DocumentCode :
2396721
Title :
Provisioning a Multi-tiered Data Staging Area for Extreme-Scale Machines
Author :
Prabhakar, Ramya ; Vazhkudai, Sudharshan S. ; Kim, Youngjae ; Butt, Ali R. ; Li, Min ; Kandemir, Mahmut
fYear :
2011
fDate :
20-24 June 2011
Firstpage :
1
Lastpage :
12
Abstract :
Massively parallel scientific applications, running on extreme-scale supercomputers, produce hundreds of terabytes of data per run, driving the need for storage solutions to improve their I/O performance. Traditional parallel file systems (PFS) in high performance computing (HPC) systems are unable to keep up with such high data rates, creating a storage wall. In this work, we present a novel multi-tiered storage architecture comprising hybrid node-local resources to construct a dynamic data staging area for extreme-scale machines. Such a staging ground serves as an impedance matching device between applications and the PFS. Our solution combines diverse resources (e.g., DRAM, SSD) in such a way as to approach the performance of the fastest component technology and the cost of the least expensive one. We have developed an automated provisioning algorithm that aids in meeting the check pointing performance requirement of HPC applications, by using a least-cost storage configuration. We evaluate our approach using both an implementation on a large scale cluster and a simulation driven by six-years worth of Jaguar supercomputer job-logs, and show that our approach, by choosing an appropriate storage configuration, achieves 41.5% cost savings with only negligible impact on performance.
Keywords :
checkpointing; data handling; file organisation; parallel machines; HPC systems; I/O performance; Jaguar supercomputer job logs; automated provisioning algorithm; checkpointing performance requirement; dynamic data staging area; extreme scale machine; extreme scale supercomputer; high performance computing; impedance matching; least cost storage configuration; massively parallel scientific application; multitiered data staging area; multitiered storage architecture; parallel file systems; Aggregates; Checkpointing; Computer architecture; Random access memory; Resource management; Supercomputers; Throughput; Hierarchial Storage; High performance computing; Provisioning; SSDs;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Distributed Computing Systems (ICDCS), 2011 31st International Conference on
Conference_Location :
Minneapolis, MN
ISSN :
1063-6927
Print_ISBN :
978-1-61284-384-1
Electronic_ISBN :
1063-6927
Type :
conf
DOI :
10.1109/ICDCS.2011.33
Filename :
5961683
Link To Document :
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