用pascal架构在GPU中相乘非常大的整数

Boon-Chiao Chang, B. Goi, R. Phan, W. Lee
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引用次数: 2

摘要

乘法在科学计算和密码学中起着重要的作用。当乘数的大小变大(例如超过100K-bit)时,乘法过程变得非常耗时。在本文中,我们提出了在最先进的GPU架构中实现非常大的整数乘法的技术。该算法的实现依赖于64位素数的数论变换。实现结果表明,在GTX1070 (Pascal架构的GPU)上,768k位整数的乘法运算耗时1.37毫秒。本文提出的工作可用于实现各种高级密码系统,包括同态加密和基于点阵的密码系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiplying very large integer in GPU with pascal architecture
Multiplication plays an important role in scientific computing and cryptography. When the size of multiplicands grow large (e.g. more than 100K-bit), the multiplication process become time consuming. In this paper, we present implementation techniques to multiply very large integer in state of the art GPU architecture. The implementation relies on Number Theoretic Transform with 64-bit prime. The implementation results show that multiplication of 768K-bit integer takes 1.37 milliseconds on GTX1070 (GPU with Pascal architecture). The work presented in this paper can be used to implement various advanced cryptosystem, including Homomorphic Encryption and Lattice based cryptography.
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