GNU Linux-libre 4.14.303-gnu1
[releases.git] / drivers / platform / x86 / sony-laptop.c
1 /*
2  * ACPI Sony Notebook Control Driver (SNC and SPIC)
3  *
4  * Copyright (C) 2004-2005 Stelian Pop <stelian@popies.net>
5  * Copyright (C) 2007-2009 Mattia Dongili <malattia@linux.it>
6  *
7  * Parts of this driver inspired from asus_acpi.c and ibm_acpi.c
8  * which are copyrighted by their respective authors.
9  *
10  * The SNY6001 driver part is based on the sonypi driver which includes
11  * material from:
12  *
13  * Copyright (C) 2001-2005 Stelian Pop <stelian@popies.net>
14  *
15  * Copyright (C) 2005 Narayanan R S <nars@kadamba.org>
16  *
17  * Copyright (C) 2001-2002 AlcĂ´ve <www.alcove.com>
18  *
19  * Copyright (C) 2001 Michael Ashley <m.ashley@unsw.edu.au>
20  *
21  * Copyright (C) 2001 Junichi Morita <jun1m@mars.dti.ne.jp>
22  *
23  * Copyright (C) 2000 Takaya Kinjo <t-kinjo@tc4.so-net.ne.jp>
24  *
25  * Copyright (C) 2000 Andrew Tridgell <tridge@valinux.com>
26  *
27  * Earlier work by Werner Almesberger, Paul `Rusty' Russell and Paul Mackerras.
28  *
29  * This program is free software; you can redistribute it and/or modify
30  * it under the terms of the GNU General Public License as published by
31  * the Free Software Foundation; either version 2 of the License, or
32  * (at your option) any later version.
33  *
34  * This program is distributed in the hope that it will be useful,
35  * but WITHOUT ANY WARRANTY; without even the implied warranty of
36  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
37  * GNU General Public License for more details.
38  *
39  * You should have received a copy of the GNU General Public License
40  * along with this program; if not, write to the Free Software
41  * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
42  *
43  */
44
45 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
46
47 #include <linux/kernel.h>
48 #include <linux/module.h>
49 #include <linux/moduleparam.h>
50 #include <linux/init.h>
51 #include <linux/types.h>
52 #include <linux/backlight.h>
53 #include <linux/platform_device.h>
54 #include <linux/err.h>
55 #include <linux/dmi.h>
56 #include <linux/pci.h>
57 #include <linux/interrupt.h>
58 #include <linux/delay.h>
59 #include <linux/input.h>
60 #include <linux/kfifo.h>
61 #include <linux/workqueue.h>
62 #include <linux/acpi.h>
63 #include <linux/slab.h>
64 #include <linux/sonypi.h>
65 #include <linux/sony-laptop.h>
66 #include <linux/rfkill.h>
67 #ifdef CONFIG_SONYPI_COMPAT
68 #include <linux/poll.h>
69 #include <linux/miscdevice.h>
70 #endif
71 #include <linux/uaccess.h>
72 #include <acpi/video.h>
73
74 #define dprintk(fmt, ...)                       \
75 do {                                            \
76         if (debug)                              \
77                 pr_warn(fmt, ##__VA_ARGS__);    \
78 } while (0)
79
80 #define SONY_NC_CLASS           "sony-nc"
81 #define SONY_NC_HID             "SNY5001"
82 #define SONY_NC_DRIVER_NAME     "Sony Notebook Control Driver"
83
84 #define SONY_PIC_CLASS          "sony-pic"
85 #define SONY_PIC_HID            "SNY6001"
86 #define SONY_PIC_DRIVER_NAME    "Sony Programmable IO Control Driver"
87
88 MODULE_AUTHOR("Stelian Pop, Mattia Dongili");
89 MODULE_DESCRIPTION("Sony laptop extras driver (SPIC and SNC ACPI device)");
90 MODULE_LICENSE("GPL");
91
92 static int debug;
93 module_param(debug, int, 0);
94 MODULE_PARM_DESC(debug, "set this to 1 (and RTFM) if you want to help "
95                  "the development of this driver");
96
97 static int no_spic;             /* = 0 */
98 module_param(no_spic, int, 0444);
99 MODULE_PARM_DESC(no_spic,
100                  "set this if you don't want to enable the SPIC device");
101
102 static int compat;              /* = 0 */
103 module_param(compat, int, 0444);
104 MODULE_PARM_DESC(compat,
105                  "set this if you want to enable backward compatibility mode");
106
107 static unsigned long mask = 0xffffffff;
108 module_param(mask, ulong, 0644);
109 MODULE_PARM_DESC(mask,
110                  "set this to the mask of event you want to enable (see doc)");
111
112 static int camera;              /* = 0 */
113 module_param(camera, int, 0444);
114 MODULE_PARM_DESC(camera,
115                  "set this to 1 to enable Motion Eye camera controls "
116                  "(only use it if you have a C1VE or C1VN model)");
117
118 #ifdef CONFIG_SONYPI_COMPAT
119 static int minor = -1;
120 module_param(minor, int, 0);
121 MODULE_PARM_DESC(minor,
122                  "minor number of the misc device for the SPIC compatibility code, "
123                  "default is -1 (automatic)");
124 #endif
125
126 static int kbd_backlight = -1;
127 module_param(kbd_backlight, int, 0444);
128 MODULE_PARM_DESC(kbd_backlight,
129                  "set this to 0 to disable keyboard backlight, "
130                  "1 to enable it with automatic control and 2 to have it always "
131                  "on (default: no change from current value)");
132
133 static int kbd_backlight_timeout = -1;
134 module_param(kbd_backlight_timeout, int, 0444);
135 MODULE_PARM_DESC(kbd_backlight_timeout,
136                  "meaningful values vary from 0 to 3 and their meaning depends "
137                  "on the model (default: no change from current value)");
138
139 #ifdef CONFIG_PM_SLEEP
140 static void sony_nc_thermal_resume(void);
141 #endif
142 static int sony_nc_kbd_backlight_setup(struct platform_device *pd,
143                 unsigned int handle);
144 static void sony_nc_kbd_backlight_cleanup(struct platform_device *pd,
145                 unsigned int handle);
146
147 static int sony_nc_battery_care_setup(struct platform_device *pd,
148                 unsigned int handle);
149 static void sony_nc_battery_care_cleanup(struct platform_device *pd);
150
151 static int sony_nc_thermal_setup(struct platform_device *pd);
152 static void sony_nc_thermal_cleanup(struct platform_device *pd);
153
154 static int sony_nc_lid_resume_setup(struct platform_device *pd,
155                                     unsigned int handle);
156 static void sony_nc_lid_resume_cleanup(struct platform_device *pd);
157
158 static int sony_nc_gfx_switch_setup(struct platform_device *pd,
159                 unsigned int handle);
160 static void sony_nc_gfx_switch_cleanup(struct platform_device *pd);
161 static int __sony_nc_gfx_switch_status_get(void);
162
163 static int sony_nc_highspeed_charging_setup(struct platform_device *pd);
164 static void sony_nc_highspeed_charging_cleanup(struct platform_device *pd);
165
166 static int sony_nc_lowbatt_setup(struct platform_device *pd);
167 static void sony_nc_lowbatt_cleanup(struct platform_device *pd);
168
169 static int sony_nc_fanspeed_setup(struct platform_device *pd);
170 static void sony_nc_fanspeed_cleanup(struct platform_device *pd);
171
172 static int sony_nc_usb_charge_setup(struct platform_device *pd);
173 static void sony_nc_usb_charge_cleanup(struct platform_device *pd);
174
175 static int sony_nc_panelid_setup(struct platform_device *pd);
176 static void sony_nc_panelid_cleanup(struct platform_device *pd);
177
178 static int sony_nc_smart_conn_setup(struct platform_device *pd);
179 static void sony_nc_smart_conn_cleanup(struct platform_device *pd);
180
181 static int sony_nc_touchpad_setup(struct platform_device *pd,
182                                   unsigned int handle);
183 static void sony_nc_touchpad_cleanup(struct platform_device *pd);
184
185 enum sony_nc_rfkill {
186         SONY_WIFI,
187         SONY_BLUETOOTH,
188         SONY_WWAN,
189         SONY_WIMAX,
190         N_SONY_RFKILL,
191 };
192
193 static int sony_rfkill_handle;
194 static struct rfkill *sony_rfkill_devices[N_SONY_RFKILL];
195 static int sony_rfkill_address[N_SONY_RFKILL] = {0x300, 0x500, 0x700, 0x900};
196 static int sony_nc_rfkill_setup(struct acpi_device *device,
197                 unsigned int handle);
198 static void sony_nc_rfkill_cleanup(void);
199 static void sony_nc_rfkill_update(void);
200
201 /*********** Input Devices ***********/
202
203 #define SONY_LAPTOP_BUF_SIZE    128
204 struct sony_laptop_input_s {
205         atomic_t                users;
206         struct input_dev        *jog_dev;
207         struct input_dev        *key_dev;
208         struct kfifo            fifo;
209         spinlock_t              fifo_lock;
210         struct timer_list       release_key_timer;
211 };
212
213 static struct sony_laptop_input_s sony_laptop_input = {
214         .users = ATOMIC_INIT(0),
215 };
216
217 struct sony_laptop_keypress {
218         struct input_dev *dev;
219         int key;
220 };
221
222 /* Correspondance table between sonypi events
223  * and input layer indexes in the keymap
224  */
225 static const int sony_laptop_input_index[] = {
226         -1,     /*  0 no event */
227         -1,     /*  1 SONYPI_EVENT_JOGDIAL_DOWN */
228         -1,     /*  2 SONYPI_EVENT_JOGDIAL_UP */
229         -1,     /*  3 SONYPI_EVENT_JOGDIAL_DOWN_PRESSED */
230         -1,     /*  4 SONYPI_EVENT_JOGDIAL_UP_PRESSED */
231         -1,     /*  5 SONYPI_EVENT_JOGDIAL_PRESSED */
232         -1,     /*  6 SONYPI_EVENT_JOGDIAL_RELEASED */
233          0,     /*  7 SONYPI_EVENT_CAPTURE_PRESSED */
234          1,     /*  8 SONYPI_EVENT_CAPTURE_RELEASED */
235          2,     /*  9 SONYPI_EVENT_CAPTURE_PARTIALPRESSED */
236          3,     /* 10 SONYPI_EVENT_CAPTURE_PARTIALRELEASED */
237          4,     /* 11 SONYPI_EVENT_FNKEY_ESC */
238          5,     /* 12 SONYPI_EVENT_FNKEY_F1 */
239          6,     /* 13 SONYPI_EVENT_FNKEY_F2 */
240          7,     /* 14 SONYPI_EVENT_FNKEY_F3 */
241          8,     /* 15 SONYPI_EVENT_FNKEY_F4 */
242          9,     /* 16 SONYPI_EVENT_FNKEY_F5 */
243         10,     /* 17 SONYPI_EVENT_FNKEY_F6 */
244         11,     /* 18 SONYPI_EVENT_FNKEY_F7 */
245         12,     /* 19 SONYPI_EVENT_FNKEY_F8 */
246         13,     /* 20 SONYPI_EVENT_FNKEY_F9 */
247         14,     /* 21 SONYPI_EVENT_FNKEY_F10 */
248         15,     /* 22 SONYPI_EVENT_FNKEY_F11 */
249         16,     /* 23 SONYPI_EVENT_FNKEY_F12 */
250         17,     /* 24 SONYPI_EVENT_FNKEY_1 */
251         18,     /* 25 SONYPI_EVENT_FNKEY_2 */
252         19,     /* 26 SONYPI_EVENT_FNKEY_D */
253         20,     /* 27 SONYPI_EVENT_FNKEY_E */
254         21,     /* 28 SONYPI_EVENT_FNKEY_F */
255         22,     /* 29 SONYPI_EVENT_FNKEY_S */
256         23,     /* 30 SONYPI_EVENT_FNKEY_B */
257         24,     /* 31 SONYPI_EVENT_BLUETOOTH_PRESSED */
258         25,     /* 32 SONYPI_EVENT_PKEY_P1 */
259         26,     /* 33 SONYPI_EVENT_PKEY_P2 */
260         27,     /* 34 SONYPI_EVENT_PKEY_P3 */
261         28,     /* 35 SONYPI_EVENT_BACK_PRESSED */
262         -1,     /* 36 SONYPI_EVENT_LID_CLOSED */
263         -1,     /* 37 SONYPI_EVENT_LID_OPENED */
264         29,     /* 38 SONYPI_EVENT_BLUETOOTH_ON */
265         30,     /* 39 SONYPI_EVENT_BLUETOOTH_OFF */
266         31,     /* 40 SONYPI_EVENT_HELP_PRESSED */
267         32,     /* 41 SONYPI_EVENT_FNKEY_ONLY */
268         33,     /* 42 SONYPI_EVENT_JOGDIAL_FAST_DOWN */
269         34,     /* 43 SONYPI_EVENT_JOGDIAL_FAST_UP */
270         35,     /* 44 SONYPI_EVENT_JOGDIAL_FAST_DOWN_PRESSED */
271         36,     /* 45 SONYPI_EVENT_JOGDIAL_FAST_UP_PRESSED */
272         37,     /* 46 SONYPI_EVENT_JOGDIAL_VFAST_DOWN */
273         38,     /* 47 SONYPI_EVENT_JOGDIAL_VFAST_UP */
274         39,     /* 48 SONYPI_EVENT_JOGDIAL_VFAST_DOWN_PRESSED */
275         40,     /* 49 SONYPI_EVENT_JOGDIAL_VFAST_UP_PRESSED */
276         41,     /* 50 SONYPI_EVENT_ZOOM_PRESSED */
277         42,     /* 51 SONYPI_EVENT_THUMBPHRASE_PRESSED */
278         43,     /* 52 SONYPI_EVENT_MEYE_FACE */
279         44,     /* 53 SONYPI_EVENT_MEYE_OPPOSITE */
280         45,     /* 54 SONYPI_EVENT_MEMORYSTICK_INSERT */
281         46,     /* 55 SONYPI_EVENT_MEMORYSTICK_EJECT */
282         -1,     /* 56 SONYPI_EVENT_ANYBUTTON_RELEASED */
283         -1,     /* 57 SONYPI_EVENT_BATTERY_INSERT */
284         -1,     /* 58 SONYPI_EVENT_BATTERY_REMOVE */
285         -1,     /* 59 SONYPI_EVENT_FNKEY_RELEASED */
286         47,     /* 60 SONYPI_EVENT_WIRELESS_ON */
287         48,     /* 61 SONYPI_EVENT_WIRELESS_OFF */
288         49,     /* 62 SONYPI_EVENT_ZOOM_IN_PRESSED */
289         50,     /* 63 SONYPI_EVENT_ZOOM_OUT_PRESSED */
290         51,     /* 64 SONYPI_EVENT_CD_EJECT_PRESSED */
291         52,     /* 65 SONYPI_EVENT_MODEKEY_PRESSED */
292         53,     /* 66 SONYPI_EVENT_PKEY_P4 */
293         54,     /* 67 SONYPI_EVENT_PKEY_P5 */
294         55,     /* 68 SONYPI_EVENT_SETTINGKEY_PRESSED */
295         56,     /* 69 SONYPI_EVENT_VOLUME_INC_PRESSED */
296         57,     /* 70 SONYPI_EVENT_VOLUME_DEC_PRESSED */
297         -1,     /* 71 SONYPI_EVENT_BRIGHTNESS_PRESSED */
298         58,     /* 72 SONYPI_EVENT_MEDIA_PRESSED */
299         59,     /* 72 SONYPI_EVENT_VENDOR_PRESSED */
300 };
301
302 static int sony_laptop_input_keycode_map[] = {
303         KEY_CAMERA,     /*  0 SONYPI_EVENT_CAPTURE_PRESSED */
304         KEY_RESERVED,   /*  1 SONYPI_EVENT_CAPTURE_RELEASED */
305         KEY_RESERVED,   /*  2 SONYPI_EVENT_CAPTURE_PARTIALPRESSED */
306         KEY_RESERVED,   /*  3 SONYPI_EVENT_CAPTURE_PARTIALRELEASED */
307         KEY_FN_ESC,     /*  4 SONYPI_EVENT_FNKEY_ESC */
308         KEY_FN_F1,      /*  5 SONYPI_EVENT_FNKEY_F1 */
309         KEY_FN_F2,      /*  6 SONYPI_EVENT_FNKEY_F2 */
310         KEY_FN_F3,      /*  7 SONYPI_EVENT_FNKEY_F3 */
311         KEY_FN_F4,      /*  8 SONYPI_EVENT_FNKEY_F4 */
312         KEY_FN_F5,      /*  9 SONYPI_EVENT_FNKEY_F5 */
313         KEY_FN_F6,      /* 10 SONYPI_EVENT_FNKEY_F6 */
314         KEY_FN_F7,      /* 11 SONYPI_EVENT_FNKEY_F7 */
315         KEY_FN_F8,      /* 12 SONYPI_EVENT_FNKEY_F8 */
316         KEY_FN_F9,      /* 13 SONYPI_EVENT_FNKEY_F9 */
317         KEY_FN_F10,     /* 14 SONYPI_EVENT_FNKEY_F10 */
318         KEY_FN_F11,     /* 15 SONYPI_EVENT_FNKEY_F11 */
319         KEY_FN_F12,     /* 16 SONYPI_EVENT_FNKEY_F12 */
320         KEY_FN_1,       /* 17 SONYPI_EVENT_FNKEY_1 */
321         KEY_FN_2,       /* 18 SONYPI_EVENT_FNKEY_2 */
322         KEY_FN_D,       /* 19 SONYPI_EVENT_FNKEY_D */
323         KEY_FN_E,       /* 20 SONYPI_EVENT_FNKEY_E */
324         KEY_FN_F,       /* 21 SONYPI_EVENT_FNKEY_F */
325         KEY_FN_S,       /* 22 SONYPI_EVENT_FNKEY_S */
326         KEY_FN_B,       /* 23 SONYPI_EVENT_FNKEY_B */
327         KEY_BLUETOOTH,  /* 24 SONYPI_EVENT_BLUETOOTH_PRESSED */
328         KEY_PROG1,      /* 25 SONYPI_EVENT_PKEY_P1 */
329         KEY_PROG2,      /* 26 SONYPI_EVENT_PKEY_P2 */
330         KEY_PROG3,      /* 27 SONYPI_EVENT_PKEY_P3 */
331         KEY_BACK,       /* 28 SONYPI_EVENT_BACK_PRESSED */
332         KEY_BLUETOOTH,  /* 29 SONYPI_EVENT_BLUETOOTH_ON */
333         KEY_BLUETOOTH,  /* 30 SONYPI_EVENT_BLUETOOTH_OFF */
334         KEY_HELP,       /* 31 SONYPI_EVENT_HELP_PRESSED */
335         KEY_FN,         /* 32 SONYPI_EVENT_FNKEY_ONLY */
336         KEY_RESERVED,   /* 33 SONYPI_EVENT_JOGDIAL_FAST_DOWN */
337         KEY_RESERVED,   /* 34 SONYPI_EVENT_JOGDIAL_FAST_UP */
338         KEY_RESERVED,   /* 35 SONYPI_EVENT_JOGDIAL_FAST_DOWN_PRESSED */
339         KEY_RESERVED,   /* 36 SONYPI_EVENT_JOGDIAL_FAST_UP_PRESSED */
340         KEY_RESERVED,   /* 37 SONYPI_EVENT_JOGDIAL_VFAST_DOWN */
341         KEY_RESERVED,   /* 38 SONYPI_EVENT_JOGDIAL_VFAST_UP */
342         KEY_RESERVED,   /* 39 SONYPI_EVENT_JOGDIAL_VFAST_DOWN_PRESSED */
343         KEY_RESERVED,   /* 40 SONYPI_EVENT_JOGDIAL_VFAST_UP_PRESSED */
344         KEY_ZOOM,       /* 41 SONYPI_EVENT_ZOOM_PRESSED */
345         BTN_THUMB,      /* 42 SONYPI_EVENT_THUMBPHRASE_PRESSED */
346         KEY_RESERVED,   /* 43 SONYPI_EVENT_MEYE_FACE */
347         KEY_RESERVED,   /* 44 SONYPI_EVENT_MEYE_OPPOSITE */
348         KEY_RESERVED,   /* 45 SONYPI_EVENT_MEMORYSTICK_INSERT */
349         KEY_RESERVED,   /* 46 SONYPI_EVENT_MEMORYSTICK_EJECT */
350         KEY_WLAN,       /* 47 SONYPI_EVENT_WIRELESS_ON */
351         KEY_WLAN,       /* 48 SONYPI_EVENT_WIRELESS_OFF */
352         KEY_ZOOMIN,     /* 49 SONYPI_EVENT_ZOOM_IN_PRESSED */
353         KEY_ZOOMOUT,    /* 50 SONYPI_EVENT_ZOOM_OUT_PRESSED */
354         KEY_EJECTCD,    /* 51 SONYPI_EVENT_CD_EJECT_PRESSED */
355         KEY_F13,        /* 52 SONYPI_EVENT_MODEKEY_PRESSED */
356         KEY_PROG4,      /* 53 SONYPI_EVENT_PKEY_P4 */
357         KEY_F14,        /* 54 SONYPI_EVENT_PKEY_P5 */
358         KEY_F15,        /* 55 SONYPI_EVENT_SETTINGKEY_PRESSED */
359         KEY_VOLUMEUP,   /* 56 SONYPI_EVENT_VOLUME_INC_PRESSED */
360         KEY_VOLUMEDOWN, /* 57 SONYPI_EVENT_VOLUME_DEC_PRESSED */
361         KEY_MEDIA,      /* 58 SONYPI_EVENT_MEDIA_PRESSED */
362         KEY_VENDOR,     /* 59 SONYPI_EVENT_VENDOR_PRESSED */
363 };
364
365 /* release buttons after a short delay if pressed */
366 static void do_sony_laptop_release_key(unsigned long unused)
367 {
368         struct sony_laptop_keypress kp;
369         unsigned long flags;
370
371         spin_lock_irqsave(&sony_laptop_input.fifo_lock, flags);
372
373         if (kfifo_out(&sony_laptop_input.fifo,
374                       (unsigned char *)&kp, sizeof(kp)) == sizeof(kp)) {
375                 input_report_key(kp.dev, kp.key, 0);
376                 input_sync(kp.dev);
377         }
378
379         /* If there is something in the fifo schedule next release. */
380         if (kfifo_len(&sony_laptop_input.fifo) != 0)
381                 mod_timer(&sony_laptop_input.release_key_timer,
382                           jiffies + msecs_to_jiffies(10));
383
384         spin_unlock_irqrestore(&sony_laptop_input.fifo_lock, flags);
385 }
386
387 /* forward event to the input subsystem */
388 static void sony_laptop_report_input_event(u8 event)
389 {
390         struct input_dev *jog_dev = sony_laptop_input.jog_dev;
391         struct input_dev *key_dev = sony_laptop_input.key_dev;
392         struct sony_laptop_keypress kp = { NULL };
393         int scancode = -1;
394
395         if (event == SONYPI_EVENT_FNKEY_RELEASED ||
396                         event == SONYPI_EVENT_ANYBUTTON_RELEASED) {
397                 /* Nothing, not all VAIOs generate this event */
398                 return;
399         }
400
401         /* report events */
402         switch (event) {
403         /* jog_dev events */
404         case SONYPI_EVENT_JOGDIAL_UP:
405         case SONYPI_EVENT_JOGDIAL_UP_PRESSED:
406                 input_report_rel(jog_dev, REL_WHEEL, 1);
407                 input_sync(jog_dev);
408                 return;
409
410         case SONYPI_EVENT_JOGDIAL_DOWN:
411         case SONYPI_EVENT_JOGDIAL_DOWN_PRESSED:
412                 input_report_rel(jog_dev, REL_WHEEL, -1);
413                 input_sync(jog_dev);
414                 return;
415
416         /* key_dev events */
417         case SONYPI_EVENT_JOGDIAL_PRESSED:
418                 kp.key = BTN_MIDDLE;
419                 kp.dev = jog_dev;
420                 break;
421
422         default:
423                 if (event >= ARRAY_SIZE(sony_laptop_input_index)) {
424                         dprintk("sony_laptop_report_input_event, event not known: %d\n", event);
425                         break;
426                 }
427                 if ((scancode = sony_laptop_input_index[event]) != -1) {
428                         kp.key = sony_laptop_input_keycode_map[scancode];
429                         if (kp.key != KEY_UNKNOWN)
430                                 kp.dev = key_dev;
431                 }
432                 break;
433         }
434
435         if (kp.dev) {
436                 /* if we have a scancode we emit it so we can always
437                     remap the key */
438                 if (scancode != -1)
439                         input_event(kp.dev, EV_MSC, MSC_SCAN, scancode);
440                 input_report_key(kp.dev, kp.key, 1);
441                 input_sync(kp.dev);
442
443                 /* schedule key release */
444                 kfifo_in_locked(&sony_laptop_input.fifo,
445                                 (unsigned char *)&kp, sizeof(kp),
446                                 &sony_laptop_input.fifo_lock);
447                 mod_timer(&sony_laptop_input.release_key_timer,
448                           jiffies + msecs_to_jiffies(10));
449         } else
450                 dprintk("unknown input event %.2x\n", event);
451 }
452
453 static int sony_laptop_setup_input(struct acpi_device *acpi_device)
454 {
455         struct input_dev *jog_dev;
456         struct input_dev *key_dev;
457         int i;
458         int error;
459
460         /* don't run again if already initialized */
461         if (atomic_add_return(1, &sony_laptop_input.users) > 1)
462                 return 0;
463
464         /* kfifo */
465         spin_lock_init(&sony_laptop_input.fifo_lock);
466         error = kfifo_alloc(&sony_laptop_input.fifo,
467                             SONY_LAPTOP_BUF_SIZE, GFP_KERNEL);
468         if (error) {
469                 pr_err("kfifo_alloc failed\n");
470                 goto err_dec_users;
471         }
472
473         setup_timer(&sony_laptop_input.release_key_timer,
474                     do_sony_laptop_release_key, 0);
475
476         /* input keys */
477         key_dev = input_allocate_device();
478         if (!key_dev) {
479                 error = -ENOMEM;
480                 goto err_free_kfifo;
481         }
482
483         key_dev->name = "Sony Vaio Keys";
484         key_dev->id.bustype = BUS_ISA;
485         key_dev->id.vendor = PCI_VENDOR_ID_SONY;
486         key_dev->dev.parent = &acpi_device->dev;
487
488         /* Initialize the Input Drivers: special keys */
489         input_set_capability(key_dev, EV_MSC, MSC_SCAN);
490
491         __set_bit(EV_KEY, key_dev->evbit);
492         key_dev->keycodesize = sizeof(sony_laptop_input_keycode_map[0]);
493         key_dev->keycodemax = ARRAY_SIZE(sony_laptop_input_keycode_map);
494         key_dev->keycode = &sony_laptop_input_keycode_map;
495         for (i = 0; i < ARRAY_SIZE(sony_laptop_input_keycode_map); i++)
496                 __set_bit(sony_laptop_input_keycode_map[i], key_dev->keybit);
497         __clear_bit(KEY_RESERVED, key_dev->keybit);
498
499         error = input_register_device(key_dev);
500         if (error)
501                 goto err_free_keydev;
502
503         sony_laptop_input.key_dev = key_dev;
504
505         /* jogdial */
506         jog_dev = input_allocate_device();
507         if (!jog_dev) {
508                 error = -ENOMEM;
509                 goto err_unregister_keydev;
510         }
511
512         jog_dev->name = "Sony Vaio Jogdial";
513         jog_dev->id.bustype = BUS_ISA;
514         jog_dev->id.vendor = PCI_VENDOR_ID_SONY;
515         jog_dev->dev.parent = &acpi_device->dev;
516
517         input_set_capability(jog_dev, EV_KEY, BTN_MIDDLE);
518         input_set_capability(jog_dev, EV_REL, REL_WHEEL);
519
520         error = input_register_device(jog_dev);
521         if (error)
522                 goto err_free_jogdev;
523
524         sony_laptop_input.jog_dev = jog_dev;
525
526         return 0;
527
528 err_free_jogdev:
529         input_free_device(jog_dev);
530
531 err_unregister_keydev:
532         input_unregister_device(key_dev);
533         /* to avoid kref underflow below at input_free_device */
534         key_dev = NULL;
535
536 err_free_keydev:
537         input_free_device(key_dev);
538
539 err_free_kfifo:
540         kfifo_free(&sony_laptop_input.fifo);
541
542 err_dec_users:
543         atomic_dec(&sony_laptop_input.users);
544         return error;
545 }
546
547 static void sony_laptop_remove_input(void)
548 {
549         struct sony_laptop_keypress kp = { NULL };
550
551         /* Cleanup only after the last user has gone */
552         if (!atomic_dec_and_test(&sony_laptop_input.users))
553                 return;
554
555         del_timer_sync(&sony_laptop_input.release_key_timer);
556
557         /*
558          * Generate key-up events for remaining keys. Note that we don't
559          * need locking since nobody is adding new events to the kfifo.
560          */
561         while (kfifo_out(&sony_laptop_input.fifo,
562                          (unsigned char *)&kp, sizeof(kp)) == sizeof(kp)) {
563                 input_report_key(kp.dev, kp.key, 0);
564                 input_sync(kp.dev);
565         }
566
567         /* destroy input devs */
568         input_unregister_device(sony_laptop_input.key_dev);
569         sony_laptop_input.key_dev = NULL;
570
571         if (sony_laptop_input.jog_dev) {
572                 input_unregister_device(sony_laptop_input.jog_dev);
573                 sony_laptop_input.jog_dev = NULL;
574         }
575
576         kfifo_free(&sony_laptop_input.fifo);
577 }
578
579 /*********** Platform Device ***********/
580
581 static atomic_t sony_pf_users = ATOMIC_INIT(0);
582 static struct platform_driver sony_pf_driver = {
583         .driver = {
584                    .name = "sony-laptop",
585                    }
586 };
587 static struct platform_device *sony_pf_device;
588
589 static int sony_pf_add(void)
590 {
591         int ret = 0;
592
593         /* don't run again if already initialized */
594         if (atomic_add_return(1, &sony_pf_users) > 1)
595                 return 0;
596
597         ret = platform_driver_register(&sony_pf_driver);
598         if (ret)
599                 goto out;
600
601         sony_pf_device = platform_device_alloc("sony-laptop", -1);
602         if (!sony_pf_device) {
603                 ret = -ENOMEM;
604                 goto out_platform_registered;
605         }
606
607         ret = platform_device_add(sony_pf_device);
608         if (ret)
609                 goto out_platform_alloced;
610
611         return 0;
612
613       out_platform_alloced:
614         platform_device_put(sony_pf_device);
615         sony_pf_device = NULL;
616       out_platform_registered:
617         platform_driver_unregister(&sony_pf_driver);
618       out:
619         atomic_dec(&sony_pf_users);
620         return ret;
621 }
622
623 static void sony_pf_remove(void)
624 {
625         /* deregister only after the last user has gone */
626         if (!atomic_dec_and_test(&sony_pf_users))
627                 return;
628
629         platform_device_unregister(sony_pf_device);
630         platform_driver_unregister(&sony_pf_driver);
631 }
632
633 /*********** SNC (SNY5001) Device ***********/
634
635 /* the device uses 1-based values, while the backlight subsystem uses
636    0-based values */
637 #define SONY_MAX_BRIGHTNESS     8
638
639 #define SNC_VALIDATE_IN         0
640 #define SNC_VALIDATE_OUT        1
641
642 static ssize_t sony_nc_sysfs_show(struct device *, struct device_attribute *,
643                               char *);
644 static ssize_t sony_nc_sysfs_store(struct device *, struct device_attribute *,
645                                const char *, size_t);
646 static int boolean_validate(const int, const int);
647 static int brightness_default_validate(const int, const int);
648
649 struct sony_nc_value {
650         char *name;             /* name of the entry */
651         char **acpiget;         /* names of the ACPI get function */
652         char **acpiset;         /* names of the ACPI set function */
653         int (*validate)(const int, const int);  /* input/output validation */
654         int value;              /* current setting */
655         int valid;              /* Has ever been set */
656         int debug;              /* active only in debug mode ? */
657         struct device_attribute devattr;        /* sysfs attribute */
658 };
659
660 #define SNC_HANDLE_NAMES(_name, _values...) \
661         static char *snc_##_name[] = { _values, NULL }
662
663 #define SNC_HANDLE(_name, _getters, _setters, _validate, _debug) \
664         { \
665                 .name           = __stringify(_name), \
666                 .acpiget        = _getters, \
667                 .acpiset        = _setters, \
668                 .validate       = _validate, \
669                 .debug          = _debug, \
670                 .devattr        = __ATTR(_name, 0, sony_nc_sysfs_show, sony_nc_sysfs_store), \
671         }
672
673 #define SNC_HANDLE_NULL { .name = NULL }
674
675 SNC_HANDLE_NAMES(fnkey_get, "GHKE");
676
677 SNC_HANDLE_NAMES(brightness_def_get, "GPBR");
678 SNC_HANDLE_NAMES(brightness_def_set, "SPBR");
679
680 SNC_HANDLE_NAMES(cdpower_get, "GCDP");
681 SNC_HANDLE_NAMES(cdpower_set, "SCDP", "CDPW");
682
683 SNC_HANDLE_NAMES(audiopower_get, "GAZP");
684 SNC_HANDLE_NAMES(audiopower_set, "AZPW");
685
686 SNC_HANDLE_NAMES(lanpower_get, "GLNP");
687 SNC_HANDLE_NAMES(lanpower_set, "LNPW");
688
689 SNC_HANDLE_NAMES(lidstate_get, "GLID");
690
691 SNC_HANDLE_NAMES(indicatorlamp_get, "GILS");
692 SNC_HANDLE_NAMES(indicatorlamp_set, "SILS");
693
694 SNC_HANDLE_NAMES(gainbass_get, "GMGB");
695 SNC_HANDLE_NAMES(gainbass_set, "CMGB");
696
697 SNC_HANDLE_NAMES(PID_get, "GPID");
698
699 SNC_HANDLE_NAMES(CTR_get, "GCTR");
700 SNC_HANDLE_NAMES(CTR_set, "SCTR");
701
702 SNC_HANDLE_NAMES(PCR_get, "GPCR");
703 SNC_HANDLE_NAMES(PCR_set, "SPCR");
704
705 SNC_HANDLE_NAMES(CMI_get, "GCMI");
706 SNC_HANDLE_NAMES(CMI_set, "SCMI");
707
708 static struct sony_nc_value sony_nc_values[] = {
709         SNC_HANDLE(brightness_default, snc_brightness_def_get,
710                         snc_brightness_def_set, brightness_default_validate, 0),
711         SNC_HANDLE(fnkey, snc_fnkey_get, NULL, NULL, 0),
712         SNC_HANDLE(cdpower, snc_cdpower_get, snc_cdpower_set, boolean_validate, 0),
713         SNC_HANDLE(audiopower, snc_audiopower_get, snc_audiopower_set,
714                         boolean_validate, 0),
715         SNC_HANDLE(lanpower, snc_lanpower_get, snc_lanpower_set,
716                         boolean_validate, 1),
717         SNC_HANDLE(lidstate, snc_lidstate_get, NULL,
718                         boolean_validate, 0),
719         SNC_HANDLE(indicatorlamp, snc_indicatorlamp_get, snc_indicatorlamp_set,
720                         boolean_validate, 0),
721         SNC_HANDLE(gainbass, snc_gainbass_get, snc_gainbass_set,
722                         boolean_validate, 0),
723         /* unknown methods */
724         SNC_HANDLE(PID, snc_PID_get, NULL, NULL, 1),
725         SNC_HANDLE(CTR, snc_CTR_get, snc_CTR_set, NULL, 1),
726         SNC_HANDLE(PCR, snc_PCR_get, snc_PCR_set, NULL, 1),
727         SNC_HANDLE(CMI, snc_CMI_get, snc_CMI_set, NULL, 1),
728         SNC_HANDLE_NULL
729 };
730
731 static acpi_handle sony_nc_acpi_handle;
732 static struct acpi_device *sony_nc_acpi_device = NULL;
733
734 /*
735  * acpi_evaluate_object wrappers
736  * all useful calls into SNC methods take one or zero parameters and return
737  * integers or arrays.
738  */
739 static union acpi_object *__call_snc_method(acpi_handle handle, char *method,
740                 u64 *value)
741 {
742         union acpi_object *result = NULL;
743         struct acpi_buffer output = { ACPI_ALLOCATE_BUFFER, NULL };
744         acpi_status status;
745
746         if (value) {
747                 struct acpi_object_list params;
748                 union acpi_object in;
749                 in.type = ACPI_TYPE_INTEGER;
750                 in.integer.value = *value;
751                 params.count = 1;
752                 params.pointer = &in;
753                 status = acpi_evaluate_object(handle, method, &params, &output);
754                 dprintk("__call_snc_method: [%s:0x%.8x%.8x]\n", method,
755                                 (unsigned int)(*value >> 32),
756                                 (unsigned int)*value & 0xffffffff);
757         } else {
758                 status = acpi_evaluate_object(handle, method, NULL, &output);
759                 dprintk("__call_snc_method: [%s]\n", method);
760         }
761
762         if (ACPI_FAILURE(status)) {
763                 pr_err("Failed to evaluate [%s]\n", method);
764                 return NULL;
765         }
766
767         result = (union acpi_object *) output.pointer;
768         if (!result)
769                 dprintk("No return object [%s]\n", method);
770
771         return result;
772 }
773
774 static int sony_nc_int_call(acpi_handle handle, char *name, int *value,
775                 int *result)
776 {
777         union acpi_object *object = NULL;
778         if (value) {
779                 u64 v = *value;
780                 object = __call_snc_method(handle, name, &v);
781         } else
782                 object = __call_snc_method(handle, name, NULL);
783
784         if (!object)
785                 return -EINVAL;
786
787         if (object->type != ACPI_TYPE_INTEGER) {
788                 pr_warn("Invalid acpi_object: expected 0x%x got 0x%x\n",
789                                 ACPI_TYPE_INTEGER, object->type);
790                 kfree(object);
791                 return -EINVAL;
792         }
793
794         if (result)
795                 *result = object->integer.value;
796
797         kfree(object);
798         return 0;
799 }
800
801 #define MIN(a, b)       (a > b ? b : a)
802 static int sony_nc_buffer_call(acpi_handle handle, char *name, u64 *value,
803                 void *buffer, size_t buflen)
804 {
805         int ret = 0;
806         size_t len;
807         union acpi_object *object = __call_snc_method(handle, name, value);
808
809         if (!object)
810                 return -EINVAL;
811
812         if (object->type == ACPI_TYPE_BUFFER) {
813                 len = MIN(buflen, object->buffer.length);
814                 memcpy(buffer, object->buffer.pointer, len);
815
816         } else if (object->type == ACPI_TYPE_INTEGER) {
817                 len = MIN(buflen, sizeof(object->integer.value));
818                 memcpy(buffer, &object->integer.value, len);
819
820         } else {
821                 pr_warn("Invalid acpi_object: expected 0x%x got 0x%x\n",
822                                 ACPI_TYPE_BUFFER, object->type);
823                 ret = -EINVAL;
824         }
825
826         kfree(object);
827         return ret;
828 }
829
830 struct sony_nc_handles {
831         u16 cap[0x10];
832         struct device_attribute devattr;
833 };
834
835 static struct sony_nc_handles *handles;
836
837 static ssize_t sony_nc_handles_show(struct device *dev,
838                 struct device_attribute *attr, char *buffer)
839 {
840         ssize_t len = 0;
841         int i;
842
843         for (i = 0; i < ARRAY_SIZE(handles->cap); i++) {
844                 len += snprintf(buffer + len, PAGE_SIZE - len, "0x%.4x ",
845                                 handles->cap[i]);
846         }
847         len += snprintf(buffer + len, PAGE_SIZE - len, "\n");
848
849         return len;
850 }
851
852 static int sony_nc_handles_setup(struct platform_device *pd)
853 {
854         int i, r, result, arg;
855
856         handles = kzalloc(sizeof(*handles), GFP_KERNEL);
857         if (!handles)
858                 return -ENOMEM;
859
860         for (i = 0; i < ARRAY_SIZE(handles->cap); i++) {
861                 arg = i + 0x20;
862                 r = sony_nc_int_call(sony_nc_acpi_handle, "SN00", &arg,
863                                         &result);
864                 if (!r) {
865                         dprintk("caching handle 0x%.4x (offset: 0x%.2x)\n",
866                                         result, i);
867                         handles->cap[i] = result;
868                 }
869         }
870
871         if (debug) {
872                 sysfs_attr_init(&handles->devattr.attr);
873                 handles->devattr.attr.name = "handles";
874                 handles->devattr.attr.mode = S_IRUGO;
875                 handles->devattr.show = sony_nc_handles_show;
876
877                 /* allow reading capabilities via sysfs */
878                 if (device_create_file(&pd->dev, &handles->devattr)) {
879                         kfree(handles);
880                         handles = NULL;
881                         return -1;
882                 }
883         }
884
885         return 0;
886 }
887
888 static int sony_nc_handles_cleanup(struct platform_device *pd)
889 {
890         if (handles) {
891                 if (debug)
892                         device_remove_file(&pd->dev, &handles->devattr);
893                 kfree(handles);
894                 handles = NULL;
895         }
896         return 0;
897 }
898
899 static int sony_find_snc_handle(int handle)
900 {
901         int i;
902
903         /* not initialized yet, return early */
904         if (!handles || !handle)
905                 return -EINVAL;
906
907         for (i = 0; i < 0x10; i++) {
908                 if (handles->cap[i] == handle) {
909                         dprintk("found handle 0x%.4x (offset: 0x%.2x)\n",
910                                         handle, i);
911                         return i;
912                 }
913         }
914         dprintk("handle 0x%.4x not found\n", handle);
915         return -EINVAL;
916 }
917
918 static int sony_call_snc_handle(int handle, int argument, int *result)
919 {
920         int arg, ret = 0;
921         int offset = sony_find_snc_handle(handle);
922
923         if (offset < 0)
924                 return offset;
925
926         arg = offset | argument;
927         ret = sony_nc_int_call(sony_nc_acpi_handle, "SN07", &arg, result);
928         dprintk("called SN07 with 0x%.4x (result: 0x%.4x)\n", arg, *result);
929         return ret;
930 }
931
932 /*
933  * sony_nc_values input/output validate functions
934  */
935
936 /* brightness_default_validate:
937  *
938  * manipulate input output values to keep consistency with the
939  * backlight framework for which brightness values are 0-based.
940  */
941 static int brightness_default_validate(const int direction, const int value)
942 {
943         switch (direction) {
944                 case SNC_VALIDATE_OUT:
945                         return value - 1;
946                 case SNC_VALIDATE_IN:
947                         if (value >= 0 && value < SONY_MAX_BRIGHTNESS)
948                                 return value + 1;
949         }
950         return -EINVAL;
951 }
952
953 /* boolean_validate:
954  *
955  * on input validate boolean values 0/1, on output just pass the
956  * received value.
957  */
958 static int boolean_validate(const int direction, const int value)
959 {
960         if (direction == SNC_VALIDATE_IN) {
961                 if (value != 0 && value != 1)
962                         return -EINVAL;
963         }
964         return value;
965 }
966
967 /*
968  * Sysfs show/store common to all sony_nc_values
969  */
970 static ssize_t sony_nc_sysfs_show(struct device *dev, struct device_attribute *attr,
971                               char *buffer)
972 {
973         int value, ret = 0;
974         struct sony_nc_value *item =
975             container_of(attr, struct sony_nc_value, devattr);
976
977         if (!*item->acpiget)
978                 return -EIO;
979
980         ret = sony_nc_int_call(sony_nc_acpi_handle, *item->acpiget, NULL,
981                                 &value);
982         if (ret < 0)
983                 return -EIO;
984
985         if (item->validate)
986                 value = item->validate(SNC_VALIDATE_OUT, value);
987
988         return snprintf(buffer, PAGE_SIZE, "%d\n", value);
989 }
990
991 static ssize_t sony_nc_sysfs_store(struct device *dev,
992                                struct device_attribute *attr,
993                                const char *buffer, size_t count)
994 {
995         int value;
996         int ret = 0;
997         struct sony_nc_value *item =
998             container_of(attr, struct sony_nc_value, devattr);
999
1000         if (!item->acpiset)
1001                 return -EIO;
1002
1003         if (count > 31)
1004                 return -EINVAL;
1005
1006         if (kstrtoint(buffer, 10, &value))
1007                 return -EINVAL;
1008
1009         if (item->validate)
1010                 value = item->validate(SNC_VALIDATE_IN, value);
1011
1012         if (value < 0)
1013                 return value;
1014
1015         ret = sony_nc_int_call(sony_nc_acpi_handle, *item->acpiset,
1016                                &value, NULL);
1017         if (ret < 0)
1018                 return -EIO;
1019
1020         item->value = value;
1021         item->valid = 1;
1022         return count;
1023 }
1024
1025
1026 /*
1027  * Backlight device
1028  */
1029 struct sony_backlight_props {
1030         struct backlight_device *dev;
1031         int                     handle;
1032         int                     cmd_base;
1033         u8                      offset;
1034         u8                      maxlvl;
1035 };
1036 static struct sony_backlight_props sony_bl_props;
1037
1038 static int sony_backlight_update_status(struct backlight_device *bd)
1039 {
1040         int arg = bd->props.brightness + 1;
1041         return sony_nc_int_call(sony_nc_acpi_handle, "SBRT", &arg, NULL);
1042 }
1043
1044 static int sony_backlight_get_brightness(struct backlight_device *bd)
1045 {
1046         int value;
1047
1048         if (sony_nc_int_call(sony_nc_acpi_handle, "GBRT", NULL, &value))
1049                 return 0;
1050         /* brightness levels are 1-based, while backlight ones are 0-based */
1051         return value - 1;
1052 }
1053
1054 static int sony_nc_get_brightness_ng(struct backlight_device *bd)
1055 {
1056         int result;
1057         struct sony_backlight_props *sdev =
1058                 (struct sony_backlight_props *)bl_get_data(bd);
1059
1060         sony_call_snc_handle(sdev->handle, sdev->cmd_base + 0x100, &result);
1061
1062         return (result & 0xff) - sdev->offset;
1063 }
1064
1065 static int sony_nc_update_status_ng(struct backlight_device *bd)
1066 {
1067         int value, result;
1068         struct sony_backlight_props *sdev =
1069                 (struct sony_backlight_props *)bl_get_data(bd);
1070
1071         value = bd->props.brightness + sdev->offset;
1072         if (sony_call_snc_handle(sdev->handle, sdev->cmd_base | (value << 0x10),
1073                                 &result))
1074                 return -EIO;
1075
1076         return value;
1077 }
1078
1079 static const struct backlight_ops sony_backlight_ops = {
1080         .options = BL_CORE_SUSPENDRESUME,
1081         .update_status = sony_backlight_update_status,
1082         .get_brightness = sony_backlight_get_brightness,
1083 };
1084 static const struct backlight_ops sony_backlight_ng_ops = {
1085         .options = BL_CORE_SUSPENDRESUME,
1086         .update_status = sony_nc_update_status_ng,
1087         .get_brightness = sony_nc_get_brightness_ng,
1088 };
1089
1090 /*
1091  * New SNC-only Vaios event mapping to driver known keys
1092  */
1093 struct sony_nc_event {
1094         u8      data;
1095         u8      event;
1096 };
1097
1098 static struct sony_nc_event sony_100_events[] = {
1099         { 0x90, SONYPI_EVENT_PKEY_P1 },
1100         { 0x10, SONYPI_EVENT_ANYBUTTON_RELEASED },
1101         { 0x91, SONYPI_EVENT_PKEY_P2 },
1102         { 0x11, SONYPI_EVENT_ANYBUTTON_RELEASED },
1103         { 0x81, SONYPI_EVENT_FNKEY_F1 },
1104         { 0x01, SONYPI_EVENT_FNKEY_RELEASED },
1105         { 0x82, SONYPI_EVENT_FNKEY_F2 },
1106         { 0x02, SONYPI_EVENT_FNKEY_RELEASED },
1107         { 0x83, SONYPI_EVENT_FNKEY_F3 },
1108         { 0x03, SONYPI_EVENT_FNKEY_RELEASED },
1109         { 0x84, SONYPI_EVENT_FNKEY_F4 },
1110         { 0x04, SONYPI_EVENT_FNKEY_RELEASED },
1111         { 0x85, SONYPI_EVENT_FNKEY_F5 },
1112         { 0x05, SONYPI_EVENT_FNKEY_RELEASED },
1113         { 0x86, SONYPI_EVENT_FNKEY_F6 },
1114         { 0x06, SONYPI_EVENT_FNKEY_RELEASED },
1115         { 0x87, SONYPI_EVENT_FNKEY_F7 },
1116         { 0x07, SONYPI_EVENT_FNKEY_RELEASED },
1117         { 0x88, SONYPI_EVENT_FNKEY_F8 },
1118         { 0x08, SONYPI_EVENT_FNKEY_RELEASED },
1119         { 0x89, SONYPI_EVENT_FNKEY_F9 },
1120         { 0x09, SONYPI_EVENT_FNKEY_RELEASED },
1121         { 0x8A, SONYPI_EVENT_FNKEY_F10 },
1122         { 0x0A, SONYPI_EVENT_FNKEY_RELEASED },
1123         { 0x8B, SONYPI_EVENT_FNKEY_F11 },
1124         { 0x0B, SONYPI_EVENT_FNKEY_RELEASED },
1125         { 0x8C, SONYPI_EVENT_FNKEY_F12 },
1126         { 0x0C, SONYPI_EVENT_FNKEY_RELEASED },
1127         { 0x9d, SONYPI_EVENT_ZOOM_PRESSED },
1128         { 0x1d, SONYPI_EVENT_ANYBUTTON_RELEASED },
1129         { 0x9f, SONYPI_EVENT_CD_EJECT_PRESSED },
1130         { 0x1f, SONYPI_EVENT_ANYBUTTON_RELEASED },
1131         { 0xa1, SONYPI_EVENT_MEDIA_PRESSED },
1132         { 0x21, SONYPI_EVENT_ANYBUTTON_RELEASED },
1133         { 0xa4, SONYPI_EVENT_CD_EJECT_PRESSED },
1134         { 0x24, SONYPI_EVENT_ANYBUTTON_RELEASED },
1135         { 0xa5, SONYPI_EVENT_VENDOR_PRESSED },
1136         { 0x25, SONYPI_EVENT_ANYBUTTON_RELEASED },
1137         { 0xa6, SONYPI_EVENT_HELP_PRESSED },
1138         { 0x26, SONYPI_EVENT_ANYBUTTON_RELEASED },
1139         { 0xa8, SONYPI_EVENT_FNKEY_1 },
1140         { 0x28, SONYPI_EVENT_ANYBUTTON_RELEASED },
1141         { 0, 0 },
1142 };
1143
1144 static struct sony_nc_event sony_127_events[] = {
1145         { 0x81, SONYPI_EVENT_MODEKEY_PRESSED },
1146         { 0x01, SONYPI_EVENT_ANYBUTTON_RELEASED },
1147         { 0x82, SONYPI_EVENT_PKEY_P1 },
1148         { 0x02, SONYPI_EVENT_ANYBUTTON_RELEASED },
1149         { 0x83, SONYPI_EVENT_PKEY_P2 },
1150         { 0x03, SONYPI_EVENT_ANYBUTTON_RELEASED },
1151         { 0x84, SONYPI_EVENT_PKEY_P3 },
1152         { 0x04, SONYPI_EVENT_ANYBUTTON_RELEASED },
1153         { 0x85, SONYPI_EVENT_PKEY_P4 },
1154         { 0x05, SONYPI_EVENT_ANYBUTTON_RELEASED },
1155         { 0x86, SONYPI_EVENT_PKEY_P5 },
1156         { 0x06, SONYPI_EVENT_ANYBUTTON_RELEASED },
1157         { 0x87, SONYPI_EVENT_SETTINGKEY_PRESSED },
1158         { 0x07, SONYPI_EVENT_ANYBUTTON_RELEASED },
1159         { 0, 0 },
1160 };
1161
1162 static int sony_nc_hotkeys_decode(u32 event, unsigned int handle)
1163 {
1164         int ret = -EINVAL;
1165         unsigned int result = 0;
1166         struct sony_nc_event *key_event;
1167
1168         if (sony_call_snc_handle(handle, 0x200, &result)) {
1169                 dprintk("Unable to decode event 0x%.2x 0x%.2x\n", handle,
1170                                 event);
1171                 return -EINVAL;
1172         }
1173
1174         result &= 0xFF;
1175
1176         if (handle == 0x0100)
1177                 key_event = sony_100_events;
1178         else
1179                 key_event = sony_127_events;
1180
1181         for (; key_event->data; key_event++) {
1182                 if (key_event->data == result) {
1183                         ret = key_event->event;
1184                         break;
1185                 }
1186         }
1187
1188         if (!key_event->data)
1189                 pr_info("Unknown hotkey 0x%.2x/0x%.2x (handle 0x%.2x)\n",
1190                                 event, result, handle);
1191
1192         return ret;
1193 }
1194
1195 /*
1196  * ACPI callbacks
1197  */
1198 enum event_types {
1199         HOTKEY = 1,
1200         KILLSWITCH,
1201         GFX_SWITCH
1202 };
1203 static void sony_nc_notify(struct acpi_device *device, u32 event)
1204 {
1205         u32 real_ev = event;
1206         u8 ev_type = 0;
1207         int ret;
1208
1209         dprintk("sony_nc_notify, event: 0x%.2x\n", event);
1210
1211         if (event >= 0x90) {
1212                 unsigned int result = 0;
1213                 unsigned int arg = 0;
1214                 unsigned int handle = 0;
1215                 unsigned int offset = event - 0x90;
1216
1217                 if (offset >= ARRAY_SIZE(handles->cap)) {
1218                         pr_err("Event 0x%x outside of capabilities list\n",
1219                                         event);
1220                         return;
1221                 }
1222                 handle = handles->cap[offset];
1223
1224                 /* list of handles known for generating events */
1225                 switch (handle) {
1226                 /* hotkey event */
1227                 case 0x0100:
1228                 case 0x0127:
1229                         ev_type = HOTKEY;
1230                         ret = sony_nc_hotkeys_decode(event, handle);
1231
1232                         if (ret > 0) {
1233                                 sony_laptop_report_input_event(ret);
1234                                 real_ev = ret;
1235                         }
1236
1237                         break;
1238
1239                 /* wlan switch */
1240                 case 0x0124:
1241                 case 0x0135:
1242                         /* events on this handle are reported when the
1243                          * switch changes position or for battery
1244                          * events. We'll notify both of them but only
1245                          * update the rfkill device status when the
1246                          * switch is moved.
1247                          */
1248                         ev_type = KILLSWITCH;
1249                         sony_call_snc_handle(handle, 0x0100, &result);
1250                         real_ev = result & 0x03;
1251
1252                         /* hw switch event */
1253                         if (real_ev == 1)
1254                                 sony_nc_rfkill_update();
1255
1256                         break;
1257
1258                 case 0x0128:
1259                 case 0x0146:
1260                         /* Hybrid GFX switching */
1261                         sony_call_snc_handle(handle, 0x0000, &result);
1262                         dprintk("GFX switch event received (reason: %s)\n",
1263                                         (result == 0x1) ? "switch change" :
1264                                         (result == 0x2) ? "output switch" :
1265                                         (result == 0x3) ? "output switch" :
1266                                         "");
1267
1268                         ev_type = GFX_SWITCH;
1269                         real_ev = __sony_nc_gfx_switch_status_get();
1270                         break;
1271
1272                 case 0x015B:
1273                         /* Hybrid GFX switching SVS151290S */
1274                         ev_type = GFX_SWITCH;
1275                         real_ev = __sony_nc_gfx_switch_status_get();
1276                         break;
1277                 default:
1278                         dprintk("Unknown event 0x%x for handle 0x%x\n",
1279                                         event, handle);
1280                         break;
1281                 }
1282
1283                 /* clear the event (and the event reason when present) */
1284                 arg = 1 << offset;
1285                 sony_nc_int_call(sony_nc_acpi_handle, "SN05", &arg, &result);
1286
1287         } else {
1288                 /* old style event */
1289                 ev_type = HOTKEY;
1290                 sony_laptop_report_input_event(real_ev);
1291         }
1292         acpi_bus_generate_netlink_event(sony_nc_acpi_device->pnp.device_class,
1293                         dev_name(&sony_nc_acpi_device->dev), ev_type, real_ev);
1294 }
1295
1296 static acpi_status sony_walk_callback(acpi_handle handle, u32 level,
1297                                       void *context, void **return_value)
1298 {
1299         struct acpi_device_info *info;
1300
1301         if (ACPI_SUCCESS(acpi_get_object_info(handle, &info))) {
1302                 pr_warn("method: name: %4.4s, args %X\n",
1303                         (char *)&info->name, info->param_count);
1304
1305                 kfree(info);
1306         }
1307
1308         return AE_OK;
1309 }
1310
1311 /*
1312  * ACPI device
1313  */
1314 static void sony_nc_function_setup(struct acpi_device *device,
1315                 struct platform_device *pf_device)
1316 {
1317         unsigned int i, result, bitmask, arg;
1318
1319         if (!handles)
1320                 return;
1321
1322         /* setup found handles here */
1323         for (i = 0; i < ARRAY_SIZE(handles->cap); i++) {
1324                 unsigned int handle = handles->cap[i];
1325
1326                 if (!handle)
1327                         continue;
1328
1329                 dprintk("setting up handle 0x%.4x\n", handle);
1330
1331                 switch (handle) {
1332                 case 0x0100:
1333                 case 0x0101:
1334                 case 0x0127:
1335                         /* setup hotkeys */
1336                         sony_call_snc_handle(handle, 0, &result);
1337                         break;
1338                 case 0x0102:
1339                         /* setup hotkeys */
1340                         sony_call_snc_handle(handle, 0x100, &result);
1341                         break;
1342                 case 0x0105:
1343                 case 0x0148:
1344                         /* touchpad enable/disable */
1345                         result = sony_nc_touchpad_setup(pf_device, handle);
1346                         if (result)
1347                                 pr_err("couldn't set up touchpad control function (%d)\n",
1348                                                 result);
1349                         break;
1350                 case 0x0115:
1351                 case 0x0136:
1352                 case 0x013f:
1353                         result = sony_nc_battery_care_setup(pf_device, handle);
1354                         if (result)
1355                                 pr_err("couldn't set up battery care function (%d)\n",
1356                                                 result);
1357                         break;
1358                 case 0x0119:
1359                 case 0x015D:
1360                         result = sony_nc_lid_resume_setup(pf_device, handle);
1361                         if (result)
1362                                 pr_err("couldn't set up lid resume function (%d)\n",
1363                                                 result);
1364                         break;
1365                 case 0x0122:
1366                         result = sony_nc_thermal_setup(pf_device);
1367                         if (result)
1368                                 pr_err("couldn't set up thermal profile function (%d)\n",
1369                                                 result);
1370                         break;
1371                 case 0x0128:
1372                 case 0x0146:
1373                 case 0x015B:
1374                         result = sony_nc_gfx_switch_setup(pf_device, handle);
1375                         if (result)
1376                                 pr_err("couldn't set up GFX Switch status (%d)\n",
1377                                                 result);
1378                         break;
1379                 case 0x0131:
1380                         result = sony_nc_highspeed_charging_setup(pf_device);
1381                         if (result)
1382                                 pr_err("couldn't set up high speed charging function (%d)\n",
1383                                        result);
1384                         break;
1385                 case 0x0124:
1386                 case 0x0135:
1387                         result = sony_nc_rfkill_setup(device, handle);
1388                         if (result)
1389                                 pr_err("couldn't set up rfkill support (%d)\n",
1390                                                 result);
1391                         break;
1392                 case 0x0137:
1393                 case 0x0143:
1394                 case 0x014b:
1395                 case 0x014c:
1396                 case 0x0153:
1397                 case 0x0163:
1398                         result = sony_nc_kbd_backlight_setup(pf_device, handle);
1399                         if (result)
1400                                 pr_err("couldn't set up keyboard backlight function (%d)\n",
1401                                                 result);
1402                         break;
1403                 case 0x0121:
1404                         result = sony_nc_lowbatt_setup(pf_device);
1405                         if (result)
1406                                 pr_err("couldn't set up low battery function (%d)\n",
1407                                        result);
1408                         break;
1409                 case 0x0149:
1410                         result = sony_nc_fanspeed_setup(pf_device);
1411                         if (result)
1412                                 pr_err("couldn't set up fan speed function (%d)\n",
1413                                        result);
1414                         break;
1415                 case 0x0155:
1416                         result = sony_nc_usb_charge_setup(pf_device);
1417                         if (result)
1418                                 pr_err("couldn't set up USB charge support (%d)\n",
1419                                                 result);
1420                         break;
1421                 case 0x011D:
1422                         result = sony_nc_panelid_setup(pf_device);
1423                         if (result)
1424                                 pr_err("couldn't set up panel ID function (%d)\n",
1425                                        result);
1426                         break;
1427                 case 0x0168:
1428                         result = sony_nc_smart_conn_setup(pf_device);
1429                         if (result)
1430                                 pr_err("couldn't set up smart connect support (%d)\n",
1431                                                 result);
1432                         break;
1433                 default:
1434                         continue;
1435                 }
1436         }
1437
1438         /* Enable all events */
1439         arg = 0x10;
1440         if (!sony_nc_int_call(sony_nc_acpi_handle, "SN00", &arg, &bitmask))
1441                 sony_nc_int_call(sony_nc_acpi_handle, "SN02", &bitmask,
1442                                 &result);
1443 }
1444
1445 static void sony_nc_function_cleanup(struct platform_device *pd)
1446 {
1447         unsigned int i, result, bitmask, handle;
1448
1449         if (!handles)
1450                 return;
1451
1452         /* get enabled events and disable them */
1453         sony_nc_int_call(sony_nc_acpi_handle, "SN01", NULL, &bitmask);
1454         sony_nc_int_call(sony_nc_acpi_handle, "SN03", &bitmask, &result);
1455
1456         /* cleanup handles here */
1457         for (i = 0; i < ARRAY_SIZE(handles->cap); i++) {
1458
1459                 handle = handles->cap[i];
1460
1461                 if (!handle)
1462                         continue;
1463
1464                 switch (handle) {
1465                 case 0x0105:
1466                 case 0x0148:
1467                         sony_nc_touchpad_cleanup(pd);
1468                         break;
1469                 case 0x0115:
1470                 case 0x0136:
1471                 case 0x013f:
1472                         sony_nc_battery_care_cleanup(pd);
1473                         break;
1474                 case 0x0119:
1475                 case 0x015D:
1476                         sony_nc_lid_resume_cleanup(pd);
1477                         break;
1478                 case 0x0122:
1479                         sony_nc_thermal_cleanup(pd);
1480                         break;
1481                 case 0x0128:
1482                 case 0x0146:
1483                 case 0x015B:
1484                         sony_nc_gfx_switch_cleanup(pd);
1485                         break;
1486                 case 0x0131:
1487                         sony_nc_highspeed_charging_cleanup(pd);
1488                         break;
1489                 case 0x0124:
1490                 case 0x0135:
1491                         sony_nc_rfkill_cleanup();
1492                         break;
1493                 case 0x0137:
1494                 case 0x0143:
1495                 case 0x014b:
1496                 case 0x014c:
1497                 case 0x0153:
1498                 case 0x0163:
1499                         sony_nc_kbd_backlight_cleanup(pd, handle);
1500                         break;
1501                 case 0x0121:
1502                         sony_nc_lowbatt_cleanup(pd);
1503                         break;
1504                 case 0x0149:
1505                         sony_nc_fanspeed_cleanup(pd);
1506                         break;
1507                 case 0x0155:
1508                         sony_nc_usb_charge_cleanup(pd);
1509                         break;
1510                 case 0x011D:
1511                         sony_nc_panelid_cleanup(pd);
1512                         break;
1513                 case 0x0168:
1514                         sony_nc_smart_conn_cleanup(pd);
1515                         break;
1516                 default:
1517                         continue;
1518                 }
1519         }
1520
1521         /* finally cleanup the handles list */
1522         sony_nc_handles_cleanup(pd);
1523 }
1524
1525 #ifdef CONFIG_PM_SLEEP
1526 static void sony_nc_function_resume(void)
1527 {
1528         unsigned int i, result, bitmask, arg;
1529
1530         dprintk("Resuming SNC device\n");
1531
1532         for (i = 0; i < ARRAY_SIZE(handles->cap); i++) {
1533                 unsigned int handle = handles->cap[i];
1534
1535                 if (!handle)
1536                         continue;
1537
1538                 switch (handle) {
1539                 case 0x0100:
1540                 case 0x0101:
1541                 case 0x0127:
1542                         /* re-enable hotkeys */
1543                         sony_call_snc_handle(handle, 0, &result);
1544                         break;
1545                 case 0x0102:
1546                         /* re-enable hotkeys */
1547                         sony_call_snc_handle(handle, 0x100, &result);
1548                         break;
1549                 case 0x0122:
1550                         sony_nc_thermal_resume();
1551                         break;
1552                 case 0x0124:
1553                 case 0x0135:
1554                         sony_nc_rfkill_update();
1555                         break;
1556                 default:
1557                         continue;
1558                 }
1559         }
1560
1561         /* Enable all events */
1562         arg = 0x10;
1563         if (!sony_nc_int_call(sony_nc_acpi_handle, "SN00", &arg, &bitmask))
1564                 sony_nc_int_call(sony_nc_acpi_handle, "SN02", &bitmask,
1565                                 &result);
1566 }
1567
1568 static int sony_nc_resume(struct device *dev)
1569 {
1570         struct sony_nc_value *item;
1571
1572         for (item = sony_nc_values; item->name; item++) {
1573                 int ret;
1574
1575                 if (!item->valid)
1576                         continue;
1577                 ret = sony_nc_int_call(sony_nc_acpi_handle, *item->acpiset,
1578                                        &item->value, NULL);
1579                 if (ret < 0) {
1580                         pr_err("%s: %d\n", __func__, ret);
1581                         break;
1582                 }
1583         }
1584
1585         if (acpi_has_method(sony_nc_acpi_handle, "ECON")) {
1586                 int arg = 1;
1587                 if (sony_nc_int_call(sony_nc_acpi_handle, "ECON", &arg, NULL))
1588                         dprintk("ECON Method failed\n");
1589         }
1590
1591         if (acpi_has_method(sony_nc_acpi_handle, "SN00"))
1592                 sony_nc_function_resume();
1593
1594         return 0;
1595 }
1596 #endif
1597
1598 static SIMPLE_DEV_PM_OPS(sony_nc_pm, NULL, sony_nc_resume);
1599
1600 static void sony_nc_rfkill_cleanup(void)
1601 {
1602         int i;
1603
1604         for (i = 0; i < N_SONY_RFKILL; i++) {
1605                 if (sony_rfkill_devices[i]) {
1606                         rfkill_unregister(sony_rfkill_devices[i]);
1607                         rfkill_destroy(sony_rfkill_devices[i]);
1608                 }
1609         }
1610 }
1611
1612 static int sony_nc_rfkill_set(void *data, bool blocked)
1613 {
1614         int result;
1615         int argument = sony_rfkill_address[(long) data] + 0x100;
1616
1617         if (!blocked)
1618                 argument |= 0x070000;
1619
1620         return sony_call_snc_handle(sony_rfkill_handle, argument, &result);
1621 }
1622
1623 static const struct rfkill_ops sony_rfkill_ops = {
1624         .set_block = sony_nc_rfkill_set,
1625 };
1626
1627 static int sony_nc_setup_rfkill(struct acpi_device *device,
1628                                 enum sony_nc_rfkill nc_type)
1629 {
1630         int err = 0;
1631         struct rfkill *rfk;
1632         enum rfkill_type type;
1633         const char *name;
1634         int result;
1635         bool hwblock, swblock;
1636
1637         switch (nc_type) {
1638         case SONY_WIFI:
1639                 type = RFKILL_TYPE_WLAN;
1640                 name = "sony-wifi";
1641                 break;
1642         case SONY_BLUETOOTH:
1643                 type = RFKILL_TYPE_BLUETOOTH;
1644                 name = "sony-bluetooth";
1645                 break;
1646         case SONY_WWAN:
1647                 type = RFKILL_TYPE_WWAN;
1648                 name = "sony-wwan";
1649                 break;
1650         case SONY_WIMAX:
1651                 type = RFKILL_TYPE_WIMAX;
1652                 name = "sony-wimax";
1653                 break;
1654         default:
1655                 return -EINVAL;
1656         }
1657
1658         rfk = rfkill_alloc(name, &device->dev, type,
1659                            &sony_rfkill_ops, (void *)nc_type);
1660         if (!rfk)
1661                 return -ENOMEM;
1662
1663         if (sony_call_snc_handle(sony_rfkill_handle, 0x200, &result) < 0) {
1664                 rfkill_destroy(rfk);
1665                 return -1;
1666         }
1667         hwblock = !(result & 0x1);
1668
1669         if (sony_call_snc_handle(sony_rfkill_handle,
1670                                 sony_rfkill_address[nc_type],
1671                                 &result) < 0) {
1672                 rfkill_destroy(rfk);
1673                 return -1;
1674         }
1675         swblock = !(result & 0x2);
1676
1677         rfkill_init_sw_state(rfk, swblock);
1678         rfkill_set_hw_state(rfk, hwblock);
1679
1680         err = rfkill_register(rfk);
1681         if (err) {
1682                 rfkill_destroy(rfk);
1683                 return err;
1684         }
1685         sony_rfkill_devices[nc_type] = rfk;
1686         return err;
1687 }
1688
1689 static void sony_nc_rfkill_update(void)
1690 {
1691         enum sony_nc_rfkill i;
1692         int result;
1693         bool hwblock;
1694
1695         sony_call_snc_handle(sony_rfkill_handle, 0x200, &result);
1696         hwblock = !(result & 0x1);
1697
1698         for (i = 0; i < N_SONY_RFKILL; i++) {
1699                 int argument = sony_rfkill_address[i];
1700
1701                 if (!sony_rfkill_devices[i])
1702                         continue;
1703
1704                 if (hwblock) {
1705                         if (rfkill_set_hw_state(sony_rfkill_devices[i], true)) {
1706                                 /* we already know we're blocked */
1707                         }
1708                         continue;
1709                 }
1710
1711                 sony_call_snc_handle(sony_rfkill_handle, argument, &result);
1712                 rfkill_set_states(sony_rfkill_devices[i],
1713                                   !(result & 0x2), false);
1714         }
1715 }
1716
1717 static int sony_nc_rfkill_setup(struct acpi_device *device,
1718                 unsigned int handle)
1719 {
1720         u64 offset;
1721         int i;
1722         unsigned char buffer[32] = { 0 };
1723
1724         offset = sony_find_snc_handle(handle);
1725         sony_rfkill_handle = handle;
1726
1727         i = sony_nc_buffer_call(sony_nc_acpi_handle, "SN06", &offset, buffer,
1728                         32);
1729         if (i < 0)
1730                 return i;
1731
1732         /* The buffer is filled with magic numbers describing the devices
1733          * available, 0xff terminates the enumeration.
1734          * Known codes:
1735          *      0x00 WLAN
1736          *      0x10 BLUETOOTH
1737          *      0x20 WWAN GPRS-EDGE
1738          *      0x21 WWAN HSDPA
1739          *      0x22 WWAN EV-DO
1740          *      0x23 WWAN GPS
1741          *      0x25 Gobi WWAN no GPS
1742          *      0x26 Gobi WWAN + GPS
1743          *      0x28 Gobi WWAN no GPS
1744          *      0x29 Gobi WWAN + GPS
1745          *      0x30 WIMAX
1746          *      0x50 Gobi WWAN no GPS
1747          *      0x51 Gobi WWAN + GPS
1748          *      0x70 no SIM card slot
1749          *      0x71 SIM card slot
1750          */
1751         for (i = 0; i < ARRAY_SIZE(buffer); i++) {
1752
1753                 if (buffer[i] == 0xff)
1754                         break;
1755
1756                 dprintk("Radio devices, found 0x%.2x\n", buffer[i]);
1757
1758                 if (buffer[i] == 0 && !sony_rfkill_devices[SONY_WIFI])
1759                         sony_nc_setup_rfkill(device, SONY_WIFI);
1760
1761                 if (buffer[i] == 0x10 && !sony_rfkill_devices[SONY_BLUETOOTH])
1762                         sony_nc_setup_rfkill(device, SONY_BLUETOOTH);
1763
1764                 if (((0xf0 & buffer[i]) == 0x20 ||
1765                                         (0xf0 & buffer[i]) == 0x50) &&
1766                                 !sony_rfkill_devices[SONY_WWAN])
1767                         sony_nc_setup_rfkill(device, SONY_WWAN);
1768
1769                 if (buffer[i] == 0x30 && !sony_rfkill_devices[SONY_WIMAX])
1770                         sony_nc_setup_rfkill(device, SONY_WIMAX);
1771         }
1772         return 0;
1773 }
1774
1775 /* Keyboard backlight feature */
1776 struct kbd_backlight {
1777         unsigned int handle;
1778         unsigned int base;
1779         unsigned int mode;
1780         unsigned int timeout;
1781         unsigned int has_timeout;
1782         struct device_attribute mode_attr;
1783         struct device_attribute timeout_attr;
1784 };
1785
1786 static struct kbd_backlight *kbdbl_ctl;
1787
1788 static ssize_t __sony_nc_kbd_backlight_mode_set(u8 value)
1789 {
1790         int result;
1791
1792         if (value > 2)
1793                 return -EINVAL;
1794
1795         if (sony_call_snc_handle(kbdbl_ctl->handle,
1796                                 (value << 0x10) | (kbdbl_ctl->base), &result))
1797                 return -EIO;
1798
1799         /* Try to turn the light on/off immediately */
1800         if (value != 1)
1801                 sony_call_snc_handle(kbdbl_ctl->handle,
1802                                 (value << 0x0f) | (kbdbl_ctl->base + 0x100),
1803                                 &result);
1804
1805         kbdbl_ctl->mode = value;
1806
1807         return 0;
1808 }
1809
1810 static ssize_t sony_nc_kbd_backlight_mode_store(struct device *dev,
1811                 struct device_attribute *attr,
1812                 const char *buffer, size_t count)
1813 {
1814         int ret = 0;
1815         unsigned long value;
1816
1817         if (count > 31)
1818                 return -EINVAL;
1819
1820         if (kstrtoul(buffer, 10, &value))
1821                 return -EINVAL;
1822
1823         ret = __sony_nc_kbd_backlight_mode_set(value);
1824         if (ret < 0)
1825                 return ret;
1826
1827         return count;
1828 }
1829
1830 static ssize_t sony_nc_kbd_backlight_mode_show(struct device *dev,
1831                 struct device_attribute *attr, char *buffer)
1832 {
1833         ssize_t count = 0;
1834         count = snprintf(buffer, PAGE_SIZE, "%d\n", kbdbl_ctl->mode);
1835         return count;
1836 }
1837
1838 static int __sony_nc_kbd_backlight_timeout_set(u8 value)
1839 {
1840         int result;
1841
1842         if (value > 3)
1843                 return -EINVAL;
1844
1845         if (sony_call_snc_handle(kbdbl_ctl->handle, (value << 0x10) |
1846                                 (kbdbl_ctl->base + 0x200), &result))
1847                 return -EIO;
1848
1849         kbdbl_ctl->timeout = value;
1850
1851         return 0;
1852 }
1853
1854 static ssize_t sony_nc_kbd_backlight_timeout_store(struct device *dev,
1855                 struct device_attribute *attr,
1856                 const char *buffer, size_t count)
1857 {
1858         int ret = 0;
1859         unsigned long value;
1860
1861         if (count > 31)
1862                 return -EINVAL;
1863
1864         if (kstrtoul(buffer, 10, &value))
1865                 return -EINVAL;
1866
1867         ret = __sony_nc_kbd_backlight_timeout_set(value);
1868         if (ret < 0)
1869                 return ret;
1870
1871         return count;
1872 }
1873
1874 static ssize_t sony_nc_kbd_backlight_timeout_show(struct device *dev,
1875                 struct device_attribute *attr, char *buffer)
1876 {
1877         ssize_t count = 0;
1878         count = snprintf(buffer, PAGE_SIZE, "%d\n", kbdbl_ctl->timeout);
1879         return count;
1880 }
1881
1882 static int sony_nc_kbd_backlight_setup(struct platform_device *pd,
1883                 unsigned int handle)
1884 {
1885         int result;
1886         int probe_base = 0;
1887         int ctl_base = 0;
1888         int ret = 0;
1889
1890         if (kbdbl_ctl) {
1891                 pr_warn("handle 0x%.4x: keyboard backlight setup already done for 0x%.4x\n",
1892                                 handle, kbdbl_ctl->handle);
1893                 return -EBUSY;
1894         }
1895
1896         /* verify the kbd backlight presence, some of these handles are not used
1897          * for keyboard backlight only
1898          */
1899         switch (handle) {
1900         case 0x0153:
1901                 probe_base = 0x0;
1902                 ctl_base = 0x0;
1903                 break;
1904         case 0x0137:
1905                 probe_base = 0x0B00;
1906                 ctl_base = 0x0C00;
1907                 break;
1908         default:
1909                 probe_base = 0x0100;
1910                 ctl_base = 0x4000;
1911                 break;
1912         }
1913
1914         /*
1915          * Only probe if there is a separate probe_base, otherwise the probe call
1916          * is equivalent to __sony_nc_kbd_backlight_mode_set(0), resulting in
1917          * the keyboard backlight being turned off.
1918          */
1919         if (probe_base) {
1920                 ret = sony_call_snc_handle(handle, probe_base, &result);
1921                 if (ret)
1922                         return ret;
1923
1924                 if ((handle == 0x0137 && !(result & 0x02)) ||
1925                                 !(result & 0x01)) {
1926                         dprintk("no backlight keyboard found\n");
1927                         return 0;
1928                 }
1929         }
1930
1931         kbdbl_ctl = kzalloc(sizeof(*kbdbl_ctl), GFP_KERNEL);
1932         if (!kbdbl_ctl)
1933                 return -ENOMEM;
1934
1935         kbdbl_ctl->mode = kbd_backlight;
1936         kbdbl_ctl->timeout = kbd_backlight_timeout;
1937         kbdbl_ctl->handle = handle;
1938         kbdbl_ctl->base = ctl_base;
1939         /* Some models do not allow timeout control */
1940         kbdbl_ctl->has_timeout = handle != 0x0153;
1941
1942         sysfs_attr_init(&kbdbl_ctl->mode_attr.attr);
1943         kbdbl_ctl->mode_attr.attr.name = "kbd_backlight";
1944         kbdbl_ctl->mode_attr.attr.mode = S_IRUGO | S_IWUSR;
1945         kbdbl_ctl->mode_attr.show = sony_nc_kbd_backlight_mode_show;
1946         kbdbl_ctl->mode_attr.store = sony_nc_kbd_backlight_mode_store;
1947
1948         ret = device_create_file(&pd->dev, &kbdbl_ctl->mode_attr);
1949         if (ret)
1950                 goto outkzalloc;
1951
1952         __sony_nc_kbd_backlight_mode_set(kbdbl_ctl->mode);
1953
1954         if (kbdbl_ctl->has_timeout) {
1955                 sysfs_attr_init(&kbdbl_ctl->timeout_attr.attr);
1956                 kbdbl_ctl->timeout_attr.attr.name = "kbd_backlight_timeout";
1957                 kbdbl_ctl->timeout_attr.attr.mode = S_IRUGO | S_IWUSR;
1958                 kbdbl_ctl->timeout_attr.show =
1959                         sony_nc_kbd_backlight_timeout_show;
1960                 kbdbl_ctl->timeout_attr.store =
1961                         sony_nc_kbd_backlight_timeout_store;
1962
1963                 ret = device_create_file(&pd->dev, &kbdbl_ctl->timeout_attr);
1964                 if (ret)
1965                         goto outmode;
1966
1967                 __sony_nc_kbd_backlight_timeout_set(kbdbl_ctl->timeout);
1968         }
1969
1970
1971         return 0;
1972
1973 outmode:
1974         device_remove_file(&pd->dev, &kbdbl_ctl->mode_attr);
1975 outkzalloc:
1976         kfree(kbdbl_ctl);
1977         kbdbl_ctl = NULL;
1978         return ret;
1979 }
1980
1981 static void sony_nc_kbd_backlight_cleanup(struct platform_device *pd,
1982                 unsigned int handle)
1983 {
1984         if (kbdbl_ctl && handle == kbdbl_ctl->handle) {
1985                 device_remove_file(&pd->dev, &kbdbl_ctl->mode_attr);
1986                 if (kbdbl_ctl->has_timeout)
1987                         device_remove_file(&pd->dev, &kbdbl_ctl->timeout_attr);
1988                 kfree(kbdbl_ctl);
1989                 kbdbl_ctl = NULL;
1990         }
1991 }
1992
1993 struct battery_care_control {
1994         struct device_attribute attrs[2];
1995         unsigned int handle;
1996 };
1997 static struct battery_care_control *bcare_ctl;
1998
1999 static ssize_t sony_nc_battery_care_limit_store(struct device *dev,
2000                 struct device_attribute *attr,
2001                 const char *buffer, size_t count)
2002 {
2003         unsigned int result, cmd;
2004         unsigned long value;
2005
2006         if (count > 31)
2007                 return -EINVAL;
2008
2009         if (kstrtoul(buffer, 10, &value))
2010                 return -EINVAL;
2011
2012         /*  limit values (2 bits):
2013          *  00 - none
2014          *  01 - 80%
2015          *  10 - 50%
2016          *  11 - 100%
2017          *
2018          *  bit 0: 0 disable BCL, 1 enable BCL
2019          *  bit 1: 1 tell to store the battery limit (see bits 6,7) too
2020          *  bits 2,3: reserved
2021          *  bits 4,5: store the limit into the EC
2022          *  bits 6,7: store the limit into the battery
2023          */
2024         cmd = 0;
2025
2026         if (value > 0) {
2027                 if (value <= 50)
2028                         cmd = 0x20;
2029
2030                 else if (value <= 80)
2031                         cmd = 0x10;
2032
2033                 else if (value <= 100)
2034                         cmd = 0x30;
2035
2036                 else
2037                         return -EINVAL;
2038
2039                 /*
2040                  * handle 0x0115 should allow storing on battery too;
2041                  * handle 0x0136 same as 0x0115 + health status;
2042                  * handle 0x013f, same as 0x0136 but no storing on the battery
2043                  */
2044                 if (bcare_ctl->handle != 0x013f)
2045                         cmd = cmd | (cmd << 2);
2046
2047                 cmd = (cmd | 0x1) << 0x10;
2048         }
2049
2050         if (sony_call_snc_handle(bcare_ctl->handle, cmd | 0x0100, &result))
2051                 return -EIO;
2052
2053         return count;
2054 }
2055
2056 static ssize_t sony_nc_battery_care_limit_show(struct device *dev,
2057                 struct device_attribute *attr, char *buffer)
2058 {
2059         unsigned int result, status;
2060
2061         if (sony_call_snc_handle(bcare_ctl->handle, 0x0000, &result))
2062                 return -EIO;
2063
2064         status = (result & 0x01) ? ((result & 0x30) >> 0x04) : 0;
2065         switch (status) {
2066         case 1:
2067                 status = 80;
2068                 break;
2069         case 2:
2070                 status = 50;
2071                 break;
2072         case 3:
2073                 status = 100;
2074                 break;
2075         default:
2076                 status = 0;
2077                 break;
2078         }
2079
2080         return snprintf(buffer, PAGE_SIZE, "%d\n", status);
2081 }
2082
2083 static ssize_t sony_nc_battery_care_health_show(struct device *dev,
2084                 struct device_attribute *attr, char *buffer)
2085 {
2086         ssize_t count = 0;
2087         unsigned int health;
2088
2089         if (sony_call_snc_handle(bcare_ctl->handle, 0x0200, &health))
2090                 return -EIO;
2091
2092         count = snprintf(buffer, PAGE_SIZE, "%d\n", health & 0xff);
2093
2094         return count;
2095 }
2096
2097 static int sony_nc_battery_care_setup(struct platform_device *pd,
2098                 unsigned int handle)
2099 {
2100         int ret = 0;
2101
2102         bcare_ctl = kzalloc(sizeof(struct battery_care_control), GFP_KERNEL);
2103         if (!bcare_ctl)
2104                 return -ENOMEM;
2105
2106         bcare_ctl->handle = handle;
2107
2108         sysfs_attr_init(&bcare_ctl->attrs[0].attr);
2109         bcare_ctl->attrs[0].attr.name = "battery_care_limiter";
2110         bcare_ctl->attrs[0].attr.mode = S_IRUGO | S_IWUSR;
2111         bcare_ctl->attrs[0].show = sony_nc_battery_care_limit_show;
2112         bcare_ctl->attrs[0].store = sony_nc_battery_care_limit_store;
2113
2114         ret = device_create_file(&pd->dev, &bcare_ctl->attrs[0]);
2115         if (ret)
2116                 goto outkzalloc;
2117
2118         /* 0x0115 is for models with no health reporting capability */
2119         if (handle == 0x0115)
2120                 return 0;
2121
2122         sysfs_attr_init(&bcare_ctl->attrs[1].attr);
2123         bcare_ctl->attrs[1].attr.name = "battery_care_health";
2124         bcare_ctl->attrs[1].attr.mode = S_IRUGO;
2125         bcare_ctl->attrs[1].show = sony_nc_battery_care_health_show;
2126
2127         ret = device_create_file(&pd->dev, &bcare_ctl->attrs[1]);
2128         if (ret)
2129                 goto outlimiter;
2130
2131         return 0;
2132
2133 outlimiter:
2134         device_remove_file(&pd->dev, &bcare_ctl->attrs[0]);
2135
2136 outkzalloc:
2137         kfree(bcare_ctl);
2138         bcare_ctl = NULL;
2139
2140         return ret;
2141 }
2142
2143 static void sony_nc_battery_care_cleanup(struct platform_device *pd)
2144 {
2145         if (bcare_ctl) {
2146                 device_remove_file(&pd->dev, &bcare_ctl->attrs[0]);
2147                 if (bcare_ctl->handle != 0x0115)
2148                         device_remove_file(&pd->dev, &bcare_ctl->attrs[1]);
2149
2150                 kfree(bcare_ctl);
2151                 bcare_ctl = NULL;
2152         }
2153 }
2154
2155 struct snc_thermal_ctrl {
2156         unsigned int mode;
2157         unsigned int profiles;
2158         struct device_attribute mode_attr;
2159         struct device_attribute profiles_attr;
2160 };
2161 static struct snc_thermal_ctrl *th_handle;
2162
2163 #define THM_PROFILE_MAX 3
2164 static const char * const snc_thermal_profiles[] = {
2165         "balanced",
2166         "silent",
2167         "performance"
2168 };
2169
2170 static int sony_nc_thermal_mode_set(unsigned short mode)
2171 {
2172         unsigned int result;
2173
2174         /* the thermal profile seems to be a two bit bitmask:
2175          * lsb -> silent
2176          * msb -> performance
2177          * no bit set is the normal operation and is always valid
2178          * Some vaio models only have "balanced" and "performance"
2179          */
2180         if ((mode && !(th_handle->profiles & mode)) || mode >= THM_PROFILE_MAX)
2181                 return -EINVAL;
2182
2183         if (sony_call_snc_handle(0x0122, mode << 0x10 | 0x0200, &result))
2184                 return -EIO;
2185
2186         th_handle->mode = mode;
2187
2188         return 0;
2189 }
2190
2191 static int sony_nc_thermal_mode_get(void)
2192 {
2193         unsigned int result;
2194
2195         if (sony_call_snc_handle(0x0122, 0x0100, &result))
2196                 return -EIO;
2197
2198         return result & 0xff;
2199 }
2200
2201 static ssize_t sony_nc_thermal_profiles_show(struct device *dev,
2202                 struct device_attribute *attr, char *buffer)
2203 {
2204         short cnt;
2205         size_t idx = 0;
2206
2207         for (cnt = 0; cnt < THM_PROFILE_MAX; cnt++) {
2208                 if (!cnt || (th_handle->profiles & cnt))
2209                         idx += snprintf(buffer + idx, PAGE_SIZE - idx, "%s ",
2210                                         snc_thermal_profiles[cnt]);
2211         }
2212         idx += snprintf(buffer + idx, PAGE_SIZE - idx, "\n");
2213
2214         return idx;
2215 }
2216
2217 static ssize_t sony_nc_thermal_mode_store(struct device *dev,
2218                 struct device_attribute *attr,
2219                 const char *buffer, size_t count)
2220 {
2221         unsigned short cmd;
2222         size_t len = count;
2223
2224         if (count == 0)
2225                 return -EINVAL;
2226
2227         /* skip the newline if present */
2228         if (buffer[len - 1] == '\n')
2229                 len--;
2230
2231         for (cmd = 0; cmd < THM_PROFILE_MAX; cmd++)
2232                 if (strncmp(buffer, snc_thermal_profiles[cmd], len) == 0)
2233                         break;
2234
2235         if (sony_nc_thermal_mode_set(cmd))
2236                 return -EIO;
2237
2238         return count;
2239 }
2240
2241 static ssize_t sony_nc_thermal_mode_show(struct device *dev,
2242                 struct device_attribute *attr, char *buffer)
2243 {
2244         ssize_t count = 0;
2245         int mode = sony_nc_thermal_mode_get();
2246
2247         if (mode < 0)
2248                 return mode;
2249
2250         count = snprintf(buffer, PAGE_SIZE, "%s\n", snc_thermal_profiles[mode]);
2251
2252         return count;
2253 }
2254
2255 static int sony_nc_thermal_setup(struct platform_device *pd)
2256 {
2257         int ret = 0;
2258         th_handle = kzalloc(sizeof(struct snc_thermal_ctrl), GFP_KERNEL);
2259         if (!th_handle)
2260                 return -ENOMEM;
2261
2262         ret = sony_call_snc_handle(0x0122, 0x0000, &th_handle->profiles);
2263         if (ret) {
2264                 pr_warn("couldn't to read the thermal profiles\n");
2265                 goto outkzalloc;
2266         }
2267
2268         ret = sony_nc_thermal_mode_get();
2269         if (ret < 0) {
2270                 pr_warn("couldn't to read the current thermal profile");
2271                 goto outkzalloc;
2272         }
2273         th_handle->mode = ret;
2274
2275         sysfs_attr_init(&th_handle->profiles_attr.attr);
2276         th_handle->profiles_attr.attr.name = "thermal_profiles";
2277         th_handle->profiles_attr.attr.mode = S_IRUGO;
2278         th_handle->profiles_attr.show = sony_nc_thermal_profiles_show;
2279
2280         sysfs_attr_init(&th_handle->mode_attr.attr);
2281         th_handle->mode_attr.attr.name = "thermal_control";
2282         th_handle->mode_attr.attr.mode = S_IRUGO | S_IWUSR;
2283         th_handle->mode_attr.show = sony_nc_thermal_mode_show;
2284         th_handle->mode_attr.store = sony_nc_thermal_mode_store;
2285
2286         ret = device_create_file(&pd->dev, &th_handle->profiles_attr);
2287         if (ret)
2288                 goto outkzalloc;
2289
2290         ret = device_create_file(&pd->dev, &th_handle->mode_attr);
2291         if (ret)
2292                 goto outprofiles;
2293
2294         return 0;
2295
2296 outprofiles:
2297         device_remove_file(&pd->dev, &th_handle->profiles_attr);
2298 outkzalloc:
2299         kfree(th_handle);
2300         th_handle = NULL;
2301         return ret;
2302 }
2303
2304 static void sony_nc_thermal_cleanup(struct platform_device *pd)
2305 {
2306         if (th_handle) {
2307                 device_remove_file(&pd->dev, &th_handle->profiles_attr);
2308                 device_remove_file(&pd->dev, &th_handle->mode_attr);
2309                 kfree(th_handle);
2310                 th_handle = NULL;
2311         }
2312 }
2313
2314 #ifdef CONFIG_PM_SLEEP
2315 static void sony_nc_thermal_resume(void)
2316 {
2317         unsigned int status = sony_nc_thermal_mode_get();
2318
2319         if (status != th_handle->mode)
2320                 sony_nc_thermal_mode_set(th_handle->mode);
2321 }
2322 #endif
2323
2324 /* resume on LID open */
2325 #define LID_RESUME_S5   0
2326 #define LID_RESUME_S4   1
2327 #define LID_RESUME_S3   2
2328 #define LID_RESUME_MAX  3
2329 struct snc_lid_resume_control {
2330         struct device_attribute attrs[LID_RESUME_MAX];
2331         unsigned int status;
2332         int handle;
2333 };
2334 static struct snc_lid_resume_control *lid_ctl;
2335
2336 static ssize_t sony_nc_lid_resume_store(struct device *dev,
2337                                         struct device_attribute *attr,
2338                                         const char *buffer, size_t count)
2339 {
2340         unsigned int result;
2341         unsigned long value;
2342         unsigned int pos = LID_RESUME_S5;
2343         if (count > 31)
2344                 return -EINVAL;
2345
2346         if (kstrtoul(buffer, 10, &value) || value > 1)
2347                 return -EINVAL;
2348
2349         /* the value we have to write to SNC is a bitmask:
2350          * +--------------+
2351          * | S3 | S4 | S5 |
2352          * +--------------+
2353          *   2    1    0
2354          */
2355         while (pos < LID_RESUME_MAX) {
2356                 if (&lid_ctl->attrs[pos].attr == &attr->attr)
2357                         break;
2358                 pos++;
2359         }
2360         if (pos == LID_RESUME_MAX)
2361                 return -EINVAL;
2362
2363         if (value)
2364                 value = lid_ctl->status | (1 << pos);
2365         else
2366                 value = lid_ctl->status & ~(1 << pos);
2367
2368         if (sony_call_snc_handle(lid_ctl->handle, value << 0x10 | 0x0100,
2369                                 &result))
2370                 return -EIO;
2371
2372         lid_ctl->status = value;
2373
2374         return count;
2375 }
2376
2377 static ssize_t sony_nc_lid_resume_show(struct device *dev,
2378                                         struct device_attribute *attr,
2379                                         char *buffer)
2380 {
2381         unsigned int pos = LID_RESUME_S5;
2382
2383         while (pos < LID_RESUME_MAX) {
2384                 if (&lid_ctl->attrs[pos].attr == &attr->attr)
2385                         return snprintf(buffer, PAGE_SIZE, "%d\n",
2386                                         (lid_ctl->status >> pos) & 0x01);
2387                 pos++;
2388         }
2389         return -EINVAL;
2390 }
2391
2392 static int sony_nc_lid_resume_setup(struct platform_device *pd,
2393                                         unsigned int handle)
2394 {
2395         unsigned int result;
2396         int i;
2397
2398         if (sony_call_snc_handle(handle, 0x0000, &result))
2399                 return -EIO;
2400
2401         lid_ctl = kzalloc(sizeof(struct snc_lid_resume_control), GFP_KERNEL);
2402         if (!lid_ctl)
2403                 return -ENOMEM;
2404
2405         lid_ctl->status = result & 0x7;
2406         lid_ctl->handle = handle;
2407
2408         sysfs_attr_init(&lid_ctl->attrs[0].attr);
2409         lid_ctl->attrs[LID_RESUME_S5].attr.name = "lid_resume_S5";
2410         lid_ctl->attrs[LID_RESUME_S5].attr.mode = S_IRUGO | S_IWUSR;
2411         lid_ctl->attrs[LID_RESUME_S5].show = sony_nc_lid_resume_show;
2412         lid_ctl->attrs[LID_RESUME_S5].store = sony_nc_lid_resume_store;
2413
2414         if (handle == 0x0119) {
2415                 sysfs_attr_init(&lid_ctl->attrs[1].attr);
2416                 lid_ctl->attrs[LID_RESUME_S4].attr.name = "lid_resume_S4";
2417                 lid_ctl->attrs[LID_RESUME_S4].attr.mode = S_IRUGO | S_IWUSR;
2418                 lid_ctl->attrs[LID_RESUME_S4].show = sony_nc_lid_resume_show;
2419                 lid_ctl->attrs[LID_RESUME_S4].store = sony_nc_lid_resume_store;
2420
2421                 sysfs_attr_init(&lid_ctl->attrs[2].attr);
2422                 lid_ctl->attrs[LID_RESUME_S3].attr.name = "lid_resume_S3";
2423                 lid_ctl->attrs[LID_RESUME_S3].attr.mode = S_IRUGO | S_IWUSR;
2424                 lid_ctl->attrs[LID_RESUME_S3].show = sony_nc_lid_resume_show;
2425                 lid_ctl->attrs[LID_RESUME_S3].store = sony_nc_lid_resume_store;
2426         }
2427         for (i = 0; i < LID_RESUME_MAX &&
2428                         lid_ctl->attrs[i].attr.name; i++) {
2429                 result = device_create_file(&pd->dev, &lid_ctl->attrs[i]);
2430                 if (result)
2431                         goto liderror;
2432         }
2433
2434         return 0;
2435
2436 liderror:
2437         for (i--; i >= 0; i--)
2438                 device_remove_file(&pd->dev, &lid_ctl->attrs[i]);
2439
2440         kfree(lid_ctl);
2441         lid_ctl = NULL;
2442
2443         return result;
2444 }
2445
2446 static void sony_nc_lid_resume_cleanup(struct platform_device *pd)
2447 {
2448         int i;
2449
2450         if (lid_ctl) {
2451                 for (i = 0; i < LID_RESUME_MAX; i++) {
2452                         if (!lid_ctl->attrs[i].attr.name)
2453                                 break;
2454
2455                         device_remove_file(&pd->dev, &lid_ctl->attrs[i]);
2456                 }
2457
2458                 kfree(lid_ctl);
2459                 lid_ctl = NULL;
2460         }
2461 }
2462
2463 /* GFX Switch position */
2464 enum gfx_switch {
2465         SPEED,
2466         STAMINA,
2467         AUTO
2468 };
2469 struct snc_gfx_switch_control {
2470         struct device_attribute attr;
2471         unsigned int handle;
2472 };
2473 static struct snc_gfx_switch_control *gfxs_ctl;
2474
2475 /* returns 0 for speed, 1 for stamina */
2476 static int __sony_nc_gfx_switch_status_get(void)
2477 {
2478         unsigned int result;
2479
2480         if (sony_call_snc_handle(gfxs_ctl->handle,
2481                                 gfxs_ctl->handle == 0x015B ? 0x0000 : 0x0100,
2482                                 &result))
2483                 return -EIO;
2484
2485         switch (gfxs_ctl->handle) {
2486         case 0x0146:
2487                 /* 1: discrete GFX (speed)
2488                  * 0: integrated GFX (stamina)
2489                  */
2490                 return result & 0x1 ? SPEED : STAMINA;
2491                 break;
2492         case 0x015B:
2493                 /* 0: discrete GFX (speed)
2494                  * 1: integrated GFX (stamina)
2495                  */
2496                 return result & 0x1 ? STAMINA : SPEED;
2497                 break;
2498         case 0x0128:
2499                 /* it's a more elaborated bitmask, for now:
2500                  * 2: integrated GFX (stamina)
2501                  * 0: discrete GFX (speed)
2502                  */
2503                 dprintk("GFX Status: 0x%x\n", result);
2504                 return result & 0x80 ? AUTO :
2505                         result & 0x02 ? STAMINA : SPEED;
2506                 break;
2507         }
2508         return -EINVAL;
2509 }
2510
2511 static ssize_t sony_nc_gfx_switch_status_show(struct device *dev,
2512                                        struct device_attribute *attr,
2513                                        char *buffer)
2514 {
2515         int pos = __sony_nc_gfx_switch_status_get();
2516
2517         if (pos < 0)
2518                 return pos;
2519
2520         return snprintf(buffer, PAGE_SIZE, "%s\n",
2521                                         pos == SPEED ? "speed" :
2522                                         pos == STAMINA ? "stamina" :
2523                                         pos == AUTO ? "auto" : "unknown");
2524 }
2525
2526 static int sony_nc_gfx_switch_setup(struct platform_device *pd,
2527                 unsigned int handle)
2528 {
2529         unsigned int result;
2530
2531         gfxs_ctl = kzalloc(sizeof(struct snc_gfx_switch_control), GFP_KERNEL);
2532         if (!gfxs_ctl)
2533                 return -ENOMEM;
2534
2535         gfxs_ctl->handle = handle;
2536
2537         sysfs_attr_init(&gfxs_ctl->attr.attr);
2538         gfxs_ctl->attr.attr.name = "gfx_switch_status";
2539         gfxs_ctl->attr.attr.mode = S_IRUGO;
2540         gfxs_ctl->attr.show = sony_nc_gfx_switch_status_show;
2541
2542         result = device_create_file(&pd->dev, &gfxs_ctl->attr);
2543         if (result)
2544                 goto gfxerror;
2545
2546         return 0;
2547
2548 gfxerror:
2549         kfree(gfxs_ctl);
2550         gfxs_ctl = NULL;
2551
2552         return result;
2553 }
2554
2555 static void sony_nc_gfx_switch_cleanup(struct platform_device *pd)
2556 {
2557         if (gfxs_ctl) {
2558                 device_remove_file(&pd->dev, &gfxs_ctl->attr);
2559
2560                 kfree(gfxs_ctl);
2561                 gfxs_ctl = NULL;
2562         }
2563 }
2564
2565 /* High speed charging function */
2566 static struct device_attribute *hsc_handle;
2567
2568 static ssize_t sony_nc_highspeed_charging_store(struct device *dev,
2569                 struct device_attribute *attr,
2570                 const char *buffer, size_t count)
2571 {
2572         unsigned int result;
2573         unsigned long value;
2574
2575         if (count > 31)
2576                 return -EINVAL;
2577
2578         if (kstrtoul(buffer, 10, &value) || value > 1)
2579                 return -EINVAL;
2580
2581         if (sony_call_snc_handle(0x0131, value << 0x10 | 0x0200, &result))
2582                 return -EIO;
2583
2584         return count;
2585 }
2586
2587 static ssize_t sony_nc_highspeed_charging_show(struct device *dev,
2588                 struct device_attribute *attr, char *buffer)
2589 {
2590         unsigned int result;
2591
2592         if (sony_call_snc_handle(0x0131, 0x0100, &result))
2593                 return -EIO;
2594
2595         return snprintf(buffer, PAGE_SIZE, "%d\n", result & 0x01);
2596 }
2597
2598 static int sony_nc_highspeed_charging_setup(struct platform_device *pd)
2599 {
2600         unsigned int result;
2601
2602         if (sony_call_snc_handle(0x0131, 0x0000, &result) || !(result & 0x01)) {
2603                 /* some models advertise the handle but have no implementation
2604                  * for it
2605                  */
2606                 pr_info("No High Speed Charging capability found\n");
2607                 return 0;
2608         }
2609
2610         hsc_handle = kzalloc(sizeof(struct device_attribute), GFP_KERNEL);
2611         if (!hsc_handle)
2612                 return -ENOMEM;
2613
2614         sysfs_attr_init(&hsc_handle->attr);
2615         hsc_handle->attr.name = "battery_highspeed_charging";
2616         hsc_handle->attr.mode = S_IRUGO | S_IWUSR;
2617         hsc_handle->show = sony_nc_highspeed_charging_show;
2618         hsc_handle->store = sony_nc_highspeed_charging_store;
2619
2620         result = device_create_file(&pd->dev, hsc_handle);
2621         if (result) {
2622                 kfree(hsc_handle);
2623                 hsc_handle = NULL;
2624                 return result;
2625         }
2626
2627         return 0;
2628 }
2629
2630 static void sony_nc_highspeed_charging_cleanup(struct platform_device *pd)
2631 {
2632         if (hsc_handle) {
2633                 device_remove_file(&pd->dev, hsc_handle);
2634                 kfree(hsc_handle);
2635                 hsc_handle = NULL;
2636         }
2637 }
2638
2639 /* low battery function */
2640 static struct device_attribute *lowbatt_handle;
2641
2642 static ssize_t sony_nc_lowbatt_store(struct device *dev,
2643                 struct device_attribute *attr,
2644                 const char *buffer, size_t count)
2645 {
2646         unsigned int result;
2647         unsigned long value;
2648
2649         if (count > 31)
2650                 return -EINVAL;
2651
2652         if (kstrtoul(buffer, 10, &value) || value > 1)
2653                 return -EINVAL;
2654
2655         if (sony_call_snc_handle(0x0121, value << 8, &result))
2656                 return -EIO;
2657
2658         return count;
2659 }
2660
2661 static ssize_t sony_nc_lowbatt_show(struct device *dev,
2662                 struct device_attribute *attr, char *buffer)
2663 {
2664         unsigned int result;
2665
2666         if (sony_call_snc_handle(0x0121, 0x0200, &result))
2667                 return -EIO;
2668
2669         return snprintf(buffer, PAGE_SIZE, "%d\n", result & 1);
2670 }
2671
2672 static int sony_nc_lowbatt_setup(struct platform_device *pd)
2673 {
2674         unsigned int result;
2675
2676         lowbatt_handle = kzalloc(sizeof(struct device_attribute), GFP_KERNEL);
2677         if (!lowbatt_handle)
2678                 return -ENOMEM;
2679
2680         sysfs_attr_init(&lowbatt_handle->attr);
2681         lowbatt_handle->attr.name = "lowbatt_hibernate";
2682         lowbatt_handle->attr.mode = S_IRUGO | S_IWUSR;
2683         lowbatt_handle->show = sony_nc_lowbatt_show;
2684         lowbatt_handle->store = sony_nc_lowbatt_store;
2685
2686         result = device_create_file(&pd->dev, lowbatt_handle);
2687         if (result) {
2688                 kfree(lowbatt_handle);
2689                 lowbatt_handle = NULL;
2690                 return result;
2691         }
2692
2693         return 0;
2694 }
2695
2696 static void sony_nc_lowbatt_cleanup(struct platform_device *pd)
2697 {
2698         if (lowbatt_handle) {
2699                 device_remove_file(&pd->dev, lowbatt_handle);
2700                 kfree(lowbatt_handle);
2701                 lowbatt_handle = NULL;
2702         }
2703 }
2704
2705 /* fan speed function */
2706 static struct device_attribute *fan_handle, *hsf_handle;
2707
2708 static ssize_t sony_nc_hsfan_store(struct device *dev,
2709                 struct device_attribute *attr,
2710                 const char *buffer, size_t count)
2711 {
2712         unsigned int result;
2713         unsigned long value;
2714
2715         if (count > 31)
2716                 return -EINVAL;
2717
2718         if (kstrtoul(buffer, 10, &value) || value > 1)
2719                 return -EINVAL;
2720
2721         if (sony_call_snc_handle(0x0149, value << 0x10 | 0x0200, &result))
2722                 return -EIO;
2723
2724         return count;
2725 }
2726
2727 static ssize_t sony_nc_hsfan_show(struct device *dev,
2728                 struct device_attribute *attr, char *buffer)
2729 {
2730         unsigned int result;
2731
2732         if (sony_call_snc_handle(0x0149, 0x0100, &result))
2733                 return -EIO;
2734
2735         return snprintf(buffer, PAGE_SIZE, "%d\n", result & 0x01);
2736 }
2737
2738 static ssize_t sony_nc_fanspeed_show(struct device *dev,
2739                 struct device_attribute *attr, char *buffer)
2740 {
2741         unsigned int result;
2742
2743         if (sony_call_snc_handle(0x0149, 0x0300, &result))
2744                 return -EIO;
2745
2746         return snprintf(buffer, PAGE_SIZE, "%d\n", result & 0xff);
2747 }
2748
2749 static int sony_nc_fanspeed_setup(struct platform_device *pd)
2750 {
2751         unsigned int result;
2752
2753         fan_handle = kzalloc(sizeof(struct device_attribute), GFP_KERNEL);
2754         if (!fan_handle)
2755                 return -ENOMEM;
2756
2757         hsf_handle = kzalloc(sizeof(struct device_attribute), GFP_KERNEL);
2758         if (!hsf_handle) {
2759                 result = -ENOMEM;
2760                 goto out_hsf_handle_alloc;
2761         }
2762
2763         sysfs_attr_init(&fan_handle->attr);
2764         fan_handle->attr.name = "fanspeed";
2765         fan_handle->attr.mode = S_IRUGO;
2766         fan_handle->show = sony_nc_fanspeed_show;
2767         fan_handle->store = NULL;
2768
2769         sysfs_attr_init(&hsf_handle->attr);
2770         hsf_handle->attr.name = "fan_forced";
2771         hsf_handle->attr.mode = S_IRUGO | S_IWUSR;
2772         hsf_handle->show = sony_nc_hsfan_show;
2773         hsf_handle->store = sony_nc_hsfan_store;
2774
2775         result = device_create_file(&pd->dev, fan_handle);
2776         if (result)
2777                 goto out_fan_handle;
2778
2779         result = device_create_file(&pd->dev, hsf_handle);
2780         if (result)
2781                 goto out_hsf_handle;
2782
2783         return 0;
2784
2785 out_hsf_handle:
2786         device_remove_file(&pd->dev, fan_handle);
2787
2788 out_fan_handle:
2789         kfree(hsf_handle);
2790         hsf_handle = NULL;
2791
2792 out_hsf_handle_alloc:
2793         kfree(fan_handle);
2794         fan_handle = NULL;
2795         return result;
2796 }
2797
2798 static void sony_nc_fanspeed_cleanup(struct platform_device *pd)
2799 {
2800         if (fan_handle) {
2801                 device_remove_file(&pd->dev, fan_handle);
2802                 kfree(fan_handle);
2803                 fan_handle = NULL;
2804         }
2805         if (hsf_handle) {
2806                 device_remove_file(&pd->dev, hsf_handle);
2807                 kfree(hsf_handle);
2808                 hsf_handle = NULL;
2809         }
2810 }
2811
2812 /* USB charge function */
2813 static struct device_attribute *uc_handle;
2814
2815 static ssize_t sony_nc_usb_charge_store(struct device *dev,
2816                 struct device_attribute *attr,
2817                 const char *buffer, size_t count)
2818 {
2819         unsigned int result;
2820         unsigned long value;
2821
2822         if (count > 31)
2823                 return -EINVAL;
2824
2825         if (kstrtoul(buffer, 10, &value) || value > 1)
2826                 return -EINVAL;
2827
2828         if (sony_call_snc_handle(0x0155, value << 0x10 | 0x0100, &result))
2829                 return -EIO;
2830
2831         return count;
2832 }
2833
2834 static ssize_t sony_nc_usb_charge_show(struct device *dev,
2835                 struct device_attribute *attr, char *buffer)
2836 {
2837         unsigned int result;
2838
2839         if (sony_call_snc_handle(0x0155, 0x0000, &result))
2840                 return -EIO;
2841
2842         return snprintf(buffer, PAGE_SIZE, "%d\n", result & 0x01);
2843 }
2844
2845 static int sony_nc_usb_charge_setup(struct platform_device *pd)
2846 {
2847         unsigned int result;
2848
2849         if (sony_call_snc_handle(0x0155, 0x0000, &result) || !(result & 0x01)) {
2850                 /* some models advertise the handle but have no implementation
2851                  * for it
2852                  */
2853                 pr_info("No USB Charge capability found\n");
2854                 return 0;
2855         }
2856
2857         uc_handle = kzalloc(sizeof(struct device_attribute), GFP_KERNEL);
2858         if (!uc_handle)
2859                 return -ENOMEM;
2860
2861         sysfs_attr_init(&uc_handle->attr);
2862         uc_handle->attr.name = "usb_charge";
2863         uc_handle->attr.mode = S_IRUGO | S_IWUSR;
2864         uc_handle->show = sony_nc_usb_charge_show;
2865         uc_handle->store = sony_nc_usb_charge_store;
2866
2867         result = device_create_file(&pd->dev, uc_handle);
2868         if (result) {
2869                 kfree(uc_handle);
2870                 uc_handle = NULL;
2871                 return result;
2872         }
2873
2874         return 0;
2875 }
2876
2877 static void sony_nc_usb_charge_cleanup(struct platform_device *pd)
2878 {
2879         if (uc_handle) {
2880                 device_remove_file(&pd->dev, uc_handle);
2881                 kfree(uc_handle);
2882                 uc_handle = NULL;
2883         }
2884 }
2885
2886 /* Panel ID function */
2887 static struct device_attribute *panel_handle;
2888
2889 static ssize_t sony_nc_panelid_show(struct device *dev,
2890                 struct device_attribute *attr, char *buffer)
2891 {
2892         unsigned int result;
2893
2894         if (sony_call_snc_handle(0x011D, 0x0000, &result))
2895                 return -EIO;
2896
2897         return snprintf(buffer, PAGE_SIZE, "%d\n", result);
2898 }
2899
2900 static int sony_nc_panelid_setup(struct platform_device *pd)
2901 {
2902         unsigned int result;
2903
2904         panel_handle = kzalloc(sizeof(struct device_attribute), GFP_KERNEL);
2905         if (!panel_handle)
2906                 return -ENOMEM;
2907
2908         sysfs_attr_init(&panel_handle->attr);
2909         panel_handle->attr.name = "panel_id";
2910         panel_handle->attr.mode = S_IRUGO;
2911         panel_handle->show = sony_nc_panelid_show;
2912         panel_handle->store = NULL;
2913
2914         result = device_create_file(&pd->dev, panel_handle);
2915         if (result) {
2916                 kfree(panel_handle);
2917                 panel_handle = NULL;
2918                 return result;
2919         }
2920
2921         return 0;
2922 }
2923
2924 static void sony_nc_panelid_cleanup(struct platform_device *pd)
2925 {
2926         if (panel_handle) {
2927                 device_remove_file(&pd->dev, panel_handle);
2928                 kfree(panel_handle);
2929                 panel_handle = NULL;
2930         }
2931 }
2932
2933 /* smart connect function */
2934 static struct device_attribute *sc_handle;
2935
2936 static ssize_t sony_nc_smart_conn_store(struct device *dev,
2937                 struct device_attribute *attr,
2938                 const char *buffer, size_t count)
2939 {
2940         unsigned int result;
2941         unsigned long value;
2942
2943         if (count > 31)
2944                 return -EINVAL;
2945
2946         if (kstrtoul(buffer, 10, &value) || value > 1)
2947                 return -EINVAL;
2948
2949         if (sony_call_snc_handle(0x0168, value << 0x10, &result))
2950                 return -EIO;
2951
2952         return count;
2953 }
2954
2955 static int sony_nc_smart_conn_setup(struct platform_device *pd)
2956 {
2957         unsigned int result;
2958
2959         sc_handle = kzalloc(sizeof(struct device_attribute), GFP_KERNEL);
2960         if (!sc_handle)
2961                 return -ENOMEM;
2962
2963         sysfs_attr_init(&sc_handle->attr);
2964         sc_handle->attr.name = "smart_connect";
2965         sc_handle->attr.mode = S_IWUSR;
2966         sc_handle->show = NULL;
2967         sc_handle->store = sony_nc_smart_conn_store;
2968
2969         result = device_create_file(&pd->dev, sc_handle);
2970         if (result) {
2971                 kfree(sc_handle);
2972                 sc_handle = NULL;
2973                 return result;
2974         }
2975
2976         return 0;
2977 }
2978
2979 static void sony_nc_smart_conn_cleanup(struct platform_device *pd)
2980 {
2981         if (sc_handle) {
2982                 device_remove_file(&pd->dev, sc_handle);
2983                 kfree(sc_handle);
2984                 sc_handle = NULL;
2985         }
2986 }
2987
2988 /* Touchpad enable/disable */
2989 struct touchpad_control {
2990         struct device_attribute attr;
2991         int handle;
2992 };
2993 static struct touchpad_control *tp_ctl;
2994
2995 static ssize_t sony_nc_touchpad_store(struct device *dev,
2996                 struct device_attribute *attr, const char *buffer, size_t count)
2997 {
2998         unsigned int result;
2999         unsigned long value;
3000
3001         if (count > 31)
3002                 return -EINVAL;
3003
3004         if (kstrtoul(buffer, 10, &value) || value > 1)
3005                 return -EINVAL;
3006
3007         /* sysfs: 0 disabled, 1 enabled
3008          * EC: 0 enabled, 1 disabled
3009          */
3010         if (sony_call_snc_handle(tp_ctl->handle,
3011                                 (!value << 0x10) | 0x100, &result))
3012                 return -EIO;
3013
3014         return count;
3015 }
3016
3017 static ssize_t sony_nc_touchpad_show(struct device *dev,
3018                 struct device_attribute *attr, char *buffer)
3019 {
3020         unsigned int result;
3021
3022         if (sony_call_snc_handle(tp_ctl->handle, 0x000, &result))
3023                 return -EINVAL;
3024
3025         return snprintf(buffer, PAGE_SIZE, "%d\n", !(result & 0x01));
3026 }
3027
3028 static int sony_nc_touchpad_setup(struct platform_device *pd,
3029                 unsigned int handle)
3030 {
3031         int ret = 0;
3032
3033         tp_ctl = kzalloc(sizeof(struct touchpad_control), GFP_KERNEL);
3034         if (!tp_ctl)
3035                 return -ENOMEM;
3036
3037         tp_ctl->handle = handle;
3038
3039         sysfs_attr_init(&tp_ctl->attr.attr);
3040         tp_ctl->attr.attr.name = "touchpad";
3041         tp_ctl->attr.attr.mode = S_IRUGO | S_IWUSR;
3042         tp_ctl->attr.show = sony_nc_touchpad_show;
3043         tp_ctl->attr.store = sony_nc_touchpad_store;
3044
3045         ret = device_create_file(&pd->dev, &tp_ctl->attr);
3046         if (ret) {
3047                 kfree(tp_ctl);
3048                 tp_ctl = NULL;
3049         }
3050
3051         return ret;
3052 }
3053
3054 static void sony_nc_touchpad_cleanup(struct platform_device *pd)
3055 {
3056         if (tp_ctl) {
3057                 device_remove_file(&pd->dev, &tp_ctl->attr);
3058                 kfree(tp_ctl);
3059                 tp_ctl = NULL;
3060         }
3061 }
3062
3063 static void sony_nc_backlight_ng_read_limits(int handle,
3064                 struct sony_backlight_props *props)
3065 {
3066         u64 offset;
3067         int i;
3068         int lvl_table_len = 0;
3069         u8 min = 0xff, max = 0x00;
3070         unsigned char buffer[32] = { 0 };
3071
3072         props->handle = handle;
3073         props->offset = 0;
3074         props->maxlvl = 0xff;
3075
3076         offset = sony_find_snc_handle(handle);
3077
3078         /* try to read the boundaries from ACPI tables, if we fail the above
3079          * defaults should be reasonable
3080          */
3081         i = sony_nc_buffer_call(sony_nc_acpi_handle, "SN06", &offset, buffer,
3082                         32);
3083         if (i < 0)
3084                 return;
3085
3086         switch (handle) {
3087         case 0x012f:
3088         case 0x0137:
3089                 lvl_table_len = 9;
3090                 break;
3091         case 0x143:
3092         case 0x14b:
3093         case 0x14c:
3094                 lvl_table_len = 16;
3095                 break;
3096         }
3097
3098         /* the buffer lists brightness levels available, brightness levels are
3099          * from position 0 to 8 in the array, other values are used by ALS
3100          * control.
3101          */
3102         for (i = 0; i < lvl_table_len && i < ARRAY_SIZE(buffer); i++) {
3103
3104                 dprintk("Brightness level: %d\n", buffer[i]);
3105
3106                 if (!buffer[i])
3107                         break;
3108
3109                 if (buffer[i] > max)
3110                         max = buffer[i];
3111                 if (buffer[i] < min)
3112                         min = buffer[i];
3113         }
3114         props->offset = min;
3115         props->maxlvl = max;
3116         dprintk("Brightness levels: min=%d max=%d\n", props->offset,
3117                         props->maxlvl);
3118 }
3119
3120 static void sony_nc_backlight_setup(void)
3121 {
3122         int max_brightness = 0;
3123         const struct backlight_ops *ops = NULL;
3124         struct backlight_properties props;
3125
3126         if (sony_find_snc_handle(0x12f) >= 0) {
3127                 ops = &sony_backlight_ng_ops;
3128                 sony_bl_props.cmd_base = 0x0100;
3129                 sony_nc_backlight_ng_read_limits(0x12f, &sony_bl_props);
3130                 max_brightness = sony_bl_props.maxlvl - sony_bl_props.offset;
3131
3132         } else if (sony_find_snc_handle(0x137) >= 0) {
3133                 ops = &sony_backlight_ng_ops;
3134                 sony_bl_props.cmd_base = 0x0100;
3135                 sony_nc_backlight_ng_read_limits(0x137, &sony_bl_props);
3136                 max_brightness = sony_bl_props.maxlvl - sony_bl_props.offset;
3137
3138         } else if (sony_find_snc_handle(0x143) >= 0) {
3139                 ops = &sony_backlight_ng_ops;
3140                 sony_bl_props.cmd_base = 0x3000;
3141                 sony_nc_backlight_ng_read_limits(0x143, &sony_bl_props);
3142                 max_brightness = sony_bl_props.maxlvl - sony_bl_props.offset;
3143
3144         } else if (sony_find_snc_handle(0x14b) >= 0) {
3145                 ops = &sony_backlight_ng_ops;
3146                 sony_bl_props.cmd_base = 0x3000;
3147                 sony_nc_backlight_ng_read_limits(0x14b, &sony_bl_props);
3148                 max_brightness = sony_bl_props.maxlvl - sony_bl_props.offset;
3149
3150         } else if (sony_find_snc_handle(0x14c) >= 0) {
3151                 ops = &sony_backlight_ng_ops;
3152                 sony_bl_props.cmd_base = 0x3000;
3153                 sony_nc_backlight_ng_read_limits(0x14c, &sony_bl_props);
3154                 max_brightness = sony_bl_props.maxlvl - sony_bl_props.offset;
3155
3156         } else if (acpi_has_method(sony_nc_acpi_handle, "GBRT")) {
3157                 ops = &sony_backlight_ops;
3158                 max_brightness = SONY_MAX_BRIGHTNESS - 1;
3159
3160         } else
3161                 return;
3162
3163         memset(&props, 0, sizeof(struct backlight_properties));
3164         props.type = BACKLIGHT_PLATFORM;
3165         props.max_brightness = max_brightness;
3166         sony_bl_props.dev = backlight_device_register("sony", NULL,
3167                                                       &sony_bl_props,
3168                                                       ops, &props);
3169
3170         if (IS_ERR(sony_bl_props.dev)) {
3171                 pr_warn("unable to register backlight device\n");
3172                 sony_bl_props.dev = NULL;
3173         } else
3174                 sony_bl_props.dev->props.brightness =
3175                         ops->get_brightness(sony_bl_props.dev);
3176 }
3177
3178 static void sony_nc_backlight_cleanup(void)
3179 {
3180         backlight_device_unregister(sony_bl_props.dev);
3181 }
3182
3183 static int sony_nc_add(struct acpi_device *device)
3184 {
3185         acpi_status status;
3186         int result = 0;
3187         struct sony_nc_value *item;
3188
3189         sony_nc_acpi_device = device;
3190         strcpy(acpi_device_class(device), "sony/hotkey");
3191
3192         sony_nc_acpi_handle = device->handle;
3193
3194         /* read device status */
3195         result = acpi_bus_get_status(device);
3196         /* bail IFF the above call was successful and the device is not present */
3197         if (!result && !device->status.present) {
3198                 dprintk("Device not present\n");
3199                 result = -ENODEV;
3200                 goto outwalk;
3201         }
3202
3203         result = sony_pf_add();
3204         if (result)
3205                 goto outpresent;
3206
3207         if (debug) {
3208                 status = acpi_walk_namespace(ACPI_TYPE_METHOD,
3209                                 sony_nc_acpi_handle, 1, sony_walk_callback,
3210                                 NULL, NULL, NULL);
3211                 if (ACPI_FAILURE(status)) {
3212                         pr_warn("unable to walk acpi resources\n");
3213                         result = -ENODEV;
3214                         goto outpresent;
3215                 }
3216         }
3217
3218         result = sony_laptop_setup_input(device);
3219         if (result) {
3220                 pr_err("Unable to create input devices\n");
3221                 goto outplatform;
3222         }
3223
3224         if (acpi_has_method(sony_nc_acpi_handle, "ECON")) {
3225                 int arg = 1;
3226                 if (sony_nc_int_call(sony_nc_acpi_handle, "ECON", &arg, NULL))
3227                         dprintk("ECON Method failed\n");
3228         }
3229
3230         if (acpi_has_method(sony_nc_acpi_handle, "SN00")) {
3231                 dprintk("Doing SNC setup\n");
3232                 /* retrieve the available handles */
3233                 result = sony_nc_handles_setup(sony_pf_device);
3234                 if (!result)
3235                         sony_nc_function_setup(device, sony_pf_device);
3236         }
3237
3238         if (acpi_video_get_backlight_type() == acpi_backlight_vendor)
3239                 sony_nc_backlight_setup();
3240
3241         /* create sony_pf sysfs attributes related to the SNC device */
3242         for (item = sony_nc_values; item->name; ++item) {
3243
3244                 if (!debug && item->debug)
3245                         continue;
3246
3247                 /* find the available acpiget as described in the DSDT */
3248                 for (; item->acpiget && *item->acpiget; ++item->acpiget) {
3249                         if (acpi_has_method(sony_nc_acpi_handle,
3250                                                         *item->acpiget)) {
3251                                 dprintk("Found %s getter: %s\n",
3252                                                 item->name, *item->acpiget);
3253                                 item->devattr.attr.mode |= S_IRUGO;
3254                                 break;
3255                         }
3256                 }
3257
3258                 /* find the available acpiset as described in the DSDT */
3259                 for (; item->acpiset && *item->acpiset; ++item->acpiset) {
3260                         if (acpi_has_method(sony_nc_acpi_handle,
3261                                                         *item->acpiset)) {
3262                                 dprintk("Found %s setter: %s\n",
3263                                                 item->name, *item->acpiset);
3264                                 item->devattr.attr.mode |= S_IWUSR;
3265                                 break;
3266                         }
3267                 }
3268
3269                 if (item->devattr.attr.mode != 0) {
3270                         result =
3271                             device_create_file(&sony_pf_device->dev,
3272                                                &item->devattr);
3273                         if (result)
3274                                 goto out_sysfs;
3275                 }
3276         }
3277
3278         pr_info("SNC setup done.\n");
3279         return 0;
3280
3281 out_sysfs:
3282         for (item = sony_nc_values; item->name; ++item) {
3283                 device_remove_file(&sony_pf_device->dev, &item->devattr);
3284         }
3285         sony_nc_backlight_cleanup();
3286         sony_nc_function_cleanup(sony_pf_device);
3287         sony_nc_handles_cleanup(sony_pf_device);
3288
3289 outplatform:
3290         sony_laptop_remove_input();
3291
3292 outpresent:
3293         sony_pf_remove();
3294
3295 outwalk:
3296         sony_nc_rfkill_cleanup();
3297         return result;
3298 }
3299
3300 static int sony_nc_remove(struct acpi_device *device)
3301 {
3302         struct sony_nc_value *item;
3303
3304         sony_nc_backlight_cleanup();
3305
3306         sony_nc_acpi_device = NULL;
3307
3308         for (item = sony_nc_values; item->name; ++item) {
3309                 device_remove_file(&sony_pf_device->dev, &item->devattr);
3310         }
3311
3312         sony_nc_function_cleanup(sony_pf_device);
3313         sony_nc_handles_cleanup(sony_pf_device);
3314         sony_pf_remove();
3315         sony_laptop_remove_input();
3316         dprintk(SONY_NC_DRIVER_NAME " removed.\n");
3317
3318         return 0;
3319 }
3320
3321 static const struct acpi_device_id sony_device_ids[] = {
3322         {SONY_NC_HID, 0},
3323         {SONY_PIC_HID, 0},
3324         {"", 0},
3325 };
3326 MODULE_DEVICE_TABLE(acpi, sony_device_ids);
3327
3328 static const struct acpi_device_id sony_nc_device_ids[] = {
3329         {SONY_NC_HID, 0},
3330         {"", 0},
3331 };
3332
3333 static struct acpi_driver sony_nc_driver = {
3334         .name = SONY_NC_DRIVER_NAME,
3335         .class = SONY_NC_CLASS,
3336         .ids = sony_nc_device_ids,
3337         .owner = THIS_MODULE,
3338         .ops = {
3339                 .add = sony_nc_add,
3340                 .remove = sony_nc_remove,
3341                 .notify = sony_nc_notify,
3342                 },
3343         .drv.pm = &sony_nc_pm,
3344 };
3345
3346 /*********** SPIC (SNY6001) Device ***********/
3347
3348 #define SONYPI_DEVICE_TYPE1     0x00000001
3349 #define SONYPI_DEVICE_TYPE2     0x00000002
3350 #define SONYPI_DEVICE_TYPE3     0x00000004
3351
3352 #define SONYPI_TYPE1_OFFSET     0x04
3353 #define SONYPI_TYPE2_OFFSET     0x12
3354 #define SONYPI_TYPE3_OFFSET     0x12
3355
3356 struct sony_pic_ioport {
3357         struct acpi_resource_io io1;
3358         struct acpi_resource_io io2;
3359         struct list_head        list;
3360 };
3361
3362 struct sony_pic_irq {
3363         struct acpi_resource_irq        irq;
3364         struct list_head                list;
3365 };
3366
3367 struct sonypi_eventtypes {
3368         u8                      data;
3369         unsigned long           mask;
3370         struct sonypi_event     *events;
3371 };
3372
3373 struct sony_pic_dev {
3374         struct acpi_device              *acpi_dev;
3375         struct sony_pic_irq             *cur_irq;
3376         struct sony_pic_ioport          *cur_ioport;
3377         struct list_head                interrupts;
3378         struct list_head                ioports;
3379         struct mutex                    lock;
3380         struct sonypi_eventtypes        *event_types;
3381         int                             (*handle_irq)(const u8, const u8);
3382         int                             model;
3383         u16                             evport_offset;
3384         u8                              camera_power;
3385         u8                              bluetooth_power;
3386         u8                              wwan_power;
3387 };
3388
3389 static struct sony_pic_dev spic_dev = {
3390         .interrupts     = LIST_HEAD_INIT(spic_dev.interrupts),
3391         .ioports        = LIST_HEAD_INIT(spic_dev.ioports),
3392 };
3393
3394 static int spic_drv_registered;
3395
3396 /* Event masks */
3397 #define SONYPI_JOGGER_MASK                      0x00000001
3398 #define SONYPI_CAPTURE_MASK                     0x00000002
3399 #define SONYPI_FNKEY_MASK                       0x00000004
3400 #define SONYPI_BLUETOOTH_MASK                   0x00000008
3401 #define SONYPI_PKEY_MASK                        0x00000010
3402 #define SONYPI_BACK_MASK                        0x00000020
3403 #define SONYPI_HELP_MASK                        0x00000040
3404 #define SONYPI_LID_MASK                         0x00000080
3405 #define SONYPI_ZOOM_MASK                        0x00000100
3406 #define SONYPI_THUMBPHRASE_MASK                 0x00000200
3407 #define SONYPI_MEYE_MASK                        0x00000400
3408 #define SONYPI_MEMORYSTICK_MASK                 0x00000800
3409 #define SONYPI_BATTERY_MASK                     0x00001000
3410 #define SONYPI_WIRELESS_MASK                    0x00002000
3411
3412 struct sonypi_event {
3413         u8      data;
3414         u8      event;
3415 };
3416
3417 /* The set of possible button release events */
3418 static struct sonypi_event sonypi_releaseev[] = {
3419         { 0x00, SONYPI_EVENT_ANYBUTTON_RELEASED },
3420         { 0, 0 }
3421 };
3422
3423 /* The set of possible jogger events  */
3424 static struct sonypi_event sonypi_joggerev[] = {
3425         { 0x1f, SONYPI_EVENT_JOGDIAL_UP },
3426         { 0x01, SONYPI_EVENT_JOGDIAL_DOWN },
3427         { 0x5f, SONYPI_EVENT_JOGDIAL_UP_PRESSED },
3428         { 0x41, SONYPI_EVENT_JOGDIAL_DOWN_PRESSED },
3429         { 0x1e, SONYPI_EVENT_JOGDIAL_FAST_UP },
3430         { 0x02, SONYPI_EVENT_JOGDIAL_FAST_DOWN },
3431         { 0x5e, SONYPI_EVENT_JOGDIAL_FAST_UP_PRESSED },
3432         { 0x42, SONYPI_EVENT_JOGDIAL_FAST_DOWN_PRESSED },
3433         { 0x1d, SONYPI_EVENT_JOGDIAL_VFAST_UP },
3434         { 0x03, SONYPI_EVENT_JOGDIAL_VFAST_DOWN },
3435         { 0x5d, SONYPI_EVENT_JOGDIAL_VFAST_UP_PRESSED },
3436         { 0x43, SONYPI_EVENT_JOGDIAL_VFAST_DOWN_PRESSED },
3437         { 0x40, SONYPI_EVENT_JOGDIAL_PRESSED },
3438         { 0, 0 }
3439 };
3440
3441 /* The set of possible capture button events */
3442 static struct sonypi_event sonypi_captureev[] = {
3443         { 0x05, SONYPI_EVENT_CAPTURE_PARTIALPRESSED },
3444         { 0x07, SONYPI_EVENT_CAPTURE_PRESSED },
3445         { 0x40, SONYPI_EVENT_CAPTURE_PRESSED },
3446         { 0x01, SONYPI_EVENT_CAPTURE_PARTIALRELEASED },
3447         { 0, 0 }
3448 };
3449
3450 /* The set of possible fnkeys events */
3451 static struct sonypi_event sonypi_fnkeyev[] = {
3452         { 0x10, SONYPI_EVENT_FNKEY_ESC },
3453         { 0x11, SONYPI_EVENT_FNKEY_F1 },
3454         { 0x12, SONYPI_EVENT_FNKEY_F2 },
3455         { 0x13, SONYPI_EVENT_FNKEY_F3 },
3456         { 0x14, SONYPI_EVENT_FNKEY_F4 },
3457         { 0x15, SONYPI_EVENT_FNKEY_F5 },
3458         { 0x16, SONYPI_EVENT_FNKEY_F6 },
3459         { 0x17, SONYPI_EVENT_FNKEY_F7 },
3460         { 0x18, SONYPI_EVENT_FNKEY_F8 },
3461         { 0x19, SONYPI_EVENT_FNKEY_F9 },
3462         { 0x1a, SONYPI_EVENT_FNKEY_F10 },
3463         { 0x1b, SONYPI_EVENT_FNKEY_F11 },
3464         { 0x1c, SONYPI_EVENT_FNKEY_F12 },
3465         { 0x1f, SONYPI_EVENT_FNKEY_RELEASED },
3466         { 0x21, SONYPI_EVENT_FNKEY_1 },
3467         { 0x22, SONYPI_EVENT_FNKEY_2 },
3468         { 0x31, SONYPI_EVENT_FNKEY_D },
3469         { 0x32, SONYPI_EVENT_FNKEY_E },
3470         { 0x33, SONYPI_EVENT_FNKEY_F },
3471         { 0x34, SONYPI_EVENT_FNKEY_S },
3472         { 0x35, SONYPI_EVENT_FNKEY_B },
3473         { 0x36, SONYPI_EVENT_FNKEY_ONLY },
3474         { 0, 0 }
3475 };
3476
3477 /* The set of possible program key events */
3478 static struct sonypi_event sonypi_pkeyev[] = {
3479         { 0x01, SONYPI_EVENT_PKEY_P1 },
3480         { 0x02, SONYPI_EVENT_PKEY_P2 },
3481         { 0x04, SONYPI_EVENT_PKEY_P3 },
3482         { 0x20, SONYPI_EVENT_PKEY_P1 },
3483         { 0, 0 }
3484 };
3485
3486 /* The set of possible bluetooth events */
3487 static struct sonypi_event sonypi_blueev[] = {
3488         { 0x55, SONYPI_EVENT_BLUETOOTH_PRESSED },
3489         { 0x59, SONYPI_EVENT_BLUETOOTH_ON },
3490         { 0x5a, SONYPI_EVENT_BLUETOOTH_OFF },
3491         { 0, 0 }
3492 };
3493
3494 /* The set of possible wireless events */
3495 static struct sonypi_event sonypi_wlessev[] = {
3496         { 0x59, SONYPI_EVENT_IGNORE },
3497         { 0x5a, SONYPI_EVENT_IGNORE },
3498         { 0, 0 }
3499 };
3500
3501 /* The set of possible back button events */
3502 static struct sonypi_event sonypi_backev[] = {
3503         { 0x20, SONYPI_EVENT_BACK_PRESSED },
3504         { 0, 0 }
3505 };
3506
3507 /* The set of possible help button events */
3508 static struct sonypi_event sonypi_helpev[] = {
3509         { 0x3b, SONYPI_EVENT_HELP_PRESSED },
3510         { 0, 0 }
3511 };
3512
3513
3514 /* The set of possible lid events */
3515 static struct sonypi_event sonypi_lidev[] = {
3516         { 0x51, SONYPI_EVENT_LID_CLOSED },
3517         { 0x50, SONYPI_EVENT_LID_OPENED },
3518         { 0, 0 }
3519 };
3520
3521 /* The set of possible zoom events */
3522 static struct sonypi_event sonypi_zoomev[] = {
3523         { 0x39, SONYPI_EVENT_ZOOM_PRESSED },
3524         { 0x10, SONYPI_EVENT_ZOOM_IN_PRESSED },
3525         { 0x20, SONYPI_EVENT_ZOOM_OUT_PRESSED },
3526         { 0x04, SONYPI_EVENT_ZOOM_PRESSED },
3527         { 0, 0 }
3528 };
3529
3530 /* The set of possible thumbphrase events */
3531 static struct sonypi_event sonypi_thumbphraseev[] = {
3532         { 0x3a, SONYPI_EVENT_THUMBPHRASE_PRESSED },
3533         { 0, 0 }
3534 };
3535
3536 /* The set of possible motioneye camera events */
3537 static struct sonypi_event sonypi_meyeev[] = {
3538         { 0x00, SONYPI_EVENT_MEYE_FACE },
3539         { 0x01, SONYPI_EVENT_MEYE_OPPOSITE },
3540         { 0, 0 }
3541 };
3542
3543 /* The set of possible memorystick events */
3544 static struct sonypi_event sonypi_memorystickev[] = {
3545         { 0x53, SONYPI_EVENT_MEMORYSTICK_INSERT },
3546         { 0x54, SONYPI_EVENT_MEMORYSTICK_EJECT },
3547         { 0, 0 }
3548 };
3549
3550 /* The set of possible battery events */
3551 static struct sonypi_event sonypi_batteryev[] = {
3552         { 0x20, SONYPI_EVENT_BATTERY_INSERT },
3553         { 0x30, SONYPI_EVENT_BATTERY_REMOVE },
3554         { 0, 0 }
3555 };
3556
3557 /* The set of possible volume events */
3558 static struct sonypi_event sonypi_volumeev[] = {
3559         { 0x01, SONYPI_EVENT_VOLUME_INC_PRESSED },
3560         { 0x02, SONYPI_EVENT_VOLUME_DEC_PRESSED },
3561         { 0, 0 }
3562 };
3563
3564 /* The set of possible brightness events */
3565 static struct sonypi_event sonypi_brightnessev[] = {
3566         { 0x80, SONYPI_EVENT_BRIGHTNESS_PRESSED },
3567         { 0, 0 }
3568 };
3569
3570 static struct sonypi_eventtypes type1_events[] = {
3571         { 0, 0xffffffff, sonypi_releaseev },
3572         { 0x70, SONYPI_MEYE_MASK, sonypi_meyeev },
3573         { 0x30, SONYPI_LID_MASK, sonypi_lidev },
3574         { 0x60, SONYPI_CAPTURE_MASK, sonypi_captureev },
3575         { 0x10, SONYPI_JOGGER_MASK, sonypi_joggerev },
3576         { 0x20, SONYPI_FNKEY_MASK, sonypi_fnkeyev },
3577         { 0x30, SONYPI_BLUETOOTH_MASK, sonypi_blueev },
3578         { 0x40, SONYPI_PKEY_MASK, sonypi_pkeyev },
3579         { 0x30, SONYPI_MEMORYSTICK_MASK, sonypi_memorystickev },
3580         { 0x40, SONYPI_BATTERY_MASK, sonypi_batteryev },
3581         { 0 },
3582 };
3583 static struct sonypi_eventtypes type2_events[] = {
3584         { 0, 0xffffffff, sonypi_releaseev },
3585         { 0x38, SONYPI_LID_MASK, sonypi_lidev },
3586         { 0x11, SONYPI_JOGGER_MASK, sonypi_joggerev },
3587         { 0x61, SONYPI_CAPTURE_MASK, sonypi_captureev },
3588         { 0x21, SONYPI_FNKEY_MASK, sonypi_fnkeyev },
3589         { 0x31, SONYPI_BLUETOOTH_MASK, sonypi_blueev },
3590         { 0x08, SONYPI_PKEY_MASK, sonypi_pkeyev },
3591         { 0x11, SONYPI_BACK_MASK, sonypi_backev },
3592         { 0x21, SONYPI_HELP_MASK, sonypi_helpev },
3593         { 0x21, SONYPI_ZOOM_MASK, sonypi_zoomev },
3594         { 0x20, SONYPI_THUMBPHRASE_MASK, sonypi_thumbphraseev },
3595         { 0x31, SONYPI_MEMORYSTICK_MASK, sonypi_memorystickev },
3596         { 0x41, SONYPI_BATTERY_MASK, sonypi_batteryev },
3597         { 0x31, SONYPI_PKEY_MASK, sonypi_pkeyev },
3598         { 0 },
3599 };
3600 static struct sonypi_eventtypes type3_events[] = {
3601         { 0, 0xffffffff, sonypi_releaseev },
3602         { 0x21, SONYPI_FNKEY_MASK, sonypi_fnkeyev },
3603         { 0x31, SONYPI_WIRELESS_MASK, sonypi_wlessev },
3604         { 0x31, SONYPI_MEMORYSTICK_MASK, sonypi_memorystickev },
3605         { 0x41, SONYPI_BATTERY_MASK, sonypi_batteryev },
3606         { 0x31, SONYPI_PKEY_MASK, sonypi_pkeyev },
3607         { 0x05, SONYPI_PKEY_MASK, sonypi_pkeyev },
3608         { 0x05, SONYPI_ZOOM_MASK, sonypi_zoomev },
3609         { 0x05, SONYPI_CAPTURE_MASK, sonypi_captureev },
3610         { 0x05, SONYPI_PKEY_MASK, sonypi_volumeev },
3611         { 0x05, SONYPI_PKEY_MASK, sonypi_brightnessev },
3612         { 0 },
3613 };
3614
3615 /* low level spic calls */
3616 #define ITERATIONS_LONG         10000
3617 #define ITERATIONS_SHORT        10
3618 #define wait_on_command(command, iterations) {                          \
3619         unsigned int n = iterations;                                    \
3620         while (--n && (command))                                        \
3621                 udelay(1);                                              \
3622         if (!n)                                                         \
3623                 dprintk("command failed at %s : %s (line %d)\n",        \
3624                                 __FILE__, __func__, __LINE__);  \
3625 }
3626
3627 static u8 sony_pic_call1(u8 dev)
3628 {
3629         u8 v1, v2;
3630
3631         wait_on_command(inb_p(spic_dev.cur_ioport->io1.minimum + 4) & 2,
3632                         ITERATIONS_LONG);
3633         outb(dev, spic_dev.cur_ioport->io1.minimum + 4);
3634         v1 = inb_p(spic_dev.cur_ioport->io1.minimum + 4);
3635         v2 = inb_p(spic_dev.cur_ioport->io1.minimum);
3636         dprintk("sony_pic_call1(0x%.2x): 0x%.4x\n", dev, (v2 << 8) | v1);
3637         return v2;
3638 }
3639
3640 static u8 sony_pic_call2(u8 dev, u8 fn)
3641 {
3642         u8 v1;
3643
3644         wait_on_command(inb_p(spic_dev.cur_ioport->io1.minimum + 4) & 2,
3645                         ITERATIONS_LONG);
3646         outb(dev, spic_dev.cur_ioport->io1.minimum + 4);
3647         wait_on_command(inb_p(spic_dev.cur_ioport->io1.minimum + 4) & 2,
3648                         ITERATIONS_LONG);
3649         outb(fn, spic_dev.cur_ioport->io1.minimum);
3650         v1 = inb_p(spic_dev.cur_ioport->io1.minimum);
3651         dprintk("sony_pic_call2(0x%.2x - 0x%.2x): 0x%.4x\n", dev, fn, v1);
3652         return v1;
3653 }
3654
3655 static u8 sony_pic_call3(u8 dev, u8 fn, u8 v)
3656 {
3657         u8 v1;
3658
3659         wait_on_command(inb_p(spic_dev.cur_ioport->io1.minimum + 4) & 2, ITERATIONS_LONG);
3660         outb(dev, spic_dev.cur_ioport->io1.minimum + 4);
3661         wait_on_command(inb_p(spic_dev.cur_ioport->io1.minimum + 4) & 2, ITERATIONS_LONG);
3662         outb(fn, spic_dev.cur_ioport->io1.minimum);
3663         wait_on_command(inb_p(spic_dev.cur_ioport->io1.minimum + 4) & 2, ITERATIONS_LONG);
3664         outb(v, spic_dev.cur_ioport->io1.minimum);
3665         v1 = inb_p(spic_dev.cur_ioport->io1.minimum);
3666         dprintk("sony_pic_call3(0x%.2x - 0x%.2x - 0x%.2x): 0x%.4x\n",
3667                         dev, fn, v, v1);
3668         return v1;
3669 }
3670
3671 /*
3672  * minidrivers for SPIC models
3673  */
3674 static int type3_handle_irq(const u8 data_mask, const u8 ev)
3675 {
3676         /*
3677          * 0x31 could mean we have to take some extra action and wait for
3678          * the next irq for some Type3 models, it will generate a new
3679          * irq and we can read new data from the device:
3680          *  - 0x5c and 0x5f requires 0xA0
3681          *  - 0x61 requires 0xB3
3682          */
3683         if (data_mask == 0x31) {
3684                 if (ev == 0x5c || ev == 0x5f)
3685                         sony_pic_call1(0xA0);
3686                 else if (ev == 0x61)
3687                         sony_pic_call1(0xB3);
3688                 return 0;
3689         }
3690         return 1;
3691 }
3692
3693 static void sony_pic_detect_device_type(struct sony_pic_dev *dev)
3694 {
3695         struct pci_dev *pcidev;
3696
3697         pcidev = pci_get_device(PCI_VENDOR_ID_INTEL,
3698                         PCI_DEVICE_ID_INTEL_82371AB_3, NULL);
3699         if (pcidev) {
3700                 dev->model = SONYPI_DEVICE_TYPE1;
3701                 dev->evport_offset = SONYPI_TYPE1_OFFSET;
3702                 dev->event_types = type1_events;
3703                 goto out;
3704         }
3705
3706         pcidev = pci_get_device(PCI_VENDOR_ID_INTEL,
3707                         PCI_DEVICE_ID_INTEL_ICH6_1, NULL);
3708         if (pcidev) {
3709                 dev->model = SONYPI_DEVICE_TYPE2;
3710                 dev->evport_offset = SONYPI_TYPE2_OFFSET;
3711                 dev->event_types = type2_events;
3712                 goto out;
3713         }
3714
3715         pcidev = pci_get_device(PCI_VENDOR_ID_INTEL,
3716                         PCI_DEVICE_ID_INTEL_ICH7_1, NULL);
3717         if (pcidev) {
3718                 dev->model = SONYPI_DEVICE_TYPE3;
3719                 dev->handle_irq = type3_handle_irq;
3720                 dev->evport_offset = SONYPI_TYPE3_OFFSET;
3721                 dev->event_types = type3_events;
3722                 goto out;
3723         }
3724
3725         pcidev = pci_get_device(PCI_VENDOR_ID_INTEL,
3726                         PCI_DEVICE_ID_INTEL_ICH8_4, NULL);
3727         if (pcidev) {
3728                 dev->model = SONYPI_DEVICE_TYPE3;
3729                 dev->handle_irq = type3_handle_irq;
3730                 dev->evport_offset = SONYPI_TYPE3_OFFSET;
3731                 dev->event_types = type3_events;
3732                 goto out;
3733         }
3734
3735         pcidev = pci_get_device(PCI_VENDOR_ID_INTEL,
3736                         PCI_DEVICE_ID_INTEL_ICH9_1, NULL);
3737         if (pcidev) {
3738                 dev->model = SONYPI_DEVICE_TYPE3;
3739                 dev->handle_irq = type3_handle_irq;
3740                 dev->evport_offset = SONYPI_TYPE3_OFFSET;
3741                 dev->event_types = type3_events;
3742                 goto out;
3743         }
3744
3745         /* default */
3746         dev->model = SONYPI_DEVICE_TYPE2;
3747         dev->evport_offset = SONYPI_TYPE2_OFFSET;
3748         dev->event_types = type2_events;
3749
3750 out:
3751         pci_dev_put(pcidev);
3752
3753         pr_info("detected Type%d model\n",
3754                 dev->model == SONYPI_DEVICE_TYPE1 ? 1 :
3755                 dev->model == SONYPI_DEVICE_TYPE2 ? 2 : 3);
3756 }
3757
3758 /* camera tests and poweron/poweroff */
3759 #define SONYPI_CAMERA_PICTURE           5
3760 #define SONYPI_CAMERA_CONTROL           0x10
3761
3762 #define SONYPI_CAMERA_BRIGHTNESS                0
3763 #define SONYPI_CAMERA_CONTRAST                  1
3764 #define SONYPI_CAMERA_HUE                       2
3765 #define SONYPI_CAMERA_COLOR                     3
3766 #define SONYPI_CAMERA_SHARPNESS                 4
3767
3768 #define SONYPI_CAMERA_EXPOSURE_MASK             0xC
3769 #define SONYPI_CAMERA_WHITE_BALANCE_MASK        0x3
3770 #define SONYPI_CAMERA_PICTURE_MODE_MASK         0x30
3771 #define SONYPI_CAMERA_MUTE_MASK                 0x40
3772
3773 /* the rest don't need a loop until not 0xff */
3774 #define SONYPI_CAMERA_AGC                       6
3775 #define SONYPI_CAMERA_AGC_MASK                  0x30
3776 #define SONYPI_CAMERA_SHUTTER_MASK              0x7
3777
3778 #define SONYPI_CAMERA_SHUTDOWN_REQUEST          7
3779 #define SONYPI_CAMERA_CONTROL                   0x10
3780
3781 #define SONYPI_CAMERA_STATUS                    7
3782 #define SONYPI_CAMERA_STATUS_READY              0x2
3783 #define SONYPI_CAMERA_STATUS_POSITION           0x4
3784
3785 #define SONYPI_DIRECTION_BACKWARDS              0x4
3786
3787 #define SONYPI_CAMERA_REVISION                  8
3788 #define SONYPI_CAMERA_ROMVERSION                9
3789
3790 static int __sony_pic_camera_ready(void)
3791 {
3792         u8 v;
3793
3794         v = sony_pic_call2(0x8f, SONYPI_CAMERA_STATUS);
3795         return (v != 0xff && (v & SONYPI_CAMERA_STATUS_READY));
3796 }
3797
3798 static int __sony_pic_camera_off(void)
3799 {
3800         if (!camera) {
3801                 pr_warn("camera control not enabled\n");
3802                 return -ENODEV;
3803         }
3804
3805         wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_PICTURE,
3806                                 SONYPI_CAMERA_MUTE_MASK),
3807                         ITERATIONS_SHORT);
3808
3809         if (spic_dev.camera_power) {
3810                 sony_pic_call2(0x91, 0);
3811                 spic_dev.camera_power = 0;
3812         }
3813         return 0;
3814 }
3815
3816 static int __sony_pic_camera_on(void)
3817 {
3818         int i, j, x;
3819
3820         if (!camera) {
3821                 pr_warn("camera control not enabled\n");
3822                 return -ENODEV;
3823         }
3824
3825         if (spic_dev.camera_power)
3826                 return 0;
3827
3828         for (j = 5; j > 0; j--) {
3829
3830                 for (x = 0; x < 100 && sony_pic_call2(0x91, 0x1); x++)
3831                         msleep(10);
3832                 sony_pic_call1(0x93);
3833
3834                 for (i = 400; i > 0; i--) {
3835                         if (__sony_pic_camera_ready())
3836                                 break;
3837                         msleep(10);
3838                 }
3839                 if (i)
3840                         break;
3841         }
3842
3843         if (j == 0) {
3844                 pr_warn("failed to power on camera\n");
3845                 return -ENODEV;
3846         }
3847
3848         wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_CONTROL,
3849                                 0x5a),
3850                         ITERATIONS_SHORT);
3851
3852         spic_dev.camera_power = 1;
3853         return 0;
3854 }
3855
3856 /* External camera command (exported to the motion eye v4l driver) */
3857 int sony_pic_camera_command(int command, u8 value)
3858 {
3859         if (!camera)
3860                 return -EIO;
3861
3862         mutex_lock(&spic_dev.lock);
3863
3864         switch (command) {
3865         case SONY_PIC_COMMAND_SETCAMERA:
3866                 if (value)
3867                         __sony_pic_camera_on();
3868                 else
3869                         __sony_pic_camera_off();
3870                 break;
3871         case SONY_PIC_COMMAND_SETCAMERABRIGHTNESS:
3872                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_BRIGHTNESS, value),
3873                                 ITERATIONS_SHORT);
3874                 break;
3875         case SONY_PIC_COMMAND_SETCAMERACONTRAST:
3876                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_CONTRAST, value),
3877                                 ITERATIONS_SHORT);
3878                 break;
3879         case SONY_PIC_COMMAND_SETCAMERAHUE:
3880                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_HUE, value),
3881                                 ITERATIONS_SHORT);
3882                 break;
3883         case SONY_PIC_COMMAND_SETCAMERACOLOR:
3884                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_COLOR, value),
3885                                 ITERATIONS_SHORT);
3886                 break;
3887         case SONY_PIC_COMMAND_SETCAMERASHARPNESS:
3888                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_SHARPNESS, value),
3889                                 ITERATIONS_SHORT);
3890                 break;
3891         case SONY_PIC_COMMAND_SETCAMERAPICTURE:
3892                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_PICTURE, value),
3893                                 ITERATIONS_SHORT);
3894                 break;
3895         case SONY_PIC_COMMAND_SETCAMERAAGC:
3896                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_AGC, value),
3897                                 ITERATIONS_SHORT);
3898                 break;
3899         default:
3900                 pr_err("sony_pic_camera_command invalid: %d\n", command);
3901                 break;
3902         }
3903         mutex_unlock(&spic_dev.lock);
3904         return 0;
3905 }
3906 EXPORT_SYMBOL(sony_pic_camera_command);
3907
3908 /* gprs/edge modem (SZ460N and SZ210P), thanks to Joshua Wise */
3909 static void __sony_pic_set_wwanpower(u8 state)
3910 {
3911         state = !!state;
3912         if (spic_dev.wwan_power == state)
3913                 return;
3914         sony_pic_call2(0xB0, state);
3915         sony_pic_call1(0x82);
3916         spic_dev.wwan_power = state;
3917 }
3918
3919 static ssize_t sony_pic_wwanpower_store(struct device *dev,
3920                 struct device_attribute *attr,
3921                 const char *buffer, size_t count)
3922 {
3923         unsigned long value;
3924         if (count > 31)
3925                 return -EINVAL;
3926
3927         if (kstrtoul(buffer, 10, &value))
3928                 return -EINVAL;
3929
3930         mutex_lock(&spic_dev.lock);
3931         __sony_pic_set_wwanpower(value);
3932         mutex_unlock(&spic_dev.lock);
3933
3934         return count;
3935 }
3936
3937 static ssize_t sony_pic_wwanpower_show(struct device *dev,
3938                 struct device_attribute *attr, char *buffer)
3939 {
3940         ssize_t count;
3941         mutex_lock(&spic_dev.lock);
3942         count = snprintf(buffer, PAGE_SIZE, "%d\n", spic_dev.wwan_power);
3943         mutex_unlock(&spic_dev.lock);
3944         return count;
3945 }
3946
3947 /* bluetooth subsystem power state */
3948 static void __sony_pic_set_bluetoothpower(u8 state)
3949 {
3950         state = !!state;
3951         if (spic_dev.bluetooth_power == state)
3952                 return;
3953         sony_pic_call2(0x96, state);
3954         sony_pic_call1(0x82);
3955         spic_dev.bluetooth_power = state;
3956 }
3957
3958 static ssize_t sony_pic_bluetoothpower_store(struct device *dev,
3959                 struct device_attribute *attr,
3960                 const char *buffer, size_t count)
3961 {
3962         unsigned long value;
3963         if (count > 31)
3964                 return -EINVAL;
3965
3966         if (kstrtoul(buffer, 10, &value))
3967                 return -EINVAL;
3968
3969         mutex_lock(&spic_dev.lock);
3970         __sony_pic_set_bluetoothpower(value);
3971         mutex_unlock(&spic_dev.lock);
3972
3973         return count;
3974 }
3975
3976 static ssize_t sony_pic_bluetoothpower_show(struct device *dev,
3977                 struct device_attribute *attr, char *buffer)
3978 {
3979         ssize_t count = 0;
3980         mutex_lock(&spic_dev.lock);
3981         count = snprintf(buffer, PAGE_SIZE, "%d\n", spic_dev.bluetooth_power);
3982         mutex_unlock(&spic_dev.lock);
3983         return count;
3984 }
3985
3986 /* fan speed */
3987 /* FAN0 information (reverse engineered from ACPI tables) */
3988 #define SONY_PIC_FAN0_STATUS    0x93
3989 static int sony_pic_set_fanspeed(unsigned long value)
3990 {
3991         return ec_write(SONY_PIC_FAN0_STATUS, value);
3992 }
3993
3994 static int sony_pic_get_fanspeed(u8 *value)
3995 {
3996         return ec_read(SONY_PIC_FAN0_STATUS, value);
3997 }
3998
3999 static ssize_t sony_pic_fanspeed_store(struct device *dev,
4000                 struct device_attribute *attr,
4001                 const char *buffer, size_t count)
4002 {
4003         unsigned long value;
4004         if (count > 31)
4005                 return -EINVAL;
4006
4007         if (kstrtoul(buffer, 10, &value))
4008                 return -EINVAL;
4009
4010         if (sony_pic_set_fanspeed(value))
4011                 return -EIO;
4012
4013         return count;
4014 }
4015
4016 static ssize_t sony_pic_fanspeed_show(struct device *dev,
4017                 struct device_attribute *attr, char *buffer)
4018 {
4019         u8 value = 0;
4020         if (sony_pic_get_fanspeed(&value))
4021                 return -EIO;
4022
4023         return snprintf(buffer, PAGE_SIZE, "%d\n", value);
4024 }
4025
4026 #define SPIC_ATTR(_name, _mode)                                 \
4027 struct device_attribute spic_attr_##_name = __ATTR(_name,       \
4028                 _mode, sony_pic_## _name ##_show,               \
4029                 sony_pic_## _name ##_store)
4030
4031 static SPIC_ATTR(bluetoothpower, 0644);
4032 static SPIC_ATTR(wwanpower, 0644);
4033 static SPIC_ATTR(fanspeed, 0644);
4034
4035 static struct attribute *spic_attributes[] = {
4036         &spic_attr_bluetoothpower.attr,
4037         &spic_attr_wwanpower.attr,
4038         &spic_attr_fanspeed.attr,
4039         NULL
4040 };
4041
4042 static const struct attribute_group spic_attribute_group = {
4043         .attrs = spic_attributes
4044 };
4045
4046 /******** SONYPI compatibility **********/
4047 #ifdef CONFIG_SONYPI_COMPAT
4048
4049 /* battery / brightness / temperature  addresses */
4050 #define SONYPI_BAT_FLAGS        0x81
4051 #define SONYPI_LCD_LIGHT        0x96
4052 #define SONYPI_BAT1_PCTRM       0xa0
4053 #define SONYPI_BAT1_LEFT        0xa2
4054 #define SONYPI_BAT1_MAXRT       0xa4
4055 #define SONYPI_BAT2_PCTRM       0xa8
4056 #define SONYPI_BAT2_LEFT        0xaa
4057 #define SONYPI_BAT2_MAXRT       0xac
4058 #define SONYPI_BAT1_MAXTK       0xb0
4059 #define SONYPI_BAT1_FULL        0xb2
4060 #define SONYPI_BAT2_MAXTK       0xb8
4061 #define SONYPI_BAT2_FULL        0xba
4062 #define SONYPI_TEMP_STATUS      0xC1
4063
4064 struct sonypi_compat_s {
4065         struct fasync_struct    *fifo_async;
4066         struct kfifo            fifo;
4067         spinlock_t              fifo_lock;
4068         wait_queue_head_t       fifo_proc_list;
4069         atomic_t                open_count;
4070 };
4071 static struct sonypi_compat_s sonypi_compat = {
4072         .open_count = ATOMIC_INIT(0),
4073 };
4074
4075 static int sonypi_misc_fasync(int fd, struct file *filp, int on)
4076 {
4077         return fasync_helper(fd, filp, on, &sonypi_compat.fifo_async);
4078 }
4079
4080 static int sonypi_misc_release(struct inode *inode, struct file *file)
4081 {
4082         atomic_dec(&sonypi_compat.open_count);
4083         return 0;
4084 }
4085
4086 static int sonypi_misc_open(struct inode *inode, struct file *file)
4087 {
4088         /* Flush input queue on first open */
4089         unsigned long flags;
4090
4091         spin_lock_irqsave(&sonypi_compat.fifo_lock, flags);
4092
4093         if (atomic_inc_return(&sonypi_compat.open_count) == 1)
4094                 kfifo_reset(&sonypi_compat.fifo);
4095
4096         spin_unlock_irqrestore(&sonypi_compat.fifo_lock, flags);
4097
4098         return 0;
4099 }
4100
4101 static ssize_t sonypi_misc_read(struct file *file, char __user *buf,
4102                                 size_t count, loff_t *pos)
4103 {
4104         ssize_t ret;
4105         unsigned char c;
4106
4107         if ((kfifo_len(&sonypi_compat.fifo) == 0) &&
4108             (file->f_flags & O_NONBLOCK))
4109                 return -EAGAIN;
4110
4111         ret = wait_event_interruptible(sonypi_compat.fifo_proc_list,
4112                                        kfifo_len(&sonypi_compat.fifo) != 0);
4113         if (ret)
4114                 return ret;
4115
4116         while (ret < count &&
4117                (kfifo_out_locked(&sonypi_compat.fifo, &c, sizeof(c),
4118                           &sonypi_compat.fifo_lock) == sizeof(c))) {
4119                 if (put_user(c, buf++))
4120                         return -EFAULT;
4121                 ret++;
4122         }
4123
4124         if (ret > 0) {
4125                 struct inode *inode = file_inode(file);
4126                 inode->i_atime = current_time(inode);
4127         }
4128
4129         return ret;
4130 }
4131
4132 static unsigned int sonypi_misc_poll(struct file *file, poll_table *wait)
4133 {
4134         poll_wait(file, &sonypi_compat.fifo_proc_list, wait);
4135         if (kfifo_len(&sonypi_compat.fifo))
4136                 return POLLIN | POLLRDNORM;
4137         return 0;
4138 }
4139
4140 static int ec_read16(u8 addr, u16 *value)
4141 {
4142         u8 val_lb, val_hb;
4143         if (ec_read(addr, &val_lb))
4144                 return -1;
4145         if (ec_read(addr + 1, &val_hb))
4146                 return -1;
4147         *value = val_lb | (val_hb << 8);
4148         return 0;
4149 }
4150
4151 static long sonypi_misc_ioctl(struct file *fp, unsigned int cmd,
4152                                                         unsigned long arg)
4153 {
4154         int ret = 0;
4155         void __user *argp = (void __user *)arg;
4156         u8 val8;
4157         u16 val16;
4158         int value;
4159
4160         mutex_lock(&spic_dev.lock);
4161         switch (cmd) {
4162         case SONYPI_IOCGBRT:
4163                 if (sony_bl_props.dev == NULL) {
4164                         ret = -EIO;
4165                         break;
4166                 }
4167                 if (sony_nc_int_call(sony_nc_acpi_handle, "GBRT", NULL,
4168                                         &value)) {
4169                         ret = -EIO;
4170                         break;
4171                 }
4172                 val8 = ((value & 0xff) - 1) << 5;
4173                 if (copy_to_user(argp, &val8, sizeof(val8)))
4174                                 ret = -EFAULT;
4175                 break;
4176         case SONYPI_IOCSBRT:
4177                 if (sony_bl_props.dev == NULL) {
4178                         ret = -EIO;
4179                         break;
4180                 }
4181                 if (copy_from_user(&val8, argp, sizeof(val8))) {
4182                         ret = -EFAULT;
4183                         break;
4184                 }
4185                 value = (val8 >> 5) + 1;
4186                 if (sony_nc_int_call(sony_nc_acpi_handle, "SBRT", &value,
4187                                         NULL)) {
4188                         ret = -EIO;
4189                         break;
4190                 }
4191                 /* sync the backlight device status */
4192                 sony_bl_props.dev->props.brightness =
4193                     sony_backlight_get_brightness(sony_bl_props.dev);
4194                 break;
4195         case SONYPI_IOCGBAT1CAP:
4196                 if (ec_read16(SONYPI_BAT1_FULL, &val16)) {
4197                         ret = -EIO;
4198                         break;
4199                 }
4200                 if (copy_to_user(argp, &val16, sizeof(val16)))
4201                         ret = -EFAULT;
4202                 break;
4203         case SONYPI_IOCGBAT1REM:
4204                 if (ec_read16(SONYPI_BAT1_LEFT, &val16)) {
4205                         ret = -EIO;
4206                         break;
4207                 }
4208                 if (copy_to_user(argp, &val16, sizeof(val16)))
4209                         ret = -EFAULT;
4210                 break;
4211         case SONYPI_IOCGBAT2CAP:
4212                 if (ec_read16(SONYPI_BAT2_FULL, &val16)) {
4213                         ret = -EIO;
4214                         break;
4215                 }
4216                 if (copy_to_user(argp, &val16, sizeof(val16)))
4217                         ret = -EFAULT;
4218                 break;
4219         case SONYPI_IOCGBAT2REM:
4220                 if (ec_read16(SONYPI_BAT2_LEFT, &val16)) {
4221                         ret = -EIO;
4222                         break;
4223                 }
4224                 if (copy_to_user(argp, &val16, sizeof(val16)))
4225                         ret = -EFAULT;
4226                 break;
4227         case SONYPI_IOCGBATFLAGS:
4228                 if (ec_read(SONYPI_BAT_FLAGS, &val8)) {
4229                         ret = -EIO;
4230                         break;
4231                 }
4232                 val8 &= 0x07;
4233                 if (copy_to_user(argp, &val8, sizeof(val8)))
4234                         ret = -EFAULT;
4235                 break;
4236         case SONYPI_IOCGBLUE:
4237                 val8 = spic_dev.bluetooth_power;
4238                 if (copy_to_user(argp, &val8, sizeof(val8)))
4239                         ret = -EFAULT;
4240                 break;
4241         case SONYPI_IOCSBLUE:
4242                 if (copy_from_user(&val8, argp, sizeof(val8))) {
4243                         ret = -EFAULT;
4244                         break;
4245                 }
4246                 __sony_pic_set_bluetoothpower(val8);
4247                 break;
4248         /* FAN Controls */
4249         case SONYPI_IOCGFAN:
4250                 if (sony_pic_get_fanspeed(&val8)) {
4251                         ret = -EIO;
4252                         break;
4253                 }
4254                 if (copy_to_user(argp, &val8, sizeof(val8)))
4255                         ret = -EFAULT;
4256                 break;
4257         case SONYPI_IOCSFAN:
4258                 if (copy_from_user(&val8, argp, sizeof(val8))) {
4259                         ret = -EFAULT;
4260                         break;
4261                 }
4262                 if (sony_pic_set_fanspeed(val8))
4263                         ret = -EIO;
4264                 break;
4265         /* GET Temperature (useful under APM) */
4266         case SONYPI_IOCGTEMP:
4267                 if (ec_read(SONYPI_TEMP_STATUS, &val8)) {
4268                         ret = -EIO;
4269                         break;
4270                 }
4271                 if (copy_to_user(argp, &val8, sizeof(val8)))
4272                         ret = -EFAULT;
4273                 break;
4274         default:
4275                 ret = -EINVAL;
4276         }
4277         mutex_unlock(&spic_dev.lock);
4278         return ret;
4279 }
4280
4281 static const struct file_operations sonypi_misc_fops = {
4282         .owner          = THIS_MODULE,
4283         .read           = sonypi_misc_read,
4284         .poll           = sonypi_misc_poll,
4285         .open           = sonypi_misc_open,
4286         .release        = sonypi_misc_release,
4287         .fasync         = sonypi_misc_fasync,
4288         .unlocked_ioctl = sonypi_misc_ioctl,
4289         .llseek         = noop_llseek,
4290 };
4291
4292 static struct miscdevice sonypi_misc_device = {
4293         .minor          = MISC_DYNAMIC_MINOR,
4294         .name           = "sonypi",
4295         .fops           = &sonypi_misc_fops,
4296 };
4297
4298 static void sonypi_compat_report_event(u8 event)
4299 {
4300         kfifo_in_locked(&sonypi_compat.fifo, (unsigned char *)&event,
4301                         sizeof(event), &sonypi_compat.fifo_lock);
4302         kill_fasync(&sonypi_compat.fifo_async, SIGIO, POLL_IN);
4303         wake_up_interruptible(&sonypi_compat.fifo_proc_list);
4304 }
4305
4306 static int sonypi_compat_init(void)
4307 {
4308         int error;
4309
4310         spin_lock_init(&sonypi_compat.fifo_lock);
4311         error =
4312          kfifo_alloc(&sonypi_compat.fifo, SONY_LAPTOP_BUF_SIZE, GFP_KERNEL);
4313         if (error) {
4314                 pr_err("kfifo_alloc failed\n");
4315                 return error;
4316         }
4317
4318         init_waitqueue_head(&sonypi_compat.fifo_proc_list);
4319
4320         if (minor != -1)
4321                 sonypi_misc_device.minor = minor;
4322         error = misc_register(&sonypi_misc_device);
4323         if (error) {
4324                 pr_err("misc_register failed\n");
4325                 goto err_free_kfifo;
4326         }
4327         if (minor == -1)
4328                 pr_info("device allocated minor is %d\n",
4329                         sonypi_misc_device.minor);
4330
4331         return 0;
4332
4333 err_free_kfifo:
4334         kfifo_free(&sonypi_compat.fifo);
4335         return error;
4336 }
4337
4338 static void sonypi_compat_exit(void)
4339 {
4340         misc_deregister(&sonypi_misc_device);
4341         kfifo_free(&sonypi_compat.fifo);
4342 }
4343 #else
4344 static int sonypi_compat_init(void) { return 0; }
4345 static void sonypi_compat_exit(void) { }
4346 static void sonypi_compat_report_event(u8 event) { }
4347 #endif /* CONFIG_SONYPI_COMPAT */
4348
4349 /*
4350  * ACPI callbacks
4351  */
4352 static acpi_status
4353 sony_pic_read_possible_resource(struct acpi_resource *resource, void *context)
4354 {
4355         u32 i;
4356         struct sony_pic_dev *dev = (struct sony_pic_dev *)context;
4357
4358         switch (resource->type) {
4359         case ACPI_RESOURCE_TYPE_START_DEPENDENT:
4360                 {
4361                         /* start IO enumeration */
4362                         struct sony_pic_ioport *ioport = kzalloc(sizeof(*ioport), GFP_KERNEL);
4363                         if (!ioport)
4364                                 return AE_ERROR;
4365
4366                         list_add(&ioport->list, &dev->ioports);
4367                         return AE_OK;
4368                 }
4369
4370         case ACPI_RESOURCE_TYPE_END_DEPENDENT:
4371                 /* end IO enumeration */
4372                 return AE_OK;
4373
4374         case ACPI_RESOURCE_TYPE_IRQ:
4375                 {
4376                         struct acpi_resource_irq *p = &resource->data.irq;
4377                         struct sony_pic_irq *interrupt = NULL;
4378                         if (!p || !p->interrupt_count) {
4379                                 /*
4380                                  * IRQ descriptors may have no IRQ# bits set,
4381                                  * particularly those those w/ _STA disabled
4382                                  */
4383                                 dprintk("Blank IRQ resource\n");
4384                                 return AE_OK;
4385                         }
4386                         for (i = 0; i < p->interrupt_count; i++) {
4387                                 if (!p->interrupts[i]) {
4388                                         pr_warn("Invalid IRQ %d\n",
4389                                                 p->interrupts[i]);
4390                                         continue;
4391                                 }
4392                                 interrupt = kzalloc(sizeof(*interrupt),
4393                                                 GFP_KERNEL);
4394                                 if (!interrupt)
4395                                         return AE_ERROR;
4396
4397                                 list_add(&interrupt->list, &dev->interrupts);
4398                                 interrupt->irq.triggering = p->triggering;
4399                                 interrupt->irq.polarity = p->polarity;
4400                                 interrupt->irq.sharable = p->sharable;
4401                                 interrupt->irq.interrupt_count = 1;
4402                                 interrupt->irq.interrupts[0] = p->interrupts[i];
4403                         }
4404                         return AE_OK;
4405                 }
4406         case ACPI_RESOURCE_TYPE_IO:
4407                 {
4408                         struct acpi_resource_io *io = &resource->data.io;
4409                         struct sony_pic_ioport *ioport =
4410                                 list_first_entry(&dev->ioports, struct sony_pic_ioport, list);
4411                         if (!io) {
4412                                 dprintk("Blank IO resource\n");
4413                                 return AE_OK;
4414                         }
4415
4416                         if (!ioport->io1.minimum) {
4417                                 memcpy(&ioport->io1, io, sizeof(*io));
4418                                 dprintk("IO1 at 0x%.4x (0x%.2x)\n", ioport->io1.minimum,
4419                                                 ioport->io1.address_length);
4420                         }
4421                         else if (!ioport->io2.minimum) {
4422                                 memcpy(&ioport->io2, io, sizeof(*io));
4423                                 dprintk("IO2 at 0x%.4x (0x%.2x)\n", ioport->io2.minimum,
4424                                                 ioport->io2.address_length);
4425                         }
4426                         else {
4427                                 pr_err("Unknown SPIC Type, more than 2 IO Ports\n");
4428                                 return AE_ERROR;
4429                         }
4430                         return AE_OK;
4431                 }
4432
4433         case ACPI_RESOURCE_TYPE_END_TAG:
4434                 return AE_OK;
4435
4436         default:
4437                 dprintk("Resource %d isn't an IRQ nor an IO port\n",
4438                         resource->type);
4439                 return AE_CTRL_TERMINATE;
4440
4441         }
4442 }
4443
4444 static int sony_pic_possible_resources(struct acpi_device *device)
4445 {
4446         int result = 0;
4447         acpi_status status = AE_OK;
4448
4449         if (!device)
4450                 return -EINVAL;
4451
4452         /* get device status */
4453         /* see acpi_pci_link_get_current acpi_pci_link_get_possible */
4454         dprintk("Evaluating _STA\n");
4455         result = acpi_bus_get_status(device);
4456         if (result) {
4457                 pr_warn("Unable to read status\n");
4458                 goto end;
4459         }
4460
4461         if (!device->status.enabled)
4462                 dprintk("Device disabled\n");
4463         else
4464                 dprintk("Device enabled\n");
4465
4466         /*
4467          * Query and parse 'method'
4468          */
4469         dprintk("Evaluating %s\n", METHOD_NAME__PRS);
4470         status = acpi_walk_resources(device->handle, METHOD_NAME__PRS,
4471                         sony_pic_read_possible_resource, &spic_dev);
4472         if (ACPI_FAILURE(status)) {
4473                 pr_warn("Failure evaluating %s\n", METHOD_NAME__PRS);
4474                 result = -ENODEV;
4475         }
4476 end:
4477         return result;
4478 }
4479
4480 /*
4481  *  Disable the spic device by calling its _DIS method
4482  */
4483 static int sony_pic_disable(struct acpi_device *device)
4484 {
4485         acpi_status ret = acpi_evaluate_object(device->handle, "_DIS", NULL,
4486                                                NULL);
4487
4488         if (ACPI_FAILURE(ret) && ret != AE_NOT_FOUND)
4489                 return -ENXIO;
4490
4491         dprintk("Device disabled\n");
4492         return 0;
4493 }
4494
4495
4496 /*
4497  *  Based on drivers/acpi/pci_link.c:acpi_pci_link_set
4498  *
4499  *  Call _SRS to set current resources
4500  */
4501 static int sony_pic_enable(struct acpi_device *device,
4502                 struct sony_pic_ioport *ioport, struct sony_pic_irq *irq)
4503 {
4504         acpi_status status;
4505         int result = 0;
4506         /* Type 1 resource layout is:
4507          *    IO
4508          *    IO
4509          *    IRQNoFlags
4510          *    End
4511          *
4512          * Type 2 and 3 resource layout is:
4513          *    IO
4514          *    IRQNoFlags
4515          *    End
4516          */
4517         struct {
4518                 struct acpi_resource res1;
4519                 struct acpi_resource res2;
4520                 struct acpi_resource res3;
4521                 struct acpi_resource res4;
4522         } *resource;
4523         struct acpi_buffer buffer = { 0, NULL };
4524
4525         if (!ioport || !irq)
4526                 return -EINVAL;
4527
4528         /* init acpi_buffer */
4529         resource = kzalloc(sizeof(*resource) + 1, GFP_KERNEL);
4530         if (!resource)
4531                 return -ENOMEM;
4532
4533         buffer.length = sizeof(*resource) + 1;
4534         buffer.pointer = resource;
4535
4536         /* setup Type 1 resources */
4537         if (spic_dev.model == SONYPI_DEVICE_TYPE1) {
4538
4539                 /* setup io resources */
4540                 resource->res1.type = ACPI_RESOURCE_TYPE_IO;
4541                 resource->res1.length = sizeof(struct acpi_resource);
4542                 memcpy(&resource->res1.data.io, &ioport->io1,
4543                                 sizeof(struct acpi_resource_io));
4544
4545                 resource->res2.type = ACPI_RESOURCE_TYPE_IO;
4546                 resource->res2.length = sizeof(struct acpi_resource);
4547                 memcpy(&resource->res2.data.io, &ioport->io2,
4548                                 sizeof(struct acpi_resource_io));
4549
4550                 /* setup irq resource */
4551                 resource->res3.type = ACPI_RESOURCE_TYPE_IRQ;
4552                 resource->res3.length = sizeof(struct acpi_resource);
4553                 memcpy(&resource->res3.data.irq, &irq->irq,
4554                                 sizeof(struct acpi_resource_irq));
4555                 /* we requested a shared irq */
4556                 resource->res3.data.irq.sharable = ACPI_SHARED;
4557
4558                 resource->res4.type = ACPI_RESOURCE_TYPE_END_TAG;
4559                 resource->res4.length = sizeof(struct acpi_resource);
4560         }
4561         /* setup Type 2/3 resources */
4562         else {
4563                 /* setup io resource */
4564                 resource->res1.type = ACPI_RESOURCE_TYPE_IO;
4565                 resource->res1.length = sizeof(struct acpi_resource);
4566                 memcpy(&resource->res1.data.io, &ioport->io1,
4567                                 sizeof(struct acpi_resource_io));
4568
4569                 /* setup irq resource */
4570                 resource->res2.type = ACPI_RESOURCE_TYPE_IRQ;
4571                 resource->res2.length = sizeof(struct acpi_resource);
4572                 memcpy(&resource->res2.data.irq, &irq->irq,
4573                                 sizeof(struct acpi_resource_irq));
4574                 /* we requested a shared irq */
4575                 resource->res2.data.irq.sharable = ACPI_SHARED;
4576
4577                 resource->res3.type = ACPI_RESOURCE_TYPE_END_TAG;
4578                 resource->res3.length = sizeof(struct acpi_resource);
4579         }
4580
4581         /* Attempt to set the resource */
4582         dprintk("Evaluating _SRS\n");
4583         status = acpi_set_current_resources(device->handle, &buffer);
4584
4585         /* check for total failure */
4586         if (ACPI_FAILURE(status)) {
4587                 pr_err("Error evaluating _SRS\n");
4588                 result = -ENODEV;
4589                 goto end;
4590         }
4591
4592         /* Necessary device initializations calls (from sonypi) */
4593         sony_pic_call1(0x82);
4594         sony_pic_call2(0x81, 0xff);
4595         sony_pic_call1(compat ? 0x92 : 0x82);
4596
4597 end:
4598         kfree(resource);
4599         return result;
4600 }
4601
4602 /*****************
4603  *
4604  * ISR: some event is available
4605  *
4606  *****************/
4607 static irqreturn_t sony_pic_irq(int irq, void *dev_id)
4608 {
4609         int i, j;
4610         u8 ev = 0;
4611         u8 data_mask = 0;
4612         u8 device_event = 0;
4613
4614         struct sony_pic_dev *dev = (struct sony_pic_dev *) dev_id;
4615
4616         ev = inb_p(dev->cur_ioport->io1.minimum);
4617         if (dev->cur_ioport->io2.minimum)
4618                 data_mask = inb_p(dev->cur_ioport->io2.minimum);
4619         else
4620                 data_mask = inb_p(dev->cur_ioport->io1.minimum +
4621                                 dev->evport_offset);
4622
4623         dprintk("event ([%.2x] [%.2x]) at port 0x%.4x(+0x%.2x)\n",
4624                         ev, data_mask, dev->cur_ioport->io1.minimum,
4625                         dev->evport_offset);
4626
4627         if (ev == 0x00 || ev == 0xff)
4628                 return IRQ_HANDLED;
4629
4630         for (i = 0; dev->event_types[i].mask; i++) {
4631
4632                 if ((data_mask & dev->event_types[i].data) !=
4633                     dev->event_types[i].data)
4634                         continue;
4635
4636                 if (!(mask & dev->event_types[i].mask))
4637                         continue;
4638
4639                 for (j = 0; dev->event_types[i].events[j].event; j++) {
4640                         if (ev == dev->event_types[i].events[j].data) {
4641                                 device_event =
4642                                         dev->event_types[i].events[j].event;
4643                                 /* some events may require ignoring */
4644                                 if (!device_event)
4645                                         return IRQ_HANDLED;
4646                                 goto found;
4647                         }
4648                 }
4649         }
4650         /* Still not able to decode the event try to pass
4651          * it over to the minidriver
4652          */
4653         if (dev->handle_irq && dev->handle_irq(data_mask, ev) == 0)
4654                 return IRQ_HANDLED;
4655
4656         dprintk("unknown event ([%.2x] [%.2x]) at port 0x%.4x(+0x%.2x)\n",
4657                         ev, data_mask, dev->cur_ioport->io1.minimum,
4658                         dev->evport_offset);
4659         return IRQ_HANDLED;
4660
4661 found:
4662         sony_laptop_report_input_event(device_event);
4663         sonypi_compat_report_event(device_event);
4664         return IRQ_HANDLED;
4665 }
4666
4667 /*****************
4668  *
4669  *  ACPI driver
4670  *
4671  *****************/
4672 static int sony_pic_remove(struct acpi_device *device)
4673 {
4674         struct sony_pic_ioport *io, *tmp_io;
4675         struct sony_pic_irq *irq, *tmp_irq;
4676
4677         if (sony_pic_disable(device)) {
4678                 pr_err("Couldn't disable device\n");
4679                 return -ENXIO;
4680         }
4681
4682         free_irq(spic_dev.cur_irq->irq.interrupts[0], &spic_dev);
4683         release_region(spic_dev.cur_ioport->io1.minimum,
4684                         spic_dev.cur_ioport->io1.address_length);
4685         if (spic_dev.cur_ioport->io2.minimum)
4686                 release_region(spic_dev.cur_ioport->io2.minimum,
4687                                 spic_dev.cur_ioport->io2.address_length);
4688
4689         sonypi_compat_exit();
4690
4691         sony_laptop_remove_input();
4692
4693         /* pf attrs */
4694         sysfs_remove_group(&sony_pf_device->dev.kobj, &spic_attribute_group);
4695         sony_pf_remove();
4696
4697         list_for_each_entry_safe(io, tmp_io, &spic_dev.ioports, list) {
4698                 list_del(&io->list);
4699                 kfree(io);
4700         }
4701         list_for_each_entry_safe(irq, tmp_irq, &spic_dev.interrupts, list) {
4702                 list_del(&irq->list);
4703                 kfree(irq);
4704         }
4705         spic_dev.cur_ioport = NULL;
4706         spic_dev.cur_irq = NULL;
4707
4708         dprintk(SONY_PIC_DRIVER_NAME " removed.\n");
4709         return 0;
4710 }
4711
4712 static int sony_pic_add(struct acpi_device *device)
4713 {
4714         int result;
4715         struct sony_pic_ioport *io, *tmp_io;
4716         struct sony_pic_irq *irq, *tmp_irq;
4717
4718         spic_dev.acpi_dev = device;
4719         strcpy(acpi_device_class(device), "sony/hotkey");
4720         sony_pic_detect_device_type(&spic_dev);
4721         mutex_init(&spic_dev.lock);
4722
4723         /* read _PRS resources */
4724         result = sony_pic_possible_resources(device);
4725         if (result) {
4726                 pr_err("Unable to read possible resources\n");
4727                 goto err_free_resources;
4728         }
4729
4730         /* setup input devices and helper fifo */
4731         result = sony_laptop_setup_input(device);
4732         if (result) {
4733                 pr_err("Unable to create input devices\n");
4734                 goto err_free_resources;
4735         }
4736
4737         result = sonypi_compat_init();
4738         if (result)
4739                 goto err_remove_input;
4740
4741         /* request io port */
4742         list_for_each_entry_reverse(io, &spic_dev.ioports, list) {
4743                 if (request_region(io->io1.minimum, io->io1.address_length,
4744                                         "Sony Programmable I/O Device")) {
4745                         dprintk("I/O port1: 0x%.4x (0x%.4x) + 0x%.2x\n",
4746                                         io->io1.minimum, io->io1.maximum,
4747                                         io->io1.address_length);
4748                         /* Type 1 have 2 ioports */
4749                         if (io->io2.minimum) {
4750                                 if (request_region(io->io2.minimum,
4751                                                 io->io2.address_length,
4752                                                 "Sony Programmable I/O Device")) {
4753                                         dprintk("I/O port2: 0x%.4x (0x%.4x) + 0x%.2x\n",
4754                                                         io->io2.minimum, io->io2.maximum,
4755                                                         io->io2.address_length);
4756                                         spic_dev.cur_ioport = io;
4757                                         break;
4758                                 }
4759                                 else {
4760                                         dprintk("Unable to get I/O port2: "
4761                                                         "0x%.4x (0x%.4x) + 0x%.2x\n",
4762                                                         io->io2.minimum, io->io2.maximum,
4763                                                         io->io2.address_length);
4764                                         release_region(io->io1.minimum,
4765                                                         io->io1.address_length);
4766                                 }
4767                         }
4768                         else {
4769                                 spic_dev.cur_ioport = io;
4770                                 break;
4771                         }
4772                 }
4773         }
4774         if (!spic_dev.cur_ioport) {
4775                 pr_err("Failed to request_region\n");
4776                 result = -ENODEV;
4777                 goto err_remove_compat;
4778         }
4779
4780         /* request IRQ */
4781         list_for_each_entry_reverse(irq, &spic_dev.interrupts, list) {
4782                 if (!request_irq(irq->irq.interrupts[0], sony_pic_irq,
4783                                         0, "sony-laptop", &spic_dev)) {
4784                         dprintk("IRQ: %d - triggering: %d - "
4785                                         "polarity: %d - shr: %d\n",
4786                                         irq->irq.interrupts[0],
4787                                         irq->irq.triggering,
4788                                         irq->irq.polarity,
4789                                         irq->irq.sharable);
4790                         spic_dev.cur_irq = irq;
4791                         break;
4792                 }
4793         }
4794         if (!spic_dev.cur_irq) {
4795                 pr_err("Failed to request_irq\n");
4796                 result = -ENODEV;
4797                 goto err_release_region;
4798         }
4799
4800         /* set resource status _SRS */
4801         result = sony_pic_enable(device, spic_dev.cur_ioport, spic_dev.cur_irq);
4802         if (result) {
4803                 pr_err("Couldn't enable device\n");
4804                 goto err_free_irq;
4805         }
4806
4807         spic_dev.bluetooth_power = -1;
4808         /* create device attributes */
4809         result = sony_pf_add();
4810         if (result)
4811                 goto err_disable_device;
4812
4813         result = sysfs_create_group(&sony_pf_device->dev.kobj, &spic_attribute_group);
4814         if (result)
4815                 goto err_remove_pf;
4816
4817         pr_info("SPIC setup done.\n");
4818         return 0;
4819
4820 err_remove_pf:
4821         sony_pf_remove();
4822
4823 err_disable_device:
4824         sony_pic_disable(device);
4825
4826 err_free_irq:
4827         free_irq(spic_dev.cur_irq->irq.interrupts[0], &spic_dev);
4828
4829 err_release_region:
4830         release_region(spic_dev.cur_ioport->io1.minimum,
4831                         spic_dev.cur_ioport->io1.address_length);
4832         if (spic_dev.cur_ioport->io2.minimum)
4833                 release_region(spic_dev.cur_ioport->io2.minimum,
4834                                 spic_dev.cur_ioport->io2.address_length);
4835
4836 err_remove_compat:
4837         sonypi_compat_exit();
4838
4839 err_remove_input:
4840         sony_laptop_remove_input();
4841
4842 err_free_resources:
4843         list_for_each_entry_safe(io, tmp_io, &spic_dev.ioports, list) {
4844                 list_del(&io->list);
4845                 kfree(io);
4846         }
4847         list_for_each_entry_safe(irq, tmp_irq, &spic_dev.interrupts, list) {
4848                 list_del(&irq->list);
4849                 kfree(irq);
4850         }
4851         spic_dev.cur_ioport = NULL;
4852         spic_dev.cur_irq = NULL;
4853
4854         return result;
4855 }
4856
4857 #ifdef CONFIG_PM_SLEEP
4858 static int sony_pic_suspend(struct device *dev)
4859 {
4860         if (sony_pic_disable(to_acpi_device(dev)))
4861                 return -ENXIO;
4862         return 0;
4863 }
4864
4865 static int sony_pic_resume(struct device *dev)
4866 {
4867         sony_pic_enable(to_acpi_device(dev),
4868                         spic_dev.cur_ioport, spic_dev.cur_irq);
4869         return 0;
4870 }
4871 #endif
4872
4873 static SIMPLE_DEV_PM_OPS(sony_pic_pm, sony_pic_suspend, sony_pic_resume);
4874
4875 static const struct acpi_device_id sony_pic_device_ids[] = {
4876         {SONY_PIC_HID, 0},
4877         {"", 0},
4878 };
4879
4880 static struct acpi_driver sony_pic_driver = {
4881         .name = SONY_PIC_DRIVER_NAME,
4882         .class = SONY_PIC_CLASS,
4883         .ids = sony_pic_device_ids,
4884         .owner = THIS_MODULE,
4885         .ops = {
4886                 .add = sony_pic_add,
4887                 .remove = sony_pic_remove,
4888                 },
4889         .drv.pm = &sony_pic_pm,
4890 };
4891
4892 static const struct dmi_system_id sonypi_dmi_table[] __initconst = {
4893         {
4894                 .ident = "Sony Vaio",
4895                 .matches = {
4896                         DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
4897                         DMI_MATCH(DMI_PRODUCT_NAME, "PCG-"),
4898                 },
4899         },
4900         {
4901                 .ident = "Sony Vaio",
4902                 .matches = {
4903                         DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
4904                         DMI_MATCH(DMI_PRODUCT_NAME, "VGN-"),
4905                 },
4906         },
4907         { }
4908 };
4909
4910 static int __init sony_laptop_init(void)
4911 {
4912         int result;
4913
4914         if (!no_spic && dmi_check_system(sonypi_dmi_table)) {
4915                 result = acpi_bus_register_driver(&sony_pic_driver);
4916                 if (result) {
4917                         pr_err("Unable to register SPIC driver\n");
4918                         goto out;
4919                 }
4920                 spic_drv_registered = 1;
4921         }
4922
4923         result = acpi_bus_register_driver(&sony_nc_driver);
4924         if (result) {
4925                 pr_err("Unable to register SNC driver\n");
4926                 goto out_unregister_pic;
4927         }
4928
4929         return 0;
4930
4931 out_unregister_pic:
4932         if (spic_drv_registered)
4933                 acpi_bus_unregister_driver(&sony_pic_driver);
4934 out:
4935         return result;
4936 }
4937
4938 static void __exit sony_laptop_exit(void)
4939 {
4940         acpi_bus_unregister_driver(&sony_nc_driver);
4941         if (spic_drv_registered)
4942                 acpi_bus_unregister_driver(&sony_pic_driver);
4943 }
4944
4945 module_init(sony_laptop_init);
4946 module_exit(sony_laptop_exit);