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bcachefs: bcachefs_metadata_version_disk_accounting_inum
This adds another disk accounting counter to track usage per inode number (any snapshot ID). This will be used for a couple things: - It'll give us a way to tell the user how much space a given file ista consuming in all snapshots; i.e. how much extra space it's consuming due to snapshot versioning. - It counts number of extents and total size of extents (both in btree keyspace sectors and actual disk usage), meaning it gives us average extent size: that is, it'll let us cheaply find fragmented files that should be defragmented. Signed-off-by: Kent Overstreet <kent.overstreet@linux.dev>
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5132b99bb6
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58474f76a7
@ -676,7 +676,8 @@ struct bch_sb_field_ext {
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x(mi_btree_bitmap, BCH_VERSION(1, 7)) \
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x(bucket_stripe_sectors, BCH_VERSION(1, 8)) \
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x(disk_accounting_v2, BCH_VERSION(1, 9)) \
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x(disk_accounting_v3, BCH_VERSION(1, 10))
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x(disk_accounting_v3, BCH_VERSION(1, 10)) \
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x(disk_accounting_inum, BCH_VERSION(1, 11))
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enum bcachefs_metadata_version {
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bcachefs_metadata_version_min = 9,
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@ -810,6 +810,20 @@ static int __trigger_extent(struct btree_trans *trans,
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ret = bch2_disk_accounting_mod(trans, &acc_btree_key, &replicas_sectors, 1, gc);
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if (ret)
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return ret;
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} else {
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bool insert = !(flags & BTREE_TRIGGER_overwrite);
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struct disk_accounting_pos acc_inum_key = {
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.type = BCH_DISK_ACCOUNTING_inum,
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.inum.inum = k.k->p.inode,
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};
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s64 v[3] = {
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insert ? 1 : -1,
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insert ? k.k->size : -((s64) k.k->size),
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replicas_sectors,
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};
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ret = bch2_disk_accounting_mod(trans, &acc_inum_key, v, ARRAY_SIZE(v), gc);
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if (ret)
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return ret;
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}
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if (bch2_bkey_rebalance_opts(k)) {
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@ -768,6 +768,9 @@ void bch2_verify_accounting_clean(struct bch_fs *c)
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if (acc_k.type >= BCH_DISK_ACCOUNTING_TYPE_NR)
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continue;
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if (acc_k.type == BCH_DISK_ACCOUNTING_inum)
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continue;
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bch2_accounting_mem_read(c, k.k->p, v, nr);
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if (memcmp(a.v->d, v, nr * sizeof(u64))) {
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@ -116,6 +116,9 @@ static inline int bch2_accounting_mem_mod_locked(struct btree_trans *trans, stru
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struct disk_accounting_pos acc_k;
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bpos_to_disk_accounting_pos(&acc_k, a.k->p);
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if (acc_k.type == BCH_DISK_ACCOUNTING_inum)
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return 0;
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if (!gc && !read) {
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switch (acc_k.type) {
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case BCH_DISK_ACCOUNTING_persistent_reserved:
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@ -103,7 +103,8 @@ static inline bool data_type_is_hidden(enum bch_data_type type)
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x(compression, 4) \
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x(snapshot, 5) \
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x(btree, 6) \
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x(rebalance_work, 7)
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x(rebalance_work, 7) \
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x(inum, 8)
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enum disk_accounting_type {
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#define x(f, nr) BCH_DISK_ACCOUNTING_##f = nr,
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@ -136,6 +137,10 @@ struct bch_acct_btree {
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__u32 id;
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} __packed;
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struct bch_acct_inum {
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__u64 inum;
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} __packed;
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struct bch_acct_rebalance_work {
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};
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@ -152,6 +157,7 @@ struct disk_accounting_pos {
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struct bch_acct_snapshot snapshot;
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struct bch_acct_btree btree;
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struct bch_acct_rebalance_work rebalance_work;
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struct bch_acct_inum inum;
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} __packed;
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} __packed;
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struct bpos _pad;
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@ -72,7 +72,10 @@
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BCH_FSCK_ERR_accounting_key_replicas_nr_devs_0, \
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BCH_FSCK_ERR_accounting_key_replicas_nr_required_bad, \
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BCH_FSCK_ERR_accounting_key_replicas_devs_unsorted, \
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BCH_FSCK_ERR_accounting_key_junk_at_end)
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BCH_FSCK_ERR_accounting_key_junk_at_end) \
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x(disk_accounting_inum, \
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BIT_ULL(BCH_RECOVERY_PASS_check_allocations), \
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BCH_FSCK_ERR_accounting_mismatch)
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#define DOWNGRADE_TABLE() \
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x(bucket_stripe_sectors, \
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