A distributed resource management architecture that supports advance reservations and co-allocation

Ian T Foster, C. Kesselman, Craig A. Lee, Bob Lindell, K. Nahrstedt, Alain Roy
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引用次数: 721

Abstract

The realization of end-to-end quality of service (QoS) guarantees in emerging network-based applications requires mechanisms that support first dynamic discovery and then advance or immediate reservation of resources that will often be heterogeneous in type and implementation and independently controlled and administered. We propose the Globus Architecture for Reservation and Allocation (GARA) to address these four issues. GARA treats both reservations and computational elements such as processes, network flows, and memory blocks as first-class entities, allowing them to be created, monitored, and managed independently and uniformly. It simplifies management of heterogeneous resource types by defining uniform mechanisms for computers, networks, disk, memory, and other resources. Layering on these standard mechanisms, GARA enables the construction of application-level co-reservation and co-allocation libraries that applications can use to dynamically assemble collections of resources, guided by both application QoS requirements and the local administration policy of individual resources. We describe a prototype GARA implementation that supports three different resource type-parallel computers, individual CPU under control of the dynamic soft real-time scheduler, and integrated services networks, and provide performance results that quantify the costs of our techniques.
支持提前预约和共同分配的分布式资源管理体系结构
在新兴的基于网络的应用程序中实现端到端服务质量(QoS)保证需要这样的机制:首先支持动态发现,然后提前或立即保留资源,这些资源通常在类型和实现上是异构的,并且是独立控制和管理的。为了解决这四个问题,我们提出了用于预留和分配的全球总线体系结构(GARA)。GARA将保留和计算元素(如进程、网络流和内存块)都视为一级实体,允许独立而统一地创建、监视和管理它们。它通过为计算机、网络、磁盘、内存和其他资源定义统一的机制,简化了异构资源类型的管理。在这些标准机制的基础上,GARA支持构建应用程序级别的共同保留和共同分配库,应用程序可以使用这些库在应用程序QoS需求和单个资源的本地管理策略的指导下动态地组装资源集合。我们描述了一个原型GARA实现,它支持三种不同的资源类型——并行计算机、动态软实时调度器控制下的单个CPU和集成服务网络,并提供了量化我们技术成本的性能结果。
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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