DocumentCode
2645973
Title
Performance of the MPI Based File Share System
Author
Tsukamoto, Daisuke ; Nakashima, Takuo
Author_Institution
Grad. Sch. of Ind. Eng., Tokai Univ., Kumamoto, Japan
fYear
2011
fDate
26-28 Oct. 2011
Firstpage
561
Lastpage
566
Abstract
The current Internet traffics depend more on the P2P type communication than the legacy client-server type communication. The P2P communication has been applied to diverse systems such as the VoIP and the file sharing system for the P2P potential ability. The distributed file sharing system over the P2P network can especially provide the quick search, while the file accesses from the remote user do not follow the uniform distribution causing the degradation of searching performance. In this paper, we propose the new framework to implement the access method of shared objects into the real environment using the MPI (Message Passing Interface). In addition, we implemented the conventional Lock/Unlock method using MPI to compare the proposed owner permission method to access shared objects. The proposed shared object management system implemented on the MPI middleware can improve the processing speed compared to the Lock/Unlock method.
Keywords
Internet; client-server systems; message passing; middleware; peer-to-peer computing; telecommunication traffic; Internet traffic; MPI based file share system; MPI middleware; distributed file sharing; legacy client-server type communication; lock-unlock method; message passing interface; owner permission method; peer-to-peer communication; shared object management system; uniform distribution; Educational institutions; Internet; Libraries; Load management; Memory management; Message passing; Middleware; Distributed System; Message Passing Interface; P2P; Shared Object;
fLanguage
English
Publisher
ieee
Conference_Titel
Broadband and Wireless Computing, Communication and Applications (BWCCA), 2011 International Conference on
Conference_Location
Barcelona
Print_ISBN
978-1-4577-1455-9
Type
conf
DOI
10.1109/BWCCA.2011.91
Filename
6103094
Link To Document