source: GPL/branches/uniaud32-exp/lib32/component.c@ 737

Last change on this file since 737 was 737, checked in by Paul Smedley, 3 years ago

Initial commit of 5.17.15

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1// SPDX-License-Identifier: GPL-2.0
2/*
3 * Componentized device handling.
4 */
5#include <linux/component.h>
6#include <linux/device.h>
7#include <linux/list.h>
8#include <linux/mutex.h>
9#include <linux/of.h>
10#include <linux/slab.h>
11#include <linux/debugfs.h>
12
13/**
14 * DOC: overview
15 *
16 * The component helper allows drivers to collect a pile of sub-devices,
17 * including their bound drivers, into an aggregate driver. Various subsystems
18 * already provide functions to get hold of such components, e.g.
19 * of_clk_get_by_name(). The component helper can be used when such a
20 * subsystem-specific way to find a device is not available: The component
21 * helper fills the niche of aggregate drivers for specific hardware, where
22 * further standardization into a subsystem would not be practical. The common
23 * example is when a logical device (e.g. a DRM display driver) is spread around
24 * the SoC on various components (scanout engines, blending blocks, transcoders
25 * for various outputs and so on).
26 *
27 * The component helper also doesn't solve runtime dependencies, e.g. for system
28 * suspend and resume operations. See also :ref:`device links<device_link>`.
29 *
30 * Components are registered using component_add() and unregistered with
31 * component_del(), usually from the driver's probe and disconnect functions.
32 *
33 * Aggregate drivers first assemble a component match list of what they need
34 * using component_match_add(). This is then registered as an aggregate driver
35 * using component_master_add_with_match(), and unregistered using
36 * component_master_del().
37 */
38
39struct component;
40
41struct component_match_array {
42 void *data;
43 int (*compare)(struct device *, void *);
44 int (*compare_typed)(struct device *, int, void *);
45 void (*release)(struct device *, void *);
46 struct component *component;
47 bool duplicate;
48};
49
50struct component_match {
51 size_t alloc;
52 size_t num;
53 struct component_match_array *compare;
54};
55
56struct aggregate_device {
57 struct list_head node;
58 bool bound;
59
60 const struct component_master_ops *ops;
61 struct device *parent;
62 struct component_match *match;
63};
64
65struct component {
66 struct list_head node;
67 struct aggregate_device *adev;
68 bool bound;
69
70 const struct component_ops *ops;
71 int subcomponent;
72 struct device *dev;
73};
74
75static DEFINE_MUTEX(component_mutex);
76static LIST_HEAD(component_list);
77static LIST_HEAD(aggregate_devices);
78
79#ifdef CONFIG_DEBUG_FS
80
81static struct dentry *component_debugfs_dir;
82
83static int component_devices_show(struct seq_file *s, void *data)
84{
85 struct aggregate_device *m = s->private;
86 struct component_match *match = m->match;
87 size_t i;
88
89 mutex_lock(&component_mutex);
90 seq_printf(s, "%-40s %20s\n", "aggregate_device name", "status");
91 seq_puts(s, "-------------------------------------------------------------\n");
92 seq_printf(s, "%-40s %20s\n\n",
93 dev_name(m->parent), m->bound ? "bound" : "not bound");
94
95 seq_printf(s, "%-40s %20s\n", "device name", "status");
96 seq_puts(s, "-------------------------------------------------------------\n");
97 for (i = 0; i < match->num; i++) {
98 struct component *component = match->compare[i].component;
99
100 seq_printf(s, "%-40s %20s\n",
101 component ? dev_name(component->dev) : "(unknown)",
102 component ? (component->bound ? "bound" : "not bound") : "not registered");
103 }
104 mutex_unlock(&component_mutex);
105
106 return 0;
107}
108
109DEFINE_SHOW_ATTRIBUTE(component_devices);
110
111static int __init component_debug_init(void)
112{
113 component_debugfs_dir = debugfs_create_dir("device_component", NULL);
114
115 return 0;
116}
117
118core_initcall(component_debug_init);
119
120static void component_debugfs_add(struct aggregate_device *m)
121{
122 debugfs_create_file(dev_name(m->parent), 0444, component_debugfs_dir, m,
123 &component_devices_fops);
124}
125
126static void component_debugfs_del(struct aggregate_device *m)
127{
128 debugfs_remove(debugfs_lookup(dev_name(m->parent), component_debugfs_dir));
129}
130
131#else
132
133static void component_debugfs_add(struct aggregate_device *m)
134{ }
135
136static void component_debugfs_del(struct aggregate_device *m)
137{ }
138
139#endif
140
141static struct aggregate_device *__aggregate_find(struct device *parent,
142 const struct component_master_ops *ops)
143{
144 struct aggregate_device *m;
145
146 list_for_each_entry(m, &aggregate_devices, node, struct aggregate_device)
147 if (m->parent == parent && (!ops || m->ops == ops))
148 return m;
149
150 return NULL;
151}
152
153static struct component *find_component(struct aggregate_device *adev,
154 struct component_match_array *mc)
155{
156 struct component *c;
157
158 list_for_each_entry(c, &component_list, node, struct component) {
159 if (c->adev && c->adev != adev)
160 continue;
161
162 if (mc->compare && mc->compare(c->dev, mc->data))
163 return c;
164
165 if (mc->compare_typed &&
166 mc->compare_typed(c->dev, c->subcomponent, mc->data))
167 return c;
168 }
169
170 return NULL;
171}
172
173static int find_components(struct aggregate_device *adev)
174{
175 struct component_match *match = adev->match;
176 size_t i;
177 int ret = 0;
178
179 /*
180 * Scan the array of match functions and attach
181 * any components which are found to this adev.
182 */
183 for (i = 0; i < match->num; i++) {
184 struct component_match_array *mc = &match->compare[i];
185 struct component *c;
186
187 dev_dbg(adev->parent, "Looking for component %zu\n", i);
188
189 if (match->compare[i].component)
190 continue;
191
192 c = find_component(adev, mc);
193 if (!c) {
194 ret = -ENXIO;
195 break;
196 }
197
198 dev_dbg(adev->parent, "found component %s, duplicate %u\n",
199 dev_name(c->dev), !!c->adev);
200
201 /* Attach this component to the adev */
202 match->compare[i].duplicate = !!c->adev;
203 match->compare[i].component = c;
204 c->adev = adev;
205 }
206 return ret;
207}
208
209/* Detach component from associated aggregate_device */
210static void remove_component(struct aggregate_device *adev, struct component *c)
211{
212 size_t i;
213
214 /* Detach the component from this adev. */
215 for (i = 0; i < adev->match->num; i++)
216 if (adev->match->compare[i].component == c)
217 adev->match->compare[i].component = NULL;
218}
219
220/*
221 * Try to bring up an aggregate device. If component is NULL, we're interested
222 * in this aggregate device, otherwise it's a component which must be present
223 * to try and bring up the aggregate device.
224 *
225 * Returns 1 for successful bringup, 0 if not ready, or -ve errno.
226 */
227static int try_to_bring_up_aggregate_device(struct aggregate_device *adev,
228 struct component *component)
229{
230 int ret;
231
232 dev_dbg(adev->parent, "trying to bring up adev\n");
233
234 if (find_components(adev)) {
235 dev_dbg(adev->parent, "master has incomplete components\n");
236 return 0;
237 }
238
239 if (component && component->adev != adev) {
240 dev_dbg(adev->parent, "master is not for this component (%s)\n",
241 dev_name(component->dev));
242 return 0;
243 }
244
245#ifndef TARGET_OS2
246 if (!devres_open_group(adev->parent, adev, GFP_KERNEL))
247 return -ENOMEM;
248#endif
249 /* Found all components */
250 ret = adev->ops->bind(adev->parent);
251 if (ret < 0) {
252#ifndef TARGET_OS2
253 devres_release_group(adev->parent, NULL);
254 if (ret != -EPROBE_DEFER)
255 dev_info(adev->parent, "adev bind failed: %d\n", ret);
256#endif
257 return ret;
258 }
259
260// devres_close_group(adev->parent, NULL);
261 adev->bound = true;
262 return 1;
263}
264
265static int try_to_bring_up_masters(struct component *component)
266{
267 struct aggregate_device *adev;
268 int ret = 0;
269
270 list_for_each_entry(adev, &aggregate_devices, node, struct aggregate_device) {
271 if (!adev->bound) {
272 ret = try_to_bring_up_aggregate_device(adev, component);
273 if (ret != 0)
274 break;
275 }
276 }
277
278 return ret;
279}
280
281static void take_down_aggregate_device(struct aggregate_device *adev)
282{
283 if (adev->bound) {
284 adev->ops->unbind(adev->parent);
285// devres_release_group(adev->parent, adev);
286 adev->bound = false;
287 }
288}
289
290/**
291 * component_compare_of - A common component compare function for of_node
292 * @dev: component device
293 * @data: @compare_data from component_match_add_release()
294 *
295 * A common compare function when compare_data is device of_node. e.g.
296 * component_match_add_release(masterdev, &match, component_release_of,
297 * component_compare_of, component_dev_of_node)
298 */
299int component_compare_of(struct device *dev, void *data)
300{
301 return device_match_of_node(dev, data);
302}
303EXPORT_SYMBOL_GPL(component_compare_of);
304
305/**
306 * component_release_of - A common component release function for of_node
307 * @dev: component device
308 * @data: @compare_data from component_match_add_release()
309 *
310 * About the example, Please see component_compare_of().
311 */
312void component_release_of(struct device *dev, void *data)
313{
314 of_node_put(data);
315}
316EXPORT_SYMBOL_GPL(component_release_of);
317
318/**
319 * component_compare_dev - A common component compare function for dev
320 * @dev: component device
321 * @data: @compare_data from component_match_add_release()
322 *
323 * A common compare function when compare_data is struce device. e.g.
324 * component_match_add(masterdev, &match, component_compare_dev, component_dev)
325 */
326int component_compare_dev(struct device *dev, void *data)
327{
328 return dev == data;
329}
330EXPORT_SYMBOL_GPL(component_compare_dev);
331
332/**
333 * component_compare_dev_name - A common component compare function for device name
334 * @dev: component device
335 * @data: @compare_data from component_match_add_release()
336 *
337 * A common compare function when compare_data is device name string. e.g.
338 * component_match_add(masterdev, &match, component_compare_dev_name,
339 * "component_dev_name")
340 */
341int component_compare_dev_name(struct device *dev, void *data)
342{
343 return device_match_name(dev, data);
344}
345EXPORT_SYMBOL_GPL(component_compare_dev_name);
346
347static void devm_component_match_release(struct device *parent, void *res)
348{
349 struct component_match *match = res;
350 unsigned int i;
351
352 for (i = 0; i < match->num; i++) {
353 struct component_match_array *mc = &match->compare[i];
354
355 if (mc->release)
356 mc->release(parent, mc->data);
357 }
358
359 kfree(match->compare);
360}
361
362static int component_match_realloc(struct component_match *match, size_t num)
363{
364 struct component_match_array *new;
365
366 if (match->alloc == num)
367 return 0;
368
369 new = kmalloc_array(num, sizeof(*new), GFP_KERNEL);
370 if (!new)
371 return -ENOMEM;
372
373 if (match->compare) {
374 memcpy(new, match->compare, sizeof(*new) *
375 min(match->num, num));
376 kfree(match->compare);
377 }
378 match->compare = new;
379 match->alloc = num;
380
381 return 0;
382}
383
384static void __component_match_add(struct device *parent,
385 struct component_match **matchptr,
386 void (*release)(struct device *, void *),
387 int (*compare)(struct device *, void *),
388 int (*compare_typed)(struct device *, int, void *),
389 void *compare_data)
390{
391 struct component_match *match = *matchptr;
392
393 if (IS_ERR(match))
394 return;
395
396 if (!match) {
397 match = devres_alloc(devm_component_match_release,
398 sizeof(*match), GFP_KERNEL);
399 if (!match) {
400 *matchptr = ERR_PTR(-ENOMEM);
401 return;
402 }
403
404 devres_add(parent, match);
405
406 *matchptr = match;
407 }
408
409 if (match->num == match->alloc) {
410 size_t new_size = match->alloc + 16;
411 int ret;
412
413 ret = component_match_realloc(match, new_size);
414 if (ret) {
415 *matchptr = ERR_PTR(ret);
416 return;
417 }
418 }
419
420 match->compare[match->num].compare = compare;
421 match->compare[match->num].compare_typed = compare_typed;
422 match->compare[match->num].release = release;
423 match->compare[match->num].data = compare_data;
424 match->compare[match->num].component = NULL;
425 match->num++;
426}
427
428/**
429 * component_match_add_release - add a component match entry with release callback
430 * @parent: parent device of the aggregate driver
431 * @matchptr: pointer to the list of component matches
432 * @release: release function for @compare_data
433 * @compare: compare function to match against all components
434 * @compare_data: opaque pointer passed to the @compare function
435 *
436 * Adds a new component match to the list stored in @matchptr, which the
437 * aggregate driver needs to function. The list of component matches pointed to
438 * by @matchptr must be initialized to NULL before adding the first match. This
439 * only matches against components added with component_add().
440 *
441 * The allocated match list in @matchptr is automatically released using devm
442 * actions, where upon @release will be called to free any references held by
443 * @compare_data, e.g. when @compare_data is a &device_node that must be
444 * released with of_node_put().
445 *
446 * See also component_match_add() and component_match_add_typed().
447 */
448void component_match_add_release(struct device *parent,
449 struct component_match **matchptr,
450 void (*release)(struct device *, void *),
451 int (*compare)(struct device *, void *), void *compare_data)
452{
453 __component_match_add(parent, matchptr, release, compare, NULL,
454 compare_data);
455}
456EXPORT_SYMBOL(component_match_add_release);
457
458/**
459 * component_match_add_typed - add a component match entry for a typed component
460 * @parent: parent device of the aggregate driver
461 * @matchptr: pointer to the list of component matches
462 * @compare_typed: compare function to match against all typed components
463 * @compare_data: opaque pointer passed to the @compare function
464 *
465 * Adds a new component match to the list stored in @matchptr, which the
466 * aggregate driver needs to function. The list of component matches pointed to
467 * by @matchptr must be initialized to NULL before adding the first match. This
468 * only matches against components added with component_add_typed().
469 *
470 * The allocated match list in @matchptr is automatically released using devm
471 * actions.
472 *
473 * See also component_match_add_release() and component_match_add_typed().
474 */
475void component_match_add_typed(struct device *parent,
476 struct component_match **matchptr,
477 int (*compare_typed)(struct device *, int, void *), void *compare_data)
478{
479 __component_match_add(parent, matchptr, NULL, NULL, compare_typed,
480 compare_data);
481}
482EXPORT_SYMBOL(component_match_add_typed);
483
484static void free_aggregate_device(struct aggregate_device *adev)
485{
486 struct component_match *match = adev->match;
487 int i;
488
489 component_debugfs_del(adev);
490 list_del(&adev->node);
491
492 if (match) {
493 for (i = 0; i < match->num; i++) {
494 struct component *c = match->compare[i].component;
495 if (c)
496 c->adev = NULL;
497 }
498 }
499
500 kfree(adev);
501}
502
503/**
504 * component_master_add_with_match - register an aggregate driver
505 * @parent: parent device of the aggregate driver
506 * @ops: callbacks for the aggregate driver
507 * @match: component match list for the aggregate driver
508 *
509 * Registers a new aggregate driver consisting of the components added to @match
510 * by calling one of the component_match_add() functions. Once all components in
511 * @match are available, it will be assembled by calling
512 * &component_master_ops.bind from @ops. Must be unregistered by calling
513 * component_master_del().
514 */
515int component_master_add_with_match(struct device *parent,
516 const struct component_master_ops *ops,
517 struct component_match *match)
518{
519 struct aggregate_device *adev;
520 int ret;
521
522 /* Reallocate the match array for its true size */
523 ret = component_match_realloc(match, match->num);
524 if (ret)
525 return ret;
526
527 adev = kzalloc(sizeof(*adev), GFP_KERNEL);
528 if (!adev)
529 return -ENOMEM;
530
531 adev->parent = parent;
532 adev->ops = ops;
533 adev->match = match;
534
535 component_debugfs_add(adev);
536 /* Add to the list of available aggregate devices. */
537 mutex_lock(&component_mutex);
538 list_add(&adev->node, &aggregate_devices);
539
540 ret = try_to_bring_up_aggregate_device(adev, NULL);
541
542 if (ret < 0)
543 free_aggregate_device(adev);
544
545 mutex_unlock(&component_mutex);
546
547 return ret < 0 ? ret : 0;
548}
549EXPORT_SYMBOL_GPL(component_master_add_with_match);
550
551/**
552 * component_master_del - unregister an aggregate driver
553 * @parent: parent device of the aggregate driver
554 * @ops: callbacks for the aggregate driver
555 *
556 * Unregisters an aggregate driver registered with
557 * component_master_add_with_match(). If necessary the aggregate driver is first
558 * disassembled by calling &component_master_ops.unbind from @ops.
559 */
560void component_master_del(struct device *parent,
561 const struct component_master_ops *ops)
562{
563 struct aggregate_device *adev;
564
565 mutex_lock(&component_mutex);
566 adev = __aggregate_find(parent, ops);
567 if (adev) {
568 take_down_aggregate_device(adev);
569 free_aggregate_device(adev);
570 }
571 mutex_unlock(&component_mutex);
572}
573EXPORT_SYMBOL_GPL(component_master_del);
574
575static void component_unbind(struct component *component,
576 struct aggregate_device *adev, void *data)
577{
578 WARN_ON(!component->bound);
579
580 if (component->ops && component->ops->unbind)
581 component->ops->unbind(component->dev, adev->parent, data);
582 component->bound = false;
583
584 /* Release all resources claimed in the binding of this component */
585// devres_release_group(component->dev, component);
586}
587
588/**
589 * component_unbind_all - unbind all components of an aggregate driver
590 * @parent: parent device of the aggregate driver
591 * @data: opaque pointer, passed to all components
592 *
593 * Unbinds all components of the aggregate device by passing @data to their
594 * &component_ops.unbind functions. Should be called from
595 * &component_master_ops.unbind.
596 */
597void component_unbind_all(struct device *parent, void *data)
598{
599 struct aggregate_device *adev;
600 struct component *c;
601 size_t i;
602
603 WARN_ON(!mutex_is_locked(&component_mutex));
604
605 adev = __aggregate_find(parent, NULL);
606 if (!adev)
607 return;
608
609 /* Unbind components in reverse order */
610 for (i = adev->match->num; i--; )
611 if (!adev->match->compare[i].duplicate) {
612 c = adev->match->compare[i].component;
613 component_unbind(c, adev, data);
614 }
615}
616EXPORT_SYMBOL_GPL(component_unbind_all);
617
618static int component_bind(struct component *component, struct aggregate_device *adev,
619 void *data)
620{
621 int ret;
622
623 /*
624 * Each component initialises inside its own devres group.
625 * This allows us to roll-back a failed component without
626 * affecting anything else.
627 */
628#ifndef TARGET_OS2
629 if (!devres_open_group(adev->parent, NULL, GFP_KERNEL))
630 return -ENOMEM;
631#endif
632 /*
633 * Also open a group for the device itself: this allows us
634 * to release the resources claimed against the sub-device
635 * at the appropriate moment.
636 */
637// if (!devres_open_group(component->dev, component, GFP_KERNEL)) {
638// devres_release_group(adev->parent, NULL);
639// return -ENOMEM;
640// }
641
642 dev_dbg(adev->parent, "binding %s (ops %ps)\n",
643 dev_name(component->dev), component->ops);
644
645 ret = component->ops->bind(component->dev, adev->parent, data);
646 if (!ret) {
647 component->bound = true;
648
649 /*
650 * Close the component device's group so that resources
651 * allocated in the binding are encapsulated for removal
652 * at unbind. Remove the group on the DRM device as we
653 * can clean those resources up independently.
654 */
655// devres_close_group(component->dev, NULL);
656// devres_remove_group(adev->parent, NULL);
657
658 dev_info(adev->parent, "bound %s (ops %ps)\n",
659 dev_name(component->dev), component->ops);
660 } else {
661// devres_release_group(component->dev, NULL);
662// devres_release_group(adev->parent, NULL);
663
664 if (ret != -EPROBE_DEFER)
665 dev_err(adev->parent, "failed to bind %s (ops %ps): %d\n",
666 dev_name(component->dev), component->ops, ret);
667 }
668
669 return ret;
670}
671
672/**
673 * component_bind_all - bind all components of an aggregate driver
674 * @parent: parent device of the aggregate driver
675 * @data: opaque pointer, passed to all components
676 *
677 * Binds all components of the aggregate @dev by passing @data to their
678 * &component_ops.bind functions. Should be called from
679 * &component_master_ops.bind.
680 */
681int component_bind_all(struct device *parent, void *data)
682{
683 struct aggregate_device *adev;
684 struct component *c;
685 size_t i;
686 int ret = 0;
687
688 WARN_ON(!mutex_is_locked(&component_mutex));
689
690 adev = __aggregate_find(parent, NULL);
691 if (!adev)
692 return -EINVAL;
693
694 /* Bind components in match order */
695 for (i = 0; i < adev->match->num; i++)
696 if (!adev->match->compare[i].duplicate) {
697 c = adev->match->compare[i].component;
698 ret = component_bind(c, adev, data);
699 if (ret)
700 break;
701 }
702
703 if (ret != 0) {
704 for (; i > 0; i--)
705 if (!adev->match->compare[i - 1].duplicate) {
706 c = adev->match->compare[i - 1].component;
707 component_unbind(c, adev, data);
708 }
709 }
710
711 return ret;
712}
713EXPORT_SYMBOL_GPL(component_bind_all);
714
715static int __component_add(struct device *dev, const struct component_ops *ops,
716 int subcomponent)
717{
718 struct component *component;
719 int ret;
720
721 component = kzalloc(sizeof(*component), GFP_KERNEL);
722 if (!component)
723 return -ENOMEM;
724
725 component->ops = ops;
726 component->dev = dev;
727 component->subcomponent = subcomponent;
728
729 dev_dbg(dev, "adding component (ops %ps)\n", ops);
730
731 mutex_lock(&component_mutex);
732 list_add_tail(&component->node, &component_list);
733
734 ret = try_to_bring_up_masters(component);
735 if (ret < 0) {
736 if (component->adev)
737 remove_component(component->adev, component);
738 list_del(&component->node);
739
740 kfree(component);
741 }
742 mutex_unlock(&component_mutex);
743
744 return ret < 0 ? ret : 0;
745}
746
747/**
748 * component_add_typed - register a component
749 * @dev: component device
750 * @ops: component callbacks
751 * @subcomponent: nonzero identifier for subcomponents
752 *
753 * Register a new component for @dev. Functions in @ops will be call when the
754 * aggregate driver is ready to bind the overall driver by calling
755 * component_bind_all(). See also &struct component_ops.
756 *
757 * @subcomponent must be nonzero and is used to differentiate between multiple
758 * components registerd on the same device @dev. These components are match
759 * using component_match_add_typed().
760 *
761 * The component needs to be unregistered at driver unload/disconnect by
762 * calling component_del().
763 *
764 * See also component_add().
765 */
766int component_add_typed(struct device *dev, const struct component_ops *ops,
767 int subcomponent)
768{
769 if (WARN_ON(subcomponent == 0))
770 return -EINVAL;
771
772 return __component_add(dev, ops, subcomponent);
773}
774EXPORT_SYMBOL_GPL(component_add_typed);
775
776/**
777 * component_add - register a component
778 * @dev: component device
779 * @ops: component callbacks
780 *
781 * Register a new component for @dev. Functions in @ops will be called when the
782 * aggregate driver is ready to bind the overall driver by calling
783 * component_bind_all(). See also &struct component_ops.
784 *
785 * The component needs to be unregistered at driver unload/disconnect by
786 * calling component_del().
787 *
788 * See also component_add_typed() for a variant that allows multipled different
789 * components on the same device.
790 */
791int component_add(struct device *dev, const struct component_ops *ops)
792{
793 return __component_add(dev, ops, 0);
794}
795EXPORT_SYMBOL_GPL(component_add);
796
797/**
798 * component_del - unregister a component
799 * @dev: component device
800 * @ops: component callbacks
801 *
802 * Unregister a component added with component_add(). If the component is bound
803 * into an aggregate driver, this will force the entire aggregate driver, including
804 * all its components, to be unbound.
805 */
806void component_del(struct device *dev, const struct component_ops *ops)
807{
808 struct component *c, *component = NULL;
809
810 mutex_lock(&component_mutex);
811 list_for_each_entry(c, &component_list, node, struct component)
812 if (c->dev == dev && c->ops == ops) {
813 list_del(&c->node);
814 component = c;
815 break;
816 }
817
818 if (component && component->adev) {
819 take_down_aggregate_device(component->adev);
820 remove_component(component->adev, component);
821 }
822
823 mutex_unlock(&component_mutex);
824
825 WARN_ON(!component);
826 kfree(component);
827}
828EXPORT_SYMBOL_GPL(component_del);
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