|
|
| version 1.5.2.2, 2012/05/03 15:05:09 | version 1.8.2.1, 2012/06/29 13:39:54 |
|---|---|
| Line 118 sched_hook_cancel(void *task, void *arg __unused) | Line 118 sched_hook_cancel(void *task, void *arg __unused) |
| #else | #else |
| EV_SET(&chg[0], TASK_FD(t), EVFILT_READ, EV_DELETE, 0, 0, (void*) TASK_FD(t)); | EV_SET(&chg[0], TASK_FD(t), EVFILT_READ, EV_DELETE, 0, 0, (void*) TASK_FD(t)); |
| #endif | #endif |
| kevent(TASK_ROOT(t)->root_kq, chg, 1, NULL, 0, &timeout); | |
| break; | break; |
| case taskWRITE: | case taskWRITE: |
| #ifdef __NetBSD__ | #ifdef __NetBSD__ |
| Line 126 sched_hook_cancel(void *task, void *arg __unused) | Line 125 sched_hook_cancel(void *task, void *arg __unused) |
| #else | #else |
| EV_SET(&chg[0], TASK_FD(t), EVFILT_WRITE, EV_DELETE, 0, 0, (void*) TASK_FD(t)); | EV_SET(&chg[0], TASK_FD(t), EVFILT_WRITE, EV_DELETE, 0, 0, (void*) TASK_FD(t)); |
| #endif | #endif |
| kevent(TASK_ROOT(t)->root_kq, chg, 1, NULL, 0, &timeout); | |
| break; | break; |
| default: | case taskALARM: |
| #ifdef __NetBSD__ | |
| EV_SET(&chg[0], (uintptr_t) TASK_DATA(t), EVFILT_TIMER, EV_DELETE, | |
| 0, 0, (intptr_t) TASK_DATA(t)); | |
| #else | |
| EV_SET(&chg[0], (uintptr_t) TASK_DATA(t), EVFILT_TIMER, EV_DELETE, | |
| 0, 0, (void*) TASK_DATA(t)); | |
| #endif | |
| break; | break; |
| case taskNODE: | |
| #ifdef __NetBSD__ | |
| EV_SET(&chg[0], TASK_FD(t), EVFILT_VNODE, EV_DELETE, 0, 0, (intptr_t) TASK_FD(t)); | |
| #else | |
| EV_SET(&chg[0], TASK_FD(t), EVFILT_VNODE, EV_DELETE, 0, 0, (void*) TASK_FD(t)); | |
| #endif | |
| break; | |
| case taskPROC: | |
| #ifdef __NetBSD__ | |
| EV_SET(&chg[0], TASK_VAL(t), EVFILT_PROC, EV_DELETE, 0, 0, (intptr_t) TASK_VAL(t)); | |
| #else | |
| EV_SET(&chg[0], TASK_VAL(t), EVFILT_PROC, EV_DELETE, 0, 0, (void*) TASK_VAL(t)); | |
| #endif | |
| break; | |
| case taskSIGNAL: | |
| #ifdef __NetBSD__ | |
| EV_SET(&chg[0], TASK_VAL(t), EVFILT_SIGNAL, EV_DELETE, 0, 0, (intptr_t) TASK_VAL(t)); | |
| #else | |
| EV_SET(&chg[0], TASK_VAL(t), EVFILT_SIGNAL, EV_DELETE, 0, 0, (void*) TASK_VAL(t)); | |
| #endif | |
| break; | |
| #ifdef EVFILT_USER | |
| case taskUSER: | |
| #ifdef __NetBSD__ | |
| EV_SET(&chg[0], TASK_VAL(t), EVFILT_USER, EV_DELETE, 0, 0, (intptr_t) TASK_VAL(t)); | |
| #else | |
| EV_SET(&chg[0], TASK_VAL(t), EVFILT_USER, EV_DELETE, 0, 0, (void*) TASK_VAL(t)); | |
| #endif | |
| #endif | |
| break; | |
| default: | |
| return NULL; | |
| } | } |
| kevent(TASK_ROOT(t)->root_kq, chg, 1, NULL, 0, &timeout); | |
| return NULL; | return NULL; |
| } | } |
| Line 153 sched_hook_read(void *task, void *arg __unused) | Line 191 sched_hook_read(void *task, void *arg __unused) |
| return (void*) -1; | return (void*) -1; |
| #ifdef __NetBSD__ | #ifdef __NetBSD__ |
| EV_SET(&chg[0], TASK_FD(t), EVFILT_READ, EV_ADD, 0, 0, (intptr_t) TASK_FD(t)); | EV_SET(&chg[0], TASK_FD(t), EVFILT_READ, EV_ADD | EV_CLEAR, 0, 0, (intptr_t) TASK_FD(t)); |
| #else | #else |
| EV_SET(&chg[0], TASK_FD(t), EVFILT_READ, EV_ADD, 0, 0, (void*) TASK_FD(t)); | EV_SET(&chg[0], TASK_FD(t), EVFILT_READ, EV_ADD | EV_CLEAR, 0, 0, (void*) TASK_FD(t)); |
| #endif | #endif |
| if (kevent(TASK_ROOT(t)->root_kq, chg, 1, NULL, 0, &timeout) == -1) { | if (kevent(TASK_ROOT(t)->root_kq, chg, 1, NULL, 0, &timeout) == -1) { |
| if (TASK_ROOT(t)->root_hooks.hook_exec.exception) | if (TASK_ROOT(t)->root_hooks.hook_exec.exception) |
| Line 186 sched_hook_write(void *task, void *arg __unused) | Line 224 sched_hook_write(void *task, void *arg __unused) |
| return (void*) -1; | return (void*) -1; |
| #ifdef __NetBSD__ | #ifdef __NetBSD__ |
| EV_SET(&chg[0], TASK_FD(t), EVFILT_WRITE, EV_ADD, 0, 0, (intptr_t) TASK_FD(t)); | EV_SET(&chg[0], TASK_FD(t), EVFILT_WRITE, EV_ADD | EV_CLEAR, 0, 0, (intptr_t) TASK_FD(t)); |
| #else | #else |
| EV_SET(&chg[0], TASK_FD(t), EVFILT_WRITE, EV_ADD, 0, 0, (void*) TASK_FD(t)); | EV_SET(&chg[0], TASK_FD(t), EVFILT_WRITE, EV_ADD | EV_CLEAR, 0, 0, (void*) TASK_FD(t)); |
| #endif | #endif |
| if (kevent(TASK_ROOT(t)->root_kq, chg, 1, NULL, 0, &timeout) == -1) { | if (kevent(TASK_ROOT(t)->root_kq, chg, 1, NULL, 0, &timeout) == -1) { |
| if (TASK_ROOT(t)->root_hooks.hook_exec.exception) | if (TASK_ROOT(t)->root_hooks.hook_exec.exception) |
| Line 202 sched_hook_write(void *task, void *arg __unused) | Line 240 sched_hook_write(void *task, void *arg __unused) |
| } | } |
| /* | /* |
| * sched_hook_alarm() - Default ALARM hook | |
| * | |
| * @task = current task | |
| * @arg = unused | |
| * return: <0 errors and 0 ok | |
| */ | |
| void * | |
| sched_hook_alarm(void *task, void *arg __unused) | |
| { | |
| sched_task_t *t = task; | |
| struct kevent chg[1]; | |
| struct timespec timeout = { 0, 0 }; | |
| if (!t || !TASK_ROOT(t)) | |
| return (void*) -1; | |
| #ifdef __NetBSD__ | |
| EV_SET(&chg[0], (uintptr_t) TASK_DATA(t), EVFILT_TIMER, EV_ADD | EV_ONESHOT, 0, | |
| t->task_val.ts.tv_sec * 1000 + t->task_val.ts.tv_nsec / 1000000, | |
| (intptr_t) TASK_DATA(t)); | |
| #else | |
| EV_SET(&chg[0], (uintptr_t) TASK_DATA(t), EVFILT_TIMER, EV_ADD | EV_ONESHOT, 0, | |
| t->task_val.ts.tv_sec * 1000 + t->task_val.ts.tv_nsec / 1000000, | |
| (void*) TASK_DATA(t)); | |
| #endif | |
| if (kevent(TASK_ROOT(t)->root_kq, chg, 1, NULL, 0, &timeout) == -1) { | |
| if (TASK_ROOT(t)->root_hooks.hook_exec.exception) | |
| TASK_ROOT(t)->root_hooks.hook_exec.exception(TASK_ROOT(t), NULL); | |
| else | |
| LOGERR; | |
| return (void*) -1; | |
| } | |
| return NULL; | |
| } | |
| /* | |
| * sched_hook_node() - Default NODE hook | |
| * | |
| * @task = current task | |
| * @arg = unused | |
| * return: <0 errors and 0 ok | |
| */ | |
| void * | |
| sched_hook_node(void *task, void *arg __unused) | |
| { | |
| sched_task_t *t = task; | |
| struct kevent chg[1]; | |
| struct timespec timeout = { 0, 0 }; | |
| if (!t || !TASK_ROOT(t)) | |
| return (void*) -1; | |
| #ifdef __NetBSD__ | |
| EV_SET(&chg[0], TASK_FD(t), EVFILT_VNODE, EV_ADD | EV_CLEAR, | |
| NOTE_DELETE | NOTE_WRITE | NOTE_EXTEND | NOTE_ATTRIB | | |
| NOTE_LINK | NOTE_RENAME | NOTE_REVOKE, 0, (intptr_t) TASK_FD(t)); | |
| #else | |
| EV_SET(&chg[0], TASK_FD(t), EVFILT_VNODE, EV_ADD | EV_CLEAR, | |
| NOTE_DELETE | NOTE_WRITE | NOTE_EXTEND | NOTE_ATTRIB | | |
| NOTE_LINK | NOTE_RENAME | NOTE_REVOKE, 0, (void*) TASK_FD(t)); | |
| #endif | |
| if (kevent(TASK_ROOT(t)->root_kq, chg, 1, NULL, 0, &timeout) == -1) { | |
| if (TASK_ROOT(t)->root_hooks.hook_exec.exception) | |
| TASK_ROOT(t)->root_hooks.hook_exec.exception(TASK_ROOT(t), NULL); | |
| else | |
| LOGERR; | |
| return (void*) -1; | |
| } | |
| return NULL; | |
| } | |
| /* | |
| * sched_hook_proc() - Default PROC hook | |
| * | |
| * @task = current task | |
| * @arg = unused | |
| * return: <0 errors and 0 ok | |
| */ | |
| void * | |
| sched_hook_proc(void *task, void *arg __unused) | |
| { | |
| sched_task_t *t = task; | |
| struct kevent chg[1]; | |
| struct timespec timeout = { 0, 0 }; | |
| if (!t || !TASK_ROOT(t)) | |
| return (void*) -1; | |
| #ifdef __NetBSD__ | |
| EV_SET(&chg[0], TASK_VAL(t), EVFILT_PROC, EV_ADD | EV_CLEAR, | |
| NOTE_EXIT | NOTE_FORK | NOTE_EXEC | NOTE_TRACK, 0, (intptr_t) TASK_VAL(t)); | |
| #else | |
| EV_SET(&chg[0], TASK_VAL(t), EVFILT_PROC, EV_ADD | EV_CLEAR, | |
| NOTE_EXIT | NOTE_FORK | NOTE_EXEC | NOTE_TRACK, 0, (void*) TASK_VAL(t)); | |
| #endif | |
| if (kevent(TASK_ROOT(t)->root_kq, chg, 1, NULL, 0, &timeout) == -1) { | |
| if (TASK_ROOT(t)->root_hooks.hook_exec.exception) | |
| TASK_ROOT(t)->root_hooks.hook_exec.exception(TASK_ROOT(t), NULL); | |
| else | |
| LOGERR; | |
| return (void*) -1; | |
| } | |
| return NULL; | |
| } | |
| /* | |
| * sched_hook_signal() - Default SIGNAL hook | |
| * | |
| * @task = current task | |
| * @arg = unused | |
| * return: <0 errors and 0 ok | |
| */ | |
| void * | |
| sched_hook_signal(void *task, void *arg __unused) | |
| { | |
| sched_task_t *t = task; | |
| struct kevent chg[1]; | |
| struct timespec timeout = { 0, 0 }; | |
| if (!t || !TASK_ROOT(t)) | |
| return (void*) -1; | |
| #ifdef __NetBSD__ | |
| EV_SET(&chg[0], TASK_VAL(t), EVFILT_SIGNAL, EV_ADD, 0, 0, (intptr_t) TASK_VAL(t)); | |
| #else | |
| EV_SET(&chg[0], TASK_VAL(t), EVFILT_SIGNAL, EV_ADD, 0, 0, (void*) TASK_VAL(t)); | |
| #endif | |
| if (kevent(TASK_ROOT(t)->root_kq, chg, 1, NULL, 0, &timeout) == -1) { | |
| if (TASK_ROOT(t)->root_hooks.hook_exec.exception) | |
| TASK_ROOT(t)->root_hooks.hook_exec.exception(TASK_ROOT(t), NULL); | |
| else | |
| LOGERR; | |
| return (void*) -1; | |
| } | |
| return NULL; | |
| } | |
| /* | |
| * sched_hook_user() - Default USER hook | |
| * | |
| * @task = current task | |
| * @arg = unused | |
| * return: <0 errors and 0 ok | |
| */ | |
| #ifdef EVFILT_USER | |
| void * | |
| sched_hook_user(void *task, void *arg __unused) | |
| { | |
| sched_task_t *t = task; | |
| struct kevent chg[1]; | |
| struct timespec timeout = { 0, 0 }; | |
| if (!t || !TASK_ROOT(t)) | |
| return (void*) -1; | |
| #ifdef __NetBSD__ | |
| EV_SET(&chg[0], TASK_VAL(t), EVFILT_USER, EV_ADD | EV_CLEAR, TASK_DATLEN(t), | |
| 0, (intptr_t) TASK_VAL(t)); | |
| #else | |
| EV_SET(&chg[0], TASK_VAL(t), EVFILT_USER, EV_ADD | EV_CLEAR, TASK_DATLEN(t), | |
| 0, (void*) TASK_VAL(t)); | |
| #endif | |
| if (kevent(TASK_ROOT(t)->root_kq, chg, 1, NULL, 0, &timeout) == -1) { | |
| if (TASK_ROOT(t)->root_hooks.hook_exec.exception) | |
| TASK_ROOT(t)->root_hooks.hook_exec.exception(TASK_ROOT(t), NULL); | |
| else | |
| LOGERR; | |
| return (void*) -1; | |
| } | |
| return NULL; | |
| } | |
| #endif | |
| /* | |
| * sched_hook_fetch() - Default FETCH hook | * sched_hook_fetch() - Default FETCH hook |
| * | * |
| * @root = root task | * @root = root task |
| Line 212 void * | Line 429 void * |
| sched_hook_fetch(void *root, void *arg __unused) | sched_hook_fetch(void *root, void *arg __unused) |
| { | { |
| sched_root_task_t *r = root; | sched_root_task_t *r = root; |
| sched_task_t *task; | sched_task_t *task, *tmp; |
| struct timespec now, m, mtmp; | struct timespec now, m, mtmp; |
| struct timespec *timeout; | struct timespec *timeout; |
| struct kevent evt[1], res[KQ_EVENTS]; | struct kevent evt[1], res[KQ_EVENTS]; |
| register int i; | register int i, flg; |
| int en; | int en; |
| if (!r) | if (!r) |
| return NULL; | return NULL; |
| /* get new task by queue priority */ | /* get new task by queue priority */ |
| retry: | |
| while ((task = TAILQ_FIRST(&r->root_event))) { | while ((task = TAILQ_FIRST(&r->root_event))) { |
| #ifdef HAVE_LIBPTHREAD | #ifdef HAVE_LIBPTHREAD |
| pthread_mutex_lock(&r->root_mtx[taskEVENT]); | pthread_mutex_lock(&r->root_mtx[taskEVENT]); |
| Line 306 retry: | Line 522 retry: |
| if (r->root_hooks.hook_exec.exception) { | if (r->root_hooks.hook_exec.exception) { |
| if (r->root_hooks.hook_exec.exception(r, NULL)) | if (r->root_hooks.hook_exec.exception(r, NULL)) |
| return NULL; | return NULL; |
| } else | } else if (errno != EINTR) |
| LOGERR; | LOGERR; |
| #ifdef NDEBUG | |
| /* kevent no exit by error, if non-debug version */ | |
| goto retry; | |
| #else | |
| /* diagnostic exit from scheduler if kevent error occur */ | |
| return NULL; | return NULL; |
| #endif | |
| } | } |
| now.tv_sec = now.tv_nsec = 0; | now.tv_sec = now.tv_nsec = 0; |
| Line 325 retry: | Line 535 retry: |
| /* Put read/write task to ready queue */ | /* Put read/write task to ready queue */ |
| switch (res[i].filter) { | switch (res[i].filter) { |
| case EVFILT_READ: | case EVFILT_READ: |
| TAILQ_FOREACH(task, &r->root_read, task_node) { | flg = 0; |
| TAILQ_FOREACH_SAFE(task, &r->root_read, task_node, tmp) { | |
| if (TASK_FD(task) != ((intptr_t) res[i].udata)) | if (TASK_FD(task) != ((intptr_t) res[i].udata)) |
| continue; | continue; |
| else | |
| flg++; | |
| /* remove read handle */ | /* remove read handle */ |
| #ifdef HAVE_LIBPTHREAD | #ifdef HAVE_LIBPTHREAD |
| pthread_mutex_lock(&r->root_mtx[taskREAD]); | pthread_mutex_lock(&r->root_mtx[taskREAD]); |
| Line 366 retry: | Line 579 retry: |
| pthread_mutex_unlock(&r->root_mtx[taskREADY]); | pthread_mutex_unlock(&r->root_mtx[taskREADY]); |
| #endif | #endif |
| } | } |
| break; | |
| } | } |
| /* if match at least 2, don't remove resouce of event */ | |
| if (flg > 1) | |
| evt->flags ^= evt->flags; | |
| break; | break; |
| case EVFILT_WRITE: | case EVFILT_WRITE: |
| TAILQ_FOREACH(task, &r->root_write, task_node) { | flg = 0; |
| TAILQ_FOREACH_SAFE(task, &r->root_write, task_node, tmp) { | |
| if (TASK_FD(task) != ((intptr_t) res[i].udata)) | if (TASK_FD(task) != ((intptr_t) res[i].udata)) |
| continue; | continue; |
| else | |
| flg++; | |
| /* remove write handle */ | /* remove write handle */ |
| #ifdef HAVE_LIBPTHREAD | #ifdef HAVE_LIBPTHREAD |
| pthread_mutex_lock(&r->root_mtx[taskWRITE]); | pthread_mutex_lock(&r->root_mtx[taskWRITE]); |
| Line 411 retry: | Line 629 retry: |
| pthread_mutex_unlock(&r->root_mtx[taskREADY]); | pthread_mutex_unlock(&r->root_mtx[taskREADY]); |
| #endif | #endif |
| } | } |
| break; | |
| } | } |
| /* if match at least 2, don't remove resouce of event */ | |
| if (flg > 1) | |
| evt->flags ^= evt->flags; | |
| break; | break; |
| case EVFILT_TIMER: | |
| flg = 0; | |
| TAILQ_FOREACH_SAFE(task, &r->root_alarm, task_node, tmp) { | |
| if ((uintptr_t) TASK_DATA(task) != ((uintptr_t) res[i].udata)) | |
| continue; | |
| else | |
| flg++; | |
| /* remove alarm handle */ | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_lock(&r->root_mtx[taskALARM]); | |
| #endif | |
| TAILQ_REMOVE(&r->root_alarm, task, task_node); | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_unlock(&r->root_mtx[taskALARM]); | |
| #endif | |
| task->task_type = taskREADY; | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_lock(&r->root_mtx[taskREADY]); | |
| #endif | |
| TAILQ_INSERT_TAIL(&r->root_ready, task, task_node); | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_unlock(&r->root_mtx[taskREADY]); | |
| #endif | |
| } | |
| /* if match at least 2, don't remove resouce of event */ | |
| if (flg > 1) | |
| evt->flags ^= evt->flags; | |
| break; | |
| case EVFILT_VNODE: | |
| flg = 0; | |
| TAILQ_FOREACH_SAFE(task, &r->root_node, task_node, tmp) { | |
| if (TASK_FD(task) != ((intptr_t) res[i].udata)) | |
| continue; | |
| else { | |
| flg++; | |
| TASK_DATA(task) = (void*) (uintptr_t) res[i].data; | |
| TASK_DATLEN(task) = res[i].fflags; | |
| } | |
| /* remove node handle */ | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_lock(&r->root_mtx[taskNODE]); | |
| #endif | |
| TAILQ_REMOVE(&r->root_node, task, task_node); | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_unlock(&r->root_mtx[taskNODE]); | |
| #endif | |
| task->task_type = taskREADY; | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_lock(&r->root_mtx[taskREADY]); | |
| #endif | |
| TAILQ_INSERT_TAIL(&r->root_ready, task, task_node); | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_unlock(&r->root_mtx[taskREADY]); | |
| #endif | |
| } | |
| /* if match at least 2, don't remove resouce of event */ | |
| if (flg > 1) | |
| evt->flags ^= evt->flags; | |
| break; | |
| case EVFILT_PROC: | |
| flg = 0; | |
| TAILQ_FOREACH_SAFE(task, &r->root_proc, task_node, tmp) { | |
| if (TASK_VAL(task) != ((uintptr_t) res[i].udata)) | |
| continue; | |
| else { | |
| flg++; | |
| TASK_DATA(task) = (void*) (uintptr_t) res[i].data; | |
| TASK_DATLEN(task) = res[i].fflags; | |
| } | |
| /* remove proc handle */ | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_lock(&r->root_mtx[taskPROC]); | |
| #endif | |
| TAILQ_REMOVE(&r->root_proc, task, task_node); | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_unlock(&r->root_mtx[taskPROC]); | |
| #endif | |
| task->task_type = taskREADY; | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_lock(&r->root_mtx[taskREADY]); | |
| #endif | |
| TAILQ_INSERT_TAIL(&r->root_ready, task, task_node); | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_unlock(&r->root_mtx[taskREADY]); | |
| #endif | |
| } | |
| /* if match at least 2, don't remove resouce of event */ | |
| if (flg > 1) | |
| evt->flags ^= evt->flags; | |
| break; | |
| case EVFILT_SIGNAL: | |
| flg = 0; | |
| TAILQ_FOREACH_SAFE(task, &r->root_signal, task_node, tmp) { | |
| if (TASK_VAL(task) != ((uintptr_t) res[i].udata)) | |
| continue; | |
| else | |
| flg++; | |
| /* remove signal handle */ | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_lock(&r->root_mtx[taskSIGNAL]); | |
| #endif | |
| TAILQ_REMOVE(&r->root_signal, task, task_node); | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_unlock(&r->root_mtx[taskSIGNAL]); | |
| #endif | |
| task->task_type = taskREADY; | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_lock(&r->root_mtx[taskREADY]); | |
| #endif | |
| TAILQ_INSERT_TAIL(&r->root_ready, task, task_node); | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_unlock(&r->root_mtx[taskREADY]); | |
| #endif | |
| } | |
| /* if match at least 2, don't remove resouce of event */ | |
| if (flg > 1) | |
| evt->flags ^= evt->flags; | |
| break; | |
| #ifdef EVFILT_USER | |
| case EVFILT_USER: | |
| flg = 0; | |
| TAILQ_FOREACH_SAFE(task, &r->root_user, task_node, tmp) { | |
| if (TASK_VAL(task) != ((uintptr_t) res[i].udata)) | |
| continue; | |
| else { | |
| flg++; | |
| TASK_DATA(task) = (void*) res[i].data; | |
| TASK_DATLEN(task) = res[i].fflags; | |
| } | |
| /* remove user handle */ | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_lock(&r->root_mtx[taskUSER]); | |
| #endif | |
| TAILQ_REMOVE(&r->root_user, task, task_node); | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_unlock(&r->root_mtx[taskUSER]); | |
| #endif | |
| task->task_type = taskREADY; | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_lock(&r->root_mtx[taskREADY]); | |
| #endif | |
| TAILQ_INSERT_TAIL(&r->root_ready, task, task_node); | |
| #ifdef HAVE_LIBPTHREAD | |
| pthread_mutex_unlock(&r->root_mtx[taskREADY]); | |
| #endif | |
| } | |
| /* if match at least 2, don't remove resouce of event */ | |
| if (flg > 1) | |
| evt->flags ^= evt->flags; | |
| break; | |
| #endif | |
| } | } |
| if (kevent(r->root_kq, evt, 1, NULL, 0, &now) == -1) { | if (kevent(r->root_kq, evt, 1, NULL, 0, &now) == -1) { |
| if (r->root_hooks.hook_exec.exception) { | if (r->root_hooks.hook_exec.exception) { |
| Line 427 retry: | Line 798 retry: |
| /* timer update & put in ready queue */ | /* timer update & put in ready queue */ |
| clock_gettime(CLOCK_MONOTONIC, &now); | clock_gettime(CLOCK_MONOTONIC, &now); |
| TAILQ_FOREACH(task, &r->root_timer, task_node) | TAILQ_FOREACH_SAFE(task, &r->root_timer, task_node, tmp) |
| if (sched_timespeccmp(&now, &TASK_TS(task), -) >= 0) { | if (sched_timespeccmp(&now, &TASK_TS(task), -) >= 0) { |
| #ifdef HAVE_LIBPTHREAD | #ifdef HAVE_LIBPTHREAD |
| pthread_mutex_lock(&r->root_mtx[taskTIMER]); | pthread_mutex_lock(&r->root_mtx[taskTIMER]); |