Toward the hardening of real-time operating systems

A. Bosio, S. Carlo, Maurizio Rebaudengo, A. Savino
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引用次数: 1

Abstract

Safety and Mission-critical systems are evolving daily, requiring increasing levels of complexity in their design. While bare-metal single CPU systems were dedicated to such systems in the past, nowadays, multicore CPUs, GPUs, and other accelerators require more complex software management, with the need for an operating system controlling everything. The presence of the operating system opens more challenges to securing the final system’s full dependability. This paper analyses the hardening scenarios based on the evidence gathered by selective fault injection analysis of Real-Time Operating systems. While solutions might be delivered in different fashions, the emphasis on the paper is on the right approach to spot the sensitive part of the Operating system, saving the design from massive overheads.
朝着强化实时操作系统的方向发展
安全和关键任务系统每天都在发展,要求其设计的复杂性不断提高。虽然裸机单CPU系统在过去专门用于此类系统,但如今,多核CPU、gpu和其他加速器需要更复杂的软件管理,需要操作系统来控制一切。操作系统的存在为确保最终系统的完全可靠性带来了更多挑战。本文基于实时操作系统选择性故障注入分析所收集的证据,分析了加固场景。虽然解决方案可能以不同的方式交付,但本文的重点是找到正确的方法来识别操作系统的敏感部分,从而节省大量的设计开销。
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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