1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3 * Copyright (c) 2013 Google, Inc
4 *
5 * (C) Copyright 2012
6 * Pavel Herrmann <morpheus.ibis@gmail.com>
7 */
8
9 #define LOG_CATEGORY LOGC_DM
10
11 #include <dm.h>
12 #include <errno.h>
13 #include <log.h>
14 #include <malloc.h>
15 #include <asm/global_data.h>
16 #include <dm/device.h>
17 #include <dm/device-internal.h>
18 #include <dm/lists.h>
19 #include <dm/ofnode_graph.h>
20 #include <dm/uclass.h>
21 #include <dm/uclass-internal.h>
22 #include <dm/util.h>
23
24 DECLARE_GLOBAL_DATA_PTR;
25
uclass_find(enum uclass_id key)26 struct uclass *uclass_find(enum uclass_id key)
27 {
28 struct uclass *uc;
29
30 if (!gd->dm_root)
31 return NULL;
32 /*
33 * TODO(sjg@chromium.org): Optimise this, perhaps moving the found
34 * node to the start of the list, or creating a linear array mapping
35 * id to node.
36 */
37 list_for_each_entry(uc, gd->uclass_root, sibling_node) {
38 if (uc->uc_drv->id == key)
39 return uc;
40 }
41
42 return NULL;
43 }
44
45 /**
46 * uclass_add() - Create new uclass in list
47 * @id: Id number to create
48 * @ucp: Returns pointer to uclass, or NULL on error
49 * Return: 0 on success, -ve on error
50 *
51 * The new uclass is added to the list. There must be only one uclass for
52 * each id.
53 */
uclass_add(enum uclass_id id,struct uclass ** ucp)54 static int uclass_add(enum uclass_id id, struct uclass **ucp)
55 {
56 struct uclass_driver *uc_drv;
57 struct uclass *uc;
58 int ret;
59
60 *ucp = NULL;
61 uc_drv = lists_uclass_lookup(id);
62 if (!uc_drv) {
63 dm_warn("Cannot find uclass for id %d: please add the UCLASS_DRIVER() declaration for this UCLASS_... id\n",
64 id);
65 /*
66 * Use a strange error to make this case easier to find. When
67 * a uclass is not available it can prevent driver model from
68 * starting up and this failure is otherwise hard to debug.
69 */
70 return -EPFNOSUPPORT;
71 }
72 uc = calloc(1, sizeof(*uc));
73 if (!uc)
74 return -ENOMEM;
75 if (uc_drv->priv_auto) {
76 void *ptr;
77
78 ptr = calloc(1, uc_drv->priv_auto);
79 if (!ptr) {
80 ret = -ENOMEM;
81 goto fail_mem;
82 }
83 uclass_set_priv(uc, ptr);
84 }
85 uc->uc_drv = uc_drv;
86 INIT_LIST_HEAD(&uc->sibling_node);
87 INIT_LIST_HEAD(&uc->dev_head);
88 list_add(&uc->sibling_node, DM_UCLASS_ROOT_NON_CONST);
89
90 if (uc_drv->init) {
91 ret = uc_drv->init(uc);
92 if (ret)
93 goto fail;
94 }
95
96 *ucp = uc;
97
98 return 0;
99 fail:
100 if (uc_drv->priv_auto) {
101 free(uclass_get_priv(uc));
102 uclass_set_priv(uc, NULL);
103 }
104 list_del(&uc->sibling_node);
105 fail_mem:
106 free(uc);
107
108 return ret;
109 }
110
uclass_destroy(struct uclass * uc)111 int uclass_destroy(struct uclass *uc)
112 {
113 struct uclass_driver *uc_drv;
114 struct udevice *dev;
115 int ret;
116
117 /*
118 * We cannot use list_for_each_entry_safe() here. If a device in this
119 * uclass has a child device also in this uclass, it will be also be
120 * unbound (by the recursion in the call to device_unbind() below).
121 * We can loop until the list is empty.
122 */
123 while (!list_empty(&uc->dev_head)) {
124 dev = list_first_entry(&uc->dev_head, struct udevice,
125 uclass_node);
126 ret = device_remove(dev, DM_REMOVE_NORMAL | DM_REMOVE_NO_PD);
127 if (ret)
128 return log_msg_ret("remove", ret);
129 ret = device_unbind(dev);
130 if (ret)
131 return log_msg_ret("unbind", ret);
132 }
133
134 uc_drv = uc->uc_drv;
135 if (uc_drv->destroy)
136 uc_drv->destroy(uc);
137 list_del(&uc->sibling_node);
138 if (uc_drv->priv_auto)
139 free(uclass_get_priv(uc));
140 free(uc);
141
142 return 0;
143 }
144
uclass_get(enum uclass_id id,struct uclass ** ucp)145 int uclass_get(enum uclass_id id, struct uclass **ucp)
146 {
147 struct uclass *uc;
148
149 /* Immediately fail if driver model is not set up */
150 if (!gd->uclass_root)
151 return -EDEADLK;
152 *ucp = NULL;
153 uc = uclass_find(id);
154 if (!uc) {
155 if (CONFIG_IS_ENABLED(OF_PLATDATA_INST))
156 return -ENOENT;
157 return uclass_add(id, ucp);
158 }
159 *ucp = uc;
160
161 return 0;
162 }
163
uclass_get_name(enum uclass_id id)164 const char *uclass_get_name(enum uclass_id id)
165 {
166 struct uclass *uc;
167
168 if (uclass_get(id, &uc))
169 return NULL;
170 return uc->uc_drv->name;
171 }
172
uclass_get_priv(const struct uclass * uc)173 void *uclass_get_priv(const struct uclass *uc)
174 {
175 return uc->priv_;
176 }
177
uclass_set_priv(struct uclass * uc,void * priv)178 void uclass_set_priv(struct uclass *uc, void *priv)
179 {
180 uc->priv_ = priv;
181 }
182
uclass_get_by_namelen(const char * name,int len)183 enum uclass_id uclass_get_by_namelen(const char *name, int len)
184 {
185 int i;
186
187 for (i = 0; i < UCLASS_COUNT; i++) {
188 struct uclass_driver *uc_drv = lists_uclass_lookup(i);
189
190 if (uc_drv && !strncmp(uc_drv->name, name, len) &&
191 strlen(uc_drv->name) == len)
192 return i;
193 }
194
195 return UCLASS_INVALID;
196 }
197
uclass_get_by_name(const char * name)198 enum uclass_id uclass_get_by_name(const char *name)
199 {
200 return uclass_get_by_namelen(name, strlen(name));
201 }
202
dev_get_uclass_index(struct udevice * dev,struct uclass ** ucp)203 int dev_get_uclass_index(struct udevice *dev, struct uclass **ucp)
204 {
205 struct udevice *iter;
206 struct uclass *uc = dev->uclass;
207 int i = 0;
208
209 if (list_empty(&uc->dev_head))
210 return -ENODEV;
211
212 uclass_foreach_dev(iter, uc) {
213 if (iter == dev) {
214 if (ucp)
215 *ucp = uc;
216 return i;
217 }
218 i++;
219 }
220
221 return -ENODEV;
222 }
223
uclass_find_device(enum uclass_id id,int index,struct udevice ** devp)224 int uclass_find_device(enum uclass_id id, int index, struct udevice **devp)
225 {
226 struct uclass *uc;
227 struct udevice *dev;
228 int ret;
229
230 *devp = NULL;
231 ret = uclass_get(id, &uc);
232 if (ret)
233 return ret;
234 if (list_empty(&uc->dev_head))
235 return -ENODEV;
236
237 uclass_foreach_dev(dev, uc) {
238 if (!index--) {
239 *devp = dev;
240 return 0;
241 }
242 }
243
244 return -ENODEV;
245 }
246
uclass_find_first_device(enum uclass_id id,struct udevice ** devp)247 int uclass_find_first_device(enum uclass_id id, struct udevice **devp)
248 {
249 struct uclass *uc;
250 int ret;
251
252 *devp = NULL;
253 ret = uclass_get(id, &uc);
254 if (ret)
255 return ret;
256 if (list_empty(&uc->dev_head))
257 return 0;
258
259 *devp = list_first_entry(&uc->dev_head, struct udevice, uclass_node);
260
261 return 0;
262 }
263
uclass_find_next_device(struct udevice ** devp)264 void uclass_find_next_device(struct udevice **devp)
265 {
266 struct udevice *dev = *devp;
267
268 *devp = NULL;
269 if (!list_is_last(&dev->uclass_node, &dev->uclass->dev_head))
270 *devp = list_entry(dev->uclass_node.next, struct udevice,
271 uclass_node);
272 }
273
uclass_find_device_by_namelen(enum uclass_id id,const char * name,int len,struct udevice ** devp)274 int uclass_find_device_by_namelen(enum uclass_id id, const char *name, int len,
275 struct udevice **devp)
276 {
277 struct uclass *uc;
278 struct udevice *dev;
279 int ret;
280
281 *devp = NULL;
282 if (!name)
283 return -EINVAL;
284 ret = uclass_get(id, &uc);
285 if (ret)
286 return ret;
287
288 uclass_foreach_dev(dev, uc) {
289 if (!strncmp(dev->name, name, len) &&
290 strlen(dev->name) == len) {
291 *devp = dev;
292 return 0;
293 }
294 }
295
296 return -ENODEV;
297 }
298
uclass_find_device_by_name(enum uclass_id id,const char * name,struct udevice ** devp)299 int uclass_find_device_by_name(enum uclass_id id, const char *name,
300 struct udevice **devp)
301 {
302 return uclass_find_device_by_namelen(id, name, strlen(name), devp);
303 }
304
uclass_try_first_device(enum uclass_id id)305 struct udevice *uclass_try_first_device(enum uclass_id id)
306 {
307 struct uclass *uc;
308
309 uc = uclass_find(id);
310 if (!uc || list_empty(&uc->dev_head))
311 return NULL;
312
313 return list_first_entry(&uc->dev_head, struct udevice, uclass_node);
314 }
315
uclass_find_next_free_seq(struct uclass * uc)316 int uclass_find_next_free_seq(struct uclass *uc)
317 {
318 struct udevice *dev;
319 int max = -1;
320
321 /* If using aliases, start with the highest alias value */
322 if (CONFIG_IS_ENABLED(DM_SEQ_ALIAS) &&
323 (uc->uc_drv->flags & DM_UC_FLAG_SEQ_ALIAS))
324 max = dev_read_alias_highest_id(uc->uc_drv->name);
325
326 /* Avoid conflict with existing devices */
327 list_for_each_entry(dev, &uc->dev_head, uclass_node) {
328 if (dev->seq_ > max)
329 max = dev->seq_;
330 }
331 /*
332 * At this point, max will be -1 if there are no existing aliases or
333 * devices
334 */
335
336 return max + 1;
337 }
338
uclass_find_device_by_seq(enum uclass_id id,int seq,struct udevice ** devp)339 int uclass_find_device_by_seq(enum uclass_id id, int seq, struct udevice **devp)
340 {
341 struct uclass *uc;
342 struct udevice *dev;
343 int ret;
344
345 *devp = NULL;
346 log_debug("%d\n", seq);
347 if (seq == -1)
348 return -ENODEV;
349 ret = uclass_get(id, &uc);
350 if (ret)
351 return ret;
352
353 uclass_foreach_dev(dev, uc) {
354 log_debug(" - %d '%s'\n", dev->seq_, dev->name);
355 if (dev->seq_ == seq) {
356 *devp = dev;
357 log_debug(" - found\n");
358 return 0;
359 }
360 }
361 log_debug(" - not found\n");
362
363 return -ENODEV;
364 }
365
uclass_find_device_by_of_offset(enum uclass_id id,int node,struct udevice ** devp)366 int uclass_find_device_by_of_offset(enum uclass_id id, int node,
367 struct udevice **devp)
368 {
369 struct uclass *uc;
370 struct udevice *dev;
371 int ret;
372
373 *devp = NULL;
374 if (node < 0)
375 return -ENODEV;
376 ret = uclass_get(id, &uc);
377 if (ret)
378 return ret;
379
380 uclass_foreach_dev(dev, uc) {
381 if (dev_of_offset(dev) == node) {
382 *devp = dev;
383 return 0;
384 }
385 }
386
387 return -ENODEV;
388 }
389
uclass_find_device_by_ofnode(enum uclass_id id,ofnode node,struct udevice ** devp)390 int uclass_find_device_by_ofnode(enum uclass_id id, ofnode node,
391 struct udevice **devp)
392 {
393 struct uclass *uc;
394 struct udevice *dev;
395 int ret;
396
397 log(LOGC_DM, LOGL_DEBUG, "Looking for %s\n", ofnode_get_name(node));
398 *devp = NULL;
399 if (!ofnode_valid(node))
400 return -ENODEV;
401 ret = uclass_get(id, &uc);
402 if (ret)
403 return ret;
404
405 uclass_foreach_dev(dev, uc) {
406 log(LOGC_DM, LOGL_DEBUG_CONTENT, " - checking %s\n",
407 dev->name);
408 if (ofnode_equal(dev_ofnode(dev), node)) {
409 *devp = dev;
410 goto done;
411 }
412 }
413 ret = -ENODEV;
414
415 done:
416 log(LOGC_DM, LOGL_DEBUG, " - result for %s: %s (ret=%d)\n",
417 ofnode_get_name(node), *devp ? (*devp)->name : "(none)", ret);
418 return ret;
419 }
420
421 #if CONFIG_IS_ENABLED(OF_REAL)
uclass_find_device_by_phandle_id(enum uclass_id id,uint find_phandle,struct udevice ** devp)422 static int uclass_find_device_by_phandle_id(enum uclass_id id,
423 uint find_phandle,
424 struct udevice **devp)
425 {
426 struct udevice *dev;
427 struct uclass *uc;
428 int ret;
429
430 ret = uclass_get(id, &uc);
431 if (ret)
432 return ret;
433
434 uclass_foreach_dev(dev, uc) {
435 uint phandle;
436
437 phandle = dev_read_phandle(dev);
438
439 if (phandle == find_phandle) {
440 *devp = dev;
441 return 0;
442 }
443 }
444
445 return -ENODEV;
446 }
447
uclass_find_device_by_phandle(enum uclass_id id,struct udevice * parent,const char * name,struct udevice ** devp)448 int uclass_find_device_by_phandle(enum uclass_id id, struct udevice *parent,
449 const char *name, struct udevice **devp)
450 {
451 int find_phandle;
452
453 *devp = NULL;
454 find_phandle = dev_read_u32_default(parent, name, -1);
455 if (find_phandle <= 0)
456 return -ENOENT;
457
458 return uclass_find_device_by_phandle_id(id, find_phandle, devp);
459 }
460 #endif
461
uclass_get_device_by_driver(enum uclass_id id,const struct driver * find_drv,struct udevice ** devp)462 int uclass_get_device_by_driver(enum uclass_id id,
463 const struct driver *find_drv,
464 struct udevice **devp)
465 {
466 struct udevice *dev;
467 struct uclass *uc;
468 int ret;
469
470 ret = uclass_get(id, &uc);
471 if (ret)
472 return ret;
473
474 uclass_foreach_dev(dev, uc) {
475 if (dev->driver == find_drv)
476 return uclass_get_device_tail(dev, 0, devp);
477 }
478
479 return -ENODEV;
480 }
481
uclass_get_device_tail(struct udevice * dev,int ret,struct udevice ** devp)482 int uclass_get_device_tail(struct udevice *dev, int ret, struct udevice **devp)
483 {
484 if (ret)
485 return ret;
486
487 assert(dev);
488 ret = device_probe(dev);
489 if (ret)
490 return ret;
491
492 *devp = dev;
493
494 return 0;
495 }
496
uclass_get_device(enum uclass_id id,int index,struct udevice ** devp)497 int uclass_get_device(enum uclass_id id, int index, struct udevice **devp)
498 {
499 struct udevice *dev;
500 int ret;
501
502 *devp = NULL;
503 ret = uclass_find_device(id, index, &dev);
504 return uclass_get_device_tail(dev, ret, devp);
505 }
506
uclass_get_device_by_name(enum uclass_id id,const char * name,struct udevice ** devp)507 int uclass_get_device_by_name(enum uclass_id id, const char *name,
508 struct udevice **devp)
509 {
510 struct udevice *dev;
511 int ret;
512
513 *devp = NULL;
514 ret = uclass_find_device_by_name(id, name, &dev);
515 return uclass_get_device_tail(dev, ret, devp);
516 }
517
uclass_get_device_by_seq(enum uclass_id id,int seq,struct udevice ** devp)518 int uclass_get_device_by_seq(enum uclass_id id, int seq, struct udevice **devp)
519 {
520 struct udevice *dev;
521 int ret;
522
523 *devp = NULL;
524 ret = uclass_find_device_by_seq(id, seq, &dev);
525
526 return uclass_get_device_tail(dev, ret, devp);
527 }
528
uclass_get_device_by_of_offset(enum uclass_id id,int node,struct udevice ** devp)529 int uclass_get_device_by_of_offset(enum uclass_id id, int node,
530 struct udevice **devp)
531 {
532 struct udevice *dev;
533 int ret;
534
535 *devp = NULL;
536 ret = uclass_find_device_by_of_offset(id, node, &dev);
537 return uclass_get_device_tail(dev, ret, devp);
538 }
539
uclass_get_device_by_ofnode(enum uclass_id id,ofnode node,struct udevice ** devp)540 int uclass_get_device_by_ofnode(enum uclass_id id, ofnode node,
541 struct udevice **devp)
542 {
543 struct udevice *dev;
544 int ret;
545
546 log(LOGC_DM, LOGL_DEBUG, "Looking for %s\n", ofnode_get_name(node));
547 *devp = NULL;
548 ret = uclass_find_device_by_ofnode(id, node, &dev);
549 log(LOGC_DM, LOGL_DEBUG, " - result for %s: %s (ret=%d)\n",
550 ofnode_get_name(node), dev ? dev->name : "(none)", ret);
551
552 return uclass_get_device_tail(dev, ret, devp);
553 }
554
555 #if CONFIG_IS_ENABLED(OF_REAL)
uclass_get_device_by_of_path(enum uclass_id id,const char * path,struct udevice ** devp)556 int uclass_get_device_by_of_path(enum uclass_id id, const char *path,
557 struct udevice **devp)
558 {
559 return uclass_get_device_by_ofnode(id, ofnode_path(path), devp);
560 }
561
uclass_get_device_by_phandle_id(enum uclass_id id,uint phandle_id,struct udevice ** devp)562 int uclass_get_device_by_phandle_id(enum uclass_id id, uint phandle_id,
563 struct udevice **devp)
564 {
565 struct udevice *dev;
566 int ret;
567
568 *devp = NULL;
569 ret = uclass_find_device_by_phandle_id(id, phandle_id, &dev);
570 return uclass_get_device_tail(dev, ret, devp);
571 }
572
uclass_get_device_by_phandle(enum uclass_id id,struct udevice * parent,const char * name,struct udevice ** devp)573 int uclass_get_device_by_phandle(enum uclass_id id, struct udevice *parent,
574 const char *name, struct udevice **devp)
575 {
576 struct udevice *dev;
577 int ret;
578
579 *devp = NULL;
580 ret = uclass_find_device_by_phandle(id, parent, name, &dev);
581 return uclass_get_device_tail(dev, ret, devp);
582 }
583
uclass_get_device_by_endpoint(enum uclass_id class_id,struct udevice * dev,int port_idx,int ep_idx,struct udevice ** devp)584 int uclass_get_device_by_endpoint(enum uclass_id class_id, struct udevice *dev,
585 int port_idx, int ep_idx, struct udevice **devp)
586 {
587 ofnode node_source = dev_ofnode(dev);
588 ofnode node_dest = ofnode_graph_get_remote_node(node_source, port_idx, ep_idx);
589 struct udevice *target = NULL;
590 int ret;
591
592 if (!ofnode_valid(node_dest))
593 return -EINVAL;
594
595 ret = uclass_find_device_by_ofnode(class_id, node_dest, &target);
596 if (ret)
597 return -ENODEV;
598
599 return uclass_get_device_tail(target, 0, devp);
600 }
601 #endif
602
603 /*
604 * Starting from the given device @dev, return pointer to the first device in
605 * the uclass that probes successfully in @devp.
606 */
_uclass_next_device(struct udevice * dev,struct udevice ** devp)607 static void _uclass_next_device(struct udevice *dev, struct udevice **devp)
608 {
609 for (; dev; uclass_find_next_device(&dev)) {
610 if (!device_probe(dev))
611 break;
612 }
613 *devp = dev;
614 }
615
uclass_first_device(enum uclass_id id,struct udevice ** devp)616 void uclass_first_device(enum uclass_id id, struct udevice **devp)
617 {
618 struct udevice *dev;
619 int ret;
620
621 ret = uclass_find_first_device(id, &dev);
622 _uclass_next_device(dev, devp);
623 }
624
uclass_next_device(struct udevice ** devp)625 void uclass_next_device(struct udevice **devp)
626 {
627 struct udevice *dev = *devp;
628
629 uclass_find_next_device(&dev);
630 _uclass_next_device(dev, devp);
631 }
632
uclass_first_device_err(enum uclass_id id,struct udevice ** devp)633 int uclass_first_device_err(enum uclass_id id, struct udevice **devp)
634 {
635 int ret;
636
637 ret = uclass_first_device_check(id, devp);
638 if (ret)
639 return ret;
640 else if (!*devp)
641 return -ENODEV;
642
643 return 0;
644 }
645
uclass_next_device_err(struct udevice ** devp)646 int uclass_next_device_err(struct udevice **devp)
647 {
648 int ret;
649
650 ret = uclass_next_device_check(devp);
651 if (ret)
652 return ret;
653 else if (!*devp)
654 return -ENODEV;
655
656 return 0;
657 }
658
uclass_first_device_check(enum uclass_id id,struct udevice ** devp)659 int uclass_first_device_check(enum uclass_id id, struct udevice **devp)
660 {
661 int ret;
662
663 *devp = NULL;
664 ret = uclass_find_first_device(id, devp);
665 if (ret)
666 return ret;
667 if (!*devp)
668 return 0;
669
670 return device_probe(*devp);
671 }
672
uclass_next_device_check(struct udevice ** devp)673 int uclass_next_device_check(struct udevice **devp)
674 {
675 uclass_find_next_device(devp);
676
677 if (!*devp)
678 return 0;
679
680 return device_probe(*devp);
681 }
682
uclass_get_count(void)683 int uclass_get_count(void)
684 {
685 const struct uclass *uc;
686 int count = 0;
687
688 if (gd->dm_root) {
689 list_for_each_entry(uc, gd->uclass_root, sibling_node)
690 count++;
691 }
692
693 return count;
694 }
695
uclass_first_device_drvdata(enum uclass_id id,ulong driver_data,struct udevice ** devp)696 int uclass_first_device_drvdata(enum uclass_id id, ulong driver_data,
697 struct udevice **devp)
698 {
699 struct udevice *dev;
700 struct uclass *uc;
701
702 uclass_id_foreach_dev(id, dev, uc) {
703 if (dev_get_driver_data(dev) == driver_data) {
704 *devp = dev;
705
706 return device_probe(dev);
707 }
708 }
709
710 return -ENODEV;
711 }
712
uclass_bind_device(struct udevice * dev)713 int uclass_bind_device(struct udevice *dev)
714 {
715 struct uclass *uc;
716 int ret;
717
718 uc = dev->uclass;
719 list_add_tail(&dev->uclass_node, &uc->dev_head);
720
721 if (dev->parent) {
722 struct uclass_driver *uc_drv = dev->parent->uclass->uc_drv;
723
724 if (uc_drv->child_post_bind) {
725 ret = uc_drv->child_post_bind(dev);
726 if (ret)
727 goto err;
728 }
729 }
730
731 return 0;
732 err:
733 /* There is no need to undo the parent's post_bind call */
734 list_del(&dev->uclass_node);
735
736 return ret;
737 }
738
739 #if CONFIG_IS_ENABLED(DM_DEVICE_REMOVE)
uclass_pre_unbind_device(struct udevice * dev)740 int uclass_pre_unbind_device(struct udevice *dev)
741 {
742 struct uclass *uc;
743 int ret;
744
745 uc = dev->uclass;
746 if (uc->uc_drv->pre_unbind) {
747 ret = uc->uc_drv->pre_unbind(dev);
748 if (ret)
749 return ret;
750 }
751
752 return 0;
753 }
754
uclass_unbind_device(struct udevice * dev)755 int uclass_unbind_device(struct udevice *dev)
756 {
757 list_del(&dev->uclass_node);
758
759 return 0;
760 }
761 #endif
762
uclass_pre_probe_device(struct udevice * dev)763 int uclass_pre_probe_device(struct udevice *dev)
764 {
765 struct uclass_driver *uc_drv;
766 int ret;
767
768 uc_drv = dev->uclass->uc_drv;
769 if (uc_drv->pre_probe) {
770 ret = uc_drv->pre_probe(dev);
771 if (ret)
772 return ret;
773 }
774
775 if (!dev->parent)
776 return 0;
777 uc_drv = dev->parent->uclass->uc_drv;
778 if (uc_drv->child_pre_probe) {
779 ret = uc_drv->child_pre_probe(dev);
780 if (ret)
781 return ret;
782 }
783
784 return 0;
785 }
786
uclass_post_probe_device(struct udevice * dev)787 int uclass_post_probe_device(struct udevice *dev)
788 {
789 struct uclass_driver *uc_drv;
790 int ret;
791
792 if (dev->parent) {
793 uc_drv = dev->parent->uclass->uc_drv;
794 if (uc_drv->child_post_probe) {
795 ret = uc_drv->child_post_probe(dev);
796 if (ret)
797 return ret;
798 }
799 }
800
801 uc_drv = dev->uclass->uc_drv;
802 if (uc_drv->post_probe) {
803 ret = uc_drv->post_probe(dev);
804 if (ret)
805 return ret;
806 }
807
808 return 0;
809 }
810
811 #if CONFIG_IS_ENABLED(DM_DEVICE_REMOVE)
uclass_pre_remove_device(struct udevice * dev)812 int uclass_pre_remove_device(struct udevice *dev)
813 {
814 struct uclass *uc;
815 int ret;
816
817 uc = dev->uclass;
818 if (uc->uc_drv->pre_remove) {
819 ret = uc->uc_drv->pre_remove(dev);
820 if (ret)
821 return ret;
822 }
823
824 return 0;
825 }
826 #endif
827
uclass_probe_all(enum uclass_id id)828 int uclass_probe_all(enum uclass_id id)
829 {
830 struct udevice *dev;
831 int ret, err;
832
833 err = uclass_first_device_check(id, &dev);
834
835 /* Scanning uclass to probe all devices */
836 while (dev) {
837 ret = uclass_next_device_check(&dev);
838 if (ret)
839 err = ret;
840 }
841
842 return err;
843 }
844
uclass_id_count(enum uclass_id id)845 int uclass_id_count(enum uclass_id id)
846 {
847 struct udevice *dev;
848 struct uclass *uc;
849 int count = 0;
850
851 uclass_id_foreach_dev(id, dev, uc)
852 count++;
853
854 return count;
855 }
856
857 UCLASS_DRIVER(nop) = {
858 .id = UCLASS_NOP,
859 .name = "nop",
860 };
861