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Energy-efficient crypto acceleration with HW/SW co-design for HTTPS

机译:通过HW / SW Co-Design为HTTPS提供节能加密加速

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Entering the Big Data era leads to the rapid development of web applications which provide highperformance sensitive access on large cloud data centers. HTTPS has been widely deployed as an extension of HTTP by adding an encryption layer of SSL/TLS protocol for secure communication over the Internet. To accelerate the complex crypto computation, specific acceleration instruction set and hardware accelerator are adopted. However, energy consumption has been ignored in the rush for performance. Actually, energy efficiency has become a challenge with the increasing demands for performance and energy saving in data centers. In this paper, we present the EECA, an Energy-Efficient Crypto Acceleration system for HTTPS with OpenSSL. It provides high energy-efficient encryption through HW/SW co-design. The essential idea is to make full use of system resource to exert the superiorities of different crypto acceleration approaches for an energy-efficient design. Experimental results show that, if only do crypto computations with typical encryption algorithm AES-256-CBC, the proposed EECA could get up to 1637.13%, 84.82%, and 966.23% PPW (Performance per Watt) improvement comparing with original software encryption, instruction set acceleration and hardware accelerator, respectively. If considering the whole working flow for end-to-end secure HTTPS based on OpenSSL with cipher suite ECDHE-RSA-AES256-SHA384, EECA could also improve the energy efficiency by up to 422.26%, 40.14% and 96.05% comparing with the original Web server using software, instruction set and hardware accelerators, respectively. (C) 2019 Elsevier B.V. All rights reserved.
机译:进入大数据时代导致Web应用程序的快速发展,在大型云数据中心提供高度敏感的敏感性。通过添加SSL / TLS协议的加密层,HTTPS已被广泛部署为HTTP的扩展,以便通过Internet进行安全通信。为了加速复杂的加密计算,采用了特定的加速指令集和硬件加速器。然而,在急剧上忽略了能源消耗以进行性能。实际上,能源效率随着对数据中心的性能和节能的需求不断增长而成为挑战。在本文中,我们介绍了HTTPS的EECA,具有openSSL的能量有效的加速系统。它通过HW / SW Co-Design提供高节能加密。基本思想是充分利用系统资源来施加不同加密加速方法的优势,以实现节能设计。实验结果表明,如果只有具有典型加密算法AES-256-CBC的加密计算,则提出的EECA可以获得高达1637.13%,84.82%和966.23%的PPW(每个瓦特的性能)改进与原始软件加密,指令比较分别设置加速度和硬件加速器。如果考虑基于Openssl的端到端安全HTTPS的整个工作流程,ChipheSL与Cipher Suite Ecdhe-RSA-AES256-SHA384,也可以将能量效率提高至422.26%,40.14%和96.05%比较Web服务器分别使用软件,指令集和硬件加速器。 (c)2019 Elsevier B.v.保留所有权利。

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