Circumventing a ring oscillator approach to FPGA-based hardware Trojan detection

Justin Rilling, David Graziano, Jamin Hitchcock, Tim Meyer, Xinying Wang, Phillip H. Jones, Joseph Zambreno
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引用次数: 23

Abstract

Ring oscillators are commonly used as a locking mechanism that binds a hardware design to a specific area of silicon within an integrated circuit (IC). This locking mechanism can be used to detect malicious modifications to the hardware design, also known as a hardware Trojan, in situations where such modifications result in a change to the physical placement of the design on the IC. However, careful consideration is needed when designing ring oscillators for such a scenario to guarantee the integrity of the locking mechanism. This paper presents a case study in which flaws discovered in a ring oscillator-based Trojan detection scheme allowed for the circumvention of the security mechanism and the implementation of a large and diverse set of hardware Trojans, limited only by hardware resources.
绕过环形振荡器的fpga硬件木马检测方法
环形振荡器通常用作锁定机制,将硬件设计绑定到集成电路(IC)中的特定硅区域。这种锁定机制可用于检测硬件设计的恶意修改,也称为硬件木马,在这种修改导致IC上设计的物理位置发生变化的情况下。然而,在为这种情况设计环形振荡器时,需要仔细考虑以保证锁定机制的完整性。本文提出了一个案例研究,其中在基于环形振荡器的木马检测方案中发现的缺陷允许绕过安全机制,并实现大量不同的硬件木马,仅受硬件资源的限制。
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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