FlashBench: A workbench for a rapid development of flash-based storage devices

Sungjin Lee, Jisung Park, Jihong Kim
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引用次数: 11

Abstract

As the cell size of NAND flash memory is shrinking, its physical characteristics such as performance and lifetime are significantly degraded. As effective solutions of overcoming such poor physical characteristics, more cross-layer system-level approaches (such as compression and deduplication techniques) are expected to be developed. These system-level techniques typically employ intelligent software algorithms supported by specialized hardware accelerators. Using hardware accelerators combined with sophisticated software algorithms greatly increases the design complexity of flash-based storage devices. However, existing storage design environments are not adequate enough to handle this increased design complexity in a timely and efficient manner. To address this new challenge, we propose a novel storage development environment, called FlashBench, that helps developers to build high-complexity storage solutions quickly. FlashBench is designed to provide a generic framework for the rapid development and validation of storage software/hardware algorithms by supporting multi-level design environments, specifically optimized for seamless hardware/software cross-layer integrations. Our case study demonstrates that FlashBench enables developers to implement high-complexity flash devices with specialized optimization functions in a shorter development time over traditional design environments.
FlashBench:用于快速开发基于闪存的存储设备的工作台
随着NAND闪存单元尺寸的不断缩小,其性能和寿命等物理特性显著降低。作为克服这种不良物理特性的有效解决方案,预计将开发更多的跨层系统级方法(如压缩和重复数据删除技术)。这些系统级技术通常采用由专用硬件加速器支持的智能软件算法。使用硬件加速器与复杂的软件算法相结合,大大增加了基于闪存的存储设备的设计复杂性。然而,现有的存储设计环境不足以及时有效地处理这种增加的设计复杂性。为了应对这一新的挑战,我们提出了一种新的存储开发环境,称为FlashBench,它可以帮助开发人员快速构建高复杂性的存储解决方案。FlashBench旨在通过支持多层次设计环境,为存储软件/硬件算法的快速开发和验证提供通用框架,专门针对无缝硬件/软件跨层集成进行了优化。我们的案例研究表明,FlashBench使开发人员能够在比传统设计环境更短的开发时间内实现具有专门优化功能的高复杂性闪存设备。
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