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			739 lines
		
	
	
		
			20 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			739 lines
		
	
	
		
			20 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/*
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	This file is part of solidity.
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	solidity is free software: you can redistribute it and/or modify
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	it under the terms of the GNU General Public License as published by
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	the Free Software Foundation, either version 3 of the License, or
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	(at your option) any later version.
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	solidity is distributed in the hope that it will be useful,
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	but WITHOUT ANY WARRANTY; without even the implied warranty of
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	MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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						|
	GNU General Public License for more details.
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	You should have received a copy of the GNU General Public License
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	along with solidity.  If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <libsolidity/formal/CHC.h>
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#include <libsolidity/formal/CHCSmtLib2Interface.h>
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#ifdef HAVE_Z3
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#include <libsolidity/formal/Z3CHCInterface.h>
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#endif
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#include <libsolidity/formal/SymbolicTypes.h>
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#include <libsolidity/ast/TypeProvider.h>
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using namespace std;
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using namespace solidity;
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using namespace solidity::langutil;
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using namespace solidity::frontend;
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CHC::CHC(
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	smt::EncodingContext& _context,
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	ErrorReporter& _errorReporter,
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	map<util::h256, string> const& _smtlib2Responses,
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	ReadCallback::Callback const& _smtCallback,
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	[[maybe_unused]] smt::SMTSolverChoice _enabledSolvers
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):
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	SMTEncoder(_context),
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	m_outerErrorReporter(_errorReporter),
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	m_enabledSolvers(_enabledSolvers)
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{
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#ifdef HAVE_Z3
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	if (_enabledSolvers.z3)
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		m_interface = make_unique<smt::Z3CHCInterface>();
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#endif
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	if (!m_interface)
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		m_interface = make_unique<smt::CHCSmtLib2Interface>(_smtlib2Responses, _smtCallback);
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}
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void CHC::analyze(SourceUnit const& _source)
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{
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	solAssert(_source.annotation().experimentalFeatures.count(ExperimentalFeature::SMTChecker), "");
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	bool usesZ3 = false;
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#ifdef HAVE_Z3
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	usesZ3 = m_enabledSolvers.z3;
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	if (usesZ3)
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	{
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		auto z3Interface = dynamic_cast<smt::Z3CHCInterface const*>(m_interface.get());
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		solAssert(z3Interface, "");
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		m_context.setSolver(z3Interface->z3Interface());
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	}
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#endif
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	if (!usesZ3)
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	{
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		auto smtlib2Interface = dynamic_cast<smt::CHCSmtLib2Interface const*>(m_interface.get());
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		solAssert(smtlib2Interface, "");
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		m_context.setSolver(smtlib2Interface->smtlib2Interface());
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	}
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	m_context.clear();
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	m_context.setAssertionAccumulation(false);
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	m_variableUsage.setFunctionInlining(false);
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	auto boolSort = make_shared<smt::Sort>(smt::Kind::Bool);
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	auto genesisSort = make_shared<smt::FunctionSort>(
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		vector<smt::SortPointer>(),
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		boolSort
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	);
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	m_genesisPredicate = createSymbolicBlock(genesisSort, "genesis");
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	auto genesis = (*m_genesisPredicate)({});
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	addRule(genesis, genesis.name);
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	_source.accept(*this);
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}
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vector<string> CHC::unhandledQueries() const
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{
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	if (auto smtlib2 = dynamic_cast<smt::CHCSmtLib2Interface const*>(m_interface.get()))
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		return smtlib2->unhandledQueries();
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	return {};
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}
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bool CHC::visit(ContractDefinition const& _contract)
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{
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	if (!shouldVisit(_contract))
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		return false;
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	reset();
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	initContract(_contract);
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	m_stateVariables = _contract.stateVariablesIncludingInherited();
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	for (auto const& var: m_stateVariables)
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		// SMT solvers do not support function types as arguments.
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		if (var->type()->category() == Type::Category::Function)
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			m_stateSorts.push_back(make_shared<smt::Sort>(smt::Kind::Int));
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		else
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			m_stateSorts.push_back(smt::smtSort(*var->type()));
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	clearIndices(&_contract);
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	string suffix = _contract.name() + "_" + to_string(_contract.id());
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	m_interfacePredicate = createSymbolicBlock(interfaceSort(), "interface_" + suffix);
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	// TODO create static instances for Bool/Int sorts in SolverInterface.
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	auto boolSort = make_shared<smt::Sort>(smt::Kind::Bool);
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	auto errorFunctionSort = make_shared<smt::FunctionSort>(
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		vector<smt::SortPointer>(),
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		boolSort
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	);
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	m_errorPredicate = createSymbolicBlock(errorFunctionSort, "error_" + suffix);
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	m_constructorPredicate = createSymbolicBlock(constructorSort(), "implicit_constructor_" + to_string(_contract.id()));
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	auto stateExprs = currentStateVariables();
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	setCurrentBlock(*m_interfacePredicate, &stateExprs);
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	SMTEncoder::visit(_contract);
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	return false;
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}
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void CHC::endVisit(ContractDefinition const& _contract)
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{
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	if (!shouldVisit(_contract))
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		return;
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	for (auto const& var: m_stateVariables)
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	{
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		solAssert(m_context.knownVariable(*var), "");
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		m_context.setZeroValue(*var);
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	}
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	auto genesisPred = (*m_genesisPredicate)({});
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	auto implicitConstructor = (*m_constructorPredicate)(currentStateVariables());
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	connectBlocks(genesisPred, implicitConstructor);
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	m_currentBlock = implicitConstructor;
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	if (auto constructor = _contract.constructor())
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		constructor->accept(*this);
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	else
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		inlineConstructorHierarchy(_contract);
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	connectBlocks(m_currentBlock, interface());
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	for (unsigned i = 0; i < m_verificationTargets.size(); ++i)
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	{
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		auto const& target = m_verificationTargets.at(i);
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		auto errorAppl = error(i + 1);
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		if (query(errorAppl, target->location()))
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			m_safeAssertions.insert(target);
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	}
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	SMTEncoder::endVisit(_contract);
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}
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bool CHC::visit(FunctionDefinition const& _function)
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{
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	if (!shouldVisit(_function))
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		return false;
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	// This is the case for base constructor inlining.
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	if (m_currentFunction)
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	{
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		solAssert(m_currentFunction->isConstructor(), "");
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		solAssert(_function.isConstructor(), "");
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		solAssert(_function.scope() != m_currentContract, "");
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		SMTEncoder::visit(_function);
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		return false;
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	}
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	solAssert(!m_currentFunction, "Inlining internal function calls not yet implemented");
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	m_currentFunction = &_function;
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	initFunction(_function);
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	auto functionEntryBlock = createBlock(m_currentFunction);
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	auto bodyBlock = createBlock(&m_currentFunction->body());
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	auto functionPred = predicate(*functionEntryBlock, currentFunctionVariables());
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	auto bodyPred = predicate(*bodyBlock);
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	connectBlocks(m_currentBlock, functionPred);
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	connectBlocks(functionPred, bodyPred);
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	setCurrentBlock(*bodyBlock);
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	SMTEncoder::visit(*m_currentFunction);
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	return false;
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}
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void CHC::endVisit(FunctionDefinition const& _function)
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{
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	if (!shouldVisit(_function))
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		return;
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	// This is the case for base constructor inlining.
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	if (m_currentFunction != &_function)
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	{
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		solAssert(m_currentFunction && m_currentFunction->isConstructor(), "");
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		solAssert(_function.isConstructor(), "");
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		solAssert(_function.scope() != m_currentContract, "");
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	}
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	else
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	{
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		// We create an extra exit block for constructors that simply
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		// connects to the interface in case an explicit constructor
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		// exists in the hierarchy.
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		// It is not connected directly here, as normal functions are,
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		// because of the case where there are only implicit constructors.
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		// This is done in endVisit(ContractDefinition).
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		if (_function.isConstructor())
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		{
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			auto constructorExit = createSymbolicBlock(interfaceSort(), "constructor_exit_" + to_string(_function.id()));
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			connectBlocks(m_currentBlock, predicate(*constructorExit, currentStateVariables()));
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			clearIndices(m_currentContract, m_currentFunction);
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			auto stateExprs = currentStateVariables();
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			setCurrentBlock(*constructorExit, &stateExprs);
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		}
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		else
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		{
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			connectBlocks(m_currentBlock, interface());
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			clearIndices(m_currentContract, m_currentFunction);
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			auto stateExprs = currentStateVariables();
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			setCurrentBlock(*m_interfacePredicate, &stateExprs);
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		}
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		m_currentFunction = nullptr;
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	}
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	SMTEncoder::endVisit(_function);
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}
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bool CHC::visit(IfStatement const& _if)
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{
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	solAssert(m_currentFunction, "");
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	bool unknownFunctionCallWasSeen = m_unknownFunctionCallSeen;
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	m_unknownFunctionCallSeen = false;
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	solAssert(m_currentFunction, "");
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	auto const& functionBody = m_currentFunction->body();
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	auto ifHeaderBlock = createBlock(&_if, "if_header_");
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	auto trueBlock = createBlock(&_if.trueStatement(), "if_true_");
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	auto falseBlock = _if.falseStatement() ? createBlock(_if.falseStatement(), "if_false_") : nullptr;
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	auto afterIfBlock = createBlock(&functionBody);
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	connectBlocks(m_currentBlock, predicate(*ifHeaderBlock));
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	setCurrentBlock(*ifHeaderBlock);
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	_if.condition().accept(*this);
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	auto condition = expr(_if.condition());
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	connectBlocks(m_currentBlock, predicate(*trueBlock), condition);
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	if (_if.falseStatement())
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		connectBlocks(m_currentBlock, predicate(*falseBlock), !condition);
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	else
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		connectBlocks(m_currentBlock, predicate(*afterIfBlock), !condition);
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	setCurrentBlock(*trueBlock);
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	_if.trueStatement().accept(*this);
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	connectBlocks(m_currentBlock, predicate(*afterIfBlock));
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	if (_if.falseStatement())
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	{
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		setCurrentBlock(*falseBlock);
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		_if.falseStatement()->accept(*this);
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		connectBlocks(m_currentBlock, predicate(*afterIfBlock));
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	}
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	setCurrentBlock(*afterIfBlock);
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	if (m_unknownFunctionCallSeen)
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		eraseKnowledge();
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	m_unknownFunctionCallSeen = unknownFunctionCallWasSeen;
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	return false;
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}
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bool CHC::visit(WhileStatement const& _while)
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{
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	bool unknownFunctionCallWasSeen = m_unknownFunctionCallSeen;
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	m_unknownFunctionCallSeen = false;
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	solAssert(m_currentFunction, "");
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	auto const& functionBody = m_currentFunction->body();
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	auto namePrefix = string(_while.isDoWhile() ? "do_" : "") + "while";
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	auto loopHeaderBlock = createBlock(&_while, namePrefix + "_header_");
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	auto loopBodyBlock = createBlock(&_while.body(), namePrefix + "_body_");
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	auto afterLoopBlock = createBlock(&functionBody);
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	auto outerBreakDest = m_breakDest;
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	auto outerContinueDest = m_continueDest;
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	m_breakDest = afterLoopBlock.get();
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	m_continueDest = loopHeaderBlock.get();
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	if (_while.isDoWhile())
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		_while.body().accept(*this);
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	connectBlocks(m_currentBlock, predicate(*loopHeaderBlock));
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	setCurrentBlock(*loopHeaderBlock);
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	_while.condition().accept(*this);
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	auto condition = expr(_while.condition());
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	connectBlocks(m_currentBlock, predicate(*loopBodyBlock), condition);
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	connectBlocks(m_currentBlock, predicate(*afterLoopBlock), !condition);
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	// Loop body visit.
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	setCurrentBlock(*loopBodyBlock);
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	_while.body().accept(*this);
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	m_breakDest = outerBreakDest;
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	m_continueDest = outerContinueDest;
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	// Back edge.
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	connectBlocks(m_currentBlock, predicate(*loopHeaderBlock));
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	setCurrentBlock(*afterLoopBlock);
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	if (m_unknownFunctionCallSeen)
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		eraseKnowledge();
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	m_unknownFunctionCallSeen = unknownFunctionCallWasSeen;
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	return false;
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}
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bool CHC::visit(ForStatement const& _for)
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{
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	bool unknownFunctionCallWasSeen = m_unknownFunctionCallSeen;
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	m_unknownFunctionCallSeen = false;
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	solAssert(m_currentFunction, "");
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	auto const& functionBody = m_currentFunction->body();
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	auto loopHeaderBlock = createBlock(&_for, "for_header_");
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	auto loopBodyBlock = createBlock(&_for.body(), "for_body_");
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	auto afterLoopBlock = createBlock(&functionBody);
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	auto postLoop = _for.loopExpression();
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	auto postLoopBlock = postLoop ? createBlock(postLoop, "for_post_") : nullptr;
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	auto outerBreakDest = m_breakDest;
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	auto outerContinueDest = m_continueDest;
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	m_breakDest = afterLoopBlock.get();
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	m_continueDest = postLoop ? postLoopBlock.get() : loopHeaderBlock.get();
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	if (auto init = _for.initializationExpression())
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		init->accept(*this);
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	connectBlocks(m_currentBlock, predicate(*loopHeaderBlock));
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						|
	setCurrentBlock(*loopHeaderBlock);
 | 
						|
 | 
						|
	auto condition = smt::Expression(true);
 | 
						|
	if (auto forCondition = _for.condition())
 | 
						|
	{
 | 
						|
		forCondition->accept(*this);
 | 
						|
		condition = expr(*forCondition);
 | 
						|
	}
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						|
 | 
						|
	connectBlocks(m_currentBlock, predicate(*loopBodyBlock), condition);
 | 
						|
	connectBlocks(m_currentBlock, predicate(*afterLoopBlock), !condition);
 | 
						|
 | 
						|
	// Loop body visit.
 | 
						|
	setCurrentBlock(*loopBodyBlock);
 | 
						|
	_for.body().accept(*this);
 | 
						|
 | 
						|
	if (postLoop)
 | 
						|
	{
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						|
		connectBlocks(m_currentBlock, predicate(*postLoopBlock));
 | 
						|
		setCurrentBlock(*postLoopBlock);
 | 
						|
		postLoop->accept(*this);
 | 
						|
	}
 | 
						|
 | 
						|
	m_breakDest = outerBreakDest;
 | 
						|
	m_continueDest = outerContinueDest;
 | 
						|
 | 
						|
	// Back edge.
 | 
						|
	connectBlocks(m_currentBlock, predicate(*loopHeaderBlock));
 | 
						|
	setCurrentBlock(*afterLoopBlock);
 | 
						|
 | 
						|
	if (m_unknownFunctionCallSeen)
 | 
						|
		eraseKnowledge();
 | 
						|
 | 
						|
	m_unknownFunctionCallSeen = unknownFunctionCallWasSeen;
 | 
						|
 | 
						|
	return false;
 | 
						|
}
 | 
						|
 | 
						|
void CHC::endVisit(FunctionCall const& _funCall)
 | 
						|
{
 | 
						|
	solAssert(_funCall.annotation().kind != FunctionCallKind::Unset, "");
 | 
						|
 | 
						|
	if (_funCall.annotation().kind != FunctionCallKind::FunctionCall)
 | 
						|
	{
 | 
						|
		SMTEncoder::endVisit(_funCall);
 | 
						|
		return;
 | 
						|
	}
 | 
						|
 | 
						|
	FunctionType const& funType = dynamic_cast<FunctionType const&>(*_funCall.expression().annotation().type);
 | 
						|
	switch (funType.kind())
 | 
						|
	{
 | 
						|
	case FunctionType::Kind::Assert:
 | 
						|
		visitAssert(_funCall);
 | 
						|
		SMTEncoder::endVisit(_funCall);
 | 
						|
		break;
 | 
						|
	case FunctionType::Kind::Internal:
 | 
						|
	case FunctionType::Kind::External:
 | 
						|
	case FunctionType::Kind::DelegateCall:
 | 
						|
	case FunctionType::Kind::BareCall:
 | 
						|
	case FunctionType::Kind::BareCallCode:
 | 
						|
	case FunctionType::Kind::BareDelegateCall:
 | 
						|
	case FunctionType::Kind::BareStaticCall:
 | 
						|
	case FunctionType::Kind::Creation:
 | 
						|
	case FunctionType::Kind::KECCAK256:
 | 
						|
	case FunctionType::Kind::ECRecover:
 | 
						|
	case FunctionType::Kind::SHA256:
 | 
						|
	case FunctionType::Kind::RIPEMD160:
 | 
						|
	case FunctionType::Kind::BlockHash:
 | 
						|
	case FunctionType::Kind::AddMod:
 | 
						|
	case FunctionType::Kind::MulMod:
 | 
						|
		SMTEncoder::endVisit(_funCall);
 | 
						|
		unknownFunctionCall(_funCall);
 | 
						|
		break;
 | 
						|
	default:
 | 
						|
		SMTEncoder::endVisit(_funCall);
 | 
						|
		break;
 | 
						|
	}
 | 
						|
 | 
						|
	createReturnedExpressions(_funCall);
 | 
						|
}
 | 
						|
 | 
						|
void CHC::endVisit(Break const& _break)
 | 
						|
{
 | 
						|
	solAssert(m_breakDest, "");
 | 
						|
	connectBlocks(m_currentBlock, predicate(*m_breakDest));
 | 
						|
	auto breakGhost = createBlock(&_break, "break_ghost_");
 | 
						|
	m_currentBlock = predicate(*breakGhost);
 | 
						|
}
 | 
						|
 | 
						|
void CHC::endVisit(Continue const& _continue)
 | 
						|
{
 | 
						|
	solAssert(m_continueDest, "");
 | 
						|
	connectBlocks(m_currentBlock, predicate(*m_continueDest));
 | 
						|
	auto continueGhost = createBlock(&_continue, "continue_ghost_");
 | 
						|
	m_currentBlock = predicate(*continueGhost);
 | 
						|
}
 | 
						|
 | 
						|
void CHC::visitAssert(FunctionCall const& _funCall)
 | 
						|
{
 | 
						|
	auto const& args = _funCall.arguments();
 | 
						|
	solAssert(args.size() == 1, "");
 | 
						|
	solAssert(args.front()->annotation().type->category() == Type::Category::Bool, "");
 | 
						|
 | 
						|
	createErrorBlock();
 | 
						|
 | 
						|
	smt::Expression assertNeg = !(m_context.expression(*args.front())->currentValue());
 | 
						|
	connectBlocks(m_currentBlock, error(), currentPathConditions() && assertNeg);
 | 
						|
 | 
						|
	m_verificationTargets.push_back(&_funCall);
 | 
						|
}
 | 
						|
 | 
						|
void CHC::unknownFunctionCall(FunctionCall const&)
 | 
						|
{
 | 
						|
	/// Function calls are not handled at the moment,
 | 
						|
	/// so always erase knowledge.
 | 
						|
	/// TODO remove when function calls get predicates/blocks.
 | 
						|
	eraseKnowledge();
 | 
						|
 | 
						|
	/// Used to erase outer scope knowledge in loops and ifs.
 | 
						|
	/// TODO remove when function calls get predicates/blocks.
 | 
						|
	m_unknownFunctionCallSeen = true;
 | 
						|
}
 | 
						|
 | 
						|
void CHC::reset()
 | 
						|
{
 | 
						|
	m_stateSorts.clear();
 | 
						|
	m_stateVariables.clear();
 | 
						|
	m_verificationTargets.clear();
 | 
						|
	m_safeAssertions.clear();
 | 
						|
	m_unknownFunctionCallSeen = false;
 | 
						|
	m_breakDest = nullptr;
 | 
						|
	m_continueDest = nullptr;
 | 
						|
}
 | 
						|
 | 
						|
void CHC::eraseKnowledge()
 | 
						|
{
 | 
						|
	resetStateVariables();
 | 
						|
	m_context.resetVariables([&](VariableDeclaration const& _variable) { return _variable.hasReferenceOrMappingType(); });
 | 
						|
}
 | 
						|
 | 
						|
bool CHC::shouldVisit(ContractDefinition const& _contract) const
 | 
						|
{
 | 
						|
	if (
 | 
						|
		_contract.isLibrary() ||
 | 
						|
		_contract.isInterface()
 | 
						|
	)
 | 
						|
		return false;
 | 
						|
	return true;
 | 
						|
}
 | 
						|
 | 
						|
bool CHC::shouldVisit(FunctionDefinition const& _function) const
 | 
						|
{
 | 
						|
	if (
 | 
						|
		_function.isPublic() &&
 | 
						|
		_function.isImplemented()
 | 
						|
	)
 | 
						|
		return true;
 | 
						|
	return false;
 | 
						|
}
 | 
						|
 | 
						|
void CHC::setCurrentBlock(
 | 
						|
	smt::SymbolicFunctionVariable const& _block,
 | 
						|
	vector<smt::Expression> const* _arguments
 | 
						|
)
 | 
						|
{
 | 
						|
	m_context.popSolver();
 | 
						|
	solAssert(m_currentContract, "");
 | 
						|
	clearIndices(m_currentContract, m_currentFunction);
 | 
						|
	m_context.pushSolver();
 | 
						|
	if (_arguments)
 | 
						|
		m_currentBlock = predicate(_block, *_arguments);
 | 
						|
	else
 | 
						|
		m_currentBlock = predicate(_block);
 | 
						|
}
 | 
						|
 | 
						|
smt::SortPointer CHC::constructorSort()
 | 
						|
{
 | 
						|
	// TODO this will change once we support function calls.
 | 
						|
	return interfaceSort();
 | 
						|
}
 | 
						|
 | 
						|
smt::SortPointer CHC::interfaceSort()
 | 
						|
{
 | 
						|
	auto boolSort = make_shared<smt::Sort>(smt::Kind::Bool);
 | 
						|
	return make_shared<smt::FunctionSort>(
 | 
						|
		m_stateSorts,
 | 
						|
		boolSort
 | 
						|
	);
 | 
						|
}
 | 
						|
 | 
						|
smt::SortPointer CHC::sort(FunctionDefinition const& _function)
 | 
						|
{
 | 
						|
	auto boolSort = make_shared<smt::Sort>(smt::Kind::Bool);
 | 
						|
	vector<smt::SortPointer> varSorts;
 | 
						|
	for (auto const& var: _function.parameters() + _function.returnParameters())
 | 
						|
	{
 | 
						|
		// SMT solvers do not support function types as arguments.
 | 
						|
		if (var->type()->category() == Type::Category::Function)
 | 
						|
			varSorts.push_back(make_shared<smt::Sort>(smt::Kind::Int));
 | 
						|
		else
 | 
						|
			varSorts.push_back(smt::smtSort(*var->type()));
 | 
						|
	}
 | 
						|
	return make_shared<smt::FunctionSort>(
 | 
						|
		m_stateSorts + varSorts,
 | 
						|
		boolSort
 | 
						|
	);
 | 
						|
}
 | 
						|
 | 
						|
smt::SortPointer CHC::sort(ASTNode const* _node)
 | 
						|
{
 | 
						|
	if (auto funDef = dynamic_cast<FunctionDefinition const*>(_node))
 | 
						|
		return sort(*funDef);
 | 
						|
 | 
						|
	auto fSort = dynamic_pointer_cast<smt::FunctionSort>(sort(*m_currentFunction));
 | 
						|
	solAssert(fSort, "");
 | 
						|
 | 
						|
	auto boolSort = make_shared<smt::Sort>(smt::Kind::Bool);
 | 
						|
	vector<smt::SortPointer> varSorts;
 | 
						|
	for (auto const& var: m_currentFunction->localVariables())
 | 
						|
	{
 | 
						|
		// SMT solvers do not support function types as arguments.
 | 
						|
		if (var->type()->category() == Type::Category::Function)
 | 
						|
			varSorts.push_back(make_shared<smt::Sort>(smt::Kind::Int));
 | 
						|
		else
 | 
						|
			varSorts.push_back(smt::smtSort(*var->type()));
 | 
						|
	}
 | 
						|
	return make_shared<smt::FunctionSort>(
 | 
						|
		fSort->domain + varSorts,
 | 
						|
		boolSort
 | 
						|
	);
 | 
						|
}
 | 
						|
 | 
						|
unique_ptr<smt::SymbolicFunctionVariable> CHC::createSymbolicBlock(smt::SortPointer _sort, string const& _name)
 | 
						|
{
 | 
						|
	auto block = make_unique<smt::SymbolicFunctionVariable>(
 | 
						|
		_sort,
 | 
						|
		_name,
 | 
						|
		m_context
 | 
						|
	);
 | 
						|
	m_interface->registerRelation(block->currentFunctionValue());
 | 
						|
	return block;
 | 
						|
}
 | 
						|
 | 
						|
smt::Expression CHC::interface()
 | 
						|
{
 | 
						|
	vector<smt::Expression> paramExprs;
 | 
						|
	for (auto const& var: m_stateVariables)
 | 
						|
		paramExprs.push_back(m_context.variable(*var)->currentValue());
 | 
						|
	return (*m_interfacePredicate)(paramExprs);
 | 
						|
}
 | 
						|
 | 
						|
smt::Expression CHC::error()
 | 
						|
{
 | 
						|
	return (*m_errorPredicate)({});
 | 
						|
}
 | 
						|
 | 
						|
smt::Expression CHC::error(unsigned _idx)
 | 
						|
{
 | 
						|
	return m_errorPredicate->functionValueAtIndex(_idx)({});
 | 
						|
}
 | 
						|
 | 
						|
unique_ptr<smt::SymbolicFunctionVariable> CHC::createBlock(ASTNode const* _node, string const& _prefix)
 | 
						|
{
 | 
						|
	return createSymbolicBlock(sort(_node),
 | 
						|
		"block_" +
 | 
						|
		uniquePrefix() +
 | 
						|
		"_" +
 | 
						|
		_prefix +
 | 
						|
		predicateName(_node));
 | 
						|
}
 | 
						|
 | 
						|
void CHC::createErrorBlock()
 | 
						|
{
 | 
						|
	solAssert(m_errorPredicate, "");
 | 
						|
	m_errorPredicate->increaseIndex();
 | 
						|
	m_interface->registerRelation(m_errorPredicate->currentFunctionValue());
 | 
						|
}
 | 
						|
 | 
						|
void CHC::connectBlocks(smt::Expression const& _from, smt::Expression const& _to, smt::Expression const& _constraints)
 | 
						|
{
 | 
						|
	smt::Expression edge = smt::Expression::implies(
 | 
						|
		_from && m_context.assertions() && _constraints,
 | 
						|
		_to
 | 
						|
	);
 | 
						|
	addRule(edge, _from.name + "_to_" + _to.name);
 | 
						|
}
 | 
						|
 | 
						|
vector<smt::Expression> CHC::currentStateVariables()
 | 
						|
{
 | 
						|
	solAssert(m_currentContract, "");
 | 
						|
	vector<smt::Expression> exprs;
 | 
						|
	for (auto const& var: m_stateVariables)
 | 
						|
		exprs.push_back(m_context.variable(*var)->currentValue());
 | 
						|
	return exprs;
 | 
						|
}
 | 
						|
 | 
						|
vector<smt::Expression> CHC::currentFunctionVariables()
 | 
						|
{
 | 
						|
	vector<smt::Expression> paramExprs;
 | 
						|
	if (m_currentFunction)
 | 
						|
		for (auto const& var: m_currentFunction->parameters() + m_currentFunction->returnParameters())
 | 
						|
			paramExprs.push_back(m_context.variable(*var)->currentValue());
 | 
						|
	return currentStateVariables() + paramExprs;
 | 
						|
}
 | 
						|
 | 
						|
vector<smt::Expression> CHC::currentBlockVariables()
 | 
						|
{
 | 
						|
	vector<smt::Expression> paramExprs;
 | 
						|
	if (m_currentFunction)
 | 
						|
		for (auto const& var: m_currentFunction->localVariables())
 | 
						|
			paramExprs.push_back(m_context.variable(*var)->currentValue());
 | 
						|
	return currentFunctionVariables() + paramExprs;
 | 
						|
}
 | 
						|
 | 
						|
string CHC::predicateName(ASTNode const* _node)
 | 
						|
{
 | 
						|
	string prefix;
 | 
						|
	if (auto funDef = dynamic_cast<FunctionDefinition const*>(_node))
 | 
						|
	{
 | 
						|
		prefix += TokenTraits::toString(funDef->kind());
 | 
						|
		if (!funDef->name().empty())
 | 
						|
			prefix += "_" + funDef->name() + "_";
 | 
						|
	}
 | 
						|
	return prefix + to_string(_node->id());
 | 
						|
}
 | 
						|
 | 
						|
smt::Expression CHC::predicate(smt::SymbolicFunctionVariable const& _block)
 | 
						|
{
 | 
						|
	return _block(currentBlockVariables());
 | 
						|
}
 | 
						|
 | 
						|
smt::Expression CHC::predicate(
 | 
						|
	smt::SymbolicFunctionVariable const& _block,
 | 
						|
	vector<smt::Expression> const& _arguments
 | 
						|
)
 | 
						|
{
 | 
						|
	return _block(_arguments);
 | 
						|
}
 | 
						|
 | 
						|
void CHC::addRule(smt::Expression const& _rule, string const& _ruleName)
 | 
						|
{
 | 
						|
	m_interface->addRule(_rule, _ruleName);
 | 
						|
}
 | 
						|
 | 
						|
bool CHC::query(smt::Expression const& _query, langutil::SourceLocation const& _location)
 | 
						|
{
 | 
						|
	smt::CheckResult result;
 | 
						|
	vector<string> values;
 | 
						|
	tie(result, values) = m_interface->query(_query);
 | 
						|
	switch (result)
 | 
						|
	{
 | 
						|
	case smt::CheckResult::SATISFIABLE:
 | 
						|
		break;
 | 
						|
	case smt::CheckResult::UNSATISFIABLE:
 | 
						|
		return true;
 | 
						|
	case smt::CheckResult::UNKNOWN:
 | 
						|
		break;
 | 
						|
	case smt::CheckResult::CONFLICTING:
 | 
						|
		m_outerErrorReporter.warning(_location, "At least two SMT solvers provided conflicting answers. Results might not be sound.");
 | 
						|
		break;
 | 
						|
	case smt::CheckResult::ERROR:
 | 
						|
		m_outerErrorReporter.warning(_location, "Error trying to invoke SMT solver.");
 | 
						|
		break;
 | 
						|
	}
 | 
						|
	return false;
 | 
						|
}
 | 
						|
 | 
						|
string CHC::uniquePrefix()
 | 
						|
{
 | 
						|
	return to_string(m_blockCounter++);
 | 
						|
}
 |