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A new global router using zero-one integer linear programming techniques for sea-of-gates and custom logic arrays

机译:一种使用零-整数整数线性编程技术的新型全局路由器,用于门禁和自定义逻辑阵列

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摘要

A global routing method is proposed for sea-of-gates (SOG) arrays and custom logic arrays based on a zero-one linear integer programming technique. This method overcomes the various difficulties due to numerous physical constraints faced by many heuristic routing algorithms. In the proposed approach, all the physical constraints are rigorously modeled in the constraint equations. Alternatives for all the nets are considered simultaneously with the routing environment, instead of being routed in a particular net-ordering. An optimal set of global paths routing all the nets is found with well established zero-one linear integer programming methods. The global router has run successfully on industrial SOG circuits, including 108,000 transistor circuits with 9400 nets, achieving 100% routing and high packing densities, which compare favorably with recently reported results.
机译:提出了一种基于零一线性整数规划技术的门禁(SOG)阵列和定制逻辑阵列的全局路由方法。该方法克服了许多启发式路由算法所面临的众多物理约束所带来的各种困难。在所提出的方法中,所有物理约束都在约束方程中严格建模。所有网络的替代方案都应与路由环境同时考虑,而不是按照特定的网络顺序进行路由。用完善的零一线性整数编程方法可以找到路由所有网络的最佳全局路径集。这款全球路由器已成功在工业SOG电路上运行,包括108,000个晶体管晶体管电路和9400个网络,实现了100%的布线和高封装密度,与最近报告的结果相比具有优势。

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