GCC Code Coverage Report
Directory: . Exec Total Coverage
File: src/theory/strings/eqc_info.cpp Lines: 57 57 100.0 %
Date: 2021-09-30 Branches: 148 330 44.8 %

Line Exec Source
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/******************************************************************************
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 * Top contributors (to current version):
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 *   Andrew Reynolds, Aina Niemetz
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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) 2009-2021 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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 * Implementation of equivalence class info for the theory of strings.
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 */
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#include "theory/strings/eqc_info.h"
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#include "theory/strings/theory_strings_utils.h"
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#include "theory/strings/word.h"
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using namespace std;
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using namespace cvc5::context;
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using namespace cvc5::kind;
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namespace cvc5 {
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namespace theory {
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namespace strings {
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EqcInfo::EqcInfo(context::Context* c)
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    : d_lengthTerm(c),
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      d_codeTerm(c),
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      d_cardinalityLemK(c),
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      d_normalizedLength(c),
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      d_prefixC(c),
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      d_suffixC(c)
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{
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}
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80059
Node EqcInfo::addEndpointConst(Node t, Node c, bool isSuf)
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{
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  // check conflict
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  Node prev = isSuf ? d_suffixC : d_prefixC;
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  if (!prev.isNull())
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  {
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    Trace("strings-eager-pconf-debug") << "Check conflict " << prev << ", " << t
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                                       << " post=" << isSuf << std::endl;
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    Node prevC = utils::getConstantEndpoint(prev, isSuf);
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    Assert(!prevC.isNull());
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    Assert(prevC.isConst());
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    if (c.isNull())
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    {
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      c = utils::getConstantEndpoint(t, isSuf);
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      Assert(!c.isNull());
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    }
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    Assert(c.isConst());
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    bool conflict = false;
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    // if the constant prefixes are different
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    if (c != prevC)
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    {
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      // conflicts between constants should be handled by equality engine
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      Assert(!t.isConst() || !prev.isConst());
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      Trace("strings-eager-pconf-debug")
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          << "Check conflict constants " << prevC << ", " << c << std::endl;
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      size_t pvs = Word::getLength(prevC);
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      size_t cvs = Word::getLength(c);
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      if (pvs == cvs || (pvs > cvs && t.isConst())
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          || (cvs > pvs && prev.isConst()))
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      {
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        // If equal length, cannot be equal due to node check above.
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        // If one is fully constant and has less length than the other, then the
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        // other will not fit and we are in conflict.
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        conflict = true;
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      }
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      else
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      {
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        Node larges = pvs > cvs ? prevC : c;
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        Node smalls = pvs > cvs ? c : prevC;
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        if (isSuf)
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        {
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          conflict = !Word::hasSuffix(larges, smalls);
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        }
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        else
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        {
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          conflict = !Word::hasPrefix(larges, smalls);
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        }
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      }
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      if (!conflict && (pvs > cvs || prev.isConst()))
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      {
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        // current is subsumed, either shorter prefix or the other is a full
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        // constant
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        return Node::null();
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      }
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    }
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    else if (!t.isConst())
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    {
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      // current is subsumed since the other may be a full constant
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      return Node::null();
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    }
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    if (conflict)
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    {
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      Trace("strings-eager-pconf")
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          << "Conflict for " << prevC << ", " << c << std::endl;
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      std::vector<Node> ccs;
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      Node r[2];
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      for (unsigned i = 0; i < 2; i++)
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      {
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        Node tp = i == 0 ? t : prev;
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        if (tp.getKind() == STRING_IN_REGEXP)
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        {
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          ccs.push_back(tp);
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          r[i] = tp[0];
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        }
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        else
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        {
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          r[i] = tp;
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        }
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      }
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      if (r[0] != r[1])
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      {
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        ccs.push_back(r[0].eqNode(r[1]));
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      }
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      Assert(!ccs.empty());
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      Node ret =
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          ccs.size() == 1 ? ccs[0] : NodeManager::currentNM()->mkNode(AND, ccs);
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      Trace("strings-eager-pconf")
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          << "String: eager prefix conflict: " << ret << std::endl;
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      return ret;
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    }
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  }
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  if (isSuf)
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  {
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    d_suffixC = t;
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  }
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  else
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  {
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    d_prefixC = t;
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  }
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  return Node::null();
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}
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}  // namespace strings
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}  // namespace theory
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}  // namespace cvc5