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首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >An evaluation of parallel simulated annealing strategies with application to standard cell placement
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An evaluation of parallel simulated annealing strategies with application to standard cell placement

机译:并行模拟退火策略的评估及其在标准单元格放置中的应用

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摘要

Simulated annealing, a methodology for solving combinatorial optimization problems, is a very computationally expensive algorithm and, as such, numerous researchers have undertaken efforts to parallelize it. In this paper, we investigate three of these parallel simulated annealing strategies when applied to standard cell placement, specifically the TimberWolfSC placement tool. We have examined a parallel moves strategy, as well as two new approaches to parallel cell placement-multiple Markov chains and speculative computation. These algorithms have been implemented in ProperPLACE, our parallel cell placement application, as part of the ProperCAD II project. We have constructed ProperPLACE so that it is portable across a wide range of parallel architectures. Our parallel moves algorithm uses novel approaches to dynamic message sizing, message prioritization, and error control. We show that parallel moves and multiple Markov chains are effective approaches to parallel simulated annealing when applied to TimberWolfSC, yet speculative computation is wholly inadequate.
机译:模拟退火是解决组合优化问题的一种方法,是一种计算量很大的算法,因此,许多研究人员已努力使其并行化。在本文中,我们研究了将三种并行模拟退火策略应用于标准单元格放置时,特别是TimberWolfSC放置工具。我们研究了并行移动策略以及并行单元放置的两种新方法-多个马尔可夫链和推测性计算。作为ProperCAD II项目的一部分,这些算法已经在我们的并行单元放置应用ProperPLACE中实现。我们已经构造了ProperPLACE,以便它可以在广泛的并行体系结构中移植。我们的并行移动算法使用新颖的方法来动态调整消息大小,确定消息优先级和控制错误。我们证明了并行移动和多个马尔可夫链是应用于TimberWolfSC时并行模拟退火的有效方法,但推测性计算完全不足。

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