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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:我们基于Naylor等人的想法,简化并扩展了一般分析放置引擎。 [7]并在[3,4,5]中描述。以前的工作探索了一个良好质量的多种语境的适应性。例如,该框架扩展到[3,5]中的传统WireLength驱动的标准单元放置,在放置HPWL和路由最终线长度中实现良好的结果。该框架还扩展到自上而下的多级放置,拥塞定向的放置,混合尺寸放置,定时驱动的放置,I / O核心共同放置和混合信号上下文的约束处理[3,4,5] 。在这项工作中,我们修改了APLAPLE的实现以获得速度和可扩展性。在集群,合法化和详细的安排策略中取得了改进,以及全球和详细安排阶段的可分配解决方案框架。

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