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METHOD FOR INCREMENTAL, TIMING-DRIVEN, PHYSICAL-SYNTHESIS OPTIMIZATION UNDER A LINEAR DELAY MODEL

机译:线性延迟模型的增量,时序驱动,物理综合优化方法

摘要

A method, data processing system and computer program product for optimizing the placement of logic gates of a subcircuit in a physical synthesis flow. A Pyramids utility identifies and selects movable gate(s) for timing-driven optimization. A delay pyramid and a required arrival time (RAT) surface are generated for each net in the selected subcircuit. A slack pyramid for each net is generated from the difference between the RAT surface and delay pyramid of each net. The slack pyramids are grown and tested using test points to generate a worst-case slack region based on a plurality of slack pyramids in the selected subcircuit. The worst-case slack region is mapped on a placement region and a set of coordinates representing the optimal locations of the movable element(s) in the placement region are determined and outputted.
机译:一种用于优化物理合成流程中子电路的逻辑门位置的方法,数据处理系统和计算机程序产品。 Pyramids实用程序可识别并选择可移动门,以进行时序驱动的优化。为所选子电路中的每个网络生成一个延迟金字塔和所需的到达时间(RAT)表面。从每个网的RAT表面和延迟金字塔之间的差异生成每个网的松弛金字塔。使用测试点对松弛金字塔进行生长和测试,以基于所选子电路中的多个松弛金字塔生成最坏情况的松弛区域。将最坏情况的松弛区域映射到放置区域上,并确定并输出一组代表可移动元素在放置区域中的最佳位置的坐标。

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