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Algorithm selection: a quantitative optimization-intensive approach

机译:算法选择:量化优化密集型方法

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Implementation platform selection is an important component of hardware-software codesign process which selects, for a given computation, the most suitable implementation platform. In this paper, we study the complementary component of hardware-software codesign, algorithm selection. Given a set of specifications for the targeted application, algorithm selection refers to choosing the most suitable completely specified computational structure for a given set of design goals and constraints, among several functionally equivalent alternatives. While implementation platform selection has been recently widely and vigorously studied, the algorithm selection problem has not been studied in computer-aided design domain until now. We first introduce the algorithm selection problem, and then analyze and classify its degrees of freedom. Next, we demonstrate an extraordinary impact of algorithm selection for achieving high throughput, and low-cost implementations. We define the algorithm selection problem formally and prove that throughput and area optimization using algorithm selection are computationally intractable problems. We also propose a relaxation-based heuristic for throughput optimization. Finally, we present an algorithm for cost optimization using algorithm selection. The effectiveness of methodology and proposed algorithms is illustrated using real-life examples.
机译:选择实现平台是硬件-软件代码签名过程的重要组成部分,该过程针对给定的计算选择最合适的实现平台。在本文中,我们研究了硬件-软件代码签名的互补组成部分,算法选择。给定针对目标应用的一组规范,算法选择是指在几种功能等效的替代方案中,为给定的一组设计目标和约束选择最合适的,完全指定的计算结构。尽管最近对实现平台选择进行了广泛而有力的研究,但是算法选择问题直到现在还没有在计算机辅助设计领域中得到研究。我们首先介绍算法选择问题,然后分析和分类其自由度。接下来,我们展示了算法选择对于实现高吞吐量和低成本实现的非凡影响。我们正式定义算法选择问题,并证明使用算法选择的吞吐量和面积优化是计算上棘手的问题。我们还为吞吐量优化提出了一种基于松弛的启发式方法。最后,我们提出了一种使用算法选择进行成本优化的算法。使用实际示例说明了方法论和提出的算法的有效性。

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