mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
final changes to typechecker, the expression compiler, and a couple more tests for good measure
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@@ -781,10 +781,12 @@ bool TypeChecker::visit(TupleExpression const& _tuple)
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{
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vector<ASTPointer<Expression>> const& components = _tuple.components();
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TypePointers types;
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TypePointer internalArrayType;
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bool isArray = _tuple.isInlineArray();
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TypePointer inlineArrayType;
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if (_tuple.annotation().lValueRequested)
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{
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if (_tuple.isInlineArray())
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fatalTypeError(_tuple.location(), "Inline array type cannot be declared as LValue.");
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for (auto const& component: components)
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if (component)
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{
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@@ -811,26 +813,34 @@ bool TypeChecker::visit(TupleExpression const& _tuple)
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{
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components[i]->accept(*this);
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types.push_back(type(*components[i]));
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if (i == 0 && isArray)
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internalArrayType = types[i]->mobileType();
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else if (isArray && internalArrayType && types[i]->mobileType())
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internalArrayType = Type::commonType(internalArrayType, types[i]->mobileType());
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if (_tuple.isInlineArray())
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solAssert(!!types[i], "Inline array cannot have empty components");
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if (i == 0 && _tuple.isInlineArray())
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inlineArrayType = types[i]->mobileType();
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else if (_tuple.isInlineArray() && inlineArrayType)
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inlineArrayType = Type::commonType(inlineArrayType, types[i]->mobileType());
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}
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else
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types.push_back(TypePointer());
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}
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if (components.size() == 1 && !isArray)
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_tuple.annotation().type = type(*components[0]);
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else if (!internalArrayType && isArray)
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fatalTypeError(_tuple.location(), "Unable to deduce common type for array elements.");
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else if (isArray)
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_tuple.annotation().type = make_shared<ArrayType>(DataLocation::Memory, internalArrayType, types.size());
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if (_tuple.isInlineArray())
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{
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if (!inlineArrayType)
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fatalTypeError(_tuple.location(), "Unable to deduce common type for array elements.");
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_tuple.annotation().type = make_shared<ArrayType>(DataLocation::Memory, inlineArrayType, types.size());
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}
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else
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{
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if (components.size() == 2 && !components[1])
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types.pop_back();
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_tuple.annotation().type = make_shared<TupleType>(types);
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if (components.size() == 1)
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_tuple.annotation().type = type(*components[0]);
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else
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{
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if (components.size() == 2 && !components[1])
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types.pop_back();
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_tuple.annotation().type = make_shared<TupleType>(types);
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}
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}
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}
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return false;
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}
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@@ -186,7 +186,7 @@ bool ExpressionCompiler::visit(Assignment const& _assignment)
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_assignment.leftHandSide().annotation().type
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);
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utils().convertType(*_assignment.rightHandSide().annotation().type, *type);
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_assignment.leftHandSide().accept(*this);
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solAssert(!!m_currentLValue, "LValue not retrieved.");
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@@ -222,18 +222,17 @@ bool ExpressionCompiler::visit(TupleExpression const& _tuple)
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if (_tuple.isInlineArray())
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{
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ArrayType const& arrayType = dynamic_cast<ArrayType const&>(*_tuple.annotation().type);
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auto components = _tuple.components();
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solAssert(!arrayType.isDynamicallySized(), "Cannot create dynamically sized inline array.");
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m_context << max(u256(32u), arrayType.memorySize());
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utils().allocateMemory();
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m_context << eth::Instruction::DUP1;
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for (unsigned i = 0; i < components.size(); ++i)
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for (auto const& component: _tuple.components())
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{
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components[i]->accept(*this);
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utils().convertType(*components[i]->annotation().type, *arrayType.baseType(), true);
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components[i]->annotation().type = arrayType.baseType(); //force conversion
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utils().storeInMemoryDynamic(*components[i]->annotation().type, true);
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component->accept(*this);
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utils().convertType(*component->annotation().type, *arrayType.baseType(), true);
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utils().storeInMemoryDynamic(*arrayType.baseType(), true);
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}
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m_context << eth::Instruction::POP;
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@@ -1155,7 +1154,7 @@ void ExpressionCompiler::endVisit(Literal const& _literal)
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break; // will be done during conversion
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default:
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BOOST_THROW_EXCEPTION(InternalCompilerError() << errinfo_comment("Only integer, boolean and string literals implemented for now."));
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}
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}
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}
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void ExpressionCompiler::appendAndOrOperatorCode(BinaryOperation const& _binaryOperation)
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