eeepc-laptop.c 23 KB

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  1. /*
  2. * eepc-laptop.c - Asus Eee PC extras
  3. *
  4. * Based on asus_acpi.c as patched for the Eee PC by Asus:
  5. * ftp://ftp.asus.com/pub/ASUS/EeePC/701/ASUS_ACPI_071126.rar
  6. * Based on eee.c from eeepc-linux
  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. #include <linux/kernel.h>
  19. #include <linux/module.h>
  20. #include <linux/init.h>
  21. #include <linux/types.h>
  22. #include <linux/platform_device.h>
  23. #include <linux/backlight.h>
  24. #include <linux/fb.h>
  25. #include <linux/hwmon.h>
  26. #include <linux/hwmon-sysfs.h>
  27. #include <acpi/acpi_drivers.h>
  28. #include <acpi/acpi_bus.h>
  29. #include <linux/uaccess.h>
  30. #include <linux/input.h>
  31. #include <linux/rfkill.h>
  32. #include <linux/pci.h>
  33. #define EEEPC_LAPTOP_VERSION "0.1"
  34. #define EEEPC_HOTK_NAME "Eee PC Hotkey Driver"
  35. #define EEEPC_HOTK_FILE "eeepc"
  36. #define EEEPC_HOTK_CLASS "hotkey"
  37. #define EEEPC_HOTK_DEVICE_NAME "Hotkey"
  38. #define EEEPC_HOTK_HID "ASUS010"
  39. #define EEEPC_LOG EEEPC_HOTK_FILE ": "
  40. #define EEEPC_ERR KERN_ERR EEEPC_LOG
  41. #define EEEPC_WARNING KERN_WARNING EEEPC_LOG
  42. #define EEEPC_NOTICE KERN_NOTICE EEEPC_LOG
  43. #define EEEPC_INFO KERN_INFO EEEPC_LOG
  44. /*
  45. * Definitions for Asus EeePC
  46. */
  47. #define NOTIFY_WLAN_ON 0x10
  48. #define NOTIFY_BRN_MIN 0x20
  49. #define NOTIFY_BRN_MAX 0x2f
  50. enum {
  51. DISABLE_ASL_WLAN = 0x0001,
  52. DISABLE_ASL_BLUETOOTH = 0x0002,
  53. DISABLE_ASL_IRDA = 0x0004,
  54. DISABLE_ASL_CAMERA = 0x0008,
  55. DISABLE_ASL_TV = 0x0010,
  56. DISABLE_ASL_GPS = 0x0020,
  57. DISABLE_ASL_DISPLAYSWITCH = 0x0040,
  58. DISABLE_ASL_MODEM = 0x0080,
  59. DISABLE_ASL_CARDREADER = 0x0100
  60. };
  61. enum {
  62. CM_ASL_WLAN = 0,
  63. CM_ASL_BLUETOOTH,
  64. CM_ASL_IRDA,
  65. CM_ASL_1394,
  66. CM_ASL_CAMERA,
  67. CM_ASL_TV,
  68. CM_ASL_GPS,
  69. CM_ASL_DVDROM,
  70. CM_ASL_DISPLAYSWITCH,
  71. CM_ASL_PANELBRIGHT,
  72. CM_ASL_BIOSFLASH,
  73. CM_ASL_ACPIFLASH,
  74. CM_ASL_CPUFV,
  75. CM_ASL_CPUTEMPERATURE,
  76. CM_ASL_FANCPU,
  77. CM_ASL_FANCHASSIS,
  78. CM_ASL_USBPORT1,
  79. CM_ASL_USBPORT2,
  80. CM_ASL_USBPORT3,
  81. CM_ASL_MODEM,
  82. CM_ASL_CARDREADER,
  83. CM_ASL_LID
  84. };
  85. static const char *cm_getv[] = {
  86. "WLDG", "BTHG", NULL, NULL,
  87. "CAMG", NULL, NULL, NULL,
  88. NULL, "PBLG", NULL, NULL,
  89. "CFVG", NULL, NULL, NULL,
  90. "USBG", NULL, NULL, "MODG",
  91. "CRDG", "LIDG"
  92. };
  93. static const char *cm_setv[] = {
  94. "WLDS", "BTHS", NULL, NULL,
  95. "CAMS", NULL, NULL, NULL,
  96. "SDSP", "PBLS", "HDPS", NULL,
  97. "CFVS", NULL, NULL, NULL,
  98. "USBG", NULL, NULL, "MODS",
  99. "CRDS", NULL
  100. };
  101. #define EEEPC_EC "\\_SB.PCI0.SBRG.EC0."
  102. #define EEEPC_EC_FAN_PWM EEEPC_EC "SC02" /* Fan PWM duty cycle (%) */
  103. #define EEEPC_EC_SC02 0x63
  104. #define EEEPC_EC_FAN_HRPM EEEPC_EC "SC05" /* High byte, fan speed (RPM) */
  105. #define EEEPC_EC_FAN_LRPM EEEPC_EC "SC06" /* Low byte, fan speed (RPM) */
  106. #define EEEPC_EC_FAN_CTRL EEEPC_EC "SFB3" /* Byte containing SF25 */
  107. #define EEEPC_EC_SFB3 0xD3
  108. /*
  109. * This is the main structure, we can use it to store useful information
  110. * about the hotk device
  111. */
  112. struct eeepc_hotk {
  113. struct acpi_device *device; /* the device we are in */
  114. acpi_handle handle; /* the handle of the hotk device */
  115. u32 cm_supported; /* the control methods supported
  116. by this BIOS */
  117. uint init_flag; /* Init flags */
  118. u16 event_count[128]; /* count for each event */
  119. struct input_dev *inputdev;
  120. u16 *keycode_map;
  121. struct rfkill *eeepc_wlan_rfkill;
  122. struct rfkill *eeepc_bluetooth_rfkill;
  123. };
  124. /* The actual device the driver binds to */
  125. static struct eeepc_hotk *ehotk;
  126. /* Platform device/driver */
  127. static struct platform_driver platform_driver = {
  128. .driver = {
  129. .name = EEEPC_HOTK_FILE,
  130. .owner = THIS_MODULE,
  131. }
  132. };
  133. static struct platform_device *platform_device;
  134. struct key_entry {
  135. char type;
  136. u8 code;
  137. u16 keycode;
  138. };
  139. enum { KE_KEY, KE_END };
  140. static struct key_entry eeepc_keymap[] = {
  141. /* Sleep already handled via generic ACPI code */
  142. {KE_KEY, 0x10, KEY_WLAN },
  143. {KE_KEY, 0x11, KEY_WLAN },
  144. {KE_KEY, 0x12, KEY_PROG1 },
  145. {KE_KEY, 0x13, KEY_MUTE },
  146. {KE_KEY, 0x14, KEY_VOLUMEDOWN },
  147. {KE_KEY, 0x15, KEY_VOLUMEUP },
  148. {KE_KEY, 0x1a, KEY_COFFEE },
  149. {KE_KEY, 0x1b, KEY_ZOOM },
  150. {KE_KEY, 0x1c, KEY_PROG2 },
  151. {KE_KEY, 0x1d, KEY_PROG3 },
  152. {KE_KEY, NOTIFY_BRN_MIN, KEY_BRIGHTNESSDOWN },
  153. {KE_KEY, NOTIFY_BRN_MIN + 2, KEY_BRIGHTNESSUP },
  154. {KE_KEY, 0x30, KEY_SWITCHVIDEOMODE },
  155. {KE_KEY, 0x31, KEY_SWITCHVIDEOMODE },
  156. {KE_KEY, 0x32, KEY_SWITCHVIDEOMODE },
  157. {KE_END, 0},
  158. };
  159. /*
  160. * The hotkey driver declaration
  161. */
  162. static int eeepc_hotk_add(struct acpi_device *device);
  163. static int eeepc_hotk_remove(struct acpi_device *device, int type);
  164. static const struct acpi_device_id eeepc_device_ids[] = {
  165. {EEEPC_HOTK_HID, 0},
  166. {"", 0},
  167. };
  168. MODULE_DEVICE_TABLE(acpi, eeepc_device_ids);
  169. static struct acpi_driver eeepc_hotk_driver = {
  170. .name = EEEPC_HOTK_NAME,
  171. .class = EEEPC_HOTK_CLASS,
  172. .ids = eeepc_device_ids,
  173. .ops = {
  174. .add = eeepc_hotk_add,
  175. .remove = eeepc_hotk_remove,
  176. },
  177. };
  178. /* The backlight device /sys/class/backlight */
  179. static struct backlight_device *eeepc_backlight_device;
  180. /* The hwmon device */
  181. static struct device *eeepc_hwmon_device;
  182. /*
  183. * The backlight class declaration
  184. */
  185. static int read_brightness(struct backlight_device *bd);
  186. static int update_bl_status(struct backlight_device *bd);
  187. static struct backlight_ops eeepcbl_ops = {
  188. .get_brightness = read_brightness,
  189. .update_status = update_bl_status,
  190. };
  191. MODULE_AUTHOR("Corentin Chary, Eric Cooper");
  192. MODULE_DESCRIPTION(EEEPC_HOTK_NAME);
  193. MODULE_LICENSE("GPL");
  194. /*
  195. * ACPI Helpers
  196. */
  197. static int write_acpi_int(acpi_handle handle, const char *method, int val,
  198. struct acpi_buffer *output)
  199. {
  200. struct acpi_object_list params;
  201. union acpi_object in_obj;
  202. acpi_status status;
  203. params.count = 1;
  204. params.pointer = &in_obj;
  205. in_obj.type = ACPI_TYPE_INTEGER;
  206. in_obj.integer.value = val;
  207. status = acpi_evaluate_object(handle, (char *)method, &params, output);
  208. return (status == AE_OK ? 0 : -1);
  209. }
  210. static int read_acpi_int(acpi_handle handle, const char *method, int *val)
  211. {
  212. acpi_status status;
  213. unsigned long long result;
  214. status = acpi_evaluate_integer(handle, (char *)method, NULL, &result);
  215. if (ACPI_FAILURE(status)) {
  216. *val = -1;
  217. return -1;
  218. } else {
  219. *val = result;
  220. return 0;
  221. }
  222. }
  223. static int set_acpi(int cm, int value)
  224. {
  225. if (ehotk->cm_supported & (0x1 << cm)) {
  226. const char *method = cm_setv[cm];
  227. if (method == NULL)
  228. return -ENODEV;
  229. if (write_acpi_int(ehotk->handle, method, value, NULL))
  230. printk(EEEPC_WARNING "Error writing %s\n", method);
  231. }
  232. return 0;
  233. }
  234. static int get_acpi(int cm)
  235. {
  236. int value = -1;
  237. if ((ehotk->cm_supported & (0x1 << cm))) {
  238. const char *method = cm_getv[cm];
  239. if (method == NULL)
  240. return -ENODEV;
  241. if (read_acpi_int(ehotk->handle, method, &value))
  242. printk(EEEPC_WARNING "Error reading %s\n", method);
  243. }
  244. return value;
  245. }
  246. /*
  247. * Backlight
  248. */
  249. static int read_brightness(struct backlight_device *bd)
  250. {
  251. return get_acpi(CM_ASL_PANELBRIGHT);
  252. }
  253. static int set_brightness(struct backlight_device *bd, int value)
  254. {
  255. value = max(0, min(15, value));
  256. return set_acpi(CM_ASL_PANELBRIGHT, value);
  257. }
  258. static int update_bl_status(struct backlight_device *bd)
  259. {
  260. return set_brightness(bd, bd->props.brightness);
  261. }
  262. /*
  263. * Rfkill helpers
  264. */
  265. static bool eeepc_wlan_rfkill_blocked(void)
  266. {
  267. if (get_acpi(CM_ASL_WLAN) == 1)
  268. return false;
  269. return true;
  270. }
  271. static int eeepc_rfkill_set(void *data, bool blocked)
  272. {
  273. unsigned long asl = (unsigned long)data;
  274. return set_acpi(asl, !blocked);
  275. }
  276. static const struct rfkill_ops eeepc_rfkill_ops = {
  277. .set_block = eeepc_rfkill_set,
  278. };
  279. /*
  280. * Sys helpers
  281. */
  282. static int parse_arg(const char *buf, unsigned long count, int *val)
  283. {
  284. if (!count)
  285. return 0;
  286. if (sscanf(buf, "%i", val) != 1)
  287. return -EINVAL;
  288. return count;
  289. }
  290. static ssize_t store_sys_acpi(int cm, const char *buf, size_t count)
  291. {
  292. int rv, value;
  293. rv = parse_arg(buf, count, &value);
  294. if (rv > 0)
  295. set_acpi(cm, value);
  296. return rv;
  297. }
  298. static ssize_t show_sys_acpi(int cm, char *buf)
  299. {
  300. return sprintf(buf, "%d\n", get_acpi(cm));
  301. }
  302. #define EEEPC_CREATE_DEVICE_ATTR(_name, _cm) \
  303. static ssize_t show_##_name(struct device *dev, \
  304. struct device_attribute *attr, \
  305. char *buf) \
  306. { \
  307. return show_sys_acpi(_cm, buf); \
  308. } \
  309. static ssize_t store_##_name(struct device *dev, \
  310. struct device_attribute *attr, \
  311. const char *buf, size_t count) \
  312. { \
  313. return store_sys_acpi(_cm, buf, count); \
  314. } \
  315. static struct device_attribute dev_attr_##_name = { \
  316. .attr = { \
  317. .name = __stringify(_name), \
  318. .mode = 0644 }, \
  319. .show = show_##_name, \
  320. .store = store_##_name, \
  321. }
  322. EEEPC_CREATE_DEVICE_ATTR(camera, CM_ASL_CAMERA);
  323. EEEPC_CREATE_DEVICE_ATTR(cardr, CM_ASL_CARDREADER);
  324. EEEPC_CREATE_DEVICE_ATTR(disp, CM_ASL_DISPLAYSWITCH);
  325. EEEPC_CREATE_DEVICE_ATTR(cpufv, CM_ASL_CPUFV);
  326. static struct attribute *platform_attributes[] = {
  327. &dev_attr_camera.attr,
  328. &dev_attr_cardr.attr,
  329. &dev_attr_disp.attr,
  330. &dev_attr_cpufv.attr,
  331. NULL
  332. };
  333. static struct attribute_group platform_attribute_group = {
  334. .attrs = platform_attributes
  335. };
  336. /*
  337. * Hotkey functions
  338. */
  339. static struct key_entry *eepc_get_entry_by_scancode(int code)
  340. {
  341. struct key_entry *key;
  342. for (key = eeepc_keymap; key->type != KE_END; key++)
  343. if (code == key->code)
  344. return key;
  345. return NULL;
  346. }
  347. static struct key_entry *eepc_get_entry_by_keycode(int code)
  348. {
  349. struct key_entry *key;
  350. for (key = eeepc_keymap; key->type != KE_END; key++)
  351. if (code == key->keycode && key->type == KE_KEY)
  352. return key;
  353. return NULL;
  354. }
  355. static int eeepc_getkeycode(struct input_dev *dev, int scancode, int *keycode)
  356. {
  357. struct key_entry *key = eepc_get_entry_by_scancode(scancode);
  358. if (key && key->type == KE_KEY) {
  359. *keycode = key->keycode;
  360. return 0;
  361. }
  362. return -EINVAL;
  363. }
  364. static int eeepc_setkeycode(struct input_dev *dev, int scancode, int keycode)
  365. {
  366. struct key_entry *key;
  367. int old_keycode;
  368. if (keycode < 0 || keycode > KEY_MAX)
  369. return -EINVAL;
  370. key = eepc_get_entry_by_scancode(scancode);
  371. if (key && key->type == KE_KEY) {
  372. old_keycode = key->keycode;
  373. key->keycode = keycode;
  374. set_bit(keycode, dev->keybit);
  375. if (!eepc_get_entry_by_keycode(old_keycode))
  376. clear_bit(old_keycode, dev->keybit);
  377. return 0;
  378. }
  379. return -EINVAL;
  380. }
  381. static int eeepc_hotk_check(void)
  382. {
  383. const struct key_entry *key;
  384. struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
  385. int result;
  386. result = acpi_bus_get_status(ehotk->device);
  387. if (result)
  388. return result;
  389. if (ehotk->device->status.present) {
  390. if (write_acpi_int(ehotk->handle, "INIT", ehotk->init_flag,
  391. &buffer)) {
  392. printk(EEEPC_ERR "Hotkey initialization failed\n");
  393. return -ENODEV;
  394. } else {
  395. printk(EEEPC_NOTICE "Hotkey init flags 0x%x\n",
  396. ehotk->init_flag);
  397. }
  398. /* get control methods supported */
  399. if (read_acpi_int(ehotk->handle, "CMSG"
  400. , &ehotk->cm_supported)) {
  401. printk(EEEPC_ERR
  402. "Get control methods supported failed\n");
  403. return -ENODEV;
  404. } else {
  405. printk(EEEPC_INFO
  406. "Get control methods supported: 0x%x\n",
  407. ehotk->cm_supported);
  408. }
  409. ehotk->inputdev = input_allocate_device();
  410. if (!ehotk->inputdev) {
  411. printk(EEEPC_INFO "Unable to allocate input device\n");
  412. return 0;
  413. }
  414. ehotk->inputdev->name = "Asus EeePC extra buttons";
  415. ehotk->inputdev->phys = EEEPC_HOTK_FILE "/input0";
  416. ehotk->inputdev->id.bustype = BUS_HOST;
  417. ehotk->inputdev->getkeycode = eeepc_getkeycode;
  418. ehotk->inputdev->setkeycode = eeepc_setkeycode;
  419. for (key = eeepc_keymap; key->type != KE_END; key++) {
  420. switch (key->type) {
  421. case KE_KEY:
  422. set_bit(EV_KEY, ehotk->inputdev->evbit);
  423. set_bit(key->keycode, ehotk->inputdev->keybit);
  424. break;
  425. }
  426. }
  427. result = input_register_device(ehotk->inputdev);
  428. if (result) {
  429. printk(EEEPC_INFO "Unable to register input device\n");
  430. input_free_device(ehotk->inputdev);
  431. return 0;
  432. }
  433. } else {
  434. printk(EEEPC_ERR "Hotkey device not present, aborting\n");
  435. return -EINVAL;
  436. }
  437. return 0;
  438. }
  439. static int notify_brn(void)
  440. {
  441. /* returns the *previous* brightness, or -1 */
  442. struct backlight_device *bd = eeepc_backlight_device;
  443. if (bd) {
  444. int old = bd->props.brightness;
  445. bd->props.brightness = read_brightness(bd);
  446. return old;
  447. }
  448. return -1;
  449. }
  450. static void eeepc_rfkill_notify(acpi_handle handle, u32 event, void *data)
  451. {
  452. struct pci_dev *dev;
  453. struct pci_bus *bus = pci_find_bus(0, 1);
  454. bool blocked;
  455. if (event != ACPI_NOTIFY_BUS_CHECK)
  456. return;
  457. if (!bus) {
  458. printk(EEEPC_WARNING "Unable to find PCI bus 1?\n");
  459. return;
  460. }
  461. blocked = eeepc_wlan_rfkill_blocked();
  462. if (!blocked) {
  463. dev = pci_get_slot(bus, 0);
  464. if (dev) {
  465. /* Device already present */
  466. pci_dev_put(dev);
  467. return;
  468. }
  469. dev = pci_scan_single_device(bus, 0);
  470. if (dev) {
  471. pci_bus_assign_resources(bus);
  472. if (pci_bus_add_device(dev))
  473. printk(EEEPC_ERR "Unable to hotplug wifi\n");
  474. }
  475. } else {
  476. dev = pci_get_slot(bus, 0);
  477. if (dev) {
  478. pci_remove_bus_device(dev);
  479. pci_dev_put(dev);
  480. }
  481. }
  482. rfkill_set_sw_state(ehotk->eeepc_wlan_rfkill, blocked);
  483. }
  484. static void eeepc_hotk_notify(acpi_handle handle, u32 event, void *data)
  485. {
  486. static struct key_entry *key;
  487. u16 count;
  488. int brn = -ENODEV;
  489. if (!ehotk)
  490. return;
  491. if (event >= NOTIFY_BRN_MIN && event <= NOTIFY_BRN_MAX)
  492. brn = notify_brn();
  493. count = ehotk->event_count[event % 128]++;
  494. acpi_bus_generate_proc_event(ehotk->device, event, count);
  495. acpi_bus_generate_netlink_event(ehotk->device->pnp.device_class,
  496. dev_name(&ehotk->device->dev), event,
  497. count);
  498. if (ehotk->inputdev) {
  499. if (brn != -ENODEV) {
  500. /* brightness-change events need special
  501. * handling for conversion to key events
  502. */
  503. if (brn < 0)
  504. brn = event;
  505. else
  506. brn += NOTIFY_BRN_MIN;
  507. if (event < brn)
  508. event = NOTIFY_BRN_MIN; /* brightness down */
  509. else if (event > brn)
  510. event = NOTIFY_BRN_MIN + 2; /* ... up */
  511. else
  512. event = NOTIFY_BRN_MIN + 1; /* ... unchanged */
  513. }
  514. key = eepc_get_entry_by_scancode(event);
  515. if (key) {
  516. switch (key->type) {
  517. case KE_KEY:
  518. input_report_key(ehotk->inputdev, key->keycode,
  519. 1);
  520. input_sync(ehotk->inputdev);
  521. input_report_key(ehotk->inputdev, key->keycode,
  522. 0);
  523. input_sync(ehotk->inputdev);
  524. break;
  525. }
  526. }
  527. }
  528. }
  529. static int eeepc_register_rfkill_notifier(char *node)
  530. {
  531. acpi_status status = AE_OK;
  532. acpi_handle handle;
  533. status = acpi_get_handle(NULL, node, &handle);
  534. if (ACPI_SUCCESS(status)) {
  535. status = acpi_install_notify_handler(handle,
  536. ACPI_SYSTEM_NOTIFY,
  537. eeepc_rfkill_notify,
  538. NULL);
  539. if (ACPI_FAILURE(status))
  540. printk(EEEPC_WARNING
  541. "Failed to register notify on %s\n", node);
  542. } else
  543. return -ENODEV;
  544. return 0;
  545. }
  546. static void eeepc_unregister_rfkill_notifier(char *node)
  547. {
  548. acpi_status status = AE_OK;
  549. acpi_handle handle;
  550. status = acpi_get_handle(NULL, node, &handle);
  551. if (ACPI_SUCCESS(status)) {
  552. status = acpi_remove_notify_handler(handle,
  553. ACPI_SYSTEM_NOTIFY,
  554. eeepc_rfkill_notify);
  555. if (ACPI_FAILURE(status))
  556. printk(EEEPC_ERR
  557. "Error removing rfkill notify handler %s\n",
  558. node);
  559. }
  560. }
  561. static int eeepc_hotk_add(struct acpi_device *device)
  562. {
  563. acpi_status status = AE_OK;
  564. int result;
  565. if (!device)
  566. return -EINVAL;
  567. printk(EEEPC_NOTICE EEEPC_HOTK_NAME "\n");
  568. ehotk = kzalloc(sizeof(struct eeepc_hotk), GFP_KERNEL);
  569. if (!ehotk)
  570. return -ENOMEM;
  571. ehotk->init_flag = DISABLE_ASL_WLAN | DISABLE_ASL_DISPLAYSWITCH;
  572. ehotk->handle = device->handle;
  573. strcpy(acpi_device_name(device), EEEPC_HOTK_DEVICE_NAME);
  574. strcpy(acpi_device_class(device), EEEPC_HOTK_CLASS);
  575. device->driver_data = ehotk;
  576. ehotk->device = device;
  577. result = eeepc_hotk_check();
  578. if (result)
  579. goto ehotk_fail;
  580. status = acpi_install_notify_handler(ehotk->handle, ACPI_SYSTEM_NOTIFY,
  581. eeepc_hotk_notify, ehotk);
  582. if (ACPI_FAILURE(status))
  583. printk(EEEPC_ERR "Error installing notify handler\n");
  584. eeepc_register_rfkill_notifier("\\_SB.PCI0.P0P6");
  585. eeepc_register_rfkill_notifier("\\_SB.PCI0.P0P7");
  586. if (get_acpi(CM_ASL_WLAN) != -1) {
  587. ehotk->eeepc_wlan_rfkill = rfkill_alloc("eeepc-wlan",
  588. &device->dev,
  589. RFKILL_TYPE_WLAN,
  590. &eeepc_rfkill_ops,
  591. (void *)CM_ASL_WLAN);
  592. if (!ehotk->eeepc_wlan_rfkill)
  593. goto wlan_fail;
  594. rfkill_set_sw_state(ehotk->eeepc_wlan_rfkill,
  595. get_acpi(CM_ASL_WLAN) != 1);
  596. result = rfkill_register(ehotk->eeepc_wlan_rfkill);
  597. if (result)
  598. goto wlan_fail;
  599. }
  600. if (get_acpi(CM_ASL_BLUETOOTH) != -1) {
  601. ehotk->eeepc_bluetooth_rfkill =
  602. rfkill_alloc("eeepc-bluetooth",
  603. &device->dev,
  604. RFKILL_TYPE_BLUETOOTH,
  605. &eeepc_rfkill_ops,
  606. (void *)CM_ASL_BLUETOOTH);
  607. if (!ehotk->eeepc_bluetooth_rfkill)
  608. goto bluetooth_fail;
  609. rfkill_set_sw_state(ehotk->eeepc_bluetooth_rfkill,
  610. get_acpi(CM_ASL_BLUETOOTH) != 1);
  611. result = rfkill_register(ehotk->eeepc_bluetooth_rfkill);
  612. if (result)
  613. goto bluetooth_fail;
  614. }
  615. return 0;
  616. bluetooth_fail:
  617. rfkill_destroy(ehotk->eeepc_bluetooth_rfkill);
  618. rfkill_unregister(ehotk->eeepc_wlan_rfkill);
  619. wlan_fail:
  620. rfkill_destroy(ehotk->eeepc_wlan_rfkill);
  621. eeepc_unregister_rfkill_notifier("\\_SB.PCI0.P0P6");
  622. eeepc_unregister_rfkill_notifier("\\_SB.PCI0.P0P7");
  623. ehotk_fail:
  624. kfree(ehotk);
  625. ehotk = NULL;
  626. return result;
  627. }
  628. static int eeepc_hotk_remove(struct acpi_device *device, int type)
  629. {
  630. acpi_status status = 0;
  631. if (!device || !acpi_driver_data(device))
  632. return -EINVAL;
  633. status = acpi_remove_notify_handler(ehotk->handle, ACPI_SYSTEM_NOTIFY,
  634. eeepc_hotk_notify);
  635. if (ACPI_FAILURE(status))
  636. printk(EEEPC_ERR "Error removing notify handler\n");
  637. eeepc_unregister_rfkill_notifier("\\_SB.PCI0.P0P6");
  638. eeepc_unregister_rfkill_notifier("\\_SB.PCI0.P0P7");
  639. kfree(ehotk);
  640. return 0;
  641. }
  642. /*
  643. * Hwmon
  644. */
  645. static int eeepc_get_fan_pwm(void)
  646. {
  647. int value = 0;
  648. read_acpi_int(NULL, EEEPC_EC_FAN_PWM, &value);
  649. value = value * 255 / 100;
  650. return (value);
  651. }
  652. static void eeepc_set_fan_pwm(int value)
  653. {
  654. value = SENSORS_LIMIT(value, 0, 255);
  655. value = value * 100 / 255;
  656. ec_write(EEEPC_EC_SC02, value);
  657. }
  658. static int eeepc_get_fan_rpm(void)
  659. {
  660. int high = 0;
  661. int low = 0;
  662. read_acpi_int(NULL, EEEPC_EC_FAN_HRPM, &high);
  663. read_acpi_int(NULL, EEEPC_EC_FAN_LRPM, &low);
  664. return (high << 8 | low);
  665. }
  666. static int eeepc_get_fan_ctrl(void)
  667. {
  668. int value = 0;
  669. read_acpi_int(NULL, EEEPC_EC_FAN_CTRL, &value);
  670. return ((value & 0x02 ? 1 : 0));
  671. }
  672. static void eeepc_set_fan_ctrl(int manual)
  673. {
  674. int value = 0;
  675. read_acpi_int(NULL, EEEPC_EC_FAN_CTRL, &value);
  676. if (manual)
  677. value |= 0x02;
  678. else
  679. value &= ~0x02;
  680. ec_write(EEEPC_EC_SFB3, value);
  681. }
  682. static ssize_t store_sys_hwmon(void (*set)(int), const char *buf, size_t count)
  683. {
  684. int rv, value;
  685. rv = parse_arg(buf, count, &value);
  686. if (rv > 0)
  687. set(value);
  688. return rv;
  689. }
  690. static ssize_t show_sys_hwmon(int (*get)(void), char *buf)
  691. {
  692. return sprintf(buf, "%d\n", get());
  693. }
  694. #define EEEPC_CREATE_SENSOR_ATTR(_name, _mode, _set, _get) \
  695. static ssize_t show_##_name(struct device *dev, \
  696. struct device_attribute *attr, \
  697. char *buf) \
  698. { \
  699. return show_sys_hwmon(_set, buf); \
  700. } \
  701. static ssize_t store_##_name(struct device *dev, \
  702. struct device_attribute *attr, \
  703. const char *buf, size_t count) \
  704. { \
  705. return store_sys_hwmon(_get, buf, count); \
  706. } \
  707. static SENSOR_DEVICE_ATTR(_name, _mode, show_##_name, store_##_name, 0);
  708. EEEPC_CREATE_SENSOR_ATTR(fan1_input, S_IRUGO, eeepc_get_fan_rpm, NULL);
  709. EEEPC_CREATE_SENSOR_ATTR(pwm1, S_IRUGO | S_IWUSR,
  710. eeepc_get_fan_pwm, eeepc_set_fan_pwm);
  711. EEEPC_CREATE_SENSOR_ATTR(pwm1_enable, S_IRUGO | S_IWUSR,
  712. eeepc_get_fan_ctrl, eeepc_set_fan_ctrl);
  713. static ssize_t
  714. show_name(struct device *dev, struct device_attribute *attr, char *buf)
  715. {
  716. return sprintf(buf, "eeepc\n");
  717. }
  718. static SENSOR_DEVICE_ATTR(name, S_IRUGO, show_name, NULL, 0);
  719. static struct attribute *hwmon_attributes[] = {
  720. &sensor_dev_attr_pwm1.dev_attr.attr,
  721. &sensor_dev_attr_fan1_input.dev_attr.attr,
  722. &sensor_dev_attr_pwm1_enable.dev_attr.attr,
  723. &sensor_dev_attr_name.dev_attr.attr,
  724. NULL
  725. };
  726. static struct attribute_group hwmon_attribute_group = {
  727. .attrs = hwmon_attributes
  728. };
  729. /*
  730. * exit/init
  731. */
  732. static void eeepc_backlight_exit(void)
  733. {
  734. if (eeepc_backlight_device)
  735. backlight_device_unregister(eeepc_backlight_device);
  736. eeepc_backlight_device = NULL;
  737. }
  738. static void eeepc_rfkill_exit(void)
  739. {
  740. if (ehotk->eeepc_wlan_rfkill)
  741. rfkill_unregister(ehotk->eeepc_wlan_rfkill);
  742. if (ehotk->eeepc_bluetooth_rfkill)
  743. rfkill_unregister(ehotk->eeepc_bluetooth_rfkill);
  744. }
  745. static void eeepc_input_exit(void)
  746. {
  747. if (ehotk->inputdev)
  748. input_unregister_device(ehotk->inputdev);
  749. }
  750. static void eeepc_hwmon_exit(void)
  751. {
  752. struct device *hwmon;
  753. hwmon = eeepc_hwmon_device;
  754. if (!hwmon)
  755. return ;
  756. sysfs_remove_group(&hwmon->kobj,
  757. &hwmon_attribute_group);
  758. hwmon_device_unregister(hwmon);
  759. eeepc_hwmon_device = NULL;
  760. }
  761. static void __exit eeepc_laptop_exit(void)
  762. {
  763. eeepc_backlight_exit();
  764. eeepc_rfkill_exit();
  765. eeepc_input_exit();
  766. eeepc_hwmon_exit();
  767. acpi_bus_unregister_driver(&eeepc_hotk_driver);
  768. sysfs_remove_group(&platform_device->dev.kobj,
  769. &platform_attribute_group);
  770. platform_device_unregister(platform_device);
  771. platform_driver_unregister(&platform_driver);
  772. }
  773. static int eeepc_backlight_init(struct device *dev)
  774. {
  775. struct backlight_device *bd;
  776. bd = backlight_device_register(EEEPC_HOTK_FILE, dev,
  777. NULL, &eeepcbl_ops);
  778. if (IS_ERR(bd)) {
  779. printk(EEEPC_ERR
  780. "Could not register eeepc backlight device\n");
  781. eeepc_backlight_device = NULL;
  782. return PTR_ERR(bd);
  783. }
  784. eeepc_backlight_device = bd;
  785. bd->props.max_brightness = 15;
  786. bd->props.brightness = read_brightness(NULL);
  787. bd->props.power = FB_BLANK_UNBLANK;
  788. backlight_update_status(bd);
  789. return 0;
  790. }
  791. static int eeepc_hwmon_init(struct device *dev)
  792. {
  793. struct device *hwmon;
  794. int result;
  795. hwmon = hwmon_device_register(dev);
  796. if (IS_ERR(hwmon)) {
  797. printk(EEEPC_ERR
  798. "Could not register eeepc hwmon device\n");
  799. eeepc_hwmon_device = NULL;
  800. return PTR_ERR(hwmon);
  801. }
  802. eeepc_hwmon_device = hwmon;
  803. result = sysfs_create_group(&hwmon->kobj,
  804. &hwmon_attribute_group);
  805. if (result)
  806. eeepc_hwmon_exit();
  807. return result;
  808. }
  809. static int __init eeepc_laptop_init(void)
  810. {
  811. struct device *dev;
  812. int result;
  813. if (acpi_disabled)
  814. return -ENODEV;
  815. result = acpi_bus_register_driver(&eeepc_hotk_driver);
  816. if (result < 0)
  817. return result;
  818. if (!ehotk) {
  819. acpi_bus_unregister_driver(&eeepc_hotk_driver);
  820. return -ENODEV;
  821. }
  822. dev = acpi_get_physical_device(ehotk->device->handle);
  823. if (!acpi_video_backlight_support()) {
  824. result = eeepc_backlight_init(dev);
  825. if (result)
  826. goto fail_backlight;
  827. } else
  828. printk(EEEPC_INFO "Backlight controlled by ACPI video "
  829. "driver\n");
  830. result = eeepc_hwmon_init(dev);
  831. if (result)
  832. goto fail_hwmon;
  833. /* Register platform stuff */
  834. result = platform_driver_register(&platform_driver);
  835. if (result)
  836. goto fail_platform_driver;
  837. platform_device = platform_device_alloc(EEEPC_HOTK_FILE, -1);
  838. if (!platform_device) {
  839. result = -ENOMEM;
  840. goto fail_platform_device1;
  841. }
  842. result = platform_device_add(platform_device);
  843. if (result)
  844. goto fail_platform_device2;
  845. result = sysfs_create_group(&platform_device->dev.kobj,
  846. &platform_attribute_group);
  847. if (result)
  848. goto fail_sysfs;
  849. return 0;
  850. fail_sysfs:
  851. platform_device_del(platform_device);
  852. fail_platform_device2:
  853. platform_device_put(platform_device);
  854. fail_platform_device1:
  855. platform_driver_unregister(&platform_driver);
  856. fail_platform_driver:
  857. eeepc_hwmon_exit();
  858. fail_hwmon:
  859. eeepc_backlight_exit();
  860. fail_backlight:
  861. eeepc_input_exit();
  862. eeepc_rfkill_exit();
  863. return result;
  864. }
  865. module_init(eeepc_laptop_init);
  866. module_exit(eeepc_laptop_exit);