Title :
Protocol and performance analysis of the MPC parallel computer
Author :
Gluck, O. ; Zerrouki, A. ; Desbarbieux, J.L. ; Fenyo, A. ; Grener, A. ; Wajsburt, F. ; Spasevski, C. ; Silva, F. ; Dreyfus, E.
Author_Institution :
Univ. Pierre et Marie Curie, Paris, France
Abstract :
This paper presents the MPC parallel computer and its MPI implementation performed at the Laboratoire LIP6 of Univ. Pierre and Marie Curie, Paris. MPC is a low cost and high performance parallel computer using standard PC main-boards as processing nodes connected through the specific FastHSL board to a high speed communication network using HSL 1 Gbits/s serial links, IEEE 1355 compliant. Two Asics are presented: RCUBE which is the HSL network router and PCI-DDC the network controller implementing the Direct Deposit State Less receiver protocol. The software part of the MPC parallel computer consists of 2 zero-copy layers leading to a latency of 5 to 40 μs and a throughput of 490 Mbits/s. An efficient MPI implementation based on MPICH is presented and evaluated on an MPC parallel computer. Measures show a latency of 26 μs and an useful throughput of 450 Mbits/s This paper presents also a performances study of the MPI implementation on the MPC computer. This reveals Several possible optimizations to reduce the overall MPI transfer latency on the MPC Computer
Keywords :
multiprocessor interconnection networks; parallel machines; performance evaluation; protocols; workstation clusters; HSL network router; MPC parallel computer; MPI implementation; PC-cluster; PCI-DDC; RCUBE; communication network; interconnection networks; message passing; network controller; parallel computer; parallel computing systems; Communication networks; Communication standards; Computer networks; Concurrent computing; Costs; Delay; High performance computing; Performance analysis; Protocols; Throughput;
Conference_Titel :
Parallel and Distributed Processing Symposium., Proceedings 15th International
Conference_Location :
San Francisco, CA
Print_ISBN :
0-7695-0990-8
DOI :
10.1109/IPDPS.2001.924994