Theoretical Round Modification Fault Analysis on AEGIS-128 with Algebraic Techniques

Fan Zhang, Xiaofei Dong, Xin-jie Zhao, Yidi Wang, Samiya Qureshi, Yiran Zhang, Xiaoxuan Lou, Yongkang Tang
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引用次数: 1

Abstract

This paper proposed an advanced round modification fault analysis (RMFA) at the theoretical level on AEGIS-128, which is one of seven finalists in CAESAR competition. First, we clarify our assumptions and simplifications on the attack model, focusing on the encryption security. Then, we emphasize the difficulty of applying vanilla RMFA to AEGIS-128 in the practical case. Finally we demonstrate our advanced fault analysis on AEGIS-128 using machine-solver based algebraic techniques. Our enhancement can be used to conquer the practical scenario which is difficult for vanilla RMFA. Simulation results show that when the fault is injected to the initialization phase and the number of rounds is reduced to one, two samples of injections can extract the whole 128 key bits within less than two hours. This work can also be extended to other versions such as AEGIS-256.
基于代数技术的AEGIS-128理论圆修正故障分析
本文针对入围CAESAR竞赛的7台AEGIS-128,在理论层面提出了一种先进的轮修正故障分析(RMFA)方法。首先,我们对攻击模型进行了假设和简化,重点讨论了加密安全性。然后,我们强调了在实际情况下将香草RMFA应用于AEGIS-128的困难。最后,我们展示了基于机器求解器的代数技术在AEGIS-128上的高级故障分析。我们的增强可用于克服普通RMFA难以解决的实际场景。仿真结果表明,将故障注入到初始化阶段,将注入次数减少到1次,两次注入样本可以在不到2小时的时间内提取出全部128个密钥位。这项工作也可以扩展到其他版本,如AEGIS-256。
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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