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@@ -87,6 +87,8 @@ static struct rcu_state *rcu_state;
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int rcu_scheduler_active __read_mostly;
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EXPORT_SYMBOL_GPL(rcu_scheduler_active);
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+#ifdef CONFIG_RCU_BOOST
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+
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/*
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* Control variables for per-CPU and per-rcu_node kthreads. These
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* handle all flavors of RCU.
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@@ -98,8 +100,11 @@ DEFINE_PER_CPU(unsigned int, rcu_cpu_kthread_loops);
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DEFINE_PER_CPU(char, rcu_cpu_has_work);
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static char rcu_kthreads_spawnable;
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+#endif /* #ifdef CONFIG_RCU_BOOST */
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+
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static void rcu_node_kthread_setaffinity(struct rcu_node *rnp, int outgoingcpu);
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-static void invoke_rcu_cpu_kthread(void);
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+static void invoke_rcu_core(void);
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+static void invoke_rcu_callbacks(struct rcu_state *rsp, struct rcu_data *rdp);
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#define RCU_KTHREAD_PRIO 1 /* RT priority for per-CPU kthreads. */
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@@ -1088,14 +1093,8 @@ static void __rcu_offline_cpu(int cpu, struct rcu_state *rsp)
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int need_report = 0;
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struct rcu_data *rdp = per_cpu_ptr(rsp->rda, cpu);
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struct rcu_node *rnp;
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- struct task_struct *t;
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- /* Stop the CPU's kthread. */
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- t = per_cpu(rcu_cpu_kthread_task, cpu);
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- if (t != NULL) {
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- per_cpu(rcu_cpu_kthread_task, cpu) = NULL;
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- kthread_stop(t);
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- }
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+ rcu_stop_cpu_kthread(cpu);
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/* Exclude any attempts to start a new grace period. */
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raw_spin_lock_irqsave(&rsp->onofflock, flags);
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@@ -1231,7 +1230,7 @@ static void rcu_do_batch(struct rcu_state *rsp, struct rcu_data *rdp)
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/* Re-raise the RCU softirq if there are callbacks remaining. */
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if (cpu_has_callbacks_ready_to_invoke(rdp))
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- invoke_rcu_cpu_kthread();
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+ invoke_rcu_core();
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}
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/*
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@@ -1277,7 +1276,7 @@ void rcu_check_callbacks(int cpu, int user)
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}
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rcu_preempt_check_callbacks(cpu);
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if (rcu_pending(cpu))
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- invoke_rcu_cpu_kthread();
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+ invoke_rcu_core();
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}
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#ifdef CONFIG_SMP
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@@ -1442,13 +1441,14 @@ __rcu_process_callbacks(struct rcu_state *rsp, struct rcu_data *rdp)
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}
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/* If there are callbacks ready, invoke them. */
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- rcu_do_batch(rsp, rdp);
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+ if (cpu_has_callbacks_ready_to_invoke(rdp))
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+ invoke_rcu_callbacks(rsp, rdp);
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}
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/*
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* Do softirq processing for the current CPU.
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*/
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-static void rcu_process_callbacks(void)
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+static void rcu_process_callbacks(struct softirq_action *unused)
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{
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__rcu_process_callbacks(&rcu_sched_state,
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&__get_cpu_var(rcu_sched_data));
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@@ -1465,342 +1465,20 @@ static void rcu_process_callbacks(void)
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* the current CPU with interrupts disabled, the rcu_cpu_kthread_task
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* cannot disappear out from under us.
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*/
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-static void invoke_rcu_cpu_kthread(void)
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-{
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- unsigned long flags;
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-
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- local_irq_save(flags);
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- __this_cpu_write(rcu_cpu_has_work, 1);
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- if (__this_cpu_read(rcu_cpu_kthread_task) == NULL) {
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- local_irq_restore(flags);
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- return;
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- }
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- wake_up_process(__this_cpu_read(rcu_cpu_kthread_task));
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- local_irq_restore(flags);
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-}
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-
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-/*
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- * Wake up the specified per-rcu_node-structure kthread.
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- * Because the per-rcu_node kthreads are immortal, we don't need
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- * to do anything to keep them alive.
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- */
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-static void invoke_rcu_node_kthread(struct rcu_node *rnp)
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-{
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- struct task_struct *t;
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-
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- t = rnp->node_kthread_task;
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- if (t != NULL)
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- wake_up_process(t);
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-}
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-
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-/*
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- * Set the specified CPU's kthread to run RT or not, as specified by
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- * the to_rt argument. The CPU-hotplug locks are held, so the task
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- * is not going away.
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- */
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-static void rcu_cpu_kthread_setrt(int cpu, int to_rt)
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-{
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- int policy;
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- struct sched_param sp;
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- struct task_struct *t;
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-
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- t = per_cpu(rcu_cpu_kthread_task, cpu);
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- if (t == NULL)
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- return;
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- if (to_rt) {
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- policy = SCHED_FIFO;
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- sp.sched_priority = RCU_KTHREAD_PRIO;
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- } else {
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- policy = SCHED_NORMAL;
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- sp.sched_priority = 0;
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- }
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- sched_setscheduler_nocheck(t, policy, &sp);
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-}
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-
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-/*
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- * Timer handler to initiate the waking up of per-CPU kthreads that
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- * have yielded the CPU due to excess numbers of RCU callbacks.
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- * We wake up the per-rcu_node kthread, which in turn will wake up
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- * the booster kthread.
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- */
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-static void rcu_cpu_kthread_timer(unsigned long arg)
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-{
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- struct rcu_data *rdp = per_cpu_ptr(rcu_state->rda, arg);
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- struct rcu_node *rnp = rdp->mynode;
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-
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- atomic_or(rdp->grpmask, &rnp->wakemask);
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- invoke_rcu_node_kthread(rnp);
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-}
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-
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-/*
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- * Drop to non-real-time priority and yield, but only after posting a
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- * timer that will cause us to regain our real-time priority if we
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- * remain preempted. Either way, we restore our real-time priority
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- * before returning.
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- */
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-static void rcu_yield(void (*f)(unsigned long), unsigned long arg)
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-{
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- struct sched_param sp;
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- struct timer_list yield_timer;
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-
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- setup_timer_on_stack(&yield_timer, f, arg);
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- mod_timer(&yield_timer, jiffies + 2);
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- sp.sched_priority = 0;
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- sched_setscheduler_nocheck(current, SCHED_NORMAL, &sp);
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- set_user_nice(current, 19);
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- schedule();
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- sp.sched_priority = RCU_KTHREAD_PRIO;
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- sched_setscheduler_nocheck(current, SCHED_FIFO, &sp);
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- del_timer(&yield_timer);
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-}
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-
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-/*
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- * Handle cases where the rcu_cpu_kthread() ends up on the wrong CPU.
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- * This can happen while the corresponding CPU is either coming online
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- * or going offline. We cannot wait until the CPU is fully online
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- * before starting the kthread, because the various notifier functions
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- * can wait for RCU grace periods. So we park rcu_cpu_kthread() until
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- * the corresponding CPU is online.
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- *
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- * Return 1 if the kthread needs to stop, 0 otherwise.
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- *
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- * Caller must disable bh. This function can momentarily enable it.
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- */
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-static int rcu_cpu_kthread_should_stop(int cpu)
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-{
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- while (cpu_is_offline(cpu) ||
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- !cpumask_equal(¤t->cpus_allowed, cpumask_of(cpu)) ||
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- smp_processor_id() != cpu) {
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- if (kthread_should_stop())
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- return 1;
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- per_cpu(rcu_cpu_kthread_status, cpu) = RCU_KTHREAD_OFFCPU;
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- per_cpu(rcu_cpu_kthread_cpu, cpu) = raw_smp_processor_id();
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- local_bh_enable();
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- schedule_timeout_uninterruptible(1);
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- if (!cpumask_equal(¤t->cpus_allowed, cpumask_of(cpu)))
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- set_cpus_allowed_ptr(current, cpumask_of(cpu));
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- local_bh_disable();
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- }
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- per_cpu(rcu_cpu_kthread_cpu, cpu) = cpu;
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- return 0;
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-}
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-
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-/*
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- * Per-CPU kernel thread that invokes RCU callbacks. This replaces the
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- * earlier RCU softirq.
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- */
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-static int rcu_cpu_kthread(void *arg)
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-{
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- int cpu = (int)(long)arg;
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- unsigned long flags;
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- int spincnt = 0;
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- unsigned int *statusp = &per_cpu(rcu_cpu_kthread_status, cpu);
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- char work;
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- char *workp = &per_cpu(rcu_cpu_has_work, cpu);
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-
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- for (;;) {
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- *statusp = RCU_KTHREAD_WAITING;
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- rcu_wait(*workp != 0 || kthread_should_stop());
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- local_bh_disable();
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- if (rcu_cpu_kthread_should_stop(cpu)) {
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- local_bh_enable();
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- break;
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- }
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- *statusp = RCU_KTHREAD_RUNNING;
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- per_cpu(rcu_cpu_kthread_loops, cpu)++;
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- local_irq_save(flags);
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- work = *workp;
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- *workp = 0;
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- local_irq_restore(flags);
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- if (work)
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- rcu_process_callbacks();
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- local_bh_enable();
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- if (*workp != 0)
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- spincnt++;
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- else
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- spincnt = 0;
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- if (spincnt > 10) {
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- *statusp = RCU_KTHREAD_YIELDING;
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- rcu_yield(rcu_cpu_kthread_timer, (unsigned long)cpu);
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- spincnt = 0;
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- }
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- }
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- *statusp = RCU_KTHREAD_STOPPED;
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- return 0;
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-}
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-
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-/*
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- * Spawn a per-CPU kthread, setting up affinity and priority.
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- * Because the CPU hotplug lock is held, no other CPU will be attempting
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- * to manipulate rcu_cpu_kthread_task. There might be another CPU
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- * attempting to access it during boot, but the locking in kthread_bind()
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- * will enforce sufficient ordering.
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- */
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-static int __cpuinit rcu_spawn_one_cpu_kthread(int cpu)
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+static void invoke_rcu_callbacks(struct rcu_state *rsp, struct rcu_data *rdp)
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{
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- struct sched_param sp;
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- struct task_struct *t;
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-
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- if (!rcu_kthreads_spawnable ||
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- per_cpu(rcu_cpu_kthread_task, cpu) != NULL)
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- return 0;
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- t = kthread_create(rcu_cpu_kthread, (void *)(long)cpu, "rcuc%d", cpu);
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- if (IS_ERR(t))
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- return PTR_ERR(t);
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- kthread_bind(t, cpu);
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- per_cpu(rcu_cpu_kthread_cpu, cpu) = cpu;
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- WARN_ON_ONCE(per_cpu(rcu_cpu_kthread_task, cpu) != NULL);
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- per_cpu(rcu_cpu_kthread_task, cpu) = t;
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- sp.sched_priority = RCU_KTHREAD_PRIO;
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- sched_setscheduler_nocheck(t, SCHED_FIFO, &sp);
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- return 0;
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-}
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-
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-/*
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- * Per-rcu_node kthread, which is in charge of waking up the per-CPU
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- * kthreads when needed. We ignore requests to wake up kthreads
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- * for offline CPUs, which is OK because force_quiescent_state()
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- * takes care of this case.
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- */
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-static int rcu_node_kthread(void *arg)
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-{
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- int cpu;
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- unsigned long flags;
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- unsigned long mask;
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- struct rcu_node *rnp = (struct rcu_node *)arg;
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- struct sched_param sp;
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- struct task_struct *t;
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-
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- for (;;) {
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- rnp->node_kthread_status = RCU_KTHREAD_WAITING;
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- rcu_wait(atomic_read(&rnp->wakemask) != 0);
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- rnp->node_kthread_status = RCU_KTHREAD_RUNNING;
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- raw_spin_lock_irqsave(&rnp->lock, flags);
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- mask = atomic_xchg(&rnp->wakemask, 0);
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- rcu_initiate_boost(rnp, flags); /* releases rnp->lock. */
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- for (cpu = rnp->grplo; cpu <= rnp->grphi; cpu++, mask >>= 1) {
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- if ((mask & 0x1) == 0)
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- continue;
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- preempt_disable();
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- t = per_cpu(rcu_cpu_kthread_task, cpu);
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- if (!cpu_online(cpu) || t == NULL) {
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- preempt_enable();
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- continue;
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- }
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- per_cpu(rcu_cpu_has_work, cpu) = 1;
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- sp.sched_priority = RCU_KTHREAD_PRIO;
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- sched_setscheduler_nocheck(t, SCHED_FIFO, &sp);
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- preempt_enable();
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- }
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- }
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- /* NOTREACHED */
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- rnp->node_kthread_status = RCU_KTHREAD_STOPPED;
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- return 0;
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-}
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-
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-/*
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- * Set the per-rcu_node kthread's affinity to cover all CPUs that are
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- * served by the rcu_node in question. The CPU hotplug lock is still
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- * held, so the value of rnp->qsmaskinit will be stable.
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- *
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- * We don't include outgoingcpu in the affinity set, use -1 if there is
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- * no outgoing CPU. If there are no CPUs left in the affinity set,
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- * this function allows the kthread to execute on any CPU.
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- */
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-static void rcu_node_kthread_setaffinity(struct rcu_node *rnp, int outgoingcpu)
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-{
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- cpumask_var_t cm;
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- int cpu;
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- unsigned long mask = rnp->qsmaskinit;
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-
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- if (rnp->node_kthread_task == NULL)
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- return;
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- if (!alloc_cpumask_var(&cm, GFP_KERNEL))
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+ if (likely(!rsp->boost)) {
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+ rcu_do_batch(rsp, rdp);
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return;
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- cpumask_clear(cm);
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- for (cpu = rnp->grplo; cpu <= rnp->grphi; cpu++, mask >>= 1)
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- if ((mask & 0x1) && cpu != outgoingcpu)
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- cpumask_set_cpu(cpu, cm);
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- if (cpumask_weight(cm) == 0) {
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- cpumask_setall(cm);
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- for (cpu = rnp->grplo; cpu <= rnp->grphi; cpu++)
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- cpumask_clear_cpu(cpu, cm);
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- WARN_ON_ONCE(cpumask_weight(cm) == 0);
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}
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- set_cpus_allowed_ptr(rnp->node_kthread_task, cm);
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- rcu_boost_kthread_setaffinity(rnp, cm);
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- free_cpumask_var(cm);
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+ invoke_rcu_callbacks_kthread();
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}
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-/*
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- * Spawn a per-rcu_node kthread, setting priority and affinity.
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- * Called during boot before online/offline can happen, or, if
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- * during runtime, with the main CPU-hotplug locks held. So only
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- * one of these can be executing at a time.
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- */
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-static int __cpuinit rcu_spawn_one_node_kthread(struct rcu_state *rsp,
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- struct rcu_node *rnp)
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+static void invoke_rcu_core(void)
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{
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- unsigned long flags;
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- int rnp_index = rnp - &rsp->node[0];
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- struct sched_param sp;
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- struct task_struct *t;
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-
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- if (!rcu_kthreads_spawnable ||
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- rnp->qsmaskinit == 0)
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- return 0;
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- if (rnp->node_kthread_task == NULL) {
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- t = kthread_create(rcu_node_kthread, (void *)rnp,
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- "rcun%d", rnp_index);
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- if (IS_ERR(t))
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- return PTR_ERR(t);
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- raw_spin_lock_irqsave(&rnp->lock, flags);
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- rnp->node_kthread_task = t;
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- raw_spin_unlock_irqrestore(&rnp->lock, flags);
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- sp.sched_priority = 99;
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- sched_setscheduler_nocheck(t, SCHED_FIFO, &sp);
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- }
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- return rcu_spawn_one_boost_kthread(rsp, rnp, rnp_index);
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+ raise_softirq(RCU_SOFTIRQ);
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}
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-static void rcu_wake_one_boost_kthread(struct rcu_node *rnp);
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-
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-/*
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- * Spawn all kthreads -- called as soon as the scheduler is running.
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- */
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-static int __init rcu_spawn_kthreads(void)
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-{
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- int cpu;
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- struct rcu_node *rnp;
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- struct task_struct *t;
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-
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- rcu_kthreads_spawnable = 1;
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- for_each_possible_cpu(cpu) {
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- per_cpu(rcu_cpu_has_work, cpu) = 0;
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- if (cpu_online(cpu)) {
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- (void)rcu_spawn_one_cpu_kthread(cpu);
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- t = per_cpu(rcu_cpu_kthread_task, cpu);
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- if (t)
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- wake_up_process(t);
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- }
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- }
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- rnp = rcu_get_root(rcu_state);
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|
- (void)rcu_spawn_one_node_kthread(rcu_state, rnp);
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|
- if (rnp->node_kthread_task)
|
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|
- wake_up_process(rnp->node_kthread_task);
|
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|
- if (NUM_RCU_NODES > 1) {
|
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|
- rcu_for_each_leaf_node(rcu_state, rnp) {
|
|
|
- (void)rcu_spawn_one_node_kthread(rcu_state, rnp);
|
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|
- t = rnp->node_kthread_task;
|
|
|
- if (t)
|
|
|
- wake_up_process(t);
|
|
|
- rcu_wake_one_boost_kthread(rnp);
|
|
|
- }
|
|
|
- }
|
|
|
- return 0;
|
|
|
-}
|
|
|
-early_initcall(rcu_spawn_kthreads);
|
|
|
-
|
|
|
static void
|
|
|
__call_rcu(struct rcu_head *head, void (*func)(struct rcu_head *rcu),
|
|
|
struct rcu_state *rsp)
|
|
@@ -2207,44 +1885,6 @@ static void __cpuinit rcu_prepare_cpu(int cpu)
|
|
|
rcu_preempt_init_percpu_data(cpu);
|
|
|
}
|
|
|
|
|
|
-static void __cpuinit rcu_prepare_kthreads(int cpu)
|
|
|
-{
|
|
|
- struct rcu_data *rdp = per_cpu_ptr(rcu_state->rda, cpu);
|
|
|
- struct rcu_node *rnp = rdp->mynode;
|
|
|
-
|
|
|
- /* Fire up the incoming CPU's kthread and leaf rcu_node kthread. */
|
|
|
- if (rcu_kthreads_spawnable) {
|
|
|
- (void)rcu_spawn_one_cpu_kthread(cpu);
|
|
|
- if (rnp->node_kthread_task == NULL)
|
|
|
- (void)rcu_spawn_one_node_kthread(rcu_state, rnp);
|
|
|
- }
|
|
|
-}
|
|
|
-
|
|
|
-/*
|
|
|
- * kthread_create() creates threads in TASK_UNINTERRUPTIBLE state,
|
|
|
- * but the RCU threads are woken on demand, and if demand is low this
|
|
|
- * could be a while triggering the hung task watchdog.
|
|
|
- *
|
|
|
- * In order to avoid this, poke all tasks once the CPU is fully
|
|
|
- * up and running.
|
|
|
- */
|
|
|
-static void __cpuinit rcu_online_kthreads(int cpu)
|
|
|
-{
|
|
|
- struct rcu_data *rdp = per_cpu_ptr(rcu_state->rda, cpu);
|
|
|
- struct rcu_node *rnp = rdp->mynode;
|
|
|
- struct task_struct *t;
|
|
|
-
|
|
|
- t = per_cpu(rcu_cpu_kthread_task, cpu);
|
|
|
- if (t)
|
|
|
- wake_up_process(t);
|
|
|
-
|
|
|
- t = rnp->node_kthread_task;
|
|
|
- if (t)
|
|
|
- wake_up_process(t);
|
|
|
-
|
|
|
- rcu_wake_one_boost_kthread(rnp);
|
|
|
-}
|
|
|
-
|
|
|
/*
|
|
|
* Handle CPU online/offline notification events.
|
|
|
*/
|
|
@@ -2262,7 +1902,6 @@ static int __cpuinit rcu_cpu_notify(struct notifier_block *self,
|
|
|
rcu_prepare_kthreads(cpu);
|
|
|
break;
|
|
|
case CPU_ONLINE:
|
|
|
- rcu_online_kthreads(cpu);
|
|
|
case CPU_DOWN_FAILED:
|
|
|
rcu_node_kthread_setaffinity(rnp, -1);
|
|
|
rcu_cpu_kthread_setrt(cpu, 1);
|
|
@@ -2410,6 +2049,7 @@ void __init rcu_init(void)
|
|
|
rcu_init_one(&rcu_sched_state, &rcu_sched_data);
|
|
|
rcu_init_one(&rcu_bh_state, &rcu_bh_data);
|
|
|
__rcu_init_preempt();
|
|
|
+ open_softirq(RCU_SOFTIRQ, rcu_process_callbacks);
|
|
|
|
|
|
/*
|
|
|
* We don't need protection against CPU-hotplug here because
|