RAPID-Cache-a reliable and inexpensive write cache for disk I/O systems

Yimin Hu, Qing Yang, Tycho Nightingale
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引用次数: 42

Abstract

This paper presents a new cache architecture called RAPID-Cache for Redundant, Asymmetrically Parallel, and Inexpensive Disk Cache. A typical RAPID-Cache consists of two redundant write buffers on top of a disk system. One of the buffers is a primary cache made of RAM or NVRAM and the other is a backup cache containing a two level hierarchy: a small NVRAM buffer on top of a log disk. The backup cache has nearly equivalent write performance as the primary RAM cache, while the read performance of the backup cache is not as critical because normal read operations are performed through the primary RAM cache and reads from the backup cache happen only during error recovery periods. The RAPID-Cache presents an asymmetric architecture with a fast-write-fast-read RAM being a primary cache and a fast-write-slow-read NVRAM-disk hierarchy being a backup cache. The asymmetric cache architecture allows cost-effective designs for very large write caches for high-end disk I/O systems that would otherwise have to use dual-copy, costly NVRAM caches. It also makes it possible to implement reliable write caching for low-end disk I/O systems since the RAPID-Cache makes use of inexpensive disks to perform reliable caching. Our analysis and trace-driven simulation results show that the RAPID-Cache has significant reliability/cost advantages over conventional single NVRAM write caches and has great cost advantages over dual-copy NVRAM caches. The RAPID-Cache architecture opens a new dimension for disk system designers to exercise trade-offs among performance, reliability and cost.
快速缓存—用于磁盘I/O系统的可靠且廉价的写缓存
本文提出了一种新的缓存体系结构,称为RAPID-Cache,用于冗余,非对称并行和廉价的磁盘缓存。典型的快速缓存由位于磁盘系统顶部的两个冗余写缓冲区组成。其中一个缓冲区是由RAM或NVRAM组成的主缓存,另一个是包含两层层次结构的备份缓存:日志磁盘上的一个小NVRAM缓冲区。备份缓存具有与主RAM缓存几乎相同的写性能,而备份缓存的读性能不那么关键,因为正常的读操作是通过主RAM缓存执行的,而从备份缓存读取操作仅在错误恢复期间发生。RAPID-Cache采用了一种非对称架构,其中快速写-快速读的RAM是主缓存,快速写-慢读的nvram磁盘层次结构是备份缓存。非对称缓存架构允许为高端磁盘I/O系统设计非常大的写缓存,否则将不得不使用双副本,昂贵的NVRAM缓存。它还使得为低端磁盘I/O系统实现可靠的写缓存成为可能,因为RAPID-Cache使用廉价的磁盘来执行可靠的缓存。我们的分析和跟踪驱动的仿真结果表明,RAPID-Cache比传统的单NVRAM写缓存具有显著的可靠性/成本优势,比双副本NVRAM缓存具有巨大的成本优势。快速缓存架构为磁盘系统设计人员在性能、可靠性和成本之间进行权衡打开了一个新的维度。
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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