/* Target cache size levels. */
extern int bluesky_watermark_low_dirty;
extern int bluesky_watermark_medium_dirty;
+extern int bluesky_watermark_med2_dirty;
extern int bluesky_watermark_high_dirty;
extern int bluesky_watermark_low_total;
extern int bluesky_watermark_medium_total;
+extern int bluesky_watermark_med2_total;
extern int bluesky_watermark_high_total;
/* TODO: Make this go away entirely. */
/* How urgent is flushing out data? Returns one of several values:
* 0 - memory state is fine
* 1 - should launch flushd if not already running
- * 2 - should block writers until memory frees up
+ * 2 - should delay writers while memory frees up
+ * 3 - should block writers until memory frees up
*/
static int compute_pressure(BlueSkyFS *fs)
{
- /* LEVEL 2 */
+ /* LEVEL 3 */
/* Too much dirty data in memory? */
if (g_atomic_int_get(&fs->cache_dirty)
+ g_atomic_int_get(&fs->cache_log_dirty)
> bluesky_watermark_high_dirty)
{
- g_print("pressure: too much dirty data (2)\n");
- return 2;
+ g_print("pressure: too much dirty data (3)\n");
+ return 3;
}
/* Too much uncommitted data in the journal on disk, not yet flushed to the
dirty_limit = bluesky_options.cache_size / (LOG_SEGMENT_SIZE / 1024) / 2;
int dirty_journals = fs->log->seq_num - fs->log->journal_watermark + 1;
if (dirty_journals > 1 && dirty_journals >= dirty_limit) {
- printf("pressure: too many dirty journals (%d >= %d) (2)\n",
+ printf("pressure: too many dirty journals (%d >= %d) (3)\n",
dirty_journals, dirty_limit);
+ return 3;
+ }
+
+ /* LEVEL 2 */
+ if (g_atomic_int_get(&fs->cache_dirty) > bluesky_watermark_med2_dirty) {
+ g_print("pressure: too much dirty data (2)\n");
+ return 2;
+ }
+
+ if (dirty_journals > 1 && dirty_journals > dirty_limit * 3 / 4) {
+ printf("pressure: many dirty journals (%d), should start writeback (2)\n",
+ dirty_journals);
return 2;
}
g_atomic_int_get(&fs->cache_log_dirty));
g_mutex_lock(fs->lock);
pressure = compute_pressure(fs);
- if (pressure > 1)
+ if (pressure > 2) {
g_cond_wait(fs->flushd_cond, fs->lock);
+ } else if (pressure > 1) {
+ /* Wait for up to 10 seconds. */
+ GTimeVal timeout;
+ g_get_current_time(&timeout);
+ g_time_val_add(&timeout, 10 * 1000 * 1000);
+ g_cond_timed_wait(fs->flushd_cond, fs->lock, &timeout);
+ }
g_mutex_unlock(fs->lock);
pressure = compute_pressure(fs);
+ if (pressure == 1)
+ break; /* Do not loop indefinitely for a pressure of 1 */
}
}
*/
int bluesky_watermark_low_dirty = (64 << 20) / BLUESKY_BLOCK_SIZE;
int bluesky_watermark_medium_dirty = (96 << 20) / BLUESKY_BLOCK_SIZE;
+int bluesky_watermark_med2_dirty = (160 << 20) / BLUESKY_BLOCK_SIZE;
int bluesky_watermark_high_dirty = (192 << 20) / BLUESKY_BLOCK_SIZE;
int bluesky_watermark_low_total = (64 << 20) / BLUESKY_BLOCK_SIZE;
int bluesky_watermark_medium_total = (128 << 20) / BLUESKY_BLOCK_SIZE;
+int bluesky_watermark_med2_total = (224 << 20) / BLUESKY_BLOCK_SIZE;
int bluesky_watermark_high_total = (256 << 20) / BLUESKY_BLOCK_SIZE;
/* Environment variables that can be used to initialize settings. */