Usuba:高吞吐量和恒定时间的密码,通过构造

Darius Mercadier, Pierre-Évariste Dagand
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引用次数: 11

摘要

密码原语受制于发散指令。功能正确性和可审核性推动了高级编程语言的使用。性能和定时攻击的威胁促使我们使用汇编程序来利用(或避免)给定机器的微体系结构特性。我们相信,一种合适的编程语言可以调和这两种观点,并实际提高这两种观点的技术水平。Usuba是一种固执己见的数据流编程语言,其中分组密码变得如此简单,以至于“明显正确”,其类型在单个位的粒度上记录和执行有效的并行化策略。它的优化编译器Usubac产生高吞吐量、恒定时间的实现,其性能与手动调优的参考实现相当。我们方法的基石是位切片的系统化和泛化,位切片是密码学家经常使用的实现技巧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Usuba: high-throughput and constant-time ciphers, by construction
Cryptographic primitives are subject to diverging imperatives. Functional correctness and auditability pushes for the use of a high-level programming language. Performance and the threat of timing attacks push for using no more abstract than an assembler to exploit (or avoid!) the micro-architectural features of a given machine. We believe that a suitable programming language can reconcile both views and actually improve on the state of the art of both. Usuba is an opinionated dataflow programming language in which block ciphers become so simple as to be “obviously correct” and whose types document and enforce valid parallelization strategies at the granularity of individual bits. Its optimizing compiler, Usubac, produces high-throughput, constant-time implementations performing on par with hand-tuned reference implementations. The cornerstone of our approach is a systematization and generalization of bitslicing, an implementation trick frequently used by cryptographers.
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