it87.c 85 KB

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  1. /*
  2. * it87.c - Part of lm_sensors, Linux kernel modules for hardware
  3. * monitoring.
  4. *
  5. * The IT8705F is an LPC-based Super I/O part that contains UARTs, a
  6. * parallel port, an IR port, a MIDI port, a floppy controller, etc., in
  7. * addition to an Environment Controller (Enhanced Hardware Monitor and
  8. * Fan Controller)
  9. *
  10. * This driver supports only the Environment Controller in the IT8705F and
  11. * similar parts. The other devices are supported by different drivers.
  12. *
  13. * Supports: IT8603E Super I/O chip w/LPC interface
  14. * IT8620E Super I/O chip w/LPC interface
  15. * IT8623E Super I/O chip w/LPC interface
  16. * IT8705F Super I/O chip w/LPC interface
  17. * IT8712F Super I/O chip w/LPC interface
  18. * IT8716F Super I/O chip w/LPC interface
  19. * IT8718F Super I/O chip w/LPC interface
  20. * IT8720F Super I/O chip w/LPC interface
  21. * IT8721F Super I/O chip w/LPC interface
  22. * IT8726F Super I/O chip w/LPC interface
  23. * IT8728F Super I/O chip w/LPC interface
  24. * IT8732F Super I/O chip w/LPC interface
  25. * IT8758E Super I/O chip w/LPC interface
  26. * IT8771E Super I/O chip w/LPC interface
  27. * IT8772E Super I/O chip w/LPC interface
  28. * IT8781F Super I/O chip w/LPC interface
  29. * IT8782F Super I/O chip w/LPC interface
  30. * IT8783E/F Super I/O chip w/LPC interface
  31. * IT8786E Super I/O chip w/LPC interface
  32. * IT8790E Super I/O chip w/LPC interface
  33. * Sis950 A clone of the IT8705F
  34. *
  35. * Copyright (C) 2001 Chris Gauthron
  36. * Copyright (C) 2005-2010 Jean Delvare <jdelvare@suse.de>
  37. *
  38. * This program is free software; you can redistribute it and/or modify
  39. * it under the terms of the GNU General Public License as published by
  40. * the Free Software Foundation; either version 2 of the License, or
  41. * (at your option) any later version.
  42. *
  43. * This program is distributed in the hope that it will be useful,
  44. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  45. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  46. * GNU General Public License for more details.
  47. *
  48. * You should have received a copy of the GNU General Public License
  49. * along with this program; if not, write to the Free Software
  50. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  51. */
  52. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  53. #include <linux/module.h>
  54. #include <linux/init.h>
  55. #include <linux/slab.h>
  56. #include <linux/jiffies.h>
  57. #include <linux/platform_device.h>
  58. #include <linux/hwmon.h>
  59. #include <linux/hwmon-sysfs.h>
  60. #include <linux/hwmon-vid.h>
  61. #include <linux/err.h>
  62. #include <linux/mutex.h>
  63. #include <linux/sysfs.h>
  64. #include <linux/string.h>
  65. #include <linux/dmi.h>
  66. #include <linux/acpi.h>
  67. #include <linux/io.h>
  68. #define DRVNAME "it87"
  69. enum chips { it87, it8712, it8716, it8718, it8720, it8721, it8728, it8732,
  70. it8771, it8772, it8781, it8782, it8783, it8786, it8790, it8603,
  71. it8620 };
  72. static unsigned short force_id;
  73. module_param(force_id, ushort, 0);
  74. MODULE_PARM_DESC(force_id, "Override the detected device ID");
  75. static struct platform_device *pdev;
  76. #define REG 0x2e /* The register to read/write */
  77. #define DEV 0x07 /* Register: Logical device select */
  78. #define VAL 0x2f /* The value to read/write */
  79. #define PME 0x04 /* The device with the fan registers in it */
  80. /* The device with the IT8718F/IT8720F VID value in it */
  81. #define GPIO 0x07
  82. #define DEVID 0x20 /* Register: Device ID */
  83. #define DEVREV 0x22 /* Register: Device Revision */
  84. static inline int superio_inb(int reg)
  85. {
  86. outb(reg, REG);
  87. return inb(VAL);
  88. }
  89. static inline void superio_outb(int reg, int val)
  90. {
  91. outb(reg, REG);
  92. outb(val, VAL);
  93. }
  94. static int superio_inw(int reg)
  95. {
  96. int val;
  97. outb(reg++, REG);
  98. val = inb(VAL) << 8;
  99. outb(reg, REG);
  100. val |= inb(VAL);
  101. return val;
  102. }
  103. static inline void superio_select(int ldn)
  104. {
  105. outb(DEV, REG);
  106. outb(ldn, VAL);
  107. }
  108. static inline int superio_enter(void)
  109. {
  110. /*
  111. * Try to reserve REG and REG + 1 for exclusive access.
  112. */
  113. if (!request_muxed_region(REG, 2, DRVNAME))
  114. return -EBUSY;
  115. outb(0x87, REG);
  116. outb(0x01, REG);
  117. outb(0x55, REG);
  118. outb(0x55, REG);
  119. return 0;
  120. }
  121. static inline void superio_exit(void)
  122. {
  123. outb(0x02, REG);
  124. outb(0x02, VAL);
  125. release_region(REG, 2);
  126. }
  127. /* Logical device 4 registers */
  128. #define IT8712F_DEVID 0x8712
  129. #define IT8705F_DEVID 0x8705
  130. #define IT8716F_DEVID 0x8716
  131. #define IT8718F_DEVID 0x8718
  132. #define IT8720F_DEVID 0x8720
  133. #define IT8721F_DEVID 0x8721
  134. #define IT8726F_DEVID 0x8726
  135. #define IT8728F_DEVID 0x8728
  136. #define IT8732F_DEVID 0x8732
  137. #define IT8771E_DEVID 0x8771
  138. #define IT8772E_DEVID 0x8772
  139. #define IT8781F_DEVID 0x8781
  140. #define IT8782F_DEVID 0x8782
  141. #define IT8783E_DEVID 0x8783
  142. #define IT8786E_DEVID 0x8786
  143. #define IT8790E_DEVID 0x8790
  144. #define IT8603E_DEVID 0x8603
  145. #define IT8620E_DEVID 0x8620
  146. #define IT8623E_DEVID 0x8623
  147. #define IT87_ACT_REG 0x30
  148. #define IT87_BASE_REG 0x60
  149. /* Logical device 7 registers (IT8712F and later) */
  150. #define IT87_SIO_GPIO1_REG 0x25
  151. #define IT87_SIO_GPIO2_REG 0x26
  152. #define IT87_SIO_GPIO3_REG 0x27
  153. #define IT87_SIO_GPIO5_REG 0x29
  154. #define IT87_SIO_PINX1_REG 0x2a /* Pin selection */
  155. #define IT87_SIO_PINX2_REG 0x2c /* Pin selection */
  156. #define IT87_SIO_SPI_REG 0xef /* SPI function pin select */
  157. #define IT87_SIO_VID_REG 0xfc /* VID value */
  158. #define IT87_SIO_BEEP_PIN_REG 0xf6 /* Beep pin mapping */
  159. /* Update battery voltage after every reading if true */
  160. static bool update_vbat;
  161. /* Not all BIOSes properly configure the PWM registers */
  162. static bool fix_pwm_polarity;
  163. /* Many IT87 constants specified below */
  164. /* Length of ISA address segment */
  165. #define IT87_EXTENT 8
  166. /* Length of ISA address segment for Environmental Controller */
  167. #define IT87_EC_EXTENT 2
  168. /* Offset of EC registers from ISA base address */
  169. #define IT87_EC_OFFSET 5
  170. /* Where are the ISA address/data registers relative to the EC base address */
  171. #define IT87_ADDR_REG_OFFSET 0
  172. #define IT87_DATA_REG_OFFSET 1
  173. /*----- The IT87 registers -----*/
  174. #define IT87_REG_CONFIG 0x00
  175. #define IT87_REG_ALARM1 0x01
  176. #define IT87_REG_ALARM2 0x02
  177. #define IT87_REG_ALARM3 0x03
  178. /*
  179. * The IT8718F and IT8720F have the VID value in a different register, in
  180. * Super-I/O configuration space.
  181. */
  182. #define IT87_REG_VID 0x0a
  183. /*
  184. * The IT8705F and IT8712F earlier than revision 0x08 use register 0x0b
  185. * for fan divisors. Later IT8712F revisions must use 16-bit tachometer
  186. * mode.
  187. */
  188. #define IT87_REG_FAN_DIV 0x0b
  189. #define IT87_REG_FAN_16BIT 0x0c
  190. /* Monitors: 9 voltage (0 to 7, battery), 3 temp (1 to 3), 3 fan (1 to 3) */
  191. static const u8 IT87_REG_FAN[] = { 0x0d, 0x0e, 0x0f, 0x80, 0x82, 0x4c };
  192. static const u8 IT87_REG_FAN_MIN[] = { 0x10, 0x11, 0x12, 0x84, 0x86, 0x4e };
  193. static const u8 IT87_REG_FANX[] = { 0x18, 0x19, 0x1a, 0x81, 0x83, 0x4d };
  194. static const u8 IT87_REG_FANX_MIN[] = { 0x1b, 0x1c, 0x1d, 0x85, 0x87, 0x4f };
  195. static const u8 IT87_REG_TEMP_OFFSET[] = { 0x56, 0x57, 0x59 };
  196. #define IT87_REG_FAN_MAIN_CTRL 0x13
  197. #define IT87_REG_FAN_CTL 0x14
  198. #define IT87_REG_PWM(nr) (0x15 + (nr))
  199. #define IT87_REG_PWM_DUTY(nr) (0x63 + (nr) * 8)
  200. #define IT87_REG_VIN(nr) (0x20 + (nr))
  201. #define IT87_REG_TEMP(nr) (0x29 + (nr))
  202. #define IT87_REG_VIN_MAX(nr) (0x30 + (nr) * 2)
  203. #define IT87_REG_VIN_MIN(nr) (0x31 + (nr) * 2)
  204. #define IT87_REG_TEMP_HIGH(nr) (0x40 + (nr) * 2)
  205. #define IT87_REG_TEMP_LOW(nr) (0x41 + (nr) * 2)
  206. #define IT87_REG_VIN_ENABLE 0x50
  207. #define IT87_REG_TEMP_ENABLE 0x51
  208. #define IT87_REG_TEMP_EXTRA 0x55
  209. #define IT87_REG_BEEP_ENABLE 0x5c
  210. #define IT87_REG_CHIPID 0x58
  211. #define IT87_REG_AUTO_TEMP(nr, i) (0x60 + (nr) * 8 + (i))
  212. #define IT87_REG_AUTO_PWM(nr, i) (0x65 + (nr) * 8 + (i))
  213. struct it87_devices {
  214. const char *name;
  215. const char * const suffix;
  216. u16 features;
  217. u8 peci_mask;
  218. u8 old_peci_mask;
  219. };
  220. #define FEAT_12MV_ADC (1 << 0)
  221. #define FEAT_NEWER_AUTOPWM (1 << 1)
  222. #define FEAT_OLD_AUTOPWM (1 << 2)
  223. #define FEAT_16BIT_FANS (1 << 3)
  224. #define FEAT_TEMP_OFFSET (1 << 4)
  225. #define FEAT_TEMP_PECI (1 << 5)
  226. #define FEAT_TEMP_OLD_PECI (1 << 6)
  227. #define FEAT_FAN16_CONFIG (1 << 7) /* Need to enable 16-bit fans */
  228. #define FEAT_FIVE_FANS (1 << 8) /* Supports five fans */
  229. #define FEAT_VID (1 << 9) /* Set if chip supports VID */
  230. #define FEAT_IN7_INTERNAL (1 << 10) /* Set if in7 is internal */
  231. #define FEAT_SIX_FANS (1 << 11) /* Supports six fans */
  232. #define FEAT_10_9MV_ADC (1 << 12)
  233. static const struct it87_devices it87_devices[] = {
  234. [it87] = {
  235. .name = "it87",
  236. .suffix = "F",
  237. .features = FEAT_OLD_AUTOPWM, /* may need to overwrite */
  238. },
  239. [it8712] = {
  240. .name = "it8712",
  241. .suffix = "F",
  242. .features = FEAT_OLD_AUTOPWM | FEAT_VID,
  243. /* may need to overwrite */
  244. },
  245. [it8716] = {
  246. .name = "it8716",
  247. .suffix = "F",
  248. .features = FEAT_16BIT_FANS | FEAT_TEMP_OFFSET | FEAT_VID
  249. | FEAT_FAN16_CONFIG | FEAT_FIVE_FANS,
  250. },
  251. [it8718] = {
  252. .name = "it8718",
  253. .suffix = "F",
  254. .features = FEAT_16BIT_FANS | FEAT_TEMP_OFFSET | FEAT_VID
  255. | FEAT_TEMP_OLD_PECI | FEAT_FAN16_CONFIG | FEAT_FIVE_FANS,
  256. .old_peci_mask = 0x4,
  257. },
  258. [it8720] = {
  259. .name = "it8720",
  260. .suffix = "F",
  261. .features = FEAT_16BIT_FANS | FEAT_TEMP_OFFSET | FEAT_VID
  262. | FEAT_TEMP_OLD_PECI | FEAT_FAN16_CONFIG | FEAT_FIVE_FANS,
  263. .old_peci_mask = 0x4,
  264. },
  265. [it8721] = {
  266. .name = "it8721",
  267. .suffix = "F",
  268. .features = FEAT_NEWER_AUTOPWM | FEAT_12MV_ADC | FEAT_16BIT_FANS
  269. | FEAT_TEMP_OFFSET | FEAT_TEMP_OLD_PECI | FEAT_TEMP_PECI
  270. | FEAT_FAN16_CONFIG | FEAT_FIVE_FANS | FEAT_IN7_INTERNAL,
  271. .peci_mask = 0x05,
  272. .old_peci_mask = 0x02, /* Actually reports PCH */
  273. },
  274. [it8728] = {
  275. .name = "it8728",
  276. .suffix = "F",
  277. .features = FEAT_NEWER_AUTOPWM | FEAT_12MV_ADC | FEAT_16BIT_FANS
  278. | FEAT_TEMP_OFFSET | FEAT_TEMP_PECI | FEAT_FIVE_FANS
  279. | FEAT_IN7_INTERNAL,
  280. .peci_mask = 0x07,
  281. },
  282. [it8732] = {
  283. .name = "it8732",
  284. .suffix = "F",
  285. .features = FEAT_NEWER_AUTOPWM | FEAT_16BIT_FANS
  286. | FEAT_TEMP_OFFSET | FEAT_TEMP_OLD_PECI | FEAT_TEMP_PECI
  287. | FEAT_10_9MV_ADC | FEAT_IN7_INTERNAL,
  288. .peci_mask = 0x07,
  289. .old_peci_mask = 0x02, /* Actually reports PCH */
  290. },
  291. [it8771] = {
  292. .name = "it8771",
  293. .suffix = "E",
  294. .features = FEAT_NEWER_AUTOPWM | FEAT_12MV_ADC | FEAT_16BIT_FANS
  295. | FEAT_TEMP_OFFSET | FEAT_TEMP_PECI | FEAT_IN7_INTERNAL,
  296. /* PECI: guesswork */
  297. /* 12mV ADC (OHM) */
  298. /* 16 bit fans (OHM) */
  299. /* three fans, always 16 bit (guesswork) */
  300. .peci_mask = 0x07,
  301. },
  302. [it8772] = {
  303. .name = "it8772",
  304. .suffix = "E",
  305. .features = FEAT_NEWER_AUTOPWM | FEAT_12MV_ADC | FEAT_16BIT_FANS
  306. | FEAT_TEMP_OFFSET | FEAT_TEMP_PECI | FEAT_IN7_INTERNAL,
  307. /* PECI (coreboot) */
  308. /* 12mV ADC (HWSensors4, OHM) */
  309. /* 16 bit fans (HWSensors4, OHM) */
  310. /* three fans, always 16 bit (datasheet) */
  311. .peci_mask = 0x07,
  312. },
  313. [it8781] = {
  314. .name = "it8781",
  315. .suffix = "F",
  316. .features = FEAT_16BIT_FANS | FEAT_TEMP_OFFSET
  317. | FEAT_TEMP_OLD_PECI | FEAT_FAN16_CONFIG,
  318. .old_peci_mask = 0x4,
  319. },
  320. [it8782] = {
  321. .name = "it8782",
  322. .suffix = "F",
  323. .features = FEAT_16BIT_FANS | FEAT_TEMP_OFFSET
  324. | FEAT_TEMP_OLD_PECI | FEAT_FAN16_CONFIG,
  325. .old_peci_mask = 0x4,
  326. },
  327. [it8783] = {
  328. .name = "it8783",
  329. .suffix = "E/F",
  330. .features = FEAT_16BIT_FANS | FEAT_TEMP_OFFSET
  331. | FEAT_TEMP_OLD_PECI | FEAT_FAN16_CONFIG,
  332. .old_peci_mask = 0x4,
  333. },
  334. [it8786] = {
  335. .name = "it8786",
  336. .suffix = "E",
  337. .features = FEAT_NEWER_AUTOPWM | FEAT_12MV_ADC | FEAT_16BIT_FANS
  338. | FEAT_TEMP_OFFSET | FEAT_TEMP_PECI | FEAT_IN7_INTERNAL,
  339. .peci_mask = 0x07,
  340. },
  341. [it8790] = {
  342. .name = "it8790",
  343. .suffix = "E",
  344. .features = FEAT_NEWER_AUTOPWM | FEAT_12MV_ADC | FEAT_16BIT_FANS
  345. | FEAT_TEMP_OFFSET | FEAT_TEMP_PECI | FEAT_IN7_INTERNAL,
  346. .peci_mask = 0x07,
  347. },
  348. [it8603] = {
  349. .name = "it8603",
  350. .suffix = "E",
  351. .features = FEAT_NEWER_AUTOPWM | FEAT_12MV_ADC | FEAT_16BIT_FANS
  352. | FEAT_TEMP_OFFSET | FEAT_TEMP_PECI | FEAT_IN7_INTERNAL,
  353. .peci_mask = 0x07,
  354. },
  355. [it8620] = {
  356. .name = "it8620",
  357. .suffix = "E",
  358. .features = FEAT_NEWER_AUTOPWM | FEAT_12MV_ADC | FEAT_16BIT_FANS
  359. | FEAT_TEMP_OFFSET | FEAT_TEMP_PECI | FEAT_SIX_FANS
  360. | FEAT_IN7_INTERNAL,
  361. .peci_mask = 0x07,
  362. },
  363. };
  364. #define has_16bit_fans(data) ((data)->features & FEAT_16BIT_FANS)
  365. #define has_12mv_adc(data) ((data)->features & FEAT_12MV_ADC)
  366. #define has_10_9mv_adc(data) ((data)->features & FEAT_10_9MV_ADC)
  367. #define has_newer_autopwm(data) ((data)->features & FEAT_NEWER_AUTOPWM)
  368. #define has_old_autopwm(data) ((data)->features & FEAT_OLD_AUTOPWM)
  369. #define has_temp_offset(data) ((data)->features & FEAT_TEMP_OFFSET)
  370. #define has_temp_peci(data, nr) (((data)->features & FEAT_TEMP_PECI) && \
  371. ((data)->peci_mask & (1 << nr)))
  372. #define has_temp_old_peci(data, nr) \
  373. (((data)->features & FEAT_TEMP_OLD_PECI) && \
  374. ((data)->old_peci_mask & (1 << nr)))
  375. #define has_fan16_config(data) ((data)->features & FEAT_FAN16_CONFIG)
  376. #define has_five_fans(data) ((data)->features & (FEAT_FIVE_FANS | \
  377. FEAT_SIX_FANS))
  378. #define has_vid(data) ((data)->features & FEAT_VID)
  379. #define has_in7_internal(data) ((data)->features & FEAT_IN7_INTERNAL)
  380. #define has_six_fans(data) ((data)->features & FEAT_SIX_FANS)
  381. struct it87_sio_data {
  382. enum chips type;
  383. /* Values read from Super-I/O config space */
  384. u8 revision;
  385. u8 vid_value;
  386. u8 beep_pin;
  387. u8 internal; /* Internal sensors can be labeled */
  388. /* Features skipped based on config or DMI */
  389. u16 skip_in;
  390. u8 skip_vid;
  391. u8 skip_fan;
  392. u8 skip_pwm;
  393. u8 skip_temp;
  394. };
  395. /*
  396. * For each registered chip, we need to keep some data in memory.
  397. * The structure is dynamically allocated.
  398. */
  399. struct it87_data {
  400. struct device *hwmon_dev;
  401. enum chips type;
  402. u16 features;
  403. u8 peci_mask;
  404. u8 old_peci_mask;
  405. unsigned short addr;
  406. const char *name;
  407. struct mutex update_lock;
  408. char valid; /* !=0 if following fields are valid */
  409. unsigned long last_updated; /* In jiffies */
  410. u16 in_scaled; /* Internal voltage sensors are scaled */
  411. u8 in[10][3]; /* [nr][0]=in, [1]=min, [2]=max */
  412. u8 has_fan; /* Bitfield, fans enabled */
  413. u16 fan[6][2]; /* Register values, [nr][0]=fan, [1]=min */
  414. u8 has_temp; /* Bitfield, temp sensors enabled */
  415. s8 temp[3][4]; /* [nr][0]=temp, [1]=min, [2]=max, [3]=offset */
  416. u8 sensor; /* Register value (IT87_REG_TEMP_ENABLE) */
  417. u8 extra; /* Register value (IT87_REG_TEMP_EXTRA) */
  418. u8 fan_div[3]; /* Register encoding, shifted right */
  419. u8 vid; /* Register encoding, combined */
  420. u8 vrm;
  421. u32 alarms; /* Register encoding, combined */
  422. u8 beeps; /* Register encoding */
  423. u8 fan_main_ctrl; /* Register value */
  424. u8 fan_ctl; /* Register value */
  425. /*
  426. * The following 3 arrays correspond to the same registers up to
  427. * the IT8720F. The meaning of bits 6-0 depends on the value of bit
  428. * 7, and we want to preserve settings on mode changes, so we have
  429. * to track all values separately.
  430. * Starting with the IT8721F, the manual PWM duty cycles are stored
  431. * in separate registers (8-bit values), so the separate tracking
  432. * is no longer needed, but it is still done to keep the driver
  433. * simple.
  434. */
  435. u8 pwm_ctrl[3]; /* Register value */
  436. u8 pwm_duty[3]; /* Manual PWM value set by user */
  437. u8 pwm_temp_map[3]; /* PWM to temp. chan. mapping (bits 1-0) */
  438. /* Automatic fan speed control registers */
  439. u8 auto_pwm[3][4]; /* [nr][3] is hard-coded */
  440. s8 auto_temp[3][5]; /* [nr][0] is point1_temp_hyst */
  441. };
  442. static int adc_lsb(const struct it87_data *data, int nr)
  443. {
  444. int lsb;
  445. if (has_12mv_adc(data))
  446. lsb = 120;
  447. else if (has_10_9mv_adc(data))
  448. lsb = 109;
  449. else
  450. lsb = 160;
  451. if (data->in_scaled & (1 << nr))
  452. lsb <<= 1;
  453. return lsb;
  454. }
  455. static u8 in_to_reg(const struct it87_data *data, int nr, long val)
  456. {
  457. val = DIV_ROUND_CLOSEST(val * 10, adc_lsb(data, nr));
  458. return clamp_val(val, 0, 255);
  459. }
  460. static int in_from_reg(const struct it87_data *data, int nr, int val)
  461. {
  462. return DIV_ROUND_CLOSEST(val * adc_lsb(data, nr), 10);
  463. }
  464. static inline u8 FAN_TO_REG(long rpm, int div)
  465. {
  466. if (rpm == 0)
  467. return 255;
  468. rpm = clamp_val(rpm, 1, 1000000);
  469. return clamp_val((1350000 + rpm * div / 2) / (rpm * div), 1, 254);
  470. }
  471. static inline u16 FAN16_TO_REG(long rpm)
  472. {
  473. if (rpm == 0)
  474. return 0xffff;
  475. return clamp_val((1350000 + rpm) / (rpm * 2), 1, 0xfffe);
  476. }
  477. #define FAN_FROM_REG(val, div) ((val) == 0 ? -1 : (val) == 255 ? 0 : \
  478. 1350000 / ((val) * (div)))
  479. /* The divider is fixed to 2 in 16-bit mode */
  480. #define FAN16_FROM_REG(val) ((val) == 0 ? -1 : (val) == 0xffff ? 0 : \
  481. 1350000 / ((val) * 2))
  482. #define TEMP_TO_REG(val) (clamp_val(((val) < 0 ? (((val) - 500) / 1000) : \
  483. ((val) + 500) / 1000), -128, 127))
  484. #define TEMP_FROM_REG(val) ((val) * 1000)
  485. static u8 pwm_to_reg(const struct it87_data *data, long val)
  486. {
  487. if (has_newer_autopwm(data))
  488. return val;
  489. else
  490. return val >> 1;
  491. }
  492. static int pwm_from_reg(const struct it87_data *data, u8 reg)
  493. {
  494. if (has_newer_autopwm(data))
  495. return reg;
  496. else
  497. return (reg & 0x7f) << 1;
  498. }
  499. static int DIV_TO_REG(int val)
  500. {
  501. int answer = 0;
  502. while (answer < 7 && (val >>= 1))
  503. answer++;
  504. return answer;
  505. }
  506. #define DIV_FROM_REG(val) (1 << (val))
  507. /*
  508. * PWM base frequencies. The frequency has to be divided by either 128 or 256,
  509. * depending on the chip type, to calculate the actual PWM frequency.
  510. *
  511. * Some of the chip datasheets suggest a base frequency of 51 kHz instead
  512. * of 750 kHz for the slowest base frequency, resulting in a PWM frequency
  513. * of 200 Hz. Sometimes both PWM frequency select registers are affected,
  514. * sometimes just one. It is unknown if this is a datasheet error or real,
  515. * so this is ignored for now.
  516. */
  517. static const unsigned int pwm_freq[8] = {
  518. 48000000,
  519. 24000000,
  520. 12000000,
  521. 8000000,
  522. 6000000,
  523. 3000000,
  524. 1500000,
  525. 750000,
  526. };
  527. static int it87_probe(struct platform_device *pdev);
  528. static int it87_remove(struct platform_device *pdev);
  529. static int it87_read_value(struct it87_data *data, u8 reg);
  530. static void it87_write_value(struct it87_data *data, u8 reg, u8 value);
  531. static struct it87_data *it87_update_device(struct device *dev);
  532. static int it87_check_pwm(struct device *dev);
  533. static void it87_init_device(struct platform_device *pdev);
  534. static struct platform_driver it87_driver = {
  535. .driver = {
  536. .name = DRVNAME,
  537. },
  538. .probe = it87_probe,
  539. .remove = it87_remove,
  540. };
  541. static ssize_t show_in(struct device *dev, struct device_attribute *attr,
  542. char *buf)
  543. {
  544. struct sensor_device_attribute_2 *sattr = to_sensor_dev_attr_2(attr);
  545. int nr = sattr->nr;
  546. int index = sattr->index;
  547. struct it87_data *data = it87_update_device(dev);
  548. return sprintf(buf, "%d\n", in_from_reg(data, nr, data->in[nr][index]));
  549. }
  550. static ssize_t set_in(struct device *dev, struct device_attribute *attr,
  551. const char *buf, size_t count)
  552. {
  553. struct sensor_device_attribute_2 *sattr = to_sensor_dev_attr_2(attr);
  554. int nr = sattr->nr;
  555. int index = sattr->index;
  556. struct it87_data *data = dev_get_drvdata(dev);
  557. unsigned long val;
  558. if (kstrtoul(buf, 10, &val) < 0)
  559. return -EINVAL;
  560. mutex_lock(&data->update_lock);
  561. data->in[nr][index] = in_to_reg(data, nr, val);
  562. it87_write_value(data,
  563. index == 1 ? IT87_REG_VIN_MIN(nr)
  564. : IT87_REG_VIN_MAX(nr),
  565. data->in[nr][index]);
  566. mutex_unlock(&data->update_lock);
  567. return count;
  568. }
  569. static SENSOR_DEVICE_ATTR_2(in0_input, S_IRUGO, show_in, NULL, 0, 0);
  570. static SENSOR_DEVICE_ATTR_2(in0_min, S_IRUGO | S_IWUSR, show_in, set_in,
  571. 0, 1);
  572. static SENSOR_DEVICE_ATTR_2(in0_max, S_IRUGO | S_IWUSR, show_in, set_in,
  573. 0, 2);
  574. static SENSOR_DEVICE_ATTR_2(in1_input, S_IRUGO, show_in, NULL, 1, 0);
  575. static SENSOR_DEVICE_ATTR_2(in1_min, S_IRUGO | S_IWUSR, show_in, set_in,
  576. 1, 1);
  577. static SENSOR_DEVICE_ATTR_2(in1_max, S_IRUGO | S_IWUSR, show_in, set_in,
  578. 1, 2);
  579. static SENSOR_DEVICE_ATTR_2(in2_input, S_IRUGO, show_in, NULL, 2, 0);
  580. static SENSOR_DEVICE_ATTR_2(in2_min, S_IRUGO | S_IWUSR, show_in, set_in,
  581. 2, 1);
  582. static SENSOR_DEVICE_ATTR_2(in2_max, S_IRUGO | S_IWUSR, show_in, set_in,
  583. 2, 2);
  584. static SENSOR_DEVICE_ATTR_2(in3_input, S_IRUGO, show_in, NULL, 3, 0);
  585. static SENSOR_DEVICE_ATTR_2(in3_min, S_IRUGO | S_IWUSR, show_in, set_in,
  586. 3, 1);
  587. static SENSOR_DEVICE_ATTR_2(in3_max, S_IRUGO | S_IWUSR, show_in, set_in,
  588. 3, 2);
  589. static SENSOR_DEVICE_ATTR_2(in4_input, S_IRUGO, show_in, NULL, 4, 0);
  590. static SENSOR_DEVICE_ATTR_2(in4_min, S_IRUGO | S_IWUSR, show_in, set_in,
  591. 4, 1);
  592. static SENSOR_DEVICE_ATTR_2(in4_max, S_IRUGO | S_IWUSR, show_in, set_in,
  593. 4, 2);
  594. static SENSOR_DEVICE_ATTR_2(in5_input, S_IRUGO, show_in, NULL, 5, 0);
  595. static SENSOR_DEVICE_ATTR_2(in5_min, S_IRUGO | S_IWUSR, show_in, set_in,
  596. 5, 1);
  597. static SENSOR_DEVICE_ATTR_2(in5_max, S_IRUGO | S_IWUSR, show_in, set_in,
  598. 5, 2);
  599. static SENSOR_DEVICE_ATTR_2(in6_input, S_IRUGO, show_in, NULL, 6, 0);
  600. static SENSOR_DEVICE_ATTR_2(in6_min, S_IRUGO | S_IWUSR, show_in, set_in,
  601. 6, 1);
  602. static SENSOR_DEVICE_ATTR_2(in6_max, S_IRUGO | S_IWUSR, show_in, set_in,
  603. 6, 2);
  604. static SENSOR_DEVICE_ATTR_2(in7_input, S_IRUGO, show_in, NULL, 7, 0);
  605. static SENSOR_DEVICE_ATTR_2(in7_min, S_IRUGO | S_IWUSR, show_in, set_in,
  606. 7, 1);
  607. static SENSOR_DEVICE_ATTR_2(in7_max, S_IRUGO | S_IWUSR, show_in, set_in,
  608. 7, 2);
  609. static SENSOR_DEVICE_ATTR_2(in8_input, S_IRUGO, show_in, NULL, 8, 0);
  610. static SENSOR_DEVICE_ATTR_2(in9_input, S_IRUGO, show_in, NULL, 9, 0);
  611. /* 3 temperatures */
  612. static ssize_t show_temp(struct device *dev, struct device_attribute *attr,
  613. char *buf)
  614. {
  615. struct sensor_device_attribute_2 *sattr = to_sensor_dev_attr_2(attr);
  616. int nr = sattr->nr;
  617. int index = sattr->index;
  618. struct it87_data *data = it87_update_device(dev);
  619. return sprintf(buf, "%d\n", TEMP_FROM_REG(data->temp[nr][index]));
  620. }
  621. static ssize_t set_temp(struct device *dev, struct device_attribute *attr,
  622. const char *buf, size_t count)
  623. {
  624. struct sensor_device_attribute_2 *sattr = to_sensor_dev_attr_2(attr);
  625. int nr = sattr->nr;
  626. int index = sattr->index;
  627. struct it87_data *data = dev_get_drvdata(dev);
  628. long val;
  629. u8 reg, regval;
  630. if (kstrtol(buf, 10, &val) < 0)
  631. return -EINVAL;
  632. mutex_lock(&data->update_lock);
  633. switch (index) {
  634. default:
  635. case 1:
  636. reg = IT87_REG_TEMP_LOW(nr);
  637. break;
  638. case 2:
  639. reg = IT87_REG_TEMP_HIGH(nr);
  640. break;
  641. case 3:
  642. regval = it87_read_value(data, IT87_REG_BEEP_ENABLE);
  643. if (!(regval & 0x80)) {
  644. regval |= 0x80;
  645. it87_write_value(data, IT87_REG_BEEP_ENABLE, regval);
  646. }
  647. data->valid = 0;
  648. reg = IT87_REG_TEMP_OFFSET[nr];
  649. break;
  650. }
  651. data->temp[nr][index] = TEMP_TO_REG(val);
  652. it87_write_value(data, reg, data->temp[nr][index]);
  653. mutex_unlock(&data->update_lock);
  654. return count;
  655. }
  656. static SENSOR_DEVICE_ATTR_2(temp1_input, S_IRUGO, show_temp, NULL, 0, 0);
  657. static SENSOR_DEVICE_ATTR_2(temp1_min, S_IRUGO | S_IWUSR, show_temp, set_temp,
  658. 0, 1);
  659. static SENSOR_DEVICE_ATTR_2(temp1_max, S_IRUGO | S_IWUSR, show_temp, set_temp,
  660. 0, 2);
  661. static SENSOR_DEVICE_ATTR_2(temp1_offset, S_IRUGO | S_IWUSR, show_temp,
  662. set_temp, 0, 3);
  663. static SENSOR_DEVICE_ATTR_2(temp2_input, S_IRUGO, show_temp, NULL, 1, 0);
  664. static SENSOR_DEVICE_ATTR_2(temp2_min, S_IRUGO | S_IWUSR, show_temp, set_temp,
  665. 1, 1);
  666. static SENSOR_DEVICE_ATTR_2(temp2_max, S_IRUGO | S_IWUSR, show_temp, set_temp,
  667. 1, 2);
  668. static SENSOR_DEVICE_ATTR_2(temp2_offset, S_IRUGO | S_IWUSR, show_temp,
  669. set_temp, 1, 3);
  670. static SENSOR_DEVICE_ATTR_2(temp3_input, S_IRUGO, show_temp, NULL, 2, 0);
  671. static SENSOR_DEVICE_ATTR_2(temp3_min, S_IRUGO | S_IWUSR, show_temp, set_temp,
  672. 2, 1);
  673. static SENSOR_DEVICE_ATTR_2(temp3_max, S_IRUGO | S_IWUSR, show_temp, set_temp,
  674. 2, 2);
  675. static SENSOR_DEVICE_ATTR_2(temp3_offset, S_IRUGO | S_IWUSR, show_temp,
  676. set_temp, 2, 3);
  677. static ssize_t show_temp_type(struct device *dev, struct device_attribute *attr,
  678. char *buf)
  679. {
  680. struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
  681. int nr = sensor_attr->index;
  682. struct it87_data *data = it87_update_device(dev);
  683. u8 reg = data->sensor; /* In case value is updated while used */
  684. u8 extra = data->extra;
  685. if ((has_temp_peci(data, nr) && (reg >> 6 == nr + 1))
  686. || (has_temp_old_peci(data, nr) && (extra & 0x80)))
  687. return sprintf(buf, "6\n"); /* Intel PECI */
  688. if (reg & (1 << nr))
  689. return sprintf(buf, "3\n"); /* thermal diode */
  690. if (reg & (8 << nr))
  691. return sprintf(buf, "4\n"); /* thermistor */
  692. return sprintf(buf, "0\n"); /* disabled */
  693. }
  694. static ssize_t set_temp_type(struct device *dev, struct device_attribute *attr,
  695. const char *buf, size_t count)
  696. {
  697. struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
  698. int nr = sensor_attr->index;
  699. struct it87_data *data = dev_get_drvdata(dev);
  700. long val;
  701. u8 reg, extra;
  702. if (kstrtol(buf, 10, &val) < 0)
  703. return -EINVAL;
  704. reg = it87_read_value(data, IT87_REG_TEMP_ENABLE);
  705. reg &= ~(1 << nr);
  706. reg &= ~(8 << nr);
  707. if (has_temp_peci(data, nr) && (reg >> 6 == nr + 1 || val == 6))
  708. reg &= 0x3f;
  709. extra = it87_read_value(data, IT87_REG_TEMP_EXTRA);
  710. if (has_temp_old_peci(data, nr) && ((extra & 0x80) || val == 6))
  711. extra &= 0x7f;
  712. if (val == 2) { /* backwards compatibility */
  713. dev_warn(dev,
  714. "Sensor type 2 is deprecated, please use 4 instead\n");
  715. val = 4;
  716. }
  717. /* 3 = thermal diode; 4 = thermistor; 6 = Intel PECI; 0 = disabled */
  718. if (val == 3)
  719. reg |= 1 << nr;
  720. else if (val == 4)
  721. reg |= 8 << nr;
  722. else if (has_temp_peci(data, nr) && val == 6)
  723. reg |= (nr + 1) << 6;
  724. else if (has_temp_old_peci(data, nr) && val == 6)
  725. extra |= 0x80;
  726. else if (val != 0)
  727. return -EINVAL;
  728. mutex_lock(&data->update_lock);
  729. data->sensor = reg;
  730. data->extra = extra;
  731. it87_write_value(data, IT87_REG_TEMP_ENABLE, data->sensor);
  732. if (has_temp_old_peci(data, nr))
  733. it87_write_value(data, IT87_REG_TEMP_EXTRA, data->extra);
  734. data->valid = 0; /* Force cache refresh */
  735. mutex_unlock(&data->update_lock);
  736. return count;
  737. }
  738. static SENSOR_DEVICE_ATTR(temp1_type, S_IRUGO | S_IWUSR, show_temp_type,
  739. set_temp_type, 0);
  740. static SENSOR_DEVICE_ATTR(temp2_type, S_IRUGO | S_IWUSR, show_temp_type,
  741. set_temp_type, 1);
  742. static SENSOR_DEVICE_ATTR(temp3_type, S_IRUGO | S_IWUSR, show_temp_type,
  743. set_temp_type, 2);
  744. /* 3 Fans */
  745. static int pwm_mode(const struct it87_data *data, int nr)
  746. {
  747. int ctrl = data->fan_main_ctrl & (1 << nr);
  748. if (ctrl == 0 && data->type != it8603) /* Full speed */
  749. return 0;
  750. if (data->pwm_ctrl[nr] & 0x80) /* Automatic mode */
  751. return 2;
  752. else /* Manual mode */
  753. return 1;
  754. }
  755. static ssize_t show_fan(struct device *dev, struct device_attribute *attr,
  756. char *buf)
  757. {
  758. struct sensor_device_attribute_2 *sattr = to_sensor_dev_attr_2(attr);
  759. int nr = sattr->nr;
  760. int index = sattr->index;
  761. int speed;
  762. struct it87_data *data = it87_update_device(dev);
  763. speed = has_16bit_fans(data) ?
  764. FAN16_FROM_REG(data->fan[nr][index]) :
  765. FAN_FROM_REG(data->fan[nr][index],
  766. DIV_FROM_REG(data->fan_div[nr]));
  767. return sprintf(buf, "%d\n", speed);
  768. }
  769. static ssize_t show_fan_div(struct device *dev, struct device_attribute *attr,
  770. char *buf)
  771. {
  772. struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
  773. int nr = sensor_attr->index;
  774. struct it87_data *data = it87_update_device(dev);
  775. return sprintf(buf, "%d\n", DIV_FROM_REG(data->fan_div[nr]));
  776. }
  777. static ssize_t show_pwm_enable(struct device *dev,
  778. struct device_attribute *attr, char *buf)
  779. {
  780. struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
  781. int nr = sensor_attr->index;
  782. struct it87_data *data = it87_update_device(dev);
  783. return sprintf(buf, "%d\n", pwm_mode(data, nr));
  784. }
  785. static ssize_t show_pwm(struct device *dev, struct device_attribute *attr,
  786. char *buf)
  787. {
  788. struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
  789. int nr = sensor_attr->index;
  790. struct it87_data *data = it87_update_device(dev);
  791. return sprintf(buf, "%d\n",
  792. pwm_from_reg(data, data->pwm_duty[nr]));
  793. }
  794. static ssize_t show_pwm_freq(struct device *dev, struct device_attribute *attr,
  795. char *buf)
  796. {
  797. struct it87_data *data = it87_update_device(dev);
  798. int index = (data->fan_ctl >> 4) & 0x07;
  799. unsigned int freq;
  800. freq = pwm_freq[index] / (has_newer_autopwm(data) ? 256 : 128);
  801. return sprintf(buf, "%u\n", freq);
  802. }
  803. static ssize_t set_fan(struct device *dev, struct device_attribute *attr,
  804. const char *buf, size_t count)
  805. {
  806. struct sensor_device_attribute_2 *sattr = to_sensor_dev_attr_2(attr);
  807. int nr = sattr->nr;
  808. int index = sattr->index;
  809. struct it87_data *data = dev_get_drvdata(dev);
  810. long val;
  811. u8 reg;
  812. if (kstrtol(buf, 10, &val) < 0)
  813. return -EINVAL;
  814. mutex_lock(&data->update_lock);
  815. if (has_16bit_fans(data)) {
  816. data->fan[nr][index] = FAN16_TO_REG(val);
  817. it87_write_value(data, IT87_REG_FAN_MIN[nr],
  818. data->fan[nr][index] & 0xff);
  819. it87_write_value(data, IT87_REG_FANX_MIN[nr],
  820. data->fan[nr][index] >> 8);
  821. } else {
  822. reg = it87_read_value(data, IT87_REG_FAN_DIV);
  823. switch (nr) {
  824. case 0:
  825. data->fan_div[nr] = reg & 0x07;
  826. break;
  827. case 1:
  828. data->fan_div[nr] = (reg >> 3) & 0x07;
  829. break;
  830. case 2:
  831. data->fan_div[nr] = (reg & 0x40) ? 3 : 1;
  832. break;
  833. }
  834. data->fan[nr][index] =
  835. FAN_TO_REG(val, DIV_FROM_REG(data->fan_div[nr]));
  836. it87_write_value(data, IT87_REG_FAN_MIN[nr],
  837. data->fan[nr][index]);
  838. }
  839. mutex_unlock(&data->update_lock);
  840. return count;
  841. }
  842. static ssize_t set_fan_div(struct device *dev, struct device_attribute *attr,
  843. const char *buf, size_t count)
  844. {
  845. struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
  846. int nr = sensor_attr->index;
  847. struct it87_data *data = dev_get_drvdata(dev);
  848. unsigned long val;
  849. int min;
  850. u8 old;
  851. if (kstrtoul(buf, 10, &val) < 0)
  852. return -EINVAL;
  853. mutex_lock(&data->update_lock);
  854. old = it87_read_value(data, IT87_REG_FAN_DIV);
  855. /* Save fan min limit */
  856. min = FAN_FROM_REG(data->fan[nr][1], DIV_FROM_REG(data->fan_div[nr]));
  857. switch (nr) {
  858. case 0:
  859. case 1:
  860. data->fan_div[nr] = DIV_TO_REG(val);
  861. break;
  862. case 2:
  863. if (val < 8)
  864. data->fan_div[nr] = 1;
  865. else
  866. data->fan_div[nr] = 3;
  867. }
  868. val = old & 0x80;
  869. val |= (data->fan_div[0] & 0x07);
  870. val |= (data->fan_div[1] & 0x07) << 3;
  871. if (data->fan_div[2] == 3)
  872. val |= 0x1 << 6;
  873. it87_write_value(data, IT87_REG_FAN_DIV, val);
  874. /* Restore fan min limit */
  875. data->fan[nr][1] = FAN_TO_REG(min, DIV_FROM_REG(data->fan_div[nr]));
  876. it87_write_value(data, IT87_REG_FAN_MIN[nr], data->fan[nr][1]);
  877. mutex_unlock(&data->update_lock);
  878. return count;
  879. }
  880. /* Returns 0 if OK, -EINVAL otherwise */
  881. static int check_trip_points(struct device *dev, int nr)
  882. {
  883. const struct it87_data *data = dev_get_drvdata(dev);
  884. int i, err = 0;
  885. if (has_old_autopwm(data)) {
  886. for (i = 0; i < 3; i++) {
  887. if (data->auto_temp[nr][i] > data->auto_temp[nr][i + 1])
  888. err = -EINVAL;
  889. }
  890. for (i = 0; i < 2; i++) {
  891. if (data->auto_pwm[nr][i] > data->auto_pwm[nr][i + 1])
  892. err = -EINVAL;
  893. }
  894. }
  895. if (err) {
  896. dev_err(dev,
  897. "Inconsistent trip points, not switching to automatic mode\n");
  898. dev_err(dev, "Adjust the trip points and try again\n");
  899. }
  900. return err;
  901. }
  902. static ssize_t set_pwm_enable(struct device *dev,
  903. struct device_attribute *attr, const char *buf, size_t count)
  904. {
  905. struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
  906. int nr = sensor_attr->index;
  907. struct it87_data *data = dev_get_drvdata(dev);
  908. long val;
  909. if (kstrtol(buf, 10, &val) < 0 || val < 0 || val > 2)
  910. return -EINVAL;
  911. /* Check trip points before switching to automatic mode */
  912. if (val == 2) {
  913. if (check_trip_points(dev, nr) < 0)
  914. return -EINVAL;
  915. }
  916. /* IT8603E does not have on/off mode */
  917. if (val == 0 && data->type == it8603)
  918. return -EINVAL;
  919. mutex_lock(&data->update_lock);
  920. if (val == 0) {
  921. int tmp;
  922. /* make sure the fan is on when in on/off mode */
  923. tmp = it87_read_value(data, IT87_REG_FAN_CTL);
  924. it87_write_value(data, IT87_REG_FAN_CTL, tmp | (1 << nr));
  925. /* set on/off mode */
  926. data->fan_main_ctrl &= ~(1 << nr);
  927. it87_write_value(data, IT87_REG_FAN_MAIN_CTRL,
  928. data->fan_main_ctrl);
  929. } else {
  930. if (val == 1) /* Manual mode */
  931. data->pwm_ctrl[nr] = has_newer_autopwm(data) ?
  932. data->pwm_temp_map[nr] :
  933. data->pwm_duty[nr];
  934. else /* Automatic mode */
  935. data->pwm_ctrl[nr] = 0x80 | data->pwm_temp_map[nr];
  936. it87_write_value(data, IT87_REG_PWM(nr), data->pwm_ctrl[nr]);
  937. if (data->type != it8603) {
  938. /* set SmartGuardian mode */
  939. data->fan_main_ctrl |= (1 << nr);
  940. it87_write_value(data, IT87_REG_FAN_MAIN_CTRL,
  941. data->fan_main_ctrl);
  942. }
  943. }
  944. mutex_unlock(&data->update_lock);
  945. return count;
  946. }
  947. static ssize_t set_pwm(struct device *dev, struct device_attribute *attr,
  948. const char *buf, size_t count)
  949. {
  950. struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
  951. int nr = sensor_attr->index;
  952. struct it87_data *data = dev_get_drvdata(dev);
  953. long val;
  954. if (kstrtol(buf, 10, &val) < 0 || val < 0 || val > 255)
  955. return -EINVAL;
  956. mutex_lock(&data->update_lock);
  957. if (has_newer_autopwm(data)) {
  958. /*
  959. * If we are in automatic mode, the PWM duty cycle register
  960. * is read-only so we can't write the value.
  961. */
  962. if (data->pwm_ctrl[nr] & 0x80) {
  963. mutex_unlock(&data->update_lock);
  964. return -EBUSY;
  965. }
  966. data->pwm_duty[nr] = pwm_to_reg(data, val);
  967. it87_write_value(data, IT87_REG_PWM_DUTY(nr),
  968. data->pwm_duty[nr]);
  969. } else {
  970. data->pwm_duty[nr] = pwm_to_reg(data, val);
  971. /*
  972. * If we are in manual mode, write the duty cycle immediately;
  973. * otherwise, just store it for later use.
  974. */
  975. if (!(data->pwm_ctrl[nr] & 0x80)) {
  976. data->pwm_ctrl[nr] = data->pwm_duty[nr];
  977. it87_write_value(data, IT87_REG_PWM(nr),
  978. data->pwm_ctrl[nr]);
  979. }
  980. }
  981. mutex_unlock(&data->update_lock);
  982. return count;
  983. }
  984. static ssize_t set_pwm_freq(struct device *dev,
  985. struct device_attribute *attr, const char *buf, size_t count)
  986. {
  987. struct it87_data *data = dev_get_drvdata(dev);
  988. unsigned long val;
  989. int i;
  990. if (kstrtoul(buf, 10, &val) < 0)
  991. return -EINVAL;
  992. val = clamp_val(val, 0, 1000000);
  993. val *= has_newer_autopwm(data) ? 256 : 128;
  994. /* Search for the nearest available frequency */
  995. for (i = 0; i < 7; i++) {
  996. if (val > (pwm_freq[i] + pwm_freq[i+1]) / 2)
  997. break;
  998. }
  999. mutex_lock(&data->update_lock);
  1000. data->fan_ctl = it87_read_value(data, IT87_REG_FAN_CTL) & 0x8f;
  1001. data->fan_ctl |= i << 4;
  1002. it87_write_value(data, IT87_REG_FAN_CTL, data->fan_ctl);
  1003. mutex_unlock(&data->update_lock);
  1004. return count;
  1005. }
  1006. static ssize_t show_pwm_temp_map(struct device *dev,
  1007. struct device_attribute *attr, char *buf)
  1008. {
  1009. struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
  1010. int nr = sensor_attr->index;
  1011. struct it87_data *data = it87_update_device(dev);
  1012. int map;
  1013. if (data->pwm_temp_map[nr] < 3)
  1014. map = 1 << data->pwm_temp_map[nr];
  1015. else
  1016. map = 0; /* Should never happen */
  1017. return sprintf(buf, "%d\n", map);
  1018. }
  1019. static ssize_t set_pwm_temp_map(struct device *dev,
  1020. struct device_attribute *attr, const char *buf, size_t count)
  1021. {
  1022. struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
  1023. int nr = sensor_attr->index;
  1024. struct it87_data *data = dev_get_drvdata(dev);
  1025. long val;
  1026. u8 reg;
  1027. /*
  1028. * This check can go away if we ever support automatic fan speed
  1029. * control on newer chips.
  1030. */
  1031. if (!has_old_autopwm(data)) {
  1032. dev_notice(dev, "Mapping change disabled for safety reasons\n");
  1033. return -EINVAL;
  1034. }
  1035. if (kstrtol(buf, 10, &val) < 0)
  1036. return -EINVAL;
  1037. switch (val) {
  1038. case (1 << 0):
  1039. reg = 0x00;
  1040. break;
  1041. case (1 << 1):
  1042. reg = 0x01;
  1043. break;
  1044. case (1 << 2):
  1045. reg = 0x02;
  1046. break;
  1047. default:
  1048. return -EINVAL;
  1049. }
  1050. mutex_lock(&data->update_lock);
  1051. data->pwm_temp_map[nr] = reg;
  1052. /*
  1053. * If we are in automatic mode, write the temp mapping immediately;
  1054. * otherwise, just store it for later use.
  1055. */
  1056. if (data->pwm_ctrl[nr] & 0x80) {
  1057. data->pwm_ctrl[nr] = 0x80 | data->pwm_temp_map[nr];
  1058. it87_write_value(data, IT87_REG_PWM(nr), data->pwm_ctrl[nr]);
  1059. }
  1060. mutex_unlock(&data->update_lock);
  1061. return count;
  1062. }
  1063. static ssize_t show_auto_pwm(struct device *dev,
  1064. struct device_attribute *attr, char *buf)
  1065. {
  1066. struct it87_data *data = it87_update_device(dev);
  1067. struct sensor_device_attribute_2 *sensor_attr =
  1068. to_sensor_dev_attr_2(attr);
  1069. int nr = sensor_attr->nr;
  1070. int point = sensor_attr->index;
  1071. return sprintf(buf, "%d\n",
  1072. pwm_from_reg(data, data->auto_pwm[nr][point]));
  1073. }
  1074. static ssize_t set_auto_pwm(struct device *dev,
  1075. struct device_attribute *attr, const char *buf, size_t count)
  1076. {
  1077. struct it87_data *data = dev_get_drvdata(dev);
  1078. struct sensor_device_attribute_2 *sensor_attr =
  1079. to_sensor_dev_attr_2(attr);
  1080. int nr = sensor_attr->nr;
  1081. int point = sensor_attr->index;
  1082. long val;
  1083. if (kstrtol(buf, 10, &val) < 0 || val < 0 || val > 255)
  1084. return -EINVAL;
  1085. mutex_lock(&data->update_lock);
  1086. data->auto_pwm[nr][point] = pwm_to_reg(data, val);
  1087. it87_write_value(data, IT87_REG_AUTO_PWM(nr, point),
  1088. data->auto_pwm[nr][point]);
  1089. mutex_unlock(&data->update_lock);
  1090. return count;
  1091. }
  1092. static ssize_t show_auto_temp(struct device *dev,
  1093. struct device_attribute *attr, char *buf)
  1094. {
  1095. struct it87_data *data = it87_update_device(dev);
  1096. struct sensor_device_attribute_2 *sensor_attr =
  1097. to_sensor_dev_attr_2(attr);
  1098. int nr = sensor_attr->nr;
  1099. int point = sensor_attr->index;
  1100. return sprintf(buf, "%d\n", TEMP_FROM_REG(data->auto_temp[nr][point]));
  1101. }
  1102. static ssize_t set_auto_temp(struct device *dev,
  1103. struct device_attribute *attr, const char *buf, size_t count)
  1104. {
  1105. struct it87_data *data = dev_get_drvdata(dev);
  1106. struct sensor_device_attribute_2 *sensor_attr =
  1107. to_sensor_dev_attr_2(attr);
  1108. int nr = sensor_attr->nr;
  1109. int point = sensor_attr->index;
  1110. long val;
  1111. if (kstrtol(buf, 10, &val) < 0 || val < -128000 || val > 127000)
  1112. return -EINVAL;
  1113. mutex_lock(&data->update_lock);
  1114. data->auto_temp[nr][point] = TEMP_TO_REG(val);
  1115. it87_write_value(data, IT87_REG_AUTO_TEMP(nr, point),
  1116. data->auto_temp[nr][point]);
  1117. mutex_unlock(&data->update_lock);
  1118. return count;
  1119. }
  1120. static SENSOR_DEVICE_ATTR_2(fan1_input, S_IRUGO, show_fan, NULL, 0, 0);
  1121. static SENSOR_DEVICE_ATTR_2(fan1_min, S_IRUGO | S_IWUSR, show_fan, set_fan,
  1122. 0, 1);
  1123. static SENSOR_DEVICE_ATTR(fan1_div, S_IRUGO | S_IWUSR, show_fan_div,
  1124. set_fan_div, 0);
  1125. static SENSOR_DEVICE_ATTR_2(fan2_input, S_IRUGO, show_fan, NULL, 1, 0);
  1126. static SENSOR_DEVICE_ATTR_2(fan2_min, S_IRUGO | S_IWUSR, show_fan, set_fan,
  1127. 1, 1);
  1128. static SENSOR_DEVICE_ATTR(fan2_div, S_IRUGO | S_IWUSR, show_fan_div,
  1129. set_fan_div, 1);
  1130. static SENSOR_DEVICE_ATTR_2(fan3_input, S_IRUGO, show_fan, NULL, 2, 0);
  1131. static SENSOR_DEVICE_ATTR_2(fan3_min, S_IRUGO | S_IWUSR, show_fan, set_fan,
  1132. 2, 1);
  1133. static SENSOR_DEVICE_ATTR(fan3_div, S_IRUGO | S_IWUSR, show_fan_div,
  1134. set_fan_div, 2);
  1135. static SENSOR_DEVICE_ATTR_2(fan4_input, S_IRUGO, show_fan, NULL, 3, 0);
  1136. static SENSOR_DEVICE_ATTR_2(fan4_min, S_IRUGO | S_IWUSR, show_fan, set_fan,
  1137. 3, 1);
  1138. static SENSOR_DEVICE_ATTR_2(fan5_input, S_IRUGO, show_fan, NULL, 4, 0);
  1139. static SENSOR_DEVICE_ATTR_2(fan5_min, S_IRUGO | S_IWUSR, show_fan, set_fan,
  1140. 4, 1);
  1141. static SENSOR_DEVICE_ATTR_2(fan6_input, S_IRUGO, show_fan, NULL, 5, 0);
  1142. static SENSOR_DEVICE_ATTR_2(fan6_min, S_IRUGO | S_IWUSR, show_fan, set_fan,
  1143. 5, 1);
  1144. static SENSOR_DEVICE_ATTR(pwm1_enable, S_IRUGO | S_IWUSR,
  1145. show_pwm_enable, set_pwm_enable, 0);
  1146. static SENSOR_DEVICE_ATTR(pwm1, S_IRUGO | S_IWUSR, show_pwm, set_pwm, 0);
  1147. static DEVICE_ATTR(pwm1_freq, S_IRUGO | S_IWUSR, show_pwm_freq, set_pwm_freq);
  1148. static SENSOR_DEVICE_ATTR(pwm1_auto_channels_temp, S_IRUGO | S_IWUSR,
  1149. show_pwm_temp_map, set_pwm_temp_map, 0);
  1150. static SENSOR_DEVICE_ATTR_2(pwm1_auto_point1_pwm, S_IRUGO | S_IWUSR,
  1151. show_auto_pwm, set_auto_pwm, 0, 0);
  1152. static SENSOR_DEVICE_ATTR_2(pwm1_auto_point2_pwm, S_IRUGO | S_IWUSR,
  1153. show_auto_pwm, set_auto_pwm, 0, 1);
  1154. static SENSOR_DEVICE_ATTR_2(pwm1_auto_point3_pwm, S_IRUGO | S_IWUSR,
  1155. show_auto_pwm, set_auto_pwm, 0, 2);
  1156. static SENSOR_DEVICE_ATTR_2(pwm1_auto_point4_pwm, S_IRUGO,
  1157. show_auto_pwm, NULL, 0, 3);
  1158. static SENSOR_DEVICE_ATTR_2(pwm1_auto_point1_temp, S_IRUGO | S_IWUSR,
  1159. show_auto_temp, set_auto_temp, 0, 1);
  1160. static SENSOR_DEVICE_ATTR_2(pwm1_auto_point1_temp_hyst, S_IRUGO | S_IWUSR,
  1161. show_auto_temp, set_auto_temp, 0, 0);
  1162. static SENSOR_DEVICE_ATTR_2(pwm1_auto_point2_temp, S_IRUGO | S_IWUSR,
  1163. show_auto_temp, set_auto_temp, 0, 2);
  1164. static SENSOR_DEVICE_ATTR_2(pwm1_auto_point3_temp, S_IRUGO | S_IWUSR,
  1165. show_auto_temp, set_auto_temp, 0, 3);
  1166. static SENSOR_DEVICE_ATTR_2(pwm1_auto_point4_temp, S_IRUGO | S_IWUSR,
  1167. show_auto_temp, set_auto_temp, 0, 4);
  1168. static SENSOR_DEVICE_ATTR(pwm2_enable, S_IRUGO | S_IWUSR,
  1169. show_pwm_enable, set_pwm_enable, 1);
  1170. static SENSOR_DEVICE_ATTR(pwm2, S_IRUGO | S_IWUSR, show_pwm, set_pwm, 1);
  1171. static DEVICE_ATTR(pwm2_freq, S_IRUGO, show_pwm_freq, NULL);
  1172. static SENSOR_DEVICE_ATTR(pwm2_auto_channels_temp, S_IRUGO | S_IWUSR,
  1173. show_pwm_temp_map, set_pwm_temp_map, 1);
  1174. static SENSOR_DEVICE_ATTR_2(pwm2_auto_point1_pwm, S_IRUGO | S_IWUSR,
  1175. show_auto_pwm, set_auto_pwm, 1, 0);
  1176. static SENSOR_DEVICE_ATTR_2(pwm2_auto_point2_pwm, S_IRUGO | S_IWUSR,
  1177. show_auto_pwm, set_auto_pwm, 1, 1);
  1178. static SENSOR_DEVICE_ATTR_2(pwm2_auto_point3_pwm, S_IRUGO | S_IWUSR,
  1179. show_auto_pwm, set_auto_pwm, 1, 2);
  1180. static SENSOR_DEVICE_ATTR_2(pwm2_auto_point4_pwm, S_IRUGO,
  1181. show_auto_pwm, NULL, 1, 3);
  1182. static SENSOR_DEVICE_ATTR_2(pwm2_auto_point1_temp, S_IRUGO | S_IWUSR,
  1183. show_auto_temp, set_auto_temp, 1, 1);
  1184. static SENSOR_DEVICE_ATTR_2(pwm2_auto_point1_temp_hyst, S_IRUGO | S_IWUSR,
  1185. show_auto_temp, set_auto_temp, 1, 0);
  1186. static SENSOR_DEVICE_ATTR_2(pwm2_auto_point2_temp, S_IRUGO | S_IWUSR,
  1187. show_auto_temp, set_auto_temp, 1, 2);
  1188. static SENSOR_DEVICE_ATTR_2(pwm2_auto_point3_temp, S_IRUGO | S_IWUSR,
  1189. show_auto_temp, set_auto_temp, 1, 3);
  1190. static SENSOR_DEVICE_ATTR_2(pwm2_auto_point4_temp, S_IRUGO | S_IWUSR,
  1191. show_auto_temp, set_auto_temp, 1, 4);
  1192. static SENSOR_DEVICE_ATTR(pwm3_enable, S_IRUGO | S_IWUSR,
  1193. show_pwm_enable, set_pwm_enable, 2);
  1194. static SENSOR_DEVICE_ATTR(pwm3, S_IRUGO | S_IWUSR, show_pwm, set_pwm, 2);
  1195. static DEVICE_ATTR(pwm3_freq, S_IRUGO, show_pwm_freq, NULL);
  1196. static SENSOR_DEVICE_ATTR(pwm3_auto_channels_temp, S_IRUGO | S_IWUSR,
  1197. show_pwm_temp_map, set_pwm_temp_map, 2);
  1198. static SENSOR_DEVICE_ATTR_2(pwm3_auto_point1_pwm, S_IRUGO | S_IWUSR,
  1199. show_auto_pwm, set_auto_pwm, 2, 0);
  1200. static SENSOR_DEVICE_ATTR_2(pwm3_auto_point2_pwm, S_IRUGO | S_IWUSR,
  1201. show_auto_pwm, set_auto_pwm, 2, 1);
  1202. static SENSOR_DEVICE_ATTR_2(pwm3_auto_point3_pwm, S_IRUGO | S_IWUSR,
  1203. show_auto_pwm, set_auto_pwm, 2, 2);
  1204. static SENSOR_DEVICE_ATTR_2(pwm3_auto_point4_pwm, S_IRUGO,
  1205. show_auto_pwm, NULL, 2, 3);
  1206. static SENSOR_DEVICE_ATTR_2(pwm3_auto_point1_temp, S_IRUGO | S_IWUSR,
  1207. show_auto_temp, set_auto_temp, 2, 1);
  1208. static SENSOR_DEVICE_ATTR_2(pwm3_auto_point1_temp_hyst, S_IRUGO | S_IWUSR,
  1209. show_auto_temp, set_auto_temp, 2, 0);
  1210. static SENSOR_DEVICE_ATTR_2(pwm3_auto_point2_temp, S_IRUGO | S_IWUSR,
  1211. show_auto_temp, set_auto_temp, 2, 2);
  1212. static SENSOR_DEVICE_ATTR_2(pwm3_auto_point3_temp, S_IRUGO | S_IWUSR,
  1213. show_auto_temp, set_auto_temp, 2, 3);
  1214. static SENSOR_DEVICE_ATTR_2(pwm3_auto_point4_temp, S_IRUGO | S_IWUSR,
  1215. show_auto_temp, set_auto_temp, 2, 4);
  1216. /* Alarms */
  1217. static ssize_t show_alarms(struct device *dev, struct device_attribute *attr,
  1218. char *buf)
  1219. {
  1220. struct it87_data *data = it87_update_device(dev);
  1221. return sprintf(buf, "%u\n", data->alarms);
  1222. }
  1223. static DEVICE_ATTR(alarms, S_IRUGO, show_alarms, NULL);
  1224. static ssize_t show_alarm(struct device *dev, struct device_attribute *attr,
  1225. char *buf)
  1226. {
  1227. int bitnr = to_sensor_dev_attr(attr)->index;
  1228. struct it87_data *data = it87_update_device(dev);
  1229. return sprintf(buf, "%u\n", (data->alarms >> bitnr) & 1);
  1230. }
  1231. static ssize_t clear_intrusion(struct device *dev, struct device_attribute
  1232. *attr, const char *buf, size_t count)
  1233. {
  1234. struct it87_data *data = dev_get_drvdata(dev);
  1235. long val;
  1236. int config;
  1237. if (kstrtol(buf, 10, &val) < 0 || val != 0)
  1238. return -EINVAL;
  1239. mutex_lock(&data->update_lock);
  1240. config = it87_read_value(data, IT87_REG_CONFIG);
  1241. if (config < 0) {
  1242. count = config;
  1243. } else {
  1244. config |= 1 << 5;
  1245. it87_write_value(data, IT87_REG_CONFIG, config);
  1246. /* Invalidate cache to force re-read */
  1247. data->valid = 0;
  1248. }
  1249. mutex_unlock(&data->update_lock);
  1250. return count;
  1251. }
  1252. static SENSOR_DEVICE_ATTR(in0_alarm, S_IRUGO, show_alarm, NULL, 8);
  1253. static SENSOR_DEVICE_ATTR(in1_alarm, S_IRUGO, show_alarm, NULL, 9);
  1254. static SENSOR_DEVICE_ATTR(in2_alarm, S_IRUGO, show_alarm, NULL, 10);
  1255. static SENSOR_DEVICE_ATTR(in3_alarm, S_IRUGO, show_alarm, NULL, 11);
  1256. static SENSOR_DEVICE_ATTR(in4_alarm, S_IRUGO, show_alarm, NULL, 12);
  1257. static SENSOR_DEVICE_ATTR(in5_alarm, S_IRUGO, show_alarm, NULL, 13);
  1258. static SENSOR_DEVICE_ATTR(in6_alarm, S_IRUGO, show_alarm, NULL, 14);
  1259. static SENSOR_DEVICE_ATTR(in7_alarm, S_IRUGO, show_alarm, NULL, 15);
  1260. static SENSOR_DEVICE_ATTR(fan1_alarm, S_IRUGO, show_alarm, NULL, 0);
  1261. static SENSOR_DEVICE_ATTR(fan2_alarm, S_IRUGO, show_alarm, NULL, 1);
  1262. static SENSOR_DEVICE_ATTR(fan3_alarm, S_IRUGO, show_alarm, NULL, 2);
  1263. static SENSOR_DEVICE_ATTR(fan4_alarm, S_IRUGO, show_alarm, NULL, 3);
  1264. static SENSOR_DEVICE_ATTR(fan5_alarm, S_IRUGO, show_alarm, NULL, 6);
  1265. static SENSOR_DEVICE_ATTR(fan6_alarm, S_IRUGO, show_alarm, NULL, 7);
  1266. static SENSOR_DEVICE_ATTR(temp1_alarm, S_IRUGO, show_alarm, NULL, 16);
  1267. static SENSOR_DEVICE_ATTR(temp2_alarm, S_IRUGO, show_alarm, NULL, 17);
  1268. static SENSOR_DEVICE_ATTR(temp3_alarm, S_IRUGO, show_alarm, NULL, 18);
  1269. static SENSOR_DEVICE_ATTR(intrusion0_alarm, S_IRUGO | S_IWUSR,
  1270. show_alarm, clear_intrusion, 4);
  1271. static ssize_t show_beep(struct device *dev, struct device_attribute *attr,
  1272. char *buf)
  1273. {
  1274. int bitnr = to_sensor_dev_attr(attr)->index;
  1275. struct it87_data *data = it87_update_device(dev);
  1276. return sprintf(buf, "%u\n", (data->beeps >> bitnr) & 1);
  1277. }
  1278. static ssize_t set_beep(struct device *dev, struct device_attribute *attr,
  1279. const char *buf, size_t count)
  1280. {
  1281. int bitnr = to_sensor_dev_attr(attr)->index;
  1282. struct it87_data *data = dev_get_drvdata(dev);
  1283. long val;
  1284. if (kstrtol(buf, 10, &val) < 0
  1285. || (val != 0 && val != 1))
  1286. return -EINVAL;
  1287. mutex_lock(&data->update_lock);
  1288. data->beeps = it87_read_value(data, IT87_REG_BEEP_ENABLE);
  1289. if (val)
  1290. data->beeps |= (1 << bitnr);
  1291. else
  1292. data->beeps &= ~(1 << bitnr);
  1293. it87_write_value(data, IT87_REG_BEEP_ENABLE, data->beeps);
  1294. mutex_unlock(&data->update_lock);
  1295. return count;
  1296. }
  1297. static SENSOR_DEVICE_ATTR(in0_beep, S_IRUGO | S_IWUSR,
  1298. show_beep, set_beep, 1);
  1299. static SENSOR_DEVICE_ATTR(in1_beep, S_IRUGO, show_beep, NULL, 1);
  1300. static SENSOR_DEVICE_ATTR(in2_beep, S_IRUGO, show_beep, NULL, 1);
  1301. static SENSOR_DEVICE_ATTR(in3_beep, S_IRUGO, show_beep, NULL, 1);
  1302. static SENSOR_DEVICE_ATTR(in4_beep, S_IRUGO, show_beep, NULL, 1);
  1303. static SENSOR_DEVICE_ATTR(in5_beep, S_IRUGO, show_beep, NULL, 1);
  1304. static SENSOR_DEVICE_ATTR(in6_beep, S_IRUGO, show_beep, NULL, 1);
  1305. static SENSOR_DEVICE_ATTR(in7_beep, S_IRUGO, show_beep, NULL, 1);
  1306. /* fanX_beep writability is set later */
  1307. static SENSOR_DEVICE_ATTR(fan1_beep, S_IRUGO, show_beep, set_beep, 0);
  1308. static SENSOR_DEVICE_ATTR(fan2_beep, S_IRUGO, show_beep, set_beep, 0);
  1309. static SENSOR_DEVICE_ATTR(fan3_beep, S_IRUGO, show_beep, set_beep, 0);
  1310. static SENSOR_DEVICE_ATTR(fan4_beep, S_IRUGO, show_beep, set_beep, 0);
  1311. static SENSOR_DEVICE_ATTR(fan5_beep, S_IRUGO, show_beep, set_beep, 0);
  1312. static SENSOR_DEVICE_ATTR(fan6_beep, S_IRUGO, show_beep, set_beep, 0);
  1313. static SENSOR_DEVICE_ATTR(temp1_beep, S_IRUGO | S_IWUSR,
  1314. show_beep, set_beep, 2);
  1315. static SENSOR_DEVICE_ATTR(temp2_beep, S_IRUGO, show_beep, NULL, 2);
  1316. static SENSOR_DEVICE_ATTR(temp3_beep, S_IRUGO, show_beep, NULL, 2);
  1317. static ssize_t show_vrm_reg(struct device *dev, struct device_attribute *attr,
  1318. char *buf)
  1319. {
  1320. struct it87_data *data = dev_get_drvdata(dev);
  1321. return sprintf(buf, "%u\n", data->vrm);
  1322. }
  1323. static ssize_t store_vrm_reg(struct device *dev, struct device_attribute *attr,
  1324. const char *buf, size_t count)
  1325. {
  1326. struct it87_data *data = dev_get_drvdata(dev);
  1327. unsigned long val;
  1328. if (kstrtoul(buf, 10, &val) < 0)
  1329. return -EINVAL;
  1330. data->vrm = val;
  1331. return count;
  1332. }
  1333. static DEVICE_ATTR(vrm, S_IRUGO | S_IWUSR, show_vrm_reg, store_vrm_reg);
  1334. static ssize_t show_vid_reg(struct device *dev, struct device_attribute *attr,
  1335. char *buf)
  1336. {
  1337. struct it87_data *data = it87_update_device(dev);
  1338. return sprintf(buf, "%ld\n", (long) vid_from_reg(data->vid, data->vrm));
  1339. }
  1340. static DEVICE_ATTR(cpu0_vid, S_IRUGO, show_vid_reg, NULL);
  1341. static ssize_t show_label(struct device *dev, struct device_attribute *attr,
  1342. char *buf)
  1343. {
  1344. static const char * const labels[] = {
  1345. "+5V",
  1346. "5VSB",
  1347. "Vbat",
  1348. };
  1349. static const char * const labels_it8721[] = {
  1350. "+3.3V",
  1351. "3VSB",
  1352. "Vbat",
  1353. };
  1354. struct it87_data *data = dev_get_drvdata(dev);
  1355. int nr = to_sensor_dev_attr(attr)->index;
  1356. const char *label;
  1357. if (has_12mv_adc(data) || has_10_9mv_adc(data))
  1358. label = labels_it8721[nr];
  1359. else
  1360. label = labels[nr];
  1361. return sprintf(buf, "%s\n", label);
  1362. }
  1363. static SENSOR_DEVICE_ATTR(in3_label, S_IRUGO, show_label, NULL, 0);
  1364. static SENSOR_DEVICE_ATTR(in7_label, S_IRUGO, show_label, NULL, 1);
  1365. static SENSOR_DEVICE_ATTR(in8_label, S_IRUGO, show_label, NULL, 2);
  1366. /* special AVCC3 IT8603E in9 */
  1367. static SENSOR_DEVICE_ATTR(in9_label, S_IRUGO, show_label, NULL, 0);
  1368. static ssize_t show_name(struct device *dev, struct device_attribute
  1369. *devattr, char *buf)
  1370. {
  1371. struct it87_data *data = dev_get_drvdata(dev);
  1372. return sprintf(buf, "%s\n", data->name);
  1373. }
  1374. static DEVICE_ATTR(name, S_IRUGO, show_name, NULL);
  1375. static struct attribute *it87_attributes_in[10][5] = {
  1376. {
  1377. &sensor_dev_attr_in0_input.dev_attr.attr,
  1378. &sensor_dev_attr_in0_min.dev_attr.attr,
  1379. &sensor_dev_attr_in0_max.dev_attr.attr,
  1380. &sensor_dev_attr_in0_alarm.dev_attr.attr,
  1381. NULL
  1382. }, {
  1383. &sensor_dev_attr_in1_input.dev_attr.attr,
  1384. &sensor_dev_attr_in1_min.dev_attr.attr,
  1385. &sensor_dev_attr_in1_max.dev_attr.attr,
  1386. &sensor_dev_attr_in1_alarm.dev_attr.attr,
  1387. NULL
  1388. }, {
  1389. &sensor_dev_attr_in2_input.dev_attr.attr,
  1390. &sensor_dev_attr_in2_min.dev_attr.attr,
  1391. &sensor_dev_attr_in2_max.dev_attr.attr,
  1392. &sensor_dev_attr_in2_alarm.dev_attr.attr,
  1393. NULL
  1394. }, {
  1395. &sensor_dev_attr_in3_input.dev_attr.attr,
  1396. &sensor_dev_attr_in3_min.dev_attr.attr,
  1397. &sensor_dev_attr_in3_max.dev_attr.attr,
  1398. &sensor_dev_attr_in3_alarm.dev_attr.attr,
  1399. NULL
  1400. }, {
  1401. &sensor_dev_attr_in4_input.dev_attr.attr,
  1402. &sensor_dev_attr_in4_min.dev_attr.attr,
  1403. &sensor_dev_attr_in4_max.dev_attr.attr,
  1404. &sensor_dev_attr_in4_alarm.dev_attr.attr,
  1405. NULL
  1406. }, {
  1407. &sensor_dev_attr_in5_input.dev_attr.attr,
  1408. &sensor_dev_attr_in5_min.dev_attr.attr,
  1409. &sensor_dev_attr_in5_max.dev_attr.attr,
  1410. &sensor_dev_attr_in5_alarm.dev_attr.attr,
  1411. NULL
  1412. }, {
  1413. &sensor_dev_attr_in6_input.dev_attr.attr,
  1414. &sensor_dev_attr_in6_min.dev_attr.attr,
  1415. &sensor_dev_attr_in6_max.dev_attr.attr,
  1416. &sensor_dev_attr_in6_alarm.dev_attr.attr,
  1417. NULL
  1418. }, {
  1419. &sensor_dev_attr_in7_input.dev_attr.attr,
  1420. &sensor_dev_attr_in7_min.dev_attr.attr,
  1421. &sensor_dev_attr_in7_max.dev_attr.attr,
  1422. &sensor_dev_attr_in7_alarm.dev_attr.attr,
  1423. NULL
  1424. }, {
  1425. &sensor_dev_attr_in8_input.dev_attr.attr,
  1426. NULL
  1427. }, {
  1428. &sensor_dev_attr_in9_input.dev_attr.attr,
  1429. NULL
  1430. } };
  1431. static const struct attribute_group it87_group_in[10] = {
  1432. { .attrs = it87_attributes_in[0] },
  1433. { .attrs = it87_attributes_in[1] },
  1434. { .attrs = it87_attributes_in[2] },
  1435. { .attrs = it87_attributes_in[3] },
  1436. { .attrs = it87_attributes_in[4] },
  1437. { .attrs = it87_attributes_in[5] },
  1438. { .attrs = it87_attributes_in[6] },
  1439. { .attrs = it87_attributes_in[7] },
  1440. { .attrs = it87_attributes_in[8] },
  1441. { .attrs = it87_attributes_in[9] },
  1442. };
  1443. static struct attribute *it87_attributes_temp[3][6] = {
  1444. {
  1445. &sensor_dev_attr_temp1_input.dev_attr.attr,
  1446. &sensor_dev_attr_temp1_max.dev_attr.attr,
  1447. &sensor_dev_attr_temp1_min.dev_attr.attr,
  1448. &sensor_dev_attr_temp1_type.dev_attr.attr,
  1449. &sensor_dev_attr_temp1_alarm.dev_attr.attr,
  1450. NULL
  1451. } , {
  1452. &sensor_dev_attr_temp2_input.dev_attr.attr,
  1453. &sensor_dev_attr_temp2_max.dev_attr.attr,
  1454. &sensor_dev_attr_temp2_min.dev_attr.attr,
  1455. &sensor_dev_attr_temp2_type.dev_attr.attr,
  1456. &sensor_dev_attr_temp2_alarm.dev_attr.attr,
  1457. NULL
  1458. } , {
  1459. &sensor_dev_attr_temp3_input.dev_attr.attr,
  1460. &sensor_dev_attr_temp3_max.dev_attr.attr,
  1461. &sensor_dev_attr_temp3_min.dev_attr.attr,
  1462. &sensor_dev_attr_temp3_type.dev_attr.attr,
  1463. &sensor_dev_attr_temp3_alarm.dev_attr.attr,
  1464. NULL
  1465. } };
  1466. static const struct attribute_group it87_group_temp[3] = {
  1467. { .attrs = it87_attributes_temp[0] },
  1468. { .attrs = it87_attributes_temp[1] },
  1469. { .attrs = it87_attributes_temp[2] },
  1470. };
  1471. static struct attribute *it87_attributes_temp_offset[] = {
  1472. &sensor_dev_attr_temp1_offset.dev_attr.attr,
  1473. &sensor_dev_attr_temp2_offset.dev_attr.attr,
  1474. &sensor_dev_attr_temp3_offset.dev_attr.attr,
  1475. };
  1476. static struct attribute *it87_attributes[] = {
  1477. &dev_attr_alarms.attr,
  1478. &sensor_dev_attr_intrusion0_alarm.dev_attr.attr,
  1479. &dev_attr_name.attr,
  1480. NULL
  1481. };
  1482. static const struct attribute_group it87_group = {
  1483. .attrs = it87_attributes,
  1484. };
  1485. static struct attribute *it87_attributes_in_beep[] = {
  1486. &sensor_dev_attr_in0_beep.dev_attr.attr,
  1487. &sensor_dev_attr_in1_beep.dev_attr.attr,
  1488. &sensor_dev_attr_in2_beep.dev_attr.attr,
  1489. &sensor_dev_attr_in3_beep.dev_attr.attr,
  1490. &sensor_dev_attr_in4_beep.dev_attr.attr,
  1491. &sensor_dev_attr_in5_beep.dev_attr.attr,
  1492. &sensor_dev_attr_in6_beep.dev_attr.attr,
  1493. &sensor_dev_attr_in7_beep.dev_attr.attr,
  1494. NULL,
  1495. NULL,
  1496. };
  1497. static struct attribute *it87_attributes_temp_beep[] = {
  1498. &sensor_dev_attr_temp1_beep.dev_attr.attr,
  1499. &sensor_dev_attr_temp2_beep.dev_attr.attr,
  1500. &sensor_dev_attr_temp3_beep.dev_attr.attr,
  1501. };
  1502. static struct attribute *it87_attributes_fan[6][3+1] = { {
  1503. &sensor_dev_attr_fan1_input.dev_attr.attr,
  1504. &sensor_dev_attr_fan1_min.dev_attr.attr,
  1505. &sensor_dev_attr_fan1_alarm.dev_attr.attr,
  1506. NULL
  1507. }, {
  1508. &sensor_dev_attr_fan2_input.dev_attr.attr,
  1509. &sensor_dev_attr_fan2_min.dev_attr.attr,
  1510. &sensor_dev_attr_fan2_alarm.dev_attr.attr,
  1511. NULL
  1512. }, {
  1513. &sensor_dev_attr_fan3_input.dev_attr.attr,
  1514. &sensor_dev_attr_fan3_min.dev_attr.attr,
  1515. &sensor_dev_attr_fan3_alarm.dev_attr.attr,
  1516. NULL
  1517. }, {
  1518. &sensor_dev_attr_fan4_input.dev_attr.attr,
  1519. &sensor_dev_attr_fan4_min.dev_attr.attr,
  1520. &sensor_dev_attr_fan4_alarm.dev_attr.attr,
  1521. NULL
  1522. }, {
  1523. &sensor_dev_attr_fan5_input.dev_attr.attr,
  1524. &sensor_dev_attr_fan5_min.dev_attr.attr,
  1525. &sensor_dev_attr_fan5_alarm.dev_attr.attr,
  1526. NULL
  1527. }, {
  1528. &sensor_dev_attr_fan6_input.dev_attr.attr,
  1529. &sensor_dev_attr_fan6_min.dev_attr.attr,
  1530. &sensor_dev_attr_fan6_alarm.dev_attr.attr,
  1531. NULL
  1532. } };
  1533. static const struct attribute_group it87_group_fan[6] = {
  1534. { .attrs = it87_attributes_fan[0] },
  1535. { .attrs = it87_attributes_fan[1] },
  1536. { .attrs = it87_attributes_fan[2] },
  1537. { .attrs = it87_attributes_fan[3] },
  1538. { .attrs = it87_attributes_fan[4] },
  1539. { .attrs = it87_attributes_fan[5] },
  1540. };
  1541. static const struct attribute *it87_attributes_fan_div[] = {
  1542. &sensor_dev_attr_fan1_div.dev_attr.attr,
  1543. &sensor_dev_attr_fan2_div.dev_attr.attr,
  1544. &sensor_dev_attr_fan3_div.dev_attr.attr,
  1545. };
  1546. static struct attribute *it87_attributes_pwm[3][4+1] = { {
  1547. &sensor_dev_attr_pwm1_enable.dev_attr.attr,
  1548. &sensor_dev_attr_pwm1.dev_attr.attr,
  1549. &dev_attr_pwm1_freq.attr,
  1550. &sensor_dev_attr_pwm1_auto_channels_temp.dev_attr.attr,
  1551. NULL
  1552. }, {
  1553. &sensor_dev_attr_pwm2_enable.dev_attr.attr,
  1554. &sensor_dev_attr_pwm2.dev_attr.attr,
  1555. &dev_attr_pwm2_freq.attr,
  1556. &sensor_dev_attr_pwm2_auto_channels_temp.dev_attr.attr,
  1557. NULL
  1558. }, {
  1559. &sensor_dev_attr_pwm3_enable.dev_attr.attr,
  1560. &sensor_dev_attr_pwm3.dev_attr.attr,
  1561. &dev_attr_pwm3_freq.attr,
  1562. &sensor_dev_attr_pwm3_auto_channels_temp.dev_attr.attr,
  1563. NULL
  1564. } };
  1565. static const struct attribute_group it87_group_pwm[3] = {
  1566. { .attrs = it87_attributes_pwm[0] },
  1567. { .attrs = it87_attributes_pwm[1] },
  1568. { .attrs = it87_attributes_pwm[2] },
  1569. };
  1570. static struct attribute *it87_attributes_autopwm[3][9+1] = { {
  1571. &sensor_dev_attr_pwm1_auto_point1_pwm.dev_attr.attr,
  1572. &sensor_dev_attr_pwm1_auto_point2_pwm.dev_attr.attr,
  1573. &sensor_dev_attr_pwm1_auto_point3_pwm.dev_attr.attr,
  1574. &sensor_dev_attr_pwm1_auto_point4_pwm.dev_attr.attr,
  1575. &sensor_dev_attr_pwm1_auto_point1_temp.dev_attr.attr,
  1576. &sensor_dev_attr_pwm1_auto_point1_temp_hyst.dev_attr.attr,
  1577. &sensor_dev_attr_pwm1_auto_point2_temp.dev_attr.attr,
  1578. &sensor_dev_attr_pwm1_auto_point3_temp.dev_attr.attr,
  1579. &sensor_dev_attr_pwm1_auto_point4_temp.dev_attr.attr,
  1580. NULL
  1581. }, {
  1582. &sensor_dev_attr_pwm2_auto_point1_pwm.dev_attr.attr,
  1583. &sensor_dev_attr_pwm2_auto_point2_pwm.dev_attr.attr,
  1584. &sensor_dev_attr_pwm2_auto_point3_pwm.dev_attr.attr,
  1585. &sensor_dev_attr_pwm2_auto_point4_pwm.dev_attr.attr,
  1586. &sensor_dev_attr_pwm2_auto_point1_temp.dev_attr.attr,
  1587. &sensor_dev_attr_pwm2_auto_point1_temp_hyst.dev_attr.attr,
  1588. &sensor_dev_attr_pwm2_auto_point2_temp.dev_attr.attr,
  1589. &sensor_dev_attr_pwm2_auto_point3_temp.dev_attr.attr,
  1590. &sensor_dev_attr_pwm2_auto_point4_temp.dev_attr.attr,
  1591. NULL
  1592. }, {
  1593. &sensor_dev_attr_pwm3_auto_point1_pwm.dev_attr.attr,
  1594. &sensor_dev_attr_pwm3_auto_point2_pwm.dev_attr.attr,
  1595. &sensor_dev_attr_pwm3_auto_point3_pwm.dev_attr.attr,
  1596. &sensor_dev_attr_pwm3_auto_point4_pwm.dev_attr.attr,
  1597. &sensor_dev_attr_pwm3_auto_point1_temp.dev_attr.attr,
  1598. &sensor_dev_attr_pwm3_auto_point1_temp_hyst.dev_attr.attr,
  1599. &sensor_dev_attr_pwm3_auto_point2_temp.dev_attr.attr,
  1600. &sensor_dev_attr_pwm3_auto_point3_temp.dev_attr.attr,
  1601. &sensor_dev_attr_pwm3_auto_point4_temp.dev_attr.attr,
  1602. NULL
  1603. } };
  1604. static const struct attribute_group it87_group_autopwm[3] = {
  1605. { .attrs = it87_attributes_autopwm[0] },
  1606. { .attrs = it87_attributes_autopwm[1] },
  1607. { .attrs = it87_attributes_autopwm[2] },
  1608. };
  1609. static struct attribute *it87_attributes_fan_beep[] = {
  1610. &sensor_dev_attr_fan1_beep.dev_attr.attr,
  1611. &sensor_dev_attr_fan2_beep.dev_attr.attr,
  1612. &sensor_dev_attr_fan3_beep.dev_attr.attr,
  1613. &sensor_dev_attr_fan4_beep.dev_attr.attr,
  1614. &sensor_dev_attr_fan5_beep.dev_attr.attr,
  1615. &sensor_dev_attr_fan6_beep.dev_attr.attr,
  1616. };
  1617. static struct attribute *it87_attributes_vid[] = {
  1618. &dev_attr_vrm.attr,
  1619. &dev_attr_cpu0_vid.attr,
  1620. NULL
  1621. };
  1622. static const struct attribute_group it87_group_vid = {
  1623. .attrs = it87_attributes_vid,
  1624. };
  1625. static struct attribute *it87_attributes_label[] = {
  1626. &sensor_dev_attr_in3_label.dev_attr.attr,
  1627. &sensor_dev_attr_in7_label.dev_attr.attr,
  1628. &sensor_dev_attr_in8_label.dev_attr.attr,
  1629. &sensor_dev_attr_in9_label.dev_attr.attr,
  1630. NULL
  1631. };
  1632. static const struct attribute_group it87_group_label = {
  1633. .attrs = it87_attributes_label,
  1634. };
  1635. /* SuperIO detection - will change isa_address if a chip is found */
  1636. static int __init it87_find(unsigned short *address,
  1637. struct it87_sio_data *sio_data)
  1638. {
  1639. int err;
  1640. u16 chip_type;
  1641. const char *board_vendor, *board_name;
  1642. const struct it87_devices *config;
  1643. err = superio_enter();
  1644. if (err)
  1645. return err;
  1646. err = -ENODEV;
  1647. chip_type = force_id ? force_id : superio_inw(DEVID);
  1648. switch (chip_type) {
  1649. case IT8705F_DEVID:
  1650. sio_data->type = it87;
  1651. break;
  1652. case IT8712F_DEVID:
  1653. sio_data->type = it8712;
  1654. break;
  1655. case IT8716F_DEVID:
  1656. case IT8726F_DEVID:
  1657. sio_data->type = it8716;
  1658. break;
  1659. case IT8718F_DEVID:
  1660. sio_data->type = it8718;
  1661. break;
  1662. case IT8720F_DEVID:
  1663. sio_data->type = it8720;
  1664. break;
  1665. case IT8721F_DEVID:
  1666. sio_data->type = it8721;
  1667. break;
  1668. case IT8728F_DEVID:
  1669. sio_data->type = it8728;
  1670. break;
  1671. case IT8732F_DEVID:
  1672. sio_data->type = it8732;
  1673. break;
  1674. case IT8771E_DEVID:
  1675. sio_data->type = it8771;
  1676. break;
  1677. case IT8772E_DEVID:
  1678. sio_data->type = it8772;
  1679. break;
  1680. case IT8781F_DEVID:
  1681. sio_data->type = it8781;
  1682. break;
  1683. case IT8782F_DEVID:
  1684. sio_data->type = it8782;
  1685. break;
  1686. case IT8783E_DEVID:
  1687. sio_data->type = it8783;
  1688. break;
  1689. case IT8786E_DEVID:
  1690. sio_data->type = it8786;
  1691. break;
  1692. case IT8790E_DEVID:
  1693. sio_data->type = it8790;
  1694. break;
  1695. case IT8603E_DEVID:
  1696. case IT8623E_DEVID:
  1697. sio_data->type = it8603;
  1698. break;
  1699. case IT8620E_DEVID:
  1700. sio_data->type = it8620;
  1701. break;
  1702. case 0xffff: /* No device at all */
  1703. goto exit;
  1704. default:
  1705. pr_debug("Unsupported chip (DEVID=0x%x)\n", chip_type);
  1706. goto exit;
  1707. }
  1708. superio_select(PME);
  1709. if (!(superio_inb(IT87_ACT_REG) & 0x01)) {
  1710. pr_info("Device not activated, skipping\n");
  1711. goto exit;
  1712. }
  1713. *address = superio_inw(IT87_BASE_REG) & ~(IT87_EXTENT - 1);
  1714. if (*address == 0) {
  1715. pr_info("Base address not set, skipping\n");
  1716. goto exit;
  1717. }
  1718. err = 0;
  1719. sio_data->revision = superio_inb(DEVREV) & 0x0f;
  1720. pr_info("Found IT%04x%s chip at 0x%x, revision %d\n", chip_type,
  1721. it87_devices[sio_data->type].suffix,
  1722. *address, sio_data->revision);
  1723. config = &it87_devices[sio_data->type];
  1724. /* in7 (VSB or VCCH5V) is always internal on some chips */
  1725. if (has_in7_internal(config))
  1726. sio_data->internal |= (1 << 1);
  1727. /* in8 (Vbat) is always internal */
  1728. sio_data->internal |= (1 << 2);
  1729. /* Only the IT8603E has in9 */
  1730. if (sio_data->type != it8603)
  1731. sio_data->skip_in |= (1 << 9);
  1732. if (!has_vid(config))
  1733. sio_data->skip_vid = 1;
  1734. /* Read GPIO config and VID value from LDN 7 (GPIO) */
  1735. if (sio_data->type == it87) {
  1736. /* The IT8705F has a different LD number for GPIO */
  1737. superio_select(5);
  1738. sio_data->beep_pin = superio_inb(IT87_SIO_BEEP_PIN_REG) & 0x3f;
  1739. } else if (sio_data->type == it8783) {
  1740. int reg25, reg27, reg2a, reg2c, regef;
  1741. superio_select(GPIO);
  1742. reg25 = superio_inb(IT87_SIO_GPIO1_REG);
  1743. reg27 = superio_inb(IT87_SIO_GPIO3_REG);
  1744. reg2a = superio_inb(IT87_SIO_PINX1_REG);
  1745. reg2c = superio_inb(IT87_SIO_PINX2_REG);
  1746. regef = superio_inb(IT87_SIO_SPI_REG);
  1747. /* Check if fan3 is there or not */
  1748. if ((reg27 & (1 << 0)) || !(reg2c & (1 << 2)))
  1749. sio_data->skip_fan |= (1 << 2);
  1750. if ((reg25 & (1 << 4))
  1751. || (!(reg2a & (1 << 1)) && (regef & (1 << 0))))
  1752. sio_data->skip_pwm |= (1 << 2);
  1753. /* Check if fan2 is there or not */
  1754. if (reg27 & (1 << 7))
  1755. sio_data->skip_fan |= (1 << 1);
  1756. if (reg27 & (1 << 3))
  1757. sio_data->skip_pwm |= (1 << 1);
  1758. /* VIN5 */
  1759. if ((reg27 & (1 << 0)) || (reg2c & (1 << 2)))
  1760. sio_data->skip_in |= (1 << 5); /* No VIN5 */
  1761. /* VIN6 */
  1762. if (reg27 & (1 << 1))
  1763. sio_data->skip_in |= (1 << 6); /* No VIN6 */
  1764. /*
  1765. * VIN7
  1766. * Does not depend on bit 2 of Reg2C, contrary to datasheet.
  1767. */
  1768. if (reg27 & (1 << 2)) {
  1769. /*
  1770. * The data sheet is a bit unclear regarding the
  1771. * internal voltage divider for VCCH5V. It says
  1772. * "This bit enables and switches VIN7 (pin 91) to the
  1773. * internal voltage divider for VCCH5V".
  1774. * This is different to other chips, where the internal
  1775. * voltage divider would connect VIN7 to an internal
  1776. * voltage source. Maybe that is the case here as well.
  1777. *
  1778. * Since we don't know for sure, re-route it if that is
  1779. * not the case, and ask the user to report if the
  1780. * resulting voltage is sane.
  1781. */
  1782. if (!(reg2c & (1 << 1))) {
  1783. reg2c |= (1 << 1);
  1784. superio_outb(IT87_SIO_PINX2_REG, reg2c);
  1785. pr_notice("Routing internal VCCH5V to in7.\n");
  1786. }
  1787. pr_notice("in7 routed to internal voltage divider, with external pin disabled.\n");
  1788. pr_notice("Please report if it displays a reasonable voltage.\n");
  1789. }
  1790. if (reg2c & (1 << 0))
  1791. sio_data->internal |= (1 << 0);
  1792. if (reg2c & (1 << 1))
  1793. sio_data->internal |= (1 << 1);
  1794. sio_data->beep_pin = superio_inb(IT87_SIO_BEEP_PIN_REG) & 0x3f;
  1795. } else if (sio_data->type == it8603) {
  1796. int reg27, reg29;
  1797. superio_select(GPIO);
  1798. reg27 = superio_inb(IT87_SIO_GPIO3_REG);
  1799. /* Check if fan3 is there or not */
  1800. if (reg27 & (1 << 6))
  1801. sio_data->skip_pwm |= (1 << 2);
  1802. if (reg27 & (1 << 7))
  1803. sio_data->skip_fan |= (1 << 2);
  1804. /* Check if fan2 is there or not */
  1805. reg29 = superio_inb(IT87_SIO_GPIO5_REG);
  1806. if (reg29 & (1 << 1))
  1807. sio_data->skip_pwm |= (1 << 1);
  1808. if (reg29 & (1 << 2))
  1809. sio_data->skip_fan |= (1 << 1);
  1810. sio_data->skip_in |= (1 << 5); /* No VIN5 */
  1811. sio_data->skip_in |= (1 << 6); /* No VIN6 */
  1812. sio_data->internal |= (1 << 3); /* in9 is AVCC */
  1813. sio_data->beep_pin = superio_inb(IT87_SIO_BEEP_PIN_REG) & 0x3f;
  1814. } else if (sio_data->type == it8620) {
  1815. int reg;
  1816. superio_select(GPIO);
  1817. /* Check for fan4, fan5 */
  1818. reg = superio_inb(IT87_SIO_GPIO2_REG);
  1819. if (!(reg & (1 << 5)))
  1820. sio_data->skip_fan |= (1 << 3);
  1821. if (!(reg & (1 << 4)))
  1822. sio_data->skip_fan |= (1 << 4);
  1823. /* Check for pwm3, fan3 */
  1824. reg = superio_inb(IT87_SIO_GPIO3_REG);
  1825. if (reg & (1 << 6))
  1826. sio_data->skip_pwm |= (1 << 2);
  1827. if (reg & (1 << 7))
  1828. sio_data->skip_fan |= (1 << 2);
  1829. /* Check for pwm2, fan2 */
  1830. reg = superio_inb(IT87_SIO_GPIO5_REG);
  1831. if (reg & (1 << 1))
  1832. sio_data->skip_pwm |= (1 << 1);
  1833. if (reg & (1 << 2))
  1834. sio_data->skip_fan |= (1 << 1);
  1835. sio_data->beep_pin = superio_inb(IT87_SIO_BEEP_PIN_REG) & 0x3f;
  1836. } else {
  1837. int reg;
  1838. bool uart6;
  1839. superio_select(GPIO);
  1840. reg = superio_inb(IT87_SIO_GPIO3_REG);
  1841. if (!sio_data->skip_vid) {
  1842. /* We need at least 4 VID pins */
  1843. if (reg & 0x0f) {
  1844. pr_info("VID is disabled (pins used for GPIO)\n");
  1845. sio_data->skip_vid = 1;
  1846. }
  1847. }
  1848. /* Check if fan3 is there or not */
  1849. if (reg & (1 << 6))
  1850. sio_data->skip_pwm |= (1 << 2);
  1851. if (reg & (1 << 7))
  1852. sio_data->skip_fan |= (1 << 2);
  1853. /* Check if fan2 is there or not */
  1854. reg = superio_inb(IT87_SIO_GPIO5_REG);
  1855. if (reg & (1 << 1))
  1856. sio_data->skip_pwm |= (1 << 1);
  1857. if (reg & (1 << 2))
  1858. sio_data->skip_fan |= (1 << 1);
  1859. if ((sio_data->type == it8718 || sio_data->type == it8720)
  1860. && !(sio_data->skip_vid))
  1861. sio_data->vid_value = superio_inb(IT87_SIO_VID_REG);
  1862. reg = superio_inb(IT87_SIO_PINX2_REG);
  1863. uart6 = sio_data->type == it8782 && (reg & (1 << 2));
  1864. /*
  1865. * The IT8720F has no VIN7 pin, so VCCH should always be
  1866. * routed internally to VIN7 with an internal divider.
  1867. * Curiously, there still is a configuration bit to control
  1868. * this, which means it can be set incorrectly. And even
  1869. * more curiously, many boards out there are improperly
  1870. * configured, even though the IT8720F datasheet claims
  1871. * that the internal routing of VCCH to VIN7 is the default
  1872. * setting. So we force the internal routing in this case.
  1873. *
  1874. * On IT8782F, VIN7 is multiplexed with one of the UART6 pins.
  1875. * If UART6 is enabled, re-route VIN7 to the internal divider
  1876. * if that is not already the case.
  1877. */
  1878. if ((sio_data->type == it8720 || uart6) && !(reg & (1 << 1))) {
  1879. reg |= (1 << 1);
  1880. superio_outb(IT87_SIO_PINX2_REG, reg);
  1881. pr_notice("Routing internal VCCH to in7\n");
  1882. }
  1883. if (reg & (1 << 0))
  1884. sio_data->internal |= (1 << 0);
  1885. if (reg & (1 << 1))
  1886. sio_data->internal |= (1 << 1);
  1887. /*
  1888. * On IT8782F, UART6 pins overlap with VIN5, VIN6, and VIN7.
  1889. * While VIN7 can be routed to the internal voltage divider,
  1890. * VIN5 and VIN6 are not available if UART6 is enabled.
  1891. *
  1892. * Also, temp3 is not available if UART6 is enabled and TEMPIN3
  1893. * is the temperature source. Since we can not read the
  1894. * temperature source here, skip_temp is preliminary.
  1895. */
  1896. if (uart6) {
  1897. sio_data->skip_in |= (1 << 5) | (1 << 6);
  1898. sio_data->skip_temp |= (1 << 2);
  1899. }
  1900. sio_data->beep_pin = superio_inb(IT87_SIO_BEEP_PIN_REG) & 0x3f;
  1901. }
  1902. if (sio_data->beep_pin)
  1903. pr_info("Beeping is supported\n");
  1904. /* Disable specific features based on DMI strings */
  1905. board_vendor = dmi_get_system_info(DMI_BOARD_VENDOR);
  1906. board_name = dmi_get_system_info(DMI_BOARD_NAME);
  1907. if (board_vendor && board_name) {
  1908. if (strcmp(board_vendor, "nVIDIA") == 0
  1909. && strcmp(board_name, "FN68PT") == 0) {
  1910. /*
  1911. * On the Shuttle SN68PT, FAN_CTL2 is apparently not
  1912. * connected to a fan, but to something else. One user
  1913. * has reported instant system power-off when changing
  1914. * the PWM2 duty cycle, so we disable it.
  1915. * I use the board name string as the trigger in case
  1916. * the same board is ever used in other systems.
  1917. */
  1918. pr_info("Disabling pwm2 due to hardware constraints\n");
  1919. sio_data->skip_pwm = (1 << 1);
  1920. }
  1921. }
  1922. exit:
  1923. superio_exit();
  1924. return err;
  1925. }
  1926. static void it87_remove_files(struct device *dev)
  1927. {
  1928. struct it87_data *data = platform_get_drvdata(pdev);
  1929. struct it87_sio_data *sio_data = dev_get_platdata(dev);
  1930. int i;
  1931. sysfs_remove_group(&dev->kobj, &it87_group);
  1932. for (i = 0; i < 10; i++) {
  1933. if (sio_data->skip_in & (1 << i))
  1934. continue;
  1935. sysfs_remove_group(&dev->kobj, &it87_group_in[i]);
  1936. if (it87_attributes_in_beep[i])
  1937. sysfs_remove_file(&dev->kobj,
  1938. it87_attributes_in_beep[i]);
  1939. }
  1940. for (i = 0; i < 3; i++) {
  1941. if (!(data->has_temp & (1 << i)))
  1942. continue;
  1943. sysfs_remove_group(&dev->kobj, &it87_group_temp[i]);
  1944. if (has_temp_offset(data))
  1945. sysfs_remove_file(&dev->kobj,
  1946. it87_attributes_temp_offset[i]);
  1947. if (sio_data->beep_pin)
  1948. sysfs_remove_file(&dev->kobj,
  1949. it87_attributes_temp_beep[i]);
  1950. }
  1951. for (i = 0; i < 6; i++) {
  1952. if (!(data->has_fan & (1 << i)))
  1953. continue;
  1954. sysfs_remove_group(&dev->kobj, &it87_group_fan[i]);
  1955. if (sio_data->beep_pin)
  1956. sysfs_remove_file(&dev->kobj,
  1957. it87_attributes_fan_beep[i]);
  1958. if (i < 3 && !has_16bit_fans(data))
  1959. sysfs_remove_file(&dev->kobj,
  1960. it87_attributes_fan_div[i]);
  1961. }
  1962. for (i = 0; i < 3; i++) {
  1963. if (sio_data->skip_pwm & (1 << i))
  1964. continue;
  1965. sysfs_remove_group(&dev->kobj, &it87_group_pwm[i]);
  1966. if (has_old_autopwm(data))
  1967. sysfs_remove_group(&dev->kobj,
  1968. &it87_group_autopwm[i]);
  1969. }
  1970. if (!sio_data->skip_vid)
  1971. sysfs_remove_group(&dev->kobj, &it87_group_vid);
  1972. sysfs_remove_group(&dev->kobj, &it87_group_label);
  1973. }
  1974. static int it87_probe(struct platform_device *pdev)
  1975. {
  1976. struct it87_data *data;
  1977. struct resource *res;
  1978. struct device *dev = &pdev->dev;
  1979. struct it87_sio_data *sio_data = dev_get_platdata(dev);
  1980. int err = 0, i;
  1981. int enable_pwm_interface;
  1982. int fan_beep_need_rw;
  1983. res = platform_get_resource(pdev, IORESOURCE_IO, 0);
  1984. if (!devm_request_region(&pdev->dev, res->start, IT87_EC_EXTENT,
  1985. DRVNAME)) {
  1986. dev_err(dev, "Failed to request region 0x%lx-0x%lx\n",
  1987. (unsigned long)res->start,
  1988. (unsigned long)(res->start + IT87_EC_EXTENT - 1));
  1989. return -EBUSY;
  1990. }
  1991. data = devm_kzalloc(&pdev->dev, sizeof(struct it87_data), GFP_KERNEL);
  1992. if (!data)
  1993. return -ENOMEM;
  1994. data->addr = res->start;
  1995. data->type = sio_data->type;
  1996. data->features = it87_devices[sio_data->type].features;
  1997. data->peci_mask = it87_devices[sio_data->type].peci_mask;
  1998. data->old_peci_mask = it87_devices[sio_data->type].old_peci_mask;
  1999. data->name = it87_devices[sio_data->type].name;
  2000. /*
  2001. * IT8705F Datasheet 0.4.1, 3h == Version G.
  2002. * IT8712F Datasheet 0.9.1, section 8.3.5 indicates 8h == Version J.
  2003. * These are the first revisions with 16-bit tachometer support.
  2004. */
  2005. switch (data->type) {
  2006. case it87:
  2007. if (sio_data->revision >= 0x03) {
  2008. data->features &= ~FEAT_OLD_AUTOPWM;
  2009. data->features |= FEAT_FAN16_CONFIG | FEAT_16BIT_FANS;
  2010. }
  2011. break;
  2012. case it8712:
  2013. if (sio_data->revision >= 0x08) {
  2014. data->features &= ~FEAT_OLD_AUTOPWM;
  2015. data->features |= FEAT_FAN16_CONFIG | FEAT_16BIT_FANS |
  2016. FEAT_FIVE_FANS;
  2017. }
  2018. break;
  2019. default:
  2020. break;
  2021. }
  2022. /* Now, we do the remaining detection. */
  2023. if ((it87_read_value(data, IT87_REG_CONFIG) & 0x80)
  2024. || it87_read_value(data, IT87_REG_CHIPID) != 0x90)
  2025. return -ENODEV;
  2026. platform_set_drvdata(pdev, data);
  2027. mutex_init(&data->update_lock);
  2028. /* Check PWM configuration */
  2029. enable_pwm_interface = it87_check_pwm(dev);
  2030. /* Starting with IT8721F, we handle scaling of internal voltages */
  2031. if (has_12mv_adc(data)) {
  2032. if (sio_data->internal & (1 << 0))
  2033. data->in_scaled |= (1 << 3); /* in3 is AVCC */
  2034. if (sio_data->internal & (1 << 1))
  2035. data->in_scaled |= (1 << 7); /* in7 is VSB */
  2036. if (sio_data->internal & (1 << 2))
  2037. data->in_scaled |= (1 << 8); /* in8 is Vbat */
  2038. if (sio_data->internal & (1 << 3))
  2039. data->in_scaled |= (1 << 9); /* in9 is AVCC */
  2040. } else if (sio_data->type == it8781 || sio_data->type == it8782 ||
  2041. sio_data->type == it8783) {
  2042. if (sio_data->internal & (1 << 0))
  2043. data->in_scaled |= (1 << 3); /* in3 is VCC5V */
  2044. if (sio_data->internal & (1 << 1))
  2045. data->in_scaled |= (1 << 7); /* in7 is VCCH5V */
  2046. }
  2047. data->has_temp = 0x07;
  2048. if (sio_data->skip_temp & (1 << 2)) {
  2049. if (sio_data->type == it8782
  2050. && !(it87_read_value(data, IT87_REG_TEMP_EXTRA) & 0x80))
  2051. data->has_temp &= ~(1 << 2);
  2052. }
  2053. /* Initialize the IT87 chip */
  2054. it87_init_device(pdev);
  2055. /* Register sysfs hooks */
  2056. err = sysfs_create_group(&dev->kobj, &it87_group);
  2057. if (err)
  2058. return err;
  2059. for (i = 0; i < 10; i++) {
  2060. if (sio_data->skip_in & (1 << i))
  2061. continue;
  2062. err = sysfs_create_group(&dev->kobj, &it87_group_in[i]);
  2063. if (err)
  2064. goto error;
  2065. if (sio_data->beep_pin && it87_attributes_in_beep[i]) {
  2066. err = sysfs_create_file(&dev->kobj,
  2067. it87_attributes_in_beep[i]);
  2068. if (err)
  2069. goto error;
  2070. }
  2071. }
  2072. for (i = 0; i < 3; i++) {
  2073. if (!(data->has_temp & (1 << i)))
  2074. continue;
  2075. err = sysfs_create_group(&dev->kobj, &it87_group_temp[i]);
  2076. if (err)
  2077. goto error;
  2078. if (has_temp_offset(data)) {
  2079. err = sysfs_create_file(&dev->kobj,
  2080. it87_attributes_temp_offset[i]);
  2081. if (err)
  2082. goto error;
  2083. }
  2084. if (sio_data->beep_pin) {
  2085. err = sysfs_create_file(&dev->kobj,
  2086. it87_attributes_temp_beep[i]);
  2087. if (err)
  2088. goto error;
  2089. }
  2090. }
  2091. /* Do not create fan files for disabled fans */
  2092. fan_beep_need_rw = 1;
  2093. for (i = 0; i < 6; i++) {
  2094. if (!(data->has_fan & (1 << i)))
  2095. continue;
  2096. err = sysfs_create_group(&dev->kobj, &it87_group_fan[i]);
  2097. if (err)
  2098. goto error;
  2099. if (i < 3 && !has_16bit_fans(data)) {
  2100. err = sysfs_create_file(&dev->kobj,
  2101. it87_attributes_fan_div[i]);
  2102. if (err)
  2103. goto error;
  2104. }
  2105. if (sio_data->beep_pin) {
  2106. err = sysfs_create_file(&dev->kobj,
  2107. it87_attributes_fan_beep[i]);
  2108. if (err)
  2109. goto error;
  2110. if (!fan_beep_need_rw)
  2111. continue;
  2112. /*
  2113. * As we have a single beep enable bit for all fans,
  2114. * only the first enabled fan has a writable attribute
  2115. * for it.
  2116. */
  2117. if (sysfs_chmod_file(&dev->kobj,
  2118. it87_attributes_fan_beep[i],
  2119. S_IRUGO | S_IWUSR))
  2120. dev_dbg(dev, "chmod +w fan%d_beep failed\n",
  2121. i + 1);
  2122. fan_beep_need_rw = 0;
  2123. }
  2124. }
  2125. if (enable_pwm_interface) {
  2126. for (i = 0; i < 3; i++) {
  2127. if (sio_data->skip_pwm & (1 << i))
  2128. continue;
  2129. err = sysfs_create_group(&dev->kobj,
  2130. &it87_group_pwm[i]);
  2131. if (err)
  2132. goto error;
  2133. if (!has_old_autopwm(data))
  2134. continue;
  2135. err = sysfs_create_group(&dev->kobj,
  2136. &it87_group_autopwm[i]);
  2137. if (err)
  2138. goto error;
  2139. }
  2140. }
  2141. if (!sio_data->skip_vid) {
  2142. data->vrm = vid_which_vrm();
  2143. /* VID reading from Super-I/O config space if available */
  2144. data->vid = sio_data->vid_value;
  2145. err = sysfs_create_group(&dev->kobj, &it87_group_vid);
  2146. if (err)
  2147. goto error;
  2148. }
  2149. /* Export labels for internal sensors */
  2150. for (i = 0; i < 4; i++) {
  2151. if (!(sio_data->internal & (1 << i)))
  2152. continue;
  2153. err = sysfs_create_file(&dev->kobj,
  2154. it87_attributes_label[i]);
  2155. if (err)
  2156. goto error;
  2157. }
  2158. data->hwmon_dev = hwmon_device_register(dev);
  2159. if (IS_ERR(data->hwmon_dev)) {
  2160. err = PTR_ERR(data->hwmon_dev);
  2161. goto error;
  2162. }
  2163. return 0;
  2164. error:
  2165. it87_remove_files(dev);
  2166. return err;
  2167. }
  2168. static int it87_remove(struct platform_device *pdev)
  2169. {
  2170. struct it87_data *data = platform_get_drvdata(pdev);
  2171. hwmon_device_unregister(data->hwmon_dev);
  2172. it87_remove_files(&pdev->dev);
  2173. return 0;
  2174. }
  2175. /*
  2176. * Must be called with data->update_lock held, except during initialization.
  2177. * We ignore the IT87 BUSY flag at this moment - it could lead to deadlocks,
  2178. * would slow down the IT87 access and should not be necessary.
  2179. */
  2180. static int it87_read_value(struct it87_data *data, u8 reg)
  2181. {
  2182. outb_p(reg, data->addr + IT87_ADDR_REG_OFFSET);
  2183. return inb_p(data->addr + IT87_DATA_REG_OFFSET);
  2184. }
  2185. /*
  2186. * Must be called with data->update_lock held, except during initialization.
  2187. * We ignore the IT87 BUSY flag at this moment - it could lead to deadlocks,
  2188. * would slow down the IT87 access and should not be necessary.
  2189. */
  2190. static void it87_write_value(struct it87_data *data, u8 reg, u8 value)
  2191. {
  2192. outb_p(reg, data->addr + IT87_ADDR_REG_OFFSET);
  2193. outb_p(value, data->addr + IT87_DATA_REG_OFFSET);
  2194. }
  2195. /* Return 1 if and only if the PWM interface is safe to use */
  2196. static int it87_check_pwm(struct device *dev)
  2197. {
  2198. struct it87_data *data = dev_get_drvdata(dev);
  2199. /*
  2200. * Some BIOSes fail to correctly configure the IT87 fans. All fans off
  2201. * and polarity set to active low is sign that this is the case so we
  2202. * disable pwm control to protect the user.
  2203. */
  2204. int tmp = it87_read_value(data, IT87_REG_FAN_CTL);
  2205. if ((tmp & 0x87) == 0) {
  2206. if (fix_pwm_polarity) {
  2207. /*
  2208. * The user asks us to attempt a chip reconfiguration.
  2209. * This means switching to active high polarity and
  2210. * inverting all fan speed values.
  2211. */
  2212. int i;
  2213. u8 pwm[3];
  2214. for (i = 0; i < 3; i++)
  2215. pwm[i] = it87_read_value(data,
  2216. IT87_REG_PWM(i));
  2217. /*
  2218. * If any fan is in automatic pwm mode, the polarity
  2219. * might be correct, as suspicious as it seems, so we
  2220. * better don't change anything (but still disable the
  2221. * PWM interface).
  2222. */
  2223. if (!((pwm[0] | pwm[1] | pwm[2]) & 0x80)) {
  2224. dev_info(dev,
  2225. "Reconfiguring PWM to active high polarity\n");
  2226. it87_write_value(data, IT87_REG_FAN_CTL,
  2227. tmp | 0x87);
  2228. for (i = 0; i < 3; i++)
  2229. it87_write_value(data,
  2230. IT87_REG_PWM(i),
  2231. 0x7f & ~pwm[i]);
  2232. return 1;
  2233. }
  2234. dev_info(dev,
  2235. "PWM configuration is too broken to be fixed\n");
  2236. }
  2237. dev_info(dev,
  2238. "Detected broken BIOS defaults, disabling PWM interface\n");
  2239. return 0;
  2240. } else if (fix_pwm_polarity) {
  2241. dev_info(dev,
  2242. "PWM configuration looks sane, won't touch\n");
  2243. }
  2244. return 1;
  2245. }
  2246. /* Called when we have found a new IT87. */
  2247. static void it87_init_device(struct platform_device *pdev)
  2248. {
  2249. struct it87_sio_data *sio_data = dev_get_platdata(&pdev->dev);
  2250. struct it87_data *data = platform_get_drvdata(pdev);
  2251. int tmp, i;
  2252. u8 mask;
  2253. /*
  2254. * For each PWM channel:
  2255. * - If it is in automatic mode, setting to manual mode should set
  2256. * the fan to full speed by default.
  2257. * - If it is in manual mode, we need a mapping to temperature
  2258. * channels to use when later setting to automatic mode later.
  2259. * Use a 1:1 mapping by default (we are clueless.)
  2260. * In both cases, the value can (and should) be changed by the user
  2261. * prior to switching to a different mode.
  2262. * Note that this is no longer needed for the IT8721F and later, as
  2263. * these have separate registers for the temperature mapping and the
  2264. * manual duty cycle.
  2265. */
  2266. for (i = 0; i < 3; i++) {
  2267. data->pwm_temp_map[i] = i;
  2268. data->pwm_duty[i] = 0x7f; /* Full speed */
  2269. data->auto_pwm[i][3] = 0x7f; /* Full speed, hard-coded */
  2270. }
  2271. /*
  2272. * Some chips seem to have default value 0xff for all limit
  2273. * registers. For low voltage limits it makes no sense and triggers
  2274. * alarms, so change to 0 instead. For high temperature limits, it
  2275. * means -1 degree C, which surprisingly doesn't trigger an alarm,
  2276. * but is still confusing, so change to 127 degrees C.
  2277. */
  2278. for (i = 0; i < 8; i++) {
  2279. tmp = it87_read_value(data, IT87_REG_VIN_MIN(i));
  2280. if (tmp == 0xff)
  2281. it87_write_value(data, IT87_REG_VIN_MIN(i), 0);
  2282. }
  2283. for (i = 0; i < 3; i++) {
  2284. tmp = it87_read_value(data, IT87_REG_TEMP_HIGH(i));
  2285. if (tmp == 0xff)
  2286. it87_write_value(data, IT87_REG_TEMP_HIGH(i), 127);
  2287. }
  2288. /*
  2289. * Temperature channels are not forcibly enabled, as they can be
  2290. * set to two different sensor types and we can't guess which one
  2291. * is correct for a given system. These channels can be enabled at
  2292. * run-time through the temp{1-3}_type sysfs accessors if needed.
  2293. */
  2294. /* Check if voltage monitors are reset manually or by some reason */
  2295. tmp = it87_read_value(data, IT87_REG_VIN_ENABLE);
  2296. if ((tmp & 0xff) == 0) {
  2297. /* Enable all voltage monitors */
  2298. it87_write_value(data, IT87_REG_VIN_ENABLE, 0xff);
  2299. }
  2300. /* Check if tachometers are reset manually or by some reason */
  2301. mask = 0x70 & ~(sio_data->skip_fan << 4);
  2302. data->fan_main_ctrl = it87_read_value(data, IT87_REG_FAN_MAIN_CTRL);
  2303. if ((data->fan_main_ctrl & mask) == 0) {
  2304. /* Enable all fan tachometers */
  2305. data->fan_main_ctrl |= mask;
  2306. it87_write_value(data, IT87_REG_FAN_MAIN_CTRL,
  2307. data->fan_main_ctrl);
  2308. }
  2309. data->has_fan = (data->fan_main_ctrl >> 4) & 0x07;
  2310. tmp = it87_read_value(data, IT87_REG_FAN_16BIT);
  2311. /* Set tachometers to 16-bit mode if needed */
  2312. if (has_fan16_config(data)) {
  2313. if (~tmp & 0x07 & data->has_fan) {
  2314. dev_dbg(&pdev->dev,
  2315. "Setting fan1-3 to 16-bit mode\n");
  2316. it87_write_value(data, IT87_REG_FAN_16BIT,
  2317. tmp | 0x07);
  2318. }
  2319. }
  2320. /* Check for additional fans */
  2321. if (has_five_fans(data)) {
  2322. if (tmp & (1 << 4))
  2323. data->has_fan |= (1 << 3); /* fan4 enabled */
  2324. if (tmp & (1 << 5))
  2325. data->has_fan |= (1 << 4); /* fan5 enabled */
  2326. if (has_six_fans(data) && (tmp & (1 << 2)))
  2327. data->has_fan |= (1 << 5); /* fan6 enabled */
  2328. }
  2329. /* Fan input pins may be used for alternative functions */
  2330. data->has_fan &= ~sio_data->skip_fan;
  2331. /* Start monitoring */
  2332. it87_write_value(data, IT87_REG_CONFIG,
  2333. (it87_read_value(data, IT87_REG_CONFIG) & 0x3e)
  2334. | (update_vbat ? 0x41 : 0x01));
  2335. }
  2336. static void it87_update_pwm_ctrl(struct it87_data *data, int nr)
  2337. {
  2338. data->pwm_ctrl[nr] = it87_read_value(data, IT87_REG_PWM(nr));
  2339. if (has_newer_autopwm(data)) {
  2340. data->pwm_temp_map[nr] = data->pwm_ctrl[nr] & 0x03;
  2341. data->pwm_duty[nr] = it87_read_value(data,
  2342. IT87_REG_PWM_DUTY(nr));
  2343. } else {
  2344. if (data->pwm_ctrl[nr] & 0x80) /* Automatic mode */
  2345. data->pwm_temp_map[nr] = data->pwm_ctrl[nr] & 0x03;
  2346. else /* Manual mode */
  2347. data->pwm_duty[nr] = data->pwm_ctrl[nr] & 0x7f;
  2348. }
  2349. if (has_old_autopwm(data)) {
  2350. int i;
  2351. for (i = 0; i < 5 ; i++)
  2352. data->auto_temp[nr][i] = it87_read_value(data,
  2353. IT87_REG_AUTO_TEMP(nr, i));
  2354. for (i = 0; i < 3 ; i++)
  2355. data->auto_pwm[nr][i] = it87_read_value(data,
  2356. IT87_REG_AUTO_PWM(nr, i));
  2357. }
  2358. }
  2359. static struct it87_data *it87_update_device(struct device *dev)
  2360. {
  2361. struct it87_data *data = dev_get_drvdata(dev);
  2362. int i;
  2363. mutex_lock(&data->update_lock);
  2364. if (time_after(jiffies, data->last_updated + HZ + HZ / 2)
  2365. || !data->valid) {
  2366. if (update_vbat) {
  2367. /*
  2368. * Cleared after each update, so reenable. Value
  2369. * returned by this read will be previous value
  2370. */
  2371. it87_write_value(data, IT87_REG_CONFIG,
  2372. it87_read_value(data, IT87_REG_CONFIG) | 0x40);
  2373. }
  2374. for (i = 0; i <= 7; i++) {
  2375. data->in[i][0] =
  2376. it87_read_value(data, IT87_REG_VIN(i));
  2377. data->in[i][1] =
  2378. it87_read_value(data, IT87_REG_VIN_MIN(i));
  2379. data->in[i][2] =
  2380. it87_read_value(data, IT87_REG_VIN_MAX(i));
  2381. }
  2382. /* in8 (battery) has no limit registers */
  2383. data->in[8][0] = it87_read_value(data, IT87_REG_VIN(8));
  2384. if (data->type == it8603)
  2385. data->in[9][0] = it87_read_value(data, 0x2f);
  2386. for (i = 0; i < 6; i++) {
  2387. /* Skip disabled fans */
  2388. if (!(data->has_fan & (1 << i)))
  2389. continue;
  2390. data->fan[i][1] =
  2391. it87_read_value(data, IT87_REG_FAN_MIN[i]);
  2392. data->fan[i][0] = it87_read_value(data,
  2393. IT87_REG_FAN[i]);
  2394. /* Add high byte if in 16-bit mode */
  2395. if (has_16bit_fans(data)) {
  2396. data->fan[i][0] |= it87_read_value(data,
  2397. IT87_REG_FANX[i]) << 8;
  2398. data->fan[i][1] |= it87_read_value(data,
  2399. IT87_REG_FANX_MIN[i]) << 8;
  2400. }
  2401. }
  2402. for (i = 0; i < 3; i++) {
  2403. if (!(data->has_temp & (1 << i)))
  2404. continue;
  2405. data->temp[i][0] =
  2406. it87_read_value(data, IT87_REG_TEMP(i));
  2407. data->temp[i][1] =
  2408. it87_read_value(data, IT87_REG_TEMP_LOW(i));
  2409. data->temp[i][2] =
  2410. it87_read_value(data, IT87_REG_TEMP_HIGH(i));
  2411. if (has_temp_offset(data))
  2412. data->temp[i][3] =
  2413. it87_read_value(data,
  2414. IT87_REG_TEMP_OFFSET[i]);
  2415. }
  2416. /* Newer chips don't have clock dividers */
  2417. if ((data->has_fan & 0x07) && !has_16bit_fans(data)) {
  2418. i = it87_read_value(data, IT87_REG_FAN_DIV);
  2419. data->fan_div[0] = i & 0x07;
  2420. data->fan_div[1] = (i >> 3) & 0x07;
  2421. data->fan_div[2] = (i & 0x40) ? 3 : 1;
  2422. }
  2423. data->alarms =
  2424. it87_read_value(data, IT87_REG_ALARM1) |
  2425. (it87_read_value(data, IT87_REG_ALARM2) << 8) |
  2426. (it87_read_value(data, IT87_REG_ALARM3) << 16);
  2427. data->beeps = it87_read_value(data, IT87_REG_BEEP_ENABLE);
  2428. data->fan_main_ctrl = it87_read_value(data,
  2429. IT87_REG_FAN_MAIN_CTRL);
  2430. data->fan_ctl = it87_read_value(data, IT87_REG_FAN_CTL);
  2431. for (i = 0; i < 3; i++)
  2432. it87_update_pwm_ctrl(data, i);
  2433. data->sensor = it87_read_value(data, IT87_REG_TEMP_ENABLE);
  2434. data->extra = it87_read_value(data, IT87_REG_TEMP_EXTRA);
  2435. /*
  2436. * The IT8705F does not have VID capability.
  2437. * The IT8718F and later don't use IT87_REG_VID for the
  2438. * same purpose.
  2439. */
  2440. if (data->type == it8712 || data->type == it8716) {
  2441. data->vid = it87_read_value(data, IT87_REG_VID);
  2442. /*
  2443. * The older IT8712F revisions had only 5 VID pins,
  2444. * but we assume it is always safe to read 6 bits.
  2445. */
  2446. data->vid &= 0x3f;
  2447. }
  2448. data->last_updated = jiffies;
  2449. data->valid = 1;
  2450. }
  2451. mutex_unlock(&data->update_lock);
  2452. return data;
  2453. }
  2454. static int __init it87_device_add(unsigned short address,
  2455. const struct it87_sio_data *sio_data)
  2456. {
  2457. struct resource res = {
  2458. .start = address + IT87_EC_OFFSET,
  2459. .end = address + IT87_EC_OFFSET + IT87_EC_EXTENT - 1,
  2460. .name = DRVNAME,
  2461. .flags = IORESOURCE_IO,
  2462. };
  2463. int err;
  2464. err = acpi_check_resource_conflict(&res);
  2465. if (err)
  2466. goto exit;
  2467. pdev = platform_device_alloc(DRVNAME, address);
  2468. if (!pdev) {
  2469. err = -ENOMEM;
  2470. pr_err("Device allocation failed\n");
  2471. goto exit;
  2472. }
  2473. err = platform_device_add_resources(pdev, &res, 1);
  2474. if (err) {
  2475. pr_err("Device resource addition failed (%d)\n", err);
  2476. goto exit_device_put;
  2477. }
  2478. err = platform_device_add_data(pdev, sio_data,
  2479. sizeof(struct it87_sio_data));
  2480. if (err) {
  2481. pr_err("Platform data allocation failed\n");
  2482. goto exit_device_put;
  2483. }
  2484. err = platform_device_add(pdev);
  2485. if (err) {
  2486. pr_err("Device addition failed (%d)\n", err);
  2487. goto exit_device_put;
  2488. }
  2489. return 0;
  2490. exit_device_put:
  2491. platform_device_put(pdev);
  2492. exit:
  2493. return err;
  2494. }
  2495. static int __init sm_it87_init(void)
  2496. {
  2497. int err;
  2498. unsigned short isa_address = 0;
  2499. struct it87_sio_data sio_data;
  2500. memset(&sio_data, 0, sizeof(struct it87_sio_data));
  2501. err = it87_find(&isa_address, &sio_data);
  2502. if (err)
  2503. return err;
  2504. err = platform_driver_register(&it87_driver);
  2505. if (err)
  2506. return err;
  2507. err = it87_device_add(isa_address, &sio_data);
  2508. if (err) {
  2509. platform_driver_unregister(&it87_driver);
  2510. return err;
  2511. }
  2512. return 0;
  2513. }
  2514. static void __exit sm_it87_exit(void)
  2515. {
  2516. platform_device_unregister(pdev);
  2517. platform_driver_unregister(&it87_driver);
  2518. }
  2519. MODULE_AUTHOR("Chris Gauthron, Jean Delvare <jdelvare@suse.de>");
  2520. MODULE_DESCRIPTION("IT8705F/IT871xF/IT872xF hardware monitoring driver");
  2521. module_param(update_vbat, bool, 0);
  2522. MODULE_PARM_DESC(update_vbat, "Update vbat if set else return powerup value");
  2523. module_param(fix_pwm_polarity, bool, 0);
  2524. MODULE_PARM_DESC(fix_pwm_polarity,
  2525. "Force PWM polarity to active high (DANGEROUS)");
  2526. MODULE_LICENSE("GPL");
  2527. module_init(sm_it87_init);
  2528. module_exit(sm_it87_exit);