mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
519e1c9402
Fix references into solidity::util
437 lines
12 KiB
C++
437 lines
12 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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// SPDX-License-Identifier: GPL-3.0
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#include <libsolidity/analysis/PostTypeChecker.h>
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#include <libsolidity/ast/AST.h>
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#include <libsolidity/interface/Version.h>
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#include <liblangutil/ErrorReporter.h>
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#include <liblangutil/SemVerHandler.h>
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#include <libsolutil/Algorithms.h>
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#include <libsolutil/FunctionSelector.h>
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#include <memory>
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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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bool PostTypeChecker::check(ASTNode const& _astRoot)
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{
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_astRoot.accept(*this);
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return !Error::containsErrors(m_errorReporter.errors());
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}
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bool PostTypeChecker::finalize()
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{
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for (auto& checker: m_checkers)
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checker->finalize();
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return !Error::containsErrors(m_errorReporter.errors());
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}
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bool PostTypeChecker::visit(ContractDefinition const& _contractDefinition)
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{
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return callVisit(_contractDefinition);
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}
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void PostTypeChecker::endVisit(ContractDefinition const& _contractDefinition)
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{
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callEndVisit(_contractDefinition);
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}
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void PostTypeChecker::endVisit(OverrideSpecifier const& _overrideSpecifier)
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{
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callEndVisit(_overrideSpecifier);
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}
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bool PostTypeChecker::visit(VariableDeclaration const& _variable)
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{
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return callVisit(_variable);
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}
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void PostTypeChecker::endVisit(VariableDeclaration const& _variable)
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{
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callEndVisit(_variable);
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}
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void PostTypeChecker::endVisit(ErrorDefinition const& _error)
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{
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callEndVisit(_error);
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}
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bool PostTypeChecker::visit(EmitStatement const& _emit)
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{
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return callVisit(_emit);
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}
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void PostTypeChecker::endVisit(EmitStatement const& _emit)
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{
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callEndVisit(_emit);
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}
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bool PostTypeChecker::visit(RevertStatement const& _revert)
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{
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return callVisit(_revert);
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}
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void PostTypeChecker::endVisit(RevertStatement const& _revert)
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{
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callEndVisit(_revert);
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}
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bool PostTypeChecker::visit(FunctionCall const& _functionCall)
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{
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return callVisit(_functionCall);
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}
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bool PostTypeChecker::visit(Identifier const& _identifier)
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{
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return callVisit(_identifier);
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}
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bool PostTypeChecker::visit(MemberAccess const& _memberAccess)
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{
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return callVisit(_memberAccess);
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}
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bool PostTypeChecker::visit(StructDefinition const& _struct)
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{
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return callVisit(_struct);
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}
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void PostTypeChecker::endVisit(StructDefinition const& _struct)
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{
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callEndVisit(_struct);
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}
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bool PostTypeChecker::visit(ModifierInvocation const& _modifierInvocation)
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{
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return callVisit(_modifierInvocation);
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}
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void PostTypeChecker::endVisit(ModifierInvocation const& _modifierInvocation)
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{
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callEndVisit(_modifierInvocation);
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}
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namespace
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{
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struct ConstStateVarCircularReferenceChecker: public PostTypeChecker::Checker
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{
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ConstStateVarCircularReferenceChecker(ErrorReporter& _errorReporter):
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Checker(_errorReporter) {}
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void finalize() override
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{
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solAssert(!m_currentConstVariable, "");
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for (auto declaration: m_constVariables)
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if (auto identifier = findCycle(*declaration))
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m_errorReporter.typeError(
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6161_error,
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declaration->location(),
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"The value of the constant " + declaration->name() +
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" has a cyclic dependency via " + identifier->name() + "."
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);
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}
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bool visit(ContractDefinition const&) override
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{
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solAssert(!m_currentConstVariable, "");
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return true;
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}
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bool visit(VariableDeclaration const& _variable) override
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{
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if (_variable.isConstant())
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{
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solAssert(!m_currentConstVariable, "");
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m_currentConstVariable = &_variable;
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m_constVariables.push_back(&_variable);
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}
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return true;
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}
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void endVisit(VariableDeclaration const& _variable) override
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{
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if (_variable.isConstant())
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{
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solAssert(m_currentConstVariable == &_variable, "");
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m_currentConstVariable = nullptr;
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}
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}
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bool visit(Identifier const& _identifier) override
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{
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if (m_currentConstVariable)
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if (auto var = dynamic_cast<VariableDeclaration const*>(_identifier.annotation().referencedDeclaration))
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if (var->isConstant())
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m_constVariableDependencies[m_currentConstVariable].insert(var);
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return true;
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}
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bool visit(MemberAccess const& _memberAccess) override
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{
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if (m_currentConstVariable)
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if (auto var = dynamic_cast<VariableDeclaration const*>(_memberAccess.annotation().referencedDeclaration))
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if (var->isConstant())
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m_constVariableDependencies[m_currentConstVariable].insert(var);
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return true;
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}
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VariableDeclaration const* findCycle(VariableDeclaration const& _startingFrom)
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{
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auto visitor = [&](VariableDeclaration const& _variable, util::CycleDetector<VariableDeclaration>& _cycleDetector, size_t _depth)
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{
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if (_depth >= 256)
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m_errorReporter.fatalDeclarationError(7380_error, _variable.location(), "Variable definition exhausting cyclic dependency validator.");
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// Iterating through the dependencies needs to be deterministic and thus cannot
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// depend on the memory layout.
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// Because of that, we sort by AST node id.
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vector<VariableDeclaration const*> dependencies(
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m_constVariableDependencies[&_variable].begin(),
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m_constVariableDependencies[&_variable].end()
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);
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sort(dependencies.begin(), dependencies.end(), [](VariableDeclaration const* _a, VariableDeclaration const* _b) -> bool
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{
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return _a->id() < _b->id();
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});
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for (auto v: dependencies)
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if (_cycleDetector.run(*v))
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return;
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};
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return util::CycleDetector<VariableDeclaration>(visitor).run(_startingFrom);
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}
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private:
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VariableDeclaration const* m_currentConstVariable = nullptr;
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std::map<VariableDeclaration const*, std::set<VariableDeclaration const*>> m_constVariableDependencies;
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std::vector<VariableDeclaration const*> m_constVariables; ///< Required for determinism.
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};
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struct OverrideSpecifierChecker: public PostTypeChecker::Checker
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{
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OverrideSpecifierChecker(ErrorReporter& _errorReporter):
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Checker(_errorReporter) {}
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void endVisit(OverrideSpecifier const& _overrideSpecifier) override
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{
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for (ASTPointer<IdentifierPath> const& override: _overrideSpecifier.overrides())
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{
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Declaration const* decl = override->annotation().referencedDeclaration;
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solAssert(decl, "Expected declaration to be resolved.");
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if (dynamic_cast<ContractDefinition const*>(decl))
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continue;
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auto const* typeType = dynamic_cast<TypeType const*>(decl->type());
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m_errorReporter.typeError(
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9301_error,
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override->location(),
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"Expected contract but got " +
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(typeType ? typeType->actualType() : decl->type())->toString(true) +
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"."
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);
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}
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}
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};
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struct ModifierContextChecker: public PostTypeChecker::Checker
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{
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ModifierContextChecker(ErrorReporter& _errorReporter):
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Checker(_errorReporter) {}
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bool visit(ModifierInvocation const&) override
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{
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m_insideModifierInvocation = true;
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return true;
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}
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void endVisit(ModifierInvocation const&) override
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{
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m_insideModifierInvocation = false;
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}
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bool visit(Identifier const& _identifier) override
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{
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if (m_insideModifierInvocation)
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return true;
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if (ModifierType const* type = dynamic_cast<decltype(type)>(_identifier.annotation().type))
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{
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m_errorReporter.typeError(
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3112_error,
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_identifier.location(),
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"Modifier can only be referenced in function headers."
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);
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}
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return false;
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}
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private:
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/// Flag indicating whether we are currently inside the invocation of a modifier
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bool m_insideModifierInvocation = false;
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};
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struct EventOutsideEmitErrorOutsideRevertChecker: public PostTypeChecker::Checker
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{
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EventOutsideEmitErrorOutsideRevertChecker(ErrorReporter& _errorReporter):
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Checker(_errorReporter) {}
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bool visit(EmitStatement const& _emitStatement) override
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{
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m_currentStatement = &_emitStatement;
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return true;
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}
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void endVisit(EmitStatement const&) override
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{
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m_currentStatement = nullptr;
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}
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bool visit(RevertStatement const& _revertStatement) override
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{
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m_currentStatement = &_revertStatement;
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return true;
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}
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void endVisit(RevertStatement const&) override
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{
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m_currentStatement = nullptr;
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}
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bool visit(FunctionCall const& _functionCall) override
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{
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if (*_functionCall.annotation().kind == FunctionCallKind::FunctionCall)
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if (auto const* functionType = dynamic_cast<FunctionType const*>(_functionCall.expression().annotation().type))
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{
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// Check for event outside of emit statement
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if (!dynamic_cast<EmitStatement const*>(m_currentStatement) && functionType->kind() == FunctionType::Kind::Event)
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m_errorReporter.typeError(
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3132_error,
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_functionCall.location(),
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"Event invocations have to be prefixed by \"emit\"."
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);
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else if (!dynamic_cast<RevertStatement const*>(m_currentStatement) && functionType->kind() == FunctionType::Kind::Error)
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m_errorReporter.typeError(
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7757_error,
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_functionCall.location(),
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"Errors can only be used with revert statements: \"revert MyError();\"."
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);
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}
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m_currentStatement = nullptr;
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return true;
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}
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private:
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Statement const* m_currentStatement = nullptr;
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};
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struct NoVariablesInInterfaceChecker: public PostTypeChecker::Checker
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{
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NoVariablesInInterfaceChecker(ErrorReporter& _errorReporter):
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Checker(_errorReporter)
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{}
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bool visit(VariableDeclaration const& _variable) override
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{
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// Forbid any variable declarations inside interfaces unless they are part of
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// * a function's input/output parameters,
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// * or inside of a struct definition.
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if (
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m_scope && m_scope->isInterface()
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&& !_variable.isCallableOrCatchParameter()
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&& !m_insideStruct
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)
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m_errorReporter.typeError(8274_error, _variable.location(), "Variables cannot be declared in interfaces.");
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return true;
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}
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bool visit(ContractDefinition const& _contract) override
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{
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m_scope = &_contract;
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return true;
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}
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void endVisit(ContractDefinition const&) override
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{
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m_scope = nullptr;
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}
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bool visit(StructDefinition const&) override
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{
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solAssert(m_insideStruct >= 0, "");
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m_insideStruct++;
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return true;
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}
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void endVisit(StructDefinition const&) override
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{
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m_insideStruct--;
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solAssert(m_insideStruct >= 0, "");
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}
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private:
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ContractDefinition const* m_scope = nullptr;
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/// Flag indicating whether we are currently inside a StructDefinition.
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int m_insideStruct = 0;
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};
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struct ReservedErrorSelector: public PostTypeChecker::Checker
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{
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ReservedErrorSelector(ErrorReporter& _errorReporter):
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Checker(_errorReporter)
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{}
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void endVisit(ErrorDefinition const& _error) override
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{
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if (_error.name() == "Error" || _error.name() == "Panic")
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m_errorReporter.syntaxError(
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1855_error,
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_error.location(),
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"The built-in errors \"Error\" and \"Panic\" cannot be re-defined."
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);
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else
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{
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uint32_t selector = util::selectorFromSignature32(_error.functionType(true)->externalSignature());
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if (selector == 0 || ~selector == 0)
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m_errorReporter.syntaxError(
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2855_error,
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_error.location(),
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"The selector 0x" + util::toHex(toCompactBigEndian(selector, 4)) + " is reserved. Please rename the error to avoid the collision."
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);
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}
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}
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};
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}
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PostTypeChecker::PostTypeChecker(langutil::ErrorReporter& _errorReporter): m_errorReporter(_errorReporter)
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{
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m_checkers.push_back(make_shared<ConstStateVarCircularReferenceChecker>(_errorReporter));
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m_checkers.push_back(make_shared<OverrideSpecifierChecker>(_errorReporter));
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m_checkers.push_back(make_shared<ModifierContextChecker>(_errorReporter));
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m_checkers.push_back(make_shared<EventOutsideEmitErrorOutsideRevertChecker>(_errorReporter));
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m_checkers.push_back(make_shared<NoVariablesInInterfaceChecker>(_errorReporter));
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m_checkers.push_back(make_shared<ReservedErrorSelector>(_errorReporter));
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}
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