DocumentCode :
611082
Title :
ECOFIT: A Framework to Estimate Energy Consumption of Fault Tolerance Protocols for HPC Applications
Author :
el Mehdi Diouri, M. ; Gluck, O. ; Lefevre, Laurent ; Cappello, Franck
Author_Institution :
Lab. de l´Inf. du Parallelisme, Univ. Lyon 1, Villeurbanne, France
fYear :
2013
fDate :
13-16 May 2013
Firstpage :
522
Lastpage :
529
Abstract :
Energy consumption and fault tolerance are two interrelated issues to address for designing future exascale systems. Fault tolerance protocols used for check pointing have different energy consumption depending on parameters like application features, number of processes in the execution and platform characteristics. Currently, the only way to select a protocol for a given execution is to run the application and monitor the energy consumption of different fault tolerance protocols. This is needed for any variation of the execution setting. To avoid this time and energy consuming process, we propose an energy estimation framework. It relies on an energy calibration of the considered platform and a user description of the execution setting. We evaluate the accuracy of our estimations with real applications running on a real platform with energy consumption monitoring. Results show that our estimations are highly accurate and allow selecting the best fault tolerant protocol without pre-executing the application.
Keywords :
checkpointing; energy consumption; fault tolerant computing; parallel processing; ECOFIT; HPC applications; check pointing; energy calibration; energy consumption estimation; energy consumption monitoring; exascale systems; fault tolerance protocols; Calibration; Checkpointing; Energy consumption; Fault tolerance; Fault tolerant systems; Power demand; Protocols; Checkpoint/Restart; Energy Consumption; Estimation; Fault tolerance protocols; Performance;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Cluster, Cloud and Grid Computing (CCGrid), 2013 13th IEEE/ACM International Symposium on
Conference_Location :
Delft
Print_ISBN :
978-1-4673-6465-2
Type :
conf
DOI :
10.1109/CCGrid.2013.80
Filename :
6546134
Link To Document :
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