static struct cpumask osnoise_cpumask;
static struct cpumask save_cpumask;
+static struct cpumask kthread_cpumask;
/*
* osnoise_sleep - sleep until the next period
*/
mutex_lock(&interface_lock);
this_cpu_osn_var()->kthread = NULL;
+ cpumask_clear_cpu(smp_processor_id(), &kthread_cpumask);
mutex_unlock(&interface_lock);
return 1;
kthread = per_cpu(per_cpu_osnoise_var, cpu).kthread;
if (kthread) {
- if (test_bit(OSN_WORKLOAD, &osnoise_options)) {
+ if (cpumask_test_and_clear_cpu(cpu, &kthread_cpumask) &&
+ !WARN_ON(!test_bit(OSN_WORKLOAD, &osnoise_options))) {
kthread_stop(kthread);
- } else {
+ } else if (!WARN_ON(test_bit(OSN_WORKLOAD, &osnoise_options))) {
/*
* This is a user thread waiting on the timerlat_fd. We need
* to close all users, and the best way to guarantee this is
}
per_cpu(per_cpu_osnoise_var, cpu).kthread = kthread;
+ cpumask_set_cpu(cpu, &kthread_cpumask);
return 0;
}
*/
cpumask_and(current_mask, cpu_online_mask, &osnoise_cpumask);
- for_each_possible_cpu(cpu)
+ for_each_possible_cpu(cpu) {
+ if (cpumask_test_and_clear_cpu(cpu, &kthread_cpumask)) {
+ struct task_struct *kthread;
+
+ kthread = per_cpu(per_cpu_osnoise_var, cpu).kthread;
+ if (!WARN_ON(!kthread))
+ kthread_stop(kthread);
+ }
per_cpu(per_cpu_osnoise_var, cpu).kthread = NULL;
+ }
for_each_cpu(cpu, current_mask) {
retval = start_kthread(cpu);