blob: 179f222d76c32fd865fe53f39a6834f998a4e8c5 [file] [log] [blame]
Dimitris Papastamos9fabe242011-09-19 14:34:00 +01001/*
2 * Register cache access API
3 *
4 * Copyright 2011 Wolfson Microelectronics plc
5 *
6 * Author: Dimitris Papastamos <dp@opensource.wolfsonmicro.com>
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
11 */
12
13#include <linux/slab.h>
14#include <trace/events/regmap.h>
15
16#include "internal.h"
17
18static const struct regcache_ops *cache_types[] = {
Dimitris Papastamos195af652011-09-19 14:34:01 +010019 &regcache_indexed_ops,
Dimitris Papastamos28644c82011-09-19 14:34:02 +010020 &regcache_rbtree_ops,
Dimitris Papastamos2cbbb572011-09-19 14:34:03 +010021 &regcache_lzo_ops,
Dimitris Papastamos9fabe242011-09-19 14:34:00 +010022};
23
24static int regcache_hw_init(struct regmap *map)
25{
26 int i, j;
27 int ret;
28 int count;
29 unsigned int val;
30 void *tmp_buf;
31
32 if (!map->num_reg_defaults_raw)
33 return -EINVAL;
34
35 if (!map->reg_defaults_raw) {
36 dev_warn(map->dev, "No cache defaults, reading back from HW\n");
37 tmp_buf = kmalloc(map->cache_size_raw, GFP_KERNEL);
38 if (!tmp_buf)
39 return -EINVAL;
40 ret = regmap_bulk_read(map, 0, tmp_buf,
41 map->num_reg_defaults_raw);
42 if (ret < 0) {
43 kfree(tmp_buf);
44 return ret;
45 }
46 map->reg_defaults_raw = tmp_buf;
47 map->cache_free = 1;
48 }
49
50 /* calculate the size of reg_defaults */
51 for (count = 0, i = 0; i < map->num_reg_defaults_raw; i++) {
52 val = regcache_get_val(map->reg_defaults_raw,
53 i, map->cache_word_size);
54 if (!val)
55 continue;
56 count++;
57 }
58
59 map->reg_defaults = kmalloc(count * sizeof(struct reg_default),
60 GFP_KERNEL);
61 if (!map->reg_defaults)
62 return -ENOMEM;
63
64 /* fill the reg_defaults */
65 map->num_reg_defaults = count;
66 for (i = 0, j = 0; i < map->num_reg_defaults_raw; i++) {
67 val = regcache_get_val(map->reg_defaults_raw,
68 i, map->cache_word_size);
69 if (!val)
70 continue;
71 map->reg_defaults[j].reg = i;
72 map->reg_defaults[j].def = val;
73 j++;
74 }
75
76 return 0;
77}
78
79int regcache_init(struct regmap *map)
80{
81 int ret;
82 int i;
83 void *tmp_buf;
84
Mark Browne7a6db32011-09-19 16:08:03 +010085 if (map->cache_type == REGCACHE_NONE) {
86 map->cache_bypass = true;
Dimitris Papastamos9fabe242011-09-19 14:34:00 +010087 return 0;
Mark Browne7a6db32011-09-19 16:08:03 +010088 }
Dimitris Papastamos9fabe242011-09-19 14:34:00 +010089
90 for (i = 0; i < ARRAY_SIZE(cache_types); i++)
91 if (cache_types[i]->type == map->cache_type)
92 break;
93
94 if (i == ARRAY_SIZE(cache_types)) {
95 dev_err(map->dev, "Could not match compress type: %d\n",
96 map->cache_type);
97 return -EINVAL;
98 }
99
100 map->cache = NULL;
101 map->cache_ops = cache_types[i];
102
103 if (!map->cache_ops->read ||
104 !map->cache_ops->write ||
105 !map->cache_ops->name)
106 return -EINVAL;
107
108 /* We still need to ensure that the reg_defaults
109 * won't vanish from under us. We'll need to make
110 * a copy of it.
111 */
112 if (map->reg_defaults) {
113 if (!map->num_reg_defaults)
114 return -EINVAL;
115 tmp_buf = kmemdup(map->reg_defaults, map->num_reg_defaults *
116 sizeof(struct reg_default), GFP_KERNEL);
117 if (!tmp_buf)
118 return -ENOMEM;
119 map->reg_defaults = tmp_buf;
120 } else {
121 /* Some devices such as PMIC's don't have cache defaults,
122 * we cope with this by reading back the HW registers and
123 * crafting the cache defaults by hand.
124 */
125 ret = regcache_hw_init(map);
126 if (ret < 0)
127 return ret;
128 }
129
130 if (!map->max_register)
131 map->max_register = map->num_reg_defaults_raw;
132
133 if (map->cache_ops->init) {
134 dev_dbg(map->dev, "Initializing %s cache\n",
135 map->cache_ops->name);
136 return map->cache_ops->init(map);
137 }
138 return 0;
139}
140
141void regcache_exit(struct regmap *map)
142{
143 if (map->cache_type == REGCACHE_NONE)
144 return;
145
146 BUG_ON(!map->cache_ops);
147
148 kfree(map->reg_defaults);
149 if (map->cache_free)
150 kfree(map->reg_defaults_raw);
151
152 if (map->cache_ops->exit) {
153 dev_dbg(map->dev, "Destroying %s cache\n",
154 map->cache_ops->name);
155 map->cache_ops->exit(map);
156 }
157}
158
159/**
160 * regcache_read: Fetch the value of a given register from the cache.
161 *
162 * @map: map to configure.
163 * @reg: The register index.
164 * @value: The value to be returned.
165 *
166 * Return a negative value on failure, 0 on success.
167 */
168int regcache_read(struct regmap *map,
169 unsigned int reg, unsigned int *value)
170{
171 if (map->cache_type == REGCACHE_NONE)
172 return -ENOSYS;
173
174 BUG_ON(!map->cache_ops);
175
176 if (!regmap_readable(map, reg))
177 return -EIO;
178
179 if (!regmap_volatile(map, reg))
180 return map->cache_ops->read(map, reg, value);
181
182 return -EINVAL;
183}
184EXPORT_SYMBOL_GPL(regcache_read);
185
186/**
187 * regcache_write: Set the value of a given register in the cache.
188 *
189 * @map: map to configure.
190 * @reg: The register index.
191 * @value: The new register value.
192 *
193 * Return a negative value on failure, 0 on success.
194 */
195int regcache_write(struct regmap *map,
196 unsigned int reg, unsigned int value)
197{
198 if (map->cache_type == REGCACHE_NONE)
199 return 0;
200
201 BUG_ON(!map->cache_ops);
202
203 if (!regmap_writeable(map, reg))
204 return -EIO;
205
206 if (!regmap_volatile(map, reg))
207 return map->cache_ops->write(map, reg, value);
208
209 return 0;
210}
211EXPORT_SYMBOL_GPL(regcache_write);
212
213/**
214 * regcache_sync: Sync the register cache with the hardware.
215 *
216 * @map: map to configure.
217 *
218 * Any registers that should not be synced should be marked as
219 * volatile. In general drivers can choose not to use the provided
220 * syncing functionality if they so require.
221 *
222 * Return a negative value on failure, 0 on success.
223 */
224int regcache_sync(struct regmap *map)
225{
Dimitris Papastamos59360082011-09-19 14:34:04 +0100226 int ret;
227 const char *name;
228
Dimitris Papastamos9fabe242011-09-19 14:34:00 +0100229 BUG_ON(!map->cache_ops);
230
231 if (map->cache_ops->sync) {
232 dev_dbg(map->dev, "Syncing %s cache\n",
233 map->cache_ops->name);
Dimitris Papastamos59360082011-09-19 14:34:04 +0100234 name = map->cache_ops->name;
235 trace_regcache_sync(map->dev, name, "start");
236 ret = map->cache_ops->sync(map);
237 trace_regcache_sync(map->dev, name, "stop");
Dimitris Papastamos9fabe242011-09-19 14:34:00 +0100238 }
239 return 0;
240}
241EXPORT_SYMBOL_GPL(regcache_sync);
242
243bool regcache_set_val(void *base, unsigned int idx,
244 unsigned int val, unsigned int word_size)
245{
246 switch (word_size) {
247 case 1: {
248 u8 *cache = base;
249 if (cache[idx] == val)
250 return true;
251 cache[idx] = val;
252 break;
253 }
254 case 2: {
255 u16 *cache = base;
256 if (cache[idx] == val)
257 return true;
258 cache[idx] = val;
259 break;
260 }
261 default:
262 BUG();
263 }
264 /* unreachable */
265 return false;
266}
267
268unsigned int regcache_get_val(const void *base, unsigned int idx,
269 unsigned int word_size)
270{
271 if (!base)
272 return -EINVAL;
273
274 switch (word_size) {
275 case 1: {
276 const u8 *cache = base;
277 return cache[idx];
278 }
279 case 2: {
280 const u16 *cache = base;
281 return cache[idx];
282 }
283 default:
284 BUG();
285 }
286 /* unreachable */
287 return -1;
288}
289
290int regcache_lookup_reg(struct regmap *map, unsigned int reg)
291{
292 unsigned int i;
293
294 for (i = 0; i < map->num_reg_defaults; i++)
295 if (map->reg_defaults[i].reg == reg)
296 return i;
297 return -1;
298}
299
300int regcache_insert_reg(struct regmap *map, unsigned int reg,
301 unsigned int val)
302{
303 void *tmp;
304
305 tmp = krealloc(map->reg_defaults,
306 (map->num_reg_defaults + 1) * sizeof(struct reg_default),
307 GFP_KERNEL);
308 if (!tmp)
309 return -ENOMEM;
310 map->reg_defaults = tmp;
311 map->num_reg_defaults++;
312 map->reg_defaults[map->num_reg_defaults - 1].reg = reg;
313 map->reg_defaults[map->num_reg_defaults - 1].def = val;
314 return 0;
315}