Differentiated storage services

M. Mesnier, Feng Chen, Tian Luo, Jason B. Akers
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引用次数: 91

Abstract

We propose an I/O classification architecture to close the widening semantic gap between computer systems and storage systems. By classifying I/O, a computer system can request that different classes of data be handled with different storage system policies. Specifically, when a storage system is first initialized, we assign performance policies to predefined classes, such as the filesystem journal. Then, online, we include a classifier with each I/O command (e.g., SCSI), thereby allowing the storage system to enforce the associated policy for each I/O that it receives. Our immediate application is caching. We present filesystem prototypes and a database proof-of-concept that classify all disk I/O --- with very little modification to the filesystem, database, and operating system. We associate caching policies with various classes (e.g., large files shall be evicted before metadata and small files), and we show that end-to-end file system performance can be improved by over a factor of two, relative to conventional caches like LRU. And caching is simply one of many possible applications. As part of our ongoing work, we are exploring other classes, policies and storage system mechanisms that can be used to improve end-to-end performance, reliability and security.
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差异化存储服务
我们提出了一种I/O分类架构来缩小计算机系统和存储系统之间不断扩大的语义差距。通过对I/O进行分类,计算机系统可以要求用不同的存储系统策略处理不同类型的数据。具体来说,当存储系统首次初始化时,我们将性能策略分配给预定义的类,例如文件系统日志。然后,在线上,我们为每个I/O命令(例如SCSI)包含一个分类器,从而允许存储系统对它接收的每个I/O强制执行相关策略。我们当前的应用程序是缓存。我们给出了文件系统原型和数据库概念验证,它们对所有磁盘I/O进行了分类——对文件系统、数据库和操作系统进行了很少的修改。我们将缓存策略与各种类相关联(例如,大文件应该在元数据和小文件之前被驱逐),并且我们表明,相对于LRU等传统缓存,端到端文件系统的性能可以提高两倍以上。缓存只是许多可能的应用程序之一。作为我们正在进行的工作的一部分,我们正在探索可用于改进端到端性能、可靠性和安全性的其他类、策略和存储系统机制。
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