/****************************************************************************** * Top contributors (to current version): * Mudathir Mohamed, Daniel Larraz, Andrew Reynolds * * This file is part of the cvc5 project. * * Copyright (c) 2009-2025 by the authors listed in the file AUTHORS * in the top-level source directory and their institutional affiliations. * All rights reserved. See the file COPYING in the top-level source * directory for licensing information. * **************************************************************************** * * A simple demonstration of the Sygus API. * * A simple demonstration of how to use the Sygus API to synthesize a simple * invariant. This is a direct translation of sygus-inv.cpp. */ import static io.github.cvc5.Kind.*; import io.github.cvc5.*; public class SygusInv { public static void main(String args[]) throws CVC5ApiException { TermManager tm = new TermManager(); Solver slv = new Solver(tm); { // required options slv.setOption("sygus", "true"); slv.setOption("incremental", "false"); // set the logic slv.setLogic("LIA"); Sort integer = tm.getIntegerSort(); Sort bool = tm.getBooleanSort(); Term zero = tm.mkInteger(0); Term one = tm.mkInteger(1); Term ten = tm.mkInteger(10); // declare input variables for functions Term x = tm.mkVar(integer, "x"); Term xp = tm.mkVar(integer, "xp"); // (ite (< x 10) (= xp (+ x 1)) (= xp x)) Term ite = tm.mkTerm(ITE, tm.mkTerm(LT, x, ten), tm.mkTerm(EQUAL, xp, tm.mkTerm(ADD, x, one)), tm.mkTerm(EQUAL, xp, x)); // define the pre-conditions, transition relations, and post-conditions Term pre_f = slv.defineFun("pre-f", new Term[] {x}, bool, tm.mkTerm(EQUAL, x, zero)); Term trans_f = slv.defineFun("trans-f", new Term[] {x, xp}, bool, ite); Term post_f = slv.defineFun("post-f", new Term[] {x}, bool, tm.mkTerm(LEQ, x, ten)); // declare the invariant-to-synthesize Term inv_f = slv.synthFun("inv-f", new Term[] {x}, bool); slv.addSygusInvConstraint(inv_f, pre_f, trans_f, post_f); // print solutions if available if (slv.checkSynth().hasSolution()) { // Output should be equivalent to: // ( // (define-fun inv-f ((x Int)) Bool (not (>= x 11))) // ) Term[] terms = new Term[] {inv_f}; Utils.printSynthSolutions(terms, slv.getSynthSolutions(terms)); } } Context.deletePointers(); } }