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Methods and metrics for fair server assessment under real-time financial workloads

机译:实时财务工作负载下公平服务器评估的方法和指标

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We present a rigorous methodology and new metrics for fair comparison of server and microserver platforms. Deploying our methodology and metrics, we compare a microserver with ARM cores against two servers with ×86 cores running the same real-time financial analytics workload. We define workload-specific but platform-independent performance metrics for platform comparison, targeting both datacenter operators and end users. Our methodology establishes that a server based on the Xeon Phi co-processor delivers the highest performance and energy efficiency. However, by scaling out energy-efficient microservers, we achieve competitive or better energy efficiency than a power-equivalent server with two Sandy Bridge sockets, despite the microserver's slower cores. Using a new iso-QoS metric, we find that the ARM microserver scales enough to meet market throughput demand, that is, a 100% QoS in terms of timely option pricing, with as little as 55% of the energy consumed by the Sandy Bridge server. Copyright © 2015 John Wiley & Sons, Ltd.
机译:我们提出了一种严格的方法和新的指标,用于服务器和微型服务器平台的公平比较。部署方法和指标后,我们将具有ARM内核的微型服务器与具有×86内核的两个服务器运行相同的实时财务分析工作负载进行比较。我们针对数据中心运营商和最终用户定义了特定于工作负载但与平台无关的性能指标,以进行平台比较。我们的方法论确定,基于至强融核协处理器的服务器可提供最高的性能和能效。但是,通过扩展节能型微服务器,尽管微服务器的内核速度较慢,但​​与具有两个Sandy Bridge插槽的同等功率服务器相比,我们可以实现有竞争力的能源效率或更好的能源效率。使用新的iso-QoS度量标准,我们发现ARM微服务器可扩展到足以满足市场吞吐量的需求,即按及时的期权定价获得100%的QoS,而Sandy Bridge所消耗的能源只有55%服务器。版权所有©2015 John Wiley&Sons,Ltd.

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