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FastPlace 3.0: A Fast Multilevel Quadratic Placement Algorithm with Placement Congestion Control

机译:FastPlace 3.0:具有布局拥塞控制的快速多级二次布局算法

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In this paper, we present FastPlace 3.0 - an efficient and scalable multilevel quadratic placement algorithm for large-scale mixed-size designs. The main contributions of our work are: (1) A multilevel global placement framework, by incorporating a two-level clustering scheme within the flat analytical placer FastPlace (Viswanathan and Chu, 2005) and Viswanathan et al., 2006), (2) An efficient and improved iterative local refinement technique that can handle placement blockages and placement congestion constraints. (3) A congestion aware standard-cell legalization technique in the presence of blockages. On the ISPD-2005 placement benchmarks (Nam et al., 2005), our algorithm is 5.12times, 11.52times and 16.92times faster than mPL6, Capo10.2 and APlace2.0 respectively. In terms of wirelength, we are on average, 2% higher as compared to mPL6 and 9% and 3% better as compared to Capo10.2 and APlace2.0 respectively. We also achieve competitive results compared to a number of academic placers on the placement congestion constrained ISPD-2006 placement benchmarks (Nam, 2006).
机译:在本文中,我们提出了FastPlace 3.0-一种适用于大规模混合尺寸设计的高效且可扩展的多层二次布局算法。我们工作的主要贡献是:(1)通过在平面分析放置器FastPlace(Viswanathan and Chu,2005)和Viswanathan et al。,2006)中纳入两级聚类方案的多层次全球布局框架,(2)一种有效且经过改进的迭代局部优化技术,可以处理布局障碍和布局拥塞约束。 (3)存在阻塞时具有拥塞意识的标准单元合法化技术。在ISPD-2005放置基准(Nam等,2005)上,我们的算法分别比mPL6,Capo10.2和APlace2.0快5.12倍,11.52倍和16.92倍。就线长而言,我们平均比mPL6高2%,比Capo10.2和APlace2.0高9%和3%。与许多学术研究者相比,我们在安置拥塞受限的ISPD-2006安置基准方面也取得了竞争性的成绩(Nam,2006年)。

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