source: GPL/branches/uniaud32-next/lib32/devres.c@ 615

Last change on this file since 615 was 615, checked in by Paul Smedley, 5 years ago

Add source for uniaud32 based on code from linux kernel 5.4.86

File size: 6.7 KB
Line 
1/*
2 * drivers/base/devres.c - device resource management
3 *
4 * Copyright (c) 2006 SUSE Linux Products GmbH
5 * Copyright (c) 2006 Tejun Heo <teheo@suse.de>
6 *
7 * This file is released under the GPLv2.
8 */
9
10#include <linux/device.h>
11#include <linux/module.h>
12#include <linux/slab.h>
13#include <linux/gfp.h>
14#include <linux/errno.h>
15
16struct devres_node {
17 struct list_head entry;
18 dr_release_t release;
19#ifdef CONFIG_DEBUG_DEVRES
20 const char *name;
21 size_t size;
22#endif
23};
24
25struct devres {
26 struct devres_node node;
27 /* -- 3 pointers */
28 unsigned long long data[]; /* guarantee ull alignment */
29};
30
31struct devres_group {
32 struct devres_node node[2];
33 void *id;
34 int color;
35 /* -- 8 pointers */
36};
37
38/*
39 * Release functions for devres group. These callbacks are used only
40 * for identification.
41 */
42static void group_open_release(struct device *dev, void *res)
43{
44 /* noop */
45}
46
47static void group_close_release(struct device *dev, void *res)
48{
49 /* noop */
50}
51
52static struct devres_group * node_to_group(struct devres_node *node)
53{
54 if (node->release == &group_open_release)
55 return container_of(node, struct devres_group, node[0]);
56 if (node->release == &group_close_release)
57 return container_of(node, struct devres_group, node[1]);
58 return NULL;
59}
60
61static inline struct devres * alloc_dr(dr_release_t release,
62 size_t size, gfp_t gfp, int nid)
63{
64 size_t tot_size = sizeof(struct devres) + size;
65 struct devres *dr;
66
67 dr = kmalloc_node_track_caller(tot_size, gfp, nid);
68
69 memset(dr, 0, offsetof(struct devres, data));
70
71 INIT_LIST_HEAD(&dr->node.entry);
72 dr->node.release = release;
73 return dr;
74}
75
76#define devres_log(dev, node, op) do {} while (0)
77
78/**
79 * devres_alloc - Allocate device resource data
80 * @release: Release function devres will be associated with
81 * @size: Allocation size
82 * @gfp: Allocation flags
83 * @nid: NUMA node
84 *
85 * Allocate devres of @size bytes. The allocated area is zeroed, then
86 * associated with @release. The returned pointer can be passed to
87 * other devres_*() functions.
88 *
89 * RETURNS:
90 * Pointer to allocated devres on success, NULL on failure.
91 */
92void * devres_alloc_node(dr_release_t release, size_t size, gfp_t gfp, int nid)
93{
94 struct devres *dr;
95
96 dr = alloc_dr(release, size, gfp | __GFP_ZERO, nid);
97 return dr->data;
98}
99
100/**
101 * devres_free - Free device resource data
102 * @res: Pointer to devres data to free
103 *
104 * Free devres created with devres_alloc().
105 */
106void devres_free(void *res)
107{
108 if (res) {
109 struct devres *dr = container_of(res, struct devres, data);
110
111 BUG_ON(!list_empty(&dr->node.entry));
112 kfree(dr);
113 }
114}
115
116static int remove_nodes(struct device *dev,
117 struct list_head *first, struct list_head *end,
118 struct list_head *todo)
119{
120 int cnt = 0, nr_groups = 0;
121 struct list_head *cur;
122
123 /* First pass - move normal devres entries to @todo and clear
124 * devres_group colors.
125 */
126 cur = first;
127 while (cur != end) {
128 struct devres_node *node;
129 struct devres_group *grp;
130
131 node = list_entry(cur, struct devres_node, entry);
132 cur = cur->next;
133
134 grp = node_to_group(node);
135 if (grp) {
136 /* clear color of group markers in the first pass */
137 grp->color = 0;
138 nr_groups++;
139 } else {
140 /* regular devres entry */
141 if (&node->entry == first)
142 first = first->next;
143 list_move_tail(&node->entry, todo);
144 cnt++;
145 }
146 }
147
148 if (!nr_groups)
149 return cnt;
150
151 /* Second pass - Scan groups and color them. A group gets
152 * color value of two iff the group is wholly contained in
153 * [cur, end). That is, for a closed group, both opening and
154 * closing markers should be in the range, while just the
155 * opening marker is enough for an open group.
156 */
157 cur = first;
158 while (cur != end) {
159 struct devres_node *node;
160 struct devres_group *grp;
161
162 node = list_entry(cur, struct devres_node, entry);
163 cur = cur->next;
164
165 grp = node_to_group(node);
166 BUG_ON(!grp || list_empty(&grp->node[0].entry));
167
168 grp->color++;
169 if (list_empty(&grp->node[1].entry))
170 grp->color++;
171
172 BUG_ON(grp->color <= 0 || grp->color > 2);
173 if (grp->color == 2) {
174 /* No need to update cur or end. The removed
175 * nodes are always before both.
176 */
177 list_move_tail(&grp->node[0].entry, todo);
178 list_del_init(&grp->node[1].entry);
179 }
180 }
181
182 return cnt;
183}
184
185static int release_nodes(struct device *dev, struct list_head *first,
186 struct list_head *end, unsigned long flags)
187{
188// LIST_HEAD(todo);
189 struct list_head todo;
190
191 int cnt;
192 struct devres *dr, *tmp;
193
194 cnt = remove_nodes(dev, first, end, &todo);
195
196 spin_unlock_irqrestore(&dev->devres_lock, flags);
197
198 /* Release. Note that both devres and devres_group are
199 * handled as devres in the following loop. This is safe.
200 */
201 list_for_each_entry_safe_reverse(dr, tmp, &todo, node.entry, struct devres) {
202 devres_log(dev, &dr->node, "REL");
203 dr->node.release(dev, dr->data);
204 kfree(dr);
205 }
206
207 return cnt;
208}
209
210/**
211 * devres_release_all - Release all managed resources
212 * @dev: Device to release resources for
213 *
214 * Release all resources associated with @dev. This function is
215 * called on driver detach.
216 */
217int devres_release_all(struct device *dev)
218{
219 unsigned long flags;
220
221 /* Looks like an uninitialized device structure */
222 if (WARN_ON(dev->devres_head.next == NULL))
223 return -ENODEV;
224 spin_lock_irqsave(&dev->devres_lock, flags);
225 return release_nodes(dev, dev->devres_head.next, &dev->devres_head,
226 flags);
227}
228
229static struct devres *find_dr(struct device *dev, dr_release_t release,
230 dr_match_t match, void *match_data)
231{
232 struct devres_node *node;
233
234 list_for_each_entry_reverse(node, &dev->devres_head, entry, struct devres_node) {
235 struct devres *dr = container_of(node, struct devres, node);
236
237 if (node->release != release)
238 continue;
239 if (match && !match(dev, dr->data, match_data))
240 continue;
241 return dr;
242 }
243
244 return NULL;
245}
246
247/**
248 * devres_find - Find device resource
249 * @dev: Device to lookup resource from
250 * @release: Look for resources associated with this release function
251 * @match: Match function (optional)
252 * @match_data: Data for the match function
253 *
254 * Find the latest devres of @dev which is associated with @release
255 * and for which @match returns 1. If @match is NULL, it's considered
256 * to match all.
257 *
258 * RETURNS:
259 * Pointer to found devres, NULL if not found.
260 */
261void * devres_find(struct device *dev, dr_release_t release,
262 dr_match_t match, void *match_data)
263{
264 struct devres *dr;
265 unsigned long flags;
266
267 spin_lock_irqsave(&dev->devres_lock, flags);
268 dr = find_dr(dev, release, match, match_data);
269 spin_unlock_irqrestore(&dev->devres_lock, flags);
270
271 if (dr)
272 return dr->data;
273 return NULL;
274}
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