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Mixed-Cell-Height Placement Considering Drain-to-Drain Abutment

机译:考虑排水对排水基台的混合单元高度放置

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Along with device scaling, the drain-to-drain abutment (DDA) constraint arises as an emerging challenge in modern circuit designs, which incurs additional difficulties especially for designs with mixed-cell-height standard cells which have prevailed in advanced technology. This paper presents the first work to address the mixed-cell-height placement problem. considering the DDA constraint from post global placement throughout detailed placement Our algorithms consists of three major stages: (1) DDA-aware preprocessing, (2) legalization, and (3) detailed placement. In the DDA-aware preprocessing stage, we first align cells to desired rows, considering the distribution ratio of source nodes to drain nodes. After deciding the cell ordering of every row, we adopt the modulus-based matrix splitting iteration method to remove all cell overlaps with minimum total displacement in the legalization stage. For detailed placement, we propose a satisfiability-based approach which considers the whole layout to flip a subset of cells and swap pairs of adjacent cells simultaneously. Compared with a shortest-path method, experimental results show that our proposed algorithm can significantly reduce cell violations and displacements with reasonable runtime.
机译:随着器件缩放,漏极 - 排水基站(DDA)约束是由于现代电路设计中的新出现挑战,其引发了额外的困难,特别是对于在先进技术中持续的混合细胞高度标准电池的设计。本文提出了解决混合细胞高度放置问题的第一项工作。考虑到在整个详细展示中发布的DDA限制,我们的算法包括三个主要阶段:(1)DDA感知预处理,(2)合法化,以及(3)详细安置。在DDA感知的预处理阶段,我们首先将小区对准到所需的行,考虑到源节点的分配比排列为漏极节点。在确定每行的细胞排序之后,我们采用基于模量的矩阵分割迭代方法,以消除所有单元重叠,在合法化阶段中的最小总位移。为了详细放置,我们提出了一种基于可满足的基础方法,其认为整个布局同时翻转细胞的子集并交换相邻单元。与最短路径方法相比,实验结果表明,我们的算法可以显着减少具有合理运行时间的细胞违规和位移。

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