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Synthetic Domain Theory and Models of Linear Abadi & Plotkin Logic

  • University of Genoa
Research Output:
Journal Article or Conference Article in Journal
Journal article
Peer-review

Publication Information

Output type

Research Output:
Journal Article or Conference Article in Journal
Journal article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 115-133 (19 pages)

Journal (Volume, Issue Number)

Annals of Pure and Applied Logic (Volume 155, Issue 2)

Publication milestones

  • Published - 02/09/2008

Publication status

Published - 02/09/2008

ISSN

0168-0072

Publication IDs

  • Scopus: 50049102004

Abstract

Plotkin suggested using a polymorphic dual intuitionistic/linear type theory (PILLY ) as a metalanguage for parametric polymorphism and recursion. In recent work the first two authors and R.L. Petersen have defined a notion of parametric LAPL-structure, which are models of PILLY , in which one can reason using parametricity and, for example, solve a large class of domain equations, as suggested by Plotkin. In this paper, we show how an interpretation of a strict version of Bierman, Pitts and Russo’s language Lily into synthetic domain theory presented by Simpson and Rosolini gives rise to a parametric LAPL-structure. This adds to the evidence that the notion of LAPL-structure is a general notion, suitable for treating many different parametric models, and it provides formal proofs of consequences of parametricity expected to hold for the interpretation. Finally, we show how these results, in combination with Rosolini and Simpson’s computational adequacy result, can be used to prove consequences of parametricity for Lily. In particular, we show that one can solve domain equations in Lily up to ground contextual equivalence

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