Commit 79118806 authored by Joe Thornber's avatar Joe Thornber Committed by Mike Snitzer

dm bufio: add lock_history optimization for cache iterators

Sometimes it is beneficial to repeatedly get and drop locks as part of
an iteration.  Introduce lock_history struct to help avoid redundant
drop and gets of the same lock.

Optimizes cache_iterate, cache_mark_many and cache_evict.
Signed-off-by: default avatarJoe Thornber <ejt@redhat.com>
Signed-off-by: default avatarMike Snitzer <snitzer@kernel.org>
parent 450e8dee
...@@ -421,6 +421,70 @@ static inline void cache_write_unlock(struct dm_buffer_cache *bc, sector_t block ...@@ -421,6 +421,70 @@ static inline void cache_write_unlock(struct dm_buffer_cache *bc, sector_t block
up_write(&bc->trees[cache_index(block)].lock); up_write(&bc->trees[cache_index(block)].lock);
} }
/*
* Sometimes we want to repeatedly get and drop locks as part of an iteration.
* This struct helps avoid redundant drop and gets of the same lock.
*/
struct lock_history {
struct dm_buffer_cache *cache;
bool write;
unsigned int previous;
};
static void lh_init(struct lock_history *lh, struct dm_buffer_cache *cache, bool write)
{
lh->cache = cache;
lh->write = write;
lh->previous = NR_LOCKS; /* indicates no previous */
}
static void __lh_lock(struct lock_history *lh, unsigned int index)
{
if (lh->write)
down_write(&lh->cache->trees[index].lock);
else
down_read(&lh->cache->trees[index].lock);
}
static void __lh_unlock(struct lock_history *lh, unsigned int index)
{
if (lh->write)
up_write(&lh->cache->trees[index].lock);
else
up_read(&lh->cache->trees[index].lock);
}
/*
* Make sure you call this since it will unlock the final lock.
*/
static void lh_exit(struct lock_history *lh)
{
if (lh->previous != NR_LOCKS) {
__lh_unlock(lh, lh->previous);
lh->previous = NR_LOCKS;
}
}
/*
* Named 'next' because there is no corresponding
* 'up/unlock' call since it's done automatically.
*/
static void lh_next(struct lock_history *lh, sector_t b)
{
unsigned int index = cache_index(b);
if (lh->previous != NR_LOCKS) {
if (lh->previous != index) {
__lh_unlock(lh, lh->previous);
__lh_lock(lh, index);
lh->previous = index;
}
} else {
__lh_lock(lh, index);
lh->previous = index;
}
}
static inline struct dm_buffer *le_to_buffer(struct lru_entry *le) static inline struct dm_buffer *le_to_buffer(struct lru_entry *le)
{ {
return container_of(le, struct dm_buffer, lru); return container_of(le, struct dm_buffer, lru);
...@@ -550,6 +614,7 @@ typedef enum evict_result (*b_predicate)(struct dm_buffer *, void *); ...@@ -550,6 +614,7 @@ typedef enum evict_result (*b_predicate)(struct dm_buffer *, void *);
* predicate the hold_count of the selected buffer will be zero. * predicate the hold_count of the selected buffer will be zero.
*/ */
struct evict_wrapper { struct evict_wrapper {
struct lock_history *lh;
b_predicate pred; b_predicate pred;
void *context; void *context;
}; };
...@@ -563,16 +628,19 @@ static enum evict_result __evict_pred(struct lru_entry *le, void *context) ...@@ -563,16 +628,19 @@ static enum evict_result __evict_pred(struct lru_entry *le, void *context)
struct evict_wrapper *w = context; struct evict_wrapper *w = context;
struct dm_buffer *b = le_to_buffer(le); struct dm_buffer *b = le_to_buffer(le);
lh_next(w->lh, b->block);
if (atomic_read(&b->hold_count)) if (atomic_read(&b->hold_count))
return ER_DONT_EVICT; return ER_DONT_EVICT;
return w->pred(b, w->context); return w->pred(b, w->context);
} }
static struct dm_buffer *cache_evict(struct dm_buffer_cache *bc, int list_mode, static struct dm_buffer *__cache_evict(struct dm_buffer_cache *bc, int list_mode,
b_predicate pred, void *context) b_predicate pred, void *context,
struct lock_history *lh)
{ {
struct evict_wrapper w = {.pred = pred, .context = context}; struct evict_wrapper w = {.lh = lh, .pred = pred, .context = context};
struct lru_entry *le; struct lru_entry *le;
struct dm_buffer *b; struct dm_buffer *b;
...@@ -587,6 +655,19 @@ static struct dm_buffer *cache_evict(struct dm_buffer_cache *bc, int list_mode, ...@@ -587,6 +655,19 @@ static struct dm_buffer *cache_evict(struct dm_buffer_cache *bc, int list_mode,
return b; return b;
} }
static struct dm_buffer *cache_evict(struct dm_buffer_cache *bc, int list_mode,
b_predicate pred, void *context)
{
struct dm_buffer *b;
struct lock_history lh;
lh_init(&lh, bc, true);
b = __cache_evict(bc, list_mode, pred, context, &lh);
lh_exit(&lh);
return b;
}
/*--------------*/ /*--------------*/
/* /*
...@@ -609,12 +690,12 @@ static void cache_mark(struct dm_buffer_cache *bc, struct dm_buffer *b, int list ...@@ -609,12 +690,12 @@ static void cache_mark(struct dm_buffer_cache *bc, struct dm_buffer *b, int list
* Runs through the lru associated with 'old_mode', if the predicate matches then * Runs through the lru associated with 'old_mode', if the predicate matches then
* it moves them to 'new_mode'. Not threadsafe. * it moves them to 'new_mode'. Not threadsafe.
*/ */
static void cache_mark_many(struct dm_buffer_cache *bc, int old_mode, int new_mode, static void __cache_mark_many(struct dm_buffer_cache *bc, int old_mode, int new_mode,
b_predicate pred, void *context) b_predicate pred, void *context, struct lock_history *lh)
{ {
struct lru_entry *le; struct lru_entry *le;
struct dm_buffer *b; struct dm_buffer *b;
struct evict_wrapper w = {.pred = pred, .context = context}; struct evict_wrapper w = {.lh = lh, .pred = pred, .context = context};
while (true) { while (true) {
le = lru_evict(&bc->lru[old_mode], __evict_pred, &w); le = lru_evict(&bc->lru[old_mode], __evict_pred, &w);
...@@ -627,6 +708,16 @@ static void cache_mark_many(struct dm_buffer_cache *bc, int old_mode, int new_mo ...@@ -627,6 +708,16 @@ static void cache_mark_many(struct dm_buffer_cache *bc, int old_mode, int new_mo
} }
} }
static void cache_mark_many(struct dm_buffer_cache *bc, int old_mode, int new_mode,
b_predicate pred, void *context)
{
struct lock_history lh;
lh_init(&lh, bc, true);
__cache_mark_many(bc, old_mode, new_mode, pred, context, &lh);
lh_exit(&lh);
}
/*--------------*/ /*--------------*/
/* /*
...@@ -645,8 +736,8 @@ enum it_action { ...@@ -645,8 +736,8 @@ enum it_action {
typedef enum it_action (*iter_fn)(struct dm_buffer *b, void *context); typedef enum it_action (*iter_fn)(struct dm_buffer *b, void *context);
static void cache_iterate(struct dm_buffer_cache *bc, int list_mode, static void __cache_iterate(struct dm_buffer_cache *bc, int list_mode,
iter_fn fn, void *context) iter_fn fn, void *context, struct lock_history *lh)
{ {
struct lru *lru = &bc->lru[list_mode]; struct lru *lru = &bc->lru[list_mode];
struct lru_entry *le, *first; struct lru_entry *le, *first;
...@@ -658,6 +749,8 @@ static void cache_iterate(struct dm_buffer_cache *bc, int list_mode, ...@@ -658,6 +749,8 @@ static void cache_iterate(struct dm_buffer_cache *bc, int list_mode,
do { do {
struct dm_buffer *b = le_to_buffer(le); struct dm_buffer *b = le_to_buffer(le);
lh_next(lh, b->block);
switch (fn(b, context)) { switch (fn(b, context)) {
case IT_NEXT: case IT_NEXT:
break; break;
...@@ -671,6 +764,16 @@ static void cache_iterate(struct dm_buffer_cache *bc, int list_mode, ...@@ -671,6 +764,16 @@ static void cache_iterate(struct dm_buffer_cache *bc, int list_mode,
} while (le != first); } while (le != first);
} }
static void cache_iterate(struct dm_buffer_cache *bc, int list_mode,
iter_fn fn, void *context)
{
struct lock_history lh;
lh_init(&lh, bc, false);
__cache_iterate(bc, list_mode, fn, context, &lh);
lh_exit(&lh);
}
/*--------------*/ /*--------------*/
/* /*
......
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