Compilation of a Countermeasure Against Instruction-Skip Fault Attacks

Thierno Barry, Damien Couroussé, B. Robisson
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引用次数: 38

Abstract

Physical attacks especially fault attacks represent one the major threats against embedded systems. In the state of the art, software countermeasures against fault attacks are either applied at the source code level where it will very likely be removed at compilation time, or at assembly level where several transformations need to be performed on the assembly code and lead to significant overheads both in terms of code size and execution time. This paper presents the use of compiler techniques to efficiently automate the application of software countermeasures against instruction-skip fault attacks. We propose a modified LLVM compiler that considers our security objectives throughout the compilation process. Experimental results illustrate the effectiveness of this approach on AES implementations running on an ARM-based microcontroller in terms of security overhead compared to existing solutions.
针对指令跳码攻击的对策编写
物理攻击尤其是故障攻击是嵌入式系统面临的主要威胁之一。在目前的技术状态下,针对错误攻击的软件对策要么应用于源代码级别,在编译时很可能删除它,要么应用于汇编级别,在汇编级别需要对汇编代码执行几个转换,并在代码大小和执行时间方面导致显著的开销。本文介绍了利用编译器技术有效地自动化应用软件对抗指令跳过错误攻击。我们提出一个修改后的LLVM编译器,它在整个编译过程中考虑我们的安全目标。实验结果表明,与现有解决方案相比,这种方法在基于arm的微控制器上运行的AES实现在安全开销方面是有效的。
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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