MicroFaaS:裸机单板计算机上的节能无服务器

Anthony Byrne, Yanni Pang, Allen Zou, S. Nadgowda, A. Coskun
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引用次数: 3

摘要

无服务器功能即服务(FaaS)平台为云软件开发提供了一种全新的范例,但是这些平台底层的硬件基础设施是基于几十年前的设计模式。FaaS的兴起为重新构想云基础设施提供了一个机会,使其更节能、更经济、更可靠和更安全。在本文中,我们将展示如何用数百台基于arm的单板计算机替换少量基于x86的机架服务器,从而实现无虚拟化、能源比例的云,从而实现这一愿景。我们将系统设计的实现称为MicroFaaS,并将MicroFaaS与传统基于虚拟化的云系统风格实现的吞吐量匹配的FaaS平台进行了全面的评估和成本分析。我们的结果显示,与我们的基线相比,能源效率提高了5.6倍,总拥有成本降低了34.2%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MicroFaaS: Energy-efficient Serverless on Bare-metal Single-board Computers
Serverless function-as-a-service (FaaS) platforms offer a radically-new paradigm for cloud software development, yet the hardware infrastructure underlying these platforms is based on a decades-old design pattern. The rise of FaaS presents an opportunity to reimagine cloud infrastructure to be more energy-efficient, cost-effective, reliable, and secure. In this paper, we show how replacing handfuls of x86-based rack servers with hundreds of ARM-based single-board computers could lead to a virtualization-free, energy-proportional cloud that achieves this vision. We call our systematically-designed implementation MicroFaaS, and we conduct a thorough evaluation and cost analysis comparing MicroFaaS to a throughput-matched FaaS platform implemented in the style of conventional virtualization-based cloud systems. Our results show a 5.6x increase in energy efficiency and 34.2% decrease in total cost of ownership compared to our baseline.
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