DocumentCode
2414137
Title
Performance evaluation of a firewall-compliant Globus-based wide-area cluster system
Author
Tanaka, Yoshio ; Sato, Mitsuhisa ; Hirano, Motonori ; Nakada, Hidemoto ; Sekiguchi, Satoshi
Author_Institution
Real Work Comput. Partnership, Ibaraki, Japan
fYear
2000
fDate
2000
Firstpage
121
Lastpage
128
Abstract
Presents a performance evaluation of a wide-area cluster system based on a firewall-enabled Globus metacomputing toolkit. In order to establish communication links beyond the firewall, we have designed and implemented a resource manager called RMF (Resource Manager beyond the Firewall) and the Nexus Proxy, which relays TCP communication links beyond the firewall. In order to extend the Globus metacomputing toolkit to become firewall-enabled, we have built the Nexus Proxy into the Globus toolkit. We have built a firewall-enabled Globus-based wide-area cluster system in Japan and run some benchmarks on it. In this paper, we report various performance results, such as the communication bandwidth and latencies obtained, as well as application performance involving a tree search problem. In a wide-area environment, the communication latency through the Nexus Proxy is approximately six times larger when compared to that of direct communications. As the message size increases, however, the communication overhead caused by the Nexus Proxy can be negligible. We have developed a tree search problem using MPICH-G. We used a self-scheduling algorithm, which is considered to be suitable for a distributed heterogeneous metacomputing environment since it performs dynamic load balancing with low overhead. The performance results indicate that the communication overhead caused by the Nexus Proxy is not a severe problem in metacomputing environments
Keywords
authorisation; distributed memory systems; distributed programming; network servers; performance evaluation; resource allocation; scheduling; telecommunication security; transport protocols; tree searching; wide area networks; workstation clusters; MPICH-G; Nexus Proxy; RMF; TCP communication links; application performance; communication bandwidth; communication latencies; communication overhead; distributed heterogeneous metacomputing environment; dynamic load balancing; firewall-enabled Globus metacomputing toolkit; message size; performance evaluation; resource manager; self-scheduling algorithm; tree search problem; wide-area cluster system; Bandwidth; Delay; Laboratories; Metacomputing; Relays; Resource management; Search problems; Software performance; Software tools; Technology management;
fLanguage
English
Publisher
ieee
Conference_Titel
High-Performance Distributed Computing, 2000. Proceedings. The Ninth International Symposium on
Conference_Location
Pittsburgh, PA
ISSN
1082-8907
Print_ISBN
0-7695-0783-2
Type
conf
DOI
10.1109/HPDC.2000.868642
Filename
868642
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