288 lines
7.6 KiB
C
288 lines
7.6 KiB
C
/*----------------------------------------------------------------------------
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* Tencent is pleased to support the open source community by making TencentOS
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* available.
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*
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* Copyright (C) 2019 THL A29 Limited, a Tencent company. All rights reserved.
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* If you have downloaded a copy of the TencentOS binary from Tencent, please
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* note that the TencentOS binary is licensed under the BSD 3-Clause License.
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*
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* If you have downloaded a copy of the TencentOS source code from Tencent,
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* please note that TencentOS source code is licensed under the BSD 3-Clause
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* License, except for the third-party components listed below which are
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* subject to different license terms. Your integration of TencentOS into your
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* own projects may require compliance with the BSD 3-Clause License, as well
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* as the other licenses applicable to the third-party components included
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* within TencentOS.
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*---------------------------------------------------------------------------*/
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#include "tos_k.h"
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#if TOS_CFG_MUTEX_EN > 0u
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__STATIC_INLINE__ void mutex_old_owner_release(k_mutex_t *mutex)
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{
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k_task_t *owner;
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owner = mutex->owner;
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tos_list_del(&mutex->owner_anchor);
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mutex->owner = K_NULL;
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mutex->pend_nesting = (k_nesting_t)0u;
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// the right time comes! let's do it!
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if (owner->prio_pending != K_TASK_PRIO_INVALID) {
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tos_task_prio_change(owner, owner->prio_pending);
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owner->prio_pending = K_TASK_PRIO_INVALID;
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} else if (owner->prio != mutex->owner_orig_prio) {
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tos_task_prio_change(owner, mutex->owner_orig_prio);
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mutex->owner_orig_prio = K_TASK_PRIO_INVALID;
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}
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}
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__STATIC_INLINE__ void mutex_fresh_owner_mark(k_mutex_t *mutex, k_task_t *task)
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{
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mutex->owner = task;
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mutex->owner_orig_prio = task->prio;
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mutex->pend_nesting = (k_nesting_t)1u;
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tos_list_add(&mutex->owner_anchor, &task->mutex_own_list);
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}
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__STATIC_INLINE__ void mutex_new_owner_mark(k_mutex_t *mutex, k_task_t *task)
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{
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k_prio_t highest_pending_prio;
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mutex_fresh_owner_mark(mutex, task);
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// we own the mutex now, make sure our priority is higher than any one in the pend list.
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highest_pending_prio = pend_highest_pending_prio_get(&mutex->pend_obj);
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if (task->prio > highest_pending_prio) {
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tos_task_prio_change(task, highest_pending_prio);
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}
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}
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__KNL__ void mutex_release(k_mutex_t *mutex)
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{
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mutex_old_owner_release(mutex);
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pend_wakeup_all(&mutex->pend_obj, PEND_STATE_OWNER_DIE);
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}
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__API__ k_err_t tos_mutex_create(k_mutex_t *mutex)
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{
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TOS_IN_IRQ_CHECK();
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TOS_PTR_SANITY_CHECK(mutex);
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pend_object_init(&mutex->pend_obj);
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mutex->pend_nesting = (k_nesting_t)0u;
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mutex->owner = K_NULL;
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mutex->owner_orig_prio = K_TASK_PRIO_INVALID;
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tos_list_init(&mutex->owner_anchor);
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TOS_OBJ_INIT(mutex, KNL_OBJ_TYPE_MUTEX);
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#if TOS_CFG_OBJ_DYNAMIC_CREATE_EN > 0u
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knl_object_alloc_set_static(&mutex->knl_obj);
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#endif
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return K_ERR_NONE;
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}
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__API__ k_err_t tos_mutex_destroy(k_mutex_t *mutex)
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{
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TOS_CPU_CPSR_ALLOC();
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TOS_IN_IRQ_CHECK();
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TOS_PTR_SANITY_CHECK(mutex);
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TOS_OBJ_VERIFY(mutex, KNL_OBJ_TYPE_MUTEX);
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#if TOS_CFG_OBJ_DYNAMIC_CREATE_EN > 0u
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if (!knl_object_alloc_is_static(&mutex->knl_obj)) {
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return K_ERR_OBJ_INVALID_ALLOC_TYPE;
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}
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#endif
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TOS_CPU_INT_DISABLE();
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pend_wakeup_all(&mutex->pend_obj, PEND_STATE_DESTROY);
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if (mutex->owner) {
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mutex_old_owner_release(mutex);
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}
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pend_object_deinit(&mutex->pend_obj);
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TOS_OBJ_DEINIT(mutex);
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#if TOS_CFG_OBJ_DYNAMIC_CREATE_EN > 0u
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knl_object_alloc_reset(&mutex->knl_obj);
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#endif
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TOS_CPU_INT_ENABLE();
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knl_sched();
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return K_ERR_NONE;
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}
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#if TOS_CFG_OBJ_DYNAMIC_CREATE_EN > 0u
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__API__ k_err_t tos_mutex_create_dyn(k_mutex_t **mutex)
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{
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k_mutex_t *the_mutex;
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TOS_IN_IRQ_CHECK();
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TOS_PTR_SANITY_CHECK(mutex);
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the_mutex = tos_mmheap_calloc(1, sizeof(k_mutex_t));
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if (!the_mutex) {
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return K_ERR_OUT_OF_MEMORY;
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}
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pend_object_init(&the_mutex->pend_obj);
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the_mutex->pend_nesting = (k_nesting_t)0u;
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the_mutex->owner = K_NULL;
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the_mutex->owner_orig_prio = K_TASK_PRIO_INVALID;
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tos_list_init(&the_mutex->owner_anchor);
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TOS_OBJ_INIT(the_mutex, KNL_OBJ_TYPE_MUTEX);
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knl_object_alloc_set_dynamic(&the_mutex->knl_obj);
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*mutex = the_mutex;
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return K_ERR_NONE;
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}
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__API__ k_err_t tos_mutex_destroy_dyn(k_mutex_t *mutex)
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{
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TOS_CPU_CPSR_ALLOC();
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TOS_IN_IRQ_CHECK();
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TOS_PTR_SANITY_CHECK(mutex);
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TOS_OBJ_VERIFY(mutex, KNL_OBJ_TYPE_MUTEX);
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if (!knl_object_alloc_is_dynamic(&mutex->knl_obj)) {
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return K_ERR_OBJ_INVALID_ALLOC_TYPE;
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}
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TOS_CPU_INT_DISABLE();
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pend_wakeup_all(&mutex->pend_obj, PEND_STATE_DESTROY);
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if (mutex->owner) {
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mutex_old_owner_release(mutex);
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}
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pend_object_deinit(&mutex->pend_obj);
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TOS_OBJ_DEINIT(mutex);
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tos_mmheap_free(mutex);
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TOS_CPU_INT_ENABLE();
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knl_sched();
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return K_ERR_NONE;
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}
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#endif
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__API__ k_err_t tos_mutex_pend_timed(k_mutex_t *mutex, k_tick_t timeout)
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{
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TOS_CPU_CPSR_ALLOC();
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TOS_IN_IRQ_CHECK();
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TOS_PTR_SANITY_CHECK(mutex);
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TOS_OBJ_VERIFY(mutex, KNL_OBJ_TYPE_MUTEX);
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TOS_CPU_INT_DISABLE();
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if (mutex->pend_nesting == (k_nesting_t)0u) { // first come
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mutex_fresh_owner_mark(mutex, k_curr_task);
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TOS_CPU_INT_ENABLE();
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return K_ERR_NONE;
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}
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if (knl_is_self(mutex->owner)) { // come again
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if (mutex->pend_nesting == (k_nesting_t)-1) {
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TOS_CPU_INT_ENABLE();
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return K_ERR_MUTEX_NESTING_OVERFLOW;
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}
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++mutex->pend_nesting;
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TOS_CPU_INT_ENABLE();
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return K_ERR_MUTEX_NESTING;
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}
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if (timeout == TOS_TIME_NOWAIT) { // no wait, return immediately
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TOS_CPU_INT_ENABLE();
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return K_ERR_PEND_NOWAIT;
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}
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if (knl_is_sched_locked()) {
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TOS_CPU_INT_ENABLE();
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return K_ERR_PEND_SCHED_LOCKED;
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}
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if (mutex->owner->prio > k_curr_task->prio) {
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// PRIORITY INVERSION:
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// we are declaring a mutex, which's owner has a lower(numerically bigger) priority.
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// make owner the same priority with us.
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tos_task_prio_change(mutex->owner, k_curr_task->prio);
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}
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pend_task_block(k_curr_task, &mutex->pend_obj, timeout);
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TOS_CPU_INT_ENABLE();
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knl_sched();
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return pend_state2errno(k_curr_task->pend_state);
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}
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__API__ k_err_t tos_mutex_pend(k_mutex_t *mutex)
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{
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return tos_mutex_pend_timed(mutex, TOS_TIME_FOREVER);
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}
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__API__ k_err_t tos_mutex_post(k_mutex_t *mutex)
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{
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TOS_CPU_CPSR_ALLOC();
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k_task_t *pending_task;
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TOS_IN_IRQ_CHECK();
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TOS_PTR_SANITY_CHECK(mutex);
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TOS_OBJ_VERIFY(mutex, KNL_OBJ_TYPE_MUTEX);
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TOS_CPU_INT_DISABLE();
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if (!knl_is_self(mutex->owner)) {
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TOS_CPU_INT_ENABLE();
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return K_ERR_MUTEX_NOT_OWNER;
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}
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--mutex->pend_nesting;
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if (mutex->pend_nesting > (k_nesting_t)0u) {
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TOS_CPU_INT_ENABLE();
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return K_ERR_MUTEX_NESTING;
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}
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mutex_old_owner_release(mutex);
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if (pend_is_nopending(&mutex->pend_obj)) {
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TOS_CPU_INT_ENABLE();
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return K_ERR_NONE;
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}
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/* must do the mutex owner switch right here
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if the pender don't get a chance to schedule, the poster(old owner) may obtain the mutex immediately again
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but the pender already get ready(already in the critical section).
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we switch the owner right here to avoid the old owner obtain the mutex again
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*/
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pending_task = pend_highest_pending_task_get(&mutex->pend_obj);
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mutex_new_owner_mark(mutex, pending_task);
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pend_wakeup_one(&mutex->pend_obj, PEND_STATE_POST);
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TOS_CPU_INT_ENABLE();
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knl_sched();
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return K_ERR_NONE;
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}
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#endif
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