338 lines
7.8 KiB
C
338 lines
7.8 KiB
C
/* microkernel/task.h */
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/*
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* Copyright (c) 1997-2014 Wind River Systems, Inc.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef TASK_H
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#define TASK_H
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/**
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* @brief Microkernel Tasks
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* @defgroup microkernel_task Microkernel Tasks
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* @ingroup microkernel_services
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* @{
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*/
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include <sections.h>
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/*
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* The following task groups are reserved for system use.
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* sysgen automatically generates corresponding TASKGROUPs with reserved
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* GROUPIDs
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* sysgen must be updated if any changes are made to the reserved groups.
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*/
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#define EXE_GROUP 1 /* TASKGROUP EXE */
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#define USR_GROUP 2 /* TASKGROUP SYS */
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#define FPU_GROUP 4 /* TASKGROUP FPU */
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/**
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* @cond internal
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*/
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/**
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* @brief Initialize a struct k_task given parameters.
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*
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* @param ident Numeric identifier of this task object.
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* @param priority Priority of task.
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* @param state State of task.
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* @param groups Groups this task belong to.
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* @param fn_start Entry function.
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* @param workspace Pointer to workspace (aka, stack).
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* @param worksize Size of workspace.
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* @param fn_abort Abort function.
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*/
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#define __K_TASK_INITIALIZER(ident, priority, state, groups, \
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fn_start, workspace, worksize, fn_abort) \
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{ \
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NULL, NULL, priority, ident, state, ((groups) ^ SYS), \
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fn_start, workspace, worksize, fn_abort, NULL, \
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}
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extern struct k_task _k_task_list[];
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extern void _task_ioctl(ktask_t, int);
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extern void _task_group_ioctl(ktask_group_t, int);
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/**
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* @endcond
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*/
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/**
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* @brief Yield the CPU to another task.
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*
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* This routine yields the processor to the next-equal priority runnable
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* task. With task_yield(), the effect of round-robin scheduling is
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* possible. When no task of equal priority is runnable, no task switch
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* occurs, and the calling task resumes execution.
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*
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* @return N/A
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*/
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extern void task_yield(void);
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/**
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* @brief Set the priority of a task.
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*
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* This routine changes the priority of the specified task.
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*
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* The call has immediate effect. When the calling task no longer is the
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* highest-priority runnable task, a task switch occurs.
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*
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* Priority can be assigned in the range 0 to 62, where 0 is the
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* highest priority.
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*
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* @param task Task whose priority is to be set.
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* @param prio New priority.
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*
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* @return N/A
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*/
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extern void task_priority_set(ktask_t task, kpriority_t prio);
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/**
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* @brief Set the entry point of a task.
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*
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* This routine sets the entry point of a task to a given routine. It is
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* needed only when an entry point differs from what is set in the project
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* file. In order to have any effect, it must be called before task_start(),
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* and it cannot work with members of the EXE group or with any group that
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* starts automatically on application loading.
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*
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* The routine is executed when the task is started.
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*
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* @param task Task to operate on.
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* @param func Entry point.
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*
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* @return N/A
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*/
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extern void task_entry_set(ktask_t task, void (*func)(void));
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/**
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* @brief Install an abort handler.
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*
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* This routine installs an abort handler for the calling task.
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*
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* The abort handler runs when the calling task is aborted by a _TaskAbort()
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* or task_group_abort() call.
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*
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* Each call to task_abort_handler_set() replaces the previously-installed
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* handler.
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*
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* To remove an abort handler, set the parameter to NULL as below:
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* task_abort_handler_set (NULL)
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*
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* @param func Abort handler.
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*
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* @return N/A
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*/
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extern void task_abort_handler_set(void (*func)(void));
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/**
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* @brief Issue a custom call from within the microkernel server fiber.
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*
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* This routine issues a request to execute a function from within the context
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* of the microkernel server fiber.
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*
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* @param func Function to call from within the microkernel server fiber.
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* @param argp Argument to pass to custom function.
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*
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* @return return value from custom @a func call
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*/
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extern int task_offload_to_fiber(int (*func)(), void *argp);
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/*
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* Operations supported by _task_ioctl() and _task_group_ioctl()
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*/
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#define TASK_START 0
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#define TASK_ABORT 1
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#define TASK_SUSPEND 2
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#define TASK_RESUME 3
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#define TASK_BLOCK 4
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#define TASK_UNBLOCK 5
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#define TASK_GROUP_START 0
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#define TASK_GROUP_ABORT 1
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#define TASK_GROUP_SUSPEND 2
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#define TASK_GROUP_RESUME 3
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#define TASK_GROUP_BLOCK 4
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#define TASK_GROUP_UNBLOCK 5
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/**
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* @brief Gets task identifier
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*
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* @return identifier for current task
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*/
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extern ktask_t task_id_get(void);
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/**
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* @brief Gets task priority
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*
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* @return priority of current task
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*/
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extern kpriority_t task_priority_get(void);
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/**
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* @brief Start a task
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* @param t Task to start
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* @return N/A
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*/
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#define task_start(t) _task_ioctl(t, TASK_START)
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/**
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* @brief Abort a task
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*
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* @param t Task to abort
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*
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* @return N/A
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*/
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#define task_abort(t) _task_ioctl(t, TASK_ABORT)
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/**
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* @brief Suspend a task
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*
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* @param t Task to suspend
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*
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* @return N/A
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*/
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#define task_suspend(t) _task_ioctl(t, TASK_SUSPEND)
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/**
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* @brief Resume a task
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*
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* @param t Task to resume
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*
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* @return N/A
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*/
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#define task_resume(t) _task_ioctl(t, TASK_RESUME)
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/**
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* @brief Get task groups for task
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*
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* @return task groups associated with current task
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*/
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extern uint32_t task_group_mask_get(void);
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/**
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* @brief Add task to task group(s)
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*
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* @param groups Task Groups
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*
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* @return N/A
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*/
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extern void task_group_join(uint32_t groups);
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/**
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* @brief Remove task from task group(s)
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*
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* @param groups Task Groups
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*
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* @return N/A
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*/
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extern void task_group_leave(uint32_t groups);
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/**
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* @brief Start a task group
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*
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* @param g Task group to start
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*
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* @return N/A
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*/
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#define task_group_start(g) _task_group_ioctl(g, TASK_GROUP_START)
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/**
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* @brief Abort a task group
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*
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* @param g Task group to abort
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*
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* @return N/A
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*/
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#define task_group_abort(g) _task_group_ioctl(g, TASK_GROUP_ABORT)
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/**
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* @brief Suspend a task group
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*
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* @param g Task group to suspend
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*
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* @return N/A
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*/
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#define task_group_suspend(g) _task_group_ioctl(g, TASK_GROUP_SUSPEND)
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/**
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* @brief Resume a task group
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*
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* @param g Task group to resume
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*
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* @return N/A
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*/
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#define task_group_resume(g) _task_group_ioctl(g, TASK_GROUP_RESUME)
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/**
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* @brief Get task identifier
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*
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* @return identifier for current task
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*/
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#define isr_task_id_get() task_id_get()
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/**
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* @brief Get task priority
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*
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* @return priority of current task
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*/
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#define isr_task_priority_get() task_priority_get()
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/**
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* @brief Get task groups for task
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*
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* @return task groups associated with current task
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*/
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#define isr_task_group_mask_get() task_group_mask_get()
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/**
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* @brief Define a private microkernel task.
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*
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* This declares and initializes a private task. The new task
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* can be passed to the microkernel task functions.
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*
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* @param name Name of the task.
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* @param priority Priority of task.
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* @param entry Entry function.
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* @param stack_size Size of stack (in bytes)
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* @param groups Groups this task belong to.
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*/
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#define DEFINE_TASK(name, priority, entry, stack_size, groups) \
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extern void entry(void); \
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char __noinit __stack __stack_##name[stack_size]; \
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struct k_task _k_task_obj_##name \
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__in_section(_k_task_list, private, task) = \
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__K_TASK_INITIALIZER( \
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(ktask_t)&_k_task_obj_##name, \
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priority, 0x00000001, groups, \
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entry, &__stack_##name[0], stack_size, NULL); \
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const ktask_t name \
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__in_section(_k_task_ptr, private, task) = \
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(ktask_t)&_k_task_obj_##name;
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#ifdef __cplusplus
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}
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#endif
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/**
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* @}
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*/
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#endif /* TASK_H */
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