Fix: join worker thread in call_rcu_data_free
[urcu.git] / src / urcu-call-rcu-impl.h
CommitLineData
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1/*
2 * urcu-call-rcu.c
3 *
4 * Userspace RCU library - batch memory reclamation with kernel API
5 *
6 * Copyright (c) 2010 Paul E. McKenney <paulmck@linux.vnet.ibm.com>
7 *
8 * This library is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Lesser General Public
10 * License as published by the Free Software Foundation; either
11 * version 2.1 of the License, or (at your option) any later version.
12 *
13 * This library is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * Lesser General Public License for more details.
17 *
18 * You should have received a copy of the GNU Lesser General Public
19 * License along with this library; if not, write to the Free Software
20 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
21 */
22
5161f31e 23#define _LGPL_SOURCE
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24#include <stdio.h>
25#include <pthread.h>
26#include <signal.h>
27#include <assert.h>
28#include <stdlib.h>
6d841bc2 29#include <stdint.h>
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30#include <string.h>
31#include <errno.h>
32#include <poll.h>
33#include <sys/time.h>
b57aee66 34#include <unistd.h>
c1d2c60b 35#include <sched.h>
b57aee66 36
a47dd11c 37#include "compat-getcpu.h"
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38#include <urcu/wfcqueue.h>
39#include <urcu/call-rcu.h>
40#include <urcu/pointer.h>
41#include <urcu/list.h>
42#include <urcu/futex.h>
43#include <urcu/tls-compat.h>
44#include <urcu/ref.h>
4a6d7378 45#include "urcu-die.h"
4477a870 46#include "urcu-utils.h"
01730852 47#include "compat-smp.h"
b57aee66 48
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49#define SET_AFFINITY_CHECK_PERIOD (1U << 8) /* 256 */
50#define SET_AFFINITY_CHECK_PERIOD_MASK (SET_AFFINITY_CHECK_PERIOD - 1)
51
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52/* Data structure that identifies a call_rcu thread. */
53
54struct call_rcu_data {
5161f31e 55 /*
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56 * We do not align head on a different cache-line than tail
57 * mainly because call_rcu callback-invocation threads use
58 * batching ("splice") to get an entire list of callbacks, which
59 * effectively empties the queue, and requires to touch the tail
60 * anyway.
5161f31e 61 */
b9f893b6 62 struct cds_wfcq_tail cbs_tail;
0b8ab7df 63 struct cds_wfcq_head cbs_head;
b57aee66 64 unsigned long flags;
6d841bc2 65 int32_t futex;
73987721 66 unsigned long qlen; /* maintained for debugging. */
b57aee66 67 pthread_t tid;
c1d2c60b 68 int cpu_affinity;
8e3690db 69 unsigned long gp_count;
3c24913f 70 struct cds_list_head list;
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71} __attribute__((aligned(CAA_CACHE_LINE_SIZE)));
72
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73struct call_rcu_completion {
74 int barrier_count;
75 int32_t futex;
81dd9134 76 struct urcu_ref ref;
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77};
78
79struct call_rcu_completion_work {
80 struct rcu_head head;
81 struct call_rcu_completion *completion;
82};
83
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84enum crdf_flags {
85 CRDF_FLAG_JOIN_THREAD = (1 << 0),
86};
87
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88/*
89 * List of all call_rcu_data structures to keep valgrind happy.
90 * Protected by call_rcu_mutex.
91 */
92
bab44e28 93static CDS_LIST_HEAD(call_rcu_data_list);
3c24913f 94
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95/* Link a thread using call_rcu() to its call_rcu thread. */
96
2f661865 97static DEFINE_URCU_TLS(struct call_rcu_data *, thread_call_rcu_data);
b57aee66 98
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99/*
100 * Guard call_rcu thread creation and atfork handlers.
101 */
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102static pthread_mutex_t call_rcu_mutex = PTHREAD_MUTEX_INITIALIZER;
103
104/* If a given thread does not have its own call_rcu thread, this is default. */
105
106static struct call_rcu_data *default_call_rcu_data;
107
d0ec0ed2 108static struct urcu_atfork *registered_rculfhash_atfork;
d0ec0ed2 109
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110/*
111 * If the sched_getcpu() and sysconf(_SC_NPROCESSORS_CONF) calls are
112 * available, then we can have call_rcu threads assigned to individual
113 * CPUs rather than only to specific threads.
114 */
115
a47dd11c 116#if defined(HAVE_SYSCONF) && (defined(HAVE_SCHED_GETCPU) || defined(HAVE_GETCPUID))
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117
118/*
119 * Pointer to array of pointers to per-CPU call_rcu_data structures
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120 * and # CPUs. per_cpu_call_rcu_data is a RCU-protected pointer to an
121 * array of RCU-protected pointers to call_rcu_data. call_rcu acts as a
122 * RCU read-side and reads per_cpu_call_rcu_data and the per-cpu pointer
123 * without mutex. The call_rcu_mutex protects updates.
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124 */
125
126static struct call_rcu_data **per_cpu_call_rcu_data;
01730852 127static long cpus_array_len;
b57aee66 128
01730852 129static void cpus_array_len_reset(void)
60af049d 130{
01730852 131 cpus_array_len = 0;
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132}
133
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134/* Allocate the array if it has not already been allocated. */
135
136static void alloc_cpu_call_rcu_data(void)
137{
138 struct call_rcu_data **p;
139 static int warned = 0;
140
01730852 141 if (cpus_array_len != 0)
b57aee66 142 return;
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143 cpus_array_len = get_possible_cpus_array_len();
144 if (cpus_array_len <= 0) {
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145 return;
146 }
01730852 147 p = malloc(cpus_array_len * sizeof(*per_cpu_call_rcu_data));
b57aee66 148 if (p != NULL) {
01730852 149 memset(p, '\0', cpus_array_len * sizeof(*per_cpu_call_rcu_data));
618b2595 150 rcu_set_pointer(&per_cpu_call_rcu_data, p);
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151 } else {
152 if (!warned) {
153 fprintf(stderr, "[error] liburcu: unable to allocate per-CPU pointer array\n");
154 }
155 warned = 1;
156 }
157}
158
63b495d8 159#else /* #if defined(HAVE_SYSCONF) && defined(HAVE_SCHED_GETCPU) */
b57aee66 160
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161/*
162 * per_cpu_call_rcu_data should be constant, but some functions below, used both
163 * for cases where cpu number is available and not available, assume it it not
164 * constant.
165 */
166static struct call_rcu_data **per_cpu_call_rcu_data = NULL;
01730852 167static const long cpus_array_len = -1;
b57aee66 168
01730852 169static void cpus_array_len_reset(void)
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170{
171}
172
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173static void alloc_cpu_call_rcu_data(void)
174{
175}
176
63b495d8 177#endif /* #else #if defined(HAVE_SYSCONF) && defined(HAVE_SCHED_GETCPU) */
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178
179/* Acquire the specified pthread mutex. */
180
181static void call_rcu_lock(pthread_mutex_t *pmp)
182{
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183 int ret;
184
185 ret = pthread_mutex_lock(pmp);
186 if (ret)
187 urcu_die(ret);
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188}
189
190/* Release the specified pthread mutex. */
191
192static void call_rcu_unlock(pthread_mutex_t *pmp)
193{
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194 int ret;
195
196 ret = pthread_mutex_unlock(pmp);
197 if (ret)
198 urcu_die(ret);
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199}
200
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201/*
202 * Periodically retry setting CPU affinity if we migrate.
203 * Losing affinity can be caused by CPU hotunplug/hotplug, or by
204 * cpuset(7).
205 */
a9e31859 206#ifdef HAVE_SCHED_SETAFFINITY
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207static
208int set_thread_cpu_affinity(struct call_rcu_data *crdp)
209{
210 cpu_set_t mask;
8e3690db 211 int ret;
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212
213 if (crdp->cpu_affinity < 0)
214 return 0;
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215 if (++crdp->gp_count & SET_AFFINITY_CHECK_PERIOD_MASK)
216 return 0;
217 if (urcu_sched_getcpu() == crdp->cpu_affinity)
218 return 0;
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219
220 CPU_ZERO(&mask);
221 CPU_SET(crdp->cpu_affinity, &mask);
222#if SCHED_SETAFFINITY_ARGS == 2
8e3690db 223 ret = sched_setaffinity(0, &mask);
c1d2c60b 224#else
8e3690db 225 ret = sched_setaffinity(0, sizeof(mask), &mask);
c1d2c60b 226#endif
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227 /*
228 * EINVAL is fine: can be caused by hotunplugged CPUs, or by
229 * cpuset(7). This is why we should always retry if we detect
230 * migration.
231 */
232 if (ret && errno == EINVAL) {
233 ret = 0;
234 errno = 0;
235 }
236 return ret;
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237}
238#else
239static
0d657320 240int set_thread_cpu_affinity(struct call_rcu_data *crdp __attribute__((unused)))
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241{
242 return 0;
243}
244#endif
245
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246static void call_rcu_wait(struct call_rcu_data *crdp)
247{
248 /* Read call_rcu list before read futex */
249 cmm_smp_mb();
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250 while (uatomic_read(&crdp->futex) == -1) {
251 if (!futex_async(&crdp->futex, FUTEX_WAIT, -1, NULL, NULL, 0)) {
252 /*
253 * Prior queued wakeups queued by unrelated code
254 * using the same address can cause futex wait to
255 * return 0 even through the futex value is still
256 * -1 (spurious wakeups). Check the value again
257 * in user-space to validate whether it really
258 * differs from -1.
259 */
260 continue;
261 }
b0a841b4 262 switch (errno) {
d60603e8 263 case EAGAIN:
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264 /* Value already changed. */
265 return;
266 case EINTR:
267 /* Retry if interrupted by signal. */
d60603e8 268 break; /* Get out of switch. Check again. */
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269 default:
270 /* Unexpected error. */
271 urcu_die(errno);
272 }
273 }
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274}
275
276static void call_rcu_wake_up(struct call_rcu_data *crdp)
277{
278 /* Write to call_rcu list before reading/writing futex */
279 cmm_smp_mb();
a0b7f7ea 280 if (caa_unlikely(uatomic_read(&crdp->futex) == -1)) {
03fe58b3 281 uatomic_set(&crdp->futex, 0);
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282 if (futex_async(&crdp->futex, FUTEX_WAKE, 1,
283 NULL, NULL, 0) < 0)
284 urcu_die(errno);
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285 }
286}
287
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288static void call_rcu_completion_wait(struct call_rcu_completion *completion)
289{
290 /* Read completion barrier count before read futex */
291 cmm_smp_mb();
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292 while (uatomic_read(&completion->futex) == -1) {
293 if (!futex_async(&completion->futex, FUTEX_WAIT, -1, NULL, NULL, 0)) {
294 /*
295 * Prior queued wakeups queued by unrelated code
296 * using the same address can cause futex wait to
297 * return 0 even through the futex value is still
298 * -1 (spurious wakeups). Check the value again
299 * in user-space to validate whether it really
300 * differs from -1.
301 */
302 continue;
303 }
b0a841b4 304 switch (errno) {
d60603e8 305 case EAGAIN:
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306 /* Value already changed. */
307 return;
308 case EINTR:
309 /* Retry if interrupted by signal. */
d60603e8 310 break; /* Get out of switch. Check again. */
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311 default:
312 /* Unexpected error. */
313 urcu_die(errno);
314 }
315 }
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316}
317
318static void call_rcu_completion_wake_up(struct call_rcu_completion *completion)
319{
320 /* Write to completion barrier count before reading/writing futex */
321 cmm_smp_mb();
322 if (caa_unlikely(uatomic_read(&completion->futex) == -1)) {
323 uatomic_set(&completion->futex, 0);
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324 if (futex_async(&completion->futex, FUTEX_WAKE, 1,
325 NULL, NULL, 0) < 0)
326 urcu_die(errno);
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327 }
328}
329
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330/* This is the code run by each call_rcu thread. */
331
332static void *call_rcu_thread(void *arg)
333{
334 unsigned long cbcount;
5161f31e 335 struct call_rcu_data *crdp = (struct call_rcu_data *) arg;
2870aa1e 336 int rt = !!(uatomic_read(&crdp->flags) & URCU_CALL_RCU_RT);
b57aee66 337
8e3690db 338 if (set_thread_cpu_affinity(crdp))
4a6d7378 339 urcu_die(errno);
c1d2c60b 340
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341 /*
342 * If callbacks take a read-side lock, we need to be registered.
343 */
344 rcu_register_thread();
345
bd252a04 346 URCU_TLS(thread_call_rcu_data) = crdp;
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347 if (!rt) {
348 uatomic_dec(&crdp->futex);
349 /* Decrement futex before reading call_rcu list */
350 cmm_smp_mb();
351 }
b57aee66 352 for (;;) {
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353 struct cds_wfcq_head cbs_tmp_head;
354 struct cds_wfcq_tail cbs_tmp_tail;
355 struct cds_wfcq_node *cbs, *cbs_tmp_n;
ae25b7e2 356 enum cds_wfcq_ret splice_ret;
5161f31e 357
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358 if (set_thread_cpu_affinity(crdp))
359 urcu_die(errno);
360
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361 if (uatomic_read(&crdp->flags) & URCU_CALL_RCU_PAUSE) {
362 /*
363 * Pause requested. Become quiescent: remove
364 * ourself from all global lists, and don't
365 * process any callback. The callback lists may
366 * still be non-empty though.
367 */
368 rcu_unregister_thread();
369 cmm_smp_mb__before_uatomic_or();
370 uatomic_or(&crdp->flags, URCU_CALL_RCU_PAUSED);
371 while ((uatomic_read(&crdp->flags) & URCU_CALL_RCU_PAUSE) != 0)
109105b7 372 (void) poll(NULL, 0, 1);
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373 uatomic_and(&crdp->flags, ~URCU_CALL_RCU_PAUSED);
374 cmm_smp_mb__after_uatomic_and();
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375 rcu_register_thread();
376 }
377
5161f31e 378 cds_wfcq_init(&cbs_tmp_head, &cbs_tmp_tail);
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379 splice_ret = __cds_wfcq_splice_blocking(&cbs_tmp_head,
380 &cbs_tmp_tail, &crdp->cbs_head, &crdp->cbs_tail);
381 assert(splice_ret != CDS_WFCQ_RET_WOULDBLOCK);
382 assert(splice_ret != CDS_WFCQ_RET_DEST_NON_EMPTY);
383 if (splice_ret != CDS_WFCQ_RET_SRC_EMPTY) {
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384 synchronize_rcu();
385 cbcount = 0;
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386 __cds_wfcq_for_each_blocking_safe(&cbs_tmp_head,
387 &cbs_tmp_tail, cbs, cbs_tmp_n) {
388 struct rcu_head *rhp;
389
390 rhp = caa_container_of(cbs,
391 struct rcu_head, next);
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392 rhp->func(rhp);
393 cbcount++;
5161f31e 394 }
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395 uatomic_sub(&crdp->qlen, cbcount);
396 }
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397 if (uatomic_read(&crdp->flags) & URCU_CALL_RCU_STOP)
398 break;
765f3ead 399 rcu_thread_offline();
bc94ca9b 400 if (!rt) {
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401 if (cds_wfcq_empty(&crdp->cbs_head,
402 &crdp->cbs_tail)) {
bc94ca9b 403 call_rcu_wait(crdp);
109105b7 404 (void) poll(NULL, 0, 10);
bc94ca9b 405 uatomic_dec(&crdp->futex);
c768e45e 406 /*
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407 * Decrement futex before reading
408 * call_rcu list.
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409 */
410 cmm_smp_mb();
ccbac24d 411 } else {
109105b7 412 (void) poll(NULL, 0, 10);
c768e45e 413 }
bc94ca9b 414 } else {
109105b7 415 (void) poll(NULL, 0, 10);
b57aee66 416 }
765f3ead 417 rcu_thread_online();
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418 }
419 if (!rt) {
420 /*
421 * Read call_rcu list before write futex.
422 */
423 cmm_smp_mb();
424 uatomic_set(&crdp->futex, 0);
b57aee66 425 }
2870aa1e 426 uatomic_or(&crdp->flags, URCU_CALL_RCU_STOPPED);
765f3ead 427 rcu_unregister_thread();
7106ddf8 428 return NULL;
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429}
430
431/*
432 * Create both a call_rcu thread and the corresponding call_rcu_data
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433 * structure, linking the structure in as specified. Caller must hold
434 * call_rcu_mutex.
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435 */
436
3c24913f 437static void call_rcu_data_init(struct call_rcu_data **crdpp,
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438 unsigned long flags,
439 int cpu_affinity)
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440{
441 struct call_rcu_data *crdp;
4a6d7378 442 int ret;
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443
444 crdp = malloc(sizeof(*crdp));
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445 if (crdp == NULL)
446 urcu_die(errno);
b57aee66 447 memset(crdp, '\0', sizeof(*crdp));
5161f31e 448 cds_wfcq_init(&crdp->cbs_head, &crdp->cbs_tail);
b57aee66 449 crdp->qlen = 0;
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450 crdp->futex = 0;
451 crdp->flags = flags;
3c24913f 452 cds_list_add(&crdp->list, &call_rcu_data_list);
c1d2c60b 453 crdp->cpu_affinity = cpu_affinity;
8e3690db 454 crdp->gp_count = 0;
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455 cmm_smp_mb(); /* Structure initialized before pointer is planted. */
456 *crdpp = crdp;
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457 ret = pthread_create(&crdp->tid, NULL, call_rcu_thread, crdp);
458 if (ret)
459 urcu_die(ret);
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460}
461
462/*
463 * Return a pointer to the call_rcu_data structure for the specified
464 * CPU, returning NULL if there is none. We cannot automatically
465 * created it because the platform we are running on might not define
63b495d8 466 * urcu_sched_getcpu().
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467 *
468 * The call to this function and use of the returned call_rcu_data
469 * should be protected by RCU read-side lock.
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470 */
471
472struct call_rcu_data *get_cpu_call_rcu_data(int cpu)
473{
474 static int warned = 0;
618b2595 475 struct call_rcu_data **pcpu_crdp;
b57aee66 476
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477 pcpu_crdp = rcu_dereference(per_cpu_call_rcu_data);
478 if (pcpu_crdp == NULL)
b57aee66 479 return NULL;
01730852 480 if (!warned && cpus_array_len > 0 && (cpu < 0 || cpus_array_len <= cpu)) {
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481 fprintf(stderr, "[error] liburcu: get CPU # out of range\n");
482 warned = 1;
483 }
01730852 484 if (cpu < 0 || cpus_array_len <= cpu)
b57aee66 485 return NULL;
618b2595 486 return rcu_dereference(pcpu_crdp[cpu]);
b57aee66 487}
ce28e67a 488URCU_ATTR_ALIAS(urcu_stringify(get_cpu_call_rcu_data))
4477a870 489struct call_rcu_data *alias_get_cpu_call_rcu_data();
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490
491/*
492 * Return the tid corresponding to the call_rcu thread whose
493 * call_rcu_data structure is specified.
494 */
495
496pthread_t get_call_rcu_thread(struct call_rcu_data *crdp)
497{
498 return crdp->tid;
499}
ce28e67a 500URCU_ATTR_ALIAS(urcu_stringify(get_call_rcu_thread))
4477a870 501pthread_t alias_get_call_rcu_thread();
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502
503/*
504 * Create a call_rcu_data structure (with thread) and return a pointer.
505 */
506
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507static struct call_rcu_data *__create_call_rcu_data(unsigned long flags,
508 int cpu_affinity)
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509{
510 struct call_rcu_data *crdp;
511
c1d2c60b 512 call_rcu_data_init(&crdp, flags, cpu_affinity);
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513 return crdp;
514}
515
ce28e67a 516URCU_ATTR_ALIAS(urcu_stringify(create_call_rcu_data))
4477a870 517struct call_rcu_data *alias_create_call_rcu_data();
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518struct call_rcu_data *create_call_rcu_data(unsigned long flags,
519 int cpu_affinity)
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520{
521 struct call_rcu_data *crdp;
522
523 call_rcu_lock(&call_rcu_mutex);
c1d2c60b 524 crdp = __create_call_rcu_data(flags, cpu_affinity);
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525 call_rcu_unlock(&call_rcu_mutex);
526 return crdp;
527}
528
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529/*
530 * Set the specified CPU to use the specified call_rcu_data structure.
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531 *
532 * Use NULL to remove a CPU's call_rcu_data structure, but it is
533 * the caller's responsibility to dispose of the removed structure.
534 * Use get_cpu_call_rcu_data() to obtain a pointer to the old structure
535 * (prior to NULLing it out, of course).
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536 *
537 * The caller must wait for a grace-period to pass between return from
538 * set_cpu_call_rcu_data() and call to call_rcu_data_free() passing the
539 * previous call rcu data as argument.
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540 */
541
542int set_cpu_call_rcu_data(int cpu, struct call_rcu_data *crdp)
543{
dcfc8165 544 static int warned = 0;
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545
546 call_rcu_lock(&call_rcu_mutex);
f3776786 547 alloc_cpu_call_rcu_data();
01730852 548 if (cpu < 0 || cpus_array_len <= cpu) {
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549 if (!warned) {
550 fprintf(stderr, "[error] liburcu: set CPU # out of range\n");
551 warned = 1;
552 }
553 call_rcu_unlock(&call_rcu_mutex);
554 errno = EINVAL;
555 return -EINVAL;
556 }
53a55535 557
b57aee66 558 if (per_cpu_call_rcu_data == NULL) {
3670fef2 559 call_rcu_unlock(&call_rcu_mutex);
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560 errno = ENOMEM;
561 return -ENOMEM;
562 }
53a55535
LJ
563
564 if (per_cpu_call_rcu_data[cpu] != NULL && crdp != NULL) {
565 call_rcu_unlock(&call_rcu_mutex);
566 errno = EEXIST;
567 return -EEXIST;
568 }
569
618b2595 570 rcu_set_pointer(&per_cpu_call_rcu_data[cpu], crdp);
3670fef2 571 call_rcu_unlock(&call_rcu_mutex);
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572 return 0;
573}
ce28e67a 574URCU_ATTR_ALIAS(urcu_stringify(set_cpu_call_rcu_data))
4477a870 575int alias_set_cpu_call_rcu_data();
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576
577/*
578 * Return a pointer to the default call_rcu_data structure, creating
579 * one if need be. Because we never free call_rcu_data structures,
580 * we don't need to be in an RCU read-side critical section.
581 */
582
583struct call_rcu_data *get_default_call_rcu_data(void)
584{
585 if (default_call_rcu_data != NULL)
586 return rcu_dereference(default_call_rcu_data);
587 call_rcu_lock(&call_rcu_mutex);
588 if (default_call_rcu_data != NULL) {
589 call_rcu_unlock(&call_rcu_mutex);
590 return default_call_rcu_data;
591 }
c1d2c60b 592 call_rcu_data_init(&default_call_rcu_data, 0, -1);
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593 call_rcu_unlock(&call_rcu_mutex);
594 return default_call_rcu_data;
595}
ce28e67a 596URCU_ATTR_ALIAS(urcu_stringify(get_default_call_rcu_data))
4477a870 597struct call_rcu_data *alias_get_default_call_rcu_data();
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598
599/*
600 * Return the call_rcu_data structure that applies to the currently
601 * running thread. Any call_rcu_data structure assigned specifically
602 * to this thread has first priority, followed by any call_rcu_data
603 * structure assigned to the CPU on which the thread is running,
604 * followed by the default call_rcu_data structure. If there is not
605 * yet a default call_rcu_data structure, one will be created.
618b2595
MD
606 *
607 * Calls to this function and use of the returned call_rcu_data should
608 * be protected by RCU read-side lock.
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609 */
610struct call_rcu_data *get_call_rcu_data(void)
611{
9744f3bb 612 struct call_rcu_data *crd;
b57aee66 613
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MD
614 if (URCU_TLS(thread_call_rcu_data) != NULL)
615 return URCU_TLS(thread_call_rcu_data);
9744f3bb 616
01730852 617 if (cpus_array_len > 0) {
63b495d8 618 crd = get_cpu_call_rcu_data(urcu_sched_getcpu());
9744f3bb
LJ
619 if (crd)
620 return crd;
b57aee66 621 }
9744f3bb 622
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623 return get_default_call_rcu_data();
624}
ce28e67a 625URCU_ATTR_ALIAS(urcu_stringify(get_call_rcu_data))
4477a870 626struct call_rcu_data *alias_get_call_rcu_data();
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627
628/*
629 * Return a pointer to this task's call_rcu_data if there is one.
630 */
631
632struct call_rcu_data *get_thread_call_rcu_data(void)
633{
bd252a04 634 return URCU_TLS(thread_call_rcu_data);
b57aee66 635}
ce28e67a 636URCU_ATTR_ALIAS(urcu_stringify(get_thread_call_rcu_data))
4477a870 637struct call_rcu_data *alias_get_thread_call_rcu_data();
b57aee66
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638
639/*
640 * Set this task's call_rcu_data structure as specified, regardless
641 * of whether or not this task already had one. (This allows switching
642 * to and from real-time call_rcu threads, for example.)
7106ddf8
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643 *
644 * Use NULL to remove a thread's call_rcu_data structure, but it is
645 * the caller's responsibility to dispose of the removed structure.
646 * Use get_thread_call_rcu_data() to obtain a pointer to the old structure
647 * (prior to NULLing it out, of course).
b57aee66
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648 */
649
650void set_thread_call_rcu_data(struct call_rcu_data *crdp)
651{
bd252a04 652 URCU_TLS(thread_call_rcu_data) = crdp;
b57aee66 653}
ce28e67a 654URCU_ATTR_ALIAS(urcu_stringify(set_thread_call_rcu_data))
4477a870 655void alias_set_thread_call_rcu_data();
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656
657/*
658 * Create a separate call_rcu thread for each CPU. This does not
659 * replace a pre-existing call_rcu thread -- use the set_cpu_call_rcu_data()
0938c541
MD
660 * function if you want that behavior. Should be paired with
661 * free_all_cpu_call_rcu_data() to teardown these call_rcu worker
662 * threads.
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663 */
664
665int create_all_cpu_call_rcu_data(unsigned long flags)
666{
667 int i;
668 struct call_rcu_data *crdp;
669 int ret;
670
671 call_rcu_lock(&call_rcu_mutex);
672 alloc_cpu_call_rcu_data();
673 call_rcu_unlock(&call_rcu_mutex);
01730852 674 if (cpus_array_len <= 0) {
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675 errno = EINVAL;
676 return -EINVAL;
677 }
678 if (per_cpu_call_rcu_data == NULL) {
679 errno = ENOMEM;
680 return -ENOMEM;
681 }
01730852 682 for (i = 0; i < cpus_array_len; i++) {
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683 call_rcu_lock(&call_rcu_mutex);
684 if (get_cpu_call_rcu_data(i)) {
685 call_rcu_unlock(&call_rcu_mutex);
686 continue;
687 }
c1d2c60b 688 crdp = __create_call_rcu_data(flags, i);
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PM
689 if (crdp == NULL) {
690 call_rcu_unlock(&call_rcu_mutex);
691 errno = ENOMEM;
692 return -ENOMEM;
693 }
694 call_rcu_unlock(&call_rcu_mutex);
695 if ((ret = set_cpu_call_rcu_data(i, crdp)) != 0) {
356c8794
LJ
696 call_rcu_data_free(crdp);
697
698 /* it has been created by other thread */
699 if (ret == -EEXIST)
700 continue;
701
702 return ret;
b57aee66
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703 }
704 }
705 return 0;
706}
ce28e67a 707URCU_ATTR_ALIAS(urcu_stringify(create_all_cpu_call_rcu_data))
4477a870 708int alias_create_all_cpu_call_rcu_data();
b57aee66 709
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710/*
711 * Wake up the call_rcu thread corresponding to the specified
712 * call_rcu_data structure.
713 */
714static void wake_call_rcu_thread(struct call_rcu_data *crdp)
715{
263e3cf9
MD
716 if (!(_CMM_LOAD_SHARED(crdp->flags) & URCU_CALL_RCU_RT))
717 call_rcu_wake_up(crdp);
7106ddf8
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718}
719
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MD
720static void _call_rcu(struct rcu_head *head,
721 void (*func)(struct rcu_head *head),
722 struct call_rcu_data *crdp)
723{
724 cds_wfcq_node_init(&head->next);
725 head->func = func;
726 cds_wfcq_enqueue(&crdp->cbs_head, &crdp->cbs_tail, &head->next);
727 uatomic_inc(&crdp->qlen);
728 wake_call_rcu_thread(crdp);
729}
730
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731/*
732 * Schedule a function to be invoked after a following grace period.
733 * This is the only function that must be called -- the others are
734 * only present to allow applications to tune their use of RCU for
735 * maximum performance.
736 *
737 * Note that unless a call_rcu thread has not already been created,
738 * the first invocation of call_rcu() will create one. So, if you
739 * need the first invocation of call_rcu() to be fast, make sure
740 * to create a call_rcu thread first. One way to accomplish this is
741 * "get_call_rcu_data();", and another is create_all_cpu_call_rcu_data().
618b2595
MD
742 *
743 * call_rcu must be called by registered RCU read-side threads.
b57aee66 744 */
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745void call_rcu(struct rcu_head *head,
746 void (*func)(struct rcu_head *head))
747{
748 struct call_rcu_data *crdp;
749
618b2595 750 /* Holding rcu read-side lock across use of per-cpu crdp */
ffb4aaa7 751 _rcu_read_lock();
b57aee66 752 crdp = get_call_rcu_data();
b7f721d9 753 _call_rcu(head, func, crdp);
ffb4aaa7 754 _rcu_read_unlock();
7106ddf8 755}
ce28e67a 756URCU_ATTR_ALIAS(urcu_stringify(call_rcu)) void alias_call_rcu();
7106ddf8
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757
758/*
759 * Free up the specified call_rcu_data structure, terminating the
760 * associated call_rcu thread. The caller must have previously
761 * removed the call_rcu_data structure from per-thread or per-CPU
762 * usage. For example, set_cpu_call_rcu_data(cpu, NULL) for per-CPU
763 * call_rcu_data structures or set_thread_call_rcu_data(NULL) for
764 * per-thread call_rcu_data structures.
765 *
766 * We silently refuse to free up the default call_rcu_data structure
767 * because that is where we put any leftover callbacks. Note that
768 * the possibility of self-spawning callbacks makes it impossible
769 * to execute all the callbacks in finite time without putting any
770 * newly spawned callbacks somewhere else. The "somewhere else" of
771 * last resort is the default call_rcu_data structure.
772 *
773 * We also silently refuse to free NULL pointers. This simplifies
774 * the calling code.
f9da0936
MD
775 *
776 * The caller must wait for a grace-period to pass between return from
777 * set_cpu_call_rcu_data() and call to call_rcu_data_free() passing the
778 * previous call rcu data as argument.
03e5118f
MD
779 *
780 * Note: introducing __cds_wfcq_splice_blocking() in this function fixed
781 * a list corruption bug in the 0.7.x series. The equivalent fix
782 * appeared in 0.6.8 for the stable-0.6 branch.
7106ddf8 783 */
232cf6ac
MD
784static
785void _call_rcu_data_free(struct call_rcu_data *crdp, unsigned int flags)
7106ddf8 786{
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PM
787 if (crdp == NULL || crdp == default_call_rcu_data) {
788 return;
789 }
2870aa1e
PB
790 if ((uatomic_read(&crdp->flags) & URCU_CALL_RCU_STOPPED) == 0) {
791 uatomic_or(&crdp->flags, URCU_CALL_RCU_STOP);
7106ddf8 792 wake_call_rcu_thread(crdp);
2870aa1e 793 while ((uatomic_read(&crdp->flags) & URCU_CALL_RCU_STOPPED) == 0)
109105b7 794 (void) poll(NULL, 0, 1);
7106ddf8 795 }
9049d56a 796 call_rcu_lock(&call_rcu_mutex);
5161f31e 797 if (!cds_wfcq_empty(&crdp->cbs_head, &crdp->cbs_tail)) {
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798 call_rcu_unlock(&call_rcu_mutex);
799 /* Create default call rcu data if need be. */
800 /* CBs queued here will be handed to the default list. */
698d0778 801 (void) get_default_call_rcu_data();
9049d56a 802 call_rcu_lock(&call_rcu_mutex);
5161f31e
MD
803 __cds_wfcq_splice_blocking(&default_call_rcu_data->cbs_head,
804 &default_call_rcu_data->cbs_tail,
805 &crdp->cbs_head, &crdp->cbs_tail);
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806 uatomic_add(&default_call_rcu_data->qlen,
807 uatomic_read(&crdp->qlen));
1e92aa15 808 wake_call_rcu_thread(default_call_rcu_data);
7106ddf8 809 }
59dc9e9d
LJ
810
811 cds_list_del(&crdp->list);
b75dffe6
LJ
812 call_rcu_unlock(&call_rcu_mutex);
813
232cf6ac
MD
814 if (flags & CRDF_FLAG_JOIN_THREAD) {
815 int ret;
816
817 ret = pthread_join(get_call_rcu_thread(crdp), NULL);
818 if (ret)
819 urcu_die(ret);
820 }
59dc9e9d 821 free(crdp);
7106ddf8 822}
ce28e67a 823URCU_ATTR_ALIAS(urcu_stringify(call_rcu_data_free))
4477a870 824void alias_call_rcu_data_free();
7106ddf8 825
232cf6ac
MD
826void call_rcu_data_free(struct call_rcu_data *crdp)
827{
828 _call_rcu_data_free(crdp, CRDF_FLAG_JOIN_THREAD);
829}
830
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831/*
832 * Clean up all the per-CPU call_rcu threads.
833 */
834void free_all_cpu_call_rcu_data(void)
835{
836 int cpu;
618b2595
MD
837 struct call_rcu_data **crdp;
838 static int warned = 0;
7106ddf8 839
01730852 840 if (cpus_array_len <= 0)
7106ddf8 841 return;
618b2595 842
01730852 843 crdp = malloc(sizeof(*crdp) * cpus_array_len);
618b2595
MD
844 if (!crdp) {
845 if (!warned) {
846 fprintf(stderr, "[error] liburcu: unable to allocate per-CPU pointer array\n");
847 }
848 warned = 1;
d31150b4 849 return;
618b2595
MD
850 }
851
01730852 852 for (cpu = 0; cpu < cpus_array_len; cpu++) {
618b2595
MD
853 crdp[cpu] = get_cpu_call_rcu_data(cpu);
854 if (crdp[cpu] == NULL)
7106ddf8
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855 continue;
856 set_cpu_call_rcu_data(cpu, NULL);
7106ddf8 857 }
618b2595
MD
858 /*
859 * Wait for call_rcu sites acting as RCU readers of the
860 * call_rcu_data to become quiescent.
861 */
862 synchronize_rcu();
01730852 863 for (cpu = 0; cpu < cpus_array_len; cpu++) {
618b2595
MD
864 if (crdp[cpu] == NULL)
865 continue;
866 call_rcu_data_free(crdp[cpu]);
867 }
868 free(crdp);
7106ddf8 869}
4477a870
MD
870#ifdef RCU_QSBR
871/* ABI6 has a non-namespaced free_all_cpu_call_rcu_data for qsbr */
872#undef free_all_cpu_call_rcu_data
ce28e67a 873URCU_ATTR_ALIAS("urcu_qsbr_free_all_cpu_call_rcu_data")
4477a870
MD
874void free_all_cpu_call_rcu_data();
875#define free_all_cpu_call_rcu_data urcu_qsbr_free_all_cpu_call_rcu_data
876#else
ce28e67a 877URCU_ATTR_ALIAS(urcu_stringify(free_all_cpu_call_rcu_data))
4477a870
MD
878void alias_free_all_cpu_call_rcu_data();
879#endif
7106ddf8 880
81dd9134
KF
881static
882void free_completion(struct urcu_ref *ref)
883{
884 struct call_rcu_completion *completion;
885
886 completion = caa_container_of(ref, struct call_rcu_completion, ref);
887 free(completion);
888}
889
b7f721d9
MD
890static
891void _rcu_barrier_complete(struct rcu_head *head)
892{
893 struct call_rcu_completion_work *work;
894 struct call_rcu_completion *completion;
895
896 work = caa_container_of(head, struct call_rcu_completion_work, head);
897 completion = work->completion;
81dd9134
KF
898 if (!uatomic_sub_return(&completion->barrier_count, 1))
899 call_rcu_completion_wake_up(completion);
900 urcu_ref_put(&completion->ref, free_completion);
b7f721d9
MD
901 free(work);
902}
903
904/*
905 * Wait for all in-flight call_rcu callbacks to complete execution.
906 */
907void rcu_barrier(void)
908{
909 struct call_rcu_data *crdp;
81dd9134 910 struct call_rcu_completion *completion;
63f0fc6d 911 int count = 0;
b7f721d9
MD
912 int was_online;
913
914 /* Put in offline state in QSBR. */
ffb4aaa7 915 was_online = _rcu_read_ongoing();
b7f721d9
MD
916 if (was_online)
917 rcu_thread_offline();
918 /*
919 * Calling a rcu_barrier() within a RCU read-side critical
920 * section is an error.
921 */
ffb4aaa7 922 if (_rcu_read_ongoing()) {
b7f721d9
MD
923 static int warned = 0;
924
925 if (!warned) {
926 fprintf(stderr, "[error] liburcu: rcu_barrier() called from within RCU read-side critical section.\n");
927 }
928 warned = 1;
929 goto online;
930 }
931
81dd9134
KF
932 completion = calloc(sizeof(*completion), 1);
933 if (!completion)
934 urcu_die(errno);
935
b7f721d9
MD
936 call_rcu_lock(&call_rcu_mutex);
937 cds_list_for_each_entry(crdp, &call_rcu_data_list, list)
938 count++;
939
81dd9134
KF
940 /* Referenced by rcu_barrier() and each call_rcu thread. */
941 urcu_ref_set(&completion->ref, count + 1);
942 completion->barrier_count = count;
b7f721d9
MD
943
944 cds_list_for_each_entry(crdp, &call_rcu_data_list, list) {
945 struct call_rcu_completion_work *work;
946
947 work = calloc(sizeof(*work), 1);
63f0fc6d
MD
948 if (!work)
949 urcu_die(errno);
81dd9134 950 work->completion = completion;
b7f721d9 951 _call_rcu(&work->head, _rcu_barrier_complete, crdp);
b7f721d9
MD
952 }
953 call_rcu_unlock(&call_rcu_mutex);
954
b7f721d9
MD
955 /* Wait for them */
956 for (;;) {
81dd9134 957 uatomic_dec(&completion->futex);
b7f721d9
MD
958 /* Decrement futex before reading barrier_count */
959 cmm_smp_mb();
81dd9134 960 if (!uatomic_read(&completion->barrier_count))
b7f721d9 961 break;
81dd9134 962 call_rcu_completion_wait(completion);
b7f721d9 963 }
81dd9134
KF
964
965 urcu_ref_put(&completion->ref, free_completion);
966
b7f721d9
MD
967online:
968 if (was_online)
969 rcu_thread_online();
970}
ce28e67a 971URCU_ATTR_ALIAS(urcu_stringify(rcu_barrier))
4477a870 972void alias_rcu_barrier();
b7f721d9 973
81ad2e19
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974/*
975 * Acquire the call_rcu_mutex in order to ensure that the child sees
e85451a1
MD
976 * all of the call_rcu() data structures in a consistent state. Ensure
977 * that all call_rcu threads are in a quiescent state across fork.
81ad2e19
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978 * Suitable for pthread_atfork() and friends.
979 */
980void call_rcu_before_fork(void)
981{
e85451a1 982 struct call_rcu_data *crdp;
d0ec0ed2 983 struct urcu_atfork *atfork;
e85451a1 984
81ad2e19 985 call_rcu_lock(&call_rcu_mutex);
e85451a1 986
d0ec0ed2
MD
987 atfork = registered_rculfhash_atfork;
988 if (atfork)
989 atfork->before_fork(atfork->priv);
990
e85451a1
MD
991 cds_list_for_each_entry(crdp, &call_rcu_data_list, list) {
992 uatomic_or(&crdp->flags, URCU_CALL_RCU_PAUSE);
993 cmm_smp_mb__after_uatomic_or();
994 wake_call_rcu_thread(crdp);
995 }
996 cds_list_for_each_entry(crdp, &call_rcu_data_list, list) {
997 while ((uatomic_read(&crdp->flags) & URCU_CALL_RCU_PAUSED) == 0)
109105b7 998 (void) poll(NULL, 0, 1);
e85451a1 999 }
81ad2e19 1000}
ce28e67a 1001URCU_ATTR_ALIAS(urcu_stringify(call_rcu_before_fork))
4477a870 1002void alias_call_rcu_before_fork();
81ad2e19
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1003
1004/*
1005 * Clean up call_rcu data structures in the parent of a successful fork()
1006 * that is not followed by exec() in the child. Suitable for
1007 * pthread_atfork() and friends.
1008 */
1009void call_rcu_after_fork_parent(void)
1010{
e85451a1 1011 struct call_rcu_data *crdp;
d0ec0ed2 1012 struct urcu_atfork *atfork;
e85451a1
MD
1013
1014 cds_list_for_each_entry(crdp, &call_rcu_data_list, list)
1015 uatomic_and(&crdp->flags, ~URCU_CALL_RCU_PAUSE);
fc236e5e
KF
1016 cds_list_for_each_entry(crdp, &call_rcu_data_list, list) {
1017 while ((uatomic_read(&crdp->flags) & URCU_CALL_RCU_PAUSED) != 0)
109105b7 1018 (void) poll(NULL, 0, 1);
fc236e5e 1019 }
d0ec0ed2
MD
1020 atfork = registered_rculfhash_atfork;
1021 if (atfork)
1022 atfork->after_fork_parent(atfork->priv);
81ad2e19
PM
1023 call_rcu_unlock(&call_rcu_mutex);
1024}
ce28e67a 1025URCU_ATTR_ALIAS(urcu_stringify(call_rcu_after_fork_parent))
4477a870 1026void alias_call_rcu_after_fork_parent();
81ad2e19 1027
7106ddf8
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1028/*
1029 * Clean up call_rcu data structures in the child of a successful fork()
81ad2e19
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1030 * that is not followed by exec(). Suitable for pthread_atfork() and
1031 * friends.
7106ddf8
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1032 */
1033void call_rcu_after_fork_child(void)
1034{
077ff173 1035 struct call_rcu_data *crdp, *next;
d0ec0ed2 1036 struct urcu_atfork *atfork;
7106ddf8 1037
81ad2e19
PM
1038 /* Release the mutex. */
1039 call_rcu_unlock(&call_rcu_mutex);
1040
d0ec0ed2
MD
1041 atfork = registered_rculfhash_atfork;
1042 if (atfork)
1043 atfork->after_fork_child(atfork->priv);
1044
ad1b9909
LJ
1045 /* Do nothing when call_rcu() has not been used */
1046 if (cds_list_empty(&call_rcu_data_list))
1047 return;
1048
7106ddf8
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1049 /*
1050 * Allocate a new default call_rcu_data structure in order
1051 * to get a working call_rcu thread to go with it.
1052 */
1053 default_call_rcu_data = NULL;
1054 (void)get_default_call_rcu_data();
1055
60af049d 1056 /* Cleanup call_rcu_data pointers before use */
01730852 1057 cpus_array_len_reset();
60af049d 1058 free(per_cpu_call_rcu_data);
618b2595 1059 rcu_set_pointer(&per_cpu_call_rcu_data, NULL);
bd252a04 1060 URCU_TLS(thread_call_rcu_data) = NULL;
60af049d 1061
e85451a1
MD
1062 /*
1063 * Dispose of all of the rest of the call_rcu_data structures.
1064 * Leftover call_rcu callbacks will be merged into the new
1065 * default call_rcu thread queue.
1066 */
077ff173 1067 cds_list_for_each_entry_safe(crdp, next, &call_rcu_data_list, list) {
7106ddf8 1068 if (crdp == default_call_rcu_data)
077ff173 1069 continue;
2870aa1e 1070 uatomic_set(&crdp->flags, URCU_CALL_RCU_STOPPED);
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1071 /*
1072 * Do not join the thread because it does not exist in
1073 * the child.
1074 */
1075 _call_rcu_data_free(crdp, 0);
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1076 }
1077}
ce28e67a 1078URCU_ATTR_ALIAS(urcu_stringify(call_rcu_after_fork_child))
4477a870 1079void alias_call_rcu_after_fork_child();
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1080
1081void urcu_register_rculfhash_atfork(struct urcu_atfork *atfork)
1082{
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1083 if (CMM_LOAD_SHARED(registered_rculfhash_atfork))
1084 return;
d0ec0ed2 1085 call_rcu_lock(&call_rcu_mutex);
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1086 if (!registered_rculfhash_atfork)
1087 registered_rculfhash_atfork = atfork;
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1088 call_rcu_unlock(&call_rcu_mutex);
1089}
ce28e67a 1090URCU_ATTR_ALIAS(urcu_stringify(urcu_register_rculfhash_atfork))
4477a870 1091void alias_urcu_register_rculfhash_atfork();
d0ec0ed2 1092
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1093/*
1094 * This unregistration function is deprecated, meant only for internal
1095 * use by rculfhash.
1096 */
1097__attribute__((noreturn))
17a8f206 1098void urcu_unregister_rculfhash_atfork(struct urcu_atfork *atfork __attribute__((unused)))
d0ec0ed2 1099{
19ec56ca 1100 urcu_die(EPERM);
d0ec0ed2 1101}
ce28e67a 1102URCU_ATTR_ALIAS(urcu_stringify(urcu_unregister_rculfhash_atfork))
19ec56ca 1103__attribute__((noreturn))
4477a870 1104void alias_urcu_unregister_rculfhash_atfork();
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