DocumentCode :
228772
Title :
Exploring Automatic, Online Failure Recovery for Scientific Applications at Extreme Scales
Author :
Gamell, Marc ; Katz, Daniel S. ; Kolla, Hemanth ; Chen, Jiann-Jong ; Klasky, Scott ; Parashar, Manish
Author_Institution :
NSF Cloud & Autonomic Comput. Center, Rutgers Univ., Piscataway, NJ, USA
fYear :
2014
fDate :
16-21 Nov. 2014
Firstpage :
895
Lastpage :
906
Abstract :
Application resilience is a key challenge that must be addressed in order to realize the exascale vision. Process/node failures, an important class of failures, are typically handled today by terminating the job and restarting it from the last stored checkpoint. This approach is not expected to scale to exascale. In this paper we present Fenix, a framework for enabling recovery from process/node/blade/cabinet failures for MPI-based parallel applications in an online (i.e., Without disrupting the job) and transparent manner. Fenix provides mechanisms for transparently capturing failures, re-spawning new processes, fixing failed communicators, restoring application state, and returning execution control back to the application. To enable automatic data recovery, Fenix relies on application-driven, diskless, implicitly coordinated check pointing. Using the S3D combustion simulation running on the Titan Cray-XK7 production system at ORNL, we experimentally demonstrate Felix´s ability to tolerate high failure rates (e.g., More than one per minute) with low overhead while sustaining performance.
Keywords :
application program interfaces; checkpointing; parallel processing; Fenix; MPI-based parallel application; S3D combustion simulation; application resilience; automatic data recovery; check pointing; exascale vision; extreme scales; node failures; online failure recovery; process-node-blade-cabinet failure; scientific application; Checkpointing; Combustion; Fault tolerance; Fault tolerant systems; Peer-to-peer computing; Runtime; Synchronization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High Performance Computing, Networking, Storage and Analysis, SC14: International Conference for
Conference_Location :
New Orleans, LA
Print_ISBN :
978-1-4799-5499-5
Type :
conf
DOI :
10.1109/SC.2014.78
Filename :
7013060
Link To Document :
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