da7280.c 34 KB

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  1. // SPDX-License-Identifier: GPL-2.0+
  2. /*
  3. * DA7280 Haptic device driver
  4. *
  5. * Copyright (c) 2020 Dialog Semiconductor.
  6. * Author: Roy Im <[email protected]>
  7. */
  8. #include <linux/bitfield.h>
  9. #include <linux/bitops.h>
  10. #include <linux/err.h>
  11. #include <linux/i2c.h>
  12. #include <linux/input.h>
  13. #include <linux/interrupt.h>
  14. #include <linux/module.h>
  15. #include <linux/pwm.h>
  16. #include <linux/regmap.h>
  17. #include <linux/workqueue.h>
  18. #include <linux/uaccess.h>
  19. /* Registers */
  20. #define DA7280_IRQ_EVENT1 0x03
  21. #define DA7280_IRQ_EVENT_WARNING_DIAG 0x04
  22. #define DA7280_IRQ_EVENT_SEQ_DIAG 0x05
  23. #define DA7280_IRQ_STATUS1 0x06
  24. #define DA7280_IRQ_MASK1 0x07
  25. #define DA7280_FRQ_LRA_PER_H 0x0A
  26. #define DA7280_FRQ_LRA_PER_L 0x0B
  27. #define DA7280_ACTUATOR1 0x0C
  28. #define DA7280_ACTUATOR2 0x0D
  29. #define DA7280_ACTUATOR3 0x0E
  30. #define DA7280_CALIB_V2I_H 0x0F
  31. #define DA7280_CALIB_V2I_L 0x10
  32. #define DA7280_TOP_CFG1 0x13
  33. #define DA7280_TOP_CFG2 0x14
  34. #define DA7280_TOP_CFG4 0x16
  35. #define DA7280_TOP_INT_CFG1 0x17
  36. #define DA7280_TOP_CTL1 0x22
  37. #define DA7280_TOP_CTL2 0x23
  38. #define DA7280_SEQ_CTL2 0x28
  39. #define DA7280_GPI_0_CTL 0x29
  40. #define DA7280_GPI_1_CTL 0x2A
  41. #define DA7280_GPI_2_CTL 0x2B
  42. #define DA7280_MEM_CTL1 0x2C
  43. #define DA7280_MEM_CTL2 0x2D
  44. #define DA7280_TOP_CFG5 0x6E
  45. #define DA7280_IRQ_MASK2 0x83
  46. #define DA7280_SNP_MEM_99 0xE7
  47. /* Register field */
  48. /* DA7280_IRQ_EVENT1 (Address 0x03) */
  49. #define DA7280_E_SEQ_CONTINUE_MASK BIT(0)
  50. #define DA7280_E_UVLO_MASK BIT(1)
  51. #define DA7280_E_SEQ_DONE_MASK BIT(2)
  52. #define DA7280_E_OVERTEMP_CRIT_MASK BIT(3)
  53. #define DA7280_E_SEQ_FAULT_MASK BIT(4)
  54. #define DA7280_E_WARNING_MASK BIT(5)
  55. #define DA7280_E_ACTUATOR_FAULT_MASK BIT(6)
  56. #define DA7280_E_OC_FAULT_MASK BIT(7)
  57. /* DA7280_IRQ_EVENT_WARNING_DIAG (Address 0x04) */
  58. #define DA7280_E_OVERTEMP_WARN_MASK BIT(3)
  59. #define DA7280_E_MEM_TYPE_MASK BIT(4)
  60. #define DA7280_E_LIM_DRIVE_ACC_MASK BIT(6)
  61. #define DA7280_E_LIM_DRIVE_MASK BIT(7)
  62. /* DA7280_IRQ_EVENT_PAT_DIAG (Address 0x05) */
  63. #define DA7280_E_PWM_FAULT_MASK BIT(5)
  64. #define DA7280_E_MEM_FAULT_MASK BIT(6)
  65. #define DA7280_E_SEQ_ID_FAULT_MASK BIT(7)
  66. /* DA7280_IRQ_STATUS1 (Address 0x06) */
  67. #define DA7280_STA_SEQ_CONTINUE_MASK BIT(0)
  68. #define DA7280_STA_UVLO_VBAT_OK_MASK BIT(1)
  69. #define DA7280_STA_SEQ_DONE_MASK BIT(2)
  70. #define DA7280_STA_OVERTEMP_CRIT_MASK BIT(3)
  71. #define DA7280_STA_SEQ_FAULT_MASK BIT(4)
  72. #define DA7280_STA_WARNING_MASK BIT(5)
  73. #define DA7280_STA_ACTUATOR_MASK BIT(6)
  74. #define DA7280_STA_OC_MASK BIT(7)
  75. /* DA7280_IRQ_MASK1 (Address 0x07) */
  76. #define DA7280_SEQ_CONTINUE_M_MASK BIT(0)
  77. #define DA7280_E_UVLO_M_MASK BIT(1)
  78. #define DA7280_SEQ_DONE_M_MASK BIT(2)
  79. #define DA7280_OVERTEMP_CRIT_M_MASK BIT(3)
  80. #define DA7280_SEQ_FAULT_M_MASK BIT(4)
  81. #define DA7280_WARNING_M_MASK BIT(5)
  82. #define DA7280_ACTUATOR_M_MASK BIT(6)
  83. #define DA7280_OC_M_MASK BIT(7)
  84. /* DA7280_ACTUATOR3 (Address 0x0e) */
  85. #define DA7280_IMAX_MASK GENMASK(4, 0)
  86. /* DA7280_TOP_CFG1 (Address 0x13) */
  87. #define DA7280_AMP_PID_EN_MASK BIT(0)
  88. #define DA7280_RAPID_STOP_EN_MASK BIT(1)
  89. #define DA7280_ACCELERATION_EN_MASK BIT(2)
  90. #define DA7280_FREQ_TRACK_EN_MASK BIT(3)
  91. #define DA7280_BEMF_SENSE_EN_MASK BIT(4)
  92. #define DA7280_ACTUATOR_TYPE_MASK BIT(5)
  93. /* DA7280_TOP_CFG2 (Address 0x14) */
  94. #define DA7280_FULL_BRAKE_THR_MASK GENMASK(3, 0)
  95. #define DA7280_MEM_DATA_SIGNED_MASK BIT(4)
  96. /* DA7280_TOP_CFG4 (Address 0x16) */
  97. #define DA7280_TST_CALIB_IMPEDANCE_DIS_MASK BIT(6)
  98. #define DA7280_V2I_FACTOR_FREEZE_MASK BIT(7)
  99. /* DA7280_TOP_INT_CFG1 (Address 0x17) */
  100. #define DA7280_BEMF_FAULT_LIM_MASK GENMASK(1, 0)
  101. /* DA7280_TOP_CTL1 (Address 0x22) */
  102. #define DA7280_OPERATION_MODE_MASK GENMASK(2, 0)
  103. #define DA7280_STANDBY_EN_MASK BIT(3)
  104. #define DA7280_SEQ_START_MASK BIT(4)
  105. /* DA7280_SEQ_CTL2 (Address 0x28) */
  106. #define DA7280_PS_SEQ_ID_MASK GENMASK(3, 0)
  107. #define DA7280_PS_SEQ_LOOP_MASK GENMASK(7, 4)
  108. /* DA7280_GPIO_0_CTL (Address 0x29) */
  109. #define DA7280_GPI0_POLARITY_MASK GENMASK(1, 0)
  110. #define DA7280_GPI0_MODE_MASK BIT(2)
  111. #define DA7280_GPI0_SEQUENCE_ID_MASK GENMASK(6, 3)
  112. /* DA7280_GPIO_1_CTL (Address 0x2a) */
  113. #define DA7280_GPI1_POLARITY_MASK GENMASK(1, 0)
  114. #define DA7280_GPI1_MODE_MASK BIT(2)
  115. #define DA7280_GPI1_SEQUENCE_ID_MASK GENMASK(6, 3)
  116. /* DA7280_GPIO_2_CTL (Address 0x2b) */
  117. #define DA7280_GPI2_POLARITY_MASK GENMASK(1, 0)
  118. #define DA7280_GPI2_MODE_MASK BIT(2)
  119. #define DA7280_GPI2_SEQUENCE_ID_MASK GENMASK(6, 3)
  120. /* DA7280_MEM_CTL2 (Address 0x2d) */
  121. #define DA7280_WAV_MEM_LOCK_MASK BIT(7)
  122. /* DA7280_TOP_CFG5 (Address 0x6e) */
  123. #define DA7280_V2I_FACTOR_OFFSET_EN_MASK BIT(0)
  124. /* DA7280_IRQ_MASK2 (Address 0x83) */
  125. #define DA7280_ADC_SAT_M_MASK BIT(7)
  126. /* Controls */
  127. #define DA7280_VOLTAGE_RATE_MAX 6000000
  128. #define DA7280_VOLTAGE_RATE_STEP 23400
  129. #define DA7280_NOMMAX_DFT 0x6B
  130. #define DA7280_ABSMAX_DFT 0x78
  131. #define DA7280_IMPD_MAX 1500000000
  132. #define DA7280_IMPD_DEFAULT 22000000
  133. #define DA7280_IMAX_DEFAULT 0x0E
  134. #define DA7280_IMAX_STEP 7200
  135. #define DA7280_IMAX_LIMIT 252000
  136. #define DA7280_RESONT_FREQH_DFT 0x39
  137. #define DA7280_RESONT_FREQL_DFT 0x32
  138. #define DA7280_MIN_RESONAT_FREQ_HZ 50
  139. #define DA7280_MAX_RESONAT_FREQ_HZ 300
  140. #define DA7280_SEQ_ID_MAX 15
  141. #define DA7280_SEQ_LOOP_MAX 15
  142. #define DA7280_GPI_SEQ_ID_DFT 0
  143. #define DA7280_GPI_SEQ_ID_MAX 2
  144. #define DA7280_SNP_MEM_SIZE 100
  145. #define DA7280_SNP_MEM_MAX DA7280_SNP_MEM_99
  146. #define DA7280_IRQ_NUM 3
  147. #define DA7280_SKIP_INIT 0x100
  148. #define DA7280_FF_EFFECT_COUNT_MAX 15
  149. /* Maximum gain is 0x7fff for PWM mode */
  150. #define DA7280_MAX_MAGNITUDE_SHIFT 15
  151. enum da7280_haptic_dev_t {
  152. DA7280_LRA = 0,
  153. DA7280_ERM_BAR = 1,
  154. DA7280_ERM_COIN = 2,
  155. DA7280_DEV_MAX,
  156. };
  157. enum da7280_op_mode {
  158. DA7280_INACTIVE = 0,
  159. DA7280_DRO_MODE = 1,
  160. DA7280_PWM_MODE = 2,
  161. DA7280_RTWM_MODE = 3,
  162. DA7280_ETWM_MODE = 4,
  163. DA7280_OPMODE_MAX,
  164. };
  165. #define DA7280_FF_CONSTANT_DRO 1
  166. #define DA7280_FF_PERIODIC_PWM 2
  167. #define DA7280_FF_PERIODIC_RTWM 1
  168. #define DA7280_FF_PERIODIC_ETWM 2
  169. #define DA7280_FF_PERIODIC_MODE DA7280_RTWM_MODE
  170. #define DA7280_FF_CONSTANT_MODE DA7280_DRO_MODE
  171. enum da7280_custom_effect_param {
  172. DA7280_CUSTOM_SEQ_ID_IDX = 0,
  173. DA7280_CUSTOM_SEQ_LOOP_IDX = 1,
  174. DA7280_CUSTOM_DATA_LEN = 2,
  175. };
  176. enum da7280_custom_gpi_effect_param {
  177. DA7280_CUSTOM_GPI_SEQ_ID_IDX = 0,
  178. DA7280_CUSTOM_GPI_NUM_IDX = 2,
  179. DA7280_CUSTOM_GP_DATA_LEN = 3,
  180. };
  181. struct da7280_gpi_ctl {
  182. u8 seq_id;
  183. u8 mode;
  184. u8 polarity;
  185. };
  186. struct da7280_haptic {
  187. struct regmap *regmap;
  188. struct input_dev *input_dev;
  189. struct device *dev;
  190. struct i2c_client *client;
  191. struct pwm_device *pwm_dev;
  192. bool legacy;
  193. struct work_struct work;
  194. int val;
  195. u16 gain;
  196. s16 level;
  197. u8 dev_type;
  198. u8 op_mode;
  199. u8 const_op_mode;
  200. u8 periodic_op_mode;
  201. u16 nommax;
  202. u16 absmax;
  203. u32 imax;
  204. u32 impd;
  205. u32 resonant_freq_h;
  206. u32 resonant_freq_l;
  207. bool bemf_sense_en;
  208. bool freq_track_en;
  209. bool acc_en;
  210. bool rapid_stop_en;
  211. bool amp_pid_en;
  212. u8 ps_seq_id;
  213. u8 ps_seq_loop;
  214. struct da7280_gpi_ctl gpi_ctl[3];
  215. bool mem_update;
  216. u8 snp_mem[DA7280_SNP_MEM_SIZE];
  217. bool active;
  218. bool suspended;
  219. };
  220. static bool da7280_volatile_register(struct device *dev, unsigned int reg)
  221. {
  222. switch (reg) {
  223. case DA7280_IRQ_EVENT1:
  224. case DA7280_IRQ_EVENT_WARNING_DIAG:
  225. case DA7280_IRQ_EVENT_SEQ_DIAG:
  226. case DA7280_IRQ_STATUS1:
  227. case DA7280_TOP_CTL1:
  228. return true;
  229. default:
  230. return false;
  231. }
  232. }
  233. static const struct regmap_config da7280_haptic_regmap_config = {
  234. .reg_bits = 8,
  235. .val_bits = 8,
  236. .max_register = DA7280_SNP_MEM_MAX,
  237. .volatile_reg = da7280_volatile_register,
  238. };
  239. static int da7280_haptic_mem_update(struct da7280_haptic *haptics)
  240. {
  241. unsigned int val;
  242. int error;
  243. /* The patterns should be updated when haptic is not working */
  244. error = regmap_read(haptics->regmap, DA7280_IRQ_STATUS1, &val);
  245. if (error)
  246. return error;
  247. if (val & DA7280_STA_WARNING_MASK) {
  248. dev_warn(haptics->dev,
  249. "Warning! Please check HAPTIC status.\n");
  250. return -EBUSY;
  251. }
  252. /* Patterns are not updated if the lock bit is enabled */
  253. val = 0;
  254. error = regmap_read(haptics->regmap, DA7280_MEM_CTL2, &val);
  255. if (error)
  256. return error;
  257. if (~val & DA7280_WAV_MEM_LOCK_MASK) {
  258. dev_warn(haptics->dev, "Please unlock the bit first\n");
  259. return -EACCES;
  260. }
  261. /* Set to Inactive mode to make sure safety */
  262. error = regmap_update_bits(haptics->regmap,
  263. DA7280_TOP_CTL1,
  264. DA7280_OPERATION_MODE_MASK,
  265. 0);
  266. if (error)
  267. return error;
  268. error = regmap_read(haptics->regmap, DA7280_MEM_CTL1, &val);
  269. if (error)
  270. return error;
  271. return regmap_bulk_write(haptics->regmap, val, haptics->snp_mem,
  272. DA7280_SNP_MEM_MAX - val + 1);
  273. }
  274. static int da7280_haptic_set_pwm(struct da7280_haptic *haptics, bool enabled)
  275. {
  276. struct pwm_state state;
  277. u64 period_mag_multi;
  278. int error;
  279. if (!haptics->gain && enabled) {
  280. dev_err(haptics->dev, "Unable to enable pwm with 0 gain\n");
  281. return -EINVAL;
  282. }
  283. pwm_get_state(haptics->pwm_dev, &state);
  284. state.enabled = enabled;
  285. if (enabled) {
  286. period_mag_multi = (u64)state.period * haptics->gain;
  287. period_mag_multi >>= DA7280_MAX_MAGNITUDE_SHIFT;
  288. /*
  289. * The interpretation of duty cycle depends on the acc_en,
  290. * it should be between 50% and 100% for acc_en = 0.
  291. * See datasheet 'PWM mode' section.
  292. */
  293. if (!haptics->acc_en) {
  294. period_mag_multi += state.period;
  295. period_mag_multi /= 2;
  296. }
  297. state.duty_cycle = period_mag_multi;
  298. }
  299. error = pwm_apply_state(haptics->pwm_dev, &state);
  300. if (error)
  301. dev_err(haptics->dev, "Failed to apply pwm state: %d\n", error);
  302. return error;
  303. }
  304. static void da7280_haptic_activate(struct da7280_haptic *haptics)
  305. {
  306. int error;
  307. if (haptics->active)
  308. return;
  309. switch (haptics->op_mode) {
  310. case DA7280_DRO_MODE:
  311. /* the valid range check when acc_en is enabled */
  312. if (haptics->acc_en && haptics->level > 0x7F)
  313. haptics->level = 0x7F;
  314. else if (haptics->level > 0xFF)
  315. haptics->level = 0xFF;
  316. /* Set level as a % of ACTUATOR_NOMMAX (nommax) */
  317. error = regmap_write(haptics->regmap, DA7280_TOP_CTL2,
  318. haptics->level);
  319. if (error) {
  320. dev_err(haptics->dev,
  321. "Failed to set level to %d: %d\n",
  322. haptics->level, error);
  323. return;
  324. }
  325. break;
  326. case DA7280_PWM_MODE:
  327. if (da7280_haptic_set_pwm(haptics, true))
  328. return;
  329. break;
  330. case DA7280_RTWM_MODE:
  331. /*
  332. * The pattern will be played by the PS_SEQ_ID and the
  333. * PS_SEQ_LOOP
  334. */
  335. break;
  336. case DA7280_ETWM_MODE:
  337. /*
  338. * The pattern will be played by the GPI[N] state,
  339. * GPI(N)_SEQUENCE_ID and the PS_SEQ_LOOP. See the
  340. * datasheet for the details.
  341. */
  342. break;
  343. default:
  344. dev_err(haptics->dev, "Invalid op mode %d\n", haptics->op_mode);
  345. return;
  346. }
  347. error = regmap_update_bits(haptics->regmap,
  348. DA7280_TOP_CTL1,
  349. DA7280_OPERATION_MODE_MASK,
  350. haptics->op_mode);
  351. if (error) {
  352. dev_err(haptics->dev,
  353. "Failed to set operation mode: %d", error);
  354. return;
  355. }
  356. if (haptics->op_mode == DA7280_PWM_MODE ||
  357. haptics->op_mode == DA7280_RTWM_MODE) {
  358. error = regmap_update_bits(haptics->regmap,
  359. DA7280_TOP_CTL1,
  360. DA7280_SEQ_START_MASK,
  361. DA7280_SEQ_START_MASK);
  362. if (error) {
  363. dev_err(haptics->dev,
  364. "Failed to start sequence: %d\n", error);
  365. return;
  366. }
  367. }
  368. haptics->active = true;
  369. }
  370. static void da7280_haptic_deactivate(struct da7280_haptic *haptics)
  371. {
  372. int error;
  373. if (!haptics->active)
  374. return;
  375. /* Set to Inactive mode */
  376. error = regmap_update_bits(haptics->regmap,
  377. DA7280_TOP_CTL1,
  378. DA7280_OPERATION_MODE_MASK, 0);
  379. if (error) {
  380. dev_err(haptics->dev,
  381. "Failed to clear operation mode: %d", error);
  382. return;
  383. }
  384. switch (haptics->op_mode) {
  385. case DA7280_DRO_MODE:
  386. error = regmap_write(haptics->regmap,
  387. DA7280_TOP_CTL2, 0);
  388. if (error) {
  389. dev_err(haptics->dev,
  390. "Failed to disable DRO mode: %d\n", error);
  391. return;
  392. }
  393. break;
  394. case DA7280_PWM_MODE:
  395. if (da7280_haptic_set_pwm(haptics, false))
  396. return;
  397. break;
  398. case DA7280_RTWM_MODE:
  399. case DA7280_ETWM_MODE:
  400. error = regmap_update_bits(haptics->regmap,
  401. DA7280_TOP_CTL1,
  402. DA7280_SEQ_START_MASK, 0);
  403. if (error) {
  404. dev_err(haptics->dev,
  405. "Failed to disable RTWM/ETWM mode: %d\n",
  406. error);
  407. return;
  408. }
  409. break;
  410. default:
  411. dev_err(haptics->dev, "Invalid op mode %d\n", haptics->op_mode);
  412. return;
  413. }
  414. haptics->active = false;
  415. }
  416. static void da7280_haptic_work(struct work_struct *work)
  417. {
  418. struct da7280_haptic *haptics =
  419. container_of(work, struct da7280_haptic, work);
  420. int val = haptics->val;
  421. if (val)
  422. da7280_haptic_activate(haptics);
  423. else
  424. da7280_haptic_deactivate(haptics);
  425. }
  426. static int da7280_haptics_upload_effect(struct input_dev *dev,
  427. struct ff_effect *effect,
  428. struct ff_effect *old)
  429. {
  430. struct da7280_haptic *haptics = input_get_drvdata(dev);
  431. s16 data[DA7280_SNP_MEM_SIZE] = { 0 };
  432. unsigned int val;
  433. int tmp, i, num;
  434. int error;
  435. /* The effect should be uploaded when haptic is not working */
  436. if (haptics->active)
  437. return -EBUSY;
  438. switch (effect->type) {
  439. /* DRO/PWM modes support this type */
  440. case FF_CONSTANT:
  441. haptics->op_mode = haptics->const_op_mode;
  442. if (haptics->op_mode == DA7280_DRO_MODE) {
  443. tmp = effect->u.constant.level * 254;
  444. haptics->level = tmp / 0x7FFF;
  445. break;
  446. }
  447. haptics->gain = effect->u.constant.level <= 0 ?
  448. 0 : effect->u.constant.level;
  449. break;
  450. /* RTWM/ETWM modes support this type */
  451. case FF_PERIODIC:
  452. if (effect->u.periodic.waveform != FF_CUSTOM) {
  453. dev_err(haptics->dev,
  454. "Device can only accept FF_CUSTOM waveform\n");
  455. return -EINVAL;
  456. }
  457. /*
  458. * Load the data and check the length.
  459. * the data will be patterns in this case: 4 < X <= 100,
  460. * and will be saved into the waveform memory inside DA728x.
  461. * If X = 2, the data will be PS_SEQ_ID and PS_SEQ_LOOP.
  462. * If X = 3, the 1st data will be GPIX_SEQUENCE_ID .
  463. */
  464. if (effect->u.periodic.custom_len == DA7280_CUSTOM_DATA_LEN)
  465. goto set_seq_id_loop;
  466. if (effect->u.periodic.custom_len == DA7280_CUSTOM_GP_DATA_LEN)
  467. goto set_gpix_seq_id;
  468. if (effect->u.periodic.custom_len < DA7280_CUSTOM_DATA_LEN ||
  469. effect->u.periodic.custom_len > DA7280_SNP_MEM_SIZE) {
  470. dev_err(haptics->dev, "Invalid waveform data size\n");
  471. return -EINVAL;
  472. }
  473. if (copy_from_user(data, effect->u.periodic.custom_data,
  474. sizeof(s16) *
  475. effect->u.periodic.custom_len))
  476. return -EFAULT;
  477. memset(haptics->snp_mem, 0, DA7280_SNP_MEM_SIZE);
  478. for (i = 0; i < effect->u.periodic.custom_len; i++) {
  479. if (data[i] < 0 || data[i] > 0xff) {
  480. dev_err(haptics->dev,
  481. "Invalid waveform data %d at offset %d\n",
  482. data[i], i);
  483. return -EINVAL;
  484. }
  485. haptics->snp_mem[i] = (u8)data[i];
  486. }
  487. error = da7280_haptic_mem_update(haptics);
  488. if (error) {
  489. dev_err(haptics->dev,
  490. "Failed to upload waveform: %d\n", error);
  491. return error;
  492. }
  493. break;
  494. set_seq_id_loop:
  495. if (copy_from_user(data, effect->u.periodic.custom_data,
  496. sizeof(s16) * DA7280_CUSTOM_DATA_LEN))
  497. return -EFAULT;
  498. if (data[DA7280_CUSTOM_SEQ_ID_IDX] < 0 ||
  499. data[DA7280_CUSTOM_SEQ_ID_IDX] > DA7280_SEQ_ID_MAX ||
  500. data[DA7280_CUSTOM_SEQ_LOOP_IDX] < 0 ||
  501. data[DA7280_CUSTOM_SEQ_LOOP_IDX] > DA7280_SEQ_LOOP_MAX) {
  502. dev_err(haptics->dev,
  503. "Invalid custom id (%d) or loop (%d)\n",
  504. data[DA7280_CUSTOM_SEQ_ID_IDX],
  505. data[DA7280_CUSTOM_SEQ_LOOP_IDX]);
  506. return -EINVAL;
  507. }
  508. haptics->ps_seq_id = data[DA7280_CUSTOM_SEQ_ID_IDX] & 0x0f;
  509. haptics->ps_seq_loop = data[DA7280_CUSTOM_SEQ_LOOP_IDX] & 0x0f;
  510. haptics->op_mode = haptics->periodic_op_mode;
  511. val = FIELD_PREP(DA7280_PS_SEQ_ID_MASK, haptics->ps_seq_id) |
  512. FIELD_PREP(DA7280_PS_SEQ_LOOP_MASK,
  513. haptics->ps_seq_loop);
  514. error = regmap_write(haptics->regmap, DA7280_SEQ_CTL2, val);
  515. if (error) {
  516. dev_err(haptics->dev,
  517. "Failed to update PS sequence: %d\n", error);
  518. return error;
  519. }
  520. break;
  521. set_gpix_seq_id:
  522. if (copy_from_user(data, effect->u.periodic.custom_data,
  523. sizeof(s16) * DA7280_CUSTOM_GP_DATA_LEN))
  524. return -EFAULT;
  525. if (data[DA7280_CUSTOM_GPI_SEQ_ID_IDX] < 0 ||
  526. data[DA7280_CUSTOM_GPI_SEQ_ID_IDX] > DA7280_SEQ_ID_MAX ||
  527. data[DA7280_CUSTOM_GPI_NUM_IDX] < 0 ||
  528. data[DA7280_CUSTOM_GPI_NUM_IDX] > DA7280_GPI_SEQ_ID_MAX) {
  529. dev_err(haptics->dev,
  530. "Invalid custom GPI id (%d) or num (%d)\n",
  531. data[DA7280_CUSTOM_GPI_SEQ_ID_IDX],
  532. data[DA7280_CUSTOM_GPI_NUM_IDX]);
  533. return -EINVAL;
  534. }
  535. num = data[DA7280_CUSTOM_GPI_NUM_IDX] & 0x0f;
  536. haptics->gpi_ctl[num].seq_id =
  537. data[DA7280_CUSTOM_GPI_SEQ_ID_IDX] & 0x0f;
  538. haptics->op_mode = haptics->periodic_op_mode;
  539. val = FIELD_PREP(DA7280_GPI0_SEQUENCE_ID_MASK,
  540. haptics->gpi_ctl[num].seq_id);
  541. error = regmap_update_bits(haptics->regmap,
  542. DA7280_GPI_0_CTL + num,
  543. DA7280_GPI0_SEQUENCE_ID_MASK,
  544. val);
  545. if (error) {
  546. dev_err(haptics->dev,
  547. "Failed to update GPI sequence: %d\n", error);
  548. return error;
  549. }
  550. break;
  551. default:
  552. dev_err(haptics->dev, "Unsupported effect type: %d\n",
  553. effect->type);
  554. return -EINVAL;
  555. }
  556. return 0;
  557. }
  558. static int da7280_haptics_playback(struct input_dev *dev,
  559. int effect_id, int val)
  560. {
  561. struct da7280_haptic *haptics = input_get_drvdata(dev);
  562. if (!haptics->op_mode) {
  563. dev_warn(haptics->dev, "No effects have been uploaded\n");
  564. return -EINVAL;
  565. }
  566. if (likely(!haptics->suspended)) {
  567. haptics->val = val;
  568. schedule_work(&haptics->work);
  569. }
  570. return 0;
  571. }
  572. static int da7280_haptic_start(struct da7280_haptic *haptics)
  573. {
  574. int error;
  575. error = regmap_update_bits(haptics->regmap,
  576. DA7280_TOP_CTL1,
  577. DA7280_STANDBY_EN_MASK,
  578. DA7280_STANDBY_EN_MASK);
  579. if (error) {
  580. dev_err(haptics->dev, "Unable to enable device: %d\n", error);
  581. return error;
  582. }
  583. return 0;
  584. }
  585. static void da7280_haptic_stop(struct da7280_haptic *haptics)
  586. {
  587. int error;
  588. cancel_work_sync(&haptics->work);
  589. da7280_haptic_deactivate(haptics);
  590. error = regmap_update_bits(haptics->regmap, DA7280_TOP_CTL1,
  591. DA7280_STANDBY_EN_MASK, 0);
  592. if (error)
  593. dev_err(haptics->dev, "Failed to disable device: %d\n", error);
  594. }
  595. static int da7280_haptic_open(struct input_dev *dev)
  596. {
  597. struct da7280_haptic *haptics = input_get_drvdata(dev);
  598. return da7280_haptic_start(haptics);
  599. }
  600. static void da7280_haptic_close(struct input_dev *dev)
  601. {
  602. struct da7280_haptic *haptics = input_get_drvdata(dev);
  603. da7280_haptic_stop(haptics);
  604. }
  605. static u8 da7280_haptic_of_mode_str(struct device *dev,
  606. const char *str)
  607. {
  608. if (!strcmp(str, "LRA")) {
  609. return DA7280_LRA;
  610. } else if (!strcmp(str, "ERM-bar")) {
  611. return DA7280_ERM_BAR;
  612. } else if (!strcmp(str, "ERM-coin")) {
  613. return DA7280_ERM_COIN;
  614. } else {
  615. dev_warn(dev, "Invalid string - set to LRA\n");
  616. return DA7280_LRA;
  617. }
  618. }
  619. static u8 da7280_haptic_of_gpi_mode_str(struct device *dev,
  620. const char *str)
  621. {
  622. if (!strcmp(str, "Single-pattern")) {
  623. return 0;
  624. } else if (!strcmp(str, "Multi-pattern")) {
  625. return 1;
  626. } else {
  627. dev_warn(dev, "Invalid string - set to Single-pattern\n");
  628. return 0;
  629. }
  630. }
  631. static u8 da7280_haptic_of_gpi_pol_str(struct device *dev,
  632. const char *str)
  633. {
  634. if (!strcmp(str, "Rising-edge")) {
  635. return 0;
  636. } else if (!strcmp(str, "Falling-edge")) {
  637. return 1;
  638. } else if (!strcmp(str, "Both-edge")) {
  639. return 2;
  640. } else {
  641. dev_warn(dev, "Invalid string - set to Rising-edge\n");
  642. return 0;
  643. }
  644. }
  645. static u8 da7280_haptic_of_volt_rating_set(u32 val)
  646. {
  647. u32 voltage = val / DA7280_VOLTAGE_RATE_STEP + 1;
  648. return min_t(u32, voltage, 0xff);
  649. }
  650. static void da7280_parse_properties(struct device *dev,
  651. struct da7280_haptic *haptics)
  652. {
  653. unsigned int i, mem[DA7280_SNP_MEM_SIZE];
  654. char gpi_str1[] = "dlg,gpi0-seq-id";
  655. char gpi_str2[] = "dlg,gpi0-mode";
  656. char gpi_str3[] = "dlg,gpi0-polarity";
  657. const char *str;
  658. u32 val;
  659. int error;
  660. /*
  661. * If there is no property, then use the mode programmed into the chip.
  662. */
  663. haptics->dev_type = DA7280_DEV_MAX;
  664. error = device_property_read_string(dev, "dlg,actuator-type", &str);
  665. if (!error)
  666. haptics->dev_type = da7280_haptic_of_mode_str(dev, str);
  667. haptics->const_op_mode = DA7280_DRO_MODE;
  668. error = device_property_read_u32(dev, "dlg,const-op-mode", &val);
  669. if (!error && val == DA7280_FF_PERIODIC_PWM)
  670. haptics->const_op_mode = DA7280_PWM_MODE;
  671. haptics->periodic_op_mode = DA7280_RTWM_MODE;
  672. error = device_property_read_u32(dev, "dlg,periodic-op-mode", &val);
  673. if (!error && val == DA7280_FF_PERIODIC_ETWM)
  674. haptics->periodic_op_mode = DA7280_ETWM_MODE;
  675. haptics->nommax = DA7280_SKIP_INIT;
  676. error = device_property_read_u32(dev, "dlg,nom-microvolt", &val);
  677. if (!error && val < DA7280_VOLTAGE_RATE_MAX)
  678. haptics->nommax = da7280_haptic_of_volt_rating_set(val);
  679. haptics->absmax = DA7280_SKIP_INIT;
  680. error = device_property_read_u32(dev, "dlg,abs-max-microvolt", &val);
  681. if (!error && val < DA7280_VOLTAGE_RATE_MAX)
  682. haptics->absmax = da7280_haptic_of_volt_rating_set(val);
  683. haptics->imax = DA7280_IMAX_DEFAULT;
  684. error = device_property_read_u32(dev, "dlg,imax-microamp", &val);
  685. if (!error && val < DA7280_IMAX_LIMIT)
  686. haptics->imax = (val - 28600) / DA7280_IMAX_STEP + 1;
  687. haptics->impd = DA7280_IMPD_DEFAULT;
  688. error = device_property_read_u32(dev, "dlg,impd-micro-ohms", &val);
  689. if (!error && val <= DA7280_IMPD_MAX)
  690. haptics->impd = val;
  691. haptics->resonant_freq_h = DA7280_SKIP_INIT;
  692. haptics->resonant_freq_l = DA7280_SKIP_INIT;
  693. error = device_property_read_u32(dev, "dlg,resonant-freq-hz", &val);
  694. if (!error) {
  695. if (val < DA7280_MAX_RESONAT_FREQ_HZ &&
  696. val > DA7280_MIN_RESONAT_FREQ_HZ) {
  697. haptics->resonant_freq_h =
  698. ((1000000000 / (val * 1333)) >> 7) & 0xFF;
  699. haptics->resonant_freq_l =
  700. (1000000000 / (val * 1333)) & 0x7F;
  701. } else {
  702. haptics->resonant_freq_h = DA7280_RESONT_FREQH_DFT;
  703. haptics->resonant_freq_l = DA7280_RESONT_FREQL_DFT;
  704. }
  705. }
  706. /* If no property, set to zero as default is to do nothing. */
  707. haptics->ps_seq_id = 0;
  708. error = device_property_read_u32(dev, "dlg,ps-seq-id", &val);
  709. if (!error && val <= DA7280_SEQ_ID_MAX)
  710. haptics->ps_seq_id = val;
  711. haptics->ps_seq_loop = 0;
  712. error = device_property_read_u32(dev, "dlg,ps-seq-loop", &val);
  713. if (!error && val <= DA7280_SEQ_LOOP_MAX)
  714. haptics->ps_seq_loop = val;
  715. /* GPI0~2 Control */
  716. for (i = 0; i <= DA7280_GPI_SEQ_ID_MAX; i++) {
  717. gpi_str1[7] = '0' + i;
  718. haptics->gpi_ctl[i].seq_id = DA7280_GPI_SEQ_ID_DFT + i;
  719. error = device_property_read_u32 (dev, gpi_str1, &val);
  720. if (!error && val <= DA7280_SEQ_ID_MAX)
  721. haptics->gpi_ctl[i].seq_id = val;
  722. gpi_str2[7] = '0' + i;
  723. haptics->gpi_ctl[i].mode = 0;
  724. error = device_property_read_string(dev, gpi_str2, &str);
  725. if (!error)
  726. haptics->gpi_ctl[i].mode =
  727. da7280_haptic_of_gpi_mode_str(dev, str);
  728. gpi_str3[7] = '0' + i;
  729. haptics->gpi_ctl[i].polarity = 0;
  730. error = device_property_read_string(dev, gpi_str3, &str);
  731. if (!error)
  732. haptics->gpi_ctl[i].polarity =
  733. da7280_haptic_of_gpi_pol_str(dev, str);
  734. }
  735. haptics->bemf_sense_en =
  736. device_property_read_bool(dev, "dlg,bemf-sens-enable");
  737. haptics->freq_track_en =
  738. device_property_read_bool(dev, "dlg,freq-track-enable");
  739. haptics->acc_en =
  740. device_property_read_bool(dev, "dlg,acc-enable");
  741. haptics->rapid_stop_en =
  742. device_property_read_bool(dev, "dlg,rapid-stop-enable");
  743. haptics->amp_pid_en =
  744. device_property_read_bool(dev, "dlg,amp-pid-enable");
  745. haptics->mem_update = false;
  746. error = device_property_read_u32_array(dev, "dlg,mem-array",
  747. &mem[0], DA7280_SNP_MEM_SIZE);
  748. if (!error) {
  749. haptics->mem_update = true;
  750. memset(haptics->snp_mem, 0, DA7280_SNP_MEM_SIZE);
  751. for (i = 0; i < DA7280_SNP_MEM_SIZE; i++) {
  752. if (mem[i] <= 0xff) {
  753. haptics->snp_mem[i] = (u8)mem[i];
  754. } else {
  755. dev_err(haptics->dev,
  756. "Invalid data in mem-array at %d: %x\n",
  757. i, mem[i]);
  758. haptics->mem_update = false;
  759. break;
  760. }
  761. }
  762. }
  763. }
  764. static irqreturn_t da7280_irq_handler(int irq, void *data)
  765. {
  766. struct da7280_haptic *haptics = data;
  767. struct device *dev = haptics->dev;
  768. u8 events[DA7280_IRQ_NUM];
  769. int error;
  770. /* Check what events have happened */
  771. error = regmap_bulk_read(haptics->regmap, DA7280_IRQ_EVENT1,
  772. events, sizeof(events));
  773. if (error) {
  774. dev_err(dev, "failed to read interrupt data: %d\n", error);
  775. goto out;
  776. }
  777. /* Clear events */
  778. error = regmap_write(haptics->regmap, DA7280_IRQ_EVENT1, events[0]);
  779. if (error) {
  780. dev_err(dev, "failed to clear interrupts: %d\n", error);
  781. goto out;
  782. }
  783. if (events[0] & DA7280_E_SEQ_FAULT_MASK) {
  784. /*
  785. * Stop first if haptic is active, otherwise, the fault may
  786. * happen continually even though the bit is cleared.
  787. */
  788. error = regmap_update_bits(haptics->regmap, DA7280_TOP_CTL1,
  789. DA7280_OPERATION_MODE_MASK, 0);
  790. if (error)
  791. dev_err(dev, "failed to clear op mode on fault: %d\n",
  792. error);
  793. }
  794. if (events[0] & DA7280_E_SEQ_DONE_MASK)
  795. haptics->active = false;
  796. if (events[0] & DA7280_E_WARNING_MASK) {
  797. if (events[1] & DA7280_E_LIM_DRIVE_MASK ||
  798. events[1] & DA7280_E_LIM_DRIVE_ACC_MASK)
  799. dev_warn(dev, "Please reduce the driver level\n");
  800. if (events[1] & DA7280_E_MEM_TYPE_MASK)
  801. dev_warn(dev, "Please check the mem data format\n");
  802. if (events[1] & DA7280_E_OVERTEMP_WARN_MASK)
  803. dev_warn(dev, "Over-temperature warning\n");
  804. }
  805. if (events[0] & DA7280_E_SEQ_FAULT_MASK) {
  806. if (events[2] & DA7280_E_SEQ_ID_FAULT_MASK)
  807. dev_info(dev, "Please reload PS_SEQ_ID & mem data\n");
  808. if (events[2] & DA7280_E_MEM_FAULT_MASK)
  809. dev_info(dev, "Please reload the mem data\n");
  810. if (events[2] & DA7280_E_PWM_FAULT_MASK)
  811. dev_info(dev, "Please restart PWM interface\n");
  812. }
  813. out:
  814. return IRQ_HANDLED;
  815. }
  816. static int da7280_init(struct da7280_haptic *haptics)
  817. {
  818. unsigned int val = 0;
  819. u32 v2i_factor;
  820. int error, i;
  821. u8 mask = 0;
  822. /*
  823. * If device type is DA7280_DEV_MAX then simply use currently
  824. * programmed mode.
  825. */
  826. if (haptics->dev_type == DA7280_DEV_MAX) {
  827. error = regmap_read(haptics->regmap, DA7280_TOP_CFG1, &val);
  828. if (error)
  829. goto out_err;
  830. haptics->dev_type = val & DA7280_ACTUATOR_TYPE_MASK ?
  831. DA7280_ERM_COIN : DA7280_LRA;
  832. }
  833. /* Apply user settings */
  834. if (haptics->dev_type == DA7280_LRA &&
  835. haptics->resonant_freq_l != DA7280_SKIP_INIT) {
  836. error = regmap_write(haptics->regmap, DA7280_FRQ_LRA_PER_H,
  837. haptics->resonant_freq_h);
  838. if (error)
  839. goto out_err;
  840. error = regmap_write(haptics->regmap, DA7280_FRQ_LRA_PER_L,
  841. haptics->resonant_freq_l);
  842. if (error)
  843. goto out_err;
  844. } else if (haptics->dev_type == DA7280_ERM_COIN) {
  845. error = regmap_update_bits(haptics->regmap, DA7280_TOP_INT_CFG1,
  846. DA7280_BEMF_FAULT_LIM_MASK, 0);
  847. if (error)
  848. goto out_err;
  849. mask = DA7280_TST_CALIB_IMPEDANCE_DIS_MASK |
  850. DA7280_V2I_FACTOR_FREEZE_MASK;
  851. val = DA7280_TST_CALIB_IMPEDANCE_DIS_MASK |
  852. DA7280_V2I_FACTOR_FREEZE_MASK;
  853. error = regmap_update_bits(haptics->regmap, DA7280_TOP_CFG4,
  854. mask, val);
  855. if (error)
  856. goto out_err;
  857. haptics->acc_en = false;
  858. haptics->rapid_stop_en = false;
  859. haptics->amp_pid_en = false;
  860. }
  861. mask = DA7280_ACTUATOR_TYPE_MASK |
  862. DA7280_BEMF_SENSE_EN_MASK |
  863. DA7280_FREQ_TRACK_EN_MASK |
  864. DA7280_ACCELERATION_EN_MASK |
  865. DA7280_RAPID_STOP_EN_MASK |
  866. DA7280_AMP_PID_EN_MASK;
  867. val = FIELD_PREP(DA7280_ACTUATOR_TYPE_MASK,
  868. (haptics->dev_type ? 1 : 0)) |
  869. FIELD_PREP(DA7280_BEMF_SENSE_EN_MASK,
  870. (haptics->bemf_sense_en ? 1 : 0)) |
  871. FIELD_PREP(DA7280_FREQ_TRACK_EN_MASK,
  872. (haptics->freq_track_en ? 1 : 0)) |
  873. FIELD_PREP(DA7280_ACCELERATION_EN_MASK,
  874. (haptics->acc_en ? 1 : 0)) |
  875. FIELD_PREP(DA7280_RAPID_STOP_EN_MASK,
  876. (haptics->rapid_stop_en ? 1 : 0)) |
  877. FIELD_PREP(DA7280_AMP_PID_EN_MASK,
  878. (haptics->amp_pid_en ? 1 : 0));
  879. error = regmap_update_bits(haptics->regmap, DA7280_TOP_CFG1, mask, val);
  880. if (error)
  881. goto out_err;
  882. error = regmap_update_bits(haptics->regmap, DA7280_TOP_CFG5,
  883. DA7280_V2I_FACTOR_OFFSET_EN_MASK,
  884. haptics->acc_en ?
  885. DA7280_V2I_FACTOR_OFFSET_EN_MASK : 0);
  886. if (error)
  887. goto out_err;
  888. error = regmap_update_bits(haptics->regmap,
  889. DA7280_TOP_CFG2,
  890. DA7280_MEM_DATA_SIGNED_MASK,
  891. haptics->acc_en ?
  892. 0 : DA7280_MEM_DATA_SIGNED_MASK);
  893. if (error)
  894. goto out_err;
  895. if (haptics->nommax != DA7280_SKIP_INIT) {
  896. error = regmap_write(haptics->regmap, DA7280_ACTUATOR1,
  897. haptics->nommax);
  898. if (error)
  899. goto out_err;
  900. }
  901. if (haptics->absmax != DA7280_SKIP_INIT) {
  902. error = regmap_write(haptics->regmap, DA7280_ACTUATOR2,
  903. haptics->absmax);
  904. if (error)
  905. goto out_err;
  906. }
  907. error = regmap_update_bits(haptics->regmap, DA7280_ACTUATOR3,
  908. DA7280_IMAX_MASK, haptics->imax);
  909. if (error)
  910. goto out_err;
  911. v2i_factor = haptics->impd * (haptics->imax + 4) / 1610400;
  912. error = regmap_write(haptics->regmap, DA7280_CALIB_V2I_L,
  913. v2i_factor & 0xff);
  914. if (error)
  915. goto out_err;
  916. error = regmap_write(haptics->regmap, DA7280_CALIB_V2I_H,
  917. v2i_factor >> 8);
  918. if (error)
  919. goto out_err;
  920. error = regmap_update_bits(haptics->regmap,
  921. DA7280_TOP_CTL1,
  922. DA7280_STANDBY_EN_MASK,
  923. DA7280_STANDBY_EN_MASK);
  924. if (error)
  925. goto out_err;
  926. if (haptics->mem_update) {
  927. error = da7280_haptic_mem_update(haptics);
  928. if (error)
  929. goto out_err;
  930. }
  931. /* Set PS_SEQ_ID and PS_SEQ_LOOP */
  932. val = FIELD_PREP(DA7280_PS_SEQ_ID_MASK, haptics->ps_seq_id) |
  933. FIELD_PREP(DA7280_PS_SEQ_LOOP_MASK, haptics->ps_seq_loop);
  934. error = regmap_write(haptics->regmap, DA7280_SEQ_CTL2, val);
  935. if (error)
  936. goto out_err;
  937. /* GPI(N) CTL */
  938. for (i = 0; i < 3; i++) {
  939. val = FIELD_PREP(DA7280_GPI0_SEQUENCE_ID_MASK,
  940. haptics->gpi_ctl[i].seq_id) |
  941. FIELD_PREP(DA7280_GPI0_MODE_MASK,
  942. haptics->gpi_ctl[i].mode) |
  943. FIELD_PREP(DA7280_GPI0_POLARITY_MASK,
  944. haptics->gpi_ctl[i].polarity);
  945. error = regmap_write(haptics->regmap,
  946. DA7280_GPI_0_CTL + i, val);
  947. if (error)
  948. goto out_err;
  949. }
  950. /* Mask ADC_SAT_M bit as default */
  951. error = regmap_update_bits(haptics->regmap,
  952. DA7280_IRQ_MASK2,
  953. DA7280_ADC_SAT_M_MASK,
  954. DA7280_ADC_SAT_M_MASK);
  955. if (error)
  956. goto out_err;
  957. /* Clear Interrupts */
  958. error = regmap_write(haptics->regmap, DA7280_IRQ_EVENT1, 0xff);
  959. if (error)
  960. goto out_err;
  961. error = regmap_update_bits(haptics->regmap,
  962. DA7280_IRQ_MASK1,
  963. DA7280_SEQ_FAULT_M_MASK |
  964. DA7280_SEQ_DONE_M_MASK,
  965. 0);
  966. if (error)
  967. goto out_err;
  968. haptics->active = false;
  969. return 0;
  970. out_err:
  971. dev_err(haptics->dev, "chip initialization error: %d\n", error);
  972. return error;
  973. }
  974. static int da7280_probe(struct i2c_client *client,
  975. const struct i2c_device_id *id)
  976. {
  977. struct device *dev = &client->dev;
  978. struct da7280_haptic *haptics;
  979. struct input_dev *input_dev;
  980. struct pwm_state state;
  981. struct ff_device *ff;
  982. int error;
  983. if (!client->irq) {
  984. dev_err(dev, "No IRQ configured\n");
  985. return -EINVAL;
  986. }
  987. haptics = devm_kzalloc(dev, sizeof(*haptics), GFP_KERNEL);
  988. if (!haptics)
  989. return -ENOMEM;
  990. haptics->dev = dev;
  991. da7280_parse_properties(dev, haptics);
  992. if (haptics->const_op_mode == DA7280_PWM_MODE) {
  993. haptics->pwm_dev = devm_pwm_get(dev, NULL);
  994. error = PTR_ERR_OR_ZERO(haptics->pwm_dev);
  995. if (error) {
  996. if (error != -EPROBE_DEFER)
  997. dev_err(dev, "Unable to request PWM: %d\n",
  998. error);
  999. return error;
  1000. }
  1001. /* Sync up PWM state and ensure it is off. */
  1002. pwm_init_state(haptics->pwm_dev, &state);
  1003. state.enabled = false;
  1004. error = pwm_apply_state(haptics->pwm_dev, &state);
  1005. if (error) {
  1006. dev_err(dev, "Failed to apply PWM state: %d\n", error);
  1007. return error;
  1008. }
  1009. /*
  1010. * Check PWM period, PWM freq = 1000000 / state.period.
  1011. * The valid PWM freq range: 10k ~ 250kHz.
  1012. */
  1013. if (state.period > 100000 || state.period < 4000) {
  1014. dev_err(dev, "Unsupported PWM period: %lld\n",
  1015. state.period);
  1016. return -EINVAL;
  1017. }
  1018. }
  1019. INIT_WORK(&haptics->work, da7280_haptic_work);
  1020. haptics->client = client;
  1021. i2c_set_clientdata(client, haptics);
  1022. haptics->regmap = devm_regmap_init_i2c(client,
  1023. &da7280_haptic_regmap_config);
  1024. error = PTR_ERR_OR_ZERO(haptics->regmap);
  1025. if (error) {
  1026. dev_err(dev, "Failed to allocate register map: %d\n", error);
  1027. return error;
  1028. }
  1029. error = da7280_init(haptics);
  1030. if (error) {
  1031. dev_err(dev, "Failed to initialize device: %d\n", error);
  1032. return error;
  1033. }
  1034. /* Initialize input device for haptic device */
  1035. input_dev = devm_input_allocate_device(dev);
  1036. if (!input_dev) {
  1037. dev_err(dev, "Failed to allocate input device\n");
  1038. return -ENOMEM;
  1039. }
  1040. input_dev->name = "da7280-haptic";
  1041. input_dev->dev.parent = client->dev.parent;
  1042. input_dev->open = da7280_haptic_open;
  1043. input_dev->close = da7280_haptic_close;
  1044. input_set_drvdata(input_dev, haptics);
  1045. haptics->input_dev = input_dev;
  1046. input_set_capability(haptics->input_dev, EV_FF, FF_PERIODIC);
  1047. input_set_capability(haptics->input_dev, EV_FF, FF_CUSTOM);
  1048. input_set_capability(haptics->input_dev, EV_FF, FF_CONSTANT);
  1049. input_set_capability(haptics->input_dev, EV_FF, FF_GAIN);
  1050. error = input_ff_create(haptics->input_dev,
  1051. DA7280_FF_EFFECT_COUNT_MAX);
  1052. if (error) {
  1053. dev_err(dev, "Failed to create FF input device: %d\n", error);
  1054. return error;
  1055. }
  1056. ff = input_dev->ff;
  1057. ff->upload = da7280_haptics_upload_effect;
  1058. ff->playback = da7280_haptics_playback;
  1059. error = input_register_device(input_dev);
  1060. if (error) {
  1061. dev_err(dev, "Failed to register input device: %d\n", error);
  1062. return error;
  1063. }
  1064. error = devm_request_threaded_irq(dev, client->irq,
  1065. NULL, da7280_irq_handler,
  1066. IRQF_ONESHOT,
  1067. "da7280-haptics", haptics);
  1068. if (error) {
  1069. dev_err(dev, "Failed to request IRQ %d: %d\n",
  1070. client->irq, error);
  1071. return error;
  1072. }
  1073. return 0;
  1074. }
  1075. static int __maybe_unused da7280_suspend(struct device *dev)
  1076. {
  1077. struct da7280_haptic *haptics = dev_get_drvdata(dev);
  1078. mutex_lock(&haptics->input_dev->mutex);
  1079. /*
  1080. * Make sure no new requests will be submitted while device is
  1081. * suspended.
  1082. */
  1083. spin_lock_irq(&haptics->input_dev->event_lock);
  1084. haptics->suspended = true;
  1085. spin_unlock_irq(&haptics->input_dev->event_lock);
  1086. da7280_haptic_stop(haptics);
  1087. mutex_unlock(&haptics->input_dev->mutex);
  1088. return 0;
  1089. }
  1090. static int __maybe_unused da7280_resume(struct device *dev)
  1091. {
  1092. struct da7280_haptic *haptics = dev_get_drvdata(dev);
  1093. int retval;
  1094. mutex_lock(&haptics->input_dev->mutex);
  1095. retval = da7280_haptic_start(haptics);
  1096. if (!retval) {
  1097. spin_lock_irq(&haptics->input_dev->event_lock);
  1098. haptics->suspended = false;
  1099. spin_unlock_irq(&haptics->input_dev->event_lock);
  1100. }
  1101. mutex_unlock(&haptics->input_dev->mutex);
  1102. return retval;
  1103. }
  1104. #ifdef CONFIG_OF
  1105. static const struct of_device_id da7280_of_match[] = {
  1106. { .compatible = "dlg,da7280", },
  1107. { }
  1108. };
  1109. MODULE_DEVICE_TABLE(of, da7280_of_match);
  1110. #endif
  1111. static const struct i2c_device_id da7280_i2c_id[] = {
  1112. { "da7280", },
  1113. { }
  1114. };
  1115. MODULE_DEVICE_TABLE(i2c, da7280_i2c_id);
  1116. static SIMPLE_DEV_PM_OPS(da7280_pm_ops, da7280_suspend, da7280_resume);
  1117. static struct i2c_driver da7280_driver = {
  1118. .driver = {
  1119. .name = "da7280",
  1120. .of_match_table = of_match_ptr(da7280_of_match),
  1121. .pm = &da7280_pm_ops,
  1122. },
  1123. .probe = da7280_probe,
  1124. .id_table = da7280_i2c_id,
  1125. };
  1126. module_i2c_driver(da7280_driver);
  1127. MODULE_DESCRIPTION("DA7280 haptics driver");
  1128. MODULE_AUTHOR("Roy Im <[email protected]>");
  1129. MODULE_LICENSE("GPL");