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Issue title: Selected Papers from Super Computing 2012
Article type: Research Article
Authors: Chung, Jinsuk; | Lee, Ikhwan | Sullivan, Michael | Ryoo, Jee Ho | Kim, Dong Wan | Yoon, Doe Hyun | Kaplan, Larry | Erez, Mattan
Affiliations: The University of Texas at Austin, Austin, TX, USA | IBM, Yorktown Heights, NY, USA | Cray Inc., Seattle, WA, USA
Note: [] Corresponding author. E-mail: [email protected]
Abstract: This paper describes and evaluates a scalable and efficient resilience scheme based on the concept of containment domains. Containment domains are a programming construct that enable applications to express resilience needs and to interact with the system to tune and specialize error detection, state preservation and restoration, and recovery schemes. Containment domains have weak transactional semantics and are nested to take advantage of the machine and application hierarchies and to enable hierarchical state preservation, restoration and recovery. We evaluate the scalability and efficiency of containment domains using generalized trace-driven simulation and analytical analysis and show that containment domains are superior to both checkpoint restart and redundant execution approaches.
Keywords: Exascale, resilience, flexible reliability, fault-tolerance
DOI: 10.3233/SPR-130374
Journal: Scientific Programming, vol. 21, no. 3-4, pp. 197-212, 2013
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