DocumentCode :
3241063
Title :
Analysis of system performance by changing the ring architecture on the dual ring CC-NUMA system
Author :
Yun, Joo Beom ; Jhang, Seong Tae ; Jhon, Chu Shik ; Lee, Cheol Won
Author_Institution :
Nat. Security Res. Inst., Taejon, South Korea
fYear :
2002
fDate :
17-20 Dec. 2002
Firstpage :
103
Lastpage :
108
Abstract :
Since NUMA architecture has to access remote memory, the interconnection network determines the performance of the CC-NUMA system. Bus, which has been used as a popular interconnection network, has many limits in a large-scale system because of the limited physical scalability and bandwidth. The dual ring interconnection network, composed of high-speed point-to-point links, is made to resolve the defects of the bus for the large-scale system. However, it also has a problem, in that the response latency is rapidly increased when many nodes are attached to the snooping based CC-NUMA system with the dual ring. In this paper, we propose a chordal ring architecture in order to overcome the problem of the dual ring on a snooping based CC-NUMA system, and design an efficient link controller adapted to this architecture. We will also analyze the effects of chordal ring architecture on the system performance and the response latency by using a probability-driven simulator.
Keywords :
distributed shared memory systems; multiprocessor interconnection networks; parallel architectures; performance evaluation; CC-NUMA system; NUMA architecture; chordal ring architecture; distributed shared memory; interconnection network; probability-driven simulator; response latency; system performance; Bandwidth; Computer architecture; Delay; Frequency; Large-scale systems; Multiprocessing systems; Multiprocessor interconnection networks; Performance analysis; Scalability; System performance;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel and Distributed Systems, 2002. Proceedings. Ninth International Conference on
ISSN :
1521-9097
Print_ISBN :
0-7695-1760-9
Type :
conf
DOI :
10.1109/ICPADS.2002.1183385
Filename :
1183385
Link To Document :
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