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@@ -69,6 +69,18 @@ static struct completion *ioc_gone;
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#define sample_valid(samples) ((samples) > 80)
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+/*
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+ * Most of our rbtree usage is for sorting with min extraction, so
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+ * if we cache the leftmost node we don't have to walk down the tree
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+ * to find it. Idea borrowed from Ingo Molnars CFS scheduler. We should
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+ * move this into the elevator for the rq sorting as well.
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+ */
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+struct cfq_rb_root {
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+ struct rb_root rb;
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+ struct rb_node *left;
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+};
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+#define CFQ_RB_ROOT (struct cfq_rb_root) { RB_ROOT, NULL, }
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+
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/*
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* Per block device queue structure
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*/
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@@ -78,7 +90,7 @@ struct cfq_data {
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/*
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* rr list of queues with requests and the count of them
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*/
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- struct rb_root service_tree;
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+ struct cfq_rb_root service_tree;
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struct list_head cur_rr;
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struct list_head idle_rr;
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unsigned int busy_queues;
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@@ -378,6 +390,23 @@ cfq_choose_req(struct cfq_data *cfqd, struct request *rq1, struct request *rq2)
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}
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}
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+static struct rb_node *cfq_rb_first(struct cfq_rb_root *root)
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+{
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+ if (!root->left)
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+ root->left = rb_first(&root->rb);
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+
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+ return root->left;
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+}
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+
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+static void cfq_rb_erase(struct rb_node *n, struct cfq_rb_root *root)
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+{
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+ if (root->left == n)
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+ root->left = NULL;
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+
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+ rb_erase(n, &root->rb);
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+ RB_CLEAR_NODE(n);
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+}
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+
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/*
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* would be nice to take fifo expire time into account as well
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*/
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@@ -417,10 +446,10 @@ static unsigned long cfq_slice_offset(struct cfq_data *cfqd,
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static void cfq_service_tree_add(struct cfq_data *cfqd,
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struct cfq_queue *cfqq)
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{
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- struct rb_node **p = &cfqd->service_tree.rb_node;
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+ struct rb_node **p = &cfqd->service_tree.rb.rb_node;
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struct rb_node *parent = NULL;
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- struct cfq_queue *__cfqq;
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unsigned long rb_key;
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+ int left = 1;
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rb_key = cfq_slice_offset(cfqd, cfqq) + jiffies;
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rb_key += cfqq->slice_resid;
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@@ -433,22 +462,29 @@ static void cfq_service_tree_add(struct cfq_data *cfqd,
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if (rb_key == cfqq->rb_key)
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return;
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- rb_erase(&cfqq->rb_node, &cfqd->service_tree);
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+ cfq_rb_erase(&cfqq->rb_node, &cfqd->service_tree);
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}
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while (*p) {
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+ struct cfq_queue *__cfqq;
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+
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parent = *p;
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__cfqq = rb_entry(parent, struct cfq_queue, rb_node);
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if (rb_key < __cfqq->rb_key)
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p = &(*p)->rb_left;
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- else
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+ else {
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p = &(*p)->rb_right;
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+ left = 0;
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+ }
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}
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+ if (left)
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+ cfqd->service_tree.left = &cfqq->rb_node;
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+
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cfqq->rb_key = rb_key;
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rb_link_node(&cfqq->rb_node, parent, p);
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- rb_insert_color(&cfqq->rb_node, &cfqd->service_tree);
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+ rb_insert_color(&cfqq->rb_node, &cfqd->service_tree.rb);
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}
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static void cfq_resort_rr_list(struct cfq_queue *cfqq, int preempted)
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@@ -509,10 +545,8 @@ cfq_del_cfqq_rr(struct cfq_data *cfqd, struct cfq_queue *cfqq)
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cfq_clear_cfqq_on_rr(cfqq);
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list_del_init(&cfqq->cfq_list);
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- if (!RB_EMPTY_NODE(&cfqq->rb_node)) {
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- rb_erase(&cfqq->rb_node, &cfqd->service_tree);
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- RB_CLEAR_NODE(&cfqq->rb_node);
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- }
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+ if (!RB_EMPTY_NODE(&cfqq->rb_node))
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+ cfq_rb_erase(&cfqq->rb_node, &cfqd->service_tree);
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BUG_ON(!cfqd->busy_queues);
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cfqd->busy_queues--;
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@@ -764,8 +798,8 @@ static struct cfq_queue *cfq_get_next_queue(struct cfq_data *cfqd)
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* if current list is non-empty, grab first entry.
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*/
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cfqq = list_entry_cfqq(cfqd->cur_rr.next);
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- } else if (!RB_EMPTY_ROOT(&cfqd->service_tree)) {
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- struct rb_node *n = rb_first(&cfqd->service_tree);
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+ } else if (!RB_EMPTY_ROOT(&cfqd->service_tree.rb)) {
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+ struct rb_node *n = cfq_rb_first(&cfqd->service_tree);
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cfqq = rb_entry(n, struct cfq_queue, rb_node);
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} else if (!list_empty(&cfqd->idle_rr)) {
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@@ -1036,7 +1070,7 @@ static int cfq_forced_dispatch(struct cfq_data *cfqd)
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int dispatched = 0;
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struct rb_node *n;
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- while ((n = rb_first(&cfqd->service_tree)) != NULL) {
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+ while ((n = cfq_rb_first(&cfqd->service_tree)) != NULL) {
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struct cfq_queue *cfqq = rb_entry(n, struct cfq_queue, rb_node);
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dispatched += __cfq_forced_dispatch_cfqq(cfqq);
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@@ -2014,7 +2048,7 @@ static void *cfq_init_queue(request_queue_t *q)
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memset(cfqd, 0, sizeof(*cfqd));
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- cfqd->service_tree = RB_ROOT;
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+ cfqd->service_tree = CFQ_RB_ROOT;
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INIT_LIST_HEAD(&cfqd->cur_rr);
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INIT_LIST_HEAD(&cfqd->idle_rr);
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INIT_LIST_HEAD(&cfqd->cic_list);
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