mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
223 lines
5.9 KiB
C++
223 lines
5.9 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/EncodingContext.h>
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#include <libsolidity/formal/SymbolicTypes.h>
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using namespace std;
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using namespace dev;
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using namespace dev::solidity::smt;
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EncodingContext::EncodingContext(SolverInterface& _solver):
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m_solver(_solver),
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m_thisAddress(make_unique<SymbolicAddressVariable>("this", m_solver))
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{
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auto sort = make_shared<ArraySort>(
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make_shared<Sort>(Kind::Int),
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make_shared<Sort>(Kind::Int)
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);
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m_balances = make_unique<SymbolicVariable>(sort, "balances", m_solver);
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}
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void EncodingContext::reset()
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{
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resetAllVariables();
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m_expressions.clear();
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m_globalContext.clear();
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m_thisAddress->increaseIndex();
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m_balances->increaseIndex();
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}
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/// Variables.
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shared_ptr<SymbolicVariable> EncodingContext::variable(solidity::VariableDeclaration const& _varDecl)
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{
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solAssert(knownVariable(_varDecl), "");
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return m_variables[&_varDecl];
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}
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bool EncodingContext::createVariable(solidity::VariableDeclaration const& _varDecl)
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{
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solAssert(!knownVariable(_varDecl), "");
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auto const& type = _varDecl.type();
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auto result = newSymbolicVariable(*type, _varDecl.name() + "_" + to_string(_varDecl.id()), m_solver);
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m_variables.emplace(&_varDecl, result.second);
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return result.first;
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}
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bool EncodingContext::knownVariable(solidity::VariableDeclaration const& _varDecl)
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{
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return m_variables.count(&_varDecl);
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}
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void EncodingContext::resetVariable(solidity::VariableDeclaration const& _variable)
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{
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newValue(_variable);
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setUnknownValue(_variable);
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}
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void EncodingContext::resetVariables(set<solidity::VariableDeclaration const*> const& _variables)
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{
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for (auto const* decl: _variables)
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resetVariable(*decl);
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}
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void EncodingContext::resetVariables(function<bool(solidity::VariableDeclaration const&)> const& _filter)
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{
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for_each(begin(m_variables), end(m_variables), [&](auto _variable)
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{
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if (_filter(*_variable.first))
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this->resetVariable(*_variable.first);
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});
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}
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void EncodingContext::resetAllVariables()
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{
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resetVariables([&](solidity::VariableDeclaration const&) { return true; });
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}
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Expression EncodingContext::newValue(solidity::VariableDeclaration const& _decl)
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{
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solAssert(knownVariable(_decl), "");
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return m_variables.at(&_decl)->increaseIndex();
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}
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void EncodingContext::setZeroValue(solidity::VariableDeclaration const& _decl)
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{
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solAssert(knownVariable(_decl), "");
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setZeroValue(*m_variables.at(&_decl));
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}
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void EncodingContext::setZeroValue(SymbolicVariable& _variable)
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{
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setSymbolicZeroValue(_variable, m_solver);
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}
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void EncodingContext::setUnknownValue(solidity::VariableDeclaration const& _decl)
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{
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solAssert(knownVariable(_decl), "");
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setUnknownValue(*m_variables.at(&_decl));
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}
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void EncodingContext::setUnknownValue(SymbolicVariable& _variable)
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{
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setSymbolicUnknownValue(_variable, m_solver);
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}
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/// Expressions
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shared_ptr<SymbolicVariable> EncodingContext::expression(solidity::Expression const& _e)
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{
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if (!knownExpression(_e))
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createExpression(_e);
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return m_expressions.at(&_e);
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}
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bool EncodingContext::createExpression(solidity::Expression const& _e, shared_ptr<SymbolicVariable> _symbVar)
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{
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solAssert(_e.annotation().type, "");
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if (knownExpression(_e))
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{
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expression(_e)->increaseIndex();
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return false;
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}
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else if (_symbVar)
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{
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m_expressions.emplace(&_e, _symbVar);
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return false;
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}
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else
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{
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auto result = newSymbolicVariable(*_e.annotation().type, "expr_" + to_string(_e.id()), m_solver);
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m_expressions.emplace(&_e, result.second);
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return result.first;
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}
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}
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bool EncodingContext::knownExpression(solidity::Expression const& _e) const
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{
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return m_expressions.count(&_e);
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}
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/// Global variables and functions.
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shared_ptr<SymbolicVariable> EncodingContext::globalSymbol(string const& _name)
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{
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solAssert(knownGlobalSymbol(_name), "");
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return m_globalContext.at(_name);
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}
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bool EncodingContext::createGlobalSymbol(string const& _name, solidity::Expression const& _expr)
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{
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solAssert(!knownGlobalSymbol(_name), "");
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auto result = newSymbolicVariable(*_expr.annotation().type, _name, m_solver);
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m_globalContext.emplace(_name, result.second);
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setUnknownValue(*result.second);
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return result.first;
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}
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bool EncodingContext::knownGlobalSymbol(string const& _var) const
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{
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return m_globalContext.count(_var);
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}
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// Blockchain
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Expression EncodingContext::thisAddress()
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{
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return m_thisAddress->currentValue();
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}
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Expression EncodingContext::balance()
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{
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return balance(m_thisAddress->currentValue());
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}
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Expression EncodingContext::balance(Expression _address)
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{
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return Expression::select(m_balances->currentValue(), move(_address));
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}
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void EncodingContext::transfer(Expression _from, Expression _to, Expression _value)
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{
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unsigned indexBefore = m_balances->index();
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addBalance(_from, 0 - _value);
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addBalance(_to, move(_value));
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unsigned indexAfter = m_balances->index();
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solAssert(indexAfter > indexBefore, "");
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m_balances->increaseIndex();
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/// Do not apply the transfer operation if _from == _to.
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auto newBalances = Expression::ite(
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move(_from) == move(_to),
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m_balances->valueAtIndex(indexBefore),
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m_balances->valueAtIndex(indexAfter)
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);
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m_solver.addAssertion(m_balances->currentValue() == newBalances);
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}
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void EncodingContext::addBalance(Expression _address, Expression _value)
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{
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auto newBalances = Expression::store(
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m_balances->currentValue(),
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_address,
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balance(_address) + move(_value)
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);
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m_balances->increaseIndex();
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m_solver.addAssertion(newBalances == m_balances->currentValue());
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}
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