Added Slice as it's own type info in userland
parent
670c9f9b74
commit
9b29c872ce
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@ -5931,8 +5931,8 @@ size_t type_id_len() {
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return array_length(all_type_ids);
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}
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size_t type_id_index(TypeTableEntryId id) {
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switch (id) {
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size_t type_id_index(TypeTableEntry *entry) {
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switch (entry->id) {
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case TypeTableEntryIdInvalid:
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zig_unreachable();
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case TypeTableEntryIdMetaType:
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@ -5952,6 +5952,8 @@ size_t type_id_index(TypeTableEntryId id) {
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case TypeTableEntryIdArray:
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return 7;
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case TypeTableEntryIdStruct:
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if (entry->data.structure.is_slice)
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return 25;
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return 8;
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case TypeTableEntryIdNumLitFloat:
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return 9;
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@ -174,7 +174,7 @@ void update_compile_var(CodeGen *g, Buf *name, ConstExprValue *value);
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const char *type_id_name(TypeTableEntryId id);
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TypeTableEntryId type_id_at_index(size_t index);
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size_t type_id_len();
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size_t type_id_index(TypeTableEntryId id);
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size_t type_id_index(TypeTableEntry *entry);
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TypeTableEntry *get_generic_fn_type(CodeGen *g, FnTypeId *fn_type_id);
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bool type_is_copyable(CodeGen *g, TypeTableEntry *type_entry);
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LinkLib *create_link_lib(Buf *name);
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@ -6345,6 +6345,7 @@ static void define_builtin_compile_vars(CodeGen *g) {
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const TypeTableEntryId id = type_id_at_index(i);
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buf_appendf(contents, " %s,\n", type_id_name(id));
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}
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buf_appendf(contents, " Slice,\n");
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buf_appendf(contents, "};\n\n");
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}
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{
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@ -6357,6 +6358,7 @@ static void define_builtin_compile_vars(CodeGen *g) {
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" Int: Int,\n"
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" Float: Float,\n"
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" Pointer: Pointer,\n"
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" Slice: Slice,\n"
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" Array: Array,\n"
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" Struct: Struct,\n"
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" FloatLiteral: void,\n"
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@ -6392,6 +6394,8 @@ static void define_builtin_compile_vars(CodeGen *g) {
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" child: type,\n"
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" };\n"
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"\n"
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" pub const Slice = Pointer;\n"
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"\n"
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" pub const Array = struct {\n"
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" len: usize,\n"
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" child: type,\n"
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80
src/ir.cpp
80
src/ir.cpp
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@ -15785,11 +15785,10 @@ static TypeTableEntry *ir_type_info_get_type(IrAnalyze *ira, const char *type_na
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Buf field_name = BUF_INIT;
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buf_init_from_str(&field_name, type_name);
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auto entry = type_info_scope->decl_table.maybe_get(&field_name);
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auto entry = type_info_scope->decl_table.get(&field_name);
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buf_deinit(&field_name);
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assert(entry != nullptr);
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TldVar *tld = (TldVar *)entry->value;
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TldVar *tld = (TldVar *)entry;
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assert(tld->base.id == TldIdVar);
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VariableTableEntry *var = tld->var;
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@ -16071,6 +16070,38 @@ static ConstExprValue *ir_make_type_info_value(IrAnalyze *ira, TypeTableEntry *t
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enum_field_val->data.x_struct.fields = inner_fields;
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};
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const auto create_ptr_like_type_info = [ira](const char *name, TypeTableEntry *ptr_type_entry) {
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ConstExprValue *result = create_const_vals(1);
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result->special = ConstValSpecialStatic;
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result->type = ir_type_info_get_type(ira, name);
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ConstExprValue *fields = create_const_vals(4);
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result->data.x_struct.fields = fields;
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// is_const: bool
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ensure_field_index(result->type, "is_const", 0);
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fields[0].special = ConstValSpecialStatic;
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fields[0].type = ira->codegen->builtin_types.entry_bool;
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fields[0].data.x_bool = ptr_type_entry->data.pointer.is_const;
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// is_volatile: bool
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ensure_field_index(result->type, "is_volatile", 1);
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fields[1].special = ConstValSpecialStatic;
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fields[1].type = ira->codegen->builtin_types.entry_bool;
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fields[1].data.x_bool = ptr_type_entry->data.pointer.is_volatile;
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// alignment: u32
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ensure_field_index(result->type, "alignment", 2);
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fields[2].special = ConstValSpecialStatic;
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fields[2].type = ira->codegen->builtin_types.entry_u32;
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bigint_init_unsigned(&fields[2].data.x_bigint, ptr_type_entry->data.pointer.alignment);
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// child: type
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ensure_field_index(result->type, "child", 3);
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fields[3].special = ConstValSpecialStatic;
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fields[3].type = ira->codegen->builtin_types.entry_type;
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fields[3].data.x_type = ptr_type_entry->data.pointer.child_type;
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return result;
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};
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ConstExprValue *result = nullptr;
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switch (type_entry->id)
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{
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@ -16139,34 +16170,7 @@ static ConstExprValue *ir_make_type_info_value(IrAnalyze *ira, TypeTableEntry *t
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}
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case TypeTableEntryIdPointer:
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{
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result = create_const_vals(1);
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result->special = ConstValSpecialStatic;
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result->type = ir_type_info_get_type(ira, "Pointer");
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ConstExprValue *fields = create_const_vals(4);
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result->data.x_struct.fields = fields;
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// is_const: bool
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ensure_field_index(result->type, "is_const", 0);
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fields[0].special = ConstValSpecialStatic;
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fields[0].type = ira->codegen->builtin_types.entry_bool;
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fields[0].data.x_bool = type_entry->data.pointer.is_const;
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// is_volatile: bool
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ensure_field_index(result->type, "is_volatile", 1);
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fields[1].special = ConstValSpecialStatic;
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fields[1].type = ira->codegen->builtin_types.entry_bool;
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fields[1].data.x_bool = type_entry->data.pointer.is_volatile;
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// alignment: u32
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ensure_field_index(result->type, "alignment", 2);
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fields[2].special = ConstValSpecialStatic;
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fields[2].type = ira->codegen->builtin_types.entry_u32;
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bigint_init_unsigned(&fields[2].data.x_bigint, type_entry->data.pointer.alignment);
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// child: type
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ensure_field_index(result->type, "child", 3);
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fields[3].special = ConstValSpecialStatic;
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fields[3].type = ira->codegen->builtin_types.entry_type;
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fields[3].data.x_type = type_entry->data.pointer.child_type;
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result = create_ptr_like_type_info("Pointer", type_entry);
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break;
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}
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case TypeTableEntryIdArray:
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@ -16436,6 +16440,16 @@ static ConstExprValue *ir_make_type_info_value(IrAnalyze *ira, TypeTableEntry *t
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}
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case TypeTableEntryIdStruct:
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{
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if (type_entry->data.structure.is_slice) {
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Buf ptr_field_name = BUF_INIT;
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buf_init_from_str(&ptr_field_name, "ptr");
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TypeTableEntry *ptr_type = type_entry->data.structure.fields_by_name.get(&ptr_field_name)->type_entry;
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ensure_complete_type(ira->codegen, ptr_type);
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result = create_ptr_like_type_info("Slice", ptr_type);
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break;
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}
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result = create_const_vals(1);
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result->special = ConstValSpecialStatic;
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result->type = ir_type_info_get_type(ira, "Struct");
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@ -16622,7 +16636,7 @@ static TypeTableEntry *ir_analyze_instruction_type_info(IrAnalyze *ira,
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ConstExprValue *out_val = ir_build_const_from(ira, &instruction->base);
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out_val->type = result_type;
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bigint_init_unsigned(&out_val->data.x_union.tag, type_id_index(type_entry->id));
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bigint_init_unsigned(&out_val->data.x_union.tag, type_id_index(type_entry));
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ConstExprValue *payload = ir_make_type_info_value(ira, type_entry);
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out_val->data.x_union.payload = payload;
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@ -16650,7 +16664,7 @@ static TypeTableEntry *ir_analyze_instruction_type_id(IrAnalyze *ira,
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TypeTableEntry *result_type = var_value->data.x_type;
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ConstExprValue *out_val = ir_build_const_from(ira, &instruction->base);
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bigint_init_unsigned(&out_val->data.x_enum_tag, type_id_index(type_entry->id));
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bigint_init_unsigned(&out_val->data.x_enum_tag, type_id_index(type_entry));
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return result_type;
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}
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@ -25,7 +25,7 @@ test "type info: integer, floating point type info" {
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}
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}
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test "type info: pointer, array and nullable type info" {
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test "type info: pointer type info" {
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comptime {
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const u32_ptr_info = @typeInfo(&u32);
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assert(TypeId(u32_ptr_info) == TypeId.Pointer);
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@ -33,12 +33,31 @@ test "type info: pointer, array and nullable type info" {
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assert(u32_ptr_info.Pointer.is_volatile == false);
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assert(u32_ptr_info.Pointer.alignment == 4);
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assert(u32_ptr_info.Pointer.child == u32);
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}
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}
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test "type info: slice type info" {
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comptime {
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const u32_slice_info = @typeInfo([]u32);
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assert(TypeId(u32_slice_info) == TypeId.Slice);
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assert(u32_slice_info.Slice.is_const == false);
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assert(u32_slice_info.Slice.is_volatile == false);
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assert(u32_slice_info.Slice.alignment == 4);
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assert(u32_slice_info.Slice.child == u32);
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}
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}
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test "type info: array type info" {
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comptime {
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const arr_info = @typeInfo([42]bool);
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assert(TypeId(arr_info) == TypeId.Array);
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assert(arr_info.Array.len == 42);
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assert(arr_info.Array.child == bool);
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}
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}
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test "type info: nullable type info" {
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comptime {
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const null_info = @typeInfo(?void);
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assert(TypeId(null_info) == TypeId.Nullable);
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assert(null_info.Nullable.child == void);
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@ -100,11 +119,11 @@ test "type info: union info" {
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assert(TypeId(typeinfo_info) == TypeId.Union);
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assert(typeinfo_info.Union.layout == TypeInfo.ContainerLayout.Auto);
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assert(typeinfo_info.Union.tag_type == TypeId);
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assert(typeinfo_info.Union.fields.len == 25);
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assert(typeinfo_info.Union.fields.len == 26);
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assert(typeinfo_info.Union.fields[4].enum_field != null);
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assert((??typeinfo_info.Union.fields[4].enum_field).value == 4);
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assert(typeinfo_info.Union.fields[4].field_type == @typeOf(@typeInfo(u8).Int));
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assert(typeinfo_info.Union.defs.len == 20);
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assert(typeinfo_info.Union.defs.len == 21);
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const TestNoTagUnion = union {
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Foo: void,
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