xfs_file.c 32.5 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"
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#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_bmap.h"
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#include "xfs_bmap_util.h"
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#include "xfs_dir2.h"
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#include "xfs_dir2_priv.h"
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#include "xfs_ioctl.h"
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#include "xfs_trace.h"
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#include "xfs_log.h"
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#include "xfs_icache.h"
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#include "xfs_pnfs.h"
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#include "xfs_iomap.h"
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#include "xfs_reflink.h"
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#include <linux/falloc.h>
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#include <linux/backing-dev.h>
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#include <linux/mman.h>
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#include <linux/fadvise.h>
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static const struct vm_operations_struct xfs_file_vm_ops;
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int
xfs_update_prealloc_flags(
	struct xfs_inode	*ip,
	enum xfs_prealloc_flags	flags)
{
	struct xfs_trans	*tp;
	int			error;

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	error = xfs_trans_alloc(ip->i_mount, &M_RES(ip->i_mount)->tr_writeid,
			0, 0, 0, &tp);
	if (error)
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		return error;

	xfs_ilock(ip, XFS_ILOCK_EXCL);
	xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);

	if (!(flags & XFS_PREALLOC_INVISIBLE)) {
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		VFS_I(ip)->i_mode &= ~S_ISUID;
		if (VFS_I(ip)->i_mode & S_IXGRP)
			VFS_I(ip)->i_mode &= ~S_ISGID;
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		xfs_trans_ichgtime(tp, ip, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
	}

	if (flags & XFS_PREALLOC_SET)
		ip->i_d.di_flags |= XFS_DIFLAG_PREALLOC;
	if (flags & XFS_PREALLOC_CLEAR)
		ip->i_d.di_flags &= ~XFS_DIFLAG_PREALLOC;

	xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
	if (flags & XFS_PREALLOC_SYNC)
		xfs_trans_set_sync(tp);
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	return xfs_trans_commit(tp);
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}

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/*
 * Fsync operations on directories are much simpler than on regular files,
 * as there is no file data to flush, and thus also no need for explicit
 * cache flush operations, and there are no non-transaction metadata updates
 * on directories either.
 */
STATIC int
xfs_dir_fsync(
	struct file		*file,
	loff_t			start,
	loff_t			end,
	int			datasync)
{
	struct xfs_inode	*ip = XFS_I(file->f_mapping->host);
	struct xfs_mount	*mp = ip->i_mount;
	xfs_lsn_t		lsn = 0;

	trace_xfs_dir_fsync(ip);

	xfs_ilock(ip, XFS_ILOCK_SHARED);
	if (xfs_ipincount(ip))
		lsn = ip->i_itemp->ili_last_lsn;
	xfs_iunlock(ip, XFS_ILOCK_SHARED);

	if (!lsn)
		return 0;
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	return xfs_log_force_lsn(mp, lsn, XFS_LOG_SYNC, NULL);
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}

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STATIC int
xfs_file_fsync(
	struct file		*file,
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	loff_t			start,
	loff_t			end,
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	int			datasync)
{
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	struct inode		*inode = file->f_mapping->host;
	struct xfs_inode	*ip = XFS_I(inode);
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	struct xfs_mount	*mp = ip->i_mount;
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	int			error = 0;
	int			log_flushed = 0;
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	xfs_lsn_t		lsn = 0;
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	trace_xfs_file_fsync(ip);
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	error = file_write_and_wait_range(file, start, end);
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	if (error)
		return error;

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	if (XFS_FORCED_SHUTDOWN(mp))
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		return -EIO;
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	xfs_iflags_clear(ip, XFS_ITRUNCATED);

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	/*
	 * If we have an RT and/or log subvolume we need to make sure to flush
	 * the write cache the device used for file data first.  This is to
	 * ensure newly written file data make it to disk before logging the new
	 * inode size in case of an extending write.
	 */
	if (XFS_IS_REALTIME_INODE(ip))
		xfs_blkdev_issue_flush(mp->m_rtdev_targp);
	else if (mp->m_logdev_targp != mp->m_ddev_targp)
		xfs_blkdev_issue_flush(mp->m_ddev_targp);
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	/*
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	 * All metadata updates are logged, which means that we just have to
	 * flush the log up to the latest LSN that touched the inode. If we have
	 * concurrent fsync/fdatasync() calls, we need them to all block on the
	 * log force before we clear the ili_fsync_fields field. This ensures
	 * that we don't get a racing sync operation that does not wait for the
	 * metadata to hit the journal before returning. If we race with
	 * clearing the ili_fsync_fields, then all that will happen is the log
	 * force will do nothing as the lsn will already be on disk. We can't
	 * race with setting ili_fsync_fields because that is done under
	 * XFS_ILOCK_EXCL, and that can't happen because we hold the lock shared
	 * until after the ili_fsync_fields is cleared.
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	 */
	xfs_ilock(ip, XFS_ILOCK_SHARED);
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	if (xfs_ipincount(ip)) {
		if (!datasync ||
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		    (ip->i_itemp->ili_fsync_fields & ~XFS_ILOG_TIMESTAMP))
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			lsn = ip->i_itemp->ili_last_lsn;
	}
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	if (lsn) {
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		error = xfs_log_force_lsn(mp, lsn, XFS_LOG_SYNC, &log_flushed);
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		ip->i_itemp->ili_fsync_fields = 0;
	}
	xfs_iunlock(ip, XFS_ILOCK_SHARED);
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	/*
	 * If we only have a single device, and the log force about was
	 * a no-op we might have to flush the data device cache here.
	 * This can only happen for fdatasync/O_DSYNC if we were overwriting
	 * an already allocated file and thus do not have any metadata to
	 * commit.
	 */
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	if (!log_flushed && !XFS_IS_REALTIME_INODE(ip) &&
	    mp->m_logdev_targp == mp->m_ddev_targp)
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		xfs_blkdev_issue_flush(mp->m_ddev_targp);
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	return error;
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}

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STATIC ssize_t
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xfs_file_dio_aio_read(
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	struct kiocb		*iocb,
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	struct iov_iter		*to)
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{
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	struct xfs_inode	*ip = XFS_I(file_inode(iocb->ki_filp));
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	size_t			count = iov_iter_count(to);
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	ssize_t			ret;
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	trace_xfs_file_direct_read(ip, count, iocb->ki_pos);
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	if (!count)
		return 0; /* skip atime */
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	file_accessed(iocb->ki_filp);

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	xfs_ilock(ip, XFS_IOLOCK_SHARED);
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	ret = iomap_dio_rw(iocb, to, &xfs_read_iomap_ops, NULL,
			is_sync_kiocb(iocb));
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	xfs_iunlock(ip, XFS_IOLOCK_SHARED);
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	return ret;
}

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static noinline ssize_t
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xfs_file_dax_read(
	struct kiocb		*iocb,
	struct iov_iter		*to)
{
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	struct xfs_inode	*ip = XFS_I(iocb->ki_filp->f_mapping->host);
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	size_t			count = iov_iter_count(to);
	ssize_t			ret = 0;

	trace_xfs_file_dax_read(ip, count, iocb->ki_pos);

	if (!count)
		return 0; /* skip atime */

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	if (iocb->ki_flags & IOCB_NOWAIT) {
		if (!xfs_ilock_nowait(ip, XFS_IOLOCK_SHARED))
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			return -EAGAIN;
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	} else {
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		xfs_ilock(ip, XFS_IOLOCK_SHARED);
	}
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	ret = dax_iomap_rw(iocb, to, &xfs_read_iomap_ops);
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	xfs_iunlock(ip, XFS_IOLOCK_SHARED);
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	file_accessed(iocb->ki_filp);
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	return ret;
}

STATIC ssize_t
xfs_file_buffered_aio_read(
	struct kiocb		*iocb,
	struct iov_iter		*to)
{
	struct xfs_inode	*ip = XFS_I(file_inode(iocb->ki_filp));
	ssize_t			ret;

	trace_xfs_file_buffered_read(ip, iov_iter_count(to), iocb->ki_pos);
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	if (iocb->ki_flags & IOCB_NOWAIT) {
		if (!xfs_ilock_nowait(ip, XFS_IOLOCK_SHARED))
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			return -EAGAIN;
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	} else {
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		xfs_ilock(ip, XFS_IOLOCK_SHARED);
	}
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	ret = generic_file_read_iter(iocb, to);
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	xfs_iunlock(ip, XFS_IOLOCK_SHARED);
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	return ret;
}

STATIC ssize_t
xfs_file_read_iter(
	struct kiocb		*iocb,
	struct iov_iter		*to)
{
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	struct inode		*inode = file_inode(iocb->ki_filp);
	struct xfs_mount	*mp = XFS_I(inode)->i_mount;
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	ssize_t			ret = 0;

	XFS_STATS_INC(mp, xs_read_calls);

	if (XFS_FORCED_SHUTDOWN(mp))
		return -EIO;

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	if (IS_DAX(inode))
		ret = xfs_file_dax_read(iocb, to);
	else if (iocb->ki_flags & IOCB_DIRECT)
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		ret = xfs_file_dio_aio_read(iocb, to);
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	else
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		ret = xfs_file_buffered_aio_read(iocb, to);
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	if (ret > 0)
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		XFS_STATS_ADD(mp, xs_read_bytes, ret);
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	return ret;
}

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/*
 * Common pre-write limit and setup checks.
 *
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 * Called with the iolocked held either shared and exclusive according to
 * @iolock, and returns with it held.  Might upgrade the iolock to exclusive
 * if called for a direct write beyond i_size.
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 */
STATIC ssize_t
xfs_file_aio_write_checks(
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	struct kiocb		*iocb,
	struct iov_iter		*from,
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	int			*iolock)
{
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	struct file		*file = iocb->ki_filp;
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	struct inode		*inode = file->f_mapping->host;
	struct xfs_inode	*ip = XFS_I(inode);
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	ssize_t			error = 0;
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	size_t			count = iov_iter_count(from);
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	bool			drained_dio = false;
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	loff_t			isize;
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restart:
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	error = generic_write_checks(iocb, from);
	if (error <= 0)
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		return error;

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	error = xfs_break_layouts(inode, iolock, BREAK_WRITE);
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	if (error)
		return error;

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	/*
	 * For changing security info in file_remove_privs() we need i_rwsem
	 * exclusively.
	 */
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	if (*iolock == XFS_IOLOCK_SHARED && !IS_NOSEC(inode)) {
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		xfs_iunlock(ip, *iolock);
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		*iolock = XFS_IOLOCK_EXCL;
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		xfs_ilock(ip, *iolock);
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		goto restart;
	}
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	/*
	 * If the offset is beyond the size of the file, we need to zero any
	 * blocks that fall between the existing EOF and the start of this
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	 * write.  If zeroing is needed and we are currently holding the
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	 * iolock shared, we need to update it to exclusive which implies
	 * having to redo all checks before.
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	 *
	 * We need to serialise against EOF updates that occur in IO
	 * completions here. We want to make sure that nobody is changing the
	 * size while we do this check until we have placed an IO barrier (i.e.
	 * hold the XFS_IOLOCK_EXCL) that prevents new IO from being dispatched.
	 * The spinlock effectively forms a memory barrier once we have the
	 * XFS_IOLOCK_EXCL so we are guaranteed to see the latest EOF value
	 * and hence be able to correctly determine if we need to run zeroing.
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	 */
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	spin_lock(&ip->i_flags_lock);
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	isize = i_size_read(inode);
	if (iocb->ki_pos > isize) {
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		spin_unlock(&ip->i_flags_lock);
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		if (!drained_dio) {
			if (*iolock == XFS_IOLOCK_SHARED) {
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				xfs_iunlock(ip, *iolock);
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				*iolock = XFS_IOLOCK_EXCL;
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				xfs_ilock(ip, *iolock);
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				iov_iter_reexpand(from, count);
			}
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			/*
			 * We now have an IO submission barrier in place, but
			 * AIO can do EOF updates during IO completion and hence
			 * we now need to wait for all of them to drain. Non-AIO
			 * DIO will have drained before we are given the
			 * XFS_IOLOCK_EXCL, and so for most cases this wait is a
			 * no-op.
			 */
			inode_dio_wait(inode);
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			drained_dio = true;
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			goto restart;
		}
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		trace_xfs_zero_eof(ip, isize, iocb->ki_pos - isize);
		error = iomap_zero_range(inode, isize, iocb->ki_pos - isize,
				NULL, &xfs_iomap_ops);
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		if (error)
			return error;
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	} else
		spin_unlock(&ip->i_flags_lock);
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	/*
	 * Updating the timestamps will grab the ilock again from
	 * xfs_fs_dirty_inode, so we have to call it after dropping the
	 * lock above.  Eventually we should look into a way to avoid
	 * the pointless lock roundtrip.
	 */
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	return file_modified(file);
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}

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static int
xfs_dio_write_end_io(
	struct kiocb		*iocb,
	ssize_t			size,
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	int			error,
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	unsigned		flags)
{
	struct inode		*inode = file_inode(iocb->ki_filp);
	struct xfs_inode	*ip = XFS_I(inode);
	loff_t			offset = iocb->ki_pos;
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	unsigned int		nofs_flag;
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	trace_xfs_end_io_direct_write(ip, offset, size);

	if (XFS_FORCED_SHUTDOWN(ip->i_mount))
		return -EIO;

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	if (error)
		return error;
	if (!size)
		return 0;
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	/*
	 * Capture amount written on completion as we can't reliably account
	 * for it on submission.
	 */
	XFS_STATS_ADD(ip->i_mount, xs_write_bytes, size);

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	/*
	 * We can allocate memory here while doing writeback on behalf of
	 * memory reclaim.  To avoid memory allocation deadlocks set the
	 * task-wide nofs context for the following operations.
	 */
	nofs_flag = memalloc_nofs_save();

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	if (flags & IOMAP_DIO_COW) {
		error = xfs_reflink_end_cow(ip, offset, size);
		if (error)
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			goto out;
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	}

	/*
	 * Unwritten conversion updates the in-core isize after extent
	 * conversion but before updating the on-disk size. Updating isize any
	 * earlier allows a racing dio read to find unwritten extents before
	 * they are converted.
	 */
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	if (flags & IOMAP_DIO_UNWRITTEN) {
		error = xfs_iomap_write_unwritten(ip, offset, size, true);
		goto out;
	}
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	/*
	 * We need to update the in-core inode size here so that we don't end up
	 * with the on-disk inode size being outside the in-core inode size. We
	 * have no other method of updating EOF for AIO, so always do it here
	 * if necessary.
	 *
	 * We need to lock the test/set EOF update as we can be racing with
	 * other IO completions here to update the EOF. Failing to serialise
	 * here can result in EOF moving backwards and Bad Things Happen when
	 * that occurs.
	 */
	spin_lock(&ip->i_flags_lock);
	if (offset + size > i_size_read(inode)) {
		i_size_write(inode, offset + size);
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		spin_unlock(&ip->i_flags_lock);
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		error = xfs_setfilesize(ip, offset, size);
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	} else {
		spin_unlock(&ip->i_flags_lock);
	}
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out:
	memalloc_nofs_restore(nofs_flag);
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	return error;
}

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static const struct iomap_dio_ops xfs_dio_write_ops = {
	.end_io		= xfs_dio_write_end_io,
};

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/*
 * xfs_file_dio_aio_write - handle direct IO writes
 *
 * Lock the inode appropriately to prepare for and issue a direct IO write.
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 * By separating it from the buffered write path we remove all the tricky to
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 * follow locking changes and looping.
 *
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 * If there are cached pages or we're extending the file, we need IOLOCK_EXCL
 * until we're sure the bytes at the new EOF have been zeroed and/or the cached
 * pages are flushed out.
 *
 * In most cases the direct IO writes will be done holding IOLOCK_SHARED
 * allowing them to be done in parallel with reads and other direct IO writes.
 * However, if the IO is not aligned to filesystem blocks, the direct IO layer
 * needs to do sub-block zeroing and that requires serialisation against other
 * direct IOs to the same block. In this case we need to serialise the
 * submission of the unaligned IOs so that we don't get racing block zeroing in
 * the dio layer.  To avoid the problem with aio, we also need to wait for
 * outstanding IOs to complete so that unwritten extent conversion is completed
 * before we try to map the overlapping block. This is currently implemented by
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 * hitting it with a big hammer (i.e. inode_dio_wait()).
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 *
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 * Returns with locks held indicated by @iolock and errors indicated by
 * negative return values.
 */
STATIC ssize_t
xfs_file_dio_aio_write(
	struct kiocb		*iocb,
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	struct iov_iter		*from)
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{
	struct file		*file = iocb->ki_filp;
	struct address_space	*mapping = file->f_mapping;
	struct inode		*inode = mapping->host;
	struct xfs_inode	*ip = XFS_I(inode);
	struct xfs_mount	*mp = ip->i_mount;
	ssize_t			ret = 0;
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	int			unaligned_io = 0;
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	int			iolock;
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	size_t			count = iov_iter_count(from);
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	struct xfs_buftarg      *target = XFS_IS_REALTIME_INODE(ip) ?
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					mp->m_rtdev_targp : mp->m_ddev_targp;

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	/* DIO must be aligned to device logical sector size */
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	if ((iocb->ki_pos | count) & target->bt_logical_sectormask)
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		return -EINVAL;
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	/*
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	 * Don't take the exclusive iolock here unless the I/O is unaligned to
	 * the file system block size.  We don't need to consider the EOF
	 * extension case here because xfs_file_aio_write_checks() will relock
	 * the inode as necessary for EOF zeroing cases and fill out the new
	 * inode size as appropriate.
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	 */
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	if ((iocb->ki_pos & mp->m_blockmask) ||
	    ((iocb->ki_pos + count) & mp->m_blockmask)) {
		unaligned_io = 1;
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		/*
		 * We can't properly handle unaligned direct I/O to reflink
		 * files yet, as we can't unshare a partial block.
		 */
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		if (xfs_is_cow_inode(ip)) {
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			trace_xfs_reflink_bounce_dio_write(ip, iocb->ki_pos, count);
			return -EREMCHG;
		}
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		iolock = XFS_IOLOCK_EXCL;
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	} else {
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		iolock = XFS_IOLOCK_SHARED;
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	}
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	if (iocb->ki_flags & IOCB_NOWAIT) {
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		/* unaligned dio always waits, bail */
		if (unaligned_io)
			return -EAGAIN;
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		if (!xfs_ilock_nowait(ip, iolock))
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			return -EAGAIN;
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	} else {
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		xfs_ilock(ip, iolock);
	}
530

531
	ret = xfs_file_aio_write_checks(iocb, from, &iolock);
532
	if (ret)
533
		goto out;
534
	count = iov_iter_count(from);
535

536
	/*
537 538 539 540 541
	 * If we are doing unaligned IO, we can't allow any other overlapping IO
	 * in-flight at the same time or we risk data corruption. Wait for all
	 * other IO to drain before we submit. If the IO is aligned, demote the
	 * iolock if we had to take the exclusive lock in
	 * xfs_file_aio_write_checks() for other reasons.
542
	 */
G
Goldwyn Rodrigues 已提交
543
	if (unaligned_io) {
544
		inode_dio_wait(inode);
G
Goldwyn Rodrigues 已提交
545
	} else if (iolock == XFS_IOLOCK_EXCL) {
546
		xfs_ilock_demote(ip, XFS_IOLOCK_EXCL);
547
		iolock = XFS_IOLOCK_SHARED;
548 549
	}

C
Christoph Hellwig 已提交
550
	trace_xfs_file_direct_write(ip, count, iocb->ki_pos);
551
	/*
552 553
	 * If unaligned, this is the only IO in-flight. Wait on it before we
	 * release the iolock to prevent subsequent overlapping IO.
554
	 */
555 556
	ret = iomap_dio_rw(iocb, from, &xfs_iomap_ops, &xfs_dio_write_ops,
			   is_sync_kiocb(iocb) || unaligned_io);
557
out:
558
	xfs_iunlock(ip, iolock);
559

560
	/*
561 562
	 * No fallback to buffered IO on errors for XFS, direct IO will either
	 * complete fully or fail.
563
	 */
564 565 566 567
	ASSERT(ret < 0 || ret == count);
	return ret;
}

568
static noinline ssize_t
569 570 571 572
xfs_file_dax_write(
	struct kiocb		*iocb,
	struct iov_iter		*from)
{
573
	struct inode		*inode = iocb->ki_filp->f_mapping->host;
574
	struct xfs_inode	*ip = XFS_I(inode);
575
	int			iolock = XFS_IOLOCK_EXCL;
576 577 578
	ssize_t			ret, error = 0;
	size_t			count;
	loff_t			pos;
579

C
Christoph Hellwig 已提交
580 581
	if (iocb->ki_flags & IOCB_NOWAIT) {
		if (!xfs_ilock_nowait(ip, iolock))
G
Goldwyn Rodrigues 已提交
582
			return -EAGAIN;
C
Christoph Hellwig 已提交
583
	} else {
G
Goldwyn Rodrigues 已提交
584 585 586
		xfs_ilock(ip, iolock);
	}

587 588 589 590
	ret = xfs_file_aio_write_checks(iocb, from, &iolock);
	if (ret)
		goto out;

591 592
	pos = iocb->ki_pos;
	count = iov_iter_count(from);
593

594
	trace_xfs_file_dax_write(ip, count, pos);
595
	ret = dax_iomap_rw(iocb, from, &xfs_iomap_ops);
596 597 598
	if (ret > 0 && iocb->ki_pos > i_size_read(inode)) {
		i_size_write(inode, iocb->ki_pos);
		error = xfs_setfilesize(ip, pos, ret);
599 600
	}
out:
601
	xfs_iunlock(ip, iolock);
602 603 604 605 606 607 608 609 610 611
	if (error)
		return error;

	if (ret > 0) {
		XFS_STATS_ADD(ip->i_mount, xs_write_bytes, ret);

		/* Handle various SYNC-type writes */
		ret = generic_write_sync(iocb, ret);
	}
	return ret;
612 613
}

614
STATIC ssize_t
615
xfs_file_buffered_aio_write(
616
	struct kiocb		*iocb,
617
	struct iov_iter		*from)
618 619 620 621
{
	struct file		*file = iocb->ki_filp;
	struct address_space	*mapping = file->f_mapping;
	struct inode		*inode = mapping->host;
622
	struct xfs_inode	*ip = XFS_I(inode);
623 624
	ssize_t			ret;
	int			enospc = 0;
625
	int			iolock;
626

627 628 629
	if (iocb->ki_flags & IOCB_NOWAIT)
		return -EOPNOTSUPP;

630 631
write_retry:
	iolock = XFS_IOLOCK_EXCL;
632
	xfs_ilock(ip, iolock);
633

634
	ret = xfs_file_aio_write_checks(iocb, from, &iolock);
635
	if (ret)
636
		goto out;
637 638

	/* We can write back this queue in page reclaim */
639
	current->backing_dev_info = inode_to_bdi(inode);
640

C
Christoph Hellwig 已提交
641
	trace_xfs_file_buffered_write(ip, iov_iter_count(from), iocb->ki_pos);
642
	ret = iomap_file_buffered_write(iocb, from, &xfs_iomap_ops);
643
	if (likely(ret >= 0))
644
		iocb->ki_pos += ret;
645

646
	/*
647 648 649 650 651 652 653
	 * If we hit a space limit, try to free up some lingering preallocated
	 * space before returning an error. In the case of ENOSPC, first try to
	 * write back all dirty inodes to free up some of the excess reserved
	 * metadata space. This reduces the chances that the eofblocks scan
	 * waits on dirty mappings. Since xfs_flush_inodes() is serialized, this
	 * also behaves as a filter to prevent too many eofblocks scans from
	 * running at the same time.
654
	 */
655
	if (ret == -EDQUOT && !enospc) {
656
		xfs_iunlock(ip, iolock);
657 658 659
		enospc = xfs_inode_free_quota_eofblocks(ip);
		if (enospc)
			goto write_retry;
660 661 662
		enospc = xfs_inode_free_quota_cowblocks(ip);
		if (enospc)
			goto write_retry;
663
		iolock = 0;
664 665 666
	} else if (ret == -ENOSPC && !enospc) {
		struct xfs_eofblocks eofb = {0};

667
		enospc = 1;
D
Dave Chinner 已提交
668
		xfs_flush_inodes(ip->i_mount);
669 670

		xfs_iunlock(ip, iolock);
671 672
		eofb.eof_flags = XFS_EOF_FLAGS_SYNC;
		xfs_icache_free_eofblocks(ip->i_mount, &eofb);
673
		xfs_icache_free_cowblocks(ip->i_mount, &eofb);
D
Dave Chinner 已提交
674
		goto write_retry;
675
	}
676

677
	current->backing_dev_info = NULL;
678
out:
679 680
	if (iolock)
		xfs_iunlock(ip, iolock);
681 682 683 684 685 686

	if (ret > 0) {
		XFS_STATS_ADD(ip->i_mount, xs_write_bytes, ret);
		/* Handle various SYNC-type writes */
		ret = generic_write_sync(iocb, ret);
	}
687 688 689 690
	return ret;
}

STATIC ssize_t
A
Al Viro 已提交
691
xfs_file_write_iter(
692
	struct kiocb		*iocb,
A
Al Viro 已提交
693
	struct iov_iter		*from)
694 695 696 697 698 699
{
	struct file		*file = iocb->ki_filp;
	struct address_space	*mapping = file->f_mapping;
	struct inode		*inode = mapping->host;
	struct xfs_inode	*ip = XFS_I(inode);
	ssize_t			ret;
A
Al Viro 已提交
700
	size_t			ocount = iov_iter_count(from);
701

702
	XFS_STATS_INC(ip->i_mount, xs_write_calls);
703 704 705 706

	if (ocount == 0)
		return 0;

A
Al Viro 已提交
707 708
	if (XFS_FORCED_SHUTDOWN(ip->i_mount))
		return -EIO;
709

710
	if (IS_DAX(inode))
711 712 713
		return xfs_file_dax_write(iocb, from);

	if (iocb->ki_flags & IOCB_DIRECT) {
714 715 716 717 718 719
		/*
		 * Allow a directio write to fall back to a buffered
		 * write *only* in the case that we're doing a reflink
		 * CoW.  In all other directio scenarios we do not
		 * allow an operation to fall back to buffered mode.
		 */
A
Al Viro 已提交
720
		ret = xfs_file_dio_aio_write(iocb, from);
721 722
		if (ret != -EREMCHG)
			return ret;
723
	}
724

725
	return xfs_file_buffered_aio_write(iocb, from);
726 727
}

728 729
static void
xfs_wait_dax_page(
730
	struct inode		*inode)
731 732 733 734 735 736 737 738 739 740 741
{
	struct xfs_inode        *ip = XFS_I(inode);

	xfs_iunlock(ip, XFS_MMAPLOCK_EXCL);
	schedule();
	xfs_ilock(ip, XFS_MMAPLOCK_EXCL);
}

static int
xfs_break_dax_layouts(
	struct inode		*inode,
742
	bool			*retry)
743 744 745 746 747 748 749 750 751
{
	struct page		*page;

	ASSERT(xfs_isilocked(XFS_I(inode), XFS_MMAPLOCK_EXCL));

	page = dax_layout_busy_page(inode->i_mapping);
	if (!page)
		return 0;

752
	*retry = true;
753 754
	return ___wait_var_event(&page->_refcount,
			atomic_read(&page->_refcount) == 1, TASK_INTERRUPTIBLE,
755
			0, 0, xfs_wait_dax_page(inode));
756 757
}

758 759 760 761 762 763 764
int
xfs_break_layouts(
	struct inode		*inode,
	uint			*iolock,
	enum layout_break_reason reason)
{
	bool			retry;
765
	int			error;
766 767 768

	ASSERT(xfs_isilocked(XFS_I(inode), XFS_IOLOCK_SHARED|XFS_IOLOCK_EXCL));

769 770 771 772
	do {
		retry = false;
		switch (reason) {
		case BREAK_UNMAP:
773
			error = xfs_break_dax_layouts(inode, &retry);
774 775 776 777 778 779 780 781 782 783 784 785 786
			if (error || retry)
				break;
			/* fall through */
		case BREAK_WRITE:
			error = xfs_break_leased_layouts(inode, iolock, &retry);
			break;
		default:
			WARN_ON_ONCE(1);
			error = -EINVAL;
		}
	} while (error == 0 && retry);

	return error;
787 788
}

789 790 791
#define	XFS_FALLOC_FL_SUPPORTED						\
		(FALLOC_FL_KEEP_SIZE | FALLOC_FL_PUNCH_HOLE |		\
		 FALLOC_FL_COLLAPSE_RANGE | FALLOC_FL_ZERO_RANGE |	\
792
		 FALLOC_FL_INSERT_RANGE | FALLOC_FL_UNSHARE_RANGE)
793

794 795
STATIC long
xfs_file_fallocate(
796 797 798 799
	struct file		*file,
	int			mode,
	loff_t			offset,
	loff_t			len)
800
{
801 802 803
	struct inode		*inode = file_inode(file);
	struct xfs_inode	*ip = XFS_I(inode);
	long			error;
804
	enum xfs_prealloc_flags	flags = 0;
805
	uint			iolock = XFS_IOLOCK_EXCL | XFS_MMAPLOCK_EXCL;
806
	loff_t			new_size = 0;
807
	bool			do_file_insert = false;
808

809 810
	if (!S_ISREG(inode->i_mode))
		return -EINVAL;
811
	if (mode & ~XFS_FALLOC_FL_SUPPORTED)
812 813
		return -EOPNOTSUPP;

814
	xfs_ilock(ip, iolock);
815
	error = xfs_break_layouts(inode, &iolock, BREAK_UNMAP);
816 817 818
	if (error)
		goto out_unlock;

819 820 821 822
	if (mode & FALLOC_FL_PUNCH_HOLE) {
		error = xfs_free_file_space(ip, offset, len);
		if (error)
			goto out_unlock;
823
	} else if (mode & FALLOC_FL_COLLAPSE_RANGE) {
F
Fabian Frederick 已提交
824
		unsigned int blksize_mask = i_blocksize(inode) - 1;
825 826

		if (offset & blksize_mask || len & blksize_mask) {
D
Dave Chinner 已提交
827
			error = -EINVAL;
828 829 830
			goto out_unlock;
		}

831 832 833 834 835
		/*
		 * There is no need to overlap collapse range with EOF,
		 * in which case it is effectively a truncate operation
		 */
		if (offset + len >= i_size_read(inode)) {
D
Dave Chinner 已提交
836
			error = -EINVAL;
837 838 839
			goto out_unlock;
		}

840 841 842 843 844
		new_size = i_size_read(inode) - len;

		error = xfs_collapse_file_space(ip, offset, len);
		if (error)
			goto out_unlock;
845
	} else if (mode & FALLOC_FL_INSERT_RANGE) {
846 847
		unsigned int	blksize_mask = i_blocksize(inode) - 1;
		loff_t		isize = i_size_read(inode);
848 849 850 851 852 853

		if (offset & blksize_mask || len & blksize_mask) {
			error = -EINVAL;
			goto out_unlock;
		}

854 855 856 857 858
		/*
		 * New inode size must not exceed ->s_maxbytes, accounting for
		 * possible signed overflow.
		 */
		if (inode->i_sb->s_maxbytes - isize < len) {
859 860 861
			error = -EFBIG;
			goto out_unlock;
		}
862
		new_size = isize + len;
863 864

		/* Offset should be less than i_size */
865
		if (offset >= isize) {
866 867 868
			error = -EINVAL;
			goto out_unlock;
		}
869
		do_file_insert = true;
870
	} else {
871 872
		flags |= XFS_PREALLOC_SET;

873 874 875
		if (!(mode & FALLOC_FL_KEEP_SIZE) &&
		    offset + len > i_size_read(inode)) {
			new_size = offset + len;
D
Dave Chinner 已提交
876
			error = inode_newsize_ok(inode, new_size);
877 878 879
			if (error)
				goto out_unlock;
		}
880

881
		if (mode & FALLOC_FL_ZERO_RANGE) {
882
			error = xfs_zero_file_space(ip, offset, len);
883 884 885 886 887 888 889 890
		} else if (mode & FALLOC_FL_UNSHARE_RANGE) {
			error = xfs_reflink_unshare(ip, offset, len);
			if (error)
				goto out_unlock;

			if (!xfs_is_always_cow_inode(ip)) {
				error = xfs_alloc_file_space(ip, offset, len,
						XFS_BMAPI_PREALLOC);
891
			}
892 893 894 895 896 897 898 899 900 901
		} else {
			/*
			 * If always_cow mode we can't use preallocations and
			 * thus should not create them.
			 */
			if (xfs_is_always_cow_inode(ip)) {
				error = -EOPNOTSUPP;
				goto out_unlock;
			}

902 903
			error = xfs_alloc_file_space(ip, offset, len,
						     XFS_BMAPI_PREALLOC);
904
		}
905 906 907 908
		if (error)
			goto out_unlock;
	}

909
	if (file->f_flags & O_DSYNC)
910 911 912
		flags |= XFS_PREALLOC_SYNC;

	error = xfs_update_prealloc_flags(ip, flags);
913 914 915 916 917 918 919 920 921
	if (error)
		goto out_unlock;

	/* Change file size if needed */
	if (new_size) {
		struct iattr iattr;

		iattr.ia_valid = ATTR_SIZE;
		iattr.ia_size = new_size;
922
		error = xfs_vn_setattr_size(file_dentry(file), &iattr);
923 924
		if (error)
			goto out_unlock;
925 926
	}

927 928 929 930 931 932 933 934 935
	/*
	 * Perform hole insertion now that the file size has been
	 * updated so that if we crash during the operation we don't
	 * leave shifted extents past EOF and hence losing access to
	 * the data that is contained within them.
	 */
	if (do_file_insert)
		error = xfs_insert_file_space(ip, offset, len);

936
out_unlock:
937
	xfs_iunlock(ip, iolock);
D
Dave Chinner 已提交
938
	return error;
939 940
}

941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964
STATIC int
xfs_file_fadvise(
	struct file	*file,
	loff_t		start,
	loff_t		end,
	int		advice)
{
	struct xfs_inode *ip = XFS_I(file_inode(file));
	int ret;
	int lockflags = 0;

	/*
	 * Operations creating pages in page cache need protection from hole
	 * punching and similar ops
	 */
	if (advice == POSIX_FADV_WILLNEED) {
		lockflags = XFS_IOLOCK_SHARED;
		xfs_ilock(ip, lockflags);
	}
	ret = generic_fadvise(file, start, end, advice);
	if (lockflags)
		xfs_iunlock(ip, lockflags);
	return ret;
}
965

966
STATIC loff_t
967
xfs_file_remap_range(
968 969 970 971 972 973
	struct file		*file_in,
	loff_t			pos_in,
	struct file		*file_out,
	loff_t			pos_out,
	loff_t			len,
	unsigned int		remap_flags)
974
{
975 976 977 978 979 980 981 982 983
	struct inode		*inode_in = file_inode(file_in);
	struct xfs_inode	*src = XFS_I(inode_in);
	struct inode		*inode_out = file_inode(file_out);
	struct xfs_inode	*dest = XFS_I(inode_out);
	struct xfs_mount	*mp = src->i_mount;
	loff_t			remapped = 0;
	xfs_extlen_t		cowextsize;
	int			ret;

984 985
	if (remap_flags & ~(REMAP_FILE_DEDUP | REMAP_FILE_ADVISORY))
		return -EINVAL;
986

987 988 989 990 991 992 993 994 995 996 997 998 999 1000 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
	if (!xfs_sb_version_hasreflink(&mp->m_sb))
		return -EOPNOTSUPP;

	if (XFS_FORCED_SHUTDOWN(mp))
		return -EIO;

	/* Prepare and then clone file data. */
	ret = xfs_reflink_remap_prep(file_in, pos_in, file_out, pos_out,
			&len, remap_flags);
	if (ret < 0 || len == 0)
		return ret;

	trace_xfs_reflink_remap_range(src, pos_in, len, dest, pos_out);

	ret = xfs_reflink_remap_blocks(src, pos_in, dest, pos_out, len,
			&remapped);
	if (ret)
		goto out_unlock;

	/*
	 * Carry the cowextsize hint from src to dest if we're sharing the
	 * entire source file to the entire destination file, the source file
	 * has a cowextsize hint, and the destination file does not.
	 */
	cowextsize = 0;
	if (pos_in == 0 && len == i_size_read(inode_in) &&
	    (src->i_d.di_flags2 & XFS_DIFLAG2_COWEXTSIZE) &&
	    pos_out == 0 && len >= i_size_read(inode_out) &&
	    !(dest->i_d.di_flags2 & XFS_DIFLAG2_COWEXTSIZE))
		cowextsize = src->i_d.di_cowextsize;

	ret = xfs_reflink_update_dest(dest, pos_out + len, cowextsize,
			remap_flags);

out_unlock:
	xfs_reflink_remap_unlock(file_in, file_out);
	if (ret)
		trace_xfs_reflink_remap_range_error(dest, ret, _RET_IP_);
	return remapped > 0 ? remapped : ret;
1026
}
1027

L
Linus Torvalds 已提交
1028
STATIC int
1029
xfs_file_open(
L
Linus Torvalds 已提交
1030
	struct inode	*inode,
1031
	struct file	*file)
L
Linus Torvalds 已提交
1032
{
1033
	if (!(file->f_flags & O_LARGEFILE) && i_size_read(inode) > MAX_NON_LFS)
L
Linus Torvalds 已提交
1034
		return -EFBIG;
1035 1036
	if (XFS_FORCED_SHUTDOWN(XFS_M(inode->i_sb)))
		return -EIO;
1037
	file->f_mode |= FMODE_NOWAIT;
1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057
	return 0;
}

STATIC int
xfs_dir_open(
	struct inode	*inode,
	struct file	*file)
{
	struct xfs_inode *ip = XFS_I(inode);
	int		mode;
	int		error;

	error = xfs_file_open(inode, file);
	if (error)
		return error;

	/*
	 * If there are any blocks, read-ahead block 0 as we're almost
	 * certain to have the next operation be a read there.
	 */
1058
	mode = xfs_ilock_data_map_shared(ip);
1059
	if (ip->i_d.di_nextents > 0)
1060
		error = xfs_dir3_data_readahead(ip, 0, -1);
1061
	xfs_iunlock(ip, mode);
1062
	return error;
L
Linus Torvalds 已提交
1063 1064 1065
}

STATIC int
1066
xfs_file_release(
L
Linus Torvalds 已提交
1067 1068 1069
	struct inode	*inode,
	struct file	*filp)
{
D
Dave Chinner 已提交
1070
	return xfs_release(XFS_I(inode));
L
Linus Torvalds 已提交
1071 1072 1073
}

STATIC int
1074
xfs_file_readdir(
A
Al Viro 已提交
1075 1076
	struct file	*file,
	struct dir_context *ctx)
L
Linus Torvalds 已提交
1077
{
A
Al Viro 已提交
1078
	struct inode	*inode = file_inode(file);
1079
	xfs_inode_t	*ip = XFS_I(inode);
C
Christoph Hellwig 已提交
1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091
	size_t		bufsize;

	/*
	 * The Linux API doesn't pass down the total size of the buffer
	 * we read into down to the filesystem.  With the filldir concept
	 * it's not needed for correct information, but the XFS dir2 leaf
	 * code wants an estimate of the buffer size to calculate it's
	 * readahead window and size the buffers used for mapping to
	 * physical blocks.
	 *
	 * Try to give it an estimate that's good enough, maybe at some
	 * point we can change the ->readdir prototype to include the
E
Eric Sandeen 已提交
1092
	 * buffer size.  For now we use the current glibc buffer size.
C
Christoph Hellwig 已提交
1093
	 */
D
Darrick J. Wong 已提交
1094
	bufsize = (size_t)min_t(loff_t, XFS_READDIR_BUFSIZE, ip->i_d.di_size);
C
Christoph Hellwig 已提交
1095

1096
	return xfs_readdir(NULL, ip, ctx, bufsize);
1097 1098 1099 1100 1101 1102
}

STATIC loff_t
xfs_file_llseek(
	struct file	*file,
	loff_t		offset,
1103
	int		whence)
1104
{
1105 1106 1107 1108 1109
	struct inode		*inode = file->f_mapping->host;

	if (XFS_FORCED_SHUTDOWN(XFS_I(inode)->i_mount))
		return -EIO;

1110
	switch (whence) {
1111
	default:
1112
		return generic_file_llseek(file, offset, whence);
1113
	case SEEK_HOLE:
1114
		offset = iomap_seek_hole(inode, offset, &xfs_seek_iomap_ops);
1115
		break;
1116
	case SEEK_DATA:
1117
		offset = iomap_seek_data(inode, offset, &xfs_seek_iomap_ops);
1118
		break;
1119
	}
1120 1121 1122 1123

	if (offset < 0)
		return offset;
	return vfs_setpos(file, offset, inode->i_sb->s_maxbytes);
1124 1125
}

1126 1127 1128 1129 1130
/*
 * Locking for serialisation of IO during page faults. This results in a lock
 * ordering of:
 *
 * mmap_sem (MM)
1131
 *   sb_start_pagefault(vfs, freeze)
1132
 *     i_mmaplock (XFS - truncate serialisation)
1133 1134
 *       page_lock (MM)
 *         i_lock (XFS - extent map serialisation)
1135
 */
1136
static vm_fault_t
1137 1138 1139 1140
__xfs_filemap_fault(
	struct vm_fault		*vmf,
	enum page_entry_size	pe_size,
	bool			write_fault)
1141
{
1142
	struct inode		*inode = file_inode(vmf->vma->vm_file);
1143
	struct xfs_inode	*ip = XFS_I(inode);
1144
	vm_fault_t		ret;
1145

1146
	trace_xfs_filemap_fault(ip, pe_size, write_fault);
1147

1148 1149 1150 1151
	if (write_fault) {
		sb_start_pagefault(inode->i_sb);
		file_update_time(vmf->vma->vm_file);
	}
1152

1153
	xfs_ilock(XFS_I(inode), XFS_MMAPLOCK_SHARED);
1154
	if (IS_DAX(inode)) {
1155 1156
		pfn_t pfn;

1157 1158 1159
		ret = dax_iomap_fault(vmf, pe_size, &pfn, NULL,
				(write_fault && !vmf->cow_page) ?
				 &xfs_iomap_ops : &xfs_read_iomap_ops);
1160 1161
		if (ret & VM_FAULT_NEEDDSYNC)
			ret = dax_finish_sync_fault(vmf, pe_size, pfn);
1162
	} else {
1163 1164 1165 1166
		if (write_fault)
			ret = iomap_page_mkwrite(vmf, &xfs_iomap_ops);
		else
			ret = filemap_fault(vmf);
1167 1168 1169
	}
	xfs_iunlock(XFS_I(inode), XFS_MMAPLOCK_SHARED);

1170 1171
	if (write_fault)
		sb_end_pagefault(inode->i_sb);
1172
	return ret;
1173 1174
}

1175
static vm_fault_t
1176
xfs_filemap_fault(
1177 1178
	struct vm_fault		*vmf)
{
1179
	/* DAX can shortcut the normal fault path on write faults! */
1180 1181 1182
	return __xfs_filemap_fault(vmf, PE_SIZE_PTE,
			IS_DAX(file_inode(vmf->vma->vm_file)) &&
			(vmf->flags & FAULT_FLAG_WRITE));
1183 1184
}

1185
static vm_fault_t
1186
xfs_filemap_huge_fault(
1187 1188
	struct vm_fault		*vmf,
	enum page_entry_size	pe_size)
M
Matthew Wilcox 已提交
1189
{
1190
	if (!IS_DAX(file_inode(vmf->vma->vm_file)))
M
Matthew Wilcox 已提交
1191 1192
		return VM_FAULT_FALLBACK;

1193 1194 1195 1196
	/* DAX can shortcut the normal fault path on write faults! */
	return __xfs_filemap_fault(vmf, pe_size,
			(vmf->flags & FAULT_FLAG_WRITE));
}
M
Matthew Wilcox 已提交
1197

1198
static vm_fault_t
1199 1200 1201 1202
xfs_filemap_page_mkwrite(
	struct vm_fault		*vmf)
{
	return __xfs_filemap_fault(vmf, PE_SIZE_PTE, true);
M
Matthew Wilcox 已提交
1203 1204
}

1205
/*
1206 1207 1208
 * pfn_mkwrite was originally intended to ensure we capture time stamp updates
 * on write faults. In reality, it needs to serialise against truncate and
 * prepare memory for writing so handle is as standard write fault.
1209
 */
1210
static vm_fault_t
1211 1212 1213 1214
xfs_filemap_pfn_mkwrite(
	struct vm_fault		*vmf)
{

1215
	return __xfs_filemap_fault(vmf, PE_SIZE_PTE, true);
M
Matthew Wilcox 已提交
1216 1217
}

1218 1219
static const struct vm_operations_struct xfs_file_vm_ops = {
	.fault		= xfs_filemap_fault,
1220
	.huge_fault	= xfs_filemap_huge_fault,
1221 1222
	.map_pages	= filemap_map_pages,
	.page_mkwrite	= xfs_filemap_page_mkwrite,
1223
	.pfn_mkwrite	= xfs_filemap_pfn_mkwrite,
1224 1225 1226 1227 1228 1229 1230
};

STATIC int
xfs_file_mmap(
	struct file	*filp,
	struct vm_area_struct *vma)
{
1231 1232 1233
	struct dax_device 	*dax_dev;

	dax_dev = xfs_find_daxdev_for_inode(file_inode(filp));
1234
	/*
1235 1236
	 * We don't support synchronous mappings for non-DAX files and
	 * for DAX files if underneath dax_device is not synchronous.
1237
	 */
1238
	if (!daxdev_mapping_supported(vma, dax_dev))
1239 1240
		return -EOPNOTSUPP;

1241 1242 1243
	file_accessed(filp);
	vma->vm_ops = &xfs_file_vm_ops;
	if (IS_DAX(file_inode(filp)))
1244
		vma->vm_flags |= VM_HUGEPAGE;
1245
	return 0;
1246 1247
}

1248
const struct file_operations xfs_file_operations = {
1249
	.llseek		= xfs_file_llseek,
A
Al Viro 已提交
1250
	.read_iter	= xfs_file_read_iter,
A
Al Viro 已提交
1251
	.write_iter	= xfs_file_write_iter,
1252
	.splice_read	= generic_file_splice_read,
A
Al Viro 已提交
1253
	.splice_write	= iter_file_splice_write,
1254
	.iopoll		= iomap_dio_iopoll,
1255
	.unlocked_ioctl	= xfs_file_ioctl,
L
Linus Torvalds 已提交
1256
#ifdef CONFIG_COMPAT
1257
	.compat_ioctl	= xfs_file_compat_ioctl,
L
Linus Torvalds 已提交
1258
#endif
1259
	.mmap		= xfs_file_mmap,
1260
	.mmap_supported_flags = MAP_SYNC,
1261 1262 1263
	.open		= xfs_file_open,
	.release	= xfs_file_release,
	.fsync		= xfs_file_fsync,
1264
	.get_unmapped_area = thp_get_unmapped_area,
1265
	.fallocate	= xfs_file_fallocate,
1266
	.fadvise	= xfs_file_fadvise,
1267
	.remap_file_range = xfs_file_remap_range,
L
Linus Torvalds 已提交
1268 1269
};

1270
const struct file_operations xfs_dir_file_operations = {
1271
	.open		= xfs_dir_open,
L
Linus Torvalds 已提交
1272
	.read		= generic_read_dir,
1273
	.iterate_shared	= xfs_file_readdir,
1274
	.llseek		= generic_file_llseek,
1275
	.unlocked_ioctl	= xfs_file_ioctl,
1276
#ifdef CONFIG_COMPAT
1277
	.compat_ioctl	= xfs_file_compat_ioctl,
1278
#endif
1279
	.fsync		= xfs_dir_fsync,
L
Linus Torvalds 已提交
1280
};