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/****************************************************************************** |
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* Top contributors (to current version): |
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* Gereon Kremer, Makai Mann, Mathias Preiner |
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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 the inference manager for the theory of strings. |
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*/ |
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#include "theory/arith/inference_manager.h" |
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#include "options/arith_options.h" |
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#include "theory/arith/arith_state.h" |
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#include "theory/arith/theory_arith.h" |
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#include "theory/rewriter.h" |
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namespace cvc5 { |
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namespace theory { |
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namespace arith { |
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InferenceManager::InferenceManager(TheoryArith& ta, |
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ArithState& astate, |
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ProofNodeManager* pnm) |
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: InferenceManagerBuffered(ta, astate, pnm, "theory::arith::"), |
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// currently must track propagated literals if using the equality solver |
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d_trackPropLits(options::arithEqSolver()), |
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d_propLits(astate.getSatContext()) |
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{ |
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} |
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void InferenceManager::addPendingLemma(std::unique_ptr<SimpleTheoryLemma> lemma, |
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bool isWaiting) |
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{ |
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Trace("arith::infman") << "Add " << lemma->getId() << " " << lemma->d_node |
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<< (isWaiting ? " as waiting" : "") << std::endl; |
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if (hasCachedLemma(lemma->d_node, lemma->d_property)) |
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{ |
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return; |
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} |
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if (isEntailedFalse(*lemma)) |
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{ |
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if (isWaiting) |
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{ |
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d_waitingLem.clear(); |
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} |
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else |
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{ |
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d_pendingLem.clear(); |
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d_theoryState.notifyInConflict(); |
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} |
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} |
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if (isWaiting) |
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{ |
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d_waitingLem.emplace_back(std::move(lemma)); |
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} |
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else |
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{ |
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d_pendingLem.emplace_back(std::move(lemma)); |
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} |
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} |
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void InferenceManager::addPendingLemma(const SimpleTheoryLemma& lemma, |
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bool isWaiting) |
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{ |
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addPendingLemma( |
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std::unique_ptr<SimpleTheoryLemma>(new SimpleTheoryLemma(lemma)), |
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isWaiting); |
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} |
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void InferenceManager::addPendingLemma(const Node& lemma, |
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InferenceId inftype, |
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ProofGenerator* pg, |
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bool isWaiting, |
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LemmaProperty p) |
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{ |
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addPendingLemma(std::unique_ptr<SimpleTheoryLemma>( |
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new SimpleTheoryLemma(inftype, lemma, p, pg)), |
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isWaiting); |
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} |
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void InferenceManager::flushWaitingLemmas() |
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{ |
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for (auto& lem : d_waitingLem) |
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{ |
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Trace("arith::infman") << "Flush waiting lemma to pending: " |
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<< lem->getId() << " " << lem->d_node |
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<< std::endl; |
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d_pendingLem.emplace_back(std::move(lem)); |
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} |
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d_waitingLem.clear(); |
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} |
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void InferenceManager::clearWaitingLemmas() |
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{ |
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d_waitingLem.clear(); |
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} |
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bool InferenceManager::hasUsed() const |
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{ |
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return hasSent() || hasPending(); |
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} |
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bool InferenceManager::hasWaitingLemma() const |
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{ |
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return !d_waitingLem.empty(); |
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} |
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std::size_t InferenceManager::numWaitingLemmas() const |
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{ |
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return d_waitingLem.size(); |
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} |
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bool InferenceManager::hasCachedLemma(TNode lem, LemmaProperty p) |
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{ |
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Node rewritten = Rewriter::rewrite(lem); |
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return TheoryInferenceManager::hasCachedLemma(rewritten, p); |
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} |
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bool InferenceManager::cacheLemma(TNode lem, LemmaProperty p) |
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{ |
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Node rewritten = Rewriter::rewrite(lem); |
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return TheoryInferenceManager::cacheLemma(rewritten, p); |
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} |
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bool InferenceManager::isEntailedFalse(const SimpleTheoryLemma& lem) |
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{ |
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if (options::nlExtEntailConflicts()) |
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{ |
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Node ch_lemma = lem.d_node.negate(); |
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ch_lemma = Rewriter::rewrite(ch_lemma); |
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Trace("arith-inf-manager") << "InferenceManager::Check entailment of " |
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<< ch_lemma << "..." << std::endl; |
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std::pair<bool, Node> et = d_theory.getValuation().entailmentCheck( |
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options::TheoryOfMode::THEORY_OF_TYPE_BASED, ch_lemma); |
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Trace("arith-inf-manager") << "entailment test result : " << et.first << " " |
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<< et.second << std::endl; |
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if (et.first) |
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{ |
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Trace("arith-inf-manager") |
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<< "*** Lemma entailed to be in conflict : " << lem.d_node |
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<< std::endl; |
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return true; |
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} |
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} |
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return false; |
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} |
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bool InferenceManager::propagateLit(TNode lit) |
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{ |
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if (d_trackPropLits) |
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{ |
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d_propLits.insert(lit); |
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} |
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return TheoryInferenceManager::propagateLit(lit); |
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} |
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bool InferenceManager::hasPropagated(TNode lit) const |
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{ |
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Assert(d_trackPropLits); |
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return d_propLits.find(lit) != d_propLits.end(); |
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} |
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} // namespace arith |
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} // namespace theory |
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} // namespace cvc5 |