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https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
Adjust code to review findings
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@ -61,6 +61,8 @@ bool ControlFlowBuilder::visit(BinaryOperation const& _operation)
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switch (_operation.getOperator())
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{
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case Token::Conditional:
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return true;
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case Token::Or:
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case Token::And:
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{
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@ -71,7 +73,6 @@ bool ControlFlowBuilder::visit(BinaryOperation const& _operation)
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auto nodes = splitFlow<2>();
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nodes[0] = createFlow(nodes[0], _operation.rightExpression());
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mergeFlow(nodes, nodes[1]);
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return false;
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}
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default:
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@ -79,15 +80,17 @@ bool ControlFlowBuilder::visit(BinaryOperation const& _operation)
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if (_operation.annotation().userDefinedFunction)
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{
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visitNode(_operation);
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_operation.leftExpression().accept(*this);
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_operation.rightExpression().accept(*this);
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solAssert(!m_currentNode->resolveFunctionCall(nullptr));
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m_currentNode->functionCall = _operation.annotation().userDefinedFunction;
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auto nextNode = newLabel();
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connect(m_currentNode, nextNode);
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m_currentNode = nextNode;
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}
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return true;
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return false;
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}
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}
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}
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@ -3931,7 +3931,8 @@ void TypeChecker::endVisit(UsingForDirective const& _usingFor)
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"."
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);
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else if (
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!TokenTraits::isBinaryOp(*operator_) && TokenTraits::isUnaryOp(*operator_) &&
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!TokenTraits::isBinaryOp(*operator_) &&
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TokenTraits::isUnaryOp(*operator_) &&
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functionType->parameterTypesIncludingSelf().size() != 1
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)
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m_errorReporter.typeError(
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@ -413,30 +413,27 @@ bool ExpressionCompiler::visit(UnaryOperation const& _unaryOperation)
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if (FunctionDefinition const* function = _unaryOperation.annotation().userDefinedFunction)
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{
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solAssert(function->isFree(), "Only free functions can be bound to a user type operator.");
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FunctionType const* functionType = dynamic_cast<FunctionType const*>(
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function->libraryFunction() ? function->typeViaContractName() : function->type());
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solAssert(functionType);
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functionType = dynamic_cast<FunctionType const&>(*functionType).asBoundFunction();
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solAssert(functionType);
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evmasm::AssemblyItem returnLabel = m_context.pushNewTag();
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_unaryOperation.subExpression().accept(*this);
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acceptAndConvert(_unaryOperation.subExpression(), *functionType->selfType());
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m_context << m_context.functionEntryLabel(*function).pushTag();
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unsigned parameterSize =
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CompilerUtils::sizeOnStack(functionType->parameterTypes()) +
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functionType->selfType()->sizeOnStack();
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if (m_context.runtimeContext())
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// We have a runtime context, so we need the creation part.
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utils().rightShiftNumberOnStack(32);
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else
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// Extract the runtime part.
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m_context << ((u256(1) << 32) - 1) << Instruction::AND;
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m_context.appendJump(evmasm::AssemblyItem::JumpType::IntoFunction);
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m_context << returnLabel;
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solAssert(
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functionType->parameterTypes().size() == 0,
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"Functions with parameters other than self parameter cannot be bound to a user type unary operator."
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);
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unsigned parameterSize = functionType->selfType()->sizeOnStack();
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unsigned returnParametersSize = CompilerUtils::sizeOnStack(functionType->returnParameterTypes());
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// callee adds return parameters, but removes arguments and return label
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@ -445,8 +442,6 @@ bool ExpressionCompiler::visit(UnaryOperation const& _unaryOperation)
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return false;
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}
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Type const& type = *_unaryOperation.annotation().type;
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if (type.category() == Type::Category::RationalNumber)
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{
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@ -541,6 +536,7 @@ bool ExpressionCompiler::visit(BinaryOperation const& _binaryOperation)
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Expression const& rightExpression = _binaryOperation.rightExpression();
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if (FunctionDefinition const* function =_binaryOperation.annotation().userDefinedFunction)
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{
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solAssert(function->isFree(), "Only free function can be bound to a user type operator.");
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FunctionType const* functionType = dynamic_cast<FunctionType const*>(
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function->libraryFunction() ? function->typeViaContractName() : function->type()
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);
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@ -548,26 +544,22 @@ bool ExpressionCompiler::visit(BinaryOperation const& _binaryOperation)
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functionType = dynamic_cast<FunctionType const&>(*functionType).asBoundFunction();
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solAssert(functionType);
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solAssert(
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functionType->parameterTypes().size() == 1,
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"Only functions with one parameter other than self parameter can be bound to a user type binary operator."
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);
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evmasm::AssemblyItem returnLabel = m_context.pushNewTag();
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acceptAndConvert(leftExpression, *functionType->selfType());
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acceptAndConvert(rightExpression, *functionType->parameterTypes().at(0));
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m_context << m_context.functionEntryLabel(*function).pushTag();
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m_context.appendJump(evmasm::AssemblyItem::JumpType::IntoFunction);
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m_context << returnLabel;
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unsigned parameterSize =
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CompilerUtils::sizeOnStack(functionType->parameterTypes()) +
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functionType->selfType()->sizeOnStack();
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if (m_context.runtimeContext())
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// We have a runtime context, so we need the creation part.
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utils().rightShiftNumberOnStack(32);
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else
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// Extract the runtime part.
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m_context << ((u256(1) << 32) - 1) << Instruction::AND;
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m_context.appendJump(evmasm::AssemblyItem::JumpType::IntoFunction);
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m_context << returnLabel;
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unsigned returnParametersSize = CompilerUtils::sizeOnStack(functionType->returnParameterTypes());
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// callee adds return parameters, but removes arguments and return label
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m_context.adjustStackOffset(static_cast<int>(returnParametersSize - parameterSize) - 1);
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@ -689,11 +689,23 @@ bool IRGeneratorForStatements::visit(UnaryOperation const& _unaryOperation)
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solAssert(functionType);
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functionType = dynamic_cast<FunctionType const&>(*functionType).asBoundFunction();
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solAssert(functionType);
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solAssert(
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functionType->parameterTypes().size() == 0,
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"Functions with parameters other than self parameter cannot be bound to a user type unary operator."
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);
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string parameter = expressionAsType(_unaryOperation.subExpression(), *functionType->selfType());
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solAssert(!parameter.empty());
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solAssert(function->isImplemented(), "");
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solAssert(
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function->returnParameters().size() == 1,
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"A function bound to the user type operator is supposed to return exactly one value."
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);
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solAssert(*_unaryOperation.annotation().type == *function->returnParameters().at(0)->type(),
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"A return type of the bound function is supposed to be same as a operator type."
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);
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define(_unaryOperation) <<
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m_context.enqueueFunctionForCodeGeneration(*function) <<
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("(" + parameter + ")\n");
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@ -821,6 +833,10 @@ bool IRGeneratorForStatements::visit(BinaryOperation const& _binOp)
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solAssert(functionType);
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functionType = dynamic_cast<FunctionType const&>(*functionType).asBoundFunction();
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solAssert(functionType);
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solAssert(
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functionType->parameterTypes().size() == 1,
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"Only functions with one parameter other than self parameter can be bound to a user type binary operator."
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);
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string left = expressionAsType(_binOp.leftExpression(), *functionType->selfType());
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string right = expressionAsType(_binOp.rightExpression(), *functionType->parameterTypes().at(0));
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@ -828,6 +844,14 @@ bool IRGeneratorForStatements::visit(BinaryOperation const& _binOp)
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solAssert(function->isImplemented(), "");
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solAssert(
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function->returnParameters().size() == 1,
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"A function bound to the user type operator is supposed to return exactly one value."
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);
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solAssert(*_binOp.annotation().type == *function->returnParameters().at(0)->type(),
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"A return type of the bound function is supposed to be same as a operator type."
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);
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define(_binOp) <<
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m_context.enqueueFunctionForCodeGeneration(*function) <<
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("(" + left + ", " + right + ")\n");
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@ -8,3 +8,5 @@ contract C {
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}
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// ---
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// ----
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// TypeError 3464: (137-138): This variable is of storage pointer type and can be accessed without prior assignment, which would lead to undefined behaviour.
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// TypeError 3464: (141-142): This variable is of storage pointer type and can be accessed without prior assignment, which would lead to undefined behaviour.
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