DocumentCode :
3588661
Title :
Building a large-scale direct network with low-radix routers
Author :
Yong Su ; Zheng Cao ; Zhiguo Fan ; Zhan Wang ; Xiaoli Liu ; Xiaobing Liu ; Li Qiang ; Xuejun An ; Ninghui Sun
Author_Institution :
State Key Lab. of Comput. Archit., Inst. of Comput. Technol., Beijing, China
fYear :
2014
Firstpage :
368
Lastpage :
375
Abstract :
Communication locality is an important characteristic of parallel applications. A great deal of research shows that utilizing the characteristic will favor most applications. Aiming at communication locality, we present a hierarchical direct network topology to accelerate neighbor communication. Combining mesh topology and complete graph topology, it can be used to optimize local communication and build large-scale network with low radix routers. Analyzing the characteristic of hierarchical topology, we find the presented topology has high cost performance and excellent expandability. We also design two minimum path routing algorithms and compare them with Mesh, Dragonfly and PERCS topologies. The results show the saturated throughput of hierarchical topology is nearly 40% with uniform random trace and 70% with local communication model of 4K nodes. That indicates high scalability for applications with local communication and cost efficiency for uniform random trace.
Keywords :
telecommunication network reliability; telecommunication network routing; telecommunication network topology; PERCS topology; dragonfly topology; graph topology; large-scale direct network; low-radix router; mesh topology; minimum path routing algorithm; parallel application; scalability; Algorithm design and analysis; Bandwidth; Network topology; Program processors; Routing; Scalability; Topology; co-design; communication locality; hierarchical network; virtual higt radix router;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel and Distributed Systems (ICPADS), 2014 20th IEEE International Conference on
Type :
conf
DOI :
10.1109/PADSW.2014.7097830
Filename :
7097830
Link To Document :
بازگشت