一种基于dram的固态硬盘缓存自适应分区方案

Hyotaek Shim, Bon-Keun Seo, Jin-Soo Kim, S. Maeng
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引用次数: 34

摘要

近年来,基于NAND闪存的固态硬盘(ssd)由于其性能优于传统磁盘,在笔记本电脑、台式机和服务器存储系统中得到了迅速的应用。然而,NAND闪存有一些限制,比如不在位置的更新、批量擦除操作和有限数量的写操作。为了减轻这些不利的特性,已经设计了各种改进内部软件和硬件组件的技术。其中,ssd盘内部设备缓存对性能影响较大。设备缓存主要用于两个目的:吸收频繁的读/写请求和存储逻辑到物理地址的映射信息。在设备缓存中,我们观察到数据缓冲和地址映射空间的最佳比例根据工作负载特征而变化。为了在ssd中实现最佳性能,设备缓存应该在两个主要用途之间进行适当的分区。在本文中,我们提出了一种基于幽灵缓存机制的自适应分区方案,可以根据工作负载的特点自适应地调整设备缓存中的缓冲空间和映射空间的比例。仿真结果表明,所提方案的性能接近最佳性能。
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An adaptive partitioning scheme for DRAM-based cache in Solid State Drives
Recently, NAND flash-based Solid State Drives (SSDs) have been rapidly adopted in laptops, desktops, and server storage systems because their performance is superior to that of traditional magnetic disks. However, NAND flash memory has some limitations such as out-of-place updates, bulk erase operations, and a limited number of write operations. To alleviate these unfavorable characteristics, various techniques for improving internal software and hardware components have been devised. In particular, the internal device cache of SSDs has a significant impact on the performance. The device cache is used for two main purposes: to absorb frequent read/write requests and to store logical-to-physical address mapping information. In the device cache, we observed that the optimal ratio of the data buffering and the address mapping space changes according to workload characteristics. To achieve optimal performance in SSDs, the device cache should be appropriately partitioned between the two main purposes. In this paper, we propose an adaptive partitioning scheme, which is based on a ghost caching mechanism, to adaptively tune the ratio of the buffering and the mapping space in the device cache according to the workload characteristics. The simulation results demonstrate that the performance of the proposed scheme approximates the best performance.
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