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

Author:

Subasi Omer12,Martsinkevich Tatiana3,Zyulkyarov Ferad1,Unsal Osman1,Labarta Jesus12,Cappello Franck4

Affiliation:

1. Barcelona Supercomputing Center, Spain

2. Universitat Politecnica de Catalunya, Spain

3. INRIA, University of Paris Sud, France

4. Argonne National Laboratory, USA

Abstract

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.

Publisher

SAGE Publications

Subject

Hardware and Architecture,Theoretical Computer Science,Software

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