regmap.c 14 KB

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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. #include <linux/slab.h>
  13. #include <linux/module.h>
  14. #include <linux/mutex.h>
  15. #include <linux/err.h>
  16. #define CREATE_TRACE_POINTS
  17. #include <trace/events/regmap.h>
  18. #include "internal.h"
  19. bool regmap_writeable(struct regmap *map, unsigned int reg)
  20. {
  21. if (map->max_register && reg > map->max_register)
  22. return false;
  23. if (map->writeable_reg)
  24. return map->writeable_reg(map->dev, reg);
  25. return true;
  26. }
  27. bool regmap_readable(struct regmap *map, unsigned int reg)
  28. {
  29. if (map->max_register && reg > map->max_register)
  30. return false;
  31. if (map->readable_reg)
  32. return map->readable_reg(map->dev, reg);
  33. return true;
  34. }
  35. bool regmap_volatile(struct regmap *map, unsigned int reg)
  36. {
  37. if (map->max_register && reg > map->max_register)
  38. return false;
  39. if (map->volatile_reg)
  40. return map->volatile_reg(map->dev, reg);
  41. return true;
  42. }
  43. bool regmap_precious(struct regmap *map, unsigned int reg)
  44. {
  45. if (map->max_register && reg > map->max_register)
  46. return false;
  47. if (map->precious_reg)
  48. return map->precious_reg(map->dev, reg);
  49. return false;
  50. }
  51. static void regmap_format_4_12_write(struct regmap *map,
  52. unsigned int reg, unsigned int val)
  53. {
  54. __be16 *out = map->work_buf;
  55. *out = cpu_to_be16((reg << 12) | val);
  56. }
  57. static void regmap_format_7_9_write(struct regmap *map,
  58. unsigned int reg, unsigned int val)
  59. {
  60. __be16 *out = map->work_buf;
  61. *out = cpu_to_be16((reg << 9) | val);
  62. }
  63. static void regmap_format_8(void *buf, unsigned int val)
  64. {
  65. u8 *b = buf;
  66. b[0] = val;
  67. }
  68. static void regmap_format_16(void *buf, unsigned int val)
  69. {
  70. __be16 *b = buf;
  71. b[0] = cpu_to_be16(val);
  72. }
  73. static unsigned int regmap_parse_8(void *buf)
  74. {
  75. u8 *b = buf;
  76. return b[0];
  77. }
  78. static unsigned int regmap_parse_16(void *buf)
  79. {
  80. __be16 *b = buf;
  81. b[0] = be16_to_cpu(b[0]);
  82. return b[0];
  83. }
  84. /**
  85. * regmap_init(): Initialise register map
  86. *
  87. * @dev: Device that will be interacted with
  88. * @bus: Bus-specific callbacks to use with device
  89. * @config: Configuration for register map
  90. *
  91. * The return value will be an ERR_PTR() on error or a valid pointer to
  92. * a struct regmap. This function should generally not be called
  93. * directly, it should be called by bus-specific init functions.
  94. */
  95. struct regmap *regmap_init(struct device *dev,
  96. const struct regmap_bus *bus,
  97. const struct regmap_config *config)
  98. {
  99. struct regmap *map;
  100. int ret = -EINVAL;
  101. if (!bus || !config)
  102. return NULL;
  103. map = kzalloc(sizeof(*map), GFP_KERNEL);
  104. if (map == NULL) {
  105. ret = -ENOMEM;
  106. goto err;
  107. }
  108. mutex_init(&map->lock);
  109. map->format.buf_size = (config->reg_bits + config->val_bits) / 8;
  110. map->format.reg_bytes = config->reg_bits / 8;
  111. map->format.val_bytes = config->val_bits / 8;
  112. map->dev = dev;
  113. map->bus = bus;
  114. map->max_register = config->max_register;
  115. map->writeable_reg = config->writeable_reg;
  116. map->readable_reg = config->readable_reg;
  117. map->volatile_reg = config->volatile_reg;
  118. map->precious_reg = config->precious_reg;
  119. map->cache_type = config->cache_type;
  120. map->reg_defaults = config->reg_defaults;
  121. map->num_reg_defaults = config->num_reg_defaults;
  122. map->num_reg_defaults_raw = config->num_reg_defaults_raw;
  123. map->reg_defaults_raw = config->reg_defaults_raw;
  124. map->cache_size_raw = (config->val_bits / 8) * config->num_reg_defaults_raw;
  125. map->cache_word_size = config->val_bits / 8;
  126. if (config->read_flag_mask || config->write_flag_mask) {
  127. map->read_flag_mask = config->read_flag_mask;
  128. map->write_flag_mask = config->write_flag_mask;
  129. } else {
  130. map->read_flag_mask = bus->read_flag_mask;
  131. }
  132. switch (config->reg_bits) {
  133. case 4:
  134. switch (config->val_bits) {
  135. case 12:
  136. map->format.format_write = regmap_format_4_12_write;
  137. break;
  138. default:
  139. goto err_map;
  140. }
  141. break;
  142. case 7:
  143. switch (config->val_bits) {
  144. case 9:
  145. map->format.format_write = regmap_format_7_9_write;
  146. break;
  147. default:
  148. goto err_map;
  149. }
  150. break;
  151. case 8:
  152. map->format.format_reg = regmap_format_8;
  153. break;
  154. case 16:
  155. map->format.format_reg = regmap_format_16;
  156. break;
  157. default:
  158. goto err_map;
  159. }
  160. switch (config->val_bits) {
  161. case 8:
  162. map->format.format_val = regmap_format_8;
  163. map->format.parse_val = regmap_parse_8;
  164. break;
  165. case 16:
  166. map->format.format_val = regmap_format_16;
  167. map->format.parse_val = regmap_parse_16;
  168. break;
  169. }
  170. if (!map->format.format_write &&
  171. !(map->format.format_reg && map->format.format_val))
  172. goto err_map;
  173. map->work_buf = kmalloc(map->format.buf_size, GFP_KERNEL);
  174. if (map->work_buf == NULL) {
  175. ret = -ENOMEM;
  176. goto err_map;
  177. }
  178. ret = regcache_init(map);
  179. if (ret < 0)
  180. goto err_map;
  181. regmap_debugfs_init(map);
  182. return map;
  183. err_map:
  184. kfree(map);
  185. err:
  186. return ERR_PTR(ret);
  187. }
  188. EXPORT_SYMBOL_GPL(regmap_init);
  189. /**
  190. * regmap_reinit_cache(): Reinitialise the current register cache
  191. *
  192. * @map: Register map to operate on.
  193. * @config: New configuration. Only the cache data will be used.
  194. *
  195. * Discard any existing register cache for the map and initialize a
  196. * new cache. This can be used to restore the cache to defaults or to
  197. * update the cache configuration to reflect runtime discovery of the
  198. * hardware.
  199. */
  200. int regmap_reinit_cache(struct regmap *map, const struct regmap_config *config)
  201. {
  202. int ret;
  203. mutex_lock(&map->lock);
  204. regcache_exit(map);
  205. map->max_register = config->max_register;
  206. map->writeable_reg = config->writeable_reg;
  207. map->readable_reg = config->readable_reg;
  208. map->volatile_reg = config->volatile_reg;
  209. map->precious_reg = config->precious_reg;
  210. map->cache_type = config->cache_type;
  211. ret = regcache_init(map, config);
  212. mutex_unlock(&map->lock);
  213. return ret;
  214. }
  215. /**
  216. * regmap_exit(): Free a previously allocated register map
  217. */
  218. void regmap_exit(struct regmap *map)
  219. {
  220. regcache_exit(map);
  221. regmap_debugfs_exit(map);
  222. kfree(map->work_buf);
  223. kfree(map);
  224. }
  225. EXPORT_SYMBOL_GPL(regmap_exit);
  226. static int _regmap_raw_write(struct regmap *map, unsigned int reg,
  227. const void *val, size_t val_len)
  228. {
  229. u8 *u8 = map->work_buf;
  230. void *buf;
  231. int ret = -ENOTSUPP;
  232. size_t len;
  233. int i;
  234. /* Check for unwritable registers before we start */
  235. if (map->writeable_reg)
  236. for (i = 0; i < val_len / map->format.val_bytes; i++)
  237. if (!map->writeable_reg(map->dev, reg + i))
  238. return -EINVAL;
  239. map->format.format_reg(map->work_buf, reg);
  240. u8[0] |= map->write_flag_mask;
  241. trace_regmap_hw_write_start(map->dev, reg,
  242. val_len / map->format.val_bytes);
  243. /* If we're doing a single register write we can probably just
  244. * send the work_buf directly, otherwise try to do a gather
  245. * write.
  246. */
  247. if (val == map->work_buf + map->format.reg_bytes)
  248. ret = map->bus->write(map->dev, map->work_buf,
  249. map->format.reg_bytes + val_len);
  250. else if (map->bus->gather_write)
  251. ret = map->bus->gather_write(map->dev, map->work_buf,
  252. map->format.reg_bytes,
  253. val, val_len);
  254. /* If that didn't work fall back on linearising by hand. */
  255. if (ret == -ENOTSUPP) {
  256. len = map->format.reg_bytes + val_len;
  257. buf = kmalloc(len, GFP_KERNEL);
  258. if (!buf)
  259. return -ENOMEM;
  260. memcpy(buf, map->work_buf, map->format.reg_bytes);
  261. memcpy(buf + map->format.reg_bytes, val, val_len);
  262. ret = map->bus->write(map->dev, buf, len);
  263. kfree(buf);
  264. }
  265. trace_regmap_hw_write_done(map->dev, reg,
  266. val_len / map->format.val_bytes);
  267. return ret;
  268. }
  269. int _regmap_write(struct regmap *map, unsigned int reg,
  270. unsigned int val)
  271. {
  272. int ret;
  273. BUG_ON(!map->format.format_write && !map->format.format_val);
  274. if (!map->cache_bypass) {
  275. ret = regcache_write(map, reg, val);
  276. if (ret != 0)
  277. return ret;
  278. if (map->cache_only) {
  279. map->cache_dirty = true;
  280. return 0;
  281. }
  282. }
  283. trace_regmap_reg_write(map->dev, reg, val);
  284. if (map->format.format_write) {
  285. map->format.format_write(map, reg, val);
  286. trace_regmap_hw_write_start(map->dev, reg, 1);
  287. ret = map->bus->write(map->dev, map->work_buf,
  288. map->format.buf_size);
  289. trace_regmap_hw_write_done(map->dev, reg, 1);
  290. return ret;
  291. } else {
  292. map->format.format_val(map->work_buf + map->format.reg_bytes,
  293. val);
  294. return _regmap_raw_write(map, reg,
  295. map->work_buf + map->format.reg_bytes,
  296. map->format.val_bytes);
  297. }
  298. }
  299. /**
  300. * regmap_write(): Write a value to a single register
  301. *
  302. * @map: Register map to write to
  303. * @reg: Register to write to
  304. * @val: Value to be written
  305. *
  306. * A value of zero will be returned on success, a negative errno will
  307. * be returned in error cases.
  308. */
  309. int regmap_write(struct regmap *map, unsigned int reg, unsigned int val)
  310. {
  311. int ret;
  312. mutex_lock(&map->lock);
  313. ret = _regmap_write(map, reg, val);
  314. mutex_unlock(&map->lock);
  315. return ret;
  316. }
  317. EXPORT_SYMBOL_GPL(regmap_write);
  318. /**
  319. * regmap_raw_write(): Write raw values to one or more registers
  320. *
  321. * @map: Register map to write to
  322. * @reg: Initial register to write to
  323. * @val: Block of data to be written, laid out for direct transmission to the
  324. * device
  325. * @val_len: Length of data pointed to by val.
  326. *
  327. * This function is intended to be used for things like firmware
  328. * download where a large block of data needs to be transferred to the
  329. * device. No formatting will be done on the data provided.
  330. *
  331. * A value of zero will be returned on success, a negative errno will
  332. * be returned in error cases.
  333. */
  334. int regmap_raw_write(struct regmap *map, unsigned int reg,
  335. const void *val, size_t val_len)
  336. {
  337. int ret;
  338. WARN_ON(map->cache_type != REGCACHE_NONE);
  339. mutex_lock(&map->lock);
  340. ret = _regmap_raw_write(map, reg, val, val_len);
  341. mutex_unlock(&map->lock);
  342. return ret;
  343. }
  344. EXPORT_SYMBOL_GPL(regmap_raw_write);
  345. static int _regmap_raw_read(struct regmap *map, unsigned int reg, void *val,
  346. unsigned int val_len)
  347. {
  348. u8 *u8 = map->work_buf;
  349. int ret;
  350. map->format.format_reg(map->work_buf, reg);
  351. /*
  352. * Some buses or devices flag reads by setting the high bits in the
  353. * register addresss; since it's always the high bits for all
  354. * current formats we can do this here rather than in
  355. * formatting. This may break if we get interesting formats.
  356. */
  357. u8[0] |= map->read_flag_mask;
  358. trace_regmap_hw_read_start(map->dev, reg,
  359. val_len / map->format.val_bytes);
  360. ret = map->bus->read(map->dev, map->work_buf, map->format.reg_bytes,
  361. val, val_len);
  362. trace_regmap_hw_read_done(map->dev, reg,
  363. val_len / map->format.val_bytes);
  364. return ret;
  365. }
  366. static int _regmap_read(struct regmap *map, unsigned int reg,
  367. unsigned int *val)
  368. {
  369. int ret;
  370. if (!map->format.parse_val)
  371. return -EINVAL;
  372. if (!map->cache_bypass) {
  373. ret = regcache_read(map, reg, val);
  374. if (ret == 0)
  375. return 0;
  376. }
  377. if (map->cache_only)
  378. return -EBUSY;
  379. ret = _regmap_raw_read(map, reg, map->work_buf, map->format.val_bytes);
  380. if (ret == 0) {
  381. *val = map->format.parse_val(map->work_buf);
  382. trace_regmap_reg_read(map->dev, reg, *val);
  383. }
  384. return ret;
  385. }
  386. /**
  387. * regmap_read(): Read a value from a single register
  388. *
  389. * @map: Register map to write to
  390. * @reg: Register to be read from
  391. * @val: Pointer to store read value
  392. *
  393. * A value of zero will be returned on success, a negative errno will
  394. * be returned in error cases.
  395. */
  396. int regmap_read(struct regmap *map, unsigned int reg, unsigned int *val)
  397. {
  398. int ret;
  399. mutex_lock(&map->lock);
  400. ret = _regmap_read(map, reg, val);
  401. mutex_unlock(&map->lock);
  402. return ret;
  403. }
  404. EXPORT_SYMBOL_GPL(regmap_read);
  405. /**
  406. * regmap_raw_read(): Read raw data from the device
  407. *
  408. * @map: Register map to write to
  409. * @reg: First register to be read from
  410. * @val: Pointer to store read value
  411. * @val_len: Size of data to read
  412. *
  413. * A value of zero will be returned on success, a negative errno will
  414. * be returned in error cases.
  415. */
  416. int regmap_raw_read(struct regmap *map, unsigned int reg, void *val,
  417. size_t val_len)
  418. {
  419. int ret;
  420. int i;
  421. bool vol = true;
  422. for (i = 0; i < val_len / map->format.val_bytes; i++)
  423. if (!regmap_volatile(map, reg + i))
  424. vol = false;
  425. WARN_ON(!vol && map->cache_type != REGCACHE_NONE);
  426. mutex_lock(&map->lock);
  427. ret = _regmap_raw_read(map, reg, val, val_len);
  428. mutex_unlock(&map->lock);
  429. return ret;
  430. }
  431. EXPORT_SYMBOL_GPL(regmap_raw_read);
  432. /**
  433. * regmap_bulk_read(): Read multiple registers from the device
  434. *
  435. * @map: Register map to write to
  436. * @reg: First register to be read from
  437. * @val: Pointer to store read value, in native register size for device
  438. * @val_count: Number of registers to read
  439. *
  440. * A value of zero will be returned on success, a negative errno will
  441. * be returned in error cases.
  442. */
  443. int regmap_bulk_read(struct regmap *map, unsigned int reg, void *val,
  444. size_t val_count)
  445. {
  446. int ret, i;
  447. size_t val_bytes = map->format.val_bytes;
  448. bool vol = true;
  449. if (!map->format.parse_val)
  450. return -EINVAL;
  451. /* Is this a block of volatile registers? */
  452. for (i = 0; i < val_count; i++)
  453. if (!regmap_volatile(map, reg + i))
  454. vol = false;
  455. if (vol || map->cache_type == REGCACHE_NONE) {
  456. ret = regmap_raw_read(map, reg, val, val_bytes * val_count);
  457. if (ret != 0)
  458. return ret;
  459. for (i = 0; i < val_count * val_bytes; i += val_bytes)
  460. map->format.parse_val(val + i);
  461. } else {
  462. for (i = 0; i < val_count; i++) {
  463. ret = regmap_read(map, reg + i, val + (i * val_bytes));
  464. if (ret != 0)
  465. return ret;
  466. }
  467. }
  468. return 0;
  469. }
  470. EXPORT_SYMBOL_GPL(regmap_bulk_read);
  471. /**
  472. * remap_update_bits: Perform a read/modify/write cycle on the register map
  473. *
  474. * @map: Register map to update
  475. * @reg: Register to update
  476. * @mask: Bitmask to change
  477. * @val: New value for bitmask
  478. *
  479. * Returns zero for success, a negative number on error.
  480. */
  481. int regmap_update_bits(struct regmap *map, unsigned int reg,
  482. unsigned int mask, unsigned int val)
  483. {
  484. int ret;
  485. unsigned int tmp;
  486. mutex_lock(&map->lock);
  487. ret = _regmap_read(map, reg, &tmp);
  488. if (ret != 0)
  489. goto out;
  490. tmp &= ~mask;
  491. tmp |= val & mask;
  492. ret = _regmap_write(map, reg, tmp);
  493. out:
  494. mutex_unlock(&map->lock);
  495. return ret;
  496. }
  497. EXPORT_SYMBOL_GPL(regmap_update_bits);
  498. static int __init regmap_initcall(void)
  499. {
  500. regmap_debugfs_initcall();
  501. return 0;
  502. }
  503. postcore_initcall(regmap_initcall);