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CommitLineData
6494d708
SG
1/*
2 * Device manager
3 *
4 * Copyright (c) 2013 Google, Inc
5 *
6 * (C) Copyright 2012
7 * Pavel Herrmann <morpheus.ibis@gmail.com>
8 *
9 * SPDX-License-Identifier: GPL-2.0+
10 */
11
12#include <common.h>
7c616862 13#include <asm/io.h>
5a66a8ff 14#include <fdtdec.h>
ef5cd330 15#include <fdt_support.h>
6494d708
SG
16#include <malloc.h>
17#include <dm/device.h>
18#include <dm/device-internal.h>
19#include <dm/lists.h>
d90a5a30 20#include <dm/pinctrl.h>
6494d708 21#include <dm/platdata.h>
396e343b 22#include <dm/read.h>
6494d708
SG
23#include <dm/uclass.h>
24#include <dm/uclass-internal.h>
25#include <dm/util.h>
26#include <linux/err.h>
27#include <linux/list.h>
28
5a66a8ff
SG
29DECLARE_GLOBAL_DATA_PTR;
30
daac3bfe
SW
31static int device_bind_common(struct udevice *parent, const struct driver *drv,
32 const char *name, void *platdata,
7a61b0b5 33 ulong driver_data, ofnode node,
9fa28190 34 uint of_platdata_size, struct udevice **devp)
6494d708 35{
54c5d08a 36 struct udevice *dev;
6494d708 37 struct uclass *uc;
5eaed880 38 int size, ret = 0;
6494d708 39
e6cabe4a
MY
40 if (devp)
41 *devp = NULL;
6494d708
SG
42 if (!name)
43 return -EINVAL;
44
45 ret = uclass_get(drv->id, &uc);
3346c876
SG
46 if (ret) {
47 debug("Missing uclass for driver %s\n", drv->name);
6494d708 48 return ret;
3346c876 49 }
6494d708 50
54c5d08a 51 dev = calloc(1, sizeof(struct udevice));
6494d708
SG
52 if (!dev)
53 return -ENOMEM;
54
55 INIT_LIST_HEAD(&dev->sibling_node);
56 INIT_LIST_HEAD(&dev->child_head);
57 INIT_LIST_HEAD(&dev->uclass_node);
e2282d70 58#ifdef CONFIG_DEVRES
608f26c5 59 INIT_LIST_HEAD(&dev->devres_head);
e2282d70 60#endif
6494d708 61 dev->platdata = platdata;
daac3bfe 62 dev->driver_data = driver_data;
6494d708 63 dev->name = name;
7a61b0b5 64 dev->node = node;
6494d708
SG
65 dev->parent = parent;
66 dev->driver = drv;
67 dev->uclass = uc;
5a66a8ff 68
5a66a8ff 69 dev->seq = -1;
9cc36a2b 70 dev->req_seq = -1;
4f627c5a 71 if (CONFIG_IS_ENABLED(OF_CONTROL) && CONFIG_IS_ENABLED(DM_SEQ_ALIAS)) {
36fa61dc 72 /*
770eb30e
SR
73 * Some devices, such as a SPI bus, I2C bus and serial ports
74 * are numbered using aliases.
75 *
76 * This is just a 'requested' sequence, and will be
77 * resolved (and ->seq updated) when the device is probed.
78 */
36fa61dc 79 if (uc->uc_drv->flags & DM_UC_FLAG_SEQ_ALIAS) {
7a61b0b5 80 if (uc->uc_drv->name && ofnode_valid(node)) {
396e343b 81 dev_read_alias_seq(dev, &dev->req_seq);
36fa61dc 82 }
9cc36a2b 83 }
5a66a8ff 84 }
36fa61dc 85
9fa28190
SG
86 if (drv->platdata_auto_alloc_size) {
87 bool alloc = !platdata;
88
89 if (CONFIG_IS_ENABLED(OF_PLATDATA)) {
90 if (of_platdata_size) {
91 dev->flags |= DM_FLAG_OF_PLATDATA;
92 if (of_platdata_size <
93 drv->platdata_auto_alloc_size)
94 alloc = true;
95 }
96 }
97 if (alloc) {
98 dev->flags |= DM_FLAG_ALLOC_PDATA;
99 dev->platdata = calloc(1,
100 drv->platdata_auto_alloc_size);
101 if (!dev->platdata) {
102 ret = -ENOMEM;
103 goto fail_alloc1;
104 }
105 if (CONFIG_IS_ENABLED(OF_PLATDATA) && platdata) {
106 memcpy(dev->platdata, platdata,
107 of_platdata_size);
108 }
f8a85449
SG
109 }
110 }
cdc133bd 111
5eaed880
PM
112 size = uc->uc_drv->per_device_platdata_auto_alloc_size;
113 if (size) {
114 dev->flags |= DM_FLAG_ALLOC_UCLASS_PDATA;
115 dev->uclass_platdata = calloc(1, size);
116 if (!dev->uclass_platdata) {
117 ret = -ENOMEM;
118 goto fail_alloc2;
119 }
120 }
121
122 if (parent) {
123 size = parent->driver->per_child_platdata_auto_alloc_size;
ba8da9dc
SG
124 if (!size) {
125 size = parent->uclass->uc_drv->
126 per_child_platdata_auto_alloc_size;
127 }
cdc133bd
SG
128 if (size) {
129 dev->flags |= DM_FLAG_ALLOC_PARENT_PDATA;
130 dev->parent_platdata = calloc(1, size);
131 if (!dev->parent_platdata) {
132 ret = -ENOMEM;
5eaed880 133 goto fail_alloc3;
cdc133bd
SG
134 }
135 }
136 }
6494d708
SG
137
138 /* put dev into parent's successor list */
139 if (parent)
140 list_add_tail(&dev->sibling_node, &parent->child_head);
141
142 ret = uclass_bind_device(dev);
143 if (ret)
72ebfe86 144 goto fail_uclass_bind;
6494d708
SG
145
146 /* if we fail to bind we remove device from successors and free it */
147 if (drv->bind) {
148 ret = drv->bind(dev);
72ebfe86 149 if (ret)
6494d708 150 goto fail_bind;
6494d708 151 }
0118ce79
SG
152 if (parent && parent->driver->child_post_bind) {
153 ret = parent->driver->child_post_bind(dev);
154 if (ret)
155 goto fail_child_post_bind;
156 }
20af3c0a
SG
157 if (uc->uc_drv->post_bind) {
158 ret = uc->uc_drv->post_bind(dev);
159 if (ret)
160 goto fail_uclass_post_bind;
161 }
0118ce79 162
6494d708 163 if (parent)
ceb91909 164 pr_debug("Bound device %s to %s\n", dev->name, parent->name);
e6cabe4a
MY
165 if (devp)
166 *devp = dev;
6494d708 167
aed1a4dd
MY
168 dev->flags |= DM_FLAG_BOUND;
169
6494d708
SG
170 return 0;
171
20af3c0a
SG
172fail_uclass_post_bind:
173 /* There is no child unbind() method, so no clean-up required */
0118ce79 174fail_child_post_bind:
0a5804b5 175 if (CONFIG_IS_ENABLED(DM_DEVICE_REMOVE)) {
5a87c417
SG
176 if (drv->unbind && drv->unbind(dev)) {
177 dm_warn("unbind() method failed on dev '%s' on error path\n",
178 dev->name);
179 }
0118ce79
SG
180 }
181
6494d708 182fail_bind:
0a5804b5 183 if (CONFIG_IS_ENABLED(DM_DEVICE_REMOVE)) {
5a87c417
SG
184 if (uclass_unbind_device(dev)) {
185 dm_warn("Failed to unbind dev '%s' on error path\n",
186 dev->name);
187 }
72ebfe86
SG
188 }
189fail_uclass_bind:
0a5804b5 190 if (CONFIG_IS_ENABLED(DM_DEVICE_REMOVE)) {
5a87c417
SG
191 list_del(&dev->sibling_node);
192 if (dev->flags & DM_FLAG_ALLOC_PARENT_PDATA) {
193 free(dev->parent_platdata);
194 dev->parent_platdata = NULL;
195 }
cdc133bd 196 }
5eaed880
PM
197fail_alloc3:
198 if (dev->flags & DM_FLAG_ALLOC_UCLASS_PDATA) {
199 free(dev->uclass_platdata);
200 dev->uclass_platdata = NULL;
201 }
cdc133bd 202fail_alloc2:
f8a85449
SG
203 if (dev->flags & DM_FLAG_ALLOC_PDATA) {
204 free(dev->platdata);
205 dev->platdata = NULL;
206 }
207fail_alloc1:
608f26c5
MY
208 devres_release_all(dev);
209
6494d708 210 free(dev);
72ebfe86 211
6494d708
SG
212 return ret;
213}
214
daac3bfe
SW
215int device_bind_with_driver_data(struct udevice *parent,
216 const struct driver *drv, const char *name,
396e343b 217 ulong driver_data, ofnode node,
daac3bfe
SW
218 struct udevice **devp)
219{
396e343b
SG
220 return device_bind_common(parent, drv, name, NULL, driver_data, node,
221 0, devp);
daac3bfe
SW
222}
223
224int device_bind(struct udevice *parent, const struct driver *drv,
225 const char *name, void *platdata, int of_offset,
226 struct udevice **devp)
227{
7a61b0b5
SG
228 return device_bind_common(parent, drv, name, platdata, 0,
229 offset_to_ofnode(of_offset), 0, devp);
daac3bfe
SW
230}
231
00606d7e
SG
232int device_bind_by_name(struct udevice *parent, bool pre_reloc_only,
233 const struct driver_info *info, struct udevice **devp)
6494d708
SG
234{
235 struct driver *drv;
9fa28190 236 uint platdata_size = 0;
6494d708
SG
237
238 drv = lists_driver_lookup_name(info->name);
239 if (!drv)
240 return -ENOENT;
00606d7e
SG
241 if (pre_reloc_only && !(drv->flags & DM_FLAG_PRE_RELOC))
242 return -EPERM;
6494d708 243
9fa28190
SG
244#if CONFIG_IS_ENABLED(OF_PLATDATA)
245 platdata_size = info->platdata_size;
246#endif
247 return device_bind_common(parent, drv, info->name,
396e343b
SG
248 (void *)info->platdata, 0, ofnode_null(), platdata_size,
249 devp);
6494d708
SG
250}
251
2c03c463
SG
252static void *alloc_priv(int size, uint flags)
253{
254 void *priv;
255
256 if (flags & DM_FLAG_ALLOC_PRIV_DMA) {
5924da1d 257 size = ROUND(size, ARCH_DMA_MINALIGN);
2c03c463 258 priv = memalign(ARCH_DMA_MINALIGN, size);
5a8a8045 259 if (priv) {
2c03c463 260 memset(priv, '\0', size);
5a8a8045
SG
261
262 /*
263 * Ensure that the zero bytes are flushed to memory.
264 * This prevents problems if the driver uses this as
265 * both an input and an output buffer:
266 *
267 * 1. Zeroes written to buffer (here) and sit in the
268 * cache
269 * 2. Driver issues a read command to DMA
270 * 3. CPU runs out of cache space and evicts some cache
271 * data in the buffer, writing zeroes to RAM from
272 * the memset() above
273 * 4. DMA completes
274 * 5. Buffer now has some DMA data and some zeroes
275 * 6. Data being read is now incorrect
276 *
277 * To prevent this, ensure that the cache is clean
278 * within this range at the start. The driver can then
279 * use normal flush-after-write, invalidate-before-read
280 * procedures.
281 *
282 * TODO(sjg@chromium.org): Drop this microblaze
283 * exception.
284 */
285#ifndef CONFIG_MICROBLAZE
286 flush_dcache_range((ulong)priv, (ulong)priv + size);
287#endif
288 }
2c03c463
SG
289 } else {
290 priv = calloc(1, size);
291 }
292
293 return priv;
294}
295
c6db965f 296int device_probe(struct udevice *dev)
6494d708 297{
3479253d 298 const struct driver *drv;
6494d708
SG
299 int size = 0;
300 int ret;
5a66a8ff 301 int seq;
6494d708
SG
302
303 if (!dev)
304 return -EINVAL;
305
306 if (dev->flags & DM_FLAG_ACTIVATED)
307 return 0;
308
309 drv = dev->driver;
310 assert(drv);
311
cdeb2ba9
BM
312 /* Allocate private data if requested and not reentered */
313 if (drv->priv_auto_alloc_size && !dev->priv) {
2c03c463 314 dev->priv = alloc_priv(drv->priv_auto_alloc_size, drv->flags);
6494d708
SG
315 if (!dev->priv) {
316 ret = -ENOMEM;
317 goto fail;
318 }
319 }
cdeb2ba9 320 /* Allocate private data if requested and not reentered */
6494d708 321 size = dev->uclass->uc_drv->per_device_auto_alloc_size;
cdeb2ba9 322 if (size && !dev->uclass_priv) {
6494d708
SG
323 dev->uclass_priv = calloc(1, size);
324 if (!dev->uclass_priv) {
325 ret = -ENOMEM;
326 goto fail;
327 }
328 }
329
330 /* Ensure all parents are probed */
331 if (dev->parent) {
e59f458d 332 size = dev->parent->driver->per_child_auto_alloc_size;
dac8db2c
SG
333 if (!size) {
334 size = dev->parent->uclass->uc_drv->
335 per_child_auto_alloc_size;
336 }
cdeb2ba9 337 if (size && !dev->parent_priv) {
2c03c463 338 dev->parent_priv = alloc_priv(size, drv->flags);
e59f458d
SG
339 if (!dev->parent_priv) {
340 ret = -ENOMEM;
341 goto fail;
342 }
343 }
344
6494d708
SG
345 ret = device_probe(dev->parent);
346 if (ret)
347 goto fail;
cdeb2ba9
BM
348
349 /*
350 * The device might have already been probed during
351 * the call to device_probe() on its parent device
352 * (e.g. PCI bridge devices). Test the flags again
353 * so that we don't mess up the device.
354 */
355 if (dev->flags & DM_FLAG_ACTIVATED)
356 return 0;
6494d708
SG
357 }
358
5a66a8ff
SG
359 seq = uclass_resolve_seq(dev);
360 if (seq < 0) {
361 ret = seq;
362 goto fail;
363 }
364 dev->seq = seq;
365
206d4d2b
SG
366 dev->flags |= DM_FLAG_ACTIVATED;
367
84d26e29
SG
368 /*
369 * Process pinctrl for everything except the root device, and
0379597e
SG
370 * continue regardless of the result of pinctrl. Don't process pinctrl
371 * settings for pinctrl devices since the device may not yet be
372 * probed.
84d26e29 373 */
0379597e 374 if (dev->parent && device_get_uclass_id(dev) != UCLASS_PINCTRL)
84d26e29 375 pinctrl_select_state(dev, "default");
d90a5a30 376
02c07b37 377 ret = uclass_pre_probe_device(dev);
83c7e434
SG
378 if (ret)
379 goto fail;
380
a327dee0
SG
381 if (dev->parent && dev->parent->driver->child_pre_probe) {
382 ret = dev->parent->driver->child_pre_probe(dev);
383 if (ret)
384 goto fail;
385 }
386
396e343b 387 if (drv->ofdata_to_platdata && dev_has_of_node(dev)) {
6494d708
SG
388 ret = drv->ofdata_to_platdata(dev);
389 if (ret)
390 goto fail;
391 }
392
393 if (drv->probe) {
394 ret = drv->probe(dev);
02eeb1bb
SG
395 if (ret) {
396 dev->flags &= ~DM_FLAG_ACTIVATED;
6494d708 397 goto fail;
02eeb1bb 398 }
6494d708
SG
399 }
400
6494d708 401 ret = uclass_post_probe_device(dev);
206d4d2b 402 if (ret)
6494d708 403 goto fail_uclass;
6494d708 404
c3ab9853
PF
405 if (dev->parent && device_get_uclass_id(dev) == UCLASS_PINCTRL)
406 pinctrl_select_state(dev, "default");
407
6494d708
SG
408 return 0;
409fail_uclass:
706865af 410 if (device_remove(dev, DM_REMOVE_NORMAL)) {
6494d708
SG
411 dm_warn("%s: Device '%s' failed to remove on error path\n",
412 __func__, dev->name);
413 }
414fail:
206d4d2b
SG
415 dev->flags &= ~DM_FLAG_ACTIVATED;
416
5a66a8ff 417 dev->seq = -1;
6494d708
SG
418 device_free(dev);
419
420 return ret;
421}
422
54c5d08a 423void *dev_get_platdata(struct udevice *dev)
6494d708
SG
424{
425 if (!dev) {
964d153c 426 dm_warn("%s: null device\n", __func__);
6494d708
SG
427 return NULL;
428 }
429
430 return dev->platdata;
431}
432
cdc133bd
SG
433void *dev_get_parent_platdata(struct udevice *dev)
434{
435 if (!dev) {
36d7cc17 436 dm_warn("%s: null device\n", __func__);
cdc133bd
SG
437 return NULL;
438 }
439
440 return dev->parent_platdata;
441}
442
5eaed880
PM
443void *dev_get_uclass_platdata(struct udevice *dev)
444{
445 if (!dev) {
36d7cc17 446 dm_warn("%s: null device\n", __func__);
5eaed880
PM
447 return NULL;
448 }
449
450 return dev->uclass_platdata;
451}
452
54c5d08a 453void *dev_get_priv(struct udevice *dev)
6494d708
SG
454{
455 if (!dev) {
964d153c 456 dm_warn("%s: null device\n", __func__);
6494d708
SG
457 return NULL;
458 }
459
460 return dev->priv;
461}
997c87bb 462
e564f054
SG
463void *dev_get_uclass_priv(struct udevice *dev)
464{
465 if (!dev) {
466 dm_warn("%s: null device\n", __func__);
467 return NULL;
468 }
469
470 return dev->uclass_priv;
471}
472
bcbe3d15 473void *dev_get_parent_priv(struct udevice *dev)
e59f458d
SG
474{
475 if (!dev) {
964d153c 476 dm_warn("%s: null device\n", __func__);
e59f458d
SG
477 return NULL;
478 }
479
480 return dev->parent_priv;
481}
482
997c87bb
SG
483static int device_get_device_tail(struct udevice *dev, int ret,
484 struct udevice **devp)
485{
486 if (ret)
487 return ret;
488
489 ret = device_probe(dev);
490 if (ret)
491 return ret;
492
493 *devp = dev;
494
495 return 0;
496}
497
498int device_get_child(struct udevice *parent, int index, struct udevice **devp)
499{
500 struct udevice *dev;
501
502 list_for_each_entry(dev, &parent->child_head, sibling_node) {
503 if (!index--)
504 return device_get_device_tail(dev, 0, devp);
505 }
506
507 return -ENODEV;
508}
509
510int device_find_child_by_seq(struct udevice *parent, int seq_or_req_seq,
511 bool find_req_seq, struct udevice **devp)
512{
513 struct udevice *dev;
514
515 *devp = NULL;
516 if (seq_or_req_seq == -1)
517 return -ENODEV;
518
519 list_for_each_entry(dev, &parent->child_head, sibling_node) {
520 if ((find_req_seq ? dev->req_seq : dev->seq) ==
521 seq_or_req_seq) {
522 *devp = dev;
523 return 0;
524 }
525 }
526
527 return -ENODEV;
528}
529
530int device_get_child_by_seq(struct udevice *parent, int seq,
531 struct udevice **devp)
532{
533 struct udevice *dev;
534 int ret;
535
536 *devp = NULL;
537 ret = device_find_child_by_seq(parent, seq, false, &dev);
538 if (ret == -ENODEV) {
539 /*
540 * We didn't find it in probed devices. See if there is one
541 * that will request this seq if probed.
542 */
543 ret = device_find_child_by_seq(parent, seq, true, &dev);
544 }
545 return device_get_device_tail(dev, ret, devp);
546}
547
548int device_find_child_by_of_offset(struct udevice *parent, int of_offset,
549 struct udevice **devp)
550{
551 struct udevice *dev;
552
553 *devp = NULL;
554
555 list_for_each_entry(dev, &parent->child_head, sibling_node) {
e160f7d4 556 if (dev_of_offset(dev) == of_offset) {
997c87bb
SG
557 *devp = dev;
558 return 0;
559 }
560 }
561
562 return -ENODEV;
563}
564
132f9bfc 565int device_get_child_by_of_offset(struct udevice *parent, int node,
997c87bb
SG
566 struct udevice **devp)
567{
568 struct udevice *dev;
569 int ret;
570
571 *devp = NULL;
132f9bfc 572 ret = device_find_child_by_of_offset(parent, node, &dev);
997c87bb
SG
573 return device_get_device_tail(dev, ret, devp);
574}
a8981d4f 575
2693047a
SG
576static struct udevice *_device_find_global_by_of_offset(struct udevice *parent,
577 int of_offset)
578{
579 struct udevice *dev, *found;
580
e160f7d4 581 if (dev_of_offset(parent) == of_offset)
2693047a
SG
582 return parent;
583
584 list_for_each_entry(dev, &parent->child_head, sibling_node) {
585 found = _device_find_global_by_of_offset(dev, of_offset);
586 if (found)
587 return found;
588 }
589
590 return NULL;
591}
592
593int device_get_global_by_of_offset(int of_offset, struct udevice **devp)
594{
595 struct udevice *dev;
596
597 dev = _device_find_global_by_of_offset(gd->dm_root, of_offset);
598 return device_get_device_tail(dev, dev ? 0 : -ENOENT, devp);
599}
600
a8981d4f
SG
601int device_find_first_child(struct udevice *parent, struct udevice **devp)
602{
603 if (list_empty(&parent->child_head)) {
604 *devp = NULL;
605 } else {
606 *devp = list_first_entry(&parent->child_head, struct udevice,
607 sibling_node);
608 }
609
610 return 0;
611}
612
613int device_find_next_child(struct udevice **devp)
614{
615 struct udevice *dev = *devp;
616 struct udevice *parent = dev->parent;
617
618 if (list_is_last(&dev->sibling_node, &parent->child_head)) {
619 *devp = NULL;
620 } else {
621 *devp = list_entry(dev->sibling_node.next, struct udevice,
622 sibling_node);
623 }
624
625 return 0;
626}
2ef249b4 627
479728cb
SG
628struct udevice *dev_get_parent(struct udevice *child)
629{
630 return child->parent;
631}
632
39de8433 633ulong dev_get_driver_data(struct udevice *dev)
2ef249b4 634{
39de8433 635 return dev->driver_data;
2ef249b4 636}
b3670531 637
cc73d37b
PM
638const void *dev_get_driver_ops(struct udevice *dev)
639{
640 if (!dev || !dev->driver->ops)
641 return NULL;
642
643 return dev->driver->ops;
644}
645
b3670531
SG
646enum uclass_id device_get_uclass_id(struct udevice *dev)
647{
648 return dev->uclass->uc_drv->id;
649}
c9cac3f8 650
f9c370dc
PM
651const char *dev_get_uclass_name(struct udevice *dev)
652{
653 if (!dev)
654 return NULL;
655
656 return dev->uclass->uc_drv->name;
657}
658
c5785673
SG
659bool device_has_children(struct udevice *dev)
660{
661 return !list_empty(&dev->child_head);
662}
663
664bool device_has_active_children(struct udevice *dev)
665{
666 struct udevice *child;
667
668 for (device_find_first_child(dev, &child);
669 child;
670 device_find_next_child(&child)) {
671 if (device_active(child))
672 return true;
673 }
674
675 return false;
676}
677
678bool device_is_last_sibling(struct udevice *dev)
679{
680 struct udevice *parent = dev->parent;
681
682 if (!parent)
683 return false;
684 return list_is_last(&dev->sibling_node, &parent->child_head);
685}
f5c67ea0 686
a2040fac
SG
687void device_set_name_alloced(struct udevice *dev)
688{
fd1c2d9b 689 dev->flags |= DM_FLAG_NAME_ALLOCED;
a2040fac
SG
690}
691
f5c67ea0
SG
692int device_set_name(struct udevice *dev, const char *name)
693{
694 name = strdup(name);
695 if (!name)
696 return -ENOMEM;
697 dev->name = name;
a2040fac 698 device_set_name_alloced(dev);
f5c67ea0
SG
699
700 return 0;
701}
73443b9e 702
911f3aef 703bool device_is_compatible(struct udevice *dev, const char *compat)
73443b9e
M
704{
705 const void *fdt = gd->fdt_blob;
706
e160f7d4 707 return !fdt_node_check_compatible(fdt, dev_of_offset(dev), compat);
73443b9e
M
708}
709
710bool of_machine_is_compatible(const char *compat)
711{
712 const void *fdt = gd->fdt_blob;
713
714 return !fdt_node_check_compatible(fdt, 0, compat);
715}