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An integrated placement and routing approach.

机译:集成的布局和布线方法。

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摘要

As the feature size continues scaling down, interconnects become the major contributor of signal delay. Since interconnects are mainly determined by placement and routing, these two stages play key roles to achieve high performance. Historically, they are divided into two separate stages to make the problem tractable. Therefore, the routing information is not available during the placement process. Net models such as HPWL, are employed to approximate the routing to simplify the placement problem. However, the good placement in terms of these objectives may not be routable at all in the routing stage because different objectives are optimized in placement and routing stages. This inconsistancy makes the results obtained by the two-step optimization method far from optimal.; In order to achieve high-quality placement solution and ensure the following routing, we propose an integrated placement and routing approach. In this approach, we integrate placement and routing into the same framework so that the objective optimized in placement is the same as that in routing. Since both placement and routing are very hard problems (NP-hard), we need to have very efficient algorithms so that integrating them together will not lead to intractable complexity.; In this dissertation, we first develop a highly efficient placer - FastPlace 3.0 for large-scale mixed-size placement problem. Then, an efficient and effective detailed placer - FastDP is proposed to improve global placement by moving standard cells in designs. For high-degree nets in designs, we propose a novel performance-driven topology design algorithm to generate good topologies to achieve very strict timing requirement. In the routing phase, we develop two global routers, FastRoute and FastRoute 2.0. Compared to traditional global routers, they can generate better solutions and are two orders of magnitude faster. Finally, based on these efficient and high-quality placement and routing algorithms, we propose a new flow which integrates placement and routing together closely. In this flow, global routing is extensively applied to obtain the interconnect information and direct the placement process. In this way, we can get very good placement solutions with guaranteed routability.
机译:随着功能部件尺寸的不断缩小,互连成为信号延迟的主要因素。由于互连主要由布局和布线决定,因此这两个阶段对于实现高性能起着关键作用。从历史上看,它们分为两个单独的阶段以使问题易于解决。因此,在放置过程中路由信息不可用。使用诸如HPWL之类的网络模型来近似布线,以简化布局问题。但是,在布线阶段,就这些目标而言,好的布置可能根本无法路由,因为在布置和布线阶段中优化了不同的目标。这种不一致使通过两步优化方法获得的结果远非最佳。为了实现高质量的放置解决方案并确保以下布线,我们提出了一种集成的放置和布线方法。在这种方法中,我们将布局和布线集成到同一框架中,以使布局优化的目标与布线中的目标相同。由于放置和布线都是非常困难的问题(NP困难),因此我们需要有非常有效的算法,以便将它们集成在一起不会导致棘手的复杂性。本文首先针对大型混合尺寸放置问题开发了一种高效的放置器-FastPlace 3.0。然后,提出了一种有效且有效的详细布局器-FastDP,以通过在设计中移动标准单元来改善全局布局。对于设计中的高阶网络,我们提出了一种新颖的性能驱动的拓扑设计算法,以生成良好的拓扑来满足非常严格的时序要求。在路由阶段,我们开发两个全局路由器,即FastRoute和FastRoute 2.0。与传统的全局路由器相比,它们可以生成更好的解决方案,并且速度快两个数量级。最后,基于这些高效,高质量的布局和布线算法,我们提出了一种将布局和布线紧密集成在一起的新流程。在此流程中,全局路由被广泛应用于获得互连信息并指导放置过程。这样,我们可以获得具有保证可布线性的非常好的布局解决方案。

著录项

  • 作者

    Pan, Min.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术 ;
  • 关键词

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