asus-wmi.c 32 KB

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  1. /*
  2. * Asus PC WMI hotkey driver
  3. *
  4. * Copyright(C) 2010 Intel Corporation.
  5. * Copyright(C) 2010-2011 Corentin Chary <corentin.chary@gmail.com>
  6. *
  7. * Portions based on wistron_btns.c:
  8. * Copyright (C) 2005 Miloslav Trmac <mitr@volny.cz>
  9. * Copyright (C) 2005 Bernhard Rosenkraenzer <bero@arklinux.org>
  10. * Copyright (C) 2005 Dmitry Torokhov <dtor@mail.ru>
  11. *
  12. * This program is free software; you can redistribute it and/or modify
  13. * it under the terms of the GNU General Public License as published by
  14. * the Free Software Foundation; either version 2 of the License, or
  15. * (at your option) any later version.
  16. *
  17. * This program is distributed in the hope that it will be useful,
  18. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  19. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  20. * GNU General Public License for more details.
  21. *
  22. * You should have received a copy of the GNU General Public License
  23. * along with this program; if not, write to the Free Software
  24. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  25. */
  26. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  27. #include <linux/kernel.h>
  28. #include <linux/module.h>
  29. #include <linux/init.h>
  30. #include <linux/types.h>
  31. #include <linux/slab.h>
  32. #include <linux/input.h>
  33. #include <linux/input/sparse-keymap.h>
  34. #include <linux/fb.h>
  35. #include <linux/backlight.h>
  36. #include <linux/leds.h>
  37. #include <linux/rfkill.h>
  38. #include <linux/pci.h>
  39. #include <linux/pci_hotplug.h>
  40. #include <linux/debugfs.h>
  41. #include <linux/seq_file.h>
  42. #include <linux/platform_device.h>
  43. #include <acpi/acpi_bus.h>
  44. #include <acpi/acpi_drivers.h>
  45. #include "asus-wmi.h"
  46. MODULE_AUTHOR("Corentin Chary <corentincj@iksaif.net>, "
  47. "Yong Wang <yong.y.wang@intel.com>");
  48. MODULE_DESCRIPTION("Asus Generic WMI Driver");
  49. MODULE_LICENSE("GPL");
  50. #define to_platform_driver(drv) \
  51. (container_of((drv), struct platform_driver, driver))
  52. #define to_asus_wmi_driver(pdrv) \
  53. (container_of((pdrv), struct asus_wmi_driver, platform_driver))
  54. #define ASUS_WMI_MGMT_GUID "97845ED0-4E6D-11DE-8A39-0800200C9A66"
  55. #define NOTIFY_BRNUP_MIN 0x11
  56. #define NOTIFY_BRNUP_MAX 0x1f
  57. #define NOTIFY_BRNDOWN_MIN 0x20
  58. #define NOTIFY_BRNDOWN_MAX 0x2e
  59. /* WMI Methods */
  60. #define ASUS_WMI_METHODID_DSTS 0x53544344
  61. #define ASUS_WMI_METHODID_DEVS 0x53564544
  62. #define ASUS_WMI_METHODID_CFVS 0x53564643
  63. #define ASUS_WMI_UNSUPPORTED_METHOD 0xFFFFFFFE
  64. /* Wireless */
  65. #define ASUS_WMI_DEVID_WLAN 0x00010011
  66. #define ASUS_WMI_DEVID_BLUETOOTH 0x00010013
  67. #define ASUS_WMI_DEVID_WIMAX 0x00010017
  68. #define ASUS_WMI_DEVID_WWAN3G 0x00010019
  69. /* Backlight and Brightness */
  70. #define ASUS_WMI_DEVID_BACKLIGHT 0x00050011
  71. #define ASUS_WMI_DEVID_BRIGHTNESS 0x00050012
  72. /* Misc */
  73. #define ASUS_WMI_DEVID_CAMERA 0x00060013
  74. /* Storage */
  75. #define ASUS_WMI_DEVID_CARDREADER 0x00080013
  76. /* Input */
  77. #define ASUS_WMI_DEVID_TOUCHPAD 0x00100011
  78. #define ASUS_WMI_DEVID_TOUCHPAD_LED 0x00100012
  79. /* DSTS masks */
  80. #define ASUS_WMI_DSTS_STATUS_BIT 0x00000001
  81. #define ASUS_WMI_DSTS_UNKNOWN_BIT 0x00000002
  82. #define ASUS_WMI_DSTS_PRESENCE_BIT 0x00010000
  83. #define ASUS_WMI_DSTS_BRIGHTNESS_MASK 0x000000FF
  84. #define ASUS_WMI_DSTS_MAX_BRIGTH_MASK 0x0000FF00
  85. struct bios_args {
  86. u32 arg0;
  87. u32 arg1;
  88. } __packed;
  89. /*
  90. * <platform>/ - debugfs root directory
  91. * dev_id - current dev_id
  92. * ctrl_param - current ctrl_param
  93. * devs - call DEVS(dev_id, ctrl_param) and print result
  94. * dsts - call DSTS(dev_id) and print result
  95. */
  96. struct asus_wmi_debug {
  97. struct dentry *root;
  98. u32 dev_id;
  99. u32 ctrl_param;
  100. };
  101. struct asus_rfkill {
  102. struct asus_wmi *asus;
  103. struct rfkill *rfkill;
  104. u32 dev_id;
  105. };
  106. struct asus_wmi {
  107. struct input_dev *inputdev;
  108. struct backlight_device *backlight_device;
  109. struct platform_device *platform_device;
  110. struct led_classdev tpd_led;
  111. int tpd_led_wk;
  112. struct workqueue_struct *led_workqueue;
  113. struct work_struct tpd_led_work;
  114. struct asus_rfkill wlan;
  115. struct asus_rfkill bluetooth;
  116. struct asus_rfkill wimax;
  117. struct asus_rfkill wwan3g;
  118. struct hotplug_slot *hotplug_slot;
  119. struct mutex hotplug_lock;
  120. struct mutex wmi_lock;
  121. struct workqueue_struct *hotplug_workqueue;
  122. struct work_struct hotplug_work;
  123. struct asus_wmi_debug debug;
  124. struct asus_wmi_driver *driver;
  125. };
  126. static int asus_wmi_input_init(struct asus_wmi *asus)
  127. {
  128. int err;
  129. asus->inputdev = input_allocate_device();
  130. if (!asus->inputdev)
  131. return -ENOMEM;
  132. asus->inputdev->name = asus->driver->input_phys;
  133. asus->inputdev->phys = asus->driver->input_name;
  134. asus->inputdev->id.bustype = BUS_HOST;
  135. asus->inputdev->dev.parent = &asus->platform_device->dev;
  136. err = sparse_keymap_setup(asus->inputdev, asus->driver->keymap, NULL);
  137. if (err)
  138. goto err_free_dev;
  139. err = input_register_device(asus->inputdev);
  140. if (err)
  141. goto err_free_keymap;
  142. return 0;
  143. err_free_keymap:
  144. sparse_keymap_free(asus->inputdev);
  145. err_free_dev:
  146. input_free_device(asus->inputdev);
  147. return err;
  148. }
  149. static void asus_wmi_input_exit(struct asus_wmi *asus)
  150. {
  151. if (asus->inputdev) {
  152. sparse_keymap_free(asus->inputdev);
  153. input_unregister_device(asus->inputdev);
  154. }
  155. asus->inputdev = NULL;
  156. }
  157. static int asus_wmi_evaluate_method(u32 method_id, u32 arg0, u32 arg1,
  158. u32 *retval)
  159. {
  160. struct bios_args args = {
  161. .arg0 = arg0,
  162. .arg1 = arg1,
  163. };
  164. struct acpi_buffer input = { (acpi_size) sizeof(args), &args };
  165. struct acpi_buffer output = { ACPI_ALLOCATE_BUFFER, NULL };
  166. acpi_status status;
  167. union acpi_object *obj;
  168. u32 tmp;
  169. status = wmi_evaluate_method(ASUS_WMI_MGMT_GUID, 1, method_id,
  170. &input, &output);
  171. if (ACPI_FAILURE(status))
  172. goto exit;
  173. obj = (union acpi_object *)output.pointer;
  174. if (obj && obj->type == ACPI_TYPE_INTEGER)
  175. tmp = (u32) obj->integer.value;
  176. else
  177. tmp = 0;
  178. if (retval)
  179. *retval = tmp;
  180. kfree(obj);
  181. exit:
  182. if (ACPI_FAILURE(status))
  183. return -EIO;
  184. if (tmp == ASUS_WMI_UNSUPPORTED_METHOD)
  185. return -ENODEV;
  186. return 0;
  187. }
  188. static int asus_wmi_get_devstate(u32 dev_id, u32 *retval)
  189. {
  190. return asus_wmi_evaluate_method(ASUS_WMI_METHODID_DSTS, dev_id,
  191. 0, retval);
  192. }
  193. static int asus_wmi_set_devstate(u32 dev_id, u32 ctrl_param,
  194. u32 *retval)
  195. {
  196. return asus_wmi_evaluate_method(ASUS_WMI_METHODID_DEVS, dev_id,
  197. ctrl_param, retval);
  198. }
  199. /* Helper for special devices with magic return codes */
  200. static int asus_wmi_get_devstate_bits(u32 dev_id, u32 mask)
  201. {
  202. u32 retval = 0;
  203. int err;
  204. err = asus_wmi_get_devstate(dev_id, &retval);
  205. if (err < 0)
  206. return err;
  207. if (!(retval & ASUS_WMI_DSTS_PRESENCE_BIT))
  208. return -ENODEV;
  209. if (mask == ASUS_WMI_DSTS_STATUS_BIT) {
  210. if (retval & ASUS_WMI_DSTS_UNKNOWN_BIT)
  211. return -ENODEV;
  212. }
  213. return retval & mask;
  214. }
  215. static int asus_wmi_get_devstate_simple(u32 dev_id)
  216. {
  217. return asus_wmi_get_devstate_bits(dev_id, ASUS_WMI_DSTS_STATUS_BIT);
  218. }
  219. /*
  220. * LEDs
  221. */
  222. /*
  223. * These functions actually update the LED's, and are called from a
  224. * workqueue. By doing this as separate work rather than when the LED
  225. * subsystem asks, we avoid messing with the Asus ACPI stuff during a
  226. * potentially bad time, such as a timer interrupt.
  227. */
  228. static void tpd_led_update(struct work_struct *work)
  229. {
  230. int ctrl_param;
  231. struct asus_wmi *asus;
  232. asus = container_of(work, struct asus_wmi, tpd_led_work);
  233. ctrl_param = asus->tpd_led_wk;
  234. asus_wmi_set_devstate(ASUS_WMI_DEVID_TOUCHPAD_LED, ctrl_param, NULL);
  235. }
  236. static void tpd_led_set(struct led_classdev *led_cdev,
  237. enum led_brightness value)
  238. {
  239. struct asus_wmi *asus;
  240. asus = container_of(led_cdev, struct asus_wmi, tpd_led);
  241. asus->tpd_led_wk = !!value;
  242. queue_work(asus->led_workqueue, &asus->tpd_led_work);
  243. }
  244. static int read_tpd_led_state(struct asus_wmi *asus)
  245. {
  246. return asus_wmi_get_devstate_simple(ASUS_WMI_DEVID_TOUCHPAD_LED);
  247. }
  248. static enum led_brightness tpd_led_get(struct led_classdev *led_cdev)
  249. {
  250. struct asus_wmi *asus;
  251. asus = container_of(led_cdev, struct asus_wmi, tpd_led);
  252. return read_tpd_led_state(asus);
  253. }
  254. static int asus_wmi_led_init(struct asus_wmi *asus)
  255. {
  256. int rv;
  257. if (read_tpd_led_state(asus) < 0)
  258. return 0;
  259. asus->led_workqueue = create_singlethread_workqueue("led_workqueue");
  260. if (!asus->led_workqueue)
  261. return -ENOMEM;
  262. INIT_WORK(&asus->tpd_led_work, tpd_led_update);
  263. asus->tpd_led.name = "asus::touchpad";
  264. asus->tpd_led.brightness_set = tpd_led_set;
  265. asus->tpd_led.brightness_get = tpd_led_get;
  266. asus->tpd_led.max_brightness = 1;
  267. rv = led_classdev_register(&asus->platform_device->dev, &asus->tpd_led);
  268. if (rv) {
  269. destroy_workqueue(asus->led_workqueue);
  270. return rv;
  271. }
  272. return 0;
  273. }
  274. static void asus_wmi_led_exit(struct asus_wmi *asus)
  275. {
  276. if (asus->tpd_led.dev)
  277. led_classdev_unregister(&asus->tpd_led);
  278. if (asus->led_workqueue)
  279. destroy_workqueue(asus->led_workqueue);
  280. }
  281. /*
  282. * PCI hotplug (for wlan rfkill)
  283. */
  284. static bool asus_wlan_rfkill_blocked(struct asus_wmi *asus)
  285. {
  286. int result = asus_wmi_get_devstate_simple(ASUS_WMI_DEVID_WLAN);
  287. if (result < 0)
  288. return false;
  289. return !result;
  290. }
  291. static void asus_rfkill_hotplug(struct asus_wmi *asus)
  292. {
  293. struct pci_dev *dev;
  294. struct pci_bus *bus;
  295. bool blocked;
  296. bool absent;
  297. u32 l;
  298. mutex_lock(&asus->wmi_lock);
  299. blocked = asus_wlan_rfkill_blocked(asus);
  300. mutex_unlock(&asus->wmi_lock);
  301. mutex_lock(&asus->hotplug_lock);
  302. if (asus->wlan.rfkill)
  303. rfkill_set_sw_state(asus->wlan.rfkill, blocked);
  304. if (asus->hotplug_slot) {
  305. bus = pci_find_bus(0, 1);
  306. if (!bus) {
  307. pr_warning("Unable to find PCI bus 1?\n");
  308. goto out_unlock;
  309. }
  310. if (pci_bus_read_config_dword(bus, 0, PCI_VENDOR_ID, &l)) {
  311. pr_err("Unable to read PCI config space?\n");
  312. goto out_unlock;
  313. }
  314. absent = (l == 0xffffffff);
  315. if (blocked != absent) {
  316. pr_warning("BIOS says wireless lan is %s, "
  317. "but the pci device is %s\n",
  318. blocked ? "blocked" : "unblocked",
  319. absent ? "absent" : "present");
  320. pr_warning("skipped wireless hotplug as probably "
  321. "inappropriate for this model\n");
  322. goto out_unlock;
  323. }
  324. if (!blocked) {
  325. dev = pci_get_slot(bus, 0);
  326. if (dev) {
  327. /* Device already present */
  328. pci_dev_put(dev);
  329. goto out_unlock;
  330. }
  331. dev = pci_scan_single_device(bus, 0);
  332. if (dev) {
  333. pci_bus_assign_resources(bus);
  334. if (pci_bus_add_device(dev))
  335. pr_err("Unable to hotplug wifi\n");
  336. }
  337. } else {
  338. dev = pci_get_slot(bus, 0);
  339. if (dev) {
  340. pci_remove_bus_device(dev);
  341. pci_dev_put(dev);
  342. }
  343. }
  344. }
  345. out_unlock:
  346. mutex_unlock(&asus->hotplug_lock);
  347. }
  348. static void asus_rfkill_notify(acpi_handle handle, u32 event, void *data)
  349. {
  350. struct asus_wmi *asus = data;
  351. if (event != ACPI_NOTIFY_BUS_CHECK)
  352. return;
  353. /*
  354. * We can't call directly asus_rfkill_hotplug because most
  355. * of the time WMBC is still being executed and not reetrant.
  356. * There is currently no way to tell ACPICA that we want this
  357. * method to be serialized, we schedule a asus_rfkill_hotplug
  358. * call later, in a safer context.
  359. */
  360. queue_work(asus->hotplug_workqueue, &asus->hotplug_work);
  361. }
  362. static int asus_register_rfkill_notifier(struct asus_wmi *asus, char *node)
  363. {
  364. acpi_status status;
  365. acpi_handle handle;
  366. status = acpi_get_handle(NULL, node, &handle);
  367. if (ACPI_SUCCESS(status)) {
  368. status = acpi_install_notify_handler(handle,
  369. ACPI_SYSTEM_NOTIFY,
  370. asus_rfkill_notify, asus);
  371. if (ACPI_FAILURE(status))
  372. pr_warning("Failed to register notify on %s\n", node);
  373. } else
  374. return -ENODEV;
  375. return 0;
  376. }
  377. static void asus_unregister_rfkill_notifier(struct asus_wmi *asus, char *node)
  378. {
  379. acpi_status status = AE_OK;
  380. acpi_handle handle;
  381. status = acpi_get_handle(NULL, node, &handle);
  382. if (ACPI_SUCCESS(status)) {
  383. status = acpi_remove_notify_handler(handle,
  384. ACPI_SYSTEM_NOTIFY,
  385. asus_rfkill_notify);
  386. if (ACPI_FAILURE(status))
  387. pr_err("Error removing rfkill notify handler %s\n",
  388. node);
  389. }
  390. }
  391. static int asus_get_adapter_status(struct hotplug_slot *hotplug_slot,
  392. u8 *value)
  393. {
  394. int result = asus_wmi_get_devstate_simple(ASUS_WMI_DEVID_WLAN);
  395. if (result < 0)
  396. return result;
  397. *value = !!result;
  398. return 0;
  399. }
  400. static void asus_cleanup_pci_hotplug(struct hotplug_slot *hotplug_slot)
  401. {
  402. kfree(hotplug_slot->info);
  403. kfree(hotplug_slot);
  404. }
  405. static struct hotplug_slot_ops asus_hotplug_slot_ops = {
  406. .owner = THIS_MODULE,
  407. .get_adapter_status = asus_get_adapter_status,
  408. .get_power_status = asus_get_adapter_status,
  409. };
  410. static void asus_hotplug_work(struct work_struct *work)
  411. {
  412. struct asus_wmi *asus;
  413. asus = container_of(work, struct asus_wmi, hotplug_work);
  414. asus_rfkill_hotplug(asus);
  415. }
  416. static int asus_setup_pci_hotplug(struct asus_wmi *asus)
  417. {
  418. int ret = -ENOMEM;
  419. struct pci_bus *bus = pci_find_bus(0, 1);
  420. if (!bus) {
  421. pr_err("Unable to find wifi PCI bus\n");
  422. return -ENODEV;
  423. }
  424. asus->hotplug_workqueue =
  425. create_singlethread_workqueue("hotplug_workqueue");
  426. if (!asus->hotplug_workqueue)
  427. goto error_workqueue;
  428. INIT_WORK(&asus->hotplug_work, asus_hotplug_work);
  429. asus->hotplug_slot = kzalloc(sizeof(struct hotplug_slot), GFP_KERNEL);
  430. if (!asus->hotplug_slot)
  431. goto error_slot;
  432. asus->hotplug_slot->info = kzalloc(sizeof(struct hotplug_slot_info),
  433. GFP_KERNEL);
  434. if (!asus->hotplug_slot->info)
  435. goto error_info;
  436. asus->hotplug_slot->private = asus;
  437. asus->hotplug_slot->release = &asus_cleanup_pci_hotplug;
  438. asus->hotplug_slot->ops = &asus_hotplug_slot_ops;
  439. asus_get_adapter_status(asus->hotplug_slot,
  440. &asus->hotplug_slot->info->adapter_status);
  441. ret = pci_hp_register(asus->hotplug_slot, bus, 0, "asus-wifi");
  442. if (ret) {
  443. pr_err("Unable to register hotplug slot - %d\n", ret);
  444. goto error_register;
  445. }
  446. return 0;
  447. error_register:
  448. kfree(asus->hotplug_slot->info);
  449. error_info:
  450. kfree(asus->hotplug_slot);
  451. asus->hotplug_slot = NULL;
  452. error_slot:
  453. destroy_workqueue(asus->hotplug_workqueue);
  454. error_workqueue:
  455. return ret;
  456. }
  457. /*
  458. * Rfkill devices
  459. */
  460. static int asus_rfkill_set(void *data, bool blocked)
  461. {
  462. struct asus_rfkill *priv = data;
  463. u32 ctrl_param = !blocked;
  464. return asus_wmi_set_devstate(priv->dev_id, ctrl_param, NULL);
  465. }
  466. static void asus_rfkill_query(struct rfkill *rfkill, void *data)
  467. {
  468. struct asus_rfkill *priv = data;
  469. int result;
  470. result = asus_wmi_get_devstate_simple(priv->dev_id);
  471. if (result < 0)
  472. return;
  473. rfkill_set_sw_state(priv->rfkill, !result);
  474. }
  475. static int asus_rfkill_wlan_set(void *data, bool blocked)
  476. {
  477. struct asus_rfkill *priv = data;
  478. struct asus_wmi *asus = priv->asus;
  479. int ret;
  480. /*
  481. * This handler is enabled only if hotplug is enabled.
  482. * In this case, the asus_wmi_set_devstate() will
  483. * trigger a wmi notification and we need to wait
  484. * this call to finish before being able to call
  485. * any wmi method
  486. */
  487. mutex_lock(&asus->wmi_lock);
  488. ret = asus_rfkill_set(data, blocked);
  489. mutex_unlock(&asus->wmi_lock);
  490. return ret;
  491. }
  492. static const struct rfkill_ops asus_rfkill_wlan_ops = {
  493. .set_block = asus_rfkill_wlan_set,
  494. .query = asus_rfkill_query,
  495. };
  496. static const struct rfkill_ops asus_rfkill_ops = {
  497. .set_block = asus_rfkill_set,
  498. .query = asus_rfkill_query,
  499. };
  500. static int asus_new_rfkill(struct asus_wmi *asus,
  501. struct asus_rfkill *arfkill,
  502. const char *name, enum rfkill_type type, int dev_id)
  503. {
  504. int result = asus_wmi_get_devstate_simple(dev_id);
  505. struct rfkill **rfkill = &arfkill->rfkill;
  506. if (result < 0)
  507. return result;
  508. arfkill->dev_id = dev_id;
  509. arfkill->asus = asus;
  510. if (dev_id == ASUS_WMI_DEVID_WLAN && asus->driver->hotplug_wireless)
  511. *rfkill = rfkill_alloc(name, &asus->platform_device->dev, type,
  512. &asus_rfkill_wlan_ops, arfkill);
  513. else
  514. *rfkill = rfkill_alloc(name, &asus->platform_device->dev, type,
  515. &asus_rfkill_ops, arfkill);
  516. if (!*rfkill)
  517. return -EINVAL;
  518. rfkill_init_sw_state(*rfkill, !result);
  519. result = rfkill_register(*rfkill);
  520. if (result) {
  521. rfkill_destroy(*rfkill);
  522. *rfkill = NULL;
  523. return result;
  524. }
  525. return 0;
  526. }
  527. static void asus_wmi_rfkill_exit(struct asus_wmi *asus)
  528. {
  529. asus_unregister_rfkill_notifier(asus, "\\_SB.PCI0.P0P5");
  530. asus_unregister_rfkill_notifier(asus, "\\_SB.PCI0.P0P6");
  531. asus_unregister_rfkill_notifier(asus, "\\_SB.PCI0.P0P7");
  532. if (asus->wlan.rfkill) {
  533. rfkill_unregister(asus->wlan.rfkill);
  534. rfkill_destroy(asus->wlan.rfkill);
  535. asus->wlan.rfkill = NULL;
  536. }
  537. /*
  538. * Refresh pci hotplug in case the rfkill state was changed after
  539. * asus_unregister_rfkill_notifier()
  540. */
  541. asus_rfkill_hotplug(asus);
  542. if (asus->hotplug_slot)
  543. pci_hp_deregister(asus->hotplug_slot);
  544. if (asus->hotplug_workqueue)
  545. destroy_workqueue(asus->hotplug_workqueue);
  546. if (asus->bluetooth.rfkill) {
  547. rfkill_unregister(asus->bluetooth.rfkill);
  548. rfkill_destroy(asus->bluetooth.rfkill);
  549. asus->bluetooth.rfkill = NULL;
  550. }
  551. if (asus->wimax.rfkill) {
  552. rfkill_unregister(asus->wimax.rfkill);
  553. rfkill_destroy(asus->wimax.rfkill);
  554. asus->wimax.rfkill = NULL;
  555. }
  556. if (asus->wwan3g.rfkill) {
  557. rfkill_unregister(asus->wwan3g.rfkill);
  558. rfkill_destroy(asus->wwan3g.rfkill);
  559. asus->wwan3g.rfkill = NULL;
  560. }
  561. }
  562. static int asus_wmi_rfkill_init(struct asus_wmi *asus)
  563. {
  564. int result = 0;
  565. mutex_init(&asus->hotplug_lock);
  566. mutex_init(&asus->wmi_lock);
  567. result = asus_new_rfkill(asus, &asus->wlan, "asus-wlan",
  568. RFKILL_TYPE_WLAN, ASUS_WMI_DEVID_WLAN);
  569. if (result && result != -ENODEV)
  570. goto exit;
  571. result = asus_new_rfkill(asus, &asus->bluetooth,
  572. "asus-bluetooth", RFKILL_TYPE_BLUETOOTH,
  573. ASUS_WMI_DEVID_BLUETOOTH);
  574. if (result && result != -ENODEV)
  575. goto exit;
  576. result = asus_new_rfkill(asus, &asus->wimax, "asus-wimax",
  577. RFKILL_TYPE_WIMAX, ASUS_WMI_DEVID_WIMAX);
  578. if (result && result != -ENODEV)
  579. goto exit;
  580. result = asus_new_rfkill(asus, &asus->wwan3g, "asus-wwan3g",
  581. RFKILL_TYPE_WWAN, ASUS_WMI_DEVID_WWAN3G);
  582. if (result && result != -ENODEV)
  583. goto exit;
  584. if (!asus->driver->hotplug_wireless)
  585. goto exit;
  586. result = asus_setup_pci_hotplug(asus);
  587. /*
  588. * If we get -EBUSY then something else is handling the PCI hotplug -
  589. * don't fail in this case
  590. */
  591. if (result == -EBUSY)
  592. result = 0;
  593. asus_register_rfkill_notifier(asus, "\\_SB.PCI0.P0P5");
  594. asus_register_rfkill_notifier(asus, "\\_SB.PCI0.P0P6");
  595. asus_register_rfkill_notifier(asus, "\\_SB.PCI0.P0P7");
  596. /*
  597. * Refresh pci hotplug in case the rfkill state was changed during
  598. * setup.
  599. */
  600. asus_rfkill_hotplug(asus);
  601. exit:
  602. if (result && result != -ENODEV)
  603. asus_wmi_rfkill_exit(asus);
  604. if (result == -ENODEV)
  605. result = 0;
  606. return result;
  607. }
  608. /*
  609. * Backlight
  610. */
  611. static int read_backlight_power(void)
  612. {
  613. int ret = asus_wmi_get_devstate_simple(ASUS_WMI_DEVID_BACKLIGHT);
  614. if (ret < 0)
  615. return ret;
  616. return ret ? FB_BLANK_UNBLANK : FB_BLANK_POWERDOWN;
  617. }
  618. static int read_brightness(struct backlight_device *bd)
  619. {
  620. u32 retval;
  621. int err;
  622. err = asus_wmi_get_devstate(ASUS_WMI_DEVID_BRIGHTNESS, &retval);
  623. if (err < 0)
  624. return err;
  625. return retval & ASUS_WMI_DSTS_BRIGHTNESS_MASK;
  626. }
  627. static int update_bl_status(struct backlight_device *bd)
  628. {
  629. u32 ctrl_param;
  630. int power, err;
  631. ctrl_param = bd->props.brightness;
  632. err = asus_wmi_set_devstate(ASUS_WMI_DEVID_BRIGHTNESS,
  633. ctrl_param, NULL);
  634. if (err < 0)
  635. return err;
  636. power = read_backlight_power();
  637. if (power != -ENODEV && bd->props.power != power) {
  638. ctrl_param = !!(bd->props.power == FB_BLANK_UNBLANK);
  639. err = asus_wmi_set_devstate(ASUS_WMI_DEVID_BACKLIGHT,
  640. ctrl_param, NULL);
  641. }
  642. return 0;
  643. }
  644. static const struct backlight_ops asus_wmi_bl_ops = {
  645. .get_brightness = read_brightness,
  646. .update_status = update_bl_status,
  647. };
  648. static int asus_wmi_backlight_notify(struct asus_wmi *asus, int code)
  649. {
  650. struct backlight_device *bd = asus->backlight_device;
  651. int old = bd->props.brightness;
  652. int new = old;
  653. if (code >= NOTIFY_BRNUP_MIN && code <= NOTIFY_BRNUP_MAX)
  654. new = code - NOTIFY_BRNUP_MIN + 1;
  655. else if (code >= NOTIFY_BRNDOWN_MIN && code <= NOTIFY_BRNDOWN_MAX)
  656. new = code - NOTIFY_BRNDOWN_MIN;
  657. bd->props.brightness = new;
  658. backlight_update_status(bd);
  659. backlight_force_update(bd, BACKLIGHT_UPDATE_HOTKEY);
  660. return old;
  661. }
  662. static int asus_wmi_backlight_init(struct asus_wmi *asus)
  663. {
  664. struct backlight_device *bd;
  665. struct backlight_properties props;
  666. int max;
  667. int power;
  668. max = asus_wmi_get_devstate_bits(ASUS_WMI_DEVID_BRIGHTNESS,
  669. ASUS_WMI_DSTS_MAX_BRIGTH_MASK);
  670. power = read_backlight_power();
  671. if (max < 0 && power < 0) {
  672. /* Try to keep the original error */
  673. if (max == -ENODEV && power == -ENODEV)
  674. return -ENODEV;
  675. if (max != -ENODEV)
  676. return max;
  677. else
  678. return power;
  679. }
  680. if (max == -ENODEV)
  681. max = 0;
  682. if (power == -ENODEV)
  683. power = FB_BLANK_UNBLANK;
  684. memset(&props, 0, sizeof(struct backlight_properties));
  685. props.max_brightness = max;
  686. bd = backlight_device_register(asus->driver->name,
  687. &asus->platform_device->dev, asus,
  688. &asus_wmi_bl_ops, &props);
  689. if (IS_ERR(bd)) {
  690. pr_err("Could not register backlight device\n");
  691. return PTR_ERR(bd);
  692. }
  693. asus->backlight_device = bd;
  694. bd->props.brightness = read_brightness(bd);
  695. bd->props.power = power;
  696. backlight_update_status(bd);
  697. return 0;
  698. }
  699. static void asus_wmi_backlight_exit(struct asus_wmi *asus)
  700. {
  701. if (asus->backlight_device)
  702. backlight_device_unregister(asus->backlight_device);
  703. asus->backlight_device = NULL;
  704. }
  705. static void asus_wmi_notify(u32 value, void *context)
  706. {
  707. struct asus_wmi *asus = context;
  708. struct acpi_buffer response = { ACPI_ALLOCATE_BUFFER, NULL };
  709. union acpi_object *obj;
  710. acpi_status status;
  711. int code;
  712. int orig_code;
  713. status = wmi_get_event_data(value, &response);
  714. if (status != AE_OK) {
  715. pr_err("bad event status 0x%x\n", status);
  716. return;
  717. }
  718. obj = (union acpi_object *)response.pointer;
  719. if (!obj || obj->type != ACPI_TYPE_INTEGER)
  720. goto exit;
  721. code = obj->integer.value;
  722. orig_code = code;
  723. if (code >= NOTIFY_BRNUP_MIN && code <= NOTIFY_BRNUP_MAX)
  724. code = NOTIFY_BRNUP_MIN;
  725. else if (code >= NOTIFY_BRNDOWN_MIN &&
  726. code <= NOTIFY_BRNDOWN_MAX)
  727. code = NOTIFY_BRNDOWN_MIN;
  728. if (code == NOTIFY_BRNUP_MIN || code == NOTIFY_BRNDOWN_MIN) {
  729. if (!acpi_video_backlight_support())
  730. asus_wmi_backlight_notify(asus, orig_code);
  731. } else if (!sparse_keymap_report_event(asus->inputdev, code, 1, true))
  732. pr_info("Unknown key %x pressed\n", code);
  733. exit:
  734. kfree(obj);
  735. }
  736. /*
  737. * Sys helpers
  738. */
  739. static int parse_arg(const char *buf, unsigned long count, int *val)
  740. {
  741. if (!count)
  742. return 0;
  743. if (sscanf(buf, "%i", val) != 1)
  744. return -EINVAL;
  745. return count;
  746. }
  747. static ssize_t store_sys_wmi(int devid, const char *buf, size_t count)
  748. {
  749. u32 retval;
  750. int rv, err, value;
  751. value = asus_wmi_get_devstate_simple(devid);
  752. if (value == -ENODEV) /* Check device presence */
  753. return value;
  754. rv = parse_arg(buf, count, &value);
  755. err = asus_wmi_set_devstate(devid, value, &retval);
  756. if (err < 0)
  757. return err;
  758. return rv;
  759. }
  760. static ssize_t show_sys_wmi(int devid, char *buf)
  761. {
  762. int value = asus_wmi_get_devstate_simple(devid);
  763. if (value < 0)
  764. return value;
  765. return sprintf(buf, "%d\n", value);
  766. }
  767. #define ASUS_WMI_CREATE_DEVICE_ATTR(_name, _mode, _cm) \
  768. static ssize_t show_##_name(struct device *dev, \
  769. struct device_attribute *attr, \
  770. char *buf) \
  771. { \
  772. return show_sys_wmi(_cm, buf); \
  773. } \
  774. static ssize_t store_##_name(struct device *dev, \
  775. struct device_attribute *attr, \
  776. const char *buf, size_t count) \
  777. { \
  778. return store_sys_wmi(_cm, buf, count); \
  779. } \
  780. static struct device_attribute dev_attr_##_name = { \
  781. .attr = { \
  782. .name = __stringify(_name), \
  783. .mode = _mode }, \
  784. .show = show_##_name, \
  785. .store = store_##_name, \
  786. }
  787. ASUS_WMI_CREATE_DEVICE_ATTR(touchpad, 0644, ASUS_WMI_DEVID_TOUCHPAD);
  788. ASUS_WMI_CREATE_DEVICE_ATTR(camera, 0644, ASUS_WMI_DEVID_CAMERA);
  789. ASUS_WMI_CREATE_DEVICE_ATTR(cardr, 0644, ASUS_WMI_DEVID_CARDREADER);
  790. static ssize_t store_cpufv(struct device *dev, struct device_attribute *attr,
  791. const char *buf, size_t count)
  792. {
  793. int value;
  794. if (!count || sscanf(buf, "%i", &value) != 1)
  795. return -EINVAL;
  796. if (value < 0 || value > 2)
  797. return -EINVAL;
  798. return asus_wmi_evaluate_method(ASUS_WMI_METHODID_CFVS, value, 0, NULL);
  799. }
  800. static DEVICE_ATTR(cpufv, S_IRUGO | S_IWUSR, NULL, store_cpufv);
  801. static struct attribute *platform_attributes[] = {
  802. &dev_attr_cpufv.attr,
  803. &dev_attr_camera.attr,
  804. &dev_attr_cardr.attr,
  805. &dev_attr_touchpad.attr,
  806. NULL
  807. };
  808. static mode_t asus_sysfs_is_visible(struct kobject *kobj,
  809. struct attribute *attr, int idx)
  810. {
  811. bool supported = true;
  812. int devid = -1;
  813. if (attr == &dev_attr_camera.attr)
  814. devid = ASUS_WMI_DEVID_CAMERA;
  815. else if (attr == &dev_attr_cardr.attr)
  816. devid = ASUS_WMI_DEVID_CARDREADER;
  817. else if (attr == &dev_attr_touchpad.attr)
  818. devid = ASUS_WMI_DEVID_TOUCHPAD;
  819. if (devid != -1)
  820. supported = asus_wmi_get_devstate_simple(devid) != -ENODEV;
  821. return supported ? attr->mode : 0;
  822. }
  823. static struct attribute_group platform_attribute_group = {
  824. .is_visible = asus_sysfs_is_visible,
  825. .attrs = platform_attributes
  826. };
  827. static void asus_wmi_sysfs_exit(struct platform_device *device)
  828. {
  829. sysfs_remove_group(&device->dev.kobj, &platform_attribute_group);
  830. }
  831. static int asus_wmi_sysfs_init(struct platform_device *device)
  832. {
  833. return sysfs_create_group(&device->dev.kobj, &platform_attribute_group);
  834. }
  835. /*
  836. * Platform device
  837. */
  838. static int __init asus_wmi_platform_init(struct asus_wmi *asus)
  839. {
  840. return asus_wmi_sysfs_init(asus->platform_device);
  841. }
  842. static void asus_wmi_platform_exit(struct asus_wmi *asus)
  843. {
  844. asus_wmi_sysfs_exit(asus->platform_device);
  845. }
  846. /*
  847. * debugfs
  848. */
  849. struct asus_wmi_debugfs_node {
  850. struct asus_wmi *asus;
  851. char *name;
  852. int (*show) (struct seq_file *m, void *data);
  853. };
  854. static int show_dsts(struct seq_file *m, void *data)
  855. {
  856. struct asus_wmi *asus = m->private;
  857. int err;
  858. u32 retval = -1;
  859. err = asus_wmi_get_devstate(asus->debug.dev_id, &retval);
  860. if (err < 0)
  861. return err;
  862. seq_printf(m, "DSTS(%x) = %x\n", asus->debug.dev_id, retval);
  863. return 0;
  864. }
  865. static int show_devs(struct seq_file *m, void *data)
  866. {
  867. struct asus_wmi *asus = m->private;
  868. int err;
  869. u32 retval = -1;
  870. err = asus_wmi_set_devstate(asus->debug.dev_id, asus->debug.ctrl_param,
  871. &retval);
  872. if (err < 0)
  873. return err;
  874. seq_printf(m, "DEVS(%x, %x) = %x\n", asus->debug.dev_id,
  875. asus->debug.ctrl_param, retval);
  876. return 0;
  877. }
  878. static struct asus_wmi_debugfs_node asus_wmi_debug_files[] = {
  879. {NULL, "devs", show_devs},
  880. {NULL, "dsts", show_dsts},
  881. };
  882. static int asus_wmi_debugfs_open(struct inode *inode, struct file *file)
  883. {
  884. struct asus_wmi_debugfs_node *node = inode->i_private;
  885. return single_open(file, node->show, node->asus);
  886. }
  887. static const struct file_operations asus_wmi_debugfs_io_ops = {
  888. .owner = THIS_MODULE,
  889. .open = asus_wmi_debugfs_open,
  890. .read = seq_read,
  891. .llseek = seq_lseek,
  892. .release = single_release,
  893. };
  894. static void asus_wmi_debugfs_exit(struct asus_wmi *asus)
  895. {
  896. debugfs_remove_recursive(asus->debug.root);
  897. }
  898. static int asus_wmi_debugfs_init(struct asus_wmi *asus)
  899. {
  900. struct dentry *dent;
  901. int i;
  902. asus->debug.root = debugfs_create_dir(asus->driver->name, NULL);
  903. if (!asus->debug.root) {
  904. pr_err("failed to create debugfs directory");
  905. goto error_debugfs;
  906. }
  907. dent = debugfs_create_x32("dev_id", S_IRUGO | S_IWUSR,
  908. asus->debug.root, &asus->debug.dev_id);
  909. if (!dent)
  910. goto error_debugfs;
  911. dent = debugfs_create_x32("ctrl_param", S_IRUGO | S_IWUSR,
  912. asus->debug.root, &asus->debug.ctrl_param);
  913. if (!dent)
  914. goto error_debugfs;
  915. for (i = 0; i < ARRAY_SIZE(asus_wmi_debug_files); i++) {
  916. struct asus_wmi_debugfs_node *node = &asus_wmi_debug_files[i];
  917. node->asus = asus;
  918. dent = debugfs_create_file(node->name, S_IFREG | S_IRUGO,
  919. asus->debug.root, node,
  920. &asus_wmi_debugfs_io_ops);
  921. if (!dent) {
  922. pr_err("failed to create debug file: %s\n", node->name);
  923. goto error_debugfs;
  924. }
  925. }
  926. return 0;
  927. error_debugfs:
  928. asus_wmi_debugfs_exit(asus);
  929. return -ENOMEM;
  930. }
  931. /*
  932. * WMI Driver
  933. */
  934. static int asus_wmi_add(struct platform_device *pdev)
  935. {
  936. struct platform_driver *pdrv = to_platform_driver(pdev->dev.driver);
  937. struct asus_wmi_driver *wdrv = to_asus_wmi_driver(pdrv);
  938. struct asus_wmi *asus;
  939. acpi_status status;
  940. int err;
  941. asus = kzalloc(sizeof(struct asus_wmi), GFP_KERNEL);
  942. if (!asus)
  943. return -ENOMEM;
  944. asus->driver = wdrv;
  945. asus->platform_device = pdev;
  946. wdrv->platform_device = pdev;
  947. platform_set_drvdata(asus->platform_device, asus);
  948. if (wdrv->quirks)
  949. wdrv->quirks(asus->driver);
  950. err = asus_wmi_platform_init(asus);
  951. if (err)
  952. goto fail_platform;
  953. err = asus_wmi_input_init(asus);
  954. if (err)
  955. goto fail_input;
  956. err = asus_wmi_led_init(asus);
  957. if (err)
  958. goto fail_leds;
  959. err = asus_wmi_rfkill_init(asus);
  960. if (err)
  961. goto fail_rfkill;
  962. if (!acpi_video_backlight_support()) {
  963. err = asus_wmi_backlight_init(asus);
  964. if (err && err != -ENODEV)
  965. goto fail_backlight;
  966. } else
  967. pr_info("Backlight controlled by ACPI video driver\n");
  968. status = wmi_install_notify_handler(asus->driver->event_guid,
  969. asus_wmi_notify, asus);
  970. if (ACPI_FAILURE(status)) {
  971. pr_err("Unable to register notify handler - %d\n", status);
  972. err = -ENODEV;
  973. goto fail_wmi_handler;
  974. }
  975. err = asus_wmi_debugfs_init(asus);
  976. if (err)
  977. goto fail_debugfs;
  978. return 0;
  979. fail_debugfs:
  980. wmi_remove_notify_handler(asus->driver->event_guid);
  981. fail_wmi_handler:
  982. asus_wmi_backlight_exit(asus);
  983. fail_backlight:
  984. asus_wmi_rfkill_exit(asus);
  985. fail_rfkill:
  986. asus_wmi_led_exit(asus);
  987. fail_leds:
  988. asus_wmi_input_exit(asus);
  989. fail_input:
  990. asus_wmi_platform_exit(asus);
  991. fail_platform:
  992. kfree(asus);
  993. return err;
  994. }
  995. static int asus_wmi_remove(struct platform_device *device)
  996. {
  997. struct asus_wmi *asus;
  998. asus = platform_get_drvdata(device);
  999. wmi_remove_notify_handler(asus->driver->event_guid);
  1000. asus_wmi_backlight_exit(asus);
  1001. asus_wmi_input_exit(asus);
  1002. asus_wmi_led_exit(asus);
  1003. asus_wmi_rfkill_exit(asus);
  1004. asus_wmi_debugfs_exit(asus);
  1005. asus_wmi_platform_exit(asus);
  1006. kfree(asus);
  1007. return 0;
  1008. }
  1009. /*
  1010. * Platform driver - hibernate/resume callbacks
  1011. */
  1012. static int asus_hotk_thaw(struct device *device)
  1013. {
  1014. struct asus_wmi *asus = dev_get_drvdata(device);
  1015. if (asus->wlan.rfkill) {
  1016. bool wlan;
  1017. /*
  1018. * Work around bios bug - acpi _PTS turns off the wireless led
  1019. * during suspend. Normally it restores it on resume, but
  1020. * we should kick it ourselves in case hibernation is aborted.
  1021. */
  1022. wlan = asus_wmi_get_devstate_simple(ASUS_WMI_DEVID_WLAN);
  1023. asus_wmi_set_devstate(ASUS_WMI_DEVID_WLAN, wlan, NULL);
  1024. }
  1025. return 0;
  1026. }
  1027. static int asus_hotk_restore(struct device *device)
  1028. {
  1029. struct asus_wmi *asus = dev_get_drvdata(device);
  1030. int bl;
  1031. /* Refresh both wlan rfkill state and pci hotplug */
  1032. if (asus->wlan.rfkill)
  1033. asus_rfkill_hotplug(asus);
  1034. if (asus->bluetooth.rfkill) {
  1035. bl = !asus_wmi_get_devstate_simple(ASUS_WMI_DEVID_BLUETOOTH);
  1036. rfkill_set_sw_state(asus->bluetooth.rfkill, bl);
  1037. }
  1038. if (asus->wimax.rfkill) {
  1039. bl = !asus_wmi_get_devstate_simple(ASUS_WMI_DEVID_WIMAX);
  1040. rfkill_set_sw_state(asus->wimax.rfkill, bl);
  1041. }
  1042. if (asus->wwan3g.rfkill) {
  1043. bl = !asus_wmi_get_devstate_simple(ASUS_WMI_DEVID_WWAN3G);
  1044. rfkill_set_sw_state(asus->wwan3g.rfkill, bl);
  1045. }
  1046. return 0;
  1047. }
  1048. static const struct dev_pm_ops asus_pm_ops = {
  1049. .thaw = asus_hotk_thaw,
  1050. .restore = asus_hotk_restore,
  1051. };
  1052. static int asus_wmi_probe(struct platform_device *pdev)
  1053. {
  1054. struct platform_driver *pdrv = to_platform_driver(pdev->dev.driver);
  1055. struct asus_wmi_driver *wdrv = to_asus_wmi_driver(pdrv);
  1056. int ret;
  1057. if (!wmi_has_guid(ASUS_WMI_MGMT_GUID)) {
  1058. pr_warning("Management GUID not found\n");
  1059. return -ENODEV;
  1060. }
  1061. if (wdrv->event_guid && !wmi_has_guid(wdrv->event_guid)) {
  1062. pr_warning("Event GUID not found\n");
  1063. return -ENODEV;
  1064. }
  1065. if (wdrv->probe) {
  1066. ret = wdrv->probe(pdev);
  1067. if (ret)
  1068. return ret;
  1069. }
  1070. return asus_wmi_add(pdev);
  1071. }
  1072. static bool used;
  1073. int asus_wmi_register_driver(struct asus_wmi_driver *driver)
  1074. {
  1075. struct platform_driver *platform_driver;
  1076. struct platform_device *platform_device;
  1077. if (used)
  1078. return -EBUSY;
  1079. platform_driver = &driver->platform_driver;
  1080. platform_driver->remove = asus_wmi_remove;
  1081. platform_driver->driver.owner = driver->owner;
  1082. platform_driver->driver.name = driver->name;
  1083. platform_driver->driver.pm = &asus_pm_ops;
  1084. platform_device = platform_create_bundle(platform_driver,
  1085. asus_wmi_probe,
  1086. NULL, 0, NULL, 0);
  1087. if (IS_ERR(platform_device))
  1088. return PTR_ERR(platform_device);
  1089. used = true;
  1090. return 0;
  1091. }
  1092. EXPORT_SYMBOL_GPL(asus_wmi_register_driver);
  1093. void asus_wmi_unregister_driver(struct asus_wmi_driver *driver)
  1094. {
  1095. platform_device_unregister(driver->platform_device);
  1096. platform_driver_unregister(&driver->platform_driver);
  1097. used = false;
  1098. }
  1099. EXPORT_SYMBOL_GPL(asus_wmi_unregister_driver);
  1100. static int __init asus_wmi_init(void)
  1101. {
  1102. if (!wmi_has_guid(ASUS_WMI_MGMT_GUID)) {
  1103. pr_info("Asus Management GUID not found");
  1104. return -ENODEV;
  1105. }
  1106. pr_info("ASUS WMI generic driver loaded");
  1107. return 0;
  1108. }
  1109. static void __exit asus_wmi_exit(void)
  1110. {
  1111. pr_info("ASUS WMI generic driver unloaded");
  1112. }
  1113. module_init(asus_wmi_init);
  1114. module_exit(asus_wmi_exit);