
arXiv: 0908.0494
Modern functional-logic programming languages like Toy or Curry feature non-strict non-deterministic functions that behave under call-time choice semantics. A standard formulation for this semantics is the CRWL logic, that specifies a proof calculus for computing the set of possible results for each expression. In this paper we present a formalization of that calculus in the Isabelle/HOL proof assistant. We have proved some basic properties of CRWL: closedness under c-substitutions, polarity and compositionality. We also discuss some insights that have been gained, such as the fact that left linearity of program rules is not needed for any of these results to hold.
FOS: Computer and information sciences, Computer Science - Logic in Computer Science, theorem proving, [INFO.INFO-LO] Computer Science [cs]/Logic in Computer Science [cs.LO], Isabelle, CRWL logic, functional-logic programming, higher-order logic, Logic in Computer Science (cs.LO)
FOS: Computer and information sciences, Computer Science - Logic in Computer Science, theorem proving, [INFO.INFO-LO] Computer Science [cs]/Logic in Computer Science [cs.LO], Isabelle, CRWL logic, functional-logic programming, higher-order logic, Logic in Computer Science (cs.LO)
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