1 /* $NetBSD: pthread_cond.c,v 1.78 2025/03/31 14:07:10 riastradh Exp $ */ 2 3 /*- 4 * Copyright (c) 2001, 2006, 2007, 2008, 2020 The NetBSD Foundation, Inc. 5 * All rights reserved. 6 * 7 * This code is derived from software contributed to The NetBSD Foundation 8 * by Nathan J. Williams and Andrew Doran. 9 * 10 * Redistribution and use in source and binary forms, with or without 11 * modification, are permitted provided that the following conditions 12 * are met: 13 * 1. Redistributions of source code must retain the above copyright 14 * notice, this list of conditions and the following disclaimer. 15 * 2. Redistributions in binary form must reproduce the above copyright 16 * notice, this list of conditions and the following disclaimer in the 17 * documentation and/or other materials provided with the distribution. 18 * 19 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 20 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 21 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 22 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 23 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 24 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 25 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 26 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 27 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 28 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 29 * POSSIBILITY OF SUCH DAMAGE. 30 */ 31 32 #include <sys/cdefs.h> 33 __RCSID("$NetBSD: pthread_cond.c,v 1.78 2025/03/31 14:07:10 riastradh Exp $"); 34 35 /* Need to use libc-private names for atomic operations. */ 36 #include "../../common/lib/libc/atomic/atomic_op_namespace.h" 37 38 #include <stdatomic.h> 39 #include <stdlib.h> 40 #include <errno.h> 41 #include <sys/time.h> 42 #include <sys/types.h> 43 44 #include "pthread.h" 45 #include "pthread_int.h" 46 #include "reentrant.h" 47 48 #define atomic_load_relaxed(p) \ 49 atomic_load_explicit(p, memory_order_relaxed) 50 51 int _sys___nanosleep50(const struct timespec *, struct timespec *); 52 53 int _pthread_cond_has_waiters_np(pthread_cond_t *); 54 55 __weak_alias(pthread_cond_has_waiters_np,_pthread_cond_has_waiters_np) 56 57 __strong_alias(__libc_cond_init,pthread_cond_init) 58 __strong_alias(__libc_cond_signal,pthread_cond_signal) 59 __strong_alias(__libc_cond_broadcast,pthread_cond_broadcast) 60 __strong_alias(__libc_cond_wait,pthread_cond_wait) 61 __strong_alias(__libc_cond_timedwait,pthread_cond_timedwait) 62 __strong_alias(__libc_cond_destroy,pthread_cond_destroy) 63 64 /* 65 * A dummy waiter that's used to flag that pthread_cond_signal() is in 66 * progress and nobody else should try to modify the waiter list until 67 * it completes. 68 */ 69 static struct pthread__waiter pthread__cond_dummy; 70 71 static clockid_t 72 pthread_cond_getclock(const pthread_cond_t *cond) 73 { 74 75 pthread__error(EINVAL, "Invalid condition variable", 76 cond->ptc_magic == _PT_COND_MAGIC); 77 78 return cond->ptc_private ? 79 *(clockid_t *)cond->ptc_private : CLOCK_REALTIME; 80 } 81 82 int 83 pthread_cond_init(pthread_cond_t *cond, const pthread_condattr_t *attr) 84 { 85 if (__predict_false(__uselibcstub)) 86 return __libc_cond_init_stub(cond, attr); 87 88 pthread__error(EINVAL, "Invalid condition variable attribute", 89 (attr == NULL) || (attr->ptca_magic == _PT_CONDATTR_MAGIC)); 90 91 cond->ptc_magic = _PT_COND_MAGIC; 92 cond->ptc_waiters = NULL; 93 cond->ptc_mutex = NULL; 94 if (attr && attr->ptca_private) { 95 cond->ptc_private = malloc(sizeof(clockid_t)); 96 if (cond->ptc_private == NULL) 97 return errno; 98 *(clockid_t *)cond->ptc_private = 99 *(clockid_t *)attr->ptca_private; 100 } else 101 cond->ptc_private = NULL; 102 103 return 0; 104 } 105 106 107 int 108 pthread_cond_destroy(pthread_cond_t *cond) 109 { 110 if (__predict_false(__uselibcstub)) 111 return __libc_cond_destroy_stub(cond); 112 113 pthread__error(EINVAL, "Invalid condition variable", 114 cond->ptc_magic == _PT_COND_MAGIC); 115 pthread__error(EBUSY, "Destroying condition variable in use", 116 cond->ptc_waiters == NULL); 117 118 cond->ptc_magic = _PT_COND_DEAD; 119 free(cond->ptc_private); 120 121 return 0; 122 } 123 124 int 125 pthread_cond_timedwait(pthread_cond_t *cond, pthread_mutex_t *mutex, 126 const struct timespec *abstime) 127 { 128 struct pthread__waiter waiter, *next, *head; 129 pthread_t self; 130 int error, cancel; 131 clockid_t clkid = pthread_cond_getclock(cond); 132 133 if (__predict_false(__uselibcstub)) 134 return __libc_cond_timedwait_stub(cond, mutex, abstime); 135 136 pthread__error(EINVAL, "Invalid condition variable", 137 cond->ptc_magic == _PT_COND_MAGIC); 138 pthread__error(EINVAL, "Invalid mutex", 139 mutex->ptm_magic == _PT_MUTEX_MAGIC); 140 pthread__error(EPERM, "Mutex not locked in condition wait", 141 mutex->ptm_owner != NULL); 142 143 self = pthread__self(); 144 pthread__assert(self->pt_lid != 0); 145 146 if (__predict_false(atomic_load_relaxed(&self->pt_cancel) & 147 PT_CANCEL_CANCELLED)) { 148 membar_acquire(); 149 pthread__cancelled(); 150 } 151 152 /* Note this thread as waiting on the CV. */ 153 cond->ptc_mutex = mutex; 154 for (head = cond->ptc_waiters;; head = next) { 155 /* Wait while pthread_cond_signal() in progress. */ 156 if (__predict_false(head == &pthread__cond_dummy)) { 157 sched_yield(); 158 next = cond->ptc_waiters; 159 continue; 160 } 161 waiter.lid = self->pt_lid; 162 waiter.next = head; 163 #ifndef PTHREAD__ATOMIC_IS_MEMBAR 164 membar_producer(); 165 #endif 166 next = atomic_cas_ptr(&cond->ptc_waiters, head, &waiter); 167 if (__predict_true(next == head)) { 168 break; 169 } 170 } 171 172 /* Drop the interlock and wait. */ 173 error = 0; 174 pthread_mutex_unlock(mutex); 175 while (waiter.lid && 176 !(cancel = atomic_load_relaxed(&self->pt_cancel) & 177 PT_CANCEL_CANCELLED)) { 178 int rv = _lwp_park(clkid, TIMER_ABSTIME, __UNCONST(abstime), 179 0, NULL, NULL); 180 if (rv == 0) { 181 continue; 182 } 183 if (errno != EINTR && errno != EALREADY) { 184 error = errno; 185 break; 186 } 187 } 188 pthread_mutex_lock(mutex); 189 190 /* 191 * If this thread absorbed a wakeup from pthread_cond_signal() and 192 * cannot take the wakeup, we should ensure that another thread does. 193 * 194 * And if awoken early, we may still be on the waiter list and must 195 * remove self. 196 */ 197 if (__predict_false(cancel | error)) { 198 pthread_cond_broadcast(cond); 199 200 /* 201 * Might have raced with another thread to do the wakeup. 202 * Wait until released, otherwise "waiter" is still globally 203 * visible. 204 */ 205 pthread_mutex_unlock(mutex); 206 while (__predict_false(waiter.lid)) { 207 (void)_lwp_park(CLOCK_MONOTONIC, 0, NULL, 0, NULL, 208 NULL); 209 } 210 pthread_mutex_lock(mutex); 211 } else { 212 pthread__assert(!waiter.lid); 213 } 214 215 /* 216 * If cancelled then exit. POSIX dictates that the mutex must be 217 * held if this happens. 218 */ 219 if (cancel) { 220 membar_acquire(); 221 pthread__cancelled(); 222 } 223 224 return error; 225 } 226 227 int 228 pthread_cond_wait(pthread_cond_t *cond, pthread_mutex_t *mutex) 229 { 230 if (__predict_false(__uselibcstub)) 231 return __libc_cond_wait_stub(cond, mutex); 232 233 return pthread_cond_timedwait(cond, mutex, NULL); 234 } 235 236 int 237 pthread_cond_signal(pthread_cond_t *cond) 238 { 239 struct pthread__waiter *head, *next; 240 pthread_mutex_t *mutex; 241 pthread_t self; 242 243 if (__predict_false(__uselibcstub)) 244 return __libc_cond_signal_stub(cond); 245 246 pthread__error(EINVAL, "Invalid condition variable", 247 cond->ptc_magic == _PT_COND_MAGIC); 248 249 /* Take ownership of one waiter. */ 250 self = pthread_self(); 251 mutex = cond->ptc_mutex; 252 for (head = cond->ptc_waiters;; head = next) { 253 /* Wait while pthread_cond_signal() in progress. */ 254 if (__predict_false(head == &pthread__cond_dummy)) { 255 sched_yield(); 256 next = cond->ptc_waiters; 257 continue; 258 } 259 if (head == NULL) { 260 return 0; 261 } 262 /* Block concurrent access to the waiter list. */ 263 next = atomic_cas_ptr(&cond->ptc_waiters, head, 264 &pthread__cond_dummy); 265 if (__predict_true(next == head)) { 266 break; 267 } 268 } 269 270 /* Now that list is locked, read pointer to next and then unlock. */ 271 membar_enter(); 272 cond->ptc_waiters = head->next; 273 membar_producer(); 274 head->next = NULL; 275 276 /* Now transfer waiter to the mutex. */ 277 pthread__mutex_deferwake(self, mutex, head); 278 return 0; 279 } 280 281 int 282 pthread_cond_broadcast(pthread_cond_t *cond) 283 { 284 struct pthread__waiter *head, *next; 285 pthread_mutex_t *mutex; 286 pthread_t self; 287 288 if (__predict_false(__uselibcstub)) 289 return __libc_cond_broadcast_stub(cond); 290 291 pthread__error(EINVAL, "Invalid condition variable", 292 cond->ptc_magic == _PT_COND_MAGIC); 293 294 if (cond->ptc_waiters == NULL) 295 return 0; 296 297 /* Take ownership of current set of waiters. */ 298 self = pthread_self(); 299 mutex = cond->ptc_mutex; 300 for (head = cond->ptc_waiters;; head = next) { 301 /* Wait while pthread_cond_signal() in progress. */ 302 if (__predict_false(head == &pthread__cond_dummy)) { 303 sched_yield(); 304 next = cond->ptc_waiters; 305 continue; 306 } 307 if (head == NULL) { 308 return 0; 309 } 310 next = atomic_cas_ptr(&cond->ptc_waiters, head, NULL); 311 if (__predict_true(next == head)) { 312 break; 313 } 314 } 315 membar_enter(); 316 317 /* Now transfer waiters to the mutex. */ 318 pthread__mutex_deferwake(self, mutex, head); 319 return 0; 320 } 321 322 int 323 _pthread_cond_has_waiters_np(pthread_cond_t *cond) 324 { 325 326 return cond->ptc_waiters != NULL; 327 } 328 329 int 330 pthread_condattr_init(pthread_condattr_t *attr) 331 { 332 333 attr->ptca_magic = _PT_CONDATTR_MAGIC; 334 attr->ptca_private = NULL; 335 336 return 0; 337 } 338 339 int 340 pthread_condattr_setclock(pthread_condattr_t *attr, clockid_t clck) 341 { 342 343 pthread__error(EINVAL, "Invalid condition variable attribute", 344 attr->ptca_magic == _PT_CONDATTR_MAGIC); 345 346 switch (clck) { 347 case CLOCK_MONOTONIC: 348 case CLOCK_REALTIME: 349 if (attr->ptca_private == NULL) 350 attr->ptca_private = malloc(sizeof(clockid_t)); 351 if (attr->ptca_private == NULL) 352 return errno; 353 *(clockid_t *)attr->ptca_private = clck; 354 return 0; 355 default: 356 return EINVAL; 357 } 358 } 359 360 int 361 pthread_condattr_getclock(const pthread_condattr_t *__restrict attr, 362 clockid_t *__restrict clock_id) 363 { 364 365 pthread__error(EINVAL, "Invalid condition variable attribute", 366 attr->ptca_magic == _PT_CONDATTR_MAGIC); 367 368 if (attr == NULL || attr->ptca_private == NULL) 369 return EINVAL; 370 *clock_id = *(clockid_t *)attr->ptca_private; 371 return 0; 372 } 373 374 int 375 pthread_condattr_destroy(pthread_condattr_t *attr) 376 { 377 378 pthread__error(EINVAL, "Invalid condition variable attribute", 379 attr->ptca_magic == _PT_CONDATTR_MAGIC); 380 381 attr->ptca_magic = _PT_CONDATTR_DEAD; 382 free(attr->ptca_private); 383 384 return 0; 385 } 386 387 #ifdef _PTHREAD_PSHARED 388 int 389 pthread_condattr_getpshared(const pthread_condattr_t * __restrict attr, 390 int * __restrict pshared) 391 { 392 393 pthread__error(EINVAL, "Invalid condition variable attribute", 394 attr->ptca_magic == _PT_CONDATTR_MAGIC); 395 396 *pshared = PTHREAD_PROCESS_PRIVATE; 397 return 0; 398 } 399 400 int 401 pthread_condattr_setpshared(pthread_condattr_t *attr, int pshared) 402 { 403 404 pthread__error(EINVAL, "Invalid condition variable attribute", 405 attr->ptca_magic == _PT_CONDATTR_MAGIC); 406 407 switch(pshared) { 408 case PTHREAD_PROCESS_PRIVATE: 409 return 0; 410 case PTHREAD_PROCESS_SHARED: 411 return ENOSYS; 412 } 413 return EINVAL; 414 } 415 #endif 416