基于多核处理器的并行文件系统动态多媒体加密

O. A. Khashan, N. M. Khafajah, Waleed Alomoush, Mohammad Alshinwan, Sultan Alamri, Samer H. Atawneh, M. Alsmadi
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引用次数: 1

摘要

保护磁盘驱动器上的多媒体数据是一个主要问题,因为它们的容量随着时间的推移而迅速增加,而且安全性和隐私问题也很普遍。现有的加密方案存在计算成本高、响应速度慢的问题。由于持续的常规交互,它们在用户方面的灵活性和可用性也很有限。动态加密文件系统可以以最少的用户输入和更高的安全级别自动处理所有加密操作,从而减轻传统加密应用程序的负面影响。然而,大多数最先进的加密文件系统不能提供期望的性能,因为它们的体系结构设计没有考虑多媒体数据的独特特性或与密钥管理和多用户文件共享相关的漏洞。最近向多核处理器体系结构的转变为降低计算成本和最大化性能创造了有效的解决方案。在本文中,我们开发了一个并行的基于fuse的加密文件系统,称为ParallelFS,用于在磁盘上存储多媒体文件。该文件系统利用多核处理器的并行性,实现了对称密码和非对称密码的混合加密方法。通过以对用户完全动态和透明的方式执行加密、解密和密钥管理,可用性得到了显著增强。实验表明,与使用常规顺序加密处理的方案相比,所开发的ParallelFS将多媒体文件的读写性能分别提高了约35%和22%。
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Dynamic Multimedia Encryption Using a Parallel File System Based on Multi-Core Processors
Securing multimedia data on disk drives is a major concern because of their rapidly increasing volumes over time, as well as the prevalence of security and privacy problems. Existing cryptographic schemes have high computational costs and slow response speeds. They also suffer from limited flexibility and usability from the user side, owing to continuous routine interactions. Dynamic encryption file systems can mitigate the negative effects of conventional encryption applications by automatically handling all encryption operations with minimal user input and a higher security level. However, most state-of-the-art cryptographic file systems do not provide the desired performance because their architectural design does not consider the unique features of multimedia data or the vulnerabilities related to key management and multi-user file sharing. The recent move towards multi-core processor architecture has created an effective solution for reducing the computational cost and maximizing the performance. In this paper, we developed a parallel FUSE-based encryption file system called ParallelFS for storing multimedia files on a disk. The developed file system exploits the parallelism of multi-core processors and implements a hybrid encryption method for symmetric and asymmetric ciphers. Usability is significantly enhanced by performing encryption, decryption, and key management in a manner that is fully dynamic and transparent to users. Experiments show that the developed ParallelFS improves the reading and writing performances of multimedia files by approximately 35% and 22%, respectively, over the schemes using normal sequential encryption processing.
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