Distributed network computing over local ATM networks

Mengjou Lin, Jenwei Hsieh, David H.C. Du, Joseph P. Thomas, James A. MacDonald

Research output: Contribution to journalConference articlepeer-review

3 Scopus citations

Abstract

Communication between processors has long been the bottleneck of distributed network computing. However, recent progress in switch-based high-speed Local Area Networks (LANs) may be changing this situation. Asynchronous Transfer Mode (ATM) is one of the most widely-accepted and emerging high-speed network standards which can potentially satisfy the communication needs of distributed network computing. In this paper, we investigate distributed network computing over local ATM networks. We first study the performance characteristics involving end-to-end communication in an environment that includes several types of workstations interconnected via a Fore Systems' ASX-100 ATM Switch. We then compare the communication performance of four different Application Programming Interfaces (APIs). The four APIs were Fore Systems ATM API, BSD socket programming interface, Sun's Remote Procedure Call (RPC), and the Parallel Virtual Machine (PVM) message passing library. Each API represents distributed programming at a different communication protocol layer. We evaluate parallel Matrix Multiplication over the local ATM network. The experimental results show that network computing is promising over local ATM networks.

Original languageEnglish (US)
Pages (from-to)154-163
Number of pages10
JournalProceedings of the ACM/IEEE Supercomputing Conference
DOIs
StatePublished - 1994
EventProceedings of the 1994 Supercomputing Conference - Washington, DC, USA
Duration: Nov 14 1994Nov 18 1994

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