xfs_mount.c 34.6 KB
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// SPDX-License-Identifier: GPL-2.0
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/*
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 * Copyright (c) 2000-2005 Silicon Graphics, Inc.
 * All Rights Reserved.
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 */
#include "xfs.h"
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#include "xfs_fs.h"
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#include "xfs_shared.h"
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#include "xfs_format.h"
#include "xfs_log_format.h"
#include "xfs_trans_resv.h"
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#include "xfs_bit.h"
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#include "xfs_sb.h"
#include "xfs_mount.h"
#include "xfs_inode.h"
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#include "xfs_dir2.h"
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#include "xfs_ialloc.h"
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#include "xfs_alloc.h"
#include "xfs_rtalloc.h"
#include "xfs_bmap.h"
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#include "xfs_trans.h"
#include "xfs_trans_priv.h"
#include "xfs_log.h"
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#include "xfs_error.h"
#include "xfs_quota.h"
#include "xfs_fsops.h"
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#include "xfs_icache.h"
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#include "xfs_sysfs.h"
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#include "xfs_rmap_btree.h"
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#include "xfs_refcount_btree.h"
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#include "xfs_reflink.h"
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#include "xfs_extent_busy.h"
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#include "xfs_health.h"
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#include "xfs_trace.h"
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static DEFINE_MUTEX(xfs_uuid_table_mutex);
static int xfs_uuid_table_size;
static uuid_t *xfs_uuid_table;

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void
xfs_uuid_table_free(void)
{
	if (xfs_uuid_table_size == 0)
		return;
	kmem_free(xfs_uuid_table);
	xfs_uuid_table = NULL;
	xfs_uuid_table_size = 0;
}

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/*
 * See if the UUID is unique among mounted XFS filesystems.
 * Mount fails if UUID is nil or a FS with the same UUID is already mounted.
 */
STATIC int
xfs_uuid_mount(
	struct xfs_mount	*mp)
{
	uuid_t			*uuid = &mp->m_sb.sb_uuid;
	int			hole, i;

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	/* Publish UUID in struct super_block */
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	uuid_copy(&mp->m_super->s_uuid, uuid);
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	if (mp->m_flags & XFS_MOUNT_NOUUID)
		return 0;

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	if (uuid_is_null(uuid)) {
		xfs_warn(mp, "Filesystem has null UUID - can't mount");
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		return -EINVAL;
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	}

	mutex_lock(&xfs_uuid_table_mutex);
	for (i = 0, hole = -1; i < xfs_uuid_table_size; i++) {
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		if (uuid_is_null(&xfs_uuid_table[i])) {
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			hole = i;
			continue;
		}
		if (uuid_equal(uuid, &xfs_uuid_table[i]))
			goto out_duplicate;
	}

	if (hole < 0) {
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		xfs_uuid_table = krealloc(xfs_uuid_table,
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			(xfs_uuid_table_size + 1) * sizeof(*xfs_uuid_table),
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			GFP_KERNEL | __GFP_NOFAIL);
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		hole = xfs_uuid_table_size++;
	}
	xfs_uuid_table[hole] = *uuid;
	mutex_unlock(&xfs_uuid_table_mutex);

	return 0;

 out_duplicate:
	mutex_unlock(&xfs_uuid_table_mutex);
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	xfs_warn(mp, "Filesystem has duplicate UUID %pU - can't mount", uuid);
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	return -EINVAL;
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}

STATIC void
xfs_uuid_unmount(
	struct xfs_mount	*mp)
{
	uuid_t			*uuid = &mp->m_sb.sb_uuid;
	int			i;

	if (mp->m_flags & XFS_MOUNT_NOUUID)
		return;

	mutex_lock(&xfs_uuid_table_mutex);
	for (i = 0; i < xfs_uuid_table_size; i++) {
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		if (uuid_is_null(&xfs_uuid_table[i]))
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			continue;
		if (!uuid_equal(uuid, &xfs_uuid_table[i]))
			continue;
		memset(&xfs_uuid_table[i], 0, sizeof(uuid_t));
		break;
	}
	ASSERT(i < xfs_uuid_table_size);
	mutex_unlock(&xfs_uuid_table_mutex);
}


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STATIC void
__xfs_free_perag(
	struct rcu_head	*head)
{
	struct xfs_perag *pag = container_of(head, struct xfs_perag, rcu_head);

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	ASSERT(!delayed_work_pending(&pag->pag_blockgc_work));
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	ASSERT(atomic_read(&pag->pag_ref) == 0);
	kmem_free(pag);
}

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/*
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 * Free up the per-ag resources associated with the mount structure.
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 */
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STATIC void
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xfs_free_perag(
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	xfs_mount_t	*mp)
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{
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	xfs_agnumber_t	agno;
	struct xfs_perag *pag;

	for (agno = 0; agno < mp->m_sb.sb_agcount; agno++) {
		spin_lock(&mp->m_perag_lock);
		pag = radix_tree_delete(&mp->m_perag_tree, agno);
		spin_unlock(&mp->m_perag_lock);
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		ASSERT(pag);
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		ASSERT(atomic_read(&pag->pag_ref) == 0);
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		cancel_delayed_work_sync(&pag->pag_blockgc_work);
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		xfs_iunlink_destroy(pag);
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		xfs_buf_hash_destroy(pag);
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		call_rcu(&pag->rcu_head, __xfs_free_perag);
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	}
}

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/*
 * Check size of device based on the (data/realtime) block count.
 * Note: this check is used by the growfs code as well as mount.
 */
int
xfs_sb_validate_fsb_count(
	xfs_sb_t	*sbp,
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	uint64_t	nblocks)
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{
	ASSERT(PAGE_SHIFT >= sbp->sb_blocklog);
	ASSERT(sbp->sb_blocklog >= BBSHIFT);

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	/* Limited by ULONG_MAX of page cache index */
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	if (nblocks >> (PAGE_SHIFT - sbp->sb_blocklog) > ULONG_MAX)
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		return -EFBIG;
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	return 0;
}
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int
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xfs_initialize_perag(
	xfs_mount_t	*mp,
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	xfs_agnumber_t	agcount,
	xfs_agnumber_t	*maxagi)
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{
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	xfs_agnumber_t	index;
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	xfs_agnumber_t	first_initialised = NULLAGNUMBER;
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	xfs_perag_t	*pag;
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	int		error = -ENOMEM;
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	/*
	 * Walk the current per-ag tree so we don't try to initialise AGs
	 * that already exist (growfs case). Allocate and insert all the
	 * AGs we don't find ready for initialisation.
	 */
	for (index = 0; index < agcount; index++) {
		pag = xfs_perag_get(mp, index);
		if (pag) {
			xfs_perag_put(pag);
			continue;
		}
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		pag = kmem_zalloc(sizeof(*pag), KM_MAYFAIL);
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		if (!pag) {
			error = -ENOMEM;
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			goto out_unwind_new_pags;
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		}
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		pag->pag_agno = index;
		pag->pag_mount = mp;
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		spin_lock_init(&pag->pag_ici_lock);
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		INIT_DELAYED_WORK(&pag->pag_blockgc_work, xfs_blockgc_worker);
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		INIT_RADIX_TREE(&pag->pag_ici_root, GFP_ATOMIC);
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		error = xfs_buf_hash_init(pag);
		if (error)
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			goto out_free_pag;
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		init_waitqueue_head(&pag->pagb_wait);
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		spin_lock_init(&pag->pagb_lock);
		pag->pagb_count = 0;
		pag->pagb_tree = RB_ROOT;
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		error = radix_tree_preload(GFP_NOFS);
		if (error)
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			goto out_hash_destroy;
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		spin_lock(&mp->m_perag_lock);
		if (radix_tree_insert(&mp->m_perag_tree, index, pag)) {
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			WARN_ON_ONCE(1);
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			spin_unlock(&mp->m_perag_lock);
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			radix_tree_preload_end();
			error = -EEXIST;
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			goto out_hash_destroy;
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		}
		spin_unlock(&mp->m_perag_lock);
		radix_tree_preload_end();
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		/* first new pag is fully initialized */
		if (first_initialised == NULLAGNUMBER)
			first_initialised = index;
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		error = xfs_iunlink_init(pag);
		if (error)
			goto out_hash_destroy;
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		spin_lock_init(&pag->pag_state_lock);
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	}

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	index = xfs_set_inode_alloc(mp, agcount);
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	if (maxagi)
		*maxagi = index;
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	mp->m_ag_prealloc_blocks = xfs_prealloc_blocks(mp);
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	return 0;
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out_hash_destroy:
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	xfs_buf_hash_destroy(pag);
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out_free_pag:
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	kmem_free(pag);
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out_unwind_new_pags:
	/* unwind any prior newly initialized pags */
	for (index = first_initialised; index < agcount; index++) {
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		pag = radix_tree_delete(&mp->m_perag_tree, index);
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		if (!pag)
			break;
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		xfs_buf_hash_destroy(pag);
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		xfs_iunlink_destroy(pag);
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		kmem_free(pag);
	}
	return error;
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}

/*
 * xfs_readsb
 *
 * Does the initial read of the superblock.
 */
int
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xfs_readsb(
	struct xfs_mount *mp,
	int		flags)
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{
	unsigned int	sector_size;
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	struct xfs_buf	*bp;
	struct xfs_sb	*sbp = &mp->m_sb;
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	int		error;
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	int		loud = !(flags & XFS_MFSI_QUIET);
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	const struct xfs_buf_ops *buf_ops;
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	ASSERT(mp->m_sb_bp == NULL);
	ASSERT(mp->m_ddev_targp != NULL);

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	/*
	 * For the initial read, we must guess at the sector
	 * size based on the block device.  It's enough to
	 * get the sb_sectsize out of the superblock and
	 * then reread with the proper length.
	 * We don't verify it yet, because it may not be complete.
	 */
	sector_size = xfs_getsize_buftarg(mp->m_ddev_targp);
	buf_ops = NULL;

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	/*
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	 * Allocate a (locked) buffer to hold the superblock. This will be kept
	 * around at all times to optimize access to the superblock. Therefore,
	 * set XBF_NO_IOACCT to make sure it doesn't hold the buftarg count
	 * elevated.
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	 */
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reread:
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	error = xfs_buf_read_uncached(mp->m_ddev_targp, XFS_SB_DADDR,
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				      BTOBB(sector_size), XBF_NO_IOACCT, &bp,
				      buf_ops);
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	if (error) {
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		if (loud)
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			xfs_warn(mp, "SB validate failed with error %d.", error);
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		/* bad CRC means corrupted metadata */
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		if (error == -EFSBADCRC)
			error = -EFSCORRUPTED;
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		return error;
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	}
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	/*
	 * Initialize the mount structure from the superblock.
	 */
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	xfs_sb_from_disk(sbp, bp->b_addr);
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	/*
	 * If we haven't validated the superblock, do so now before we try
	 * to check the sector size and reread the superblock appropriately.
	 */
	if (sbp->sb_magicnum != XFS_SB_MAGIC) {
		if (loud)
			xfs_warn(mp, "Invalid superblock magic number");
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		error = -EINVAL;
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		goto release_buf;
	}
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	/*
	 * We must be able to do sector-sized and sector-aligned IO.
	 */
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	if (sector_size > sbp->sb_sectsize) {
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		if (loud)
			xfs_warn(mp, "device supports %u byte sectors (not %u)",
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				sector_size, sbp->sb_sectsize);
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		error = -ENOSYS;
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		goto release_buf;
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	}

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	if (buf_ops == NULL) {
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		/*
		 * Re-read the superblock so the buffer is correctly sized,
		 * and properly verified.
		 */
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		xfs_buf_relse(bp);
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		sector_size = sbp->sb_sectsize;
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		buf_ops = loud ? &xfs_sb_buf_ops : &xfs_sb_quiet_buf_ops;
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		goto reread;
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	}

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	xfs_reinit_percpu_counters(mp);
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	/* no need to be quiet anymore, so reset the buf ops */
	bp->b_ops = &xfs_sb_buf_ops;

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	mp->m_sb_bp = bp;
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	xfs_buf_unlock(bp);
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	return 0;

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release_buf:
	xfs_buf_relse(bp);
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	return error;
}

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/*
 * If the sunit/swidth change would move the precomputed root inode value, we
 * must reject the ondisk change because repair will stumble over that.
 * However, we allow the mount to proceed because we never rejected this
 * combination before.  Returns true to update the sb, false otherwise.
 */
static inline int
xfs_check_new_dalign(
	struct xfs_mount	*mp,
	int			new_dalign,
	bool			*update_sb)
{
	struct xfs_sb		*sbp = &mp->m_sb;
	xfs_ino_t		calc_ino;

	calc_ino = xfs_ialloc_calc_rootino(mp, new_dalign);
	trace_xfs_check_new_dalign(mp, new_dalign, calc_ino);

	if (sbp->sb_rootino == calc_ino) {
		*update_sb = true;
		return 0;
	}

	xfs_warn(mp,
"Cannot change stripe alignment; would require moving root inode.");

	/*
	 * XXX: Next time we add a new incompat feature, this should start
	 * returning -EINVAL to fail the mount.  Until then, spit out a warning
	 * that we're ignoring the administrator's instructions.
	 */
	xfs_warn(mp, "Skipping superblock stripe alignment update.");
	*update_sb = false;
	return 0;
}

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/*
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 * If we were provided with new sunit/swidth values as mount options, make sure
 * that they pass basic alignment and superblock feature checks, and convert
 * them into the same units (FSB) that everything else expects.  This step
 * /must/ be done before computing the inode geometry.
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 */
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STATIC int
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xfs_validate_new_dalign(
	struct xfs_mount	*mp)
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{
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	if (mp->m_dalign == 0)
		return 0;
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	/*
	 * If stripe unit and stripe width are not multiples
	 * of the fs blocksize turn off alignment.
	 */
	if ((BBTOB(mp->m_dalign) & mp->m_blockmask) ||
	    (BBTOB(mp->m_swidth) & mp->m_blockmask)) {
		xfs_warn(mp,
	"alignment check failed: sunit/swidth vs. blocksize(%d)",
			mp->m_sb.sb_blocksize);
		return -EINVAL;
	} else {
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		/*
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		 * Convert the stripe unit and width to FSBs.
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		 */
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		mp->m_dalign = XFS_BB_TO_FSBT(mp, mp->m_dalign);
		if (mp->m_dalign && (mp->m_sb.sb_agblocks % mp->m_dalign)) {
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			xfs_warn(mp,
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		"alignment check failed: sunit/swidth vs. agsize(%d)",
				 mp->m_sb.sb_agblocks);
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			return -EINVAL;
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		} else if (mp->m_dalign) {
			mp->m_swidth = XFS_BB_TO_FSBT(mp, mp->m_swidth);
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		} else {
			xfs_warn(mp,
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		"alignment check failed: sunit(%d) less than bsize(%d)",
				 mp->m_dalign, mp->m_sb.sb_blocksize);
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			return -EINVAL;
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		}
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	}

	if (!xfs_sb_version_hasdalign(&mp->m_sb)) {
		xfs_warn(mp,
"cannot change alignment: superblock does not support data alignment");
		return -EINVAL;
	}

	return 0;
}

/* Update alignment values based on mount options and sb values. */
STATIC int
xfs_update_alignment(
	struct xfs_mount	*mp)
{
	struct xfs_sb		*sbp = &mp->m_sb;

	if (mp->m_dalign) {
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		bool		update_sb;
		int		error;

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		if (sbp->sb_unit == mp->m_dalign &&
		    sbp->sb_width == mp->m_swidth)
			return 0;

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		error = xfs_check_new_dalign(mp, mp->m_dalign, &update_sb);
		if (error || !update_sb)
			return error;

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		sbp->sb_unit = mp->m_dalign;
		sbp->sb_width = mp->m_swidth;
		mp->m_update_sb = true;
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	} else if ((mp->m_flags & XFS_MOUNT_NOALIGN) != XFS_MOUNT_NOALIGN &&
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		    xfs_sb_version_hasdalign(&mp->m_sb)) {
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		mp->m_dalign = sbp->sb_unit;
		mp->m_swidth = sbp->sb_width;
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	}

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	return 0;
}
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/*
 * precalculate the low space thresholds for dynamic speculative preallocation.
 */
void
xfs_set_low_space_thresholds(
	struct xfs_mount	*mp)
{
	int i;

	for (i = 0; i < XFS_LOWSP_MAX; i++) {
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		uint64_t space = mp->m_sb.sb_dblocks;
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		do_div(space, 100);
		mp->m_low_space[i] = space * (i + 1);
	}
}

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/*
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 * Check that the data (and log if separate) is an ok size.
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 */
STATIC int
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xfs_check_sizes(
	struct xfs_mount *mp)
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{
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	struct xfs_buf	*bp;
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	xfs_daddr_t	d;
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	int		error;
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	d = (xfs_daddr_t)XFS_FSB_TO_BB(mp, mp->m_sb.sb_dblocks);
	if (XFS_BB_TO_FSB(mp, d) != mp->m_sb.sb_dblocks) {
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		xfs_warn(mp, "filesystem size mismatch detected");
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		return -EFBIG;
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	}
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	error = xfs_buf_read_uncached(mp->m_ddev_targp,
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					d - XFS_FSS_TO_BB(mp, 1),
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					XFS_FSS_TO_BB(mp, 1), 0, &bp, NULL);
	if (error) {
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		xfs_warn(mp, "last sector read failed");
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		return error;
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	}
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	xfs_buf_relse(bp);
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	if (mp->m_logdev_targp == mp->m_ddev_targp)
		return 0;

	d = (xfs_daddr_t)XFS_FSB_TO_BB(mp, mp->m_sb.sb_logblocks);
	if (XFS_BB_TO_FSB(mp, d) != mp->m_sb.sb_logblocks) {
		xfs_warn(mp, "log size mismatch detected");
		return -EFBIG;
	}
	error = xfs_buf_read_uncached(mp->m_logdev_targp,
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					d - XFS_FSB_TO_BB(mp, 1),
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					XFS_FSB_TO_BB(mp, 1), 0, &bp, NULL);
	if (error) {
		xfs_warn(mp, "log device read failed");
		return error;
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	}
542
	xfs_buf_relse(bp);
E
Eric Sandeen 已提交
543 544 545
	return 0;
}

C
Christoph Hellwig 已提交
546 547 548 549 550 551 552 553 554
/*
 * Clear the quotaflags in memory and in the superblock.
 */
int
xfs_mount_reset_sbqflags(
	struct xfs_mount	*mp)
{
	mp->m_qflags = 0;

555
	/* It is OK to look at sb_qflags in the mount path without m_sb_lock. */
C
Christoph Hellwig 已提交
556 557 558 559 560 561
	if (mp->m_sb.sb_qflags == 0)
		return 0;
	spin_lock(&mp->m_sb_lock);
	mp->m_sb.sb_qflags = 0;
	spin_unlock(&mp->m_sb_lock);

562
	if (!xfs_fs_writable(mp, SB_FREEZE_WRITE))
C
Christoph Hellwig 已提交
563 564
		return 0;

565
	return xfs_sync_sb(mp, false);
C
Christoph Hellwig 已提交
566 567
}

568
uint64_t
E
Eric Sandeen 已提交
569 570
xfs_default_resblks(xfs_mount_t *mp)
{
571
	uint64_t resblks;
E
Eric Sandeen 已提交
572 573

	/*
574 575 576 577 578
	 * We default to 5% or 8192 fsbs of space reserved, whichever is
	 * smaller.  This is intended to cover concurrent allocation
	 * transactions when we initially hit enospc. These each require a 4
	 * block reservation. Hence by default we cover roughly 2000 concurrent
	 * allocation reservations.
E
Eric Sandeen 已提交
579 580 581
	 */
	resblks = mp->m_sb.sb_dblocks;
	do_div(resblks, 20);
582
	resblks = min_t(uint64_t, resblks, 8192);
E
Eric Sandeen 已提交
583 584 585
	return resblks;
}

586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613
/* Ensure the summary counts are correct. */
STATIC int
xfs_check_summary_counts(
	struct xfs_mount	*mp)
{
	/*
	 * The AG0 superblock verifier rejects in-progress filesystems,
	 * so we should never see the flag set this far into mounting.
	 */
	if (mp->m_sb.sb_inprogress) {
		xfs_err(mp, "sb_inprogress set after log recovery??");
		WARN_ON(1);
		return -EFSCORRUPTED;
	}

	/*
	 * Now the log is mounted, we know if it was an unclean shutdown or
	 * not. If it was, with the first phase of recovery has completed, we
	 * have consistent AG blocks on disk. We have not recovered EFIs yet,
	 * but they are recovered transactionally in the second recovery phase
	 * later.
	 *
	 * If the log was clean when we mounted, we can check the summary
	 * counters.  If any of them are obviously incorrect, we can recompute
	 * them from the AGF headers in the next step.
	 */
	if (XFS_LAST_UNMOUNT_WAS_CLEAN(mp) &&
	    (mp->m_sb.sb_fdblocks > mp->m_sb.sb_dblocks ||
614
	     !xfs_verify_icount(mp, mp->m_sb.sb_icount) ||
615
	     mp->m_sb.sb_ifree > mp->m_sb.sb_icount))
616
		xfs_fs_mark_sick(mp, XFS_SICK_FS_COUNTERS);
617 618 619 620 621 622 623 624 625 626 627 628 629 630

	/*
	 * We can safely re-initialise incore superblock counters from the
	 * per-ag data. These may not be correct if the filesystem was not
	 * cleanly unmounted, so we waited for recovery to finish before doing
	 * this.
	 *
	 * If the filesystem was cleanly unmounted or the previous check did
	 * not flag anything weird, then we can trust the values in the
	 * superblock to be correct and we don't need to do anything here.
	 * Otherwise, recalculate the summary counters.
	 */
	if ((!xfs_sb_version_haslazysbcount(&mp->m_sb) ||
	     XFS_LAST_UNMOUNT_WAS_CLEAN(mp)) &&
631
	    !xfs_fs_has_sickness(mp, XFS_SICK_FS_COUNTERS))
632 633 634 635 636
		return 0;

	return xfs_initialize_perag_data(mp, mp->m_sb.sb_agcount);
}

637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677
/*
 * Flush and reclaim dirty inodes in preparation for unmount. Inodes and
 * internal inode structures can be sitting in the CIL and AIL at this point,
 * so we need to unpin them, write them back and/or reclaim them before unmount
 * can proceed.
 *
 * An inode cluster that has been freed can have its buffer still pinned in
 * memory because the transaction is still sitting in a iclog. The stale inodes
 * on that buffer will be pinned to the buffer until the transaction hits the
 * disk and the callbacks run. Pushing the AIL will skip the stale inodes and
 * may never see the pinned buffer, so nothing will push out the iclog and
 * unpin the buffer.
 *
 * Hence we need to force the log to unpin everything first. However, log
 * forces don't wait for the discards they issue to complete, so we have to
 * explicitly wait for them to complete here as well.
 *
 * Then we can tell the world we are unmounting so that error handling knows
 * that the filesystem is going away and we should error out anything that we
 * have been retrying in the background.  This will prevent never-ending
 * retries in AIL pushing from hanging the unmount.
 *
 * Finally, we can push the AIL to clean all the remaining dirty objects, then
 * reclaim the remaining inodes that are still in memory at this point in time.
 */
static void
xfs_unmount_flush_inodes(
	struct xfs_mount	*mp)
{
	xfs_log_force(mp, XFS_LOG_SYNC);
	xfs_extent_busy_wait_all(mp);
	flush_workqueue(xfs_discard_wq);

	mp->m_flags |= XFS_MOUNT_UNMOUNTING;

	xfs_ail_push_all_sync(mp->m_ail);
	cancel_delayed_work_sync(&mp->m_reclaim_work);
	xfs_reclaim_inodes(mp);
	xfs_health_unmount(mp);
}

678 679 680 681 682 683 684 685 686 687 688 689
static void
xfs_mount_setup_inode_geom(
	struct xfs_mount	*mp)
{
	struct xfs_ino_geometry *igeo = M_IGEO(mp);

	igeo->attr_fork_offset = xfs_bmap_compute_attr_offset(mp);
	ASSERT(igeo->attr_fork_offset < XFS_LITINO(mp));

	xfs_ialloc_setup_geometry(mp);
}

E
Eric Sandeen 已提交
690 691 692 693 694 695 696 697 698 699 700 701
/*
 * This function does the following on an initial mount of a file system:
 *	- reads the superblock from disk and init the mount struct
 *	- if we're a 32-bit kernel, do a size check on the superblock
 *		so we don't mount terabyte filesystems
 *	- init mount struct realtime fields
 *	- allocate inode hash table for fs
 *	- init directory manager
 *	- perform recovery and init the log manager
 */
int
xfs_mountfs(
702
	struct xfs_mount	*mp)
E
Eric Sandeen 已提交
703
{
704 705
	struct xfs_sb		*sbp = &(mp->m_sb);
	struct xfs_inode	*rip;
D
Darrick J. Wong 已提交
706
	struct xfs_ino_geometry	*igeo = M_IGEO(mp);
707
	uint64_t		resblks;
708 709 710
	uint			quotamount = 0;
	uint			quotaflags = 0;
	int			error = 0;
E
Eric Sandeen 已提交
711

712
	xfs_sb_mount_common(mp, sbp);
E
Eric Sandeen 已提交
713

714
	/*
715 716 717 718 719
	 * Check for a mismatched features2 values.  Older kernels read & wrote
	 * into the wrong sb offset for sb_features2 on some platforms due to
	 * xfs_sb_t not being 64bit size aligned when sb_features2 was added,
	 * which made older superblock reading/writing routines swap it as a
	 * 64-bit value.
720
	 *
721 722
	 * For backwards compatibility, we make both slots equal.
	 *
723 724 725 726 727 728
	 * If we detect a mismatched field, we OR the set bits into the existing
	 * features2 field in case it has already been modified; we don't want
	 * to lose any features.  We then update the bad location with the ORed
	 * value so that older kernels will see any features2 flags. The
	 * superblock writeback code ensures the new sb_features2 is copied to
	 * sb_bad_features2 before it is logged or written to disk.
729
	 */
730
	if (xfs_sb_has_mismatched_features2(sbp)) {
731
		xfs_warn(mp, "correcting sb_features alignment problem");
732
		sbp->sb_features2 |= sbp->sb_bad_features2;
733
		mp->m_update_sb = true;
734 735 736 737 738

		/*
		 * Re-check for ATTR2 in case it was found in bad_features2
		 * slot.
		 */
739 740
		if (xfs_sb_version_hasattr2(&mp->m_sb) &&
		   !(mp->m_flags & XFS_MOUNT_NOATTR2))
741
			mp->m_flags |= XFS_MOUNT_ATTR2;
742 743 744 745 746
	}

	if (xfs_sb_version_hasattr2(&mp->m_sb) &&
	   (mp->m_flags & XFS_MOUNT_NOATTR2)) {
		xfs_sb_version_removeattr2(&mp->m_sb);
747
		mp->m_update_sb = true;
748

749 750
		/* update sb_versionnum for the clearing of the morebits */
		if (!sbp->sb_features2)
751
			mp->m_update_sb = true;
752 753
	}

754 755 756
	/* always use v2 inodes by default now */
	if (!(mp->m_sb.sb_versionnum & XFS_SB_VERSION_NLINKBIT)) {
		mp->m_sb.sb_versionnum |= XFS_SB_VERSION_NLINKBIT;
757
		mp->m_update_sb = true;
758 759
	}

E
Eric Sandeen 已提交
760
	/*
761 762 763 764
	 * If we were given new sunit/swidth options, do some basic validation
	 * checks and convert the incore dalign and swidth values to the
	 * same units (FSB) that everything else uses.  This /must/ happen
	 * before computing the inode geometry.
E
Eric Sandeen 已提交
765
	 */
766
	error = xfs_validate_new_dalign(mp);
E
Eric Sandeen 已提交
767
	if (error)
768
		goto out;
E
Eric Sandeen 已提交
769 770 771 772

	xfs_alloc_compute_maxlevels(mp);
	xfs_bmap_compute_maxlevels(mp, XFS_DATA_FORK);
	xfs_bmap_compute_maxlevels(mp, XFS_ATTR_FORK);
773
	xfs_mount_setup_inode_geom(mp);
774
	xfs_rmapbt_compute_maxlevels(mp);
775
	xfs_refcountbt_compute_maxlevels(mp);
E
Eric Sandeen 已提交
776

777 778 779 780 781 782 783 784 785 786 787
	/*
	 * Check if sb_agblocks is aligned at stripe boundary.  If sb_agblocks
	 * is NOT aligned turn off m_dalign since allocator alignment is within
	 * an ag, therefore ag has to be aligned at stripe boundary.  Note that
	 * we must compute the free space and rmap btree geometry before doing
	 * this.
	 */
	error = xfs_update_alignment(mp);
	if (error)
		goto out;

788
	/* enable fail_at_unmount as default */
789
	mp->m_fail_unmount = true;
790

791 792
	error = xfs_sysfs_init(&mp->m_kobj, &xfs_mp_ktype,
			       NULL, mp->m_super->s_id);
C
Christoph Hellwig 已提交
793 794
	if (error)
		goto out;
L
Linus Torvalds 已提交
795

796 797
	error = xfs_sysfs_init(&mp->m_stats.xs_kobj, &xfs_stats_ktype,
			       &mp->m_kobj, "stats");
B
Brian Foster 已提交
798 799 800
	if (error)
		goto out_remove_sysfs;

801
	error = xfs_error_sysfs_init(mp);
802 803 804
	if (error)
		goto out_del_stats;

805 806 807
	error = xfs_errortag_init(mp);
	if (error)
		goto out_remove_error_sysfs;
808 809 810

	error = xfs_uuid_mount(mp);
	if (error)
811
		goto out_remove_errortag;
812

E
Eric Sandeen 已提交
813
	/*
814 815
	 * Update the preferred write size based on the information from the
	 * on-disk superblock.
E
Eric Sandeen 已提交
816
	 */
817 818 819
	mp->m_allocsize_log =
		max_t(uint32_t, sbp->sb_blocklog, mp->m_allocsize_log);
	mp->m_allocsize_blocks = 1U << (mp->m_allocsize_log - sbp->sb_blocklog);
E
Eric Sandeen 已提交
820

821 822 823
	/* set the low space thresholds for dynamic preallocation */
	xfs_set_low_space_thresholds(mp);

824 825 826 827 828 829 830
	/*
	 * If enabled, sparse inode chunk alignment is expected to match the
	 * cluster size. Full inode chunk alignment must match the chunk size,
	 * but that is checked on sb read verification...
	 */
	if (xfs_sb_version_hassparseinodes(&mp->m_sb) &&
	    mp->m_sb.sb_spino_align !=
831
			XFS_B_TO_FSBT(mp, igeo->inode_cluster_size_raw)) {
832 833 834
		xfs_warn(mp,
	"Sparse inode block alignment (%u) must match cluster size (%llu).",
			 mp->m_sb.sb_spino_align,
835
			 XFS_B_TO_FSBT(mp, igeo->inode_cluster_size_raw));
836 837 838 839
		error = -EINVAL;
		goto out_remove_uuid;
	}

E
Eric Sandeen 已提交
840
	/*
841
	 * Check that the data (and log if separate) is an ok size.
E
Eric Sandeen 已提交
842
	 */
C
Christoph Hellwig 已提交
843
	error = xfs_check_sizes(mp);
E
Eric Sandeen 已提交
844
	if (error)
845
		goto out_remove_uuid;
E
Eric Sandeen 已提交
846

L
Linus Torvalds 已提交
847 848 849
	/*
	 * Initialize realtime fields in the mount structure
	 */
E
Eric Sandeen 已提交
850 851
	error = xfs_rtmount_init(mp);
	if (error) {
852
		xfs_warn(mp, "RT mount failed");
853
		goto out_remove_uuid;
L
Linus Torvalds 已提交
854 855 856 857 858 859
	}

	/*
	 *  Copies the low order bits of the timestamp and the randomly
	 *  set "sequence" number out of a UUID.
	 */
860 861 862 863
	mp->m_fixedfsid[0] =
		(get_unaligned_be16(&sbp->sb_uuid.b[8]) << 16) |
		 get_unaligned_be16(&sbp->sb_uuid.b[4]);
	mp->m_fixedfsid[1] = get_unaligned_be32(&sbp->sb_uuid.b[0]);
L
Linus Torvalds 已提交
864

865 866 867 868 869
	error = xfs_da_mount(mp);
	if (error) {
		xfs_warn(mp, "Failed dir/attr init: %d", error);
		goto out_remove_uuid;
	}
L
Linus Torvalds 已提交
870 871 872 873 874 875 876 877 878

	/*
	 * Initialize the precomputed transaction reservations values.
	 */
	xfs_trans_init(mp);

	/*
	 * Allocate and initialize the per-ag data.
	 */
879 880
	error = xfs_initialize_perag(mp, sbp->sb_agcount, &mp->m_maxagi);
	if (error) {
881
		xfs_warn(mp, "Failed per-ag init: %d", error);
882
		goto out_free_dir;
883
	}
L
Linus Torvalds 已提交
884

885
	if (XFS_IS_CORRUPT(mp, !sbp->sb_logblocks)) {
886
		xfs_warn(mp, "no log defined");
D
Dave Chinner 已提交
887
		error = -EFSCORRUPTED;
888 889 890
		goto out_free_perag;
	}

L
Linus Torvalds 已提交
891
	/*
892 893 894
	 * Log's mount-time initialization. The first part of recovery can place
	 * some items on the AIL, to be handled when recovery is finished or
	 * cancelled.
L
Linus Torvalds 已提交
895
	 */
896 897 898 899
	error = xfs_log_mount(mp, mp->m_logdev_targp,
			      XFS_FSB_TO_DADDR(mp, sbp->sb_logstart),
			      XFS_FSB_TO_BB(mp, sbp->sb_logblocks));
	if (error) {
900
		xfs_warn(mp, "log mount failed");
901
		goto out_fail_wait;
L
Linus Torvalds 已提交
902 903
	}

904 905 906 907
	/* Make sure the summary counts are ok. */
	error = xfs_check_summary_counts(mp);
	if (error)
		goto out_log_dealloc;
908

L
Linus Torvalds 已提交
909 910 911 912
	/*
	 * Get and sanity-check the root inode.
	 * Save the pointer to it in the mount structure.
	 */
913 914
	error = xfs_iget(mp, NULL, sbp->sb_rootino, XFS_IGET_UNTRUSTED,
			 XFS_ILOCK_EXCL, &rip);
L
Linus Torvalds 已提交
915
	if (error) {
916 917 918
		xfs_warn(mp,
			"Failed to read root inode 0x%llx, error %d",
			sbp->sb_rootino, -error);
919
		goto out_log_dealloc;
L
Linus Torvalds 已提交
920 921 922 923
	}

	ASSERT(rip != NULL);

924
	if (XFS_IS_CORRUPT(mp, !S_ISDIR(VFS_I(rip)->i_mode))) {
925
		xfs_warn(mp, "corrupted root inode %llu: not a directory",
926
			(unsigned long long)rip->i_ino);
L
Linus Torvalds 已提交
927
		xfs_iunlock(rip, XFS_ILOCK_EXCL);
D
Dave Chinner 已提交
928
		error = -EFSCORRUPTED;
929
		goto out_rele_rip;
L
Linus Torvalds 已提交
930 931 932 933 934 935 936 937
	}
	mp->m_rootip = rip;	/* save it */

	xfs_iunlock(rip, XFS_ILOCK_EXCL);

	/*
	 * Initialize realtime inode pointers in the mount structure
	 */
E
Eric Sandeen 已提交
938 939
	error = xfs_rtmount_inodes(mp);
	if (error) {
L
Linus Torvalds 已提交
940 941 942
		/*
		 * Free up the root inode.
		 */
943
		xfs_warn(mp, "failed to read RT inodes");
944
		goto out_rele_rip;
L
Linus Torvalds 已提交
945 946 947
	}

	/*
948 949 950
	 * If this is a read-only mount defer the superblock updates until
	 * the next remount into writeable mode.  Otherwise we would never
	 * perform the update e.g. for the root filesystem.
L
Linus Torvalds 已提交
951
	 */
952 953
	if (mp->m_update_sb && !(mp->m_flags & XFS_MOUNT_RDONLY)) {
		error = xfs_sync_sb(mp, false);
954
		if (error) {
955
			xfs_warn(mp, "failed to write sb changes");
956
			goto out_rtunmount;
957 958
		}
	}
L
Linus Torvalds 已提交
959 960 961 962

	/*
	 * Initialise the XFS quota management subsystem for this mount
	 */
C
Christoph Hellwig 已提交
963 964 965 966 967 968 969 970 971 972 973 974 975
	if (XFS_IS_QUOTA_RUNNING(mp)) {
		error = xfs_qm_newmount(mp, &quotamount, &quotaflags);
		if (error)
			goto out_rtunmount;
	} else {
		ASSERT(!XFS_IS_QUOTA_ON(mp));

		/*
		 * If a file system had quotas running earlier, but decided to
		 * mount without -o uquota/pquota/gquota options, revoke the
		 * quotachecked license.
		 */
		if (mp->m_sb.sb_qflags & XFS_ALL_QUOTA_ACCT) {
976
			xfs_notice(mp, "resetting quota flags");
C
Christoph Hellwig 已提交
977 978
			error = xfs_mount_reset_sbqflags(mp);
			if (error)
979
				goto out_rtunmount;
C
Christoph Hellwig 已提交
980 981
		}
	}
L
Linus Torvalds 已提交
982 983

	/*
984 985 986
	 * Finish recovering the file system.  This part needed to be delayed
	 * until after the root and real-time bitmap inodes were consistently
	 * read in.
L
Linus Torvalds 已提交
987
	 */
C
Christoph Hellwig 已提交
988
	error = xfs_log_mount_finish(mp);
L
Linus Torvalds 已提交
989
	if (error) {
990
		xfs_warn(mp, "log mount finish failed");
991
		goto out_rtunmount;
L
Linus Torvalds 已提交
992 993
	}

994 995 996 997 998 999 1000 1001 1002 1003 1004
	/*
	 * Now the log is fully replayed, we can transition to full read-only
	 * mode for read-only mounts. This will sync all the metadata and clean
	 * the log so that the recovery we just performed does not have to be
	 * replayed again on the next mount.
	 *
	 * We use the same quiesce mechanism as the rw->ro remount, as they are
	 * semantically identical operations.
	 */
	if ((mp->m_flags & (XFS_MOUNT_RDONLY|XFS_MOUNT_NORECOVERY)) ==
							XFS_MOUNT_RDONLY) {
B
Brian Foster 已提交
1005
		xfs_log_clean(mp);
1006 1007
	}

L
Linus Torvalds 已提交
1008 1009 1010
	/*
	 * Complete the quota initialisation, post-log-replay component.
	 */
C
Christoph Hellwig 已提交
1011 1012 1013 1014 1015 1016 1017
	if (quotamount) {
		ASSERT(mp->m_qflags == 0);
		mp->m_qflags = quotaflags;

		xfs_qm_mount_quotas(mp);
	}

1018 1019 1020 1021 1022 1023 1024
	/*
	 * Now we are mounted, reserve a small amount of unused space for
	 * privileged transactions. This is needed so that transaction
	 * space required for critical operations can dip into this pool
	 * when at ENOSPC. This is needed for operations like create with
	 * attr, unwritten extent conversion at ENOSPC, etc. Data allocations
	 * are not allowed to use this reserved space.
1025 1026 1027
	 *
	 * This may drive us straight to ENOSPC on mount, but that implies
	 * we were already there on the last unmount. Warn if this occurs.
1028
	 */
E
Eric Sandeen 已提交
1029 1030 1031 1032
	if (!(mp->m_flags & XFS_MOUNT_RDONLY)) {
		resblks = xfs_default_resblks(mp);
		error = xfs_reserve_blocks(mp, &resblks, NULL);
		if (error)
1033 1034
			xfs_warn(mp,
	"Unable to allocate reserve blocks. Continuing without reserve pool.");
1035 1036 1037 1038 1039 1040 1041 1042 1043

		/* Recover any CoW blocks that never got remapped. */
		error = xfs_reflink_recover_cow(mp);
		if (error) {
			xfs_err(mp,
	"Error %d recovering leftover CoW allocations.", error);
			xfs_force_shutdown(mp, SHUTDOWN_CORRUPT_INCORE);
			goto out_quota;
		}
1044 1045 1046 1047 1048

		/* Reserve AG blocks for future btree expansion. */
		error = xfs_fs_reserve_ag_blocks(mp);
		if (error && error != -ENOSPC)
			goto out_agresv;
E
Eric Sandeen 已提交
1049
	}
1050

L
Linus Torvalds 已提交
1051 1052
	return 0;

1053 1054
 out_agresv:
	xfs_fs_unreserve_ag_blocks(mp);
1055 1056
 out_quota:
	xfs_qm_unmount_quotas(mp);
1057 1058
 out_rtunmount:
	xfs_rtunmount_inodes(mp);
1059
 out_rele_rip:
1060
	xfs_irele(rip);
1061 1062
	/* Clean out dquots that might be in memory after quotacheck. */
	xfs_qm_unmount(mp);
1063
	/*
1064
	 * Flush all inode reclamation work and flush the log.
1065 1066 1067 1068 1069 1070 1071 1072 1073
	 * We have to do this /after/ rtunmount and qm_unmount because those
	 * two will have scheduled delayed reclaim for the rt/quota inodes.
	 *
	 * This is slightly different from the unmountfs call sequence
	 * because we could be tearing down a partially set up mount.  In
	 * particular, if log_mount_finish fails we bail out without calling
	 * qm_unmount_quotas and therefore rely on qm_unmount to release the
	 * quota inodes.
	 */
1074
	xfs_unmount_flush_inodes(mp);
1075
 out_log_dealloc:
1076
	xfs_log_mount_cancel(mp);
1077 1078
 out_fail_wait:
	if (mp->m_logdev_targp && mp->m_logdev_targp != mp->m_ddev_targp)
1079 1080
		xfs_buftarg_drain(mp->m_logdev_targp);
	xfs_buftarg_drain(mp->m_ddev_targp);
1081
 out_free_perag:
1082
	xfs_free_perag(mp);
1083 1084
 out_free_dir:
	xfs_da_unmount(mp);
1085
 out_remove_uuid:
C
Christoph Hellwig 已提交
1086
	xfs_uuid_unmount(mp);
1087 1088
 out_remove_errortag:
	xfs_errortag_del(mp);
1089 1090
 out_remove_error_sysfs:
	xfs_error_sysfs_del(mp);
1091 1092
 out_del_stats:
	xfs_sysfs_del(&mp->m_stats.xs_kobj);
B
Brian Foster 已提交
1093 1094
 out_remove_sysfs:
	xfs_sysfs_del(&mp->m_kobj);
1095
 out:
L
Linus Torvalds 已提交
1096 1097 1098 1099 1100 1101 1102
	return error;
}

/*
 * This flushes out the inodes,dquots and the superblock, unmounts the
 * log and makes sure that incore structures are freed.
 */
1103 1104 1105
void
xfs_unmountfs(
	struct xfs_mount	*mp)
L
Linus Torvalds 已提交
1106
{
1107
	uint64_t		resblks;
1108
	int			error;
L
Linus Torvalds 已提交
1109

1110
	xfs_blockgc_stop(mp);
1111
	xfs_fs_unreserve_ag_blocks(mp);
C
Christoph Hellwig 已提交
1112
	xfs_qm_unmount_quotas(mp);
1113
	xfs_rtunmount_inodes(mp);
1114
	xfs_irele(mp->m_rootip);
1115

1116
	xfs_unmount_flush_inodes(mp);
L
Linus Torvalds 已提交
1117

C
Christoph Hellwig 已提交
1118
	xfs_qm_unmount(mp);
1119

1120 1121 1122 1123
	/*
	 * Unreserve any blocks we have so that when we unmount we don't account
	 * the reserved free space as used. This is really only necessary for
	 * lazy superblock counting because it trusts the incore superblock
M
Malcolm Parsons 已提交
1124
	 * counters to be absolutely correct on clean unmount.
1125 1126 1127 1128 1129 1130 1131 1132 1133 1134
	 *
	 * We don't bother correcting this elsewhere for lazy superblock
	 * counting because on mount of an unclean filesystem we reconstruct the
	 * correct counter value and this is irrelevant.
	 *
	 * For non-lazy counter filesystems, this doesn't matter at all because
	 * we only every apply deltas to the superblock and hence the incore
	 * value does not matter....
	 */
	resblks = 0;
1135 1136
	error = xfs_reserve_blocks(mp, &resblks, NULL);
	if (error)
1137
		xfs_warn(mp, "Unable to free reserved block pool. "
1138 1139
				"Freespace may not be correct on next mount.");

1140
	xfs_log_unmount(mp);
1141
	xfs_da_unmount(mp);
C
Christoph Hellwig 已提交
1142
	xfs_uuid_unmount(mp);
L
Linus Torvalds 已提交
1143

C
Christoph Hellwig 已提交
1144
#if defined(DEBUG)
1145
	xfs_errortag_clearall(mp);
L
Linus Torvalds 已提交
1146
#endif
1147
	xfs_free_perag(mp);
B
Brian Foster 已提交
1148

1149
	xfs_errortag_del(mp);
1150
	xfs_error_sysfs_del(mp);
1151
	xfs_sysfs_del(&mp->m_stats.xs_kobj);
B
Brian Foster 已提交
1152
	xfs_sysfs_del(&mp->m_kobj);
L
Linus Torvalds 已提交
1153 1154
}

1155 1156 1157 1158 1159 1160 1161 1162 1163 1164
/*
 * Determine whether modifications can proceed. The caller specifies the minimum
 * freeze level for which modifications should not be allowed. This allows
 * certain operations to proceed while the freeze sequence is in progress, if
 * necessary.
 */
bool
xfs_fs_writable(
	struct xfs_mount	*mp,
	int			level)
D
David Chinner 已提交
1165
{
1166 1167 1168 1169 1170 1171
	ASSERT(level > SB_UNFROZEN);
	if ((mp->m_super->s_writers.frozen >= level) ||
	    XFS_FORCED_SHUTDOWN(mp) || (mp->m_flags & XFS_MOUNT_RDONLY))
		return false;

	return true;
D
David Chinner 已提交
1172 1173
}

1174 1175 1176 1177 1178 1179 1180 1181
/*
 * Deltas for the block count can vary from 1 to very large, but lock contention
 * only occurs on frequent small block count updates such as in the delayed
 * allocation path for buffered writes (page a time updates). Hence we set
 * a large batch count (1024) to minimise global counter updates except when
 * we get near to ENOSPC and we have to be very accurate with our updates.
 */
#define XFS_FDBLOCKS_BATCH	1024
1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 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 1222 1223
int
xfs_mod_fdblocks(
	struct xfs_mount	*mp,
	int64_t			delta,
	bool			rsvd)
{
	int64_t			lcounter;
	long long		res_used;
	s32			batch;

	if (delta > 0) {
		/*
		 * If the reserve pool is depleted, put blocks back into it
		 * first. Most of the time the pool is full.
		 */
		if (likely(mp->m_resblks == mp->m_resblks_avail)) {
			percpu_counter_add(&mp->m_fdblocks, delta);
			return 0;
		}

		spin_lock(&mp->m_sb_lock);
		res_used = (long long)(mp->m_resblks - mp->m_resblks_avail);

		if (res_used > delta) {
			mp->m_resblks_avail += delta;
		} else {
			delta -= res_used;
			mp->m_resblks_avail = mp->m_resblks;
			percpu_counter_add(&mp->m_fdblocks, delta);
		}
		spin_unlock(&mp->m_sb_lock);
		return 0;
	}

	/*
	 * Taking blocks away, need to be more accurate the closer we
	 * are to zero.
	 *
	 * If the counter has a value of less than 2 * max batch size,
	 * then make everything serialise as we are real close to
	 * ENOSPC.
	 */
1224 1225
	if (__percpu_counter_compare(&mp->m_fdblocks, 2 * XFS_FDBLOCKS_BATCH,
				     XFS_FDBLOCKS_BATCH) < 0)
1226 1227
		batch = 1;
	else
1228
		batch = XFS_FDBLOCKS_BATCH;
1229

1230
	percpu_counter_add_batch(&mp->m_fdblocks, delta, batch);
1231
	if (__percpu_counter_compare(&mp->m_fdblocks, mp->m_alloc_set_aside,
1232
				     XFS_FDBLOCKS_BATCH) >= 0) {
1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251
		/* we had space! */
		return 0;
	}

	/*
	 * lock up the sb for dipping into reserves before releasing the space
	 * that took us to ENOSPC.
	 */
	spin_lock(&mp->m_sb_lock);
	percpu_counter_add(&mp->m_fdblocks, -delta);
	if (!rsvd)
		goto fdblocks_enospc;

	lcounter = (long long)mp->m_resblks_avail + delta;
	if (lcounter >= 0) {
		mp->m_resblks_avail = lcounter;
		spin_unlock(&mp->m_sb_lock);
		return 0;
	}
1252 1253 1254
	xfs_warn_once(mp,
"Reserve blocks depleted! Consider increasing reserve pool size.");

1255 1256 1257 1258 1259
fdblocks_enospc:
	spin_unlock(&mp->m_sb_lock);
	return -ENOSPC;
}

D
Dave Chinner 已提交
1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277
int
xfs_mod_frextents(
	struct xfs_mount	*mp,
	int64_t			delta)
{
	int64_t			lcounter;
	int			ret = 0;

	spin_lock(&mp->m_sb_lock);
	lcounter = mp->m_sb.sb_frextents + delta;
	if (lcounter < 0)
		ret = -ENOSPC;
	else
		mp->m_sb.sb_frextents = lcounter;
	spin_unlock(&mp->m_sb_lock);
	return ret;
}

L
Linus Torvalds 已提交
1278 1279 1280 1281 1282
/*
 * Used to free the superblock along various error paths.
 */
void
xfs_freesb(
D
Dave Chinner 已提交
1283
	struct xfs_mount	*mp)
L
Linus Torvalds 已提交
1284
{
D
Dave Chinner 已提交
1285
	struct xfs_buf		*bp = mp->m_sb_bp;
L
Linus Torvalds 已提交
1286

D
Dave Chinner 已提交
1287
	xfs_buf_lock(bp);
L
Linus Torvalds 已提交
1288
	mp->m_sb_bp = NULL;
D
Dave Chinner 已提交
1289
	xfs_buf_relse(bp);
L
Linus Torvalds 已提交
1290 1291
}

1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303
/*
 * If the underlying (data/log/rt) device is readonly, there are some
 * operations that cannot proceed.
 */
int
xfs_dev_is_read_only(
	struct xfs_mount	*mp,
	char			*message)
{
	if (xfs_readonly_buftarg(mp->m_ddev_targp) ||
	    xfs_readonly_buftarg(mp->m_logdev_targp) ||
	    (mp->m_rtdev_targp && xfs_readonly_buftarg(mp->m_rtdev_targp))) {
1304 1305
		xfs_notice(mp, "%s required on read-only device.", message);
		xfs_notice(mp, "write access unavailable, cannot proceed.");
D
Dave Chinner 已提交
1306
		return -EROFS;
1307 1308 1309
	}
	return 0;
}
1310 1311 1312 1313 1314 1315 1316 1317 1318

/* Force the summary counters to be recalculated at next mount. */
void
xfs_force_summary_recalc(
	struct xfs_mount	*mp)
{
	if (!xfs_sb_version_haslazysbcount(&mp->m_sb))
		return;

1319
	xfs_fs_mark_sick(mp, XFS_SICK_FS_COUNTERS);
1320
}
1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341

/*
 * Update the in-core delayed block counter.
 *
 * We prefer to update the counter without having to take a spinlock for every
 * counter update (i.e. batching).  Each change to delayed allocation
 * reservations can change can easily exceed the default percpu counter
 * batching, so we use a larger batch factor here.
 *
 * Note that we don't currently have any callers requiring fast summation
 * (e.g. percpu_counter_read) so we can use a big batch value here.
 */
#define XFS_DELALLOC_BATCH	(4096)
void
xfs_mod_delalloc(
	struct xfs_mount	*mp,
	int64_t			delta)
{
	percpu_counter_add_batch(&mp->m_delalloc_blks, delta,
			XFS_DELALLOC_BATCH);
}