88pm8607.c 17 KB

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  1. /*
  2. * Regulators driver for Marvell 88PM8607
  3. *
  4. * Copyright (C) 2009 Marvell International Ltd.
  5. * Haojian Zhuang <haojian.zhuang@marvell.com>
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License version 2 as
  9. * published by the Free Software Foundation.
  10. */
  11. #include <linux/kernel.h>
  12. #include <linux/init.h>
  13. #include <linux/err.h>
  14. #include <linux/i2c.h>
  15. #include <linux/platform_device.h>
  16. #include <linux/regulator/driver.h>
  17. #include <linux/regulator/machine.h>
  18. #include <linux/mfd/88pm860x.h>
  19. struct pm8607_regulator_info {
  20. struct regulator_desc desc;
  21. struct pm860x_chip *chip;
  22. struct regulator_dev *regulator;
  23. struct i2c_client *i2c;
  24. int min_uV;
  25. int max_uV;
  26. int step_uV;
  27. int vol_reg;
  28. int vol_shift;
  29. int vol_nbits;
  30. int update_reg;
  31. int update_bit;
  32. int enable_reg;
  33. int enable_bit;
  34. int slope_double;
  35. };
  36. static inline int check_range(struct pm8607_regulator_info *info,
  37. int min_uV, int max_uV)
  38. {
  39. if (max_uV < info->min_uV || min_uV > info->max_uV || min_uV > max_uV)
  40. return -EINVAL;
  41. return 0;
  42. }
  43. static int pm8607_list_voltage(struct regulator_dev *rdev, unsigned index)
  44. {
  45. struct pm8607_regulator_info *info = rdev_get_drvdata(rdev);
  46. uint8_t chip_id = info->chip->chip_version;
  47. int ret = -EINVAL;
  48. switch (info->desc.id) {
  49. case PM8607_ID_BUCK1:
  50. ret = (index < 0x1d) ? (index * 25000 + 800000) :
  51. ((index < 0x20) ? 1500000 :
  52. ((index < 0x40) ? ((index - 0x20) * 25000) :
  53. -EINVAL));
  54. break;
  55. case PM8607_ID_BUCK3:
  56. ret = (index < 0x3d) ? (index * 25000) :
  57. ((index < 0x40) ? 1500000 : -EINVAL);
  58. if (ret < 0)
  59. break;
  60. if (info->slope_double)
  61. ret <<= 1;
  62. break;
  63. case PM8607_ID_LDO1:
  64. ret = (index == 0) ? 1800000 :
  65. ((index == 1) ? 1200000 :
  66. ((index == 2) ? 2800000 : -EINVAL));
  67. break;
  68. case PM8607_ID_LDO5:
  69. ret = (index == 0) ? 2900000 :
  70. ((index == 1) ? 3000000 :
  71. ((index == 2) ? 3100000 : 3300000));
  72. break;
  73. case PM8607_ID_LDO7:
  74. case PM8607_ID_LDO8:
  75. ret = (index < 3) ? (index * 50000 + 1800000) :
  76. ((index < 8) ? (index * 50000 + 2550000) :
  77. -EINVAL);
  78. break;
  79. case PM8607_ID_LDO12:
  80. ret = (index < 2) ? (index * 100000 + 1800000) :
  81. ((index < 7) ? (index * 100000 + 2500000) :
  82. ((index == 7) ? 3300000 : 1200000));
  83. break;
  84. case PM8607_ID_LDO2:
  85. case PM8607_ID_LDO3:
  86. case PM8607_ID_LDO9:
  87. switch (chip_id) {
  88. case PM8607_CHIP_A0:
  89. case PM8607_CHIP_A1:
  90. ret = (index < 3) ? (index * 50000 + 1800000) :
  91. ((index < 8) ? (index * 50000 + 2550000) :
  92. -EINVAL);
  93. break;
  94. case PM8607_CHIP_B0:
  95. ret = (index < 3) ? (index * 50000 + 1800000) :
  96. ((index < 7) ? (index * 50000 + 2550000) :
  97. 3300000);
  98. break;
  99. }
  100. break;
  101. case PM8607_ID_LDO4:
  102. switch (chip_id) {
  103. case PM8607_CHIP_A0:
  104. case PM8607_CHIP_A1:
  105. ret = (index < 3) ? (index * 50000 + 1800000) :
  106. ((index < 8) ? (index * 50000 + 2550000) :
  107. -EINVAL);
  108. break;
  109. case PM8607_CHIP_B0:
  110. ret = (index < 3) ? (index * 50000 + 1800000) :
  111. ((index < 6) ? (index * 50000 + 2550000) :
  112. ((index == 6) ? 2900000 : 3300000));
  113. break;
  114. }
  115. break;
  116. case PM8607_ID_LDO6:
  117. switch (chip_id) {
  118. case PM8607_CHIP_A0:
  119. case PM8607_CHIP_A1:
  120. ret = (index < 3) ? (index * 50000 + 1800000) :
  121. ((index < 8) ? (index * 50000 + 2450000) :
  122. -EINVAL);
  123. break;
  124. case PM8607_CHIP_B0:
  125. ret = (index < 2) ? (index * 50000 + 1800000) :
  126. ((index < 7) ? (index * 50000 + 2500000) :
  127. 3300000);
  128. break;
  129. }
  130. break;
  131. case PM8607_ID_LDO10:
  132. switch (chip_id) {
  133. case PM8607_CHIP_A0:
  134. case PM8607_CHIP_A1:
  135. ret = (index < 3) ? (index * 50000 + 1800000) :
  136. ((index < 8) ? (index * 50000 + 2550000) :
  137. 1200000);
  138. break;
  139. case PM8607_CHIP_B0:
  140. ret = (index < 3) ? (index * 50000 + 1800000) :
  141. ((index < 7) ? (index * 50000 + 2550000) :
  142. ((index == 7) ? 3300000 : 1200000));
  143. break;
  144. }
  145. break;
  146. case PM8607_ID_LDO14:
  147. switch (chip_id) {
  148. case PM8607_CHIP_A0:
  149. case PM8607_CHIP_A1:
  150. ret = (index < 3) ? (index * 50000 + 1800000) :
  151. ((index < 8) ? (index * 50000 + 2550000) :
  152. -EINVAL);
  153. break;
  154. case PM8607_CHIP_B0:
  155. ret = (index < 2) ? (index * 50000 + 1800000) :
  156. ((index < 7) ? (index * 50000 + 2600000) :
  157. 3300000);
  158. break;
  159. }
  160. break;
  161. }
  162. return ret;
  163. }
  164. static int choose_voltage(struct regulator_dev *rdev, int min_uV, int max_uV)
  165. {
  166. struct pm8607_regulator_info *info = rdev_get_drvdata(rdev);
  167. uint8_t chip_id = info->chip->chip_version;
  168. int val = -ENOENT;
  169. int ret;
  170. switch (info->desc.id) {
  171. case PM8607_ID_BUCK1:
  172. if (min_uV >= 800000) /* 800mV ~ 1500mV / 25mV */
  173. val = (min_uV - 775001) / 25000;
  174. else { /* 25mV ~ 775mV / 25mV */
  175. val = (min_uV + 249999) / 25000;
  176. val += 32;
  177. }
  178. break;
  179. case PM8607_ID_BUCK3:
  180. if (info->slope_double)
  181. min_uV = min_uV >> 1;
  182. val = (min_uV + 249999) / 25000; /* 0mV ~ 1500mV / 25mV */
  183. break;
  184. case PM8607_ID_LDO1:
  185. if (min_uV > 1800000)
  186. val = 2;
  187. else if (min_uV > 1200000)
  188. val = 0;
  189. else
  190. val = 1;
  191. break;
  192. case PM8607_ID_LDO5:
  193. if (min_uV > 3100000)
  194. val = 3;
  195. else /* 2900mV ~ 3100mV / 100mV */
  196. val = (min_uV - 2800001) / 100000;
  197. break;
  198. case PM8607_ID_LDO7:
  199. case PM8607_ID_LDO8:
  200. if (min_uV < 2700000) { /* 1800mV ~ 1900mV / 50mV */
  201. if (min_uV <= 1800000)
  202. val = 0; /* 1800mv */
  203. else if (min_uV <= 1900000)
  204. val = (min_uV - 1750001) / 50000;
  205. else
  206. val = 3; /* 2700mV */
  207. } else { /* 2700mV ~ 2900mV / 50mV */
  208. if (min_uV <= 2900000) {
  209. val = (min_uV - 2650001) / 50000;
  210. val += 3;
  211. } else
  212. val = -EINVAL;
  213. }
  214. break;
  215. case PM8607_ID_LDO10:
  216. if (min_uV > 2850000)
  217. val = 7;
  218. else if (min_uV <= 1200000)
  219. val = 8;
  220. else if (min_uV < 2700000) /* 1800mV ~ 1900mV / 50mV */
  221. val = (min_uV - 1750001) / 50000;
  222. else { /* 2700mV ~ 2850mV / 50mV */
  223. val = (min_uV - 2650001) / 50000;
  224. val += 3;
  225. }
  226. break;
  227. case PM8607_ID_LDO12:
  228. if (min_uV < 2700000) { /* 1800mV ~ 1900mV / 100mV */
  229. if (min_uV <= 1200000)
  230. val = 8; /* 1200mV */
  231. else if (min_uV <= 1800000)
  232. val = 0; /* 1800mV */
  233. else if (min_uV <= 1900000)
  234. val = (min_uV - 1700001) / 100000;
  235. else
  236. val = 2; /* 2700mV */
  237. } else { /* 2700mV ~ 3100mV / 100mV */
  238. if (min_uV <= 3100000) {
  239. val = (min_uV - 2600001) / 100000;
  240. val += 2;
  241. } else if (min_uV <= 3300000)
  242. val = 7;
  243. else
  244. val = -EINVAL;
  245. }
  246. break;
  247. case PM8607_ID_LDO2:
  248. case PM8607_ID_LDO3:
  249. case PM8607_ID_LDO9:
  250. switch (chip_id) {
  251. case PM8607_CHIP_A0:
  252. case PM8607_CHIP_A1:
  253. if (min_uV < 2700000) /* 1800mV ~ 1900mV / 50mV */
  254. if (min_uV <= 1800000)
  255. val = 0;
  256. else if (min_uV <= 1900000)
  257. val = (min_uV - 1750001) / 50000;
  258. else
  259. val = 3; /* 2700mV */
  260. else { /* 2700mV ~ 2900mV / 50mV */
  261. if (min_uV <= 2900000) {
  262. val = (min_uV - 2650001) / 50000;
  263. val += 3;
  264. } else
  265. val = -EINVAL;
  266. }
  267. break;
  268. case PM8607_CHIP_B0:
  269. if (min_uV < 2700000) { /* 1800mV ~ 1900mV / 50mV */
  270. if (min_uV <= 1800000)
  271. val = 0;
  272. else if (min_uV <= 1900000)
  273. val = (min_uV - 1750001) / 50000;
  274. else
  275. val = 3; /* 2700mV */
  276. } else { /* 2700mV ~ 2850mV / 50mV */
  277. if (min_uV <= 2850000) {
  278. val = (min_uV - 2650001) / 50000;
  279. val += 3;
  280. } else if (min_uV <= 3300000)
  281. val = 7;
  282. else
  283. val = -EINVAL;
  284. }
  285. break;
  286. }
  287. break;
  288. case PM8607_ID_LDO4:
  289. switch (chip_id) {
  290. case PM8607_CHIP_A0:
  291. case PM8607_CHIP_A1:
  292. if (min_uV < 2700000) /* 1800mV ~ 1900mV / 50mV */
  293. if (min_uV <= 1800000)
  294. val = 0;
  295. else if (min_uV <= 1900000)
  296. val = (min_uV - 1750001) / 50000;
  297. else
  298. val = 3; /* 2700mV */
  299. else { /* 2700mV ~ 2900mV / 50mV */
  300. if (min_uV <= 2900000) {
  301. val = (min_uV - 2650001) / 50000;
  302. val += 3;
  303. } else
  304. val = -EINVAL;
  305. }
  306. break;
  307. case PM8607_CHIP_B0:
  308. if (min_uV < 2700000) { /* 1800mV ~ 1900mV / 50mV */
  309. if (min_uV <= 1800000)
  310. val = 0;
  311. else if (min_uV <= 1900000)
  312. val = (min_uV - 1750001) / 50000;
  313. else
  314. val = 3; /* 2700mV */
  315. } else { /* 2700mV ~ 2800mV / 50mV */
  316. if (min_uV <= 2850000) {
  317. val = (min_uV - 2650001) / 50000;
  318. val += 3;
  319. } else if (min_uV <= 2900000)
  320. val = 6;
  321. else if (min_uV <= 3300000)
  322. val = 7;
  323. else
  324. val = -EINVAL;
  325. }
  326. break;
  327. }
  328. break;
  329. case PM8607_ID_LDO6:
  330. switch (chip_id) {
  331. case PM8607_CHIP_A0:
  332. case PM8607_CHIP_A1:
  333. if (min_uV < 2600000) { /* 1800mV ~ 1900mV / 50mV */
  334. if (min_uV <= 1800000)
  335. val = 0;
  336. else if (min_uV <= 1900000)
  337. val = (min_uV - 1750001) / 50000;
  338. else
  339. val = 3; /* 2600mV */
  340. } else { /* 2600mV ~ 2800mV / 50mV */
  341. if (min_uV <= 2800000) {
  342. val = (min_uV - 2550001) / 50000;
  343. val += 3;
  344. } else
  345. val = -EINVAL;
  346. }
  347. break;
  348. case PM8607_CHIP_B0:
  349. if (min_uV < 2600000) { /* 1800mV ~ 1850mV / 50mV */
  350. if (min_uV <= 1800000)
  351. val = 0;
  352. else if (min_uV <= 1850000)
  353. val = (min_uV - 1750001) / 50000;
  354. else
  355. val = 2; /* 2600mV */
  356. } else { /* 2600mV ~ 2800mV / 50mV */
  357. if (min_uV <= 2800000) {
  358. val = (min_uV - 2550001) / 50000;
  359. val += 2;
  360. } else if (min_uV <= 3300000)
  361. val = 7;
  362. else
  363. val = -EINVAL;
  364. }
  365. break;
  366. }
  367. break;
  368. case PM8607_ID_LDO14:
  369. switch (chip_id) {
  370. case PM8607_CHIP_A0:
  371. case PM8607_CHIP_A1:
  372. if (min_uV < 2700000) { /* 1800mV ~ 1900mV / 50mV */
  373. if (min_uV <= 1800000)
  374. val = 0;
  375. else if (min_uV <= 1900000)
  376. val = (min_uV - 1750001) / 50000;
  377. else
  378. val = 3; /* 2700mV */
  379. } else { /* 2700mV ~ 2900mV / 50mV */
  380. if (min_uV <= 2900000) {
  381. val = (min_uV - 2650001) / 50000;
  382. val += 3;
  383. } else
  384. val = -EINVAL;
  385. }
  386. break;
  387. case PM8607_CHIP_B0:
  388. if (min_uV < 2700000) { /* 1800mV ~ 1850mV / 50mV */
  389. if (min_uV <= 1800000)
  390. val = 0;
  391. else if (min_uV <= 1850000)
  392. val = (min_uV - 1750001) / 50000;
  393. else
  394. val = 2; /* 2700mV */
  395. } else { /* 2700mV ~ 2900mV / 50mV */
  396. if (min_uV <= 2900000) {
  397. val = (min_uV - 2650001) / 50000;
  398. val += 2;
  399. } else if (min_uV <= 3300000)
  400. val = 7;
  401. else
  402. val = -EINVAL;
  403. }
  404. break;
  405. }
  406. break;
  407. }
  408. if (val >= 0) {
  409. ret = pm8607_list_voltage(rdev, val);
  410. if (ret > max_uV) {
  411. pr_err("exceed voltage range (%d %d) uV",
  412. min_uV, max_uV);
  413. return -EINVAL;
  414. }
  415. } else
  416. pr_err("invalid voltage range (%d %d) uV", min_uV, max_uV);
  417. return val;
  418. }
  419. static int pm8607_set_voltage(struct regulator_dev *rdev,
  420. int min_uV, int max_uV)
  421. {
  422. struct pm8607_regulator_info *info = rdev_get_drvdata(rdev);
  423. uint8_t val, mask;
  424. int ret;
  425. if (check_range(info, min_uV, max_uV)) {
  426. pr_err("invalid voltage range (%d, %d) uV\n", min_uV, max_uV);
  427. return -EINVAL;
  428. }
  429. ret = choose_voltage(rdev, min_uV, max_uV);
  430. if (ret < 0)
  431. return -EINVAL;
  432. val = (uint8_t)(ret << info->vol_shift);
  433. mask = ((1 << info->vol_nbits) - 1) << info->vol_shift;
  434. ret = pm860x_set_bits(info->i2c, info->vol_reg, mask, val);
  435. if (ret)
  436. return ret;
  437. switch (info->desc.id) {
  438. case PM8607_ID_BUCK1:
  439. case PM8607_ID_BUCK3:
  440. ret = pm860x_set_bits(info->i2c, info->update_reg,
  441. 1 << info->update_bit,
  442. 1 << info->update_bit);
  443. break;
  444. }
  445. return ret;
  446. }
  447. static int pm8607_get_voltage(struct regulator_dev *rdev)
  448. {
  449. struct pm8607_regulator_info *info = rdev_get_drvdata(rdev);
  450. uint8_t val, mask;
  451. int ret;
  452. ret = pm860x_reg_read(info->i2c, info->vol_reg);
  453. if (ret < 0)
  454. return ret;
  455. mask = ((1 << info->vol_nbits) - 1) << info->vol_shift;
  456. val = ((unsigned char)ret & mask) >> info->vol_shift;
  457. return pm8607_list_voltage(rdev, val);
  458. }
  459. static int pm8607_enable(struct regulator_dev *rdev)
  460. {
  461. struct pm8607_regulator_info *info = rdev_get_drvdata(rdev);
  462. return pm860x_set_bits(info->i2c, info->enable_reg,
  463. 1 << info->enable_bit,
  464. 1 << info->enable_bit);
  465. }
  466. static int pm8607_disable(struct regulator_dev *rdev)
  467. {
  468. struct pm8607_regulator_info *info = rdev_get_drvdata(rdev);
  469. return pm860x_set_bits(info->i2c, info->enable_reg,
  470. 1 << info->enable_bit, 0);
  471. }
  472. static int pm8607_is_enabled(struct regulator_dev *rdev)
  473. {
  474. struct pm8607_regulator_info *info = rdev_get_drvdata(rdev);
  475. int ret;
  476. ret = pm860x_reg_read(info->i2c, info->enable_reg);
  477. if (ret < 0)
  478. return ret;
  479. return !!((unsigned char)ret & (1 << info->enable_bit));
  480. }
  481. static struct regulator_ops pm8607_regulator_ops = {
  482. .set_voltage = pm8607_set_voltage,
  483. .get_voltage = pm8607_get_voltage,
  484. .enable = pm8607_enable,
  485. .disable = pm8607_disable,
  486. .is_enabled = pm8607_is_enabled,
  487. };
  488. #define PM8607_DVC(_id, min, max, step, vreg, nbits, ureg, ubit, ereg, ebit) \
  489. { \
  490. .desc = { \
  491. .name = "BUCK" #_id, \
  492. .ops = &pm8607_regulator_ops, \
  493. .type = REGULATOR_VOLTAGE, \
  494. .id = PM8607_ID_BUCK##_id, \
  495. .owner = THIS_MODULE, \
  496. }, \
  497. .min_uV = (min) * 1000, \
  498. .max_uV = (max) * 1000, \
  499. .step_uV = (step) * 1000, \
  500. .vol_reg = PM8607_##vreg, \
  501. .vol_shift = (0), \
  502. .vol_nbits = (nbits), \
  503. .update_reg = PM8607_##ureg, \
  504. .update_bit = (ubit), \
  505. .enable_reg = PM8607_##ereg, \
  506. .enable_bit = (ebit), \
  507. .slope_double = (0), \
  508. }
  509. #define PM8607_LDO(_id, min, max, step, vreg, shift, nbits, ereg, ebit) \
  510. { \
  511. .desc = { \
  512. .name = "LDO" #_id, \
  513. .ops = &pm8607_regulator_ops, \
  514. .type = REGULATOR_VOLTAGE, \
  515. .id = PM8607_ID_LDO##_id, \
  516. .owner = THIS_MODULE, \
  517. }, \
  518. .min_uV = (min) * 1000, \
  519. .max_uV = (max) * 1000, \
  520. .step_uV = (step) * 1000, \
  521. .vol_reg = PM8607_##vreg, \
  522. .vol_shift = (shift), \
  523. .vol_nbits = (nbits), \
  524. .enable_reg = PM8607_##ereg, \
  525. .enable_bit = (ebit), \
  526. .slope_double = (0), \
  527. }
  528. static struct pm8607_regulator_info pm8607_regulator_info[] = {
  529. PM8607_DVC(1, 0, 1500, 25, BUCK1, 6, GO, 0, SUPPLIES_EN11, 0),
  530. PM8607_DVC(3, 0, 1500, 25, BUCK3, 6, GO, 2, SUPPLIES_EN11, 2),
  531. PM8607_LDO(1 , 1200, 2800, 0, LDO1 , 0, 2, SUPPLIES_EN11, 3),
  532. PM8607_LDO(2 , 1800, 3300, 0, LDO2 , 0, 3, SUPPLIES_EN11, 4),
  533. PM8607_LDO(3 , 1800, 3300, 0, LDO3 , 0, 3, SUPPLIES_EN11, 5),
  534. PM8607_LDO(4 , 1800, 3300, 0, LDO4 , 0, 3, SUPPLIES_EN11, 6),
  535. PM8607_LDO(5 , 2900, 3300, 0, LDO5 , 0, 2, SUPPLIES_EN11, 7),
  536. PM8607_LDO(6 , 1800, 3300, 0, LDO6 , 0, 3, SUPPLIES_EN12, 0),
  537. PM8607_LDO(7 , 1800, 2900, 0, LDO7 , 0, 3, SUPPLIES_EN12, 1),
  538. PM8607_LDO(8 , 1800, 2900, 0, LDO8 , 0, 3, SUPPLIES_EN12, 2),
  539. PM8607_LDO(9 , 1800, 3300, 0, LDO9 , 0, 3, SUPPLIES_EN12, 3),
  540. PM8607_LDO(10, 1200, 3300, 0, LDO10, 0, 4, SUPPLIES_EN11, 4),
  541. PM8607_LDO(12, 1200, 3300, 0, LDO12, 0, 4, SUPPLIES_EN11, 5),
  542. PM8607_LDO(14, 1800, 3300, 0, LDO14, 0, 3, SUPPLIES_EN11, 6),
  543. };
  544. static inline struct pm8607_regulator_info *find_regulator_info(int id)
  545. {
  546. struct pm8607_regulator_info *info;
  547. int i;
  548. for (i = 0; i < ARRAY_SIZE(pm8607_regulator_info); i++) {
  549. info = &pm8607_regulator_info[i];
  550. if (info->desc.id == id)
  551. return info;
  552. }
  553. return NULL;
  554. }
  555. static int __devinit pm8607_regulator_probe(struct platform_device *pdev)
  556. {
  557. struct pm860x_chip *chip = dev_get_drvdata(pdev->dev.parent);
  558. struct pm860x_platform_data *pdata = chip->dev->platform_data;
  559. struct pm8607_regulator_info *info = NULL;
  560. info = find_regulator_info(pdev->id);
  561. if (info == NULL) {
  562. dev_err(&pdev->dev, "invalid regulator ID specified\n");
  563. return -EINVAL;
  564. }
  565. info->i2c = (chip->id == CHIP_PM8607) ? chip->client : chip->companion;
  566. info->chip = chip;
  567. info->regulator = regulator_register(&info->desc, &pdev->dev,
  568. pdata->regulator[pdev->id], info);
  569. if (IS_ERR(info->regulator)) {
  570. dev_err(&pdev->dev, "failed to register regulator %s\n",
  571. info->desc.name);
  572. return PTR_ERR(info->regulator);
  573. }
  574. /* check DVC ramp slope double */
  575. if (info->desc.id == PM8607_ID_BUCK3)
  576. if (info->chip->buck3_double)
  577. info->slope_double = 1;
  578. platform_set_drvdata(pdev, info);
  579. return 0;
  580. }
  581. static int __devexit pm8607_regulator_remove(struct platform_device *pdev)
  582. {
  583. struct pm8607_regulator_info *info = platform_get_drvdata(pdev);
  584. regulator_unregister(info->regulator);
  585. return 0;
  586. }
  587. #define PM8607_REGULATOR_DRIVER(_name) \
  588. { \
  589. .driver = { \
  590. .name = "88pm8607-" #_name, \
  591. .owner = THIS_MODULE, \
  592. }, \
  593. .probe = pm8607_regulator_probe, \
  594. .remove = __devexit_p(pm8607_regulator_remove), \
  595. }
  596. static struct platform_driver pm8607_regulator_driver[] = {
  597. PM8607_REGULATOR_DRIVER(buck1),
  598. PM8607_REGULATOR_DRIVER(buck2),
  599. PM8607_REGULATOR_DRIVER(buck3),
  600. PM8607_REGULATOR_DRIVER(ldo1),
  601. PM8607_REGULATOR_DRIVER(ldo2),
  602. PM8607_REGULATOR_DRIVER(ldo3),
  603. PM8607_REGULATOR_DRIVER(ldo4),
  604. PM8607_REGULATOR_DRIVER(ldo5),
  605. PM8607_REGULATOR_DRIVER(ldo6),
  606. PM8607_REGULATOR_DRIVER(ldo7),
  607. PM8607_REGULATOR_DRIVER(ldo8),
  608. PM8607_REGULATOR_DRIVER(ldo9),
  609. PM8607_REGULATOR_DRIVER(ldo10),
  610. PM8607_REGULATOR_DRIVER(ldo12),
  611. PM8607_REGULATOR_DRIVER(ldo14),
  612. };
  613. static int __init pm8607_regulator_init(void)
  614. {
  615. int i, count, ret;
  616. count = ARRAY_SIZE(pm8607_regulator_driver);
  617. for (i = 0; i < count; i++) {
  618. ret = platform_driver_register(&pm8607_regulator_driver[i]);
  619. if (ret != 0)
  620. pr_err("Failed to register regulator driver: %d\n",
  621. ret);
  622. }
  623. return 0;
  624. }
  625. subsys_initcall(pm8607_regulator_init);
  626. static void __exit pm8607_regulator_exit(void)
  627. {
  628. int i, count;
  629. count = ARRAY_SIZE(pm8607_regulator_driver);
  630. for (i = 0; i < count; i++)
  631. platform_driver_unregister(&pm8607_regulator_driver[i]);
  632. }
  633. module_exit(pm8607_regulator_exit);
  634. MODULE_LICENSE("GPL");
  635. MODULE_AUTHOR("Haojian Zhuang <haojian.zhuang@marvell.com>");
  636. MODULE_DESCRIPTION("Regulator Driver for Marvell 88PM8607 PMIC");
  637. MODULE_ALIAS("platform:88pm8607-regulator");