论文标题
硬件信任和通过反向工程的保证:图像分析和机器学习角度的调查和前景
Hardware Trust and Assurance through Reverse Engineering: A Survey and Outlook from Image Analysis and Machine Learning Perspectives
论文作者
论文摘要
在硬件信任和保证的背景下,反向工程通常被视为非法行动。一般而言,反向工程旨在从与硬件安全相关的方案中的产品(ICS)和印刷电路板(PCB)中检索信息,以期了解设备的功能并确定其组成部分。因此,它可以提出有关知识产权(IP)侵权,与安全相关措施的有效性以及注入硬件特洛伊木马的新机会的严重问题。具有讽刺意味的是,逆向工程可以使IP所有者能够验证和验证设计。然而,如果不克服许多限制反向工程过程成功结果的障碍,这是无法实现的。本文从两个互补角度来调查这些挑战:图像处理和机器学习。这两个研究领域构成了PCB和IC的逆向工程过程效率和准确性的牢固基础。因此,总而言之,本文提出了一个路线图,清楚地表明要实现硬件信任和保证目标所采取的措施。
In the context of hardware trust and assurance, reverse engineering has been often considered as an illegal action. Generally speaking, reverse engineering aims to retrieve information from a product, i.e., integrated circuits (ICs) and printed circuit boards (PCBs) in hardware security-related scenarios, in the hope of understanding the functionality of the device and determining its constituent components. Hence, it can raise serious issues concerning Intellectual Property (IP) infringement, the (in)effectiveness of security-related measures, and even new opportunities for injecting hardware Trojans. Ironically, reverse engineering can enable IP owners to verify and validate the design. Nevertheless, this cannot be achieved without overcoming numerous obstacles that limit successful outcomes of the reverse engineering process. This paper surveys these challenges from two complementary perspectives: image processing and machine learning. These two fields of study form a firm basis for the enhancement of efficiency and accuracy of reverse engineering processes for both PCBs and ICs. In summary, therefore, this paper presents a roadmap indicating clearly the actions to be taken to fulfill hardware trust and assurance objectives.