Response Time Analysis of Asynchronous Periodic and Sporadic Tasks Sheduled by a Fixed Priority Preemptive Algorithm

M. Coutinho, J. Rufino, C. Almeida
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引用次数: 17

Abstract

Real-time systems usually consist of a set of periodic and sporadic tasks. Periodic tasks can be divided into two classes: synchronous and asynchronous. The first type does not define the task first release, contrary to the second. Hence, synchronous periodic tasks are assumed to be released at the worst instant: the critical instant. The schedulability test is reduced to check a single execution of the task under analysis. The integration of sporadic tasks is also straightforward: they are treated as a periodic task with maximum arrival frequency. On the other hand, asynchronous periodic tasks require a test for each release in the hyper period and the integration of sporadic tasks is not trivial: the worst release instant is unknown a priori. However, they do not assume that the tasks are released at the worst instant.This paper presents a new schedulability analysis method based on the Response Time Analysis (RTA) to determine the worst response time of both asynchronous periodic and sporadic tasks, scheduled by a fixed-priority preemptive algorithm with general deadlines. It also presents another method that enables the introduction of a user configurable degree of pessimism, reducing the hyper period dependency.
固定优先级抢占算法调度的异步周期性和偶发任务响应时间分析
实时系统通常由一组周期性和零星的任务组成。周期性任务可以分为两类:同步和异步。与第二种类型相反,第一种类型不定义任务第一次发布。因此,同步周期性任务被假定在最坏的时刻释放:临界时刻。可调度性测试被简化为检查正在分析的任务的单个执行。零星任务的集成也很简单:它们被视为具有最大到达频率的周期性任务。另一方面,异步周期性任务需要在超周期内对每个版本进行测试,并且零星任务的集成不是微不足道的:最坏的发布时刻是先验未知的。然而,它们并不假设任务在最糟糕的时刻被释放。本文提出了一种基于响应时间分析(RTA)的可调度性分析方法,用于确定异步周期性任务和偶发任务的最坏响应时间。它还提出了另一种方法,可以引入用户可配置的悲观程度,减少超周期依赖。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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