spread = right_vruntime - left_vruntime;
SEQ_printf(m, " .%-30s: %Ld.%06ld\n", "spread", SPLIT_NS(spread));
SEQ_printf(m, " .%-30s: %d\n", "nr_running", cfs_rq->nr_running);
+ SEQ_printf(m, " .%-30s: %d\n", "h_nr_runnable", cfs_rq->h_nr_runnable);
SEQ_printf(m, " .%-30s: %d\n", "h_nr_queued", cfs_rq->h_nr_queued);
SEQ_printf(m, " .%-30s: %d\n", "h_nr_delayed", cfs_rq->h_nr_delayed);
SEQ_printf(m, " .%-30s: %d\n", "idle_nr_running",
for_each_sched_entity(se) {
struct cfs_rq *cfs_rq = cfs_rq_of(se);
+ cfs_rq->h_nr_runnable--;
cfs_rq->h_nr_delayed++;
if (cfs_rq_throttled(cfs_rq))
break;
for_each_sched_entity(se) {
struct cfs_rq *cfs_rq = cfs_rq_of(se);
+ cfs_rq->h_nr_runnable++;
cfs_rq->h_nr_delayed--;
if (cfs_rq_throttled(cfs_rq))
break;
struct rq *rq = rq_of(cfs_rq);
struct cfs_bandwidth *cfs_b = tg_cfs_bandwidth(cfs_rq->tg);
struct sched_entity *se;
- long queued_delta, idle_task_delta, delayed_delta, dequeue = 1;
+ long queued_delta, runnable_delta, idle_task_delta, delayed_delta, dequeue = 1;
long rq_h_nr_queued = rq->cfs.h_nr_queued;
raw_spin_lock(&cfs_b->lock);
rcu_read_unlock();
queued_delta = cfs_rq->h_nr_queued;
+ runnable_delta = cfs_rq->h_nr_runnable;
idle_task_delta = cfs_rq->idle_h_nr_running;
delayed_delta = cfs_rq->h_nr_delayed;
for_each_sched_entity(se) {
idle_task_delta = cfs_rq->h_nr_queued;
qcfs_rq->h_nr_queued -= queued_delta;
+ qcfs_rq->h_nr_runnable -= runnable_delta;
qcfs_rq->idle_h_nr_running -= idle_task_delta;
qcfs_rq->h_nr_delayed -= delayed_delta;
idle_task_delta = cfs_rq->h_nr_queued;
qcfs_rq->h_nr_queued -= queued_delta;
+ qcfs_rq->h_nr_runnable -= runnable_delta;
qcfs_rq->idle_h_nr_running -= idle_task_delta;
qcfs_rq->h_nr_delayed -= delayed_delta;
}
struct rq *rq = rq_of(cfs_rq);
struct cfs_bandwidth *cfs_b = tg_cfs_bandwidth(cfs_rq->tg);
struct sched_entity *se;
- long queued_delta, idle_task_delta, delayed_delta;
+ long queued_delta, runnable_delta, idle_task_delta, delayed_delta;
long rq_h_nr_queued = rq->cfs.h_nr_queued;
se = cfs_rq->tg->se[cpu_of(rq)];
}
queued_delta = cfs_rq->h_nr_queued;
+ runnable_delta = cfs_rq->h_nr_runnable;
idle_task_delta = cfs_rq->idle_h_nr_running;
delayed_delta = cfs_rq->h_nr_delayed;
for_each_sched_entity(se) {
idle_task_delta = cfs_rq->h_nr_queued;
qcfs_rq->h_nr_queued += queued_delta;
+ qcfs_rq->h_nr_runnable += runnable_delta;
qcfs_rq->idle_h_nr_running += idle_task_delta;
qcfs_rq->h_nr_delayed += delayed_delta;
idle_task_delta = cfs_rq->h_nr_queued;
qcfs_rq->h_nr_queued += queued_delta;
+ qcfs_rq->h_nr_runnable += runnable_delta;
qcfs_rq->idle_h_nr_running += idle_task_delta;
qcfs_rq->h_nr_delayed += delayed_delta;
enqueue_entity(cfs_rq, se, flags);
slice = cfs_rq_min_slice(cfs_rq);
+ if (!h_nr_delayed)
+ cfs_rq->h_nr_runnable++;
cfs_rq->h_nr_queued++;
cfs_rq->idle_h_nr_running += idle_h_nr_running;
cfs_rq->h_nr_delayed += h_nr_delayed;
se->slice = slice;
slice = cfs_rq_min_slice(cfs_rq);
+ if (!h_nr_delayed)
+ cfs_rq->h_nr_runnable++;
cfs_rq->h_nr_queued++;
cfs_rq->idle_h_nr_running += idle_h_nr_running;
cfs_rq->h_nr_delayed += h_nr_delayed;
break;
}
+ if (!h_nr_delayed)
+ cfs_rq->h_nr_runnable -= h_nr_queued;
cfs_rq->h_nr_queued -= h_nr_queued;
cfs_rq->idle_h_nr_running -= idle_h_nr_running;
cfs_rq->h_nr_delayed -= h_nr_delayed;
se->slice = slice;
slice = cfs_rq_min_slice(cfs_rq);
+ if (!h_nr_delayed)
+ cfs_rq->h_nr_runnable -= h_nr_queued;
cfs_rq->h_nr_queued -= h_nr_queued;
cfs_rq->idle_h_nr_running -= idle_h_nr_running;
cfs_rq->h_nr_delayed -= h_nr_delayed;