blob: 6a19515f8a458b3719fce7325f265a60a4d147a4 [file] [log] [blame]
Mark Brownb83a3132011-05-11 19:59:58 +02001/*
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
Stephen Warrenf5d6eba2012-03-09 13:17:28 -070013#include <linux/device.h>
Mark Brownb83a3132011-05-11 19:59:58 +020014#include <linux/slab.h>
Paul Gortmaker19694b52012-02-28 19:28:02 -050015#include <linux/export.h>
Mark Brownb83a3132011-05-11 19:59:58 +020016#include <linux/mutex.h>
17#include <linux/err.h>
Krystian Garbaciak6863ca62012-06-15 11:23:56 +010018#include <linux/rbtree.h>
Stephen Warren30b2a552013-02-02 22:50:14 -070019#include <linux/sched.h>
Mark Brownb83a3132011-05-11 19:59:58 +020020
Mark Brownfb2736b2011-07-24 21:30:55 +010021#define CREATE_TRACE_POINTS
22#include <trace/events/regmap.h>
23
Mark Brown93de9122011-07-20 22:35:37 +010024#include "internal.h"
Mark Brownb83a3132011-05-11 19:59:58 +020025
Mark Brown1044c182012-07-06 14:10:23 +010026/*
27 * Sometimes for failures during very early init the trace
28 * infrastructure isn't available early enough to be used. For this
29 * sort of problem defining LOG_DEVICE will add printks for basic
30 * register I/O on a specific device.
31 */
32#undef LOG_DEVICE
33
34static int _regmap_update_bits(struct regmap *map, unsigned int reg,
35 unsigned int mask, unsigned int val,
36 bool *change);
37
Andrey Smirnovad278402013-01-12 12:54:12 -080038static int _regmap_bus_read(void *context, unsigned int reg,
39 unsigned int *val);
Andrey Smirnov07c320d2013-01-12 12:54:13 -080040static int _regmap_bus_formatted_write(void *context, unsigned int reg,
41 unsigned int val);
42static int _regmap_bus_raw_write(void *context, unsigned int reg,
43 unsigned int val);
Andrey Smirnovad278402013-01-12 12:54:12 -080044
Davide Ciminaghi76aad392012-11-20 15:20:30 +010045bool regmap_reg_in_ranges(unsigned int reg,
46 const struct regmap_range *ranges,
47 unsigned int nranges)
48{
49 const struct regmap_range *r;
50 int i;
51
52 for (i = 0, r = ranges; i < nranges; i++, r++)
53 if (regmap_reg_in_range(reg, r))
54 return true;
55 return false;
56}
57EXPORT_SYMBOL_GPL(regmap_reg_in_ranges);
58
Mark Brown154881e2013-05-08 13:55:23 +010059bool regmap_check_range_table(struct regmap *map, unsigned int reg,
60 const struct regmap_access_table *table)
Davide Ciminaghi76aad392012-11-20 15:20:30 +010061{
62 /* Check "no ranges" first */
63 if (regmap_reg_in_ranges(reg, table->no_ranges, table->n_no_ranges))
64 return false;
65
66 /* In case zero "yes ranges" are supplied, any reg is OK */
67 if (!table->n_yes_ranges)
68 return true;
69
70 return regmap_reg_in_ranges(reg, table->yes_ranges,
71 table->n_yes_ranges);
72}
Mark Brown154881e2013-05-08 13:55:23 +010073EXPORT_SYMBOL_GPL(regmap_check_range_table);
Davide Ciminaghi76aad392012-11-20 15:20:30 +010074
Mark Brown8de2f082011-08-10 17:14:41 +090075bool regmap_writeable(struct regmap *map, unsigned int reg)
76{
77 if (map->max_register && reg > map->max_register)
78 return false;
79
80 if (map->writeable_reg)
81 return map->writeable_reg(map->dev, reg);
82
Davide Ciminaghi76aad392012-11-20 15:20:30 +010083 if (map->wr_table)
Mark Brown154881e2013-05-08 13:55:23 +010084 return regmap_check_range_table(map, reg, map->wr_table);
Davide Ciminaghi76aad392012-11-20 15:20:30 +010085
Mark Brown8de2f082011-08-10 17:14:41 +090086 return true;
87}
88
89bool regmap_readable(struct regmap *map, unsigned int reg)
90{
91 if (map->max_register && reg > map->max_register)
92 return false;
93
Wolfram Sang4191f192012-01-30 15:08:16 +010094 if (map->format.format_write)
95 return false;
96
Mark Brown8de2f082011-08-10 17:14:41 +090097 if (map->readable_reg)
98 return map->readable_reg(map->dev, reg);
99
Davide Ciminaghi76aad392012-11-20 15:20:30 +0100100 if (map->rd_table)
Mark Brown154881e2013-05-08 13:55:23 +0100101 return regmap_check_range_table(map, reg, map->rd_table);
Davide Ciminaghi76aad392012-11-20 15:20:30 +0100102
Mark Brown8de2f082011-08-10 17:14:41 +0900103 return true;
104}
105
106bool regmap_volatile(struct regmap *map, unsigned int reg)
107{
Wolfram Sang4191f192012-01-30 15:08:16 +0100108 if (!regmap_readable(map, reg))
Mark Brown8de2f082011-08-10 17:14:41 +0900109 return false;
110
111 if (map->volatile_reg)
112 return map->volatile_reg(map->dev, reg);
113
Davide Ciminaghi76aad392012-11-20 15:20:30 +0100114 if (map->volatile_table)
Mark Brown154881e2013-05-08 13:55:23 +0100115 return regmap_check_range_table(map, reg, map->volatile_table);
Davide Ciminaghi76aad392012-11-20 15:20:30 +0100116
Mark Brownb92be6f2013-06-03 17:24:08 +0100117 if (map->cache_ops)
118 return false;
119 else
120 return true;
Mark Brown8de2f082011-08-10 17:14:41 +0900121}
122
123bool regmap_precious(struct regmap *map, unsigned int reg)
124{
Wolfram Sang4191f192012-01-30 15:08:16 +0100125 if (!regmap_readable(map, reg))
Mark Brown8de2f082011-08-10 17:14:41 +0900126 return false;
127
128 if (map->precious_reg)
129 return map->precious_reg(map->dev, reg);
130
Davide Ciminaghi76aad392012-11-20 15:20:30 +0100131 if (map->precious_table)
Mark Brown154881e2013-05-08 13:55:23 +0100132 return regmap_check_range_table(map, reg, map->precious_table);
Davide Ciminaghi76aad392012-11-20 15:20:30 +0100133
Mark Brown8de2f082011-08-10 17:14:41 +0900134 return false;
135}
136
Lars-Peter Clausen82cd9962011-11-08 18:37:25 +0100137static bool regmap_volatile_range(struct regmap *map, unsigned int reg,
Paul Bollea8f28cf2012-10-08 22:06:30 +0200138 size_t num)
Lars-Peter Clausen82cd9962011-11-08 18:37:25 +0100139{
140 unsigned int i;
141
142 for (i = 0; i < num; i++)
143 if (!regmap_volatile(map, reg + i))
144 return false;
145
146 return true;
147}
148
Wolfram Sang9aa50752012-01-27 16:10:22 +0100149static void regmap_format_2_6_write(struct regmap *map,
150 unsigned int reg, unsigned int val)
151{
152 u8 *out = map->work_buf;
153
154 *out = (reg << 6) | val;
155}
156
Mark Brownb83a3132011-05-11 19:59:58 +0200157static void regmap_format_4_12_write(struct regmap *map,
158 unsigned int reg, unsigned int val)
159{
160 __be16 *out = map->work_buf;
161 *out = cpu_to_be16((reg << 12) | val);
162}
163
164static void regmap_format_7_9_write(struct regmap *map,
165 unsigned int reg, unsigned int val)
166{
167 __be16 *out = map->work_buf;
168 *out = cpu_to_be16((reg << 9) | val);
169}
170
Lars-Peter Clausen7e5ec632011-11-16 16:28:21 +0100171static void regmap_format_10_14_write(struct regmap *map,
172 unsigned int reg, unsigned int val)
173{
174 u8 *out = map->work_buf;
175
176 out[2] = val;
177 out[1] = (val >> 8) | (reg << 6);
178 out[0] = reg >> 2;
179}
180
Marc Reillyd939fb92012-03-16 12:11:43 +1100181static void regmap_format_8(void *buf, unsigned int val, unsigned int shift)
Mark Brownb83a3132011-05-11 19:59:58 +0200182{
183 u8 *b = buf;
184
Marc Reillyd939fb92012-03-16 12:11:43 +1100185 b[0] = val << shift;
Mark Brownb83a3132011-05-11 19:59:58 +0200186}
187
Stephen Warren141eba22012-05-24 10:47:26 -0600188static void regmap_format_16_be(void *buf, unsigned int val, unsigned int shift)
Mark Brownb83a3132011-05-11 19:59:58 +0200189{
190 __be16 *b = buf;
191
Marc Reillyd939fb92012-03-16 12:11:43 +1100192 b[0] = cpu_to_be16(val << shift);
Mark Brownb83a3132011-05-11 19:59:58 +0200193}
194
Stephen Warren141eba22012-05-24 10:47:26 -0600195static void regmap_format_16_native(void *buf, unsigned int val,
196 unsigned int shift)
197{
198 *(u16 *)buf = val << shift;
199}
200
Marc Reillyd939fb92012-03-16 12:11:43 +1100201static void regmap_format_24(void *buf, unsigned int val, unsigned int shift)
Marc Reillyea279fc2012-03-16 12:11:42 +1100202{
203 u8 *b = buf;
204
Marc Reillyd939fb92012-03-16 12:11:43 +1100205 val <<= shift;
206
Marc Reillyea279fc2012-03-16 12:11:42 +1100207 b[0] = val >> 16;
208 b[1] = val >> 8;
209 b[2] = val;
210}
211
Stephen Warren141eba22012-05-24 10:47:26 -0600212static void regmap_format_32_be(void *buf, unsigned int val, unsigned int shift)
Mark Brown7d5e5252012-02-17 15:58:25 -0800213{
214 __be32 *b = buf;
215
Marc Reillyd939fb92012-03-16 12:11:43 +1100216 b[0] = cpu_to_be32(val << shift);
Mark Brown7d5e5252012-02-17 15:58:25 -0800217}
218
Stephen Warren141eba22012-05-24 10:47:26 -0600219static void regmap_format_32_native(void *buf, unsigned int val,
220 unsigned int shift)
221{
222 *(u32 *)buf = val << shift;
223}
224
Mark Brown8a819ff2013-03-04 09:04:51 +0800225static void regmap_parse_inplace_noop(void *buf)
Mark Brownb83a3132011-05-11 19:59:58 +0200226{
Mark Brown8a819ff2013-03-04 09:04:51 +0800227}
228
229static unsigned int regmap_parse_8(const void *buf)
230{
231 const u8 *b = buf;
Mark Brownb83a3132011-05-11 19:59:58 +0200232
233 return b[0];
234}
235
Mark Brown8a819ff2013-03-04 09:04:51 +0800236static unsigned int regmap_parse_16_be(const void *buf)
237{
238 const __be16 *b = buf;
239
240 return be16_to_cpu(b[0]);
241}
242
243static void regmap_parse_16_be_inplace(void *buf)
Mark Brownb83a3132011-05-11 19:59:58 +0200244{
245 __be16 *b = buf;
246
247 b[0] = be16_to_cpu(b[0]);
Mark Brownb83a3132011-05-11 19:59:58 +0200248}
249
Mark Brown8a819ff2013-03-04 09:04:51 +0800250static unsigned int regmap_parse_16_native(const void *buf)
Stephen Warren141eba22012-05-24 10:47:26 -0600251{
252 return *(u16 *)buf;
253}
254
Mark Brown8a819ff2013-03-04 09:04:51 +0800255static unsigned int regmap_parse_24(const void *buf)
Marc Reillyea279fc2012-03-16 12:11:42 +1100256{
Mark Brown8a819ff2013-03-04 09:04:51 +0800257 const u8 *b = buf;
Marc Reillyea279fc2012-03-16 12:11:42 +1100258 unsigned int ret = b[2];
259 ret |= ((unsigned int)b[1]) << 8;
260 ret |= ((unsigned int)b[0]) << 16;
261
262 return ret;
263}
264
Mark Brown8a819ff2013-03-04 09:04:51 +0800265static unsigned int regmap_parse_32_be(const void *buf)
266{
267 const __be32 *b = buf;
268
269 return be32_to_cpu(b[0]);
270}
271
272static void regmap_parse_32_be_inplace(void *buf)
Mark Brown7d5e5252012-02-17 15:58:25 -0800273{
274 __be32 *b = buf;
275
276 b[0] = be32_to_cpu(b[0]);
Mark Brown7d5e5252012-02-17 15:58:25 -0800277}
278
Mark Brown8a819ff2013-03-04 09:04:51 +0800279static unsigned int regmap_parse_32_native(const void *buf)
Stephen Warren141eba22012-05-24 10:47:26 -0600280{
281 return *(u32 *)buf;
282}
283
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +0200284static void regmap_lock_mutex(void *__map)
Stephen Warrenbacdbe02012-04-04 15:48:28 -0600285{
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +0200286 struct regmap *map = __map;
Stephen Warrenbacdbe02012-04-04 15:48:28 -0600287 mutex_lock(&map->mutex);
288}
289
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +0200290static void regmap_unlock_mutex(void *__map)
Stephen Warrenbacdbe02012-04-04 15:48:28 -0600291{
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +0200292 struct regmap *map = __map;
Stephen Warrenbacdbe02012-04-04 15:48:28 -0600293 mutex_unlock(&map->mutex);
294}
295
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +0200296static void regmap_lock_spinlock(void *__map)
Fabio Estevamb4519c72013-07-16 02:10:11 -0300297__acquires(&map->spinlock)
Stephen Warrenbacdbe02012-04-04 15:48:28 -0600298{
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +0200299 struct regmap *map = __map;
Lars-Peter Clausen92ab1aa2013-05-24 10:29:22 +0200300 unsigned long flags;
301
302 spin_lock_irqsave(&map->spinlock, flags);
303 map->spinlock_flags = flags;
Stephen Warrenbacdbe02012-04-04 15:48:28 -0600304}
305
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +0200306static void regmap_unlock_spinlock(void *__map)
Fabio Estevamb4519c72013-07-16 02:10:11 -0300307__releases(&map->spinlock)
Stephen Warrenbacdbe02012-04-04 15:48:28 -0600308{
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +0200309 struct regmap *map = __map;
Lars-Peter Clausen92ab1aa2013-05-24 10:29:22 +0200310 spin_unlock_irqrestore(&map->spinlock, map->spinlock_flags);
Stephen Warrenbacdbe02012-04-04 15:48:28 -0600311}
312
Mark Brown72b39f62012-05-08 17:44:40 +0100313static void dev_get_regmap_release(struct device *dev, void *res)
314{
315 /*
316 * We don't actually have anything to do here; the goal here
317 * is not to manage the regmap but to provide a simple way to
318 * get the regmap back given a struct device.
319 */
320}
321
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100322static bool _regmap_range_add(struct regmap *map,
323 struct regmap_range_node *data)
324{
325 struct rb_root *root = &map->range_tree;
326 struct rb_node **new = &(root->rb_node), *parent = NULL;
327
328 while (*new) {
329 struct regmap_range_node *this =
330 container_of(*new, struct regmap_range_node, node);
331
332 parent = *new;
333 if (data->range_max < this->range_min)
334 new = &((*new)->rb_left);
335 else if (data->range_min > this->range_max)
336 new = &((*new)->rb_right);
337 else
338 return false;
339 }
340
341 rb_link_node(&data->node, parent, new);
342 rb_insert_color(&data->node, root);
343
344 return true;
345}
346
347static struct regmap_range_node *_regmap_range_lookup(struct regmap *map,
348 unsigned int reg)
349{
350 struct rb_node *node = map->range_tree.rb_node;
351
352 while (node) {
353 struct regmap_range_node *this =
354 container_of(node, struct regmap_range_node, node);
355
356 if (reg < this->range_min)
357 node = node->rb_left;
358 else if (reg > this->range_max)
359 node = node->rb_right;
360 else
361 return this;
362 }
363
364 return NULL;
365}
366
367static void regmap_range_exit(struct regmap *map)
368{
369 struct rb_node *next;
370 struct regmap_range_node *range_node;
371
372 next = rb_first(&map->range_tree);
373 while (next) {
374 range_node = rb_entry(next, struct regmap_range_node, node);
375 next = rb_next(&range_node->node);
376 rb_erase(&range_node->node, &map->range_tree);
377 kfree(range_node);
378 }
379
380 kfree(map->selector_work_buf);
381}
382
Mark Brownb83a3132011-05-11 19:59:58 +0200383/**
384 * regmap_init(): Initialise register map
385 *
386 * @dev: Device that will be interacted with
387 * @bus: Bus-specific callbacks to use with device
Stephen Warren0135bbc2012-04-04 15:48:30 -0600388 * @bus_context: Data passed to bus-specific callbacks
Mark Brownb83a3132011-05-11 19:59:58 +0200389 * @config: Configuration for register map
390 *
391 * The return value will be an ERR_PTR() on error or a valid pointer to
392 * a struct regmap. This function should generally not be called
393 * directly, it should be called by bus-specific init functions.
394 */
395struct regmap *regmap_init(struct device *dev,
396 const struct regmap_bus *bus,
Stephen Warren0135bbc2012-04-04 15:48:30 -0600397 void *bus_context,
Mark Brownb83a3132011-05-11 19:59:58 +0200398 const struct regmap_config *config)
399{
Mark Brown72b39f62012-05-08 17:44:40 +0100400 struct regmap *map, **m;
Mark Brownb83a3132011-05-11 19:59:58 +0200401 int ret = -EINVAL;
Stephen Warren141eba22012-05-24 10:47:26 -0600402 enum regmap_endian reg_endian, val_endian;
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100403 int i, j;
Mark Brownb83a3132011-05-11 19:59:58 +0200404
Andrey Smirnovd2a58842013-01-27 10:49:05 -0800405 if (!config)
Lars-Peter Clausenabbb18f2011-11-14 10:40:15 +0100406 goto err;
Mark Brownb83a3132011-05-11 19:59:58 +0200407
408 map = kzalloc(sizeof(*map), GFP_KERNEL);
409 if (map == NULL) {
410 ret = -ENOMEM;
411 goto err;
412 }
413
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +0200414 if (config->lock && config->unlock) {
415 map->lock = config->lock;
416 map->unlock = config->unlock;
417 map->lock_arg = config->lock_arg;
Stephen Warrenbacdbe02012-04-04 15:48:28 -0600418 } else {
Andrey Smirnovd2a58842013-01-27 10:49:05 -0800419 if ((bus && bus->fast_io) ||
420 config->fast_io) {
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +0200421 spin_lock_init(&map->spinlock);
422 map->lock = regmap_lock_spinlock;
423 map->unlock = regmap_unlock_spinlock;
424 } else {
425 mutex_init(&map->mutex);
426 map->lock = regmap_lock_mutex;
427 map->unlock = regmap_unlock_mutex;
428 }
429 map->lock_arg = map;
Stephen Warrenbacdbe02012-04-04 15:48:28 -0600430 }
Wolfram Sangc212acc2012-01-28 02:16:41 +0100431 map->format.reg_bytes = DIV_ROUND_UP(config->reg_bits, 8);
Mark Brown82159ba2012-01-18 10:52:25 +0000432 map->format.pad_bytes = config->pad_bits / 8;
Wolfram Sangc212acc2012-01-28 02:16:41 +0100433 map->format.val_bytes = DIV_ROUND_UP(config->val_bits, 8);
Fabio Estevam5494a982012-05-31 21:10:30 -0300434 map->format.buf_size = DIV_ROUND_UP(config->reg_bits +
435 config->val_bits + config->pad_bits, 8);
Marc Reillyd939fb92012-03-16 12:11:43 +1100436 map->reg_shift = config->pad_bits % 8;
Stephen Warrenf01ee602012-04-09 13:40:24 -0600437 if (config->reg_stride)
438 map->reg_stride = config->reg_stride;
439 else
440 map->reg_stride = 1;
Ashish Jangam2e33caf2012-04-30 23:23:40 +0100441 map->use_single_rw = config->use_single_rw;
Mark Brownb83a3132011-05-11 19:59:58 +0200442 map->dev = dev;
443 map->bus = bus;
Stephen Warren0135bbc2012-04-04 15:48:30 -0600444 map->bus_context = bus_context;
Mark Brown2e2ae662011-07-20 22:33:39 +0100445 map->max_register = config->max_register;
Davide Ciminaghi76aad392012-11-20 15:20:30 +0100446 map->wr_table = config->wr_table;
447 map->rd_table = config->rd_table;
448 map->volatile_table = config->volatile_table;
449 map->precious_table = config->precious_table;
Mark Brown2e2ae662011-07-20 22:33:39 +0100450 map->writeable_reg = config->writeable_reg;
451 map->readable_reg = config->readable_reg;
452 map->volatile_reg = config->volatile_reg;
Mark Brown2efe1642011-08-08 15:41:46 +0900453 map->precious_reg = config->precious_reg;
Dimitris Papastamos5d1729e2011-09-19 14:34:05 +0100454 map->cache_type = config->cache_type;
Mark Brown72b39f62012-05-08 17:44:40 +0100455 map->name = config->name;
Mark Brownb83a3132011-05-11 19:59:58 +0200456
Mark Brown0d509f22013-01-27 22:07:38 +0800457 spin_lock_init(&map->async_lock);
458 INIT_LIST_HEAD(&map->async_list);
Mark Brown7e09a972013-10-07 23:00:24 +0100459 INIT_LIST_HEAD(&map->async_free);
Mark Brown0d509f22013-01-27 22:07:38 +0800460 init_waitqueue_head(&map->async_waitq);
461
Lars-Peter Clausen6f306442011-09-05 20:46:32 +0200462 if (config->read_flag_mask || config->write_flag_mask) {
463 map->read_flag_mask = config->read_flag_mask;
464 map->write_flag_mask = config->write_flag_mask;
Andrey Smirnovd2a58842013-01-27 10:49:05 -0800465 } else if (bus) {
Lars-Peter Clausen6f306442011-09-05 20:46:32 +0200466 map->read_flag_mask = bus->read_flag_mask;
467 }
468
Andrey Smirnovd2a58842013-01-27 10:49:05 -0800469 if (!bus) {
470 map->reg_read = config->reg_read;
471 map->reg_write = config->reg_write;
472
473 map->defer_caching = false;
474 goto skip_format_initialization;
475 } else {
476 map->reg_read = _regmap_bus_read;
477 }
Andrey Smirnovad278402013-01-12 12:54:12 -0800478
Stephen Warren141eba22012-05-24 10:47:26 -0600479 reg_endian = config->reg_format_endian;
480 if (reg_endian == REGMAP_ENDIAN_DEFAULT)
481 reg_endian = bus->reg_format_endian_default;
482 if (reg_endian == REGMAP_ENDIAN_DEFAULT)
483 reg_endian = REGMAP_ENDIAN_BIG;
484
485 val_endian = config->val_format_endian;
486 if (val_endian == REGMAP_ENDIAN_DEFAULT)
487 val_endian = bus->val_format_endian_default;
488 if (val_endian == REGMAP_ENDIAN_DEFAULT)
489 val_endian = REGMAP_ENDIAN_BIG;
490
Marc Reillyd939fb92012-03-16 12:11:43 +1100491 switch (config->reg_bits + map->reg_shift) {
Wolfram Sang9aa50752012-01-27 16:10:22 +0100492 case 2:
493 switch (config->val_bits) {
494 case 6:
495 map->format.format_write = regmap_format_2_6_write;
496 break;
497 default:
498 goto err_map;
499 }
500 break;
501
Mark Brownb83a3132011-05-11 19:59:58 +0200502 case 4:
503 switch (config->val_bits) {
504 case 12:
505 map->format.format_write = regmap_format_4_12_write;
506 break;
507 default:
508 goto err_map;
509 }
510 break;
511
512 case 7:
513 switch (config->val_bits) {
514 case 9:
515 map->format.format_write = regmap_format_7_9_write;
516 break;
517 default:
518 goto err_map;
519 }
520 break;
521
Lars-Peter Clausen7e5ec632011-11-16 16:28:21 +0100522 case 10:
523 switch (config->val_bits) {
524 case 14:
525 map->format.format_write = regmap_format_10_14_write;
526 break;
527 default:
528 goto err_map;
529 }
530 break;
531
Mark Brownb83a3132011-05-11 19:59:58 +0200532 case 8:
533 map->format.format_reg = regmap_format_8;
534 break;
535
536 case 16:
Stephen Warren141eba22012-05-24 10:47:26 -0600537 switch (reg_endian) {
538 case REGMAP_ENDIAN_BIG:
539 map->format.format_reg = regmap_format_16_be;
540 break;
541 case REGMAP_ENDIAN_NATIVE:
542 map->format.format_reg = regmap_format_16_native;
543 break;
544 default:
545 goto err_map;
546 }
Mark Brownb83a3132011-05-11 19:59:58 +0200547 break;
548
Lars-Peter Clausen237019e2013-01-10 17:06:10 +0100549 case 24:
550 if (reg_endian != REGMAP_ENDIAN_BIG)
551 goto err_map;
552 map->format.format_reg = regmap_format_24;
553 break;
554
Mark Brown7d5e5252012-02-17 15:58:25 -0800555 case 32:
Stephen Warren141eba22012-05-24 10:47:26 -0600556 switch (reg_endian) {
557 case REGMAP_ENDIAN_BIG:
558 map->format.format_reg = regmap_format_32_be;
559 break;
560 case REGMAP_ENDIAN_NATIVE:
561 map->format.format_reg = regmap_format_32_native;
562 break;
563 default:
564 goto err_map;
565 }
Mark Brown7d5e5252012-02-17 15:58:25 -0800566 break;
567
Mark Brownb83a3132011-05-11 19:59:58 +0200568 default:
569 goto err_map;
570 }
571
Mark Brown8a819ff2013-03-04 09:04:51 +0800572 if (val_endian == REGMAP_ENDIAN_NATIVE)
573 map->format.parse_inplace = regmap_parse_inplace_noop;
574
Mark Brownb83a3132011-05-11 19:59:58 +0200575 switch (config->val_bits) {
576 case 8:
577 map->format.format_val = regmap_format_8;
578 map->format.parse_val = regmap_parse_8;
Mark Brown8a819ff2013-03-04 09:04:51 +0800579 map->format.parse_inplace = regmap_parse_inplace_noop;
Mark Brownb83a3132011-05-11 19:59:58 +0200580 break;
581 case 16:
Stephen Warren141eba22012-05-24 10:47:26 -0600582 switch (val_endian) {
583 case REGMAP_ENDIAN_BIG:
584 map->format.format_val = regmap_format_16_be;
585 map->format.parse_val = regmap_parse_16_be;
Mark Brown8a819ff2013-03-04 09:04:51 +0800586 map->format.parse_inplace = regmap_parse_16_be_inplace;
Stephen Warren141eba22012-05-24 10:47:26 -0600587 break;
588 case REGMAP_ENDIAN_NATIVE:
589 map->format.format_val = regmap_format_16_native;
590 map->format.parse_val = regmap_parse_16_native;
591 break;
592 default:
593 goto err_map;
594 }
Mark Brownb83a3132011-05-11 19:59:58 +0200595 break;
Marc Reillyea279fc2012-03-16 12:11:42 +1100596 case 24:
Stephen Warren141eba22012-05-24 10:47:26 -0600597 if (val_endian != REGMAP_ENDIAN_BIG)
598 goto err_map;
Marc Reillyea279fc2012-03-16 12:11:42 +1100599 map->format.format_val = regmap_format_24;
600 map->format.parse_val = regmap_parse_24;
601 break;
Mark Brown7d5e5252012-02-17 15:58:25 -0800602 case 32:
Stephen Warren141eba22012-05-24 10:47:26 -0600603 switch (val_endian) {
604 case REGMAP_ENDIAN_BIG:
605 map->format.format_val = regmap_format_32_be;
606 map->format.parse_val = regmap_parse_32_be;
Mark Brown8a819ff2013-03-04 09:04:51 +0800607 map->format.parse_inplace = regmap_parse_32_be_inplace;
Stephen Warren141eba22012-05-24 10:47:26 -0600608 break;
609 case REGMAP_ENDIAN_NATIVE:
610 map->format.format_val = regmap_format_32_native;
611 map->format.parse_val = regmap_parse_32_native;
612 break;
613 default:
614 goto err_map;
615 }
Mark Brown7d5e5252012-02-17 15:58:25 -0800616 break;
Mark Brownb83a3132011-05-11 19:59:58 +0200617 }
618
Stephen Warren141eba22012-05-24 10:47:26 -0600619 if (map->format.format_write) {
620 if ((reg_endian != REGMAP_ENDIAN_BIG) ||
621 (val_endian != REGMAP_ENDIAN_BIG))
622 goto err_map;
Mark Brown7a647612012-04-30 23:26:32 +0100623 map->use_single_rw = true;
Stephen Warren141eba22012-05-24 10:47:26 -0600624 }
Mark Brown7a647612012-04-30 23:26:32 +0100625
Mark Brownb83a3132011-05-11 19:59:58 +0200626 if (!map->format.format_write &&
627 !(map->format.format_reg && map->format.format_val))
628 goto err_map;
629
Mark Brown82159ba2012-01-18 10:52:25 +0000630 map->work_buf = kzalloc(map->format.buf_size, GFP_KERNEL);
Mark Brownb83a3132011-05-11 19:59:58 +0200631 if (map->work_buf == NULL) {
632 ret = -ENOMEM;
Mark Brown5204f5e2011-09-05 08:07:47 -0700633 goto err_map;
Mark Brownb83a3132011-05-11 19:59:58 +0200634 }
635
Andrey Smirnovd2a58842013-01-27 10:49:05 -0800636 if (map->format.format_write) {
637 map->defer_caching = false;
Andrey Smirnov07c320d2013-01-12 12:54:13 -0800638 map->reg_write = _regmap_bus_formatted_write;
Andrey Smirnovd2a58842013-01-27 10:49:05 -0800639 } else if (map->format.format_val) {
640 map->defer_caching = true;
Andrey Smirnov07c320d2013-01-12 12:54:13 -0800641 map->reg_write = _regmap_bus_raw_write;
Andrey Smirnovd2a58842013-01-27 10:49:05 -0800642 }
643
644skip_format_initialization:
Andrey Smirnov07c320d2013-01-12 12:54:13 -0800645
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100646 map->range_tree = RB_ROOT;
Mark Browne3549cd2012-10-02 20:17:15 +0100647 for (i = 0; i < config->num_ranges; i++) {
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100648 const struct regmap_range_cfg *range_cfg = &config->ranges[i];
649 struct regmap_range_node *new;
650
651 /* Sanity check */
Mark Brown061adc02012-10-03 12:17:51 +0100652 if (range_cfg->range_max < range_cfg->range_min) {
653 dev_err(map->dev, "Invalid range %d: %d < %d\n", i,
654 range_cfg->range_max, range_cfg->range_min);
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100655 goto err_range;
Mark Brown061adc02012-10-03 12:17:51 +0100656 }
657
658 if (range_cfg->range_max > map->max_register) {
659 dev_err(map->dev, "Invalid range %d: %d > %d\n", i,
660 range_cfg->range_max, map->max_register);
661 goto err_range;
662 }
663
664 if (range_cfg->selector_reg > map->max_register) {
665 dev_err(map->dev,
666 "Invalid range %d: selector out of map\n", i);
667 goto err_range;
668 }
669
670 if (range_cfg->window_len == 0) {
671 dev_err(map->dev, "Invalid range %d: window_len 0\n",
672 i);
673 goto err_range;
674 }
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100675
676 /* Make sure, that this register range has no selector
677 or data window within its boundary */
Mark Browne3549cd2012-10-02 20:17:15 +0100678 for (j = 0; j < config->num_ranges; j++) {
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100679 unsigned sel_reg = config->ranges[j].selector_reg;
680 unsigned win_min = config->ranges[j].window_start;
681 unsigned win_max = win_min +
682 config->ranges[j].window_len - 1;
683
Philipp Zabelf161d222013-07-23 12:16:02 +0200684 /* Allow data window inside its own virtual range */
685 if (j == i)
686 continue;
687
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100688 if (range_cfg->range_min <= sel_reg &&
689 sel_reg <= range_cfg->range_max) {
Mark Brown061adc02012-10-03 12:17:51 +0100690 dev_err(map->dev,
691 "Range %d: selector for %d in window\n",
692 i, j);
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100693 goto err_range;
694 }
695
696 if (!(win_max < range_cfg->range_min ||
697 win_min > range_cfg->range_max)) {
Mark Brown061adc02012-10-03 12:17:51 +0100698 dev_err(map->dev,
699 "Range %d: window for %d in window\n",
700 i, j);
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100701 goto err_range;
702 }
703 }
704
705 new = kzalloc(sizeof(*new), GFP_KERNEL);
706 if (new == NULL) {
707 ret = -ENOMEM;
708 goto err_range;
709 }
710
Mark Brown4b020b32012-10-03 13:13:16 +0100711 new->map = map;
Mark Brownd058bb42012-10-03 12:40:47 +0100712 new->name = range_cfg->name;
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100713 new->range_min = range_cfg->range_min;
714 new->range_max = range_cfg->range_max;
715 new->selector_reg = range_cfg->selector_reg;
716 new->selector_mask = range_cfg->selector_mask;
717 new->selector_shift = range_cfg->selector_shift;
718 new->window_start = range_cfg->window_start;
719 new->window_len = range_cfg->window_len;
720
721 if (_regmap_range_add(map, new) == false) {
Mark Brown061adc02012-10-03 12:17:51 +0100722 dev_err(map->dev, "Failed to add range %d\n", i);
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100723 kfree(new);
724 goto err_range;
725 }
726
727 if (map->selector_work_buf == NULL) {
728 map->selector_work_buf =
729 kzalloc(map->format.buf_size, GFP_KERNEL);
730 if (map->selector_work_buf == NULL) {
731 ret = -ENOMEM;
732 goto err_range;
733 }
734 }
735 }
Mark Brown052d2cd2011-11-21 19:05:13 +0000736
Dimitris Papastamosc6432ea2013-03-11 17:27:02 +0000737 regmap_debugfs_init(map, config->name);
738
Lars-Peter Clausene5e3b8a2011-11-16 16:28:16 +0100739 ret = regcache_init(map, config);
Mark Brown0ff3e622012-10-04 17:39:13 +0100740 if (ret != 0)
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100741 goto err_range;
742
Mark Brown72b39f62012-05-08 17:44:40 +0100743 /* Add a devres resource for dev_get_regmap() */
744 m = devres_alloc(dev_get_regmap_release, sizeof(*m), GFP_KERNEL);
745 if (!m) {
746 ret = -ENOMEM;
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100747 goto err_debugfs;
Mark Brown72b39f62012-05-08 17:44:40 +0100748 }
749 *m = map;
750 devres_add(dev, m);
751
Mark Brownb83a3132011-05-11 19:59:58 +0200752 return map;
753
Stephen Warrenbfaa25f2012-05-23 16:30:53 -0600754err_debugfs:
755 regmap_debugfs_exit(map);
Mark Brown72b39f62012-05-08 17:44:40 +0100756 regcache_exit(map);
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100757err_range:
758 regmap_range_exit(map);
Lars-Peter Clausen58072cb2011-11-10 18:15:15 +0100759 kfree(map->work_buf);
Mark Brownb83a3132011-05-11 19:59:58 +0200760err_map:
761 kfree(map);
762err:
763 return ERR_PTR(ret);
764}
765EXPORT_SYMBOL_GPL(regmap_init);
766
Mark Brownc0eb4672012-01-30 19:56:52 +0000767static void devm_regmap_release(struct device *dev, void *res)
768{
769 regmap_exit(*(struct regmap **)res);
770}
771
772/**
773 * devm_regmap_init(): Initialise managed register map
774 *
775 * @dev: Device that will be interacted with
776 * @bus: Bus-specific callbacks to use with device
Stephen Warren0135bbc2012-04-04 15:48:30 -0600777 * @bus_context: Data passed to bus-specific callbacks
Mark Brownc0eb4672012-01-30 19:56:52 +0000778 * @config: Configuration for register map
779 *
780 * The return value will be an ERR_PTR() on error or a valid pointer
781 * to a struct regmap. This function should generally not be called
782 * directly, it should be called by bus-specific init functions. The
783 * map will be automatically freed by the device management code.
784 */
785struct regmap *devm_regmap_init(struct device *dev,
786 const struct regmap_bus *bus,
Stephen Warren0135bbc2012-04-04 15:48:30 -0600787 void *bus_context,
Mark Brownc0eb4672012-01-30 19:56:52 +0000788 const struct regmap_config *config)
789{
790 struct regmap **ptr, *regmap;
791
792 ptr = devres_alloc(devm_regmap_release, sizeof(*ptr), GFP_KERNEL);
793 if (!ptr)
794 return ERR_PTR(-ENOMEM);
795
Stephen Warren0135bbc2012-04-04 15:48:30 -0600796 regmap = regmap_init(dev, bus, bus_context, config);
Mark Brownc0eb4672012-01-30 19:56:52 +0000797 if (!IS_ERR(regmap)) {
798 *ptr = regmap;
799 devres_add(dev, ptr);
800 } else {
801 devres_free(ptr);
802 }
803
804 return regmap;
805}
806EXPORT_SYMBOL_GPL(devm_regmap_init);
807
Srinivas Kandagatla67252282013-06-11 13:18:15 +0100808static void regmap_field_init(struct regmap_field *rm_field,
809 struct regmap *regmap, struct reg_field reg_field)
810{
811 int field_bits = reg_field.msb - reg_field.lsb + 1;
812 rm_field->regmap = regmap;
813 rm_field->reg = reg_field.reg;
814 rm_field->shift = reg_field.lsb;
815 rm_field->mask = ((BIT(field_bits) - 1) << reg_field.lsb);
Kuninori Morimotoa0102372013-09-01 20:30:50 -0700816 rm_field->id_size = reg_field.id_size;
817 rm_field->id_offset = reg_field.id_offset;
Srinivas Kandagatla67252282013-06-11 13:18:15 +0100818}
819
820/**
821 * devm_regmap_field_alloc(): Allocate and initialise a register field
822 * in a register map.
823 *
824 * @dev: Device that will be interacted with
825 * @regmap: regmap bank in which this register field is located.
826 * @reg_field: Register field with in the bank.
827 *
828 * The return value will be an ERR_PTR() on error or a valid pointer
829 * to a struct regmap_field. The regmap_field will be automatically freed
830 * by the device management code.
831 */
832struct regmap_field *devm_regmap_field_alloc(struct device *dev,
833 struct regmap *regmap, struct reg_field reg_field)
834{
835 struct regmap_field *rm_field = devm_kzalloc(dev,
836 sizeof(*rm_field), GFP_KERNEL);
837 if (!rm_field)
838 return ERR_PTR(-ENOMEM);
839
840 regmap_field_init(rm_field, regmap, reg_field);
841
842 return rm_field;
843
844}
845EXPORT_SYMBOL_GPL(devm_regmap_field_alloc);
846
847/**
848 * devm_regmap_field_free(): Free register field allocated using
849 * devm_regmap_field_alloc. Usally drivers need not call this function,
850 * as the memory allocated via devm will be freed as per device-driver
851 * life-cyle.
852 *
853 * @dev: Device that will be interacted with
854 * @field: regmap field which should be freed.
855 */
856void devm_regmap_field_free(struct device *dev,
857 struct regmap_field *field)
858{
859 devm_kfree(dev, field);
860}
861EXPORT_SYMBOL_GPL(devm_regmap_field_free);
862
863/**
864 * regmap_field_alloc(): Allocate and initialise a register field
865 * in a register map.
866 *
867 * @regmap: regmap bank in which this register field is located.
868 * @reg_field: Register field with in the bank.
869 *
870 * The return value will be an ERR_PTR() on error or a valid pointer
871 * to a struct regmap_field. The regmap_field should be freed by the
872 * user once its finished working with it using regmap_field_free().
873 */
874struct regmap_field *regmap_field_alloc(struct regmap *regmap,
875 struct reg_field reg_field)
876{
877 struct regmap_field *rm_field = kzalloc(sizeof(*rm_field), GFP_KERNEL);
878
879 if (!rm_field)
880 return ERR_PTR(-ENOMEM);
881
882 regmap_field_init(rm_field, regmap, reg_field);
883
884 return rm_field;
885}
886EXPORT_SYMBOL_GPL(regmap_field_alloc);
887
888/**
889 * regmap_field_free(): Free register field allocated using regmap_field_alloc
890 *
891 * @field: regmap field which should be freed.
892 */
893void regmap_field_free(struct regmap_field *field)
894{
895 kfree(field);
896}
897EXPORT_SYMBOL_GPL(regmap_field_free);
898
Mark Brownb83a3132011-05-11 19:59:58 +0200899/**
Mark Brownbf315172011-12-03 17:06:20 +0000900 * regmap_reinit_cache(): Reinitialise the current register cache
901 *
902 * @map: Register map to operate on.
903 * @config: New configuration. Only the cache data will be used.
904 *
905 * Discard any existing register cache for the map and initialize a
906 * new cache. This can be used to restore the cache to defaults or to
907 * update the cache configuration to reflect runtime discovery of the
908 * hardware.
Dimitris Papastamos4d879512012-07-27 14:54:15 +0100909 *
910 * No explicit locking is done here, the user needs to ensure that
911 * this function will not race with other calls to regmap.
Mark Brownbf315172011-12-03 17:06:20 +0000912 */
913int regmap_reinit_cache(struct regmap *map, const struct regmap_config *config)
914{
Mark Brownbf315172011-12-03 17:06:20 +0000915 regcache_exit(map);
Mark Browna24f64a2012-01-26 18:30:16 +0000916 regmap_debugfs_exit(map);
Mark Brownbf315172011-12-03 17:06:20 +0000917
918 map->max_register = config->max_register;
919 map->writeable_reg = config->writeable_reg;
920 map->readable_reg = config->readable_reg;
921 map->volatile_reg = config->volatile_reg;
922 map->precious_reg = config->precious_reg;
923 map->cache_type = config->cache_type;
924
Stephen Warrend3c242e2012-04-04 15:48:29 -0600925 regmap_debugfs_init(map, config->name);
Mark Browna24f64a2012-01-26 18:30:16 +0000926
Mark Brown421e8d22012-01-20 13:39:37 +0000927 map->cache_bypass = false;
928 map->cache_only = false;
929
Dimitris Papastamos4d879512012-07-27 14:54:15 +0100930 return regcache_init(map, config);
Mark Brownbf315172011-12-03 17:06:20 +0000931}
Mark Brown752a6a52012-05-14 10:00:12 +0100932EXPORT_SYMBOL_GPL(regmap_reinit_cache);
Mark Brownbf315172011-12-03 17:06:20 +0000933
934/**
Mark Brownb83a3132011-05-11 19:59:58 +0200935 * regmap_exit(): Free a previously allocated register map
936 */
937void regmap_exit(struct regmap *map)
938{
Mark Brown7e09a972013-10-07 23:00:24 +0100939 struct regmap_async *async;
940
Dimitris Papastamos5d1729e2011-09-19 14:34:05 +0100941 regcache_exit(map);
Mark Brown31244e32011-07-20 22:56:53 +0100942 regmap_debugfs_exit(map);
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100943 regmap_range_exit(map);
Andrey Smirnovd2a58842013-01-27 10:49:05 -0800944 if (map->bus && map->bus->free_context)
Stephen Warren0135bbc2012-04-04 15:48:30 -0600945 map->bus->free_context(map->bus_context);
Mark Brownb83a3132011-05-11 19:59:58 +0200946 kfree(map->work_buf);
Mark Brown7e09a972013-10-07 23:00:24 +0100947 while (!list_empty(&map->async_free)) {
948 async = list_first_entry_or_null(&map->async_free,
949 struct regmap_async,
950 list);
951 list_del(&async->list);
952 kfree(async->work_buf);
953 kfree(async);
954 }
Mark Brownb83a3132011-05-11 19:59:58 +0200955 kfree(map);
956}
957EXPORT_SYMBOL_GPL(regmap_exit);
958
Mark Brown72b39f62012-05-08 17:44:40 +0100959static int dev_get_regmap_match(struct device *dev, void *res, void *data)
960{
961 struct regmap **r = res;
962 if (!r || !*r) {
963 WARN_ON(!r || !*r);
964 return 0;
965 }
966
967 /* If the user didn't specify a name match any */
968 if (data)
969 return (*r)->name == data;
970 else
971 return 1;
972}
973
974/**
975 * dev_get_regmap(): Obtain the regmap (if any) for a device
976 *
977 * @dev: Device to retrieve the map for
978 * @name: Optional name for the register map, usually NULL.
979 *
980 * Returns the regmap for the device if one is present, or NULL. If
981 * name is specified then it must match the name specified when
982 * registering the device, if it is NULL then the first regmap found
983 * will be used. Devices with multiple register maps are very rare,
984 * generic code should normally not need to specify a name.
985 */
986struct regmap *dev_get_regmap(struct device *dev, const char *name)
987{
988 struct regmap **r = devres_find(dev, dev_get_regmap_release,
989 dev_get_regmap_match, (void *)name);
990
991 if (!r)
992 return NULL;
993 return *r;
994}
995EXPORT_SYMBOL_GPL(dev_get_regmap);
996
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100997static int _regmap_select_page(struct regmap *map, unsigned int *reg,
Mark Brown98bc7df2012-10-04 17:31:11 +0100998 struct regmap_range_node *range,
Krystian Garbaciak6863ca62012-06-15 11:23:56 +0100999 unsigned int val_num)
1000{
Krystian Garbaciak6863ca62012-06-15 11:23:56 +01001001 void *orig_work_buf;
1002 unsigned int win_offset;
1003 unsigned int win_page;
1004 bool page_chg;
1005 int ret;
1006
Mark Brown98bc7df2012-10-04 17:31:11 +01001007 win_offset = (*reg - range->range_min) % range->window_len;
1008 win_page = (*reg - range->range_min) / range->window_len;
Krystian Garbaciak6863ca62012-06-15 11:23:56 +01001009
Mark Brown98bc7df2012-10-04 17:31:11 +01001010 if (val_num > 1) {
1011 /* Bulk write shouldn't cross range boundary */
1012 if (*reg + val_num - 1 > range->range_max)
1013 return -EINVAL;
Krystian Garbaciak6863ca62012-06-15 11:23:56 +01001014
Mark Brown98bc7df2012-10-04 17:31:11 +01001015 /* ... or single page boundary */
1016 if (val_num > range->window_len - win_offset)
1017 return -EINVAL;
Krystian Garbaciak6863ca62012-06-15 11:23:56 +01001018 }
1019
Mark Brown98bc7df2012-10-04 17:31:11 +01001020 /* It is possible to have selector register inside data window.
1021 In that case, selector register is located on every page and
1022 it needs no page switching, when accessed alone. */
1023 if (val_num > 1 ||
1024 range->window_start + win_offset != range->selector_reg) {
1025 /* Use separate work_buf during page switching */
1026 orig_work_buf = map->work_buf;
1027 map->work_buf = map->selector_work_buf;
1028
1029 ret = _regmap_update_bits(map, range->selector_reg,
1030 range->selector_mask,
1031 win_page << range->selector_shift,
1032 &page_chg);
1033
1034 map->work_buf = orig_work_buf;
1035
Mark Brown0ff3e622012-10-04 17:39:13 +01001036 if (ret != 0)
Mark Brown98bc7df2012-10-04 17:31:11 +01001037 return ret;
1038 }
1039
1040 *reg = range->window_start + win_offset;
1041
Krystian Garbaciak6863ca62012-06-15 11:23:56 +01001042 return 0;
1043}
1044
Mark Brown584de322013-03-13 19:19:34 +00001045int _regmap_raw_write(struct regmap *map, unsigned int reg,
Mark Brown0a819802013-10-09 12:28:52 +01001046 const void *val, size_t val_len)
Mark Brownb83a3132011-05-11 19:59:58 +02001047{
Mark Brown98bc7df2012-10-04 17:31:11 +01001048 struct regmap_range_node *range;
Mark Brown0d509f22013-01-27 22:07:38 +08001049 unsigned long flags;
Lars-Peter Clausen6f306442011-09-05 20:46:32 +02001050 u8 *u8 = map->work_buf;
Mark Brown0d509f22013-01-27 22:07:38 +08001051 void *work_val = map->work_buf + map->format.reg_bytes +
1052 map->format.pad_bytes;
Mark Brownb83a3132011-05-11 19:59:58 +02001053 void *buf;
1054 int ret = -ENOTSUPP;
1055 size_t len;
Mark Brown73304782011-07-24 11:46:20 +01001056 int i;
1057
Mark Brownf1b5c5c2013-03-13 19:18:13 +00001058 WARN_ON(!map->bus);
Andrey Smirnovd2a58842013-01-27 10:49:05 -08001059
Mark Brown73304782011-07-24 11:46:20 +01001060 /* Check for unwritable registers before we start */
1061 if (map->writeable_reg)
1062 for (i = 0; i < val_len / map->format.val_bytes; i++)
Stephen Warrenf01ee602012-04-09 13:40:24 -06001063 if (!map->writeable_reg(map->dev,
1064 reg + (i * map->reg_stride)))
Mark Brown73304782011-07-24 11:46:20 +01001065 return -EINVAL;
Mark Brownb83a3132011-05-11 19:59:58 +02001066
Laxman Dewanganc9157192012-02-10 21:30:27 +05301067 if (!map->cache_bypass && map->format.parse_val) {
1068 unsigned int ival;
1069 int val_bytes = map->format.val_bytes;
1070 for (i = 0; i < val_len / val_bytes; i++) {
Stephen Warren5a08d152013-03-20 17:02:02 -06001071 ival = map->format.parse_val(val + (i * val_bytes));
Stephen Warrenf01ee602012-04-09 13:40:24 -06001072 ret = regcache_write(map, reg + (i * map->reg_stride),
1073 ival);
Laxman Dewanganc9157192012-02-10 21:30:27 +05301074 if (ret) {
1075 dev_err(map->dev,
Mark Brown6d04b8a2012-10-26 19:05:32 +01001076 "Error in caching of register: %x ret: %d\n",
Laxman Dewanganc9157192012-02-10 21:30:27 +05301077 reg + i, ret);
1078 return ret;
1079 }
1080 }
1081 if (map->cache_only) {
1082 map->cache_dirty = true;
1083 return 0;
1084 }
1085 }
1086
Mark Brown98bc7df2012-10-04 17:31:11 +01001087 range = _regmap_range_lookup(map, reg);
1088 if (range) {
Mark Brown8a2ceac2012-10-04 18:20:18 +01001089 int val_num = val_len / map->format.val_bytes;
1090 int win_offset = (reg - range->range_min) % range->window_len;
1091 int win_residue = range->window_len - win_offset;
1092
1093 /* If the write goes beyond the end of the window split it */
1094 while (val_num > win_residue) {
Fabio Estevam1a61cfe2012-10-25 14:07:18 -02001095 dev_dbg(map->dev, "Writing window %d/%zu\n",
Mark Brown8a2ceac2012-10-04 18:20:18 +01001096 win_residue, val_len / map->format.val_bytes);
1097 ret = _regmap_raw_write(map, reg, val, win_residue *
Mark Brown0a819802013-10-09 12:28:52 +01001098 map->format.val_bytes);
Mark Brown8a2ceac2012-10-04 18:20:18 +01001099 if (ret != 0)
1100 return ret;
1101
1102 reg += win_residue;
1103 val_num -= win_residue;
1104 val += win_residue * map->format.val_bytes;
1105 val_len -= win_residue * map->format.val_bytes;
1106
1107 win_offset = (reg - range->range_min) %
1108 range->window_len;
1109 win_residue = range->window_len - win_offset;
1110 }
1111
1112 ret = _regmap_select_page(map, &reg, range, val_num);
Mark Brown0ff3e622012-10-04 17:39:13 +01001113 if (ret != 0)
Mark Brown98bc7df2012-10-04 17:31:11 +01001114 return ret;
1115 }
Krystian Garbaciak6863ca62012-06-15 11:23:56 +01001116
Marc Reillyd939fb92012-03-16 12:11:43 +11001117 map->format.format_reg(map->work_buf, reg, map->reg_shift);
Mark Brownb83a3132011-05-11 19:59:58 +02001118
Lars-Peter Clausen6f306442011-09-05 20:46:32 +02001119 u8[0] |= map->write_flag_mask;
1120
Mark Brown651e0132013-10-08 18:37:36 +01001121 /*
1122 * Essentially all I/O mechanisms will be faster with a single
1123 * buffer to write. Since register syncs often generate raw
1124 * writes of single registers optimise that case.
1125 */
1126 if (val != work_val && val_len == map->format.val_bytes) {
1127 memcpy(work_val, val, map->format.val_bytes);
1128 val = work_val;
1129 }
1130
Mark Brown0a819802013-10-09 12:28:52 +01001131 if (map->async && map->bus->async_write) {
Mark Brown7e09a972013-10-07 23:00:24 +01001132 struct regmap_async *async;
Mark Brown0d509f22013-01-27 22:07:38 +08001133
Mark Brownfe7d4cc2013-02-21 19:05:48 +00001134 trace_regmap_async_write_start(map->dev, reg, val_len);
1135
Mark Brown7e09a972013-10-07 23:00:24 +01001136 spin_lock_irqsave(&map->async_lock, flags);
1137 async = list_first_entry_or_null(&map->async_free,
1138 struct regmap_async,
1139 list);
1140 if (async)
1141 list_del(&async->list);
1142 spin_unlock_irqrestore(&map->async_lock, flags);
1143
1144 if (!async) {
1145 async = map->bus->async_alloc();
1146 if (!async)
1147 return -ENOMEM;
1148
1149 async->work_buf = kzalloc(map->format.buf_size,
1150 GFP_KERNEL | GFP_DMA);
1151 if (!async->work_buf) {
1152 kfree(async);
1153 return -ENOMEM;
1154 }
Mark Brown0d509f22013-01-27 22:07:38 +08001155 }
1156
Mark Brown0d509f22013-01-27 22:07:38 +08001157 async->map = map;
1158
1159 /* If the caller supplied the value we can use it safely. */
1160 memcpy(async->work_buf, map->work_buf, map->format.pad_bytes +
1161 map->format.reg_bytes + map->format.val_bytes);
Mark Brown0d509f22013-01-27 22:07:38 +08001162
1163 spin_lock_irqsave(&map->async_lock, flags);
1164 list_add_tail(&async->list, &map->async_list);
1165 spin_unlock_irqrestore(&map->async_lock, flags);
1166
Mark Brown04c50cc2013-10-10 22:38:29 +01001167 if (val != work_val)
1168 ret = map->bus->async_write(map->bus_context,
1169 async->work_buf,
1170 map->format.reg_bytes +
1171 map->format.pad_bytes,
1172 val, val_len, async);
1173 else
1174 ret = map->bus->async_write(map->bus_context,
1175 async->work_buf,
1176 map->format.reg_bytes +
1177 map->format.pad_bytes +
1178 val_len, NULL, 0, async);
Mark Brown0d509f22013-01-27 22:07:38 +08001179
1180 if (ret != 0) {
1181 dev_err(map->dev, "Failed to schedule write: %d\n",
1182 ret);
1183
1184 spin_lock_irqsave(&map->async_lock, flags);
Mark Brown7e09a972013-10-07 23:00:24 +01001185 list_move(&async->list, &map->async_free);
Mark Brown0d509f22013-01-27 22:07:38 +08001186 spin_unlock_irqrestore(&map->async_lock, flags);
Mark Brown0d509f22013-01-27 22:07:38 +08001187 }
Mark Brownf951b652013-03-27 13:08:44 +00001188
1189 return ret;
Mark Brown0d509f22013-01-27 22:07:38 +08001190 }
1191
Mark Brownfb2736b2011-07-24 21:30:55 +01001192 trace_regmap_hw_write_start(map->dev, reg,
1193 val_len / map->format.val_bytes);
1194
Mark Brown2547e202011-07-20 21:47:22 +01001195 /* If we're doing a single register write we can probably just
1196 * send the work_buf directly, otherwise try to do a gather
1197 * write.
1198 */
Mark Brown0d509f22013-01-27 22:07:38 +08001199 if (val == work_val)
Stephen Warren0135bbc2012-04-04 15:48:30 -06001200 ret = map->bus->write(map->bus_context, map->work_buf,
Mark Brown82159ba2012-01-18 10:52:25 +00001201 map->format.reg_bytes +
1202 map->format.pad_bytes +
1203 val_len);
Mark Brown2547e202011-07-20 21:47:22 +01001204 else if (map->bus->gather_write)
Stephen Warren0135bbc2012-04-04 15:48:30 -06001205 ret = map->bus->gather_write(map->bus_context, map->work_buf,
Mark Brown82159ba2012-01-18 10:52:25 +00001206 map->format.reg_bytes +
1207 map->format.pad_bytes,
Mark Brownb83a3132011-05-11 19:59:58 +02001208 val, val_len);
1209
Mark Brown2547e202011-07-20 21:47:22 +01001210 /* If that didn't work fall back on linearising by hand. */
Mark Brownb83a3132011-05-11 19:59:58 +02001211 if (ret == -ENOTSUPP) {
Mark Brown82159ba2012-01-18 10:52:25 +00001212 len = map->format.reg_bytes + map->format.pad_bytes + val_len;
1213 buf = kzalloc(len, GFP_KERNEL);
Mark Brownb83a3132011-05-11 19:59:58 +02001214 if (!buf)
1215 return -ENOMEM;
1216
1217 memcpy(buf, map->work_buf, map->format.reg_bytes);
Mark Brown82159ba2012-01-18 10:52:25 +00001218 memcpy(buf + map->format.reg_bytes + map->format.pad_bytes,
1219 val, val_len);
Stephen Warren0135bbc2012-04-04 15:48:30 -06001220 ret = map->bus->write(map->bus_context, buf, len);
Mark Brownb83a3132011-05-11 19:59:58 +02001221
1222 kfree(buf);
1223 }
1224
Mark Brownfb2736b2011-07-24 21:30:55 +01001225 trace_regmap_hw_write_done(map->dev, reg,
1226 val_len / map->format.val_bytes);
1227
Mark Brownb83a3132011-05-11 19:59:58 +02001228 return ret;
1229}
1230
Mark Brown221ad7f2013-03-26 21:24:20 +00001231/**
1232 * regmap_can_raw_write - Test if regmap_raw_write() is supported
1233 *
1234 * @map: Map to check.
1235 */
1236bool regmap_can_raw_write(struct regmap *map)
1237{
1238 return map->bus && map->format.format_val && map->format.format_reg;
1239}
1240EXPORT_SYMBOL_GPL(regmap_can_raw_write);
1241
Andrey Smirnov07c320d2013-01-12 12:54:13 -08001242static int _regmap_bus_formatted_write(void *context, unsigned int reg,
1243 unsigned int val)
1244{
1245 int ret;
1246 struct regmap_range_node *range;
1247 struct regmap *map = context;
1248
Mark Brownf1b5c5c2013-03-13 19:18:13 +00001249 WARN_ON(!map->bus || !map->format.format_write);
Andrey Smirnov07c320d2013-01-12 12:54:13 -08001250
1251 range = _regmap_range_lookup(map, reg);
1252 if (range) {
1253 ret = _regmap_select_page(map, &reg, range, 1);
1254 if (ret != 0)
1255 return ret;
1256 }
1257
1258 map->format.format_write(map, reg, val);
1259
1260 trace_regmap_hw_write_start(map->dev, reg, 1);
1261
1262 ret = map->bus->write(map->bus_context, map->work_buf,
1263 map->format.buf_size);
1264
1265 trace_regmap_hw_write_done(map->dev, reg, 1);
1266
1267 return ret;
1268}
1269
1270static int _regmap_bus_raw_write(void *context, unsigned int reg,
1271 unsigned int val)
1272{
1273 struct regmap *map = context;
1274
Mark Brownf1b5c5c2013-03-13 19:18:13 +00001275 WARN_ON(!map->bus || !map->format.format_val);
Andrey Smirnov07c320d2013-01-12 12:54:13 -08001276
1277 map->format.format_val(map->work_buf + map->format.reg_bytes
1278 + map->format.pad_bytes, val, 0);
1279 return _regmap_raw_write(map, reg,
1280 map->work_buf +
1281 map->format.reg_bytes +
1282 map->format.pad_bytes,
Mark Brown0a819802013-10-09 12:28:52 +01001283 map->format.val_bytes);
Andrey Smirnov07c320d2013-01-12 12:54:13 -08001284}
1285
Andrey Smirnovd2a58842013-01-27 10:49:05 -08001286static inline void *_regmap_map_get_context(struct regmap *map)
1287{
1288 return (map->bus) ? map : map->bus_context;
1289}
1290
Dimitris Papastamos4d2dc092011-09-29 10:39:07 +01001291int _regmap_write(struct regmap *map, unsigned int reg,
1292 unsigned int val)
Mark Brownb83a3132011-05-11 19:59:58 +02001293{
Mark Brownfb2736b2011-07-24 21:30:55 +01001294 int ret;
Andrey Smirnovd2a58842013-01-27 10:49:05 -08001295 void *context = _regmap_map_get_context(map);
Mark Brownb83a3132011-05-11 19:59:58 +02001296
Ionut Nicu515f2262013-08-09 12:09:20 +02001297 if (!regmap_writeable(map, reg))
1298 return -EIO;
1299
Andrey Smirnovd2a58842013-01-27 10:49:05 -08001300 if (!map->cache_bypass && !map->defer_caching) {
Dimitris Papastamos5d1729e2011-09-19 14:34:05 +01001301 ret = regcache_write(map, reg, val);
1302 if (ret != 0)
1303 return ret;
Mark Brown8ae0d7e2011-10-26 10:34:22 +02001304 if (map->cache_only) {
1305 map->cache_dirty = true;
Dimitris Papastamos5d1729e2011-09-19 14:34:05 +01001306 return 0;
Mark Brown8ae0d7e2011-10-26 10:34:22 +02001307 }
Dimitris Papastamos5d1729e2011-09-19 14:34:05 +01001308 }
1309
Mark Brown1044c182012-07-06 14:10:23 +01001310#ifdef LOG_DEVICE
1311 if (strcmp(dev_name(map->dev), LOG_DEVICE) == 0)
1312 dev_info(map->dev, "%x <= %x\n", reg, val);
1313#endif
1314
Mark Brownfb2736b2011-07-24 21:30:55 +01001315 trace_regmap_reg_write(map->dev, reg, val);
1316
Andrey Smirnovd2a58842013-01-27 10:49:05 -08001317 return map->reg_write(context, reg, val);
Mark Brownb83a3132011-05-11 19:59:58 +02001318}
1319
1320/**
1321 * regmap_write(): Write a value to a single register
1322 *
1323 * @map: Register map to write to
1324 * @reg: Register to write to
1325 * @val: Value to be written
1326 *
1327 * A value of zero will be returned on success, a negative errno will
1328 * be returned in error cases.
1329 */
1330int regmap_write(struct regmap *map, unsigned int reg, unsigned int val)
1331{
1332 int ret;
1333
Stephen Warrenf01ee602012-04-09 13:40:24 -06001334 if (reg % map->reg_stride)
1335 return -EINVAL;
1336
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02001337 map->lock(map->lock_arg);
Mark Brownb83a3132011-05-11 19:59:58 +02001338
1339 ret = _regmap_write(map, reg, val);
1340
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02001341 map->unlock(map->lock_arg);
Mark Brownb83a3132011-05-11 19:59:58 +02001342
1343 return ret;
1344}
1345EXPORT_SYMBOL_GPL(regmap_write);
1346
1347/**
Mark Brown915f4412013-10-09 13:30:10 +01001348 * regmap_write_async(): Write a value to a single register asynchronously
1349 *
1350 * @map: Register map to write to
1351 * @reg: Register to write to
1352 * @val: Value to be written
1353 *
1354 * A value of zero will be returned on success, a negative errno will
1355 * be returned in error cases.
1356 */
1357int regmap_write_async(struct regmap *map, unsigned int reg, unsigned int val)
1358{
1359 int ret;
1360
1361 if (reg % map->reg_stride)
1362 return -EINVAL;
1363
1364 map->lock(map->lock_arg);
1365
1366 map->async = true;
1367
1368 ret = _regmap_write(map, reg, val);
1369
1370 map->async = false;
1371
1372 map->unlock(map->lock_arg);
1373
1374 return ret;
1375}
1376EXPORT_SYMBOL_GPL(regmap_write_async);
1377
1378/**
Mark Brownb83a3132011-05-11 19:59:58 +02001379 * regmap_raw_write(): Write raw values to one or more registers
1380 *
1381 * @map: Register map to write to
1382 * @reg: Initial register to write to
1383 * @val: Block of data to be written, laid out for direct transmission to the
1384 * device
1385 * @val_len: Length of data pointed to by val.
1386 *
1387 * This function is intended to be used for things like firmware
1388 * download where a large block of data needs to be transferred to the
1389 * device. No formatting will be done on the data provided.
1390 *
1391 * A value of zero will be returned on success, a negative errno will
1392 * be returned in error cases.
1393 */
1394int regmap_raw_write(struct regmap *map, unsigned int reg,
1395 const void *val, size_t val_len)
1396{
1397 int ret;
1398
Mark Brown221ad7f2013-03-26 21:24:20 +00001399 if (!regmap_can_raw_write(map))
Andrey Smirnovd2a58842013-01-27 10:49:05 -08001400 return -EINVAL;
Stephen Warren851960b2012-04-06 15:16:03 -06001401 if (val_len % map->format.val_bytes)
1402 return -EINVAL;
1403
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02001404 map->lock(map->lock_arg);
Mark Brownb83a3132011-05-11 19:59:58 +02001405
Mark Brown0a819802013-10-09 12:28:52 +01001406 ret = _regmap_raw_write(map, reg, val, val_len);
Mark Brownb83a3132011-05-11 19:59:58 +02001407
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02001408 map->unlock(map->lock_arg);
Mark Brownb83a3132011-05-11 19:59:58 +02001409
1410 return ret;
1411}
1412EXPORT_SYMBOL_GPL(regmap_raw_write);
1413
Srinivas Kandagatla67252282013-06-11 13:18:15 +01001414/**
1415 * regmap_field_write(): Write a value to a single register field
1416 *
1417 * @field: Register field to write to
1418 * @val: Value to be written
1419 *
1420 * A value of zero will be returned on success, a negative errno will
1421 * be returned in error cases.
1422 */
1423int regmap_field_write(struct regmap_field *field, unsigned int val)
1424{
1425 return regmap_update_bits(field->regmap, field->reg,
1426 field->mask, val << field->shift);
1427}
1428EXPORT_SYMBOL_GPL(regmap_field_write);
1429
Kuninori Morimotofdf20022013-09-01 20:24:50 -07001430/**
1431 * regmap_field_update_bits(): Perform a read/modify/write cycle
1432 * on the register field
1433 *
1434 * @field: Register field to write to
1435 * @mask: Bitmask to change
1436 * @val: Value to be written
1437 *
1438 * A value of zero will be returned on success, a negative errno will
1439 * be returned in error cases.
1440 */
1441int regmap_field_update_bits(struct regmap_field *field, unsigned int mask, unsigned int val)
1442{
1443 mask = (mask << field->shift) & field->mask;
1444
1445 return regmap_update_bits(field->regmap, field->reg,
1446 mask, val << field->shift);
1447}
1448EXPORT_SYMBOL_GPL(regmap_field_update_bits);
1449
Kuninori Morimotoa0102372013-09-01 20:30:50 -07001450/**
1451 * regmap_fields_write(): Write a value to a single register field with port ID
1452 *
1453 * @field: Register field to write to
1454 * @id: port ID
1455 * @val: Value to be written
1456 *
1457 * A value of zero will be returned on success, a negative errno will
1458 * be returned in error cases.
1459 */
1460int regmap_fields_write(struct regmap_field *field, unsigned int id,
1461 unsigned int val)
1462{
1463 if (id >= field->id_size)
1464 return -EINVAL;
1465
1466 return regmap_update_bits(field->regmap,
1467 field->reg + (field->id_offset * id),
1468 field->mask, val << field->shift);
1469}
1470EXPORT_SYMBOL_GPL(regmap_fields_write);
1471
1472/**
1473 * regmap_fields_update_bits(): Perform a read/modify/write cycle
1474 * on the register field
1475 *
1476 * @field: Register field to write to
1477 * @id: port ID
1478 * @mask: Bitmask to change
1479 * @val: Value to be written
1480 *
1481 * A value of zero will be returned on success, a negative errno will
1482 * be returned in error cases.
1483 */
1484int regmap_fields_update_bits(struct regmap_field *field, unsigned int id,
1485 unsigned int mask, unsigned int val)
1486{
1487 if (id >= field->id_size)
1488 return -EINVAL;
1489
1490 mask = (mask << field->shift) & field->mask;
1491
1492 return regmap_update_bits(field->regmap,
1493 field->reg + (field->id_offset * id),
1494 mask, val << field->shift);
1495}
1496EXPORT_SYMBOL_GPL(regmap_fields_update_bits);
1497
Laxman Dewangan8eaeb212012-02-12 19:49:43 +05301498/*
1499 * regmap_bulk_write(): Write multiple registers to the device
1500 *
1501 * @map: Register map to write to
1502 * @reg: First register to be write from
1503 * @val: Block of data to be written, in native register size for device
1504 * @val_count: Number of registers to write
1505 *
1506 * This function is intended to be used for writing a large block of
Nestor Ovroy31b35e9e2013-01-18 16:51:03 +01001507 * data to the device either in single transfer or multiple transfer.
Laxman Dewangan8eaeb212012-02-12 19:49:43 +05301508 *
1509 * A value of zero will be returned on success, a negative errno will
1510 * be returned in error cases.
1511 */
1512int regmap_bulk_write(struct regmap *map, unsigned int reg, const void *val,
1513 size_t val_count)
1514{
1515 int ret = 0, i;
1516 size_t val_bytes = map->format.val_bytes;
Laxman Dewangan8eaeb212012-02-12 19:49:43 +05301517
Stephen Boydf4298362013-12-26 13:52:04 -08001518 if (map->bus && !map->format.parse_inplace)
Laxman Dewangan8eaeb212012-02-12 19:49:43 +05301519 return -EINVAL;
Stephen Warrenf01ee602012-04-09 13:40:24 -06001520 if (reg % map->reg_stride)
1521 return -EINVAL;
Laxman Dewangan8eaeb212012-02-12 19:49:43 +05301522
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02001523 map->lock(map->lock_arg);
Stephen Boydf4298362013-12-26 13:52:04 -08001524 /*
1525 * Some devices don't support bulk write, for
1526 * them we have a series of single write operations.
1527 */
1528 if (!map->bus || map->use_single_rw) {
1529 for (i = 0; i < val_count; i++) {
1530 unsigned int ival;
Laxman Dewangan8eaeb212012-02-12 19:49:43 +05301531
Stephen Boydf4298362013-12-26 13:52:04 -08001532 switch (val_bytes) {
1533 case 1:
1534 ival = *(u8 *)(val + (i * val_bytes));
1535 break;
1536 case 2:
1537 ival = *(u16 *)(val + (i * val_bytes));
1538 break;
1539 case 4:
1540 ival = *(u32 *)(val + (i * val_bytes));
1541 break;
1542#ifdef CONFIG_64BIT
1543 case 8:
1544 ival = *(u64 *)(val + (i * val_bytes));
1545 break;
1546#endif
1547 default:
1548 ret = -EINVAL;
1549 goto out;
1550 }
1551
1552 ret = _regmap_write(map, reg + (i * map->reg_stride),
1553 ival);
1554 if (ret != 0)
1555 goto out;
1556 }
Laxman Dewangan8eaeb212012-02-12 19:49:43 +05301557 } else {
Stephen Boydf4298362013-12-26 13:52:04 -08001558 void *wval;
1559
Laxman Dewangan8eaeb212012-02-12 19:49:43 +05301560 wval = kmemdup(val, val_count * val_bytes, GFP_KERNEL);
1561 if (!wval) {
1562 ret = -ENOMEM;
1563 dev_err(map->dev, "Error in memory allocation\n");
1564 goto out;
1565 }
1566 for (i = 0; i < val_count * val_bytes; i += val_bytes)
Mark Brown8a819ff2013-03-04 09:04:51 +08001567 map->format.parse_inplace(wval + i);
Stephen Boydf4298362013-12-26 13:52:04 -08001568
Mark Brown0a819802013-10-09 12:28:52 +01001569 ret = _regmap_raw_write(map, reg, wval, val_bytes * val_count);
Laxman Dewangan8eaeb212012-02-12 19:49:43 +05301570
Laxman Dewangan8eaeb212012-02-12 19:49:43 +05301571 kfree(wval);
Stephen Boydf4298362013-12-26 13:52:04 -08001572 }
Laxman Dewangan8eaeb212012-02-12 19:49:43 +05301573out:
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02001574 map->unlock(map->lock_arg);
Laxman Dewangan8eaeb212012-02-12 19:49:43 +05301575 return ret;
1576}
1577EXPORT_SYMBOL_GPL(regmap_bulk_write);
1578
Anthony Oleche33fabd2013-10-11 15:31:11 +01001579/*
1580 * regmap_multi_reg_write(): Write multiple registers to the device
1581 *
1582 * where the set of register are supplied in any order
1583 *
1584 * @map: Register map to write to
1585 * @regs: Array of structures containing register,value to be written
1586 * @num_regs: Number of registers to write
1587 *
1588 * This function is intended to be used for writing a large block of data
1589 * atomically to the device in single transfer for those I2C client devices
1590 * that implement this alternative block write mode.
1591 *
1592 * A value of zero will be returned on success, a negative errno will
1593 * be returned in error cases.
1594 */
1595int regmap_multi_reg_write(struct regmap *map, struct reg_default *regs,
1596 int num_regs)
1597{
1598 int ret = 0, i;
1599
1600 for (i = 0; i < num_regs; i++) {
1601 int reg = regs[i].reg;
1602 if (reg % map->reg_stride)
1603 return -EINVAL;
1604 }
1605
1606 map->lock(map->lock_arg);
1607
1608 for (i = 0; i < num_regs; i++) {
1609 ret = _regmap_write(map, regs[i].reg, regs[i].def);
1610 if (ret != 0)
1611 goto out;
1612 }
1613out:
1614 map->unlock(map->lock_arg);
1615
1616 return ret;
1617}
1618EXPORT_SYMBOL_GPL(regmap_multi_reg_write);
1619
Mark Brown0d509f22013-01-27 22:07:38 +08001620/**
1621 * regmap_raw_write_async(): Write raw values to one or more registers
1622 * asynchronously
1623 *
1624 * @map: Register map to write to
1625 * @reg: Initial register to write to
1626 * @val: Block of data to be written, laid out for direct transmission to the
1627 * device. Must be valid until regmap_async_complete() is called.
1628 * @val_len: Length of data pointed to by val.
1629 *
1630 * This function is intended to be used for things like firmware
1631 * download where a large block of data needs to be transferred to the
1632 * device. No formatting will be done on the data provided.
1633 *
1634 * If supported by the underlying bus the write will be scheduled
1635 * asynchronously, helping maximise I/O speed on higher speed buses
1636 * like SPI. regmap_async_complete() can be called to ensure that all
1637 * asynchrnous writes have been completed.
1638 *
1639 * A value of zero will be returned on success, a negative errno will
1640 * be returned in error cases.
1641 */
1642int regmap_raw_write_async(struct regmap *map, unsigned int reg,
1643 const void *val, size_t val_len)
1644{
1645 int ret;
1646
1647 if (val_len % map->format.val_bytes)
1648 return -EINVAL;
1649 if (reg % map->reg_stride)
1650 return -EINVAL;
1651
1652 map->lock(map->lock_arg);
1653
Mark Brown0a819802013-10-09 12:28:52 +01001654 map->async = true;
1655
1656 ret = _regmap_raw_write(map, reg, val, val_len);
1657
1658 map->async = false;
Mark Brown0d509f22013-01-27 22:07:38 +08001659
1660 map->unlock(map->lock_arg);
1661
1662 return ret;
1663}
1664EXPORT_SYMBOL_GPL(regmap_raw_write_async);
1665
Mark Brownb83a3132011-05-11 19:59:58 +02001666static int _regmap_raw_read(struct regmap *map, unsigned int reg, void *val,
1667 unsigned int val_len)
1668{
Mark Brown98bc7df2012-10-04 17:31:11 +01001669 struct regmap_range_node *range;
Mark Brownb83a3132011-05-11 19:59:58 +02001670 u8 *u8 = map->work_buf;
1671 int ret;
1672
Mark Brownf1b5c5c2013-03-13 19:18:13 +00001673 WARN_ON(!map->bus);
Andrey Smirnovd2a58842013-01-27 10:49:05 -08001674
Mark Brown98bc7df2012-10-04 17:31:11 +01001675 range = _regmap_range_lookup(map, reg);
1676 if (range) {
1677 ret = _regmap_select_page(map, &reg, range,
1678 val_len / map->format.val_bytes);
Mark Brown0ff3e622012-10-04 17:39:13 +01001679 if (ret != 0)
Mark Brown98bc7df2012-10-04 17:31:11 +01001680 return ret;
1681 }
Krystian Garbaciak6863ca62012-06-15 11:23:56 +01001682
Marc Reillyd939fb92012-03-16 12:11:43 +11001683 map->format.format_reg(map->work_buf, reg, map->reg_shift);
Mark Brownb83a3132011-05-11 19:59:58 +02001684
1685 /*
Lars-Peter Clausen6f306442011-09-05 20:46:32 +02001686 * Some buses or devices flag reads by setting the high bits in the
Mark Brownb83a3132011-05-11 19:59:58 +02001687 * register addresss; since it's always the high bits for all
1688 * current formats we can do this here rather than in
1689 * formatting. This may break if we get interesting formats.
1690 */
Lars-Peter Clausen6f306442011-09-05 20:46:32 +02001691 u8[0] |= map->read_flag_mask;
Mark Brownb83a3132011-05-11 19:59:58 +02001692
Mark Brownfb2736b2011-07-24 21:30:55 +01001693 trace_regmap_hw_read_start(map->dev, reg,
1694 val_len / map->format.val_bytes);
1695
Stephen Warren0135bbc2012-04-04 15:48:30 -06001696 ret = map->bus->read(map->bus_context, map->work_buf,
Mark Brown82159ba2012-01-18 10:52:25 +00001697 map->format.reg_bytes + map->format.pad_bytes,
Mark Brown40c5cc22011-07-24 22:39:12 +01001698 val, val_len);
Mark Brownb83a3132011-05-11 19:59:58 +02001699
Mark Brownfb2736b2011-07-24 21:30:55 +01001700 trace_regmap_hw_read_done(map->dev, reg,
1701 val_len / map->format.val_bytes);
1702
1703 return ret;
Mark Brownb83a3132011-05-11 19:59:58 +02001704}
1705
Andrey Smirnovad278402013-01-12 12:54:12 -08001706static int _regmap_bus_read(void *context, unsigned int reg,
1707 unsigned int *val)
1708{
1709 int ret;
1710 struct regmap *map = context;
1711
1712 if (!map->format.parse_val)
1713 return -EINVAL;
1714
1715 ret = _regmap_raw_read(map, reg, map->work_buf, map->format.val_bytes);
1716 if (ret == 0)
1717 *val = map->format.parse_val(map->work_buf);
1718
1719 return ret;
1720}
1721
Mark Brownb83a3132011-05-11 19:59:58 +02001722static int _regmap_read(struct regmap *map, unsigned int reg,
1723 unsigned int *val)
1724{
1725 int ret;
Andrey Smirnovd2a58842013-01-27 10:49:05 -08001726 void *context = _regmap_map_get_context(map);
1727
Mark Brownf1b5c5c2013-03-13 19:18:13 +00001728 WARN_ON(!map->reg_read);
Mark Brownb83a3132011-05-11 19:59:58 +02001729
Dimitris Papastamos5d1729e2011-09-19 14:34:05 +01001730 if (!map->cache_bypass) {
1731 ret = regcache_read(map, reg, val);
1732 if (ret == 0)
1733 return 0;
1734 }
1735
1736 if (map->cache_only)
1737 return -EBUSY;
1738
Andrey Smirnovd2a58842013-01-27 10:49:05 -08001739 ret = map->reg_read(context, reg, val);
Mark Brownfb2736b2011-07-24 21:30:55 +01001740 if (ret == 0) {
Mark Brown1044c182012-07-06 14:10:23 +01001741#ifdef LOG_DEVICE
1742 if (strcmp(dev_name(map->dev), LOG_DEVICE) == 0)
1743 dev_info(map->dev, "%x => %x\n", reg, *val);
1744#endif
1745
Mark Brownfb2736b2011-07-24 21:30:55 +01001746 trace_regmap_reg_read(map->dev, reg, *val);
Mark Brownb83a3132011-05-11 19:59:58 +02001747
Andrey Smirnovad278402013-01-12 12:54:12 -08001748 if (!map->cache_bypass)
1749 regcache_write(map, reg, *val);
1750 }
Mark Brownf2985362012-04-30 21:25:05 +01001751
Mark Brownb83a3132011-05-11 19:59:58 +02001752 return ret;
1753}
1754
1755/**
1756 * regmap_read(): Read a value from a single register
1757 *
Gerhard Sittig00933802013-11-11 10:42:36 +01001758 * @map: Register map to read from
Mark Brownb83a3132011-05-11 19:59:58 +02001759 * @reg: Register to be read from
1760 * @val: Pointer to store read value
1761 *
1762 * A value of zero will be returned on success, a negative errno will
1763 * be returned in error cases.
1764 */
1765int regmap_read(struct regmap *map, unsigned int reg, unsigned int *val)
1766{
1767 int ret;
1768
Stephen Warrenf01ee602012-04-09 13:40:24 -06001769 if (reg % map->reg_stride)
1770 return -EINVAL;
1771
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02001772 map->lock(map->lock_arg);
Mark Brownb83a3132011-05-11 19:59:58 +02001773
1774 ret = _regmap_read(map, reg, val);
1775
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02001776 map->unlock(map->lock_arg);
Mark Brownb83a3132011-05-11 19:59:58 +02001777
1778 return ret;
1779}
1780EXPORT_SYMBOL_GPL(regmap_read);
1781
1782/**
1783 * regmap_raw_read(): Read raw data from the device
1784 *
Gerhard Sittig00933802013-11-11 10:42:36 +01001785 * @map: Register map to read from
Mark Brownb83a3132011-05-11 19:59:58 +02001786 * @reg: First register to be read from
1787 * @val: Pointer to store read value
1788 * @val_len: Size of data to read
1789 *
1790 * A value of zero will be returned on success, a negative errno will
1791 * be returned in error cases.
1792 */
1793int regmap_raw_read(struct regmap *map, unsigned int reg, void *val,
1794 size_t val_len)
1795{
Mark Brownb8fb5ab2012-02-21 19:12:47 +00001796 size_t val_bytes = map->format.val_bytes;
1797 size_t val_count = val_len / val_bytes;
1798 unsigned int v;
1799 int ret, i;
Mark Brown04e016a2011-10-09 13:35:43 +01001800
Andrey Smirnovd2a58842013-01-27 10:49:05 -08001801 if (!map->bus)
1802 return -EINVAL;
Stephen Warren851960b2012-04-06 15:16:03 -06001803 if (val_len % map->format.val_bytes)
1804 return -EINVAL;
Stephen Warrenf01ee602012-04-09 13:40:24 -06001805 if (reg % map->reg_stride)
1806 return -EINVAL;
Stephen Warren851960b2012-04-06 15:16:03 -06001807
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02001808 map->lock(map->lock_arg);
Mark Brownb83a3132011-05-11 19:59:58 +02001809
Mark Brownb8fb5ab2012-02-21 19:12:47 +00001810 if (regmap_volatile_range(map, reg, val_count) || map->cache_bypass ||
1811 map->cache_type == REGCACHE_NONE) {
1812 /* Physical block read if there's no cache involved */
1813 ret = _regmap_raw_read(map, reg, val, val_len);
Mark Brownb83a3132011-05-11 19:59:58 +02001814
Mark Brownb8fb5ab2012-02-21 19:12:47 +00001815 } else {
1816 /* Otherwise go word by word for the cache; should be low
1817 * cost as we expect to hit the cache.
1818 */
1819 for (i = 0; i < val_count; i++) {
Stephen Warrenf01ee602012-04-09 13:40:24 -06001820 ret = _regmap_read(map, reg + (i * map->reg_stride),
1821 &v);
Mark Brownb8fb5ab2012-02-21 19:12:47 +00001822 if (ret != 0)
1823 goto out;
1824
Marc Reillyd939fb92012-03-16 12:11:43 +11001825 map->format.format_val(val + (i * val_bytes), v, 0);
Mark Brownb8fb5ab2012-02-21 19:12:47 +00001826 }
1827 }
1828
1829 out:
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02001830 map->unlock(map->lock_arg);
Mark Brownb83a3132011-05-11 19:59:58 +02001831
1832 return ret;
1833}
1834EXPORT_SYMBOL_GPL(regmap_raw_read);
1835
1836/**
Srinivas Kandagatla67252282013-06-11 13:18:15 +01001837 * regmap_field_read(): Read a value to a single register field
1838 *
1839 * @field: Register field to read from
1840 * @val: Pointer to store read value
1841 *
1842 * A value of zero will be returned on success, a negative errno will
1843 * be returned in error cases.
1844 */
1845int regmap_field_read(struct regmap_field *field, unsigned int *val)
1846{
1847 int ret;
1848 unsigned int reg_val;
1849 ret = regmap_read(field->regmap, field->reg, &reg_val);
1850 if (ret != 0)
1851 return ret;
1852
1853 reg_val &= field->mask;
1854 reg_val >>= field->shift;
1855 *val = reg_val;
1856
1857 return ret;
1858}
1859EXPORT_SYMBOL_GPL(regmap_field_read);
1860
1861/**
Kuninori Morimotoa0102372013-09-01 20:30:50 -07001862 * regmap_fields_read(): Read a value to a single register field with port ID
1863 *
1864 * @field: Register field to read from
1865 * @id: port ID
1866 * @val: Pointer to store read value
1867 *
1868 * A value of zero will be returned on success, a negative errno will
1869 * be returned in error cases.
1870 */
1871int regmap_fields_read(struct regmap_field *field, unsigned int id,
1872 unsigned int *val)
1873{
1874 int ret;
1875 unsigned int reg_val;
1876
1877 if (id >= field->id_size)
1878 return -EINVAL;
1879
1880 ret = regmap_read(field->regmap,
1881 field->reg + (field->id_offset * id),
1882 &reg_val);
1883 if (ret != 0)
1884 return ret;
1885
1886 reg_val &= field->mask;
1887 reg_val >>= field->shift;
1888 *val = reg_val;
1889
1890 return ret;
1891}
1892EXPORT_SYMBOL_GPL(regmap_fields_read);
1893
1894/**
Mark Brownb83a3132011-05-11 19:59:58 +02001895 * regmap_bulk_read(): Read multiple registers from the device
1896 *
Gerhard Sittig00933802013-11-11 10:42:36 +01001897 * @map: Register map to read from
Mark Brownb83a3132011-05-11 19:59:58 +02001898 * @reg: First register to be read from
1899 * @val: Pointer to store read value, in native register size for device
1900 * @val_count: Number of registers to read
1901 *
1902 * A value of zero will be returned on success, a negative errno will
1903 * be returned in error cases.
1904 */
1905int regmap_bulk_read(struct regmap *map, unsigned int reg, void *val,
1906 size_t val_count)
1907{
1908 int ret, i;
1909 size_t val_bytes = map->format.val_bytes;
Lars-Peter Clausen82cd9962011-11-08 18:37:25 +01001910 bool vol = regmap_volatile_range(map, reg, val_count);
Dimitris Papastamos5d1729e2011-09-19 14:34:05 +01001911
Stephen Warrenf01ee602012-04-09 13:40:24 -06001912 if (reg % map->reg_stride)
1913 return -EINVAL;
Mark Brownb83a3132011-05-11 19:59:58 +02001914
Stephen Boyd3b58ee12013-12-13 09:14:07 -08001915 if (map->bus && map->format.parse_inplace && (vol || map->cache_type == REGCACHE_NONE)) {
Ashish Jangam2e33caf2012-04-30 23:23:40 +01001916 /*
1917 * Some devices does not support bulk read, for
1918 * them we have a series of single read operations.
1919 */
1920 if (map->use_single_rw) {
1921 for (i = 0; i < val_count; i++) {
1922 ret = regmap_raw_read(map,
1923 reg + (i * map->reg_stride),
1924 val + (i * val_bytes),
1925 val_bytes);
1926 if (ret != 0)
1927 return ret;
1928 }
1929 } else {
1930 ret = regmap_raw_read(map, reg, val,
1931 val_bytes * val_count);
1932 if (ret != 0)
1933 return ret;
1934 }
Mark Brownde2d8082011-10-10 13:24:52 +01001935
1936 for (i = 0; i < val_count * val_bytes; i += val_bytes)
Mark Brown8a819ff2013-03-04 09:04:51 +08001937 map->format.parse_inplace(val + i);
Mark Brownde2d8082011-10-10 13:24:52 +01001938 } else {
1939 for (i = 0; i < val_count; i++) {
Laxman Dewangan6560ffd2012-05-09 17:43:12 +05301940 unsigned int ival;
Stephen Warrenf01ee602012-04-09 13:40:24 -06001941 ret = regmap_read(map, reg + (i * map->reg_stride),
Mark Brown25061d22012-05-12 13:06:08 +01001942 &ival);
Mark Brownde2d8082011-10-10 13:24:52 +01001943 if (ret != 0)
1944 return ret;
Laxman Dewangan6560ffd2012-05-09 17:43:12 +05301945 memcpy(val + (i * val_bytes), &ival, val_bytes);
Mark Brownde2d8082011-10-10 13:24:52 +01001946 }
1947 }
Mark Brownb83a3132011-05-11 19:59:58 +02001948
1949 return 0;
1950}
1951EXPORT_SYMBOL_GPL(regmap_bulk_read);
1952
Mark Brown018690d2011-11-29 20:10:36 +00001953static int _regmap_update_bits(struct regmap *map, unsigned int reg,
1954 unsigned int mask, unsigned int val,
1955 bool *change)
Mark Brownb83a3132011-05-11 19:59:58 +02001956{
1957 int ret;
Mark Brownd91e8db22011-11-18 16:03:50 +00001958 unsigned int tmp, orig;
Mark Brownb83a3132011-05-11 19:59:58 +02001959
Mark Brownd91e8db22011-11-18 16:03:50 +00001960 ret = _regmap_read(map, reg, &orig);
Mark Brownb83a3132011-05-11 19:59:58 +02001961 if (ret != 0)
Krystian Garbaciakfc3ebd72012-06-15 11:23:56 +01001962 return ret;
Mark Brownb83a3132011-05-11 19:59:58 +02001963
Mark Brownd91e8db22011-11-18 16:03:50 +00001964 tmp = orig & ~mask;
Mark Brownb83a3132011-05-11 19:59:58 +02001965 tmp |= val & mask;
1966
Mark Brown018690d2011-11-29 20:10:36 +00001967 if (tmp != orig) {
Mark Brownd91e8db22011-11-18 16:03:50 +00001968 ret = _regmap_write(map, reg, tmp);
Mark Brown018690d2011-11-29 20:10:36 +00001969 *change = true;
1970 } else {
1971 *change = false;
1972 }
Mark Brownb83a3132011-05-11 19:59:58 +02001973
Mark Brownb83a3132011-05-11 19:59:58 +02001974 return ret;
1975}
Mark Brown018690d2011-11-29 20:10:36 +00001976
1977/**
1978 * regmap_update_bits: Perform a read/modify/write cycle on the register map
1979 *
1980 * @map: Register map to update
1981 * @reg: Register to update
1982 * @mask: Bitmask to change
1983 * @val: New value for bitmask
1984 *
1985 * Returns zero for success, a negative number on error.
1986 */
1987int regmap_update_bits(struct regmap *map, unsigned int reg,
1988 unsigned int mask, unsigned int val)
1989{
1990 bool change;
Krystian Garbaciakfc3ebd72012-06-15 11:23:56 +01001991 int ret;
1992
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02001993 map->lock(map->lock_arg);
Krystian Garbaciakfc3ebd72012-06-15 11:23:56 +01001994 ret = _regmap_update_bits(map, reg, mask, val, &change);
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02001995 map->unlock(map->lock_arg);
Krystian Garbaciakfc3ebd72012-06-15 11:23:56 +01001996
1997 return ret;
Mark Brown018690d2011-11-29 20:10:36 +00001998}
Mark Brownb83a3132011-05-11 19:59:58 +02001999EXPORT_SYMBOL_GPL(regmap_update_bits);
Mark Brown31244e32011-07-20 22:56:53 +01002000
Mark Brown018690d2011-11-29 20:10:36 +00002001/**
Mark Brown915f4412013-10-09 13:30:10 +01002002 * regmap_update_bits_async: Perform a read/modify/write cycle on the register
2003 * map asynchronously
2004 *
2005 * @map: Register map to update
2006 * @reg: Register to update
2007 * @mask: Bitmask to change
2008 * @val: New value for bitmask
2009 *
2010 * With most buses the read must be done synchronously so this is most
2011 * useful for devices with a cache which do not need to interact with
2012 * the hardware to determine the current register value.
2013 *
2014 * Returns zero for success, a negative number on error.
2015 */
2016int regmap_update_bits_async(struct regmap *map, unsigned int reg,
2017 unsigned int mask, unsigned int val)
2018{
2019 bool change;
2020 int ret;
2021
2022 map->lock(map->lock_arg);
2023
2024 map->async = true;
2025
2026 ret = _regmap_update_bits(map, reg, mask, val, &change);
2027
2028 map->async = false;
2029
2030 map->unlock(map->lock_arg);
2031
2032 return ret;
2033}
2034EXPORT_SYMBOL_GPL(regmap_update_bits_async);
2035
2036/**
Mark Brown018690d2011-11-29 20:10:36 +00002037 * regmap_update_bits_check: Perform a read/modify/write cycle on the
2038 * register map and report if updated
2039 *
2040 * @map: Register map to update
2041 * @reg: Register to update
2042 * @mask: Bitmask to change
2043 * @val: New value for bitmask
2044 * @change: Boolean indicating if a write was done
2045 *
2046 * Returns zero for success, a negative number on error.
2047 */
2048int regmap_update_bits_check(struct regmap *map, unsigned int reg,
2049 unsigned int mask, unsigned int val,
2050 bool *change)
2051{
Krystian Garbaciakfc3ebd72012-06-15 11:23:56 +01002052 int ret;
2053
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02002054 map->lock(map->lock_arg);
Krystian Garbaciakfc3ebd72012-06-15 11:23:56 +01002055 ret = _regmap_update_bits(map, reg, mask, val, change);
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02002056 map->unlock(map->lock_arg);
Krystian Garbaciakfc3ebd72012-06-15 11:23:56 +01002057 return ret;
Mark Brown018690d2011-11-29 20:10:36 +00002058}
2059EXPORT_SYMBOL_GPL(regmap_update_bits_check);
2060
Mark Brown915f4412013-10-09 13:30:10 +01002061/**
2062 * regmap_update_bits_check_async: Perform a read/modify/write cycle on the
2063 * register map asynchronously and report if
2064 * updated
2065 *
2066 * @map: Register map to update
2067 * @reg: Register to update
2068 * @mask: Bitmask to change
2069 * @val: New value for bitmask
2070 * @change: Boolean indicating if a write was done
2071 *
2072 * With most buses the read must be done synchronously so this is most
2073 * useful for devices with a cache which do not need to interact with
2074 * the hardware to determine the current register value.
2075 *
2076 * Returns zero for success, a negative number on error.
2077 */
2078int regmap_update_bits_check_async(struct regmap *map, unsigned int reg,
2079 unsigned int mask, unsigned int val,
2080 bool *change)
2081{
2082 int ret;
2083
2084 map->lock(map->lock_arg);
2085
2086 map->async = true;
2087
2088 ret = _regmap_update_bits(map, reg, mask, val, change);
2089
2090 map->async = false;
2091
2092 map->unlock(map->lock_arg);
2093
2094 return ret;
2095}
2096EXPORT_SYMBOL_GPL(regmap_update_bits_check_async);
2097
Mark Brown0d509f22013-01-27 22:07:38 +08002098void regmap_async_complete_cb(struct regmap_async *async, int ret)
2099{
2100 struct regmap *map = async->map;
2101 bool wake;
2102
Mark Brownfe7d4cc2013-02-21 19:05:48 +00002103 trace_regmap_async_io_complete(map->dev);
2104
Mark Brown0d509f22013-01-27 22:07:38 +08002105 spin_lock(&map->async_lock);
Mark Brown7e09a972013-10-07 23:00:24 +01002106 list_move(&async->list, &map->async_free);
Mark Brown0d509f22013-01-27 22:07:38 +08002107 wake = list_empty(&map->async_list);
2108
2109 if (ret != 0)
2110 map->async_ret = ret;
2111
2112 spin_unlock(&map->async_lock);
2113
Mark Brown0d509f22013-01-27 22:07:38 +08002114 if (wake)
2115 wake_up(&map->async_waitq);
2116}
Axel Linf804fb52013-02-03 00:14:13 +08002117EXPORT_SYMBOL_GPL(regmap_async_complete_cb);
Mark Brown0d509f22013-01-27 22:07:38 +08002118
2119static int regmap_async_is_done(struct regmap *map)
2120{
2121 unsigned long flags;
2122 int ret;
2123
2124 spin_lock_irqsave(&map->async_lock, flags);
2125 ret = list_empty(&map->async_list);
2126 spin_unlock_irqrestore(&map->async_lock, flags);
2127
2128 return ret;
2129}
2130
2131/**
2132 * regmap_async_complete: Ensure all asynchronous I/O has completed.
2133 *
2134 * @map: Map to operate on.
2135 *
2136 * Blocks until any pending asynchronous I/O has completed. Returns
2137 * an error code for any failed I/O operations.
2138 */
2139int regmap_async_complete(struct regmap *map)
2140{
2141 unsigned long flags;
2142 int ret;
2143
2144 /* Nothing to do with no async support */
Daniel Mackf2e055e2013-07-04 13:11:03 +02002145 if (!map->bus || !map->bus->async_write)
Mark Brown0d509f22013-01-27 22:07:38 +08002146 return 0;
2147
Mark Brownfe7d4cc2013-02-21 19:05:48 +00002148 trace_regmap_async_complete_start(map->dev);
2149
Mark Brown0d509f22013-01-27 22:07:38 +08002150 wait_event(map->async_waitq, regmap_async_is_done(map));
2151
2152 spin_lock_irqsave(&map->async_lock, flags);
2153 ret = map->async_ret;
2154 map->async_ret = 0;
2155 spin_unlock_irqrestore(&map->async_lock, flags);
2156
Mark Brownfe7d4cc2013-02-21 19:05:48 +00002157 trace_regmap_async_complete_done(map->dev);
2158
Mark Brown0d509f22013-01-27 22:07:38 +08002159 return ret;
2160}
Mark Brownf88948e2013-02-05 13:53:26 +00002161EXPORT_SYMBOL_GPL(regmap_async_complete);
Mark Brown0d509f22013-01-27 22:07:38 +08002162
Mark Brown22f0d902012-01-21 12:01:14 +00002163/**
2164 * regmap_register_patch: Register and apply register updates to be applied
2165 * on device initialistion
2166 *
2167 * @map: Register map to apply updates to.
2168 * @regs: Values to update.
2169 * @num_regs: Number of entries in regs.
2170 *
2171 * Register a set of register updates to be applied to the device
2172 * whenever the device registers are synchronised with the cache and
2173 * apply them immediately. Typically this is used to apply
2174 * corrections to be applied to the device defaults on startup, such
2175 * as the updates some vendors provide to undocumented registers.
2176 */
2177int regmap_register_patch(struct regmap *map, const struct reg_default *regs,
2178 int num_regs)
2179{
Mark Brownaab13eb2013-07-11 12:41:44 +01002180 struct reg_default *p;
Mark Brown22f0d902012-01-21 12:01:14 +00002181 int i, ret;
2182 bool bypass;
2183
Cai Zhiyongbd60e382013-11-18 20:21:49 +08002184 if (WARN_ONCE(num_regs <= 0, "invalid registers number (%d)\n",
2185 num_regs))
2186 return 0;
2187
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02002188 map->lock(map->lock_arg);
Mark Brown22f0d902012-01-21 12:01:14 +00002189
2190 bypass = map->cache_bypass;
2191
2192 map->cache_bypass = true;
Mark Brown1a25f262013-10-10 20:55:03 +01002193 map->async = true;
Mark Brown22f0d902012-01-21 12:01:14 +00002194
2195 /* Write out first; it's useful to apply even if we fail later. */
2196 for (i = 0; i < num_regs; i++) {
2197 ret = _regmap_write(map, regs[i].reg, regs[i].def);
2198 if (ret != 0) {
2199 dev_err(map->dev, "Failed to write %x = %x: %d\n",
2200 regs[i].reg, regs[i].def, ret);
2201 goto out;
2202 }
2203 }
2204
Mark Brownaab13eb2013-07-11 12:41:44 +01002205 p = krealloc(map->patch,
2206 sizeof(struct reg_default) * (map->patch_regs + num_regs),
2207 GFP_KERNEL);
2208 if (p) {
2209 memcpy(p + map->patch_regs, regs, num_regs * sizeof(*regs));
2210 map->patch = p;
2211 map->patch_regs += num_regs;
Mark Brown22f0d902012-01-21 12:01:14 +00002212 } else {
2213 ret = -ENOMEM;
2214 }
2215
2216out:
Mark Brown1a25f262013-10-10 20:55:03 +01002217 map->async = false;
Mark Brown22f0d902012-01-21 12:01:14 +00002218 map->cache_bypass = bypass;
2219
Davide Ciminaghi0d4529c2012-10-16 15:56:59 +02002220 map->unlock(map->lock_arg);
Mark Brown22f0d902012-01-21 12:01:14 +00002221
Mark Brown1a25f262013-10-10 20:55:03 +01002222 regmap_async_complete(map);
2223
Mark Brown22f0d902012-01-21 12:01:14 +00002224 return ret;
2225}
2226EXPORT_SYMBOL_GPL(regmap_register_patch);
2227
Mark Browneae4b512012-03-14 13:15:03 +00002228/*
Mark Browna6539c32012-02-17 14:20:14 -08002229 * regmap_get_val_bytes(): Report the size of a register value
2230 *
2231 * Report the size of a register value, mainly intended to for use by
2232 * generic infrastructure built on top of regmap.
2233 */
2234int regmap_get_val_bytes(struct regmap *map)
2235{
2236 if (map->format.format_write)
2237 return -EINVAL;
2238
2239 return map->format.val_bytes;
2240}
2241EXPORT_SYMBOL_GPL(regmap_get_val_bytes);
2242
Mark Brown31244e32011-07-20 22:56:53 +01002243static int __init regmap_initcall(void)
2244{
2245 regmap_debugfs_initcall();
2246
2247 return 0;
2248}
2249postcore_initcall(regmap_initcall);