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@@ -222,7 +222,7 @@ CFQ_CFQQ_FNS(slice_new);
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static struct cfq_queue *cfq_find_cfq_hash(struct cfq_data *, unsigned int, unsigned short);
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static void cfq_dispatch_insert(request_queue_t *, struct request *);
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-static struct cfq_queue *cfq_get_queue(struct cfq_data *cfqd, unsigned int key, struct task_struct *tsk, gfp_t gfp_mask);
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+static struct cfq_queue *cfq_get_queue(struct cfq_data *, unsigned int, struct task_struct *, gfp_t);
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/*
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* scheduler run of queue, if there are requests pending and no one in the
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@@ -389,6 +389,9 @@ 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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+/*
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+ * The below is leftmost cache rbtree addon
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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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@@ -442,13 +445,18 @@ static unsigned long cfq_slice_offset(struct cfq_data *cfqd,
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return ((cfqd->busy_queues - 1) * cfq_prio_slice(cfqd, 1, 0));
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}
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+/*
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+ * The cfqd->service_tree holds all pending cfq_queue's that have
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+ * requests waiting to be processed. It is sorted in the order that
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+ * we will service the queues.
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+ */
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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.rb_node;
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struct rb_node *parent = NULL;
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unsigned long rb_key;
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- int left = 1;
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+ int left;
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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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@@ -464,6 +472,7 @@ static void cfq_service_tree_add(struct cfq_data *cfqd,
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cfq_rb_erase(&cfqq->rb_node, &cfqd->service_tree);
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}
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+ left = 1;
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while (*p) {
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struct cfq_queue *__cfqq;
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struct rb_node **n;
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@@ -503,17 +512,16 @@ static void cfq_service_tree_add(struct cfq_data *cfqd,
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rb_insert_color(&cfqq->rb_node, &cfqd->service_tree.rb);
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}
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+/*
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+ * Update cfqq's position in the service tree.
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+ */
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static void cfq_resort_rr_list(struct cfq_queue *cfqq, int preempted)
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{
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- struct cfq_data *cfqd = cfqq->cfqd;
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-
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/*
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* Resorting requires the cfqq to be on the RR list already.
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*/
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- if (!cfq_cfqq_on_rr(cfqq))
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- return;
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-
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- cfq_service_tree_add(cfqd, cfqq);
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+ if (cfq_cfqq_on_rr(cfqq))
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+ cfq_service_tree_add(cfqq->cfqd, cfqq);
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}
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/*
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@@ -530,6 +538,10 @@ cfq_add_cfqq_rr(struct cfq_data *cfqd, struct cfq_queue *cfqq)
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cfq_resort_rr_list(cfqq, 0);
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}
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+/*
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+ * Called when the cfqq no longer has requests pending, remove it from
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+ * the service tree.
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+ */
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static inline void
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cfq_del_cfqq_rr(struct cfq_data *cfqd, struct cfq_queue *cfqq)
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{
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@@ -654,8 +666,7 @@ static void cfq_remove_request(struct request *rq)
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}
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}
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-static int
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-cfq_merge(request_queue_t *q, struct request **req, struct bio *bio)
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+static int cfq_merge(request_queue_t *q, struct request **req, struct bio *bio)
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{
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struct cfq_data *cfqd = q->elevator->elevator_data;
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struct request *__rq;
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@@ -781,6 +792,10 @@ static inline void cfq_slice_expired(struct cfq_data *cfqd, int preempted,
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__cfq_slice_expired(cfqd, cfqq, preempted, timed_out);
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}
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+/*
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+ * Get next queue for service. Unless we have a queue preemption,
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+ * we'll simply select the first cfqq in the service tree.
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+ */
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static struct cfq_queue *cfq_get_next_queue(struct cfq_data *cfqd)
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{
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struct cfq_queue *cfqq = NULL;
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@@ -792,10 +807,11 @@ static struct cfq_queue *cfq_get_next_queue(struct cfq_data *cfqd)
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cfqq = list_entry_cfqq(cfqd->cur_rr.next);
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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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- unsigned long end;
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cfqq = rb_entry(n, struct cfq_queue, rb_node);
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if (cfq_class_idle(cfqq)) {
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+ unsigned long end;
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+
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/*
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* if we have idle queues and no rt or be queues had
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* pending requests, either allow immediate service if
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@@ -813,6 +829,9 @@ static struct cfq_queue *cfq_get_next_queue(struct cfq_data *cfqd)
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return cfqq;
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}
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+/*
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+ * Get and set a new active queue for service.
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+ */
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static struct cfq_queue *cfq_set_active_queue(struct cfq_data *cfqd)
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{
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struct cfq_queue *cfqq;
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@@ -898,6 +917,9 @@ static void cfq_arm_slice_timer(struct cfq_data *cfqd)
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mod_timer(&cfqd->idle_slice_timer, jiffies + sl);
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}
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+/*
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+ * Move request from internal lists to the request queue dispatch list.
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+ */
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static void cfq_dispatch_insert(request_queue_t *q, struct request *rq)
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{
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struct cfq_queue *cfqq = RQ_CFQQ(rq);
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@@ -944,7 +966,8 @@ cfq_prio_to_maxrq(struct cfq_data *cfqd, struct cfq_queue *cfqq)
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}
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/*
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- * get next queue for service
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+ * Select a queue for service. If we have a current active queue,
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+ * check whether to continue servicing it, or retrieve and set a new one.
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*/
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static struct cfq_queue *cfq_select_queue(struct cfq_data *cfqd)
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{
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@@ -985,6 +1008,10 @@ keep_queue:
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return cfqq;
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}
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+/*
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+ * Dispatch some requests from cfqq, moving them to the request queue
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+ * dispatch list.
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+ */
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static int
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__cfq_dispatch_requests(struct cfq_data *cfqd, struct cfq_queue *cfqq,
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int max_dispatch)
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@@ -1059,6 +1086,10 @@ static int cfq_forced_dispatch_cfqqs(struct list_head *list)
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return dispatched;
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}
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+/*
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+ * Drain our current requests. Used for barriers and when switching
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+ * io schedulers on-the-fly.
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+ */
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static int cfq_forced_dispatch(struct cfq_data *cfqd)
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{
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int dispatched = 0;
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@@ -1224,10 +1255,6 @@ static void __cfq_exit_single_io_context(struct cfq_data *cfqd,
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}
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}
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-
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-/*
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- * Called with interrupts disabled
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- */
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static void cfq_exit_single_io_context(struct cfq_io_context *cic)
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{
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struct cfq_data *cfqd = cic->key;
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@@ -1241,6 +1268,10 @@ static void cfq_exit_single_io_context(struct cfq_io_context *cic)
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}
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}
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+/*
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+ * The process that ioc belongs to has exited, we need to clean up
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+ * and put the internal structures we have that belongs to that process.
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+ */
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static void cfq_exit_io_context(struct io_context *ioc)
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{
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struct cfq_io_context *__cic;
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@@ -1427,6 +1458,9 @@ out:
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return cfqq;
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}
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+/*
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+ * We drop cfq io contexts lazily, so we may find a dead one.
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+ */
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static void
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cfq_drop_dead_cic(struct io_context *ioc, struct cfq_io_context *cic)
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{
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