针对故障攻击的软件对策综合分析

Nikolaus Theißing, D. Merli, M. Smola, F. Stumpf, G. Sigl
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引用次数: 16

摘要

针对故障攻击的容错软件是嵌入式系统中一类重要的对策。在这项工作中,我们实施并系统地分析了一套全面的19种不同的软件对策策略,涉及保护有效性以及时间和存储效率。我们通过将故障注入到基于ARM Cortex-M3的微控制器模拟器中来评估所有实现的性能和安全性。我们的结果表明,一些相当简单的对策优于其他更复杂的方法,因为它们的内存和/或性能开销较低。此外,对策的组合显示出强大的特征,可以导致高故障覆盖率,同时将额外的资源保持在最低限度。本研究的结果为嵌入式系统安全软件的开发人员提供了坚实的基础,以确定适合其应用的故障攻击对策类型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive analysis of software countermeasures against fault attacks
Fault tolerant software against fault attacks constitutes an important class of countermeasures for embedded systems. In this work, we implemented and systematically analyzed a comprehensive set of 19 different strategies for software countermeasures with respect to protection effectiveness as well as time and memory efficiency. We evaluated the performance and security of all implementations by fault injections into a microcontroller simulator based on an ARM Cortex-M3. Our results show that some rather simple countermeasures outperform other more sophisticated methods due to their low memory and/or performance overhead. Further, combinations of countermeasures show strong characteristics and can lead to a high fault coverage, while keeping additional resources at a minimum. The results obtained in this study provide developers of secure software for embedded systems with a solid basis to decide on the right type of fault attack countermeasure for their application.
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