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Efficiency analysis methodology of FPGAs based on lost frequencies, area and cycles

机译:基于丢失频率,面积和周期的FPGA效率分析方法

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摘要

AbstractWe propose a methodology to study and to quantify efficiency and the impact of overheads on runtime performance. Most work on High-Performance Computing (HPC) for FPGAs only studies runtime performance or cost, while we are interested in how far we are from peak performance and, more importantly, why. The efficiency of runtime performance is defined with respect to the ideal computational runtime in absence of inefficiencies. The analysis of the difference between actual and ideal runtime reveals the overheads and bottlenecks. A formal approach is proposed to decompose the efficiency into three components: frequency, area and cycles. After quantification of the efficiencies, a detailed analysis has to reveal the reasons for the lost frequencies, lost area and lost cycles. We propose a taxonomy of possible causes and practical methods to identify and quantify the overheads. The proposed methodology is applied on a number of use cases to illustrate the methodology. We show the interaction between the three components of efficiency and show how bottlenecks are revealed.HighlightsA methodology to study the impact of overheads on runtime performance is proposed.Three types of efficiency are introduced – area efficiency, frequency efficiency and cycle efficiency – and combined to define a global efficiency.Analytical formulas are presented to measure and to compute the respective efficiencies.
机译: 摘要 我们提出了一种方法来研究和量化效率以及间接费用的影响运行时性能。用于FPGA的高性能计算(HPC)上的大多数工作都只研究运行时性能或成本,而我们对距峰值性能还有多远,更重要的是为什么感兴趣。在没有效率低下的情况下,相对于理想的计算运行时间来定义运行时性能的效率。对实际运行时间与理想运行时间之间差异的分析揭示了开销和瓶颈。提出了一种正式的方法将效率分解为三个部分:频率,面积和周期。在对效率进行量化之后,必须进行详细的分析以揭示频率损失,面积损失和周期损失的原因。我们提出了可能原因的分类法和识别和量化间接费用的实用方法。所提出的方法论被用在许多用例上以说明该方法论。我们展示了效率的三个组成部分之间的相互作用,并展示了如何揭示瓶颈。 突出显示 提出了一种研究开销对运行时性能影响的方法。 引入了三种效率类型-面积效率,频率效率和循环效率-并结合起来定义了全局效率。 提供了用于计算和计算相应效率的分析公式。

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