基于CUDA异构架构的加密算法加速

Hassan A. Youness
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引用次数: 0

摘要

密码学是计算机系统中保护信息不可缺少的工具。高级加密标准AES (Advanced Encryption Standard)是密码学算法中的一种,它是一种众所周知的对称密钥算法,使用相同的密钥对消息进行加密和解密。它打破了数据加密标准(DES)使用更大的可变长度方式的限制。此外,它还决定了三倍DES (3DES)的准备速度适中,也使用了更多级别的资源资产,因此,它被美国政府首选为加解密标准。AES目前在全球范围内被用于加密高级信息,包括金融、电信和立法数据。本文采用计算统一设备架构(CUDA)在图形处理单元(GPU)上并行处理AES加密算法的每一步,实现了AES方案。这可以增强加密算法执行的性能,在多核异构系统上实现61.36倍的加速系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Speedup for Cryptography on CUDA Heterogeneous Architecture
Cryptography is an indispensable tool for protecting information in computer systems The Advanced Encryption Standard (AES) is one of the cryptography algorithms, which a well-known symmetric key algorithm, that utilizes the same secret key to encrypt and decrypt a message. It defeats that constraint of the more modest enter measure of the Data Encryption Standard (DES) toward using a greater and variable-length way. Moreover, It also determines those moderate preparing speed for triple DES (3DES), also uses more level assets of resources, therefore, it is preferred as the encryption and decryption standard by the U.S. government. AES is now being used worldwide for encrypting advanced information, including financial, telecommunications, and legislature data. In this paper, the AES scheme is implemented on Graphics Processing Unit (GPU) by parallelizing each step in the encryption algorithm of the AES using Compute Unified Device Architecture (CUDA). This allows enhancing the performance of the encryption algorithm execution to achieve a speedup factor of 61.36x on the multicore heterogeneous system.
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