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MP-Trees: A Packing-Based Macro Placement Algorithm for Modern Mixed-Size Designs

机译:MP树:用于现代混合尺寸设计的基于打包的宏放置算法

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In this paper, we present a new multipacking-tree (MP-tree) representation for macro placements to handle modern mixed-size designs with large macros and high chip utilization rates. Based on binary trees, the MP-tree is very efficient, effective, and flexible for handling macro placements with various constraints. Given a global placement that already considers the areas and the interconnections among standard cells and macros, our MP-tree-based macro placer optimizes macro positions, minimizes the macro displacement from the initial macro positions, and maximizes the area of the chip center for standard-cell placement and routing. Experiments based on the Proceedings of the 2006 International Symposium on Physical Design placement contest benchmarks and Faraday benchmarks show that our macro placer combined with APlace 2.0, Capo 10.2, mPL6, or NTUplace3 for a standard-cell placement outperforms these state-of-the-art academic mixed-size placers alone by large margins in robustness and quality. In addition to wirelength, experiments on four real industrial designs with large macros and high utilization rates show that our method significantly reduces the average half-perimeter wirelength by 35%, the average routed wirelength by 55%, and the routing overflows by 13 times compared with Capo 10.2, implying that our macro placer leads to much higher routability.
机译:在本文中,我们为宏放置提供了一种新的多包装树(MP-tree)表示形式,以处理具有大宏和高芯片利用率的现代混合尺寸设计。 MP树基于二叉树,非常高效,有效且灵活,可以处理具有各种约束的宏放置。考虑到已经考虑了标准单元和宏之间的区域和互连的全局布局,我们基于MP树的宏布局器将优化宏位置,最小化与初始宏位置的宏位移,并最大化标准芯片中心的面积-单元放置和布线。根据2006年国际物理设计座谈会论文集竞赛基准测试结果和法拉第基准测试,实验结果表明,针对标准单元放置,我们的宏放置程序与APlace 2.0,Capo 10.2,mPL6或NTUplace3的结合优于这些最新状态仅是艺术学术的混合尺寸砂轮,其坚固性和质量就很大。除线长外,对四个具有大宏和高利用率的实际工业设计进行的实验表明,我们的方法可将平均半周长的线长减少35%,将平均布线的线长减少55%,并且布线溢出比原来减少13倍使用Capo 10.2时,这意味着我们的宏放置程序会带来更高的路由能力。

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