lang_2023/src/print_visitor.cpp

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// for clangd
#include "../include/print_visitor.hpp"
namespace interpreter {
void PrintVisitor::Visit(Node* node) {
out_ << "[Node]\n";
}
// Sources -----------------
void PrintVisitor::Visit(SourceFile* node) {
out_ << "<SourceFile>\n\n";
for (auto& statement : node->statements) {
if (std::holds_alternative<Partition>(statement)) {
Visit(&std::get<Partition>(statement));
} else if (std::holds_alternative<SourceStatement>(statement)) {
Visitor::Visit(std::get<SourceStatement>(statement));
} else {
// error
}
}
out_ << "\n<SourceFile/>";
}
void PrintVisitor::Visit(Sources* node) {
out_ << "<Sources>\n\n";
for (auto& statement : node->statements) {
Visitor::Visit(statement);
}
out_ << "\n</Sources>";
}
// Namespaces, partittions -----------------
void PrintVisitor::Visit(Partition* node) {
out_ << "<Partition> ";
switch (node->type) {
case Partition::Test:
out_ << "TEST";
break;
case Partition::Interface:
out_ << "INTERFACE";
break;
case Partition::Core:
out_ << "CORE";
break;
case Partition::Lib:
out_ << "LIB";
break;
case Partition::Module:
out_ << "MODULE";
break;
case Partition::Exe:
out_ << "EXE";
break;
}
out_ << " {\n";
Visit(node->scope.get());
out_ << "} </Partition>\n";
}
void PrintVisitor::Visit(Namespace* node) {
out_ << "<Namespace> ";
if (std::holds_alternative<std::unique_ptr<DefinedAnnotatedName>>(node->name)) {
Visit(std::get<std::unique_ptr<DefinedAnnotatedName>>(node->name).get());
} else if (std::holds_alternative<std::unique_ptr<DefinedType>>(node->name)) {
Visit(std::get<std::unique_ptr<DefinedType>>(node->name).get());
} else {
// error
}
out_ << "{\n";
Visit(node->scope.get());
out_ << "} </Namespace>\n";
}
// Definitions -----------------
void PrintVisitor::Visit(ImportStatement* node) {
out_ << "<Import> \"" << node->module_name << "\" ";
if (node->symbols.size() > 0) {
out_ << '\n';
}
for (auto& symbol : node->symbols) {
Visitor::Visit(symbol);
out_ << '\n';
}
out_ << "</Import>\n";
}
void PrintVisitor::Visit(UsageDefinition* node) {
out_ << "<Usage> ";
Visit(&node->name);
out_ << " = ";
Visit(node->import_statement.get());
out_ << "</Usage>\n";
}
void PrintVisitor::Visit(AliasDefinition* node) {
out_ << "<Alias> ";
Visit(node->type.get());
out_ << " = ";
Visit(node->value.get());
out_ << "</Alias>\n";
}
void PrintVisitor::Visit(VariableDefinition* node) {
out_ << "<Variable> " << (node->is_const ? "const" : "var") << ' ';
Visit(&node->name);
out_ << " = ";
Visitor::Visit(node->value);
out_ << "</Variable>\n";
}
void PrintVisitor::Visit(FunctionDeclaration* node) {
out_ << "<FunctionDeclaration> ";
Visit(&node->name);
out_ << "\n";
for (auto& parameter : node->parameters) {
Visit(parameter.get());
}
out_ << " : \n";
for (auto& argument_type : node->argument_types) {
Visitor::Visit(argument_type);
}
out_ << "</FunctionDeclaration>\n";
}
void PrintVisitor::Visit(FunctionDefinition* node) {
out_ << "<Function> ";
Visit(node->name.get());
out_ << " = ";
Visitor::Visit(node->value);
out_ << "</Function>\n";
}
void PrintVisitor::Visit(AliasTypeDefinition* node) {
out_ << "<AliasType> ";
Visit(node->name.get());
out_ << " = ";
Visit(node->value.get());
out_ << "</AliasType>\n";
}
void PrintVisitor::Visit(TypeDefinition* node) {
out_ << "<Type> ";
Visit(node->name.get());
out_ << " = ";
Visitor::Visit(node->value);
out_ << "</Type>\n";
}
void PrintVisitor::Visit(TypeclassDefinition* node) {
out_ << "<Typeclass> ";
Visit(node->name.get());
if (node->requirements.size() > 0) {
out_ << " : \n";
}
for (auto& requirement : node->requirements) {
out_ << "& ";
Visit(requirement.get());
}
out_ << "</Typeclass>\n";
}
// Definition parts
void PrintVisitor::Visit(DefinedName* node) {
out_ << "<DefinedName> ";
Visit(&node->name);
if (node->parameters.size() > 0) {
out_ << "\n";
}
for (auto& parameter : node->parameters) {
Visit(parameter.get());
}
if (node->arguments.size() > 0) {
out_ << " : \n";
}
for (auto& argument : node->arguments) {
Visit(argument.get());
}
out_ << "</DefinedName>\n";
}
void PrintVisitor::Visit(DefinedAnnotatedName* node) {
out_ << "<DefinedAnnotatedName> ";
Visit(&node->name);
out_ << " : ";
if (std::holds_alternative<std::unique_ptr<DefinedType>>(node->type)) {
Visit(std::get<std::unique_ptr<DefinedType>>(node->type).get());
} else if (std::holds_alternative<std::unique_ptr<DefinedTypeclass>>(node->type)) {
Visit(std::get<std::unique_ptr<DefinedTypeclass>>(node->type).get());
} else {
// no annotation
}
out_ << " </DefinedAnnotatedName>";
}
void PrintVisitor::Visit(DefinedType* node) {
out_ << "<DefinedType> ";
Visit(node->type.get());
if (node->parameters.size() > 0) {
out_ << "\n";
}
for (auto& parameter : node->parameters) {
Visit(parameter.get());
}
if (node->arguments.size() > 0) {
out_ << " : \n";
}
for (auto& argument : node->arguments) {
Visit(argument.get());
}
out_ << "</DefinedType>\n";
}
void PrintVisitor::Visit(DefinedTypeclass* node) {
out_ << "<DefinedTypeclass> ";
Visit(node->typeclass.get());
if (node->parameters.size() > 0) {
out_ << "\n";
}
for (auto& parameter : node->parameters) {
Visit(parameter.get());
}
if (node->arguments.size() > 0) {
out_ << " : \n";
}
for (auto& argument : node->arguments) {
Visit(argument.get());
}
out_ << "</DefinedTypeclass>\n";
}
void PrintVisitor::Visit(DefinitionParameter* node) {
out_ << "<DefinitionParameter> " << (node->typeclasses.size() > 0 ? "(" : "");
Visit(&node->type);
out_ << ' ';
for (auto& typeclass : node->typeclasses) {
Visit(typeclass.get());
}
out_ << "</DefinitionParamater>\n";
}
void PrintVisitor::Visit(DefinitionArgument* node) {
out_ << "<DefinitionArgument> " << (node->types.size() > 0 ? "(" : "");
Visit(&node->name);
out_ << ' ';
for (auto& type : node->types) {
Visit(type.get());
}
out_ << "</DefinitionArgument>\n";
}
// Flow control -----------------
void PrintVisitor::Visit(Match* node) {
out_ << "<Match> ";
Visitor::Visit(node->value);
out_ << " with\n";
for (auto& match_case : node->matches) {
out_ << "| ";
Visitor::Visit(match_case.value);
if (match_case.condition.has_value()) {
out_ << " ? ";
Visitor::Visit(match_case.condition.value());
}
if (match_case.statement.has_value()) {
out_ << " -> ";
Visitor::Visit(match_case.statement.value());
}
out_ << '\n';
}
out_ << "</Match>\n";
}
void PrintVisitor::Visit(Condition* node) {
out_ << "<If> ";
Visitor::Visit(node->conditions[0]);
out_ << " then\n";
Visitor::Visit(node->statements[0]);
out_ << '\n';
for (size_t i = 1; i < node->conditions.size(); ++i) {
out_ << "elif ";
Visitor::Visit(node->conditions[i]);
out_ << " then\n";
Visitor::Visit(node->statements[i]);
out_ << '\n';
}
if (node->statements.size() > node->conditions.size()) {
out_ << "else ";
Visitor::Visit(node->statements[node->conditions.size()]);
out_ << '\n';
}
out_ << "</If>\n";
}
void PrintVisitor::Visit(DoWhileLoop* node) {
out_ << "<DoWhile>\n";
Visitor::Visit(node->statement);
out_ << "\nwhile\n";
Visitor::Visit(node->condition);
out_ << "\n</DoWhile>\n";
}
void PrintVisitor::Visit(WhileLoop* node) {
out_ << "<While>\n";
Visitor::Visit(node->statement);
out_ << "\ndo\n";
Visitor::Visit(node->condition);
out_ << "\n</While>\n";
}
void PrintVisitor::Visit(ForLoop* node) {
out_ << "<For>\n";
Visitor::Visit(node->variable);
out_ << "\nin\n";
Visitor::Visit(node->interval);
out_ << "\ndo\n";
Visitor::Visit(node->statement);
out_ << "</For>\n";
}
void PrintVisitor::Visit(LoopLoop* node) {
out_ << "<Loop>\n";
Visitor::Visit(node->statement);
out_ << "<\n/Loop>\n";
}
// Statements, expressions, blocks, etc. -----------------
void PrintVisitor::Visit(Block* node) {
out_ << "<Block> {\n";
for (auto& statement : node->statements) {
Visitor::Visit(statement);
}
out_ << "} </Block>\n";
}
void PrintVisitor::Visit(ScopedStatement* node) {
out_ << "<Scoped> ( ";
Visitor::Visit(node->statement);
out_ << " ) </Scoped>";
}
// Operators
void PrintVisitor::Visit(BinaryOperatorExpression* node) {
out_ << "<BinaryOperator> ";
Visitor::Visit(node->left_expression);
out_ << ' ';
Visit(&node->operator_name);
out_ << ' ';
Visitor::Visit(node->right_expression);
out_ << " </BinaryOperator>";
}
void PrintVisitor::Visit(UnaryOperatorExpression* node) {
out_ << "<UnaryOperator> ";
Visit(&node->operator_name);
out_ << ' ';
Visitor::Visit(node->expression);
out_ << " </UnaryOperator>";
}
// Simple Expressions
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void PrintVisitor::Visit(FunctionCallExpression* node) {
out_ << "<FunctionCall> ";
Visit(node->name.get());
out_ << ' ';
for (auto& argument : node->arguments) {
Visitor::Visit(argument);
out_ << ' ';
}
out_ << "</FunctionCall>";
}
void PrintVisitor::Visit(TupleExpression* node) {
out_ << "<TupleExpression> ";
out_ << ' ';
for (auto& expression : node->expressions) {
out_ << "& ";
Visitor::Visit(expression);
}
out_ << " </TupleExpression>";
}
void PrintVisitor::Visit(VariantExpression* node) {
out_ << "<VariantExpression> ";
out_ << ' ';
for (auto& expression : node->expressions) {
out_ << "& ";
Visitor::Visit(expression);
}
out_ << " </VariantExpression>";
}
void PrintVisitor::Visit(ReturnExpression* node) {
out_ << "<Return> ";
Visitor::Visit(node->expression);
out_ << " </Return>";
}
// Lambda
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void PrintVisitor::Visit(LambdaFunction* node) {
out_ << "<LambdaFunction> \\ ";
for (auto& parameter : node->parameters) {
Visit(parameter.get());
}
if (node->parameters.size() > 0) {
out_ << " : ";
}
for (auto& argument : node->arguments) {
Visit(argument.get());
}
out_ << " -> ";
Visitor::Visit(node->expression);
out_ << " </LambdaFunction>";
}
// Name
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void PrintVisitor::Visit(NameSuperExpression* node) {
out_ << "<NameSuperExpression> ";
for (auto& variable_namespace : node->namespaces) {
Visitor::Visit(variable_namespace);
out_ << '.';
}
for (int i = 0; i < node->expressions.size(); ++i) {
Visitor::Visit(node->expressions[i]);
if (i + 1 < node->expressions.size()) {
out_ << '.';
}
}
out_ << "</NameSupperExpression>\n";
}
void PrintVisitor::Visit(NameExpression* node) {
out_ << "<NameExpression> ";
for (auto& variable_namespace : node->namespaces) {
Visitor::Visit(variable_namespace);
out_ << '.';
}
for (int i = 0; i < node->names.size(); ++i) {
Visit(&node->names[i]);
if (i + 1 < node->names.size()) {
out_ << '.';
}
}
out_ << "</NameExpression>\n";
}
void PrintVisitor::Visit(TupleName* node) {
out_ << "<TupleName> ";
for (auto& name : node->names) {
out_ << '&';
Visit(name.get());
}
out_ << "</TupleName>\n";
}
void PrintVisitor::Visit(VariantName* node) {
out_ << "<VariantName> ";
for (auto& name : node->names) {
out_ << '|';
Visit(name.get());
}
out_ << "</VariantName>\n";
}
void PrintVisitor::Visit(AnnotatedName* node) {
out_ << "<AnnotatedName> ";
Visit(&node->name);
out_ << ' ';
Visit(node->type.get());
out_ << " </AnnotatedName>";
}
// Type
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void PrintVisitor::Visit(TypeConstructor* node) {
out_ << "<TypeConstructor> ";
Visit(node->type.get());
out_ << '\n';
for (auto& parameter : node->parameters) {
Visit(&parameter.first);
out_ << " = ";
Visitor::Visit(parameter.second);
out_ << '\n';
}
out_ << "</TypeConstructor>\n";
}
void PrintVisitor::Visit(TupleType* node) {
out_ << "<TupleType> ";
Visit(&node->type); // optional
out_ << ' ';
for (auto& entity : node->entities) {
out_ << "& ";
if (entity.first != "") {
Visit(&entity.first);
out_ << " : ";
}
Visitor::Visit(entity.second);
}
out_ << "</TupleType>";
}
void PrintVisitor::Visit(VariantType* node) {
out_ << "<VariantType> ";
Visit(&node->type); // optional
out_ << ' ';
for (auto& constructor : node->constructors) {
out_ << "| ";
Visit(&constructor.first);
Visit(constructor.second.get());
}
out_ << "</VariantType>";
}
void PrintVisitor::Visit(AnnotatedType* node) {
out_ << "<AnnotatedType> ";
Visit(node->type_expression.get());
if (node->annotations.size() > 0) {
out_ << " :";
}
for (auto& annotation : node->annotations) {
out_ << " ";
Visit(annotation.get());
}
out_ << "</AnnotatedType>";
}
void PrintVisitor::Visit(ParametrizedType* node) {
out_ << "<ParametrizedType> ";
Visit(node->type_expression.get());
for (auto& paramater : node->parameters) {
out_ << ' ';
Visitor::Visit(paramater);
}
out_ << " </ParamtrizedType>";
}
void PrintVisitor::Visit(TypeExpression* node) {
out_ << "<TypeExpression> ";
for (auto& type_namespace : node->namespaces) {
Visitor::Visit(type_namespace);
out_ << '.';
}
Visit(&node->type);
out_ << " </TypeExpression>";
}
// Typeclass
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void PrintVisitor::Visit(AnnotatedTypeclass* node) {
out_ << "<AnnotatedTypeclass> ";
Visit(node->typeclass_expression.get());
if (node->annotations.size() > 0) {
out_ << " :";
}
for (auto& annotation : node->annotations) {
out_ << " ";
Visit(annotation.get());
}
out_ << "</AnnotatedTypeclass>";
}
void PrintVisitor::Visit(ParametrizedTypeclass* node) {
out_ << "<ParametrizedTypeclass> ";
Visit(node->typeclass_expression.get());
for (auto& paramater : node->parameters) {
out_ << ' ';
Visitor::Visit(paramater);
}
out_ << " </ParamtrizedTypeclass>";
}
void PrintVisitor::Visit(TypeclassExpression* node) {
out_ << "<TypeclassExpression> ";
for (auto& typeclass_namespace : node->namespaces) {
Visitor::Visit(typeclass_namespace);
out_ << '.';
}
Visit(&node->typeclass);
out_ << " </TypeclassExpression>";
}
// Identifiers, constants, etc. -----------------
void PrintVisitor::Visit(AnyIdentifier* node) { // std::string
out_ << "<Identifier " << *node << " />";
}
void PrintVisitor::Visit(FloatNumberLiteral* node) {
out_ << "<Identifier " << node->value << " />";
}
void PrintVisitor::Visit(NumberLiteral* node) {
out_ << "<Number " << node->value << " />";
}
void PrintVisitor::Visit(StringLiteral* node) {
out_ << "<String " << node->value << " />";
}
void PrintVisitor::Visit(CharLiteral* node) {
out_ << "<Char " << node->value << " />";
}
} // namespace interpreter