xref: /linux/kernel/rcu/srcutiny.c (revision aba9da0905f14106b368e0abf75220e744d27626)
1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Sleepable Read-Copy Update mechanism for mutual exclusion,
4  *	tiny version for non-preemptible single-CPU use.
5  *
6  * Copyright (C) IBM Corporation, 2017
7  *
8  * Author: Paul McKenney <paulmck@linux.ibm.com>
9  */
10 
11 #include <linux/export.h>
12 #include <linux/irq_work.h>
13 #include <linux/mutex.h>
14 #include <linux/preempt.h>
15 #include <linux/rcupdate_wait.h>
16 #include <linux/sched.h>
17 #include <linux/delay.h>
18 #include <linux/srcu.h>
19 
20 #include <linux/rcu_node_tree.h>
21 #include "rcu_segcblist.h"
22 #include "rcu.h"
23 
24 #ifndef CONFIG_TREE_RCU
25 int rcu_scheduler_active __read_mostly;
26 #else // #ifndef CONFIG_TREE_RCU
27 extern int rcu_scheduler_active;
28 #endif // #else // #ifndef CONFIG_TREE_RCU
29 static LIST_HEAD(srcu_boot_list);
30 static bool srcu_init_done;
31 
init_srcu_struct_fields(struct srcu_struct * ssp)32 static int init_srcu_struct_fields(struct srcu_struct *ssp)
33 {
34 	ssp->srcu_lock_nesting[0] = 0;
35 	ssp->srcu_lock_nesting[1] = 0;
36 	init_swait_queue_head(&ssp->srcu_wq);
37 	ssp->srcu_cb_head = NULL;
38 	ssp->srcu_cb_tail = &ssp->srcu_cb_head;
39 	ssp->srcu_gp_running = false;
40 	ssp->srcu_gp_waiting = false;
41 	ssp->srcu_idx = 0;
42 	ssp->srcu_idx_max = 0;
43 	INIT_WORK(&ssp->srcu_work, srcu_drive_gp);
44 	INIT_LIST_HEAD(&ssp->srcu_work.entry);
45 	init_irq_work(&ssp->srcu_irq_work, srcu_tiny_irq_work);
46 	return 0;
47 }
48 
49 #ifdef CONFIG_DEBUG_LOCK_ALLOC
50 
__init_srcu_struct(struct srcu_struct * ssp,const char * name,struct lock_class_key * key)51 int __init_srcu_struct(struct srcu_struct *ssp, const char *name,
52 		       struct lock_class_key *key)
53 {
54 	/* Don't re-initialize a lock while it is held. */
55 	debug_check_no_locks_freed((void *)ssp, sizeof(*ssp));
56 	lockdep_init_map(&ssp->dep_map, name, key, 0);
57 	return init_srcu_struct_fields(ssp);
58 }
59 EXPORT_SYMBOL_GPL(__init_srcu_struct);
60 
61 #else /* #ifdef CONFIG_DEBUG_LOCK_ALLOC */
62 
63 /*
64  * init_srcu_struct - initialize a sleep-RCU structure
65  * @ssp: structure to initialize.
66  *
67  * Must invoke this on a given srcu_struct before passing that srcu_struct
68  * to any other function.  Each srcu_struct represents a separate domain
69  * of SRCU protection.
70  */
init_srcu_struct(struct srcu_struct * ssp)71 int init_srcu_struct(struct srcu_struct *ssp)
72 {
73 	return init_srcu_struct_fields(ssp);
74 }
75 EXPORT_SYMBOL_GPL(init_srcu_struct);
76 
77 #endif /* #else #ifdef CONFIG_DEBUG_LOCK_ALLOC */
78 
79 /*
80  * cleanup_srcu_struct - deconstruct a sleep-RCU structure
81  * @ssp: structure to clean up.
82  *
83  * Must invoke this after you are finished using a given srcu_struct that
84  * was initialized via init_srcu_struct(), else you leak memory.
85  */
cleanup_srcu_struct(struct srcu_struct * ssp)86 void cleanup_srcu_struct(struct srcu_struct *ssp)
87 {
88 	WARN_ON(ssp->srcu_lock_nesting[0] || ssp->srcu_lock_nesting[1]);
89 	irq_work_sync(&ssp->srcu_irq_work);
90 	flush_work(&ssp->srcu_work);
91 	WARN_ON(ssp->srcu_gp_running);
92 	WARN_ON(ssp->srcu_gp_waiting);
93 	WARN_ON(ssp->srcu_cb_head);
94 	WARN_ON(&ssp->srcu_cb_head != ssp->srcu_cb_tail);
95 	WARN_ON(ssp->srcu_idx != ssp->srcu_idx_max);
96 	WARN_ON(ssp->srcu_idx & 0x1);
97 }
98 EXPORT_SYMBOL_GPL(cleanup_srcu_struct);
99 
100 /*
101  * Removes the count for the old reader from the appropriate element of
102  * the srcu_struct.
103  */
__srcu_read_unlock(struct srcu_struct * ssp,int idx)104 void __srcu_read_unlock(struct srcu_struct *ssp, int idx)
105 {
106 	int newval;
107 
108 	preempt_disable();  // Needed for PREEMPT_LAZY
109 	newval = READ_ONCE(ssp->srcu_lock_nesting[idx]) - 1;
110 	WRITE_ONCE(ssp->srcu_lock_nesting[idx], newval);
111 	preempt_enable();
112 	if (!newval && READ_ONCE(ssp->srcu_gp_waiting) && in_task() && !irqs_disabled())
113 		swake_up_one(&ssp->srcu_wq);
114 }
115 EXPORT_SYMBOL_GPL(__srcu_read_unlock);
116 
117 /*
118  * Workqueue handler to drive one grace period and invoke any callbacks
119  * that become ready as a result.  Single-CPU operation and preemption
120  * disabling mean that we get away with murder on synchronization.  ;-)
121  */
srcu_drive_gp(struct work_struct * wp)122 void srcu_drive_gp(struct work_struct *wp)
123 {
124 	int idx;
125 	struct rcu_head *lh;
126 	struct rcu_head *rhp;
127 	struct srcu_struct *ssp;
128 
129 	ssp = container_of(wp, struct srcu_struct, srcu_work);
130 	preempt_disable();  // Needed for PREEMPT_LAZY
131 	if (ssp->srcu_gp_running || ULONG_CMP_GE(ssp->srcu_idx, READ_ONCE(ssp->srcu_idx_max))) {
132 		preempt_enable();
133 		return; /* Already running or nothing to do. */
134 	}
135 
136 	/* Remove recently arrived callbacks and wait for readers. */
137 	WRITE_ONCE(ssp->srcu_gp_running, true);
138 	local_irq_disable();
139 	lh = ssp->srcu_cb_head;
140 	ssp->srcu_cb_head = NULL;
141 	ssp->srcu_cb_tail = &ssp->srcu_cb_head;
142 	local_irq_enable();
143 	idx = (ssp->srcu_idx & 0x2) / 2;
144 	WRITE_ONCE(ssp->srcu_idx, ssp->srcu_idx + 1);
145 	WRITE_ONCE(ssp->srcu_gp_waiting, true);  /* srcu_read_unlock() wakes! */
146 	preempt_enable();
147 	do {
148 		// Deadlock issues prevent __srcu_read_unlock() from
149 		// doing an unconditional wakeup, so polling is required.
150 		swait_event_timeout_exclusive(ssp->srcu_wq,
151 					      !READ_ONCE(ssp->srcu_lock_nesting[idx]), HZ / 10);
152 	} while (READ_ONCE(ssp->srcu_lock_nesting[idx]));
153 	preempt_disable();  // Needed for PREEMPT_LAZY
154 	WRITE_ONCE(ssp->srcu_gp_waiting, false); /* srcu_read_unlock() cheap. */
155 	WRITE_ONCE(ssp->srcu_idx, ssp->srcu_idx + 1);
156 	preempt_enable();
157 
158 	/* Invoke the callbacks we removed above. */
159 	while (lh) {
160 		rhp = lh;
161 		lh = lh->next;
162 		debug_rcu_head_callback(rhp);
163 		local_bh_disable();
164 		rhp->func(rhp);
165 		local_bh_enable();
166 	}
167 
168 	/*
169 	 * Enable rescheduling, and if there are more callbacks,
170 	 * reschedule ourselves.  This can race with a call_srcu()
171 	 * at interrupt level, but the ->srcu_gp_running checks will
172 	 * straighten that out.
173 	 */
174 	preempt_disable();  // Needed for PREEMPT_LAZY
175 	WRITE_ONCE(ssp->srcu_gp_running, false);
176 	idx = ULONG_CMP_LT(ssp->srcu_idx, READ_ONCE(ssp->srcu_idx_max));
177 	preempt_enable();
178 	if (idx)
179 		schedule_work(&ssp->srcu_work);
180 }
181 EXPORT_SYMBOL_GPL(srcu_drive_gp);
182 
183 /*
184  * Use an irq_work to defer schedule_work() to avoid acquiring the workqueue
185  * pool->lock while the caller might hold scheduler locks, causing lockdep
186  * splats due to workqueue_init() doing a wakeup.
187  */
srcu_tiny_irq_work(struct irq_work * irq_work)188 void srcu_tiny_irq_work(struct irq_work *irq_work)
189 {
190 	struct srcu_struct *ssp;
191 
192 	ssp = container_of(irq_work, struct srcu_struct, srcu_irq_work);
193 	schedule_work(&ssp->srcu_work);
194 }
195 EXPORT_SYMBOL_GPL(srcu_tiny_irq_work);
196 
srcu_gp_start_if_needed(struct srcu_struct * ssp)197 static void srcu_gp_start_if_needed(struct srcu_struct *ssp)
198 {
199 	unsigned long cookie;
200 
201 	lockdep_assert_preemption_disabled(); // Needed for PREEMPT_LAZY
202 	cookie = get_state_synchronize_srcu(ssp);
203 	if (ULONG_CMP_GE(READ_ONCE(ssp->srcu_idx_max), cookie)) {
204 		return;
205 	}
206 	WRITE_ONCE(ssp->srcu_idx_max, cookie);
207 	if (!READ_ONCE(ssp->srcu_gp_running)) {
208 		if (likely(srcu_init_done))
209 			irq_work_queue(&ssp->srcu_irq_work);
210 		else if (list_empty(&ssp->srcu_work.entry))
211 			list_add(&ssp->srcu_work.entry, &srcu_boot_list);
212 	}
213 }
214 
215 /*
216  * Enqueue an SRCU callback on the specified srcu_struct structure,
217  * initiating grace-period processing if it is not already running.
218  */
call_srcu(struct srcu_struct * ssp,struct rcu_head * rhp,rcu_callback_t func)219 void call_srcu(struct srcu_struct *ssp, struct rcu_head *rhp,
220 	       rcu_callback_t func)
221 {
222 	unsigned long flags;
223 
224 	rhp->func = func;
225 	rhp->next = NULL;
226 	preempt_disable();  // Needed for PREEMPT_LAZY
227 	local_irq_save(flags);
228 	*ssp->srcu_cb_tail = rhp;
229 	ssp->srcu_cb_tail = &rhp->next;
230 	local_irq_restore(flags);
231 	srcu_gp_start_if_needed(ssp);
232 	preempt_enable();
233 }
234 EXPORT_SYMBOL_GPL(call_srcu);
235 
236 /*
237  * synchronize_srcu - wait for prior SRCU read-side critical-section completion
238  */
synchronize_srcu(struct srcu_struct * ssp)239 void synchronize_srcu(struct srcu_struct *ssp)
240 {
241 	struct rcu_synchronize rs;
242 
243 	srcu_lock_sync(&ssp->dep_map);
244 
245 	RCU_LOCKDEP_WARN(lockdep_is_held(ssp) ||
246 			lock_is_held(&rcu_bh_lock_map) ||
247 			lock_is_held(&rcu_lock_map) ||
248 			lock_is_held(&rcu_sched_lock_map),
249 			"Illegal synchronize_srcu() in same-type SRCU (or in RCU) read-side critical section");
250 
251 	if (rcu_scheduler_active == RCU_SCHEDULER_INACTIVE)
252 		return;
253 
254 	might_sleep();
255 	init_rcu_head_on_stack(&rs.head);
256 	init_completion(&rs.completion);
257 	call_srcu(ssp, &rs.head, wakeme_after_rcu);
258 	wait_for_completion(&rs.completion);
259 	destroy_rcu_head_on_stack(&rs.head);
260 }
261 EXPORT_SYMBOL_GPL(synchronize_srcu);
262 
263 /*
264  * get_state_synchronize_srcu - Provide an end-of-grace-period cookie
265  */
get_state_synchronize_srcu(struct srcu_struct * ssp)266 unsigned long get_state_synchronize_srcu(struct srcu_struct *ssp)
267 {
268 	unsigned long ret;
269 
270 	barrier();
271 	ret = (READ_ONCE(ssp->srcu_idx) + 3) & ~0x1;
272 	barrier();
273 	return ret;
274 }
275 EXPORT_SYMBOL_GPL(get_state_synchronize_srcu);
276 
277 /*
278  * start_poll_synchronize_srcu - Provide cookie and start grace period
279  *
280  * The difference between this and get_state_synchronize_srcu() is that
281  * this function ensures that the poll_state_synchronize_srcu() will
282  * eventually return the value true.
283  */
start_poll_synchronize_srcu(struct srcu_struct * ssp)284 unsigned long start_poll_synchronize_srcu(struct srcu_struct *ssp)
285 {
286 	unsigned long ret;
287 
288 	preempt_disable();  // Needed for PREEMPT_LAZY
289 	ret = get_state_synchronize_srcu(ssp);
290 	srcu_gp_start_if_needed(ssp);
291 	preempt_enable();
292 	return ret;
293 }
294 EXPORT_SYMBOL_GPL(start_poll_synchronize_srcu);
295 
296 /*
297  * poll_state_synchronize_srcu - Has cookie's grace period ended?
298  */
poll_state_synchronize_srcu(struct srcu_struct * ssp,unsigned long cookie)299 bool poll_state_synchronize_srcu(struct srcu_struct *ssp, unsigned long cookie)
300 {
301 	unsigned long cur_s = READ_ONCE(ssp->srcu_idx);
302 
303 	barrier();
304 	return cookie == SRCU_GET_STATE_COMPLETED ||
305 	       ULONG_CMP_GE(cur_s, cookie) || ULONG_CMP_LT(cur_s, cookie - 3);
306 }
307 EXPORT_SYMBOL_GPL(poll_state_synchronize_srcu);
308 
309 #ifndef CONFIG_TREE_RCU
310 /* Lockdep diagnostics.  */
rcu_scheduler_starting(void)311 void __init rcu_scheduler_starting(void)
312 {
313 	rcu_scheduler_active = RCU_SCHEDULER_RUNNING;
314 }
315 #endif // #ifndef CONFIG_TREE_RCU
316 
317 /*
318  * Queue work for srcu_struct structures with early boot callbacks.
319  * The work won't actually execute until the workqueue initialization
320  * phase that takes place after the scheduler starts.
321  */
srcu_init(void)322 void __init srcu_init(void)
323 {
324 	struct srcu_struct *ssp;
325 
326 	srcu_init_done = true;
327 	while (!list_empty(&srcu_boot_list)) {
328 		ssp = list_first_entry(&srcu_boot_list,
329 				      struct srcu_struct, srcu_work.entry);
330 		list_del_init(&ssp->srcu_work.entry);
331 		schedule_work(&ssp->srcu_work);
332 	}
333 }
334