[ab1b971] | 1 | // |
---|
| 2 | // Cforall Version 1.0.0 Copyright (C) 2021 University of Waterloo |
---|
| 3 | // |
---|
| 4 | // The contents of this file are covered under the licence agreement in the |
---|
| 5 | // file "LICENCE" distributed with Cforall. |
---|
| 6 | // |
---|
| 7 | // locks.hfa -- PUBLIC |
---|
| 8 | // Runtime locks that used with the runtime thread system. |
---|
| 9 | // |
---|
| 10 | // Author : Colby Alexander Parsons |
---|
| 11 | // Created On : Thu Jan 21 19:46:50 2021 |
---|
| 12 | // Last Modified By : |
---|
| 13 | // Last Modified On : |
---|
| 14 | // Update Count : |
---|
| 15 | // |
---|
| 16 | |
---|
[f4e35326] | 17 | #pragma once |
---|
| 18 | |
---|
[848439f] | 19 | #include <stdbool.h> |
---|
[5a46e09] | 20 | #include <stdio.h> |
---|
[848439f] | 21 | |
---|
[ab1b971] | 22 | #include "bits/weakso_locks.hfa" |
---|
[f4ec5e45] | 23 | #include "containers/queueLockFree.hfa" |
---|
[82f4063] | 24 | #include "containers/list.hfa" |
---|
[f4ec5e45] | 25 | |
---|
[07033ce] | 26 | #include "limits.hfa" |
---|
[f4ec5e45] | 27 | #include "thread.hfa" |
---|
[848439f] | 28 | |
---|
| 29 | #include "time_t.hfa" |
---|
| 30 | #include "time.hfa" |
---|
| 31 | |
---|
[f4ec5e45] | 32 | //----------------------------------------------------------------------------- |
---|
| 33 | // Semaphores |
---|
| 34 | |
---|
| 35 | // '0-nary' semaphore |
---|
| 36 | // Similar to a counting semaphore except the value of one is never reached |
---|
| 37 | // as a consequence, a V() that would bring the value to 1 *spins* until |
---|
| 38 | // a P consumes it |
---|
| 39 | struct Semaphore0nary { |
---|
| 40 | __spinlock_t lock; // needed to protect |
---|
[e84ab3d] | 41 | mpsc_queue(thread$) queue; |
---|
[f4ec5e45] | 42 | }; |
---|
| 43 | |
---|
[e84ab3d] | 44 | static inline bool P(Semaphore0nary & this, thread$ * thrd) { |
---|
[82f4063] | 45 | /* paranoid */ verify(!thrd`next); |
---|
| 46 | /* paranoid */ verify(!(&(*thrd)`next)); |
---|
[f4ec5e45] | 47 | |
---|
| 48 | push(this.queue, thrd); |
---|
| 49 | return true; |
---|
| 50 | } |
---|
| 51 | |
---|
| 52 | static inline bool P(Semaphore0nary & this) { |
---|
[e84ab3d] | 53 | thread$ * thrd = active_thread(); |
---|
[f4ec5e45] | 54 | P(this, thrd); |
---|
| 55 | park(); |
---|
| 56 | return true; |
---|
| 57 | } |
---|
| 58 | |
---|
[e84ab3d] | 59 | static inline thread$ * V(Semaphore0nary & this, bool doUnpark = true) { |
---|
| 60 | thread$ * next; |
---|
[f4ec5e45] | 61 | lock(this.lock __cfaabi_dbg_ctx2); |
---|
| 62 | for (;;) { |
---|
| 63 | next = pop(this.queue); |
---|
| 64 | if (next) break; |
---|
| 65 | Pause(); |
---|
| 66 | } |
---|
| 67 | unlock(this.lock); |
---|
| 68 | |
---|
| 69 | if (doUnpark) unpark(next); |
---|
| 70 | return next; |
---|
| 71 | } |
---|
| 72 | |
---|
| 73 | // Wrapper used on top of any sempahore to avoid potential locking |
---|
| 74 | struct BinaryBenaphore { |
---|
| 75 | volatile ssize_t counter; |
---|
| 76 | }; |
---|
| 77 | |
---|
| 78 | static inline { |
---|
| 79 | void ?{}(BinaryBenaphore & this) { this.counter = 0; } |
---|
| 80 | void ?{}(BinaryBenaphore & this, zero_t) { this.counter = 0; } |
---|
| 81 | void ?{}(BinaryBenaphore & this, one_t ) { this.counter = 1; } |
---|
| 82 | |
---|
| 83 | // returns true if no blocking needed |
---|
[e20eaf4] | 84 | bool P(BinaryBenaphore & this) { |
---|
| 85 | return __atomic_fetch_sub(&this.counter, 1, __ATOMIC_SEQ_CST) > 0; |
---|
| 86 | } |
---|
| 87 | |
---|
[f4ec5e45] | 88 | bool tryP(BinaryBenaphore & this) { |
---|
| 89 | ssize_t c = this.counter; |
---|
[07033ce] | 90 | /* paranoid */ verify( c > MIN ); |
---|
[f4ec5e45] | 91 | return (c >= 1) && __atomic_compare_exchange_n(&this.counter, &c, c-1, false, __ATOMIC_SEQ_CST, __ATOMIC_RELAXED); |
---|
| 92 | } |
---|
| 93 | |
---|
| 94 | // returns true if notify needed |
---|
| 95 | bool V(BinaryBenaphore & this) { |
---|
| 96 | ssize_t c = 0; |
---|
| 97 | for () { |
---|
[07033ce] | 98 | /* paranoid */ verify( this.counter < MAX ); |
---|
[f4ec5e45] | 99 | if (__atomic_compare_exchange_n(&this.counter, &c, c+1, false, __ATOMIC_SEQ_CST, __ATOMIC_SEQ_CST)) { |
---|
| 100 | if (c == 0) return true; |
---|
| 101 | /* paranoid */ verify(c < 0); |
---|
| 102 | return false; |
---|
| 103 | } else { |
---|
| 104 | if (c == 1) return true; |
---|
| 105 | /* paranoid */ verify(c < 1); |
---|
| 106 | Pause(); |
---|
| 107 | } |
---|
| 108 | } |
---|
| 109 | } |
---|
| 110 | } |
---|
| 111 | |
---|
| 112 | // Binary Semaphore based on the BinaryBenaphore on top of the 0-nary Semaphore |
---|
| 113 | struct ThreadBenaphore { |
---|
| 114 | BinaryBenaphore ben; |
---|
| 115 | Semaphore0nary sem; |
---|
| 116 | }; |
---|
| 117 | |
---|
| 118 | static inline void ?{}(ThreadBenaphore & this) {} |
---|
| 119 | static inline void ?{}(ThreadBenaphore & this, zero_t) { (this.ben){ 0 }; } |
---|
| 120 | static inline void ?{}(ThreadBenaphore & this, one_t ) { (this.ben){ 1 }; } |
---|
| 121 | |
---|
[e20eaf4] | 122 | static inline bool P(ThreadBenaphore & this) { return P(this.ben) ? false : P(this.sem); } |
---|
[f4ec5e45] | 123 | static inline bool tryP(ThreadBenaphore & this) { return tryP(this.ben); } |
---|
| 124 | static inline bool P(ThreadBenaphore & this, bool wait) { return wait ? P(this) : tryP(this); } |
---|
| 125 | |
---|
[e84ab3d] | 126 | static inline thread$ * V(ThreadBenaphore & this, bool doUnpark = true) { |
---|
[e20eaf4] | 127 | if (V(this.ben)) return 0p; |
---|
[f4ec5e45] | 128 | return V(this.sem, doUnpark); |
---|
| 129 | } |
---|
| 130 | |
---|
| 131 | //----------------------------------------------------------------------------- |
---|
| 132 | // Semaphore |
---|
| 133 | struct semaphore { |
---|
| 134 | __spinlock_t lock; |
---|
| 135 | int count; |
---|
[e84ab3d] | 136 | __queue_t(thread$) waiting; |
---|
[f4ec5e45] | 137 | }; |
---|
| 138 | |
---|
| 139 | void ?{}(semaphore & this, int count = 1); |
---|
| 140 | void ^?{}(semaphore & this); |
---|
| 141 | bool P (semaphore & this); |
---|
| 142 | bool V (semaphore & this); |
---|
| 143 | bool V (semaphore & this, unsigned count); |
---|
[e84ab3d] | 144 | thread$ * V (semaphore & this, bool ); |
---|
[f4ec5e45] | 145 | |
---|
[ab1b971] | 146 | //---------- |
---|
| 147 | struct single_acquisition_lock { |
---|
| 148 | inline blocking_lock; |
---|
| 149 | }; |
---|
| 150 | |
---|
| 151 | static inline void ?{}( single_acquisition_lock & this ) {((blocking_lock &)this){ false, false };} |
---|
| 152 | static inline void ^?{}( single_acquisition_lock & this ) {} |
---|
[22b7579] | 153 | static inline void lock ( single_acquisition_lock & this ) { lock ( (blocking_lock &)this ); } |
---|
| 154 | static inline bool try_lock ( single_acquisition_lock & this ) { return try_lock( (blocking_lock &)this ); } |
---|
| 155 | static inline void unlock ( single_acquisition_lock & this ) { unlock ( (blocking_lock &)this ); } |
---|
| 156 | static inline size_t on_wait ( single_acquisition_lock & this ) { return on_wait ( (blocking_lock &)this ); } |
---|
| 157 | static inline void on_wakeup( single_acquisition_lock & this, size_t v ) { on_wakeup ( (blocking_lock &)this, v ); } |
---|
[e84ab3d] | 158 | static inline void on_notify( single_acquisition_lock & this, struct thread$ * t ) { on_notify( (blocking_lock &)this, t ); } |
---|
[ab1b971] | 159 | |
---|
| 160 | //---------- |
---|
| 161 | struct owner_lock { |
---|
| 162 | inline blocking_lock; |
---|
| 163 | }; |
---|
| 164 | |
---|
| 165 | static inline void ?{}( owner_lock & this ) {((blocking_lock &)this){ true, true };} |
---|
| 166 | static inline void ^?{}( owner_lock & this ) {} |
---|
[f19497c] | 167 | static inline void lock ( owner_lock & this ) { lock ( (blocking_lock &)this ); } |
---|
[d27b6be] | 168 | static inline bool try_lock ( owner_lock & this ) { return try_lock( (blocking_lock &)this ); } |
---|
[f19497c] | 169 | static inline void unlock ( owner_lock & this ) { unlock ( (blocking_lock &)this ); } |
---|
[22b7579] | 170 | static inline size_t on_wait ( owner_lock & this ) { return on_wait ( (blocking_lock &)this ); } |
---|
| 171 | static inline void on_wakeup( owner_lock & this, size_t v ) { on_wakeup ( (blocking_lock &)this, v ); } |
---|
[e84ab3d] | 172 | static inline void on_notify( owner_lock & this, struct thread$ * t ) { on_notify( (blocking_lock &)this, t ); } |
---|
[ab1b971] | 173 | |
---|
[f4ec5e45] | 174 | struct fast_lock { |
---|
[e84ab3d] | 175 | thread$ * volatile owner; |
---|
[f4ec5e45] | 176 | ThreadBenaphore sem; |
---|
| 177 | }; |
---|
| 178 | |
---|
[7636fcc] | 179 | static inline void ?{}(fast_lock & this) __attribute__((deprecated("use linear_backoff_then_block_lock instead"))); |
---|
[6ba6846] | 180 | static inline void ?{}(fast_lock & this) { this.owner = 0p; } |
---|
| 181 | |
---|
[e84ab3d] | 182 | static inline bool $try_lock(fast_lock & this, thread$ * thrd) { |
---|
| 183 | thread$ * exp = 0p; |
---|
[f4ec5e45] | 184 | return __atomic_compare_exchange_n(&this.owner, &exp, thrd, false, __ATOMIC_SEQ_CST, __ATOMIC_RELAXED); |
---|
| 185 | } |
---|
| 186 | |
---|
[7636fcc] | 187 | static inline void lock( fast_lock & this ) __attribute__((deprecated("use linear_backoff_then_block_lock instead"), artificial)); |
---|
[f4ec5e45] | 188 | static inline void lock( fast_lock & this ) { |
---|
[e84ab3d] | 189 | thread$ * thrd = active_thread(); |
---|
[f4ec5e45] | 190 | /* paranoid */verify(thrd != this.owner); |
---|
| 191 | |
---|
| 192 | for (;;) { |
---|
| 193 | if ($try_lock(this, thrd)) return; |
---|
| 194 | P(this.sem); |
---|
| 195 | } |
---|
| 196 | } |
---|
| 197 | |
---|
[7636fcc] | 198 | static inline bool try_lock( fast_lock & this ) __attribute__((deprecated("use linear_backoff_then_block_lock instead"), artificial)); |
---|
[22b7579] | 199 | static inline bool try_lock ( fast_lock & this ) { |
---|
[e84ab3d] | 200 | thread$ * thrd = active_thread(); |
---|
[f4ec5e45] | 201 | /* paranoid */ verify(thrd != this.owner); |
---|
| 202 | return $try_lock(this, thrd); |
---|
| 203 | } |
---|
| 204 | |
---|
[7636fcc] | 205 | static inline thread$ * unlock( fast_lock & this ) __attribute__((deprecated("use linear_backoff_then_block_lock instead"), artificial)); |
---|
[e84ab3d] | 206 | static inline thread$ * unlock( fast_lock & this ) { |
---|
[ddd473f] | 207 | /* paranoid */ verify(active_thread() == this.owner); |
---|
[f4ec5e45] | 208 | |
---|
[22b7579] | 209 | // open 'owner' before unlocking anyone |
---|
| 210 | // so new and unlocked threads don't park incorrectly. |
---|
[c7c178b] | 211 | // This may require additional fencing on ARM. |
---|
[22b7579] | 212 | this.owner = 0p; |
---|
[f4ec5e45] | 213 | |
---|
[198e335] | 214 | return V(this.sem); |
---|
[f4ec5e45] | 215 | } |
---|
| 216 | |
---|
[22b7579] | 217 | static inline size_t on_wait( fast_lock & this ) { unlock(this); return 0; } |
---|
| 218 | static inline void on_wakeup( fast_lock & this, size_t ) { lock(this); } |
---|
[e84ab3d] | 219 | static inline void on_notify( fast_lock &, struct thread$ * t ) { unpark(t); } |
---|
[f4ec5e45] | 220 | |
---|
| 221 | struct mcs_node { |
---|
| 222 | mcs_node * volatile next; |
---|
| 223 | single_sem sem; |
---|
| 224 | }; |
---|
| 225 | |
---|
[8f5576d5] | 226 | static inline void ?{}(mcs_node & this) { this.next = 0p; } |
---|
[f4ec5e45] | 227 | |
---|
| 228 | static inline mcs_node * volatile & ?`next ( mcs_node * node ) { |
---|
| 229 | return node->next; |
---|
| 230 | } |
---|
| 231 | |
---|
| 232 | struct mcs_lock { |
---|
| 233 | mcs_queue(mcs_node) queue; |
---|
| 234 | }; |
---|
| 235 | |
---|
| 236 | static inline void lock(mcs_lock & l, mcs_node & n) { |
---|
| 237 | if(push(l.queue, &n)) |
---|
| 238 | wait(n.sem); |
---|
| 239 | } |
---|
| 240 | |
---|
| 241 | static inline void unlock(mcs_lock & l, mcs_node & n) { |
---|
| 242 | mcs_node * next = advance(l.queue, &n); |
---|
| 243 | if(next) post(next->sem); |
---|
| 244 | } |
---|
| 245 | |
---|
[5a46e09] | 246 | struct linear_backoff_then_block_lock { |
---|
| 247 | // Spin lock used for mutual exclusion |
---|
| 248 | __spinlock_t spinlock; |
---|
| 249 | |
---|
| 250 | // Current thread owning the lock |
---|
[e84ab3d] | 251 | struct thread$ * owner; |
---|
[5a46e09] | 252 | |
---|
| 253 | // List of blocked threads |
---|
[e84ab3d] | 254 | dlist( thread$ ) blocked_threads; |
---|
[5a46e09] | 255 | |
---|
| 256 | // Used for comparing and exchanging |
---|
| 257 | volatile size_t lock_value; |
---|
| 258 | |
---|
| 259 | // used for linear backoff spinning |
---|
| 260 | int spin_start; |
---|
| 261 | int spin_end; |
---|
| 262 | int spin_count; |
---|
| 263 | |
---|
| 264 | // after unsuccessful linear backoff yield this many times |
---|
| 265 | int yield_count; |
---|
| 266 | }; |
---|
| 267 | |
---|
| 268 | static inline void ?{}( linear_backoff_then_block_lock & this, int spin_start, int spin_end, int spin_count, int yield_count ) { |
---|
| 269 | this.spinlock{}; |
---|
| 270 | this.blocked_threads{}; |
---|
| 271 | this.lock_value = 0; |
---|
| 272 | this.spin_start = spin_start; |
---|
| 273 | this.spin_end = spin_end; |
---|
| 274 | this.spin_count = spin_count; |
---|
| 275 | this.yield_count = yield_count; |
---|
| 276 | } |
---|
[55ad35c] | 277 | static inline void ?{}( linear_backoff_then_block_lock & this ) { this{4, 1024, 16, 0}; } |
---|
[5a46e09] | 278 | static inline void ^?{}( linear_backoff_then_block_lock & this ) {} |
---|
[eba9d27] | 279 | static inline void ?{}( linear_backoff_then_block_lock & this, linear_backoff_then_block_lock this2 ) = void; |
---|
| 280 | static inline void ?=?( linear_backoff_then_block_lock & this, linear_backoff_then_block_lock this2 ) = void; |
---|
[5a46e09] | 281 | |
---|
| 282 | static inline bool internal_try_lock(linear_backoff_then_block_lock & this, size_t & compare_val) with(this) { |
---|
| 283 | if (__atomic_compare_exchange_n(&lock_value, &compare_val, 1, false, __ATOMIC_ACQUIRE, __ATOMIC_RELAXED)) { |
---|
| 284 | owner = active_thread(); |
---|
| 285 | return true; |
---|
| 286 | } |
---|
| 287 | return false; |
---|
| 288 | } |
---|
| 289 | |
---|
| 290 | static inline bool try_lock(linear_backoff_then_block_lock & this) { size_t compare_val = 0; return internal_try_lock(this, compare_val); } |
---|
| 291 | |
---|
| 292 | static inline bool try_lock_contention(linear_backoff_then_block_lock & this) with(this) { |
---|
| 293 | if (__atomic_exchange_n(&lock_value, 2, __ATOMIC_ACQUIRE) == 0) { |
---|
| 294 | owner = active_thread(); |
---|
| 295 | return true; |
---|
| 296 | } |
---|
| 297 | return false; |
---|
| 298 | } |
---|
| 299 | |
---|
| 300 | static inline bool block(linear_backoff_then_block_lock & this) with(this) { |
---|
| 301 | lock( spinlock __cfaabi_dbg_ctx2 ); |
---|
| 302 | if (lock_value != 2) { |
---|
| 303 | unlock( spinlock ); |
---|
| 304 | return true; |
---|
| 305 | } |
---|
| 306 | insert_last( blocked_threads, *active_thread() ); |
---|
| 307 | unlock( spinlock ); |
---|
| 308 | park( ); |
---|
| 309 | return true; |
---|
| 310 | } |
---|
| 311 | |
---|
| 312 | static inline bool lock(linear_backoff_then_block_lock & this) with(this) { |
---|
| 313 | // if owner just return |
---|
| 314 | if (active_thread() == owner) return true; |
---|
| 315 | size_t compare_val = 0; |
---|
| 316 | int spin = spin_start; |
---|
| 317 | // linear backoff |
---|
| 318 | for( ;; ) { |
---|
| 319 | compare_val = 0; |
---|
| 320 | if (internal_try_lock(this, compare_val)) return true; |
---|
| 321 | if (2 == compare_val) break; |
---|
| 322 | for (int i = 0; i < spin; i++) Pause(); |
---|
| 323 | if (spin >= spin_end) break; |
---|
| 324 | spin += spin; |
---|
| 325 | } |
---|
| 326 | |
---|
[b7763da] | 327 | if(2 != compare_val && try_lock_contention(this)) return true; |
---|
| 328 | // block until signalled |
---|
| 329 | while (block(this)) if(try_lock_contention(this)) return true; |
---|
[e84ab3d] | 330 | |
---|
[b7763da] | 331 | // this should never be reached as block(this) always returns true |
---|
| 332 | return false; |
---|
| 333 | } |
---|
| 334 | |
---|
[5a46e09] | 335 | static inline void unlock(linear_backoff_then_block_lock & this) with(this) { |
---|
| 336 | verify(lock_value > 0); |
---|
| 337 | owner = 0p; |
---|
| 338 | if (__atomic_exchange_n(&lock_value, 0, __ATOMIC_RELEASE) == 1) return; |
---|
| 339 | lock( spinlock __cfaabi_dbg_ctx2 ); |
---|
[e84ab3d] | 340 | thread$ * t = &try_pop_front( blocked_threads ); |
---|
[5a46e09] | 341 | unlock( spinlock ); |
---|
| 342 | unpark( t ); |
---|
| 343 | } |
---|
| 344 | |
---|
[e84ab3d] | 345 | static inline void on_notify(linear_backoff_then_block_lock & this, struct thread$ * t ) { unpark(t); } |
---|
[dcad80a] | 346 | static inline size_t on_wait(linear_backoff_then_block_lock & this) { unlock(this); return 0; } |
---|
[bbe3719] | 347 | static inline void on_wakeup(linear_backoff_then_block_lock & this, size_t recursion ) { lock(this); } |
---|
[5a46e09] | 348 | |
---|
[ac5816d] | 349 | //----------------------------------------------------------------------------- |
---|
| 350 | // is_blocking_lock |
---|
[fd54fef] | 351 | trait is_blocking_lock(L & | sized(L)) { |
---|
[ac5816d] | 352 | // For synchronization locks to use when acquiring |
---|
[e84ab3d] | 353 | void on_notify( L &, struct thread$ * ); |
---|
[ac5816d] | 354 | |
---|
| 355 | // For synchronization locks to use when releasing |
---|
[22b7579] | 356 | size_t on_wait( L & ); |
---|
[ac5816d] | 357 | |
---|
| 358 | // to set recursion count after getting signalled; |
---|
[22b7579] | 359 | void on_wakeup( L &, size_t recursion ); |
---|
[ac5816d] | 360 | }; |
---|
[848439f] | 361 | |
---|
[ac5816d] | 362 | //----------------------------------------------------------------------------- |
---|
[82f4063] | 363 | // // info_thread |
---|
| 364 | // // the info thread is a wrapper around a thread used |
---|
| 365 | // // to store extra data for use in the condition variable |
---|
[fd54fef] | 366 | forall(L & | is_blocking_lock(L)) { |
---|
[ac5816d] | 367 | struct info_thread; |
---|
[c131a02] | 368 | |
---|
[82f4063] | 369 | // // for use by sequence |
---|
| 370 | // info_thread(L) *& Back( info_thread(L) * this ); |
---|
| 371 | // info_thread(L) *& Next( info_thread(L) * this ); |
---|
[848439f] | 372 | } |
---|
| 373 | |
---|
[ac5816d] | 374 | //----------------------------------------------------------------------------- |
---|
| 375 | // Synchronization Locks |
---|
[fd54fef] | 376 | forall(L & | is_blocking_lock(L)) { |
---|
[eeb5023] | 377 | struct condition_variable { |
---|
[848439f] | 378 | // Spin lock used for mutual exclusion |
---|
| 379 | __spinlock_t lock; |
---|
| 380 | |
---|
| 381 | // List of blocked threads |
---|
[82f4063] | 382 | dlist( info_thread(L) ) blocked_threads; |
---|
[848439f] | 383 | |
---|
| 384 | // Count of current blocked threads |
---|
| 385 | int count; |
---|
| 386 | }; |
---|
[e84ab3d] | 387 | |
---|
[848439f] | 388 | |
---|
[ac5816d] | 389 | void ?{}( condition_variable(L) & this ); |
---|
[848439f] | 390 | void ^?{}( condition_variable(L) & this ); |
---|
| 391 | |
---|
[eeb5023] | 392 | bool notify_one( condition_variable(L) & this ); |
---|
| 393 | bool notify_all( condition_variable(L) & this ); |
---|
[848439f] | 394 | |
---|
[eeb5023] | 395 | uintptr_t front( condition_variable(L) & this ); |
---|
[848439f] | 396 | |
---|
[ac5816d] | 397 | bool empty ( condition_variable(L) & this ); |
---|
| 398 | int counter( condition_variable(L) & this ); |
---|
[848439f] | 399 | |
---|
[eeb5023] | 400 | void wait( condition_variable(L) & this ); |
---|
| 401 | void wait( condition_variable(L) & this, uintptr_t info ); |
---|
[dff1fd1] | 402 | bool wait( condition_variable(L) & this, Duration duration ); |
---|
| 403 | bool wait( condition_variable(L) & this, uintptr_t info, Duration duration ); |
---|
[848439f] | 404 | |
---|
[eeb5023] | 405 | void wait( condition_variable(L) & this, L & l ); |
---|
| 406 | void wait( condition_variable(L) & this, L & l, uintptr_t info ); |
---|
[dff1fd1] | 407 | bool wait( condition_variable(L) & this, L & l, Duration duration ); |
---|
| 408 | bool wait( condition_variable(L) & this, L & l, uintptr_t info, Duration duration ); |
---|
[f4ec5e45] | 409 | } |
---|