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https://github.com/Ed94/Odin.git
synced 2026-08-06 15:48:51 +00:00
Allow intrinsics.concatenate to be variadic
This commit is contained in:
+47
-40
@@ -4887,56 +4887,32 @@ gb_internal bool check_builtin_procedure(CheckerContext *c, Operand *operand, As
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case BuiltinProc_concatenate: {
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case BuiltinProc_concatenate: {
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Operand lhs = {};
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Operand lhs = {};
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Operand rhs = {};
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check_expr(c, &lhs, ce->args[0]);
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check_expr(c, &lhs, ce->args[0]);
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if (lhs.mode == Addressing_Invalid) {
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if (lhs.mode == Addressing_Invalid) {
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return false;
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return false;
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}
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}
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check_expr(c, &rhs, ce->args[1]);
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if (rhs.mode == Addressing_Invalid) {
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return false;
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}
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if (lhs.mode != Addressing_Constant) {
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if (lhs.mode != Addressing_Constant) {
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error(lhs.expr, "'%*.s' expects a constant array or slice", LIT(builtin_name));
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error(lhs.expr, "'%.*s' expects a constant array or slice", LIT(builtin_name));
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return false;
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}
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if (rhs.mode != Addressing_Constant) {
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error(rhs.expr, "'%*.s' expects a constant array or slice", LIT(builtin_name));
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return false;
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}
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if (!are_types_identical(lhs.type, rhs.type)) {
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gbString a = type_to_string(lhs.type);
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gbString b = type_to_string(rhs.type);
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error(rhs.expr, "'%*.s' expects a two constant values of the same type, got '%s' vs '%s'", LIT(builtin_name), a, b);
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gb_string_free(b);
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gb_string_free(a);
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return false;
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return false;
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}
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}
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operand->type = lhs.type;
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operand->mode = Addressing_Value;
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if (!is_type_slice(lhs.type) && !is_type_array(lhs.type)) {
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if (!is_type_slice(lhs.type) && !is_type_array(lhs.type)) {
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gbString a = type_to_string(lhs.type);
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gbString a = type_to_string(lhs.type);
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error(lhs.expr, "'%*.s' expects a constant array or slice, got %s", LIT(builtin_name), a);
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error(lhs.expr, "'%.*s' expects a constant array or slice, got %s", LIT(builtin_name), a);
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gb_string_free(a);
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gb_string_free(a);
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return false;
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return false;
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}
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}
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if (lhs.value.kind != ExactValue_Compound) {
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if (lhs.value.kind != ExactValue_Compound) {
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gbString a = exact_value_to_string(lhs.value);
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gbString a = exact_value_to_string(lhs.value);
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error(lhs.expr, "Expected a compound literal value for '%.*s', got '%s'", LIT(builtin_name), a);
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error(lhs.expr, "Expected a compound literal value for '%.*s', got '%s'", LIT(builtin_name), a);
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gb_string_free(a);
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gb_string_free(a);
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return false;
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return false;
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}
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}
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if (rhs.value.kind != ExactValue_Compound) {
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gbString a = exact_value_to_string(rhs.value);
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error(rhs.expr, "Expected a compound literal value for '%.*s', got '%s'", LIT(builtin_name), a);
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gb_string_free(a);
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return false;
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}
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ast_node(lhs_cl, CompoundLit, lhs.value.value_compound);
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ast_node(lhs_cl, CompoundLit, lhs.value.value_compound);
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ast_node(rhs_cl, CompoundLit, rhs.value.value_compound);
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for (Ast *elem : lhs_cl->elems) {
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for (Ast *elem : lhs_cl->elems) {
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if (elem->kind == Ast_FieldValue) {
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if (elem->kind == Ast_FieldValue) {
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@@ -4944,26 +4920,57 @@ gb_internal bool check_builtin_procedure(CheckerContext *c, Operand *operand, As
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return false;
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return false;
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}
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}
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}
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}
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for (Ast *elem : rhs_cl->elems) {
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if (elem->kind == Ast_FieldValue) {
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error(elem, "'%.*s' does not allow the use of 'field = value' to be concatenated together", LIT(builtin_name));
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return false;
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}
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}
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Ast *type_ast = lhs_cl->type;
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Ast *type_ast = lhs_cl->type;
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if (type_ast == nullptr) {
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type_ast = rhs_cl->type;
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}
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Array<Ast *> new_elems = {};
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Array<Ast *> new_elems = {};
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array_init(&new_elems, heap_allocator());
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array_init(&new_elems, heap_allocator());
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array_add_elems(&new_elems, lhs_cl->elems.data, lhs_cl->elems.count);
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array_add_elems(&new_elems, lhs_cl->elems.data, lhs_cl->elems.count);
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array_add_elems(&new_elems, rhs_cl->elems.data, rhs_cl->elems.count);
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Ast *new_compound_lit = ast_compound_lit(lhs.expr->file(), type_ast, new_elems, ast_token(lhs.expr), ast_end_token(rhs.expr));
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for (isize i = 1; i < ce->args.count; i++) {
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Operand extra = {};
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check_expr(c, &extra, ce->args[i]);
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if (extra.mode == Addressing_Invalid) {
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return false;
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}
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if (extra.mode != Addressing_Constant) {
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error(extra.expr, "'%.*s' expects a constant array or slice", LIT(builtin_name));
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return false;
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}
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if (!are_types_identical(lhs.type, extra.type)) {
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gbString a = type_to_string(lhs.type);
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gbString b = type_to_string(extra.type);
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error(extra.expr, "'%.*s' expects constant values of the same type, got '%s' vs '%s'", LIT(builtin_name), a, b);
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gb_string_free(b);
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gb_string_free(a);
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return false;
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}
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if (extra.value.kind != ExactValue_Compound) {
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gbString a = exact_value_to_string(extra.value);
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error(extra.expr, "Expected a compound literal value for '%.*s', got '%s'", LIT(builtin_name), a);
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gb_string_free(a);
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return false;
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}
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ast_node(extra_cl, CompoundLit, extra.value.value_compound);
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for (Ast *elem : extra_cl->elems) {
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if (elem->kind == Ast_FieldValue) {
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error(elem, "'%.*s' does not allow the use of 'field = value' to be concatenated together", LIT(builtin_name));
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return false;
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}
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}
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if (type_ast == nullptr) {
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type_ast = extra_cl->type;
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}
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array_add_elems(&new_elems, extra_cl->elems.data, extra_cl->elems.count);
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}
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Ast *new_compound_lit = ast_compound_lit(lhs.expr->file(), type_ast, new_elems, ast_token(lhs.expr), ast_end_token(ce->args[ce->args.count-1]));
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operand->mode = Addressing_Constant;
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operand->mode = Addressing_Constant;
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operand->value = exact_value_compound(new_compound_lit);
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operand->value = exact_value_compound(new_compound_lit);
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@@ -429,7 +429,7 @@ gb_global BuiltinProc builtin_procs[BuiltinProc_COUNT] = {
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{STR_LIT("soa_struct"), 2, false, Expr_Expr, BuiltinProcPkg_intrinsics}, // Type
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{STR_LIT("soa_struct"), 2, false, Expr_Expr, BuiltinProcPkg_intrinsics}, // Type
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{STR_LIT("concatenate"), 2, false, Expr_Expr, BuiltinProcPkg_intrinsics},
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{STR_LIT("concatenate"), 2, true, Expr_Expr, BuiltinProcPkg_intrinsics},
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{STR_LIT("alloca"), 2, false, Expr_Expr, BuiltinProcPkg_intrinsics},
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{STR_LIT("alloca"), 2, false, Expr_Expr, BuiltinProcPkg_intrinsics},
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{STR_LIT("cpu_relax"), 0, false, Expr_Stmt, BuiltinProcPkg_intrinsics},
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{STR_LIT("cpu_relax"), 0, false, Expr_Stmt, BuiltinProcPkg_intrinsics},
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