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APlace

机译:一个地方

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摘要

We streamline and extend APlace, the general analytic placement engine based on ideas of Naylor et al. [7] and described in [3, 4, 5]. Previous work explored the adaptability of APlace to multiple contexts with good quality of results. For example, the framework was extended to traditional wirelength-driven standard-cell placement in [3, 5], achieving good results in placed HPWL and routed final wire-length. The framework was also extended to top-down multilevel placement, congestion-directed placement, mixed-size placement, timing-driven placement, I/O-core co-placement and constraint handling for mixed-signal contexts [3, 4, 5]. In this work, we have modified the implementation of APlace for speed and scalability. Improvements have been made in clustering, legalization and detailed placement strategies, as well as via a distributable solution framework for both global and detailed placement phases.
机译:我们简化和扩展了基于Naylor等人的思想的通用分析放置引擎APlace。 [7],并在[3,4,5]中进行了描述。先前的工作探索了APlace对多种环境的适应性以及良好的结果质量。例如,在[3,5]中,该框架已扩展到传统的线长驱动标准单元放置,在放置HPWL和布线最终线长方面均取得了良好的效果。该框架还扩展到自上而下的多层放置,拥塞导向的放置,混合大小的放置,时序驱动的放置,I / O核心共同放置以及针对混合信号上下文的约束处理[3,4,5] 。在这项工作中,我们为了速度和可伸缩性修改了APlace的实现。群集,合法化和详细的放置策略以及通过适用于全局和详细放置阶段的可分配解决方案框架,已经进行了改进。

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