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Improved Key Recovery Attacks on Reduced-Round AES with Practical Data and Memory Complexities

机译:利用实用数据和内存复杂性改进了对减速AES的关键恢复攻击

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Determining the security of AES is a central problem in cryptanalysis, but progress in this area had been slow and only a handful of cryptanalytic techniques led to significant advancements. At Eurocrypt 2017 Grassi et al. presented a novel type of distinguisher for AES-like structures, but so far all the published attacks which were based on this distinguisher were inferior to previously known attacks in their complexity. In this paper we combine the technique of Grassi et al. with several other techniques in a novel way to obtain the best known key recovery attack on 5-round AES in the singlekey model, reducing its overall complexity from about 232 to less than 222. Extending our techniques to 7-round AES, we obtain the best known attacks on reduced-round AES-192 which use practical amounts of data and memory, breaking the record for such attacks which was obtained in 2000 by the classical Square attack. In addition, we use our techniques to improve the Gilbert-Minier attack (2000) on 7-round AES, reducing its memory complexity from 2(80) to 2(40).
机译:确定AES的安全性是密码分析的核心问题,但该领域的进展缓慢而且只有少数密码分析技术导致了显着的进步。在Eurocrypt 2017 Grassi等人。为AES的类似AES的结构呈现了一种新颖的陈列地,但到目前为止,基于该区分器的所有已发表的攻击都不差不等于其复杂性的先前已知的攻击。在本文中,我们结合了基层等。用几种其他技术以一种新颖的方式获得单次模型中的5圆形AES的最佳已知的关键恢复攻击,将其整体复杂性降低到小于222.将技术扩展到7圆形的AES,我们获得最着名的攻击倒车AES-192,使用实用的数据和内存,打破了通过经典广场攻击在2000年获得的这种攻击的记录。此外,我们使用我们的技术在7圆形的AES上改善Gilbert-Minier攻击(2000),将其存储器复杂性从2(80)到2(40)中减少。

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