (offset + sizeof(xfs_agino_t) - 1));
			xfs_inobp_check(mp, ibp);
		} else {
			xfs_trans_brelse(tp, ibp);
		}
		/*
		 * Point the previous inode on the list to the next inode.
		 */
1433
		last_dip->di_next_unlinked = cpu_to_be32(next_agino);
L
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1434 1435
		ASSERT(next_agino != 0);
		offset = last_offset + offsetof(xfs_dinode_t, di_next_unlinked);
1436 1437 1438 1439

		/* need to recalc the inode CRC if appropriate */
		xfs_dinode_calc_crc(mp, last_dip);

L
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1440 1441 1442 1443 1444 1445 1446 1447
		xfs_trans_inode_buf(tp, last_ibp);
		xfs_trans_log_buf(tp, last_ibp, offset,
				  (offset + sizeof(xfs_agino_t) - 1));
		xfs_inobp_check(mp, last_ibp);
	}
	return 0;
}

1448 1449 1450 1451 1452
/*
 * A big issue when freeing the inode cluster is is that we _cannot_ skip any
 * inodes that are in memory - they all must be marked stale and attached to
 * the cluster buffer.
 */
1453
STATIC int
L
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1454 1455 1456 1457 1458 1459 1460 1461 1462
xfs_ifree_cluster(
	xfs_inode_t	*free_ip,
	xfs_trans_t	*tp,
	xfs_ino_t	inum)
{
	xfs_mount_t		*mp = free_ip->i_mount;
	int			blks_per_cluster;
	int			nbufs;
	int			ninodes;
1463
	int			i, j;
L
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1464 1465
	xfs_daddr_t		blkno;
	xfs_buf_t		*bp;
1466
	xfs_inode_t		*ip;
L
Linus Torvalds 已提交
1467 1468
	xfs_inode_log_item_t	*iip;
	xfs_log_item_t		*lip;
D
Dave Chinner 已提交
1469
	struct xfs_perag	*pag;
L
Linus Torvalds 已提交
1470

D
Dave Chinner 已提交
1471
	pag = xfs_perag_get(mp, XFS_INO_TO_AGNO(mp, inum));
L
Linus Torvalds 已提交
1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486
	if (mp->m_sb.sb_blocksize >= XFS_INODE_CLUSTER_SIZE(mp)) {
		blks_per_cluster = 1;
		ninodes = mp->m_sb.sb_inopblock;
		nbufs = XFS_IALLOC_BLOCKS(mp);
	} else {
		blks_per_cluster = XFS_INODE_CLUSTER_SIZE(mp) /
					mp->m_sb.sb_blocksize;
		ninodes = blks_per_cluster * mp->m_sb.sb_inopblock;
		nbufs = XFS_IALLOC_BLOCKS(mp) / blks_per_cluster;
	}

	for (j = 0; j < nbufs; j++, inum += ninodes) {
		blkno = XFS_AGB_TO_DADDR(mp, XFS_INO_TO_AGNO(mp, inum),
					 XFS_INO_TO_AGBNO(mp, inum));

1487 1488 1489 1490 1491 1492 1493 1494 1495
		/*
		 * We obtain and lock the backing buffer first in the process
		 * here, as we have to ensure that any dirty inode that we
		 * can't get the flush lock on is attached to the buffer.
		 * If we scan the in-memory inodes first, then buffer IO can
		 * complete before we get a lock on it, and hence we may fail
		 * to mark all the active inodes on the buffer stale.
		 */
		bp = xfs_trans_get_buf(tp, mp->m_ddev_targp, blkno,
1496 1497
					mp->m_bsize * blks_per_cluster,
					XBF_UNMAPPED);
1498

1499 1500
		if (!bp)
			return ENOMEM;
1501 1502 1503 1504 1505 1506 1507 1508 1509 1510

		/*
		 * This buffer may not have been correctly initialised as we
		 * didn't read it from disk. That's not important because we are
		 * only using to mark the buffer as stale in the log, and to
		 * attach stale cached inodes on it. That means it will never be
		 * dispatched for IO. If it is, we want to know about it, and we
		 * want it to fail. We can acheive this by adding a write
		 * verifier to the buffer.
		 */
1511
		 bp->b_ops = &xfs_inode_buf_ops;
1512

1513 1514 1515
		/*
		 * Walk the inodes already attached to the buffer and mark them
		 * stale. These will all have the flush locks held, so an
1516 1517 1518
		 * in-memory inode walk can't lock them. By marking them all
		 * stale first, we will not attempt to lock them in the loop
		 * below as the XFS_ISTALE flag will be set.
1519
		 */
1520
		lip = bp->b_fspriv;
1521 1522 1523 1524
		while (lip) {
			if (lip->li_type == XFS_LI_INODE) {
				iip = (xfs_inode_log_item_t *)lip;
				ASSERT(iip->ili_logged == 1);
1525
				lip->li_cb = xfs_istale_done;
1526 1527 1528 1529 1530 1531 1532
				xfs_trans_ail_copy_lsn(mp->m_ail,
							&iip->ili_flush_lsn,
							&iip->ili_item.li_lsn);
				xfs_iflags_set(iip->ili_inode, XFS_ISTALE);
			}
			lip = lip->li_bio_list;
		}
L
Linus Torvalds 已提交
1533

1534

L
Linus Torvalds 已提交
1535
		/*
1536 1537 1538 1539
		 * For each inode in memory attempt to add it to the inode
		 * buffer and set it up for being staled on buffer IO
		 * completion.  This is safe as we've locked out tail pushing
		 * and flushing by locking the buffer.
L
Linus Torvalds 已提交
1540
		 *
1541 1542 1543
		 * We have already marked every inode that was part of a
		 * transaction stale above, which means there is no point in
		 * even trying to lock them.
L
Linus Torvalds 已提交
1544 1545
		 */
		for (i = 0; i < ninodes; i++) {
1546
retry:
1547
			rcu_read_lock();
1548 1549
			ip = radix_tree_lookup(&pag->pag_ici_root,
					XFS_INO_TO_AGINO(mp, (inum + i)));
L
Linus Torvalds 已提交
1550

1551 1552 1553
			/* Inode not in memory, nothing to do */
			if (!ip) {
				rcu_read_unlock();
L
Linus Torvalds 已提交
1554 1555 1556
				continue;
			}

1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572
			/*
			 * because this is an RCU protected lookup, we could
			 * find a recently freed or even reallocated inode
			 * during the lookup. We need to check under the
			 * i_flags_lock for a valid inode here. Skip it if it
			 * is not valid, the wrong inode or stale.
			 */
			spin_lock(&ip->i_flags_lock);
			if (ip->i_ino != inum + i ||
			    __xfs_iflags_test(ip, XFS_ISTALE)) {
				spin_unlock(&ip->i_flags_lock);
				rcu_read_unlock();
				continue;
			}
			spin_unlock(&ip->i_flags_lock);

1573 1574 1575 1576 1577 1578 1579
			/*
			 * Don't try to lock/unlock the current inode, but we
			 * _cannot_ skip the other inodes that we did not find
			 * in the list attached to the buffer and are not
			 * already marked stale. If we can't lock it, back off
			 * and retry.
			 */
1580 1581
			if (ip != free_ip &&
			    !xfs_ilock_nowait(ip, XFS_ILOCK_EXCL)) {
1582
				rcu_read_unlock();
1583 1584
				delay(1);
				goto retry;
L
Linus Torvalds 已提交
1585
			}
1586
			rcu_read_unlock();
L
Linus Torvalds 已提交
1587

1588
			xfs_iflock(ip);
1589
			xfs_iflags_set(ip, XFS_ISTALE);
L
Linus Torvalds 已提交
1590

1591 1592 1593 1594
			/*
			 * we don't need to attach clean inodes or those only
			 * with unlogged changes (which we throw away, anyway).
			 */
L
Linus Torvalds 已提交
1595
			iip = ip->i_itemp;
1596
			if (!iip || xfs_inode_clean(ip)) {
1597
				ASSERT(ip != free_ip);
L
Linus Torvalds 已提交
1598 1599 1600 1601 1602
				xfs_ifunlock(ip);
				xfs_iunlock(ip, XFS_ILOCK_EXCL);
				continue;
			}

1603 1604
			iip->ili_last_fields = iip->ili_fields;
			iip->ili_fields = 0;
L
Linus Torvalds 已提交
1605
			iip->ili_logged = 1;
1606 1607
			xfs_trans_ail_copy_lsn(mp->m_ail, &iip->ili_flush_lsn,
						&iip->ili_item.li_lsn);
L
Linus Torvalds 已提交
1608

1609 1610
			xfs_buf_attach_iodone(bp, xfs_istale_done,
						  &iip->ili_item);
1611 1612

			if (ip != free_ip)
L
Linus Torvalds 已提交
1613 1614 1615
				xfs_iunlock(ip, XFS_ILOCK_EXCL);
		}

1616
		xfs_trans_stale_inode_buf(tp, bp);
L
Linus Torvalds 已提交
1617 1618 1619
		xfs_trans_binval(tp, bp);
	}

D
Dave Chinner 已提交
1620
	xfs_perag_put(pag);
1621
	return 0;
L
Linus Torvalds 已提交
1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643
}

/*
 * This is called to return an inode to the inode free list.
 * The inode should already be truncated to 0 length and have
 * no pages associated with it.  This routine also assumes that
 * the inode is already a part of the transaction.
 *
 * The on-disk copy of the inode will have been added to the list
 * of unlinked inodes in the AGI. We need to remove the inode from
 * that list atomically with respect to freeing it here.
 */
int
xfs_ifree(
	xfs_trans_t	*tp,
	xfs_inode_t	*ip,
	xfs_bmap_free_t	*flist)
{
	int			error;
	int			delete;
	xfs_ino_t		first_ino;

C
Christoph Hellwig 已提交
1644
	ASSERT(xfs_isilocked(ip, XFS_ILOCK_EXCL));
L
Linus Torvalds 已提交
1645 1646 1647
	ASSERT(ip->i_d.di_nlink == 0);
	ASSERT(ip->i_d.di_nextents == 0);
	ASSERT(ip->i_d.di_anextents == 0);
1648
	ASSERT(ip->i_d.di_size == 0 || !S_ISREG(ip->i_d.di_mode));
L
Linus Torvalds 已提交
1649 1650 1651 1652 1653 1654
	ASSERT(ip->i_d.di_nblocks == 0);

	/*
	 * Pull the on-disk inode from the AGI unlinked list.
	 */
	error = xfs_iunlink_remove(tp, ip);
1655
	if (error)
L
Linus Torvalds 已提交
1656 1657 1658
		return error;

	error = xfs_difree(tp, ip->i_ino, flist, &delete, &first_ino);
1659
	if (error)
L
Linus Torvalds 已提交
1660
		return error;
1661

L
Linus Torvalds 已提交
1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674
	ip->i_d.di_mode = 0;		/* mark incore inode as free */
	ip->i_d.di_flags = 0;
	ip->i_d.di_dmevmask = 0;
	ip->i_d.di_forkoff = 0;		/* mark the attr fork not in use */
	ip->i_d.di_format = XFS_DINODE_FMT_EXTENTS;
	ip->i_d.di_aformat = XFS_DINODE_FMT_EXTENTS;
	/*
	 * Bump the generation count so no one will be confused
	 * by reincarnations of this inode.
	 */
	ip->i_d.di_gen++;
	xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);

1675
	if (delete)
1676
		error = xfs_ifree_cluster(ip, tp, first_ino);
L
Linus Torvalds 已提交
1677

1678
	return error;
L
Linus Torvalds 已提交
1679 1680 1681
}

/*
1682 1683 1684
 * This is called to unpin an inode.  The caller must have the inode locked
 * in at least shared mode so that the buffer cannot be subsequently pinned
 * once someone is waiting for it to be unpinned.
L
Linus Torvalds 已提交
1685
 */
1686
static void
1687
xfs_iunpin(
1688
	struct xfs_inode	*ip)
L
Linus Torvalds 已提交
1689
{
C
Christoph Hellwig 已提交
1690
	ASSERT(xfs_isilocked(ip, XFS_ILOCK_EXCL|XFS_ILOCK_SHARED));
L
Linus Torvalds 已提交
1691

1692 1693
	trace_xfs_inode_unpin_nowait(ip, _RET_IP_);

1694
	/* Give the log a push to start the unpinning I/O */
1695
	xfs_log_force_lsn(ip->i_mount, ip->i_itemp->ili_last_lsn, 0);
1696

1697
}
L
Linus Torvalds 已提交
1698

1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715
static void
__xfs_iunpin_wait(
	struct xfs_inode	*ip)
{
	wait_queue_head_t *wq = bit_waitqueue(&ip->i_flags, __XFS_IPINNED_BIT);
	DEFINE_WAIT_BIT(wait, &ip->i_flags, __XFS_IPINNED_BIT);

	xfs_iunpin(ip);

	do {
		prepare_to_wait(wq, &wait.wait, TASK_UNINTERRUPTIBLE);
		if (xfs_ipincount(ip))
			io_schedule();
	} while (xfs_ipincount(ip));
	finish_wait(wq, &wait.wait);
}

1716
void
1717
xfs_iunpin_wait(
1718
	struct xfs_inode	*ip)
1719
{
1720 1721
	if (xfs_ipincount(ip))
		__xfs_iunpin_wait(ip);
L
Linus Torvalds 已提交
1722 1723
}

1724 1725 1726 1727
STATIC int
xfs_iflush_cluster(
	xfs_inode_t	*ip,
	xfs_buf_t	*bp)
L
Linus Torvalds 已提交
1728
{
1729 1730 1731 1732 1733 1734 1735 1736 1737 1738
	xfs_mount_t		*mp = ip->i_mount;
	struct xfs_perag	*pag;
	unsigned long		first_index, mask;
	unsigned long		inodes_per_cluster;
	int			ilist_size;
	xfs_inode_t		**ilist;
	xfs_inode_t		*iq;
	int			nr_found;
	int			clcount = 0;
	int			bufwasdelwri;
L
Linus Torvalds 已提交
1739 1740
	int			i;

1741
	pag = xfs_perag_get(mp, XFS_INO_TO_AGNO(mp, ip->i_ino));
L
Linus Torvalds 已提交
1742

1743 1744 1745 1746 1747
	inodes_per_cluster = XFS_INODE_CLUSTER_SIZE(mp) >> mp->m_sb.sb_inodelog;
	ilist_size = inodes_per_cluster * sizeof(xfs_inode_t *);
	ilist = kmem_alloc(ilist_size, KM_MAYFAIL|KM_NOFS);
	if (!ilist)
		goto out_put;
L
Linus Torvalds 已提交
1748

1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760
	mask = ~(((XFS_INODE_CLUSTER_SIZE(mp) >> mp->m_sb.sb_inodelog)) - 1);
	first_index = XFS_INO_TO_AGINO(mp, ip->i_ino) & mask;
	rcu_read_lock();
	/* really need a gang lookup range call here */
	nr_found = radix_tree_gang_lookup(&pag->pag_ici_root, (void**)ilist,
					first_index, inodes_per_cluster);
	if (nr_found == 0)
		goto out_free;

	for (i = 0; i < nr_found; i++) {
		iq = ilist[i];
		if (iq == ip)
1761
			continue;
1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776

		/*
		 * because this is an RCU protected lookup, we could find a
		 * recently freed or even reallocated inode during the lookup.
		 * We need to check under the i_flags_lock for a valid inode
		 * here. Skip it if it is not valid or the wrong inode.
		 */
		spin_lock(&ip->i_flags_lock);
		if (!ip->i_ino ||
		    (XFS_INO_TO_AGINO(mp, iq->i_ino) & mask) != first_index) {
			spin_unlock(&ip->i_flags_lock);
			continue;
		}
		spin_unlock(&ip->i_flags_lock);

1777 1778 1779 1780 1781
		/*
		 * Do an un-protected check to see if the inode is dirty and
		 * is a candidate for flushing.  These checks will be repeated
		 * later after the appropriate locks are acquired.
		 */
1782
		if (xfs_inode_clean(iq) && xfs_ipincount(iq) == 0)
1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805
			continue;

		/*
		 * Try to get locks.  If any are unavailable or it is pinned,
		 * then this inode cannot be flushed and is skipped.
		 */

		if (!xfs_ilock_nowait(iq, XFS_ILOCK_SHARED))
			continue;
		if (!xfs_iflock_nowait(iq)) {
			xfs_iunlock(iq, XFS_ILOCK_SHARED);
			continue;
		}
		if (xfs_ipincount(iq)) {
			xfs_ifunlock(iq);
			xfs_iunlock(iq, XFS_ILOCK_SHARED);
			continue;
		}

		/*
		 * arriving here means that this inode can be flushed.  First
		 * re-check that it's dirty before flushing.
		 */
1806 1807
		if (!xfs_inode_clean(iq)) {
			int	error;
1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825
			error = xfs_iflush_int(iq, bp);
			if (error) {
				xfs_iunlock(iq, XFS_ILOCK_SHARED);
				goto cluster_corrupt_out;
			}
			clcount++;
		} else {
			xfs_ifunlock(iq);
		}
		xfs_iunlock(iq, XFS_ILOCK_SHARED);
	}

	if (clcount) {
		XFS_STATS_INC(xs_icluster_flushcnt);
		XFS_STATS_ADD(xs_icluster_flushinode, clcount);
	}

out_free:
1826
	rcu_read_unlock();
1827
	kmem_free(ilist);
1828 1829
out_put:
	xfs_perag_put(pag);
1830 1831 1832 1833 1834 1835 1836 1837
	return 0;


cluster_corrupt_out:
	/*
	 * Corruption detected in the clustering loop.  Invalidate the
	 * inode buffer and shut down the filesystem.
	 */
1838
	rcu_read_unlock();
1839
	/*
1840
	 * Clean up the buffer.  If it was delwri, just release it --
1841 1842 1843
	 * brelse can handle it with no problems.  If not, shut down the
	 * filesystem before releasing the buffer.
	 */
1844
	bufwasdelwri = (bp->b_flags & _XBF_DELWRI_Q);
1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855
	if (bufwasdelwri)
		xfs_buf_relse(bp);

	xfs_force_shutdown(mp, SHUTDOWN_CORRUPT_INCORE);

	if (!bufwasdelwri) {
		/*
		 * Just like incore_relse: if we have b_iodone functions,
		 * mark the buffer as an error and call them.  Otherwise
		 * mark it as stale and brelse.
		 */
1856
		if (bp->b_iodone) {
1857
			XFS_BUF_UNDONE(bp);
1858
			xfs_buf_stale(bp);
1859
			xfs_buf_ioerror(bp, EIO);
C
Christoph Hellwig 已提交
1860
			xfs_buf_ioend(bp, 0);
1861
		} else {
1862
			xfs_buf_stale(bp);
1863 1864 1865 1866 1867 1868 1869
			xfs_buf_relse(bp);
		}
	}

	/*
	 * Unlocks the flush lock
	 */
1870
	xfs_iflush_abort(iq, false);
1871
	kmem_free(ilist);
1872
	xfs_perag_put(pag);
1873 1874 1875
	return XFS_ERROR(EFSCORRUPTED);
}

L
Linus Torvalds 已提交
1876
/*
1877 1878 1879 1880 1881 1882 1883
 * Flush dirty inode metadata into the backing buffer.
 *
 * The caller must have the inode lock and the inode flush lock held.  The
 * inode lock will still be held upon return to the caller, and the inode
 * flush lock will be released after the inode has reached the disk.
 *
 * The caller must write out the buffer returned in *bpp and release it.
L
Linus Torvalds 已提交
1884 1885 1886
 */
int
xfs_iflush(
1887 1888
	struct xfs_inode	*ip,
	struct xfs_buf		**bpp)
L
Linus Torvalds 已提交
1889
{
1890 1891 1892
	struct xfs_mount	*mp = ip->i_mount;
	struct xfs_buf		*bp;
	struct xfs_dinode	*dip;
L
Linus Torvalds 已提交
1893 1894 1895 1896
	int			error;

	XFS_STATS_INC(xs_iflush_count);

C
Christoph Hellwig 已提交
1897
	ASSERT(xfs_isilocked(ip, XFS_ILOCK_EXCL|XFS_ILOCK_SHARED));
1898
	ASSERT(xfs_isiflocked(ip));
L
Linus Torvalds 已提交
1899
	ASSERT(ip->i_d.di_format != XFS_DINODE_FMT_BTREE ||
1900
	       ip->i_d.di_nextents > XFS_IFORK_MAXEXT(ip, XFS_DATA_FORK));
L
Linus Torvalds 已提交
1901

1902
	*bpp = NULL;
L
Linus Torvalds 已提交
1903 1904 1905

	xfs_iunpin_wait(ip);

1906 1907 1908
	/*
	 * For stale inodes we cannot rely on the backing buffer remaining
	 * stale in cache for the remaining life of the stale inode and so
1909
	 * xfs_imap_to_bp() below may give us a buffer that no longer contains
1910 1911 1912 1913 1914 1915 1916 1917 1918
	 * inodes below. We have to check this after ensuring the inode is
	 * unpinned so that it is safe to reclaim the stale inode after the
	 * flush call.
	 */
	if (xfs_iflags_test(ip, XFS_ISTALE)) {
		xfs_ifunlock(ip);
		return 0;
	}

L
Linus Torvalds 已提交
1919 1920 1921
	/*
	 * This may have been unpinned because the filesystem is shutting
	 * down forcibly. If that's the case we must not write this inode
1922 1923 1924 1925
	 * to disk, because the log record didn't make it to disk.
	 *
	 * We also have to remove the log item from the AIL in this case,
	 * as we wait for an empty AIL as part of the unmount process.
L
Linus Torvalds 已提交
1926 1927
	 */
	if (XFS_FORCED_SHUTDOWN(mp)) {
1928 1929
		error = XFS_ERROR(EIO);
		goto abort_out;
L
Linus Torvalds 已提交
1930 1931
	}

1932 1933 1934
	/*
	 * Get the buffer containing the on-disk inode.
	 */
1935 1936
	error = xfs_imap_to_bp(mp, NULL, &ip->i_imap, &dip, &bp, XBF_TRYLOCK,
			       0);
1937 1938 1939 1940 1941
	if (error || !bp) {
		xfs_ifunlock(ip);
		return error;
	}

L
Linus Torvalds 已提交
1942 1943 1944 1945
	/*
	 * First flush out the inode that xfs_iflush was called with.
	 */
	error = xfs_iflush_int(ip, bp);
1946
	if (error)
L
Linus Torvalds 已提交
1947 1948
		goto corrupt_out;

1949 1950 1951 1952
	/*
	 * If the buffer is pinned then push on the log now so we won't
	 * get stuck waiting in the write for too long.
	 */
1953
	if (xfs_buf_ispinned(bp))
1954
		xfs_log_force(mp, 0);
1955

L
Linus Torvalds 已提交
1956 1957 1958 1959
	/*
	 * inode clustering:
	 * see if other inodes can be gathered into this write
	 */
1960 1961 1962
	error = xfs_iflush_cluster(ip, bp);
	if (error)
		goto cluster_corrupt_out;
L
Linus Torvalds 已提交
1963

1964 1965
	*bpp = bp;
	return 0;
L
Linus Torvalds 已提交
1966 1967 1968

corrupt_out:
	xfs_buf_relse(bp);
1969
	xfs_force_shutdown(mp, SHUTDOWN_CORRUPT_INCORE);
L
Linus Torvalds 已提交
1970
cluster_corrupt_out:
1971 1972
	error = XFS_ERROR(EFSCORRUPTED);
abort_out:
L
Linus Torvalds 已提交
1973 1974 1975
	/*
	 * Unlocks the flush lock
	 */
1976
	xfs_iflush_abort(ip, false);
1977
	return error;
L
Linus Torvalds 已提交
1978 1979 1980 1981 1982
}


STATIC int
xfs_iflush_int(
1983 1984
	struct xfs_inode	*ip,
	struct xfs_buf		*bp)
L
Linus Torvalds 已提交
1985
{
1986 1987 1988
	struct xfs_inode_log_item *iip = ip->i_itemp;
	struct xfs_dinode	*dip;
	struct xfs_mount	*mp = ip->i_mount;
L
Linus Torvalds 已提交
1989

C
Christoph Hellwig 已提交
1990
	ASSERT(xfs_isilocked(ip, XFS_ILOCK_EXCL|XFS_ILOCK_SHARED));
1991
	ASSERT(xfs_isiflocked(ip));
L
Linus Torvalds 已提交
1992
	ASSERT(ip->i_d.di_format != XFS_DINODE_FMT_BTREE ||
1993
	       ip->i_d.di_nextents > XFS_IFORK_MAXEXT(ip, XFS_DATA_FORK));
1994
	ASSERT(iip != NULL && iip->ili_fields != 0);
L
Linus Torvalds 已提交
1995 1996

	/* set *dip = inode's place in the buffer */
1997
	dip = (xfs_dinode_t *)xfs_buf_offset(bp, ip->i_imap.im_boffset);
L
Linus Torvalds 已提交
1998

1999
	if (XFS_TEST_ERROR(dip->di_magic != cpu_to_be16(XFS_DINODE_MAGIC),
L
Linus Torvalds 已提交
2000
			       mp, XFS_ERRTAG_IFLUSH_1, XFS_RANDOM_IFLUSH_1)) {
2001 2002 2003
		xfs_alert_tag(mp, XFS_PTAG_IFLUSH,
			"%s: Bad inode %Lu magic number 0x%x, ptr 0x%p",
			__func__, ip->i_ino, be16_to_cpu(dip->di_magic), dip);
L
Linus Torvalds 已提交
2004 2005 2006 2007
		goto corrupt_out;
	}
	if (XFS_TEST_ERROR(ip->i_d.di_magic != XFS_DINODE_MAGIC,
				mp, XFS_ERRTAG_IFLUSH_2, XFS_RANDOM_IFLUSH_2)) {
2008 2009 2010
		xfs_alert_tag(mp, XFS_PTAG_IFLUSH,
			"%s: Bad inode %Lu, ptr 0x%p, magic number 0x%x",
			__func__, ip->i_ino, ip, ip->i_d.di_magic);
L
Linus Torvalds 已提交
2011 2012
		goto corrupt_out;
	}
2013
	if (S_ISREG(ip->i_d.di_mode)) {
L
Linus Torvalds 已提交
2014 2015 2016 2017
		if (XFS_TEST_ERROR(
		    (ip->i_d.di_format != XFS_DINODE_FMT_EXTENTS) &&
		    (ip->i_d.di_format != XFS_DINODE_FMT_BTREE),
		    mp, XFS_ERRTAG_IFLUSH_3, XFS_RANDOM_IFLUSH_3)) {
2018 2019 2020
			xfs_alert_tag(mp, XFS_PTAG_IFLUSH,
				"%s: Bad regular inode %Lu, ptr 0x%p",
				__func__, ip->i_ino, ip);
L
Linus Torvalds 已提交
2021 2022
			goto corrupt_out;
		}
2023
	} else if (S_ISDIR(ip->i_d.di_mode)) {
L
Linus Torvalds 已提交
2024 2025 2026 2027 2028
		if (XFS_TEST_ERROR(
		    (ip->i_d.di_format != XFS_DINODE_FMT_EXTENTS) &&
		    (ip->i_d.di_format != XFS_DINODE_FMT_BTREE) &&
		    (ip->i_d.di_format != XFS_DINODE_FMT_LOCAL),
		    mp, XFS_ERRTAG_IFLUSH_4, XFS_RANDOM_IFLUSH_4)) {
2029 2030 2031
			xfs_alert_tag(mp, XFS_PTAG_IFLUSH,
				"%s: Bad directory inode %Lu, ptr 0x%p",
				__func__, ip->i_ino, ip);
L
Linus Torvalds 已提交
2032 2033 2034 2035 2036 2037
			goto corrupt_out;
		}
	}
	if (XFS_TEST_ERROR(ip->i_d.di_nextents + ip->i_d.di_anextents >
				ip->i_d.di_nblocks, mp, XFS_ERRTAG_IFLUSH_5,
				XFS_RANDOM_IFLUSH_5)) {
2038 2039 2040 2041
		xfs_alert_tag(mp, XFS_PTAG_IFLUSH,
			"%s: detected corrupt incore inode %Lu, "
			"total extents = %d, nblocks = %Ld, ptr 0x%p",
			__func__, ip->i_ino,
L
Linus Torvalds 已提交
2042
			ip->i_d.di_nextents + ip->i_d.di_anextents,
2043
			ip->i_d.di_nblocks, ip);
L
Linus Torvalds 已提交
2044 2045 2046 2047
		goto corrupt_out;
	}
	if (XFS_TEST_ERROR(ip->i_d.di_forkoff > mp->m_sb.sb_inodesize,
				mp, XFS_ERRTAG_IFLUSH_6, XFS_RANDOM_IFLUSH_6)) {
2048 2049 2050
		xfs_alert_tag(mp, XFS_PTAG_IFLUSH,
			"%s: bad inode %Lu, forkoff 0x%x, ptr 0x%p",
			__func__, ip->i_ino, ip->i_d.di_forkoff, ip);
L
Linus Torvalds 已提交
2051 2052
		goto corrupt_out;
	}
2053

L
Linus Torvalds 已提交
2054
	/*
2055 2056 2057 2058 2059 2060 2061
	 * Inode item log recovery for v1/v2 inodes are dependent on the
	 * di_flushiter count for correct sequencing. We bump the flush
	 * iteration count so we can detect flushes which postdate a log record
	 * during recovery. This is redundant as we now log every change and
	 * hence this can't happen but we need to still do it to ensure
	 * backwards compatibility with old kernels that predate logging all
	 * inode changes.
L
Linus Torvalds 已提交
2062
	 */
2063 2064
	if (ip->i_d.di_version < 3)
		ip->i_d.di_flushiter++;
L
Linus Torvalds 已提交
2065 2066 2067 2068 2069 2070 2071

	/*
	 * Copy the dirty parts of the inode into the on-disk
	 * inode.  We always copy out the core of the inode,
	 * because if the inode is dirty at all the core must
	 * be.
	 */
C
Christoph Hellwig 已提交
2072
	xfs_dinode_to_disk(dip, &ip->i_d);
L
Linus Torvalds 已提交
2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083

	/* Wrap, we never let the log put out DI_MAX_FLUSH */
	if (ip->i_d.di_flushiter == DI_MAX_FLUSH)
		ip->i_d.di_flushiter = 0;

	/*
	 * If this is really an old format inode and the superblock version
	 * has not been updated to support only new format inodes, then
	 * convert back to the old inode format.  If the superblock version
	 * has been updated, then make the conversion permanent.
	 */
2084 2085
	ASSERT(ip->i_d.di_version == 1 || xfs_sb_version_hasnlink(&mp->m_sb));
	if (ip->i_d.di_version == 1) {
2086
		if (!xfs_sb_version_hasnlink(&mp->m_sb)) {
L
Linus Torvalds 已提交
2087 2088 2089 2090
			/*
			 * Convert it back.
			 */
			ASSERT(ip->i_d.di_nlink <= XFS_MAXLINK_1);
C
Christoph Hellwig 已提交
2091
			dip->di_onlink = cpu_to_be16(ip->i_d.di_nlink);
L
Linus Torvalds 已提交
2092 2093 2094 2095 2096 2097
		} else {
			/*
			 * The superblock version has already been bumped,
			 * so just make the conversion to the new inode
			 * format permanent.
			 */
2098 2099
			ip->i_d.di_version = 2;
			dip->di_version = 2;
L
Linus Torvalds 已提交
2100
			ip->i_d.di_onlink = 0;
C
Christoph Hellwig 已提交
2101
			dip->di_onlink = 0;
L
Linus Torvalds 已提交
2102
			memset(&(ip->i_d.di_pad[0]), 0, sizeof(ip->i_d.di_pad));
C
Christoph Hellwig 已提交
2103 2104
			memset(&(dip->di_pad[0]), 0,
			      sizeof(dip->di_pad));
2105
			ASSERT(xfs_get_projid(ip) == 0);
L
Linus Torvalds 已提交
2106 2107 2108
		}
	}

2109 2110 2111
	xfs_iflush_fork(ip, dip, iip, XFS_DATA_FORK, bp);
	if (XFS_IFORK_Q(ip))
		xfs_iflush_fork(ip, dip, iip, XFS_ATTR_FORK, bp);
L
Linus Torvalds 已提交
2112 2113 2114
	xfs_inobp_check(mp, bp);

	/*
2115 2116 2117 2118 2119 2120 2121
	 * We've recorded everything logged in the inode, so we'd like to clear
	 * the ili_fields bits so we don't log and flush things unnecessarily.
	 * However, we can't stop logging all this information until the data
	 * we've copied into the disk buffer is written to disk.  If we did we
	 * might overwrite the copy of the inode in the log with all the data
	 * after re-logging only part of it, and in the face of a crash we
	 * wouldn't have all the data we need to recover.
L
Linus Torvalds 已提交
2122
	 *
2123 2124 2125 2126 2127 2128
	 * What we do is move the bits to the ili_last_fields field.  When
	 * logging the inode, these bits are moved back to the ili_fields field.
	 * In the xfs_iflush_done() routine we clear ili_last_fields, since we
	 * know that the information those bits represent is permanently on
	 * disk.  As long as the flush completes before the inode is logged
	 * again, then both ili_fields and ili_last_fields will be cleared.
L
Linus Torvalds 已提交
2129
	 *
2130 2131 2132 2133 2134 2135 2136 2137
	 * We can play with the ili_fields bits here, because the inode lock
	 * must be held exclusively in order to set bits there and the flush
	 * lock protects the ili_last_fields bits.  Set ili_logged so the flush
	 * done routine can tell whether or not to look in the AIL.  Also, store
	 * the current LSN of the inode so that we can tell whether the item has
	 * moved in the AIL from xfs_iflush_done().  In order to read the lsn we
	 * need the AIL lock, because it is a 64 bit value that cannot be read
	 * atomically.
L
Linus Torvalds 已提交
2138
	 */
2139 2140 2141
	iip->ili_last_fields = iip->ili_fields;
	iip->ili_fields = 0;
	iip->ili_logged = 1;
L
Linus Torvalds 已提交
2142

2143 2144
	xfs_trans_ail_copy_lsn(mp->m_ail, &iip->ili_flush_lsn,
				&iip->ili_item.li_lsn);
L
Linus Torvalds 已提交
2145

2146 2147 2148 2149 2150 2151 2152
	/*
	 * Attach the function xfs_iflush_done to the inode's
	 * buffer.  This will remove the inode from the AIL
	 * and unlock the inode's flush lock when the inode is
	 * completely written to disk.
	 */
	xfs_buf_attach_iodone(bp, xfs_iflush_done, &iip->ili_item);
L
Linus Torvalds 已提交
2153

2154 2155 2156 2157 2158 2159
	/* update the lsn in the on disk inode if required */
	if (ip->i_d.di_version == 3)
		dip->di_lsn = cpu_to_be64(iip->ili_item.li_lsn);

	/* generate the checksum. */
	xfs_dinode_calc_crc(mp, dip);
L
Linus Torvalds 已提交
2160

2161 2162
	ASSERT(bp->b_fspriv != NULL);
	ASSERT(bp->b_iodone != NULL);
L
Linus Torvalds 已提交
2163 2164 2165 2166 2167 2168
	return 0;

corrupt_out:
	return XFS_ERROR(EFSCORRUPTED);
}

2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203
/*
 * Test whether it is appropriate to check an inode for and free post EOF
 * blocks. The 'force' parameter determines whether we should also consider
 * regular files that are marked preallocated or append-only.
 */
bool
xfs_can_free_eofblocks(struct xfs_inode *ip, bool force)
{
	/* prealloc/delalloc exists only on regular files */
	if (!S_ISREG(ip->i_d.di_mode))
		return false;

	/*
	 * Zero sized files with no cached pages and delalloc blocks will not
	 * have speculative prealloc/delalloc blocks to remove.
	 */
	if (VFS_I(ip)->i_size == 0 &&
	    VN_CACHED(VFS_I(ip)) == 0 &&
	    ip->i_delayed_blks == 0)
		return false;

	/* If we haven't read in the extent list, then don't do it now. */
	if (!(ip->i_df.if_flags & XFS_IFEXTENTS))
		return false;

	/*
	 * Do not free real preallocated or append-only files unless the file
	 * has delalloc blocks and we are forced to remove them.
	 */
	if (ip->i_d.di_flags & (XFS_DIFLAG_PREALLOC | XFS_DIFLAG_APPEND))
		if (!force || ip->i_delayed_blks == 0)
			return false;

	return true;
}