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首页> 外文期刊>ACM transactions on reconfigurable technology and systems >A Novel Multicontext Coarse-Grained Reconfigurable Architecture (CGRA) For Accelerating Column-Oriented Databases
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A Novel Multicontext Coarse-Grained Reconfigurable Architecture (CGRA) For Accelerating Column-Oriented Databases

机译:一种新颖的多上下文粗粒度可重构体系结构(CGRA),用于加速面向列的数据库

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摘要

The storage model of column-oriented databases is similar in structure to densely packed matrices/vectors found in many high-performance computing applications. Hence, hardware-accelerated vectorized matrix operations using Reconfigurable Logic (RL) coprocessors may find parallels in hardware acceleration of databases. In this article, we explore this hypothesis by proposing a multicontext, coarse-grained Reconfigurable coprocessor Unit (RU) model that is used to accelerate some of the database operations in hardware for column-oriented databases. We then describe the implementation of hardware algorithms for the equi-join, nonequi-join, and inverse-lookup database operations. Finally, we evaluate these algorithms using a mi-crobenchmark query. Our results indicate that the query execution on the proposed RU model is one to two orders of magnitude faster than the software-only query execution.
机译:面向列的数据库的存储模型在结构上类似于在许多高性能计算应用程序中发现的密集包装的矩阵/向量。因此,使用可重配置逻辑(RL)协处理器的硬件加速矢量化矩阵运算可能会发现数据库的硬件加速并行。在本文中,我们通过提出多上下文,粗粒度可重配置可协处理器单元(RU)模型来探索该假设,该模型用于加速面向列数据库的硬件中的某些数据库操作。然后,我们描述了等值联接,无等联接和反向查找数据库操作的硬件算法的实现。最后,我们使用mi-crobenchmark查询评估这些算法。我们的结果表明,在建议的RU模型上的查询执行比纯软件查询执行快一到两个数量级。

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