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Post-Quantum Lattice-Based Cryptography Implementations: A Survey

机译:基于量子后格子的密码学实现:一项调查

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The advent of quantum computing threatens to break many classical cryptographic schemes, leading to innovations in public key cryptography that focus on post-quantum cryptography primitives and protocols resistant to quantum computing threats. Lattice-based cryptography is a promising post-quantum cryptography family, both in terms of foundational properties as well as in its application to both traditional and emerging security problems such as encryption, digital signature, key exchange, and homomorphic encryption. While such techniques provide guarantees, in theory, their realization on contemporary computing platforms requires careful design choices and tradeoffs to manage both the diversity of computing platforms (e.g., high-performance to resource constrained), as well as the agility for deployment in the face of emerging and changing standards. In this work, we survey trends in lattice-based cryptographic schemes, some recent fundamental proposals for the use of lattices in computer security, challenges for their implementation in software and hardware, and emerging needs for their adoption. The survey means to be informative about the math to allow the reader to focus on the mechanics of the computation ultimately needed for mapping schemes on existing hardware or synthesizing part or all of a scheme on special-purpose hardware.
机译:量子计算的到来有可能破坏许多经典的加密方案,从而导致公钥密码学的创新,其重点是后量子密码学原语和可抵抗量子计算威胁的协议。基于晶格的密码学在基础特性以及对传统和新兴安全问题(如加密,数字签名,密钥交换和同态加密)的应用方面都是一个很有前途的后量子密码学系列。尽管此类技术提供了保证,但从理论上讲,它们在当代计算平台上的实现需要谨慎的设计选择和折衷方案,以管理计算平台的多样性(例如,高性能到资源受限的情况)以及面对部署的敏捷性不断变化的标准。在这项工作中,我们调查了基于格的加密方案的趋势,有关在计算机安全中使用格的一些最新基本建议,在软件和硬件中实现格的挑战以及采用它们的新需求。该调查意味着提供有关数学的丰富信息,使读者可以专注于最终计划所需的计算机制,这些计划是在现有硬件上映射方案或在专用硬件上综合方案的一部分或全部。

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