xfs: give xfs_extfree_intent its own perag reference
Give the xfs_extfree_intent an passive reference to the perag structure data. This reference will be used to enable scrub intent draining functionality in subsequent patches. The space being freed must already be allocated, so we need to able to run even if the AG is being offlined or shrunk. Signed-off-by: Darrick J. Wong <djwong@kernel.org> Reviewed-by: Dave Chinner <dchinner@redhat.com>
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b2ccab3199
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f6b384631e
fs/xfs
@ -2405,6 +2405,7 @@ xfs_defer_agfl_block(
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trace_xfs_agfl_free_defer(mp, agno, 0, agbno, 1);
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xfs_extent_free_get_group(mp, xefi);
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xfs_defer_add(tp, XFS_DEFER_OPS_TYPE_AGFL_FREE, &xefi->xefi_list);
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}
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@ -2421,8 +2422,8 @@ __xfs_free_extent_later(
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bool skip_discard)
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{
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struct xfs_extent_free_item *xefi;
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#ifdef DEBUG
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struct xfs_mount *mp = tp->t_mountp;
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#ifdef DEBUG
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xfs_agnumber_t agno;
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xfs_agblock_t agbno;
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@ -2456,9 +2457,11 @@ __xfs_free_extent_later(
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} else {
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xefi->xefi_owner = XFS_RMAP_OWN_NULL;
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}
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trace_xfs_bmap_free_defer(tp->t_mountp,
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trace_xfs_bmap_free_defer(mp,
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XFS_FSB_TO_AGNO(tp->t_mountp, bno), 0,
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XFS_FSB_TO_AGBNO(tp->t_mountp, bno), len);
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xfs_extent_free_get_group(mp, xefi);
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xfs_defer_add(tp, XFS_DEFER_OPS_TYPE_FREE, &xefi->xefi_list);
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}
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@ -237,9 +237,13 @@ struct xfs_extent_free_item {
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uint64_t xefi_owner;
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xfs_fsblock_t xefi_startblock;/* starting fs block number */
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xfs_extlen_t xefi_blockcount;/* number of blocks in extent */
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struct xfs_perag *xefi_pag;
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unsigned int xefi_flags;
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};
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void xfs_extent_free_get_group(struct xfs_mount *mp,
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struct xfs_extent_free_item *xefi);
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#define XFS_EFI_SKIP_DISCARD (1U << 0) /* don't issue discard */
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#define XFS_EFI_ATTR_FORK (1U << 1) /* freeing attr fork block */
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#define XFS_EFI_BMBT_BLOCK (1U << 2) /* freeing bmap btree block */
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@ -350,10 +350,7 @@ xfs_trans_free_extent(
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struct xfs_owner_info oinfo = { };
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struct xfs_mount *mp = tp->t_mountp;
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struct xfs_extent *extp;
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struct xfs_perag *pag;
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uint next_extent;
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xfs_agnumber_t agno = XFS_FSB_TO_AGNO(mp,
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xefi->xefi_startblock);
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xfs_agblock_t agbno = XFS_FSB_TO_AGBNO(mp,
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xefi->xefi_startblock);
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int error;
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@ -364,14 +361,12 @@ xfs_trans_free_extent(
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if (xefi->xefi_flags & XFS_EFI_BMBT_BLOCK)
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oinfo.oi_flags |= XFS_OWNER_INFO_BMBT_BLOCK;
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trace_xfs_bmap_free_deferred(tp->t_mountp, agno, 0, agbno,
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xefi->xefi_blockcount);
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trace_xfs_bmap_free_deferred(tp->t_mountp, xefi->xefi_pag->pag_agno, 0,
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agbno, xefi->xefi_blockcount);
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pag = xfs_perag_get(mp, agno);
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error = __xfs_free_extent(tp, pag, agbno, xefi->xefi_blockcount,
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&oinfo, XFS_AG_RESV_NONE,
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error = __xfs_free_extent(tp, xefi->xefi_pag, agbno,
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xefi->xefi_blockcount, &oinfo, XFS_AG_RESV_NONE,
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xefi->xefi_flags & XFS_EFI_SKIP_DISCARD);
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xfs_perag_put(pag);
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/*
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* Mark the transaction dirty, even on error. This ensures the
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@ -400,14 +395,13 @@ xfs_extent_free_diff_items(
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const struct list_head *a,
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const struct list_head *b)
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{
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struct xfs_mount *mp = priv;
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struct xfs_extent_free_item *ra;
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struct xfs_extent_free_item *rb;
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ra = container_of(a, struct xfs_extent_free_item, xefi_list);
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rb = container_of(b, struct xfs_extent_free_item, xefi_list);
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return XFS_FSB_TO_AGNO(mp, ra->xefi_startblock) -
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XFS_FSB_TO_AGNO(mp, rb->xefi_startblock);
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return ra->xefi_pag->pag_agno - rb->xefi_pag->pag_agno;
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}
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/* Log a free extent to the intent item. */
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@ -466,6 +460,26 @@ xfs_extent_free_create_done(
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return &xfs_trans_get_efd(tp, EFI_ITEM(intent), count)->efd_item;
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}
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/* Take a passive ref to the AG containing the space we're freeing. */
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void
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xfs_extent_free_get_group(
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struct xfs_mount *mp,
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struct xfs_extent_free_item *xefi)
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{
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xfs_agnumber_t agno;
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agno = XFS_FSB_TO_AGNO(mp, xefi->xefi_startblock);
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xefi->xefi_pag = xfs_perag_get(mp, agno);
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}
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/* Release a passive AG ref after some freeing work. */
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static inline void
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xfs_extent_free_put_group(
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struct xfs_extent_free_item *xefi)
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{
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xfs_perag_put(xefi->xefi_pag);
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}
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/* Process a free extent. */
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STATIC int
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xfs_extent_free_finish_item(
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@ -480,6 +494,8 @@ xfs_extent_free_finish_item(
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xefi = container_of(item, struct xfs_extent_free_item, xefi_list);
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error = xfs_trans_free_extent(tp, EFD_ITEM(done), xefi);
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xfs_extent_free_put_group(xefi);
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kmem_cache_free(xfs_extfree_item_cache, xefi);
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return error;
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}
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@ -500,6 +516,8 @@ xfs_extent_free_cancel_item(
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struct xfs_extent_free_item *xefi;
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xefi = container_of(item, struct xfs_extent_free_item, xefi_list);
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xfs_extent_free_put_group(xefi);
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kmem_cache_free(xfs_extfree_item_cache, xefi);
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}
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@ -530,24 +548,21 @@ xfs_agfl_free_finish_item(
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struct xfs_extent *extp;
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struct xfs_buf *agbp;
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int error;
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xfs_agnumber_t agno;
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xfs_agblock_t agbno;
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uint next_extent;
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struct xfs_perag *pag;
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xefi = container_of(item, struct xfs_extent_free_item, xefi_list);
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ASSERT(xefi->xefi_blockcount == 1);
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agno = XFS_FSB_TO_AGNO(mp, xefi->xefi_startblock);
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agbno = XFS_FSB_TO_AGBNO(mp, xefi->xefi_startblock);
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oinfo.oi_owner = xefi->xefi_owner;
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trace_xfs_agfl_free_deferred(mp, agno, 0, agbno, xefi->xefi_blockcount);
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trace_xfs_agfl_free_deferred(mp, xefi->xefi_pag->pag_agno, 0, agbno,
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xefi->xefi_blockcount);
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pag = xfs_perag_get(mp, agno);
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error = xfs_alloc_read_agf(pag, tp, 0, &agbp);
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error = xfs_alloc_read_agf(xefi->xefi_pag, tp, 0, &agbp);
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if (!error)
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error = xfs_free_agfl_block(tp, agno, agbno, agbp, &oinfo);
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xfs_perag_put(pag);
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error = xfs_free_agfl_block(tp, xefi->xefi_pag->pag_agno,
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agbno, agbp, &oinfo);
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/*
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* Mark the transaction dirty, even on error. This ensures the
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@ -566,6 +581,7 @@ xfs_agfl_free_finish_item(
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extp->ext_len = xefi->xefi_blockcount;
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efdp->efd_next_extent++;
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xfs_extent_free_put_group(xefi);
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kmem_cache_free(xfs_extfree_item_cache, xefi);
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return error;
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}
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@ -636,7 +652,9 @@ xfs_efi_item_recover(
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fake.xefi_startblock = extp->ext_start;
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fake.xefi_blockcount = extp->ext_len;
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xfs_extent_free_get_group(mp, &fake);
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error = xfs_trans_free_extent(tp, efdp, &fake);
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xfs_extent_free_put_group(&fake);
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if (error == -EFSCORRUPTED)
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XFS_CORRUPTION_ERROR(__func__, XFS_ERRLEVEL_LOW, mp,
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extp, sizeof(*extp));
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