w83795.c 57 KB

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  1. /*
  2. * w83795.c - Linux kernel driver for hardware monitoring
  3. * Copyright (C) 2008 Nuvoton Technology Corp.
  4. * Wei Song
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation - version 2.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this program; if not, write to the Free Software
  17. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
  18. * 02110-1301 USA.
  19. *
  20. * Supports following chips:
  21. *
  22. * Chip #vin #fanin #pwm #temp #dts wchipid vendid i2c ISA
  23. * w83795g 21 14 8 6 8 0x79 0x5ca3 yes no
  24. * w83795adg 18 14 2 6 8 0x79 0x5ca3 yes no
  25. */
  26. #include <linux/kernel.h>
  27. #include <linux/module.h>
  28. #include <linux/init.h>
  29. #include <linux/slab.h>
  30. #include <linux/i2c.h>
  31. #include <linux/hwmon.h>
  32. #include <linux/hwmon-sysfs.h>
  33. #include <linux/err.h>
  34. #include <linux/mutex.h>
  35. #include <linux/delay.h>
  36. /* Addresses to scan */
  37. static const unsigned short normal_i2c[] = {
  38. 0x2c, 0x2d, 0x2e, 0x2f, I2C_CLIENT_END
  39. };
  40. static int reset;
  41. module_param(reset, bool, 0);
  42. MODULE_PARM_DESC(reset, "Set to 1 to reset chip, not recommended");
  43. #define W83795_REG_BANKSEL 0x00
  44. #define W83795_REG_VENDORID 0xfd
  45. #define W83795_REG_CHIPID 0xfe
  46. #define W83795_REG_DEVICEID 0xfb
  47. #define W83795_REG_DEVICEID_A 0xff
  48. #define W83795_REG_I2C_ADDR 0xfc
  49. #define W83795_REG_CONFIG 0x01
  50. #define W83795_REG_CONFIG_CONFIG48 0x04
  51. #define W83795_REG_CONFIG_START 0x01
  52. /* Multi-Function Pin Ctrl Registers */
  53. #define W83795_REG_VOLT_CTRL1 0x02
  54. #define W83795_REG_VOLT_CTRL2 0x03
  55. #define W83795_REG_TEMP_CTRL1 0x04
  56. #define W83795_REG_TEMP_CTRL2 0x05
  57. #define W83795_REG_FANIN_CTRL1 0x06
  58. #define W83795_REG_FANIN_CTRL2 0x07
  59. #define W83795_REG_VMIGB_CTRL 0x08
  60. #define TEMP_READ 0
  61. #define TEMP_CRIT 1
  62. #define TEMP_CRIT_HYST 2
  63. #define TEMP_WARN 3
  64. #define TEMP_WARN_HYST 4
  65. /* only crit and crit_hyst affect real-time alarm status
  66. * current crit crit_hyst warn warn_hyst */
  67. static const u16 W83795_REG_TEMP[][5] = {
  68. {0x21, 0x96, 0x97, 0x98, 0x99}, /* TD1/TR1 */
  69. {0x22, 0x9a, 0x9b, 0x9c, 0x9d}, /* TD2/TR2 */
  70. {0x23, 0x9e, 0x9f, 0xa0, 0xa1}, /* TD3/TR3 */
  71. {0x24, 0xa2, 0xa3, 0xa4, 0xa5}, /* TD4/TR4 */
  72. {0x1f, 0xa6, 0xa7, 0xa8, 0xa9}, /* TR5 */
  73. {0x20, 0xaa, 0xab, 0xac, 0xad}, /* TR6 */
  74. };
  75. #define IN_READ 0
  76. #define IN_MAX 1
  77. #define IN_LOW 2
  78. static const u16 W83795_REG_IN[][3] = {
  79. /* Current, HL, LL */
  80. {0x10, 0x70, 0x71}, /* VSEN1 */
  81. {0x11, 0x72, 0x73}, /* VSEN2 */
  82. {0x12, 0x74, 0x75}, /* VSEN3 */
  83. {0x13, 0x76, 0x77}, /* VSEN4 */
  84. {0x14, 0x78, 0x79}, /* VSEN5 */
  85. {0x15, 0x7a, 0x7b}, /* VSEN6 */
  86. {0x16, 0x7c, 0x7d}, /* VSEN7 */
  87. {0x17, 0x7e, 0x7f}, /* VSEN8 */
  88. {0x18, 0x80, 0x81}, /* VSEN9 */
  89. {0x19, 0x82, 0x83}, /* VSEN10 */
  90. {0x1A, 0x84, 0x85}, /* VSEN11 */
  91. {0x1B, 0x86, 0x87}, /* VTT */
  92. {0x1C, 0x88, 0x89}, /* 3VDD */
  93. {0x1D, 0x8a, 0x8b}, /* 3VSB */
  94. {0x1E, 0x8c, 0x8d}, /* VBAT */
  95. {0x1F, 0xa6, 0xa7}, /* VSEN12 */
  96. {0x20, 0xaa, 0xab}, /* VSEN13 */
  97. {0x21, 0x96, 0x97}, /* VSEN14 */
  98. {0x22, 0x9a, 0x9b}, /* VSEN15 */
  99. {0x23, 0x9e, 0x9f}, /* VSEN16 */
  100. {0x24, 0xa2, 0xa3}, /* VSEN17 */
  101. };
  102. #define W83795_REG_VRLSB 0x3C
  103. static const u8 W83795_REG_IN_HL_LSB[] = {
  104. 0x8e, /* VSEN1-4 */
  105. 0x90, /* VSEN5-8 */
  106. 0x92, /* VSEN9-11 */
  107. 0x94, /* VTT, 3VDD, 3VSB, 3VBAT */
  108. 0xa8, /* VSEN12 */
  109. 0xac, /* VSEN13 */
  110. 0x98, /* VSEN14 */
  111. 0x9c, /* VSEN15 */
  112. 0xa0, /* VSEN16 */
  113. 0xa4, /* VSEN17 */
  114. };
  115. #define IN_LSB_REG(index, type) \
  116. (((type) == 1) ? W83795_REG_IN_HL_LSB[(index)] \
  117. : (W83795_REG_IN_HL_LSB[(index)] + 1))
  118. #define IN_LSB_SHIFT 0
  119. #define IN_LSB_IDX 1
  120. static const u8 IN_LSB_SHIFT_IDX[][2] = {
  121. /* High/Low LSB shift, LSB No. */
  122. {0x00, 0x00}, /* VSEN1 */
  123. {0x02, 0x00}, /* VSEN2 */
  124. {0x04, 0x00}, /* VSEN3 */
  125. {0x06, 0x00}, /* VSEN4 */
  126. {0x00, 0x01}, /* VSEN5 */
  127. {0x02, 0x01}, /* VSEN6 */
  128. {0x04, 0x01}, /* VSEN7 */
  129. {0x06, 0x01}, /* VSEN8 */
  130. {0x00, 0x02}, /* VSEN9 */
  131. {0x02, 0x02}, /* VSEN10 */
  132. {0x04, 0x02}, /* VSEN11 */
  133. {0x00, 0x03}, /* VTT */
  134. {0x02, 0x03}, /* 3VDD */
  135. {0x04, 0x03}, /* 3VSB */
  136. {0x06, 0x03}, /* VBAT */
  137. {0x06, 0x04}, /* VSEN12 */
  138. {0x06, 0x05}, /* VSEN13 */
  139. {0x06, 0x06}, /* VSEN14 */
  140. {0x06, 0x07}, /* VSEN15 */
  141. {0x06, 0x08}, /* VSEN16 */
  142. {0x06, 0x09}, /* VSEN17 */
  143. };
  144. #define W83795_REG_FAN(index) (0x2E + (index))
  145. #define W83795_REG_FAN_MIN_HL(index) (0xB6 + (index))
  146. #define W83795_REG_FAN_MIN_LSB(index) (0xC4 + (index) / 2)
  147. #define W83795_REG_FAN_MIN_LSB_SHIFT(index) \
  148. (((index) & 1) ? 4 : 0)
  149. #define W83795_REG_VID_CTRL 0x6A
  150. #define W83795_REG_ALARM(index) (0x41 + (index))
  151. #define W83795_REG_BEEP(index) (0x50 + (index))
  152. #define W83795_REG_CLR_CHASSIS 0x4D
  153. #define W83795_REG_FCMS1 0x201
  154. #define W83795_REG_FCMS2 0x208
  155. #define W83795_REG_TFMR(index) (0x202 + (index))
  156. #define W83795_REG_FOMC 0x20F
  157. #define W83795_REG_TSS(index) (0x209 + (index))
  158. #define PWM_OUTPUT 0
  159. #define PWM_FREQ 1
  160. #define PWM_START 2
  161. #define PWM_NONSTOP 3
  162. #define PWM_STOP_TIME 4
  163. #define W83795_REG_PWM(index, nr) (0x210 + (nr) * 8 + (index))
  164. #define W83795_REG_FTSH(index) (0x240 + (index) * 2)
  165. #define W83795_REG_FTSL(index) (0x241 + (index) * 2)
  166. #define W83795_REG_TFTS 0x250
  167. #define TEMP_PWM_TTTI 0
  168. #define TEMP_PWM_CTFS 1
  169. #define TEMP_PWM_HCT 2
  170. #define TEMP_PWM_HOT 3
  171. #define W83795_REG_TTTI(index) (0x260 + (index))
  172. #define W83795_REG_CTFS(index) (0x268 + (index))
  173. #define W83795_REG_HT(index) (0x270 + (index))
  174. #define SF4_TEMP 0
  175. #define SF4_PWM 1
  176. #define W83795_REG_SF4_TEMP(temp_num, index) \
  177. (0x280 + 0x10 * (temp_num) + (index))
  178. #define W83795_REG_SF4_PWM(temp_num, index) \
  179. (0x288 + 0x10 * (temp_num) + (index))
  180. #define W83795_REG_DTSC 0x301
  181. #define W83795_REG_DTSE 0x302
  182. #define W83795_REG_DTS(index) (0x26 + (index))
  183. #define W83795_REG_PECI_TBASE(index) (0x320 + (index))
  184. #define DTS_CRIT 0
  185. #define DTS_CRIT_HYST 1
  186. #define DTS_WARN 2
  187. #define DTS_WARN_HYST 3
  188. #define W83795_REG_DTS_EXT(index) (0xB2 + (index))
  189. #define SETUP_PWM_DEFAULT 0
  190. #define SETUP_PWM_UPTIME 1
  191. #define SETUP_PWM_DOWNTIME 2
  192. #define W83795_REG_SETUP_PWM(index) (0x20C + (index))
  193. static inline u16 in_from_reg(u8 index, u16 val)
  194. {
  195. /* 3VDD, 3VSB and VBAT: 6 mV/bit; other inputs: 2 mV/bit */
  196. if (index >= 12 && index <= 14)
  197. return val * 6;
  198. else
  199. return val * 2;
  200. }
  201. static inline u16 in_to_reg(u8 index, u16 val)
  202. {
  203. if (index >= 12 && index <= 14)
  204. return val / 6;
  205. else
  206. return val / 2;
  207. }
  208. static inline unsigned long fan_from_reg(u16 val)
  209. {
  210. if ((val == 0xfff) || (val == 0))
  211. return 0;
  212. return 1350000UL / val;
  213. }
  214. static inline u16 fan_to_reg(long rpm)
  215. {
  216. if (rpm <= 0)
  217. return 0x0fff;
  218. return SENSORS_LIMIT((1350000 + (rpm >> 1)) / rpm, 1, 0xffe);
  219. }
  220. static inline unsigned long time_from_reg(u8 reg)
  221. {
  222. return reg * 100;
  223. }
  224. static inline u8 time_to_reg(unsigned long val)
  225. {
  226. return SENSORS_LIMIT((val + 50) / 100, 0, 0xff);
  227. }
  228. static inline long temp_from_reg(s8 reg)
  229. {
  230. return reg * 1000;
  231. }
  232. static inline s8 temp_to_reg(long val, s8 min, s8 max)
  233. {
  234. return SENSORS_LIMIT(val / 1000, min, max);
  235. }
  236. static const u16 pwm_freq_cksel0[16] = {
  237. 1024, 512, 341, 256, 205, 171, 146, 128,
  238. 85, 64, 32, 16, 8, 4, 2, 1
  239. };
  240. static unsigned int pwm_freq_from_reg(u8 reg, u16 clkin)
  241. {
  242. unsigned long base_clock;
  243. if (reg & 0x80) {
  244. base_clock = clkin * 1000 / ((clkin == 48000) ? 384 : 256);
  245. return base_clock / ((reg & 0x7f) + 1);
  246. } else
  247. return pwm_freq_cksel0[reg & 0x0f];
  248. }
  249. static u8 pwm_freq_to_reg(unsigned long val, u16 clkin)
  250. {
  251. unsigned long base_clock;
  252. u8 reg0, reg1;
  253. unsigned long best0, best1;
  254. /* Best fit for cksel = 0 */
  255. for (reg0 = 0; reg0 < ARRAY_SIZE(pwm_freq_cksel0) - 1; reg0++) {
  256. if (val > (pwm_freq_cksel0[reg0] +
  257. pwm_freq_cksel0[reg0 + 1]) / 2)
  258. break;
  259. }
  260. if (val < 375) /* cksel = 1 can't beat this */
  261. return reg0;
  262. best0 = pwm_freq_cksel0[reg0];
  263. /* Best fit for cksel = 1 */
  264. base_clock = clkin * 1000 / ((clkin == 48000) ? 384 : 256);
  265. reg1 = SENSORS_LIMIT(DIV_ROUND_CLOSEST(base_clock, val), 1, 128);
  266. best1 = base_clock / reg1;
  267. reg1 = 0x80 | (reg1 - 1);
  268. /* Choose the closest one */
  269. if (abs(val - best0) > abs(val - best1))
  270. return reg1;
  271. else
  272. return reg0;
  273. }
  274. enum chip_types {w83795g, w83795adg};
  275. struct w83795_data {
  276. struct device *hwmon_dev;
  277. struct mutex update_lock;
  278. unsigned long last_updated; /* In jiffies */
  279. enum chip_types chip_type;
  280. u8 bank;
  281. u32 has_in; /* Enable monitor VIN or not */
  282. u8 has_dyn_in; /* Only in2-0 can have this */
  283. u16 in[21][3]; /* Register value, read/high/low */
  284. u8 in_lsb[10][3]; /* LSB Register value, high/low */
  285. u8 has_gain; /* has gain: in17-20 * 8 */
  286. u16 has_fan; /* Enable fan14-1 or not */
  287. u16 fan[14]; /* Register value combine */
  288. u16 fan_min[14]; /* Register value combine */
  289. u8 has_temp; /* Enable monitor temp6-1 or not */
  290. s8 temp[6][5]; /* current, crit, crit_hyst, warn, warn_hyst */
  291. u8 temp_read_vrlsb[6];
  292. u8 temp_mode; /* Bit vector, 0 = TR, 1 = TD */
  293. u8 temp_src[3]; /* Register value */
  294. u8 enable_dts; /* Enable PECI and SB-TSI,
  295. * bit 0: =1 enable, =0 disable,
  296. * bit 1: =1 AMD SB-TSI, =0 Intel PECI */
  297. u8 has_dts; /* Enable monitor DTS temp */
  298. s8 dts[8]; /* Register value */
  299. u8 dts_read_vrlsb[8]; /* Register value */
  300. s8 dts_ext[4]; /* Register value */
  301. u8 has_pwm; /* 795g supports 8 pwm, 795adg only supports 2,
  302. * no config register, only affected by chip
  303. * type */
  304. u8 pwm[8][5]; /* Register value, output, freq, start,
  305. * non stop, stop time */
  306. u16 clkin; /* CLKIN frequency in kHz */
  307. u8 pwm_fcms[2]; /* Register value */
  308. u8 pwm_tfmr[6]; /* Register value */
  309. u8 pwm_fomc; /* Register value */
  310. u16 target_speed[8]; /* Register value, target speed for speed
  311. * cruise */
  312. u8 tol_speed; /* tolerance of target speed */
  313. u8 pwm_temp[6][4]; /* TTTI, CTFS, HCT, HOT */
  314. u8 sf4_reg[6][2][7]; /* 6 temp, temp/dcpwm, 7 registers */
  315. u8 setup_pwm[3]; /* Register value */
  316. u8 alarms[6]; /* Register value */
  317. u8 beeps[6]; /* Register value */
  318. char valid;
  319. char valid_limits;
  320. char valid_pwm_config;
  321. };
  322. /*
  323. * Hardware access
  324. * We assume that nobdody can change the bank outside the driver.
  325. */
  326. /* Must be called with data->update_lock held, except during initialization */
  327. static int w83795_set_bank(struct i2c_client *client, u8 bank)
  328. {
  329. struct w83795_data *data = i2c_get_clientdata(client);
  330. int err;
  331. /* If the same bank is already set, nothing to do */
  332. if ((data->bank & 0x07) == bank)
  333. return 0;
  334. /* Change to new bank, preserve all other bits */
  335. bank |= data->bank & ~0x07;
  336. err = i2c_smbus_write_byte_data(client, W83795_REG_BANKSEL, bank);
  337. if (err < 0) {
  338. dev_err(&client->dev,
  339. "Failed to set bank to %d, err %d\n",
  340. (int)bank, err);
  341. return err;
  342. }
  343. data->bank = bank;
  344. return 0;
  345. }
  346. /* Must be called with data->update_lock held, except during initialization */
  347. static u8 w83795_read(struct i2c_client *client, u16 reg)
  348. {
  349. int err;
  350. err = w83795_set_bank(client, reg >> 8);
  351. if (err < 0)
  352. return 0x00; /* Arbitrary */
  353. err = i2c_smbus_read_byte_data(client, reg & 0xff);
  354. if (err < 0) {
  355. dev_err(&client->dev,
  356. "Failed to read from register 0x%03x, err %d\n",
  357. (int)reg, err);
  358. return 0x00; /* Arbitrary */
  359. }
  360. return err;
  361. }
  362. /* Must be called with data->update_lock held, except during initialization */
  363. static int w83795_write(struct i2c_client *client, u16 reg, u8 value)
  364. {
  365. int err;
  366. err = w83795_set_bank(client, reg >> 8);
  367. if (err < 0)
  368. return err;
  369. err = i2c_smbus_write_byte_data(client, reg & 0xff, value);
  370. if (err < 0)
  371. dev_err(&client->dev,
  372. "Failed to write to register 0x%03x, err %d\n",
  373. (int)reg, err);
  374. return err;
  375. }
  376. static void w83795_update_limits(struct i2c_client *client)
  377. {
  378. struct w83795_data *data = i2c_get_clientdata(client);
  379. int i, limit;
  380. /* Read the voltage limits */
  381. for (i = 0; i < ARRAY_SIZE(data->in); i++) {
  382. if (!(data->has_in & (1 << i)))
  383. continue;
  384. data->in[i][IN_MAX] =
  385. w83795_read(client, W83795_REG_IN[i][IN_MAX]);
  386. data->in[i][IN_LOW] =
  387. w83795_read(client, W83795_REG_IN[i][IN_LOW]);
  388. }
  389. for (i = 0; i < ARRAY_SIZE(data->in_lsb); i++) {
  390. if ((i == 2 && data->chip_type == w83795adg) ||
  391. (i >= 4 && !(data->has_in & (1 << (i + 11)))))
  392. continue;
  393. data->in_lsb[i][IN_MAX] =
  394. w83795_read(client, IN_LSB_REG(i, IN_MAX));
  395. data->in_lsb[i][IN_LOW] =
  396. w83795_read(client, IN_LSB_REG(i, IN_LOW));
  397. }
  398. /* Read the fan limits */
  399. for (i = 0; i < ARRAY_SIZE(data->fan); i++) {
  400. u8 lsb;
  401. /* Each register contains LSB for 2 fans, but we want to
  402. * read it only once to save time */
  403. if ((i & 1) == 0 && (data->has_fan & (3 << i)))
  404. lsb = w83795_read(client, W83795_REG_FAN_MIN_LSB(i));
  405. if (!(data->has_fan & (1 << i)))
  406. continue;
  407. data->fan_min[i] =
  408. w83795_read(client, W83795_REG_FAN_MIN_HL(i)) << 4;
  409. data->fan_min[i] |=
  410. (lsb >> W83795_REG_FAN_MIN_LSB_SHIFT(i)) & 0x0F;
  411. }
  412. /* Read the temperature limits */
  413. for (i = 0; i < ARRAY_SIZE(data->temp); i++) {
  414. if (!(data->has_temp & (1 << i)))
  415. continue;
  416. for (limit = TEMP_CRIT; limit <= TEMP_WARN_HYST; limit++)
  417. data->temp[i][limit] =
  418. w83795_read(client, W83795_REG_TEMP[i][limit]);
  419. }
  420. /* Read the DTS limits */
  421. if (data->enable_dts != 0) {
  422. for (limit = DTS_CRIT; limit <= DTS_WARN_HYST; limit++)
  423. data->dts_ext[limit] =
  424. w83795_read(client, W83795_REG_DTS_EXT(limit));
  425. }
  426. /* Read beep settings */
  427. for (i = 0; i < ARRAY_SIZE(data->beeps); i++)
  428. data->beeps[i] = w83795_read(client, W83795_REG_BEEP(i));
  429. data->valid_limits = 1;
  430. }
  431. static struct w83795_data *w83795_update_pwm_config(struct device *dev)
  432. {
  433. struct i2c_client *client = to_i2c_client(dev);
  434. struct w83795_data *data = i2c_get_clientdata(client);
  435. int i, tmp;
  436. mutex_lock(&data->update_lock);
  437. if (data->valid_pwm_config)
  438. goto END;
  439. /* Read temperature source selection */
  440. for (i = 0; i < ARRAY_SIZE(data->temp_src); i++)
  441. data->temp_src[i] = w83795_read(client, W83795_REG_TSS(i));
  442. /* Read automatic fan speed control settings */
  443. data->pwm_fcms[0] = w83795_read(client, W83795_REG_FCMS1);
  444. data->pwm_fcms[1] = w83795_read(client, W83795_REG_FCMS2);
  445. for (i = 0; i < ARRAY_SIZE(data->pwm_tfmr); i++)
  446. data->pwm_tfmr[i] = w83795_read(client, W83795_REG_TFMR(i));
  447. data->pwm_fomc = w83795_read(client, W83795_REG_FOMC);
  448. for (i = 0; i < data->has_pwm; i++) {
  449. for (tmp = PWM_FREQ; tmp <= PWM_STOP_TIME; tmp++)
  450. data->pwm[i][tmp] =
  451. w83795_read(client, W83795_REG_PWM(i, tmp));
  452. }
  453. for (i = 0; i < ARRAY_SIZE(data->target_speed); i++) {
  454. data->target_speed[i] =
  455. w83795_read(client, W83795_REG_FTSH(i)) << 4;
  456. data->target_speed[i] |=
  457. w83795_read(client, W83795_REG_FTSL(i)) >> 4;
  458. }
  459. data->tol_speed = w83795_read(client, W83795_REG_TFTS) & 0x3f;
  460. for (i = 0; i < ARRAY_SIZE(data->pwm_temp); i++) {
  461. data->pwm_temp[i][TEMP_PWM_TTTI] =
  462. w83795_read(client, W83795_REG_TTTI(i)) & 0x7f;
  463. data->pwm_temp[i][TEMP_PWM_CTFS] =
  464. w83795_read(client, W83795_REG_CTFS(i));
  465. tmp = w83795_read(client, W83795_REG_HT(i));
  466. data->pwm_temp[i][TEMP_PWM_HCT] = (tmp >> 4) & 0x0f;
  467. data->pwm_temp[i][TEMP_PWM_HOT] = tmp & 0x0f;
  468. }
  469. /* Read SmartFanIV trip points */
  470. for (i = 0; i < ARRAY_SIZE(data->sf4_reg); i++) {
  471. for (tmp = 0; tmp < 7; tmp++) {
  472. data->sf4_reg[i][SF4_TEMP][tmp] =
  473. w83795_read(client,
  474. W83795_REG_SF4_TEMP(i, tmp));
  475. data->sf4_reg[i][SF4_PWM][tmp] =
  476. w83795_read(client, W83795_REG_SF4_PWM(i, tmp));
  477. }
  478. }
  479. /* Read setup PWM */
  480. for (i = 0; i < ARRAY_SIZE(data->setup_pwm); i++)
  481. data->setup_pwm[i] =
  482. w83795_read(client, W83795_REG_SETUP_PWM(i));
  483. data->valid_pwm_config = 1;
  484. END:
  485. mutex_unlock(&data->update_lock);
  486. return data;
  487. }
  488. static struct w83795_data *w83795_update_device(struct device *dev)
  489. {
  490. struct i2c_client *client = to_i2c_client(dev);
  491. struct w83795_data *data = i2c_get_clientdata(client);
  492. u16 tmp;
  493. int i;
  494. mutex_lock(&data->update_lock);
  495. if (!data->valid_limits)
  496. w83795_update_limits(client);
  497. if (!(time_after(jiffies, data->last_updated + HZ * 2)
  498. || !data->valid))
  499. goto END;
  500. /* Update the voltages value */
  501. for (i = 0; i < ARRAY_SIZE(data->in); i++) {
  502. if (!(data->has_in & (1 << i)))
  503. continue;
  504. tmp = w83795_read(client, W83795_REG_IN[i][IN_READ]) << 2;
  505. tmp |= w83795_read(client, W83795_REG_VRLSB) >> 6;
  506. data->in[i][IN_READ] = tmp;
  507. }
  508. /* in0-2 can have dynamic limits (W83795G only) */
  509. if (data->has_dyn_in) {
  510. u8 lsb_max = w83795_read(client, IN_LSB_REG(0, IN_MAX));
  511. u8 lsb_low = w83795_read(client, IN_LSB_REG(0, IN_LOW));
  512. for (i = 0; i < 3; i++) {
  513. if (!(data->has_dyn_in & (1 << i)))
  514. continue;
  515. data->in[i][IN_MAX] =
  516. w83795_read(client, W83795_REG_IN[i][IN_MAX]);
  517. data->in[i][IN_LOW] =
  518. w83795_read(client, W83795_REG_IN[i][IN_LOW]);
  519. data->in_lsb[i][IN_MAX] = (lsb_max >> (2 * i)) & 0x03;
  520. data->in_lsb[i][IN_LOW] = (lsb_low >> (2 * i)) & 0x03;
  521. }
  522. }
  523. /* Update fan */
  524. for (i = 0; i < ARRAY_SIZE(data->fan); i++) {
  525. if (!(data->has_fan & (1 << i)))
  526. continue;
  527. data->fan[i] = w83795_read(client, W83795_REG_FAN(i)) << 4;
  528. data->fan[i] |=
  529. (w83795_read(client, W83795_REG_VRLSB) >> 4) & 0x0F;
  530. }
  531. /* Update temperature */
  532. for (i = 0; i < ARRAY_SIZE(data->temp); i++) {
  533. data->temp[i][TEMP_READ] =
  534. w83795_read(client, W83795_REG_TEMP[i][TEMP_READ]);
  535. data->temp_read_vrlsb[i] =
  536. w83795_read(client, W83795_REG_VRLSB);
  537. }
  538. /* Update dts temperature */
  539. if (data->enable_dts != 0) {
  540. for (i = 0; i < ARRAY_SIZE(data->dts); i++) {
  541. if (!(data->has_dts & (1 << i)))
  542. continue;
  543. data->dts[i] =
  544. w83795_read(client, W83795_REG_DTS(i));
  545. data->dts_read_vrlsb[i] =
  546. w83795_read(client, W83795_REG_VRLSB);
  547. }
  548. }
  549. /* Update pwm output */
  550. for (i = 0; i < data->has_pwm; i++) {
  551. data->pwm[i][PWM_OUTPUT] =
  552. w83795_read(client, W83795_REG_PWM(i, PWM_OUTPUT));
  553. }
  554. /* update alarm */
  555. for (i = 0; i < ARRAY_SIZE(data->alarms); i++)
  556. data->alarms[i] = w83795_read(client, W83795_REG_ALARM(i));
  557. data->last_updated = jiffies;
  558. data->valid = 1;
  559. END:
  560. mutex_unlock(&data->update_lock);
  561. return data;
  562. }
  563. /*
  564. * Sysfs attributes
  565. */
  566. #define ALARM_STATUS 0
  567. #define BEEP_ENABLE 1
  568. static ssize_t
  569. show_alarm_beep(struct device *dev, struct device_attribute *attr, char *buf)
  570. {
  571. struct w83795_data *data = w83795_update_device(dev);
  572. struct sensor_device_attribute_2 *sensor_attr =
  573. to_sensor_dev_attr_2(attr);
  574. int nr = sensor_attr->nr;
  575. int index = sensor_attr->index >> 3;
  576. int bit = sensor_attr->index & 0x07;
  577. u8 val;
  578. if (ALARM_STATUS == nr) {
  579. val = (data->alarms[index] >> (bit)) & 1;
  580. } else { /* BEEP_ENABLE */
  581. val = (data->beeps[index] >> (bit)) & 1;
  582. }
  583. return sprintf(buf, "%u\n", val);
  584. }
  585. static ssize_t
  586. store_beep(struct device *dev, struct device_attribute *attr,
  587. const char *buf, size_t count)
  588. {
  589. struct i2c_client *client = to_i2c_client(dev);
  590. struct w83795_data *data = i2c_get_clientdata(client);
  591. struct sensor_device_attribute_2 *sensor_attr =
  592. to_sensor_dev_attr_2(attr);
  593. int index = sensor_attr->index >> 3;
  594. int shift = sensor_attr->index & 0x07;
  595. u8 beep_bit = 1 << shift;
  596. unsigned long val;
  597. if (strict_strtoul(buf, 10, &val) < 0)
  598. return -EINVAL;
  599. if (val != 0 && val != 1)
  600. return -EINVAL;
  601. mutex_lock(&data->update_lock);
  602. data->beeps[index] = w83795_read(client, W83795_REG_BEEP(index));
  603. data->beeps[index] &= ~beep_bit;
  604. data->beeps[index] |= val << shift;
  605. w83795_write(client, W83795_REG_BEEP(index), data->beeps[index]);
  606. mutex_unlock(&data->update_lock);
  607. return count;
  608. }
  609. /* Write any value to clear chassis alarm */
  610. static ssize_t
  611. store_chassis_clear(struct device *dev,
  612. struct device_attribute *attr, const char *buf,
  613. size_t count)
  614. {
  615. struct i2c_client *client = to_i2c_client(dev);
  616. struct w83795_data *data = i2c_get_clientdata(client);
  617. u8 val;
  618. mutex_lock(&data->update_lock);
  619. val = w83795_read(client, W83795_REG_CLR_CHASSIS);
  620. val |= 0x80;
  621. w83795_write(client, W83795_REG_CLR_CHASSIS, val);
  622. mutex_unlock(&data->update_lock);
  623. return count;
  624. }
  625. #define FAN_INPUT 0
  626. #define FAN_MIN 1
  627. static ssize_t
  628. show_fan(struct device *dev, struct device_attribute *attr, char *buf)
  629. {
  630. struct sensor_device_attribute_2 *sensor_attr =
  631. to_sensor_dev_attr_2(attr);
  632. int nr = sensor_attr->nr;
  633. int index = sensor_attr->index;
  634. struct w83795_data *data = w83795_update_device(dev);
  635. u16 val;
  636. if (FAN_INPUT == nr)
  637. val = data->fan[index] & 0x0fff;
  638. else
  639. val = data->fan_min[index] & 0x0fff;
  640. return sprintf(buf, "%lu\n", fan_from_reg(val));
  641. }
  642. static ssize_t
  643. store_fan_min(struct device *dev, struct device_attribute *attr,
  644. const char *buf, size_t count)
  645. {
  646. struct sensor_device_attribute_2 *sensor_attr =
  647. to_sensor_dev_attr_2(attr);
  648. int index = sensor_attr->index;
  649. struct i2c_client *client = to_i2c_client(dev);
  650. struct w83795_data *data = i2c_get_clientdata(client);
  651. unsigned long val;
  652. if (strict_strtoul(buf, 10, &val))
  653. return -EINVAL;
  654. val = fan_to_reg(val);
  655. mutex_lock(&data->update_lock);
  656. data->fan_min[index] = val;
  657. w83795_write(client, W83795_REG_FAN_MIN_HL(index), (val >> 4) & 0xff);
  658. val &= 0x0f;
  659. if (index & 1) {
  660. val <<= 4;
  661. val |= w83795_read(client, W83795_REG_FAN_MIN_LSB(index))
  662. & 0x0f;
  663. } else {
  664. val |= w83795_read(client, W83795_REG_FAN_MIN_LSB(index))
  665. & 0xf0;
  666. }
  667. w83795_write(client, W83795_REG_FAN_MIN_LSB(index), val & 0xff);
  668. mutex_unlock(&data->update_lock);
  669. return count;
  670. }
  671. static ssize_t
  672. show_pwm(struct device *dev, struct device_attribute *attr, char *buf)
  673. {
  674. struct w83795_data *data;
  675. struct sensor_device_attribute_2 *sensor_attr =
  676. to_sensor_dev_attr_2(attr);
  677. int nr = sensor_attr->nr;
  678. int index = sensor_attr->index;
  679. unsigned int val;
  680. data = nr == PWM_OUTPUT ? w83795_update_device(dev)
  681. : w83795_update_pwm_config(dev);
  682. switch (nr) {
  683. case PWM_STOP_TIME:
  684. val = time_from_reg(data->pwm[index][nr]);
  685. break;
  686. case PWM_FREQ:
  687. val = pwm_freq_from_reg(data->pwm[index][nr], data->clkin);
  688. break;
  689. default:
  690. val = data->pwm[index][nr];
  691. break;
  692. }
  693. return sprintf(buf, "%u\n", val);
  694. }
  695. static ssize_t
  696. store_pwm(struct device *dev, struct device_attribute *attr,
  697. const char *buf, size_t count)
  698. {
  699. struct i2c_client *client = to_i2c_client(dev);
  700. struct w83795_data *data = i2c_get_clientdata(client);
  701. struct sensor_device_attribute_2 *sensor_attr =
  702. to_sensor_dev_attr_2(attr);
  703. int nr = sensor_attr->nr;
  704. int index = sensor_attr->index;
  705. unsigned long val;
  706. if (strict_strtoul(buf, 10, &val) < 0)
  707. return -EINVAL;
  708. mutex_lock(&data->update_lock);
  709. switch (nr) {
  710. case PWM_STOP_TIME:
  711. val = time_to_reg(val);
  712. break;
  713. case PWM_FREQ:
  714. val = pwm_freq_to_reg(val, data->clkin);
  715. break;
  716. default:
  717. val = SENSORS_LIMIT(val, 0, 0xff);
  718. break;
  719. }
  720. w83795_write(client, W83795_REG_PWM(index, nr), val);
  721. data->pwm[index][nr] = val;
  722. mutex_unlock(&data->update_lock);
  723. return count;
  724. }
  725. static ssize_t
  726. show_pwm_enable(struct device *dev, struct device_attribute *attr, char *buf)
  727. {
  728. struct sensor_device_attribute_2 *sensor_attr =
  729. to_sensor_dev_attr_2(attr);
  730. struct w83795_data *data = w83795_update_pwm_config(dev);
  731. int index = sensor_attr->index;
  732. u8 tmp;
  733. if (1 == (data->pwm_fcms[0] & (1 << index))) {
  734. tmp = 2;
  735. goto out;
  736. }
  737. for (tmp = 0; tmp < 6; tmp++) {
  738. if (data->pwm_tfmr[tmp] & (1 << index)) {
  739. tmp = 3;
  740. goto out;
  741. }
  742. }
  743. if (data->pwm_fomc & (1 << index))
  744. tmp = 0;
  745. else
  746. tmp = 1;
  747. out:
  748. return sprintf(buf, "%u\n", tmp);
  749. }
  750. static ssize_t
  751. store_pwm_enable(struct device *dev, struct device_attribute *attr,
  752. const char *buf, size_t count)
  753. {
  754. struct i2c_client *client = to_i2c_client(dev);
  755. struct w83795_data *data = w83795_update_pwm_config(dev);
  756. struct sensor_device_attribute_2 *sensor_attr =
  757. to_sensor_dev_attr_2(attr);
  758. int index = sensor_attr->index;
  759. unsigned long val;
  760. int i;
  761. if (strict_strtoul(buf, 10, &val) < 0)
  762. return -EINVAL;
  763. if (val > 2)
  764. return -EINVAL;
  765. mutex_lock(&data->update_lock);
  766. switch (val) {
  767. case 0:
  768. case 1:
  769. data->pwm_fcms[0] &= ~(1 << index);
  770. w83795_write(client, W83795_REG_FCMS1, data->pwm_fcms[0]);
  771. for (i = 0; i < 6; i++) {
  772. data->pwm_tfmr[i] &= ~(1 << index);
  773. w83795_write(client, W83795_REG_TFMR(i),
  774. data->pwm_tfmr[i]);
  775. }
  776. data->pwm_fomc |= 1 << index;
  777. data->pwm_fomc ^= val << index;
  778. w83795_write(client, W83795_REG_FOMC, data->pwm_fomc);
  779. break;
  780. case 2:
  781. data->pwm_fcms[0] |= (1 << index);
  782. w83795_write(client, W83795_REG_FCMS1, data->pwm_fcms[0]);
  783. break;
  784. }
  785. mutex_unlock(&data->update_lock);
  786. return count;
  787. }
  788. static ssize_t
  789. show_temp_src(struct device *dev, struct device_attribute *attr, char *buf)
  790. {
  791. struct sensor_device_attribute_2 *sensor_attr =
  792. to_sensor_dev_attr_2(attr);
  793. struct w83795_data *data = w83795_update_pwm_config(dev);
  794. int index = sensor_attr->index;
  795. u8 val = index / 2;
  796. u8 tmp = data->temp_src[val];
  797. if (index & 1)
  798. val = 4;
  799. else
  800. val = 0;
  801. tmp >>= val;
  802. tmp &= 0x0f;
  803. return sprintf(buf, "%u\n", tmp);
  804. }
  805. static ssize_t
  806. store_temp_src(struct device *dev, struct device_attribute *attr,
  807. const char *buf, size_t count)
  808. {
  809. struct i2c_client *client = to_i2c_client(dev);
  810. struct w83795_data *data = w83795_update_pwm_config(dev);
  811. struct sensor_device_attribute_2 *sensor_attr =
  812. to_sensor_dev_attr_2(attr);
  813. int index = sensor_attr->index;
  814. unsigned long tmp;
  815. u8 val = index / 2;
  816. if (strict_strtoul(buf, 10, &tmp) < 0)
  817. return -EINVAL;
  818. tmp = SENSORS_LIMIT(tmp, 0, 15);
  819. mutex_lock(&data->update_lock);
  820. if (index & 1) {
  821. tmp <<= 4;
  822. data->temp_src[val] &= 0x0f;
  823. } else {
  824. data->temp_src[val] &= 0xf0;
  825. }
  826. data->temp_src[val] |= tmp;
  827. w83795_write(client, W83795_REG_TSS(val), data->temp_src[val]);
  828. mutex_unlock(&data->update_lock);
  829. return count;
  830. }
  831. #define TEMP_PWM_ENABLE 0
  832. #define TEMP_PWM_FAN_MAP 1
  833. static ssize_t
  834. show_temp_pwm_enable(struct device *dev, struct device_attribute *attr,
  835. char *buf)
  836. {
  837. struct w83795_data *data = w83795_update_pwm_config(dev);
  838. struct sensor_device_attribute_2 *sensor_attr =
  839. to_sensor_dev_attr_2(attr);
  840. int nr = sensor_attr->nr;
  841. int index = sensor_attr->index;
  842. u8 tmp = 0xff;
  843. switch (nr) {
  844. case TEMP_PWM_ENABLE:
  845. tmp = (data->pwm_fcms[1] >> index) & 1;
  846. if (tmp)
  847. tmp = 4;
  848. else
  849. tmp = 3;
  850. break;
  851. case TEMP_PWM_FAN_MAP:
  852. tmp = data->pwm_tfmr[index];
  853. break;
  854. }
  855. return sprintf(buf, "%u\n", tmp);
  856. }
  857. static ssize_t
  858. store_temp_pwm_enable(struct device *dev, struct device_attribute *attr,
  859. const char *buf, size_t count)
  860. {
  861. struct i2c_client *client = to_i2c_client(dev);
  862. struct w83795_data *data = w83795_update_pwm_config(dev);
  863. struct sensor_device_attribute_2 *sensor_attr =
  864. to_sensor_dev_attr_2(attr);
  865. int nr = sensor_attr->nr;
  866. int index = sensor_attr->index;
  867. unsigned long tmp;
  868. if (strict_strtoul(buf, 10, &tmp) < 0)
  869. return -EINVAL;
  870. switch (nr) {
  871. case TEMP_PWM_ENABLE:
  872. if ((tmp != 3) && (tmp != 4))
  873. return -EINVAL;
  874. tmp -= 3;
  875. mutex_lock(&data->update_lock);
  876. data->pwm_fcms[1] &= ~(1 << index);
  877. data->pwm_fcms[1] |= tmp << index;
  878. w83795_write(client, W83795_REG_FCMS2, data->pwm_fcms[1]);
  879. mutex_unlock(&data->update_lock);
  880. break;
  881. case TEMP_PWM_FAN_MAP:
  882. mutex_lock(&data->update_lock);
  883. tmp = SENSORS_LIMIT(tmp, 0, 0xff);
  884. w83795_write(client, W83795_REG_TFMR(index), tmp);
  885. data->pwm_tfmr[index] = tmp;
  886. mutex_unlock(&data->update_lock);
  887. break;
  888. }
  889. return count;
  890. }
  891. #define FANIN_TARGET 0
  892. #define FANIN_TOL 1
  893. static ssize_t
  894. show_fanin(struct device *dev, struct device_attribute *attr, char *buf)
  895. {
  896. struct w83795_data *data = w83795_update_pwm_config(dev);
  897. struct sensor_device_attribute_2 *sensor_attr =
  898. to_sensor_dev_attr_2(attr);
  899. int nr = sensor_attr->nr;
  900. int index = sensor_attr->index;
  901. u16 tmp = 0;
  902. switch (nr) {
  903. case FANIN_TARGET:
  904. tmp = fan_from_reg(data->target_speed[index]);
  905. break;
  906. case FANIN_TOL:
  907. tmp = data->tol_speed;
  908. break;
  909. }
  910. return sprintf(buf, "%u\n", tmp);
  911. }
  912. static ssize_t
  913. store_fanin(struct device *dev, struct device_attribute *attr,
  914. const char *buf, size_t count)
  915. {
  916. struct i2c_client *client = to_i2c_client(dev);
  917. struct w83795_data *data = i2c_get_clientdata(client);
  918. struct sensor_device_attribute_2 *sensor_attr =
  919. to_sensor_dev_attr_2(attr);
  920. int nr = sensor_attr->nr;
  921. int index = sensor_attr->index;
  922. unsigned long val;
  923. if (strict_strtoul(buf, 10, &val) < 0)
  924. return -EINVAL;
  925. mutex_lock(&data->update_lock);
  926. switch (nr) {
  927. case FANIN_TARGET:
  928. val = fan_to_reg(SENSORS_LIMIT(val, 0, 0xfff));
  929. w83795_write(client, W83795_REG_FTSH(index), (val >> 4) & 0xff);
  930. w83795_write(client, W83795_REG_FTSL(index), (val << 4) & 0xf0);
  931. data->target_speed[index] = val;
  932. break;
  933. case FANIN_TOL:
  934. val = SENSORS_LIMIT(val, 0, 0x3f);
  935. w83795_write(client, W83795_REG_TFTS, val);
  936. data->tol_speed = val;
  937. break;
  938. }
  939. mutex_unlock(&data->update_lock);
  940. return count;
  941. }
  942. static ssize_t
  943. show_temp_pwm(struct device *dev, struct device_attribute *attr, char *buf)
  944. {
  945. struct w83795_data *data = w83795_update_pwm_config(dev);
  946. struct sensor_device_attribute_2 *sensor_attr =
  947. to_sensor_dev_attr_2(attr);
  948. int nr = sensor_attr->nr;
  949. int index = sensor_attr->index;
  950. long tmp = temp_from_reg(data->pwm_temp[index][nr]);
  951. return sprintf(buf, "%ld\n", tmp);
  952. }
  953. static ssize_t
  954. store_temp_pwm(struct device *dev, struct device_attribute *attr,
  955. const char *buf, size_t count)
  956. {
  957. struct i2c_client *client = to_i2c_client(dev);
  958. struct w83795_data *data = i2c_get_clientdata(client);
  959. struct sensor_device_attribute_2 *sensor_attr =
  960. to_sensor_dev_attr_2(attr);
  961. int nr = sensor_attr->nr;
  962. int index = sensor_attr->index;
  963. unsigned long val;
  964. u8 tmp;
  965. if (strict_strtoul(buf, 10, &val) < 0)
  966. return -EINVAL;
  967. val /= 1000;
  968. mutex_lock(&data->update_lock);
  969. switch (nr) {
  970. case TEMP_PWM_TTTI:
  971. val = SENSORS_LIMIT(val, 0, 0x7f);
  972. w83795_write(client, W83795_REG_TTTI(index), val);
  973. break;
  974. case TEMP_PWM_CTFS:
  975. val = SENSORS_LIMIT(val, 0, 0x7f);
  976. w83795_write(client, W83795_REG_CTFS(index), val);
  977. break;
  978. case TEMP_PWM_HCT:
  979. val = SENSORS_LIMIT(val, 0, 0x0f);
  980. tmp = w83795_read(client, W83795_REG_HT(index));
  981. tmp &= 0x0f;
  982. tmp |= (val << 4) & 0xf0;
  983. w83795_write(client, W83795_REG_HT(index), tmp);
  984. break;
  985. case TEMP_PWM_HOT:
  986. val = SENSORS_LIMIT(val, 0, 0x0f);
  987. tmp = w83795_read(client, W83795_REG_HT(index));
  988. tmp &= 0xf0;
  989. tmp |= val & 0x0f;
  990. w83795_write(client, W83795_REG_HT(index), tmp);
  991. break;
  992. }
  993. data->pwm_temp[index][nr] = val;
  994. mutex_unlock(&data->update_lock);
  995. return count;
  996. }
  997. static ssize_t
  998. show_sf4_pwm(struct device *dev, struct device_attribute *attr, char *buf)
  999. {
  1000. struct w83795_data *data = w83795_update_pwm_config(dev);
  1001. struct sensor_device_attribute_2 *sensor_attr =
  1002. to_sensor_dev_attr_2(attr);
  1003. int nr = sensor_attr->nr;
  1004. int index = sensor_attr->index;
  1005. return sprintf(buf, "%u\n", data->sf4_reg[index][SF4_PWM][nr]);
  1006. }
  1007. static ssize_t
  1008. store_sf4_pwm(struct device *dev, struct device_attribute *attr,
  1009. const char *buf, size_t count)
  1010. {
  1011. struct i2c_client *client = to_i2c_client(dev);
  1012. struct w83795_data *data = i2c_get_clientdata(client);
  1013. struct sensor_device_attribute_2 *sensor_attr =
  1014. to_sensor_dev_attr_2(attr);
  1015. int nr = sensor_attr->nr;
  1016. int index = sensor_attr->index;
  1017. unsigned long val;
  1018. if (strict_strtoul(buf, 10, &val) < 0)
  1019. return -EINVAL;
  1020. mutex_lock(&data->update_lock);
  1021. w83795_write(client, W83795_REG_SF4_PWM(index, nr), val);
  1022. data->sf4_reg[index][SF4_PWM][nr] = val;
  1023. mutex_unlock(&data->update_lock);
  1024. return count;
  1025. }
  1026. static ssize_t
  1027. show_sf4_temp(struct device *dev, struct device_attribute *attr, char *buf)
  1028. {
  1029. struct w83795_data *data = w83795_update_pwm_config(dev);
  1030. struct sensor_device_attribute_2 *sensor_attr =
  1031. to_sensor_dev_attr_2(attr);
  1032. int nr = sensor_attr->nr;
  1033. int index = sensor_attr->index;
  1034. return sprintf(buf, "%u\n",
  1035. (data->sf4_reg[index][SF4_TEMP][nr]) * 1000);
  1036. }
  1037. static ssize_t
  1038. store_sf4_temp(struct device *dev, struct device_attribute *attr,
  1039. const char *buf, size_t count)
  1040. {
  1041. struct i2c_client *client = to_i2c_client(dev);
  1042. struct w83795_data *data = i2c_get_clientdata(client);
  1043. struct sensor_device_attribute_2 *sensor_attr =
  1044. to_sensor_dev_attr_2(attr);
  1045. int nr = sensor_attr->nr;
  1046. int index = sensor_attr->index;
  1047. unsigned long val;
  1048. if (strict_strtoul(buf, 10, &val) < 0)
  1049. return -EINVAL;
  1050. val /= 1000;
  1051. mutex_lock(&data->update_lock);
  1052. w83795_write(client, W83795_REG_SF4_TEMP(index, nr), val);
  1053. data->sf4_reg[index][SF4_TEMP][nr] = val;
  1054. mutex_unlock(&data->update_lock);
  1055. return count;
  1056. }
  1057. static ssize_t
  1058. show_temp(struct device *dev, struct device_attribute *attr, char *buf)
  1059. {
  1060. struct sensor_device_attribute_2 *sensor_attr =
  1061. to_sensor_dev_attr_2(attr);
  1062. int nr = sensor_attr->nr;
  1063. int index = sensor_attr->index;
  1064. struct w83795_data *data = w83795_update_device(dev);
  1065. long temp = temp_from_reg(data->temp[index][nr]);
  1066. if (TEMP_READ == nr)
  1067. temp += (data->temp_read_vrlsb[index] >> 6) * 250;
  1068. return sprintf(buf, "%ld\n", temp);
  1069. }
  1070. static ssize_t
  1071. store_temp(struct device *dev, struct device_attribute *attr,
  1072. const char *buf, size_t count)
  1073. {
  1074. struct sensor_device_attribute_2 *sensor_attr =
  1075. to_sensor_dev_attr_2(attr);
  1076. int nr = sensor_attr->nr;
  1077. int index = sensor_attr->index;
  1078. struct i2c_client *client = to_i2c_client(dev);
  1079. struct w83795_data *data = i2c_get_clientdata(client);
  1080. long tmp;
  1081. if (strict_strtol(buf, 10, &tmp) < 0)
  1082. return -EINVAL;
  1083. mutex_lock(&data->update_lock);
  1084. data->temp[index][nr] = temp_to_reg(tmp, -128, 127);
  1085. w83795_write(client, W83795_REG_TEMP[index][nr], data->temp[index][nr]);
  1086. mutex_unlock(&data->update_lock);
  1087. return count;
  1088. }
  1089. static ssize_t
  1090. show_dts_mode(struct device *dev, struct device_attribute *attr, char *buf)
  1091. {
  1092. struct w83795_data *data = dev_get_drvdata(dev);
  1093. int tmp;
  1094. if (data->enable_dts & 2)
  1095. tmp = 5;
  1096. else
  1097. tmp = 6;
  1098. return sprintf(buf, "%d\n", tmp);
  1099. }
  1100. static ssize_t
  1101. show_dts(struct device *dev, struct device_attribute *attr, char *buf)
  1102. {
  1103. struct sensor_device_attribute_2 *sensor_attr =
  1104. to_sensor_dev_attr_2(attr);
  1105. int index = sensor_attr->index;
  1106. struct w83795_data *data = w83795_update_device(dev);
  1107. long temp = temp_from_reg(data->dts[index]);
  1108. temp += (data->dts_read_vrlsb[index] >> 6) * 250;
  1109. return sprintf(buf, "%ld\n", temp);
  1110. }
  1111. static ssize_t
  1112. show_dts_ext(struct device *dev, struct device_attribute *attr, char *buf)
  1113. {
  1114. struct sensor_device_attribute_2 *sensor_attr =
  1115. to_sensor_dev_attr_2(attr);
  1116. int nr = sensor_attr->nr;
  1117. struct w83795_data *data = dev_get_drvdata(dev);
  1118. long temp = temp_from_reg(data->dts_ext[nr]);
  1119. return sprintf(buf, "%ld\n", temp);
  1120. }
  1121. static ssize_t
  1122. store_dts_ext(struct device *dev, struct device_attribute *attr,
  1123. const char *buf, size_t count)
  1124. {
  1125. struct sensor_device_attribute_2 *sensor_attr =
  1126. to_sensor_dev_attr_2(attr);
  1127. int nr = sensor_attr->nr;
  1128. struct i2c_client *client = to_i2c_client(dev);
  1129. struct w83795_data *data = i2c_get_clientdata(client);
  1130. long tmp;
  1131. if (strict_strtol(buf, 10, &tmp) < 0)
  1132. return -EINVAL;
  1133. mutex_lock(&data->update_lock);
  1134. data->dts_ext[nr] = temp_to_reg(tmp, -128, 127);
  1135. w83795_write(client, W83795_REG_DTS_EXT(nr), data->dts_ext[nr]);
  1136. mutex_unlock(&data->update_lock);
  1137. return count;
  1138. }
  1139. static ssize_t
  1140. show_temp_mode(struct device *dev, struct device_attribute *attr, char *buf)
  1141. {
  1142. struct w83795_data *data = dev_get_drvdata(dev);
  1143. struct sensor_device_attribute_2 *sensor_attr =
  1144. to_sensor_dev_attr_2(attr);
  1145. int index = sensor_attr->index;
  1146. int tmp;
  1147. if (data->temp_mode & (1 << index))
  1148. tmp = 3; /* Thermal diode */
  1149. else
  1150. tmp = 4; /* Thermistor */
  1151. return sprintf(buf, "%d\n", tmp);
  1152. }
  1153. /* Only for temp1-4 (temp5-6 can only be thermistor) */
  1154. static ssize_t
  1155. store_temp_mode(struct device *dev, struct device_attribute *attr,
  1156. const char *buf, size_t count)
  1157. {
  1158. struct i2c_client *client = to_i2c_client(dev);
  1159. struct w83795_data *data = i2c_get_clientdata(client);
  1160. struct sensor_device_attribute_2 *sensor_attr =
  1161. to_sensor_dev_attr_2(attr);
  1162. int index = sensor_attr->index;
  1163. int reg_shift;
  1164. unsigned long val;
  1165. u8 tmp;
  1166. if (strict_strtoul(buf, 10, &val) < 0)
  1167. return -EINVAL;
  1168. if ((val != 4) && (val != 3))
  1169. return -EINVAL;
  1170. mutex_lock(&data->update_lock);
  1171. if (val == 3) {
  1172. /* Thermal diode */
  1173. val = 0x01;
  1174. data->temp_mode |= 1 << index;
  1175. } else if (val == 4) {
  1176. /* Thermistor */
  1177. val = 0x03;
  1178. data->temp_mode &= ~(1 << index);
  1179. }
  1180. reg_shift = 2 * index;
  1181. tmp = w83795_read(client, W83795_REG_TEMP_CTRL2);
  1182. tmp &= ~(0x03 << reg_shift);
  1183. tmp |= val << reg_shift;
  1184. w83795_write(client, W83795_REG_TEMP_CTRL2, tmp);
  1185. mutex_unlock(&data->update_lock);
  1186. return count;
  1187. }
  1188. /* show/store VIN */
  1189. static ssize_t
  1190. show_in(struct device *dev, struct device_attribute *attr, char *buf)
  1191. {
  1192. struct sensor_device_attribute_2 *sensor_attr =
  1193. to_sensor_dev_attr_2(attr);
  1194. int nr = sensor_attr->nr;
  1195. int index = sensor_attr->index;
  1196. struct w83795_data *data = w83795_update_device(dev);
  1197. u16 val = data->in[index][nr];
  1198. u8 lsb_idx;
  1199. switch (nr) {
  1200. case IN_READ:
  1201. /* calculate this value again by sensors as sensors3.conf */
  1202. if ((index >= 17) &&
  1203. !((data->has_gain >> (index - 17)) & 1))
  1204. val *= 8;
  1205. break;
  1206. case IN_MAX:
  1207. case IN_LOW:
  1208. lsb_idx = IN_LSB_SHIFT_IDX[index][IN_LSB_IDX];
  1209. val <<= 2;
  1210. val |= (data->in_lsb[lsb_idx][nr] >>
  1211. IN_LSB_SHIFT_IDX[lsb_idx][IN_LSB_SHIFT]) & 0x03;
  1212. if ((index >= 17) &&
  1213. !((data->has_gain >> (index - 17)) & 1))
  1214. val *= 8;
  1215. break;
  1216. }
  1217. val = in_from_reg(index, val);
  1218. return sprintf(buf, "%d\n", val);
  1219. }
  1220. static ssize_t
  1221. store_in(struct device *dev, struct device_attribute *attr,
  1222. const char *buf, size_t count)
  1223. {
  1224. struct sensor_device_attribute_2 *sensor_attr =
  1225. to_sensor_dev_attr_2(attr);
  1226. int nr = sensor_attr->nr;
  1227. int index = sensor_attr->index;
  1228. struct i2c_client *client = to_i2c_client(dev);
  1229. struct w83795_data *data = i2c_get_clientdata(client);
  1230. unsigned long val;
  1231. u8 tmp;
  1232. u8 lsb_idx;
  1233. if (strict_strtoul(buf, 10, &val) < 0)
  1234. return -EINVAL;
  1235. val = in_to_reg(index, val);
  1236. if ((index >= 17) &&
  1237. !((data->has_gain >> (index - 17)) & 1))
  1238. val /= 8;
  1239. val = SENSORS_LIMIT(val, 0, 0x3FF);
  1240. mutex_lock(&data->update_lock);
  1241. lsb_idx = IN_LSB_SHIFT_IDX[index][IN_LSB_IDX];
  1242. tmp = w83795_read(client, IN_LSB_REG(lsb_idx, nr));
  1243. tmp &= ~(0x03 << IN_LSB_SHIFT_IDX[index][IN_LSB_SHIFT]);
  1244. tmp |= (val & 0x03) << IN_LSB_SHIFT_IDX[index][IN_LSB_SHIFT];
  1245. w83795_write(client, IN_LSB_REG(lsb_idx, nr), tmp);
  1246. data->in_lsb[lsb_idx][nr] = tmp;
  1247. tmp = (val >> 2) & 0xff;
  1248. w83795_write(client, W83795_REG_IN[index][nr], tmp);
  1249. data->in[index][nr] = tmp;
  1250. mutex_unlock(&data->update_lock);
  1251. return count;
  1252. }
  1253. static ssize_t
  1254. show_sf_setup(struct device *dev, struct device_attribute *attr, char *buf)
  1255. {
  1256. struct sensor_device_attribute_2 *sensor_attr =
  1257. to_sensor_dev_attr_2(attr);
  1258. int nr = sensor_attr->nr;
  1259. struct w83795_data *data = w83795_update_pwm_config(dev);
  1260. u16 val = data->setup_pwm[nr];
  1261. switch (nr) {
  1262. case SETUP_PWM_UPTIME:
  1263. case SETUP_PWM_DOWNTIME:
  1264. val = time_from_reg(val);
  1265. break;
  1266. }
  1267. return sprintf(buf, "%d\n", val);
  1268. }
  1269. static ssize_t
  1270. store_sf_setup(struct device *dev, struct device_attribute *attr,
  1271. const char *buf, size_t count)
  1272. {
  1273. struct sensor_device_attribute_2 *sensor_attr =
  1274. to_sensor_dev_attr_2(attr);
  1275. int nr = sensor_attr->nr;
  1276. struct i2c_client *client = to_i2c_client(dev);
  1277. struct w83795_data *data = i2c_get_clientdata(client);
  1278. unsigned long val;
  1279. if (strict_strtoul(buf, 10, &val) < 0)
  1280. return -EINVAL;
  1281. switch (nr) {
  1282. case SETUP_PWM_DEFAULT:
  1283. val = SENSORS_LIMIT(val, 0, 0xff);
  1284. break;
  1285. case SETUP_PWM_UPTIME:
  1286. case SETUP_PWM_DOWNTIME:
  1287. val = time_to_reg(val);
  1288. if (val == 0)
  1289. return -EINVAL;
  1290. break;
  1291. }
  1292. mutex_lock(&data->update_lock);
  1293. data->setup_pwm[nr] = val;
  1294. w83795_write(client, W83795_REG_SETUP_PWM(nr), val);
  1295. mutex_unlock(&data->update_lock);
  1296. return count;
  1297. }
  1298. #define NOT_USED -1
  1299. /* Don't change the attribute order, _max and _min are accessed by index
  1300. * somewhere else in the code */
  1301. #define SENSOR_ATTR_IN(index) { \
  1302. SENSOR_ATTR_2(in##index##_input, S_IRUGO, show_in, NULL, \
  1303. IN_READ, index), \
  1304. SENSOR_ATTR_2(in##index##_max, S_IRUGO | S_IWUSR, show_in, \
  1305. store_in, IN_MAX, index), \
  1306. SENSOR_ATTR_2(in##index##_min, S_IRUGO | S_IWUSR, show_in, \
  1307. store_in, IN_LOW, index), \
  1308. SENSOR_ATTR_2(in##index##_alarm, S_IRUGO, show_alarm_beep, \
  1309. NULL, ALARM_STATUS, index + ((index > 14) ? 1 : 0)), \
  1310. SENSOR_ATTR_2(in##index##_beep, S_IWUSR | S_IRUGO, \
  1311. show_alarm_beep, store_beep, BEEP_ENABLE, \
  1312. index + ((index > 14) ? 1 : 0)) }
  1313. #define SENSOR_ATTR_FAN(index) { \
  1314. SENSOR_ATTR_2(fan##index##_input, S_IRUGO, show_fan, \
  1315. NULL, FAN_INPUT, index - 1), \
  1316. SENSOR_ATTR_2(fan##index##_min, S_IWUSR | S_IRUGO, \
  1317. show_fan, store_fan_min, FAN_MIN, index - 1), \
  1318. SENSOR_ATTR_2(fan##index##_alarm, S_IRUGO, show_alarm_beep, \
  1319. NULL, ALARM_STATUS, index + 31), \
  1320. SENSOR_ATTR_2(fan##index##_beep, S_IWUSR | S_IRUGO, \
  1321. show_alarm_beep, store_beep, BEEP_ENABLE, index + 31) }
  1322. #define SENSOR_ATTR_PWM(index) { \
  1323. SENSOR_ATTR_2(pwm##index, S_IWUSR | S_IRUGO, show_pwm, \
  1324. store_pwm, PWM_OUTPUT, index - 1), \
  1325. SENSOR_ATTR_2(pwm##index##_nonstop, S_IWUSR | S_IRUGO, \
  1326. show_pwm, store_pwm, PWM_NONSTOP, index - 1), \
  1327. SENSOR_ATTR_2(pwm##index##_start, S_IWUSR | S_IRUGO, \
  1328. show_pwm, store_pwm, PWM_START, index - 1), \
  1329. SENSOR_ATTR_2(pwm##index##_stop_time, S_IWUSR | S_IRUGO, \
  1330. show_pwm, store_pwm, PWM_STOP_TIME, index - 1), \
  1331. SENSOR_ATTR_2(pwm##index##_freq, S_IWUSR | S_IRUGO, \
  1332. show_pwm, store_pwm, PWM_FREQ, index - 1), \
  1333. SENSOR_ATTR_2(pwm##index##_enable, S_IWUSR | S_IRUGO, \
  1334. show_pwm_enable, store_pwm_enable, NOT_USED, index - 1), \
  1335. SENSOR_ATTR_2(fan##index##_target, S_IWUSR | S_IRUGO, \
  1336. show_fanin, store_fanin, FANIN_TARGET, index - 1) }
  1337. #define SENSOR_ATTR_DTS(index) { \
  1338. SENSOR_ATTR_2(temp##index##_type, S_IRUGO , \
  1339. show_dts_mode, NULL, NOT_USED, index - 7), \
  1340. SENSOR_ATTR_2(temp##index##_input, S_IRUGO, show_dts, \
  1341. NULL, NOT_USED, index - 7), \
  1342. SENSOR_ATTR_2(temp##index##_crit, S_IRUGO | S_IWUSR, show_dts_ext, \
  1343. store_dts_ext, DTS_CRIT, NOT_USED), \
  1344. SENSOR_ATTR_2(temp##index##_crit_hyst, S_IRUGO | S_IWUSR, \
  1345. show_dts_ext, store_dts_ext, DTS_CRIT_HYST, NOT_USED), \
  1346. SENSOR_ATTR_2(temp##index##_max, S_IRUGO | S_IWUSR, show_dts_ext, \
  1347. store_dts_ext, DTS_WARN, NOT_USED), \
  1348. SENSOR_ATTR_2(temp##index##_max_hyst, S_IRUGO | S_IWUSR, \
  1349. show_dts_ext, store_dts_ext, DTS_WARN_HYST, NOT_USED), \
  1350. SENSOR_ATTR_2(temp##index##_alarm, S_IRUGO, \
  1351. show_alarm_beep, NULL, ALARM_STATUS, index + 17), \
  1352. SENSOR_ATTR_2(temp##index##_beep, S_IWUSR | S_IRUGO, \
  1353. show_alarm_beep, store_beep, BEEP_ENABLE, index + 17) }
  1354. #define SENSOR_ATTR_TEMP(index) { \
  1355. SENSOR_ATTR_2(temp##index##_type, S_IRUGO | (index < 4 ? S_IWUSR : 0), \
  1356. show_temp_mode, store_temp_mode, NOT_USED, index - 1), \
  1357. SENSOR_ATTR_2(temp##index##_input, S_IRUGO, show_temp, \
  1358. NULL, TEMP_READ, index - 1), \
  1359. SENSOR_ATTR_2(temp##index##_crit, S_IRUGO | S_IWUSR, show_temp, \
  1360. store_temp, TEMP_CRIT, index - 1), \
  1361. SENSOR_ATTR_2(temp##index##_crit_hyst, S_IRUGO | S_IWUSR, \
  1362. show_temp, store_temp, TEMP_CRIT_HYST, index - 1), \
  1363. SENSOR_ATTR_2(temp##index##_max, S_IRUGO | S_IWUSR, show_temp, \
  1364. store_temp, TEMP_WARN, index - 1), \
  1365. SENSOR_ATTR_2(temp##index##_max_hyst, S_IRUGO | S_IWUSR, \
  1366. show_temp, store_temp, TEMP_WARN_HYST, index - 1), \
  1367. SENSOR_ATTR_2(temp##index##_alarm, S_IRUGO, \
  1368. show_alarm_beep, NULL, ALARM_STATUS, \
  1369. index + (index > 4 ? 11 : 17)), \
  1370. SENSOR_ATTR_2(temp##index##_beep, S_IWUSR | S_IRUGO, \
  1371. show_alarm_beep, store_beep, BEEP_ENABLE, \
  1372. index + (index > 4 ? 11 : 17)), \
  1373. SENSOR_ATTR_2(temp##index##_source_sel, S_IWUSR | S_IRUGO, \
  1374. show_temp_src, store_temp_src, NOT_USED, index - 1), \
  1375. SENSOR_ATTR_2(temp##index##_pwm_enable, S_IWUSR | S_IRUGO, \
  1376. show_temp_pwm_enable, store_temp_pwm_enable, \
  1377. TEMP_PWM_ENABLE, index - 1), \
  1378. SENSOR_ATTR_2(temp##index##_auto_channels_pwm, S_IWUSR | S_IRUGO, \
  1379. show_temp_pwm_enable, store_temp_pwm_enable, \
  1380. TEMP_PWM_FAN_MAP, index - 1), \
  1381. SENSOR_ATTR_2(thermal_cruise##index, S_IWUSR | S_IRUGO, \
  1382. show_temp_pwm, store_temp_pwm, TEMP_PWM_TTTI, index - 1), \
  1383. SENSOR_ATTR_2(temp##index##_warn, S_IWUSR | S_IRUGO, \
  1384. show_temp_pwm, store_temp_pwm, TEMP_PWM_CTFS, index - 1), \
  1385. SENSOR_ATTR_2(temp##index##_warn_hyst, S_IWUSR | S_IRUGO, \
  1386. show_temp_pwm, store_temp_pwm, TEMP_PWM_HCT, index - 1), \
  1387. SENSOR_ATTR_2(temp##index##_operation_hyst, S_IWUSR | S_IRUGO, \
  1388. show_temp_pwm, store_temp_pwm, TEMP_PWM_HOT, index - 1), \
  1389. SENSOR_ATTR_2(temp##index##_auto_point1_pwm, S_IRUGO | S_IWUSR, \
  1390. show_sf4_pwm, store_sf4_pwm, 0, index - 1), \
  1391. SENSOR_ATTR_2(temp##index##_auto_point2_pwm, S_IRUGO | S_IWUSR, \
  1392. show_sf4_pwm, store_sf4_pwm, 1, index - 1), \
  1393. SENSOR_ATTR_2(temp##index##_auto_point3_pwm, S_IRUGO | S_IWUSR, \
  1394. show_sf4_pwm, store_sf4_pwm, 2, index - 1), \
  1395. SENSOR_ATTR_2(temp##index##_auto_point4_pwm, S_IRUGO | S_IWUSR, \
  1396. show_sf4_pwm, store_sf4_pwm, 3, index - 1), \
  1397. SENSOR_ATTR_2(temp##index##_auto_point5_pwm, S_IRUGO | S_IWUSR, \
  1398. show_sf4_pwm, store_sf4_pwm, 4, index - 1), \
  1399. SENSOR_ATTR_2(temp##index##_auto_point6_pwm, S_IRUGO | S_IWUSR, \
  1400. show_sf4_pwm, store_sf4_pwm, 5, index - 1), \
  1401. SENSOR_ATTR_2(temp##index##_auto_point7_pwm, S_IRUGO | S_IWUSR, \
  1402. show_sf4_pwm, store_sf4_pwm, 6, index - 1), \
  1403. SENSOR_ATTR_2(temp##index##_auto_point1_temp, S_IRUGO | S_IWUSR,\
  1404. show_sf4_temp, store_sf4_temp, 0, index - 1), \
  1405. SENSOR_ATTR_2(temp##index##_auto_point2_temp, S_IRUGO | S_IWUSR,\
  1406. show_sf4_temp, store_sf4_temp, 1, index - 1), \
  1407. SENSOR_ATTR_2(temp##index##_auto_point3_temp, S_IRUGO | S_IWUSR,\
  1408. show_sf4_temp, store_sf4_temp, 2, index - 1), \
  1409. SENSOR_ATTR_2(temp##index##_auto_point4_temp, S_IRUGO | S_IWUSR,\
  1410. show_sf4_temp, store_sf4_temp, 3, index - 1), \
  1411. SENSOR_ATTR_2(temp##index##_auto_point5_temp, S_IRUGO | S_IWUSR,\
  1412. show_sf4_temp, store_sf4_temp, 4, index - 1), \
  1413. SENSOR_ATTR_2(temp##index##_auto_point6_temp, S_IRUGO | S_IWUSR,\
  1414. show_sf4_temp, store_sf4_temp, 5, index - 1), \
  1415. SENSOR_ATTR_2(temp##index##_auto_point7_temp, S_IRUGO | S_IWUSR,\
  1416. show_sf4_temp, store_sf4_temp, 6, index - 1) }
  1417. static struct sensor_device_attribute_2 w83795_in[][5] = {
  1418. SENSOR_ATTR_IN(0),
  1419. SENSOR_ATTR_IN(1),
  1420. SENSOR_ATTR_IN(2),
  1421. SENSOR_ATTR_IN(3),
  1422. SENSOR_ATTR_IN(4),
  1423. SENSOR_ATTR_IN(5),
  1424. SENSOR_ATTR_IN(6),
  1425. SENSOR_ATTR_IN(7),
  1426. SENSOR_ATTR_IN(8),
  1427. SENSOR_ATTR_IN(9),
  1428. SENSOR_ATTR_IN(10),
  1429. SENSOR_ATTR_IN(11),
  1430. SENSOR_ATTR_IN(12),
  1431. SENSOR_ATTR_IN(13),
  1432. SENSOR_ATTR_IN(14),
  1433. SENSOR_ATTR_IN(15),
  1434. SENSOR_ATTR_IN(16),
  1435. SENSOR_ATTR_IN(17),
  1436. SENSOR_ATTR_IN(18),
  1437. SENSOR_ATTR_IN(19),
  1438. SENSOR_ATTR_IN(20),
  1439. };
  1440. static const struct sensor_device_attribute_2 w83795_fan[][4] = {
  1441. SENSOR_ATTR_FAN(1),
  1442. SENSOR_ATTR_FAN(2),
  1443. SENSOR_ATTR_FAN(3),
  1444. SENSOR_ATTR_FAN(4),
  1445. SENSOR_ATTR_FAN(5),
  1446. SENSOR_ATTR_FAN(6),
  1447. SENSOR_ATTR_FAN(7),
  1448. SENSOR_ATTR_FAN(8),
  1449. SENSOR_ATTR_FAN(9),
  1450. SENSOR_ATTR_FAN(10),
  1451. SENSOR_ATTR_FAN(11),
  1452. SENSOR_ATTR_FAN(12),
  1453. SENSOR_ATTR_FAN(13),
  1454. SENSOR_ATTR_FAN(14),
  1455. };
  1456. static const struct sensor_device_attribute_2 w83795_temp[][29] = {
  1457. SENSOR_ATTR_TEMP(1),
  1458. SENSOR_ATTR_TEMP(2),
  1459. SENSOR_ATTR_TEMP(3),
  1460. SENSOR_ATTR_TEMP(4),
  1461. SENSOR_ATTR_TEMP(5),
  1462. SENSOR_ATTR_TEMP(6),
  1463. };
  1464. static const struct sensor_device_attribute_2 w83795_dts[][8] = {
  1465. SENSOR_ATTR_DTS(7),
  1466. SENSOR_ATTR_DTS(8),
  1467. SENSOR_ATTR_DTS(9),
  1468. SENSOR_ATTR_DTS(10),
  1469. SENSOR_ATTR_DTS(11),
  1470. SENSOR_ATTR_DTS(12),
  1471. SENSOR_ATTR_DTS(13),
  1472. SENSOR_ATTR_DTS(14),
  1473. };
  1474. static const struct sensor_device_attribute_2 w83795_pwm[][7] = {
  1475. SENSOR_ATTR_PWM(1),
  1476. SENSOR_ATTR_PWM(2),
  1477. SENSOR_ATTR_PWM(3),
  1478. SENSOR_ATTR_PWM(4),
  1479. SENSOR_ATTR_PWM(5),
  1480. SENSOR_ATTR_PWM(6),
  1481. SENSOR_ATTR_PWM(7),
  1482. SENSOR_ATTR_PWM(8),
  1483. };
  1484. static const struct sensor_device_attribute_2 sda_single_files[] = {
  1485. SENSOR_ATTR_2(chassis, S_IWUSR | S_IRUGO, show_alarm_beep,
  1486. store_chassis_clear, ALARM_STATUS, 46),
  1487. SENSOR_ATTR_2(beep_enable, S_IWUSR | S_IRUGO, show_alarm_beep,
  1488. store_beep, BEEP_ENABLE, 47),
  1489. SENSOR_ATTR_2(speed_cruise_tolerance, S_IWUSR | S_IRUGO, show_fanin,
  1490. store_fanin, FANIN_TOL, NOT_USED),
  1491. SENSOR_ATTR_2(pwm_default, S_IWUSR | S_IRUGO, show_sf_setup,
  1492. store_sf_setup, SETUP_PWM_DEFAULT, NOT_USED),
  1493. SENSOR_ATTR_2(pwm_uptime, S_IWUSR | S_IRUGO, show_sf_setup,
  1494. store_sf_setup, SETUP_PWM_UPTIME, NOT_USED),
  1495. SENSOR_ATTR_2(pwm_downtime, S_IWUSR | S_IRUGO, show_sf_setup,
  1496. store_sf_setup, SETUP_PWM_DOWNTIME, NOT_USED),
  1497. };
  1498. /*
  1499. * Driver interface
  1500. */
  1501. static void w83795_init_client(struct i2c_client *client)
  1502. {
  1503. struct w83795_data *data = i2c_get_clientdata(client);
  1504. static const u16 clkin[4] = { /* in kHz */
  1505. 14318, 24000, 33333, 48000
  1506. };
  1507. u8 config;
  1508. if (reset)
  1509. w83795_write(client, W83795_REG_CONFIG, 0x80);
  1510. /* Start monitoring if needed */
  1511. config = w83795_read(client, W83795_REG_CONFIG);
  1512. if (!(config & W83795_REG_CONFIG_START)) {
  1513. dev_info(&client->dev, "Enabling monitoring operations\n");
  1514. w83795_write(client, W83795_REG_CONFIG,
  1515. config | W83795_REG_CONFIG_START);
  1516. }
  1517. data->clkin = clkin[(config >> 3) & 0x3];
  1518. dev_dbg(&client->dev, "clkin = %u kHz\n", data->clkin);
  1519. }
  1520. static int w83795_get_device_id(struct i2c_client *client)
  1521. {
  1522. int device_id;
  1523. device_id = i2c_smbus_read_byte_data(client, W83795_REG_DEVICEID);
  1524. /* Special case for rev. A chips; can't be checked first because later
  1525. revisions emulate this for compatibility */
  1526. if (device_id < 0 || (device_id & 0xf0) != 0x50) {
  1527. int alt_id;
  1528. alt_id = i2c_smbus_read_byte_data(client,
  1529. W83795_REG_DEVICEID_A);
  1530. if (alt_id == 0x50)
  1531. device_id = alt_id;
  1532. }
  1533. return device_id;
  1534. }
  1535. /* Return 0 if detection is successful, -ENODEV otherwise */
  1536. static int w83795_detect(struct i2c_client *client,
  1537. struct i2c_board_info *info)
  1538. {
  1539. int bank, vendor_id, device_id, expected, i2c_addr, config;
  1540. struct i2c_adapter *adapter = client->adapter;
  1541. unsigned short address = client->addr;
  1542. const char *chip_name;
  1543. if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
  1544. return -ENODEV;
  1545. bank = i2c_smbus_read_byte_data(client, W83795_REG_BANKSEL);
  1546. if (bank < 0 || (bank & 0x7c)) {
  1547. dev_dbg(&adapter->dev,
  1548. "w83795: Detection failed at addr 0x%02hx, check %s\n",
  1549. address, "bank");
  1550. return -ENODEV;
  1551. }
  1552. /* Check Nuvoton vendor ID */
  1553. vendor_id = i2c_smbus_read_byte_data(client, W83795_REG_VENDORID);
  1554. expected = bank & 0x80 ? 0x5c : 0xa3;
  1555. if (vendor_id != expected) {
  1556. dev_dbg(&adapter->dev,
  1557. "w83795: Detection failed at addr 0x%02hx, check %s\n",
  1558. address, "vendor id");
  1559. return -ENODEV;
  1560. }
  1561. /* Check device ID */
  1562. device_id = w83795_get_device_id(client) |
  1563. (i2c_smbus_read_byte_data(client, W83795_REG_CHIPID) << 8);
  1564. if ((device_id >> 4) != 0x795) {
  1565. dev_dbg(&adapter->dev,
  1566. "w83795: Detection failed at addr 0x%02hx, check %s\n",
  1567. address, "device id\n");
  1568. return -ENODEV;
  1569. }
  1570. /* If Nuvoton chip, address of chip and W83795_REG_I2C_ADDR
  1571. should match */
  1572. if ((bank & 0x07) == 0) {
  1573. i2c_addr = i2c_smbus_read_byte_data(client,
  1574. W83795_REG_I2C_ADDR);
  1575. if ((i2c_addr & 0x7f) != address) {
  1576. dev_dbg(&adapter->dev,
  1577. "w83795: Detection failed at addr 0x%02hx, "
  1578. "check %s\n", address, "i2c addr");
  1579. return -ENODEV;
  1580. }
  1581. }
  1582. /* Check 795 chip type: 795G or 795ADG
  1583. Usually we don't write to chips during detection, but here we don't
  1584. quite have the choice; hopefully it's OK, we are about to return
  1585. success anyway */
  1586. if ((bank & 0x07) != 0)
  1587. i2c_smbus_write_byte_data(client, W83795_REG_BANKSEL,
  1588. bank & ~0x07);
  1589. config = i2c_smbus_read_byte_data(client, W83795_REG_CONFIG);
  1590. if (config & W83795_REG_CONFIG_CONFIG48)
  1591. chip_name = "w83795adg";
  1592. else
  1593. chip_name = "w83795g";
  1594. strlcpy(info->type, chip_name, I2C_NAME_SIZE);
  1595. dev_info(&adapter->dev, "Found %s rev. %c at 0x%02hx\n", chip_name,
  1596. 'A' + (device_id & 0xf), address);
  1597. return 0;
  1598. }
  1599. static int w83795_handle_files(struct device *dev, int (*fn)(struct device *,
  1600. const struct device_attribute *))
  1601. {
  1602. struct w83795_data *data = dev_get_drvdata(dev);
  1603. int err, i, j;
  1604. for (i = 0; i < ARRAY_SIZE(w83795_in); i++) {
  1605. if (!(data->has_in & (1 << i)))
  1606. continue;
  1607. for (j = 0; j < ARRAY_SIZE(w83795_in[0]); j++) {
  1608. err = fn(dev, &w83795_in[i][j].dev_attr);
  1609. if (err)
  1610. return err;
  1611. }
  1612. }
  1613. for (i = 0; i < ARRAY_SIZE(w83795_fan); i++) {
  1614. if (!(data->has_fan & (1 << i)))
  1615. continue;
  1616. for (j = 0; j < ARRAY_SIZE(w83795_fan[0]); j++) {
  1617. err = fn(dev, &w83795_fan[i][j].dev_attr);
  1618. if (err)
  1619. return err;
  1620. }
  1621. }
  1622. for (i = 0; i < ARRAY_SIZE(sda_single_files); i++) {
  1623. err = fn(dev, &sda_single_files[i].dev_attr);
  1624. if (err)
  1625. return err;
  1626. }
  1627. for (i = 0; i < data->has_pwm; i++) {
  1628. for (j = 0; j < ARRAY_SIZE(w83795_pwm[0]); j++) {
  1629. err = fn(dev, &w83795_pwm[i][j].dev_attr);
  1630. if (err)
  1631. return err;
  1632. }
  1633. }
  1634. for (i = 0; i < ARRAY_SIZE(w83795_temp); i++) {
  1635. if (!(data->has_temp & (1 << i)))
  1636. continue;
  1637. for (j = 0; j < ARRAY_SIZE(w83795_temp[0]); j++) {
  1638. err = fn(dev, &w83795_temp[i][j].dev_attr);
  1639. if (err)
  1640. return err;
  1641. }
  1642. }
  1643. if (data->enable_dts != 0) {
  1644. for (i = 0; i < ARRAY_SIZE(w83795_dts); i++) {
  1645. if (!(data->has_dts & (1 << i)))
  1646. continue;
  1647. for (j = 0; j < ARRAY_SIZE(w83795_dts[0]); j++) {
  1648. err = fn(dev, &w83795_dts[i][j].dev_attr);
  1649. if (err)
  1650. return err;
  1651. }
  1652. }
  1653. }
  1654. return 0;
  1655. }
  1656. /* We need a wrapper that fits in w83795_handle_files */
  1657. static int device_remove_file_wrapper(struct device *dev,
  1658. const struct device_attribute *attr)
  1659. {
  1660. device_remove_file(dev, attr);
  1661. return 0;
  1662. }
  1663. static void w83795_check_dynamic_in_limits(struct i2c_client *client)
  1664. {
  1665. struct w83795_data *data = i2c_get_clientdata(client);
  1666. u8 vid_ctl;
  1667. int i, err_max, err_min;
  1668. vid_ctl = w83795_read(client, W83795_REG_VID_CTRL);
  1669. /* Return immediately if VRM isn't configured */
  1670. if ((vid_ctl & 0x07) == 0x00 || (vid_ctl & 0x07) == 0x07)
  1671. return;
  1672. data->has_dyn_in = (vid_ctl >> 3) & 0x07;
  1673. for (i = 0; i < 2; i++) {
  1674. if (!(data->has_dyn_in & (1 << i)))
  1675. continue;
  1676. /* Voltage limits in dynamic mode, switch to read-only */
  1677. err_max = sysfs_chmod_file(&client->dev.kobj,
  1678. &w83795_in[i][2].dev_attr.attr,
  1679. S_IRUGO);
  1680. err_min = sysfs_chmod_file(&client->dev.kobj,
  1681. &w83795_in[i][3].dev_attr.attr,
  1682. S_IRUGO);
  1683. if (err_max || err_min)
  1684. dev_warn(&client->dev, "Failed to set in%d limits "
  1685. "read-only (%d, %d)\n", i, err_max, err_min);
  1686. else
  1687. dev_info(&client->dev, "in%d limits set dynamically "
  1688. "from VID\n", i);
  1689. }
  1690. }
  1691. /* Check pins that can be used for either temperature or voltage monitoring */
  1692. static void w83795_apply_temp_config(struct w83795_data *data, u8 config,
  1693. int temp_chan, int in_chan)
  1694. {
  1695. /* config is a 2-bit value */
  1696. switch (config) {
  1697. case 0x2: /* Voltage monitoring */
  1698. data->has_in |= 1 << in_chan;
  1699. break;
  1700. case 0x1: /* Thermal diode */
  1701. if (temp_chan >= 4)
  1702. break;
  1703. data->temp_mode |= 1 << temp_chan;
  1704. /* fall through */
  1705. case 0x3: /* Thermistor */
  1706. data->has_temp |= 1 << temp_chan;
  1707. break;
  1708. }
  1709. }
  1710. static int w83795_probe(struct i2c_client *client,
  1711. const struct i2c_device_id *id)
  1712. {
  1713. int i;
  1714. u8 tmp;
  1715. struct device *dev = &client->dev;
  1716. struct w83795_data *data;
  1717. int err;
  1718. data = kzalloc(sizeof(struct w83795_data), GFP_KERNEL);
  1719. if (!data) {
  1720. err = -ENOMEM;
  1721. goto exit;
  1722. }
  1723. i2c_set_clientdata(client, data);
  1724. data->chip_type = id->driver_data;
  1725. data->bank = i2c_smbus_read_byte_data(client, W83795_REG_BANKSEL);
  1726. mutex_init(&data->update_lock);
  1727. /* Initialize the chip */
  1728. w83795_init_client(client);
  1729. /* Check which voltages and fans are present */
  1730. data->has_in = w83795_read(client, W83795_REG_VOLT_CTRL1)
  1731. | (w83795_read(client, W83795_REG_VOLT_CTRL2) << 8);
  1732. data->has_fan = w83795_read(client, W83795_REG_FANIN_CTRL1)
  1733. | (w83795_read(client, W83795_REG_FANIN_CTRL2) << 8);
  1734. /* Check which analog temperatures and extra voltages are present */
  1735. tmp = w83795_read(client, W83795_REG_TEMP_CTRL1);
  1736. if (tmp & 0x20)
  1737. data->enable_dts = 1;
  1738. w83795_apply_temp_config(data, (tmp >> 2) & 0x3, 5, 16);
  1739. w83795_apply_temp_config(data, tmp & 0x3, 4, 15);
  1740. tmp = w83795_read(client, W83795_REG_TEMP_CTRL2);
  1741. w83795_apply_temp_config(data, tmp >> 6, 3, 20);
  1742. w83795_apply_temp_config(data, (tmp >> 4) & 0x3, 2, 19);
  1743. w83795_apply_temp_config(data, (tmp >> 2) & 0x3, 1, 18);
  1744. w83795_apply_temp_config(data, tmp & 0x3, 0, 17);
  1745. /* Check DTS enable status */
  1746. if (data->enable_dts) {
  1747. if (1 & w83795_read(client, W83795_REG_DTSC))
  1748. data->enable_dts |= 2;
  1749. data->has_dts = w83795_read(client, W83795_REG_DTSE);
  1750. }
  1751. /* Report PECI Tbase values */
  1752. if (data->enable_dts == 1) {
  1753. for (i = 0; i < 8; i++) {
  1754. if (!(data->has_dts & (1 << i)))
  1755. continue;
  1756. tmp = w83795_read(client, W83795_REG_PECI_TBASE(i));
  1757. dev_info(&client->dev,
  1758. "PECI agent %d Tbase temperature: %u\n",
  1759. i + 1, (unsigned int)tmp & 0x7f);
  1760. }
  1761. }
  1762. data->has_gain = w83795_read(client, W83795_REG_VMIGB_CTRL) & 0x0f;
  1763. /* pwm and smart fan */
  1764. if (data->chip_type == w83795g)
  1765. data->has_pwm = 8;
  1766. else
  1767. data->has_pwm = 2;
  1768. err = w83795_handle_files(dev, device_create_file);
  1769. if (err)
  1770. goto exit_remove;
  1771. if (data->chip_type == w83795g)
  1772. w83795_check_dynamic_in_limits(client);
  1773. data->hwmon_dev = hwmon_device_register(dev);
  1774. if (IS_ERR(data->hwmon_dev)) {
  1775. err = PTR_ERR(data->hwmon_dev);
  1776. goto exit_remove;
  1777. }
  1778. return 0;
  1779. exit_remove:
  1780. w83795_handle_files(dev, device_remove_file_wrapper);
  1781. kfree(data);
  1782. exit:
  1783. return err;
  1784. }
  1785. static int w83795_remove(struct i2c_client *client)
  1786. {
  1787. struct w83795_data *data = i2c_get_clientdata(client);
  1788. hwmon_device_unregister(data->hwmon_dev);
  1789. w83795_handle_files(&client->dev, device_remove_file_wrapper);
  1790. kfree(data);
  1791. return 0;
  1792. }
  1793. static const struct i2c_device_id w83795_id[] = {
  1794. { "w83795g", w83795g },
  1795. { "w83795adg", w83795adg },
  1796. { }
  1797. };
  1798. MODULE_DEVICE_TABLE(i2c, w83795_id);
  1799. static struct i2c_driver w83795_driver = {
  1800. .driver = {
  1801. .name = "w83795",
  1802. },
  1803. .probe = w83795_probe,
  1804. .remove = w83795_remove,
  1805. .id_table = w83795_id,
  1806. .class = I2C_CLASS_HWMON,
  1807. .detect = w83795_detect,
  1808. .address_list = normal_i2c,
  1809. };
  1810. static int __init sensors_w83795_init(void)
  1811. {
  1812. return i2c_add_driver(&w83795_driver);
  1813. }
  1814. static void __exit sensors_w83795_exit(void)
  1815. {
  1816. i2c_del_driver(&w83795_driver);
  1817. }
  1818. MODULE_AUTHOR("Wei Song");
  1819. MODULE_DESCRIPTION("W83795G/ADG hardware monitoring driver");
  1820. MODULE_LICENSE("GPL");
  1821. module_init(sensors_w83795_init);
  1822. module_exit(sensors_w83795_exit);