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bcachefs: Use try_cmpxchg() family of functions instead of cmpxchg()
Use try_cmpxchg() family of functions instead of cmpxchg (*ptr, old, new) == old. x86 CMPXCHG instruction returns success in ZF flag, so this change saves a compare after cmpxchg (and related move instruction in front of cmpxchg). Also, try_cmpxchg() implicitly assigns old *ptr value to "old" when cmpxchg fails. There is no need to re-read the value in the loop. No functional change intended. Signed-off-by: Uros Bizjak <ubizjak@gmail.com> Cc: Kent Overstreet <kent.overstreet@linux.dev> Cc: Brian Foster <bfoster@redhat.com> Signed-off-by: Kent Overstreet <kent.overstreet@linux.dev>
This commit is contained in:
parent
e76a2b65b0
commit
68573b936d
@ -602,8 +602,8 @@ int bch2_btree_cache_cannibalize_lock(struct btree_trans *trans, struct closure
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struct btree_cache *bc = &c->btree_cache;
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struct task_struct *old;
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old = cmpxchg(&bc->alloc_lock, NULL, current);
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if (old == NULL || old == current)
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old = NULL;
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if (try_cmpxchg(&bc->alloc_lock, &old, current) || old == current)
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goto success;
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if (!cl) {
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@ -614,8 +614,8 @@ int bch2_btree_cache_cannibalize_lock(struct btree_trans *trans, struct closure
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closure_wait(&bc->alloc_wait, cl);
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/* Try again, after adding ourselves to waitlist */
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old = cmpxchg(&bc->alloc_lock, NULL, current);
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if (old == NULL || old == current) {
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old = NULL;
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if (try_cmpxchg(&bc->alloc_lock, &old, current) || old == current) {
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/* We raced */
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closure_wake_up(&bc->alloc_wait);
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goto success;
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@ -1796,15 +1796,16 @@ int bch2_btree_root_read(struct bch_fs *c, enum btree_id id,
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static void bch2_btree_complete_write(struct bch_fs *c, struct btree *b,
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struct btree_write *w)
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{
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unsigned long old, new, v = READ_ONCE(b->will_make_reachable);
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unsigned long old, new;
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old = READ_ONCE(b->will_make_reachable);
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do {
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old = new = v;
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new = old;
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if (!(old & 1))
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break;
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new &= ~1UL;
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} while ((v = cmpxchg(&b->will_make_reachable, old, new)) != old);
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} while (!try_cmpxchg(&b->will_make_reachable, &old, new));
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if (old & 1)
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closure_put(&((struct btree_update *) new)->cl);
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@ -1815,14 +1816,14 @@ static void bch2_btree_complete_write(struct bch_fs *c, struct btree *b,
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static void __btree_node_write_done(struct bch_fs *c, struct btree *b)
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{
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struct btree_write *w = btree_prev_write(b);
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unsigned long old, new, v;
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unsigned long old, new;
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unsigned type = 0;
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bch2_btree_complete_write(c, b, w);
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v = READ_ONCE(b->flags);
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old = READ_ONCE(b->flags);
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do {
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old = new = v;
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new = old;
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if ((old & (1U << BTREE_NODE_dirty)) &&
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(old & (1U << BTREE_NODE_need_write)) &&
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@ -1842,7 +1843,7 @@ static void __btree_node_write_done(struct bch_fs *c, struct btree *b)
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new &= ~(1U << BTREE_NODE_write_in_flight);
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new &= ~(1U << BTREE_NODE_write_in_flight_inner);
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}
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} while ((v = cmpxchg(&b->flags, old, new)) != old);
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} while (!try_cmpxchg(&b->flags, &old, new));
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if (new & (1U << BTREE_NODE_write_in_flight))
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__bch2_btree_node_write(c, b, BTREE_WRITE_ALREADY_STARTED|type);
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@ -2014,8 +2015,9 @@ void __bch2_btree_node_write(struct bch_fs *c, struct btree *b, unsigned flags)
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* dirty bit requires a write lock, we can't race with other threads
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* redirtying it:
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*/
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old = READ_ONCE(b->flags);
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do {
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old = new = READ_ONCE(b->flags);
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new = old;
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if (!(old & (1 << BTREE_NODE_dirty)))
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return;
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@ -2046,7 +2048,7 @@ void __bch2_btree_node_write(struct bch_fs *c, struct btree *b, unsigned flags)
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new |= (1 << BTREE_NODE_write_in_flight_inner);
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new |= (1 << BTREE_NODE_just_written);
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new ^= (1 << BTREE_NODE_write_idx);
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} while (cmpxchg_acquire(&b->flags, old, new) != old);
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} while (!try_cmpxchg_acquire(&b->flags, &old, new));
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if (new & (1U << BTREE_NODE_need_write))
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return;
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@ -228,14 +228,14 @@ static int __btree_node_flush(struct journal *j, struct journal_entry_pin *pin,
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struct btree_write *w = container_of(pin, struct btree_write, journal);
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struct btree *b = container_of(w, struct btree, writes[i]);
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struct btree_trans *trans = bch2_trans_get(c);
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unsigned long old, new, v;
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unsigned long old, new;
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unsigned idx = w - b->writes;
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btree_node_lock_nopath_nofail(trans, &b->c, SIX_LOCK_read);
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v = READ_ONCE(b->flags);
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old = READ_ONCE(b->flags);
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do {
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old = new = v;
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new = old;
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if (!(old & (1 << BTREE_NODE_dirty)) ||
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!!(old & (1 << BTREE_NODE_write_idx)) != idx ||
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@ -245,7 +245,7 @@ static int __btree_node_flush(struct journal *j, struct journal_entry_pin *pin,
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new &= ~BTREE_WRITE_TYPE_MASK;
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new |= BTREE_WRITE_journal_reclaim;
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new |= 1 << BTREE_NODE_need_write;
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} while ((v = cmpxchg(&b->flags, old, new)) != old);
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} while (!try_cmpxchg(&b->flags, &old, new));
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btree_node_write_if_need(c, b, SIX_LOCK_read);
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six_unlock_read(&b->c.lock);
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@ -1356,7 +1356,7 @@ static void bch2_insert_fixup_btree_ptr(struct btree_update *as,
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struct bch_fs *c = as->c;
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struct bkey_packed *k;
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struct printbuf buf = PRINTBUF;
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unsigned long old, new, v;
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unsigned long old, new;
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BUG_ON(insert->k.type == KEY_TYPE_btree_ptr_v2 &&
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!btree_ptr_sectors_written(insert));
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@ -1395,14 +1395,14 @@ static void bch2_insert_fixup_btree_ptr(struct btree_update *as,
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bch2_btree_bset_insert_key(trans, path, b, node_iter, insert);
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set_btree_node_dirty_acct(c, b);
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v = READ_ONCE(b->flags);
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old = READ_ONCE(b->flags);
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do {
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old = new = v;
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new = old;
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new &= ~BTREE_WRITE_TYPE_MASK;
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new |= BTREE_WRITE_interior;
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new |= 1 << BTREE_NODE_need_write;
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} while ((v = cmpxchg(&b->flags, old, new)) != old);
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} while (!try_cmpxchg(&b->flags, &old, new));
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printbuf_exit(&buf);
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}
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@ -916,13 +916,13 @@ void bch2_trans_account_disk_usage_change(struct btree_trans *trans)
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*/
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s64 should_not_have_added = added - (s64) disk_res_sectors;
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if (unlikely(should_not_have_added > 0)) {
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u64 old, new, v = atomic64_read(&c->sectors_available);
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u64 old, new;
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old = atomic64_read(&c->sectors_available);
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do {
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old = v;
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new = max_t(s64, 0, old - should_not_have_added);
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} while ((v = atomic64_cmpxchg(&c->sectors_available,
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old, new)) != old);
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} while (!atomic64_try_cmpxchg(&c->sectors_available,
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&old, new));
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added -= should_not_have_added;
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warn = true;
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@ -1523,7 +1523,7 @@ int __bch2_disk_reservation_add(struct bch_fs *c, struct disk_reservation *res,
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u64 sectors, int flags)
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{
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struct bch_fs_pcpu *pcpu;
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u64 old, v, get;
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u64 old, get;
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s64 sectors_available;
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int ret;
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@ -1534,17 +1534,16 @@ int __bch2_disk_reservation_add(struct bch_fs *c, struct disk_reservation *res,
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if (sectors <= pcpu->sectors_available)
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goto out;
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v = atomic64_read(&c->sectors_available);
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old = atomic64_read(&c->sectors_available);
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do {
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old = v;
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get = min((u64) sectors + SECTORS_CACHE, old);
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if (get < sectors) {
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preempt_enable();
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goto recalculate;
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}
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} while ((v = atomic64_cmpxchg(&c->sectors_available,
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old, old - get)) != old);
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} while (!atomic64_try_cmpxchg(&c->sectors_available,
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&old, old - get));
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pcpu->sectors_available += get;
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@ -432,13 +432,13 @@ static inline int bch2_disk_reservation_add(struct bch_fs *c, struct disk_reserv
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#ifdef __KERNEL__
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u64 old, new;
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do {
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old = this_cpu_read(c->pcpu->sectors_available);
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do {
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if (sectors > old)
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return __bch2_disk_reservation_add(c, res, sectors, flags);
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new = old - sectors;
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} while (this_cpu_cmpxchg(c->pcpu->sectors_available, old, new) != old);
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} while (!this_cpu_try_cmpxchg(c->pcpu->sectors_available, &old, new));
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this_cpu_add(*c->online_reserved, sectors);
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res->sectors += sectors;
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@ -69,11 +69,10 @@ void bch2_latency_acct(struct bch_dev *ca, u64 submit_time, int rw)
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u64 io_latency = time_after64(now, submit_time)
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? now - submit_time
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: 0;
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u64 old, new, v = atomic64_read(latency);
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u64 old, new;
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old = atomic64_read(latency);
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do {
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old = v;
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/*
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* If the io latency was reasonably close to the current
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* latency, skip doing the update and atomic operation - most of
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@ -84,7 +83,7 @@ void bch2_latency_acct(struct bch_dev *ca, u64 submit_time, int rw)
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break;
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new = ewma_add(old, io_latency, 5);
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} while ((v = atomic64_cmpxchg(latency, old, new)) != old);
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} while (!atomic64_try_cmpxchg(latency, &old, new));
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bch2_congested_acct(ca, io_latency, now, rw);
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@ -230,7 +230,6 @@ static void __journal_entry_close(struct journal *j, unsigned closed_val, bool t
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struct bch_fs *c = container_of(j, struct bch_fs, journal);
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struct journal_buf *buf = journal_cur_buf(j);
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union journal_res_state old, new;
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u64 v = atomic64_read(&j->reservations.counter);
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unsigned sectors;
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BUG_ON(closed_val != JOURNAL_ENTRY_CLOSED_VAL &&
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@ -238,15 +237,16 @@ static void __journal_entry_close(struct journal *j, unsigned closed_val, bool t
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lockdep_assert_held(&j->lock);
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old.v = atomic64_read(&j->reservations.counter);
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do {
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old.v = new.v = v;
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new.v = old.v;
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new.cur_entry_offset = closed_val;
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if (old.cur_entry_offset == JOURNAL_ENTRY_ERROR_VAL ||
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old.cur_entry_offset == new.cur_entry_offset)
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return;
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} while ((v = atomic64_cmpxchg(&j->reservations.counter,
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old.v, new.v)) != old.v);
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} while (!atomic64_try_cmpxchg(&j->reservations.counter,
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&old.v, new.v));
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if (!__journal_entry_is_open(old))
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return;
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@ -353,7 +353,6 @@ static int journal_entry_open(struct journal *j)
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((journal_cur_seq(j) + 1) & JOURNAL_BUF_MASK);
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union journal_res_state old, new;
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int u64s;
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u64 v;
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lockdep_assert_held(&j->lock);
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BUG_ON(journal_entry_is_open(j));
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@ -432,9 +431,9 @@ static int journal_entry_open(struct journal *j)
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*/
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j->cur_entry_u64s = u64s;
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v = atomic64_read(&j->reservations.counter);
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old.v = atomic64_read(&j->reservations.counter);
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do {
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old.v = new.v = v;
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new.v = old.v;
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BUG_ON(old.cur_entry_offset == JOURNAL_ENTRY_ERROR_VAL);
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@ -446,8 +445,8 @@ static int journal_entry_open(struct journal *j)
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/* Handle any already added entries */
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new.cur_entry_offset = le32_to_cpu(buf->data->u64s);
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} while ((v = atomic64_cmpxchg(&j->reservations.counter,
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old.v, new.v)) != old.v);
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} while (!atomic64_try_cmpxchg(&j->reservations.counter,
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&old.v, new.v));
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if (nr_unwritten_journal_entries(j) == 1)
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mod_delayed_work(j->wq,
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@ -327,10 +327,10 @@ static inline int journal_res_get_fast(struct journal *j,
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unsigned flags)
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{
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union journal_res_state old, new;
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u64 v = atomic64_read(&j->reservations.counter);
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old.v = atomic64_read(&j->reservations.counter);
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do {
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old.v = new.v = v;
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new.v = old.v;
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/*
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* Check if there is still room in the current journal
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@ -356,8 +356,8 @@ static inline int journal_res_get_fast(struct journal *j,
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if (flags & JOURNAL_RES_GET_CHECK)
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return 1;
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} while ((v = atomic64_cmpxchg(&j->reservations.counter,
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old.v, new.v)) != old.v);
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} while (!atomic64_try_cmpxchg(&j->reservations.counter,
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&old.v, new.v));
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res->ref = true;
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res->idx = old.idx;
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@ -1588,7 +1588,7 @@ static CLOSURE_CALLBACK(journal_write_done)
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struct bch_fs *c = container_of(j, struct bch_fs, journal);
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struct bch_replicas_padded replicas;
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union journal_res_state old, new;
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u64 v, seq = le64_to_cpu(w->data->seq);
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u64 seq = le64_to_cpu(w->data->seq);
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int err = 0;
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bch2_time_stats_update(!JSET_NO_FLUSH(w->data)
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@ -1647,14 +1647,15 @@ static CLOSURE_CALLBACK(journal_write_done)
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if (j->watermark != BCH_WATERMARK_stripe)
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journal_reclaim_kick(&c->journal);
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v = atomic64_read(&j->reservations.counter);
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old.v = atomic64_read(&j->reservations.counter);
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do {
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old.v = new.v = v;
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new.v = old.v;
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BUG_ON(journal_state_count(new, new.unwritten_idx));
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BUG_ON(new.unwritten_idx != (seq & JOURNAL_BUF_MASK));
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new.unwritten_idx++;
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} while ((v = atomic64_cmpxchg(&j->reservations.counter, old.v, new.v)) != old.v);
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} while (!atomic64_try_cmpxchg(&j->reservations.counter,
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&old.v, new.v));
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closure_wake_up(&w->wait);
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completed = true;
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@ -36,15 +36,14 @@ static inline void bch2_two_state_unlock(two_state_lock_t *lock, int s)
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static inline bool bch2_two_state_trylock(two_state_lock_t *lock, int s)
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{
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long i = s ? 1 : -1;
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long v = atomic_long_read(&lock->v), old;
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long old;
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old = atomic_long_read(&lock->v);
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do {
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old = v;
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if (i > 0 ? v < 0 : v > 0)
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if (i > 0 ? old < 0 : old > 0)
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return false;
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} while ((v = atomic_long_cmpxchg_acquire(&lock->v,
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old, old + i)) != old);
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} while (!atomic_long_try_cmpxchg_acquire(&lock->v, &old, old + i));
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return true;
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}
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