source: mainline/uspace/lib/c/generic/rcu.c@ 99d3123

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 99d3123 was ab6edb6, checked in by Jiří Zárevúcky <jiri.zarevucky@…>, 7 years ago

Simplify the interaction between async_futex and fibril_switch().

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File size: 12.9 KB
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1/*
2 * Copyright (c) 2012 Adam Hraska
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29/** @addtogroup liburcu
30 * @{
31 */
32/**
33 * @file
34 *
35 * User space RCU is based on URCU utilizing signals [1]. This
36 * implementation does not however signal each thread of the process
37 * to issue a memory barrier. Instead, we introduced a syscall that
38 * issues memory barriers (via IPIs) on cpus that are running threads
39 * of the current process. First, it does not require us to schedule
40 * and run every thread of the process. Second, IPIs are less intrusive
41 * than switching contexts and entering user space.
42 *
43 * This algorithm is further modified to require a single instead of
44 * two reader group changes per grace period. Signal-URCU flips
45 * the reader group and waits for readers of the previous group
46 * twice in succession in order to wait for new readers that were
47 * delayed and mistakenly associated with the previous reader group.
48 * The modified algorithm ensures that the new reader group is
49 * always empty (by explicitly waiting for it to become empty).
50 * Only then does it flip the reader group and wait for preexisting
51 * readers of the old reader group (invariant of SRCU [2, 3]).
52 *
53 *
54 * [1] User-level implementations of read-copy update,
55 * 2012, appendix
56 * http://www.rdrop.com/users/paulmck/RCU/urcu-supp-accepted.2011.08.30a.pdf
57 *
58 * [2] linux/kernel/srcu.c in Linux 3.5-rc2,
59 * 2012
60 * http://tomoyo.sourceforge.jp/cgi-bin/lxr/source/kernel/srcu.c?v=linux-3.5-rc2-ccs-1.8.3
61 *
62 * [3] [RFC PATCH 5/5 single-thread-version] implement
63 * per-domain single-thread state machine,
64 * 2012, Lai
65 * https://lkml.org/lkml/2012/3/6/586
66 */
67
68#include "rcu.h"
69#include <fibril_synch.h>
70#include <fibril.h>
71#include <stdio.h>
72#include <stddef.h>
73#include <compiler/barrier.h>
74#include <libarch/barrier.h>
75#include <futex.h>
76#include <macros.h>
77#include <async.h>
78#include <adt/list.h>
79#include <smp_memory_barrier.h>
80#include <assert.h>
81#include <time.h>
82#include <thread.h>
83
84#include "private/fibril.h"
85
86
87/** RCU sleeps for RCU_SLEEP_MS before polling an active RCU reader again. */
88#define RCU_SLEEP_MS 10
89
90#define RCU_NESTING_SHIFT 1
91#define RCU_NESTING_INC (1 << RCU_NESTING_SHIFT)
92#define RCU_GROUP_BIT_MASK (size_t)(RCU_NESTING_INC - 1)
93#define RCU_GROUP_A (size_t)(0 | RCU_NESTING_INC)
94#define RCU_GROUP_B (size_t)(1 | RCU_NESTING_INC)
95
96
97/** Fibril local RCU data. */
98typedef struct fibril_rcu_data {
99 size_t nesting_cnt;
100 link_t link;
101 bool registered;
102} fibril_rcu_data_t;
103
104/** Process global RCU data. */
105typedef struct rcu_data {
106 size_t cur_gp;
107 size_t reader_group;
108 futex_t list_futex;
109 list_t fibrils_list;
110 struct {
111 futex_t futex;
112 bool locked;
113 list_t blocked_fibrils;
114 size_t blocked_thread_cnt;
115 futex_t futex_blocking_threads;
116 } sync_lock;
117} rcu_data_t;
118
119typedef struct blocked_fibril {
120 fid_t id;
121 link_t link;
122 bool is_ready;
123} blocked_fibril_t;
124
125
126/** Fibril local RCU data. */
127static fibril_local fibril_rcu_data_t fibril_rcu = {
128 .nesting_cnt = 0,
129 .link = {
130 .next = NULL,
131 .prev = NULL
132 },
133 .registered = false
134};
135
136/** Process global RCU data. */
137static rcu_data_t rcu = {
138 .cur_gp = 0,
139 .reader_group = RCU_GROUP_A,
140 .list_futex = FUTEX_INITIALIZER,
141 .fibrils_list = LIST_INITIALIZER(rcu.fibrils_list),
142 .sync_lock = {
143 .futex = FUTEX_INITIALIZER,
144 .locked = false,
145 .blocked_fibrils = LIST_INITIALIZER(rcu.sync_lock.blocked_fibrils),
146 .blocked_thread_cnt = 0,
147 .futex_blocking_threads = FUTEX_INITIALIZE(0),
148 },
149};
150
151
152static void wait_for_readers(size_t reader_group);
153static void force_mb_in_all_threads(void);
154static bool is_preexisting_reader(const fibril_rcu_data_t *fib, size_t group);
155
156static void lock_sync(void);
157static void unlock_sync(void);
158static void sync_sleep(void);
159
160static bool is_in_group(size_t nesting_cnt, size_t group);
161static bool is_in_reader_section(size_t nesting_cnt);
162static size_t get_other_group(size_t group);
163
164
165/** Registers a fibril so it may start using RCU read sections.
166 *
167 * A fibril must be registered with rcu before it can enter RCU critical
168 * sections delineated by rcu_read_lock() and rcu_read_unlock().
169 */
170void rcu_register_fibril(void)
171{
172 assert(!fibril_rcu.registered);
173
174 futex_lock(&rcu.list_futex);
175 list_append(&fibril_rcu.link, &rcu.fibrils_list);
176 futex_unlock(&rcu.list_futex);
177
178 fibril_rcu.registered = true;
179}
180
181/** Deregisters a fibril that had been using RCU read sections.
182 *
183 * A fibril must be deregistered before it exits if it had
184 * been registered with rcu via rcu_register_fibril().
185 */
186void rcu_deregister_fibril(void)
187{
188 assert(fibril_rcu.registered);
189
190 /*
191 * Forcefully unlock any reader sections. The fibril is exiting
192 * so it is not holding any references to data protected by the
193 * rcu section. Therefore, it is safe to unlock. Otherwise,
194 * rcu_synchronize() would wait indefinitely.
195 */
196 memory_barrier();
197 fibril_rcu.nesting_cnt = 0;
198
199 futex_lock(&rcu.list_futex);
200 list_remove(&fibril_rcu.link);
201 futex_unlock(&rcu.list_futex);
202
203 fibril_rcu.registered = false;
204}
205
206/** Delimits the start of an RCU reader critical section.
207 *
208 * RCU reader sections may be nested.
209 */
210void rcu_read_lock(void)
211{
212 assert(fibril_rcu.registered);
213
214 size_t nesting_cnt = ACCESS_ONCE(fibril_rcu.nesting_cnt);
215
216 if (0 == (nesting_cnt >> RCU_NESTING_SHIFT)) {
217 ACCESS_ONCE(fibril_rcu.nesting_cnt) = ACCESS_ONCE(rcu.reader_group);
218 /* Required by MB_FORCE_L */
219 compiler_barrier(); /* CC_BAR_L */
220 } else {
221 ACCESS_ONCE(fibril_rcu.nesting_cnt) = nesting_cnt + RCU_NESTING_INC;
222 }
223}
224
225/** Delimits the start of an RCU reader critical section. */
226void rcu_read_unlock(void)
227{
228 assert(fibril_rcu.registered);
229 assert(rcu_read_locked());
230
231 /* Required by MB_FORCE_U */
232 compiler_barrier(); /* CC_BAR_U */
233 /* todo: ACCESS_ONCE(nesting_cnt) ? */
234 fibril_rcu.nesting_cnt -= RCU_NESTING_INC;
235}
236
237/** Returns true if the current fibril is in an RCU reader section. */
238bool rcu_read_locked(void)
239{
240 return 0 != (fibril_rcu.nesting_cnt >> RCU_NESTING_SHIFT);
241}
242
243/** Blocks until all preexisting readers exit their critical sections. */
244void rcu_synchronize(void)
245{
246 assert(!rcu_read_locked());
247
248 /* Contain load of rcu.cur_gp. */
249 memory_barrier();
250
251 /* Approximately the number of the GP in progress. */
252 size_t gp_in_progress = ACCESS_ONCE(rcu.cur_gp);
253
254 lock_sync();
255
256 /*
257 * Exit early if we were stuck waiting for the mutex for a full grace
258 * period. Started waiting during gp_in_progress (or gp_in_progress + 1
259 * if the value propagated to this cpu too late) so wait for the next
260 * full GP, gp_in_progress + 1, to finish. Ie don't wait if the GP
261 * after that, gp_in_progress + 2, already started.
262 */
263 /* rcu.cur_gp >= gp_in_progress + 2, but tolerates overflows. */
264 if (rcu.cur_gp != gp_in_progress && rcu.cur_gp + 1 != gp_in_progress) {
265 unlock_sync();
266 return;
267 }
268
269 ++ACCESS_ONCE(rcu.cur_gp);
270
271 /*
272 * Pairs up with MB_FORCE_L (ie CC_BAR_L). Makes changes prior
273 * to rcu_synchronize() visible to new readers.
274 */
275 memory_barrier(); /* MB_A */
276
277 /*
278 * Pairs up with MB_A.
279 *
280 * If the memory barrier is issued before CC_BAR_L in the target
281 * thread, it pairs up with MB_A and the thread sees all changes
282 * prior to rcu_synchronize(). Ie any reader sections are new
283 * rcu readers.
284 *
285 * If the memory barrier is issued after CC_BAR_L, it pairs up
286 * with MB_B and it will make the most recent nesting_cnt visible
287 * in this thread. Since the reader may have already accessed
288 * memory protected by RCU (it ran instructions passed CC_BAR_L),
289 * it is a preexisting reader. Seeing the most recent nesting_cnt
290 * ensures the thread will be identified as a preexisting reader
291 * and we will wait for it in wait_for_readers(old_reader_group).
292 */
293 force_mb_in_all_threads(); /* MB_FORCE_L */
294
295 /*
296 * Pairs with MB_FORCE_L (ie CC_BAR_L, CC_BAR_U) and makes the most
297 * current fibril.nesting_cnt visible to this cpu.
298 */
299 read_barrier(); /* MB_B */
300
301 size_t new_reader_group = get_other_group(rcu.reader_group);
302 wait_for_readers(new_reader_group);
303
304 /* Separates waiting for readers in new_reader_group from group flip. */
305 memory_barrier();
306
307 /* Flip the group new readers should associate with. */
308 size_t old_reader_group = rcu.reader_group;
309 rcu.reader_group = new_reader_group;
310
311 /* Flip the group before waiting for preexisting readers in the old group.*/
312 memory_barrier();
313
314 wait_for_readers(old_reader_group);
315
316 /* MB_FORCE_U */
317 force_mb_in_all_threads(); /* MB_FORCE_U */
318
319 unlock_sync();
320}
321
322/** Issues a memory barrier in each thread of this process. */
323static void force_mb_in_all_threads(void)
324{
325 /*
326 * Only issue barriers in running threads. The scheduler will
327 * execute additional memory barriers when switching to threads
328 * of the process that are currently not running.
329 */
330 smp_memory_barrier();
331}
332
333/** Waits for readers of reader_group to exit their readers sections. */
334static void wait_for_readers(size_t reader_group)
335{
336 futex_lock(&rcu.list_futex);
337
338 list_t quiescent_fibrils;
339 list_initialize(&quiescent_fibrils);
340
341 while (!list_empty(&rcu.fibrils_list)) {
342 list_foreach_safe(rcu.fibrils_list, fibril_it, next_fibril) {
343 fibril_rcu_data_t *fib = member_to_inst(fibril_it,
344 fibril_rcu_data_t, link);
345
346 if (is_preexisting_reader(fib, reader_group)) {
347 futex_unlock(&rcu.list_futex);
348 sync_sleep();
349 futex_lock(&rcu.list_futex);
350 /* Break to while loop. */
351 break;
352 } else {
353 list_remove(fibril_it);
354 list_append(fibril_it, &quiescent_fibrils);
355 }
356 }
357 }
358
359 list_concat(&rcu.fibrils_list, &quiescent_fibrils);
360 futex_unlock(&rcu.list_futex);
361}
362
363static void lock_sync(void)
364{
365 futex_lock(&rcu.sync_lock.futex);
366 if (rcu.sync_lock.locked) {
367 blocked_fibril_t blocked_fib;
368 blocked_fib.id = fibril_get_id();
369
370 list_append(&blocked_fib.link, &rcu.sync_lock.blocked_fibrils);
371
372 do {
373 blocked_fib.is_ready = false;
374 futex_unlock(&rcu.sync_lock.futex);
375 futex_lock(&async_futex);
376 fibril_switch(FIBRIL_FROM_BLOCKED);
377 futex_unlock(&async_futex);
378 futex_lock(&rcu.sync_lock.futex);
379 } while (rcu.sync_lock.locked);
380
381 list_remove(&blocked_fib.link);
382 rcu.sync_lock.locked = true;
383 } else {
384 rcu.sync_lock.locked = true;
385 }
386}
387
388static void unlock_sync(void)
389{
390 assert(rcu.sync_lock.locked);
391
392 /*
393 * Blocked threads have a priority over fibrils when accessing sync().
394 * Pass the lock onto a waiting thread.
395 */
396 if (0 < rcu.sync_lock.blocked_thread_cnt) {
397 --rcu.sync_lock.blocked_thread_cnt;
398 futex_unlock(&rcu.sync_lock.futex_blocking_threads);
399 } else {
400 /* Unlock but wake up any fibrils waiting for the lock. */
401
402 if (!list_empty(&rcu.sync_lock.blocked_fibrils)) {
403 blocked_fibril_t *blocked_fib = member_to_inst(
404 list_first(&rcu.sync_lock.blocked_fibrils), blocked_fibril_t, link);
405
406 if (!blocked_fib->is_ready) {
407 blocked_fib->is_ready = true;
408 fibril_add_ready(blocked_fib->id);
409 }
410 }
411
412 rcu.sync_lock.locked = false;
413 futex_unlock(&rcu.sync_lock.futex);
414 }
415}
416
417static void sync_sleep(void)
418{
419 assert(rcu.sync_lock.locked);
420 /*
421 * Release the futex to avoid deadlocks in singlethreaded apps
422 * but keep sync locked.
423 */
424 futex_unlock(&rcu.sync_lock.futex);
425 async_usleep(RCU_SLEEP_MS * 1000);
426 futex_lock(&rcu.sync_lock.futex);
427}
428
429
430static bool is_preexisting_reader(const fibril_rcu_data_t *fib, size_t group)
431{
432 size_t nesting_cnt = ACCESS_ONCE(fib->nesting_cnt);
433
434 return is_in_group(nesting_cnt, group) && is_in_reader_section(nesting_cnt);
435}
436
437static size_t get_other_group(size_t group)
438{
439 if (group == RCU_GROUP_A)
440 return RCU_GROUP_B;
441 else
442 return RCU_GROUP_A;
443}
444
445static bool is_in_reader_section(size_t nesting_cnt)
446{
447 return RCU_NESTING_INC <= nesting_cnt;
448}
449
450static bool is_in_group(size_t nesting_cnt, size_t group)
451{
452 return (nesting_cnt & RCU_GROUP_BIT_MASK) == (group & RCU_GROUP_BIT_MASK);
453}
454
455
456
457/** @}
458 */
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