使用部分可重构模块库的基于fpga的SQL查询加速器的动态组合

C. Dennl, Daniel Ziener, J. Teich
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引用次数: 81

摘要

在本文中,我们介绍了一种新的基于fpga的方法,用于使用动态部分重新配置来加速SQL查询。在大型数据库系统中,查询加速对于实现非常高的吞吐量至关重要。虽然常见的基于fpga的加速器适合实现如此高的吞吐量,但它们的设计很难扩展到新的操作。使用局部动态重新配置,我们能够构建更灵活的架构,可以扩展到新的操作或SQL结构,在FPGA上的面积开销非常低。此外,重新配置几个FPGA帧可以用来快速地从一个查询切换到下一个查询。在我们的方法中,将SQL查询转换为由部分可重构模块组成的硬件管道。(FPGA)数据路径的组装在运行时完成,使用静态系统为部分模块和数据库管理系统提供基于流的通信接口。更具体地说,每个传入的SQL查询被分析并划分为单个操作,这些操作随后被映射到库模块和加载在FPGA上的组合数据路径上。我们表明,与纯软件解决方案相比,我们的方法能够实现更高的吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On-the-fly Composition of FPGA-Based SQL Query Accelerators Using a Partially Reconfigurable Module Library
In this paper, we introduce a novel FPGA-based methodology for accelerating SQL queries using dynamic partial reconfiguration. Query acceleration is of utmost importance in large database systems to achieve a very high throughput. Although common FPGA-based accelerators are suitable to achieve such a high throughput, their design is hard to extend for new operations. Using partial dynamic reconfiguration, we are able to build more flexible architectures which can be extended to new operations or SQL constructs with a very low area overhead on the FPGA. Furthermore, the reconfiguration of a few FPGA frames can be used to switch very fast from one query to the next. In our approach, an SQL query is transformed into a hardware pipeline consisting of partially reconfigurable modules. The assembly of the (FPGA) data path is done at run-time using a static system providing the stream-based communication interfaces to the partial modules and the database management system. More specifically, each incoming SQL query is analyzed and divided into single operations which are subsequently mapped onto library modules and the composed data path loaded on the FPGA. We show that our approach is able to achieve a substantially higher throughput compared to a software-only solution.
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