mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
449 lines
14 KiB
C++
449 lines
14 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/ViewPureChecker.h>
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#include <libsolidity/ast/ExperimentalFeatures.h>
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#include <libyul/AST.h>
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#include <libyul/backends/evm/EVMDialect.h>
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#include <liblangutil/ErrorReporter.h>
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#include <libevmasm/SemanticInformation.h>
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#include <functional>
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#include <utility>
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#include <variant>
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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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namespace
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{
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class AssemblyViewPureChecker
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{
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public:
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explicit AssemblyViewPureChecker(
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yul::Dialect const& _dialect,
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std::function<void(StateMutability, SourceLocation const&)> _reportMutability
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):
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m_dialect(_dialect),
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m_reportMutability(std::move(_reportMutability)) {}
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void operator()(yul::Literal const&) {}
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void operator()(yul::Identifier const&) {}
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void operator()(yul::ExpressionStatement const& _expr)
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{
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std::visit(*this, _expr.expression);
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}
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void operator()(yul::Assignment const& _assignment)
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{
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std::visit(*this, *_assignment.value);
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}
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void operator()(yul::VariableDeclaration const& _varDecl)
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{
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if (_varDecl.value)
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std::visit(*this, *_varDecl.value);
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}
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void operator()(yul::FunctionDefinition const& _funDef)
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{
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(*this)(_funDef.body);
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}
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void operator()(yul::FunctionCall const& _funCall)
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{
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if (yul::EVMDialect const* dialect = dynamic_cast<decltype(dialect)>(&m_dialect))
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if (yul::BuiltinFunctionForEVM const* fun = dialect->builtin(_funCall.functionName.name))
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if (fun->instruction)
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checkInstruction(nativeLocationOf(_funCall), *fun->instruction);
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for (auto const& arg: _funCall.arguments)
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std::visit(*this, arg);
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}
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void operator()(yul::If const& _if)
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{
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std::visit(*this, *_if.condition);
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(*this)(_if.body);
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}
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void operator()(yul::Switch const& _switch)
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{
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std::visit(*this, *_switch.expression);
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for (auto const& _case: _switch.cases)
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{
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if (_case.value)
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(*this)(*_case.value);
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(*this)(_case.body);
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}
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}
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void operator()(yul::ForLoop const& _for)
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{
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(*this)(_for.pre);
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std::visit(*this, *_for.condition);
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(*this)(_for.body);
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(*this)(_for.post);
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}
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void operator()(yul::Break const&)
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{
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}
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void operator()(yul::Continue const&)
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{
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}
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void operator()(yul::Leave const&)
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{
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}
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void operator()(yul::Block const& _block)
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{
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for (auto const& s: _block.statements)
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std::visit(*this, s);
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}
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private:
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void checkInstruction(SourceLocation _location, evmasm::Instruction _instruction)
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{
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if (evmasm::SemanticInformation::invalidInViewFunctions(_instruction))
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m_reportMutability(StateMutability::NonPayable, _location);
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else if (evmasm::SemanticInformation::invalidInPureFunctions(_instruction))
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m_reportMutability(StateMutability::View, _location);
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}
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yul::Dialect const& m_dialect;
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std::function<void(StateMutability, SourceLocation const&)> m_reportMutability;
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};
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}
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bool ViewPureChecker::check()
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{
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for (auto const& source: m_ast)
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source->accept(*this);
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return !m_errors;
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}
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bool ViewPureChecker::visit(FunctionDefinition const& _funDef)
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{
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solAssert(!m_currentFunction, "");
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m_currentFunction = &_funDef;
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m_bestMutabilityAndLocation = {StateMutability::Pure, _funDef.location()};
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return true;
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}
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void ViewPureChecker::endVisit(FunctionDefinition const& _funDef)
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{
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solAssert(m_currentFunction == &_funDef, "");
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if (
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m_bestMutabilityAndLocation.mutability < _funDef.stateMutability() &&
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_funDef.stateMutability() != StateMutability::Payable &&
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_funDef.isImplemented() &&
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!_funDef.body().statements().empty() &&
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!_funDef.isConstructor() &&
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!_funDef.isFallback() &&
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!_funDef.isReceive() &&
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!_funDef.virtualSemantics()
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)
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m_errorReporter.warning(
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2018_error,
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_funDef.location(),
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"Function state mutability can be restricted to " + stateMutabilityToString(m_bestMutabilityAndLocation.mutability)
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);
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m_currentFunction = nullptr;
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}
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bool ViewPureChecker::visit(ModifierDefinition const& _modifier)
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{
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solAssert(m_currentFunction == nullptr, "");
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m_bestMutabilityAndLocation = {StateMutability::Pure, _modifier.location()};
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return true;
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}
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void ViewPureChecker::endVisit(ModifierDefinition const& _modifierDef)
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{
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solAssert(m_currentFunction == nullptr, "");
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m_inferredMutability[&_modifierDef] = std::move(m_bestMutabilityAndLocation);
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}
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void ViewPureChecker::endVisit(Identifier const& _identifier)
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{
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Declaration const* declaration = _identifier.annotation().referencedDeclaration;
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solAssert(declaration, "");
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StateMutability mutability = StateMutability::Pure;
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bool writes = _identifier.annotation().willBeWrittenTo;
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if (VariableDeclaration const* varDecl = dynamic_cast<VariableDeclaration const*>(declaration))
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{
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if (varDecl->immutable())
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{
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// Immutables that are assigned literals are pure.
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if (!(varDecl->value() && varDecl->value()->annotation().type->category() == Type::Category::RationalNumber))
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mutability = StateMutability::View;
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}
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else if (varDecl->isStateVariable() && !varDecl->isConstant())
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mutability = writes ? StateMutability::NonPayable : StateMutability::View;
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}
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else if (MagicVariableDeclaration const* magicVar = dynamic_cast<MagicVariableDeclaration const*>(declaration))
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{
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switch (magicVar->type()->category())
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{
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case Type::Category::Contract:
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solAssert(_identifier.name() == "this", "");
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if (dynamic_cast<ContractType const*>(magicVar->type()))
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// reads the address
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mutability = StateMutability::View;
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break;
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case Type::Category::Integer:
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solAssert(_identifier.name() == "now", "");
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mutability = StateMutability::View;
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break;
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default:
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break;
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}
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}
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reportMutability(mutability, _identifier.location());
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}
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void ViewPureChecker::endVisit(InlineAssembly const& _inlineAssembly)
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{
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AssemblyViewPureChecker{
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_inlineAssembly.dialect(),
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[&](StateMutability _mutability, SourceLocation const& _location) { reportMutability(_mutability, _location); }
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}(_inlineAssembly.operations());
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}
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void ViewPureChecker::reportMutability(
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StateMutability _mutability,
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SourceLocation const& _location,
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std::optional<SourceLocation> const& _nestedLocation
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)
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{
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if (_mutability > m_bestMutabilityAndLocation.mutability)
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m_bestMutabilityAndLocation = MutabilityAndLocation{_mutability, _location};
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if (!m_currentFunction || _mutability <= m_currentFunction->stateMutability())
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return;
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// Check for payable here, because any occurrence of `msg.value`
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// will set mutability to payable.
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if (_mutability == StateMutability::View || (
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_mutability == StateMutability::Payable &&
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m_currentFunction->stateMutability() == StateMutability::Pure
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))
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{
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m_errorReporter.typeError(
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2527_error,
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_location,
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"Function declared as pure, but this expression (potentially) reads from the "
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"environment or state and thus requires \"view\"."
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);
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m_errors = true;
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}
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else if (_mutability == StateMutability::NonPayable)
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{
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m_errorReporter.typeError(
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8961_error,
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_location,
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"Function declared as " +
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stateMutabilityToString(m_currentFunction->stateMutability()) +
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", but this expression (potentially) modifies the state and thus "
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"requires non-payable (the default) or payable."
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);
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m_errors = true;
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}
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else if (_mutability == StateMutability::Payable)
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{
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// We do not warn for library functions because they cannot be payable anyway.
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// Also internal functions should be allowed to use `msg.value`.
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if ((m_currentFunction->isConstructor() || m_currentFunction->isPublic()) && !m_currentFunction->libraryFunction())
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{
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if (_nestedLocation)
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m_errorReporter.typeError(
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4006_error,
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_location,
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SecondarySourceLocation().append("\"msg.value\" or \"callvalue()\" appear here inside the modifier.", *_nestedLocation),
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m_currentFunction->isConstructor() ?
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"This modifier uses \"msg.value\" or \"callvalue()\" and thus the constructor has to be payable."
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: "This modifier uses \"msg.value\" or \"callvalue()\" and thus the function has to be payable or internal."
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);
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else
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m_errorReporter.typeError(
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5887_error,
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_location,
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m_currentFunction->isConstructor() ?
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"\"msg.value\" and \"callvalue()\" can only be used in payable constructors. Make the constructor \"payable\" to avoid this error."
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: "\"msg.value\" and \"callvalue()\" can only be used in payable public functions. Make the function \"payable\" or use an internal function to avoid this error."
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);
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m_errors = true;
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}
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}
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else
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solAssert(false, "");
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solAssert(
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m_currentFunction->stateMutability() == StateMutability::View ||
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m_currentFunction->stateMutability() == StateMutability::Pure ||
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m_currentFunction->stateMutability() == StateMutability::NonPayable,
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""
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);
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}
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ViewPureChecker::MutabilityAndLocation const& ViewPureChecker::modifierMutability(
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ModifierDefinition const& _modifier
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)
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{
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if (!m_inferredMutability.count(&_modifier))
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{
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MutabilityAndLocation bestMutabilityAndLocation{};
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FunctionDefinition const* currentFunction = nullptr;
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swap(bestMutabilityAndLocation, m_bestMutabilityAndLocation);
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swap(currentFunction, m_currentFunction);
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_modifier.accept(*this);
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swap(bestMutabilityAndLocation, m_bestMutabilityAndLocation);
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swap(currentFunction, m_currentFunction);
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}
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return m_inferredMutability.at(&_modifier);
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}
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void ViewPureChecker::endVisit(FunctionCall const& _functionCall)
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{
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if (*_functionCall.annotation().kind != FunctionCallKind::FunctionCall)
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return;
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StateMutability mutability = dynamic_cast<FunctionType const&>(*_functionCall.expression().annotation().type).stateMutability();
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// We only require "nonpayable" to call a payble function.
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if (mutability == StateMutability::Payable)
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mutability = StateMutability::NonPayable;
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reportMutability(mutability, _functionCall.location());
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}
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bool ViewPureChecker::visit(MemberAccess const& _memberAccess)
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{
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// Catch the special case of `this.f.selector` which is a pure expression.
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ASTString const& member = _memberAccess.memberName();
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if (
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_memberAccess.expression().annotation().type->category() == Type::Category::Function &&
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member == "selector"
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)
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if (auto const* expr = dynamic_cast<MemberAccess const*>(&_memberAccess.expression()))
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if (auto const* exprInt = dynamic_cast<Identifier const*>(&expr->expression()))
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if (exprInt->name() == "this")
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// Do not continue visiting.
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return false;
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return true;
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}
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void ViewPureChecker::endVisit(MemberAccess const& _memberAccess)
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{
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StateMutability mutability = StateMutability::Pure;
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bool writes = _memberAccess.annotation().willBeWrittenTo;
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ASTString const& member = _memberAccess.memberName();
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switch (_memberAccess.expression().annotation().type->category())
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{
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case Type::Category::Address:
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if (member == "balance" || member == "code" || member == "codehash")
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mutability = StateMutability::View;
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break;
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case Type::Category::Magic:
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{
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using MagicMember = pair<MagicType::Kind, string>;
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set<MagicMember> static const pureMembers{
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{MagicType::Kind::ABI, "decode"},
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{MagicType::Kind::ABI, "encode"},
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{MagicType::Kind::ABI, "encodePacked"},
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{MagicType::Kind::ABI, "encodeWithSelector"},
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{MagicType::Kind::ABI, "encodeCall"},
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{MagicType::Kind::ABI, "encodeWithSignature"},
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{MagicType::Kind::Message, "data"},
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{MagicType::Kind::Message, "sig"},
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{MagicType::Kind::MetaType, "creationCode"},
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{MagicType::Kind::MetaType, "runtimeCode"},
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{MagicType::Kind::MetaType, "name"},
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{MagicType::Kind::MetaType, "interfaceId"},
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{MagicType::Kind::MetaType, "min"},
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{MagicType::Kind::MetaType, "max"},
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};
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set<MagicMember> static const payableMembers{
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{MagicType::Kind::Message, "value"}
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};
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auto const& type = dynamic_cast<MagicType const&>(*_memberAccess.expression().annotation().type);
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MagicMember magicMember(type.kind(), member);
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if (!pureMembers.count(magicMember))
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mutability = StateMutability::View;
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if (payableMembers.count(magicMember))
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mutability = StateMutability::Payable;
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break;
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}
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case Type::Category::Struct:
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{
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if (_memberAccess.expression().annotation().type->dataStoredIn(DataLocation::Storage))
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mutability = writes ? StateMutability::NonPayable : StateMutability::View;
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break;
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}
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case Type::Category::Array:
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{
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auto const& type = dynamic_cast<ArrayType const&>(*_memberAccess.expression().annotation().type);
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if (member == "length" && type.isDynamicallySized() && type.dataStoredIn(DataLocation::Storage))
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mutability = StateMutability::View;
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break;
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}
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default:
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{
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if (VariableDeclaration const* varDecl = dynamic_cast<VariableDeclaration const*>(
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_memberAccess.annotation().referencedDeclaration
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))
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if (varDecl->isStateVariable() && !varDecl->isConstant())
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mutability = writes ? StateMutability::NonPayable : StateMutability::View;
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break;
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}
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}
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reportMutability(mutability, _memberAccess.location());
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}
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void ViewPureChecker::endVisit(IndexAccess const& _indexAccess)
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{
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if (!_indexAccess.indexExpression())
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solAssert(_indexAccess.annotation().type->category() == Type::Category::TypeType, "");
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else
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{
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bool writes = _indexAccess.annotation().willBeWrittenTo;
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if (_indexAccess.baseExpression().annotation().type->dataStoredIn(DataLocation::Storage))
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reportMutability(writes ? StateMutability::NonPayable : StateMutability::View, _indexAccess.location());
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}
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}
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void ViewPureChecker::endVisit(IndexRangeAccess const& _indexRangeAccess)
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{
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bool writes = _indexRangeAccess.annotation().willBeWrittenTo;
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if (_indexRangeAccess.baseExpression().annotation().type->dataStoredIn(DataLocation::Storage))
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reportMutability(writes ? StateMutability::NonPayable : StateMutability::View, _indexRangeAccess.location());
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}
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void ViewPureChecker::endVisit(ModifierInvocation const& _modifier)
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{
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if (ModifierDefinition const* mod = dynamic_cast<decltype(mod)>(_modifier.name().annotation().referencedDeclaration))
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{
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MutabilityAndLocation const& mutAndLocation = modifierMutability(*mod);
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reportMutability(mutAndLocation.mutability, _modifier.location(), mutAndLocation.location);
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}
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else
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solAssert(dynamic_cast<ContractDefinition const*>(_modifier.name().annotation().referencedDeclaration), "");
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}
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