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Paul E. McKenney22e40922019-01-17 10:23:39 -08001// SPDX-License-Identifier: GPL-2.0+
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002/*
3 * Read-Copy Update mechanism for mutual exclusion
4 *
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01005 * Copyright IBM Corporation, 2008
6 *
7 * Authors: Dipankar Sarma <dipankar@in.ibm.com>
8 * Manfred Spraul <manfred@colorfullife.com>
Paul E. McKenney22e40922019-01-17 10:23:39 -08009 * Paul E. McKenney <paulmck@linux.ibm.com> Hierarchical version
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010010 *
Paul E. McKenney22e40922019-01-17 10:23:39 -080011 * Based on the original work by Paul McKenney <paulmck@linux.ibm.com>
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010012 * and inputs from Rusty Russell, Andrea Arcangeli and Andi Kleen.
13 *
14 * For detailed explanation of Read-Copy Update mechanism see -
Paul E. McKenneya71fca52009-09-18 10:28:19 -070015 * Documentation/RCU
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010016 */
Joe Perchesa7538352018-05-14 13:27:33 -070017
18#define pr_fmt(fmt) "rcu: " fmt
19
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010020#include <linux/types.h>
21#include <linux/kernel.h>
22#include <linux/init.h>
23#include <linux/spinlock.h>
24#include <linux/smp.h>
Ingo Molnarf9411eb2017-02-06 09:50:49 +010025#include <linux/rcupdate_wait.h>
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010026#include <linux/interrupt.h>
27#include <linux/sched.h>
Ingo Molnarb17b0152017-02-08 18:51:35 +010028#include <linux/sched/debug.h>
Ingo Molnarc1dc0b92009-08-02 11:28:21 +020029#include <linux/nmi.h>
Paul E. McKenney8826f3b2011-05-11 05:41:41 -070030#include <linux/atomic.h>
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010031#include <linux/bitops.h>
Paul Gortmaker9984de12011-05-23 14:51:41 -040032#include <linux/export.h>
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010033#include <linux/completion.h>
34#include <linux/moduleparam.h>
35#include <linux/percpu.h>
36#include <linux/notifier.h>
37#include <linux/cpu.h>
38#include <linux/mutex.h>
39#include <linux/time.h>
Paul E. McKenneybbad9372010-04-02 16:17:17 -070040#include <linux/kernel_stat.h>
Paul E. McKenneya26ac242011-01-12 14:10:23 -080041#include <linux/wait.h>
42#include <linux/kthread.h>
Ingo Molnarae7e81c2017-02-01 18:07:51 +010043#include <uapi/linux/sched/types.h>
Linus Torvalds268bb0c2011-05-20 12:50:29 -070044#include <linux/prefetch.h>
Paul E. McKenney3d3b7db2012-01-23 17:05:46 -080045#include <linux/delay.h>
46#include <linux/stop_machine.h>
Paul E. McKenney661a85d2012-07-07 05:57:03 -070047#include <linux/random.h>
Steven Rostedt (Red Hat)af658dc2015-04-29 14:36:05 -040048#include <linux/trace_events.h>
Borislav Petkovd1d74d12013-04-22 00:12:42 +020049#include <linux/suspend.h>
Paul E. McKenneya278d472017-04-05 09:05:18 -070050#include <linux/ftrace.h>
Paul E. McKenneyd3052102018-07-25 11:49:47 -070051#include <linux/tick.h>
Paul E. McKenney2ccaff12018-12-12 12:32:06 -080052#include <linux/sysrq.h>
Masami Hiramatsuc13324a2019-02-13 01:12:15 +090053#include <linux/kprobes.h>
Sebastian Andrzej Siewior48d07c02019-03-20 22:13:33 +010054#include <linux/gfp.h>
55#include <linux/oom.h>
56#include <linux/smpboot.h>
57#include <linux/jiffies.h>
58#include <linux/sched/isolation.h>
59#include "../time/tick-internal.h"
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010060
Paul E. McKenney4102ada2013-10-08 20:23:47 -070061#include "tree.h"
Paul E. McKenney29c00b42011-06-17 15:53:19 -070062#include "rcu.h"
Paul E. McKenney9f77da92009-08-22 13:56:45 -070063
Paul E. McKenney4102ada2013-10-08 20:23:47 -070064#ifdef MODULE_PARAM_PREFIX
65#undef MODULE_PARAM_PREFIX
66#endif
67#define MODULE_PARAM_PREFIX "rcutree."
68
Paul E. McKenney64db4cf2008-12-18 21:55:32 +010069/* Data structures. */
70
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -040071/*
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -070072 * Steal a bit from the bottom of ->dynticks for idle entry/exit
73 * control. Initially this is for TLB flushing.
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -040074 */
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -070075#define RCU_DYNTICK_CTRL_MASK 0x1
76#define RCU_DYNTICK_CTRL_CTR (RCU_DYNTICK_CTRL_MASK + 1)
77#ifndef rcu_eqs_special_exit
78#define rcu_eqs_special_exit() do { } while (0)
Ard Biesheuvela8a29b32014-07-12 19:01:49 +020079#endif
80
Paul E. McKenney4c5273b2018-08-03 21:00:38 -070081static DEFINE_PER_CPU_SHARED_ALIGNED(struct rcu_data, rcu_data) = {
82 .dynticks_nesting = 1,
83 .dynticks_nmi_nesting = DYNTICK_IRQ_NONIDLE,
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -070084 .dynticks = ATOMIC_INIT(RCU_DYNTICK_CTRL_CTR),
Paul E. McKenney4c5273b2018-08-03 21:00:38 -070085};
Paul E. McKenney358be2d2018-07-03 14:15:31 -070086struct rcu_state rcu_state = {
87 .level = { &rcu_state.node[0] },
Paul E. McKenney358be2d2018-07-03 14:15:31 -070088 .gp_state = RCU_GP_IDLE,
89 .gp_seq = (0UL - 300UL) << RCU_SEQ_CTR_SHIFT,
90 .barrier_mutex = __MUTEX_INITIALIZER(rcu_state.barrier_mutex),
91 .name = RCU_NAME,
92 .abbr = RCU_ABBR,
93 .exp_mutex = __MUTEX_INITIALIZER(rcu_state.exp_mutex),
94 .exp_wake_mutex = __MUTEX_INITIALIZER(rcu_state.exp_wake_mutex),
Mike Galbraith894d45b2018-08-15 09:05:29 -070095 .ofl_lock = __RAW_SPIN_LOCK_UNLOCKED(rcu_state.ofl_lock),
Paul E. McKenney358be2d2018-07-03 14:15:31 -070096};
Paul E. McKenney27f4d282011-02-07 12:47:15 -080097
Paul E. McKenneya3dc2942015-04-20 11:40:50 -070098/* Dump rcu_node combining tree at boot to verify correct setup. */
99static bool dump_tree;
100module_param(dump_tree, bool, 0444);
Sebastian Andrzej Siewior48d07c02019-03-20 22:13:33 +0100101/* By default, use RCU_SOFTIRQ instead of rcuc kthreads. */
102static bool use_softirq = 1;
103module_param(use_softirq, bool, 0444);
Paul E. McKenney7fa27002015-04-20 10:27:15 -0700104/* Control rcu_node-tree auto-balancing at boot time. */
105static bool rcu_fanout_exact;
106module_param(rcu_fanout_exact, bool, 0444);
Paul E. McKenney47d631a2015-04-21 09:12:13 -0700107/* Increase (but not decrease) the RCU_FANOUT_LEAF at boot time. */
108static int rcu_fanout_leaf = RCU_FANOUT_LEAF;
Paul E. McKenney7e5c2df2012-07-01 15:42:33 -0700109module_param(rcu_fanout_leaf, int, 0444);
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -0700110int rcu_num_lvls __read_mostly = RCU_NUM_LVLS;
Alexander Gordeevcb007102015-06-03 08:18:30 +0200111/* Number of rcu_nodes at specified level. */
Paul E. McKenneye95d68d2017-03-15 13:11:11 -0700112int num_rcu_lvl[] = NUM_RCU_LVL_INIT;
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -0700113int rcu_num_nodes __read_mostly = NUM_RCU_NODES; /* Total # rcu_nodes in use. */
114
Paul E. McKenneyb0d30412011-07-10 15:57:35 -0700115/*
Paul E. McKenney52d7e482017-01-10 02:28:26 -0800116 * The rcu_scheduler_active variable is initialized to the value
117 * RCU_SCHEDULER_INACTIVE and transitions RCU_SCHEDULER_INIT just before the
118 * first task is spawned. So when this variable is RCU_SCHEDULER_INACTIVE,
119 * RCU can assume that there is but one task, allowing RCU to (for example)
Paul E. McKenney0d950922016-04-08 05:00:03 -0700120 * optimize synchronize_rcu() to a simple barrier(). When this variable
Paul E. McKenney52d7e482017-01-10 02:28:26 -0800121 * is RCU_SCHEDULER_INIT, RCU must actually do all the hard work required
122 * to detect real grace periods. This variable is also used to suppress
123 * boot-time false positives from lockdep-RCU error checking. Finally, it
124 * transitions from RCU_SCHEDULER_INIT to RCU_SCHEDULER_RUNNING after RCU
125 * is fully initialized, including all of its kthreads having been spawned.
Paul E. McKenneyb0d30412011-07-10 15:57:35 -0700126 */
Paul E. McKenneybbad9372010-04-02 16:17:17 -0700127int rcu_scheduler_active __read_mostly;
128EXPORT_SYMBOL_GPL(rcu_scheduler_active);
129
Paul E. McKenneyb0d30412011-07-10 15:57:35 -0700130/*
131 * The rcu_scheduler_fully_active variable transitions from zero to one
132 * during the early_initcall() processing, which is after the scheduler
133 * is capable of creating new tasks. So RCU processing (for example,
134 * creating tasks for RCU priority boosting) must be delayed until after
135 * rcu_scheduler_fully_active transitions from zero to one. We also
136 * currently delay invocation of any RCU callbacks until after this point.
137 *
138 * It might later prove better for people registering RCU callbacks during
139 * early boot to take responsibility for these callbacks, but one step at
140 * a time.
141 */
142static int rcu_scheduler_fully_active __read_mostly;
143
Paul E. McKenneyb50912d2018-07-03 17:22:34 -0700144static void rcu_report_qs_rnp(unsigned long mask, struct rcu_node *rnp,
145 unsigned long gps, unsigned long flags);
Paul E. McKenney0aa04b02015-01-23 21:52:37 -0800146static void rcu_init_new_rnp(struct rcu_node *rnp_leaf);
147static void rcu_cleanup_dead_rnp(struct rcu_node *rnp_leaf);
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +0000148static void rcu_boost_kthread_setaffinity(struct rcu_node *rnp, int outgoingcpu);
Paul E. McKenneya46e0892011-06-15 15:47:09 -0700149static void invoke_rcu_core(void);
Paul E. McKenney63d4c8c2018-07-03 17:22:34 -0700150static void rcu_report_exp_rdp(struct rcu_data *rdp);
Paul E. McKenney3549c2b2016-04-15 16:35:29 -0700151static void sync_sched_exp_online_cleanup(int cpu);
Paul E. McKenneya26ac242011-01-12 14:10:23 -0800152
Paul E. McKenneya94844b2014-12-12 07:37:48 -0800153/* rcuc/rcub kthread realtime priority */
Paul E. McKenney26730f52015-04-21 09:22:14 -0700154static int kthread_prio = IS_ENABLED(CONFIG_RCU_BOOST) ? 1 : 0;
Liu Song3ffe3d12019-02-21 22:13:27 +0800155module_param(kthread_prio, int, 0444);
Paul E. McKenneya94844b2014-12-12 07:37:48 -0800156
Paul E. McKenney8d7dc922015-04-14 19:33:59 -0700157/* Delay in jiffies for grace-period initialization delays, debug only. */
Paul E. McKenney0f41c0d2015-03-10 18:33:20 -0700158
Paul E. McKenney90040c92017-05-10 14:36:55 -0700159static int gp_preinit_delay;
160module_param(gp_preinit_delay, int, 0444);
161static int gp_init_delay;
162module_param(gp_init_delay, int, 0444);
163static int gp_cleanup_delay;
164module_param(gp_cleanup_delay, int, 0444);
Paul E. McKenney0f41c0d2015-03-10 18:33:20 -0700165
Paul E. McKenney4cf439a2018-07-02 12:15:25 -0700166/* Retrieve RCU kthreads priority for rcutorture */
Joel Fernandes (Google)4babd852018-06-19 15:14:18 -0700167int rcu_get_gp_kthreads_prio(void)
168{
169 return kthread_prio;
170}
171EXPORT_SYMBOL_GPL(rcu_get_gp_kthreads_prio);
172
Paul E. McKenneyeab128e2015-04-15 12:08:22 -0700173/*
174 * Number of grace periods between delays, normalized by the duration of
Paul E. McKenneybfd090b2017-02-08 14:49:27 -0800175 * the delay. The longer the delay, the more the grace periods between
Paul E. McKenneyeab128e2015-04-15 12:08:22 -0700176 * each delay. The reason for this normalization is that it means that,
177 * for non-zero delays, the overall slowdown of grace periods is constant
178 * regardless of the duration of the delay. This arrangement balances
179 * the need for long delays to increase some race probabilities with the
180 * need for fast grace periods to increase other race probabilities.
181 */
182#define PER_RCU_NODE_PERIOD 3 /* Number of grace periods between delays. */
Paul E. McKenney37745d22015-01-22 18:24:08 -0800183
Paul E. McKenneya26ac242011-01-12 14:10:23 -0800184/*
Paul E. McKenney0aa04b02015-01-23 21:52:37 -0800185 * Compute the mask of online CPUs for the specified rcu_node structure.
186 * This will not be stable unless the rcu_node structure's ->lock is
187 * held, but the bit corresponding to the current CPU will be stable
188 * in most contexts.
189 */
190unsigned long rcu_rnp_online_cpus(struct rcu_node *rnp)
191{
Paul E. McKenney7d0ae802015-03-03 14:57:58 -0800192 return READ_ONCE(rnp->qsmaskinitnext);
Paul E. McKenney0aa04b02015-01-23 21:52:37 -0800193}
194
195/*
Paul E. McKenney7d0ae802015-03-03 14:57:58 -0800196 * Return true if an RCU grace period is in progress. The READ_ONCE()s
Paul E. McKenneyfc2219d42009-09-23 09:50:41 -0700197 * permit this function to be invoked without holding the root rcu_node
198 * structure's ->lock, but of course results can be subject to change.
199 */
Paul E. McKenneyde8e8732018-07-03 17:22:34 -0700200static int rcu_gp_in_progress(void)
Paul E. McKenneyfc2219d42009-09-23 09:50:41 -0700201{
Paul E. McKenneyde8e8732018-07-03 17:22:34 -0700202 return rcu_seq_state(rcu_seq_current(&rcu_state.gp_seq));
Paul E. McKenneyfc2219d42009-09-23 09:50:41 -0700203}
204
Paul E. McKenney903ee832018-10-02 16:05:46 -0700205/*
206 * Return the number of callbacks queued on the specified CPU.
207 * Handles both the nocbs and normal cases.
208 */
209static long rcu_get_n_cbs_cpu(int cpu)
210{
211 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, cpu);
212
Paul E. McKenneyc0352802019-05-21 08:28:41 -0700213 if (rcu_segcblist_is_enabled(&rdp->cblist))
Paul E. McKenney903ee832018-10-02 16:05:46 -0700214 return rcu_segcblist_n_cbs(&rdp->cblist);
Paul E. McKenneyc0352802019-05-21 08:28:41 -0700215 return 0;
Paul E. McKenney903ee832018-10-02 16:05:46 -0700216}
217
Paul E. McKenneyd28139c2018-06-28 14:45:25 -0700218void rcu_softirq_qs(void)
Ingo Molnarb1f77b02009-03-13 03:20:49 +0100219{
Paul E. McKenney45975c72018-07-02 14:30:37 -0700220 rcu_qs();
Paul E. McKenneyd28139c2018-06-28 14:45:25 -0700221 rcu_preempt_deferred_qs(current);
Ingo Molnarb1f77b02009-03-13 03:20:49 +0100222}
223
Paul E. McKenney6563de92016-11-02 13:33:57 -0700224/*
Paul E. McKenney2625d462016-11-02 14:23:30 -0700225 * Record entry into an extended quiescent state. This is only to be
226 * called when not already in an extended quiescent state.
227 */
228static void rcu_dynticks_eqs_enter(void)
229{
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700230 struct rcu_data *rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800231 int seq;
Paul E. McKenney2625d462016-11-02 14:23:30 -0700232
233 /*
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800234 * CPUs seeing atomic_add_return() must see prior RCU read-side
Paul E. McKenney2625d462016-11-02 14:23:30 -0700235 * critical sections, and we also must force ordering with the
236 * next idle sojourn.
237 */
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700238 seq = atomic_add_return(RCU_DYNTICK_CTRL_CTR, &rdp->dynticks);
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800239 /* Better be in an extended quiescent state! */
240 WARN_ON_ONCE(IS_ENABLED(CONFIG_RCU_EQS_DEBUG) &&
241 (seq & RCU_DYNTICK_CTRL_CTR));
242 /* Better not have special action (TLB flush) pending! */
243 WARN_ON_ONCE(IS_ENABLED(CONFIG_RCU_EQS_DEBUG) &&
244 (seq & RCU_DYNTICK_CTRL_MASK));
Paul E. McKenney2625d462016-11-02 14:23:30 -0700245}
246
247/*
248 * Record exit from an extended quiescent state. This is only to be
249 * called from an extended quiescent state.
250 */
251static void rcu_dynticks_eqs_exit(void)
252{
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700253 struct rcu_data *rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800254 int seq;
Paul E. McKenney2625d462016-11-02 14:23:30 -0700255
256 /*
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800257 * CPUs seeing atomic_add_return() must see prior idle sojourns,
Paul E. McKenney2625d462016-11-02 14:23:30 -0700258 * and we also must force ordering with the next RCU read-side
259 * critical section.
260 */
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700261 seq = atomic_add_return(RCU_DYNTICK_CTRL_CTR, &rdp->dynticks);
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800262 WARN_ON_ONCE(IS_ENABLED(CONFIG_RCU_EQS_DEBUG) &&
263 !(seq & RCU_DYNTICK_CTRL_CTR));
264 if (seq & RCU_DYNTICK_CTRL_MASK) {
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700265 atomic_andnot(RCU_DYNTICK_CTRL_MASK, &rdp->dynticks);
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800266 smp_mb__after_atomic(); /* _exit after clearing mask. */
267 /* Prefer duplicate flushes to losing a flush. */
268 rcu_eqs_special_exit();
269 }
Paul E. McKenney2625d462016-11-02 14:23:30 -0700270}
271
272/*
273 * Reset the current CPU's ->dynticks counter to indicate that the
274 * newly onlined CPU is no longer in an extended quiescent state.
275 * This will either leave the counter unchanged, or increment it
276 * to the next non-quiescent value.
277 *
278 * The non-atomic test/increment sequence works because the upper bits
279 * of the ->dynticks counter are manipulated only by the corresponding CPU,
280 * or when the corresponding CPU is offline.
281 */
282static void rcu_dynticks_eqs_online(void)
283{
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700284 struct rcu_data *rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenney2625d462016-11-02 14:23:30 -0700285
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700286 if (atomic_read(&rdp->dynticks) & RCU_DYNTICK_CTRL_CTR)
Paul E. McKenney2625d462016-11-02 14:23:30 -0700287 return;
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700288 atomic_add(RCU_DYNTICK_CTRL_CTR, &rdp->dynticks);
Paul E. McKenney2625d462016-11-02 14:23:30 -0700289}
290
291/*
Paul E. McKenney02a5c5502016-11-02 17:25:06 -0700292 * Is the current CPU in an extended quiescent state?
293 *
294 * No ordering, as we are sampling CPU-local information.
295 */
296bool rcu_dynticks_curr_cpu_in_eqs(void)
297{
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700298 struct rcu_data *rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenney02a5c5502016-11-02 17:25:06 -0700299
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700300 return !(atomic_read(&rdp->dynticks) & RCU_DYNTICK_CTRL_CTR);
Paul E. McKenney02a5c5502016-11-02 17:25:06 -0700301}
302
303/*
Paul E. McKenney8b2f63a2016-11-02 14:12:05 -0700304 * Snapshot the ->dynticks counter with full ordering so as to allow
305 * stable comparison of this counter with past and future snapshots.
306 */
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700307int rcu_dynticks_snap(struct rcu_data *rdp)
Paul E. McKenney8b2f63a2016-11-02 14:12:05 -0700308{
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700309 int snap = atomic_add_return(0, &rdp->dynticks);
Paul E. McKenney8b2f63a2016-11-02 14:12:05 -0700310
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800311 return snap & ~RCU_DYNTICK_CTRL_MASK;
Paul E. McKenney8b2f63a2016-11-02 14:12:05 -0700312}
313
314/*
Paul E. McKenney02a5c5502016-11-02 17:25:06 -0700315 * Return true if the snapshot returned from rcu_dynticks_snap()
316 * indicates that RCU is in an extended quiescent state.
317 */
318static bool rcu_dynticks_in_eqs(int snap)
319{
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800320 return !(snap & RCU_DYNTICK_CTRL_CTR);
Paul E. McKenney02a5c5502016-11-02 17:25:06 -0700321}
322
323/*
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700324 * Return true if the CPU corresponding to the specified rcu_data
Paul E. McKenney02a5c5502016-11-02 17:25:06 -0700325 * structure has spent some time in an extended quiescent state since
326 * rcu_dynticks_snap() returned the specified snapshot.
327 */
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700328static bool rcu_dynticks_in_eqs_since(struct rcu_data *rdp, int snap)
Paul E. McKenney02a5c5502016-11-02 17:25:06 -0700329{
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700330 return snap != rcu_dynticks_snap(rdp);
Paul E. McKenney02a5c5502016-11-02 17:25:06 -0700331}
332
333/*
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800334 * Set the special (bottom) bit of the specified CPU so that it
335 * will take special action (such as flushing its TLB) on the
336 * next exit from an extended quiescent state. Returns true if
337 * the bit was successfully set, or false if the CPU was not in
338 * an extended quiescent state.
339 */
340bool rcu_eqs_special_set(int cpu)
341{
342 int old;
343 int new;
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700344 struct rcu_data *rdp = &per_cpu(rcu_data, cpu);
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800345
346 do {
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700347 old = atomic_read(&rdp->dynticks);
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800348 if (old & RCU_DYNTICK_CTRL_CTR)
349 return false;
350 new = old | RCU_DYNTICK_CTRL_MASK;
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700351 } while (atomic_cmpxchg(&rdp->dynticks, old, new) != old);
Paul E. McKenneyb8c17e62016-11-08 14:25:21 -0800352 return true;
Paul E. McKenney6563de92016-11-02 13:33:57 -0700353}
Paul E. McKenney5cd37192014-12-13 20:32:04 -0800354
Paul E. McKenney4a81e832014-06-20 16:49:01 -0700355/*
356 * Let the RCU core know that this CPU has gone through the scheduler,
357 * which is a quiescent state. This is called when the need for a
358 * quiescent state is urgent, so we burn an atomic operation and full
359 * memory barriers to let the RCU core know about it, regardless of what
360 * this CPU might (or might not) do in the near future.
361 *
Paul E. McKenney0f9be8c2017-01-27 13:17:02 -0800362 * We inform the RCU core by emulating a zero-duration dyntick-idle period.
Paul E. McKenney46a5d162015-10-07 09:10:48 -0700363 *
Paul E. McKenney3b57a392018-05-16 16:01:56 -0700364 * The caller must have disabled interrupts and must not be idle.
Paul E. McKenney4a81e832014-06-20 16:49:01 -0700365 */
Paul E. McKenney395a2f02018-07-10 14:00:14 -0700366static void __maybe_unused rcu_momentary_dyntick_idle(void)
Paul E. McKenney4a81e832014-06-20 16:49:01 -0700367{
Paul E. McKenney3b57a392018-05-16 16:01:56 -0700368 int special;
369
Paul E. McKenney2dba13f2018-08-03 21:00:38 -0700370 raw_cpu_write(rcu_data.rcu_need_heavy_qs, false);
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700371 special = atomic_add_return(2 * RCU_DYNTICK_CTRL_CTR,
372 &this_cpu_ptr(&rcu_data)->dynticks);
Paul E. McKenney3b57a392018-05-16 16:01:56 -0700373 /* It is illegal to call this from idle state. */
374 WARN_ON_ONCE(!(special & RCU_DYNTICK_CTRL_CTR));
Paul E. McKenney3e310092018-06-21 12:50:01 -0700375 rcu_preempt_deferred_qs(current);
Paul E. McKenney4a81e832014-06-20 16:49:01 -0700376}
377
Paul E. McKenney45975c72018-07-02 14:30:37 -0700378/**
Joel Fernandes (Google)eddded82019-03-26 15:24:09 -0400379 * rcu_is_cpu_rrupt_from_idle - see if interrupted from idle
Boqun Fengbb73c522015-07-30 16:55:38 -0700380 *
Joel Fernandes (Google)eddded82019-03-26 15:24:09 -0400381 * If the current CPU is idle and running at a first-level (not nested)
Paul E. McKenney45975c72018-07-02 14:30:37 -0700382 * interrupt from idle, return true. The caller must have at least
383 * disabled preemption.
Paul E. McKenney5cd37192014-12-13 20:32:04 -0800384 */
Paul E. McKenney45975c72018-07-02 14:30:37 -0700385static int rcu_is_cpu_rrupt_from_idle(void)
Paul E. McKenney5cd37192014-12-13 20:32:04 -0800386{
Joel Fernandes (Google)eddded82019-03-26 15:24:09 -0400387 /* Called only from within the scheduling-clock interrupt */
388 lockdep_assert_in_irq();
389
390 /* Check for counter underflows */
391 RCU_LOCKDEP_WARN(__this_cpu_read(rcu_data.dynticks_nesting) < 0,
392 "RCU dynticks_nesting counter underflow!");
393 RCU_LOCKDEP_WARN(__this_cpu_read(rcu_data.dynticks_nmi_nesting) <= 0,
394 "RCU dynticks_nmi_nesting counter underflow/zero!");
395
396 /* Are we at first interrupt nesting level? */
397 if (__this_cpu_read(rcu_data.dynticks_nmi_nesting) != 1)
398 return false;
399
400 /* Does CPU appear to be idle from an RCU standpoint? */
401 return __this_cpu_read(rcu_data.dynticks_nesting) == 0;
Paul E. McKenney5cd37192014-12-13 20:32:04 -0800402}
Paul E. McKenney5cd37192014-12-13 20:32:04 -0800403
Paul E. McKenneyd5a9a8c2019-04-10 17:01:39 -0700404#define DEFAULT_RCU_BLIMIT 10 /* Maximum callbacks per rcu_do_batch ... */
405#define DEFAULT_MAX_RCU_BLIMIT 10000 /* ... even during callback flood. */
Paul E. McKenney17c77982017-04-28 11:12:34 -0700406static long blimit = DEFAULT_RCU_BLIMIT;
407#define DEFAULT_RCU_QHIMARK 10000 /* If this many pending, ignore blimit. */
408static long qhimark = DEFAULT_RCU_QHIMARK;
409#define DEFAULT_RCU_QLOMARK 100 /* Once only this many pending, use blimit. */
410static long qlowmark = DEFAULT_RCU_QLOMARK;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100411
Eric Dumazet878d7432012-10-18 04:55:36 -0700412module_param(blimit, long, 0444);
413module_param(qhimark, long, 0444);
414module_param(qlowmark, long, 0444);
Paul E. McKenney3d76c082009-09-28 07:46:32 -0700415
Paul E. McKenney026ad282013-04-03 22:14:11 -0700416static ulong jiffies_till_first_fqs = ULONG_MAX;
417static ulong jiffies_till_next_fqs = ULONG_MAX;
Paul E. McKenney8c7c4822016-01-03 20:29:57 -0800418static bool rcu_kick_kthreads;
Paul E. McKenneyd40011f2012-06-26 20:45:57 -0700419
Paul E. McKenneyc06aed02018-07-25 11:25:23 -0700420/*
421 * How long the grace period must be before we start recruiting
422 * quiescent-state help from rcu_note_context_switch().
423 */
424static ulong jiffies_till_sched_qs = ULONG_MAX;
425module_param(jiffies_till_sched_qs, ulong, 0444);
Paul E. McKenney85f2b602019-03-11 15:45:13 -0700426static ulong jiffies_to_sched_qs; /* See adjust_jiffies_till_sched_qs(). */
Paul E. McKenneyc06aed02018-07-25 11:25:23 -0700427module_param(jiffies_to_sched_qs, ulong, 0444); /* Display only! */
428
429/*
430 * Make sure that we give the grace-period kthread time to detect any
431 * idle CPUs before taking active measures to force quiescent states.
432 * However, don't go below 100 milliseconds, adjusted upwards for really
433 * large systems.
434 */
435static void adjust_jiffies_till_sched_qs(void)
436{
437 unsigned long j;
438
439 /* If jiffies_till_sched_qs was specified, respect the request. */
440 if (jiffies_till_sched_qs != ULONG_MAX) {
441 WRITE_ONCE(jiffies_to_sched_qs, jiffies_till_sched_qs);
442 return;
443 }
Paul E. McKenney85f2b602019-03-11 15:45:13 -0700444 /* Otherwise, set to third fqs scan, but bound below on large system. */
Paul E. McKenneyc06aed02018-07-25 11:25:23 -0700445 j = READ_ONCE(jiffies_till_first_fqs) +
446 2 * READ_ONCE(jiffies_till_next_fqs);
447 if (j < HZ / 10 + nr_cpu_ids / RCU_JIFFIES_FQS_DIV)
448 j = HZ / 10 + nr_cpu_ids / RCU_JIFFIES_FQS_DIV;
449 pr_info("RCU calculated value of scheduler-enlistment delay is %ld jiffies.\n", j);
450 WRITE_ONCE(jiffies_to_sched_qs, j);
451}
452
Byungchul Park67abb962018-06-01 11:03:09 +0900453static int param_set_first_fqs_jiffies(const char *val, const struct kernel_param *kp)
454{
455 ulong j;
456 int ret = kstrtoul(val, 0, &j);
457
Paul E. McKenneyc06aed02018-07-25 11:25:23 -0700458 if (!ret) {
Byungchul Park67abb962018-06-01 11:03:09 +0900459 WRITE_ONCE(*(ulong *)kp->arg, (j > HZ) ? HZ : j);
Paul E. McKenneyc06aed02018-07-25 11:25:23 -0700460 adjust_jiffies_till_sched_qs();
461 }
Byungchul Park67abb962018-06-01 11:03:09 +0900462 return ret;
463}
464
465static int param_set_next_fqs_jiffies(const char *val, const struct kernel_param *kp)
466{
467 ulong j;
468 int ret = kstrtoul(val, 0, &j);
469
Paul E. McKenneyc06aed02018-07-25 11:25:23 -0700470 if (!ret) {
Byungchul Park67abb962018-06-01 11:03:09 +0900471 WRITE_ONCE(*(ulong *)kp->arg, (j > HZ) ? HZ : (j ?: 1));
Paul E. McKenneyc06aed02018-07-25 11:25:23 -0700472 adjust_jiffies_till_sched_qs();
473 }
Byungchul Park67abb962018-06-01 11:03:09 +0900474 return ret;
475}
476
477static struct kernel_param_ops first_fqs_jiffies_ops = {
478 .set = param_set_first_fqs_jiffies,
479 .get = param_get_ulong,
480};
481
482static struct kernel_param_ops next_fqs_jiffies_ops = {
483 .set = param_set_next_fqs_jiffies,
484 .get = param_get_ulong,
485};
486
487module_param_cb(jiffies_till_first_fqs, &first_fqs_jiffies_ops, &jiffies_till_first_fqs, 0644);
488module_param_cb(jiffies_till_next_fqs, &next_fqs_jiffies_ops, &jiffies_till_next_fqs, 0644);
Paul E. McKenney8c7c4822016-01-03 20:29:57 -0800489module_param(rcu_kick_kthreads, bool, 0644);
Paul E. McKenneyd40011f2012-06-26 20:45:57 -0700490
Paul E. McKenney8ff0b902018-07-05 17:55:14 -0700491static void force_qs_rnp(int (*f)(struct rcu_data *rdp));
Paul E. McKenneye3950ec2014-10-21 08:03:57 -0700492static int rcu_pending(void);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100493
494/*
Paul E. McKenney17ef2fe2018-04-27 11:39:34 -0700495 * Return the number of RCU GPs completed thus far for debug & stats.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100496 */
Paul E. McKenney17ef2fe2018-04-27 11:39:34 -0700497unsigned long rcu_get_gp_seq(void)
Paul E. McKenney917963d2014-11-21 17:10:16 -0800498{
Paul E. McKenney16fc9c62018-07-03 15:54:39 -0700499 return READ_ONCE(rcu_state.gp_seq);
Paul E. McKenney917963d2014-11-21 17:10:16 -0800500}
Paul E. McKenney17ef2fe2018-04-27 11:39:34 -0700501EXPORT_SYMBOL_GPL(rcu_get_gp_seq);
Paul E. McKenney917963d2014-11-21 17:10:16 -0800502
503/*
Paul E. McKenney291783b2016-01-12 13:43:30 -0800504 * Return the number of RCU expedited batches completed thus far for
505 * debug & stats. Odd numbers mean that a batch is in progress, even
506 * numbers mean idle. The value returned will thus be roughly double
507 * the cumulative batches since boot.
508 */
509unsigned long rcu_exp_batches_completed(void)
510{
Paul E. McKenney16fc9c62018-07-03 15:54:39 -0700511 return rcu_state.expedited_sequence;
Paul E. McKenney291783b2016-01-12 13:43:30 -0800512}
513EXPORT_SYMBOL_GPL(rcu_exp_batches_completed);
514
515/*
Paul E. McKenneyfd897572018-12-10 16:09:49 -0800516 * Return the root node of the rcu_state structure.
517 */
518static struct rcu_node *rcu_get_root(void)
519{
520 return &rcu_state.node[0];
521}
522
523/*
Paul E. McKenney69196012018-10-02 11:24:08 -0700524 * Convert a ->gp_state value to a character string.
525 */
526static const char *gp_state_getname(short gs)
527{
528 if (gs < 0 || gs >= ARRAY_SIZE(gp_state_names))
529 return "???";
530 return gp_state_names[gs];
531}
532
533/*
Paul E. McKenneyad0dc7f2014-02-19 10:51:42 -0800534 * Send along grace-period-related data for rcutorture diagnostics.
535 */
536void rcutorture_get_gp_data(enum rcutorture_type test_type, int *flags,
Paul E. McKenneyaebc8262018-05-01 06:42:51 -0700537 unsigned long *gp_seq)
Paul E. McKenneyad0dc7f2014-02-19 10:51:42 -0800538{
Paul E. McKenneyad0dc7f2014-02-19 10:51:42 -0800539 switch (test_type) {
540 case RCU_FLAVOR:
Paul E. McKenneyf7dd7d42018-07-04 15:39:40 -0700541 *flags = READ_ONCE(rcu_state.gp_flags);
542 *gp_seq = rcu_seq_current(&rcu_state.gp_seq);
Paul E. McKenneyad0dc7f2014-02-19 10:51:42 -0800543 break;
544 default:
545 break;
546 }
Paul E. McKenneyad0dc7f2014-02-19 10:51:42 -0800547}
548EXPORT_SYMBOL_GPL(rcutorture_get_gp_data);
549
550/*
Paul E. McKenney215bba92017-10-05 16:37:03 -0700551 * Enter an RCU extended quiescent state, which can be either the
552 * idle loop or adaptive-tickless usermode execution.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100553 *
Paul E. McKenney215bba92017-10-05 16:37:03 -0700554 * We crowbar the ->dynticks_nmi_nesting field to zero to allow for
555 * the possibility of usermode upcalls having messed up our count
556 * of interrupt nesting level during the prior busy period.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100557 */
Paul E. McKenney215bba92017-10-05 16:37:03 -0700558static void rcu_eqs_enter(bool user)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100559{
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700560 struct rcu_data *rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenney215bba92017-10-05 16:37:03 -0700561
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700562 WARN_ON_ONCE(rdp->dynticks_nmi_nesting != DYNTICK_IRQ_NONIDLE);
563 WRITE_ONCE(rdp->dynticks_nmi_nesting, 0);
Paul E. McKenney215bba92017-10-05 16:37:03 -0700564 WARN_ON_ONCE(IS_ENABLED(CONFIG_RCU_EQS_DEBUG) &&
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700565 rdp->dynticks_nesting == 0);
566 if (rdp->dynticks_nesting != 1) {
567 rdp->dynticks_nesting--;
Paul E. McKenney215bba92017-10-05 16:37:03 -0700568 return;
569 }
Paul E. McKenney96d3fd02013-10-04 14:33:34 -0700570
Frederic Weisbeckerb04db8e2017-11-06 16:01:30 +0100571 lockdep_assert_irqs_disabled();
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700572 trace_rcu_dyntick(TPS("Start"), rdp->dynticks_nesting, 0, rdp->dynticks);
Paul E. McKenneye68bbb22017-10-05 19:55:31 -0700573 WARN_ON_ONCE(IS_ENABLED(CONFIG_RCU_EQS_DEBUG) && !user && !is_idle_task(current));
Paul E. McKenneyb97d23c2018-07-04 15:35:00 -0700574 rdp = this_cpu_ptr(&rcu_data);
575 do_nocb_deferred_wakeup(rdp);
Paul E. McKenney198bbf82014-10-22 15:03:43 -0700576 rcu_prepare_for_idle();
Paul E. McKenney3e310092018-06-21 12:50:01 -0700577 rcu_preempt_deferred_qs(current);
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700578 WRITE_ONCE(rdp->dynticks_nesting, 0); /* Avoid irq-access tearing. */
Paul E. McKenney844ccdd2017-10-03 16:51:47 -0700579 rcu_dynticks_eqs_enter();
Paul E. McKenney176f8f72014-08-04 17:43:50 -0700580 rcu_dynticks_task_enter();
Frederic Weisbeckeradf50912012-06-28 11:20:21 -0700581}
582
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700583/**
584 * rcu_idle_enter - inform RCU that current CPU is entering idle
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100585 *
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700586 * Enter idle mode, in other words, -leave- the mode in which RCU
587 * read-side critical sections can occur. (Though RCU read-side
588 * critical sections can occur in irq handlers in idle, a possibility
589 * handled by irq_enter() and irq_exit().)
590 *
Paul E. McKenneyc0da3132017-09-22 09:58:47 -0700591 * If you add or remove a call to rcu_idle_enter(), be sure to test with
592 * CONFIG_RCU_EQS_DEBUG=y.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100593 */
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700594void rcu_idle_enter(void)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100595{
Frederic Weisbeckerb04db8e2017-11-06 16:01:30 +0100596 lockdep_assert_irqs_disabled();
Paul E. McKenneycb349ca2012-09-04 17:35:31 -0700597 rcu_eqs_enter(false);
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700598}
599
Paul E. McKenneyd1ec4c32015-05-13 10:41:58 -0700600#ifdef CONFIG_NO_HZ_FULL
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700601/**
Frederic Weisbeckeradf50912012-06-28 11:20:21 -0700602 * rcu_user_enter - inform RCU that we are resuming userspace.
603 *
604 * Enter RCU idle mode right before resuming userspace. No use of RCU
605 * is permitted between this call and rcu_user_exit(). This way the
606 * CPU doesn't need to maintain the tick for RCU maintenance purposes
607 * when the CPU runs in userspace.
Paul E. McKenneyc0da3132017-09-22 09:58:47 -0700608 *
609 * If you add or remove a call to rcu_user_enter(), be sure to test with
610 * CONFIG_RCU_EQS_DEBUG=y.
Frederic Weisbeckeradf50912012-06-28 11:20:21 -0700611 */
612void rcu_user_enter(void)
613{
Frederic Weisbeckerb04db8e2017-11-06 16:01:30 +0100614 lockdep_assert_irqs_disabled();
Paul E. McKenneyd4db30a2017-07-12 09:03:35 -0700615 rcu_eqs_enter(true);
Frederic Weisbeckeradf50912012-06-28 11:20:21 -0700616}
Paul E. McKenneyd1ec4c32015-05-13 10:41:58 -0700617#endif /* CONFIG_NO_HZ_FULL */
Frederic Weisbecker19dd15912012-06-04 16:42:35 -0700618
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900619/*
Paul E. McKenneyfd581a92017-10-02 21:56:20 -0700620 * If we are returning from the outermost NMI handler that interrupted an
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700621 * RCU-idle period, update rdp->dynticks and rdp->dynticks_nmi_nesting
Paul E. McKenneyfd581a92017-10-02 21:56:20 -0700622 * to let the RCU grace-period handling know that the CPU is back to
623 * being RCU-idle.
624 *
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900625 * If you add or remove a call to rcu_nmi_exit_common(), be sure to test
Paul E. McKenneyfd581a92017-10-02 21:56:20 -0700626 * with CONFIG_RCU_EQS_DEBUG=y.
627 */
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900628static __always_inline void rcu_nmi_exit_common(bool irq)
Paul E. McKenneyfd581a92017-10-02 21:56:20 -0700629{
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700630 struct rcu_data *rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenneyfd581a92017-10-02 21:56:20 -0700631
632 /*
633 * Check for ->dynticks_nmi_nesting underflow and bad ->dynticks.
634 * (We are exiting an NMI handler, so RCU better be paying attention
635 * to us!)
636 */
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700637 WARN_ON_ONCE(rdp->dynticks_nmi_nesting <= 0);
Paul E. McKenneyfd581a92017-10-02 21:56:20 -0700638 WARN_ON_ONCE(rcu_dynticks_curr_cpu_in_eqs());
639
640 /*
641 * If the nesting level is not 1, the CPU wasn't RCU-idle, so
642 * leave it in non-RCU-idle state.
643 */
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700644 if (rdp->dynticks_nmi_nesting != 1) {
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700645 trace_rcu_dyntick(TPS("--="), rdp->dynticks_nmi_nesting, rdp->dynticks_nmi_nesting - 2, rdp->dynticks);
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700646 WRITE_ONCE(rdp->dynticks_nmi_nesting, /* No store tearing. */
647 rdp->dynticks_nmi_nesting - 2);
Paul E. McKenneyfd581a92017-10-02 21:56:20 -0700648 return;
649 }
650
651 /* This NMI interrupted an RCU-idle CPU, restore RCU-idleness. */
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700652 trace_rcu_dyntick(TPS("Startirq"), rdp->dynticks_nmi_nesting, 0, rdp->dynticks);
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700653 WRITE_ONCE(rdp->dynticks_nmi_nesting, 0); /* Avoid store tearing. */
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900654
655 if (irq)
656 rcu_prepare_for_idle();
657
Paul E. McKenneyfd581a92017-10-02 21:56:20 -0700658 rcu_dynticks_eqs_enter();
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900659
660 if (irq)
661 rcu_dynticks_task_enter();
662}
663
664/**
665 * rcu_nmi_exit - inform RCU of exit from NMI context
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900666 *
667 * If you add or remove a call to rcu_nmi_exit(), be sure to test
668 * with CONFIG_RCU_EQS_DEBUG=y.
669 */
670void rcu_nmi_exit(void)
671{
672 rcu_nmi_exit_common(false);
Paul E. McKenneyfd581a92017-10-02 21:56:20 -0700673}
674
675/**
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700676 * rcu_irq_exit - inform RCU that current CPU is exiting irq towards idle
677 *
678 * Exit from an interrupt handler, which might possibly result in entering
679 * idle mode, in other words, leaving the mode in which read-side critical
Paul E. McKenney7c9906c2015-10-31 00:59:01 -0700680 * sections can occur. The caller must have disabled interrupts.
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700681 *
682 * This code assumes that the idle loop never does anything that might
683 * result in unbalanced calls to irq_enter() and irq_exit(). If your
Paul E. McKenney58721f52017-10-03 10:42:22 -0700684 * architecture's idle loop violates this assumption, RCU will give you what
685 * you deserve, good and hard. But very infrequently and irreproducibly.
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700686 *
687 * Use things like work queues to work around this limitation.
688 *
689 * You have been warned.
Paul E. McKenneyc0da3132017-09-22 09:58:47 -0700690 *
691 * If you add or remove a call to rcu_irq_exit(), be sure to test with
692 * CONFIG_RCU_EQS_DEBUG=y.
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700693 */
694void rcu_irq_exit(void)
695{
Frederic Weisbeckerb04db8e2017-11-06 16:01:30 +0100696 lockdep_assert_irqs_disabled();
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900697 rcu_nmi_exit_common(true);
Paul E. McKenney7c9906c2015-10-31 00:59:01 -0700698}
699
700/*
701 * Wrapper for rcu_irq_exit() where interrupts are enabled.
Paul E. McKenneyc0da3132017-09-22 09:58:47 -0700702 *
703 * If you add or remove a call to rcu_irq_exit_irqson(), be sure to test
704 * with CONFIG_RCU_EQS_DEBUG=y.
Paul E. McKenney7c9906c2015-10-31 00:59:01 -0700705 */
706void rcu_irq_exit_irqson(void)
707{
708 unsigned long flags;
709
710 local_irq_save(flags);
711 rcu_irq_exit();
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700712 local_irq_restore(flags);
713}
714
715/*
Frederic Weisbeckeradf50912012-06-28 11:20:21 -0700716 * Exit an RCU extended quiescent state, which can be either the
717 * idle loop or adaptive-tickless usermode execution.
Paul E. McKenney51a1fd32017-10-03 14:43:40 -0700718 *
719 * We crowbar the ->dynticks_nmi_nesting field to DYNTICK_IRQ_NONIDLE to
720 * allow for the possibility of usermode upcalls messing up our count of
721 * interrupt nesting level during the busy period that is just now starting.
Frederic Weisbeckeradf50912012-06-28 11:20:21 -0700722 */
723static void rcu_eqs_exit(bool user)
724{
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700725 struct rcu_data *rdp;
Paul E. McKenney84585aa2017-10-04 15:55:16 -0700726 long oldval;
Frederic Weisbeckeradf50912012-06-28 11:20:21 -0700727
Frederic Weisbeckerb04db8e2017-11-06 16:01:30 +0100728 lockdep_assert_irqs_disabled();
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700729 rdp = this_cpu_ptr(&rcu_data);
730 oldval = rdp->dynticks_nesting;
Paul E. McKenney1ce46ee2015-05-05 23:04:22 -0700731 WARN_ON_ONCE(IS_ENABLED(CONFIG_RCU_EQS_DEBUG) && oldval < 0);
Paul E. McKenney51a1fd32017-10-03 14:43:40 -0700732 if (oldval) {
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700733 rdp->dynticks_nesting++;
Paul E. McKenney9dd238e2017-10-05 16:56:26 -0700734 return;
Paul E. McKenney3a5924052013-10-04 18:48:55 -0700735 }
Paul E. McKenney9dd238e2017-10-05 16:56:26 -0700736 rcu_dynticks_task_exit();
737 rcu_dynticks_eqs_exit();
738 rcu_cleanup_after_idle();
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700739 trace_rcu_dyntick(TPS("End"), rdp->dynticks_nesting, 1, rdp->dynticks);
Paul E. McKenneye68bbb22017-10-05 19:55:31 -0700740 WARN_ON_ONCE(IS_ENABLED(CONFIG_RCU_EQS_DEBUG) && !user && !is_idle_task(current));
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700741 WRITE_ONCE(rdp->dynticks_nesting, 1);
742 WARN_ON_ONCE(rdp->dynticks_nmi_nesting);
743 WRITE_ONCE(rdp->dynticks_nmi_nesting, DYNTICK_IRQ_NONIDLE);
Frederic Weisbeckeradf50912012-06-28 11:20:21 -0700744}
745
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700746/**
747 * rcu_idle_exit - inform RCU that current CPU is leaving idle
748 *
749 * Exit idle mode, in other words, -enter- the mode in which RCU
750 * read-side critical sections can occur.
751 *
Paul E. McKenneyc0da3132017-09-22 09:58:47 -0700752 * If you add or remove a call to rcu_idle_exit(), be sure to test with
753 * CONFIG_RCU_EQS_DEBUG=y.
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700754 */
755void rcu_idle_exit(void)
756{
Frederic Weisbeckerc5d900b2012-07-11 20:26:31 +0200757 unsigned long flags;
758
759 local_irq_save(flags);
Paul E. McKenneycb349ca2012-09-04 17:35:31 -0700760 rcu_eqs_exit(false);
Frederic Weisbeckerc5d900b2012-07-11 20:26:31 +0200761 local_irq_restore(flags);
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700762}
763
Paul E. McKenneyd1ec4c32015-05-13 10:41:58 -0700764#ifdef CONFIG_NO_HZ_FULL
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700765/**
Frederic Weisbeckeradf50912012-06-28 11:20:21 -0700766 * rcu_user_exit - inform RCU that we are exiting userspace.
767 *
768 * Exit RCU idle mode while entering the kernel because it can
769 * run a RCU read side critical section anytime.
Paul E. McKenneyc0da3132017-09-22 09:58:47 -0700770 *
771 * If you add or remove a call to rcu_user_exit(), be sure to test with
772 * CONFIG_RCU_EQS_DEBUG=y.
Frederic Weisbeckeradf50912012-06-28 11:20:21 -0700773 */
774void rcu_user_exit(void)
775{
Frederic Weisbecker91d1aa432012-11-27 19:33:25 +0100776 rcu_eqs_exit(1);
Frederic Weisbeckeradf50912012-06-28 11:20:21 -0700777}
Paul E. McKenneyd1ec4c32015-05-13 10:41:58 -0700778#endif /* CONFIG_NO_HZ_FULL */
Frederic Weisbecker19dd15912012-06-04 16:42:35 -0700779
780/**
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900781 * rcu_nmi_enter_common - inform RCU of entry to NMI context
782 * @irq: Is this call from rcu_irq_enter?
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100783 *
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700784 * If the CPU was idle from RCU's viewpoint, update rdp->dynticks and
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700785 * rdp->dynticks_nmi_nesting to let the RCU grace-period handling know
Paul E. McKenney734d1682014-11-21 14:45:12 -0800786 * that the CPU is active. This implementation permits nested NMIs, as
787 * long as the nesting level does not overflow an int. (You will probably
788 * run out of stack space first.)
Paul E. McKenneyc0da3132017-09-22 09:58:47 -0700789 *
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900790 * If you add or remove a call to rcu_nmi_enter_common(), be sure to test
Paul E. McKenneyc0da3132017-09-22 09:58:47 -0700791 * with CONFIG_RCU_EQS_DEBUG=y.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100792 */
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900793static __always_inline void rcu_nmi_enter_common(bool irq)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100794{
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700795 struct rcu_data *rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenney84585aa2017-10-04 15:55:16 -0700796 long incby = 2;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100797
Paul E. McKenney734d1682014-11-21 14:45:12 -0800798 /* Complain about underflow. */
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700799 WARN_ON_ONCE(rdp->dynticks_nmi_nesting < 0);
Paul E. McKenney734d1682014-11-21 14:45:12 -0800800
801 /*
802 * If idle from RCU viewpoint, atomically increment ->dynticks
803 * to mark non-idle and increment ->dynticks_nmi_nesting by one.
804 * Otherwise, increment ->dynticks_nmi_nesting by two. This means
805 * if ->dynticks_nmi_nesting is equal to one, we are guaranteed
806 * to be in the outermost NMI handler that interrupted an RCU-idle
807 * period (observation due to Andy Lutomirski).
808 */
Paul E. McKenney02a5c5502016-11-02 17:25:06 -0700809 if (rcu_dynticks_curr_cpu_in_eqs()) {
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900810
811 if (irq)
812 rcu_dynticks_task_exit();
813
Paul E. McKenney2625d462016-11-02 14:23:30 -0700814 rcu_dynticks_eqs_exit();
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900815
816 if (irq)
817 rcu_cleanup_after_idle();
818
Paul E. McKenney734d1682014-11-21 14:45:12 -0800819 incby = 1;
820 }
Paul E. McKenneybd2b8792017-10-04 12:29:01 -0700821 trace_rcu_dyntick(incby == 1 ? TPS("Endirq") : TPS("++="),
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700822 rdp->dynticks_nmi_nesting,
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700823 rdp->dynticks_nmi_nesting + incby, rdp->dynticks);
Paul E. McKenney4c5273b2018-08-03 21:00:38 -0700824 WRITE_ONCE(rdp->dynticks_nmi_nesting, /* Prevent store tearing. */
825 rdp->dynticks_nmi_nesting + incby);
Paul E. McKenney734d1682014-11-21 14:45:12 -0800826 barrier();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100827}
828
829/**
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900830 * rcu_nmi_enter - inform RCU of entry to NMI context
831 */
832void rcu_nmi_enter(void)
833{
834 rcu_nmi_enter_common(false);
835}
Masami Hiramatsuc13324a2019-02-13 01:12:15 +0900836NOKPROBE_SYMBOL(rcu_nmi_enter);
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900837
838/**
Paul E. McKenney34240692011-10-03 11:38:52 -0700839 * rcu_irq_enter - inform RCU that current CPU is entering irq away from idle
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100840 *
Paul E. McKenney34240692011-10-03 11:38:52 -0700841 * Enter an interrupt handler, which might possibly result in exiting
842 * idle mode, in other words, entering the mode in which read-side critical
843 * sections can occur. The caller must have disabled interrupts.
Paul E. McKenneyc0da3132017-09-22 09:58:47 -0700844 *
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700845 * Note that the Linux kernel is fully capable of entering an interrupt
Paul E. McKenney58721f52017-10-03 10:42:22 -0700846 * handler that it never exits, for example when doing upcalls to user mode!
847 * This code assumes that the idle loop never does upcalls to user mode.
848 * If your architecture's idle loop does do upcalls to user mode (or does
849 * anything else that results in unbalanced calls to the irq_enter() and
850 * irq_exit() functions), RCU will give you what you deserve, good and hard.
851 * But very infrequently and irreproducibly.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100852 *
853 * Use things like work queues to work around this limitation.
854 *
855 * You have been warned.
856 *
857 * If you add or remove a call to rcu_irq_enter(), be sure to test with
858 * CONFIG_RCU_EQS_DEBUG=y.
Paul E. McKenney23b5c8f2010-09-07 10:38:22 -0700859 */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100860void rcu_irq_enter(void)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100861{
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100862 lockdep_assert_irqs_disabled();
Byungchul Parkcf7614e2018-06-22 15:12:06 +0900863 rcu_nmi_enter_common(true);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100864}
Paul E. McKenney734d1682014-11-21 14:45:12 -0800865
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100866/*
867 * Wrapper for rcu_irq_enter() where interrupts are enabled.
868 *
869 * If you add or remove a call to rcu_irq_enter_irqson(), be sure to test
870 * with CONFIG_RCU_EQS_DEBUG=y.
871 */
872void rcu_irq_enter_irqson(void)
873{
874 unsigned long flags;
Paul E. McKenney734d1682014-11-21 14:45:12 -0800875
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100876 local_irq_save(flags);
877 rcu_irq_enter();
878 local_irq_restore(flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100879}
880
881/**
Zhouyi Zhou2320bda2018-10-08 06:50:41 +0000882 * rcu_is_watching - see if RCU thinks that the current CPU is not idle
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100883 *
Paul E. McKenney791875d2017-05-03 11:06:05 -0700884 * Return true if RCU is watching the running CPU, which means that this
885 * CPU can safely enter RCU read-side critical sections. In other words,
Zhouyi Zhou2320bda2018-10-08 06:50:41 +0000886 * if the current CPU is not in its idle loop or is in an interrupt or
887 * NMI handler, return true.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100888 */
Linus Torvaldsb29c8302013-11-16 12:23:18 -0800889bool notrace rcu_is_watching(void)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100890{
Pranith Kumarf534ed12014-07-08 18:26:11 -0400891 bool ret;
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700892
Alexei Starovoitov46f00d12015-06-16 10:35:18 -0700893 preempt_disable_notrace();
Paul E. McKenney791875d2017-05-03 11:06:05 -0700894 ret = !rcu_dynticks_curr_cpu_in_eqs();
Alexei Starovoitov46f00d12015-06-16 10:35:18 -0700895 preempt_enable_notrace();
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700896 return ret;
897}
Paul E. McKenney5c173eb2013-09-13 17:20:11 -0700898EXPORT_SYMBOL_GPL(rcu_is_watching);
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700899
Paul E. McKenneybcbfdd02017-04-11 15:50:41 -0700900/*
901 * If a holdout task is actually running, request an urgent quiescent
902 * state from its CPU. This is unsynchronized, so migrations can cause
903 * the request to go to the wrong CPU. Which is OK, all that will happen
904 * is that the CPU's next context switch will be a bit slower and next
905 * time around this task will generate another request.
906 */
907void rcu_request_urgent_qs_task(struct task_struct *t)
908{
909 int cpu;
910
911 barrier();
912 cpu = task_cpu(t);
913 if (!task_curr(t))
914 return; /* This task is not running on that CPU. */
Paul E. McKenney2dba13f2018-08-03 21:00:38 -0700915 smp_store_release(per_cpu_ptr(&rcu_data.rcu_urgent_qs, cpu), true);
Paul E. McKenneybcbfdd02017-04-11 15:50:41 -0700916}
917
Paul E. McKenney62fde6e2012-05-22 22:10:24 -0700918#if defined(CONFIG_PROVE_RCU) && defined(CONFIG_HOTPLUG_CPU)
Paul E. McKenneyc0d6d012012-01-23 12:41:26 -0800919
920/*
Paul E. McKenney55547882018-05-15 10:14:34 -0700921 * Is the current CPU online as far as RCU is concerned?
Paul E. McKenney2036d942012-01-30 17:02:47 -0800922 *
Paul E. McKenney55547882018-05-15 10:14:34 -0700923 * Disable preemption to avoid false positives that could otherwise
924 * happen due to the current CPU number being sampled, this task being
925 * preempted, its old CPU being taken offline, resuming on some other CPU,
Paul E. McKenney49918a52018-07-07 18:12:26 -0700926 * then determining that its old CPU is now offline.
Paul E. McKenneyc0d6d012012-01-23 12:41:26 -0800927 *
Paul E. McKenney55547882018-05-15 10:14:34 -0700928 * Disable checking if in an NMI handler because we cannot safely
929 * report errors from NMI handlers anyway. In addition, it is OK to use
930 * RCU on an offline processor during initial boot, hence the check for
931 * rcu_scheduler_fully_active.
Paul E. McKenneyc0d6d012012-01-23 12:41:26 -0800932 */
933bool rcu_lockdep_current_cpu_online(void)
934{
Paul E. McKenney2036d942012-01-30 17:02:47 -0800935 struct rcu_data *rdp;
936 struct rcu_node *rnp;
Paul E. McKenneyb97d23c2018-07-04 15:35:00 -0700937 bool ret = false;
Paul E. McKenneyc0d6d012012-01-23 12:41:26 -0800938
Paul E. McKenney55547882018-05-15 10:14:34 -0700939 if (in_nmi() || !rcu_scheduler_fully_active)
Fengguang Wuf6f7ee92013-10-10 11:08:33 -0700940 return true;
Paul E. McKenneyc0d6d012012-01-23 12:41:26 -0800941 preempt_disable();
Paul E. McKenneyb97d23c2018-07-04 15:35:00 -0700942 rdp = this_cpu_ptr(&rcu_data);
943 rnp = rdp->mynode;
944 if (rdp->grpmask & rcu_rnp_online_cpus(rnp))
945 ret = true;
Paul E. McKenneyc0d6d012012-01-23 12:41:26 -0800946 preempt_enable();
Paul E. McKenneyb97d23c2018-07-04 15:35:00 -0700947 return ret;
Paul E. McKenneyc0d6d012012-01-23 12:41:26 -0800948}
949EXPORT_SYMBOL_GPL(rcu_lockdep_current_cpu_online);
950
Paul E. McKenney62fde6e2012-05-22 22:10:24 -0700951#endif /* #if defined(CONFIG_PROVE_RCU) && defined(CONFIG_HOTPLUG_CPU) */
Paul E. McKenney9b2e4f12011-09-30 12:10:22 -0700952
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100953/*
Paul E. McKenney9b9500d2017-08-17 17:05:59 -0700954 * We are reporting a quiescent state on behalf of some other CPU, so
955 * it is our responsibility to check for and handle potential overflow
Paul E. McKenneya66ae8a2018-04-27 18:06:08 -0700956 * of the rcu_node ->gp_seq counter with respect to the rcu_data counters.
Paul E. McKenney9b9500d2017-08-17 17:05:59 -0700957 * After all, the CPU might be in deep idle state, and thus executing no
958 * code whatsoever.
959 */
960static void rcu_gpnum_ovf(struct rcu_node *rnp, struct rcu_data *rdp)
961{
Matthew Wilcoxa32e01e2018-01-17 06:24:30 -0800962 raw_lockdep_assert_held_rcu_node(rnp);
Paul E. McKenneya66ae8a2018-04-27 18:06:08 -0700963 if (ULONG_CMP_LT(rcu_seq_current(&rdp->gp_seq) + ULONG_MAX / 4,
964 rnp->gp_seq))
Paul E. McKenney9b9500d2017-08-17 17:05:59 -0700965 WRITE_ONCE(rdp->gpwrap, true);
Paul E. McKenney8aa670c2018-04-28 14:15:40 -0700966 if (ULONG_CMP_LT(rdp->rcu_iw_gp_seq + ULONG_MAX / 4, rnp->gp_seq))
967 rdp->rcu_iw_gp_seq = rnp->gp_seq + ULONG_MAX / 4;
Paul E. McKenney9b9500d2017-08-17 17:05:59 -0700968}
969
970/*
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100971 * Snapshot the specified CPU's dynticks counter so that we can later
972 * credit them with an implicit quiescent state. Return 1 if this CPU
Paul E. McKenney1eba8f82009-09-23 09:50:42 -0700973 * is in dynticks idle mode, which is an extended quiescent state.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100974 */
Paul E. McKenneyfe5ac722017-05-11 11:26:22 -0700975static int dyntick_save_progress_counter(struct rcu_data *rdp)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100976{
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -0700977 rdp->dynticks_snap = rcu_dynticks_snap(rdp);
Paul E. McKenney02a5c5502016-11-02 17:25:06 -0700978 if (rcu_dynticks_in_eqs(rdp->dynticks_snap)) {
Paul E. McKenney88d1bea2018-07-04 14:45:00 -0700979 trace_rcu_fqs(rcu_state.name, rdp->gp_seq, rdp->cpu, TPS("dti"));
Paul E. McKenney9b9500d2017-08-17 17:05:59 -0700980 rcu_gpnum_ovf(rdp->mynode, rdp);
Paul E. McKenney23a9bac2015-12-13 08:57:10 -0800981 return 1;
Andreea-Cristina Bernat7941dbd2014-03-17 18:33:28 +0200982 }
Paul E. McKenney23a9bac2015-12-13 08:57:10 -0800983 return 0;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100984}
985
986/*
987 * Return true if the specified CPU has passed through a quiescent
988 * state by virtue of being in or having passed through an dynticks
989 * idle state since the last call to dyntick_save_progress_counter()
Paul E. McKenneya82dcc72012-08-01 14:29:20 -0700990 * for this same CPU, or by virtue of having been offline.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100991 */
Paul E. McKenneyfe5ac722017-05-11 11:26:22 -0700992static int rcu_implicit_dynticks_qs(struct rcu_data *rdp)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100993{
Paul E. McKenney3a19b462016-11-30 11:21:21 -0800994 unsigned long jtsq;
Paul E. McKenney0f9be8c2017-01-27 13:17:02 -0800995 bool *rnhqp;
Paul E. McKenney9226b102017-01-27 14:17:50 -0800996 bool *ruqp;
Paul E. McKenney9b9500d2017-08-17 17:05:59 -0700997 struct rcu_node *rnp = rdp->mynode;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +0100998
999 /*
1000 * If the CPU passed through or entered a dynticks idle phase with
1001 * no active irq/NMI handlers, then we can safely pretend that the CPU
1002 * already acknowledged the request to pass through a quiescent
1003 * state. Either way, that CPU cannot possibly be in an RCU
1004 * read-side critical section that started before the beginning
1005 * of the current RCU grace period.
1006 */
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -07001007 if (rcu_dynticks_in_eqs_since(rdp, rdp->dynticks_snap)) {
Paul E. McKenney88d1bea2018-07-04 14:45:00 -07001008 trace_rcu_fqs(rcu_state.name, rdp->gp_seq, rdp->cpu, TPS("dti"));
Paul E. McKenney9b9500d2017-08-17 17:05:59 -07001009 rcu_gpnum_ovf(rnp, rdp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001010 return 1;
1011 }
1012
Paul E. McKenneyf2e2df52018-05-15 16:23:23 -07001013 /* If waiting too long on an offline CPU, complain. */
1014 if (!(rdp->grpmask & rcu_rnp_online_cpus(rnp)) &&
Paul E. McKenney88d1bea2018-07-04 14:45:00 -07001015 time_after(jiffies, rcu_state.gp_start + HZ)) {
Paul E. McKenneyf2e2df52018-05-15 16:23:23 -07001016 bool onl;
1017 struct rcu_node *rnp1;
1018
1019 WARN_ON(1); /* Offline CPUs are supposed to report QS! */
1020 pr_info("%s: grp: %d-%d level: %d ->gp_seq %ld ->completedqs %ld\n",
1021 __func__, rnp->grplo, rnp->grphi, rnp->level,
1022 (long)rnp->gp_seq, (long)rnp->completedqs);
1023 for (rnp1 = rnp; rnp1; rnp1 = rnp1->parent)
1024 pr_info("%s: %d:%d ->qsmask %#lx ->qsmaskinit %#lx ->qsmaskinitnext %#lx ->rcu_gp_init_mask %#lx\n",
1025 __func__, rnp1->grplo, rnp1->grphi, rnp1->qsmask, rnp1->qsmaskinit, rnp1->qsmaskinitnext, rnp1->rcu_gp_init_mask);
1026 onl = !!(rdp->grpmask & rcu_rnp_online_cpus(rnp));
1027 pr_info("%s %d: %c online: %ld(%d) offline: %ld(%d)\n",
1028 __func__, rdp->cpu, ".o"[onl],
1029 (long)rdp->rcu_onl_gp_seq, rdp->rcu_onl_gp_flags,
1030 (long)rdp->rcu_ofl_gp_seq, rdp->rcu_ofl_gp_flags);
1031 return 1; /* Break things loose after complaining. */
1032 }
1033
Paul E. McKenney65d798f2013-04-12 16:19:10 -07001034 /*
Paul E. McKenney4a81e832014-06-20 16:49:01 -07001035 * A CPU running for an extended time within the kernel can
Paul E. McKenneyc06aed02018-07-25 11:25:23 -07001036 * delay RCU grace periods: (1) At age jiffies_to_sched_qs,
1037 * set .rcu_urgent_qs, (2) At age 2*jiffies_to_sched_qs, set
Paul E. McKenney7e28c5a2018-07-11 08:09:28 -07001038 * both .rcu_need_heavy_qs and .rcu_urgent_qs. Note that the
1039 * unsynchronized assignments to the per-CPU rcu_need_heavy_qs
1040 * variable are safe because the assignments are repeated if this
1041 * CPU failed to pass through a quiescent state. This code
Paul E. McKenneyc06aed02018-07-25 11:25:23 -07001042 * also checks .jiffies_resched in case jiffies_to_sched_qs
Paul E. McKenney7e28c5a2018-07-11 08:09:28 -07001043 * is set way high.
Paul E. McKenney65d798f2013-04-12 16:19:10 -07001044 */
Paul E. McKenneyc06aed02018-07-25 11:25:23 -07001045 jtsq = READ_ONCE(jiffies_to_sched_qs);
Paul E. McKenney2dba13f2018-08-03 21:00:38 -07001046 ruqp = per_cpu_ptr(&rcu_data.rcu_urgent_qs, rdp->cpu);
1047 rnhqp = &per_cpu(rcu_data.rcu_need_heavy_qs, rdp->cpu);
Paul E. McKenney0f9be8c2017-01-27 13:17:02 -08001048 if (!READ_ONCE(*rnhqp) &&
Paul E. McKenney7e28c5a2018-07-11 08:09:28 -07001049 (time_after(jiffies, rcu_state.gp_start + jtsq * 2) ||
Paul E. McKenney88d1bea2018-07-04 14:45:00 -07001050 time_after(jiffies, rcu_state.jiffies_resched))) {
Paul E. McKenney0f9be8c2017-01-27 13:17:02 -08001051 WRITE_ONCE(*rnhqp, true);
Paul E. McKenney9226b102017-01-27 14:17:50 -08001052 /* Store rcu_need_heavy_qs before rcu_urgent_qs. */
1053 smp_store_release(ruqp, true);
Paul E. McKenney7e28c5a2018-07-11 08:09:28 -07001054 } else if (time_after(jiffies, rcu_state.gp_start + jtsq)) {
1055 WRITE_ONCE(*ruqp, true);
Paul E. McKenney6193c762013-09-23 13:57:18 -07001056 }
1057
Paul E. McKenney28053bc2016-12-01 11:31:31 -08001058 /*
Paul E. McKenneyc98cac62018-11-21 11:35:03 -08001059 * NO_HZ_FULL CPUs can run in-kernel without rcu_sched_clock_irq!
Paul E. McKenneyd3052102018-07-25 11:49:47 -07001060 * The above code handles this, but only for straight cond_resched().
1061 * And some in-kernel loops check need_resched() before calling
1062 * cond_resched(), which defeats the above code for CPUs that are
1063 * running in-kernel with scheduling-clock interrupts disabled.
1064 * So hit them over the head with the resched_cpu() hammer!
Paul E. McKenney28053bc2016-12-01 11:31:31 -08001065 */
Paul E. McKenneyd3052102018-07-25 11:49:47 -07001066 if (tick_nohz_full_cpu(rdp->cpu) &&
1067 time_after(jiffies,
1068 READ_ONCE(rdp->last_fqs_resched) + jtsq * 3)) {
Paul E. McKenney28053bc2016-12-01 11:31:31 -08001069 resched_cpu(rdp->cpu);
Paul E. McKenneyd3052102018-07-25 11:49:47 -07001070 WRITE_ONCE(rdp->last_fqs_resched, jiffies);
1071 }
1072
1073 /*
1074 * If more than halfway to RCU CPU stall-warning time, invoke
1075 * resched_cpu() more frequently to try to loosen things up a bit.
1076 * Also check to see if the CPU is getting hammered with interrupts,
1077 * but only once per grace period, just to keep the IPIs down to
1078 * a dull roar.
Paul E. McKenney49149502015-12-11 13:48:43 -08001079 */
Paul E. McKenney7e28c5a2018-07-11 08:09:28 -07001080 if (time_after(jiffies, rcu_state.jiffies_resched)) {
Paul E. McKenneyd3052102018-07-25 11:49:47 -07001081 if (time_after(jiffies,
1082 READ_ONCE(rdp->last_fqs_resched) + jtsq)) {
1083 resched_cpu(rdp->cpu);
1084 WRITE_ONCE(rdp->last_fqs_resched, jiffies);
1085 }
Paul E. McKenney9b9500d2017-08-17 17:05:59 -07001086 if (IS_ENABLED(CONFIG_IRQ_WORK) &&
Paul E. McKenney8aa670c2018-04-28 14:15:40 -07001087 !rdp->rcu_iw_pending && rdp->rcu_iw_gp_seq != rnp->gp_seq &&
Paul E. McKenney9b9500d2017-08-17 17:05:59 -07001088 (rnp->ffmask & rdp->grpmask)) {
1089 init_irq_work(&rdp->rcu_iw, rcu_iw_handler);
1090 rdp->rcu_iw_pending = true;
Paul E. McKenney8aa670c2018-04-28 14:15:40 -07001091 rdp->rcu_iw_gp_seq = rnp->gp_seq;
Paul E. McKenney9b9500d2017-08-17 17:05:59 -07001092 irq_work_queue_on(&rdp->rcu_iw, rdp->cpu);
1093 }
1094 }
Paul E. McKenney49149502015-12-11 13:48:43 -08001095
Paul E. McKenneya82dcc72012-08-01 14:29:20 -07001096 return 0;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001097}
1098
Paul E. McKenney41e80592018-04-12 11:24:09 -07001099/* Trace-event wrapper function for trace_rcu_future_grace_period. */
1100static void trace_rcu_this_gp(struct rcu_node *rnp, struct rcu_data *rdp,
Joel Fernandesb73de912018-05-20 21:42:18 -07001101 unsigned long gp_seq_req, const char *s)
Paul E. McKenney0446be42012-12-30 15:21:01 -08001102{
Paul E. McKenney88d1bea2018-07-04 14:45:00 -07001103 trace_rcu_future_grace_period(rcu_state.name, rnp->gp_seq, gp_seq_req,
Paul E. McKenneyabd13fd2018-05-01 13:08:46 -07001104 rnp->level, rnp->grplo, rnp->grphi, s);
Paul E. McKenney0446be42012-12-30 15:21:01 -08001105}
1106
1107/*
Joel Fernandesb73de912018-05-20 21:42:18 -07001108 * rcu_start_this_gp - Request the start of a particular grace period
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001109 * @rnp_start: The leaf node of the CPU from which to start.
Joel Fernandesb73de912018-05-20 21:42:18 -07001110 * @rdp: The rcu_data corresponding to the CPU from which to start.
1111 * @gp_seq_req: The gp_seq of the grace period to start.
1112 *
Paul E. McKenney41e80592018-04-12 11:24:09 -07001113 * Start the specified grace period, as needed to handle newly arrived
Paul E. McKenney0446be42012-12-30 15:21:01 -08001114 * callbacks. The required future grace periods are recorded in each
Paul E. McKenney7a1d0f22018-05-01 10:26:57 -07001115 * rcu_node structure's ->gp_seq_needed field. Returns true if there
Paul E. McKenney48a76392014-03-11 13:02:16 -07001116 * is reason to awaken the grace-period kthread.
Paul E. McKenney0446be42012-12-30 15:21:01 -08001117 *
Paul E. McKenneyd5cd9682018-04-12 10:45:06 -07001118 * The caller must hold the specified rcu_node structure's ->lock, which
1119 * is why the caller is responsible for waking the grace-period kthread.
Joel Fernandesb73de912018-05-20 21:42:18 -07001120 *
1121 * Returns true if the GP thread needs to be awakened else false.
Paul E. McKenney0446be42012-12-30 15:21:01 -08001122 */
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001123static bool rcu_start_this_gp(struct rcu_node *rnp_start, struct rcu_data *rdp,
Joel Fernandesb73de912018-05-20 21:42:18 -07001124 unsigned long gp_seq_req)
Paul E. McKenney0446be42012-12-30 15:21:01 -08001125{
Paul E. McKenney48a76392014-03-11 13:02:16 -07001126 bool ret = false;
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001127 struct rcu_node *rnp;
Paul E. McKenney0446be42012-12-30 15:21:01 -08001128
Paul E. McKenney360e0da2018-04-12 11:50:41 -07001129 /*
1130 * Use funnel locking to either acquire the root rcu_node
1131 * structure's lock or bail out if the need for this grace period
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001132 * has already been recorded -- or if that grace period has in
1133 * fact already started. If there is already a grace period in
1134 * progress in a non-leaf node, no recording is needed because the
1135 * end of the grace period will scan the leaf rcu_node structures.
1136 * Note that rnp_start->lock must not be released.
Paul E. McKenney360e0da2018-04-12 11:50:41 -07001137 */
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001138 raw_lockdep_assert_held_rcu_node(rnp_start);
1139 trace_rcu_this_gp(rnp_start, rdp, gp_seq_req, TPS("Startleaf"));
1140 for (rnp = rnp_start; 1; rnp = rnp->parent) {
1141 if (rnp != rnp_start)
1142 raw_spin_lock_rcu_node(rnp);
1143 if (ULONG_CMP_GE(rnp->gp_seq_needed, gp_seq_req) ||
1144 rcu_seq_started(&rnp->gp_seq, gp_seq_req) ||
1145 (rnp != rnp_start &&
1146 rcu_seq_state(rcu_seq_current(&rnp->gp_seq)))) {
1147 trace_rcu_this_gp(rnp, rdp, gp_seq_req,
Joel Fernandesb73de912018-05-20 21:42:18 -07001148 TPS("Prestarted"));
Paul E. McKenney360e0da2018-04-12 11:50:41 -07001149 goto unlock_out;
1150 }
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001151 rnp->gp_seq_needed = gp_seq_req;
Joel Fernandes (Google)226ca5e2018-05-22 23:38:15 -07001152 if (rcu_seq_state(rcu_seq_current(&rnp->gp_seq))) {
Paul E. McKenneya2165e42018-05-12 07:42:20 -07001153 /*
Joel Fernandes (Google)226ca5e2018-05-22 23:38:15 -07001154 * We just marked the leaf or internal node, and a
1155 * grace period is in progress, which means that
1156 * rcu_gp_cleanup() will see the marking. Bail to
1157 * reduce contention.
Paul E. McKenneya2165e42018-05-12 07:42:20 -07001158 */
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001159 trace_rcu_this_gp(rnp_start, rdp, gp_seq_req,
Joel Fernandesb73de912018-05-20 21:42:18 -07001160 TPS("Startedleaf"));
Paul E. McKenneya2165e42018-05-12 07:42:20 -07001161 goto unlock_out;
1162 }
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001163 if (rnp != rnp_start && rnp->parent != NULL)
1164 raw_spin_unlock_rcu_node(rnp);
1165 if (!rnp->parent)
Paul E. McKenney360e0da2018-04-12 11:50:41 -07001166 break; /* At root, and perhaps also leaf. */
Paul E. McKenney0446be42012-12-30 15:21:01 -08001167 }
1168
Paul E. McKenney360e0da2018-04-12 11:50:41 -07001169 /* If GP already in progress, just leave, otherwise start one. */
Paul E. McKenneyde8e8732018-07-03 17:22:34 -07001170 if (rcu_gp_in_progress()) {
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001171 trace_rcu_this_gp(rnp, rdp, gp_seq_req, TPS("Startedleafroot"));
Paul E. McKenney0446be42012-12-30 15:21:01 -08001172 goto unlock_out;
1173 }
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001174 trace_rcu_this_gp(rnp, rdp, gp_seq_req, TPS("Startedroot"));
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001175 WRITE_ONCE(rcu_state.gp_flags, rcu_state.gp_flags | RCU_GP_FLAG_INIT);
1176 rcu_state.gp_req_activity = jiffies;
1177 if (!rcu_state.gp_kthread) {
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001178 trace_rcu_this_gp(rnp, rdp, gp_seq_req, TPS("NoGPkthread"));
Paul E. McKenney360e0da2018-04-12 11:50:41 -07001179 goto unlock_out;
Paul E. McKenney0446be42012-12-30 15:21:01 -08001180 }
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001181 trace_rcu_grace_period(rcu_state.name, READ_ONCE(rcu_state.gp_seq), TPS("newreq"));
Paul E. McKenney360e0da2018-04-12 11:50:41 -07001182 ret = true; /* Caller must wake GP kthread. */
Paul E. McKenney0446be42012-12-30 15:21:01 -08001183unlock_out:
Paul E. McKenneyab5e8692018-05-01 11:07:23 -07001184 /* Push furthest requested GP to leaf node and rcu_data structure. */
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001185 if (ULONG_CMP_LT(gp_seq_req, rnp->gp_seq_needed)) {
1186 rnp_start->gp_seq_needed = rnp->gp_seq_needed;
1187 rdp->gp_seq_needed = rnp->gp_seq_needed;
Paul E. McKenneyab5e8692018-05-01 11:07:23 -07001188 }
Joel Fernandes (Google)df2bf8f2018-05-22 23:38:14 -07001189 if (rnp != rnp_start)
1190 raw_spin_unlock_rcu_node(rnp);
Paul E. McKenney48a76392014-03-11 13:02:16 -07001191 return ret;
Paul E. McKenney0446be42012-12-30 15:21:01 -08001192}
1193
1194/*
1195 * Clean up any old requests for the just-ended grace period. Also return
Paul E. McKenneyd1e4f012017-02-08 14:58:41 -08001196 * whether any additional grace periods have been requested.
Paul E. McKenney0446be42012-12-30 15:21:01 -08001197 */
Paul E. McKenney3481f2e2018-07-03 17:22:34 -07001198static bool rcu_future_gp_cleanup(struct rcu_node *rnp)
Paul E. McKenney0446be42012-12-30 15:21:01 -08001199{
Paul E. McKenneyfb313402018-04-12 07:20:30 -07001200 bool needmore;
Paul E. McKenneyda1df502018-07-03 15:37:16 -07001201 struct rcu_data *rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenney0446be42012-12-30 15:21:01 -08001202
Paul E. McKenney7a1d0f22018-05-01 10:26:57 -07001203 needmore = ULONG_CMP_LT(rnp->gp_seq, rnp->gp_seq_needed);
1204 if (!needmore)
1205 rnp->gp_seq_needed = rnp->gp_seq; /* Avoid counter wrap. */
Joel Fernandesb73de912018-05-20 21:42:18 -07001206 trace_rcu_this_gp(rnp, rdp, rnp->gp_seq,
Paul E. McKenney41e80592018-04-12 11:24:09 -07001207 needmore ? TPS("CleanupMore") : TPS("Cleanup"));
Paul E. McKenney0446be42012-12-30 15:21:01 -08001208 return needmore;
1209}
1210
1211/*
Zhang, Jun1d1f8982018-12-18 06:55:01 -08001212 * Awaken the grace-period kthread. Don't do a self-awaken (unless in
1213 * an interrupt or softirq handler), and don't bother awakening when there
1214 * is nothing for the grace-period kthread to do (as in several CPUs raced
1215 * to awaken, and we lost), and finally don't try to awaken a kthread that
1216 * has not yet been created. If all those checks are passed, track some
1217 * debug information and awaken.
1218 *
1219 * So why do the self-wakeup when in an interrupt or softirq handler
1220 * in the grace-period kthread's context? Because the kthread might have
1221 * been interrupted just as it was going to sleep, and just after the final
1222 * pre-sleep check of the awaken condition. In this case, a wakeup really
1223 * is required, and is therefore supplied.
Paul E. McKenney48a76392014-03-11 13:02:16 -07001224 */
Paul E. McKenney532c00c2018-07-03 17:22:34 -07001225static void rcu_gp_kthread_wake(void)
Paul E. McKenney48a76392014-03-11 13:02:16 -07001226{
Zhang, Jun1d1f8982018-12-18 06:55:01 -08001227 if ((current == rcu_state.gp_kthread &&
Neeraj Upadhyay0f58d2a2019-03-08 15:16:18 +05301228 !in_irq() && !in_serving_softirq()) ||
Paul E. McKenney532c00c2018-07-03 17:22:34 -07001229 !READ_ONCE(rcu_state.gp_flags) ||
1230 !rcu_state.gp_kthread)
Paul E. McKenney48a76392014-03-11 13:02:16 -07001231 return;
Paul E. McKenneyfd897572018-12-10 16:09:49 -08001232 WRITE_ONCE(rcu_state.gp_wake_time, jiffies);
1233 WRITE_ONCE(rcu_state.gp_wake_seq, READ_ONCE(rcu_state.gp_seq));
Paul E. McKenney532c00c2018-07-03 17:22:34 -07001234 swake_up_one(&rcu_state.gp_wq);
Paul E. McKenney48a76392014-03-11 13:02:16 -07001235}
1236
1237/*
Paul E. McKenney29365e52018-04-30 10:57:36 -07001238 * If there is room, assign a ->gp_seq number to any callbacks on this
1239 * CPU that have not already been assigned. Also accelerate any callbacks
1240 * that were previously assigned a ->gp_seq number that has since proven
1241 * to be too conservative, which can happen if callbacks get assigned a
1242 * ->gp_seq number while RCU is idle, but with reference to a non-root
1243 * rcu_node structure. This function is idempotent, so it does not hurt
1244 * to call it repeatedly. Returns an flag saying that we should awaken
1245 * the RCU grace-period kthread.
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001246 *
1247 * The caller must hold rnp->lock with interrupts disabled.
1248 */
Paul E. McKenney02f50142018-07-03 17:22:34 -07001249static bool rcu_accelerate_cbs(struct rcu_node *rnp, struct rcu_data *rdp)
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001250{
Joel Fernandesb73de912018-05-20 21:42:18 -07001251 unsigned long gp_seq_req;
Paul E. McKenney15fecf82017-02-08 12:36:42 -08001252 bool ret = false;
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001253
Matthew Wilcoxa32e01e2018-01-17 06:24:30 -08001254 raw_lockdep_assert_held_rcu_node(rnp);
Paul E. McKenneyc0b334c2017-04-28 12:32:15 -07001255
Paul E. McKenney15fecf82017-02-08 12:36:42 -08001256 /* If no pending (not yet ready to invoke) callbacks, nothing to do. */
1257 if (!rcu_segcblist_pend_cbs(&rdp->cblist))
Paul E. McKenney48a76392014-03-11 13:02:16 -07001258 return false;
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001259
1260 /*
Paul E. McKenney15fecf82017-02-08 12:36:42 -08001261 * Callbacks are often registered with incomplete grace-period
1262 * information. Something about the fact that getting exact
1263 * information requires acquiring a global lock... RCU therefore
1264 * makes a conservative estimate of the grace period number at which
1265 * a given callback will become ready to invoke. The following
1266 * code checks this estimate and improves it when possible, thus
1267 * accelerating callback invocation to an earlier grace-period
1268 * number.
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001269 */
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001270 gp_seq_req = rcu_seq_snap(&rcu_state.gp_seq);
Joel Fernandesb73de912018-05-20 21:42:18 -07001271 if (rcu_segcblist_accelerate(&rdp->cblist, gp_seq_req))
1272 ret = rcu_start_this_gp(rnp, rdp, gp_seq_req);
Paul E. McKenney6d4b4182012-11-27 16:55:44 -08001273
1274 /* Trace depending on how much we were able to accelerate. */
Paul E. McKenney15fecf82017-02-08 12:36:42 -08001275 if (rcu_segcblist_restempty(&rdp->cblist, RCU_WAIT_TAIL))
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001276 trace_rcu_grace_period(rcu_state.name, rdp->gp_seq, TPS("AccWaitCB"));
Paul E. McKenney6d4b4182012-11-27 16:55:44 -08001277 else
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001278 trace_rcu_grace_period(rcu_state.name, rdp->gp_seq, TPS("AccReadyCB"));
Paul E. McKenney48a76392014-03-11 13:02:16 -07001279 return ret;
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001280}
1281
1282/*
Paul E. McKenneye44e73c2018-05-01 16:29:47 -07001283 * Similar to rcu_accelerate_cbs(), but does not require that the leaf
1284 * rcu_node structure's ->lock be held. It consults the cached value
1285 * of ->gp_seq_needed in the rcu_data structure, and if that indicates
1286 * that a new grace-period request be made, invokes rcu_accelerate_cbs()
1287 * while holding the leaf rcu_node structure's ->lock.
1288 */
Paul E. McKenneyc6e09b92018-07-03 17:22:34 -07001289static void rcu_accelerate_cbs_unlocked(struct rcu_node *rnp,
Paul E. McKenneye44e73c2018-05-01 16:29:47 -07001290 struct rcu_data *rdp)
1291{
1292 unsigned long c;
1293 bool needwake;
1294
1295 lockdep_assert_irqs_disabled();
Paul E. McKenneyc6e09b92018-07-03 17:22:34 -07001296 c = rcu_seq_snap(&rcu_state.gp_seq);
Paul E. McKenneye44e73c2018-05-01 16:29:47 -07001297 if (!rdp->gpwrap && ULONG_CMP_GE(rdp->gp_seq_needed, c)) {
1298 /* Old request still live, so mark recent callbacks. */
1299 (void)rcu_segcblist_accelerate(&rdp->cblist, c);
1300 return;
1301 }
1302 raw_spin_lock_rcu_node(rnp); /* irqs already disabled. */
Paul E. McKenney02f50142018-07-03 17:22:34 -07001303 needwake = rcu_accelerate_cbs(rnp, rdp);
Paul E. McKenneye44e73c2018-05-01 16:29:47 -07001304 raw_spin_unlock_rcu_node(rnp); /* irqs remain disabled. */
1305 if (needwake)
Paul E. McKenney532c00c2018-07-03 17:22:34 -07001306 rcu_gp_kthread_wake();
Paul E. McKenneye44e73c2018-05-01 16:29:47 -07001307}
1308
1309/*
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001310 * Move any callbacks whose grace period has completed to the
1311 * RCU_DONE_TAIL sublist, then compact the remaining sublists and
Paul E. McKenney29365e52018-04-30 10:57:36 -07001312 * assign ->gp_seq numbers to any callbacks in the RCU_NEXT_TAIL
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001313 * sublist. This function is idempotent, so it does not hurt to
1314 * invoke it repeatedly. As long as it is not invoked -too- often...
Paul E. McKenney48a76392014-03-11 13:02:16 -07001315 * Returns true if the RCU grace-period kthread needs to be awakened.
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001316 *
1317 * The caller must hold rnp->lock with interrupts disabled.
1318 */
Paul E. McKenney834f56b2018-07-03 17:22:34 -07001319static bool rcu_advance_cbs(struct rcu_node *rnp, struct rcu_data *rdp)
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001320{
Matthew Wilcoxa32e01e2018-01-17 06:24:30 -08001321 raw_lockdep_assert_held_rcu_node(rnp);
Paul E. McKenneyc0b334c2017-04-28 12:32:15 -07001322
Paul E. McKenney15fecf82017-02-08 12:36:42 -08001323 /* If no pending (not yet ready to invoke) callbacks, nothing to do. */
1324 if (!rcu_segcblist_pend_cbs(&rdp->cblist))
Paul E. McKenney48a76392014-03-11 13:02:16 -07001325 return false;
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001326
1327 /*
Paul E. McKenney29365e52018-04-30 10:57:36 -07001328 * Find all callbacks whose ->gp_seq numbers indicate that they
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001329 * are ready to invoke, and put them into the RCU_DONE_TAIL sublist.
1330 */
Paul E. McKenney29365e52018-04-30 10:57:36 -07001331 rcu_segcblist_advance(&rdp->cblist, rnp->gp_seq);
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001332
1333 /* Classify any remaining callbacks. */
Paul E. McKenney02f50142018-07-03 17:22:34 -07001334 return rcu_accelerate_cbs(rnp, rdp);
Paul E. McKenneydc35c892012-12-03 13:52:00 -08001335}
1336
1337/*
Paul E. McKenneyba9fbe92013-03-19 11:53:31 -07001338 * Update CPU-local rcu_data state to record the beginnings and ends of
1339 * grace periods. The caller must hold the ->lock of the leaf rcu_node
1340 * structure corresponding to the current CPU, and must have irqs disabled.
Paul E. McKenney48a76392014-03-11 13:02:16 -07001341 * Returns true if the grace-period kthread needs to be awakened.
Paul E. McKenneyd09b62d2009-11-02 13:52:28 -08001342 */
Paul E. McKenneyc7e48f72018-07-03 17:22:34 -07001343static bool __note_gp_changes(struct rcu_node *rnp, struct rcu_data *rdp)
Paul E. McKenneyd09b62d2009-11-02 13:52:28 -08001344{
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07001345 bool ret = false;
Paul E. McKenney3563a432016-07-28 09:39:11 -07001346 bool need_gp;
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07001347 const bool offloaded = IS_ENABLED(CONFIG_RCU_NOCB_CPU) &&
1348 rcu_segcblist_is_offloaded(&rdp->cblist);
Paul E. McKenney48a76392014-03-11 13:02:16 -07001349
Matthew Wilcoxa32e01e2018-01-17 06:24:30 -08001350 raw_lockdep_assert_held_rcu_node(rnp);
Paul E. McKenneyc0b334c2017-04-28 12:32:15 -07001351
Paul E. McKenney67e14c12018-04-27 16:01:46 -07001352 if (rdp->gp_seq == rnp->gp_seq)
1353 return false; /* Nothing to do. */
1354
Paul E. McKenneyba9fbe92013-03-19 11:53:31 -07001355 /* Handle the ends of any preceding grace periods first. */
Paul E. McKenney67e14c12018-04-27 16:01:46 -07001356 if (rcu_seq_completed_gp(rdp->gp_seq, rnp->gp_seq) ||
1357 unlikely(READ_ONCE(rdp->gpwrap))) {
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07001358 if (!offloaded)
1359 ret = rcu_advance_cbs(rnp, rdp); /* Advance CBs. */
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001360 trace_rcu_grace_period(rcu_state.name, rdp->gp_seq, TPS("cpuend"));
Paul E. McKenney67e14c12018-04-27 16:01:46 -07001361 } else {
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07001362 if (!offloaded)
1363 ret = rcu_accelerate_cbs(rnp, rdp); /* Recent CBs. */
Paul E. McKenneyd09b62d2009-11-02 13:52:28 -08001364 }
Paul E. McKenney398ebe62013-03-19 10:53:14 -07001365
Paul E. McKenney67e14c12018-04-27 16:01:46 -07001366 /* Now handle the beginnings of any new-to-this-CPU grace periods. */
1367 if (rcu_seq_new_gp(rdp->gp_seq, rnp->gp_seq) ||
1368 unlikely(READ_ONCE(rdp->gpwrap))) {
Paul E. McKenney6eaef632013-03-19 10:08:37 -07001369 /*
1370 * If the current grace period is waiting for this CPU,
1371 * set up to detect a quiescent state, otherwise don't
1372 * go looking for one.
1373 */
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001374 trace_rcu_grace_period(rcu_state.name, rnp->gp_seq, TPS("cpustart"));
Paul E. McKenney3563a432016-07-28 09:39:11 -07001375 need_gp = !!(rnp->qsmask & rdp->grpmask);
1376 rdp->cpu_no_qs.b.norm = need_gp;
Paul E. McKenney3563a432016-07-28 09:39:11 -07001377 rdp->core_needs_qs = need_gp;
Paul E. McKenney6eaef632013-03-19 10:08:37 -07001378 zero_cpu_stall_ticks(rdp);
1379 }
Paul E. McKenney67e14c12018-04-27 16:01:46 -07001380 rdp->gp_seq = rnp->gp_seq; /* Remember new grace-period state. */
Zhang, Jun13dc7d02018-12-19 10:37:34 -08001381 if (ULONG_CMP_LT(rdp->gp_seq_needed, rnp->gp_seq_needed) || rdp->gpwrap)
Paul E. McKenney3d184692018-05-15 16:47:30 -07001382 rdp->gp_seq_needed = rnp->gp_seq_needed;
1383 WRITE_ONCE(rdp->gpwrap, false);
1384 rcu_gpnum_ovf(rnp, rdp);
Paul E. McKenney48a76392014-03-11 13:02:16 -07001385 return ret;
Paul E. McKenney6eaef632013-03-19 10:08:37 -07001386}
1387
Paul E. McKenney15cabdf2018-07-03 17:22:34 -07001388static void note_gp_changes(struct rcu_data *rdp)
Paul E. McKenney6eaef632013-03-19 10:08:37 -07001389{
1390 unsigned long flags;
Paul E. McKenney48a76392014-03-11 13:02:16 -07001391 bool needwake;
Paul E. McKenney6eaef632013-03-19 10:08:37 -07001392 struct rcu_node *rnp;
1393
1394 local_irq_save(flags);
1395 rnp = rdp->mynode;
Paul E. McKenney67e14c12018-04-27 16:01:46 -07001396 if ((rdp->gp_seq == rcu_seq_current(&rnp->gp_seq) &&
Paul E. McKenney7d0ae802015-03-03 14:57:58 -08001397 !unlikely(READ_ONCE(rdp->gpwrap))) || /* w/out lock. */
Peter Zijlstra2a67e742015-10-08 12:24:23 +02001398 !raw_spin_trylock_rcu_node(rnp)) { /* irqs already off, so later. */
Paul E. McKenney6eaef632013-03-19 10:08:37 -07001399 local_irq_restore(flags);
1400 return;
1401 }
Paul E. McKenneyc7e48f72018-07-03 17:22:34 -07001402 needwake = __note_gp_changes(rnp, rdp);
Boqun Feng67c583a72015-12-29 12:18:47 +08001403 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Paul E. McKenney48a76392014-03-11 13:02:16 -07001404 if (needwake)
Paul E. McKenney532c00c2018-07-03 17:22:34 -07001405 rcu_gp_kthread_wake();
Paul E. McKenney6eaef632013-03-19 10:08:37 -07001406}
1407
Paul E. McKenney22212332018-07-03 17:22:34 -07001408static void rcu_gp_slow(int delay)
Paul E. McKenney0f41c0d2015-03-10 18:33:20 -07001409{
1410 if (delay > 0 &&
Paul E. McKenney22212332018-07-03 17:22:34 -07001411 !(rcu_seq_ctr(rcu_state.gp_seq) %
Paul E. McKenneydee4f422018-04-26 15:30:28 -07001412 (rcu_num_nodes * PER_RCU_NODE_PERIOD * delay)))
Paul E. McKenney0f41c0d2015-03-10 18:33:20 -07001413 schedule_timeout_uninterruptible(delay);
1414}
1415
Paul E. McKenney6eaef632013-03-19 10:08:37 -07001416/*
Paul E. McKenney45fed3e2015-11-07 23:35:00 -08001417 * Initialize a new grace period. Return false if no grace period required.
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001418 */
Paul E. McKenney0854a05c2018-07-03 17:22:34 -07001419static bool rcu_gp_init(void)
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001420{
Paul E. McKenneyec2c2972018-05-07 09:34:17 -07001421 unsigned long flags;
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08001422 unsigned long oldmask;
Paul E. McKenneyec2c2972018-05-07 09:34:17 -07001423 unsigned long mask;
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001424 struct rcu_data *rdp;
Paul E. McKenney336a4f62018-07-03 17:22:34 -07001425 struct rcu_node *rnp = rcu_get_root();
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001426
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001427 WRITE_ONCE(rcu_state.gp_activity, jiffies);
Peter Zijlstra2a67e742015-10-08 12:24:23 +02001428 raw_spin_lock_irq_rcu_node(rnp);
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001429 if (!READ_ONCE(rcu_state.gp_flags)) {
Paul E. McKenneyf7be8202013-08-08 18:27:52 -07001430 /* Spurious wakeup, tell caller to go back to sleep. */
Boqun Feng67c583a72015-12-29 12:18:47 +08001431 raw_spin_unlock_irq_rcu_node(rnp);
Paul E. McKenney45fed3e2015-11-07 23:35:00 -08001432 return false;
Paul E. McKenneyf7be8202013-08-08 18:27:52 -07001433 }
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001434 WRITE_ONCE(rcu_state.gp_flags, 0); /* Clear all flags: New GP. */
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001435
Paul E. McKenneyde8e8732018-07-03 17:22:34 -07001436 if (WARN_ON_ONCE(rcu_gp_in_progress())) {
Paul E. McKenneyf7be8202013-08-08 18:27:52 -07001437 /*
1438 * Grace period already in progress, don't start another.
1439 * Not supposed to be able to happen.
1440 */
Boqun Feng67c583a72015-12-29 12:18:47 +08001441 raw_spin_unlock_irq_rcu_node(rnp);
Paul E. McKenney45fed3e2015-11-07 23:35:00 -08001442 return false;
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001443 }
1444
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001445 /* Advance to a new grace period and initialize state. */
Paul E. McKenneyad3832e2018-07-03 17:22:34 -07001446 record_gp_stall_check_time();
Paul E. McKenneyff3bb6f2018-05-01 14:34:08 -07001447 /* Record GP times before starting GP, hence rcu_seq_start(). */
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001448 rcu_seq_start(&rcu_state.gp_seq);
1449 trace_rcu_grace_period(rcu_state.name, rcu_state.gp_seq, TPS("start"));
Boqun Feng67c583a72015-12-29 12:18:47 +08001450 raw_spin_unlock_irq_rcu_node(rnp);
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001451
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001452 /*
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08001453 * Apply per-leaf buffered online and offline operations to the
1454 * rcu_node tree. Note that this new grace period need not wait
1455 * for subsequent online CPUs, and that quiescent-state forcing
1456 * will handle subsequent offline CPUs.
1457 */
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001458 rcu_state.gp_state = RCU_GP_ONOFF;
Paul E. McKenneyaedf4ba2018-07-04 14:33:59 -07001459 rcu_for_each_leaf_node(rnp) {
Mike Galbraith894d45b2018-08-15 09:05:29 -07001460 raw_spin_lock(&rcu_state.ofl_lock);
Peter Zijlstra2a67e742015-10-08 12:24:23 +02001461 raw_spin_lock_irq_rcu_node(rnp);
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08001462 if (rnp->qsmaskinit == rnp->qsmaskinitnext &&
1463 !rnp->wait_blkd_tasks) {
1464 /* Nothing to do on this leaf rcu_node structure. */
Boqun Feng67c583a72015-12-29 12:18:47 +08001465 raw_spin_unlock_irq_rcu_node(rnp);
Mike Galbraith894d45b2018-08-15 09:05:29 -07001466 raw_spin_unlock(&rcu_state.ofl_lock);
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08001467 continue;
1468 }
1469
1470 /* Record old state, apply changes to ->qsmaskinit field. */
1471 oldmask = rnp->qsmaskinit;
1472 rnp->qsmaskinit = rnp->qsmaskinitnext;
1473
1474 /* If zero-ness of ->qsmaskinit changed, propagate up tree. */
1475 if (!oldmask != !rnp->qsmaskinit) {
Paul E. McKenney962aff02018-05-02 12:49:21 -07001476 if (!oldmask) { /* First online CPU for rcu_node. */
1477 if (!rnp->wait_blkd_tasks) /* Ever offline? */
1478 rcu_init_new_rnp(rnp);
1479 } else if (rcu_preempt_has_tasks(rnp)) {
1480 rnp->wait_blkd_tasks = true; /* blocked tasks */
1481 } else { /* Last offline CPU and can propagate. */
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08001482 rcu_cleanup_dead_rnp(rnp);
Paul E. McKenney962aff02018-05-02 12:49:21 -07001483 }
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08001484 }
1485
1486 /*
1487 * If all waited-on tasks from prior grace period are
1488 * done, and if all this rcu_node structure's CPUs are
1489 * still offline, propagate up the rcu_node tree and
1490 * clear ->wait_blkd_tasks. Otherwise, if one of this
1491 * rcu_node structure's CPUs has since come back online,
Paul E. McKenney962aff02018-05-02 12:49:21 -07001492 * simply clear ->wait_blkd_tasks.
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08001493 */
1494 if (rnp->wait_blkd_tasks &&
Paul E. McKenney962aff02018-05-02 12:49:21 -07001495 (!rcu_preempt_has_tasks(rnp) || rnp->qsmaskinit)) {
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08001496 rnp->wait_blkd_tasks = false;
Paul E. McKenney962aff02018-05-02 12:49:21 -07001497 if (!rnp->qsmaskinit)
1498 rcu_cleanup_dead_rnp(rnp);
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08001499 }
1500
Boqun Feng67c583a72015-12-29 12:18:47 +08001501 raw_spin_unlock_irq_rcu_node(rnp);
Mike Galbraith894d45b2018-08-15 09:05:29 -07001502 raw_spin_unlock(&rcu_state.ofl_lock);
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08001503 }
Paul E. McKenney22212332018-07-03 17:22:34 -07001504 rcu_gp_slow(gp_preinit_delay); /* Races with CPU hotplug. */
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001505
1506 /*
1507 * Set the quiescent-state-needed bits in all the rcu_node
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001508 * structures for all currently online CPUs in breadth-first
1509 * order, starting from the root rcu_node structure, relying on the
1510 * layout of the tree within the rcu_state.node[] array. Note that
1511 * other CPUs will access only the leaves of the hierarchy, thus
1512 * seeing that no grace period is in progress, at least until the
1513 * corresponding leaf node has been initialized.
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001514 *
1515 * The grace period cannot complete until the initialization
1516 * process finishes, because this kthread handles both.
1517 */
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001518 rcu_state.gp_state = RCU_GP_INIT;
Paul E. McKenneyaedf4ba2018-07-04 14:33:59 -07001519 rcu_for_each_node_breadth_first(rnp) {
Paul E. McKenney22212332018-07-03 17:22:34 -07001520 rcu_gp_slow(gp_init_delay);
Paul E. McKenneyec2c2972018-05-07 09:34:17 -07001521 raw_spin_lock_irqsave_rcu_node(rnp, flags);
Paul E. McKenneyda1df502018-07-03 15:37:16 -07001522 rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenney81ab59a2018-07-03 17:22:34 -07001523 rcu_preempt_check_blocked_tasks(rnp);
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001524 rnp->qsmask = rnp->qsmaskinit;
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001525 WRITE_ONCE(rnp->gp_seq, rcu_state.gp_seq);
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001526 if (rnp == rdp->mynode)
Paul E. McKenneyc7e48f72018-07-03 17:22:34 -07001527 (void)__note_gp_changes(rnp, rdp);
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001528 rcu_preempt_boost_start_gp(rnp);
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001529 trace_rcu_grace_period_init(rcu_state.name, rnp->gp_seq,
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001530 rnp->level, rnp->grplo,
1531 rnp->grphi, rnp->qsmask);
Paul E. McKenneyec2c2972018-05-07 09:34:17 -07001532 /* Quiescent states for tasks on any now-offline CPUs. */
1533 mask = rnp->qsmask & ~rnp->qsmaskinitnext;
Paul E. McKenneyf2e2df52018-05-15 16:23:23 -07001534 rnp->rcu_gp_init_mask = mask;
Paul E. McKenneyec2c2972018-05-07 09:34:17 -07001535 if ((mask || rnp->wait_blkd_tasks) && rcu_is_leaf_node(rnp))
Paul E. McKenneyb50912d2018-07-03 17:22:34 -07001536 rcu_report_qs_rnp(mask, rnp, rnp->gp_seq, flags);
Paul E. McKenneyec2c2972018-05-07 09:34:17 -07001537 else
1538 raw_spin_unlock_irq_rcu_node(rnp);
Paul E. McKenneycee43932018-03-02 16:35:27 -08001539 cond_resched_tasks_rcu_qs();
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001540 WRITE_ONCE(rcu_state.gp_activity, jiffies);
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001541 }
1542
Paul E. McKenney45fed3e2015-11-07 23:35:00 -08001543 return true;
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001544}
1545
1546/*
Peter Zijlstrab3dae102018-06-12 10:34:52 +02001547 * Helper function for swait_event_idle_exclusive() wakeup at force-quiescent-state
Luis R. Rodriguezd5374222017-06-20 14:45:47 -07001548 * time.
Paul E. McKenneyb9a425c2015-07-01 13:50:28 -07001549 */
Paul E. McKenney0854a05c2018-07-03 17:22:34 -07001550static bool rcu_gp_fqs_check_wake(int *gfp)
Paul E. McKenneyb9a425c2015-07-01 13:50:28 -07001551{
Paul E. McKenney336a4f62018-07-03 17:22:34 -07001552 struct rcu_node *rnp = rcu_get_root();
Paul E. McKenneyb9a425c2015-07-01 13:50:28 -07001553
1554 /* Someone like call_rcu() requested a force-quiescent-state scan. */
Paul E. McKenney0854a05c2018-07-03 17:22:34 -07001555 *gfp = READ_ONCE(rcu_state.gp_flags);
Paul E. McKenneyb9a425c2015-07-01 13:50:28 -07001556 if (*gfp & RCU_GP_FLAG_FQS)
1557 return true;
1558
1559 /* The current grace period has completed. */
1560 if (!READ_ONCE(rnp->qsmask) && !rcu_preempt_blocked_readers_cgp(rnp))
1561 return true;
1562
1563 return false;
1564}
1565
1566/*
Paul E. McKenney4cdfc1752012-06-22 17:06:26 -07001567 * Do one round of quiescent-state forcing.
1568 */
Paul E. McKenney0854a05c2018-07-03 17:22:34 -07001569static void rcu_gp_fqs(bool first_time)
Paul E. McKenney4cdfc1752012-06-22 17:06:26 -07001570{
Paul E. McKenney336a4f62018-07-03 17:22:34 -07001571 struct rcu_node *rnp = rcu_get_root();
Paul E. McKenney4cdfc1752012-06-22 17:06:26 -07001572
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001573 WRITE_ONCE(rcu_state.gp_activity, jiffies);
1574 rcu_state.n_force_qs++;
Petr Mladek77f81fe2015-09-09 12:09:49 -07001575 if (first_time) {
Paul E. McKenney4cdfc1752012-06-22 17:06:26 -07001576 /* Collect dyntick-idle snapshots. */
Paul E. McKenneye9ecb782018-07-03 17:22:34 -07001577 force_qs_rnp(dyntick_save_progress_counter);
Paul E. McKenney4cdfc1752012-06-22 17:06:26 -07001578 } else {
1579 /* Handle dyntick-idle and offline CPUs. */
Paul E. McKenneye9ecb782018-07-03 17:22:34 -07001580 force_qs_rnp(rcu_implicit_dynticks_qs);
Paul E. McKenney4cdfc1752012-06-22 17:06:26 -07001581 }
1582 /* Clear flag to prevent immediate re-entry. */
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001583 if (READ_ONCE(rcu_state.gp_flags) & RCU_GP_FLAG_FQS) {
Peter Zijlstra2a67e742015-10-08 12:24:23 +02001584 raw_spin_lock_irq_rcu_node(rnp);
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001585 WRITE_ONCE(rcu_state.gp_flags,
1586 READ_ONCE(rcu_state.gp_flags) & ~RCU_GP_FLAG_FQS);
Boqun Feng67c583a72015-12-29 12:18:47 +08001587 raw_spin_unlock_irq_rcu_node(rnp);
Paul E. McKenney4cdfc1752012-06-22 17:06:26 -07001588 }
Paul E. McKenney4cdfc1752012-06-22 17:06:26 -07001589}
1590
1591/*
Paul E. McKenneyc3854a02018-07-05 18:23:23 -07001592 * Loop doing repeated quiescent-state forcing until the grace period ends.
1593 */
1594static void rcu_gp_fqs_loop(void)
1595{
1596 bool first_gp_fqs;
1597 int gf;
1598 unsigned long j;
1599 int ret;
1600 struct rcu_node *rnp = rcu_get_root();
1601
1602 first_gp_fqs = true;
Paul E. McKenneyc06aed02018-07-25 11:25:23 -07001603 j = READ_ONCE(jiffies_till_first_fqs);
Paul E. McKenneyc3854a02018-07-05 18:23:23 -07001604 ret = 0;
1605 for (;;) {
1606 if (!ret) {
1607 rcu_state.jiffies_force_qs = jiffies + j;
1608 WRITE_ONCE(rcu_state.jiffies_kick_kthreads,
Paul E. McKenney9cf422a2018-11-20 10:43:34 -08001609 jiffies + (j ? 3 * j : 2));
Paul E. McKenneyc3854a02018-07-05 18:23:23 -07001610 }
1611 trace_rcu_grace_period(rcu_state.name,
1612 READ_ONCE(rcu_state.gp_seq),
1613 TPS("fqswait"));
1614 rcu_state.gp_state = RCU_GP_WAIT_FQS;
1615 ret = swait_event_idle_timeout_exclusive(
1616 rcu_state.gp_wq, rcu_gp_fqs_check_wake(&gf), j);
1617 rcu_state.gp_state = RCU_GP_DOING_FQS;
1618 /* Locking provides needed memory barriers. */
1619 /* If grace period done, leave loop. */
1620 if (!READ_ONCE(rnp->qsmask) &&
1621 !rcu_preempt_blocked_readers_cgp(rnp))
1622 break;
1623 /* If time for quiescent-state forcing, do it. */
1624 if (ULONG_CMP_GE(jiffies, rcu_state.jiffies_force_qs) ||
1625 (gf & RCU_GP_FLAG_FQS)) {
1626 trace_rcu_grace_period(rcu_state.name,
1627 READ_ONCE(rcu_state.gp_seq),
1628 TPS("fqsstart"));
1629 rcu_gp_fqs(first_gp_fqs);
1630 first_gp_fqs = false;
1631 trace_rcu_grace_period(rcu_state.name,
1632 READ_ONCE(rcu_state.gp_seq),
1633 TPS("fqsend"));
1634 cond_resched_tasks_rcu_qs();
1635 WRITE_ONCE(rcu_state.gp_activity, jiffies);
1636 ret = 0; /* Force full wait till next FQS. */
Paul E. McKenneyc06aed02018-07-25 11:25:23 -07001637 j = READ_ONCE(jiffies_till_next_fqs);
Paul E. McKenneyc3854a02018-07-05 18:23:23 -07001638 } else {
1639 /* Deal with stray signal. */
1640 cond_resched_tasks_rcu_qs();
1641 WRITE_ONCE(rcu_state.gp_activity, jiffies);
1642 WARN_ON(signal_pending(current));
1643 trace_rcu_grace_period(rcu_state.name,
1644 READ_ONCE(rcu_state.gp_seq),
1645 TPS("fqswaitsig"));
1646 ret = 1; /* Keep old FQS timing. */
1647 j = jiffies;
1648 if (time_after(jiffies, rcu_state.jiffies_force_qs))
1649 j = 1;
1650 else
1651 j = rcu_state.jiffies_force_qs - j;
1652 }
1653 }
1654}
1655
1656/*
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001657 * Clean up after the old grace period.
1658 */
Paul E. McKenney0854a05c2018-07-03 17:22:34 -07001659static void rcu_gp_cleanup(void)
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001660{
1661 unsigned long gp_duration;
Paul E. McKenney48a76392014-03-11 13:02:16 -07001662 bool needgp = false;
Paul E. McKenneyde30ad52018-04-26 11:52:09 -07001663 unsigned long new_gp_seq;
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07001664 bool offloaded;
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001665 struct rcu_data *rdp;
Paul E. McKenney336a4f62018-07-03 17:22:34 -07001666 struct rcu_node *rnp = rcu_get_root();
Paul Gortmakerabedf8e2016-02-19 09:46:41 +01001667 struct swait_queue_head *sq;
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001668
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001669 WRITE_ONCE(rcu_state.gp_activity, jiffies);
Peter Zijlstra2a67e742015-10-08 12:24:23 +02001670 raw_spin_lock_irq_rcu_node(rnp);
Paul E. McKenneyc51d7b52018-10-03 17:25:33 -07001671 rcu_state.gp_end = jiffies;
1672 gp_duration = rcu_state.gp_end - rcu_state.gp_start;
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001673 if (gp_duration > rcu_state.gp_max)
1674 rcu_state.gp_max = gp_duration;
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001675
1676 /*
1677 * We know the grace period is complete, but to everyone else
1678 * it appears to still be ongoing. But it is also the case
1679 * that to everyone else it looks like there is nothing that
1680 * they can do to advance the grace period. It is therefore
1681 * safe for us to drop the lock in order to mark the grace
1682 * period as completed in all of the rcu_node structures.
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001683 */
Boqun Feng67c583a72015-12-29 12:18:47 +08001684 raw_spin_unlock_irq_rcu_node(rnp);
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001685
Paul E. McKenney5d4b8652012-07-07 07:56:57 -07001686 /*
Paul E. McKenneyff3bb6f2018-05-01 14:34:08 -07001687 * Propagate new ->gp_seq value to rcu_node structures so that
1688 * other CPUs don't have to wait until the start of the next grace
1689 * period to process their callbacks. This also avoids some nasty
1690 * RCU grace-period initialization races by forcing the end of
1691 * the current grace period to be completely recorded in all of
1692 * the rcu_node structures before the beginning of the next grace
1693 * period is recorded in any of the rcu_node structures.
Paul E. McKenney5d4b8652012-07-07 07:56:57 -07001694 */
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001695 new_gp_seq = rcu_state.gp_seq;
Paul E. McKenneyde30ad52018-04-26 11:52:09 -07001696 rcu_seq_end(&new_gp_seq);
Paul E. McKenneyaedf4ba2018-07-04 14:33:59 -07001697 rcu_for_each_node_breadth_first(rnp) {
Peter Zijlstra2a67e742015-10-08 12:24:23 +02001698 raw_spin_lock_irq_rcu_node(rnp);
Paul E. McKenney4bc8d552017-11-27 15:13:56 -08001699 if (WARN_ON_ONCE(rcu_preempt_blocked_readers_cgp(rnp)))
Paul E. McKenney81ab59a2018-07-03 17:22:34 -07001700 dump_blkd_tasks(rnp, 10);
Paul E. McKenney5c60d252015-02-09 05:37:47 -08001701 WARN_ON_ONCE(rnp->qsmask);
Paul E. McKenneyde30ad52018-04-26 11:52:09 -07001702 WRITE_ONCE(rnp->gp_seq, new_gp_seq);
Paul E. McKenneyda1df502018-07-03 15:37:16 -07001703 rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenneyb11cc572012-12-17 14:21:14 -08001704 if (rnp == rdp->mynode)
Paul E. McKenneyc7e48f72018-07-03 17:22:34 -07001705 needgp = __note_gp_changes(rnp, rdp) || needgp;
Paul E. McKenney78e4bc32013-09-24 15:04:06 -07001706 /* smp_mb() provided by prior unlock-lock pair. */
Paul E. McKenney3481f2e2018-07-03 17:22:34 -07001707 needgp = rcu_future_gp_cleanup(rnp) || needgp;
Daniel Wagner065bb782016-02-19 09:46:40 +01001708 sq = rcu_nocb_gp_get(rnp);
Boqun Feng67c583a72015-12-29 12:18:47 +08001709 raw_spin_unlock_irq_rcu_node(rnp);
Daniel Wagner065bb782016-02-19 09:46:40 +01001710 rcu_nocb_gp_cleanup(sq);
Paul E. McKenneycee43932018-03-02 16:35:27 -08001711 cond_resched_tasks_rcu_qs();
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001712 WRITE_ONCE(rcu_state.gp_activity, jiffies);
Paul E. McKenney22212332018-07-03 17:22:34 -07001713 rcu_gp_slow(gp_cleanup_delay);
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001714 }
Paul E. McKenney336a4f62018-07-03 17:22:34 -07001715 rnp = rcu_get_root();
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001716 raw_spin_lock_irq_rcu_node(rnp); /* GP before ->gp_seq update. */
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001717
Paul E. McKenney0a89e5a2018-10-15 10:00:58 -07001718 /* Declare grace period done, trace first to use old GP number. */
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001719 trace_rcu_grace_period(rcu_state.name, rcu_state.gp_seq, TPS("end"));
Paul E. McKenney0a89e5a2018-10-15 10:00:58 -07001720 rcu_seq_end(&rcu_state.gp_seq);
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001721 rcu_state.gp_state = RCU_GP_IDLE;
Paul E. McKenneyfb313402018-04-12 07:20:30 -07001722 /* Check for GP requests since above loop. */
Paul E. McKenneyda1df502018-07-03 15:37:16 -07001723 rdp = this_cpu_ptr(&rcu_data);
Joel Fernandes (Google)5b550722018-05-13 20:15:40 -07001724 if (!needgp && ULONG_CMP_LT(rnp->gp_seq, rnp->gp_seq_needed)) {
Paul E. McKenneyabd13fd2018-05-01 13:08:46 -07001725 trace_rcu_this_gp(rnp, rdp, rnp->gp_seq_needed,
Paul E. McKenney41e80592018-04-12 11:24:09 -07001726 TPS("CleanupMore"));
Paul E. McKenneyfb313402018-04-12 07:20:30 -07001727 needgp = true;
1728 }
Paul E. McKenney48a76392014-03-11 13:02:16 -07001729 /* Advance CBs to reduce false positives below. */
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07001730 offloaded = IS_ENABLED(CONFIG_RCU_NOCB_CPU) &&
1731 rcu_segcblist_is_offloaded(&rdp->cblist);
1732 if ((offloaded || !rcu_accelerate_cbs(rnp, rdp)) && needgp) {
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001733 WRITE_ONCE(rcu_state.gp_flags, RCU_GP_FLAG_INIT);
1734 rcu_state.gp_req_activity = jiffies;
1735 trace_rcu_grace_period(rcu_state.name,
1736 READ_ONCE(rcu_state.gp_seq),
Paul E. McKenneybb311ec2013-08-09 16:02:09 -07001737 TPS("newreq"));
Paul E. McKenney18390ae2018-04-22 15:06:05 -07001738 } else {
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001739 WRITE_ONCE(rcu_state.gp_flags,
1740 rcu_state.gp_flags & RCU_GP_FLAG_INIT);
Paul E. McKenneybb311ec2013-08-09 16:02:09 -07001741 }
Boqun Feng67c583a72015-12-29 12:18:47 +08001742 raw_spin_unlock_irq_rcu_node(rnp);
Paul E. McKenney7fdefc12012-06-22 11:08:41 -07001743}
1744
1745/*
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07001746 * Body of kthread that handles grace periods.
1747 */
Paul E. McKenney0854a05c2018-07-03 17:22:34 -07001748static int __noreturn rcu_gp_kthread(void *unused)
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07001749{
Paul E. McKenney58719682015-02-24 11:05:36 -08001750 rcu_bind_gp_kthread();
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07001751 for (;;) {
1752
1753 /* Handle grace-period start. */
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07001754 for (;;) {
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001755 trace_rcu_grace_period(rcu_state.name,
1756 READ_ONCE(rcu_state.gp_seq),
Paul E. McKenney63c4db72013-08-09 12:19:29 -07001757 TPS("reqwait"));
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001758 rcu_state.gp_state = RCU_GP_WAIT_GPS;
1759 swait_event_idle_exclusive(rcu_state.gp_wq,
1760 READ_ONCE(rcu_state.gp_flags) &
1761 RCU_GP_FLAG_INIT);
1762 rcu_state.gp_state = RCU_GP_DONE_GPS;
Paul E. McKenney78e4bc32013-09-24 15:04:06 -07001763 /* Locking provides needed memory barrier. */
Paul E. McKenney0854a05c2018-07-03 17:22:34 -07001764 if (rcu_gp_init())
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07001765 break;
Paul E. McKenneycee43932018-03-02 16:35:27 -08001766 cond_resched_tasks_rcu_qs();
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001767 WRITE_ONCE(rcu_state.gp_activity, jiffies);
Paul E. McKenney73a860c2014-08-14 10:28:23 -07001768 WARN_ON(signal_pending(current));
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001769 trace_rcu_grace_period(rcu_state.name,
1770 READ_ONCE(rcu_state.gp_seq),
Paul E. McKenney63c4db72013-08-09 12:19:29 -07001771 TPS("reqwaitsig"));
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07001772 }
Paul E. McKenneycabc49c2012-06-20 17:07:14 -07001773
Paul E. McKenney4cdfc1752012-06-22 17:06:26 -07001774 /* Handle quiescent-state forcing. */
Paul E. McKenneyc3854a02018-07-05 18:23:23 -07001775 rcu_gp_fqs_loop();
Paul E. McKenney4cdfc1752012-06-22 17:06:26 -07001776
1777 /* Handle grace-period end. */
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001778 rcu_state.gp_state = RCU_GP_CLEANUP;
Paul E. McKenney0854a05c2018-07-03 17:22:34 -07001779 rcu_gp_cleanup();
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001780 rcu_state.gp_state = RCU_GP_CLEANED;
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07001781 }
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07001782}
1783
1784/*
Paul E. McKenney49918a52018-07-07 18:12:26 -07001785 * Report a full set of quiescent states to the rcu_state data structure.
1786 * Invoke rcu_gp_kthread_wake() to awaken the grace-period kthread if
1787 * another grace period is required. Whether we wake the grace-period
1788 * kthread or it awakens itself for the next round of quiescent-state
1789 * forcing, that kthread will clean up after the just-completed grace
1790 * period. Note that the caller must hold rnp->lock, which is released
1791 * before return.
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001792 */
Paul E. McKenneyaff4e9e2018-07-03 17:22:34 -07001793static void rcu_report_qs_rsp(unsigned long flags)
Paul E. McKenney336a4f62018-07-03 17:22:34 -07001794 __releases(rcu_get_root()->lock)
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001795{
Paul E. McKenney336a4f62018-07-03 17:22:34 -07001796 raw_lockdep_assert_held_rcu_node(rcu_get_root());
Paul E. McKenneyde8e8732018-07-03 17:22:34 -07001797 WARN_ON_ONCE(!rcu_gp_in_progress());
Paul E. McKenney9cbc5b92018-07-05 15:47:01 -07001798 WRITE_ONCE(rcu_state.gp_flags,
1799 READ_ONCE(rcu_state.gp_flags) | RCU_GP_FLAG_FQS);
Paul E. McKenney336a4f62018-07-03 17:22:34 -07001800 raw_spin_unlock_irqrestore_rcu_node(rcu_get_root(), flags);
Paul E. McKenney532c00c2018-07-03 17:22:34 -07001801 rcu_gp_kthread_wake();
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001802}
1803
1804/*
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -08001805 * Similar to rcu_report_qs_rdp(), for which it is a helper function.
1806 * Allows quiescent states for a group of CPUs to be reported at one go
1807 * to the specified rcu_node structure, though all the CPUs in the group
Paul E. McKenney654e9532015-03-15 09:19:35 -07001808 * must be represented by the same rcu_node structure (which need not be a
1809 * leaf rcu_node structure, though it often will be). The gps parameter
1810 * is the grace-period snapshot, which means that the quiescent states
Paul E. McKenneyc9a24e22018-04-27 14:54:46 -07001811 * are valid only if rnp->gp_seq is equal to gps. That structure's lock
Paul E. McKenney654e9532015-03-15 09:19:35 -07001812 * must be held upon entry, and it is released before return.
Paul E. McKenneyec2c2972018-05-07 09:34:17 -07001813 *
1814 * As a special case, if mask is zero, the bit-already-cleared check is
1815 * disabled. This allows propagating quiescent state due to resumed tasks
1816 * during grace-period initialization.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001817 */
Paul E. McKenneyb50912d2018-07-03 17:22:34 -07001818static void rcu_report_qs_rnp(unsigned long mask, struct rcu_node *rnp,
1819 unsigned long gps, unsigned long flags)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001820 __releases(rnp->lock)
1821{
Paul E. McKenney654e9532015-03-15 09:19:35 -07001822 unsigned long oldmask = 0;
Paul E. McKenney28ecd582009-09-18 09:50:17 -07001823 struct rcu_node *rnp_c;
1824
Matthew Wilcoxa32e01e2018-01-17 06:24:30 -08001825 raw_lockdep_assert_held_rcu_node(rnp);
Paul E. McKenneyc0b334c2017-04-28 12:32:15 -07001826
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001827 /* Walk up the rcu_node hierarchy. */
1828 for (;;) {
Paul E. McKenneyec2c2972018-05-07 09:34:17 -07001829 if ((!(rnp->qsmask & mask) && mask) || rnp->gp_seq != gps) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001830
Paul E. McKenney654e9532015-03-15 09:19:35 -07001831 /*
1832 * Our bit has already been cleared, or the
1833 * relevant grace period is already over, so done.
1834 */
Boqun Feng67c583a72015-12-29 12:18:47 +08001835 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001836 return;
1837 }
Paul E. McKenney654e9532015-03-15 09:19:35 -07001838 WARN_ON_ONCE(oldmask); /* Any child must be all zeroed! */
Paul E. McKenney5b4c11d2018-04-13 17:11:44 -07001839 WARN_ON_ONCE(!rcu_is_leaf_node(rnp) &&
Paul E. McKenney2dee9402017-07-11 21:52:31 -07001840 rcu_preempt_blocked_readers_cgp(rnp));
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001841 rnp->qsmask &= ~mask;
Paul E. McKenney67a0edb2018-07-05 16:15:38 -07001842 trace_rcu_quiescent_state_report(rcu_state.name, rnp->gp_seq,
Paul E. McKenneyd4c08f22011-06-25 06:36:56 -07001843 mask, rnp->qsmask, rnp->level,
1844 rnp->grplo, rnp->grphi,
1845 !!rnp->gp_tasks);
Paul E. McKenney27f4d282011-02-07 12:47:15 -08001846 if (rnp->qsmask != 0 || rcu_preempt_blocked_readers_cgp(rnp)) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001847
1848 /* Other bits still set at this level, so done. */
Boqun Feng67c583a72015-12-29 12:18:47 +08001849 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001850 return;
1851 }
Paul E. McKenneyd43a5d32018-04-28 18:50:06 -07001852 rnp->completedqs = rnp->gp_seq;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001853 mask = rnp->grpmask;
1854 if (rnp->parent == NULL) {
1855
1856 /* No more levels. Exit loop holding root lock. */
1857
1858 break;
1859 }
Boqun Feng67c583a72015-12-29 12:18:47 +08001860 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Paul E. McKenney28ecd582009-09-18 09:50:17 -07001861 rnp_c = rnp;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001862 rnp = rnp->parent;
Peter Zijlstra2a67e742015-10-08 12:24:23 +02001863 raw_spin_lock_irqsave_rcu_node(rnp, flags);
Paul E. McKenney654e9532015-03-15 09:19:35 -07001864 oldmask = rnp_c->qsmask;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001865 }
1866
1867 /*
1868 * Get here if we are the last CPU to pass through a quiescent
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -08001869 * state for this grace period. Invoke rcu_report_qs_rsp()
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07001870 * to clean up and start the next grace period if one is needed.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001871 */
Paul E. McKenneyaff4e9e2018-07-03 17:22:34 -07001872 rcu_report_qs_rsp(flags); /* releases rnp->lock. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001873}
1874
1875/*
Paul E. McKenneycc99a312015-02-23 08:59:29 -08001876 * Record a quiescent state for all tasks that were previously queued
1877 * on the specified rcu_node structure and that were blocking the current
Paul E. McKenney49918a52018-07-07 18:12:26 -07001878 * RCU grace period. The caller must hold the corresponding rnp->lock with
Paul E. McKenneycc99a312015-02-23 08:59:29 -08001879 * irqs disabled, and this lock is released upon return, but irqs remain
1880 * disabled.
1881 */
Paul E. McKenney17a82122018-05-03 14:30:02 -07001882static void __maybe_unused
Paul E. McKenney139ad4d2018-07-03 17:22:34 -07001883rcu_report_unblock_qs_rnp(struct rcu_node *rnp, unsigned long flags)
Paul E. McKenneycc99a312015-02-23 08:59:29 -08001884 __releases(rnp->lock)
1885{
Paul E. McKenney654e9532015-03-15 09:19:35 -07001886 unsigned long gps;
Paul E. McKenneycc99a312015-02-23 08:59:29 -08001887 unsigned long mask;
1888 struct rcu_node *rnp_p;
1889
Matthew Wilcoxa32e01e2018-01-17 06:24:30 -08001890 raw_lockdep_assert_held_rcu_node(rnp);
Paul E. McKenney45975c72018-07-02 14:30:37 -07001891 if (WARN_ON_ONCE(!IS_ENABLED(CONFIG_PREEMPT)) ||
Paul E. McKenneyc74859d2018-04-27 14:05:27 -07001892 WARN_ON_ONCE(rcu_preempt_blocked_readers_cgp(rnp)) ||
1893 rnp->qsmask != 0) {
Boqun Feng67c583a72015-12-29 12:18:47 +08001894 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Paul E. McKenneycc99a312015-02-23 08:59:29 -08001895 return; /* Still need more quiescent states! */
1896 }
1897
Paul E. McKenney77cfc7b2018-05-01 15:00:10 -07001898 rnp->completedqs = rnp->gp_seq;
Paul E. McKenneycc99a312015-02-23 08:59:29 -08001899 rnp_p = rnp->parent;
1900 if (rnp_p == NULL) {
1901 /*
Paul E. McKenneya77da142015-03-08 14:52:27 -07001902 * Only one rcu_node structure in the tree, so don't
1903 * try to report up to its nonexistent parent!
Paul E. McKenneycc99a312015-02-23 08:59:29 -08001904 */
Paul E. McKenneyaff4e9e2018-07-03 17:22:34 -07001905 rcu_report_qs_rsp(flags);
Paul E. McKenneycc99a312015-02-23 08:59:29 -08001906 return;
1907 }
1908
Paul E. McKenneyc9a24e22018-04-27 14:54:46 -07001909 /* Report up the rest of the hierarchy, tracking current ->gp_seq. */
1910 gps = rnp->gp_seq;
Paul E. McKenneycc99a312015-02-23 08:59:29 -08001911 mask = rnp->grpmask;
Boqun Feng67c583a72015-12-29 12:18:47 +08001912 raw_spin_unlock_rcu_node(rnp); /* irqs remain disabled. */
Peter Zijlstra2a67e742015-10-08 12:24:23 +02001913 raw_spin_lock_rcu_node(rnp_p); /* irqs already disabled. */
Paul E. McKenneyb50912d2018-07-03 17:22:34 -07001914 rcu_report_qs_rnp(mask, rnp_p, gps, flags);
Paul E. McKenneycc99a312015-02-23 08:59:29 -08001915}
1916
1917/*
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -08001918 * Record a quiescent state for the specified CPU to that CPU's rcu_data
Paul E. McKenney4b455dc2016-01-27 22:44:45 -08001919 * structure. This must be called from the specified CPU.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001920 */
1921static void
Paul E. McKenney33085c42018-07-03 17:22:34 -07001922rcu_report_qs_rdp(int cpu, struct rcu_data *rdp)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001923{
1924 unsigned long flags;
1925 unsigned long mask;
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07001926 bool needwake = false;
1927 const bool offloaded = IS_ENABLED(CONFIG_RCU_NOCB_CPU) &&
1928 rcu_segcblist_is_offloaded(&rdp->cblist);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001929 struct rcu_node *rnp;
1930
1931 rnp = rdp->mynode;
Peter Zijlstra2a67e742015-10-08 12:24:23 +02001932 raw_spin_lock_irqsave_rcu_node(rnp, flags);
Paul E. McKenneyc9a24e22018-04-27 14:54:46 -07001933 if (rdp->cpu_no_qs.b.norm || rdp->gp_seq != rnp->gp_seq ||
1934 rdp->gpwrap) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001935
1936 /*
Paul E. McKenneye4cc1f22011-06-27 00:17:43 -07001937 * The grace period in which this quiescent state was
1938 * recorded has ended, so don't report it upwards.
1939 * We will instead need a new quiescent state that lies
1940 * within the current grace period.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001941 */
Paul E. McKenney5b74c452015-08-06 15:16:57 -07001942 rdp->cpu_no_qs.b.norm = true; /* need qs for new gp. */
Boqun Feng67c583a72015-12-29 12:18:47 +08001943 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001944 return;
1945 }
1946 mask = rdp->grpmask;
Akira Yokosawab2eb85b2019-03-02 17:25:19 +09001947 rdp->core_needs_qs = false;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001948 if ((rnp->qsmask & mask) == 0) {
Boqun Feng67c583a72015-12-29 12:18:47 +08001949 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001950 } else {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001951 /*
1952 * This GP can't end until cpu checks in, so all of our
1953 * callbacks can be processed during the next GP.
1954 */
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07001955 if (!offloaded)
1956 needwake = rcu_accelerate_cbs(rnp, rdp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001957
Paul E. McKenneyb50912d2018-07-03 17:22:34 -07001958 rcu_report_qs_rnp(mask, rnp, rnp->gp_seq, flags);
Paul E. McKenney654e9532015-03-15 09:19:35 -07001959 /* ^^^ Released rnp->lock */
Paul E. McKenney48a76392014-03-11 13:02:16 -07001960 if (needwake)
Paul E. McKenney532c00c2018-07-03 17:22:34 -07001961 rcu_gp_kthread_wake();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001962 }
1963}
1964
1965/*
1966 * Check to see if there is a new grace period of which this CPU
1967 * is not yet aware, and if so, set up local rcu_data state for it.
1968 * Otherwise, see if this CPU has just passed through its first
1969 * quiescent state for this grace period, and record that fact if so.
1970 */
1971static void
Paul E. McKenney8087d3e2018-07-03 17:22:34 -07001972rcu_check_quiescent_state(struct rcu_data *rdp)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001973{
Paul E. McKenney05eb5522013-03-19 12:38:24 -07001974 /* Check for grace-period ends and beginnings. */
Paul E. McKenney15cabdf2018-07-03 17:22:34 -07001975 note_gp_changes(rdp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001976
1977 /*
1978 * Does this CPU still need to do its part for current grace period?
1979 * If no, return and let the other CPUs do their part as well.
1980 */
Paul E. McKenney97c668b2015-08-06 11:31:51 -07001981 if (!rdp->core_needs_qs)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001982 return;
1983
1984 /*
1985 * Was there a quiescent state since the beginning of the grace
1986 * period? If no, then exit and wait for the next call.
1987 */
Paul E. McKenney3a19b462016-11-30 11:21:21 -08001988 if (rdp->cpu_no_qs.b.norm)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001989 return;
1990
Paul E. McKenneyd3f6bad2009-12-02 12:10:13 -08001991 /*
1992 * Tell RCU we are done (but rcu_report_qs_rdp() will be the
1993 * judge of that).
1994 */
Paul E. McKenney33085c42018-07-03 17:22:34 -07001995 rcu_report_qs_rdp(rdp->cpu, rdp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001996}
1997
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01001998/*
Paul E. McKenney780cd592018-07-03 17:22:34 -07001999 * Near the end of the offline process. Trace the fact that this CPU
2000 * is going offline.
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002001 */
Paul E. McKenney780cd592018-07-03 17:22:34 -07002002int rcutree_dying_cpu(unsigned int cpu)
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002003{
Yafang Shao4f5fbd72019-03-26 20:13:11 +08002004 bool blkd;
2005 struct rcu_data *rdp = this_cpu_ptr(&rcu_data);
2006 struct rcu_node *rnp = rdp->mynode;
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002007
Paul E. McKenneyea463512015-03-03 14:05:26 -08002008 if (!IS_ENABLED(CONFIG_HOTPLUG_CPU))
Paul E. McKenney780cd592018-07-03 17:22:34 -07002009 return 0;
Paul E. McKenneyea463512015-03-03 14:05:26 -08002010
Yafang Shao4f5fbd72019-03-26 20:13:11 +08002011 blkd = !!(rnp->qsmask & rdp->grpmask);
Paul E. McKenney780cd592018-07-03 17:22:34 -07002012 trace_rcu_grace_period(rcu_state.name, rnp->gp_seq,
Paul E. McKenney477351f2018-05-01 12:54:11 -07002013 blkd ? TPS("cpuofl") : TPS("cpuofl-bgp"));
Paul E. McKenney780cd592018-07-03 17:22:34 -07002014 return 0;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002015}
2016
2017/*
Paul E. McKenney8af3a5e2014-10-31 11:22:37 -07002018 * All CPUs for the specified rcu_node structure have gone offline,
2019 * and all tasks that were preempted within an RCU read-side critical
2020 * section while running on one of those CPUs have since exited their RCU
2021 * read-side critical section. Some other CPU is reporting this fact with
2022 * the specified rcu_node structure's ->lock held and interrupts disabled.
2023 * This function therefore goes up the tree of rcu_node structures,
2024 * clearing the corresponding bits in the ->qsmaskinit fields. Note that
2025 * the leaf rcu_node structure's ->qsmaskinit field has already been
Paul E. McKenneyc50cbe52018-05-02 13:51:57 -07002026 * updated.
Paul E. McKenney8af3a5e2014-10-31 11:22:37 -07002027 *
2028 * This function does check that the specified rcu_node structure has
2029 * all CPUs offline and no blocked tasks, so it is OK to invoke it
2030 * prematurely. That said, invoking it after the fact will cost you
2031 * a needless lock acquisition. So once it has done its work, don't
2032 * invoke it again.
2033 */
2034static void rcu_cleanup_dead_rnp(struct rcu_node *rnp_leaf)
2035{
2036 long mask;
2037 struct rcu_node *rnp = rnp_leaf;
2038
Paul E. McKenney962aff02018-05-02 12:49:21 -07002039 raw_lockdep_assert_held_rcu_node(rnp_leaf);
Paul E. McKenneyea463512015-03-03 14:05:26 -08002040 if (!IS_ENABLED(CONFIG_HOTPLUG_CPU) ||
Paul E. McKenney962aff02018-05-02 12:49:21 -07002041 WARN_ON_ONCE(rnp_leaf->qsmaskinit) ||
2042 WARN_ON_ONCE(rcu_preempt_has_tasks(rnp_leaf)))
Paul E. McKenney8af3a5e2014-10-31 11:22:37 -07002043 return;
2044 for (;;) {
2045 mask = rnp->grpmask;
2046 rnp = rnp->parent;
2047 if (!rnp)
2048 break;
Peter Zijlstra2a67e742015-10-08 12:24:23 +02002049 raw_spin_lock_rcu_node(rnp); /* irqs already disabled. */
Paul E. McKenney8af3a5e2014-10-31 11:22:37 -07002050 rnp->qsmaskinit &= ~mask;
Paul E. McKenney962aff02018-05-02 12:49:21 -07002051 /* Between grace periods, so better already be zero! */
2052 WARN_ON_ONCE(rnp->qsmask);
Paul E. McKenney8af3a5e2014-10-31 11:22:37 -07002053 if (rnp->qsmaskinit) {
Boqun Feng67c583a72015-12-29 12:18:47 +08002054 raw_spin_unlock_rcu_node(rnp);
2055 /* irqs remain disabled. */
Paul E. McKenney8af3a5e2014-10-31 11:22:37 -07002056 return;
2057 }
Boqun Feng67c583a72015-12-29 12:18:47 +08002058 raw_spin_unlock_rcu_node(rnp); /* irqs remain disabled. */
Paul E. McKenney8af3a5e2014-10-31 11:22:37 -07002059 }
2060}
2061
2062/*
Paul E. McKenneye5601402012-01-07 11:03:57 -08002063 * The CPU has been completely removed, and some other CPU is reporting
Paul E. McKenneya58163d2017-06-20 12:11:34 -07002064 * this fact from process context. Do the remainder of the cleanup.
2065 * There can only be one CPU hotplug operation at a time, so no need for
2066 * explicit locking.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002067 */
Paul E. McKenney780cd592018-07-03 17:22:34 -07002068int rcutree_dead_cpu(unsigned int cpu)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002069{
Paul E. McKenneyda1df502018-07-03 15:37:16 -07002070 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, cpu);
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002071 struct rcu_node *rnp = rdp->mynode; /* Outgoing CPU's rdp & rnp. */
Paul E. McKenneye5601402012-01-07 11:03:57 -08002072
Paul E. McKenneyea463512015-03-03 14:05:26 -08002073 if (!IS_ENABLED(CONFIG_HOTPLUG_CPU))
Paul E. McKenney780cd592018-07-03 17:22:34 -07002074 return 0;
Paul E. McKenneyea463512015-03-03 14:05:26 -08002075
Paul E. McKenney2036d942012-01-30 17:02:47 -08002076 /* Adjust any no-longer-needed kthreads. */
Thomas Gleixner5d01bbd2012-07-16 10:42:35 +00002077 rcu_boost_kthread_setaffinity(rnp, -1);
Paul E. McKenney780cd592018-07-03 17:22:34 -07002078 /* Do any needed no-CB deferred wakeups from this CPU. */
2079 do_nocb_deferred_wakeup(per_cpu_ptr(&rcu_data, cpu));
2080 return 0;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002081}
2082
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002083/*
2084 * Invoke any RCU callbacks that have made it to the end of their grace
2085 * period. Thottle as specified by rdp->blimit.
2086 */
Paul E. McKenney5bb5d092018-07-03 17:22:34 -07002087static void rcu_do_batch(struct rcu_data *rdp)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002088{
2089 unsigned long flags;
Paul E. McKenneyec5ef872019-05-21 13:03:49 -07002090 const bool offloaded = IS_ENABLED(CONFIG_RCU_NOCB_CPU) &&
2091 rcu_segcblist_is_offloaded(&rdp->cblist);
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002092 struct rcu_head *rhp;
2093 struct rcu_cblist rcl = RCU_CBLIST_INITIALIZER(rcl);
2094 long bl, count;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002095
Paul E. McKenneydc35c892012-12-03 13:52:00 -08002096 /* If no callbacks are ready, just return. */
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002097 if (!rcu_segcblist_ready_cbs(&rdp->cblist)) {
Paul E. McKenney3c779df2018-07-05 15:54:02 -07002098 trace_rcu_batch_start(rcu_state.name,
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002099 rcu_segcblist_n_lazy_cbs(&rdp->cblist),
2100 rcu_segcblist_n_cbs(&rdp->cblist), 0);
Paul E. McKenney3c779df2018-07-05 15:54:02 -07002101 trace_rcu_batch_end(rcu_state.name, 0,
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002102 !rcu_segcblist_empty(&rdp->cblist),
Paul E. McKenney4968c302011-12-07 16:32:40 -08002103 need_resched(), is_idle_task(current),
2104 rcu_is_callbacks_kthread());
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002105 return;
Paul E. McKenney29c00b42011-06-17 15:53:19 -07002106 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002107
2108 /*
2109 * Extract the list of ready callbacks, disabling to prevent
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002110 * races with call_rcu() from interrupt handlers. Leave the
2111 * callback counts, as rcu_barrier() needs to be conservative.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002112 */
2113 local_irq_save(flags);
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002114 rcu_nocb_lock(rdp);
Paul E. McKenney8146c4e22012-01-10 14:23:29 -08002115 WARN_ON_ONCE(cpu_is_offline(smp_processor_id()));
Paul E. McKenney29c00b42011-06-17 15:53:19 -07002116 bl = rdp->blimit;
Paul E. McKenney3c779df2018-07-05 15:54:02 -07002117 trace_rcu_batch_start(rcu_state.name,
2118 rcu_segcblist_n_lazy_cbs(&rdp->cblist),
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002119 rcu_segcblist_n_cbs(&rdp->cblist), bl);
2120 rcu_segcblist_extract_done_cbs(&rdp->cblist, &rcl);
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002121 rcu_nocb_unlock_irqrestore(rdp, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002122
2123 /* Invoke callbacks. */
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002124 rhp = rcu_cblist_dequeue(&rcl);
2125 for (; rhp; rhp = rcu_cblist_dequeue(&rcl)) {
2126 debug_rcu_head_unqueue(rhp);
Paul E. McKenney3c779df2018-07-05 15:54:02 -07002127 if (__rcu_reclaim(rcu_state.name, rhp))
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002128 rcu_cblist_dequeued_lazy(&rcl);
2129 /*
2130 * Stop only if limit reached and CPU has something to do.
2131 * Note: The rcl structure counts down from zero.
2132 */
Paul E. McKenneyec5ef872019-05-21 13:03:49 -07002133 if (-rcl.len >= bl && !offloaded &&
Paul E. McKenneydff16722011-11-29 15:57:13 -08002134 (need_resched() ||
2135 (!is_idle_task(current) && !rcu_is_callbacks_kthread())))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002136 break;
Paul E. McKenneyec5ef872019-05-21 13:03:49 -07002137 if (offloaded) {
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002138 WARN_ON_ONCE(in_serving_softirq());
2139 local_bh_enable();
2140 lockdep_assert_irqs_enabled();
2141 cond_resched_tasks_rcu_qs();
2142 lockdep_assert_irqs_enabled();
2143 local_bh_disable();
2144 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002145 }
2146
2147 local_irq_save(flags);
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002148 rcu_nocb_lock(rdp);
Paul E. McKenney4b27f202017-05-02 08:45:25 -07002149 count = -rcl.len;
Paul E. McKenney3c779df2018-07-05 15:54:02 -07002150 trace_rcu_batch_end(rcu_state.name, count, !!rcl.head, need_resched(),
Paul E. McKenney8ef0f372017-05-02 08:18:40 -07002151 is_idle_task(current), rcu_is_callbacks_kthread());
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002152
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002153 /* Update counts and requeue any remaining callbacks. */
2154 rcu_segcblist_insert_done_cbs(&rdp->cblist, &rcl);
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002155 smp_mb(); /* List handling before counting for rcu_barrier(). */
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002156 rcu_segcblist_insert_count(&rdp->cblist, &rcl);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002157
2158 /* Reinstate batch limit if we have worked down the excess. */
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002159 count = rcu_segcblist_n_cbs(&rdp->cblist);
Paul E. McKenneyd5a9a8c2019-04-10 17:01:39 -07002160 if (rdp->blimit >= DEFAULT_MAX_RCU_BLIMIT && count <= qlowmark)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002161 rdp->blimit = blimit;
2162
Paul E. McKenney37c72e52009-10-14 10:15:55 -07002163 /* Reset ->qlen_last_fqs_check trigger if enough CBs have drained. */
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002164 if (count == 0 && rdp->qlen_last_fqs_check != 0) {
Paul E. McKenney37c72e52009-10-14 10:15:55 -07002165 rdp->qlen_last_fqs_check = 0;
Paul E. McKenney3c779df2018-07-05 15:54:02 -07002166 rdp->n_force_qs_snap = rcu_state.n_force_qs;
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002167 } else if (count < rdp->qlen_last_fqs_check - qhimark)
2168 rdp->qlen_last_fqs_check = count;
Paul E. McKenneyefd88b02017-10-19 14:52:41 -07002169
2170 /*
2171 * The following usually indicates a double call_rcu(). To track
2172 * this down, try building with CONFIG_DEBUG_OBJECTS_RCU_HEAD=y.
2173 */
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002174 WARN_ON_ONCE(rcu_segcblist_empty(&rdp->cblist) != (count == 0));
Paul E. McKenney37c72e52009-10-14 10:15:55 -07002175
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002176 rcu_nocb_unlock_irqrestore(rdp, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002177
Paul E. McKenneye0f23062011-06-21 01:29:39 -07002178 /* Re-invoke RCU core processing if there are callbacks remaining. */
Paul E. McKenneyec5ef872019-05-21 13:03:49 -07002179 if (!offloaded && rcu_segcblist_ready_cbs(&rdp->cblist))
Paul E. McKenneya46e0892011-06-15 15:47:09 -07002180 invoke_rcu_core();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002181}
2182
2183/*
Paul E. McKenneyc98cac62018-11-21 11:35:03 -08002184 * This function is invoked from each scheduling-clock interrupt,
2185 * and checks to see if this CPU is in a non-context-switch quiescent
2186 * state, for example, user mode or idle loop. It also schedules RCU
2187 * core processing. If the current grace period has gone on too long,
2188 * it will ask the scheduler to manufacture a context switch for the sole
2189 * purpose of providing a providing the needed quiescent state.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002190 */
Paul E. McKenneyc98cac62018-11-21 11:35:03 -08002191void rcu_sched_clock_irq(int user)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002192{
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04002193 trace_rcu_utilization(TPS("Start scheduler-tick"));
Paul E. McKenney4e950202018-07-05 17:59:36 -07002194 raw_cpu_inc(rcu_data.ticks_this_gp);
Paul E. McKenney92aa39e2018-07-09 13:47:30 -07002195 /* The load-acquire pairs with the store-release setting to true. */
Paul E. McKenney2dba13f2018-08-03 21:00:38 -07002196 if (smp_load_acquire(this_cpu_ptr(&rcu_data.rcu_urgent_qs))) {
Paul E. McKenney92aa39e2018-07-09 13:47:30 -07002197 /* Idle and userspace execution already are quiescent states. */
Paul E. McKenneya0ef9ec2018-07-09 15:50:16 -07002198 if (!rcu_is_cpu_rrupt_from_idle() && !user) {
Paul E. McKenney92aa39e2018-07-09 13:47:30 -07002199 set_tsk_need_resched(current);
2200 set_preempt_need_resched();
2201 }
Paul E. McKenney2dba13f2018-08-03 21:00:38 -07002202 __this_cpu_write(rcu_data.rcu_urgent_qs, false);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002203 }
Paul E. McKenneyc98cac62018-11-21 11:35:03 -08002204 rcu_flavor_sched_clock_irq(user);
Paul E. McKenneye3950ec2014-10-21 08:03:57 -07002205 if (rcu_pending())
Paul E. McKenneya46e0892011-06-15 15:47:09 -07002206 invoke_rcu_core();
Byungchul Park07f27572018-05-11 17:30:34 +09002207
Steven Rostedt (Red Hat)f7f7bac2013-07-12 17:18:47 -04002208 trace_rcu_utilization(TPS("End scheduler-tick"));
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002209}
2210
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002211/*
Zhouyi Zhou5d8a7522019-03-20 03:33:00 +00002212 * Scan the leaf rcu_node structures. For each structure on which all
2213 * CPUs have reported a quiescent state and on which there are tasks
2214 * blocking the current grace period, initiate RCU priority boosting.
2215 * Otherwise, invoke the specified function to check dyntick state for
2216 * each CPU that has not yet reported a quiescent state.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002217 */
Paul E. McKenney8ff0b902018-07-05 17:55:14 -07002218static void force_qs_rnp(int (*f)(struct rcu_data *rdp))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002219{
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002220 int cpu;
2221 unsigned long flags;
2222 unsigned long mask;
Paul E. McKenneya0b6c9a2009-09-28 07:46:33 -07002223 struct rcu_node *rnp;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002224
Paul E. McKenneyaedf4ba2018-07-04 14:33:59 -07002225 rcu_for_each_leaf_node(rnp) {
Paul E. McKenneycee43932018-03-02 16:35:27 -08002226 cond_resched_tasks_rcu_qs();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002227 mask = 0;
Peter Zijlstra2a67e742015-10-08 12:24:23 +02002228 raw_spin_lock_irqsave_rcu_node(rnp, flags);
Paul E. McKenneya0b6c9a2009-09-28 07:46:33 -07002229 if (rnp->qsmask == 0) {
Paul E. McKenney45975c72018-07-02 14:30:37 -07002230 if (!IS_ENABLED(CONFIG_PREEMPT) ||
Paul E. McKenneya77da142015-03-08 14:52:27 -07002231 rcu_preempt_blocked_readers_cgp(rnp)) {
2232 /*
2233 * No point in scanning bits because they
2234 * are all zero. But we might need to
2235 * priority-boost blocked readers.
2236 */
2237 rcu_initiate_boost(rnp, flags);
2238 /* rcu_initiate_boost() releases rnp->lock */
2239 continue;
2240 }
Paul E. McKenney92816432018-05-02 11:07:02 -07002241 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
2242 continue;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002243 }
Mark Rutlandbc75e992016-06-03 15:20:04 +01002244 for_each_leaf_node_possible_cpu(rnp, cpu) {
2245 unsigned long bit = leaf_node_cpu_bit(rnp, cpu);
Paul E. McKenney0edd1b12013-06-21 16:37:22 -07002246 if ((rnp->qsmask & bit) != 0) {
Paul E. McKenneyda1df502018-07-03 15:37:16 -07002247 if (f(per_cpu_ptr(&rcu_data, cpu)))
Paul E. McKenney0edd1b12013-06-21 16:37:22 -07002248 mask |= bit;
2249 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002250 }
Paul E. McKenney45f014c52e2010-01-04 15:09:08 -08002251 if (mask != 0) {
Paul E. McKenneyc9a24e22018-04-27 14:54:46 -07002252 /* Idle/offline CPUs, report (releases rnp->lock). */
Paul E. McKenneyb50912d2018-07-03 17:22:34 -07002253 rcu_report_qs_rnp(mask, rnp, rnp->gp_seq, flags);
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08002254 } else {
2255 /* Nothing to do here, so just drop the lock. */
Boqun Feng67c583a72015-12-29 12:18:47 +08002256 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002257 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002258 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002259}
2260
2261/*
2262 * Force quiescent states on reluctant CPUs, and also detect which
2263 * CPUs are in dyntick-idle mode.
2264 */
Paul E. McKenneycd920e52018-11-28 16:57:54 -08002265void rcu_force_quiescent_state(void)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002266{
2267 unsigned long flags;
Paul E. McKenney394f2762012-06-26 17:00:35 -07002268 bool ret;
2269 struct rcu_node *rnp;
2270 struct rcu_node *rnp_old = NULL;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002271
Paul E. McKenney394f2762012-06-26 17:00:35 -07002272 /* Funnel through hierarchy to reduce memory contention. */
Paul E. McKenneyda1df502018-07-03 15:37:16 -07002273 rnp = __this_cpu_read(rcu_data.mynode);
Paul E. McKenney394f2762012-06-26 17:00:35 -07002274 for (; rnp != NULL; rnp = rnp->parent) {
Paul E. McKenney67a0edb2018-07-05 16:15:38 -07002275 ret = (READ_ONCE(rcu_state.gp_flags) & RCU_GP_FLAG_FQS) ||
Paul E. McKenney394f2762012-06-26 17:00:35 -07002276 !raw_spin_trylock(&rnp->fqslock);
2277 if (rnp_old != NULL)
2278 raw_spin_unlock(&rnp_old->fqslock);
Paul E. McKenneyd62df572018-01-10 13:10:49 -08002279 if (ret)
Paul E. McKenney394f2762012-06-26 17:00:35 -07002280 return;
Paul E. McKenney394f2762012-06-26 17:00:35 -07002281 rnp_old = rnp;
2282 }
Paul E. McKenney336a4f62018-07-03 17:22:34 -07002283 /* rnp_old == rcu_get_root(), rnp == NULL. */
Paul E. McKenney394f2762012-06-26 17:00:35 -07002284
2285 /* Reached the root of the rcu_node tree, acquire lock. */
Peter Zijlstra2a67e742015-10-08 12:24:23 +02002286 raw_spin_lock_irqsave_rcu_node(rnp_old, flags);
Paul E. McKenney394f2762012-06-26 17:00:35 -07002287 raw_spin_unlock(&rnp_old->fqslock);
Paul E. McKenney67a0edb2018-07-05 16:15:38 -07002288 if (READ_ONCE(rcu_state.gp_flags) & RCU_GP_FLAG_FQS) {
Boqun Feng67c583a72015-12-29 12:18:47 +08002289 raw_spin_unlock_irqrestore_rcu_node(rnp_old, flags);
Paul E. McKenney4cdfc1752012-06-22 17:06:26 -07002290 return; /* Someone beat us to it. */
Paul E. McKenney46a1e342010-01-04 15:09:09 -08002291 }
Paul E. McKenney67a0edb2018-07-05 16:15:38 -07002292 WRITE_ONCE(rcu_state.gp_flags,
2293 READ_ONCE(rcu_state.gp_flags) | RCU_GP_FLAG_FQS);
Boqun Feng67c583a72015-12-29 12:18:47 +08002294 raw_spin_unlock_irqrestore_rcu_node(rnp_old, flags);
Paul E. McKenney532c00c2018-07-03 17:22:34 -07002295 rcu_gp_kthread_wake();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002296}
Paul E. McKenneycd920e52018-11-28 16:57:54 -08002297EXPORT_SYMBOL_GPL(rcu_force_quiescent_state);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002298
Paul E. McKenneyfb60e532018-11-21 12:42:12 -08002299/* Perform RCU core processing work for the current CPU. */
Sebastian Andrzej Siewior48d07c02019-03-20 22:13:33 +01002300static __latent_entropy void rcu_core(void)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002301{
Shaohua Li09223372011-06-14 13:26:25 +08002302 unsigned long flags;
Paul E. McKenneyda1df502018-07-03 15:37:16 -07002303 struct rcu_data *rdp = raw_cpu_ptr(&rcu_data);
Paul E. McKenneyb0f74032013-02-04 12:14:24 -08002304 struct rcu_node *rnp = rdp->mynode;
Paul E. McKenneya26ac242011-01-12 14:10:23 -08002305
2306 if (cpu_is_offline(smp_processor_id()))
Peter Zijlstra08bca602011-05-20 16:06:29 -07002307 return;
Paul E. McKenneya26ac242011-01-12 14:10:23 -08002308 trace_rcu_utilization(TPS("Start RCU core"));
Shaohua Li09223372011-06-14 13:26:25 +08002309 WARN_ON_ONCE(!rdp->beenonline);
Paul E. McKenney29154c52012-05-30 03:21:48 -07002310
Paul E. McKenney3e310092018-06-21 12:50:01 -07002311 /* Report any deferred quiescent states if preemption enabled. */
Paul E. McKenneyfced9c82018-07-26 13:44:00 -07002312 if (!(preempt_count() & PREEMPT_MASK)) {
Paul E. McKenney3e310092018-06-21 12:50:01 -07002313 rcu_preempt_deferred_qs(current);
Paul E. McKenneyfced9c82018-07-26 13:44:00 -07002314 } else if (rcu_preempt_need_deferred_qs(current)) {
2315 set_tsk_need_resched(current);
2316 set_preempt_need_resched();
2317 }
Paul E. McKenney3e310092018-06-21 12:50:01 -07002318
Paul E. McKenney29154c52012-05-30 03:21:48 -07002319 /* Update RCU state based on any recent quiescent states. */
Paul E. McKenney8087d3e2018-07-03 17:22:34 -07002320 rcu_check_quiescent_state(rdp);
Paul E. McKenney29154c52012-05-30 03:21:48 -07002321
2322 /* No grace period and unregistered callbacks? */
Paul E. McKenneyde8e8732018-07-03 17:22:34 -07002323 if (!rcu_gp_in_progress() &&
Paul E. McKenney750d7f62019-04-16 08:19:43 -07002324 rcu_segcblist_is_enabled(&rdp->cblist) &&
2325 !rcu_segcblist_is_offloaded(&rdp->cblist)) {
Paul E. McKenney48a76392014-03-11 13:02:16 -07002326 local_irq_save(flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002327 if (!rcu_segcblist_restempty(&rdp->cblist, RCU_NEXT_READY_TAIL))
Paul E. McKenneyc6e09b92018-07-03 17:22:34 -07002328 rcu_accelerate_cbs_unlocked(rnp, rdp);
Paul E. McKenney29154c52012-05-30 03:21:48 -07002329 local_irq_restore(flags);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002330 }
Yao Dongdong9910aff2015-02-25 17:09:46 +08002331
Paul E. McKenney791416c2018-10-01 15:42:44 -07002332 rcu_check_gp_start_stall(rnp, rdp, rcu_jiffies_till_stall_check());
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002333
Paul E. McKenney29154c52012-05-30 03:21:48 -07002334 /* If there are callbacks ready, invoke them. */
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002335 if (!rcu_segcblist_is_offloaded(&rdp->cblist) &&
2336 rcu_segcblist_ready_cbs(&rdp->cblist) &&
Paul E. McKenney43e903a2019-03-25 08:36:03 -07002337 likely(READ_ONCE(rcu_scheduler_fully_active)))
2338 rcu_do_batch(rdp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002339
2340 /* Do any needed deferred wakeups of rcuo kthreads. */
2341 do_nocb_deferred_wakeup(rdp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002342 trace_rcu_utilization(TPS("End RCU core"));
2343}
2344
Sebastian Andrzej Siewior48d07c02019-03-20 22:13:33 +01002345static void rcu_core_si(struct softirq_action *h)
2346{
2347 rcu_core();
2348}
2349
2350static void rcu_wake_cond(struct task_struct *t, int status)
2351{
2352 /*
2353 * If the thread is yielding, only wake it when this
2354 * is invoked from idle
2355 */
2356 if (t && (status != RCU_KTHREAD_YIELDING || is_idle_task(current)))
2357 wake_up_process(t);
2358}
2359
2360static void invoke_rcu_core_kthread(void)
2361{
2362 struct task_struct *t;
2363 unsigned long flags;
2364
2365 local_irq_save(flags);
2366 __this_cpu_write(rcu_data.rcu_cpu_has_work, 1);
2367 t = __this_cpu_read(rcu_data.rcu_cpu_kthread_task);
2368 if (t != NULL && t != current)
2369 rcu_wake_cond(t, __this_cpu_read(rcu_data.rcu_cpu_kthread_status));
2370 local_irq_restore(flags);
2371}
2372
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002373/*
Sebastian Andrzej Siewior48d07c02019-03-20 22:13:33 +01002374 * Wake up this CPU's rcuc kthread to do RCU core processing.
2375 */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002376static void invoke_rcu_core(void)
2377{
Sebastian Andrzej Siewior48d07c02019-03-20 22:13:33 +01002378 if (!cpu_online(smp_processor_id()))
2379 return;
2380 if (use_softirq)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002381 raise_softirq(RCU_SOFTIRQ);
Sebastian Andrzej Siewior48d07c02019-03-20 22:13:33 +01002382 else
2383 invoke_rcu_core_kthread();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002384}
2385
Sebastian Andrzej Siewior48d07c02019-03-20 22:13:33 +01002386static void rcu_cpu_kthread_park(unsigned int cpu)
2387{
2388 per_cpu(rcu_data.rcu_cpu_kthread_status, cpu) = RCU_KTHREAD_OFFCPU;
2389}
2390
2391static int rcu_cpu_kthread_should_run(unsigned int cpu)
2392{
2393 return __this_cpu_read(rcu_data.rcu_cpu_has_work);
2394}
2395
2396/*
2397 * Per-CPU kernel thread that invokes RCU callbacks. This replaces
2398 * the RCU softirq used in configurations of RCU that do not support RCU
2399 * priority boosting.
2400 */
2401static void rcu_cpu_kthread(unsigned int cpu)
2402{
2403 unsigned int *statusp = this_cpu_ptr(&rcu_data.rcu_cpu_kthread_status);
2404 char work, *workp = this_cpu_ptr(&rcu_data.rcu_cpu_has_work);
2405 int spincnt;
2406
2407 for (spincnt = 0; spincnt < 10; spincnt++) {
2408 trace_rcu_utilization(TPS("Start CPU kthread@rcu_wait"));
2409 local_bh_disable();
2410 *statusp = RCU_KTHREAD_RUNNING;
2411 local_irq_disable();
2412 work = *workp;
2413 *workp = 0;
2414 local_irq_enable();
2415 if (work)
2416 rcu_core();
2417 local_bh_enable();
2418 if (*workp == 0) {
2419 trace_rcu_utilization(TPS("End CPU kthread@rcu_wait"));
2420 *statusp = RCU_KTHREAD_WAITING;
2421 return;
2422 }
2423 }
2424 *statusp = RCU_KTHREAD_YIELDING;
2425 trace_rcu_utilization(TPS("Start CPU kthread@rcu_yield"));
2426 schedule_timeout_interruptible(2);
2427 trace_rcu_utilization(TPS("End CPU kthread@rcu_yield"));
2428 *statusp = RCU_KTHREAD_WAITING;
2429}
2430
2431static struct smp_hotplug_thread rcu_cpu_thread_spec = {
2432 .store = &rcu_data.rcu_cpu_kthread_task,
2433 .thread_should_run = rcu_cpu_kthread_should_run,
2434 .thread_fn = rcu_cpu_kthread,
2435 .thread_comm = "rcuc/%u",
2436 .setup = rcu_cpu_kthread_setup,
2437 .park = rcu_cpu_kthread_park,
2438};
2439
2440/*
2441 * Spawn per-CPU RCU core processing kthreads.
2442 */
2443static int __init rcu_spawn_core_kthreads(void)
2444{
2445 int cpu;
2446
2447 for_each_possible_cpu(cpu)
2448 per_cpu(rcu_data.rcu_cpu_has_work, cpu) = 0;
2449 if (!IS_ENABLED(CONFIG_RCU_BOOST) && use_softirq)
2450 return 0;
2451 WARN_ONCE(smpboot_register_percpu_thread(&rcu_cpu_thread_spec),
2452 "%s: Could not start rcuc kthread, OOM is now expected behavior\n", __func__);
2453 return 0;
2454}
2455early_initcall(rcu_spawn_core_kthreads);
2456
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002457/*
2458 * Handle any core-RCU processing required by a call_rcu() invocation.
Paul E. McKenney29154c52012-05-30 03:21:48 -07002459 */
Paul E. McKenney5c7d8962018-07-03 17:22:34 -07002460static void __call_rcu_core(struct rcu_data *rdp, struct rcu_head *head,
2461 unsigned long flags)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002462{
Paul E. McKenney37c72e52009-10-14 10:15:55 -07002463 /*
2464 * If called from an extended quiescent state, invoke the RCU
2465 * core in order to force a re-evaluation of RCU's idleness.
2466 */
2467 if (!rcu_is_watching())
Paul E. McKenney2655d572011-04-07 22:47:23 -07002468 invoke_rcu_core();
Paul E. McKenneyb52573d2010-12-14 17:36:02 -08002469
2470 /* If interrupts were disabled or CPU offline, don't invoke RCU core. */
Paul E. McKenney470716f2013-03-19 11:32:11 -07002471 if (irqs_disabled_flags(flags) || cpu_is_offline(smp_processor_id()))
Paul E. McKenneyb52573d2010-12-14 17:36:02 -08002472 return;
2473
2474 /*
Paul E. McKenneyb52573d2010-12-14 17:36:02 -08002475 * Force the grace period if too many callbacks or too long waiting.
Paul E. McKenneycd920e52018-11-28 16:57:54 -08002476 * Enforce hysteresis, and don't invoke rcu_force_quiescent_state()
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002477 * if some other CPU has recently done so. Also, don't bother
Paul E. McKenneycd920e52018-11-28 16:57:54 -08002478 * invoking rcu_force_quiescent_state() if the newly enqueued callback
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002479 * is the only one waiting for a grace period to complete.
2480 */
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002481 if (unlikely(rcu_segcblist_n_cbs(&rdp->cblist) >
2482 rdp->qlen_last_fqs_check + qhimark)) {
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002483
2484 /* Are we ignoring a completed grace period? */
Paul E. McKenney15cabdf2018-07-03 17:22:34 -07002485 note_gp_changes(rdp);
Paul E. McKenneyb52573d2010-12-14 17:36:02 -08002486
2487 /* Start a new grace period if one not already started. */
Paul E. McKenneyde8e8732018-07-03 17:22:34 -07002488 if (!rcu_gp_in_progress()) {
Paul E. McKenneyc6e09b92018-07-03 17:22:34 -07002489 rcu_accelerate_cbs_unlocked(rdp->mynode, rdp);
Paul E. McKenneyb52573d2010-12-14 17:36:02 -08002490 } else {
2491 /* Give the grace period a kick. */
Paul E. McKenneyd5a9a8c2019-04-10 17:01:39 -07002492 rdp->blimit = DEFAULT_MAX_RCU_BLIMIT;
Paul E. McKenney5c7d8962018-07-03 17:22:34 -07002493 if (rcu_state.n_force_qs == rdp->n_force_qs_snap &&
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002494 rcu_segcblist_first_pend_cb(&rdp->cblist) != head)
Paul E. McKenneycd920e52018-11-28 16:57:54 -08002495 rcu_force_quiescent_state();
Paul E. McKenney5c7d8962018-07-03 17:22:34 -07002496 rdp->n_force_qs_snap = rcu_state.n_force_qs;
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002497 rdp->qlen_last_fqs_check = rcu_segcblist_n_cbs(&rdp->cblist);
Paul E. McKenneyb52573d2010-12-14 17:36:02 -08002498 }
Paul E. McKenney4cdfc1752012-06-22 17:06:26 -07002499 }
Paul E. McKenney29154c52012-05-30 03:21:48 -07002500}
2501
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002502/*
Paul E. McKenneyae150182013-04-23 13:20:57 -07002503 * RCU callback function to leak a callback.
2504 */
2505static void rcu_leak_callback(struct rcu_head *rhp)
2506{
2507}
2508
2509/*
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002510 * Helper function for call_rcu() and friends. The cpu argument will
2511 * normally be -1, indicating "currently running CPU". It may specify
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002512 * a CPU only if that CPU is a no-CBs CPU. Currently, only rcu_barrier()
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002513 * is expected to specify a CPU.
2514 */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002515static void
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002516__call_rcu(struct rcu_head *head, rcu_callback_t func, bool lazy)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002517{
2518 unsigned long flags;
2519 struct rcu_data *rdp;
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002520 bool was_alldone;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002521
Paul E. McKenneyb8f2ed52016-08-23 06:51:47 -07002522 /* Misaligned rcu_head! */
2523 WARN_ON_ONCE((unsigned long)head & (sizeof(void *) - 1));
2524
Paul E. McKenneyae150182013-04-23 13:20:57 -07002525 if (debug_rcu_head_queue(head)) {
Paul E. McKenneyfa3c6642017-05-03 11:38:55 -07002526 /*
2527 * Probable double call_rcu(), so leak the callback.
2528 * Use rcu:rcu_callback trace event to find the previous
2529 * time callback was passed to __call_rcu().
2530 */
Sakari Ailusd75f7732019-03-25 21:32:28 +02002531 WARN_ONCE(1, "__call_rcu(): Double-freed CB %p->%pS()!!!\n",
Paul E. McKenneyfa3c6642017-05-03 11:38:55 -07002532 head, head->func);
Paul E. McKenney7d0ae802015-03-03 14:57:58 -08002533 WRITE_ONCE(head->func, rcu_leak_callback);
Paul E. McKenneyae150182013-04-23 13:20:57 -07002534 return;
2535 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002536 head->func = func;
2537 head->next = NULL;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002538 local_irq_save(flags);
Paul E. McKenneyda1df502018-07-03 15:37:16 -07002539 rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002540
2541 /* Add the callback to our list. */
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002542 if (unlikely(!rcu_segcblist_is_enabled(&rdp->cblist))) {
2543 // This can trigger due to call_rcu() from offline CPU:
2544 WARN_ON_ONCE(rcu_scheduler_active != RCU_SCHEDULER_INACTIVE);
Paul E. McKenney34404ca2015-01-19 20:39:20 -08002545 WARN_ON_ONCE(!rcu_is_watching());
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002546 // Very early boot, before rcu_init(). Initialize if needed
2547 // and then drop through to queue the callback.
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002548 if (rcu_segcblist_empty(&rdp->cblist))
2549 rcu_segcblist_init(&rdp->cblist);
Paul E. McKenney0d8ee372012-08-03 13:16:15 -07002550 }
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002551 rcu_nocb_lock(rdp);
2552 was_alldone = !rcu_segcblist_pend_cbs(&rdp->cblist);
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002553 rcu_segcblist_enqueue(&rdp->cblist, head, lazy);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002554 if (__is_kfree_rcu_offset((unsigned long)func))
Paul E. McKenney3c779df2018-07-05 15:54:02 -07002555 trace_rcu_kfree_callback(rcu_state.name, head,
2556 (unsigned long)func,
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002557 rcu_segcblist_n_lazy_cbs(&rdp->cblist),
2558 rcu_segcblist_n_cbs(&rdp->cblist));
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002559 else
Paul E. McKenney3c779df2018-07-05 15:54:02 -07002560 trace_rcu_callback(rcu_state.name, head,
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002561 rcu_segcblist_n_lazy_cbs(&rdp->cblist),
2562 rcu_segcblist_n_cbs(&rdp->cblist));
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002563
Paul E. McKenney29154c52012-05-30 03:21:48 -07002564 /* Go handle any RCU core processing required. */
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002565 if (IS_ENABLED(CONFIG_RCU_NOCB_CPU) &&
2566 unlikely(rcu_segcblist_is_offloaded(&rdp->cblist))) {
2567 __call_rcu_nocb_wake(rdp, was_alldone, flags); /* unlocks */
2568 } else {
2569 __call_rcu_core(rdp, head, flags);
2570 local_irq_restore(flags);
2571 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002572}
2573
Paul E. McKenneya68a2bb2017-05-03 08:34:57 -07002574/**
Paul E. McKenney45975c72018-07-02 14:30:37 -07002575 * call_rcu() - Queue an RCU callback for invocation after a grace period.
Paul E. McKenneya68a2bb2017-05-03 08:34:57 -07002576 * @head: structure to be used for queueing the RCU updates.
2577 * @func: actual callback function to be invoked after the grace period
2578 *
2579 * The callback function will be invoked some time after a full grace
Paul E. McKenney45975c72018-07-02 14:30:37 -07002580 * period elapses, in other words after all pre-existing RCU read-side
2581 * critical sections have completed. However, the callback function
2582 * might well execute concurrently with RCU read-side critical sections
2583 * that started after call_rcu() was invoked. RCU read-side critical
2584 * sections are delimited by rcu_read_lock() and rcu_read_unlock(), and
2585 * may be nested. In addition, regions of code across which interrupts,
2586 * preemption, or softirqs have been disabled also serve as RCU read-side
2587 * critical sections. This includes hardware interrupt handlers, softirq
2588 * handlers, and NMI handlers.
Paul E. McKenney27fdb352017-10-19 14:26:21 -07002589 *
Paul E. McKenney45975c72018-07-02 14:30:37 -07002590 * Note that all CPUs must agree that the grace period extended beyond
2591 * all pre-existing RCU read-side critical section. On systems with more
2592 * than one CPU, this means that when "func()" is invoked, each CPU is
2593 * guaranteed to have executed a full memory barrier since the end of its
2594 * last RCU read-side critical section whose beginning preceded the call
2595 * to call_rcu(). It also means that each CPU executing an RCU read-side
2596 * critical section that continues beyond the start of "func()" must have
2597 * executed a memory barrier after the call_rcu() but before the beginning
2598 * of that RCU read-side critical section. Note that these guarantees
2599 * include CPUs that are offline, idle, or executing in user mode, as
2600 * well as CPUs that are executing in the kernel.
Paul E. McKenneya68a2bb2017-05-03 08:34:57 -07002601 *
Paul E. McKenney45975c72018-07-02 14:30:37 -07002602 * Furthermore, if CPU A invoked call_rcu() and CPU B invoked the
2603 * resulting RCU callback function "func()", then both CPU A and CPU B are
2604 * guaranteed to execute a full memory barrier during the time interval
2605 * between the call to call_rcu() and the invocation of "func()" -- even
2606 * if CPU A and CPU B are the same CPU (but again only if the system has
2607 * more than one CPU).
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002608 */
Paul E. McKenney45975c72018-07-02 14:30:37 -07002609void call_rcu(struct rcu_head *head, rcu_callback_t func)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002610{
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002611 __call_rcu(head, func, 0);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002612}
Paul E. McKenney45975c72018-07-02 14:30:37 -07002613EXPORT_SYMBOL_GPL(call_rcu);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002614
Paul E. McKenney6d813392012-02-23 13:30:16 -08002615/*
Andreea-Cristina Bernat495aa962014-03-18 20:48:48 +02002616 * Queue an RCU callback for lazy invocation after a grace period.
2617 * This will likely be later named something like "call_rcu_lazy()",
2618 * but this change will require some way of tagging the lazy RCU
2619 * callbacks in the list of pending callbacks. Until then, this
2620 * function may only be called from __kfree_rcu().
2621 */
Paul E. McKenney98ece502018-07-03 17:22:34 -07002622void kfree_call_rcu(struct rcu_head *head, rcu_callback_t func)
Andreea-Cristina Bernat495aa962014-03-18 20:48:48 +02002623{
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002624 __call_rcu(head, func, 1);
Andreea-Cristina Bernat495aa962014-03-18 20:48:48 +02002625}
2626EXPORT_SYMBOL_GPL(kfree_call_rcu);
2627
Paul E. McKenneye5bc3af2018-11-29 10:42:06 -08002628/*
2629 * During early boot, any blocking grace-period wait automatically
2630 * implies a grace period. Later on, this is never the case for PREEMPT.
2631 *
2632 * Howevr, because a context switch is a grace period for !PREEMPT, any
2633 * blocking grace-period wait automatically implies a grace period if
2634 * there is only one CPU online at any point time during execution of
2635 * either synchronize_rcu() or synchronize_rcu_expedited(). It is OK to
2636 * occasionally incorrectly indicate that there are multiple CPUs online
2637 * when there was in fact only one the whole time, as this just adds some
2638 * overhead: RCU still operates correctly.
2639 */
2640static int rcu_blocking_is_gp(void)
2641{
2642 int ret;
2643
2644 if (IS_ENABLED(CONFIG_PREEMPT))
2645 return rcu_scheduler_active == RCU_SCHEDULER_INACTIVE;
2646 might_sleep(); /* Check for RCU read-side critical section. */
2647 preempt_disable();
2648 ret = num_online_cpus() <= 1;
2649 preempt_enable();
2650 return ret;
2651}
2652
2653/**
2654 * synchronize_rcu - wait until a grace period has elapsed.
2655 *
2656 * Control will return to the caller some time after a full grace
2657 * period has elapsed, in other words after all currently executing RCU
2658 * read-side critical sections have completed. Note, however, that
2659 * upon return from synchronize_rcu(), the caller might well be executing
2660 * concurrently with new RCU read-side critical sections that began while
2661 * synchronize_rcu() was waiting. RCU read-side critical sections are
2662 * delimited by rcu_read_lock() and rcu_read_unlock(), and may be nested.
2663 * In addition, regions of code across which interrupts, preemption, or
2664 * softirqs have been disabled also serve as RCU read-side critical
2665 * sections. This includes hardware interrupt handlers, softirq handlers,
2666 * and NMI handlers.
2667 *
2668 * Note that this guarantee implies further memory-ordering guarantees.
2669 * On systems with more than one CPU, when synchronize_rcu() returns,
2670 * each CPU is guaranteed to have executed a full memory barrier since
2671 * the end of its last RCU read-side critical section whose beginning
2672 * preceded the call to synchronize_rcu(). In addition, each CPU having
2673 * an RCU read-side critical section that extends beyond the return from
2674 * synchronize_rcu() is guaranteed to have executed a full memory barrier
2675 * after the beginning of synchronize_rcu() and before the beginning of
2676 * that RCU read-side critical section. Note that these guarantees include
2677 * CPUs that are offline, idle, or executing in user mode, as well as CPUs
2678 * that are executing in the kernel.
2679 *
2680 * Furthermore, if CPU A invoked synchronize_rcu(), which returned
2681 * to its caller on CPU B, then both CPU A and CPU B are guaranteed
2682 * to have executed a full memory barrier during the execution of
2683 * synchronize_rcu() -- even if CPU A and CPU B are the same CPU (but
2684 * again only if the system has more than one CPU).
2685 */
2686void synchronize_rcu(void)
2687{
2688 RCU_LOCKDEP_WARN(lock_is_held(&rcu_bh_lock_map) ||
2689 lock_is_held(&rcu_lock_map) ||
2690 lock_is_held(&rcu_sched_lock_map),
2691 "Illegal synchronize_rcu() in RCU read-side critical section");
2692 if (rcu_blocking_is_gp())
2693 return;
2694 if (rcu_gp_is_expedited())
2695 synchronize_rcu_expedited();
2696 else
2697 wait_rcu_gp(call_rcu);
2698}
2699EXPORT_SYMBOL_GPL(synchronize_rcu);
2700
Paul E. McKenney765a3f42014-03-14 16:37:08 -07002701/**
2702 * get_state_synchronize_rcu - Snapshot current RCU state
2703 *
2704 * Returns a cookie that is used by a later call to cond_synchronize_rcu()
2705 * to determine whether or not a full grace period has elapsed in the
2706 * meantime.
2707 */
2708unsigned long get_state_synchronize_rcu(void)
2709{
2710 /*
2711 * Any prior manipulation of RCU-protected data must happen
Paul E. McKenneye4be81a2018-04-27 15:16:50 -07002712 * before the load from ->gp_seq.
Paul E. McKenney765a3f42014-03-14 16:37:08 -07002713 */
2714 smp_mb(); /* ^^^ */
Paul E. McKenney16fc9c62018-07-03 15:54:39 -07002715 return rcu_seq_snap(&rcu_state.gp_seq);
Paul E. McKenney765a3f42014-03-14 16:37:08 -07002716}
2717EXPORT_SYMBOL_GPL(get_state_synchronize_rcu);
2718
2719/**
2720 * cond_synchronize_rcu - Conditionally wait for an RCU grace period
2721 *
2722 * @oldstate: return value from earlier call to get_state_synchronize_rcu()
2723 *
2724 * If a full RCU grace period has elapsed since the earlier call to
2725 * get_state_synchronize_rcu(), just return. Otherwise, invoke
2726 * synchronize_rcu() to wait for a full grace period.
2727 *
2728 * Yes, this function does not take counter wrap into account. But
2729 * counter wrap is harmless. If the counter wraps, we have waited for
2730 * more than 2 billion grace periods (and way more on a 64-bit system!),
2731 * so waiting for one additional grace period should be just fine.
2732 */
2733void cond_synchronize_rcu(unsigned long oldstate)
2734{
Paul E. McKenney16fc9c62018-07-03 15:54:39 -07002735 if (!rcu_seq_done(&rcu_state.gp_seq, oldstate))
Paul E. McKenney765a3f42014-03-14 16:37:08 -07002736 synchronize_rcu();
Paul E. McKenneye4be81a2018-04-27 15:16:50 -07002737 else
2738 smp_mb(); /* Ensure GP ends before subsequent accesses. */
Paul E. McKenney765a3f42014-03-14 16:37:08 -07002739}
2740EXPORT_SYMBOL_GPL(cond_synchronize_rcu);
2741
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002742/*
Paul E. McKenney98ece502018-07-03 17:22:34 -07002743 * Check to see if there is any immediate RCU-related work to be done by
Paul E. McKenney49918a52018-07-07 18:12:26 -07002744 * the current CPU, returning 1 if so and zero otherwise. The checks are
2745 * in order of increasing expense: checks that can be carried out against
2746 * CPU-local state are performed first. However, we must check for CPU
2747 * stalls first, else we might not get a chance.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002748 */
Paul E. McKenney98ece502018-07-03 17:22:34 -07002749static int rcu_pending(void)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002750{
Paul E. McKenney98ece502018-07-03 17:22:34 -07002751 struct rcu_data *rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenney2f51f982009-11-13 19:51:39 -08002752 struct rcu_node *rnp = rdp->mynode;
2753
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002754 /* Check for CPU stalls, if enabled. */
Paul E. McKenneyea12ff22018-07-03 17:22:34 -07002755 check_cpu_stall(rdp);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002756
Paul E. McKenney85f69b32019-04-16 14:48:28 -07002757 /* Does this CPU need a deferred NOCB wakeup? */
2758 if (rcu_nocb_need_deferred_wakeup(rdp))
2759 return 1;
2760
Paul E. McKenneya0969322013-11-08 09:03:10 -08002761 /* Is this CPU a NO_HZ_FULL CPU that should ignore RCU? */
Paul E. McKenney4580b052018-07-03 17:22:34 -07002762 if (rcu_nohz_full_cpu())
Paul E. McKenneya0969322013-11-08 09:03:10 -08002763 return 0;
2764
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002765 /* Is the RCU core waiting for a quiescent state from this CPU? */
Paul E. McKenney01c495f2018-01-10 12:36:00 -08002766 if (rdp->core_needs_qs && !rdp->cpu_no_qs.b.norm)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002767 return 1;
2768
2769 /* Does this CPU have callbacks ready to invoke? */
Paul E. McKenney01c495f2018-01-10 12:36:00 -08002770 if (rcu_segcblist_ready_cbs(&rdp->cblist))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002771 return 1;
2772
2773 /* Has RCU gone idle with this CPU needing another grace period? */
Paul E. McKenneyde8e8732018-07-03 17:22:34 -07002774 if (!rcu_gp_in_progress() &&
Paul E. McKenneyc1935202018-04-12 16:29:13 -07002775 rcu_segcblist_is_enabled(&rdp->cblist) &&
Paul E. McKenney750d7f62019-04-16 08:19:43 -07002776 !rcu_segcblist_is_offloaded(&rdp->cblist) &&
Paul E. McKenneyc1935202018-04-12 16:29:13 -07002777 !rcu_segcblist_restempty(&rdp->cblist, RCU_NEXT_READY_TAIL))
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002778 return 1;
2779
Paul E. McKenney67e14c12018-04-27 16:01:46 -07002780 /* Have RCU grace period completed or started? */
2781 if (rcu_seq_current(&rnp->gp_seq) != rdp->gp_seq ||
Paul E. McKenney01c495f2018-01-10 12:36:00 -08002782 unlikely(READ_ONCE(rdp->gpwrap))) /* outside lock */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002783 return 1;
2784
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002785 /* nothing to do */
2786 return 0;
2787}
2788
2789/*
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002790 * Helper function for rcu_barrier() tracing. If tracing is disabled,
Paul E. McKenneya83eff02012-05-23 18:47:05 -07002791 * the compiler is expected to optimize this away.
2792 */
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002793static void rcu_barrier_trace(const char *s, int cpu, unsigned long done)
Paul E. McKenneya83eff02012-05-23 18:47:05 -07002794{
Paul E. McKenney8344b872018-07-03 17:22:34 -07002795 trace_rcu_barrier(rcu_state.name, s, cpu,
2796 atomic_read(&rcu_state.barrier_cpu_count), done);
Paul E. McKenneya83eff02012-05-23 18:47:05 -07002797}
2798
2799/*
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002800 * RCU callback function for rcu_barrier(). If we are last, wake
2801 * up the task executing rcu_barrier().
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002802 */
Paul E. McKenney24ebbca2012-05-29 00:34:56 -07002803static void rcu_barrier_callback(struct rcu_head *rhp)
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002804{
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002805 if (atomic_dec_and_test(&rcu_state.barrier_cpu_count)) {
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002806 rcu_barrier_trace(TPS("LastCB"), -1,
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002807 rcu_state.barrier_sequence);
2808 complete(&rcu_state.barrier_completion);
Paul E. McKenneya83eff02012-05-23 18:47:05 -07002809 } else {
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002810 rcu_barrier_trace(TPS("CB"), -1, rcu_state.barrier_sequence);
Paul E. McKenneya83eff02012-05-23 18:47:05 -07002811 }
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002812}
2813
2814/*
2815 * Called with preemption disabled, and from cross-cpu IRQ context.
2816 */
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002817static void rcu_barrier_func(void *unused)
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002818{
Paul E. McKenneyda1df502018-07-03 15:37:16 -07002819 struct rcu_data *rdp = raw_cpu_ptr(&rcu_data);
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002820
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002821 rcu_barrier_trace(TPS("IRQ"), -1, rcu_state.barrier_sequence);
Paul E. McKenneyf92c7342017-04-10 15:40:35 -07002822 rdp->barrier_head.func = rcu_barrier_callback;
2823 debug_rcu_head_queue(&rdp->barrier_head);
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002824 rcu_nocb_lock(rdp);
Paul E. McKenneyf92c7342017-04-10 15:40:35 -07002825 if (rcu_segcblist_entrain(&rdp->cblist, &rdp->barrier_head, 0)) {
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002826 atomic_inc(&rcu_state.barrier_cpu_count);
Paul E. McKenneyf92c7342017-04-10 15:40:35 -07002827 } else {
2828 debug_rcu_head_unqueue(&rdp->barrier_head);
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002829 rcu_barrier_trace(TPS("IRQNQ"), -1,
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002830 rcu_state.barrier_sequence);
Paul E. McKenneyf92c7342017-04-10 15:40:35 -07002831 }
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002832 rcu_nocb_unlock(rdp);
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002833}
2834
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002835/**
2836 * rcu_barrier - Wait until all in-flight call_rcu() callbacks complete.
2837 *
2838 * Note that this primitive does not necessarily wait for an RCU grace period
2839 * to complete. For example, if there are no RCU callbacks queued anywhere
2840 * in the system, then rcu_barrier() is within its rights to return
2841 * immediately, without waiting for anything, much less an RCU grace period.
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002842 */
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002843void rcu_barrier(void)
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002844{
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002845 int cpu;
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002846 struct rcu_data *rdp;
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002847 unsigned long s = rcu_seq_snap(&rcu_state.barrier_sequence);
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002848
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002849 rcu_barrier_trace(TPS("Begin"), -1, s);
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002850
Paul E. McKenneye74f4c42009-10-06 21:48:17 -07002851 /* Take mutex to serialize concurrent rcu_barrier() requests. */
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002852 mutex_lock(&rcu_state.barrier_mutex);
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002853
Paul E. McKenney4f525a52015-06-26 11:20:00 -07002854 /* Did someone else do our work for us? */
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002855 if (rcu_seq_done(&rcu_state.barrier_sequence, s)) {
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002856 rcu_barrier_trace(TPS("EarlyExit"), -1,
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002857 rcu_state.barrier_sequence);
Paul E. McKenneycf3a9c42012-05-29 14:56:46 -07002858 smp_mb(); /* caller's subsequent code after above check. */
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002859 mutex_unlock(&rcu_state.barrier_mutex);
Paul E. McKenneycf3a9c42012-05-29 14:56:46 -07002860 return;
2861 }
2862
Paul E. McKenney4f525a52015-06-26 11:20:00 -07002863 /* Mark the start of the barrier operation. */
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002864 rcu_seq_start(&rcu_state.barrier_sequence);
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002865 rcu_barrier_trace(TPS("Inc1"), -1, rcu_state.barrier_sequence);
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002866
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002867 /*
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002868 * Initialize the count to one rather than to zero in order to
2869 * avoid a too-soon return to zero in case of a short grace period
Paul E. McKenney1331e7a2012-08-02 17:43:50 -07002870 * (or preemption of this task). Exclude CPU-hotplug operations
2871 * to ensure that no offline CPU has callbacks queued.
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002872 */
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002873 init_completion(&rcu_state.barrier_completion);
2874 atomic_set(&rcu_state.barrier_cpu_count, 1);
Paul E. McKenney1331e7a2012-08-02 17:43:50 -07002875 get_online_cpus();
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002876
2877 /*
Paul E. McKenney1331e7a2012-08-02 17:43:50 -07002878 * Force each CPU with callbacks to register a new callback.
2879 * When that callback is invoked, we will know that all of the
2880 * corresponding CPU's preceding callbacks have been invoked.
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002881 */
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002882 for_each_possible_cpu(cpu) {
Paul E. McKenneyda1df502018-07-03 15:37:16 -07002883 rdp = per_cpu_ptr(&rcu_data, cpu);
Paul E. McKenneyce5215c2019-04-12 15:58:34 -07002884 if (!cpu_online(cpu) &&
2885 !rcu_segcblist_is_offloaded(&rdp->cblist))
2886 continue;
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07002887 if (rcu_segcblist_n_cbs(&rdp->cblist)) {
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002888 rcu_barrier_trace(TPS("OnlineQ"), cpu,
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002889 rcu_state.barrier_sequence);
2890 smp_call_function_single(cpu, rcu_barrier_func, NULL, 1);
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002891 } else {
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002892 rcu_barrier_trace(TPS("OnlineNQ"), cpu,
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002893 rcu_state.barrier_sequence);
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002894 }
2895 }
Paul E. McKenney1331e7a2012-08-02 17:43:50 -07002896 put_online_cpus();
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002897
2898 /*
2899 * Now that we have an rcu_barrier_callback() callback on each
2900 * CPU, and thus each counted, remove the initial count.
2901 */
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002902 if (atomic_dec_and_test(&rcu_state.barrier_cpu_count))
2903 complete(&rcu_state.barrier_completion);
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002904
2905 /* Wait for all rcu_barrier_callback() callbacks to be invoked. */
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002906 wait_for_completion(&rcu_state.barrier_completion);
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002907
Paul E. McKenney4f525a52015-06-26 11:20:00 -07002908 /* Mark the end of the barrier operation. */
Paul E. McKenneydd46a782018-07-10 18:37:30 -07002909 rcu_barrier_trace(TPS("Inc2"), -1, rcu_state.barrier_sequence);
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002910 rcu_seq_end(&rcu_state.barrier_sequence);
Paul E. McKenney4f525a52015-06-26 11:20:00 -07002911
Paul E. McKenneyb1420f12012-03-01 13:18:08 -08002912 /* Other rcu_barrier() invocations can now safely proceed. */
Paul E. McKenneyec9f5832018-07-05 16:26:12 -07002913 mutex_unlock(&rcu_state.barrier_mutex);
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002914}
Paul E. McKenney45975c72018-07-02 14:30:37 -07002915EXPORT_SYMBOL_GPL(rcu_barrier);
Paul E. McKenneyd0ec7742009-10-06 21:48:16 -07002916
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002917/*
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08002918 * Propagate ->qsinitmask bits up the rcu_node tree to account for the
2919 * first CPU in a given leaf rcu_node structure coming online. The caller
2920 * must hold the corresponding leaf rcu_node ->lock with interrrupts
2921 * disabled.
2922 */
2923static void rcu_init_new_rnp(struct rcu_node *rnp_leaf)
2924{
2925 long mask;
Paul E. McKenney8d672fa2018-05-02 14:46:43 -07002926 long oldmask;
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08002927 struct rcu_node *rnp = rnp_leaf;
2928
Paul E. McKenney8d672fa2018-05-02 14:46:43 -07002929 raw_lockdep_assert_held_rcu_node(rnp_leaf);
Paul E. McKenney962aff02018-05-02 12:49:21 -07002930 WARN_ON_ONCE(rnp->wait_blkd_tasks);
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08002931 for (;;) {
2932 mask = rnp->grpmask;
2933 rnp = rnp->parent;
2934 if (rnp == NULL)
2935 return;
Paul E. McKenney6cf10082015-10-08 15:36:54 -07002936 raw_spin_lock_rcu_node(rnp); /* Interrupts already disabled. */
Paul E. McKenney8d672fa2018-05-02 14:46:43 -07002937 oldmask = rnp->qsmaskinit;
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08002938 rnp->qsmaskinit |= mask;
Boqun Feng67c583a72015-12-29 12:18:47 +08002939 raw_spin_unlock_rcu_node(rnp); /* Interrupts remain disabled. */
Paul E. McKenney8d672fa2018-05-02 14:46:43 -07002940 if (oldmask)
2941 return;
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08002942 }
2943}
2944
2945/*
Paul E. McKenney27569622009-08-15 09:53:46 -07002946 * Do boot-time initialization of a CPU's per-CPU RCU data.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002947 */
Paul E. McKenney27569622009-08-15 09:53:46 -07002948static void __init
Paul E. McKenney53b46302018-07-03 17:22:34 -07002949rcu_boot_init_percpu_data(int cpu)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002950{
Paul E. McKenneyda1df502018-07-03 15:37:16 -07002951 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, cpu);
Paul E. McKenney27569622009-08-15 09:53:46 -07002952
2953 /* Set up local state, ensuring consistent view of global state. */
Mark Rutlandbc75e992016-06-03 15:20:04 +01002954 rdp->grpmask = leaf_node_cpu_bit(rdp->mynode, cpu);
Paul E. McKenney4c5273b2018-08-03 21:00:38 -07002955 WARN_ON_ONCE(rdp->dynticks_nesting != 1);
Paul E. McKenneydc5a4f22018-08-03 21:00:38 -07002956 WARN_ON_ONCE(rcu_dynticks_in_eqs(rcu_dynticks_snap(rdp)));
Paul E. McKenney53b46302018-07-03 17:22:34 -07002957 rdp->rcu_ofl_gp_seq = rcu_state.gp_seq;
Paul E. McKenney57738942018-05-08 14:18:57 -07002958 rdp->rcu_ofl_gp_flags = RCU_GP_CLEANED;
Paul E. McKenney53b46302018-07-03 17:22:34 -07002959 rdp->rcu_onl_gp_seq = rcu_state.gp_seq;
Paul E. McKenney57738942018-05-08 14:18:57 -07002960 rdp->rcu_onl_gp_flags = RCU_GP_CLEANED;
Paul E. McKenney27569622009-08-15 09:53:46 -07002961 rdp->cpu = cpu;
Paul E. McKenney3fbfbf72012-08-19 21:35:53 -07002962 rcu_boot_init_nocb_percpu_data(rdp);
Paul E. McKenney27569622009-08-15 09:53:46 -07002963}
2964
2965/*
Paul E. McKenney53b46302018-07-03 17:22:34 -07002966 * Invoked early in the CPU-online process, when pretty much all services
2967 * are available. The incoming CPU is not present.
2968 *
2969 * Initializes a CPU's per-CPU RCU data. Note that only one online or
Paul E. McKenneyff3bb6f2018-05-01 14:34:08 -07002970 * offline event can be happening at a given time. Note also that we can
2971 * accept some slop in the rsp->gp_seq access due to the fact that this
Paul E. McKenneye83e73f2019-05-14 09:50:49 -07002972 * CPU cannot possibly have any non-offloaded RCU callbacks in flight yet.
2973 * And any offloaded callbacks are being numbered elsewhere.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002974 */
Paul E. McKenney53b46302018-07-03 17:22:34 -07002975int rcutree_prepare_cpu(unsigned int cpu)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002976{
2977 unsigned long flags;
Paul E. McKenneyda1df502018-07-03 15:37:16 -07002978 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, cpu);
Paul E. McKenney336a4f62018-07-03 17:22:34 -07002979 struct rcu_node *rnp = rcu_get_root();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002980
2981 /* Set up local state, ensuring consistent view of global state. */
Paul E. McKenney6cf10082015-10-08 15:36:54 -07002982 raw_spin_lock_irqsave_rcu_node(rnp, flags);
Paul E. McKenney37c72e52009-10-14 10:15:55 -07002983 rdp->qlen_last_fqs_check = 0;
Paul E. McKenney53b46302018-07-03 17:22:34 -07002984 rdp->n_force_qs_snap = rcu_state.n_force_qs;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002985 rdp->blimit = blimit;
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002986 if (rcu_segcblist_empty(&rdp->cblist) && /* No early-boot CBs? */
Paul E. McKenneye83e73f2019-05-14 09:50:49 -07002987 !rcu_segcblist_is_offloaded(&rdp->cblist))
Paul E. McKenney15fecf82017-02-08 12:36:42 -08002988 rcu_segcblist_init(&rdp->cblist); /* Re-enable callbacks. */
Paul E. McKenney4c5273b2018-08-03 21:00:38 -07002989 rdp->dynticks_nesting = 1; /* CPU not up, no tearing. */
Paul E. McKenney2625d462016-11-02 14:23:30 -07002990 rcu_dynticks_eqs_online();
Boqun Feng67c583a72015-12-29 12:18:47 +08002991 raw_spin_unlock_rcu_node(rnp); /* irqs remain disabled. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002992
Paul E. McKenney0aa04b02015-01-23 21:52:37 -08002993 /*
2994 * Add CPU to leaf rcu_node pending-online bitmask. Any needed
2995 * propagation up the rcu_node tree will happen at the beginning
2996 * of the next grace period.
2997 */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01002998 rnp = rdp->mynode;
Peter Zijlstra2a67e742015-10-08 12:24:23 +02002999 raw_spin_lock_rcu_node(rnp); /* irqs already disabled. */
Paul E. McKenneyb9585e92015-07-31 16:04:45 -07003000 rdp->beenonline = true; /* We have now been online. */
Paul E. McKenneyde30ad52018-04-26 11:52:09 -07003001 rdp->gp_seq = rnp->gp_seq;
Paul E. McKenney7a1d0f22018-05-01 10:26:57 -07003002 rdp->gp_seq_needed = rnp->gp_seq;
Paul E. McKenney5b74c452015-08-06 15:16:57 -07003003 rdp->cpu_no_qs.b.norm = true;
Paul E. McKenney97c668b2015-08-06 11:31:51 -07003004 rdp->core_needs_qs = false;
Paul E. McKenney9b9500d2017-08-17 17:05:59 -07003005 rdp->rcu_iw_pending = false;
Paul E. McKenney8aa670c2018-04-28 14:15:40 -07003006 rdp->rcu_iw_gp_seq = rnp->gp_seq - 1;
Paul E. McKenney53b46302018-07-03 17:22:34 -07003007 trace_rcu_grace_period(rcu_state.name, rdp->gp_seq, TPS("cpuonl"));
Boqun Feng67c583a72015-12-29 12:18:47 +08003008 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Thomas Gleixner4df83742016-07-13 17:17:03 +00003009 rcu_prepare_kthreads(cpu);
Paul E. McKenneyad368d12018-11-27 13:55:53 -08003010 rcu_spawn_cpu_nocb_kthread(cpu);
Thomas Gleixner4df83742016-07-13 17:17:03 +00003011
3012 return 0;
3013}
3014
Paul E. McKenneydeb34f32017-03-23 13:21:30 -07003015/*
3016 * Update RCU priority boot kthread affinity for CPU-hotplug changes.
3017 */
Thomas Gleixner4df83742016-07-13 17:17:03 +00003018static void rcutree_affinity_setting(unsigned int cpu, int outgoing)
3019{
Paul E. McKenneyda1df502018-07-03 15:37:16 -07003020 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, cpu);
Thomas Gleixner4df83742016-07-13 17:17:03 +00003021
3022 rcu_boost_kthread_setaffinity(rdp->mynode, outgoing);
3023}
3024
Paul E. McKenneydeb34f32017-03-23 13:21:30 -07003025/*
3026 * Near the end of the CPU-online process. Pretty much all services
3027 * enabled, and the CPU is now very much alive.
3028 */
Thomas Gleixner4df83742016-07-13 17:17:03 +00003029int rcutree_online_cpu(unsigned int cpu)
3030{
Paul E. McKenney9b9500d2017-08-17 17:05:59 -07003031 unsigned long flags;
3032 struct rcu_data *rdp;
3033 struct rcu_node *rnp;
Paul E. McKenney9b9500d2017-08-17 17:05:59 -07003034
Paul E. McKenneyb97d23c2018-07-04 15:35:00 -07003035 rdp = per_cpu_ptr(&rcu_data, cpu);
3036 rnp = rdp->mynode;
3037 raw_spin_lock_irqsave_rcu_node(rnp, flags);
3038 rnp->ffmask |= rdp->grpmask;
3039 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Paul E. McKenney9b9500d2017-08-17 17:05:59 -07003040 if (rcu_scheduler_active == RCU_SCHEDULER_INACTIVE)
3041 return 0; /* Too early in boot for scheduler work. */
3042 sync_sched_exp_online_cleanup(cpu);
3043 rcutree_affinity_setting(cpu, -1);
Thomas Gleixner4df83742016-07-13 17:17:03 +00003044 return 0;
3045}
3046
Paul E. McKenneydeb34f32017-03-23 13:21:30 -07003047/*
3048 * Near the beginning of the process. The CPU is still very much alive
3049 * with pretty much all services enabled.
3050 */
Thomas Gleixner4df83742016-07-13 17:17:03 +00003051int rcutree_offline_cpu(unsigned int cpu)
3052{
Paul E. McKenney9b9500d2017-08-17 17:05:59 -07003053 unsigned long flags;
3054 struct rcu_data *rdp;
3055 struct rcu_node *rnp;
Paul E. McKenney9b9500d2017-08-17 17:05:59 -07003056
Paul E. McKenneyb97d23c2018-07-04 15:35:00 -07003057 rdp = per_cpu_ptr(&rcu_data, cpu);
3058 rnp = rdp->mynode;
3059 raw_spin_lock_irqsave_rcu_node(rnp, flags);
3060 rnp->ffmask &= ~rdp->grpmask;
3061 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Paul E. McKenney9b9500d2017-08-17 17:05:59 -07003062
Thomas Gleixner4df83742016-07-13 17:17:03 +00003063 rcutree_affinity_setting(cpu, cpu);
3064 return 0;
3065}
3066
Peter Zijlstraf64c6012018-05-22 09:50:53 -07003067static DEFINE_PER_CPU(int, rcu_cpu_started);
3068
Paul E. McKenney7ec99de2016-06-30 13:58:26 -07003069/*
3070 * Mark the specified CPU as being online so that subsequent grace periods
3071 * (both expedited and normal) will wait on it. Note that this means that
3072 * incoming CPUs are not allowed to use RCU read-side critical sections
3073 * until this function is called. Failing to observe this restriction
3074 * will result in lockdep splats.
Paul E. McKenneydeb34f32017-03-23 13:21:30 -07003075 *
3076 * Note that this function is special in that it is invoked directly
3077 * from the incoming CPU rather than from the cpuhp_step mechanism.
3078 * This is because this function must be invoked at a precise location.
Paul E. McKenney7ec99de2016-06-30 13:58:26 -07003079 */
3080void rcu_cpu_starting(unsigned int cpu)
3081{
3082 unsigned long flags;
3083 unsigned long mask;
Paul E. McKenney313517fc2017-06-08 16:55:40 -07003084 int nbits;
3085 unsigned long oldmask;
Paul E. McKenney7ec99de2016-06-30 13:58:26 -07003086 struct rcu_data *rdp;
3087 struct rcu_node *rnp;
Paul E. McKenney7ec99de2016-06-30 13:58:26 -07003088
Peter Zijlstraf64c6012018-05-22 09:50:53 -07003089 if (per_cpu(rcu_cpu_started, cpu))
3090 return;
3091
3092 per_cpu(rcu_cpu_started, cpu) = 1;
3093
Paul E. McKenneyb97d23c2018-07-04 15:35:00 -07003094 rdp = per_cpu_ptr(&rcu_data, cpu);
3095 rnp = rdp->mynode;
3096 mask = rdp->grpmask;
3097 raw_spin_lock_irqsave_rcu_node(rnp, flags);
3098 rnp->qsmaskinitnext |= mask;
3099 oldmask = rnp->expmaskinitnext;
3100 rnp->expmaskinitnext |= mask;
3101 oldmask ^= rnp->expmaskinitnext;
3102 nbits = bitmap_weight(&oldmask, BITS_PER_LONG);
3103 /* Allow lockless access for expedited grace periods. */
Paul E. McKenneyeb7a6652018-07-05 17:47:45 -07003104 smp_store_release(&rcu_state.ncpus, rcu_state.ncpus + nbits); /* ^^^ */
Paul E. McKenneyb97d23c2018-07-04 15:35:00 -07003105 rcu_gpnum_ovf(rnp, rdp); /* Offline-induced counter wrap? */
Paul E. McKenneyeb7a6652018-07-05 17:47:45 -07003106 rdp->rcu_onl_gp_seq = READ_ONCE(rcu_state.gp_seq);
3107 rdp->rcu_onl_gp_flags = READ_ONCE(rcu_state.gp_flags);
Paul E. McKenneyb97d23c2018-07-04 15:35:00 -07003108 if (rnp->qsmask & mask) { /* RCU waiting on incoming CPU? */
3109 /* Report QS -after- changing ->qsmaskinitnext! */
3110 rcu_report_qs_rnp(mask, rnp, rnp->gp_seq, flags);
3111 } else {
3112 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Paul E. McKenney7ec99de2016-06-30 13:58:26 -07003113 }
Paul E. McKenney313517fc2017-06-08 16:55:40 -07003114 smp_mb(); /* Ensure RCU read-side usage follows above initialization. */
Paul E. McKenney7ec99de2016-06-30 13:58:26 -07003115}
3116
Thomas Gleixner27d50c72016-02-26 18:43:44 +00003117#ifdef CONFIG_HOTPLUG_CPU
3118/*
Paul E. McKenneydeb34f32017-03-23 13:21:30 -07003119 * The outgoing function has no further need of RCU, so remove it from
Paul E. McKenney53b46302018-07-03 17:22:34 -07003120 * the rcu_node tree's ->qsmaskinitnext bit masks.
Paul E. McKenneydeb34f32017-03-23 13:21:30 -07003121 *
3122 * Note that this function is special in that it is invoked directly
3123 * from the outgoing CPU rather than from the cpuhp_step mechanism.
3124 * This is because this function must be invoked at a precise location.
3125 */
Thomas Gleixner27d50c72016-02-26 18:43:44 +00003126void rcu_report_dead(unsigned int cpu)
3127{
Paul E. McKenney53b46302018-07-03 17:22:34 -07003128 unsigned long flags;
3129 unsigned long mask;
3130 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, cpu);
3131 struct rcu_node *rnp = rdp->mynode; /* Outgoing CPU's rdp & rnp. */
Thomas Gleixner27d50c72016-02-26 18:43:44 +00003132
Paul E. McKenney49918a52018-07-07 18:12:26 -07003133 /* QS for any half-done expedited grace period. */
Thomas Gleixner27d50c72016-02-26 18:43:44 +00003134 preempt_disable();
Paul E. McKenney63d4c8c2018-07-03 17:22:34 -07003135 rcu_report_exp_rdp(this_cpu_ptr(&rcu_data));
Thomas Gleixner27d50c72016-02-26 18:43:44 +00003136 preempt_enable();
Paul E. McKenney3e310092018-06-21 12:50:01 -07003137 rcu_preempt_deferred_qs(current);
Paul E. McKenney53b46302018-07-03 17:22:34 -07003138
3139 /* Remove outgoing CPU from mask in the leaf rcu_node structure. */
3140 mask = rdp->grpmask;
Mike Galbraith894d45b2018-08-15 09:05:29 -07003141 raw_spin_lock(&rcu_state.ofl_lock);
Paul E. McKenney53b46302018-07-03 17:22:34 -07003142 raw_spin_lock_irqsave_rcu_node(rnp, flags); /* Enforce GP memory-order guarantee. */
3143 rdp->rcu_ofl_gp_seq = READ_ONCE(rcu_state.gp_seq);
3144 rdp->rcu_ofl_gp_flags = READ_ONCE(rcu_state.gp_flags);
3145 if (rnp->qsmask & mask) { /* RCU waiting on outgoing CPU? */
3146 /* Report quiescent state -before- changing ->qsmaskinitnext! */
3147 rcu_report_qs_rnp(mask, rnp, rnp->gp_seq, flags);
3148 raw_spin_lock_irqsave_rcu_node(rnp, flags);
3149 }
3150 rnp->qsmaskinitnext &= ~mask;
3151 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
Mike Galbraith894d45b2018-08-15 09:05:29 -07003152 raw_spin_unlock(&rcu_state.ofl_lock);
Peter Zijlstraf64c6012018-05-22 09:50:53 -07003153
3154 per_cpu(rcu_cpu_started, cpu) = 0;
Thomas Gleixner27d50c72016-02-26 18:43:44 +00003155}
Paul E. McKenneya58163d2017-06-20 12:11:34 -07003156
Paul E. McKenney53b46302018-07-03 17:22:34 -07003157/*
3158 * The outgoing CPU has just passed through the dying-idle state, and we
3159 * are being invoked from the CPU that was IPIed to continue the offline
3160 * operation. Migrate the outgoing CPU's callbacks to the current CPU.
3161 */
3162void rcutree_migrate_callbacks(int cpu)
Paul E. McKenneya58163d2017-06-20 12:11:34 -07003163{
3164 unsigned long flags;
Paul E. McKenneyb1a2d792017-06-26 12:23:46 -07003165 struct rcu_data *my_rdp;
Paul E. McKenneyc00045be2019-04-16 14:09:15 -07003166 struct rcu_node *my_rnp;
Paul E. McKenneyda1df502018-07-03 15:37:16 -07003167 struct rcu_data *rdp = per_cpu_ptr(&rcu_data, cpu);
Paul E. McKenneyec4eacc2018-04-22 08:49:24 -07003168 bool needwake;
Paul E. McKenneya58163d2017-06-20 12:11:34 -07003169
Paul E. McKenneyce5215c2019-04-12 15:58:34 -07003170 if (rcu_segcblist_is_offloaded(&rdp->cblist) ||
3171 rcu_segcblist_empty(&rdp->cblist))
Paul E. McKenney95335c02017-06-26 10:49:50 -07003172 return; /* No callbacks to migrate. */
3173
Paul E. McKenneyb1a2d792017-06-26 12:23:46 -07003174 local_irq_save(flags);
Paul E. McKenneyda1df502018-07-03 15:37:16 -07003175 my_rdp = this_cpu_ptr(&rcu_data);
Paul E. McKenneyc00045be2019-04-16 14:09:15 -07003176 my_rnp = my_rdp->mynode;
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07003177 rcu_nocb_lock(my_rdp); /* irqs already disabled. */
Paul E. McKenneyc00045be2019-04-16 14:09:15 -07003178 raw_spin_lock_rcu_node(my_rnp); /* irqs already disabled. */
Paul E. McKenneyec4eacc2018-04-22 08:49:24 -07003179 /* Leverage recent GPs and set GP for new callbacks. */
Paul E. McKenneyc00045be2019-04-16 14:09:15 -07003180 needwake = rcu_advance_cbs(my_rnp, rdp) ||
3181 rcu_advance_cbs(my_rnp, my_rdp);
Paul E. McKenneyf2dbe4a2017-06-27 07:44:06 -07003182 rcu_segcblist_merge(&my_rdp->cblist, &rdp->cblist);
Paul E. McKenneyc0352802019-05-21 08:28:41 -07003183 rcu_segcblist_disable(&rdp->cblist);
Paul E. McKenney09efeee2017-07-19 10:56:46 -07003184 WARN_ON_ONCE(rcu_segcblist_empty(&my_rdp->cblist) !=
3185 !rcu_segcblist_n_cbs(&my_rdp->cblist));
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07003186 if (rcu_segcblist_is_offloaded(&my_rdp->cblist)) {
3187 raw_spin_unlock_rcu_node(my_rnp); /* irqs remain disabled. */
3188 __call_rcu_nocb_wake(my_rdp, true, flags);
3189 } else {
3190 rcu_nocb_unlock(my_rdp); /* irqs remain disabled. */
3191 raw_spin_unlock_irqrestore_rcu_node(my_rnp, flags);
3192 }
Paul E. McKenneyec4eacc2018-04-22 08:49:24 -07003193 if (needwake)
Paul E. McKenney532c00c2018-07-03 17:22:34 -07003194 rcu_gp_kthread_wake();
Paul E. McKenney5d6742b2019-05-15 09:56:40 -07003195 lockdep_assert_irqs_enabled();
Paul E. McKenneya58163d2017-06-20 12:11:34 -07003196 WARN_ONCE(rcu_segcblist_n_cbs(&rdp->cblist) != 0 ||
3197 !rcu_segcblist_empty(&rdp->cblist),
3198 "rcu_cleanup_dead_cpu: Callbacks on offline CPU %d: qlen=%lu, 1stCB=%p\n",
3199 cpu, rcu_segcblist_n_cbs(&rdp->cblist),
3200 rcu_segcblist_first_cb(&rdp->cblist));
3201}
Thomas Gleixner27d50c72016-02-26 18:43:44 +00003202#endif
3203
Paul E. McKenneydeb34f32017-03-23 13:21:30 -07003204/*
3205 * On non-huge systems, use expedited RCU grace periods to make suspend
3206 * and hibernation run faster.
3207 */
Borislav Petkovd1d74d12013-04-22 00:12:42 +02003208static int rcu_pm_notify(struct notifier_block *self,
3209 unsigned long action, void *hcpu)
3210{
3211 switch (action) {
3212 case PM_HIBERNATION_PREPARE:
3213 case PM_SUSPEND_PREPARE:
Paul E. McKenneye85e6a22019-01-10 15:30:15 -08003214 rcu_expedite_gp();
Borislav Petkovd1d74d12013-04-22 00:12:42 +02003215 break;
3216 case PM_POST_HIBERNATION:
3217 case PM_POST_SUSPEND:
Paul E. McKenneye85e6a22019-01-10 15:30:15 -08003218 rcu_unexpedite_gp();
Borislav Petkovd1d74d12013-04-22 00:12:42 +02003219 break;
3220 default:
3221 break;
3222 }
3223 return NOTIFY_OK;
3224}
3225
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01003226/*
Paul E. McKenney49918a52018-07-07 18:12:26 -07003227 * Spawn the kthreads that handle RCU's grace periods.
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07003228 */
3229static int __init rcu_spawn_gp_kthread(void)
3230{
3231 unsigned long flags;
Paul E. McKenneya94844b2014-12-12 07:37:48 -08003232 int kthread_prio_in = kthread_prio;
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07003233 struct rcu_node *rnp;
Paul E. McKenneya94844b2014-12-12 07:37:48 -08003234 struct sched_param sp;
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07003235 struct task_struct *t;
3236
Paul E. McKenneya94844b2014-12-12 07:37:48 -08003237 /* Force priority into range. */
Joel Fernandes (Google)c7cd1612018-06-19 15:14:17 -07003238 if (IS_ENABLED(CONFIG_RCU_BOOST) && kthread_prio < 2
3239 && IS_BUILTIN(CONFIG_RCU_TORTURE_TEST))
3240 kthread_prio = 2;
3241 else if (IS_ENABLED(CONFIG_RCU_BOOST) && kthread_prio < 1)
Paul E. McKenneya94844b2014-12-12 07:37:48 -08003242 kthread_prio = 1;
3243 else if (kthread_prio < 0)
3244 kthread_prio = 0;
3245 else if (kthread_prio > 99)
3246 kthread_prio = 99;
Joel Fernandes (Google)c7cd1612018-06-19 15:14:17 -07003247
Paul E. McKenneya94844b2014-12-12 07:37:48 -08003248 if (kthread_prio != kthread_prio_in)
3249 pr_alert("rcu_spawn_gp_kthread(): Limited prio to %d from %d\n",
3250 kthread_prio, kthread_prio_in);
3251
Paul E. McKenney9386c0b2014-07-13 12:00:53 -07003252 rcu_scheduler_fully_active = 1;
Paul E. McKenneyb97d23c2018-07-04 15:35:00 -07003253 t = kthread_create(rcu_gp_kthread, NULL, "%s", rcu_state.name);
Paul E. McKenney08543bd2018-10-22 08:04:03 -07003254 if (WARN_ONCE(IS_ERR(t), "%s: Could not start grace-period kthread, OOM is now expected behavior\n", __func__))
3255 return 0;
Paul E. McKenneyb97d23c2018-07-04 15:35:00 -07003256 rnp = rcu_get_root();
3257 raw_spin_lock_irqsave_rcu_node(rnp, flags);
3258 rcu_state.gp_kthread = t;
3259 if (kthread_prio) {
3260 sp.sched_priority = kthread_prio;
3261 sched_setscheduler_nocheck(t, SCHED_FIFO, &sp);
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07003262 }
Paul E. McKenneyb97d23c2018-07-04 15:35:00 -07003263 raw_spin_unlock_irqrestore_rcu_node(rnp, flags);
3264 wake_up_process(t);
Paul E. McKenney35ce7f22014-07-11 11:30:24 -07003265 rcu_spawn_nocb_kthreads();
Paul E. McKenney9386c0b2014-07-13 12:00:53 -07003266 rcu_spawn_boost_kthreads();
Paul E. McKenneyb3dbec72012-06-18 18:36:08 -07003267 return 0;
3268}
3269early_initcall(rcu_spawn_gp_kthread);
3270
3271/*
Paul E. McKenney52d7e482017-01-10 02:28:26 -08003272 * This function is invoked towards the end of the scheduler's
3273 * initialization process. Before this is called, the idle task might
3274 * contain synchronous grace-period primitives (during which time, this idle
3275 * task is booting the system, and such primitives are no-ops). After this
3276 * function is called, any synchronous grace-period primitives are run as
3277 * expedited, with the requesting task driving the grace period forward.
Paul E. McKenney900b1022017-02-10 14:32:54 -08003278 * A later core_initcall() rcu_set_runtime_mode() will switch to full
Paul E. McKenney52d7e482017-01-10 02:28:26 -08003279 * runtime RCU functionality.
Paul E. McKenneybbad9372010-04-02 16:17:17 -07003280 */
3281void rcu_scheduler_starting(void)
3282{
3283 WARN_ON(num_online_cpus() != 1);
3284 WARN_ON(nr_context_switches() > 0);
Paul E. McKenney52d7e482017-01-10 02:28:26 -08003285 rcu_test_sync_prims();
3286 rcu_scheduler_active = RCU_SCHEDULER_INIT;
3287 rcu_test_sync_prims();
Paul E. McKenneybbad9372010-04-02 16:17:17 -07003288}
3289
3290/*
Paul E. McKenney49918a52018-07-07 18:12:26 -07003291 * Helper function for rcu_init() that initializes the rcu_state structure.
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01003292 */
Paul E. McKenneyb8bb1f62018-07-03 17:22:34 -07003293static void __init rcu_init_one(void)
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01003294{
Alexander Gordeevcb007102015-06-03 08:18:30 +02003295 static const char * const buf[] = RCU_NODE_NAME_INIT;
3296 static const char * const fqs[] = RCU_FQS_NAME_INIT;
Paul E. McKenney3dc5dbe2015-09-26 14:51:24 -07003297 static struct lock_class_key rcu_node_class[RCU_NUM_LVLS];
3298 static struct lock_class_key rcu_fqs_class[RCU_NUM_LVLS];
Alexander Gordeev199977b2015-06-03 08:18:29 +02003299
Alexander Gordeev199977b2015-06-03 08:18:29 +02003300 int levelspread[RCU_NUM_LVLS]; /* kids/node in each level. */
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01003301 int cpustride = 1;
3302 int i;
3303 int j;
3304 struct rcu_node *rnp;
3305
Alexander Gordeev05b84ae2015-06-03 08:18:28 +02003306 BUILD_BUG_ON(RCU_NUM_LVLS > ARRAY_SIZE(buf)); /* Fix buf[] init! */
Paul E. McKenneyb6407e82010-01-04 16:04:02 -08003307
Paul E. McKenney3eaaaf6c2015-03-09 16:51:17 -07003308 /* Silence gcc 4.8 false positive about array index out of range. */
3309 if (rcu_num_lvls <= 0 || rcu_num_lvls > RCU_NUM_LVLS)
3310 panic("rcu_init_one: rcu_num_lvls out of range");
Paul E. McKenney49305212012-11-29 13:49:00 -08003311
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01003312 /* Initialize the level-tracking arrays. */
3313
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003314 for (i = 1; i < rcu_num_lvls; i++)
Paul E. McKenneyeb7a6652018-07-05 17:47:45 -07003315 rcu_state.level[i] =
3316 rcu_state.level[i - 1] + num_rcu_lvl[i - 1];
Paul E. McKenney41f5c632017-03-15 12:59:17 -07003317 rcu_init_levelspread(levelspread, num_rcu_lvl);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01003318
3319 /* Initialize the elements themselves, starting from the leaves. */
3320
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003321 for (i = rcu_num_lvls - 1; i >= 0; i--) {
Alexander Gordeev199977b2015-06-03 08:18:29 +02003322 cpustride *= levelspread[i];
Paul E. McKenneyeb7a6652018-07-05 17:47:45 -07003323 rnp = rcu_state.level[i];
Paul E. McKenney41f5c632017-03-15 12:59:17 -07003324 for (j = 0; j < num_rcu_lvl[i]; j++, rnp++) {
Boqun Feng67c583a72015-12-29 12:18:47 +08003325 raw_spin_lock_init(&ACCESS_PRIVATE(rnp, lock));
3326 lockdep_set_class_and_name(&ACCESS_PRIVATE(rnp, lock),
Paul E. McKenneyb6407e82010-01-04 16:04:02 -08003327 &rcu_node_class[i], buf[i]);
Paul E. McKenney394f2762012-06-26 17:00:35 -07003328 raw_spin_lock_init(&rnp->fqslock);
3329 lockdep_set_class_and_name(&rnp->fqslock,
3330 &rcu_fqs_class[i], fqs[i]);
Paul E. McKenneyeb7a6652018-07-05 17:47:45 -07003331 rnp->gp_seq = rcu_state.gp_seq;
3332 rnp->gp_seq_needed = rcu_state.gp_seq;
3333 rnp->completedqs = rcu_state.gp_seq;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01003334 rnp->qsmask = 0;
3335 rnp->qsmaskinit = 0;
3336 rnp->grplo = j * cpustride;
3337 rnp->grphi = (j + 1) * cpustride - 1;
Himangi Saraogi595f3902014-03-18 22:52:26 +05303338 if (rnp->grphi >= nr_cpu_ids)
3339 rnp->grphi = nr_cpu_ids - 1;
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01003340 if (i == 0) {
3341 rnp->grpnum = 0;
3342 rnp->grpmask = 0;
3343 rnp->parent = NULL;
3344 } else {
Alexander Gordeev199977b2015-06-03 08:18:29 +02003345 rnp->grpnum = j % levelspread[i - 1];
Paul E. McKenneydf63fa5b2018-07-31 09:49:20 -07003346 rnp->grpmask = BIT(rnp->grpnum);
Paul E. McKenneyeb7a6652018-07-05 17:47:45 -07003347 rnp->parent = rcu_state.level[i - 1] +
Alexander Gordeev199977b2015-06-03 08:18:29 +02003348 j / levelspread[i - 1];
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01003349 }
3350 rnp->level = i;
Paul E. McKenney12f5f522010-11-29 21:56:39 -08003351 INIT_LIST_HEAD(&rnp->blkd_tasks);
Paul E. McKenneydae6e642013-02-10 20:48:58 -08003352 rcu_init_one_nocb(rnp);
Paul E. McKenneyf6a12f32016-01-30 17:57:35 -08003353 init_waitqueue_head(&rnp->exp_wq[0]);
3354 init_waitqueue_head(&rnp->exp_wq[1]);
Paul E. McKenney3b5f6682016-03-16 16:47:55 -07003355 init_waitqueue_head(&rnp->exp_wq[2]);
3356 init_waitqueue_head(&rnp->exp_wq[3]);
Paul E. McKenneyf6a12f32016-01-30 17:57:35 -08003357 spin_lock_init(&rnp->exp_lock);
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01003358 }
3359 }
Lai Jiangshan0c340292010-03-28 11:12:30 +08003360
Paul E. McKenneyeb7a6652018-07-05 17:47:45 -07003361 init_swait_queue_head(&rcu_state.gp_wq);
3362 init_swait_queue_head(&rcu_state.expedited_wq);
Paul E. McKenneyaedf4ba2018-07-04 14:33:59 -07003363 rnp = rcu_first_leaf_node();
Lai Jiangshan0c340292010-03-28 11:12:30 +08003364 for_each_possible_cpu(i) {
Paul E. McKenney4a90a062010-04-14 16:48:11 -07003365 while (i > rnp->grphi)
Lai Jiangshan0c340292010-03-28 11:12:30 +08003366 rnp++;
Paul E. McKenneyda1df502018-07-03 15:37:16 -07003367 per_cpu_ptr(&rcu_data, i)->mynode = rnp;
Paul E. McKenney53b46302018-07-03 17:22:34 -07003368 rcu_boot_init_percpu_data(i);
Lai Jiangshan0c340292010-03-28 11:12:30 +08003369 }
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01003370}
3371
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003372/*
3373 * Compute the rcu_node tree geometry from kernel parameters. This cannot
Paul E. McKenney4102ada2013-10-08 20:23:47 -07003374 * replace the definitions in tree.h because those are needed to size
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003375 * the ->node array in the rcu_state structure.
3376 */
3377static void __init rcu_init_geometry(void)
3378{
Paul E. McKenney026ad282013-04-03 22:14:11 -07003379 ulong d;
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003380 int i;
Alexander Gordeev05b84ae2015-06-03 08:18:28 +02003381 int rcu_capacity[RCU_NUM_LVLS];
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003382
Paul E. McKenney026ad282013-04-03 22:14:11 -07003383 /*
3384 * Initialize any unspecified boot parameters.
3385 * The default values of jiffies_till_first_fqs and
3386 * jiffies_till_next_fqs are set to the RCU_JIFFIES_TILL_FORCE_QS
3387 * value, which is a function of HZ, then adding one for each
3388 * RCU_JIFFIES_FQS_DIV CPUs that might be on the system.
3389 */
3390 d = RCU_JIFFIES_TILL_FORCE_QS + nr_cpu_ids / RCU_JIFFIES_FQS_DIV;
3391 if (jiffies_till_first_fqs == ULONG_MAX)
3392 jiffies_till_first_fqs = d;
3393 if (jiffies_till_next_fqs == ULONG_MAX)
3394 jiffies_till_next_fqs = d;
Neeraj Upadhyay69730322019-03-11 15:16:11 +05303395 adjust_jiffies_till_sched_qs();
Paul E. McKenney026ad282013-04-03 22:14:11 -07003396
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003397 /* If the compile-time values are accurate, just leave. */
Paul E. McKenney47d631a2015-04-21 09:12:13 -07003398 if (rcu_fanout_leaf == RCU_FANOUT_LEAF &&
Paul E. McKenneyb17c7032012-09-06 15:38:02 -07003399 nr_cpu_ids == NR_CPUS)
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003400 return;
Joe Perchesa7538352018-05-14 13:27:33 -07003401 pr_info("Adjusting geometry for rcu_fanout_leaf=%d, nr_cpu_ids=%u\n",
Paul E. McKenney39479092013-10-09 15:20:33 -07003402 rcu_fanout_leaf, nr_cpu_ids);
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003403
3404 /*
Paul E. McKenneyee968ac2015-07-31 08:28:35 -07003405 * The boot-time rcu_fanout_leaf parameter must be at least two
3406 * and cannot exceed the number of bits in the rcu_node masks.
3407 * Complain and fall back to the compile-time values if this
3408 * limit is exceeded.
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003409 */
Paul E. McKenneyee968ac2015-07-31 08:28:35 -07003410 if (rcu_fanout_leaf < 2 ||
Alexander Gordeev75cf15a2015-06-03 08:18:23 +02003411 rcu_fanout_leaf > sizeof(unsigned long) * 8) {
Paul E. McKenney13bd64942015-06-04 10:06:01 -07003412 rcu_fanout_leaf = RCU_FANOUT_LEAF;
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003413 WARN_ON(1);
3414 return;
3415 }
3416
Alexander Gordeev75cf15a2015-06-03 08:18:23 +02003417 /*
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003418 * Compute number of nodes that can be handled an rcu_node tree
Alexander Gordeev96181382015-06-03 08:18:26 +02003419 * with the given number of levels.
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003420 */
Alexander Gordeev96181382015-06-03 08:18:26 +02003421 rcu_capacity[0] = rcu_fanout_leaf;
Alexander Gordeev05b84ae2015-06-03 08:18:28 +02003422 for (i = 1; i < RCU_NUM_LVLS; i++)
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003423 rcu_capacity[i] = rcu_capacity[i - 1] * RCU_FANOUT;
3424
3425 /*
Alexander Gordeev75cf15a2015-06-03 08:18:23 +02003426 * The tree must be able to accommodate the configured number of CPUs.
Paul E. McKenneyee968ac2015-07-31 08:28:35 -07003427 * If this limit is exceeded, fall back to the compile-time values.
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003428 */
Paul E. McKenneyee968ac2015-07-31 08:28:35 -07003429 if (nr_cpu_ids > rcu_capacity[RCU_NUM_LVLS - 1]) {
3430 rcu_fanout_leaf = RCU_FANOUT_LEAF;
3431 WARN_ON(1);
3432 return;
3433 }
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003434
Alexander Gordeev679f9852015-06-03 08:18:25 +02003435 /* Calculate the number of levels in the tree. */
Alexander Gordeev96181382015-06-03 08:18:26 +02003436 for (i = 0; nr_cpu_ids > rcu_capacity[i]; i++) {
Alexander Gordeev679f9852015-06-03 08:18:25 +02003437 }
Alexander Gordeev96181382015-06-03 08:18:26 +02003438 rcu_num_lvls = i + 1;
Alexander Gordeev679f9852015-06-03 08:18:25 +02003439
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003440 /* Calculate the number of rcu_nodes at each level of the tree. */
Alexander Gordeev679f9852015-06-03 08:18:25 +02003441 for (i = 0; i < rcu_num_lvls; i++) {
Alexander Gordeev96181382015-06-03 08:18:26 +02003442 int cap = rcu_capacity[(rcu_num_lvls - 1) - i];
Alexander Gordeev679f9852015-06-03 08:18:25 +02003443 num_rcu_lvl[i] = DIV_ROUND_UP(nr_cpu_ids, cap);
3444 }
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003445
3446 /* Calculate the total number of rcu_node structures. */
3447 rcu_num_nodes = 0;
Alexander Gordeev679f9852015-06-03 08:18:25 +02003448 for (i = 0; i < rcu_num_lvls; i++)
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003449 rcu_num_nodes += num_rcu_lvl[i];
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003450}
3451
Paul E. McKenneya3dc2942015-04-20 11:40:50 -07003452/*
3453 * Dump out the structure of the rcu_node combining tree associated
Paul E. McKenney49918a52018-07-07 18:12:26 -07003454 * with the rcu_state structure.
Paul E. McKenneya3dc2942015-04-20 11:40:50 -07003455 */
Paul E. McKenneyb8bb1f62018-07-03 17:22:34 -07003456static void __init rcu_dump_rcu_node_tree(void)
Paul E. McKenneya3dc2942015-04-20 11:40:50 -07003457{
3458 int level = 0;
3459 struct rcu_node *rnp;
3460
3461 pr_info("rcu_node tree layout dump\n");
3462 pr_info(" ");
Paul E. McKenneyaedf4ba2018-07-04 14:33:59 -07003463 rcu_for_each_node_breadth_first(rnp) {
Paul E. McKenneya3dc2942015-04-20 11:40:50 -07003464 if (rnp->level != level) {
3465 pr_cont("\n");
3466 pr_info(" ");
3467 level = rnp->level;
3468 }
3469 pr_cont("%d:%d ^%d ", rnp->grplo, rnp->grphi, rnp->grpnum);
3470 }
3471 pr_cont("\n");
3472}
3473
Paul E. McKenneyad7c9462018-01-08 14:35:52 -08003474struct workqueue_struct *rcu_gp_wq;
Paul E. McKenney25f3d7e2018-02-01 22:05:38 -08003475struct workqueue_struct *rcu_par_gp_wq;
Paul E. McKenneyad7c9462018-01-08 14:35:52 -08003476
Paul E. McKenney9f680ab2009-11-22 08:53:49 -08003477void __init rcu_init(void)
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07003478{
Paul E. McKenney017c4262010-01-14 16:10:58 -08003479 int cpu;
Paul E. McKenney9f680ab2009-11-22 08:53:49 -08003480
Paul E. McKenney47627672015-01-19 21:10:21 -08003481 rcu_early_boot_tests();
3482
Paul E. McKenneyf41d9112009-08-22 13:56:52 -07003483 rcu_bootup_announce();
Paul E. McKenneyf885b7f2012-04-23 15:52:53 -07003484 rcu_init_geometry();
Paul E. McKenneyb8bb1f62018-07-03 17:22:34 -07003485 rcu_init_one();
Paul E. McKenneya3dc2942015-04-20 11:40:50 -07003486 if (dump_tree)
Paul E. McKenneyb8bb1f62018-07-03 17:22:34 -07003487 rcu_dump_rcu_node_tree();
Sebastian Andrzej Siewior48d07c02019-03-20 22:13:33 +01003488 if (use_softirq)
3489 open_softirq(RCU_SOFTIRQ, rcu_core_si);
Paul E. McKenney9f680ab2009-11-22 08:53:49 -08003490
3491 /*
3492 * We don't need protection against CPU-hotplug here because
3493 * this is called early in boot, before either interrupts
3494 * or the scheduler are operational.
3495 */
Borislav Petkovd1d74d12013-04-22 00:12:42 +02003496 pm_notifier(rcu_pm_notify, 0);
Paul E. McKenney7ec99de2016-06-30 13:58:26 -07003497 for_each_online_cpu(cpu) {
Thomas Gleixner4df83742016-07-13 17:17:03 +00003498 rcutree_prepare_cpu(cpu);
Paul E. McKenney7ec99de2016-06-30 13:58:26 -07003499 rcu_cpu_starting(cpu);
Paul E. McKenney9b9500d2017-08-17 17:05:59 -07003500 rcutree_online_cpu(cpu);
Paul E. McKenney7ec99de2016-06-30 13:58:26 -07003501 }
Paul E. McKenneyad7c9462018-01-08 14:35:52 -08003502
3503 /* Create workqueue for expedited GPs and for Tree SRCU. */
3504 rcu_gp_wq = alloc_workqueue("rcu_gp", WQ_MEM_RECLAIM, 0);
3505 WARN_ON(!rcu_gp_wq);
Paul E. McKenney25f3d7e2018-02-01 22:05:38 -08003506 rcu_par_gp_wq = alloc_workqueue("rcu_par_gp", WQ_MEM_RECLAIM, 0);
3507 WARN_ON(!rcu_par_gp_wq);
Paul E. McKenneye0fcba92018-08-14 08:45:54 -07003508 srcu_init();
Paul E. McKenney64db4cf2008-12-18 21:55:32 +01003509}
3510
Paul E. McKenney10462d62019-01-11 16:10:57 -08003511#include "tree_stall.h"
Paul E. McKenney3549c2b2016-04-15 16:35:29 -07003512#include "tree_exp.h"
Paul E. McKenney4102ada2013-10-08 20:23:47 -07003513#include "tree_plugin.h"