避免直线方向障碍的最小生成树的高效构造

Kyosun Kim, R. Karri
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引用次数: 0

摘要

近年来,最小生成树(MST)问题中的避障问题作为CAD中最重要的问题之一受到了广泛的关注。一般来说,这种避障MST (OAMST)可以作为由相邻引脚和障碍角连接而成的生成图(OASG)的子图有效地找到。不幸的是,它的应用非常有限,因为障碍物被限制为矩形,并且禁止电线线路在水平和垂直方向上通过它们。本文对该问题进行了扩展,使障碍物可以具有直线形状,并允许布线路线在水平或垂直维度上通过它们。提出了一种基于有限状态机的方法来识别复杂的障碍模式,并精确地生成构建OASG的边缘。在不增加计算复杂度的情况下,对先前工作中的两种算法进行了修改,以包含这种方法。所提出的方法和算法已经在一组可理解的网络上实现和验证,这些网络是从工业强度的片上系统设计中采样的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient construction of minimal Spanning Tree avoiding rectilinear directional obstacles
Recently, the obstacle avoidance in the minimum spanning tree (MST) problem, which is one of the most important CAD problems, has been received a great deal of attention. In general, this obstacle avoiding MST (OAMST) can be efficiently found as a sub-graph of a spanning grap (OASG) which is constructed by connecting neighboring pins and obstacle corners. Unfortunately, its application was quite limited since obstacles were restricted to be rectangular, and prohibit wiring routes from passing through them in both horizontal and vertical dimensions. In this paper, the problem is extended so that the obstacles may have rectilinear shapes, and allow wiring routes passing through them either in the horizontal or vertical dimension. A finite state machine-based approach is proposed to recognize the complicated obstacle patterns, and precisely create edges that construct the OASG. Two algorithms from previous work have been modified to include this approach without increasing the computational complexity. The proposed approach and algorithm have been implemented and validated on a comprehensible set of nets that are sampled from an industrial strength system-on-chip design.
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