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Two-Level Functional Languages

Two-Level Functional Languages

Two-Level Functional Languages

Flemming Nielson , Aarhus Universitet, Denmark
Hanne Riis Nielson , Aarhus Universitet, Denmark
August 2005
Available
Paperback
9780521018470

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    The authors describe here a framework in which the type notation of functional languages is extended to include a notation for binding times (that is run-time and compile-time) that distinguishes between them. Consequently, the ability to specify code and verify program correctness can be improved. Two developments are needed, the first of which introduces the binding time distinction into the lambda calculus in a manner analogous with the introduction of types into the untyped lambda calculus. Methods are also presented for introducing combinators for run-time. The second concerns the interpretation of the resulting language, which is known as the mixed lambda-calculus and combinatory logic. The notion of "parametrized semantics" is used to describe code generation and abstract interpretation. The code generation is for a simple abstract machine designed for the purpose, it is close to the categorical abstract machine. The abstract interpretation focuses on a strictness analysis that generalizes Wadler's analysis for lists. It is also shown how the results of abstract interpretation may be used to improve the code generation.

    Product details

    March 2011
    Adobe eBook Reader
    9780511879081
    0 pages
    0kg
    4 b/w illus. 35 tables
    This ISBN is for an eBook version which is distributed on our behalf by a third party.

    Table of Contents

    • 1. Introduction
    • 2. Types made explicit
    • 3. Binding-time made explicit
    • 4. Combinators made explicit
    • 5. Parametrized semantics
    • 6. Code generation
    • 7. Abstract interpretation
    • 8. Conclusions
    • Bibliography
    • Summary of transformation functions
    • Index.
      Authors
    • Flemming Nielson , Aarhus Universitet, Denmark
    • Hanne Riis Nielson , Aarhus Universitet, Denmark