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Manhattan-Diagonal Routing in Channels and Switchboxes

机译:通道和配电箱中的曼哈顿对角线布线

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摘要

New techniques are presented for routing straight channels, L-channels, switchboxes, and staircase channels in a two-layer Manhattan-diagonal (MD) model with tracks in horizontal, vertical, and ±45° directions. First, an O(l.d) time algorithm is presented for routing a straight channel of length l and density d with no cyclic vertical constraints. It is shown that the number of tracks h used by the algorithm for routing multiterminal nets satisfies d ≤ h ≤ (d + 1). Second, an output-sensitive algorithm is reported that can route a channel with cyclic vertical constraints in O(l.h) time using h tracks, allowing overlapping of wire segments in two layers. Next, the routing problem for a multiterminal L-channel of length l and height h is solved by an O(l.h) time algorithm. If no cyclic vertical constraints exist, its time complexity reduces to O(l.h) where d is the density of the L-channel. Finally, the switchbox routing problem in the MD model is solved elegantly. These techniques, easily extendible to the routing of staircase channels, yield efficient solutions to detailed routing in general floorplans. Experimental results on benchmarks show significantly low via count and reduced wire length, thus establishing the superiority of MD routing to classical strategies. The proposed algorithms are also potentially useful for general non-Manhattan area routing and multichip modules (MCMs).
机译:提出了用于在具有水平,垂直和±45°方向的轨道的两层曼哈顿对角线(MD)模型中路由直通道,L通道,开关盒和楼梯通道的新技术。首先,提出了一种O(l.d)时间算法,用于路由长度为l和密度为d的直通道,而没有循环垂直约束。结果表明,该算法用于路由多终端网络的磁道数h满足d≤h≤(d +1)。其次,报告了一种输出敏感算法,该算法可以使用h条轨迹在O(l.h)时间内路由具有循环垂直约束的通道,从而允许两层中的线段重叠。接下来,通过O(l.h)时间算法解决长度为l和高度为h的多终端L通道的路由问题。如果不存在循环垂直约束,则其时间复杂度降低为O(l.h),其中d是L通道的密度。最后,很好地解决了MD模型中的配电箱布线问题。这些技术易于扩展到楼梯通道的布线,可为常规平面图中的详细布线提供有效的解决方案。在基准上的实验结果表明,过孔数量显着减少,导线长度缩短,因此确立了MD布线优于传统策略的优势。所提出的算法对于一般的非曼哈顿区域路由和多芯片模块(MCM)也可能有用。

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