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Design optimization for AUTOSAR models with preemption thresholds and mixed-criticality scheduling

机译:具有抢占阈值和混合关键性调度的自动体型设计优化

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Safety-critical embedded systems are often subject to multiple certification requirements from different certification authorities, giving rise to the concept of Mixed-Criticality Systems. Preemption Threshold Scheduling (PTS) is an effective technique for reducing stack memory usage by selectively disabling preemption between pairs of tasks. In this paper, we consider the AUTOSAR standard in automotive embedded software development, where each task consists of multiple runnables that are scheduled with static priority and preemption threshold. We address the problems of design synthesis from an AUTOSAR model to minimize stack usage for mixed-criticality systems with preemption threshold scheduling, and present algorithms for schedulability analysis and system stack usage minimization. Experimental results demonstrate that our approach can significantly reduce the system stack usage. (C) 2016 Elsevier B.V. All rights reserved.
机译:安全关键嵌入式系统通常来自不同认证机构的多种认证要求,从而产生混合关键系统的概念。 抢占阈值调度(PTS)是通过选择性地禁用在任务对之间的抢占来减少堆栈内存使用的有效技术。 在本文中,我们考虑了汽车嵌入式软件开发中的AutoSAR标准,其中每个任务由多个Runnables组成,这些可执行程序计划有静态优先级和抢占阈值。 我们解决了从Autosar模型的设计综合的问题,以最小化具有抢占阈值调度的混合临界系统的堆叠用法,以及用于调度分析和系统堆叠使用最小化的现有算法。 实验结果表明,我们的方法可以显着降低系统堆叠使用情况。 (c)2016年Elsevier B.v.保留所有权利。

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