xref: /kernel/linux/linux-5.10/drivers/base/swnode.c (revision 8c2ecf20)
1// SPDX-License-Identifier: GPL-2.0
2/*
3 * Software nodes for the firmware node framework.
4 *
5 * Copyright (C) 2018, Intel Corporation
6 * Author: Heikki Krogerus <heikki.krogerus@linux.intel.com>
7 */
8
9#include <linux/device.h>
10#include <linux/kernel.h>
11#include <linux/property.h>
12#include <linux/slab.h>
13
14struct swnode {
15	int id;
16	struct kobject kobj;
17	struct fwnode_handle fwnode;
18	const struct software_node *node;
19
20	/* hierarchy */
21	struct ida child_ids;
22	struct list_head entry;
23	struct list_head children;
24	struct swnode *parent;
25
26	unsigned int allocated:1;
27};
28
29static DEFINE_IDA(swnode_root_ids);
30static struct kset *swnode_kset;
31
32#define kobj_to_swnode(_kobj_) container_of(_kobj_, struct swnode, kobj)
33
34static const struct fwnode_operations software_node_ops;
35
36bool is_software_node(const struct fwnode_handle *fwnode)
37{
38	return !IS_ERR_OR_NULL(fwnode) && fwnode->ops == &software_node_ops;
39}
40EXPORT_SYMBOL_GPL(is_software_node);
41
42#define to_swnode(__fwnode)						\
43	({								\
44		typeof(__fwnode) __to_swnode_fwnode = __fwnode;		\
45									\
46		is_software_node(__to_swnode_fwnode) ?			\
47			container_of(__to_swnode_fwnode,		\
48				     struct swnode, fwnode) : NULL;	\
49	})
50
51static struct swnode *
52software_node_to_swnode(const struct software_node *node)
53{
54	struct swnode *swnode = NULL;
55	struct kobject *k;
56
57	if (!node)
58		return NULL;
59
60	spin_lock(&swnode_kset->list_lock);
61
62	list_for_each_entry(k, &swnode_kset->list, entry) {
63		swnode = kobj_to_swnode(k);
64		if (swnode->node == node)
65			break;
66		swnode = NULL;
67	}
68
69	spin_unlock(&swnode_kset->list_lock);
70
71	return swnode;
72}
73
74const struct software_node *to_software_node(const struct fwnode_handle *fwnode)
75{
76	const struct swnode *swnode = to_swnode(fwnode);
77
78	return swnode ? swnode->node : NULL;
79}
80EXPORT_SYMBOL_GPL(to_software_node);
81
82struct fwnode_handle *software_node_fwnode(const struct software_node *node)
83{
84	struct swnode *swnode = software_node_to_swnode(node);
85
86	return swnode ? &swnode->fwnode : NULL;
87}
88EXPORT_SYMBOL_GPL(software_node_fwnode);
89
90/* -------------------------------------------------------------------------- */
91/* property_entry processing */
92
93static const struct property_entry *
94property_entry_get(const struct property_entry *prop, const char *name)
95{
96	if (!prop)
97		return NULL;
98
99	for (; prop->name; prop++)
100		if (!strcmp(name, prop->name))
101			return prop;
102
103	return NULL;
104}
105
106static const void *property_get_pointer(const struct property_entry *prop)
107{
108	if (!prop->length)
109		return NULL;
110
111	return prop->is_inline ? &prop->value : prop->pointer;
112}
113
114static const void *property_entry_find(const struct property_entry *props,
115				       const char *propname, size_t length)
116{
117	const struct property_entry *prop;
118	const void *pointer;
119
120	prop = property_entry_get(props, propname);
121	if (!prop)
122		return ERR_PTR(-EINVAL);
123	pointer = property_get_pointer(prop);
124	if (!pointer)
125		return ERR_PTR(-ENODATA);
126	if (length > prop->length)
127		return ERR_PTR(-EOVERFLOW);
128	return pointer;
129}
130
131static int
132property_entry_count_elems_of_size(const struct property_entry *props,
133				   const char *propname, size_t length)
134{
135	const struct property_entry *prop;
136
137	prop = property_entry_get(props, propname);
138	if (!prop)
139		return -EINVAL;
140
141	return prop->length / length;
142}
143
144static int property_entry_read_int_array(const struct property_entry *props,
145					 const char *name,
146					 unsigned int elem_size, void *val,
147					 size_t nval)
148{
149	const void *pointer;
150	size_t length;
151
152	if (!val)
153		return property_entry_count_elems_of_size(props, name,
154							  elem_size);
155
156	if (!is_power_of_2(elem_size) || elem_size > sizeof(u64))
157		return -ENXIO;
158
159	length = nval * elem_size;
160
161	pointer = property_entry_find(props, name, length);
162	if (IS_ERR(pointer))
163		return PTR_ERR(pointer);
164
165	memcpy(val, pointer, length);
166	return 0;
167}
168
169static int property_entry_read_string_array(const struct property_entry *props,
170					    const char *propname,
171					    const char **strings, size_t nval)
172{
173	const void *pointer;
174	size_t length;
175	int array_len;
176
177	/* Find out the array length. */
178	array_len = property_entry_count_elems_of_size(props, propname,
179						       sizeof(const char *));
180	if (array_len < 0)
181		return array_len;
182
183	/* Return how many there are if strings is NULL. */
184	if (!strings)
185		return array_len;
186
187	array_len = min_t(size_t, nval, array_len);
188	length = array_len * sizeof(*strings);
189
190	pointer = property_entry_find(props, propname, length);
191	if (IS_ERR(pointer))
192		return PTR_ERR(pointer);
193
194	memcpy(strings, pointer, length);
195
196	return array_len;
197}
198
199static void property_entry_free_data(const struct property_entry *p)
200{
201	const char * const *src_str;
202	size_t i, nval;
203
204	if (p->type == DEV_PROP_STRING) {
205		src_str = property_get_pointer(p);
206		nval = p->length / sizeof(*src_str);
207		for (i = 0; i < nval; i++)
208			kfree(src_str[i]);
209	}
210
211	if (!p->is_inline)
212		kfree(p->pointer);
213
214	kfree(p->name);
215}
216
217static bool property_copy_string_array(const char **dst_ptr,
218				       const char * const *src_ptr,
219				       size_t nval)
220{
221	int i;
222
223	for (i = 0; i < nval; i++) {
224		dst_ptr[i] = kstrdup(src_ptr[i], GFP_KERNEL);
225		if (!dst_ptr[i] && src_ptr[i]) {
226			while (--i >= 0)
227				kfree(dst_ptr[i]);
228			return false;
229		}
230	}
231
232	return true;
233}
234
235static int property_entry_copy_data(struct property_entry *dst,
236				    const struct property_entry *src)
237{
238	const void *pointer = property_get_pointer(src);
239	void *dst_ptr;
240	size_t nval;
241
242	/*
243	 * Properties with no data should not be marked as stored
244	 * out of line.
245	 */
246	if (!src->is_inline && !src->length)
247		return -ENODATA;
248
249	/*
250	 * Reference properties are never stored inline as
251	 * they are too big.
252	 */
253	if (src->type == DEV_PROP_REF && src->is_inline)
254		return -EINVAL;
255
256	if (src->length <= sizeof(dst->value)) {
257		dst_ptr = &dst->value;
258		dst->is_inline = true;
259	} else {
260		dst_ptr = kmalloc(src->length, GFP_KERNEL);
261		if (!dst_ptr)
262			return -ENOMEM;
263		dst->pointer = dst_ptr;
264	}
265
266	if (src->type == DEV_PROP_STRING) {
267		nval = src->length / sizeof(const char *);
268		if (!property_copy_string_array(dst_ptr, pointer, nval)) {
269			if (!dst->is_inline)
270				kfree(dst->pointer);
271			return -ENOMEM;
272		}
273	} else {
274		memcpy(dst_ptr, pointer, src->length);
275	}
276
277	dst->length = src->length;
278	dst->type = src->type;
279	dst->name = kstrdup(src->name, GFP_KERNEL);
280	if (!dst->name) {
281		property_entry_free_data(dst);
282		return -ENOMEM;
283	}
284
285	return 0;
286}
287
288/**
289 * property_entries_dup - duplicate array of properties
290 * @properties: array of properties to copy
291 *
292 * This function creates a deep copy of the given NULL-terminated array
293 * of property entries.
294 */
295struct property_entry *
296property_entries_dup(const struct property_entry *properties)
297{
298	struct property_entry *p;
299	int i, n = 0;
300	int ret;
301
302	if (!properties)
303		return NULL;
304
305	while (properties[n].name)
306		n++;
307
308	p = kcalloc(n + 1, sizeof(*p), GFP_KERNEL);
309	if (!p)
310		return ERR_PTR(-ENOMEM);
311
312	for (i = 0; i < n; i++) {
313		ret = property_entry_copy_data(&p[i], &properties[i]);
314		if (ret) {
315			while (--i >= 0)
316				property_entry_free_data(&p[i]);
317			kfree(p);
318			return ERR_PTR(ret);
319		}
320	}
321
322	return p;
323}
324EXPORT_SYMBOL_GPL(property_entries_dup);
325
326/**
327 * property_entries_free - free previously allocated array of properties
328 * @properties: array of properties to destroy
329 *
330 * This function frees given NULL-terminated array of property entries,
331 * along with their data.
332 */
333void property_entries_free(const struct property_entry *properties)
334{
335	const struct property_entry *p;
336
337	if (!properties)
338		return;
339
340	for (p = properties; p->name; p++)
341		property_entry_free_data(p);
342
343	kfree(properties);
344}
345EXPORT_SYMBOL_GPL(property_entries_free);
346
347/* -------------------------------------------------------------------------- */
348/* fwnode operations */
349
350static struct fwnode_handle *software_node_get(struct fwnode_handle *fwnode)
351{
352	struct swnode *swnode = to_swnode(fwnode);
353
354	kobject_get(&swnode->kobj);
355
356	return &swnode->fwnode;
357}
358
359static void software_node_put(struct fwnode_handle *fwnode)
360{
361	struct swnode *swnode = to_swnode(fwnode);
362
363	kobject_put(&swnode->kobj);
364}
365
366static bool software_node_property_present(const struct fwnode_handle *fwnode,
367					   const char *propname)
368{
369	struct swnode *swnode = to_swnode(fwnode);
370
371	return !!property_entry_get(swnode->node->properties, propname);
372}
373
374static int software_node_read_int_array(const struct fwnode_handle *fwnode,
375					const char *propname,
376					unsigned int elem_size, void *val,
377					size_t nval)
378{
379	struct swnode *swnode = to_swnode(fwnode);
380
381	return property_entry_read_int_array(swnode->node->properties, propname,
382					     elem_size, val, nval);
383}
384
385static int software_node_read_string_array(const struct fwnode_handle *fwnode,
386					   const char *propname,
387					   const char **val, size_t nval)
388{
389	struct swnode *swnode = to_swnode(fwnode);
390
391	return property_entry_read_string_array(swnode->node->properties,
392						propname, val, nval);
393}
394
395static const char *
396software_node_get_name(const struct fwnode_handle *fwnode)
397{
398	const struct swnode *swnode = to_swnode(fwnode);
399
400	if (!swnode)
401		return "(null)";
402
403	return kobject_name(&swnode->kobj);
404}
405
406static const char *
407software_node_get_name_prefix(const struct fwnode_handle *fwnode)
408{
409	struct fwnode_handle *parent;
410	const char *prefix;
411
412	parent = fwnode_get_parent(fwnode);
413	if (!parent)
414		return "";
415
416	/* Figure out the prefix from the parents. */
417	while (is_software_node(parent))
418		parent = fwnode_get_next_parent(parent);
419
420	prefix = fwnode_get_name_prefix(parent);
421	fwnode_handle_put(parent);
422
423	/* Guess something if prefix was NULL. */
424	return prefix ?: "/";
425}
426
427static struct fwnode_handle *
428software_node_get_parent(const struct fwnode_handle *fwnode)
429{
430	struct swnode *swnode = to_swnode(fwnode);
431
432	if (!swnode || !swnode->parent)
433		return NULL;
434
435	return fwnode_handle_get(&swnode->parent->fwnode);
436}
437
438static struct fwnode_handle *
439software_node_get_next_child(const struct fwnode_handle *fwnode,
440			     struct fwnode_handle *child)
441{
442	struct swnode *p = to_swnode(fwnode);
443	struct swnode *c = to_swnode(child);
444
445	if (!p || list_empty(&p->children) ||
446	    (c && list_is_last(&c->entry, &p->children))) {
447		fwnode_handle_put(child);
448		return NULL;
449	}
450
451	if (c)
452		c = list_next_entry(c, entry);
453	else
454		c = list_first_entry(&p->children, struct swnode, entry);
455
456	fwnode_handle_put(child);
457	return fwnode_handle_get(&c->fwnode);
458}
459
460static struct fwnode_handle *
461software_node_get_named_child_node(const struct fwnode_handle *fwnode,
462				   const char *childname)
463{
464	struct swnode *swnode = to_swnode(fwnode);
465	struct swnode *child;
466
467	if (!swnode || list_empty(&swnode->children))
468		return NULL;
469
470	list_for_each_entry(child, &swnode->children, entry) {
471		if (!strcmp(childname, kobject_name(&child->kobj))) {
472			kobject_get(&child->kobj);
473			return &child->fwnode;
474		}
475	}
476	return NULL;
477}
478
479static int
480software_node_get_reference_args(const struct fwnode_handle *fwnode,
481				 const char *propname, const char *nargs_prop,
482				 unsigned int nargs, unsigned int index,
483				 struct fwnode_reference_args *args)
484{
485	struct swnode *swnode = to_swnode(fwnode);
486	const struct software_node_ref_args *ref_array;
487	const struct software_node_ref_args *ref;
488	const struct property_entry *prop;
489	struct fwnode_handle *refnode;
490	u32 nargs_prop_val;
491	int error;
492	int i;
493
494	if (!swnode)
495		return -ENOENT;
496
497	prop = property_entry_get(swnode->node->properties, propname);
498	if (!prop)
499		return -ENOENT;
500
501	if (prop->type != DEV_PROP_REF)
502		return -EINVAL;
503
504	/*
505	 * We expect that references are never stored inline, even
506	 * single ones, as they are too big.
507	 */
508	if (prop->is_inline)
509		return -EINVAL;
510
511	if (index * sizeof(*ref) >= prop->length)
512		return -ENOENT;
513
514	ref_array = prop->pointer;
515	ref = &ref_array[index];
516
517	refnode = software_node_fwnode(ref->node);
518	if (!refnode)
519		return -ENOENT;
520
521	if (nargs_prop) {
522		error = property_entry_read_int_array(ref->node->properties,
523						      nargs_prop, sizeof(u32),
524						      &nargs_prop_val, 1);
525		if (error)
526			return error;
527
528		nargs = nargs_prop_val;
529	}
530
531	if (nargs > NR_FWNODE_REFERENCE_ARGS)
532		return -EINVAL;
533
534	if (!args)
535		return 0;
536
537	args->fwnode = software_node_get(refnode);
538	args->nargs = nargs;
539
540	for (i = 0; i < nargs; i++)
541		args->args[i] = ref->args[i];
542
543	return 0;
544}
545
546static const struct fwnode_operations software_node_ops = {
547	.get = software_node_get,
548	.put = software_node_put,
549	.property_present = software_node_property_present,
550	.property_read_int_array = software_node_read_int_array,
551	.property_read_string_array = software_node_read_string_array,
552	.get_name = software_node_get_name,
553	.get_name_prefix = software_node_get_name_prefix,
554	.get_parent = software_node_get_parent,
555	.get_next_child_node = software_node_get_next_child,
556	.get_named_child_node = software_node_get_named_child_node,
557	.get_reference_args = software_node_get_reference_args
558};
559
560/* -------------------------------------------------------------------------- */
561
562/**
563 * software_node_find_by_name - Find software node by name
564 * @parent: Parent of the software node
565 * @name: Name of the software node
566 *
567 * The function will find a node that is child of @parent and that is named
568 * @name. If no node is found, the function returns NULL.
569 *
570 * NOTE: you will need to drop the reference with fwnode_handle_put() after use.
571 */
572const struct software_node *
573software_node_find_by_name(const struct software_node *parent, const char *name)
574{
575	struct swnode *swnode = NULL;
576	struct kobject *k;
577
578	if (!name)
579		return NULL;
580
581	spin_lock(&swnode_kset->list_lock);
582
583	list_for_each_entry(k, &swnode_kset->list, entry) {
584		swnode = kobj_to_swnode(k);
585		if (parent == swnode->node->parent && swnode->node->name &&
586		    !strcmp(name, swnode->node->name)) {
587			kobject_get(&swnode->kobj);
588			break;
589		}
590		swnode = NULL;
591	}
592
593	spin_unlock(&swnode_kset->list_lock);
594
595	return swnode ? swnode->node : NULL;
596}
597EXPORT_SYMBOL_GPL(software_node_find_by_name);
598
599static int
600software_node_register_properties(struct software_node *node,
601				  const struct property_entry *properties)
602{
603	struct property_entry *props;
604
605	props = property_entries_dup(properties);
606	if (IS_ERR(props))
607		return PTR_ERR(props);
608
609	node->properties = props;
610
611	return 0;
612}
613
614static void software_node_release(struct kobject *kobj)
615{
616	struct swnode *swnode = kobj_to_swnode(kobj);
617
618	if (swnode->parent) {
619		ida_simple_remove(&swnode->parent->child_ids, swnode->id);
620		list_del(&swnode->entry);
621	} else {
622		ida_simple_remove(&swnode_root_ids, swnode->id);
623	}
624
625	if (swnode->allocated) {
626		property_entries_free(swnode->node->properties);
627		kfree(swnode->node);
628	}
629	ida_destroy(&swnode->child_ids);
630	kfree(swnode);
631}
632
633static struct kobj_type software_node_type = {
634	.release = software_node_release,
635	.sysfs_ops = &kobj_sysfs_ops,
636};
637
638static struct fwnode_handle *
639swnode_register(const struct software_node *node, struct swnode *parent,
640		unsigned int allocated)
641{
642	struct swnode *swnode;
643	int ret;
644
645	swnode = kzalloc(sizeof(*swnode), GFP_KERNEL);
646	if (!swnode) {
647		ret = -ENOMEM;
648		goto out_err;
649	}
650
651	ret = ida_simple_get(parent ? &parent->child_ids : &swnode_root_ids,
652			     0, 0, GFP_KERNEL);
653	if (ret < 0) {
654		kfree(swnode);
655		goto out_err;
656	}
657
658	swnode->id = ret;
659	swnode->node = node;
660	swnode->parent = parent;
661	swnode->allocated = allocated;
662	swnode->kobj.kset = swnode_kset;
663	swnode->fwnode.ops = &software_node_ops;
664
665	ida_init(&swnode->child_ids);
666	INIT_LIST_HEAD(&swnode->entry);
667	INIT_LIST_HEAD(&swnode->children);
668
669	if (node->name)
670		ret = kobject_init_and_add(&swnode->kobj, &software_node_type,
671					   parent ? &parent->kobj : NULL,
672					   "%s", node->name);
673	else
674		ret = kobject_init_and_add(&swnode->kobj, &software_node_type,
675					   parent ? &parent->kobj : NULL,
676					   "node%d", swnode->id);
677	if (ret) {
678		kobject_put(&swnode->kobj);
679		return ERR_PTR(ret);
680	}
681
682	if (parent)
683		list_add_tail(&swnode->entry, &parent->children);
684
685	kobject_uevent(&swnode->kobj, KOBJ_ADD);
686	return &swnode->fwnode;
687
688out_err:
689	if (allocated)
690		property_entries_free(node->properties);
691	return ERR_PTR(ret);
692}
693
694/**
695 * software_node_register_nodes - Register an array of software nodes
696 * @nodes: Zero terminated array of software nodes to be registered
697 *
698 * Register multiple software nodes at once.
699 */
700int software_node_register_nodes(const struct software_node *nodes)
701{
702	int ret;
703	int i;
704
705	for (i = 0; nodes[i].name; i++) {
706		ret = software_node_register(&nodes[i]);
707		if (ret) {
708			software_node_unregister_nodes(nodes);
709			return ret;
710		}
711	}
712
713	return 0;
714}
715EXPORT_SYMBOL_GPL(software_node_register_nodes);
716
717/**
718 * software_node_unregister_nodes - Unregister an array of software nodes
719 * @nodes: Zero terminated array of software nodes to be unregistered
720 *
721 * Unregister multiple software nodes at once.
722 *
723 * NOTE: Be careful using this call if the nodes had parent pointers set up in
724 * them before registering.  If so, it is wiser to remove the nodes
725 * individually, in the correct order (child before parent) instead of relying
726 * on the sequential order of the list of nodes in the array.
727 */
728void software_node_unregister_nodes(const struct software_node *nodes)
729{
730	int i;
731
732	for (i = 0; nodes[i].name; i++)
733		software_node_unregister(&nodes[i]);
734}
735EXPORT_SYMBOL_GPL(software_node_unregister_nodes);
736
737/**
738 * software_node_register_node_group - Register a group of software nodes
739 * @node_group: NULL terminated array of software node pointers to be registered
740 *
741 * Register multiple software nodes at once.
742 */
743int software_node_register_node_group(const struct software_node **node_group)
744{
745	unsigned int i;
746	int ret;
747
748	if (!node_group)
749		return 0;
750
751	for (i = 0; node_group[i]; i++) {
752		ret = software_node_register(node_group[i]);
753		if (ret) {
754			software_node_unregister_node_group(node_group);
755			return ret;
756		}
757	}
758
759	return 0;
760}
761EXPORT_SYMBOL_GPL(software_node_register_node_group);
762
763/**
764 * software_node_unregister_node_group - Unregister a group of software nodes
765 * @node_group: NULL terminated array of software node pointers to be unregistered
766 *
767 * Unregister multiple software nodes at once.
768 */
769void software_node_unregister_node_group(const struct software_node **node_group)
770{
771	unsigned int i;
772
773	if (!node_group)
774		return;
775
776	for (i = 0; node_group[i]; i++)
777		software_node_unregister(node_group[i]);
778}
779EXPORT_SYMBOL_GPL(software_node_unregister_node_group);
780
781/**
782 * software_node_register - Register static software node
783 * @node: The software node to be registered
784 */
785int software_node_register(const struct software_node *node)
786{
787	struct swnode *parent = software_node_to_swnode(node->parent);
788
789	if (software_node_to_swnode(node))
790		return -EEXIST;
791
792	if (node->parent && !parent)
793		return -EINVAL;
794
795	return PTR_ERR_OR_ZERO(swnode_register(node, parent, 0));
796}
797EXPORT_SYMBOL_GPL(software_node_register);
798
799/**
800 * software_node_unregister - Unregister static software node
801 * @node: The software node to be unregistered
802 */
803void software_node_unregister(const struct software_node *node)
804{
805	struct swnode *swnode;
806
807	swnode = software_node_to_swnode(node);
808	if (swnode)
809		fwnode_remove_software_node(&swnode->fwnode);
810}
811EXPORT_SYMBOL_GPL(software_node_unregister);
812
813struct fwnode_handle *
814fwnode_create_software_node(const struct property_entry *properties,
815			    const struct fwnode_handle *parent)
816{
817	struct software_node *node;
818	struct swnode *p = NULL;
819	int ret;
820
821	if (parent) {
822		if (IS_ERR(parent))
823			return ERR_CAST(parent);
824		if (!is_software_node(parent))
825			return ERR_PTR(-EINVAL);
826		p = to_swnode(parent);
827	}
828
829	node = kzalloc(sizeof(*node), GFP_KERNEL);
830	if (!node)
831		return ERR_PTR(-ENOMEM);
832
833	ret = software_node_register_properties(node, properties);
834	if (ret) {
835		kfree(node);
836		return ERR_PTR(ret);
837	}
838
839	node->parent = p ? p->node : NULL;
840
841	return swnode_register(node, p, 1);
842}
843EXPORT_SYMBOL_GPL(fwnode_create_software_node);
844
845void fwnode_remove_software_node(struct fwnode_handle *fwnode)
846{
847	struct swnode *swnode = to_swnode(fwnode);
848
849	if (!swnode)
850		return;
851
852	kobject_put(&swnode->kobj);
853}
854EXPORT_SYMBOL_GPL(fwnode_remove_software_node);
855
856int software_node_notify(struct device *dev, unsigned long action)
857{
858	struct fwnode_handle *fwnode = dev_fwnode(dev);
859	struct swnode *swnode;
860	int ret;
861
862	if (!fwnode)
863		return 0;
864
865	if (!is_software_node(fwnode))
866		fwnode = fwnode->secondary;
867	if (!is_software_node(fwnode))
868		return 0;
869
870	swnode = to_swnode(fwnode);
871
872	switch (action) {
873	case KOBJ_ADD:
874		ret = sysfs_create_link(&dev->kobj, &swnode->kobj,
875					"software_node");
876		if (ret)
877			break;
878
879		ret = sysfs_create_link(&swnode->kobj, &dev->kobj,
880					dev_name(dev));
881		if (ret) {
882			sysfs_remove_link(&dev->kobj, "software_node");
883			break;
884		}
885		kobject_get(&swnode->kobj);
886		break;
887	case KOBJ_REMOVE:
888		sysfs_remove_link(&swnode->kobj, dev_name(dev));
889		sysfs_remove_link(&dev->kobj, "software_node");
890		kobject_put(&swnode->kobj);
891		break;
892	default:
893		break;
894	}
895
896	return 0;
897}
898
899static int __init software_node_init(void)
900{
901	swnode_kset = kset_create_and_add("software_nodes", NULL, kernel_kobj);
902	if (!swnode_kset)
903		return -ENOMEM;
904	return 0;
905}
906postcore_initcall(software_node_init);
907
908static void __exit software_node_exit(void)
909{
910	ida_destroy(&swnode_root_ids);
911	kset_unregister(swnode_kset);
912}
913__exitcall(software_node_exit);
914