rt9467.c 21 KB

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  1. /* Copyright Statement:
  2. *
  3. * This software/firmware and related documentation ("MediaTek Software") are
  4. * protected under relevant copyright laws. The information contained herein
  5. * is confidential and proprietary to MediaTek Inc. and/or its licensors.
  6. * Without the prior written permission of MediaTek inc. and/or its licensors,
  7. * any reproduction, modification, use or disclosure of MediaTek Software,
  8. * and information contained herein, in whole or in part, shall be strictly prohibited.
  9. */
  10. /* MediaTek Inc. (C) 2015. All rights reserved.
  11. *
  12. * BY OPENING THIS FILE, RECEIVER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
  13. * THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
  14. * RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO RECEIVER ON
  15. * AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
  16. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
  17. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT.
  18. * NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
  19. * SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
  20. * SUPPLIED WITH THE MEDIATEK SOFTWARE, AND RECEIVER AGREES TO LOOK ONLY TO SUCH
  21. * THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO. RECEIVER EXPRESSLY ACKNOWLEDGES
  22. * THAT IT IS RECEIVER'S SOLE RESPONSIBILITY TO OBTAIN FROM ANY THIRD PARTY ALL PROPER LICENSES
  23. * CONTAINED IN MEDIATEK SOFTWARE. MEDIATEK SHALL ALSO NOT BE RESPONSIBLE FOR ANY MEDIATEK
  24. * SOFTWARE RELEASES MADE TO RECEIVER'S SPECIFICATION OR TO CONFORM TO A PARTICULAR
  25. * STANDARD OR OPEN FORUM. RECEIVER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S ENTIRE AND
  26. * CUMULATIVE LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE RELEASED HEREUNDER WILL BE,
  27. * AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE,
  28. * OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY RECEIVER TO
  29. * MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
  30. */
  31. #include <platform/mt_typedefs.h>
  32. #include <platform/mt_reg_base.h>
  33. #include <platform/errno.h>
  34. #include <platform/mt_i2c.h>
  35. #include <platform/mt_pmic.h>
  36. #include <platform/rt9467.h>
  37. #include <platform/mtk_charger_intf.h>
  38. #include <platform/mt_gpt.h>
  39. #include <printf.h>
  40. #include <string.h>
  41. #if !defined(CONFIG_POWER_EXT)
  42. #include <platform/upmu_common.h>
  43. #endif
  44. #define RT9467_LK_DRV_VERSION "1.0.5_MTK"
  45. /* ================= */
  46. /* Internal variable */
  47. /* ================= */
  48. struct rt9467_info {
  49. struct mtk_charger_info mchr_info;
  50. struct mt_i2c_t i2c;
  51. int i2c_log_level;
  52. unsigned int hidden_mode_cnt;
  53. };
  54. static const u8 rt9467_irq_maskall_data[] = {
  55. 0xF0, 0xF0, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF,
  56. };
  57. static const u8 rt9467_val_en_hidden_mode[] = {
  58. 0x49, 0x32, 0xB6, 0x27, 0x48, 0x18, 0x03, 0xE2,
  59. };
  60. enum rt9467_irq_idx {
  61. RT9467_IRQIDX_CHG_STATC = 0,
  62. RT9467_IRQIDX_CHG_FAULT,
  63. RT9467_IRQIDX_TS_STATC,
  64. RT9467_IRQIDX_CHG_IRQ1,
  65. RT9467_IRQIDX_CHG_IRQ2,
  66. RT9467_IRQIDX_CHG_IRQ3,
  67. RT9467_IRQIDX_DPDM_IRQ,
  68. RT9467_IRQIDX_MAX,
  69. };
  70. enum rt9467_charging_status {
  71. RT9467_CHG_STATUS_READY = 0,
  72. RT9467_CHG_STATUS_PROGRESS,
  73. RT9467_CHG_STATUS_DONE,
  74. RT9467_CHG_STATUS_FAULT,
  75. RT9467_CHG_STATUS_MAX,
  76. };
  77. /* Charging status name */
  78. static const char *rt9467_chg_status_name[RT9467_CHG_STATUS_MAX] = {
  79. "ready", "progress", "done", "fault",
  80. };
  81. /* ======================= */
  82. /* Address & Default value */
  83. /* ======================= */
  84. static const unsigned char rt9467_reg_addr[] = {
  85. RT9467_REG_CORE_CTRL0,
  86. RT9467_REG_CHG_CTRL1,
  87. RT9467_REG_CHG_CTRL2,
  88. RT9467_REG_CHG_CTRL3,
  89. RT9467_REG_CHG_CTRL4,
  90. RT9467_REG_CHG_CTRL5,
  91. RT9467_REG_CHG_CTRL6,
  92. RT9467_REG_CHG_CTRL7,
  93. RT9467_REG_CHG_CTRL8,
  94. RT9467_REG_CHG_CTRL9,
  95. RT9467_REG_CHG_CTRL10,
  96. RT9467_REG_CHG_CTRL11,
  97. RT9467_REG_CHG_CTRL12,
  98. RT9467_REG_CHG_CTRL13,
  99. RT9467_REG_CHG_CTRL14,
  100. RT9467_REG_CHG_CTRL15,
  101. RT9467_REG_CHG_CTRL16,
  102. RT9467_REG_CHG_ADC,
  103. RT9467_REG_CHG_DPDM1,
  104. RT9467_REG_CHG_DPDM2,
  105. RT9467_REG_CHG_DPDM3,
  106. RT9467_REG_CHG_CTRL19,
  107. RT9467_REG_CHG_CTRL17,
  108. RT9467_REG_CHG_CTRL18,
  109. RT9467_REG_DEVICE_ID,
  110. RT9467_REG_CHG_STAT,
  111. RT9467_REG_CHG_NTC,
  112. RT9467_REG_ADC_DATA_H,
  113. RT9467_REG_ADC_DATA_L,
  114. RT9467_REG_CHG_STATC,
  115. RT9467_REG_CHG_FAULT,
  116. RT9467_REG_TS_STATC,
  117. RT9467_REG_CHG_IRQ1,
  118. RT9467_REG_CHG_IRQ2,
  119. RT9467_REG_CHG_IRQ3,
  120. RT9467_REG_DPDM_IRQ,
  121. RT9467_REG_CHG_STATC_CTRL,
  122. RT9467_REG_CHG_FAULT_CTRL,
  123. RT9467_REG_TS_STATC_CTRL,
  124. RT9467_REG_CHG_IRQ1_CTRL,
  125. RT9467_REG_CHG_IRQ2_CTRL,
  126. RT9467_REG_CHG_IRQ3_CTRL,
  127. RT9467_REG_DPDM_IRQ_CTRL,
  128. };
  129. enum rt9467_iin_limit_sel {
  130. RT9467_IINLMTSEL_3_2A = 0,
  131. RT9467_IINLMTSEL_CHG_TYP,
  132. RT9467_IINLMTSEL_AICR,
  133. RT9467_IINLMTSEL_LOWER_LEVEL, /* lower of above three */
  134. };
  135. /* ========================= */
  136. /* I2C operations */
  137. /* ========================= */
  138. static int rt9467_i2c_write_byte(struct rt9467_info *info, u8 cmd, u8 data)
  139. {
  140. int ret = I2C_OK;
  141. unsigned char write_buf[2] = {cmd, data};
  142. struct mt_i2c_t *i2c = &info->i2c;
  143. ret = i2c_write(i2c, write_buf, 2);
  144. if (ret != I2C_OK)
  145. dprintf(CRITICAL,
  146. "%s: I2CW[0x%02X] = 0x%02X fail, code = %d\n",
  147. __func__, cmd, data, ret);
  148. else
  149. dprintf(info->i2c_log_level, "%s: I2CW[0x%02X] = 0x%02X\n",
  150. __func__, cmd, data);
  151. return ret;
  152. }
  153. static int rt9467_i2c_read_byte(struct rt9467_info *info, u8 cmd, u8 *data)
  154. {
  155. int ret = I2C_OK;
  156. u8 ret_data = cmd;
  157. struct mt_i2c_t *i2c = &info->i2c;
  158. ret = i2c_write_read(i2c, &ret_data, 1, 1);
  159. if (ret != I2C_OK)
  160. dprintf(CRITICAL, "%s: I2CR[0x%02X] fail, code = %d\n",
  161. __func__, cmd, ret);
  162. else {
  163. dprintf(info->i2c_log_level, "%s: I2CR[0x%02X] = 0x%02X\n",
  164. __func__, cmd, ret_data);
  165. *data = ret_data;
  166. }
  167. return ret;
  168. }
  169. static int rt9467_i2c_block_write(struct rt9467_info *info, u8 cmd, int len,
  170. const u8 *data)
  171. {
  172. unsigned char write_buf[len + 1];
  173. struct mt_i2c_t *i2c = &info->i2c;
  174. write_buf[0] = cmd;
  175. memcpy(&write_buf[1], data, len);
  176. return i2c_write(i2c, write_buf, len + 1);
  177. }
  178. static int rt9467_i2c_block_read(struct rt9467_info *info, u8 cmd, int len,
  179. u8 *data)
  180. {
  181. struct mt_i2c_t *i2c = &info->i2c;
  182. data[0] = cmd;
  183. return i2c_write_read(i2c, data, 1, len);
  184. }
  185. static int rt9467_i2c_test_bit(struct rt9467_info *info, u8 cmd, u8 shift,
  186. bool *is_one)
  187. {
  188. int ret = 0;
  189. u8 data = 0;
  190. ret = rt9467_i2c_read_byte(info, cmd, &data);
  191. if (ret != I2C_OK) {
  192. *is_one = false;
  193. return ret;
  194. }
  195. data &= (1 << shift);
  196. *is_one = (data == 0 ? false : true);
  197. return ret;
  198. }
  199. static int rt9467_i2c_update_bits(struct rt9467_info *info, u8 cmd, u8 data,
  200. u8 mask)
  201. {
  202. int ret = 0;
  203. u8 reg_data = 0;
  204. ret = rt9467_i2c_read_byte(info, cmd, &reg_data);
  205. if (ret != I2C_OK)
  206. return ret;
  207. reg_data = reg_data & 0xFF;
  208. reg_data &= ~mask;
  209. reg_data |= (data & mask);
  210. return rt9467_i2c_write_byte(info, cmd, reg_data);
  211. }
  212. static inline int rt9467_set_bit(struct rt9467_info *info, u8 reg, u8 mask)
  213. {
  214. return rt9467_i2c_update_bits(info, reg, mask, mask);
  215. }
  216. static inline int rt9467_clr_bit(struct rt9467_info *info, u8 reg, u8 mask)
  217. {
  218. return rt9467_i2c_update_bits(info, reg, 0x00, mask);
  219. }
  220. /* ================== */
  221. /* internal functions */
  222. /* ================== */
  223. static int rt_charger_set_ichg(struct mtk_charger_info *mchr_info, u32 ichg);
  224. static int rt_charger_set_aicr(struct mtk_charger_info *mchr_info, u32 aicr);
  225. static int rt_charger_set_mivr(struct mtk_charger_info *mchr_info, u32 mivr);
  226. static int rt_charger_get_ichg(struct mtk_charger_info *mchr_info, u32 *ichg);
  227. static int rt_charger_get_aicr(struct mtk_charger_info *mchr_info, u32 *aicr);
  228. static inline u8 rt9467_closest_reg(u32 min, u32 max, u32 step, u32 target)
  229. {
  230. /* Should not happen... */
  231. if (step == 0) {
  232. dprintf(CRITICAL, "%s: step = 0\n", __func__);
  233. return 0;
  234. }
  235. /* Smaller than minimum supported value, use minimum one */
  236. if (target < min)
  237. return 0;
  238. /* Greater than maximum supported value, use maximum one */
  239. if (target >= max)
  240. return (max - min) / step;
  241. return (target - min) / step;
  242. }
  243. static inline u8 rt9467_closest_reg_value_via_tbl(const u32 *tbl, u32 tbl_size,
  244. u32 target)
  245. {
  246. u32 i = 0;
  247. /* Smaller than minimum supported value, use minimum one */
  248. if (target < tbl[0])
  249. return 0;
  250. for (i = 0; i < tbl_size - 1; i++) {
  251. if (target >= tbl[i] && target < tbl[i + 1])
  252. return i;
  253. }
  254. /* Greater than maximum supported value, use maximum one */
  255. return tbl_size - 1;
  256. }
  257. static inline u32 rt9467_closest_value(u32 min, u32 max, u32 step, u8 reg_val)
  258. {
  259. u32 ret_val = 0;
  260. ret_val = min + reg_val * step;
  261. if (ret_val > max)
  262. ret_val = max;
  263. return ret_val;
  264. }
  265. static int rt9467_enable_hidden_mode(struct rt9467_info *info, bool en)
  266. {
  267. int ret = 0;
  268. if (en) {
  269. if (info->hidden_mode_cnt == 0) {
  270. ret = rt9467_i2c_block_write(info, 0x70,
  271. ARRAY_SIZE(rt9467_val_en_hidden_mode),
  272. rt9467_val_en_hidden_mode);
  273. if (ret < 0)
  274. goto err;
  275. }
  276. info->hidden_mode_cnt++;
  277. } else {
  278. if (info->hidden_mode_cnt == 1) /* last one */
  279. ret = rt9467_i2c_write_byte(info, 0x70, 0x00);
  280. info->hidden_mode_cnt--;
  281. if (ret < 0)
  282. goto err;
  283. }
  284. dprintf(CRITICAL, "%s: en = %d\n", __func__, en);
  285. goto out;
  286. err:
  287. dprintf(CRITICAL, "%s: en = %d fail(%d)\n", __func__, en, ret);
  288. out:
  289. return ret;
  290. }
  291. static int rt9467_enable_ilim(struct rt9467_info *info, bool en)
  292. {
  293. dprintf(CRITICAL, "%s: en = %d\n", __func__, en);
  294. return (en ? rt9467_set_bit : rt9467_clr_bit)
  295. (info, RT9467_REG_CHG_CTRL3, RT9467_MASK_ILIM_EN);
  296. }
  297. static int rt9467_select_input_current_limit(struct rt9467_info *info,
  298. enum rt9467_iin_limit_sel sel)
  299. {
  300. dprintf(CRITICAL, "%s: sel = %d\n", __func__, sel);
  301. return rt9467_i2c_update_bits(info, RT9467_REG_CHG_CTRL2,
  302. sel << RT9467_SHIFT_IINLMTSEL, RT9467_MASK_IINLMTSEL);
  303. }
  304. static bool rt9467_is_hw_exist(struct rt9467_info *info)
  305. {
  306. int ret = 0;
  307. u8 device_id = 0, vendor_id = 0, chip_rev = 0;
  308. ret = rt9467_i2c_read_byte(info, RT9467_REG_DEVICE_ID, &device_id);
  309. if (ret != I2C_OK)
  310. return false;
  311. vendor_id = device_id & 0xF0;
  312. chip_rev = device_id & 0x0F;
  313. if (vendor_id != RT9467_VENDOR_ID) {
  314. dprintf(CRITICAL, "%s: vendor id is incorrect (0x%02X)\n",
  315. __func__, vendor_id);
  316. return false;
  317. }
  318. dprintf(CRITICAL, "%s: chip rev(E%d,0x%02X)\n", __func__, chip_rev,
  319. chip_rev);
  320. info->mchr_info.device_id = chip_rev;
  321. return true;
  322. }
  323. /* Set register's value to default */
  324. static int rt9467_reset_chip(struct rt9467_info *info)
  325. {
  326. int ret = 0;
  327. dprintf(CRITICAL, "%s\n", __func__);
  328. /* Disable HZ before reset */
  329. ret = rt9467_clr_bit(info, RT9467_REG_CHG_CTRL1, RT9467_MASK_HZ_EN);
  330. if (ret < 0)
  331. dprintf(CRITICAL, "%s: disable hz fail\n", __func__);
  332. return rt9467_set_bit(info, RT9467_REG_CORE_CTRL0, RT9467_MASK_RST);
  333. }
  334. static int rt9467_set_battery_voreg(struct rt9467_info *info, u32 voreg)
  335. {
  336. u8 reg_voreg = 0;
  337. reg_voreg = rt9467_closest_reg(RT9467_BAT_VOREG_MIN,
  338. RT9467_BAT_VOREG_MAX, RT9467_BAT_VOREG_STEP, voreg);
  339. dprintf(CRITICAL, "%s: bat voreg = %d\n", __func__, voreg);
  340. return rt9467_i2c_update_bits(info, RT9467_REG_CHG_CTRL4,
  341. reg_voreg << RT9467_SHIFT_BAT_VOREG, RT9467_MASK_BAT_VOREG);
  342. }
  343. static int rt9467_mask_all_irq(struct rt9467_info *info)
  344. {
  345. return rt9467_i2c_block_write(info, RT9467_REG_CHG_STATC_CTRL,
  346. ARRAY_SIZE(rt9467_irq_maskall_data), rt9467_irq_maskall_data);
  347. }
  348. static int rt9467_enable_watchdog_timer(struct rt9467_info *info, bool en)
  349. {
  350. dprintf(CRITICAL, "%s\n", __func__);
  351. return (en ? rt9467_set_bit : rt9467_clr_bit)
  352. (info, RT9467_REG_CHG_CTRL13, RT9467_MASK_WDT_EN);
  353. }
  354. static int rt9467_init_setting(struct rt9467_info *info)
  355. {
  356. int ret = 0;
  357. u8 evt[RT9467_IRQIDX_MAX] = {0};
  358. dprintf(CRITICAL, "%s\n", __func__);
  359. /* Mask all IRQs */
  360. ret = rt9467_mask_all_irq(info);
  361. if (ret != I2C_OK)
  362. dprintf(CRITICAL, "%s: mask all irq fail\n", __func__);
  363. /* Clr evt, skip CHG_IRQ3 */
  364. ret = rt9467_i2c_block_read(info, RT9467_REG_CHG_STATC, 5, evt);
  365. if (ret != I2C_OK)
  366. dprintf(CRITICAL, "%s: read irq1 fail\n", __func__);
  367. ret = rt9467_i2c_block_read(info, RT9467_REG_DPDM_IRQ_CTRL, 1, &evt[6]);
  368. if (ret != I2C_OK)
  369. dprintf(CRITICAL, "%s: read irq2 fail\n", __func__);
  370. /* Select input current limit to referenced from AICR */
  371. ret = rt9467_select_input_current_limit(info, RT9467_IINLMTSEL_AICR);
  372. if (ret < 0)
  373. dprintf(CRITICAL, "%s: select input current limit fail\n",
  374. __func__);
  375. mdelay(150);
  376. /* Disable HW iinlimit, use SW */
  377. ret = rt9467_enable_ilim(info, false);
  378. if (ret < 0)
  379. dprintf(CRITICAL, "%s: disable ilim fail\n", __func__);
  380. ret = rt_charger_set_ichg(&info->mchr_info, 2000);
  381. if (ret < 0)
  382. dprintf(CRITICAL, "%s: set ichg fail\n", __func__);
  383. ret = rt_charger_set_aicr(&info->mchr_info, 500);
  384. if (ret < 0)
  385. dprintf(CRITICAL, "%s: set aicr fail\n", __func__);
  386. ret = rt_charger_set_mivr(&info->mchr_info, 4500);
  387. if (ret < 0)
  388. dprintf(CRITICAL, "%s: set mivr fail\n", __func__);
  389. ret = rt9467_set_battery_voreg(info, 4350);
  390. if (ret < 0)
  391. dprintf(CRITICAL, "%s: set cv fail\n", __func__);
  392. ret = rt9467_enable_watchdog_timer(info, true);
  393. if (ret < 0)
  394. dprintf(CRITICAL, "%s: enable wdt fail\n",__func__);
  395. return ret;
  396. }
  397. static int rt9467_get_charging_status(struct rt9467_info *info,
  398. enum rt9467_charging_status *chg_stat)
  399. {
  400. int ret = 0;
  401. u8 data = 0;
  402. ret = rt9467_i2c_read_byte(info, RT9467_REG_CHG_STAT, &data);
  403. if (ret != I2C_OK)
  404. return ret;
  405. *chg_stat = (data & RT9467_MASK_CHG_STAT) >> RT9467_SHIFT_CHG_STAT;
  406. return ret;
  407. }
  408. static int rt9467_get_mivr(struct rt9467_info *info, u32 *mivr)
  409. {
  410. int ret = 0;
  411. u8 reg_mivr = 0;
  412. u8 data = 0;
  413. ret = rt9467_i2c_read_byte(info, RT9467_REG_CHG_CTRL6, &data);
  414. if (ret != I2C_OK)
  415. return ret;
  416. reg_mivr = ((data & RT9467_MASK_MIVR) >> RT9467_SHIFT_MIVR) & 0xFF;
  417. *mivr = rt9467_closest_value(RT9467_MIVR_MIN, RT9467_MIVR_MAX,
  418. RT9467_MIVR_STEP, reg_mivr);
  419. return ret;
  420. }
  421. static int rt9467_is_charging_enable(struct rt9467_info *info, bool *en)
  422. {
  423. return rt9467_i2c_test_bit(info, RT9467_REG_CHG_CTRL2,
  424. RT9467_SHIFT_CHG_EN, en);
  425. }
  426. static int rt9467_get_ieoc(struct rt9467_info *info, u32 *ieoc)
  427. {
  428. int ret = 0;
  429. u8 reg_ieoc = 0;
  430. u8 data = 0;
  431. ret = rt9467_i2c_read_byte(info, RT9467_REG_CHG_CTRL9, &data);
  432. if (ret != I2C_OK)
  433. return ret;
  434. reg_ieoc = (data & RT9467_MASK_IEOC) >> RT9467_SHIFT_IEOC;
  435. *ieoc = rt9467_closest_value(RT9467_IEOC_MIN, RT9467_IEOC_MAX,
  436. RT9467_IEOC_STEP, reg_ieoc);
  437. return ret;
  438. }
  439. /* =========================================================== */
  440. /* The following is implementation for interface of rt_charger */
  441. /* =========================================================== */
  442. static int rt_charger_dump_register(struct mtk_charger_info *mchr_info)
  443. {
  444. int ret = 0;
  445. u32 i = 0, ichg = 0, aicr = 0, mivr = 0, ieoc = 0;
  446. bool chg_enable = 0;
  447. enum rt9467_charging_status chg_status = RT9467_CHG_STATUS_READY;
  448. struct rt9467_info *info = (struct rt9467_info *)mchr_info;
  449. u8 data = 0;
  450. ret = rt9467_get_charging_status(info, &chg_status);
  451. if (chg_status == RT9467_CHG_STATUS_FAULT) {
  452. info->i2c_log_level = CRITICAL;
  453. for (i = 0; i < ARRAY_SIZE(rt9467_reg_addr); i++)
  454. ret = rt9467_i2c_read_byte(info, rt9467_reg_addr[i],
  455. &data);
  456. } else
  457. info->i2c_log_level = INFO;
  458. ret = rt_charger_get_ichg(mchr_info, &ichg);
  459. ret = rt9467_get_mivr(info, &mivr);
  460. ret = rt_charger_get_aicr(mchr_info, &aicr);
  461. ret = rt9467_get_ieoc(info, &ieoc);
  462. ret = rt9467_is_charging_enable(info, &chg_enable);
  463. dprintf(CRITICAL,
  464. "%s: ICHG = %dmA, AICR = %dmA, MIVR = %dmV, IEOC = %dmA\n",
  465. __func__, ichg, aicr, mivr, ieoc);
  466. dprintf(CRITICAL, "%s: CHG_EN = %d, CHG_STATUS = %s\n",
  467. __func__, chg_enable, rt9467_chg_status_name[chg_status]);
  468. return ret;
  469. }
  470. static int rt_charger_enable_charging(struct mtk_charger_info *mchr_info,
  471. bool en)
  472. {
  473. struct rt9467_info *info = (struct rt9467_info *)mchr_info;
  474. dprintf(CRITICAL, "%s: en = %d\n", __func__, en);
  475. return (en ? rt9467_set_bit : rt9467_clr_bit)
  476. (info, RT9467_REG_CHG_CTRL2, RT9467_MASK_CHG_EN);
  477. }
  478. static int rt_charger_enable_power_path(struct mtk_charger_info *mchr_info,
  479. bool en)
  480. {
  481. struct rt9467_info *info = (struct rt9467_info *)mchr_info;
  482. u32 mivr = en ? 4500 : RT9467_MIVR_MAX;
  483. dprintf(CRITICAL, "%s: en = %d\n", __func__, en);
  484. return rt_charger_set_mivr(&info->mchr_info, mivr);
  485. }
  486. static int rt_charger_set_ichg(struct mtk_charger_info *mchr_info, u32 ichg)
  487. {
  488. struct rt9467_info *info = (struct rt9467_info *)mchr_info;
  489. /* Find corresponding reg value */
  490. u8 reg_ichg = rt9467_closest_reg(RT9467_ICHG_MIN, RT9467_ICHG_MAX,
  491. RT9467_ICHG_STEP, ichg);
  492. dprintf(CRITICAL, "%s: ichg = %d\n", __func__, ichg);
  493. return rt9467_i2c_update_bits(info, RT9467_REG_CHG_CTRL7,
  494. reg_ichg << RT9467_SHIFT_ICHG, RT9467_MASK_ICHG);
  495. }
  496. static int rt_charger_set_aicr(struct mtk_charger_info *mchr_info, u32 aicr)
  497. {
  498. struct rt9467_info *info = (struct rt9467_info *)mchr_info;
  499. /* Find corresponding reg value */
  500. u8 reg_aicr = rt9467_closest_reg(RT9467_AICR_MIN, RT9467_AICR_MAX,
  501. RT9467_AICR_STEP, aicr);
  502. dprintf(CRITICAL, "%s: aicr = %d\n", __func__, aicr);
  503. return rt9467_i2c_update_bits(info, RT9467_REG_CHG_CTRL3,
  504. reg_aicr << RT9467_SHIFT_AICR, RT9467_MASK_AICR);
  505. }
  506. static int rt_charger_set_mivr(struct mtk_charger_info *mchr_info, u32 mivr)
  507. {
  508. struct rt9467_info *info = (struct rt9467_info *)mchr_info;
  509. /* Find corresponding reg value */
  510. u8 reg_mivr = rt9467_closest_reg(RT9467_MIVR_MIN, RT9467_MIVR_MAX,
  511. RT9467_MIVR_STEP, mivr);
  512. dprintf(CRITICAL, "%s: mivr = %d\n", __func__, mivr);
  513. return rt9467_i2c_update_bits(info, RT9467_REG_CHG_CTRL6,
  514. reg_mivr << RT9467_SHIFT_MIVR, RT9467_MASK_MIVR);
  515. }
  516. static int rt_charger_get_ichg(struct mtk_charger_info *mchr_info, u32 *ichg)
  517. {
  518. int ret = 0;
  519. u8 reg_ichg = 0;
  520. struct rt9467_info *info = (struct rt9467_info *)mchr_info;
  521. u8 data = 0;
  522. ret = rt9467_i2c_read_byte(info, RT9467_REG_CHG_CTRL7, &data);
  523. if (ret != I2C_OK)
  524. return ret;
  525. reg_ichg = (data & RT9467_MASK_ICHG) >> RT9467_SHIFT_ICHG;
  526. *ichg = rt9467_closest_value(RT9467_ICHG_MIN, RT9467_ICHG_MAX,
  527. RT9467_ICHG_STEP, reg_ichg);
  528. return ret;
  529. }
  530. static int rt_charger_get_aicr(struct mtk_charger_info *mchr_info, u32 *aicr)
  531. {
  532. int ret = 0;
  533. u8 reg_aicr = 0;
  534. struct rt9467_info *info = (struct rt9467_info *)mchr_info;
  535. u8 data = 0;
  536. ret = rt9467_i2c_read_byte(info, RT9467_REG_CHG_CTRL3, &data);
  537. if (ret != I2C_OK)
  538. return ret;
  539. reg_aicr = (data & RT9467_MASK_AICR) >> RT9467_SHIFT_AICR;
  540. *aicr = rt9467_closest_value(RT9467_AICR_MIN, RT9467_AICR_MAX,
  541. RT9467_AICR_STEP, reg_aicr);
  542. return ret;
  543. }
  544. static int rt_charger_reset_pumpx(struct mtk_charger_info *mchr_info,
  545. bool reset)
  546. {
  547. int ret = 0;
  548. u32 aicr = 0;
  549. struct rt9467_info *info = (struct rt9467_info *)mchr_info;
  550. rt9467_enable_hidden_mode(info, true);
  551. ret = (reset ? rt9467_clr_bit : rt9467_set_bit)(info, 0x28, 0x80);
  552. if (ret < 0)
  553. dprintf(CRITICAL, "%s: set psk mode fail(%d)\n", __func__, ret);
  554. aicr = (reset ? 100 : 500);
  555. ret = rt_charger_set_aicr(mchr_info, aicr);
  556. rt9467_enable_hidden_mode(info, false);
  557. return ret;
  558. }
  559. /*
  560. * Workaround to disable IRQ and WDT
  561. * In case that calling this function before charger is init,
  562. * use global info
  563. */
  564. static int rt_charger_sw_reset(struct mtk_charger_info *mchr_info)
  565. {
  566. int ret = 0;
  567. u8 evt[RT9467_IRQIDX_MAX] = {0};
  568. struct rt9467_info *info = (struct rt9467_info *)mchr_info;
  569. dprintf(CRITICAL, "%s: starts\n", __func__);
  570. /* Mask all IRQs */
  571. ret = rt9467_mask_all_irq(info);
  572. if (ret != I2C_OK)
  573. dprintf(CRITICAL, "%s: mask all irq fail\n", __func__);
  574. /* Clr evt, skip CHG_IRQ3 */
  575. ret = rt9467_i2c_block_read(info, RT9467_REG_CHG_STATC, 5, evt);
  576. if (ret != I2C_OK)
  577. dprintf(CRITICAL, "%s: read irq1 fail\n", __func__);
  578. ret = rt9467_i2c_block_read(info, RT9467_REG_DPDM_IRQ_CTRL, 1, &evt[6]);
  579. if (ret != I2C_OK)
  580. dprintf(CRITICAL, "%s: read irq2 fail\n", __func__);
  581. /* Disable WDT */
  582. ret = rt9467_enable_watchdog_timer(info, false);
  583. if (ret != I2C_OK)
  584. dprintf(CRITICAL, "%s: disable wdt fail\n", __func__);
  585. return ret;
  586. }
  587. static struct mtk_charger_ops rt9467_mchr_ops = {
  588. .dump_register = rt_charger_dump_register,
  589. .enable_charging = rt_charger_enable_charging,
  590. .get_ichg = rt_charger_get_ichg,
  591. .set_ichg = rt_charger_set_ichg,
  592. .set_aicr = rt_charger_set_aicr,
  593. .set_mivr = rt_charger_set_mivr,
  594. .enable_power_path = rt_charger_enable_power_path,
  595. .get_aicr = rt_charger_get_aicr,
  596. .reset_pumpx = rt_charger_reset_pumpx,
  597. .sw_reset = rt_charger_sw_reset,
  598. };
  599. /* Info of primary charger */
  600. static struct rt9467_info g_rt9467_info = {
  601. .mchr_info = {
  602. .name = "primary_charger",
  603. .alias_name = "rt9467",
  604. .device_id = -1,
  605. .mchr_ops = &rt9467_mchr_ops,
  606. },
  607. .i2c = {
  608. .id = I2C1,
  609. .addr = RT9467_SLAVE_ADDR,
  610. .mode = ST_MODE,
  611. .speed = 100,
  612. },
  613. .i2c_log_level = INFO,
  614. .hidden_mode_cnt = 0,
  615. };
  616. int rt9467_probe(void)
  617. {
  618. int ret = 0;
  619. /* Check primary charger */
  620. if (rt9467_is_hw_exist(&g_rt9467_info)) {
  621. ret = rt9467_reset_chip(&g_rt9467_info);
  622. ret = rt9467_init_setting(&g_rt9467_info);
  623. mtk_charger_set_info(&(g_rt9467_info.mchr_info));
  624. dprintf(CRITICAL, "%s: %s\n", __func__, RT9467_LK_DRV_VERSION);
  625. }
  626. return ret;
  627. }
  628. /*
  629. * Revision Note
  630. * 1.0.5
  631. * (1) Add i2c_block_read
  632. * (2) Disable HZ before reset chip
  633. *
  634. * 1.0.4
  635. * (1) Enable/Disable spk mode for reset PE+
  636. *
  637. * 1.0.3
  638. * (1) Modify rt9467_is_hw_exist, check vendor id and revision id separately
  639. * (2) Set MIVR to highest value as disabling power path
  640. * (3) Update irq mask data
  641. *
  642. * 1.0.2
  643. * (1) Support E4 chip
  644. * (2) Release sw reset interface
  645. */