Performance Evaluation of Parallel International Data Encryption Algorithm on IMAN1 Super Computer

Ahmad Bany Doumi, Mohammad Qatawneh
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引用次数: 4

Abstract

Distributed security is an evolving sub-domain of information and network security. Security applications play a serious role when data exchanging, different volumes of data should be transferred from one site to another safely and at high speed. In this paper, the parallel International Data Encryption Algorithm (IDEA) which is one of the security applications is implemented and evaluated in terms of running time, speedup, and efficiency. The parallel IDEA has been implemented using message passing interface (MPI) library, and the results have been conducted using IMAN1 Supercomputer, where a set of simulation runs carried out on different data sizes to define the best number of processor which can be used to manipulate these data sizes and to build a visualization about the processor number that can be used while the size of data increased. The experimental results show a good performance by reducing the running time, and increasing speed up of encryption and decryption processes for parallel IDEA when the number of processors ranges from 2 to 8 with achieved efficiency 97% to 83% respectively
并行国际数据加密算法在IMAN1超级计算机上的性能评价
分布式安全是信息和网络安全领域一个不断发展的分支领域。安全应用在数据交换中起着重要的作用,不同数量的数据需要从一个站点安全、高速地传输到另一个站点。本文对并行国际数据加密算法(IDEA)进行了实现,并从运行时间、加速速度和效率等方面进行了评价。利用消息传递接口(MPI)库实现了并行IDEA,并在IMAN1超级计算机上对结果进行了验证,在IMAN1超级计算机上对不同的数据大小进行了一组模拟,以确定处理这些数据大小的最佳处理器数量,并建立了当数据大小增加时可以使用的处理器数量的可视化。实验结果表明,当并行IDEA的处理器数量在2 ~ 8个之间时,其加密和解密过程的运行时间缩短,速度提高,效率分别达到97% ~ 83%
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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