Multikernel: Operating System Solution to Generalized Functional Safety

Yi Song, Huasheng Dai, Jinhu Jiang, Weihua Zhang
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引用次数: 1

Abstract

With the trend of digitalization, intelligence, and networking sweeping the world, functional safety and cyber security are increasingly intertwined and overlapped, evolving into the issue of generalized functional safety. Traditional system reliability technology and network defense technology cannot provide quantifiable design implementation theories and methods. As the cornerstone of software systems, operating systems in particular are in need of efficient safety assurance. The DHR architecture is a mature and comprehensive solution, and it is necessary to implement an OS-level DHR architecture, for which the multi-kernel operating system is a good carrier. The multi-kernel operating system takes the kernel as the processing scenario element and constructs redundancy, heterogeneity, and dynamism on the kernel, so it has the generalized robustness of the DHR architecture. This article analyzes the significance and requirements of OS-level DHR architecture, and systematically explains how the multi-kernel operating system responds to the requirements of OS-level DHR architecture by analyzing the technical routes of multi-kernel operating systems and develops an operating system solution idea for the generalized functionally safety.
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多内核:通用功能安全的操作系统解决方案
随着数字化、智能化、网络化的趋势席卷全球,功能安全与网络安全日益交织、重叠,演变为广义功能安全问题。传统的系统可靠性技术和网络防御技术无法提供可量化的设计实现理论和方法。操作系统作为软件系统的基石,尤其需要有效的安全保障。DHR体系结构是一种成熟、全面的解决方案,需要实现os级DHR体系结构,而多内核操作系统是实现DHR体系结构的良好载体。多内核操作系统以内核为处理场景元素,在内核上构建冗余性、异构性和动态性,具有DHR体系结构的广义鲁棒性。本文分析了操作系统级DHR体系结构的意义和要求,通过分析多内核操作系统的技术路线,系统地阐述了多内核操作系统如何响应操作系统级DHR体系结构的要求,并提出了广义功能安全的操作系统解决思路。
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