A multiple LID routing scheme for fat-tree-based infiniband networks
Схема маршрутизации с несколькими LID для сетей InfiniBand на основе fat-tree
2004-06-10
SCID: 54.1/gfjm9egu
Discuss with AI
InfiniBand simulator performance evaluationfat-tree-based InfiniBand networksm-port n-tree topologymultiple LID (MLID) routingpath selection and forwarding table assignment
Figures from the paper
Abstract (AI)
Summary form only given. In a cluster system, performance of the interconnection network greatly affects the computation power generated together from all interconnected processing nodes. The network architecture, the interconnection topology, and the routing scheme are three key elements dominating the performance of an interconnection network. InfiniBand architecture (IBA) is a new industry standard architecture. It defines a high-bandwidth, high-speed, and low-latency message switching network that is good for constructing high-speed interconnection networks for cluster systems. Fat-trees are well-adopted as the topologies of interconnection networks because of many nice properties they have. We proposed an m-port n-tree approach to construct fat-tree-based InfiniBand networks. Based on the constructed fat-tree-based InfiniBand networks, we proposed an efficient multiple LID (MLID) routing scheme. The proposed routing scheme is composed of processing node addressing scheme, path selection scheme, and forwarding table assignment scheme. To evaluate the performance of the proposed routing scheme, we have developed a software simulator for InfiniBand networks. The simulation results show that the proposed routing scheme runs well on the constructed fat-tree-based InfiniBand networks and is able to efficiently utilize the bandwidth and the multiple paths that fat-tree topology offers under InfiniBand architecture.
Key Findings
1
A multiple LID (MLID) routing scheme is developed, comprising addressing, path selection, and forwarding table assignment components.
2
A software simulator for InfiniBand networks was implemented to evaluate the MLID routing scheme.
3
An m-port n-tree method is proposed to construct fat-tree-based InfiniBand networks for cluster interconnection.
4
Simulation results indicate the MLID routing efficiently utilizes bandwidth and multiple fat-tree paths under InfiniBand architecture.
Research Object
Fat-tree-based InfiniBand interconnection networks constructed by an m-port n-tree approach
Research Subject
Performance and routing behavior of an efficient multiple LID (MLID) routing scheme including addressing, path selection, and forwarding table assignment to utilize bandwidth and multiple paths
Publication Details
Publication Date
2004-06-10
Journal
Publisher
ISSN
Access Type
Author Information
Download PDF
Subscribe to digest