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Corner-Stitching-Based Multilayer Obstacle-Avoiding Component-to-Component Rectilinear Minimum Spanning Tree Construction

机译:基于角缝制的多层障碍 - 避免组件到组件直线最小跨越树施工

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摘要

Engineering change orders (ECOs) are pervasively applied to modern physical design of nanometer integrated circuits for cost-effective design changes. After applying ECO, a net may become open, which results in a large number of disconnected net components. Each net component further consists of a set of connected net shapes and vias on different layers. It is very challenging to efficiently and effectively identify all disconnected net components and find an obstacle-avoiding minimal-cost routing path among those net components. This paper introduces an open-net finder and an open-net connector based on the corner-stitching data structure for open-net routing, and proposes a new method of constructing a multilayer obstacle-avoiding component-to-component rectilinear minimum spanning tree. The preliminary idea and implementation of the proposed method had received the first place award in ICCAD-2017 CAD contest. This paper further details the complete idea of the proposed method. Experimental results show that the proposed open-net finder and connector outperform the top three open-net routers in the ICCAD-2017 CAD contest and two latest published works, with better routing costs and much shorter runtime.
机译:工程变更订单(ECO)普遍应用于现代纳米集成电路的现代物理设计,以实现经济高效的设计变化。应用ECO后,网可能会打开,这导致大量断开连接的网组件。每个网络组件还包括一组连接的网状和不同层上的通孔组成。它是有效的,有效地识别所有断开连接的网组件并找到避免这些网组件中的最低成本路径路径的挑战性。本文介绍了一种基于开放式路由的角落拼接数据结构的开放式净取景器和开放式连接器,并提出了一种构建多层障碍物 - 避免组件到组件直线最小生成树的新方法。拟议方法的初步理念和实施已收到ICCAD-2017 CAD比赛中的第一届地方奖。本文进一步详述了所提出的方法的完整思想。实验结果表明,建议的开放式净取景器和连接器优于ICCAD-2017 CAD比赛中的前三个开放式路由器,以及两个最新发布的作品,具有更好的路由成本和更短的运行时。

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