• DocumentCode
    2089852
  • Title

    SLOCOP-II: a versatile timing verification system for MOSVLSI

  • Author

    Johannes, P. ; Das, P. ; Claesen, L. ; De Man, H.

  • Author_Institution
    IMEC, Leuven, Belgium
  • fYear
    1990
  • fDate
    12-15 Mar 1990
  • Firstpage
    518
  • Lastpage
    523
  • Abstract
    The new SLOCOP-II timing verification system for the accurate performance analysis of MOSVLSI circuits is being presented. The algorithms in SLOCOP-II solve the serious problem of `false paths´ that occur in all existing timing verifiers, by taking into account the logic functionality of the circuits at hand. To allow this for custom MOSVLSI designs, new event determination algorithms based on binary decision tree (BDT) have been developed and are presented in this paper. The algorithms to avoid the indication of `false longest delay paths´ can take a long calculation time. Therefore two new techniques have been developed: (1) by preprocessing the constrained event graph, compiled code can be generated that can execute orders of magnitude faster; and (2) by exploiting the hierarchy available in circuits. These algorithms have been implemented in the SLOCOP-II timing verification system. Results and comparative CPU-times on parameterised modules in the CATHEDRAL-II library are presented in the paper
  • Keywords
    MOS integrated circuits; VLSI; circuit analysis computing; CATHEDRAL-II library; MOSVLSI; SLOCOP-II; binary decision tree; constrained event graph; event determination algorithms; logic functionality; performance analysis; timing verifiers; versatile timing verification system; Algorithm design and analysis; Circuit analysis; Circuit simulation; Decision trees; Delay effects; Integrated circuit synthesis; Libraries; Logic circuits; Multiplexing; Timing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Design Automation Conference, 1990., EDAC. Proceedings of the European
  • Conference_Location
    Glasgow
  • Print_ISBN
    0-8186-2024-2
  • Type

    conf

  • DOI
    10.1109/EDAC.1990.136703
  • Filename
    136703