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/******************************************************************************
* Top contributors (to current version):
* Andrew Reynolds, Haniel Barbosa, Aina Niemetz
*
* This file is part of the cvc5 project.
*
* Copyright (c) 2009-2021 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.
* ****************************************************************************
*
* Implementation of module for final processing proof nodes.
*/
#include "smt/proof_final_callback.h"
#include "options/proof_options.h"
#include "proof/proof_checker.h"
#include "proof/proof_node_manager.h"
#include "smt/smt_statistics_registry.h"
#include "theory/builtin/proof_checker.h"
#include "theory/theory_id.h"
using namespace cvc5::kind;
using namespace cvc5::theory;
namespace cvc5 {
namespace smt {
ProofFinalCallback::ProofFinalCallback(ProofNodeManager* pnm)
: d_ruleCount(smtStatisticsRegistry().registerHistogram<PfRule>(
"finalProof::ruleCount")),
d_instRuleIds(
smtStatisticsRegistry().registerHistogram<theory::InferenceId>(
"finalProof::instRuleId")),
d_totalRuleCount(
smtStatisticsRegistry().registerInt("finalProof::totalRuleCount")),
d_minPedanticLevel(
smtStatisticsRegistry().registerInt("finalProof::minPedanticLevel")),
d_numFinalProofs(
smtStatisticsRegistry().registerInt("finalProofs::numFinalProofs")),
d_pnm(pnm),
d_pedanticFailure(false)
{
d_minPedanticLevel += 10;
}
void ProofFinalCallback::initializeUpdate()
{
d_pedanticFailure = false;
d_pedanticFailureOut.str("");
++d_numFinalProofs;
}
bool ProofFinalCallback::shouldUpdate(std::shared_ptr<ProofNode> pn,
const std::vector<Node>& fa,
bool& continueUpdate)
{
PfRule r = pn->getRule();
// if not doing eager pedantic checking, fail if below threshold
if (!options::proofEagerChecking())
{
if (!d_pedanticFailure)
{
Assert(d_pedanticFailureOut.str().empty());
if (d_pnm->getChecker()->isPedanticFailure(r, d_pedanticFailureOut))
{
d_pedanticFailure = true;
}
}
}
uint32_t plevel = d_pnm->getChecker()->getPedanticLevel(r);
if (plevel != 0)
{
d_minPedanticLevel.minAssign(plevel);
}
// record stats for the rule
d_ruleCount << r;
++d_totalRuleCount;
// take stats on the instantiations in the proof
if (r == PfRule::INSTANTIATE)
{
Node q = pn->getChildren()[0]->getResult();
const std::vector<Node>& args = pn->getArguments();
if (args.size() > q[0].getNumChildren())
{
InferenceId id;
if (getInferenceId(args[q[0].getNumChildren()], id))
{
d_instRuleIds << id;
}
}
}
return false;
}
bool ProofFinalCallback::wasPedanticFailure(std::ostream& out) const
{
if (d_pedanticFailure)
{
out << d_pedanticFailureOut.str();
return true;
}
return false;
}
} // namespace smt
} // namespace cvc5
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