PAB: Parallelism-Aware Buffer Management Scheme for Nand-Based SSDs

Xufeng Guo, Jianfeng Tan, Yuping Wang
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引用次数: 7

Abstract

Recently, internal buffer module and multi-level parallel components have already become the standard elements of SSDs. The internal buffer module is always used as a write cache, reducing the erasures and thus improving overall performance. The multi-level parallelism is exploited to service requests in a concurrent or interleaving manner, which promotes the system throughput. These two aspects have been extensively discussed in the literature. However, current buffer algorithms cannot take full advantage of parallelism inside SSDs. In this paper, we propose a novel write buffer management scheme called Parallelism-Aware Buffer (PAB). In this scheme, the buffer is divided into two parts named as Work-Zone and Para-Zone respectively. Conventional buffer algorithms are employed in the Work-Zone, while the Para-Zone is responsible for reorganizing the requests evicted from Work-Zone according to the underlying parallelism. Simulation results show that with only a small size of Para-Zone, PAB can achieve 19.2% ~ 68.1% enhanced performance compared with LRU based on a page-mapping FTL, while this improvement scope becomes 5.6% ~ 35.6% compared with BPLRU based on the state-of-the-art block-mapping FTL known as FAST.
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基于nand的固态硬盘并行感知缓冲管理方案
近年来,内部缓冲模块和多级并行组件已经成为固态硬盘的标配元件。内部缓冲区模块总是用作写缓存,减少擦除,从而提高整体性能。利用多级并行性以并行或交错的方式为请求提供服务,提高了系统的吞吐量。这两个方面在文献中已被广泛讨论。然而,当前的缓存算法不能充分利用ssd内部的并行性。在本文中,我们提出了一种新的写缓冲区管理方案,称为并行感知缓冲区(PAB)。在该方案中,缓冲区被分为两个部分,分别称为Work-Zone和Para-Zone。在Work-Zone中使用传统的缓冲区算法,而Para-Zone负责根据底层并行性重新组织从Work-Zone驱逐的请求。仿真结果表明,与基于页映射FTL的LRU相比,PAB在Para-Zone较小的情况下,性能提高了19.2% ~ 68.1%,而与基于最先进的块映射FTL (FAST)的BPLRU相比,性能提高幅度为5.6% ~ 35.6%。
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