1 /* SPDX-License-Identifier: GPL-2.0+ */
3 * Read-Copy Update definitions shared among RCU implementations.
5 * Copyright IBM Corporation, 2011
13 #include <linux/slab.h>
14 #include <trace/events/rcu.h>
17 * Grace-period counter management.
19 * The two least significant bits contain the control flags.
20 * The most significant bits contain the grace-period sequence counter.
22 * When both control flags are zero, no grace period is in progress.
23 * When either bit is non-zero, a grace period has started and is in
24 * progress. When the grace period completes, the control flags are reset
25 * to 0 and the grace-period sequence counter is incremented.
27 * However some specific RCU usages make use of custom values.
29 * SRCU special control values:
31 * SRCU_SNP_INIT_SEQ : Invalid/init value set when SRCU node
34 * SRCU_STATE_IDLE : No SRCU gp is in progress
36 * SRCU_STATE_SCAN1 : State set by rcu_seq_start(). Indicates
37 * we are scanning the readers on the slot
38 * defined as inactive (there might well
39 * be pending readers that will use that
40 * index, but their number is bounded).
42 * SRCU_STATE_SCAN2 : State set manually via rcu_seq_set_state()
43 * Indicates we are flipping the readers
44 * index and then scanning the readers on the
45 * slot newly designated as inactive (again,
46 * the number of pending readers that will use
47 * this inactive index is bounded).
49 * RCU polled GP special control value:
51 * RCU_GET_STATE_COMPLETED : State value indicating an already-completed
52 * polled GP has completed. This value covers
53 * both the state and the counter of the
54 * grace-period sequence number.
57 #define RCU_SEQ_CTR_SHIFT 2
58 #define RCU_SEQ_STATE_MASK ((1 << RCU_SEQ_CTR_SHIFT) - 1)
60 /* Low-order bit definition for polled grace-period APIs. */
61 #define RCU_GET_STATE_COMPLETED 0x1
63 extern int sysctl_sched_rt_runtime;
66 * Return the counter portion of a sequence number previously returned
67 * by rcu_seq_snap() or rcu_seq_current().
69 static inline unsigned long rcu_seq_ctr(unsigned long s)
71 return s >> RCU_SEQ_CTR_SHIFT;
75 * Return the state portion of a sequence number previously returned
76 * by rcu_seq_snap() or rcu_seq_current().
78 static inline int rcu_seq_state(unsigned long s)
80 return s & RCU_SEQ_STATE_MASK;
84 * Set the state portion of the pointed-to sequence number.
85 * The caller is responsible for preventing conflicting updates.
87 static inline void rcu_seq_set_state(unsigned long *sp, int newstate)
89 WARN_ON_ONCE(newstate & ~RCU_SEQ_STATE_MASK);
90 WRITE_ONCE(*sp, (*sp & ~RCU_SEQ_STATE_MASK) + newstate);
93 /* Adjust sequence number for start of update-side operation. */
94 static inline void rcu_seq_start(unsigned long *sp)
96 WRITE_ONCE(*sp, *sp + 1);
97 smp_mb(); /* Ensure update-side operation after counter increment. */
98 WARN_ON_ONCE(rcu_seq_state(*sp) != 1);
101 /* Compute the end-of-grace-period value for the specified sequence number. */
102 static inline unsigned long rcu_seq_endval(unsigned long *sp)
104 return (*sp | RCU_SEQ_STATE_MASK) + 1;
107 /* Adjust sequence number for end of update-side operation. */
108 static inline void rcu_seq_end(unsigned long *sp)
110 smp_mb(); /* Ensure update-side operation before counter increment. */
111 WARN_ON_ONCE(!rcu_seq_state(*sp));
112 WRITE_ONCE(*sp, rcu_seq_endval(sp));
116 * rcu_seq_snap - Take a snapshot of the update side's sequence number.
118 * This function returns the earliest value of the grace-period sequence number
119 * that will indicate that a full grace period has elapsed since the current
120 * time. Once the grace-period sequence number has reached this value, it will
121 * be safe to invoke all callbacks that have been registered prior to the
122 * current time. This value is the current grace-period number plus two to the
123 * power of the number of low-order bits reserved for state, then rounded up to
124 * the next value in which the state bits are all zero.
126 static inline unsigned long rcu_seq_snap(unsigned long *sp)
130 s = (READ_ONCE(*sp) + 2 * RCU_SEQ_STATE_MASK + 1) & ~RCU_SEQ_STATE_MASK;
131 smp_mb(); /* Above access must not bleed into critical section. */
135 /* Return the current value the update side's sequence number, no ordering. */
136 static inline unsigned long rcu_seq_current(unsigned long *sp)
138 return READ_ONCE(*sp);
142 * Given a snapshot from rcu_seq_snap(), determine whether or not the
143 * corresponding update-side operation has started.
145 static inline bool rcu_seq_started(unsigned long *sp, unsigned long s)
147 return ULONG_CMP_LT((s - 1) & ~RCU_SEQ_STATE_MASK, READ_ONCE(*sp));
151 * Given a snapshot from rcu_seq_snap(), determine whether or not a
152 * full update-side operation has occurred.
154 static inline bool rcu_seq_done(unsigned long *sp, unsigned long s)
156 return ULONG_CMP_GE(READ_ONCE(*sp), s);
160 * Given a snapshot from rcu_seq_snap(), determine whether or not a
161 * full update-side operation has occurred, but do not allow the
162 * (ULONG_MAX / 2) safety-factor/guard-band.
164 static inline bool rcu_seq_done_exact(unsigned long *sp, unsigned long s)
166 unsigned long cur_s = READ_ONCE(*sp);
168 return ULONG_CMP_GE(cur_s, s) || ULONG_CMP_LT(cur_s, s - (2 * RCU_SEQ_STATE_MASK + 1));
172 * Has a grace period completed since the time the old gp_seq was collected?
174 static inline bool rcu_seq_completed_gp(unsigned long old, unsigned long new)
176 return ULONG_CMP_LT(old, new & ~RCU_SEQ_STATE_MASK);
180 * Has a grace period started since the time the old gp_seq was collected?
182 static inline bool rcu_seq_new_gp(unsigned long old, unsigned long new)
184 return ULONG_CMP_LT((old + RCU_SEQ_STATE_MASK) & ~RCU_SEQ_STATE_MASK,
189 * Roughly how many full grace periods have elapsed between the collection
190 * of the two specified grace periods?
192 static inline unsigned long rcu_seq_diff(unsigned long new, unsigned long old)
194 unsigned long rnd_diff;
199 * Compute the number of grace periods (still shifted up), plus
200 * one if either of new and old is not an exact grace period.
202 rnd_diff = (new & ~RCU_SEQ_STATE_MASK) -
203 ((old + RCU_SEQ_STATE_MASK) & ~RCU_SEQ_STATE_MASK) +
204 ((new & RCU_SEQ_STATE_MASK) || (old & RCU_SEQ_STATE_MASK));
205 if (ULONG_CMP_GE(RCU_SEQ_STATE_MASK, rnd_diff))
206 return 1; /* Definitely no grace period has elapsed. */
207 return ((rnd_diff - RCU_SEQ_STATE_MASK - 1) >> RCU_SEQ_CTR_SHIFT) + 2;
211 * debug_rcu_head_queue()/debug_rcu_head_unqueue() are used internally
212 * by call_rcu() and rcu callback execution, and are therefore not part
213 * of the RCU API. These are in rcupdate.h because they are used by all
214 * RCU implementations.
217 #ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD
218 # define STATE_RCU_HEAD_READY 0
219 # define STATE_RCU_HEAD_QUEUED 1
221 extern const struct debug_obj_descr rcuhead_debug_descr;
223 static inline int debug_rcu_head_queue(struct rcu_head *head)
227 r1 = debug_object_activate(head, &rcuhead_debug_descr);
228 debug_object_active_state(head, &rcuhead_debug_descr,
229 STATE_RCU_HEAD_READY,
230 STATE_RCU_HEAD_QUEUED);
234 static inline void debug_rcu_head_unqueue(struct rcu_head *head)
236 debug_object_active_state(head, &rcuhead_debug_descr,
237 STATE_RCU_HEAD_QUEUED,
238 STATE_RCU_HEAD_READY);
239 debug_object_deactivate(head, &rcuhead_debug_descr);
241 #else /* !CONFIG_DEBUG_OBJECTS_RCU_HEAD */
242 static inline int debug_rcu_head_queue(struct rcu_head *head)
247 static inline void debug_rcu_head_unqueue(struct rcu_head *head)
250 #endif /* #else !CONFIG_DEBUG_OBJECTS_RCU_HEAD */
252 static inline void debug_rcu_head_callback(struct rcu_head *rhp)
254 if (unlikely(!rhp->func))
258 extern int rcu_cpu_stall_suppress_at_boot;
260 static inline bool rcu_stall_is_suppressed_at_boot(void)
262 return rcu_cpu_stall_suppress_at_boot && !rcu_inkernel_boot_has_ended();
265 extern int rcu_cpu_stall_notifiers;
267 #ifdef CONFIG_RCU_STALL_COMMON
269 extern int rcu_cpu_stall_ftrace_dump;
270 extern int rcu_cpu_stall_suppress;
271 extern int rcu_cpu_stall_timeout;
272 extern int rcu_exp_cpu_stall_timeout;
273 extern int rcu_cpu_stall_cputime;
274 extern bool rcu_exp_stall_task_details __read_mostly;
275 int rcu_jiffies_till_stall_check(void);
276 int rcu_exp_jiffies_till_stall_check(void);
278 static inline bool rcu_stall_is_suppressed(void)
280 return rcu_stall_is_suppressed_at_boot() || rcu_cpu_stall_suppress;
283 #define rcu_ftrace_dump_stall_suppress() \
285 if (!rcu_cpu_stall_suppress) \
286 rcu_cpu_stall_suppress = 3; \
289 #define rcu_ftrace_dump_stall_unsuppress() \
291 if (rcu_cpu_stall_suppress == 3) \
292 rcu_cpu_stall_suppress = 0; \
295 #else /* #endif #ifdef CONFIG_RCU_STALL_COMMON */
297 static inline bool rcu_stall_is_suppressed(void)
299 return rcu_stall_is_suppressed_at_boot();
301 #define rcu_ftrace_dump_stall_suppress()
302 #define rcu_ftrace_dump_stall_unsuppress()
303 #endif /* #ifdef CONFIG_RCU_STALL_COMMON */
306 * Strings used in tracepoints need to be exported via the
307 * tracing system such that tools like perf and trace-cmd can
308 * translate the string address pointers to actual text.
310 #define TPS(x) tracepoint_string(x)
313 * Dump the ftrace buffer, but only one time per callsite per boot.
315 #define rcu_ftrace_dump(oops_dump_mode) \
317 static atomic_t ___rfd_beenhere = ATOMIC_INIT(0); \
319 if (!atomic_read(&___rfd_beenhere) && \
320 !atomic_xchg(&___rfd_beenhere, 1)) { \
322 rcu_ftrace_dump_stall_suppress(); \
323 ftrace_dump(oops_dump_mode); \
324 rcu_ftrace_dump_stall_unsuppress(); \
328 void rcu_early_boot_tests(void);
329 void rcu_test_sync_prims(void);
332 * This function really isn't for public consumption, but RCU is special in
333 * that context switches can allow the state machine to make progress.
335 extern void resched_cpu(int cpu);
337 #if !defined(CONFIG_TINY_RCU)
339 #include <linux/rcu_node_tree.h>
341 extern int rcu_num_lvls;
342 extern int num_rcu_lvl[];
343 extern int rcu_num_nodes;
344 static bool rcu_fanout_exact;
345 static int rcu_fanout_leaf;
348 * Compute the per-level fanout, either using the exact fanout specified
349 * or balancing the tree, depending on the rcu_fanout_exact boot parameter.
351 static inline void rcu_init_levelspread(int *levelspread, const int *levelcnt)
355 for (i = 0; i < RCU_NUM_LVLS; i++)
356 levelspread[i] = INT_MIN;
357 if (rcu_fanout_exact) {
358 levelspread[rcu_num_lvls - 1] = rcu_fanout_leaf;
359 for (i = rcu_num_lvls - 2; i >= 0; i--)
360 levelspread[i] = RCU_FANOUT;
366 for (i = rcu_num_lvls - 1; i >= 0; i--) {
368 levelspread[i] = (cprv + ccur - 1) / ccur;
374 extern void rcu_init_geometry(void);
376 /* Returns a pointer to the first leaf rcu_node structure. */
377 #define rcu_first_leaf_node() (rcu_state.level[rcu_num_lvls - 1])
379 /* Is this rcu_node a leaf? */
380 #define rcu_is_leaf_node(rnp) ((rnp)->level == rcu_num_lvls - 1)
382 /* Is this rcu_node the last leaf? */
383 #define rcu_is_last_leaf_node(rnp) ((rnp) == &rcu_state.node[rcu_num_nodes - 1])
386 * Do a full breadth-first scan of the {s,}rcu_node structures for the
387 * specified state structure (for SRCU) or the only rcu_state structure
390 #define _rcu_for_each_node_breadth_first(sp, rnp) \
391 for ((rnp) = &(sp)->node[0]; \
392 (rnp) < &(sp)->node[rcu_num_nodes]; (rnp)++)
393 #define rcu_for_each_node_breadth_first(rnp) \
394 _rcu_for_each_node_breadth_first(&rcu_state, rnp)
395 #define srcu_for_each_node_breadth_first(ssp, rnp) \
396 _rcu_for_each_node_breadth_first(ssp->srcu_sup, rnp)
399 * Scan the leaves of the rcu_node hierarchy for the rcu_state structure.
400 * Note that if there is a singleton rcu_node tree with but one rcu_node
401 * structure, this loop -will- visit the rcu_node structure. It is still
402 * a leaf node, even if it is also the root node.
404 #define rcu_for_each_leaf_node(rnp) \
405 for ((rnp) = rcu_first_leaf_node(); \
406 (rnp) < &rcu_state.node[rcu_num_nodes]; (rnp)++)
409 * Iterate over all possible CPUs in a leaf RCU node.
411 #define for_each_leaf_node_possible_cpu(rnp, cpu) \
412 for (WARN_ON_ONCE(!rcu_is_leaf_node(rnp)), \
413 (cpu) = cpumask_next((rnp)->grplo - 1, cpu_possible_mask); \
414 (cpu) <= rnp->grphi; \
415 (cpu) = cpumask_next((cpu), cpu_possible_mask))
418 * Iterate over all CPUs in a leaf RCU node's specified mask.
420 #define rcu_find_next_bit(rnp, cpu, mask) \
421 ((rnp)->grplo + find_next_bit(&(mask), BITS_PER_LONG, (cpu)))
422 #define for_each_leaf_node_cpu_mask(rnp, cpu, mask) \
423 for (WARN_ON_ONCE(!rcu_is_leaf_node(rnp)), \
424 (cpu) = rcu_find_next_bit((rnp), 0, (mask)); \
425 (cpu) <= rnp->grphi; \
426 (cpu) = rcu_find_next_bit((rnp), (cpu) + 1 - (rnp->grplo), (mask)))
428 #endif /* !defined(CONFIG_TINY_RCU) */
430 #if !defined(CONFIG_TINY_RCU) || defined(CONFIG_TASKS_RCU_GENERIC)
433 * Wrappers for the rcu_node::lock acquire and release.
435 * Because the rcu_nodes form a tree, the tree traversal locking will observe
436 * different lock values, this in turn means that an UNLOCK of one level
437 * followed by a LOCK of another level does not imply a full memory barrier;
438 * and most importantly transitivity is lost.
440 * In order to restore full ordering between tree levels, augment the regular
441 * lock acquire functions with smp_mb__after_unlock_lock().
443 * As ->lock of struct rcu_node is a __private field, therefore one should use
444 * these wrappers rather than directly call raw_spin_{lock,unlock}* on ->lock.
446 #define raw_spin_lock_rcu_node(p) \
448 raw_spin_lock(&ACCESS_PRIVATE(p, lock)); \
449 smp_mb__after_unlock_lock(); \
452 #define raw_spin_unlock_rcu_node(p) \
454 lockdep_assert_irqs_disabled(); \
455 raw_spin_unlock(&ACCESS_PRIVATE(p, lock)); \
458 #define raw_spin_lock_irq_rcu_node(p) \
460 raw_spin_lock_irq(&ACCESS_PRIVATE(p, lock)); \
461 smp_mb__after_unlock_lock(); \
464 #define raw_spin_unlock_irq_rcu_node(p) \
466 lockdep_assert_irqs_disabled(); \
467 raw_spin_unlock_irq(&ACCESS_PRIVATE(p, lock)); \
470 #define raw_spin_lock_irqsave_rcu_node(p, flags) \
472 raw_spin_lock_irqsave(&ACCESS_PRIVATE(p, lock), flags); \
473 smp_mb__after_unlock_lock(); \
476 #define raw_spin_unlock_irqrestore_rcu_node(p, flags) \
478 lockdep_assert_irqs_disabled(); \
479 raw_spin_unlock_irqrestore(&ACCESS_PRIVATE(p, lock), flags); \
482 #define raw_spin_trylock_rcu_node(p) \
484 bool ___locked = raw_spin_trylock(&ACCESS_PRIVATE(p, lock)); \
487 smp_mb__after_unlock_lock(); \
491 #define raw_lockdep_assert_held_rcu_node(p) \
492 lockdep_assert_held(&ACCESS_PRIVATE(p, lock))
494 #endif // #if !defined(CONFIG_TINY_RCU) || defined(CONFIG_TASKS_RCU_GENERIC)
496 #ifdef CONFIG_TINY_RCU
497 /* Tiny RCU doesn't expedite, as its purpose in life is instead to be tiny. */
498 static inline bool rcu_gp_is_normal(void) { return true; }
499 static inline bool rcu_gp_is_expedited(void) { return false; }
500 static inline bool rcu_async_should_hurry(void) { return false; }
501 static inline void rcu_expedite_gp(void) { }
502 static inline void rcu_unexpedite_gp(void) { }
503 static inline void rcu_async_hurry(void) { }
504 static inline void rcu_async_relax(void) { }
505 static inline bool rcu_cpu_online(int cpu) { return true; }
506 #else /* #ifdef CONFIG_TINY_RCU */
507 bool rcu_gp_is_normal(void); /* Internal RCU use. */
508 bool rcu_gp_is_expedited(void); /* Internal RCU use. */
509 bool rcu_async_should_hurry(void); /* Internal RCU use. */
510 void rcu_expedite_gp(void);
511 void rcu_unexpedite_gp(void);
512 void rcu_async_hurry(void);
513 void rcu_async_relax(void);
514 void rcupdate_announce_bootup_oddness(void);
515 bool rcu_cpu_online(int cpu);
516 #ifdef CONFIG_TASKS_RCU_GENERIC
517 void show_rcu_tasks_gp_kthreads(void);
518 #else /* #ifdef CONFIG_TASKS_RCU_GENERIC */
519 static inline void show_rcu_tasks_gp_kthreads(void) {}
520 #endif /* #else #ifdef CONFIG_TASKS_RCU_GENERIC */
521 #endif /* #else #ifdef CONFIG_TINY_RCU */
523 #ifdef CONFIG_TASKS_RCU
524 struct task_struct *get_rcu_tasks_gp_kthread(void);
525 #endif // # ifdef CONFIG_TASKS_RCU
527 #ifdef CONFIG_TASKS_RUDE_RCU
528 struct task_struct *get_rcu_tasks_rude_gp_kthread(void);
529 #endif // # ifdef CONFIG_TASKS_RUDE_RCU
531 #define RCU_SCHEDULER_INACTIVE 0
532 #define RCU_SCHEDULER_INIT 1
533 #define RCU_SCHEDULER_RUNNING 2
535 enum rcutorture_type {
538 RCU_TASKS_RUDE_FLAVOR,
539 RCU_TASKS_TRACING_FLAVOR,
545 #if defined(CONFIG_RCU_LAZY)
546 unsigned long rcu_lazy_get_jiffies_till_flush(void);
547 void rcu_lazy_set_jiffies_till_flush(unsigned long j);
549 static inline unsigned long rcu_lazy_get_jiffies_till_flush(void) { return 0; }
550 static inline void rcu_lazy_set_jiffies_till_flush(unsigned long j) { }
553 #if defined(CONFIG_TREE_RCU)
554 void rcutorture_get_gp_data(enum rcutorture_type test_type, int *flags,
555 unsigned long *gp_seq);
556 void do_trace_rcu_torture_read(const char *rcutorturename,
557 struct rcu_head *rhp,
561 void rcu_gp_set_torture_wait(int duration);
563 static inline void rcutorture_get_gp_data(enum rcutorture_type test_type,
564 int *flags, unsigned long *gp_seq)
569 #ifdef CONFIG_RCU_TRACE
570 void do_trace_rcu_torture_read(const char *rcutorturename,
571 struct rcu_head *rhp,
576 #define do_trace_rcu_torture_read(rcutorturename, rhp, secs, c_old, c) \
579 static inline void rcu_gp_set_torture_wait(int duration) { }
582 #ifdef CONFIG_TINY_SRCU
584 static inline void srcutorture_get_gp_data(enum rcutorture_type test_type,
585 struct srcu_struct *sp, int *flags,
586 unsigned long *gp_seq)
588 if (test_type != SRCU_FLAVOR)
591 *gp_seq = sp->srcu_idx;
594 #elif defined(CONFIG_TREE_SRCU)
596 void srcutorture_get_gp_data(enum rcutorture_type test_type,
597 struct srcu_struct *sp, int *flags,
598 unsigned long *gp_seq);
602 #ifdef CONFIG_TINY_RCU
603 static inline bool rcu_dynticks_zero_in_eqs(int cpu, int *vp) { return false; }
604 static inline unsigned long rcu_get_gp_seq(void) { return 0; }
605 static inline unsigned long rcu_exp_batches_completed(void) { return 0; }
606 static inline unsigned long
607 srcu_batches_completed(struct srcu_struct *sp) { return 0; }
608 static inline void rcu_force_quiescent_state(void) { }
609 static inline bool rcu_check_boost_fail(unsigned long gp_state, int *cpup) { return true; }
610 static inline void show_rcu_gp_kthreads(void) { }
611 static inline int rcu_get_gp_kthreads_prio(void) { return 0; }
612 static inline void rcu_fwd_progress_check(unsigned long j) { }
613 static inline void rcu_gp_slow_register(atomic_t *rgssp) { }
614 static inline void rcu_gp_slow_unregister(atomic_t *rgssp) { }
615 #else /* #ifdef CONFIG_TINY_RCU */
616 bool rcu_dynticks_zero_in_eqs(int cpu, int *vp);
617 unsigned long rcu_get_gp_seq(void);
618 unsigned long rcu_exp_batches_completed(void);
619 unsigned long srcu_batches_completed(struct srcu_struct *sp);
620 bool rcu_check_boost_fail(unsigned long gp_state, int *cpup);
621 void show_rcu_gp_kthreads(void);
622 int rcu_get_gp_kthreads_prio(void);
623 void rcu_fwd_progress_check(unsigned long j);
624 void rcu_force_quiescent_state(void);
625 extern struct workqueue_struct *rcu_gp_wq;
626 #ifdef CONFIG_RCU_EXP_KTHREAD
627 extern struct kthread_worker *rcu_exp_gp_kworker;
628 extern struct kthread_worker *rcu_exp_par_gp_kworker;
629 #else /* !CONFIG_RCU_EXP_KTHREAD */
630 extern struct workqueue_struct *rcu_par_gp_wq;
631 #endif /* CONFIG_RCU_EXP_KTHREAD */
632 void rcu_gp_slow_register(atomic_t *rgssp);
633 void rcu_gp_slow_unregister(atomic_t *rgssp);
634 #endif /* #else #ifdef CONFIG_TINY_RCU */
636 #ifdef CONFIG_RCU_NOCB_CPU
637 void rcu_bind_current_to_nocb(void);
639 static inline void rcu_bind_current_to_nocb(void) { }
642 #if !defined(CONFIG_TINY_RCU) && defined(CONFIG_TASKS_RCU)
643 void show_rcu_tasks_classic_gp_kthread(void);
645 static inline void show_rcu_tasks_classic_gp_kthread(void) {}
647 #if !defined(CONFIG_TINY_RCU) && defined(CONFIG_TASKS_RUDE_RCU)
648 void show_rcu_tasks_rude_gp_kthread(void);
650 static inline void show_rcu_tasks_rude_gp_kthread(void) {}
652 #if !defined(CONFIG_TINY_RCU) && defined(CONFIG_TASKS_TRACE_RCU)
653 void show_rcu_tasks_trace_gp_kthread(void);
655 static inline void show_rcu_tasks_trace_gp_kthread(void) {}
658 #ifdef CONFIG_TINY_RCU
659 static inline bool rcu_cpu_beenfullyonline(int cpu) { return true; }
661 bool rcu_cpu_beenfullyonline(int cpu);
664 #if defined(CONFIG_RCU_STALL_COMMON) && defined(CONFIG_RCU_CPU_STALL_NOTIFIER)
665 int rcu_stall_notifier_call_chain(unsigned long val, void *v);
666 #else // #if defined(CONFIG_RCU_STALL_COMMON) && defined(CONFIG_RCU_CPU_STALL_NOTIFIER)
667 static inline int rcu_stall_notifier_call_chain(unsigned long val, void *v) { return NOTIFY_DONE; }
668 #endif // #else // #if defined(CONFIG_RCU_STALL_COMMON) && defined(CONFIG_RCU_CPU_STALL_NOTIFIER)
670 #endif /* __LINUX_RCU_H */