Performance modeling and analysis of flash-based storage devices

H. H. Huang, Shan Li, A. Szalay, A. Terzis
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引用次数: 51

Abstract

Flash-based solid-state drives (SSDs) will become key components in future storage systems. An accurate performance model will not only help understand the state-of-the-art of SSDs, but also provide the research tools for exploring the design space of such storage systems. Although over the years many performance models were developed for hard drives, the architectural differences between two device families prevent these models from being effective for SSDs. The hard drive performance models cannot account for several unique characteristics of SSDs, e.g., low latency, slow update, and expensive block-level erase. In this paper, we utilize the black-box modeling approach to analyze and evaluate SSD performance, including latency, bandwidth, and throughput, as it requires minimal a priori information about the storage devices. We construct the black-box models, using both synthetic workloads and real-world traces, on three SSDs, as well as an SSD RAID. We find that, while the black-box approach may produce less desirable performance predictions for hard disks, a black-box SSD model with a comprehensive set of workload characteristics can produce accurate predictions for latency, bandwidth, and throughput with small errors.
基于闪存的存储设备性能建模与分析
基于闪存的固态硬盘(ssd)将成为未来存储系统的关键部件。准确的性能模型不仅有助于了解ssd的最新技术,而且为探索此类存储系统的设计空间提供了研究工具。尽管多年来为硬盘驱动器开发了许多性能模型,但两个设备家族之间的体系结构差异使这些模型无法有效地用于ssd。硬盘驱动器性能模型不能解释ssd的几个独特特征,例如,低延迟、慢更新和昂贵的块级擦除。在本文中,我们利用黑盒建模方法来分析和评估SSD性能,包括延迟,带宽和吞吐量,因为它需要最少的关于存储设备的先验信息。我们在三个SSD以及一个SSD RAID上使用合成工作负载和实际跟踪来构建黑盒模型。我们发现,虽然黑箱方法可能对硬盘产生不太理想的性能预测,但具有一组全面的工作负载特征的黑箱SSD模型可以准确地预测延迟、带宽和吞吐量,误差很小。
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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