An Algorithm for Scheduling Certifiable Mixed-Criticality Sporadic Task Systems

Haohan Li, Sanjoy Baruah
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引用次数: 94

Abstract

Many safety-critical embedded systems are subject to certification requirements. However, only a subset of the functionality of the system may be safety-critical and hence subject to certification, the rest of the functionality is non safety-critical and does not need to be certified. Certification requirements in such "mixed-criticality" systems give rise to some interesting scheduling problems, that cannot be satisfactorily addressed using techniques from conventional scheduling theory. In prior work, we have studied the scheduling and analysis of mixed criticality systems that are specified as finite collections of jobs executing on a single shared preemptive processor. In this paper, we consider mixed criticality systems that are comprised of finite collections of recurrent tasks, specified using a mixed-criticality generalization of the widely-used sporadic tasks model. We design a priority-based algorithm for scheduling such systems, derive an algorithm for computing priorities, and obtain a sufficient schedulability condition for efficiently determining whether a given mixed-criticality system can be successfully scheduled by this algorithm.
可认证混合临界偶发任务系统的调度算法
许多安全关键型嵌入式系统都要遵守认证要求。然而,只有系统功能的一个子集可能是安全关键的,因此需要进行认证,其余的功能是非安全关键的,不需要进行认证。这种“混合临界”系统中的认证要求引起了一些有趣的调度问题,使用传统调度理论中的技术无法令人满意地解决这些问题。在之前的工作中,我们研究了混合临界系统的调度和分析,混合临界系统被指定为在单个共享抢占式处理器上执行的有限作业集合。在本文中,我们考虑由有限循环任务集合组成的混合临界系统,使用广泛使用的零星任务模型的混合临界泛化来指定。我们设计了一种基于优先级的混合临界系统调度算法,推导了一种计算优先级的算法,并获得了一个充分的可调度条件,可以有效地确定给定混合临界系统是否可以通过该算法成功调度。
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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