Systematic design of program transformation frameworks by abstract interpretation

Author:

Cousot Patrick1,Cousot Radhia2

Affiliation:

1. École normale supérieure, 75230 Paris cedex 05, France

2. École polytechnique, 91128 Palaiseau cedex, France

Abstract

We introduce a general uniform language-independent framework for designing online and offline source-to-source program transformations by abstract interpretation of program semantics. Iterative source-to-source program transformations are designed constructively by composition of source-to-semantics, semantics-to-transformed semantics and semantics-to-source abstractions applied to fixpoint trace semantics. The correctness of the transformations is expressed through observational and performance abstractions. The framework is illustrated on three examples: constant propagation, program specialization by online and offline partial evaluation and static program monitoring.

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design,Software

Reference31 articles.

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3. P.Cousot and R.Cousot.Abstract interpretation:a unified lattice model for static analysis of programs by construction or approximation of .xpoints.4 th POPL 238 -252 1977 ACM Press. 10.1145/512950.512973 P.Cousot and R.Cousot.Abstract interpretation:a unified lattice model for static analysis of programs by construction or approximation of .xpoints.4 th POPL 238 -252 1977 ACM Press. 10.1145/512950.512973

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