Treffer: Unified fault-tolerance framework for hybrid task-parallel message-passing applications

Title:
Unified fault-tolerance framework for hybrid task-parallel message-passing applications
Contributors:
Barcelona Supercomputing Center
Publisher Information:
SAGE Publications
Publication Year:
2016
Collection:
Universitat Politècnica de Catalunya, BarcelonaTech: UPCommons - Global access to UPC knowledge
Document Type:
Fachzeitschrift article in journal/newspaper
File Description:
17 p.; application/pdf
Language:
English
Relation:
http://hpc.sagepub.com/content/early/2016/09/26/1094342016669416.abstract; info:eu-repo/grantAgreement/MINECO//TIN2015-65316-P/ES/COMPUTACION DE ALTAS PRESTACIONES VII/; info:eu-repo/grantAgreement/EC/FP7/610402/EU/Mont-Blanc 2, European scalable and power efficient HPC platform based on low-power embedded technology/MONT-BLANC 2; http://hdl.handle.net/2117/90874
DOI:
10.1177/1094342016669416
Rights:
Open Access
Accession Number:
edsbas.6E24C7B2
Database:
BASE

Weitere Informationen

We present a unified fault-tolerance framework for task-parallel message-passing applications to mitigate transient errors. First, we propose a fault-tolerant message-logging protocol that only requires the restart of the task that experienced the error and transparently handles any message passing interface calls inside the task. In our experiments we demonstrate that our fault-tolerant solution has a reasonable overhead, with a maximum observed overhead of 4.5%. We also show that fine-grained parallelization is important for hiding the overheads related to the protocol as well as the recovery of tasks. Secondly, we develop a mathematical model to unify task-level checkpointing and our protocol with system-wide checkpointing in order to provide complete failure coverage. We provide closed formulas for the optimal checkpointing interval and the performance score of the unified scheme. Experimental results show that the performance improvement can be as high as 98% with the unified scheme. ; The author(s) disclosed receipt of the following financial support for the research, authorship, and/or publication of this article: This work was supported by the FI-DGR 2013 scholarship and the European Community’s Seventh Framework Programme [FP7/2007-2013] under the Mont-blanc 2 Project (www.montblanc-project.eu), grant agreement no. 610402 and TIN2015-65316-P. ; Peer Reviewed ; Postprint (author's final draft)