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locking: Add task::blocked_lock to serialize blocked_on state
So far, we have been able to utilize the mutex::wait_lock for serializing the blocked_on state, but when we move to proxying across runqueues, we will need to add more state and a way to serialize changes to this state in contexts where we don't hold the mutex::wait_lock. So introduce the task::blocked_lock, which nests under the mutex::wait_lock in the locking order, and rework the locking to use it. Signed-off-by: John Stultz <jstultz@google.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Reviewed-by: K Prateek Nayak <kprateek.nayak@amd.com> Link: https://patch.msgid.link/20260324191337.1841376-5-jstultz@google.com
This commit is contained in:
committed by
Peter Zijlstra
parent
f4fe6be82e
commit
fa4a1ff8ab
@@ -1238,6 +1238,7 @@ struct task_struct {
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#endif
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struct mutex *blocked_on; /* lock we're blocked on */
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raw_spinlock_t blocked_lock;
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#ifdef CONFIG_DETECT_HUNG_TASK_BLOCKER
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/*
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@@ -2181,57 +2182,42 @@ extern int __cond_resched_rwlock_write(rwlock_t *lock) __must_hold(lock);
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#ifndef CONFIG_PREEMPT_RT
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static inline struct mutex *__get_task_blocked_on(struct task_struct *p)
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{
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struct mutex *m = p->blocked_on;
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if (m)
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lockdep_assert_held_once(&m->wait_lock);
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return m;
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lockdep_assert_held_once(&p->blocked_lock);
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return p->blocked_on;
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}
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static inline void __set_task_blocked_on(struct task_struct *p, struct mutex *m)
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{
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struct mutex *blocked_on = READ_ONCE(p->blocked_on);
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WARN_ON_ONCE(!m);
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/* The task should only be setting itself as blocked */
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WARN_ON_ONCE(p != current);
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/* Currently we serialize blocked_on under the mutex::wait_lock */
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lockdep_assert_held_once(&m->wait_lock);
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/* Currently we serialize blocked_on under the task::blocked_lock */
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lockdep_assert_held_once(&p->blocked_lock);
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/*
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* Check ensure we don't overwrite existing mutex value
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* with a different mutex. Note, setting it to the same
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* lock repeatedly is ok.
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*/
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WARN_ON_ONCE(blocked_on && blocked_on != m);
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WRITE_ONCE(p->blocked_on, m);
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}
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static inline void set_task_blocked_on(struct task_struct *p, struct mutex *m)
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{
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guard(raw_spinlock_irqsave)(&m->wait_lock);
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__set_task_blocked_on(p, m);
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WARN_ON_ONCE(p->blocked_on && p->blocked_on != m);
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p->blocked_on = m;
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}
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static inline void __clear_task_blocked_on(struct task_struct *p, struct mutex *m)
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{
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if (m) {
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struct mutex *blocked_on = READ_ONCE(p->blocked_on);
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/* Currently we serialize blocked_on under the mutex::wait_lock */
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lockdep_assert_held_once(&m->wait_lock);
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/*
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* There may be cases where we re-clear already cleared
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* blocked_on relationships, but make sure we are not
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* clearing the relationship with a different lock.
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*/
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WARN_ON_ONCE(blocked_on && blocked_on != m);
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}
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WRITE_ONCE(p->blocked_on, NULL);
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/* Currently we serialize blocked_on under the task::blocked_lock */
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lockdep_assert_held_once(&p->blocked_lock);
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/*
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* There may be cases where we re-clear already cleared
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* blocked_on relationships, but make sure we are not
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* clearing the relationship with a different lock.
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*/
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WARN_ON_ONCE(m && p->blocked_on && p->blocked_on != m);
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p->blocked_on = NULL;
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}
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static inline void clear_task_blocked_on(struct task_struct *p, struct mutex *m)
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{
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guard(raw_spinlock_irqsave)(&m->wait_lock);
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guard(raw_spinlock_irqsave)(&p->blocked_lock);
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__clear_task_blocked_on(p, m);
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}
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#else
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@@ -169,6 +169,7 @@ struct task_struct init_task __aligned(L1_CACHE_BYTES) = {
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.journal_info = NULL,
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INIT_CPU_TIMERS(init_task)
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.pi_lock = __RAW_SPIN_LOCK_UNLOCKED(init_task.pi_lock),
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.blocked_lock = __RAW_SPIN_LOCK_UNLOCKED(init_task.blocked_lock),
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.timer_slack_ns = 50000, /* 50 usec default slack */
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.thread_pid = &init_struct_pid,
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.thread_node = LIST_HEAD_INIT(init_signals.thread_head),
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@@ -2076,6 +2076,7 @@ __latent_entropy struct task_struct *copy_process(
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ftrace_graph_init_task(p);
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rt_mutex_init_task(p);
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raw_spin_lock_init(&p->blocked_lock);
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lockdep_assert_irqs_enabled();
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#ifdef CONFIG_PROVE_LOCKING
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@@ -54,13 +54,13 @@ void debug_mutex_add_waiter(struct mutex *lock, struct mutex_waiter *waiter,
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lockdep_assert_held(&lock->wait_lock);
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/* Current thread can't be already blocked (since it's executing!) */
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DEBUG_LOCKS_WARN_ON(__get_task_blocked_on(task));
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DEBUG_LOCKS_WARN_ON(get_task_blocked_on(task));
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}
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void debug_mutex_remove_waiter(struct mutex *lock, struct mutex_waiter *waiter,
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struct task_struct *task)
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{
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struct mutex *blocked_on = __get_task_blocked_on(task);
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struct mutex *blocked_on = get_task_blocked_on(task);
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DEBUG_LOCKS_WARN_ON(list_empty(&waiter->list));
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DEBUG_LOCKS_WARN_ON(waiter->task != task);
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@@ -656,6 +656,7 @@ __mutex_lock_common(struct mutex *lock, unsigned int state, unsigned int subclas
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goto err_early_kill;
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}
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raw_spin_lock(¤t->blocked_lock);
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__set_task_blocked_on(current, lock);
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set_current_state(state);
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trace_contention_begin(lock, LCB_F_MUTEX);
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@@ -669,8 +670,9 @@ __mutex_lock_common(struct mutex *lock, unsigned int state, unsigned int subclas
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* the handoff.
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*/
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if (__mutex_trylock(lock))
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goto acquired;
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break;
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raw_spin_unlock(¤t->blocked_lock);
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/*
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* Check for signals and kill conditions while holding
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* wait_lock. This ensures the lock cancellation is ordered
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@@ -693,12 +695,14 @@ __mutex_lock_common(struct mutex *lock, unsigned int state, unsigned int subclas
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first = __mutex_waiter_is_first(lock, &waiter);
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raw_spin_lock_irqsave(&lock->wait_lock, flags);
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raw_spin_lock(¤t->blocked_lock);
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/*
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* As we likely have been woken up by task
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* that has cleared our blocked_on state, re-set
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* it to the lock we are trying to acquire.
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*/
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set_task_blocked_on(current, lock);
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__set_task_blocked_on(current, lock);
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set_current_state(state);
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/*
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* Here we order against unlock; we must either see it change
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@@ -709,25 +713,33 @@ __mutex_lock_common(struct mutex *lock, unsigned int state, unsigned int subclas
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break;
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if (first) {
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trace_contention_begin(lock, LCB_F_MUTEX | LCB_F_SPIN);
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bool opt_acquired;
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/*
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* mutex_optimistic_spin() can call schedule(), so
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* clear blocked on so we don't become unselectable
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* we need to release these locks before calling it,
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* and clear blocked on so we don't become unselectable
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* to run.
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*/
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clear_task_blocked_on(current, lock);
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if (mutex_optimistic_spin(lock, ww_ctx, &waiter))
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__clear_task_blocked_on(current, lock);
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raw_spin_unlock(¤t->blocked_lock);
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raw_spin_unlock_irqrestore(&lock->wait_lock, flags);
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trace_contention_begin(lock, LCB_F_MUTEX | LCB_F_SPIN);
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opt_acquired = mutex_optimistic_spin(lock, ww_ctx, &waiter);
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raw_spin_lock_irqsave(&lock->wait_lock, flags);
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raw_spin_lock(¤t->blocked_lock);
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__set_task_blocked_on(current, lock);
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if (opt_acquired)
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break;
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set_task_blocked_on(current, lock);
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trace_contention_begin(lock, LCB_F_MUTEX);
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}
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raw_spin_lock_irqsave(&lock->wait_lock, flags);
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}
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raw_spin_lock_irqsave(&lock->wait_lock, flags);
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acquired:
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__clear_task_blocked_on(current, lock);
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__set_current_state(TASK_RUNNING);
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raw_spin_unlock(¤t->blocked_lock);
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if (ww_ctx) {
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/*
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@@ -756,11 +768,11 @@ skip_wait:
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return 0;
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err:
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__clear_task_blocked_on(current, lock);
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clear_task_blocked_on(current, lock);
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__set_current_state(TASK_RUNNING);
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__mutex_remove_waiter(lock, &waiter);
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err_early_kill:
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WARN_ON(__get_task_blocked_on(current));
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WARN_ON(get_task_blocked_on(current));
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trace_contention_end(lock, ret);
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raw_spin_unlock_irqrestore_wake(&lock->wait_lock, flags, &wake_q);
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debug_mutex_free_waiter(&waiter);
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@@ -971,7 +983,7 @@ static noinline void __sched __mutex_unlock_slowpath(struct mutex *lock, unsigne
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next = waiter->task;
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debug_mutex_wake_waiter(lock, waiter);
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__clear_task_blocked_on(next, lock);
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clear_task_blocked_on(next, lock);
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wake_q_add(&wake_q, next);
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}
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@@ -47,6 +47,12 @@ static inline struct task_struct *__mutex_owner(struct mutex *lock)
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return (struct task_struct *)(atomic_long_read(&lock->owner) & ~MUTEX_FLAGS);
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}
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static inline struct mutex *get_task_blocked_on(struct task_struct *p)
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{
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guard(raw_spinlock_irqsave)(&p->blocked_lock);
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return __get_task_blocked_on(p);
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}
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#ifdef CONFIG_DEBUG_MUTEXES
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extern void debug_mutex_lock_common(struct mutex *lock,
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struct mutex_waiter *waiter);
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@@ -289,7 +289,7 @@ __ww_mutex_die(struct MUTEX *lock, struct MUTEX_WAITER *waiter,
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* blocked_on pointer. Otherwise we can see circular
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* blocked_on relationships that can't resolve.
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*/
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__clear_task_blocked_on(waiter->task, lock);
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clear_task_blocked_on(waiter->task, lock);
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wake_q_add(wake_q, waiter->task);
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}
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@@ -347,7 +347,7 @@ static bool __ww_mutex_wound(struct MUTEX *lock,
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* are waking the mutex owner, who may be currently
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* blocked on a different mutex.
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*/
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__clear_task_blocked_on(owner, NULL);
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clear_task_blocked_on(owner, NULL);
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wake_q_add(wake_q, owner);
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}
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return true;
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@@ -6584,6 +6584,7 @@ static struct task_struct *proxy_deactivate(struct rq *rq, struct task_struct *d
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* p->pi_lock
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* rq->lock
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* mutex->wait_lock
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* p->blocked_lock
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*
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* Returns the task that is going to be used as execution context (the one
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* that is actually going to be run on cpu_of(rq)).
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@@ -6603,8 +6604,9 @@ find_proxy_task(struct rq *rq, struct task_struct *donor, struct rq_flags *rf)
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* and ensure @owner sticks around.
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*/
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guard(raw_spinlock)(&mutex->wait_lock);
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guard(raw_spinlock)(&p->blocked_lock);
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/* Check again that p is blocked with wait_lock held */
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/* Check again that p is blocked with blocked_lock held */
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if (mutex != __get_task_blocked_on(p)) {
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/*
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* Something changed in the blocked_on chain and
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