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Dangling-wire avoidance routing for crossbar switch structured ASIC design style

机译:交叉开关结构化ASIC设计风格的悬挂线避免布线

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In the routing architecture of a structured ASIC, crossbar is one of the most area efficient switch blocks. Nevertheless, dangling-wire occurs when there is a routing bend in crossbar switch. The dangling-wire incurs longer wire length as well as higher interconnection capacitance. In this paper, we are motivated to tackle dangling-wire routing issues for structured ASIC. We first propose a compact graph model for crossbar switch routing. With our graph model, switch connectivity relations can be removed to keep the 2-D structured ASIC routing graph efficient and to speed up run-time of our routing algorithm. Furthermore, we leverage state-of-the-art techniques into our routing framework, which contains deferred pin assignment, Steiner point re-assignment, and anchor pair insertion, to minimize dangling-wires taking both total wire length and routing congestion into account. The experimental results demonstrate that our proposed routing framework greatly reduces 21% dangling-wires, 34% channel width, and 13% total wire length as compared with VPR using crossbar switch.
机译:在结构化ASIC的路由体系结构中,纵横制开关是面积效率最高的开关模块之一。但是,当交叉开关中存在布线弯曲时,就会发生悬空线。悬空线导致更长的线长以及更高的互连电容。在本文中,我们致力于解决结构化ASIC的悬空布线问题。我们首先提出一个紧凑的图形模型,用于交叉开关路由。使用我们的图形模型,可以删除交换机的连接关系,以保持2D结构化ASIC路由图形的效率,并加快我们的路由算法的运行时间。此外,我们将最先进的技术运用到我们的布线框架中,该框架包含延迟的引脚分配,Steiner点重新分配和锚对插入,以在考虑总线长和布线拥塞的情况下最大程度地减少了悬空线。实验结果表明,与使用交叉开关的VPR相比,我们提出的路由框架大大减少了21%的悬空导线,34%的通道宽度和13%的总导线长度。

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