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/****************************************************************************** |
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* Top contributors (to current version): |
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* Andrew Reynolds, Tim King, Morgan Deters |
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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 instantiate. |
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*/ |
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#include "theory/quantifiers/instantiate.h" |
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#include "expr/node_algorithm.h" |
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#include "options/base_options.h" |
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#include "options/printer_options.h" |
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#include "options/quantifiers_options.h" |
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#include "options/smt_options.h" |
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#include "proof/lazy_proof.h" |
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#include "proof/proof_node_manager.h" |
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#include "smt/logic_exception.h" |
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#include "smt/smt_statistics_registry.h" |
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#include "theory/quantifiers/cegqi/inst_strategy_cegqi.h" |
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#include "theory/quantifiers/entailment_check.h" |
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#include "theory/quantifiers/first_order_model.h" |
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#include "theory/quantifiers/quantifiers_attributes.h" |
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#include "theory/quantifiers/quantifiers_preprocess.h" |
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#include "theory/quantifiers/term_database.h" |
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#include "theory/quantifiers/term_enumeration.h" |
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#include "theory/quantifiers/term_registry.h" |
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#include "theory/quantifiers/term_util.h" |
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#include "theory/rewriter.h" |
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using namespace cvc5::kind; |
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using namespace cvc5::context; |
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namespace cvc5 { |
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namespace theory { |
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namespace quantifiers { |
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|
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15271 |
Instantiate::Instantiate(Env& env, |
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QuantifiersState& qs, |
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QuantifiersInferenceManager& qim, |
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QuantifiersRegistry& qr, |
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15271 |
TermRegistry& tr) |
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: QuantifiersUtil(env), |
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d_qstate(qs), |
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d_qim(qim), |
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d_qreg(qr), |
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d_treg(tr), |
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15271 |
d_insts(userContext()), |
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15271 |
d_c_inst_match_trie_dom(userContext()), |
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20643 |
d_pfInst(isProofEnabled() ? new CDProof(env.getProofNodeManager(), |
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5372 |
userContext(), |
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5372 |
"Instantiate::pfInst") |
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71828 |
: nullptr) |
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{ |
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15271 |
} |
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45798 |
Instantiate::~Instantiate() |
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{ |
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for (std::pair<const Node, CDInstMatchTrie*>& t : d_c_inst_match_trie) |
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{ |
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delete t.second; |
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} |
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15266 |
d_c_inst_match_trie.clear(); |
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} |
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bool Instantiate::reset(Theory::Effort e) |
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{ |
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Trace("inst-debug") << "Reset, effort " << e << std::endl; |
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// clear explicitly recorded instantiations |
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d_recordedInst.clear(); |
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d_instDebugTemp.clear(); |
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return true; |
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} |
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|
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26092 |
void Instantiate::registerQuantifier(Node q) {} |
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5511 |
bool Instantiate::checkComplete(IncompleteId& incId) |
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{ |
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if (!d_recordedInst.empty()) |
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{ |
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Trace("quant-engine-debug") |
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<< "Set incomplete due to recorded instantiations." << std::endl; |
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incId = IncompleteId::QUANTIFIERS_RECORDED_INST; |
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return false; |
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} |
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return true; |
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} |
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12034 |
void Instantiate::addRewriter(InstantiationRewriter* ir) |
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{ |
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12034 |
d_instRewrite.push_back(ir); |
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} |
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bool Instantiate::addInstantiation(Node q, |
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std::vector<Node>& terms, |
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InferenceId id, |
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Node pfArg, |
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bool mkRep, |
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bool doVts) |
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{ |
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// For resource-limiting (also does a time check). |
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181865 |
d_qim.safePoint(Resource::QuantifierStep); |
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181865 |
Assert(!d_qstate.isInConflict()); |
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181865 |
Assert(terms.size() == q[0].getNumChildren()); |
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363730 |
Trace("inst-add-debug") << "For quantified formula " << q |
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181865 |
<< ", add instantiation: " << std::endl; |
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692739 |
for (unsigned i = 0, size = terms.size(); i < size; i++) |
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{ |
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510874 |
Trace("inst-add-debug") << " " << q[0][i]; |
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510874 |
Trace("inst-add-debug2") << " -> " << terms[i]; |
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1021748 |
TypeNode tn = q[0][i].getType(); |
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510874 |
if (terms[i].isNull()) |
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{ |
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terms[i] = d_treg.getTermForType(tn); |
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} |
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// Ensure the type is correct, this for instance ensures that real terms |
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// are cast to integers for { x -> t } where x has type Int and t has |
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// type Real. |
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510874 |
terms[i] = ensureType(terms[i], tn); |
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510874 |
if (mkRep) |
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{ |
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// pick the best possible representative for instantiation, based on past |
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// use and simplicity of term |
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terms[i] = d_treg.getModel()->getInternalRepresentative(terms[i], q, i); |
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} |
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510874 |
Trace("inst-add-debug") << " -> " << terms[i] << std::endl; |
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510874 |
if (terms[i].isNull()) |
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{ |
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Trace("inst-add-debug") |
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<< " --> Failed to make term vector, due to term/type restrictions." |
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<< std::endl; |
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return false; |
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} |
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#ifdef CVC5_ASSERTIONS |
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510874 |
bool bad_inst = false; |
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510874 |
if (TermUtil::containsUninterpretedConstant(terms[i])) |
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{ |
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Trace("inst") << "***& inst contains uninterpreted constant : " |
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<< terms[i] << std::endl; |
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bad_inst = true; |
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} |
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510874 |
else if (!terms[i].getType().isSubtypeOf(q[0][i].getType())) |
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{ |
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Trace("inst") << "***& inst bad type : " << terms[i] << " " |
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<< terms[i].getType() << "/" << q[0][i].getType() |
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<< std::endl; |
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bad_inst = true; |
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} |
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510874 |
else if (options().quantifiers.cegqi) |
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{ |
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Node icf = TermUtil::getInstConstAttr(terms[i]); |
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if (!icf.isNull()) |
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{ |
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if (icf == q) |
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{ |
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Trace("inst") << "***& inst contains inst constant attr : " |
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<< terms[i] << std::endl; |
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bad_inst = true; |
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} |
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else if (expr::hasSubterm(terms[i], d_qreg.d_inst_constants[q])) |
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{ |
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Trace("inst") << "***& inst contains inst constants : " << terms[i] |
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<< std::endl; |
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bad_inst = true; |
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} |
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} |
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} |
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// this assertion is critical to soundness |
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510874 |
if (bad_inst) |
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{ |
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Trace("inst") << "***& Bad Instantiate " << q << " with " << std::endl; |
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for (unsigned j = 0; j < terms.size(); j++) |
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{ |
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Trace("inst") << " " << terms[j] << std::endl; |
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} |
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Assert(false); |
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} |
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#endif |
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} |
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EntailmentCheck* ec = d_treg.getEntailmentCheck(); |
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// Note we check for entailment before checking for term vector duplication. |
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// Although checking for term vector duplication is a faster check, it is |
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// included automatically with recordInstantiationInternal, hence we prefer |
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// two checks instead of three. In experiments, it is 1% slower or so to call |
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// existsInstantiation here. |
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// Alternatively, we could return an (index, trie node) in the call to |
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// existsInstantiation here, where this would return the node in the trie |
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// where we determined that there is definitely no duplication, and then |
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// continue from that point in recordInstantiation below. However, for |
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// simplicity, we do not pursue this option (as it would likely only |
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// lead to very small gains). |
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// check for positive entailment |
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if (options().quantifiers.instNoEntail) |
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{ |
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// should check consistency of equality engine |
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// (if not aborting on utility's reset) |
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std::map<TNode, TNode> subs; |
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for (unsigned i = 0, size = terms.size(); i < size; i++) |
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{ |
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subs[q[0][i]] = terms[i]; |
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} |
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if (ec->isEntailed(q[1], subs, false, true)) |
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{ |
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Trace("inst-add-debug") << " --> Currently entailed." << std::endl; |
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++(d_statistics.d_inst_duplicate_ent); |
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return false; |
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} |
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} |
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// check based on instantiation level |
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if (options().quantifiers.instMaxLevel != -1) |
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{ |
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TermDb* tdb = d_treg.getTermDatabase(); |
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for (Node& t : terms) |
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{ |
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if (!tdb->isTermEligibleForInstantiation(t, q)) |
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{ |
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return false; |
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} |
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} |
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} |
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// record the instantiation |
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bool recorded = recordInstantiationInternal(q, terms); |
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if (!recorded) |
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{ |
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Trace("inst-add-debug") << " --> Already exists (no record)." << std::endl; |
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++(d_statistics.d_inst_duplicate_eq); |
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return false; |
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} |
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// Set up a proof if proofs are enabled. This proof stores a proof of |
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// the instantiation body with q as a free assumption. |
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std::shared_ptr<LazyCDProof> pfTmp; |
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if (isProofEnabled()) |
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{ |
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pfTmp.reset(new LazyCDProof(d_env.getProofNodeManager(), |
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nullptr, |
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nullptr, |
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"Instantiate::LazyCDProof::tmp")); |
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} |
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// construct the instantiation |
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Trace("inst-add-debug") << "Constructing instantiation..." << std::endl; |
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Assert(d_qreg.d_vars[q].size() == terms.size()); |
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// get the instantiation |
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Node body = getInstantiation( |
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q, d_qreg.d_vars[q], terms, id, pfArg, doVts, pfTmp.get()); |
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90256 |
Node orig_body = body; |
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// now preprocess, storing the trust node for the rewrite |
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90256 |
TrustNode tpBody = d_qreg.getPreprocess().preprocess(body, true); |
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45128 |
if (!tpBody.isNull()) |
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{ |
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Assert(tpBody.getKind() == TrustNodeKind::REWRITE); |
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body = tpBody.getNode(); |
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// do a tranformation step |
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if (pfTmp != nullptr) |
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{ |
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// ----------------- from preprocess |
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// orig_body orig_body = body |
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// ------------------------------ EQ_RESOLVE |
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// body |
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Node proven = tpBody.getProven(); |
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// add the transformation proof, or the trusted rule if none provided |
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pfTmp->addLazyStep(proven, |
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tpBody.getGenerator(), |
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PfRule::QUANTIFIERS_PREPROCESS, |
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true, |
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"Instantiate::getInstantiation:qpreprocess"); |
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pfTmp->addStep(body, PfRule::EQ_RESOLVE, {orig_body, proven}, {}); |
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} |
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} |
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45128 |
Trace("inst-debug") << "...preprocess to " << body << std::endl; |
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|
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// construct the lemma |
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45128 |
Trace("inst-assert") << "(assert " << body << ")" << std::endl; |
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// construct the instantiation, and rewrite the lemma |
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Node lem = NodeManager::currentNM()->mkNode(kind::IMPLIES, q, body); |
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// If proofs are enabled, construct the proof, which is of the form: |
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// ... free assumption q ... |
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// ------------------------- from pfTmp |
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// body |
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// ------------------------- SCOPE |
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// (=> q body) |
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// -------------------------- MACRO_SR_PRED_ELIM |
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// lem |
297 |
45128 |
bool hasProof = false; |
298 |
45128 |
if (isProofEnabled()) |
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{ |
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// make the proof of body |
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21600 |
std::shared_ptr<ProofNode> pfn = pfTmp->getProofFor(body); |
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// make the scope proof to get (=> q body) |
303 |
21600 |
std::vector<Node> assumps; |
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10800 |
assumps.push_back(q); |
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std::shared_ptr<ProofNode> pfns = |
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21600 |
d_env.getProofNodeManager()->mkScope({pfn}, assumps); |
307 |
10800 |
Assert(assumps.size() == 1 && assumps[0] == q); |
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// store in the main proof |
309 |
10800 |
d_pfInst->addProof(pfns); |
310 |
21600 |
Node prevLem = lem; |
311 |
10800 |
lem = rewrite(lem); |
312 |
10800 |
if (prevLem != lem) |
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{ |
314 |
6384 |
d_pfInst->addStep(lem, PfRule::MACRO_SR_PRED_ELIM, {prevLem}, {}); |
315 |
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} |
316 |
10800 |
hasProof = true; |
317 |
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} |
318 |
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else |
319 |
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{ |
320 |
34328 |
lem = rewrite(lem); |
321 |
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} |
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// added lemma, which checks for lemma duplication |
324 |
45128 |
bool addedLem = false; |
325 |
45128 |
if (hasProof) |
326 |
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{ |
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// use proof generator |
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10800 |
addedLem = |
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21600 |
d_qim.addPendingLemma(lem, id, LemmaProperty::NONE, d_pfInst.get()); |
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} |
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else |
332 |
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{ |
333 |
34328 |
addedLem = d_qim.addPendingLemma(lem, id); |
334 |
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} |
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336 |
45128 |
if (!addedLem) |
337 |
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{ |
338 |
1637 |
Trace("inst-add-debug") << " --> Lemma already exists." << std::endl; |
339 |
1637 |
++(d_statistics.d_inst_duplicate); |
340 |
1637 |
return false; |
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} |
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|
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// add to list of instantiations |
344 |
43491 |
InstLemmaList* ill = getOrMkInstLemmaList(q); |
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43491 |
ill->d_list.push_back(body); |
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// add to temporary debug statistics (# inst on this round) |
347 |
43491 |
d_instDebugTemp[q]++; |
348 |
43491 |
if (Trace.isOn("inst")) |
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{ |
350 |
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Trace("inst") << "*** Instantiate " << q << " with " << std::endl; |
351 |
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for (unsigned i = 0, size = terms.size(); i < size; i++) |
352 |
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{ |
353 |
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if (Trace.isOn("inst")) |
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{ |
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Trace("inst") << " " << terms[i]; |
356 |
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if (Trace.isOn("inst-debug")) |
357 |
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{ |
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Trace("inst-debug") << ", type=" << terms[i].getType() |
359 |
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<< ", var_type=" << q[0][i].getType(); |
360 |
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} |
361 |
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Trace("inst") << std::endl; |
362 |
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} |
363 |
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} |
364 |
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} |
365 |
43491 |
if (options().quantifiers.instMaxLevel != -1) |
366 |
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{ |
367 |
346 |
if (doVts) |
368 |
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{ |
369 |
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// virtual term substitution/instantiation level features are |
370 |
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// incompatible |
371 |
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std::stringstream ss; |
372 |
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ss << "Cannot combine instantiation strategies that require virtual term " |
373 |
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"substitution with those that restrict instantiation levels"; |
374 |
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throw LogicException(ss.str()); |
375 |
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} |
376 |
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else |
377 |
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{ |
378 |
346 |
uint64_t maxInstLevel = 0; |
379 |
1263 |
for (const Node& tc : terms) |
380 |
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{ |
381 |
1834 |
if (tc.hasAttribute(InstLevelAttribute()) |
382 |
917 |
&& tc.getAttribute(InstLevelAttribute()) > maxInstLevel) |
383 |
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{ |
384 |
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maxInstLevel = tc.getAttribute(InstLevelAttribute()); |
385 |
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} |
386 |
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} |
387 |
346 |
QuantAttributes::setInstantiationLevelAttr( |
388 |
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orig_body, q[1], maxInstLevel + 1); |
389 |
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} |
390 |
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} |
391 |
43491 |
d_treg.processInstantiation(q, terms); |
392 |
43491 |
Trace("inst-add-debug") << " --> Success." << std::endl; |
393 |
43491 |
++(d_statistics.d_instantiations); |
394 |
43491 |
return true; |
395 |
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} |
396 |
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|
397 |
5168 |
bool Instantiate::addInstantiationExpFail(Node q, |
398 |
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std::vector<Node>& terms, |
399 |
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std::vector<bool>& failMask, |
400 |
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InferenceId id, |
401 |
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Node pfArg, |
402 |
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bool mkRep, |
403 |
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bool doVts, |
404 |
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bool expFull) |
405 |
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{ |
406 |
5168 |
if (addInstantiation(q, terms, id, pfArg, mkRep, doVts)) |
407 |
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{ |
408 |
1052 |
return true; |
409 |
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} |
410 |
4116 |
size_t tsize = terms.size(); |
411 |
4116 |
failMask.resize(tsize, true); |
412 |
4116 |
if (tsize == 1) |
413 |
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{ |
414 |
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// will never succeed with 1 variable |
415 |
1614 |
return false; |
416 |
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} |
417 |
2502 |
EntailmentCheck* echeck = d_treg.getEntailmentCheck(); |
418 |
2502 |
Trace("inst-exp-fail") << "Explain inst failure..." << terms << std::endl; |
419 |
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// set up information for below |
420 |
2502 |
std::vector<Node>& vars = d_qreg.d_vars[q]; |
421 |
2502 |
Assert(tsize == vars.size()); |
422 |
5004 |
std::map<TNode, TNode> subs; |
423 |
15704 |
for (size_t i = 0; i < tsize; i++) |
424 |
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{ |
425 |
13202 |
subs[vars[i]] = terms[i]; |
426 |
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} |
427 |
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// get the instantiation body |
428 |
2502 |
InferenceId idNone = InferenceId::UNKNOWN; |
429 |
5004 |
Node nulln; |
430 |
5004 |
Node ibody = getInstantiation(q, vars, terms, idNone, nulln, doVts); |
431 |
2502 |
ibody = rewrite(ibody); |
432 |
15648 |
for (size_t i = 0; i < tsize; i++) |
433 |
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{ |
434 |
|
// process consecutively in reverse order, which is important since we use |
435 |
|
// the fail mask for incrementing in a lexicographic order |
436 |
13202 |
size_t ii = (tsize - 1) - i; |
437 |
|
// replace with the identity substitution |
438 |
26348 |
Node prev = terms[ii]; |
439 |
13202 |
terms[ii] = vars[ii]; |
440 |
13202 |
subs.erase(vars[ii]); |
441 |
13202 |
if (subs.empty()) |
442 |
|
{ |
443 |
|
// will never succeed with empty substitution |
444 |
56 |
break; |
445 |
|
} |
446 |
13146 |
Trace("inst-exp-fail") << "- revert " << ii << std::endl; |
447 |
|
// check whether we are still redundant |
448 |
13146 |
bool success = false; |
449 |
|
// check entailment, only if option is set |
450 |
13146 |
if (options().quantifiers.instNoEntail) |
451 |
|
{ |
452 |
13146 |
Trace("inst-exp-fail") << " check entailment" << std::endl; |
453 |
13146 |
success = echeck->isEntailed(q[1], subs, false, true); |
454 |
13146 |
Trace("inst-exp-fail") << " entailed: " << success << std::endl; |
455 |
|
} |
456 |
|
// check whether the instantiation rewrites to the same thing |
457 |
13146 |
if (!success) |
458 |
|
{ |
459 |
22080 |
Node ibodyc = getInstantiation(q, vars, terms, idNone, nulln, doVts); |
460 |
11040 |
ibodyc = rewrite(ibodyc); |
461 |
11040 |
success = (ibodyc == ibody); |
462 |
11040 |
Trace("inst-exp-fail") << " rewrite invariant: " << success << std::endl; |
463 |
|
} |
464 |
13146 |
if (success) |
465 |
|
{ |
466 |
|
// if we still fail, we are not critical |
467 |
2178 |
failMask[ii] = false; |
468 |
|
} |
469 |
|
else |
470 |
|
{ |
471 |
10968 |
subs[vars[ii]] = prev; |
472 |
10968 |
terms[ii] = prev; |
473 |
|
// not necessary to proceed if expFull is false |
474 |
10968 |
if (!expFull) |
475 |
|
{ |
476 |
|
break; |
477 |
|
} |
478 |
|
} |
479 |
|
} |
480 |
2502 |
if (Trace.isOn("inst-exp-fail")) |
481 |
|
{ |
482 |
|
Trace("inst-exp-fail") << "Fail mask: "; |
483 |
|
for (bool b : failMask) |
484 |
|
{ |
485 |
|
Trace("inst-exp-fail") << (b ? 1 : 0); |
486 |
|
} |
487 |
|
Trace("inst-exp-fail") << std::endl; |
488 |
|
} |
489 |
2502 |
return false; |
490 |
|
} |
491 |
|
|
492 |
1 |
void Instantiate::recordInstantiation(Node q, |
493 |
|
const std::vector<Node>& terms, |
494 |
|
bool doVts) |
495 |
|
{ |
496 |
1 |
Trace("inst-debug") << "Record instantiation for " << q << std::endl; |
497 |
|
// get the instantiation list, which ensures that q is marked as a quantified |
498 |
|
// formula we instantiated, despite only recording an instantiation here |
499 |
1 |
getOrMkInstLemmaList(q); |
500 |
2 |
Node inst = getInstantiation(q, terms, doVts); |
501 |
1 |
d_recordedInst[q].push_back(inst); |
502 |
1 |
} |
503 |
|
|
504 |
|
bool Instantiate::existsInstantiation(Node q, |
505 |
|
const std::vector<Node>& terms, |
506 |
|
bool modEq) |
507 |
|
{ |
508 |
|
if (options().base.incrementalSolving) |
509 |
|
{ |
510 |
|
std::map<Node, CDInstMatchTrie*>::iterator it = d_c_inst_match_trie.find(q); |
511 |
|
if (it != d_c_inst_match_trie.end()) |
512 |
|
{ |
513 |
|
return it->second->existsInstMatch(userContext(), d_qstate, q, terms, modEq); |
514 |
|
} |
515 |
|
} |
516 |
|
else |
517 |
|
{ |
518 |
|
std::map<Node, InstMatchTrie>::iterator it = d_inst_match_trie.find(q); |
519 |
|
if (it != d_inst_match_trie.end()) |
520 |
|
{ |
521 |
|
return it->second.existsInstMatch(d_qstate, q, terms, modEq); |
522 |
|
} |
523 |
|
} |
524 |
|
return false; |
525 |
|
} |
526 |
|
|
527 |
58671 |
Node Instantiate::getInstantiation(Node q, |
528 |
|
const std::vector<Node>& vars, |
529 |
|
const std::vector<Node>& terms, |
530 |
|
InferenceId id, |
531 |
|
Node pfArg, |
532 |
|
bool doVts, |
533 |
|
LazyCDProof* pf) |
534 |
|
{ |
535 |
58671 |
Assert(vars.size() == terms.size()); |
536 |
58671 |
Assert(q[0].getNumChildren() == vars.size()); |
537 |
|
// Notice that this could be optimized, but no significant performance |
538 |
|
// improvements were observed with alternative implementations (see #1386). |
539 |
|
Node body = |
540 |
58671 |
q[1].substitute(vars.begin(), vars.end(), terms.begin(), terms.end()); |
541 |
|
|
542 |
|
// store the proof of the instantiated body, with (open) assumption q |
543 |
58671 |
if (pf != nullptr) |
544 |
|
{ |
545 |
|
// additional arguments: if the inference id is not unknown, include it, |
546 |
|
// followed by the proof argument if non-null. The latter is used e.g. |
547 |
|
// to track which trigger caused an instantiation. |
548 |
21600 |
std::vector<Node> pfTerms = terms; |
549 |
10800 |
if (id != InferenceId::UNKNOWN) |
550 |
|
{ |
551 |
10797 |
pfTerms.push_back(mkInferenceIdNode(id)); |
552 |
10797 |
if (!pfArg.isNull()) |
553 |
|
{ |
554 |
8711 |
pfTerms.push_back(pfArg); |
555 |
|
} |
556 |
|
} |
557 |
10800 |
pf->addStep(body, PfRule::INSTANTIATE, {q}, pfTerms); |
558 |
|
} |
559 |
|
|
560 |
|
// run rewriters to rewrite the instantiation in sequence. |
561 |
110897 |
for (InstantiationRewriter*& ir : d_instRewrite) |
562 |
|
{ |
563 |
104452 |
TrustNode trn = ir->rewriteInstantiation(q, terms, body, doVts); |
564 |
52226 |
if (!trn.isNull()) |
565 |
|
{ |
566 |
162 |
Node newBody = trn.getNode(); |
567 |
|
// if using proofs, we store a preprocess + transformation step. |
568 |
81 |
if (pf != nullptr) |
569 |
|
{ |
570 |
46 |
Node proven = trn.getProven(); |
571 |
23 |
pf->addLazyStep(proven, |
572 |
|
trn.getGenerator(), |
573 |
|
PfRule::THEORY_PREPROCESS, |
574 |
|
true, |
575 |
|
"Instantiate::getInstantiation:rewrite_inst"); |
576 |
23 |
pf->addStep(newBody, PfRule::EQ_RESOLVE, {body, proven}, {}); |
577 |
|
} |
578 |
81 |
body = newBody; |
579 |
|
} |
580 |
|
} |
581 |
58671 |
return body; |
582 |
|
} |
583 |
|
|
584 |
1 |
Node Instantiate::getInstantiation(Node q, |
585 |
|
const std::vector<Node>& terms, |
586 |
|
bool doVts) |
587 |
|
{ |
588 |
1 |
Assert(d_qreg.d_vars.find(q) != d_qreg.d_vars.end()); |
589 |
|
return getInstantiation( |
590 |
1 |
q, d_qreg.d_vars[q], terms, InferenceId::UNKNOWN, Node::null(), doVts); |
591 |
|
} |
592 |
|
|
593 |
83720 |
bool Instantiate::recordInstantiationInternal(Node q, |
594 |
|
const std::vector<Node>& terms) |
595 |
|
{ |
596 |
83720 |
if (options().base.incrementalSolving) |
597 |
|
{ |
598 |
16410 |
Trace("inst-add-debug") |
599 |
8205 |
<< "Adding into context-dependent inst trie" << std::endl; |
600 |
8205 |
const auto res = d_c_inst_match_trie.insert({q, nullptr}); |
601 |
8205 |
if (res.second) |
602 |
|
{ |
603 |
709 |
res.first->second = new CDInstMatchTrie(userContext()); |
604 |
|
} |
605 |
8205 |
d_c_inst_match_trie_dom.insert(q); |
606 |
8205 |
return res.first->second->addInstMatch(userContext(), d_qstate, q, terms); |
607 |
|
} |
608 |
75515 |
Trace("inst-add-debug") << "Adding into inst trie" << std::endl; |
609 |
75515 |
return d_inst_match_trie[q].addInstMatch(d_qstate, q, terms); |
610 |
|
} |
611 |
|
|
612 |
|
bool Instantiate::removeInstantiationInternal(Node q, |
613 |
|
const std::vector<Node>& terms) |
614 |
|
{ |
615 |
|
if (options().base.incrementalSolving) |
616 |
|
{ |
617 |
|
std::map<Node, CDInstMatchTrie*>::iterator it = d_c_inst_match_trie.find(q); |
618 |
|
if (it != d_c_inst_match_trie.end()) |
619 |
|
{ |
620 |
|
return it->second->removeInstMatch(q, terms); |
621 |
|
} |
622 |
|
return false; |
623 |
|
} |
624 |
|
return d_inst_match_trie[q].removeInstMatch(q, terms); |
625 |
|
} |
626 |
|
|
627 |
93 |
void Instantiate::getInstantiatedQuantifiedFormulas(std::vector<Node>& qs) const |
628 |
|
{ |
629 |
174 |
for (NodeInstListMap::const_iterator it = d_insts.begin(); |
630 |
174 |
it != d_insts.end(); |
631 |
|
++it) |
632 |
|
{ |
633 |
81 |
qs.push_back(it->first); |
634 |
|
} |
635 |
93 |
} |
636 |
|
|
637 |
72 |
void Instantiate::getInstantiationTermVectors( |
638 |
|
Node q, std::vector<std::vector<Node> >& tvecs) |
639 |
|
{ |
640 |
72 |
if (options().base.incrementalSolving) |
641 |
|
{ |
642 |
|
std::map<Node, CDInstMatchTrie*>::const_iterator it = |
643 |
4 |
d_c_inst_match_trie.find(q); |
644 |
4 |
if (it != d_c_inst_match_trie.end()) |
645 |
|
{ |
646 |
4 |
it->second->getInstantiations(q, tvecs); |
647 |
|
} |
648 |
|
} |
649 |
|
else |
650 |
|
{ |
651 |
|
std::map<Node, InstMatchTrie>::const_iterator it = |
652 |
68 |
d_inst_match_trie.find(q); |
653 |
68 |
if (it != d_inst_match_trie.end()) |
654 |
|
{ |
655 |
68 |
it->second.getInstantiations(q, tvecs); |
656 |
|
} |
657 |
|
} |
658 |
72 |
} |
659 |
|
|
660 |
8 |
void Instantiate::getInstantiationTermVectors( |
661 |
|
std::map<Node, std::vector<std::vector<Node> > >& insts) |
662 |
|
{ |
663 |
8 |
if (options().base.incrementalSolving) |
664 |
|
{ |
665 |
8 |
for (const auto& t : d_c_inst_match_trie) |
666 |
|
{ |
667 |
4 |
getInstantiationTermVectors(t.first, insts[t.first]); |
668 |
|
} |
669 |
|
} |
670 |
|
else |
671 |
|
{ |
672 |
10 |
for (const auto& t : d_inst_match_trie) |
673 |
|
{ |
674 |
6 |
getInstantiationTermVectors(t.first, insts[t.first]); |
675 |
|
} |
676 |
|
} |
677 |
8 |
} |
678 |
|
|
679 |
18 |
void Instantiate::getInstantiations(Node q, std::vector<Node>& insts) |
680 |
|
{ |
681 |
18 |
Trace("inst-debug") << "get instantiations for " << q << std::endl; |
682 |
18 |
InstLemmaList* ill = getOrMkInstLemmaList(q); |
683 |
18 |
insts.insert(insts.end(), ill->d_list.begin(), ill->d_list.end()); |
684 |
|
// also include recorded instantations (for qe-partial) |
685 |
|
std::map<Node, std::vector<Node> >::const_iterator it = |
686 |
18 |
d_recordedInst.find(q); |
687 |
18 |
if (it != d_recordedInst.end()) |
688 |
|
{ |
689 |
1 |
insts.insert(insts.end(), it->second.begin(), it->second.end()); |
690 |
|
} |
691 |
18 |
} |
692 |
|
|
693 |
105527 |
bool Instantiate::isProofEnabled() const |
694 |
|
{ |
695 |
105527 |
return d_env.isTheoryProofProducing(); |
696 |
|
} |
697 |
|
|
698 |
14296 |
void Instantiate::notifyEndRound() |
699 |
|
{ |
700 |
|
// debug information |
701 |
14296 |
if (Trace.isOn("inst-per-quant-round")) |
702 |
|
{ |
703 |
|
for (std::pair<const Node, uint32_t>& i : d_instDebugTemp) |
704 |
|
{ |
705 |
|
Trace("inst-per-quant-round") |
706 |
|
<< " * " << i.second << " for " << i.first << std::endl; |
707 |
|
} |
708 |
|
} |
709 |
14296 |
if (isOutputOn(OutputTag::INST)) |
710 |
|
{ |
711 |
2 |
bool req = !options().printer.printInstFull; |
712 |
6 |
for (std::pair<const Node, uint32_t>& i : d_instDebugTemp) |
713 |
|
{ |
714 |
8 |
Node name; |
715 |
4 |
if (!d_qreg.getNameForQuant(i.first, name, req)) |
716 |
|
{ |
717 |
|
continue; |
718 |
|
} |
719 |
8 |
output(OutputTag::INST) << "(num-instantiations " << name << " " |
720 |
4 |
<< i.second << ")" << std::endl; |
721 |
|
} |
722 |
|
} |
723 |
14296 |
} |
724 |
|
|
725 |
10998 |
void Instantiate::debugPrintModel() |
726 |
|
{ |
727 |
10998 |
if (Trace.isOn("inst-per-quant")) |
728 |
|
{ |
729 |
|
for (NodeInstListMap::iterator it = d_insts.begin(); it != d_insts.end(); |
730 |
|
++it) |
731 |
|
{ |
732 |
|
Trace("inst-per-quant") << " * " << (*it).second->d_list.size() << " for " |
733 |
|
<< (*it).first << std::endl; |
734 |
|
} |
735 |
|
} |
736 |
10998 |
} |
737 |
|
|
738 |
510874 |
Node Instantiate::ensureType(Node n, TypeNode tn) |
739 |
|
{ |
740 |
510874 |
Trace("inst-add-debug2") << "Ensure " << n << " : " << tn << std::endl; |
741 |
1021748 |
TypeNode ntn = n.getType(); |
742 |
510874 |
Assert(ntn.isComparableTo(tn)); |
743 |
510874 |
if (ntn.isSubtypeOf(tn)) |
744 |
|
{ |
745 |
510858 |
return n; |
746 |
|
} |
747 |
16 |
if (tn.isInteger()) |
748 |
|
{ |
749 |
16 |
return NodeManager::currentNM()->mkNode(TO_INTEGER, n); |
750 |
|
} |
751 |
|
return Node::null(); |
752 |
|
} |
753 |
|
|
754 |
43510 |
InstLemmaList* Instantiate::getOrMkInstLemmaList(TNode q) |
755 |
|
{ |
756 |
43510 |
NodeInstListMap::iterator it = d_insts.find(q); |
757 |
43510 |
if (it != d_insts.end()) |
758 |
|
{ |
759 |
36910 |
return it->second.get(); |
760 |
|
} |
761 |
|
std::shared_ptr<InstLemmaList> ill = |
762 |
13200 |
std::make_shared<InstLemmaList>(userContext()); |
763 |
6600 |
d_insts.insert(q, ill); |
764 |
6600 |
return ill.get(); |
765 |
|
} |
766 |
|
|
767 |
15271 |
Instantiate::Statistics::Statistics() |
768 |
15271 |
: d_instantiations(smtStatisticsRegistry().registerInt( |
769 |
30542 |
"Instantiate::Instantiations_Total")), |
770 |
|
d_inst_duplicate( |
771 |
30542 |
smtStatisticsRegistry().registerInt("Instantiate::Duplicate_Inst")), |
772 |
15271 |
d_inst_duplicate_eq(smtStatisticsRegistry().registerInt( |
773 |
30542 |
"Instantiate::Duplicate_Inst_Eq")), |
774 |
15271 |
d_inst_duplicate_ent(smtStatisticsRegistry().registerInt( |
775 |
61084 |
"Instantiate::Duplicate_Inst_Entailed")) |
776 |
|
{ |
777 |
15271 |
} |
778 |
|
|
779 |
|
} // namespace quantifiers |
780 |
|
} // namespace theory |
781 |
31125 |
} // namespace cvc5 |