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Defending cache memory against cold-boot attacks boosted by power or EM radiation analysis

机译:防御高速缓存以抵抗由于电源或EM辐射分析而引起的冷启动攻击

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摘要

Some algorithms running with compromised data select cache memory as a type of secure memory where data is confined and not transferred to main memory. However, cold-boot attacks that target cache memories exploit the data remanence. Thus, a sudden power shutdown may not delete data entirely, giving the opportunity to steal data. The biggest challenge for any technique aiming to secure the cache memory is performance penalty. Techniques based on data scrambling have demonstrated that security can be improved with a limited reduction in performance. However, they still cannot resist side-channel attacks like power or electromagnetic analysis. This paper presents a review of known attacks on memories and countermeasures proposed so far and an improved scrambling technique named random masking interleaved scrambling technique (RM-ISTe). This method is designed to protect the cache memory against cold-boot attacks, even if these are boosted by side channel techniques like power or electromagnetic analysis.
机译:某些使用受损数据运行的算法会将高速缓存存储器选作一种安全存储器,在这种安全存储器中,数据被限制而不传输到主存储器。但是,针对高速缓存的冷启动攻击会利用数据剩余性。因此,突然的电源关闭可能无法完全删除数据,从而有机会窃取数据。任何旨在保护缓存的技术面临的最大挑战是性能损失。基于数据加扰的技术表明,可以通过有限的性能降低来提高安全性。但是,它们仍然无法抵抗功率或电磁分析等侧信道攻击。本文介绍了迄今为止已知的对内存的攻击和对策,以及一种名为随机掩膜交错加扰技术(RM-ISTe)的改进加扰技术。此方法旨在保护高速缓存存储器免受冷启动攻击,即使这些攻击通过诸如功率或电磁分析之类的侧通道技术得以增强。

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