{"title":"Deadlock-free dynamic reconfiguration over InfiniBand™ NETWORKS","authors":"B. Zafar, T. Pinkston, Aurelio Bermúdez, J. Duato","doi":"10.1080/10637190410001725463","DOIUrl":null,"url":null,"abstract":"InfiniBand Architecture (IBA) is a newly established general-purpose interconnect standard applicable to local area, system area and storage area networking and I/O. Networks based on this standard should be capable of tolerating topological changes due to resource failures, link/switch activations, and/or hot swapping of components. In order to maintain connectivity, the network's routing function may need to be reconfigured on each topological change. Although the architecture has various mechanisms useful for configuring the network, no strategy or procedure is specified for ensuring deadlock freedom during dynamic network reconfiguration. In this paper, a method for applying the Double Scheme over InfiniBand networks is proposed. The Double Scheme provides a systematic way of reconfiguring a network dynamically while ensuring freedom from deadlocks. We show how features and mechanisms available in IBA for other purposes can also be used to implement dynamic network reconfiguration based on the Double Scheme. We also propose new mechanisms that may be considered in future versions of the IBA specification for making dynamic reconfiguration and other subnet management operations more efficient.","PeriodicalId":406098,"journal":{"name":"Parallel Algorithms and Applications","volume":"35 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2004-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"17","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Parallel Algorithms and Applications","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1080/10637190410001725463","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 17
Abstract
InfiniBand Architecture (IBA) is a newly established general-purpose interconnect standard applicable to local area, system area and storage area networking and I/O. Networks based on this standard should be capable of tolerating topological changes due to resource failures, link/switch activations, and/or hot swapping of components. In order to maintain connectivity, the network's routing function may need to be reconfigured on each topological change. Although the architecture has various mechanisms useful for configuring the network, no strategy or procedure is specified for ensuring deadlock freedom during dynamic network reconfiguration. In this paper, a method for applying the Double Scheme over InfiniBand networks is proposed. The Double Scheme provides a systematic way of reconfiguring a network dynamically while ensuring freedom from deadlocks. We show how features and mechanisms available in IBA for other purposes can also be used to implement dynamic network reconfiguration based on the Double Scheme. We also propose new mechanisms that may be considered in future versions of the IBA specification for making dynamic reconfiguration and other subnet management operations more efficient.
IBA (InfiniBand Architecture)是一种新建立的通用互连标准,适用于局域网、系统区和存储区组网和I/O。基于此标准的网络应该能够容忍由于资源故障、链路/交换机激活和/或组件热插拔而导致的拓扑变化。为了保持连通性,网络的路由功能可能需要在每次拓扑变化时重新配置。尽管该体系结构具有用于配置网络的各种机制,但没有指定任何策略或过程来确保动态网络重新配置期间的死锁自由。本文提出了一种在InfiniBand网络上实现双方案的方法。双重方案提供了一种动态重新配置网络的系统方法,同时确保避免死锁。我们展示了IBA中可用于其他目的的特性和机制如何也可用于实现基于双方案的动态网络重构。我们还提出了新的机制,可以在IBA规范的未来版本中考虑,以使动态重新配置和其他子网管理操作更有效。