DocumentCode
3146265
Title
Using Hardware Transactional Memory for High-Performance Computing
Author
Ljungkvist, Karl ; Tillenius, Martin ; Black-Schaffer, David ; Holmgren, Sverker ; Karlsson, Martin ; Larsson, Elisabeth
Author_Institution
Dept. of Inf. Technol., Uppsala Univ., Uppsala, Sweden
fYear
2011
fDate
16-20 May 2011
Firstpage
1660
Lastpage
1667
Abstract
This work investigates the benefits of transactional memory for high-performance and scientific computing by examining n-body and unstructured mesh applications on a prototype computer system with transactional memory support in hardware. Transactional memory systems have the potential to both improve performance, through reduced lock overhead, and ease development, by providing simplified synchronization semantics. To date, only a few early experiments have been presented on actual transactional memory hardware, with none of them investigating the benefits of transactional memory for scientific computing. We investigate straight-forward implementations to see if replacing locks by transactions can yield better performance and compete with more complex algorithms. Our experiments show that using transactions is the fastest way to concurrently update shared floating-point variables, which is of interest in many scientific computing applications. However, if it is possible, avoiding concurrent updates altogether yields the best performance.
Keywords
natural sciences computing; storage management; hardware transactional memory; high-performance computing; scientific computing; shared floating-point variables; Assembly; Atomic measurements; Benchmark testing; Finite element methods; Hardware; Instruction sets; Prototypes;
fLanguage
English
Publisher
ieee
Conference_Titel
Parallel and Distributed Processing Workshops and Phd Forum (IPDPSW), 2011 IEEE International Symposium on
Conference_Location
Shanghai
ISSN
1530-2075
Print_ISBN
978-1-61284-425-1
Electronic_ISBN
1530-2075
Type
conf
DOI
10.1109/IPDPS.2011.322
Filename
6009031
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