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xfs: repair the inode core and forks of a metadata inode
Add a helper function to repair the core and forks of a metadata inode, so that we can get move onto the task of repairing higher level metadata that lives in an inode. Signed-off-by: Darrick J. Wong <djwong@kernel.org> Reviewed-by: Christoph Hellwig <hch@lst.de>
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@ -86,6 +86,9 @@ struct xrep_bmap {
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/* What d the REFLINK flag be set when the repair is over? */
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enum reflink_scan_state reflink_scan;
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/* Do we allow unwritten extents? */
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bool allow_unwritten;
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};
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/* Is this space extent shared? Flag the inode if it is. */
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@ -262,6 +265,10 @@ xrep_bmap_walk_rmap(
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!(rec->rm_flags & XFS_RMAP_ATTR_FORK))
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return 0;
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/* Reject unwritten extents if we don't allow those. */
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if ((rec->rm_flags & XFS_RMAP_UNWRITTEN) && !rb->allow_unwritten)
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return -EFSCORRUPTED;
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fsbno = XFS_AGB_TO_FSB(mp, cur->bc_ag.pag->pag_agno,
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rec->rm_startblock);
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@ -780,10 +787,11 @@ xrep_bmap_init_reflink_scan(
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}
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/* Repair an inode fork. */
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STATIC int
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int
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xrep_bmap(
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struct xfs_scrub *sc,
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int whichfork)
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int whichfork,
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bool allow_unwritten)
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{
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struct xrep_bmap *rb;
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char *descr;
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@ -803,6 +811,7 @@ xrep_bmap(
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rb->sc = sc;
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rb->whichfork = whichfork;
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rb->reflink_scan = xrep_bmap_init_reflink_scan(sc, whichfork);
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rb->allow_unwritten = allow_unwritten;
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/* Set up enough storage to handle the max records for this fork. */
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large_extcount = xfs_has_large_extent_counts(sc->mp);
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@ -846,7 +855,7 @@ int
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xrep_bmap_data(
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struct xfs_scrub *sc)
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{
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return xrep_bmap(sc, XFS_DATA_FORK);
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return xrep_bmap(sc, XFS_DATA_FORK, true);
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}
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/* Repair an inode's attr fork. */
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@ -854,5 +863,5 @@ int
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xrep_bmap_attr(
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struct xfs_scrub *sc)
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{
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return xrep_bmap(sc, XFS_ATTR_FORK);
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return xrep_bmap(sc, XFS_ATTR_FORK, false);
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}
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@ -29,6 +29,7 @@
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#include "xfs_defer.h"
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#include "xfs_errortag.h"
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#include "xfs_error.h"
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#include "xfs_reflink.h"
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#include "scrub/scrub.h"
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#include "scrub/common.h"
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#include "scrub/trace.h"
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@ -962,3 +963,155 @@ xrep_will_attempt(
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return false;
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}
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/* Try to fix some part of a metadata inode by calling another scrubber. */
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STATIC int
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xrep_metadata_inode_subtype(
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struct xfs_scrub *sc,
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unsigned int scrub_type)
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{
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__u32 smtype = sc->sm->sm_type;
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__u32 smflags = sc->sm->sm_flags;
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unsigned int sick_mask = sc->sick_mask;
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int error;
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/*
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* Let's see if the inode needs repair. We're going to open-code calls
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* to the scrub and repair functions so that we can hang on to the
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* resources that we already acquired instead of using the standard
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* setup/teardown routines.
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*/
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sc->sm->sm_flags &= ~XFS_SCRUB_FLAGS_OUT;
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sc->sm->sm_type = scrub_type;
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switch (scrub_type) {
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case XFS_SCRUB_TYPE_INODE:
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error = xchk_inode(sc);
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break;
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case XFS_SCRUB_TYPE_BMBTD:
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error = xchk_bmap_data(sc);
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break;
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case XFS_SCRUB_TYPE_BMBTA:
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error = xchk_bmap_attr(sc);
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break;
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default:
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ASSERT(0);
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error = -EFSCORRUPTED;
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}
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if (error)
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goto out;
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if (!xrep_will_attempt(sc))
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goto out;
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/*
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* Repair some part of the inode. This will potentially join the inode
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* to the transaction.
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*/
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switch (scrub_type) {
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case XFS_SCRUB_TYPE_INODE:
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error = xrep_inode(sc);
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break;
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case XFS_SCRUB_TYPE_BMBTD:
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error = xrep_bmap(sc, XFS_DATA_FORK, false);
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break;
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case XFS_SCRUB_TYPE_BMBTA:
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error = xrep_bmap(sc, XFS_ATTR_FORK, false);
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break;
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}
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if (error)
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goto out;
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/*
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* Finish all deferred intent items and then roll the transaction so
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* that the inode will not be joined to the transaction when we exit
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* the function.
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*/
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error = xfs_defer_finish(&sc->tp);
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if (error)
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goto out;
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error = xfs_trans_roll(&sc->tp);
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if (error)
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goto out;
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/*
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* Clear the corruption flags and re-check the metadata that we just
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* repaired.
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*/
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sc->sm->sm_flags &= ~XFS_SCRUB_FLAGS_OUT;
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switch (scrub_type) {
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case XFS_SCRUB_TYPE_INODE:
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error = xchk_inode(sc);
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break;
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case XFS_SCRUB_TYPE_BMBTD:
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error = xchk_bmap_data(sc);
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break;
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case XFS_SCRUB_TYPE_BMBTA:
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error = xchk_bmap_attr(sc);
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break;
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}
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if (error)
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goto out;
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/* If corruption persists, the repair has failed. */
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if (xchk_needs_repair(sc->sm)) {
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error = -EFSCORRUPTED;
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goto out;
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}
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out:
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sc->sick_mask = sick_mask;
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sc->sm->sm_type = smtype;
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sc->sm->sm_flags = smflags;
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return error;
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}
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/*
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* Repair the ondisk forks of a metadata inode. The caller must ensure that
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* sc->ip points to the metadata inode and the ILOCK is held on that inode.
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* The inode must not be joined to the transaction before the call, and will
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* not be afterwards.
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*/
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int
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xrep_metadata_inode_forks(
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struct xfs_scrub *sc)
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{
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bool dirty = false;
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int error;
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/* Repair the inode record and the data fork. */
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error = xrep_metadata_inode_subtype(sc, XFS_SCRUB_TYPE_INODE);
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if (error)
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return error;
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error = xrep_metadata_inode_subtype(sc, XFS_SCRUB_TYPE_BMBTD);
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if (error)
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return error;
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/* Make sure the attr fork looks ok before we delete it. */
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error = xrep_metadata_inode_subtype(sc, XFS_SCRUB_TYPE_BMBTA);
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if (error)
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return error;
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/* Clear the reflink flag since metadata never shares. */
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if (xfs_is_reflink_inode(sc->ip)) {
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dirty = true;
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xfs_trans_ijoin(sc->tp, sc->ip, 0);
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error = xfs_reflink_clear_inode_flag(sc->ip, &sc->tp);
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if (error)
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return error;
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}
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/*
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* If we modified the inode, roll the transaction but don't rejoin the
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* inode to the new transaction because xrep_bmap_data can do that.
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*/
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if (dirty) {
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error = xfs_trans_roll(&sc->tp);
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if (error)
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return error;
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dirty = false;
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}
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return 0;
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}
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@ -82,6 +82,8 @@ int xrep_ino_dqattach(struct xfs_scrub *sc);
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int xrep_ino_ensure_extent_count(struct xfs_scrub *sc, int whichfork,
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xfs_extnum_t nextents);
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int xrep_reset_perag_resv(struct xfs_scrub *sc);
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int xrep_bmap(struct xfs_scrub *sc, int whichfork, bool allow_unwritten);
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int xrep_metadata_inode_forks(struct xfs_scrub *sc);
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/* Repair setup functions */
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int xrep_setup_ag_allocbt(struct xfs_scrub *sc);
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