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Placement with Symmetry Constraints for Analog Layout Using Red-Black Trees

机译:使用红黑树的模拟布局对称性约束

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The traditional way of approaching placement problems in computer-aided design (CAD) tools for analog layout is to explore an extremely large search space of feasible or unfeasible placement configurations, where the cells are moved in the chip plane (being even allowed to overlap) by a stochastic optimizer [2, 6]. This paper presents a novel analog placement technique operating on the set of tree representations of the layout [4], where the typical presence of an arbitrary number of symmetry groups of devices is directly taken into account during the exploration of the solution space. The computation times exhibited by this novel approach are typically 3 -6 times better than those of the algorithms using the traditional exploration strategy. This superior efficiency is due to the use of red-black trees, a data structure introduced by Guibas and Sedgewick [3] to support operations on dynamic sets of intervals.
机译:在计算机辅助设计(CAD)模拟布局工具中接近放置问题的传统方式是探索可行或不可行的放置配置的极大搜索空间,其中小区在芯片平面中移动(甚至允许重叠)通过随机优化器[2,6]。本文介绍了在布局[4]的树形图组上操作的新型模拟放置技术,其中在探索溶液空间期间直接考虑任意数量的对称性装置的典型存在。这种新方法表现出的计算时间通常比使用传统探索策略的算法的3-6倍。这种卓越的效率是由于使用红黑树,由Guibas和Sedgewick [3]引入的数据结构,以支持动态间隔集的操作。

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