Comparative realization of error detection schemes for implementations of mixcolumns in lightweight cryptography

Anita Aghaie, Mehran Mozaffari Kermani, R. Azarderakhsh
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Abstract

In this paper, through considering lightweight cryptography, we present a comparative realization of MDS matrices used in the VLSI implementations of lightweight cryptography. We verify the MixColumn/MixNibble transformation using MDS matrices and propose reliability approaches for thwarting natural and malicious faults. We note that one other contribution of this work is to consider not only linear error detecting codes but also recomputation mechanisms as well as fault space transformation (FST) adoption for lightweight cryptographic algorithms. Our intention in this paper is to propose reliability and error detection mechanisms (through linear codes, recomputations, and FST adopted for lightweight cryptography) to consider the error detection schemes in designing beforehand taking into account such algorithmic security. We also posit that the MDS matrices applied in the MixColumn (or MixNibble) transformation of ciphers to protect ciphers against linear and differential attacks should be incorporated in the cipher design in order to reduce the overhead of the applied error detection schemes. Finally, we present a comparative implementation framework on ASIC to benchmark the VLSI hardware implementation presented in this paper.
轻量级密码学中混合列实现错误检测方案的比较实现
在本文中,通过考虑轻量级加密,我们提出了用于轻量级加密的VLSI实现的MDS矩阵的比较实现。我们使用MDS矩阵验证MixColumn/MixNibble转换,并提出了阻止自然和恶意故障的可靠性方法。我们注意到这项工作的另一个贡献是不仅考虑了线性错误检测码,而且考虑了重计算机制以及轻量级密码算法的故障空间变换(FST)采用。我们在本文中的目的是提出可靠性和错误检测机制(通过线性编码、重新计算和轻量级加密采用的FST),以便在事先设计时考虑到这种算法安全性的错误检测方案。我们还假设,在密码的MixColumn(或MixNibble)变换中应用的MDS矩阵,以保护密码免受线性和差分攻击,应该合并到密码设计中,以减少所应用的错误检测方案的开销。最后,我们提出了一个ASIC上的比较实现框架,以对本文提出的VLSI硬件实现进行基准测试。
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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