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md/raid5: avoid reading from known bad blocks.
There are two times that we might read in raid5: 1/ when a read request fits within a chunk on a single working device. In this case, if there is any bad block in the range of the read, we simply fail the cache-bypass read and perform the read though the stripe cache. 2/ when reading into the stripe cache. In this case we mark as failed any device which has a bad block in that strip (1 page wide). Note that we will both avoid reading and avoid writing. This is correct (as we will never read from the block, there is no point writing), but not optimal (as writing could 'fix' the error) - that will be addressed later. If we have not seen any write errors on the device yet, we treat a bad block like a recent read error. This will encourage an attempt to fix the read error which will either generate a write error, or will ensure good data is stored there. We don't yet forget the bad block in that case. That comes later. Now that we honour bad blocks when reading we can allow devices with bad blocks into the array. Signed-off-by: NeilBrown <neilb@suse.de>
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62096bce23
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31c176ecdf
@ -2923,6 +2923,9 @@ static void analyse_stripe(struct stripe_head *sh, struct stripe_head_state *s)
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spin_lock_irq(&conf->device_lock);
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for (i=disks; i--; ) {
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mdk_rdev_t *rdev;
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sector_t first_bad;
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int bad_sectors;
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int is_bad = 0;
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dev = &sh->dev[i];
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@ -2959,15 +2962,32 @@ static void analyse_stripe(struct stripe_head *sh, struct stripe_head_state *s)
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if (dev->written)
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s->written++;
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rdev = rcu_dereference(conf->disks[i].rdev);
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if (s->blocked_rdev == NULL &&
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rdev && unlikely(test_bit(Blocked, &rdev->flags))) {
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s->blocked_rdev = rdev;
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atomic_inc(&rdev->nr_pending);
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if (rdev) {
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is_bad = is_badblock(rdev, sh->sector, STRIPE_SECTORS,
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&first_bad, &bad_sectors);
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if (s->blocked_rdev == NULL
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&& (test_bit(Blocked, &rdev->flags)
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|| is_bad < 0)) {
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if (is_bad < 0)
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set_bit(BlockedBadBlocks,
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&rdev->flags);
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s->blocked_rdev = rdev;
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atomic_inc(&rdev->nr_pending);
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}
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}
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clear_bit(R5_Insync, &dev->flags);
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if (!rdev)
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/* Not in-sync */;
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else if (test_bit(In_sync, &rdev->flags))
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else if (is_bad) {
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/* also not in-sync */
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if (!test_bit(WriteErrorSeen, &rdev->flags)) {
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/* treat as in-sync, but with a read error
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* which we can now try to correct
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*/
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set_bit(R5_Insync, &dev->flags);
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set_bit(R5_ReadError, &dev->flags);
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}
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} else if (test_bit(In_sync, &rdev->flags))
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set_bit(R5_Insync, &dev->flags);
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else {
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/* in sync if before recovery_offset */
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@ -3471,6 +3491,9 @@ static int chunk_aligned_read(mddev_t *mddev, struct bio * raid_bio)
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rcu_read_lock();
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rdev = rcu_dereference(conf->disks[dd_idx].rdev);
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if (rdev && test_bit(In_sync, &rdev->flags)) {
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sector_t first_bad;
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int bad_sectors;
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atomic_inc(&rdev->nr_pending);
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rcu_read_unlock();
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raid_bio->bi_next = (void*)rdev;
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@ -3478,8 +3501,10 @@ static int chunk_aligned_read(mddev_t *mddev, struct bio * raid_bio)
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align_bi->bi_flags &= ~(1 << BIO_SEG_VALID);
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align_bi->bi_sector += rdev->data_offset;
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if (!bio_fits_rdev(align_bi)) {
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/* too big in some way */
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if (!bio_fits_rdev(align_bi) ||
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is_badblock(rdev, align_bi->bi_sector, align_bi->bi_size>>9,
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&first_bad, &bad_sectors)) {
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/* too big in some way, or has a known bad block */
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bio_put(align_bi);
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rdev_dec_pending(rdev, mddev);
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return 0;
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@ -4671,10 +4696,6 @@ static int run(mddev_t *mddev)
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* 0 for a fully functional array, 1 or 2 for a degraded array.
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*/
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list_for_each_entry(rdev, &mddev->disks, same_set) {
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if (rdev->badblocks.count) {
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printk(KERN_ERR "md/raid5: cannot handle bad blocks yet\n");
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goto abort;
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}
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if (rdev->raid_disk < 0)
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continue;
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if (test_bit(In_sync, &rdev->flags)) {
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@ -4983,9 +5004,6 @@ static int raid5_add_disk(mddev_t *mddev, mdk_rdev_t *rdev)
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int first = 0;
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int last = conf->raid_disks - 1;
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if (rdev->badblocks.count)
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return -EINVAL;
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if (has_failed(conf))
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/* no point adding a device */
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return -EINVAL;
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