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1/*
2 * asus-laptop.c - Asus Laptop Support
3 *
4 *
5 * Copyright (C) 2002-2005 Julien Lerouge, 2003-2006 Karol Kozimor
8ec555c2 6 * Copyright (C) 2006-2007 Corentin Chary
8819de7f 7 * Copyright (C) 2011 Wind River Systems
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8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation; either version 2 of the License, or
12 * (at your option) any later version.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
22 *
23 *
24 * The development page for this driver is located at
25 * http://sourceforge.net/projects/acpi4asus/
26 *
27 * Credits:
28 * Pontus Fuchs - Helper functions, cleanup
29 * Johann Wiesner - Small compile fixes
30 * John Belmonte - ACPI code for Toshiba laptop was a good starting point.
31 * Eric Burghard - LED display support for W1N
32 * Josh Green - Light Sens support
c8440336 33 * Thomas Tuttle - His first patch for led support was very helpful
e539c2f6 34 * Sam Lin - GPS support
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35 */
36
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37#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
38
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39#include <linux/kernel.h>
40#include <linux/module.h>
41#include <linux/init.h>
42#include <linux/types.h>
43#include <linux/err.h>
44#include <linux/proc_fs.h>
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45#include <linux/backlight.h>
46#include <linux/fb.h>
be18cdab 47#include <linux/leds.h>
85091b71 48#include <linux/platform_device.h>
060cbce6 49#include <linux/uaccess.h>
034ce90a 50#include <linux/input.h>
66a71dd1 51#include <linux/input/sparse-keymap.h>
8819de7f 52#include <linux/input-polldev.h>
18e1311e 53#include <linux/rfkill.h>
5a0e3ad6 54#include <linux/slab.h>
af96f877 55#include <linux/dmi.h>
8b48463f 56#include <linux/acpi.h>
8b9e6b70 57#include <acpi/video.h>
85091b71 58
91687cc8 59#define ASUS_LAPTOP_VERSION "0.42"
85091b71 60
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61#define ASUS_LAPTOP_NAME "Asus Laptop Support"
62#define ASUS_LAPTOP_CLASS "hotkey"
63#define ASUS_LAPTOP_DEVICE_NAME "Hotkey"
64#define ASUS_LAPTOP_FILE KBUILD_MODNAME
65#define ASUS_LAPTOP_PREFIX "\\_SB.ATKD."
85091b71 66
85091b71 67MODULE_AUTHOR("Julien Lerouge, Karol Kozimor, Corentin Chary");
50a90c4d 68MODULE_DESCRIPTION(ASUS_LAPTOP_NAME);
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69MODULE_LICENSE("GPL");
70
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71/*
72 * WAPF defines the behavior of the Fn+Fx wlan key
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73 * The significance of values is yet to be found, but
74 * most of the time:
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75 * Bit | Bluetooth | WLAN
76 * 0 | Hardware | Hardware
77 * 1 | Hardware | Software
78 * 4 | Software | Software
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79 */
80static uint wapf = 1;
c26d85cb 81module_param(wapf, uint, 0444);
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82MODULE_PARM_DESC(wapf, "WAPF value");
83
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84static char *wled_type = "unknown";
85static char *bled_type = "unknown";
86
87module_param(wled_type, charp, 0444);
3f5449bf 88MODULE_PARM_DESC(wled_type, "Set the wled type on boot "
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89 "(unknown, led or rfkill). "
90 "default is unknown");
91
92module_param(bled_type, charp, 0444);
93MODULE_PARM_DESC(bled_type, "Set the bled type on boot "
94 "(unknown, led or rfkill). "
95 "default is unknown");
96
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97static int wlan_status = 1;
98static int bluetooth_status = 1;
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99static int wimax_status = -1;
100static int wwan_status = -1;
abec04db 101static int als_status;
0e875f49 102
c26d85cb 103module_param(wlan_status, int, 0444);
d0930a2d 104MODULE_PARM_DESC(wlan_status, "Set the wireless status on boot "
0e875f49 105 "(0 = disabled, 1 = enabled, -1 = don't do anything). "
16cbf933 106 "default is -1");
0e875f49 107
c26d85cb 108module_param(bluetooth_status, int, 0444);
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109MODULE_PARM_DESC(bluetooth_status, "Set the wireless status on boot "
110 "(0 = disabled, 1 = enabled, -1 = don't do anything). "
16cbf933 111 "default is -1");
0e875f49 112
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113module_param(wimax_status, int, 0444);
114MODULE_PARM_DESC(wimax_status, "Set the wireless status on boot "
115 "(0 = disabled, 1 = enabled, -1 = don't do anything). "
16cbf933 116 "default is -1");
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117
118module_param(wwan_status, int, 0444);
119MODULE_PARM_DESC(wwan_status, "Set the wireless status on boot "
120 "(0 = disabled, 1 = enabled, -1 = don't do anything). "
16cbf933 121 "default is -1");
ba1ff5be 122
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123module_param(als_status, int, 0444);
124MODULE_PARM_DESC(als_status, "Set the ALS status on boot "
125 "(0 = disabled, 1 = enabled). "
126 "default is 0");
127
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128/*
129 * Some events we use, same for all Asus
130 */
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131#define ATKD_BRNUP_MIN 0x10
132#define ATKD_BRNUP_MAX 0x1f
133#define ATKD_BRNDOWN_MIN 0x20
134#define ATKD_BRNDOWN_MAX 0x2f
135#define ATKD_BRNDOWN 0x20
136#define ATKD_BRNUP 0x2f
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137#define ATKD_LCD_ON 0x33
138#define ATKD_LCD_OFF 0x34
139
140/*
141 * Known bits returned by \_SB.ATKD.HWRS
142 */
143#define WL_HWRS 0x80
144#define BT_HWRS 0x100
145
146/*
147 * Flags for hotk status
148 * WL_ON and BT_ON are also used for wireless_status()
149 */
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150#define WL_RSTS 0x01 /* internal Wifi */
151#define BT_RSTS 0x02 /* internal Bluetooth */
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152#define WM_RSTS 0x08 /* internal wimax */
153#define WW_RSTS 0x20 /* internal wwan */
be4ee82d 154
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155/* WLED and BLED type */
156#define TYPE_UNKNOWN 0
157#define TYPE_LED 1
158#define TYPE_RFKILL 2
159
be18cdab 160/* LED */
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161#define METHOD_MLED "MLED"
162#define METHOD_TLED "TLED"
163#define METHOD_RLED "RLED" /* W1JC */
164#define METHOD_PLED "PLED" /* A7J */
165#define METHOD_GLED "GLED" /* G1, G2 (probably) */
be18cdab 166
722ad971 167/* LEDD */
d99b577c 168#define METHOD_LEDD "SLCM"
722ad971 169
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170/*
171 * Bluetooth and WLAN
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172 * WLED and BLED are not handled like other XLED, because in some dsdt
173 * they also control the WLAN/Bluetooth device.
174 */
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175#define METHOD_WLAN "WLED"
176#define METHOD_BLUETOOTH "BLED"
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177
178/* WWAN and WIMAX */
179#define METHOD_WWAN "GSMC"
180#define METHOD_WIMAX "WMXC"
181
d99b577c 182#define METHOD_WL_STATUS "RSTS"
4564de17 183
6b7091e7 184/* Brightness */
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185#define METHOD_BRIGHTNESS_SET "SPLV"
186#define METHOD_BRIGHTNESS_GET "GPLV"
6b7091e7 187
78127b4a 188/* Display */
d99b577c 189#define METHOD_SWITCH_DISPLAY "SDSP"
060cbce6 190
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191#define METHOD_ALS_CONTROL "ALSC" /* Z71A Z71V */
192#define METHOD_ALS_LEVEL "ALSL" /* Z71A Z71V */
8b857353 193
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194/* GPS */
195/* R2H use different handle for GPS on/off */
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196#define METHOD_GPS_ON "SDON"
197#define METHOD_GPS_OFF "SDOF"
198#define METHOD_GPS_STATUS "GPST"
e539c2f6 199
b7d3fbc2 200/* Keyboard light */
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201#define METHOD_KBD_LIGHT_SET "SLKB"
202#define METHOD_KBD_LIGHT_GET "GLKB"
b7d3fbc2 203
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204/* For Pegatron Lucid tablet */
205#define DEVICE_NAME_PEGA "Lucid"
33989ba6 206
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207#define METHOD_PEGA_ENABLE "ENPR"
208#define METHOD_PEGA_DISABLE "DAPR"
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209#define PEGA_WLAN 0x00
210#define PEGA_BLUETOOTH 0x01
211#define PEGA_WWAN 0x02
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212#define PEGA_ALS 0x04
213#define PEGA_ALS_POWER 0x05
214
8819de7f 215#define METHOD_PEGA_READ "RDLN"
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216#define PEGA_READ_ALS_H 0x02
217#define PEGA_READ_ALS_L 0x03
8819de7f 218
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219#define PEGA_ACCEL_NAME "pega_accel"
220#define PEGA_ACCEL_DESC "Pegatron Lucid Tablet Accelerometer"
221#define METHOD_XLRX "XLRX"
222#define METHOD_XLRY "XLRY"
223#define METHOD_XLRZ "XLRZ"
224#define PEGA_ACC_CLAMP 512 /* 1G accel is reported as ~256, so clamp to 2G */
225#define PEGA_ACC_RETRIES 3
226
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227/*
228 * Define a specific led structure to keep the main structure clean
229 */
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230struct asus_led {
231 int wk;
232 struct work_struct work;
233 struct led_classdev led;
234 struct asus_laptop *asus;
235 const char *method;
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236};
237
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238/*
239 * Same thing for rfkill
240 */
40969c7d 241struct asus_rfkill {
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242 /* type of control. Maps to PEGA_* values or *_RSTS */
243 int control_id;
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244 struct rfkill *rfkill;
245 struct asus_laptop *asus;
246};
247
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248/*
249 * This is the main structure, we can use it to store anything interesting
250 * about the hotk device
251 */
50a90c4d 252struct asus_laptop {
be966660 253 char *name; /* laptop name */
600ad520 254
7c247645 255 struct acpi_table_header *dsdt_info;
600ad520 256 struct platform_device *platform_device;
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257 struct acpi_device *device; /* the device we are in */
258 struct backlight_device *backlight_device;
9129d14d 259
7c247645 260 struct input_dev *inputdev;
9129d14d 261 struct key_entry *keymap;
b23910c2 262 struct input_polled_dev *pega_accel_poll;
9129d14d 263
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264 struct asus_led wled;
265 struct asus_led bled;
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266 struct asus_led mled;
267 struct asus_led tled;
268 struct asus_led rled;
269 struct asus_led pled;
270 struct asus_led gled;
271 struct asus_led kled;
272 struct workqueue_struct *led_workqueue;
7c247645 273
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274 int wled_type;
275 int bled_type;
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276 int wireless_status;
277 bool have_rsts;
8819de7f 278 bool is_pega_lucid;
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279 bool pega_acc_live;
280 int pega_acc_x;
281 int pega_acc_y;
282 int pega_acc_z;
aa9df930 283
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284 struct asus_rfkill wlan;
285 struct asus_rfkill bluetooth;
286 struct asus_rfkill wwan;
3c8671ff 287 struct asus_rfkill wimax;
40969c7d 288 struct asus_rfkill gps;
14908399 289
be966660 290 acpi_handle handle; /* the handle of the hotk device */
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291 u32 ledd_status; /* status of the LED display */
292 u8 light_level; /* light sensor level */
293 u8 light_switch; /* light sensor switch value */
294 u16 event_count[128]; /* count for each event TODO make this better */
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295};
296
9129d14d 297static const struct key_entry asus_keymap[] = {
a539df5e 298 /* Lenovo SL Specific keycodes */
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299 {KE_KEY, 0x02, { KEY_SCREENLOCK } },
300 {KE_KEY, 0x05, { KEY_WLAN } },
301 {KE_KEY, 0x08, { KEY_F13 } },
a2d5dd24 302 {KE_KEY, 0x09, { KEY_PROG2 } }, /* Dock */
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303 {KE_KEY, 0x17, { KEY_ZOOM } },
304 {KE_KEY, 0x1f, { KEY_BATTERY } },
a539df5e 305 /* End of Lenovo SL Specific keycodes */
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306 {KE_KEY, ATKD_BRNDOWN, { KEY_BRIGHTNESSDOWN } },
307 {KE_KEY, ATKD_BRNUP, { KEY_BRIGHTNESSUP } },
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308 {KE_KEY, 0x30, { KEY_VOLUMEUP } },
309 {KE_KEY, 0x31, { KEY_VOLUMEDOWN } },
310 {KE_KEY, 0x32, { KEY_MUTE } },
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311 {KE_KEY, 0x33, { KEY_DISPLAYTOGGLE } }, /* LCD on */
312 {KE_KEY, 0x34, { KEY_DISPLAY_OFF } }, /* LCD off */
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313 {KE_KEY, 0x40, { KEY_PREVIOUSSONG } },
314 {KE_KEY, 0x41, { KEY_NEXTSONG } },
a935eaec 315 {KE_KEY, 0x43, { KEY_STOPCD } }, /* Stop/Eject */
66a71dd1 316 {KE_KEY, 0x45, { KEY_PLAYPAUSE } },
a935eaec 317 {KE_KEY, 0x4c, { KEY_MEDIA } }, /* WMP Key */
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318 {KE_KEY, 0x50, { KEY_EMAIL } },
319 {KE_KEY, 0x51, { KEY_WWW } },
320 {KE_KEY, 0x55, { KEY_CALC } },
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321 {KE_IGNORE, 0x57, }, /* Battery mode */
322 {KE_IGNORE, 0x58, }, /* AC mode */
66a71dd1 323 {KE_KEY, 0x5C, { KEY_SCREENLOCK } }, /* Screenlock */
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324 {KE_KEY, 0x5D, { KEY_WLAN } }, /* WLAN Toggle */
325 {KE_KEY, 0x5E, { KEY_WLAN } }, /* WLAN Enable */
326 {KE_KEY, 0x5F, { KEY_WLAN } }, /* WLAN Disable */
19d3ab12 327 {KE_KEY, 0x60, { KEY_TOUCHPAD_ON } },
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328 {KE_KEY, 0x61, { KEY_SWITCHVIDEOMODE } }, /* SDSP LCD only */
329 {KE_KEY, 0x62, { KEY_SWITCHVIDEOMODE } }, /* SDSP CRT only */
330 {KE_KEY, 0x63, { KEY_SWITCHVIDEOMODE } }, /* SDSP LCD + CRT */
331 {KE_KEY, 0x64, { KEY_SWITCHVIDEOMODE } }, /* SDSP TV */
332 {KE_KEY, 0x65, { KEY_SWITCHVIDEOMODE } }, /* SDSP LCD + TV */
333 {KE_KEY, 0x66, { KEY_SWITCHVIDEOMODE } }, /* SDSP CRT + TV */
334 {KE_KEY, 0x67, { KEY_SWITCHVIDEOMODE } }, /* SDSP LCD + CRT + TV */
97ade769 335 {KE_KEY, 0x6A, { KEY_TOUCHPAD_TOGGLE } }, /* Lock Touchpad Fn + F9 */
a935eaec 336 {KE_KEY, 0x6B, { KEY_TOUCHPAD_TOGGLE } }, /* Lock Touchpad */
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337 {KE_KEY, 0x6C, { KEY_SLEEP } }, /* Suspend */
338 {KE_KEY, 0x6D, { KEY_SLEEP } }, /* Hibernate */
982d385a 339 {KE_IGNORE, 0x6E, }, /* Low Battery notification */
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340 {KE_KEY, 0x7D, { KEY_BLUETOOTH } }, /* Bluetooth Enable */
341 {KE_KEY, 0x7E, { KEY_BLUETOOTH } }, /* Bluetooth Disable */
66a71dd1 342 {KE_KEY, 0x82, { KEY_CAMERA } },
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343 {KE_KEY, 0x88, { KEY_RFKILL } }, /* Radio Toggle Key */
344 {KE_KEY, 0x8A, { KEY_PROG1 } }, /* Color enhancement mode */
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345 {KE_KEY, 0x8C, { KEY_SWITCHVIDEOMODE } }, /* SDSP DVI only */
346 {KE_KEY, 0x8D, { KEY_SWITCHVIDEOMODE } }, /* SDSP LCD + DVI */
347 {KE_KEY, 0x8E, { KEY_SWITCHVIDEOMODE } }, /* SDSP CRT + DVI */
348 {KE_KEY, 0x8F, { KEY_SWITCHVIDEOMODE } }, /* SDSP TV + DVI */
349 {KE_KEY, 0x90, { KEY_SWITCHVIDEOMODE } }, /* SDSP LCD + CRT + DVI */
350 {KE_KEY, 0x91, { KEY_SWITCHVIDEOMODE } }, /* SDSP LCD + TV + DVI */
351 {KE_KEY, 0x92, { KEY_SWITCHVIDEOMODE } }, /* SDSP CRT + TV + DVI */
352 {KE_KEY, 0x93, { KEY_SWITCHVIDEOMODE } }, /* SDSP LCD + CRT + TV + DVI */
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353 {KE_KEY, 0x95, { KEY_MEDIA } },
354 {KE_KEY, 0x99, { KEY_PHONE } },
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355 {KE_KEY, 0xA0, { KEY_SWITCHVIDEOMODE } }, /* SDSP HDMI only */
356 {KE_KEY, 0xA1, { KEY_SWITCHVIDEOMODE } }, /* SDSP LCD + HDMI */
357 {KE_KEY, 0xA2, { KEY_SWITCHVIDEOMODE } }, /* SDSP CRT + HDMI */
358 {KE_KEY, 0xA3, { KEY_SWITCHVIDEOMODE } }, /* SDSP TV + HDMI */
359 {KE_KEY, 0xA4, { KEY_SWITCHVIDEOMODE } }, /* SDSP LCD + CRT + HDMI */
360 {KE_KEY, 0xA5, { KEY_SWITCHVIDEOMODE } }, /* SDSP LCD + TV + HDMI */
361 {KE_KEY, 0xA6, { KEY_SWITCHVIDEOMODE } }, /* SDSP CRT + TV + HDMI */
362 {KE_KEY, 0xA7, { KEY_SWITCHVIDEOMODE } }, /* SDSP LCD + CRT + TV + HDMI */
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363 {KE_KEY, 0xB5, { KEY_CALC } },
364 {KE_KEY, 0xC4, { KEY_KBDILLUMUP } },
365 {KE_KEY, 0xC5, { KEY_KBDILLUMDOWN } },
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366 {KE_END, 0},
367};
368
66a71dd1 369
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370/*
371 * This function evaluates an ACPI method, given an int as parameter, the
372 * method is searched within the scope of the handle, can be NULL. The output
373 * of the method is written is output, which can also be NULL
374 *
f8d1c94b 375 * returns 0 if write is successful, -1 else.
85091b71 376 */
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377static int write_acpi_int_ret(acpi_handle handle, const char *method, int val,
378 struct acpi_buffer *output)
85091b71 379{
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380 struct acpi_object_list params; /* list of input parameters (an int) */
381 union acpi_object in_obj; /* the only param we use */
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382 acpi_status status;
383
f8d1c94b 384 if (!handle)
9fb866f3 385 return -1;
f8d1c94b 386
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387 params.count = 1;
388 params.pointer = &in_obj;
389 in_obj.type = ACPI_TYPE_INTEGER;
390 in_obj.integer.value = val;
391
392 status = acpi_evaluate_object(handle, (char *)method, &params, output);
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393 if (status == AE_OK)
394 return 0;
395 else
396 return -1;
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397}
398
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399static int write_acpi_int(acpi_handle handle, const char *method, int val)
400{
401 return write_acpi_int_ret(handle, method, val, NULL);
402}
403
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404static int acpi_check_handle(acpi_handle handle, const char *method,
405 acpi_handle *ret)
406{
407 acpi_status status;
408
409 if (method == NULL)
410 return -ENODEV;
411
412 if (ret)
413 status = acpi_get_handle(handle, (char *)method,
414 ret);
415 else {
416 acpi_handle dummy;
417
418 status = acpi_get_handle(handle, (char *)method,
419 &dummy);
420 }
421
422 if (status != AE_OK) {
423 if (ret)
5ad77dcf 424 pr_warn("Error finding %s\n", method);
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425 return -ENODEV;
426 }
427 return 0;
428}
429
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430static bool asus_check_pega_lucid(struct asus_laptop *asus)
431{
432 return !strcmp(asus->name, DEVICE_NAME_PEGA) &&
433 !acpi_check_handle(asus->handle, METHOD_PEGA_ENABLE, NULL) &&
434 !acpi_check_handle(asus->handle, METHOD_PEGA_DISABLE, NULL) &&
435 !acpi_check_handle(asus->handle, METHOD_PEGA_READ, NULL);
436}
437
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438static int asus_pega_lucid_set(struct asus_laptop *asus, int unit, bool enable)
439{
440 char *method = enable ? METHOD_PEGA_ENABLE : METHOD_PEGA_DISABLE;
441 return write_acpi_int(asus->handle, method, unit);
442}
443
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444static int pega_acc_axis(struct asus_laptop *asus, int curr, char *method)
445{
446 int i, delta;
447 unsigned long long val;
448 for (i = 0; i < PEGA_ACC_RETRIES; i++) {
449 acpi_evaluate_integer(asus->handle, method, NULL, &val);
450
451 /* The output is noisy. From reading the ASL
452 * dissassembly, timeout errors are returned with 1's
453 * in the high word, and the lack of locking around
454 * thei hi/lo byte reads means that a transition
455 * between (for example) -1 and 0 could be read as
456 * 0xff00 or 0x00ff. */
457 delta = abs(curr - (short)val);
458 if (delta < 128 && !(val & ~0xffff))
459 break;
460 }
461 return clamp_val((short)val, -PEGA_ACC_CLAMP, PEGA_ACC_CLAMP);
462}
463
464static void pega_accel_poll(struct input_polled_dev *ipd)
465{
466 struct device *parent = ipd->input->dev.parent;
467 struct asus_laptop *asus = dev_get_drvdata(parent);
468
469 /* In some cases, the very first call to poll causes a
470 * recursive fault under the polldev worker. This is
471 * apparently related to very early userspace access to the
472 * device, and perhaps a firmware bug. Fake the first report. */
473 if (!asus->pega_acc_live) {
474 asus->pega_acc_live = true;
475 input_report_abs(ipd->input, ABS_X, 0);
476 input_report_abs(ipd->input, ABS_Y, 0);
477 input_report_abs(ipd->input, ABS_Z, 0);
478 input_sync(ipd->input);
479 return;
480 }
481
482 asus->pega_acc_x = pega_acc_axis(asus, asus->pega_acc_x, METHOD_XLRX);
483 asus->pega_acc_y = pega_acc_axis(asus, asus->pega_acc_y, METHOD_XLRY);
484 asus->pega_acc_z = pega_acc_axis(asus, asus->pega_acc_z, METHOD_XLRZ);
485
486 /* Note transform, convert to "right/up/out" in the native
487 * landscape orientation (i.e. the vector is the direction of
488 * "real up" in the device's cartiesian coordinates). */
489 input_report_abs(ipd->input, ABS_X, -asus->pega_acc_x);
490 input_report_abs(ipd->input, ABS_Y, -asus->pega_acc_y);
491 input_report_abs(ipd->input, ABS_Z, asus->pega_acc_z);
492 input_sync(ipd->input);
493}
494
495static void pega_accel_exit(struct asus_laptop *asus)
496{
497 if (asus->pega_accel_poll) {
498 input_unregister_polled_device(asus->pega_accel_poll);
499 input_free_polled_device(asus->pega_accel_poll);
500 }
501 asus->pega_accel_poll = NULL;
502}
503
504static int pega_accel_init(struct asus_laptop *asus)
505{
506 int err;
507 struct input_polled_dev *ipd;
508
509 if (!asus->is_pega_lucid)
510 return -ENODEV;
511
512 if (acpi_check_handle(asus->handle, METHOD_XLRX, NULL) ||
513 acpi_check_handle(asus->handle, METHOD_XLRY, NULL) ||
514 acpi_check_handle(asus->handle, METHOD_XLRZ, NULL))
515 return -ENODEV;
516
517 ipd = input_allocate_polled_device();
518 if (!ipd)
519 return -ENOMEM;
520
521 ipd->poll = pega_accel_poll;
522 ipd->poll_interval = 125;
523 ipd->poll_interval_min = 50;
524 ipd->poll_interval_max = 2000;
525
526 ipd->input->name = PEGA_ACCEL_DESC;
527 ipd->input->phys = PEGA_ACCEL_NAME "/input0";
528 ipd->input->dev.parent = &asus->platform_device->dev;
529 ipd->input->id.bustype = BUS_HOST;
530
531 set_bit(EV_ABS, ipd->input->evbit);
532 input_set_abs_params(ipd->input, ABS_X,
533 -PEGA_ACC_CLAMP, PEGA_ACC_CLAMP, 0, 0);
534 input_set_abs_params(ipd->input, ABS_Y,
535 -PEGA_ACC_CLAMP, PEGA_ACC_CLAMP, 0, 0);
536 input_set_abs_params(ipd->input, ABS_Z,
537 -PEGA_ACC_CLAMP, PEGA_ACC_CLAMP, 0, 0);
538
539 err = input_register_polled_device(ipd);
540 if (err)
541 goto exit;
542
543 asus->pega_accel_poll = ipd;
544 return 0;
545
546exit:
547 input_free_polled_device(ipd);
548 return err;
549}
550
17e78f62 551/* Generic LED function */
aee0afb8 552static int asus_led_set(struct asus_laptop *asus, const char *method,
17e78f62 553 int value)
be18cdab 554{
d99b577c 555 if (!strcmp(method, METHOD_MLED))
17e78f62 556 value = !value;
d99b577c 557 else if (!strcmp(method, METHOD_GLED))
17e78f62
CC
558 value = !value + 1;
559 else
560 value = !!value;
be18cdab 561
e5593bf1 562 return write_acpi_int(asus->handle, method, value);
be18cdab
CC
563}
564
be4ee82d
CC
565/*
566 * LEDs
567 */
be18cdab 568/* /sys/class/led handlers */
aee0afb8
CC
569static void asus_led_cdev_set(struct led_classdev *led_cdev,
570 enum led_brightness value)
571{
572 struct asus_led *led = container_of(led_cdev, struct asus_led, led);
573 struct asus_laptop *asus = led->asus;
574
575 led->wk = !!value;
576 queue_work(asus->led_workqueue, &led->work);
577}
be18cdab 578
aee0afb8
CC
579static void asus_led_cdev_update(struct work_struct *work)
580{
581 struct asus_led *led = container_of(work, struct asus_led, work);
582 struct asus_laptop *asus = led->asus;
583
584 asus_led_set(asus, led->method, led->wk);
585}
586
587static enum led_brightness asus_led_cdev_get(struct led_classdev *led_cdev)
588{
589 return led_cdev->brightness;
590}
be18cdab 591
b7d3fbc2 592/*
be4ee82d 593 * Keyboard backlight (also a LED)
b7d3fbc2 594 */
d99b577c 595static int asus_kled_lvl(struct asus_laptop *asus)
b7d3fbc2
CC
596{
597 unsigned long long kblv;
598 struct acpi_object_list params;
599 union acpi_object in_obj;
600 acpi_status rv;
601
602 params.count = 1;
603 params.pointer = &in_obj;
604 in_obj.type = ACPI_TYPE_INTEGER;
605 in_obj.integer.value = 2;
606
d99b577c
CC
607 rv = acpi_evaluate_integer(asus->handle, METHOD_KBD_LIGHT_GET,
608 &params, &kblv);
b7d3fbc2 609 if (ACPI_FAILURE(rv)) {
5ad77dcf 610 pr_warn("Error reading kled level\n");
4d441513 611 return -ENODEV;
b7d3fbc2
CC
612 }
613 return kblv;
614}
615
4d441513 616static int asus_kled_set(struct asus_laptop *asus, int kblv)
b7d3fbc2
CC
617{
618 if (kblv > 0)
619 kblv = (1 << 7) | (kblv & 0x7F);
620 else
621 kblv = 0;
622
d99b577c 623 if (write_acpi_int(asus->handle, METHOD_KBD_LIGHT_SET, kblv)) {
5ad77dcf 624 pr_warn("Keyboard LED display write failed\n");
b7d3fbc2
CC
625 return -EINVAL;
626 }
627 return 0;
628}
629
aee0afb8
CC
630static void asus_kled_cdev_set(struct led_classdev *led_cdev,
631 enum led_brightness value)
b7d3fbc2 632{
aee0afb8
CC
633 struct asus_led *led = container_of(led_cdev, struct asus_led, led);
634 struct asus_laptop *asus = led->asus;
9129d14d 635
060cbce6 636 led->wk = value;
aee0afb8 637 queue_work(asus->led_workqueue, &led->work);
b7d3fbc2
CC
638}
639
aee0afb8 640static void asus_kled_cdev_update(struct work_struct *work)
b7d3fbc2 641{
aee0afb8
CC
642 struct asus_led *led = container_of(work, struct asus_led, work);
643 struct asus_laptop *asus = led->asus;
9129d14d 644
aee0afb8 645 asus_kled_set(asus, led->wk);
b7d3fbc2
CC
646}
647
aee0afb8 648static enum led_brightness asus_kled_cdev_get(struct led_classdev *led_cdev)
b7d3fbc2 649{
aee0afb8
CC
650 struct asus_led *led = container_of(led_cdev, struct asus_led, led);
651 struct asus_laptop *asus = led->asus;
d99b577c
CC
652
653 return asus_kled_lvl(asus);
b7d3fbc2
CC
654}
655
be4ee82d
CC
656static void asus_led_exit(struct asus_laptop *asus)
657{
774b0678
CC
658 if (!IS_ERR_OR_NULL(asus->wled.led.dev))
659 led_classdev_unregister(&asus->wled.led);
660 if (!IS_ERR_OR_NULL(asus->bled.led.dev))
661 led_classdev_unregister(&asus->bled.led);
8fcf71aa 662 if (!IS_ERR_OR_NULL(asus->mled.led.dev))
aee0afb8 663 led_classdev_unregister(&asus->mled.led);
8fcf71aa 664 if (!IS_ERR_OR_NULL(asus->tled.led.dev))
aee0afb8 665 led_classdev_unregister(&asus->tled.led);
8fcf71aa 666 if (!IS_ERR_OR_NULL(asus->pled.led.dev))
aee0afb8 667 led_classdev_unregister(&asus->pled.led);
8fcf71aa 668 if (!IS_ERR_OR_NULL(asus->rled.led.dev))
aee0afb8 669 led_classdev_unregister(&asus->rled.led);
8fcf71aa 670 if (!IS_ERR_OR_NULL(asus->gled.led.dev))
aee0afb8 671 led_classdev_unregister(&asus->gled.led);
8fcf71aa 672 if (!IS_ERR_OR_NULL(asus->kled.led.dev))
aee0afb8
CC
673 led_classdev_unregister(&asus->kled.led);
674 if (asus->led_workqueue) {
675 destroy_workqueue(asus->led_workqueue);
676 asus->led_workqueue = NULL;
be4ee82d
CC
677 }
678}
679
680/* Ugly macro, need to fix that later */
aee0afb8
CC
681static int asus_led_register(struct asus_laptop *asus,
682 struct asus_led *led,
683 const char *name, const char *method)
684{
685 struct led_classdev *led_cdev = &led->led;
686
687 if (!method || acpi_check_handle(asus->handle, method, NULL))
060cbce6 688 return 0; /* Led not present */
aee0afb8
CC
689
690 led->asus = asus;
691 led->method = method;
692
693 INIT_WORK(&led->work, asus_led_cdev_update);
694 led_cdev->name = name;
695 led_cdev->brightness_set = asus_led_cdev_set;
696 led_cdev->brightness_get = asus_led_cdev_get;
697 led_cdev->max_brightness = 1;
698 return led_classdev_register(&asus->platform_device->dev, led_cdev);
699}
be4ee82d
CC
700
701static int asus_led_init(struct asus_laptop *asus)
702{
774b0678 703 int r = 0;
be4ee82d 704
8d38e42c
CC
705 /*
706 * The Pegatron Lucid has no physical leds, but all methods are
707 * available in the DSDT...
708 */
709 if (asus->is_pega_lucid)
710 return 0;
711
be4ee82d
CC
712 /*
713 * Functions that actually update the LED's are called from a
714 * workqueue. By doing this as separate work rather than when the LED
715 * subsystem asks, we avoid messing with the Asus ACPI stuff during a
716 * potentially bad time, such as a timer interrupt.
717 */
aee0afb8
CC
718 asus->led_workqueue = create_singlethread_workqueue("led_workqueue");
719 if (!asus->led_workqueue)
be4ee82d
CC
720 return -ENOMEM;
721
774b0678
CC
722 if (asus->wled_type == TYPE_LED)
723 r = asus_led_register(asus, &asus->wled, "asus::wlan",
724 METHOD_WLAN);
725 if (r)
726 goto error;
727 if (asus->bled_type == TYPE_LED)
728 r = asus_led_register(asus, &asus->bled, "asus::bluetooth",
729 METHOD_BLUETOOTH);
730 if (r)
731 goto error;
aee0afb8
CC
732 r = asus_led_register(asus, &asus->mled, "asus::mail", METHOD_MLED);
733 if (r)
734 goto error;
735 r = asus_led_register(asus, &asus->tled, "asus::touchpad", METHOD_TLED);
736 if (r)
737 goto error;
738 r = asus_led_register(asus, &asus->rled, "asus::record", METHOD_RLED);
739 if (r)
740 goto error;
741 r = asus_led_register(asus, &asus->pled, "asus::phone", METHOD_PLED);
742 if (r)
743 goto error;
744 r = asus_led_register(asus, &asus->gled, "asus::gaming", METHOD_GLED);
745 if (r)
746 goto error;
d99b577c 747 if (!acpi_check_handle(asus->handle, METHOD_KBD_LIGHT_SET, NULL) &&
aee0afb8
CC
748 !acpi_check_handle(asus->handle, METHOD_KBD_LIGHT_GET, NULL)) {
749 struct asus_led *led = &asus->kled;
750 struct led_classdev *cdev = &led->led;
751
752 led->asus = asus;
753
754 INIT_WORK(&led->work, asus_kled_cdev_update);
755 cdev->name = "asus::kbd_backlight";
756 cdev->brightness_set = asus_kled_cdev_set;
757 cdev->brightness_get = asus_kled_cdev_get;
758 cdev->max_brightness = 3;
759 r = led_classdev_register(&asus->platform_device->dev, cdev);
760 }
be4ee82d 761error:
aee0afb8 762 if (r)
be4ee82d 763 asus_led_exit(asus);
aee0afb8 764 return r;
be4ee82d
CC
765}
766
767/*
768 * Backlight device
769 */
4d441513 770static int asus_read_brightness(struct backlight_device *bd)
6b7091e7 771{
d99b577c 772 struct asus_laptop *asus = bl_get_data(bd);
27663c58 773 unsigned long long value;
2ce6d993 774 acpi_status rv;
6b7091e7 775
d99b577c
CC
776 rv = acpi_evaluate_integer(asus->handle, METHOD_BRIGHTNESS_GET,
777 NULL, &value);
198b618a 778 if (ACPI_FAILURE(rv)) {
5ad77dcf 779 pr_warn("Error reading brightness\n");
198b618a
GS
780 return 0;
781 }
6b7091e7
CC
782
783 return value;
784}
785
4d441513 786static int asus_set_brightness(struct backlight_device *bd, int value)
6b7091e7 787{
d99b577c
CC
788 struct asus_laptop *asus = bl_get_data(bd);
789
790 if (write_acpi_int(asus->handle, METHOD_BRIGHTNESS_SET, value)) {
5ad77dcf 791 pr_warn("Error changing brightness\n");
e5b50f6a 792 return -EIO;
6b7091e7 793 }
e5b50f6a 794 return 0;
6b7091e7
CC
795}
796
797static int update_bl_status(struct backlight_device *bd)
798{
599a52d1 799 int value = bd->props.brightness;
6b7091e7 800
3b81cf9d 801 return asus_set_brightness(bd, value);
6b7091e7
CC
802}
803
acc2472e 804static const struct backlight_ops asusbl_ops = {
4d441513 805 .get_brightness = asus_read_brightness,
be4ee82d
CC
806 .update_status = update_bl_status,
807};
808
a539df5e
CC
809static int asus_backlight_notify(struct asus_laptop *asus)
810{
811 struct backlight_device *bd = asus->backlight_device;
812 int old = bd->props.brightness;
813
814 backlight_force_update(bd, BACKLIGHT_UPDATE_HOTKEY);
815
816 return old;
817}
818
be4ee82d
CC
819static int asus_backlight_init(struct asus_laptop *asus)
820{
821 struct backlight_device *bd;
a19a6ee6 822 struct backlight_properties props;
be4ee82d 823
71e687dc 824 if (acpi_check_handle(asus->handle, METHOD_BRIGHTNESS_GET, NULL) ||
3b81cf9d 825 acpi_check_handle(asus->handle, METHOD_BRIGHTNESS_SET, NULL))
71e687dc 826 return 0;
be4ee82d 827
71e687dc
CC
828 memset(&props, 0, sizeof(struct backlight_properties));
829 props.max_brightness = 15;
bb7ca747 830 props.type = BACKLIGHT_PLATFORM;
be4ee82d 831
71e687dc
CC
832 bd = backlight_device_register(ASUS_LAPTOP_FILE,
833 &asus->platform_device->dev, asus,
834 &asusbl_ops, &props);
835 if (IS_ERR(bd)) {
836 pr_err("Could not register asus backlight device\n");
837 asus->backlight_device = NULL;
838 return PTR_ERR(bd);
be4ee82d 839 }
71e687dc
CC
840
841 asus->backlight_device = bd;
842 bd->props.brightness = asus_read_brightness(bd);
843 bd->props.power = FB_BLANK_UNBLANK;
844 backlight_update_status(bd);
be4ee82d
CC
845 return 0;
846}
847
848static void asus_backlight_exit(struct asus_laptop *asus)
849{
00981810 850 backlight_device_unregister(asus->backlight_device);
a539df5e 851 asus->backlight_device = NULL;
be4ee82d
CC
852}
853
85091b71
CC
854/*
855 * Platform device handlers
856 */
857
858/*
859 * We write our info in page, we begin at offset off and cannot write more
860 * than count bytes. We set eof to 1 if we handle those 2 values. We return the
861 * number of bytes written in page
862 */
ed52ccbc
VD
863static ssize_t infos_show(struct device *dev, struct device_attribute *attr,
864 char *page)
85091b71 865{
9129d14d 866 struct asus_laptop *asus = dev_get_drvdata(dev);
85091b71 867 int len = 0;
27663c58 868 unsigned long long temp;
be966660 869 char buf[16]; /* enough for all info */
2ce6d993 870 acpi_status rv;
9a816850 871
85091b71 872 /*
060cbce6
CC
873 * We use the easy way, we don't care of off and count,
874 * so we don't set eof to 1
85091b71
CC
875 */
876
50a90c4d
CC
877 len += sprintf(page, ASUS_LAPTOP_NAME " " ASUS_LAPTOP_VERSION "\n");
878 len += sprintf(page + len, "Model reference : %s\n", asus->name);
85091b71
CC
879 /*
880 * The SFUN method probably allows the original driver to get the list
881 * of features supported by a given model. For now, 0x0100 or 0x0800
882 * bit signifies that the laptop is equipped with a Wi-Fi MiniPCI card.
883 * The significance of others is yet to be found.
884 */
50a90c4d 885 rv = acpi_evaluate_integer(asus->handle, "SFUN", NULL, &temp);
9a816850 886 if (!ACPI_FAILURE(rv))
1d4a3800
CC
887 len += sprintf(page + len, "SFUN value : %#x\n",
888 (uint) temp);
889 /*
890 * The HWRS method return informations about the hardware.
891 * 0x80 bit is for WLAN, 0x100 for Bluetooth.
cb7da022 892 * 0x40 for WWAN, 0x10 for WIMAX.
1d4a3800 893 * The significance of others is yet to be found.
cb7da022
BH
894 * We don't currently use this for device detection, and it
895 * takes several seconds to run on some systems.
1d4a3800 896 */
8871e99f 897 rv = acpi_evaluate_integer(asus->handle, "HWRS", NULL, &temp);
1d4a3800 898 if (!ACPI_FAILURE(rv))
8871e99f 899 len += sprintf(page + len, "HWRS value : %#x\n",
9a816850 900 (uint) temp);
85091b71
CC
901 /*
902 * Another value for userspace: the ASYM method returns 0x02 for
903 * battery low and 0x04 for battery critical, its readings tend to be
904 * more accurate than those provided by _BST.
905 * Note: since not all the laptops provide this method, errors are
906 * silently ignored.
907 */
50a90c4d 908 rv = acpi_evaluate_integer(asus->handle, "ASYM", NULL, &temp);
9a816850 909 if (!ACPI_FAILURE(rv))
1d4a3800 910 len += sprintf(page + len, "ASYM value : %#x\n",
9a816850 911 (uint) temp);
7c247645
CC
912 if (asus->dsdt_info) {
913 snprintf(buf, 16, "%d", asus->dsdt_info->length);
85091b71 914 len += sprintf(page + len, "DSDT length : %s\n", buf);
7c247645 915 snprintf(buf, 16, "%d", asus->dsdt_info->checksum);
85091b71 916 len += sprintf(page + len, "DSDT checksum : %s\n", buf);
7c247645 917 snprintf(buf, 16, "%d", asus->dsdt_info->revision);
85091b71 918 len += sprintf(page + len, "DSDT revision : %s\n", buf);
7c247645 919 snprintf(buf, 7, "%s", asus->dsdt_info->oem_id);
85091b71 920 len += sprintf(page + len, "OEM id : %s\n", buf);
7c247645 921 snprintf(buf, 9, "%s", asus->dsdt_info->oem_table_id);
85091b71 922 len += sprintf(page + len, "OEM table id : %s\n", buf);
7c247645 923 snprintf(buf, 16, "%x", asus->dsdt_info->oem_revision);
85091b71 924 len += sprintf(page + len, "OEM revision : 0x%s\n", buf);
7c247645 925 snprintf(buf, 5, "%s", asus->dsdt_info->asl_compiler_id);
85091b71 926 len += sprintf(page + len, "ASL comp vendor id : %s\n", buf);
7c247645 927 snprintf(buf, 16, "%x", asus->dsdt_info->asl_compiler_revision);
85091b71
CC
928 len += sprintf(page + len, "ASL comp revision : 0x%s\n", buf);
929 }
930
931 return len;
932}
ed52ccbc 933static DEVICE_ATTR_RO(infos);
85091b71 934
17e78f62
CC
935static ssize_t sysfs_acpi_set(struct asus_laptop *asus,
936 const char *buf, size_t count,
d99b577c 937 const char *method)
4564de17
CC
938{
939 int rv, value;
4564de17 940
6f7e357b
GS
941 rv = kstrtoint(buf, 0, &value);
942 if (rv < 0)
19d46ee1 943 return rv;
4564de17 944
d99b577c 945 if (write_acpi_int(asus->handle, method, value))
17e78f62 946 return -ENODEV;
6f7e357b 947 return count;
4564de17
CC
948}
949
722ad971
CC
950/*
951 * LEDD display
952 */
ed52ccbc
VD
953static ssize_t ledd_show(struct device *dev, struct device_attribute *attr,
954 char *buf)
722ad971 955{
9129d14d
CC
956 struct asus_laptop *asus = dev_get_drvdata(dev);
957
50a90c4d 958 return sprintf(buf, "0x%08x\n", asus->ledd_status);
722ad971
CC
959}
960
ed52ccbc 961static ssize_t ledd_store(struct device *dev, struct device_attribute *attr,
722ad971
CC
962 const char *buf, size_t count)
963{
9129d14d 964 struct asus_laptop *asus = dev_get_drvdata(dev);
722ad971
CC
965 int rv, value;
966
6f7e357b
GS
967 rv = kstrtoint(buf, 0, &value);
968 if (rv < 0)
969 return rv;
970
971 if (write_acpi_int(asus->handle, METHOD_LEDD, value)) {
972 pr_warn("LED display write failed\n");
973 return -ENODEV;
722ad971 974 }
6f7e357b
GS
975
976 asus->ledd_status = (u32) value;
977 return count;
722ad971 978}
ed52ccbc 979static DEVICE_ATTR_RW(ledd);
722ad971 980
aa9df930
CC
981/*
982 * Wireless
983 */
984static int asus_wireless_status(struct asus_laptop *asus, int mask)
985{
986 unsigned long long status;
987 acpi_status rv = AE_OK;
988
989 if (!asus->have_rsts)
990 return (asus->wireless_status & mask) ? 1 : 0;
991
d99b577c
CC
992 rv = acpi_evaluate_integer(asus->handle, METHOD_WL_STATUS,
993 NULL, &status);
aa9df930 994 if (ACPI_FAILURE(rv)) {
5ad77dcf 995 pr_warn("Error reading Wireless status\n");
aa9df930
CC
996 return -EINVAL;
997 }
998 return !!(status & mask);
999}
1000
4564de17
CC
1001/*
1002 * WLAN
1003 */
e5593bf1
CC
1004static int asus_wlan_set(struct asus_laptop *asus, int status)
1005{
1006 if (write_acpi_int(asus->handle, METHOD_WLAN, !!status)) {
5ad77dcf 1007 pr_warn("Error setting wlan status to %d\n", status);
e5593bf1
CC
1008 return -EIO;
1009 }
1010 return 0;
1011}
1012
ed52ccbc
VD
1013static ssize_t wlan_show(struct device *dev, struct device_attribute *attr,
1014 char *buf)
4564de17 1015{
9129d14d
CC
1016 struct asus_laptop *asus = dev_get_drvdata(dev);
1017
17e78f62 1018 return sprintf(buf, "%d\n", asus_wireless_status(asus, WL_RSTS));
4564de17
CC
1019}
1020
ed52ccbc 1021static ssize_t wlan_store(struct device *dev, struct device_attribute *attr,
4564de17
CC
1022 const char *buf, size_t count)
1023{
9129d14d
CC
1024 struct asus_laptop *asus = dev_get_drvdata(dev);
1025
d99b577c 1026 return sysfs_acpi_set(asus, buf, count, METHOD_WLAN);
4564de17 1027}
ed52ccbc 1028static DEVICE_ATTR_RW(wlan);
4564de17 1029
774b0678 1030/*e
4564de17
CC
1031 * Bluetooth
1032 */
e5593bf1
CC
1033static int asus_bluetooth_set(struct asus_laptop *asus, int status)
1034{
1035 if (write_acpi_int(asus->handle, METHOD_BLUETOOTH, !!status)) {
5ad77dcf 1036 pr_warn("Error setting bluetooth status to %d\n", status);
e5593bf1
CC
1037 return -EIO;
1038 }
1039 return 0;
1040}
1041
ed52ccbc
VD
1042static ssize_t bluetooth_show(struct device *dev, struct device_attribute *attr,
1043 char *buf)
4564de17 1044{
9129d14d
CC
1045 struct asus_laptop *asus = dev_get_drvdata(dev);
1046
17e78f62 1047 return sprintf(buf, "%d\n", asus_wireless_status(asus, BT_RSTS));
4564de17
CC
1048}
1049
ed52ccbc 1050static ssize_t bluetooth_store(struct device *dev,
8def05fa
LB
1051 struct device_attribute *attr, const char *buf,
1052 size_t count)
4564de17 1053{
9129d14d
CC
1054 struct asus_laptop *asus = dev_get_drvdata(dev);
1055
d99b577c 1056 return sysfs_acpi_set(asus, buf, count, METHOD_BLUETOOTH);
4564de17 1057}
ed52ccbc 1058static DEVICE_ATTR_RW(bluetooth);
4564de17 1059
ba1ff5be
CC
1060/*
1061 * Wimax
1062 */
1063static int asus_wimax_set(struct asus_laptop *asus, int status)
1064{
1065 if (write_acpi_int(asus->handle, METHOD_WIMAX, !!status)) {
5ad77dcf 1066 pr_warn("Error setting wimax status to %d\n", status);
ba1ff5be
CC
1067 return -EIO;
1068 }
1069 return 0;
1070}
1071
ed52ccbc
VD
1072static ssize_t wimax_show(struct device *dev, struct device_attribute *attr,
1073 char *buf)
ba1ff5be
CC
1074{
1075 struct asus_laptop *asus = dev_get_drvdata(dev);
1076
1077 return sprintf(buf, "%d\n", asus_wireless_status(asus, WM_RSTS));
1078}
1079
ed52ccbc
VD
1080static ssize_t wimax_store(struct device *dev, struct device_attribute *attr,
1081 const char *buf, size_t count)
ba1ff5be
CC
1082{
1083 struct asus_laptop *asus = dev_get_drvdata(dev);
1084
1085 return sysfs_acpi_set(asus, buf, count, METHOD_WIMAX);
1086}
ed52ccbc 1087static DEVICE_ATTR_RW(wimax);
ba1ff5be
CC
1088
1089/*
1090 * Wwan
1091 */
1092static int asus_wwan_set(struct asus_laptop *asus, int status)
1093{
1094 if (write_acpi_int(asus->handle, METHOD_WWAN, !!status)) {
5ad77dcf 1095 pr_warn("Error setting wwan status to %d\n", status);
ba1ff5be
CC
1096 return -EIO;
1097 }
1098 return 0;
1099}
1100
ed52ccbc
VD
1101static ssize_t wwan_show(struct device *dev, struct device_attribute *attr,
1102 char *buf)
ba1ff5be
CC
1103{
1104 struct asus_laptop *asus = dev_get_drvdata(dev);
1105
1106 return sprintf(buf, "%d\n", asus_wireless_status(asus, WW_RSTS));
1107}
1108
ed52ccbc
VD
1109static ssize_t wwan_store(struct device *dev, struct device_attribute *attr,
1110 const char *buf, size_t count)
ba1ff5be
CC
1111{
1112 struct asus_laptop *asus = dev_get_drvdata(dev);
1113
1114 return sysfs_acpi_set(asus, buf, count, METHOD_WWAN);
1115}
ed52ccbc 1116static DEVICE_ATTR_RW(wwan);
ba1ff5be 1117
78127b4a
CC
1118/*
1119 * Display
1120 */
4d441513 1121static void asus_set_display(struct asus_laptop *asus, int value)
78127b4a
CC
1122{
1123 /* no sanity check needed for now */
d99b577c 1124 if (write_acpi_int(asus->handle, METHOD_SWITCH_DISPLAY, value))
5ad77dcf 1125 pr_warn("Error setting display\n");
78127b4a
CC
1126 return;
1127}
1128
78127b4a
CC
1129/*
1130 * Experimental support for display switching. As of now: 1 should activate
1131 * the LCD output, 2 should do for CRT, 4 for TV-Out and 8 for DVI.
1132 * Any combination (bitwise) of these will suffice. I never actually tested 4
1133 * displays hooked up simultaneously, so be warned. See the acpi4asus README
1134 * for more info.
1135 */
ed52ccbc
VD
1136static ssize_t display_store(struct device *dev, struct device_attribute *attr,
1137 const char *buf, size_t count)
78127b4a 1138{
9129d14d 1139 struct asus_laptop *asus = dev_get_drvdata(dev);
78127b4a
CC
1140 int rv, value;
1141
6f7e357b
GS
1142 rv = kstrtoint(buf, 0, &value);
1143 if (rv < 0)
1144 return rv;
1145
1146 asus_set_display(asus, value);
1147 return count;
78127b4a 1148}
ed52ccbc 1149static DEVICE_ATTR_WO(display);
78127b4a 1150
8b857353
CC
1151/*
1152 * Light Sens
1153 */
4d441513 1154static void asus_als_switch(struct asus_laptop *asus, int value)
8b857353 1155{
33989ba6
AR
1156 int ret;
1157
1158 if (asus->is_pega_lucid) {
1159 ret = asus_pega_lucid_set(asus, PEGA_ALS, value);
1160 if (!ret)
1161 ret = asus_pega_lucid_set(asus, PEGA_ALS_POWER, value);
1162 } else {
1163 ret = write_acpi_int(asus->handle, METHOD_ALS_CONTROL, value);
1164 }
1165 if (ret)
1166 pr_warning("Error setting light sensor switch\n");
1167
50a90c4d 1168 asus->light_switch = value;
8b857353
CC
1169}
1170
ed52ccbc
VD
1171static ssize_t ls_switch_show(struct device *dev, struct device_attribute *attr,
1172 char *buf)
8b857353 1173{
9129d14d
CC
1174 struct asus_laptop *asus = dev_get_drvdata(dev);
1175
50a90c4d 1176 return sprintf(buf, "%d\n", asus->light_switch);
8b857353
CC
1177}
1178
ed52ccbc
VD
1179static ssize_t ls_switch_store(struct device *dev,
1180 struct device_attribute *attr, const char *buf,
1181 size_t count)
8b857353 1182{
9129d14d 1183 struct asus_laptop *asus = dev_get_drvdata(dev);
8b857353
CC
1184 int rv, value;
1185
6f7e357b
GS
1186 rv = kstrtoint(buf, 0, &value);
1187 if (rv < 0)
1188 return rv;
8b857353 1189
6f7e357b
GS
1190 asus_als_switch(asus, value ? 1 : 0);
1191 return count;
8b857353 1192}
ed52ccbc 1193static DEVICE_ATTR_RW(ls_switch);
8b857353 1194
4d441513 1195static void asus_als_level(struct asus_laptop *asus, int value)
8b857353 1196{
d99b577c 1197 if (write_acpi_int(asus->handle, METHOD_ALS_LEVEL, value))
5ad77dcf 1198 pr_warn("Error setting light sensor level\n");
50a90c4d 1199 asus->light_level = value;
8b857353
CC
1200}
1201
ed52ccbc
VD
1202static ssize_t ls_level_show(struct device *dev, struct device_attribute *attr,
1203 char *buf)
8b857353 1204{
9129d14d
CC
1205 struct asus_laptop *asus = dev_get_drvdata(dev);
1206
50a90c4d 1207 return sprintf(buf, "%d\n", asus->light_level);
8b857353
CC
1208}
1209
ed52ccbc
VD
1210static ssize_t ls_level_store(struct device *dev, struct device_attribute *attr,
1211 const char *buf, size_t count)
8b857353 1212{
9129d14d 1213 struct asus_laptop *asus = dev_get_drvdata(dev);
8b857353
CC
1214 int rv, value;
1215
6f7e357b
GS
1216 rv = kstrtoint(buf, 0, &value);
1217 if (rv < 0)
1218 return rv;
1219
1220 value = (0 < value) ? ((15 < value) ? 15 : value) : 0;
1221 /* 0 <= value <= 15 */
1222 asus_als_level(asus, value);
8b857353 1223
6f7e357b 1224 return count;
8b857353 1225}
ed52ccbc 1226static DEVICE_ATTR_RW(ls_level);
8b857353 1227
33989ba6
AR
1228static int pega_int_read(struct asus_laptop *asus, int arg, int *result)
1229{
1230 struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
1231 int err = write_acpi_int_ret(asus->handle, METHOD_PEGA_READ, arg,
1232 &buffer);
1233 if (!err) {
1234 union acpi_object *obj = buffer.pointer;
1235 if (obj && obj->type == ACPI_TYPE_INTEGER)
1236 *result = obj->integer.value;
1237 else
1238 err = -EIO;
1239 }
1240 return err;
1241}
1242
ed52ccbc
VD
1243static ssize_t ls_value_show(struct device *dev, struct device_attribute *attr,
1244 char *buf)
33989ba6
AR
1245{
1246 struct asus_laptop *asus = dev_get_drvdata(dev);
1247 int err, hi, lo;
1248
1249 err = pega_int_read(asus, PEGA_READ_ALS_H, &hi);
1250 if (!err)
1251 err = pega_int_read(asus, PEGA_READ_ALS_L, &lo);
1252 if (!err)
1253 return sprintf(buf, "%d\n", 10 * hi + lo);
1254 return err;
1255}
ed52ccbc 1256static DEVICE_ATTR_RO(ls_value);
33989ba6 1257
e539c2f6
CC
1258/*
1259 * GPS
1260 */
6358bf2c
CC
1261static int asus_gps_status(struct asus_laptop *asus)
1262{
1263 unsigned long long status;
2ce6d993 1264 acpi_status rv;
6358bf2c 1265
d99b577c
CC
1266 rv = acpi_evaluate_integer(asus->handle, METHOD_GPS_STATUS,
1267 NULL, &status);
6358bf2c 1268 if (ACPI_FAILURE(rv)) {
5ad77dcf 1269 pr_warn("Error reading GPS status\n");
6358bf2c
CC
1270 return -ENODEV;
1271 }
1272 return !!status;
1273}
1274
1275static int asus_gps_switch(struct asus_laptop *asus, int status)
1276{
d99b577c 1277 const char *meth = status ? METHOD_GPS_ON : METHOD_GPS_OFF;
6358bf2c 1278
d99b577c 1279 if (write_acpi_int(asus->handle, meth, 0x02))
6358bf2c
CC
1280 return -ENODEV;
1281 return 0;
1282}
1283
ed52ccbc
VD
1284static ssize_t gps_show(struct device *dev, struct device_attribute *attr,
1285 char *buf)
e539c2f6 1286{
9129d14d
CC
1287 struct asus_laptop *asus = dev_get_drvdata(dev);
1288
6358bf2c 1289 return sprintf(buf, "%d\n", asus_gps_status(asus));
e539c2f6
CC
1290}
1291
ed52ccbc 1292static ssize_t gps_store(struct device *dev, struct device_attribute *attr,
e539c2f6
CC
1293 const char *buf, size_t count)
1294{
060cbce6 1295 struct asus_laptop *asus = dev_get_drvdata(dev);
6358bf2c
CC
1296 int rv, value;
1297 int ret;
9129d14d 1298
6f7e357b
GS
1299 rv = kstrtoint(buf, 0, &value);
1300 if (rv < 0)
1301 return rv;
6358bf2c
CC
1302 ret = asus_gps_switch(asus, !!value);
1303 if (ret)
1304 return ret;
40969c7d 1305 rfkill_set_sw_state(asus->gps.rfkill, !value);
6f7e357b 1306 return count;
e539c2f6 1307}
ed52ccbc 1308static DEVICE_ATTR_RW(gps);
e539c2f6 1309
18e1311e
CC
1310/*
1311 * rfkill
1312 */
1313static int asus_gps_rfkill_set(void *data, bool blocked)
1314{
23f45c3a 1315 struct asus_laptop *asus = data;
18e1311e 1316
23f45c3a 1317 return asus_gps_switch(asus, !blocked);
18e1311e
CC
1318}
1319
1320static const struct rfkill_ops asus_gps_rfkill_ops = {
1321 .set_block = asus_gps_rfkill_set,
1322};
1323
774b0678
CC
1324static int asus_rfkill_set(void *data, bool blocked)
1325{
1326 struct asus_rfkill *rfk = data;
1327 struct asus_laptop *asus = rfk->asus;
1328
1329 if (rfk->control_id == WL_RSTS)
1330 return asus_wlan_set(asus, !blocked);
1331 else if (rfk->control_id == BT_RSTS)
1332 return asus_bluetooth_set(asus, !blocked);
3c8671ff
CC
1333 else if (rfk->control_id == WM_RSTS)
1334 return asus_wimax_set(asus, !blocked);
1335 else if (rfk->control_id == WW_RSTS)
1336 return asus_wwan_set(asus, !blocked);
774b0678
CC
1337
1338 return -EINVAL;
1339}
1340
1341static const struct rfkill_ops asus_rfkill_ops = {
1342 .set_block = asus_rfkill_set,
1343};
1344
40969c7d
CC
1345static void asus_rfkill_terminate(struct asus_rfkill *rfk)
1346{
1347 if (!rfk->rfkill)
1348 return ;
1349
1350 rfkill_unregister(rfk->rfkill);
1351 rfkill_destroy(rfk->rfkill);
1352 rfk->rfkill = NULL;
1353}
1354
18e1311e
CC
1355static void asus_rfkill_exit(struct asus_laptop *asus)
1356{
40969c7d
CC
1357 asus_rfkill_terminate(&asus->wwan);
1358 asus_rfkill_terminate(&asus->bluetooth);
1359 asus_rfkill_terminate(&asus->wlan);
1360 asus_rfkill_terminate(&asus->gps);
18e1311e
CC
1361}
1362
774b0678
CC
1363static int asus_rfkill_setup(struct asus_laptop *asus, struct asus_rfkill *rfk,
1364 const char *name, int control_id, int type,
1365 const struct rfkill_ops *ops)
18e1311e
CC
1366{
1367 int result;
1368
774b0678
CC
1369 rfk->control_id = control_id;
1370 rfk->asus = asus;
1371 rfk->rfkill = rfkill_alloc(name, &asus->platform_device->dev,
1372 type, ops, rfk);
1373 if (!rfk->rfkill)
18e1311e
CC
1374 return -EINVAL;
1375
774b0678 1376 result = rfkill_register(rfk->rfkill);
18e1311e 1377 if (result) {
774b0678
CC
1378 rfkill_destroy(rfk->rfkill);
1379 rfk->rfkill = NULL;
18e1311e
CC
1380 }
1381
1382 return result;
1383}
1384
774b0678
CC
1385static int asus_rfkill_init(struct asus_laptop *asus)
1386{
1387 int result = 0;
1388
3c8671ff
CC
1389 if (asus->is_pega_lucid)
1390 return -ENODEV;
1391
774b0678
CC
1392 if (!acpi_check_handle(asus->handle, METHOD_GPS_ON, NULL) &&
1393 !acpi_check_handle(asus->handle, METHOD_GPS_OFF, NULL) &&
1394 !acpi_check_handle(asus->handle, METHOD_GPS_STATUS, NULL))
1395 result = asus_rfkill_setup(asus, &asus->gps, "asus-gps",
1396 -1, RFKILL_TYPE_GPS,
1397 &asus_gps_rfkill_ops);
1398 if (result)
1399 goto exit;
1400
1401
26594dd4
CC
1402 if (!acpi_check_handle(asus->handle, METHOD_WLAN, NULL) &&
1403 asus->wled_type == TYPE_RFKILL)
774b0678
CC
1404 result = asus_rfkill_setup(asus, &asus->wlan, "asus-wlan",
1405 WL_RSTS, RFKILL_TYPE_WLAN,
1406 &asus_rfkill_ops);
1407 if (result)
1408 goto exit;
1409
26594dd4
CC
1410 if (!acpi_check_handle(asus->handle, METHOD_BLUETOOTH, NULL) &&
1411 asus->bled_type == TYPE_RFKILL)
774b0678
CC
1412 result = asus_rfkill_setup(asus, &asus->bluetooth,
1413 "asus-bluetooth", BT_RSTS,
1414 RFKILL_TYPE_BLUETOOTH,
1415 &asus_rfkill_ops);
1416 if (result)
1417 goto exit;
1418
3c8671ff
CC
1419 if (!acpi_check_handle(asus->handle, METHOD_WWAN, NULL))
1420 result = asus_rfkill_setup(asus, &asus->wwan, "asus-wwan",
1421 WW_RSTS, RFKILL_TYPE_WWAN,
1422 &asus_rfkill_ops);
1423 if (result)
1424 goto exit;
1425
1426 if (!acpi_check_handle(asus->handle, METHOD_WIMAX, NULL))
1427 result = asus_rfkill_setup(asus, &asus->wimax, "asus-wimax",
1428 WM_RSTS, RFKILL_TYPE_WIMAX,
1429 &asus_rfkill_ops);
1430 if (result)
1431 goto exit;
1432
774b0678
CC
1433exit:
1434 if (result)
1435 asus_rfkill_exit(asus);
1436
1437 return result;
1438}
1439
14908399
AA
1440static int pega_rfkill_set(void *data, bool blocked)
1441{
40969c7d 1442 struct asus_rfkill *rfk = data;
14908399 1443
40969c7d 1444 int ret = asus_pega_lucid_set(rfk->asus, rfk->control_id, !blocked);
14908399
AA
1445 return ret;
1446}
1447
1448static const struct rfkill_ops pega_rfkill_ops = {
1449 .set_block = pega_rfkill_set,
1450};
1451
40969c7d
CC
1452static int pega_rfkill_setup(struct asus_laptop *asus, struct asus_rfkill *rfk,
1453 const char *name, int controlid, int rfkill_type)
14908399 1454{
774b0678
CC
1455 return asus_rfkill_setup(asus, rfk, name, controlid, rfkill_type,
1456 &pega_rfkill_ops);
14908399
AA
1457}
1458
1459static int pega_rfkill_init(struct asus_laptop *asus)
1460{
1461 int ret = 0;
1462
1463 if(!asus->is_pega_lucid)
1464 return -ENODEV;
1465
40969c7d
CC
1466 ret = pega_rfkill_setup(asus, &asus->wlan, "pega-wlan",
1467 PEGA_WLAN, RFKILL_TYPE_WLAN);
14908399 1468 if(ret)
40969c7d
CC
1469 goto exit;
1470
1471 ret = pega_rfkill_setup(asus, &asus->bluetooth, "pega-bt",
1472 PEGA_BLUETOOTH, RFKILL_TYPE_BLUETOOTH);
14908399 1473 if(ret)
40969c7d 1474 goto exit;
14908399 1475
40969c7d
CC
1476 ret = pega_rfkill_setup(asus, &asus->wwan, "pega-wwan",
1477 PEGA_WWAN, RFKILL_TYPE_WWAN);
1478
1479exit:
1480 if (ret)
1481 asus_rfkill_exit(asus);
14908399
AA
1482
1483 return ret;
1484}
1485
034ce90a 1486/*
be4ee82d 1487 * Input device (i.e. hotkeys)
034ce90a 1488 */
be4ee82d
CC
1489static void asus_input_notify(struct asus_laptop *asus, int event)
1490{
e0ac9133
CC
1491 if (!asus->inputdev)
1492 return ;
1493 if (!sparse_keymap_report_event(asus->inputdev, event, 1, true))
1494 pr_info("Unknown key %x pressed\n", event);
be4ee82d
CC
1495}
1496
1497static int asus_input_init(struct asus_laptop *asus)
1498{
66a71dd1
CC
1499 struct input_dev *input;
1500 int error;
be4ee82d 1501
66a71dd1 1502 input = input_allocate_device();
b222cca6 1503 if (!input)
45036ae1 1504 return -ENOMEM;
b222cca6 1505
66a71dd1
CC
1506 input->name = "Asus Laptop extra buttons";
1507 input->phys = ASUS_LAPTOP_FILE "/input0";
1508 input->id.bustype = BUS_HOST;
1509 input->dev.parent = &asus->platform_device->dev;
66a71dd1
CC
1510
1511 error = sparse_keymap_setup(input, asus_keymap, NULL);
1512 if (error) {
1513 pr_err("Unable to setup input device keymap\n");
45036ae1 1514 goto err_free_dev;
be4ee82d 1515 }
66a71dd1
CC
1516 error = input_register_device(input);
1517 if (error) {
40969c7d 1518 pr_warn("Unable to register input device\n");
45036ae1 1519 goto err_free_keymap;
be4ee82d 1520 }
66a71dd1
CC
1521
1522 asus->inputdev = input;
1523 return 0;
1524
45036ae1 1525err_free_keymap:
66a71dd1 1526 sparse_keymap_free(input);
45036ae1 1527err_free_dev:
66a71dd1
CC
1528 input_free_device(input);
1529 return error;
be4ee82d
CC
1530}
1531
1532static void asus_input_exit(struct asus_laptop *asus)
1533{
66a71dd1
CC
1534 if (asus->inputdev) {
1535 sparse_keymap_free(asus->inputdev);
be4ee82d 1536 input_unregister_device(asus->inputdev);
66a71dd1 1537 }
71e687dc 1538 asus->inputdev = NULL;
be4ee82d
CC
1539}
1540
1541/*
1542 * ACPI driver
1543 */
600ad520 1544static void asus_acpi_notify(struct acpi_device *device, u32 event)
85091b71 1545{
9129d14d 1546 struct asus_laptop *asus = acpi_driver_data(device);
6050c8dd 1547 u16 count;
034ce90a 1548
619d8b11 1549 /* TODO Find a better way to handle events count. */
50a90c4d 1550 count = asus->event_count[event % 128]++;
50a90c4d
CC
1551 acpi_bus_generate_netlink_event(asus->device->pnp.device_class,
1552 dev_name(&asus->device->dev), event,
6050c8dd 1553 count);
85091b71 1554
2740e1bd
CC
1555 if (event >= ATKD_BRNUP_MIN && event <= ATKD_BRNUP_MAX)
1556 event = ATKD_BRNUP;
1557 else if (event >= ATKD_BRNDOWN_MIN &&
1558 event <= ATKD_BRNDOWN_MAX)
1559 event = ATKD_BRNDOWN;
a539df5e 1560
2740e1bd
CC
1561 /* Brightness events are special */
1562 if (event == ATKD_BRNDOWN || event == ATKD_BRNUP) {
a539df5e
CC
1563 if (asus->backlight_device != NULL) {
1564 /* Update the backlight device. */
1565 asus_backlight_notify(asus);
2740e1bd 1566 return ;
a539df5e 1567 }
a539df5e 1568 }
b93f8281
AA
1569
1570 /* Accelerometer "coarse orientation change" event */
1571 if (asus->pega_accel_poll && event == 0xEA) {
1572 kobject_uevent(&asus->pega_accel_poll->input->dev.kobj,
1573 KOBJ_CHANGE);
1574 return ;
1575 }
1576
be4ee82d 1577 asus_input_notify(asus, event);
85091b71
CC
1578}
1579
ac9b1e5b
DT
1580static struct attribute *asus_attributes[] = {
1581 &dev_attr_infos.attr,
1582 &dev_attr_wlan.attr,
1583 &dev_attr_bluetooth.attr,
ba1ff5be
CC
1584 &dev_attr_wimax.attr,
1585 &dev_attr_wwan.attr,
ac9b1e5b
DT
1586 &dev_attr_display.attr,
1587 &dev_attr_ledd.attr,
33989ba6 1588 &dev_attr_ls_value.attr,
ac9b1e5b
DT
1589 &dev_attr_ls_level.attr,
1590 &dev_attr_ls_switch.attr,
1591 &dev_attr_gps.attr,
1592 NULL
1593};
2a1fd64c 1594
587a1f16 1595static umode_t asus_sysfs_is_visible(struct kobject *kobj,
ac9b1e5b
DT
1596 struct attribute *attr,
1597 int idx)
2a1fd64c 1598{
ac9b1e5b
DT
1599 struct device *dev = container_of(kobj, struct device, kobj);
1600 struct platform_device *pdev = to_platform_device(dev);
1601 struct asus_laptop *asus = platform_get_drvdata(pdev);
1602 acpi_handle handle = asus->handle;
1603 bool supported;
1604
33989ba6
AR
1605 if (asus->is_pega_lucid) {
1606 /* no ls_level interface on the Lucid */
1607 if (attr == &dev_attr_ls_switch.attr)
1608 supported = true;
1609 else if (attr == &dev_attr_ls_level.attr)
1610 supported = false;
1611 else
1612 goto normal;
1613
03070e7c 1614 return supported ? attr->mode : 0;
33989ba6
AR
1615 }
1616
1617normal:
ac9b1e5b
DT
1618 if (attr == &dev_attr_wlan.attr) {
1619 supported = !acpi_check_handle(handle, METHOD_WLAN, NULL);
1620
1621 } else if (attr == &dev_attr_bluetooth.attr) {
1622 supported = !acpi_check_handle(handle, METHOD_BLUETOOTH, NULL);
1623
1624 } else if (attr == &dev_attr_display.attr) {
1625 supported = !acpi_check_handle(handle, METHOD_SWITCH_DISPLAY, NULL);
1626
ba1ff5be
CC
1627 } else if (attr == &dev_attr_wimax.attr) {
1628 supported =
1629 !acpi_check_handle(asus->handle, METHOD_WIMAX, NULL);
1630
1631 } else if (attr == &dev_attr_wwan.attr) {
1632 supported = !acpi_check_handle(asus->handle, METHOD_WWAN, NULL);
1633
ac9b1e5b
DT
1634 } else if (attr == &dev_attr_ledd.attr) {
1635 supported = !acpi_check_handle(handle, METHOD_LEDD, NULL);
1636
1637 } else if (attr == &dev_attr_ls_switch.attr ||
1638 attr == &dev_attr_ls_level.attr) {
1639 supported = !acpi_check_handle(handle, METHOD_ALS_CONTROL, NULL) &&
33989ba6
AR
1640 !acpi_check_handle(handle, METHOD_ALS_LEVEL, NULL);
1641 } else if (attr == &dev_attr_ls_value.attr) {
1642 supported = asus->is_pega_lucid;
ac9b1e5b
DT
1643 } else if (attr == &dev_attr_gps.attr) {
1644 supported = !acpi_check_handle(handle, METHOD_GPS_ON, NULL) &&
1645 !acpi_check_handle(handle, METHOD_GPS_OFF, NULL) &&
1646 !acpi_check_handle(handle, METHOD_GPS_STATUS, NULL);
1647 } else {
1648 supported = true;
2a1fd64c
CC
1649 }
1650
ac9b1e5b
DT
1651 return supported ? attr->mode : 0;
1652}
2a1fd64c 1653
2a1fd64c 1654
ac9b1e5b
DT
1655static const struct attribute_group asus_attr_group = {
1656 .is_visible = asus_sysfs_is_visible,
1657 .attrs = asus_attributes,
1658};
85091b71 1659
9129d14d 1660static int asus_platform_init(struct asus_laptop *asus)
600ad520 1661{
71e687dc 1662 int result;
600ad520 1663
50a90c4d
CC
1664 asus->platform_device = platform_device_alloc(ASUS_LAPTOP_FILE, -1);
1665 if (!asus->platform_device)
600ad520 1666 return -ENOMEM;
9129d14d 1667 platform_set_drvdata(asus->platform_device, asus);
600ad520 1668
71e687dc
CC
1669 result = platform_device_add(asus->platform_device);
1670 if (result)
600ad520
CC
1671 goto fail_platform_device;
1672
ac9b1e5b
DT
1673 result = sysfs_create_group(&asus->platform_device->dev.kobj,
1674 &asus_attr_group);
71e687dc 1675 if (result)
600ad520 1676 goto fail_sysfs;
ac9b1e5b 1677
600ad520
CC
1678 return 0;
1679
1680fail_sysfs:
50a90c4d 1681 platform_device_del(asus->platform_device);
600ad520 1682fail_platform_device:
50a90c4d 1683 platform_device_put(asus->platform_device);
71e687dc 1684 return result;
600ad520
CC
1685}
1686
9129d14d 1687static void asus_platform_exit(struct asus_laptop *asus)
600ad520 1688{
ac9b1e5b 1689 sysfs_remove_group(&asus->platform_device->dev.kobj, &asus_attr_group);
50a90c4d 1690 platform_device_unregister(asus->platform_device);
600ad520
CC
1691}
1692
1693static struct platform_driver platform_driver = {
8def05fa 1694 .driver = {
9129d14d 1695 .name = ASUS_LAPTOP_FILE,
b23910c2 1696 },
85091b71
CC
1697};
1698
85091b71 1699/*
50a90c4d
CC
1700 * This function is used to initialize the context with right values. In this
1701 * method, we can make all the detection we want, and modify the asus_laptop
1702 * struct
85091b71 1703 */
7c247645 1704static int asus_laptop_get_info(struct asus_laptop *asus)
85091b71
CC
1705{
1706 struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
85091b71 1707 union acpi_object *model = NULL;
cb7da022 1708 unsigned long long bsts_result;
85091b71
CC
1709 char *string = NULL;
1710 acpi_status status;
1711
1712 /*
1713 * Get DSDT headers early enough to allow for differentiating between
1714 * models, but late enough to allow acpi_bus_register_driver() to fail
1715 * before doing anything ACPI-specific. Should we encounter a machine,
1716 * which needs special handling (i.e. its hotkey device has a different
7c247645 1717 * HID), this bit will be moved.
85091b71 1718 */
7c247645 1719 status = acpi_get_table(ACPI_SIG_DSDT, 1, &asus->dsdt_info);
85091b71 1720 if (ACPI_FAILURE(status))
5ad77dcf 1721 pr_warn("Couldn't get the DSDT table header\n");
85091b71
CC
1722
1723 /* We have to write 0 on init this far for all ASUS models */
50a90c4d 1724 if (write_acpi_int_ret(asus->handle, "INIT", 0, &buffer)) {
2fcc23da 1725 pr_err("Hotkey initialization failed\n");
85091b71
CC
1726 return -ENODEV;
1727 }
1728
1729 /* This needs to be called for some laptops to init properly */
9a816850 1730 status =
50a90c4d 1731 acpi_evaluate_integer(asus->handle, "BSTS", NULL, &bsts_result);
9a816850 1732 if (ACPI_FAILURE(status))
5ad77dcf 1733 pr_warn("Error calling BSTS\n");
85091b71 1734 else if (bsts_result)
2fcc23da 1735 pr_notice("BSTS called, 0x%02x returned\n",
9a816850 1736 (uint) bsts_result);
85091b71 1737
185e5af9 1738 /* This too ... */
e5593bf1
CC
1739 if (write_acpi_int(asus->handle, "CWAP", wapf))
1740 pr_err("Error calling CWAP(%d)\n", wapf);
85091b71
CC
1741 /*
1742 * Try to match the object returned by INIT to the specific model.
1743 * Handle every possible object (or the lack of thereof) the DSDT
1744 * writers might throw at us. When in trouble, we pass NULL to
1745 * asus_model_match() and try something completely different.
1746 */
1747 if (buffer.pointer) {
1748 model = buffer.pointer;
1749 switch (model->type) {
1750 case ACPI_TYPE_STRING:
1751 string = model->string.pointer;
1752 break;
1753 case ACPI_TYPE_BUFFER:
1754 string = model->buffer.pointer;
1755 break;
1756 default:
1757 string = "";
1758 break;
1759 }
1760 }
50a90c4d 1761 asus->name = kstrdup(string, GFP_KERNEL);
d8eca110
AL
1762 if (!asus->name) {
1763 kfree(buffer.pointer);
85091b71 1764 return -ENOMEM;
d8eca110 1765 }
85091b71 1766
9f897484 1767 if (string)
2fcc23da 1768 pr_notice(" %s model detected\n", string);
85091b71 1769
d99b577c 1770 if (!acpi_check_handle(asus->handle, METHOD_WL_STATUS, NULL))
aa9df930 1771 asus->have_rsts = true;
4564de17 1772
85091b71
CC
1773 kfree(model);
1774
1775 return AE_OK;
1776}
1777
b859f159 1778static int asus_acpi_init(struct asus_laptop *asus)
85091b71 1779{
600ad520 1780 int result = 0;
85091b71 1781
50a90c4d 1782 result = acpi_bus_get_status(asus->device);
600ad520 1783 if (result)
85091b71 1784 return result;
50a90c4d 1785 if (!asus->device->status.present) {
600ad520 1786 pr_err("Hotkey device not present, aborting\n");
85091b71
CC
1787 return -ENODEV;
1788 }
1789
7c247645 1790 result = asus_laptop_get_info(asus);
034ce90a 1791 if (result)
600ad520 1792 return result;
034ce90a 1793
774b0678
CC
1794 if (!strcmp(bled_type, "led"))
1795 asus->bled_type = TYPE_LED;
1796 else if (!strcmp(bled_type, "rfkill"))
1797 asus->bled_type = TYPE_RFKILL;
1798
1799 if (!strcmp(wled_type, "led"))
1800 asus->wled_type = TYPE_LED;
1801 else if (!strcmp(wled_type, "rfkill"))
1802 asus->wled_type = TYPE_RFKILL;
1803
be4ee82d 1804 if (bluetooth_status >= 0)
e5593bf1
CC
1805 asus_bluetooth_set(asus, !!bluetooth_status);
1806
d0930a2d
CC
1807 if (wlan_status >= 0)
1808 asus_wlan_set(asus, !!wlan_status);
85091b71 1809
ba1ff5be
CC
1810 if (wimax_status >= 0)
1811 asus_wimax_set(asus, !!wimax_status);
1812
1813 if (wwan_status >= 0)
1814 asus_wwan_set(asus, !!wwan_status);
1815
600ad520 1816 /* Keyboard Backlight is on by default */
d99b577c 1817 if (!acpi_check_handle(asus->handle, METHOD_KBD_LIGHT_SET, NULL))
4d441513 1818 asus_kled_set(asus, 1);
600ad520
CC
1819
1820 /* LED display is off by default */
50a90c4d 1821 asus->ledd_status = 0xFFF;
600ad520
CC
1822
1823 /* Set initial values of light sensor and level */
abec04db 1824 asus->light_switch = !!als_status;
be4ee82d 1825 asus->light_level = 5; /* level 5 for sensor sensitivity */
600ad520 1826
33989ba6
AR
1827 if (asus->is_pega_lucid) {
1828 asus_als_switch(asus, asus->light_switch);
1829 } else if (!acpi_check_handle(asus->handle, METHOD_ALS_CONTROL, NULL) &&
1830 !acpi_check_handle(asus->handle, METHOD_ALS_LEVEL, NULL)) {
4d441513 1831 asus_als_switch(asus, asus->light_switch);
4d441513 1832 asus_als_level(asus, asus->light_level);
d99b577c 1833 }
600ad520 1834
600ad520
CC
1835 return result;
1836}
1837
b859f159 1838static void asus_dmi_check(void)
af96f877
CC
1839{
1840 const char *model;
1841
1842 model = dmi_get_system_info(DMI_PRODUCT_NAME);
1843 if (!model)
1844 return;
1845
1846 /* On L1400B WLED control the sound card, don't mess with it ... */
1847 if (strncmp(model, "L1400B", 6) == 0) {
1848 wlan_status = -1;
1849 }
1850}
1851
71e687dc
CC
1852static bool asus_device_present;
1853
b859f159 1854static int asus_acpi_add(struct acpi_device *device)
600ad520 1855{
9129d14d 1856 struct asus_laptop *asus;
600ad520
CC
1857 int result;
1858
1859 pr_notice("Asus Laptop Support version %s\n",
1860 ASUS_LAPTOP_VERSION);
50a90c4d
CC
1861 asus = kzalloc(sizeof(struct asus_laptop), GFP_KERNEL);
1862 if (!asus)
600ad520 1863 return -ENOMEM;
50a90c4d
CC
1864 asus->handle = device->handle;
1865 strcpy(acpi_device_name(device), ASUS_LAPTOP_DEVICE_NAME);
1866 strcpy(acpi_device_class(device), ASUS_LAPTOP_CLASS);
1867 device->driver_data = asus;
1868 asus->device = device;
600ad520 1869
af96f877
CC
1870 asus_dmi_check();
1871
9129d14d 1872 result = asus_acpi_init(asus);
8def05fa 1873 if (result)
600ad520 1874 goto fail_platform;
85091b71 1875
600ad520 1876 /*
8819de7f
AR
1877 * Need platform type detection first, then the platform
1878 * device. It is used as a parent for the sub-devices below.
600ad520 1879 */
8819de7f 1880 asus->is_pega_lucid = asus_check_pega_lucid(asus);
9129d14d 1881 result = asus_platform_init(asus);
116bf2e0 1882 if (result)
600ad520 1883 goto fail_platform;
116bf2e0 1884
8b9e6b70 1885 if (acpi_video_get_backlight_type() == acpi_backlight_vendor) {
9129d14d 1886 result = asus_backlight_init(asus);
116bf2e0
CC
1887 if (result)
1888 goto fail_backlight;
8b9e6b70 1889 }
116bf2e0 1890
9129d14d 1891 result = asus_input_init(asus);
600ad520
CC
1892 if (result)
1893 goto fail_input;
1894
9129d14d 1895 result = asus_led_init(asus);
600ad520
CC
1896 if (result)
1897 goto fail_led;
1898
18e1311e 1899 result = asus_rfkill_init(asus);
3c8671ff 1900 if (result && result != -ENODEV)
18e1311e
CC
1901 goto fail_rfkill;
1902
b23910c2
AR
1903 result = pega_accel_init(asus);
1904 if (result && result != -ENODEV)
1905 goto fail_pega_accel;
1906
14908399
AA
1907 result = pega_rfkill_init(asus);
1908 if (result && result != -ENODEV)
1909 goto fail_pega_rfkill;
1910
600ad520 1911 asus_device_present = true;
8def05fa 1912 return 0;
85091b71 1913
14908399
AA
1914fail_pega_rfkill:
1915 pega_accel_exit(asus);
b23910c2
AR
1916fail_pega_accel:
1917 asus_rfkill_exit(asus);
18e1311e
CC
1918fail_rfkill:
1919 asus_led_exit(asus);
600ad520 1920fail_led:
9129d14d 1921 asus_input_exit(asus);
600ad520 1922fail_input:
9129d14d 1923 asus_backlight_exit(asus);
116bf2e0 1924fail_backlight:
9129d14d 1925 asus_platform_exit(asus);
600ad520 1926fail_platform:
50a90c4d 1927 kfree(asus);
116bf2e0 1928
600ad520
CC
1929 return result;
1930}
116bf2e0 1931
51fac838 1932static int asus_acpi_remove(struct acpi_device *device)
600ad520 1933{
9129d14d
CC
1934 struct asus_laptop *asus = acpi_driver_data(device);
1935
1936 asus_backlight_exit(asus);
18e1311e 1937 asus_rfkill_exit(asus);
9129d14d
CC
1938 asus_led_exit(asus);
1939 asus_input_exit(asus);
b23910c2 1940 pega_accel_exit(asus);
9129d14d 1941 asus_platform_exit(asus);
600ad520 1942
50a90c4d
CC
1943 kfree(asus->name);
1944 kfree(asus);
600ad520
CC
1945 return 0;
1946}
1947
1948static const struct acpi_device_id asus_device_ids[] = {
1949 {"ATK0100", 0},
1950 {"ATK0101", 0},
1951 {"", 0},
1952};
1953MODULE_DEVICE_TABLE(acpi, asus_device_ids);
85091b71 1954
600ad520 1955static struct acpi_driver asus_acpi_driver = {
50a90c4d
CC
1956 .name = ASUS_LAPTOP_NAME,
1957 .class = ASUS_LAPTOP_CLASS,
600ad520
CC
1958 .owner = THIS_MODULE,
1959 .ids = asus_device_ids,
1960 .flags = ACPI_DRIVER_ALL_NOTIFY_EVENTS,
1961 .ops = {
1962 .add = asus_acpi_add,
1963 .remove = asus_acpi_remove,
1964 .notify = asus_acpi_notify,
1965 },
1966};
85091b71 1967
600ad520
CC
1968static int __init asus_laptop_init(void)
1969{
1970 int result;
85091b71 1971
600ad520
CC
1972 result = platform_driver_register(&platform_driver);
1973 if (result < 0)
1974 return result;
034ce90a 1975
600ad520
CC
1976 result = acpi_bus_register_driver(&asus_acpi_driver);
1977 if (result < 0)
1978 goto fail_acpi_driver;
1979 if (!asus_device_present) {
1980 result = -ENODEV;
1981 goto fail_no_device;
1982 }
1983 return 0;
85091b71 1984
600ad520
CC
1985fail_no_device:
1986 acpi_bus_unregister_driver(&asus_acpi_driver);
1987fail_acpi_driver:
1988 platform_driver_unregister(&platform_driver);
85091b71
CC
1989 return result;
1990}
1991
600ad520
CC
1992static void __exit asus_laptop_exit(void)
1993{
1994 acpi_bus_unregister_driver(&asus_acpi_driver);
1995 platform_driver_unregister(&platform_driver);
1996}
1997
85091b71
CC
1998module_init(asus_laptop_init);
1999module_exit(asus_laptop_exit);