DocumentCode
560180
Title
Modeling and tolerating heterogeneous failures in large parallel systems
Author
Heien, Eric ; Kondo, Derrick ; Gainaru, Ana ; LaPine, Dan ; Kramer, Bill ; Cappello, Franck
Author_Institution
INRIA, Sophia Antipolis, France
fYear
2011
fDate
12-18 Nov. 2011
Firstpage
1
Lastpage
11
Abstract
As supercomputers and clusters increase in size and complexity, system failures are inevitable. Different hardware components (such as memory, disk, or network) of such systems can have different failure rates. Prior works assume failures equally affect an application, whereas our goal is to provide failure models for applications that reflect their specific component usage. This is challenging because component failure dynamics are heterogeneous in space and time. To this end, we study 5 years of system logs from a production high-performance computing system and model hard ware failures involving processors, memory, storage and net work components. We model each component and construct integrated failure models given the component us age of common supercomputing applications. We show that these application-centric models provide more accurate reliability estimates compared to general models, which improves the efficacy of fault-tolerant algorithms. In particular, we demonstrate how applications can tune their checkpointing strategies to the tailored model.
Keywords
checkpointing; fault tolerance; parallel machines; checkpointing strategy; component failure dynamics; fault-tolerant algorithm; hardware failure; heterogeneous failure; large parallel system; supercomputing application; Analytical models; Computational modeling; Correlation; Fault tolerance; Fault tolerant systems; Hardware; Program processors;
fLanguage
English
Publisher
ieee
Conference_Titel
High Performance Computing, Networking, Storage and Analysis (SC), 2011 International Conference for
Conference_Location
Seatle, WA
Electronic_ISBN
978-1-4503-0771-0
Type
conf
Filename
6114447
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