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A Framework for Evaluating High-Level Design Methodologies for High-Performance Reconfigurable Computers

机译:评估高性能可重构计算机的高级设计方法的框架

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High-performance reconfigurable computers have potential to provide substantial performance improvements over traditional supercomputers. Their acceptance, however, has been hindered by productivity challenges arising from increased design complexity, a wide array of custom design languages and tools, and often overblown sales literature. This paper presents a review and taxonomy of High-Level Languages (HLLs) and a framework for the comparative analysis of their features. It also introduces new metrics and a model based on computational effort. The proposed concepts are inspired by Netwon's equations of motion and the notion of work and power in an abstract multidimensional space of design specifications. The metrics are devised to highlight two aspects of the design process: the total time-to-solution and the efficient utilization of user and computing resources at discrete time steps along the development path. The study involves analytical and experimental evaluations demonstrating the applicability of the proposed model.
机译:高性能可重配置计算机具有与传统超级计算机相比显着提高性能的潜力。但是,由于设计复杂性的提高,自定义设计语言和工具的种类繁多以及销售文献经常被夸大而引起的生产率挑战,阻碍了它们的接受。本文介绍了高级语言(HLL)的概述和分类法,以及对其功能进行比较分析的框架。它还引入了新的指标和基于计算工作量的模型。提出的概念受到Netwon的运动方程式以及设计规范的抽象多维空间中的工作和动力概念的启发。设计度量标准的目的是突出设计过程的两个方面:解决方案的总时间以及沿开发路径在离散时间步长上对用户和计算资源的有效利用。该研究涉及分析和实验评估,证明了所提出模型的适用性。

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