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Understanding failures in petascale computers

Journal of Physics Conference Series · 2007 · Vol. 78 · pp. 012022–012022
Bianca SchroederGarth A. Gibson

Abstract

With petascale computers only a year or two away there is a pressing need to anticipate and compensate for a probable increase in failure and application interruption rates. Researchers, designers and integrators have available to them far too little detailed information on the failures and interruptions that even smaller terascale computers experience. The information that is available suggests that application interruptions will become far more common in the coming decade, and the largest applications may surrender large fractions of the computer's resources to taking checkpoints and restarting from a checkpoint after an interruption. This paper reviews sources of failure information for compute clusters and storage systems, projects failure rates and the corresponding decrease in application effectiveness, and discusses coping strategies such as application-level checkpoint compression and system level process-pairs fault-tolerance for supercomputing. The need for a public repository for detailed failure and interruption records is particularly concerning, as projections from one architectural family of machines to another are widely disputed. To this end, this paper introduces the Computer Failure Data Repository and issues a call for failure history data to publish in it.

Distributed systems and fault toleranceAdvanced Data Storage TechnologiesDistributed and Parallel Computing SystemsPetascale computingComputer sciencePublicationProcess (computing)Fault toleranceSupercomputerDistributed computingOperating system

Funding

  • Javna Agencija za Raziskovalno Dejavnost RS
Citations
360
FWCI
16.24
field-weighted impact
References
30
Percentile
99%
vs. same field & year
Citations per year
References
A survey of rollback-recovery protocols in message-passing systems
ACM Computing Surveys · 2002 · 1,787 citations
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