Delay-optimal technology mapping by DAG covering

We propose an algorithm for minimal-delay technology mapping for library-based designs. We show that subject graphs need not be decomposed into trees for delay minimization; they can be mapped directly as DAGs. Experimental results demonstrate that significant delay improvement is possible by this n...

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Vydané v:DAC 98: DAC: 35th Annual ACM/IEEE Design Automation Conference s. 348 - 351
Hlavní autori: Kukimoto, Yuji, Brayton, Robert K., Sawkar, Prashant
Médium: Konferenčný príspevok..
Jazyk:English
Vydavateľské údaje: New York, NY, USA ACM 01.01.1998
IEEE
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Abstract We propose an algorithm for minimal-delay technology mapping for library-based designs. We show that subject graphs need not be decomposed into trees for delay minimization; they can be mapped directly as DAGs. Experimental results demonstrate that significant delay improvement is possible by this new approach.
AbstractList We propose an algorithm for minimal-delay technology mapping for library-based designs. We show that subject graphs need not be decomposed into trees for delay minimization; they can be mapped directly as DAGs. Experimental results demonstrate that significant delay improvement is possible by this new approach.
Author Brayton, Robert K.
Sawkar, Prashant
Kukimoto, Yuji
Author_xml – sequence: 1
  givenname: Yuji
  surname: Kukimoto
  fullname: Kukimoto, Yuji
  organization: Department of Electrical Engineering and Computer Sciences, University of California, Berkeley, CA
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  givenname: Robert K.
  surname: Brayton
  fullname: Brayton, Robert K.
  organization: Department of Electrical Engineering and Computer Sciences University of California, Berkeley, CA
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  givenname: Prashant
  surname: Sawkar
  fullname: Sawkar, Prashant
  organization: Strategic CAD Laboratories, Intel Corporation, Hillsboro, OR
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Keywords relaxed pins
supply-demand
global routing
quadratic placement
routing models
congestion
Language English
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Snippet We propose an algorithm for minimal-delay technology mapping for library-based designs. We show that subject graphs need not be decomposed into trees for delay...
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StartPage 348
SubjectTerms Algorithm design and analysis
Applied computing -- Physical sciences and engineering -- Engineering
Circuits
Delay
Design automation
Dynamic programming
Field programmable gate arrays
Hardware -- Emerging technologies
Hardware -- Robustness
Hardware -- Very large scale integration design
Laboratories
Mathematics of computing -- Discrete mathematics
Mathematics of computing -- Mathematical software
Permission
Theory of computation -- Design and analysis of algorithms -- Data structures design and analysis -- Pattern matching
Tree graphs
Vegetation mapping
Title Delay-optimal technology mapping by DAG covering
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