#include <libsolidity/formal/ModelChecker.h>
#ifdef HAVE_Z3
#include <libsmtutil/Z3Interface.h>
#endif
#include <range/v3/algorithm/any_of.hpp>
#include <range/v3/view.hpp>
using namespace std;
using namespace solidity;
using namespace solidity::util;
using namespace solidity::langutil;
using namespace solidity::frontend;
ModelChecker::ModelChecker(
ErrorReporter& _errorReporter,
langutil::CharStreamProvider const& _charStreamProvider,
map<h256, string> const& _smtlib2Responses,
ModelCheckerSettings _settings,
ReadCallback::Callback const& _smtCallback
):
m_errorReporter(_errorReporter),
m_settings(move(_settings)),
m_context(),
m_bmc(m_context, m_uniqueErrorReporter, _smtlib2Responses, _smtCallback, m_settings, _charStreamProvider),
m_chc(m_context, m_uniqueErrorReporter, _smtlib2Responses, _smtCallback, m_settings, _charStreamProvider)
{
}
void ModelChecker::enableAllEnginesIfPragmaPresent(vector<shared_ptr<SourceUnit>> const& _sources)
{
bool hasPragma = ranges::any_of(_sources, [](auto _source) {
return _source && _source->annotation().experimentalFeatures.count(ExperimentalFeature::SMTChecker);
});
if (hasPragma)
m_settings.engine = ModelCheckerEngine::All();
}
void ModelChecker::checkRequestedSourcesAndContracts(vector<shared_ptr<SourceUnit>> const& _sources)
{
map<string, set<string>> exist;
for (auto const& source: _sources)
for (auto node: source->nodes())
if (auto contract = dynamic_pointer_cast<ContractDefinition>(node))
exist[contract->sourceUnitName()].insert(contract->name());
for (auto const& sourceName: m_settings.contracts.contracts | ranges::views::keys)
{
if (!exist.count(sourceName))
{
m_uniqueErrorReporter.warning(
9134_error,
SourceLocation(),
"Requested source \"" + sourceName + "\" does not exist."
);
continue;
}
auto const& source = exist.at(sourceName);
for (auto const& contract: m_settings.contracts.contracts.at(sourceName))
if (!source.count(contract))
m_uniqueErrorReporter.warning(
7400_error,
SourceLocation(),
"Requested contract \"" + contract + "\" does not exist in source \"" + sourceName + "\"."
);
}
}
void ModelChecker::analyze(SourceUnit const& _source)
{
if (_source.annotation().experimentalFeatures.count(ExperimentalFeature::SMTChecker))
{
PragmaDirective const* smtPragma = nullptr;
for (auto node: _source.nodes())
if (auto pragma = dynamic_pointer_cast<PragmaDirective>(node))
if (
pragma->literals().size() >= 2 &&
pragma->literals().at(1) == "SMTChecker"
)
{
smtPragma = pragma.get();
break;
}
solAssert(smtPragma, "");
m_uniqueErrorReporter.warning(
5523_error,
smtPragma->location(),
"The SMTChecker pragma has been deprecated and will be removed in the future. "
"Please use the \"model checker engine\" compiler setting to activate the SMTChecker instead. "
"If the pragma is enabled, all engines will be used."
);
}
if (m_settings.engine.none())
return;
if (m_settings.engine.chc)
m_chc.analyze(_source);
auto solvedTargets = m_chc.safeTargets();
for (auto const& [node, targets]: m_chc.unsafeTargets())
solvedTargets[node] += targets | ranges::views::keys;
if (m_settings.engine.bmc)
m_bmc.analyze(_source, solvedTargets);
m_errorReporter.append(m_uniqueErrorReporter.errors());
m_uniqueErrorReporter.clear();
}
vector<string> ModelChecker::unhandledQueries()
{
return m_bmc.unhandledQueries() + m_chc.unhandledQueries();
}
solidity::smtutil::SMTSolverChoice ModelChecker::availableSolvers()
{
smtutil::SMTSolverChoice available = smtutil::SMTSolverChoice::SMTLIB2();
#ifdef HAVE_Z3
available.z3 = solidity::smtutil::Z3Interface::available();
#endif
#ifdef HAVE_CVC4
available.cvc4 = true;
#endif
return available;
}