n-m变体系统:基于云的Web应用程序的抗对抗软件复兴

Isaac Polinsky, Kyle Martin, W. Enck, M. Reiter
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引用次数: 1

摘要

Web服务器是攻击者的热门目标,因为它们是可公开访问的,并且经常容易受到攻击。可能几个月甚至几年都不会被发现,而恢复通常需要重新构建整个系统。在本文中,我们提出了n-m-Variant Systems,这是一个基于云的web应用程序的抗对抗软件复兴框架。我们通过引入变量m来改进技术,该变量m为管理员提供了调优环境以平衡资源使用、性能开销和安全保证的旋钮。使用m,安全保证可以调整为秒、分钟、天或完全阻力。我们设计并实现了一个n-m-Variant System原型,以保护提供动态内容的Mediawiki PHP应用程序不受外部SQL持久存储的影响。我们的性能评估显示,在适当的资源分配情况下,在108秒的抵抗中吞吐量降低了65%,在12天的抵抗中吞吐量降低了83%。此外,我们使用理论分析和仿真来表征系统参数对对手弹性的影响。通过这些努力,我们的工作演示了基于云的服务器的属性如何增强Web服务器的完整性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
n-m-Variant Systems: Adversarial-Resistant Software Rejuvenation for Cloud-Based Web Applications
Web servers are a popular target for adversaries as they are publicly accessible and often vulnerable to compromise. Compromises can go unnoticed for months, if not years, and recovery often involves a complete system rebuild. In this paper, we propose n-m-Variant Systems, an adversarial-resistant software rejuvenation framework for cloud-based web applications. We improve the state-of-the-art by introducing a variable m that provides a knob for administrators to tune an environment to balance resource usage, performance overhead, and security guarantees. Using m, security guarantees can be tuned for seconds, minutes, days, or complete resistance. We design and implement an n-m-Variant System prototype to protect a Mediawiki PHP application serving dynamic content from an external SQL persistent storage. Our performance evaluation shows a throughput reduction of 65% for 108 seconds of resistance and 83% for 12 days of resistance to sophisticated adversaries, given appropriate resource allocation. Furthermore, we use theoretical analysis and simulation to characterize the impact of system parameters on resilience to adversaries. Through these efforts, our work demonstrates how properties of cloud-based servers can enhance the integrity of Web servers.
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