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Optimizing the Antenna Area and Separators in Layer Assignment of Multilayer Global Routing

机译:在多层全局路由的层分配中优化天线区域和分隔符

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Traditional solutions to antenna effect, such as jumper insertion and diode insertion performed at post-route stage may produce extra vias and degrade circuit performance. Previous work suggests combining layer assignment, jumper insertion, and diode insertion together to achieve a better design quality with less additional cost. Based on our observations on global and local antenna violations, this paper proposes an antenna-safe single-net layer assignment (AS-SLA), which first enumerates all antenna-safe layer assignment solutions of a net, and then extracts the minimum-cost one for the net. AS-SLA can minimize via count and separators as well. In addition, an antenna avoidance layer assignment flow (AALA) adopting AS-SLA as its kernel not only avoids global antenna violations, but also eliminates local antenna violations. Experimental results reveal that, in 16 benchmarks, AALA can yield ten antenna-violation-free assignments, while the algorithms of other works yield no antenna-violation-free assignment. However, AALA performs about seven times slower than other antenna-aware layer assignment algorithm. Accordingly, two acceleration techniques are proposed to reduce the runtime of AALA by 57.6%.
机译:传统的天线效应解决方案,例如在布线后阶段执行跳线插入和二极管插入,可能会产生额外的过孔并降低电路性能。先前的工作建议将层分配,跳线插入和二极管插入结合在一起,以较少的额外成本获得更好的设计质量。根据我们对全球和本地天线违规行为的观察,本文提出了一种天线安全单网层分配(AS-SLA),该方法首先列举了网络的所有天线安全层分配解决方案,然后提取了最低成本一网。 AS-SLA也可以通过数量和分隔符最小化。另外,采用AS-SLA作为其内核的天线回避层分配流程(AALA)不仅避免了全局天线冲突,而且还消除了本地天线冲突。实验结果表明,在16个基准测试中,AALA可以产生10个无天线违规的分配,而其他工作的算法则没有天线无违规的分配。但是,AALA的执行速度比其他天线感知层分配算法慢约七倍。因此,提出了两种加速技术以将AALA的运行时间减少57.6%。

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