xref: /qemu/qom/object.c (revision f0737158b483e7ec2b2512145aeab888b85cc1f7)
1 /*
2  * QEMU Object Model
3  *
4  * Copyright IBM, Corp. 2011
5  *
6  * Authors:
7  *  Anthony Liguori   <aliguori@us.ibm.com>
8  *
9  * This work is licensed under the terms of the GNU GPL, version 2 or later.
10  * See the COPYING file in the top-level directory.
11  */
12 
13 #include "qemu/osdep.h"
14 #include "hw/qdev-core.h"
15 #include "qapi/error.h"
16 #include "qom/object.h"
17 #include "qom/object_interfaces.h"
18 #include "qemu/cutils.h"
19 #include "qemu/memalign.h"
20 #include "qapi/visitor.h"
21 #include "qapi/string-input-visitor.h"
22 #include "qapi/string-output-visitor.h"
23 #include "qapi/qobject-input-visitor.h"
24 #include "qapi/forward-visitor.h"
25 #include "qapi/qapi-builtin-visit.h"
26 #include "qobject/qjson.h"
27 #include "trace.h"
28 
29 /* TODO: replace QObject with a simpler visitor to avoid a dependency
30  * of the QOM core on QObject?  */
31 #include "qom/qom-qobject.h"
32 #include "qobject/qbool.h"
33 #include "qobject/qlist.h"
34 #include "qobject/qnum.h"
35 #include "qobject/qstring.h"
36 #include "qemu/error-report.h"
37 
38 #define MAX_INTERFACES 32
39 
40 typedef struct InterfaceImpl InterfaceImpl;
41 typedef struct TypeImpl TypeImpl;
42 
43 struct InterfaceImpl
44 {
45     const char *typename;
46 };
47 
48 struct TypeImpl
49 {
50     const char *name;
51 
52     size_t class_size;
53 
54     size_t instance_size;
55     size_t instance_align;
56 
57     void (*class_init)(ObjectClass *klass, const void *data);
58     void (*class_base_init)(ObjectClass *klass, const void *data);
59 
60     const void *class_data;
61 
62     void (*instance_init)(Object *obj);
63     void (*instance_post_init)(Object *obj);
64     void (*instance_finalize)(Object *obj);
65 
66     bool abstract;
67 
68     const char *parent;
69     TypeImpl *parent_type;
70 
71     ObjectClass *class;
72 
73     int num_interfaces;
74     InterfaceImpl interfaces[MAX_INTERFACES];
75 };
76 
77 static Type type_interface;
78 
type_table_get(void)79 static GHashTable *type_table_get(void)
80 {
81     static GHashTable *type_table;
82 
83     if (type_table == NULL) {
84         type_table = g_hash_table_new(g_str_hash, g_str_equal);
85     }
86 
87     return type_table;
88 }
89 
90 static bool enumerating_types;
91 
type_table_add(TypeImpl * ti)92 static void type_table_add(TypeImpl *ti)
93 {
94     assert(!enumerating_types);
95     g_hash_table_insert(type_table_get(), (void *)ti->name, ti);
96 }
97 
type_table_lookup(const char * name)98 static TypeImpl *type_table_lookup(const char *name)
99 {
100     return g_hash_table_lookup(type_table_get(), name);
101 }
102 
type_new(const TypeInfo * info)103 static TypeImpl *type_new(const TypeInfo *info)
104 {
105     TypeImpl *ti = g_malloc0(sizeof(*ti));
106     int i;
107 
108     g_assert(info->name != NULL);
109 
110     if (type_table_lookup(info->name) != NULL) {
111         fprintf(stderr, "Registering `%s' which already exists\n", info->name);
112         abort();
113     }
114 
115     ti->name = g_strdup(info->name);
116     ti->parent = g_strdup(info->parent);
117 
118     ti->class_size = info->class_size;
119     ti->instance_size = info->instance_size;
120     ti->instance_align = info->instance_align;
121 
122     ti->class_init = info->class_init;
123     ti->class_base_init = info->class_base_init;
124     ti->class_data = info->class_data;
125 
126     ti->instance_init = info->instance_init;
127     ti->instance_post_init = info->instance_post_init;
128     ti->instance_finalize = info->instance_finalize;
129 
130     ti->abstract = info->abstract;
131 
132     for (i = 0; info->interfaces && info->interfaces[i].type; i++) {
133         ti->interfaces[i].typename = g_strdup(info->interfaces[i].type);
134     }
135     ti->num_interfaces = i;
136 
137     return ti;
138 }
139 
type_name_is_valid(const char * name)140 static bool type_name_is_valid(const char *name)
141 {
142     const int slen = strlen(name);
143     int plen;
144 
145     g_assert(slen > 1);
146 
147     /*
148      * Ideally, the name should start with a letter - however, we've got
149      * too many names starting with a digit already, so allow digits here,
150      * too (except '0' which is not used yet)
151      */
152     if (!g_ascii_isalnum(name[0]) || name[0] == '0') {
153         return false;
154     }
155 
156     plen = strspn(name, "abcdefghijklmnopqrstuvwxyz"
157                         "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
158                         "0123456789-_.");
159 
160     return plen == slen;
161 }
162 
type_register_internal(const TypeInfo * info)163 static TypeImpl *type_register_internal(const TypeInfo *info)
164 {
165     TypeImpl *ti;
166 
167     if (!type_name_is_valid(info->name)) {
168         fprintf(stderr, "Registering '%s' with illegal type name\n", info->name);
169         abort();
170     }
171 
172     ti = type_new(info);
173 
174     type_table_add(ti);
175     return ti;
176 }
177 
type_register_static(const TypeInfo * info)178 TypeImpl *type_register_static(const TypeInfo *info)
179 {
180     assert(info->parent);
181     return type_register_internal(info);
182 }
183 
type_register_static_array(const TypeInfo * infos,int nr_infos)184 void type_register_static_array(const TypeInfo *infos, int nr_infos)
185 {
186     int i;
187 
188     for (i = 0; i < nr_infos; i++) {
189         type_register_static(&infos[i]);
190     }
191 }
192 
type_get_by_name_noload(const char * name)193 static TypeImpl *type_get_by_name_noload(const char *name)
194 {
195     if (name == NULL) {
196         return NULL;
197     }
198 
199     return type_table_lookup(name);
200 }
201 
type_get_or_load_by_name(const char * name,Error ** errp)202 static TypeImpl *type_get_or_load_by_name(const char *name, Error **errp)
203 {
204     TypeImpl *type = type_get_by_name_noload(name);
205 
206 #ifdef CONFIG_MODULES
207     if (!type) {
208         int rv = module_load_qom(name, errp);
209         if (rv > 0) {
210             type = type_get_by_name_noload(name);
211         } else {
212             error_prepend(errp, "could not load a module for type '%s'", name);
213             return NULL;
214         }
215     }
216 #endif
217     if (!type) {
218         error_setg(errp, "unknown type '%s'", name);
219     }
220 
221     return type;
222 }
223 
type_get_parent(TypeImpl * type)224 static TypeImpl *type_get_parent(TypeImpl *type)
225 {
226     if (!type->parent_type && type->parent) {
227         type->parent_type = type_get_by_name_noload(type->parent);
228         if (!type->parent_type) {
229             fprintf(stderr, "Type '%s' is missing its parent '%s'\n",
230                     type->name, type->parent);
231             abort();
232         }
233     }
234 
235     return type->parent_type;
236 }
237 
type_has_parent(TypeImpl * type)238 static bool type_has_parent(TypeImpl *type)
239 {
240     return (type->parent != NULL);
241 }
242 
type_class_get_size(TypeImpl * ti)243 static size_t type_class_get_size(TypeImpl *ti)
244 {
245     if (ti->class_size) {
246         return ti->class_size;
247     }
248 
249     if (type_has_parent(ti)) {
250         return type_class_get_size(type_get_parent(ti));
251     }
252 
253     return sizeof(ObjectClass);
254 }
255 
type_object_get_size(TypeImpl * ti)256 static size_t type_object_get_size(TypeImpl *ti)
257 {
258     if (ti->instance_size) {
259         return ti->instance_size;
260     }
261 
262     if (type_has_parent(ti)) {
263         return type_object_get_size(type_get_parent(ti));
264     }
265 
266     return 0;
267 }
268 
type_object_get_align(TypeImpl * ti)269 static size_t type_object_get_align(TypeImpl *ti)
270 {
271     if (ti->instance_align) {
272         return ti->instance_align;
273     }
274 
275     if (type_has_parent(ti)) {
276         return type_object_get_align(type_get_parent(ti));
277     }
278 
279     return 0;
280 }
281 
type_is_ancestor(TypeImpl * type,TypeImpl * target_type)282 static bool type_is_ancestor(TypeImpl *type, TypeImpl *target_type)
283 {
284     assert(target_type);
285 
286     /* Check if target_type is a direct ancestor of type */
287     while (type) {
288         if (type == target_type) {
289             return true;
290         }
291 
292         type = type_get_parent(type);
293     }
294 
295     return false;
296 }
297 
298 static void type_initialize(TypeImpl *ti);
299 
type_initialize_interface(TypeImpl * ti,TypeImpl * interface_type,TypeImpl * parent_type)300 static void type_initialize_interface(TypeImpl *ti, TypeImpl *interface_type,
301                                       TypeImpl *parent_type)
302 {
303     InterfaceClass *new_iface;
304     TypeInfo info = { };
305     TypeImpl *iface_impl;
306 
307     info.parent = parent_type->name;
308     info.name = g_strdup_printf("%s::%s", ti->name, interface_type->name);
309     info.abstract = true;
310 
311     iface_impl = type_new(&info);
312     iface_impl->parent_type = parent_type;
313     type_initialize(iface_impl);
314     g_free((char *)info.name);
315 
316     new_iface = (InterfaceClass *)iface_impl->class;
317     new_iface->interface_type = interface_type;
318 
319     ti->class->interfaces = g_slist_append(ti->class->interfaces, new_iface);
320 }
321 
object_property_free(gpointer data)322 static void object_property_free(gpointer data)
323 {
324     ObjectProperty *prop = data;
325 
326     if (prop->defval) {
327         qobject_unref(prop->defval);
328         prop->defval = NULL;
329     }
330     g_free(prop->name);
331     g_free(prop->type);
332     g_free(prop->description);
333     g_free(prop);
334 }
335 
type_initialize(TypeImpl * ti)336 static void type_initialize(TypeImpl *ti)
337 {
338     TypeImpl *parent;
339 
340     if (ti->class) {
341         return;
342     }
343 
344     ti->class_size = type_class_get_size(ti);
345     ti->instance_size = type_object_get_size(ti);
346     ti->instance_align = type_object_get_align(ti);
347     /* Any type with zero instance_size is implicitly abstract.
348      * This means interface types are all abstract.
349      */
350     if (ti->instance_size == 0) {
351         ti->abstract = true;
352     }
353     if (type_is_ancestor(ti, type_interface)) {
354         assert(ti->instance_size == 0);
355         assert(ti->abstract);
356         assert(!ti->instance_init);
357         assert(!ti->instance_post_init);
358         assert(!ti->instance_finalize);
359         assert(!ti->num_interfaces);
360     }
361     ti->class = g_malloc0(ti->class_size);
362 
363     parent = type_get_parent(ti);
364     if (parent) {
365         type_initialize(parent);
366         GSList *e;
367         int i;
368 
369         g_assert(parent->class_size <= ti->class_size);
370         g_assert(parent->instance_size <= ti->instance_size);
371         memcpy(ti->class, parent->class, parent->class_size);
372         ti->class->interfaces = NULL;
373 
374         for (e = parent->class->interfaces; e; e = e->next) {
375             InterfaceClass *iface = e->data;
376             ObjectClass *klass = OBJECT_CLASS(iface);
377 
378             type_initialize_interface(ti, iface->interface_type, klass->type);
379         }
380 
381         for (i = 0; i < ti->num_interfaces; i++) {
382             TypeImpl *t = type_get_by_name_noload(ti->interfaces[i].typename);
383             if (!t) {
384                 error_report("missing interface '%s' for object '%s'",
385                              ti->interfaces[i].typename, parent->name);
386                 abort();
387             }
388             for (e = ti->class->interfaces; e; e = e->next) {
389                 TypeImpl *target_type = OBJECT_CLASS(e->data)->type;
390 
391                 if (type_is_ancestor(target_type, t)) {
392                     break;
393                 }
394             }
395 
396             if (e) {
397                 continue;
398             }
399 
400             type_initialize_interface(ti, t, t);
401         }
402     }
403 
404     ti->class->properties = g_hash_table_new_full(g_str_hash, g_str_equal, NULL,
405                                                   object_property_free);
406 
407     ti->class->type = ti;
408 
409     while (parent) {
410         if (parent->class_base_init) {
411             parent->class_base_init(ti->class, ti->class_data);
412         }
413         parent = type_get_parent(parent);
414     }
415 
416     if (ti->class_init) {
417         ti->class_init(ti->class, ti->class_data);
418     }
419 }
420 
object_init_with_type(Object * obj,TypeImpl * ti)421 static void object_init_with_type(Object *obj, TypeImpl *ti)
422 {
423     if (type_has_parent(ti)) {
424         object_init_with_type(obj, type_get_parent(ti));
425     }
426 
427     if (ti->instance_init) {
428         ti->instance_init(obj);
429     }
430 }
431 
object_post_init_with_type(Object * obj,TypeImpl * ti)432 static void object_post_init_with_type(Object *obj, TypeImpl *ti)
433 {
434     if (type_has_parent(ti)) {
435         object_post_init_with_type(obj, type_get_parent(ti));
436     }
437 
438     if (ti->instance_post_init) {
439         ti->instance_post_init(obj);
440     }
441 }
442 
object_apply_global_props(Object * obj,const GPtrArray * props,Error ** errp)443 bool object_apply_global_props(Object *obj, const GPtrArray *props,
444                                Error **errp)
445 {
446     int i;
447 
448     if (!props) {
449         return true;
450     }
451 
452     for (i = 0; i < props->len; i++) {
453         GlobalProperty *p = g_ptr_array_index(props, i);
454         Error *err = NULL;
455 
456         if (object_dynamic_cast(obj, p->driver) == NULL) {
457             continue;
458         }
459         if (p->optional && !object_property_find(obj, p->property)) {
460             continue;
461         }
462         p->used = true;
463         if (!object_property_parse(obj, p->property, p->value, &err)) {
464             error_prepend(&err, "can't apply global %s.%s=%s: ",
465                           p->driver, p->property, p->value);
466             /*
467              * If errp != NULL, propagate error and return.
468              * If errp == NULL, report a warning, but keep going
469              * with the remaining globals.
470              */
471             if (errp) {
472                 error_propagate(errp, err);
473                 return false;
474             } else {
475                 warn_report_err(err);
476             }
477         }
478     }
479 
480     return true;
481 }
482 
483 /*
484  * Global property defaults
485  * Slot 0: accelerator's global property defaults
486  * Slot 1: machine's global property defaults
487  * Slot 2: global properties from legacy command line option
488  * Each is a GPtrArray of GlobalProperty.
489  * Applied in order, later entries override earlier ones.
490  */
491 static GPtrArray *object_compat_props[3];
492 
493 /*
494  * Retrieve @GPtrArray for global property defined with options
495  * other than "-global".  These are generally used for syntactic
496  * sugar and legacy command line options.
497  */
object_register_sugar_prop(const char * driver,const char * prop,const char * value,bool optional)498 void object_register_sugar_prop(const char *driver, const char *prop,
499                                 const char *value, bool optional)
500 {
501     GlobalProperty *g;
502     if (!object_compat_props[2]) {
503         object_compat_props[2] = g_ptr_array_new();
504     }
505     g = g_new0(GlobalProperty, 1);
506     g->driver = g_strdup(driver);
507     g->property = g_strdup(prop);
508     g->value = g_strdup(value);
509     g->optional = optional;
510     g_ptr_array_add(object_compat_props[2], g);
511 }
512 
513 /*
514  * Set machine's global property defaults to @compat_props.
515  * May be called at most once.
516  */
object_set_machine_compat_props(GPtrArray * compat_props)517 void object_set_machine_compat_props(GPtrArray *compat_props)
518 {
519     assert(!object_compat_props[1]);
520     object_compat_props[1] = compat_props;
521 }
522 
523 /*
524  * Set accelerator's global property defaults to @compat_props.
525  * May be called at most once.
526  */
object_set_accelerator_compat_props(GPtrArray * compat_props)527 void object_set_accelerator_compat_props(GPtrArray *compat_props)
528 {
529     assert(!object_compat_props[0]);
530     object_compat_props[0] = compat_props;
531 }
532 
object_apply_compat_props(Object * obj)533 void object_apply_compat_props(Object *obj)
534 {
535     int i;
536 
537     for (i = 0; i < ARRAY_SIZE(object_compat_props); i++) {
538         object_apply_global_props(obj, object_compat_props[i],
539                                   i == 2 ? &error_fatal : &error_abort);
540     }
541 }
542 
object_class_property_init_all(Object * obj)543 static void object_class_property_init_all(Object *obj)
544 {
545     ObjectPropertyIterator iter;
546     ObjectProperty *prop;
547 
548     object_class_property_iter_init(&iter, object_get_class(obj));
549     while ((prop = object_property_iter_next(&iter))) {
550         if (prop->init) {
551             prop->init(obj, prop);
552         }
553     }
554 }
555 
object_initialize_with_type(Object * obj,size_t size,TypeImpl * type)556 static void object_initialize_with_type(Object *obj, size_t size, TypeImpl *type)
557 {
558     type_initialize(type);
559 
560     g_assert(type->instance_size >= sizeof(Object));
561     g_assert(type->abstract == false);
562     g_assert(size >= type->instance_size);
563 
564     memset(obj, 0, type->instance_size);
565     obj->class = type->class;
566     object_ref(obj);
567     object_class_property_init_all(obj);
568     obj->properties = g_hash_table_new_full(g_str_hash, g_str_equal,
569                                             NULL, object_property_free);
570     object_init_with_type(obj, type);
571     object_post_init_with_type(obj, type);
572 }
573 
object_initialize(void * data,size_t size,const char * typename)574 void object_initialize(void *data, size_t size, const char *typename)
575 {
576     TypeImpl *type = type_get_or_load_by_name(typename, &error_fatal);
577 
578     object_initialize_with_type(data, size, type);
579 }
580 
object_initialize_child_with_props(Object * parentobj,const char * propname,void * childobj,size_t size,const char * type,Error ** errp,...)581 bool object_initialize_child_with_props(Object *parentobj,
582                                         const char *propname,
583                                         void *childobj, size_t size,
584                                         const char *type,
585                                         Error **errp, ...)
586 {
587     va_list vargs;
588     bool ok;
589 
590     va_start(vargs, errp);
591     ok = object_initialize_child_with_propsv(parentobj, propname,
592                                              childobj, size, type, errp,
593                                              vargs);
594     va_end(vargs);
595     return ok;
596 }
597 
object_initialize_child_with_propsv(Object * parentobj,const char * propname,void * childobj,size_t size,const char * type,Error ** errp,va_list vargs)598 bool object_initialize_child_with_propsv(Object *parentobj,
599                                          const char *propname,
600                                          void *childobj, size_t size,
601                                          const char *type,
602                                          Error **errp, va_list vargs)
603 {
604     bool ok = false;
605     Object *obj;
606     UserCreatable *uc;
607 
608     object_initialize(childobj, size, type);
609     obj = OBJECT(childobj);
610 
611     if (!object_set_propv(obj, errp, vargs)) {
612         goto out;
613     }
614 
615     object_property_add_child(parentobj, propname, obj);
616 
617     uc = (UserCreatable *)object_dynamic_cast(obj, TYPE_USER_CREATABLE);
618     if (uc) {
619         if (!user_creatable_complete(uc, errp)) {
620             object_unparent(obj);
621             goto out;
622         }
623     }
624 
625     ok = true;
626 
627 out:
628     /*
629      * We want @obj's reference to be 1 on success, 0 on failure.
630      * On success, it's 2: one taken by object_initialize(), and one
631      * by object_property_add_child().
632      * On failure in object_initialize() or earlier, it's 1.
633      * On failure afterwards, it's also 1: object_unparent() releases
634      * the reference taken by object_property_add_child().
635      */
636     object_unref(obj);
637     return ok;
638 }
639 
object_initialize_child_internal(Object * parent,const char * propname,void * child,size_t size,const char * type)640 void object_initialize_child_internal(Object *parent,
641                                       const char *propname,
642                                       void *child, size_t size,
643                                       const char *type)
644 {
645     object_initialize_child_with_props(parent, propname, child, size, type,
646                                        &error_abort, NULL);
647 }
648 
object_property_is_child(ObjectProperty * prop)649 static inline bool object_property_is_child(ObjectProperty *prop)
650 {
651     return strstart(prop->type, "child<", NULL);
652 }
653 
object_property_del_all(Object * obj)654 static void object_property_del_all(Object *obj)
655 {
656     g_autoptr(GHashTable) done = g_hash_table_new(NULL, NULL);
657     ObjectProperty *prop;
658     ObjectPropertyIterator iter;
659     bool released;
660 
661     do {
662         released = false;
663         object_property_iter_init(&iter, obj);
664         while ((prop = object_property_iter_next(&iter)) != NULL) {
665             if (g_hash_table_add(done, prop)) {
666                 if (prop->release) {
667                     prop->release(obj, prop->name, prop->opaque);
668                     released = true;
669                     break;
670                 }
671             }
672         }
673     } while (released);
674 
675     g_hash_table_unref(obj->properties);
676 }
677 
object_property_del_child(Object * obj,Object * child)678 static void object_property_del_child(Object *obj, Object *child)
679 {
680     ObjectProperty *prop;
681     GHashTableIter iter;
682     gpointer key, value;
683 
684     g_hash_table_iter_init(&iter, obj->properties);
685     while (g_hash_table_iter_next(&iter, &key, &value)) {
686         prop = value;
687         if (object_property_is_child(prop) && prop->opaque == child) {
688             if (prop->release) {
689                 prop->release(obj, prop->name, prop->opaque);
690                 prop->release = NULL;
691             }
692             break;
693         }
694     }
695     g_hash_table_iter_init(&iter, obj->properties);
696     while (g_hash_table_iter_next(&iter, &key, &value)) {
697         prop = value;
698         if (object_property_is_child(prop) && prop->opaque == child) {
699             g_hash_table_iter_remove(&iter);
700             break;
701         }
702     }
703 }
704 
object_unparent(Object * obj)705 void object_unparent(Object *obj)
706 {
707     if (obj->parent) {
708         object_property_del_child(obj->parent, obj);
709     }
710 }
711 
object_deinit(Object * obj,TypeImpl * type)712 static void object_deinit(Object *obj, TypeImpl *type)
713 {
714     if (type->instance_finalize) {
715         type->instance_finalize(obj);
716     }
717 
718     if (type_has_parent(type)) {
719         object_deinit(obj, type_get_parent(type));
720     }
721 }
722 
object_finalize(void * data)723 static void object_finalize(void *data)
724 {
725     Object *obj = data;
726     TypeImpl *ti = obj->class->type;
727 
728     object_property_del_all(obj);
729     object_deinit(obj, ti);
730 
731     g_assert(obj->ref == 0);
732     g_assert(obj->parent == NULL);
733     if (obj->free) {
734         obj->free(obj);
735     }
736 }
737 
738 /* Find the minimum alignment guaranteed by the system malloc. */
739 #if __STDC_VERSION__ >= 201112L
740 typedef max_align_t qemu_max_align_t;
741 #else
742 typedef union {
743     long l;
744     void *p;
745     double d;
746     long double ld;
747 } qemu_max_align_t;
748 #endif
749 
object_new_with_type(Type type)750 static Object *object_new_with_type(Type type)
751 {
752     Object *obj;
753     size_t size, align;
754     void (*obj_free)(void *);
755 
756     g_assert(type != NULL);
757     type_initialize(type);
758 
759     size = type->instance_size;
760     align = type->instance_align;
761 
762     /*
763      * Do not use qemu_memalign unless required.  Depending on the
764      * implementation, extra alignment implies extra overhead.
765      */
766     if (likely(align <= __alignof__(qemu_max_align_t))) {
767         obj = g_malloc(size);
768         obj_free = g_free;
769     } else {
770         obj = qemu_memalign(align, size);
771         obj_free = qemu_vfree;
772     }
773 
774     object_initialize_with_type(obj, size, type);
775     obj->free = obj_free;
776 
777     return obj;
778 }
779 
object_new_with_class(ObjectClass * klass)780 Object *object_new_with_class(ObjectClass *klass)
781 {
782     return object_new_with_type(klass->type);
783 }
784 
object_new(const char * typename)785 Object *object_new(const char *typename)
786 {
787     TypeImpl *ti = type_get_or_load_by_name(typename, &error_fatal);
788 
789     return object_new_with_type(ti);
790 }
791 
792 
object_new_with_props(const char * typename,Object * parent,const char * id,Error ** errp,...)793 Object *object_new_with_props(const char *typename,
794                               Object *parent,
795                               const char *id,
796                               Error **errp,
797                               ...)
798 {
799     va_list vargs;
800     Object *obj;
801 
802     va_start(vargs, errp);
803     obj = object_new_with_propv(typename, parent, id, errp, vargs);
804     va_end(vargs);
805 
806     return obj;
807 }
808 
809 
object_new_with_propv(const char * typename,Object * parent,const char * id,Error ** errp,va_list vargs)810 Object *object_new_with_propv(const char *typename,
811                               Object *parent,
812                               const char *id,
813                               Error **errp,
814                               va_list vargs)
815 {
816     Object *obj;
817     ObjectClass *klass;
818     UserCreatable *uc;
819 
820     klass = object_class_by_name(typename);
821     if (!klass) {
822         error_setg(errp, "invalid object type: %s", typename);
823         return NULL;
824     }
825 
826     if (object_class_is_abstract(klass)) {
827         error_setg(errp, "object type '%s' is abstract", typename);
828         return NULL;
829     }
830     obj = object_new_with_type(klass->type);
831 
832     if (!object_set_propv(obj, errp, vargs)) {
833         goto error;
834     }
835 
836     if (id != NULL) {
837         object_property_add_child(parent, id, obj);
838     }
839 
840     uc = (UserCreatable *)object_dynamic_cast(obj, TYPE_USER_CREATABLE);
841     if (uc) {
842         if (!user_creatable_complete(uc, errp)) {
843             if (id != NULL) {
844                 object_unparent(obj);
845             }
846             goto error;
847         }
848     }
849 
850     object_unref(obj);
851     return obj;
852 
853  error:
854     object_unref(obj);
855     return NULL;
856 }
857 
858 
object_set_props(Object * obj,Error ** errp,...)859 bool object_set_props(Object *obj,
860                      Error **errp,
861                      ...)
862 {
863     va_list vargs;
864     bool ret;
865 
866     va_start(vargs, errp);
867     ret = object_set_propv(obj, errp, vargs);
868     va_end(vargs);
869 
870     return ret;
871 }
872 
873 
object_set_propv(Object * obj,Error ** errp,va_list vargs)874 bool object_set_propv(Object *obj,
875                      Error **errp,
876                      va_list vargs)
877 {
878     const char *propname;
879 
880     propname = va_arg(vargs, char *);
881     while (propname != NULL) {
882         const char *value = va_arg(vargs, char *);
883 
884         g_assert(value != NULL);
885         if (!object_property_parse(obj, propname, value, errp)) {
886             return false;
887         }
888         propname = va_arg(vargs, char *);
889     }
890 
891     return true;
892 }
893 
894 
object_dynamic_cast(Object * obj,const char * typename)895 Object *object_dynamic_cast(Object *obj, const char *typename)
896 {
897     if (obj && object_class_dynamic_cast(object_get_class(obj), typename)) {
898         return obj;
899     }
900 
901     return NULL;
902 }
903 
object_dynamic_cast_assert(Object * obj,const char * typename,const char * file,int line,const char * func)904 Object *object_dynamic_cast_assert(Object *obj, const char *typename,
905                                    const char *file, int line, const char *func)
906 {
907     trace_object_dynamic_cast_assert(obj ? obj->class->type->name : "(null)",
908                                      typename, file, line, func);
909 
910 #ifdef CONFIG_QOM_CAST_DEBUG
911     int i;
912     Object *inst;
913 
914     for (i = 0; obj && i < OBJECT_CLASS_CAST_CACHE; i++) {
915         if (qatomic_read(&obj->class->object_cast_cache[i]) == typename) {
916             goto out;
917         }
918     }
919 
920     inst = object_dynamic_cast(obj, typename);
921 
922     if (!inst && obj) {
923         fprintf(stderr, "%s:%d:%s: Object %p is not an instance of type %s\n",
924                 file, line, func, obj, typename);
925         abort();
926     }
927 
928     assert(obj == inst);
929 
930     if (obj && obj == inst) {
931         for (i = 1; i < OBJECT_CLASS_CAST_CACHE; i++) {
932             qatomic_set(&obj->class->object_cast_cache[i - 1],
933                        qatomic_read(&obj->class->object_cast_cache[i]));
934         }
935         qatomic_set(&obj->class->object_cast_cache[i - 1], typename);
936     }
937 
938 out:
939 #endif
940     return obj;
941 }
942 
object_class_dynamic_cast(ObjectClass * class,const char * typename)943 ObjectClass *object_class_dynamic_cast(ObjectClass *class,
944                                        const char *typename)
945 {
946     ObjectClass *ret = NULL;
947     TypeImpl *target_type;
948     TypeImpl *type;
949 
950     if (!class) {
951         return NULL;
952     }
953 
954     /* A simple fast path that can trigger a lot for leaf classes.  */
955     type = class->type;
956     if (type->name == typename) {
957         return class;
958     }
959 
960     target_type = type_get_by_name_noload(typename);
961     if (!target_type) {
962         /* target class type unknown, so fail the cast */
963         return NULL;
964     }
965 
966     if (type->class->interfaces &&
967             type_is_ancestor(target_type, type_interface)) {
968         int found = 0;
969         GSList *i;
970 
971         for (i = class->interfaces; i; i = i->next) {
972             ObjectClass *target_class = i->data;
973 
974             if (type_is_ancestor(target_class->type, target_type)) {
975                 ret = target_class;
976                 found++;
977             }
978          }
979 
980         /* The match was ambiguous, don't allow a cast */
981         if (found > 1) {
982             ret = NULL;
983         }
984     } else if (type_is_ancestor(type, target_type)) {
985         ret = class;
986     }
987 
988     return ret;
989 }
990 
object_class_dynamic_cast_assert(ObjectClass * class,const char * typename,const char * file,int line,const char * func)991 ObjectClass *object_class_dynamic_cast_assert(ObjectClass *class,
992                                               const char *typename,
993                                               const char *file, int line,
994                                               const char *func)
995 {
996     ObjectClass *ret;
997 
998     trace_object_class_dynamic_cast_assert(class ? class->type->name : "(null)",
999                                            typename, file, line, func);
1000 
1001 #ifdef CONFIG_QOM_CAST_DEBUG
1002     int i;
1003 
1004     for (i = 0; class && i < OBJECT_CLASS_CAST_CACHE; i++) {
1005         if (qatomic_read(&class->class_cast_cache[i]) == typename) {
1006             ret = class;
1007             goto out;
1008         }
1009     }
1010 #else
1011     if (!class || !class->interfaces) {
1012         return class;
1013     }
1014 #endif
1015 
1016     ret = object_class_dynamic_cast(class, typename);
1017     if (!ret && class) {
1018         fprintf(stderr, "%s:%d:%s: Object %p is not an instance of type %s\n",
1019                 file, line, func, class, typename);
1020         abort();
1021     }
1022 
1023 #ifdef CONFIG_QOM_CAST_DEBUG
1024     if (class && ret == class) {
1025         for (i = 1; i < OBJECT_CLASS_CAST_CACHE; i++) {
1026             qatomic_set(&class->class_cast_cache[i - 1],
1027                        qatomic_read(&class->class_cast_cache[i]));
1028         }
1029         qatomic_set(&class->class_cast_cache[i - 1], typename);
1030     }
1031 out:
1032 #endif
1033     return ret;
1034 }
1035 
object_get_typename(const Object * obj)1036 const char *object_get_typename(const Object *obj)
1037 {
1038     return obj->class->type->name;
1039 }
1040 
object_get_class(Object * obj)1041 ObjectClass *object_get_class(Object *obj)
1042 {
1043     return obj->class;
1044 }
1045 
object_class_is_abstract(ObjectClass * klass)1046 bool object_class_is_abstract(ObjectClass *klass)
1047 {
1048     return klass->type->abstract;
1049 }
1050 
object_class_get_name(ObjectClass * klass)1051 const char *object_class_get_name(ObjectClass *klass)
1052 {
1053     return klass->type->name;
1054 }
1055 
object_class_by_name(const char * typename)1056 ObjectClass *object_class_by_name(const char *typename)
1057 {
1058     TypeImpl *type = type_get_by_name_noload(typename);
1059 
1060     if (!type) {
1061         return NULL;
1062     }
1063 
1064     type_initialize(type);
1065 
1066     return type->class;
1067 }
1068 
module_object_class_by_name(const char * typename)1069 ObjectClass *module_object_class_by_name(const char *typename)
1070 {
1071     TypeImpl *type = type_get_or_load_by_name(typename, NULL);
1072 
1073     if (!type) {
1074         return NULL;
1075     }
1076 
1077     type_initialize(type);
1078 
1079     return type->class;
1080 }
1081 
object_class_get_parent(ObjectClass * class)1082 ObjectClass *object_class_get_parent(ObjectClass *class)
1083 {
1084     TypeImpl *type = type_get_parent(class->type);
1085 
1086     if (!type) {
1087         return NULL;
1088     }
1089 
1090     type_initialize(type);
1091 
1092     return type->class;
1093 }
1094 
1095 typedef struct OCFData
1096 {
1097     void (*fn)(ObjectClass *klass, void *opaque);
1098     const char *implements_type;
1099     bool include_abstract;
1100     void *opaque;
1101 } OCFData;
1102 
object_class_foreach_tramp(gpointer key,gpointer value,gpointer opaque)1103 static void object_class_foreach_tramp(gpointer key, gpointer value,
1104                                        gpointer opaque)
1105 {
1106     OCFData *data = opaque;
1107     TypeImpl *type = value;
1108     ObjectClass *k;
1109 
1110     type_initialize(type);
1111     k = type->class;
1112 
1113     if (!data->include_abstract && type->abstract) {
1114         return;
1115     }
1116 
1117     if (data->implements_type &&
1118         !object_class_dynamic_cast(k, data->implements_type)) {
1119         return;
1120     }
1121 
1122     data->fn(k, data->opaque);
1123 }
1124 
object_class_foreach(void (* fn)(ObjectClass * klass,void * opaque),const char * implements_type,bool include_abstract,void * opaque)1125 void object_class_foreach(void (*fn)(ObjectClass *klass, void *opaque),
1126                           const char *implements_type, bool include_abstract,
1127                           void *opaque)
1128 {
1129     OCFData data = { fn, implements_type, include_abstract, opaque };
1130 
1131     enumerating_types = true;
1132     g_hash_table_foreach(type_table_get(), object_class_foreach_tramp, &data);
1133     enumerating_types = false;
1134 }
1135 
do_object_child_foreach(Object * obj,int (* fn)(Object * child,void * opaque),void * opaque,bool recurse)1136 static int do_object_child_foreach(Object *obj,
1137                                    int (*fn)(Object *child, void *opaque),
1138                                    void *opaque, bool recurse)
1139 {
1140     GHashTableIter iter;
1141     ObjectProperty *prop;
1142     int ret = 0;
1143 
1144     g_hash_table_iter_init(&iter, obj->properties);
1145     while (g_hash_table_iter_next(&iter, NULL, (gpointer *)&prop)) {
1146         if (object_property_is_child(prop)) {
1147             Object *child = prop->opaque;
1148 
1149             ret = fn(child, opaque);
1150             if (ret != 0) {
1151                 break;
1152             }
1153             if (recurse) {
1154                 ret = do_object_child_foreach(child, fn, opaque, true);
1155                 if (ret != 0) {
1156                     break;
1157                 }
1158             }
1159         }
1160     }
1161     return ret;
1162 }
1163 
object_child_foreach(Object * obj,int (* fn)(Object * child,void * opaque),void * opaque)1164 int object_child_foreach(Object *obj, int (*fn)(Object *child, void *opaque),
1165                          void *opaque)
1166 {
1167     return do_object_child_foreach(obj, fn, opaque, false);
1168 }
1169 
object_child_foreach_recursive(Object * obj,int (* fn)(Object * child,void * opaque),void * opaque)1170 int object_child_foreach_recursive(Object *obj,
1171                                    int (*fn)(Object *child, void *opaque),
1172                                    void *opaque)
1173 {
1174     return do_object_child_foreach(obj, fn, opaque, true);
1175 }
1176 
object_class_get_list_tramp(ObjectClass * klass,void * opaque)1177 static void object_class_get_list_tramp(ObjectClass *klass, void *opaque)
1178 {
1179     GSList **list = opaque;
1180 
1181     *list = g_slist_prepend(*list, klass);
1182 }
1183 
object_class_get_list(const char * implements_type,bool include_abstract)1184 GSList *object_class_get_list(const char *implements_type,
1185                               bool include_abstract)
1186 {
1187     GSList *list = NULL;
1188 
1189     object_class_foreach(object_class_get_list_tramp,
1190                          implements_type, include_abstract, &list);
1191     return list;
1192 }
1193 
object_class_cmp(gconstpointer a,gconstpointer b,gpointer d)1194 static gint object_class_cmp(gconstpointer a, gconstpointer b, gpointer d)
1195 {
1196     return strcasecmp(object_class_get_name((ObjectClass *)a),
1197                       object_class_get_name((ObjectClass *)b));
1198 }
1199 
object_class_get_list_sorted(const char * implements_type,bool include_abstract)1200 GSList *object_class_get_list_sorted(const char *implements_type,
1201                                      bool include_abstract)
1202 {
1203     return g_slist_sort_with_data(
1204         object_class_get_list(implements_type, include_abstract),
1205         object_class_cmp, NULL);
1206 }
1207 
object_ref(void * objptr)1208 Object *object_ref(void *objptr)
1209 {
1210     Object *obj = OBJECT(objptr);
1211     uint32_t ref;
1212 
1213     if (!obj) {
1214         return NULL;
1215     }
1216     ref = qatomic_fetch_inc(&obj->ref);
1217     /* Assert waaay before the integer overflows */
1218     g_assert(ref < INT_MAX);
1219     return obj;
1220 }
1221 
object_unref(void * objptr)1222 void object_unref(void *objptr)
1223 {
1224     Object *obj = OBJECT(objptr);
1225     if (!obj) {
1226         return;
1227     }
1228     g_assert(obj->ref > 0);
1229 
1230     /* parent always holds a reference to its children */
1231     if (qatomic_fetch_dec(&obj->ref) == 1) {
1232         object_finalize(obj);
1233     }
1234 }
1235 
1236 ObjectProperty *
object_property_try_add(Object * obj,const char * name,const char * type,ObjectPropertyAccessor * get,ObjectPropertyAccessor * set,ObjectPropertyRelease * release,void * opaque,Error ** errp)1237 object_property_try_add(Object *obj, const char *name, const char *type,
1238                         ObjectPropertyAccessor *get,
1239                         ObjectPropertyAccessor *set,
1240                         ObjectPropertyRelease *release,
1241                         void *opaque, Error **errp)
1242 {
1243     ObjectProperty *prop;
1244     size_t name_len = strlen(name);
1245 
1246     if (name_len >= 3 && !memcmp(name + name_len - 3, "[*]", 4)) {
1247         int i;
1248         ObjectProperty *ret = NULL;
1249         char *name_no_array = g_strdup(name);
1250 
1251         name_no_array[name_len - 3] = '\0';
1252         for (i = 0; i < INT16_MAX; ++i) {
1253             char *full_name = g_strdup_printf("%s[%d]", name_no_array, i);
1254 
1255             ret = object_property_try_add(obj, full_name, type, get, set,
1256                                           release, opaque, NULL);
1257             g_free(full_name);
1258             if (ret) {
1259                 break;
1260             }
1261         }
1262         g_free(name_no_array);
1263         assert(ret);
1264         return ret;
1265     }
1266 
1267     if (object_property_find(obj, name) != NULL) {
1268         error_setg(errp, "attempt to add duplicate property '%s' to object (type '%s')",
1269                    name, object_get_typename(obj));
1270         return NULL;
1271     }
1272 
1273     prop = g_malloc0(sizeof(*prop));
1274 
1275     prop->name = g_strdup(name);
1276     prop->type = g_strdup(type);
1277 
1278     prop->get = get;
1279     prop->set = set;
1280     prop->release = release;
1281     prop->opaque = opaque;
1282 
1283     g_hash_table_insert(obj->properties, prop->name, prop);
1284     return prop;
1285 }
1286 
1287 ObjectProperty *
object_property_add(Object * obj,const char * name,const char * type,ObjectPropertyAccessor * get,ObjectPropertyAccessor * set,ObjectPropertyRelease * release,void * opaque)1288 object_property_add(Object *obj, const char *name, const char *type,
1289                     ObjectPropertyAccessor *get,
1290                     ObjectPropertyAccessor *set,
1291                     ObjectPropertyRelease *release,
1292                     void *opaque)
1293 {
1294     return object_property_try_add(obj, name, type, get, set, release,
1295                                    opaque, &error_abort);
1296 }
1297 
1298 ObjectProperty *
object_class_property_add(ObjectClass * klass,const char * name,const char * type,ObjectPropertyAccessor * get,ObjectPropertyAccessor * set,ObjectPropertyRelease * release,void * opaque)1299 object_class_property_add(ObjectClass *klass,
1300                           const char *name,
1301                           const char *type,
1302                           ObjectPropertyAccessor *get,
1303                           ObjectPropertyAccessor *set,
1304                           ObjectPropertyRelease *release,
1305                           void *opaque)
1306 {
1307     ObjectProperty *prop;
1308 
1309     assert(!object_class_property_find(klass, name));
1310 
1311     prop = g_malloc0(sizeof(*prop));
1312 
1313     prop->name = g_strdup(name);
1314     prop->type = g_strdup(type);
1315 
1316     prop->get = get;
1317     prop->set = set;
1318     prop->release = release;
1319     prop->opaque = opaque;
1320 
1321     g_hash_table_insert(klass->properties, prop->name, prop);
1322 
1323     return prop;
1324 }
1325 
object_property_find(Object * obj,const char * name)1326 ObjectProperty *object_property_find(Object *obj, const char *name)
1327 {
1328     ObjectProperty *prop;
1329     ObjectClass *klass = object_get_class(obj);
1330 
1331     prop = object_class_property_find(klass, name);
1332     if (prop) {
1333         return prop;
1334     }
1335 
1336     return g_hash_table_lookup(obj->properties, name);
1337 }
1338 
object_property_find_err(Object * obj,const char * name,Error ** errp)1339 ObjectProperty *object_property_find_err(Object *obj, const char *name,
1340                                          Error **errp)
1341 {
1342     ObjectProperty *prop = object_property_find(obj, name);
1343     if (!prop) {
1344         error_setg(errp, "Property '%s.%s' not found",
1345                    object_get_typename(obj), name);
1346     }
1347     return prop;
1348 }
1349 
object_property_iter_init(ObjectPropertyIterator * iter,Object * obj)1350 void object_property_iter_init(ObjectPropertyIterator *iter,
1351                                Object *obj)
1352 {
1353     g_hash_table_iter_init(&iter->iter, obj->properties);
1354     iter->nextclass = object_get_class(obj);
1355 }
1356 
object_property_iter_next(ObjectPropertyIterator * iter)1357 ObjectProperty *object_property_iter_next(ObjectPropertyIterator *iter)
1358 {
1359     gpointer key, val;
1360     while (!g_hash_table_iter_next(&iter->iter, &key, &val)) {
1361         if (!iter->nextclass) {
1362             return NULL;
1363         }
1364         g_hash_table_iter_init(&iter->iter, iter->nextclass->properties);
1365         iter->nextclass = object_class_get_parent(iter->nextclass);
1366     }
1367     return val;
1368 }
1369 
object_class_property_iter_init(ObjectPropertyIterator * iter,ObjectClass * klass)1370 void object_class_property_iter_init(ObjectPropertyIterator *iter,
1371                                      ObjectClass *klass)
1372 {
1373     g_hash_table_iter_init(&iter->iter, klass->properties);
1374     iter->nextclass = object_class_get_parent(klass);
1375 }
1376 
object_class_property_find(ObjectClass * klass,const char * name)1377 ObjectProperty *object_class_property_find(ObjectClass *klass, const char *name)
1378 {
1379     ObjectClass *parent_klass;
1380 
1381     parent_klass = object_class_get_parent(klass);
1382     if (parent_klass) {
1383         ObjectProperty *prop =
1384             object_class_property_find(parent_klass, name);
1385         if (prop) {
1386             return prop;
1387         }
1388     }
1389 
1390     return g_hash_table_lookup(klass->properties, name);
1391 }
1392 
object_class_property_find_err(ObjectClass * klass,const char * name,Error ** errp)1393 ObjectProperty *object_class_property_find_err(ObjectClass *klass,
1394                                                const char *name,
1395                                                Error **errp)
1396 {
1397     ObjectProperty *prop = object_class_property_find(klass, name);
1398     if (!prop) {
1399         error_setg(errp, "Property '.%s' not found", name);
1400     }
1401     return prop;
1402 }
1403 
1404 
object_property_del(Object * obj,const char * name)1405 void object_property_del(Object *obj, const char *name)
1406 {
1407     ObjectProperty *prop = g_hash_table_lookup(obj->properties, name);
1408 
1409     if (prop->release) {
1410         prop->release(obj, name, prop->opaque);
1411     }
1412     g_hash_table_remove(obj->properties, name);
1413 }
1414 
object_property_get(Object * obj,const char * name,Visitor * v,Error ** errp)1415 bool object_property_get(Object *obj, const char *name, Visitor *v,
1416                          Error **errp)
1417 {
1418     Error *err = NULL;
1419     ObjectProperty *prop = object_property_find_err(obj, name, errp);
1420 
1421     if (prop == NULL) {
1422         return false;
1423     }
1424 
1425     if (!prop->get) {
1426         error_setg(errp, "Property '%s.%s' is not readable",
1427                    object_get_typename(obj), name);
1428         return false;
1429     }
1430     prop->get(obj, v, name, prop->opaque, &err);
1431     error_propagate(errp, err);
1432     return !err;
1433 }
1434 
object_property_set(Object * obj,const char * name,Visitor * v,Error ** errp)1435 bool object_property_set(Object *obj, const char *name, Visitor *v,
1436                          Error **errp)
1437 {
1438     ERRP_GUARD();
1439     ObjectProperty *prop = object_property_find_err(obj, name, errp);
1440 
1441     if (prop == NULL) {
1442         return false;
1443     }
1444 
1445     if (!prop->set) {
1446         error_setg(errp, "Property '%s.%s' is not writable",
1447                    object_get_typename(obj), name);
1448         return false;
1449     }
1450     prop->set(obj, v, name, prop->opaque, errp);
1451     return !*errp;
1452 }
1453 
object_property_set_str(Object * obj,const char * name,const char * value,Error ** errp)1454 bool object_property_set_str(Object *obj, const char *name,
1455                              const char *value, Error **errp)
1456 {
1457     QString *qstr = qstring_from_str(value);
1458     bool ok = object_property_set_qobject(obj, name, QOBJECT(qstr), errp);
1459 
1460     qobject_unref(qstr);
1461     return ok;
1462 }
1463 
object_property_get_str(Object * obj,const char * name,Error ** errp)1464 char *object_property_get_str(Object *obj, const char *name,
1465                               Error **errp)
1466 {
1467     QObject *ret = object_property_get_qobject(obj, name, errp);
1468     QString *qstring;
1469     char *retval;
1470 
1471     if (!ret) {
1472         return NULL;
1473     }
1474     qstring = qobject_to(QString, ret);
1475     if (!qstring) {
1476         error_setg(errp, "Invalid parameter type for '%s', expected: string",
1477                    name);
1478         retval = NULL;
1479     } else {
1480         retval = g_strdup(qstring_get_str(qstring));
1481     }
1482 
1483     qobject_unref(ret);
1484     return retval;
1485 }
1486 
object_property_set_link(Object * obj,const char * name,Object * value,Error ** errp)1487 bool object_property_set_link(Object *obj, const char *name,
1488                               Object *value, Error **errp)
1489 {
1490     g_autofree char *path = NULL;
1491 
1492     if (value) {
1493         path = object_get_canonical_path(value);
1494     }
1495     return object_property_set_str(obj, name, path ?: "", errp);
1496 }
1497 
object_property_get_link(Object * obj,const char * name,Error ** errp)1498 Object *object_property_get_link(Object *obj, const char *name,
1499                                  Error **errp)
1500 {
1501     char *str = object_property_get_str(obj, name, errp);
1502     Object *target = NULL;
1503 
1504     if (str && *str) {
1505         target = object_resolve_path(str, NULL);
1506         if (!target) {
1507             error_set(errp, ERROR_CLASS_DEVICE_NOT_FOUND,
1508                       "Device '%s' not found", str);
1509         }
1510     }
1511 
1512     g_free(str);
1513     return target;
1514 }
1515 
object_property_set_bool(Object * obj,const char * name,bool value,Error ** errp)1516 bool object_property_set_bool(Object *obj, const char *name,
1517                               bool value, Error **errp)
1518 {
1519     QBool *qbool = qbool_from_bool(value);
1520     bool ok = object_property_set_qobject(obj, name, QOBJECT(qbool), errp);
1521 
1522     qobject_unref(qbool);
1523     return ok;
1524 }
1525 
object_property_get_bool(Object * obj,const char * name,Error ** errp)1526 bool object_property_get_bool(Object *obj, const char *name,
1527                               Error **errp)
1528 {
1529     QObject *ret = object_property_get_qobject(obj, name, errp);
1530     QBool *qbool;
1531     bool retval;
1532 
1533     if (!ret) {
1534         return false;
1535     }
1536     qbool = qobject_to(QBool, ret);
1537     if (!qbool) {
1538         error_setg(errp, "Invalid parameter type for '%s', expected: boolean",
1539                    name);
1540         retval = false;
1541     } else {
1542         retval = qbool_get_bool(qbool);
1543     }
1544 
1545     qobject_unref(ret);
1546     return retval;
1547 }
1548 
object_property_set_int(Object * obj,const char * name,int64_t value,Error ** errp)1549 bool object_property_set_int(Object *obj, const char *name,
1550                              int64_t value, Error **errp)
1551 {
1552     QNum *qnum = qnum_from_int(value);
1553     bool ok = object_property_set_qobject(obj, name, QOBJECT(qnum), errp);
1554 
1555     qobject_unref(qnum);
1556     return ok;
1557 }
1558 
object_property_get_int(Object * obj,const char * name,Error ** errp)1559 int64_t object_property_get_int(Object *obj, const char *name,
1560                                 Error **errp)
1561 {
1562     QObject *ret = object_property_get_qobject(obj, name, errp);
1563     QNum *qnum;
1564     int64_t retval;
1565 
1566     if (!ret) {
1567         return -1;
1568     }
1569 
1570     qnum = qobject_to(QNum, ret);
1571     if (!qnum || !qnum_get_try_int(qnum, &retval)) {
1572         error_setg(errp, "Invalid parameter type for '%s', expected: int",
1573                    name);
1574         retval = -1;
1575     }
1576 
1577     qobject_unref(ret);
1578     return retval;
1579 }
1580 
object_property_init_defval(Object * obj,ObjectProperty * prop)1581 static void object_property_init_defval(Object *obj, ObjectProperty *prop)
1582 {
1583     Visitor *v = qobject_input_visitor_new(prop->defval);
1584 
1585     assert(prop->set != NULL);
1586     prop->set(obj, v, prop->name, prop->opaque, &error_abort);
1587 
1588     visit_free(v);
1589 }
1590 
object_property_set_default(ObjectProperty * prop,QObject * defval)1591 static void object_property_set_default(ObjectProperty *prop, QObject *defval)
1592 {
1593     assert(!prop->defval);
1594     assert(!prop->init);
1595 
1596     prop->defval = defval;
1597     prop->init = object_property_init_defval;
1598 }
1599 
object_property_set_default_bool(ObjectProperty * prop,bool value)1600 void object_property_set_default_bool(ObjectProperty *prop, bool value)
1601 {
1602     object_property_set_default(prop, QOBJECT(qbool_from_bool(value)));
1603 }
1604 
object_property_set_default_str(ObjectProperty * prop,const char * value)1605 void object_property_set_default_str(ObjectProperty *prop, const char *value)
1606 {
1607     object_property_set_default(prop, QOBJECT(qstring_from_str(value)));
1608 }
1609 
object_property_set_default_list(ObjectProperty * prop)1610 void object_property_set_default_list(ObjectProperty *prop)
1611 {
1612     object_property_set_default(prop, QOBJECT(qlist_new()));
1613 }
1614 
object_property_set_default_int(ObjectProperty * prop,int64_t value)1615 void object_property_set_default_int(ObjectProperty *prop, int64_t value)
1616 {
1617     object_property_set_default(prop, QOBJECT(qnum_from_int(value)));
1618 }
1619 
object_property_set_default_uint(ObjectProperty * prop,uint64_t value)1620 void object_property_set_default_uint(ObjectProperty *prop, uint64_t value)
1621 {
1622     object_property_set_default(prop, QOBJECT(qnum_from_uint(value)));
1623 }
1624 
object_property_set_uint(Object * obj,const char * name,uint64_t value,Error ** errp)1625 bool object_property_set_uint(Object *obj, const char *name,
1626                               uint64_t value, Error **errp)
1627 {
1628     QNum *qnum = qnum_from_uint(value);
1629     bool ok = object_property_set_qobject(obj, name, QOBJECT(qnum), errp);
1630 
1631     qobject_unref(qnum);
1632     return ok;
1633 }
1634 
object_property_get_uint(Object * obj,const char * name,Error ** errp)1635 uint64_t object_property_get_uint(Object *obj, const char *name,
1636                                   Error **errp)
1637 {
1638     QObject *ret = object_property_get_qobject(obj, name, errp);
1639     QNum *qnum;
1640     uint64_t retval;
1641 
1642     if (!ret) {
1643         return 0;
1644     }
1645     qnum = qobject_to(QNum, ret);
1646     if (!qnum || !qnum_get_try_uint(qnum, &retval)) {
1647         error_setg(errp, "Invalid parameter type for '%s', expected: uint",
1648                    name);
1649         retval = 0;
1650     }
1651 
1652     qobject_unref(ret);
1653     return retval;
1654 }
1655 
1656 typedef struct EnumProperty {
1657     const QEnumLookup *lookup;
1658     int (*get)(Object *, Error **);
1659     void (*set)(Object *, int, Error **);
1660 } EnumProperty;
1661 
object_property_get_enum(Object * obj,const char * name,const char * typename,Error ** errp)1662 int object_property_get_enum(Object *obj, const char *name,
1663                              const char *typename, Error **errp)
1664 {
1665     char *str;
1666     int ret;
1667     ObjectProperty *prop = object_property_find_err(obj, name, errp);
1668     EnumProperty *enumprop;
1669 
1670     if (prop == NULL) {
1671         return -1;
1672     }
1673 
1674     if (!g_str_equal(prop->type, typename)) {
1675         error_setg(errp, "Property %s on %s is not '%s' enum type",
1676                    name, object_class_get_name(
1677                        object_get_class(obj)), typename);
1678         return -1;
1679     }
1680 
1681     enumprop = prop->opaque;
1682 
1683     str = object_property_get_str(obj, name, errp);
1684     if (!str) {
1685         return -1;
1686     }
1687 
1688     ret = qapi_enum_parse(enumprop->lookup, str, -1, errp);
1689     g_free(str);
1690 
1691     return ret;
1692 }
1693 
object_property_parse(Object * obj,const char * name,const char * string,Error ** errp)1694 bool object_property_parse(Object *obj, const char *name,
1695                            const char *string, Error **errp)
1696 {
1697     Visitor *v = string_input_visitor_new(string);
1698     bool ok = object_property_set(obj, name, v, errp);
1699 
1700     visit_free(v);
1701     return ok;
1702 }
1703 
object_property_print(Object * obj,const char * name,bool human,Error ** errp)1704 char *object_property_print(Object *obj, const char *name, bool human,
1705                             Error **errp)
1706 {
1707     Visitor *v;
1708     char *string = NULL;
1709 
1710     v = string_output_visitor_new(human, &string);
1711     if (!object_property_get(obj, name, v, errp)) {
1712         goto out;
1713     }
1714 
1715     visit_complete(v, &string);
1716 
1717 out:
1718     visit_free(v);
1719     return string;
1720 }
1721 
object_property_get_type(Object * obj,const char * name,Error ** errp)1722 const char *object_property_get_type(Object *obj, const char *name, Error **errp)
1723 {
1724     ObjectProperty *prop = object_property_find_err(obj, name, errp);
1725     if (prop == NULL) {
1726         return NULL;
1727     }
1728 
1729     return prop->type;
1730 }
1731 
1732 static const char *const root_containers[] = {
1733     "chardevs",
1734     "objects",
1735     "backend"
1736 };
1737 
object_root_initialize(void)1738 static Object *object_root_initialize(void)
1739 {
1740     Object *root = object_new(TYPE_CONTAINER);
1741     int i;
1742 
1743     /*
1744      * Create all QEMU system containers.  "machine" and its sub-containers
1745      * are only created when machine initializes (qemu_create_machine()).
1746      */
1747     for (i = 0; i < ARRAY_SIZE(root_containers); i++) {
1748         object_property_add_new_container(root, root_containers[i]);
1749     }
1750 
1751     return root;
1752 }
1753 
object_get_container(const char * name)1754 Object *object_get_container(const char *name)
1755 {
1756     Object *container;
1757 
1758     container = object_resolve_path_component(object_get_root(), name);
1759     assert(object_dynamic_cast(container, TYPE_CONTAINER));
1760 
1761     return container;
1762 }
1763 
object_get_root(void)1764 Object *object_get_root(void)
1765 {
1766     static Object *root;
1767 
1768     if (!root) {
1769         root = object_root_initialize();
1770     }
1771 
1772     return root;
1773 }
1774 
object_get_objects_root(void)1775 Object *object_get_objects_root(void)
1776 {
1777     return object_get_container("objects");
1778 }
1779 
object_get_internal_root(void)1780 Object *object_get_internal_root(void)
1781 {
1782     static Object *internal_root;
1783 
1784     if (!internal_root) {
1785         internal_root = object_new(TYPE_CONTAINER);
1786     }
1787 
1788     return internal_root;
1789 }
1790 
object_get_child_property(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)1791 static void object_get_child_property(Object *obj, Visitor *v,
1792                                       const char *name, void *opaque,
1793                                       Error **errp)
1794 {
1795     Object *child = opaque;
1796     char *path;
1797 
1798     path = object_get_canonical_path(child);
1799     visit_type_str(v, name, &path, errp);
1800     g_free(path);
1801 }
1802 
object_resolve_child_property(Object * parent,void * opaque,const char * part)1803 static Object *object_resolve_child_property(Object *parent, void *opaque,
1804                                              const char *part)
1805 {
1806     return opaque;
1807 }
1808 
object_finalize_child_property(Object * obj,const char * name,void * opaque)1809 static void object_finalize_child_property(Object *obj, const char *name,
1810                                            void *opaque)
1811 {
1812     Object *child = opaque;
1813 
1814     if (child->class->unparent) {
1815         (child->class->unparent)(child);
1816     }
1817     child->parent = NULL;
1818     object_unref(child);
1819 }
1820 
1821 ObjectProperty *
object_property_try_add_child(Object * obj,const char * name,Object * child,Error ** errp)1822 object_property_try_add_child(Object *obj, const char *name,
1823                               Object *child, Error **errp)
1824 {
1825     g_autofree char *type = NULL;
1826     ObjectProperty *op;
1827 
1828     assert(!child->parent);
1829 
1830     type = g_strdup_printf("child<%s>", object_get_typename(child));
1831 
1832     op = object_property_try_add(obj, name, type, object_get_child_property,
1833                                  NULL, object_finalize_child_property,
1834                                  child, errp);
1835     if (!op) {
1836         return NULL;
1837     }
1838     op->resolve = object_resolve_child_property;
1839     object_ref(child);
1840     child->parent = obj;
1841     return op;
1842 }
1843 
1844 ObjectProperty *
object_property_add_child(Object * obj,const char * name,Object * child)1845 object_property_add_child(Object *obj, const char *name,
1846                           Object *child)
1847 {
1848     return object_property_try_add_child(obj, name, child, &error_abort);
1849 }
1850 
object_property_allow_set_link(const Object * obj,const char * name,Object * val,Error ** errp)1851 void object_property_allow_set_link(const Object *obj, const char *name,
1852                                     Object *val, Error **errp)
1853 {
1854     /* Allow the link to be set, always */
1855 }
1856 
1857 typedef struct {
1858     union {
1859         Object **targetp;
1860         Object *target; /* if OBJ_PROP_LINK_DIRECT, when holding the pointer  */
1861         ptrdiff_t offset; /* if OBJ_PROP_LINK_CLASS */
1862     };
1863     void (*check)(const Object *, const char *, Object *, Error **);
1864     ObjectPropertyLinkFlags flags;
1865 } LinkProperty;
1866 
1867 static Object **
object_link_get_targetp(Object * obj,LinkProperty * lprop)1868 object_link_get_targetp(Object *obj, LinkProperty *lprop)
1869 {
1870     if (lprop->flags & OBJ_PROP_LINK_DIRECT) {
1871         return &lprop->target;
1872     } else if (lprop->flags & OBJ_PROP_LINK_CLASS) {
1873         return (void *)obj + lprop->offset;
1874     } else {
1875         return lprop->targetp;
1876     }
1877 }
1878 
object_get_link_property(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)1879 static void object_get_link_property(Object *obj, Visitor *v,
1880                                      const char *name, void *opaque,
1881                                      Error **errp)
1882 {
1883     LinkProperty *lprop = opaque;
1884     Object **targetp = object_link_get_targetp(obj, lprop);
1885     char *path;
1886 
1887     if (*targetp) {
1888         path = object_get_canonical_path(*targetp);
1889         visit_type_str(v, name, &path, errp);
1890         g_free(path);
1891     } else {
1892         path = (char *)"";
1893         visit_type_str(v, name, &path, errp);
1894     }
1895 }
1896 
1897 /*
1898  * object_resolve_link:
1899  *
1900  * Lookup an object and ensure its type matches the link property type.  This
1901  * is similar to object_resolve_path() except type verification against the
1902  * link property is performed.
1903  *
1904  * Returns: The matched object or NULL on path lookup failures.
1905  */
object_resolve_link(Object * obj,const char * name,const char * path,Error ** errp)1906 static Object *object_resolve_link(Object *obj, const char *name,
1907                                    const char *path, Error **errp)
1908 {
1909     const char *type;
1910     char *target_type;
1911     bool ambiguous = false;
1912     Object *target;
1913 
1914     /* Go from link<FOO> to FOO.  */
1915     type = object_property_get_type(obj, name, NULL);
1916     target_type = g_strndup(&type[5], strlen(type) - 6);
1917     target = object_resolve_path_type(path, target_type, &ambiguous);
1918 
1919     if (ambiguous) {
1920         error_setg(errp, "Path '%s' does not uniquely identify an object",
1921                    path);
1922     } else if (!target) {
1923         target = object_resolve_path(path, &ambiguous);
1924         if (target || ambiguous) {
1925             error_setg(errp, "Invalid parameter type for '%s', expected: %s",
1926                              name, target_type);
1927         } else {
1928             error_set(errp, ERROR_CLASS_DEVICE_NOT_FOUND,
1929                       "Device '%s' not found", path);
1930         }
1931         target = NULL;
1932     }
1933     g_free(target_type);
1934 
1935     return target;
1936 }
1937 
object_set_link_property(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)1938 static void object_set_link_property(Object *obj, Visitor *v,
1939                                      const char *name, void *opaque,
1940                                      Error **errp)
1941 {
1942     Error *local_err = NULL;
1943     LinkProperty *prop = opaque;
1944     Object **targetp = object_link_get_targetp(obj, prop);
1945     Object *old_target = *targetp;
1946     Object *new_target;
1947     char *path = NULL;
1948 
1949     if (!visit_type_str(v, name, &path, errp)) {
1950         return;
1951     }
1952 
1953     if (*path) {
1954         new_target = object_resolve_link(obj, name, path, errp);
1955         if (!new_target) {
1956             g_free(path);
1957             return;
1958         }
1959     } else {
1960         new_target = NULL;
1961     }
1962 
1963     g_free(path);
1964 
1965     prop->check(obj, name, new_target, &local_err);
1966     if (local_err) {
1967         error_propagate(errp, local_err);
1968         return;
1969     }
1970 
1971     *targetp = new_target;
1972     if (prop->flags & OBJ_PROP_LINK_STRONG) {
1973         object_ref(new_target);
1974         object_unref(old_target);
1975     }
1976 }
1977 
object_resolve_link_property(Object * parent,void * opaque,const char * part)1978 static Object *object_resolve_link_property(Object *parent, void *opaque,
1979                                             const char *part)
1980 {
1981     LinkProperty *lprop = opaque;
1982 
1983     return *object_link_get_targetp(parent, lprop);
1984 }
1985 
object_release_link_property(Object * obj,const char * name,void * opaque)1986 static void object_release_link_property(Object *obj, const char *name,
1987                                          void *opaque)
1988 {
1989     LinkProperty *prop = opaque;
1990     Object **targetp = object_link_get_targetp(obj, prop);
1991 
1992     if ((prop->flags & OBJ_PROP_LINK_STRONG) && *targetp) {
1993         object_unref(*targetp);
1994     }
1995     if (!(prop->flags & OBJ_PROP_LINK_CLASS)) {
1996         g_free(prop);
1997     }
1998 }
1999 
2000 static ObjectProperty *
object_add_link_prop(Object * obj,const char * name,const char * type,void * ptr,void (* check)(const Object *,const char *,Object *,Error **),ObjectPropertyLinkFlags flags)2001 object_add_link_prop(Object *obj, const char *name,
2002                      const char *type, void *ptr,
2003                      void (*check)(const Object *, const char *,
2004                                    Object *, Error **),
2005                      ObjectPropertyLinkFlags flags)
2006 {
2007     LinkProperty *prop = g_malloc(sizeof(*prop));
2008     g_autofree char *full_type = NULL;
2009     ObjectProperty *op;
2010 
2011     if (flags & OBJ_PROP_LINK_DIRECT) {
2012         prop->target = ptr;
2013     } else {
2014         prop->targetp = ptr;
2015     }
2016     prop->check = check;
2017     prop->flags = flags;
2018 
2019     full_type = g_strdup_printf("link<%s>", type);
2020 
2021     op = object_property_add(obj, name, full_type,
2022                              object_get_link_property,
2023                              check ? object_set_link_property : NULL,
2024                              object_release_link_property,
2025                              prop);
2026     op->resolve = object_resolve_link_property;
2027     return op;
2028 }
2029 
2030 ObjectProperty *
object_property_add_link(Object * obj,const char * name,const char * type,Object ** targetp,void (* check)(const Object *,const char *,Object *,Error **),ObjectPropertyLinkFlags flags)2031 object_property_add_link(Object *obj, const char *name,
2032                          const char *type, Object **targetp,
2033                          void (*check)(const Object *, const char *,
2034                                        Object *, Error **),
2035                          ObjectPropertyLinkFlags flags)
2036 {
2037     return object_add_link_prop(obj, name, type, targetp, check, flags);
2038 }
2039 
2040 ObjectProperty *
object_class_property_add_link(ObjectClass * oc,const char * name,const char * type,ptrdiff_t offset,void (* check)(const Object * obj,const char * name,Object * val,Error ** errp),ObjectPropertyLinkFlags flags)2041 object_class_property_add_link(ObjectClass *oc,
2042     const char *name,
2043     const char *type, ptrdiff_t offset,
2044     void (*check)(const Object *obj, const char *name,
2045                   Object *val, Error **errp),
2046     ObjectPropertyLinkFlags flags)
2047 {
2048     LinkProperty *prop = g_new0(LinkProperty, 1);
2049     char *full_type;
2050     ObjectProperty *op;
2051 
2052     prop->offset = offset;
2053     prop->check = check;
2054     prop->flags = flags | OBJ_PROP_LINK_CLASS;
2055 
2056     full_type = g_strdup_printf("link<%s>", type);
2057 
2058     op = object_class_property_add(oc, name, full_type,
2059                                    object_get_link_property,
2060                                    check ? object_set_link_property : NULL,
2061                                    object_release_link_property,
2062                                    prop);
2063 
2064     op->resolve = object_resolve_link_property;
2065 
2066     g_free(full_type);
2067     return op;
2068 }
2069 
2070 ObjectProperty *
object_property_add_const_link(Object * obj,const char * name,Object * target)2071 object_property_add_const_link(Object *obj, const char *name,
2072                                Object *target)
2073 {
2074     return object_add_link_prop(obj, name,
2075                                 object_get_typename(target), target,
2076                                 NULL, OBJ_PROP_LINK_DIRECT);
2077 }
2078 
object_get_canonical_path_component(const Object * obj)2079 const char *object_get_canonical_path_component(const Object *obj)
2080 {
2081     ObjectProperty *prop = NULL;
2082     GHashTableIter iter;
2083 
2084     if (obj->parent == NULL) {
2085         return NULL;
2086     }
2087 
2088     g_hash_table_iter_init(&iter, obj->parent->properties);
2089     while (g_hash_table_iter_next(&iter, NULL, (gpointer *)&prop)) {
2090         if (!object_property_is_child(prop)) {
2091             continue;
2092         }
2093 
2094         if (prop->opaque == obj) {
2095             return prop->name;
2096         }
2097     }
2098 
2099     /* obj had a parent but was not a child, should never happen */
2100     g_assert_not_reached();
2101 }
2102 
object_get_canonical_path(const Object * obj)2103 char *object_get_canonical_path(const Object *obj)
2104 {
2105     Object *root = object_get_root();
2106     char *newpath, *path = NULL;
2107 
2108     if (obj == root) {
2109         return g_strdup("/");
2110     }
2111 
2112     do {
2113         const char *component = object_get_canonical_path_component(obj);
2114 
2115         if (!component) {
2116             /* A canonical path must be complete, so discard what was
2117              * collected so far.
2118              */
2119             g_free(path);
2120             return NULL;
2121         }
2122 
2123         newpath = g_strdup_printf("/%s%s", component, path ? path : "");
2124         g_free(path);
2125         path = newpath;
2126         obj = obj->parent;
2127     } while (obj != root);
2128 
2129     return path;
2130 }
2131 
object_resolve_path_component(Object * parent,const char * part)2132 Object *object_resolve_path_component(Object *parent, const char *part)
2133 {
2134     ObjectProperty *prop = object_property_find(parent, part);
2135     if (prop == NULL) {
2136         return NULL;
2137     }
2138 
2139     if (prop->resolve) {
2140         return prop->resolve(parent, prop->opaque, part);
2141     } else {
2142         return NULL;
2143     }
2144 }
2145 
object_resolve_abs_path(Object * parent,char ** parts,const char * typename)2146 static Object *object_resolve_abs_path(Object *parent,
2147                                           char **parts,
2148                                           const char *typename)
2149 {
2150     Object *child;
2151 
2152     if (*parts == NULL) {
2153         return object_dynamic_cast(parent, typename);
2154     }
2155 
2156     if (strcmp(*parts, "") == 0) {
2157         return object_resolve_abs_path(parent, parts + 1, typename);
2158     }
2159 
2160     child = object_resolve_path_component(parent, *parts);
2161     if (!child) {
2162         return NULL;
2163     }
2164 
2165     return object_resolve_abs_path(child, parts + 1, typename);
2166 }
2167 
object_resolve_partial_path(Object * parent,char ** parts,const char * typename,bool * ambiguous)2168 static Object *object_resolve_partial_path(Object *parent,
2169                                            char **parts,
2170                                            const char *typename,
2171                                            bool *ambiguous)
2172 {
2173     Object *obj;
2174     GHashTableIter iter;
2175     ObjectProperty *prop;
2176 
2177     obj = object_resolve_abs_path(parent, parts, typename);
2178 
2179     g_hash_table_iter_init(&iter, parent->properties);
2180     while (g_hash_table_iter_next(&iter, NULL, (gpointer *)&prop)) {
2181         Object *found;
2182 
2183         if (!object_property_is_child(prop)) {
2184             continue;
2185         }
2186 
2187         found = object_resolve_partial_path(prop->opaque, parts,
2188                                             typename, ambiguous);
2189         if (found) {
2190             if (obj) {
2191                 *ambiguous = true;
2192                 return NULL;
2193             }
2194             obj = found;
2195         }
2196 
2197         if (*ambiguous) {
2198             return NULL;
2199         }
2200     }
2201 
2202     return obj;
2203 }
2204 
object_resolve_path_type(const char * path,const char * typename,bool * ambiguous)2205 Object *object_resolve_path_type(const char *path, const char *typename,
2206                                  bool *ambiguous)
2207 {
2208     Object *obj;
2209     char **parts;
2210 
2211     parts = g_strsplit(path, "/", 0);
2212     assert(parts);
2213 
2214     if (parts[0] == NULL || strcmp(parts[0], "") != 0) {
2215         bool ambig = false;
2216         obj = object_resolve_partial_path(object_get_root(), parts,
2217                                           typename, &ambig);
2218         if (ambiguous) {
2219             *ambiguous = ambig;
2220         }
2221     } else {
2222         obj = object_resolve_abs_path(object_get_root(), parts + 1, typename);
2223         if (ambiguous) {
2224             *ambiguous = false;
2225         }
2226     }
2227 
2228     g_strfreev(parts);
2229 
2230     return obj;
2231 }
2232 
object_resolve_path(const char * path,bool * ambiguous)2233 Object *object_resolve_path(const char *path, bool *ambiguous)
2234 {
2235     return object_resolve_path_type(path, TYPE_OBJECT, ambiguous);
2236 }
2237 
object_resolve_path_at(Object * parent,const char * path)2238 Object *object_resolve_path_at(Object *parent, const char *path)
2239 {
2240     g_auto(GStrv) parts = g_strsplit(path, "/", 0);
2241 
2242     if (*path == '/') {
2243         return object_resolve_abs_path(object_get_root(), parts + 1,
2244                                        TYPE_OBJECT);
2245     }
2246     return object_resolve_abs_path(parent, parts, TYPE_OBJECT);
2247 }
2248 
object_resolve_type_unambiguous(const char * typename,Error ** errp)2249 Object *object_resolve_type_unambiguous(const char *typename, Error **errp)
2250 {
2251     bool ambig = false;
2252     Object *o = object_resolve_path_type("", typename, &ambig);
2253 
2254     if (ambig) {
2255         error_setg(errp, "More than one object of type %s", typename);
2256         return NULL;
2257     }
2258     if (!o) {
2259         error_setg(errp, "No object found of type %s", typename);
2260         return NULL;
2261     }
2262     return o;
2263 }
2264 
2265 typedef struct StringProperty
2266 {
2267     char *(*get)(Object *, Error **);
2268     void (*set)(Object *, const char *, Error **);
2269 } StringProperty;
2270 
property_get_str(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2271 static void property_get_str(Object *obj, Visitor *v, const char *name,
2272                              void *opaque, Error **errp)
2273 {
2274     StringProperty *prop = opaque;
2275     char *value;
2276     Error *err = NULL;
2277 
2278     value = prop->get(obj, &err);
2279     if (err) {
2280         error_propagate(errp, err);
2281         return;
2282     }
2283 
2284     visit_type_str(v, name, &value, errp);
2285     g_free(value);
2286 }
2287 
property_set_str(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2288 static void property_set_str(Object *obj, Visitor *v, const char *name,
2289                              void *opaque, Error **errp)
2290 {
2291     StringProperty *prop = opaque;
2292     char *value;
2293 
2294     if (!visit_type_str(v, name, &value, errp)) {
2295         return;
2296     }
2297 
2298     prop->set(obj, value, errp);
2299     g_free(value);
2300 }
2301 
property_release_data(Object * obj,const char * name,void * opaque)2302 static void property_release_data(Object *obj, const char *name,
2303                                   void *opaque)
2304 {
2305     g_free(opaque);
2306 }
2307 
2308 ObjectProperty *
object_property_add_str(Object * obj,const char * name,char * (* get)(Object *,Error **),void (* set)(Object *,const char *,Error **))2309 object_property_add_str(Object *obj, const char *name,
2310                         char *(*get)(Object *, Error **),
2311                         void (*set)(Object *, const char *, Error **))
2312 {
2313     StringProperty *prop = g_malloc0(sizeof(*prop));
2314 
2315     prop->get = get;
2316     prop->set = set;
2317 
2318     return object_property_add(obj, name, "string",
2319                                get ? property_get_str : NULL,
2320                                set ? property_set_str : NULL,
2321                                property_release_data,
2322                                prop);
2323 }
2324 
2325 ObjectProperty *
object_class_property_add_str(ObjectClass * klass,const char * name,char * (* get)(Object *,Error **),void (* set)(Object *,const char *,Error **))2326 object_class_property_add_str(ObjectClass *klass, const char *name,
2327                                    char *(*get)(Object *, Error **),
2328                                    void (*set)(Object *, const char *,
2329                                                Error **))
2330 {
2331     StringProperty *prop = g_malloc0(sizeof(*prop));
2332 
2333     prop->get = get;
2334     prop->set = set;
2335 
2336     return object_class_property_add(klass, name, "string",
2337                                      get ? property_get_str : NULL,
2338                                      set ? property_set_str : NULL,
2339                                      NULL,
2340                                      prop);
2341 }
2342 
2343 typedef struct BoolProperty
2344 {
2345     bool (*get)(Object *, Error **);
2346     void (*set)(Object *, bool, Error **);
2347 } BoolProperty;
2348 
property_get_bool(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2349 static void property_get_bool(Object *obj, Visitor *v, const char *name,
2350                               void *opaque, Error **errp)
2351 {
2352     BoolProperty *prop = opaque;
2353     bool value;
2354     Error *err = NULL;
2355 
2356     value = prop->get(obj, &err);
2357     if (err) {
2358         error_propagate(errp, err);
2359         return;
2360     }
2361 
2362     visit_type_bool(v, name, &value, errp);
2363 }
2364 
property_set_bool(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2365 static void property_set_bool(Object *obj, Visitor *v, const char *name,
2366                               void *opaque, Error **errp)
2367 {
2368     BoolProperty *prop = opaque;
2369     bool value;
2370 
2371     if (!visit_type_bool(v, name, &value, errp)) {
2372         return;
2373     }
2374 
2375     prop->set(obj, value, errp);
2376 }
2377 
2378 ObjectProperty *
object_property_add_bool(Object * obj,const char * name,bool (* get)(Object *,Error **),void (* set)(Object *,bool,Error **))2379 object_property_add_bool(Object *obj, const char *name,
2380                          bool (*get)(Object *, Error **),
2381                          void (*set)(Object *, bool, Error **))
2382 {
2383     BoolProperty *prop = g_malloc0(sizeof(*prop));
2384 
2385     prop->get = get;
2386     prop->set = set;
2387 
2388     return object_property_add(obj, name, "bool",
2389                                get ? property_get_bool : NULL,
2390                                set ? property_set_bool : NULL,
2391                                property_release_data,
2392                                prop);
2393 }
2394 
2395 ObjectProperty *
object_class_property_add_bool(ObjectClass * klass,const char * name,bool (* get)(Object *,Error **),void (* set)(Object *,bool,Error **))2396 object_class_property_add_bool(ObjectClass *klass, const char *name,
2397                                     bool (*get)(Object *, Error **),
2398                                     void (*set)(Object *, bool, Error **))
2399 {
2400     BoolProperty *prop = g_malloc0(sizeof(*prop));
2401 
2402     prop->get = get;
2403     prop->set = set;
2404 
2405     return object_class_property_add(klass, name, "bool",
2406                                      get ? property_get_bool : NULL,
2407                                      set ? property_set_bool : NULL,
2408                                      NULL,
2409                                      prop);
2410 }
2411 
property_get_enum(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2412 static void property_get_enum(Object *obj, Visitor *v, const char *name,
2413                               void *opaque, Error **errp)
2414 {
2415     EnumProperty *prop = opaque;
2416     int value;
2417     Error *err = NULL;
2418 
2419     value = prop->get(obj, &err);
2420     if (err) {
2421         error_propagate(errp, err);
2422         return;
2423     }
2424 
2425     visit_type_enum(v, name, &value, prop->lookup, errp);
2426 }
2427 
property_set_enum(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2428 static void property_set_enum(Object *obj, Visitor *v, const char *name,
2429                               void *opaque, Error **errp)
2430 {
2431     EnumProperty *prop = opaque;
2432     int value;
2433 
2434     if (!visit_type_enum(v, name, &value, prop->lookup, errp)) {
2435         return;
2436     }
2437     prop->set(obj, value, errp);
2438 }
2439 
2440 ObjectProperty *
object_property_add_enum(Object * obj,const char * name,const char * typename,const QEnumLookup * lookup,int (* get)(Object *,Error **),void (* set)(Object *,int,Error **))2441 object_property_add_enum(Object *obj, const char *name,
2442                          const char *typename,
2443                          const QEnumLookup *lookup,
2444                          int (*get)(Object *, Error **),
2445                          void (*set)(Object *, int, Error **))
2446 {
2447     EnumProperty *prop = g_malloc(sizeof(*prop));
2448 
2449     prop->lookup = lookup;
2450     prop->get = get;
2451     prop->set = set;
2452 
2453     return object_property_add(obj, name, typename,
2454                                get ? property_get_enum : NULL,
2455                                set ? property_set_enum : NULL,
2456                                property_release_data,
2457                                prop);
2458 }
2459 
2460 ObjectProperty *
object_class_property_add_enum(ObjectClass * klass,const char * name,const char * typename,const QEnumLookup * lookup,int (* get)(Object *,Error **),void (* set)(Object *,int,Error **))2461 object_class_property_add_enum(ObjectClass *klass, const char *name,
2462                                     const char *typename,
2463                                     const QEnumLookup *lookup,
2464                                     int (*get)(Object *, Error **),
2465                                     void (*set)(Object *, int, Error **))
2466 {
2467     EnumProperty *prop = g_malloc(sizeof(*prop));
2468 
2469     prop->lookup = lookup;
2470     prop->get = get;
2471     prop->set = set;
2472 
2473     return object_class_property_add(klass, name, typename,
2474                                      get ? property_get_enum : NULL,
2475                                      set ? property_set_enum : NULL,
2476                                      NULL,
2477                                      prop);
2478 }
2479 
2480 typedef struct TMProperty {
2481     void (*get)(Object *, struct tm *, Error **);
2482 } TMProperty;
2483 
property_get_tm(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2484 static void property_get_tm(Object *obj, Visitor *v, const char *name,
2485                             void *opaque, Error **errp)
2486 {
2487     TMProperty *prop = opaque;
2488     Error *err = NULL;
2489     struct tm value;
2490 
2491     prop->get(obj, &value, &err);
2492     if (err) {
2493         error_propagate(errp, err);
2494         return;
2495     }
2496 
2497     if (!visit_start_struct(v, name, NULL, 0, errp)) {
2498         return;
2499     }
2500     if (!visit_type_int32(v, "tm_year", &value.tm_year, errp)) {
2501         goto out_end;
2502     }
2503     if (!visit_type_int32(v, "tm_mon", &value.tm_mon, errp)) {
2504         goto out_end;
2505     }
2506     if (!visit_type_int32(v, "tm_mday", &value.tm_mday, errp)) {
2507         goto out_end;
2508     }
2509     if (!visit_type_int32(v, "tm_hour", &value.tm_hour, errp)) {
2510         goto out_end;
2511     }
2512     if (!visit_type_int32(v, "tm_min", &value.tm_min, errp)) {
2513         goto out_end;
2514     }
2515     if (!visit_type_int32(v, "tm_sec", &value.tm_sec, errp)) {
2516         goto out_end;
2517     }
2518     visit_check_struct(v, errp);
2519 out_end:
2520     visit_end_struct(v, NULL);
2521 }
2522 
2523 ObjectProperty *
object_property_add_tm(Object * obj,const char * name,void (* get)(Object *,struct tm *,Error **))2524 object_property_add_tm(Object *obj, const char *name,
2525                        void (*get)(Object *, struct tm *, Error **))
2526 {
2527     TMProperty *prop = g_malloc0(sizeof(*prop));
2528 
2529     prop->get = get;
2530 
2531     return object_property_add(obj, name, "struct tm",
2532                                get ? property_get_tm : NULL, NULL,
2533                                property_release_data,
2534                                prop);
2535 }
2536 
2537 ObjectProperty *
object_class_property_add_tm(ObjectClass * klass,const char * name,void (* get)(Object *,struct tm *,Error **))2538 object_class_property_add_tm(ObjectClass *klass, const char *name,
2539                              void (*get)(Object *, struct tm *, Error **))
2540 {
2541     TMProperty *prop = g_malloc0(sizeof(*prop));
2542 
2543     prop->get = get;
2544 
2545     return object_class_property_add(klass, name, "struct tm",
2546                                      get ? property_get_tm : NULL,
2547                                      NULL, NULL, prop);
2548 }
2549 
object_get_type(Object * obj,Error ** errp)2550 static char *object_get_type(Object *obj, Error **errp)
2551 {
2552     return g_strdup(object_get_typename(obj));
2553 }
2554 
property_get_uint8_ptr(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2555 static void property_get_uint8_ptr(Object *obj, Visitor *v, const char *name,
2556                                    void *opaque, Error **errp)
2557 {
2558     uint8_t value = *(uint8_t *)opaque;
2559     visit_type_uint8(v, name, &value, errp);
2560 }
2561 
property_set_uint8_ptr(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2562 static void property_set_uint8_ptr(Object *obj, Visitor *v, const char *name,
2563                                    void *opaque, Error **errp)
2564 {
2565     uint8_t *field = opaque;
2566     uint8_t value;
2567 
2568     if (!visit_type_uint8(v, name, &value, errp)) {
2569         return;
2570     }
2571 
2572     *field = value;
2573 }
2574 
property_get_uint16_ptr(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2575 static void property_get_uint16_ptr(Object *obj, Visitor *v, const char *name,
2576                                     void *opaque, Error **errp)
2577 {
2578     uint16_t value = *(uint16_t *)opaque;
2579     visit_type_uint16(v, name, &value, errp);
2580 }
2581 
property_set_uint16_ptr(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2582 static void property_set_uint16_ptr(Object *obj, Visitor *v, const char *name,
2583                                     void *opaque, Error **errp)
2584 {
2585     uint16_t *field = opaque;
2586     uint16_t value;
2587 
2588     if (!visit_type_uint16(v, name, &value, errp)) {
2589         return;
2590     }
2591 
2592     *field = value;
2593 }
2594 
property_get_uint32_ptr(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2595 static void property_get_uint32_ptr(Object *obj, Visitor *v, const char *name,
2596                                     void *opaque, Error **errp)
2597 {
2598     uint32_t value = *(uint32_t *)opaque;
2599     visit_type_uint32(v, name, &value, errp);
2600 }
2601 
property_set_uint32_ptr(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2602 static void property_set_uint32_ptr(Object *obj, Visitor *v, const char *name,
2603                                     void *opaque, Error **errp)
2604 {
2605     uint32_t *field = opaque;
2606     uint32_t value;
2607 
2608     if (!visit_type_uint32(v, name, &value, errp)) {
2609         return;
2610     }
2611 
2612     *field = value;
2613 }
2614 
property_get_uint64_ptr(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2615 static void property_get_uint64_ptr(Object *obj, Visitor *v, const char *name,
2616                                     void *opaque, Error **errp)
2617 {
2618     uint64_t value = *(uint64_t *)opaque;
2619     visit_type_uint64(v, name, &value, errp);
2620 }
2621 
property_set_uint64_ptr(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2622 static void property_set_uint64_ptr(Object *obj, Visitor *v, const char *name,
2623                                     void *opaque, Error **errp)
2624 {
2625     uint64_t *field = opaque;
2626     uint64_t value;
2627 
2628     if (!visit_type_uint64(v, name, &value, errp)) {
2629         return;
2630     }
2631 
2632     *field = value;
2633 }
2634 
2635 ObjectProperty *
object_property_add_uint8_ptr(Object * obj,const char * name,const uint8_t * v,ObjectPropertyFlags flags)2636 object_property_add_uint8_ptr(Object *obj, const char *name,
2637                               const uint8_t *v,
2638                               ObjectPropertyFlags flags)
2639 {
2640     ObjectPropertyAccessor *getter = NULL;
2641     ObjectPropertyAccessor *setter = NULL;
2642 
2643     if ((flags & OBJ_PROP_FLAG_READ) == OBJ_PROP_FLAG_READ) {
2644         getter = property_get_uint8_ptr;
2645     }
2646 
2647     if ((flags & OBJ_PROP_FLAG_WRITE) == OBJ_PROP_FLAG_WRITE) {
2648         setter = property_set_uint8_ptr;
2649     }
2650 
2651     return object_property_add(obj, name, "uint8",
2652                                getter, setter, NULL, (void *)v);
2653 }
2654 
2655 ObjectProperty *
object_class_property_add_uint8_ptr(ObjectClass * klass,const char * name,const uint8_t * v,ObjectPropertyFlags flags)2656 object_class_property_add_uint8_ptr(ObjectClass *klass, const char *name,
2657                                     const uint8_t *v,
2658                                     ObjectPropertyFlags flags)
2659 {
2660     ObjectPropertyAccessor *getter = NULL;
2661     ObjectPropertyAccessor *setter = NULL;
2662 
2663     if ((flags & OBJ_PROP_FLAG_READ) == OBJ_PROP_FLAG_READ) {
2664         getter = property_get_uint8_ptr;
2665     }
2666 
2667     if ((flags & OBJ_PROP_FLAG_WRITE) == OBJ_PROP_FLAG_WRITE) {
2668         setter = property_set_uint8_ptr;
2669     }
2670 
2671     return object_class_property_add(klass, name, "uint8",
2672                                      getter, setter, NULL, (void *)v);
2673 }
2674 
2675 ObjectProperty *
object_property_add_uint16_ptr(Object * obj,const char * name,const uint16_t * v,ObjectPropertyFlags flags)2676 object_property_add_uint16_ptr(Object *obj, const char *name,
2677                                const uint16_t *v,
2678                                ObjectPropertyFlags flags)
2679 {
2680     ObjectPropertyAccessor *getter = NULL;
2681     ObjectPropertyAccessor *setter = NULL;
2682 
2683     if ((flags & OBJ_PROP_FLAG_READ) == OBJ_PROP_FLAG_READ) {
2684         getter = property_get_uint16_ptr;
2685     }
2686 
2687     if ((flags & OBJ_PROP_FLAG_WRITE) == OBJ_PROP_FLAG_WRITE) {
2688         setter = property_set_uint16_ptr;
2689     }
2690 
2691     return object_property_add(obj, name, "uint16",
2692                                getter, setter, NULL, (void *)v);
2693 }
2694 
2695 ObjectProperty *
object_class_property_add_uint16_ptr(ObjectClass * klass,const char * name,const uint16_t * v,ObjectPropertyFlags flags)2696 object_class_property_add_uint16_ptr(ObjectClass *klass, const char *name,
2697                                      const uint16_t *v,
2698                                      ObjectPropertyFlags flags)
2699 {
2700     ObjectPropertyAccessor *getter = NULL;
2701     ObjectPropertyAccessor *setter = NULL;
2702 
2703     if ((flags & OBJ_PROP_FLAG_READ) == OBJ_PROP_FLAG_READ) {
2704         getter = property_get_uint16_ptr;
2705     }
2706 
2707     if ((flags & OBJ_PROP_FLAG_WRITE) == OBJ_PROP_FLAG_WRITE) {
2708         setter = property_set_uint16_ptr;
2709     }
2710 
2711     return object_class_property_add(klass, name, "uint16",
2712                                      getter, setter, NULL, (void *)v);
2713 }
2714 
2715 ObjectProperty *
object_property_add_uint32_ptr(Object * obj,const char * name,const uint32_t * v,ObjectPropertyFlags flags)2716 object_property_add_uint32_ptr(Object *obj, const char *name,
2717                                const uint32_t *v,
2718                                ObjectPropertyFlags flags)
2719 {
2720     ObjectPropertyAccessor *getter = NULL;
2721     ObjectPropertyAccessor *setter = NULL;
2722 
2723     if ((flags & OBJ_PROP_FLAG_READ) == OBJ_PROP_FLAG_READ) {
2724         getter = property_get_uint32_ptr;
2725     }
2726 
2727     if ((flags & OBJ_PROP_FLAG_WRITE) == OBJ_PROP_FLAG_WRITE) {
2728         setter = property_set_uint32_ptr;
2729     }
2730 
2731     return object_property_add(obj, name, "uint32",
2732                                getter, setter, NULL, (void *)v);
2733 }
2734 
2735 ObjectProperty *
object_class_property_add_uint32_ptr(ObjectClass * klass,const char * name,const uint32_t * v,ObjectPropertyFlags flags)2736 object_class_property_add_uint32_ptr(ObjectClass *klass, const char *name,
2737                                      const uint32_t *v,
2738                                      ObjectPropertyFlags flags)
2739 {
2740     ObjectPropertyAccessor *getter = NULL;
2741     ObjectPropertyAccessor *setter = NULL;
2742 
2743     if ((flags & OBJ_PROP_FLAG_READ) == OBJ_PROP_FLAG_READ) {
2744         getter = property_get_uint32_ptr;
2745     }
2746 
2747     if ((flags & OBJ_PROP_FLAG_WRITE) == OBJ_PROP_FLAG_WRITE) {
2748         setter = property_set_uint32_ptr;
2749     }
2750 
2751     return object_class_property_add(klass, name, "uint32",
2752                                      getter, setter, NULL, (void *)v);
2753 }
2754 
2755 ObjectProperty *
object_property_add_uint64_ptr(Object * obj,const char * name,const uint64_t * v,ObjectPropertyFlags flags)2756 object_property_add_uint64_ptr(Object *obj, const char *name,
2757                                const uint64_t *v,
2758                                ObjectPropertyFlags flags)
2759 {
2760     ObjectPropertyAccessor *getter = NULL;
2761     ObjectPropertyAccessor *setter = NULL;
2762 
2763     if ((flags & OBJ_PROP_FLAG_READ) == OBJ_PROP_FLAG_READ) {
2764         getter = property_get_uint64_ptr;
2765     }
2766 
2767     if ((flags & OBJ_PROP_FLAG_WRITE) == OBJ_PROP_FLAG_WRITE) {
2768         setter = property_set_uint64_ptr;
2769     }
2770 
2771     return object_property_add(obj, name, "uint64",
2772                                getter, setter, NULL, (void *)v);
2773 }
2774 
2775 ObjectProperty *
object_class_property_add_uint64_ptr(ObjectClass * klass,const char * name,const uint64_t * v,ObjectPropertyFlags flags)2776 object_class_property_add_uint64_ptr(ObjectClass *klass, const char *name,
2777                                      const uint64_t *v,
2778                                      ObjectPropertyFlags flags)
2779 {
2780     ObjectPropertyAccessor *getter = NULL;
2781     ObjectPropertyAccessor *setter = NULL;
2782 
2783     if ((flags & OBJ_PROP_FLAG_READ) == OBJ_PROP_FLAG_READ) {
2784         getter = property_get_uint64_ptr;
2785     }
2786 
2787     if ((flags & OBJ_PROP_FLAG_WRITE) == OBJ_PROP_FLAG_WRITE) {
2788         setter = property_set_uint64_ptr;
2789     }
2790 
2791     return object_class_property_add(klass, name, "uint64",
2792                                      getter, setter, NULL, (void *)v);
2793 }
2794 
2795 typedef struct {
2796     Object *target_obj;
2797     char *target_name;
2798 } AliasProperty;
2799 
property_get_alias(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2800 static void property_get_alias(Object *obj, Visitor *v, const char *name,
2801                                void *opaque, Error **errp)
2802 {
2803     AliasProperty *prop = opaque;
2804     Visitor *alias_v = visitor_forward_field(v, prop->target_name, name);
2805 
2806     object_property_get(prop->target_obj, prop->target_name, alias_v, errp);
2807     visit_free(alias_v);
2808 }
2809 
property_set_alias(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)2810 static void property_set_alias(Object *obj, Visitor *v, const char *name,
2811                                void *opaque, Error **errp)
2812 {
2813     AliasProperty *prop = opaque;
2814     Visitor *alias_v = visitor_forward_field(v, prop->target_name, name);
2815 
2816     object_property_set(prop->target_obj, prop->target_name, alias_v, errp);
2817     visit_free(alias_v);
2818 }
2819 
property_resolve_alias(Object * obj,void * opaque,const char * part)2820 static Object *property_resolve_alias(Object *obj, void *opaque,
2821                                       const char *part)
2822 {
2823     AliasProperty *prop = opaque;
2824 
2825     return object_resolve_path_component(prop->target_obj, prop->target_name);
2826 }
2827 
property_release_alias(Object * obj,const char * name,void * opaque)2828 static void property_release_alias(Object *obj, const char *name, void *opaque)
2829 {
2830     AliasProperty *prop = opaque;
2831 
2832     g_free(prop->target_name);
2833     g_free(prop);
2834 }
2835 
2836 ObjectProperty *
object_property_add_alias(Object * obj,const char * name,Object * target_obj,const char * target_name)2837 object_property_add_alias(Object *obj, const char *name,
2838                           Object *target_obj, const char *target_name)
2839 {
2840     AliasProperty *prop;
2841     ObjectProperty *op;
2842     ObjectProperty *target_prop;
2843     g_autofree char *prop_type = NULL;
2844 
2845     target_prop = object_property_find_err(target_obj, target_name,
2846                                            &error_abort);
2847 
2848     if (object_property_is_child(target_prop)) {
2849         prop_type = g_strdup_printf("link%s",
2850                                     target_prop->type + strlen("child"));
2851     } else {
2852         prop_type = g_strdup(target_prop->type);
2853     }
2854 
2855     prop = g_malloc(sizeof(*prop));
2856     prop->target_obj = target_obj;
2857     prop->target_name = g_strdup(target_name);
2858 
2859     op = object_property_add(obj, name, prop_type,
2860                              property_get_alias,
2861                              property_set_alias,
2862                              property_release_alias,
2863                              prop);
2864     op->resolve = property_resolve_alias;
2865     if (target_prop->defval) {
2866         op->defval = qobject_ref(target_prop->defval);
2867     }
2868 
2869     object_property_set_description(obj, op->name,
2870                                     target_prop->description);
2871     return op;
2872 }
2873 
object_property_set_description(Object * obj,const char * name,const char * description)2874 void object_property_set_description(Object *obj, const char *name,
2875                                      const char *description)
2876 {
2877     ObjectProperty *op;
2878 
2879     op = object_property_find_err(obj, name, &error_abort);
2880     g_free(op->description);
2881     op->description = g_strdup(description);
2882 }
2883 
object_class_property_set_description(ObjectClass * klass,const char * name,const char * description)2884 void object_class_property_set_description(ObjectClass *klass,
2885                                            const char *name,
2886                                            const char *description)
2887 {
2888     ObjectProperty *op;
2889 
2890     op = g_hash_table_lookup(klass->properties, name);
2891     g_free(op->description);
2892     op->description = g_strdup(description);
2893 }
2894 
object_class_init(ObjectClass * klass,const void * data)2895 static void object_class_init(ObjectClass *klass, const void *data)
2896 {
2897     object_class_property_add_str(klass, "type", object_get_type,
2898                                   NULL);
2899 }
2900 
register_types(void)2901 static void register_types(void)
2902 {
2903     static const TypeInfo interface_info = {
2904         .name = TYPE_INTERFACE,
2905         .class_size = sizeof(InterfaceClass),
2906         .abstract = true,
2907     };
2908 
2909     static const TypeInfo object_info = {
2910         .name = TYPE_OBJECT,
2911         .instance_size = sizeof(Object),
2912         .class_init = object_class_init,
2913         .abstract = true,
2914     };
2915 
2916     type_interface = type_register_internal(&interface_info);
2917     type_register_internal(&object_info);
2918 }
2919 
2920 type_init(register_types)
2921