regmap: Support for caching in reg_raw_write()
[deliverable/linux.git] / drivers / base / regmap / regmap.c
CommitLineData
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1/*
2 * Register map access API
3 *
4 * Copyright 2011 Wolfson Microelectronics plc
5 *
6 * Author: Mark Brown <broonie@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 <linux/module.h>
15#include <linux/mutex.h>
16#include <linux/err.h>
17
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18#define CREATE_TRACE_POINTS
19#include <trace/events/regmap.h>
20
93de9124 21#include "internal.h"
b83a313b 22
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23bool regmap_writeable(struct regmap *map, unsigned int reg)
24{
25 if (map->max_register && reg > map->max_register)
26 return false;
27
28 if (map->writeable_reg)
29 return map->writeable_reg(map->dev, reg);
30
31 return true;
32}
33
34bool regmap_readable(struct regmap *map, unsigned int reg)
35{
36 if (map->max_register && reg > map->max_register)
37 return false;
38
39 if (map->readable_reg)
40 return map->readable_reg(map->dev, reg);
41
42 return true;
43}
44
45bool regmap_volatile(struct regmap *map, unsigned int reg)
46{
47 if (map->max_register && reg > map->max_register)
48 return false;
49
50 if (map->volatile_reg)
51 return map->volatile_reg(map->dev, reg);
52
53 return true;
54}
55
56bool regmap_precious(struct regmap *map, unsigned int reg)
57{
58 if (map->max_register && reg > map->max_register)
59 return false;
60
61 if (map->precious_reg)
62 return map->precious_reg(map->dev, reg);
63
64 return false;
65}
66
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67static bool regmap_volatile_range(struct regmap *map, unsigned int reg,
68 unsigned int num)
69{
70 unsigned int i;
71
72 for (i = 0; i < num; i++)
73 if (!regmap_volatile(map, reg + i))
74 return false;
75
76 return true;
77}
78
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79static void regmap_format_4_12_write(struct regmap *map,
80 unsigned int reg, unsigned int val)
81{
82 __be16 *out = map->work_buf;
83 *out = cpu_to_be16((reg << 12) | val);
84}
85
86static void regmap_format_7_9_write(struct regmap *map,
87 unsigned int reg, unsigned int val)
88{
89 __be16 *out = map->work_buf;
90 *out = cpu_to_be16((reg << 9) | val);
91}
92
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93static void regmap_format_10_14_write(struct regmap *map,
94 unsigned int reg, unsigned int val)
95{
96 u8 *out = map->work_buf;
97
98 out[2] = val;
99 out[1] = (val >> 8) | (reg << 6);
100 out[0] = reg >> 2;
101}
102
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103static void regmap_format_8(void *buf, unsigned int val)
104{
105 u8 *b = buf;
106
107 b[0] = val;
108}
109
110static void regmap_format_16(void *buf, unsigned int val)
111{
112 __be16 *b = buf;
113
114 b[0] = cpu_to_be16(val);
115}
116
117static unsigned int regmap_parse_8(void *buf)
118{
119 u8 *b = buf;
120
121 return b[0];
122}
123
124static unsigned int regmap_parse_16(void *buf)
125{
126 __be16 *b = buf;
127
128 b[0] = be16_to_cpu(b[0]);
129
130 return b[0];
131}
132
133/**
134 * regmap_init(): Initialise register map
135 *
136 * @dev: Device that will be interacted with
137 * @bus: Bus-specific callbacks to use with device
138 * @config: Configuration for register map
139 *
140 * The return value will be an ERR_PTR() on error or a valid pointer to
141 * a struct regmap. This function should generally not be called
142 * directly, it should be called by bus-specific init functions.
143 */
144struct regmap *regmap_init(struct device *dev,
145 const struct regmap_bus *bus,
146 const struct regmap_config *config)
147{
148 struct regmap *map;
149 int ret = -EINVAL;
150
151 if (!bus || !config)
abbb18fb 152 goto err;
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153
154 map = kzalloc(sizeof(*map), GFP_KERNEL);
155 if (map == NULL) {
156 ret = -ENOMEM;
157 goto err;
158 }
159
160 mutex_init(&map->lock);
161 map->format.buf_size = (config->reg_bits + config->val_bits) / 8;
162 map->format.reg_bytes = config->reg_bits / 8;
163 map->format.val_bytes = config->val_bits / 8;
164 map->dev = dev;
165 map->bus = bus;
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166 map->max_register = config->max_register;
167 map->writeable_reg = config->writeable_reg;
168 map->readable_reg = config->readable_reg;
169 map->volatile_reg = config->volatile_reg;
2efe1642 170 map->precious_reg = config->precious_reg;
5d1729e7 171 map->cache_type = config->cache_type;
b83a313b 172
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LPC
173 if (config->read_flag_mask || config->write_flag_mask) {
174 map->read_flag_mask = config->read_flag_mask;
175 map->write_flag_mask = config->write_flag_mask;
176 } else {
177 map->read_flag_mask = bus->read_flag_mask;
178 }
179
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180 switch (config->reg_bits) {
181 case 4:
182 switch (config->val_bits) {
183 case 12:
184 map->format.format_write = regmap_format_4_12_write;
185 break;
186 default:
187 goto err_map;
188 }
189 break;
190
191 case 7:
192 switch (config->val_bits) {
193 case 9:
194 map->format.format_write = regmap_format_7_9_write;
195 break;
196 default:
197 goto err_map;
198 }
199 break;
200
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201 case 10:
202 switch (config->val_bits) {
203 case 14:
204 map->format.format_write = regmap_format_10_14_write;
205 break;
206 default:
207 goto err_map;
208 }
209 break;
210
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211 case 8:
212 map->format.format_reg = regmap_format_8;
213 break;
214
215 case 16:
216 map->format.format_reg = regmap_format_16;
217 break;
218
219 default:
220 goto err_map;
221 }
222
223 switch (config->val_bits) {
224 case 8:
225 map->format.format_val = regmap_format_8;
226 map->format.parse_val = regmap_parse_8;
227 break;
228 case 16:
229 map->format.format_val = regmap_format_16;
230 map->format.parse_val = regmap_parse_16;
231 break;
232 }
233
234 if (!map->format.format_write &&
235 !(map->format.format_reg && map->format.format_val))
236 goto err_map;
237
238 map->work_buf = kmalloc(map->format.buf_size, GFP_KERNEL);
239 if (map->work_buf == NULL) {
240 ret = -ENOMEM;
5204f5e3 241 goto err_map;
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242 }
243
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244 regmap_debugfs_init(map);
245
e5e3b8ab 246 ret = regcache_init(map, config);
5d1729e7 247 if (ret < 0)
58072cbf 248 goto err_free_workbuf;
5d1729e7 249
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250 return map;
251
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252err_free_workbuf:
253 kfree(map->work_buf);
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254err_map:
255 kfree(map);
256err:
257 return ERR_PTR(ret);
258}
259EXPORT_SYMBOL_GPL(regmap_init);
260
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261/**
262 * regmap_reinit_cache(): Reinitialise the current register cache
263 *
264 * @map: Register map to operate on.
265 * @config: New configuration. Only the cache data will be used.
266 *
267 * Discard any existing register cache for the map and initialize a
268 * new cache. This can be used to restore the cache to defaults or to
269 * update the cache configuration to reflect runtime discovery of the
270 * hardware.
271 */
272int regmap_reinit_cache(struct regmap *map, const struct regmap_config *config)
273{
274 int ret;
275
276 mutex_lock(&map->lock);
277
278 regcache_exit(map);
279
280 map->max_register = config->max_register;
281 map->writeable_reg = config->writeable_reg;
282 map->readable_reg = config->readable_reg;
283 map->volatile_reg = config->volatile_reg;
284 map->precious_reg = config->precious_reg;
285 map->cache_type = config->cache_type;
286
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287 map->cache_bypass = false;
288 map->cache_only = false;
289
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290 ret = regcache_init(map, config);
291
292 mutex_unlock(&map->lock);
293
294 return ret;
295}
296
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297/**
298 * regmap_exit(): Free a previously allocated register map
299 */
300void regmap_exit(struct regmap *map)
301{
5d1729e7 302 regcache_exit(map);
31244e39 303 regmap_debugfs_exit(map);
b83a313b 304 kfree(map->work_buf);
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305 kfree(map);
306}
307EXPORT_SYMBOL_GPL(regmap_exit);
308
309static int _regmap_raw_write(struct regmap *map, unsigned int reg,
310 const void *val, size_t val_len)
311{
6f306441 312 u8 *u8 = map->work_buf;
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313 void *buf;
314 int ret = -ENOTSUPP;
315 size_t len;
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316 int i;
317
318 /* Check for unwritable registers before we start */
319 if (map->writeable_reg)
320 for (i = 0; i < val_len / map->format.val_bytes; i++)
321 if (!map->writeable_reg(map->dev, reg + i))
322 return -EINVAL;
b83a313b 323
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LD
324 if (!map->cache_bypass && map->format.parse_val) {
325 unsigned int ival;
326 int val_bytes = map->format.val_bytes;
327 for (i = 0; i < val_len / val_bytes; i++) {
328 memcpy(map->work_buf, val + (i * val_bytes), val_bytes);
329 ival = map->format.parse_val(map->work_buf);
330 ret = regcache_write(map, reg + i, ival);
331 if (ret) {
332 dev_err(map->dev,
333 "Error in caching of register: %u ret: %d\n",
334 reg + i, ret);
335 return ret;
336 }
337 }
338 if (map->cache_only) {
339 map->cache_dirty = true;
340 return 0;
341 }
342 }
343
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344 map->format.format_reg(map->work_buf, reg);
345
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346 u8[0] |= map->write_flag_mask;
347
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348 trace_regmap_hw_write_start(map->dev, reg,
349 val_len / map->format.val_bytes);
350
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351 /* If we're doing a single register write we can probably just
352 * send the work_buf directly, otherwise try to do a gather
353 * write.
354 */
355 if (val == map->work_buf + map->format.reg_bytes)
356 ret = map->bus->write(map->dev, map->work_buf,
357 map->format.reg_bytes + val_len);
358 else if (map->bus->gather_write)
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359 ret = map->bus->gather_write(map->dev, map->work_buf,
360 map->format.reg_bytes,
361 val, val_len);
362
2547e201 363 /* If that didn't work fall back on linearising by hand. */
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364 if (ret == -ENOTSUPP) {
365 len = map->format.reg_bytes + val_len;
366 buf = kmalloc(len, GFP_KERNEL);
367 if (!buf)
368 return -ENOMEM;
369
370 memcpy(buf, map->work_buf, map->format.reg_bytes);
371 memcpy(buf + map->format.reg_bytes, val, val_len);
372 ret = map->bus->write(map->dev, buf, len);
373
374 kfree(buf);
375 }
376
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377 trace_regmap_hw_write_done(map->dev, reg,
378 val_len / map->format.val_bytes);
379
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380 return ret;
381}
382
4d2dc095
DP
383int _regmap_write(struct regmap *map, unsigned int reg,
384 unsigned int val)
b83a313b 385{
fb2736bb 386 int ret;
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387 BUG_ON(!map->format.format_write && !map->format.format_val);
388
c9157198 389 if (!map->cache_bypass && map->format.format_write) {
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DP
390 ret = regcache_write(map, reg, val);
391 if (ret != 0)
392 return ret;
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393 if (map->cache_only) {
394 map->cache_dirty = true;
5d1729e7 395 return 0;
8ae0d7e8 396 }
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DP
397 }
398
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399 trace_regmap_reg_write(map->dev, reg, val);
400
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401 if (map->format.format_write) {
402 map->format.format_write(map, reg, val);
403
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404 trace_regmap_hw_write_start(map->dev, reg, 1);
405
406 ret = map->bus->write(map->dev, map->work_buf,
407 map->format.buf_size);
408
409 trace_regmap_hw_write_done(map->dev, reg, 1);
410
411 return ret;
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412 } else {
413 map->format.format_val(map->work_buf + map->format.reg_bytes,
414 val);
415 return _regmap_raw_write(map, reg,
416 map->work_buf + map->format.reg_bytes,
417 map->format.val_bytes);
418 }
419}
420
421/**
422 * regmap_write(): Write a value to a single register
423 *
424 * @map: Register map to write to
425 * @reg: Register to write to
426 * @val: Value to be written
427 *
428 * A value of zero will be returned on success, a negative errno will
429 * be returned in error cases.
430 */
431int regmap_write(struct regmap *map, unsigned int reg, unsigned int val)
432{
433 int ret;
434
435 mutex_lock(&map->lock);
436
437 ret = _regmap_write(map, reg, val);
438
439 mutex_unlock(&map->lock);
440
441 return ret;
442}
443EXPORT_SYMBOL_GPL(regmap_write);
444
445/**
446 * regmap_raw_write(): Write raw values to one or more registers
447 *
448 * @map: Register map to write to
449 * @reg: Initial register to write to
450 * @val: Block of data to be written, laid out for direct transmission to the
451 * device
452 * @val_len: Length of data pointed to by val.
453 *
454 * This function is intended to be used for things like firmware
455 * download where a large block of data needs to be transferred to the
456 * device. No formatting will be done on the data provided.
457 *
458 * A value of zero will be returned on success, a negative errno will
459 * be returned in error cases.
460 */
461int regmap_raw_write(struct regmap *map, unsigned int reg,
462 const void *val, size_t val_len)
463{
464 int ret;
465
466 mutex_lock(&map->lock);
467
468 ret = _regmap_raw_write(map, reg, val, val_len);
469
470 mutex_unlock(&map->lock);
471
472 return ret;
473}
474EXPORT_SYMBOL_GPL(regmap_raw_write);
475
476static int _regmap_raw_read(struct regmap *map, unsigned int reg, void *val,
477 unsigned int val_len)
478{
479 u8 *u8 = map->work_buf;
480 int ret;
481
482 map->format.format_reg(map->work_buf, reg);
483
484 /*
6f306441 485 * Some buses or devices flag reads by setting the high bits in the
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486 * register addresss; since it's always the high bits for all
487 * current formats we can do this here rather than in
488 * formatting. This may break if we get interesting formats.
489 */
6f306441 490 u8[0] |= map->read_flag_mask;
b83a313b 491
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492 trace_regmap_hw_read_start(map->dev, reg,
493 val_len / map->format.val_bytes);
494
b83a313b 495 ret = map->bus->read(map->dev, map->work_buf, map->format.reg_bytes,
40c5cc26 496 val, val_len);
b83a313b 497
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498 trace_regmap_hw_read_done(map->dev, reg,
499 val_len / map->format.val_bytes);
500
501 return ret;
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502}
503
504static int _regmap_read(struct regmap *map, unsigned int reg,
505 unsigned int *val)
506{
507 int ret;
508
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DP
509 if (!map->cache_bypass) {
510 ret = regcache_read(map, reg, val);
511 if (ret == 0)
512 return 0;
513 }
514
19254411
LPC
515 if (!map->format.parse_val)
516 return -EINVAL;
517
5d1729e7
DP
518 if (map->cache_only)
519 return -EBUSY;
520
b83a313b 521 ret = _regmap_raw_read(map, reg, map->work_buf, map->format.val_bytes);
fb2736bb 522 if (ret == 0) {
b83a313b 523 *val = map->format.parse_val(map->work_buf);
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524 trace_regmap_reg_read(map->dev, reg, *val);
525 }
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526
527 return ret;
528}
529
530/**
531 * regmap_read(): Read a value from a single register
532 *
533 * @map: Register map to write to
534 * @reg: Register to be read from
535 * @val: Pointer to store read value
536 *
537 * A value of zero will be returned on success, a negative errno will
538 * be returned in error cases.
539 */
540int regmap_read(struct regmap *map, unsigned int reg, unsigned int *val)
541{
542 int ret;
543
544 mutex_lock(&map->lock);
545
546 ret = _regmap_read(map, reg, val);
547
548 mutex_unlock(&map->lock);
549
550 return ret;
551}
552EXPORT_SYMBOL_GPL(regmap_read);
553
554/**
555 * regmap_raw_read(): Read raw data from the device
556 *
557 * @map: Register map to write to
558 * @reg: First register to be read from
559 * @val: Pointer to store read value
560 * @val_len: Size of data to read
561 *
562 * A value of zero will be returned on success, a negative errno will
563 * be returned in error cases.
564 */
565int regmap_raw_read(struct regmap *map, unsigned int reg, void *val,
566 size_t val_len)
567{
82cd9965 568 size_t val_count = val_len / map->format.val_bytes;
b83a313b 569 int ret;
de2d808f 570
82cd9965
LPC
571 WARN_ON(!regmap_volatile_range(map, reg, val_count) &&
572 map->cache_type != REGCACHE_NONE);
04e016ad 573
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574 mutex_lock(&map->lock);
575
576 ret = _regmap_raw_read(map, reg, val, val_len);
577
578 mutex_unlock(&map->lock);
579
580 return ret;
581}
582EXPORT_SYMBOL_GPL(regmap_raw_read);
583
584/**
585 * regmap_bulk_read(): Read multiple registers from the device
586 *
587 * @map: Register map to write to
588 * @reg: First register to be read from
589 * @val: Pointer to store read value, in native register size for device
590 * @val_count: Number of registers to read
591 *
592 * A value of zero will be returned on success, a negative errno will
593 * be returned in error cases.
594 */
595int regmap_bulk_read(struct regmap *map, unsigned int reg, void *val,
596 size_t val_count)
597{
598 int ret, i;
599 size_t val_bytes = map->format.val_bytes;
82cd9965 600 bool vol = regmap_volatile_range(map, reg, val_count);
5d1729e7 601
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602 if (!map->format.parse_val)
603 return -EINVAL;
604
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605 if (vol || map->cache_type == REGCACHE_NONE) {
606 ret = regmap_raw_read(map, reg, val, val_bytes * val_count);
607 if (ret != 0)
608 return ret;
609
610 for (i = 0; i < val_count * val_bytes; i += val_bytes)
611 map->format.parse_val(val + i);
612 } else {
613 for (i = 0; i < val_count; i++) {
614 ret = regmap_read(map, reg + i, val + (i * val_bytes));
615 if (ret != 0)
616 return ret;
617 }
618 }
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619
620 return 0;
621}
622EXPORT_SYMBOL_GPL(regmap_bulk_read);
623
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624static int _regmap_update_bits(struct regmap *map, unsigned int reg,
625 unsigned int mask, unsigned int val,
626 bool *change)
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627{
628 int ret;
d91e8db2 629 unsigned int tmp, orig;
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630
631 mutex_lock(&map->lock);
632
d91e8db2 633 ret = _regmap_read(map, reg, &orig);
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634 if (ret != 0)
635 goto out;
636
d91e8db2 637 tmp = orig & ~mask;
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638 tmp |= val & mask;
639
018690d3 640 if (tmp != orig) {
d91e8db2 641 ret = _regmap_write(map, reg, tmp);
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642 *change = true;
643 } else {
644 *change = false;
645 }
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646
647out:
648 mutex_unlock(&map->lock);
649
650 return ret;
651}
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652
653/**
654 * regmap_update_bits: Perform a read/modify/write cycle on the register map
655 *
656 * @map: Register map to update
657 * @reg: Register to update
658 * @mask: Bitmask to change
659 * @val: New value for bitmask
660 *
661 * Returns zero for success, a negative number on error.
662 */
663int regmap_update_bits(struct regmap *map, unsigned int reg,
664 unsigned int mask, unsigned int val)
665{
666 bool change;
667 return _regmap_update_bits(map, reg, mask, val, &change);
668}
b83a313b 669EXPORT_SYMBOL_GPL(regmap_update_bits);
31244e39 670
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671/**
672 * regmap_update_bits_check: Perform a read/modify/write cycle on the
673 * register map and report if updated
674 *
675 * @map: Register map to update
676 * @reg: Register to update
677 * @mask: Bitmask to change
678 * @val: New value for bitmask
679 * @change: Boolean indicating if a write was done
680 *
681 * Returns zero for success, a negative number on error.
682 */
683int regmap_update_bits_check(struct regmap *map, unsigned int reg,
684 unsigned int mask, unsigned int val,
685 bool *change)
686{
687 return _regmap_update_bits(map, reg, mask, val, change);
688}
689EXPORT_SYMBOL_GPL(regmap_update_bits_check);
690
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691static int __init regmap_initcall(void)
692{
693 regmap_debugfs_initcall();
694
695 return 0;
696}
697postcore_initcall(regmap_initcall);
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