DocumentCode :
3239744
Title :
MPICH-V: Toward a Scalable Fault Tolerant MPI for Volatile Nodes
Author :
Bosilca, George ; Bouteiller, Aurelien ; Cappello, Franck ; Djilali, Samir ; Fedak, Gilles ; Germain, Cecile ; Herault, Thomas ; Lemarinier, Pierre ; Lodygensky, Oleg ; Magniette, Frederic ; Neri, Vincent ; Selikhov, Anton
Author_Institution :
Université de Paris Sud
fYear :
2002
fDate :
16-22 Nov. 2002
Firstpage :
29
Lastpage :
29
Abstract :
Global Computing platforms, large scale clusters and future TeraGRID systems gather thousands of nodes for computing parallel scientific applications. At this scale, node failures or disconnections are frequent events. This Volatility reduces the MTBF of the whole system in the range of hours or minutes. We present MPICH-V, an automatic Volatility tolerant MPI environment based on uncoordinated checkpoint/roll-back and distributed message logging. MPICH-V architecture relies on Channel Memories, Checkpoint servers and theoretically proven protocols to execute existing or new, SPMD and Master-Worker MPI applications on volatile nodes. To evaluate its capabilities, we run MPICH-V within a framework for which the number of nodes, Channels Memories and Checkpoint Servers can be completely configured as well as the node Volatility. We present a detailed performance evaluation of every component of MPICH-V and its global performance for non-trivial parallel applications. Experimental results demonstrate good scalability and high tolerance to node volatility.
Keywords :
Application software; Computer applications; Computer architecture; Computer industry; Concurrent computing; Distributed computing; Fault tolerance; Large-scale systems; Message passing; Peer to peer computing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Supercomputing, ACM/IEEE 2002 Conference
ISSN :
1063-9535
Print_ISBN :
0-7695-1524-X
Type :
conf
DOI :
10.1109/SC.2002.10048
Filename :
1592865
Link To Document :
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