具有有形QoS表达式的空间位置感知虚拟存储设备

Pei Yan, Song Jiang
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引用次数: 0

摘要

统一存储服务以其成本效益、可靠性和可维护性在各种IT系统基础设施的构建中得到了广泛的应用。同时,只有当在统一存储系统上运行应用程序的用户与在每个服务器上使用直接连接存储的用户相比具有相似或更好的性能体验时,存储设计才能真正被广泛接受。我们提出了一个框架,在这个框架中,来自一个用户的服务请求的性能与其他用户的服务请求的性能很好地隔离开来,这样每个用户都可以被视为被分配了一个独立的虚拟磁盘(VD),其性能在其服务水平协议(SLA)中指定。空间位置感知框架支持三种我们认为对用户最切实的SLA表达式,我们将其命名为租用磁盘、延迟感知和吞吐量感知。我们提出的用于实现这三种类型VD的I/O调度算法在不违反SLA的情况下为每个VD提供强隔离、低干扰和高保真性能。我们的算法还允许不同类型的VD相互协作,以提高每个VD以及整个物理存储的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatial-Locality-Aware Virtual Storage Devices with Tangible QoS Expressions
Consolidated storage service receives its momentum in the building of various IT system infrastructures because of its cost efficiency, reliability, and maintainability. Meanwhile, only when users who run their applications on the consolidated storage system have a similar or better performance experience compared to those using direct-attached storage on each server can the storage design really be widely accepted. We propose a framework in which performance of servicing requests from one user is well isolated from that for the others in such a way that each user can be regarded as being allocated an independent virtual disk (VD) of performance as specified in its service-level agreement (SLA). Three SLA expressions that we believe are most tangible to users are supported in the spatial-locality-aware framework, which we name as rent-a-disk, latency-conscious, and throughput-conscious. Our proposed I/O scheduling algorithm for implementing the three types of VDs provides strong isolation, low interference, and high fidelity of performance for each VD if SLA is not violated. Our algorithm also enables different types of VDs to cooperate with each other to improve performance for each VD as well as for the entire physical storage.
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