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Scalability Studies of the BLASTn Scan and Ungapped Extension Functions

机译:BLASTN扫描和未授断的扩展功能的可扩展性研究

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BLASTn is a ubiquitous and important tool used for large scale DNA analysis. As such, it is a good candidate for acceleration with FPGAs. The aim of this paper is two-fold. First, building upon our prior BLAST work we describe a design composed of multiple cores that can be scaled in two dimensions. The ungapped extension and a second dimension are new in this work. Second, we use this non-trivial example to explore spatially scalable designs. To provide the ability to move the design to a future generation chip, a mathematical model of performance that incorporates all of the system design parameters and the user's preference (high throughput vs low latency) is developed. We demonstrate here that the model correctly predicts the optimal ratio between the two dimensions on a Xilinx Virtex-4 and measures four to five times faster performance figures as compared to a state of the art general purpose processor.
机译:BLASTN是用于大规模DNA分析的无处不在和重要的工具。因此,它是与FPGA加速的好候选者。本文的目的是两倍。首先,在我们的现有爆炸作品上构建我们描述由多个核心组成的设计,该设计可以以两个维度缩放。在这项工作中,未禁止的扩展和第二维度是新的。其次,我们使用这个非琐碎的例子来探索空间可扩展的设计。为了提供将设计移动到未来的一代芯片的能力,开发了包含所有系统设计参数和用户偏好(高吞吐量VS低延迟)的性能的数学模型。我们在此证明模型正确地预测了Xilinx Virtex-4上的两个维度之间的最佳比率,并且与最通用处理器的状态相比,性能数据的速度更快地测量了四到五倍。

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