Title
The k-ary n-direct s-indirect family of topologies for large-scale interconnection networks.
Abstract
In large-scale supercomputers, the interconnection network plays a key role in system performance. Network topology highly defines the performance and cost of the interconnection network. Direct topologies are sometimes used due to its reduced hardware cost, but the number of network dimensions is limited by the physical 3D space, which leads to an increase of the communication latency and a reduction of network throughput for large machines. Indirect topologies can provide better performance for large machines, but at higher hardware cost. In this paper, we propose a new family of hybrid topologies, the k-ary n-direct s-indirect, that combines the best features from both direct and indirect topologies to efficiently connect an extremely high number of processing nodes. The proposed network is an n-dimensional topology where the k nodes of each dimension are connected through a small indirect topology of s stages. This combination results in a family of topologies that provides high performance, with latency and throughput figures of merit close to indirect topologies, but at a lower hardware cost. In particular, it doubles the throughput obtained per cost unit compared with indirect topologies in most of the cases. Moreover, their fault-tolerance degree is similar to the one achieved by direct topologies built with switches with the same number of ports.
Year
DOI
Venue
2016
10.1007/s11227-016-1640-z
The Journal of Supercomputing
Keywords
Field
DocType
High-performance computing,Interconnection networks,Direct topologies,Indirect topologies,Hybrid topologies,Routing
Supercomputer,Latency (engineering),Computer science,Network topology,Figure of merit,Throughput,Interconnection,Distributed computing
Journal
Volume
Issue
ISSN
72
3
0920-8542
Citations 
PageRank 
References 
5
0.47
18
Authors
5
Name
Order
Citations
PageRank
Roberto Peñaranda1132.40
Crispín Gómez Requena216012.57
María Engracia Gómez314917.48
Pedro López423316.39
José Duato53481294.85