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An integrated-spreading-based macro-refining algorithm for large-scale mixed-size circuit designs

机译:基于集成扩展的大规模混合电路宏优化算法

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With the increasing use of pre-designed macros in a modern chip and its induced high design complexity, macro placement has become a challenging problem in today's design houses. Most popular macro placement algorithms adopt a three-stage approach: placement prototyping, macro placement, and standard-cell placement, where cell positions after macro placement are assumed the same as those at the prototyping stage, possibly misguiding succeeding standard-cell placement. To close the gap between macro and standard-cell placement, we propose a macro-refining algorithm that adopts an integrated spreading technique considering the spreading of both macros and cells and the dynamic information of cell positions to improve macro placement. We further propose a new force-modulation technique to refine macro placement and a congestion-aware macro shifter to preserve more space for better routability. Extensive experiments based on various macro placements show that our proposed techniques are effective and our macro-refining algorithm can find significantly better placement solutions for large-scale mixed-size circuit designs.
机译:随着现代芯片中越来越多地使用预先设计的宏,并且其引发的高设计复杂性,在当今的设计公司中,宏放置已成为一个具有挑战性的问题。最流行的宏放置算法采用三阶段方法:放置原型,宏放置和标准单元放置,其中假定宏放置后的单元位置与原型阶段的位置相同,可能会误导后续的标准单元放置。为了缩小宏和标准单元放置之间的差距,我们提出了一种宏细化算法,该算法采用了集成的扩展技术,同时考虑了宏和单元格的扩展以及单元位置的动态信息以改善宏的位置。我们进一步提出了一种新的力调制技术来优化宏布局,并提出了一种拥塞感知的宏移位器,以保留更多空间以实现更好的可路由性。基于各种宏布局的大量实验表明,我们提出的技术是有效的,并且我们的宏细化算法可以为大规模混合尺寸电路设计找到明显更好的布局解决方案。

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