posix-timers: Add proper state tracking
Right now the state tracking is done by two struct members:
- it_active:
A boolean which tracks armed/disarmed state
- it_signal_seq:
A sequence counter which is used to invalidate settings
and prevent rearming
Replace it_active with it_status and keep properly track about the states
in one place.
This allows to reuse it_signal_seq to track reprogramming, disarm and
delete operations in order to drop signals which are related to the state
previous of those operations.
Signed-off-by: Thomas Gleixner <tglx@linutronix.de>
Reviewed-by: Frederic Weisbecker <frederic@kernel.org>
Acked-by: Peter Zijlstra (Intel) <peterz@infradead.org>
Link: https://lore.kernel.org/all/20241001083835.670337048@linutronix.de
This commit is contained in:
@@ -147,7 +147,7 @@ static inline void posix_cputimers_init_work(void) { }
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* @kclock: Pointer to the k_clock struct handling this timer
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* @it_clock: The posix timer clock id
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* @it_id: The posix timer id for identifying the timer
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* @it_active: Marker that timer is active
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* @it_status: The status of the timer
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* @it_overrun: The overrun counter for pending signals
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* @it_overrun_last: The overrun at the time of the last delivered signal
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* @it_signal_seq: Sequence count to control signal delivery
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@@ -168,7 +168,7 @@ struct k_itimer {
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const struct k_clock *kclock;
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clockid_t it_clock;
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timer_t it_id;
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int it_active;
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int it_status;
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s64 it_overrun;
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s64 it_overrun_last;
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unsigned int it_signal_seq;
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@@ -585,7 +585,7 @@ static enum alarmtimer_restart alarm_handle_timer(struct alarm *alarm,
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*/
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ptr->it_overrun += __alarm_forward_now(alarm, ptr->it_interval, true);
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++ptr->it_signal_seq;
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ptr->it_active = 1;
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ptr->it_status = POSIX_TIMER_ARMED;
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result = ALARMTIMER_RESTART;
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}
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spin_unlock_irqrestore(&ptr->it_lock, flags);
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@@ -453,7 +453,6 @@ static void disarm_timer(struct k_itimer *timer, struct task_struct *p)
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struct cpu_timer *ctmr = &timer->it.cpu;
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struct posix_cputimer_base *base;
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timer->it_active = 0;
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if (!cpu_timer_dequeue(ctmr))
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return;
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@@ -494,11 +493,12 @@ static int posix_cpu_timer_del(struct k_itimer *timer)
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*/
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WARN_ON_ONCE(ctmr->head || timerqueue_node_queued(&ctmr->node));
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} else {
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if (timer->it.cpu.firing)
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if (timer->it.cpu.firing) {
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ret = TIMER_RETRY;
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else
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} else {
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disarm_timer(timer, p);
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timer->it_status = POSIX_TIMER_DISARMED;
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}
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unlock_task_sighand(p, &flags);
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}
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@@ -560,7 +560,7 @@ static void arm_timer(struct k_itimer *timer, struct task_struct *p)
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struct cpu_timer *ctmr = &timer->it.cpu;
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u64 newexp = cpu_timer_getexpires(ctmr);
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timer->it_active = 1;
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timer->it_status = POSIX_TIMER_ARMED;
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if (!cpu_timer_enqueue(&base->tqhead, ctmr))
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return;
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@@ -586,7 +586,8 @@ static void cpu_timer_fire(struct k_itimer *timer)
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{
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struct cpu_timer *ctmr = &timer->it.cpu;
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timer->it_active = 0;
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timer->it_status = POSIX_TIMER_DISARMED;
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if (unlikely(timer->sigq == NULL)) {
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/*
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* This a special case for clock_nanosleep,
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@@ -671,7 +672,7 @@ static int posix_cpu_timer_set(struct k_itimer *timer, int timer_flags,
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ret = TIMER_RETRY;
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} else {
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cpu_timer_dequeue(ctmr);
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timer->it_active = 0;
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timer->it_status = POSIX_TIMER_DISARMED;
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}
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/*
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@@ -272,7 +272,7 @@ bool posixtimer_deliver_signal(struct kernel_siginfo *info)
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if (timr->it_interval && timr->it_signal_seq == info->si_sys_private) {
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timr->kclock->timer_rearm(timr);
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timr->it_active = 1;
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timr->it_status = POSIX_TIMER_ARMED;
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timr->it_overrun_last = timr->it_overrun;
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timr->it_overrun = -1LL;
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++timr->it_signal_seq;
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@@ -292,14 +292,17 @@ out:
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int posix_timer_queue_signal(struct k_itimer *timr)
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{
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enum posix_timer_state state = POSIX_TIMER_DISARMED;
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int ret, si_private = 0;
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enum pid_type type;
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lockdep_assert_held(&timr->it_lock);
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timr->it_active = 0;
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if (timr->it_interval)
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if (timr->it_interval) {
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state = POSIX_TIMER_REQUEUE_PENDING;
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si_private = ++timr->it_signal_seq;
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}
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timr->it_status = state;
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type = !(timr->it_sigev_notify & SIGEV_THREAD_ID) ? PIDTYPE_TGID : PIDTYPE_PID;
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ret = send_sigqueue(timr->sigq, timr->it_pid, type, si_private);
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@@ -367,7 +370,7 @@ static enum hrtimer_restart posix_timer_fn(struct hrtimer *timer)
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timr->it_overrun += hrtimer_forward(timer, now, timr->it_interval);
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ret = HRTIMER_RESTART;
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++timr->it_signal_seq;
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timr->it_active = 1;
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timr->it_status = POSIX_TIMER_ARMED;
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}
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}
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@@ -640,10 +643,10 @@ void common_timer_get(struct k_itimer *timr, struct itimerspec64 *cur_setting)
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/* interval timer ? */
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if (iv) {
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cur_setting->it_interval = ktime_to_timespec64(iv);
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} else if (!timr->it_active) {
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} else if (timr->it_status == POSIX_TIMER_DISARMED) {
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/*
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* SIGEV_NONE oneshot timers are never queued and therefore
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* timr->it_active is always false. The check below
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* timr->it_status is always DISARMED. The check below
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* vs. remaining time will handle this case.
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*
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* For all other timers there is nothing to update here, so
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@@ -888,7 +891,7 @@ int common_timer_set(struct k_itimer *timr, int flags,
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if (kc->timer_try_to_cancel(timr) < 0)
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return TIMER_RETRY;
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timr->it_active = 0;
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timr->it_status = POSIX_TIMER_DISARMED;
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posix_timer_set_common(timr, new_setting);
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/* Keep timer disarmed when it_value is zero */
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@@ -901,7 +904,8 @@ int common_timer_set(struct k_itimer *timr, int flags,
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sigev_none = timr->it_sigev_notify == SIGEV_NONE;
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kc->timer_arm(timr, expires, flags & TIMER_ABSTIME, sigev_none);
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timr->it_active = !sigev_none;
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if (!sigev_none)
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timr->it_status = POSIX_TIMER_ARMED;
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return 0;
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}
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@@ -1000,7 +1004,7 @@ int common_timer_del(struct k_itimer *timer)
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timer->it_interval = 0;
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if (kc->timer_try_to_cancel(timer) < 0)
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return TIMER_RETRY;
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timer->it_active = 0;
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timer->it_status = POSIX_TIMER_DISARMED;
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return 0;
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}
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@@ -1,6 +1,12 @@
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/* SPDX-License-Identifier: GPL-2.0 */
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#define TIMER_RETRY 1
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enum posix_timer_state {
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POSIX_TIMER_DISARMED,
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POSIX_TIMER_ARMED,
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POSIX_TIMER_REQUEUE_PENDING,
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};
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struct k_clock {
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int (*clock_getres)(const clockid_t which_clock,
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struct timespec64 *tp);
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