xref: /openbmc/linux/drivers/platform/x86/asus-wmi.c (revision e149ca29)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  * Asus PC WMI hotkey driver
4  *
5  * Copyright(C) 2010 Intel Corporation.
6  * Copyright(C) 2010-2011 Corentin Chary <corentin.chary@gmail.com>
7  *
8  * Portions based on wistron_btns.c:
9  * Copyright (C) 2005 Miloslav Trmac <mitr@volny.cz>
10  * Copyright (C) 2005 Bernhard Rosenkraenzer <bero@arklinux.org>
11  * Copyright (C) 2005 Dmitry Torokhov <dtor@mail.ru>
12  */
13 
14 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
15 
16 #include <linux/kernel.h>
17 #include <linux/module.h>
18 #include <linux/init.h>
19 #include <linux/types.h>
20 #include <linux/slab.h>
21 #include <linux/input.h>
22 #include <linux/input/sparse-keymap.h>
23 #include <linux/fb.h>
24 #include <linux/backlight.h>
25 #include <linux/leds.h>
26 #include <linux/rfkill.h>
27 #include <linux/pci.h>
28 #include <linux/pci_hotplug.h>
29 #include <linux/power_supply.h>
30 #include <linux/hwmon.h>
31 #include <linux/hwmon-sysfs.h>
32 #include <linux/debugfs.h>
33 #include <linux/seq_file.h>
34 #include <linux/platform_data/x86/asus-wmi.h>
35 #include <linux/platform_device.h>
36 #include <linux/acpi.h>
37 #include <linux/dmi.h>
38 #include <linux/units.h>
39 
40 #include <acpi/battery.h>
41 #include <acpi/video.h>
42 
43 #include "asus-wmi.h"
44 
45 MODULE_AUTHOR("Corentin Chary <corentin.chary@gmail.com>, "
46 	      "Yong Wang <yong.y.wang@intel.com>");
47 MODULE_DESCRIPTION("Asus Generic WMI Driver");
48 MODULE_LICENSE("GPL");
49 
50 #define to_asus_wmi_driver(pdrv)					\
51 	(container_of((pdrv), struct asus_wmi_driver, platform_driver))
52 
53 #define ASUS_WMI_MGMT_GUID	"97845ED0-4E6D-11DE-8A39-0800200C9A66"
54 
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 #define NOTIFY_FNLOCK_TOGGLE		0x4e
60 #define NOTIFY_KBD_BRTUP		0xc4
61 #define NOTIFY_KBD_BRTDWN		0xc5
62 #define NOTIFY_KBD_BRTTOGGLE		0xc7
63 #define NOTIFY_KBD_FBM			0x99
64 #define NOTIFY_KBD_TTP			0xae
65 
66 #define ASUS_WMI_FNLOCK_BIOS_DISABLED	BIT(0)
67 
68 #define ASUS_FAN_DESC			"cpu_fan"
69 #define ASUS_FAN_MFUN			0x13
70 #define ASUS_FAN_SFUN_READ		0x06
71 #define ASUS_FAN_SFUN_WRITE		0x07
72 
73 /* Based on standard hwmon pwmX_enable values */
74 #define ASUS_FAN_CTRL_FULLSPEED		0
75 #define ASUS_FAN_CTRL_MANUAL		1
76 #define ASUS_FAN_CTRL_AUTO		2
77 
78 #define ASUS_FAN_BOOST_MODE_NORMAL		0
79 #define ASUS_FAN_BOOST_MODE_OVERBOOST		1
80 #define ASUS_FAN_BOOST_MODE_OVERBOOST_MASK	0x01
81 #define ASUS_FAN_BOOST_MODE_SILENT		2
82 #define ASUS_FAN_BOOST_MODE_SILENT_MASK		0x02
83 #define ASUS_FAN_BOOST_MODES_MASK		0x03
84 
85 #define ASUS_THROTTLE_THERMAL_POLICY_DEFAULT	0
86 #define ASUS_THROTTLE_THERMAL_POLICY_OVERBOOST	1
87 #define ASUS_THROTTLE_THERMAL_POLICY_SILENT	2
88 
89 #define USB_INTEL_XUSB2PR		0xD0
90 #define PCI_DEVICE_ID_INTEL_LYNXPOINT_LP_XHCI	0x9c31
91 
92 #define ASUS_ACPI_UID_ASUSWMI		"ASUSWMI"
93 #define ASUS_ACPI_UID_ATK		"ATK"
94 
95 #define WMI_EVENT_QUEUE_SIZE		0x10
96 #define WMI_EVENT_QUEUE_END		0x1
97 #define WMI_EVENT_MASK			0xFFFF
98 /* The WMI hotkey event value is always the same. */
99 #define WMI_EVENT_VALUE_ATK		0xFF
100 
101 #define WMI_EVENT_MASK			0xFFFF
102 
103 static const char * const ashs_ids[] = { "ATK4001", "ATK4002", NULL };
104 
105 static bool ashs_present(void)
106 {
107 	int i = 0;
108 	while (ashs_ids[i]) {
109 		if (acpi_dev_found(ashs_ids[i++]))
110 			return true;
111 	}
112 	return false;
113 }
114 
115 struct bios_args {
116 	u32 arg0;
117 	u32 arg1;
118 	u32 arg2; /* At least TUF Gaming series uses 3 dword input buffer. */
119 } __packed;
120 
121 /*
122  * Struct that's used for all methods called via AGFN. Naming is
123  * identically to the AML code.
124  */
125 struct agfn_args {
126 	u16 mfun; /* probably "Multi-function" to be called */
127 	u16 sfun; /* probably "Sub-function" to be called */
128 	u16 len;  /* size of the hole struct, including subfunction fields */
129 	u8 stas;  /* not used by now */
130 	u8 err;   /* zero on success */
131 } __packed;
132 
133 /* struct used for calling fan read and write methods */
134 struct agfn_fan_args {
135 	struct agfn_args agfn;	/* common fields */
136 	u8 fan;			/* fan number: 0: set auto mode 1: 1st fan */
137 	u32 speed;		/* read: RPM/100 - write: 0-255 */
138 } __packed;
139 
140 /*
141  * <platform>/    - debugfs root directory
142  *   dev_id      - current dev_id
143  *   ctrl_param  - current ctrl_param
144  *   method_id   - current method_id
145  *   devs        - call DEVS(dev_id, ctrl_param) and print result
146  *   dsts        - call DSTS(dev_id)  and print result
147  *   call        - call method_id(dev_id, ctrl_param) and print result
148  */
149 struct asus_wmi_debug {
150 	struct dentry *root;
151 	u32 method_id;
152 	u32 dev_id;
153 	u32 ctrl_param;
154 };
155 
156 struct asus_rfkill {
157 	struct asus_wmi *asus;
158 	struct rfkill *rfkill;
159 	u32 dev_id;
160 };
161 
162 enum fan_type {
163 	FAN_TYPE_NONE = 0,
164 	FAN_TYPE_AGFN,		/* deprecated on newer platforms */
165 	FAN_TYPE_SPEC83,	/* starting in Spec 8.3, use CPU_FAN_CTRL */
166 };
167 
168 struct asus_wmi {
169 	int dsts_id;
170 	int spec;
171 	int sfun;
172 	bool wmi_event_queue;
173 
174 	struct input_dev *inputdev;
175 	struct backlight_device *backlight_device;
176 	struct platform_device *platform_device;
177 
178 	struct led_classdev wlan_led;
179 	int wlan_led_wk;
180 	struct led_classdev tpd_led;
181 	int tpd_led_wk;
182 	struct led_classdev kbd_led;
183 	int kbd_led_wk;
184 	struct led_classdev lightbar_led;
185 	int lightbar_led_wk;
186 	struct workqueue_struct *led_workqueue;
187 	struct work_struct tpd_led_work;
188 	struct work_struct wlan_led_work;
189 	struct work_struct lightbar_led_work;
190 
191 	struct asus_rfkill wlan;
192 	struct asus_rfkill bluetooth;
193 	struct asus_rfkill wimax;
194 	struct asus_rfkill wwan3g;
195 	struct asus_rfkill gps;
196 	struct asus_rfkill uwb;
197 
198 	enum fan_type fan_type;
199 	int fan_pwm_mode;
200 	int agfn_pwm;
201 
202 	bool fan_boost_mode_available;
203 	u8 fan_boost_mode_mask;
204 	u8 fan_boost_mode;
205 
206 	bool throttle_thermal_policy_available;
207 	u8 throttle_thermal_policy_mode;
208 
209 	// The RSOC controls the maximum charging percentage.
210 	bool battery_rsoc_available;
211 
212 	struct hotplug_slot hotplug_slot;
213 	struct mutex hotplug_lock;
214 	struct mutex wmi_lock;
215 	struct workqueue_struct *hotplug_workqueue;
216 	struct work_struct hotplug_work;
217 
218 	bool fnlock_locked;
219 
220 	struct asus_wmi_debug debug;
221 
222 	struct asus_wmi_driver *driver;
223 };
224 
225 /* Input **********************************************************************/
226 
227 static int asus_wmi_input_init(struct asus_wmi *asus)
228 {
229 	int err;
230 
231 	asus->inputdev = input_allocate_device();
232 	if (!asus->inputdev)
233 		return -ENOMEM;
234 
235 	asus->inputdev->name = asus->driver->input_name;
236 	asus->inputdev->phys = asus->driver->input_phys;
237 	asus->inputdev->id.bustype = BUS_HOST;
238 	asus->inputdev->dev.parent = &asus->platform_device->dev;
239 	set_bit(EV_REP, asus->inputdev->evbit);
240 
241 	err = sparse_keymap_setup(asus->inputdev, asus->driver->keymap, NULL);
242 	if (err)
243 		goto err_free_dev;
244 
245 	err = input_register_device(asus->inputdev);
246 	if (err)
247 		goto err_free_dev;
248 
249 	return 0;
250 
251 err_free_dev:
252 	input_free_device(asus->inputdev);
253 	return err;
254 }
255 
256 static void asus_wmi_input_exit(struct asus_wmi *asus)
257 {
258 	if (asus->inputdev)
259 		input_unregister_device(asus->inputdev);
260 
261 	asus->inputdev = NULL;
262 }
263 
264 /* WMI ************************************************************************/
265 
266 static int asus_wmi_evaluate_method3(u32 method_id,
267 		u32 arg0, u32 arg1, u32 arg2, u32 *retval)
268 {
269 	struct bios_args args = {
270 		.arg0 = arg0,
271 		.arg1 = arg1,
272 		.arg2 = arg2,
273 	};
274 	struct acpi_buffer input = { (acpi_size) sizeof(args), &args };
275 	struct acpi_buffer output = { ACPI_ALLOCATE_BUFFER, NULL };
276 	acpi_status status;
277 	union acpi_object *obj;
278 	u32 tmp = 0;
279 
280 	status = wmi_evaluate_method(ASUS_WMI_MGMT_GUID, 0, method_id,
281 				     &input, &output);
282 
283 	if (ACPI_FAILURE(status))
284 		return -EIO;
285 
286 	obj = (union acpi_object *)output.pointer;
287 	if (obj && obj->type == ACPI_TYPE_INTEGER)
288 		tmp = (u32) obj->integer.value;
289 
290 	if (retval)
291 		*retval = tmp;
292 
293 	kfree(obj);
294 
295 	if (tmp == ASUS_WMI_UNSUPPORTED_METHOD)
296 		return -ENODEV;
297 
298 	return 0;
299 }
300 
301 int asus_wmi_evaluate_method(u32 method_id, u32 arg0, u32 arg1, u32 *retval)
302 {
303 	return asus_wmi_evaluate_method3(method_id, arg0, arg1, 0, retval);
304 }
305 EXPORT_SYMBOL_GPL(asus_wmi_evaluate_method);
306 
307 static int asus_wmi_evaluate_method_agfn(const struct acpi_buffer args)
308 {
309 	struct acpi_buffer input;
310 	u64 phys_addr;
311 	u32 retval;
312 	u32 status = -1;
313 
314 	/*
315 	 * Copy to dma capable address otherwise memory corruption occurs as
316 	 * bios has to be able to access it.
317 	 */
318 	input.pointer = kmemdup(args.pointer, args.length, GFP_DMA | GFP_KERNEL);
319 	input.length = args.length;
320 	if (!input.pointer)
321 		return -ENOMEM;
322 	phys_addr = virt_to_phys(input.pointer);
323 
324 	status = asus_wmi_evaluate_method(ASUS_WMI_METHODID_AGFN,
325 					phys_addr, 0, &retval);
326 	if (!status)
327 		memcpy(args.pointer, input.pointer, args.length);
328 
329 	kfree(input.pointer);
330 	if (status)
331 		return -ENXIO;
332 
333 	return retval;
334 }
335 
336 static int asus_wmi_get_devstate(struct asus_wmi *asus, u32 dev_id, u32 *retval)
337 {
338 	return asus_wmi_evaluate_method(asus->dsts_id, dev_id, 0, retval);
339 }
340 
341 static int asus_wmi_set_devstate(u32 dev_id, u32 ctrl_param,
342 				 u32 *retval)
343 {
344 	return asus_wmi_evaluate_method(ASUS_WMI_METHODID_DEVS, dev_id,
345 					ctrl_param, retval);
346 }
347 
348 /* Helper for special devices with magic return codes */
349 static int asus_wmi_get_devstate_bits(struct asus_wmi *asus,
350 				      u32 dev_id, u32 mask)
351 {
352 	u32 retval = 0;
353 	int err;
354 
355 	err = asus_wmi_get_devstate(asus, dev_id, &retval);
356 	if (err < 0)
357 		return err;
358 
359 	if (!(retval & ASUS_WMI_DSTS_PRESENCE_BIT))
360 		return -ENODEV;
361 
362 	if (mask == ASUS_WMI_DSTS_STATUS_BIT) {
363 		if (retval & ASUS_WMI_DSTS_UNKNOWN_BIT)
364 			return -ENODEV;
365 	}
366 
367 	return retval & mask;
368 }
369 
370 static int asus_wmi_get_devstate_simple(struct asus_wmi *asus, u32 dev_id)
371 {
372 	return asus_wmi_get_devstate_bits(asus, dev_id,
373 					  ASUS_WMI_DSTS_STATUS_BIT);
374 }
375 
376 static bool asus_wmi_dev_is_present(struct asus_wmi *asus, u32 dev_id)
377 {
378 	u32 retval;
379 	int status = asus_wmi_get_devstate(asus, dev_id, &retval);
380 
381 	return status == 0 && (retval & ASUS_WMI_DSTS_PRESENCE_BIT);
382 }
383 
384 /* Battery ********************************************************************/
385 
386 /* The battery maximum charging percentage */
387 static int charge_end_threshold;
388 
389 static ssize_t charge_control_end_threshold_store(struct device *dev,
390 						  struct device_attribute *attr,
391 						  const char *buf, size_t count)
392 {
393 	int value, ret, rv;
394 
395 	ret = kstrtouint(buf, 10, &value);
396 	if (ret)
397 		return ret;
398 
399 	if (value < 0 || value > 100)
400 		return -EINVAL;
401 
402 	ret = asus_wmi_set_devstate(ASUS_WMI_DEVID_RSOC, value, &rv);
403 	if (ret)
404 		return ret;
405 
406 	if (rv != 1)
407 		return -EIO;
408 
409 	/* There isn't any method in the DSDT to read the threshold, so we
410 	 * save the threshold.
411 	 */
412 	charge_end_threshold = value;
413 	return count;
414 }
415 
416 static ssize_t charge_control_end_threshold_show(struct device *device,
417 						 struct device_attribute *attr,
418 						 char *buf)
419 {
420 	return sprintf(buf, "%d\n", charge_end_threshold);
421 }
422 
423 static DEVICE_ATTR_RW(charge_control_end_threshold);
424 
425 static int asus_wmi_battery_add(struct power_supply *battery)
426 {
427 	/* The WMI method does not provide a way to specific a battery, so we
428 	 * just assume it is the first battery.
429 	 * Note: On some newer ASUS laptops (Zenbook UM431DA), the primary/first
430 	 * battery is named BATT.
431 	 */
432 	if (strcmp(battery->desc->name, "BAT0") != 0 &&
433 	    strcmp(battery->desc->name, "BATT") != 0)
434 		return -ENODEV;
435 
436 	if (device_create_file(&battery->dev,
437 	    &dev_attr_charge_control_end_threshold))
438 		return -ENODEV;
439 
440 	/* The charge threshold is only reset when the system is power cycled,
441 	 * and we can't get the current threshold so let set it to 100% when
442 	 * a battery is added.
443 	 */
444 	asus_wmi_set_devstate(ASUS_WMI_DEVID_RSOC, 100, NULL);
445 	charge_end_threshold = 100;
446 
447 	return 0;
448 }
449 
450 static int asus_wmi_battery_remove(struct power_supply *battery)
451 {
452 	device_remove_file(&battery->dev,
453 			   &dev_attr_charge_control_end_threshold);
454 	return 0;
455 }
456 
457 static struct acpi_battery_hook battery_hook = {
458 	.add_battery = asus_wmi_battery_add,
459 	.remove_battery = asus_wmi_battery_remove,
460 	.name = "ASUS Battery Extension",
461 };
462 
463 static void asus_wmi_battery_init(struct asus_wmi *asus)
464 {
465 	asus->battery_rsoc_available = false;
466 	if (asus_wmi_dev_is_present(asus, ASUS_WMI_DEVID_RSOC)) {
467 		asus->battery_rsoc_available = true;
468 		battery_hook_register(&battery_hook);
469 	}
470 }
471 
472 static void asus_wmi_battery_exit(struct asus_wmi *asus)
473 {
474 	if (asus->battery_rsoc_available)
475 		battery_hook_unregister(&battery_hook);
476 }
477 
478 /* LEDs ***********************************************************************/
479 
480 /*
481  * These functions actually update the LED's, and are called from a
482  * workqueue. By doing this as separate work rather than when the LED
483  * subsystem asks, we avoid messing with the Asus ACPI stuff during a
484  * potentially bad time, such as a timer interrupt.
485  */
486 static void tpd_led_update(struct work_struct *work)
487 {
488 	int ctrl_param;
489 	struct asus_wmi *asus;
490 
491 	asus = container_of(work, struct asus_wmi, tpd_led_work);
492 
493 	ctrl_param = asus->tpd_led_wk;
494 	asus_wmi_set_devstate(ASUS_WMI_DEVID_TOUCHPAD_LED, ctrl_param, NULL);
495 }
496 
497 static void tpd_led_set(struct led_classdev *led_cdev,
498 			enum led_brightness value)
499 {
500 	struct asus_wmi *asus;
501 
502 	asus = container_of(led_cdev, struct asus_wmi, tpd_led);
503 
504 	asus->tpd_led_wk = !!value;
505 	queue_work(asus->led_workqueue, &asus->tpd_led_work);
506 }
507 
508 static int read_tpd_led_state(struct asus_wmi *asus)
509 {
510 	return asus_wmi_get_devstate_simple(asus, ASUS_WMI_DEVID_TOUCHPAD_LED);
511 }
512 
513 static enum led_brightness tpd_led_get(struct led_classdev *led_cdev)
514 {
515 	struct asus_wmi *asus;
516 
517 	asus = container_of(led_cdev, struct asus_wmi, tpd_led);
518 
519 	return read_tpd_led_state(asus);
520 }
521 
522 static void kbd_led_update(struct asus_wmi *asus)
523 {
524 	int ctrl_param = 0;
525 
526 	ctrl_param = 0x80 | (asus->kbd_led_wk & 0x7F);
527 	asus_wmi_set_devstate(ASUS_WMI_DEVID_KBD_BACKLIGHT, ctrl_param, NULL);
528 }
529 
530 static int kbd_led_read(struct asus_wmi *asus, int *level, int *env)
531 {
532 	int retval;
533 
534 	/*
535 	 * bits 0-2: level
536 	 * bit 7: light on/off
537 	 * bit 8-10: environment (0: dark, 1: normal, 2: light)
538 	 * bit 17: status unknown
539 	 */
540 	retval = asus_wmi_get_devstate_bits(asus, ASUS_WMI_DEVID_KBD_BACKLIGHT,
541 					    0xFFFF);
542 
543 	/* Unknown status is considered as off */
544 	if (retval == 0x8000)
545 		retval = 0;
546 
547 	if (retval < 0)
548 		return retval;
549 
550 	if (level)
551 		*level = retval & 0x7F;
552 	if (env)
553 		*env = (retval >> 8) & 0x7F;
554 	return 0;
555 }
556 
557 static void do_kbd_led_set(struct led_classdev *led_cdev, int value)
558 {
559 	struct asus_wmi *asus;
560 	int max_level;
561 
562 	asus = container_of(led_cdev, struct asus_wmi, kbd_led);
563 	max_level = asus->kbd_led.max_brightness;
564 
565 	asus->kbd_led_wk = clamp_val(value, 0, max_level);
566 	kbd_led_update(asus);
567 }
568 
569 static void kbd_led_set(struct led_classdev *led_cdev,
570 			enum led_brightness value)
571 {
572 	/* Prevent disabling keyboard backlight on module unregister */
573 	if (led_cdev->flags & LED_UNREGISTERING)
574 		return;
575 
576 	do_kbd_led_set(led_cdev, value);
577 }
578 
579 static void kbd_led_set_by_kbd(struct asus_wmi *asus, enum led_brightness value)
580 {
581 	struct led_classdev *led_cdev = &asus->kbd_led;
582 
583 	do_kbd_led_set(led_cdev, value);
584 	led_classdev_notify_brightness_hw_changed(led_cdev, asus->kbd_led_wk);
585 }
586 
587 static enum led_brightness kbd_led_get(struct led_classdev *led_cdev)
588 {
589 	struct asus_wmi *asus;
590 	int retval, value;
591 
592 	asus = container_of(led_cdev, struct asus_wmi, kbd_led);
593 
594 	retval = kbd_led_read(asus, &value, NULL);
595 	if (retval < 0)
596 		return retval;
597 
598 	return value;
599 }
600 
601 static int wlan_led_unknown_state(struct asus_wmi *asus)
602 {
603 	u32 result;
604 
605 	asus_wmi_get_devstate(asus, ASUS_WMI_DEVID_WIRELESS_LED, &result);
606 
607 	return result & ASUS_WMI_DSTS_UNKNOWN_BIT;
608 }
609 
610 static void wlan_led_update(struct work_struct *work)
611 {
612 	int ctrl_param;
613 	struct asus_wmi *asus;
614 
615 	asus = container_of(work, struct asus_wmi, wlan_led_work);
616 
617 	ctrl_param = asus->wlan_led_wk;
618 	asus_wmi_set_devstate(ASUS_WMI_DEVID_WIRELESS_LED, ctrl_param, NULL);
619 }
620 
621 static void wlan_led_set(struct led_classdev *led_cdev,
622 			 enum led_brightness value)
623 {
624 	struct asus_wmi *asus;
625 
626 	asus = container_of(led_cdev, struct asus_wmi, wlan_led);
627 
628 	asus->wlan_led_wk = !!value;
629 	queue_work(asus->led_workqueue, &asus->wlan_led_work);
630 }
631 
632 static enum led_brightness wlan_led_get(struct led_classdev *led_cdev)
633 {
634 	struct asus_wmi *asus;
635 	u32 result;
636 
637 	asus = container_of(led_cdev, struct asus_wmi, wlan_led);
638 	asus_wmi_get_devstate(asus, ASUS_WMI_DEVID_WIRELESS_LED, &result);
639 
640 	return result & ASUS_WMI_DSTS_BRIGHTNESS_MASK;
641 }
642 
643 static void lightbar_led_update(struct work_struct *work)
644 {
645 	struct asus_wmi *asus;
646 	int ctrl_param;
647 
648 	asus = container_of(work, struct asus_wmi, lightbar_led_work);
649 
650 	ctrl_param = asus->lightbar_led_wk;
651 	asus_wmi_set_devstate(ASUS_WMI_DEVID_LIGHTBAR, ctrl_param, NULL);
652 }
653 
654 static void lightbar_led_set(struct led_classdev *led_cdev,
655 			     enum led_brightness value)
656 {
657 	struct asus_wmi *asus;
658 
659 	asus = container_of(led_cdev, struct asus_wmi, lightbar_led);
660 
661 	asus->lightbar_led_wk = !!value;
662 	queue_work(asus->led_workqueue, &asus->lightbar_led_work);
663 }
664 
665 static enum led_brightness lightbar_led_get(struct led_classdev *led_cdev)
666 {
667 	struct asus_wmi *asus;
668 	u32 result;
669 
670 	asus = container_of(led_cdev, struct asus_wmi, lightbar_led);
671 	asus_wmi_get_devstate(asus, ASUS_WMI_DEVID_LIGHTBAR, &result);
672 
673 	return result & ASUS_WMI_DSTS_LIGHTBAR_MASK;
674 }
675 
676 static void asus_wmi_led_exit(struct asus_wmi *asus)
677 {
678 	if (!IS_ERR_OR_NULL(asus->kbd_led.dev))
679 		led_classdev_unregister(&asus->kbd_led);
680 	if (!IS_ERR_OR_NULL(asus->tpd_led.dev))
681 		led_classdev_unregister(&asus->tpd_led);
682 	if (!IS_ERR_OR_NULL(asus->wlan_led.dev))
683 		led_classdev_unregister(&asus->wlan_led);
684 	if (!IS_ERR_OR_NULL(asus->lightbar_led.dev))
685 		led_classdev_unregister(&asus->lightbar_led);
686 	if (asus->led_workqueue)
687 		destroy_workqueue(asus->led_workqueue);
688 }
689 
690 static int asus_wmi_led_init(struct asus_wmi *asus)
691 {
692 	int rv = 0, led_val;
693 
694 	asus->led_workqueue = create_singlethread_workqueue("led_workqueue");
695 	if (!asus->led_workqueue)
696 		return -ENOMEM;
697 
698 	if (read_tpd_led_state(asus) >= 0) {
699 		INIT_WORK(&asus->tpd_led_work, tpd_led_update);
700 
701 		asus->tpd_led.name = "asus::touchpad";
702 		asus->tpd_led.brightness_set = tpd_led_set;
703 		asus->tpd_led.brightness_get = tpd_led_get;
704 		asus->tpd_led.max_brightness = 1;
705 
706 		rv = led_classdev_register(&asus->platform_device->dev,
707 					   &asus->tpd_led);
708 		if (rv)
709 			goto error;
710 	}
711 
712 	if (!kbd_led_read(asus, &led_val, NULL)) {
713 		asus->kbd_led_wk = led_val;
714 		asus->kbd_led.name = "asus::kbd_backlight";
715 		asus->kbd_led.flags = LED_BRIGHT_HW_CHANGED;
716 		asus->kbd_led.brightness_set = kbd_led_set;
717 		asus->kbd_led.brightness_get = kbd_led_get;
718 		asus->kbd_led.max_brightness = 3;
719 
720 		rv = led_classdev_register(&asus->platform_device->dev,
721 					   &asus->kbd_led);
722 		if (rv)
723 			goto error;
724 	}
725 
726 	if (asus_wmi_dev_is_present(asus, ASUS_WMI_DEVID_WIRELESS_LED)
727 			&& (asus->driver->quirks->wapf > 0)) {
728 		INIT_WORK(&asus->wlan_led_work, wlan_led_update);
729 
730 		asus->wlan_led.name = "asus::wlan";
731 		asus->wlan_led.brightness_set = wlan_led_set;
732 		if (!wlan_led_unknown_state(asus))
733 			asus->wlan_led.brightness_get = wlan_led_get;
734 		asus->wlan_led.flags = LED_CORE_SUSPENDRESUME;
735 		asus->wlan_led.max_brightness = 1;
736 		asus->wlan_led.default_trigger = "asus-wlan";
737 
738 		rv = led_classdev_register(&asus->platform_device->dev,
739 					   &asus->wlan_led);
740 		if (rv)
741 			goto error;
742 	}
743 
744 	if (asus_wmi_dev_is_present(asus, ASUS_WMI_DEVID_LIGHTBAR)) {
745 		INIT_WORK(&asus->lightbar_led_work, lightbar_led_update);
746 
747 		asus->lightbar_led.name = "asus::lightbar";
748 		asus->lightbar_led.brightness_set = lightbar_led_set;
749 		asus->lightbar_led.brightness_get = lightbar_led_get;
750 		asus->lightbar_led.max_brightness = 1;
751 
752 		rv = led_classdev_register(&asus->platform_device->dev,
753 					   &asus->lightbar_led);
754 	}
755 
756 error:
757 	if (rv)
758 		asus_wmi_led_exit(asus);
759 
760 	return rv;
761 }
762 
763 /* RF *************************************************************************/
764 
765 /*
766  * PCI hotplug (for wlan rfkill)
767  */
768 static bool asus_wlan_rfkill_blocked(struct asus_wmi *asus)
769 {
770 	int result = asus_wmi_get_devstate_simple(asus, ASUS_WMI_DEVID_WLAN);
771 
772 	if (result < 0)
773 		return false;
774 	return !result;
775 }
776 
777 static void asus_rfkill_hotplug(struct asus_wmi *asus)
778 {
779 	struct pci_dev *dev;
780 	struct pci_bus *bus;
781 	bool blocked;
782 	bool absent;
783 	u32 l;
784 
785 	mutex_lock(&asus->wmi_lock);
786 	blocked = asus_wlan_rfkill_blocked(asus);
787 	mutex_unlock(&asus->wmi_lock);
788 
789 	mutex_lock(&asus->hotplug_lock);
790 	pci_lock_rescan_remove();
791 
792 	if (asus->wlan.rfkill)
793 		rfkill_set_sw_state(asus->wlan.rfkill, blocked);
794 
795 	if (asus->hotplug_slot.ops) {
796 		bus = pci_find_bus(0, 1);
797 		if (!bus) {
798 			pr_warn("Unable to find PCI bus 1?\n");
799 			goto out_unlock;
800 		}
801 
802 		if (pci_bus_read_config_dword(bus, 0, PCI_VENDOR_ID, &l)) {
803 			pr_err("Unable to read PCI config space?\n");
804 			goto out_unlock;
805 		}
806 		absent = (l == 0xffffffff);
807 
808 		if (blocked != absent) {
809 			pr_warn("BIOS says wireless lan is %s, "
810 				"but the pci device is %s\n",
811 				blocked ? "blocked" : "unblocked",
812 				absent ? "absent" : "present");
813 			pr_warn("skipped wireless hotplug as probably "
814 				"inappropriate for this model\n");
815 			goto out_unlock;
816 		}
817 
818 		if (!blocked) {
819 			dev = pci_get_slot(bus, 0);
820 			if (dev) {
821 				/* Device already present */
822 				pci_dev_put(dev);
823 				goto out_unlock;
824 			}
825 			dev = pci_scan_single_device(bus, 0);
826 			if (dev) {
827 				pci_bus_assign_resources(bus);
828 				pci_bus_add_device(dev);
829 			}
830 		} else {
831 			dev = pci_get_slot(bus, 0);
832 			if (dev) {
833 				pci_stop_and_remove_bus_device(dev);
834 				pci_dev_put(dev);
835 			}
836 		}
837 	}
838 
839 out_unlock:
840 	pci_unlock_rescan_remove();
841 	mutex_unlock(&asus->hotplug_lock);
842 }
843 
844 static void asus_rfkill_notify(acpi_handle handle, u32 event, void *data)
845 {
846 	struct asus_wmi *asus = data;
847 
848 	if (event != ACPI_NOTIFY_BUS_CHECK)
849 		return;
850 
851 	/*
852 	 * We can't call directly asus_rfkill_hotplug because most
853 	 * of the time WMBC is still being executed and not reetrant.
854 	 * There is currently no way to tell ACPICA that  we want this
855 	 * method to be serialized, we schedule a asus_rfkill_hotplug
856 	 * call later, in a safer context.
857 	 */
858 	queue_work(asus->hotplug_workqueue, &asus->hotplug_work);
859 }
860 
861 static int asus_register_rfkill_notifier(struct asus_wmi *asus, char *node)
862 {
863 	acpi_status status;
864 	acpi_handle handle;
865 
866 	status = acpi_get_handle(NULL, node, &handle);
867 	if (ACPI_FAILURE(status))
868 		return -ENODEV;
869 
870 	status = acpi_install_notify_handler(handle, ACPI_SYSTEM_NOTIFY,
871 					     asus_rfkill_notify, asus);
872 	if (ACPI_FAILURE(status))
873 		pr_warn("Failed to register notify on %s\n", node);
874 
875 	return 0;
876 }
877 
878 static void asus_unregister_rfkill_notifier(struct asus_wmi *asus, char *node)
879 {
880 	acpi_status status = AE_OK;
881 	acpi_handle handle;
882 
883 	status = acpi_get_handle(NULL, node, &handle);
884 	if (ACPI_FAILURE(status))
885 		return;
886 
887 	status = acpi_remove_notify_handler(handle, ACPI_SYSTEM_NOTIFY,
888 					    asus_rfkill_notify);
889 	if (ACPI_FAILURE(status))
890 		pr_err("Error removing rfkill notify handler %s\n", node);
891 }
892 
893 static int asus_get_adapter_status(struct hotplug_slot *hotplug_slot,
894 				   u8 *value)
895 {
896 	struct asus_wmi *asus = container_of(hotplug_slot,
897 					     struct asus_wmi, hotplug_slot);
898 	int result = asus_wmi_get_devstate_simple(asus, ASUS_WMI_DEVID_WLAN);
899 
900 	if (result < 0)
901 		return result;
902 
903 	*value = !!result;
904 	return 0;
905 }
906 
907 static const struct hotplug_slot_ops asus_hotplug_slot_ops = {
908 	.get_adapter_status = asus_get_adapter_status,
909 	.get_power_status = asus_get_adapter_status,
910 };
911 
912 static void asus_hotplug_work(struct work_struct *work)
913 {
914 	struct asus_wmi *asus;
915 
916 	asus = container_of(work, struct asus_wmi, hotplug_work);
917 	asus_rfkill_hotplug(asus);
918 }
919 
920 static int asus_setup_pci_hotplug(struct asus_wmi *asus)
921 {
922 	int ret = -ENOMEM;
923 	struct pci_bus *bus = pci_find_bus(0, 1);
924 
925 	if (!bus) {
926 		pr_err("Unable to find wifi PCI bus\n");
927 		return -ENODEV;
928 	}
929 
930 	asus->hotplug_workqueue =
931 	    create_singlethread_workqueue("hotplug_workqueue");
932 	if (!asus->hotplug_workqueue)
933 		goto error_workqueue;
934 
935 	INIT_WORK(&asus->hotplug_work, asus_hotplug_work);
936 
937 	asus->hotplug_slot.ops = &asus_hotplug_slot_ops;
938 
939 	ret = pci_hp_register(&asus->hotplug_slot, bus, 0, "asus-wifi");
940 	if (ret) {
941 		pr_err("Unable to register hotplug slot - %d\n", ret);
942 		goto error_register;
943 	}
944 
945 	return 0;
946 
947 error_register:
948 	asus->hotplug_slot.ops = NULL;
949 	destroy_workqueue(asus->hotplug_workqueue);
950 error_workqueue:
951 	return ret;
952 }
953 
954 /*
955  * Rfkill devices
956  */
957 static int asus_rfkill_set(void *data, bool blocked)
958 {
959 	struct asus_rfkill *priv = data;
960 	u32 ctrl_param = !blocked;
961 	u32 dev_id = priv->dev_id;
962 
963 	/*
964 	 * If the user bit is set, BIOS can't set and record the wlan status,
965 	 * it will report the value read from id ASUS_WMI_DEVID_WLAN_LED
966 	 * while we query the wlan status through WMI(ASUS_WMI_DEVID_WLAN).
967 	 * So, we have to record wlan status in id ASUS_WMI_DEVID_WLAN_LED
968 	 * while setting the wlan status through WMI.
969 	 * This is also the behavior that windows app will do.
970 	 */
971 	if ((dev_id == ASUS_WMI_DEVID_WLAN) &&
972 	     priv->asus->driver->wlan_ctrl_by_user)
973 		dev_id = ASUS_WMI_DEVID_WLAN_LED;
974 
975 	return asus_wmi_set_devstate(dev_id, ctrl_param, NULL);
976 }
977 
978 static void asus_rfkill_query(struct rfkill *rfkill, void *data)
979 {
980 	struct asus_rfkill *priv = data;
981 	int result;
982 
983 	result = asus_wmi_get_devstate_simple(priv->asus, priv->dev_id);
984 
985 	if (result < 0)
986 		return;
987 
988 	rfkill_set_sw_state(priv->rfkill, !result);
989 }
990 
991 static int asus_rfkill_wlan_set(void *data, bool blocked)
992 {
993 	struct asus_rfkill *priv = data;
994 	struct asus_wmi *asus = priv->asus;
995 	int ret;
996 
997 	/*
998 	 * This handler is enabled only if hotplug is enabled.
999 	 * In this case, the asus_wmi_set_devstate() will
1000 	 * trigger a wmi notification and we need to wait
1001 	 * this call to finish before being able to call
1002 	 * any wmi method
1003 	 */
1004 	mutex_lock(&asus->wmi_lock);
1005 	ret = asus_rfkill_set(data, blocked);
1006 	mutex_unlock(&asus->wmi_lock);
1007 	return ret;
1008 }
1009 
1010 static const struct rfkill_ops asus_rfkill_wlan_ops = {
1011 	.set_block = asus_rfkill_wlan_set,
1012 	.query = asus_rfkill_query,
1013 };
1014 
1015 static const struct rfkill_ops asus_rfkill_ops = {
1016 	.set_block = asus_rfkill_set,
1017 	.query = asus_rfkill_query,
1018 };
1019 
1020 static int asus_new_rfkill(struct asus_wmi *asus,
1021 			   struct asus_rfkill *arfkill,
1022 			   const char *name, enum rfkill_type type, int dev_id)
1023 {
1024 	int result = asus_wmi_get_devstate_simple(asus, dev_id);
1025 	struct rfkill **rfkill = &arfkill->rfkill;
1026 
1027 	if (result < 0)
1028 		return result;
1029 
1030 	arfkill->dev_id = dev_id;
1031 	arfkill->asus = asus;
1032 
1033 	if (dev_id == ASUS_WMI_DEVID_WLAN &&
1034 	    asus->driver->quirks->hotplug_wireless)
1035 		*rfkill = rfkill_alloc(name, &asus->platform_device->dev, type,
1036 				       &asus_rfkill_wlan_ops, arfkill);
1037 	else
1038 		*rfkill = rfkill_alloc(name, &asus->platform_device->dev, type,
1039 				       &asus_rfkill_ops, arfkill);
1040 
1041 	if (!*rfkill)
1042 		return -EINVAL;
1043 
1044 	if ((dev_id == ASUS_WMI_DEVID_WLAN) &&
1045 			(asus->driver->quirks->wapf > 0))
1046 		rfkill_set_led_trigger_name(*rfkill, "asus-wlan");
1047 
1048 	rfkill_init_sw_state(*rfkill, !result);
1049 	result = rfkill_register(*rfkill);
1050 	if (result) {
1051 		rfkill_destroy(*rfkill);
1052 		*rfkill = NULL;
1053 		return result;
1054 	}
1055 	return 0;
1056 }
1057 
1058 static void asus_wmi_rfkill_exit(struct asus_wmi *asus)
1059 {
1060 	if (asus->driver->wlan_ctrl_by_user && ashs_present())
1061 		return;
1062 
1063 	asus_unregister_rfkill_notifier(asus, "\\_SB.PCI0.P0P5");
1064 	asus_unregister_rfkill_notifier(asus, "\\_SB.PCI0.P0P6");
1065 	asus_unregister_rfkill_notifier(asus, "\\_SB.PCI0.P0P7");
1066 	if (asus->wlan.rfkill) {
1067 		rfkill_unregister(asus->wlan.rfkill);
1068 		rfkill_destroy(asus->wlan.rfkill);
1069 		asus->wlan.rfkill = NULL;
1070 	}
1071 	/*
1072 	 * Refresh pci hotplug in case the rfkill state was changed after
1073 	 * asus_unregister_rfkill_notifier()
1074 	 */
1075 	asus_rfkill_hotplug(asus);
1076 	if (asus->hotplug_slot.ops)
1077 		pci_hp_deregister(&asus->hotplug_slot);
1078 	if (asus->hotplug_workqueue)
1079 		destroy_workqueue(asus->hotplug_workqueue);
1080 
1081 	if (asus->bluetooth.rfkill) {
1082 		rfkill_unregister(asus->bluetooth.rfkill);
1083 		rfkill_destroy(asus->bluetooth.rfkill);
1084 		asus->bluetooth.rfkill = NULL;
1085 	}
1086 	if (asus->wimax.rfkill) {
1087 		rfkill_unregister(asus->wimax.rfkill);
1088 		rfkill_destroy(asus->wimax.rfkill);
1089 		asus->wimax.rfkill = NULL;
1090 	}
1091 	if (asus->wwan3g.rfkill) {
1092 		rfkill_unregister(asus->wwan3g.rfkill);
1093 		rfkill_destroy(asus->wwan3g.rfkill);
1094 		asus->wwan3g.rfkill = NULL;
1095 	}
1096 	if (asus->gps.rfkill) {
1097 		rfkill_unregister(asus->gps.rfkill);
1098 		rfkill_destroy(asus->gps.rfkill);
1099 		asus->gps.rfkill = NULL;
1100 	}
1101 	if (asus->uwb.rfkill) {
1102 		rfkill_unregister(asus->uwb.rfkill);
1103 		rfkill_destroy(asus->uwb.rfkill);
1104 		asus->uwb.rfkill = NULL;
1105 	}
1106 }
1107 
1108 static int asus_wmi_rfkill_init(struct asus_wmi *asus)
1109 {
1110 	int result = 0;
1111 
1112 	mutex_init(&asus->hotplug_lock);
1113 	mutex_init(&asus->wmi_lock);
1114 
1115 	result = asus_new_rfkill(asus, &asus->wlan, "asus-wlan",
1116 				 RFKILL_TYPE_WLAN, ASUS_WMI_DEVID_WLAN);
1117 
1118 	if (result && result != -ENODEV)
1119 		goto exit;
1120 
1121 	result = asus_new_rfkill(asus, &asus->bluetooth,
1122 				 "asus-bluetooth", RFKILL_TYPE_BLUETOOTH,
1123 				 ASUS_WMI_DEVID_BLUETOOTH);
1124 
1125 	if (result && result != -ENODEV)
1126 		goto exit;
1127 
1128 	result = asus_new_rfkill(asus, &asus->wimax, "asus-wimax",
1129 				 RFKILL_TYPE_WIMAX, ASUS_WMI_DEVID_WIMAX);
1130 
1131 	if (result && result != -ENODEV)
1132 		goto exit;
1133 
1134 	result = asus_new_rfkill(asus, &asus->wwan3g, "asus-wwan3g",
1135 				 RFKILL_TYPE_WWAN, ASUS_WMI_DEVID_WWAN3G);
1136 
1137 	if (result && result != -ENODEV)
1138 		goto exit;
1139 
1140 	result = asus_new_rfkill(asus, &asus->gps, "asus-gps",
1141 				 RFKILL_TYPE_GPS, ASUS_WMI_DEVID_GPS);
1142 
1143 	if (result && result != -ENODEV)
1144 		goto exit;
1145 
1146 	result = asus_new_rfkill(asus, &asus->uwb, "asus-uwb",
1147 				 RFKILL_TYPE_UWB, ASUS_WMI_DEVID_UWB);
1148 
1149 	if (result && result != -ENODEV)
1150 		goto exit;
1151 
1152 	if (!asus->driver->quirks->hotplug_wireless)
1153 		goto exit;
1154 
1155 	result = asus_setup_pci_hotplug(asus);
1156 	/*
1157 	 * If we get -EBUSY then something else is handling the PCI hotplug -
1158 	 * don't fail in this case
1159 	 */
1160 	if (result == -EBUSY)
1161 		result = 0;
1162 
1163 	asus_register_rfkill_notifier(asus, "\\_SB.PCI0.P0P5");
1164 	asus_register_rfkill_notifier(asus, "\\_SB.PCI0.P0P6");
1165 	asus_register_rfkill_notifier(asus, "\\_SB.PCI0.P0P7");
1166 	/*
1167 	 * Refresh pci hotplug in case the rfkill state was changed during
1168 	 * setup.
1169 	 */
1170 	asus_rfkill_hotplug(asus);
1171 
1172 exit:
1173 	if (result && result != -ENODEV)
1174 		asus_wmi_rfkill_exit(asus);
1175 
1176 	if (result == -ENODEV)
1177 		result = 0;
1178 
1179 	return result;
1180 }
1181 
1182 /* Quirks *********************************************************************/
1183 
1184 static void asus_wmi_set_xusb2pr(struct asus_wmi *asus)
1185 {
1186 	struct pci_dev *xhci_pdev;
1187 	u32 orig_ports_available;
1188 	u32 ports_available = asus->driver->quirks->xusb2pr;
1189 
1190 	xhci_pdev = pci_get_device(PCI_VENDOR_ID_INTEL,
1191 			PCI_DEVICE_ID_INTEL_LYNXPOINT_LP_XHCI,
1192 			NULL);
1193 
1194 	if (!xhci_pdev)
1195 		return;
1196 
1197 	pci_read_config_dword(xhci_pdev, USB_INTEL_XUSB2PR,
1198 				&orig_ports_available);
1199 
1200 	pci_write_config_dword(xhci_pdev, USB_INTEL_XUSB2PR,
1201 				cpu_to_le32(ports_available));
1202 
1203 	pr_info("set USB_INTEL_XUSB2PR old: 0x%04x, new: 0x%04x\n",
1204 			orig_ports_available, ports_available);
1205 }
1206 
1207 /*
1208  * Some devices dont support or have borcken get_als method
1209  * but still support set method.
1210  */
1211 static void asus_wmi_set_als(void)
1212 {
1213 	asus_wmi_set_devstate(ASUS_WMI_DEVID_ALS_ENABLE, 1, NULL);
1214 }
1215 
1216 /* Hwmon device ***************************************************************/
1217 
1218 static int asus_agfn_fan_speed_read(struct asus_wmi *asus, int fan,
1219 					  int *speed)
1220 {
1221 	struct agfn_fan_args args = {
1222 		.agfn.len = sizeof(args),
1223 		.agfn.mfun = ASUS_FAN_MFUN,
1224 		.agfn.sfun = ASUS_FAN_SFUN_READ,
1225 		.fan = fan,
1226 		.speed = 0,
1227 	};
1228 	struct acpi_buffer input = { (acpi_size) sizeof(args), &args };
1229 	int status;
1230 
1231 	if (fan != 1)
1232 		return -EINVAL;
1233 
1234 	status = asus_wmi_evaluate_method_agfn(input);
1235 
1236 	if (status || args.agfn.err)
1237 		return -ENXIO;
1238 
1239 	if (speed)
1240 		*speed = args.speed;
1241 
1242 	return 0;
1243 }
1244 
1245 static int asus_agfn_fan_speed_write(struct asus_wmi *asus, int fan,
1246 				     int *speed)
1247 {
1248 	struct agfn_fan_args args = {
1249 		.agfn.len = sizeof(args),
1250 		.agfn.mfun = ASUS_FAN_MFUN,
1251 		.agfn.sfun = ASUS_FAN_SFUN_WRITE,
1252 		.fan = fan,
1253 		.speed = speed ?  *speed : 0,
1254 	};
1255 	struct acpi_buffer input = { (acpi_size) sizeof(args), &args };
1256 	int status;
1257 
1258 	/* 1: for setting 1st fan's speed 0: setting auto mode */
1259 	if (fan != 1 && fan != 0)
1260 		return -EINVAL;
1261 
1262 	status = asus_wmi_evaluate_method_agfn(input);
1263 
1264 	if (status || args.agfn.err)
1265 		return -ENXIO;
1266 
1267 	if (speed && fan == 1)
1268 		asus->agfn_pwm = *speed;
1269 
1270 	return 0;
1271 }
1272 
1273 /*
1274  * Check if we can read the speed of one fan. If true we assume we can also
1275  * control it.
1276  */
1277 static bool asus_wmi_has_agfn_fan(struct asus_wmi *asus)
1278 {
1279 	int status;
1280 	int speed;
1281 	u32 value;
1282 
1283 	status = asus_agfn_fan_speed_read(asus, 1, &speed);
1284 	if (status != 0)
1285 		return false;
1286 
1287 	status = asus_wmi_get_devstate(asus, ASUS_WMI_DEVID_FAN_CTRL, &value);
1288 	if (status != 0)
1289 		return false;
1290 
1291 	/*
1292 	 * We need to find a better way, probably using sfun,
1293 	 * bits or spec ...
1294 	 * Currently we disable it if:
1295 	 * - ASUS_WMI_UNSUPPORTED_METHOD is returned
1296 	 * - reverved bits are non-zero
1297 	 * - sfun and presence bit are not set
1298 	 */
1299 	return !(value == ASUS_WMI_UNSUPPORTED_METHOD || value & 0xFFF80000
1300 		 || (!asus->sfun && !(value & ASUS_WMI_DSTS_PRESENCE_BIT)));
1301 }
1302 
1303 static int asus_fan_set_auto(struct asus_wmi *asus)
1304 {
1305 	int status;
1306 	u32 retval;
1307 
1308 	switch (asus->fan_type) {
1309 	case FAN_TYPE_SPEC83:
1310 		status = asus_wmi_set_devstate(ASUS_WMI_DEVID_CPU_FAN_CTRL,
1311 					       0, &retval);
1312 		if (status)
1313 			return status;
1314 
1315 		if (retval != 1)
1316 			return -EIO;
1317 		break;
1318 
1319 	case FAN_TYPE_AGFN:
1320 		status = asus_agfn_fan_speed_write(asus, 0, NULL);
1321 		if (status)
1322 			return -ENXIO;
1323 		break;
1324 
1325 	default:
1326 		return -ENXIO;
1327 	}
1328 
1329 
1330 	return 0;
1331 }
1332 
1333 static ssize_t pwm1_show(struct device *dev,
1334 			       struct device_attribute *attr,
1335 			       char *buf)
1336 {
1337 	struct asus_wmi *asus = dev_get_drvdata(dev);
1338 	int err;
1339 	int value;
1340 
1341 	/* If we already set a value then just return it */
1342 	if (asus->agfn_pwm >= 0)
1343 		return sprintf(buf, "%d\n", asus->agfn_pwm);
1344 
1345 	/*
1346 	 * If we haven't set already set a value through the AGFN interface,
1347 	 * we read a current value through the (now-deprecated) FAN_CTRL device.
1348 	 */
1349 	err = asus_wmi_get_devstate(asus, ASUS_WMI_DEVID_FAN_CTRL, &value);
1350 	if (err < 0)
1351 		return err;
1352 
1353 	value &= 0xFF;
1354 
1355 	if (value == 1) /* Low Speed */
1356 		value = 85;
1357 	else if (value == 2)
1358 		value = 170;
1359 	else if (value == 3)
1360 		value = 255;
1361 	else if (value) {
1362 		pr_err("Unknown fan speed %#x\n", value);
1363 		value = -1;
1364 	}
1365 
1366 	return sprintf(buf, "%d\n", value);
1367 }
1368 
1369 static ssize_t pwm1_store(struct device *dev,
1370 				     struct device_attribute *attr,
1371 				     const char *buf, size_t count) {
1372 	struct asus_wmi *asus = dev_get_drvdata(dev);
1373 	int value;
1374 	int state;
1375 	int ret;
1376 
1377 	ret = kstrtouint(buf, 10, &value);
1378 	if (ret)
1379 		return ret;
1380 
1381 	value = clamp(value, 0, 255);
1382 
1383 	state = asus_agfn_fan_speed_write(asus, 1, &value);
1384 	if (state)
1385 		pr_warn("Setting fan speed failed: %d\n", state);
1386 	else
1387 		asus->fan_pwm_mode = ASUS_FAN_CTRL_MANUAL;
1388 
1389 	return count;
1390 }
1391 
1392 static ssize_t fan1_input_show(struct device *dev,
1393 					struct device_attribute *attr,
1394 					char *buf)
1395 {
1396 	struct asus_wmi *asus = dev_get_drvdata(dev);
1397 	int value;
1398 	int ret;
1399 
1400 	switch (asus->fan_type) {
1401 	case FAN_TYPE_SPEC83:
1402 		ret = asus_wmi_get_devstate(asus, ASUS_WMI_DEVID_CPU_FAN_CTRL,
1403 					    &value);
1404 		if (ret < 0)
1405 			return ret;
1406 
1407 		value &= 0xffff;
1408 		break;
1409 
1410 	case FAN_TYPE_AGFN:
1411 		/* no speed readable on manual mode */
1412 		if (asus->fan_pwm_mode == ASUS_FAN_CTRL_MANUAL)
1413 			return -ENXIO;
1414 
1415 		ret = asus_agfn_fan_speed_read(asus, 1, &value);
1416 		if (ret) {
1417 			pr_warn("reading fan speed failed: %d\n", ret);
1418 			return -ENXIO;
1419 		}
1420 		break;
1421 
1422 	default:
1423 		return -ENXIO;
1424 	}
1425 
1426 	return sprintf(buf, "%d\n", value < 0 ? -1 : value*100);
1427 }
1428 
1429 static ssize_t pwm1_enable_show(struct device *dev,
1430 						 struct device_attribute *attr,
1431 						 char *buf)
1432 {
1433 	struct asus_wmi *asus = dev_get_drvdata(dev);
1434 
1435 	/*
1436 	 * Just read back the cached pwm mode.
1437 	 *
1438 	 * For the CPU_FAN device, the spec indicates that we should be
1439 	 * able to read the device status and consult bit 19 to see if we
1440 	 * are in Full On or Automatic mode. However, this does not work
1441 	 * in practice on X532FL at least (the bit is always 0) and there's
1442 	 * also nothing in the DSDT to indicate that this behaviour exists.
1443 	 */
1444 	return sprintf(buf, "%d\n", asus->fan_pwm_mode);
1445 }
1446 
1447 static ssize_t pwm1_enable_store(struct device *dev,
1448 						  struct device_attribute *attr,
1449 						  const char *buf, size_t count)
1450 {
1451 	struct asus_wmi *asus = dev_get_drvdata(dev);
1452 	int status = 0;
1453 	int state;
1454 	int value;
1455 	int ret;
1456 	u32 retval;
1457 
1458 	ret = kstrtouint(buf, 10, &state);
1459 	if (ret)
1460 		return ret;
1461 
1462 	if (asus->fan_type == FAN_TYPE_SPEC83) {
1463 		switch (state) { /* standard documented hwmon values */
1464 		case ASUS_FAN_CTRL_FULLSPEED:
1465 			value = 1;
1466 			break;
1467 		case ASUS_FAN_CTRL_AUTO:
1468 			value = 0;
1469 			break;
1470 		default:
1471 			return -EINVAL;
1472 		}
1473 
1474 		ret = asus_wmi_set_devstate(ASUS_WMI_DEVID_CPU_FAN_CTRL,
1475 					    value, &retval);
1476 		if (ret)
1477 			return ret;
1478 
1479 		if (retval != 1)
1480 			return -EIO;
1481 	} else if (asus->fan_type == FAN_TYPE_AGFN) {
1482 		switch (state) {
1483 		case ASUS_FAN_CTRL_MANUAL:
1484 			break;
1485 
1486 		case ASUS_FAN_CTRL_AUTO:
1487 			status = asus_fan_set_auto(asus);
1488 			if (status)
1489 				return status;
1490 			break;
1491 
1492 		default:
1493 			return -EINVAL;
1494 		}
1495 	}
1496 
1497 	asus->fan_pwm_mode = state;
1498 	return count;
1499 }
1500 
1501 static ssize_t fan1_label_show(struct device *dev,
1502 					  struct device_attribute *attr,
1503 					  char *buf)
1504 {
1505 	return sprintf(buf, "%s\n", ASUS_FAN_DESC);
1506 }
1507 
1508 static ssize_t asus_hwmon_temp1(struct device *dev,
1509 				struct device_attribute *attr,
1510 				char *buf)
1511 {
1512 	struct asus_wmi *asus = dev_get_drvdata(dev);
1513 	u32 value;
1514 	int err;
1515 
1516 	err = asus_wmi_get_devstate(asus, ASUS_WMI_DEVID_THERMAL_CTRL, &value);
1517 	if (err < 0)
1518 		return err;
1519 
1520 	return sprintf(buf, "%ld\n",
1521 		       deci_kelvin_to_millicelsius(value & 0xFFFF));
1522 }
1523 
1524 /* Fan1 */
1525 static DEVICE_ATTR_RW(pwm1);
1526 static DEVICE_ATTR_RW(pwm1_enable);
1527 static DEVICE_ATTR_RO(fan1_input);
1528 static DEVICE_ATTR_RO(fan1_label);
1529 
1530 /* Temperature */
1531 static DEVICE_ATTR(temp1_input, S_IRUGO, asus_hwmon_temp1, NULL);
1532 
1533 static struct attribute *hwmon_attributes[] = {
1534 	&dev_attr_pwm1.attr,
1535 	&dev_attr_pwm1_enable.attr,
1536 	&dev_attr_fan1_input.attr,
1537 	&dev_attr_fan1_label.attr,
1538 
1539 	&dev_attr_temp1_input.attr,
1540 	NULL
1541 };
1542 
1543 static umode_t asus_hwmon_sysfs_is_visible(struct kobject *kobj,
1544 					  struct attribute *attr, int idx)
1545 {
1546 	struct device *dev = container_of(kobj, struct device, kobj);
1547 	struct asus_wmi *asus = dev_get_drvdata(dev->parent);
1548 	u32 value = ASUS_WMI_UNSUPPORTED_METHOD;
1549 
1550 	if (attr == &dev_attr_pwm1.attr) {
1551 		if (asus->fan_type != FAN_TYPE_AGFN)
1552 			return 0;
1553 	} else if (attr == &dev_attr_fan1_input.attr
1554 	    || attr == &dev_attr_fan1_label.attr
1555 	    || attr == &dev_attr_pwm1_enable.attr) {
1556 		if (asus->fan_type == FAN_TYPE_NONE)
1557 			return 0;
1558 	} else if (attr == &dev_attr_temp1_input.attr) {
1559 		int err = asus_wmi_get_devstate(asus,
1560 						ASUS_WMI_DEVID_THERMAL_CTRL,
1561 						&value);
1562 
1563 		if (err < 0)
1564 			return 0; /* can't return negative here */
1565 
1566 		/*
1567 		 * If the temperature value in deci-Kelvin is near the absolute
1568 		 * zero temperature, something is clearly wrong
1569 		 */
1570 		if (value == 0 || value == 1)
1571 			return 0;
1572 	}
1573 
1574 	return attr->mode;
1575 }
1576 
1577 static const struct attribute_group hwmon_attribute_group = {
1578 	.is_visible = asus_hwmon_sysfs_is_visible,
1579 	.attrs = hwmon_attributes
1580 };
1581 __ATTRIBUTE_GROUPS(hwmon_attribute);
1582 
1583 static int asus_wmi_hwmon_init(struct asus_wmi *asus)
1584 {
1585 	struct device *dev = &asus->platform_device->dev;
1586 	struct device *hwmon;
1587 
1588 	hwmon = devm_hwmon_device_register_with_groups(dev, "asus", asus,
1589 			hwmon_attribute_groups);
1590 
1591 	if (IS_ERR(hwmon)) {
1592 		pr_err("Could not register asus hwmon device\n");
1593 		return PTR_ERR(hwmon);
1594 	}
1595 	return 0;
1596 }
1597 
1598 static int asus_wmi_fan_init(struct asus_wmi *asus)
1599 {
1600 	asus->fan_type = FAN_TYPE_NONE;
1601 	asus->agfn_pwm = -1;
1602 
1603 	if (asus_wmi_dev_is_present(asus, ASUS_WMI_DEVID_CPU_FAN_CTRL))
1604 		asus->fan_type = FAN_TYPE_SPEC83;
1605 	else if (asus_wmi_has_agfn_fan(asus))
1606 		asus->fan_type = FAN_TYPE_AGFN;
1607 
1608 	if (asus->fan_type == FAN_TYPE_NONE)
1609 		return -ENODEV;
1610 
1611 	asus_fan_set_auto(asus);
1612 	asus->fan_pwm_mode = ASUS_FAN_CTRL_AUTO;
1613 	return 0;
1614 }
1615 
1616 /* Fan mode *******************************************************************/
1617 
1618 static int fan_boost_mode_check_present(struct asus_wmi *asus)
1619 {
1620 	u32 result;
1621 	int err;
1622 
1623 	asus->fan_boost_mode_available = false;
1624 
1625 	err = asus_wmi_get_devstate(asus, ASUS_WMI_DEVID_FAN_BOOST_MODE,
1626 				    &result);
1627 	if (err) {
1628 		if (err == -ENODEV)
1629 			return 0;
1630 		else
1631 			return err;
1632 	}
1633 
1634 	if ((result & ASUS_WMI_DSTS_PRESENCE_BIT) &&
1635 			(result & ASUS_FAN_BOOST_MODES_MASK)) {
1636 		asus->fan_boost_mode_available = true;
1637 		asus->fan_boost_mode_mask = result & ASUS_FAN_BOOST_MODES_MASK;
1638 	}
1639 
1640 	return 0;
1641 }
1642 
1643 static int fan_boost_mode_write(struct asus_wmi *asus)
1644 {
1645 	int err;
1646 	u8 value;
1647 	u32 retval;
1648 
1649 	value = asus->fan_boost_mode;
1650 
1651 	pr_info("Set fan boost mode: %u\n", value);
1652 	err = asus_wmi_set_devstate(ASUS_WMI_DEVID_FAN_BOOST_MODE, value,
1653 				    &retval);
1654 	if (err) {
1655 		pr_warn("Failed to set fan boost mode: %d\n", err);
1656 		return err;
1657 	}
1658 
1659 	if (retval != 1) {
1660 		pr_warn("Failed to set fan boost mode (retval): 0x%x\n",
1661 			retval);
1662 		return -EIO;
1663 	}
1664 
1665 	return 0;
1666 }
1667 
1668 static int fan_boost_mode_switch_next(struct asus_wmi *asus)
1669 {
1670 	u8 mask = asus->fan_boost_mode_mask;
1671 
1672 	if (asus->fan_boost_mode == ASUS_FAN_BOOST_MODE_NORMAL) {
1673 		if (mask & ASUS_FAN_BOOST_MODE_OVERBOOST_MASK)
1674 			asus->fan_boost_mode = ASUS_FAN_BOOST_MODE_OVERBOOST;
1675 		else if (mask & ASUS_FAN_BOOST_MODE_SILENT_MASK)
1676 			asus->fan_boost_mode = ASUS_FAN_BOOST_MODE_SILENT;
1677 	} else if (asus->fan_boost_mode == ASUS_FAN_BOOST_MODE_OVERBOOST) {
1678 		if (mask & ASUS_FAN_BOOST_MODE_SILENT_MASK)
1679 			asus->fan_boost_mode = ASUS_FAN_BOOST_MODE_SILENT;
1680 		else
1681 			asus->fan_boost_mode = ASUS_FAN_BOOST_MODE_NORMAL;
1682 	} else {
1683 		asus->fan_boost_mode = ASUS_FAN_BOOST_MODE_NORMAL;
1684 	}
1685 
1686 	return fan_boost_mode_write(asus);
1687 }
1688 
1689 static ssize_t fan_boost_mode_show(struct device *dev,
1690 				   struct device_attribute *attr, char *buf)
1691 {
1692 	struct asus_wmi *asus = dev_get_drvdata(dev);
1693 
1694 	return scnprintf(buf, PAGE_SIZE, "%d\n", asus->fan_boost_mode);
1695 }
1696 
1697 static ssize_t fan_boost_mode_store(struct device *dev,
1698 				    struct device_attribute *attr,
1699 				    const char *buf, size_t count)
1700 {
1701 	int result;
1702 	u8 new_mode;
1703 	struct asus_wmi *asus = dev_get_drvdata(dev);
1704 	u8 mask = asus->fan_boost_mode_mask;
1705 
1706 	result = kstrtou8(buf, 10, &new_mode);
1707 	if (result < 0) {
1708 		pr_warn("Trying to store invalid value\n");
1709 		return result;
1710 	}
1711 
1712 	if (new_mode == ASUS_FAN_BOOST_MODE_OVERBOOST) {
1713 		if (!(mask & ASUS_FAN_BOOST_MODE_OVERBOOST_MASK))
1714 			return -EINVAL;
1715 	} else if (new_mode == ASUS_FAN_BOOST_MODE_SILENT) {
1716 		if (!(mask & ASUS_FAN_BOOST_MODE_SILENT_MASK))
1717 			return -EINVAL;
1718 	} else if (new_mode != ASUS_FAN_BOOST_MODE_NORMAL) {
1719 		return -EINVAL;
1720 	}
1721 
1722 	asus->fan_boost_mode = new_mode;
1723 	fan_boost_mode_write(asus);
1724 
1725 	return count;
1726 }
1727 
1728 // Fan boost mode: 0 - normal, 1 - overboost, 2 - silent
1729 static DEVICE_ATTR_RW(fan_boost_mode);
1730 
1731 /* Throttle thermal policy ****************************************************/
1732 
1733 static int throttle_thermal_policy_check_present(struct asus_wmi *asus)
1734 {
1735 	u32 result;
1736 	int err;
1737 
1738 	asus->throttle_thermal_policy_available = false;
1739 
1740 	err = asus_wmi_get_devstate(asus,
1741 				    ASUS_WMI_DEVID_THROTTLE_THERMAL_POLICY,
1742 				    &result);
1743 	if (err) {
1744 		if (err == -ENODEV)
1745 			return 0;
1746 		return err;
1747 	}
1748 
1749 	if (result & ASUS_WMI_DSTS_PRESENCE_BIT)
1750 		asus->throttle_thermal_policy_available = true;
1751 
1752 	return 0;
1753 }
1754 
1755 static int throttle_thermal_policy_write(struct asus_wmi *asus)
1756 {
1757 	int err;
1758 	u8 value;
1759 	u32 retval;
1760 
1761 	value = asus->throttle_thermal_policy_mode;
1762 
1763 	err = asus_wmi_set_devstate(ASUS_WMI_DEVID_THROTTLE_THERMAL_POLICY,
1764 				    value, &retval);
1765 	if (err) {
1766 		pr_warn("Failed to set throttle thermal policy: %d\n", err);
1767 		return err;
1768 	}
1769 
1770 	if (retval != 1) {
1771 		pr_warn("Failed to set throttle thermal policy (retval): 0x%x\n",
1772 			retval);
1773 		return -EIO;
1774 	}
1775 
1776 	return 0;
1777 }
1778 
1779 static int throttle_thermal_policy_set_default(struct asus_wmi *asus)
1780 {
1781 	if (!asus->throttle_thermal_policy_available)
1782 		return 0;
1783 
1784 	asus->throttle_thermal_policy_mode = ASUS_THROTTLE_THERMAL_POLICY_DEFAULT;
1785 	return throttle_thermal_policy_write(asus);
1786 }
1787 
1788 static int throttle_thermal_policy_switch_next(struct asus_wmi *asus)
1789 {
1790 	u8 new_mode = asus->throttle_thermal_policy_mode + 1;
1791 
1792 	if (new_mode > ASUS_THROTTLE_THERMAL_POLICY_SILENT)
1793 		new_mode = ASUS_THROTTLE_THERMAL_POLICY_DEFAULT;
1794 
1795 	asus->throttle_thermal_policy_mode = new_mode;
1796 	return throttle_thermal_policy_write(asus);
1797 }
1798 
1799 static ssize_t throttle_thermal_policy_show(struct device *dev,
1800 				   struct device_attribute *attr, char *buf)
1801 {
1802 	struct asus_wmi *asus = dev_get_drvdata(dev);
1803 	u8 mode = asus->throttle_thermal_policy_mode;
1804 
1805 	return scnprintf(buf, PAGE_SIZE, "%d\n", mode);
1806 }
1807 
1808 static ssize_t throttle_thermal_policy_store(struct device *dev,
1809 				    struct device_attribute *attr,
1810 				    const char *buf, size_t count)
1811 {
1812 	int result;
1813 	u8 new_mode;
1814 	struct asus_wmi *asus = dev_get_drvdata(dev);
1815 
1816 	result = kstrtou8(buf, 10, &new_mode);
1817 	if (result < 0)
1818 		return result;
1819 
1820 	if (new_mode > ASUS_THROTTLE_THERMAL_POLICY_SILENT)
1821 		return -EINVAL;
1822 
1823 	asus->throttle_thermal_policy_mode = new_mode;
1824 	throttle_thermal_policy_write(asus);
1825 
1826 	return count;
1827 }
1828 
1829 // Throttle thermal policy: 0 - default, 1 - overboost, 2 - silent
1830 static DEVICE_ATTR_RW(throttle_thermal_policy);
1831 
1832 /* Backlight ******************************************************************/
1833 
1834 static int read_backlight_power(struct asus_wmi *asus)
1835 {
1836 	int ret;
1837 
1838 	if (asus->driver->quirks->store_backlight_power)
1839 		ret = !asus->driver->panel_power;
1840 	else
1841 		ret = asus_wmi_get_devstate_simple(asus,
1842 						   ASUS_WMI_DEVID_BACKLIGHT);
1843 
1844 	if (ret < 0)
1845 		return ret;
1846 
1847 	return ret ? FB_BLANK_UNBLANK : FB_BLANK_POWERDOWN;
1848 }
1849 
1850 static int read_brightness_max(struct asus_wmi *asus)
1851 {
1852 	u32 retval;
1853 	int err;
1854 
1855 	err = asus_wmi_get_devstate(asus, ASUS_WMI_DEVID_BRIGHTNESS, &retval);
1856 	if (err < 0)
1857 		return err;
1858 
1859 	retval = retval & ASUS_WMI_DSTS_MAX_BRIGTH_MASK;
1860 	retval >>= 8;
1861 
1862 	if (!retval)
1863 		return -ENODEV;
1864 
1865 	return retval;
1866 }
1867 
1868 static int read_brightness(struct backlight_device *bd)
1869 {
1870 	struct asus_wmi *asus = bl_get_data(bd);
1871 	u32 retval;
1872 	int err;
1873 
1874 	err = asus_wmi_get_devstate(asus, ASUS_WMI_DEVID_BRIGHTNESS, &retval);
1875 	if (err < 0)
1876 		return err;
1877 
1878 	return retval & ASUS_WMI_DSTS_BRIGHTNESS_MASK;
1879 }
1880 
1881 static u32 get_scalar_command(struct backlight_device *bd)
1882 {
1883 	struct asus_wmi *asus = bl_get_data(bd);
1884 	u32 ctrl_param = 0;
1885 
1886 	if ((asus->driver->brightness < bd->props.brightness) ||
1887 	    bd->props.brightness == bd->props.max_brightness)
1888 		ctrl_param = 0x00008001;
1889 	else if ((asus->driver->brightness > bd->props.brightness) ||
1890 		 bd->props.brightness == 0)
1891 		ctrl_param = 0x00008000;
1892 
1893 	asus->driver->brightness = bd->props.brightness;
1894 
1895 	return ctrl_param;
1896 }
1897 
1898 static int update_bl_status(struct backlight_device *bd)
1899 {
1900 	struct asus_wmi *asus = bl_get_data(bd);
1901 	u32 ctrl_param;
1902 	int power, err = 0;
1903 
1904 	power = read_backlight_power(asus);
1905 	if (power != -ENODEV && bd->props.power != power) {
1906 		ctrl_param = !!(bd->props.power == FB_BLANK_UNBLANK);
1907 		err = asus_wmi_set_devstate(ASUS_WMI_DEVID_BACKLIGHT,
1908 					    ctrl_param, NULL);
1909 		if (asus->driver->quirks->store_backlight_power)
1910 			asus->driver->panel_power = bd->props.power;
1911 
1912 		/* When using scalar brightness, updating the brightness
1913 		 * will mess with the backlight power */
1914 		if (asus->driver->quirks->scalar_panel_brightness)
1915 			return err;
1916 	}
1917 
1918 	if (asus->driver->quirks->scalar_panel_brightness)
1919 		ctrl_param = get_scalar_command(bd);
1920 	else
1921 		ctrl_param = bd->props.brightness;
1922 
1923 	err = asus_wmi_set_devstate(ASUS_WMI_DEVID_BRIGHTNESS,
1924 				    ctrl_param, NULL);
1925 
1926 	return err;
1927 }
1928 
1929 static const struct backlight_ops asus_wmi_bl_ops = {
1930 	.get_brightness = read_brightness,
1931 	.update_status = update_bl_status,
1932 };
1933 
1934 static int asus_wmi_backlight_notify(struct asus_wmi *asus, int code)
1935 {
1936 	struct backlight_device *bd = asus->backlight_device;
1937 	int old = bd->props.brightness;
1938 	int new = old;
1939 
1940 	if (code >= NOTIFY_BRNUP_MIN && code <= NOTIFY_BRNUP_MAX)
1941 		new = code - NOTIFY_BRNUP_MIN + 1;
1942 	else if (code >= NOTIFY_BRNDOWN_MIN && code <= NOTIFY_BRNDOWN_MAX)
1943 		new = code - NOTIFY_BRNDOWN_MIN;
1944 
1945 	bd->props.brightness = new;
1946 	backlight_update_status(bd);
1947 	backlight_force_update(bd, BACKLIGHT_UPDATE_HOTKEY);
1948 
1949 	return old;
1950 }
1951 
1952 static int asus_wmi_backlight_init(struct asus_wmi *asus)
1953 {
1954 	struct backlight_device *bd;
1955 	struct backlight_properties props;
1956 	int max;
1957 	int power;
1958 
1959 	max = read_brightness_max(asus);
1960 	if (max < 0)
1961 		return max;
1962 
1963 	power = read_backlight_power(asus);
1964 	if (power == -ENODEV)
1965 		power = FB_BLANK_UNBLANK;
1966 	else if (power < 0)
1967 		return power;
1968 
1969 	memset(&props, 0, sizeof(struct backlight_properties));
1970 	props.type = BACKLIGHT_PLATFORM;
1971 	props.max_brightness = max;
1972 	bd = backlight_device_register(asus->driver->name,
1973 				       &asus->platform_device->dev, asus,
1974 				       &asus_wmi_bl_ops, &props);
1975 	if (IS_ERR(bd)) {
1976 		pr_err("Could not register backlight device\n");
1977 		return PTR_ERR(bd);
1978 	}
1979 
1980 	asus->backlight_device = bd;
1981 
1982 	if (asus->driver->quirks->store_backlight_power)
1983 		asus->driver->panel_power = power;
1984 
1985 	bd->props.brightness = read_brightness(bd);
1986 	bd->props.power = power;
1987 	backlight_update_status(bd);
1988 
1989 	asus->driver->brightness = bd->props.brightness;
1990 
1991 	return 0;
1992 }
1993 
1994 static void asus_wmi_backlight_exit(struct asus_wmi *asus)
1995 {
1996 	backlight_device_unregister(asus->backlight_device);
1997 
1998 	asus->backlight_device = NULL;
1999 }
2000 
2001 static int is_display_toggle(int code)
2002 {
2003 	/* display toggle keys */
2004 	if ((code >= 0x61 && code <= 0x67) ||
2005 	    (code >= 0x8c && code <= 0x93) ||
2006 	    (code >= 0xa0 && code <= 0xa7) ||
2007 	    (code >= 0xd0 && code <= 0xd5))
2008 		return 1;
2009 
2010 	return 0;
2011 }
2012 
2013 /* Fn-lock ********************************************************************/
2014 
2015 static bool asus_wmi_has_fnlock_key(struct asus_wmi *asus)
2016 {
2017 	u32 result;
2018 
2019 	asus_wmi_get_devstate(asus, ASUS_WMI_DEVID_FNLOCK, &result);
2020 
2021 	return (result & ASUS_WMI_DSTS_PRESENCE_BIT) &&
2022 		!(result & ASUS_WMI_FNLOCK_BIOS_DISABLED);
2023 }
2024 
2025 static void asus_wmi_fnlock_update(struct asus_wmi *asus)
2026 {
2027 	int mode = asus->fnlock_locked;
2028 
2029 	asus_wmi_set_devstate(ASUS_WMI_DEVID_FNLOCK, mode, NULL);
2030 }
2031 
2032 /* WMI events *****************************************************************/
2033 
2034 static int asus_wmi_get_event_code(u32 value)
2035 {
2036 	struct acpi_buffer response = { ACPI_ALLOCATE_BUFFER, NULL };
2037 	union acpi_object *obj;
2038 	acpi_status status;
2039 	int code;
2040 
2041 	status = wmi_get_event_data(value, &response);
2042 	if (ACPI_FAILURE(status)) {
2043 		pr_warn("Failed to get WMI notify code: %s\n",
2044 				acpi_format_exception(status));
2045 		return -EIO;
2046 	}
2047 
2048 	obj = (union acpi_object *)response.pointer;
2049 
2050 	if (obj && obj->type == ACPI_TYPE_INTEGER)
2051 		code = (int)(obj->integer.value & WMI_EVENT_MASK);
2052 	else
2053 		code = -EIO;
2054 
2055 	kfree(obj);
2056 	return code;
2057 }
2058 
2059 static void asus_wmi_handle_event_code(int code, struct asus_wmi *asus)
2060 {
2061 	int orig_code;
2062 	unsigned int key_value = 1;
2063 	bool autorelease = 1;
2064 
2065 	orig_code = code;
2066 
2067 	if (asus->driver->key_filter) {
2068 		asus->driver->key_filter(asus->driver, &code, &key_value,
2069 					 &autorelease);
2070 		if (code == ASUS_WMI_KEY_IGNORE)
2071 			return;
2072 	}
2073 
2074 	if (code >= NOTIFY_BRNUP_MIN && code <= NOTIFY_BRNUP_MAX)
2075 		code = ASUS_WMI_BRN_UP;
2076 	else if (code >= NOTIFY_BRNDOWN_MIN && code <= NOTIFY_BRNDOWN_MAX)
2077 		code = ASUS_WMI_BRN_DOWN;
2078 
2079 	if (code == ASUS_WMI_BRN_DOWN || code == ASUS_WMI_BRN_UP) {
2080 		if (acpi_video_get_backlight_type() == acpi_backlight_vendor) {
2081 			asus_wmi_backlight_notify(asus, orig_code);
2082 			return;
2083 		}
2084 	}
2085 
2086 	if (code == NOTIFY_KBD_BRTUP) {
2087 		kbd_led_set_by_kbd(asus, asus->kbd_led_wk + 1);
2088 		return;
2089 	}
2090 	if (code == NOTIFY_KBD_BRTDWN) {
2091 		kbd_led_set_by_kbd(asus, asus->kbd_led_wk - 1);
2092 		return;
2093 	}
2094 	if (code == NOTIFY_KBD_BRTTOGGLE) {
2095 		if (asus->kbd_led_wk == asus->kbd_led.max_brightness)
2096 			kbd_led_set_by_kbd(asus, 0);
2097 		else
2098 			kbd_led_set_by_kbd(asus, asus->kbd_led_wk + 1);
2099 		return;
2100 	}
2101 
2102 	if (code == NOTIFY_FNLOCK_TOGGLE) {
2103 		asus->fnlock_locked = !asus->fnlock_locked;
2104 		asus_wmi_fnlock_update(asus);
2105 		return;
2106 	}
2107 
2108 	if (asus->fan_boost_mode_available && code == NOTIFY_KBD_FBM) {
2109 		fan_boost_mode_switch_next(asus);
2110 		return;
2111 	}
2112 
2113 	if (asus->throttle_thermal_policy_available && code == NOTIFY_KBD_TTP) {
2114 		throttle_thermal_policy_switch_next(asus);
2115 		return;
2116 	}
2117 
2118 	if (is_display_toggle(code) && asus->driver->quirks->no_display_toggle)
2119 		return;
2120 
2121 	if (!sparse_keymap_report_event(asus->inputdev, code,
2122 					key_value, autorelease))
2123 		pr_info("Unknown key %x pressed\n", code);
2124 }
2125 
2126 static void asus_wmi_notify(u32 value, void *context)
2127 {
2128 	struct asus_wmi *asus = context;
2129 	int code;
2130 	int i;
2131 
2132 	for (i = 0; i < WMI_EVENT_QUEUE_SIZE + 1; i++) {
2133 		code = asus_wmi_get_event_code(value);
2134 		if (code < 0) {
2135 			pr_warn("Failed to get notify code: %d\n", code);
2136 			return;
2137 		}
2138 
2139 		if (code == WMI_EVENT_QUEUE_END || code == WMI_EVENT_MASK)
2140 			return;
2141 
2142 		asus_wmi_handle_event_code(code, asus);
2143 
2144 		/*
2145 		 * Double check that queue is present:
2146 		 * ATK (with queue) uses 0xff, ASUSWMI (without) 0xd2.
2147 		 */
2148 		if (!asus->wmi_event_queue || value != WMI_EVENT_VALUE_ATK)
2149 			return;
2150 	}
2151 
2152 	pr_warn("Failed to process event queue, last code: 0x%x\n", code);
2153 }
2154 
2155 static int asus_wmi_notify_queue_flush(struct asus_wmi *asus)
2156 {
2157 	int code;
2158 	int i;
2159 
2160 	for (i = 0; i < WMI_EVENT_QUEUE_SIZE + 1; i++) {
2161 		code = asus_wmi_get_event_code(WMI_EVENT_VALUE_ATK);
2162 		if (code < 0) {
2163 			pr_warn("Failed to get event during flush: %d\n", code);
2164 			return code;
2165 		}
2166 
2167 		if (code == WMI_EVENT_QUEUE_END || code == WMI_EVENT_MASK)
2168 			return 0;
2169 	}
2170 
2171 	pr_warn("Failed to flush event queue\n");
2172 	return -EIO;
2173 }
2174 
2175 /* Sysfs **********************************************************************/
2176 
2177 static ssize_t store_sys_wmi(struct asus_wmi *asus, int devid,
2178 			     const char *buf, size_t count)
2179 {
2180 	u32 retval;
2181 	int err, value;
2182 
2183 	value = asus_wmi_get_devstate_simple(asus, devid);
2184 	if (value < 0)
2185 		return value;
2186 
2187 	err = kstrtoint(buf, 0, &value);
2188 	if (err)
2189 		return err;
2190 
2191 	err = asus_wmi_set_devstate(devid, value, &retval);
2192 	if (err < 0)
2193 		return err;
2194 
2195 	return count;
2196 }
2197 
2198 static ssize_t show_sys_wmi(struct asus_wmi *asus, int devid, char *buf)
2199 {
2200 	int value = asus_wmi_get_devstate_simple(asus, devid);
2201 
2202 	if (value < 0)
2203 		return value;
2204 
2205 	return sprintf(buf, "%d\n", value);
2206 }
2207 
2208 #define ASUS_WMI_CREATE_DEVICE_ATTR(_name, _mode, _cm)			\
2209 	static ssize_t show_##_name(struct device *dev,			\
2210 				    struct device_attribute *attr,	\
2211 				    char *buf)				\
2212 	{								\
2213 		struct asus_wmi *asus = dev_get_drvdata(dev);		\
2214 									\
2215 		return show_sys_wmi(asus, _cm, buf);			\
2216 	}								\
2217 	static ssize_t store_##_name(struct device *dev,		\
2218 				     struct device_attribute *attr,	\
2219 				     const char *buf, size_t count)	\
2220 	{								\
2221 		struct asus_wmi *asus = dev_get_drvdata(dev);		\
2222 									\
2223 		return store_sys_wmi(asus, _cm, buf, count);		\
2224 	}								\
2225 	static struct device_attribute dev_attr_##_name = {		\
2226 		.attr = {						\
2227 			.name = __stringify(_name),			\
2228 			.mode = _mode },				\
2229 		.show   = show_##_name,					\
2230 		.store  = store_##_name,				\
2231 	}
2232 
2233 ASUS_WMI_CREATE_DEVICE_ATTR(touchpad, 0644, ASUS_WMI_DEVID_TOUCHPAD);
2234 ASUS_WMI_CREATE_DEVICE_ATTR(camera, 0644, ASUS_WMI_DEVID_CAMERA);
2235 ASUS_WMI_CREATE_DEVICE_ATTR(cardr, 0644, ASUS_WMI_DEVID_CARDREADER);
2236 ASUS_WMI_CREATE_DEVICE_ATTR(lid_resume, 0644, ASUS_WMI_DEVID_LID_RESUME);
2237 ASUS_WMI_CREATE_DEVICE_ATTR(als_enable, 0644, ASUS_WMI_DEVID_ALS_ENABLE);
2238 
2239 static ssize_t cpufv_store(struct device *dev, struct device_attribute *attr,
2240 			   const char *buf, size_t count)
2241 {
2242 	int value, rv;
2243 
2244 	rv = kstrtoint(buf, 0, &value);
2245 	if (rv)
2246 		return rv;
2247 
2248 	if (value < 0 || value > 2)
2249 		return -EINVAL;
2250 
2251 	rv = asus_wmi_evaluate_method(ASUS_WMI_METHODID_CFVS, value, 0, NULL);
2252 	if (rv < 0)
2253 		return rv;
2254 
2255 	return count;
2256 }
2257 
2258 static DEVICE_ATTR_WO(cpufv);
2259 
2260 static struct attribute *platform_attributes[] = {
2261 	&dev_attr_cpufv.attr,
2262 	&dev_attr_camera.attr,
2263 	&dev_attr_cardr.attr,
2264 	&dev_attr_touchpad.attr,
2265 	&dev_attr_lid_resume.attr,
2266 	&dev_attr_als_enable.attr,
2267 	&dev_attr_fan_boost_mode.attr,
2268 	&dev_attr_throttle_thermal_policy.attr,
2269 	NULL
2270 };
2271 
2272 static umode_t asus_sysfs_is_visible(struct kobject *kobj,
2273 				    struct attribute *attr, int idx)
2274 {
2275 	struct device *dev = container_of(kobj, struct device, kobj);
2276 	struct asus_wmi *asus = dev_get_drvdata(dev);
2277 	bool ok = true;
2278 	int devid = -1;
2279 
2280 	if (attr == &dev_attr_camera.attr)
2281 		devid = ASUS_WMI_DEVID_CAMERA;
2282 	else if (attr == &dev_attr_cardr.attr)
2283 		devid = ASUS_WMI_DEVID_CARDREADER;
2284 	else if (attr == &dev_attr_touchpad.attr)
2285 		devid = ASUS_WMI_DEVID_TOUCHPAD;
2286 	else if (attr == &dev_attr_lid_resume.attr)
2287 		devid = ASUS_WMI_DEVID_LID_RESUME;
2288 	else if (attr == &dev_attr_als_enable.attr)
2289 		devid = ASUS_WMI_DEVID_ALS_ENABLE;
2290 	else if (attr == &dev_attr_fan_boost_mode.attr)
2291 		ok = asus->fan_boost_mode_available;
2292 	else if (attr == &dev_attr_throttle_thermal_policy.attr)
2293 		ok = asus->throttle_thermal_policy_available;
2294 
2295 	if (devid != -1)
2296 		ok = !(asus_wmi_get_devstate_simple(asus, devid) < 0);
2297 
2298 	return ok ? attr->mode : 0;
2299 }
2300 
2301 static const struct attribute_group platform_attribute_group = {
2302 	.is_visible = asus_sysfs_is_visible,
2303 	.attrs = platform_attributes
2304 };
2305 
2306 static void asus_wmi_sysfs_exit(struct platform_device *device)
2307 {
2308 	sysfs_remove_group(&device->dev.kobj, &platform_attribute_group);
2309 }
2310 
2311 static int asus_wmi_sysfs_init(struct platform_device *device)
2312 {
2313 	return sysfs_create_group(&device->dev.kobj, &platform_attribute_group);
2314 }
2315 
2316 /* Platform device ************************************************************/
2317 
2318 static int asus_wmi_platform_init(struct asus_wmi *asus)
2319 {
2320 	struct device *dev = &asus->platform_device->dev;
2321 	char *wmi_uid;
2322 	int rv;
2323 
2324 	/* INIT enable hotkeys on some models */
2325 	if (!asus_wmi_evaluate_method(ASUS_WMI_METHODID_INIT, 0, 0, &rv))
2326 		pr_info("Initialization: %#x\n", rv);
2327 
2328 	/* We don't know yet what to do with this version... */
2329 	if (!asus_wmi_evaluate_method(ASUS_WMI_METHODID_SPEC, 0, 0x9, &rv)) {
2330 		pr_info("BIOS WMI version: %d.%d\n", rv >> 16, rv & 0xFF);
2331 		asus->spec = rv;
2332 	}
2333 
2334 	/*
2335 	 * The SFUN method probably allows the original driver to get the list
2336 	 * of features supported by a given model. For now, 0x0100 or 0x0800
2337 	 * bit signifies that the laptop is equipped with a Wi-Fi MiniPCI card.
2338 	 * The significance of others is yet to be found.
2339 	 */
2340 	if (!asus_wmi_evaluate_method(ASUS_WMI_METHODID_SFUN, 0, 0, &rv)) {
2341 		pr_info("SFUN value: %#x\n", rv);
2342 		asus->sfun = rv;
2343 	}
2344 
2345 	/*
2346 	 * Eee PC and Notebooks seems to have different method_id for DSTS,
2347 	 * but it may also be related to the BIOS's SPEC.
2348 	 * Note, on most Eeepc, there is no way to check if a method exist
2349 	 * or note, while on notebooks, they returns 0xFFFFFFFE on failure,
2350 	 * but once again, SPEC may probably be used for that kind of things.
2351 	 *
2352 	 * Additionally at least TUF Gaming series laptops return nothing for
2353 	 * unknown methods, so the detection in this way is not possible.
2354 	 *
2355 	 * There is strong indication that only ACPI WMI devices that have _UID
2356 	 * equal to "ASUSWMI" use DCTS whereas those with "ATK" use DSTS.
2357 	 */
2358 	wmi_uid = wmi_get_acpi_device_uid(ASUS_WMI_MGMT_GUID);
2359 	if (!wmi_uid)
2360 		return -ENODEV;
2361 
2362 	if (!strcmp(wmi_uid, ASUS_ACPI_UID_ASUSWMI)) {
2363 		dev_info(dev, "Detected ASUSWMI, use DCTS\n");
2364 		asus->dsts_id = ASUS_WMI_METHODID_DCTS;
2365 	} else {
2366 		dev_info(dev, "Detected %s, not ASUSWMI, use DSTS\n", wmi_uid);
2367 		asus->dsts_id = ASUS_WMI_METHODID_DSTS;
2368 	}
2369 
2370 	/*
2371 	 * Some devices can have multiple event codes stored in a queue before
2372 	 * the module load if it was unloaded intermittently after calling
2373 	 * the INIT method (enables event handling). The WMI notify handler is
2374 	 * expected to retrieve all event codes until a retrieved code equals
2375 	 * queue end marker (One or Ones). Old codes are flushed from the queue
2376 	 * upon module load. Not enabling this when it should be has minimal
2377 	 * visible impact so fall back if anything goes wrong.
2378 	 */
2379 	wmi_uid = wmi_get_acpi_device_uid(asus->driver->event_guid);
2380 	if (wmi_uid && !strcmp(wmi_uid, ASUS_ACPI_UID_ATK)) {
2381 		dev_info(dev, "Detected ATK, enable event queue\n");
2382 
2383 		if (!asus_wmi_notify_queue_flush(asus))
2384 			asus->wmi_event_queue = true;
2385 	}
2386 
2387 	/* CWAP allow to define the behavior of the Fn+F2 key,
2388 	 * this method doesn't seems to be present on Eee PCs */
2389 	if (asus->driver->quirks->wapf >= 0)
2390 		asus_wmi_set_devstate(ASUS_WMI_DEVID_CWAP,
2391 				      asus->driver->quirks->wapf, NULL);
2392 
2393 	return 0;
2394 }
2395 
2396 /* debugfs ********************************************************************/
2397 
2398 struct asus_wmi_debugfs_node {
2399 	struct asus_wmi *asus;
2400 	char *name;
2401 	int (*show) (struct seq_file *m, void *data);
2402 };
2403 
2404 static int show_dsts(struct seq_file *m, void *data)
2405 {
2406 	struct asus_wmi *asus = m->private;
2407 	int err;
2408 	u32 retval = -1;
2409 
2410 	err = asus_wmi_get_devstate(asus, asus->debug.dev_id, &retval);
2411 	if (err < 0)
2412 		return err;
2413 
2414 	seq_printf(m, "DSTS(%#x) = %#x\n", asus->debug.dev_id, retval);
2415 
2416 	return 0;
2417 }
2418 
2419 static int show_devs(struct seq_file *m, void *data)
2420 {
2421 	struct asus_wmi *asus = m->private;
2422 	int err;
2423 	u32 retval = -1;
2424 
2425 	err = asus_wmi_set_devstate(asus->debug.dev_id, asus->debug.ctrl_param,
2426 				    &retval);
2427 	if (err < 0)
2428 		return err;
2429 
2430 	seq_printf(m, "DEVS(%#x, %#x) = %#x\n", asus->debug.dev_id,
2431 		   asus->debug.ctrl_param, retval);
2432 
2433 	return 0;
2434 }
2435 
2436 static int show_call(struct seq_file *m, void *data)
2437 {
2438 	struct asus_wmi *asus = m->private;
2439 	struct bios_args args = {
2440 		.arg0 = asus->debug.dev_id,
2441 		.arg1 = asus->debug.ctrl_param,
2442 	};
2443 	struct acpi_buffer input = { (acpi_size) sizeof(args), &args };
2444 	struct acpi_buffer output = { ACPI_ALLOCATE_BUFFER, NULL };
2445 	union acpi_object *obj;
2446 	acpi_status status;
2447 
2448 	status = wmi_evaluate_method(ASUS_WMI_MGMT_GUID,
2449 				     0, asus->debug.method_id,
2450 				     &input, &output);
2451 
2452 	if (ACPI_FAILURE(status))
2453 		return -EIO;
2454 
2455 	obj = (union acpi_object *)output.pointer;
2456 	if (obj && obj->type == ACPI_TYPE_INTEGER)
2457 		seq_printf(m, "%#x(%#x, %#x) = %#x\n", asus->debug.method_id,
2458 			   asus->debug.dev_id, asus->debug.ctrl_param,
2459 			   (u32) obj->integer.value);
2460 	else
2461 		seq_printf(m, "%#x(%#x, %#x) = t:%d\n", asus->debug.method_id,
2462 			   asus->debug.dev_id, asus->debug.ctrl_param,
2463 			   obj ? obj->type : -1);
2464 
2465 	kfree(obj);
2466 
2467 	return 0;
2468 }
2469 
2470 static struct asus_wmi_debugfs_node asus_wmi_debug_files[] = {
2471 	{NULL, "devs", show_devs},
2472 	{NULL, "dsts", show_dsts},
2473 	{NULL, "call", show_call},
2474 };
2475 
2476 static int asus_wmi_debugfs_open(struct inode *inode, struct file *file)
2477 {
2478 	struct asus_wmi_debugfs_node *node = inode->i_private;
2479 
2480 	return single_open(file, node->show, node->asus);
2481 }
2482 
2483 static const struct file_operations asus_wmi_debugfs_io_ops = {
2484 	.owner = THIS_MODULE,
2485 	.open = asus_wmi_debugfs_open,
2486 	.read = seq_read,
2487 	.llseek = seq_lseek,
2488 	.release = single_release,
2489 };
2490 
2491 static void asus_wmi_debugfs_exit(struct asus_wmi *asus)
2492 {
2493 	debugfs_remove_recursive(asus->debug.root);
2494 }
2495 
2496 static void asus_wmi_debugfs_init(struct asus_wmi *asus)
2497 {
2498 	int i;
2499 
2500 	asus->debug.root = debugfs_create_dir(asus->driver->name, NULL);
2501 
2502 	debugfs_create_x32("method_id", S_IRUGO | S_IWUSR, asus->debug.root,
2503 			   &asus->debug.method_id);
2504 
2505 	debugfs_create_x32("dev_id", S_IRUGO | S_IWUSR, asus->debug.root,
2506 			   &asus->debug.dev_id);
2507 
2508 	debugfs_create_x32("ctrl_param", S_IRUGO | S_IWUSR, asus->debug.root,
2509 			   &asus->debug.ctrl_param);
2510 
2511 	for (i = 0; i < ARRAY_SIZE(asus_wmi_debug_files); i++) {
2512 		struct asus_wmi_debugfs_node *node = &asus_wmi_debug_files[i];
2513 
2514 		node->asus = asus;
2515 		debugfs_create_file(node->name, S_IFREG | S_IRUGO,
2516 				    asus->debug.root, node,
2517 				    &asus_wmi_debugfs_io_ops);
2518 	}
2519 }
2520 
2521 /* Init / exit ****************************************************************/
2522 
2523 static int asus_wmi_add(struct platform_device *pdev)
2524 {
2525 	struct platform_driver *pdrv = to_platform_driver(pdev->dev.driver);
2526 	struct asus_wmi_driver *wdrv = to_asus_wmi_driver(pdrv);
2527 	struct asus_wmi *asus;
2528 	const char *chassis_type;
2529 	acpi_status status;
2530 	int err;
2531 	u32 result;
2532 
2533 	asus = kzalloc(sizeof(struct asus_wmi), GFP_KERNEL);
2534 	if (!asus)
2535 		return -ENOMEM;
2536 
2537 	asus->driver = wdrv;
2538 	asus->platform_device = pdev;
2539 	wdrv->platform_device = pdev;
2540 	platform_set_drvdata(asus->platform_device, asus);
2541 
2542 	if (wdrv->detect_quirks)
2543 		wdrv->detect_quirks(asus->driver);
2544 
2545 	err = asus_wmi_platform_init(asus);
2546 	if (err)
2547 		goto fail_platform;
2548 
2549 	err = fan_boost_mode_check_present(asus);
2550 	if (err)
2551 		goto fail_fan_boost_mode;
2552 
2553 	err = throttle_thermal_policy_check_present(asus);
2554 	if (err)
2555 		goto fail_throttle_thermal_policy;
2556 	else
2557 		throttle_thermal_policy_set_default(asus);
2558 
2559 	err = asus_wmi_sysfs_init(asus->platform_device);
2560 	if (err)
2561 		goto fail_sysfs;
2562 
2563 	err = asus_wmi_input_init(asus);
2564 	if (err)
2565 		goto fail_input;
2566 
2567 	err = asus_wmi_fan_init(asus); /* probably no problems on error */
2568 
2569 	err = asus_wmi_hwmon_init(asus);
2570 	if (err)
2571 		goto fail_hwmon;
2572 
2573 	err = asus_wmi_led_init(asus);
2574 	if (err)
2575 		goto fail_leds;
2576 
2577 	asus_wmi_get_devstate(asus, ASUS_WMI_DEVID_WLAN, &result);
2578 	if (result & (ASUS_WMI_DSTS_PRESENCE_BIT | ASUS_WMI_DSTS_USER_BIT))
2579 		asus->driver->wlan_ctrl_by_user = 1;
2580 
2581 	if (!(asus->driver->wlan_ctrl_by_user && ashs_present())) {
2582 		err = asus_wmi_rfkill_init(asus);
2583 		if (err)
2584 			goto fail_rfkill;
2585 	}
2586 
2587 	if (asus->driver->quirks->wmi_force_als_set)
2588 		asus_wmi_set_als();
2589 
2590 	/* Some Asus desktop boards export an acpi-video backlight interface,
2591 	   stop this from showing up */
2592 	chassis_type = dmi_get_system_info(DMI_CHASSIS_TYPE);
2593 	if (chassis_type && !strcmp(chassis_type, "3"))
2594 		acpi_video_set_dmi_backlight_type(acpi_backlight_vendor);
2595 
2596 	if (asus->driver->quirks->wmi_backlight_power)
2597 		acpi_video_set_dmi_backlight_type(acpi_backlight_vendor);
2598 
2599 	if (asus->driver->quirks->wmi_backlight_native)
2600 		acpi_video_set_dmi_backlight_type(acpi_backlight_native);
2601 
2602 	if (asus->driver->quirks->xusb2pr)
2603 		asus_wmi_set_xusb2pr(asus);
2604 
2605 	if (acpi_video_get_backlight_type() == acpi_backlight_vendor) {
2606 		err = asus_wmi_backlight_init(asus);
2607 		if (err && err != -ENODEV)
2608 			goto fail_backlight;
2609 	} else if (asus->driver->quirks->wmi_backlight_set_devstate)
2610 		err = asus_wmi_set_devstate(ASUS_WMI_DEVID_BACKLIGHT, 2, NULL);
2611 
2612 	if (asus_wmi_has_fnlock_key(asus)) {
2613 		asus->fnlock_locked = true;
2614 		asus_wmi_fnlock_update(asus);
2615 	}
2616 
2617 	status = wmi_install_notify_handler(asus->driver->event_guid,
2618 					    asus_wmi_notify, asus);
2619 	if (ACPI_FAILURE(status)) {
2620 		pr_err("Unable to register notify handler - %d\n", status);
2621 		err = -ENODEV;
2622 		goto fail_wmi_handler;
2623 	}
2624 
2625 	asus_wmi_battery_init(asus);
2626 
2627 	asus_wmi_debugfs_init(asus);
2628 
2629 	return 0;
2630 
2631 fail_wmi_handler:
2632 	asus_wmi_backlight_exit(asus);
2633 fail_backlight:
2634 	asus_wmi_rfkill_exit(asus);
2635 fail_rfkill:
2636 	asus_wmi_led_exit(asus);
2637 fail_leds:
2638 fail_hwmon:
2639 	asus_wmi_input_exit(asus);
2640 fail_input:
2641 	asus_wmi_sysfs_exit(asus->platform_device);
2642 fail_sysfs:
2643 fail_throttle_thermal_policy:
2644 fail_fan_boost_mode:
2645 fail_platform:
2646 	kfree(asus);
2647 	return err;
2648 }
2649 
2650 static int asus_wmi_remove(struct platform_device *device)
2651 {
2652 	struct asus_wmi *asus;
2653 
2654 	asus = platform_get_drvdata(device);
2655 	wmi_remove_notify_handler(asus->driver->event_guid);
2656 	asus_wmi_backlight_exit(asus);
2657 	asus_wmi_input_exit(asus);
2658 	asus_wmi_led_exit(asus);
2659 	asus_wmi_rfkill_exit(asus);
2660 	asus_wmi_debugfs_exit(asus);
2661 	asus_wmi_sysfs_exit(asus->platform_device);
2662 	asus_fan_set_auto(asus);
2663 	asus_wmi_battery_exit(asus);
2664 
2665 	kfree(asus);
2666 	return 0;
2667 }
2668 
2669 /* Platform driver - hibernate/resume callbacks *******************************/
2670 
2671 static int asus_hotk_thaw(struct device *device)
2672 {
2673 	struct asus_wmi *asus = dev_get_drvdata(device);
2674 
2675 	if (asus->wlan.rfkill) {
2676 		bool wlan;
2677 
2678 		/*
2679 		 * Work around bios bug - acpi _PTS turns off the wireless led
2680 		 * during suspend.  Normally it restores it on resume, but
2681 		 * we should kick it ourselves in case hibernation is aborted.
2682 		 */
2683 		wlan = asus_wmi_get_devstate_simple(asus, ASUS_WMI_DEVID_WLAN);
2684 		asus_wmi_set_devstate(ASUS_WMI_DEVID_WLAN, wlan, NULL);
2685 	}
2686 
2687 	return 0;
2688 }
2689 
2690 static int asus_hotk_resume(struct device *device)
2691 {
2692 	struct asus_wmi *asus = dev_get_drvdata(device);
2693 
2694 	if (!IS_ERR_OR_NULL(asus->kbd_led.dev))
2695 		kbd_led_update(asus);
2696 
2697 	if (asus_wmi_has_fnlock_key(asus))
2698 		asus_wmi_fnlock_update(asus);
2699 	return 0;
2700 }
2701 
2702 static int asus_hotk_restore(struct device *device)
2703 {
2704 	struct asus_wmi *asus = dev_get_drvdata(device);
2705 	int bl;
2706 
2707 	/* Refresh both wlan rfkill state and pci hotplug */
2708 	if (asus->wlan.rfkill)
2709 		asus_rfkill_hotplug(asus);
2710 
2711 	if (asus->bluetooth.rfkill) {
2712 		bl = !asus_wmi_get_devstate_simple(asus,
2713 						   ASUS_WMI_DEVID_BLUETOOTH);
2714 		rfkill_set_sw_state(asus->bluetooth.rfkill, bl);
2715 	}
2716 	if (asus->wimax.rfkill) {
2717 		bl = !asus_wmi_get_devstate_simple(asus, ASUS_WMI_DEVID_WIMAX);
2718 		rfkill_set_sw_state(asus->wimax.rfkill, bl);
2719 	}
2720 	if (asus->wwan3g.rfkill) {
2721 		bl = !asus_wmi_get_devstate_simple(asus, ASUS_WMI_DEVID_WWAN3G);
2722 		rfkill_set_sw_state(asus->wwan3g.rfkill, bl);
2723 	}
2724 	if (asus->gps.rfkill) {
2725 		bl = !asus_wmi_get_devstate_simple(asus, ASUS_WMI_DEVID_GPS);
2726 		rfkill_set_sw_state(asus->gps.rfkill, bl);
2727 	}
2728 	if (asus->uwb.rfkill) {
2729 		bl = !asus_wmi_get_devstate_simple(asus, ASUS_WMI_DEVID_UWB);
2730 		rfkill_set_sw_state(asus->uwb.rfkill, bl);
2731 	}
2732 	if (!IS_ERR_OR_NULL(asus->kbd_led.dev))
2733 		kbd_led_update(asus);
2734 
2735 	if (asus_wmi_has_fnlock_key(asus))
2736 		asus_wmi_fnlock_update(asus);
2737 	return 0;
2738 }
2739 
2740 static const struct dev_pm_ops asus_pm_ops = {
2741 	.thaw = asus_hotk_thaw,
2742 	.restore = asus_hotk_restore,
2743 	.resume = asus_hotk_resume,
2744 };
2745 
2746 /* Registration ***************************************************************/
2747 
2748 static int asus_wmi_probe(struct platform_device *pdev)
2749 {
2750 	struct platform_driver *pdrv = to_platform_driver(pdev->dev.driver);
2751 	struct asus_wmi_driver *wdrv = to_asus_wmi_driver(pdrv);
2752 	int ret;
2753 
2754 	if (!wmi_has_guid(ASUS_WMI_MGMT_GUID)) {
2755 		pr_warn("ASUS Management GUID not found\n");
2756 		return -ENODEV;
2757 	}
2758 
2759 	if (wdrv->event_guid && !wmi_has_guid(wdrv->event_guid)) {
2760 		pr_warn("ASUS Event GUID not found\n");
2761 		return -ENODEV;
2762 	}
2763 
2764 	if (wdrv->probe) {
2765 		ret = wdrv->probe(pdev);
2766 		if (ret)
2767 			return ret;
2768 	}
2769 
2770 	return asus_wmi_add(pdev);
2771 }
2772 
2773 static bool used;
2774 
2775 int __init_or_module asus_wmi_register_driver(struct asus_wmi_driver *driver)
2776 {
2777 	struct platform_driver *platform_driver;
2778 	struct platform_device *platform_device;
2779 
2780 	if (used)
2781 		return -EBUSY;
2782 
2783 	platform_driver = &driver->platform_driver;
2784 	platform_driver->remove = asus_wmi_remove;
2785 	platform_driver->driver.owner = driver->owner;
2786 	platform_driver->driver.name = driver->name;
2787 	platform_driver->driver.pm = &asus_pm_ops;
2788 
2789 	platform_device = platform_create_bundle(platform_driver,
2790 						 asus_wmi_probe,
2791 						 NULL, 0, NULL, 0);
2792 	if (IS_ERR(platform_device))
2793 		return PTR_ERR(platform_device);
2794 
2795 	used = true;
2796 	return 0;
2797 }
2798 EXPORT_SYMBOL_GPL(asus_wmi_register_driver);
2799 
2800 void asus_wmi_unregister_driver(struct asus_wmi_driver *driver)
2801 {
2802 	platform_device_unregister(driver->platform_device);
2803 	platform_driver_unregister(&driver->platform_driver);
2804 	used = false;
2805 }
2806 EXPORT_SYMBOL_GPL(asus_wmi_unregister_driver);
2807 
2808 static int __init asus_wmi_init(void)
2809 {
2810 	pr_info("ASUS WMI generic driver loaded\n");
2811 	return 0;
2812 }
2813 
2814 static void __exit asus_wmi_exit(void)
2815 {
2816 	pr_info("ASUS WMI generic driver unloaded\n");
2817 }
2818 
2819 module_init(asus_wmi_init);
2820 module_exit(asus_wmi_exit);
2821