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xfs: fix fstrim offset calculations
xfs_ioc_fstrim() doesn't treat the incoming offset and length correctly. It treats them as a filesystem block address, rather than a disk address. This is wrong because the range passed in is a linear representation, while the filesystem block address notation is a sparse representation. Hence we cannot convert the range direct to filesystem block units and then use that for calculating the range to trim. While this sounds dangerous, the problem is limited to calculating what AGs need to be trimmed. The code that calcuates the actual ranges to trim gets the right result (i.e. only ever discards free space), even though it uses the wrong ranges to limit what is trimmed. Hence this is not a bug that endangers user data. Fix this by treating the range as a disk address range and use the appropriate functions to convert the range into the desired formats for calculations. Further, fix the first free extent lookup (the longest) to actually find the largest free extent. Currently this lookup uses a <= lookup, which results in finding the extent to the left of the largest because we can never get an exact match on the largest extent. This is due to the fact that while we know it's size, we don't know it's location and so the exact match fails and we move one record to the left to get the next largest extent. Instead, use a >= search so that the lookup returns the largest extent regardless of the fact we don't get an exact match on it. Signed-off-by: Dave Chinner <dchinner@redhat.com> Reviewed-by: Christoph Hellwig <hch@lst.de> Signed-off-by: Ben Myers <bpm@sgi.com>
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3948659e30
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a66d636385
@ -69,7 +69,7 @@ xfs_alloc_lookup_eq(
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* Lookup the first record greater than or equal to [bno, len]
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* in the btree given by cur.
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*/
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STATIC int /* error */
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int /* error */
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xfs_alloc_lookup_ge(
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struct xfs_btree_cur *cur, /* btree cursor */
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xfs_agblock_t bno, /* starting block of extent */
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@ -248,6 +248,13 @@ xfs_alloc_lookup_le(
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xfs_extlen_t len, /* length of extent */
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int *stat); /* success/failure */
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int /* error */
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xfs_alloc_lookup_ge(
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struct xfs_btree_cur *cur, /* btree cursor */
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xfs_agblock_t bno, /* starting block of extent */
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xfs_extlen_t len, /* length of extent */
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int *stat); /* success/failure */
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int /* error */
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xfs_alloc_get_rec(
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struct xfs_btree_cur *cur, /* btree cursor */
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@ -37,9 +37,9 @@ STATIC int
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xfs_trim_extents(
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struct xfs_mount *mp,
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xfs_agnumber_t agno,
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xfs_fsblock_t start,
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xfs_fsblock_t end,
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xfs_fsblock_t minlen,
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xfs_daddr_t start,
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xfs_daddr_t end,
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xfs_daddr_t minlen,
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__uint64_t *blocks_trimmed)
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{
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struct block_device *bdev = mp->m_ddev_targp->bt_bdev;
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@ -67,7 +67,7 @@ xfs_trim_extents(
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/*
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* Look up the longest btree in the AGF and start with it.
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*/
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error = xfs_alloc_lookup_le(cur, 0,
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error = xfs_alloc_lookup_ge(cur, 0,
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be32_to_cpu(XFS_BUF_TO_AGF(agbp)->agf_longest), &i);
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if (error)
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goto out_del_cursor;
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@ -77,8 +77,10 @@ xfs_trim_extents(
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* enough to be worth discarding.
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*/
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while (i) {
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xfs_agblock_t fbno;
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xfs_extlen_t flen;
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xfs_agblock_t fbno;
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xfs_extlen_t flen;
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xfs_daddr_t dbno;
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xfs_extlen_t dlen;
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error = xfs_alloc_get_rec(cur, &fbno, &flen, &i);
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if (error)
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@ -86,10 +88,18 @@ xfs_trim_extents(
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XFS_WANT_CORRUPTED_GOTO(i == 1, out_del_cursor);
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ASSERT(flen <= be32_to_cpu(XFS_BUF_TO_AGF(agbp)->agf_longest));
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/*
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* use daddr format for all range/len calculations as that is
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* the format the range/len variables are supplied in by
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* userspace.
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*/
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dbno = XFS_AGB_TO_DADDR(mp, agno, fbno);
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dlen = XFS_FSB_TO_BB(mp, flen);
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/*
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* Too small? Give up.
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*/
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if (flen < minlen) {
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if (dlen < minlen) {
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trace_xfs_discard_toosmall(mp, agno, fbno, flen);
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goto out_del_cursor;
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}
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@ -99,8 +109,7 @@ xfs_trim_extents(
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* supposed to discard skip it. Do not bother to trim
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* down partially overlapping ranges for now.
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*/
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if (XFS_AGB_TO_FSB(mp, agno, fbno) + flen < start ||
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XFS_AGB_TO_FSB(mp, agno, fbno) > end) {
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if (dbno + dlen < start || dbno > end) {
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trace_xfs_discard_exclude(mp, agno, fbno, flen);
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goto next_extent;
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}
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@ -115,10 +124,7 @@ xfs_trim_extents(
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}
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trace_xfs_discard_extent(mp, agno, fbno, flen);
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error = -blkdev_issue_discard(bdev,
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XFS_AGB_TO_DADDR(mp, agno, fbno),
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XFS_FSB_TO_BB(mp, flen),
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GFP_NOFS, 0);
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error = -blkdev_issue_discard(bdev, dbno, dlen, GFP_NOFS, 0);
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if (error)
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goto out_del_cursor;
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*blocks_trimmed += flen;
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@ -137,6 +143,15 @@ out_put_perag:
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return error;
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}
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/*
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* trim a range of the filesystem.
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*
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* Note: the parameters passed from userspace are byte ranges into the
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* filesystem which does not match to the format we use for filesystem block
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* addressing. FSB addressing is sparse (AGNO|AGBNO), while the incoming format
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* is a linear address range. Hence we need to use DADDR based conversions and
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* comparisons for determining the correct offset and regions to trim.
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*/
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int
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xfs_ioc_trim(
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struct xfs_mount *mp,
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@ -145,7 +160,7 @@ xfs_ioc_trim(
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struct request_queue *q = mp->m_ddev_targp->bt_bdev->bd_disk->queue;
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unsigned int granularity = q->limits.discard_granularity;
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struct fstrim_range range;
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xfs_fsblock_t start, end, minlen;
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xfs_daddr_t start, end, minlen;
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xfs_agnumber_t start_agno, end_agno, agno;
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__uint64_t blocks_trimmed = 0;
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int error, last_error = 0;
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@ -159,22 +174,22 @@ xfs_ioc_trim(
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/*
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* Truncating down the len isn't actually quite correct, but using
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* XFS_B_TO_FSB would mean we trivially get overflows for values
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* BBTOB would mean we trivially get overflows for values
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* of ULLONG_MAX or slightly lower. And ULLONG_MAX is the default
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* used by the fstrim application. In the end it really doesn't
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* matter as trimming blocks is an advisory interface.
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*/
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start = XFS_B_TO_FSBT(mp, range.start);
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end = start + XFS_B_TO_FSBT(mp, range.len) - 1;
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minlen = XFS_B_TO_FSB(mp, max_t(u64, granularity, range.minlen));
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start = BTOBB(range.start);
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end = start + BTOBBT(range.len) - 1;
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minlen = BTOBB(max_t(u64, granularity, range.minlen));
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if (start >= mp->m_sb.sb_dblocks)
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if (XFS_BB_TO_FSB(mp, start) >= mp->m_sb.sb_dblocks)
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return -XFS_ERROR(EINVAL);
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if (end > mp->m_sb.sb_dblocks - 1)
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end = mp->m_sb.sb_dblocks - 1;
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if (end > XFS_FSB_TO_BB(mp, mp->m_sb.sb_dblocks) - 1)
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end = XFS_FSB_TO_BB(mp, mp->m_sb.sb_dblocks)- 1;
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start_agno = XFS_FSB_TO_AGNO(mp, start);
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end_agno = XFS_FSB_TO_AGNO(mp, end);
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start_agno = xfs_daddr_to_agno(mp, start);
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end_agno = xfs_daddr_to_agno(mp, end);
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for (agno = start_agno; agno <= end_agno; agno++) {
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error = -xfs_trim_extents(mp, agno, start, end, minlen,
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