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Reconfigurable Hardware for High-Security/ High-Performance Embedded Systems: The SAFES Perspective

机译:用于高安全性/高性能嵌入式系统的可重新配置硬件:SAFES的观点

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Embedded systems present significant security challenges due to their limited resources and power constraints. This paper focuses on the issues of building secure embedded systems on reconfigurable hardware and proposes a security architecture for embedded systems (SAFES). SAFES leverages the capabilities of reconfigurable hardware to provide efficient and flexible architectural support for security standards and defenses against a range of hardware attacks. The SAFES architecture is based on three main ideas: (1) reconfigurable security primitives; (2) reconfigurable hardware monitors; and (3) a hierarchy of security controllers at the primitive, system and executive level. Results are presented for reconfigurable AES and RC6 security primitives and highlight the value of such an architecture. This paper also emphasizes that reconfigurable hardware is not just a technology for hardware accelerators dedicated to security primitives as has been focused on by most studies but a real solution to provide high-security and high-performance for a system.
机译:嵌入式系统由于其有限的资源和功率限制而面临着巨大的安全挑战。本文着重于在可重配置硬件上构建安全嵌入式系统的问题,并提出了嵌入式系统(SAFES)的安全体系结构。 SAFES利用可重配置硬件的功能为安全标准和防御各种硬件攻击的行为提供高效灵活的体系结构支持。 SAFES体系结构基于三个主要思想:(1)可重新配置的安全原语; (2)可重新配置的硬件监视器; (3)在原始,系统和执行级别的安全控制器层次结构。给出了可重新配置的AES和RC6安全原语的结果,并强调了这种架构的价值。本文还强调,可重配置硬件不仅是大多数研究重点关注的专用于安全性原语的硬件加速器技术,而且是为系统提供高安全性和高性能的真正解决方案。

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