Teaching the Next Generation of Cryptographic Hardware Design to the Next Generation of Engineers

Teaching the Next Generation of Cryptographic Hardware Design to the Next Generation of Engineers
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向下一代工程师教授下一代加密硬件设计

DOI:
10.1145/3299874.3317994
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发表时间:
2019
期刊:
Proceedings of the 2019 on Great Lakes Symposium on VLSI
影响因子:
--
通讯作者:
Aysu, Aydin
Aysu, Aydin
中科院分区:
--
文献类型:
--
作者:
Aysu, Aydin

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针对密码系统的不断发展的威胁和计算平台的日益多样性迫使向更广泛的受众教授密码工程。本文介绍了2018年秋季在北卡罗来纳州州立大学教授的一门新的硬件安全研究生课程的开发。本课程面向没有密码学或硬件漏洞背景的受众。该课程特别关注后量子密码系统--减轻量子计算机攻击的下一代密码系统--并演变为为后量子密码学设计专用硬件加速器,执行复杂的实现攻击(例如,侧信道和故障攻击),以及在这样的硬件设计上构建对策。我们讨论了课程设计,动手作业的开发,最终的研究项目成果,以及从课程中获得的结果以及相关的挑战。实践证明,该课程是可行的,能够达到预期的目标,学生也很喜欢,但仍有改进的空间。
Evolving threats against cryptographic systems and the increasing diversity of computing platforms enforce teaching cryptographic engineering to a wider audience. This paper describes the development of a new graduate course on hardware security taught at North Carolina State University during Fall 2018. The course targets an audience with no background on cryptography or hardware vulnerabilities. The course focuses especially on post-quantum cryptosystems---the next-generation cryptosystems mitigating quantum computer attacks---and evolves into designing specialized hardware accelerators for post-quantum cryptography, executing sophisticated implementation attacks (e.g., side-channel and fault attacks), and building countermeasures on such hardware designs. We discuss the curriculum design, hands-on assignment's development, final research project outcome, and the results obtained from the course together with the associated challenges. Our experience shows that such a course is feasible, can achieve its goals, and liked by the students, but there is room for improvement.
具有电源侧信道对策的二进制 Ring-LWE 硬件
DOI: 10.23919/date.2018.8342207
发表时间: 2018
期刊: 2018 Design, Automation & Test in Europe Conference & Exhibition (DATE)
影响因子: --
作者:
Aydin Aysu;M. Orshansky;Mohit Tiwari
通讯作者: Mohit Tiwari