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This refactors the Solver class in the java API to extend AbstractPointer similar to other cvc5 classes. It also cleans up redundant code for Abstract pointers. and adds Context.deletePointers to java examples as mentioned in issue #10052.
56 lines
1.6 KiB
Java
56 lines
1.6 KiB
Java
/******************************************************************************
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* Top contributors (to current version):
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* Mudathir Mohamed, Andres Noetzli
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*
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* This file is part of the cvc5 project.
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*
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* Copyright (c) 2009-2022 by the authors listed in the file AUTHORS
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* in the top-level source directory and their institutional affiliations.
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* All rights reserved. See the file COPYING in the top-level source
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* directory for licensing information.
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* ****************************************************************************
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*
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* A simple demonstration of the transcendental extension.
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*/
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import static io.github.cvc5.Kind.*;
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import io.github.cvc5.*;
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public class Transcendentals
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{
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public static void main(String args[]) throws CVC5ApiException
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{
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Solver slv = new Solver();
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{
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slv.setLogic("QF_NRAT");
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Sort real = slv.getRealSort();
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// Variables
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Term x = slv.mkConst(real, "x");
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Term y = slv.mkConst(real, "y");
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// Helper terms
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Term two = slv.mkReal(2);
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Term pi = slv.mkPi();
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Term twopi = slv.mkTerm(MULT, two, pi);
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Term ysq = slv.mkTerm(MULT, y, y);
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Term sinx = slv.mkTerm(SINE, x);
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// Formulas
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Term x_gt_pi = slv.mkTerm(GT, x, pi);
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Term x_lt_tpi = slv.mkTerm(LT, x, twopi);
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Term ysq_lt_sinx = slv.mkTerm(LT, ysq, sinx);
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slv.assertFormula(x_gt_pi);
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slv.assertFormula(x_lt_tpi);
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slv.assertFormula(ysq_lt_sinx);
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System.out.println("cvc5 should report UNSAT.");
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System.out.println("Result from cvc5 is: " + slv.checkSat());
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}
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Context.deletePointers();
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}
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}
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