* synchronize with any firing (by calling del_timer_sync)
* before we can safely let the old group leader die.
*/
- sig->real_timer.data = current;
+ sig->tsk = current;
spin_unlock_irq(lock);
if (hrtimer_cancel(&sig->real_timer))
hrtimer_restart(&sig->real_timer);
* @expires: the absolute expiry time in the hrtimers internal
* representation. The time is related to the clock on
* which the timer is based.
- * @state: state of the timer
* @function: timer expiry callback function
- * @data: argument for the callback function
* @base: pointer to the timer base (per cpu and per clock)
*
* The hrtimer structure must be initialized by init_hrtimer_#CLOCKTYPE()
struct hrtimer {
struct rb_node node;
ktime_t expires;
- int (*function)(void *);
- void *data;
+ int (*function)(struct hrtimer *);
struct hrtimer_base *base;
};
/* ITIMER_REAL timer for the process */
struct hrtimer real_timer;
+ struct task_struct *tsk;
ktime_t it_real_incr;
/* ITIMER_PROF and ITIMER_VIRTUAL timers for the process */
extern void init_timers(void);
extern void run_local_timers(void);
-extern int it_real_fn(void *);
+struct hrtimer;
+extern int it_real_fn(struct hrtimer *);
#endif
hrtimer_init(&sig->real_timer, CLOCK_MONOTONIC, HRTIMER_REL);
sig->it_real_incr.tv64 = 0;
sig->real_timer.function = it_real_fn;
- sig->real_timer.data = tsk;
+ sig->tsk = tsk;
sig->it_virt_expires = cputime_zero;
sig->it_virt_incr = cputime_zero;
while ((node = base->first)) {
struct hrtimer *timer;
- int (*fn)(void *);
+ int (*fn)(struct hrtimer *);
int restart;
- void *data;
timer = rb_entry(node, struct hrtimer, node);
if (base->softirq_time.tv64 <= timer->expires.tv64)
break;
fn = timer->function;
- data = timer->data;
set_curr_timer(base, timer);
__remove_hrtimer(timer, base);
spin_unlock_irq(&base->lock);
- restart = fn(data);
+ restart = fn(timer);
spin_lock_irq(&base->lock);
int expired;
};
-static int nanosleep_wakeup(void *data)
+static int nanosleep_wakeup(struct hrtimer *timer)
{
- struct sleep_hrtimer *t = data;
+ struct sleep_hrtimer *t =
+ container_of(timer, struct sleep_hrtimer, timer);
t->expired = 1;
wake_up_process(t->task);
static int __sched do_nanosleep(struct sleep_hrtimer *t, enum hrtimer_mode mode)
{
t->timer.function = nanosleep_wakeup;
- t->timer.data = t;
t->task = current;
t->expired = 0;
/*
* The timer is automagically restarted, when interval != 0
*/
-int it_real_fn(void *data)
+int it_real_fn(struct hrtimer *timer)
{
- struct task_struct *tsk = (struct task_struct *) data;
+ struct signal_struct *sig =
+ container_of(timer, struct signal_struct, real_timer);
- send_group_sig_info(SIGALRM, SEND_SIG_PRIV, tsk);
-
- if (tsk->signal->it_real_incr.tv64 != 0) {
- hrtimer_forward(&tsk->signal->real_timer,
- tsk->signal->real_timer.base->softirq_time,
- tsk->signal->it_real_incr);
+ send_group_sig_info(SIGALRM, SEND_SIG_PRIV, sig->tsk);
+ if (sig->it_real_incr.tv64 != 0) {
+ hrtimer_forward(timer, timer->base->softirq_time,
+ sig->it_real_incr);
return HRTIMER_RESTART;
}
return HRTIMER_NORESTART;
struct itimerspec *, struct itimerspec *);
static int common_timer_del(struct k_itimer *timer);
-static int posix_timer_fn(void *data);
+static int posix_timer_fn(struct hrtimer *data);
static struct k_itimer *lock_timer(timer_t timer_id, unsigned long *flags);
* This code is for CLOCK_REALTIME* and CLOCK_MONOTONIC* timers.
*/
-static int posix_timer_fn(void *data)
+static int posix_timer_fn(struct hrtimer *timer)
{
- struct k_itimer *timr = data;
- struct hrtimer *timer = &timr->it.real.timer;
+ struct k_itimer *timr;
unsigned long flags;
int si_private = 0;
int ret = HRTIMER_NORESTART;
+ timr = container_of(timer, struct k_itimer, it.real.timer);
spin_lock_irqsave(&timr->it_lock, flags);
if (timr->it.real.interval.tv64 != 0)
mode = flags & TIMER_ABSTIME ? HRTIMER_ABS : HRTIMER_REL;
hrtimer_init(&timr->it.real.timer, timr->it_clock, mode);
- timr->it.real.timer.data = timr;
timr->it.real.timer.function = posix_timer_fn;
timer->expires = timespec_to_ktime(new_setting->it_value);