An FPGA-Based Web Server for High Performance Biological Sequence Alignment

Y. Liu, K. Benkrid, A. Benkrid, Server Kasap
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引用次数: 19

Abstract

This paper presents the design and implementation of the FPGA-based web server for biological sequence alignment. Central to this web-server is a set of highly parameterisable, scalable, and platform-independent FPGA cores for biological sequence alignment. The web server consists of an HTML–based interface, a MySQL database which holds user queries and results, a set of biological databases, a library of FPGA configurations, a host application servicing user requests, and an FPGA coprocessor for the acceleration of the sequence alignment operation. The paper presents a real implementation of this server on an HP ProLiant DL145 server with a Celoxica RCHTX FPGA board. Compared to an optimized pure software implementation, our FPGA-based web server achieved a two order of magnitude speed-up for a pairwise protein sequence alignment application based on the Smith-Waterman algorithm. The FPGA-based implementation has the added advantage of being over 100x more energy efficient.
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基于fpga的高性能生物序列比对Web服务器
本文介绍了基于fpga的生物序列比对web服务器的设计与实现。这个web服务器的核心是一组高度可参数化、可扩展和平台无关的FPGA内核,用于生物序列对齐。web服务器由一个基于html的界面、一个保存用户查询和结果的MySQL数据库、一组生物数据库、一个FPGA配置库、一个为用户请求服务的主机应用程序和一个用于加速序列对齐操作的FPGA协处理器组成。本文采用Celoxica RCHTX FPGA板,在HP ProLiant DL145服务器上实现了该服务器。与优化的纯软件实现相比,我们基于fpga的web服务器实现了基于Smith-Waterman算法的两两蛋白质序列比对应用程序的两个数量级的加速。基于fpga的实现具有超过100倍的能源效率的额外优势。
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