使用代数原语高效生成特定于密码学的指令

Lei Liu, Guijie Han, Zixin Zhou, Sikun Li
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引用次数: 0

摘要

本文提出了一种在可重构体系结构ASRA上生成特定于密码学指令的新方法。ASRA紧密集成了一个定制的可重构核心与一个很长的指令字基本核心。ASRA的两个核心可以并行工作。针对密码学的指令生成方法可以直接将代数运算部署为ASRA的自定义功能单元(cfu)的原语,并且能够消除传统数据流图方法在设计空间探索方面的很大一部分困难。利用了安全应用程序中作为核心数据处理任务的块密码和哈希算法的密码学特定指令。然后在Xilinx Kintex-7 FPGA芯片上构建了ASRA的加速器原型。实验结果表明,我们的工作实现了较高的性能提升和良好的灵活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient Cryptology-Specific Instructions Generation with Algebra Primitives
This paper presents a novel approach for cryptology-specific instructions generation on a reconfigurable architecture which is named ASRA. The ASRA tightly integrates a customized reconfigurable core with a very-long instruction word basic core. Both cores in ASRA can work in parallel. The methodology for cryptology-specific instruction generation can directly deploy algebraic operations as primitives for ASRA's custom function units (CFUs), and is able to eliminate a large portion of design space exploration difficulty from conventional data-flow graph methods. Cryptology-specific instructions for block cipher and hash algorithms which are kernel data processing tasks in security applications are exploited. Then an accelerator prototype of the ASRA is built on a Xilinx Kintex-7 FPGA chip. Experiment results show that our work achieves a high performance improvement and a good flexibility.
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