Cost-performance optimization of SSL-based secure distributed infrastructures

S. Bregni, P. Giacomazzi, A. Poli
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引用次数: 0

Abstract

Business-to-Business and Business-to-Customer transactions in Internet require secure communication, especially for web applications. The Secure Socket Layer (SSL) protocol is one of the most viable solutions to provide the required level of confidentiality, message integrity and endpoint authentication. The two main alternatives for providing SSL security are the endto- end and the accelerated solutions, which enable different costperformance tradeoffs, where performance is intended as the overall delay that the customer experiences to complete the transaction. The accelerated solution is enabled by special devices (SSL acceleration cards) placed in network nodes. In this paper, we propose an optimization algorithm, which designs the ICT infrastructure minimizing the total cost, given a target performance objective defined as the end-to-end delay for the completion of the distributed application tasks. We apply this method to evaluate the efficiency of SSL acceleration versus end-to-end SSL, in order to determine in what conditions SSL acceleration is convenient. Our algorithm performs joint optimization of computing and communication resources, whilst in literature hardware and network are typically optimized separately.
基于ssl的安全分布式基础设施的性价比优化
Internet上的企业对企业和企业对客户的交易需要安全的通信,特别是对于web应用程序。安全套接字层(SSL)协议是提供所需级别的机密性、消息完整性和端点身份验证的最可行的解决方案之一。提供SSL安全性的两个主要替代方案是端到端解决方案和加速解决方案,它们支持不同的成本性能权衡,其中性能是指客户完成事务所经历的总体延迟。加速解决方案通过放置在网络节点中的特殊设备(SSL加速卡)来启用。在本文中,我们提出了一种优化算法,该算法以完成分布式应用任务的端到端延迟为目标性能目标,设计了总成本最小的ICT基础设施。我们应用这种方法来评估SSL加速与端到端SSL的效率,以确定在什么条件下SSL加速是方便的。我们的算法对计算资源和通信资源进行联合优化,而在文献中通常是硬件和网络分别优化。
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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