Add l-value checking in typechecker
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d79151380f
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@ -125,7 +125,7 @@ namespace AST {
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}
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}
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return { this->m_ty, false };
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return { this->m_ty, false, false };
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}
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void StringLiteralExpression::typecheck_preprocess(typecheck::Scope&) {}
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@ -139,7 +139,7 @@ namespace AST {
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new types::FundamentalType{ types::FundamentalTypeKind::Char }
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};
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auto ptr_ty = new types::ArrayType{ char_ty, static_cast<uint32_t>(this->m_value.size()) + 1, true };
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return { std::shared_ptr<types::Type>{ptr_ty}, true };
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return { std::shared_ptr<types::Type>{ptr_ty}, true, false };
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}
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void ValueReferenceExpression::typecheck_preprocess(typecheck::Scope&) {}
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@ -150,13 +150,13 @@ namespace AST {
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std::optional<std::shared_ptr<types::Type>>
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) {
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if (scope.symbols.find(this->m_name) != scope.symbols.end()) {
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return { scope.symbols[this->m_name], false };
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return { scope.symbols[this->m_name], false, true };
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}
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state.errors.push_back(CompileError("Value " + this->m_name + " not defined", this->m_meta));
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return { std::shared_ptr<types::Type>{
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new types::FundamentalType{ types::FundamentalTypeKind::Void }
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}, false };
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}, false, true };
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}
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void BinaryOperationExpression::typecheck_preprocess(typecheck::Scope& scope) {
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@ -169,15 +169,23 @@ namespace AST {
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typecheck::Scope& scope,
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std::optional<std::shared_ptr<types::Type>> expected_ty
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) {
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auto lhs_ty = this->m_lhs->typecheck(state, scope, {}).type;
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auto lhs_res = this->m_lhs->typecheck(state, scope, {});
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auto lhs_ty = lhs_res.type;
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auto rhs_ty = this->m_rhs->typecheck(state, scope, {}).type;
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if (this->m_binop == types::BinOp::Assignment) {
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if (!lhs_res.lvalue) {
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state.errors.push_back(CompileError("Value must be a modifiable l-value", this->m_lhs->m_meta));
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}
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else if (lhs_ty->m_kind == types::TypeKind::Array) {
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state.errors.push_back(CompileError("Value must be a modifiable l-value", this->m_lhs->m_meta));
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}
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// Re-typecheck rhs to actually match lhs
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auto rhs_ty = this->m_rhs->typecheck(state, scope, lhs_ty).type;
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auto rhs_ty_res = check_type(state, rhs_ty, lhs_ty);
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this->m_rhs = handle_res(std::move(this->m_rhs), rhs_ty_res, state);
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return { lhs_ty, false };
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return { lhs_ty, false, false };
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}
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// Try to find a binop that matches exactly
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@ -189,7 +197,7 @@ namespace AST {
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);
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if (binop) {
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return { binop->result(*binop, lhs_ty, rhs_ty), false };
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return { binop->result(*binop, lhs_ty, rhs_ty), false, false };
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}
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// If that fails, try to find binop that matches on one side perfectly
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@ -209,7 +217,7 @@ namespace AST {
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// Skip if not implicitly castable to lhs
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continue;
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this->m_rhs = handle_res(std::move(this->m_rhs), rhs_res, state);
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return { binop.result(binop, lhs_ty, rhs_ty), false };
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return { binop.result(binop, lhs_ty, rhs_ty), false, false };
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}
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else if (types::types_equal(binop.rhs, rhs_ty)) {
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auto lhs_res = check_type(state, lhs_ty, binop.lhs);
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@ -217,7 +225,7 @@ namespace AST {
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// Skip if not implicitly castable to rhs
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continue;
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this->m_lhs = handle_res(std::move(this->m_lhs), lhs_res, state);
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return { binop.result(binop, lhs_ty, rhs_ty), false };
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return { binop.result(binop, lhs_ty, rhs_ty), false, false };
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}
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}
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@ -235,7 +243,7 @@ namespace AST {
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auto rhs_result = check_type(state, rhs_ty, binop.rhs);
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this->m_lhs = handle_res(std::move(this->m_lhs), lhs_result, state);
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this->m_rhs = handle_res(std::move(this->m_rhs), lhs_result, state);
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return { binop.result(binop, lhs_ty, rhs_ty), false };
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return { binop.result(binop, lhs_ty, rhs_ty), false, false };
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}
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// No suitable binops found :(
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@ -247,7 +255,7 @@ namespace AST {
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this->m_meta));
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return { std::shared_ptr<types::Type>{
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new types::FundamentalType{ types::FundamentalTypeKind::Void } }, false };
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new types::FundamentalType{ types::FundamentalTypeKind::Void } }, false, false };
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}
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void FunctionCallExpression::typecheck_preprocess(typecheck::Scope& scope) {
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@ -268,7 +276,7 @@ namespace AST {
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state.errors.push_back(CompileError("Tried calling a non-function", this->m_meta));
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return { std::shared_ptr<types::Type> {
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new types::FundamentalType{ types::FundamentalTypeKind::Void }
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}, false };
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}, false, false };
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}
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auto fn_ty = dynamic_cast<types::FunctionType*>(expr_ty.get());
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@ -294,7 +302,7 @@ namespace AST {
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}
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}
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return { fn_ty->m_ret_ty, false };
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return { fn_ty->m_ret_ty, false, false };
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}
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void CastExpression::typecheck_preprocess(typecheck::Scope& scope) {
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@ -310,14 +318,14 @@ namespace AST {
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auto expr_ty = this->m_expr->typecheck(state, scope, {}).type;
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auto cast = types::find_cast(state.casts, expr_ty, this->m_ty);
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if (cast) {
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return { cast->target_ty, false };
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return { cast->target_ty, false, false };
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}
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state.errors.push_back(CompileError("Cast from type "
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+ expr_ty->formatted() + "to type " + this->m_ty->formatted()
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+ " is not permitted", this->m_meta));
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return { std::shared_ptr<types::Type> { new types::FundamentalType{
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types::FundamentalTypeKind::Void
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} }, false };
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} }, false, false };
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}
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void RefExpression::typecheck_preprocess(typecheck::Scope& scope) {
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@ -332,7 +340,7 @@ namespace AST {
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auto expr_ty = this->m_expr->typecheck(state, scope, {}).type;
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return { std::shared_ptr<types::Type> {
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new types::PointerType{ expr_ty }
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}, false };
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}, false, false };
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}
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void DerefExpression::typecheck_preprocess(typecheck::Scope& scope) {
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@ -344,16 +352,16 @@ namespace AST {
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typecheck::Scope& scope,
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std::optional<std::shared_ptr<types::Type>>
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) {
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auto expr_ty = this->m_expr->typecheck(state, scope, {}).type;
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if (expr_ty->m_kind != types::TypeKind::Pointer) {
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auto expr_ty = this->m_expr->typecheck(state, scope, {});
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if (expr_ty.type->m_kind != types::TypeKind::Pointer) {
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state.errors.push_back(
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CompileError("Tried to deref " + expr_ty->formatted(), this->m_meta));
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CompileError("Tried to deref " + expr_ty.type->formatted(), this->m_meta));
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return { std::shared_ptr<types::Type> {
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new types::FundamentalType{ types::FundamentalTypeKind::Void }
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}, false };
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}, false, expr_ty.lvalue };
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}
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auto ptr_ty = dynamic_cast<types::PointerType*>(expr_ty.get());
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return { ptr_ty->m_inner, false };
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auto ptr_ty = dynamic_cast<types::PointerType*>(expr_ty.type.get());
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return { ptr_ty->m_inner, false, expr_ty.lvalue };
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}
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void IndexAccessExpression::typecheck_preprocess(typecheck::Scope& scope) {
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@ -365,27 +373,27 @@ namespace AST {
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typecheck::Scope& scope,
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std::optional<std::shared_ptr<types::Type>>
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) {
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auto expr_ty = this->m_expr->typecheck(state, scope, {}).type;
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if (expr_ty->m_kind != types::TypeKind::Pointer && expr_ty->m_kind != types::TypeKind::Array) {
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auto expr_ty = this->m_expr->typecheck(state, scope, {});
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if (expr_ty.type->m_kind != types::TypeKind::Pointer && expr_ty.type->m_kind != types::TypeKind::Array) {
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state.errors.push_back(
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CompileError("Tried to index " + expr_ty->formatted(), this->m_meta));
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CompileError("Tried to index " + expr_ty.type->formatted(), this->m_meta));
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return { std::shared_ptr<types::Type> {
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new types::FundamentalType{ types::FundamentalTypeKind::Void }
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}, false };
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}, false, expr_ty.lvalue };
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}
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if (expr_ty->m_kind == types::TypeKind::Pointer) {
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auto ptr_ty = dynamic_cast<types::PointerType*>(expr_ty.get());
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return { ptr_ty->m_inner, false };
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if (expr_ty.type->m_kind == types::TypeKind::Pointer) {
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auto ptr_ty = dynamic_cast<types::PointerType*>(expr_ty.type.get());
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return { ptr_ty->m_inner, false, expr_ty.lvalue };
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}
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else if (expr_ty->m_kind == types::TypeKind::Array) {
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auto ptr_ty = dynamic_cast<types::ArrayType*>(expr_ty.get());
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return { ptr_ty->m_inner, false };
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else if (expr_ty.type->m_kind == types::TypeKind::Array) {
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auto ptr_ty = dynamic_cast<types::ArrayType*>(expr_ty.type.get());
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return { ptr_ty->m_inner, false, expr_ty.lvalue };
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}
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// Default return type
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return { std::shared_ptr<types::Type> {
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new types::FundamentalType{ types::FundamentalTypeKind::Void }
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}, false };
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}, false, expr_ty.lvalue };
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}
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void FieldAccessExpression::typecheck_preprocess(typecheck::Scope& scope) {
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@ -397,32 +405,32 @@ namespace AST {
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typecheck::Scope& scope,
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std::optional<std::shared_ptr<types::Type>>
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) {
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auto expr_ty = this->m_expr->typecheck(state, scope, {}).type;
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if (expr_ty->m_kind != types::TypeKind::Struct) {
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auto expr_ty = this->m_expr->typecheck(state, scope, {});
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if (expr_ty.type->m_kind != types::TypeKind::Struct) {
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state.errors.push_back(
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CompileError("Tried to access " + expr_ty->formatted() + "." + this->m_field, this->m_meta));
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CompileError("Tried to access " + expr_ty.type->formatted() + "." + this->m_field, this->m_meta));
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return { std::shared_ptr<types::Type> {
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new types::FundamentalType{ types::FundamentalTypeKind::Void }
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}, false };
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}, false, expr_ty.lvalue };
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}
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auto struct_ty = dynamic_cast<types::StructType*>(expr_ty.get());
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auto struct_ty = dynamic_cast<types::StructType*>(expr_ty.type.get());
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if (struct_ty->m_fields) {
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for (auto& field : *struct_ty->m_fields) {
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if (field.first == this->m_field) {
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return { field.second, false };
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return { field.second, false, expr_ty.lvalue };
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}
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}
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state.errors.push_back(CompileError("No such field", this->m_meta));
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return { std::shared_ptr<types::Type> {
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new types::FundamentalType{ types::FundamentalTypeKind::Void }
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}, false };
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}, false, expr_ty.lvalue };
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}
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state.errors.push_back(CompileError("Cannot access fields of opaque struct", this->m_meta));
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return { std::shared_ptr<types::Type> {
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new types::FundamentalType{ types::FundamentalTypeKind::Void }
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}, false };
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}, false, expr_ty.lvalue };
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}
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void ListInitializerExpression::typecheck_preprocess(typecheck::Scope& scope) {
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@ -462,7 +470,7 @@ namespace AST {
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state.errors.push_back(CompileError(
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"Too many initializer values for " + struct_ty->formatted(),
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this->m_meta));
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return { *expected_ty, true };
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return { *expected_ty, true, false };
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}
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for (int i = 0; i < static_cast<int>(this->m_expressions.size()); i++) {
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@ -473,18 +481,18 @@ namespace AST {
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}
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this->m_ty = *expected_ty;
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return { this->m_ty, true };
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return { this->m_ty, true, false };
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}
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else {
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if (this->m_expressions.size() > 0) {
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state.errors.push_back(CompileError(
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"Too many initializer values for " + struct_ty->formatted(),
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this->m_meta));
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return { *expected_ty, true };
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return { *expected_ty, true, false };
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}
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else {
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this->m_ty = *expected_ty;
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return { this->m_ty, true };
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return { this->m_ty, true, false };
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}
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}
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@ -492,10 +500,10 @@ namespace AST {
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else {
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return { std::shared_ptr<types::Type> {
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new types::FundamentalType{ types::FundamentalTypeKind::Void }
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}, true };
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}, true, false };
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}
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return { this->m_ty, true };
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return { this->m_ty, true, false };
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}
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// No expected ty, try to infer array type from elements
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@ -508,7 +516,7 @@ namespace AST {
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true
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}
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};
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return { this->m_ty, true };
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return { this->m_ty, true, false };
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}
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else {
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auto first_expr_ty = this->m_expressions[0]->typecheck(state, scope, {}).type;
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@ -524,7 +532,7 @@ namespace AST {
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true
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}
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};
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return { this->m_ty, true };
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return { this->m_ty, true, false };
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}
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}
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@ -24,6 +24,7 @@ namespace typecheck {
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struct ExpressionType {
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std::shared_ptr<types::Type> type;
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bool array_initializer;
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bool lvalue;
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};
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}
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