Cosmos+ OpenSSD

Jaewook Kwak, Sangjin Lee, Kibin Park, Jinwoo Jeong, Y. Song
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引用次数: 18

Abstract

As semiconductor technology has advanced, many storage systems have begun to use non-volatile memories as storage media. The organization and architecture of storage controllers have become more complex to meet various design requirements in terms of performance, response time, quality of service (QoS), and so on. In addition, due to the evolution of memory technology and the emergence of new applications, storage controllers employ new firmware algorithms and hardware modules. When designing storage controllers, engineers often evaluate the performance impact of using new software and hardware components using software simulators. However, this technique often yields limited evaluation accuracy because of the difficulty of modeling complex operations of components and the interactions among them. In this article, we present a reconfigurable flash storage controller design that serves as a rapid prototype. This design can be synthesized into a field-programmable gate array device and used in a realistic performance evaluation environment. We show the usefulness of our design by demonstrating the performance impact of design parameters.
随着半导体技术的发展,许多存储系统开始采用非易失性存储器作为存储介质。存储控制器的组织和体系结构变得越来越复杂,以满足在性能、响应时间、服务质量(QoS)等方面的各种设计需求。此外,由于存储技术的发展和新应用的出现,存储控制器采用新的固件算法和硬件模块。在设计存储控制器时,工程师经常使用软件模拟器来评估使用新软件和硬件组件对性能的影响。然而,由于对组件的复杂操作和组件之间的相互作用进行建模的困难,这种技术通常会产生有限的评估精度。在这篇文章中,我们提出了一个可重构的闪存控制器设计,作为一个快速原型。该设计可以综合成一个现场可编程门阵列器件,并应用于实际的性能评估环境中。我们通过演示设计参数对性能的影响来展示我们设计的有用性。
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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