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A timing-driven standard-cell placement method based on cell-clustering and the new placement model

机译:一种基于细胞聚类的时序驱动的标准单元放置方法和新的放置模型

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摘要

In this paper, a new timing-driven cell placement method based on the new placement model is proposed for VLSI standard cell layout. The proposed method consists of two stages: global placement and detailed placement. In the first stage, the set of clusters are constructed by clustering cells, considering registers, for which the timing constraints are given. Then, with the simulated annealing based method, clusters are placed on the chip area, which is partitioned into the set of global bins. In the proposed method, the shape of each cluster is not restricted to a rectangle, but can be arbitrarily given under some conditions. This placement model is called the amoeba model. Since the flexibility of cluster placement is increased due to this new placement model, a satisfactory placement satisfying timing constraints can be obtained. In the second stage of the proposed method, each cluster is decomposed into the set of cells, and cells are assigned to cell rows, considering timing constraints, to produce a final cell placement.
机译:本文提出了一种基于新放置模型的新的时序驱动小区放置方法,用于VLSI标准单元布局。该方法由两个阶段组成:全球展示位置和详细安置。在第一阶段,通过聚类单元,考虑给出定时约束的寄存器来构造一组集群。然后,利用模拟的基于退火的方法,将簇放置在芯片区域上,该区域被划分为全局箱组。在所提出的方法中,每个簇的形状不限于矩形,而是可以在某些条件下任意给出。该放置模型称为Amoeba模型。由于由于这种新的放置模型而增加了集群放置的灵活性,因此可以获得满足时序约束的令人满意的放置。在所提出的方法的第二阶段中,每个群集被分解成集小区集,并且考虑定时约束,将小区分配给小区行,以产生最终的小区放置。

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