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Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001/*
2 * Read-Copy Update mechanism for mutual exclusion
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License as published by
6 * the Free Software Foundation; either version 2 of the License, or
7 * (at your option) any later version.
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write to the Free Software
16 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
17 *
18 * Copyright IBM Corporation, 2008
19 *
20 * Authors: Dipankar Sarma <dipankar@in.ibm.com>
21 * Manfred Spraul <manfred@colorfullife.com>
22 * Paul E. McKenney <paulmck@linux.vnet.ibm.com> Hierarchical version
23 *
24 * Based on the original work by Paul McKenney <paulmck@us.ibm.com>
25 * and inputs from Rusty Russell, Andrea Arcangeli and Andi Kleen.
26 *
27 * For detailed explanation of Read-Copy Update mechanism see -
Paul E. McKenneya71fca52009-09-18 10:28:19 -070028 * Documentation/RCU
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010029 */
30#include <linux/types.h>
31#include <linux/kernel.h>
32#include <linux/init.h>
33#include <linux/spinlock.h>
34#include <linux/smp.h>
35#include <linux/rcupdate.h>
36#include <linux/interrupt.h>
37#include <linux/sched.h>
Ingo Molnarc1dc0b92009-08-02 11:28:21 +020038#include <linux/nmi.h>
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010039#include <asm/atomic.h>
40#include <linux/bitops.h>
41#include <linux/module.h>
42#include <linux/completion.h>
43#include <linux/moduleparam.h>
44#include <linux/percpu.h>
45#include <linux/notifier.h>
46#include <linux/cpu.h>
47#include <linux/mutex.h>
48#include <linux/time.h>
Paul E. McKenneybbad9372010-04-02 16:17:17 -070049#include <linux/kernel_stat.h>
Paul E. McKenneya26ac242011-01-12 14:10:23 -080050#include <linux/wait.h>
51#include <linux/kthread.h>
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010052
Paul E. McKenney9f77da92009-08-22 13:56:45 -070053#include "rcutree.h"
54
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010055/* Data structures. */
56
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -080057static struct lock_class_key rcu_node_class[NUM_RCU_LVLS];
Peter Zijlstra88b91c72009-10-26 10:24:31 -070058
Paul E. McKenney4300aa62010-04-13 16:18:22 -070059#define RCU_STATE_INITIALIZER(structname) { \
60 .level = { &structname.node[0] }, \
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010061 .levelcnt = { \
62 NUM_RCU_LVL_0, /* root of hierarchy. */ \
63 NUM_RCU_LVL_1, \
64 NUM_RCU_LVL_2, \
Paul E. McKenneycf244dc2009-12-02 12:10:14 -080065 NUM_RCU_LVL_3, \
66 NUM_RCU_LVL_4, /* == MAX_RCU_LVLS */ \
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010067 }, \
Paul E. McKenney83f5b012009-10-28 08:14:49 -070068 .signaled = RCU_GP_IDLE, \
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010069 .gpnum = -300, \
70 .completed = -300, \
Paul E. McKenney4300aa62010-04-13 16:18:22 -070071 .onofflock = __RAW_SPIN_LOCK_UNLOCKED(&structname.onofflock), \
Paul E. McKenney4300aa62010-04-13 16:18:22 -070072 .fqslock = __RAW_SPIN_LOCK_UNLOCKED(&structname.fqslock), \
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010073 .n_force_qs = 0, \
74 .n_force_qs_ngp = 0, \
Paul E. McKenney4300aa62010-04-13 16:18:22 -070075 .name = #structname, \
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010076}
77
Paul E. McKenneyd6714c22009-08-22 13:56:46 -070078struct rcu_state rcu_sched_state = RCU_STATE_INITIALIZER(rcu_sched_state);
79DEFINE_PER_CPU(struct rcu_data, rcu_sched_data);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010080
Ingo Molnar6258c4f2009-03-25 16:42:24 +010081struct rcu_state rcu_bh_state = RCU_STATE_INITIALIZER(rcu_bh_state);
82DEFINE_PER_CPU(struct rcu_data, rcu_bh_data);
Ingo Molnarb1f77b02009-03-13 03:20:49 +010083
Paul E. McKenney27f4d282011-02-07 12:47:15 -080084static struct rcu_state *rcu_state;
85
Paul E. McKenneybbad9372010-04-02 16:17:17 -070086int rcu_scheduler_active __read_mostly;
87EXPORT_SYMBOL_GPL(rcu_scheduler_active);
88
Ingo Molnarb1f77b02009-03-13 03:20:49 +010089/*
Paul E. McKenneya26ac242011-01-12 14:10:23 -080090 * Control variables for per-CPU and per-rcu_node kthreads. These
91 * handle all flavors of RCU.
92 */
93static DEFINE_PER_CPU(struct task_struct *, rcu_cpu_kthread_task);
94static DEFINE_PER_CPU(wait_queue_head_t, rcu_cpu_wq);
95static DEFINE_PER_CPU(char, rcu_cpu_has_work);
96static char rcu_kthreads_spawnable;
97
Paul E. McKenney0f962a52011-04-14 12:13:53 -070098static void rcu_node_kthread_setaffinity(struct rcu_node *rnp, int outgoingcpu);
Paul E. McKenney27f4d282011-02-07 12:47:15 -080099static void invoke_rcu_cpu_kthread(void);
Paul E. McKenneya26ac242011-01-12 14:10:23 -0800100
101#define RCU_KTHREAD_PRIO 1 /* RT priority for per-CPU kthreads. */
102
103/*
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -0700104 * Return true if an RCU grace period is in progress. The ACCESS_ONCE()s
105 * permit this function to be invoked without holding the root rcu_node
106 * structure's ->lock, but of course results can be subject to change.
107 */
108static int rcu_gp_in_progress(struct rcu_state *rsp)
109{
110 return ACCESS_ONCE(rsp->completed) != ACCESS_ONCE(rsp->gpnum);
111}
112
113/*
Paul E. McKenneyd6714c22009-08-22 13:56:46 -0700114 * Note a quiescent state. Because we do not need to know
Ingo Molnarb1f77b02009-03-13 03:20:49 +0100115 * how many quiescent states passed, just if there was at least
Paul E. McKenneyd6714c22009-08-22 13:56:46 -0700116 * one since the start of the grace period, this just sets a flag.
Ingo Molnarb1f77b02009-03-13 03:20:49 +0100117 */
Paul E. McKenneyd6714c22009-08-22 13:56:46 -0700118void rcu_sched_qs(int cpu)
Ingo Molnarb1f77b02009-03-13 03:20:49 +0100119{
Paul E. McKenney25502a62010-04-01 17:37:01 -0700120 struct rcu_data *rdp = &per_cpu(rcu_sched_data, cpu);
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700121
Paul E. McKenneyc64ac3c2009-11-10 13:37:22 -0800122 rdp->passed_quiesc_completed = rdp->gpnum - 1;
Paul E. McKenneyc3422be2009-09-13 09:15:10 -0700123 barrier();
124 rdp->passed_quiesc = 1;
Ingo Molnarb1f77b02009-03-13 03:20:49 +0100125}
126
Paul E. McKenneyd6714c22009-08-22 13:56:46 -0700127void rcu_bh_qs(int cpu)
Ingo Molnarb1f77b02009-03-13 03:20:49 +0100128{
Paul E. McKenney25502a62010-04-01 17:37:01 -0700129 struct rcu_data *rdp = &per_cpu(rcu_bh_data, cpu);
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700130
Paul E. McKenneyc64ac3c2009-11-10 13:37:22 -0800131 rdp->passed_quiesc_completed = rdp->gpnum - 1;
Paul E. McKenneyc3422be2009-09-13 09:15:10 -0700132 barrier();
133 rdp->passed_quiesc = 1;
Ingo Molnarb1f77b02009-03-13 03:20:49 +0100134}
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100135
Paul E. McKenney25502a62010-04-01 17:37:01 -0700136/*
137 * Note a context switch. This is a quiescent state for RCU-sched,
138 * and requires special handling for preemptible RCU.
139 */
140void rcu_note_context_switch(int cpu)
141{
142 rcu_sched_qs(cpu);
143 rcu_preempt_note_context_switch(cpu);
144}
145
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100146#ifdef CONFIG_NO_HZ
Paul E. McKenney90a4d2c2009-01-04 11:41:11 -0800147DEFINE_PER_CPU(struct rcu_dynticks, rcu_dynticks) = {
148 .dynticks_nesting = 1,
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700149 .dynticks = ATOMIC_INIT(1),
Paul E. McKenney90a4d2c2009-01-04 11:41:11 -0800150};
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100151#endif /* #ifdef CONFIG_NO_HZ */
152
153static int blimit = 10; /* Maximum callbacks per softirq. */
154static int qhimark = 10000; /* If this many pending, ignore blimit. */
155static int qlowmark = 100; /* Once only this many pending, use blimit. */
156
Paul E. McKenney3d76c082009-09-28 07:46:32 -0700157module_param(blimit, int, 0);
158module_param(qhimark, int, 0);
159module_param(qlowmark, int, 0);
160
Paul E. McKenneya00e0d712011-02-08 17:14:39 -0800161int rcu_cpu_stall_suppress __read_mostly;
Paul E. McKenneyf2e0dd72010-07-14 14:38:30 -0700162module_param(rcu_cpu_stall_suppress, int, 0644);
Paul E. McKenney742734e2010-06-30 11:43:52 -0700163
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100164static void force_quiescent_state(struct rcu_state *rsp, int relaxed);
Paul E. McKenneya1572292009-08-22 13:56:51 -0700165static int rcu_pending(int cpu);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100166
167/*
Paul E. McKenneyd6714c22009-08-22 13:56:46 -0700168 * Return the number of RCU-sched batches processed thus far for debug & stats.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100169 */
Paul E. McKenneyd6714c22009-08-22 13:56:46 -0700170long rcu_batches_completed_sched(void)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100171{
Paul E. McKenneyd6714c22009-08-22 13:56:46 -0700172 return rcu_sched_state.completed;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100173}
Paul E. McKenneyd6714c22009-08-22 13:56:46 -0700174EXPORT_SYMBOL_GPL(rcu_batches_completed_sched);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100175
176/*
177 * Return the number of RCU BH batches processed thus far for debug & stats.
178 */
179long rcu_batches_completed_bh(void)
180{
181 return rcu_bh_state.completed;
182}
183EXPORT_SYMBOL_GPL(rcu_batches_completed_bh);
184
185/*
Paul E. McKenneybf66f182010-01-04 15:09:10 -0800186 * Force a quiescent state for RCU BH.
187 */
188void rcu_bh_force_quiescent_state(void)
189{
190 force_quiescent_state(&rcu_bh_state, 0);
191}
192EXPORT_SYMBOL_GPL(rcu_bh_force_quiescent_state);
193
194/*
195 * Force a quiescent state for RCU-sched.
196 */
197void rcu_sched_force_quiescent_state(void)
198{
199 force_quiescent_state(&rcu_sched_state, 0);
200}
201EXPORT_SYMBOL_GPL(rcu_sched_force_quiescent_state);
202
203/*
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100204 * Does the CPU have callbacks ready to be invoked?
205 */
206static int
207cpu_has_callbacks_ready_to_invoke(struct rcu_data *rdp)
208{
209 return &rdp->nxtlist != rdp->nxttail[RCU_DONE_TAIL];
210}
211
212/*
213 * Does the current CPU require a yet-as-unscheduled grace period?
214 */
215static int
216cpu_needs_another_gp(struct rcu_state *rsp, struct rcu_data *rdp)
217{
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -0700218 return *rdp->nxttail[RCU_DONE_TAIL] && !rcu_gp_in_progress(rsp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100219}
220
221/*
222 * Return the root node of the specified rcu_state structure.
223 */
224static struct rcu_node *rcu_get_root(struct rcu_state *rsp)
225{
226 return &rsp->node[0];
227}
228
229#ifdef CONFIG_SMP
230
231/*
232 * If the specified CPU is offline, tell the caller that it is in
233 * a quiescent state. Otherwise, whack it with a reschedule IPI.
234 * Grace periods can end up waiting on an offline CPU when that
235 * CPU is in the process of coming online -- it will be added to the
236 * rcu_node bitmasks before it actually makes it online. The same thing
237 * can happen while a CPU is in the process of coming online. Because this
238 * race is quite rare, we check for it after detecting that the grace
239 * period has been delayed rather than checking each and every CPU
240 * each and every time we start a new grace period.
241 */
242static int rcu_implicit_offline_qs(struct rcu_data *rdp)
243{
244 /*
245 * If the CPU is offline, it is in a quiescent state. We can
246 * trust its state not to change because interrupts are disabled.
247 */
248 if (cpu_is_offline(rdp->cpu)) {
249 rdp->offline_fqs++;
250 return 1;
251 }
252
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700253 /* If preemptable RCU, no point in sending reschedule IPI. */
254 if (rdp->preemptable)
255 return 0;
256
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100257 /* The CPU is online, so send it a reschedule IPI. */
258 if (rdp->cpu != smp_processor_id())
259 smp_send_reschedule(rdp->cpu);
260 else
261 set_need_resched();
262 rdp->resched_ipi++;
263 return 0;
264}
265
266#endif /* #ifdef CONFIG_SMP */
267
268#ifdef CONFIG_NO_HZ
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100269
270/**
271 * rcu_enter_nohz - inform RCU that current CPU is entering nohz
272 *
273 * Enter nohz mode, in other words, -leave- the mode in which RCU
274 * read-side critical sections can occur. (Though RCU read-side
275 * critical sections can occur in irq handlers in nohz mode, a possibility
276 * handled by rcu_irq_enter() and rcu_irq_exit()).
277 */
278void rcu_enter_nohz(void)
279{
280 unsigned long flags;
281 struct rcu_dynticks *rdtp;
282
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100283 local_irq_save(flags);
284 rdtp = &__get_cpu_var(rcu_dynticks);
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700285 if (--rdtp->dynticks_nesting) {
286 local_irq_restore(flags);
287 return;
288 }
289 /* CPUs seeing atomic_inc() must see prior RCU read-side crit sects */
290 smp_mb__before_atomic_inc(); /* See above. */
291 atomic_inc(&rdtp->dynticks);
292 smp_mb__after_atomic_inc(); /* Force ordering with next sojourn. */
293 WARN_ON_ONCE(atomic_read(&rdtp->dynticks) & 0x1);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100294 local_irq_restore(flags);
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700295
296 /* If the interrupt queued a callback, get out of dyntick mode. */
297 if (in_irq() &&
298 (__get_cpu_var(rcu_sched_data).nxtlist ||
299 __get_cpu_var(rcu_bh_data).nxtlist ||
300 rcu_preempt_needs_cpu(smp_processor_id())))
301 set_need_resched();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100302}
303
304/*
305 * rcu_exit_nohz - inform RCU that current CPU is leaving nohz
306 *
307 * Exit nohz mode, in other words, -enter- the mode in which RCU
308 * read-side critical sections normally occur.
309 */
310void rcu_exit_nohz(void)
311{
312 unsigned long flags;
313 struct rcu_dynticks *rdtp;
314
315 local_irq_save(flags);
316 rdtp = &__get_cpu_var(rcu_dynticks);
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700317 if (rdtp->dynticks_nesting++) {
318 local_irq_restore(flags);
319 return;
320 }
321 smp_mb__before_atomic_inc(); /* Force ordering w/previous sojourn. */
322 atomic_inc(&rdtp->dynticks);
323 /* CPUs seeing atomic_inc() must see later RCU read-side crit sects */
324 smp_mb__after_atomic_inc(); /* See above. */
325 WARN_ON_ONCE(!(atomic_read(&rdtp->dynticks) & 0x1));
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100326 local_irq_restore(flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100327}
328
329/**
330 * rcu_nmi_enter - inform RCU of entry to NMI context
331 *
332 * If the CPU was idle with dynamic ticks active, and there is no
333 * irq handler running, this updates rdtp->dynticks_nmi to let the
334 * RCU grace-period handling know that the CPU is active.
335 */
336void rcu_nmi_enter(void)
337{
338 struct rcu_dynticks *rdtp = &__get_cpu_var(rcu_dynticks);
339
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700340 if (rdtp->dynticks_nmi_nesting == 0 &&
341 (atomic_read(&rdtp->dynticks) & 0x1))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100342 return;
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700343 rdtp->dynticks_nmi_nesting++;
344 smp_mb__before_atomic_inc(); /* Force delay from prior write. */
345 atomic_inc(&rdtp->dynticks);
346 /* CPUs seeing atomic_inc() must see later RCU read-side crit sects */
347 smp_mb__after_atomic_inc(); /* See above. */
348 WARN_ON_ONCE(!(atomic_read(&rdtp->dynticks) & 0x1));
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100349}
350
351/**
352 * rcu_nmi_exit - inform RCU of exit from NMI context
353 *
354 * If the CPU was idle with dynamic ticks active, and there is no
355 * irq handler running, this updates rdtp->dynticks_nmi to let the
356 * RCU grace-period handling know that the CPU is no longer active.
357 */
358void rcu_nmi_exit(void)
359{
360 struct rcu_dynticks *rdtp = &__get_cpu_var(rcu_dynticks);
361
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700362 if (rdtp->dynticks_nmi_nesting == 0 ||
363 --rdtp->dynticks_nmi_nesting != 0)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100364 return;
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700365 /* CPUs seeing atomic_inc() must see prior RCU read-side crit sects */
366 smp_mb__before_atomic_inc(); /* See above. */
367 atomic_inc(&rdtp->dynticks);
368 smp_mb__after_atomic_inc(); /* Force delay to next write. */
369 WARN_ON_ONCE(atomic_read(&rdtp->dynticks) & 0x1);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100370}
371
372/**
373 * rcu_irq_enter - inform RCU of entry to hard irq context
374 *
375 * If the CPU was idle with dynamic ticks active, this updates the
376 * rdtp->dynticks to let the RCU handling know that the CPU is active.
377 */
378void rcu_irq_enter(void)
379{
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700380 rcu_exit_nohz();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100381}
382
383/**
384 * rcu_irq_exit - inform RCU of exit from hard irq context
385 *
386 * If the CPU was idle with dynamic ticks active, update the rdp->dynticks
387 * to put let the RCU handling be aware that the CPU is going back to idle
388 * with no ticks.
389 */
390void rcu_irq_exit(void)
391{
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700392 rcu_enter_nohz();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100393}
394
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100395#ifdef CONFIG_SMP
396
397/*
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100398 * Snapshot the specified CPU's dynticks counter so that we can later
399 * credit them with an implicit quiescent state. Return 1 if this CPU
Paul E. McKenney1eba8f82009-09-23 09:50:42 -0700400 * is in dynticks idle mode, which is an extended quiescent state.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100401 */
402static int dyntick_save_progress_counter(struct rcu_data *rdp)
403{
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700404 rdp->dynticks_snap = atomic_add_return(0, &rdp->dynticks->dynticks);
405 return 0;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100406}
407
408/*
409 * Return true if the specified CPU has passed through a quiescent
410 * state by virtue of being in or having passed through an dynticks
411 * idle state since the last call to dyntick_save_progress_counter()
412 * for this same CPU.
413 */
414static int rcu_implicit_dynticks_qs(struct rcu_data *rdp)
415{
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700416 unsigned long curr;
417 unsigned long snap;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100418
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700419 curr = (unsigned long)atomic_add_return(0, &rdp->dynticks->dynticks);
420 snap = (unsigned long)rdp->dynticks_snap;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100421
422 /*
423 * If the CPU passed through or entered a dynticks idle phase with
424 * no active irq/NMI handlers, then we can safely pretend that the CPU
425 * already acknowledged the request to pass through a quiescent
426 * state. Either way, that CPU cannot possibly be in an RCU
427 * read-side critical section that started before the beginning
428 * of the current RCU grace period.
429 */
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700430 if ((curr & 0x1) == 0 || ULONG_CMP_GE(curr, snap + 2)) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100431 rdp->dynticks_fqs++;
432 return 1;
433 }
434
435 /* Go check for the CPU being offline. */
436 return rcu_implicit_offline_qs(rdp);
437}
438
439#endif /* #ifdef CONFIG_SMP */
440
441#else /* #ifdef CONFIG_NO_HZ */
442
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100443#ifdef CONFIG_SMP
444
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100445static int dyntick_save_progress_counter(struct rcu_data *rdp)
446{
447 return 0;
448}
449
450static int rcu_implicit_dynticks_qs(struct rcu_data *rdp)
451{
452 return rcu_implicit_offline_qs(rdp);
453}
454
455#endif /* #ifdef CONFIG_SMP */
456
457#endif /* #else #ifdef CONFIG_NO_HZ */
458
Paul E. McKenney742734e2010-06-30 11:43:52 -0700459int rcu_cpu_stall_suppress __read_mostly;
Paul E. McKenneyc68de202010-04-15 10:12:40 -0700460
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100461static void record_gp_stall_check_time(struct rcu_state *rsp)
462{
463 rsp->gp_start = jiffies;
464 rsp->jiffies_stall = jiffies + RCU_SECONDS_TILL_STALL_CHECK;
465}
466
467static void print_other_cpu_stall(struct rcu_state *rsp)
468{
469 int cpu;
470 long delta;
471 unsigned long flags;
472 struct rcu_node *rnp = rcu_get_root(rsp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100473
474 /* Only let one CPU complain about others per time interval. */
475
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800476 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100477 delta = jiffies - rsp->jiffies_stall;
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -0700478 if (delta < RCU_STALL_RAT_DELAY || !rcu_gp_in_progress(rsp)) {
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800479 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100480 return;
481 }
482 rsp->jiffies_stall = jiffies + RCU_SECONDS_TILL_STALL_RECHECK;
Paul E. McKenneya0b6c9a2009-09-28 07:46:33 -0700483
484 /*
485 * Now rat on any tasks that got kicked up to the root rcu_node
486 * due to CPU offlining.
487 */
488 rcu_print_task_stall(rnp);
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800489 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100490
Paul E. McKenney8cdd32a2010-08-09 14:23:03 -0700491 /*
492 * OK, time to rat on our buddy...
493 * See Documentation/RCU/stallwarn.txt for info on how to debug
494 * RCU CPU stall warnings.
495 */
Paul E. McKenney4300aa62010-04-13 16:18:22 -0700496 printk(KERN_ERR "INFO: %s detected stalls on CPUs/tasks: {",
497 rsp->name);
Paul E. McKenneya0b6c9a2009-09-28 07:46:33 -0700498 rcu_for_each_leaf_node(rsp, rnp) {
Paul E. McKenney3acd9eb2010-02-22 17:05:03 -0800499 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700500 rcu_print_task_stall(rnp);
Paul E. McKenney3acd9eb2010-02-22 17:05:03 -0800501 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenneya0b6c9a2009-09-28 07:46:33 -0700502 if (rnp->qsmask == 0)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100503 continue;
Paul E. McKenneya0b6c9a2009-09-28 07:46:33 -0700504 for (cpu = 0; cpu <= rnp->grphi - rnp->grplo; cpu++)
505 if (rnp->qsmask & (1UL << cpu))
506 printk(" %d", rnp->grplo + cpu);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100507 }
Paul E. McKenney4300aa62010-04-13 16:18:22 -0700508 printk("} (detected by %d, t=%ld jiffies)\n",
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100509 smp_processor_id(), (long)(jiffies - rsp->gp_start));
Ingo Molnarc1dc0b92009-08-02 11:28:21 +0200510 trigger_all_cpu_backtrace();
511
Paul E. McKenney1ed509a2010-02-22 17:05:05 -0800512 /* If so configured, complain about tasks blocking the grace period. */
513
514 rcu_print_detail_task_stall(rsp);
515
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100516 force_quiescent_state(rsp, 0); /* Kick them all. */
517}
518
519static void print_cpu_stall(struct rcu_state *rsp)
520{
521 unsigned long flags;
522 struct rcu_node *rnp = rcu_get_root(rsp);
523
Paul E. McKenney8cdd32a2010-08-09 14:23:03 -0700524 /*
525 * OK, time to rat on ourselves...
526 * See Documentation/RCU/stallwarn.txt for info on how to debug
527 * RCU CPU stall warnings.
528 */
Paul E. McKenney4300aa62010-04-13 16:18:22 -0700529 printk(KERN_ERR "INFO: %s detected stall on CPU %d (t=%lu jiffies)\n",
530 rsp->name, smp_processor_id(), jiffies - rsp->gp_start);
Ingo Molnarc1dc0b92009-08-02 11:28:21 +0200531 trigger_all_cpu_backtrace();
532
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800533 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney20133cf2010-02-22 17:05:01 -0800534 if (ULONG_CMP_GE(jiffies, rsp->jiffies_stall))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100535 rsp->jiffies_stall =
536 jiffies + RCU_SECONDS_TILL_STALL_RECHECK;
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800537 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Ingo Molnarc1dc0b92009-08-02 11:28:21 +0200538
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100539 set_need_resched(); /* kick ourselves to get things going. */
540}
541
542static void check_cpu_stall(struct rcu_state *rsp, struct rcu_data *rdp)
543{
544 long delta;
545 struct rcu_node *rnp;
546
Paul E. McKenney742734e2010-06-30 11:43:52 -0700547 if (rcu_cpu_stall_suppress)
Paul E. McKenneyc68de202010-04-15 10:12:40 -0700548 return;
Dongdong Deng4ee0a602010-09-28 16:32:43 +0800549 delta = jiffies - ACCESS_ONCE(rsp->jiffies_stall);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100550 rnp = rdp->mynode;
Dongdong Deng4ee0a602010-09-28 16:32:43 +0800551 if ((ACCESS_ONCE(rnp->qsmask) & rdp->grpmask) && delta >= 0) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100552
553 /* We haven't checked in, so go dump stack. */
554 print_cpu_stall(rsp);
555
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -0700556 } else if (rcu_gp_in_progress(rsp) && delta >= RCU_STALL_RAT_DELAY) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100557
558 /* They had two time units to dump stack, so complain. */
559 print_other_cpu_stall(rsp);
560 }
561}
562
Paul E. McKenneyc68de202010-04-15 10:12:40 -0700563static int rcu_panic(struct notifier_block *this, unsigned long ev, void *ptr)
564{
Paul E. McKenney742734e2010-06-30 11:43:52 -0700565 rcu_cpu_stall_suppress = 1;
Paul E. McKenneyc68de202010-04-15 10:12:40 -0700566 return NOTIFY_DONE;
567}
568
Paul E. McKenney53d84e02010-08-10 14:28:53 -0700569/**
570 * rcu_cpu_stall_reset - prevent further stall warnings in current grace period
571 *
572 * Set the stall-warning timeout way off into the future, thus preventing
573 * any RCU CPU stall-warning messages from appearing in the current set of
574 * RCU grace periods.
575 *
576 * The caller must disable hard irqs.
577 */
578void rcu_cpu_stall_reset(void)
579{
580 rcu_sched_state.jiffies_stall = jiffies + ULONG_MAX / 2;
581 rcu_bh_state.jiffies_stall = jiffies + ULONG_MAX / 2;
582 rcu_preempt_stall_reset();
583}
584
Paul E. McKenneyc68de202010-04-15 10:12:40 -0700585static struct notifier_block rcu_panic_block = {
586 .notifier_call = rcu_panic,
587};
588
589static void __init check_cpu_stall_init(void)
590{
591 atomic_notifier_chain_register(&panic_notifier_list, &rcu_panic_block);
592}
593
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100594/*
595 * Update CPU-local rcu_data state to record the newly noticed grace period.
596 * This is used both when we started the grace period and when we notice
Paul E. McKenney91603062009-11-02 13:52:29 -0800597 * that someone else started the grace period. The caller must hold the
598 * ->lock of the leaf rcu_node structure corresponding to the current CPU,
599 * and must have irqs disabled.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100600 */
Paul E. McKenney91603062009-11-02 13:52:29 -0800601static void __note_new_gpnum(struct rcu_state *rsp, struct rcu_node *rnp, struct rcu_data *rdp)
602{
603 if (rdp->gpnum != rnp->gpnum) {
Paul E. McKenney121dfc42010-12-10 15:02:47 -0800604 /*
605 * If the current grace period is waiting for this CPU,
606 * set up to detect a quiescent state, otherwise don't
607 * go looking for one.
608 */
Paul E. McKenney91603062009-11-02 13:52:29 -0800609 rdp->gpnum = rnp->gpnum;
Paul E. McKenney121dfc42010-12-10 15:02:47 -0800610 if (rnp->qsmask & rdp->grpmask) {
611 rdp->qs_pending = 1;
612 rdp->passed_quiesc = 0;
613 } else
614 rdp->qs_pending = 0;
Paul E. McKenney91603062009-11-02 13:52:29 -0800615 }
616}
617
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100618static void note_new_gpnum(struct rcu_state *rsp, struct rcu_data *rdp)
619{
Paul E. McKenney91603062009-11-02 13:52:29 -0800620 unsigned long flags;
621 struct rcu_node *rnp;
622
623 local_irq_save(flags);
624 rnp = rdp->mynode;
625 if (rdp->gpnum == ACCESS_ONCE(rnp->gpnum) || /* outside lock. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800626 !raw_spin_trylock(&rnp->lock)) { /* irqs already off, so later. */
Paul E. McKenney91603062009-11-02 13:52:29 -0800627 local_irq_restore(flags);
628 return;
629 }
630 __note_new_gpnum(rsp, rnp, rdp);
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800631 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100632}
633
634/*
635 * Did someone else start a new RCU grace period start since we last
636 * checked? Update local state appropriately if so. Must be called
637 * on the CPU corresponding to rdp.
638 */
639static int
640check_for_new_grace_period(struct rcu_state *rsp, struct rcu_data *rdp)
641{
642 unsigned long flags;
643 int ret = 0;
644
645 local_irq_save(flags);
646 if (rdp->gpnum != rsp->gpnum) {
647 note_new_gpnum(rsp, rdp);
648 ret = 1;
649 }
650 local_irq_restore(flags);
651 return ret;
652}
653
654/*
Paul E. McKenneyd09b62d2009-11-02 13:52:28 -0800655 * Advance this CPU's callbacks, but only if the current grace period
656 * has ended. This may be called only from the CPU to whom the rdp
657 * belongs. In addition, the corresponding leaf rcu_node structure's
658 * ->lock must be held by the caller, with irqs disabled.
659 */
660static void
661__rcu_process_gp_end(struct rcu_state *rsp, struct rcu_node *rnp, struct rcu_data *rdp)
662{
663 /* Did another grace period end? */
664 if (rdp->completed != rnp->completed) {
665
666 /* Advance callbacks. No harm if list empty. */
667 rdp->nxttail[RCU_DONE_TAIL] = rdp->nxttail[RCU_WAIT_TAIL];
668 rdp->nxttail[RCU_WAIT_TAIL] = rdp->nxttail[RCU_NEXT_READY_TAIL];
669 rdp->nxttail[RCU_NEXT_READY_TAIL] = rdp->nxttail[RCU_NEXT_TAIL];
670
671 /* Remember that we saw this grace-period completion. */
672 rdp->completed = rnp->completed;
Frederic Weisbecker20377f32010-12-10 22:11:10 +0100673
674 /*
Frederic Weisbecker5ff8e6f2010-12-10 22:11:11 +0100675 * If we were in an extended quiescent state, we may have
Paul E. McKenney121dfc42010-12-10 15:02:47 -0800676 * missed some grace periods that others CPUs handled on
Frederic Weisbecker5ff8e6f2010-12-10 22:11:11 +0100677 * our behalf. Catch up with this state to avoid noting
Paul E. McKenney121dfc42010-12-10 15:02:47 -0800678 * spurious new grace periods. If another grace period
679 * has started, then rnp->gpnum will have advanced, so
680 * we will detect this later on.
Frederic Weisbecker5ff8e6f2010-12-10 22:11:11 +0100681 */
Paul E. McKenney121dfc42010-12-10 15:02:47 -0800682 if (ULONG_CMP_LT(rdp->gpnum, rdp->completed))
Frederic Weisbecker5ff8e6f2010-12-10 22:11:11 +0100683 rdp->gpnum = rdp->completed;
684
685 /*
Paul E. McKenney121dfc42010-12-10 15:02:47 -0800686 * If RCU does not need a quiescent state from this CPU,
687 * then make sure that this CPU doesn't go looking for one.
Frederic Weisbecker20377f32010-12-10 22:11:10 +0100688 */
Paul E. McKenney121dfc42010-12-10 15:02:47 -0800689 if ((rnp->qsmask & rdp->grpmask) == 0)
Frederic Weisbecker20377f32010-12-10 22:11:10 +0100690 rdp->qs_pending = 0;
Paul E. McKenneyd09b62d2009-11-02 13:52:28 -0800691 }
692}
693
694/*
695 * Advance this CPU's callbacks, but only if the current grace period
696 * has ended. This may be called only from the CPU to whom the rdp
697 * belongs.
698 */
699static void
700rcu_process_gp_end(struct rcu_state *rsp, struct rcu_data *rdp)
701{
702 unsigned long flags;
703 struct rcu_node *rnp;
704
705 local_irq_save(flags);
706 rnp = rdp->mynode;
707 if (rdp->completed == ACCESS_ONCE(rnp->completed) || /* outside lock. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800708 !raw_spin_trylock(&rnp->lock)) { /* irqs already off, so later. */
Paul E. McKenneyd09b62d2009-11-02 13:52:28 -0800709 local_irq_restore(flags);
710 return;
711 }
712 __rcu_process_gp_end(rsp, rnp, rdp);
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800713 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenneyd09b62d2009-11-02 13:52:28 -0800714}
715
716/*
717 * Do per-CPU grace-period initialization for running CPU. The caller
718 * must hold the lock of the leaf rcu_node structure corresponding to
719 * this CPU.
720 */
721static void
722rcu_start_gp_per_cpu(struct rcu_state *rsp, struct rcu_node *rnp, struct rcu_data *rdp)
723{
724 /* Prior grace period ended, so advance callbacks for current CPU. */
725 __rcu_process_gp_end(rsp, rnp, rdp);
726
727 /*
728 * Because this CPU just now started the new grace period, we know
729 * that all of its callbacks will be covered by this upcoming grace
730 * period, even the ones that were registered arbitrarily recently.
731 * Therefore, advance all outstanding callbacks to RCU_WAIT_TAIL.
732 *
733 * Other CPUs cannot be sure exactly when the grace period started.
734 * Therefore, their recently registered callbacks must pass through
735 * an additional RCU_NEXT_READY stage, so that they will be handled
736 * by the next RCU grace period.
737 */
738 rdp->nxttail[RCU_NEXT_READY_TAIL] = rdp->nxttail[RCU_NEXT_TAIL];
739 rdp->nxttail[RCU_WAIT_TAIL] = rdp->nxttail[RCU_NEXT_TAIL];
Paul E. McKenney91603062009-11-02 13:52:29 -0800740
741 /* Set state so that this CPU will detect the next quiescent state. */
742 __note_new_gpnum(rsp, rnp, rdp);
Paul E. McKenneyd09b62d2009-11-02 13:52:28 -0800743}
744
745/*
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100746 * Start a new RCU grace period if warranted, re-initializing the hierarchy
747 * in preparation for detecting the next grace period. The caller must hold
748 * the root node's ->lock, which is released before return. Hard irqs must
749 * be disabled.
750 */
751static void
752rcu_start_gp(struct rcu_state *rsp, unsigned long flags)
753 __releases(rcu_get_root(rsp)->lock)
754{
Lai Jiangshan394f99a2010-06-28 16:25:04 +0800755 struct rcu_data *rdp = this_cpu_ptr(rsp->rda);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100756 struct rcu_node *rnp = rcu_get_root(rsp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100757
Paul E. McKenney07079d52010-01-04 15:09:02 -0800758 if (!cpu_needs_another_gp(rsp, rdp) || rsp->fqs_active) {
Paul E. McKenney46a1e342010-01-04 15:09:09 -0800759 if (cpu_needs_another_gp(rsp, rdp))
760 rsp->fqs_need_gp = 1;
Paul E. McKenneyb32e9eb2009-11-12 22:35:03 -0800761 if (rnp->completed == rsp->completed) {
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800762 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenneyb32e9eb2009-11-12 22:35:03 -0800763 return;
764 }
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800765 raw_spin_unlock(&rnp->lock); /* irqs remain disabled. */
Paul E. McKenneyb32e9eb2009-11-12 22:35:03 -0800766
767 /*
768 * Propagate new ->completed value to rcu_node structures
769 * so that other CPUs don't have to wait until the start
770 * of the next grace period to process their callbacks.
771 */
772 rcu_for_each_node_breadth_first(rsp, rnp) {
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800773 raw_spin_lock(&rnp->lock); /* irqs already disabled. */
Paul E. McKenneyb32e9eb2009-11-12 22:35:03 -0800774 rnp->completed = rsp->completed;
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800775 raw_spin_unlock(&rnp->lock); /* irqs remain disabled. */
Paul E. McKenneyb32e9eb2009-11-12 22:35:03 -0800776 }
777 local_irq_restore(flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100778 return;
779 }
780
781 /* Advance to a new grace period and initialize state. */
782 rsp->gpnum++;
Paul E. McKenneyc3422be2009-09-13 09:15:10 -0700783 WARN_ON_ONCE(rsp->signaled == RCU_GP_INIT);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100784 rsp->signaled = RCU_GP_INIT; /* Hold off force_quiescent_state. */
785 rsp->jiffies_force_qs = jiffies + RCU_JIFFIES_TILL_FORCE_QS;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100786 record_gp_stall_check_time(rsp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100787
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100788 /* Special-case the common single-level case. */
789 if (NUM_RCU_NODES == 1) {
Paul E. McKenneyb0e165c2009-09-13 09:15:09 -0700790 rcu_preempt_check_blocked_tasks(rnp);
Paul E. McKenney28ecd582009-09-18 09:50:17 -0700791 rnp->qsmask = rnp->qsmaskinit;
Paul E. McKenneyde078d82009-09-08 15:54:36 -0700792 rnp->gpnum = rsp->gpnum;
Paul E. McKenneyd09b62d2009-11-02 13:52:28 -0800793 rnp->completed = rsp->completed;
Paul E. McKenneyc12172c2009-01-04 20:30:06 -0800794 rsp->signaled = RCU_SIGNAL_INIT; /* force_quiescent_state OK. */
Paul E. McKenneyd09b62d2009-11-02 13:52:28 -0800795 rcu_start_gp_per_cpu(rsp, rnp, rdp);
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800796 rcu_preempt_boost_start_gp(rnp);
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800797 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100798 return;
799 }
800
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800801 raw_spin_unlock(&rnp->lock); /* leave irqs disabled. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100802
803
804 /* Exclude any concurrent CPU-hotplug operations. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800805 raw_spin_lock(&rsp->onofflock); /* irqs already disabled. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100806
807 /*
Paul E. McKenneyb835db12009-09-08 15:54:37 -0700808 * Set the quiescent-state-needed bits in all the rcu_node
809 * structures for all currently online CPUs in breadth-first
810 * order, starting from the root rcu_node structure. This
811 * operation relies on the layout of the hierarchy within the
812 * rsp->node[] array. Note that other CPUs will access only
813 * the leaves of the hierarchy, which still indicate that no
814 * grace period is in progress, at least until the corresponding
815 * leaf node has been initialized. In addition, we have excluded
816 * CPU-hotplug operations.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100817 *
818 * Note that the grace period cannot complete until we finish
819 * the initialization process, as there will be at least one
820 * qsmask bit set in the root node until that time, namely the
Paul E. McKenneyb835db12009-09-08 15:54:37 -0700821 * one corresponding to this CPU, due to the fact that we have
822 * irqs disabled.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100823 */
Paul E. McKenneya0b6c9a2009-09-28 07:46:33 -0700824 rcu_for_each_node_breadth_first(rsp, rnp) {
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800825 raw_spin_lock(&rnp->lock); /* irqs already disabled. */
Paul E. McKenneyb0e165c2009-09-13 09:15:09 -0700826 rcu_preempt_check_blocked_tasks(rnp);
Paul E. McKenney49e29122009-09-18 09:50:19 -0700827 rnp->qsmask = rnp->qsmaskinit;
Paul E. McKenneyde078d82009-09-08 15:54:36 -0700828 rnp->gpnum = rsp->gpnum;
Paul E. McKenneyd09b62d2009-11-02 13:52:28 -0800829 rnp->completed = rsp->completed;
830 if (rnp == rdp->mynode)
831 rcu_start_gp_per_cpu(rsp, rnp, rdp);
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800832 rcu_preempt_boost_start_gp(rnp);
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800833 raw_spin_unlock(&rnp->lock); /* irqs remain disabled. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100834 }
835
Paul E. McKenney83f5b012009-10-28 08:14:49 -0700836 rnp = rcu_get_root(rsp);
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800837 raw_spin_lock(&rnp->lock); /* irqs already disabled. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100838 rsp->signaled = RCU_SIGNAL_INIT; /* force_quiescent_state now OK. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800839 raw_spin_unlock(&rnp->lock); /* irqs remain disabled. */
840 raw_spin_unlock_irqrestore(&rsp->onofflock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100841}
842
843/*
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800844 * Report a full set of quiescent states to the specified rcu_state
845 * data structure. This involves cleaning up after the prior grace
846 * period and letting rcu_start_gp() start up the next grace period
847 * if one is needed. Note that the caller must hold rnp->lock, as
848 * required by rcu_start_gp(), which will release it.
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700849 */
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800850static void rcu_report_qs_rsp(struct rcu_state *rsp, unsigned long flags)
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -0700851 __releases(rcu_get_root(rsp)->lock)
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700852{
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -0700853 WARN_ON_ONCE(!rcu_gp_in_progress(rsp));
Paul E. McKenneye59fb312010-09-07 10:38:22 -0700854
855 /*
856 * Ensure that all grace-period and pre-grace-period activity
857 * is seen before the assignment to rsp->completed.
858 */
859 smp_mb(); /* See above block comment. */
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700860 rsp->completed = rsp->gpnum;
Paul E. McKenney83f5b012009-10-28 08:14:49 -0700861 rsp->signaled = RCU_GP_IDLE;
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700862 rcu_start_gp(rsp, flags); /* releases root node's rnp->lock. */
863}
864
865/*
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800866 * Similar to rcu_report_qs_rdp(), for which it is a helper function.
867 * Allows quiescent states for a group of CPUs to be reported at one go
868 * to the specified rcu_node structure, though all the CPUs in the group
869 * must be represented by the same rcu_node structure (which need not be
870 * a leaf rcu_node structure, though it often will be). That structure's
871 * lock must be held upon entry, and it is released before return.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100872 */
873static void
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800874rcu_report_qs_rnp(unsigned long mask, struct rcu_state *rsp,
875 struct rcu_node *rnp, unsigned long flags)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100876 __releases(rnp->lock)
877{
Paul E. McKenney28ecd582009-09-18 09:50:17 -0700878 struct rcu_node *rnp_c;
879
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100880 /* Walk up the rcu_node hierarchy. */
881 for (;;) {
882 if (!(rnp->qsmask & mask)) {
883
884 /* Our bit has already been cleared, so done. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800885 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100886 return;
887 }
888 rnp->qsmask &= ~mask;
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800889 if (rnp->qsmask != 0 || rcu_preempt_blocked_readers_cgp(rnp)) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100890
891 /* Other bits still set at this level, so done. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800892 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100893 return;
894 }
895 mask = rnp->grpmask;
896 if (rnp->parent == NULL) {
897
898 /* No more levels. Exit loop holding root lock. */
899
900 break;
901 }
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800902 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney28ecd582009-09-18 09:50:17 -0700903 rnp_c = rnp;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100904 rnp = rnp->parent;
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800905 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney28ecd582009-09-18 09:50:17 -0700906 WARN_ON_ONCE(rnp_c->qsmask);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100907 }
908
909 /*
910 * Get here if we are the last CPU to pass through a quiescent
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800911 * state for this grace period. Invoke rcu_report_qs_rsp()
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700912 * to clean up and start the next grace period if one is needed.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100913 */
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800914 rcu_report_qs_rsp(rsp, flags); /* releases rnp->lock. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100915}
916
917/*
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800918 * Record a quiescent state for the specified CPU to that CPU's rcu_data
919 * structure. This must be either called from the specified CPU, or
920 * called when the specified CPU is known to be offline (and when it is
921 * also known that no other CPU is concurrently trying to help the offline
922 * CPU). The lastcomp argument is used to make sure we are still in the
923 * grace period of interest. We don't want to end the current grace period
924 * based on quiescent states detected in an earlier grace period!
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100925 */
926static void
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800927rcu_report_qs_rdp(int cpu, struct rcu_state *rsp, struct rcu_data *rdp, long lastcomp)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100928{
929 unsigned long flags;
930 unsigned long mask;
931 struct rcu_node *rnp;
932
933 rnp = rdp->mynode;
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800934 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney560d4bc2009-11-13 19:51:38 -0800935 if (lastcomp != rnp->completed) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100936
937 /*
938 * Someone beat us to it for this grace period, so leave.
939 * The race with GP start is resolved by the fact that we
940 * hold the leaf rcu_node lock, so that the per-CPU bits
941 * cannot yet be initialized -- so we would simply find our
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800942 * CPU's bit already cleared in rcu_report_qs_rnp() if this
943 * race occurred.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100944 */
945 rdp->passed_quiesc = 0; /* try again later! */
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800946 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100947 return;
948 }
949 mask = rdp->grpmask;
950 if ((rnp->qsmask & mask) == 0) {
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800951 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100952 } else {
953 rdp->qs_pending = 0;
954
955 /*
956 * This GP can't end until cpu checks in, so all of our
957 * callbacks can be processed during the next GP.
958 */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100959 rdp->nxttail[RCU_NEXT_READY_TAIL] = rdp->nxttail[RCU_NEXT_TAIL];
960
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800961 rcu_report_qs_rnp(mask, rsp, rnp, flags); /* rlses rnp->lock */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100962 }
963}
964
965/*
966 * Check to see if there is a new grace period of which this CPU
967 * is not yet aware, and if so, set up local rcu_data state for it.
968 * Otherwise, see if this CPU has just passed through its first
969 * quiescent state for this grace period, and record that fact if so.
970 */
971static void
972rcu_check_quiescent_state(struct rcu_state *rsp, struct rcu_data *rdp)
973{
974 /* If there is now a new grace period, record and return. */
975 if (check_for_new_grace_period(rsp, rdp))
976 return;
977
978 /*
979 * Does this CPU still need to do its part for current grace period?
980 * If no, return and let the other CPUs do their part as well.
981 */
982 if (!rdp->qs_pending)
983 return;
984
985 /*
986 * Was there a quiescent state since the beginning of the grace
987 * period? If no, then exit and wait for the next call.
988 */
989 if (!rdp->passed_quiesc)
990 return;
991
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800992 /*
993 * Tell RCU we are done (but rcu_report_qs_rdp() will be the
994 * judge of that).
995 */
996 rcu_report_qs_rdp(rdp->cpu, rsp, rdp, rdp->passed_quiesc_completed);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100997}
998
999#ifdef CONFIG_HOTPLUG_CPU
1000
1001/*
Lai Jiangshan29494be2010-10-20 14:13:06 +08001002 * Move a dying CPU's RCU callbacks to online CPU's callback list.
1003 * Synchronization is not required because this function executes
1004 * in stop_machine() context.
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07001005 */
Lai Jiangshan29494be2010-10-20 14:13:06 +08001006static void rcu_send_cbs_to_online(struct rcu_state *rsp)
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07001007{
1008 int i;
Lai Jiangshan29494be2010-10-20 14:13:06 +08001009 /* current DYING CPU is cleared in the cpu_online_mask */
1010 int receive_cpu = cpumask_any(cpu_online_mask);
Lai Jiangshan394f99a2010-06-28 16:25:04 +08001011 struct rcu_data *rdp = this_cpu_ptr(rsp->rda);
Lai Jiangshan29494be2010-10-20 14:13:06 +08001012 struct rcu_data *receive_rdp = per_cpu_ptr(rsp->rda, receive_cpu);
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07001013
1014 if (rdp->nxtlist == NULL)
1015 return; /* irqs disabled, so comparison is stable. */
Lai Jiangshan29494be2010-10-20 14:13:06 +08001016
1017 *receive_rdp->nxttail[RCU_NEXT_TAIL] = rdp->nxtlist;
1018 receive_rdp->nxttail[RCU_NEXT_TAIL] = rdp->nxttail[RCU_NEXT_TAIL];
1019 receive_rdp->qlen += rdp->qlen;
1020 receive_rdp->n_cbs_adopted += rdp->qlen;
1021 rdp->n_cbs_orphaned += rdp->qlen;
1022
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07001023 rdp->nxtlist = NULL;
1024 for (i = 0; i < RCU_NEXT_SIZE; i++)
1025 rdp->nxttail[i] = &rdp->nxtlist;
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07001026 rdp->qlen = 0;
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07001027}
1028
1029/*
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001030 * Remove the outgoing CPU from the bitmasks in the rcu_node hierarchy
1031 * and move all callbacks from the outgoing CPU to the current one.
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001032 * There can only be one CPU hotplug operation at a time, so no other
1033 * CPU can be attempting to update rcu_cpu_kthread_task.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001034 */
1035static void __rcu_offline_cpu(int cpu, struct rcu_state *rsp)
1036{
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001037 unsigned long flags;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001038 unsigned long mask;
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -08001039 int need_report = 0;
Lai Jiangshan394f99a2010-06-28 16:25:04 +08001040 struct rcu_data *rdp = per_cpu_ptr(rsp->rda, cpu);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001041 struct rcu_node *rnp;
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001042 struct task_struct *t;
1043
1044 /* Stop the CPU's kthread. */
1045 t = per_cpu(rcu_cpu_kthread_task, cpu);
1046 if (t != NULL) {
1047 per_cpu(rcu_cpu_kthread_task, cpu) = NULL;
1048 kthread_stop(t);
1049 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001050
1051 /* Exclude any attempts to start a new grace period. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001052 raw_spin_lock_irqsave(&rsp->onofflock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001053
1054 /* Remove the outgoing CPU from the masks in the rcu_node hierarchy. */
Paul E. McKenney28ecd582009-09-18 09:50:17 -07001055 rnp = rdp->mynode; /* this is the outgoing CPU's rnp. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001056 mask = rdp->grpmask; /* rnp->grplo is constant. */
1057 do {
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001058 raw_spin_lock(&rnp->lock); /* irqs already disabled. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001059 rnp->qsmaskinit &= ~mask;
1060 if (rnp->qsmaskinit != 0) {
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -08001061 if (rnp != rdp->mynode)
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001062 raw_spin_unlock(&rnp->lock); /* irqs remain disabled. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001063 break;
1064 }
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -08001065 if (rnp == rdp->mynode)
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -08001066 need_report = rcu_preempt_offline_tasks(rsp, rnp, rdp);
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -08001067 else
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001068 raw_spin_unlock(&rnp->lock); /* irqs remain disabled. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001069 mask = rnp->grpmask;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001070 rnp = rnp->parent;
1071 } while (rnp != NULL);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001072
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -08001073 /*
1074 * We still hold the leaf rcu_node structure lock here, and
1075 * irqs are still disabled. The reason for this subterfuge is
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -08001076 * because invoking rcu_report_unblock_qs_rnp() with ->onofflock
1077 * held leads to deadlock.
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -08001078 */
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001079 raw_spin_unlock(&rsp->onofflock); /* irqs remain disabled. */
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -08001080 rnp = rdp->mynode;
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -08001081 if (need_report & RCU_OFL_TASKS_NORM_GP)
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -08001082 rcu_report_unblock_qs_rnp(rnp, flags);
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -08001083 else
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001084 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -08001085 if (need_report & RCU_OFL_TASKS_EXP_GP)
1086 rcu_report_exp_rnp(rsp, rnp);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001087
1088 /*
1089 * If there are no more online CPUs for this rcu_node structure,
1090 * kill the rcu_node structure's kthread. Otherwise, adjust its
1091 * affinity.
1092 */
1093 t = rnp->node_kthread_task;
1094 if (t != NULL &&
1095 rnp->qsmaskinit == 0) {
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001096 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001097 rnp->node_kthread_task = NULL;
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001098 raw_spin_unlock_irqrestore(&rnp->lock, flags);
1099 kthread_stop(t);
1100 rcu_stop_boost_kthread(rnp);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001101 } else
Paul E. McKenney0f962a52011-04-14 12:13:53 -07001102 rcu_node_kthread_setaffinity(rnp, -1);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001103}
1104
1105/*
1106 * Remove the specified CPU from the RCU hierarchy and move any pending
1107 * callbacks that it might have to the current CPU. This code assumes
1108 * that at least one CPU in the system will remain running at all times.
1109 * Any attempt to offline -all- CPUs is likely to strand RCU callbacks.
1110 */
1111static void rcu_offline_cpu(int cpu)
1112{
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001113 __rcu_offline_cpu(cpu, &rcu_sched_state);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001114 __rcu_offline_cpu(cpu, &rcu_bh_state);
Paul E. McKenney33f76142009-08-24 09:42:01 -07001115 rcu_preempt_offline_cpu(cpu);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001116}
1117
1118#else /* #ifdef CONFIG_HOTPLUG_CPU */
1119
Lai Jiangshan29494be2010-10-20 14:13:06 +08001120static void rcu_send_cbs_to_online(struct rcu_state *rsp)
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07001121{
1122}
1123
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001124static void rcu_offline_cpu(int cpu)
1125{
1126}
1127
1128#endif /* #else #ifdef CONFIG_HOTPLUG_CPU */
1129
1130/*
1131 * Invoke any RCU callbacks that have made it to the end of their grace
1132 * period. Thottle as specified by rdp->blimit.
1133 */
Paul E. McKenney37c72e52009-10-14 10:15:55 -07001134static void rcu_do_batch(struct rcu_state *rsp, struct rcu_data *rdp)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001135{
1136 unsigned long flags;
1137 struct rcu_head *next, *list, **tail;
1138 int count;
1139
1140 /* If no callbacks are ready, just return.*/
1141 if (!cpu_has_callbacks_ready_to_invoke(rdp))
1142 return;
1143
1144 /*
1145 * Extract the list of ready callbacks, disabling to prevent
1146 * races with call_rcu() from interrupt handlers.
1147 */
1148 local_irq_save(flags);
1149 list = rdp->nxtlist;
1150 rdp->nxtlist = *rdp->nxttail[RCU_DONE_TAIL];
1151 *rdp->nxttail[RCU_DONE_TAIL] = NULL;
1152 tail = rdp->nxttail[RCU_DONE_TAIL];
1153 for (count = RCU_NEXT_SIZE - 1; count >= 0; count--)
1154 if (rdp->nxttail[count] == rdp->nxttail[RCU_DONE_TAIL])
1155 rdp->nxttail[count] = &rdp->nxtlist;
1156 local_irq_restore(flags);
1157
1158 /* Invoke callbacks. */
1159 count = 0;
1160 while (list) {
1161 next = list->next;
1162 prefetch(next);
Mathieu Desnoyers551d55a2010-04-17 08:48:42 -04001163 debug_rcu_head_unqueue(list);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001164 list->func(list);
1165 list = next;
1166 if (++count >= rdp->blimit)
1167 break;
1168 }
1169
1170 local_irq_save(flags);
1171
1172 /* Update count, and requeue any remaining callbacks. */
1173 rdp->qlen -= count;
Paul E. McKenney269dcc12010-09-07 14:23:09 -07001174 rdp->n_cbs_invoked += count;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001175 if (list != NULL) {
1176 *tail = rdp->nxtlist;
1177 rdp->nxtlist = list;
1178 for (count = 0; count < RCU_NEXT_SIZE; count++)
1179 if (&rdp->nxtlist == rdp->nxttail[count])
1180 rdp->nxttail[count] = tail;
1181 else
1182 break;
1183 }
1184
1185 /* Reinstate batch limit if we have worked down the excess. */
1186 if (rdp->blimit == LONG_MAX && rdp->qlen <= qlowmark)
1187 rdp->blimit = blimit;
1188
Paul E. McKenney37c72e52009-10-14 10:15:55 -07001189 /* Reset ->qlen_last_fqs_check trigger if enough CBs have drained. */
1190 if (rdp->qlen == 0 && rdp->qlen_last_fqs_check != 0) {
1191 rdp->qlen_last_fqs_check = 0;
1192 rdp->n_force_qs_snap = rsp->n_force_qs;
1193 } else if (rdp->qlen < rdp->qlen_last_fqs_check - qhimark)
1194 rdp->qlen_last_fqs_check = rdp->qlen;
1195
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001196 local_irq_restore(flags);
1197
1198 /* Re-raise the RCU softirq if there are callbacks remaining. */
1199 if (cpu_has_callbacks_ready_to_invoke(rdp))
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001200 invoke_rcu_cpu_kthread();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001201}
1202
1203/*
1204 * Check to see if this CPU is in a non-context-switch quiescent state
1205 * (user mode or idle loop for rcu, non-softirq execution for rcu_bh).
1206 * Also schedule the RCU softirq handler.
1207 *
1208 * This function must be called with hardirqs disabled. It is normally
1209 * invoked from the scheduling-clock interrupt. If rcu_pending returns
1210 * false, there is no point in invoking rcu_check_callbacks().
1211 */
1212void rcu_check_callbacks(int cpu, int user)
1213{
1214 if (user ||
Paul E. McKenneya6826042009-02-25 18:03:42 -08001215 (idle_cpu(cpu) && rcu_scheduler_active &&
1216 !in_softirq() && hardirq_count() <= (1 << HARDIRQ_SHIFT))) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001217
1218 /*
1219 * Get here if this CPU took its interrupt from user
1220 * mode or from the idle loop, and if this is not a
1221 * nested interrupt. In this case, the CPU is in
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001222 * a quiescent state, so note it.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001223 *
1224 * No memory barrier is required here because both
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001225 * rcu_sched_qs() and rcu_bh_qs() reference only CPU-local
1226 * variables that other CPUs neither access nor modify,
1227 * at least not while the corresponding CPU is online.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001228 */
1229
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001230 rcu_sched_qs(cpu);
1231 rcu_bh_qs(cpu);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001232
1233 } else if (!in_softirq()) {
1234
1235 /*
1236 * Get here if this CPU did not take its interrupt from
1237 * softirq, in other words, if it is not interrupting
1238 * a rcu_bh read-side critical section. This is an _bh
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001239 * critical section, so note it.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001240 */
1241
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001242 rcu_bh_qs(cpu);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001243 }
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001244 rcu_preempt_check_callbacks(cpu);
Paul E. McKenneyd21670a2010-04-14 17:39:26 -07001245 if (rcu_pending(cpu))
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001246 invoke_rcu_cpu_kthread();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001247}
1248
1249#ifdef CONFIG_SMP
1250
1251/*
1252 * Scan the leaf rcu_node structures, processing dyntick state for any that
1253 * have not yet encountered a quiescent state, using the function specified.
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001254 * Also initiate boosting for any threads blocked on the root rcu_node.
1255 *
Paul E. McKenneyee47eb92010-01-04 15:09:07 -08001256 * The caller must have suppressed start of new grace periods.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001257 */
Paul E. McKenney45f014c2010-01-04 15:09:08 -08001258static void force_qs_rnp(struct rcu_state *rsp, int (*f)(struct rcu_data *))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001259{
1260 unsigned long bit;
1261 int cpu;
1262 unsigned long flags;
1263 unsigned long mask;
Paul E. McKenneya0b6c9a2009-09-28 07:46:33 -07001264 struct rcu_node *rnp;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001265
Paul E. McKenneya0b6c9a2009-09-28 07:46:33 -07001266 rcu_for_each_leaf_node(rsp, rnp) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001267 mask = 0;
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001268 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenneyee47eb92010-01-04 15:09:07 -08001269 if (!rcu_gp_in_progress(rsp)) {
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001270 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney0f10dc822010-01-04 15:09:06 -08001271 return;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001272 }
Paul E. McKenneya0b6c9a2009-09-28 07:46:33 -07001273 if (rnp->qsmask == 0) {
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001274 rcu_initiate_boost(rnp);
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001275 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001276 continue;
1277 }
Paul E. McKenneya0b6c9a2009-09-28 07:46:33 -07001278 cpu = rnp->grplo;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001279 bit = 1;
Paul E. McKenneya0b6c9a2009-09-28 07:46:33 -07001280 for (; cpu <= rnp->grphi; cpu++, bit <<= 1) {
Lai Jiangshan394f99a2010-06-28 16:25:04 +08001281 if ((rnp->qsmask & bit) != 0 &&
1282 f(per_cpu_ptr(rsp->rda, cpu)))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001283 mask |= bit;
1284 }
Paul E. McKenney45f014c2010-01-04 15:09:08 -08001285 if (mask != 0) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001286
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -08001287 /* rcu_report_qs_rnp() releases rnp->lock. */
1288 rcu_report_qs_rnp(mask, rsp, rnp, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001289 continue;
1290 }
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001291 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001292 }
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001293 rnp = rcu_get_root(rsp);
1294 raw_spin_lock_irqsave(&rnp->lock, flags);
1295 if (rnp->qsmask == 0)
1296 rcu_initiate_boost(rnp);
1297 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001298}
1299
1300/*
1301 * Force quiescent states on reluctant CPUs, and also detect which
1302 * CPUs are in dyntick-idle mode.
1303 */
1304static void force_quiescent_state(struct rcu_state *rsp, int relaxed)
1305{
1306 unsigned long flags;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001307 struct rcu_node *rnp = rcu_get_root(rsp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001308
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -07001309 if (!rcu_gp_in_progress(rsp))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001310 return; /* No grace period in progress, nothing to force. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001311 if (!raw_spin_trylock_irqsave(&rsp->fqslock, flags)) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001312 rsp->n_force_qs_lh++; /* Inexact, can lose counts. Tough! */
1313 return; /* Someone else is already on the job. */
1314 }
Paul E. McKenney20133cf2010-02-22 17:05:01 -08001315 if (relaxed && ULONG_CMP_GE(rsp->jiffies_force_qs, jiffies))
Paul E. McKenneyf96e9232010-01-04 15:09:00 -08001316 goto unlock_fqs_ret; /* no emergency and done recently. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001317 rsp->n_force_qs++;
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001318 raw_spin_lock(&rnp->lock); /* irqs already disabled */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001319 rsp->jiffies_force_qs = jiffies + RCU_JIFFIES_TILL_FORCE_QS;
Paul E. McKenney560d4bc2009-11-13 19:51:38 -08001320 if(!rcu_gp_in_progress(rsp)) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001321 rsp->n_force_qs_ngp++;
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001322 raw_spin_unlock(&rnp->lock); /* irqs remain disabled */
Paul E. McKenneyf96e9232010-01-04 15:09:00 -08001323 goto unlock_fqs_ret; /* no GP in progress, time updated. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001324 }
Paul E. McKenney07079d52010-01-04 15:09:02 -08001325 rsp->fqs_active = 1;
Paul E. McKenneyf3a8b5c2010-01-04 15:09:03 -08001326 switch (rsp->signaled) {
Paul E. McKenney83f5b012009-10-28 08:14:49 -07001327 case RCU_GP_IDLE:
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001328 case RCU_GP_INIT:
1329
Paul E. McKenney83f5b012009-10-28 08:14:49 -07001330 break; /* grace period idle or initializing, ignore. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001331
1332 case RCU_SAVE_DYNTICK:
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001333 if (RCU_SIGNAL_INIT != RCU_SAVE_DYNTICK)
1334 break; /* So gcc recognizes the dead code. */
1335
Lai Jiangshanf2614142010-03-28 11:15:20 +08001336 raw_spin_unlock(&rnp->lock); /* irqs remain disabled */
1337
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001338 /* Record dyntick-idle state. */
Paul E. McKenney45f014c2010-01-04 15:09:08 -08001339 force_qs_rnp(rsp, dyntick_save_progress_counter);
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001340 raw_spin_lock(&rnp->lock); /* irqs already disabled */
Paul E. McKenneyee47eb92010-01-04 15:09:07 -08001341 if (rcu_gp_in_progress(rsp))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001342 rsp->signaled = RCU_FORCE_QS;
Paul E. McKenneyee47eb92010-01-04 15:09:07 -08001343 break;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001344
1345 case RCU_FORCE_QS:
1346
1347 /* Check dyntick-idle state, send IPI to laggarts. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001348 raw_spin_unlock(&rnp->lock); /* irqs remain disabled */
Paul E. McKenney45f014c2010-01-04 15:09:08 -08001349 force_qs_rnp(rsp, rcu_implicit_dynticks_qs);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001350
1351 /* Leave state in case more forcing is required. */
1352
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001353 raw_spin_lock(&rnp->lock); /* irqs already disabled */
Paul E. McKenneyf96e9232010-01-04 15:09:00 -08001354 break;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001355 }
Paul E. McKenney07079d52010-01-04 15:09:02 -08001356 rsp->fqs_active = 0;
Paul E. McKenney46a1e342010-01-04 15:09:09 -08001357 if (rsp->fqs_need_gp) {
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001358 raw_spin_unlock(&rsp->fqslock); /* irqs remain disabled */
Paul E. McKenney46a1e342010-01-04 15:09:09 -08001359 rsp->fqs_need_gp = 0;
1360 rcu_start_gp(rsp, flags); /* releases rnp->lock */
1361 return;
1362 }
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001363 raw_spin_unlock(&rnp->lock); /* irqs remain disabled */
Paul E. McKenneyf96e9232010-01-04 15:09:00 -08001364unlock_fqs_ret:
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001365 raw_spin_unlock_irqrestore(&rsp->fqslock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001366}
1367
1368#else /* #ifdef CONFIG_SMP */
1369
1370static void force_quiescent_state(struct rcu_state *rsp, int relaxed)
1371{
1372 set_need_resched();
1373}
1374
1375#endif /* #else #ifdef CONFIG_SMP */
1376
1377/*
1378 * This does the RCU processing work from softirq context for the
1379 * specified rcu_state and rcu_data structures. This may be called
1380 * only from the CPU to whom the rdp belongs.
1381 */
1382static void
1383__rcu_process_callbacks(struct rcu_state *rsp, struct rcu_data *rdp)
1384{
1385 unsigned long flags;
1386
Paul E. McKenney2e597552009-08-15 09:53:48 -07001387 WARN_ON_ONCE(rdp->beenonline == 0);
1388
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001389 /*
1390 * If an RCU GP has gone long enough, go check for dyntick
1391 * idle CPUs and, if needed, send resched IPIs.
1392 */
Paul E. McKenney20133cf2010-02-22 17:05:01 -08001393 if (ULONG_CMP_LT(ACCESS_ONCE(rsp->jiffies_force_qs), jiffies))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001394 force_quiescent_state(rsp, 1);
1395
1396 /*
1397 * Advance callbacks in response to end of earlier grace
1398 * period that some other CPU ended.
1399 */
1400 rcu_process_gp_end(rsp, rdp);
1401
1402 /* Update RCU state based on any recent quiescent states. */
1403 rcu_check_quiescent_state(rsp, rdp);
1404
1405 /* Does this CPU require a not-yet-started grace period? */
1406 if (cpu_needs_another_gp(rsp, rdp)) {
Paul E. McKenney1304afb2010-02-22 17:05:02 -08001407 raw_spin_lock_irqsave(&rcu_get_root(rsp)->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001408 rcu_start_gp(rsp, flags); /* releases above lock */
1409 }
1410
1411 /* If there are callbacks ready, invoke them. */
Paul E. McKenney37c72e52009-10-14 10:15:55 -07001412 rcu_do_batch(rsp, rdp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001413}
1414
1415/*
1416 * Do softirq processing for the current CPU.
1417 */
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001418static void rcu_process_callbacks(void)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001419{
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001420 __rcu_process_callbacks(&rcu_sched_state,
1421 &__get_cpu_var(rcu_sched_data));
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001422 __rcu_process_callbacks(&rcu_bh_state, &__get_cpu_var(rcu_bh_data));
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001423 rcu_preempt_process_callbacks();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001424
Paul E. McKenneya47cd882010-02-26 16:38:56 -08001425 /* If we are last CPU on way to dyntick-idle mode, accelerate it. */
1426 rcu_needs_cpu_flush();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001427}
1428
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001429/*
1430 * Wake up the current CPU's kthread. This replaces raise_softirq()
1431 * in earlier versions of RCU. Note that because we are running on
1432 * the current CPU with interrupts disabled, the rcu_cpu_kthread_task
1433 * cannot disappear out from under us.
1434 */
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001435static void invoke_rcu_cpu_kthread(void)
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001436{
1437 unsigned long flags;
1438 wait_queue_head_t *q;
1439 int cpu;
1440
1441 local_irq_save(flags);
1442 cpu = smp_processor_id();
1443 per_cpu(rcu_cpu_has_work, cpu) = 1;
1444 if (per_cpu(rcu_cpu_kthread_task, cpu) == NULL) {
1445 local_irq_restore(flags);
1446 return;
1447 }
1448 q = &per_cpu(rcu_cpu_wq, cpu);
1449 wake_up(q);
1450 local_irq_restore(flags);
1451}
1452
1453/*
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001454 * Wake up the specified per-rcu_node-structure kthread.
1455 * The caller must hold ->lock.
1456 */
1457static void invoke_rcu_node_kthread(struct rcu_node *rnp)
1458{
1459 struct task_struct *t;
1460
1461 t = rnp->node_kthread_task;
1462 if (t != NULL)
1463 wake_up_process(t);
1464}
1465
1466/*
Paul E. McKenneye3995a22011-04-18 15:31:26 -07001467 * Set the specified CPU's kthread to run RT or not, as specified by
1468 * the to_rt argument. The CPU-hotplug locks are held, so the task
1469 * is not going away.
1470 */
1471static void rcu_cpu_kthread_setrt(int cpu, int to_rt)
1472{
1473 int policy;
1474 struct sched_param sp;
1475 struct task_struct *t;
1476
1477 t = per_cpu(rcu_cpu_kthread_task, cpu);
1478 if (t == NULL)
1479 return;
1480 if (to_rt) {
1481 policy = SCHED_FIFO;
1482 sp.sched_priority = RCU_KTHREAD_PRIO;
1483 } else {
1484 policy = SCHED_NORMAL;
1485 sp.sched_priority = 0;
1486 }
1487 sched_setscheduler_nocheck(t, policy, &sp);
1488}
1489
1490/*
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001491 * Timer handler to initiate the waking up of per-CPU kthreads that
1492 * have yielded the CPU due to excess numbers of RCU callbacks.
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001493 * We wake up the per-rcu_node kthread, which in turn will wake up
1494 * the booster kthread.
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001495 */
1496static void rcu_cpu_kthread_timer(unsigned long arg)
1497{
1498 unsigned long flags;
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001499 struct rcu_data *rdp = per_cpu_ptr(rcu_state->rda, arg);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001500 struct rcu_node *rnp = rdp->mynode;
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001501
1502 raw_spin_lock_irqsave(&rnp->lock, flags);
1503 rnp->wakemask |= rdp->grpmask;
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001504 invoke_rcu_node_kthread(rnp);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001505 raw_spin_unlock_irqrestore(&rnp->lock, flags);
1506}
1507
1508/*
1509 * Drop to non-real-time priority and yield, but only after posting a
1510 * timer that will cause us to regain our real-time priority if we
1511 * remain preempted. Either way, we restore our real-time priority
1512 * before returning.
1513 */
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001514static void rcu_yield(void (*f)(unsigned long), unsigned long arg)
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001515{
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001516 struct sched_param sp;
1517 struct timer_list yield_timer;
1518
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001519 setup_timer_on_stack(&yield_timer, f, arg);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001520 mod_timer(&yield_timer, jiffies + 2);
1521 sp.sched_priority = 0;
1522 sched_setscheduler_nocheck(current, SCHED_NORMAL, &sp);
1523 schedule();
1524 sp.sched_priority = RCU_KTHREAD_PRIO;
1525 sched_setscheduler_nocheck(current, SCHED_FIFO, &sp);
1526 del_timer(&yield_timer);
1527}
1528
1529/*
1530 * Handle cases where the rcu_cpu_kthread() ends up on the wrong CPU.
1531 * This can happen while the corresponding CPU is either coming online
1532 * or going offline. We cannot wait until the CPU is fully online
1533 * before starting the kthread, because the various notifier functions
1534 * can wait for RCU grace periods. So we park rcu_cpu_kthread() until
1535 * the corresponding CPU is online.
1536 *
1537 * Return 1 if the kthread needs to stop, 0 otherwise.
1538 *
1539 * Caller must disable bh. This function can momentarily enable it.
1540 */
1541static int rcu_cpu_kthread_should_stop(int cpu)
1542{
1543 while (cpu_is_offline(cpu) ||
1544 !cpumask_equal(&current->cpus_allowed, cpumask_of(cpu)) ||
1545 smp_processor_id() != cpu) {
1546 if (kthread_should_stop())
1547 return 1;
1548 local_bh_enable();
1549 schedule_timeout_uninterruptible(1);
1550 if (!cpumask_equal(&current->cpus_allowed, cpumask_of(cpu)))
1551 set_cpus_allowed_ptr(current, cpumask_of(cpu));
1552 local_bh_disable();
1553 }
1554 return 0;
1555}
1556
1557/*
1558 * Per-CPU kernel thread that invokes RCU callbacks. This replaces the
1559 * earlier RCU softirq.
1560 */
1561static int rcu_cpu_kthread(void *arg)
1562{
1563 int cpu = (int)(long)arg;
1564 unsigned long flags;
1565 int spincnt = 0;
1566 wait_queue_head_t *wqp = &per_cpu(rcu_cpu_wq, cpu);
1567 char work;
1568 char *workp = &per_cpu(rcu_cpu_has_work, cpu);
1569
1570 for (;;) {
1571 wait_event_interruptible(*wqp,
1572 *workp != 0 || kthread_should_stop());
1573 local_bh_disable();
1574 if (rcu_cpu_kthread_should_stop(cpu)) {
1575 local_bh_enable();
1576 break;
1577 }
1578 local_irq_save(flags);
1579 work = *workp;
1580 *workp = 0;
1581 local_irq_restore(flags);
1582 if (work)
1583 rcu_process_callbacks();
1584 local_bh_enable();
1585 if (*workp != 0)
1586 spincnt++;
1587 else
1588 spincnt = 0;
1589 if (spincnt > 10) {
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001590 rcu_yield(rcu_cpu_kthread_timer, (unsigned long)cpu);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001591 spincnt = 0;
1592 }
1593 }
1594 return 0;
1595}
1596
1597/*
1598 * Spawn a per-CPU kthread, setting up affinity and priority.
1599 * Because the CPU hotplug lock is held, no other CPU will be attempting
1600 * to manipulate rcu_cpu_kthread_task. There might be another CPU
1601 * attempting to access it during boot, but the locking in kthread_bind()
1602 * will enforce sufficient ordering.
1603 */
1604static int __cpuinit rcu_spawn_one_cpu_kthread(int cpu)
1605{
1606 struct sched_param sp;
1607 struct task_struct *t;
1608
1609 if (!rcu_kthreads_spawnable ||
1610 per_cpu(rcu_cpu_kthread_task, cpu) != NULL)
1611 return 0;
1612 t = kthread_create(rcu_cpu_kthread, (void *)(long)cpu, "rcuc%d", cpu);
1613 if (IS_ERR(t))
1614 return PTR_ERR(t);
1615 kthread_bind(t, cpu);
1616 WARN_ON_ONCE(per_cpu(rcu_cpu_kthread_task, cpu) != NULL);
1617 per_cpu(rcu_cpu_kthread_task, cpu) = t;
1618 wake_up_process(t);
1619 sp.sched_priority = RCU_KTHREAD_PRIO;
1620 sched_setscheduler_nocheck(t, SCHED_FIFO, &sp);
1621 return 0;
1622}
1623
1624/*
1625 * Per-rcu_node kthread, which is in charge of waking up the per-CPU
1626 * kthreads when needed. We ignore requests to wake up kthreads
1627 * for offline CPUs, which is OK because force_quiescent_state()
1628 * takes care of this case.
1629 */
1630static int rcu_node_kthread(void *arg)
1631{
1632 int cpu;
1633 unsigned long flags;
1634 unsigned long mask;
1635 struct rcu_node *rnp = (struct rcu_node *)arg;
1636 struct sched_param sp;
1637 struct task_struct *t;
1638
1639 for (;;) {
1640 wait_event_interruptible(rnp->node_wq, rnp->wakemask != 0 ||
1641 kthread_should_stop());
1642 if (kthread_should_stop())
1643 break;
1644 raw_spin_lock_irqsave(&rnp->lock, flags);
1645 mask = rnp->wakemask;
1646 rnp->wakemask = 0;
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001647 rcu_initiate_boost(rnp);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001648 raw_spin_unlock_irqrestore(&rnp->lock, flags);
1649 for (cpu = rnp->grplo; cpu <= rnp->grphi; cpu++, mask >>= 1) {
1650 if ((mask & 0x1) == 0)
1651 continue;
1652 preempt_disable();
1653 t = per_cpu(rcu_cpu_kthread_task, cpu);
1654 if (!cpu_online(cpu) || t == NULL) {
1655 preempt_enable();
1656 continue;
1657 }
1658 per_cpu(rcu_cpu_has_work, cpu) = 1;
1659 sp.sched_priority = RCU_KTHREAD_PRIO;
1660 sched_setscheduler_nocheck(t, SCHED_FIFO, &sp);
1661 preempt_enable();
1662 }
1663 }
1664 return 0;
1665}
1666
1667/*
1668 * Set the per-rcu_node kthread's affinity to cover all CPUs that are
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001669 * served by the rcu_node in question. The CPU hotplug lock is still
1670 * held, so the value of rnp->qsmaskinit will be stable.
Paul E. McKenney0f962a52011-04-14 12:13:53 -07001671 *
1672 * We don't include outgoingcpu in the affinity set, use -1 if there is
1673 * no outgoing CPU. If there are no CPUs left in the affinity set,
1674 * this function allows the kthread to execute on any CPU.
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001675 */
Paul E. McKenney0f962a52011-04-14 12:13:53 -07001676static void rcu_node_kthread_setaffinity(struct rcu_node *rnp, int outgoingcpu)
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001677{
1678 cpumask_var_t cm;
1679 int cpu;
1680 unsigned long mask = rnp->qsmaskinit;
1681
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001682 if (rnp->node_kthread_task == NULL || mask == 0)
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001683 return;
1684 if (!alloc_cpumask_var(&cm, GFP_KERNEL))
1685 return;
1686 cpumask_clear(cm);
1687 for (cpu = rnp->grplo; cpu <= rnp->grphi; cpu++, mask >>= 1)
Paul E. McKenney0f962a52011-04-14 12:13:53 -07001688 if ((mask & 0x1) && cpu != outgoingcpu)
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001689 cpumask_set_cpu(cpu, cm);
Paul E. McKenney0f962a52011-04-14 12:13:53 -07001690 if (cpumask_weight(cm) == 0) {
1691 cpumask_setall(cm);
1692 for (cpu = rnp->grplo; cpu <= rnp->grphi; cpu++)
1693 cpumask_clear_cpu(cpu, cm);
1694 WARN_ON_ONCE(cpumask_weight(cm) == 0);
1695 }
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001696 set_cpus_allowed_ptr(rnp->node_kthread_task, cm);
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001697 rcu_boost_kthread_setaffinity(rnp, cm);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001698 free_cpumask_var(cm);
1699}
1700
1701/*
1702 * Spawn a per-rcu_node kthread, setting priority and affinity.
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001703 * Called during boot before online/offline can happen, or, if
1704 * during runtime, with the main CPU-hotplug locks held. So only
1705 * one of these can be executing at a time.
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001706 */
1707static int __cpuinit rcu_spawn_one_node_kthread(struct rcu_state *rsp,
1708 struct rcu_node *rnp)
1709{
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001710 unsigned long flags;
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001711 int rnp_index = rnp - &rsp->node[0];
1712 struct sched_param sp;
1713 struct task_struct *t;
1714
1715 if (!rcu_kthreads_spawnable ||
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001716 rnp->qsmaskinit == 0)
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001717 return 0;
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001718 if (rnp->node_kthread_task == NULL) {
1719 t = kthread_create(rcu_node_kthread, (void *)rnp,
1720 "rcun%d", rnp_index);
1721 if (IS_ERR(t))
1722 return PTR_ERR(t);
1723 raw_spin_lock_irqsave(&rnp->lock, flags);
1724 rnp->node_kthread_task = t;
1725 raw_spin_unlock_irqrestore(&rnp->lock, flags);
1726 wake_up_process(t);
1727 sp.sched_priority = 99;
1728 sched_setscheduler_nocheck(t, SCHED_FIFO, &sp);
1729 }
1730 return rcu_spawn_one_boost_kthread(rsp, rnp, rnp_index);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001731}
1732
1733/*
1734 * Spawn all kthreads -- called as soon as the scheduler is running.
1735 */
1736static int __init rcu_spawn_kthreads(void)
1737{
1738 int cpu;
1739 struct rcu_node *rnp;
1740
1741 rcu_kthreads_spawnable = 1;
1742 for_each_possible_cpu(cpu) {
1743 init_waitqueue_head(&per_cpu(rcu_cpu_wq, cpu));
1744 per_cpu(rcu_cpu_has_work, cpu) = 0;
1745 if (cpu_online(cpu))
1746 (void)rcu_spawn_one_cpu_kthread(cpu);
1747 }
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001748 rnp = rcu_get_root(rcu_state);
1749 init_waitqueue_head(&rnp->node_wq);
1750 rcu_init_boost_waitqueue(rnp);
1751 (void)rcu_spawn_one_node_kthread(rcu_state, rnp);
1752 if (NUM_RCU_NODES > 1)
1753 rcu_for_each_leaf_node(rcu_state, rnp) {
1754 init_waitqueue_head(&rnp->node_wq);
1755 rcu_init_boost_waitqueue(rnp);
1756 (void)rcu_spawn_one_node_kthread(rcu_state, rnp);
1757 }
Paul E. McKenneya26ac242011-01-12 14:10:23 -08001758 return 0;
1759}
1760early_initcall(rcu_spawn_kthreads);
1761
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001762static void
1763__call_rcu(struct rcu_head *head, void (*func)(struct rcu_head *rcu),
1764 struct rcu_state *rsp)
1765{
1766 unsigned long flags;
1767 struct rcu_data *rdp;
1768
Mathieu Desnoyers551d55a2010-04-17 08:48:42 -04001769 debug_rcu_head_queue(head);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001770 head->func = func;
1771 head->next = NULL;
1772
1773 smp_mb(); /* Ensure RCU update seen before callback registry. */
1774
1775 /*
1776 * Opportunistically note grace-period endings and beginnings.
1777 * Note that we might see a beginning right after we see an
1778 * end, but never vice versa, since this CPU has to pass through
1779 * a quiescent state betweentimes.
1780 */
1781 local_irq_save(flags);
Lai Jiangshan394f99a2010-06-28 16:25:04 +08001782 rdp = this_cpu_ptr(rsp->rda);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001783
1784 /* Add the callback to our list. */
1785 *rdp->nxttail[RCU_NEXT_TAIL] = head;
1786 rdp->nxttail[RCU_NEXT_TAIL] = &head->next;
1787
Paul E. McKenney37c72e52009-10-14 10:15:55 -07001788 /*
1789 * Force the grace period if too many callbacks or too long waiting.
1790 * Enforce hysteresis, and don't invoke force_quiescent_state()
1791 * if some other CPU has recently done so. Also, don't bother
1792 * invoking force_quiescent_state() if the newly enqueued callback
1793 * is the only one waiting for a grace period to complete.
1794 */
1795 if (unlikely(++rdp->qlen > rdp->qlen_last_fqs_check + qhimark)) {
Paul E. McKenneyb52573d2010-12-14 17:36:02 -08001796
1797 /* Are we ignoring a completed grace period? */
1798 rcu_process_gp_end(rsp, rdp);
1799 check_for_new_grace_period(rsp, rdp);
1800
1801 /* Start a new grace period if one not already started. */
1802 if (!rcu_gp_in_progress(rsp)) {
1803 unsigned long nestflag;
1804 struct rcu_node *rnp_root = rcu_get_root(rsp);
1805
1806 raw_spin_lock_irqsave(&rnp_root->lock, nestflag);
1807 rcu_start_gp(rsp, nestflag); /* rlses rnp_root->lock */
1808 } else {
1809 /* Give the grace period a kick. */
1810 rdp->blimit = LONG_MAX;
1811 if (rsp->n_force_qs == rdp->n_force_qs_snap &&
1812 *rdp->nxttail[RCU_DONE_TAIL] != head)
1813 force_quiescent_state(rsp, 0);
1814 rdp->n_force_qs_snap = rsp->n_force_qs;
1815 rdp->qlen_last_fqs_check = rdp->qlen;
1816 }
Paul E. McKenney20133cf2010-02-22 17:05:01 -08001817 } else if (ULONG_CMP_LT(ACCESS_ONCE(rsp->jiffies_force_qs), jiffies))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001818 force_quiescent_state(rsp, 1);
1819 local_irq_restore(flags);
1820}
1821
1822/*
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001823 * Queue an RCU-sched callback for invocation after a grace period.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001824 */
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001825void call_rcu_sched(struct rcu_head *head, void (*func)(struct rcu_head *rcu))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001826{
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001827 __call_rcu(head, func, &rcu_sched_state);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001828}
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001829EXPORT_SYMBOL_GPL(call_rcu_sched);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001830
1831/*
1832 * Queue an RCU for invocation after a quicker grace period.
1833 */
1834void call_rcu_bh(struct rcu_head *head, void (*func)(struct rcu_head *rcu))
1835{
1836 __call_rcu(head, func, &rcu_bh_state);
1837}
1838EXPORT_SYMBOL_GPL(call_rcu_bh);
1839
Paul E. McKenney6ebb2372009-11-22 08:53:50 -08001840/**
1841 * synchronize_sched - wait until an rcu-sched grace period has elapsed.
1842 *
1843 * Control will return to the caller some time after a full rcu-sched
1844 * grace period has elapsed, in other words after all currently executing
1845 * rcu-sched read-side critical sections have completed. These read-side
1846 * critical sections are delimited by rcu_read_lock_sched() and
1847 * rcu_read_unlock_sched(), and may be nested. Note that preempt_disable(),
1848 * local_irq_disable(), and so on may be used in place of
1849 * rcu_read_lock_sched().
1850 *
1851 * This means that all preempt_disable code sequences, including NMI and
1852 * hardware-interrupt handlers, in progress on entry will have completed
1853 * before this primitive returns. However, this does not guarantee that
1854 * softirq handlers will have completed, since in some kernels, these
1855 * handlers can run in process context, and can block.
1856 *
1857 * This primitive provides the guarantees made by the (now removed)
1858 * synchronize_kernel() API. In contrast, synchronize_rcu() only
1859 * guarantees that rcu_read_lock() sections will have completed.
1860 * In "classic RCU", these two guarantees happen to be one and
1861 * the same, but can differ in realtime RCU implementations.
1862 */
1863void synchronize_sched(void)
1864{
1865 struct rcu_synchronize rcu;
1866
1867 if (rcu_blocking_is_gp())
1868 return;
1869
Paul E. McKenney72d5a9f2010-05-10 17:12:17 -07001870 init_rcu_head_on_stack(&rcu.head);
Paul E. McKenney6ebb2372009-11-22 08:53:50 -08001871 init_completion(&rcu.completion);
1872 /* Will wake me after RCU finished. */
1873 call_rcu_sched(&rcu.head, wakeme_after_rcu);
1874 /* Wait for it. */
1875 wait_for_completion(&rcu.completion);
Paul E. McKenney72d5a9f2010-05-10 17:12:17 -07001876 destroy_rcu_head_on_stack(&rcu.head);
Paul E. McKenney6ebb2372009-11-22 08:53:50 -08001877}
1878EXPORT_SYMBOL_GPL(synchronize_sched);
1879
1880/**
1881 * synchronize_rcu_bh - wait until an rcu_bh grace period has elapsed.
1882 *
1883 * Control will return to the caller some time after a full rcu_bh grace
1884 * period has elapsed, in other words after all currently executing rcu_bh
1885 * read-side critical sections have completed. RCU read-side critical
1886 * sections are delimited by rcu_read_lock_bh() and rcu_read_unlock_bh(),
1887 * and may be nested.
1888 */
1889void synchronize_rcu_bh(void)
1890{
1891 struct rcu_synchronize rcu;
1892
1893 if (rcu_blocking_is_gp())
1894 return;
1895
Paul E. McKenney72d5a9f2010-05-10 17:12:17 -07001896 init_rcu_head_on_stack(&rcu.head);
Paul E. McKenney6ebb2372009-11-22 08:53:50 -08001897 init_completion(&rcu.completion);
1898 /* Will wake me after RCU finished. */
1899 call_rcu_bh(&rcu.head, wakeme_after_rcu);
1900 /* Wait for it. */
1901 wait_for_completion(&rcu.completion);
Paul E. McKenney72d5a9f2010-05-10 17:12:17 -07001902 destroy_rcu_head_on_stack(&rcu.head);
Paul E. McKenney6ebb2372009-11-22 08:53:50 -08001903}
1904EXPORT_SYMBOL_GPL(synchronize_rcu_bh);
1905
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001906/*
1907 * Check to see if there is any immediate RCU-related work to be done
1908 * by the current CPU, for the specified type of RCU, returning 1 if so.
1909 * The checks are in order of increasing expense: checks that can be
1910 * carried out against CPU-local state are performed first. However,
1911 * we must check for CPU stalls first, else we might not get a chance.
1912 */
1913static int __rcu_pending(struct rcu_state *rsp, struct rcu_data *rdp)
1914{
Paul E. McKenney2f51f982009-11-13 19:51:39 -08001915 struct rcu_node *rnp = rdp->mynode;
1916
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001917 rdp->n_rcu_pending++;
1918
1919 /* Check for CPU stalls, if enabled. */
1920 check_cpu_stall(rsp, rdp);
1921
1922 /* Is the RCU core waiting for a quiescent state from this CPU? */
Paul E. McKenneyd21670a2010-04-14 17:39:26 -07001923 if (rdp->qs_pending && !rdp->passed_quiesc) {
Paul E. McKenneyd25eb942010-03-18 21:36:51 -07001924
1925 /*
1926 * If force_quiescent_state() coming soon and this CPU
1927 * needs a quiescent state, and this is either RCU-sched
1928 * or RCU-bh, force a local reschedule.
1929 */
Paul E. McKenneyd21670a2010-04-14 17:39:26 -07001930 rdp->n_rp_qs_pending++;
Paul E. McKenneyd25eb942010-03-18 21:36:51 -07001931 if (!rdp->preemptable &&
1932 ULONG_CMP_LT(ACCESS_ONCE(rsp->jiffies_force_qs) - 1,
1933 jiffies))
1934 set_need_resched();
Paul E. McKenneyd21670a2010-04-14 17:39:26 -07001935 } else if (rdp->qs_pending && rdp->passed_quiesc) {
1936 rdp->n_rp_report_qs++;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001937 return 1;
Paul E. McKenney7ba5c842009-04-13 21:31:17 -07001938 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001939
1940 /* Does this CPU have callbacks ready to invoke? */
Paul E. McKenney7ba5c842009-04-13 21:31:17 -07001941 if (cpu_has_callbacks_ready_to_invoke(rdp)) {
1942 rdp->n_rp_cb_ready++;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001943 return 1;
Paul E. McKenney7ba5c842009-04-13 21:31:17 -07001944 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001945
1946 /* Has RCU gone idle with this CPU needing another grace period? */
Paul E. McKenney7ba5c842009-04-13 21:31:17 -07001947 if (cpu_needs_another_gp(rsp, rdp)) {
1948 rdp->n_rp_cpu_needs_gp++;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001949 return 1;
Paul E. McKenney7ba5c842009-04-13 21:31:17 -07001950 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001951
1952 /* Has another RCU grace period completed? */
Paul E. McKenney2f51f982009-11-13 19:51:39 -08001953 if (ACCESS_ONCE(rnp->completed) != rdp->completed) { /* outside lock */
Paul E. McKenney7ba5c842009-04-13 21:31:17 -07001954 rdp->n_rp_gp_completed++;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001955 return 1;
Paul E. McKenney7ba5c842009-04-13 21:31:17 -07001956 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001957
1958 /* Has a new RCU grace period started? */
Paul E. McKenney2f51f982009-11-13 19:51:39 -08001959 if (ACCESS_ONCE(rnp->gpnum) != rdp->gpnum) { /* outside lock */
Paul E. McKenney7ba5c842009-04-13 21:31:17 -07001960 rdp->n_rp_gp_started++;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001961 return 1;
Paul E. McKenney7ba5c842009-04-13 21:31:17 -07001962 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001963
1964 /* Has an RCU GP gone long enough to send resched IPIs &c? */
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -07001965 if (rcu_gp_in_progress(rsp) &&
Paul E. McKenney20133cf2010-02-22 17:05:01 -08001966 ULONG_CMP_LT(ACCESS_ONCE(rsp->jiffies_force_qs), jiffies)) {
Paul E. McKenney7ba5c842009-04-13 21:31:17 -07001967 rdp->n_rp_need_fqs++;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001968 return 1;
Paul E. McKenney7ba5c842009-04-13 21:31:17 -07001969 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001970
1971 /* nothing to do */
Paul E. McKenney7ba5c842009-04-13 21:31:17 -07001972 rdp->n_rp_need_nothing++;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001973 return 0;
1974}
1975
1976/*
1977 * Check to see if there is any immediate RCU-related work to be done
1978 * by the current CPU, returning 1 if so. This function is part of the
1979 * RCU implementation; it is -not- an exported member of the RCU API.
1980 */
Paul E. McKenneya1572292009-08-22 13:56:51 -07001981static int rcu_pending(int cpu)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001982{
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001983 return __rcu_pending(&rcu_sched_state, &per_cpu(rcu_sched_data, cpu)) ||
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001984 __rcu_pending(&rcu_bh_state, &per_cpu(rcu_bh_data, cpu)) ||
1985 rcu_preempt_pending(cpu);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001986}
1987
1988/*
1989 * Check to see if any future RCU-related work will need to be done
1990 * by the current CPU, even if none need be done immediately, returning
Paul E. McKenney8bd93a22010-02-22 17:04:59 -08001991 * 1 if so.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001992 */
Paul E. McKenney8bd93a22010-02-22 17:04:59 -08001993static int rcu_needs_cpu_quick_check(int cpu)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001994{
1995 /* RCU callbacks either ready or pending? */
Paul E. McKenneyd6714c22009-08-22 13:56:46 -07001996 return per_cpu(rcu_sched_data, cpu).nxtlist ||
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001997 per_cpu(rcu_bh_data, cpu).nxtlist ||
1998 rcu_preempt_needs_cpu(cpu);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001999}
2000
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002001static DEFINE_PER_CPU(struct rcu_head, rcu_barrier_head) = {NULL};
2002static atomic_t rcu_barrier_cpu_count;
2003static DEFINE_MUTEX(rcu_barrier_mutex);
2004static struct completion rcu_barrier_completion;
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002005
2006static void rcu_barrier_callback(struct rcu_head *notused)
2007{
2008 if (atomic_dec_and_test(&rcu_barrier_cpu_count))
2009 complete(&rcu_barrier_completion);
2010}
2011
2012/*
2013 * Called with preemption disabled, and from cross-cpu IRQ context.
2014 */
2015static void rcu_barrier_func(void *type)
2016{
2017 int cpu = smp_processor_id();
2018 struct rcu_head *head = &per_cpu(rcu_barrier_head, cpu);
2019 void (*call_rcu_func)(struct rcu_head *head,
2020 void (*func)(struct rcu_head *head));
2021
2022 atomic_inc(&rcu_barrier_cpu_count);
2023 call_rcu_func = type;
2024 call_rcu_func(head, rcu_barrier_callback);
2025}
2026
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002027/*
2028 * Orchestrate the specified type of RCU barrier, waiting for all
2029 * RCU callbacks of the specified type to complete.
2030 */
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07002031static void _rcu_barrier(struct rcu_state *rsp,
2032 void (*call_rcu_func)(struct rcu_head *head,
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002033 void (*func)(struct rcu_head *head)))
2034{
2035 BUG_ON(in_interrupt());
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07002036 /* Take mutex to serialize concurrent rcu_barrier() requests. */
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002037 mutex_lock(&rcu_barrier_mutex);
2038 init_completion(&rcu_barrier_completion);
2039 /*
2040 * Initialize rcu_barrier_cpu_count to 1, then invoke
2041 * rcu_barrier_func() on each CPU, so that each CPU also has
2042 * incremented rcu_barrier_cpu_count. Only then is it safe to
2043 * decrement rcu_barrier_cpu_count -- otherwise the first CPU
2044 * might complete its grace period before all of the other CPUs
2045 * did their increment, causing this function to return too
Paul E. McKenney2d999e02010-10-20 12:06:18 -07002046 * early. Note that on_each_cpu() disables irqs, which prevents
2047 * any CPUs from coming online or going offline until each online
2048 * CPU has queued its RCU-barrier callback.
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002049 */
2050 atomic_set(&rcu_barrier_cpu_count, 1);
2051 on_each_cpu(rcu_barrier_func, (void *)call_rcu_func, 1);
2052 if (atomic_dec_and_test(&rcu_barrier_cpu_count))
2053 complete(&rcu_barrier_completion);
2054 wait_for_completion(&rcu_barrier_completion);
2055 mutex_unlock(&rcu_barrier_mutex);
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002056}
2057
2058/**
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002059 * rcu_barrier_bh - Wait until all in-flight call_rcu_bh() callbacks complete.
2060 */
2061void rcu_barrier_bh(void)
2062{
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07002063 _rcu_barrier(&rcu_bh_state, call_rcu_bh);
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002064}
2065EXPORT_SYMBOL_GPL(rcu_barrier_bh);
2066
2067/**
2068 * rcu_barrier_sched - Wait for in-flight call_rcu_sched() callbacks.
2069 */
2070void rcu_barrier_sched(void)
2071{
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07002072 _rcu_barrier(&rcu_sched_state, call_rcu_sched);
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002073}
2074EXPORT_SYMBOL_GPL(rcu_barrier_sched);
2075
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002076/*
Paul E. McKenney27569622009-08-15 09:53:46 -07002077 * Do boot-time initialization of a CPU's per-CPU RCU data.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002078 */
Paul E. McKenney27569622009-08-15 09:53:46 -07002079static void __init
2080rcu_boot_init_percpu_data(int cpu, struct rcu_state *rsp)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002081{
2082 unsigned long flags;
2083 int i;
Lai Jiangshan394f99a2010-06-28 16:25:04 +08002084 struct rcu_data *rdp = per_cpu_ptr(rsp->rda, cpu);
Paul E. McKenney27569622009-08-15 09:53:46 -07002085 struct rcu_node *rnp = rcu_get_root(rsp);
2086
2087 /* Set up local state, ensuring consistent view of global state. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -08002088 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney27569622009-08-15 09:53:46 -07002089 rdp->grpmask = 1UL << (cpu - rdp->mynode->grplo);
2090 rdp->nxtlist = NULL;
2091 for (i = 0; i < RCU_NEXT_SIZE; i++)
2092 rdp->nxttail[i] = &rdp->nxtlist;
2093 rdp->qlen = 0;
2094#ifdef CONFIG_NO_HZ
2095 rdp->dynticks = &per_cpu(rcu_dynticks, cpu);
2096#endif /* #ifdef CONFIG_NO_HZ */
2097 rdp->cpu = cpu;
Paul E. McKenney1304afb2010-02-22 17:05:02 -08002098 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney27569622009-08-15 09:53:46 -07002099}
2100
2101/*
2102 * Initialize a CPU's per-CPU RCU data. Note that only one online or
2103 * offline event can be happening at a given time. Note also that we
2104 * can accept some slop in the rsp->completed access due to the fact
2105 * that this CPU cannot possibly have any RCU callbacks in flight yet.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002106 */
2107static void __cpuinit
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07002108rcu_init_percpu_data(int cpu, struct rcu_state *rsp, int preemptable)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002109{
2110 unsigned long flags;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002111 unsigned long mask;
Lai Jiangshan394f99a2010-06-28 16:25:04 +08002112 struct rcu_data *rdp = per_cpu_ptr(rsp->rda, cpu);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002113 struct rcu_node *rnp = rcu_get_root(rsp);
2114
2115 /* Set up local state, ensuring consistent view of global state. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -08002116 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002117 rdp->passed_quiesc = 0; /* We could be racing with new GP, */
2118 rdp->qs_pending = 1; /* so set up to respond to current GP. */
2119 rdp->beenonline = 1; /* We have now been online. */
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07002120 rdp->preemptable = preemptable;
Paul E. McKenney37c72e52009-10-14 10:15:55 -07002121 rdp->qlen_last_fqs_check = 0;
2122 rdp->n_force_qs_snap = rsp->n_force_qs;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002123 rdp->blimit = blimit;
Paul E. McKenney1304afb2010-02-22 17:05:02 -08002124 raw_spin_unlock(&rnp->lock); /* irqs remain disabled. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002125
2126 /*
2127 * A new grace period might start here. If so, we won't be part
2128 * of it, but that is OK, as we are currently in a quiescent state.
2129 */
2130
2131 /* Exclude any attempts to start a new GP on large systems. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -08002132 raw_spin_lock(&rsp->onofflock); /* irqs already disabled. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002133
2134 /* Add CPU to rcu_node bitmasks. */
2135 rnp = rdp->mynode;
2136 mask = rdp->grpmask;
2137 do {
2138 /* Exclude any attempts to start a new GP on small systems. */
Paul E. McKenney1304afb2010-02-22 17:05:02 -08002139 raw_spin_lock(&rnp->lock); /* irqs already disabled. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002140 rnp->qsmaskinit |= mask;
2141 mask = rnp->grpmask;
Paul E. McKenneyd09b62d2009-11-02 13:52:28 -08002142 if (rnp == rdp->mynode) {
2143 rdp->gpnum = rnp->completed; /* if GP in progress... */
2144 rdp->completed = rnp->completed;
2145 rdp->passed_quiesc_completed = rnp->completed - 1;
2146 }
Paul E. McKenney1304afb2010-02-22 17:05:02 -08002147 raw_spin_unlock(&rnp->lock); /* irqs already disabled. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002148 rnp = rnp->parent;
2149 } while (rnp != NULL && !(rnp->qsmaskinit & mask));
2150
Paul E. McKenney1304afb2010-02-22 17:05:02 -08002151 raw_spin_unlock_irqrestore(&rsp->onofflock, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002152}
2153
2154static void __cpuinit rcu_online_cpu(int cpu)
2155{
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07002156 rcu_init_percpu_data(cpu, &rcu_sched_state, 0);
2157 rcu_init_percpu_data(cpu, &rcu_bh_state, 0);
2158 rcu_preempt_init_percpu_data(cpu);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002159}
2160
Paul E. McKenneya26ac242011-01-12 14:10:23 -08002161static void __cpuinit rcu_online_kthreads(int cpu)
2162{
Paul E. McKenney27f4d282011-02-07 12:47:15 -08002163 struct rcu_data *rdp = per_cpu_ptr(rcu_state->rda, cpu);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08002164 struct rcu_node *rnp = rdp->mynode;
2165
2166 /* Fire up the incoming CPU's kthread and leaf rcu_node kthread. */
2167 if (rcu_kthreads_spawnable) {
2168 (void)rcu_spawn_one_cpu_kthread(cpu);
2169 if (rnp->node_kthread_task == NULL)
Paul E. McKenney27f4d282011-02-07 12:47:15 -08002170 (void)rcu_spawn_one_node_kthread(rcu_state, rnp);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08002171 }
2172}
2173
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002174/*
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07002175 * Handle CPU online/offline notification events.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002176 */
Paul E. McKenney9f680ab2009-11-22 08:53:49 -08002177static int __cpuinit rcu_cpu_notify(struct notifier_block *self,
2178 unsigned long action, void *hcpu)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002179{
2180 long cpu = (long)hcpu;
Paul E. McKenney27f4d282011-02-07 12:47:15 -08002181 struct rcu_data *rdp = per_cpu_ptr(rcu_state->rda, cpu);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08002182 struct rcu_node *rnp = rdp->mynode;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002183
2184 switch (action) {
2185 case CPU_UP_PREPARE:
2186 case CPU_UP_PREPARE_FROZEN:
2187 rcu_online_cpu(cpu);
Paul E. McKenneya26ac242011-01-12 14:10:23 -08002188 rcu_online_kthreads(cpu);
2189 break;
2190 case CPU_ONLINE:
Paul E. McKenney0f962a52011-04-14 12:13:53 -07002191 case CPU_DOWN_FAILED:
2192 rcu_node_kthread_setaffinity(rnp, -1);
Paul E. McKenneye3995a22011-04-18 15:31:26 -07002193 rcu_cpu_kthread_setrt(cpu, 1);
Paul E. McKenney0f962a52011-04-14 12:13:53 -07002194 break;
2195 case CPU_DOWN_PREPARE:
2196 rcu_node_kthread_setaffinity(rnp, cpu);
Paul E. McKenneye3995a22011-04-18 15:31:26 -07002197 rcu_cpu_kthread_setrt(cpu, 0);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002198 break;
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002199 case CPU_DYING:
2200 case CPU_DYING_FROZEN:
2201 /*
Paul E. McKenney2d999e02010-10-20 12:06:18 -07002202 * The whole machine is "stopped" except this CPU, so we can
2203 * touch any data without introducing corruption. We send the
2204 * dying CPU's callbacks to an arbitrarily chosen online CPU.
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002205 */
Lai Jiangshan29494be2010-10-20 14:13:06 +08002206 rcu_send_cbs_to_online(&rcu_bh_state);
2207 rcu_send_cbs_to_online(&rcu_sched_state);
2208 rcu_preempt_send_cbs_to_online();
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002209 break;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002210 case CPU_DEAD:
2211 case CPU_DEAD_FROZEN:
2212 case CPU_UP_CANCELED:
2213 case CPU_UP_CANCELED_FROZEN:
2214 rcu_offline_cpu(cpu);
2215 break;
2216 default:
2217 break;
2218 }
2219 return NOTIFY_OK;
2220}
2221
2222/*
Paul E. McKenneybbad9372010-04-02 16:17:17 -07002223 * This function is invoked towards the end of the scheduler's initialization
2224 * process. Before this is called, the idle task might contain
2225 * RCU read-side critical sections (during which time, this idle
2226 * task is booting the system). After this function is called, the
2227 * idle tasks are prohibited from containing RCU read-side critical
2228 * sections. This function also enables RCU lockdep checking.
2229 */
2230void rcu_scheduler_starting(void)
2231{
2232 WARN_ON(num_online_cpus() != 1);
2233 WARN_ON(nr_context_switches() > 0);
2234 rcu_scheduler_active = 1;
2235}
2236
2237/*
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002238 * Compute the per-level fanout, either using the exact fanout specified
2239 * or balancing the tree, depending on CONFIG_RCU_FANOUT_EXACT.
2240 */
2241#ifdef CONFIG_RCU_FANOUT_EXACT
2242static void __init rcu_init_levelspread(struct rcu_state *rsp)
2243{
2244 int i;
2245
Paul E. McKenney0209f642010-12-14 16:07:52 -08002246 for (i = NUM_RCU_LVLS - 1; i > 0; i--)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002247 rsp->levelspread[i] = CONFIG_RCU_FANOUT;
Paul E. McKenney0209f642010-12-14 16:07:52 -08002248 rsp->levelspread[0] = RCU_FANOUT_LEAF;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002249}
2250#else /* #ifdef CONFIG_RCU_FANOUT_EXACT */
2251static void __init rcu_init_levelspread(struct rcu_state *rsp)
2252{
2253 int ccur;
2254 int cprv;
2255 int i;
2256
2257 cprv = NR_CPUS;
2258 for (i = NUM_RCU_LVLS - 1; i >= 0; i--) {
2259 ccur = rsp->levelcnt[i];
2260 rsp->levelspread[i] = (cprv + ccur - 1) / ccur;
2261 cprv = ccur;
2262 }
2263}
2264#endif /* #else #ifdef CONFIG_RCU_FANOUT_EXACT */
2265
2266/*
2267 * Helper function for rcu_init() that initializes one rcu_state structure.
2268 */
Lai Jiangshan394f99a2010-06-28 16:25:04 +08002269static void __init rcu_init_one(struct rcu_state *rsp,
2270 struct rcu_data __percpu *rda)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002271{
Paul E. McKenneyb6407e82010-01-04 16:04:02 -08002272 static char *buf[] = { "rcu_node_level_0",
2273 "rcu_node_level_1",
2274 "rcu_node_level_2",
2275 "rcu_node_level_3" }; /* Match MAX_RCU_LVLS */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002276 int cpustride = 1;
2277 int i;
2278 int j;
2279 struct rcu_node *rnp;
2280
Paul E. McKenneyb6407e82010-01-04 16:04:02 -08002281 BUILD_BUG_ON(MAX_RCU_LVLS > ARRAY_SIZE(buf)); /* Fix buf[] init! */
2282
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002283 /* Initialize the level-tracking arrays. */
2284
2285 for (i = 1; i < NUM_RCU_LVLS; i++)
2286 rsp->level[i] = rsp->level[i - 1] + rsp->levelcnt[i - 1];
2287 rcu_init_levelspread(rsp);
2288
2289 /* Initialize the elements themselves, starting from the leaves. */
2290
2291 for (i = NUM_RCU_LVLS - 1; i >= 0; i--) {
2292 cpustride *= rsp->levelspread[i];
2293 rnp = rsp->level[i];
2294 for (j = 0; j < rsp->levelcnt[i]; j++, rnp++) {
Paul E. McKenney1304afb2010-02-22 17:05:02 -08002295 raw_spin_lock_init(&rnp->lock);
Paul E. McKenneyb6407e82010-01-04 16:04:02 -08002296 lockdep_set_class_and_name(&rnp->lock,
2297 &rcu_node_class[i], buf[i]);
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07002298 rnp->gpnum = 0;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002299 rnp->qsmask = 0;
2300 rnp->qsmaskinit = 0;
2301 rnp->grplo = j * cpustride;
2302 rnp->grphi = (j + 1) * cpustride - 1;
2303 if (rnp->grphi >= NR_CPUS)
2304 rnp->grphi = NR_CPUS - 1;
2305 if (i == 0) {
2306 rnp->grpnum = 0;
2307 rnp->grpmask = 0;
2308 rnp->parent = NULL;
2309 } else {
2310 rnp->grpnum = j % rsp->levelspread[i - 1];
2311 rnp->grpmask = 1UL << rnp->grpnum;
2312 rnp->parent = rsp->level[i - 1] +
2313 j / rsp->levelspread[i - 1];
2314 }
2315 rnp->level = i;
Paul E. McKenney12f5f522010-11-29 21:56:39 -08002316 INIT_LIST_HEAD(&rnp->blkd_tasks);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002317 }
2318 }
Lai Jiangshan0c340292010-03-28 11:12:30 +08002319
Lai Jiangshan394f99a2010-06-28 16:25:04 +08002320 rsp->rda = rda;
Lai Jiangshan0c340292010-03-28 11:12:30 +08002321 rnp = rsp->level[NUM_RCU_LVLS - 1];
2322 for_each_possible_cpu(i) {
Paul E. McKenney4a90a062010-04-14 16:48:11 -07002323 while (i > rnp->grphi)
Lai Jiangshan0c340292010-03-28 11:12:30 +08002324 rnp++;
Lai Jiangshan394f99a2010-06-28 16:25:04 +08002325 per_cpu_ptr(rsp->rda, i)->mynode = rnp;
Lai Jiangshan0c340292010-03-28 11:12:30 +08002326 rcu_boot_init_percpu_data(i, rsp);
2327 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002328}
2329
Paul E. McKenney9f680ab2009-11-22 08:53:49 -08002330void __init rcu_init(void)
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07002331{
Paul E. McKenney017c4262010-01-14 16:10:58 -08002332 int cpu;
Paul E. McKenney9f680ab2009-11-22 08:53:49 -08002333
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07002334 rcu_bootup_announce();
Lai Jiangshan394f99a2010-06-28 16:25:04 +08002335 rcu_init_one(&rcu_sched_state, &rcu_sched_data);
2336 rcu_init_one(&rcu_bh_state, &rcu_bh_data);
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07002337 __rcu_init_preempt();
Paul E. McKenney9f680ab2009-11-22 08:53:49 -08002338
2339 /*
2340 * We don't need protection against CPU-hotplug here because
2341 * this is called early in boot, before either interrupts
2342 * or the scheduler are operational.
2343 */
2344 cpu_notifier(rcu_cpu_notify, 0);
Paul E. McKenney017c4262010-01-14 16:10:58 -08002345 for_each_online_cpu(cpu)
2346 rcu_cpu_notify(NULL, CPU_UP_PREPARE, (void *)(long)cpu);
Paul E. McKenneyc68de202010-04-15 10:12:40 -07002347 check_cpu_stall_init();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002348}
2349
Paul E. McKenney1eba8f82009-09-23 09:50:42 -07002350#include "rcutree_plugin.h"