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A gridless multilayer router for standard cell circuits using CTM cells

机译:用于使用CTM单元的标准单元电路的无网格多层路由器

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We present a gridless multilayer router suitable for standard cell circuits using central terminal model (CTM) cells. A CTM cell has pins in the middle which split the over-the-cell (OTC) routing region into top and bottom parts. Nets are routed in both the channel (if needed) and OTC by using a channel router. Our router uses a combined constraint graph and tile expansion algorithm. We report the first maze router to take advantage of a graph based algorithm to solve the net ordering problem. Unlike a laggard pure maze router, it has the time efficiency of a fast graph based algorithm and the better results of a maze routing algorithm. This is also the first report of the use of a tile expansion maze router for the variable height routing problem. By variable height routing we mean that a single execution of the routing algorithm will result in a completely routed solution. The only thing that is not determined a priori is the height or number of tracks needed. Our router achieves channelless solutions for the Primary1 circuit by routing over the cell in three layers. It also generates equal or better results compared to the best of the previous channel routers for all the examples we have tried. In fact, Sockeye is the first router to achieve density solutions for the r1, r3, and r4 examples for two layers and for the r3 example for three layers.
机译:我们提出了一种无网格多层路由器,适用于使用中央终端模型(CTM)单元的标准单元电路。 CTM单元在中间具有引脚,这些引脚将单元(OTC)布线区域划分为顶部和底部。使用通道路由器在通道(如果需要)和OTC中对网络进行路由。我们的路由器使用了组合的约束图和图块扩展算法。我们报告了第一台迷宫路由器,它利用基于图的算法来解决网络订购问题。与落后的纯迷宫路由器不同,它具有基于快速图的算法的时间效率和迷宫路由算法的更好结果。这也是使用瓷砖扩展迷宫路由器解决可变高度路由问题的第一份报告。通过可变高度路由,我们的意思是路由算法的一次执行将导致完全路由的解决方案。没有先验确定的唯一事情是所需轨道的高度或数量。我们的路由器通过在三层单元上进行路由来实现Primary1电路的无通道解决方案。在我们尝试的所有示例中,与以前的最佳通道路由器相比,它还能产生相同或更好的结果。实际上,Sockeye是第一个为两层的r1,r3和r4示例以及为三层的r3示例实现密度解决方案的路由器。

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