xfs_trans.c 28.3 KB
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/*
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 * Copyright (c) 2000-2003,2005 Silicon Graphics, Inc.
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 * Copyright (C) 2010 Red Hat, 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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 */
#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"
#include "xfs_trans.h"
#include "xfs_sb.h"
#include "xfs_ag.h"
#include "xfs_mount.h"
#include "xfs_error.h"
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#include "xfs_da_btree.h"
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#include "xfs_bmap_btree.h"
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#include "xfs_alloc_btree.h"
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#include "xfs_ialloc_btree.h"
#include "xfs_dinode.h"
#include "xfs_inode.h"
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#include "xfs_btree.h"
#include "xfs_ialloc.h"
#include "xfs_alloc.h"
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#include "xfs_extent_busy.h"
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#include "xfs_bmap.h"
#include "xfs_quota.h"
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#include "xfs_qm.h"
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#include "xfs_trans_priv.h"
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#include "xfs_trans_space.h"
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#include "xfs_inode_item.h"
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#include "xfs_log_priv.h"
#include "xfs_buf_item.h"
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#include "xfs_trace.h"
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kmem_zone_t	*xfs_trans_zone;
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kmem_zone_t	*xfs_log_item_desc_zone;
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/*
 * Initialize the precomputed transaction reservation values
 * in the mount structure.
 */
void
xfs_trans_init(
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	struct xfs_mount	*mp)
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{
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	xfs_trans_resv_calc(mp, &mp->m_resv);
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}

/*
 * This routine is called to allocate a transaction structure.
 * The type parameter indicates the type of the transaction.  These
 * are enumerated in xfs_trans.h.
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 *
 * Dynamically allocate the transaction structure from the transaction
 * zone, initialize it, and return it to the caller.
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 */
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xfs_trans_t *
xfs_trans_alloc(
	xfs_mount_t	*mp,
	uint		type)
{
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	xfs_trans_t     *tp;

	sb_start_intwrite(mp->m_super);
	tp = _xfs_trans_alloc(mp, type, KM_SLEEP);
	tp->t_flags |= XFS_TRANS_FREEZE_PROT;
	return tp;
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}

xfs_trans_t *
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_xfs_trans_alloc(
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	xfs_mount_t	*mp,
	uint		type,
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	xfs_km_flags_t	memflags)
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{
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	xfs_trans_t	*tp;
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	WARN_ON(mp->m_super->s_writers.frozen == SB_FREEZE_COMPLETE);
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	atomic_inc(&mp->m_active_trans);
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	tp = kmem_zone_zalloc(xfs_trans_zone, memflags);
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	tp->t_magic = XFS_TRANS_HEADER_MAGIC;
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	tp->t_type = type;
	tp->t_mountp = mp;
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	INIT_LIST_HEAD(&tp->t_items);
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	INIT_LIST_HEAD(&tp->t_busy);
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	return tp;
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}

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/*
 * Free the transaction structure.  If there is more clean up
 * to do when the structure is freed, add it here.
 */
STATIC void
xfs_trans_free(
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	struct xfs_trans	*tp)
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{
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	xfs_extent_busy_sort(&tp->t_busy);
	xfs_extent_busy_clear(tp->t_mountp, &tp->t_busy, false);
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	atomic_dec(&tp->t_mountp->m_active_trans);
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	if (tp->t_flags & XFS_TRANS_FREEZE_PROT)
		sb_end_intwrite(tp->t_mountp->m_super);
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	xfs_trans_free_dqinfo(tp);
	kmem_zone_free(xfs_trans_zone, tp);
}

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/*
 * This is called to create a new transaction which will share the
 * permanent log reservation of the given transaction.  The remaining
 * unused block and rt extent reservations are also inherited.  This
 * implies that the original transaction is no longer allowed to allocate
 * blocks.  Locks and log items, however, are no inherited.  They must
 * be added to the new transaction explicitly.
 */
xfs_trans_t *
xfs_trans_dup(
	xfs_trans_t	*tp)
{
	xfs_trans_t	*ntp;

	ntp = kmem_zone_zalloc(xfs_trans_zone, KM_SLEEP);

	/*
	 * Initialize the new transaction structure.
	 */
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	ntp->t_magic = XFS_TRANS_HEADER_MAGIC;
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	ntp->t_type = tp->t_type;
	ntp->t_mountp = tp->t_mountp;
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	INIT_LIST_HEAD(&ntp->t_items);
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	INIT_LIST_HEAD(&ntp->t_busy);
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	ASSERT(tp->t_flags & XFS_TRANS_PERM_LOG_RES);
	ASSERT(tp->t_ticket != NULL);
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	ntp->t_flags = XFS_TRANS_PERM_LOG_RES |
		       (tp->t_flags & XFS_TRANS_RESERVE) |
		       (tp->t_flags & XFS_TRANS_FREEZE_PROT);
	/* We gave our writer reference to the new transaction */
	tp->t_flags &= ~XFS_TRANS_FREEZE_PROT;
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	ntp->t_ticket = xfs_log_ticket_get(tp->t_ticket);
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	ntp->t_blk_res = tp->t_blk_res - tp->t_blk_res_used;
	tp->t_blk_res = tp->t_blk_res_used;
	ntp->t_rtx_res = tp->t_rtx_res - tp->t_rtx_res_used;
	tp->t_rtx_res = tp->t_rtx_res_used;
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	ntp->t_pflags = tp->t_pflags;
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	xfs_trans_dup_dqinfo(tp, ntp);
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	atomic_inc(&tp->t_mountp->m_active_trans);
	return ntp;
}

/*
 * This is called to reserve free disk blocks and log space for the
 * given transaction.  This must be done before allocating any resources
 * within the transaction.
 *
 * This will return ENOSPC if there are not enough blocks available.
 * It will sleep waiting for available log space.
 * The only valid value for the flags parameter is XFS_RES_LOG_PERM, which
 * is used by long running transactions.  If any one of the reservations
 * fails then they will all be backed out.
 *
 * This does not do quota reservations. That typically is done by the
 * caller afterwards.
 */
int
xfs_trans_reserve(
	xfs_trans_t	*tp,
	uint		blocks,
	uint		logspace,
	uint		rtextents,
	uint		flags,
	uint		logcount)
{
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	int		error = 0;
	int		rsvd = (tp->t_flags & XFS_TRANS_RESERVE) != 0;
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	/* Mark this thread as being in a transaction */
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	current_set_flags_nested(&tp->t_pflags, PF_FSTRANS);
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	/*
	 * Attempt to reserve the needed disk blocks by decrementing
	 * the number needed from the number available.  This will
	 * fail if the count would go below zero.
	 */
	if (blocks > 0) {
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		error = xfs_icsb_modify_counters(tp->t_mountp, XFS_SBS_FDBLOCKS,
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					  -((int64_t)blocks), rsvd);
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		if (error != 0) {
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			current_restore_flags_nested(&tp->t_pflags, PF_FSTRANS);
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			return (XFS_ERROR(ENOSPC));
		}
		tp->t_blk_res += blocks;
	}

	/*
	 * Reserve the log space needed for this transaction.
	 */
	if (logspace > 0) {
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		bool	permanent = false;

		ASSERT(tp->t_log_res == 0 || tp->t_log_res == logspace);
		ASSERT(tp->t_log_count == 0 || tp->t_log_count == logcount);

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		if (flags & XFS_TRANS_PERM_LOG_RES) {
			tp->t_flags |= XFS_TRANS_PERM_LOG_RES;
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			permanent = true;
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		} else {
			ASSERT(tp->t_ticket == NULL);
			ASSERT(!(tp->t_flags & XFS_TRANS_PERM_LOG_RES));
		}

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		if (tp->t_ticket != NULL) {
			ASSERT(flags & XFS_TRANS_PERM_LOG_RES);
			error = xfs_log_regrant(tp->t_mountp, tp->t_ticket);
		} else {
			error = xfs_log_reserve(tp->t_mountp, logspace,
						logcount, &tp->t_ticket,
						XFS_TRANSACTION, permanent,
						tp->t_type);
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		}
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		if (error)
			goto undo_blocks;

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		tp->t_log_res = logspace;
		tp->t_log_count = logcount;
	}

	/*
	 * Attempt to reserve the needed realtime extents by decrementing
	 * the number needed from the number available.  This will
	 * fail if the count would go below zero.
	 */
	if (rtextents > 0) {
		error = xfs_mod_incore_sb(tp->t_mountp, XFS_SBS_FREXTENTS,
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					  -((int64_t)rtextents), rsvd);
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		if (error) {
			error = XFS_ERROR(ENOSPC);
			goto undo_log;
		}
		tp->t_rtx_res += rtextents;
	}

	return 0;

	/*
	 * Error cases jump to one of these labels to undo any
	 * reservations which have already been performed.
	 */
undo_log:
	if (logspace > 0) {
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		int		log_flags;

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		if (flags & XFS_TRANS_PERM_LOG_RES) {
			log_flags = XFS_LOG_REL_PERM_RESERV;
		} else {
			log_flags = 0;
		}
		xfs_log_done(tp->t_mountp, tp->t_ticket, NULL, log_flags);
		tp->t_ticket = NULL;
		tp->t_log_res = 0;
		tp->t_flags &= ~XFS_TRANS_PERM_LOG_RES;
	}

undo_blocks:
	if (blocks > 0) {
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		xfs_icsb_modify_counters(tp->t_mountp, XFS_SBS_FDBLOCKS,
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					 (int64_t)blocks, rsvd);
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		tp->t_blk_res = 0;
	}

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	current_restore_flags_nested(&tp->t_pflags, PF_FSTRANS);
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	return error;
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}

/*
 * Record the indicated change to the given field for application
 * to the file system's superblock when the transaction commits.
 * For now, just store the change in the transaction structure.
 *
 * Mark the transaction structure to indicate that the superblock
 * needs to be updated before committing.
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 *
 * Because we may not be keeping track of allocated/free inodes and
 * used filesystem blocks in the superblock, we do not mark the
 * superblock dirty in this transaction if we modify these fields.
 * We still need to update the transaction deltas so that they get
 * applied to the incore superblock, but we don't want them to
 * cause the superblock to get locked and logged if these are the
 * only fields in the superblock that the transaction modifies.
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 */
void
xfs_trans_mod_sb(
	xfs_trans_t	*tp,
	uint		field,
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	int64_t		delta)
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{
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	uint32_t	flags = (XFS_TRANS_DIRTY|XFS_TRANS_SB_DIRTY);
	xfs_mount_t	*mp = tp->t_mountp;
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	switch (field) {
	case XFS_TRANS_SB_ICOUNT:
		tp->t_icount_delta += delta;
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		if (xfs_sb_version_haslazysbcount(&mp->m_sb))
			flags &= ~XFS_TRANS_SB_DIRTY;
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		break;
	case XFS_TRANS_SB_IFREE:
		tp->t_ifree_delta += delta;
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		if (xfs_sb_version_haslazysbcount(&mp->m_sb))
			flags &= ~XFS_TRANS_SB_DIRTY;
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		break;
	case XFS_TRANS_SB_FDBLOCKS:
		/*
		 * Track the number of blocks allocated in the
		 * transaction.  Make sure it does not exceed the
		 * number reserved.
		 */
		if (delta < 0) {
			tp->t_blk_res_used += (uint)-delta;
			ASSERT(tp->t_blk_res_used <= tp->t_blk_res);
		}
		tp->t_fdblocks_delta += delta;
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		if (xfs_sb_version_haslazysbcount(&mp->m_sb))
			flags &= ~XFS_TRANS_SB_DIRTY;
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		break;
	case XFS_TRANS_SB_RES_FDBLOCKS:
		/*
		 * The allocation has already been applied to the
		 * in-core superblock's counter.  This should only
		 * be applied to the on-disk superblock.
		 */
		ASSERT(delta < 0);
		tp->t_res_fdblocks_delta += delta;
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		if (xfs_sb_version_haslazysbcount(&mp->m_sb))
			flags &= ~XFS_TRANS_SB_DIRTY;
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		break;
	case XFS_TRANS_SB_FREXTENTS:
		/*
		 * Track the number of blocks allocated in the
		 * transaction.  Make sure it does not exceed the
		 * number reserved.
		 */
		if (delta < 0) {
			tp->t_rtx_res_used += (uint)-delta;
			ASSERT(tp->t_rtx_res_used <= tp->t_rtx_res);
		}
		tp->t_frextents_delta += delta;
		break;
	case XFS_TRANS_SB_RES_FREXTENTS:
		/*
		 * The allocation has already been applied to the
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		 * in-core superblock's counter.  This should only
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		 * be applied to the on-disk superblock.
		 */
		ASSERT(delta < 0);
		tp->t_res_frextents_delta += delta;
		break;
	case XFS_TRANS_SB_DBLOCKS:
		ASSERT(delta > 0);
		tp->t_dblocks_delta += delta;
		break;
	case XFS_TRANS_SB_AGCOUNT:
		ASSERT(delta > 0);
		tp->t_agcount_delta += delta;
		break;
	case XFS_TRANS_SB_IMAXPCT:
		tp->t_imaxpct_delta += delta;
		break;
	case XFS_TRANS_SB_REXTSIZE:
		tp->t_rextsize_delta += delta;
		break;
	case XFS_TRANS_SB_RBMBLOCKS:
		tp->t_rbmblocks_delta += delta;
		break;
	case XFS_TRANS_SB_RBLOCKS:
		tp->t_rblocks_delta += delta;
		break;
	case XFS_TRANS_SB_REXTENTS:
		tp->t_rextents_delta += delta;
		break;
	case XFS_TRANS_SB_REXTSLOG:
		tp->t_rextslog_delta += delta;
		break;
	default:
		ASSERT(0);
		return;
	}

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	tp->t_flags |= flags;
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}

/*
 * xfs_trans_apply_sb_deltas() is called from the commit code
 * to bring the superblock buffer into the current transaction
 * and modify it as requested by earlier calls to xfs_trans_mod_sb().
 *
 * For now we just look at each field allowed to change and change
 * it if necessary.
 */
STATIC void
xfs_trans_apply_sb_deltas(
	xfs_trans_t	*tp)
{
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	xfs_dsb_t	*sbp;
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	xfs_buf_t	*bp;
	int		whole = 0;

	bp = xfs_trans_getsb(tp, tp->t_mountp, 0);
	sbp = XFS_BUF_TO_SBP(bp);

	/*
	 * Check that superblock mods match the mods made to AGF counters.
	 */
	ASSERT((tp->t_fdblocks_delta + tp->t_res_fdblocks_delta) ==
	       (tp->t_ag_freeblks_delta + tp->t_ag_flist_delta +
		tp->t_ag_btree_delta));

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	/*
	 * Only update the superblock counters if we are logging them
	 */
	if (!xfs_sb_version_haslazysbcount(&(tp->t_mountp->m_sb))) {
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		if (tp->t_icount_delta)
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			be64_add_cpu(&sbp->sb_icount, tp->t_icount_delta);
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		if (tp->t_ifree_delta)
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			be64_add_cpu(&sbp->sb_ifree, tp->t_ifree_delta);
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		if (tp->t_fdblocks_delta)
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			be64_add_cpu(&sbp->sb_fdblocks, tp->t_fdblocks_delta);
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		if (tp->t_res_fdblocks_delta)
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			be64_add_cpu(&sbp->sb_fdblocks, tp->t_res_fdblocks_delta);
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	}

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	if (tp->t_frextents_delta)
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		be64_add_cpu(&sbp->sb_frextents, tp->t_frextents_delta);
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	if (tp->t_res_frextents_delta)
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		be64_add_cpu(&sbp->sb_frextents, tp->t_res_frextents_delta);
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	if (tp->t_dblocks_delta) {
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		be64_add_cpu(&sbp->sb_dblocks, tp->t_dblocks_delta);
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		whole = 1;
	}
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	if (tp->t_agcount_delta) {
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		be32_add_cpu(&sbp->sb_agcount, tp->t_agcount_delta);
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		whole = 1;
	}
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	if (tp->t_imaxpct_delta) {
		sbp->sb_imax_pct += tp->t_imaxpct_delta;
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		whole = 1;
	}
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	if (tp->t_rextsize_delta) {
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		be32_add_cpu(&sbp->sb_rextsize, tp->t_rextsize_delta);
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		whole = 1;
	}
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	if (tp->t_rbmblocks_delta) {
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		be32_add_cpu(&sbp->sb_rbmblocks, tp->t_rbmblocks_delta);
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		whole = 1;
	}
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	if (tp->t_rblocks_delta) {
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		be64_add_cpu(&sbp->sb_rblocks, tp->t_rblocks_delta);
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		whole = 1;
	}
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	if (tp->t_rextents_delta) {
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		be64_add_cpu(&sbp->sb_rextents, tp->t_rextents_delta);
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		whole = 1;
	}
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	if (tp->t_rextslog_delta) {
		sbp->sb_rextslog += tp->t_rextslog_delta;
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		whole = 1;
	}

	if (whole)
		/*
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		 * Log the whole thing, the fields are noncontiguous.
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		 */
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		xfs_trans_log_buf(tp, bp, 0, sizeof(xfs_dsb_t) - 1);
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	else
		/*
		 * Since all the modifiable fields are contiguous, we
		 * can get away with this.
		 */
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		xfs_trans_log_buf(tp, bp, offsetof(xfs_dsb_t, sb_icount),
				  offsetof(xfs_dsb_t, sb_frextents) +
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				  sizeof(sbp->sb_frextents) - 1);
}

/*
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 * xfs_trans_unreserve_and_mod_sb() is called to release unused reservations
 * and apply superblock counter changes to the in-core superblock.  The
 * t_res_fdblocks_delta and t_res_frextents_delta fields are explicitly NOT
 * applied to the in-core superblock.  The idea is that that has already been
 * done.
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 *
 * This is done efficiently with a single call to xfs_mod_incore_sb_batch().
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 * However, we have to ensure that we only modify each superblock field only
 * once because the application of the delta values may not be atomic. That can
 * lead to ENOSPC races occurring if we have two separate modifcations of the
 * free space counter to put back the entire reservation and then take away
 * what we used.
 *
 * If we are not logging superblock counters, then the inode allocated/free and
 * used block counts are not updated in the on disk superblock. In this case,
 * XFS_TRANS_SB_DIRTY will not be set when the transaction is updated but we
 * still need to update the incore superblock with the changes.
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 */
521
void
L
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522 523 524
xfs_trans_unreserve_and_mod_sb(
	xfs_trans_t	*tp)
{
525
	xfs_mod_sb_t	msb[9];	/* If you add cases, add entries */
L
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526
	xfs_mod_sb_t	*msbp;
D
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527
	xfs_mount_t	*mp = tp->t_mountp;
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528 529 530
	/* REFERENCED */
	int		error;
	int		rsvd;
531 532
	int64_t		blkdelta = 0;
	int64_t		rtxdelta = 0;
533 534
	int64_t		idelta = 0;
	int64_t		ifreedelta = 0;
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535 536 537 538

	msbp = msb;
	rsvd = (tp->t_flags & XFS_TRANS_RESERVE) != 0;

539
	/* calculate deltas */
540 541 542 543 544 545 546 547 548 549 550 551 552
	if (tp->t_blk_res > 0)
		blkdelta = tp->t_blk_res;
	if ((tp->t_fdblocks_delta != 0) &&
	    (xfs_sb_version_haslazysbcount(&mp->m_sb) ||
	     (tp->t_flags & XFS_TRANS_SB_DIRTY)))
	        blkdelta += tp->t_fdblocks_delta;

	if (tp->t_rtx_res > 0)
		rtxdelta = tp->t_rtx_res;
	if ((tp->t_frextents_delta != 0) &&
	    (tp->t_flags & XFS_TRANS_SB_DIRTY))
		rtxdelta += tp->t_frextents_delta;

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
	if (xfs_sb_version_haslazysbcount(&mp->m_sb) ||
	     (tp->t_flags & XFS_TRANS_SB_DIRTY)) {
		idelta = tp->t_icount_delta;
		ifreedelta = tp->t_ifree_delta;
	}

	/* apply the per-cpu counters */
	if (blkdelta) {
		error = xfs_icsb_modify_counters(mp, XFS_SBS_FDBLOCKS,
						 blkdelta, rsvd);
		if (error)
			goto out;
	}

	if (idelta) {
		error = xfs_icsb_modify_counters(mp, XFS_SBS_ICOUNT,
						 idelta, rsvd);
		if (error)
			goto out_undo_fdblocks;
	}

	if (ifreedelta) {
		error = xfs_icsb_modify_counters(mp, XFS_SBS_IFREE,
						 ifreedelta, rsvd);
		if (error)
			goto out_undo_icount;
	}

	/* apply remaining deltas */
582
	if (rtxdelta != 0) {
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583
		msbp->msb_field = XFS_SBS_FREXTENTS;
584
		msbp->msb_delta = rtxdelta;
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585 586 587
		msbp++;
	}

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588
	if (tp->t_flags & XFS_TRANS_SB_DIRTY) {
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589 590
		if (tp->t_dblocks_delta != 0) {
			msbp->msb_field = XFS_SBS_DBLOCKS;
591
			msbp->msb_delta = tp->t_dblocks_delta;
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592 593 594 595
			msbp++;
		}
		if (tp->t_agcount_delta != 0) {
			msbp->msb_field = XFS_SBS_AGCOUNT;
596
			msbp->msb_delta = tp->t_agcount_delta;
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597 598 599 600
			msbp++;
		}
		if (tp->t_imaxpct_delta != 0) {
			msbp->msb_field = XFS_SBS_IMAX_PCT;
601
			msbp->msb_delta = tp->t_imaxpct_delta;
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602 603 604 605
			msbp++;
		}
		if (tp->t_rextsize_delta != 0) {
			msbp->msb_field = XFS_SBS_REXTSIZE;
606
			msbp->msb_delta = tp->t_rextsize_delta;
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			msbp++;
		}
		if (tp->t_rbmblocks_delta != 0) {
			msbp->msb_field = XFS_SBS_RBMBLOCKS;
611
			msbp->msb_delta = tp->t_rbmblocks_delta;
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612 613 614 615
			msbp++;
		}
		if (tp->t_rblocks_delta != 0) {
			msbp->msb_field = XFS_SBS_RBLOCKS;
616
			msbp->msb_delta = tp->t_rblocks_delta;
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			msbp++;
		}
		if (tp->t_rextents_delta != 0) {
			msbp->msb_field = XFS_SBS_REXTENTS;
621
			msbp->msb_delta = tp->t_rextents_delta;
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622 623 624 625
			msbp++;
		}
		if (tp->t_rextslog_delta != 0) {
			msbp->msb_field = XFS_SBS_REXTSLOG;
626
			msbp->msb_delta = tp->t_rextslog_delta;
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			msbp++;
		}
	}

	/*
	 * If we need to change anything, do it.
	 */
	if (msbp > msb) {
		error = xfs_mod_incore_sb_batch(tp->t_mountp, msb,
			(uint)(msbp - msb), rsvd);
637 638
		if (error)
			goto out_undo_ifreecount;
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639
	}
640 641 642 643 644 645 646 647 648 649 650 651 652

	return;

out_undo_ifreecount:
	if (ifreedelta)
		xfs_icsb_modify_counters(mp, XFS_SBS_IFREE, -ifreedelta, rsvd);
out_undo_icount:
	if (idelta)
		xfs_icsb_modify_counters(mp, XFS_SBS_ICOUNT, -idelta, rsvd);
out_undo_fdblocks:
	if (blkdelta)
		xfs_icsb_modify_counters(mp, XFS_SBS_FDBLOCKS, -blkdelta, rsvd);
out:
653
	ASSERT(error == 0);
654
	return;
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}

657 658 659 660 661 662 663 664 665 666 667 668
/*
 * Add the given log item to the transaction's list of log items.
 *
 * The log item will now point to its new descriptor with its li_desc field.
 */
void
xfs_trans_add_item(
	struct xfs_trans	*tp,
	struct xfs_log_item	*lip)
{
	struct xfs_log_item_desc *lidp;

669 670
	ASSERT(lip->li_mountp == tp->t_mountp);
	ASSERT(lip->li_ailp == tp->t_mountp->m_ail);
671

672
	lidp = kmem_zone_zalloc(xfs_log_item_desc_zone, KM_SLEEP | KM_NOFS);
673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703

	lidp->lid_item = lip;
	lidp->lid_flags = 0;
	list_add_tail(&lidp->lid_trans, &tp->t_items);

	lip->li_desc = lidp;
}

STATIC void
xfs_trans_free_item_desc(
	struct xfs_log_item_desc *lidp)
{
	list_del_init(&lidp->lid_trans);
	kmem_zone_free(xfs_log_item_desc_zone, lidp);
}

/*
 * Unlink and free the given descriptor.
 */
void
xfs_trans_del_item(
	struct xfs_log_item	*lip)
{
	xfs_trans_free_item_desc(lip->li_desc);
	lip->li_desc = NULL;
}

/*
 * Unlock all of the items of a transaction and free all the descriptors
 * of that transaction.
 */
704
void
705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726
xfs_trans_free_items(
	struct xfs_trans	*tp,
	xfs_lsn_t		commit_lsn,
	int			flags)
{
	struct xfs_log_item_desc *lidp, *next;

	list_for_each_entry_safe(lidp, next, &tp->t_items, lid_trans) {
		struct xfs_log_item	*lip = lidp->lid_item;

		lip->li_desc = NULL;

		if (commit_lsn != NULLCOMMITLSN)
			IOP_COMMITTING(lip, commit_lsn);
		if (flags & XFS_TRANS_ABORT)
			lip->li_flags |= XFS_LI_ABORTED;
		IOP_UNLOCK(lip);

		xfs_trans_free_item_desc(lidp);
	}
}

727 728 729
static inline void
xfs_log_item_batch_insert(
	struct xfs_ail		*ailp,
730
	struct xfs_ail_cursor	*cur,
731 732 733 734 735 736 737 738
	struct xfs_log_item	**log_items,
	int			nr_items,
	xfs_lsn_t		commit_lsn)
{
	int	i;

	spin_lock(&ailp->xa_lock);
	/* xfs_trans_ail_update_bulk drops ailp->xa_lock */
739
	xfs_trans_ail_update_bulk(ailp, cur, log_items, nr_items, commit_lsn);
740 741 742 743 744 745 746 747 748

	for (i = 0; i < nr_items; i++)
		IOP_UNPIN(log_items[i], 0);
}

/*
 * Bulk operation version of xfs_trans_committed that takes a log vector of
 * items to insert into the AIL. This uses bulk AIL insertion techniques to
 * minimise lock traffic.
749 750 751 752 753 754 755 756
 *
 * If we are called with the aborted flag set, it is because a log write during
 * a CIL checkpoint commit has failed. In this case, all the items in the
 * checkpoint have already gone through IOP_COMMITED and IOP_UNLOCK, which
 * means that checkpoint commit abort handling is treated exactly the same
 * as an iclog write error even though we haven't started any IO yet. Hence in
 * this case all we need to do is IOP_COMMITTED processing, followed by an
 * IOP_UNPIN(aborted) call.
757 758 759 760 761 762 763
 *
 * The AIL cursor is used to optimise the insert process. If commit_lsn is not
 * at the end of the AIL, the insert cursor avoids the need to walk
 * the AIL to find the insertion point on every xfs_log_item_batch_insert()
 * call. This saves a lot of needless list walking and is a net win, even
 * though it slightly increases that amount of AIL lock traffic to set it up
 * and tear it down.
764 765 766 767 768 769 770 771 772 773 774
 */
void
xfs_trans_committed_bulk(
	struct xfs_ail		*ailp,
	struct xfs_log_vec	*log_vector,
	xfs_lsn_t		commit_lsn,
	int			aborted)
{
#define LOG_ITEM_BATCH_SIZE	32
	struct xfs_log_item	*log_items[LOG_ITEM_BATCH_SIZE];
	struct xfs_log_vec	*lv;
775
	struct xfs_ail_cursor	cur;
776 777
	int			i = 0;

778 779 780 781
	spin_lock(&ailp->xa_lock);
	xfs_trans_ail_cursor_last(ailp, &cur, commit_lsn);
	spin_unlock(&ailp->xa_lock);

782 783 784 785 786 787 788 789 790
	/* unpin all the log items */
	for (lv = log_vector; lv; lv = lv->lv_next ) {
		struct xfs_log_item	*lip = lv->lv_item;
		xfs_lsn_t		item_lsn;

		if (aborted)
			lip->li_flags |= XFS_LI_ABORTED;
		item_lsn = IOP_COMMITTED(lip, commit_lsn);

791
		/* item_lsn of -1 means the item needs no further processing */
792 793 794
		if (XFS_LSN_CMP(item_lsn, (xfs_lsn_t)-1) == 0)
			continue;

795 796 797 798 799 800 801 802 803 804
		/*
		 * if we are aborting the operation, no point in inserting the
		 * object into the AIL as we are in a shutdown situation.
		 */
		if (aborted) {
			ASSERT(XFS_FORCED_SHUTDOWN(ailp->xa_mount));
			IOP_UNPIN(lip, 1);
			continue;
		}

805 806 807 808 809
		if (item_lsn != commit_lsn) {

			/*
			 * Not a bulk update option due to unusual item_lsn.
			 * Push into AIL immediately, rechecking the lsn once
810 811 812
			 * we have the ail lock. Then unpin the item. This does
			 * not affect the AIL cursor the bulk insert path is
			 * using.
813 814 815 816 817 818 819 820 821 822 823 824 825
			 */
			spin_lock(&ailp->xa_lock);
			if (XFS_LSN_CMP(item_lsn, lip->li_lsn) > 0)
				xfs_trans_ail_update(ailp, lip, item_lsn);
			else
				spin_unlock(&ailp->xa_lock);
			IOP_UNPIN(lip, 0);
			continue;
		}

		/* Item is a candidate for bulk AIL insert.  */
		log_items[i++] = lv->lv_item;
		if (i >= LOG_ITEM_BATCH_SIZE) {
826
			xfs_log_item_batch_insert(ailp, &cur, log_items,
827 828 829 830 831 832 833
					LOG_ITEM_BATCH_SIZE, commit_lsn);
			i = 0;
		}
	}

	/* make sure we insert the remainder! */
	if (i)
834 835 836 837 838
		xfs_log_item_batch_insert(ailp, &cur, log_items, i, commit_lsn);

	spin_lock(&ailp->xa_lock);
	xfs_trans_ail_cursor_done(ailp, &cur);
	spin_unlock(&ailp->xa_lock);
839 840
}

841
/*
842
 * Commit the given transaction to the log.
843 844 845 846 847 848 849 850 851 852 853
 *
 * XFS disk error handling mechanism is not based on a typical
 * transaction abort mechanism. Logically after the filesystem
 * gets marked 'SHUTDOWN', we can't let any new transactions
 * be durable - ie. committed to disk - because some metadata might
 * be inconsistent. In such cases, this returns an error, and the
 * caller may assume that all locked objects joined to the transaction
 * have already been unlocked as if the commit had succeeded.
 * Do not reference the transaction structure after this call.
 */
int
854
xfs_trans_commit(
855
	struct xfs_trans	*tp,
856
	uint			flags)
857
{
858
	struct xfs_mount	*mp = tp->t_mountp;
859
	xfs_lsn_t		commit_lsn = -1;
860
	int			error = 0;
861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879
	int			log_flags = 0;
	int			sync = tp->t_flags & XFS_TRANS_SYNC;

	/*
	 * Determine whether this commit is releasing a permanent
	 * log reservation or not.
	 */
	if (flags & XFS_TRANS_RELEASE_LOG_RES) {
		ASSERT(tp->t_flags & XFS_TRANS_PERM_LOG_RES);
		log_flags = XFS_LOG_REL_PERM_RESERV;
	}

	/*
	 * If there is nothing to be logged by the transaction,
	 * then unlock all of the items associated with the
	 * transaction and free the transaction structure.
	 * Also make sure to return any reserved blocks to
	 * the free pool.
	 */
880 881 882 883 884 885
	if (!(tp->t_flags & XFS_TRANS_DIRTY))
		goto out_unreserve;

	if (XFS_FORCED_SHUTDOWN(mp)) {
		error = XFS_ERROR(EIO);
		goto out_unreserve;
886
	}
887

888 889 890 891 892 893 894 895 896
	ASSERT(tp->t_ticket != NULL);

	/*
	 * If we need to update the superblock, then do it now.
	 */
	if (tp->t_flags & XFS_TRANS_SB_DIRTY)
		xfs_trans_apply_sb_deltas(tp);
	xfs_trans_apply_dquot_deltas(tp);

897
	error = xfs_log_commit_cil(mp, tp, &commit_lsn, flags);
898 899
	if (error == ENOMEM) {
		xfs_force_shutdown(mp, SHUTDOWN_LOG_IO_ERROR);
900 901
		error = XFS_ERROR(EIO);
		goto out_unreserve;
902
	}
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Linus Torvalds 已提交
903

904 905 906
	current_restore_flags_nested(&tp->t_pflags, PF_FSTRANS);
	xfs_trans_free(tp);

L
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907 908 909 910 911
	/*
	 * If the transaction needs to be synchronous, then force the
	 * log out now and wait for it.
	 */
	if (sync) {
912
		if (!error) {
913
			error = _xfs_log_force_lsn(mp, commit_lsn,
914
				      XFS_LOG_SYNC, NULL);
915
		}
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916 917 918 919 920
		XFS_STATS_INC(xs_trans_sync);
	} else {
		XFS_STATS_INC(xs_trans_async);
	}

921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937
	return error;

out_unreserve:
	xfs_trans_unreserve_and_mod_sb(tp);

	/*
	 * It is indeed possible for the transaction to be not dirty but
	 * the dqinfo portion to be.  All that means is that we have some
	 * (non-persistent) quota reservations that need to be unreserved.
	 */
	xfs_trans_unreserve_and_mod_dquots(tp);
	if (tp->t_ticket) {
		commit_lsn = xfs_log_done(mp, tp->t_ticket, NULL, log_flags);
		if (commit_lsn == -1 && !error)
			error = XFS_ERROR(EIO);
	}
	current_restore_flags_nested(&tp->t_pflags, PF_FSTRANS);
938
	xfs_trans_free_items(tp, NULLCOMMITLSN, error ? XFS_TRANS_ABORT : 0);
939 940 941 942
	xfs_trans_free(tp);

	XFS_STATS_INC(xs_trans_empty);
	return error;
L
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943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958
}

/*
 * Unlock all of the transaction's items and free the transaction.
 * The transaction must not have modified any of its items, because
 * there is no way to restore them to their previous state.
 *
 * If the transaction has made a log reservation, make sure to release
 * it as well.
 */
void
xfs_trans_cancel(
	xfs_trans_t		*tp,
	int			flags)
{
	int			log_flags;
959
	xfs_mount_t		*mp = tp->t_mountp;
L
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960 961 962 963 964 965 966 967 968 969 970 971

	/*
	 * See if the caller is being too lazy to figure out if
	 * the transaction really needs an abort.
	 */
	if ((flags & XFS_TRANS_ABORT) && !(tp->t_flags & XFS_TRANS_DIRTY))
		flags &= ~XFS_TRANS_ABORT;
	/*
	 * See if the caller is relying on us to shut down the
	 * filesystem.  This happens in paths where we detect
	 * corruption and decide to give up.
	 */
972
	if ((tp->t_flags & XFS_TRANS_DIRTY) && !XFS_FORCED_SHUTDOWN(mp)) {
973
		XFS_ERROR_REPORT("xfs_trans_cancel", XFS_ERRLEVEL_LOW, mp);
974
		xfs_force_shutdown(mp, SHUTDOWN_CORRUPT_INCORE);
975
	}
L
Linus Torvalds 已提交
976
#ifdef DEBUG
977 978 979 980 981
	if (!(flags & XFS_TRANS_ABORT) && !XFS_FORCED_SHUTDOWN(mp)) {
		struct xfs_log_item_desc *lidp;

		list_for_each_entry(lidp, &tp->t_items, lid_trans)
			ASSERT(!(lidp->lid_item->li_type == XFS_LI_EFD));
L
Linus Torvalds 已提交
982 983 984
	}
#endif
	xfs_trans_unreserve_and_mod_sb(tp);
C
Christoph Hellwig 已提交
985
	xfs_trans_unreserve_and_mod_dquots(tp);
L
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986 987 988 989 990 991 992 993

	if (tp->t_ticket) {
		if (flags & XFS_TRANS_RELEASE_LOG_RES) {
			ASSERT(tp->t_flags & XFS_TRANS_PERM_LOG_RES);
			log_flags = XFS_LOG_REL_PERM_RESERV;
		} else {
			log_flags = 0;
		}
994
		xfs_log_done(mp, tp->t_ticket, NULL, log_flags);
L
Linus Torvalds 已提交
995 996 997
	}

	/* mark this thread as no longer being in a transaction */
998
	current_restore_flags_nested(&tp->t_pflags, PF_FSTRANS);
L
Linus Torvalds 已提交
999

1000
	xfs_trans_free_items(tp, NULLCOMMITLSN, flags);
L
Linus Torvalds 已提交
1001 1002 1003
	xfs_trans_free(tp);
}

1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045
/*
 * Roll from one trans in the sequence of PERMANENT transactions to
 * the next: permanent transactions are only flushed out when
 * committed with XFS_TRANS_RELEASE_LOG_RES, but we still want as soon
 * as possible to let chunks of it go to the log. So we commit the
 * chunk we've been working on and get a new transaction to continue.
 */
int
xfs_trans_roll(
	struct xfs_trans	**tpp,
	struct xfs_inode	*dp)
{
	struct xfs_trans	*trans;
	unsigned int		logres, count;
	int			error;

	/*
	 * Ensure that the inode is always logged.
	 */
	trans = *tpp;
	xfs_trans_log_inode(trans, dp, XFS_ILOG_CORE);

	/*
	 * Copy the critical parameters from one trans to the next.
	 */
	logres = trans->t_log_res;
	count = trans->t_log_count;
	*tpp = xfs_trans_dup(trans);

	/*
	 * Commit the current transaction.
	 * If this commit failed, then it'd just unlock those items that
	 * are not marked ihold. That also means that a filesystem shutdown
	 * is in progress. The caller takes the responsibility to cancel
	 * the duplicate transaction that gets returned.
	 */
	error = xfs_trans_commit(trans, 0);
	if (error)
		return (error);

	trans = *tpp;

1046 1047 1048 1049 1050 1051 1052
	/*
	 * transaction commit worked ok so we can drop the extra ticket
	 * reference that we gained in xfs_trans_dup()
	 */
	xfs_log_ticket_put(trans->t_ticket);


1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068
	/*
	 * Reserve space in the log for th next transaction.
	 * This also pushes items in the "AIL", the list of logged items,
	 * out to disk if they are taking up space at the tail of the log
	 * that we want to use.  This requires that either nothing be locked
	 * across this call, or that anything that is locked be logged in
	 * the prior and the next transactions.
	 */
	error = xfs_trans_reserve(trans, 0, logres, 0,
				  XFS_TRANS_PERM_LOG_RES, count);
	/*
	 *  Ensure that the inode is in the new transaction and locked.
	 */
	if (error)
		return error;

1069
	xfs_trans_ijoin(trans, dp, 0);
1070 1071
	return 0;
}