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首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >NTUplace3: An Analytical Placer for Large-Scale Mixed-Size Designs With Preplaced Blocks and Density Constraints
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NTUplace3: An Analytical Placer for Large-Scale Mixed-Size Designs With Preplaced Blocks and Density Constraints

机译:NTUplace3:具有预先放置的模块和密度约束的大型混合尺寸设计的分析放置器

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摘要

In addition to wirelength, modern placers need to consider various constraints such as preplaced blocks and density. We propose a high-quality analytical placement algorithm considering wirelength, preplaced blocks, and density based on the log-sum-exp wirelength model proposed by Naylor and the multilevel framework. To handle preplaced blocks, we use a two-stage smoothing technique, i.e., Gaussian smoothing followed by level smoothing, to facilitate block spreading during global placement (GP). The density is controlled by white-space reallocation using partitioning and cut-line shifting during GP and cell sliding during detailed placement. We further use the conjugate gradient method with dynamic step-size control to speed up the GP and macro shifting to find better macro positions. Experimental results show that our placer obtains very high-quality results.
机译:除了线长,现代的布局器还需要考虑各种约束条件,例如预先放置的块和密度。我们基于Naylor提出的log-sum-exp线长模型和多级框架,提出了一种考虑线长,预先放置的块和密度的高质量分析放置算法。为了处理预先放置的块,我们使用了两阶段平滑技术,即高斯平滑和水平平滑,以促进全局布局(GP)期间的块扩展。通过在GP期间使用分区和切割线移位以及在详细放置期间进行单元滑动来通过空白空间重新分配来控制密度。我们进一步将共轭梯度方法与动态步长控制一起使用,以加快GP和宏移位以找到更好的宏位置。实验结果表明,我们的砂矿获得了非常高质量的结果。

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