/* test generated deallocation on an object whose construction was prematurely * terminated due to an error */ static void test_dealloc_partial(void) { static const char text[] = "don't leak me"; UserDefTwo *ud2 = NULL; Error *err = NULL; /* create partial object */ { QDict *ud2_dict; QmpInputVisitor *qiv; ud2_dict = qdict_new(); qdict_put_obj(ud2_dict, "string0", QOBJECT(qstring_from_str(text))); qiv = qmp_input_visitor_new(QOBJECT(ud2_dict)); visit_type_UserDefTwo(qmp_input_get_visitor(qiv), &ud2, NULL, &err); qmp_input_visitor_cleanup(qiv); QDECREF(ud2_dict); } /* verify partial success */ assert(ud2 != NULL); assert(ud2->string0 != NULL); assert(strcmp(ud2->string0, text) == 0); assert(ud2->dict1 == NULL); /* confirm & release construction error */ assert(err != NULL); error_free(err); /* tear down partial object */ qapi_free_UserDefTwo(ud2); }
void qapi_copy_SocketAddress(SocketAddress **p_dest, SocketAddress *src) { QmpOutputVisitor *qov; QmpInputVisitor *qiv; Visitor *ov, *iv; QObject *obj; *p_dest = NULL; qov = qmp_output_visitor_new(); ov = qmp_output_get_visitor(qov); visit_type_SocketAddress(ov, NULL, &src, &error_abort); obj = qmp_output_get_qobject(qov); qmp_output_visitor_cleanup(qov); if (!obj) { return; } qiv = qmp_input_visitor_new(obj); iv = qmp_input_get_visitor(qiv); visit_type_SocketAddress(iv, NULL, p_dest, &error_abort); qmp_input_visitor_cleanup(qiv); qobject_decref(obj); }
static void qnull_visit_test(void) { QObject *obj; QmpOutputVisitor *qov; QmpInputVisitor *qiv; /* * Most tests of interactions between QObject and visitors are in * test-qmp-*-visitor; but these tests live here because they * depend on layering violations to check qnull_ refcnt. */ g_assert(qnull_.refcnt == 1); obj = qnull(); qiv = qmp_input_visitor_new(obj, true); qobject_decref(obj); visit_type_null(qmp_input_get_visitor(qiv), NULL, &error_abort); qmp_input_visitor_cleanup(qiv); qov = qmp_output_visitor_new(); visit_type_null(qmp_output_get_visitor(qov), NULL, &error_abort); obj = qmp_output_get_qobject(qov); g_assert(obj == &qnull_); qobject_decref(obj); qmp_output_visitor_cleanup(qov); g_assert(qnull_.refcnt == 1); }
int qmp_marshal_input_cpu(Monitor *mon, const QDict *qdict, QObject **ret) { Error *local_err = NULL; Error **errp = &local_err; QDict *args = (QDict *)qdict; QmpInputVisitor *mi; QapiDeallocVisitor *md; Visitor *v; int64_t index; mi = qmp_input_visitor_new(QOBJECT(args)); v = qmp_input_get_visitor(mi); visit_type_int(v, &index, "index", errp); qmp_input_visitor_cleanup(mi); if (error_is_set(errp)) { goto out; } qmp_cpu(index, errp); out: md = qapi_dealloc_visitor_new(); v = qapi_dealloc_get_visitor(md); visit_type_int(v, &index, "index", errp); qapi_dealloc_visitor_cleanup(md); if (local_err) { qerror_report_err(local_err); error_free(local_err); return -1; } return 0; }
QmpInputVisitor *qmp_input_visitor_new_strict(QObject *obj) { QmpInputVisitor *v; v = qmp_input_visitor_new(obj); v->strict = true; return v; }
void object_property_set_qobject(struct uc_struct *uc, Object *obj, QObject *value, const char *name, Error **errp) { QmpInputVisitor *mi; mi = qmp_input_visitor_new(value); object_property_set(uc, obj, qmp_input_get_visitor(mi), name, errp); // qq qmp_input_visitor_cleanup(mi); }
/* The various test_init functions are provided instead of a test setup function so that the JSON string used by the tests are kept in the test functions (and not in main()). */ static Visitor *visitor_input_test_init_internal(TestInputVisitorData *data, const char *json_string, va_list *ap) { visitor_input_teardown(data, NULL); data->obj = qobject_from_jsonv(json_string, ap); g_assert(data->obj); data->qiv = qmp_input_visitor_new(data->obj, false); g_assert(data->qiv); return data->qiv; }
/* test enum values nested in schema-defined structs */ static void test_nested_enums(void) { QmpOutputVisitor *mo; QmpInputVisitor *mi; Visitor *v; NestedEnumsOne *nested_enums, *nested_enums_cpy = NULL; Error *err = NULL; QObject *obj; QString *str; nested_enums = g_malloc0(sizeof(NestedEnumsOne)); nested_enums->enum1 = ENUM_ONE_VALUE1; nested_enums->enum2 = ENUM_ONE_VALUE2; nested_enums->enum3 = ENUM_ONE_VALUE3; nested_enums->enum4 = ENUM_ONE_VALUE3; nested_enums->has_enum2 = false; nested_enums->has_enum4 = true; /* C type -> QObject */ mo = qmp_output_visitor_new(); v = qmp_output_get_visitor(mo); visit_type_NestedEnumsOne(v, &nested_enums, NULL, &err); if (err) { g_error("%s", error_get_pretty(err)); } obj = qmp_output_get_qobject(mo); g_assert(obj); str = qobject_to_json_pretty(obj); g_print("%s\n", qstring_get_str(str)); QDECREF(str); /* QObject -> C type */ mi = qmp_input_visitor_new(obj); v = qmp_input_get_visitor(mi); visit_type_NestedEnumsOne(v, &nested_enums_cpy, NULL, &err); if (err) { g_error("%s", error_get_pretty(err)); } g_assert(nested_enums_cpy); g_assert(nested_enums_cpy->enum1 == nested_enums->enum1); g_assert(nested_enums_cpy->enum3 == nested_enums->enum3); g_assert(nested_enums_cpy->enum4 == nested_enums->enum4); g_assert(nested_enums_cpy->has_enum2 == false); g_assert(nested_enums_cpy->has_enum4 == true); qmp_output_visitor_cleanup(mo); qmp_input_visitor_cleanup(mi); qapi_free_NestedEnumsOne(nested_enums); qapi_free_NestedEnumsOne(nested_enums_cpy); }
/* similar to visitor_input_test_init(), but does not expect a string * literal/format json_string argument and so can be used for * programatically generated strings (and we can't pass in programatically * generated strings via %s format parameters since qobject_from_jsonv() * will wrap those in double-quotes and treat the entire object as a * string) */ static Visitor *visitor_input_test_init_raw(TestInputVisitorData *data, const char *json_string) { Visitor *v; data->obj = qobject_from_json(json_string); g_assert(data->obj != NULL); data->qiv = qmp_input_visitor_new(data->obj); g_assert(data->qiv != NULL); v = qmp_input_get_visitor(data->qiv); g_assert(v != NULL); return v; }
/* The various test_init functions are provided instead of a test setup function so that the JSON string used by the tests are kept in the test functions (and not in main()). */ static Visitor *validate_test_init_internal(TestInputVisitorData *data, const char *json_string, va_list *ap) { Visitor *v; validate_teardown(data, NULL); data->obj = qobject_from_jsonv(json_string, ap); g_assert(data->obj); data->qiv = qmp_input_visitor_new(data->obj, true); g_assert(data->qiv); v = qmp_input_get_visitor(data->qiv); g_assert(v); return v; }
/* This is provided instead of a test setup function so that the JSON string used by the tests are kept in the test functions (and not int main()) */ static Visitor *visitor_input_test_init(TestInputVisitorData *data, const char *json_string, ...) { Visitor *v; va_list ap; va_start(ap, json_string); data->obj = qobject_from_jsonv(json_string, &ap); va_end(ap); g_assert(data->obj != NULL); data->qiv = qmp_input_visitor_new(data->obj); g_assert(data->qiv != NULL); v = qmp_input_get_visitor(data->qiv); g_assert(v != NULL); return v; }
/* test enum values */ static void test_enums(void) { QmpOutputVisitor *mo; QmpInputVisitor *mi; Visitor *v; EnumOne enum1 = ENUM_ONE_VALUE2, enum1_cpy = ENUM_ONE_VALUE1; Error *err = NULL; QObject *obj; QString *str; /* C type -> QObject */ mo = qmp_output_visitor_new(); v = qmp_output_get_visitor(mo); visit_type_EnumOne(v, &enum1, "unused", &err); if (err) { g_error("%s", error_get_pretty(err)); } obj = qmp_output_get_qobject(mo); g_assert(obj); str = qobject_to_json_pretty(obj); g_print("%s\n", qstring_get_str(str)); QDECREF(str); g_assert(g_strcmp0(qstring_get_str(qobject_to_qstring(obj)), "value2") == 0); /* QObject -> C type */ mi = qmp_input_visitor_new(obj); v = qmp_input_get_visitor(mi); visit_type_EnumOne(v, &enum1_cpy, "unused", &err); if (err) { g_error("%s", error_get_pretty(err)); } g_debug("enum1_cpy, enum1: %d, %d", enum1_cpy, enum1); g_assert(enum1_cpy == enum1); qobject_decref(obj); }
/* test core visitor methods */ static void test_visitor_core(void) { QmpOutputVisitor *mo; QmpInputVisitor *mi; Visitor *v; TestStruct ts = { 42, 82 }; TestStruct *pts = &ts; TestStructList *lts = NULL; Error *err = NULL; QObject *obj; QList *qlist; QDict *qdict; QString *str; int64_t value = 0; mo = qmp_output_visitor_new(); v = qmp_output_get_visitor(mo); visit_type_TestStruct(v, &pts, NULL, &err); obj = qmp_output_get_qobject(mo); str = qobject_to_json(obj); printf("%s\n", qstring_get_str(str)); QDECREF(str); obj = QOBJECT(qint_from_int(0x42)); mi = qmp_input_visitor_new(obj); v = qmp_input_get_visitor(mi); visit_type_int(v, &value, NULL, &err); if (err) { g_error("%s", error_get_pretty(err)); } g_assert(value == 0x42); qobject_decref(obj); obj = qobject_from_json("{'x': 42, 'y': 84}"); mi = qmp_input_visitor_new(obj); v = qmp_input_get_visitor(mi); pts = NULL; visit_type_TestStruct(v, &pts, NULL, &err); if (err) { g_error("%s", error_get_pretty(err)); } g_assert(pts != NULL); g_assert(pts->x == 42); g_assert(pts->y == 84); qobject_decref(obj); g_free(pts); /* test list input visitor */ obj = qobject_from_json("[{'x': 42, 'y': 84}, {'x': 12, 'y': 24}]"); mi = qmp_input_visitor_new(obj); v = qmp_input_get_visitor(mi); visit_type_TestStructList(v, <s, NULL, &err); if (err) { g_error("%s", error_get_pretty(err)); } g_assert(lts != NULL); g_assert(lts->value->x == 42); g_assert(lts->value->y == 84); g_assert(lts->next != NULL); g_assert(lts->next->value->x == 12); g_assert(lts->next->value->y == 24); g_assert(lts->next->next == NULL); qobject_decref(obj); /* test list output visitor */ mo = qmp_output_visitor_new(); v = qmp_output_get_visitor(mo); visit_type_TestStructList(v, <s, NULL, &err); if (err) { g_error("%s", error_get_pretty(err)); } obj = qmp_output_get_qobject(mo); g_print("obj: %s\n", qstring_get_str(qobject_to_json(obj))); qlist = qobject_to_qlist(obj); assert(qlist); obj = qlist_pop(qlist); qdict = qobject_to_qdict(obj); assert(qdict); assert(qdict_get_int(qdict, "x") == 42); assert(qdict_get_int(qdict, "y") == 84); qobject_decref(obj); obj = qlist_pop(qlist); qdict = qobject_to_qdict(obj); assert(qdict); assert(qdict_get_int(qdict, "x") == 12); assert(qdict_get_int(qdict, "y") == 24); qobject_decref(obj); qmp_output_visitor_cleanup(mo); QDECREF(qlist); }
/* test deep nesting with refs to other user-defined types */ static void test_nested_structs(void) { QmpOutputVisitor *mo; QmpInputVisitor *mi; Visitor *v; UserDefOne ud1; UserDefOne *ud1_p = &ud1, *ud1c_p = NULL; UserDefTwo ud2; UserDefTwo *ud2_p = &ud2, *ud2c_p = NULL; Error *err = NULL; QObject *obj; QString *str; ud1.integer = 42; ud1.string = strdup("fourty two"); /* sanity check */ mo = qmp_output_visitor_new(); v = qmp_output_get_visitor(mo); visit_type_UserDefOne(v, &ud1_p, "o_O", &err); if (err) { g_error("%s", error_get_pretty(err)); } obj = qmp_output_get_qobject(mo); g_assert(obj); qobject_decref(obj); ud2.string = strdup("fourty three"); ud2.dict.string = strdup("fourty four"); ud2.dict.dict.userdef = ud1_p; ud2.dict.dict.string = strdup("fourty five"); ud2.dict.has_dict2 = true; ud2.dict.dict2.userdef = ud1_p; ud2.dict.dict2.string = strdup("fourty six"); /* c type -> qobject */ mo = qmp_output_visitor_new(); v = qmp_output_get_visitor(mo); visit_type_UserDefTwo(v, &ud2_p, "unused", &err); if (err) { g_error("%s", error_get_pretty(err)); } obj = qmp_output_get_qobject(mo); g_assert(obj); str = qobject_to_json_pretty(obj); g_print("%s\n", qstring_get_str(str)); QDECREF(str); /* qobject -> c type, should match original struct */ mi = qmp_input_visitor_new(obj); v = qmp_input_get_visitor(mi); visit_type_UserDefTwo(v, &ud2c_p, NULL, &err); if (err) { g_error("%s", error_get_pretty(err)); } g_assert(!g_strcmp0(ud2c_p->string, ud2.string)); g_assert(!g_strcmp0(ud2c_p->dict.string, ud2.dict.string)); ud1c_p = ud2c_p->dict.dict.userdef; g_assert(ud1c_p->integer == ud1_p->integer); g_assert(!g_strcmp0(ud1c_p->string, ud1_p->string)); g_assert(!g_strcmp0(ud2c_p->dict.dict.string, ud2.dict.dict.string)); ud1c_p = ud2c_p->dict.dict2.userdef; g_assert(ud1c_p->integer == ud1_p->integer); g_assert(!g_strcmp0(ud1c_p->string, ud1_p->string)); g_assert(!g_strcmp0(ud2c_p->dict.dict2.string, ud2.dict.dict2.string)); g_free(ud1.string); g_free(ud2.string); g_free(ud2.dict.string); g_free(ud2.dict.dict.string); g_free(ud2.dict.dict2.string); qapi_free_UserDefTwo(ud2c_p); qobject_decref(obj); }