Containing timing-related certification cost in automotive systems deploying complex hardware

Leonidas Kosmidis, E. Quiñones, J. Abella, G. Farrall, Franck Wartel, F. Cazorla
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引用次数: 26

Abstract

Measurement-Based Probabilistic Timing Analysis (MBPTA) techniques simplify deriving tight and trustworthy WCET estimates for industrial-size programs running on complex processors. MBPTA poses some requirements on the timing behaviour of the hardware/software platform: execution times of end-to-end runs have to be independent and identically distributed (i.i.d.). Hardware and software solutions have been deployed to accomplish MBPTA requirements. The latter has achieved the i.i.d. properties running on some commercial off-the-shelf (COTS) processor designs. Unfortunately, software randomisation challenges functional verification needed for certification since it introduces indirections through pointers in the code. In this paper we propose a new approach to software randomisation able to contain its functional verification costs. Our approach performs software randomisation statically, as opposed to current dynamic approaches. We carefully review the requirements of the new approach and prove its feasibility.
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在部署复杂硬件的汽车系统中包含与时间相关的认证成本
基于测量的概率时序分析(MBPTA)技术简化了在复杂处理器上运行的工业规模程序的严格和可靠的WCET估计。MBPTA对硬件/软件平台的计时行为提出了一些要求:端到端运行的执行时间必须是独立和相同分布的(i.i.d)。已经部署了硬件和软件解决方案来实现MBPTA需求。后者已经实现了在一些商用现货(COTS)处理器设计上运行的i.i.d.特性。不幸的是,软件随机化挑战了认证所需的功能验证,因为它通过代码中的指针引入了间接性。在本文中,我们提出了一种能够控制其功能验证成本的软件随机化新方法。与当前的动态方法相反,我们的方法静态地执行软件随机化。我们仔细审查了新方法的要求,并证明了其可行性。
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