blob: 1af19e0068991d9dce256d1103c00deccc97b398 [file] [log] [blame]
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001/*
2 * Read-Copy Update mechanism for mutual exclusion (tree-based version)
3 * Internal non-public definitions that provide either classic
Paul E. McKenney6cc68792011-03-02 13:15:15 -08004 * or preemptible semantics.
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07005 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
Paul E. McKenney87de1cf2013-12-03 10:02:52 -080017 * along with this program; if not, you can access it online at
18 * http://www.gnu.org/licenses/gpl-2.0.html.
Paul E. McKenneyf41d9112009-08-22 13:56:52 -070019 *
20 * Copyright Red Hat, 2009
21 * Copyright IBM Corporation, 2009
22 *
23 * Author: Ingo Molnar <mingo@elte.hu>
24 * Paul E. McKenney <paulmck@linux.vnet.ibm.com>
25 */
26
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -080027#include <linux/delay.h>
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -070028#include <linux/gfp.h>
Paul E. McKenneyb626c1b2012-06-11 17:39:43 -070029#include <linux/oom.h>
Paul E. McKenney62ab7072012-07-16 10:42:38 +000030#include <linux/smpboot.h>
Paul E. McKenney4102ada2013-10-08 20:23:47 -070031#include "../time/tick-internal.h"
Paul E. McKenneyf41d9112009-08-22 13:56:52 -070032
Mike Galbraith5b61b0b2011-08-19 11:39:11 -070033#define RCU_KTHREAD_PRIO 1
34
35#ifdef CONFIG_RCU_BOOST
36#define RCU_BOOST_PRIO CONFIG_RCU_BOOST_PRIO
37#else
38#define RCU_BOOST_PRIO RCU_KTHREAD_PRIO
39#endif
40
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -070041#ifdef CONFIG_RCU_NOCB_CPU
42static cpumask_var_t rcu_nocb_mask; /* CPUs to have callbacks offloaded. */
43static bool have_rcu_nocb_mask; /* Was rcu_nocb_mask allocated? */
Paul Gortmaker1b0048a2012-12-20 13:19:22 -080044static bool __read_mostly rcu_nocb_poll; /* Offload kthread are to poll. */
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -070045static char __initdata nocb_buf[NR_CPUS * 5];
46#endif /* #ifdef CONFIG_RCU_NOCB_CPU */
47
Paul E. McKenney26845c22010-04-13 14:19:23 -070048/*
49 * Check the RCU kernel configuration parameters and print informative
50 * messages about anything out of the ordinary. If you like #ifdef, you
51 * will love this function.
52 */
53static void __init rcu_bootup_announce_oddness(void)
54{
55#ifdef CONFIG_RCU_TRACE
Paul E. McKenneyefc151c2013-03-18 16:24:11 -070056 pr_info("\tRCU debugfs-based tracing is enabled.\n");
Paul E. McKenney26845c22010-04-13 14:19:23 -070057#endif
58#if (defined(CONFIG_64BIT) && CONFIG_RCU_FANOUT != 64) || (!defined(CONFIG_64BIT) && CONFIG_RCU_FANOUT != 32)
Paul E. McKenneyefc151c2013-03-18 16:24:11 -070059 pr_info("\tCONFIG_RCU_FANOUT set to non-default value of %d\n",
Paul E. McKenney26845c22010-04-13 14:19:23 -070060 CONFIG_RCU_FANOUT);
61#endif
62#ifdef CONFIG_RCU_FANOUT_EXACT
Paul E. McKenneyefc151c2013-03-18 16:24:11 -070063 pr_info("\tHierarchical RCU autobalancing is disabled.\n");
Paul E. McKenney26845c22010-04-13 14:19:23 -070064#endif
65#ifdef CONFIG_RCU_FAST_NO_HZ
Paul E. McKenneyefc151c2013-03-18 16:24:11 -070066 pr_info("\tRCU dyntick-idle grace-period acceleration is enabled.\n");
Paul E. McKenney26845c22010-04-13 14:19:23 -070067#endif
68#ifdef CONFIG_PROVE_RCU
Paul E. McKenneyefc151c2013-03-18 16:24:11 -070069 pr_info("\tRCU lockdep checking is enabled.\n");
Paul E. McKenney26845c22010-04-13 14:19:23 -070070#endif
71#ifdef CONFIG_RCU_TORTURE_TEST_RUNNABLE
Paul E. McKenneyefc151c2013-03-18 16:24:11 -070072 pr_info("\tRCU torture testing starts during boot.\n");
Paul E. McKenney26845c22010-04-13 14:19:23 -070073#endif
Paul E. McKenney81a294c2010-08-30 09:52:50 -070074#if defined(CONFIG_TREE_PREEMPT_RCU) && !defined(CONFIG_RCU_CPU_STALL_VERBOSE)
Paul E. McKenneyefc151c2013-03-18 16:24:11 -070075 pr_info("\tDump stacks of tasks blocking RCU-preempt GP.\n");
Paul E. McKenneya858af22012-01-16 13:29:10 -080076#endif
77#if defined(CONFIG_RCU_CPU_STALL_INFO)
Paul E. McKenneyefc151c2013-03-18 16:24:11 -070078 pr_info("\tAdditional per-CPU info printed with stalls.\n");
Paul E. McKenney26845c22010-04-13 14:19:23 -070079#endif
80#if NUM_RCU_LVL_4 != 0
Paul E. McKenneyefc151c2013-03-18 16:24:11 -070081 pr_info("\tFour-level hierarchy is enabled.\n");
Paul E. McKenney26845c22010-04-13 14:19:23 -070082#endif
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -070083 if (rcu_fanout_leaf != CONFIG_RCU_FANOUT_LEAF)
Paul E. McKenney9a5739d2013-03-28 20:48:36 -070084 pr_info("\tBoot-time adjustment of leaf fanout to %d.\n", rcu_fanout_leaf);
Paul E. McKenneycca6f392012-05-08 21:00:28 -070085 if (nr_cpu_ids != NR_CPUS)
Paul E. McKenneyefc151c2013-03-18 16:24:11 -070086 pr_info("\tRCU restricting CPUs from NR_CPUS=%d to nr_cpu_ids=%d.\n", NR_CPUS, nr_cpu_ids);
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -070087#ifdef CONFIG_RCU_NOCB_CPU
Paul E. McKenney911af502013-02-11 10:23:27 -080088#ifndef CONFIG_RCU_NOCB_CPU_NONE
89 if (!have_rcu_nocb_mask) {
Sasha Levin615ee542013-03-26 11:35:16 -040090 zalloc_cpumask_var(&rcu_nocb_mask, GFP_KERNEL);
Paul E. McKenney911af502013-02-11 10:23:27 -080091 have_rcu_nocb_mask = true;
92 }
93#ifdef CONFIG_RCU_NOCB_CPU_ZERO
Paul E. McKenney9a5739d2013-03-28 20:48:36 -070094 pr_info("\tOffload RCU callbacks from CPU 0\n");
Paul E. McKenney911af502013-02-11 10:23:27 -080095 cpumask_set_cpu(0, rcu_nocb_mask);
96#endif /* #ifdef CONFIG_RCU_NOCB_CPU_ZERO */
97#ifdef CONFIG_RCU_NOCB_CPU_ALL
Paul E. McKenney9a5739d2013-03-28 20:48:36 -070098 pr_info("\tOffload RCU callbacks from all CPUs\n");
Kirill Tkhai5d5a0802013-09-15 17:29:17 +040099 cpumask_copy(rcu_nocb_mask, cpu_possible_mask);
Paul E. McKenney911af502013-02-11 10:23:27 -0800100#endif /* #ifdef CONFIG_RCU_NOCB_CPU_ALL */
101#endif /* #ifndef CONFIG_RCU_NOCB_CPU_NONE */
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -0700102 if (have_rcu_nocb_mask) {
Kirill Tkhai5d5a0802013-09-15 17:29:17 +0400103 if (!cpumask_subset(rcu_nocb_mask, cpu_possible_mask)) {
104 pr_info("\tNote: kernel parameter 'rcu_nocbs=' contains nonexistent CPUs.\n");
105 cpumask_and(rcu_nocb_mask, cpu_possible_mask,
106 rcu_nocb_mask);
107 }
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -0700108 cpulist_scnprintf(nocb_buf, sizeof(nocb_buf), rcu_nocb_mask);
Paul E. McKenney9a5739d2013-03-28 20:48:36 -0700109 pr_info("\tOffload RCU callbacks from CPUs: %s.\n", nocb_buf);
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -0700110 if (rcu_nocb_poll)
Paul E. McKenney9a5739d2013-03-28 20:48:36 -0700111 pr_info("\tPoll for callbacks from no-CBs CPUs.\n");
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -0700112 }
113#endif /* #ifdef CONFIG_RCU_NOCB_CPU */
Paul E. McKenney26845c22010-04-13 14:19:23 -0700114}
115
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700116#ifdef CONFIG_TREE_PREEMPT_RCU
117
Steven Rostedt (Red Hat)a41bfeb2013-07-12 17:00:28 -0400118RCU_STATE_INITIALIZER(rcu_preempt, 'p', call_rcu);
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800119static struct rcu_state *rcu_state = &rcu_preempt_state;
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700120
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800121static int rcu_preempted_readers_exp(struct rcu_node *rnp);
122
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700123/*
124 * Tell them what RCU they are running.
125 */
Paul E. McKenney0e0fc1c2009-11-11 11:28:06 -0800126static void __init rcu_bootup_announce(void)
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700127{
Paul E. McKenneyefc151c2013-03-18 16:24:11 -0700128 pr_info("Preemptible hierarchical RCU implementation.\n");
Paul E. McKenney26845c22010-04-13 14:19:23 -0700129 rcu_bootup_announce_oddness();
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700130}
131
132/*
133 * Return the number of RCU-preempt batches processed thus far
134 * for debug and statistics.
135 */
136long rcu_batches_completed_preempt(void)
137{
138 return rcu_preempt_state.completed;
139}
140EXPORT_SYMBOL_GPL(rcu_batches_completed_preempt);
141
142/*
143 * Return the number of RCU batches processed thus far for debug & stats.
144 */
145long rcu_batches_completed(void)
146{
147 return rcu_batches_completed_preempt();
148}
149EXPORT_SYMBOL_GPL(rcu_batches_completed);
150
151/*
Paul E. McKenney6cc68792011-03-02 13:15:15 -0800152 * Record a preemptible-RCU quiescent state for the specified CPU. Note
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700153 * that this just means that the task currently running on the CPU is
154 * not in a quiescent state. There might be any number of tasks blocked
155 * while in an RCU read-side critical section.
Paul E. McKenney25502a62010-04-01 17:37:01 -0700156 *
157 * Unlike the other rcu_*_qs() functions, callers to this function
158 * must disable irqs in order to protect the assignment to
159 * ->rcu_read_unlock_special.
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700160 */
Paul E. McKenneyc3422be2009-09-13 09:15:10 -0700161static void rcu_preempt_qs(int cpu)
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700162{
163 struct rcu_data *rdp = &per_cpu(rcu_preempt_data, cpu);
Paul E. McKenney25502a62010-04-01 17:37:01 -0700164
Paul E. McKenneye4cc1f22011-06-27 00:17:43 -0700165 if (rdp->passed_quiesce == 0)
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -0400166 trace_rcu_grace_period(TPS("rcu_preempt"), rdp->gpnum, TPS("cpuqs"));
Paul E. McKenneye4cc1f22011-06-27 00:17:43 -0700167 rdp->passed_quiesce = 1;
Paul E. McKenney25502a62010-04-01 17:37:01 -0700168 current->rcu_read_unlock_special &= ~RCU_READ_UNLOCK_NEED_QS;
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700169}
170
171/*
Paul E. McKenneyc3422be2009-09-13 09:15:10 -0700172 * We have entered the scheduler, and the current task might soon be
173 * context-switched away from. If this task is in an RCU read-side
174 * critical section, we will no longer be able to rely on the CPU to
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800175 * record that fact, so we enqueue the task on the blkd_tasks list.
176 * The task will dequeue itself when it exits the outermost enclosing
177 * RCU read-side critical section. Therefore, the current grace period
178 * cannot be permitted to complete until the blkd_tasks list entries
179 * predating the current grace period drain, in other words, until
180 * rnp->gp_tasks becomes NULL.
Paul E. McKenneyc3422be2009-09-13 09:15:10 -0700181 *
182 * Caller must disable preemption.
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700183 */
Paul E. McKenneycba6d0d2012-07-02 07:08:42 -0700184static void rcu_preempt_note_context_switch(int cpu)
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700185{
186 struct task_struct *t = current;
Paul E. McKenneyc3422be2009-09-13 09:15:10 -0700187 unsigned long flags;
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700188 struct rcu_data *rdp;
189 struct rcu_node *rnp;
190
Paul E. McKenney10f39bb2011-07-17 21:14:35 -0700191 if (t->rcu_read_lock_nesting > 0 &&
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700192 (t->rcu_read_unlock_special & RCU_READ_UNLOCK_BLOCKED) == 0) {
193
194 /* Possibly blocking in an RCU read-side critical section. */
Paul E. McKenneycba6d0d2012-07-02 07:08:42 -0700195 rdp = per_cpu_ptr(rcu_preempt_state.rda, cpu);
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700196 rnp = rdp->mynode;
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800197 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney6303b9c2013-12-11 13:59:10 -0800198 smp_mb__after_unlock_lock();
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700199 t->rcu_read_unlock_special |= RCU_READ_UNLOCK_BLOCKED;
Paul E. McKenney86848962009-08-27 15:00:12 -0700200 t->rcu_blocked_node = rnp;
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700201
202 /*
203 * If this CPU has already checked in, then this task
204 * will hold up the next grace period rather than the
205 * current grace period. Queue the task accordingly.
206 * If the task is queued for the current grace period
207 * (i.e., this CPU has not yet passed through a quiescent
208 * state for the current grace period), then as long
209 * as that task remains queued, the current grace period
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800210 * cannot end. Note that there is some uncertainty as
211 * to exactly when the current grace period started.
212 * We take a conservative approach, which can result
213 * in unnecessarily waiting on tasks that started very
214 * slightly after the current grace period began. C'est
215 * la vie!!!
Paul E. McKenneyb0e165c2009-09-13 09:15:09 -0700216 *
217 * But first, note that the current CPU must still be
218 * on line!
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700219 */
Paul E. McKenneyb0e165c2009-09-13 09:15:09 -0700220 WARN_ON_ONCE((rdp->grpmask & rnp->qsmaskinit) == 0);
Paul E. McKenneye7d88422009-09-18 09:50:18 -0700221 WARN_ON_ONCE(!list_empty(&t->rcu_node_entry));
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800222 if ((rnp->qsmask & rdp->grpmask) && rnp->gp_tasks != NULL) {
223 list_add(&t->rcu_node_entry, rnp->gp_tasks->prev);
224 rnp->gp_tasks = &t->rcu_node_entry;
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800225#ifdef CONFIG_RCU_BOOST
226 if (rnp->boost_tasks != NULL)
227 rnp->boost_tasks = rnp->gp_tasks;
228#endif /* #ifdef CONFIG_RCU_BOOST */
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800229 } else {
230 list_add(&t->rcu_node_entry, &rnp->blkd_tasks);
231 if (rnp->qsmask & rdp->grpmask)
232 rnp->gp_tasks = &t->rcu_node_entry;
233 }
Paul E. McKenneyd4c08f22011-06-25 06:36:56 -0700234 trace_rcu_preempt_task(rdp->rsp->name,
235 t->pid,
236 (rnp->qsmask & rdp->grpmask)
237 ? rnp->gpnum
238 : rnp->gpnum + 1);
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800239 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney10f39bb2011-07-17 21:14:35 -0700240 } else if (t->rcu_read_lock_nesting < 0 &&
241 t->rcu_read_unlock_special) {
242
243 /*
244 * Complete exit from RCU read-side critical section on
245 * behalf of preempted instance of __rcu_read_unlock().
246 */
247 rcu_read_unlock_special(t);
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700248 }
249
250 /*
251 * Either we were not in an RCU read-side critical section to
252 * begin with, or we have now recorded that critical section
253 * globally. Either way, we can now note a quiescent state
254 * for this CPU. Again, if we were in an RCU read-side critical
255 * section, and if that critical section was blocking the current
256 * grace period, then the fact that the task has been enqueued
257 * means that we continue to block the current grace period.
258 */
Paul E. McKenneye7d88422009-09-18 09:50:18 -0700259 local_irq_save(flags);
Paul E. McKenneycba6d0d2012-07-02 07:08:42 -0700260 rcu_preempt_qs(cpu);
Paul E. McKenneye7d88422009-09-18 09:50:18 -0700261 local_irq_restore(flags);
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700262}
263
264/*
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -0700265 * Check for preempted RCU readers blocking the current grace period
266 * for the specified rcu_node structure. If the caller needs a reliable
267 * answer, it must hold the rcu_node's ->lock.
268 */
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800269static int rcu_preempt_blocked_readers_cgp(struct rcu_node *rnp)
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -0700270{
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800271 return rnp->gp_tasks != NULL;
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -0700272}
273
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -0800274/*
275 * Record a quiescent state for all tasks that were previously queued
276 * on the specified rcu_node structure and that were blocking the current
277 * RCU grace period. The caller must hold the specified rnp->lock with
278 * irqs disabled, and this lock is released upon return, but irqs remain
279 * disabled.
280 */
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800281static void rcu_report_unblock_qs_rnp(struct rcu_node *rnp, unsigned long flags)
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -0800282 __releases(rnp->lock)
283{
284 unsigned long mask;
285 struct rcu_node *rnp_p;
286
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800287 if (rnp->qsmask != 0 || rcu_preempt_blocked_readers_cgp(rnp)) {
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800288 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -0800289 return; /* Still need more quiescent states! */
290 }
291
292 rnp_p = rnp->parent;
293 if (rnp_p == NULL) {
294 /*
295 * Either there is only one rcu_node in the tree,
296 * or tasks were kicked up to root rcu_node due to
297 * CPUs going offline.
298 */
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800299 rcu_report_qs_rsp(&rcu_preempt_state, flags);
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -0800300 return;
301 }
302
303 /* Report up the rest of the hierarchy. */
304 mask = rnp->grpmask;
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800305 raw_spin_unlock(&rnp->lock); /* irqs remain disabled. */
306 raw_spin_lock(&rnp_p->lock); /* irqs already disabled. */
Paul E. McKenney6303b9c2013-12-11 13:59:10 -0800307 smp_mb__after_unlock_lock();
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800308 rcu_report_qs_rnp(mask, &rcu_preempt_state, rnp_p, flags);
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -0800309}
310
311/*
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800312 * Advance a ->blkd_tasks-list pointer to the next entry, instead
313 * returning NULL if at the end of the list.
314 */
315static struct list_head *rcu_next_node_entry(struct task_struct *t,
316 struct rcu_node *rnp)
317{
318 struct list_head *np;
319
320 np = t->rcu_node_entry.next;
321 if (np == &rnp->blkd_tasks)
322 np = NULL;
323 return np;
324}
325
326/*
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -0800327 * Handle special cases during rcu_read_unlock(), such as needing to
328 * notify RCU core processing or task having blocked during the RCU
329 * read-side critical section.
330 */
Paul E. McKenney2a3fa842012-05-21 11:58:36 -0700331void rcu_read_unlock_special(struct task_struct *t)
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700332{
333 int empty;
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800334 int empty_exp;
Paul E. McKenney389abd42011-09-21 14:41:37 -0700335 int empty_exp_now;
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700336 unsigned long flags;
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800337 struct list_head *np;
Paul E. McKenney82e78d82011-08-04 07:55:34 -0700338#ifdef CONFIG_RCU_BOOST
339 struct rt_mutex *rbmp = NULL;
340#endif /* #ifdef CONFIG_RCU_BOOST */
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700341 struct rcu_node *rnp;
342 int special;
343
344 /* NMI handlers cannot block and cannot safely manipulate state. */
345 if (in_nmi())
346 return;
347
348 local_irq_save(flags);
349
350 /*
351 * If RCU core is waiting for this CPU to exit critical section,
352 * let it know that we have done so.
353 */
354 special = t->rcu_read_unlock_special;
355 if (special & RCU_READ_UNLOCK_NEED_QS) {
Paul E. McKenneyc3422be2009-09-13 09:15:10 -0700356 rcu_preempt_qs(smp_processor_id());
Lai Jiangshan79a62f92013-10-30 04:13:22 -0700357 if (!t->rcu_read_unlock_special) {
358 local_irq_restore(flags);
359 return;
360 }
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700361 }
362
Lai Jiangshan79a62f92013-10-30 04:13:22 -0700363 /* Hardware IRQ handlers cannot block, complain if they get here. */
364 if (WARN_ON_ONCE(in_irq() || in_serving_softirq())) {
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700365 local_irq_restore(flags);
366 return;
367 }
368
369 /* Clean up if blocked during RCU read-side critical section. */
370 if (special & RCU_READ_UNLOCK_BLOCKED) {
371 t->rcu_read_unlock_special &= ~RCU_READ_UNLOCK_BLOCKED;
372
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700373 /*
374 * Remove this task from the list it blocked on. The
375 * task can migrate while we acquire the lock, but at
376 * most one time. So at most two passes through loop.
377 */
378 for (;;) {
Paul E. McKenney86848962009-08-27 15:00:12 -0700379 rnp = t->rcu_blocked_node;
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800380 raw_spin_lock(&rnp->lock); /* irqs already disabled. */
Paul E. McKenney6303b9c2013-12-11 13:59:10 -0800381 smp_mb__after_unlock_lock();
Paul E. McKenney86848962009-08-27 15:00:12 -0700382 if (rnp == t->rcu_blocked_node)
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700383 break;
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800384 raw_spin_unlock(&rnp->lock); /* irqs remain disabled. */
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700385 }
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800386 empty = !rcu_preempt_blocked_readers_cgp(rnp);
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800387 empty_exp = !rcu_preempted_readers_exp(rnp);
388 smp_mb(); /* ensure expedited fastpath sees end of RCU c-s. */
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800389 np = rcu_next_node_entry(t, rnp);
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700390 list_del_init(&t->rcu_node_entry);
Paul E. McKenney82e78d82011-08-04 07:55:34 -0700391 t->rcu_blocked_node = NULL;
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -0400392 trace_rcu_unlock_preempted_task(TPS("rcu_preempt"),
Paul E. McKenneyd4c08f22011-06-25 06:36:56 -0700393 rnp->gpnum, t->pid);
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800394 if (&t->rcu_node_entry == rnp->gp_tasks)
395 rnp->gp_tasks = np;
396 if (&t->rcu_node_entry == rnp->exp_tasks)
397 rnp->exp_tasks = np;
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800398#ifdef CONFIG_RCU_BOOST
399 if (&t->rcu_node_entry == rnp->boost_tasks)
400 rnp->boost_tasks = np;
Paul E. McKenney82e78d82011-08-04 07:55:34 -0700401 /* Snapshot/clear ->rcu_boost_mutex with rcu_node lock held. */
402 if (t->rcu_boost_mutex) {
403 rbmp = t->rcu_boost_mutex;
404 t->rcu_boost_mutex = NULL;
Paul E. McKenney7765be22011-07-14 12:24:11 -0700405 }
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800406#endif /* #ifdef CONFIG_RCU_BOOST */
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700407
408 /*
409 * If this was the last task on the current list, and if
410 * we aren't waiting on any CPUs, report the quiescent state.
Paul E. McKenney389abd42011-09-21 14:41:37 -0700411 * Note that rcu_report_unblock_qs_rnp() releases rnp->lock,
412 * so we must take a snapshot of the expedited state.
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700413 */
Paul E. McKenney389abd42011-09-21 14:41:37 -0700414 empty_exp_now = !rcu_preempted_readers_exp(rnp);
Paul E. McKenneyd4c08f22011-06-25 06:36:56 -0700415 if (!empty && !rcu_preempt_blocked_readers_cgp(rnp)) {
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -0400416 trace_rcu_quiescent_state_report(TPS("preempt_rcu"),
Paul E. McKenneyd4c08f22011-06-25 06:36:56 -0700417 rnp->gpnum,
418 0, rnp->qsmask,
419 rnp->level,
420 rnp->grplo,
421 rnp->grphi,
422 !!rnp->gp_tasks);
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800423 rcu_report_unblock_qs_rnp(rnp, flags);
Paul E. McKenneyc701d5d2012-06-28 08:08:25 -0700424 } else {
Paul E. McKenneyd4c08f22011-06-25 06:36:56 -0700425 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenneyc701d5d2012-06-28 08:08:25 -0700426 }
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800427
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800428#ifdef CONFIG_RCU_BOOST
429 /* Unboost if we were boosted. */
Paul E. McKenney82e78d82011-08-04 07:55:34 -0700430 if (rbmp)
431 rt_mutex_unlock(rbmp);
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800432#endif /* #ifdef CONFIG_RCU_BOOST */
433
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800434 /*
435 * If this was the last task on the expedited lists,
436 * then we need to report up the rcu_node hierarchy.
437 */
Paul E. McKenney389abd42011-09-21 14:41:37 -0700438 if (!empty_exp && empty_exp_now)
Thomas Gleixnerb40d2932011-10-22 07:12:34 -0700439 rcu_report_exp_rnp(&rcu_preempt_state, rnp, true);
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -0800440 } else {
441 local_irq_restore(flags);
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700442 }
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700443}
444
Paul E. McKenney1ed509a2010-02-22 17:05:05 -0800445#ifdef CONFIG_RCU_CPU_STALL_VERBOSE
446
447/*
448 * Dump detailed information for all tasks blocking the current RCU
449 * grace period on the specified rcu_node structure.
450 */
451static void rcu_print_detail_task_stall_rnp(struct rcu_node *rnp)
452{
453 unsigned long flags;
Paul E. McKenney1ed509a2010-02-22 17:05:05 -0800454 struct task_struct *t;
455
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800456 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney5fd4dc02012-08-10 16:00:11 -0700457 if (!rcu_preempt_blocked_readers_cgp(rnp)) {
458 raw_spin_unlock_irqrestore(&rnp->lock, flags);
459 return;
460 }
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800461 t = list_entry(rnp->gp_tasks,
462 struct task_struct, rcu_node_entry);
463 list_for_each_entry_continue(t, &rnp->blkd_tasks, rcu_node_entry)
464 sched_show_task(t);
465 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney1ed509a2010-02-22 17:05:05 -0800466}
467
468/*
469 * Dump detailed information for all tasks blocking the current RCU
470 * grace period.
471 */
472static void rcu_print_detail_task_stall(struct rcu_state *rsp)
473{
474 struct rcu_node *rnp = rcu_get_root(rsp);
475
476 rcu_print_detail_task_stall_rnp(rnp);
477 rcu_for_each_leaf_node(rsp, rnp)
478 rcu_print_detail_task_stall_rnp(rnp);
479}
480
481#else /* #ifdef CONFIG_RCU_CPU_STALL_VERBOSE */
482
483static void rcu_print_detail_task_stall(struct rcu_state *rsp)
484{
485}
486
487#endif /* #else #ifdef CONFIG_RCU_CPU_STALL_VERBOSE */
488
Paul E. McKenneya858af22012-01-16 13:29:10 -0800489#ifdef CONFIG_RCU_CPU_STALL_INFO
490
491static void rcu_print_task_stall_begin(struct rcu_node *rnp)
492{
Paul E. McKenneyefc151c2013-03-18 16:24:11 -0700493 pr_err("\tTasks blocked on level-%d rcu_node (CPUs %d-%d):",
Paul E. McKenneya858af22012-01-16 13:29:10 -0800494 rnp->level, rnp->grplo, rnp->grphi);
495}
496
497static void rcu_print_task_stall_end(void)
498{
Paul E. McKenneyefc151c2013-03-18 16:24:11 -0700499 pr_cont("\n");
Paul E. McKenneya858af22012-01-16 13:29:10 -0800500}
501
502#else /* #ifdef CONFIG_RCU_CPU_STALL_INFO */
503
504static void rcu_print_task_stall_begin(struct rcu_node *rnp)
505{
506}
507
508static void rcu_print_task_stall_end(void)
509{
510}
511
512#endif /* #else #ifdef CONFIG_RCU_CPU_STALL_INFO */
513
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700514/*
515 * Scan the current list of tasks blocked within RCU read-side critical
516 * sections, printing out the tid of each.
517 */
Paul E. McKenney9bc8b552011-08-13 13:31:47 -0700518static int rcu_print_task_stall(struct rcu_node *rnp)
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700519{
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700520 struct task_struct *t;
Paul E. McKenney9bc8b552011-08-13 13:31:47 -0700521 int ndetected = 0;
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700522
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800523 if (!rcu_preempt_blocked_readers_cgp(rnp))
Paul E. McKenney9bc8b552011-08-13 13:31:47 -0700524 return 0;
Paul E. McKenneya858af22012-01-16 13:29:10 -0800525 rcu_print_task_stall_begin(rnp);
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800526 t = list_entry(rnp->gp_tasks,
527 struct task_struct, rcu_node_entry);
Paul E. McKenney9bc8b552011-08-13 13:31:47 -0700528 list_for_each_entry_continue(t, &rnp->blkd_tasks, rcu_node_entry) {
Paul E. McKenneyefc151c2013-03-18 16:24:11 -0700529 pr_cont(" P%d", t->pid);
Paul E. McKenney9bc8b552011-08-13 13:31:47 -0700530 ndetected++;
531 }
Paul E. McKenneya858af22012-01-16 13:29:10 -0800532 rcu_print_task_stall_end();
Paul E. McKenney9bc8b552011-08-13 13:31:47 -0700533 return ndetected;
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700534}
535
Paul E. McKenney53d84e02010-08-10 14:28:53 -0700536/*
Paul E. McKenneyb0e165c2009-09-13 09:15:09 -0700537 * Check that the list of blocked tasks for the newly completed grace
538 * period is in fact empty. It is a serious bug to complete a grace
539 * period that still has RCU readers blocked! This function must be
540 * invoked -before- updating this rnp's ->gpnum, and the rnp's ->lock
541 * must be held by the caller.
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800542 *
543 * Also, if there are blocked tasks on the list, they automatically
544 * block the newly created grace period, so set up ->gp_tasks accordingly.
Paul E. McKenneyb0e165c2009-09-13 09:15:09 -0700545 */
546static void rcu_preempt_check_blocked_tasks(struct rcu_node *rnp)
547{
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800548 WARN_ON_ONCE(rcu_preempt_blocked_readers_cgp(rnp));
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800549 if (!list_empty(&rnp->blkd_tasks))
550 rnp->gp_tasks = rnp->blkd_tasks.next;
Paul E. McKenney28ecd582009-09-18 09:50:17 -0700551 WARN_ON_ONCE(rnp->qsmask);
Paul E. McKenneyb0e165c2009-09-13 09:15:09 -0700552}
553
Paul E. McKenney33f76142009-08-24 09:42:01 -0700554#ifdef CONFIG_HOTPLUG_CPU
555
556/*
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700557 * Handle tasklist migration for case in which all CPUs covered by the
558 * specified rcu_node have gone offline. Move them up to the root
559 * rcu_node. The reason for not just moving them to the immediate
560 * parent is to remove the need for rcu_read_unlock_special() to
561 * make more than two attempts to acquire the target rcu_node's lock.
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -0800562 * Returns true if there were tasks blocking the current RCU grace
563 * period.
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700564 *
Paul E. McKenney237c80c2009-10-15 09:26:14 -0700565 * Returns 1 if there was previously a task blocking the current grace
566 * period on the specified rcu_node structure.
567 *
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700568 * The caller must hold rnp->lock with irqs disabled.
569 */
Paul E. McKenney237c80c2009-10-15 09:26:14 -0700570static int rcu_preempt_offline_tasks(struct rcu_state *rsp,
571 struct rcu_node *rnp,
572 struct rcu_data *rdp)
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700573{
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700574 struct list_head *lp;
575 struct list_head *lp_root;
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800576 int retval = 0;
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700577 struct rcu_node *rnp_root = rcu_get_root(rsp);
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800578 struct task_struct *t;
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700579
Paul E. McKenney86848962009-08-27 15:00:12 -0700580 if (rnp == rnp_root) {
581 WARN_ONCE(1, "Last CPU thought to be offlined?");
Paul E. McKenney237c80c2009-10-15 09:26:14 -0700582 return 0; /* Shouldn't happen: at least one CPU online. */
Paul E. McKenney86848962009-08-27 15:00:12 -0700583 }
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800584
585 /* If we are on an internal node, complain bitterly. */
586 WARN_ON_ONCE(rnp != rdp->mynode);
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700587
588 /*
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800589 * Move tasks up to root rcu_node. Don't try to get fancy for
590 * this corner-case operation -- just put this node's tasks
591 * at the head of the root node's list, and update the root node's
592 * ->gp_tasks and ->exp_tasks pointers to those of this node's,
593 * if non-NULL. This might result in waiting for more tasks than
594 * absolutely necessary, but this is a good performance/complexity
595 * tradeoff.
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700596 */
Paul E. McKenney2036d942012-01-30 17:02:47 -0800597 if (rcu_preempt_blocked_readers_cgp(rnp) && rnp->qsmask == 0)
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800598 retval |= RCU_OFL_TASKS_NORM_GP;
599 if (rcu_preempted_readers_exp(rnp))
600 retval |= RCU_OFL_TASKS_EXP_GP;
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800601 lp = &rnp->blkd_tasks;
602 lp_root = &rnp_root->blkd_tasks;
603 while (!list_empty(lp)) {
604 t = list_entry(lp->next, typeof(*t), rcu_node_entry);
605 raw_spin_lock(&rnp_root->lock); /* irqs already disabled */
Paul E. McKenney6303b9c2013-12-11 13:59:10 -0800606 smp_mb__after_unlock_lock();
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800607 list_del(&t->rcu_node_entry);
608 t->rcu_blocked_node = rnp_root;
609 list_add(&t->rcu_node_entry, lp_root);
610 if (&t->rcu_node_entry == rnp->gp_tasks)
611 rnp_root->gp_tasks = rnp->gp_tasks;
612 if (&t->rcu_node_entry == rnp->exp_tasks)
613 rnp_root->exp_tasks = rnp->exp_tasks;
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800614#ifdef CONFIG_RCU_BOOST
615 if (&t->rcu_node_entry == rnp->boost_tasks)
616 rnp_root->boost_tasks = rnp->boost_tasks;
617#endif /* #ifdef CONFIG_RCU_BOOST */
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800618 raw_spin_unlock(&rnp_root->lock); /* irqs still disabled */
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700619 }
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800620
Paul E. McKenney1e3fd2b2012-07-27 13:41:47 -0700621 rnp->gp_tasks = NULL;
622 rnp->exp_tasks = NULL;
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800623#ifdef CONFIG_RCU_BOOST
Paul E. McKenney1e3fd2b2012-07-27 13:41:47 -0700624 rnp->boost_tasks = NULL;
Paul E. McKenney5cc900c2012-07-31 14:09:49 -0700625 /*
626 * In case root is being boosted and leaf was not. Make sure
627 * that we boost the tasks blocking the current grace period
628 * in this case.
629 */
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800630 raw_spin_lock(&rnp_root->lock); /* irqs already disabled */
Paul E. McKenney6303b9c2013-12-11 13:59:10 -0800631 smp_mb__after_unlock_lock();
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800632 if (rnp_root->boost_tasks != NULL &&
Paul E. McKenney5cc900c2012-07-31 14:09:49 -0700633 rnp_root->boost_tasks != rnp_root->gp_tasks &&
634 rnp_root->boost_tasks != rnp_root->exp_tasks)
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800635 rnp_root->boost_tasks = rnp_root->gp_tasks;
636 raw_spin_unlock(&rnp_root->lock); /* irqs still disabled */
637#endif /* #ifdef CONFIG_RCU_BOOST */
638
Paul E. McKenney237c80c2009-10-15 09:26:14 -0700639 return retval;
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700640}
641
Paul E. McKenneye5601402012-01-07 11:03:57 -0800642#endif /* #ifdef CONFIG_HOTPLUG_CPU */
643
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -0700644/*
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700645 * Check for a quiescent state from the current CPU. When a task blocks,
646 * the task is recorded in the corresponding CPU's rcu_node structure,
647 * which is checked elsewhere.
648 *
649 * Caller must disable hard irqs.
650 */
651static void rcu_preempt_check_callbacks(int cpu)
652{
653 struct task_struct *t = current;
654
655 if (t->rcu_read_lock_nesting == 0) {
Paul E. McKenneyc3422be2009-09-13 09:15:10 -0700656 rcu_preempt_qs(cpu);
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700657 return;
658 }
Paul E. McKenney10f39bb2011-07-17 21:14:35 -0700659 if (t->rcu_read_lock_nesting > 0 &&
660 per_cpu(rcu_preempt_data, cpu).qs_pending)
Paul E. McKenneyc3422be2009-09-13 09:15:10 -0700661 t->rcu_read_unlock_special |= RCU_READ_UNLOCK_NEED_QS;
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700662}
663
Paul E. McKenneya46e0892011-06-15 15:47:09 -0700664#ifdef CONFIG_RCU_BOOST
665
Shaohua Li09223372011-06-14 13:26:25 +0800666static void rcu_preempt_do_callbacks(void)
667{
Christoph Lameterc9d4b0a2013-08-31 13:34:10 -0700668 rcu_do_batch(&rcu_preempt_state, this_cpu_ptr(&rcu_preempt_data));
Shaohua Li09223372011-06-14 13:26:25 +0800669}
670
Paul E. McKenneya46e0892011-06-15 15:47:09 -0700671#endif /* #ifdef CONFIG_RCU_BOOST */
672
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700673/*
Paul E. McKenney6cc68792011-03-02 13:15:15 -0800674 * Queue a preemptible-RCU callback for invocation after a grace period.
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700675 */
676void call_rcu(struct rcu_head *head, void (*func)(struct rcu_head *rcu))
677{
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -0700678 __call_rcu(head, func, &rcu_preempt_state, -1, 0);
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700679}
680EXPORT_SYMBOL_GPL(call_rcu);
681
Paul E. McKenney6ebb2372009-11-22 08:53:50 -0800682/**
683 * synchronize_rcu - wait until a grace period has elapsed.
684 *
685 * Control will return to the caller some time after a full grace
686 * period has elapsed, in other words after all currently executing RCU
Paul E. McKenney77d84852010-07-08 17:38:59 -0700687 * read-side critical sections have completed. Note, however, that
688 * upon return from synchronize_rcu(), the caller might well be executing
689 * concurrently with new RCU read-side critical sections that began while
690 * synchronize_rcu() was waiting. RCU read-side critical sections are
691 * delimited by rcu_read_lock() and rcu_read_unlock(), and may be nested.
Paul E. McKenneyf0a0e6f2012-10-23 13:47:01 -0700692 *
693 * See the description of synchronize_sched() for more detailed information
694 * on memory ordering guarantees.
Paul E. McKenney6ebb2372009-11-22 08:53:50 -0800695 */
696void synchronize_rcu(void)
697{
Paul E. McKenneyfe15d702012-01-04 13:30:33 -0800698 rcu_lockdep_assert(!lock_is_held(&rcu_bh_lock_map) &&
699 !lock_is_held(&rcu_lock_map) &&
700 !lock_is_held(&rcu_sched_lock_map),
701 "Illegal synchronize_rcu() in RCU read-side critical section");
Paul E. McKenney6ebb2372009-11-22 08:53:50 -0800702 if (!rcu_scheduler_active)
703 return;
Antti P Miettinen3705b882012-10-05 09:59:15 +0300704 if (rcu_expedited)
705 synchronize_rcu_expedited();
706 else
707 wait_rcu_gp(call_rcu);
Paul E. McKenney6ebb2372009-11-22 08:53:50 -0800708}
709EXPORT_SYMBOL_GPL(synchronize_rcu);
710
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800711static DECLARE_WAIT_QUEUE_HEAD(sync_rcu_preempt_exp_wq);
Paul E. McKenneybcfa57c2012-07-23 16:03:51 -0700712static unsigned long sync_rcu_preempt_exp_count;
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800713static DEFINE_MUTEX(sync_rcu_preempt_exp_mutex);
714
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700715/*
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800716 * Return non-zero if there are any tasks in RCU read-side critical
717 * sections blocking the current preemptible-RCU expedited grace period.
718 * If there is no preemptible-RCU expedited grace period currently in
719 * progress, returns zero unconditionally.
720 */
721static int rcu_preempted_readers_exp(struct rcu_node *rnp)
722{
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800723 return rnp->exp_tasks != NULL;
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800724}
725
726/*
727 * return non-zero if there is no RCU expedited grace period in progress
728 * for the specified rcu_node structure, in other words, if all CPUs and
729 * tasks covered by the specified rcu_node structure have done their bit
730 * for the current expedited grace period. Works only for preemptible
731 * RCU -- other RCU implementation use other means.
732 *
733 * Caller must hold sync_rcu_preempt_exp_mutex.
734 */
735static int sync_rcu_preempt_exp_done(struct rcu_node *rnp)
736{
737 return !rcu_preempted_readers_exp(rnp) &&
738 ACCESS_ONCE(rnp->expmask) == 0;
739}
740
741/*
742 * Report the exit from RCU read-side critical section for the last task
743 * that queued itself during or before the current expedited preemptible-RCU
744 * grace period. This event is reported either to the rcu_node structure on
745 * which the task was queued or to one of that rcu_node structure's ancestors,
746 * recursively up the tree. (Calm down, calm down, we do the recursion
747 * iteratively!)
748 *
Thomas Gleixnerb40d2932011-10-22 07:12:34 -0700749 * Most callers will set the "wake" flag, but the task initiating the
750 * expedited grace period need not wake itself.
751 *
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800752 * Caller must hold sync_rcu_preempt_exp_mutex.
753 */
Thomas Gleixnerb40d2932011-10-22 07:12:34 -0700754static void rcu_report_exp_rnp(struct rcu_state *rsp, struct rcu_node *rnp,
755 bool wake)
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800756{
757 unsigned long flags;
758 unsigned long mask;
759
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800760 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney6303b9c2013-12-11 13:59:10 -0800761 smp_mb__after_unlock_lock();
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800762 for (;;) {
Paul E. McKenney131906b2011-07-17 02:05:49 -0700763 if (!sync_rcu_preempt_exp_done(rnp)) {
764 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800765 break;
Paul E. McKenney131906b2011-07-17 02:05:49 -0700766 }
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800767 if (rnp->parent == NULL) {
Paul E. McKenney131906b2011-07-17 02:05:49 -0700768 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney78e4bc32013-09-24 15:04:06 -0700769 if (wake) {
770 smp_mb(); /* EGP done before wake_up(). */
Thomas Gleixnerb40d2932011-10-22 07:12:34 -0700771 wake_up(&sync_rcu_preempt_exp_wq);
Paul E. McKenney78e4bc32013-09-24 15:04:06 -0700772 }
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800773 break;
774 }
775 mask = rnp->grpmask;
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800776 raw_spin_unlock(&rnp->lock); /* irqs remain disabled */
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800777 rnp = rnp->parent;
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800778 raw_spin_lock(&rnp->lock); /* irqs already disabled */
Paul E. McKenney6303b9c2013-12-11 13:59:10 -0800779 smp_mb__after_unlock_lock();
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800780 rnp->expmask &= ~mask;
781 }
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800782}
783
784/*
785 * Snapshot the tasks blocking the newly started preemptible-RCU expedited
786 * grace period for the specified rcu_node structure. If there are no such
787 * tasks, report it up the rcu_node hierarchy.
788 *
Paul E. McKenney7b2e6012012-10-08 10:54:03 -0700789 * Caller must hold sync_rcu_preempt_exp_mutex and must exclude
790 * CPU hotplug operations.
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800791 */
792static void
793sync_rcu_preempt_exp_init(struct rcu_state *rsp, struct rcu_node *rnp)
794{
Paul E. McKenney1217ed12011-05-04 21:43:49 -0700795 unsigned long flags;
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800796 int must_wait = 0;
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800797
Paul E. McKenney1217ed12011-05-04 21:43:49 -0700798 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney6303b9c2013-12-11 13:59:10 -0800799 smp_mb__after_unlock_lock();
Paul E. McKenneyc701d5d2012-06-28 08:08:25 -0700800 if (list_empty(&rnp->blkd_tasks)) {
Paul E. McKenney1217ed12011-05-04 21:43:49 -0700801 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenneyc701d5d2012-06-28 08:08:25 -0700802 } else {
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800803 rnp->exp_tasks = rnp->blkd_tasks.next;
Paul E. McKenney1217ed12011-05-04 21:43:49 -0700804 rcu_initiate_boost(rnp, flags); /* releases rnp->lock */
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800805 must_wait = 1;
806 }
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800807 if (!must_wait)
Thomas Gleixnerb40d2932011-10-22 07:12:34 -0700808 rcu_report_exp_rnp(rsp, rnp, false); /* Don't wake self. */
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800809}
810
Paul E. McKenney236fefa2012-01-31 14:00:41 -0800811/**
812 * synchronize_rcu_expedited - Brute-force RCU grace period
813 *
814 * Wait for an RCU-preempt grace period, but expedite it. The basic
815 * idea is to invoke synchronize_sched_expedited() to push all the tasks to
816 * the ->blkd_tasks lists and wait for this list to drain. This consumes
817 * significant time on all CPUs and is unfriendly to real-time workloads,
818 * so is thus not recommended for any sort of common-case code.
819 * In fact, if you are using synchronize_rcu_expedited() in a loop,
820 * please restructure your code to batch your updates, and then Use a
821 * single synchronize_rcu() instead.
822 *
823 * Note that it is illegal to call this function while holding any lock
824 * that is acquired by a CPU-hotplug notifier. And yes, it is also illegal
825 * to call this function from a CPU-hotplug notifier. Failing to observe
826 * these restriction will result in deadlock.
Paul E. McKenney019129d52009-10-14 10:15:56 -0700827 */
828void synchronize_rcu_expedited(void)
829{
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800830 unsigned long flags;
831 struct rcu_node *rnp;
832 struct rcu_state *rsp = &rcu_preempt_state;
Paul E. McKenneybcfa57c2012-07-23 16:03:51 -0700833 unsigned long snap;
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800834 int trycount = 0;
835
836 smp_mb(); /* Caller's modifications seen first by other CPUs. */
837 snap = ACCESS_ONCE(sync_rcu_preempt_exp_count) + 1;
838 smp_mb(); /* Above access cannot bleed into critical section. */
839
840 /*
Paul E. McKenney1943c892012-07-30 17:19:25 -0700841 * Block CPU-hotplug operations. This means that any CPU-hotplug
842 * operation that finds an rcu_node structure with tasks in the
843 * process of being boosted will know that all tasks blocking
844 * this expedited grace period will already be in the process of
845 * being boosted. This simplifies the process of moving tasks
846 * from leaf to root rcu_node structures.
847 */
848 get_online_cpus();
849
850 /*
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800851 * Acquire lock, falling back to synchronize_rcu() if too many
852 * lock-acquisition failures. Of course, if someone does the
853 * expedited grace period for us, just leave.
854 */
855 while (!mutex_trylock(&sync_rcu_preempt_exp_mutex)) {
Paul E. McKenney1943c892012-07-30 17:19:25 -0700856 if (ULONG_CMP_LT(snap,
857 ACCESS_ONCE(sync_rcu_preempt_exp_count))) {
858 put_online_cpus();
859 goto mb_ret; /* Others did our work for us. */
860 }
Paul E. McKenneyc701d5d2012-06-28 08:08:25 -0700861 if (trycount++ < 10) {
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800862 udelay(trycount * num_online_cpus());
Paul E. McKenneyc701d5d2012-06-28 08:08:25 -0700863 } else {
Paul E. McKenney1943c892012-07-30 17:19:25 -0700864 put_online_cpus();
Antti P Miettinen3705b882012-10-05 09:59:15 +0300865 wait_rcu_gp(call_rcu);
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800866 return;
867 }
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800868 }
Paul E. McKenney1943c892012-07-30 17:19:25 -0700869 if (ULONG_CMP_LT(snap, ACCESS_ONCE(sync_rcu_preempt_exp_count))) {
870 put_online_cpus();
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800871 goto unlock_mb_ret; /* Others did our work for us. */
Paul E. McKenney1943c892012-07-30 17:19:25 -0700872 }
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800873
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800874 /* force all RCU readers onto ->blkd_tasks lists. */
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800875 synchronize_sched_expedited();
876
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800877 /* Initialize ->expmask for all non-leaf rcu_node structures. */
878 rcu_for_each_nonleaf_node_breadth_first(rsp, rnp) {
Paul E. McKenney1943c892012-07-30 17:19:25 -0700879 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney6303b9c2013-12-11 13:59:10 -0800880 smp_mb__after_unlock_lock();
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800881 rnp->expmask = rnp->qsmaskinit;
Paul E. McKenney1943c892012-07-30 17:19:25 -0700882 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800883 }
884
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800885 /* Snapshot current state of ->blkd_tasks lists. */
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800886 rcu_for_each_leaf_node(rsp, rnp)
887 sync_rcu_preempt_exp_init(rsp, rnp);
888 if (NUM_RCU_NODES > 1)
889 sync_rcu_preempt_exp_init(rsp, rcu_get_root(rsp));
890
Paul E. McKenney1943c892012-07-30 17:19:25 -0700891 put_online_cpus();
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800892
Paul E. McKenney12f5f522010-11-29 21:56:39 -0800893 /* Wait for snapshotted ->blkd_tasks lists to drain. */
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -0800894 rnp = rcu_get_root(rsp);
895 wait_event(sync_rcu_preempt_exp_wq,
896 sync_rcu_preempt_exp_done(rnp));
897
898 /* Clean up and exit. */
899 smp_mb(); /* ensure expedited GP seen before counter increment. */
900 ACCESS_ONCE(sync_rcu_preempt_exp_count)++;
901unlock_mb_ret:
902 mutex_unlock(&sync_rcu_preempt_exp_mutex);
903mb_ret:
904 smp_mb(); /* ensure subsequent action seen after grace period. */
Paul E. McKenney019129d52009-10-14 10:15:56 -0700905}
906EXPORT_SYMBOL_GPL(synchronize_rcu_expedited);
907
Paul E. McKenneye74f4c42009-10-06 21:48:17 -0700908/**
909 * rcu_barrier - Wait until all in-flight call_rcu() callbacks complete.
Paul E. McKenneyf0a0e6f2012-10-23 13:47:01 -0700910 *
911 * Note that this primitive does not necessarily wait for an RCU grace period
912 * to complete. For example, if there are no RCU callbacks queued anywhere
913 * in the system, then rcu_barrier() is within its rights to return
914 * immediately, without waiting for anything, much less an RCU grace period.
Paul E. McKenneye74f4c42009-10-06 21:48:17 -0700915 */
916void rcu_barrier(void)
917{
Paul E. McKenney037b64e2012-05-28 23:26:01 -0700918 _rcu_barrier(&rcu_preempt_state);
Paul E. McKenneye74f4c42009-10-06 21:48:17 -0700919}
920EXPORT_SYMBOL_GPL(rcu_barrier);
921
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700922/*
Paul E. McKenney6cc68792011-03-02 13:15:15 -0800923 * Initialize preemptible RCU's state structures.
Paul E. McKenney1eba8f82009-09-23 09:50:42 -0700924 */
925static void __init __rcu_init_preempt(void)
926{
Lai Jiangshan394f99a2010-06-28 16:25:04 +0800927 rcu_init_one(&rcu_preempt_state, &rcu_preempt_data);
Paul E. McKenney1eba8f82009-09-23 09:50:42 -0700928}
929
Paul E. McKenney2439b692013-04-11 10:15:52 -0700930/*
931 * Check for a task exiting while in a preemptible-RCU read-side
932 * critical section, clean up if so. No need to issue warnings,
933 * as debug_check_no_locks_held() already does this if lockdep
934 * is enabled.
935 */
936void exit_rcu(void)
937{
938 struct task_struct *t = current;
939
940 if (likely(list_empty(&current->rcu_node_entry)))
941 return;
942 t->rcu_read_lock_nesting = 1;
943 barrier();
944 t->rcu_read_unlock_special = RCU_READ_UNLOCK_BLOCKED;
945 __rcu_read_unlock();
946}
947
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700948#else /* #ifdef CONFIG_TREE_PREEMPT_RCU */
949
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800950static struct rcu_state *rcu_state = &rcu_sched_state;
951
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700952/*
953 * Tell them what RCU they are running.
954 */
Paul E. McKenney0e0fc1c2009-11-11 11:28:06 -0800955static void __init rcu_bootup_announce(void)
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700956{
Paul E. McKenneyefc151c2013-03-18 16:24:11 -0700957 pr_info("Hierarchical RCU implementation.\n");
Paul E. McKenney26845c22010-04-13 14:19:23 -0700958 rcu_bootup_announce_oddness();
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700959}
960
961/*
962 * Return the number of RCU batches processed thus far for debug & stats.
963 */
964long rcu_batches_completed(void)
965{
966 return rcu_batches_completed_sched();
967}
968EXPORT_SYMBOL_GPL(rcu_batches_completed);
969
970/*
Paul E. McKenneycba6d0d2012-07-02 07:08:42 -0700971 * Because preemptible RCU does not exist, we never have to check for
972 * CPUs being in quiescent states.
973 */
974static void rcu_preempt_note_context_switch(int cpu)
975{
976}
977
978/*
Paul E. McKenney6cc68792011-03-02 13:15:15 -0800979 * Because preemptible RCU does not exist, there are never any preempted
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -0700980 * RCU readers.
981 */
Paul E. McKenney27f4d282011-02-07 12:47:15 -0800982static int rcu_preempt_blocked_readers_cgp(struct rcu_node *rnp)
Paul E. McKenneyfc2219d2009-09-23 09:50:41 -0700983{
984 return 0;
985}
986
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -0800987#ifdef CONFIG_HOTPLUG_CPU
988
989/* Because preemptible RCU does not exist, no quieting of tasks. */
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -0800990static void rcu_report_unblock_qs_rnp(struct rcu_node *rnp, unsigned long flags)
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -0800991{
Paul E. McKenney1304afb2010-02-22 17:05:02 -0800992 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenneyb668c9c2009-11-22 08:53:48 -0800993}
994
995#endif /* #ifdef CONFIG_HOTPLUG_CPU */
996
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700997/*
Paul E. McKenney6cc68792011-03-02 13:15:15 -0800998 * Because preemptible RCU does not exist, we never have to check for
Paul E. McKenneyf41d9112009-08-22 13:56:52 -0700999 * tasks blocked within RCU read-side critical sections.
1000 */
Paul E. McKenney1ed509a2010-02-22 17:05:05 -08001001static void rcu_print_detail_task_stall(struct rcu_state *rsp)
1002{
1003}
1004
1005/*
Paul E. McKenney6cc68792011-03-02 13:15:15 -08001006 * Because preemptible RCU does not exist, we never have to check for
Paul E. McKenney1ed509a2010-02-22 17:05:05 -08001007 * tasks blocked within RCU read-side critical sections.
1008 */
Paul E. McKenney9bc8b552011-08-13 13:31:47 -07001009static int rcu_print_task_stall(struct rcu_node *rnp)
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001010{
Paul E. McKenney9bc8b552011-08-13 13:31:47 -07001011 return 0;
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001012}
1013
Paul E. McKenney53d84e02010-08-10 14:28:53 -07001014/*
Paul E. McKenney6cc68792011-03-02 13:15:15 -08001015 * Because there is no preemptible RCU, there can be no readers blocked,
Paul E. McKenney49e29122009-09-18 09:50:19 -07001016 * so there is no need to check for blocked tasks. So check only for
1017 * bogus qsmask values.
Paul E. McKenneyb0e165c2009-09-13 09:15:09 -07001018 */
1019static void rcu_preempt_check_blocked_tasks(struct rcu_node *rnp)
1020{
Paul E. McKenney49e29122009-09-18 09:50:19 -07001021 WARN_ON_ONCE(rnp->qsmask);
Paul E. McKenneyb0e165c2009-09-13 09:15:09 -07001022}
1023
Paul E. McKenney33f76142009-08-24 09:42:01 -07001024#ifdef CONFIG_HOTPLUG_CPU
1025
1026/*
Paul E. McKenney6cc68792011-03-02 13:15:15 -08001027 * Because preemptible RCU does not exist, it never needs to migrate
Paul E. McKenney237c80c2009-10-15 09:26:14 -07001028 * tasks that were blocked within RCU read-side critical sections, and
1029 * such non-existent tasks cannot possibly have been blocking the current
1030 * grace period.
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -07001031 */
Paul E. McKenney237c80c2009-10-15 09:26:14 -07001032static int rcu_preempt_offline_tasks(struct rcu_state *rsp,
1033 struct rcu_node *rnp,
1034 struct rcu_data *rdp)
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -07001035{
Paul E. McKenney237c80c2009-10-15 09:26:14 -07001036 return 0;
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -07001037}
1038
Paul E. McKenneye5601402012-01-07 11:03:57 -08001039#endif /* #ifdef CONFIG_HOTPLUG_CPU */
1040
Paul E. McKenneydd5d19b2009-08-27 14:58:16 -07001041/*
Paul E. McKenney6cc68792011-03-02 13:15:15 -08001042 * Because preemptible RCU does not exist, it never has any callbacks
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001043 * to check.
1044 */
Paul E. McKenney1eba8f82009-09-23 09:50:42 -07001045static void rcu_preempt_check_callbacks(int cpu)
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001046{
1047}
1048
1049/*
Paul E. McKenney019129d52009-10-14 10:15:56 -07001050 * Wait for an rcu-preempt grace period, but make it happen quickly.
Paul E. McKenney6cc68792011-03-02 13:15:15 -08001051 * But because preemptible RCU does not exist, map to rcu-sched.
Paul E. McKenney019129d52009-10-14 10:15:56 -07001052 */
1053void synchronize_rcu_expedited(void)
1054{
1055 synchronize_sched_expedited();
1056}
1057EXPORT_SYMBOL_GPL(synchronize_rcu_expedited);
1058
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -08001059#ifdef CONFIG_HOTPLUG_CPU
1060
1061/*
Paul E. McKenney6cc68792011-03-02 13:15:15 -08001062 * Because preemptible RCU does not exist, there is never any need to
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -08001063 * report on tasks preempted in RCU read-side critical sections during
1064 * expedited RCU grace periods.
1065 */
Thomas Gleixnerb40d2932011-10-22 07:12:34 -07001066static void rcu_report_exp_rnp(struct rcu_state *rsp, struct rcu_node *rnp,
1067 bool wake)
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -08001068{
Paul E. McKenneyd9a3da02009-12-02 12:10:15 -08001069}
1070
1071#endif /* #ifdef CONFIG_HOTPLUG_CPU */
1072
Paul E. McKenney019129d52009-10-14 10:15:56 -07001073/*
Paul E. McKenney6cc68792011-03-02 13:15:15 -08001074 * Because preemptible RCU does not exist, rcu_barrier() is just
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07001075 * another name for rcu_barrier_sched().
1076 */
1077void rcu_barrier(void)
1078{
1079 rcu_barrier_sched();
1080}
1081EXPORT_SYMBOL_GPL(rcu_barrier);
1082
1083/*
Paul E. McKenney6cc68792011-03-02 13:15:15 -08001084 * Because preemptible RCU does not exist, it need not be initialized.
Paul E. McKenney1eba8f82009-09-23 09:50:42 -07001085 */
1086static void __init __rcu_init_preempt(void)
1087{
1088}
1089
Paul E. McKenney2439b692013-04-11 10:15:52 -07001090/*
1091 * Because preemptible RCU does not exist, tasks cannot possibly exit
1092 * while in preemptible RCU read-side critical sections.
1093 */
1094void exit_rcu(void)
1095{
1096}
1097
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001098#endif /* #else #ifdef CONFIG_TREE_PREEMPT_RCU */
Paul E. McKenney8bd93a22010-02-22 17:04:59 -08001099
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001100#ifdef CONFIG_RCU_BOOST
1101
Peter Zijlstra1696a8b2013-10-31 18:18:19 +01001102#include "../locking/rtmutex_common.h"
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001103
Paul E. McKenney0ea1f2e2011-02-22 13:42:43 -08001104#ifdef CONFIG_RCU_TRACE
1105
1106static void rcu_initiate_boost_trace(struct rcu_node *rnp)
1107{
1108 if (list_empty(&rnp->blkd_tasks))
1109 rnp->n_balk_blkd_tasks++;
1110 else if (rnp->exp_tasks == NULL && rnp->gp_tasks == NULL)
1111 rnp->n_balk_exp_gp_tasks++;
1112 else if (rnp->gp_tasks != NULL && rnp->boost_tasks != NULL)
1113 rnp->n_balk_boost_tasks++;
1114 else if (rnp->gp_tasks != NULL && rnp->qsmask != 0)
1115 rnp->n_balk_notblocked++;
1116 else if (rnp->gp_tasks != NULL &&
Paul E. McKenneya9f47932011-05-02 03:46:10 -07001117 ULONG_CMP_LT(jiffies, rnp->boost_time))
Paul E. McKenney0ea1f2e2011-02-22 13:42:43 -08001118 rnp->n_balk_notyet++;
1119 else
1120 rnp->n_balk_nos++;
1121}
1122
1123#else /* #ifdef CONFIG_RCU_TRACE */
1124
1125static void rcu_initiate_boost_trace(struct rcu_node *rnp)
1126{
1127}
1128
1129#endif /* #else #ifdef CONFIG_RCU_TRACE */
1130
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001131static void rcu_wake_cond(struct task_struct *t, int status)
1132{
1133 /*
1134 * If the thread is yielding, only wake it when this
1135 * is invoked from idle
1136 */
1137 if (status != RCU_KTHREAD_YIELDING || is_idle_task(current))
1138 wake_up_process(t);
1139}
1140
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001141/*
1142 * Carry out RCU priority boosting on the task indicated by ->exp_tasks
1143 * or ->boost_tasks, advancing the pointer to the next task in the
1144 * ->blkd_tasks list.
1145 *
1146 * Note that irqs must be enabled: boosting the task can block.
1147 * Returns 1 if there are more tasks needing to be boosted.
1148 */
1149static int rcu_boost(struct rcu_node *rnp)
1150{
1151 unsigned long flags;
1152 struct rt_mutex mtx;
1153 struct task_struct *t;
1154 struct list_head *tb;
1155
1156 if (rnp->exp_tasks == NULL && rnp->boost_tasks == NULL)
1157 return 0; /* Nothing left to boost. */
1158
1159 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney6303b9c2013-12-11 13:59:10 -08001160 smp_mb__after_unlock_lock();
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001161
1162 /*
1163 * Recheck under the lock: all tasks in need of boosting
1164 * might exit their RCU read-side critical sections on their own.
1165 */
1166 if (rnp->exp_tasks == NULL && rnp->boost_tasks == NULL) {
1167 raw_spin_unlock_irqrestore(&rnp->lock, flags);
1168 return 0;
1169 }
1170
1171 /*
1172 * Preferentially boost tasks blocking expedited grace periods.
1173 * This cannot starve the normal grace periods because a second
1174 * expedited grace period must boost all blocked tasks, including
1175 * those blocking the pre-existing normal grace period.
1176 */
Paul E. McKenney0ea1f2e2011-02-22 13:42:43 -08001177 if (rnp->exp_tasks != NULL) {
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001178 tb = rnp->exp_tasks;
Paul E. McKenney0ea1f2e2011-02-22 13:42:43 -08001179 rnp->n_exp_boosts++;
1180 } else {
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001181 tb = rnp->boost_tasks;
Paul E. McKenney0ea1f2e2011-02-22 13:42:43 -08001182 rnp->n_normal_boosts++;
1183 }
1184 rnp->n_tasks_boosted++;
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001185
1186 /*
1187 * We boost task t by manufacturing an rt_mutex that appears to
1188 * be held by task t. We leave a pointer to that rt_mutex where
1189 * task t can find it, and task t will release the mutex when it
1190 * exits its outermost RCU read-side critical section. Then
1191 * simply acquiring this artificial rt_mutex will boost task
1192 * t's priority. (Thanks to tglx for suggesting this approach!)
1193 *
1194 * Note that task t must acquire rnp->lock to remove itself from
1195 * the ->blkd_tasks list, which it will do from exit() if from
1196 * nowhere else. We therefore are guaranteed that task t will
1197 * stay around at least until we drop rnp->lock. Note that
1198 * rnp->lock also resolves races between our priority boosting
1199 * and task t's exiting its outermost RCU read-side critical
1200 * section.
1201 */
1202 t = container_of(tb, struct task_struct, rcu_node_entry);
1203 rt_mutex_init_proxy_locked(&mtx, t);
1204 t->rcu_boost_mutex = &mtx;
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001205 raw_spin_unlock_irqrestore(&rnp->lock, flags);
1206 rt_mutex_lock(&mtx); /* Side effect: boosts task t's priority. */
1207 rt_mutex_unlock(&mtx); /* Keep lockdep happy. */
1208
Paul E. McKenney4f89b332011-12-09 14:43:47 -08001209 return ACCESS_ONCE(rnp->exp_tasks) != NULL ||
1210 ACCESS_ONCE(rnp->boost_tasks) != NULL;
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001211}
1212
1213/*
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001214 * Priority-boosting kthread. One per leaf rcu_node and one for the
1215 * root rcu_node.
1216 */
1217static int rcu_boost_kthread(void *arg)
1218{
1219 struct rcu_node *rnp = (struct rcu_node *)arg;
1220 int spincnt = 0;
1221 int more2boost;
1222
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04001223 trace_rcu_utilization(TPS("Start boost kthread@init"));
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001224 for (;;) {
Paul E. McKenneyd71df902011-03-29 17:48:28 -07001225 rnp->boost_kthread_status = RCU_KTHREAD_WAITING;
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04001226 trace_rcu_utilization(TPS("End boost kthread@rcu_wait"));
Peter Zijlstra08bca602011-05-20 16:06:29 -07001227 rcu_wait(rnp->boost_tasks || rnp->exp_tasks);
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04001228 trace_rcu_utilization(TPS("Start boost kthread@rcu_wait"));
Paul E. McKenneyd71df902011-03-29 17:48:28 -07001229 rnp->boost_kthread_status = RCU_KTHREAD_RUNNING;
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001230 more2boost = rcu_boost(rnp);
1231 if (more2boost)
1232 spincnt++;
1233 else
1234 spincnt = 0;
1235 if (spincnt > 10) {
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001236 rnp->boost_kthread_status = RCU_KTHREAD_YIELDING;
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04001237 trace_rcu_utilization(TPS("End boost kthread@rcu_yield"));
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001238 schedule_timeout_interruptible(2);
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04001239 trace_rcu_utilization(TPS("Start boost kthread@rcu_yield"));
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001240 spincnt = 0;
1241 }
1242 }
Paul E. McKenney1217ed12011-05-04 21:43:49 -07001243 /* NOTREACHED */
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04001244 trace_rcu_utilization(TPS("End boost kthread@notreached"));
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001245 return 0;
1246}
1247
1248/*
1249 * Check to see if it is time to start boosting RCU readers that are
1250 * blocking the current grace period, and, if so, tell the per-rcu_node
1251 * kthread to start boosting them. If there is an expedited grace
1252 * period in progress, it is always time to boost.
1253 *
Paul E. McKenneyb065a852012-08-01 15:57:54 -07001254 * The caller must hold rnp->lock, which this function releases.
1255 * The ->boost_kthread_task is immortal, so we don't need to worry
1256 * about it going away.
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001257 */
Paul E. McKenney1217ed12011-05-04 21:43:49 -07001258static void rcu_initiate_boost(struct rcu_node *rnp, unsigned long flags)
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001259{
1260 struct task_struct *t;
1261
Paul E. McKenney0ea1f2e2011-02-22 13:42:43 -08001262 if (!rcu_preempt_blocked_readers_cgp(rnp) && rnp->exp_tasks == NULL) {
1263 rnp->n_balk_exp_gp_tasks++;
Paul E. McKenney1217ed12011-05-04 21:43:49 -07001264 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001265 return;
Paul E. McKenney0ea1f2e2011-02-22 13:42:43 -08001266 }
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001267 if (rnp->exp_tasks != NULL ||
1268 (rnp->gp_tasks != NULL &&
1269 rnp->boost_tasks == NULL &&
1270 rnp->qsmask == 0 &&
1271 ULONG_CMP_GE(jiffies, rnp->boost_time))) {
1272 if (rnp->exp_tasks == NULL)
1273 rnp->boost_tasks = rnp->gp_tasks;
Paul E. McKenney1217ed12011-05-04 21:43:49 -07001274 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001275 t = rnp->boost_kthread_task;
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001276 if (t)
1277 rcu_wake_cond(t, rnp->boost_kthread_status);
Paul E. McKenney1217ed12011-05-04 21:43:49 -07001278 } else {
Paul E. McKenney0ea1f2e2011-02-22 13:42:43 -08001279 rcu_initiate_boost_trace(rnp);
Paul E. McKenney1217ed12011-05-04 21:43:49 -07001280 raw_spin_unlock_irqrestore(&rnp->lock, flags);
1281 }
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001282}
1283
Paul E. McKenney0f962a52011-04-14 12:13:53 -07001284/*
Paul E. McKenneya46e0892011-06-15 15:47:09 -07001285 * Wake up the per-CPU kthread to invoke RCU callbacks.
1286 */
1287static void invoke_rcu_callbacks_kthread(void)
1288{
1289 unsigned long flags;
1290
1291 local_irq_save(flags);
1292 __this_cpu_write(rcu_cpu_has_work, 1);
Shaohua Li1eb52122011-06-16 16:02:54 -07001293 if (__this_cpu_read(rcu_cpu_kthread_task) != NULL &&
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001294 current != __this_cpu_read(rcu_cpu_kthread_task)) {
1295 rcu_wake_cond(__this_cpu_read(rcu_cpu_kthread_task),
1296 __this_cpu_read(rcu_cpu_kthread_status));
1297 }
Paul E. McKenneya46e0892011-06-15 15:47:09 -07001298 local_irq_restore(flags);
1299}
1300
1301/*
Paul E. McKenneydff16722011-11-29 15:57:13 -08001302 * Is the current CPU running the RCU-callbacks kthread?
1303 * Caller must have preemption disabled.
1304 */
1305static bool rcu_is_callbacks_kthread(void)
1306{
Christoph Lameterc9d4b0a2013-08-31 13:34:10 -07001307 return __this_cpu_read(rcu_cpu_kthread_task) == current;
Paul E. McKenneydff16722011-11-29 15:57:13 -08001308}
1309
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001310#define RCU_BOOST_DELAY_JIFFIES DIV_ROUND_UP(CONFIG_RCU_BOOST_DELAY * HZ, 1000)
1311
1312/*
1313 * Do priority-boost accounting for the start of a new grace period.
1314 */
1315static void rcu_preempt_boost_start_gp(struct rcu_node *rnp)
1316{
1317 rnp->boost_time = jiffies + RCU_BOOST_DELAY_JIFFIES;
1318}
1319
1320/*
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001321 * Create an RCU-boost kthread for the specified node if one does not
1322 * already exist. We only create this kthread for preemptible RCU.
1323 * Returns zero if all is well, a negated errno otherwise.
1324 */
Paul Gortmaker49fb4c62013-06-19 14:52:21 -04001325static int rcu_spawn_one_boost_kthread(struct rcu_state *rsp,
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001326 struct rcu_node *rnp)
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001327{
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001328 int rnp_index = rnp - &rsp->node[0];
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001329 unsigned long flags;
1330 struct sched_param sp;
1331 struct task_struct *t;
1332
1333 if (&rcu_preempt_state != rsp)
1334 return 0;
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001335
1336 if (!rcu_scheduler_fully_active || rnp->qsmaskinit == 0)
1337 return 0;
1338
Paul E. McKenneya46e0892011-06-15 15:47:09 -07001339 rsp->boost = 1;
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001340 if (rnp->boost_kthread_task != NULL)
1341 return 0;
1342 t = kthread_create(rcu_boost_kthread, (void *)rnp,
Mike Galbraith5b61b0b2011-08-19 11:39:11 -07001343 "rcub/%d", rnp_index);
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001344 if (IS_ERR(t))
1345 return PTR_ERR(t);
1346 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney6303b9c2013-12-11 13:59:10 -08001347 smp_mb__after_unlock_lock();
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001348 rnp->boost_kthread_task = t;
1349 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Mike Galbraith5b61b0b2011-08-19 11:39:11 -07001350 sp.sched_priority = RCU_BOOST_PRIO;
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001351 sched_setscheduler_nocheck(t, SCHED_FIFO, &sp);
Paul E. McKenney9a432732011-05-30 20:38:55 -07001352 wake_up_process(t); /* get to TASK_INTERRUPTIBLE quickly. */
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001353 return 0;
1354}
1355
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001356static void rcu_kthread_do_work(void)
1357{
Christoph Lameterc9d4b0a2013-08-31 13:34:10 -07001358 rcu_do_batch(&rcu_sched_state, this_cpu_ptr(&rcu_sched_data));
1359 rcu_do_batch(&rcu_bh_state, this_cpu_ptr(&rcu_bh_data));
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001360 rcu_preempt_do_callbacks();
1361}
1362
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001363static void rcu_cpu_kthread_setup(unsigned int cpu)
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001364{
1365 struct sched_param sp;
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001366
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001367 sp.sched_priority = RCU_KTHREAD_PRIO;
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001368 sched_setscheduler_nocheck(current, SCHED_FIFO, &sp);
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001369}
1370
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001371static void rcu_cpu_kthread_park(unsigned int cpu)
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001372{
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001373 per_cpu(rcu_cpu_kthread_status, cpu) = RCU_KTHREAD_OFFCPU;
1374}
1375
1376static int rcu_cpu_kthread_should_run(unsigned int cpu)
1377{
Christoph Lameterc9d4b0a2013-08-31 13:34:10 -07001378 return __this_cpu_read(rcu_cpu_has_work);
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001379}
1380
1381/*
1382 * Per-CPU kernel thread that invokes RCU callbacks. This replaces the
Paul E. McKenneye0f23062011-06-21 01:29:39 -07001383 * RCU softirq used in flavors and configurations of RCU that do not
1384 * support RCU priority boosting.
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001385 */
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001386static void rcu_cpu_kthread(unsigned int cpu)
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001387{
Christoph Lameterc9d4b0a2013-08-31 13:34:10 -07001388 unsigned int *statusp = this_cpu_ptr(&rcu_cpu_kthread_status);
1389 char work, *workp = this_cpu_ptr(&rcu_cpu_has_work);
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001390 int spincnt;
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001391
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001392 for (spincnt = 0; spincnt < 10; spincnt++) {
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04001393 trace_rcu_utilization(TPS("Start CPU kthread@rcu_wait"));
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001394 local_bh_disable();
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001395 *statusp = RCU_KTHREAD_RUNNING;
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001396 this_cpu_inc(rcu_cpu_kthread_loops);
1397 local_irq_disable();
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001398 work = *workp;
1399 *workp = 0;
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001400 local_irq_enable();
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001401 if (work)
1402 rcu_kthread_do_work();
1403 local_bh_enable();
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001404 if (*workp == 0) {
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04001405 trace_rcu_utilization(TPS("End CPU kthread@rcu_wait"));
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001406 *statusp = RCU_KTHREAD_WAITING;
1407 return;
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001408 }
1409 }
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001410 *statusp = RCU_KTHREAD_YIELDING;
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04001411 trace_rcu_utilization(TPS("Start CPU kthread@rcu_yield"));
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001412 schedule_timeout_interruptible(2);
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04001413 trace_rcu_utilization(TPS("End CPU kthread@rcu_yield"));
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001414 *statusp = RCU_KTHREAD_WAITING;
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001415}
1416
1417/*
1418 * Set the per-rcu_node kthread's affinity to cover all CPUs that are
1419 * served by the rcu_node in question. The CPU hotplug lock is still
1420 * held, so the value of rnp->qsmaskinit will be stable.
1421 *
1422 * We don't include outgoingcpu in the affinity set, use -1 if there is
1423 * no outgoing CPU. If there are no CPUs left in the affinity set,
1424 * this function allows the kthread to execute on any CPU.
1425 */
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001426static void rcu_boost_kthread_setaffinity(struct rcu_node *rnp, int outgoingcpu)
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001427{
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001428 struct task_struct *t = rnp->boost_kthread_task;
1429 unsigned long mask = rnp->qsmaskinit;
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001430 cpumask_var_t cm;
1431 int cpu;
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001432
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001433 if (!t)
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001434 return;
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001435 if (!zalloc_cpumask_var(&cm, GFP_KERNEL))
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001436 return;
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001437 for (cpu = rnp->grplo; cpu <= rnp->grphi; cpu++, mask >>= 1)
1438 if ((mask & 0x1) && cpu != outgoingcpu)
1439 cpumask_set_cpu(cpu, cm);
1440 if (cpumask_weight(cm) == 0) {
1441 cpumask_setall(cm);
1442 for (cpu = rnp->grplo; cpu <= rnp->grphi; cpu++)
1443 cpumask_clear_cpu(cpu, cm);
1444 WARN_ON_ONCE(cpumask_weight(cm) == 0);
1445 }
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001446 set_cpus_allowed_ptr(t, cm);
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001447 free_cpumask_var(cm);
1448}
1449
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001450static struct smp_hotplug_thread rcu_cpu_thread_spec = {
1451 .store = &rcu_cpu_kthread_task,
1452 .thread_should_run = rcu_cpu_kthread_should_run,
1453 .thread_fn = rcu_cpu_kthread,
1454 .thread_comm = "rcuc/%u",
1455 .setup = rcu_cpu_kthread_setup,
1456 .park = rcu_cpu_kthread_park,
1457};
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001458
1459/*
1460 * Spawn all kthreads -- called as soon as the scheduler is running.
1461 */
1462static int __init rcu_spawn_kthreads(void)
1463{
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001464 struct rcu_node *rnp;
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001465 int cpu;
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001466
Paul E. McKenneyb0d30412011-07-10 15:57:35 -07001467 rcu_scheduler_fully_active = 1;
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001468 for_each_possible_cpu(cpu)
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001469 per_cpu(rcu_cpu_has_work, cpu) = 0;
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001470 BUG_ON(smpboot_register_percpu_thread(&rcu_cpu_thread_spec));
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001471 rnp = rcu_get_root(rcu_state);
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001472 (void)rcu_spawn_one_boost_kthread(rcu_state, rnp);
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001473 if (NUM_RCU_NODES > 1) {
1474 rcu_for_each_leaf_node(rcu_state, rnp)
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001475 (void)rcu_spawn_one_boost_kthread(rcu_state, rnp);
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001476 }
1477 return 0;
1478}
1479early_initcall(rcu_spawn_kthreads);
1480
Paul Gortmaker49fb4c62013-06-19 14:52:21 -04001481static void rcu_prepare_kthreads(int cpu)
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001482{
1483 struct rcu_data *rdp = per_cpu_ptr(rcu_state->rda, cpu);
1484 struct rcu_node *rnp = rdp->mynode;
1485
1486 /* Fire up the incoming CPU's kthread and leaf rcu_node kthread. */
Paul E. McKenney62ab7072012-07-16 10:42:38 +00001487 if (rcu_scheduler_fully_active)
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001488 (void)rcu_spawn_one_boost_kthread(rcu_state, rnp);
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001489}
1490
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001491#else /* #ifdef CONFIG_RCU_BOOST */
1492
Paul E. McKenney1217ed12011-05-04 21:43:49 -07001493static void rcu_initiate_boost(struct rcu_node *rnp, unsigned long flags)
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001494{
Paul E. McKenney1217ed12011-05-04 21:43:49 -07001495 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001496}
1497
Paul E. McKenneya46e0892011-06-15 15:47:09 -07001498static void invoke_rcu_callbacks_kthread(void)
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001499{
Paul E. McKenneya46e0892011-06-15 15:47:09 -07001500 WARN_ON_ONCE(1);
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001501}
1502
Paul E. McKenneydff16722011-11-29 15:57:13 -08001503static bool rcu_is_callbacks_kthread(void)
1504{
1505 return false;
1506}
1507
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001508static void rcu_preempt_boost_start_gp(struct rcu_node *rnp)
1509{
1510}
1511
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00001512static void rcu_boost_kthread_setaffinity(struct rcu_node *rnp, int outgoingcpu)
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001513{
1514}
1515
Paul E. McKenneyb0d30412011-07-10 15:57:35 -07001516static int __init rcu_scheduler_really_started(void)
1517{
1518 rcu_scheduler_fully_active = 1;
1519 return 0;
1520}
1521early_initcall(rcu_scheduler_really_started);
1522
Paul Gortmaker49fb4c62013-06-19 14:52:21 -04001523static void rcu_prepare_kthreads(int cpu)
Paul E. McKenneyf8b7fc62011-06-16 08:26:32 -07001524{
1525}
1526
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001527#endif /* #else #ifdef CONFIG_RCU_BOOST */
1528
Paul E. McKenney8bd93a22010-02-22 17:04:59 -08001529#if !defined(CONFIG_RCU_FAST_NO_HZ)
1530
1531/*
1532 * Check to see if any future RCU-related work will need to be done
1533 * by the current CPU, even if none need be done immediately, returning
1534 * 1 if so. This function is part of the RCU implementation; it is -not-
1535 * an exported member of the RCU API.
1536 *
Paul E. McKenney7cb92492011-11-28 12:28:34 -08001537 * Because we not have RCU_FAST_NO_HZ, just check whether this CPU needs
1538 * any flavor of RCU.
Paul E. McKenney8bd93a22010-02-22 17:04:59 -08001539 */
Paul E. McKenneyffa83fb2013-11-17 19:27:16 -08001540#ifndef CONFIG_RCU_NOCB_CPU_ALL
Paul E. McKenneyaa9b16302012-05-10 16:41:44 -07001541int rcu_needs_cpu(int cpu, unsigned long *delta_jiffies)
Paul E. McKenney8bd93a22010-02-22 17:04:59 -08001542{
Paul E. McKenneyaa9b16302012-05-10 16:41:44 -07001543 *delta_jiffies = ULONG_MAX;
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001544 return rcu_cpu_has_callbacks(cpu, NULL);
Paul E. McKenney7cb92492011-11-28 12:28:34 -08001545}
Paul E. McKenneyffa83fb2013-11-17 19:27:16 -08001546#endif /* #ifndef CONFIG_RCU_NOCB_CPU_ALL */
Paul E. McKenney7cb92492011-11-28 12:28:34 -08001547
1548/*
1549 * Because we do not have RCU_FAST_NO_HZ, don't bother cleaning up
1550 * after it.
1551 */
1552static void rcu_cleanup_after_idle(int cpu)
1553{
1554}
1555
1556/*
Paul E. McKenneya858af22012-01-16 13:29:10 -08001557 * Do the idle-entry grace-period work, which, because CONFIG_RCU_FAST_NO_HZ=n,
Paul E. McKenneyaea1b352011-11-02 06:54:54 -07001558 * is nothing.
1559 */
1560static void rcu_prepare_for_idle(int cpu)
1561{
1562}
1563
Paul E. McKenneyc57afe82012-02-28 11:02:21 -08001564/*
1565 * Don't bother keeping a running count of the number of RCU callbacks
1566 * posted because CONFIG_RCU_FAST_NO_HZ=n.
1567 */
1568static void rcu_idle_count_callbacks_posted(void)
1569{
1570}
1571
Paul E. McKenney8bd93a22010-02-22 17:04:59 -08001572#else /* #if !defined(CONFIG_RCU_FAST_NO_HZ) */
1573
Paul E. McKenneyf23f7fa2011-11-30 15:41:14 -08001574/*
1575 * This code is invoked when a CPU goes idle, at which point we want
1576 * to have the CPU do everything required for RCU so that it can enter
1577 * the energy-efficient dyntick-idle mode. This is handled by a
1578 * state machine implemented by rcu_prepare_for_idle() below.
1579 *
1580 * The following three proprocessor symbols control this state machine:
1581 *
Paul E. McKenneyf23f7fa2011-11-30 15:41:14 -08001582 * RCU_IDLE_GP_DELAY gives the number of jiffies that a CPU is permitted
1583 * to sleep in dyntick-idle mode with RCU callbacks pending. This
1584 * is sized to be roughly one RCU grace period. Those energy-efficiency
1585 * benchmarkers who might otherwise be tempted to set this to a large
1586 * number, be warned: Setting RCU_IDLE_GP_DELAY too high can hang your
1587 * system. And if you are -that- concerned about energy efficiency,
1588 * just power the system down and be done with it!
Paul E. McKenney778d2502012-01-10 14:13:24 -08001589 * RCU_IDLE_LAZY_GP_DELAY gives the number of jiffies that a CPU is
1590 * permitted to sleep in dyntick-idle mode with only lazy RCU
1591 * callbacks pending. Setting this too high can OOM your system.
Paul E. McKenneyf23f7fa2011-11-30 15:41:14 -08001592 *
1593 * The values below work well in practice. If future workloads require
1594 * adjustment, they can be converted into kernel config parameters, though
1595 * making the state machine smarter might be a better option.
1596 */
Paul E. McKenneye84c48a2012-06-04 20:45:10 -07001597#define RCU_IDLE_GP_DELAY 4 /* Roughly one grace period. */
Paul E. McKenney778d2502012-01-10 14:13:24 -08001598#define RCU_IDLE_LAZY_GP_DELAY (6 * HZ) /* Roughly six seconds. */
Paul E. McKenneyf23f7fa2011-11-30 15:41:14 -08001599
Paul E. McKenney5e44ce32012-12-12 12:35:29 -08001600static int rcu_idle_gp_delay = RCU_IDLE_GP_DELAY;
1601module_param(rcu_idle_gp_delay, int, 0644);
1602static int rcu_idle_lazy_gp_delay = RCU_IDLE_LAZY_GP_DELAY;
1603module_param(rcu_idle_lazy_gp_delay, int, 0644);
1604
Thomas Gleixnerd689fe22013-11-13 21:01:57 +01001605extern int tick_nohz_active;
Paul E. McKenney9d2ad242012-06-24 10:15:02 -07001606
Paul E. McKenney8bd93a22010-02-22 17:04:59 -08001607/*
Paul E. McKenneyc2298282013-08-25 21:20:47 -07001608 * Try to advance callbacks for all flavors of RCU on the current CPU, but
1609 * only if it has been awhile since the last time we did so. Afterwards,
1610 * if there are any callbacks ready for immediate invocation, return true.
Paul E. McKenney486e2592012-01-06 14:11:30 -08001611 */
Paul E. McKenneyf1f399d2013-11-17 21:08:07 -08001612static bool __maybe_unused rcu_try_advance_all_cbs(void)
Paul E. McKenney486e2592012-01-06 14:11:30 -08001613{
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001614 bool cbs_ready = false;
1615 struct rcu_data *rdp;
Paul E. McKenneyc2298282013-08-25 21:20:47 -07001616 struct rcu_dynticks *rdtp = this_cpu_ptr(&rcu_dynticks);
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001617 struct rcu_node *rnp;
1618 struct rcu_state *rsp;
Paul E. McKenney486e2592012-01-06 14:11:30 -08001619
Paul E. McKenneyc2298282013-08-25 21:20:47 -07001620 /* Exit early if we advanced recently. */
1621 if (jiffies == rdtp->last_advance_all)
1622 return 0;
1623 rdtp->last_advance_all = jiffies;
1624
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001625 for_each_rcu_flavor(rsp) {
1626 rdp = this_cpu_ptr(rsp->rda);
1627 rnp = rdp->mynode;
Paul E. McKenney486e2592012-01-06 14:11:30 -08001628
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001629 /*
1630 * Don't bother checking unless a grace period has
1631 * completed since we last checked and there are
1632 * callbacks not yet ready to invoke.
1633 */
1634 if (rdp->completed != rnp->completed &&
1635 rdp->nxttail[RCU_DONE_TAIL] != rdp->nxttail[RCU_NEXT_TAIL])
Paul E. McKenney470716f2013-03-19 11:32:11 -07001636 note_gp_changes(rsp, rdp);
Paul E. McKenney486e2592012-01-06 14:11:30 -08001637
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001638 if (cpu_has_callbacks_ready_to_invoke(rdp))
1639 cbs_ready = true;
1640 }
1641 return cbs_ready;
Paul E. McKenney486e2592012-01-06 14:11:30 -08001642}
1643
1644/*
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001645 * Allow the CPU to enter dyntick-idle mode unless it has callbacks ready
1646 * to invoke. If the CPU has callbacks, try to advance them. Tell the
1647 * caller to set the timeout based on whether or not there are non-lazy
1648 * callbacks.
Paul E. McKenneyaa9b16302012-05-10 16:41:44 -07001649 *
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001650 * The caller must have disabled interrupts.
Paul E. McKenneyaa9b16302012-05-10 16:41:44 -07001651 */
Paul E. McKenneyffa83fb2013-11-17 19:27:16 -08001652#ifndef CONFIG_RCU_NOCB_CPU_ALL
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001653int rcu_needs_cpu(int cpu, unsigned long *dj)
Paul E. McKenneyaa9b16302012-05-10 16:41:44 -07001654{
1655 struct rcu_dynticks *rdtp = &per_cpu(rcu_dynticks, cpu);
1656
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001657 /* Snapshot to detect later posting of non-lazy callback. */
1658 rdtp->nonlazy_posted_snap = rdtp->nonlazy_posted;
1659
Paul E. McKenneyaa9b16302012-05-10 16:41:44 -07001660 /* If no callbacks, RCU doesn't need the CPU. */
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001661 if (!rcu_cpu_has_callbacks(cpu, &rdtp->all_lazy)) {
1662 *dj = ULONG_MAX;
Paul E. McKenneyaa9b16302012-05-10 16:41:44 -07001663 return 0;
1664 }
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001665
1666 /* Attempt to advance callbacks. */
1667 if (rcu_try_advance_all_cbs()) {
1668 /* Some ready to invoke, so initiate later invocation. */
1669 invoke_rcu_core();
Paul E. McKenneyaa9b16302012-05-10 16:41:44 -07001670 return 1;
1671 }
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001672 rdtp->last_accelerate = jiffies;
1673
1674 /* Request timer delay depending on laziness, and round. */
Paul E. McKenney6faf7282013-05-13 06:53:37 -07001675 if (!rdtp->all_lazy) {
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001676 *dj = round_up(rcu_idle_gp_delay + jiffies,
1677 rcu_idle_gp_delay) - jiffies;
Paul E. McKenneye84c48a2012-06-04 20:45:10 -07001678 } else {
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001679 *dj = round_jiffies(rcu_idle_lazy_gp_delay + jiffies) - jiffies;
Paul E. McKenneye84c48a2012-06-04 20:45:10 -07001680 }
Paul E. McKenneyaa9b16302012-05-10 16:41:44 -07001681 return 0;
1682}
Paul E. McKenneyffa83fb2013-11-17 19:27:16 -08001683#endif /* #ifndef CONFIG_RCU_NOCB_CPU_ALL */
Paul E. McKenneyaa9b16302012-05-10 16:41:44 -07001684
1685/*
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001686 * Prepare a CPU for idle from an RCU perspective. The first major task
1687 * is to sense whether nohz mode has been enabled or disabled via sysfs.
1688 * The second major task is to check to see if a non-lazy callback has
1689 * arrived at a CPU that previously had only lazy callbacks. The third
1690 * major task is to accelerate (that is, assign grace-period numbers to)
1691 * any recently arrived callbacks.
Paul E. McKenneyaea1b352011-11-02 06:54:54 -07001692 *
1693 * The caller must have disabled interrupts.
Paul E. McKenney8bd93a22010-02-22 17:04:59 -08001694 */
Paul E. McKenneyaea1b352011-11-02 06:54:54 -07001695static void rcu_prepare_for_idle(int cpu)
Paul E. McKenney8bd93a22010-02-22 17:04:59 -08001696{
Paul E. McKenneyf1f399d2013-11-17 21:08:07 -08001697#ifndef CONFIG_RCU_NOCB_CPU_ALL
Paul E. McKenney48a76392014-03-11 13:02:16 -07001698 bool needwake;
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001699 struct rcu_data *rdp;
Paul E. McKenney5955f7e2012-05-09 12:07:05 -07001700 struct rcu_dynticks *rdtp = &per_cpu(rcu_dynticks, cpu);
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001701 struct rcu_node *rnp;
1702 struct rcu_state *rsp;
Paul E. McKenney9d2ad242012-06-24 10:15:02 -07001703 int tne;
1704
1705 /* Handle nohz enablement switches conservatively. */
Thomas Gleixnerd689fe22013-11-13 21:01:57 +01001706 tne = ACCESS_ONCE(tick_nohz_active);
Paul E. McKenney9d2ad242012-06-24 10:15:02 -07001707 if (tne != rdtp->tick_nohz_enabled_snap) {
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001708 if (rcu_cpu_has_callbacks(cpu, NULL))
Paul E. McKenney9d2ad242012-06-24 10:15:02 -07001709 invoke_rcu_core(); /* force nohz to see update. */
1710 rdtp->tick_nohz_enabled_snap = tne;
1711 return;
1712 }
1713 if (!tne)
1714 return;
Paul E. McKenneyf511fc62012-03-15 12:16:26 -07001715
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001716 /* If this is a no-CBs CPU, no callbacks, just return. */
Linus Torvalds534c97b2013-05-05 13:23:27 -07001717 if (rcu_is_nocb_cpu(cpu))
Paul E. McKenney9a0c6fe2012-06-28 12:33:51 -07001718 return;
Paul E. McKenney9a0c6fe2012-06-28 12:33:51 -07001719
Paul E. McKenney3084f2f2011-11-22 17:07:11 -08001720 /*
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001721 * If a non-lazy callback arrived at a CPU having only lazy
1722 * callbacks, invoke RCU core for the side-effect of recalculating
1723 * idle duration on re-entry to idle.
Paul E. McKenneyc57afe82012-02-28 11:02:21 -08001724 */
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001725 if (rdtp->all_lazy &&
1726 rdtp->nonlazy_posted != rdtp->nonlazy_posted_snap) {
Paul E. McKenneyc337f8f2013-09-05 17:02:11 -07001727 rdtp->all_lazy = false;
1728 rdtp->nonlazy_posted_snap = rdtp->nonlazy_posted;
Paul E. McKenneya46e0892011-06-15 15:47:09 -07001729 invoke_rcu_core();
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001730 return;
1731 }
1732
1733 /*
1734 * If we have not yet accelerated this jiffy, accelerate all
1735 * callbacks on this CPU.
1736 */
1737 if (rdtp->last_accelerate == jiffies)
1738 return;
1739 rdtp->last_accelerate = jiffies;
1740 for_each_rcu_flavor(rsp) {
1741 rdp = per_cpu_ptr(rsp->rda, cpu);
1742 if (!*rdp->nxttail[RCU_DONE_TAIL])
1743 continue;
1744 rnp = rdp->mynode;
1745 raw_spin_lock(&rnp->lock); /* irqs already disabled. */
Paul E. McKenney6303b9c2013-12-11 13:59:10 -08001746 smp_mb__after_unlock_lock();
Paul E. McKenney48a76392014-03-11 13:02:16 -07001747 needwake = rcu_accelerate_cbs(rsp, rnp, rdp);
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001748 raw_spin_unlock(&rnp->lock); /* irqs remain disabled. */
Paul E. McKenney48a76392014-03-11 13:02:16 -07001749 if (needwake)
1750 rcu_gp_kthread_wake(rsp);
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001751 }
Paul E. McKenneyf1f399d2013-11-17 21:08:07 -08001752#endif /* #ifndef CONFIG_RCU_NOCB_CPU_ALL */
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001753}
1754
1755/*
1756 * Clean up for exit from idle. Attempt to advance callbacks based on
1757 * any grace periods that elapsed while the CPU was idle, and if any
1758 * callbacks are now ready to invoke, initiate invocation.
1759 */
1760static void rcu_cleanup_after_idle(int cpu)
1761{
Paul E. McKenneyf1f399d2013-11-17 21:08:07 -08001762#ifndef CONFIG_RCU_NOCB_CPU_ALL
Linus Torvalds534c97b2013-05-05 13:23:27 -07001763 if (rcu_is_nocb_cpu(cpu))
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001764 return;
Paul E. McKenney7a497c92013-08-22 18:16:16 -07001765 if (rcu_try_advance_all_cbs())
1766 invoke_rcu_core();
Paul E. McKenneyf1f399d2013-11-17 21:08:07 -08001767#endif /* #ifndef CONFIG_RCU_NOCB_CPU_ALL */
Paul E. McKenney8bd93a22010-02-22 17:04:59 -08001768}
1769
Paul E. McKenneyc57afe82012-02-28 11:02:21 -08001770/*
Paul E. McKenney98248a02012-05-03 15:38:10 -07001771 * Keep a running count of the number of non-lazy callbacks posted
1772 * on this CPU. This running counter (which is never decremented) allows
1773 * rcu_prepare_for_idle() to detect when something out of the idle loop
1774 * posts a callback, even if an equal number of callbacks are invoked.
1775 * Of course, callbacks should only be posted from within a trace event
1776 * designed to be called from idle or from within RCU_NONIDLE().
Paul E. McKenneyc57afe82012-02-28 11:02:21 -08001777 */
1778static void rcu_idle_count_callbacks_posted(void)
1779{
Paul E. McKenney5955f7e2012-05-09 12:07:05 -07001780 __this_cpu_add(rcu_dynticks.nonlazy_posted, 1);
Paul E. McKenneyc57afe82012-02-28 11:02:21 -08001781}
1782
Paul E. McKenneyb626c1b2012-06-11 17:39:43 -07001783/*
1784 * Data for flushing lazy RCU callbacks at OOM time.
1785 */
1786static atomic_t oom_callback_count;
1787static DECLARE_WAIT_QUEUE_HEAD(oom_callback_wq);
1788
1789/*
1790 * RCU OOM callback -- decrement the outstanding count and deliver the
1791 * wake-up if we are the last one.
1792 */
1793static void rcu_oom_callback(struct rcu_head *rhp)
1794{
1795 if (atomic_dec_and_test(&oom_callback_count))
1796 wake_up(&oom_callback_wq);
1797}
1798
1799/*
1800 * Post an rcu_oom_notify callback on the current CPU if it has at
1801 * least one lazy callback. This will unnecessarily post callbacks
1802 * to CPUs that already have a non-lazy callback at the end of their
1803 * callback list, but this is an infrequent operation, so accept some
1804 * extra overhead to keep things simple.
1805 */
1806static void rcu_oom_notify_cpu(void *unused)
1807{
1808 struct rcu_state *rsp;
1809 struct rcu_data *rdp;
1810
1811 for_each_rcu_flavor(rsp) {
1812 rdp = __this_cpu_ptr(rsp->rda);
1813 if (rdp->qlen_lazy != 0) {
1814 atomic_inc(&oom_callback_count);
1815 rsp->call(&rdp->oom_head, rcu_oom_callback);
1816 }
1817 }
1818}
1819
1820/*
1821 * If low on memory, ensure that each CPU has a non-lazy callback.
1822 * This will wake up CPUs that have only lazy callbacks, in turn
1823 * ensuring that they free up the corresponding memory in a timely manner.
1824 * Because an uncertain amount of memory will be freed in some uncertain
1825 * timeframe, we do not claim to have freed anything.
1826 */
1827static int rcu_oom_notify(struct notifier_block *self,
1828 unsigned long notused, void *nfreed)
1829{
1830 int cpu;
1831
1832 /* Wait for callbacks from earlier instance to complete. */
1833 wait_event(oom_callback_wq, atomic_read(&oom_callback_count) == 0);
Paul E. McKenney78e4bc32013-09-24 15:04:06 -07001834 smp_mb(); /* Ensure callback reuse happens after callback invocation. */
Paul E. McKenneyb626c1b2012-06-11 17:39:43 -07001835
1836 /*
1837 * Prevent premature wakeup: ensure that all increments happen
1838 * before there is a chance of the counter reaching zero.
1839 */
1840 atomic_set(&oom_callback_count, 1);
1841
1842 get_online_cpus();
1843 for_each_online_cpu(cpu) {
1844 smp_call_function_single(cpu, rcu_oom_notify_cpu, NULL, 1);
1845 cond_resched();
1846 }
1847 put_online_cpus();
1848
1849 /* Unconditionally decrement: no need to wake ourselves up. */
1850 atomic_dec(&oom_callback_count);
1851
1852 return NOTIFY_OK;
1853}
1854
1855static struct notifier_block rcu_oom_nb = {
1856 .notifier_call = rcu_oom_notify
1857};
1858
1859static int __init rcu_register_oom_notifier(void)
1860{
1861 register_oom_notifier(&rcu_oom_nb);
1862 return 0;
1863}
1864early_initcall(rcu_register_oom_notifier);
1865
Paul E. McKenney8bd93a22010-02-22 17:04:59 -08001866#endif /* #else #if !defined(CONFIG_RCU_FAST_NO_HZ) */
Paul E. McKenneya858af22012-01-16 13:29:10 -08001867
1868#ifdef CONFIG_RCU_CPU_STALL_INFO
1869
1870#ifdef CONFIG_RCU_FAST_NO_HZ
1871
1872static void print_cpu_stall_fast_no_hz(char *cp, int cpu)
1873{
Paul E. McKenney5955f7e2012-05-09 12:07:05 -07001874 struct rcu_dynticks *rdtp = &per_cpu(rcu_dynticks, cpu);
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001875 unsigned long nlpd = rdtp->nonlazy_posted - rdtp->nonlazy_posted_snap;
Paul E. McKenneya858af22012-01-16 13:29:10 -08001876
Paul E. McKenneyc0f4dfd2012-12-28 11:30:36 -08001877 sprintf(cp, "last_accelerate: %04lx/%04lx, nonlazy_posted: %ld, %c%c",
1878 rdtp->last_accelerate & 0xffff, jiffies & 0xffff,
1879 ulong2long(nlpd),
1880 rdtp->all_lazy ? 'L' : '.',
1881 rdtp->tick_nohz_enabled_snap ? '.' : 'D');
Paul E. McKenneya858af22012-01-16 13:29:10 -08001882}
1883
1884#else /* #ifdef CONFIG_RCU_FAST_NO_HZ */
1885
1886static void print_cpu_stall_fast_no_hz(char *cp, int cpu)
1887{
Carsten Emde1c17e4d2012-06-19 10:43:16 +02001888 *cp = '\0';
Paul E. McKenneya858af22012-01-16 13:29:10 -08001889}
1890
1891#endif /* #else #ifdef CONFIG_RCU_FAST_NO_HZ */
1892
1893/* Initiate the stall-info list. */
1894static void print_cpu_stall_info_begin(void)
1895{
Paul E. McKenneyefc151c2013-03-18 16:24:11 -07001896 pr_cont("\n");
Paul E. McKenneya858af22012-01-16 13:29:10 -08001897}
1898
1899/*
1900 * Print out diagnostic information for the specified stalled CPU.
1901 *
1902 * If the specified CPU is aware of the current RCU grace period
1903 * (flavor specified by rsp), then print the number of scheduling
1904 * clock interrupts the CPU has taken during the time that it has
1905 * been aware. Otherwise, print the number of RCU grace periods
1906 * that this CPU is ignorant of, for example, "1" if the CPU was
1907 * aware of the previous grace period.
1908 *
1909 * Also print out idle and (if CONFIG_RCU_FAST_NO_HZ) idle-entry info.
1910 */
1911static void print_cpu_stall_info(struct rcu_state *rsp, int cpu)
1912{
1913 char fast_no_hz[72];
1914 struct rcu_data *rdp = per_cpu_ptr(rsp->rda, cpu);
1915 struct rcu_dynticks *rdtp = rdp->dynticks;
1916 char *ticks_title;
1917 unsigned long ticks_value;
1918
1919 if (rsp->gpnum == rdp->gpnum) {
1920 ticks_title = "ticks this GP";
1921 ticks_value = rdp->ticks_this_gp;
1922 } else {
1923 ticks_title = "GPs behind";
1924 ticks_value = rsp->gpnum - rdp->gpnum;
1925 }
1926 print_cpu_stall_fast_no_hz(fast_no_hz, cpu);
Paul E. McKenneyefc151c2013-03-18 16:24:11 -07001927 pr_err("\t%d: (%lu %s) idle=%03x/%llx/%d softirq=%u/%u %s\n",
Paul E. McKenneya858af22012-01-16 13:29:10 -08001928 cpu, ticks_value, ticks_title,
1929 atomic_read(&rdtp->dynticks) & 0xfff,
1930 rdtp->dynticks_nesting, rdtp->dynticks_nmi_nesting,
Paul E. McKenney62310692013-03-06 13:37:09 -08001931 rdp->softirq_snap, kstat_softirqs_cpu(RCU_SOFTIRQ, cpu),
Paul E. McKenneya858af22012-01-16 13:29:10 -08001932 fast_no_hz);
1933}
1934
1935/* Terminate the stall-info list. */
1936static void print_cpu_stall_info_end(void)
1937{
Paul E. McKenneyefc151c2013-03-18 16:24:11 -07001938 pr_err("\t");
Paul E. McKenneya858af22012-01-16 13:29:10 -08001939}
1940
1941/* Zero ->ticks_this_gp for all flavors of RCU. */
1942static void zero_cpu_stall_ticks(struct rcu_data *rdp)
1943{
1944 rdp->ticks_this_gp = 0;
Paul E. McKenney62310692013-03-06 13:37:09 -08001945 rdp->softirq_snap = kstat_softirqs_cpu(RCU_SOFTIRQ, smp_processor_id());
Paul E. McKenneya858af22012-01-16 13:29:10 -08001946}
1947
1948/* Increment ->ticks_this_gp for all flavors of RCU. */
1949static void increment_cpu_stall_ticks(void)
1950{
Paul E. McKenney115f7a72012-08-10 13:55:03 -07001951 struct rcu_state *rsp;
1952
1953 for_each_rcu_flavor(rsp)
1954 __this_cpu_ptr(rsp->rda)->ticks_this_gp++;
Paul E. McKenneya858af22012-01-16 13:29:10 -08001955}
1956
1957#else /* #ifdef CONFIG_RCU_CPU_STALL_INFO */
1958
1959static void print_cpu_stall_info_begin(void)
1960{
Paul E. McKenneyefc151c2013-03-18 16:24:11 -07001961 pr_cont(" {");
Paul E. McKenneya858af22012-01-16 13:29:10 -08001962}
1963
1964static void print_cpu_stall_info(struct rcu_state *rsp, int cpu)
1965{
Paul E. McKenneyefc151c2013-03-18 16:24:11 -07001966 pr_cont(" %d", cpu);
Paul E. McKenneya858af22012-01-16 13:29:10 -08001967}
1968
1969static void print_cpu_stall_info_end(void)
1970{
Paul E. McKenneyefc151c2013-03-18 16:24:11 -07001971 pr_cont("} ");
Paul E. McKenneya858af22012-01-16 13:29:10 -08001972}
1973
1974static void zero_cpu_stall_ticks(struct rcu_data *rdp)
1975{
1976}
1977
1978static void increment_cpu_stall_ticks(void)
1979{
1980}
1981
1982#endif /* #else #ifdef CONFIG_RCU_CPU_STALL_INFO */
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07001983
1984#ifdef CONFIG_RCU_NOCB_CPU
1985
1986/*
1987 * Offload callback processing from the boot-time-specified set of CPUs
1988 * specified by rcu_nocb_mask. For each CPU in the set, there is a
1989 * kthread created that pulls the callbacks from the corresponding CPU,
1990 * waits for a grace period to elapse, and invokes the callbacks.
1991 * The no-CBs CPUs do a wake_up() on their kthread when they insert
1992 * a callback into any empty list, unless the rcu_nocb_poll boot parameter
1993 * has been specified, in which case each kthread actively polls its
1994 * CPU. (Which isn't so great for energy efficiency, but which does
1995 * reduce RCU's overhead on that CPU.)
1996 *
1997 * This is intended to be used in conjunction with Frederic Weisbecker's
1998 * adaptive-idle work, which would seriously reduce OS jitter on CPUs
1999 * running CPU-bound user-mode computations.
2000 *
2001 * Offloading of callback processing could also in theory be used as
2002 * an energy-efficiency measure because CPUs with no RCU callbacks
2003 * queued are more aggressive about entering dyntick-idle mode.
2004 */
2005
2006
2007/* Parse the boot-time rcu_nocb_mask CPU list from the kernel parameters. */
2008static int __init rcu_nocb_setup(char *str)
2009{
2010 alloc_bootmem_cpumask_var(&rcu_nocb_mask);
2011 have_rcu_nocb_mask = true;
2012 cpulist_parse(str, rcu_nocb_mask);
2013 return 1;
2014}
2015__setup("rcu_nocbs=", rcu_nocb_setup);
2016
Paul Gortmaker1b0048a2012-12-20 13:19:22 -08002017static int __init parse_rcu_nocb_poll(char *arg)
2018{
2019 rcu_nocb_poll = 1;
2020 return 0;
2021}
2022early_param("rcu_nocb_poll", parse_rcu_nocb_poll);
2023
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002024/*
Paul E. McKenney0446be42012-12-30 15:21:01 -08002025 * Wake up any no-CBs CPUs' kthreads that were waiting on the just-ended
2026 * grace period.
Paul E. McKenneydae6e642013-02-10 20:48:58 -08002027 */
Paul E. McKenney0446be42012-12-30 15:21:01 -08002028static void rcu_nocb_gp_cleanup(struct rcu_state *rsp, struct rcu_node *rnp)
Paul E. McKenneydae6e642013-02-10 20:48:58 -08002029{
Paul E. McKenney0446be42012-12-30 15:21:01 -08002030 wake_up_all(&rnp->nocb_gp_wq[rnp->completed & 0x1]);
Paul E. McKenneydae6e642013-02-10 20:48:58 -08002031}
2032
2033/*
Paul E. McKenney8b425aa82012-12-30 13:06:35 -08002034 * Set the root rcu_node structure's ->need_future_gp field
Paul E. McKenneydae6e642013-02-10 20:48:58 -08002035 * based on the sum of those of all rcu_node structures. This does
2036 * double-count the root rcu_node structure's requests, but this
2037 * is necessary to handle the possibility of a rcu_nocb_kthread()
2038 * having awakened during the time that the rcu_node structures
2039 * were being updated for the end of the previous grace period.
2040 */
2041static void rcu_nocb_gp_set(struct rcu_node *rnp, int nrq)
2042{
Paul E. McKenney8b425aa82012-12-30 13:06:35 -08002043 rnp->need_future_gp[(rnp->completed + 1) & 0x1] += nrq;
Paul E. McKenneydae6e642013-02-10 20:48:58 -08002044}
2045
2046static void rcu_init_one_nocb(struct rcu_node *rnp)
2047{
2048 init_waitqueue_head(&rnp->nocb_gp_wq[0]);
2049 init_waitqueue_head(&rnp->nocb_gp_wq[1]);
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002050}
2051
Paul E. McKenney2f33b512013-11-17 18:25:48 -08002052#ifndef CONFIG_RCU_NOCB_CPU_ALL
Liu Ping Fan24342c92014-02-24 06:18:09 -08002053/* Is the specified CPU a no-CBs CPU? */
Frederic Weisbeckerd1e43fa2013-03-26 23:47:24 +01002054bool rcu_is_nocb_cpu(int cpu)
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002055{
2056 if (have_rcu_nocb_mask)
2057 return cpumask_test_cpu(cpu, rcu_nocb_mask);
2058 return false;
2059}
Paul E. McKenney2f33b512013-11-17 18:25:48 -08002060#endif /* #ifndef CONFIG_RCU_NOCB_CPU_ALL */
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002061
2062/*
2063 * Enqueue the specified string of rcu_head structures onto the specified
2064 * CPU's no-CBs lists. The CPU is specified by rdp, the head of the
2065 * string by rhp, and the tail of the string by rhtp. The non-lazy/lazy
2066 * counts are supplied by rhcount and rhcount_lazy.
2067 *
2068 * If warranted, also wake up the kthread servicing this CPUs queues.
2069 */
2070static void __call_rcu_nocb_enqueue(struct rcu_data *rdp,
2071 struct rcu_head *rhp,
2072 struct rcu_head **rhtp,
Paul E. McKenney96d3fd02013-10-04 14:33:34 -07002073 int rhcount, int rhcount_lazy,
2074 unsigned long flags)
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002075{
2076 int len;
2077 struct rcu_head **old_rhpp;
2078 struct task_struct *t;
2079
2080 /* Enqueue the callback on the nocb list and update counts. */
2081 old_rhpp = xchg(&rdp->nocb_tail, rhtp);
2082 ACCESS_ONCE(*old_rhpp) = rhp;
2083 atomic_long_add(rhcount, &rdp->nocb_q_count);
2084 atomic_long_add(rhcount_lazy, &rdp->nocb_q_count_lazy);
2085
2086 /* If we are not being polled and there is a kthread, awaken it ... */
2087 t = ACCESS_ONCE(rdp->nocb_kthread);
Paul E. McKenney25e03a72013-10-15 12:47:04 -07002088 if (rcu_nocb_poll || !t) {
Paul E. McKenney9261dd02013-08-14 16:24:26 -07002089 trace_rcu_nocb_wake(rdp->rsp->name, rdp->cpu,
2090 TPS("WakeNotPoll"));
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002091 return;
Paul E. McKenney9261dd02013-08-14 16:24:26 -07002092 }
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002093 len = atomic_long_read(&rdp->nocb_q_count);
2094 if (old_rhpp == &rdp->nocb_head) {
Paul E. McKenney96d3fd02013-10-04 14:33:34 -07002095 if (!irqs_disabled_flags(flags)) {
2096 wake_up(&rdp->nocb_wq); /* ... if queue was empty ... */
2097 trace_rcu_nocb_wake(rdp->rsp->name, rdp->cpu,
2098 TPS("WakeEmpty"));
2099 } else {
2100 rdp->nocb_defer_wakeup = true;
2101 trace_rcu_nocb_wake(rdp->rsp->name, rdp->cpu,
2102 TPS("WakeEmptyIsDeferred"));
2103 }
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002104 rdp->qlen_last_fqs_check = 0;
2105 } else if (len > rdp->qlen_last_fqs_check + qhimark) {
2106 wake_up_process(t); /* ... or if many callbacks queued. */
2107 rdp->qlen_last_fqs_check = LONG_MAX / 2;
Paul E. McKenney9261dd02013-08-14 16:24:26 -07002108 trace_rcu_nocb_wake(rdp->rsp->name, rdp->cpu, TPS("WakeOvf"));
2109 } else {
2110 trace_rcu_nocb_wake(rdp->rsp->name, rdp->cpu, TPS("WakeNot"));
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002111 }
2112 return;
2113}
2114
2115/*
2116 * This is a helper for __call_rcu(), which invokes this when the normal
2117 * callback queue is inoperable. If this is not a no-CBs CPU, this
2118 * function returns failure back to __call_rcu(), which can complain
2119 * appropriately.
2120 *
2121 * Otherwise, this function queues the callback where the corresponding
2122 * "rcuo" kthread can find it.
2123 */
2124static bool __call_rcu_nocb(struct rcu_data *rdp, struct rcu_head *rhp,
Paul E. McKenney96d3fd02013-10-04 14:33:34 -07002125 bool lazy, unsigned long flags)
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002126{
2127
Frederic Weisbeckerd1e43fa2013-03-26 23:47:24 +01002128 if (!rcu_is_nocb_cpu(rdp->cpu))
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002129 return 0;
Paul E. McKenney96d3fd02013-10-04 14:33:34 -07002130 __call_rcu_nocb_enqueue(rdp, rhp, &rhp->next, 1, lazy, flags);
Paul E. McKenney21e7a602013-02-09 17:42:16 -08002131 if (__is_kfree_rcu_offset((unsigned long)rhp->func))
2132 trace_rcu_kfree_callback(rdp->rsp->name, rhp,
2133 (unsigned long)rhp->func,
Paul E. McKenney756cbf62013-08-15 10:12:12 -07002134 -atomic_long_read(&rdp->nocb_q_count_lazy),
2135 -atomic_long_read(&rdp->nocb_q_count));
Paul E. McKenney21e7a602013-02-09 17:42:16 -08002136 else
2137 trace_rcu_callback(rdp->rsp->name, rhp,
Paul E. McKenney756cbf62013-08-15 10:12:12 -07002138 -atomic_long_read(&rdp->nocb_q_count_lazy),
2139 -atomic_long_read(&rdp->nocb_q_count));
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002140 return 1;
2141}
2142
2143/*
2144 * Adopt orphaned callbacks on a no-CBs CPU, or return 0 if this is
2145 * not a no-CBs CPU.
2146 */
2147static bool __maybe_unused rcu_nocb_adopt_orphan_cbs(struct rcu_state *rsp,
Paul E. McKenney96d3fd02013-10-04 14:33:34 -07002148 struct rcu_data *rdp,
2149 unsigned long flags)
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002150{
2151 long ql = rsp->qlen;
2152 long qll = rsp->qlen_lazy;
2153
2154 /* If this is not a no-CBs CPU, tell the caller to do it the old way. */
Frederic Weisbeckerd1e43fa2013-03-26 23:47:24 +01002155 if (!rcu_is_nocb_cpu(smp_processor_id()))
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002156 return 0;
2157 rsp->qlen = 0;
2158 rsp->qlen_lazy = 0;
2159
2160 /* First, enqueue the donelist, if any. This preserves CB ordering. */
2161 if (rsp->orphan_donelist != NULL) {
2162 __call_rcu_nocb_enqueue(rdp, rsp->orphan_donelist,
Paul E. McKenney96d3fd02013-10-04 14:33:34 -07002163 rsp->orphan_donetail, ql, qll, flags);
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002164 ql = qll = 0;
2165 rsp->orphan_donelist = NULL;
2166 rsp->orphan_donetail = &rsp->orphan_donelist;
2167 }
2168 if (rsp->orphan_nxtlist != NULL) {
2169 __call_rcu_nocb_enqueue(rdp, rsp->orphan_nxtlist,
Paul E. McKenney96d3fd02013-10-04 14:33:34 -07002170 rsp->orphan_nxttail, ql, qll, flags);
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002171 ql = qll = 0;
2172 rsp->orphan_nxtlist = NULL;
2173 rsp->orphan_nxttail = &rsp->orphan_nxtlist;
2174 }
2175 return 1;
2176}
2177
2178/*
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002179 * If necessary, kick off a new grace period, and either way wait
2180 * for a subsequent grace period to complete.
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002181 */
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002182static void rcu_nocb_wait_gp(struct rcu_data *rdp)
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002183{
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002184 unsigned long c;
Paul E. McKenneydae6e642013-02-10 20:48:58 -08002185 bool d;
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002186 unsigned long flags;
Paul E. McKenney48a76392014-03-11 13:02:16 -07002187 bool needwake;
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002188 struct rcu_node *rnp = rdp->mynode;
2189
2190 raw_spin_lock_irqsave(&rnp->lock, flags);
Paul E. McKenney6303b9c2013-12-11 13:59:10 -08002191 smp_mb__after_unlock_lock();
Paul E. McKenney48a76392014-03-11 13:02:16 -07002192 needwake = rcu_start_future_gp(rnp, rdp, &c);
Paul E. McKenney0446be42012-12-30 15:21:01 -08002193 raw_spin_unlock_irqrestore(&rnp->lock, flags);
Paul E. McKenney48a76392014-03-11 13:02:16 -07002194 if (needwake)
2195 rcu_gp_kthread_wake(rdp->rsp);
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002196
2197 /*
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002198 * Wait for the grace period. Do so interruptibly to avoid messing
2199 * up the load average.
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002200 */
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04002201 trace_rcu_future_gp(rnp, rdp, c, TPS("StartWait"));
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002202 for (;;) {
Paul E. McKenneydae6e642013-02-10 20:48:58 -08002203 wait_event_interruptible(
2204 rnp->nocb_gp_wq[c & 0x1],
2205 (d = ULONG_CMP_GE(ACCESS_ONCE(rnp->completed), c)));
2206 if (likely(d))
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002207 break;
Paul E. McKenneydae6e642013-02-10 20:48:58 -08002208 flush_signals(current);
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04002209 trace_rcu_future_gp(rnp, rdp, c, TPS("ResumeWait"));
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002210 }
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04002211 trace_rcu_future_gp(rnp, rdp, c, TPS("EndWait"));
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002212 smp_mb(); /* Ensure that CB invocation happens after GP end. */
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002213}
2214
2215/*
2216 * Per-rcu_data kthread, but only for no-CBs CPUs. Each kthread invokes
2217 * callbacks queued by the corresponding no-CBs CPU.
2218 */
2219static int rcu_nocb_kthread(void *arg)
2220{
2221 int c, cl;
Paul E. McKenney69a79bb2013-08-15 13:23:23 -07002222 bool firsttime = 1;
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002223 struct rcu_head *list;
2224 struct rcu_head *next;
2225 struct rcu_head **tail;
2226 struct rcu_data *rdp = arg;
2227
2228 /* Each pass through this loop invokes one batch of callbacks */
2229 for (;;) {
2230 /* If not polling, wait for next batch of callbacks. */
Paul E. McKenney69a79bb2013-08-15 13:23:23 -07002231 if (!rcu_nocb_poll) {
2232 trace_rcu_nocb_wake(rdp->rsp->name, rdp->cpu,
2233 TPS("Sleep"));
Paul Gortmaker353af9c2012-12-20 09:35:02 -08002234 wait_event_interruptible(rdp->nocb_wq, rdp->nocb_head);
Paul E. McKenney78e4bc32013-09-24 15:04:06 -07002235 /* Memory barrier provide by xchg() below. */
Paul E. McKenney69a79bb2013-08-15 13:23:23 -07002236 } else if (firsttime) {
2237 firsttime = 0;
2238 trace_rcu_nocb_wake(rdp->rsp->name, rdp->cpu,
2239 TPS("Poll"));
2240 }
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002241 list = ACCESS_ONCE(rdp->nocb_head);
2242 if (!list) {
Paul E. McKenney9261dd02013-08-14 16:24:26 -07002243 if (!rcu_nocb_poll)
2244 trace_rcu_nocb_wake(rdp->rsp->name, rdp->cpu,
2245 TPS("WokeEmpty"));
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002246 schedule_timeout_interruptible(1);
Paul Gortmaker353af9c2012-12-20 09:35:02 -08002247 flush_signals(current);
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002248 continue;
2249 }
Paul E. McKenney69a79bb2013-08-15 13:23:23 -07002250 firsttime = 1;
Paul E. McKenney9261dd02013-08-14 16:24:26 -07002251 trace_rcu_nocb_wake(rdp->rsp->name, rdp->cpu,
2252 TPS("WokeNonEmpty"));
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002253
2254 /*
2255 * Extract queued callbacks, update counts, and wait
2256 * for a grace period to elapse.
2257 */
2258 ACCESS_ONCE(rdp->nocb_head) = NULL;
2259 tail = xchg(&rdp->nocb_tail, &rdp->nocb_head);
2260 c = atomic_long_xchg(&rdp->nocb_q_count, 0);
2261 cl = atomic_long_xchg(&rdp->nocb_q_count_lazy, 0);
2262 ACCESS_ONCE(rdp->nocb_p_count) += c;
2263 ACCESS_ONCE(rdp->nocb_p_count_lazy) += cl;
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002264 rcu_nocb_wait_gp(rdp);
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002265
2266 /* Each pass through the following loop invokes a callback. */
2267 trace_rcu_batch_start(rdp->rsp->name, cl, c, -1);
2268 c = cl = 0;
2269 while (list) {
2270 next = list->next;
2271 /* Wait for enqueuing to complete, if needed. */
2272 while (next == NULL && &list->next != tail) {
Paul E. McKenney69a79bb2013-08-15 13:23:23 -07002273 trace_rcu_nocb_wake(rdp->rsp->name, rdp->cpu,
2274 TPS("WaitQueue"));
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002275 schedule_timeout_interruptible(1);
Paul E. McKenney69a79bb2013-08-15 13:23:23 -07002276 trace_rcu_nocb_wake(rdp->rsp->name, rdp->cpu,
2277 TPS("WokeQueue"));
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002278 next = list->next;
2279 }
2280 debug_rcu_head_unqueue(list);
2281 local_bh_disable();
2282 if (__rcu_reclaim(rdp->rsp->name, list))
2283 cl++;
2284 c++;
2285 local_bh_enable();
2286 list = next;
2287 }
2288 trace_rcu_batch_end(rdp->rsp->name, c, !!list, 0, 0, 1);
2289 ACCESS_ONCE(rdp->nocb_p_count) -= c;
2290 ACCESS_ONCE(rdp->nocb_p_count_lazy) -= cl;
Paul E. McKenneyc635a4e12012-10-29 07:29:20 -07002291 rdp->n_nocbs_invoked += c;
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002292 }
2293 return 0;
2294}
2295
Paul E. McKenney96d3fd02013-10-04 14:33:34 -07002296/* Is a deferred wakeup of rcu_nocb_kthread() required? */
2297static bool rcu_nocb_need_deferred_wakeup(struct rcu_data *rdp)
2298{
2299 return ACCESS_ONCE(rdp->nocb_defer_wakeup);
2300}
2301
2302/* Do a deferred wakeup of rcu_nocb_kthread(). */
2303static void do_nocb_deferred_wakeup(struct rcu_data *rdp)
2304{
2305 if (!rcu_nocb_need_deferred_wakeup(rdp))
2306 return;
2307 ACCESS_ONCE(rdp->nocb_defer_wakeup) = false;
2308 wake_up(&rdp->nocb_wq);
2309 trace_rcu_nocb_wake(rdp->rsp->name, rdp->cpu, TPS("DeferredWakeEmpty"));
2310}
2311
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002312/* Initialize per-rcu_data variables for no-CBs CPUs. */
2313static void __init rcu_boot_init_nocb_percpu_data(struct rcu_data *rdp)
2314{
2315 rdp->nocb_tail = &rdp->nocb_head;
2316 init_waitqueue_head(&rdp->nocb_wq);
2317}
2318
2319/* Create a kthread for each RCU flavor for each no-CBs CPU. */
2320static void __init rcu_spawn_nocb_kthreads(struct rcu_state *rsp)
2321{
2322 int cpu;
2323 struct rcu_data *rdp;
2324 struct task_struct *t;
2325
2326 if (rcu_nocb_mask == NULL)
2327 return;
2328 for_each_cpu(cpu, rcu_nocb_mask) {
2329 rdp = per_cpu_ptr(rsp->rda, cpu);
Paul E. McKenneya4889852012-12-03 08:16:28 -08002330 t = kthread_run(rcu_nocb_kthread, rdp,
2331 "rcuo%c/%d", rsp->abbr, cpu);
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002332 BUG_ON(IS_ERR(t));
2333 ACCESS_ONCE(rdp->nocb_kthread) = t;
2334 }
2335}
2336
2337/* Prevent __call_rcu() from enqueuing callbacks on no-CBs CPUs */
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002338static bool init_nocb_callback_list(struct rcu_data *rdp)
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002339{
2340 if (rcu_nocb_mask == NULL ||
2341 !cpumask_test_cpu(rdp->cpu, rcu_nocb_mask))
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002342 return false;
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002343 rdp->nxttail[RCU_NEXT_TAIL] = NULL;
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002344 return true;
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002345}
2346
2347#else /* #ifdef CONFIG_RCU_NOCB_CPU */
2348
Paul E. McKenney0446be42012-12-30 15:21:01 -08002349static void rcu_nocb_gp_cleanup(struct rcu_state *rsp, struct rcu_node *rnp)
Paul E. McKenneydae6e642013-02-10 20:48:58 -08002350{
Paul E. McKenneydae6e642013-02-10 20:48:58 -08002351}
2352
2353static void rcu_nocb_gp_set(struct rcu_node *rnp, int nrq)
2354{
2355}
2356
2357static void rcu_init_one_nocb(struct rcu_node *rnp)
2358{
2359}
2360
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002361static bool __call_rcu_nocb(struct rcu_data *rdp, struct rcu_head *rhp,
Paul E. McKenney96d3fd02013-10-04 14:33:34 -07002362 bool lazy, unsigned long flags)
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002363{
2364 return 0;
2365}
2366
2367static bool __maybe_unused rcu_nocb_adopt_orphan_cbs(struct rcu_state *rsp,
Paul E. McKenney96d3fd02013-10-04 14:33:34 -07002368 struct rcu_data *rdp,
2369 unsigned long flags)
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002370{
2371 return 0;
2372}
2373
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002374static void __init rcu_boot_init_nocb_percpu_data(struct rcu_data *rdp)
2375{
2376}
2377
Paul E. McKenney96d3fd02013-10-04 14:33:34 -07002378static bool rcu_nocb_need_deferred_wakeup(struct rcu_data *rdp)
2379{
2380 return false;
2381}
2382
2383static void do_nocb_deferred_wakeup(struct rcu_data *rdp)
2384{
2385}
2386
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002387static void __init rcu_spawn_nocb_kthreads(struct rcu_state *rsp)
2388{
2389}
2390
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002391static bool init_nocb_callback_list(struct rcu_data *rdp)
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002392{
Paul E. McKenney34ed62462013-01-07 13:37:42 -08002393 return false;
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002394}
2395
2396#endif /* #else #ifdef CONFIG_RCU_NOCB_CPU */
Paul E. McKenney65d798f2013-04-12 16:19:10 -07002397
2398/*
2399 * An adaptive-ticks CPU can potentially execute in kernel mode for an
2400 * arbitrarily long period of time with the scheduling-clock tick turned
2401 * off. RCU will be paying attention to this CPU because it is in the
2402 * kernel, but the CPU cannot be guaranteed to be executing the RCU state
2403 * machine because the scheduling-clock tick has been disabled. Therefore,
2404 * if an adaptive-ticks CPU is failing to respond to the current grace
2405 * period and has not be idle from an RCU perspective, kick it.
2406 */
2407static void rcu_kick_nohz_cpu(int cpu)
2408{
2409#ifdef CONFIG_NO_HZ_FULL
2410 if (tick_nohz_full_cpu(cpu))
2411 smp_send_reschedule(cpu);
2412#endif /* #ifdef CONFIG_NO_HZ_FULL */
2413}
Paul E. McKenney23332102013-06-21 12:34:33 -07002414
2415
2416#ifdef CONFIG_NO_HZ_FULL_SYSIDLE
2417
2418/*
Paul E. McKenneyd4bd54f2013-06-21 14:51:40 -07002419 * Define RCU flavor that holds sysidle state. This needs to be the
2420 * most active flavor of RCU.
2421 */
2422#ifdef CONFIG_PREEMPT_RCU
Paul E. McKenney0edd1b12013-06-21 16:37:22 -07002423static struct rcu_state *rcu_sysidle_state = &rcu_preempt_state;
Paul E. McKenneyd4bd54f2013-06-21 14:51:40 -07002424#else /* #ifdef CONFIG_PREEMPT_RCU */
Paul E. McKenney0edd1b12013-06-21 16:37:22 -07002425static struct rcu_state *rcu_sysidle_state = &rcu_sched_state;
Paul E. McKenneyd4bd54f2013-06-21 14:51:40 -07002426#endif /* #else #ifdef CONFIG_PREEMPT_RCU */
2427
Paul E. McKenney0edd1b12013-06-21 16:37:22 -07002428static int full_sysidle_state; /* Current system-idle state. */
Paul E. McKenneyd4bd54f2013-06-21 14:51:40 -07002429#define RCU_SYSIDLE_NOT 0 /* Some CPU is not idle. */
2430#define RCU_SYSIDLE_SHORT 1 /* All CPUs idle for brief period. */
2431#define RCU_SYSIDLE_LONG 2 /* All CPUs idle for long enough. */
2432#define RCU_SYSIDLE_FULL 3 /* All CPUs idle, ready for sysidle. */
2433#define RCU_SYSIDLE_FULL_NOTED 4 /* Actually entered sysidle state. */
2434
2435/*
Paul E. McKenneyeb348b82013-06-21 13:00:57 -07002436 * Invoked to note exit from irq or task transition to idle. Note that
2437 * usermode execution does -not- count as idle here! After all, we want
2438 * to detect full-system idle states, not RCU quiescent states and grace
2439 * periods. The caller must have disabled interrupts.
2440 */
2441static void rcu_sysidle_enter(struct rcu_dynticks *rdtp, int irq)
2442{
2443 unsigned long j;
2444
2445 /* Adjust nesting, check for fully idle. */
2446 if (irq) {
2447 rdtp->dynticks_idle_nesting--;
2448 WARN_ON_ONCE(rdtp->dynticks_idle_nesting < 0);
2449 if (rdtp->dynticks_idle_nesting != 0)
2450 return; /* Still not fully idle. */
2451 } else {
2452 if ((rdtp->dynticks_idle_nesting & DYNTICK_TASK_NEST_MASK) ==
2453 DYNTICK_TASK_NEST_VALUE) {
2454 rdtp->dynticks_idle_nesting = 0;
2455 } else {
2456 rdtp->dynticks_idle_nesting -= DYNTICK_TASK_NEST_VALUE;
2457 WARN_ON_ONCE(rdtp->dynticks_idle_nesting < 0);
2458 return; /* Still not fully idle. */
2459 }
2460 }
2461
2462 /* Record start of fully idle period. */
2463 j = jiffies;
2464 ACCESS_ONCE(rdtp->dynticks_idle_jiffies) = j;
2465 smp_mb__before_atomic_inc();
2466 atomic_inc(&rdtp->dynticks_idle);
2467 smp_mb__after_atomic_inc();
2468 WARN_ON_ONCE(atomic_read(&rdtp->dynticks_idle) & 0x1);
2469}
2470
2471/*
Paul E. McKenney0edd1b12013-06-21 16:37:22 -07002472 * Unconditionally force exit from full system-idle state. This is
2473 * invoked when a normal CPU exits idle, but must be called separately
2474 * for the timekeeping CPU (tick_do_timer_cpu). The reason for this
2475 * is that the timekeeping CPU is permitted to take scheduling-clock
2476 * interrupts while the system is in system-idle state, and of course
2477 * rcu_sysidle_exit() has no way of distinguishing a scheduling-clock
2478 * interrupt from any other type of interrupt.
2479 */
2480void rcu_sysidle_force_exit(void)
2481{
2482 int oldstate = ACCESS_ONCE(full_sysidle_state);
2483 int newoldstate;
2484
2485 /*
2486 * Each pass through the following loop attempts to exit full
2487 * system-idle state. If contention proves to be a problem,
2488 * a trylock-based contention tree could be used here.
2489 */
2490 while (oldstate > RCU_SYSIDLE_SHORT) {
2491 newoldstate = cmpxchg(&full_sysidle_state,
2492 oldstate, RCU_SYSIDLE_NOT);
2493 if (oldstate == newoldstate &&
2494 oldstate == RCU_SYSIDLE_FULL_NOTED) {
2495 rcu_kick_nohz_cpu(tick_do_timer_cpu);
2496 return; /* We cleared it, done! */
2497 }
2498 oldstate = newoldstate;
2499 }
2500 smp_mb(); /* Order initial oldstate fetch vs. later non-idle work. */
2501}
2502
2503/*
Paul E. McKenneyeb348b82013-06-21 13:00:57 -07002504 * Invoked to note entry to irq or task transition from idle. Note that
2505 * usermode execution does -not- count as idle here! The caller must
2506 * have disabled interrupts.
2507 */
2508static void rcu_sysidle_exit(struct rcu_dynticks *rdtp, int irq)
2509{
2510 /* Adjust nesting, check for already non-idle. */
2511 if (irq) {
2512 rdtp->dynticks_idle_nesting++;
2513 WARN_ON_ONCE(rdtp->dynticks_idle_nesting <= 0);
2514 if (rdtp->dynticks_idle_nesting != 1)
2515 return; /* Already non-idle. */
2516 } else {
2517 /*
2518 * Allow for irq misnesting. Yes, it really is possible
2519 * to enter an irq handler then never leave it, and maybe
2520 * also vice versa. Handle both possibilities.
2521 */
2522 if (rdtp->dynticks_idle_nesting & DYNTICK_TASK_NEST_MASK) {
2523 rdtp->dynticks_idle_nesting += DYNTICK_TASK_NEST_VALUE;
2524 WARN_ON_ONCE(rdtp->dynticks_idle_nesting <= 0);
2525 return; /* Already non-idle. */
2526 } else {
2527 rdtp->dynticks_idle_nesting = DYNTICK_TASK_EXIT_IDLE;
2528 }
2529 }
2530
2531 /* Record end of idle period. */
2532 smp_mb__before_atomic_inc();
2533 atomic_inc(&rdtp->dynticks_idle);
2534 smp_mb__after_atomic_inc();
2535 WARN_ON_ONCE(!(atomic_read(&rdtp->dynticks_idle) & 0x1));
Paul E. McKenney0edd1b12013-06-21 16:37:22 -07002536
2537 /*
2538 * If we are the timekeeping CPU, we are permitted to be non-idle
2539 * during a system-idle state. This must be the case, because
2540 * the timekeeping CPU has to take scheduling-clock interrupts
2541 * during the time that the system is transitioning to full
2542 * system-idle state. This means that the timekeeping CPU must
2543 * invoke rcu_sysidle_force_exit() directly if it does anything
2544 * more than take a scheduling-clock interrupt.
2545 */
2546 if (smp_processor_id() == tick_do_timer_cpu)
2547 return;
2548
2549 /* Update system-idle state: We are clearly no longer fully idle! */
2550 rcu_sysidle_force_exit();
2551}
2552
2553/*
2554 * Check to see if the current CPU is idle. Note that usermode execution
2555 * does not count as idle. The caller must have disabled interrupts.
2556 */
2557static void rcu_sysidle_check_cpu(struct rcu_data *rdp, bool *isidle,
2558 unsigned long *maxj)
2559{
2560 int cur;
2561 unsigned long j;
2562 struct rcu_dynticks *rdtp = rdp->dynticks;
2563
2564 /*
2565 * If some other CPU has already reported non-idle, if this is
2566 * not the flavor of RCU that tracks sysidle state, or if this
2567 * is an offline or the timekeeping CPU, nothing to do.
2568 */
2569 if (!*isidle || rdp->rsp != rcu_sysidle_state ||
2570 cpu_is_offline(rdp->cpu) || rdp->cpu == tick_do_timer_cpu)
2571 return;
Paul E. McKenneyeb757672013-06-21 17:10:40 -07002572 if (rcu_gp_in_progress(rdp->rsp))
2573 WARN_ON_ONCE(smp_processor_id() != tick_do_timer_cpu);
Paul E. McKenney0edd1b12013-06-21 16:37:22 -07002574
2575 /* Pick up current idle and NMI-nesting counter and check. */
2576 cur = atomic_read(&rdtp->dynticks_idle);
2577 if (cur & 0x1) {
2578 *isidle = false; /* We are not idle! */
2579 return;
2580 }
2581 smp_mb(); /* Read counters before timestamps. */
2582
2583 /* Pick up timestamps. */
2584 j = ACCESS_ONCE(rdtp->dynticks_idle_jiffies);
2585 /* If this CPU entered idle more recently, update maxj timestamp. */
2586 if (ULONG_CMP_LT(*maxj, j))
2587 *maxj = j;
2588}
2589
2590/*
2591 * Is this the flavor of RCU that is handling full-system idle?
2592 */
2593static bool is_sysidle_rcu_state(struct rcu_state *rsp)
2594{
2595 return rsp == rcu_sysidle_state;
2596}
2597
2598/*
Paul E. McKenneyeb757672013-06-21 17:10:40 -07002599 * Bind the grace-period kthread for the sysidle flavor of RCU to the
2600 * timekeeping CPU.
2601 */
2602static void rcu_bind_gp_kthread(void)
2603{
2604 int cpu = ACCESS_ONCE(tick_do_timer_cpu);
2605
2606 if (cpu < 0 || cpu >= nr_cpu_ids)
2607 return;
2608 if (raw_smp_processor_id() != cpu)
2609 set_cpus_allowed_ptr(current, cpumask_of(cpu));
2610}
2611
2612/*
Paul E. McKenney0edd1b12013-06-21 16:37:22 -07002613 * Return a delay in jiffies based on the number of CPUs, rcu_node
2614 * leaf fanout, and jiffies tick rate. The idea is to allow larger
2615 * systems more time to transition to full-idle state in order to
2616 * avoid the cache thrashing that otherwise occur on the state variable.
2617 * Really small systems (less than a couple of tens of CPUs) should
2618 * instead use a single global atomically incremented counter, and later
2619 * versions of this will automatically reconfigure themselves accordingly.
2620 */
2621static unsigned long rcu_sysidle_delay(void)
2622{
2623 if (nr_cpu_ids <= CONFIG_NO_HZ_FULL_SYSIDLE_SMALL)
2624 return 0;
2625 return DIV_ROUND_UP(nr_cpu_ids * HZ, rcu_fanout_leaf * 1000);
2626}
2627
2628/*
2629 * Advance the full-system-idle state. This is invoked when all of
2630 * the non-timekeeping CPUs are idle.
2631 */
2632static void rcu_sysidle(unsigned long j)
2633{
2634 /* Check the current state. */
2635 switch (ACCESS_ONCE(full_sysidle_state)) {
2636 case RCU_SYSIDLE_NOT:
2637
2638 /* First time all are idle, so note a short idle period. */
2639 ACCESS_ONCE(full_sysidle_state) = RCU_SYSIDLE_SHORT;
2640 break;
2641
2642 case RCU_SYSIDLE_SHORT:
2643
2644 /*
2645 * Idle for a bit, time to advance to next state?
2646 * cmpxchg failure means race with non-idle, let them win.
2647 */
2648 if (ULONG_CMP_GE(jiffies, j + rcu_sysidle_delay()))
2649 (void)cmpxchg(&full_sysidle_state,
2650 RCU_SYSIDLE_SHORT, RCU_SYSIDLE_LONG);
2651 break;
2652
2653 case RCU_SYSIDLE_LONG:
2654
2655 /*
2656 * Do an additional check pass before advancing to full.
2657 * cmpxchg failure means race with non-idle, let them win.
2658 */
2659 if (ULONG_CMP_GE(jiffies, j + rcu_sysidle_delay()))
2660 (void)cmpxchg(&full_sysidle_state,
2661 RCU_SYSIDLE_LONG, RCU_SYSIDLE_FULL);
2662 break;
2663
2664 default:
2665 break;
2666 }
2667}
2668
2669/*
2670 * Found a non-idle non-timekeeping CPU, so kick the system-idle state
2671 * back to the beginning.
2672 */
2673static void rcu_sysidle_cancel(void)
2674{
2675 smp_mb();
2676 ACCESS_ONCE(full_sysidle_state) = RCU_SYSIDLE_NOT;
2677}
2678
2679/*
2680 * Update the sysidle state based on the results of a force-quiescent-state
2681 * scan of the CPUs' dyntick-idle state.
2682 */
2683static void rcu_sysidle_report(struct rcu_state *rsp, int isidle,
2684 unsigned long maxj, bool gpkt)
2685{
2686 if (rsp != rcu_sysidle_state)
2687 return; /* Wrong flavor, ignore. */
2688 if (gpkt && nr_cpu_ids <= CONFIG_NO_HZ_FULL_SYSIDLE_SMALL)
2689 return; /* Running state machine from timekeeping CPU. */
2690 if (isidle)
2691 rcu_sysidle(maxj); /* More idle! */
2692 else
2693 rcu_sysidle_cancel(); /* Idle is over. */
2694}
2695
2696/*
2697 * Wrapper for rcu_sysidle_report() when called from the grace-period
2698 * kthread's context.
2699 */
2700static void rcu_sysidle_report_gp(struct rcu_state *rsp, int isidle,
2701 unsigned long maxj)
2702{
2703 rcu_sysidle_report(rsp, isidle, maxj, true);
2704}
2705
2706/* Callback and function for forcing an RCU grace period. */
2707struct rcu_sysidle_head {
2708 struct rcu_head rh;
2709 int inuse;
2710};
2711
2712static void rcu_sysidle_cb(struct rcu_head *rhp)
2713{
2714 struct rcu_sysidle_head *rshp;
2715
2716 /*
2717 * The following memory barrier is needed to replace the
2718 * memory barriers that would normally be in the memory
2719 * allocator.
2720 */
2721 smp_mb(); /* grace period precedes setting inuse. */
2722
2723 rshp = container_of(rhp, struct rcu_sysidle_head, rh);
2724 ACCESS_ONCE(rshp->inuse) = 0;
2725}
2726
2727/*
2728 * Check to see if the system is fully idle, other than the timekeeping CPU.
2729 * The caller must have disabled interrupts.
2730 */
2731bool rcu_sys_is_idle(void)
2732{
2733 static struct rcu_sysidle_head rsh;
2734 int rss = ACCESS_ONCE(full_sysidle_state);
2735
2736 if (WARN_ON_ONCE(smp_processor_id() != tick_do_timer_cpu))
2737 return false;
2738
2739 /* Handle small-system case by doing a full scan of CPUs. */
2740 if (nr_cpu_ids <= CONFIG_NO_HZ_FULL_SYSIDLE_SMALL) {
2741 int oldrss = rss - 1;
2742
2743 /*
2744 * One pass to advance to each state up to _FULL.
2745 * Give up if any pass fails to advance the state.
2746 */
2747 while (rss < RCU_SYSIDLE_FULL && oldrss < rss) {
2748 int cpu;
2749 bool isidle = true;
2750 unsigned long maxj = jiffies - ULONG_MAX / 4;
2751 struct rcu_data *rdp;
2752
2753 /* Scan all the CPUs looking for nonidle CPUs. */
2754 for_each_possible_cpu(cpu) {
2755 rdp = per_cpu_ptr(rcu_sysidle_state->rda, cpu);
2756 rcu_sysidle_check_cpu(rdp, &isidle, &maxj);
2757 if (!isidle)
2758 break;
2759 }
2760 rcu_sysidle_report(rcu_sysidle_state,
2761 isidle, maxj, false);
2762 oldrss = rss;
2763 rss = ACCESS_ONCE(full_sysidle_state);
2764 }
2765 }
2766
2767 /* If this is the first observation of an idle period, record it. */
2768 if (rss == RCU_SYSIDLE_FULL) {
2769 rss = cmpxchg(&full_sysidle_state,
2770 RCU_SYSIDLE_FULL, RCU_SYSIDLE_FULL_NOTED);
2771 return rss == RCU_SYSIDLE_FULL;
2772 }
2773
2774 smp_mb(); /* ensure rss load happens before later caller actions. */
2775
2776 /* If already fully idle, tell the caller (in case of races). */
2777 if (rss == RCU_SYSIDLE_FULL_NOTED)
2778 return true;
2779
2780 /*
2781 * If we aren't there yet, and a grace period is not in flight,
2782 * initiate a grace period. Either way, tell the caller that
2783 * we are not there yet. We use an xchg() rather than an assignment
2784 * to make up for the memory barriers that would otherwise be
2785 * provided by the memory allocator.
2786 */
2787 if (nr_cpu_ids > CONFIG_NO_HZ_FULL_SYSIDLE_SMALL &&
2788 !rcu_gp_in_progress(rcu_sysidle_state) &&
2789 !rsh.inuse && xchg(&rsh.inuse, 1) == 0)
2790 call_rcu(&rsh.rh, rcu_sysidle_cb);
2791 return false;
Paul E. McKenneyeb348b82013-06-21 13:00:57 -07002792}
2793
2794/*
Paul E. McKenney23332102013-06-21 12:34:33 -07002795 * Initialize dynticks sysidle state for CPUs coming online.
2796 */
2797static void rcu_sysidle_init_percpu_data(struct rcu_dynticks *rdtp)
2798{
2799 rdtp->dynticks_idle_nesting = DYNTICK_TASK_NEST_VALUE;
2800}
2801
2802#else /* #ifdef CONFIG_NO_HZ_FULL_SYSIDLE */
2803
Paul E. McKenneyeb348b82013-06-21 13:00:57 -07002804static void rcu_sysidle_enter(struct rcu_dynticks *rdtp, int irq)
2805{
2806}
2807
2808static void rcu_sysidle_exit(struct rcu_dynticks *rdtp, int irq)
2809{
2810}
2811
Paul E. McKenney0edd1b12013-06-21 16:37:22 -07002812static void rcu_sysidle_check_cpu(struct rcu_data *rdp, bool *isidle,
2813 unsigned long *maxj)
2814{
2815}
2816
2817static bool is_sysidle_rcu_state(struct rcu_state *rsp)
2818{
2819 return false;
2820}
2821
Paul E. McKenneyeb757672013-06-21 17:10:40 -07002822static void rcu_bind_gp_kthread(void)
2823{
2824}
2825
Paul E. McKenney0edd1b12013-06-21 16:37:22 -07002826static void rcu_sysidle_report_gp(struct rcu_state *rsp, int isidle,
2827 unsigned long maxj)
2828{
2829}
2830
Paul E. McKenney23332102013-06-21 12:34:33 -07002831static void rcu_sysidle_init_percpu_data(struct rcu_dynticks *rdtp)
2832{
2833}
2834
2835#endif /* #else #ifdef CONFIG_NO_HZ_FULL_SYSIDLE */
Paul E. McKenneya0969322013-11-08 09:03:10 -08002836
2837/*
2838 * Is this CPU a NO_HZ_FULL CPU that should ignore RCU so that the
2839 * grace-period kthread will do force_quiescent_state() processing?
2840 * The idea is to avoid waking up RCU core processing on such a
2841 * CPU unless the grace period has extended for too long.
2842 *
2843 * This code relies on the fact that all NO_HZ_FULL CPUs are also
Paul Bolle52e2bb92014-02-09 14:35:11 +01002844 * CONFIG_RCU_NOCB_CPU CPUs.
Paul E. McKenneya0969322013-11-08 09:03:10 -08002845 */
2846static bool rcu_nohz_full_cpu(struct rcu_state *rsp)
2847{
2848#ifdef CONFIG_NO_HZ_FULL
2849 if (tick_nohz_full_cpu(smp_processor_id()) &&
2850 (!rcu_gp_in_progress(rsp) ||
2851 ULONG_CMP_LT(jiffies, ACCESS_ONCE(rsp->gp_start) + HZ)))
2852 return 1;
2853#endif /* #ifdef CONFIG_NO_HZ_FULL */
2854 return 0;
2855}