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Design space minimization with timing and code size optimization for embedded DSP

机译:通过嵌入式DSP的时序和代码大小优化来最小化设计空间

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One of the most challenging problems in high-level synthesis is how to quickly explore a wide range of design options to achieve high-quality designs. This paper presents an Integrated Framework for Design Optimization and Space Minimization (IDOM) towards finding the minimum configuration satisfying timing and code size constraints. We show an effective way to reduce the design space to be explored through the study of the fundamental properties and relations among multiple design parameters, such as retiming value, unfolding factor, timing, and code size. Theories are presented to produce a small set of feasible design choices with provable quality. IDOM algorithm is proposed to generate high-quality design by integrating performance and code size optimization techniques. The experimental results on a set of DSP benchmarks show the efficiency and effectiveness of the IDOM algorithm. It constantly generates the minimal configuration for all the benchmarks. The cost of design space exploration using IDOM is only 3% of that using the standard method.
机译:高层综合中最具挑战性的问题之一是如何快速探索各种设计方案以实现高质量的设计。本文提出了一种用于设计优化和空间最小化的集成框架(IDOM),以寻找满足时序和代码大小约束的最小配置。我们通过研究基本属性和多个设计参数(例如重定时值,展开因子,时序和代码大小)之间的关系,展示了一种减少设计空间的有效方法。提出了一些理论,以产生可证明的质量的一小部分可行的设计选择。提出了IDOM算法,通过集成性能和代码大小优化技术来生成高质量的设计。在一组DSP基准测试中的实验结果表明了IDOM算法的效率和有效性。它会不断为所有基准生成最小的配置。使用IDOM进行设计空间探索的成本仅为使用标准方法进行探索的成本的3%。

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