侧信道攻击AES硬件木马基准测试对策分析

K. SudeendraKumar, S. Sahoo, Abhishek Mahapatra, Ayass Kant Swain, K. Mahapatra
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引用次数: 6

摘要

硬件木马(Hardware Trojan, HT)是近十年来学术界关注较多的硬件安全问题之一。热激辐射的研究主要集中在热激辐射检测、热激辐射防御和设计新型热激辐射。攻击者插入HT是为了泄露机密数据、拒绝服务攻击等。基于Trust-hub的处理器、密码学和通信协议的木马基准电路广泛应用于HT研究。而基于侧信道攻击的功率分析和侧信道攻击对策的设计是一个成熟的研究领域。Trust-Hub提供了一种基于功率的侧信道攻击,促进了高级加密标准(AES) HT基准的研究。在这项工作中,我们分析了存在众所周知的侧信道攻击对策的AES HT基准的强度。在AES基准测试中应用了屏蔽、随机延迟插入和调整敏感操作中使用的时钟工作频率。仿真和功率分析研究证实,侧信道促进HT基准对这些选择的对抗措施具有弹性,即使存在这些对抗措施;攻击者可以通过触发HT来获取敏感数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Side-Channel Attack AES Hardware Trojan Benchmarks against Countermeasures
Hardware Trojan (HT) is one of the well known hardware security issue in research community in last one decade. HT research is mainly focused on HT detection, HT defense and designing novel HT's. HT's are inserted by an adversary for leaking secret data, denial of service attacks etc. Trojan benchmark circuits for processors, cryptography and communication protocols from Trust-hub are widely used in HT research. And power analysis based side channel attacks and designing countermeasures against side channel attacks is a well established research area. Trust-Hub provides a power based side-channel attack promoting Advanced Encryption Standard (AES) HT benchmarks for research. In this work, we analyze the strength of AES HT benchmarks in the presence well known side-channel attack countermeasures. Masking, Random delay insertion and tweaking the operating frequency of clock used in sensitive operations are applied on AES benchmarks. Simulation and power profiling studies confirm that side-channel promoting HT benchmarks are resilient against these selected countermeasures and even in the presence of these countermeasures; an adversary can get the sensitive data by triggering the HT.
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