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| Rev | Author | Line No. | Line |
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| 1 | jermar | 1 | /* |
| 2071 | jermar | 2 | * Copyright (c) 2001-2004 Jakub Jermar |
| 1 | jermar | 3 | * All rights reserved. |
| 4 | * |
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| 5 | * Redistribution and use in source and binary forms, with or without |
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| 6 | * modification, are permitted provided that the following conditions |
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| 7 | * are met: |
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| 8 | * |
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| 9 | * - Redistributions of source code must retain the above copyright |
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| 10 | * notice, this list of conditions and the following disclaimer. |
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| 11 | * - Redistributions in binary form must reproduce the above copyright |
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| 12 | * notice, this list of conditions and the following disclaimer in the |
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| 13 | * documentation and/or other materials provided with the distribution. |
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| 14 | * - The name of the author may not be used to endorse or promote products |
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| 15 | * derived from this software without specific prior written permission. |
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| 16 | * |
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| 17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR |
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| 18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES |
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| 19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. |
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| 20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, |
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| 21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT |
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| 22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, |
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| 23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY |
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| 24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
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| 25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF |
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| 26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
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| 27 | */ |
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| 28 | |||
| 1757 | jermar | 29 | /** @addtogroup sync |
| 1702 | cejka | 30 | * @{ |
| 31 | */ |
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| 32 | |||
| 1248 | jermar | 33 | /** |
| 1702 | cejka | 34 | * @file |
| 1248 | jermar | 35 | * @brief Wait queue. |
| 36 | * |
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| 1288 | jermar | 37 | * Wait queue is the basic synchronization primitive upon which all |
| 1248 | jermar | 38 | * other synchronization primitives build. |
| 39 | * |
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| 40 | * It allows threads to wait for an event in first-come, first-served |
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| 41 | * fashion. Conditional operation as well as timeouts and interruptions |
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| 42 | * are supported. |
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| 43 | */ |
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| 44 | |||
| 382 | jermar | 45 | #include <synch/waitq.h> |
| 1 | jermar | 46 | #include <synch/synch.h> |
| 47 | #include <synch/spinlock.h> |
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| 382 | jermar | 48 | #include <proc/thread.h> |
| 414 | jermar | 49 | #include <proc/scheduler.h> |
| 1 | jermar | 50 | #include <arch/asm.h> |
| 51 | #include <arch/types.h> |
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| 382 | jermar | 52 | #include <time/timeout.h> |
| 1 | jermar | 53 | #include <arch.h> |
| 382 | jermar | 54 | #include <context.h> |
| 788 | jermar | 55 | #include <adt/list.h> |
| 1 | jermar | 56 | |
| 1156 | jermar | 57 | static void waitq_timeouted_sleep(void *data); |
| 58 | |||
| 382 | jermar | 59 | /** Initialize wait queue |
| 60 | * |
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| 61 | * Initialize wait queue. |
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| 62 | * |
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| 63 | * @param wq Pointer to wait queue to be initialized. |
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| 64 | */ |
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| 1 | jermar | 65 | void waitq_initialize(waitq_t *wq) |
| 66 | { |
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| 552 | palkovsky | 67 | spinlock_initialize(&wq->lock, "waitq_lock"); |
| 1 | jermar | 68 | list_initialize(&wq->head); |
| 69 | wq->missed_wakeups = 0; |
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| 70 | } |
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| 71 | |||
| 382 | jermar | 72 | /** Handle timeout during waitq_sleep_timeout() call |
| 1 | jermar | 73 | * |
| 382 | jermar | 74 | * This routine is called when waitq_sleep_timeout() timeouts. |
| 75 | * Interrupts are disabled. |
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| 76 | * |
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| 77 | * It is supposed to try to remove 'its' thread from the wait queue; |
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| 78 | * it can eventually fail to achieve this goal when these two events |
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| 79 | * overlap. In that case it behaves just as though there was no |
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| 80 | * timeout at all. |
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| 81 | * |
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| 82 | * @param data Pointer to the thread that called waitq_sleep_timeout(). |
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| 1 | jermar | 83 | */ |
| 1156 | jermar | 84 | void waitq_timeouted_sleep(void *data) |
| 1 | jermar | 85 | { |
| 86 | thread_t *t = (thread_t *) data; |
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| 87 | waitq_t *wq; |
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| 557 | jermar | 88 | bool do_wakeup = false; |
| 1 | jermar | 89 | |
| 90 | spinlock_lock(&threads_lock); |
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| 1158 | jermar | 91 | if (!thread_exists(t)) |
| 1 | jermar | 92 | goto out; |
| 93 | |||
| 94 | grab_locks: |
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| 95 | spinlock_lock(&t->lock); |
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| 615 | palkovsky | 96 | if ((wq = t->sleep_queue)) { /* assignment */ |
| 1 | jermar | 97 | if (!spinlock_trylock(&wq->lock)) { |
| 98 | spinlock_unlock(&t->lock); |
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| 557 | jermar | 99 | goto grab_locks; /* avoid deadlock */ |
| 1 | jermar | 100 | } |
| 101 | |||
| 102 | list_remove(&t->wq_link); |
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| 103 | t->saved_context = t->sleep_timeout_context; |
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| 557 | jermar | 104 | do_wakeup = true; |
| 1681 | jermar | 105 | t->sleep_queue = NULL; |
| 1 | jermar | 106 | spinlock_unlock(&wq->lock); |
| 107 | } |
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| 108 | |||
| 557 | jermar | 109 | t->timeout_pending = false; |
| 1 | jermar | 110 | spinlock_unlock(&t->lock); |
| 111 | |||
| 557 | jermar | 112 | if (do_wakeup) |
| 113 | thread_ready(t); |
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| 1 | jermar | 114 | |
| 115 | out: |
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| 116 | spinlock_unlock(&threads_lock); |
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| 117 | } |
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| 118 | |||
| 1156 | jermar | 119 | |
| 120 | /** Sleep until either wakeup, timeout or interruption occurs |
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| 121 | * |
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| 1502 | jermar | 122 | * This is a sleep implementation which allows itself to time out or to be |
| 1 | jermar | 123 | * interrupted from the sleep, restoring a failover context. |
| 124 | * |
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| 1375 | jermar | 125 | * Sleepers are organised in a FIFO fashion in a structure called wait queue. |
| 382 | jermar | 126 | * |
| 1 | jermar | 127 | * This function is really basic in that other functions as waitq_sleep() |
| 128 | * and all the *_timeout() functions use it. |
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| 129 | * |
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| 382 | jermar | 130 | * @param wq Pointer to wait queue. |
| 404 | jermar | 131 | * @param usec Timeout in microseconds. |
| 1502 | jermar | 132 | * @param flags Specify mode of the sleep. |
| 1 | jermar | 133 | * |
| 1502 | jermar | 134 | * The sleep can be interrupted only if the |
| 135 | * SYNCH_FLAGS_INTERRUPTIBLE bit is specified in flags. |
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| 2087 | jermar | 136 | * |
| 1502 | jermar | 137 | * If usec is greater than zero, regardless of the value of the |
| 2067 | jermar | 138 | * SYNCH_FLAGS_NON_BLOCKING bit in flags, the call will not return until either |
| 139 | * timeout, interruption or wakeup comes. |
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| 382 | jermar | 140 | * |
| 2067 | jermar | 141 | * If usec is zero and the SYNCH_FLAGS_NON_BLOCKING bit is not set in flags, |
| 142 | * the call will not return until wakeup or interruption comes. |
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| 1 | jermar | 143 | * |
| 2067 | jermar | 144 | * If usec is zero and the SYNCH_FLAGS_NON_BLOCKING bit is set in flags, the |
| 145 | * call will immediately return, reporting either success or failure. |
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| 404 | jermar | 146 | * |
| 2067 | jermar | 147 | * @return One of: ESYNCH_WOULD_BLOCK, ESYNCH_TIMEOUT, ESYNCH_INTERRUPTED, |
| 148 | * ESYNCH_OK_ATOMIC, ESYNCH_OK_BLOCKED. |
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| 382 | jermar | 149 | * |
| 2067 | jermar | 150 | * @li ESYNCH_WOULD_BLOCK means that the sleep failed because at the time of the |
| 151 | * call there was no pending wakeup. |
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| 382 | jermar | 152 | * |
| 1248 | jermar | 153 | * @li ESYNCH_TIMEOUT means that the sleep timed out. |
| 404 | jermar | 154 | * |
| 1248 | jermar | 155 | * @li ESYNCH_INTERRUPTED means that somebody interrupted the sleeping thread. |
| 1156 | jermar | 156 | * |
| 1248 | jermar | 157 | * @li ESYNCH_OK_ATOMIC means that the sleep succeeded and that there was |
| 404 | jermar | 158 | * a pending wakeup at the time of the call. The caller was not put |
| 159 | * asleep at all. |
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| 160 | * |
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| 1248 | jermar | 161 | * @li ESYNCH_OK_BLOCKED means that the sleep succeeded; the full sleep was |
| 404 | jermar | 162 | * attempted. |
| 1 | jermar | 163 | */ |
| 1780 | jermar | 164 | int waitq_sleep_timeout(waitq_t *wq, uint32_t usec, int flags) |
| 1 | jermar | 165 | { |
| 1375 | jermar | 166 | ipl_t ipl; |
| 167 | int rc; |
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| 1 | jermar | 168 | |
| 1375 | jermar | 169 | ipl = waitq_sleep_prepare(wq); |
| 1502 | jermar | 170 | rc = waitq_sleep_timeout_unsafe(wq, usec, flags); |
| 1375 | jermar | 171 | waitq_sleep_finish(wq, rc, ipl); |
| 172 | return rc; |
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| 173 | } |
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| 174 | |||
| 175 | /** Prepare to sleep in a waitq. |
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| 176 | * |
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| 177 | * This function will return holding the lock of the wait queue |
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| 178 | * and interrupts disabled. |
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| 179 | * |
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| 180 | * @param wq Wait queue. |
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| 181 | * |
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| 182 | * @return Interrupt level as it existed on entry to this function. |
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| 183 | */ |
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| 184 | ipl_t waitq_sleep_prepare(waitq_t *wq) |
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| 185 | { |
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| 186 | ipl_t ipl; |
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| 1 | jermar | 187 | |
| 188 | restart: |
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| 413 | jermar | 189 | ipl = interrupts_disable(); |
| 1375 | jermar | 190 | |
| 1467 | jermar | 191 | if (THREAD) { /* needed during system initiailzation */ |
| 192 | /* |
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| 193 | * Busy waiting for a delayed timeout. |
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| 194 | * This is an important fix for the race condition between |
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| 195 | * a delayed timeout and a next call to waitq_sleep_timeout(). |
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| 196 | * Simply, the thread is not allowed to go to sleep if |
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| 197 | * there are timeouts in progress. |
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| 198 | */ |
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| 199 | spinlock_lock(&THREAD->lock); |
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| 200 | if (THREAD->timeout_pending) { |
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| 201 | spinlock_unlock(&THREAD->lock); |
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| 202 | interrupts_restore(ipl); |
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| 203 | goto restart; |
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| 204 | } |
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| 15 | jermar | 205 | spinlock_unlock(&THREAD->lock); |
| 1 | jermar | 206 | } |
| 1375 | jermar | 207 | |
| 1 | jermar | 208 | spinlock_lock(&wq->lock); |
| 1375 | jermar | 209 | return ipl; |
| 210 | } |
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| 211 | |||
| 212 | /** Finish waiting in a wait queue. |
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| 213 | * |
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| 214 | * This function restores interrupts to the state that existed prior |
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| 215 | * to the call to waitq_sleep_prepare(). If necessary, the wait queue |
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| 216 | * lock is released. |
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| 217 | * |
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| 218 | * @param wq Wait queue. |
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| 219 | * @param rc Return code of waitq_sleep_timeout_unsafe(). |
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| 220 | * @param ipl Interrupt level returned by waitq_sleep_prepare(). |
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| 221 | */ |
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| 222 | void waitq_sleep_finish(waitq_t *wq, int rc, ipl_t ipl) |
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| 223 | { |
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| 224 | switch (rc) { |
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| 225 | case ESYNCH_WOULD_BLOCK: |
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| 226 | case ESYNCH_OK_ATOMIC: |
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| 227 | spinlock_unlock(&wq->lock); |
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| 228 | break; |
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| 229 | default: |
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| 230 | break; |
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| 231 | } |
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| 232 | interrupts_restore(ipl); |
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| 233 | } |
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| 234 | |||
| 235 | /** Internal implementation of waitq_sleep_timeout(). |
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| 236 | * |
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| 237 | * This function implements logic of sleeping in a wait queue. |
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| 238 | * This call must be preceeded by a call to waitq_sleep_prepare() |
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| 239 | * and followed by a call to waitq_slee_finish(). |
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| 240 | * |
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| 241 | * @param wq See waitq_sleep_timeout(). |
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| 242 | * @param usec See waitq_sleep_timeout(). |
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| 1502 | jermar | 243 | * @param flags See waitq_sleep_timeout(). |
| 1375 | jermar | 244 | * |
| 245 | * @return See waitq_sleep_timeout(). |
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| 246 | */ |
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| 1780 | jermar | 247 | int waitq_sleep_timeout_unsafe(waitq_t *wq, uint32_t usec, int flags) |
| 1375 | jermar | 248 | { |
| 1 | jermar | 249 | /* checks whether to go to sleep at all */ |
| 250 | if (wq->missed_wakeups) { |
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| 251 | wq->missed_wakeups--; |
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| 252 | return ESYNCH_OK_ATOMIC; |
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| 253 | } |
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| 254 | else { |
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| 1502 | jermar | 255 | if ((flags & SYNCH_FLAGS_NON_BLOCKING) && (usec == 0)) { |
| 1 | jermar | 256 | /* return immediatelly instead of going to sleep */ |
| 257 | return ESYNCH_WOULD_BLOCK; |
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| 258 | } |
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| 259 | } |
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| 260 | |||
| 261 | /* |
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| 262 | * Now we are firmly decided to go to sleep. |
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| 263 | */ |
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| 15 | jermar | 264 | spinlock_lock(&THREAD->lock); |
| 1156 | jermar | 265 | |
| 1580 | jermar | 266 | if (flags & SYNCH_FLAGS_INTERRUPTIBLE) { |
| 1579 | jermar | 267 | |
| 1502 | jermar | 268 | /* |
| 1580 | jermar | 269 | * If the thread was already interrupted, |
| 270 | * don't go to sleep at all. |
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| 271 | */ |
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| 272 | if (THREAD->interrupted) { |
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| 273 | spinlock_unlock(&THREAD->lock); |
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| 274 | spinlock_unlock(&wq->lock); |
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| 275 | return ESYNCH_INTERRUPTED; |
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| 276 | } |
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| 277 | |||
| 278 | /* |
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| 1502 | jermar | 279 | * Set context that will be restored if the sleep |
| 280 | * of this thread is ever interrupted. |
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| 281 | */ |
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| 282 | THREAD->sleep_interruptible = true; |
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| 283 | if (!context_save(&THREAD->sleep_interruption_context)) { |
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| 284 | /* Short emulation of scheduler() return code. */ |
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| 285 | spinlock_unlock(&THREAD->lock); |
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| 286 | return ESYNCH_INTERRUPTED; |
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| 287 | } |
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| 1580 | jermar | 288 | |
| 1502 | jermar | 289 | } else { |
| 290 | THREAD->sleep_interruptible = false; |
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| 1156 | jermar | 291 | } |
| 292 | |||
| 1 | jermar | 293 | if (usec) { |
| 294 | /* We use the timeout variant. */ |
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| 15 | jermar | 295 | if (!context_save(&THREAD->sleep_timeout_context)) { |
| 1156 | jermar | 296 | /* Short emulation of scheduler() return code. */ |
| 15 | jermar | 297 | spinlock_unlock(&THREAD->lock); |
| 1 | jermar | 298 | return ESYNCH_TIMEOUT; |
| 299 | } |
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| 557 | jermar | 300 | THREAD->timeout_pending = true; |
| 2067 | jermar | 301 | timeout_register(&THREAD->sleep_timeout, (uint64_t) usec, |
| 2087 | jermar | 302 | waitq_timeouted_sleep, THREAD); |
| 1 | jermar | 303 | } |
| 304 | |||
| 15 | jermar | 305 | list_append(&THREAD->wq_link, &wq->head); |
| 1 | jermar | 306 | |
| 307 | /* |
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| 308 | * Suspend execution. |
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| 309 | */ |
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| 15 | jermar | 310 | THREAD->state = Sleeping; |
| 311 | THREAD->sleep_queue = wq; |
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| 1 | jermar | 312 | |
| 15 | jermar | 313 | spinlock_unlock(&THREAD->lock); |
| 1 | jermar | 314 | |
| 2067 | jermar | 315 | /* wq->lock is released in scheduler_separated_stack() */ |
| 316 | scheduler(); |
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| 1 | jermar | 317 | |
| 318 | return ESYNCH_OK_BLOCKED; |
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| 319 | } |
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| 320 | |||
| 321 | |||
| 382 | jermar | 322 | /** Wake up first thread sleeping in a wait queue |
| 323 | * |
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| 2067 | jermar | 324 | * Wake up first thread sleeping in a wait queue. This is the SMP- and IRQ-safe |
| 325 | * wrapper meant for general use. |
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| 382 | jermar | 326 | * |
| 2067 | jermar | 327 | * Besides its 'normal' wakeup operation, it attempts to unregister possible |
| 328 | * timeout. |
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| 382 | jermar | 329 | * |
| 330 | * @param wq Pointer to wait queue. |
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| 2067 | jermar | 331 | * @param all If this is non-zero, all sleeping threads will be woken up and |
| 332 | * missed count will be zeroed. |
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| 1 | jermar | 333 | */ |
| 557 | jermar | 334 | void waitq_wakeup(waitq_t *wq, bool all) |
| 1 | jermar | 335 | { |
| 413 | jermar | 336 | ipl_t ipl; |
| 1 | jermar | 337 | |
| 413 | jermar | 338 | ipl = interrupts_disable(); |
| 1 | jermar | 339 | spinlock_lock(&wq->lock); |
| 340 | |||
| 341 | _waitq_wakeup_unsafe(wq, all); |
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| 342 | |||
| 343 | spinlock_unlock(&wq->lock); |
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| 413 | jermar | 344 | interrupts_restore(ipl); |
| 1 | jermar | 345 | } |
| 346 | |||
| 382 | jermar | 347 | /** Internal SMP- and IRQ-unsafe version of waitq_wakeup() |
| 348 | * |
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| 2067 | jermar | 349 | * This is the internal SMP- and IRQ-unsafe version of waitq_wakeup(). It |
| 350 | * assumes wq->lock is already locked and interrupts are already disabled. |
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| 382 | jermar | 351 | * |
| 352 | * @param wq Pointer to wait queue. |
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| 2067 | jermar | 353 | * @param all If this is non-zero, all sleeping threads will be woken up and |
| 354 | * missed count will be zeroed. |
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| 1 | jermar | 355 | */ |
| 557 | jermar | 356 | void _waitq_wakeup_unsafe(waitq_t *wq, bool all) |
| 1 | jermar | 357 | { |
| 358 | thread_t *t; |
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| 359 | |||
| 360 | loop: |
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| 361 | if (list_empty(&wq->head)) { |
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| 362 | wq->missed_wakeups++; |
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| 557 | jermar | 363 | if (all) |
| 364 | wq->missed_wakeups = 0; |
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| 1 | jermar | 365 | return; |
| 366 | } |
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| 367 | |||
| 368 | t = list_get_instance(wq->head.next, thread_t, wq_link); |
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| 369 | |||
| 1681 | jermar | 370 | /* |
| 371 | * Lock the thread prior to removing it from the wq. |
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| 372 | * This is not necessary because of mutual exclusion |
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| 373 | * (the link belongs to the wait queue), but because |
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| 374 | * of synchronization with waitq_timeouted_sleep() |
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| 2089 | decky | 375 | * and thread_interrupt_sleep(). |
| 1681 | jermar | 376 | * |
| 377 | * In order for these two functions to work, the following |
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| 378 | * invariant must hold: |
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| 379 | * |
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| 380 | * t->sleep_queue != NULL <=> t sleeps in a wait queue |
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| 381 | * |
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| 382 | * For an observer who locks the thread, the invariant |
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| 383 | * holds only when the lock is held prior to removing |
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| 384 | * it from the wait queue. |
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| 385 | */ |
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| 386 | spinlock_lock(&t->lock); |
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| 1 | jermar | 387 | list_remove(&t->wq_link); |
| 1681 | jermar | 388 | |
| 1 | jermar | 389 | if (t->timeout_pending && timeout_unregister(&t->sleep_timeout)) |
| 557 | jermar | 390 | t->timeout_pending = false; |
| 1 | jermar | 391 | t->sleep_queue = NULL; |
| 392 | spinlock_unlock(&t->lock); |
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| 393 | |||
| 394 | thread_ready(t); |
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| 395 | |||
| 557 | jermar | 396 | if (all) |
| 397 | goto loop; |
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| 1 | jermar | 398 | } |
| 1702 | cejka | 399 | |
| 1757 | jermar | 400 | /** @} |
| 1702 | cejka | 401 | */ |