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research-article

Routability-Driven Placement and White Space Allocation

Published: 01 May 2007 Publication History

Abstract

We present a two-stage congestion-driven placement flow. First, during each refinement stage of our multilevel global placement framework, we replace cells based on the wirelength weighted by congestion level to reduce the routing demands of congested regions. Second, after the global placement stage, we allocate appropriate amounts of white space into different regions of the chip according to a congestion map by shifting cut lines in a top-down fashion and apply a detailed placer to legalize the placement and further reduce the half-perimeter wirelength while preserving the distribution of white space. Experimental results show that our placement flow can achieve the best routability with the shortest routed wirelength among publicly available placement tools on IBM v2 benchmarks. Our placer obtains 100% successful routings on 16 IBM v2 benchmarks with shorter routed wirelengths by 3.1% to 24.5% compared to other placement tools. Moreover, our white space allocation approach can significantly improve the routability of placements generated by other placement tools

Cited By

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  • (2021)Automatic Routability Predictor Development Using Neural Architecture Search2021 IEEE/ACM International Conference On Computer Aided Design (ICCAD)10.1109/ICCAD51958.2021.9643483(1-9)Online publication date: 1-Nov-2021
  • (2021)Generalizable Cross-Graph Embedding for GNN-based Congestion Prediction2021 IEEE/ACM International Conference On Computer Aided Design (ICCAD)10.1109/ICCAD51958.2021.9643446(1-9)Online publication date: 1-Nov-2021
  • (2016)Ripple 2.0ACM Transactions on Design Automation of Electronic Systems10.1145/292598922:1(1-26)Online publication date: 2-Sep-2016
  • Show More Cited By

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Published In

cover image IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems
IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems  Volume 26, Issue 5
May 2007
348 pages

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IEEE Press

Publication History

Published: 01 May 2007

Author Tags

  1. Circuit placement
  2. design automation
  3. routability
  4. white space allocation

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Cited By

View all
  • (2021)Automatic Routability Predictor Development Using Neural Architecture Search2021 IEEE/ACM International Conference On Computer Aided Design (ICCAD)10.1109/ICCAD51958.2021.9643483(1-9)Online publication date: 1-Nov-2021
  • (2021)Generalizable Cross-Graph Embedding for GNN-based Congestion Prediction2021 IEEE/ACM International Conference On Computer Aided Design (ICCAD)10.1109/ICCAD51958.2021.9643446(1-9)Online publication date: 1-Nov-2021
  • (2016)Ripple 2.0ACM Transactions on Design Automation of Electronic Systems10.1145/292598922:1(1-26)Online publication date: 2-Sep-2016
  • (2014)MIP-based detailed placer for mixed-size circuitsProceedings of the 2014 on International symposium on physical design10.1145/2560519.2560526(11-18)Online publication date: 30-Mar-2014
  • (2013)Artificial bee colony for the standard cell placement problemInternational Journal of Metaheuristics10.1504/IJMHEUR.2013.0564022:3(234-255)Online publication date: 1-Sep-2013
  • (2013)Ripple 2.0Proceedings of the 50th Annual Design Automation Conference10.1145/2463209.2488922(1-6)Online publication date: 29-May-2013
  • (2013)SRPProceedings of the 2013 ACM International symposium on Physical Design10.1145/2451916.2451943(108-113)Online publication date: 24-Mar-2013
  • (2012)Progress and challenges in VLSI placement researchProceedings of the International Conference on Computer-Aided Design10.1145/2429384.2429441(275-282)Online publication date: 5-Nov-2012
  • (2012)Guiding a physical design closure system to produce easier-to-route designs with more predictable timingProceedings of the 49th Annual Design Automation Conference10.1145/2228360.2228442(465-470)Online publication date: 3-Jun-2012
  • (2012)Towards layout-friendly high-level synthesisProceedings of the 2012 ACM international symposium on International Symposium on Physical Design10.1145/2160916.2160952(165-172)Online publication date: 25-Mar-2012
  • Show More Cited By

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