return false;
}
+#ifdef CONFIG_COMPACTION
+/*
+ * If compaction is deferred for sc->order then scale the number of pages
+ * reclaimed based on the number of consecutive allocation failures
+ */
+static unsigned long scale_for_compaction(unsigned long pages_for_compaction,
+ struct lruvec *lruvec, struct scan_control *sc)
+{
+ struct zone *zone = lruvec_zone(lruvec);
+
+ if (zone->compact_order_failed <= sc->order)
+ pages_for_compaction <<= zone->compact_defer_shift;
+ return pages_for_compaction;
+}
+#else
+static unsigned long scale_for_compaction(unsigned long pages_for_compaction,
+ struct lruvec *lruvec, struct scan_control *sc)
+{
+ return pages_for_compaction;
+}
+#endif
+
/*
* Reclaim/compaction is used for high-order allocation requests. It reclaims
* order-0 pages before compacting the zone. should_continue_reclaim() returns
{
unsigned long pages_for_compaction;
unsigned long inactive_lru_pages;
- struct zone *zone;
/* If not in reclaim/compaction mode, stop */
if (!in_reclaim_compaction(sc))
*/
pages_for_compaction = (2UL << sc->order);
- /*
- * If compaction is deferred for sc->order then scale the number of
- * pages reclaimed based on the number of consecutive allocation
- * failures
- */
- zone = lruvec_zone(lruvec);
- if (zone->compact_order_failed <= sc->order)
- pages_for_compaction <<= zone->compact_defer_shift;
+ pages_for_compaction = scale_for_compaction(pages_for_compaction,
+ lruvec, sc);
inactive_lru_pages = get_lru_size(lruvec, LRU_INACTIVE_FILE);
if (nr_swap_pages > 0)
inactive_lru_pages += get_lru_size(lruvec, LRU_INACTIVE_ANON);