ready to restructure for more complecated check:

This commit is contained in:
2024-08-13 10:24:13 +00:00
parent 00501dae02
commit b010326e60
4 changed files with 47 additions and 1 deletions

View File

@ -16,6 +16,7 @@ class ASTNodeVisitorBase {
class ASTNodeBase {
friend Visitor;
friend std::shared_ptr<Program_ASTNode> CheckAndDecorate(std::shared_ptr<Program_ASTNode> src);
protected:
std::shared_ptr<ScopeBase> current_scope;

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@ -32,6 +32,13 @@ class LocalScope : public ScopeBase {
if (!VariableNameAvailable(name, 0)) {
return false;
}
if (std::holds_alternative<IdentifierType>(type) && std::get<IdentifierType>(type) == "void") {
throw SemanticError("Variable cannot be void", 1);
}
if (std::holds_alternative<ArrayType>(type) && std::get<ArrayType>(type).has_base_type &&
std::get<ArrayType>(type).basetype == "void") {
throw SemanticError("Variable cannot be void", 1);
}
local_variables[name] = type;
return true;
}
@ -53,6 +60,7 @@ struct FunctionSchema {
std::vector<std::pair<ExprTypeInfo, std::string>> arguments;
};
class FunctionScope : public ScopeBase {
friend std::shared_ptr<class Program_ASTNode> CheckAndDecorate(std::shared_ptr<class Program_ASTNode> src);
friend class Visitor;
FunctionSchema schema;
bool add_variable([[maybe_unused]] const std::string &name, [[maybe_unused]] const ExprTypeInfo &type) override {
@ -80,6 +88,13 @@ class ClassDefScope : public ScopeBase {
if (!VariableNameAvailable(name, 0)) {
return false;
}
if (std::holds_alternative<IdentifierType>(type) && std::get<IdentifierType>(type) == "void") {
throw SemanticError("Variable cannot be void", 1);
}
if (std::holds_alternative<ArrayType>(type) && std::get<ArrayType>(type).has_base_type &&
std::get<ArrayType>(type).basetype == "void") {
throw SemanticError("Variable cannot be void", 1);
}
member_variables[name] = type;
return true;
}
@ -111,6 +126,7 @@ class ClassDefScope : public ScopeBase {
};
class GlobalScope : public ScopeBase {
friend class Visitor;
friend std::shared_ptr<class Program_ASTNode> CheckAndDecorate(std::shared_ptr<class Program_ASTNode> src);
std::unordered_map<std::string, ExprTypeInfo> global_variables;
std::unordered_map<std::string, std::shared_ptr<FunctionScope>> global_functions;
std::unordered_map<std::string, std::shared_ptr<ClassDefScope>> classes;
@ -146,6 +162,13 @@ class GlobalScope : public ScopeBase {
if (!VariableNameAvailable(name, 0)) {
return false;
}
if (std::holds_alternative<IdentifierType>(type) && std::get<IdentifierType>(type) == "void") {
throw SemanticError("Variable cannot be void", 1);
}
if (std::holds_alternative<ArrayType>(type) && std::get<ArrayType>(type).has_base_type &&
std::get<ArrayType>(type).basetype == "void") {
throw SemanticError("Variable cannot be void", 1);
}
global_variables[name] = type;
return true;
}

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@ -22,7 +22,19 @@ class MXErrorListener : public antlr4::BaseErrorListener {
std::shared_ptr<Program_ASTNode> BuildAST(Visitor *visitor, antlr4::tree::ParseTree *tree) {
return std::any_cast<std::shared_ptr<Program_ASTNode>>(visitor->visit(tree));
}
std::shared_ptr<Program_ASTNode> CheckAndDecorate(std::shared_ptr<Program_ASTNode> src) { return nullptr; }
std::shared_ptr<Program_ASTNode> CheckAndDecorate(std::shared_ptr<Program_ASTNode> src) {
auto global_scope = std::dynamic_pointer_cast<GlobalScope>(src->current_scope);
if (global_scope->global_functions.find("main") == global_scope->global_functions.end()) {
throw SemanticError("No main() function", 1);
} else {
const auto &main_schema = global_scope->global_functions["main"]->schema;
if ((!std::holds_alternative<IdentifierType>(main_schema.return_type)) ||
std::get<IdentifierType>(main_schema.return_type) != "int" || main_schema.arguments.size() != 0) {
throw SemanticError("main() function should be int main()", 1);
}
}
return src;
}
void SemanticCheck(std::istream &fin, std::shared_ptr<Program_ASTNode> &ast_out) {
antlr4::ANTLRInputStream input(fin);

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@ -629,15 +629,25 @@ std::any Visitor::visitNew_array_expression(MXParser::New_array_expressionContex
std::string base_type = context->type()->getText();
new_array->expr_type_info = ArrayType{true, base_type, total_dimensions};
size_t total_dim_count = 0;
bool dim_size_specified = false;
bool dim_with_size_end = false;
new_array->dim_size.resize(total_dimensions);
for (size_t i = 3; i < context->children.size() && total_dim_count < total_dimensions; i++) {
if (dynamic_cast<antlr4::tree::TerminalNode *>(context->children[i]) != nullptr &&
dynamic_cast<antlr4::tree::TerminalNode *>(context->children[i])->getSymbol()->getType() ==
MXParser::RBRACKET) {
total_dim_count++;
if (!dim_size_specified) {
dim_with_size_end = true;
}
dim_size_specified = false;
} else if (dynamic_cast<MXParser::ExprContext *>(context->children[i]) != nullptr) {
new_array->dim_size[total_dim_count] = std::any_cast<std::shared_ptr<Expr_ASTNode>>(visit(context->children[i]));
std::cerr << std::string(nodetype_stk.size() * 2, ' ') << "dim " << total_dim_count << " has size " << std::endl;
dim_size_specified = true;
if (dim_with_size_end) {
throw SemanticError("The shape of multidimensional array must be specified from left to right.", 1);
}
}
}
if (context->constant() != nullptr) {