thinkpad_acpi.c 245 KB

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  1. /*
  2. * thinkpad_acpi.c - ThinkPad ACPI Extras
  3. *
  4. *
  5. * Copyright (C) 2004-2005 Borislav Deianov <borislav@users.sf.net>
  6. * Copyright (C) 2006-2009 Henrique de Moraes Holschuh <hmh@hmh.eng.br>
  7. *
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation; either version 2 of the License, or
  11. * (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program; if not, write to the Free Software
  20. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
  21. * 02110-1301, USA.
  22. */
  23. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  24. #define TPACPI_VERSION "0.25"
  25. #define TPACPI_SYSFS_VERSION 0x020700
  26. /*
  27. * Changelog:
  28. * 2007-10-20 changelog trimmed down
  29. *
  30. * 2007-03-27 0.14 renamed to thinkpad_acpi and moved to
  31. * drivers/misc.
  32. *
  33. * 2006-11-22 0.13 new maintainer
  34. * changelog now lives in git commit history, and will
  35. * not be updated further in-file.
  36. *
  37. * 2005-03-17 0.11 support for 600e, 770x
  38. * thanks to Jamie Lentin <lentinj@dial.pipex.com>
  39. *
  40. * 2005-01-16 0.9 use MODULE_VERSION
  41. * thanks to Henrik Brix Andersen <brix@gentoo.org>
  42. * fix parameter passing on module loading
  43. * thanks to Rusty Russell <rusty@rustcorp.com.au>
  44. * thanks to Jim Radford <radford@blackbean.org>
  45. * 2004-11-08 0.8 fix init error case, don't return from a macro
  46. * thanks to Chris Wright <chrisw@osdl.org>
  47. */
  48. #include <linux/kernel.h>
  49. #include <linux/module.h>
  50. #include <linux/init.h>
  51. #include <linux/types.h>
  52. #include <linux/string.h>
  53. #include <linux/list.h>
  54. #include <linux/mutex.h>
  55. #include <linux/sched.h>
  56. #include <linux/kthread.h>
  57. #include <linux/freezer.h>
  58. #include <linux/delay.h>
  59. #include <linux/slab.h>
  60. #include <linux/nvram.h>
  61. #include <linux/proc_fs.h>
  62. #include <linux/seq_file.h>
  63. #include <linux/sysfs.h>
  64. #include <linux/backlight.h>
  65. #include <linux/fb.h>
  66. #include <linux/platform_device.h>
  67. #include <linux/hwmon.h>
  68. #include <linux/hwmon-sysfs.h>
  69. #include <linux/input.h>
  70. #include <linux/leds.h>
  71. #include <linux/rfkill.h>
  72. #include <linux/dmi.h>
  73. #include <linux/jiffies.h>
  74. #include <linux/workqueue.h>
  75. #include <linux/acpi.h>
  76. #include <linux/pci_ids.h>
  77. #include <linux/thinkpad_acpi.h>
  78. #include <sound/core.h>
  79. #include <sound/control.h>
  80. #include <sound/initval.h>
  81. #include <asm/uaccess.h>
  82. #include <acpi/video.h>
  83. /* ThinkPad CMOS commands */
  84. #define TP_CMOS_VOLUME_DOWN 0
  85. #define TP_CMOS_VOLUME_UP 1
  86. #define TP_CMOS_VOLUME_MUTE 2
  87. #define TP_CMOS_BRIGHTNESS_UP 4
  88. #define TP_CMOS_BRIGHTNESS_DOWN 5
  89. #define TP_CMOS_THINKLIGHT_ON 12
  90. #define TP_CMOS_THINKLIGHT_OFF 13
  91. /* NVRAM Addresses */
  92. enum tp_nvram_addr {
  93. TP_NVRAM_ADDR_HK2 = 0x57,
  94. TP_NVRAM_ADDR_THINKLIGHT = 0x58,
  95. TP_NVRAM_ADDR_VIDEO = 0x59,
  96. TP_NVRAM_ADDR_BRIGHTNESS = 0x5e,
  97. TP_NVRAM_ADDR_MIXER = 0x60,
  98. };
  99. /* NVRAM bit masks */
  100. enum {
  101. TP_NVRAM_MASK_HKT_THINKPAD = 0x08,
  102. TP_NVRAM_MASK_HKT_ZOOM = 0x20,
  103. TP_NVRAM_MASK_HKT_DISPLAY = 0x40,
  104. TP_NVRAM_MASK_HKT_HIBERNATE = 0x80,
  105. TP_NVRAM_MASK_THINKLIGHT = 0x10,
  106. TP_NVRAM_MASK_HKT_DISPEXPND = 0x30,
  107. TP_NVRAM_MASK_HKT_BRIGHTNESS = 0x20,
  108. TP_NVRAM_MASK_LEVEL_BRIGHTNESS = 0x0f,
  109. TP_NVRAM_POS_LEVEL_BRIGHTNESS = 0,
  110. TP_NVRAM_MASK_MUTE = 0x40,
  111. TP_NVRAM_MASK_HKT_VOLUME = 0x80,
  112. TP_NVRAM_MASK_LEVEL_VOLUME = 0x0f,
  113. TP_NVRAM_POS_LEVEL_VOLUME = 0,
  114. };
  115. /* Misc NVRAM-related */
  116. enum {
  117. TP_NVRAM_LEVEL_VOLUME_MAX = 14,
  118. };
  119. /* ACPI HIDs */
  120. #define TPACPI_ACPI_IBM_HKEY_HID "IBM0068"
  121. #define TPACPI_ACPI_LENOVO_HKEY_HID "LEN0068"
  122. #define TPACPI_ACPI_EC_HID "PNP0C09"
  123. /* Input IDs */
  124. #define TPACPI_HKEY_INPUT_PRODUCT 0x5054 /* "TP" */
  125. #define TPACPI_HKEY_INPUT_VERSION 0x4101
  126. /* ACPI \WGSV commands */
  127. enum {
  128. TP_ACPI_WGSV_GET_STATE = 0x01, /* Get state information */
  129. TP_ACPI_WGSV_PWR_ON_ON_RESUME = 0x02, /* Resume WWAN powered on */
  130. TP_ACPI_WGSV_PWR_OFF_ON_RESUME = 0x03, /* Resume WWAN powered off */
  131. TP_ACPI_WGSV_SAVE_STATE = 0x04, /* Save state for S4/S5 */
  132. };
  133. /* TP_ACPI_WGSV_GET_STATE bits */
  134. enum {
  135. TP_ACPI_WGSV_STATE_WWANEXIST = 0x0001, /* WWAN hw available */
  136. TP_ACPI_WGSV_STATE_WWANPWR = 0x0002, /* WWAN radio enabled */
  137. TP_ACPI_WGSV_STATE_WWANPWRRES = 0x0004, /* WWAN state at resume */
  138. TP_ACPI_WGSV_STATE_WWANBIOSOFF = 0x0008, /* WWAN disabled in BIOS */
  139. TP_ACPI_WGSV_STATE_BLTHEXIST = 0x0001, /* BLTH hw available */
  140. TP_ACPI_WGSV_STATE_BLTHPWR = 0x0002, /* BLTH radio enabled */
  141. TP_ACPI_WGSV_STATE_BLTHPWRRES = 0x0004, /* BLTH state at resume */
  142. TP_ACPI_WGSV_STATE_BLTHBIOSOFF = 0x0008, /* BLTH disabled in BIOS */
  143. TP_ACPI_WGSV_STATE_UWBEXIST = 0x0010, /* UWB hw available */
  144. TP_ACPI_WGSV_STATE_UWBPWR = 0x0020, /* UWB radio enabled */
  145. };
  146. /* HKEY events */
  147. enum tpacpi_hkey_event_t {
  148. /* Hotkey-related */
  149. TP_HKEY_EV_HOTKEY_BASE = 0x1001, /* first hotkey (FN+F1) */
  150. TP_HKEY_EV_BRGHT_UP = 0x1010, /* Brightness up */
  151. TP_HKEY_EV_BRGHT_DOWN = 0x1011, /* Brightness down */
  152. TP_HKEY_EV_VOL_UP = 0x1015, /* Volume up or unmute */
  153. TP_HKEY_EV_VOL_DOWN = 0x1016, /* Volume down or unmute */
  154. TP_HKEY_EV_VOL_MUTE = 0x1017, /* Mixer output mute */
  155. /* Reasons for waking up from S3/S4 */
  156. TP_HKEY_EV_WKUP_S3_UNDOCK = 0x2304, /* undock requested, S3 */
  157. TP_HKEY_EV_WKUP_S4_UNDOCK = 0x2404, /* undock requested, S4 */
  158. TP_HKEY_EV_WKUP_S3_BAYEJ = 0x2305, /* bay ejection req, S3 */
  159. TP_HKEY_EV_WKUP_S4_BAYEJ = 0x2405, /* bay ejection req, S4 */
  160. TP_HKEY_EV_WKUP_S3_BATLOW = 0x2313, /* battery empty, S3 */
  161. TP_HKEY_EV_WKUP_S4_BATLOW = 0x2413, /* battery empty, S4 */
  162. /* Auto-sleep after eject request */
  163. TP_HKEY_EV_BAYEJ_ACK = 0x3003, /* bay ejection complete */
  164. TP_HKEY_EV_UNDOCK_ACK = 0x4003, /* undock complete */
  165. /* Misc bay events */
  166. TP_HKEY_EV_OPTDRV_EJ = 0x3006, /* opt. drive tray ejected */
  167. TP_HKEY_EV_HOTPLUG_DOCK = 0x4010, /* docked into hotplug dock
  168. or port replicator */
  169. TP_HKEY_EV_HOTPLUG_UNDOCK = 0x4011, /* undocked from hotplug
  170. dock or port replicator */
  171. /* User-interface events */
  172. TP_HKEY_EV_LID_CLOSE = 0x5001, /* laptop lid closed */
  173. TP_HKEY_EV_LID_OPEN = 0x5002, /* laptop lid opened */
  174. TP_HKEY_EV_TABLET_TABLET = 0x5009, /* tablet swivel up */
  175. TP_HKEY_EV_TABLET_NOTEBOOK = 0x500a, /* tablet swivel down */
  176. TP_HKEY_EV_PEN_INSERTED = 0x500b, /* tablet pen inserted */
  177. TP_HKEY_EV_PEN_REMOVED = 0x500c, /* tablet pen removed */
  178. TP_HKEY_EV_BRGHT_CHANGED = 0x5010, /* backlight control event */
  179. /* Key-related user-interface events */
  180. TP_HKEY_EV_KEY_NUMLOCK = 0x6000, /* NumLock key pressed */
  181. TP_HKEY_EV_KEY_FN = 0x6005, /* Fn key pressed? E420 */
  182. TP_HKEY_EV_KEY_FN_ESC = 0x6060, /* Fn+Esc key pressed X240 */
  183. /* Thermal events */
  184. TP_HKEY_EV_ALARM_BAT_HOT = 0x6011, /* battery too hot */
  185. TP_HKEY_EV_ALARM_BAT_XHOT = 0x6012, /* battery critically hot */
  186. TP_HKEY_EV_ALARM_SENSOR_HOT = 0x6021, /* sensor too hot */
  187. TP_HKEY_EV_ALARM_SENSOR_XHOT = 0x6022, /* sensor critically hot */
  188. TP_HKEY_EV_THM_TABLE_CHANGED = 0x6030, /* thermal table changed */
  189. /* AC-related events */
  190. TP_HKEY_EV_AC_CHANGED = 0x6040, /* AC status changed */
  191. /* Misc */
  192. TP_HKEY_EV_RFKILL_CHANGED = 0x7000, /* rfkill switch changed */
  193. };
  194. /****************************************************************************
  195. * Main driver
  196. */
  197. #define TPACPI_NAME "thinkpad"
  198. #define TPACPI_DESC "ThinkPad ACPI Extras"
  199. #define TPACPI_FILE TPACPI_NAME "_acpi"
  200. #define TPACPI_URL "http://ibm-acpi.sf.net/"
  201. #define TPACPI_MAIL "ibm-acpi-devel@lists.sourceforge.net"
  202. #define TPACPI_PROC_DIR "ibm"
  203. #define TPACPI_ACPI_EVENT_PREFIX "ibm"
  204. #define TPACPI_DRVR_NAME TPACPI_FILE
  205. #define TPACPI_DRVR_SHORTNAME "tpacpi"
  206. #define TPACPI_HWMON_DRVR_NAME TPACPI_NAME "_hwmon"
  207. #define TPACPI_NVRAM_KTHREAD_NAME "ktpacpi_nvramd"
  208. #define TPACPI_WORKQUEUE_NAME "ktpacpid"
  209. #define TPACPI_MAX_ACPI_ARGS 3
  210. /* Debugging printk groups */
  211. #define TPACPI_DBG_ALL 0xffff
  212. #define TPACPI_DBG_DISCLOSETASK 0x8000
  213. #define TPACPI_DBG_INIT 0x0001
  214. #define TPACPI_DBG_EXIT 0x0002
  215. #define TPACPI_DBG_RFKILL 0x0004
  216. #define TPACPI_DBG_HKEY 0x0008
  217. #define TPACPI_DBG_FAN 0x0010
  218. #define TPACPI_DBG_BRGHT 0x0020
  219. #define TPACPI_DBG_MIXER 0x0040
  220. #define onoff(status, bit) ((status) & (1 << (bit)) ? "on" : "off")
  221. #define enabled(status, bit) ((status) & (1 << (bit)) ? "enabled" : "disabled")
  222. #define strlencmp(a, b) (strncmp((a), (b), strlen(b)))
  223. /****************************************************************************
  224. * Driver-wide structs and misc. variables
  225. */
  226. struct ibm_struct;
  227. struct tp_acpi_drv_struct {
  228. const struct acpi_device_id *hid;
  229. struct acpi_driver *driver;
  230. void (*notify) (struct ibm_struct *, u32);
  231. acpi_handle *handle;
  232. u32 type;
  233. struct acpi_device *device;
  234. };
  235. struct ibm_struct {
  236. char *name;
  237. int (*read) (struct seq_file *);
  238. int (*write) (char *);
  239. void (*exit) (void);
  240. void (*resume) (void);
  241. void (*suspend) (void);
  242. void (*shutdown) (void);
  243. struct list_head all_drivers;
  244. struct tp_acpi_drv_struct *acpi;
  245. struct {
  246. u8 acpi_driver_registered:1;
  247. u8 acpi_notify_installed:1;
  248. u8 proc_created:1;
  249. u8 init_called:1;
  250. u8 experimental:1;
  251. } flags;
  252. };
  253. struct ibm_init_struct {
  254. char param[32];
  255. int (*init) (struct ibm_init_struct *);
  256. umode_t base_procfs_mode;
  257. struct ibm_struct *data;
  258. };
  259. static struct {
  260. u32 bluetooth:1;
  261. u32 hotkey:1;
  262. u32 hotkey_mask:1;
  263. u32 hotkey_wlsw:1;
  264. u32 hotkey_tablet:1;
  265. u32 kbdlight:1;
  266. u32 light:1;
  267. u32 light_status:1;
  268. u32 bright_acpimode:1;
  269. u32 bright_unkfw:1;
  270. u32 wan:1;
  271. u32 uwb:1;
  272. u32 fan_ctrl_status_undef:1;
  273. u32 second_fan:1;
  274. u32 beep_needs_two_args:1;
  275. u32 mixer_no_level_control:1;
  276. u32 input_device_registered:1;
  277. u32 platform_drv_registered:1;
  278. u32 platform_drv_attrs_registered:1;
  279. u32 sensors_pdrv_registered:1;
  280. u32 sensors_pdrv_attrs_registered:1;
  281. u32 sensors_pdev_attrs_registered:1;
  282. u32 hotkey_poll_active:1;
  283. u32 has_adaptive_kbd:1;
  284. } tp_features;
  285. static struct {
  286. u16 hotkey_mask_ff:1;
  287. u16 volume_ctrl_forbidden:1;
  288. } tp_warned;
  289. struct thinkpad_id_data {
  290. unsigned int vendor; /* ThinkPad vendor:
  291. * PCI_VENDOR_ID_IBM/PCI_VENDOR_ID_LENOVO */
  292. char *bios_version_str; /* Something like 1ZET51WW (1.03z) */
  293. char *ec_version_str; /* Something like 1ZHT51WW-1.04a */
  294. u16 bios_model; /* 1Y = 0x5931, 0 = unknown */
  295. u16 ec_model;
  296. u16 bios_release; /* 1ZETK1WW = 0x314b, 0 = unknown */
  297. u16 ec_release;
  298. char *model_str; /* ThinkPad T43 */
  299. char *nummodel_str; /* 9384A9C for a 9384-A9C model */
  300. };
  301. static struct thinkpad_id_data thinkpad_id;
  302. static enum {
  303. TPACPI_LIFE_INIT = 0,
  304. TPACPI_LIFE_RUNNING,
  305. TPACPI_LIFE_EXITING,
  306. } tpacpi_lifecycle;
  307. static int experimental;
  308. static u32 dbg_level;
  309. static struct workqueue_struct *tpacpi_wq;
  310. enum led_status_t {
  311. TPACPI_LED_OFF = 0,
  312. TPACPI_LED_ON,
  313. TPACPI_LED_BLINK,
  314. };
  315. /* Special LED class that can defer work */
  316. struct tpacpi_led_classdev {
  317. struct led_classdev led_classdev;
  318. struct work_struct work;
  319. enum led_status_t new_state;
  320. int led;
  321. };
  322. /* brightness level capabilities */
  323. static unsigned int bright_maxlvl; /* 0 = unknown */
  324. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  325. static int dbg_wlswemul;
  326. static bool tpacpi_wlsw_emulstate;
  327. static int dbg_bluetoothemul;
  328. static bool tpacpi_bluetooth_emulstate;
  329. static int dbg_wwanemul;
  330. static bool tpacpi_wwan_emulstate;
  331. static int dbg_uwbemul;
  332. static bool tpacpi_uwb_emulstate;
  333. #endif
  334. /*************************************************************************
  335. * Debugging helpers
  336. */
  337. #define dbg_printk(a_dbg_level, format, arg...) \
  338. do { \
  339. if (dbg_level & (a_dbg_level)) \
  340. printk(KERN_DEBUG pr_fmt("%s: " format), \
  341. __func__, ##arg); \
  342. } while (0)
  343. #ifdef CONFIG_THINKPAD_ACPI_DEBUG
  344. #define vdbg_printk dbg_printk
  345. static const char *str_supported(int is_supported);
  346. #else
  347. static inline const char *str_supported(int is_supported) { return ""; }
  348. #define vdbg_printk(a_dbg_level, format, arg...) \
  349. do { if (0) no_printk(format, ##arg); } while (0)
  350. #endif
  351. static void tpacpi_log_usertask(const char * const what)
  352. {
  353. printk(KERN_DEBUG pr_fmt("%s: access by process with PID %d\n"),
  354. what, task_tgid_vnr(current));
  355. }
  356. #define tpacpi_disclose_usertask(what, format, arg...) \
  357. do { \
  358. if (unlikely((dbg_level & TPACPI_DBG_DISCLOSETASK) && \
  359. (tpacpi_lifecycle == TPACPI_LIFE_RUNNING))) { \
  360. printk(KERN_DEBUG pr_fmt("%s: PID %d: " format), \
  361. what, task_tgid_vnr(current), ## arg); \
  362. } \
  363. } while (0)
  364. /*
  365. * Quirk handling helpers
  366. *
  367. * ThinkPad IDs and versions seen in the field so far
  368. * are two-characters from the set [0-9A-Z], i.e. base 36.
  369. *
  370. * We use values well outside that range as specials.
  371. */
  372. #define TPACPI_MATCH_ANY 0xffffU
  373. #define TPACPI_MATCH_UNKNOWN 0U
  374. /* TPID('1', 'Y') == 0x5931 */
  375. #define TPID(__c1, __c2) (((__c2) << 8) | (__c1))
  376. #define TPACPI_Q_IBM(__id1, __id2, __quirk) \
  377. { .vendor = PCI_VENDOR_ID_IBM, \
  378. .bios = TPID(__id1, __id2), \
  379. .ec = TPACPI_MATCH_ANY, \
  380. .quirks = (__quirk) }
  381. #define TPACPI_Q_LNV(__id1, __id2, __quirk) \
  382. { .vendor = PCI_VENDOR_ID_LENOVO, \
  383. .bios = TPID(__id1, __id2), \
  384. .ec = TPACPI_MATCH_ANY, \
  385. .quirks = (__quirk) }
  386. #define TPACPI_QEC_LNV(__id1, __id2, __quirk) \
  387. { .vendor = PCI_VENDOR_ID_LENOVO, \
  388. .bios = TPACPI_MATCH_ANY, \
  389. .ec = TPID(__id1, __id2), \
  390. .quirks = (__quirk) }
  391. struct tpacpi_quirk {
  392. unsigned int vendor;
  393. u16 bios;
  394. u16 ec;
  395. unsigned long quirks;
  396. };
  397. /**
  398. * tpacpi_check_quirks() - search BIOS/EC version on a list
  399. * @qlist: array of &struct tpacpi_quirk
  400. * @qlist_size: number of elements in @qlist
  401. *
  402. * Iterates over a quirks list until one is found that matches the
  403. * ThinkPad's vendor, BIOS and EC model.
  404. *
  405. * Returns 0 if nothing matches, otherwise returns the quirks field of
  406. * the matching &struct tpacpi_quirk entry.
  407. *
  408. * The match criteria is: vendor, ec and bios much match.
  409. */
  410. static unsigned long __init tpacpi_check_quirks(
  411. const struct tpacpi_quirk *qlist,
  412. unsigned int qlist_size)
  413. {
  414. while (qlist_size) {
  415. if ((qlist->vendor == thinkpad_id.vendor ||
  416. qlist->vendor == TPACPI_MATCH_ANY) &&
  417. (qlist->bios == thinkpad_id.bios_model ||
  418. qlist->bios == TPACPI_MATCH_ANY) &&
  419. (qlist->ec == thinkpad_id.ec_model ||
  420. qlist->ec == TPACPI_MATCH_ANY))
  421. return qlist->quirks;
  422. qlist_size--;
  423. qlist++;
  424. }
  425. return 0;
  426. }
  427. static inline bool __pure __init tpacpi_is_lenovo(void)
  428. {
  429. return thinkpad_id.vendor == PCI_VENDOR_ID_LENOVO;
  430. }
  431. static inline bool __pure __init tpacpi_is_ibm(void)
  432. {
  433. return thinkpad_id.vendor == PCI_VENDOR_ID_IBM;
  434. }
  435. /****************************************************************************
  436. ****************************************************************************
  437. *
  438. * ACPI Helpers and device model
  439. *
  440. ****************************************************************************
  441. ****************************************************************************/
  442. /*************************************************************************
  443. * ACPI basic handles
  444. */
  445. static acpi_handle root_handle;
  446. static acpi_handle ec_handle;
  447. #define TPACPI_HANDLE(object, parent, paths...) \
  448. static acpi_handle object##_handle; \
  449. static const acpi_handle * const object##_parent __initconst = \
  450. &parent##_handle; \
  451. static char *object##_paths[] __initdata = { paths }
  452. TPACPI_HANDLE(ecrd, ec, "ECRD"); /* 570 */
  453. TPACPI_HANDLE(ecwr, ec, "ECWR"); /* 570 */
  454. TPACPI_HANDLE(cmos, root, "\\UCMS", /* R50, R50e, R50p, R51, */
  455. /* T4x, X31, X40 */
  456. "\\CMOS", /* A3x, G4x, R32, T23, T30, X22-24, X30 */
  457. "\\CMS", /* R40, R40e */
  458. ); /* all others */
  459. TPACPI_HANDLE(hkey, ec, "\\_SB.HKEY", /* 600e/x, 770e, 770x */
  460. "^HKEY", /* R30, R31 */
  461. "HKEY", /* all others */
  462. ); /* 570 */
  463. /*************************************************************************
  464. * ACPI helpers
  465. */
  466. static int acpi_evalf(acpi_handle handle,
  467. int *res, char *method, char *fmt, ...)
  468. {
  469. char *fmt0 = fmt;
  470. struct acpi_object_list params;
  471. union acpi_object in_objs[TPACPI_MAX_ACPI_ARGS];
  472. struct acpi_buffer result, *resultp;
  473. union acpi_object out_obj;
  474. acpi_status status;
  475. va_list ap;
  476. char res_type;
  477. int success;
  478. int quiet;
  479. if (!*fmt) {
  480. pr_err("acpi_evalf() called with empty format\n");
  481. return 0;
  482. }
  483. if (*fmt == 'q') {
  484. quiet = 1;
  485. fmt++;
  486. } else
  487. quiet = 0;
  488. res_type = *(fmt++);
  489. params.count = 0;
  490. params.pointer = &in_objs[0];
  491. va_start(ap, fmt);
  492. while (*fmt) {
  493. char c = *(fmt++);
  494. switch (c) {
  495. case 'd': /* int */
  496. in_objs[params.count].integer.value = va_arg(ap, int);
  497. in_objs[params.count++].type = ACPI_TYPE_INTEGER;
  498. break;
  499. /* add more types as needed */
  500. default:
  501. pr_err("acpi_evalf() called "
  502. "with invalid format character '%c'\n", c);
  503. va_end(ap);
  504. return 0;
  505. }
  506. }
  507. va_end(ap);
  508. if (res_type != 'v') {
  509. result.length = sizeof(out_obj);
  510. result.pointer = &out_obj;
  511. resultp = &result;
  512. } else
  513. resultp = NULL;
  514. status = acpi_evaluate_object(handle, method, &params, resultp);
  515. switch (res_type) {
  516. case 'd': /* int */
  517. success = (status == AE_OK &&
  518. out_obj.type == ACPI_TYPE_INTEGER);
  519. if (success && res)
  520. *res = out_obj.integer.value;
  521. break;
  522. case 'v': /* void */
  523. success = status == AE_OK;
  524. break;
  525. /* add more types as needed */
  526. default:
  527. pr_err("acpi_evalf() called "
  528. "with invalid format character '%c'\n", res_type);
  529. return 0;
  530. }
  531. if (!success && !quiet)
  532. pr_err("acpi_evalf(%s, %s, ...) failed: %s\n",
  533. method, fmt0, acpi_format_exception(status));
  534. return success;
  535. }
  536. static int acpi_ec_read(int i, u8 *p)
  537. {
  538. int v;
  539. if (ecrd_handle) {
  540. if (!acpi_evalf(ecrd_handle, &v, NULL, "dd", i))
  541. return 0;
  542. *p = v;
  543. } else {
  544. if (ec_read(i, p) < 0)
  545. return 0;
  546. }
  547. return 1;
  548. }
  549. static int acpi_ec_write(int i, u8 v)
  550. {
  551. if (ecwr_handle) {
  552. if (!acpi_evalf(ecwr_handle, NULL, NULL, "vdd", i, v))
  553. return 0;
  554. } else {
  555. if (ec_write(i, v) < 0)
  556. return 0;
  557. }
  558. return 1;
  559. }
  560. static int issue_thinkpad_cmos_command(int cmos_cmd)
  561. {
  562. if (!cmos_handle)
  563. return -ENXIO;
  564. if (!acpi_evalf(cmos_handle, NULL, NULL, "vd", cmos_cmd))
  565. return -EIO;
  566. return 0;
  567. }
  568. /*************************************************************************
  569. * ACPI device model
  570. */
  571. #define TPACPI_ACPIHANDLE_INIT(object) \
  572. drv_acpi_handle_init(#object, &object##_handle, *object##_parent, \
  573. object##_paths, ARRAY_SIZE(object##_paths))
  574. static void __init drv_acpi_handle_init(const char *name,
  575. acpi_handle *handle, const acpi_handle parent,
  576. char **paths, const int num_paths)
  577. {
  578. int i;
  579. acpi_status status;
  580. vdbg_printk(TPACPI_DBG_INIT, "trying to locate ACPI handle for %s\n",
  581. name);
  582. for (i = 0; i < num_paths; i++) {
  583. status = acpi_get_handle(parent, paths[i], handle);
  584. if (ACPI_SUCCESS(status)) {
  585. dbg_printk(TPACPI_DBG_INIT,
  586. "Found ACPI handle %s for %s\n",
  587. paths[i], name);
  588. return;
  589. }
  590. }
  591. vdbg_printk(TPACPI_DBG_INIT, "ACPI handle for %s not found\n",
  592. name);
  593. *handle = NULL;
  594. }
  595. static acpi_status __init tpacpi_acpi_handle_locate_callback(acpi_handle handle,
  596. u32 level, void *context, void **return_value)
  597. {
  598. struct acpi_device *dev;
  599. if (!strcmp(context, "video")) {
  600. if (acpi_bus_get_device(handle, &dev))
  601. return AE_OK;
  602. if (strcmp(ACPI_VIDEO_HID, acpi_device_hid(dev)))
  603. return AE_OK;
  604. }
  605. *(acpi_handle *)return_value = handle;
  606. return AE_CTRL_TERMINATE;
  607. }
  608. static void __init tpacpi_acpi_handle_locate(const char *name,
  609. const char *hid,
  610. acpi_handle *handle)
  611. {
  612. acpi_status status;
  613. acpi_handle device_found;
  614. BUG_ON(!name || !handle);
  615. vdbg_printk(TPACPI_DBG_INIT,
  616. "trying to locate ACPI handle for %s, using HID %s\n",
  617. name, hid ? hid : "NULL");
  618. memset(&device_found, 0, sizeof(device_found));
  619. status = acpi_get_devices(hid, tpacpi_acpi_handle_locate_callback,
  620. (void *)name, &device_found);
  621. *handle = NULL;
  622. if (ACPI_SUCCESS(status)) {
  623. *handle = device_found;
  624. dbg_printk(TPACPI_DBG_INIT,
  625. "Found ACPI handle for %s\n", name);
  626. } else {
  627. vdbg_printk(TPACPI_DBG_INIT,
  628. "Could not locate an ACPI handle for %s: %s\n",
  629. name, acpi_format_exception(status));
  630. }
  631. }
  632. static void dispatch_acpi_notify(acpi_handle handle, u32 event, void *data)
  633. {
  634. struct ibm_struct *ibm = data;
  635. if (tpacpi_lifecycle != TPACPI_LIFE_RUNNING)
  636. return;
  637. if (!ibm || !ibm->acpi || !ibm->acpi->notify)
  638. return;
  639. ibm->acpi->notify(ibm, event);
  640. }
  641. static int __init setup_acpi_notify(struct ibm_struct *ibm)
  642. {
  643. acpi_status status;
  644. int rc;
  645. BUG_ON(!ibm->acpi);
  646. if (!*ibm->acpi->handle)
  647. return 0;
  648. vdbg_printk(TPACPI_DBG_INIT,
  649. "setting up ACPI notify for %s\n", ibm->name);
  650. rc = acpi_bus_get_device(*ibm->acpi->handle, &ibm->acpi->device);
  651. if (rc < 0) {
  652. pr_err("acpi_bus_get_device(%s) failed: %d\n", ibm->name, rc);
  653. return -ENODEV;
  654. }
  655. ibm->acpi->device->driver_data = ibm;
  656. sprintf(acpi_device_class(ibm->acpi->device), "%s/%s",
  657. TPACPI_ACPI_EVENT_PREFIX,
  658. ibm->name);
  659. status = acpi_install_notify_handler(*ibm->acpi->handle,
  660. ibm->acpi->type, dispatch_acpi_notify, ibm);
  661. if (ACPI_FAILURE(status)) {
  662. if (status == AE_ALREADY_EXISTS) {
  663. pr_notice("another device driver is already "
  664. "handling %s events\n", ibm->name);
  665. } else {
  666. pr_err("acpi_install_notify_handler(%s) failed: %s\n",
  667. ibm->name, acpi_format_exception(status));
  668. }
  669. return -ENODEV;
  670. }
  671. ibm->flags.acpi_notify_installed = 1;
  672. return 0;
  673. }
  674. static int __init tpacpi_device_add(struct acpi_device *device)
  675. {
  676. return 0;
  677. }
  678. static int __init register_tpacpi_subdriver(struct ibm_struct *ibm)
  679. {
  680. int rc;
  681. dbg_printk(TPACPI_DBG_INIT,
  682. "registering %s as an ACPI driver\n", ibm->name);
  683. BUG_ON(!ibm->acpi);
  684. ibm->acpi->driver = kzalloc(sizeof(struct acpi_driver), GFP_KERNEL);
  685. if (!ibm->acpi->driver) {
  686. pr_err("failed to allocate memory for ibm->acpi->driver\n");
  687. return -ENOMEM;
  688. }
  689. sprintf(ibm->acpi->driver->name, "%s_%s", TPACPI_NAME, ibm->name);
  690. ibm->acpi->driver->ids = ibm->acpi->hid;
  691. ibm->acpi->driver->ops.add = &tpacpi_device_add;
  692. rc = acpi_bus_register_driver(ibm->acpi->driver);
  693. if (rc < 0) {
  694. pr_err("acpi_bus_register_driver(%s) failed: %d\n",
  695. ibm->name, rc);
  696. kfree(ibm->acpi->driver);
  697. ibm->acpi->driver = NULL;
  698. } else if (!rc)
  699. ibm->flags.acpi_driver_registered = 1;
  700. return rc;
  701. }
  702. /****************************************************************************
  703. ****************************************************************************
  704. *
  705. * Procfs Helpers
  706. *
  707. ****************************************************************************
  708. ****************************************************************************/
  709. static int dispatch_proc_show(struct seq_file *m, void *v)
  710. {
  711. struct ibm_struct *ibm = m->private;
  712. if (!ibm || !ibm->read)
  713. return -EINVAL;
  714. return ibm->read(m);
  715. }
  716. static int dispatch_proc_open(struct inode *inode, struct file *file)
  717. {
  718. return single_open(file, dispatch_proc_show, PDE_DATA(inode));
  719. }
  720. static ssize_t dispatch_proc_write(struct file *file,
  721. const char __user *userbuf,
  722. size_t count, loff_t *pos)
  723. {
  724. struct ibm_struct *ibm = PDE_DATA(file_inode(file));
  725. char *kernbuf;
  726. int ret;
  727. if (!ibm || !ibm->write)
  728. return -EINVAL;
  729. if (count > PAGE_SIZE - 2)
  730. return -EINVAL;
  731. kernbuf = kmalloc(count + 2, GFP_KERNEL);
  732. if (!kernbuf)
  733. return -ENOMEM;
  734. if (copy_from_user(kernbuf, userbuf, count)) {
  735. kfree(kernbuf);
  736. return -EFAULT;
  737. }
  738. kernbuf[count] = 0;
  739. strcat(kernbuf, ",");
  740. ret = ibm->write(kernbuf);
  741. if (ret == 0)
  742. ret = count;
  743. kfree(kernbuf);
  744. return ret;
  745. }
  746. static const struct file_operations dispatch_proc_fops = {
  747. .owner = THIS_MODULE,
  748. .open = dispatch_proc_open,
  749. .read = seq_read,
  750. .llseek = seq_lseek,
  751. .release = single_release,
  752. .write = dispatch_proc_write,
  753. };
  754. static char *next_cmd(char **cmds)
  755. {
  756. char *start = *cmds;
  757. char *end;
  758. while ((end = strchr(start, ',')) && end == start)
  759. start = end + 1;
  760. if (!end)
  761. return NULL;
  762. *end = 0;
  763. *cmds = end + 1;
  764. return start;
  765. }
  766. /****************************************************************************
  767. ****************************************************************************
  768. *
  769. * Device model: input, hwmon and platform
  770. *
  771. ****************************************************************************
  772. ****************************************************************************/
  773. static struct platform_device *tpacpi_pdev;
  774. static struct platform_device *tpacpi_sensors_pdev;
  775. static struct device *tpacpi_hwmon;
  776. static struct input_dev *tpacpi_inputdev;
  777. static struct mutex tpacpi_inputdev_send_mutex;
  778. static LIST_HEAD(tpacpi_all_drivers);
  779. #ifdef CONFIG_PM_SLEEP
  780. static int tpacpi_suspend_handler(struct device *dev)
  781. {
  782. struct ibm_struct *ibm, *itmp;
  783. list_for_each_entry_safe(ibm, itmp,
  784. &tpacpi_all_drivers,
  785. all_drivers) {
  786. if (ibm->suspend)
  787. (ibm->suspend)();
  788. }
  789. return 0;
  790. }
  791. static int tpacpi_resume_handler(struct device *dev)
  792. {
  793. struct ibm_struct *ibm, *itmp;
  794. list_for_each_entry_safe(ibm, itmp,
  795. &tpacpi_all_drivers,
  796. all_drivers) {
  797. if (ibm->resume)
  798. (ibm->resume)();
  799. }
  800. return 0;
  801. }
  802. #endif
  803. static SIMPLE_DEV_PM_OPS(tpacpi_pm,
  804. tpacpi_suspend_handler, tpacpi_resume_handler);
  805. static void tpacpi_shutdown_handler(struct platform_device *pdev)
  806. {
  807. struct ibm_struct *ibm, *itmp;
  808. list_for_each_entry_safe(ibm, itmp,
  809. &tpacpi_all_drivers,
  810. all_drivers) {
  811. if (ibm->shutdown)
  812. (ibm->shutdown)();
  813. }
  814. }
  815. static struct platform_driver tpacpi_pdriver = {
  816. .driver = {
  817. .name = TPACPI_DRVR_NAME,
  818. .pm = &tpacpi_pm,
  819. },
  820. .shutdown = tpacpi_shutdown_handler,
  821. };
  822. static struct platform_driver tpacpi_hwmon_pdriver = {
  823. .driver = {
  824. .name = TPACPI_HWMON_DRVR_NAME,
  825. },
  826. };
  827. /*************************************************************************
  828. * sysfs support helpers
  829. */
  830. struct attribute_set {
  831. unsigned int members, max_members;
  832. struct attribute_group group;
  833. };
  834. struct attribute_set_obj {
  835. struct attribute_set s;
  836. struct attribute *a;
  837. } __attribute__((packed));
  838. static struct attribute_set *create_attr_set(unsigned int max_members,
  839. const char *name)
  840. {
  841. struct attribute_set_obj *sobj;
  842. if (max_members == 0)
  843. return NULL;
  844. /* Allocates space for implicit NULL at the end too */
  845. sobj = kzalloc(sizeof(struct attribute_set_obj) +
  846. max_members * sizeof(struct attribute *),
  847. GFP_KERNEL);
  848. if (!sobj)
  849. return NULL;
  850. sobj->s.max_members = max_members;
  851. sobj->s.group.attrs = &sobj->a;
  852. sobj->s.group.name = name;
  853. return &sobj->s;
  854. }
  855. #define destroy_attr_set(_set) \
  856. kfree(_set);
  857. /* not multi-threaded safe, use it in a single thread per set */
  858. static int add_to_attr_set(struct attribute_set *s, struct attribute *attr)
  859. {
  860. if (!s || !attr)
  861. return -EINVAL;
  862. if (s->members >= s->max_members)
  863. return -ENOMEM;
  864. s->group.attrs[s->members] = attr;
  865. s->members++;
  866. return 0;
  867. }
  868. static int add_many_to_attr_set(struct attribute_set *s,
  869. struct attribute **attr,
  870. unsigned int count)
  871. {
  872. int i, res;
  873. for (i = 0; i < count; i++) {
  874. res = add_to_attr_set(s, attr[i]);
  875. if (res)
  876. return res;
  877. }
  878. return 0;
  879. }
  880. static void delete_attr_set(struct attribute_set *s, struct kobject *kobj)
  881. {
  882. sysfs_remove_group(kobj, &s->group);
  883. destroy_attr_set(s);
  884. }
  885. #define register_attr_set_with_sysfs(_attr_set, _kobj) \
  886. sysfs_create_group(_kobj, &_attr_set->group)
  887. static int parse_strtoul(const char *buf,
  888. unsigned long max, unsigned long *value)
  889. {
  890. char *endp;
  891. *value = simple_strtoul(skip_spaces(buf), &endp, 0);
  892. endp = skip_spaces(endp);
  893. if (*endp || *value > max)
  894. return -EINVAL;
  895. return 0;
  896. }
  897. static void tpacpi_disable_brightness_delay(void)
  898. {
  899. if (acpi_evalf(hkey_handle, NULL, "PWMS", "qvd", 0))
  900. pr_notice("ACPI backlight control delay disabled\n");
  901. }
  902. static void printk_deprecated_attribute(const char * const what,
  903. const char * const details)
  904. {
  905. tpacpi_log_usertask("deprecated sysfs attribute");
  906. pr_warn("WARNING: sysfs attribute %s is deprecated and "
  907. "will be removed. %s\n",
  908. what, details);
  909. }
  910. /*************************************************************************
  911. * rfkill and radio control support helpers
  912. */
  913. /*
  914. * ThinkPad-ACPI firmware handling model:
  915. *
  916. * WLSW (master wireless switch) is event-driven, and is common to all
  917. * firmware-controlled radios. It cannot be controlled, just monitored,
  918. * as expected. It overrides all radio state in firmware
  919. *
  920. * The kernel, a masked-off hotkey, and WLSW can change the radio state
  921. * (TODO: verify how WLSW interacts with the returned radio state).
  922. *
  923. * The only time there are shadow radio state changes, is when
  924. * masked-off hotkeys are used.
  925. */
  926. /*
  927. * Internal driver API for radio state:
  928. *
  929. * int: < 0 = error, otherwise enum tpacpi_rfkill_state
  930. * bool: true means radio blocked (off)
  931. */
  932. enum tpacpi_rfkill_state {
  933. TPACPI_RFK_RADIO_OFF = 0,
  934. TPACPI_RFK_RADIO_ON
  935. };
  936. /* rfkill switches */
  937. enum tpacpi_rfk_id {
  938. TPACPI_RFK_BLUETOOTH_SW_ID = 0,
  939. TPACPI_RFK_WWAN_SW_ID,
  940. TPACPI_RFK_UWB_SW_ID,
  941. TPACPI_RFK_SW_MAX
  942. };
  943. static const char *tpacpi_rfkill_names[] = {
  944. [TPACPI_RFK_BLUETOOTH_SW_ID] = "bluetooth",
  945. [TPACPI_RFK_WWAN_SW_ID] = "wwan",
  946. [TPACPI_RFK_UWB_SW_ID] = "uwb",
  947. [TPACPI_RFK_SW_MAX] = NULL
  948. };
  949. /* ThinkPad-ACPI rfkill subdriver */
  950. struct tpacpi_rfk {
  951. struct rfkill *rfkill;
  952. enum tpacpi_rfk_id id;
  953. const struct tpacpi_rfk_ops *ops;
  954. };
  955. struct tpacpi_rfk_ops {
  956. /* firmware interface */
  957. int (*get_status)(void);
  958. int (*set_status)(const enum tpacpi_rfkill_state);
  959. };
  960. static struct tpacpi_rfk *tpacpi_rfkill_switches[TPACPI_RFK_SW_MAX];
  961. /* Query FW and update rfkill sw state for a given rfkill switch */
  962. static int tpacpi_rfk_update_swstate(const struct tpacpi_rfk *tp_rfk)
  963. {
  964. int status;
  965. if (!tp_rfk)
  966. return -ENODEV;
  967. status = (tp_rfk->ops->get_status)();
  968. if (status < 0)
  969. return status;
  970. rfkill_set_sw_state(tp_rfk->rfkill,
  971. (status == TPACPI_RFK_RADIO_OFF));
  972. return status;
  973. }
  974. /* Query FW and update rfkill sw state for all rfkill switches */
  975. static void tpacpi_rfk_update_swstate_all(void)
  976. {
  977. unsigned int i;
  978. for (i = 0; i < TPACPI_RFK_SW_MAX; i++)
  979. tpacpi_rfk_update_swstate(tpacpi_rfkill_switches[i]);
  980. }
  981. /*
  982. * Sync the HW-blocking state of all rfkill switches,
  983. * do notice it causes the rfkill core to schedule uevents
  984. */
  985. static void tpacpi_rfk_update_hwblock_state(bool blocked)
  986. {
  987. unsigned int i;
  988. struct tpacpi_rfk *tp_rfk;
  989. for (i = 0; i < TPACPI_RFK_SW_MAX; i++) {
  990. tp_rfk = tpacpi_rfkill_switches[i];
  991. if (tp_rfk) {
  992. if (rfkill_set_hw_state(tp_rfk->rfkill,
  993. blocked)) {
  994. /* ignore -- we track sw block */
  995. }
  996. }
  997. }
  998. }
  999. /* Call to get the WLSW state from the firmware */
  1000. static int hotkey_get_wlsw(void);
  1001. /* Call to query WLSW state and update all rfkill switches */
  1002. static bool tpacpi_rfk_check_hwblock_state(void)
  1003. {
  1004. int res = hotkey_get_wlsw();
  1005. int hw_blocked;
  1006. /* When unknown or unsupported, we have to assume it is unblocked */
  1007. if (res < 0)
  1008. return false;
  1009. hw_blocked = (res == TPACPI_RFK_RADIO_OFF);
  1010. tpacpi_rfk_update_hwblock_state(hw_blocked);
  1011. return hw_blocked;
  1012. }
  1013. static int tpacpi_rfk_hook_set_block(void *data, bool blocked)
  1014. {
  1015. struct tpacpi_rfk *tp_rfk = data;
  1016. int res;
  1017. dbg_printk(TPACPI_DBG_RFKILL,
  1018. "request to change radio state to %s\n",
  1019. blocked ? "blocked" : "unblocked");
  1020. /* try to set radio state */
  1021. res = (tp_rfk->ops->set_status)(blocked ?
  1022. TPACPI_RFK_RADIO_OFF : TPACPI_RFK_RADIO_ON);
  1023. /* and update the rfkill core with whatever the FW really did */
  1024. tpacpi_rfk_update_swstate(tp_rfk);
  1025. return (res < 0) ? res : 0;
  1026. }
  1027. static const struct rfkill_ops tpacpi_rfk_rfkill_ops = {
  1028. .set_block = tpacpi_rfk_hook_set_block,
  1029. };
  1030. static int __init tpacpi_new_rfkill(const enum tpacpi_rfk_id id,
  1031. const struct tpacpi_rfk_ops *tp_rfkops,
  1032. const enum rfkill_type rfktype,
  1033. const char *name,
  1034. const bool set_default)
  1035. {
  1036. struct tpacpi_rfk *atp_rfk;
  1037. int res;
  1038. bool sw_state = false;
  1039. bool hw_state;
  1040. int sw_status;
  1041. BUG_ON(id >= TPACPI_RFK_SW_MAX || tpacpi_rfkill_switches[id]);
  1042. atp_rfk = kzalloc(sizeof(struct tpacpi_rfk), GFP_KERNEL);
  1043. if (atp_rfk)
  1044. atp_rfk->rfkill = rfkill_alloc(name,
  1045. &tpacpi_pdev->dev,
  1046. rfktype,
  1047. &tpacpi_rfk_rfkill_ops,
  1048. atp_rfk);
  1049. if (!atp_rfk || !atp_rfk->rfkill) {
  1050. pr_err("failed to allocate memory for rfkill class\n");
  1051. kfree(atp_rfk);
  1052. return -ENOMEM;
  1053. }
  1054. atp_rfk->id = id;
  1055. atp_rfk->ops = tp_rfkops;
  1056. sw_status = (tp_rfkops->get_status)();
  1057. if (sw_status < 0) {
  1058. pr_err("failed to read initial state for %s, error %d\n",
  1059. name, sw_status);
  1060. } else {
  1061. sw_state = (sw_status == TPACPI_RFK_RADIO_OFF);
  1062. if (set_default) {
  1063. /* try to keep the initial state, since we ask the
  1064. * firmware to preserve it across S5 in NVRAM */
  1065. rfkill_init_sw_state(atp_rfk->rfkill, sw_state);
  1066. }
  1067. }
  1068. hw_state = tpacpi_rfk_check_hwblock_state();
  1069. rfkill_set_hw_state(atp_rfk->rfkill, hw_state);
  1070. res = rfkill_register(atp_rfk->rfkill);
  1071. if (res < 0) {
  1072. pr_err("failed to register %s rfkill switch: %d\n", name, res);
  1073. rfkill_destroy(atp_rfk->rfkill);
  1074. kfree(atp_rfk);
  1075. return res;
  1076. }
  1077. tpacpi_rfkill_switches[id] = atp_rfk;
  1078. pr_info("rfkill switch %s: radio is %sblocked\n",
  1079. name, (sw_state || hw_state) ? "" : "un");
  1080. return 0;
  1081. }
  1082. static void tpacpi_destroy_rfkill(const enum tpacpi_rfk_id id)
  1083. {
  1084. struct tpacpi_rfk *tp_rfk;
  1085. BUG_ON(id >= TPACPI_RFK_SW_MAX);
  1086. tp_rfk = tpacpi_rfkill_switches[id];
  1087. if (tp_rfk) {
  1088. rfkill_unregister(tp_rfk->rfkill);
  1089. rfkill_destroy(tp_rfk->rfkill);
  1090. tpacpi_rfkill_switches[id] = NULL;
  1091. kfree(tp_rfk);
  1092. }
  1093. }
  1094. static void printk_deprecated_rfkill_attribute(const char * const what)
  1095. {
  1096. printk_deprecated_attribute(what,
  1097. "Please switch to generic rfkill before year 2010");
  1098. }
  1099. /* sysfs <radio> enable ------------------------------------------------ */
  1100. static ssize_t tpacpi_rfk_sysfs_enable_show(const enum tpacpi_rfk_id id,
  1101. struct device_attribute *attr,
  1102. char *buf)
  1103. {
  1104. int status;
  1105. printk_deprecated_rfkill_attribute(attr->attr.name);
  1106. /* This is in the ABI... */
  1107. if (tpacpi_rfk_check_hwblock_state()) {
  1108. status = TPACPI_RFK_RADIO_OFF;
  1109. } else {
  1110. status = tpacpi_rfk_update_swstate(tpacpi_rfkill_switches[id]);
  1111. if (status < 0)
  1112. return status;
  1113. }
  1114. return snprintf(buf, PAGE_SIZE, "%d\n",
  1115. (status == TPACPI_RFK_RADIO_ON) ? 1 : 0);
  1116. }
  1117. static ssize_t tpacpi_rfk_sysfs_enable_store(const enum tpacpi_rfk_id id,
  1118. struct device_attribute *attr,
  1119. const char *buf, size_t count)
  1120. {
  1121. unsigned long t;
  1122. int res;
  1123. printk_deprecated_rfkill_attribute(attr->attr.name);
  1124. if (parse_strtoul(buf, 1, &t))
  1125. return -EINVAL;
  1126. tpacpi_disclose_usertask(attr->attr.name, "set to %ld\n", t);
  1127. /* This is in the ABI... */
  1128. if (tpacpi_rfk_check_hwblock_state() && !!t)
  1129. return -EPERM;
  1130. res = tpacpi_rfkill_switches[id]->ops->set_status((!!t) ?
  1131. TPACPI_RFK_RADIO_ON : TPACPI_RFK_RADIO_OFF);
  1132. tpacpi_rfk_update_swstate(tpacpi_rfkill_switches[id]);
  1133. return (res < 0) ? res : count;
  1134. }
  1135. /* procfs -------------------------------------------------------------- */
  1136. static int tpacpi_rfk_procfs_read(const enum tpacpi_rfk_id id, struct seq_file *m)
  1137. {
  1138. if (id >= TPACPI_RFK_SW_MAX)
  1139. seq_printf(m, "status:\t\tnot supported\n");
  1140. else {
  1141. int status;
  1142. /* This is in the ABI... */
  1143. if (tpacpi_rfk_check_hwblock_state()) {
  1144. status = TPACPI_RFK_RADIO_OFF;
  1145. } else {
  1146. status = tpacpi_rfk_update_swstate(
  1147. tpacpi_rfkill_switches[id]);
  1148. if (status < 0)
  1149. return status;
  1150. }
  1151. seq_printf(m, "status:\t\t%s\n",
  1152. (status == TPACPI_RFK_RADIO_ON) ?
  1153. "enabled" : "disabled");
  1154. seq_printf(m, "commands:\tenable, disable\n");
  1155. }
  1156. return 0;
  1157. }
  1158. static int tpacpi_rfk_procfs_write(const enum tpacpi_rfk_id id, char *buf)
  1159. {
  1160. char *cmd;
  1161. int status = -1;
  1162. int res = 0;
  1163. if (id >= TPACPI_RFK_SW_MAX)
  1164. return -ENODEV;
  1165. while ((cmd = next_cmd(&buf))) {
  1166. if (strlencmp(cmd, "enable") == 0)
  1167. status = TPACPI_RFK_RADIO_ON;
  1168. else if (strlencmp(cmd, "disable") == 0)
  1169. status = TPACPI_RFK_RADIO_OFF;
  1170. else
  1171. return -EINVAL;
  1172. }
  1173. if (status != -1) {
  1174. tpacpi_disclose_usertask("procfs", "attempt to %s %s\n",
  1175. (status == TPACPI_RFK_RADIO_ON) ?
  1176. "enable" : "disable",
  1177. tpacpi_rfkill_names[id]);
  1178. res = (tpacpi_rfkill_switches[id]->ops->set_status)(status);
  1179. tpacpi_rfk_update_swstate(tpacpi_rfkill_switches[id]);
  1180. }
  1181. return res;
  1182. }
  1183. /*************************************************************************
  1184. * thinkpad-acpi driver attributes
  1185. */
  1186. /* interface_version --------------------------------------------------- */
  1187. static ssize_t tpacpi_driver_interface_version_show(
  1188. struct device_driver *drv,
  1189. char *buf)
  1190. {
  1191. return snprintf(buf, PAGE_SIZE, "0x%08x\n", TPACPI_SYSFS_VERSION);
  1192. }
  1193. static DRIVER_ATTR(interface_version, S_IRUGO,
  1194. tpacpi_driver_interface_version_show, NULL);
  1195. /* debug_level --------------------------------------------------------- */
  1196. static ssize_t tpacpi_driver_debug_show(struct device_driver *drv,
  1197. char *buf)
  1198. {
  1199. return snprintf(buf, PAGE_SIZE, "0x%04x\n", dbg_level);
  1200. }
  1201. static ssize_t tpacpi_driver_debug_store(struct device_driver *drv,
  1202. const char *buf, size_t count)
  1203. {
  1204. unsigned long t;
  1205. if (parse_strtoul(buf, 0xffff, &t))
  1206. return -EINVAL;
  1207. dbg_level = t;
  1208. return count;
  1209. }
  1210. static DRIVER_ATTR(debug_level, S_IWUSR | S_IRUGO,
  1211. tpacpi_driver_debug_show, tpacpi_driver_debug_store);
  1212. /* version ------------------------------------------------------------- */
  1213. static ssize_t tpacpi_driver_version_show(struct device_driver *drv,
  1214. char *buf)
  1215. {
  1216. return snprintf(buf, PAGE_SIZE, "%s v%s\n",
  1217. TPACPI_DESC, TPACPI_VERSION);
  1218. }
  1219. static DRIVER_ATTR(version, S_IRUGO,
  1220. tpacpi_driver_version_show, NULL);
  1221. /* --------------------------------------------------------------------- */
  1222. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  1223. /* wlsw_emulstate ------------------------------------------------------ */
  1224. static ssize_t tpacpi_driver_wlsw_emulstate_show(struct device_driver *drv,
  1225. char *buf)
  1226. {
  1227. return snprintf(buf, PAGE_SIZE, "%d\n", !!tpacpi_wlsw_emulstate);
  1228. }
  1229. static ssize_t tpacpi_driver_wlsw_emulstate_store(struct device_driver *drv,
  1230. const char *buf, size_t count)
  1231. {
  1232. unsigned long t;
  1233. if (parse_strtoul(buf, 1, &t))
  1234. return -EINVAL;
  1235. if (tpacpi_wlsw_emulstate != !!t) {
  1236. tpacpi_wlsw_emulstate = !!t;
  1237. tpacpi_rfk_update_hwblock_state(!t); /* negative logic */
  1238. }
  1239. return count;
  1240. }
  1241. static DRIVER_ATTR(wlsw_emulstate, S_IWUSR | S_IRUGO,
  1242. tpacpi_driver_wlsw_emulstate_show,
  1243. tpacpi_driver_wlsw_emulstate_store);
  1244. /* bluetooth_emulstate ------------------------------------------------- */
  1245. static ssize_t tpacpi_driver_bluetooth_emulstate_show(
  1246. struct device_driver *drv,
  1247. char *buf)
  1248. {
  1249. return snprintf(buf, PAGE_SIZE, "%d\n", !!tpacpi_bluetooth_emulstate);
  1250. }
  1251. static ssize_t tpacpi_driver_bluetooth_emulstate_store(
  1252. struct device_driver *drv,
  1253. const char *buf, size_t count)
  1254. {
  1255. unsigned long t;
  1256. if (parse_strtoul(buf, 1, &t))
  1257. return -EINVAL;
  1258. tpacpi_bluetooth_emulstate = !!t;
  1259. return count;
  1260. }
  1261. static DRIVER_ATTR(bluetooth_emulstate, S_IWUSR | S_IRUGO,
  1262. tpacpi_driver_bluetooth_emulstate_show,
  1263. tpacpi_driver_bluetooth_emulstate_store);
  1264. /* wwan_emulstate ------------------------------------------------- */
  1265. static ssize_t tpacpi_driver_wwan_emulstate_show(
  1266. struct device_driver *drv,
  1267. char *buf)
  1268. {
  1269. return snprintf(buf, PAGE_SIZE, "%d\n", !!tpacpi_wwan_emulstate);
  1270. }
  1271. static ssize_t tpacpi_driver_wwan_emulstate_store(
  1272. struct device_driver *drv,
  1273. const char *buf, size_t count)
  1274. {
  1275. unsigned long t;
  1276. if (parse_strtoul(buf, 1, &t))
  1277. return -EINVAL;
  1278. tpacpi_wwan_emulstate = !!t;
  1279. return count;
  1280. }
  1281. static DRIVER_ATTR(wwan_emulstate, S_IWUSR | S_IRUGO,
  1282. tpacpi_driver_wwan_emulstate_show,
  1283. tpacpi_driver_wwan_emulstate_store);
  1284. /* uwb_emulstate ------------------------------------------------- */
  1285. static ssize_t tpacpi_driver_uwb_emulstate_show(
  1286. struct device_driver *drv,
  1287. char *buf)
  1288. {
  1289. return snprintf(buf, PAGE_SIZE, "%d\n", !!tpacpi_uwb_emulstate);
  1290. }
  1291. static ssize_t tpacpi_driver_uwb_emulstate_store(
  1292. struct device_driver *drv,
  1293. const char *buf, size_t count)
  1294. {
  1295. unsigned long t;
  1296. if (parse_strtoul(buf, 1, &t))
  1297. return -EINVAL;
  1298. tpacpi_uwb_emulstate = !!t;
  1299. return count;
  1300. }
  1301. static DRIVER_ATTR(uwb_emulstate, S_IWUSR | S_IRUGO,
  1302. tpacpi_driver_uwb_emulstate_show,
  1303. tpacpi_driver_uwb_emulstate_store);
  1304. #endif
  1305. /* --------------------------------------------------------------------- */
  1306. static struct driver_attribute *tpacpi_driver_attributes[] = {
  1307. &driver_attr_debug_level, &driver_attr_version,
  1308. &driver_attr_interface_version,
  1309. };
  1310. static int __init tpacpi_create_driver_attributes(struct device_driver *drv)
  1311. {
  1312. int i, res;
  1313. i = 0;
  1314. res = 0;
  1315. while (!res && i < ARRAY_SIZE(tpacpi_driver_attributes)) {
  1316. res = driver_create_file(drv, tpacpi_driver_attributes[i]);
  1317. i++;
  1318. }
  1319. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  1320. if (!res && dbg_wlswemul)
  1321. res = driver_create_file(drv, &driver_attr_wlsw_emulstate);
  1322. if (!res && dbg_bluetoothemul)
  1323. res = driver_create_file(drv, &driver_attr_bluetooth_emulstate);
  1324. if (!res && dbg_wwanemul)
  1325. res = driver_create_file(drv, &driver_attr_wwan_emulstate);
  1326. if (!res && dbg_uwbemul)
  1327. res = driver_create_file(drv, &driver_attr_uwb_emulstate);
  1328. #endif
  1329. return res;
  1330. }
  1331. static void tpacpi_remove_driver_attributes(struct device_driver *drv)
  1332. {
  1333. int i;
  1334. for (i = 0; i < ARRAY_SIZE(tpacpi_driver_attributes); i++)
  1335. driver_remove_file(drv, tpacpi_driver_attributes[i]);
  1336. #ifdef THINKPAD_ACPI_DEBUGFACILITIES
  1337. driver_remove_file(drv, &driver_attr_wlsw_emulstate);
  1338. driver_remove_file(drv, &driver_attr_bluetooth_emulstate);
  1339. driver_remove_file(drv, &driver_attr_wwan_emulstate);
  1340. driver_remove_file(drv, &driver_attr_uwb_emulstate);
  1341. #endif
  1342. }
  1343. /*************************************************************************
  1344. * Firmware Data
  1345. */
  1346. /*
  1347. * Table of recommended minimum BIOS versions
  1348. *
  1349. * Reasons for listing:
  1350. * 1. Stable BIOS, listed because the unknown amount of
  1351. * bugs and bad ACPI behaviour on older versions
  1352. *
  1353. * 2. BIOS or EC fw with known bugs that trigger on Linux
  1354. *
  1355. * 3. BIOS with known reduced functionality in older versions
  1356. *
  1357. * We recommend the latest BIOS and EC version.
  1358. * We only support the latest BIOS and EC fw version as a rule.
  1359. *
  1360. * Sources: IBM ThinkPad Public Web Documents (update changelogs),
  1361. * Information from users in ThinkWiki
  1362. *
  1363. * WARNING: we use this table also to detect that the machine is
  1364. * a ThinkPad in some cases, so don't remove entries lightly.
  1365. */
  1366. #define TPV_Q(__v, __id1, __id2, __bv1, __bv2) \
  1367. { .vendor = (__v), \
  1368. .bios = TPID(__id1, __id2), \
  1369. .ec = TPACPI_MATCH_ANY, \
  1370. .quirks = TPACPI_MATCH_ANY << 16 \
  1371. | (__bv1) << 8 | (__bv2) }
  1372. #define TPV_Q_X(__v, __bid1, __bid2, __bv1, __bv2, \
  1373. __eid, __ev1, __ev2) \
  1374. { .vendor = (__v), \
  1375. .bios = TPID(__bid1, __bid2), \
  1376. .ec = __eid, \
  1377. .quirks = (__ev1) << 24 | (__ev2) << 16 \
  1378. | (__bv1) << 8 | (__bv2) }
  1379. #define TPV_QI0(__id1, __id2, __bv1, __bv2) \
  1380. TPV_Q(PCI_VENDOR_ID_IBM, __id1, __id2, __bv1, __bv2)
  1381. /* Outdated IBM BIOSes often lack the EC id string */
  1382. #define TPV_QI1(__id1, __id2, __bv1, __bv2, __ev1, __ev2) \
  1383. TPV_Q_X(PCI_VENDOR_ID_IBM, __id1, __id2, \
  1384. __bv1, __bv2, TPID(__id1, __id2), \
  1385. __ev1, __ev2), \
  1386. TPV_Q_X(PCI_VENDOR_ID_IBM, __id1, __id2, \
  1387. __bv1, __bv2, TPACPI_MATCH_UNKNOWN, \
  1388. __ev1, __ev2)
  1389. /* Outdated IBM BIOSes often lack the EC id string */
  1390. #define TPV_QI2(__bid1, __bid2, __bv1, __bv2, \
  1391. __eid1, __eid2, __ev1, __ev2) \
  1392. TPV_Q_X(PCI_VENDOR_ID_IBM, __bid1, __bid2, \
  1393. __bv1, __bv2, TPID(__eid1, __eid2), \
  1394. __ev1, __ev2), \
  1395. TPV_Q_X(PCI_VENDOR_ID_IBM, __bid1, __bid2, \
  1396. __bv1, __bv2, TPACPI_MATCH_UNKNOWN, \
  1397. __ev1, __ev2)
  1398. #define TPV_QL0(__id1, __id2, __bv1, __bv2) \
  1399. TPV_Q(PCI_VENDOR_ID_LENOVO, __id1, __id2, __bv1, __bv2)
  1400. #define TPV_QL1(__id1, __id2, __bv1, __bv2, __ev1, __ev2) \
  1401. TPV_Q_X(PCI_VENDOR_ID_LENOVO, __id1, __id2, \
  1402. __bv1, __bv2, TPID(__id1, __id2), \
  1403. __ev1, __ev2)
  1404. #define TPV_QL2(__bid1, __bid2, __bv1, __bv2, \
  1405. __eid1, __eid2, __ev1, __ev2) \
  1406. TPV_Q_X(PCI_VENDOR_ID_LENOVO, __bid1, __bid2, \
  1407. __bv1, __bv2, TPID(__eid1, __eid2), \
  1408. __ev1, __ev2)
  1409. static const struct tpacpi_quirk tpacpi_bios_version_qtable[] __initconst = {
  1410. /* Numeric models ------------------ */
  1411. /* FW MODEL BIOS VERS */
  1412. TPV_QI0('I', 'M', '6', '5'), /* 570 */
  1413. TPV_QI0('I', 'U', '2', '6'), /* 570E */
  1414. TPV_QI0('I', 'B', '5', '4'), /* 600 */
  1415. TPV_QI0('I', 'H', '4', '7'), /* 600E */
  1416. TPV_QI0('I', 'N', '3', '6'), /* 600E */
  1417. TPV_QI0('I', 'T', '5', '5'), /* 600X */
  1418. TPV_QI0('I', 'D', '4', '8'), /* 770, 770E, 770ED */
  1419. TPV_QI0('I', 'I', '4', '2'), /* 770X */
  1420. TPV_QI0('I', 'O', '2', '3'), /* 770Z */
  1421. /* A-series ------------------------- */
  1422. /* FW MODEL BIOS VERS EC VERS */
  1423. TPV_QI0('I', 'W', '5', '9'), /* A20m */
  1424. TPV_QI0('I', 'V', '6', '9'), /* A20p */
  1425. TPV_QI0('1', '0', '2', '6'), /* A21e, A22e */
  1426. TPV_QI0('K', 'U', '3', '6'), /* A21e */
  1427. TPV_QI0('K', 'X', '3', '6'), /* A21m, A22m */
  1428. TPV_QI0('K', 'Y', '3', '8'), /* A21p, A22p */
  1429. TPV_QI0('1', 'B', '1', '7'), /* A22e */
  1430. TPV_QI0('1', '3', '2', '0'), /* A22m */
  1431. TPV_QI0('1', 'E', '7', '3'), /* A30/p (0) */
  1432. TPV_QI1('1', 'G', '4', '1', '1', '7'), /* A31/p (0) */
  1433. TPV_QI1('1', 'N', '1', '6', '0', '7'), /* A31/p (0) */
  1434. /* G-series ------------------------- */
  1435. /* FW MODEL BIOS VERS */
  1436. TPV_QI0('1', 'T', 'A', '6'), /* G40 */
  1437. TPV_QI0('1', 'X', '5', '7'), /* G41 */
  1438. /* R-series, T-series --------------- */
  1439. /* FW MODEL BIOS VERS EC VERS */
  1440. TPV_QI0('1', 'C', 'F', '0'), /* R30 */
  1441. TPV_QI0('1', 'F', 'F', '1'), /* R31 */
  1442. TPV_QI0('1', 'M', '9', '7'), /* R32 */
  1443. TPV_QI0('1', 'O', '6', '1'), /* R40 */
  1444. TPV_QI0('1', 'P', '6', '5'), /* R40 */
  1445. TPV_QI0('1', 'S', '7', '0'), /* R40e */
  1446. TPV_QI1('1', 'R', 'D', 'R', '7', '1'), /* R50/p, R51,
  1447. T40/p, T41/p, T42/p (1) */
  1448. TPV_QI1('1', 'V', '7', '1', '2', '8'), /* R50e, R51 (1) */
  1449. TPV_QI1('7', '8', '7', '1', '0', '6'), /* R51e (1) */
  1450. TPV_QI1('7', '6', '6', '9', '1', '6'), /* R52 (1) */
  1451. TPV_QI1('7', '0', '6', '9', '2', '8'), /* R52, T43 (1) */
  1452. TPV_QI0('I', 'Y', '6', '1'), /* T20 */
  1453. TPV_QI0('K', 'Z', '3', '4'), /* T21 */
  1454. TPV_QI0('1', '6', '3', '2'), /* T22 */
  1455. TPV_QI1('1', 'A', '6', '4', '2', '3'), /* T23 (0) */
  1456. TPV_QI1('1', 'I', '7', '1', '2', '0'), /* T30 (0) */
  1457. TPV_QI1('1', 'Y', '6', '5', '2', '9'), /* T43/p (1) */
  1458. TPV_QL1('7', '9', 'E', '3', '5', '0'), /* T60/p */
  1459. TPV_QL1('7', 'C', 'D', '2', '2', '2'), /* R60, R60i */
  1460. TPV_QL1('7', 'E', 'D', '0', '1', '5'), /* R60e, R60i */
  1461. /* BIOS FW BIOS VERS EC FW EC VERS */
  1462. TPV_QI2('1', 'W', '9', '0', '1', 'V', '2', '8'), /* R50e (1) */
  1463. TPV_QL2('7', 'I', '3', '4', '7', '9', '5', '0'), /* T60/p wide */
  1464. /* X-series ------------------------- */
  1465. /* FW MODEL BIOS VERS EC VERS */
  1466. TPV_QI0('I', 'Z', '9', 'D'), /* X20, X21 */
  1467. TPV_QI0('1', 'D', '7', '0'), /* X22, X23, X24 */
  1468. TPV_QI1('1', 'K', '4', '8', '1', '8'), /* X30 (0) */
  1469. TPV_QI1('1', 'Q', '9', '7', '2', '3'), /* X31, X32 (0) */
  1470. TPV_QI1('1', 'U', 'D', '3', 'B', '2'), /* X40 (0) */
  1471. TPV_QI1('7', '4', '6', '4', '2', '7'), /* X41 (0) */
  1472. TPV_QI1('7', '5', '6', '0', '2', '0'), /* X41t (0) */
  1473. TPV_QL1('7', 'B', 'D', '7', '4', '0'), /* X60/s */
  1474. TPV_QL1('7', 'J', '3', '0', '1', '3'), /* X60t */
  1475. /* (0) - older versions lack DMI EC fw string and functionality */
  1476. /* (1) - older versions known to lack functionality */
  1477. };
  1478. #undef TPV_QL1
  1479. #undef TPV_QL0
  1480. #undef TPV_QI2
  1481. #undef TPV_QI1
  1482. #undef TPV_QI0
  1483. #undef TPV_Q_X
  1484. #undef TPV_Q
  1485. static void __init tpacpi_check_outdated_fw(void)
  1486. {
  1487. unsigned long fwvers;
  1488. u16 ec_version, bios_version;
  1489. fwvers = tpacpi_check_quirks(tpacpi_bios_version_qtable,
  1490. ARRAY_SIZE(tpacpi_bios_version_qtable));
  1491. if (!fwvers)
  1492. return;
  1493. bios_version = fwvers & 0xffffU;
  1494. ec_version = (fwvers >> 16) & 0xffffU;
  1495. /* note that unknown versions are set to 0x0000 and we use that */
  1496. if ((bios_version > thinkpad_id.bios_release) ||
  1497. (ec_version > thinkpad_id.ec_release &&
  1498. ec_version != TPACPI_MATCH_ANY)) {
  1499. /*
  1500. * The changelogs would let us track down the exact
  1501. * reason, but it is just too much of a pain to track
  1502. * it. We only list BIOSes that are either really
  1503. * broken, or really stable to begin with, so it is
  1504. * best if the user upgrades the firmware anyway.
  1505. */
  1506. pr_warn("WARNING: Outdated ThinkPad BIOS/EC firmware\n");
  1507. pr_warn("WARNING: This firmware may be missing critical bug "
  1508. "fixes and/or important features\n");
  1509. }
  1510. }
  1511. static bool __init tpacpi_is_fw_known(void)
  1512. {
  1513. return tpacpi_check_quirks(tpacpi_bios_version_qtable,
  1514. ARRAY_SIZE(tpacpi_bios_version_qtable)) != 0;
  1515. }
  1516. /****************************************************************************
  1517. ****************************************************************************
  1518. *
  1519. * Subdrivers
  1520. *
  1521. ****************************************************************************
  1522. ****************************************************************************/
  1523. /*************************************************************************
  1524. * thinkpad-acpi metadata subdriver
  1525. */
  1526. static int thinkpad_acpi_driver_read(struct seq_file *m)
  1527. {
  1528. seq_printf(m, "driver:\t\t%s\n", TPACPI_DESC);
  1529. seq_printf(m, "version:\t%s\n", TPACPI_VERSION);
  1530. return 0;
  1531. }
  1532. static struct ibm_struct thinkpad_acpi_driver_data = {
  1533. .name = "driver",
  1534. .read = thinkpad_acpi_driver_read,
  1535. };
  1536. /*************************************************************************
  1537. * Hotkey subdriver
  1538. */
  1539. /*
  1540. * ThinkPad firmware event model
  1541. *
  1542. * The ThinkPad firmware has two main event interfaces: normal ACPI
  1543. * notifications (which follow the ACPI standard), and a private event
  1544. * interface.
  1545. *
  1546. * The private event interface also issues events for the hotkeys. As
  1547. * the driver gained features, the event handling code ended up being
  1548. * built around the hotkey subdriver. This will need to be refactored
  1549. * to a more formal event API eventually.
  1550. *
  1551. * Some "hotkeys" are actually supposed to be used as event reports,
  1552. * such as "brightness has changed", "volume has changed", depending on
  1553. * the ThinkPad model and how the firmware is operating.
  1554. *
  1555. * Unlike other classes, hotkey-class events have mask/unmask control on
  1556. * non-ancient firmware. However, how it behaves changes a lot with the
  1557. * firmware model and version.
  1558. */
  1559. enum { /* hot key scan codes (derived from ACPI DSDT) */
  1560. TP_ACPI_HOTKEYSCAN_FNF1 = 0,
  1561. TP_ACPI_HOTKEYSCAN_FNF2,
  1562. TP_ACPI_HOTKEYSCAN_FNF3,
  1563. TP_ACPI_HOTKEYSCAN_FNF4,
  1564. TP_ACPI_HOTKEYSCAN_FNF5,
  1565. TP_ACPI_HOTKEYSCAN_FNF6,
  1566. TP_ACPI_HOTKEYSCAN_FNF7,
  1567. TP_ACPI_HOTKEYSCAN_FNF8,
  1568. TP_ACPI_HOTKEYSCAN_FNF9,
  1569. TP_ACPI_HOTKEYSCAN_FNF10,
  1570. TP_ACPI_HOTKEYSCAN_FNF11,
  1571. TP_ACPI_HOTKEYSCAN_FNF12,
  1572. TP_ACPI_HOTKEYSCAN_FNBACKSPACE,
  1573. TP_ACPI_HOTKEYSCAN_FNINSERT,
  1574. TP_ACPI_HOTKEYSCAN_FNDELETE,
  1575. TP_ACPI_HOTKEYSCAN_FNHOME,
  1576. TP_ACPI_HOTKEYSCAN_FNEND,
  1577. TP_ACPI_HOTKEYSCAN_FNPAGEUP,
  1578. TP_ACPI_HOTKEYSCAN_FNPAGEDOWN,
  1579. TP_ACPI_HOTKEYSCAN_FNSPACE,
  1580. TP_ACPI_HOTKEYSCAN_VOLUMEUP,
  1581. TP_ACPI_HOTKEYSCAN_VOLUMEDOWN,
  1582. TP_ACPI_HOTKEYSCAN_MUTE,
  1583. TP_ACPI_HOTKEYSCAN_THINKPAD,
  1584. TP_ACPI_HOTKEYSCAN_UNK1,
  1585. TP_ACPI_HOTKEYSCAN_UNK2,
  1586. TP_ACPI_HOTKEYSCAN_UNK3,
  1587. TP_ACPI_HOTKEYSCAN_UNK4,
  1588. TP_ACPI_HOTKEYSCAN_UNK5,
  1589. TP_ACPI_HOTKEYSCAN_UNK6,
  1590. TP_ACPI_HOTKEYSCAN_UNK7,
  1591. TP_ACPI_HOTKEYSCAN_UNK8,
  1592. TP_ACPI_HOTKEYSCAN_MUTE2,
  1593. TP_ACPI_HOTKEYSCAN_BRIGHTNESS_ZERO,
  1594. TP_ACPI_HOTKEYSCAN_CLIPPING_TOOL,
  1595. TP_ACPI_HOTKEYSCAN_CLOUD,
  1596. TP_ACPI_HOTKEYSCAN_UNK9,
  1597. TP_ACPI_HOTKEYSCAN_VOICE,
  1598. TP_ACPI_HOTKEYSCAN_UNK10,
  1599. TP_ACPI_HOTKEYSCAN_GESTURES,
  1600. TP_ACPI_HOTKEYSCAN_UNK11,
  1601. TP_ACPI_HOTKEYSCAN_UNK12,
  1602. TP_ACPI_HOTKEYSCAN_UNK13,
  1603. TP_ACPI_HOTKEYSCAN_CONFIG,
  1604. TP_ACPI_HOTKEYSCAN_NEW_TAB,
  1605. TP_ACPI_HOTKEYSCAN_RELOAD,
  1606. TP_ACPI_HOTKEYSCAN_BACK,
  1607. TP_ACPI_HOTKEYSCAN_MIC_DOWN,
  1608. TP_ACPI_HOTKEYSCAN_MIC_UP,
  1609. TP_ACPI_HOTKEYSCAN_MIC_CANCELLATION,
  1610. TP_ACPI_HOTKEYSCAN_CAMERA_MODE,
  1611. TP_ACPI_HOTKEYSCAN_ROTATE_DISPLAY,
  1612. /* Hotkey keymap size */
  1613. TPACPI_HOTKEY_MAP_LEN
  1614. };
  1615. enum { /* Keys/events available through NVRAM polling */
  1616. TPACPI_HKEY_NVRAM_KNOWN_MASK = 0x00fb88c0U,
  1617. TPACPI_HKEY_NVRAM_GOOD_MASK = 0x00fb8000U,
  1618. };
  1619. enum { /* Positions of some of the keys in hotkey masks */
  1620. TP_ACPI_HKEY_DISPSWTCH_MASK = 1 << TP_ACPI_HOTKEYSCAN_FNF7,
  1621. TP_ACPI_HKEY_DISPXPAND_MASK = 1 << TP_ACPI_HOTKEYSCAN_FNF8,
  1622. TP_ACPI_HKEY_HIBERNATE_MASK = 1 << TP_ACPI_HOTKEYSCAN_FNF12,
  1623. TP_ACPI_HKEY_BRGHTUP_MASK = 1 << TP_ACPI_HOTKEYSCAN_FNHOME,
  1624. TP_ACPI_HKEY_BRGHTDWN_MASK = 1 << TP_ACPI_HOTKEYSCAN_FNEND,
  1625. TP_ACPI_HKEY_THNKLGHT_MASK = 1 << TP_ACPI_HOTKEYSCAN_FNPAGEUP,
  1626. TP_ACPI_HKEY_ZOOM_MASK = 1 << TP_ACPI_HOTKEYSCAN_FNSPACE,
  1627. TP_ACPI_HKEY_VOLUP_MASK = 1 << TP_ACPI_HOTKEYSCAN_VOLUMEUP,
  1628. TP_ACPI_HKEY_VOLDWN_MASK = 1 << TP_ACPI_HOTKEYSCAN_VOLUMEDOWN,
  1629. TP_ACPI_HKEY_MUTE_MASK = 1 << TP_ACPI_HOTKEYSCAN_MUTE,
  1630. TP_ACPI_HKEY_THINKPAD_MASK = 1 << TP_ACPI_HOTKEYSCAN_THINKPAD,
  1631. };
  1632. enum { /* NVRAM to ACPI HKEY group map */
  1633. TP_NVRAM_HKEY_GROUP_HK2 = TP_ACPI_HKEY_THINKPAD_MASK |
  1634. TP_ACPI_HKEY_ZOOM_MASK |
  1635. TP_ACPI_HKEY_DISPSWTCH_MASK |
  1636. TP_ACPI_HKEY_HIBERNATE_MASK,
  1637. TP_NVRAM_HKEY_GROUP_BRIGHTNESS = TP_ACPI_HKEY_BRGHTUP_MASK |
  1638. TP_ACPI_HKEY_BRGHTDWN_MASK,
  1639. TP_NVRAM_HKEY_GROUP_VOLUME = TP_ACPI_HKEY_VOLUP_MASK |
  1640. TP_ACPI_HKEY_VOLDWN_MASK |
  1641. TP_ACPI_HKEY_MUTE_MASK,
  1642. };
  1643. #ifdef CONFIG_THINKPAD_ACPI_HOTKEY_POLL
  1644. struct tp_nvram_state {
  1645. u16 thinkpad_toggle:1;
  1646. u16 zoom_toggle:1;
  1647. u16 display_toggle:1;
  1648. u16 thinklight_toggle:1;
  1649. u16 hibernate_toggle:1;
  1650. u16 displayexp_toggle:1;
  1651. u16 display_state:1;
  1652. u16 brightness_toggle:1;
  1653. u16 volume_toggle:1;
  1654. u16 mute:1;
  1655. u8 brightness_level;
  1656. u8 volume_level;
  1657. };
  1658. /* kthread for the hotkey poller */
  1659. static struct task_struct *tpacpi_hotkey_task;
  1660. /*
  1661. * Acquire mutex to write poller control variables as an
  1662. * atomic block.
  1663. *
  1664. * Increment hotkey_config_change when changing them if you
  1665. * want the kthread to forget old state.
  1666. *
  1667. * See HOTKEY_CONFIG_CRITICAL_START/HOTKEY_CONFIG_CRITICAL_END
  1668. */
  1669. static struct mutex hotkey_thread_data_mutex;
  1670. static unsigned int hotkey_config_change;
  1671. /*
  1672. * hotkey poller control variables
  1673. *
  1674. * Must be atomic or readers will also need to acquire mutex
  1675. *
  1676. * HOTKEY_CONFIG_CRITICAL_START/HOTKEY_CONFIG_CRITICAL_END
  1677. * should be used only when the changes need to be taken as
  1678. * a block, OR when one needs to force the kthread to forget
  1679. * old state.
  1680. */
  1681. static u32 hotkey_source_mask; /* bit mask 0=ACPI,1=NVRAM */
  1682. static unsigned int hotkey_poll_freq = 10; /* Hz */
  1683. #define HOTKEY_CONFIG_CRITICAL_START \
  1684. do { \
  1685. mutex_lock(&hotkey_thread_data_mutex); \
  1686. hotkey_config_change++; \
  1687. } while (0);
  1688. #define HOTKEY_CONFIG_CRITICAL_END \
  1689. mutex_unlock(&hotkey_thread_data_mutex);
  1690. #else /* CONFIG_THINKPAD_ACPI_HOTKEY_POLL */
  1691. #define hotkey_source_mask 0U
  1692. #define HOTKEY_CONFIG_CRITICAL_START
  1693. #define HOTKEY_CONFIG_CRITICAL_END
  1694. #endif /* CONFIG_THINKPAD_ACPI_HOTKEY_POLL */
  1695. static struct mutex hotkey_mutex;
  1696. static enum { /* Reasons for waking up */
  1697. TP_ACPI_WAKEUP_NONE = 0, /* None or unknown */
  1698. TP_ACPI_WAKEUP_BAYEJ, /* Bay ejection request */
  1699. TP_ACPI_WAKEUP_UNDOCK, /* Undock request */
  1700. } hotkey_wakeup_reason;
  1701. static int hotkey_autosleep_ack;
  1702. static u32 hotkey_orig_mask; /* events the BIOS had enabled */
  1703. static u32 hotkey_all_mask; /* all events supported in fw */
  1704. static u32 hotkey_reserved_mask; /* events better left disabled */
  1705. static u32 hotkey_driver_mask; /* events needed by the driver */
  1706. static u32 hotkey_user_mask; /* events visible to userspace */
  1707. static u32 hotkey_acpi_mask; /* events enabled in firmware */
  1708. static u16 *hotkey_keycode_map;
  1709. static struct attribute_set *hotkey_dev_attributes;
  1710. static void tpacpi_driver_event(const unsigned int hkey_event);
  1711. static void hotkey_driver_event(const unsigned int scancode);
  1712. static void hotkey_poll_setup(const bool may_warn);
  1713. /* HKEY.MHKG() return bits */
  1714. #define TP_HOTKEY_TABLET_MASK (1 << 3)
  1715. static int hotkey_get_wlsw(void)
  1716. {
  1717. int status;
  1718. if (!tp_features.hotkey_wlsw)
  1719. return -ENODEV;
  1720. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  1721. if (dbg_wlswemul)
  1722. return (tpacpi_wlsw_emulstate) ?
  1723. TPACPI_RFK_RADIO_ON : TPACPI_RFK_RADIO_OFF;
  1724. #endif
  1725. if (!acpi_evalf(hkey_handle, &status, "WLSW", "d"))
  1726. return -EIO;
  1727. return (status) ? TPACPI_RFK_RADIO_ON : TPACPI_RFK_RADIO_OFF;
  1728. }
  1729. static int hotkey_get_tablet_mode(int *status)
  1730. {
  1731. int s;
  1732. if (!acpi_evalf(hkey_handle, &s, "MHKG", "d"))
  1733. return -EIO;
  1734. *status = ((s & TP_HOTKEY_TABLET_MASK) != 0);
  1735. return 0;
  1736. }
  1737. /*
  1738. * Reads current event mask from firmware, and updates
  1739. * hotkey_acpi_mask accordingly. Also resets any bits
  1740. * from hotkey_user_mask that are unavailable to be
  1741. * delivered (shadow requirement of the userspace ABI).
  1742. *
  1743. * Call with hotkey_mutex held
  1744. */
  1745. static int hotkey_mask_get(void)
  1746. {
  1747. if (tp_features.hotkey_mask) {
  1748. u32 m = 0;
  1749. if (!acpi_evalf(hkey_handle, &m, "DHKN", "d"))
  1750. return -EIO;
  1751. hotkey_acpi_mask = m;
  1752. } else {
  1753. /* no mask support doesn't mean no event support... */
  1754. hotkey_acpi_mask = hotkey_all_mask;
  1755. }
  1756. /* sync userspace-visible mask */
  1757. hotkey_user_mask &= (hotkey_acpi_mask | hotkey_source_mask);
  1758. return 0;
  1759. }
  1760. static void hotkey_mask_warn_incomplete_mask(void)
  1761. {
  1762. /* log only what the user can fix... */
  1763. const u32 wantedmask = hotkey_driver_mask &
  1764. ~(hotkey_acpi_mask | hotkey_source_mask) &
  1765. (hotkey_all_mask | TPACPI_HKEY_NVRAM_KNOWN_MASK);
  1766. if (wantedmask)
  1767. pr_notice("required events 0x%08x not enabled!\n", wantedmask);
  1768. }
  1769. /*
  1770. * Set the firmware mask when supported
  1771. *
  1772. * Also calls hotkey_mask_get to update hotkey_acpi_mask.
  1773. *
  1774. * NOTE: does not set bits in hotkey_user_mask, but may reset them.
  1775. *
  1776. * Call with hotkey_mutex held
  1777. */
  1778. static int hotkey_mask_set(u32 mask)
  1779. {
  1780. int i;
  1781. int rc = 0;
  1782. const u32 fwmask = mask & ~hotkey_source_mask;
  1783. if (tp_features.hotkey_mask) {
  1784. for (i = 0; i < 32; i++) {
  1785. if (!acpi_evalf(hkey_handle,
  1786. NULL, "MHKM", "vdd", i + 1,
  1787. !!(mask & (1 << i)))) {
  1788. rc = -EIO;
  1789. break;
  1790. }
  1791. }
  1792. }
  1793. /*
  1794. * We *must* make an inconditional call to hotkey_mask_get to
  1795. * refresh hotkey_acpi_mask and update hotkey_user_mask
  1796. *
  1797. * Take the opportunity to also log when we cannot _enable_
  1798. * a given event.
  1799. */
  1800. if (!hotkey_mask_get() && !rc && (fwmask & ~hotkey_acpi_mask)) {
  1801. pr_notice("asked for hotkey mask 0x%08x, but "
  1802. "firmware forced it to 0x%08x\n",
  1803. fwmask, hotkey_acpi_mask);
  1804. }
  1805. if (tpacpi_lifecycle != TPACPI_LIFE_EXITING)
  1806. hotkey_mask_warn_incomplete_mask();
  1807. return rc;
  1808. }
  1809. /*
  1810. * Sets hotkey_user_mask and tries to set the firmware mask
  1811. *
  1812. * Call with hotkey_mutex held
  1813. */
  1814. static int hotkey_user_mask_set(const u32 mask)
  1815. {
  1816. int rc;
  1817. /* Give people a chance to notice they are doing something that
  1818. * is bound to go boom on their users sooner or later */
  1819. if (!tp_warned.hotkey_mask_ff &&
  1820. (mask == 0xffff || mask == 0xffffff ||
  1821. mask == 0xffffffff)) {
  1822. tp_warned.hotkey_mask_ff = 1;
  1823. pr_notice("setting the hotkey mask to 0x%08x is likely "
  1824. "not the best way to go about it\n", mask);
  1825. pr_notice("please consider using the driver defaults, "
  1826. "and refer to up-to-date thinkpad-acpi "
  1827. "documentation\n");
  1828. }
  1829. /* Try to enable what the user asked for, plus whatever we need.
  1830. * this syncs everything but won't enable bits in hotkey_user_mask */
  1831. rc = hotkey_mask_set((mask | hotkey_driver_mask) & ~hotkey_source_mask);
  1832. /* Enable the available bits in hotkey_user_mask */
  1833. hotkey_user_mask = mask & (hotkey_acpi_mask | hotkey_source_mask);
  1834. return rc;
  1835. }
  1836. /*
  1837. * Sets the driver hotkey mask.
  1838. *
  1839. * Can be called even if the hotkey subdriver is inactive
  1840. */
  1841. static int tpacpi_hotkey_driver_mask_set(const u32 mask)
  1842. {
  1843. int rc;
  1844. /* Do the right thing if hotkey_init has not been called yet */
  1845. if (!tp_features.hotkey) {
  1846. hotkey_driver_mask = mask;
  1847. return 0;
  1848. }
  1849. mutex_lock(&hotkey_mutex);
  1850. HOTKEY_CONFIG_CRITICAL_START
  1851. hotkey_driver_mask = mask;
  1852. #ifdef CONFIG_THINKPAD_ACPI_HOTKEY_POLL
  1853. hotkey_source_mask |= (mask & ~hotkey_all_mask);
  1854. #endif
  1855. HOTKEY_CONFIG_CRITICAL_END
  1856. rc = hotkey_mask_set((hotkey_acpi_mask | hotkey_driver_mask) &
  1857. ~hotkey_source_mask);
  1858. hotkey_poll_setup(true);
  1859. mutex_unlock(&hotkey_mutex);
  1860. return rc;
  1861. }
  1862. static int hotkey_status_get(int *status)
  1863. {
  1864. if (!acpi_evalf(hkey_handle, status, "DHKC", "d"))
  1865. return -EIO;
  1866. return 0;
  1867. }
  1868. static int hotkey_status_set(bool enable)
  1869. {
  1870. if (!acpi_evalf(hkey_handle, NULL, "MHKC", "vd", enable ? 1 : 0))
  1871. return -EIO;
  1872. return 0;
  1873. }
  1874. static void tpacpi_input_send_tabletsw(void)
  1875. {
  1876. int state;
  1877. if (tp_features.hotkey_tablet &&
  1878. !hotkey_get_tablet_mode(&state)) {
  1879. mutex_lock(&tpacpi_inputdev_send_mutex);
  1880. input_report_switch(tpacpi_inputdev,
  1881. SW_TABLET_MODE, !!state);
  1882. input_sync(tpacpi_inputdev);
  1883. mutex_unlock(&tpacpi_inputdev_send_mutex);
  1884. }
  1885. }
  1886. /* Do NOT call without validating scancode first */
  1887. static void tpacpi_input_send_key(const unsigned int scancode)
  1888. {
  1889. const unsigned int keycode = hotkey_keycode_map[scancode];
  1890. if (keycode != KEY_RESERVED) {
  1891. mutex_lock(&tpacpi_inputdev_send_mutex);
  1892. input_event(tpacpi_inputdev, EV_MSC, MSC_SCAN, scancode);
  1893. input_report_key(tpacpi_inputdev, keycode, 1);
  1894. input_sync(tpacpi_inputdev);
  1895. input_event(tpacpi_inputdev, EV_MSC, MSC_SCAN, scancode);
  1896. input_report_key(tpacpi_inputdev, keycode, 0);
  1897. input_sync(tpacpi_inputdev);
  1898. mutex_unlock(&tpacpi_inputdev_send_mutex);
  1899. }
  1900. }
  1901. /* Do NOT call without validating scancode first */
  1902. static void tpacpi_input_send_key_masked(const unsigned int scancode)
  1903. {
  1904. hotkey_driver_event(scancode);
  1905. if (hotkey_user_mask & (1 << scancode))
  1906. tpacpi_input_send_key(scancode);
  1907. }
  1908. #ifdef CONFIG_THINKPAD_ACPI_HOTKEY_POLL
  1909. static struct tp_acpi_drv_struct ibm_hotkey_acpidriver;
  1910. /* Do NOT call without validating scancode first */
  1911. static void tpacpi_hotkey_send_key(unsigned int scancode)
  1912. {
  1913. tpacpi_input_send_key_masked(scancode);
  1914. }
  1915. static void hotkey_read_nvram(struct tp_nvram_state *n, const u32 m)
  1916. {
  1917. u8 d;
  1918. if (m & TP_NVRAM_HKEY_GROUP_HK2) {
  1919. d = nvram_read_byte(TP_NVRAM_ADDR_HK2);
  1920. n->thinkpad_toggle = !!(d & TP_NVRAM_MASK_HKT_THINKPAD);
  1921. n->zoom_toggle = !!(d & TP_NVRAM_MASK_HKT_ZOOM);
  1922. n->display_toggle = !!(d & TP_NVRAM_MASK_HKT_DISPLAY);
  1923. n->hibernate_toggle = !!(d & TP_NVRAM_MASK_HKT_HIBERNATE);
  1924. }
  1925. if (m & TP_ACPI_HKEY_THNKLGHT_MASK) {
  1926. d = nvram_read_byte(TP_NVRAM_ADDR_THINKLIGHT);
  1927. n->thinklight_toggle = !!(d & TP_NVRAM_MASK_THINKLIGHT);
  1928. }
  1929. if (m & TP_ACPI_HKEY_DISPXPAND_MASK) {
  1930. d = nvram_read_byte(TP_NVRAM_ADDR_VIDEO);
  1931. n->displayexp_toggle =
  1932. !!(d & TP_NVRAM_MASK_HKT_DISPEXPND);
  1933. }
  1934. if (m & TP_NVRAM_HKEY_GROUP_BRIGHTNESS) {
  1935. d = nvram_read_byte(TP_NVRAM_ADDR_BRIGHTNESS);
  1936. n->brightness_level = (d & TP_NVRAM_MASK_LEVEL_BRIGHTNESS)
  1937. >> TP_NVRAM_POS_LEVEL_BRIGHTNESS;
  1938. n->brightness_toggle =
  1939. !!(d & TP_NVRAM_MASK_HKT_BRIGHTNESS);
  1940. }
  1941. if (m & TP_NVRAM_HKEY_GROUP_VOLUME) {
  1942. d = nvram_read_byte(TP_NVRAM_ADDR_MIXER);
  1943. n->volume_level = (d & TP_NVRAM_MASK_LEVEL_VOLUME)
  1944. >> TP_NVRAM_POS_LEVEL_VOLUME;
  1945. n->mute = !!(d & TP_NVRAM_MASK_MUTE);
  1946. n->volume_toggle = !!(d & TP_NVRAM_MASK_HKT_VOLUME);
  1947. }
  1948. }
  1949. #define TPACPI_COMPARE_KEY(__scancode, __member) \
  1950. do { \
  1951. if ((event_mask & (1 << __scancode)) && \
  1952. oldn->__member != newn->__member) \
  1953. tpacpi_hotkey_send_key(__scancode); \
  1954. } while (0)
  1955. #define TPACPI_MAY_SEND_KEY(__scancode) \
  1956. do { \
  1957. if (event_mask & (1 << __scancode)) \
  1958. tpacpi_hotkey_send_key(__scancode); \
  1959. } while (0)
  1960. static void issue_volchange(const unsigned int oldvol,
  1961. const unsigned int newvol,
  1962. const u32 event_mask)
  1963. {
  1964. unsigned int i = oldvol;
  1965. while (i > newvol) {
  1966. TPACPI_MAY_SEND_KEY(TP_ACPI_HOTKEYSCAN_VOLUMEDOWN);
  1967. i--;
  1968. }
  1969. while (i < newvol) {
  1970. TPACPI_MAY_SEND_KEY(TP_ACPI_HOTKEYSCAN_VOLUMEUP);
  1971. i++;
  1972. }
  1973. }
  1974. static void issue_brightnesschange(const unsigned int oldbrt,
  1975. const unsigned int newbrt,
  1976. const u32 event_mask)
  1977. {
  1978. unsigned int i = oldbrt;
  1979. while (i > newbrt) {
  1980. TPACPI_MAY_SEND_KEY(TP_ACPI_HOTKEYSCAN_FNEND);
  1981. i--;
  1982. }
  1983. while (i < newbrt) {
  1984. TPACPI_MAY_SEND_KEY(TP_ACPI_HOTKEYSCAN_FNHOME);
  1985. i++;
  1986. }
  1987. }
  1988. static void hotkey_compare_and_issue_event(struct tp_nvram_state *oldn,
  1989. struct tp_nvram_state *newn,
  1990. const u32 event_mask)
  1991. {
  1992. TPACPI_COMPARE_KEY(TP_ACPI_HOTKEYSCAN_THINKPAD, thinkpad_toggle);
  1993. TPACPI_COMPARE_KEY(TP_ACPI_HOTKEYSCAN_FNSPACE, zoom_toggle);
  1994. TPACPI_COMPARE_KEY(TP_ACPI_HOTKEYSCAN_FNF7, display_toggle);
  1995. TPACPI_COMPARE_KEY(TP_ACPI_HOTKEYSCAN_FNF12, hibernate_toggle);
  1996. TPACPI_COMPARE_KEY(TP_ACPI_HOTKEYSCAN_FNPAGEUP, thinklight_toggle);
  1997. TPACPI_COMPARE_KEY(TP_ACPI_HOTKEYSCAN_FNF8, displayexp_toggle);
  1998. /*
  1999. * Handle volume
  2000. *
  2001. * This code is supposed to duplicate the IBM firmware behaviour:
  2002. * - Pressing MUTE issues mute hotkey message, even when already mute
  2003. * - Pressing Volume up/down issues volume up/down hotkey messages,
  2004. * even when already at maximum or minimum volume
  2005. * - The act of unmuting issues volume up/down notification,
  2006. * depending which key was used to unmute
  2007. *
  2008. * We are constrained to what the NVRAM can tell us, which is not much
  2009. * and certainly not enough if more than one volume hotkey was pressed
  2010. * since the last poll cycle.
  2011. *
  2012. * Just to make our life interesting, some newer Lenovo ThinkPads have
  2013. * bugs in the BIOS and may fail to update volume_toggle properly.
  2014. */
  2015. if (newn->mute) {
  2016. /* muted */
  2017. if (!oldn->mute ||
  2018. oldn->volume_toggle != newn->volume_toggle ||
  2019. oldn->volume_level != newn->volume_level) {
  2020. /* recently muted, or repeated mute keypress, or
  2021. * multiple presses ending in mute */
  2022. issue_volchange(oldn->volume_level, newn->volume_level,
  2023. event_mask);
  2024. TPACPI_MAY_SEND_KEY(TP_ACPI_HOTKEYSCAN_MUTE);
  2025. }
  2026. } else {
  2027. /* unmute */
  2028. if (oldn->mute) {
  2029. /* recently unmuted, issue 'unmute' keypress */
  2030. TPACPI_MAY_SEND_KEY(TP_ACPI_HOTKEYSCAN_VOLUMEUP);
  2031. }
  2032. if (oldn->volume_level != newn->volume_level) {
  2033. issue_volchange(oldn->volume_level, newn->volume_level,
  2034. event_mask);
  2035. } else if (oldn->volume_toggle != newn->volume_toggle) {
  2036. /* repeated vol up/down keypress at end of scale ? */
  2037. if (newn->volume_level == 0)
  2038. TPACPI_MAY_SEND_KEY(TP_ACPI_HOTKEYSCAN_VOLUMEDOWN);
  2039. else if (newn->volume_level >= TP_NVRAM_LEVEL_VOLUME_MAX)
  2040. TPACPI_MAY_SEND_KEY(TP_ACPI_HOTKEYSCAN_VOLUMEUP);
  2041. }
  2042. }
  2043. /* handle brightness */
  2044. if (oldn->brightness_level != newn->brightness_level) {
  2045. issue_brightnesschange(oldn->brightness_level,
  2046. newn->brightness_level, event_mask);
  2047. } else if (oldn->brightness_toggle != newn->brightness_toggle) {
  2048. /* repeated key presses that didn't change state */
  2049. if (newn->brightness_level == 0)
  2050. TPACPI_MAY_SEND_KEY(TP_ACPI_HOTKEYSCAN_FNEND);
  2051. else if (newn->brightness_level >= bright_maxlvl
  2052. && !tp_features.bright_unkfw)
  2053. TPACPI_MAY_SEND_KEY(TP_ACPI_HOTKEYSCAN_FNHOME);
  2054. }
  2055. #undef TPACPI_COMPARE_KEY
  2056. #undef TPACPI_MAY_SEND_KEY
  2057. }
  2058. /*
  2059. * Polling driver
  2060. *
  2061. * We track all events in hotkey_source_mask all the time, since
  2062. * most of them are edge-based. We only issue those requested by
  2063. * hotkey_user_mask or hotkey_driver_mask, though.
  2064. */
  2065. static int hotkey_kthread(void *data)
  2066. {
  2067. struct tp_nvram_state s[2];
  2068. u32 poll_mask, event_mask;
  2069. unsigned int si, so;
  2070. unsigned long t;
  2071. unsigned int change_detector;
  2072. unsigned int poll_freq;
  2073. bool was_frozen;
  2074. if (tpacpi_lifecycle == TPACPI_LIFE_EXITING)
  2075. goto exit;
  2076. set_freezable();
  2077. so = 0;
  2078. si = 1;
  2079. t = 0;
  2080. /* Initial state for compares */
  2081. mutex_lock(&hotkey_thread_data_mutex);
  2082. change_detector = hotkey_config_change;
  2083. poll_mask = hotkey_source_mask;
  2084. event_mask = hotkey_source_mask &
  2085. (hotkey_driver_mask | hotkey_user_mask);
  2086. poll_freq = hotkey_poll_freq;
  2087. mutex_unlock(&hotkey_thread_data_mutex);
  2088. hotkey_read_nvram(&s[so], poll_mask);
  2089. while (!kthread_should_stop()) {
  2090. if (t == 0) {
  2091. if (likely(poll_freq))
  2092. t = 1000/poll_freq;
  2093. else
  2094. t = 100; /* should never happen... */
  2095. }
  2096. t = msleep_interruptible(t);
  2097. if (unlikely(kthread_freezable_should_stop(&was_frozen)))
  2098. break;
  2099. if (t > 0 && !was_frozen)
  2100. continue;
  2101. mutex_lock(&hotkey_thread_data_mutex);
  2102. if (was_frozen || hotkey_config_change != change_detector) {
  2103. /* forget old state on thaw or config change */
  2104. si = so;
  2105. t = 0;
  2106. change_detector = hotkey_config_change;
  2107. }
  2108. poll_mask = hotkey_source_mask;
  2109. event_mask = hotkey_source_mask &
  2110. (hotkey_driver_mask | hotkey_user_mask);
  2111. poll_freq = hotkey_poll_freq;
  2112. mutex_unlock(&hotkey_thread_data_mutex);
  2113. if (likely(poll_mask)) {
  2114. hotkey_read_nvram(&s[si], poll_mask);
  2115. if (likely(si != so)) {
  2116. hotkey_compare_and_issue_event(&s[so], &s[si],
  2117. event_mask);
  2118. }
  2119. }
  2120. so = si;
  2121. si ^= 1;
  2122. }
  2123. exit:
  2124. return 0;
  2125. }
  2126. /* call with hotkey_mutex held */
  2127. static void hotkey_poll_stop_sync(void)
  2128. {
  2129. if (tpacpi_hotkey_task) {
  2130. kthread_stop(tpacpi_hotkey_task);
  2131. tpacpi_hotkey_task = NULL;
  2132. }
  2133. }
  2134. /* call with hotkey_mutex held */
  2135. static void hotkey_poll_setup(const bool may_warn)
  2136. {
  2137. const u32 poll_driver_mask = hotkey_driver_mask & hotkey_source_mask;
  2138. const u32 poll_user_mask = hotkey_user_mask & hotkey_source_mask;
  2139. if (hotkey_poll_freq > 0 &&
  2140. (poll_driver_mask ||
  2141. (poll_user_mask && tpacpi_inputdev->users > 0))) {
  2142. if (!tpacpi_hotkey_task) {
  2143. tpacpi_hotkey_task = kthread_run(hotkey_kthread,
  2144. NULL, TPACPI_NVRAM_KTHREAD_NAME);
  2145. if (IS_ERR(tpacpi_hotkey_task)) {
  2146. tpacpi_hotkey_task = NULL;
  2147. pr_err("could not create kernel thread "
  2148. "for hotkey polling\n");
  2149. }
  2150. }
  2151. } else {
  2152. hotkey_poll_stop_sync();
  2153. if (may_warn && (poll_driver_mask || poll_user_mask) &&
  2154. hotkey_poll_freq == 0) {
  2155. pr_notice("hot keys 0x%08x and/or events 0x%08x "
  2156. "require polling, which is currently "
  2157. "disabled\n",
  2158. poll_user_mask, poll_driver_mask);
  2159. }
  2160. }
  2161. }
  2162. static void hotkey_poll_setup_safe(const bool may_warn)
  2163. {
  2164. mutex_lock(&hotkey_mutex);
  2165. hotkey_poll_setup(may_warn);
  2166. mutex_unlock(&hotkey_mutex);
  2167. }
  2168. /* call with hotkey_mutex held */
  2169. static void hotkey_poll_set_freq(unsigned int freq)
  2170. {
  2171. if (!freq)
  2172. hotkey_poll_stop_sync();
  2173. hotkey_poll_freq = freq;
  2174. }
  2175. #else /* CONFIG_THINKPAD_ACPI_HOTKEY_POLL */
  2176. static void hotkey_poll_setup(const bool __unused)
  2177. {
  2178. }
  2179. static void hotkey_poll_setup_safe(const bool __unused)
  2180. {
  2181. }
  2182. #endif /* CONFIG_THINKPAD_ACPI_HOTKEY_POLL */
  2183. static int hotkey_inputdev_open(struct input_dev *dev)
  2184. {
  2185. switch (tpacpi_lifecycle) {
  2186. case TPACPI_LIFE_INIT:
  2187. case TPACPI_LIFE_RUNNING:
  2188. hotkey_poll_setup_safe(false);
  2189. return 0;
  2190. case TPACPI_LIFE_EXITING:
  2191. return -EBUSY;
  2192. }
  2193. /* Should only happen if tpacpi_lifecycle is corrupt */
  2194. BUG();
  2195. return -EBUSY;
  2196. }
  2197. static void hotkey_inputdev_close(struct input_dev *dev)
  2198. {
  2199. /* disable hotkey polling when possible */
  2200. if (tpacpi_lifecycle != TPACPI_LIFE_EXITING &&
  2201. !(hotkey_source_mask & hotkey_driver_mask))
  2202. hotkey_poll_setup_safe(false);
  2203. }
  2204. /* sysfs hotkey enable ------------------------------------------------- */
  2205. static ssize_t hotkey_enable_show(struct device *dev,
  2206. struct device_attribute *attr,
  2207. char *buf)
  2208. {
  2209. int res, status;
  2210. printk_deprecated_attribute("hotkey_enable",
  2211. "Hotkey reporting is always enabled");
  2212. res = hotkey_status_get(&status);
  2213. if (res)
  2214. return res;
  2215. return snprintf(buf, PAGE_SIZE, "%d\n", status);
  2216. }
  2217. static ssize_t hotkey_enable_store(struct device *dev,
  2218. struct device_attribute *attr,
  2219. const char *buf, size_t count)
  2220. {
  2221. unsigned long t;
  2222. printk_deprecated_attribute("hotkey_enable",
  2223. "Hotkeys can be disabled through hotkey_mask");
  2224. if (parse_strtoul(buf, 1, &t))
  2225. return -EINVAL;
  2226. if (t == 0)
  2227. return -EPERM;
  2228. return count;
  2229. }
  2230. static DEVICE_ATTR_RW(hotkey_enable);
  2231. /* sysfs hotkey mask --------------------------------------------------- */
  2232. static ssize_t hotkey_mask_show(struct device *dev,
  2233. struct device_attribute *attr,
  2234. char *buf)
  2235. {
  2236. return snprintf(buf, PAGE_SIZE, "0x%08x\n", hotkey_user_mask);
  2237. }
  2238. static ssize_t hotkey_mask_store(struct device *dev,
  2239. struct device_attribute *attr,
  2240. const char *buf, size_t count)
  2241. {
  2242. unsigned long t;
  2243. int res;
  2244. if (parse_strtoul(buf, 0xffffffffUL, &t))
  2245. return -EINVAL;
  2246. if (mutex_lock_killable(&hotkey_mutex))
  2247. return -ERESTARTSYS;
  2248. res = hotkey_user_mask_set(t);
  2249. #ifdef CONFIG_THINKPAD_ACPI_HOTKEY_POLL
  2250. hotkey_poll_setup(true);
  2251. #endif
  2252. mutex_unlock(&hotkey_mutex);
  2253. tpacpi_disclose_usertask("hotkey_mask", "set to 0x%08lx\n", t);
  2254. return (res) ? res : count;
  2255. }
  2256. static DEVICE_ATTR_RW(hotkey_mask);
  2257. /* sysfs hotkey bios_enabled ------------------------------------------- */
  2258. static ssize_t hotkey_bios_enabled_show(struct device *dev,
  2259. struct device_attribute *attr,
  2260. char *buf)
  2261. {
  2262. return sprintf(buf, "0\n");
  2263. }
  2264. static DEVICE_ATTR_RO(hotkey_bios_enabled);
  2265. /* sysfs hotkey bios_mask ---------------------------------------------- */
  2266. static ssize_t hotkey_bios_mask_show(struct device *dev,
  2267. struct device_attribute *attr,
  2268. char *buf)
  2269. {
  2270. printk_deprecated_attribute("hotkey_bios_mask",
  2271. "This attribute is useless.");
  2272. return snprintf(buf, PAGE_SIZE, "0x%08x\n", hotkey_orig_mask);
  2273. }
  2274. static DEVICE_ATTR_RO(hotkey_bios_mask);
  2275. /* sysfs hotkey all_mask ----------------------------------------------- */
  2276. static ssize_t hotkey_all_mask_show(struct device *dev,
  2277. struct device_attribute *attr,
  2278. char *buf)
  2279. {
  2280. return snprintf(buf, PAGE_SIZE, "0x%08x\n",
  2281. hotkey_all_mask | hotkey_source_mask);
  2282. }
  2283. static DEVICE_ATTR_RO(hotkey_all_mask);
  2284. /* sysfs hotkey recommended_mask --------------------------------------- */
  2285. static ssize_t hotkey_recommended_mask_show(struct device *dev,
  2286. struct device_attribute *attr,
  2287. char *buf)
  2288. {
  2289. return snprintf(buf, PAGE_SIZE, "0x%08x\n",
  2290. (hotkey_all_mask | hotkey_source_mask)
  2291. & ~hotkey_reserved_mask);
  2292. }
  2293. static DEVICE_ATTR_RO(hotkey_recommended_mask);
  2294. #ifdef CONFIG_THINKPAD_ACPI_HOTKEY_POLL
  2295. /* sysfs hotkey hotkey_source_mask ------------------------------------- */
  2296. static ssize_t hotkey_source_mask_show(struct device *dev,
  2297. struct device_attribute *attr,
  2298. char *buf)
  2299. {
  2300. return snprintf(buf, PAGE_SIZE, "0x%08x\n", hotkey_source_mask);
  2301. }
  2302. static ssize_t hotkey_source_mask_store(struct device *dev,
  2303. struct device_attribute *attr,
  2304. const char *buf, size_t count)
  2305. {
  2306. unsigned long t;
  2307. u32 r_ev;
  2308. int rc;
  2309. if (parse_strtoul(buf, 0xffffffffUL, &t) ||
  2310. ((t & ~TPACPI_HKEY_NVRAM_KNOWN_MASK) != 0))
  2311. return -EINVAL;
  2312. if (mutex_lock_killable(&hotkey_mutex))
  2313. return -ERESTARTSYS;
  2314. HOTKEY_CONFIG_CRITICAL_START
  2315. hotkey_source_mask = t;
  2316. HOTKEY_CONFIG_CRITICAL_END
  2317. rc = hotkey_mask_set((hotkey_user_mask | hotkey_driver_mask) &
  2318. ~hotkey_source_mask);
  2319. hotkey_poll_setup(true);
  2320. /* check if events needed by the driver got disabled */
  2321. r_ev = hotkey_driver_mask & ~(hotkey_acpi_mask & hotkey_all_mask)
  2322. & ~hotkey_source_mask & TPACPI_HKEY_NVRAM_KNOWN_MASK;
  2323. mutex_unlock(&hotkey_mutex);
  2324. if (rc < 0)
  2325. pr_err("hotkey_source_mask: "
  2326. "failed to update the firmware event mask!\n");
  2327. if (r_ev)
  2328. pr_notice("hotkey_source_mask: "
  2329. "some important events were disabled: 0x%04x\n",
  2330. r_ev);
  2331. tpacpi_disclose_usertask("hotkey_source_mask", "set to 0x%08lx\n", t);
  2332. return (rc < 0) ? rc : count;
  2333. }
  2334. static DEVICE_ATTR_RW(hotkey_source_mask);
  2335. /* sysfs hotkey hotkey_poll_freq --------------------------------------- */
  2336. static ssize_t hotkey_poll_freq_show(struct device *dev,
  2337. struct device_attribute *attr,
  2338. char *buf)
  2339. {
  2340. return snprintf(buf, PAGE_SIZE, "%d\n", hotkey_poll_freq);
  2341. }
  2342. static ssize_t hotkey_poll_freq_store(struct device *dev,
  2343. struct device_attribute *attr,
  2344. const char *buf, size_t count)
  2345. {
  2346. unsigned long t;
  2347. if (parse_strtoul(buf, 25, &t))
  2348. return -EINVAL;
  2349. if (mutex_lock_killable(&hotkey_mutex))
  2350. return -ERESTARTSYS;
  2351. hotkey_poll_set_freq(t);
  2352. hotkey_poll_setup(true);
  2353. mutex_unlock(&hotkey_mutex);
  2354. tpacpi_disclose_usertask("hotkey_poll_freq", "set to %lu\n", t);
  2355. return count;
  2356. }
  2357. static DEVICE_ATTR_RW(hotkey_poll_freq);
  2358. #endif /* CONFIG_THINKPAD_ACPI_HOTKEY_POLL */
  2359. /* sysfs hotkey radio_sw (pollable) ------------------------------------ */
  2360. static ssize_t hotkey_radio_sw_show(struct device *dev,
  2361. struct device_attribute *attr,
  2362. char *buf)
  2363. {
  2364. int res;
  2365. res = hotkey_get_wlsw();
  2366. if (res < 0)
  2367. return res;
  2368. /* Opportunistic update */
  2369. tpacpi_rfk_update_hwblock_state((res == TPACPI_RFK_RADIO_OFF));
  2370. return snprintf(buf, PAGE_SIZE, "%d\n",
  2371. (res == TPACPI_RFK_RADIO_OFF) ? 0 : 1);
  2372. }
  2373. static DEVICE_ATTR_RO(hotkey_radio_sw);
  2374. static void hotkey_radio_sw_notify_change(void)
  2375. {
  2376. if (tp_features.hotkey_wlsw)
  2377. sysfs_notify(&tpacpi_pdev->dev.kobj, NULL,
  2378. "hotkey_radio_sw");
  2379. }
  2380. /* sysfs hotkey tablet mode (pollable) --------------------------------- */
  2381. static ssize_t hotkey_tablet_mode_show(struct device *dev,
  2382. struct device_attribute *attr,
  2383. char *buf)
  2384. {
  2385. int res, s;
  2386. res = hotkey_get_tablet_mode(&s);
  2387. if (res < 0)
  2388. return res;
  2389. return snprintf(buf, PAGE_SIZE, "%d\n", !!s);
  2390. }
  2391. static DEVICE_ATTR_RO(hotkey_tablet_mode);
  2392. static void hotkey_tablet_mode_notify_change(void)
  2393. {
  2394. if (tp_features.hotkey_tablet)
  2395. sysfs_notify(&tpacpi_pdev->dev.kobj, NULL,
  2396. "hotkey_tablet_mode");
  2397. }
  2398. /* sysfs wakeup reason (pollable) -------------------------------------- */
  2399. static ssize_t hotkey_wakeup_reason_show(struct device *dev,
  2400. struct device_attribute *attr,
  2401. char *buf)
  2402. {
  2403. return snprintf(buf, PAGE_SIZE, "%d\n", hotkey_wakeup_reason);
  2404. }
  2405. static DEVICE_ATTR(wakeup_reason, S_IRUGO, hotkey_wakeup_reason_show, NULL);
  2406. static void hotkey_wakeup_reason_notify_change(void)
  2407. {
  2408. sysfs_notify(&tpacpi_pdev->dev.kobj, NULL,
  2409. "wakeup_reason");
  2410. }
  2411. /* sysfs wakeup hotunplug_complete (pollable) -------------------------- */
  2412. static ssize_t hotkey_wakeup_hotunplug_complete_show(struct device *dev,
  2413. struct device_attribute *attr,
  2414. char *buf)
  2415. {
  2416. return snprintf(buf, PAGE_SIZE, "%d\n", hotkey_autosleep_ack);
  2417. }
  2418. static DEVICE_ATTR(wakeup_hotunplug_complete, S_IRUGO,
  2419. hotkey_wakeup_hotunplug_complete_show, NULL);
  2420. static void hotkey_wakeup_hotunplug_complete_notify_change(void)
  2421. {
  2422. sysfs_notify(&tpacpi_pdev->dev.kobj, NULL,
  2423. "wakeup_hotunplug_complete");
  2424. }
  2425. /* sysfs adaptive kbd mode --------------------------------------------- */
  2426. static int adaptive_keyboard_get_mode(void);
  2427. static int adaptive_keyboard_set_mode(int new_mode);
  2428. enum ADAPTIVE_KEY_MODE {
  2429. HOME_MODE,
  2430. WEB_BROWSER_MODE,
  2431. WEB_CONFERENCE_MODE,
  2432. FUNCTION_MODE,
  2433. LAYFLAT_MODE
  2434. };
  2435. static ssize_t adaptive_kbd_mode_show(struct device *dev,
  2436. struct device_attribute *attr,
  2437. char *buf)
  2438. {
  2439. int current_mode;
  2440. current_mode = adaptive_keyboard_get_mode();
  2441. if (current_mode < 0)
  2442. return current_mode;
  2443. return snprintf(buf, PAGE_SIZE, "%d\n", current_mode);
  2444. }
  2445. static ssize_t adaptive_kbd_mode_store(struct device *dev,
  2446. struct device_attribute *attr,
  2447. const char *buf, size_t count)
  2448. {
  2449. unsigned long t;
  2450. int res;
  2451. if (parse_strtoul(buf, LAYFLAT_MODE, &t))
  2452. return -EINVAL;
  2453. res = adaptive_keyboard_set_mode(t);
  2454. return (res < 0) ? res : count;
  2455. }
  2456. static DEVICE_ATTR_RW(adaptive_kbd_mode);
  2457. static struct attribute *adaptive_kbd_attributes[] = {
  2458. &dev_attr_adaptive_kbd_mode.attr,
  2459. NULL
  2460. };
  2461. static const struct attribute_group adaptive_kbd_attr_group = {
  2462. .attrs = adaptive_kbd_attributes,
  2463. };
  2464. /* --------------------------------------------------------------------- */
  2465. static struct attribute *hotkey_attributes[] __initdata = {
  2466. &dev_attr_hotkey_enable.attr,
  2467. &dev_attr_hotkey_bios_enabled.attr,
  2468. &dev_attr_hotkey_bios_mask.attr,
  2469. &dev_attr_wakeup_reason.attr,
  2470. &dev_attr_wakeup_hotunplug_complete.attr,
  2471. &dev_attr_hotkey_mask.attr,
  2472. &dev_attr_hotkey_all_mask.attr,
  2473. &dev_attr_hotkey_recommended_mask.attr,
  2474. #ifdef CONFIG_THINKPAD_ACPI_HOTKEY_POLL
  2475. &dev_attr_hotkey_source_mask.attr,
  2476. &dev_attr_hotkey_poll_freq.attr,
  2477. #endif
  2478. };
  2479. /*
  2480. * Sync both the hw and sw blocking state of all switches
  2481. */
  2482. static void tpacpi_send_radiosw_update(void)
  2483. {
  2484. int wlsw;
  2485. /*
  2486. * We must sync all rfkill controllers *before* issuing any
  2487. * rfkill input events, or we will race the rfkill core input
  2488. * handler.
  2489. *
  2490. * tpacpi_inputdev_send_mutex works as a synchronization point
  2491. * for the above.
  2492. *
  2493. * We optimize to avoid numerous calls to hotkey_get_wlsw.
  2494. */
  2495. wlsw = hotkey_get_wlsw();
  2496. /* Sync hw blocking state first if it is hw-blocked */
  2497. if (wlsw == TPACPI_RFK_RADIO_OFF)
  2498. tpacpi_rfk_update_hwblock_state(true);
  2499. /* Sync sw blocking state */
  2500. tpacpi_rfk_update_swstate_all();
  2501. /* Sync hw blocking state last if it is hw-unblocked */
  2502. if (wlsw == TPACPI_RFK_RADIO_ON)
  2503. tpacpi_rfk_update_hwblock_state(false);
  2504. /* Issue rfkill input event for WLSW switch */
  2505. if (!(wlsw < 0)) {
  2506. mutex_lock(&tpacpi_inputdev_send_mutex);
  2507. input_report_switch(tpacpi_inputdev,
  2508. SW_RFKILL_ALL, (wlsw > 0));
  2509. input_sync(tpacpi_inputdev);
  2510. mutex_unlock(&tpacpi_inputdev_send_mutex);
  2511. }
  2512. /*
  2513. * this can be unconditional, as we will poll state again
  2514. * if userspace uses the notify to read data
  2515. */
  2516. hotkey_radio_sw_notify_change();
  2517. }
  2518. static void hotkey_exit(void)
  2519. {
  2520. #ifdef CONFIG_THINKPAD_ACPI_HOTKEY_POLL
  2521. mutex_lock(&hotkey_mutex);
  2522. hotkey_poll_stop_sync();
  2523. mutex_unlock(&hotkey_mutex);
  2524. #endif
  2525. if (hotkey_dev_attributes)
  2526. delete_attr_set(hotkey_dev_attributes, &tpacpi_pdev->dev.kobj);
  2527. dbg_printk(TPACPI_DBG_EXIT | TPACPI_DBG_HKEY,
  2528. "restoring original HKEY status and mask\n");
  2529. /* yes, there is a bitwise or below, we want the
  2530. * functions to be called even if one of them fail */
  2531. if (((tp_features.hotkey_mask &&
  2532. hotkey_mask_set(hotkey_orig_mask)) |
  2533. hotkey_status_set(false)) != 0)
  2534. pr_err("failed to restore hot key mask "
  2535. "to BIOS defaults\n");
  2536. }
  2537. static void __init hotkey_unmap(const unsigned int scancode)
  2538. {
  2539. if (hotkey_keycode_map[scancode] != KEY_RESERVED) {
  2540. clear_bit(hotkey_keycode_map[scancode],
  2541. tpacpi_inputdev->keybit);
  2542. hotkey_keycode_map[scancode] = KEY_RESERVED;
  2543. }
  2544. }
  2545. /*
  2546. * HKEY quirks:
  2547. * TPACPI_HK_Q_INIMASK: Supports FN+F3,FN+F4,FN+F12
  2548. */
  2549. #define TPACPI_HK_Q_INIMASK 0x0001
  2550. static const struct tpacpi_quirk tpacpi_hotkey_qtable[] __initconst = {
  2551. TPACPI_Q_IBM('I', 'H', TPACPI_HK_Q_INIMASK), /* 600E */
  2552. TPACPI_Q_IBM('I', 'N', TPACPI_HK_Q_INIMASK), /* 600E */
  2553. TPACPI_Q_IBM('I', 'D', TPACPI_HK_Q_INIMASK), /* 770, 770E, 770ED */
  2554. TPACPI_Q_IBM('I', 'W', TPACPI_HK_Q_INIMASK), /* A20m */
  2555. TPACPI_Q_IBM('I', 'V', TPACPI_HK_Q_INIMASK), /* A20p */
  2556. TPACPI_Q_IBM('1', '0', TPACPI_HK_Q_INIMASK), /* A21e, A22e */
  2557. TPACPI_Q_IBM('K', 'U', TPACPI_HK_Q_INIMASK), /* A21e */
  2558. TPACPI_Q_IBM('K', 'X', TPACPI_HK_Q_INIMASK), /* A21m, A22m */
  2559. TPACPI_Q_IBM('K', 'Y', TPACPI_HK_Q_INIMASK), /* A21p, A22p */
  2560. TPACPI_Q_IBM('1', 'B', TPACPI_HK_Q_INIMASK), /* A22e */
  2561. TPACPI_Q_IBM('1', '3', TPACPI_HK_Q_INIMASK), /* A22m */
  2562. TPACPI_Q_IBM('1', 'E', TPACPI_HK_Q_INIMASK), /* A30/p (0) */
  2563. TPACPI_Q_IBM('1', 'C', TPACPI_HK_Q_INIMASK), /* R30 */
  2564. TPACPI_Q_IBM('1', 'F', TPACPI_HK_Q_INIMASK), /* R31 */
  2565. TPACPI_Q_IBM('I', 'Y', TPACPI_HK_Q_INIMASK), /* T20 */
  2566. TPACPI_Q_IBM('K', 'Z', TPACPI_HK_Q_INIMASK), /* T21 */
  2567. TPACPI_Q_IBM('1', '6', TPACPI_HK_Q_INIMASK), /* T22 */
  2568. TPACPI_Q_IBM('I', 'Z', TPACPI_HK_Q_INIMASK), /* X20, X21 */
  2569. TPACPI_Q_IBM('1', 'D', TPACPI_HK_Q_INIMASK), /* X22, X23, X24 */
  2570. };
  2571. typedef u16 tpacpi_keymap_entry_t;
  2572. typedef tpacpi_keymap_entry_t tpacpi_keymap_t[TPACPI_HOTKEY_MAP_LEN];
  2573. static int __init hotkey_init(struct ibm_init_struct *iibm)
  2574. {
  2575. /* Requirements for changing the default keymaps:
  2576. *
  2577. * 1. Many of the keys are mapped to KEY_RESERVED for very
  2578. * good reasons. Do not change them unless you have deep
  2579. * knowledge on the IBM and Lenovo ThinkPad firmware for
  2580. * the various ThinkPad models. The driver behaves
  2581. * differently for KEY_RESERVED: such keys have their
  2582. * hot key mask *unset* in mask_recommended, and also
  2583. * in the initial hot key mask programmed into the
  2584. * firmware at driver load time, which means the firm-
  2585. * ware may react very differently if you change them to
  2586. * something else;
  2587. *
  2588. * 2. You must be subscribed to the linux-thinkpad and
  2589. * ibm-acpi-devel mailing lists, and you should read the
  2590. * list archives since 2007 if you want to change the
  2591. * keymaps. This requirement exists so that you will
  2592. * know the past history of problems with the thinkpad-
  2593. * acpi driver keymaps, and also that you will be
  2594. * listening to any bug reports;
  2595. *
  2596. * 3. Do not send thinkpad-acpi specific patches directly to
  2597. * for merging, *ever*. Send them to the linux-acpi
  2598. * mailinglist for comments. Merging is to be done only
  2599. * through acpi-test and the ACPI maintainer.
  2600. *
  2601. * If the above is too much to ask, don't change the keymap.
  2602. * Ask the thinkpad-acpi maintainer to do it, instead.
  2603. */
  2604. enum keymap_index {
  2605. TPACPI_KEYMAP_IBM_GENERIC = 0,
  2606. TPACPI_KEYMAP_LENOVO_GENERIC,
  2607. };
  2608. static const tpacpi_keymap_t tpacpi_keymaps[] __initconst = {
  2609. /* Generic keymap for IBM ThinkPads */
  2610. [TPACPI_KEYMAP_IBM_GENERIC] = {
  2611. /* Scan Codes 0x00 to 0x0B: ACPI HKEY FN+F1..F12 */
  2612. KEY_FN_F1, KEY_BATTERY, KEY_COFFEE, KEY_SLEEP,
  2613. KEY_WLAN, KEY_FN_F6, KEY_SWITCHVIDEOMODE, KEY_FN_F8,
  2614. KEY_FN_F9, KEY_FN_F10, KEY_FN_F11, KEY_SUSPEND,
  2615. /* Scan codes 0x0C to 0x1F: Other ACPI HKEY hot keys */
  2616. KEY_UNKNOWN, /* 0x0C: FN+BACKSPACE */
  2617. KEY_UNKNOWN, /* 0x0D: FN+INSERT */
  2618. KEY_UNKNOWN, /* 0x0E: FN+DELETE */
  2619. /* brightness: firmware always reacts to them */
  2620. KEY_RESERVED, /* 0x0F: FN+HOME (brightness up) */
  2621. KEY_RESERVED, /* 0x10: FN+END (brightness down) */
  2622. /* Thinklight: firmware always react to it */
  2623. KEY_RESERVED, /* 0x11: FN+PGUP (thinklight toggle) */
  2624. KEY_UNKNOWN, /* 0x12: FN+PGDOWN */
  2625. KEY_ZOOM, /* 0x13: FN+SPACE (zoom) */
  2626. /* Volume: firmware always react to it and reprograms
  2627. * the built-in *extra* mixer. Never map it to control
  2628. * another mixer by default. */
  2629. KEY_RESERVED, /* 0x14: VOLUME UP */
  2630. KEY_RESERVED, /* 0x15: VOLUME DOWN */
  2631. KEY_RESERVED, /* 0x16: MUTE */
  2632. KEY_VENDOR, /* 0x17: Thinkpad/AccessIBM/Lenovo */
  2633. /* (assignments unknown, please report if found) */
  2634. KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN,
  2635. KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN,
  2636. /* No assignments, only used for Adaptive keyboards. */
  2637. KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN,
  2638. KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN,
  2639. KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN,
  2640. KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN,
  2641. KEY_UNKNOWN, KEY_UNKNOWN, KEY_UNKNOWN,
  2642. },
  2643. /* Generic keymap for Lenovo ThinkPads */
  2644. [TPACPI_KEYMAP_LENOVO_GENERIC] = {
  2645. /* Scan Codes 0x00 to 0x0B: ACPI HKEY FN+F1..F12 */
  2646. KEY_FN_F1, KEY_COFFEE, KEY_BATTERY, KEY_SLEEP,
  2647. KEY_WLAN, KEY_CAMERA, KEY_SWITCHVIDEOMODE, KEY_FN_F8,
  2648. KEY_FN_F9, KEY_FN_F10, KEY_FN_F11, KEY_SUSPEND,
  2649. /* Scan codes 0x0C to 0x1F: Other ACPI HKEY hot keys */
  2650. KEY_UNKNOWN, /* 0x0C: FN+BACKSPACE */
  2651. KEY_UNKNOWN, /* 0x0D: FN+INSERT */
  2652. KEY_UNKNOWN, /* 0x0E: FN+DELETE */
  2653. /* These should be enabled --only-- when ACPI video
  2654. * is disabled (i.e. in "vendor" mode), and are handled
  2655. * in a special way by the init code */
  2656. KEY_BRIGHTNESSUP, /* 0x0F: FN+HOME (brightness up) */
  2657. KEY_BRIGHTNESSDOWN, /* 0x10: FN+END (brightness down) */
  2658. KEY_RESERVED, /* 0x11: FN+PGUP (thinklight toggle) */
  2659. KEY_UNKNOWN, /* 0x12: FN+PGDOWN */
  2660. KEY_ZOOM, /* 0x13: FN+SPACE (zoom) */
  2661. /* Volume: z60/z61, T60 (BIOS version?): firmware always
  2662. * react to it and reprograms the built-in *extra* mixer.
  2663. * Never map it to control another mixer by default.
  2664. *
  2665. * T60?, T61, R60?, R61: firmware and EC tries to send
  2666. * these over the regular keyboard, so these are no-ops,
  2667. * but there are still weird bugs re. MUTE, so do not
  2668. * change unless you get test reports from all Lenovo
  2669. * models. May cause the BIOS to interfere with the
  2670. * HDA mixer.
  2671. */
  2672. KEY_RESERVED, /* 0x14: VOLUME UP */
  2673. KEY_RESERVED, /* 0x15: VOLUME DOWN */
  2674. KEY_RESERVED, /* 0x16: MUTE */
  2675. KEY_VENDOR, /* 0x17: Thinkpad/AccessIBM/Lenovo */
  2676. /* (assignments unknown, please report if found) */
  2677. KEY_UNKNOWN, KEY_UNKNOWN,
  2678. /*
  2679. * The mic mute button only sends 0x1a. It does not
  2680. * automatically mute the mic or change the mute light.
  2681. */
  2682. KEY_MICMUTE, /* 0x1a: Mic mute (since ?400 or so) */
  2683. /* (assignments unknown, please report if found) */
  2684. KEY_UNKNOWN,
  2685. /* Extra keys in use since the X240 / T440 / T540 */
  2686. KEY_CONFIG, KEY_SEARCH, KEY_SCALE, KEY_FILE,
  2687. /*
  2688. * These are the adaptive keyboard keycodes for Carbon X1 2014.
  2689. * The first item in this list is the Mute button which is
  2690. * emitted with 0x103 through
  2691. * adaptive_keyboard_hotkey_notify_hotkey() when the sound
  2692. * symbol is held.
  2693. * We'll need to offset those by 0x20.
  2694. */
  2695. KEY_RESERVED, /* Mute held, 0x103 */
  2696. KEY_BRIGHTNESS_MIN, /* Backlight off */
  2697. KEY_RESERVED, /* Clipping tool */
  2698. KEY_RESERVED, /* Cloud */
  2699. KEY_RESERVED,
  2700. KEY_VOICECOMMAND, /* Voice */
  2701. KEY_RESERVED,
  2702. KEY_RESERVED, /* Gestures */
  2703. KEY_RESERVED,
  2704. KEY_RESERVED,
  2705. KEY_RESERVED,
  2706. KEY_CONFIG, /* Settings */
  2707. KEY_RESERVED, /* New tab */
  2708. KEY_REFRESH, /* Reload */
  2709. KEY_BACK, /* Back */
  2710. KEY_RESERVED, /* Microphone down */
  2711. KEY_RESERVED, /* Microphone up */
  2712. KEY_RESERVED, /* Microphone cancellation */
  2713. KEY_RESERVED, /* Camera mode */
  2714. KEY_RESERVED, /* Rotate display, 0x116 */
  2715. },
  2716. };
  2717. static const struct tpacpi_quirk tpacpi_keymap_qtable[] __initconst = {
  2718. /* Generic maps (fallback) */
  2719. {
  2720. .vendor = PCI_VENDOR_ID_IBM,
  2721. .bios = TPACPI_MATCH_ANY, .ec = TPACPI_MATCH_ANY,
  2722. .quirks = TPACPI_KEYMAP_IBM_GENERIC,
  2723. },
  2724. {
  2725. .vendor = PCI_VENDOR_ID_LENOVO,
  2726. .bios = TPACPI_MATCH_ANY, .ec = TPACPI_MATCH_ANY,
  2727. .quirks = TPACPI_KEYMAP_LENOVO_GENERIC,
  2728. },
  2729. };
  2730. #define TPACPI_HOTKEY_MAP_SIZE sizeof(tpacpi_keymap_t)
  2731. #define TPACPI_HOTKEY_MAP_TYPESIZE sizeof(tpacpi_keymap_entry_t)
  2732. int res, i;
  2733. int status;
  2734. int hkeyv;
  2735. bool radiosw_state = false;
  2736. bool tabletsw_state = false;
  2737. unsigned long quirks;
  2738. unsigned long keymap_id;
  2739. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_HKEY,
  2740. "initializing hotkey subdriver\n");
  2741. BUG_ON(!tpacpi_inputdev);
  2742. BUG_ON(tpacpi_inputdev->open != NULL ||
  2743. tpacpi_inputdev->close != NULL);
  2744. TPACPI_ACPIHANDLE_INIT(hkey);
  2745. mutex_init(&hotkey_mutex);
  2746. #ifdef CONFIG_THINKPAD_ACPI_HOTKEY_POLL
  2747. mutex_init(&hotkey_thread_data_mutex);
  2748. #endif
  2749. /* hotkey not supported on 570 */
  2750. tp_features.hotkey = hkey_handle != NULL;
  2751. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_HKEY,
  2752. "hotkeys are %s\n",
  2753. str_supported(tp_features.hotkey));
  2754. if (!tp_features.hotkey)
  2755. return 1;
  2756. /*
  2757. * Check if we have an adaptive keyboard, like on the
  2758. * Lenovo Carbon X1 2014 (2nd Gen).
  2759. */
  2760. if (acpi_evalf(hkey_handle, &hkeyv, "MHKV", "qd")) {
  2761. if ((hkeyv >> 8) == 2) {
  2762. tp_features.has_adaptive_kbd = true;
  2763. res = sysfs_create_group(&tpacpi_pdev->dev.kobj,
  2764. &adaptive_kbd_attr_group);
  2765. if (res)
  2766. goto err_exit;
  2767. }
  2768. }
  2769. quirks = tpacpi_check_quirks(tpacpi_hotkey_qtable,
  2770. ARRAY_SIZE(tpacpi_hotkey_qtable));
  2771. tpacpi_disable_brightness_delay();
  2772. /* MUST have enough space for all attributes to be added to
  2773. * hotkey_dev_attributes */
  2774. hotkey_dev_attributes = create_attr_set(
  2775. ARRAY_SIZE(hotkey_attributes) + 2,
  2776. NULL);
  2777. if (!hotkey_dev_attributes)
  2778. return -ENOMEM;
  2779. res = add_many_to_attr_set(hotkey_dev_attributes,
  2780. hotkey_attributes,
  2781. ARRAY_SIZE(hotkey_attributes));
  2782. if (res)
  2783. goto err_exit;
  2784. /* mask not supported on 600e/x, 770e, 770x, A21e, A2xm/p,
  2785. A30, R30, R31, T20-22, X20-21, X22-24. Detected by checking
  2786. for HKEY interface version 0x100 */
  2787. if (acpi_evalf(hkey_handle, &hkeyv, "MHKV", "qd")) {
  2788. if ((hkeyv >> 8) != 1) {
  2789. pr_err("unknown version of the HKEY interface: 0x%x\n",
  2790. hkeyv);
  2791. pr_err("please report this to %s\n", TPACPI_MAIL);
  2792. } else {
  2793. /*
  2794. * MHKV 0x100 in A31, R40, R40e,
  2795. * T4x, X31, and later
  2796. */
  2797. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_HKEY,
  2798. "firmware HKEY interface version: 0x%x\n",
  2799. hkeyv);
  2800. /* Paranoia check AND init hotkey_all_mask */
  2801. if (!acpi_evalf(hkey_handle, &hotkey_all_mask,
  2802. "MHKA", "qd")) {
  2803. pr_err("missing MHKA handler, "
  2804. "please report this to %s\n",
  2805. TPACPI_MAIL);
  2806. /* Fallback: pre-init for FN+F3,F4,F12 */
  2807. hotkey_all_mask = 0x080cU;
  2808. } else {
  2809. tp_features.hotkey_mask = 1;
  2810. }
  2811. }
  2812. }
  2813. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_HKEY,
  2814. "hotkey masks are %s\n",
  2815. str_supported(tp_features.hotkey_mask));
  2816. /* Init hotkey_all_mask if not initialized yet */
  2817. if (!tp_features.hotkey_mask && !hotkey_all_mask &&
  2818. (quirks & TPACPI_HK_Q_INIMASK))
  2819. hotkey_all_mask = 0x080cU; /* FN+F12, FN+F4, FN+F3 */
  2820. /* Init hotkey_acpi_mask and hotkey_orig_mask */
  2821. if (tp_features.hotkey_mask) {
  2822. /* hotkey_source_mask *must* be zero for
  2823. * the first hotkey_mask_get to return hotkey_orig_mask */
  2824. res = hotkey_mask_get();
  2825. if (res)
  2826. goto err_exit;
  2827. hotkey_orig_mask = hotkey_acpi_mask;
  2828. } else {
  2829. hotkey_orig_mask = hotkey_all_mask;
  2830. hotkey_acpi_mask = hotkey_all_mask;
  2831. }
  2832. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  2833. if (dbg_wlswemul) {
  2834. tp_features.hotkey_wlsw = 1;
  2835. radiosw_state = !!tpacpi_wlsw_emulstate;
  2836. pr_info("radio switch emulation enabled\n");
  2837. } else
  2838. #endif
  2839. /* Not all thinkpads have a hardware radio switch */
  2840. if (acpi_evalf(hkey_handle, &status, "WLSW", "qd")) {
  2841. tp_features.hotkey_wlsw = 1;
  2842. radiosw_state = !!status;
  2843. pr_info("radio switch found; radios are %s\n",
  2844. enabled(status, 0));
  2845. }
  2846. if (tp_features.hotkey_wlsw)
  2847. res = add_to_attr_set(hotkey_dev_attributes,
  2848. &dev_attr_hotkey_radio_sw.attr);
  2849. /* For X41t, X60t, X61t Tablets... */
  2850. if (!res && acpi_evalf(hkey_handle, &status, "MHKG", "qd")) {
  2851. tp_features.hotkey_tablet = 1;
  2852. tabletsw_state = !!(status & TP_HOTKEY_TABLET_MASK);
  2853. pr_info("possible tablet mode switch found; "
  2854. "ThinkPad in %s mode\n",
  2855. (tabletsw_state) ? "tablet" : "laptop");
  2856. res = add_to_attr_set(hotkey_dev_attributes,
  2857. &dev_attr_hotkey_tablet_mode.attr);
  2858. }
  2859. if (!res)
  2860. res = register_attr_set_with_sysfs(
  2861. hotkey_dev_attributes,
  2862. &tpacpi_pdev->dev.kobj);
  2863. if (res)
  2864. goto err_exit;
  2865. /* Set up key map */
  2866. hotkey_keycode_map = kmalloc(TPACPI_HOTKEY_MAP_SIZE,
  2867. GFP_KERNEL);
  2868. if (!hotkey_keycode_map) {
  2869. pr_err("failed to allocate memory for key map\n");
  2870. res = -ENOMEM;
  2871. goto err_exit;
  2872. }
  2873. keymap_id = tpacpi_check_quirks(tpacpi_keymap_qtable,
  2874. ARRAY_SIZE(tpacpi_keymap_qtable));
  2875. BUG_ON(keymap_id >= ARRAY_SIZE(tpacpi_keymaps));
  2876. dbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_HKEY,
  2877. "using keymap number %lu\n", keymap_id);
  2878. memcpy(hotkey_keycode_map, &tpacpi_keymaps[keymap_id],
  2879. TPACPI_HOTKEY_MAP_SIZE);
  2880. input_set_capability(tpacpi_inputdev, EV_MSC, MSC_SCAN);
  2881. tpacpi_inputdev->keycodesize = TPACPI_HOTKEY_MAP_TYPESIZE;
  2882. tpacpi_inputdev->keycodemax = TPACPI_HOTKEY_MAP_LEN;
  2883. tpacpi_inputdev->keycode = hotkey_keycode_map;
  2884. for (i = 0; i < TPACPI_HOTKEY_MAP_LEN; i++) {
  2885. if (hotkey_keycode_map[i] != KEY_RESERVED) {
  2886. input_set_capability(tpacpi_inputdev, EV_KEY,
  2887. hotkey_keycode_map[i]);
  2888. } else {
  2889. if (i < sizeof(hotkey_reserved_mask)*8)
  2890. hotkey_reserved_mask |= 1 << i;
  2891. }
  2892. }
  2893. if (tp_features.hotkey_wlsw) {
  2894. input_set_capability(tpacpi_inputdev, EV_SW, SW_RFKILL_ALL);
  2895. input_report_switch(tpacpi_inputdev,
  2896. SW_RFKILL_ALL, radiosw_state);
  2897. }
  2898. if (tp_features.hotkey_tablet) {
  2899. input_set_capability(tpacpi_inputdev, EV_SW, SW_TABLET_MODE);
  2900. input_report_switch(tpacpi_inputdev,
  2901. SW_TABLET_MODE, tabletsw_state);
  2902. }
  2903. /* Do not issue duplicate brightness change events to
  2904. * userspace. tpacpi_detect_brightness_capabilities() must have
  2905. * been called before this point */
  2906. if (acpi_video_get_backlight_type() != acpi_backlight_vendor) {
  2907. pr_info("This ThinkPad has standard ACPI backlight "
  2908. "brightness control, supported by the ACPI "
  2909. "video driver\n");
  2910. pr_notice("Disabling thinkpad-acpi brightness events "
  2911. "by default...\n");
  2912. /* Disable brightness up/down on Lenovo thinkpads when
  2913. * ACPI is handling them, otherwise it is plain impossible
  2914. * for userspace to do something even remotely sane */
  2915. hotkey_reserved_mask |=
  2916. (1 << TP_ACPI_HOTKEYSCAN_FNHOME)
  2917. | (1 << TP_ACPI_HOTKEYSCAN_FNEND);
  2918. hotkey_unmap(TP_ACPI_HOTKEYSCAN_FNHOME);
  2919. hotkey_unmap(TP_ACPI_HOTKEYSCAN_FNEND);
  2920. }
  2921. #ifdef CONFIG_THINKPAD_ACPI_HOTKEY_POLL
  2922. hotkey_source_mask = TPACPI_HKEY_NVRAM_GOOD_MASK
  2923. & ~hotkey_all_mask
  2924. & ~hotkey_reserved_mask;
  2925. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_HKEY,
  2926. "hotkey source mask 0x%08x, polling freq %u\n",
  2927. hotkey_source_mask, hotkey_poll_freq);
  2928. #endif
  2929. dbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_HKEY,
  2930. "enabling firmware HKEY event interface...\n");
  2931. res = hotkey_status_set(true);
  2932. if (res) {
  2933. hotkey_exit();
  2934. return res;
  2935. }
  2936. res = hotkey_mask_set(((hotkey_all_mask & ~hotkey_reserved_mask)
  2937. | hotkey_driver_mask)
  2938. & ~hotkey_source_mask);
  2939. if (res < 0 && res != -ENXIO) {
  2940. hotkey_exit();
  2941. return res;
  2942. }
  2943. hotkey_user_mask = (hotkey_acpi_mask | hotkey_source_mask)
  2944. & ~hotkey_reserved_mask;
  2945. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_HKEY,
  2946. "initial masks: user=0x%08x, fw=0x%08x, poll=0x%08x\n",
  2947. hotkey_user_mask, hotkey_acpi_mask, hotkey_source_mask);
  2948. tpacpi_inputdev->open = &hotkey_inputdev_open;
  2949. tpacpi_inputdev->close = &hotkey_inputdev_close;
  2950. hotkey_poll_setup_safe(true);
  2951. return 0;
  2952. err_exit:
  2953. delete_attr_set(hotkey_dev_attributes, &tpacpi_pdev->dev.kobj);
  2954. sysfs_remove_group(&tpacpi_pdev->dev.kobj,
  2955. &adaptive_kbd_attr_group);
  2956. hotkey_dev_attributes = NULL;
  2957. return (res < 0) ? res : 1;
  2958. }
  2959. /* Thinkpad X1 Carbon support 5 modes including Home mode, Web browser
  2960. * mode, Web conference mode, Function mode and Lay-flat mode.
  2961. * We support Home mode and Function mode currently.
  2962. *
  2963. * Will consider support rest of modes in future.
  2964. *
  2965. */
  2966. static const int adaptive_keyboard_modes[] = {
  2967. HOME_MODE,
  2968. /* WEB_BROWSER_MODE = 2,
  2969. WEB_CONFERENCE_MODE = 3, */
  2970. FUNCTION_MODE
  2971. };
  2972. #define DFR_CHANGE_ROW 0x101
  2973. #define DFR_SHOW_QUICKVIEW_ROW 0x102
  2974. #define FIRST_ADAPTIVE_KEY 0x103
  2975. #define ADAPTIVE_KEY_OFFSET 0x020
  2976. /* press Fn key a while second, it will switch to Function Mode. Then
  2977. * release Fn key, previous mode be restored.
  2978. */
  2979. static bool adaptive_keyboard_mode_is_saved;
  2980. static int adaptive_keyboard_prev_mode;
  2981. static int adaptive_keyboard_get_mode(void)
  2982. {
  2983. int mode = 0;
  2984. if (!acpi_evalf(hkey_handle, &mode, "GTRW", "dd", 0)) {
  2985. pr_err("Cannot read adaptive keyboard mode\n");
  2986. return -EIO;
  2987. }
  2988. return mode;
  2989. }
  2990. static int adaptive_keyboard_set_mode(int new_mode)
  2991. {
  2992. if (new_mode < 0 ||
  2993. new_mode > LAYFLAT_MODE)
  2994. return -EINVAL;
  2995. if (!acpi_evalf(hkey_handle, NULL, "STRW", "vd", new_mode)) {
  2996. pr_err("Cannot set adaptive keyboard mode\n");
  2997. return -EIO;
  2998. }
  2999. return 0;
  3000. }
  3001. static int adaptive_keyboard_get_next_mode(int mode)
  3002. {
  3003. size_t i;
  3004. size_t max_mode = ARRAY_SIZE(adaptive_keyboard_modes) - 1;
  3005. for (i = 0; i <= max_mode; i++) {
  3006. if (adaptive_keyboard_modes[i] == mode)
  3007. break;
  3008. }
  3009. if (i >= max_mode)
  3010. i = 0;
  3011. else
  3012. i++;
  3013. return adaptive_keyboard_modes[i];
  3014. }
  3015. static bool adaptive_keyboard_hotkey_notify_hotkey(unsigned int scancode)
  3016. {
  3017. int current_mode = 0;
  3018. int new_mode = 0;
  3019. int keycode;
  3020. switch (scancode) {
  3021. case DFR_CHANGE_ROW:
  3022. if (adaptive_keyboard_mode_is_saved) {
  3023. new_mode = adaptive_keyboard_prev_mode;
  3024. adaptive_keyboard_mode_is_saved = false;
  3025. } else {
  3026. current_mode = adaptive_keyboard_get_mode();
  3027. if (current_mode < 0)
  3028. return false;
  3029. new_mode = adaptive_keyboard_get_next_mode(
  3030. current_mode);
  3031. }
  3032. if (adaptive_keyboard_set_mode(new_mode) < 0)
  3033. return false;
  3034. return true;
  3035. case DFR_SHOW_QUICKVIEW_ROW:
  3036. current_mode = adaptive_keyboard_get_mode();
  3037. if (current_mode < 0)
  3038. return false;
  3039. adaptive_keyboard_prev_mode = current_mode;
  3040. adaptive_keyboard_mode_is_saved = true;
  3041. if (adaptive_keyboard_set_mode (FUNCTION_MODE) < 0)
  3042. return false;
  3043. return true;
  3044. default:
  3045. if (scancode < FIRST_ADAPTIVE_KEY ||
  3046. scancode >= FIRST_ADAPTIVE_KEY + TPACPI_HOTKEY_MAP_LEN -
  3047. ADAPTIVE_KEY_OFFSET) {
  3048. pr_info("Unhandled adaptive keyboard key: 0x%x\n",
  3049. scancode);
  3050. return false;
  3051. }
  3052. keycode = hotkey_keycode_map[scancode - FIRST_ADAPTIVE_KEY + ADAPTIVE_KEY_OFFSET];
  3053. if (keycode != KEY_RESERVED) {
  3054. mutex_lock(&tpacpi_inputdev_send_mutex);
  3055. input_report_key(tpacpi_inputdev, keycode, 1);
  3056. input_sync(tpacpi_inputdev);
  3057. input_report_key(tpacpi_inputdev, keycode, 0);
  3058. input_sync(tpacpi_inputdev);
  3059. mutex_unlock(&tpacpi_inputdev_send_mutex);
  3060. }
  3061. return true;
  3062. }
  3063. }
  3064. static bool hotkey_notify_hotkey(const u32 hkey,
  3065. bool *send_acpi_ev,
  3066. bool *ignore_acpi_ev)
  3067. {
  3068. /* 0x1000-0x1FFF: key presses */
  3069. unsigned int scancode = hkey & 0xfff;
  3070. *send_acpi_ev = true;
  3071. *ignore_acpi_ev = false;
  3072. /* HKEY event 0x1001 is scancode 0x00 */
  3073. if (scancode > 0 && scancode <= TPACPI_HOTKEY_MAP_LEN) {
  3074. scancode--;
  3075. if (!(hotkey_source_mask & (1 << scancode))) {
  3076. tpacpi_input_send_key_masked(scancode);
  3077. *send_acpi_ev = false;
  3078. } else {
  3079. *ignore_acpi_ev = true;
  3080. }
  3081. return true;
  3082. } else {
  3083. return adaptive_keyboard_hotkey_notify_hotkey(scancode);
  3084. }
  3085. return false;
  3086. }
  3087. static bool hotkey_notify_wakeup(const u32 hkey,
  3088. bool *send_acpi_ev,
  3089. bool *ignore_acpi_ev)
  3090. {
  3091. /* 0x2000-0x2FFF: Wakeup reason */
  3092. *send_acpi_ev = true;
  3093. *ignore_acpi_ev = false;
  3094. switch (hkey) {
  3095. case TP_HKEY_EV_WKUP_S3_UNDOCK: /* suspend, undock */
  3096. case TP_HKEY_EV_WKUP_S4_UNDOCK: /* hibernation, undock */
  3097. hotkey_wakeup_reason = TP_ACPI_WAKEUP_UNDOCK;
  3098. *ignore_acpi_ev = true;
  3099. break;
  3100. case TP_HKEY_EV_WKUP_S3_BAYEJ: /* suspend, bay eject */
  3101. case TP_HKEY_EV_WKUP_S4_BAYEJ: /* hibernation, bay eject */
  3102. hotkey_wakeup_reason = TP_ACPI_WAKEUP_BAYEJ;
  3103. *ignore_acpi_ev = true;
  3104. break;
  3105. case TP_HKEY_EV_WKUP_S3_BATLOW: /* Battery on critical low level/S3 */
  3106. case TP_HKEY_EV_WKUP_S4_BATLOW: /* Battery on critical low level/S4 */
  3107. pr_alert("EMERGENCY WAKEUP: battery almost empty\n");
  3108. /* how to auto-heal: */
  3109. /* 2313: woke up from S3, go to S4/S5 */
  3110. /* 2413: woke up from S4, go to S5 */
  3111. break;
  3112. default:
  3113. return false;
  3114. }
  3115. if (hotkey_wakeup_reason != TP_ACPI_WAKEUP_NONE) {
  3116. pr_info("woke up due to a hot-unplug request...\n");
  3117. hotkey_wakeup_reason_notify_change();
  3118. }
  3119. return true;
  3120. }
  3121. static bool hotkey_notify_dockevent(const u32 hkey,
  3122. bool *send_acpi_ev,
  3123. bool *ignore_acpi_ev)
  3124. {
  3125. /* 0x4000-0x4FFF: dock-related events */
  3126. *send_acpi_ev = true;
  3127. *ignore_acpi_ev = false;
  3128. switch (hkey) {
  3129. case TP_HKEY_EV_UNDOCK_ACK:
  3130. /* ACPI undock operation completed after wakeup */
  3131. hotkey_autosleep_ack = 1;
  3132. pr_info("undocked\n");
  3133. hotkey_wakeup_hotunplug_complete_notify_change();
  3134. return true;
  3135. case TP_HKEY_EV_HOTPLUG_DOCK: /* docked to port replicator */
  3136. pr_info("docked into hotplug port replicator\n");
  3137. return true;
  3138. case TP_HKEY_EV_HOTPLUG_UNDOCK: /* undocked from port replicator */
  3139. pr_info("undocked from hotplug port replicator\n");
  3140. return true;
  3141. default:
  3142. return false;
  3143. }
  3144. }
  3145. static bool hotkey_notify_usrevent(const u32 hkey,
  3146. bool *send_acpi_ev,
  3147. bool *ignore_acpi_ev)
  3148. {
  3149. /* 0x5000-0x5FFF: human interface helpers */
  3150. *send_acpi_ev = true;
  3151. *ignore_acpi_ev = false;
  3152. switch (hkey) {
  3153. case TP_HKEY_EV_PEN_INSERTED: /* X61t: tablet pen inserted into bay */
  3154. case TP_HKEY_EV_PEN_REMOVED: /* X61t: tablet pen removed from bay */
  3155. return true;
  3156. case TP_HKEY_EV_TABLET_TABLET: /* X41t-X61t: tablet mode */
  3157. case TP_HKEY_EV_TABLET_NOTEBOOK: /* X41t-X61t: normal mode */
  3158. tpacpi_input_send_tabletsw();
  3159. hotkey_tablet_mode_notify_change();
  3160. *send_acpi_ev = false;
  3161. return true;
  3162. case TP_HKEY_EV_LID_CLOSE: /* Lid closed */
  3163. case TP_HKEY_EV_LID_OPEN: /* Lid opened */
  3164. case TP_HKEY_EV_BRGHT_CHANGED: /* brightness changed */
  3165. /* do not propagate these events */
  3166. *ignore_acpi_ev = true;
  3167. return true;
  3168. default:
  3169. return false;
  3170. }
  3171. }
  3172. static void thermal_dump_all_sensors(void);
  3173. static bool hotkey_notify_6xxx(const u32 hkey,
  3174. bool *send_acpi_ev,
  3175. bool *ignore_acpi_ev)
  3176. {
  3177. bool known = true;
  3178. /* 0x6000-0x6FFF: thermal alarms/notices and keyboard events */
  3179. *send_acpi_ev = true;
  3180. *ignore_acpi_ev = false;
  3181. switch (hkey) {
  3182. case TP_HKEY_EV_THM_TABLE_CHANGED:
  3183. pr_info("EC reports that Thermal Table has changed\n");
  3184. /* recommended action: do nothing, we don't have
  3185. * Lenovo ATM information */
  3186. return true;
  3187. case TP_HKEY_EV_ALARM_BAT_HOT:
  3188. pr_crit("THERMAL ALARM: battery is too hot!\n");
  3189. /* recommended action: warn user through gui */
  3190. break;
  3191. case TP_HKEY_EV_ALARM_BAT_XHOT:
  3192. pr_alert("THERMAL EMERGENCY: battery is extremely hot!\n");
  3193. /* recommended action: immediate sleep/hibernate */
  3194. break;
  3195. case TP_HKEY_EV_ALARM_SENSOR_HOT:
  3196. pr_crit("THERMAL ALARM: "
  3197. "a sensor reports something is too hot!\n");
  3198. /* recommended action: warn user through gui, that */
  3199. /* some internal component is too hot */
  3200. break;
  3201. case TP_HKEY_EV_ALARM_SENSOR_XHOT:
  3202. pr_alert("THERMAL EMERGENCY: "
  3203. "a sensor reports something is extremely hot!\n");
  3204. /* recommended action: immediate sleep/hibernate */
  3205. break;
  3206. case TP_HKEY_EV_AC_CHANGED:
  3207. /* X120e, X121e, X220, X220i, X220t, X230, T420, T420s, W520:
  3208. * AC status changed; can be triggered by plugging or
  3209. * unplugging AC adapter, docking or undocking. */
  3210. /* fallthrough */
  3211. case TP_HKEY_EV_KEY_NUMLOCK:
  3212. case TP_HKEY_EV_KEY_FN:
  3213. case TP_HKEY_EV_KEY_FN_ESC:
  3214. /* key press events, we just ignore them as long as the EC
  3215. * is still reporting them in the normal keyboard stream */
  3216. *send_acpi_ev = false;
  3217. *ignore_acpi_ev = true;
  3218. return true;
  3219. default:
  3220. pr_warn("unknown possible thermal alarm or keyboard event received\n");
  3221. known = false;
  3222. }
  3223. thermal_dump_all_sensors();
  3224. return known;
  3225. }
  3226. static void hotkey_notify(struct ibm_struct *ibm, u32 event)
  3227. {
  3228. u32 hkey;
  3229. bool send_acpi_ev;
  3230. bool ignore_acpi_ev;
  3231. bool known_ev;
  3232. if (event != 0x80) {
  3233. pr_err("unknown HKEY notification event %d\n", event);
  3234. /* forward it to userspace, maybe it knows how to handle it */
  3235. acpi_bus_generate_netlink_event(
  3236. ibm->acpi->device->pnp.device_class,
  3237. dev_name(&ibm->acpi->device->dev),
  3238. event, 0);
  3239. return;
  3240. }
  3241. while (1) {
  3242. if (!acpi_evalf(hkey_handle, &hkey, "MHKP", "d")) {
  3243. pr_err("failed to retrieve HKEY event\n");
  3244. return;
  3245. }
  3246. if (hkey == 0) {
  3247. /* queue empty */
  3248. return;
  3249. }
  3250. send_acpi_ev = true;
  3251. ignore_acpi_ev = false;
  3252. switch (hkey >> 12) {
  3253. case 1:
  3254. /* 0x1000-0x1FFF: key presses */
  3255. known_ev = hotkey_notify_hotkey(hkey, &send_acpi_ev,
  3256. &ignore_acpi_ev);
  3257. break;
  3258. case 2:
  3259. /* 0x2000-0x2FFF: Wakeup reason */
  3260. known_ev = hotkey_notify_wakeup(hkey, &send_acpi_ev,
  3261. &ignore_acpi_ev);
  3262. break;
  3263. case 3:
  3264. /* 0x3000-0x3FFF: bay-related wakeups */
  3265. switch (hkey) {
  3266. case TP_HKEY_EV_BAYEJ_ACK:
  3267. hotkey_autosleep_ack = 1;
  3268. pr_info("bay ejected\n");
  3269. hotkey_wakeup_hotunplug_complete_notify_change();
  3270. known_ev = true;
  3271. break;
  3272. case TP_HKEY_EV_OPTDRV_EJ:
  3273. /* FIXME: kick libata if SATA link offline */
  3274. known_ev = true;
  3275. break;
  3276. default:
  3277. known_ev = false;
  3278. }
  3279. break;
  3280. case 4:
  3281. /* 0x4000-0x4FFF: dock-related events */
  3282. known_ev = hotkey_notify_dockevent(hkey, &send_acpi_ev,
  3283. &ignore_acpi_ev);
  3284. break;
  3285. case 5:
  3286. /* 0x5000-0x5FFF: human interface helpers */
  3287. known_ev = hotkey_notify_usrevent(hkey, &send_acpi_ev,
  3288. &ignore_acpi_ev);
  3289. break;
  3290. case 6:
  3291. /* 0x6000-0x6FFF: thermal alarms/notices and
  3292. * keyboard events */
  3293. known_ev = hotkey_notify_6xxx(hkey, &send_acpi_ev,
  3294. &ignore_acpi_ev);
  3295. break;
  3296. case 7:
  3297. /* 0x7000-0x7FFF: misc */
  3298. if (tp_features.hotkey_wlsw &&
  3299. hkey == TP_HKEY_EV_RFKILL_CHANGED) {
  3300. tpacpi_send_radiosw_update();
  3301. send_acpi_ev = 0;
  3302. known_ev = true;
  3303. break;
  3304. }
  3305. /* fallthrough to default */
  3306. default:
  3307. known_ev = false;
  3308. }
  3309. if (!known_ev) {
  3310. pr_notice("unhandled HKEY event 0x%04x\n", hkey);
  3311. pr_notice("please report the conditions when this "
  3312. "event happened to %s\n", TPACPI_MAIL);
  3313. }
  3314. /* netlink events */
  3315. if (!ignore_acpi_ev && send_acpi_ev) {
  3316. acpi_bus_generate_netlink_event(
  3317. ibm->acpi->device->pnp.device_class,
  3318. dev_name(&ibm->acpi->device->dev),
  3319. event, hkey);
  3320. }
  3321. }
  3322. }
  3323. static void hotkey_suspend(void)
  3324. {
  3325. /* Do these on suspend, we get the events on early resume! */
  3326. hotkey_wakeup_reason = TP_ACPI_WAKEUP_NONE;
  3327. hotkey_autosleep_ack = 0;
  3328. /* save previous mode of adaptive keyboard of X1 Carbon */
  3329. if (tp_features.has_adaptive_kbd) {
  3330. if (!acpi_evalf(hkey_handle, &adaptive_keyboard_prev_mode,
  3331. "GTRW", "dd", 0)) {
  3332. pr_err("Cannot read adaptive keyboard mode.\n");
  3333. }
  3334. }
  3335. }
  3336. static void hotkey_resume(void)
  3337. {
  3338. tpacpi_disable_brightness_delay();
  3339. if (hotkey_status_set(true) < 0 ||
  3340. hotkey_mask_set(hotkey_acpi_mask) < 0)
  3341. pr_err("error while attempting to reset the event "
  3342. "firmware interface\n");
  3343. tpacpi_send_radiosw_update();
  3344. hotkey_tablet_mode_notify_change();
  3345. hotkey_wakeup_reason_notify_change();
  3346. hotkey_wakeup_hotunplug_complete_notify_change();
  3347. hotkey_poll_setup_safe(false);
  3348. /* restore previous mode of adapive keyboard of X1 Carbon */
  3349. if (tp_features.has_adaptive_kbd) {
  3350. if (!acpi_evalf(hkey_handle, NULL, "STRW", "vd",
  3351. adaptive_keyboard_prev_mode)) {
  3352. pr_err("Cannot set adaptive keyboard mode.\n");
  3353. }
  3354. }
  3355. }
  3356. /* procfs -------------------------------------------------------------- */
  3357. static int hotkey_read(struct seq_file *m)
  3358. {
  3359. int res, status;
  3360. if (!tp_features.hotkey) {
  3361. seq_printf(m, "status:\t\tnot supported\n");
  3362. return 0;
  3363. }
  3364. if (mutex_lock_killable(&hotkey_mutex))
  3365. return -ERESTARTSYS;
  3366. res = hotkey_status_get(&status);
  3367. if (!res)
  3368. res = hotkey_mask_get();
  3369. mutex_unlock(&hotkey_mutex);
  3370. if (res)
  3371. return res;
  3372. seq_printf(m, "status:\t\t%s\n", enabled(status, 0));
  3373. if (hotkey_all_mask) {
  3374. seq_printf(m, "mask:\t\t0x%08x\n", hotkey_user_mask);
  3375. seq_printf(m, "commands:\tenable, disable, reset, <mask>\n");
  3376. } else {
  3377. seq_printf(m, "mask:\t\tnot supported\n");
  3378. seq_printf(m, "commands:\tenable, disable, reset\n");
  3379. }
  3380. return 0;
  3381. }
  3382. static void hotkey_enabledisable_warn(bool enable)
  3383. {
  3384. tpacpi_log_usertask("procfs hotkey enable/disable");
  3385. if (!WARN((tpacpi_lifecycle == TPACPI_LIFE_RUNNING || !enable),
  3386. pr_fmt("hotkey enable/disable functionality has been "
  3387. "removed from the driver. "
  3388. "Hotkeys are always enabled.\n")))
  3389. pr_err("Please remove the hotkey=enable module "
  3390. "parameter, it is deprecated. "
  3391. "Hotkeys are always enabled.\n");
  3392. }
  3393. static int hotkey_write(char *buf)
  3394. {
  3395. int res;
  3396. u32 mask;
  3397. char *cmd;
  3398. if (!tp_features.hotkey)
  3399. return -ENODEV;
  3400. if (mutex_lock_killable(&hotkey_mutex))
  3401. return -ERESTARTSYS;
  3402. mask = hotkey_user_mask;
  3403. res = 0;
  3404. while ((cmd = next_cmd(&buf))) {
  3405. if (strlencmp(cmd, "enable") == 0) {
  3406. hotkey_enabledisable_warn(1);
  3407. } else if (strlencmp(cmd, "disable") == 0) {
  3408. hotkey_enabledisable_warn(0);
  3409. res = -EPERM;
  3410. } else if (strlencmp(cmd, "reset") == 0) {
  3411. mask = (hotkey_all_mask | hotkey_source_mask)
  3412. & ~hotkey_reserved_mask;
  3413. } else if (sscanf(cmd, "0x%x", &mask) == 1) {
  3414. /* mask set */
  3415. } else if (sscanf(cmd, "%x", &mask) == 1) {
  3416. /* mask set */
  3417. } else {
  3418. res = -EINVAL;
  3419. goto errexit;
  3420. }
  3421. }
  3422. if (!res) {
  3423. tpacpi_disclose_usertask("procfs hotkey",
  3424. "set mask to 0x%08x\n", mask);
  3425. res = hotkey_user_mask_set(mask);
  3426. }
  3427. errexit:
  3428. mutex_unlock(&hotkey_mutex);
  3429. return res;
  3430. }
  3431. static const struct acpi_device_id ibm_htk_device_ids[] = {
  3432. {TPACPI_ACPI_IBM_HKEY_HID, 0},
  3433. {TPACPI_ACPI_LENOVO_HKEY_HID, 0},
  3434. {"", 0},
  3435. };
  3436. static struct tp_acpi_drv_struct ibm_hotkey_acpidriver = {
  3437. .hid = ibm_htk_device_ids,
  3438. .notify = hotkey_notify,
  3439. .handle = &hkey_handle,
  3440. .type = ACPI_DEVICE_NOTIFY,
  3441. };
  3442. static struct ibm_struct hotkey_driver_data = {
  3443. .name = "hotkey",
  3444. .read = hotkey_read,
  3445. .write = hotkey_write,
  3446. .exit = hotkey_exit,
  3447. .resume = hotkey_resume,
  3448. .suspend = hotkey_suspend,
  3449. .acpi = &ibm_hotkey_acpidriver,
  3450. };
  3451. /*************************************************************************
  3452. * Bluetooth subdriver
  3453. */
  3454. enum {
  3455. /* ACPI GBDC/SBDC bits */
  3456. TP_ACPI_BLUETOOTH_HWPRESENT = 0x01, /* Bluetooth hw available */
  3457. TP_ACPI_BLUETOOTH_RADIOSSW = 0x02, /* Bluetooth radio enabled */
  3458. TP_ACPI_BLUETOOTH_RESUMECTRL = 0x04, /* Bluetooth state at resume:
  3459. 0 = disable, 1 = enable */
  3460. };
  3461. enum {
  3462. /* ACPI \BLTH commands */
  3463. TP_ACPI_BLTH_GET_ULTRAPORT_ID = 0x00, /* Get Ultraport BT ID */
  3464. TP_ACPI_BLTH_GET_PWR_ON_RESUME = 0x01, /* Get power-on-resume state */
  3465. TP_ACPI_BLTH_PWR_ON_ON_RESUME = 0x02, /* Resume powered on */
  3466. TP_ACPI_BLTH_PWR_OFF_ON_RESUME = 0x03, /* Resume powered off */
  3467. TP_ACPI_BLTH_SAVE_STATE = 0x05, /* Save state for S4/S5 */
  3468. };
  3469. #define TPACPI_RFK_BLUETOOTH_SW_NAME "tpacpi_bluetooth_sw"
  3470. static int bluetooth_get_status(void)
  3471. {
  3472. int status;
  3473. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  3474. if (dbg_bluetoothemul)
  3475. return (tpacpi_bluetooth_emulstate) ?
  3476. TPACPI_RFK_RADIO_ON : TPACPI_RFK_RADIO_OFF;
  3477. #endif
  3478. if (!acpi_evalf(hkey_handle, &status, "GBDC", "d"))
  3479. return -EIO;
  3480. return ((status & TP_ACPI_BLUETOOTH_RADIOSSW) != 0) ?
  3481. TPACPI_RFK_RADIO_ON : TPACPI_RFK_RADIO_OFF;
  3482. }
  3483. static int bluetooth_set_status(enum tpacpi_rfkill_state state)
  3484. {
  3485. int status;
  3486. vdbg_printk(TPACPI_DBG_RFKILL,
  3487. "will attempt to %s bluetooth\n",
  3488. (state == TPACPI_RFK_RADIO_ON) ? "enable" : "disable");
  3489. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  3490. if (dbg_bluetoothemul) {
  3491. tpacpi_bluetooth_emulstate = (state == TPACPI_RFK_RADIO_ON);
  3492. return 0;
  3493. }
  3494. #endif
  3495. if (state == TPACPI_RFK_RADIO_ON)
  3496. status = TP_ACPI_BLUETOOTH_RADIOSSW
  3497. | TP_ACPI_BLUETOOTH_RESUMECTRL;
  3498. else
  3499. status = 0;
  3500. if (!acpi_evalf(hkey_handle, NULL, "SBDC", "vd", status))
  3501. return -EIO;
  3502. return 0;
  3503. }
  3504. /* sysfs bluetooth enable ---------------------------------------------- */
  3505. static ssize_t bluetooth_enable_show(struct device *dev,
  3506. struct device_attribute *attr,
  3507. char *buf)
  3508. {
  3509. return tpacpi_rfk_sysfs_enable_show(TPACPI_RFK_BLUETOOTH_SW_ID,
  3510. attr, buf);
  3511. }
  3512. static ssize_t bluetooth_enable_store(struct device *dev,
  3513. struct device_attribute *attr,
  3514. const char *buf, size_t count)
  3515. {
  3516. return tpacpi_rfk_sysfs_enable_store(TPACPI_RFK_BLUETOOTH_SW_ID,
  3517. attr, buf, count);
  3518. }
  3519. static DEVICE_ATTR_RW(bluetooth_enable);
  3520. /* --------------------------------------------------------------------- */
  3521. static struct attribute *bluetooth_attributes[] = {
  3522. &dev_attr_bluetooth_enable.attr,
  3523. NULL
  3524. };
  3525. static const struct attribute_group bluetooth_attr_group = {
  3526. .attrs = bluetooth_attributes,
  3527. };
  3528. static const struct tpacpi_rfk_ops bluetooth_tprfk_ops = {
  3529. .get_status = bluetooth_get_status,
  3530. .set_status = bluetooth_set_status,
  3531. };
  3532. static void bluetooth_shutdown(void)
  3533. {
  3534. /* Order firmware to save current state to NVRAM */
  3535. if (!acpi_evalf(NULL, NULL, "\\BLTH", "vd",
  3536. TP_ACPI_BLTH_SAVE_STATE))
  3537. pr_notice("failed to save bluetooth state to NVRAM\n");
  3538. else
  3539. vdbg_printk(TPACPI_DBG_RFKILL,
  3540. "bluetooth state saved to NVRAM\n");
  3541. }
  3542. static void bluetooth_exit(void)
  3543. {
  3544. sysfs_remove_group(&tpacpi_pdev->dev.kobj,
  3545. &bluetooth_attr_group);
  3546. tpacpi_destroy_rfkill(TPACPI_RFK_BLUETOOTH_SW_ID);
  3547. bluetooth_shutdown();
  3548. }
  3549. static int __init bluetooth_init(struct ibm_init_struct *iibm)
  3550. {
  3551. int res;
  3552. int status = 0;
  3553. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_RFKILL,
  3554. "initializing bluetooth subdriver\n");
  3555. TPACPI_ACPIHANDLE_INIT(hkey);
  3556. /* bluetooth not supported on 570, 600e/x, 770e, 770x, A21e, A2xm/p,
  3557. G4x, R30, R31, R40e, R50e, T20-22, X20-21 */
  3558. tp_features.bluetooth = hkey_handle &&
  3559. acpi_evalf(hkey_handle, &status, "GBDC", "qd");
  3560. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_RFKILL,
  3561. "bluetooth is %s, status 0x%02x\n",
  3562. str_supported(tp_features.bluetooth),
  3563. status);
  3564. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  3565. if (dbg_bluetoothemul) {
  3566. tp_features.bluetooth = 1;
  3567. pr_info("bluetooth switch emulation enabled\n");
  3568. } else
  3569. #endif
  3570. if (tp_features.bluetooth &&
  3571. !(status & TP_ACPI_BLUETOOTH_HWPRESENT)) {
  3572. /* no bluetooth hardware present in system */
  3573. tp_features.bluetooth = 0;
  3574. dbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_RFKILL,
  3575. "bluetooth hardware not installed\n");
  3576. }
  3577. if (!tp_features.bluetooth)
  3578. return 1;
  3579. res = tpacpi_new_rfkill(TPACPI_RFK_BLUETOOTH_SW_ID,
  3580. &bluetooth_tprfk_ops,
  3581. RFKILL_TYPE_BLUETOOTH,
  3582. TPACPI_RFK_BLUETOOTH_SW_NAME,
  3583. true);
  3584. if (res)
  3585. return res;
  3586. res = sysfs_create_group(&tpacpi_pdev->dev.kobj,
  3587. &bluetooth_attr_group);
  3588. if (res) {
  3589. tpacpi_destroy_rfkill(TPACPI_RFK_BLUETOOTH_SW_ID);
  3590. return res;
  3591. }
  3592. return 0;
  3593. }
  3594. /* procfs -------------------------------------------------------------- */
  3595. static int bluetooth_read(struct seq_file *m)
  3596. {
  3597. return tpacpi_rfk_procfs_read(TPACPI_RFK_BLUETOOTH_SW_ID, m);
  3598. }
  3599. static int bluetooth_write(char *buf)
  3600. {
  3601. return tpacpi_rfk_procfs_write(TPACPI_RFK_BLUETOOTH_SW_ID, buf);
  3602. }
  3603. static struct ibm_struct bluetooth_driver_data = {
  3604. .name = "bluetooth",
  3605. .read = bluetooth_read,
  3606. .write = bluetooth_write,
  3607. .exit = bluetooth_exit,
  3608. .shutdown = bluetooth_shutdown,
  3609. };
  3610. /*************************************************************************
  3611. * Wan subdriver
  3612. */
  3613. enum {
  3614. /* ACPI GWAN/SWAN bits */
  3615. TP_ACPI_WANCARD_HWPRESENT = 0x01, /* Wan hw available */
  3616. TP_ACPI_WANCARD_RADIOSSW = 0x02, /* Wan radio enabled */
  3617. TP_ACPI_WANCARD_RESUMECTRL = 0x04, /* Wan state at resume:
  3618. 0 = disable, 1 = enable */
  3619. };
  3620. #define TPACPI_RFK_WWAN_SW_NAME "tpacpi_wwan_sw"
  3621. static int wan_get_status(void)
  3622. {
  3623. int status;
  3624. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  3625. if (dbg_wwanemul)
  3626. return (tpacpi_wwan_emulstate) ?
  3627. TPACPI_RFK_RADIO_ON : TPACPI_RFK_RADIO_OFF;
  3628. #endif
  3629. if (!acpi_evalf(hkey_handle, &status, "GWAN", "d"))
  3630. return -EIO;
  3631. return ((status & TP_ACPI_WANCARD_RADIOSSW) != 0) ?
  3632. TPACPI_RFK_RADIO_ON : TPACPI_RFK_RADIO_OFF;
  3633. }
  3634. static int wan_set_status(enum tpacpi_rfkill_state state)
  3635. {
  3636. int status;
  3637. vdbg_printk(TPACPI_DBG_RFKILL,
  3638. "will attempt to %s wwan\n",
  3639. (state == TPACPI_RFK_RADIO_ON) ? "enable" : "disable");
  3640. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  3641. if (dbg_wwanemul) {
  3642. tpacpi_wwan_emulstate = (state == TPACPI_RFK_RADIO_ON);
  3643. return 0;
  3644. }
  3645. #endif
  3646. if (state == TPACPI_RFK_RADIO_ON)
  3647. status = TP_ACPI_WANCARD_RADIOSSW
  3648. | TP_ACPI_WANCARD_RESUMECTRL;
  3649. else
  3650. status = 0;
  3651. if (!acpi_evalf(hkey_handle, NULL, "SWAN", "vd", status))
  3652. return -EIO;
  3653. return 0;
  3654. }
  3655. /* sysfs wan enable ---------------------------------------------------- */
  3656. static ssize_t wan_enable_show(struct device *dev,
  3657. struct device_attribute *attr,
  3658. char *buf)
  3659. {
  3660. return tpacpi_rfk_sysfs_enable_show(TPACPI_RFK_WWAN_SW_ID,
  3661. attr, buf);
  3662. }
  3663. static ssize_t wan_enable_store(struct device *dev,
  3664. struct device_attribute *attr,
  3665. const char *buf, size_t count)
  3666. {
  3667. return tpacpi_rfk_sysfs_enable_store(TPACPI_RFK_WWAN_SW_ID,
  3668. attr, buf, count);
  3669. }
  3670. static DEVICE_ATTR(wwan_enable, S_IWUSR | S_IRUGO,
  3671. wan_enable_show, wan_enable_store);
  3672. /* --------------------------------------------------------------------- */
  3673. static struct attribute *wan_attributes[] = {
  3674. &dev_attr_wwan_enable.attr,
  3675. NULL
  3676. };
  3677. static const struct attribute_group wan_attr_group = {
  3678. .attrs = wan_attributes,
  3679. };
  3680. static const struct tpacpi_rfk_ops wan_tprfk_ops = {
  3681. .get_status = wan_get_status,
  3682. .set_status = wan_set_status,
  3683. };
  3684. static void wan_shutdown(void)
  3685. {
  3686. /* Order firmware to save current state to NVRAM */
  3687. if (!acpi_evalf(NULL, NULL, "\\WGSV", "vd",
  3688. TP_ACPI_WGSV_SAVE_STATE))
  3689. pr_notice("failed to save WWAN state to NVRAM\n");
  3690. else
  3691. vdbg_printk(TPACPI_DBG_RFKILL,
  3692. "WWAN state saved to NVRAM\n");
  3693. }
  3694. static void wan_exit(void)
  3695. {
  3696. sysfs_remove_group(&tpacpi_pdev->dev.kobj,
  3697. &wan_attr_group);
  3698. tpacpi_destroy_rfkill(TPACPI_RFK_WWAN_SW_ID);
  3699. wan_shutdown();
  3700. }
  3701. static int __init wan_init(struct ibm_init_struct *iibm)
  3702. {
  3703. int res;
  3704. int status = 0;
  3705. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_RFKILL,
  3706. "initializing wan subdriver\n");
  3707. TPACPI_ACPIHANDLE_INIT(hkey);
  3708. tp_features.wan = hkey_handle &&
  3709. acpi_evalf(hkey_handle, &status, "GWAN", "qd");
  3710. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_RFKILL,
  3711. "wan is %s, status 0x%02x\n",
  3712. str_supported(tp_features.wan),
  3713. status);
  3714. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  3715. if (dbg_wwanemul) {
  3716. tp_features.wan = 1;
  3717. pr_info("wwan switch emulation enabled\n");
  3718. } else
  3719. #endif
  3720. if (tp_features.wan &&
  3721. !(status & TP_ACPI_WANCARD_HWPRESENT)) {
  3722. /* no wan hardware present in system */
  3723. tp_features.wan = 0;
  3724. dbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_RFKILL,
  3725. "wan hardware not installed\n");
  3726. }
  3727. if (!tp_features.wan)
  3728. return 1;
  3729. res = tpacpi_new_rfkill(TPACPI_RFK_WWAN_SW_ID,
  3730. &wan_tprfk_ops,
  3731. RFKILL_TYPE_WWAN,
  3732. TPACPI_RFK_WWAN_SW_NAME,
  3733. true);
  3734. if (res)
  3735. return res;
  3736. res = sysfs_create_group(&tpacpi_pdev->dev.kobj,
  3737. &wan_attr_group);
  3738. if (res) {
  3739. tpacpi_destroy_rfkill(TPACPI_RFK_WWAN_SW_ID);
  3740. return res;
  3741. }
  3742. return 0;
  3743. }
  3744. /* procfs -------------------------------------------------------------- */
  3745. static int wan_read(struct seq_file *m)
  3746. {
  3747. return tpacpi_rfk_procfs_read(TPACPI_RFK_WWAN_SW_ID, m);
  3748. }
  3749. static int wan_write(char *buf)
  3750. {
  3751. return tpacpi_rfk_procfs_write(TPACPI_RFK_WWAN_SW_ID, buf);
  3752. }
  3753. static struct ibm_struct wan_driver_data = {
  3754. .name = "wan",
  3755. .read = wan_read,
  3756. .write = wan_write,
  3757. .exit = wan_exit,
  3758. .shutdown = wan_shutdown,
  3759. };
  3760. /*************************************************************************
  3761. * UWB subdriver
  3762. */
  3763. enum {
  3764. /* ACPI GUWB/SUWB bits */
  3765. TP_ACPI_UWB_HWPRESENT = 0x01, /* UWB hw available */
  3766. TP_ACPI_UWB_RADIOSSW = 0x02, /* UWB radio enabled */
  3767. };
  3768. #define TPACPI_RFK_UWB_SW_NAME "tpacpi_uwb_sw"
  3769. static int uwb_get_status(void)
  3770. {
  3771. int status;
  3772. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  3773. if (dbg_uwbemul)
  3774. return (tpacpi_uwb_emulstate) ?
  3775. TPACPI_RFK_RADIO_ON : TPACPI_RFK_RADIO_OFF;
  3776. #endif
  3777. if (!acpi_evalf(hkey_handle, &status, "GUWB", "d"))
  3778. return -EIO;
  3779. return ((status & TP_ACPI_UWB_RADIOSSW) != 0) ?
  3780. TPACPI_RFK_RADIO_ON : TPACPI_RFK_RADIO_OFF;
  3781. }
  3782. static int uwb_set_status(enum tpacpi_rfkill_state state)
  3783. {
  3784. int status;
  3785. vdbg_printk(TPACPI_DBG_RFKILL,
  3786. "will attempt to %s UWB\n",
  3787. (state == TPACPI_RFK_RADIO_ON) ? "enable" : "disable");
  3788. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  3789. if (dbg_uwbemul) {
  3790. tpacpi_uwb_emulstate = (state == TPACPI_RFK_RADIO_ON);
  3791. return 0;
  3792. }
  3793. #endif
  3794. if (state == TPACPI_RFK_RADIO_ON)
  3795. status = TP_ACPI_UWB_RADIOSSW;
  3796. else
  3797. status = 0;
  3798. if (!acpi_evalf(hkey_handle, NULL, "SUWB", "vd", status))
  3799. return -EIO;
  3800. return 0;
  3801. }
  3802. /* --------------------------------------------------------------------- */
  3803. static const struct tpacpi_rfk_ops uwb_tprfk_ops = {
  3804. .get_status = uwb_get_status,
  3805. .set_status = uwb_set_status,
  3806. };
  3807. static void uwb_exit(void)
  3808. {
  3809. tpacpi_destroy_rfkill(TPACPI_RFK_UWB_SW_ID);
  3810. }
  3811. static int __init uwb_init(struct ibm_init_struct *iibm)
  3812. {
  3813. int res;
  3814. int status = 0;
  3815. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_RFKILL,
  3816. "initializing uwb subdriver\n");
  3817. TPACPI_ACPIHANDLE_INIT(hkey);
  3818. tp_features.uwb = hkey_handle &&
  3819. acpi_evalf(hkey_handle, &status, "GUWB", "qd");
  3820. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_RFKILL,
  3821. "uwb is %s, status 0x%02x\n",
  3822. str_supported(tp_features.uwb),
  3823. status);
  3824. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  3825. if (dbg_uwbemul) {
  3826. tp_features.uwb = 1;
  3827. pr_info("uwb switch emulation enabled\n");
  3828. } else
  3829. #endif
  3830. if (tp_features.uwb &&
  3831. !(status & TP_ACPI_UWB_HWPRESENT)) {
  3832. /* no uwb hardware present in system */
  3833. tp_features.uwb = 0;
  3834. dbg_printk(TPACPI_DBG_INIT,
  3835. "uwb hardware not installed\n");
  3836. }
  3837. if (!tp_features.uwb)
  3838. return 1;
  3839. res = tpacpi_new_rfkill(TPACPI_RFK_UWB_SW_ID,
  3840. &uwb_tprfk_ops,
  3841. RFKILL_TYPE_UWB,
  3842. TPACPI_RFK_UWB_SW_NAME,
  3843. false);
  3844. return res;
  3845. }
  3846. static struct ibm_struct uwb_driver_data = {
  3847. .name = "uwb",
  3848. .exit = uwb_exit,
  3849. .flags.experimental = 1,
  3850. };
  3851. /*************************************************************************
  3852. * Video subdriver
  3853. */
  3854. #ifdef CONFIG_THINKPAD_ACPI_VIDEO
  3855. enum video_access_mode {
  3856. TPACPI_VIDEO_NONE = 0,
  3857. TPACPI_VIDEO_570, /* 570 */
  3858. TPACPI_VIDEO_770, /* 600e/x, 770e, 770x */
  3859. TPACPI_VIDEO_NEW, /* all others */
  3860. };
  3861. enum { /* video status flags, based on VIDEO_570 */
  3862. TP_ACPI_VIDEO_S_LCD = 0x01, /* LCD output enabled */
  3863. TP_ACPI_VIDEO_S_CRT = 0x02, /* CRT output enabled */
  3864. TP_ACPI_VIDEO_S_DVI = 0x08, /* DVI output enabled */
  3865. };
  3866. enum { /* TPACPI_VIDEO_570 constants */
  3867. TP_ACPI_VIDEO_570_PHSCMD = 0x87, /* unknown magic constant :( */
  3868. TP_ACPI_VIDEO_570_PHSMASK = 0x03, /* PHS bits that map to
  3869. * video_status_flags */
  3870. TP_ACPI_VIDEO_570_PHS2CMD = 0x8b, /* unknown magic constant :( */
  3871. TP_ACPI_VIDEO_570_PHS2SET = 0x80, /* unknown magic constant :( */
  3872. };
  3873. static enum video_access_mode video_supported;
  3874. static int video_orig_autosw;
  3875. static int video_autosw_get(void);
  3876. static int video_autosw_set(int enable);
  3877. TPACPI_HANDLE(vid, root,
  3878. "\\_SB.PCI.AGP.VGA", /* 570 */
  3879. "\\_SB.PCI0.AGP0.VID0", /* 600e/x, 770x */
  3880. "\\_SB.PCI0.VID0", /* 770e */
  3881. "\\_SB.PCI0.VID", /* A21e, G4x, R50e, X30, X40 */
  3882. "\\_SB.PCI0.AGP.VGA", /* X100e and a few others */
  3883. "\\_SB.PCI0.AGP.VID", /* all others */
  3884. ); /* R30, R31 */
  3885. TPACPI_HANDLE(vid2, root, "\\_SB.PCI0.AGPB.VID"); /* G41 */
  3886. static int __init video_init(struct ibm_init_struct *iibm)
  3887. {
  3888. int ivga;
  3889. vdbg_printk(TPACPI_DBG_INIT, "initializing video subdriver\n");
  3890. TPACPI_ACPIHANDLE_INIT(vid);
  3891. if (tpacpi_is_ibm())
  3892. TPACPI_ACPIHANDLE_INIT(vid2);
  3893. if (vid2_handle && acpi_evalf(NULL, &ivga, "\\IVGA", "d") && ivga)
  3894. /* G41, assume IVGA doesn't change */
  3895. vid_handle = vid2_handle;
  3896. if (!vid_handle)
  3897. /* video switching not supported on R30, R31 */
  3898. video_supported = TPACPI_VIDEO_NONE;
  3899. else if (tpacpi_is_ibm() &&
  3900. acpi_evalf(vid_handle, &video_orig_autosw, "SWIT", "qd"))
  3901. /* 570 */
  3902. video_supported = TPACPI_VIDEO_570;
  3903. else if (tpacpi_is_ibm() &&
  3904. acpi_evalf(vid_handle, &video_orig_autosw, "^VADL", "qd"))
  3905. /* 600e/x, 770e, 770x */
  3906. video_supported = TPACPI_VIDEO_770;
  3907. else
  3908. /* all others */
  3909. video_supported = TPACPI_VIDEO_NEW;
  3910. vdbg_printk(TPACPI_DBG_INIT, "video is %s, mode %d\n",
  3911. str_supported(video_supported != TPACPI_VIDEO_NONE),
  3912. video_supported);
  3913. return (video_supported != TPACPI_VIDEO_NONE) ? 0 : 1;
  3914. }
  3915. static void video_exit(void)
  3916. {
  3917. dbg_printk(TPACPI_DBG_EXIT,
  3918. "restoring original video autoswitch mode\n");
  3919. if (video_autosw_set(video_orig_autosw))
  3920. pr_err("error while trying to restore original "
  3921. "video autoswitch mode\n");
  3922. }
  3923. static int video_outputsw_get(void)
  3924. {
  3925. int status = 0;
  3926. int i;
  3927. switch (video_supported) {
  3928. case TPACPI_VIDEO_570:
  3929. if (!acpi_evalf(NULL, &i, "\\_SB.PHS", "dd",
  3930. TP_ACPI_VIDEO_570_PHSCMD))
  3931. return -EIO;
  3932. status = i & TP_ACPI_VIDEO_570_PHSMASK;
  3933. break;
  3934. case TPACPI_VIDEO_770:
  3935. if (!acpi_evalf(NULL, &i, "\\VCDL", "d"))
  3936. return -EIO;
  3937. if (i)
  3938. status |= TP_ACPI_VIDEO_S_LCD;
  3939. if (!acpi_evalf(NULL, &i, "\\VCDC", "d"))
  3940. return -EIO;
  3941. if (i)
  3942. status |= TP_ACPI_VIDEO_S_CRT;
  3943. break;
  3944. case TPACPI_VIDEO_NEW:
  3945. if (!acpi_evalf(NULL, NULL, "\\VUPS", "vd", 1) ||
  3946. !acpi_evalf(NULL, &i, "\\VCDC", "d"))
  3947. return -EIO;
  3948. if (i)
  3949. status |= TP_ACPI_VIDEO_S_CRT;
  3950. if (!acpi_evalf(NULL, NULL, "\\VUPS", "vd", 0) ||
  3951. !acpi_evalf(NULL, &i, "\\VCDL", "d"))
  3952. return -EIO;
  3953. if (i)
  3954. status |= TP_ACPI_VIDEO_S_LCD;
  3955. if (!acpi_evalf(NULL, &i, "\\VCDD", "d"))
  3956. return -EIO;
  3957. if (i)
  3958. status |= TP_ACPI_VIDEO_S_DVI;
  3959. break;
  3960. default:
  3961. return -ENOSYS;
  3962. }
  3963. return status;
  3964. }
  3965. static int video_outputsw_set(int status)
  3966. {
  3967. int autosw;
  3968. int res = 0;
  3969. switch (video_supported) {
  3970. case TPACPI_VIDEO_570:
  3971. res = acpi_evalf(NULL, NULL,
  3972. "\\_SB.PHS2", "vdd",
  3973. TP_ACPI_VIDEO_570_PHS2CMD,
  3974. status | TP_ACPI_VIDEO_570_PHS2SET);
  3975. break;
  3976. case TPACPI_VIDEO_770:
  3977. autosw = video_autosw_get();
  3978. if (autosw < 0)
  3979. return autosw;
  3980. res = video_autosw_set(1);
  3981. if (res)
  3982. return res;
  3983. res = acpi_evalf(vid_handle, NULL,
  3984. "ASWT", "vdd", status * 0x100, 0);
  3985. if (!autosw && video_autosw_set(autosw)) {
  3986. pr_err("video auto-switch left enabled due to error\n");
  3987. return -EIO;
  3988. }
  3989. break;
  3990. case TPACPI_VIDEO_NEW:
  3991. res = acpi_evalf(NULL, NULL, "\\VUPS", "vd", 0x80) &&
  3992. acpi_evalf(NULL, NULL, "\\VSDS", "vdd", status, 1);
  3993. break;
  3994. default:
  3995. return -ENOSYS;
  3996. }
  3997. return (res) ? 0 : -EIO;
  3998. }
  3999. static int video_autosw_get(void)
  4000. {
  4001. int autosw = 0;
  4002. switch (video_supported) {
  4003. case TPACPI_VIDEO_570:
  4004. if (!acpi_evalf(vid_handle, &autosw, "SWIT", "d"))
  4005. return -EIO;
  4006. break;
  4007. case TPACPI_VIDEO_770:
  4008. case TPACPI_VIDEO_NEW:
  4009. if (!acpi_evalf(vid_handle, &autosw, "^VDEE", "d"))
  4010. return -EIO;
  4011. break;
  4012. default:
  4013. return -ENOSYS;
  4014. }
  4015. return autosw & 1;
  4016. }
  4017. static int video_autosw_set(int enable)
  4018. {
  4019. if (!acpi_evalf(vid_handle, NULL, "_DOS", "vd", (enable) ? 1 : 0))
  4020. return -EIO;
  4021. return 0;
  4022. }
  4023. static int video_outputsw_cycle(void)
  4024. {
  4025. int autosw = video_autosw_get();
  4026. int res;
  4027. if (autosw < 0)
  4028. return autosw;
  4029. switch (video_supported) {
  4030. case TPACPI_VIDEO_570:
  4031. res = video_autosw_set(1);
  4032. if (res)
  4033. return res;
  4034. res = acpi_evalf(ec_handle, NULL, "_Q16", "v");
  4035. break;
  4036. case TPACPI_VIDEO_770:
  4037. case TPACPI_VIDEO_NEW:
  4038. res = video_autosw_set(1);
  4039. if (res)
  4040. return res;
  4041. res = acpi_evalf(vid_handle, NULL, "VSWT", "v");
  4042. break;
  4043. default:
  4044. return -ENOSYS;
  4045. }
  4046. if (!autosw && video_autosw_set(autosw)) {
  4047. pr_err("video auto-switch left enabled due to error\n");
  4048. return -EIO;
  4049. }
  4050. return (res) ? 0 : -EIO;
  4051. }
  4052. static int video_expand_toggle(void)
  4053. {
  4054. switch (video_supported) {
  4055. case TPACPI_VIDEO_570:
  4056. return acpi_evalf(ec_handle, NULL, "_Q17", "v") ?
  4057. 0 : -EIO;
  4058. case TPACPI_VIDEO_770:
  4059. return acpi_evalf(vid_handle, NULL, "VEXP", "v") ?
  4060. 0 : -EIO;
  4061. case TPACPI_VIDEO_NEW:
  4062. return acpi_evalf(NULL, NULL, "\\VEXP", "v") ?
  4063. 0 : -EIO;
  4064. default:
  4065. return -ENOSYS;
  4066. }
  4067. /* not reached */
  4068. }
  4069. static int video_read(struct seq_file *m)
  4070. {
  4071. int status, autosw;
  4072. if (video_supported == TPACPI_VIDEO_NONE) {
  4073. seq_printf(m, "status:\t\tnot supported\n");
  4074. return 0;
  4075. }
  4076. /* Even reads can crash X.org, so... */
  4077. if (!capable(CAP_SYS_ADMIN))
  4078. return -EPERM;
  4079. status = video_outputsw_get();
  4080. if (status < 0)
  4081. return status;
  4082. autosw = video_autosw_get();
  4083. if (autosw < 0)
  4084. return autosw;
  4085. seq_printf(m, "status:\t\tsupported\n");
  4086. seq_printf(m, "lcd:\t\t%s\n", enabled(status, 0));
  4087. seq_printf(m, "crt:\t\t%s\n", enabled(status, 1));
  4088. if (video_supported == TPACPI_VIDEO_NEW)
  4089. seq_printf(m, "dvi:\t\t%s\n", enabled(status, 3));
  4090. seq_printf(m, "auto:\t\t%s\n", enabled(autosw, 0));
  4091. seq_printf(m, "commands:\tlcd_enable, lcd_disable\n");
  4092. seq_printf(m, "commands:\tcrt_enable, crt_disable\n");
  4093. if (video_supported == TPACPI_VIDEO_NEW)
  4094. seq_printf(m, "commands:\tdvi_enable, dvi_disable\n");
  4095. seq_printf(m, "commands:\tauto_enable, auto_disable\n");
  4096. seq_printf(m, "commands:\tvideo_switch, expand_toggle\n");
  4097. return 0;
  4098. }
  4099. static int video_write(char *buf)
  4100. {
  4101. char *cmd;
  4102. int enable, disable, status;
  4103. int res;
  4104. if (video_supported == TPACPI_VIDEO_NONE)
  4105. return -ENODEV;
  4106. /* Even reads can crash X.org, let alone writes... */
  4107. if (!capable(CAP_SYS_ADMIN))
  4108. return -EPERM;
  4109. enable = 0;
  4110. disable = 0;
  4111. while ((cmd = next_cmd(&buf))) {
  4112. if (strlencmp(cmd, "lcd_enable") == 0) {
  4113. enable |= TP_ACPI_VIDEO_S_LCD;
  4114. } else if (strlencmp(cmd, "lcd_disable") == 0) {
  4115. disable |= TP_ACPI_VIDEO_S_LCD;
  4116. } else if (strlencmp(cmd, "crt_enable") == 0) {
  4117. enable |= TP_ACPI_VIDEO_S_CRT;
  4118. } else if (strlencmp(cmd, "crt_disable") == 0) {
  4119. disable |= TP_ACPI_VIDEO_S_CRT;
  4120. } else if (video_supported == TPACPI_VIDEO_NEW &&
  4121. strlencmp(cmd, "dvi_enable") == 0) {
  4122. enable |= TP_ACPI_VIDEO_S_DVI;
  4123. } else if (video_supported == TPACPI_VIDEO_NEW &&
  4124. strlencmp(cmd, "dvi_disable") == 0) {
  4125. disable |= TP_ACPI_VIDEO_S_DVI;
  4126. } else if (strlencmp(cmd, "auto_enable") == 0) {
  4127. res = video_autosw_set(1);
  4128. if (res)
  4129. return res;
  4130. } else if (strlencmp(cmd, "auto_disable") == 0) {
  4131. res = video_autosw_set(0);
  4132. if (res)
  4133. return res;
  4134. } else if (strlencmp(cmd, "video_switch") == 0) {
  4135. res = video_outputsw_cycle();
  4136. if (res)
  4137. return res;
  4138. } else if (strlencmp(cmd, "expand_toggle") == 0) {
  4139. res = video_expand_toggle();
  4140. if (res)
  4141. return res;
  4142. } else
  4143. return -EINVAL;
  4144. }
  4145. if (enable || disable) {
  4146. status = video_outputsw_get();
  4147. if (status < 0)
  4148. return status;
  4149. res = video_outputsw_set((status & ~disable) | enable);
  4150. if (res)
  4151. return res;
  4152. }
  4153. return 0;
  4154. }
  4155. static struct ibm_struct video_driver_data = {
  4156. .name = "video",
  4157. .read = video_read,
  4158. .write = video_write,
  4159. .exit = video_exit,
  4160. };
  4161. #endif /* CONFIG_THINKPAD_ACPI_VIDEO */
  4162. /*************************************************************************
  4163. * Keyboard backlight subdriver
  4164. */
  4165. static int kbdlight_set_level(int level)
  4166. {
  4167. if (!hkey_handle)
  4168. return -ENXIO;
  4169. if (!acpi_evalf(hkey_handle, NULL, "MLCS", "dd", level))
  4170. return -EIO;
  4171. return 0;
  4172. }
  4173. static int kbdlight_get_level(void)
  4174. {
  4175. int status = 0;
  4176. if (!hkey_handle)
  4177. return -ENXIO;
  4178. if (!acpi_evalf(hkey_handle, &status, "MLCG", "dd", 0))
  4179. return -EIO;
  4180. if (status < 0)
  4181. return status;
  4182. return status & 0x3;
  4183. }
  4184. static bool kbdlight_is_supported(void)
  4185. {
  4186. int status = 0;
  4187. if (!hkey_handle)
  4188. return false;
  4189. if (!acpi_has_method(hkey_handle, "MLCG")) {
  4190. vdbg_printk(TPACPI_DBG_INIT, "kbdlight MLCG is unavailable\n");
  4191. return false;
  4192. }
  4193. if (!acpi_evalf(hkey_handle, &status, "MLCG", "qdd", 0)) {
  4194. vdbg_printk(TPACPI_DBG_INIT, "kbdlight MLCG failed\n");
  4195. return false;
  4196. }
  4197. if (status < 0) {
  4198. vdbg_printk(TPACPI_DBG_INIT, "kbdlight MLCG err: %d\n", status);
  4199. return false;
  4200. }
  4201. vdbg_printk(TPACPI_DBG_INIT, "kbdlight MLCG returned 0x%x\n", status);
  4202. /*
  4203. * Guessed test for keyboard backlight:
  4204. *
  4205. * Machines with backlight keyboard return:
  4206. * b010100000010000000XX - ThinkPad X1 Carbon 3rd
  4207. * b110100010010000000XX - ThinkPad x230
  4208. * b010100000010000000XX - ThinkPad x240
  4209. * b010100000010000000XX - ThinkPad W541
  4210. * (XX is current backlight level)
  4211. *
  4212. * Machines without backlight keyboard return:
  4213. * b10100001000000000000 - ThinkPad x230
  4214. * b10110001000000000000 - ThinkPad E430
  4215. * b00000000000000000000 - ThinkPad E450
  4216. *
  4217. * Candidate BITs for detection test (XOR):
  4218. * b01000000001000000000
  4219. * ^
  4220. */
  4221. return status & BIT(9);
  4222. }
  4223. static void kbdlight_set_worker(struct work_struct *work)
  4224. {
  4225. struct tpacpi_led_classdev *data =
  4226. container_of(work, struct tpacpi_led_classdev, work);
  4227. if (likely(tpacpi_lifecycle == TPACPI_LIFE_RUNNING))
  4228. kbdlight_set_level(data->new_state);
  4229. }
  4230. static void kbdlight_sysfs_set(struct led_classdev *led_cdev,
  4231. enum led_brightness brightness)
  4232. {
  4233. struct tpacpi_led_classdev *data =
  4234. container_of(led_cdev,
  4235. struct tpacpi_led_classdev,
  4236. led_classdev);
  4237. data->new_state = brightness;
  4238. queue_work(tpacpi_wq, &data->work);
  4239. }
  4240. static enum led_brightness kbdlight_sysfs_get(struct led_classdev *led_cdev)
  4241. {
  4242. int level;
  4243. level = kbdlight_get_level();
  4244. if (level < 0)
  4245. return 0;
  4246. return level;
  4247. }
  4248. static struct tpacpi_led_classdev tpacpi_led_kbdlight = {
  4249. .led_classdev = {
  4250. .name = "tpacpi::kbd_backlight",
  4251. .max_brightness = 2,
  4252. .brightness_set = &kbdlight_sysfs_set,
  4253. .brightness_get = &kbdlight_sysfs_get,
  4254. .flags = LED_CORE_SUSPENDRESUME,
  4255. }
  4256. };
  4257. static int __init kbdlight_init(struct ibm_init_struct *iibm)
  4258. {
  4259. int rc;
  4260. vdbg_printk(TPACPI_DBG_INIT, "initializing kbdlight subdriver\n");
  4261. TPACPI_ACPIHANDLE_INIT(hkey);
  4262. INIT_WORK(&tpacpi_led_kbdlight.work, kbdlight_set_worker);
  4263. if (!kbdlight_is_supported()) {
  4264. tp_features.kbdlight = 0;
  4265. vdbg_printk(TPACPI_DBG_INIT, "kbdlight is unsupported\n");
  4266. return 1;
  4267. }
  4268. tp_features.kbdlight = 1;
  4269. rc = led_classdev_register(&tpacpi_pdev->dev,
  4270. &tpacpi_led_kbdlight.led_classdev);
  4271. if (rc < 0) {
  4272. tp_features.kbdlight = 0;
  4273. return rc;
  4274. }
  4275. return 0;
  4276. }
  4277. static void kbdlight_exit(void)
  4278. {
  4279. if (tp_features.kbdlight)
  4280. led_classdev_unregister(&tpacpi_led_kbdlight.led_classdev);
  4281. flush_workqueue(tpacpi_wq);
  4282. }
  4283. static int kbdlight_read(struct seq_file *m)
  4284. {
  4285. int level;
  4286. if (!tp_features.kbdlight) {
  4287. seq_printf(m, "status:\t\tnot supported\n");
  4288. } else {
  4289. level = kbdlight_get_level();
  4290. if (level < 0)
  4291. seq_printf(m, "status:\t\terror %d\n", level);
  4292. else
  4293. seq_printf(m, "status:\t\t%d\n", level);
  4294. seq_printf(m, "commands:\t0, 1, 2\n");
  4295. }
  4296. return 0;
  4297. }
  4298. static int kbdlight_write(char *buf)
  4299. {
  4300. char *cmd;
  4301. int level = -1;
  4302. if (!tp_features.kbdlight)
  4303. return -ENODEV;
  4304. while ((cmd = next_cmd(&buf))) {
  4305. if (strlencmp(cmd, "0") == 0)
  4306. level = 0;
  4307. else if (strlencmp(cmd, "1") == 0)
  4308. level = 1;
  4309. else if (strlencmp(cmd, "2") == 0)
  4310. level = 2;
  4311. else
  4312. return -EINVAL;
  4313. }
  4314. if (level == -1)
  4315. return -EINVAL;
  4316. return kbdlight_set_level(level);
  4317. }
  4318. static struct ibm_struct kbdlight_driver_data = {
  4319. .name = "kbdlight",
  4320. .read = kbdlight_read,
  4321. .write = kbdlight_write,
  4322. .exit = kbdlight_exit,
  4323. };
  4324. /*************************************************************************
  4325. * Light (thinklight) subdriver
  4326. */
  4327. TPACPI_HANDLE(lght, root, "\\LGHT"); /* A21e, A2xm/p, T20-22, X20-21 */
  4328. TPACPI_HANDLE(ledb, ec, "LEDB"); /* G4x */
  4329. static int light_get_status(void)
  4330. {
  4331. int status = 0;
  4332. if (tp_features.light_status) {
  4333. if (!acpi_evalf(ec_handle, &status, "KBLT", "d"))
  4334. return -EIO;
  4335. return (!!status);
  4336. }
  4337. return -ENXIO;
  4338. }
  4339. static int light_set_status(int status)
  4340. {
  4341. int rc;
  4342. if (tp_features.light) {
  4343. if (cmos_handle) {
  4344. rc = acpi_evalf(cmos_handle, NULL, NULL, "vd",
  4345. (status) ?
  4346. TP_CMOS_THINKLIGHT_ON :
  4347. TP_CMOS_THINKLIGHT_OFF);
  4348. } else {
  4349. rc = acpi_evalf(lght_handle, NULL, NULL, "vd",
  4350. (status) ? 1 : 0);
  4351. }
  4352. return (rc) ? 0 : -EIO;
  4353. }
  4354. return -ENXIO;
  4355. }
  4356. static void light_set_status_worker(struct work_struct *work)
  4357. {
  4358. struct tpacpi_led_classdev *data =
  4359. container_of(work, struct tpacpi_led_classdev, work);
  4360. if (likely(tpacpi_lifecycle == TPACPI_LIFE_RUNNING))
  4361. light_set_status((data->new_state != TPACPI_LED_OFF));
  4362. }
  4363. static void light_sysfs_set(struct led_classdev *led_cdev,
  4364. enum led_brightness brightness)
  4365. {
  4366. struct tpacpi_led_classdev *data =
  4367. container_of(led_cdev,
  4368. struct tpacpi_led_classdev,
  4369. led_classdev);
  4370. data->new_state = (brightness != LED_OFF) ?
  4371. TPACPI_LED_ON : TPACPI_LED_OFF;
  4372. queue_work(tpacpi_wq, &data->work);
  4373. }
  4374. static enum led_brightness light_sysfs_get(struct led_classdev *led_cdev)
  4375. {
  4376. return (light_get_status() == 1) ? LED_FULL : LED_OFF;
  4377. }
  4378. static struct tpacpi_led_classdev tpacpi_led_thinklight = {
  4379. .led_classdev = {
  4380. .name = "tpacpi::thinklight",
  4381. .brightness_set = &light_sysfs_set,
  4382. .brightness_get = &light_sysfs_get,
  4383. }
  4384. };
  4385. static int __init light_init(struct ibm_init_struct *iibm)
  4386. {
  4387. int rc;
  4388. vdbg_printk(TPACPI_DBG_INIT, "initializing light subdriver\n");
  4389. if (tpacpi_is_ibm()) {
  4390. TPACPI_ACPIHANDLE_INIT(ledb);
  4391. TPACPI_ACPIHANDLE_INIT(lght);
  4392. }
  4393. TPACPI_ACPIHANDLE_INIT(cmos);
  4394. INIT_WORK(&tpacpi_led_thinklight.work, light_set_status_worker);
  4395. /* light not supported on 570, 600e/x, 770e, 770x, G4x, R30, R31 */
  4396. tp_features.light = (cmos_handle || lght_handle) && !ledb_handle;
  4397. if (tp_features.light)
  4398. /* light status not supported on
  4399. 570, 600e/x, 770e, 770x, G4x, R30, R31, R32, X20 */
  4400. tp_features.light_status =
  4401. acpi_evalf(ec_handle, NULL, "KBLT", "qv");
  4402. vdbg_printk(TPACPI_DBG_INIT, "light is %s, light status is %s\n",
  4403. str_supported(tp_features.light),
  4404. str_supported(tp_features.light_status));
  4405. if (!tp_features.light)
  4406. return 1;
  4407. rc = led_classdev_register(&tpacpi_pdev->dev,
  4408. &tpacpi_led_thinklight.led_classdev);
  4409. if (rc < 0) {
  4410. tp_features.light = 0;
  4411. tp_features.light_status = 0;
  4412. } else {
  4413. rc = 0;
  4414. }
  4415. return rc;
  4416. }
  4417. static void light_exit(void)
  4418. {
  4419. led_classdev_unregister(&tpacpi_led_thinklight.led_classdev);
  4420. flush_workqueue(tpacpi_wq);
  4421. }
  4422. static int light_read(struct seq_file *m)
  4423. {
  4424. int status;
  4425. if (!tp_features.light) {
  4426. seq_printf(m, "status:\t\tnot supported\n");
  4427. } else if (!tp_features.light_status) {
  4428. seq_printf(m, "status:\t\tunknown\n");
  4429. seq_printf(m, "commands:\ton, off\n");
  4430. } else {
  4431. status = light_get_status();
  4432. if (status < 0)
  4433. return status;
  4434. seq_printf(m, "status:\t\t%s\n", onoff(status, 0));
  4435. seq_printf(m, "commands:\ton, off\n");
  4436. }
  4437. return 0;
  4438. }
  4439. static int light_write(char *buf)
  4440. {
  4441. char *cmd;
  4442. int newstatus = 0;
  4443. if (!tp_features.light)
  4444. return -ENODEV;
  4445. while ((cmd = next_cmd(&buf))) {
  4446. if (strlencmp(cmd, "on") == 0) {
  4447. newstatus = 1;
  4448. } else if (strlencmp(cmd, "off") == 0) {
  4449. newstatus = 0;
  4450. } else
  4451. return -EINVAL;
  4452. }
  4453. return light_set_status(newstatus);
  4454. }
  4455. static struct ibm_struct light_driver_data = {
  4456. .name = "light",
  4457. .read = light_read,
  4458. .write = light_write,
  4459. .exit = light_exit,
  4460. };
  4461. /*************************************************************************
  4462. * CMOS subdriver
  4463. */
  4464. /* sysfs cmos_command -------------------------------------------------- */
  4465. static ssize_t cmos_command_store(struct device *dev,
  4466. struct device_attribute *attr,
  4467. const char *buf, size_t count)
  4468. {
  4469. unsigned long cmos_cmd;
  4470. int res;
  4471. if (parse_strtoul(buf, 21, &cmos_cmd))
  4472. return -EINVAL;
  4473. res = issue_thinkpad_cmos_command(cmos_cmd);
  4474. return (res) ? res : count;
  4475. }
  4476. static DEVICE_ATTR_WO(cmos_command);
  4477. /* --------------------------------------------------------------------- */
  4478. static int __init cmos_init(struct ibm_init_struct *iibm)
  4479. {
  4480. int res;
  4481. vdbg_printk(TPACPI_DBG_INIT,
  4482. "initializing cmos commands subdriver\n");
  4483. TPACPI_ACPIHANDLE_INIT(cmos);
  4484. vdbg_printk(TPACPI_DBG_INIT, "cmos commands are %s\n",
  4485. str_supported(cmos_handle != NULL));
  4486. res = device_create_file(&tpacpi_pdev->dev, &dev_attr_cmos_command);
  4487. if (res)
  4488. return res;
  4489. return (cmos_handle) ? 0 : 1;
  4490. }
  4491. static void cmos_exit(void)
  4492. {
  4493. device_remove_file(&tpacpi_pdev->dev, &dev_attr_cmos_command);
  4494. }
  4495. static int cmos_read(struct seq_file *m)
  4496. {
  4497. /* cmos not supported on 570, 600e/x, 770e, 770x, A21e, A2xm/p,
  4498. R30, R31, T20-22, X20-21 */
  4499. if (!cmos_handle)
  4500. seq_printf(m, "status:\t\tnot supported\n");
  4501. else {
  4502. seq_printf(m, "status:\t\tsupported\n");
  4503. seq_printf(m, "commands:\t<cmd> (<cmd> is 0-21)\n");
  4504. }
  4505. return 0;
  4506. }
  4507. static int cmos_write(char *buf)
  4508. {
  4509. char *cmd;
  4510. int cmos_cmd, res;
  4511. while ((cmd = next_cmd(&buf))) {
  4512. if (sscanf(cmd, "%u", &cmos_cmd) == 1 &&
  4513. cmos_cmd >= 0 && cmos_cmd <= 21) {
  4514. /* cmos_cmd set */
  4515. } else
  4516. return -EINVAL;
  4517. res = issue_thinkpad_cmos_command(cmos_cmd);
  4518. if (res)
  4519. return res;
  4520. }
  4521. return 0;
  4522. }
  4523. static struct ibm_struct cmos_driver_data = {
  4524. .name = "cmos",
  4525. .read = cmos_read,
  4526. .write = cmos_write,
  4527. .exit = cmos_exit,
  4528. };
  4529. /*************************************************************************
  4530. * LED subdriver
  4531. */
  4532. enum led_access_mode {
  4533. TPACPI_LED_NONE = 0,
  4534. TPACPI_LED_570, /* 570 */
  4535. TPACPI_LED_OLD, /* 600e/x, 770e, 770x, A21e, A2xm/p, T20-22, X20-21 */
  4536. TPACPI_LED_NEW, /* all others */
  4537. };
  4538. enum { /* For TPACPI_LED_OLD */
  4539. TPACPI_LED_EC_HLCL = 0x0c, /* EC reg to get led to power on */
  4540. TPACPI_LED_EC_HLBL = 0x0d, /* EC reg to blink a lit led */
  4541. TPACPI_LED_EC_HLMS = 0x0e, /* EC reg to select led to command */
  4542. };
  4543. static enum led_access_mode led_supported;
  4544. static acpi_handle led_handle;
  4545. #define TPACPI_LED_NUMLEDS 16
  4546. static struct tpacpi_led_classdev *tpacpi_leds;
  4547. static enum led_status_t tpacpi_led_state_cache[TPACPI_LED_NUMLEDS];
  4548. static const char * const tpacpi_led_names[TPACPI_LED_NUMLEDS] = {
  4549. /* there's a limit of 19 chars + NULL before 2.6.26 */
  4550. "tpacpi::power",
  4551. "tpacpi:orange:batt",
  4552. "tpacpi:green:batt",
  4553. "tpacpi::dock_active",
  4554. "tpacpi::bay_active",
  4555. "tpacpi::dock_batt",
  4556. "tpacpi::unknown_led",
  4557. "tpacpi::standby",
  4558. "tpacpi::dock_status1",
  4559. "tpacpi::dock_status2",
  4560. "tpacpi::unknown_led2",
  4561. "tpacpi::unknown_led3",
  4562. "tpacpi::thinkvantage",
  4563. };
  4564. #define TPACPI_SAFE_LEDS 0x1081U
  4565. static inline bool tpacpi_is_led_restricted(const unsigned int led)
  4566. {
  4567. #ifdef CONFIG_THINKPAD_ACPI_UNSAFE_LEDS
  4568. return false;
  4569. #else
  4570. return (1U & (TPACPI_SAFE_LEDS >> led)) == 0;
  4571. #endif
  4572. }
  4573. static int led_get_status(const unsigned int led)
  4574. {
  4575. int status;
  4576. enum led_status_t led_s;
  4577. switch (led_supported) {
  4578. case TPACPI_LED_570:
  4579. if (!acpi_evalf(ec_handle,
  4580. &status, "GLED", "dd", 1 << led))
  4581. return -EIO;
  4582. led_s = (status == 0) ?
  4583. TPACPI_LED_OFF :
  4584. ((status == 1) ?
  4585. TPACPI_LED_ON :
  4586. TPACPI_LED_BLINK);
  4587. tpacpi_led_state_cache[led] = led_s;
  4588. return led_s;
  4589. default:
  4590. return -ENXIO;
  4591. }
  4592. /* not reached */
  4593. }
  4594. static int led_set_status(const unsigned int led,
  4595. const enum led_status_t ledstatus)
  4596. {
  4597. /* off, on, blink. Index is led_status_t */
  4598. static const unsigned int led_sled_arg1[] = { 0, 1, 3 };
  4599. static const unsigned int led_led_arg1[] = { 0, 0x80, 0xc0 };
  4600. int rc = 0;
  4601. switch (led_supported) {
  4602. case TPACPI_LED_570:
  4603. /* 570 */
  4604. if (unlikely(led > 7))
  4605. return -EINVAL;
  4606. if (unlikely(tpacpi_is_led_restricted(led)))
  4607. return -EPERM;
  4608. if (!acpi_evalf(led_handle, NULL, NULL, "vdd",
  4609. (1 << led), led_sled_arg1[ledstatus]))
  4610. rc = -EIO;
  4611. break;
  4612. case TPACPI_LED_OLD:
  4613. /* 600e/x, 770e, 770x, A21e, A2xm/p, T20-22, X20 */
  4614. if (unlikely(led > 7))
  4615. return -EINVAL;
  4616. if (unlikely(tpacpi_is_led_restricted(led)))
  4617. return -EPERM;
  4618. rc = ec_write(TPACPI_LED_EC_HLMS, (1 << led));
  4619. if (rc >= 0)
  4620. rc = ec_write(TPACPI_LED_EC_HLBL,
  4621. (ledstatus == TPACPI_LED_BLINK) << led);
  4622. if (rc >= 0)
  4623. rc = ec_write(TPACPI_LED_EC_HLCL,
  4624. (ledstatus != TPACPI_LED_OFF) << led);
  4625. break;
  4626. case TPACPI_LED_NEW:
  4627. /* all others */
  4628. if (unlikely(led >= TPACPI_LED_NUMLEDS))
  4629. return -EINVAL;
  4630. if (unlikely(tpacpi_is_led_restricted(led)))
  4631. return -EPERM;
  4632. if (!acpi_evalf(led_handle, NULL, NULL, "vdd",
  4633. led, led_led_arg1[ledstatus]))
  4634. rc = -EIO;
  4635. break;
  4636. default:
  4637. rc = -ENXIO;
  4638. }
  4639. if (!rc)
  4640. tpacpi_led_state_cache[led] = ledstatus;
  4641. return rc;
  4642. }
  4643. static void led_set_status_worker(struct work_struct *work)
  4644. {
  4645. struct tpacpi_led_classdev *data =
  4646. container_of(work, struct tpacpi_led_classdev, work);
  4647. if (likely(tpacpi_lifecycle == TPACPI_LIFE_RUNNING))
  4648. led_set_status(data->led, data->new_state);
  4649. }
  4650. static void led_sysfs_set(struct led_classdev *led_cdev,
  4651. enum led_brightness brightness)
  4652. {
  4653. struct tpacpi_led_classdev *data = container_of(led_cdev,
  4654. struct tpacpi_led_classdev, led_classdev);
  4655. if (brightness == LED_OFF)
  4656. data->new_state = TPACPI_LED_OFF;
  4657. else if (tpacpi_led_state_cache[data->led] != TPACPI_LED_BLINK)
  4658. data->new_state = TPACPI_LED_ON;
  4659. else
  4660. data->new_state = TPACPI_LED_BLINK;
  4661. queue_work(tpacpi_wq, &data->work);
  4662. }
  4663. static int led_sysfs_blink_set(struct led_classdev *led_cdev,
  4664. unsigned long *delay_on, unsigned long *delay_off)
  4665. {
  4666. struct tpacpi_led_classdev *data = container_of(led_cdev,
  4667. struct tpacpi_led_classdev, led_classdev);
  4668. /* Can we choose the flash rate? */
  4669. if (*delay_on == 0 && *delay_off == 0) {
  4670. /* yes. set them to the hardware blink rate (1 Hz) */
  4671. *delay_on = 500; /* ms */
  4672. *delay_off = 500; /* ms */
  4673. } else if ((*delay_on != 500) || (*delay_off != 500))
  4674. return -EINVAL;
  4675. data->new_state = TPACPI_LED_BLINK;
  4676. queue_work(tpacpi_wq, &data->work);
  4677. return 0;
  4678. }
  4679. static enum led_brightness led_sysfs_get(struct led_classdev *led_cdev)
  4680. {
  4681. int rc;
  4682. struct tpacpi_led_classdev *data = container_of(led_cdev,
  4683. struct tpacpi_led_classdev, led_classdev);
  4684. rc = led_get_status(data->led);
  4685. if (rc == TPACPI_LED_OFF || rc < 0)
  4686. rc = LED_OFF; /* no error handling in led class :( */
  4687. else
  4688. rc = LED_FULL;
  4689. return rc;
  4690. }
  4691. static void led_exit(void)
  4692. {
  4693. unsigned int i;
  4694. for (i = 0; i < TPACPI_LED_NUMLEDS; i++) {
  4695. if (tpacpi_leds[i].led_classdev.name)
  4696. led_classdev_unregister(&tpacpi_leds[i].led_classdev);
  4697. }
  4698. flush_workqueue(tpacpi_wq);
  4699. kfree(tpacpi_leds);
  4700. }
  4701. static int __init tpacpi_init_led(unsigned int led)
  4702. {
  4703. int rc;
  4704. tpacpi_leds[led].led = led;
  4705. /* LEDs with no name don't get registered */
  4706. if (!tpacpi_led_names[led])
  4707. return 0;
  4708. tpacpi_leds[led].led_classdev.brightness_set = &led_sysfs_set;
  4709. tpacpi_leds[led].led_classdev.blink_set = &led_sysfs_blink_set;
  4710. if (led_supported == TPACPI_LED_570)
  4711. tpacpi_leds[led].led_classdev.brightness_get =
  4712. &led_sysfs_get;
  4713. tpacpi_leds[led].led_classdev.name = tpacpi_led_names[led];
  4714. INIT_WORK(&tpacpi_leds[led].work, led_set_status_worker);
  4715. rc = led_classdev_register(&tpacpi_pdev->dev,
  4716. &tpacpi_leds[led].led_classdev);
  4717. if (rc < 0)
  4718. tpacpi_leds[led].led_classdev.name = NULL;
  4719. return rc;
  4720. }
  4721. static const struct tpacpi_quirk led_useful_qtable[] __initconst = {
  4722. TPACPI_Q_IBM('1', 'E', 0x009f), /* A30 */
  4723. TPACPI_Q_IBM('1', 'N', 0x009f), /* A31 */
  4724. TPACPI_Q_IBM('1', 'G', 0x009f), /* A31 */
  4725. TPACPI_Q_IBM('1', 'I', 0x0097), /* T30 */
  4726. TPACPI_Q_IBM('1', 'R', 0x0097), /* T40, T41, T42, R50, R51 */
  4727. TPACPI_Q_IBM('7', '0', 0x0097), /* T43, R52 */
  4728. TPACPI_Q_IBM('1', 'Y', 0x0097), /* T43 */
  4729. TPACPI_Q_IBM('1', 'W', 0x0097), /* R50e */
  4730. TPACPI_Q_IBM('1', 'V', 0x0097), /* R51 */
  4731. TPACPI_Q_IBM('7', '8', 0x0097), /* R51e */
  4732. TPACPI_Q_IBM('7', '6', 0x0097), /* R52 */
  4733. TPACPI_Q_IBM('1', 'K', 0x00bf), /* X30 */
  4734. TPACPI_Q_IBM('1', 'Q', 0x00bf), /* X31, X32 */
  4735. TPACPI_Q_IBM('1', 'U', 0x00bf), /* X40 */
  4736. TPACPI_Q_IBM('7', '4', 0x00bf), /* X41 */
  4737. TPACPI_Q_IBM('7', '5', 0x00bf), /* X41t */
  4738. TPACPI_Q_IBM('7', '9', 0x1f97), /* T60 (1) */
  4739. TPACPI_Q_IBM('7', '7', 0x1f97), /* Z60* (1) */
  4740. TPACPI_Q_IBM('7', 'F', 0x1f97), /* Z61* (1) */
  4741. TPACPI_Q_IBM('7', 'B', 0x1fb7), /* X60 (1) */
  4742. /* (1) - may have excess leds enabled on MSB */
  4743. /* Defaults (order matters, keep last, don't reorder!) */
  4744. { /* Lenovo */
  4745. .vendor = PCI_VENDOR_ID_LENOVO,
  4746. .bios = TPACPI_MATCH_ANY, .ec = TPACPI_MATCH_ANY,
  4747. .quirks = 0x1fffU,
  4748. },
  4749. { /* IBM ThinkPads with no EC version string */
  4750. .vendor = PCI_VENDOR_ID_IBM,
  4751. .bios = TPACPI_MATCH_ANY, .ec = TPACPI_MATCH_UNKNOWN,
  4752. .quirks = 0x00ffU,
  4753. },
  4754. { /* IBM ThinkPads with EC version string */
  4755. .vendor = PCI_VENDOR_ID_IBM,
  4756. .bios = TPACPI_MATCH_ANY, .ec = TPACPI_MATCH_ANY,
  4757. .quirks = 0x00bfU,
  4758. },
  4759. };
  4760. #undef TPACPI_LEDQ_IBM
  4761. #undef TPACPI_LEDQ_LNV
  4762. static enum led_access_mode __init led_init_detect_mode(void)
  4763. {
  4764. acpi_status status;
  4765. if (tpacpi_is_ibm()) {
  4766. /* 570 */
  4767. status = acpi_get_handle(ec_handle, "SLED", &led_handle);
  4768. if (ACPI_SUCCESS(status))
  4769. return TPACPI_LED_570;
  4770. /* 600e/x, 770e, 770x, A21e, A2xm/p, T20-22, X20-21 */
  4771. status = acpi_get_handle(ec_handle, "SYSL", &led_handle);
  4772. if (ACPI_SUCCESS(status))
  4773. return TPACPI_LED_OLD;
  4774. }
  4775. /* most others */
  4776. status = acpi_get_handle(ec_handle, "LED", &led_handle);
  4777. if (ACPI_SUCCESS(status))
  4778. return TPACPI_LED_NEW;
  4779. /* R30, R31, and unknown firmwares */
  4780. led_handle = NULL;
  4781. return TPACPI_LED_NONE;
  4782. }
  4783. static int __init led_init(struct ibm_init_struct *iibm)
  4784. {
  4785. unsigned int i;
  4786. int rc;
  4787. unsigned long useful_leds;
  4788. vdbg_printk(TPACPI_DBG_INIT, "initializing LED subdriver\n");
  4789. led_supported = led_init_detect_mode();
  4790. if (led_supported != TPACPI_LED_NONE) {
  4791. useful_leds = tpacpi_check_quirks(led_useful_qtable,
  4792. ARRAY_SIZE(led_useful_qtable));
  4793. if (!useful_leds) {
  4794. led_handle = NULL;
  4795. led_supported = TPACPI_LED_NONE;
  4796. }
  4797. }
  4798. vdbg_printk(TPACPI_DBG_INIT, "LED commands are %s, mode %d\n",
  4799. str_supported(led_supported), led_supported);
  4800. if (led_supported == TPACPI_LED_NONE)
  4801. return 1;
  4802. tpacpi_leds = kzalloc(sizeof(*tpacpi_leds) * TPACPI_LED_NUMLEDS,
  4803. GFP_KERNEL);
  4804. if (!tpacpi_leds) {
  4805. pr_err("Out of memory for LED data\n");
  4806. return -ENOMEM;
  4807. }
  4808. for (i = 0; i < TPACPI_LED_NUMLEDS; i++) {
  4809. tpacpi_leds[i].led = -1;
  4810. if (!tpacpi_is_led_restricted(i) &&
  4811. test_bit(i, &useful_leds)) {
  4812. rc = tpacpi_init_led(i);
  4813. if (rc < 0) {
  4814. led_exit();
  4815. return rc;
  4816. }
  4817. }
  4818. }
  4819. #ifdef CONFIG_THINKPAD_ACPI_UNSAFE_LEDS
  4820. pr_notice("warning: userspace override of important "
  4821. "firmware LEDs is enabled\n");
  4822. #endif
  4823. return 0;
  4824. }
  4825. #define str_led_status(s) \
  4826. ((s) == TPACPI_LED_OFF ? "off" : \
  4827. ((s) == TPACPI_LED_ON ? "on" : "blinking"))
  4828. static int led_read(struct seq_file *m)
  4829. {
  4830. if (!led_supported) {
  4831. seq_printf(m, "status:\t\tnot supported\n");
  4832. return 0;
  4833. }
  4834. seq_printf(m, "status:\t\tsupported\n");
  4835. if (led_supported == TPACPI_LED_570) {
  4836. /* 570 */
  4837. int i, status;
  4838. for (i = 0; i < 8; i++) {
  4839. status = led_get_status(i);
  4840. if (status < 0)
  4841. return -EIO;
  4842. seq_printf(m, "%d:\t\t%s\n",
  4843. i, str_led_status(status));
  4844. }
  4845. }
  4846. seq_printf(m, "commands:\t"
  4847. "<led> on, <led> off, <led> blink (<led> is 0-15)\n");
  4848. return 0;
  4849. }
  4850. static int led_write(char *buf)
  4851. {
  4852. char *cmd;
  4853. int led, rc;
  4854. enum led_status_t s;
  4855. if (!led_supported)
  4856. return -ENODEV;
  4857. while ((cmd = next_cmd(&buf))) {
  4858. if (sscanf(cmd, "%d", &led) != 1)
  4859. return -EINVAL;
  4860. if (led < 0 || led > (TPACPI_LED_NUMLEDS - 1) ||
  4861. tpacpi_leds[led].led < 0)
  4862. return -ENODEV;
  4863. if (strstr(cmd, "off")) {
  4864. s = TPACPI_LED_OFF;
  4865. } else if (strstr(cmd, "on")) {
  4866. s = TPACPI_LED_ON;
  4867. } else if (strstr(cmd, "blink")) {
  4868. s = TPACPI_LED_BLINK;
  4869. } else {
  4870. return -EINVAL;
  4871. }
  4872. rc = led_set_status(led, s);
  4873. if (rc < 0)
  4874. return rc;
  4875. }
  4876. return 0;
  4877. }
  4878. static struct ibm_struct led_driver_data = {
  4879. .name = "led",
  4880. .read = led_read,
  4881. .write = led_write,
  4882. .exit = led_exit,
  4883. };
  4884. /*************************************************************************
  4885. * Beep subdriver
  4886. */
  4887. TPACPI_HANDLE(beep, ec, "BEEP"); /* all except R30, R31 */
  4888. #define TPACPI_BEEP_Q1 0x0001
  4889. static const struct tpacpi_quirk beep_quirk_table[] __initconst = {
  4890. TPACPI_Q_IBM('I', 'M', TPACPI_BEEP_Q1), /* 570 */
  4891. TPACPI_Q_IBM('I', 'U', TPACPI_BEEP_Q1), /* 570E - unverified */
  4892. };
  4893. static int __init beep_init(struct ibm_init_struct *iibm)
  4894. {
  4895. unsigned long quirks;
  4896. vdbg_printk(TPACPI_DBG_INIT, "initializing beep subdriver\n");
  4897. TPACPI_ACPIHANDLE_INIT(beep);
  4898. vdbg_printk(TPACPI_DBG_INIT, "beep is %s\n",
  4899. str_supported(beep_handle != NULL));
  4900. quirks = tpacpi_check_quirks(beep_quirk_table,
  4901. ARRAY_SIZE(beep_quirk_table));
  4902. tp_features.beep_needs_two_args = !!(quirks & TPACPI_BEEP_Q1);
  4903. return (beep_handle) ? 0 : 1;
  4904. }
  4905. static int beep_read(struct seq_file *m)
  4906. {
  4907. if (!beep_handle)
  4908. seq_printf(m, "status:\t\tnot supported\n");
  4909. else {
  4910. seq_printf(m, "status:\t\tsupported\n");
  4911. seq_printf(m, "commands:\t<cmd> (<cmd> is 0-17)\n");
  4912. }
  4913. return 0;
  4914. }
  4915. static int beep_write(char *buf)
  4916. {
  4917. char *cmd;
  4918. int beep_cmd;
  4919. if (!beep_handle)
  4920. return -ENODEV;
  4921. while ((cmd = next_cmd(&buf))) {
  4922. if (sscanf(cmd, "%u", &beep_cmd) == 1 &&
  4923. beep_cmd >= 0 && beep_cmd <= 17) {
  4924. /* beep_cmd set */
  4925. } else
  4926. return -EINVAL;
  4927. if (tp_features.beep_needs_two_args) {
  4928. if (!acpi_evalf(beep_handle, NULL, NULL, "vdd",
  4929. beep_cmd, 0))
  4930. return -EIO;
  4931. } else {
  4932. if (!acpi_evalf(beep_handle, NULL, NULL, "vd",
  4933. beep_cmd))
  4934. return -EIO;
  4935. }
  4936. }
  4937. return 0;
  4938. }
  4939. static struct ibm_struct beep_driver_data = {
  4940. .name = "beep",
  4941. .read = beep_read,
  4942. .write = beep_write,
  4943. };
  4944. /*************************************************************************
  4945. * Thermal subdriver
  4946. */
  4947. enum thermal_access_mode {
  4948. TPACPI_THERMAL_NONE = 0, /* No thermal support */
  4949. TPACPI_THERMAL_ACPI_TMP07, /* Use ACPI TMP0-7 */
  4950. TPACPI_THERMAL_ACPI_UPDT, /* Use ACPI TMP0-7 with UPDT */
  4951. TPACPI_THERMAL_TPEC_8, /* Use ACPI EC regs, 8 sensors */
  4952. TPACPI_THERMAL_TPEC_16, /* Use ACPI EC regs, 16 sensors */
  4953. };
  4954. enum { /* TPACPI_THERMAL_TPEC_* */
  4955. TP_EC_THERMAL_TMP0 = 0x78, /* ACPI EC regs TMP 0..7 */
  4956. TP_EC_THERMAL_TMP8 = 0xC0, /* ACPI EC regs TMP 8..15 */
  4957. TP_EC_THERMAL_TMP_NA = -128, /* ACPI EC sensor not available */
  4958. TPACPI_THERMAL_SENSOR_NA = -128000, /* Sensor not available */
  4959. };
  4960. #define TPACPI_MAX_THERMAL_SENSORS 16 /* Max thermal sensors supported */
  4961. struct ibm_thermal_sensors_struct {
  4962. s32 temp[TPACPI_MAX_THERMAL_SENSORS];
  4963. };
  4964. static enum thermal_access_mode thermal_read_mode;
  4965. /* idx is zero-based */
  4966. static int thermal_get_sensor(int idx, s32 *value)
  4967. {
  4968. int t;
  4969. s8 tmp;
  4970. char tmpi[5];
  4971. t = TP_EC_THERMAL_TMP0;
  4972. switch (thermal_read_mode) {
  4973. #if TPACPI_MAX_THERMAL_SENSORS >= 16
  4974. case TPACPI_THERMAL_TPEC_16:
  4975. if (idx >= 8 && idx <= 15) {
  4976. t = TP_EC_THERMAL_TMP8;
  4977. idx -= 8;
  4978. }
  4979. /* fallthrough */
  4980. #endif
  4981. case TPACPI_THERMAL_TPEC_8:
  4982. if (idx <= 7) {
  4983. if (!acpi_ec_read(t + idx, &tmp))
  4984. return -EIO;
  4985. *value = tmp * 1000;
  4986. return 0;
  4987. }
  4988. break;
  4989. case TPACPI_THERMAL_ACPI_UPDT:
  4990. if (idx <= 7) {
  4991. snprintf(tmpi, sizeof(tmpi), "TMP%c", '0' + idx);
  4992. if (!acpi_evalf(ec_handle, NULL, "UPDT", "v"))
  4993. return -EIO;
  4994. if (!acpi_evalf(ec_handle, &t, tmpi, "d"))
  4995. return -EIO;
  4996. *value = (t - 2732) * 100;
  4997. return 0;
  4998. }
  4999. break;
  5000. case TPACPI_THERMAL_ACPI_TMP07:
  5001. if (idx <= 7) {
  5002. snprintf(tmpi, sizeof(tmpi), "TMP%c", '0' + idx);
  5003. if (!acpi_evalf(ec_handle, &t, tmpi, "d"))
  5004. return -EIO;
  5005. if (t > 127 || t < -127)
  5006. t = TP_EC_THERMAL_TMP_NA;
  5007. *value = t * 1000;
  5008. return 0;
  5009. }
  5010. break;
  5011. case TPACPI_THERMAL_NONE:
  5012. default:
  5013. return -ENOSYS;
  5014. }
  5015. return -EINVAL;
  5016. }
  5017. static int thermal_get_sensors(struct ibm_thermal_sensors_struct *s)
  5018. {
  5019. int res, i;
  5020. int n;
  5021. n = 8;
  5022. i = 0;
  5023. if (!s)
  5024. return -EINVAL;
  5025. if (thermal_read_mode == TPACPI_THERMAL_TPEC_16)
  5026. n = 16;
  5027. for (i = 0 ; i < n; i++) {
  5028. res = thermal_get_sensor(i, &s->temp[i]);
  5029. if (res)
  5030. return res;
  5031. }
  5032. return n;
  5033. }
  5034. static void thermal_dump_all_sensors(void)
  5035. {
  5036. int n, i;
  5037. struct ibm_thermal_sensors_struct t;
  5038. n = thermal_get_sensors(&t);
  5039. if (n <= 0)
  5040. return;
  5041. pr_notice("temperatures (Celsius):");
  5042. for (i = 0; i < n; i++) {
  5043. if (t.temp[i] != TPACPI_THERMAL_SENSOR_NA)
  5044. pr_cont(" %d", (int)(t.temp[i] / 1000));
  5045. else
  5046. pr_cont(" N/A");
  5047. }
  5048. pr_cont("\n");
  5049. }
  5050. /* sysfs temp##_input -------------------------------------------------- */
  5051. static ssize_t thermal_temp_input_show(struct device *dev,
  5052. struct device_attribute *attr,
  5053. char *buf)
  5054. {
  5055. struct sensor_device_attribute *sensor_attr =
  5056. to_sensor_dev_attr(attr);
  5057. int idx = sensor_attr->index;
  5058. s32 value;
  5059. int res;
  5060. res = thermal_get_sensor(idx, &value);
  5061. if (res)
  5062. return res;
  5063. if (value == TPACPI_THERMAL_SENSOR_NA)
  5064. return -ENXIO;
  5065. return snprintf(buf, PAGE_SIZE, "%d\n", value);
  5066. }
  5067. #define THERMAL_SENSOR_ATTR_TEMP(_idxA, _idxB) \
  5068. SENSOR_ATTR(temp##_idxA##_input, S_IRUGO, \
  5069. thermal_temp_input_show, NULL, _idxB)
  5070. static struct sensor_device_attribute sensor_dev_attr_thermal_temp_input[] = {
  5071. THERMAL_SENSOR_ATTR_TEMP(1, 0),
  5072. THERMAL_SENSOR_ATTR_TEMP(2, 1),
  5073. THERMAL_SENSOR_ATTR_TEMP(3, 2),
  5074. THERMAL_SENSOR_ATTR_TEMP(4, 3),
  5075. THERMAL_SENSOR_ATTR_TEMP(5, 4),
  5076. THERMAL_SENSOR_ATTR_TEMP(6, 5),
  5077. THERMAL_SENSOR_ATTR_TEMP(7, 6),
  5078. THERMAL_SENSOR_ATTR_TEMP(8, 7),
  5079. THERMAL_SENSOR_ATTR_TEMP(9, 8),
  5080. THERMAL_SENSOR_ATTR_TEMP(10, 9),
  5081. THERMAL_SENSOR_ATTR_TEMP(11, 10),
  5082. THERMAL_SENSOR_ATTR_TEMP(12, 11),
  5083. THERMAL_SENSOR_ATTR_TEMP(13, 12),
  5084. THERMAL_SENSOR_ATTR_TEMP(14, 13),
  5085. THERMAL_SENSOR_ATTR_TEMP(15, 14),
  5086. THERMAL_SENSOR_ATTR_TEMP(16, 15),
  5087. };
  5088. #define THERMAL_ATTRS(X) \
  5089. &sensor_dev_attr_thermal_temp_input[X].dev_attr.attr
  5090. static struct attribute *thermal_temp_input_attr[] = {
  5091. THERMAL_ATTRS(8),
  5092. THERMAL_ATTRS(9),
  5093. THERMAL_ATTRS(10),
  5094. THERMAL_ATTRS(11),
  5095. THERMAL_ATTRS(12),
  5096. THERMAL_ATTRS(13),
  5097. THERMAL_ATTRS(14),
  5098. THERMAL_ATTRS(15),
  5099. THERMAL_ATTRS(0),
  5100. THERMAL_ATTRS(1),
  5101. THERMAL_ATTRS(2),
  5102. THERMAL_ATTRS(3),
  5103. THERMAL_ATTRS(4),
  5104. THERMAL_ATTRS(5),
  5105. THERMAL_ATTRS(6),
  5106. THERMAL_ATTRS(7),
  5107. NULL
  5108. };
  5109. static const struct attribute_group thermal_temp_input16_group = {
  5110. .attrs = thermal_temp_input_attr
  5111. };
  5112. static const struct attribute_group thermal_temp_input8_group = {
  5113. .attrs = &thermal_temp_input_attr[8]
  5114. };
  5115. #undef THERMAL_SENSOR_ATTR_TEMP
  5116. #undef THERMAL_ATTRS
  5117. /* --------------------------------------------------------------------- */
  5118. static int __init thermal_init(struct ibm_init_struct *iibm)
  5119. {
  5120. u8 t, ta1, ta2;
  5121. int i;
  5122. int acpi_tmp7;
  5123. int res;
  5124. vdbg_printk(TPACPI_DBG_INIT, "initializing thermal subdriver\n");
  5125. acpi_tmp7 = acpi_evalf(ec_handle, NULL, "TMP7", "qv");
  5126. if (thinkpad_id.ec_model) {
  5127. /*
  5128. * Direct EC access mode: sensors at registers
  5129. * 0x78-0x7F, 0xC0-0xC7. Registers return 0x00 for
  5130. * non-implemented, thermal sensors return 0x80 when
  5131. * not available
  5132. */
  5133. ta1 = ta2 = 0;
  5134. for (i = 0; i < 8; i++) {
  5135. if (acpi_ec_read(TP_EC_THERMAL_TMP0 + i, &t)) {
  5136. ta1 |= t;
  5137. } else {
  5138. ta1 = 0;
  5139. break;
  5140. }
  5141. if (acpi_ec_read(TP_EC_THERMAL_TMP8 + i, &t)) {
  5142. ta2 |= t;
  5143. } else {
  5144. ta1 = 0;
  5145. break;
  5146. }
  5147. }
  5148. if (ta1 == 0) {
  5149. /* This is sheer paranoia, but we handle it anyway */
  5150. if (acpi_tmp7) {
  5151. pr_err("ThinkPad ACPI EC access misbehaving, "
  5152. "falling back to ACPI TMPx access "
  5153. "mode\n");
  5154. thermal_read_mode = TPACPI_THERMAL_ACPI_TMP07;
  5155. } else {
  5156. pr_err("ThinkPad ACPI EC access misbehaving, "
  5157. "disabling thermal sensors access\n");
  5158. thermal_read_mode = TPACPI_THERMAL_NONE;
  5159. }
  5160. } else {
  5161. thermal_read_mode =
  5162. (ta2 != 0) ?
  5163. TPACPI_THERMAL_TPEC_16 : TPACPI_THERMAL_TPEC_8;
  5164. }
  5165. } else if (acpi_tmp7) {
  5166. if (tpacpi_is_ibm() &&
  5167. acpi_evalf(ec_handle, NULL, "UPDT", "qv")) {
  5168. /* 600e/x, 770e, 770x */
  5169. thermal_read_mode = TPACPI_THERMAL_ACPI_UPDT;
  5170. } else {
  5171. /* IBM/LENOVO DSDT EC.TMPx access, max 8 sensors */
  5172. thermal_read_mode = TPACPI_THERMAL_ACPI_TMP07;
  5173. }
  5174. } else {
  5175. /* temperatures not supported on 570, G4x, R30, R31, R32 */
  5176. thermal_read_mode = TPACPI_THERMAL_NONE;
  5177. }
  5178. vdbg_printk(TPACPI_DBG_INIT, "thermal is %s, mode %d\n",
  5179. str_supported(thermal_read_mode != TPACPI_THERMAL_NONE),
  5180. thermal_read_mode);
  5181. switch (thermal_read_mode) {
  5182. case TPACPI_THERMAL_TPEC_16:
  5183. res = sysfs_create_group(&tpacpi_sensors_pdev->dev.kobj,
  5184. &thermal_temp_input16_group);
  5185. if (res)
  5186. return res;
  5187. break;
  5188. case TPACPI_THERMAL_TPEC_8:
  5189. case TPACPI_THERMAL_ACPI_TMP07:
  5190. case TPACPI_THERMAL_ACPI_UPDT:
  5191. res = sysfs_create_group(&tpacpi_sensors_pdev->dev.kobj,
  5192. &thermal_temp_input8_group);
  5193. if (res)
  5194. return res;
  5195. break;
  5196. case TPACPI_THERMAL_NONE:
  5197. default:
  5198. return 1;
  5199. }
  5200. return 0;
  5201. }
  5202. static void thermal_exit(void)
  5203. {
  5204. switch (thermal_read_mode) {
  5205. case TPACPI_THERMAL_TPEC_16:
  5206. sysfs_remove_group(&tpacpi_sensors_pdev->dev.kobj,
  5207. &thermal_temp_input16_group);
  5208. break;
  5209. case TPACPI_THERMAL_TPEC_8:
  5210. case TPACPI_THERMAL_ACPI_TMP07:
  5211. case TPACPI_THERMAL_ACPI_UPDT:
  5212. sysfs_remove_group(&tpacpi_sensors_pdev->dev.kobj,
  5213. &thermal_temp_input8_group);
  5214. break;
  5215. case TPACPI_THERMAL_NONE:
  5216. default:
  5217. break;
  5218. }
  5219. }
  5220. static int thermal_read(struct seq_file *m)
  5221. {
  5222. int n, i;
  5223. struct ibm_thermal_sensors_struct t;
  5224. n = thermal_get_sensors(&t);
  5225. if (unlikely(n < 0))
  5226. return n;
  5227. seq_printf(m, "temperatures:\t");
  5228. if (n > 0) {
  5229. for (i = 0; i < (n - 1); i++)
  5230. seq_printf(m, "%d ", t.temp[i] / 1000);
  5231. seq_printf(m, "%d\n", t.temp[i] / 1000);
  5232. } else
  5233. seq_printf(m, "not supported\n");
  5234. return 0;
  5235. }
  5236. static struct ibm_struct thermal_driver_data = {
  5237. .name = "thermal",
  5238. .read = thermal_read,
  5239. .exit = thermal_exit,
  5240. };
  5241. /*************************************************************************
  5242. * Backlight/brightness subdriver
  5243. */
  5244. #define TPACPI_BACKLIGHT_DEV_NAME "thinkpad_screen"
  5245. /*
  5246. * ThinkPads can read brightness from two places: EC HBRV (0x31), or
  5247. * CMOS NVRAM byte 0x5E, bits 0-3.
  5248. *
  5249. * EC HBRV (0x31) has the following layout
  5250. * Bit 7: unknown function
  5251. * Bit 6: unknown function
  5252. * Bit 5: Z: honour scale changes, NZ: ignore scale changes
  5253. * Bit 4: must be set to zero to avoid problems
  5254. * Bit 3-0: backlight brightness level
  5255. *
  5256. * brightness_get_raw returns status data in the HBRV layout
  5257. *
  5258. * WARNING: The X61 has been verified to use HBRV for something else, so
  5259. * this should be used _only_ on IBM ThinkPads, and maybe with some careful
  5260. * testing on the very early *60 Lenovo models...
  5261. */
  5262. enum {
  5263. TP_EC_BACKLIGHT = 0x31,
  5264. /* TP_EC_BACKLIGHT bitmasks */
  5265. TP_EC_BACKLIGHT_LVLMSK = 0x1F,
  5266. TP_EC_BACKLIGHT_CMDMSK = 0xE0,
  5267. TP_EC_BACKLIGHT_MAPSW = 0x20,
  5268. };
  5269. enum tpacpi_brightness_access_mode {
  5270. TPACPI_BRGHT_MODE_AUTO = 0, /* Not implemented yet */
  5271. TPACPI_BRGHT_MODE_EC, /* EC control */
  5272. TPACPI_BRGHT_MODE_UCMS_STEP, /* UCMS step-based control */
  5273. TPACPI_BRGHT_MODE_ECNVRAM, /* EC control w/ NVRAM store */
  5274. TPACPI_BRGHT_MODE_MAX
  5275. };
  5276. static struct backlight_device *ibm_backlight_device;
  5277. static enum tpacpi_brightness_access_mode brightness_mode =
  5278. TPACPI_BRGHT_MODE_MAX;
  5279. static unsigned int brightness_enable = 2; /* 2 = auto, 0 = no, 1 = yes */
  5280. static struct mutex brightness_mutex;
  5281. /* NVRAM brightness access,
  5282. * call with brightness_mutex held! */
  5283. static unsigned int tpacpi_brightness_nvram_get(void)
  5284. {
  5285. u8 lnvram;
  5286. lnvram = (nvram_read_byte(TP_NVRAM_ADDR_BRIGHTNESS)
  5287. & TP_NVRAM_MASK_LEVEL_BRIGHTNESS)
  5288. >> TP_NVRAM_POS_LEVEL_BRIGHTNESS;
  5289. lnvram &= bright_maxlvl;
  5290. return lnvram;
  5291. }
  5292. static void tpacpi_brightness_checkpoint_nvram(void)
  5293. {
  5294. u8 lec = 0;
  5295. u8 b_nvram;
  5296. if (brightness_mode != TPACPI_BRGHT_MODE_ECNVRAM)
  5297. return;
  5298. vdbg_printk(TPACPI_DBG_BRGHT,
  5299. "trying to checkpoint backlight level to NVRAM...\n");
  5300. if (mutex_lock_killable(&brightness_mutex) < 0)
  5301. return;
  5302. if (unlikely(!acpi_ec_read(TP_EC_BACKLIGHT, &lec)))
  5303. goto unlock;
  5304. lec &= TP_EC_BACKLIGHT_LVLMSK;
  5305. b_nvram = nvram_read_byte(TP_NVRAM_ADDR_BRIGHTNESS);
  5306. if (lec != ((b_nvram & TP_NVRAM_MASK_LEVEL_BRIGHTNESS)
  5307. >> TP_NVRAM_POS_LEVEL_BRIGHTNESS)) {
  5308. /* NVRAM needs update */
  5309. b_nvram &= ~(TP_NVRAM_MASK_LEVEL_BRIGHTNESS <<
  5310. TP_NVRAM_POS_LEVEL_BRIGHTNESS);
  5311. b_nvram |= lec;
  5312. nvram_write_byte(b_nvram, TP_NVRAM_ADDR_BRIGHTNESS);
  5313. dbg_printk(TPACPI_DBG_BRGHT,
  5314. "updated NVRAM backlight level to %u (0x%02x)\n",
  5315. (unsigned int) lec, (unsigned int) b_nvram);
  5316. } else
  5317. vdbg_printk(TPACPI_DBG_BRGHT,
  5318. "NVRAM backlight level already is %u (0x%02x)\n",
  5319. (unsigned int) lec, (unsigned int) b_nvram);
  5320. unlock:
  5321. mutex_unlock(&brightness_mutex);
  5322. }
  5323. /* call with brightness_mutex held! */
  5324. static int tpacpi_brightness_get_raw(int *status)
  5325. {
  5326. u8 lec = 0;
  5327. switch (brightness_mode) {
  5328. case TPACPI_BRGHT_MODE_UCMS_STEP:
  5329. *status = tpacpi_brightness_nvram_get();
  5330. return 0;
  5331. case TPACPI_BRGHT_MODE_EC:
  5332. case TPACPI_BRGHT_MODE_ECNVRAM:
  5333. if (unlikely(!acpi_ec_read(TP_EC_BACKLIGHT, &lec)))
  5334. return -EIO;
  5335. *status = lec;
  5336. return 0;
  5337. default:
  5338. return -ENXIO;
  5339. }
  5340. }
  5341. /* call with brightness_mutex held! */
  5342. /* do NOT call with illegal backlight level value */
  5343. static int tpacpi_brightness_set_ec(unsigned int value)
  5344. {
  5345. u8 lec = 0;
  5346. if (unlikely(!acpi_ec_read(TP_EC_BACKLIGHT, &lec)))
  5347. return -EIO;
  5348. if (unlikely(!acpi_ec_write(TP_EC_BACKLIGHT,
  5349. (lec & TP_EC_BACKLIGHT_CMDMSK) |
  5350. (value & TP_EC_BACKLIGHT_LVLMSK))))
  5351. return -EIO;
  5352. return 0;
  5353. }
  5354. /* call with brightness_mutex held! */
  5355. static int tpacpi_brightness_set_ucmsstep(unsigned int value)
  5356. {
  5357. int cmos_cmd, inc;
  5358. unsigned int current_value, i;
  5359. current_value = tpacpi_brightness_nvram_get();
  5360. if (value == current_value)
  5361. return 0;
  5362. cmos_cmd = (value > current_value) ?
  5363. TP_CMOS_BRIGHTNESS_UP :
  5364. TP_CMOS_BRIGHTNESS_DOWN;
  5365. inc = (value > current_value) ? 1 : -1;
  5366. for (i = current_value; i != value; i += inc)
  5367. if (issue_thinkpad_cmos_command(cmos_cmd))
  5368. return -EIO;
  5369. return 0;
  5370. }
  5371. /* May return EINTR which can always be mapped to ERESTARTSYS */
  5372. static int brightness_set(unsigned int value)
  5373. {
  5374. int res;
  5375. if (value > bright_maxlvl)
  5376. return -EINVAL;
  5377. vdbg_printk(TPACPI_DBG_BRGHT,
  5378. "set backlight level to %d\n", value);
  5379. res = mutex_lock_killable(&brightness_mutex);
  5380. if (res < 0)
  5381. return res;
  5382. switch (brightness_mode) {
  5383. case TPACPI_BRGHT_MODE_EC:
  5384. case TPACPI_BRGHT_MODE_ECNVRAM:
  5385. res = tpacpi_brightness_set_ec(value);
  5386. break;
  5387. case TPACPI_BRGHT_MODE_UCMS_STEP:
  5388. res = tpacpi_brightness_set_ucmsstep(value);
  5389. break;
  5390. default:
  5391. res = -ENXIO;
  5392. }
  5393. mutex_unlock(&brightness_mutex);
  5394. return res;
  5395. }
  5396. /* sysfs backlight class ----------------------------------------------- */
  5397. static int brightness_update_status(struct backlight_device *bd)
  5398. {
  5399. unsigned int level =
  5400. (bd->props.fb_blank == FB_BLANK_UNBLANK &&
  5401. bd->props.power == FB_BLANK_UNBLANK) ?
  5402. bd->props.brightness : 0;
  5403. dbg_printk(TPACPI_DBG_BRGHT,
  5404. "backlight: attempt to set level to %d\n",
  5405. level);
  5406. /* it is the backlight class's job (caller) to handle
  5407. * EINTR and other errors properly */
  5408. return brightness_set(level);
  5409. }
  5410. static int brightness_get(struct backlight_device *bd)
  5411. {
  5412. int status, res;
  5413. res = mutex_lock_killable(&brightness_mutex);
  5414. if (res < 0)
  5415. return 0;
  5416. res = tpacpi_brightness_get_raw(&status);
  5417. mutex_unlock(&brightness_mutex);
  5418. if (res < 0)
  5419. return 0;
  5420. return status & TP_EC_BACKLIGHT_LVLMSK;
  5421. }
  5422. static void tpacpi_brightness_notify_change(void)
  5423. {
  5424. backlight_force_update(ibm_backlight_device,
  5425. BACKLIGHT_UPDATE_HOTKEY);
  5426. }
  5427. static const struct backlight_ops ibm_backlight_data = {
  5428. .get_brightness = brightness_get,
  5429. .update_status = brightness_update_status,
  5430. };
  5431. /* --------------------------------------------------------------------- */
  5432. /*
  5433. * Call _BCL method of video device. On some ThinkPads this will
  5434. * switch the firmware to the ACPI brightness control mode.
  5435. */
  5436. static int __init tpacpi_query_bcl_levels(acpi_handle handle)
  5437. {
  5438. struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
  5439. union acpi_object *obj;
  5440. struct acpi_device *device, *child;
  5441. int rc;
  5442. if (acpi_bus_get_device(handle, &device))
  5443. return 0;
  5444. rc = 0;
  5445. list_for_each_entry(child, &device->children, node) {
  5446. acpi_status status = acpi_evaluate_object(child->handle, "_BCL",
  5447. NULL, &buffer);
  5448. if (ACPI_FAILURE(status))
  5449. continue;
  5450. obj = (union acpi_object *)buffer.pointer;
  5451. if (!obj || (obj->type != ACPI_TYPE_PACKAGE)) {
  5452. pr_err("Unknown _BCL data, please report this to %s\n",
  5453. TPACPI_MAIL);
  5454. rc = 0;
  5455. } else {
  5456. rc = obj->package.count;
  5457. }
  5458. break;
  5459. }
  5460. kfree(buffer.pointer);
  5461. return rc;
  5462. }
  5463. /*
  5464. * Returns 0 (no ACPI _BCL or _BCL invalid), or size of brightness map
  5465. */
  5466. static unsigned int __init tpacpi_check_std_acpi_brightness_support(void)
  5467. {
  5468. acpi_handle video_device;
  5469. int bcl_levels = 0;
  5470. tpacpi_acpi_handle_locate("video", NULL, &video_device);
  5471. if (video_device)
  5472. bcl_levels = tpacpi_query_bcl_levels(video_device);
  5473. tp_features.bright_acpimode = (bcl_levels > 0);
  5474. return (bcl_levels > 2) ? (bcl_levels - 2) : 0;
  5475. }
  5476. /*
  5477. * These are only useful for models that have only one possibility
  5478. * of GPU. If the BIOS model handles both ATI and Intel, don't use
  5479. * these quirks.
  5480. */
  5481. #define TPACPI_BRGHT_Q_NOEC 0x0001 /* Must NOT use EC HBRV */
  5482. #define TPACPI_BRGHT_Q_EC 0x0002 /* Should or must use EC HBRV */
  5483. #define TPACPI_BRGHT_Q_ASK 0x8000 /* Ask for user report */
  5484. static const struct tpacpi_quirk brightness_quirk_table[] __initconst = {
  5485. /* Models with ATI GPUs known to require ECNVRAM mode */
  5486. TPACPI_Q_IBM('1', 'Y', TPACPI_BRGHT_Q_EC), /* T43/p ATI */
  5487. /* Models with ATI GPUs that can use ECNVRAM */
  5488. TPACPI_Q_IBM('1', 'R', TPACPI_BRGHT_Q_EC), /* R50,51 T40-42 */
  5489. TPACPI_Q_IBM('1', 'Q', TPACPI_BRGHT_Q_ASK|TPACPI_BRGHT_Q_EC),
  5490. TPACPI_Q_IBM('7', '6', TPACPI_BRGHT_Q_EC), /* R52 */
  5491. TPACPI_Q_IBM('7', '8', TPACPI_BRGHT_Q_ASK|TPACPI_BRGHT_Q_EC),
  5492. /* Models with Intel Extreme Graphics 2 */
  5493. TPACPI_Q_IBM('1', 'U', TPACPI_BRGHT_Q_NOEC), /* X40 */
  5494. TPACPI_Q_IBM('1', 'V', TPACPI_BRGHT_Q_ASK|TPACPI_BRGHT_Q_EC),
  5495. TPACPI_Q_IBM('1', 'W', TPACPI_BRGHT_Q_ASK|TPACPI_BRGHT_Q_EC),
  5496. /* Models with Intel GMA900 */
  5497. TPACPI_Q_IBM('7', '0', TPACPI_BRGHT_Q_NOEC), /* T43, R52 */
  5498. TPACPI_Q_IBM('7', '4', TPACPI_BRGHT_Q_NOEC), /* X41 */
  5499. TPACPI_Q_IBM('7', '5', TPACPI_BRGHT_Q_NOEC), /* X41 Tablet */
  5500. };
  5501. /*
  5502. * Returns < 0 for error, otherwise sets tp_features.bright_*
  5503. * and bright_maxlvl.
  5504. */
  5505. static void __init tpacpi_detect_brightness_capabilities(void)
  5506. {
  5507. unsigned int b;
  5508. vdbg_printk(TPACPI_DBG_INIT,
  5509. "detecting firmware brightness interface capabilities\n");
  5510. /* we could run a quirks check here (same table used by
  5511. * brightness_init) if needed */
  5512. /*
  5513. * We always attempt to detect acpi support, so as to switch
  5514. * Lenovo Vista BIOS to ACPI brightness mode even if we are not
  5515. * going to publish a backlight interface
  5516. */
  5517. b = tpacpi_check_std_acpi_brightness_support();
  5518. switch (b) {
  5519. case 16:
  5520. bright_maxlvl = 15;
  5521. break;
  5522. case 8:
  5523. case 0:
  5524. bright_maxlvl = 7;
  5525. break;
  5526. default:
  5527. tp_features.bright_unkfw = 1;
  5528. bright_maxlvl = b - 1;
  5529. }
  5530. pr_debug("detected %u brightness levels\n", bright_maxlvl + 1);
  5531. }
  5532. static int __init brightness_init(struct ibm_init_struct *iibm)
  5533. {
  5534. struct backlight_properties props;
  5535. int b;
  5536. unsigned long quirks;
  5537. vdbg_printk(TPACPI_DBG_INIT, "initializing brightness subdriver\n");
  5538. mutex_init(&brightness_mutex);
  5539. quirks = tpacpi_check_quirks(brightness_quirk_table,
  5540. ARRAY_SIZE(brightness_quirk_table));
  5541. /* tpacpi_detect_brightness_capabilities() must have run already */
  5542. /* if it is unknown, we don't handle it: it wouldn't be safe */
  5543. if (tp_features.bright_unkfw)
  5544. return 1;
  5545. if (!brightness_enable) {
  5546. dbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_BRGHT,
  5547. "brightness support disabled by "
  5548. "module parameter\n");
  5549. return 1;
  5550. }
  5551. if (acpi_video_get_backlight_type() != acpi_backlight_vendor) {
  5552. if (brightness_enable > 1) {
  5553. pr_info("Standard ACPI backlight interface "
  5554. "available, not loading native one\n");
  5555. return 1;
  5556. } else if (brightness_enable == 1) {
  5557. pr_warn("Cannot enable backlight brightness support, "
  5558. "ACPI is already handling it. Refer to the "
  5559. "acpi_backlight kernel parameter.\n");
  5560. return 1;
  5561. }
  5562. } else if (tp_features.bright_acpimode && brightness_enable > 1) {
  5563. pr_notice("Standard ACPI backlight interface not "
  5564. "available, thinkpad_acpi native "
  5565. "brightness control enabled\n");
  5566. }
  5567. /*
  5568. * Check for module parameter bogosity, note that we
  5569. * init brightness_mode to TPACPI_BRGHT_MODE_MAX in order to be
  5570. * able to detect "unspecified"
  5571. */
  5572. if (brightness_mode > TPACPI_BRGHT_MODE_MAX)
  5573. return -EINVAL;
  5574. /* TPACPI_BRGHT_MODE_AUTO not implemented yet, just use default */
  5575. if (brightness_mode == TPACPI_BRGHT_MODE_AUTO ||
  5576. brightness_mode == TPACPI_BRGHT_MODE_MAX) {
  5577. if (quirks & TPACPI_BRGHT_Q_EC)
  5578. brightness_mode = TPACPI_BRGHT_MODE_ECNVRAM;
  5579. else
  5580. brightness_mode = TPACPI_BRGHT_MODE_UCMS_STEP;
  5581. dbg_printk(TPACPI_DBG_BRGHT,
  5582. "driver auto-selected brightness_mode=%d\n",
  5583. brightness_mode);
  5584. }
  5585. /* Safety */
  5586. if (!tpacpi_is_ibm() &&
  5587. (brightness_mode == TPACPI_BRGHT_MODE_ECNVRAM ||
  5588. brightness_mode == TPACPI_BRGHT_MODE_EC))
  5589. return -EINVAL;
  5590. if (tpacpi_brightness_get_raw(&b) < 0)
  5591. return 1;
  5592. memset(&props, 0, sizeof(struct backlight_properties));
  5593. props.type = BACKLIGHT_PLATFORM;
  5594. props.max_brightness = bright_maxlvl;
  5595. props.brightness = b & TP_EC_BACKLIGHT_LVLMSK;
  5596. ibm_backlight_device = backlight_device_register(TPACPI_BACKLIGHT_DEV_NAME,
  5597. NULL, NULL,
  5598. &ibm_backlight_data,
  5599. &props);
  5600. if (IS_ERR(ibm_backlight_device)) {
  5601. int rc = PTR_ERR(ibm_backlight_device);
  5602. ibm_backlight_device = NULL;
  5603. pr_err("Could not register backlight device\n");
  5604. return rc;
  5605. }
  5606. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_BRGHT,
  5607. "brightness is supported\n");
  5608. if (quirks & TPACPI_BRGHT_Q_ASK) {
  5609. pr_notice("brightness: will use unverified default: "
  5610. "brightness_mode=%d\n", brightness_mode);
  5611. pr_notice("brightness: please report to %s whether it works well "
  5612. "or not on your ThinkPad\n", TPACPI_MAIL);
  5613. }
  5614. /* Added by mistake in early 2007. Probably useless, but it could
  5615. * be working around some unknown firmware problem where the value
  5616. * read at startup doesn't match the real hardware state... so leave
  5617. * it in place just in case */
  5618. backlight_update_status(ibm_backlight_device);
  5619. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_BRGHT,
  5620. "brightness: registering brightness hotkeys "
  5621. "as change notification\n");
  5622. tpacpi_hotkey_driver_mask_set(hotkey_driver_mask
  5623. | TP_ACPI_HKEY_BRGHTUP_MASK
  5624. | TP_ACPI_HKEY_BRGHTDWN_MASK);
  5625. return 0;
  5626. }
  5627. static void brightness_suspend(void)
  5628. {
  5629. tpacpi_brightness_checkpoint_nvram();
  5630. }
  5631. static void brightness_shutdown(void)
  5632. {
  5633. tpacpi_brightness_checkpoint_nvram();
  5634. }
  5635. static void brightness_exit(void)
  5636. {
  5637. if (ibm_backlight_device) {
  5638. vdbg_printk(TPACPI_DBG_EXIT | TPACPI_DBG_BRGHT,
  5639. "calling backlight_device_unregister()\n");
  5640. backlight_device_unregister(ibm_backlight_device);
  5641. }
  5642. tpacpi_brightness_checkpoint_nvram();
  5643. }
  5644. static int brightness_read(struct seq_file *m)
  5645. {
  5646. int level;
  5647. level = brightness_get(NULL);
  5648. if (level < 0) {
  5649. seq_printf(m, "level:\t\tunreadable\n");
  5650. } else {
  5651. seq_printf(m, "level:\t\t%d\n", level);
  5652. seq_printf(m, "commands:\tup, down\n");
  5653. seq_printf(m, "commands:\tlevel <level> (<level> is 0-%d)\n",
  5654. bright_maxlvl);
  5655. }
  5656. return 0;
  5657. }
  5658. static int brightness_write(char *buf)
  5659. {
  5660. int level;
  5661. int rc;
  5662. char *cmd;
  5663. level = brightness_get(NULL);
  5664. if (level < 0)
  5665. return level;
  5666. while ((cmd = next_cmd(&buf))) {
  5667. if (strlencmp(cmd, "up") == 0) {
  5668. if (level < bright_maxlvl)
  5669. level++;
  5670. } else if (strlencmp(cmd, "down") == 0) {
  5671. if (level > 0)
  5672. level--;
  5673. } else if (sscanf(cmd, "level %d", &level) == 1 &&
  5674. level >= 0 && level <= bright_maxlvl) {
  5675. /* new level set */
  5676. } else
  5677. return -EINVAL;
  5678. }
  5679. tpacpi_disclose_usertask("procfs brightness",
  5680. "set level to %d\n", level);
  5681. /*
  5682. * Now we know what the final level should be, so we try to set it.
  5683. * Doing it this way makes the syscall restartable in case of EINTR
  5684. */
  5685. rc = brightness_set(level);
  5686. if (!rc && ibm_backlight_device)
  5687. backlight_force_update(ibm_backlight_device,
  5688. BACKLIGHT_UPDATE_SYSFS);
  5689. return (rc == -EINTR) ? -ERESTARTSYS : rc;
  5690. }
  5691. static struct ibm_struct brightness_driver_data = {
  5692. .name = "brightness",
  5693. .read = brightness_read,
  5694. .write = brightness_write,
  5695. .exit = brightness_exit,
  5696. .suspend = brightness_suspend,
  5697. .shutdown = brightness_shutdown,
  5698. };
  5699. /*************************************************************************
  5700. * Volume subdriver
  5701. */
  5702. /*
  5703. * IBM ThinkPads have a simple volume controller with MUTE gating.
  5704. * Very early Lenovo ThinkPads follow the IBM ThinkPad spec.
  5705. *
  5706. * Since the *61 series (and probably also the later *60 series), Lenovo
  5707. * ThinkPads only implement the MUTE gate.
  5708. *
  5709. * EC register 0x30
  5710. * Bit 6: MUTE (1 mutes sound)
  5711. * Bit 3-0: Volume
  5712. * Other bits should be zero as far as we know.
  5713. *
  5714. * This is also stored in CMOS NVRAM, byte 0x60, bit 6 (MUTE), and
  5715. * bits 3-0 (volume). Other bits in NVRAM may have other functions,
  5716. * such as bit 7 which is used to detect repeated presses of MUTE,
  5717. * and we leave them unchanged.
  5718. *
  5719. * On newer Lenovo ThinkPads, the EC can automatically change the volume
  5720. * in response to user input. Unfortunately, this rarely works well.
  5721. * The laptop changes the state of its internal MUTE gate and, on some
  5722. * models, sends KEY_MUTE, causing any user code that responds to the
  5723. * mute button to get confused. The hardware MUTE gate is also
  5724. * unnecessary, since user code can handle the mute button without
  5725. * kernel or EC help.
  5726. *
  5727. * To avoid confusing userspace, we simply disable all EC-based mute
  5728. * and volume controls when possible.
  5729. */
  5730. #ifdef CONFIG_THINKPAD_ACPI_ALSA_SUPPORT
  5731. #define TPACPI_ALSA_DRVNAME "ThinkPad EC"
  5732. #define TPACPI_ALSA_SHRTNAME "ThinkPad Console Audio Control"
  5733. #define TPACPI_ALSA_MIXERNAME TPACPI_ALSA_SHRTNAME
  5734. #if SNDRV_CARDS <= 32
  5735. #define DEFAULT_ALSA_IDX ~((1 << (SNDRV_CARDS - 3)) - 1)
  5736. #else
  5737. #define DEFAULT_ALSA_IDX ~((1 << (32 - 3)) - 1)
  5738. #endif
  5739. static int alsa_index = DEFAULT_ALSA_IDX; /* last three slots */
  5740. static char *alsa_id = "ThinkPadEC";
  5741. static bool alsa_enable = SNDRV_DEFAULT_ENABLE1;
  5742. struct tpacpi_alsa_data {
  5743. struct snd_card *card;
  5744. struct snd_ctl_elem_id *ctl_mute_id;
  5745. struct snd_ctl_elem_id *ctl_vol_id;
  5746. };
  5747. static struct snd_card *alsa_card;
  5748. enum {
  5749. TP_EC_AUDIO = 0x30,
  5750. /* TP_EC_AUDIO bits */
  5751. TP_EC_AUDIO_MUTESW = 6,
  5752. /* TP_EC_AUDIO bitmasks */
  5753. TP_EC_AUDIO_LVL_MSK = 0x0F,
  5754. TP_EC_AUDIO_MUTESW_MSK = (1 << TP_EC_AUDIO_MUTESW),
  5755. /* Maximum volume */
  5756. TP_EC_VOLUME_MAX = 14,
  5757. };
  5758. enum tpacpi_volume_access_mode {
  5759. TPACPI_VOL_MODE_AUTO = 0, /* Not implemented yet */
  5760. TPACPI_VOL_MODE_EC, /* Pure EC control */
  5761. TPACPI_VOL_MODE_UCMS_STEP, /* UCMS step-based control: N/A */
  5762. TPACPI_VOL_MODE_ECNVRAM, /* EC control w/ NVRAM store */
  5763. TPACPI_VOL_MODE_MAX
  5764. };
  5765. enum tpacpi_volume_capabilities {
  5766. TPACPI_VOL_CAP_AUTO = 0, /* Use white/blacklist */
  5767. TPACPI_VOL_CAP_VOLMUTE, /* Output vol and mute */
  5768. TPACPI_VOL_CAP_MUTEONLY, /* Output mute only */
  5769. TPACPI_VOL_CAP_MAX
  5770. };
  5771. enum tpacpi_mute_btn_mode {
  5772. TP_EC_MUTE_BTN_LATCH = 0, /* Mute mutes; up/down unmutes */
  5773. /* We don't know what mode 1 is. */
  5774. TP_EC_MUTE_BTN_NONE = 2, /* Mute and up/down are just keys */
  5775. TP_EC_MUTE_BTN_TOGGLE = 3, /* Mute toggles; up/down unmutes */
  5776. };
  5777. static enum tpacpi_volume_access_mode volume_mode =
  5778. TPACPI_VOL_MODE_MAX;
  5779. static enum tpacpi_volume_capabilities volume_capabilities;
  5780. static bool volume_control_allowed;
  5781. static bool software_mute_requested = true;
  5782. static bool software_mute_active;
  5783. static int software_mute_orig_mode;
  5784. /*
  5785. * Used to syncronize writers to TP_EC_AUDIO and
  5786. * TP_NVRAM_ADDR_MIXER, as we need to do read-modify-write
  5787. */
  5788. static struct mutex volume_mutex;
  5789. static void tpacpi_volume_checkpoint_nvram(void)
  5790. {
  5791. u8 lec = 0;
  5792. u8 b_nvram;
  5793. u8 ec_mask;
  5794. if (volume_mode != TPACPI_VOL_MODE_ECNVRAM)
  5795. return;
  5796. if (!volume_control_allowed)
  5797. return;
  5798. if (software_mute_active)
  5799. return;
  5800. vdbg_printk(TPACPI_DBG_MIXER,
  5801. "trying to checkpoint mixer state to NVRAM...\n");
  5802. if (tp_features.mixer_no_level_control)
  5803. ec_mask = TP_EC_AUDIO_MUTESW_MSK;
  5804. else
  5805. ec_mask = TP_EC_AUDIO_MUTESW_MSK | TP_EC_AUDIO_LVL_MSK;
  5806. if (mutex_lock_killable(&volume_mutex) < 0)
  5807. return;
  5808. if (unlikely(!acpi_ec_read(TP_EC_AUDIO, &lec)))
  5809. goto unlock;
  5810. lec &= ec_mask;
  5811. b_nvram = nvram_read_byte(TP_NVRAM_ADDR_MIXER);
  5812. if (lec != (b_nvram & ec_mask)) {
  5813. /* NVRAM needs update */
  5814. b_nvram &= ~ec_mask;
  5815. b_nvram |= lec;
  5816. nvram_write_byte(b_nvram, TP_NVRAM_ADDR_MIXER);
  5817. dbg_printk(TPACPI_DBG_MIXER,
  5818. "updated NVRAM mixer status to 0x%02x (0x%02x)\n",
  5819. (unsigned int) lec, (unsigned int) b_nvram);
  5820. } else {
  5821. vdbg_printk(TPACPI_DBG_MIXER,
  5822. "NVRAM mixer status already is 0x%02x (0x%02x)\n",
  5823. (unsigned int) lec, (unsigned int) b_nvram);
  5824. }
  5825. unlock:
  5826. mutex_unlock(&volume_mutex);
  5827. }
  5828. static int volume_get_status_ec(u8 *status)
  5829. {
  5830. u8 s;
  5831. if (!acpi_ec_read(TP_EC_AUDIO, &s))
  5832. return -EIO;
  5833. *status = s;
  5834. dbg_printk(TPACPI_DBG_MIXER, "status 0x%02x\n", s);
  5835. return 0;
  5836. }
  5837. static int volume_get_status(u8 *status)
  5838. {
  5839. return volume_get_status_ec(status);
  5840. }
  5841. static int volume_set_status_ec(const u8 status)
  5842. {
  5843. if (!acpi_ec_write(TP_EC_AUDIO, status))
  5844. return -EIO;
  5845. dbg_printk(TPACPI_DBG_MIXER, "set EC mixer to 0x%02x\n", status);
  5846. /*
  5847. * On X200s, and possibly on others, it can take a while for
  5848. * reads to become correct.
  5849. */
  5850. msleep(1);
  5851. return 0;
  5852. }
  5853. static int volume_set_status(const u8 status)
  5854. {
  5855. return volume_set_status_ec(status);
  5856. }
  5857. /* returns < 0 on error, 0 on no change, 1 on change */
  5858. static int __volume_set_mute_ec(const bool mute)
  5859. {
  5860. int rc;
  5861. u8 s, n;
  5862. if (mutex_lock_killable(&volume_mutex) < 0)
  5863. return -EINTR;
  5864. rc = volume_get_status_ec(&s);
  5865. if (rc)
  5866. goto unlock;
  5867. n = (mute) ? s | TP_EC_AUDIO_MUTESW_MSK :
  5868. s & ~TP_EC_AUDIO_MUTESW_MSK;
  5869. if (n != s) {
  5870. rc = volume_set_status_ec(n);
  5871. if (!rc)
  5872. rc = 1;
  5873. }
  5874. unlock:
  5875. mutex_unlock(&volume_mutex);
  5876. return rc;
  5877. }
  5878. static int volume_alsa_set_mute(const bool mute)
  5879. {
  5880. dbg_printk(TPACPI_DBG_MIXER, "ALSA: trying to %smute\n",
  5881. (mute) ? "" : "un");
  5882. return __volume_set_mute_ec(mute);
  5883. }
  5884. static int volume_set_mute(const bool mute)
  5885. {
  5886. int rc;
  5887. dbg_printk(TPACPI_DBG_MIXER, "trying to %smute\n",
  5888. (mute) ? "" : "un");
  5889. rc = __volume_set_mute_ec(mute);
  5890. return (rc < 0) ? rc : 0;
  5891. }
  5892. /* returns < 0 on error, 0 on no change, 1 on change */
  5893. static int __volume_set_volume_ec(const u8 vol)
  5894. {
  5895. int rc;
  5896. u8 s, n;
  5897. if (vol > TP_EC_VOLUME_MAX)
  5898. return -EINVAL;
  5899. if (mutex_lock_killable(&volume_mutex) < 0)
  5900. return -EINTR;
  5901. rc = volume_get_status_ec(&s);
  5902. if (rc)
  5903. goto unlock;
  5904. n = (s & ~TP_EC_AUDIO_LVL_MSK) | vol;
  5905. if (n != s) {
  5906. rc = volume_set_status_ec(n);
  5907. if (!rc)
  5908. rc = 1;
  5909. }
  5910. unlock:
  5911. mutex_unlock(&volume_mutex);
  5912. return rc;
  5913. }
  5914. static int volume_set_software_mute(bool startup)
  5915. {
  5916. int result;
  5917. if (!tpacpi_is_lenovo())
  5918. return -ENODEV;
  5919. if (startup) {
  5920. if (!acpi_evalf(ec_handle, &software_mute_orig_mode,
  5921. "HAUM", "qd"))
  5922. return -EIO;
  5923. dbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_MIXER,
  5924. "Initial HAUM setting was %d\n",
  5925. software_mute_orig_mode);
  5926. }
  5927. if (!acpi_evalf(ec_handle, &result, "SAUM", "qdd",
  5928. (int)TP_EC_MUTE_BTN_NONE))
  5929. return -EIO;
  5930. if (result != TP_EC_MUTE_BTN_NONE)
  5931. pr_warn("Unexpected SAUM result %d\n",
  5932. result);
  5933. /*
  5934. * In software mute mode, the standard codec controls take
  5935. * precendence, so we unmute the ThinkPad HW switch at
  5936. * startup. Just on case there are SAUM-capable ThinkPads
  5937. * with level controls, set max HW volume as well.
  5938. */
  5939. if (tp_features.mixer_no_level_control)
  5940. result = volume_set_mute(false);
  5941. else
  5942. result = volume_set_status(TP_EC_VOLUME_MAX);
  5943. if (result != 0)
  5944. pr_warn("Failed to unmute the HW mute switch\n");
  5945. return 0;
  5946. }
  5947. static void volume_exit_software_mute(void)
  5948. {
  5949. int r;
  5950. if (!acpi_evalf(ec_handle, &r, "SAUM", "qdd", software_mute_orig_mode)
  5951. || r != software_mute_orig_mode)
  5952. pr_warn("Failed to restore mute mode\n");
  5953. }
  5954. static int volume_alsa_set_volume(const u8 vol)
  5955. {
  5956. dbg_printk(TPACPI_DBG_MIXER,
  5957. "ALSA: trying to set volume level to %hu\n", vol);
  5958. return __volume_set_volume_ec(vol);
  5959. }
  5960. static void volume_alsa_notify_change(void)
  5961. {
  5962. struct tpacpi_alsa_data *d;
  5963. if (alsa_card && alsa_card->private_data) {
  5964. d = alsa_card->private_data;
  5965. if (d->ctl_mute_id)
  5966. snd_ctl_notify(alsa_card,
  5967. SNDRV_CTL_EVENT_MASK_VALUE,
  5968. d->ctl_mute_id);
  5969. if (d->ctl_vol_id)
  5970. snd_ctl_notify(alsa_card,
  5971. SNDRV_CTL_EVENT_MASK_VALUE,
  5972. d->ctl_vol_id);
  5973. }
  5974. }
  5975. static int volume_alsa_vol_info(struct snd_kcontrol *kcontrol,
  5976. struct snd_ctl_elem_info *uinfo)
  5977. {
  5978. uinfo->type = SNDRV_CTL_ELEM_TYPE_INTEGER;
  5979. uinfo->count = 1;
  5980. uinfo->value.integer.min = 0;
  5981. uinfo->value.integer.max = TP_EC_VOLUME_MAX;
  5982. return 0;
  5983. }
  5984. static int volume_alsa_vol_get(struct snd_kcontrol *kcontrol,
  5985. struct snd_ctl_elem_value *ucontrol)
  5986. {
  5987. u8 s;
  5988. int rc;
  5989. rc = volume_get_status(&s);
  5990. if (rc < 0)
  5991. return rc;
  5992. ucontrol->value.integer.value[0] = s & TP_EC_AUDIO_LVL_MSK;
  5993. return 0;
  5994. }
  5995. static int volume_alsa_vol_put(struct snd_kcontrol *kcontrol,
  5996. struct snd_ctl_elem_value *ucontrol)
  5997. {
  5998. tpacpi_disclose_usertask("ALSA", "set volume to %ld\n",
  5999. ucontrol->value.integer.value[0]);
  6000. return volume_alsa_set_volume(ucontrol->value.integer.value[0]);
  6001. }
  6002. #define volume_alsa_mute_info snd_ctl_boolean_mono_info
  6003. static int volume_alsa_mute_get(struct snd_kcontrol *kcontrol,
  6004. struct snd_ctl_elem_value *ucontrol)
  6005. {
  6006. u8 s;
  6007. int rc;
  6008. rc = volume_get_status(&s);
  6009. if (rc < 0)
  6010. return rc;
  6011. ucontrol->value.integer.value[0] =
  6012. (s & TP_EC_AUDIO_MUTESW_MSK) ? 0 : 1;
  6013. return 0;
  6014. }
  6015. static int volume_alsa_mute_put(struct snd_kcontrol *kcontrol,
  6016. struct snd_ctl_elem_value *ucontrol)
  6017. {
  6018. tpacpi_disclose_usertask("ALSA", "%smute\n",
  6019. ucontrol->value.integer.value[0] ?
  6020. "un" : "");
  6021. return volume_alsa_set_mute(!ucontrol->value.integer.value[0]);
  6022. }
  6023. static struct snd_kcontrol_new volume_alsa_control_vol __initdata = {
  6024. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  6025. .name = "Console Playback Volume",
  6026. .index = 0,
  6027. .access = SNDRV_CTL_ELEM_ACCESS_READ,
  6028. .info = volume_alsa_vol_info,
  6029. .get = volume_alsa_vol_get,
  6030. };
  6031. static struct snd_kcontrol_new volume_alsa_control_mute __initdata = {
  6032. .iface = SNDRV_CTL_ELEM_IFACE_MIXER,
  6033. .name = "Console Playback Switch",
  6034. .index = 0,
  6035. .access = SNDRV_CTL_ELEM_ACCESS_READ,
  6036. .info = volume_alsa_mute_info,
  6037. .get = volume_alsa_mute_get,
  6038. };
  6039. static void volume_suspend(void)
  6040. {
  6041. tpacpi_volume_checkpoint_nvram();
  6042. }
  6043. static void volume_resume(void)
  6044. {
  6045. if (software_mute_active) {
  6046. if (volume_set_software_mute(false) < 0)
  6047. pr_warn("Failed to restore software mute\n");
  6048. } else {
  6049. volume_alsa_notify_change();
  6050. }
  6051. }
  6052. static void volume_shutdown(void)
  6053. {
  6054. tpacpi_volume_checkpoint_nvram();
  6055. }
  6056. static void volume_exit(void)
  6057. {
  6058. if (alsa_card) {
  6059. snd_card_free(alsa_card);
  6060. alsa_card = NULL;
  6061. }
  6062. tpacpi_volume_checkpoint_nvram();
  6063. if (software_mute_active)
  6064. volume_exit_software_mute();
  6065. }
  6066. static int __init volume_create_alsa_mixer(void)
  6067. {
  6068. struct snd_card *card;
  6069. struct tpacpi_alsa_data *data;
  6070. struct snd_kcontrol *ctl_vol;
  6071. struct snd_kcontrol *ctl_mute;
  6072. int rc;
  6073. rc = snd_card_new(&tpacpi_pdev->dev,
  6074. alsa_index, alsa_id, THIS_MODULE,
  6075. sizeof(struct tpacpi_alsa_data), &card);
  6076. if (rc < 0 || !card) {
  6077. pr_err("Failed to create ALSA card structures: %d\n", rc);
  6078. return 1;
  6079. }
  6080. BUG_ON(!card->private_data);
  6081. data = card->private_data;
  6082. data->card = card;
  6083. strlcpy(card->driver, TPACPI_ALSA_DRVNAME,
  6084. sizeof(card->driver));
  6085. strlcpy(card->shortname, TPACPI_ALSA_SHRTNAME,
  6086. sizeof(card->shortname));
  6087. snprintf(card->mixername, sizeof(card->mixername), "ThinkPad EC %s",
  6088. (thinkpad_id.ec_version_str) ?
  6089. thinkpad_id.ec_version_str : "(unknown)");
  6090. snprintf(card->longname, sizeof(card->longname),
  6091. "%s at EC reg 0x%02x, fw %s", card->shortname, TP_EC_AUDIO,
  6092. (thinkpad_id.ec_version_str) ?
  6093. thinkpad_id.ec_version_str : "unknown");
  6094. if (volume_control_allowed) {
  6095. volume_alsa_control_vol.put = volume_alsa_vol_put;
  6096. volume_alsa_control_vol.access =
  6097. SNDRV_CTL_ELEM_ACCESS_READWRITE;
  6098. volume_alsa_control_mute.put = volume_alsa_mute_put;
  6099. volume_alsa_control_mute.access =
  6100. SNDRV_CTL_ELEM_ACCESS_READWRITE;
  6101. }
  6102. if (!tp_features.mixer_no_level_control) {
  6103. ctl_vol = snd_ctl_new1(&volume_alsa_control_vol, NULL);
  6104. rc = snd_ctl_add(card, ctl_vol);
  6105. if (rc < 0) {
  6106. pr_err("Failed to create ALSA volume control: %d\n",
  6107. rc);
  6108. goto err_exit;
  6109. }
  6110. data->ctl_vol_id = &ctl_vol->id;
  6111. }
  6112. ctl_mute = snd_ctl_new1(&volume_alsa_control_mute, NULL);
  6113. rc = snd_ctl_add(card, ctl_mute);
  6114. if (rc < 0) {
  6115. pr_err("Failed to create ALSA mute control: %d\n", rc);
  6116. goto err_exit;
  6117. }
  6118. data->ctl_mute_id = &ctl_mute->id;
  6119. rc = snd_card_register(card);
  6120. if (rc < 0) {
  6121. pr_err("Failed to register ALSA card: %d\n", rc);
  6122. goto err_exit;
  6123. }
  6124. alsa_card = card;
  6125. return 0;
  6126. err_exit:
  6127. snd_card_free(card);
  6128. return 1;
  6129. }
  6130. #define TPACPI_VOL_Q_MUTEONLY 0x0001 /* Mute-only control available */
  6131. #define TPACPI_VOL_Q_LEVEL 0x0002 /* Volume control available */
  6132. static const struct tpacpi_quirk volume_quirk_table[] __initconst = {
  6133. /* Whitelist volume level on all IBM by default */
  6134. { .vendor = PCI_VENDOR_ID_IBM,
  6135. .bios = TPACPI_MATCH_ANY,
  6136. .ec = TPACPI_MATCH_ANY,
  6137. .quirks = TPACPI_VOL_Q_LEVEL },
  6138. /* Lenovo models with volume control (needs confirmation) */
  6139. TPACPI_QEC_LNV('7', 'C', TPACPI_VOL_Q_LEVEL), /* R60/i */
  6140. TPACPI_QEC_LNV('7', 'E', TPACPI_VOL_Q_LEVEL), /* R60e/i */
  6141. TPACPI_QEC_LNV('7', '9', TPACPI_VOL_Q_LEVEL), /* T60/p */
  6142. TPACPI_QEC_LNV('7', 'B', TPACPI_VOL_Q_LEVEL), /* X60/s */
  6143. TPACPI_QEC_LNV('7', 'J', TPACPI_VOL_Q_LEVEL), /* X60t */
  6144. TPACPI_QEC_LNV('7', '7', TPACPI_VOL_Q_LEVEL), /* Z60 */
  6145. TPACPI_QEC_LNV('7', 'F', TPACPI_VOL_Q_LEVEL), /* Z61 */
  6146. /* Whitelist mute-only on all Lenovo by default */
  6147. { .vendor = PCI_VENDOR_ID_LENOVO,
  6148. .bios = TPACPI_MATCH_ANY,
  6149. .ec = TPACPI_MATCH_ANY,
  6150. .quirks = TPACPI_VOL_Q_MUTEONLY }
  6151. };
  6152. static int __init volume_init(struct ibm_init_struct *iibm)
  6153. {
  6154. unsigned long quirks;
  6155. int rc;
  6156. vdbg_printk(TPACPI_DBG_INIT, "initializing volume subdriver\n");
  6157. mutex_init(&volume_mutex);
  6158. /*
  6159. * Check for module parameter bogosity, note that we
  6160. * init volume_mode to TPACPI_VOL_MODE_MAX in order to be
  6161. * able to detect "unspecified"
  6162. */
  6163. if (volume_mode > TPACPI_VOL_MODE_MAX)
  6164. return -EINVAL;
  6165. if (volume_mode == TPACPI_VOL_MODE_UCMS_STEP) {
  6166. pr_err("UCMS step volume mode not implemented, "
  6167. "please contact %s\n", TPACPI_MAIL);
  6168. return 1;
  6169. }
  6170. if (volume_capabilities >= TPACPI_VOL_CAP_MAX)
  6171. return -EINVAL;
  6172. /*
  6173. * The ALSA mixer is our primary interface.
  6174. * When disabled, don't install the subdriver at all
  6175. */
  6176. if (!alsa_enable) {
  6177. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_MIXER,
  6178. "ALSA mixer disabled by parameter, "
  6179. "not loading volume subdriver...\n");
  6180. return 1;
  6181. }
  6182. quirks = tpacpi_check_quirks(volume_quirk_table,
  6183. ARRAY_SIZE(volume_quirk_table));
  6184. switch (volume_capabilities) {
  6185. case TPACPI_VOL_CAP_AUTO:
  6186. if (quirks & TPACPI_VOL_Q_MUTEONLY)
  6187. tp_features.mixer_no_level_control = 1;
  6188. else if (quirks & TPACPI_VOL_Q_LEVEL)
  6189. tp_features.mixer_no_level_control = 0;
  6190. else
  6191. return 1; /* no mixer */
  6192. break;
  6193. case TPACPI_VOL_CAP_VOLMUTE:
  6194. tp_features.mixer_no_level_control = 0;
  6195. break;
  6196. case TPACPI_VOL_CAP_MUTEONLY:
  6197. tp_features.mixer_no_level_control = 1;
  6198. break;
  6199. default:
  6200. return 1;
  6201. }
  6202. if (volume_capabilities != TPACPI_VOL_CAP_AUTO)
  6203. dbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_MIXER,
  6204. "using user-supplied volume_capabilities=%d\n",
  6205. volume_capabilities);
  6206. if (volume_mode == TPACPI_VOL_MODE_AUTO ||
  6207. volume_mode == TPACPI_VOL_MODE_MAX) {
  6208. volume_mode = TPACPI_VOL_MODE_ECNVRAM;
  6209. dbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_MIXER,
  6210. "driver auto-selected volume_mode=%d\n",
  6211. volume_mode);
  6212. } else {
  6213. dbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_MIXER,
  6214. "using user-supplied volume_mode=%d\n",
  6215. volume_mode);
  6216. }
  6217. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_MIXER,
  6218. "mute is supported, volume control is %s\n",
  6219. str_supported(!tp_features.mixer_no_level_control));
  6220. if (software_mute_requested && volume_set_software_mute(true) == 0) {
  6221. software_mute_active = true;
  6222. } else {
  6223. rc = volume_create_alsa_mixer();
  6224. if (rc) {
  6225. pr_err("Could not create the ALSA mixer interface\n");
  6226. return rc;
  6227. }
  6228. pr_info("Console audio control enabled, mode: %s\n",
  6229. (volume_control_allowed) ?
  6230. "override (read/write)" :
  6231. "monitor (read only)");
  6232. }
  6233. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_MIXER,
  6234. "registering volume hotkeys as change notification\n");
  6235. tpacpi_hotkey_driver_mask_set(hotkey_driver_mask
  6236. | TP_ACPI_HKEY_VOLUP_MASK
  6237. | TP_ACPI_HKEY_VOLDWN_MASK
  6238. | TP_ACPI_HKEY_MUTE_MASK);
  6239. return 0;
  6240. }
  6241. static int volume_read(struct seq_file *m)
  6242. {
  6243. u8 status;
  6244. if (volume_get_status(&status) < 0) {
  6245. seq_printf(m, "level:\t\tunreadable\n");
  6246. } else {
  6247. if (tp_features.mixer_no_level_control)
  6248. seq_printf(m, "level:\t\tunsupported\n");
  6249. else
  6250. seq_printf(m, "level:\t\t%d\n",
  6251. status & TP_EC_AUDIO_LVL_MSK);
  6252. seq_printf(m, "mute:\t\t%s\n",
  6253. onoff(status, TP_EC_AUDIO_MUTESW));
  6254. if (volume_control_allowed) {
  6255. seq_printf(m, "commands:\tunmute, mute\n");
  6256. if (!tp_features.mixer_no_level_control) {
  6257. seq_printf(m,
  6258. "commands:\tup, down\n");
  6259. seq_printf(m,
  6260. "commands:\tlevel <level>"
  6261. " (<level> is 0-%d)\n",
  6262. TP_EC_VOLUME_MAX);
  6263. }
  6264. }
  6265. }
  6266. return 0;
  6267. }
  6268. static int volume_write(char *buf)
  6269. {
  6270. u8 s;
  6271. u8 new_level, new_mute;
  6272. int l;
  6273. char *cmd;
  6274. int rc;
  6275. /*
  6276. * We do allow volume control at driver startup, so that the
  6277. * user can set initial state through the volume=... parameter hack.
  6278. */
  6279. if (!volume_control_allowed && tpacpi_lifecycle != TPACPI_LIFE_INIT) {
  6280. if (unlikely(!tp_warned.volume_ctrl_forbidden)) {
  6281. tp_warned.volume_ctrl_forbidden = 1;
  6282. pr_notice("Console audio control in monitor mode, "
  6283. "changes are not allowed\n");
  6284. pr_notice("Use the volume_control=1 module parameter "
  6285. "to enable volume control\n");
  6286. }
  6287. return -EPERM;
  6288. }
  6289. rc = volume_get_status(&s);
  6290. if (rc < 0)
  6291. return rc;
  6292. new_level = s & TP_EC_AUDIO_LVL_MSK;
  6293. new_mute = s & TP_EC_AUDIO_MUTESW_MSK;
  6294. while ((cmd = next_cmd(&buf))) {
  6295. if (!tp_features.mixer_no_level_control) {
  6296. if (strlencmp(cmd, "up") == 0) {
  6297. if (new_mute)
  6298. new_mute = 0;
  6299. else if (new_level < TP_EC_VOLUME_MAX)
  6300. new_level++;
  6301. continue;
  6302. } else if (strlencmp(cmd, "down") == 0) {
  6303. if (new_mute)
  6304. new_mute = 0;
  6305. else if (new_level > 0)
  6306. new_level--;
  6307. continue;
  6308. } else if (sscanf(cmd, "level %u", &l) == 1 &&
  6309. l >= 0 && l <= TP_EC_VOLUME_MAX) {
  6310. new_level = l;
  6311. continue;
  6312. }
  6313. }
  6314. if (strlencmp(cmd, "mute") == 0)
  6315. new_mute = TP_EC_AUDIO_MUTESW_MSK;
  6316. else if (strlencmp(cmd, "unmute") == 0)
  6317. new_mute = 0;
  6318. else
  6319. return -EINVAL;
  6320. }
  6321. if (tp_features.mixer_no_level_control) {
  6322. tpacpi_disclose_usertask("procfs volume", "%smute\n",
  6323. new_mute ? "" : "un");
  6324. rc = volume_set_mute(!!new_mute);
  6325. } else {
  6326. tpacpi_disclose_usertask("procfs volume",
  6327. "%smute and set level to %d\n",
  6328. new_mute ? "" : "un", new_level);
  6329. rc = volume_set_status(new_mute | new_level);
  6330. }
  6331. volume_alsa_notify_change();
  6332. return (rc == -EINTR) ? -ERESTARTSYS : rc;
  6333. }
  6334. static struct ibm_struct volume_driver_data = {
  6335. .name = "volume",
  6336. .read = volume_read,
  6337. .write = volume_write,
  6338. .exit = volume_exit,
  6339. .suspend = volume_suspend,
  6340. .resume = volume_resume,
  6341. .shutdown = volume_shutdown,
  6342. };
  6343. #else /* !CONFIG_THINKPAD_ACPI_ALSA_SUPPORT */
  6344. #define alsa_card NULL
  6345. static void inline volume_alsa_notify_change(void)
  6346. {
  6347. }
  6348. static int __init volume_init(struct ibm_init_struct *iibm)
  6349. {
  6350. pr_info("volume: disabled as there is no ALSA support in this kernel\n");
  6351. return 1;
  6352. }
  6353. static struct ibm_struct volume_driver_data = {
  6354. .name = "volume",
  6355. };
  6356. #endif /* CONFIG_THINKPAD_ACPI_ALSA_SUPPORT */
  6357. /*************************************************************************
  6358. * Fan subdriver
  6359. */
  6360. /*
  6361. * FAN ACCESS MODES
  6362. *
  6363. * TPACPI_FAN_RD_ACPI_GFAN:
  6364. * ACPI GFAN method: returns fan level
  6365. *
  6366. * see TPACPI_FAN_WR_ACPI_SFAN
  6367. * EC 0x2f (HFSP) not available if GFAN exists
  6368. *
  6369. * TPACPI_FAN_WR_ACPI_SFAN:
  6370. * ACPI SFAN method: sets fan level, 0 (stop) to 7 (max)
  6371. *
  6372. * EC 0x2f (HFSP) might be available *for reading*, but do not use
  6373. * it for writing.
  6374. *
  6375. * TPACPI_FAN_WR_TPEC:
  6376. * ThinkPad EC register 0x2f (HFSP): fan control loop mode
  6377. * Supported on almost all ThinkPads
  6378. *
  6379. * Fan speed changes of any sort (including those caused by the
  6380. * disengaged mode) are usually done slowly by the firmware as the
  6381. * maximum amount of fan duty cycle change per second seems to be
  6382. * limited.
  6383. *
  6384. * Reading is not available if GFAN exists.
  6385. * Writing is not available if SFAN exists.
  6386. *
  6387. * Bits
  6388. * 7 automatic mode engaged;
  6389. * (default operation mode of the ThinkPad)
  6390. * fan level is ignored in this mode.
  6391. * 6 full speed mode (takes precedence over bit 7);
  6392. * not available on all thinkpads. May disable
  6393. * the tachometer while the fan controller ramps up
  6394. * the speed (which can take up to a few *minutes*).
  6395. * Speeds up fan to 100% duty-cycle, which is far above
  6396. * the standard RPM levels. It is not impossible that
  6397. * it could cause hardware damage.
  6398. * 5-3 unused in some models. Extra bits for fan level
  6399. * in others, but still useless as all values above
  6400. * 7 map to the same speed as level 7 in these models.
  6401. * 2-0 fan level (0..7 usually)
  6402. * 0x00 = stop
  6403. * 0x07 = max (set when temperatures critical)
  6404. * Some ThinkPads may have other levels, see
  6405. * TPACPI_FAN_WR_ACPI_FANS (X31/X40/X41)
  6406. *
  6407. * FIRMWARE BUG: on some models, EC 0x2f might not be initialized at
  6408. * boot. Apparently the EC does not initialize it, so unless ACPI DSDT
  6409. * does so, its initial value is meaningless (0x07).
  6410. *
  6411. * For firmware bugs, refer to:
  6412. * http://thinkwiki.org/wiki/Embedded_Controller_Firmware#Firmware_Issues
  6413. *
  6414. * ----
  6415. *
  6416. * ThinkPad EC register 0x84 (LSB), 0x85 (MSB):
  6417. * Main fan tachometer reading (in RPM)
  6418. *
  6419. * This register is present on all ThinkPads with a new-style EC, and
  6420. * it is known not to be present on the A21m/e, and T22, as there is
  6421. * something else in offset 0x84 according to the ACPI DSDT. Other
  6422. * ThinkPads from this same time period (and earlier) probably lack the
  6423. * tachometer as well.
  6424. *
  6425. * Unfortunately a lot of ThinkPads with new-style ECs but whose firmware
  6426. * was never fixed by IBM to report the EC firmware version string
  6427. * probably support the tachometer (like the early X models), so
  6428. * detecting it is quite hard. We need more data to know for sure.
  6429. *
  6430. * FIRMWARE BUG: always read 0x84 first, otherwise incorrect readings
  6431. * might result.
  6432. *
  6433. * FIRMWARE BUG: may go stale while the EC is switching to full speed
  6434. * mode.
  6435. *
  6436. * For firmware bugs, refer to:
  6437. * http://thinkwiki.org/wiki/Embedded_Controller_Firmware#Firmware_Issues
  6438. *
  6439. * ----
  6440. *
  6441. * ThinkPad EC register 0x31 bit 0 (only on select models)
  6442. *
  6443. * When bit 0 of EC register 0x31 is zero, the tachometer registers
  6444. * show the speed of the main fan. When bit 0 of EC register 0x31
  6445. * is one, the tachometer registers show the speed of the auxiliary
  6446. * fan.
  6447. *
  6448. * Fan control seems to affect both fans, regardless of the state
  6449. * of this bit.
  6450. *
  6451. * So far, only the firmware for the X60/X61 non-tablet versions
  6452. * seem to support this (firmware TP-7M).
  6453. *
  6454. * TPACPI_FAN_WR_ACPI_FANS:
  6455. * ThinkPad X31, X40, X41. Not available in the X60.
  6456. *
  6457. * FANS ACPI handle: takes three arguments: low speed, medium speed,
  6458. * high speed. ACPI DSDT seems to map these three speeds to levels
  6459. * as follows: STOP LOW LOW MED MED HIGH HIGH HIGH HIGH
  6460. * (this map is stored on FAN0..FAN8 as "0,1,1,2,2,3,3,3,3")
  6461. *
  6462. * The speeds are stored on handles
  6463. * (FANA:FAN9), (FANC:FANB), (FANE:FAND).
  6464. *
  6465. * There are three default speed sets, accessible as handles:
  6466. * FS1L,FS1M,FS1H; FS2L,FS2M,FS2H; FS3L,FS3M,FS3H
  6467. *
  6468. * ACPI DSDT switches which set is in use depending on various
  6469. * factors.
  6470. *
  6471. * TPACPI_FAN_WR_TPEC is also available and should be used to
  6472. * command the fan. The X31/X40/X41 seems to have 8 fan levels,
  6473. * but the ACPI tables just mention level 7.
  6474. */
  6475. enum { /* Fan control constants */
  6476. fan_status_offset = 0x2f, /* EC register 0x2f */
  6477. fan_rpm_offset = 0x84, /* EC register 0x84: LSB, 0x85 MSB (RPM)
  6478. * 0x84 must be read before 0x85 */
  6479. fan_select_offset = 0x31, /* EC register 0x31 (Firmware 7M)
  6480. bit 0 selects which fan is active */
  6481. TP_EC_FAN_FULLSPEED = 0x40, /* EC fan mode: full speed */
  6482. TP_EC_FAN_AUTO = 0x80, /* EC fan mode: auto fan control */
  6483. TPACPI_FAN_LAST_LEVEL = 0x100, /* Use cached last-seen fan level */
  6484. };
  6485. enum fan_status_access_mode {
  6486. TPACPI_FAN_NONE = 0, /* No fan status or control */
  6487. TPACPI_FAN_RD_ACPI_GFAN, /* Use ACPI GFAN */
  6488. TPACPI_FAN_RD_TPEC, /* Use ACPI EC regs 0x2f, 0x84-0x85 */
  6489. };
  6490. enum fan_control_access_mode {
  6491. TPACPI_FAN_WR_NONE = 0, /* No fan control */
  6492. TPACPI_FAN_WR_ACPI_SFAN, /* Use ACPI SFAN */
  6493. TPACPI_FAN_WR_TPEC, /* Use ACPI EC reg 0x2f */
  6494. TPACPI_FAN_WR_ACPI_FANS, /* Use ACPI FANS and EC reg 0x2f */
  6495. };
  6496. enum fan_control_commands {
  6497. TPACPI_FAN_CMD_SPEED = 0x0001, /* speed command */
  6498. TPACPI_FAN_CMD_LEVEL = 0x0002, /* level command */
  6499. TPACPI_FAN_CMD_ENABLE = 0x0004, /* enable/disable cmd,
  6500. * and also watchdog cmd */
  6501. };
  6502. static bool fan_control_allowed;
  6503. static enum fan_status_access_mode fan_status_access_mode;
  6504. static enum fan_control_access_mode fan_control_access_mode;
  6505. static enum fan_control_commands fan_control_commands;
  6506. static u8 fan_control_initial_status;
  6507. static u8 fan_control_desired_level;
  6508. static u8 fan_control_resume_level;
  6509. static int fan_watchdog_maxinterval;
  6510. static struct mutex fan_mutex;
  6511. static void fan_watchdog_fire(struct work_struct *ignored);
  6512. static DECLARE_DELAYED_WORK(fan_watchdog_task, fan_watchdog_fire);
  6513. TPACPI_HANDLE(fans, ec, "FANS"); /* X31, X40, X41 */
  6514. TPACPI_HANDLE(gfan, ec, "GFAN", /* 570 */
  6515. "\\FSPD", /* 600e/x, 770e, 770x */
  6516. ); /* all others */
  6517. TPACPI_HANDLE(sfan, ec, "SFAN", /* 570 */
  6518. "JFNS", /* 770x-JL */
  6519. ); /* all others */
  6520. /*
  6521. * Unitialized HFSP quirk: ACPI DSDT and EC fail to initialize the
  6522. * HFSP register at boot, so it contains 0x07 but the Thinkpad could
  6523. * be in auto mode (0x80).
  6524. *
  6525. * This is corrected by any write to HFSP either by the driver, or
  6526. * by the firmware.
  6527. *
  6528. * We assume 0x07 really means auto mode while this quirk is active,
  6529. * as this is far more likely than the ThinkPad being in level 7,
  6530. * which is only used by the firmware during thermal emergencies.
  6531. *
  6532. * Enable for TP-1Y (T43), TP-78 (R51e), TP-76 (R52),
  6533. * TP-70 (T43, R52), which are known to be buggy.
  6534. */
  6535. static void fan_quirk1_setup(void)
  6536. {
  6537. if (fan_control_initial_status == 0x07) {
  6538. pr_notice("fan_init: initial fan status is unknown, "
  6539. "assuming it is in auto mode\n");
  6540. tp_features.fan_ctrl_status_undef = 1;
  6541. }
  6542. }
  6543. static void fan_quirk1_handle(u8 *fan_status)
  6544. {
  6545. if (unlikely(tp_features.fan_ctrl_status_undef)) {
  6546. if (*fan_status != fan_control_initial_status) {
  6547. /* something changed the HFSP regisnter since
  6548. * driver init time, so it is not undefined
  6549. * anymore */
  6550. tp_features.fan_ctrl_status_undef = 0;
  6551. } else {
  6552. /* Return most likely status. In fact, it
  6553. * might be the only possible status */
  6554. *fan_status = TP_EC_FAN_AUTO;
  6555. }
  6556. }
  6557. }
  6558. /* Select main fan on X60/X61, NOOP on others */
  6559. static bool fan_select_fan1(void)
  6560. {
  6561. if (tp_features.second_fan) {
  6562. u8 val;
  6563. if (ec_read(fan_select_offset, &val) < 0)
  6564. return false;
  6565. val &= 0xFEU;
  6566. if (ec_write(fan_select_offset, val) < 0)
  6567. return false;
  6568. }
  6569. return true;
  6570. }
  6571. /* Select secondary fan on X60/X61 */
  6572. static bool fan_select_fan2(void)
  6573. {
  6574. u8 val;
  6575. if (!tp_features.second_fan)
  6576. return false;
  6577. if (ec_read(fan_select_offset, &val) < 0)
  6578. return false;
  6579. val |= 0x01U;
  6580. if (ec_write(fan_select_offset, val) < 0)
  6581. return false;
  6582. return true;
  6583. }
  6584. /*
  6585. * Call with fan_mutex held
  6586. */
  6587. static void fan_update_desired_level(u8 status)
  6588. {
  6589. if ((status &
  6590. (TP_EC_FAN_AUTO | TP_EC_FAN_FULLSPEED)) == 0) {
  6591. if (status > 7)
  6592. fan_control_desired_level = 7;
  6593. else
  6594. fan_control_desired_level = status;
  6595. }
  6596. }
  6597. static int fan_get_status(u8 *status)
  6598. {
  6599. u8 s;
  6600. /* TODO:
  6601. * Add TPACPI_FAN_RD_ACPI_FANS ? */
  6602. switch (fan_status_access_mode) {
  6603. case TPACPI_FAN_RD_ACPI_GFAN: {
  6604. /* 570, 600e/x, 770e, 770x */
  6605. int res;
  6606. if (unlikely(!acpi_evalf(gfan_handle, &res, NULL, "d")))
  6607. return -EIO;
  6608. if (likely(status))
  6609. *status = res & 0x07;
  6610. break;
  6611. }
  6612. case TPACPI_FAN_RD_TPEC:
  6613. /* all except 570, 600e/x, 770e, 770x */
  6614. if (unlikely(!acpi_ec_read(fan_status_offset, &s)))
  6615. return -EIO;
  6616. if (likely(status)) {
  6617. *status = s;
  6618. fan_quirk1_handle(status);
  6619. }
  6620. break;
  6621. default:
  6622. return -ENXIO;
  6623. }
  6624. return 0;
  6625. }
  6626. static int fan_get_status_safe(u8 *status)
  6627. {
  6628. int rc;
  6629. u8 s;
  6630. if (mutex_lock_killable(&fan_mutex))
  6631. return -ERESTARTSYS;
  6632. rc = fan_get_status(&s);
  6633. if (!rc)
  6634. fan_update_desired_level(s);
  6635. mutex_unlock(&fan_mutex);
  6636. if (status)
  6637. *status = s;
  6638. return rc;
  6639. }
  6640. static int fan_get_speed(unsigned int *speed)
  6641. {
  6642. u8 hi, lo;
  6643. switch (fan_status_access_mode) {
  6644. case TPACPI_FAN_RD_TPEC:
  6645. /* all except 570, 600e/x, 770e, 770x */
  6646. if (unlikely(!fan_select_fan1()))
  6647. return -EIO;
  6648. if (unlikely(!acpi_ec_read(fan_rpm_offset, &lo) ||
  6649. !acpi_ec_read(fan_rpm_offset + 1, &hi)))
  6650. return -EIO;
  6651. if (likely(speed))
  6652. *speed = (hi << 8) | lo;
  6653. break;
  6654. default:
  6655. return -ENXIO;
  6656. }
  6657. return 0;
  6658. }
  6659. static int fan2_get_speed(unsigned int *speed)
  6660. {
  6661. u8 hi, lo;
  6662. bool rc;
  6663. switch (fan_status_access_mode) {
  6664. case TPACPI_FAN_RD_TPEC:
  6665. /* all except 570, 600e/x, 770e, 770x */
  6666. if (unlikely(!fan_select_fan2()))
  6667. return -EIO;
  6668. rc = !acpi_ec_read(fan_rpm_offset, &lo) ||
  6669. !acpi_ec_read(fan_rpm_offset + 1, &hi);
  6670. fan_select_fan1(); /* play it safe */
  6671. if (rc)
  6672. return -EIO;
  6673. if (likely(speed))
  6674. *speed = (hi << 8) | lo;
  6675. break;
  6676. default:
  6677. return -ENXIO;
  6678. }
  6679. return 0;
  6680. }
  6681. static int fan_set_level(int level)
  6682. {
  6683. if (!fan_control_allowed)
  6684. return -EPERM;
  6685. switch (fan_control_access_mode) {
  6686. case TPACPI_FAN_WR_ACPI_SFAN:
  6687. if (level >= 0 && level <= 7) {
  6688. if (!acpi_evalf(sfan_handle, NULL, NULL, "vd", level))
  6689. return -EIO;
  6690. } else
  6691. return -EINVAL;
  6692. break;
  6693. case TPACPI_FAN_WR_ACPI_FANS:
  6694. case TPACPI_FAN_WR_TPEC:
  6695. if (!(level & TP_EC_FAN_AUTO) &&
  6696. !(level & TP_EC_FAN_FULLSPEED) &&
  6697. ((level < 0) || (level > 7)))
  6698. return -EINVAL;
  6699. /* safety net should the EC not support AUTO
  6700. * or FULLSPEED mode bits and just ignore them */
  6701. if (level & TP_EC_FAN_FULLSPEED)
  6702. level |= 7; /* safety min speed 7 */
  6703. else if (level & TP_EC_FAN_AUTO)
  6704. level |= 4; /* safety min speed 4 */
  6705. if (!acpi_ec_write(fan_status_offset, level))
  6706. return -EIO;
  6707. else
  6708. tp_features.fan_ctrl_status_undef = 0;
  6709. break;
  6710. default:
  6711. return -ENXIO;
  6712. }
  6713. vdbg_printk(TPACPI_DBG_FAN,
  6714. "fan control: set fan control register to 0x%02x\n", level);
  6715. return 0;
  6716. }
  6717. static int fan_set_level_safe(int level)
  6718. {
  6719. int rc;
  6720. if (!fan_control_allowed)
  6721. return -EPERM;
  6722. if (mutex_lock_killable(&fan_mutex))
  6723. return -ERESTARTSYS;
  6724. if (level == TPACPI_FAN_LAST_LEVEL)
  6725. level = fan_control_desired_level;
  6726. rc = fan_set_level(level);
  6727. if (!rc)
  6728. fan_update_desired_level(level);
  6729. mutex_unlock(&fan_mutex);
  6730. return rc;
  6731. }
  6732. static int fan_set_enable(void)
  6733. {
  6734. u8 s;
  6735. int rc;
  6736. if (!fan_control_allowed)
  6737. return -EPERM;
  6738. if (mutex_lock_killable(&fan_mutex))
  6739. return -ERESTARTSYS;
  6740. switch (fan_control_access_mode) {
  6741. case TPACPI_FAN_WR_ACPI_FANS:
  6742. case TPACPI_FAN_WR_TPEC:
  6743. rc = fan_get_status(&s);
  6744. if (rc < 0)
  6745. break;
  6746. /* Don't go out of emergency fan mode */
  6747. if (s != 7) {
  6748. s &= 0x07;
  6749. s |= TP_EC_FAN_AUTO | 4; /* min fan speed 4 */
  6750. }
  6751. if (!acpi_ec_write(fan_status_offset, s))
  6752. rc = -EIO;
  6753. else {
  6754. tp_features.fan_ctrl_status_undef = 0;
  6755. rc = 0;
  6756. }
  6757. break;
  6758. case TPACPI_FAN_WR_ACPI_SFAN:
  6759. rc = fan_get_status(&s);
  6760. if (rc < 0)
  6761. break;
  6762. s &= 0x07;
  6763. /* Set fan to at least level 4 */
  6764. s |= 4;
  6765. if (!acpi_evalf(sfan_handle, NULL, NULL, "vd", s))
  6766. rc = -EIO;
  6767. else
  6768. rc = 0;
  6769. break;
  6770. default:
  6771. rc = -ENXIO;
  6772. }
  6773. mutex_unlock(&fan_mutex);
  6774. if (!rc)
  6775. vdbg_printk(TPACPI_DBG_FAN,
  6776. "fan control: set fan control register to 0x%02x\n",
  6777. s);
  6778. return rc;
  6779. }
  6780. static int fan_set_disable(void)
  6781. {
  6782. int rc;
  6783. if (!fan_control_allowed)
  6784. return -EPERM;
  6785. if (mutex_lock_killable(&fan_mutex))
  6786. return -ERESTARTSYS;
  6787. rc = 0;
  6788. switch (fan_control_access_mode) {
  6789. case TPACPI_FAN_WR_ACPI_FANS:
  6790. case TPACPI_FAN_WR_TPEC:
  6791. if (!acpi_ec_write(fan_status_offset, 0x00))
  6792. rc = -EIO;
  6793. else {
  6794. fan_control_desired_level = 0;
  6795. tp_features.fan_ctrl_status_undef = 0;
  6796. }
  6797. break;
  6798. case TPACPI_FAN_WR_ACPI_SFAN:
  6799. if (!acpi_evalf(sfan_handle, NULL, NULL, "vd", 0x00))
  6800. rc = -EIO;
  6801. else
  6802. fan_control_desired_level = 0;
  6803. break;
  6804. default:
  6805. rc = -ENXIO;
  6806. }
  6807. if (!rc)
  6808. vdbg_printk(TPACPI_DBG_FAN,
  6809. "fan control: set fan control register to 0\n");
  6810. mutex_unlock(&fan_mutex);
  6811. return rc;
  6812. }
  6813. static int fan_set_speed(int speed)
  6814. {
  6815. int rc;
  6816. if (!fan_control_allowed)
  6817. return -EPERM;
  6818. if (mutex_lock_killable(&fan_mutex))
  6819. return -ERESTARTSYS;
  6820. rc = 0;
  6821. switch (fan_control_access_mode) {
  6822. case TPACPI_FAN_WR_ACPI_FANS:
  6823. if (speed >= 0 && speed <= 65535) {
  6824. if (!acpi_evalf(fans_handle, NULL, NULL, "vddd",
  6825. speed, speed, speed))
  6826. rc = -EIO;
  6827. } else
  6828. rc = -EINVAL;
  6829. break;
  6830. default:
  6831. rc = -ENXIO;
  6832. }
  6833. mutex_unlock(&fan_mutex);
  6834. return rc;
  6835. }
  6836. static void fan_watchdog_reset(void)
  6837. {
  6838. if (fan_control_access_mode == TPACPI_FAN_WR_NONE)
  6839. return;
  6840. if (fan_watchdog_maxinterval > 0 &&
  6841. tpacpi_lifecycle != TPACPI_LIFE_EXITING)
  6842. mod_delayed_work(tpacpi_wq, &fan_watchdog_task,
  6843. msecs_to_jiffies(fan_watchdog_maxinterval * 1000));
  6844. else
  6845. cancel_delayed_work(&fan_watchdog_task);
  6846. }
  6847. static void fan_watchdog_fire(struct work_struct *ignored)
  6848. {
  6849. int rc;
  6850. if (tpacpi_lifecycle != TPACPI_LIFE_RUNNING)
  6851. return;
  6852. pr_notice("fan watchdog: enabling fan\n");
  6853. rc = fan_set_enable();
  6854. if (rc < 0) {
  6855. pr_err("fan watchdog: error %d while enabling fan, "
  6856. "will try again later...\n", -rc);
  6857. /* reschedule for later */
  6858. fan_watchdog_reset();
  6859. }
  6860. }
  6861. /*
  6862. * SYSFS fan layout: hwmon compatible (device)
  6863. *
  6864. * pwm*_enable:
  6865. * 0: "disengaged" mode
  6866. * 1: manual mode
  6867. * 2: native EC "auto" mode (recommended, hardware default)
  6868. *
  6869. * pwm*: set speed in manual mode, ignored otherwise.
  6870. * 0 is level 0; 255 is level 7. Intermediate points done with linear
  6871. * interpolation.
  6872. *
  6873. * fan*_input: tachometer reading, RPM
  6874. *
  6875. *
  6876. * SYSFS fan layout: extensions
  6877. *
  6878. * fan_watchdog (driver):
  6879. * fan watchdog interval in seconds, 0 disables (default), max 120
  6880. */
  6881. /* sysfs fan pwm1_enable ----------------------------------------------- */
  6882. static ssize_t fan_pwm1_enable_show(struct device *dev,
  6883. struct device_attribute *attr,
  6884. char *buf)
  6885. {
  6886. int res, mode;
  6887. u8 status;
  6888. res = fan_get_status_safe(&status);
  6889. if (res)
  6890. return res;
  6891. if (status & TP_EC_FAN_FULLSPEED) {
  6892. mode = 0;
  6893. } else if (status & TP_EC_FAN_AUTO) {
  6894. mode = 2;
  6895. } else
  6896. mode = 1;
  6897. return snprintf(buf, PAGE_SIZE, "%d\n", mode);
  6898. }
  6899. static ssize_t fan_pwm1_enable_store(struct device *dev,
  6900. struct device_attribute *attr,
  6901. const char *buf, size_t count)
  6902. {
  6903. unsigned long t;
  6904. int res, level;
  6905. if (parse_strtoul(buf, 2, &t))
  6906. return -EINVAL;
  6907. tpacpi_disclose_usertask("hwmon pwm1_enable",
  6908. "set fan mode to %lu\n", t);
  6909. switch (t) {
  6910. case 0:
  6911. level = TP_EC_FAN_FULLSPEED;
  6912. break;
  6913. case 1:
  6914. level = TPACPI_FAN_LAST_LEVEL;
  6915. break;
  6916. case 2:
  6917. level = TP_EC_FAN_AUTO;
  6918. break;
  6919. case 3:
  6920. /* reserved for software-controlled auto mode */
  6921. return -ENOSYS;
  6922. default:
  6923. return -EINVAL;
  6924. }
  6925. res = fan_set_level_safe(level);
  6926. if (res == -ENXIO)
  6927. return -EINVAL;
  6928. else if (res < 0)
  6929. return res;
  6930. fan_watchdog_reset();
  6931. return count;
  6932. }
  6933. static DEVICE_ATTR(pwm1_enable, S_IWUSR | S_IRUGO,
  6934. fan_pwm1_enable_show, fan_pwm1_enable_store);
  6935. /* sysfs fan pwm1 ------------------------------------------------------ */
  6936. static ssize_t fan_pwm1_show(struct device *dev,
  6937. struct device_attribute *attr,
  6938. char *buf)
  6939. {
  6940. int res;
  6941. u8 status;
  6942. res = fan_get_status_safe(&status);
  6943. if (res)
  6944. return res;
  6945. if ((status &
  6946. (TP_EC_FAN_AUTO | TP_EC_FAN_FULLSPEED)) != 0)
  6947. status = fan_control_desired_level;
  6948. if (status > 7)
  6949. status = 7;
  6950. return snprintf(buf, PAGE_SIZE, "%u\n", (status * 255) / 7);
  6951. }
  6952. static ssize_t fan_pwm1_store(struct device *dev,
  6953. struct device_attribute *attr,
  6954. const char *buf, size_t count)
  6955. {
  6956. unsigned long s;
  6957. int rc;
  6958. u8 status, newlevel;
  6959. if (parse_strtoul(buf, 255, &s))
  6960. return -EINVAL;
  6961. tpacpi_disclose_usertask("hwmon pwm1",
  6962. "set fan speed to %lu\n", s);
  6963. /* scale down from 0-255 to 0-7 */
  6964. newlevel = (s >> 5) & 0x07;
  6965. if (mutex_lock_killable(&fan_mutex))
  6966. return -ERESTARTSYS;
  6967. rc = fan_get_status(&status);
  6968. if (!rc && (status &
  6969. (TP_EC_FAN_AUTO | TP_EC_FAN_FULLSPEED)) == 0) {
  6970. rc = fan_set_level(newlevel);
  6971. if (rc == -ENXIO)
  6972. rc = -EINVAL;
  6973. else if (!rc) {
  6974. fan_update_desired_level(newlevel);
  6975. fan_watchdog_reset();
  6976. }
  6977. }
  6978. mutex_unlock(&fan_mutex);
  6979. return (rc) ? rc : count;
  6980. }
  6981. static DEVICE_ATTR(pwm1, S_IWUSR | S_IRUGO, fan_pwm1_show, fan_pwm1_store);
  6982. /* sysfs fan fan1_input ------------------------------------------------ */
  6983. static ssize_t fan_fan1_input_show(struct device *dev,
  6984. struct device_attribute *attr,
  6985. char *buf)
  6986. {
  6987. int res;
  6988. unsigned int speed;
  6989. res = fan_get_speed(&speed);
  6990. if (res < 0)
  6991. return res;
  6992. return snprintf(buf, PAGE_SIZE, "%u\n", speed);
  6993. }
  6994. static DEVICE_ATTR(fan1_input, S_IRUGO, fan_fan1_input_show, NULL);
  6995. /* sysfs fan fan2_input ------------------------------------------------ */
  6996. static ssize_t fan_fan2_input_show(struct device *dev,
  6997. struct device_attribute *attr,
  6998. char *buf)
  6999. {
  7000. int res;
  7001. unsigned int speed;
  7002. res = fan2_get_speed(&speed);
  7003. if (res < 0)
  7004. return res;
  7005. return snprintf(buf, PAGE_SIZE, "%u\n", speed);
  7006. }
  7007. static DEVICE_ATTR(fan2_input, S_IRUGO, fan_fan2_input_show, NULL);
  7008. /* sysfs fan fan_watchdog (hwmon driver) ------------------------------- */
  7009. static ssize_t fan_fan_watchdog_show(struct device_driver *drv,
  7010. char *buf)
  7011. {
  7012. return snprintf(buf, PAGE_SIZE, "%u\n", fan_watchdog_maxinterval);
  7013. }
  7014. static ssize_t fan_fan_watchdog_store(struct device_driver *drv,
  7015. const char *buf, size_t count)
  7016. {
  7017. unsigned long t;
  7018. if (parse_strtoul(buf, 120, &t))
  7019. return -EINVAL;
  7020. if (!fan_control_allowed)
  7021. return -EPERM;
  7022. fan_watchdog_maxinterval = t;
  7023. fan_watchdog_reset();
  7024. tpacpi_disclose_usertask("fan_watchdog", "set to %lu\n", t);
  7025. return count;
  7026. }
  7027. static DRIVER_ATTR(fan_watchdog, S_IWUSR | S_IRUGO,
  7028. fan_fan_watchdog_show, fan_fan_watchdog_store);
  7029. /* --------------------------------------------------------------------- */
  7030. static struct attribute *fan_attributes[] = {
  7031. &dev_attr_pwm1_enable.attr, &dev_attr_pwm1.attr,
  7032. &dev_attr_fan1_input.attr,
  7033. NULL, /* for fan2_input */
  7034. NULL
  7035. };
  7036. static const struct attribute_group fan_attr_group = {
  7037. .attrs = fan_attributes,
  7038. };
  7039. #define TPACPI_FAN_Q1 0x0001 /* Unitialized HFSP */
  7040. #define TPACPI_FAN_2FAN 0x0002 /* EC 0x31 bit 0 selects fan2 */
  7041. #define TPACPI_FAN_QI(__id1, __id2, __quirks) \
  7042. { .vendor = PCI_VENDOR_ID_IBM, \
  7043. .bios = TPACPI_MATCH_ANY, \
  7044. .ec = TPID(__id1, __id2), \
  7045. .quirks = __quirks }
  7046. #define TPACPI_FAN_QL(__id1, __id2, __quirks) \
  7047. { .vendor = PCI_VENDOR_ID_LENOVO, \
  7048. .bios = TPACPI_MATCH_ANY, \
  7049. .ec = TPID(__id1, __id2), \
  7050. .quirks = __quirks }
  7051. static const struct tpacpi_quirk fan_quirk_table[] __initconst = {
  7052. TPACPI_FAN_QI('1', 'Y', TPACPI_FAN_Q1),
  7053. TPACPI_FAN_QI('7', '8', TPACPI_FAN_Q1),
  7054. TPACPI_FAN_QI('7', '6', TPACPI_FAN_Q1),
  7055. TPACPI_FAN_QI('7', '0', TPACPI_FAN_Q1),
  7056. TPACPI_FAN_QL('7', 'M', TPACPI_FAN_2FAN),
  7057. };
  7058. #undef TPACPI_FAN_QL
  7059. #undef TPACPI_FAN_QI
  7060. static int __init fan_init(struct ibm_init_struct *iibm)
  7061. {
  7062. int rc;
  7063. unsigned long quirks;
  7064. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_FAN,
  7065. "initializing fan subdriver\n");
  7066. mutex_init(&fan_mutex);
  7067. fan_status_access_mode = TPACPI_FAN_NONE;
  7068. fan_control_access_mode = TPACPI_FAN_WR_NONE;
  7069. fan_control_commands = 0;
  7070. fan_watchdog_maxinterval = 0;
  7071. tp_features.fan_ctrl_status_undef = 0;
  7072. tp_features.second_fan = 0;
  7073. fan_control_desired_level = 7;
  7074. if (tpacpi_is_ibm()) {
  7075. TPACPI_ACPIHANDLE_INIT(fans);
  7076. TPACPI_ACPIHANDLE_INIT(gfan);
  7077. TPACPI_ACPIHANDLE_INIT(sfan);
  7078. }
  7079. quirks = tpacpi_check_quirks(fan_quirk_table,
  7080. ARRAY_SIZE(fan_quirk_table));
  7081. if (gfan_handle) {
  7082. /* 570, 600e/x, 770e, 770x */
  7083. fan_status_access_mode = TPACPI_FAN_RD_ACPI_GFAN;
  7084. } else {
  7085. /* all other ThinkPads: note that even old-style
  7086. * ThinkPad ECs supports the fan control register */
  7087. if (likely(acpi_ec_read(fan_status_offset,
  7088. &fan_control_initial_status))) {
  7089. fan_status_access_mode = TPACPI_FAN_RD_TPEC;
  7090. if (quirks & TPACPI_FAN_Q1)
  7091. fan_quirk1_setup();
  7092. if (quirks & TPACPI_FAN_2FAN) {
  7093. tp_features.second_fan = 1;
  7094. dbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_FAN,
  7095. "secondary fan support enabled\n");
  7096. }
  7097. } else {
  7098. pr_err("ThinkPad ACPI EC access misbehaving, "
  7099. "fan status and control unavailable\n");
  7100. return 1;
  7101. }
  7102. }
  7103. if (sfan_handle) {
  7104. /* 570, 770x-JL */
  7105. fan_control_access_mode = TPACPI_FAN_WR_ACPI_SFAN;
  7106. fan_control_commands |=
  7107. TPACPI_FAN_CMD_LEVEL | TPACPI_FAN_CMD_ENABLE;
  7108. } else {
  7109. if (!gfan_handle) {
  7110. /* gfan without sfan means no fan control */
  7111. /* all other models implement TP EC 0x2f control */
  7112. if (fans_handle) {
  7113. /* X31, X40, X41 */
  7114. fan_control_access_mode =
  7115. TPACPI_FAN_WR_ACPI_FANS;
  7116. fan_control_commands |=
  7117. TPACPI_FAN_CMD_SPEED |
  7118. TPACPI_FAN_CMD_LEVEL |
  7119. TPACPI_FAN_CMD_ENABLE;
  7120. } else {
  7121. fan_control_access_mode = TPACPI_FAN_WR_TPEC;
  7122. fan_control_commands |=
  7123. TPACPI_FAN_CMD_LEVEL |
  7124. TPACPI_FAN_CMD_ENABLE;
  7125. }
  7126. }
  7127. }
  7128. vdbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_FAN,
  7129. "fan is %s, modes %d, %d\n",
  7130. str_supported(fan_status_access_mode != TPACPI_FAN_NONE ||
  7131. fan_control_access_mode != TPACPI_FAN_WR_NONE),
  7132. fan_status_access_mode, fan_control_access_mode);
  7133. /* fan control master switch */
  7134. if (!fan_control_allowed) {
  7135. fan_control_access_mode = TPACPI_FAN_WR_NONE;
  7136. fan_control_commands = 0;
  7137. dbg_printk(TPACPI_DBG_INIT | TPACPI_DBG_FAN,
  7138. "fan control features disabled by parameter\n");
  7139. }
  7140. /* update fan_control_desired_level */
  7141. if (fan_status_access_mode != TPACPI_FAN_NONE)
  7142. fan_get_status_safe(NULL);
  7143. if (fan_status_access_mode != TPACPI_FAN_NONE ||
  7144. fan_control_access_mode != TPACPI_FAN_WR_NONE) {
  7145. if (tp_features.second_fan) {
  7146. /* attach second fan tachometer */
  7147. fan_attributes[ARRAY_SIZE(fan_attributes)-2] =
  7148. &dev_attr_fan2_input.attr;
  7149. }
  7150. rc = sysfs_create_group(&tpacpi_sensors_pdev->dev.kobj,
  7151. &fan_attr_group);
  7152. if (rc < 0)
  7153. return rc;
  7154. rc = driver_create_file(&tpacpi_hwmon_pdriver.driver,
  7155. &driver_attr_fan_watchdog);
  7156. if (rc < 0) {
  7157. sysfs_remove_group(&tpacpi_sensors_pdev->dev.kobj,
  7158. &fan_attr_group);
  7159. return rc;
  7160. }
  7161. return 0;
  7162. } else
  7163. return 1;
  7164. }
  7165. static void fan_exit(void)
  7166. {
  7167. vdbg_printk(TPACPI_DBG_EXIT | TPACPI_DBG_FAN,
  7168. "cancelling any pending fan watchdog tasks\n");
  7169. /* FIXME: can we really do this unconditionally? */
  7170. sysfs_remove_group(&tpacpi_sensors_pdev->dev.kobj, &fan_attr_group);
  7171. driver_remove_file(&tpacpi_hwmon_pdriver.driver,
  7172. &driver_attr_fan_watchdog);
  7173. cancel_delayed_work(&fan_watchdog_task);
  7174. flush_workqueue(tpacpi_wq);
  7175. }
  7176. static void fan_suspend(void)
  7177. {
  7178. int rc;
  7179. if (!fan_control_allowed)
  7180. return;
  7181. /* Store fan status in cache */
  7182. fan_control_resume_level = 0;
  7183. rc = fan_get_status_safe(&fan_control_resume_level);
  7184. if (rc < 0)
  7185. pr_notice("failed to read fan level for later "
  7186. "restore during resume: %d\n", rc);
  7187. /* if it is undefined, don't attempt to restore it.
  7188. * KEEP THIS LAST */
  7189. if (tp_features.fan_ctrl_status_undef)
  7190. fan_control_resume_level = 0;
  7191. }
  7192. static void fan_resume(void)
  7193. {
  7194. u8 current_level = 7;
  7195. bool do_set = false;
  7196. int rc;
  7197. /* DSDT *always* updates status on resume */
  7198. tp_features.fan_ctrl_status_undef = 0;
  7199. if (!fan_control_allowed ||
  7200. !fan_control_resume_level ||
  7201. (fan_get_status_safe(&current_level) < 0))
  7202. return;
  7203. switch (fan_control_access_mode) {
  7204. case TPACPI_FAN_WR_ACPI_SFAN:
  7205. /* never decrease fan level */
  7206. do_set = (fan_control_resume_level > current_level);
  7207. break;
  7208. case TPACPI_FAN_WR_ACPI_FANS:
  7209. case TPACPI_FAN_WR_TPEC:
  7210. /* never decrease fan level, scale is:
  7211. * TP_EC_FAN_FULLSPEED > 7 >= TP_EC_FAN_AUTO
  7212. *
  7213. * We expect the firmware to set either 7 or AUTO, but we
  7214. * handle FULLSPEED out of paranoia.
  7215. *
  7216. * So, we can safely only restore FULLSPEED or 7, anything
  7217. * else could slow the fan. Restoring AUTO is useless, at
  7218. * best that's exactly what the DSDT already set (it is the
  7219. * slower it uses).
  7220. *
  7221. * Always keep in mind that the DSDT *will* have set the
  7222. * fans to what the vendor supposes is the best level. We
  7223. * muck with it only to speed the fan up.
  7224. */
  7225. if (fan_control_resume_level != 7 &&
  7226. !(fan_control_resume_level & TP_EC_FAN_FULLSPEED))
  7227. return;
  7228. else
  7229. do_set = !(current_level & TP_EC_FAN_FULLSPEED) &&
  7230. (current_level != fan_control_resume_level);
  7231. break;
  7232. default:
  7233. return;
  7234. }
  7235. if (do_set) {
  7236. pr_notice("restoring fan level to 0x%02x\n",
  7237. fan_control_resume_level);
  7238. rc = fan_set_level_safe(fan_control_resume_level);
  7239. if (rc < 0)
  7240. pr_notice("failed to restore fan level: %d\n", rc);
  7241. }
  7242. }
  7243. static int fan_read(struct seq_file *m)
  7244. {
  7245. int rc;
  7246. u8 status;
  7247. unsigned int speed = 0;
  7248. switch (fan_status_access_mode) {
  7249. case TPACPI_FAN_RD_ACPI_GFAN:
  7250. /* 570, 600e/x, 770e, 770x */
  7251. rc = fan_get_status_safe(&status);
  7252. if (rc < 0)
  7253. return rc;
  7254. seq_printf(m, "status:\t\t%s\n"
  7255. "level:\t\t%d\n",
  7256. (status != 0) ? "enabled" : "disabled", status);
  7257. break;
  7258. case TPACPI_FAN_RD_TPEC:
  7259. /* all except 570, 600e/x, 770e, 770x */
  7260. rc = fan_get_status_safe(&status);
  7261. if (rc < 0)
  7262. return rc;
  7263. seq_printf(m, "status:\t\t%s\n",
  7264. (status != 0) ? "enabled" : "disabled");
  7265. rc = fan_get_speed(&speed);
  7266. if (rc < 0)
  7267. return rc;
  7268. seq_printf(m, "speed:\t\t%d\n", speed);
  7269. if (status & TP_EC_FAN_FULLSPEED)
  7270. /* Disengaged mode takes precedence */
  7271. seq_printf(m, "level:\t\tdisengaged\n");
  7272. else if (status & TP_EC_FAN_AUTO)
  7273. seq_printf(m, "level:\t\tauto\n");
  7274. else
  7275. seq_printf(m, "level:\t\t%d\n", status);
  7276. break;
  7277. case TPACPI_FAN_NONE:
  7278. default:
  7279. seq_printf(m, "status:\t\tnot supported\n");
  7280. }
  7281. if (fan_control_commands & TPACPI_FAN_CMD_LEVEL) {
  7282. seq_printf(m, "commands:\tlevel <level>");
  7283. switch (fan_control_access_mode) {
  7284. case TPACPI_FAN_WR_ACPI_SFAN:
  7285. seq_printf(m, " (<level> is 0-7)\n");
  7286. break;
  7287. default:
  7288. seq_printf(m, " (<level> is 0-7, "
  7289. "auto, disengaged, full-speed)\n");
  7290. break;
  7291. }
  7292. }
  7293. if (fan_control_commands & TPACPI_FAN_CMD_ENABLE)
  7294. seq_printf(m, "commands:\tenable, disable\n"
  7295. "commands:\twatchdog <timeout> (<timeout> "
  7296. "is 0 (off), 1-120 (seconds))\n");
  7297. if (fan_control_commands & TPACPI_FAN_CMD_SPEED)
  7298. seq_printf(m, "commands:\tspeed <speed>"
  7299. " (<speed> is 0-65535)\n");
  7300. return 0;
  7301. }
  7302. static int fan_write_cmd_level(const char *cmd, int *rc)
  7303. {
  7304. int level;
  7305. if (strlencmp(cmd, "level auto") == 0)
  7306. level = TP_EC_FAN_AUTO;
  7307. else if ((strlencmp(cmd, "level disengaged") == 0) |
  7308. (strlencmp(cmd, "level full-speed") == 0))
  7309. level = TP_EC_FAN_FULLSPEED;
  7310. else if (sscanf(cmd, "level %d", &level) != 1)
  7311. return 0;
  7312. *rc = fan_set_level_safe(level);
  7313. if (*rc == -ENXIO)
  7314. pr_err("level command accepted for unsupported access mode %d\n",
  7315. fan_control_access_mode);
  7316. else if (!*rc)
  7317. tpacpi_disclose_usertask("procfs fan",
  7318. "set level to %d\n", level);
  7319. return 1;
  7320. }
  7321. static int fan_write_cmd_enable(const char *cmd, int *rc)
  7322. {
  7323. if (strlencmp(cmd, "enable") != 0)
  7324. return 0;
  7325. *rc = fan_set_enable();
  7326. if (*rc == -ENXIO)
  7327. pr_err("enable command accepted for unsupported access mode %d\n",
  7328. fan_control_access_mode);
  7329. else if (!*rc)
  7330. tpacpi_disclose_usertask("procfs fan", "enable\n");
  7331. return 1;
  7332. }
  7333. static int fan_write_cmd_disable(const char *cmd, int *rc)
  7334. {
  7335. if (strlencmp(cmd, "disable") != 0)
  7336. return 0;
  7337. *rc = fan_set_disable();
  7338. if (*rc == -ENXIO)
  7339. pr_err("disable command accepted for unsupported access mode %d\n",
  7340. fan_control_access_mode);
  7341. else if (!*rc)
  7342. tpacpi_disclose_usertask("procfs fan", "disable\n");
  7343. return 1;
  7344. }
  7345. static int fan_write_cmd_speed(const char *cmd, int *rc)
  7346. {
  7347. int speed;
  7348. /* TODO:
  7349. * Support speed <low> <medium> <high> ? */
  7350. if (sscanf(cmd, "speed %d", &speed) != 1)
  7351. return 0;
  7352. *rc = fan_set_speed(speed);
  7353. if (*rc == -ENXIO)
  7354. pr_err("speed command accepted for unsupported access mode %d\n",
  7355. fan_control_access_mode);
  7356. else if (!*rc)
  7357. tpacpi_disclose_usertask("procfs fan",
  7358. "set speed to %d\n", speed);
  7359. return 1;
  7360. }
  7361. static int fan_write_cmd_watchdog(const char *cmd, int *rc)
  7362. {
  7363. int interval;
  7364. if (sscanf(cmd, "watchdog %d", &interval) != 1)
  7365. return 0;
  7366. if (interval < 0 || interval > 120)
  7367. *rc = -EINVAL;
  7368. else {
  7369. fan_watchdog_maxinterval = interval;
  7370. tpacpi_disclose_usertask("procfs fan",
  7371. "set watchdog timer to %d\n",
  7372. interval);
  7373. }
  7374. return 1;
  7375. }
  7376. static int fan_write(char *buf)
  7377. {
  7378. char *cmd;
  7379. int rc = 0;
  7380. while (!rc && (cmd = next_cmd(&buf))) {
  7381. if (!((fan_control_commands & TPACPI_FAN_CMD_LEVEL) &&
  7382. fan_write_cmd_level(cmd, &rc)) &&
  7383. !((fan_control_commands & TPACPI_FAN_CMD_ENABLE) &&
  7384. (fan_write_cmd_enable(cmd, &rc) ||
  7385. fan_write_cmd_disable(cmd, &rc) ||
  7386. fan_write_cmd_watchdog(cmd, &rc))) &&
  7387. !((fan_control_commands & TPACPI_FAN_CMD_SPEED) &&
  7388. fan_write_cmd_speed(cmd, &rc))
  7389. )
  7390. rc = -EINVAL;
  7391. else if (!rc)
  7392. fan_watchdog_reset();
  7393. }
  7394. return rc;
  7395. }
  7396. static struct ibm_struct fan_driver_data = {
  7397. .name = "fan",
  7398. .read = fan_read,
  7399. .write = fan_write,
  7400. .exit = fan_exit,
  7401. .suspend = fan_suspend,
  7402. .resume = fan_resume,
  7403. };
  7404. /*************************************************************************
  7405. * Mute LED subdriver
  7406. */
  7407. struct tp_led_table {
  7408. acpi_string name;
  7409. int on_value;
  7410. int off_value;
  7411. int state;
  7412. };
  7413. static struct tp_led_table led_tables[] = {
  7414. [TPACPI_LED_MUTE] = {
  7415. .name = "SSMS",
  7416. .on_value = 1,
  7417. .off_value = 0,
  7418. },
  7419. [TPACPI_LED_MICMUTE] = {
  7420. .name = "MMTS",
  7421. .on_value = 2,
  7422. .off_value = 0,
  7423. },
  7424. };
  7425. static int mute_led_on_off(struct tp_led_table *t, bool state)
  7426. {
  7427. acpi_handle temp;
  7428. int output;
  7429. if (!ACPI_SUCCESS(acpi_get_handle(hkey_handle, t->name, &temp))) {
  7430. pr_warn("Thinkpad ACPI has no %s interface.\n", t->name);
  7431. return -EIO;
  7432. }
  7433. if (!acpi_evalf(hkey_handle, &output, t->name, "dd",
  7434. state ? t->on_value : t->off_value))
  7435. return -EIO;
  7436. t->state = state;
  7437. return state;
  7438. }
  7439. int tpacpi_led_set(int whichled, bool on)
  7440. {
  7441. struct tp_led_table *t;
  7442. if (whichled < 0 || whichled >= TPACPI_LED_MAX)
  7443. return -EINVAL;
  7444. t = &led_tables[whichled];
  7445. if (t->state < 0 || t->state == on)
  7446. return t->state;
  7447. return mute_led_on_off(t, on);
  7448. }
  7449. EXPORT_SYMBOL_GPL(tpacpi_led_set);
  7450. static int mute_led_init(struct ibm_init_struct *iibm)
  7451. {
  7452. acpi_handle temp;
  7453. int i;
  7454. for (i = 0; i < TPACPI_LED_MAX; i++) {
  7455. struct tp_led_table *t = &led_tables[i];
  7456. if (ACPI_SUCCESS(acpi_get_handle(hkey_handle, t->name, &temp)))
  7457. mute_led_on_off(t, false);
  7458. else
  7459. t->state = -ENODEV;
  7460. }
  7461. return 0;
  7462. }
  7463. static void mute_led_exit(void)
  7464. {
  7465. int i;
  7466. for (i = 0; i < TPACPI_LED_MAX; i++)
  7467. tpacpi_led_set(i, false);
  7468. }
  7469. static void mute_led_resume(void)
  7470. {
  7471. int i;
  7472. for (i = 0; i < TPACPI_LED_MAX; i++) {
  7473. struct tp_led_table *t = &led_tables[i];
  7474. if (t->state >= 0)
  7475. mute_led_on_off(t, t->state);
  7476. }
  7477. }
  7478. static struct ibm_struct mute_led_driver_data = {
  7479. .name = "mute_led",
  7480. .exit = mute_led_exit,
  7481. .resume = mute_led_resume,
  7482. };
  7483. /****************************************************************************
  7484. ****************************************************************************
  7485. *
  7486. * Infrastructure
  7487. *
  7488. ****************************************************************************
  7489. ****************************************************************************/
  7490. /*
  7491. * HKEY event callout for other subdrivers go here
  7492. * (yes, it is ugly, but it is quick, safe, and gets the job done
  7493. */
  7494. static void tpacpi_driver_event(const unsigned int hkey_event)
  7495. {
  7496. if (ibm_backlight_device) {
  7497. switch (hkey_event) {
  7498. case TP_HKEY_EV_BRGHT_UP:
  7499. case TP_HKEY_EV_BRGHT_DOWN:
  7500. tpacpi_brightness_notify_change();
  7501. }
  7502. }
  7503. if (alsa_card) {
  7504. switch (hkey_event) {
  7505. case TP_HKEY_EV_VOL_UP:
  7506. case TP_HKEY_EV_VOL_DOWN:
  7507. case TP_HKEY_EV_VOL_MUTE:
  7508. volume_alsa_notify_change();
  7509. }
  7510. }
  7511. }
  7512. static void hotkey_driver_event(const unsigned int scancode)
  7513. {
  7514. tpacpi_driver_event(TP_HKEY_EV_HOTKEY_BASE + scancode);
  7515. }
  7516. /* sysfs name ---------------------------------------------------------- */
  7517. static ssize_t thinkpad_acpi_pdev_name_show(struct device *dev,
  7518. struct device_attribute *attr,
  7519. char *buf)
  7520. {
  7521. return snprintf(buf, PAGE_SIZE, "%s\n", TPACPI_NAME);
  7522. }
  7523. static DEVICE_ATTR(name, S_IRUGO, thinkpad_acpi_pdev_name_show, NULL);
  7524. /* --------------------------------------------------------------------- */
  7525. /* /proc support */
  7526. static struct proc_dir_entry *proc_dir;
  7527. /*
  7528. * Module and infrastructure proble, init and exit handling
  7529. */
  7530. static bool force_load;
  7531. #ifdef CONFIG_THINKPAD_ACPI_DEBUG
  7532. static const char * __init str_supported(int is_supported)
  7533. {
  7534. static char text_unsupported[] __initdata = "not supported";
  7535. return (is_supported) ? &text_unsupported[4] : &text_unsupported[0];
  7536. }
  7537. #endif /* CONFIG_THINKPAD_ACPI_DEBUG */
  7538. static void ibm_exit(struct ibm_struct *ibm)
  7539. {
  7540. dbg_printk(TPACPI_DBG_EXIT, "removing %s\n", ibm->name);
  7541. list_del_init(&ibm->all_drivers);
  7542. if (ibm->flags.acpi_notify_installed) {
  7543. dbg_printk(TPACPI_DBG_EXIT,
  7544. "%s: acpi_remove_notify_handler\n", ibm->name);
  7545. BUG_ON(!ibm->acpi);
  7546. acpi_remove_notify_handler(*ibm->acpi->handle,
  7547. ibm->acpi->type,
  7548. dispatch_acpi_notify);
  7549. ibm->flags.acpi_notify_installed = 0;
  7550. }
  7551. if (ibm->flags.proc_created) {
  7552. dbg_printk(TPACPI_DBG_EXIT,
  7553. "%s: remove_proc_entry\n", ibm->name);
  7554. remove_proc_entry(ibm->name, proc_dir);
  7555. ibm->flags.proc_created = 0;
  7556. }
  7557. if (ibm->flags.acpi_driver_registered) {
  7558. dbg_printk(TPACPI_DBG_EXIT,
  7559. "%s: acpi_bus_unregister_driver\n", ibm->name);
  7560. BUG_ON(!ibm->acpi);
  7561. acpi_bus_unregister_driver(ibm->acpi->driver);
  7562. kfree(ibm->acpi->driver);
  7563. ibm->acpi->driver = NULL;
  7564. ibm->flags.acpi_driver_registered = 0;
  7565. }
  7566. if (ibm->flags.init_called && ibm->exit) {
  7567. ibm->exit();
  7568. ibm->flags.init_called = 0;
  7569. }
  7570. dbg_printk(TPACPI_DBG_INIT, "finished removing %s\n", ibm->name);
  7571. }
  7572. static int __init ibm_init(struct ibm_init_struct *iibm)
  7573. {
  7574. int ret;
  7575. struct ibm_struct *ibm = iibm->data;
  7576. struct proc_dir_entry *entry;
  7577. BUG_ON(ibm == NULL);
  7578. INIT_LIST_HEAD(&ibm->all_drivers);
  7579. if (ibm->flags.experimental && !experimental)
  7580. return 0;
  7581. dbg_printk(TPACPI_DBG_INIT,
  7582. "probing for %s\n", ibm->name);
  7583. if (iibm->init) {
  7584. ret = iibm->init(iibm);
  7585. if (ret > 0)
  7586. return 0; /* probe failed */
  7587. if (ret)
  7588. return ret;
  7589. ibm->flags.init_called = 1;
  7590. }
  7591. if (ibm->acpi) {
  7592. if (ibm->acpi->hid) {
  7593. ret = register_tpacpi_subdriver(ibm);
  7594. if (ret)
  7595. goto err_out;
  7596. }
  7597. if (ibm->acpi->notify) {
  7598. ret = setup_acpi_notify(ibm);
  7599. if (ret == -ENODEV) {
  7600. pr_notice("disabling subdriver %s\n",
  7601. ibm->name);
  7602. ret = 0;
  7603. goto err_out;
  7604. }
  7605. if (ret < 0)
  7606. goto err_out;
  7607. }
  7608. }
  7609. dbg_printk(TPACPI_DBG_INIT,
  7610. "%s installed\n", ibm->name);
  7611. if (ibm->read) {
  7612. umode_t mode = iibm->base_procfs_mode;
  7613. if (!mode)
  7614. mode = S_IRUGO;
  7615. if (ibm->write)
  7616. mode |= S_IWUSR;
  7617. entry = proc_create_data(ibm->name, mode, proc_dir,
  7618. &dispatch_proc_fops, ibm);
  7619. if (!entry) {
  7620. pr_err("unable to create proc entry %s\n", ibm->name);
  7621. ret = -ENODEV;
  7622. goto err_out;
  7623. }
  7624. ibm->flags.proc_created = 1;
  7625. }
  7626. list_add_tail(&ibm->all_drivers, &tpacpi_all_drivers);
  7627. return 0;
  7628. err_out:
  7629. dbg_printk(TPACPI_DBG_INIT,
  7630. "%s: at error exit path with result %d\n",
  7631. ibm->name, ret);
  7632. ibm_exit(ibm);
  7633. return (ret < 0) ? ret : 0;
  7634. }
  7635. /* Probing */
  7636. static bool __pure __init tpacpi_is_fw_digit(const char c)
  7637. {
  7638. return (c >= '0' && c <= '9') || (c >= 'A' && c <= 'Z');
  7639. }
  7640. static bool __pure __init tpacpi_is_valid_fw_id(const char * const s,
  7641. const char t)
  7642. {
  7643. /*
  7644. * Most models: xxyTkkWW (#.##c)
  7645. * Ancient 570/600 and -SL lacks (#.##c)
  7646. */
  7647. if (s && strlen(s) >= 8 &&
  7648. tpacpi_is_fw_digit(s[0]) &&
  7649. tpacpi_is_fw_digit(s[1]) &&
  7650. s[2] == t &&
  7651. (s[3] == 'T' || s[3] == 'N') &&
  7652. tpacpi_is_fw_digit(s[4]) &&
  7653. tpacpi_is_fw_digit(s[5]))
  7654. return true;
  7655. /* New models: xxxyTkkW (#.##c); T550 and some others */
  7656. return s && strlen(s) >= 8 &&
  7657. tpacpi_is_fw_digit(s[0]) &&
  7658. tpacpi_is_fw_digit(s[1]) &&
  7659. tpacpi_is_fw_digit(s[2]) &&
  7660. s[3] == t &&
  7661. (s[4] == 'T' || s[4] == 'N') &&
  7662. tpacpi_is_fw_digit(s[5]) &&
  7663. tpacpi_is_fw_digit(s[6]);
  7664. }
  7665. /* returns 0 - probe ok, or < 0 - probe error.
  7666. * Probe ok doesn't mean thinkpad found.
  7667. * On error, kfree() cleanup on tp->* is not performed, caller must do it */
  7668. static int __must_check __init get_thinkpad_model_data(
  7669. struct thinkpad_id_data *tp)
  7670. {
  7671. const struct dmi_device *dev = NULL;
  7672. char ec_fw_string[18];
  7673. char const *s;
  7674. if (!tp)
  7675. return -EINVAL;
  7676. memset(tp, 0, sizeof(*tp));
  7677. if (dmi_name_in_vendors("IBM"))
  7678. tp->vendor = PCI_VENDOR_ID_IBM;
  7679. else if (dmi_name_in_vendors("LENOVO"))
  7680. tp->vendor = PCI_VENDOR_ID_LENOVO;
  7681. else
  7682. return 0;
  7683. s = dmi_get_system_info(DMI_BIOS_VERSION);
  7684. tp->bios_version_str = kstrdup(s, GFP_KERNEL);
  7685. if (s && !tp->bios_version_str)
  7686. return -ENOMEM;
  7687. /* Really ancient ThinkPad 240X will fail this, which is fine */
  7688. if (!(tpacpi_is_valid_fw_id(tp->bios_version_str, 'E') ||
  7689. tpacpi_is_valid_fw_id(tp->bios_version_str, 'C')))
  7690. return 0;
  7691. tp->bios_model = tp->bios_version_str[0]
  7692. | (tp->bios_version_str[1] << 8);
  7693. tp->bios_release = (tp->bios_version_str[4] << 8)
  7694. | tp->bios_version_str[5];
  7695. /*
  7696. * ThinkPad T23 or newer, A31 or newer, R50e or newer,
  7697. * X32 or newer, all Z series; Some models must have an
  7698. * up-to-date BIOS or they will not be detected.
  7699. *
  7700. * See http://thinkwiki.org/wiki/List_of_DMI_IDs
  7701. */
  7702. while ((dev = dmi_find_device(DMI_DEV_TYPE_OEM_STRING, NULL, dev))) {
  7703. if (sscanf(dev->name,
  7704. "IBM ThinkPad Embedded Controller -[%17c",
  7705. ec_fw_string) == 1) {
  7706. ec_fw_string[sizeof(ec_fw_string) - 1] = 0;
  7707. ec_fw_string[strcspn(ec_fw_string, " ]")] = 0;
  7708. tp->ec_version_str = kstrdup(ec_fw_string, GFP_KERNEL);
  7709. if (!tp->ec_version_str)
  7710. return -ENOMEM;
  7711. if (tpacpi_is_valid_fw_id(ec_fw_string, 'H')) {
  7712. tp->ec_model = ec_fw_string[0]
  7713. | (ec_fw_string[1] << 8);
  7714. tp->ec_release = (ec_fw_string[4] << 8)
  7715. | ec_fw_string[5];
  7716. } else {
  7717. pr_notice("ThinkPad firmware release %s "
  7718. "doesn't match the known patterns\n",
  7719. ec_fw_string);
  7720. pr_notice("please report this to %s\n",
  7721. TPACPI_MAIL);
  7722. }
  7723. break;
  7724. }
  7725. }
  7726. s = dmi_get_system_info(DMI_PRODUCT_VERSION);
  7727. if (s && !(strncasecmp(s, "ThinkPad", 8) && strncasecmp(s, "Lenovo", 6))) {
  7728. tp->model_str = kstrdup(s, GFP_KERNEL);
  7729. if (!tp->model_str)
  7730. return -ENOMEM;
  7731. } else {
  7732. s = dmi_get_system_info(DMI_BIOS_VENDOR);
  7733. if (s && !(strncasecmp(s, "Lenovo", 6))) {
  7734. tp->model_str = kstrdup(s, GFP_KERNEL);
  7735. if (!tp->model_str)
  7736. return -ENOMEM;
  7737. }
  7738. }
  7739. s = dmi_get_system_info(DMI_PRODUCT_NAME);
  7740. tp->nummodel_str = kstrdup(s, GFP_KERNEL);
  7741. if (s && !tp->nummodel_str)
  7742. return -ENOMEM;
  7743. return 0;
  7744. }
  7745. static int __init probe_for_thinkpad(void)
  7746. {
  7747. int is_thinkpad;
  7748. if (acpi_disabled)
  7749. return -ENODEV;
  7750. /* It would be dangerous to run the driver in this case */
  7751. if (!tpacpi_is_ibm() && !tpacpi_is_lenovo())
  7752. return -ENODEV;
  7753. /*
  7754. * Non-ancient models have better DMI tagging, but very old models
  7755. * don't. tpacpi_is_fw_known() is a cheat to help in that case.
  7756. */
  7757. is_thinkpad = (thinkpad_id.model_str != NULL) ||
  7758. (thinkpad_id.ec_model != 0) ||
  7759. tpacpi_is_fw_known();
  7760. /* The EC handler is required */
  7761. tpacpi_acpi_handle_locate("ec", TPACPI_ACPI_EC_HID, &ec_handle);
  7762. if (!ec_handle) {
  7763. if (is_thinkpad)
  7764. pr_err("Not yet supported ThinkPad detected!\n");
  7765. return -ENODEV;
  7766. }
  7767. if (!is_thinkpad && !force_load)
  7768. return -ENODEV;
  7769. return 0;
  7770. }
  7771. static void __init thinkpad_acpi_init_banner(void)
  7772. {
  7773. pr_info("%s v%s\n", TPACPI_DESC, TPACPI_VERSION);
  7774. pr_info("%s\n", TPACPI_URL);
  7775. pr_info("ThinkPad BIOS %s, EC %s\n",
  7776. (thinkpad_id.bios_version_str) ?
  7777. thinkpad_id.bios_version_str : "unknown",
  7778. (thinkpad_id.ec_version_str) ?
  7779. thinkpad_id.ec_version_str : "unknown");
  7780. BUG_ON(!thinkpad_id.vendor);
  7781. if (thinkpad_id.model_str)
  7782. pr_info("%s %s, model %s\n",
  7783. (thinkpad_id.vendor == PCI_VENDOR_ID_IBM) ?
  7784. "IBM" : ((thinkpad_id.vendor ==
  7785. PCI_VENDOR_ID_LENOVO) ?
  7786. "Lenovo" : "Unknown vendor"),
  7787. thinkpad_id.model_str,
  7788. (thinkpad_id.nummodel_str) ?
  7789. thinkpad_id.nummodel_str : "unknown");
  7790. }
  7791. /* Module init, exit, parameters */
  7792. static struct ibm_init_struct ibms_init[] __initdata = {
  7793. {
  7794. .data = &thinkpad_acpi_driver_data,
  7795. },
  7796. {
  7797. .init = hotkey_init,
  7798. .data = &hotkey_driver_data,
  7799. },
  7800. {
  7801. .init = bluetooth_init,
  7802. .data = &bluetooth_driver_data,
  7803. },
  7804. {
  7805. .init = wan_init,
  7806. .data = &wan_driver_data,
  7807. },
  7808. {
  7809. .init = uwb_init,
  7810. .data = &uwb_driver_data,
  7811. },
  7812. #ifdef CONFIG_THINKPAD_ACPI_VIDEO
  7813. {
  7814. .init = video_init,
  7815. .base_procfs_mode = S_IRUSR,
  7816. .data = &video_driver_data,
  7817. },
  7818. #endif
  7819. {
  7820. .init = kbdlight_init,
  7821. .data = &kbdlight_driver_data,
  7822. },
  7823. {
  7824. .init = light_init,
  7825. .data = &light_driver_data,
  7826. },
  7827. {
  7828. .init = cmos_init,
  7829. .data = &cmos_driver_data,
  7830. },
  7831. {
  7832. .init = led_init,
  7833. .data = &led_driver_data,
  7834. },
  7835. {
  7836. .init = beep_init,
  7837. .data = &beep_driver_data,
  7838. },
  7839. {
  7840. .init = thermal_init,
  7841. .data = &thermal_driver_data,
  7842. },
  7843. {
  7844. .init = brightness_init,
  7845. .data = &brightness_driver_data,
  7846. },
  7847. {
  7848. .init = volume_init,
  7849. .data = &volume_driver_data,
  7850. },
  7851. {
  7852. .init = fan_init,
  7853. .data = &fan_driver_data,
  7854. },
  7855. {
  7856. .init = mute_led_init,
  7857. .data = &mute_led_driver_data,
  7858. },
  7859. };
  7860. static int __init set_ibm_param(const char *val, struct kernel_param *kp)
  7861. {
  7862. unsigned int i;
  7863. struct ibm_struct *ibm;
  7864. if (!kp || !kp->name || !val)
  7865. return -EINVAL;
  7866. for (i = 0; i < ARRAY_SIZE(ibms_init); i++) {
  7867. ibm = ibms_init[i].data;
  7868. WARN_ON(ibm == NULL);
  7869. if (!ibm || !ibm->name)
  7870. continue;
  7871. if (strcmp(ibm->name, kp->name) == 0 && ibm->write) {
  7872. if (strlen(val) > sizeof(ibms_init[i].param) - 2)
  7873. return -ENOSPC;
  7874. strcpy(ibms_init[i].param, val);
  7875. strcat(ibms_init[i].param, ",");
  7876. return 0;
  7877. }
  7878. }
  7879. return -EINVAL;
  7880. }
  7881. module_param(experimental, int, 0444);
  7882. MODULE_PARM_DESC(experimental,
  7883. "Enables experimental features when non-zero");
  7884. module_param_named(debug, dbg_level, uint, 0);
  7885. MODULE_PARM_DESC(debug, "Sets debug level bit-mask");
  7886. module_param(force_load, bool, 0444);
  7887. MODULE_PARM_DESC(force_load,
  7888. "Attempts to load the driver even on a "
  7889. "mis-identified ThinkPad when true");
  7890. module_param_named(fan_control, fan_control_allowed, bool, 0444);
  7891. MODULE_PARM_DESC(fan_control,
  7892. "Enables setting fan parameters features when true");
  7893. module_param_named(brightness_mode, brightness_mode, uint, 0444);
  7894. MODULE_PARM_DESC(brightness_mode,
  7895. "Selects brightness control strategy: "
  7896. "0=auto, 1=EC, 2=UCMS, 3=EC+NVRAM");
  7897. module_param(brightness_enable, uint, 0444);
  7898. MODULE_PARM_DESC(brightness_enable,
  7899. "Enables backlight control when 1, disables when 0");
  7900. #ifdef CONFIG_THINKPAD_ACPI_ALSA_SUPPORT
  7901. module_param_named(volume_mode, volume_mode, uint, 0444);
  7902. MODULE_PARM_DESC(volume_mode,
  7903. "Selects volume control strategy: "
  7904. "0=auto, 1=EC, 2=N/A, 3=EC+NVRAM");
  7905. module_param_named(volume_capabilities, volume_capabilities, uint, 0444);
  7906. MODULE_PARM_DESC(volume_capabilities,
  7907. "Selects the mixer capabilites: "
  7908. "0=auto, 1=volume and mute, 2=mute only");
  7909. module_param_named(volume_control, volume_control_allowed, bool, 0444);
  7910. MODULE_PARM_DESC(volume_control,
  7911. "Enables software override for the console audio "
  7912. "control when true");
  7913. module_param_named(software_mute, software_mute_requested, bool, 0444);
  7914. MODULE_PARM_DESC(software_mute,
  7915. "Request full software mute control");
  7916. /* ALSA module API parameters */
  7917. module_param_named(index, alsa_index, int, 0444);
  7918. MODULE_PARM_DESC(index, "ALSA index for the ACPI EC Mixer");
  7919. module_param_named(id, alsa_id, charp, 0444);
  7920. MODULE_PARM_DESC(id, "ALSA id for the ACPI EC Mixer");
  7921. module_param_named(enable, alsa_enable, bool, 0444);
  7922. MODULE_PARM_DESC(enable, "Enable the ALSA interface for the ACPI EC Mixer");
  7923. #endif /* CONFIG_THINKPAD_ACPI_ALSA_SUPPORT */
  7924. #define TPACPI_PARAM(feature) \
  7925. module_param_call(feature, set_ibm_param, NULL, NULL, 0); \
  7926. MODULE_PARM_DESC(feature, "Simulates thinkpad-acpi procfs command " \
  7927. "at module load, see documentation")
  7928. TPACPI_PARAM(hotkey);
  7929. TPACPI_PARAM(bluetooth);
  7930. TPACPI_PARAM(video);
  7931. TPACPI_PARAM(light);
  7932. TPACPI_PARAM(cmos);
  7933. TPACPI_PARAM(led);
  7934. TPACPI_PARAM(beep);
  7935. TPACPI_PARAM(brightness);
  7936. TPACPI_PARAM(volume);
  7937. TPACPI_PARAM(fan);
  7938. #ifdef CONFIG_THINKPAD_ACPI_DEBUGFACILITIES
  7939. module_param(dbg_wlswemul, uint, 0444);
  7940. MODULE_PARM_DESC(dbg_wlswemul, "Enables WLSW emulation");
  7941. module_param_named(wlsw_state, tpacpi_wlsw_emulstate, bool, 0);
  7942. MODULE_PARM_DESC(wlsw_state,
  7943. "Initial state of the emulated WLSW switch");
  7944. module_param(dbg_bluetoothemul, uint, 0444);
  7945. MODULE_PARM_DESC(dbg_bluetoothemul, "Enables bluetooth switch emulation");
  7946. module_param_named(bluetooth_state, tpacpi_bluetooth_emulstate, bool, 0);
  7947. MODULE_PARM_DESC(bluetooth_state,
  7948. "Initial state of the emulated bluetooth switch");
  7949. module_param(dbg_wwanemul, uint, 0444);
  7950. MODULE_PARM_DESC(dbg_wwanemul, "Enables WWAN switch emulation");
  7951. module_param_named(wwan_state, tpacpi_wwan_emulstate, bool, 0);
  7952. MODULE_PARM_DESC(wwan_state,
  7953. "Initial state of the emulated WWAN switch");
  7954. module_param(dbg_uwbemul, uint, 0444);
  7955. MODULE_PARM_DESC(dbg_uwbemul, "Enables UWB switch emulation");
  7956. module_param_named(uwb_state, tpacpi_uwb_emulstate, bool, 0);
  7957. MODULE_PARM_DESC(uwb_state,
  7958. "Initial state of the emulated UWB switch");
  7959. #endif
  7960. static void thinkpad_acpi_module_exit(void)
  7961. {
  7962. struct ibm_struct *ibm, *itmp;
  7963. tpacpi_lifecycle = TPACPI_LIFE_EXITING;
  7964. list_for_each_entry_safe_reverse(ibm, itmp,
  7965. &tpacpi_all_drivers,
  7966. all_drivers) {
  7967. ibm_exit(ibm);
  7968. }
  7969. dbg_printk(TPACPI_DBG_INIT, "finished subdriver exit path...\n");
  7970. if (tpacpi_inputdev) {
  7971. if (tp_features.input_device_registered)
  7972. input_unregister_device(tpacpi_inputdev);
  7973. else
  7974. input_free_device(tpacpi_inputdev);
  7975. kfree(hotkey_keycode_map);
  7976. }
  7977. if (tpacpi_hwmon)
  7978. hwmon_device_unregister(tpacpi_hwmon);
  7979. if (tp_features.sensors_pdev_attrs_registered)
  7980. device_remove_file(&tpacpi_sensors_pdev->dev, &dev_attr_name);
  7981. if (tpacpi_sensors_pdev)
  7982. platform_device_unregister(tpacpi_sensors_pdev);
  7983. if (tpacpi_pdev)
  7984. platform_device_unregister(tpacpi_pdev);
  7985. if (tp_features.sensors_pdrv_attrs_registered)
  7986. tpacpi_remove_driver_attributes(&tpacpi_hwmon_pdriver.driver);
  7987. if (tp_features.platform_drv_attrs_registered)
  7988. tpacpi_remove_driver_attributes(&tpacpi_pdriver.driver);
  7989. if (tp_features.sensors_pdrv_registered)
  7990. platform_driver_unregister(&tpacpi_hwmon_pdriver);
  7991. if (tp_features.platform_drv_registered)
  7992. platform_driver_unregister(&tpacpi_pdriver);
  7993. if (proc_dir)
  7994. remove_proc_entry(TPACPI_PROC_DIR, acpi_root_dir);
  7995. if (tpacpi_wq)
  7996. destroy_workqueue(tpacpi_wq);
  7997. kfree(thinkpad_id.bios_version_str);
  7998. kfree(thinkpad_id.ec_version_str);
  7999. kfree(thinkpad_id.model_str);
  8000. kfree(thinkpad_id.nummodel_str);
  8001. }
  8002. static int __init thinkpad_acpi_module_init(void)
  8003. {
  8004. int ret, i;
  8005. tpacpi_lifecycle = TPACPI_LIFE_INIT;
  8006. /* Driver-level probe */
  8007. ret = get_thinkpad_model_data(&thinkpad_id);
  8008. if (ret) {
  8009. pr_err("unable to get DMI data: %d\n", ret);
  8010. thinkpad_acpi_module_exit();
  8011. return ret;
  8012. }
  8013. ret = probe_for_thinkpad();
  8014. if (ret) {
  8015. thinkpad_acpi_module_exit();
  8016. return ret;
  8017. }
  8018. /* Driver initialization */
  8019. thinkpad_acpi_init_banner();
  8020. tpacpi_check_outdated_fw();
  8021. TPACPI_ACPIHANDLE_INIT(ecrd);
  8022. TPACPI_ACPIHANDLE_INIT(ecwr);
  8023. tpacpi_wq = create_singlethread_workqueue(TPACPI_WORKQUEUE_NAME);
  8024. if (!tpacpi_wq) {
  8025. thinkpad_acpi_module_exit();
  8026. return -ENOMEM;
  8027. }
  8028. proc_dir = proc_mkdir(TPACPI_PROC_DIR, acpi_root_dir);
  8029. if (!proc_dir) {
  8030. pr_err("unable to create proc dir " TPACPI_PROC_DIR "\n");
  8031. thinkpad_acpi_module_exit();
  8032. return -ENODEV;
  8033. }
  8034. ret = platform_driver_register(&tpacpi_pdriver);
  8035. if (ret) {
  8036. pr_err("unable to register main platform driver\n");
  8037. thinkpad_acpi_module_exit();
  8038. return ret;
  8039. }
  8040. tp_features.platform_drv_registered = 1;
  8041. ret = platform_driver_register(&tpacpi_hwmon_pdriver);
  8042. if (ret) {
  8043. pr_err("unable to register hwmon platform driver\n");
  8044. thinkpad_acpi_module_exit();
  8045. return ret;
  8046. }
  8047. tp_features.sensors_pdrv_registered = 1;
  8048. ret = tpacpi_create_driver_attributes(&tpacpi_pdriver.driver);
  8049. if (!ret) {
  8050. tp_features.platform_drv_attrs_registered = 1;
  8051. ret = tpacpi_create_driver_attributes(
  8052. &tpacpi_hwmon_pdriver.driver);
  8053. }
  8054. if (ret) {
  8055. pr_err("unable to create sysfs driver attributes\n");
  8056. thinkpad_acpi_module_exit();
  8057. return ret;
  8058. }
  8059. tp_features.sensors_pdrv_attrs_registered = 1;
  8060. /* Device initialization */
  8061. tpacpi_pdev = platform_device_register_simple(TPACPI_DRVR_NAME, -1,
  8062. NULL, 0);
  8063. if (IS_ERR(tpacpi_pdev)) {
  8064. ret = PTR_ERR(tpacpi_pdev);
  8065. tpacpi_pdev = NULL;
  8066. pr_err("unable to register platform device\n");
  8067. thinkpad_acpi_module_exit();
  8068. return ret;
  8069. }
  8070. tpacpi_sensors_pdev = platform_device_register_simple(
  8071. TPACPI_HWMON_DRVR_NAME,
  8072. -1, NULL, 0);
  8073. if (IS_ERR(tpacpi_sensors_pdev)) {
  8074. ret = PTR_ERR(tpacpi_sensors_pdev);
  8075. tpacpi_sensors_pdev = NULL;
  8076. pr_err("unable to register hwmon platform device\n");
  8077. thinkpad_acpi_module_exit();
  8078. return ret;
  8079. }
  8080. ret = device_create_file(&tpacpi_sensors_pdev->dev, &dev_attr_name);
  8081. if (ret) {
  8082. pr_err("unable to create sysfs hwmon device attributes\n");
  8083. thinkpad_acpi_module_exit();
  8084. return ret;
  8085. }
  8086. tp_features.sensors_pdev_attrs_registered = 1;
  8087. tpacpi_hwmon = hwmon_device_register(&tpacpi_sensors_pdev->dev);
  8088. if (IS_ERR(tpacpi_hwmon)) {
  8089. ret = PTR_ERR(tpacpi_hwmon);
  8090. tpacpi_hwmon = NULL;
  8091. pr_err("unable to register hwmon device\n");
  8092. thinkpad_acpi_module_exit();
  8093. return ret;
  8094. }
  8095. mutex_init(&tpacpi_inputdev_send_mutex);
  8096. tpacpi_inputdev = input_allocate_device();
  8097. if (!tpacpi_inputdev) {
  8098. thinkpad_acpi_module_exit();
  8099. return -ENOMEM;
  8100. } else {
  8101. /* Prepare input device, but don't register */
  8102. tpacpi_inputdev->name = "ThinkPad Extra Buttons";
  8103. tpacpi_inputdev->phys = TPACPI_DRVR_NAME "/input0";
  8104. tpacpi_inputdev->id.bustype = BUS_HOST;
  8105. tpacpi_inputdev->id.vendor = thinkpad_id.vendor;
  8106. tpacpi_inputdev->id.product = TPACPI_HKEY_INPUT_PRODUCT;
  8107. tpacpi_inputdev->id.version = TPACPI_HKEY_INPUT_VERSION;
  8108. tpacpi_inputdev->dev.parent = &tpacpi_pdev->dev;
  8109. }
  8110. /* Init subdriver dependencies */
  8111. tpacpi_detect_brightness_capabilities();
  8112. /* Init subdrivers */
  8113. for (i = 0; i < ARRAY_SIZE(ibms_init); i++) {
  8114. ret = ibm_init(&ibms_init[i]);
  8115. if (ret >= 0 && *ibms_init[i].param)
  8116. ret = ibms_init[i].data->write(ibms_init[i].param);
  8117. if (ret < 0) {
  8118. thinkpad_acpi_module_exit();
  8119. return ret;
  8120. }
  8121. }
  8122. tpacpi_lifecycle = TPACPI_LIFE_RUNNING;
  8123. ret = input_register_device(tpacpi_inputdev);
  8124. if (ret < 0) {
  8125. pr_err("unable to register input device\n");
  8126. thinkpad_acpi_module_exit();
  8127. return ret;
  8128. } else {
  8129. tp_features.input_device_registered = 1;
  8130. }
  8131. return 0;
  8132. }
  8133. MODULE_ALIAS(TPACPI_DRVR_SHORTNAME);
  8134. /*
  8135. * This will autoload the driver in almost every ThinkPad
  8136. * in widespread use.
  8137. *
  8138. * Only _VERY_ old models, like the 240, 240x and 570 lack
  8139. * the HKEY event interface.
  8140. */
  8141. MODULE_DEVICE_TABLE(acpi, ibm_htk_device_ids);
  8142. /*
  8143. * DMI matching for module autoloading
  8144. *
  8145. * See http://thinkwiki.org/wiki/List_of_DMI_IDs
  8146. * See http://thinkwiki.org/wiki/BIOS_Upgrade_Downloads
  8147. *
  8148. * Only models listed in thinkwiki will be supported, so add yours
  8149. * if it is not there yet.
  8150. */
  8151. #define IBM_BIOS_MODULE_ALIAS(__type) \
  8152. MODULE_ALIAS("dmi:bvnIBM:bvr" __type "ET??WW*")
  8153. /* Ancient thinkpad BIOSes have to be identified by
  8154. * BIOS type or model number, and there are far less
  8155. * BIOS types than model numbers... */
  8156. IBM_BIOS_MODULE_ALIAS("I[MU]"); /* 570, 570e */
  8157. MODULE_AUTHOR("Borislav Deianov <borislav@users.sf.net>");
  8158. MODULE_AUTHOR("Henrique de Moraes Holschuh <hmh@hmh.eng.br>");
  8159. MODULE_DESCRIPTION(TPACPI_DESC);
  8160. MODULE_VERSION(TPACPI_VERSION);
  8161. MODULE_LICENSE("GPL");
  8162. module_init(thinkpad_acpi_module_init);
  8163. module_exit(thinkpad_acpi_module_exit);