xfs_aops.c 49.0 KB
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/*
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 * Copyright (c) 2000-2005 Silicon Graphics, Inc.
 * 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_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_mount.h"
#include "xfs_inode.h"
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#include "xfs_trans.h"
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#include "xfs_inode_item.h"
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#include "xfs_alloc.h"
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#include "xfs_error.h"
#include "xfs_iomap.h"
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#include "xfs_trace.h"
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#include "xfs_bmap.h"
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#include "xfs_bmap_util.h"
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#include "xfs_bmap_btree.h"
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#include <linux/aio.h>
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#include <linux/gfp.h>
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#include <linux/mpage.h>
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#include <linux/pagevec.h>
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#include <linux/writeback.h>

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void
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xfs_count_page_state(
	struct page		*page,
	int			*delalloc,
	int			*unwritten)
{
	struct buffer_head	*bh, *head;

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	*delalloc = *unwritten = 0;
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	bh = head = page_buffers(page);
	do {
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		if (buffer_unwritten(bh))
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			(*unwritten) = 1;
		else if (buffer_delay(bh))
			(*delalloc) = 1;
	} while ((bh = bh->b_this_page) != head);
}

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STATIC struct block_device *
xfs_find_bdev_for_inode(
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	struct inode		*inode)
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{
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	struct xfs_inode	*ip = XFS_I(inode);
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	struct xfs_mount	*mp = ip->i_mount;

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	if (XFS_IS_REALTIME_INODE(ip))
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		return mp->m_rtdev_targp->bt_bdev;
	else
		return mp->m_ddev_targp->bt_bdev;
}

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/*
 * We're now finished for good with this ioend structure.
 * Update the page state via the associated buffer_heads,
 * release holds on the inode and bio, and finally free
 * up memory.  Do not use the ioend after this.
 */
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STATIC void
xfs_destroy_ioend(
	xfs_ioend_t		*ioend)
{
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	struct buffer_head	*bh, *next;

	for (bh = ioend->io_buffer_head; bh; bh = next) {
		next = bh->b_private;
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		bh->b_end_io(bh, !ioend->io_error);
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	}
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	mempool_free(ioend, xfs_ioend_pool);
}

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/*
 * Fast and loose check if this write could update the on-disk inode size.
 */
static inline bool xfs_ioend_is_append(struct xfs_ioend *ioend)
{
	return ioend->io_offset + ioend->io_size >
		XFS_I(ioend->io_inode)->i_d.di_size;
}

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STATIC int
xfs_setfilesize_trans_alloc(
	struct xfs_ioend	*ioend)
{
	struct xfs_mount	*mp = XFS_I(ioend->io_inode)->i_mount;
	struct xfs_trans	*tp;
	int			error;

	tp = xfs_trans_alloc(mp, XFS_TRANS_FSYNC_TS);

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	error = xfs_trans_reserve(tp, &M_RES(mp)->tr_fsyncts, 0, 0);
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	if (error) {
		xfs_trans_cancel(tp, 0);
		return error;
	}

	ioend->io_append_trans = tp;

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	/*
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	 * We may pass freeze protection with a transaction.  So tell lockdep
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	 * we released it.
	 */
	rwsem_release(&ioend->io_inode->i_sb->s_writers.lock_map[SB_FREEZE_FS-1],
		      1, _THIS_IP_);
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	/*
	 * We hand off the transaction to the completion thread now, so
	 * clear the flag here.
	 */
	current_restore_flags_nested(&tp->t_pflags, PF_FSTRANS);
	return 0;
}

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/*
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 * Update on-disk file size now that data has been written to disk.
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 */
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STATIC int
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xfs_setfilesize(
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	struct xfs_ioend	*ioend)
139
{
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	struct xfs_inode	*ip = XFS_I(ioend->io_inode);
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	struct xfs_trans	*tp = ioend->io_append_trans;
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	xfs_fsize_t		isize;

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	/*
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	 * The transaction may have been allocated in the I/O submission thread,
	 * thus we need to mark ourselves as beeing in a transaction manually.
	 * Similarly for freeze protection.
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	 */
	current_set_flags_nested(&tp->t_pflags, PF_FSTRANS);
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	rwsem_acquire_read(&VFS_I(ip)->i_sb->s_writers.lock_map[SB_FREEZE_FS-1],
			   0, 1, _THIS_IP_);
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	xfs_ilock(ip, XFS_ILOCK_EXCL);
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	isize = xfs_new_eof(ip, ioend->io_offset + ioend->io_size);
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	if (!isize) {
		xfs_iunlock(ip, XFS_ILOCK_EXCL);
		xfs_trans_cancel(tp, 0);
		return 0;
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	}

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	trace_xfs_setfilesize(ip, ioend->io_offset, ioend->io_size);

	ip->i_d.di_size = isize;
	xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
	xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);

	return xfs_trans_commit(tp, 0);
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}

/*
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 * Schedule IO completion handling on the final put of an ioend.
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 *
 * If there is no work to do we might as well call it a day and free the
 * ioend right now.
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 */
STATIC void
xfs_finish_ioend(
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	struct xfs_ioend	*ioend)
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{
	if (atomic_dec_and_test(&ioend->io_remaining)) {
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		struct xfs_mount	*mp = XFS_I(ioend->io_inode)->i_mount;

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		if (ioend->io_type == XFS_IO_UNWRITTEN)
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			queue_work(mp->m_unwritten_workqueue, &ioend->io_work);
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		else if (ioend->io_append_trans ||
			 (ioend->io_isdirect && xfs_ioend_is_append(ioend)))
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			queue_work(mp->m_data_workqueue, &ioend->io_work);
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		else
			xfs_destroy_ioend(ioend);
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	}
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}

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/*
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 * IO write completion.
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 */
STATIC void
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xfs_end_io(
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	struct work_struct *work)
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{
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	xfs_ioend_t	*ioend = container_of(work, xfs_ioend_t, io_work);
	struct xfs_inode *ip = XFS_I(ioend->io_inode);
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	int		error = 0;
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	if (XFS_FORCED_SHUTDOWN(ip->i_mount)) {
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		ioend->io_error = -EIO;
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		goto done;
	}
	if (ioend->io_error)
		goto done;

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	/*
	 * For unwritten extents we need to issue transactions to convert a
	 * range to normal written extens after the data I/O has finished.
	 */
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	if (ioend->io_type == XFS_IO_UNWRITTEN) {
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		error = xfs_iomap_write_unwritten(ip, ioend->io_offset,
						  ioend->io_size);
	} else if (ioend->io_isdirect && xfs_ioend_is_append(ioend)) {
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		/*
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		 * For direct I/O we do not know if we need to allocate blocks
		 * or not so we can't preallocate an append transaction as that
		 * results in nested reservations and log space deadlocks. Hence
		 * allocate the transaction here. While this is sub-optimal and
		 * can block IO completion for some time, we're stuck with doing
		 * it this way until we can pass the ioend to the direct IO
		 * allocation callbacks and avoid nesting that way.
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		 */
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		error = xfs_setfilesize_trans_alloc(ioend);
		if (error)
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			goto done;
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		error = xfs_setfilesize(ioend);
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	} else if (ioend->io_append_trans) {
		error = xfs_setfilesize(ioend);
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	} else {
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		ASSERT(!xfs_ioend_is_append(ioend));
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	}
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done:
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	if (error)
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		ioend->io_error = error;
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	xfs_destroy_ioend(ioend);
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}

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/*
 * Call IO completion handling in caller context on the final put of an ioend.
 */
STATIC void
xfs_finish_ioend_sync(
	struct xfs_ioend	*ioend)
{
	if (atomic_dec_and_test(&ioend->io_remaining))
		xfs_end_io(&ioend->io_work);
}

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/*
 * Allocate and initialise an IO completion structure.
 * We need to track unwritten extent write completion here initially.
 * We'll need to extend this for updating the ondisk inode size later
 * (vs. incore size).
 */
STATIC xfs_ioend_t *
xfs_alloc_ioend(
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	struct inode		*inode,
	unsigned int		type)
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{
	xfs_ioend_t		*ioend;

	ioend = mempool_alloc(xfs_ioend_pool, GFP_NOFS);

	/*
	 * Set the count to 1 initially, which will prevent an I/O
	 * completion callback from happening before we have started
	 * all the I/O from calling the completion routine too early.
	 */
	atomic_set(&ioend->io_remaining, 1);
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	ioend->io_isdirect = 0;
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	ioend->io_error = 0;
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	ioend->io_list = NULL;
	ioend->io_type = type;
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	ioend->io_inode = inode;
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	ioend->io_buffer_head = NULL;
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	ioend->io_buffer_tail = NULL;
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	ioend->io_offset = 0;
	ioend->io_size = 0;
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	ioend->io_append_trans = NULL;
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	INIT_WORK(&ioend->io_work, xfs_end_io);
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	return ioend;
}

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STATIC int
xfs_map_blocks(
	struct inode		*inode,
	loff_t			offset,
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	struct xfs_bmbt_irec	*imap,
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	int			type,
	int			nonblocking)
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{
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	struct xfs_inode	*ip = XFS_I(inode);
	struct xfs_mount	*mp = ip->i_mount;
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	ssize_t			count = 1 << inode->i_blkbits;
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	xfs_fileoff_t		offset_fsb, end_fsb;
	int			error = 0;
	int			bmapi_flags = XFS_BMAPI_ENTIRE;
	int			nimaps = 1;

	if (XFS_FORCED_SHUTDOWN(mp))
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		return -EIO;
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	if (type == XFS_IO_UNWRITTEN)
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		bmapi_flags |= XFS_BMAPI_IGSTATE;
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	if (!xfs_ilock_nowait(ip, XFS_ILOCK_SHARED)) {
		if (nonblocking)
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			return -EAGAIN;
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		xfs_ilock(ip, XFS_ILOCK_SHARED);
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	}

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	ASSERT(ip->i_d.di_format != XFS_DINODE_FMT_BTREE ||
	       (ip->i_df.if_flags & XFS_IFEXTENTS));
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	ASSERT(offset <= mp->m_super->s_maxbytes);
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	if (offset + count > mp->m_super->s_maxbytes)
		count = mp->m_super->s_maxbytes - offset;
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	end_fsb = XFS_B_TO_FSB(mp, (xfs_ufsize_t)offset + count);
	offset_fsb = XFS_B_TO_FSBT(mp, offset);
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	error = xfs_bmapi_read(ip, offset_fsb, end_fsb - offset_fsb,
				imap, &nimaps, bmapi_flags);
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	xfs_iunlock(ip, XFS_ILOCK_SHARED);
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	if (error)
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		return error;
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	if (type == XFS_IO_DELALLOC &&
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	    (!nimaps || isnullstartblock(imap->br_startblock))) {
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		error = xfs_iomap_write_allocate(ip, offset, imap);
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		if (!error)
			trace_xfs_map_blocks_alloc(ip, offset, count, type, imap);
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		return error;
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	}

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#ifdef DEBUG
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	if (type == XFS_IO_UNWRITTEN) {
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		ASSERT(nimaps);
		ASSERT(imap->br_startblock != HOLESTARTBLOCK);
		ASSERT(imap->br_startblock != DELAYSTARTBLOCK);
	}
#endif
	if (nimaps)
		trace_xfs_map_blocks_found(ip, offset, count, type, imap);
	return 0;
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}

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STATIC int
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xfs_imap_valid(
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	struct inode		*inode,
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	struct xfs_bmbt_irec	*imap,
358
	xfs_off_t		offset)
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{
360
	offset >>= inode->i_blkbits;
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	return offset >= imap->br_startoff &&
		offset < imap->br_startoff + imap->br_blockcount;
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}

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/*
 * BIO completion handler for buffered IO.
 */
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STATIC void
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xfs_end_bio(
	struct bio		*bio,
	int			error)
{
	xfs_ioend_t		*ioend = bio->bi_private;

	ASSERT(atomic_read(&bio->bi_cnt) >= 1);
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	ioend->io_error = test_bit(BIO_UPTODATE, &bio->bi_flags) ? 0 : error;
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	/* Toss bio and pass work off to an xfsdatad thread */
	bio->bi_private = NULL;
	bio->bi_end_io = NULL;
	bio_put(bio);
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384
	xfs_finish_ioend(ioend);
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}

STATIC void
xfs_submit_ioend_bio(
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	struct writeback_control *wbc,
	xfs_ioend_t		*ioend,
	struct bio		*bio)
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{
	atomic_inc(&ioend->io_remaining);
	bio->bi_private = ioend;
	bio->bi_end_io = xfs_end_bio;
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	submit_bio(wbc->sync_mode == WB_SYNC_ALL ? WRITE_SYNC : WRITE, bio);
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}

STATIC struct bio *
xfs_alloc_ioend_bio(
	struct buffer_head	*bh)
{
	int			nvecs = bio_get_nr_vecs(bh->b_bdev);
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	struct bio		*bio = bio_alloc(GFP_NOIO, nvecs);
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	ASSERT(bio->bi_private == NULL);
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	bio->bi_iter.bi_sector = bh->b_blocknr * (bh->b_size >> 9);
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	bio->bi_bdev = bh->b_bdev;
	return bio;
}

STATIC void
xfs_start_buffer_writeback(
	struct buffer_head	*bh)
{
	ASSERT(buffer_mapped(bh));
	ASSERT(buffer_locked(bh));
	ASSERT(!buffer_delay(bh));
	ASSERT(!buffer_unwritten(bh));

	mark_buffer_async_write(bh);
	set_buffer_uptodate(bh);
	clear_buffer_dirty(bh);
}

STATIC void
xfs_start_page_writeback(
	struct page		*page,
	int			clear_dirty,
	int			buffers)
{
	ASSERT(PageLocked(page));
	ASSERT(!PageWriteback(page));
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	/*
	 * if the page was not fully cleaned, we need to ensure that the higher
	 * layers come back to it correctly. That means we need to keep the page
	 * dirty, and for WB_SYNC_ALL writeback we need to ensure the
	 * PAGECACHE_TAG_TOWRITE index mark is not removed so another attempt to
	 * write this page in this writeback sweep will be made.
	 */
	if (clear_dirty) {
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		clear_page_dirty_for_io(page);
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		set_page_writeback(page);
	} else
		set_page_writeback_keepwrite(page);

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	unlock_page(page);
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	/* If no buffers on the page are to be written, finish it here */
	if (!buffers)
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		end_page_writeback(page);
}

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static inline int xfs_bio_add_buffer(struct bio *bio, struct buffer_head *bh)
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{
	return bio_add_page(bio, bh->b_page, bh->b_size, bh_offset(bh));
}

/*
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 * Submit all of the bios for all of the ioends we have saved up, covering the
 * initial writepage page and also any probed pages.
 *
 * Because we may have multiple ioends spanning a page, we need to start
 * writeback on all the buffers before we submit them for I/O. If we mark the
 * buffers as we got, then we can end up with a page that only has buffers
 * marked async write and I/O complete on can occur before we mark the other
 * buffers async write.
 *
 * The end result of this is that we trip a bug in end_page_writeback() because
 * we call it twice for the one page as the code in end_buffer_async_write()
 * assumes that all buffers on the page are started at the same time.
 *
 * The fix is two passes across the ioend list - one to start writeback on the
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 * buffer_heads, and then submit them for I/O on the second pass.
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 *
 * If @fail is non-zero, it means that we have a situation where some part of
 * the submission process has failed after we have marked paged for writeback
 * and unlocked them. In this situation, we need to fail the ioend chain rather
 * than submit it to IO. This typically only happens on a filesystem shutdown.
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 */
STATIC void
xfs_submit_ioend(
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	struct writeback_control *wbc,
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	xfs_ioend_t		*ioend,
	int			fail)
487
{
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	xfs_ioend_t		*head = ioend;
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	xfs_ioend_t		*next;
	struct buffer_head	*bh;
	struct bio		*bio;
	sector_t		lastblock = 0;

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	/* Pass 1 - start writeback */
	do {
		next = ioend->io_list;
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		for (bh = ioend->io_buffer_head; bh; bh = bh->b_private)
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			xfs_start_buffer_writeback(bh);
	} while ((ioend = next) != NULL);

	/* Pass 2 - submit I/O */
	ioend = head;
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	do {
		next = ioend->io_list;
		bio = NULL;

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		/*
		 * If we are failing the IO now, just mark the ioend with an
		 * error and finish it. This will run IO completion immediately
		 * as there is only one reference to the ioend at this point in
		 * time.
		 */
		if (fail) {
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			ioend->io_error = fail;
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			xfs_finish_ioend(ioend);
			continue;
		}

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		for (bh = ioend->io_buffer_head; bh; bh = bh->b_private) {

			if (!bio) {
 retry:
				bio = xfs_alloc_ioend_bio(bh);
			} else if (bh->b_blocknr != lastblock + 1) {
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				xfs_submit_ioend_bio(wbc, ioend, bio);
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				goto retry;
			}

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			if (xfs_bio_add_buffer(bio, bh) != bh->b_size) {
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				xfs_submit_ioend_bio(wbc, ioend, bio);
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				goto retry;
			}

			lastblock = bh->b_blocknr;
		}
		if (bio)
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			xfs_submit_ioend_bio(wbc, ioend, bio);
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		xfs_finish_ioend(ioend);
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	} while ((ioend = next) != NULL);
}

/*
 * Cancel submission of all buffer_heads so far in this endio.
 * Toss the endio too.  Only ever called for the initial page
 * in a writepage request, so only ever one page.
 */
STATIC void
xfs_cancel_ioend(
	xfs_ioend_t		*ioend)
{
	xfs_ioend_t		*next;
	struct buffer_head	*bh, *next_bh;

	do {
		next = ioend->io_list;
		bh = ioend->io_buffer_head;
		do {
			next_bh = bh->b_private;
			clear_buffer_async_write(bh);
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			/*
			 * The unwritten flag is cleared when added to the
			 * ioend. We're not submitting for I/O so mark the
			 * buffer unwritten again for next time around.
			 */
			if (ioend->io_type == XFS_IO_UNWRITTEN)
				set_buffer_unwritten(bh);
567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583
			unlock_buffer(bh);
		} while ((bh = next_bh) != NULL);

		mempool_free(ioend, xfs_ioend_pool);
	} while ((ioend = next) != NULL);
}

/*
 * Test to see if we've been building up a completion structure for
 * earlier buffers -- if so, we try to append to this ioend if we
 * can, otherwise we finish off any current ioend and start another.
 * Return true if we've finished the given ioend.
 */
STATIC void
xfs_add_to_ioend(
	struct inode		*inode,
	struct buffer_head	*bh,
584
	xfs_off_t		offset,
585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609
	unsigned int		type,
	xfs_ioend_t		**result,
	int			need_ioend)
{
	xfs_ioend_t		*ioend = *result;

	if (!ioend || need_ioend || type != ioend->io_type) {
		xfs_ioend_t	*previous = *result;

		ioend = xfs_alloc_ioend(inode, type);
		ioend->io_offset = offset;
		ioend->io_buffer_head = bh;
		ioend->io_buffer_tail = bh;
		if (previous)
			previous->io_list = ioend;
		*result = ioend;
	} else {
		ioend->io_buffer_tail->b_private = bh;
		ioend->io_buffer_tail = bh;
	}

	bh->b_private = NULL;
	ioend->io_size += bh->b_size;
}

610 611
STATIC void
xfs_map_buffer(
C
Christoph Hellwig 已提交
612
	struct inode		*inode,
613
	struct buffer_head	*bh,
C
Christoph Hellwig 已提交
614
	struct xfs_bmbt_irec	*imap,
C
Christoph Hellwig 已提交
615
	xfs_off_t		offset)
616 617
{
	sector_t		bn;
618
	struct xfs_mount	*m = XFS_I(inode)->i_mount;
C
Christoph Hellwig 已提交
619 620
	xfs_off_t		iomap_offset = XFS_FSB_TO_B(m, imap->br_startoff);
	xfs_daddr_t		iomap_bn = xfs_fsb_to_db(XFS_I(inode), imap->br_startblock);
621

C
Christoph Hellwig 已提交
622 623
	ASSERT(imap->br_startblock != HOLESTARTBLOCK);
	ASSERT(imap->br_startblock != DELAYSTARTBLOCK);
624

625
	bn = (iomap_bn >> (inode->i_blkbits - BBSHIFT)) +
626
	      ((offset - iomap_offset) >> inode->i_blkbits);
627

C
Christoph Hellwig 已提交
628
	ASSERT(bn || XFS_IS_REALTIME_INODE(XFS_I(inode)));
629 630 631 632 633

	bh->b_blocknr = bn;
	set_buffer_mapped(bh);
}

L
Linus Torvalds 已提交
634 635
STATIC void
xfs_map_at_offset(
C
Christoph Hellwig 已提交
636
	struct inode		*inode,
L
Linus Torvalds 已提交
637
	struct buffer_head	*bh,
C
Christoph Hellwig 已提交
638
	struct xfs_bmbt_irec	*imap,
C
Christoph Hellwig 已提交
639
	xfs_off_t		offset)
L
Linus Torvalds 已提交
640
{
C
Christoph Hellwig 已提交
641 642
	ASSERT(imap->br_startblock != HOLESTARTBLOCK);
	ASSERT(imap->br_startblock != DELAYSTARTBLOCK);
L
Linus Torvalds 已提交
643

C
Christoph Hellwig 已提交
644
	xfs_map_buffer(inode, bh, imap, offset);
L
Linus Torvalds 已提交
645 646
	set_buffer_mapped(bh);
	clear_buffer_delay(bh);
647
	clear_buffer_unwritten(bh);
L
Linus Torvalds 已提交
648 649 650
}

/*
651 652 653 654
 * Test if a given page contains at least one buffer of a given @type.
 * If @check_all_buffers is true, then we walk all the buffers in the page to
 * try to find one of the type passed in. If it is not set, then the caller only
 * needs to check the first buffer on the page for a match.
L
Linus Torvalds 已提交
655
 */
656
STATIC bool
657
xfs_check_page_type(
658
	struct page		*page,
659 660
	unsigned int		type,
	bool			check_all_buffers)
L
Linus Torvalds 已提交
661
{
662 663
	struct buffer_head	*bh;
	struct buffer_head	*head;
L
Linus Torvalds 已提交
664

665 666 667 668 669 670
	if (PageWriteback(page))
		return false;
	if (!page->mapping)
		return false;
	if (!page_has_buffers(page))
		return false;
L
Linus Torvalds 已提交
671

672 673 674 675 676 677
	bh = head = page_buffers(page);
	do {
		if (buffer_unwritten(bh)) {
			if (type == XFS_IO_UNWRITTEN)
				return true;
		} else if (buffer_delay(bh)) {
678
			if (type == XFS_IO_DELALLOC)
679 680
				return true;
		} else if (buffer_dirty(bh) && buffer_mapped(bh)) {
681
			if (type == XFS_IO_OVERWRITE)
682 683
				return true;
		}
L
Linus Torvalds 已提交
684

685 686 687 688
		/* If we are only checking the first buffer, we are done now. */
		if (!check_all_buffers)
			break;
	} while ((bh = bh->b_this_page) != head);
L
Linus Torvalds 已提交
689

690
	return false;
L
Linus Torvalds 已提交
691 692 693 694 695 696 697 698
}

/*
 * Allocate & map buffers for page given the extent map. Write it out.
 * except for the original page of a writepage, this is called on
 * delalloc/unwritten pages only, for the original page it is possible
 * that the page has no mapping at all.
 */
699
STATIC int
L
Linus Torvalds 已提交
700 701 702
xfs_convert_page(
	struct inode		*inode,
	struct page		*page,
703
	loff_t			tindex,
C
Christoph Hellwig 已提交
704
	struct xfs_bmbt_irec	*imap,
705
	xfs_ioend_t		**ioendp,
706
	struct writeback_control *wbc)
L
Linus Torvalds 已提交
707
{
708
	struct buffer_head	*bh, *head;
709 710
	xfs_off_t		end_offset;
	unsigned long		p_offset;
711
	unsigned int		type;
712
	int			len, page_dirty;
713
	int			count = 0, done = 0, uptodate = 1;
714
 	xfs_off_t		offset = page_offset(page);
L
Linus Torvalds 已提交
715

716 717
	if (page->index != tindex)
		goto fail;
N
Nick Piggin 已提交
718
	if (!trylock_page(page))
719 720 721 722 723
		goto fail;
	if (PageWriteback(page))
		goto fail_unlock_page;
	if (page->mapping != inode->i_mapping)
		goto fail_unlock_page;
724
	if (!xfs_check_page_type(page, (*ioendp)->io_type, false))
725 726
		goto fail_unlock_page;

727 728
	/*
	 * page_dirty is initially a count of buffers on the page before
729
	 * EOF and is decremented as we move each into a cleanable state.
730 731 732 733 734 735 736 737 738
	 *
	 * Derivation:
	 *
	 * End offset is the highest offset that this page should represent.
	 * If we are on the last page, (end_offset & (PAGE_CACHE_SIZE - 1))
	 * will evaluate non-zero and be less than PAGE_CACHE_SIZE and
	 * hence give us the correct page_dirty count. On any other page,
	 * it will be zero and in that case we need page_dirty to be the
	 * count of buffers on the page.
739
	 */
740 741 742 743
	end_offset = min_t(unsigned long long,
			(xfs_off_t)(page->index + 1) << PAGE_CACHE_SHIFT,
			i_size_read(inode));

744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762
	/*
	 * If the current map does not span the entire page we are about to try
	 * to write, then give up. The only way we can write a page that spans
	 * multiple mappings in a single writeback iteration is via the
	 * xfs_vm_writepage() function. Data integrity writeback requires the
	 * entire page to be written in a single attempt, otherwise the part of
	 * the page we don't write here doesn't get written as part of the data
	 * integrity sync.
	 *
	 * For normal writeback, we also don't attempt to write partial pages
	 * here as it simply means that write_cache_pages() will see it under
	 * writeback and ignore the page until some point in the future, at
	 * which time this will be the only page in the file that needs
	 * writeback.  Hence for more optimal IO patterns, we should always
	 * avoid partial page writeback due to multiple mappings on a page here.
	 */
	if (!xfs_imap_valid(inode, imap, end_offset))
		goto fail_unlock_page;

763
	len = 1 << inode->i_blkbits;
764 765 766 767
	p_offset = min_t(unsigned long, end_offset & (PAGE_CACHE_SIZE - 1),
					PAGE_CACHE_SIZE);
	p_offset = p_offset ? roundup(p_offset, len) : PAGE_CACHE_SIZE;
	page_dirty = p_offset / len;
768

769 770 771 772 773 774 775 776 777
	/*
	 * The moment we find a buffer that doesn't match our current type
	 * specification or can't be written, abort the loop and start
	 * writeback. As per the above xfs_imap_valid() check, only
	 * xfs_vm_writepage() can handle partial page writeback fully - we are
	 * limited here to the buffers that are contiguous with the current
	 * ioend, and hence a buffer we can't write breaks that contiguity and
	 * we have to defer the rest of the IO to xfs_vm_writepage().
	 */
L
Linus Torvalds 已提交
778 779
	bh = head = page_buffers(page);
	do {
780
		if (offset >= end_offset)
L
Linus Torvalds 已提交
781
			break;
782 783 784 785
		if (!buffer_uptodate(bh))
			uptodate = 0;
		if (!(PageUptodate(page) || buffer_uptodate(bh))) {
			done = 1;
786
			break;
787 788
		}

789 790
		if (buffer_unwritten(bh) || buffer_delay(bh) ||
		    buffer_mapped(bh)) {
791
			if (buffer_unwritten(bh))
792
				type = XFS_IO_UNWRITTEN;
793
			else if (buffer_delay(bh))
794
				type = XFS_IO_DELALLOC;
795
			else
796
				type = XFS_IO_OVERWRITE;
797

798 799 800 801 802
			/*
			 * imap should always be valid because of the above
			 * partial page end_offset check on the imap.
			 */
			ASSERT(xfs_imap_valid(inode, imap, offset));
803

804
			lock_buffer(bh);
805
			if (type != XFS_IO_OVERWRITE)
806
				xfs_map_at_offset(inode, bh, imap, offset);
807 808 809
			xfs_add_to_ioend(inode, bh, offset, type,
					 ioendp, done);

810 811 812
			page_dirty--;
			count++;
		} else {
813
			done = 1;
814
			break;
L
Linus Torvalds 已提交
815
		}
816
	} while (offset += len, (bh = bh->b_this_page) != head);
L
Linus Torvalds 已提交
817

818 819 820
	if (uptodate && bh == head)
		SetPageUptodate(page);

821
	if (count) {
822 823
		if (--wbc->nr_to_write <= 0 &&
		    wbc->sync_mode == WB_SYNC_NONE)
824
			done = 1;
L
Linus Torvalds 已提交
825
	}
826
	xfs_start_page_writeback(page, !page_dirty, count);
827 828

	return done;
829 830 831 832
 fail_unlock_page:
	unlock_page(page);
 fail:
	return 1;
L
Linus Torvalds 已提交
833 834 835 836 837 838 839 840 841 842
}

/*
 * Convert & write out a cluster of pages in the same extent as defined
 * by mp and following the start page.
 */
STATIC void
xfs_cluster_write(
	struct inode		*inode,
	pgoff_t			tindex,
C
Christoph Hellwig 已提交
843
	struct xfs_bmbt_irec	*imap,
844
	xfs_ioend_t		**ioendp,
L
Linus Torvalds 已提交
845 846 847
	struct writeback_control *wbc,
	pgoff_t			tlast)
{
848 849
	struct pagevec		pvec;
	int			done = 0, i;
L
Linus Torvalds 已提交
850

851 852 853 854 855
	pagevec_init(&pvec, 0);
	while (!done && tindex <= tlast) {
		unsigned len = min_t(pgoff_t, PAGEVEC_SIZE, tlast - tindex + 1);

		if (!pagevec_lookup(&pvec, inode->i_mapping, tindex, len))
L
Linus Torvalds 已提交
856
			break;
857 858 859

		for (i = 0; i < pagevec_count(&pvec); i++) {
			done = xfs_convert_page(inode, pvec.pages[i], tindex++,
860
					imap, ioendp, wbc);
861 862 863 864 865 866
			if (done)
				break;
		}

		pagevec_release(&pvec);
		cond_resched();
L
Linus Torvalds 已提交
867 868 869
	}
}

870 871 872
STATIC void
xfs_vm_invalidatepage(
	struct page		*page,
873 874
	unsigned int		offset,
	unsigned int		length)
875
{
876 877 878
	trace_xfs_invalidatepage(page->mapping->host, page, offset,
				 length);
	block_invalidatepage(page, offset, length);
879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905
}

/*
 * If the page has delalloc buffers on it, we need to punch them out before we
 * invalidate the page. If we don't, we leave a stale delalloc mapping on the
 * inode that can trip a BUG() in xfs_get_blocks() later on if a direct IO read
 * is done on that same region - the delalloc extent is returned when none is
 * supposed to be there.
 *
 * We prevent this by truncating away the delalloc regions on the page before
 * invalidating it. Because they are delalloc, we can do this without needing a
 * transaction. Indeed - if we get ENOSPC errors, we have to be able to do this
 * truncation without a transaction as there is no space left for block
 * reservation (typically why we see a ENOSPC in writeback).
 *
 * This is not a performance critical path, so for now just do the punching a
 * buffer head at a time.
 */
STATIC void
xfs_aops_discard_page(
	struct page		*page)
{
	struct inode		*inode = page->mapping->host;
	struct xfs_inode	*ip = XFS_I(inode);
	struct buffer_head	*bh, *head;
	loff_t			offset = page_offset(page);

906
	if (!xfs_check_page_type(page, XFS_IO_DELALLOC, true))
907 908
		goto out_invalidate;

909 910 911
	if (XFS_FORCED_SHUTDOWN(ip->i_mount))
		goto out_invalidate;

912
	xfs_alert(ip->i_mount,
913 914 915 916 917 918 919
		"page discard on page %p, inode 0x%llx, offset %llu.",
			page, ip->i_ino, offset);

	xfs_ilock(ip, XFS_ILOCK_EXCL);
	bh = head = page_buffers(page);
	do {
		int		error;
920
		xfs_fileoff_t	start_fsb;
921 922 923 924

		if (!buffer_delay(bh))
			goto next_buffer;

925 926
		start_fsb = XFS_B_TO_FSBT(ip->i_mount, offset);
		error = xfs_bmap_punch_delalloc_range(ip, start_fsb, 1);
927 928
		if (error) {
			/* something screwed, just bail */
929
			if (!XFS_FORCED_SHUTDOWN(ip->i_mount)) {
930
				xfs_alert(ip->i_mount,
931
			"page discard unable to remove delalloc mapping.");
932
			}
933 934 935
			break;
		}
next_buffer:
936
		offset += 1 << inode->i_blkbits;
937 938 939 940 941

	} while ((bh = bh->b_this_page) != head);

	xfs_iunlock(ip, XFS_ILOCK_EXCL);
out_invalidate:
942
	xfs_vm_invalidatepage(page, 0, PAGE_CACHE_SIZE);
943 944 945
	return;
}

L
Linus Torvalds 已提交
946
/*
947 948 949 950 951 952
 * Write out a dirty page.
 *
 * For delalloc space on the page we need to allocate space and flush it.
 * For unwritten space on the page we need to start the conversion to
 * regular allocated space.
 * For any other dirty buffer heads on the page we should flush them.
L
Linus Torvalds 已提交
953 954
 */
STATIC int
955 956 957
xfs_vm_writepage(
	struct page		*page,
	struct writeback_control *wbc)
L
Linus Torvalds 已提交
958
{
959
	struct inode		*inode = page->mapping->host;
960
	struct buffer_head	*bh, *head;
C
Christoph Hellwig 已提交
961
	struct xfs_bmbt_irec	imap;
962
	xfs_ioend_t		*ioend = NULL, *iohead = NULL;
L
Linus Torvalds 已提交
963
	loff_t			offset;
964
	unsigned int		type;
L
Linus Torvalds 已提交
965
	__uint64_t              end_offset;
966
	pgoff_t                 end_index, last_index;
C
Christoph Hellwig 已提交
967
	ssize_t			len;
C
Christoph Hellwig 已提交
968
	int			err, imap_valid = 0, uptodate = 1;
969
	int			count = 0;
C
Christoph Hellwig 已提交
970
	int			nonblocking = 0;
971

972
	trace_xfs_writepage(inode, page, 0, 0);
973

974 975
	ASSERT(page_has_buffers(page));

976 977 978
	/*
	 * Refuse to write the page out if we are called from reclaim context.
	 *
979 980 981
	 * This avoids stack overflows when called from deeply used stacks in
	 * random callers for direct reclaim or memcg reclaim.  We explicitly
	 * allow reclaim from kswapd as the stack usage there is relatively low.
982
	 *
983 984
	 * This should never happen except in the case of a VM regression so
	 * warn about it.
985
	 */
986 987
	if (WARN_ON_ONCE((current->flags & (PF_MEMALLOC|PF_KSWAPD)) ==
			PF_MEMALLOC))
988
		goto redirty;
L
Linus Torvalds 已提交
989

990
	/*
991 992
	 * Given that we do not allow direct reclaim to call us, we should
	 * never be called while in a filesystem transaction.
993
	 */
994
	if (WARN_ON_ONCE(current->flags & PF_FSTRANS))
995
		goto redirty;
996

L
Linus Torvalds 已提交
997 998 999 1000
	/* Is this page beyond the end of the file? */
	offset = i_size_read(inode);
	end_index = offset >> PAGE_CACHE_SHIFT;
	last_index = (offset - 1) >> PAGE_CACHE_SHIFT;
1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026

	/*
	 * The page index is less than the end_index, adjust the end_offset
	 * to the highest offset that this page should represent.
	 * -----------------------------------------------------
	 * |			file mapping	       | <EOF> |
	 * -----------------------------------------------------
	 * | Page ... | Page N-2 | Page N-1 |  Page N  |       |
	 * ^--------------------------------^----------|--------
	 * |     desired writeback range    |      see else    |
	 * ---------------------------------^------------------|
	 */
	if (page->index < end_index)
		end_offset = (xfs_off_t)(page->index + 1) << PAGE_CACHE_SHIFT;
	else {
		/*
		 * Check whether the page to write out is beyond or straddles
		 * i_size or not.
		 * -------------------------------------------------------
		 * |		file mapping		        | <EOF>  |
		 * -------------------------------------------------------
		 * | Page ... | Page N-2 | Page N-1 |  Page N   | Beyond |
		 * ^--------------------------------^-----------|---------
		 * |				    |      Straddles     |
		 * ---------------------------------^-----------|--------|
		 */
1027 1028 1029
		unsigned offset_into_page = offset & (PAGE_CACHE_SIZE - 1);

		/*
1030 1031 1032 1033
		 * Skip the page if it is fully outside i_size, e.g. due to a
		 * truncate operation that is in progress. We must redirty the
		 * page so that reclaim stops reclaiming it. Otherwise
		 * xfs_vm_releasepage() is called on it and gets confused.
1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044
		 *
		 * Note that the end_index is unsigned long, it would overflow
		 * if the given offset is greater than 16TB on 32-bit system
		 * and if we do check the page is fully outside i_size or not
		 * via "if (page->index >= end_index + 1)" as "end_index + 1"
		 * will be evaluated to 0.  Hence this page will be redirtied
		 * and be written out repeatedly which would result in an
		 * infinite loop, the user program that perform this operation
		 * will hang.  Instead, we can verify this situation by checking
		 * if the page to write is totally beyond the i_size or if it's
		 * offset is just equal to the EOF.
1045
		 */
1046 1047
		if (page->index > end_index ||
		    (page->index == end_index && offset_into_page == 0))
1048
			goto redirty;
1049 1050 1051 1052 1053

		/*
		 * The page straddles i_size.  It must be zeroed out on each
		 * and every writepage invocation because it may be mmapped.
		 * "A file is mapped in multiples of the page size.  For a file
1054
		 * that is not a multiple of the page size, the remaining
1055 1056 1057 1058
		 * memory is zeroed when mapped, and writes to that region are
		 * not written out to the file."
		 */
		zero_user_segment(page, offset_into_page, PAGE_CACHE_SIZE);
1059 1060 1061

		/* Adjust the end_offset to the end of file */
		end_offset = offset;
L
Linus Torvalds 已提交
1062 1063
	}

1064 1065 1066
	len = 1 << inode->i_blkbits;

	bh = head = page_buffers(page);
1067
	offset = page_offset(page);
1068
	type = XFS_IO_OVERWRITE;
C
Christoph Hellwig 已提交
1069

1070
	if (wbc->sync_mode == WB_SYNC_NONE)
C
Christoph Hellwig 已提交
1071
		nonblocking = 1;
1072

L
Linus Torvalds 已提交
1073
	do {
1074 1075
		int new_ioend = 0;

L
Linus Torvalds 已提交
1076 1077 1078 1079 1080
		if (offset >= end_offset)
			break;
		if (!buffer_uptodate(bh))
			uptodate = 0;

1081
		/*
1082 1083 1084 1085
		 * set_page_dirty dirties all buffers in a page, independent
		 * of their state.  The dirty state however is entirely
		 * meaningless for holes (!mapped && uptodate), so skip
		 * buffers covering holes here.
1086 1087 1088 1089 1090 1091
		 */
		if (!buffer_mapped(bh) && buffer_uptodate(bh)) {
			imap_valid = 0;
			continue;
		}

C
Christoph Hellwig 已提交
1092
		if (buffer_unwritten(bh)) {
1093 1094
			if (type != XFS_IO_UNWRITTEN) {
				type = XFS_IO_UNWRITTEN;
C
Christoph Hellwig 已提交
1095
				imap_valid = 0;
L
Linus Torvalds 已提交
1096
			}
C
Christoph Hellwig 已提交
1097
		} else if (buffer_delay(bh)) {
1098 1099
			if (type != XFS_IO_DELALLOC) {
				type = XFS_IO_DELALLOC;
C
Christoph Hellwig 已提交
1100
				imap_valid = 0;
L
Linus Torvalds 已提交
1101
			}
1102
		} else if (buffer_uptodate(bh)) {
1103 1104
			if (type != XFS_IO_OVERWRITE) {
				type = XFS_IO_OVERWRITE;
1105 1106
				imap_valid = 0;
			}
C
Christoph Hellwig 已提交
1107
		} else {
1108
			if (PageUptodate(page))
C
Christoph Hellwig 已提交
1109
				ASSERT(buffer_mapped(bh));
1110 1111 1112 1113 1114 1115 1116
			/*
			 * This buffer is not uptodate and will not be
			 * written to disk.  Ensure that we will put any
			 * subsequent writeable buffers into a new
			 * ioend.
			 */
			imap_valid = 0;
C
Christoph Hellwig 已提交
1117 1118
			continue;
		}
1119

C
Christoph Hellwig 已提交
1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138
		if (imap_valid)
			imap_valid = xfs_imap_valid(inode, &imap, offset);
		if (!imap_valid) {
			/*
			 * If we didn't have a valid mapping then we need to
			 * put the new mapping into a separate ioend structure.
			 * This ensures non-contiguous extents always have
			 * separate ioends, which is particularly important
			 * for unwritten extent conversion at I/O completion
			 * time.
			 */
			new_ioend = 1;
			err = xfs_map_blocks(inode, offset, &imap, type,
					     nonblocking);
			if (err)
				goto error;
			imap_valid = xfs_imap_valid(inode, &imap, offset);
		}
		if (imap_valid) {
1139
			lock_buffer(bh);
1140
			if (type != XFS_IO_OVERWRITE)
C
Christoph Hellwig 已提交
1141 1142 1143 1144
				xfs_map_at_offset(inode, bh, &imap, offset);
			xfs_add_to_ioend(inode, bh, offset, type, &ioend,
					 new_ioend);
			count++;
L
Linus Torvalds 已提交
1145
		}
1146 1147 1148 1149 1150

		if (!iohead)
			iohead = ioend;

	} while (offset += len, ((bh = bh->b_this_page) != head));
L
Linus Torvalds 已提交
1151 1152 1153 1154

	if (uptodate && bh == head)
		SetPageUptodate(page);

1155
	xfs_start_page_writeback(page, 1, count);
L
Linus Torvalds 已提交
1156

1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168
	/* if there is no IO to be submitted for this page, we are done */
	if (!ioend)
		return 0;

	ASSERT(iohead);

	/*
	 * Any errors from this point onwards need tobe reported through the IO
	 * completion path as we have marked the initial page as under writeback
	 * and unlocked it.
	 */
	if (imap_valid) {
1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181
		xfs_off_t		end_index;

		end_index = imap.br_startoff + imap.br_blockcount;

		/* to bytes */
		end_index <<= inode->i_blkbits;

		/* to pages */
		end_index = (end_index - 1) >> PAGE_CACHE_SHIFT;

		/* check against file size */
		if (end_index > last_index)
			end_index = last_index;
1182

C
Christoph Hellwig 已提交
1183
		xfs_cluster_write(inode, page->index + 1, &imap, &ioend,
1184
				  wbc, end_index);
L
Linus Torvalds 已提交
1185 1186
	}

1187

1188 1189 1190 1191 1192 1193 1194 1195
	/*
	 * Reserve log space if we might write beyond the on-disk inode size.
	 */
	err = 0;
	if (ioend->io_type != XFS_IO_UNWRITTEN && xfs_ioend_is_append(ioend))
		err = xfs_setfilesize_trans_alloc(ioend);

	xfs_submit_ioend(wbc, iohead, err);
1196

1197
	return 0;
L
Linus Torvalds 已提交
1198 1199

error:
1200 1201
	if (iohead)
		xfs_cancel_ioend(iohead);
L
Linus Torvalds 已提交
1202

1203 1204 1205
	if (err == -EAGAIN)
		goto redirty;

1206
	xfs_aops_discard_page(page);
1207 1208
	ClearPageUptodate(page);
	unlock_page(page);
L
Linus Torvalds 已提交
1209
	return err;
1210

1211
redirty:
1212 1213 1214 1215 1216
	redirty_page_for_writepage(wbc, page);
	unlock_page(page);
	return 0;
}

1217 1218 1219 1220 1221
STATIC int
xfs_vm_writepages(
	struct address_space	*mapping,
	struct writeback_control *wbc)
{
1222
	xfs_iflags_clear(XFS_I(mapping->host), XFS_ITRUNCATED);
1223 1224 1225
	return generic_writepages(mapping, wbc);
}

1226 1227
/*
 * Called to move a page into cleanable state - and from there
1228
 * to be released. The page should already be clean. We always
1229 1230
 * have buffer heads in this call.
 *
1231
 * Returns 1 if the page is ok to release, 0 otherwise.
1232 1233
 */
STATIC int
1234
xfs_vm_releasepage(
1235 1236 1237
	struct page		*page,
	gfp_t			gfp_mask)
{
1238
	int			delalloc, unwritten;
1239

1240
	trace_xfs_releasepage(page->mapping->host, page, 0, 0);
1241

1242
	xfs_count_page_state(page, &delalloc, &unwritten);
1243

1244
	if (WARN_ON_ONCE(delalloc))
1245
		return 0;
1246
	if (WARN_ON_ONCE(unwritten))
1247 1248 1249 1250 1251
		return 0;

	return try_to_free_buffers(page);
}

L
Linus Torvalds 已提交
1252
STATIC int
1253
__xfs_get_blocks(
L
Linus Torvalds 已提交
1254 1255 1256 1257
	struct inode		*inode,
	sector_t		iblock,
	struct buffer_head	*bh_result,
	int			create,
1258
	int			direct)
L
Linus Torvalds 已提交
1259
{
C
Christoph Hellwig 已提交
1260 1261 1262 1263 1264
	struct xfs_inode	*ip = XFS_I(inode);
	struct xfs_mount	*mp = ip->i_mount;
	xfs_fileoff_t		offset_fsb, end_fsb;
	int			error = 0;
	int			lockmode = 0;
C
Christoph Hellwig 已提交
1265
	struct xfs_bmbt_irec	imap;
C
Christoph Hellwig 已提交
1266
	int			nimaps = 1;
1267 1268
	xfs_off_t		offset;
	ssize_t			size;
C
Christoph Hellwig 已提交
1269
	int			new = 0;
C
Christoph Hellwig 已提交
1270 1271

	if (XFS_FORCED_SHUTDOWN(mp))
E
Eric Sandeen 已提交
1272
		return -EIO;
L
Linus Torvalds 已提交
1273

1274
	offset = (xfs_off_t)iblock << inode->i_blkbits;
1275 1276
	ASSERT(bh_result->b_size >= (1 << inode->i_blkbits));
	size = bh_result->b_size;
1277 1278 1279 1280

	if (!create && direct && offset >= i_size_read(inode))
		return 0;

1281 1282 1283 1284 1285 1286 1287 1288
	/*
	 * Direct I/O is usually done on preallocated files, so try getting
	 * a block mapping without an exclusive lock first.  For buffered
	 * writes we already have the exclusive iolock anyway, so avoiding
	 * a lock roundtrip here by taking the ilock exclusive from the
	 * beginning is a useful micro optimization.
	 */
	if (create && !direct) {
C
Christoph Hellwig 已提交
1289 1290 1291
		lockmode = XFS_ILOCK_EXCL;
		xfs_ilock(ip, lockmode);
	} else {
1292
		lockmode = xfs_ilock_data_map_shared(ip);
C
Christoph Hellwig 已提交
1293
	}
1294

D
Dave Chinner 已提交
1295 1296 1297
	ASSERT(offset <= mp->m_super->s_maxbytes);
	if (offset + size > mp->m_super->s_maxbytes)
		size = mp->m_super->s_maxbytes - offset;
C
Christoph Hellwig 已提交
1298 1299 1300
	end_fsb = XFS_B_TO_FSB(mp, (xfs_ufsize_t)offset + size);
	offset_fsb = XFS_B_TO_FSBT(mp, offset);

D
Dave Chinner 已提交
1301 1302
	error = xfs_bmapi_read(ip, offset_fsb, end_fsb - offset_fsb,
				&imap, &nimaps, XFS_BMAPI_ENTIRE);
L
Linus Torvalds 已提交
1303
	if (error)
C
Christoph Hellwig 已提交
1304 1305 1306 1307 1308 1309
		goto out_unlock;

	if (create &&
	    (!nimaps ||
	     (imap.br_startblock == HOLESTARTBLOCK ||
	      imap.br_startblock == DELAYSTARTBLOCK))) {
1310
		if (direct || xfs_get_extsz_hint(ip)) {
1311 1312 1313 1314 1315 1316 1317
			/*
			 * Drop the ilock in preparation for starting the block
			 * allocation transaction.  It will be retaken
			 * exclusively inside xfs_iomap_write_direct for the
			 * actual allocation.
			 */
			xfs_iunlock(ip, lockmode);
C
Christoph Hellwig 已提交
1318 1319
			error = xfs_iomap_write_direct(ip, offset, size,
						       &imap, nimaps);
1320
			if (error)
D
Dave Chinner 已提交
1321
				return error;
1322
			new = 1;
C
Christoph Hellwig 已提交
1323
		} else {
1324 1325
			/*
			 * Delalloc reservations do not require a transaction,
1326 1327 1328 1329 1330
			 * we can go on without dropping the lock here. If we
			 * are allocating a new delalloc block, make sure that
			 * we set the new flag so that we mark the buffer new so
			 * that we know that it is newly allocated if the write
			 * fails.
1331
			 */
1332 1333
			if (nimaps && imap.br_startblock == HOLESTARTBLOCK)
				new = 1;
C
Christoph Hellwig 已提交
1334
			error = xfs_iomap_write_delay(ip, offset, size, &imap);
1335 1336 1337 1338
			if (error)
				goto out_unlock;

			xfs_iunlock(ip, lockmode);
C
Christoph Hellwig 已提交
1339 1340 1341 1342 1343
		}

		trace_xfs_get_blocks_alloc(ip, offset, size, 0, &imap);
	} else if (nimaps) {
		trace_xfs_get_blocks_found(ip, offset, size, 0, &imap);
1344
		xfs_iunlock(ip, lockmode);
C
Christoph Hellwig 已提交
1345 1346 1347 1348
	} else {
		trace_xfs_get_blocks_notfound(ip, offset, size);
		goto out_unlock;
	}
L
Linus Torvalds 已提交
1349

C
Christoph Hellwig 已提交
1350 1351
	if (imap.br_startblock != HOLESTARTBLOCK &&
	    imap.br_startblock != DELAYSTARTBLOCK) {
1352 1353
		/*
		 * For unwritten extents do not report a disk address on
L
Linus Torvalds 已提交
1354 1355
		 * the read case (treat as if we're reading into a hole).
		 */
C
Christoph Hellwig 已提交
1356 1357 1358
		if (create || !ISUNWRITTEN(&imap))
			xfs_map_buffer(inode, bh_result, &imap, offset);
		if (create && ISUNWRITTEN(&imap)) {
1359
			if (direct) {
L
Linus Torvalds 已提交
1360
				bh_result->b_private = inode;
1361 1362
				set_buffer_defer_completion(bh_result);
			}
L
Linus Torvalds 已提交
1363 1364 1365 1366
			set_buffer_unwritten(bh_result);
		}
	}

1367 1368 1369 1370
	/*
	 * If this is a realtime file, data may be on a different device.
	 * to that pointed to from the buffer_head b_bdev currently.
	 */
C
Christoph Hellwig 已提交
1371
	bh_result->b_bdev = xfs_find_bdev_for_inode(inode);
L
Linus Torvalds 已提交
1372

1373
	/*
1374 1375 1376 1377 1378 1379 1380
	 * If we previously allocated a block out beyond eof and we are now
	 * coming back to use it then we will need to flag it as new even if it
	 * has a disk address.
	 *
	 * With sub-block writes into unwritten extents we also need to mark
	 * the buffer as new so that the unwritten parts of the buffer gets
	 * correctly zeroed.
L
Linus Torvalds 已提交
1381 1382 1383
	 */
	if (create &&
	    ((!buffer_mapped(bh_result) && !buffer_uptodate(bh_result)) ||
1384
	     (offset >= i_size_read(inode)) ||
C
Christoph Hellwig 已提交
1385
	     (new || ISUNWRITTEN(&imap))))
L
Linus Torvalds 已提交
1386 1387
		set_buffer_new(bh_result);

C
Christoph Hellwig 已提交
1388
	if (imap.br_startblock == DELAYSTARTBLOCK) {
L
Linus Torvalds 已提交
1389 1390 1391 1392 1393 1394 1395 1396
		BUG_ON(direct);
		if (create) {
			set_buffer_uptodate(bh_result);
			set_buffer_mapped(bh_result);
			set_buffer_delay(bh_result);
		}
	}

1397 1398 1399
	/*
	 * If this is O_DIRECT or the mpage code calling tell them how large
	 * the mapping is, so that we can avoid repeated get_blocks calls.
1400 1401 1402 1403 1404 1405 1406 1407
	 *
	 * If the mapping spans EOF, then we have to break the mapping up as the
	 * mapping for blocks beyond EOF must be marked new so that sub block
	 * regions can be correctly zeroed. We can't do this for mappings within
	 * EOF unless the mapping was just allocated or is unwritten, otherwise
	 * the callers would overwrite existing data with zeros. Hence we have
	 * to split the mapping into a range up to and including EOF, and a
	 * second mapping for beyond EOF.
1408
	 */
1409
	if (direct || size > (1 << inode->i_blkbits)) {
1410 1411 1412 1413 1414 1415 1416 1417
		xfs_off_t		mapping_size;

		mapping_size = imap.br_startoff + imap.br_blockcount - iblock;
		mapping_size <<= inode->i_blkbits;

		ASSERT(mapping_size > 0);
		if (mapping_size > size)
			mapping_size = size;
1418 1419 1420 1421 1422 1423
		if (offset < i_size_read(inode) &&
		    offset + mapping_size >= i_size_read(inode)) {
			/* limit mapping to block that spans EOF */
			mapping_size = roundup_64(i_size_read(inode) - offset,
						  1 << inode->i_blkbits);
		}
1424 1425 1426 1427
		if (mapping_size > LONG_MAX)
			mapping_size = LONG_MAX;

		bh_result->b_size = mapping_size;
L
Linus Torvalds 已提交
1428 1429 1430
	}

	return 0;
C
Christoph Hellwig 已提交
1431 1432 1433

out_unlock:
	xfs_iunlock(ip, lockmode);
D
Dave Chinner 已提交
1434
	return error;
L
Linus Torvalds 已提交
1435 1436 1437
}

int
1438
xfs_get_blocks(
L
Linus Torvalds 已提交
1439 1440 1441 1442 1443
	struct inode		*inode,
	sector_t		iblock,
	struct buffer_head	*bh_result,
	int			create)
{
1444
	return __xfs_get_blocks(inode, iblock, bh_result, create, 0);
L
Linus Torvalds 已提交
1445 1446 1447
}

STATIC int
1448
xfs_get_blocks_direct(
L
Linus Torvalds 已提交
1449 1450 1451 1452 1453
	struct inode		*inode,
	sector_t		iblock,
	struct buffer_head	*bh_result,
	int			create)
{
1454
	return __xfs_get_blocks(inode, iblock, bh_result, create, 1);
L
Linus Torvalds 已提交
1455 1456
}

1457 1458 1459 1460 1461 1462
/*
 * Complete a direct I/O write request.
 *
 * If the private argument is non-NULL __xfs_get_blocks signals us that we
 * need to issue a transaction to convert the range from unwritten to written
 * extents.  In case this is regular synchronous I/O we just call xfs_end_io
L
Lucas De Marchi 已提交
1463
 * to do this and we are done.  But in case this was a successful AIO
1464 1465 1466 1467
 * request this handler is called from interrupt context, from which we
 * can't start transactions.  In that case offload the I/O completion to
 * the workqueues we also use for buffered I/O completion.
 */
1468
STATIC void
1469 1470 1471 1472
xfs_end_io_direct_write(
	struct kiocb		*iocb,
	loff_t			offset,
	ssize_t			size,
1473
	void			*private)
1474
{
1475
	struct xfs_ioend	*ioend = iocb->private;
1476

1477 1478 1479 1480 1481 1482 1483 1484 1485
	/*
	 * While the generic direct I/O code updates the inode size, it does
	 * so only after the end_io handler is called, which means our
	 * end_io handler thinks the on-disk size is outside the in-core
	 * size.  To prevent this just update it a little bit earlier here.
	 */
	if (offset + size > i_size_read(ioend->io_inode))
		i_size_write(ioend->io_inode, offset + size);

1486
	/*
1487 1488 1489
	 * blockdev_direct_IO can return an error even after the I/O
	 * completion handler was called.  Thus we need to protect
	 * against double-freeing.
1490
	 */
1491 1492
	iocb->private = NULL;

1493 1494
	ioend->io_offset = offset;
	ioend->io_size = size;
1495
	if (private && size > 0)
1496
		ioend->io_type = XFS_IO_UNWRITTEN;
1497

1498
	xfs_finish_ioend_sync(ioend);
1499 1500
}

L
Linus Torvalds 已提交
1501
STATIC ssize_t
1502
xfs_vm_direct_IO(
L
Linus Torvalds 已提交
1503 1504
	int			rw,
	struct kiocb		*iocb,
A
Al Viro 已提交
1505 1506
	struct iov_iter		*iter,
	loff_t			offset)
L
Linus Torvalds 已提交
1507
{
1508 1509
	struct inode		*inode = iocb->ki_filp->f_mapping->host;
	struct block_device	*bdev = xfs_find_bdev_for_inode(inode);
1510
	struct xfs_ioend	*ioend = NULL;
1511 1512 1513
	ssize_t			ret;

	if (rw & WRITE) {
1514
		size_t size = iov_iter_count(iter);
1515 1516

		/*
1517 1518 1519 1520
		 * We cannot preallocate a size update transaction here as we
		 * don't know whether allocation is necessary or not. Hence we
		 * can only tell IO completion that one is necessary if we are
		 * not doing unwritten extent conversion.
1521
		 */
1522
		iocb->private = ioend = xfs_alloc_ioend(inode, XFS_IO_DIRECT);
1523
		if (offset + size > XFS_I(inode)->i_d.di_size)
1524
			ioend->io_isdirect = 1;
1525

1526 1527
		ret = __blockdev_direct_IO(rw, iocb, inode, bdev, iter,
					    offset, xfs_get_blocks_direct,
1528 1529
					    xfs_end_io_direct_write, NULL,
					    DIO_ASYNC_EXTEND);
1530
		if (ret != -EIOCBQUEUED && iocb->private)
1531
			goto out_destroy_ioend;
1532
	} else {
1533 1534
		ret = __blockdev_direct_IO(rw, iocb, inode, bdev, iter,
					    offset, xfs_get_blocks_direct,
1535
					    NULL, NULL, 0);
1536
	}
1537 1538

	return ret;
1539 1540 1541 1542

out_destroy_ioend:
	xfs_destroy_ioend(ioend);
	return ret;
L
Linus Torvalds 已提交
1543 1544
}

1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580
/*
 * Punch out the delalloc blocks we have already allocated.
 *
 * Don't bother with xfs_setattr given that nothing can have made it to disk yet
 * as the page is still locked at this point.
 */
STATIC void
xfs_vm_kill_delalloc_range(
	struct inode		*inode,
	loff_t			start,
	loff_t			end)
{
	struct xfs_inode	*ip = XFS_I(inode);
	xfs_fileoff_t		start_fsb;
	xfs_fileoff_t		end_fsb;
	int			error;

	start_fsb = XFS_B_TO_FSB(ip->i_mount, start);
	end_fsb = XFS_B_TO_FSB(ip->i_mount, end);
	if (end_fsb <= start_fsb)
		return;

	xfs_ilock(ip, XFS_ILOCK_EXCL);
	error = xfs_bmap_punch_delalloc_range(ip, start_fsb,
						end_fsb - start_fsb);
	if (error) {
		/* something screwed, just bail */
		if (!XFS_FORCED_SHUTDOWN(ip->i_mount)) {
			xfs_alert(ip->i_mount,
		"xfs_vm_write_failed: unable to clean up ino %lld",
					ip->i_ino);
		}
	}
	xfs_iunlock(ip, XFS_ILOCK_EXCL);
}

C
Christoph Hellwig 已提交
1581 1582
STATIC void
xfs_vm_write_failed(
1583 1584 1585 1586
	struct inode		*inode,
	struct page		*page,
	loff_t			pos,
	unsigned		len)
C
Christoph Hellwig 已提交
1587
{
1588
	loff_t			block_offset;
1589 1590 1591 1592 1593
	loff_t			block_start;
	loff_t			block_end;
	loff_t			from = pos & (PAGE_CACHE_SIZE - 1);
	loff_t			to = from + len;
	struct buffer_head	*bh, *head;
C
Christoph Hellwig 已提交
1594

1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607
	/*
	 * The request pos offset might be 32 or 64 bit, this is all fine
	 * on 64-bit platform.  However, for 64-bit pos request on 32-bit
	 * platform, the high 32-bit will be masked off if we evaluate the
	 * block_offset via (pos & PAGE_MASK) because the PAGE_MASK is
	 * 0xfffff000 as an unsigned long, hence the result is incorrect
	 * which could cause the following ASSERT failed in most cases.
	 * In order to avoid this, we can evaluate the block_offset of the
	 * start of the page by using shifts rather than masks the mismatch
	 * problem.
	 */
	block_offset = (pos >> PAGE_CACHE_SHIFT) << PAGE_CACHE_SHIFT;

1608
	ASSERT(block_offset + from == pos);
1609

1610 1611 1612 1613 1614 1615
	head = page_buffers(page);
	block_start = 0;
	for (bh = head; bh != head || !block_start;
	     bh = bh->b_this_page, block_start = block_end,
				   block_offset += bh->b_size) {
		block_end = block_start + bh->b_size;
1616

1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632
		/* skip buffers before the write */
		if (block_end <= from)
			continue;

		/* if the buffer is after the write, we're done */
		if (block_start >= to)
			break;

		if (!buffer_delay(bh))
			continue;

		if (!buffer_new(bh) && block_offset < i_size_read(inode))
			continue;

		xfs_vm_kill_delalloc_range(inode, block_offset,
					   block_offset + bh->b_size);
1633 1634 1635 1636 1637 1638 1639 1640 1641 1642

		/*
		 * This buffer does not contain data anymore. make sure anyone
		 * who finds it knows that for certain.
		 */
		clear_buffer_delay(bh);
		clear_buffer_uptodate(bh);
		clear_buffer_mapped(bh);
		clear_buffer_new(bh);
		clear_buffer_dirty(bh);
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Christoph Hellwig 已提交
1643
	}
1644

C
Christoph Hellwig 已提交
1645 1646
}

1647 1648 1649 1650 1651 1652
/*
 * This used to call block_write_begin(), but it unlocks and releases the page
 * on error, and we need that page to be able to punch stale delalloc blocks out
 * on failure. hence we copy-n-waste it here and call xfs_vm_write_failed() at
 * the appropriate point.
 */
1653
STATIC int
N
Nick Piggin 已提交
1654
xfs_vm_write_begin(
1655
	struct file		*file,
N
Nick Piggin 已提交
1656 1657 1658 1659 1660 1661
	struct address_space	*mapping,
	loff_t			pos,
	unsigned		len,
	unsigned		flags,
	struct page		**pagep,
	void			**fsdata)
1662
{
1663 1664 1665
	pgoff_t			index = pos >> PAGE_CACHE_SHIFT;
	struct page		*page;
	int			status;
1666

1667 1668
	ASSERT(len <= PAGE_CACHE_SIZE);

1669
	page = grab_cache_page_write_begin(mapping, index, flags);
1670 1671 1672 1673 1674 1675
	if (!page)
		return -ENOMEM;

	status = __block_write_begin(page, pos, len, xfs_get_blocks);
	if (unlikely(status)) {
		struct inode	*inode = mapping->host;
1676
		size_t		isize = i_size_read(inode);
1677 1678 1679 1680

		xfs_vm_write_failed(inode, page, pos, len);
		unlock_page(page);

1681 1682 1683 1684 1685 1686 1687 1688 1689 1690
		/*
		 * If the write is beyond EOF, we only want to kill blocks
		 * allocated in this write, not blocks that were previously
		 * written successfully.
		 */
		if (pos + len > isize) {
			ssize_t start = max_t(ssize_t, pos, isize);

			truncate_pagecache_range(inode, start, pos + len);
		}
1691 1692 1693 1694 1695 1696 1697

		page_cache_release(page);
		page = NULL;
	}

	*pagep = page;
	return status;
C
Christoph Hellwig 已提交
1698 1699
}

1700
/*
1701 1702 1703 1704 1705 1706
 * On failure, we only need to kill delalloc blocks beyond EOF in the range of
 * this specific write because they will never be written. Previous writes
 * beyond EOF where block allocation succeeded do not need to be trashed, so
 * only new blocks from this write should be trashed. For blocks within
 * EOF, generic_write_end() zeros them so they are safe to leave alone and be
 * written with all the other valid data.
1707
 */
C
Christoph Hellwig 已提交
1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718
STATIC int
xfs_vm_write_end(
	struct file		*file,
	struct address_space	*mapping,
	loff_t			pos,
	unsigned		len,
	unsigned		copied,
	struct page		*page,
	void			*fsdata)
{
	int			ret;
1719

1720 1721
	ASSERT(len <= PAGE_CACHE_SIZE);

C
Christoph Hellwig 已提交
1722
	ret = generic_write_end(file, mapping, pos, len, copied, page, fsdata);
1723 1724 1725 1726 1727 1728
	if (unlikely(ret < len)) {
		struct inode	*inode = mapping->host;
		size_t		isize = i_size_read(inode);
		loff_t		to = pos + len;

		if (to > isize) {
1729 1730 1731
			/* only kill blocks in this write beyond EOF */
			if (pos > isize)
				isize = pos;
1732
			xfs_vm_kill_delalloc_range(inode, isize, to);
1733
			truncate_pagecache_range(inode, isize, to);
1734 1735
		}
	}
1736
	return ret;
1737
}
L
Linus Torvalds 已提交
1738 1739

STATIC sector_t
1740
xfs_vm_bmap(
L
Linus Torvalds 已提交
1741 1742 1743 1744
	struct address_space	*mapping,
	sector_t		block)
{
	struct inode		*inode = (struct inode *)mapping->host;
1745
	struct xfs_inode	*ip = XFS_I(inode);
L
Linus Torvalds 已提交
1746

C
Christoph Hellwig 已提交
1747
	trace_xfs_vm_bmap(XFS_I(inode));
1748
	xfs_ilock(ip, XFS_IOLOCK_SHARED);
D
Dave Chinner 已提交
1749
	filemap_write_and_wait(mapping);
1750
	xfs_iunlock(ip, XFS_IOLOCK_SHARED);
1751
	return generic_block_bmap(mapping, block, xfs_get_blocks);
L
Linus Torvalds 已提交
1752 1753 1754
}

STATIC int
1755
xfs_vm_readpage(
L
Linus Torvalds 已提交
1756 1757 1758
	struct file		*unused,
	struct page		*page)
{
1759
	return mpage_readpage(page, xfs_get_blocks);
L
Linus Torvalds 已提交
1760 1761 1762
}

STATIC int
1763
xfs_vm_readpages(
L
Linus Torvalds 已提交
1764 1765 1766 1767 1768
	struct file		*unused,
	struct address_space	*mapping,
	struct list_head	*pages,
	unsigned		nr_pages)
{
1769
	return mpage_readpages(mapping, pages, nr_pages, xfs_get_blocks);
L
Linus Torvalds 已提交
1770 1771
}

1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831
/*
 * This is basically a copy of __set_page_dirty_buffers() with one
 * small tweak: buffers beyond EOF do not get marked dirty. If we mark them
 * dirty, we'll never be able to clean them because we don't write buffers
 * beyond EOF, and that means we can't invalidate pages that span EOF
 * that have been marked dirty. Further, the dirty state can leak into
 * the file interior if the file is extended, resulting in all sorts of
 * bad things happening as the state does not match the underlying data.
 *
 * XXX: this really indicates that bufferheads in XFS need to die. Warts like
 * this only exist because of bufferheads and how the generic code manages them.
 */
STATIC int
xfs_vm_set_page_dirty(
	struct page		*page)
{
	struct address_space	*mapping = page->mapping;
	struct inode		*inode = mapping->host;
	loff_t			end_offset;
	loff_t			offset;
	int			newly_dirty;

	if (unlikely(!mapping))
		return !TestSetPageDirty(page);

	end_offset = i_size_read(inode);
	offset = page_offset(page);

	spin_lock(&mapping->private_lock);
	if (page_has_buffers(page)) {
		struct buffer_head *head = page_buffers(page);
		struct buffer_head *bh = head;

		do {
			if (offset < end_offset)
				set_buffer_dirty(bh);
			bh = bh->b_this_page;
			offset += 1 << inode->i_blkbits;
		} while (bh != head);
	}
	newly_dirty = !TestSetPageDirty(page);
	spin_unlock(&mapping->private_lock);

	if (newly_dirty) {
		/* sigh - __set_page_dirty() is static, so copy it here, too */
		unsigned long flags;

		spin_lock_irqsave(&mapping->tree_lock, flags);
		if (page->mapping) {	/* Race with truncate? */
			WARN_ON_ONCE(!PageUptodate(page));
			account_page_dirtied(page, mapping);
			radix_tree_tag_set(&mapping->page_tree,
					page_index(page), PAGECACHE_TAG_DIRTY);
		}
		spin_unlock_irqrestore(&mapping->tree_lock, flags);
		__mark_inode_dirty(mapping->host, I_DIRTY_PAGES);
	}
	return newly_dirty;
}

1832
const struct address_space_operations xfs_address_space_operations = {
1833 1834 1835
	.readpage		= xfs_vm_readpage,
	.readpages		= xfs_vm_readpages,
	.writepage		= xfs_vm_writepage,
1836
	.writepages		= xfs_vm_writepages,
1837
	.set_page_dirty		= xfs_vm_set_page_dirty,
1838 1839
	.releasepage		= xfs_vm_releasepage,
	.invalidatepage		= xfs_vm_invalidatepage,
N
Nick Piggin 已提交
1840
	.write_begin		= xfs_vm_write_begin,
C
Christoph Hellwig 已提交
1841
	.write_end		= xfs_vm_write_end,
1842 1843
	.bmap			= xfs_vm_bmap,
	.direct_IO		= xfs_vm_direct_IO,
1844
	.migratepage		= buffer_migrate_page,
1845
	.is_partially_uptodate  = block_is_partially_uptodate,
1846
	.error_remove_page	= generic_error_remove_page,
L
Linus Torvalds 已提交
1847
};