Fix: assignment from incompatible pointer type warnings
[userspace-rcu.git] / urcu-bp.c
CommitLineData
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1/*
2 * urcu-bp.c
3 *
4 * Userspace RCU library, "bulletproof" version.
5 *
6982d6d7 6 * Copyright (c) 2009 Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
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7 * Copyright (c) 2009 Paul E. McKenney, IBM Corporation.
8 *
9 * This library is free software; you can redistribute it and/or
10 * modify it under the terms of the GNU Lesser General Public
11 * License as published by the Free Software Foundation; either
12 * version 2.1 of the License, or (at your option) any later version.
13 *
14 * This library is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
17 * Lesser General Public License for more details.
18 *
19 * You should have received a copy of the GNU Lesser General Public
20 * License along with this library; if not, write to the Free Software
21 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
22 *
23 * IBM's contributions to this file may be relicensed under LGPLv2 or later.
24 */
25
0617bf4c 26#define _GNU_SOURCE
71c811bf 27#define _LGPL_SOURCE
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28#include <stdio.h>
29#include <pthread.h>
30#include <signal.h>
31#include <assert.h>
32#include <stdlib.h>
33#include <string.h>
34#include <errno.h>
35#include <poll.h>
36#include <unistd.h>
37#include <sys/mman.h>
38
999991c6 39#include "urcu/arch.h"
d73fb81f 40#include "urcu/wfcqueue.h"
57760d44 41#include "urcu/map/urcu-bp.h"
af7c2dbe 42#include "urcu/static/urcu-bp.h"
618b2595 43#include "urcu-pointer.h"
bd252a04 44#include "urcu/tls-compat.h"
71c811bf 45
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46#include "urcu-die.h"
47
fdee2e6d 48/* Do not #define _LGPL_SOURCE to ensure we can emit the wrapper symbols */
71c811bf 49#undef _LGPL_SOURCE
fdee2e6d 50#include "urcu-bp.h"
71c811bf 51#define _LGPL_SOURCE
fdee2e6d 52
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53#ifndef MAP_ANONYMOUS
54#define MAP_ANONYMOUS MAP_ANON
55#endif
56
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57#ifdef __linux__
58static
59void *mremap_wrapper(void *old_address, size_t old_size,
60 size_t new_size, int flags)
61{
62 return mremap(old_address, old_size, new_size, flags);
63}
64#else
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65
66#define MREMAP_MAYMOVE 1
67#define MREMAP_FIXED 2
68
69/*
95b94246 70 * mremap wrapper for non-Linux systems not allowing MAYMOVE.
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71 * This is not generic.
72*/
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73static
74void *mremap_wrapper(void *old_address, size_t old_size,
75 size_t new_size, int flags)
45a4872f 76{
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77 assert(!(flags & MREMAP_MAYMOVE));
78
79 return MAP_FAILED;
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80}
81#endif
82
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83/* Sleep delay in ms */
84#define RCU_SLEEP_DELAY_MS 10
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85#define INIT_NR_THREADS 8
86#define ARENA_INIT_ALLOC \
87 sizeof(struct registry_chunk) \
88 + INIT_NR_THREADS * sizeof(struct rcu_reader)
fdee2e6d 89
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90/*
91 * Active attempts to check for reader Q.S. before calling sleep().
92 */
93#define RCU_QS_ACTIVE_ATTEMPTS 100
94
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95static
96int rcu_bp_refcount;
97
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98/* If the headers do not support membarrier system call, fall back smp_mb. */
99#ifdef __NR_membarrier
100# define membarrier(...) syscall(__NR_membarrier, __VA_ARGS__)
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101#else
102# define membarrier(...) -ENOSYS
103#endif
104
105enum membarrier_cmd {
106 MEMBARRIER_CMD_QUERY = 0,
107 MEMBARRIER_CMD_SHARED = (1 << 0),
108};
109
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110static
111void __attribute__((constructor)) rcu_bp_init(void);
112static
02be5561 113void __attribute__((destructor)) rcu_bp_exit(void);
fdee2e6d 114
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115int urcu_bp_has_sys_membarrier;
116
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117/*
118 * rcu_gp_lock ensures mutual exclusion between threads calling
119 * synchronize_rcu().
120 */
6abb4bd5 121static pthread_mutex_t rcu_gp_lock = PTHREAD_MUTEX_INITIALIZER;
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122/*
123 * rcu_registry_lock ensures mutual exclusion between threads
124 * registering and unregistering themselves to/from the registry, and
125 * with threads reading that registry from synchronize_rcu(). However,
126 * this lock is not held all the way through the completion of awaiting
127 * for the grace period. It is sporadically released between iterations
128 * on the registry.
129 * rcu_registry_lock may nest inside rcu_gp_lock.
130 */
131static pthread_mutex_t rcu_registry_lock = PTHREAD_MUTEX_INITIALIZER;
fdee2e6d 132
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133static pthread_mutex_t init_lock = PTHREAD_MUTEX_INITIALIZER;
134static int initialized;
135
136static pthread_key_t urcu_bp_key;
137
c13c2e55 138struct rcu_gp rcu_gp = { .ctr = RCU_GP_COUNT };
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139
140/*
141 * Pointer to registry elements. Written to only by each individual reader. Read
142 * by both the reader and the writers.
143 */
bd252a04 144DEFINE_URCU_TLS(struct rcu_reader *, rcu_reader);
fdee2e6d 145
16aa9ee8 146static CDS_LIST_HEAD(registry);
fdee2e6d 147
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148struct registry_chunk {
149 size_t data_len; /* data length */
c1be8fb9 150 size_t used; /* amount of data used */
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151 struct cds_list_head node; /* chunk_list node */
152 char data[];
153};
154
fdee2e6d 155struct registry_arena {
95b94246 156 struct cds_list_head chunk_list;
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157};
158
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159static struct registry_arena registry_arena = {
160 .chunk_list = CDS_LIST_HEAD_INIT(registry_arena.chunk_list),
161};
fdee2e6d 162
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163/* Saved fork signal mask, protected by rcu_gp_lock */
164static sigset_t saved_fork_signal_mask;
165
6abb4bd5 166static void mutex_lock(pthread_mutex_t *mutex)
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167{
168 int ret;
169
170#ifndef DISTRUST_SIGNALS_EXTREME
6abb4bd5 171 ret = pthread_mutex_lock(mutex);
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172 if (ret)
173 urcu_die(ret);
fdee2e6d 174#else /* #ifndef DISTRUST_SIGNALS_EXTREME */
6abb4bd5 175 while ((ret = pthread_mutex_trylock(mutex)) != 0) {
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176 if (ret != EBUSY && ret != EINTR)
177 urcu_die(ret);
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178 poll(NULL,0,10);
179 }
180#endif /* #else #ifndef DISTRUST_SIGNALS_EXTREME */
181}
182
6abb4bd5 183static void mutex_unlock(pthread_mutex_t *mutex)
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184{
185 int ret;
186
6abb4bd5 187 ret = pthread_mutex_unlock(mutex);
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188 if (ret)
189 urcu_die(ret);
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190}
191
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192static void smp_mb_master(void)
193{
194 if (caa_likely(urcu_bp_has_sys_membarrier))
195 (void) membarrier(MEMBARRIER_CMD_SHARED, 0);
196 else
197 cmm_smp_mb();
198}
199
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200/*
201 * Always called with rcu_registry lock held. Releases this lock between
202 * iterations and grabs it again. Holds the lock when it returns.
203 */
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204static void wait_for_readers(struct cds_list_head *input_readers,
205 struct cds_list_head *cur_snap_readers,
206 struct cds_list_head *qsreaders)
fdee2e6d 207{
9340c38d 208 unsigned int wait_loops = 0;
02be5561 209 struct rcu_reader *index, *tmp;
fdee2e6d 210
fdee2e6d 211 /*
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212 * Wait for each thread URCU_TLS(rcu_reader).ctr to either
213 * indicate quiescence (not nested), or observe the current
c13c2e55 214 * rcu_gp.ctr value.
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215 */
216 for (;;) {
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217 if (wait_loops < RCU_QS_ACTIVE_ATTEMPTS)
218 wait_loops++;
219
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220 cds_list_for_each_entry_safe(index, tmp, input_readers, node) {
221 switch (rcu_reader_state(&index->ctr)) {
222 case RCU_READER_ACTIVE_CURRENT:
223 if (cur_snap_readers) {
224 cds_list_move(&index->node,
225 cur_snap_readers);
226 break;
227 }
228 /* Fall-through */
229 case RCU_READER_INACTIVE:
230 cds_list_move(&index->node, qsreaders);
231 break;
232 case RCU_READER_ACTIVE_OLD:
233 /*
234 * Old snapshot. Leaving node in
235 * input_readers will make us busy-loop
236 * until the snapshot becomes current or
237 * the reader becomes inactive.
238 */
239 break;
240 }
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241 }
242
52c75091 243 if (cds_list_empty(input_readers)) {
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244 break;
245 } else {
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246 /* Temporarily unlock the registry lock. */
247 mutex_unlock(&rcu_registry_lock);
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248 if (wait_loops >= RCU_QS_ACTIVE_ATTEMPTS)
249 (void) poll(NULL, 0, RCU_SLEEP_DELAY_MS);
fdee2e6d 250 else
06f22bdb 251 caa_cpu_relax();
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252 /* Re-lock the registry lock before the next loop. */
253 mutex_lock(&rcu_registry_lock);
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254 }
255 }
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256}
257
258void synchronize_rcu(void)
259{
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260 CDS_LIST_HEAD(cur_snap_readers);
261 CDS_LIST_HEAD(qsreaders);
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262 sigset_t newmask, oldmask;
263 int ret;
264
6ed4b2e6 265 ret = sigfillset(&newmask);
fdee2e6d 266 assert(!ret);
6ed4b2e6 267 ret = pthread_sigmask(SIG_BLOCK, &newmask, &oldmask);
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268 assert(!ret);
269
6abb4bd5 270 mutex_lock(&rcu_gp_lock);
fdee2e6d 271
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272 mutex_lock(&rcu_registry_lock);
273
16aa9ee8 274 if (cds_list_empty(&registry))
2dfb8b5e 275 goto out;
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276
277 /* All threads should read qparity before accessing data structure
2dfb8b5e 278 * where new ptr points to. */
fdee2e6d 279 /* Write new ptr before changing the qparity */
f541831e 280 smp_mb_master();
fdee2e6d 281
fdee2e6d 282 /*
dd61d077 283 * Wait for readers to observe original parity or be quiescent.
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284 * wait_for_readers() can release and grab again rcu_registry_lock
285 * interally.
dd61d077 286 */
52c75091 287 wait_for_readers(&registry, &cur_snap_readers, &qsreaders);
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288
289 /*
290 * Adding a cmm_smp_mb() which is _not_ formally required, but makes the
291 * model easier to understand. It does not have a big performance impact
292 * anyway, given this is the write-side.
293 */
294 cmm_smp_mb();
295
296 /* Switch parity: 0 -> 1, 1 -> 0 */
c13c2e55 297 CMM_STORE_SHARED(rcu_gp.ctr, rcu_gp.ctr ^ RCU_GP_CTR_PHASE);
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298
299 /*
300 * Must commit qparity update to memory before waiting for other parity
301 * quiescent state. Failure to do so could result in the writer waiting
302 * forever while new readers are always accessing data (no progress).
303 * Ensured by CMM_STORE_SHARED and CMM_LOAD_SHARED.
fdee2e6d 304 */
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305
306 /*
5481ddb3 307 * Adding a cmm_smp_mb() which is _not_ formally required, but makes the
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308 * model easier to understand. It does not have a big performance impact
309 * anyway, given this is the write-side.
310 */
5481ddb3 311 cmm_smp_mb();
fdee2e6d 312
fdee2e6d 313 /*
dd61d077 314 * Wait for readers to observe new parity or be quiescent.
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315 * wait_for_readers() can release and grab again rcu_registry_lock
316 * interally.
fdee2e6d 317 */
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318 wait_for_readers(&cur_snap_readers, NULL, &qsreaders);
319
320 /*
321 * Put quiescent reader list back into registry.
322 */
323 cds_list_splice(&qsreaders, &registry);
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324
325 /*
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326 * Finish waiting for reader threads before letting the old ptr being
327 * freed.
fdee2e6d 328 */
f541831e 329 smp_mb_master();
2dfb8b5e 330out:
731ccb96 331 mutex_unlock(&rcu_registry_lock);
6abb4bd5 332 mutex_unlock(&rcu_gp_lock);
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333 ret = pthread_sigmask(SIG_SETMASK, &oldmask, NULL);
334 assert(!ret);
335}
336
337/*
338 * library wrappers to be used by non-LGPL compatible source code.
339 */
340
341void rcu_read_lock(void)
342{
343 _rcu_read_lock();
344}
345
346void rcu_read_unlock(void)
347{
348 _rcu_read_unlock();
349}
350
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351int rcu_read_ongoing(void)
352{
353 return _rcu_read_ongoing();
354}
355
fdee2e6d 356/*
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357 * Only grow for now. If empty, allocate a ARENA_INIT_ALLOC sized chunk.
358 * Else, try expanding the last chunk. If this fails, allocate a new
359 * chunk twice as big as the last chunk.
360 * Memory used by chunks _never_ moves. A chunk could theoretically be
361 * freed when all "used" slots are released, but we don't do it at this
362 * point.
fdee2e6d 363 */
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364static
365void expand_arena(struct registry_arena *arena)
fdee2e6d 366{
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367 struct registry_chunk *new_chunk, *last_chunk;
368 size_t old_chunk_len, new_chunk_len;
369
370 /* No chunk. */
371 if (cds_list_empty(&arena->chunk_list)) {
372 assert(ARENA_INIT_ALLOC >=
373 sizeof(struct registry_chunk)
374 + sizeof(struct rcu_reader));
375 new_chunk_len = ARENA_INIT_ALLOC;
181ca7a6
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376 new_chunk = (struct registry_chunk *) mmap(NULL,
377 new_chunk_len,
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378 PROT_READ | PROT_WRITE,
379 MAP_ANONYMOUS | MAP_PRIVATE,
380 -1, 0);
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381 if (new_chunk == MAP_FAILED)
382 abort();
d3ac5bb7 383 memset(new_chunk, 0, new_chunk_len);
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384 new_chunk->data_len =
385 new_chunk_len - sizeof(struct registry_chunk);
386 cds_list_add_tail(&new_chunk->node, &arena->chunk_list);
387 return; /* We're done. */
388 }
9d8612b7 389
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390 /* Try expanding last chunk. */
391 last_chunk = cds_list_entry(arena->chunk_list.prev,
392 struct registry_chunk, node);
393 old_chunk_len =
394 last_chunk->data_len + sizeof(struct registry_chunk);
395 new_chunk_len = old_chunk_len << 1;
396
397 /* Don't allow memory mapping to move, just expand. */
398 new_chunk = mremap_wrapper(last_chunk, old_chunk_len,
399 new_chunk_len, 0);
400 if (new_chunk != MAP_FAILED) {
401 /* Should not have moved. */
402 assert(new_chunk == last_chunk);
d3ac5bb7 403 memset((char *) last_chunk + old_chunk_len, 0,
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404 new_chunk_len - old_chunk_len);
405 last_chunk->data_len =
406 new_chunk_len - sizeof(struct registry_chunk);
407 return; /* We're done. */
408 }
0617bf4c 409
95b94246 410 /* Remap did not succeed, we need to add a new chunk. */
181ca7a6
MJ
411 new_chunk = (struct registry_chunk *) mmap(NULL,
412 new_chunk_len,
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413 PROT_READ | PROT_WRITE,
414 MAP_ANONYMOUS | MAP_PRIVATE,
415 -1, 0);
416 if (new_chunk == MAP_FAILED)
417 abort();
d3ac5bb7 418 memset(new_chunk, 0, new_chunk_len);
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419 new_chunk->data_len =
420 new_chunk_len - sizeof(struct registry_chunk);
421 cds_list_add_tail(&new_chunk->node, &arena->chunk_list);
422}
fdee2e6d 423
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424static
425struct rcu_reader *arena_alloc(struct registry_arena *arena)
426{
427 struct registry_chunk *chunk;
428 struct rcu_reader *rcu_reader_reg;
429 int expand_done = 0; /* Only allow to expand once per alloc */
430 size_t len = sizeof(struct rcu_reader);
431
432retry:
433 cds_list_for_each_entry(chunk, &arena->chunk_list, node) {
434 if (chunk->data_len - chunk->used < len)
435 continue;
436 /* Find spot */
437 for (rcu_reader_reg = (struct rcu_reader *) &chunk->data[0];
438 rcu_reader_reg < (struct rcu_reader *) &chunk->data[chunk->data_len];
439 rcu_reader_reg++) {
440 if (!rcu_reader_reg->alloc) {
441 rcu_reader_reg->alloc = 1;
442 chunk->used += len;
443 return rcu_reader_reg;
444 }
445 }
446 }
447
448 if (!expand_done) {
449 expand_arena(arena);
450 expand_done = 1;
451 goto retry;
452 }
453
454 return NULL;
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455}
456
457/* Called with signals off and mutex locked */
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458static
459void add_thread(void)
fdee2e6d 460{
02be5561 461 struct rcu_reader *rcu_reader_reg;
c1be8fb9 462 int ret;
fdee2e6d 463
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464 rcu_reader_reg = arena_alloc(&registry_arena);
465 if (!rcu_reader_reg)
466 abort();
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467 ret = pthread_setspecific(urcu_bp_key, rcu_reader_reg);
468 if (ret)
469 abort();
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470
471 /* Add to registry */
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472 rcu_reader_reg->tid = pthread_self();
473 assert(rcu_reader_reg->ctr == 0);
16aa9ee8 474 cds_list_add(&rcu_reader_reg->node, &registry);
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475 /*
476 * Reader threads are pointing to the reader registry. This is
477 * why its memory should never be relocated.
478 */
bd252a04 479 URCU_TLS(rcu_reader) = rcu_reader_reg;
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480}
481
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482/* Called with mutex locked */
483static
484void cleanup_thread(struct registry_chunk *chunk,
485 struct rcu_reader *rcu_reader_reg)
486{
487 rcu_reader_reg->ctr = 0;
488 cds_list_del(&rcu_reader_reg->node);
489 rcu_reader_reg->tid = 0;
490 rcu_reader_reg->alloc = 0;
491 chunk->used -= sizeof(struct rcu_reader);
492}
493
494static
495struct registry_chunk *find_chunk(struct rcu_reader *rcu_reader_reg)
fdee2e6d 496{
95b94246 497 struct registry_chunk *chunk;
fdee2e6d 498
95b94246 499 cds_list_for_each_entry(chunk, &registry_arena.chunk_list, node) {
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500 if (rcu_reader_reg < (struct rcu_reader *) &chunk->data[0])
501 continue;
502 if (rcu_reader_reg >= (struct rcu_reader *) &chunk->data[chunk->data_len])
503 continue;
504 return chunk;
505 }
506 return NULL;
507}
95b94246 508
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509/* Called with signals off and mutex locked */
510static
76d6a951 511void remove_thread(struct rcu_reader *rcu_reader_reg)
c1be8fb9 512{
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513 cleanup_thread(find_chunk(rcu_reader_reg), rcu_reader_reg);
514 URCU_TLS(rcu_reader) = NULL;
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515}
516
517/* Disable signals, take mutex, add to registry */
518void rcu_bp_register(void)
519{
520 sigset_t newmask, oldmask;
521 int ret;
522
6ed4b2e6 523 ret = sigfillset(&newmask);
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524 if (ret)
525 abort();
6ed4b2e6 526 ret = pthread_sigmask(SIG_BLOCK, &newmask, &oldmask);
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527 if (ret)
528 abort();
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529
530 /*
531 * Check if a signal concurrently registered our thread since
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532 * the check in rcu_read_lock().
533 */
bd252a04 534 if (URCU_TLS(rcu_reader))
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535 goto end;
536
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537 /*
538 * Take care of early registration before urcu_bp constructor.
539 */
540 rcu_bp_init();
541
731ccb96 542 mutex_lock(&rcu_registry_lock);
fdee2e6d 543 add_thread();
731ccb96 544 mutex_unlock(&rcu_registry_lock);
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545end:
546 ret = pthread_sigmask(SIG_SETMASK, &oldmask, NULL);
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547 if (ret)
548 abort();
549}
550
551/* Disable signals, take mutex, remove from registry */
552static
76d6a951 553void rcu_bp_unregister(struct rcu_reader *rcu_reader_reg)
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554{
555 sigset_t newmask, oldmask;
556 int ret;
557
558 ret = sigfillset(&newmask);
559 if (ret)
560 abort();
561 ret = pthread_sigmask(SIG_BLOCK, &newmask, &oldmask);
562 if (ret)
563 abort();
564
731ccb96 565 mutex_lock(&rcu_registry_lock);
76d6a951 566 remove_thread(rcu_reader_reg);
731ccb96 567 mutex_unlock(&rcu_registry_lock);
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568 ret = pthread_sigmask(SIG_SETMASK, &oldmask, NULL);
569 if (ret)
570 abort();
76d6a951 571 rcu_bp_exit();
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572}
573
574/*
575 * Remove thread from the registry when it exits, and flag it as
576 * destroyed so garbage collection can take care of it.
577 */
578static
579void urcu_bp_thread_exit_notifier(void *rcu_key)
580{
76d6a951 581 rcu_bp_unregister(rcu_key);
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582}
583
584static
585void rcu_bp_init(void)
586{
587 mutex_lock(&init_lock);
76d6a951 588 if (!rcu_bp_refcount++) {
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589 int ret;
590
591 ret = pthread_key_create(&urcu_bp_key,
592 urcu_bp_thread_exit_notifier);
593 if (ret)
594 abort();
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595 ret = membarrier(MEMBARRIER_CMD_QUERY, 0);
596 if (ret >= 0 && (ret & MEMBARRIER_CMD_SHARED)) {
597 urcu_bp_has_sys_membarrier = 1;
598 }
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599 initialized = 1;
600 }
601 mutex_unlock(&init_lock);
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602}
603
c1be8fb9 604static
9380711a 605void rcu_bp_exit(void)
fdee2e6d 606{
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607 mutex_lock(&init_lock);
608 if (!--rcu_bp_refcount) {
609 struct registry_chunk *chunk, *tmp;
610 int ret;
95b94246 611
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612 cds_list_for_each_entry_safe(chunk, tmp,
613 &registry_arena.chunk_list, node) {
181ca7a6 614 munmap((void *) chunk, chunk->data_len
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615 + sizeof(struct registry_chunk));
616 }
e44dd88a 617 CDS_INIT_LIST_HEAD(&registry_arena.chunk_list);
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618 ret = pthread_key_delete(urcu_bp_key);
619 if (ret)
620 abort();
95b94246 621 }
76d6a951 622 mutex_unlock(&init_lock);
fdee2e6d 623}
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624
625/*
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626 * Holding the rcu_gp_lock and rcu_registry_lock across fork will make
627 * sure we fork() don't race with a concurrent thread executing with
628 * any of those locks held. This ensures that the registry and data
629 * protected by rcu_gp_lock are in a coherent state in the child.
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630 */
631void rcu_bp_before_fork(void)
632{
633 sigset_t newmask, oldmask;
634 int ret;
635
6ed4b2e6 636 ret = sigfillset(&newmask);
4cf1675f 637 assert(!ret);
6ed4b2e6 638 ret = pthread_sigmask(SIG_BLOCK, &newmask, &oldmask);
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639 assert(!ret);
640 mutex_lock(&rcu_gp_lock);
731ccb96 641 mutex_lock(&rcu_registry_lock);
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642 saved_fork_signal_mask = oldmask;
643}
644
645void rcu_bp_after_fork_parent(void)
646{
647 sigset_t oldmask;
648 int ret;
649
650 oldmask = saved_fork_signal_mask;
731ccb96 651 mutex_unlock(&rcu_registry_lock);
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652 mutex_unlock(&rcu_gp_lock);
653 ret = pthread_sigmask(SIG_SETMASK, &oldmask, NULL);
654 assert(!ret);
655}
656
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657/*
658 * Prune all entries from registry except our own thread. Fits the Linux
731ccb96 659 * fork behavior. Called with rcu_gp_lock and rcu_registry_lock held.
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660 */
661static
662void urcu_bp_prune_registry(void)
663{
664 struct registry_chunk *chunk;
665 struct rcu_reader *rcu_reader_reg;
666
667 cds_list_for_each_entry(chunk, &registry_arena.chunk_list, node) {
668 for (rcu_reader_reg = (struct rcu_reader *) &chunk->data[0];
669 rcu_reader_reg < (struct rcu_reader *) &chunk->data[chunk->data_len];
670 rcu_reader_reg++) {
671 if (!rcu_reader_reg->alloc)
672 continue;
673 if (rcu_reader_reg->tid == pthread_self())
674 continue;
675 cleanup_thread(chunk, rcu_reader_reg);
676 }
677 }
678}
679
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680void rcu_bp_after_fork_child(void)
681{
682 sigset_t oldmask;
683 int ret;
684
c1be8fb9 685 urcu_bp_prune_registry();
4cf1675f 686 oldmask = saved_fork_signal_mask;
731ccb96 687 mutex_unlock(&rcu_registry_lock);
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688 mutex_unlock(&rcu_gp_lock);
689 ret = pthread_sigmask(SIG_SETMASK, &oldmask, NULL);
690 assert(!ret);
691}
5e77fc1f 692
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693void *rcu_dereference_sym_bp(void *p)
694{
695 return _rcu_dereference(p);
696}
697
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698void *rcu_set_pointer_sym_bp(void **p, void *v)
699{
700 cmm_wmb();
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701 uatomic_set(p, v);
702 return v;
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703}
704
705void *rcu_xchg_pointer_sym_bp(void **p, void *v)
706{
707 cmm_wmb();
708 return uatomic_xchg(p, v);
709}
710
711void *rcu_cmpxchg_pointer_sym_bp(void **p, void *old, void *_new)
712{
713 cmm_wmb();
714 return uatomic_cmpxchg(p, old, _new);
715}
716
5e6b23a6 717DEFINE_RCU_FLAVOR(rcu_flavor);
541d828d 718
5e77fc1f 719#include "urcu-call-rcu-impl.h"
0376e7b2 720#include "urcu-defer-impl.h"
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