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PARC4: High performance implementation of RC4 cryptographic algorithm using parallelism

机译:PARC4:使用并行性RC4加密算法的高性能实现

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In today's network-based cloud computing era, software applications are playing big role. The security of these software applications is paramount to the successful use of these applications. These applications utilize cryptographic algorithms to secure the data over the network through encryption and decryption processes. The use of parallel processors is now common in both mobile and cloud computing scenarios. Cryptographic algorithms are compute intensive and can significantly benefit from parallelism. This paper introduces a parallel approach to symmetric stream cipher security algorithm known as RC4. The algorithm is very popular and used in many key applications such the Wi-Fi connections, Skype, and Bit Torrent protocol systems. We present an efficient parallel implementation to the compute intensive PRGA that is pseudo-random generation algorithm portion of the RC4 algorithm and the resulted algorithm will be named as PARC4. The algorithm divides a message into fix sized large blocks and encrypts these blocks concurrently on multi core machine.
机译:在今天的基于网络的云计算时代,软件应用程序正在发挥重要作用。这些软件应用程序的安全性至关重要地使用这些应用程序。这些应用程序利用加密算法来通过加密和解密过程通过网络来保护数据。并行处理器的使用现在在移动和云计算场景中常见。加密算法是Compute密集型,可以显着受益于并行性。本文介绍了称为RC4的对称流密码安全算法的平行方法。该算法非常流行,并且在许多关键应用中使用,如Wi-Fi连接,Skype和Bit Torrent协议系统。我们向计算强度的PRGA呈现有效的并行实现,该PRGA是RC4算法的伪随机生成算法部分,结果算法将被命名为PARC4。该算法将消息划分为修复大小的大块,并同时在多核心机器上加密这些块。

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