1 /* SPDX-License-Identifier: GPL-2.0+ */
2 /*
3 * RCU expedited grace periods
4 *
5 * Copyright IBM Corporation, 2016
6 *
7 * Authors: Paul E. McKenney <paulmck@linux.ibm.com>
8 */
9
10 #include <linux/console.h>
11 #include <linux/lockdep.h>
12
13 static void rcu_exp_handler(void *unused);
14 static int rcu_print_task_exp_stall(struct rcu_node *rnp);
15 static void rcu_exp_print_detail_task_stall_rnp(struct rcu_node *rnp);
16
17 /*
18 * Record the start of an expedited grace period.
19 */
rcu_exp_gp_seq_start(void)20 static void rcu_exp_gp_seq_start(void)
21 {
22 rcu_seq_start(&rcu_state.expedited_sequence);
23 rcu_poll_gp_seq_start_unlocked(&rcu_state.gp_seq_polled_exp_snap);
24 }
25
26 /*
27 * Return the value that the expedited-grace-period counter will have
28 * at the end of the current grace period.
29 */
rcu_exp_gp_seq_endval(void)30 static __maybe_unused unsigned long rcu_exp_gp_seq_endval(void)
31 {
32 return rcu_seq_endval(&rcu_state.expedited_sequence);
33 }
34
35 /*
36 * Record the end of an expedited grace period.
37 */
rcu_exp_gp_seq_end(void)38 static void rcu_exp_gp_seq_end(void)
39 {
40 rcu_poll_gp_seq_end_unlocked(&rcu_state.gp_seq_polled_exp_snap);
41 rcu_seq_end(&rcu_state.expedited_sequence);
42 smp_mb(); /* Ensure that consecutive grace periods serialize. */
43 }
44
45 /*
46 * Take a snapshot of the expedited-grace-period counter, which is the
47 * earliest value that will indicate that a full grace period has
48 * elapsed since the current time.
49 */
rcu_exp_gp_seq_snap(void)50 static unsigned long rcu_exp_gp_seq_snap(void)
51 {
52 unsigned long s;
53
54 smp_mb(); /* Caller's modifications seen first by other CPUs. */
55 s = rcu_seq_snap(&rcu_state.expedited_sequence);
56 trace_rcu_exp_grace_period(rcu_state.name, s, TPS("snap"));
57 return s;
58 }
59
60 /*
61 * Given a counter snapshot from rcu_exp_gp_seq_snap(), return true
62 * if a full expedited grace period has elapsed since that snapshot
63 * was taken.
64 */
rcu_exp_gp_seq_done(unsigned long s)65 static bool rcu_exp_gp_seq_done(unsigned long s)
66 {
67 return rcu_seq_done(&rcu_state.expedited_sequence, s);
68 }
69
70 /*
71 * Reset the ->expmaskinit values in the rcu_node tree to reflect any
72 * recent CPU-online activity. Note that these masks are not cleared
73 * when CPUs go offline, so they reflect the union of all CPUs that have
74 * ever been online. This means that this function normally takes its
75 * no-work-to-do fastpath.
76 */
sync_exp_reset_tree_hotplug(void)77 static void sync_exp_reset_tree_hotplug(void)
78 {
79 bool done;
80 unsigned long flags;
81 unsigned long mask;
82 unsigned long oldmask;
83 int ncpus = smp_load_acquire(&rcu_state.ncpus); /* Order vs. locking. */
84 struct rcu_node *rnp;
85 struct rcu_node *rnp_up;
86
87 /* If no new CPUs onlined since last time, nothing to do. */
88 if (likely(ncpus == rcu_state.ncpus_snap))
89 return;
90 rcu_state.ncpus_snap = ncpus;
91
92 /*
93 * Each pass through the following loop propagates newly onlined
94 * CPUs for the current rcu_node structure up the rcu_node tree.
95 */
96 rcu_for_each_leaf_node(rnp) {
97 raw_spin_lock_irqsave_rcu_node(rnp, flags);
98 if (rnp->expmaskinit == rnp->expmaskinitnext) {
99 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
100 continue; /* No new CPUs, nothing to do. */
101 }
102
103 /* Update this node's mask, track old value for propagation. */
104 oldmask = rnp->expmaskinit;
105 rnp->expmaskinit = rnp->expmaskinitnext;
106 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
107
108 /* If was already nonzero, nothing to propagate. */
109 if (oldmask)
110 continue;
111
112 /* Propagate the new CPU up the tree. */
113 mask = rnp->grpmask;
114 rnp_up = rnp->parent;
115 done = false;
116 while (rnp_up) {
117 raw_spin_lock_irqsave_rcu_node(rnp_up, flags);
118 if (rnp_up->expmaskinit)
119 done = true;
120 rnp_up->expmaskinit |= mask;
121 raw_spin_unlock_irqrestore_rcu_node(rnp_up, flags);
122 if (done)
123 break;
124 mask = rnp_up->grpmask;
125 rnp_up = rnp_up->parent;
126 }
127 }
128 }
129
130 /*
131 * Reset the ->expmask values in the rcu_node tree in preparation for
132 * a new expedited grace period.
133 */
sync_exp_reset_tree(void)134 static void __maybe_unused sync_exp_reset_tree(void)
135 {
136 unsigned long flags;
137 struct rcu_node *rnp;
138
139 sync_exp_reset_tree_hotplug();
140 rcu_for_each_node_breadth_first(rnp) {
141 raw_spin_lock_irqsave_rcu_node(rnp, flags);
142 WARN_ON_ONCE(rnp->expmask);
143 WRITE_ONCE(rnp->expmask, rnp->expmaskinit);
144 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
145 }
146 }
147
148 /*
149 * Return non-zero if there is no RCU expedited grace period in progress
150 * for the specified rcu_node structure, in other words, if all CPUs and
151 * tasks covered by the specified rcu_node structure have done their bit
152 * for the current expedited grace period.
153 */
sync_rcu_exp_done(struct rcu_node * rnp)154 static bool sync_rcu_exp_done(struct rcu_node *rnp)
155 {
156 raw_lockdep_assert_held_rcu_node(rnp);
157 return READ_ONCE(rnp->exp_tasks) == NULL &&
158 READ_ONCE(rnp->expmask) == 0;
159 }
160
161 /*
162 * Like sync_rcu_exp_done(), but where the caller does not hold the
163 * rcu_node's ->lock.
164 */
sync_rcu_exp_done_unlocked(struct rcu_node * rnp)165 static bool sync_rcu_exp_done_unlocked(struct rcu_node *rnp)
166 {
167 unsigned long flags;
168 bool ret;
169
170 raw_spin_lock_irqsave_rcu_node(rnp, flags);
171 ret = sync_rcu_exp_done(rnp);
172 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
173
174 return ret;
175 }
176
177 /*
178 * Report the exit from RCU read-side critical section for the last task
179 * that queued itself during or before the current expedited preemptible-RCU
180 * grace period. This event is reported either to the rcu_node structure on
181 * which the task was queued or to one of that rcu_node structure's ancestors,
182 * recursively up the tree. (Calm down, calm down, we do the recursion
183 * iteratively!)
184 */
__rcu_report_exp_rnp(struct rcu_node * rnp,bool wake,unsigned long flags)185 static void __rcu_report_exp_rnp(struct rcu_node *rnp,
186 bool wake, unsigned long flags)
187 __releases(rnp->lock)
188 {
189 unsigned long mask;
190
191 raw_lockdep_assert_held_rcu_node(rnp);
192 for (;;) {
193 if (!sync_rcu_exp_done(rnp)) {
194 if (!rnp->expmask)
195 rcu_initiate_boost(rnp, flags);
196 else
197 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
198 break;
199 }
200 if (rnp->parent == NULL) {
201 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
202 if (wake)
203 swake_up_one_online(&rcu_state.expedited_wq);
204
205 break;
206 }
207 mask = rnp->grpmask;
208 raw_spin_unlock_rcu_node(rnp); /* irqs remain disabled */
209 rnp = rnp->parent;
210 raw_spin_lock_rcu_node(rnp); /* irqs already disabled */
211 WARN_ON_ONCE(!(rnp->expmask & mask));
212 WRITE_ONCE(rnp->expmask, rnp->expmask & ~mask);
213 }
214 }
215
216 /*
217 * Report expedited quiescent state for specified node. This is a
218 * lock-acquisition wrapper function for __rcu_report_exp_rnp().
219 */
rcu_report_exp_rnp(struct rcu_node * rnp,bool wake)220 static void __maybe_unused rcu_report_exp_rnp(struct rcu_node *rnp, bool wake)
221 {
222 unsigned long flags;
223
224 raw_spin_lock_irqsave_rcu_node(rnp, flags);
225 __rcu_report_exp_rnp(rnp, wake, flags);
226 }
227
228 /*
229 * Report expedited quiescent state for multiple CPUs, all covered by the
230 * specified leaf rcu_node structure, which is acquired by the caller.
231 */
rcu_report_exp_cpu_mult(struct rcu_node * rnp,unsigned long flags,unsigned long mask_in,bool wake)232 static void rcu_report_exp_cpu_mult(struct rcu_node *rnp, unsigned long flags,
233 unsigned long mask_in, bool wake)
234 __releases(rnp->lock)
235 {
236 int cpu;
237 unsigned long mask;
238 struct rcu_data *rdp;
239
240 raw_lockdep_assert_held_rcu_node(rnp);
241 if (!(rnp->expmask & mask_in)) {
242 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
243 return;
244 }
245 mask = mask_in & rnp->expmask;
246 WRITE_ONCE(rnp->expmask, rnp->expmask & ~mask);
247 for_each_leaf_node_cpu_mask(rnp, cpu, mask) {
248 rdp = per_cpu_ptr(&rcu_data, cpu);
249 if (!IS_ENABLED(CONFIG_NO_HZ_FULL) || !rdp->rcu_forced_tick_exp)
250 continue;
251 rdp->rcu_forced_tick_exp = false;
252 tick_dep_clear_cpu(cpu, TICK_DEP_BIT_RCU_EXP);
253 }
254 __rcu_report_exp_rnp(rnp, wake, flags); /* Releases rnp->lock. */
255 }
256
257 /*
258 * Report expedited quiescent state for specified rcu_data (CPU).
259 */
rcu_report_exp_rdp(struct rcu_data * rdp)260 static void rcu_report_exp_rdp(struct rcu_data *rdp)
261 {
262 unsigned long flags;
263 struct rcu_node *rnp = rdp->mynode;
264
265 raw_spin_lock_irqsave_rcu_node(rnp, flags);
266 WRITE_ONCE(rdp->cpu_no_qs.b.exp, false);
267 ASSERT_EXCLUSIVE_WRITER(rdp->cpu_no_qs.b.exp);
268 rcu_report_exp_cpu_mult(rnp, flags, rdp->grpmask, true);
269 }
270
271 /* Common code for work-done checking. */
sync_exp_work_done(unsigned long s)272 static bool sync_exp_work_done(unsigned long s)
273 {
274 if (rcu_exp_gp_seq_done(s)) {
275 trace_rcu_exp_grace_period(rcu_state.name, s, TPS("done"));
276 /*
277 * Order GP completion with preceding accesses. Order also GP
278 * completion with post GP update side accesses. Pairs with
279 * rcu_seq_end().
280 */
281 smp_mb();
282 return true;
283 }
284 return false;
285 }
286
287 /*
288 * Funnel-lock acquisition for expedited grace periods. Returns true
289 * if some other task completed an expedited grace period that this task
290 * can piggy-back on, and with no mutex held. Otherwise, returns false
291 * with the mutex held, indicating that the caller must actually do the
292 * expedited grace period.
293 */
exp_funnel_lock(unsigned long s)294 static bool exp_funnel_lock(unsigned long s)
295 {
296 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, raw_smp_processor_id());
297 struct rcu_node *rnp = rdp->mynode;
298 struct rcu_node *rnp_root = rcu_get_root();
299
300 /* Low-contention fastpath. */
301 if (ULONG_CMP_LT(READ_ONCE(rnp->exp_seq_rq), s) &&
302 (rnp == rnp_root ||
303 ULONG_CMP_LT(READ_ONCE(rnp_root->exp_seq_rq), s)) &&
304 mutex_trylock(&rcu_state.exp_mutex))
305 goto fastpath;
306
307 /*
308 * Each pass through the following loop works its way up
309 * the rcu_node tree, returning if others have done the work or
310 * otherwise falls through to acquire ->exp_mutex. The mapping
311 * from CPU to rcu_node structure can be inexact, as it is just
312 * promoting locality and is not strictly needed for correctness.
313 */
314 for (; rnp != NULL; rnp = rnp->parent) {
315 if (sync_exp_work_done(s))
316 return true;
317
318 /* Work not done, either wait here or go up. */
319 spin_lock(&rnp->exp_lock);
320 if (ULONG_CMP_GE(rnp->exp_seq_rq, s)) {
321
322 /* Someone else doing GP, so wait for them. */
323 spin_unlock(&rnp->exp_lock);
324 trace_rcu_exp_funnel_lock(rcu_state.name, rnp->level,
325 rnp->grplo, rnp->grphi,
326 TPS("wait"));
327 wait_event(rnp->exp_wq[rcu_seq_ctr(s) & 0x3],
328 sync_exp_work_done(s));
329 return true;
330 }
331 WRITE_ONCE(rnp->exp_seq_rq, s); /* Followers can wait on us. */
332 spin_unlock(&rnp->exp_lock);
333 trace_rcu_exp_funnel_lock(rcu_state.name, rnp->level,
334 rnp->grplo, rnp->grphi, TPS("nxtlvl"));
335 }
336 mutex_lock(&rcu_state.exp_mutex);
337 fastpath:
338 if (sync_exp_work_done(s)) {
339 mutex_unlock(&rcu_state.exp_mutex);
340 return true;
341 }
342 rcu_exp_gp_seq_start();
343 trace_rcu_exp_grace_period(rcu_state.name, s, TPS("start"));
344 return false;
345 }
346
347 /*
348 * Select the CPUs within the specified rcu_node that the upcoming
349 * expedited grace period needs to wait for.
350 */
__sync_rcu_exp_select_node_cpus(struct rcu_exp_work * rewp)351 static void __sync_rcu_exp_select_node_cpus(struct rcu_exp_work *rewp)
352 {
353 int cpu;
354 unsigned long flags;
355 unsigned long mask_ofl_test;
356 unsigned long mask_ofl_ipi;
357 int ret;
358 struct rcu_node *rnp = container_of(rewp, struct rcu_node, rew);
359
360 raw_spin_lock_irqsave_rcu_node(rnp, flags);
361
362 /* Each pass checks a CPU for identity, offline, and idle. */
363 mask_ofl_test = 0;
364 for_each_leaf_node_cpu_mask(rnp, cpu, rnp->expmask) {
365 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, cpu);
366 unsigned long mask = rdp->grpmask;
367 int snap;
368
369 if (raw_smp_processor_id() == cpu ||
370 !(rnp->qsmaskinitnext & mask)) {
371 mask_ofl_test |= mask;
372 } else {
373 /*
374 * Full ordering between remote CPU's post idle accesses
375 * and updater's accesses prior to current GP (and also
376 * the started GP sequence number) is enforced by
377 * rcu_seq_start() implicit barrier, relayed by kworkers
378 * locking and even further by smp_mb__after_unlock_lock()
379 * barriers chained all the way throughout the rnp locking
380 * tree since sync_exp_reset_tree() and up to the current
381 * leaf rnp locking.
382 *
383 * Ordering between remote CPU's pre idle accesses and
384 * post grace period updater's accesses is enforced by the
385 * below acquire semantic.
386 */
387 snap = ct_rcu_watching_cpu_acquire(cpu);
388 if (rcu_watching_snap_in_eqs(snap))
389 mask_ofl_test |= mask;
390 else
391 rdp->exp_watching_snap = snap;
392 }
393 }
394 mask_ofl_ipi = rnp->expmask & ~mask_ofl_test;
395
396 /*
397 * Need to wait for any blocked tasks as well. Note that
398 * additional blocking tasks will also block the expedited GP
399 * until such time as the ->expmask bits are cleared.
400 */
401 if (rcu_preempt_has_tasks(rnp))
402 WRITE_ONCE(rnp->exp_tasks, rnp->blkd_tasks.next);
403 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
404
405 /* IPI the remaining CPUs for expedited quiescent state. */
406 for_each_leaf_node_cpu_mask(rnp, cpu, mask_ofl_ipi) {
407 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, cpu);
408 unsigned long mask = rdp->grpmask;
409
410 retry_ipi:
411 if (rcu_watching_snap_stopped_since(rdp, rdp->exp_watching_snap)) {
412 mask_ofl_test |= mask;
413 continue;
414 }
415 if (get_cpu() == cpu) {
416 mask_ofl_test |= mask;
417 put_cpu();
418 continue;
419 }
420 ret = smp_call_function_single(cpu, rcu_exp_handler, NULL, 0);
421 put_cpu();
422 /* The CPU will report the QS in response to the IPI. */
423 if (!ret)
424 continue;
425
426 /* Failed, raced with CPU hotplug operation. */
427 raw_spin_lock_irqsave_rcu_node(rnp, flags);
428 if ((rnp->qsmaskinitnext & mask) &&
429 (rnp->expmask & mask)) {
430 /* Online, so delay for a bit and try again. */
431 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
432 trace_rcu_exp_grace_period(rcu_state.name, rcu_exp_gp_seq_endval(), TPS("selectofl"));
433 schedule_timeout_idle(1);
434 goto retry_ipi;
435 }
436 /* CPU really is offline, so we must report its QS. */
437 if (rnp->expmask & mask)
438 mask_ofl_test |= mask;
439 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
440 }
441 /* Report quiescent states for those that went offline. */
442 if (mask_ofl_test) {
443 raw_spin_lock_irqsave_rcu_node(rnp, flags);
444 rcu_report_exp_cpu_mult(rnp, flags, mask_ofl_test, false);
445 }
446 }
447
448 static void rcu_exp_sel_wait_wake(unsigned long s);
449
sync_rcu_exp_select_node_cpus(struct kthread_work * wp)450 static void sync_rcu_exp_select_node_cpus(struct kthread_work *wp)
451 {
452 struct rcu_exp_work *rewp =
453 container_of(wp, struct rcu_exp_work, rew_work);
454
455 __sync_rcu_exp_select_node_cpus(rewp);
456 }
457
rcu_exp_worker_started(void)458 static inline bool rcu_exp_worker_started(void)
459 {
460 return !!READ_ONCE(rcu_exp_gp_kworker);
461 }
462
rcu_exp_par_worker_started(struct rcu_node * rnp)463 static inline bool rcu_exp_par_worker_started(struct rcu_node *rnp)
464 {
465 return !!READ_ONCE(rnp->exp_kworker);
466 }
467
sync_rcu_exp_select_cpus_queue_work(struct rcu_node * rnp)468 static inline void sync_rcu_exp_select_cpus_queue_work(struct rcu_node *rnp)
469 {
470 kthread_init_work(&rnp->rew.rew_work, sync_rcu_exp_select_node_cpus);
471 /*
472 * Use rcu_exp_par_gp_kworker, because flushing a work item from
473 * another work item on the same kthread worker can result in
474 * deadlock.
475 */
476 kthread_queue_work(READ_ONCE(rnp->exp_kworker), &rnp->rew.rew_work);
477 }
478
sync_rcu_exp_select_cpus_flush_work(struct rcu_node * rnp)479 static inline void sync_rcu_exp_select_cpus_flush_work(struct rcu_node *rnp)
480 {
481 kthread_flush_work(&rnp->rew.rew_work);
482 }
483
484 /*
485 * Work-queue handler to drive an expedited grace period forward.
486 */
wait_rcu_exp_gp(struct kthread_work * wp)487 static void wait_rcu_exp_gp(struct kthread_work *wp)
488 {
489 struct rcu_exp_work *rewp;
490
491 rewp = container_of(wp, struct rcu_exp_work, rew_work);
492 rcu_exp_sel_wait_wake(rewp->rew_s);
493 }
494
synchronize_rcu_expedited_queue_work(struct rcu_exp_work * rew)495 static inline void synchronize_rcu_expedited_queue_work(struct rcu_exp_work *rew)
496 {
497 kthread_init_work(&rew->rew_work, wait_rcu_exp_gp);
498 kthread_queue_work(rcu_exp_gp_kworker, &rew->rew_work);
499 }
500
501 /*
502 * Select the nodes that the upcoming expedited grace period needs
503 * to wait for.
504 */
sync_rcu_exp_select_cpus(void)505 static void sync_rcu_exp_select_cpus(void)
506 {
507 struct rcu_node *rnp;
508
509 trace_rcu_exp_grace_period(rcu_state.name, rcu_exp_gp_seq_endval(), TPS("reset"));
510 sync_exp_reset_tree();
511 trace_rcu_exp_grace_period(rcu_state.name, rcu_exp_gp_seq_endval(), TPS("select"));
512
513 /* Schedule work for each leaf rcu_node structure. */
514 rcu_for_each_leaf_node(rnp) {
515 rnp->exp_need_flush = false;
516 if (!READ_ONCE(rnp->expmask))
517 continue; /* Avoid early boot non-existent wq. */
518 if (!rcu_exp_par_worker_started(rnp) ||
519 rcu_scheduler_active != RCU_SCHEDULER_RUNNING ||
520 rcu_is_last_leaf_node(rnp)) {
521 /* No worker started yet or last leaf, do direct call. */
522 sync_rcu_exp_select_node_cpus(&rnp->rew.rew_work);
523 continue;
524 }
525 sync_rcu_exp_select_cpus_queue_work(rnp);
526 rnp->exp_need_flush = true;
527 }
528
529 /* Wait for jobs (if any) to complete. */
530 rcu_for_each_leaf_node(rnp)
531 if (rnp->exp_need_flush)
532 sync_rcu_exp_select_cpus_flush_work(rnp);
533 }
534
535 /*
536 * Wait for the expedited grace period to elapse, within time limit.
537 * If the time limit is exceeded without the grace period elapsing,
538 * return false, otherwise return true.
539 */
synchronize_rcu_expedited_wait_once(long tlimit)540 static bool synchronize_rcu_expedited_wait_once(long tlimit)
541 {
542 int t;
543 struct rcu_node *rnp_root = rcu_get_root();
544
545 t = swait_event_timeout_exclusive(rcu_state.expedited_wq,
546 sync_rcu_exp_done_unlocked(rnp_root),
547 tlimit);
548 // Workqueues should not be signaled.
549 if (t > 0 || sync_rcu_exp_done_unlocked(rnp_root))
550 return true;
551 WARN_ON(t < 0); /* workqueues should not be signaled. */
552 return false;
553 }
554
555 /*
556 * Print out an expedited RCU CPU stall warning message.
557 */
synchronize_rcu_expedited_stall(unsigned long jiffies_start,unsigned long j)558 static void synchronize_rcu_expedited_stall(unsigned long jiffies_start, unsigned long j)
559 {
560 int cpu;
561 unsigned long mask;
562 int ndetected;
563 struct rcu_node *rnp;
564 struct rcu_node *rnp_root = rcu_get_root();
565
566 if (READ_ONCE(csd_lock_suppress_rcu_stall) && csd_lock_is_stuck()) {
567 pr_err("INFO: %s detected expedited stalls, but suppressed full report due to a stuck CSD-lock.\n", rcu_state.name);
568 return;
569 }
570 pr_err("INFO: %s detected expedited stalls on CPUs/tasks: {", rcu_state.name);
571 ndetected = 0;
572 rcu_for_each_leaf_node(rnp) {
573 ndetected += rcu_print_task_exp_stall(rnp);
574 for_each_leaf_node_possible_cpu(rnp, cpu) {
575 struct rcu_data *rdp;
576
577 mask = leaf_node_cpu_bit(rnp, cpu);
578 if (!(READ_ONCE(rnp->expmask) & mask))
579 continue;
580 ndetected++;
581 rdp = per_cpu_ptr(&rcu_data, cpu);
582 pr_cont(" %d-%c%c%c%c", cpu,
583 "O."[!!cpu_online(cpu)],
584 "o."[!!(rdp->grpmask & rnp->expmaskinit)],
585 "N."[!!(rdp->grpmask & rnp->expmaskinitnext)],
586 "D."[!!data_race(rdp->cpu_no_qs.b.exp)]);
587 }
588 }
589 pr_cont(" } %lu jiffies s: %lu root: %#lx/%c\n",
590 j - jiffies_start, rcu_state.expedited_sequence, data_race(rnp_root->expmask),
591 ".T"[!!data_race(rnp_root->exp_tasks)]);
592 if (ndetected) {
593 pr_err("blocking rcu_node structures (internal RCU debug):");
594 rcu_for_each_node_breadth_first(rnp) {
595 if (rnp == rnp_root)
596 continue; /* printed unconditionally */
597 if (sync_rcu_exp_done_unlocked(rnp))
598 continue;
599 pr_cont(" l=%u:%d-%d:%#lx/%c",
600 rnp->level, rnp->grplo, rnp->grphi, data_race(rnp->expmask),
601 ".T"[!!data_race(rnp->exp_tasks)]);
602 }
603 pr_cont("\n");
604 }
605 rcu_for_each_leaf_node(rnp) {
606 for_each_leaf_node_possible_cpu(rnp, cpu) {
607 mask = leaf_node_cpu_bit(rnp, cpu);
608 if (!(READ_ONCE(rnp->expmask) & mask))
609 continue;
610 dump_cpu_task(cpu);
611 }
612 rcu_exp_print_detail_task_stall_rnp(rnp);
613 }
614 }
615
616 /*
617 * Wait for the expedited grace period to elapse, issuing any needed
618 * RCU CPU stall warnings along the way.
619 */
synchronize_rcu_expedited_wait(void)620 static void synchronize_rcu_expedited_wait(void)
621 {
622 int cpu;
623 unsigned long j;
624 unsigned long jiffies_stall;
625 unsigned long jiffies_start;
626 unsigned long mask;
627 struct rcu_data *rdp;
628 struct rcu_node *rnp;
629 unsigned long flags;
630
631 trace_rcu_exp_grace_period(rcu_state.name, rcu_exp_gp_seq_endval(), TPS("startwait"));
632 jiffies_stall = rcu_exp_jiffies_till_stall_check();
633 jiffies_start = jiffies;
634 if (tick_nohz_full_enabled() && rcu_inkernel_boot_has_ended()) {
635 if (synchronize_rcu_expedited_wait_once(1))
636 return;
637 rcu_for_each_leaf_node(rnp) {
638 raw_spin_lock_irqsave_rcu_node(rnp, flags);
639 mask = READ_ONCE(rnp->expmask);
640 for_each_leaf_node_cpu_mask(rnp, cpu, mask) {
641 rdp = per_cpu_ptr(&rcu_data, cpu);
642 if (rdp->rcu_forced_tick_exp)
643 continue;
644 rdp->rcu_forced_tick_exp = true;
645 if (cpu_online(cpu))
646 tick_dep_set_cpu(cpu, TICK_DEP_BIT_RCU_EXP);
647 }
648 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
649 }
650 j = READ_ONCE(jiffies_till_first_fqs);
651 if (synchronize_rcu_expedited_wait_once(j + HZ))
652 return;
653 }
654
655 for (;;) {
656 unsigned long j;
657
658 if (synchronize_rcu_expedited_wait_once(jiffies_stall))
659 return;
660 if (rcu_stall_is_suppressed())
661 continue;
662
663 nbcon_cpu_emergency_enter();
664
665 j = jiffies;
666 rcu_stall_notifier_call_chain(RCU_STALL_NOTIFY_EXP, (void *)(j - jiffies_start));
667 trace_rcu_stall_warning(rcu_state.name, TPS("ExpeditedStall"));
668 synchronize_rcu_expedited_stall(jiffies_start, j);
669 jiffies_stall = 3 * rcu_exp_jiffies_till_stall_check() + 3;
670
671 nbcon_cpu_emergency_exit();
672
673 panic_on_rcu_stall();
674 }
675 }
676
677 /*
678 * Wait for the current expedited grace period to complete, and then
679 * wake up everyone who piggybacked on the just-completed expedited
680 * grace period. Also update all the ->exp_seq_rq counters as needed
681 * in order to avoid counter-wrap problems.
682 */
rcu_exp_wait_wake(unsigned long s)683 static void rcu_exp_wait_wake(unsigned long s)
684 {
685 struct rcu_node *rnp;
686
687 synchronize_rcu_expedited_wait();
688
689 // Switch over to wakeup mode, allowing the next GP to proceed.
690 // End the previous grace period only after acquiring the mutex
691 // to ensure that only one GP runs concurrently with wakeups.
692 mutex_lock(&rcu_state.exp_wake_mutex);
693 rcu_exp_gp_seq_end();
694 trace_rcu_exp_grace_period(rcu_state.name, s, TPS("end"));
695
696 rcu_for_each_node_breadth_first(rnp) {
697 if (ULONG_CMP_LT(READ_ONCE(rnp->exp_seq_rq), s)) {
698 spin_lock(&rnp->exp_lock);
699 /* Recheck, avoid hang in case someone just arrived. */
700 if (ULONG_CMP_LT(rnp->exp_seq_rq, s))
701 WRITE_ONCE(rnp->exp_seq_rq, s);
702 spin_unlock(&rnp->exp_lock);
703 }
704 smp_mb(); /* All above changes before wakeup. */
705 wake_up_all(&rnp->exp_wq[rcu_seq_ctr(s) & 0x3]);
706 }
707 trace_rcu_exp_grace_period(rcu_state.name, s, TPS("endwake"));
708 mutex_unlock(&rcu_state.exp_wake_mutex);
709 }
710
711 /*
712 * Common code to drive an expedited grace period forward, used by
713 * workqueues and mid-boot-time tasks.
714 */
rcu_exp_sel_wait_wake(unsigned long s)715 static void rcu_exp_sel_wait_wake(unsigned long s)
716 {
717 /* Initialize the rcu_node tree in preparation for the wait. */
718 sync_rcu_exp_select_cpus();
719
720 /* Wait and clean up, including waking everyone. */
721 rcu_exp_wait_wake(s);
722 }
723
724 /* Request an expedited quiescent state. */
rcu_exp_need_qs(void)725 static void rcu_exp_need_qs(void)
726 {
727 lockdep_assert_irqs_disabled();
728 ASSERT_EXCLUSIVE_WRITER_SCOPED(*this_cpu_ptr(&rcu_data.cpu_no_qs.b.exp));
729 __this_cpu_write(rcu_data.cpu_no_qs.b.exp, true);
730 /* Store .exp before .rcu_urgent_qs. */
731 smp_store_release(this_cpu_ptr(&rcu_data.rcu_urgent_qs), true);
732 set_tsk_need_resched(current);
733 set_preempt_need_resched();
734 }
735
736 #ifdef CONFIG_PREEMPT_RCU
737
738 /*
739 * Remote handler for smp_call_function_single(). If there is an
740 * RCU read-side critical section in effect, request that the
741 * next rcu_read_unlock() record the quiescent state up the
742 * ->expmask fields in the rcu_node tree. Otherwise, immediately
743 * report the quiescent state.
744 */
rcu_exp_handler(void * unused)745 static void rcu_exp_handler(void *unused)
746 {
747 int depth = rcu_preempt_depth();
748 unsigned long flags;
749 struct rcu_data *rdp = this_cpu_ptr(&rcu_data);
750 struct rcu_node *rnp = rdp->mynode;
751 struct task_struct *t = current;
752
753 /*
754 * First, is there no need for a quiescent state from this CPU,
755 * or is this CPU already looking for a quiescent state for the
756 * current grace period? If either is the case, just leave.
757 * However, this should not happen due to the preemptible
758 * sync_sched_exp_online_cleanup() implementation being a no-op,
759 * so warn if this does happen.
760 */
761 ASSERT_EXCLUSIVE_WRITER_SCOPED(rdp->cpu_no_qs.b.exp);
762 if (WARN_ON_ONCE(!(READ_ONCE(rnp->expmask) & rdp->grpmask) ||
763 READ_ONCE(rdp->cpu_no_qs.b.exp)))
764 return;
765
766 /*
767 * Second, the common case of not being in an RCU read-side
768 * critical section. If also enabled or idle, immediately
769 * report the quiescent state, otherwise defer.
770 */
771 if (!depth) {
772 if (!(preempt_count() & (PREEMPT_MASK | SOFTIRQ_MASK)) ||
773 rcu_is_cpu_rrupt_from_idle())
774 rcu_report_exp_rdp(rdp);
775 else
776 rcu_exp_need_qs();
777 return;
778 }
779
780 /*
781 * Third, the less-common case of being in an RCU read-side
782 * critical section. In this case we can count on a future
783 * rcu_read_unlock(). However, this rcu_read_unlock() might
784 * execute on some other CPU, but in that case there will be
785 * a future context switch. Either way, if the expedited
786 * grace period is still waiting on this CPU, set ->deferred_qs
787 * so that the eventual quiescent state will be reported.
788 * Note that there is a large group of race conditions that
789 * can have caused this quiescent state to already have been
790 * reported, so we really do need to check ->expmask.
791 */
792 if (depth > 0) {
793 raw_spin_lock_irqsave_rcu_node(rnp, flags);
794 if (rnp->expmask & rdp->grpmask) {
795 WRITE_ONCE(rdp->cpu_no_qs.b.exp, true);
796 t->rcu_read_unlock_special.b.exp_hint = true;
797 }
798 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
799 return;
800 }
801
802 // Fourth and finally, negative nesting depth should not happen.
803 WARN_ON_ONCE(1);
804 }
805
806 /* PREEMPTION=y, so no PREEMPTION=n expedited grace period to clean up after. */
sync_sched_exp_online_cleanup(int cpu)807 static void sync_sched_exp_online_cleanup(int cpu)
808 {
809 }
810
811 /*
812 * Scan the current list of tasks blocked within RCU read-side critical
813 * sections, printing out the tid of each that is blocking the current
814 * expedited grace period.
815 */
rcu_print_task_exp_stall(struct rcu_node * rnp)816 static int rcu_print_task_exp_stall(struct rcu_node *rnp)
817 {
818 unsigned long flags;
819 int ndetected = 0;
820 struct task_struct *t;
821
822 raw_spin_lock_irqsave_rcu_node(rnp, flags);
823 if (!rnp->exp_tasks) {
824 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
825 return 0;
826 }
827 t = list_entry(rnp->exp_tasks->prev,
828 struct task_struct, rcu_node_entry);
829 list_for_each_entry_continue(t, &rnp->blkd_tasks, rcu_node_entry) {
830 pr_cont(" P%d", t->pid);
831 ndetected++;
832 }
833 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
834 return ndetected;
835 }
836
837 /*
838 * Scan the current list of tasks blocked within RCU read-side critical
839 * sections, dumping the stack of each that is blocking the current
840 * expedited grace period.
841 */
rcu_exp_print_detail_task_stall_rnp(struct rcu_node * rnp)842 static void rcu_exp_print_detail_task_stall_rnp(struct rcu_node *rnp)
843 {
844 unsigned long flags;
845 struct task_struct *t;
846
847 if (!rcu_exp_stall_task_details)
848 return;
849 raw_spin_lock_irqsave_rcu_node(rnp, flags);
850 if (!READ_ONCE(rnp->exp_tasks)) {
851 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
852 return;
853 }
854 t = list_entry(rnp->exp_tasks->prev,
855 struct task_struct, rcu_node_entry);
856 list_for_each_entry_continue(t, &rnp->blkd_tasks, rcu_node_entry) {
857 /*
858 * We could be printing a lot while holding a spinlock.
859 * Avoid triggering hard lockup.
860 */
861 touch_nmi_watchdog();
862 sched_show_task(t);
863 }
864 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
865 }
866
867 #else /* #ifdef CONFIG_PREEMPT_RCU */
868
869 /* Invoked on each online non-idle CPU for expedited quiescent state. */
rcu_exp_handler(void * unused)870 static void rcu_exp_handler(void *unused)
871 {
872 struct rcu_data *rdp = this_cpu_ptr(&rcu_data);
873 struct rcu_node *rnp = rdp->mynode;
874 bool preempt_bh_enabled = !(preempt_count() & (PREEMPT_MASK | SOFTIRQ_MASK));
875
876 ASSERT_EXCLUSIVE_WRITER_SCOPED(rdp->cpu_no_qs.b.exp);
877 if (!(READ_ONCE(rnp->expmask) & rdp->grpmask) ||
878 __this_cpu_read(rcu_data.cpu_no_qs.b.exp))
879 return;
880 if (rcu_is_cpu_rrupt_from_idle() ||
881 (IS_ENABLED(CONFIG_PREEMPT_COUNT) && preempt_bh_enabled)) {
882 rcu_report_exp_rdp(this_cpu_ptr(&rcu_data));
883 return;
884 }
885 rcu_exp_need_qs();
886 }
887
888 /* Send IPI for expedited cleanup if needed at end of CPU-hotplug operation. */
sync_sched_exp_online_cleanup(int cpu)889 static void sync_sched_exp_online_cleanup(int cpu)
890 {
891 unsigned long flags;
892 int my_cpu;
893 struct rcu_data *rdp;
894 int ret;
895 struct rcu_node *rnp;
896
897 rdp = per_cpu_ptr(&rcu_data, cpu);
898 rnp = rdp->mynode;
899 my_cpu = get_cpu();
900 /* Quiescent state either not needed or already requested, leave. */
901 if (!(READ_ONCE(rnp->expmask) & rdp->grpmask) ||
902 READ_ONCE(rdp->cpu_no_qs.b.exp)) {
903 put_cpu();
904 return;
905 }
906 /* Quiescent state needed on current CPU, so set it up locally. */
907 if (my_cpu == cpu) {
908 local_irq_save(flags);
909 rcu_exp_need_qs();
910 local_irq_restore(flags);
911 put_cpu();
912 return;
913 }
914 /* Quiescent state needed on some other CPU, send IPI. */
915 ret = smp_call_function_single(cpu, rcu_exp_handler, NULL, 0);
916 put_cpu();
917 WARN_ON_ONCE(ret);
918 }
919
920 /*
921 * Because preemptible RCU does not exist, we never have to check for
922 * tasks blocked within RCU read-side critical sections that are
923 * blocking the current expedited grace period.
924 */
rcu_print_task_exp_stall(struct rcu_node * rnp)925 static int rcu_print_task_exp_stall(struct rcu_node *rnp)
926 {
927 return 0;
928 }
929
930 /*
931 * Because preemptible RCU does not exist, we never have to print out
932 * tasks blocked within RCU read-side critical sections that are blocking
933 * the current expedited grace period.
934 */
rcu_exp_print_detail_task_stall_rnp(struct rcu_node * rnp)935 static void rcu_exp_print_detail_task_stall_rnp(struct rcu_node *rnp)
936 {
937 }
938
939 #endif /* #else #ifdef CONFIG_PREEMPT_RCU */
940
941 /**
942 * synchronize_rcu_expedited - Brute-force RCU grace period
943 *
944 * Wait for an RCU grace period, but expedite it. The basic idea is to
945 * IPI all non-idle non-nohz online CPUs. The IPI handler checks whether
946 * the CPU is in an RCU critical section, and if so, it sets a flag that
947 * causes the outermost rcu_read_unlock() to report the quiescent state
948 * for RCU-preempt or asks the scheduler for help for RCU-sched. On the
949 * other hand, if the CPU is not in an RCU read-side critical section,
950 * the IPI handler reports the quiescent state immediately.
951 *
952 * Although this is a great improvement over previous expedited
953 * implementations, it is still unfriendly to real-time workloads, so is
954 * thus not recommended for any sort of common-case code. In fact, if
955 * you are using synchronize_rcu_expedited() in a loop, please restructure
956 * your code to batch your updates, and then use a single synchronize_rcu()
957 * instead.
958 *
959 * This has the same semantics as (but is more brutal than) synchronize_rcu().
960 */
synchronize_rcu_expedited(void)961 void synchronize_rcu_expedited(void)
962 {
963 unsigned long flags;
964 struct rcu_exp_work rew;
965 struct rcu_node *rnp;
966 unsigned long s;
967
968 RCU_LOCKDEP_WARN(lock_is_held(&rcu_bh_lock_map) ||
969 lock_is_held(&rcu_lock_map) ||
970 lock_is_held(&rcu_sched_lock_map),
971 "Illegal synchronize_rcu_expedited() in RCU read-side critical section");
972
973 /* Is the state is such that the call is a grace period? */
974 if (rcu_blocking_is_gp()) {
975 // Note well that this code runs with !PREEMPT && !SMP.
976 // In addition, all code that advances grace periods runs
977 // at process level. Therefore, this expedited GP overlaps
978 // with other expedited GPs only by being fully nested within
979 // them, which allows reuse of ->gp_seq_polled_exp_snap.
980 rcu_poll_gp_seq_start_unlocked(&rcu_state.gp_seq_polled_exp_snap);
981 rcu_poll_gp_seq_end_unlocked(&rcu_state.gp_seq_polled_exp_snap);
982
983 local_irq_save(flags);
984 WARN_ON_ONCE(num_online_cpus() > 1);
985 rcu_state.expedited_sequence += (1 << RCU_SEQ_CTR_SHIFT);
986 local_irq_restore(flags);
987 return; // Context allows vacuous grace periods.
988 }
989
990 /* If expedited grace periods are prohibited, fall back to normal. */
991 if (rcu_gp_is_normal()) {
992 synchronize_rcu_normal();
993 return;
994 }
995
996 /* Take a snapshot of the sequence number. */
997 s = rcu_exp_gp_seq_snap();
998 if (exp_funnel_lock(s))
999 return; /* Someone else did our work for us. */
1000
1001 /* Ensure that load happens before action based on it. */
1002 if (unlikely((rcu_scheduler_active == RCU_SCHEDULER_INIT) || !rcu_exp_worker_started())) {
1003 /* Direct call during scheduler init and early_initcalls(). */
1004 rcu_exp_sel_wait_wake(s);
1005 } else {
1006 /* Marshall arguments & schedule the expedited grace period. */
1007 rew.rew_s = s;
1008 synchronize_rcu_expedited_queue_work(&rew);
1009 }
1010
1011 /* Wait for expedited grace period to complete. */
1012 rnp = rcu_get_root();
1013 wait_event(rnp->exp_wq[rcu_seq_ctr(s) & 0x3],
1014 sync_exp_work_done(s));
1015
1016 /* Let the next expedited grace period start. */
1017 mutex_unlock(&rcu_state.exp_mutex);
1018 }
1019 EXPORT_SYMBOL_GPL(synchronize_rcu_expedited);
1020
1021 /*
1022 * Ensure that start_poll_synchronize_rcu_expedited() has the expedited
1023 * RCU grace periods that it needs.
1024 */
sync_rcu_do_polled_gp(struct work_struct * wp)1025 static void sync_rcu_do_polled_gp(struct work_struct *wp)
1026 {
1027 unsigned long flags;
1028 int i = 0;
1029 struct rcu_node *rnp = container_of(wp, struct rcu_node, exp_poll_wq);
1030 unsigned long s;
1031
1032 raw_spin_lock_irqsave(&rnp->exp_poll_lock, flags);
1033 s = rnp->exp_seq_poll_rq;
1034 rnp->exp_seq_poll_rq = RCU_GET_STATE_COMPLETED;
1035 raw_spin_unlock_irqrestore(&rnp->exp_poll_lock, flags);
1036 if (s == RCU_GET_STATE_COMPLETED)
1037 return;
1038 while (!poll_state_synchronize_rcu(s)) {
1039 synchronize_rcu_expedited();
1040 if (i == 10 || i == 20)
1041 pr_info("%s: i = %d s = %lx gp_seq_polled = %lx\n", __func__, i, s, READ_ONCE(rcu_state.gp_seq_polled));
1042 i++;
1043 }
1044 raw_spin_lock_irqsave(&rnp->exp_poll_lock, flags);
1045 s = rnp->exp_seq_poll_rq;
1046 if (poll_state_synchronize_rcu(s))
1047 rnp->exp_seq_poll_rq = RCU_GET_STATE_COMPLETED;
1048 raw_spin_unlock_irqrestore(&rnp->exp_poll_lock, flags);
1049 }
1050
1051 /**
1052 * start_poll_synchronize_rcu_expedited - Snapshot current RCU state and start expedited grace period
1053 *
1054 * Returns a cookie to pass to a call to cond_synchronize_rcu(),
1055 * cond_synchronize_rcu_expedited(), or poll_state_synchronize_rcu(),
1056 * allowing them to determine whether or not any sort of grace period has
1057 * elapsed in the meantime. If the needed expedited grace period is not
1058 * already slated to start, initiates that grace period.
1059 */
start_poll_synchronize_rcu_expedited(void)1060 unsigned long start_poll_synchronize_rcu_expedited(void)
1061 {
1062 unsigned long flags;
1063 struct rcu_data *rdp;
1064 struct rcu_node *rnp;
1065 unsigned long s;
1066
1067 s = get_state_synchronize_rcu();
1068 rdp = per_cpu_ptr(&rcu_data, raw_smp_processor_id());
1069 rnp = rdp->mynode;
1070 if (rcu_init_invoked())
1071 raw_spin_lock_irqsave(&rnp->exp_poll_lock, flags);
1072 if (!poll_state_synchronize_rcu(s)) {
1073 if (rcu_init_invoked()) {
1074 rnp->exp_seq_poll_rq = s;
1075 queue_work(rcu_gp_wq, &rnp->exp_poll_wq);
1076 }
1077 }
1078 if (rcu_init_invoked())
1079 raw_spin_unlock_irqrestore(&rnp->exp_poll_lock, flags);
1080
1081 return s;
1082 }
1083 EXPORT_SYMBOL_GPL(start_poll_synchronize_rcu_expedited);
1084
1085 /**
1086 * start_poll_synchronize_rcu_expedited_full - Take a full snapshot and start expedited grace period
1087 * @rgosp: Place to put snapshot of grace-period state
1088 *
1089 * Places the normal and expedited grace-period states in rgosp. This
1090 * state value can be passed to a later call to cond_synchronize_rcu_full()
1091 * or poll_state_synchronize_rcu_full() to determine whether or not a
1092 * grace period (whether normal or expedited) has elapsed in the meantime.
1093 * If the needed expedited grace period is not already slated to start,
1094 * initiates that grace period.
1095 */
start_poll_synchronize_rcu_expedited_full(struct rcu_gp_oldstate * rgosp)1096 void start_poll_synchronize_rcu_expedited_full(struct rcu_gp_oldstate *rgosp)
1097 {
1098 get_state_synchronize_rcu_full(rgosp);
1099 (void)start_poll_synchronize_rcu_expedited();
1100 }
1101 EXPORT_SYMBOL_GPL(start_poll_synchronize_rcu_expedited_full);
1102
1103 /**
1104 * cond_synchronize_rcu_expedited - Conditionally wait for an expedited RCU grace period
1105 *
1106 * @oldstate: value from get_state_synchronize_rcu(), start_poll_synchronize_rcu(), or start_poll_synchronize_rcu_expedited()
1107 *
1108 * If any type of full RCU grace period has elapsed since the earlier
1109 * call to get_state_synchronize_rcu(), start_poll_synchronize_rcu(),
1110 * or start_poll_synchronize_rcu_expedited(), just return. Otherwise,
1111 * invoke synchronize_rcu_expedited() to wait for a full grace period.
1112 *
1113 * Yes, this function does not take counter wrap into account.
1114 * But counter wrap is harmless. If the counter wraps, we have waited for
1115 * more than 2 billion grace periods (and way more on a 64-bit system!),
1116 * so waiting for a couple of additional grace periods should be just fine.
1117 *
1118 * This function provides the same memory-ordering guarantees that
1119 * would be provided by a synchronize_rcu() that was invoked at the call
1120 * to the function that provided @oldstate and that returned at the end
1121 * of this function.
1122 */
cond_synchronize_rcu_expedited(unsigned long oldstate)1123 void cond_synchronize_rcu_expedited(unsigned long oldstate)
1124 {
1125 if (!poll_state_synchronize_rcu(oldstate))
1126 synchronize_rcu_expedited();
1127 }
1128 EXPORT_SYMBOL_GPL(cond_synchronize_rcu_expedited);
1129
1130 /**
1131 * cond_synchronize_rcu_expedited_full - Conditionally wait for an expedited RCU grace period
1132 * @rgosp: value from get_state_synchronize_rcu_full(), start_poll_synchronize_rcu_full(), or start_poll_synchronize_rcu_expedited_full()
1133 *
1134 * If a full RCU grace period has elapsed since the call to
1135 * get_state_synchronize_rcu_full(), start_poll_synchronize_rcu_full(),
1136 * or start_poll_synchronize_rcu_expedited_full() from which @rgosp was
1137 * obtained, just return. Otherwise, invoke synchronize_rcu_expedited()
1138 * to wait for a full grace period.
1139 *
1140 * Yes, this function does not take counter wrap into account.
1141 * But counter wrap is harmless. If the counter wraps, we have waited for
1142 * more than 2 billion grace periods (and way more on a 64-bit system!),
1143 * so waiting for a couple of additional grace periods should be just fine.
1144 *
1145 * This function provides the same memory-ordering guarantees that
1146 * would be provided by a synchronize_rcu() that was invoked at the call
1147 * to the function that provided @rgosp and that returned at the end of
1148 * this function.
1149 */
cond_synchronize_rcu_expedited_full(struct rcu_gp_oldstate * rgosp)1150 void cond_synchronize_rcu_expedited_full(struct rcu_gp_oldstate *rgosp)
1151 {
1152 if (!poll_state_synchronize_rcu_full(rgosp))
1153 synchronize_rcu_expedited();
1154 }
1155 EXPORT_SYMBOL_GPL(cond_synchronize_rcu_expedited_full);
1156