u32 ncpu; /* highest cpu slot allocated */
};
+/* per cpu idle time data */
+struct idle_thread_runtime {
+ struct thread_runtime tr;
+ struct thread *last_thread;
+ struct rb_root sorted_root;
+ struct callchain_root callchain;
+ struct callchain_cursor cursor;
+};
+
/* track idle times per cpu */
static struct thread **idle_threads;
static int idle_max_cpu;
}
}
+static int init_idle_thread(struct thread *thread)
+{
+ struct idle_thread_runtime *itr;
+
+ thread__set_comm(thread, idle_comm, 0);
+
+ itr = zalloc(sizeof(*itr));
+ if (itr == NULL)
+ return -ENOMEM;
+
+ init_stats(&itr->tr.run_stats);
+ callchain_init(&itr->callchain);
+ callchain_cursor_reset(&itr->cursor);
+ thread__set_priv(thread, itr);
+
+ return 0;
+}
+
/*
* Track idle stats per cpu by maintaining a local thread
* struct for the idle task on each cpu.
*/
static int init_idle_threads(int ncpu)
{
- int i;
+ int i, ret;
idle_threads = zalloc(ncpu * sizeof(struct thread *));
if (!idle_threads)
if (idle_threads[i] == NULL)
return -ENOMEM;
- thread__set_comm(idle_threads[i], idle_comm, 0);
+ ret = init_idle_thread(idle_threads[i]);
+ if (ret < 0)
+ return ret;
}
return 0;
idle_threads[cpu] = thread__new(0, 0);
if (idle_threads[cpu]) {
- idle_threads[cpu]->tid = 0;
- thread__set_comm(idle_threads[cpu], idle_comm, 0);
+ if (init_idle_thread(idle_threads[cpu]) < 0)
+ return NULL;
}
}