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首页> 外文期刊>IEEE Transactions on Computers >Parallel algorithms for force directed scheduling of flattened and hierarchical signal flow graphs
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Parallel algorithms for force directed scheduling of flattened and hierarchical signal flow graphs

机译:扁平和分层信号流图的力定向调度并行算法

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摘要

In this paper, we present some novel algorithms for scheduling hierarchical signal flow graphs in the domain of high-level synthesis. With complex chips that need to be designed in the future, it is expected that the runtimes of these scheduling algorithms will be quite large. The key contributions of this paper are as follows: First, we develop a novel extension of the sequential force-directed scheduling algorithm which naturally handles loops and conditionals by coming up with a scheme of scheduling hierarchical signal flow graphs. Second, we develop three new parallel algorithms for the scheduling problem. Our parallel algorithms are portable across a wide range of parallel platforms. We report results on a set of high-level synthesis benchmarks on 8-processor SGI Origin and a 64 processor IBM SP-2. While some parallel algorithms for VLSI CAD reported by earlier researchers have reported a loss of qualities of results, our parallel algorithms produce exactly the same results as the sequential algorithms on which they are based.
机译:在本文中,我们提出了一些在高级综合领域中用于调度分层信号流图的新颖算法。对于将来需要设计的复杂芯片,预计这些调度算法的运行时间将非常大。本文的主要贡献如下:首先,我们提出了顺序力导向调度算法的新扩展,该算法通过提出一种调度分层信号流图的方案,自然地处理了循环和条件。其次,针对调度问题,我们开发了三种新的并行算法。我们的并行算法可跨多种并行平台移植。我们报告了一组关于8处理器SGI Origin和64处理器IBM SP-2的高级综合基准测试结果。尽管早期研究人员报道了一些针对VLSI CAD的并行算法,报告了结果的质量下降,但我们的并行算法产生的结果与基于它们的顺序算法完全相同。

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