asus-laptop.c 40 KB

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  1. /*
  2. * asus-laptop.c - Asus Laptop Support
  3. *
  4. *
  5. * Copyright (C) 2002-2005 Julien Lerouge, 2003-2006 Karol Kozimor
  6. * Copyright (C) 2006-2007 Corentin Chary
  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., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  21. *
  22. *
  23. * The development page for this driver is located at
  24. * http://sourceforge.net/projects/acpi4asus/
  25. *
  26. * Credits:
  27. * Pontus Fuchs - Helper functions, cleanup
  28. * Johann Wiesner - Small compile fixes
  29. * John Belmonte - ACPI code for Toshiba laptop was a good starting point.
  30. * Eric Burghard - LED display support for W1N
  31. * Josh Green - Light Sens support
  32. * Thomas Tuttle - His first patch for led support was very helpfull
  33. * Sam Lin - GPS support
  34. */
  35. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  36. #include <linux/kernel.h>
  37. #include <linux/module.h>
  38. #include <linux/init.h>
  39. #include <linux/types.h>
  40. #include <linux/err.h>
  41. #include <linux/proc_fs.h>
  42. #include <linux/backlight.h>
  43. #include <linux/fb.h>
  44. #include <linux/leds.h>
  45. #include <linux/platform_device.h>
  46. #include <acpi/acpi_drivers.h>
  47. #include <acpi/acpi_bus.h>
  48. #include <asm/uaccess.h>
  49. #include <linux/input.h>
  50. #define ASUS_LAPTOP_VERSION "0.42"
  51. #define ASUS_LAPTOP_NAME "Asus Laptop Support"
  52. #define ASUS_LAPTOP_CLASS "hotkey"
  53. #define ASUS_LAPTOP_DEVICE_NAME "Hotkey"
  54. #define ASUS_LAPTOP_FILE KBUILD_MODNAME
  55. #define ASUS_LAPTOP_PREFIX "\\_SB.ATKD."
  56. MODULE_AUTHOR("Julien Lerouge, Karol Kozimor, Corentin Chary");
  57. MODULE_DESCRIPTION(ASUS_LAPTOP_NAME);
  58. MODULE_LICENSE("GPL");
  59. /*
  60. * WAPF defines the behavior of the Fn+Fx wlan key
  61. * The significance of values is yet to be found, but
  62. * most of the time:
  63. * 0x0 will do nothing
  64. * 0x1 will allow to control the device with Fn+Fx key.
  65. * 0x4 will send an ACPI event (0x88) while pressing the Fn+Fx key
  66. * 0x5 like 0x1 or 0x4
  67. * So, if something doesn't work as you want, just try other values =)
  68. */
  69. static uint wapf = 1;
  70. module_param(wapf, uint, 0644);
  71. MODULE_PARM_DESC(wapf, "WAPF value");
  72. static uint wireless_status = 1;
  73. static uint bluetooth_status = 1;
  74. module_param(wireless_status, uint, 0644);
  75. MODULE_PARM_DESC(wireless_status, "Set the wireless status on boot "
  76. "(0 = disabled, 1 = enabled, -1 = don't do anything). "
  77. "default is 1");
  78. module_param(bluetooth_status, uint, 0644);
  79. MODULE_PARM_DESC(bluetooth_status, "Set the wireless status on boot "
  80. "(0 = disabled, 1 = enabled, -1 = don't do anything). "
  81. "default is 1");
  82. /*
  83. * Some events we use, same for all Asus
  84. */
  85. #define ATKD_BR_UP 0x10
  86. #define ATKD_BR_DOWN 0x20
  87. #define ATKD_LCD_ON 0x33
  88. #define ATKD_LCD_OFF 0x34
  89. /*
  90. * Known bits returned by \_SB.ATKD.HWRS
  91. */
  92. #define WL_HWRS 0x80
  93. #define BT_HWRS 0x100
  94. /*
  95. * Flags for hotk status
  96. * WL_ON and BT_ON are also used for wireless_status()
  97. */
  98. #define WL_RSTS 0x01 /* internal Wifi */
  99. #define BT_RSTS 0x02 /* internal Bluetooth */
  100. #define ASUS_HANDLE(object, paths...) \
  101. static acpi_handle object##_handle = NULL; \
  102. static char *object##_paths[] = { paths }
  103. /* LED */
  104. ASUS_HANDLE(mled_set, ASUS_LAPTOP_PREFIX "MLED");
  105. ASUS_HANDLE(tled_set, ASUS_LAPTOP_PREFIX "TLED");
  106. ASUS_HANDLE(rled_set, ASUS_LAPTOP_PREFIX "RLED"); /* W1JC */
  107. ASUS_HANDLE(pled_set, ASUS_LAPTOP_PREFIX "PLED"); /* A7J */
  108. ASUS_HANDLE(gled_set, ASUS_LAPTOP_PREFIX "GLED"); /* G1, G2 (probably) */
  109. /* LEDD */
  110. ASUS_HANDLE(ledd_set, ASUS_LAPTOP_PREFIX "SLCM");
  111. /*
  112. * Bluetooth and WLAN
  113. * WLED and BLED are not handled like other XLED, because in some dsdt
  114. * they also control the WLAN/Bluetooth device.
  115. */
  116. ASUS_HANDLE(wl_switch, ASUS_LAPTOP_PREFIX "WLED");
  117. ASUS_HANDLE(bt_switch, ASUS_LAPTOP_PREFIX "BLED");
  118. ASUS_HANDLE(wireless_status, ASUS_LAPTOP_PREFIX "RSTS"); /* All new models */
  119. /* Brightness */
  120. ASUS_HANDLE(brightness_set, ASUS_LAPTOP_PREFIX "SPLV");
  121. ASUS_HANDLE(brightness_get, ASUS_LAPTOP_PREFIX "GPLV");
  122. /* Backlight */
  123. ASUS_HANDLE(lcd_switch, "\\_SB.PCI0.SBRG.EC0._Q10", /* All new models */
  124. "\\_SB.PCI0.ISA.EC0._Q10", /* A1x */
  125. "\\_SB.PCI0.PX40.ECD0._Q10", /* L3C */
  126. "\\_SB.PCI0.PX40.EC0.Q10", /* M1A */
  127. "\\_SB.PCI0.LPCB.EC0._Q10", /* P30 */
  128. "\\_SB.PCI0.LPCB.EC0._Q0E", /* P30/P35 */
  129. "\\_SB.PCI0.PX40.Q10", /* S1x */
  130. "\\Q10"); /* A2x, L2D, L3D, M2E */
  131. /* Display */
  132. ASUS_HANDLE(display_set, ASUS_LAPTOP_PREFIX "SDSP");
  133. ASUS_HANDLE(display_get,
  134. /* A6B, A6K A6R A7D F3JM L4R M6R A3G M6A M6V VX-1 V6J V6V W3Z */
  135. "\\_SB.PCI0.P0P1.VGA.GETD",
  136. /* A3E A4K, A4D A4L A6J A7J A8J Z71V M9V S5A M5A z33A W1Jc W2V G1 */
  137. "\\_SB.PCI0.P0P2.VGA.GETD",
  138. /* A6V A6Q */
  139. "\\_SB.PCI0.P0P3.VGA.GETD",
  140. /* A6T, A6M */
  141. "\\_SB.PCI0.P0PA.VGA.GETD",
  142. /* L3C */
  143. "\\_SB.PCI0.PCI1.VGAC.NMAP",
  144. /* Z96F */
  145. "\\_SB.PCI0.VGA.GETD",
  146. /* A2D */
  147. "\\ACTD",
  148. /* A4G Z71A W1N W5A W5F M2N M3N M5N M6N S1N S5N */
  149. "\\ADVG",
  150. /* P30 */
  151. "\\DNXT",
  152. /* A2H D1 L2D L3D L3H L2E L5D L5C M1A M2E L4L W3V */
  153. "\\INFB",
  154. /* A3F A6F A3N A3L M6N W3N W6A */
  155. "\\SSTE");
  156. ASUS_HANDLE(ls_switch, ASUS_LAPTOP_PREFIX "ALSC"); /* Z71A Z71V */
  157. ASUS_HANDLE(ls_level, ASUS_LAPTOP_PREFIX "ALSL"); /* Z71A Z71V */
  158. /* GPS */
  159. /* R2H use different handle for GPS on/off */
  160. ASUS_HANDLE(gps_on, ASUS_LAPTOP_PREFIX "SDON"); /* R2H */
  161. ASUS_HANDLE(gps_off, ASUS_LAPTOP_PREFIX "SDOF"); /* R2H */
  162. ASUS_HANDLE(gps_status, ASUS_LAPTOP_PREFIX "GPST");
  163. /* Keyboard light */
  164. ASUS_HANDLE(kled_set, ASUS_LAPTOP_PREFIX "SLKB");
  165. ASUS_HANDLE(kled_get, ASUS_LAPTOP_PREFIX "GLKB");
  166. /*
  167. * Define a specific led structure to keep the main structure clean
  168. */
  169. #define ASUS_DEFINE_LED(object) \
  170. int object##_wk; \
  171. struct work_struct object##_work; \
  172. struct led_classdev object;
  173. #define led_to_asus(led_cdev, led) \
  174. container_of(container_of(led_cdev, struct asus_laptop_leds, \
  175. led), \
  176. struct asus_laptop, leds)
  177. #define work_to_asus(work, led) \
  178. container_of(container_of(work, struct asus_laptop_leds, \
  179. led##_work), \
  180. struct asus_laptop, leds)
  181. struct asus_laptop_leds {
  182. ASUS_DEFINE_LED(mled)
  183. ASUS_DEFINE_LED(tled)
  184. ASUS_DEFINE_LED(rled)
  185. ASUS_DEFINE_LED(pled)
  186. ASUS_DEFINE_LED(gled)
  187. ASUS_DEFINE_LED(kled)
  188. struct workqueue_struct *workqueue;
  189. };
  190. /*
  191. * This is the main structure, we can use it to store anything interesting
  192. * about the hotk device
  193. */
  194. struct asus_laptop {
  195. char *name; /* laptop name */
  196. struct acpi_table_header *dsdt_info;
  197. struct platform_device *platform_device;
  198. struct acpi_device *device; /* the device we are in */
  199. struct backlight_device *backlight_device;
  200. struct input_dev *inputdev;
  201. struct key_entry *keymap;
  202. struct asus_laptop_leds leds;
  203. int wireless_status;
  204. bool have_rsts;
  205. int lcd_state;
  206. acpi_handle handle; /* the handle of the hotk device */
  207. u32 ledd_status; /* status of the LED display */
  208. u8 light_level; /* light sensor level */
  209. u8 light_switch; /* light sensor switch value */
  210. u16 event_count[128]; /* count for each event TODO make this better */
  211. u16 *keycode_map;
  212. };
  213. struct key_entry {
  214. char type;
  215. u8 code;
  216. u16 keycode;
  217. };
  218. enum { KE_KEY, KE_END };
  219. static const struct key_entry asus_keymap[] = {
  220. {KE_KEY, 0x02, KEY_SCREENLOCK},
  221. {KE_KEY, 0x05, KEY_WLAN},
  222. {KE_KEY, 0x08, KEY_F13},
  223. {KE_KEY, 0x17, KEY_ZOOM},
  224. {KE_KEY, 0x1f, KEY_BATTERY},
  225. {KE_KEY, 0x30, KEY_VOLUMEUP},
  226. {KE_KEY, 0x31, KEY_VOLUMEDOWN},
  227. {KE_KEY, 0x32, KEY_MUTE},
  228. {KE_KEY, 0x33, KEY_SWITCHVIDEOMODE},
  229. {KE_KEY, 0x34, KEY_SWITCHVIDEOMODE},
  230. {KE_KEY, 0x40, KEY_PREVIOUSSONG},
  231. {KE_KEY, 0x41, KEY_NEXTSONG},
  232. {KE_KEY, 0x43, KEY_STOPCD},
  233. {KE_KEY, 0x45, KEY_PLAYPAUSE},
  234. {KE_KEY, 0x4c, KEY_MEDIA},
  235. {KE_KEY, 0x50, KEY_EMAIL},
  236. {KE_KEY, 0x51, KEY_WWW},
  237. {KE_KEY, 0x55, KEY_CALC},
  238. {KE_KEY, 0x5C, KEY_SCREENLOCK}, /* Screenlock */
  239. {KE_KEY, 0x5D, KEY_WLAN},
  240. {KE_KEY, 0x5E, KEY_WLAN},
  241. {KE_KEY, 0x5F, KEY_WLAN},
  242. {KE_KEY, 0x60, KEY_SWITCHVIDEOMODE},
  243. {KE_KEY, 0x61, KEY_SWITCHVIDEOMODE},
  244. {KE_KEY, 0x62, KEY_SWITCHVIDEOMODE},
  245. {KE_KEY, 0x63, KEY_SWITCHVIDEOMODE},
  246. {KE_KEY, 0x6B, KEY_F13}, /* Lock Touchpad */
  247. {KE_KEY, 0x82, KEY_CAMERA},
  248. {KE_KEY, 0x88, KEY_WLAN },
  249. {KE_KEY, 0x8A, KEY_PROG1},
  250. {KE_KEY, 0x95, KEY_MEDIA},
  251. {KE_KEY, 0x99, KEY_PHONE},
  252. {KE_KEY, 0xc4, KEY_KBDILLUMUP},
  253. {KE_KEY, 0xc5, KEY_KBDILLUMDOWN},
  254. {KE_END, 0},
  255. };
  256. /*
  257. * This function evaluates an ACPI method, given an int as parameter, the
  258. * method is searched within the scope of the handle, can be NULL. The output
  259. * of the method is written is output, which can also be NULL
  260. *
  261. * returns 0 if write is successful, -1 else.
  262. */
  263. static int write_acpi_int_ret(acpi_handle handle, const char *method, int val,
  264. struct acpi_buffer *output)
  265. {
  266. struct acpi_object_list params; /* list of input parameters (an int) */
  267. union acpi_object in_obj; /* the only param we use */
  268. acpi_status status;
  269. if (!handle)
  270. return 0;
  271. params.count = 1;
  272. params.pointer = &in_obj;
  273. in_obj.type = ACPI_TYPE_INTEGER;
  274. in_obj.integer.value = val;
  275. status = acpi_evaluate_object(handle, (char *)method, &params, output);
  276. if (status == AE_OK)
  277. return 0;
  278. else
  279. return -1;
  280. }
  281. static int write_acpi_int(acpi_handle handle, const char *method, int val)
  282. {
  283. return write_acpi_int_ret(handle, method, val, NULL);
  284. }
  285. /* Generic LED function */
  286. static void asus_led_set(struct asus_laptop *asus, acpi_handle handle,
  287. int value)
  288. {
  289. if (handle == mled_set_handle)
  290. value = !value;
  291. else if (handle == gled_set_handle)
  292. value = !value + 1;
  293. else
  294. value = !!value;
  295. write_acpi_int(handle, NULL, value);
  296. }
  297. /*
  298. * LEDs
  299. */
  300. #define ASUS_LED(object, ledname, max) \
  301. static void object##_led_set(struct led_classdev *led_cdev, \
  302. enum led_brightness value); \
  303. static enum led_brightness object##_led_get( \
  304. struct led_classdev *led_cdev); \
  305. static void object##_led_update(struct work_struct *ignored); \
  306. static struct led_classdev object##_led = { \
  307. .name = "asus::" ledname, \
  308. .brightness_set = object##_led_set, \
  309. .brightness_get = object##_led_get, \
  310. .max_brightness = max \
  311. }
  312. ASUS_LED(mled, "mail", 1);
  313. ASUS_LED(tled, "touchpad", 1);
  314. ASUS_LED(rled, "record", 1);
  315. ASUS_LED(pled, "phone", 1);
  316. ASUS_LED(gled, "gaming", 1);
  317. ASUS_LED(kled, "kbd_backlight", 3);
  318. /* /sys/class/led handlers */
  319. #define ASUS_LED_HANDLER(object, mask) \
  320. static void object##_led_set(struct led_classdev *led_cdev, \
  321. enum led_brightness value) \
  322. { \
  323. struct asus_laptop *asus = \
  324. led_to_asus(led_cdev, object); \
  325. \
  326. asus->leds.object##_wk = (value > 0) ? 1 : 0; \
  327. queue_work(asus->leds.workqueue, \
  328. &asus->leds.object##_work); \
  329. } \
  330. static void object##_led_update(struct work_struct *work) \
  331. { \
  332. struct asus_laptop *asus = work_to_asus(work, object); \
  333. \
  334. int value = asus->leds.object##_wk; \
  335. asus_led_set(asus, object##_set_handle, value); \
  336. } \
  337. static enum led_brightness object##_led_get( \
  338. struct led_classdev *led_cdev) \
  339. { \
  340. return led_cdev->brightness; \
  341. }
  342. ASUS_LED_HANDLER(mled, MLED_ON);
  343. ASUS_LED_HANDLER(pled, PLED_ON);
  344. ASUS_LED_HANDLER(rled, RLED_ON);
  345. ASUS_LED_HANDLER(tled, TLED_ON);
  346. ASUS_LED_HANDLER(gled, GLED_ON);
  347. /*
  348. * Keyboard backlight (also a LED)
  349. */
  350. static int asus_kled_lvl(void)
  351. {
  352. unsigned long long kblv;
  353. struct acpi_object_list params;
  354. union acpi_object in_obj;
  355. acpi_status rv;
  356. params.count = 1;
  357. params.pointer = &in_obj;
  358. in_obj.type = ACPI_TYPE_INTEGER;
  359. in_obj.integer.value = 2;
  360. rv = acpi_evaluate_integer(kled_get_handle, NULL, &params, &kblv);
  361. if (ACPI_FAILURE(rv)) {
  362. pr_warning("Error reading kled level\n");
  363. return -ENODEV;
  364. }
  365. return kblv;
  366. }
  367. static int asus_kled_set(struct asus_laptop *asus, int kblv)
  368. {
  369. if (kblv > 0)
  370. kblv = (1 << 7) | (kblv & 0x7F);
  371. else
  372. kblv = 0;
  373. if (write_acpi_int(kled_set_handle, NULL, kblv)) {
  374. pr_warning("Keyboard LED display write failed\n");
  375. return -EINVAL;
  376. }
  377. return 0;
  378. }
  379. static void kled_led_set(struct led_classdev *led_cdev,
  380. enum led_brightness value)
  381. {
  382. struct asus_laptop *asus = led_to_asus(led_cdev, kled);
  383. asus->leds.kled_wk = value;
  384. queue_work(asus->leds.workqueue, &asus->leds.kled_work);
  385. }
  386. static void kled_led_update(struct work_struct *work)
  387. {
  388. struct asus_laptop *asus = work_to_asus(work, kled);
  389. asus_kled_set(asus, asus->leds.kled_wk);
  390. }
  391. static enum led_brightness kled_led_get(struct led_classdev *led_cdev)
  392. {
  393. return asus_kled_lvl();
  394. }
  395. #define ASUS_LED_UNREGISTER(object) \
  396. if (object##_led.dev) \
  397. led_classdev_unregister(&object##_led)
  398. static void asus_led_exit(struct asus_laptop *asus)
  399. {
  400. ASUS_LED_UNREGISTER(mled);
  401. ASUS_LED_UNREGISTER(tled);
  402. ASUS_LED_UNREGISTER(pled);
  403. ASUS_LED_UNREGISTER(rled);
  404. ASUS_LED_UNREGISTER(gled);
  405. ASUS_LED_UNREGISTER(kled);
  406. if (asus->leds.workqueue) {
  407. destroy_workqueue(asus->leds.workqueue);
  408. asus->leds.workqueue = NULL;
  409. }
  410. }
  411. /* Ugly macro, need to fix that later */
  412. #define ASUS_LED_REGISTER(asus, object, _name, max) \
  413. do { \
  414. struct led_classdev *ldev = &asus->leds.object; \
  415. if (!object##_set_handle) \
  416. break ; \
  417. \
  418. INIT_WORK(&asus->leds.object##_work, object##_led_update); \
  419. ldev->name = "asus::" _name; \
  420. ldev->brightness_set = object##_led_set; \
  421. ldev->max_brightness = max; \
  422. rv = led_classdev_register(&asus->platform_device->dev, ldev); \
  423. if (rv) \
  424. goto error; \
  425. } while (0)
  426. static int asus_led_init(struct asus_laptop *asus)
  427. {
  428. int rv;
  429. /*
  430. * Functions that actually update the LED's are called from a
  431. * workqueue. By doing this as separate work rather than when the LED
  432. * subsystem asks, we avoid messing with the Asus ACPI stuff during a
  433. * potentially bad time, such as a timer interrupt.
  434. */
  435. asus->leds.workqueue = create_singlethread_workqueue("led_workqueue");
  436. if (!asus->leds.workqueue)
  437. return -ENOMEM;
  438. ASUS_LED_REGISTER(asus, mled, "mail", 1);
  439. ASUS_LED_REGISTER(asus, tled, "touchpad", 1);
  440. ASUS_LED_REGISTER(asus, rled, "record", 1);
  441. ASUS_LED_REGISTER(asus, pled, "phone", 1);
  442. ASUS_LED_REGISTER(asus, gled, "gaming", 1);
  443. if (kled_set_handle && kled_get_handle)
  444. ASUS_LED_REGISTER(asus, kled, "kbd_backlight", 3);
  445. error:
  446. if (rv)
  447. asus_led_exit(asus);
  448. return rv;
  449. }
  450. /*
  451. * Backlight device
  452. */
  453. static int asus_lcd_status(struct asus_laptop *asus)
  454. {
  455. return asus->lcd_state;
  456. }
  457. static int asus_lcd_set(struct asus_laptop *asus, int value)
  458. {
  459. int lcd = 0;
  460. acpi_status status = 0;
  461. lcd = !!value;
  462. if (lcd == asus_lcd_status(asus))
  463. return 0;
  464. if (!lcd_switch_handle)
  465. return -ENODEV;
  466. status = acpi_evaluate_object(lcd_switch_handle,
  467. NULL, NULL, NULL);
  468. if (ACPI_FAILURE(status)) {
  469. pr_warning("Error switching LCD\n");
  470. return -ENODEV;
  471. }
  472. asus->lcd_state = lcd;
  473. return 0;
  474. }
  475. static void lcd_blank(struct asus_laptop *asus, int blank)
  476. {
  477. struct backlight_device *bd = asus->backlight_device;
  478. asus->lcd_state = (blank == FB_BLANK_UNBLANK);
  479. if (bd) {
  480. bd->props.power = blank;
  481. backlight_update_status(bd);
  482. }
  483. }
  484. static int asus_read_brightness(struct backlight_device *bd)
  485. {
  486. unsigned long long value;
  487. acpi_status rv = AE_OK;
  488. rv = acpi_evaluate_integer(brightness_get_handle, NULL, NULL, &value);
  489. if (ACPI_FAILURE(rv))
  490. pr_warning("Error reading brightness\n");
  491. return value;
  492. }
  493. static int asus_set_brightness(struct backlight_device *bd, int value)
  494. {
  495. if (write_acpi_int(brightness_set_handle, NULL, value)) {
  496. pr_warning("Error changing brightness\n");
  497. return -EIO;
  498. }
  499. return 0;
  500. }
  501. static int update_bl_status(struct backlight_device *bd)
  502. {
  503. struct asus_laptop *asus = bl_get_data(bd);
  504. int rv;
  505. int value = bd->props.brightness;
  506. rv = asus_set_brightness(bd, value);
  507. if (rv)
  508. return rv;
  509. value = (bd->props.power == FB_BLANK_UNBLANK) ? 1 : 0;
  510. return asus_lcd_set(asus, value);
  511. }
  512. static struct backlight_ops asusbl_ops = {
  513. .get_brightness = asus_read_brightness,
  514. .update_status = update_bl_status,
  515. };
  516. static int asus_backlight_init(struct asus_laptop *asus)
  517. {
  518. struct backlight_device *bd;
  519. struct device *dev = &asus->platform_device->dev;
  520. if (brightness_set_handle && lcd_switch_handle) {
  521. bd = backlight_device_register(ASUS_LAPTOP_FILE, dev,
  522. asus, &asusbl_ops);
  523. if (IS_ERR(bd)) {
  524. pr_err("Could not register asus backlight device\n");
  525. asus->backlight_device = NULL;
  526. return PTR_ERR(bd);
  527. }
  528. asus->backlight_device = bd;
  529. bd->props.max_brightness = 15;
  530. bd->props.brightness = asus_read_brightness(NULL);
  531. bd->props.power = FB_BLANK_UNBLANK;
  532. backlight_update_status(bd);
  533. }
  534. return 0;
  535. }
  536. static void asus_backlight_exit(struct asus_laptop *asus)
  537. {
  538. if (asus->backlight_device)
  539. backlight_device_unregister(asus->backlight_device);
  540. }
  541. /*
  542. * Platform device handlers
  543. */
  544. /*
  545. * We write our info in page, we begin at offset off and cannot write more
  546. * than count bytes. We set eof to 1 if we handle those 2 values. We return the
  547. * number of bytes written in page
  548. */
  549. static ssize_t show_infos(struct device *dev,
  550. struct device_attribute *attr, char *page)
  551. {
  552. struct asus_laptop *asus = dev_get_drvdata(dev);
  553. int len = 0;
  554. unsigned long long temp;
  555. char buf[16]; /* enough for all info */
  556. acpi_status rv = AE_OK;
  557. /*
  558. * We use the easy way, we don't care of off and count, so we don't set eof
  559. * to 1
  560. */
  561. len += sprintf(page, ASUS_LAPTOP_NAME " " ASUS_LAPTOP_VERSION "\n");
  562. len += sprintf(page + len, "Model reference : %s\n", asus->name);
  563. /*
  564. * The SFUN method probably allows the original driver to get the list
  565. * of features supported by a given model. For now, 0x0100 or 0x0800
  566. * bit signifies that the laptop is equipped with a Wi-Fi MiniPCI card.
  567. * The significance of others is yet to be found.
  568. */
  569. rv = acpi_evaluate_integer(asus->handle, "SFUN", NULL, &temp);
  570. if (!ACPI_FAILURE(rv))
  571. len += sprintf(page + len, "SFUN value : %#x\n",
  572. (uint) temp);
  573. /*
  574. * The HWRS method return informations about the hardware.
  575. * 0x80 bit is for WLAN, 0x100 for Bluetooth.
  576. * The significance of others is yet to be found.
  577. * If we don't find the method, we assume the device are present.
  578. */
  579. rv = acpi_evaluate_integer(asus->handle, "HRWS", NULL, &temp);
  580. if (!ACPI_FAILURE(rv))
  581. len += sprintf(page + len, "HRWS value : %#x\n",
  582. (uint) temp);
  583. /*
  584. * Another value for userspace: the ASYM method returns 0x02 for
  585. * battery low and 0x04 for battery critical, its readings tend to be
  586. * more accurate than those provided by _BST.
  587. * Note: since not all the laptops provide this method, errors are
  588. * silently ignored.
  589. */
  590. rv = acpi_evaluate_integer(asus->handle, "ASYM", NULL, &temp);
  591. if (!ACPI_FAILURE(rv))
  592. len += sprintf(page + len, "ASYM value : %#x\n",
  593. (uint) temp);
  594. if (asus->dsdt_info) {
  595. snprintf(buf, 16, "%d", asus->dsdt_info->length);
  596. len += sprintf(page + len, "DSDT length : %s\n", buf);
  597. snprintf(buf, 16, "%d", asus->dsdt_info->checksum);
  598. len += sprintf(page + len, "DSDT checksum : %s\n", buf);
  599. snprintf(buf, 16, "%d", asus->dsdt_info->revision);
  600. len += sprintf(page + len, "DSDT revision : %s\n", buf);
  601. snprintf(buf, 7, "%s", asus->dsdt_info->oem_id);
  602. len += sprintf(page + len, "OEM id : %s\n", buf);
  603. snprintf(buf, 9, "%s", asus->dsdt_info->oem_table_id);
  604. len += sprintf(page + len, "OEM table id : %s\n", buf);
  605. snprintf(buf, 16, "%x", asus->dsdt_info->oem_revision);
  606. len += sprintf(page + len, "OEM revision : 0x%s\n", buf);
  607. snprintf(buf, 5, "%s", asus->dsdt_info->asl_compiler_id);
  608. len += sprintf(page + len, "ASL comp vendor id : %s\n", buf);
  609. snprintf(buf, 16, "%x", asus->dsdt_info->asl_compiler_revision);
  610. len += sprintf(page + len, "ASL comp revision : 0x%s\n", buf);
  611. }
  612. return len;
  613. }
  614. static int parse_arg(const char *buf, unsigned long count, int *val)
  615. {
  616. if (!count)
  617. return 0;
  618. if (count > 31)
  619. return -EINVAL;
  620. if (sscanf(buf, "%i", val) != 1)
  621. return -EINVAL;
  622. return count;
  623. }
  624. static ssize_t sysfs_acpi_set(struct asus_laptop *asus,
  625. const char *buf, size_t count,
  626. acpi_handle handle)
  627. {
  628. int rv, value;
  629. int out = 0;
  630. rv = parse_arg(buf, count, &value);
  631. if (rv > 0)
  632. out = value ? 1 : 0;
  633. if (write_acpi_int(handle, NULL, value))
  634. return -ENODEV;
  635. return rv;
  636. }
  637. /*
  638. * LEDD display
  639. */
  640. static ssize_t show_ledd(struct device *dev,
  641. struct device_attribute *attr, char *buf)
  642. {
  643. struct asus_laptop *asus = dev_get_drvdata(dev);
  644. return sprintf(buf, "0x%08x\n", asus->ledd_status);
  645. }
  646. static ssize_t store_ledd(struct device *dev, struct device_attribute *attr,
  647. const char *buf, size_t count)
  648. {
  649. struct asus_laptop *asus = dev_get_drvdata(dev);
  650. int rv, value;
  651. rv = parse_arg(buf, count, &value);
  652. if (rv > 0) {
  653. if (write_acpi_int(ledd_set_handle, NULL, value))
  654. pr_warning("LED display write failed\n");
  655. else
  656. asus->ledd_status = (u32) value;
  657. }
  658. return rv;
  659. }
  660. /*
  661. * Wireless
  662. */
  663. static int asus_wireless_status(struct asus_laptop *asus, int mask)
  664. {
  665. unsigned long long status;
  666. acpi_status rv = AE_OK;
  667. if (!asus->have_rsts)
  668. return (asus->wireless_status & mask) ? 1 : 0;
  669. rv = acpi_evaluate_integer(wireless_status_handle, NULL, NULL, &status);
  670. if (ACPI_FAILURE(rv)) {
  671. pr_warning("Error reading Wireless status\n");
  672. return -EINVAL;
  673. }
  674. return !!(status & mask);
  675. }
  676. /*
  677. * WLAN
  678. */
  679. static ssize_t show_wlan(struct device *dev,
  680. struct device_attribute *attr, char *buf)
  681. {
  682. struct asus_laptop *asus = dev_get_drvdata(dev);
  683. return sprintf(buf, "%d\n", asus_wireless_status(asus, WL_RSTS));
  684. }
  685. static ssize_t store_wlan(struct device *dev, struct device_attribute *attr,
  686. const char *buf, size_t count)
  687. {
  688. struct asus_laptop *asus = dev_get_drvdata(dev);
  689. return sysfs_acpi_set(asus, buf, count, wl_switch_handle);
  690. }
  691. /*
  692. * Bluetooth
  693. */
  694. static ssize_t show_bluetooth(struct device *dev,
  695. struct device_attribute *attr, char *buf)
  696. {
  697. struct asus_laptop *asus = dev_get_drvdata(dev);
  698. return sprintf(buf, "%d\n", asus_wireless_status(asus, BT_RSTS));
  699. }
  700. static ssize_t store_bluetooth(struct device *dev,
  701. struct device_attribute *attr, const char *buf,
  702. size_t count)
  703. {
  704. struct asus_laptop *asus = dev_get_drvdata(dev);
  705. return sysfs_acpi_set(asus, buf, count, bt_switch_handle);
  706. }
  707. /*
  708. * Display
  709. */
  710. static void asus_set_display(struct asus_laptop *asus, int value)
  711. {
  712. /* no sanity check needed for now */
  713. if (write_acpi_int(display_set_handle, NULL, value))
  714. pr_warning("Error setting display\n");
  715. return;
  716. }
  717. static int read_display(struct asus_laptop *asus)
  718. {
  719. unsigned long long value = 0;
  720. acpi_status rv = AE_OK;
  721. /*
  722. * In most of the case, we know how to set the display, but sometime
  723. * we can't read it
  724. */
  725. if (display_get_handle) {
  726. rv = acpi_evaluate_integer(display_get_handle, NULL,
  727. NULL, &value);
  728. if (ACPI_FAILURE(rv))
  729. pr_warning("Error reading display status\n");
  730. }
  731. value &= 0x0F; /* needed for some models, shouldn't hurt others */
  732. return value;
  733. }
  734. /*
  735. * Now, *this* one could be more user-friendly, but so far, no-one has
  736. * complained. The significance of bits is the same as in store_disp()
  737. */
  738. static ssize_t show_disp(struct device *dev,
  739. struct device_attribute *attr, char *buf)
  740. {
  741. struct asus_laptop *asus = dev_get_drvdata(dev);
  742. return sprintf(buf, "%d\n", read_display(asus));
  743. }
  744. /*
  745. * Experimental support for display switching. As of now: 1 should activate
  746. * the LCD output, 2 should do for CRT, 4 for TV-Out and 8 for DVI.
  747. * Any combination (bitwise) of these will suffice. I never actually tested 4
  748. * displays hooked up simultaneously, so be warned. See the acpi4asus README
  749. * for more info.
  750. */
  751. static ssize_t store_disp(struct device *dev, struct device_attribute *attr,
  752. const char *buf, size_t count)
  753. {
  754. struct asus_laptop *asus = dev_get_drvdata(dev);
  755. int rv, value;
  756. rv = parse_arg(buf, count, &value);
  757. if (rv > 0)
  758. asus_set_display(asus, value);
  759. return rv;
  760. }
  761. /*
  762. * Light Sens
  763. */
  764. static void asus_als_switch(struct asus_laptop *asus, int value)
  765. {
  766. if (write_acpi_int(ls_switch_handle, NULL, value))
  767. pr_warning("Error setting light sensor switch\n");
  768. asus->light_switch = value;
  769. }
  770. static ssize_t show_lssw(struct device *dev,
  771. struct device_attribute *attr, char *buf)
  772. {
  773. struct asus_laptop *asus = dev_get_drvdata(dev);
  774. return sprintf(buf, "%d\n", asus->light_switch);
  775. }
  776. static ssize_t store_lssw(struct device *dev, struct device_attribute *attr,
  777. const char *buf, size_t count)
  778. {
  779. struct asus_laptop *asus = dev_get_drvdata(dev);
  780. int rv, value;
  781. rv = parse_arg(buf, count, &value);
  782. if (rv > 0)
  783. asus_als_switch(asus, value ? 1 : 0);
  784. return rv;
  785. }
  786. static void asus_als_level(struct asus_laptop *asus, int value)
  787. {
  788. if (write_acpi_int(ls_level_handle, NULL, value))
  789. pr_warning("Error setting light sensor level\n");
  790. asus->light_level = value;
  791. }
  792. static ssize_t show_lslvl(struct device *dev,
  793. struct device_attribute *attr, char *buf)
  794. {
  795. struct asus_laptop *asus = dev_get_drvdata(dev);
  796. return sprintf(buf, "%d\n", asus->light_level);
  797. }
  798. static ssize_t store_lslvl(struct device *dev, struct device_attribute *attr,
  799. const char *buf, size_t count)
  800. {
  801. struct asus_laptop *asus = dev_get_drvdata(dev);
  802. int rv, value;
  803. rv = parse_arg(buf, count, &value);
  804. if (rv > 0) {
  805. value = (0 < value) ? ((15 < value) ? 15 : value) : 0;
  806. /* 0 <= value <= 15 */
  807. asus_als_level(asus, value);
  808. }
  809. return rv;
  810. }
  811. /*
  812. * GPS
  813. * TODO: use rfkill
  814. */
  815. static int asus_gps_status(struct asus_laptop *asus)
  816. {
  817. unsigned long long status;
  818. acpi_status rv = AE_OK;
  819. rv = acpi_evaluate_integer(gps_status_handle, NULL, NULL, &status);
  820. if (ACPI_FAILURE(rv)) {
  821. pr_warning("Error reading GPS status\n");
  822. return -ENODEV;
  823. }
  824. return !!status;
  825. }
  826. static int asus_gps_switch(struct asus_laptop *asus, int status)
  827. {
  828. acpi_handle handle = status ? gps_on_handle : gps_off_handle;
  829. if (write_acpi_int(handle, NULL, 0x02))
  830. return -ENODEV;
  831. return 0;
  832. }
  833. static ssize_t show_gps(struct device *dev,
  834. struct device_attribute *attr, char *buf)
  835. {
  836. struct asus_laptop *asus = dev_get_drvdata(dev);
  837. return sprintf(buf, "%d\n", asus_gps_status(asus));
  838. }
  839. static ssize_t store_gps(struct device *dev, struct device_attribute *attr,
  840. const char *buf, size_t count)
  841. {
  842. struct asus_laptop *asus = dev_get_drvdata(dev);
  843. int rv, value;
  844. int ret;
  845. rv = parse_arg(buf, count, &value);
  846. if (rv <= 0)
  847. return -EINVAL;
  848. ret = asus_gps_switch(asus, !!value);
  849. if (ret)
  850. return ret;
  851. return rv;
  852. }
  853. /*
  854. * Input device (i.e. hotkeys)
  855. */
  856. static struct key_entry *asus_get_entry_by_scancode(struct asus_laptop *asus,
  857. int code)
  858. {
  859. struct key_entry *key;
  860. for (key = asus->keymap; key->type != KE_END; key++)
  861. if (code == key->code)
  862. return key;
  863. return NULL;
  864. }
  865. static struct key_entry *asus_get_entry_by_keycode(struct asus_laptop *asus,
  866. int code)
  867. {
  868. struct key_entry *key;
  869. for (key = asus->keymap; key->type != KE_END; key++)
  870. if (code == key->keycode && key->type == KE_KEY)
  871. return key;
  872. return NULL;
  873. }
  874. static int asus_getkeycode(struct input_dev *dev, int scancode, int *keycode)
  875. {
  876. struct asus_laptop *asus = input_get_drvdata(dev);
  877. struct key_entry *key = asus_get_entry_by_scancode(asus, scancode);
  878. if (key && key->type == KE_KEY) {
  879. *keycode = key->keycode;
  880. return 0;
  881. }
  882. return -EINVAL;
  883. }
  884. static int asus_setkeycode(struct input_dev *dev, int scancode, int keycode)
  885. {
  886. struct asus_laptop *asus = input_get_drvdata(dev);
  887. struct key_entry *key;
  888. int old_keycode;
  889. if (keycode < 0 || keycode > KEY_MAX)
  890. return -EINVAL;
  891. key = asus_get_entry_by_scancode(asus, scancode);
  892. if (key && key->type == KE_KEY) {
  893. old_keycode = key->keycode;
  894. key->keycode = keycode;
  895. set_bit(keycode, dev->keybit);
  896. if (!asus_get_entry_by_keycode(asus, old_keycode))
  897. clear_bit(old_keycode, dev->keybit);
  898. return 0;
  899. }
  900. return -EINVAL;
  901. }
  902. static void asus_input_notify(struct asus_laptop *asus, int event)
  903. {
  904. struct key_entry *key;
  905. key = asus_get_entry_by_scancode(asus, event);
  906. if (!key)
  907. return ;
  908. switch (key->type) {
  909. case KE_KEY:
  910. input_report_key(asus->inputdev, key->keycode, 1);
  911. input_sync(asus->inputdev);
  912. input_report_key(asus->inputdev, key->keycode, 0);
  913. input_sync(asus->inputdev);
  914. break;
  915. }
  916. }
  917. static int asus_input_init(struct asus_laptop *asus)
  918. {
  919. const struct key_entry *key;
  920. int result;
  921. asus->inputdev = input_allocate_device();
  922. if (!asus->inputdev) {
  923. pr_info("Unable to allocate input device\n");
  924. return 0;
  925. }
  926. asus->inputdev->name = "Asus Laptop extra buttons";
  927. asus->inputdev->dev.parent = &asus->platform_device->dev;
  928. asus->inputdev->phys = ASUS_LAPTOP_FILE "/input0";
  929. asus->inputdev->id.bustype = BUS_HOST;
  930. asus->inputdev->getkeycode = asus_getkeycode;
  931. asus->inputdev->setkeycode = asus_setkeycode;
  932. input_set_drvdata(asus->inputdev, asus);
  933. asus->keymap = kmemdup(asus_keymap, sizeof(asus_keymap),
  934. GFP_KERNEL);
  935. for (key = asus->keymap; key->type != KE_END; key++) {
  936. switch (key->type) {
  937. case KE_KEY:
  938. set_bit(EV_KEY, asus->inputdev->evbit);
  939. set_bit(key->keycode, asus->inputdev->keybit);
  940. break;
  941. }
  942. }
  943. result = input_register_device(asus->inputdev);
  944. if (result) {
  945. pr_info("Unable to register input device\n");
  946. input_free_device(asus->inputdev);
  947. }
  948. return result;
  949. }
  950. static void asus_input_exit(struct asus_laptop *asus)
  951. {
  952. if (asus->inputdev)
  953. input_unregister_device(asus->inputdev);
  954. }
  955. /*
  956. * ACPI driver
  957. */
  958. static void asus_acpi_notify(struct acpi_device *device, u32 event)
  959. {
  960. struct asus_laptop *asus = acpi_driver_data(device);
  961. u16 count;
  962. /*
  963. * We need to tell the backlight device when the backlight power is
  964. * switched
  965. */
  966. if (event == ATKD_LCD_ON)
  967. lcd_blank(asus, FB_BLANK_UNBLANK);
  968. else if (event == ATKD_LCD_OFF)
  969. lcd_blank(asus, FB_BLANK_POWERDOWN);
  970. /* TODO Find a better way to handle events count. */
  971. count = asus->event_count[event % 128]++;
  972. acpi_bus_generate_proc_event(asus->device, event, count);
  973. acpi_bus_generate_netlink_event(asus->device->pnp.device_class,
  974. dev_name(&asus->device->dev), event,
  975. count);
  976. asus_input_notify(asus, event);
  977. }
  978. #define ASUS_CREATE_DEVICE_ATTR(_name) \
  979. struct device_attribute dev_attr_##_name = { \
  980. .attr = { \
  981. .name = __stringify(_name), \
  982. .mode = 0 }, \
  983. .show = NULL, \
  984. .store = NULL, \
  985. }
  986. #define ASUS_SET_DEVICE_ATTR(_name, _mode, _show, _store) \
  987. do { \
  988. dev_attr_##_name.attr.mode = _mode; \
  989. dev_attr_##_name.show = _show; \
  990. dev_attr_##_name.store = _store; \
  991. } while(0)
  992. static ASUS_CREATE_DEVICE_ATTR(infos);
  993. static ASUS_CREATE_DEVICE_ATTR(wlan);
  994. static ASUS_CREATE_DEVICE_ATTR(bluetooth);
  995. static ASUS_CREATE_DEVICE_ATTR(display);
  996. static ASUS_CREATE_DEVICE_ATTR(ledd);
  997. static ASUS_CREATE_DEVICE_ATTR(ls_switch);
  998. static ASUS_CREATE_DEVICE_ATTR(ls_level);
  999. static ASUS_CREATE_DEVICE_ATTR(gps);
  1000. static struct attribute *asuspf_attributes[] = {
  1001. &dev_attr_infos.attr,
  1002. &dev_attr_wlan.attr,
  1003. &dev_attr_bluetooth.attr,
  1004. &dev_attr_display.attr,
  1005. &dev_attr_ledd.attr,
  1006. &dev_attr_ls_switch.attr,
  1007. &dev_attr_ls_level.attr,
  1008. &dev_attr_gps.attr,
  1009. NULL
  1010. };
  1011. static struct attribute_group platform_attribute_group = {
  1012. .attrs = asuspf_attributes
  1013. };
  1014. static int asus_platform_init(struct asus_laptop *asus)
  1015. {
  1016. int result;
  1017. asus->platform_device = platform_device_alloc(ASUS_LAPTOP_FILE, -1);
  1018. if (!asus->platform_device)
  1019. return -ENOMEM;
  1020. platform_set_drvdata(asus->platform_device, asus);
  1021. result = platform_device_add(asus->platform_device);
  1022. if (result)
  1023. goto fail_platform_device;
  1024. result = sysfs_create_group(&asus->platform_device->dev.kobj,
  1025. &platform_attribute_group);
  1026. if (result)
  1027. goto fail_sysfs;
  1028. return 0;
  1029. fail_sysfs:
  1030. platform_device_del(asus->platform_device);
  1031. fail_platform_device:
  1032. platform_device_put(asus->platform_device);
  1033. return result;
  1034. }
  1035. static void asus_platform_exit(struct asus_laptop *asus)
  1036. {
  1037. sysfs_remove_group(&asus->platform_device->dev.kobj,
  1038. &platform_attribute_group);
  1039. platform_device_unregister(asus->platform_device);
  1040. }
  1041. static struct platform_driver platform_driver = {
  1042. .driver = {
  1043. .name = ASUS_LAPTOP_FILE,
  1044. .owner = THIS_MODULE,
  1045. }
  1046. };
  1047. static void asus_laptop_add_fs(struct asus_laptop *asus)
  1048. {
  1049. ASUS_SET_DEVICE_ATTR(infos, 0444, show_infos, NULL);
  1050. if (wl_switch_handle)
  1051. ASUS_SET_DEVICE_ATTR(wlan, 0644, show_wlan, store_wlan);
  1052. if (bt_switch_handle)
  1053. ASUS_SET_DEVICE_ATTR(bluetooth, 0644,
  1054. show_bluetooth, store_bluetooth);
  1055. if (display_set_handle && display_get_handle)
  1056. ASUS_SET_DEVICE_ATTR(display, 0644, show_disp, store_disp);
  1057. else if (display_set_handle)
  1058. ASUS_SET_DEVICE_ATTR(display, 0200, NULL, store_disp);
  1059. if (ledd_set_handle)
  1060. ASUS_SET_DEVICE_ATTR(ledd, 0644, show_ledd, store_ledd);
  1061. if (ls_switch_handle && ls_level_handle) {
  1062. ASUS_SET_DEVICE_ATTR(ls_level, 0644, show_lslvl, store_lslvl);
  1063. ASUS_SET_DEVICE_ATTR(ls_switch, 0644, show_lssw, store_lssw);
  1064. }
  1065. if (gps_status_handle && gps_on_handle && gps_off_handle)
  1066. ASUS_SET_DEVICE_ATTR(gps, 0644, show_gps, store_gps);
  1067. }
  1068. static int asus_handle_init(char *name, acpi_handle * handle,
  1069. char **paths, int num_paths)
  1070. {
  1071. int i;
  1072. acpi_status status;
  1073. for (i = 0; i < num_paths; i++) {
  1074. status = acpi_get_handle(NULL, paths[i], handle);
  1075. if (ACPI_SUCCESS(status))
  1076. return 0;
  1077. }
  1078. *handle = NULL;
  1079. return -ENODEV;
  1080. }
  1081. #define ASUS_HANDLE_INIT(object) \
  1082. asus_handle_init(#object, &object##_handle, object##_paths, \
  1083. ARRAY_SIZE(object##_paths))
  1084. /*
  1085. * This function is used to initialize the context with right values. In this
  1086. * method, we can make all the detection we want, and modify the asus_laptop
  1087. * struct
  1088. */
  1089. static int asus_laptop_get_info(struct asus_laptop *asus)
  1090. {
  1091. struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
  1092. union acpi_object *model = NULL;
  1093. unsigned long long bsts_result, hwrs_result;
  1094. char *string = NULL;
  1095. acpi_status status;
  1096. /*
  1097. * Get DSDT headers early enough to allow for differentiating between
  1098. * models, but late enough to allow acpi_bus_register_driver() to fail
  1099. * before doing anything ACPI-specific. Should we encounter a machine,
  1100. * which needs special handling (i.e. its hotkey device has a different
  1101. * HID), this bit will be moved.
  1102. */
  1103. status = acpi_get_table(ACPI_SIG_DSDT, 1, &asus->dsdt_info);
  1104. if (ACPI_FAILURE(status))
  1105. pr_warning("Couldn't get the DSDT table header\n");
  1106. /* We have to write 0 on init this far for all ASUS models */
  1107. if (write_acpi_int_ret(asus->handle, "INIT", 0, &buffer)) {
  1108. pr_err("Hotkey initialization failed\n");
  1109. return -ENODEV;
  1110. }
  1111. /* This needs to be called for some laptops to init properly */
  1112. status =
  1113. acpi_evaluate_integer(asus->handle, "BSTS", NULL, &bsts_result);
  1114. if (ACPI_FAILURE(status))
  1115. pr_warning("Error calling BSTS\n");
  1116. else if (bsts_result)
  1117. pr_notice("BSTS called, 0x%02x returned\n",
  1118. (uint) bsts_result);
  1119. /* This too ... */
  1120. write_acpi_int(asus->handle, "CWAP", wapf);
  1121. /*
  1122. * Try to match the object returned by INIT to the specific model.
  1123. * Handle every possible object (or the lack of thereof) the DSDT
  1124. * writers might throw at us. When in trouble, we pass NULL to
  1125. * asus_model_match() and try something completely different.
  1126. */
  1127. if (buffer.pointer) {
  1128. model = buffer.pointer;
  1129. switch (model->type) {
  1130. case ACPI_TYPE_STRING:
  1131. string = model->string.pointer;
  1132. break;
  1133. case ACPI_TYPE_BUFFER:
  1134. string = model->buffer.pointer;
  1135. break;
  1136. default:
  1137. string = "";
  1138. break;
  1139. }
  1140. }
  1141. asus->name = kstrdup(string, GFP_KERNEL);
  1142. if (!asus->name)
  1143. return -ENOMEM;
  1144. if (*string)
  1145. pr_notice(" %s model detected\n", string);
  1146. ASUS_HANDLE_INIT(mled_set);
  1147. ASUS_HANDLE_INIT(tled_set);
  1148. ASUS_HANDLE_INIT(rled_set);
  1149. ASUS_HANDLE_INIT(pled_set);
  1150. ASUS_HANDLE_INIT(gled_set);
  1151. ASUS_HANDLE_INIT(ledd_set);
  1152. ASUS_HANDLE_INIT(kled_set);
  1153. ASUS_HANDLE_INIT(kled_get);
  1154. /*
  1155. * The HWRS method return informations about the hardware.
  1156. * 0x80 bit is for WLAN, 0x100 for Bluetooth.
  1157. * The significance of others is yet to be found.
  1158. * If we don't find the method, we assume the device are present.
  1159. */
  1160. status =
  1161. acpi_evaluate_integer(asus->handle, "HRWS", NULL, &hwrs_result);
  1162. if (ACPI_FAILURE(status))
  1163. hwrs_result = WL_HWRS | BT_HWRS;
  1164. if (hwrs_result & WL_HWRS)
  1165. ASUS_HANDLE_INIT(wl_switch);
  1166. if (hwrs_result & BT_HWRS)
  1167. ASUS_HANDLE_INIT(bt_switch);
  1168. if (!ASUS_HANDLE_INIT(wireless_status))
  1169. asus->have_rsts = true;
  1170. ASUS_HANDLE_INIT(brightness_set);
  1171. ASUS_HANDLE_INIT(brightness_get);
  1172. ASUS_HANDLE_INIT(lcd_switch);
  1173. ASUS_HANDLE_INIT(display_set);
  1174. ASUS_HANDLE_INIT(display_get);
  1175. /*
  1176. * There is a lot of models with "ALSL", but a few get
  1177. * a real light sens, so we need to check it.
  1178. */
  1179. if (!ASUS_HANDLE_INIT(ls_switch))
  1180. ASUS_HANDLE_INIT(ls_level);
  1181. ASUS_HANDLE_INIT(gps_on);
  1182. ASUS_HANDLE_INIT(gps_off);
  1183. ASUS_HANDLE_INIT(gps_status);
  1184. kfree(model);
  1185. return AE_OK;
  1186. }
  1187. static bool asus_device_present;
  1188. static int __devinit asus_acpi_init(struct asus_laptop *asus)
  1189. {
  1190. int result = 0;
  1191. result = acpi_bus_get_status(asus->device);
  1192. if (result)
  1193. return result;
  1194. if (!asus->device->status.present) {
  1195. pr_err("Hotkey device not present, aborting\n");
  1196. return -ENODEV;
  1197. }
  1198. result = asus_laptop_get_info(asus);
  1199. if (result)
  1200. return result;
  1201. asus_laptop_add_fs(asus);
  1202. /* WLED and BLED are on by default */
  1203. if (bluetooth_status >= 0)
  1204. write_acpi_int(bt_switch_handle, NULL, !!bluetooth_status);
  1205. if (wireless_status >= 0)
  1206. write_acpi_int(wl_switch_handle, NULL, !!wireless_status);
  1207. /* Keyboard Backlight is on by default */
  1208. if (kled_set_handle)
  1209. asus_kled_set(asus, 1);
  1210. /* LED display is off by default */
  1211. asus->ledd_status = 0xFFF;
  1212. /* Set initial values of light sensor and level */
  1213. asus->light_switch = 0; /* Default to light sensor disabled */
  1214. asus->light_level = 5; /* level 5 for sensor sensitivity */
  1215. if (ls_switch_handle)
  1216. asus_als_switch(asus, asus->light_switch);
  1217. if (ls_level_handle)
  1218. asus_als_level(asus, asus->light_level);
  1219. /* GPS is on by default */
  1220. asus_gps_switch(asus, 1);
  1221. return result;
  1222. }
  1223. static int __devinit asus_acpi_add(struct acpi_device *device)
  1224. {
  1225. struct asus_laptop *asus;
  1226. int result;
  1227. pr_notice("Asus Laptop Support version %s\n",
  1228. ASUS_LAPTOP_VERSION);
  1229. asus = kzalloc(sizeof(struct asus_laptop), GFP_KERNEL);
  1230. if (!asus)
  1231. return -ENOMEM;
  1232. asus->handle = device->handle;
  1233. strcpy(acpi_device_name(device), ASUS_LAPTOP_DEVICE_NAME);
  1234. strcpy(acpi_device_class(device), ASUS_LAPTOP_CLASS);
  1235. device->driver_data = asus;
  1236. asus->device = device;
  1237. result = asus_acpi_init(asus);
  1238. if (result)
  1239. goto fail_platform;
  1240. /*
  1241. * Register the platform device first. It is used as a parent for the
  1242. * sub-devices below.
  1243. */
  1244. result = asus_platform_init(asus);
  1245. if (result)
  1246. goto fail_platform;
  1247. if (!acpi_video_backlight_support()) {
  1248. result = asus_backlight_init(asus);
  1249. if (result)
  1250. goto fail_backlight;
  1251. } else
  1252. pr_info("Backlight controlled by ACPI video driver\n");
  1253. result = asus_input_init(asus);
  1254. if (result)
  1255. goto fail_input;
  1256. result = asus_led_init(asus);
  1257. if (result)
  1258. goto fail_led;
  1259. asus_device_present = true;
  1260. return 0;
  1261. fail_led:
  1262. asus_input_exit(asus);
  1263. fail_input:
  1264. asus_backlight_exit(asus);
  1265. fail_backlight:
  1266. asus_platform_exit(asus);
  1267. fail_platform:
  1268. kfree(asus->name);
  1269. kfree(asus);
  1270. return result;
  1271. }
  1272. static int asus_acpi_remove(struct acpi_device *device, int type)
  1273. {
  1274. struct asus_laptop *asus = acpi_driver_data(device);
  1275. asus_backlight_exit(asus);
  1276. asus_led_exit(asus);
  1277. asus_input_exit(asus);
  1278. asus_platform_exit(asus);
  1279. kfree(asus->name);
  1280. kfree(asus);
  1281. return 0;
  1282. }
  1283. static const struct acpi_device_id asus_device_ids[] = {
  1284. {"ATK0100", 0},
  1285. {"ATK0101", 0},
  1286. {"", 0},
  1287. };
  1288. MODULE_DEVICE_TABLE(acpi, asus_device_ids);
  1289. static struct acpi_driver asus_acpi_driver = {
  1290. .name = ASUS_LAPTOP_NAME,
  1291. .class = ASUS_LAPTOP_CLASS,
  1292. .owner = THIS_MODULE,
  1293. .ids = asus_device_ids,
  1294. .flags = ACPI_DRIVER_ALL_NOTIFY_EVENTS,
  1295. .ops = {
  1296. .add = asus_acpi_add,
  1297. .remove = asus_acpi_remove,
  1298. .notify = asus_acpi_notify,
  1299. },
  1300. };
  1301. static int __init asus_laptop_init(void)
  1302. {
  1303. int result;
  1304. result = platform_driver_register(&platform_driver);
  1305. if (result < 0)
  1306. return result;
  1307. result = acpi_bus_register_driver(&asus_acpi_driver);
  1308. if (result < 0)
  1309. goto fail_acpi_driver;
  1310. if (!asus_device_present) {
  1311. result = -ENODEV;
  1312. goto fail_no_device;
  1313. }
  1314. return 0;
  1315. fail_no_device:
  1316. acpi_bus_unregister_driver(&asus_acpi_driver);
  1317. fail_acpi_driver:
  1318. platform_driver_unregister(&platform_driver);
  1319. return result;
  1320. }
  1321. static void __exit asus_laptop_exit(void)
  1322. {
  1323. acpi_bus_unregister_driver(&asus_acpi_driver);
  1324. platform_driver_unregister(&platform_driver);
  1325. }
  1326. module_init(asus_laptop_init);
  1327. module_exit(asus_laptop_exit);