A compositional Semantics for CHR
Maurizio Gabbrielli, Maria Chiara Meo
Abstract
Constraint Handling Rules (CHR) are a committed-choice declarative language which has been designed for writing constraint solvers. A CHR program consists of multi-headed guarded rules which allow one to rewrite constraints into simpler ones until a solved form is reached. CHR has received a considerable attention, both from the practical and from the theoretical side. Nevertheless, due the use of multi-headed clauses, there are several aspects of the CHR semantics which have not been clarified yet. In particular, no compositional semantics for CHR has been defined so far. In this paper we introduce a fix-point semantics which characterizes the input/output behavior of a CHR program and which is and-compositional, that is, which allows to retrieve the semantics of a conjunctive query from the semantics of its components. Such a semantics can be used as a basis to define incremental and modular analysis and verification tools.
Create a lesson
Related papers
Tacet: A Language and Type System for Automatic Statistical Validity Accounting
Chiké Abuah
You may implement this later: Cofunctors as partial implementations
Vincent Wang-Maścianica
Direct Manipulation and Natural Language Programming, Together at Last?
Parker Ziegler, David Minh-Duy Cao, Justin Lubin et al.
A Programming Paradigm for Spatiotemporal Composability
Yifan Shi, Wei Zhang, Tianyi Cui
MGQL: An Executable, Small-Step Semantics of GQL
Aditya Thimmaiah, Tong-Nong Lin, Milos Gligoric
NoC-Out: A Formally-verified Network-on-Chip Library for Rule-based Hardware Designs
Max Kurze, František Farka, Sebastian Ertel