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Seeing the forest and the trees

机译:看到森林和树木

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摘要

We show how to optimize Steiner-tree Wirelength (StWL) in global and detail placement without a significant runtime penalty, making the use of Half-Perimeter Wirelength unnecessary. Given that StWL correlates with Routed Wirelength (rWL) much better than HPWL, our new optimization improves the overall Place-and-Route results. We also develop congestion-driven whitespace distribution during global placement. Comparing to the state of the art where whitespace is redistributed after global placement, we demonstrate that cell-shifting techniques often increase via counts.Our placer ROOSTER outperforms best published results for Dragon, Capo, FengShui, mPL-R/WSA and APlace in terms of routed wirelength by 10.7%, 5.6%, 9.3%, 5.5% and 4.2% respectively. Via counts, especially important at 90nm and below, are improved by 15.6% over mPL-R/WSA and 11.9% over APlace.
机译:我们展示了如何在全局布局和详细信息布局中优化Steiner-tree线长(StWL),而不会造成重大的运行时间损失,从而无需使用Half-Perimeter Wirelength。鉴于StWL与布线长度(rWL)的关联性要比HPWL好得多,因此我们的新优化方法改善了总体布局布线结果。在全球布局中,我们还开发了拥塞驱动的空白分布。与在全球布局后重新分配空白的最新技术相比,我们证明了细胞移位技术通常会通过计数来增加。就我们而言,我们的放置器ROOSTER的表现优于Dragon,Capo,FengShui,mPL-R / WSA和APlace的最佳公布结果布线长度分别减少了10.7%,5.6%,9.3%,5.5%和4.2%。与mPL-R / WSA相比,通孔数量(在90nm及以下尤其重要)提高了15.6%,比APlace提高了11.9%。

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