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  5. CUDASW++: optimizing Smith-Waterman sequence database searches for CUDA-enabled graphics processing units

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Article
English
2009

CUDASW++: optimizing Smith-Waterman sequence database searches for CUDA-enabled graphics processing units

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English
2009
BMC Research Notes
Vol 2 (1)
DOI: 10.1186/1756-0500-2-73

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Douglas Leslie Maskell
Douglas Leslie Maskell

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Yongchao Liu
Douglas Leslie Maskell
Bertil Schmidt

Abstract

The Smith-Waterman algorithm is one of the most widely used tools for searching biological sequence databases due to its high sensitivity. Unfortunately, the Smith-Waterman algorithm is computationally demanding, which is further compounded by the exponential growth of sequence databases. The recent emergence of many-core architectures, and their associated programming interfaces, provides an opportunity to accelerate sequence database searches using commonly available and inexpensive hardware. Our CUDASW++ implementation (benchmarked on a single-GPU NVIDIA GeForce GTX 280 graphics card and a dual-GPU GeForce GTX 295 graphics card) provides a significant performance improvement compared to other publicly available implementations, such as SWPS3, CBESW, SW-CUDA, and NCBI-BLAST. CUDASW++ supports query sequences of length up to 59K and for query sequences ranging in length from 144 to 5,478 in Swiss-Prot release 56.6, the single-GPU version achieves an average performance of 9.509 GCUPS with a lowest performance of 9.039 GCUPS and a highest performance of 9.660 GCUPS, and the dual-GPU version achieves an average performance of 14.484 GCUPS with a lowest performance of 10.660 GCUPS and a highest performance of 16.087 GCUPS. CUDASW++ is publicly available open-source software. It provides a significant performance improvement for Smith-Waterman-based protein sequence database searches by fully exploiting the compute capability of commonly used CUDA-enabled low-cost GPUs.

How to cite this publication

Yongchao Liu, Douglas Leslie Maskell, Bertil Schmidt (2009). CUDASW++: optimizing Smith-Waterman sequence database searches for CUDA-enabled graphics processing units. BMC Research Notes, 2(1), pp. 73-73, DOI: 10.1186/1756-0500-2-73.

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Publication Details

Type

Article

Year

2009

Authors

3

Datasets

0

Total Files

0

Language

English

Journal

BMC Research Notes

DOI

10.1186/1756-0500-2-73

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