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Interconnection driven VLSI module placement based on quadratic programming and considering congestion using LFF principles

机译:基于二次编程并考虑使用LFF原理的拥塞的互连驱动VLSI模块放置

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In VLSI module placement interconnection behavior becomes increasingly important. Less flexibility first (LFF) principle is derived from human accumulated experience. An interconnection driven VLSI module placement algorithm based on LFF principles is proposed in this paper. We first use quadratic programming to optimize the total wire-length of the placement and then using a deterministic recursive partition rectangle packing algorithm based on LFF principles with consideration of congestion to implement the placement in an estimated fixed die area. Experimental results show efficiency and effectiveness of the proposed method.
机译:在VLSI模块放置中,互连行为变得越来越重要。更少的灵活性优先(LFF)原则源自人类积累的经验。提出了一种基于LFF原理的互连驱动VLSI模块放置算法。我们首先使用二次规划来优化布局的总线长,然后使用基于LFF原理的确定性递归分区矩形填充算法,并考虑到拥塞,以在估计的固定管芯区域中实现布局。实验结果表明了该方法的有效性和有效性。

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