rfkill: remove user_claim stuff
[safe/jmp/linux-2.6] / 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 #include <linux/kernel.h>
46 #include <linux/module.h>
47 #include <linux/moduleparam.h>
48 #include <linux/init.h>
49 #include <linux/types.h>
50 #include <linux/backlight.h>
51 #include <linux/platform_device.h>
52 #include <linux/err.h>
53 #include <linux/dmi.h>
54 #include <linux/pci.h>
55 #include <linux/interrupt.h>
56 #include <linux/delay.h>
57 #include <linux/input.h>
58 #include <linux/kfifo.h>
59 #include <linux/workqueue.h>
60 #include <linux/acpi.h>
61 #include <acpi/acpi_drivers.h>
62 #include <acpi/acpi_bus.h>
63 #include <asm/uaccess.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
72 #define DRV_PFX                 "sony-laptop: "
73 #define dprintk(msg...)         do {                    \
74         if (debug) printk(KERN_WARNING DRV_PFX  msg);   \
75 } while (0)
76
77 #define SONY_LAPTOP_DRIVER_VERSION      "0.6"
78
79 #define SONY_NC_CLASS           "sony-nc"
80 #define SONY_NC_HID             "SNY5001"
81 #define SONY_NC_DRIVER_NAME     "Sony Notebook Control Driver"
82
83 #define SONY_PIC_CLASS          "sony-pic"
84 #define SONY_PIC_HID            "SNY6001"
85 #define SONY_PIC_DRIVER_NAME    "Sony Programmable IO Control Driver"
86
87 MODULE_AUTHOR("Stelian Pop, Mattia Dongili");
88 MODULE_DESCRIPTION("Sony laptop extras driver (SPIC and SNC ACPI device)");
89 MODULE_LICENSE("GPL");
90 MODULE_VERSION(SONY_LAPTOP_DRIVER_VERSION);
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 enum sony_nc_rfkill {
127         SONY_WIFI,
128         SONY_BLUETOOTH,
129         SONY_WWAN,
130         SONY_WIMAX,
131         SONY_RFKILL_MAX,
132 };
133
134 static struct rfkill *sony_rfkill_devices[SONY_RFKILL_MAX];
135 static int sony_rfkill_address[SONY_RFKILL_MAX] = {0x300, 0x500, 0x700, 0x900};
136 static void sony_nc_rfkill_update(void);
137
138 /*********** Input Devices ***********/
139
140 #define SONY_LAPTOP_BUF_SIZE    128
141 struct sony_laptop_input_s {
142         atomic_t                users;
143         struct input_dev        *jog_dev;
144         struct input_dev        *key_dev;
145         struct kfifo            *fifo;
146         spinlock_t              fifo_lock;
147         struct workqueue_struct *wq;
148 };
149
150 static struct sony_laptop_input_s sony_laptop_input = {
151         .users = ATOMIC_INIT(0),
152 };
153
154 struct sony_laptop_keypress {
155         struct input_dev *dev;
156         int key;
157 };
158
159 /* Correspondance table between sonypi events
160  * and input layer indexes in the keymap
161  */
162 static int sony_laptop_input_index[] = {
163         -1,     /*  0 no event */
164         -1,     /*  1 SONYPI_EVENT_JOGDIAL_DOWN */
165         -1,     /*  2 SONYPI_EVENT_JOGDIAL_UP */
166         -1,     /*  3 SONYPI_EVENT_JOGDIAL_DOWN_PRESSED */
167         -1,     /*  4 SONYPI_EVENT_JOGDIAL_UP_PRESSED */
168         -1,     /*  5 SONYPI_EVENT_JOGDIAL_PRESSED */
169         -1,     /*  6 SONYPI_EVENT_JOGDIAL_RELEASED */
170          0,     /*  7 SONYPI_EVENT_CAPTURE_PRESSED */
171          1,     /*  8 SONYPI_EVENT_CAPTURE_RELEASED */
172          2,     /*  9 SONYPI_EVENT_CAPTURE_PARTIALPRESSED */
173          3,     /* 10 SONYPI_EVENT_CAPTURE_PARTIALRELEASED */
174          4,     /* 11 SONYPI_EVENT_FNKEY_ESC */
175          5,     /* 12 SONYPI_EVENT_FNKEY_F1 */
176          6,     /* 13 SONYPI_EVENT_FNKEY_F2 */
177          7,     /* 14 SONYPI_EVENT_FNKEY_F3 */
178          8,     /* 15 SONYPI_EVENT_FNKEY_F4 */
179          9,     /* 16 SONYPI_EVENT_FNKEY_F5 */
180         10,     /* 17 SONYPI_EVENT_FNKEY_F6 */
181         11,     /* 18 SONYPI_EVENT_FNKEY_F7 */
182         12,     /* 19 SONYPI_EVENT_FNKEY_F8 */
183         13,     /* 20 SONYPI_EVENT_FNKEY_F9 */
184         14,     /* 21 SONYPI_EVENT_FNKEY_F10 */
185         15,     /* 22 SONYPI_EVENT_FNKEY_F11 */
186         16,     /* 23 SONYPI_EVENT_FNKEY_F12 */
187         17,     /* 24 SONYPI_EVENT_FNKEY_1 */
188         18,     /* 25 SONYPI_EVENT_FNKEY_2 */
189         19,     /* 26 SONYPI_EVENT_FNKEY_D */
190         20,     /* 27 SONYPI_EVENT_FNKEY_E */
191         21,     /* 28 SONYPI_EVENT_FNKEY_F */
192         22,     /* 29 SONYPI_EVENT_FNKEY_S */
193         23,     /* 30 SONYPI_EVENT_FNKEY_B */
194         24,     /* 31 SONYPI_EVENT_BLUETOOTH_PRESSED */
195         25,     /* 32 SONYPI_EVENT_PKEY_P1 */
196         26,     /* 33 SONYPI_EVENT_PKEY_P2 */
197         27,     /* 34 SONYPI_EVENT_PKEY_P3 */
198         28,     /* 35 SONYPI_EVENT_BACK_PRESSED */
199         -1,     /* 36 SONYPI_EVENT_LID_CLOSED */
200         -1,     /* 37 SONYPI_EVENT_LID_OPENED */
201         29,     /* 38 SONYPI_EVENT_BLUETOOTH_ON */
202         30,     /* 39 SONYPI_EVENT_BLUETOOTH_OFF */
203         31,     /* 40 SONYPI_EVENT_HELP_PRESSED */
204         32,     /* 41 SONYPI_EVENT_FNKEY_ONLY */
205         33,     /* 42 SONYPI_EVENT_JOGDIAL_FAST_DOWN */
206         34,     /* 43 SONYPI_EVENT_JOGDIAL_FAST_UP */
207         35,     /* 44 SONYPI_EVENT_JOGDIAL_FAST_DOWN_PRESSED */
208         36,     /* 45 SONYPI_EVENT_JOGDIAL_FAST_UP_PRESSED */
209         37,     /* 46 SONYPI_EVENT_JOGDIAL_VFAST_DOWN */
210         38,     /* 47 SONYPI_EVENT_JOGDIAL_VFAST_UP */
211         39,     /* 48 SONYPI_EVENT_JOGDIAL_VFAST_DOWN_PRESSED */
212         40,     /* 49 SONYPI_EVENT_JOGDIAL_VFAST_UP_PRESSED */
213         41,     /* 50 SONYPI_EVENT_ZOOM_PRESSED */
214         42,     /* 51 SONYPI_EVENT_THUMBPHRASE_PRESSED */
215         43,     /* 52 SONYPI_EVENT_MEYE_FACE */
216         44,     /* 53 SONYPI_EVENT_MEYE_OPPOSITE */
217         45,     /* 54 SONYPI_EVENT_MEMORYSTICK_INSERT */
218         46,     /* 55 SONYPI_EVENT_MEMORYSTICK_EJECT */
219         -1,     /* 56 SONYPI_EVENT_ANYBUTTON_RELEASED */
220         -1,     /* 57 SONYPI_EVENT_BATTERY_INSERT */
221         -1,     /* 58 SONYPI_EVENT_BATTERY_REMOVE */
222         -1,     /* 59 SONYPI_EVENT_FNKEY_RELEASED */
223         47,     /* 60 SONYPI_EVENT_WIRELESS_ON */
224         48,     /* 61 SONYPI_EVENT_WIRELESS_OFF */
225         49,     /* 62 SONYPI_EVENT_ZOOM_IN_PRESSED */
226         50,     /* 63 SONYPI_EVENT_ZOOM_OUT_PRESSED */
227         51,     /* 64 SONYPI_EVENT_CD_EJECT_PRESSED */
228         52,     /* 65 SONYPI_EVENT_MODEKEY_PRESSED */
229         53,     /* 66 SONYPI_EVENT_PKEY_P4 */
230         54,     /* 67 SONYPI_EVENT_PKEY_P5 */
231         55,     /* 68 SONYPI_EVENT_SETTINGKEY_PRESSED */
232         56,     /* 69 SONYPI_EVENT_VOLUME_INC_PRESSED */
233         57,     /* 70 SONYPI_EVENT_VOLUME_DEC_PRESSED */
234         -1,     /* 71 SONYPI_EVENT_BRIGHTNESS_PRESSED */
235 };
236
237 static int sony_laptop_input_keycode_map[] = {
238         KEY_CAMERA,     /*  0 SONYPI_EVENT_CAPTURE_PRESSED */
239         KEY_RESERVED,   /*  1 SONYPI_EVENT_CAPTURE_RELEASED */
240         KEY_RESERVED,   /*  2 SONYPI_EVENT_CAPTURE_PARTIALPRESSED */
241         KEY_RESERVED,   /*  3 SONYPI_EVENT_CAPTURE_PARTIALRELEASED */
242         KEY_FN_ESC,     /*  4 SONYPI_EVENT_FNKEY_ESC */
243         KEY_FN_F1,      /*  5 SONYPI_EVENT_FNKEY_F1 */
244         KEY_FN_F2,      /*  6 SONYPI_EVENT_FNKEY_F2 */
245         KEY_FN_F3,      /*  7 SONYPI_EVENT_FNKEY_F3 */
246         KEY_FN_F4,      /*  8 SONYPI_EVENT_FNKEY_F4 */
247         KEY_FN_F5,      /*  9 SONYPI_EVENT_FNKEY_F5 */
248         KEY_FN_F6,      /* 10 SONYPI_EVENT_FNKEY_F6 */
249         KEY_FN_F7,      /* 11 SONYPI_EVENT_FNKEY_F7 */
250         KEY_FN_F8,      /* 12 SONYPI_EVENT_FNKEY_F8 */
251         KEY_FN_F9,      /* 13 SONYPI_EVENT_FNKEY_F9 */
252         KEY_FN_F10,     /* 14 SONYPI_EVENT_FNKEY_F10 */
253         KEY_FN_F11,     /* 15 SONYPI_EVENT_FNKEY_F11 */
254         KEY_FN_F12,     /* 16 SONYPI_EVENT_FNKEY_F12 */
255         KEY_FN_F1,      /* 17 SONYPI_EVENT_FNKEY_1 */
256         KEY_FN_F2,      /* 18 SONYPI_EVENT_FNKEY_2 */
257         KEY_FN_D,       /* 19 SONYPI_EVENT_FNKEY_D */
258         KEY_FN_E,       /* 20 SONYPI_EVENT_FNKEY_E */
259         KEY_FN_F,       /* 21 SONYPI_EVENT_FNKEY_F */
260         KEY_FN_S,       /* 22 SONYPI_EVENT_FNKEY_S */
261         KEY_FN_B,       /* 23 SONYPI_EVENT_FNKEY_B */
262         KEY_BLUETOOTH,  /* 24 SONYPI_EVENT_BLUETOOTH_PRESSED */
263         KEY_PROG1,      /* 25 SONYPI_EVENT_PKEY_P1 */
264         KEY_PROG2,      /* 26 SONYPI_EVENT_PKEY_P2 */
265         KEY_PROG3,      /* 27 SONYPI_EVENT_PKEY_P3 */
266         KEY_BACK,       /* 28 SONYPI_EVENT_BACK_PRESSED */
267         KEY_BLUETOOTH,  /* 29 SONYPI_EVENT_BLUETOOTH_ON */
268         KEY_BLUETOOTH,  /* 30 SONYPI_EVENT_BLUETOOTH_OFF */
269         KEY_HELP,       /* 31 SONYPI_EVENT_HELP_PRESSED */
270         KEY_FN,         /* 32 SONYPI_EVENT_FNKEY_ONLY */
271         KEY_RESERVED,   /* 33 SONYPI_EVENT_JOGDIAL_FAST_DOWN */
272         KEY_RESERVED,   /* 34 SONYPI_EVENT_JOGDIAL_FAST_UP */
273         KEY_RESERVED,   /* 35 SONYPI_EVENT_JOGDIAL_FAST_DOWN_PRESSED */
274         KEY_RESERVED,   /* 36 SONYPI_EVENT_JOGDIAL_FAST_UP_PRESSED */
275         KEY_RESERVED,   /* 37 SONYPI_EVENT_JOGDIAL_VFAST_DOWN */
276         KEY_RESERVED,   /* 38 SONYPI_EVENT_JOGDIAL_VFAST_UP */
277         KEY_RESERVED,   /* 39 SONYPI_EVENT_JOGDIAL_VFAST_DOWN_PRESSED */
278         KEY_RESERVED,   /* 40 SONYPI_EVENT_JOGDIAL_VFAST_UP_PRESSED */
279         KEY_ZOOM,       /* 41 SONYPI_EVENT_ZOOM_PRESSED */
280         BTN_THUMB,      /* 42 SONYPI_EVENT_THUMBPHRASE_PRESSED */
281         KEY_RESERVED,   /* 43 SONYPI_EVENT_MEYE_FACE */
282         KEY_RESERVED,   /* 44 SONYPI_EVENT_MEYE_OPPOSITE */
283         KEY_RESERVED,   /* 45 SONYPI_EVENT_MEMORYSTICK_INSERT */
284         KEY_RESERVED,   /* 46 SONYPI_EVENT_MEMORYSTICK_EJECT */
285         KEY_WLAN,       /* 47 SONYPI_EVENT_WIRELESS_ON */
286         KEY_WLAN,       /* 48 SONYPI_EVENT_WIRELESS_OFF */
287         KEY_ZOOMIN,     /* 49 SONYPI_EVENT_ZOOM_IN_PRESSED */
288         KEY_ZOOMOUT,    /* 50 SONYPI_EVENT_ZOOM_OUT_PRESSED */
289         KEY_EJECTCD,    /* 51 SONYPI_EVENT_CD_EJECT_PRESSED */
290         KEY_F13,        /* 52 SONYPI_EVENT_MODEKEY_PRESSED */
291         KEY_PROG4,      /* 53 SONYPI_EVENT_PKEY_P4 */
292         KEY_F14,        /* 54 SONYPI_EVENT_PKEY_P5 */
293         KEY_F15,        /* 55 SONYPI_EVENT_SETTINGKEY_PRESSED */
294         KEY_VOLUMEUP,   /* 56 SONYPI_EVENT_VOLUME_INC_PRESSED */
295         KEY_VOLUMEDOWN, /* 57 SONYPI_EVENT_VOLUME_DEC_PRESSED */
296 };
297
298 /* release buttons after a short delay if pressed */
299 static void do_sony_laptop_release_key(struct work_struct *work)
300 {
301         struct sony_laptop_keypress kp;
302
303         while (kfifo_get(sony_laptop_input.fifo, (unsigned char *)&kp,
304                          sizeof(kp)) == sizeof(kp)) {
305                 msleep(10);
306                 input_report_key(kp.dev, kp.key, 0);
307                 input_sync(kp.dev);
308         }
309 }
310 static DECLARE_WORK(sony_laptop_release_key_work,
311                 do_sony_laptop_release_key);
312
313 /* forward event to the input subsystem */
314 static void sony_laptop_report_input_event(u8 event)
315 {
316         struct input_dev *jog_dev = sony_laptop_input.jog_dev;
317         struct input_dev *key_dev = sony_laptop_input.key_dev;
318         struct sony_laptop_keypress kp = { NULL };
319
320         if (event == SONYPI_EVENT_FNKEY_RELEASED) {
321                 /* Nothing, not all VAIOs generate this event */
322                 return;
323         }
324
325         /* report events */
326         switch (event) {
327         /* jog_dev events */
328         case SONYPI_EVENT_JOGDIAL_UP:
329         case SONYPI_EVENT_JOGDIAL_UP_PRESSED:
330                 input_report_rel(jog_dev, REL_WHEEL, 1);
331                 input_sync(jog_dev);
332                 return;
333
334         case SONYPI_EVENT_JOGDIAL_DOWN:
335         case SONYPI_EVENT_JOGDIAL_DOWN_PRESSED:
336                 input_report_rel(jog_dev, REL_WHEEL, -1);
337                 input_sync(jog_dev);
338                 return;
339
340         /* key_dev events */
341         case SONYPI_EVENT_JOGDIAL_PRESSED:
342                 kp.key = BTN_MIDDLE;
343                 kp.dev = jog_dev;
344                 break;
345
346         default:
347                 if (event >= ARRAY_SIZE(sony_laptop_input_index)) {
348                         dprintk("sony_laptop_report_input_event, event not known: %d\n", event);
349                         break;
350                 }
351                 if (sony_laptop_input_index[event] != -1) {
352                         kp.key = sony_laptop_input_keycode_map[sony_laptop_input_index[event]];
353                         if (kp.key != KEY_UNKNOWN)
354                                 kp.dev = key_dev;
355                 }
356                 break;
357         }
358
359         if (kp.dev) {
360                 input_report_key(kp.dev, kp.key, 1);
361                 /* we emit the scancode so we can always remap the key */
362                 input_event(kp.dev, EV_MSC, MSC_SCAN, event);
363                 input_sync(kp.dev);
364                 kfifo_put(sony_laptop_input.fifo,
365                           (unsigned char *)&kp, sizeof(kp));
366
367                 if (!work_pending(&sony_laptop_release_key_work))
368                         queue_work(sony_laptop_input.wq,
369                                         &sony_laptop_release_key_work);
370         } else
371                 dprintk("unknown input event %.2x\n", event);
372 }
373
374 static int sony_laptop_setup_input(struct acpi_device *acpi_device)
375 {
376         struct input_dev *jog_dev;
377         struct input_dev *key_dev;
378         int i;
379         int error;
380
381         /* don't run again if already initialized */
382         if (atomic_add_return(1, &sony_laptop_input.users) > 1)
383                 return 0;
384
385         /* kfifo */
386         spin_lock_init(&sony_laptop_input.fifo_lock);
387         sony_laptop_input.fifo =
388                 kfifo_alloc(SONY_LAPTOP_BUF_SIZE, GFP_KERNEL,
389                             &sony_laptop_input.fifo_lock);
390         if (IS_ERR(sony_laptop_input.fifo)) {
391                 printk(KERN_ERR DRV_PFX "kfifo_alloc failed\n");
392                 error = PTR_ERR(sony_laptop_input.fifo);
393                 goto err_dec_users;
394         }
395
396         /* init workqueue */
397         sony_laptop_input.wq = create_singlethread_workqueue("sony-laptop");
398         if (!sony_laptop_input.wq) {
399                 printk(KERN_ERR DRV_PFX
400                                 "Unable to create workqueue.\n");
401                 error = -ENXIO;
402                 goto err_free_kfifo;
403         }
404
405         /* input keys */
406         key_dev = input_allocate_device();
407         if (!key_dev) {
408                 error = -ENOMEM;
409                 goto err_destroy_wq;
410         }
411
412         key_dev->name = "Sony Vaio Keys";
413         key_dev->id.bustype = BUS_ISA;
414         key_dev->id.vendor = PCI_VENDOR_ID_SONY;
415         key_dev->dev.parent = &acpi_device->dev;
416
417         /* Initialize the Input Drivers: special keys */
418         set_bit(EV_KEY, key_dev->evbit);
419         set_bit(EV_MSC, key_dev->evbit);
420         set_bit(MSC_SCAN, key_dev->mscbit);
421         key_dev->keycodesize = sizeof(sony_laptop_input_keycode_map[0]);
422         key_dev->keycodemax = ARRAY_SIZE(sony_laptop_input_keycode_map);
423         key_dev->keycode = &sony_laptop_input_keycode_map;
424         for (i = 0; i < ARRAY_SIZE(sony_laptop_input_keycode_map); i++) {
425                 if (sony_laptop_input_keycode_map[i] != KEY_RESERVED) {
426                         set_bit(sony_laptop_input_keycode_map[i],
427                                 key_dev->keybit);
428                 }
429         }
430
431         error = input_register_device(key_dev);
432         if (error)
433                 goto err_free_keydev;
434
435         sony_laptop_input.key_dev = key_dev;
436
437         /* jogdial */
438         jog_dev = input_allocate_device();
439         if (!jog_dev) {
440                 error = -ENOMEM;
441                 goto err_unregister_keydev;
442         }
443
444         jog_dev->name = "Sony Vaio Jogdial";
445         jog_dev->id.bustype = BUS_ISA;
446         jog_dev->id.vendor = PCI_VENDOR_ID_SONY;
447         key_dev->dev.parent = &acpi_device->dev;
448
449         jog_dev->evbit[0] = BIT_MASK(EV_KEY) | BIT_MASK(EV_REL);
450         jog_dev->keybit[BIT_WORD(BTN_MOUSE)] = BIT_MASK(BTN_MIDDLE);
451         jog_dev->relbit[0] = BIT_MASK(REL_WHEEL);
452
453         error = input_register_device(jog_dev);
454         if (error)
455                 goto err_free_jogdev;
456
457         sony_laptop_input.jog_dev = jog_dev;
458
459         return 0;
460
461 err_free_jogdev:
462         input_free_device(jog_dev);
463
464 err_unregister_keydev:
465         input_unregister_device(key_dev);
466         /* to avoid kref underflow below at input_free_device */
467         key_dev = NULL;
468
469 err_free_keydev:
470         input_free_device(key_dev);
471
472 err_destroy_wq:
473         destroy_workqueue(sony_laptop_input.wq);
474
475 err_free_kfifo:
476         kfifo_free(sony_laptop_input.fifo);
477
478 err_dec_users:
479         atomic_dec(&sony_laptop_input.users);
480         return error;
481 }
482
483 static void sony_laptop_remove_input(void)
484 {
485         /* cleanup only after the last user has gone */
486         if (!atomic_dec_and_test(&sony_laptop_input.users))
487                 return;
488
489         /* flush workqueue first */
490         flush_workqueue(sony_laptop_input.wq);
491
492         /* destroy input devs */
493         input_unregister_device(sony_laptop_input.key_dev);
494         sony_laptop_input.key_dev = NULL;
495
496         if (sony_laptop_input.jog_dev) {
497                 input_unregister_device(sony_laptop_input.jog_dev);
498                 sony_laptop_input.jog_dev = NULL;
499         }
500
501         destroy_workqueue(sony_laptop_input.wq);
502         kfifo_free(sony_laptop_input.fifo);
503 }
504
505 /*********** Platform Device ***********/
506
507 static atomic_t sony_pf_users = ATOMIC_INIT(0);
508 static struct platform_driver sony_pf_driver = {
509         .driver = {
510                    .name = "sony-laptop",
511                    .owner = THIS_MODULE,
512                    }
513 };
514 static struct platform_device *sony_pf_device;
515
516 static int sony_pf_add(void)
517 {
518         int ret = 0;
519
520         /* don't run again if already initialized */
521         if (atomic_add_return(1, &sony_pf_users) > 1)
522                 return 0;
523
524         ret = platform_driver_register(&sony_pf_driver);
525         if (ret)
526                 goto out;
527
528         sony_pf_device = platform_device_alloc("sony-laptop", -1);
529         if (!sony_pf_device) {
530                 ret = -ENOMEM;
531                 goto out_platform_registered;
532         }
533
534         ret = platform_device_add(sony_pf_device);
535         if (ret)
536                 goto out_platform_alloced;
537
538         return 0;
539
540       out_platform_alloced:
541         platform_device_put(sony_pf_device);
542         sony_pf_device = NULL;
543       out_platform_registered:
544         platform_driver_unregister(&sony_pf_driver);
545       out:
546         atomic_dec(&sony_pf_users);
547         return ret;
548 }
549
550 static void sony_pf_remove(void)
551 {
552         /* deregister only after the last user has gone */
553         if (!atomic_dec_and_test(&sony_pf_users))
554                 return;
555
556         platform_device_del(sony_pf_device);
557         platform_device_put(sony_pf_device);
558         platform_driver_unregister(&sony_pf_driver);
559 }
560
561 /*********** SNC (SNY5001) Device ***********/
562
563 /* the device uses 1-based values, while the backlight subsystem uses
564    0-based values */
565 #define SONY_MAX_BRIGHTNESS     8
566
567 #define SNC_VALIDATE_IN         0
568 #define SNC_VALIDATE_OUT        1
569
570 static ssize_t sony_nc_sysfs_show(struct device *, struct device_attribute *,
571                               char *);
572 static ssize_t sony_nc_sysfs_store(struct device *, struct device_attribute *,
573                                const char *, size_t);
574 static int boolean_validate(const int, const int);
575 static int brightness_default_validate(const int, const int);
576
577 struct sony_nc_value {
578         char *name;             /* name of the entry */
579         char **acpiget;         /* names of the ACPI get function */
580         char **acpiset;         /* names of the ACPI set function */
581         int (*validate)(const int, const int);  /* input/output validation */
582         int value;              /* current setting */
583         int valid;              /* Has ever been set */
584         int debug;              /* active only in debug mode ? */
585         struct device_attribute devattr;        /* sysfs atribute */
586 };
587
588 #define SNC_HANDLE_NAMES(_name, _values...) \
589         static char *snc_##_name[] = { _values, NULL }
590
591 #define SNC_HANDLE(_name, _getters, _setters, _validate, _debug) \
592         { \
593                 .name           = __stringify(_name), \
594                 .acpiget        = _getters, \
595                 .acpiset        = _setters, \
596                 .validate       = _validate, \
597                 .debug          = _debug, \
598                 .devattr        = __ATTR(_name, 0, sony_nc_sysfs_show, sony_nc_sysfs_store), \
599         }
600
601 #define SNC_HANDLE_NULL { .name = NULL }
602
603 SNC_HANDLE_NAMES(fnkey_get, "GHKE");
604
605 SNC_HANDLE_NAMES(brightness_def_get, "GPBR");
606 SNC_HANDLE_NAMES(brightness_def_set, "SPBR");
607
608 SNC_HANDLE_NAMES(cdpower_get, "GCDP");
609 SNC_HANDLE_NAMES(cdpower_set, "SCDP", "CDPW");
610
611 SNC_HANDLE_NAMES(audiopower_get, "GAZP");
612 SNC_HANDLE_NAMES(audiopower_set, "AZPW");
613
614 SNC_HANDLE_NAMES(lanpower_get, "GLNP");
615 SNC_HANDLE_NAMES(lanpower_set, "LNPW");
616
617 SNC_HANDLE_NAMES(lidstate_get, "GLID");
618
619 SNC_HANDLE_NAMES(indicatorlamp_get, "GILS");
620 SNC_HANDLE_NAMES(indicatorlamp_set, "SILS");
621
622 SNC_HANDLE_NAMES(gainbass_get, "GMGB");
623 SNC_HANDLE_NAMES(gainbass_set, "CMGB");
624
625 SNC_HANDLE_NAMES(PID_get, "GPID");
626
627 SNC_HANDLE_NAMES(CTR_get, "GCTR");
628 SNC_HANDLE_NAMES(CTR_set, "SCTR");
629
630 SNC_HANDLE_NAMES(PCR_get, "GPCR");
631 SNC_HANDLE_NAMES(PCR_set, "SPCR");
632
633 SNC_HANDLE_NAMES(CMI_get, "GCMI");
634 SNC_HANDLE_NAMES(CMI_set, "SCMI");
635
636 static struct sony_nc_value sony_nc_values[] = {
637         SNC_HANDLE(brightness_default, snc_brightness_def_get,
638                         snc_brightness_def_set, brightness_default_validate, 0),
639         SNC_HANDLE(fnkey, snc_fnkey_get, NULL, NULL, 0),
640         SNC_HANDLE(cdpower, snc_cdpower_get, snc_cdpower_set, boolean_validate, 0),
641         SNC_HANDLE(audiopower, snc_audiopower_get, snc_audiopower_set,
642                         boolean_validate, 0),
643         SNC_HANDLE(lanpower, snc_lanpower_get, snc_lanpower_set,
644                         boolean_validate, 1),
645         SNC_HANDLE(lidstate, snc_lidstate_get, NULL,
646                         boolean_validate, 0),
647         SNC_HANDLE(indicatorlamp, snc_indicatorlamp_get, snc_indicatorlamp_set,
648                         boolean_validate, 0),
649         SNC_HANDLE(gainbass, snc_gainbass_get, snc_gainbass_set,
650                         boolean_validate, 0),
651         /* unknown methods */
652         SNC_HANDLE(PID, snc_PID_get, NULL, NULL, 1),
653         SNC_HANDLE(CTR, snc_CTR_get, snc_CTR_set, NULL, 1),
654         SNC_HANDLE(PCR, snc_PCR_get, snc_PCR_set, NULL, 1),
655         SNC_HANDLE(CMI, snc_CMI_get, snc_CMI_set, NULL, 1),
656         SNC_HANDLE_NULL
657 };
658
659 static acpi_handle sony_nc_acpi_handle;
660 static struct acpi_device *sony_nc_acpi_device = NULL;
661
662 /*
663  * acpi_evaluate_object wrappers
664  */
665 static int acpi_callgetfunc(acpi_handle handle, char *name, int *result)
666 {
667         struct acpi_buffer output;
668         union acpi_object out_obj;
669         acpi_status status;
670
671         output.length = sizeof(out_obj);
672         output.pointer = &out_obj;
673
674         status = acpi_evaluate_object(handle, name, NULL, &output);
675         if ((status == AE_OK) && (out_obj.type == ACPI_TYPE_INTEGER)) {
676                 *result = out_obj.integer.value;
677                 return 0;
678         }
679
680         printk(KERN_WARNING DRV_PFX "acpi_callreadfunc failed\n");
681
682         return -1;
683 }
684
685 static int acpi_callsetfunc(acpi_handle handle, char *name, int value,
686                             int *result)
687 {
688         struct acpi_object_list params;
689         union acpi_object in_obj;
690         struct acpi_buffer output;
691         union acpi_object out_obj;
692         acpi_status status;
693
694         params.count = 1;
695         params.pointer = &in_obj;
696         in_obj.type = ACPI_TYPE_INTEGER;
697         in_obj.integer.value = value;
698
699         output.length = sizeof(out_obj);
700         output.pointer = &out_obj;
701
702         status = acpi_evaluate_object(handle, name, &params, &output);
703         if (status == AE_OK) {
704                 if (result != NULL) {
705                         if (out_obj.type != ACPI_TYPE_INTEGER) {
706                                 printk(KERN_WARNING DRV_PFX "acpi_evaluate_object bad "
707                                        "return type\n");
708                                 return -1;
709                         }
710                         *result = out_obj.integer.value;
711                 }
712                 return 0;
713         }
714
715         printk(KERN_WARNING DRV_PFX "acpi_evaluate_object failed\n");
716
717         return -1;
718 }
719
720 static int sony_find_snc_handle(int handle)
721 {
722         int i;
723         int result;
724
725         for (i = 0x20; i < 0x30; i++) {
726                 acpi_callsetfunc(sony_nc_acpi_handle, "SN00", i, &result);
727                 if (result == handle)
728                         return i-0x20;
729         }
730
731         return -1;
732 }
733
734 static int sony_call_snc_handle(int handle, int argument, int *result)
735 {
736         int offset = sony_find_snc_handle(handle);
737
738         if (offset < 0)
739                 return -1;
740
741         return acpi_callsetfunc(sony_nc_acpi_handle, "SN07", offset | argument,
742                                 result);
743 }
744
745 /*
746  * sony_nc_values input/output validate functions
747  */
748
749 /* brightness_default_validate:
750  *
751  * manipulate input output values to keep consistency with the
752  * backlight framework for which brightness values are 0-based.
753  */
754 static int brightness_default_validate(const int direction, const int value)
755 {
756         switch (direction) {
757                 case SNC_VALIDATE_OUT:
758                         return value - 1;
759                 case SNC_VALIDATE_IN:
760                         if (value >= 0 && value < SONY_MAX_BRIGHTNESS)
761                                 return value + 1;
762         }
763         return -EINVAL;
764 }
765
766 /* boolean_validate:
767  *
768  * on input validate boolean values 0/1, on output just pass the
769  * received value.
770  */
771 static int boolean_validate(const int direction, const int value)
772 {
773         if (direction == SNC_VALIDATE_IN) {
774                 if (value != 0 && value != 1)
775                         return -EINVAL;
776         }
777         return value;
778 }
779
780 /*
781  * Sysfs show/store common to all sony_nc_values
782  */
783 static ssize_t sony_nc_sysfs_show(struct device *dev, struct device_attribute *attr,
784                               char *buffer)
785 {
786         int value;
787         struct sony_nc_value *item =
788             container_of(attr, struct sony_nc_value, devattr);
789
790         if (!*item->acpiget)
791                 return -EIO;
792
793         if (acpi_callgetfunc(sony_nc_acpi_handle, *item->acpiget, &value) < 0)
794                 return -EIO;
795
796         if (item->validate)
797                 value = item->validate(SNC_VALIDATE_OUT, value);
798
799         return snprintf(buffer, PAGE_SIZE, "%d\n", value);
800 }
801
802 static ssize_t sony_nc_sysfs_store(struct device *dev,
803                                struct device_attribute *attr,
804                                const char *buffer, size_t count)
805 {
806         int value;
807         struct sony_nc_value *item =
808             container_of(attr, struct sony_nc_value, devattr);
809
810         if (!item->acpiset)
811                 return -EIO;
812
813         if (count > 31)
814                 return -EINVAL;
815
816         value = simple_strtoul(buffer, NULL, 10);
817
818         if (item->validate)
819                 value = item->validate(SNC_VALIDATE_IN, value);
820
821         if (value < 0)
822                 return value;
823
824         if (acpi_callsetfunc(sony_nc_acpi_handle, *item->acpiset, value, NULL) < 0)
825                 return -EIO;
826         item->value = value;
827         item->valid = 1;
828         return count;
829 }
830
831
832 /*
833  * Backlight device
834  */
835 static int sony_backlight_update_status(struct backlight_device *bd)
836 {
837         return acpi_callsetfunc(sony_nc_acpi_handle, "SBRT",
838                                 bd->props.brightness + 1, NULL);
839 }
840
841 static int sony_backlight_get_brightness(struct backlight_device *bd)
842 {
843         int value;
844
845         if (acpi_callgetfunc(sony_nc_acpi_handle, "GBRT", &value))
846                 return 0;
847         /* brightness levels are 1-based, while backlight ones are 0-based */
848         return value - 1;
849 }
850
851 static struct backlight_device *sony_backlight_device;
852 static struct backlight_ops sony_backlight_ops = {
853         .update_status = sony_backlight_update_status,
854         .get_brightness = sony_backlight_get_brightness,
855 };
856
857 /*
858  * New SNC-only Vaios event mapping to driver known keys
859  */
860 struct sony_nc_event {
861         u8      data;
862         u8      event;
863 };
864
865 static struct sony_nc_event sony_100_events[] = {
866         { 0x90, SONYPI_EVENT_PKEY_P1 },
867         { 0x10, SONYPI_EVENT_ANYBUTTON_RELEASED },
868         { 0x91, SONYPI_EVENT_PKEY_P2 },
869         { 0x11, SONYPI_EVENT_ANYBUTTON_RELEASED },
870         { 0x81, SONYPI_EVENT_FNKEY_F1 },
871         { 0x01, SONYPI_EVENT_FNKEY_RELEASED },
872         { 0x82, SONYPI_EVENT_FNKEY_F2 },
873         { 0x02, SONYPI_EVENT_FNKEY_RELEASED },
874         { 0x83, SONYPI_EVENT_FNKEY_F3 },
875         { 0x03, SONYPI_EVENT_FNKEY_RELEASED },
876         { 0x84, SONYPI_EVENT_FNKEY_F4 },
877         { 0x04, SONYPI_EVENT_FNKEY_RELEASED },
878         { 0x85, SONYPI_EVENT_FNKEY_F5 },
879         { 0x05, SONYPI_EVENT_FNKEY_RELEASED },
880         { 0x86, SONYPI_EVENT_FNKEY_F6 },
881         { 0x06, SONYPI_EVENT_FNKEY_RELEASED },
882         { 0x87, SONYPI_EVENT_FNKEY_F7 },
883         { 0x07, SONYPI_EVENT_FNKEY_RELEASED },
884         { 0x89, SONYPI_EVENT_FNKEY_F9 },
885         { 0x09, SONYPI_EVENT_FNKEY_RELEASED },
886         { 0x8A, SONYPI_EVENT_FNKEY_F10 },
887         { 0x0A, SONYPI_EVENT_FNKEY_RELEASED },
888         { 0x8C, SONYPI_EVENT_FNKEY_F12 },
889         { 0x0C, SONYPI_EVENT_FNKEY_RELEASED },
890         { 0x9f, SONYPI_EVENT_CD_EJECT_PRESSED },
891         { 0x1f, SONYPI_EVENT_ANYBUTTON_RELEASED },
892         { 0, 0 },
893 };
894
895 static struct sony_nc_event sony_127_events[] = {
896         { 0x81, SONYPI_EVENT_MODEKEY_PRESSED },
897         { 0x01, SONYPI_EVENT_ANYBUTTON_RELEASED },
898         { 0x82, SONYPI_EVENT_PKEY_P1 },
899         { 0x02, SONYPI_EVENT_ANYBUTTON_RELEASED },
900         { 0x83, SONYPI_EVENT_PKEY_P2 },
901         { 0x03, SONYPI_EVENT_ANYBUTTON_RELEASED },
902         { 0x84, SONYPI_EVENT_PKEY_P3 },
903         { 0x04, SONYPI_EVENT_ANYBUTTON_RELEASED },
904         { 0x85, SONYPI_EVENT_PKEY_P4 },
905         { 0x05, SONYPI_EVENT_ANYBUTTON_RELEASED },
906         { 0x86, SONYPI_EVENT_PKEY_P5 },
907         { 0x06, SONYPI_EVENT_ANYBUTTON_RELEASED },
908         { 0x06, SONYPI_EVENT_ANYBUTTON_RELEASED },
909         { 0x87, SONYPI_EVENT_SETTINGKEY_PRESSED },
910         { 0x07, SONYPI_EVENT_ANYBUTTON_RELEASED },
911         { 0, 0 },
912 };
913
914 /*
915  * ACPI callbacks
916  */
917 static void sony_nc_notify(struct acpi_device *device, u32 event)
918 {
919         u32 ev = event;
920
921         if (ev >= 0x90) {
922                 /* New-style event */
923                 int result;
924                 int key_handle = 0;
925                 ev -= 0x90;
926
927                 if (sony_find_snc_handle(0x100) == ev)
928                         key_handle = 0x100;
929                 if (sony_find_snc_handle(0x127) == ev)
930                         key_handle = 0x127;
931
932                 if (key_handle) {
933                         struct sony_nc_event *key_event;
934
935                         if (sony_call_snc_handle(key_handle, 0x200, &result)) {
936                                 dprintk("sony_nc_notify, unable to decode"
937                                         " event 0x%.2x 0x%.2x\n", key_handle,
938                                         ev);
939                                 /* restore the original event */
940                                 ev = event;
941                         } else {
942                                 ev = result & 0xFF;
943
944                                 if (key_handle == 0x100)
945                                         key_event = sony_100_events;
946                                 else
947                                         key_event = sony_127_events;
948
949                                 for (; key_event->data; key_event++) {
950                                         if (key_event->data == ev) {
951                                                 ev = key_event->event;
952                                                 break;
953                                         }
954                                 }
955
956                                 if (!key_event->data)
957                                         printk(KERN_INFO DRV_PFX
958                                                         "Unknown event: 0x%x 0x%x\n",
959                                                         key_handle,
960                                                         ev);
961                                 else
962                                         sony_laptop_report_input_event(ev);
963                         }
964                 } else if (sony_find_snc_handle(0x124) == ev) {
965                         sony_nc_rfkill_update();
966                         return;
967                 }
968         } else
969                 sony_laptop_report_input_event(ev);
970
971         dprintk("sony_nc_notify, event: 0x%.2x\n", ev);
972         acpi_bus_generate_proc_event(sony_nc_acpi_device, 1, ev);
973 }
974
975 static acpi_status sony_walk_callback(acpi_handle handle, u32 level,
976                                       void *context, void **return_value)
977 {
978         struct acpi_device_info *info;
979         struct acpi_buffer buffer = {ACPI_ALLOCATE_BUFFER, NULL};
980
981         if (ACPI_SUCCESS(acpi_get_object_info(handle, &buffer))) {
982                 info = buffer.pointer;
983
984                 printk(KERN_WARNING DRV_PFX "method: name: %4.4s, args %X\n",
985                         (char *)&info->name, info->param_count);
986
987                 kfree(buffer.pointer);
988         }
989
990         return AE_OK;
991 }
992
993 /*
994  * ACPI device
995  */
996 static int sony_nc_function_setup(struct acpi_device *device)
997 {
998         int result;
999
1000         /* Enable all events */
1001         acpi_callsetfunc(sony_nc_acpi_handle, "SN02", 0xffff, &result);
1002
1003         /* Setup hotkeys */
1004         sony_call_snc_handle(0x0100, 0, &result);
1005         sony_call_snc_handle(0x0101, 0, &result);
1006         sony_call_snc_handle(0x0102, 0x100, &result);
1007
1008         return 0;
1009 }
1010
1011 static int sony_nc_resume(struct acpi_device *device)
1012 {
1013         struct sony_nc_value *item;
1014         acpi_handle handle;
1015
1016         for (item = sony_nc_values; item->name; item++) {
1017                 int ret;
1018
1019                 if (!item->valid)
1020                         continue;
1021                 ret = acpi_callsetfunc(sony_nc_acpi_handle, *item->acpiset,
1022                                        item->value, NULL);
1023                 if (ret < 0) {
1024                         printk("%s: %d\n", __func__, ret);
1025                         break;
1026                 }
1027         }
1028
1029         if (ACPI_SUCCESS(acpi_get_handle(sony_nc_acpi_handle, "ECON",
1030                                          &handle))) {
1031                 if (acpi_callsetfunc(sony_nc_acpi_handle, "ECON", 1, NULL))
1032                         dprintk("ECON Method failed\n");
1033         }
1034
1035         if (ACPI_SUCCESS(acpi_get_handle(sony_nc_acpi_handle, "SN00",
1036                                          &handle))) {
1037                 dprintk("Doing SNC setup\n");
1038                 sony_nc_function_setup(device);
1039         }
1040
1041         /* set the last requested brightness level */
1042         if (sony_backlight_device &&
1043                         !sony_backlight_update_status(sony_backlight_device))
1044                 printk(KERN_WARNING DRV_PFX "unable to restore brightness level\n");
1045
1046         return 0;
1047 }
1048
1049 static void sony_nc_rfkill_cleanup(void)
1050 {
1051         int i;
1052
1053         for (i = 0; i < SONY_RFKILL_MAX; i++) {
1054                 if (sony_rfkill_devices[i])
1055                         rfkill_unregister(sony_rfkill_devices[i]);
1056         }
1057 }
1058
1059 static int sony_nc_rfkill_get(void *data, enum rfkill_state *state)
1060 {
1061         int result;
1062         int argument = sony_rfkill_address[(long) data];
1063
1064         sony_call_snc_handle(0x124, 0x200, &result);
1065         if (result & 0x1) {
1066                 sony_call_snc_handle(0x124, argument, &result);
1067                 if (result & 0xf)
1068                         *state = RFKILL_STATE_UNBLOCKED;
1069                 else
1070                         *state = RFKILL_STATE_SOFT_BLOCKED;
1071         } else {
1072                 *state = RFKILL_STATE_HARD_BLOCKED;
1073         }
1074
1075         return 0;
1076 }
1077
1078 static int sony_nc_rfkill_set(void *data, enum rfkill_state state)
1079 {
1080         int result;
1081         int argument = sony_rfkill_address[(long) data] + 0x100;
1082
1083         if (state == RFKILL_STATE_UNBLOCKED)
1084                 argument |= 0xff0000;
1085
1086         return sony_call_snc_handle(0x124, argument, &result);
1087 }
1088
1089 static int sony_nc_setup_wifi_rfkill(struct acpi_device *device)
1090 {
1091         int err = 0;
1092         struct rfkill *sony_wifi_rfkill;
1093
1094         sony_wifi_rfkill = rfkill_allocate(&device->dev, RFKILL_TYPE_WLAN);
1095         if (!sony_wifi_rfkill)
1096                 return -1;
1097         sony_wifi_rfkill->name = "sony-wifi";
1098         sony_wifi_rfkill->toggle_radio = sony_nc_rfkill_set;
1099         sony_wifi_rfkill->get_state = sony_nc_rfkill_get;
1100         sony_wifi_rfkill->data = (void *)SONY_WIFI;
1101         err = rfkill_register(sony_wifi_rfkill);
1102         if (err)
1103                 rfkill_free(sony_wifi_rfkill);
1104         else
1105                 sony_rfkill_devices[SONY_WIFI] = sony_wifi_rfkill;
1106         return err;
1107 }
1108
1109 static int sony_nc_setup_bluetooth_rfkill(struct acpi_device *device)
1110 {
1111         int err = 0;
1112         struct rfkill *sony_bluetooth_rfkill;
1113
1114         sony_bluetooth_rfkill = rfkill_allocate(&device->dev,
1115                                                 RFKILL_TYPE_BLUETOOTH);
1116         if (!sony_bluetooth_rfkill)
1117                 return -1;
1118         sony_bluetooth_rfkill->name = "sony-bluetooth";
1119         sony_bluetooth_rfkill->toggle_radio = sony_nc_rfkill_set;
1120         sony_bluetooth_rfkill->get_state = sony_nc_rfkill_get;
1121         sony_bluetooth_rfkill->data = (void *)SONY_BLUETOOTH;
1122         err = rfkill_register(sony_bluetooth_rfkill);
1123         if (err)
1124                 rfkill_free(sony_bluetooth_rfkill);
1125         else
1126                 sony_rfkill_devices[SONY_BLUETOOTH] = sony_bluetooth_rfkill;
1127         return err;
1128 }
1129
1130 static int sony_nc_setup_wwan_rfkill(struct acpi_device *device)
1131 {
1132         int err = 0;
1133         struct rfkill *sony_wwan_rfkill;
1134
1135         sony_wwan_rfkill = rfkill_allocate(&device->dev, RFKILL_TYPE_WWAN);
1136         if (!sony_wwan_rfkill)
1137                 return -1;
1138         sony_wwan_rfkill->name = "sony-wwan";
1139         sony_wwan_rfkill->toggle_radio = sony_nc_rfkill_set;
1140         sony_wwan_rfkill->get_state = sony_nc_rfkill_get;
1141         sony_wwan_rfkill->data = (void *)SONY_WWAN;
1142         err = rfkill_register(sony_wwan_rfkill);
1143         if (err)
1144                 rfkill_free(sony_wwan_rfkill);
1145         else
1146                 sony_rfkill_devices[SONY_WWAN] = sony_wwan_rfkill;
1147         return err;
1148 }
1149
1150 static int sony_nc_setup_wimax_rfkill(struct acpi_device *device)
1151 {
1152         int err = 0;
1153         struct rfkill *sony_wimax_rfkill;
1154
1155         sony_wimax_rfkill = rfkill_allocate(&device->dev, RFKILL_TYPE_WIMAX);
1156         if (!sony_wimax_rfkill)
1157                 return -1;
1158         sony_wimax_rfkill->name = "sony-wimax";
1159         sony_wimax_rfkill->toggle_radio = sony_nc_rfkill_set;
1160         sony_wimax_rfkill->get_state = sony_nc_rfkill_get;
1161         sony_wimax_rfkill->data = (void *)SONY_WIMAX;
1162         err = rfkill_register(sony_wimax_rfkill);
1163         if (err)
1164                 rfkill_free(sony_wimax_rfkill);
1165         else
1166                 sony_rfkill_devices[SONY_WIMAX] = sony_wimax_rfkill;
1167         return err;
1168 }
1169
1170 static void sony_nc_rfkill_update()
1171 {
1172         int i;
1173         enum rfkill_state state;
1174
1175         for (i = 0; i < SONY_RFKILL_MAX; i++) {
1176                 if (sony_rfkill_devices[i]) {
1177                         sony_rfkill_devices[i]->
1178                                 get_state(sony_rfkill_devices[i]->data,
1179                                           &state);
1180                         rfkill_force_state(sony_rfkill_devices[i], state);
1181                 }
1182         }
1183 }
1184
1185 static int sony_nc_rfkill_setup(struct acpi_device *device)
1186 {
1187         int result, ret;
1188
1189         if (sony_find_snc_handle(0x124) == -1)
1190                 return -1;
1191
1192         ret = sony_call_snc_handle(0x124, 0xb00, &result);
1193         if (ret) {
1194                 printk(KERN_INFO DRV_PFX
1195                        "Unable to enumerate rfkill devices: %x\n", ret);
1196                 return ret;
1197         }
1198
1199         if (result & 0x1)
1200                 sony_nc_setup_wifi_rfkill(device);
1201         if (result & 0x2)
1202                 sony_nc_setup_bluetooth_rfkill(device);
1203         if (result & 0x1c)
1204                 sony_nc_setup_wwan_rfkill(device);
1205         if (result & 0x20)
1206                 sony_nc_setup_wimax_rfkill(device);
1207
1208         return 0;
1209 }
1210
1211 static int sony_nc_add(struct acpi_device *device)
1212 {
1213         acpi_status status;
1214         int result = 0;
1215         acpi_handle handle;
1216         struct sony_nc_value *item;
1217
1218         printk(KERN_INFO DRV_PFX "%s v%s.\n",
1219                 SONY_NC_DRIVER_NAME, SONY_LAPTOP_DRIVER_VERSION);
1220
1221         sony_nc_acpi_device = device;
1222         strcpy(acpi_device_class(device), "sony/hotkey");
1223
1224         sony_nc_acpi_handle = device->handle;
1225
1226         /* read device status */
1227         result = acpi_bus_get_status(device);
1228         /* bail IFF the above call was successful and the device is not present */
1229         if (!result && !device->status.present) {
1230                 dprintk("Device not present\n");
1231                 result = -ENODEV;
1232                 goto outwalk;
1233         }
1234
1235         if (debug) {
1236                 status = acpi_walk_namespace(ACPI_TYPE_METHOD, sony_nc_acpi_handle,
1237                                              1, sony_walk_callback, NULL, NULL);
1238                 if (ACPI_FAILURE(status)) {
1239                         printk(KERN_WARNING DRV_PFX "unable to walk acpi resources\n");
1240                         result = -ENODEV;
1241                         goto outwalk;
1242                 }
1243         }
1244
1245         /* try to _INI the device if such method exists (ACPI spec 3.0-6.5.1
1246          * should be respected as we already checked for the device presence above */
1247         if (ACPI_SUCCESS(acpi_get_handle(sony_nc_acpi_handle, METHOD_NAME__INI, &handle))) {
1248                 dprintk("Invoking _INI\n");
1249                 if (ACPI_FAILURE(acpi_evaluate_object(sony_nc_acpi_handle, METHOD_NAME__INI,
1250                                                 NULL, NULL)))
1251                         dprintk("_INI Method failed\n");
1252         }
1253
1254         if (ACPI_SUCCESS(acpi_get_handle(sony_nc_acpi_handle, "ECON",
1255                                          &handle))) {
1256                 if (acpi_callsetfunc(sony_nc_acpi_handle, "ECON", 1, NULL))
1257                         dprintk("ECON Method failed\n");
1258         }
1259
1260         if (ACPI_SUCCESS(acpi_get_handle(sony_nc_acpi_handle, "SN00",
1261                                          &handle))) {
1262                 dprintk("Doing SNC setup\n");
1263                 sony_nc_function_setup(device);
1264                 sony_nc_rfkill_setup(device);
1265         }
1266
1267         /* setup input devices and helper fifo */
1268         result = sony_laptop_setup_input(device);
1269         if (result) {
1270                 printk(KERN_ERR DRV_PFX
1271                                 "Unable to create input devices.\n");
1272                 goto outwalk;
1273         }
1274
1275         if (acpi_video_backlight_support()) {
1276                 printk(KERN_INFO DRV_PFX "brightness ignored, must be "
1277                        "controlled by ACPI video driver\n");
1278         } else if (ACPI_SUCCESS(acpi_get_handle(sony_nc_acpi_handle, "GBRT",
1279                                                 &handle))) {
1280                 sony_backlight_device = backlight_device_register("sony", NULL,
1281                                                                   NULL,
1282                                                                   &sony_backlight_ops);
1283
1284                 if (IS_ERR(sony_backlight_device)) {
1285                         printk(KERN_WARNING DRV_PFX "unable to register backlight device\n");
1286                         sony_backlight_device = NULL;
1287                 } else {
1288                         sony_backlight_device->props.brightness =
1289                             sony_backlight_get_brightness
1290                             (sony_backlight_device);
1291                         sony_backlight_device->props.max_brightness =
1292                             SONY_MAX_BRIGHTNESS - 1;
1293                 }
1294
1295         }
1296
1297         result = sony_pf_add();
1298         if (result)
1299                 goto outbacklight;
1300
1301         /* create sony_pf sysfs attributes related to the SNC device */
1302         for (item = sony_nc_values; item->name; ++item) {
1303
1304                 if (!debug && item->debug)
1305                         continue;
1306
1307                 /* find the available acpiget as described in the DSDT */
1308                 for (; item->acpiget && *item->acpiget; ++item->acpiget) {
1309                         if (ACPI_SUCCESS(acpi_get_handle(sony_nc_acpi_handle,
1310                                                          *item->acpiget,
1311                                                          &handle))) {
1312                                 dprintk("Found %s getter: %s\n",
1313                                                 item->name, *item->acpiget);
1314                                 item->devattr.attr.mode |= S_IRUGO;
1315                                 break;
1316                         }
1317                 }
1318
1319                 /* find the available acpiset as described in the DSDT */
1320                 for (; item->acpiset && *item->acpiset; ++item->acpiset) {
1321                         if (ACPI_SUCCESS(acpi_get_handle(sony_nc_acpi_handle,
1322                                                          *item->acpiset,
1323                                                          &handle))) {
1324                                 dprintk("Found %s setter: %s\n",
1325                                                 item->name, *item->acpiset);
1326                                 item->devattr.attr.mode |= S_IWUSR;
1327                                 break;
1328                         }
1329                 }
1330
1331                 if (item->devattr.attr.mode != 0) {
1332                         result =
1333                             device_create_file(&sony_pf_device->dev,
1334                                                &item->devattr);
1335                         if (result)
1336                                 goto out_sysfs;
1337                 }
1338         }
1339
1340         return 0;
1341
1342       out_sysfs:
1343         for (item = sony_nc_values; item->name; ++item) {
1344                 device_remove_file(&sony_pf_device->dev, &item->devattr);
1345         }
1346         sony_pf_remove();
1347
1348       outbacklight:
1349         if (sony_backlight_device)
1350                 backlight_device_unregister(sony_backlight_device);
1351
1352         sony_laptop_remove_input();
1353
1354       outwalk:
1355         sony_nc_rfkill_cleanup();
1356         return result;
1357 }
1358
1359 static int sony_nc_remove(struct acpi_device *device, int type)
1360 {
1361         struct sony_nc_value *item;
1362
1363         if (sony_backlight_device)
1364                 backlight_device_unregister(sony_backlight_device);
1365
1366         sony_nc_acpi_device = NULL;
1367
1368         for (item = sony_nc_values; item->name; ++item) {
1369                 device_remove_file(&sony_pf_device->dev, &item->devattr);
1370         }
1371
1372         sony_pf_remove();
1373         sony_laptop_remove_input();
1374         sony_nc_rfkill_cleanup();
1375         dprintk(SONY_NC_DRIVER_NAME " removed.\n");
1376
1377         return 0;
1378 }
1379
1380 static const struct acpi_device_id sony_device_ids[] = {
1381         {SONY_NC_HID, 0},
1382         {SONY_PIC_HID, 0},
1383         {"", 0},
1384 };
1385 MODULE_DEVICE_TABLE(acpi, sony_device_ids);
1386
1387 static const struct acpi_device_id sony_nc_device_ids[] = {
1388         {SONY_NC_HID, 0},
1389         {"", 0},
1390 };
1391
1392 static struct acpi_driver sony_nc_driver = {
1393         .name = SONY_NC_DRIVER_NAME,
1394         .class = SONY_NC_CLASS,
1395         .ids = sony_nc_device_ids,
1396         .owner = THIS_MODULE,
1397         .ops = {
1398                 .add = sony_nc_add,
1399                 .remove = sony_nc_remove,
1400                 .resume = sony_nc_resume,
1401                 .notify = sony_nc_notify,
1402                 },
1403 };
1404
1405 /*********** SPIC (SNY6001) Device ***********/
1406
1407 #define SONYPI_DEVICE_TYPE1     0x00000001
1408 #define SONYPI_DEVICE_TYPE2     0x00000002
1409 #define SONYPI_DEVICE_TYPE3     0x00000004
1410 #define SONYPI_DEVICE_TYPE4     0x00000008
1411
1412 #define SONYPI_TYPE1_OFFSET     0x04
1413 #define SONYPI_TYPE2_OFFSET     0x12
1414 #define SONYPI_TYPE3_OFFSET     0x12
1415
1416 struct sony_pic_ioport {
1417         struct acpi_resource_io io1;
1418         struct acpi_resource_io io2;
1419         struct list_head        list;
1420 };
1421
1422 struct sony_pic_irq {
1423         struct acpi_resource_irq        irq;
1424         struct list_head                list;
1425 };
1426
1427 struct sonypi_eventtypes {
1428         u8                      data;
1429         unsigned long           mask;
1430         struct sonypi_event     *events;
1431 };
1432
1433 struct device_ctrl {
1434         int                             model;
1435         int                             (*handle_irq)(const u8, const u8);
1436         u16                             evport_offset;
1437         u8                              has_camera;
1438         u8                              has_bluetooth;
1439         u8                              has_wwan;
1440         struct sonypi_eventtypes        *event_types;
1441 };
1442
1443 struct sony_pic_dev {
1444         struct device_ctrl      *control;
1445         struct acpi_device      *acpi_dev;
1446         struct sony_pic_irq     *cur_irq;
1447         struct sony_pic_ioport  *cur_ioport;
1448         struct list_head        interrupts;
1449         struct list_head        ioports;
1450         struct mutex            lock;
1451         u8                      camera_power;
1452         u8                      bluetooth_power;
1453         u8                      wwan_power;
1454 };
1455
1456 static struct sony_pic_dev spic_dev = {
1457         .interrupts     = LIST_HEAD_INIT(spic_dev.interrupts),
1458         .ioports        = LIST_HEAD_INIT(spic_dev.ioports),
1459 };
1460
1461 /* Event masks */
1462 #define SONYPI_JOGGER_MASK                      0x00000001
1463 #define SONYPI_CAPTURE_MASK                     0x00000002
1464 #define SONYPI_FNKEY_MASK                       0x00000004
1465 #define SONYPI_BLUETOOTH_MASK                   0x00000008
1466 #define SONYPI_PKEY_MASK                        0x00000010
1467 #define SONYPI_BACK_MASK                        0x00000020
1468 #define SONYPI_HELP_MASK                        0x00000040
1469 #define SONYPI_LID_MASK                         0x00000080
1470 #define SONYPI_ZOOM_MASK                        0x00000100
1471 #define SONYPI_THUMBPHRASE_MASK                 0x00000200
1472 #define SONYPI_MEYE_MASK                        0x00000400
1473 #define SONYPI_MEMORYSTICK_MASK                 0x00000800
1474 #define SONYPI_BATTERY_MASK                     0x00001000
1475 #define SONYPI_WIRELESS_MASK                    0x00002000
1476
1477 struct sonypi_event {
1478         u8      data;
1479         u8      event;
1480 };
1481
1482 /* The set of possible button release events */
1483 static struct sonypi_event sonypi_releaseev[] = {
1484         { 0x00, SONYPI_EVENT_ANYBUTTON_RELEASED },
1485         { 0, 0 }
1486 };
1487
1488 /* The set of possible jogger events  */
1489 static struct sonypi_event sonypi_joggerev[] = {
1490         { 0x1f, SONYPI_EVENT_JOGDIAL_UP },
1491         { 0x01, SONYPI_EVENT_JOGDIAL_DOWN },
1492         { 0x5f, SONYPI_EVENT_JOGDIAL_UP_PRESSED },
1493         { 0x41, SONYPI_EVENT_JOGDIAL_DOWN_PRESSED },
1494         { 0x1e, SONYPI_EVENT_JOGDIAL_FAST_UP },
1495         { 0x02, SONYPI_EVENT_JOGDIAL_FAST_DOWN },
1496         { 0x5e, SONYPI_EVENT_JOGDIAL_FAST_UP_PRESSED },
1497         { 0x42, SONYPI_EVENT_JOGDIAL_FAST_DOWN_PRESSED },
1498         { 0x1d, SONYPI_EVENT_JOGDIAL_VFAST_UP },
1499         { 0x03, SONYPI_EVENT_JOGDIAL_VFAST_DOWN },
1500         { 0x5d, SONYPI_EVENT_JOGDIAL_VFAST_UP_PRESSED },
1501         { 0x43, SONYPI_EVENT_JOGDIAL_VFAST_DOWN_PRESSED },
1502         { 0x40, SONYPI_EVENT_JOGDIAL_PRESSED },
1503         { 0, 0 }
1504 };
1505
1506 /* The set of possible capture button events */
1507 static struct sonypi_event sonypi_captureev[] = {
1508         { 0x05, SONYPI_EVENT_CAPTURE_PARTIALPRESSED },
1509         { 0x07, SONYPI_EVENT_CAPTURE_PRESSED },
1510         { 0x40, SONYPI_EVENT_CAPTURE_PRESSED },
1511         { 0x01, SONYPI_EVENT_CAPTURE_PARTIALRELEASED },
1512         { 0, 0 }
1513 };
1514
1515 /* The set of possible fnkeys events */
1516 static struct sonypi_event sonypi_fnkeyev[] = {
1517         { 0x10, SONYPI_EVENT_FNKEY_ESC },
1518         { 0x11, SONYPI_EVENT_FNKEY_F1 },
1519         { 0x12, SONYPI_EVENT_FNKEY_F2 },
1520         { 0x13, SONYPI_EVENT_FNKEY_F3 },
1521         { 0x14, SONYPI_EVENT_FNKEY_F4 },
1522         { 0x15, SONYPI_EVENT_FNKEY_F5 },
1523         { 0x16, SONYPI_EVENT_FNKEY_F6 },
1524         { 0x17, SONYPI_EVENT_FNKEY_F7 },
1525         { 0x18, SONYPI_EVENT_FNKEY_F8 },
1526         { 0x19, SONYPI_EVENT_FNKEY_F9 },
1527         { 0x1a, SONYPI_EVENT_FNKEY_F10 },
1528         { 0x1b, SONYPI_EVENT_FNKEY_F11 },
1529         { 0x1c, SONYPI_EVENT_FNKEY_F12 },
1530         { 0x1f, SONYPI_EVENT_FNKEY_RELEASED },
1531         { 0x21, SONYPI_EVENT_FNKEY_1 },
1532         { 0x22, SONYPI_EVENT_FNKEY_2 },
1533         { 0x31, SONYPI_EVENT_FNKEY_D },
1534         { 0x32, SONYPI_EVENT_FNKEY_E },
1535         { 0x33, SONYPI_EVENT_FNKEY_F },
1536         { 0x34, SONYPI_EVENT_FNKEY_S },
1537         { 0x35, SONYPI_EVENT_FNKEY_B },
1538         { 0x36, SONYPI_EVENT_FNKEY_ONLY },
1539         { 0, 0 }
1540 };
1541
1542 /* The set of possible program key events */
1543 static struct sonypi_event sonypi_pkeyev[] = {
1544         { 0x01, SONYPI_EVENT_PKEY_P1 },
1545         { 0x02, SONYPI_EVENT_PKEY_P2 },
1546         { 0x04, SONYPI_EVENT_PKEY_P3 },
1547         { 0x20, SONYPI_EVENT_PKEY_P1 },
1548         { 0, 0 }
1549 };
1550
1551 /* The set of possible bluetooth events */
1552 static struct sonypi_event sonypi_blueev[] = {
1553         { 0x55, SONYPI_EVENT_BLUETOOTH_PRESSED },
1554         { 0x59, SONYPI_EVENT_BLUETOOTH_ON },
1555         { 0x5a, SONYPI_EVENT_BLUETOOTH_OFF },
1556         { 0, 0 }
1557 };
1558
1559 /* The set of possible wireless events */
1560 static struct sonypi_event sonypi_wlessev[] = {
1561         { 0x59, SONYPI_EVENT_WIRELESS_ON },
1562         { 0x5a, SONYPI_EVENT_WIRELESS_OFF },
1563         { 0, 0 }
1564 };
1565
1566 /* The set of possible back button events */
1567 static struct sonypi_event sonypi_backev[] = {
1568         { 0x20, SONYPI_EVENT_BACK_PRESSED },
1569         { 0, 0 }
1570 };
1571
1572 /* The set of possible help button events */
1573 static struct sonypi_event sonypi_helpev[] = {
1574         { 0x3b, SONYPI_EVENT_HELP_PRESSED },
1575         { 0, 0 }
1576 };
1577
1578
1579 /* The set of possible lid events */
1580 static struct sonypi_event sonypi_lidev[] = {
1581         { 0x51, SONYPI_EVENT_LID_CLOSED },
1582         { 0x50, SONYPI_EVENT_LID_OPENED },
1583         { 0, 0 }
1584 };
1585
1586 /* The set of possible zoom events */
1587 static struct sonypi_event sonypi_zoomev[] = {
1588         { 0x39, SONYPI_EVENT_ZOOM_PRESSED },
1589         { 0x10, SONYPI_EVENT_ZOOM_IN_PRESSED },
1590         { 0x20, SONYPI_EVENT_ZOOM_OUT_PRESSED },
1591         { 0x04, SONYPI_EVENT_ZOOM_PRESSED },
1592         { 0, 0 }
1593 };
1594
1595 /* The set of possible thumbphrase events */
1596 static struct sonypi_event sonypi_thumbphraseev[] = {
1597         { 0x3a, SONYPI_EVENT_THUMBPHRASE_PRESSED },
1598         { 0, 0 }
1599 };
1600
1601 /* The set of possible motioneye camera events */
1602 static struct sonypi_event sonypi_meyeev[] = {
1603         { 0x00, SONYPI_EVENT_MEYE_FACE },
1604         { 0x01, SONYPI_EVENT_MEYE_OPPOSITE },
1605         { 0, 0 }
1606 };
1607
1608 /* The set of possible memorystick events */
1609 static struct sonypi_event sonypi_memorystickev[] = {
1610         { 0x53, SONYPI_EVENT_MEMORYSTICK_INSERT },
1611         { 0x54, SONYPI_EVENT_MEMORYSTICK_EJECT },
1612         { 0, 0 }
1613 };
1614
1615 /* The set of possible battery events */
1616 static struct sonypi_event sonypi_batteryev[] = {
1617         { 0x20, SONYPI_EVENT_BATTERY_INSERT },
1618         { 0x30, SONYPI_EVENT_BATTERY_REMOVE },
1619         { 0, 0 }
1620 };
1621
1622 /* The set of possible volume events */
1623 static struct sonypi_event sonypi_volumeev[] = {
1624         { 0x01, SONYPI_EVENT_VOLUME_INC_PRESSED },
1625         { 0x02, SONYPI_EVENT_VOLUME_DEC_PRESSED },
1626         { 0, 0 }
1627 };
1628
1629 /* The set of possible brightness events */
1630 static struct sonypi_event sonypi_brightnessev[] = {
1631         { 0x80, SONYPI_EVENT_BRIGHTNESS_PRESSED },
1632         { 0, 0 }
1633 };
1634
1635 static struct sonypi_eventtypes type1_events[] = {
1636         { 0, 0xffffffff, sonypi_releaseev },
1637         { 0x70, SONYPI_MEYE_MASK, sonypi_meyeev },
1638         { 0x30, SONYPI_LID_MASK, sonypi_lidev },
1639         { 0x60, SONYPI_CAPTURE_MASK, sonypi_captureev },
1640         { 0x10, SONYPI_JOGGER_MASK, sonypi_joggerev },
1641         { 0x20, SONYPI_FNKEY_MASK, sonypi_fnkeyev },
1642         { 0x30, SONYPI_BLUETOOTH_MASK, sonypi_blueev },
1643         { 0x40, SONYPI_PKEY_MASK, sonypi_pkeyev },
1644         { 0x30, SONYPI_MEMORYSTICK_MASK, sonypi_memorystickev },
1645         { 0x40, SONYPI_BATTERY_MASK, sonypi_batteryev },
1646         { 0 },
1647 };
1648 static struct sonypi_eventtypes type2_events[] = {
1649         { 0, 0xffffffff, sonypi_releaseev },
1650         { 0x38, SONYPI_LID_MASK, sonypi_lidev },
1651         { 0x11, SONYPI_JOGGER_MASK, sonypi_joggerev },
1652         { 0x61, SONYPI_CAPTURE_MASK, sonypi_captureev },
1653         { 0x21, SONYPI_FNKEY_MASK, sonypi_fnkeyev },
1654         { 0x31, SONYPI_BLUETOOTH_MASK, sonypi_blueev },
1655         { 0x08, SONYPI_PKEY_MASK, sonypi_pkeyev },
1656         { 0x11, SONYPI_BACK_MASK, sonypi_backev },
1657         { 0x21, SONYPI_HELP_MASK, sonypi_helpev },
1658         { 0x21, SONYPI_ZOOM_MASK, sonypi_zoomev },
1659         { 0x20, SONYPI_THUMBPHRASE_MASK, sonypi_thumbphraseev },
1660         { 0x31, SONYPI_MEMORYSTICK_MASK, sonypi_memorystickev },
1661         { 0x41, SONYPI_BATTERY_MASK, sonypi_batteryev },
1662         { 0x31, SONYPI_PKEY_MASK, sonypi_pkeyev },
1663         { 0 },
1664 };
1665 static struct sonypi_eventtypes type3_events[] = {
1666         { 0, 0xffffffff, sonypi_releaseev },
1667         { 0x21, SONYPI_FNKEY_MASK, sonypi_fnkeyev },
1668         { 0x31, SONYPI_WIRELESS_MASK, sonypi_wlessev },
1669         { 0x31, SONYPI_MEMORYSTICK_MASK, sonypi_memorystickev },
1670         { 0x41, SONYPI_BATTERY_MASK, sonypi_batteryev },
1671         { 0x31, SONYPI_PKEY_MASK, sonypi_pkeyev },
1672         { 0x05, SONYPI_PKEY_MASK, sonypi_pkeyev },
1673         { 0x05, SONYPI_ZOOM_MASK, sonypi_zoomev },
1674         { 0x05, SONYPI_CAPTURE_MASK, sonypi_captureev },
1675         { 0x05, SONYPI_PKEY_MASK, sonypi_volumeev },
1676         { 0x05, SONYPI_PKEY_MASK, sonypi_brightnessev },
1677         { 0 },
1678 };
1679
1680 /* low level spic calls */
1681 #define ITERATIONS_LONG         10000
1682 #define ITERATIONS_SHORT        10
1683 #define wait_on_command(command, iterations) {                          \
1684         unsigned int n = iterations;                                    \
1685         while (--n && (command))                                        \
1686                 udelay(1);                                              \
1687         if (!n)                                                         \
1688                 dprintk("command failed at %s : %s (line %d)\n",        \
1689                                 __FILE__, __func__, __LINE__);  \
1690 }
1691
1692 static u8 sony_pic_call1(u8 dev)
1693 {
1694         u8 v1, v2;
1695
1696         wait_on_command(inb_p(spic_dev.cur_ioport->io1.minimum + 4) & 2,
1697                         ITERATIONS_LONG);
1698         outb(dev, spic_dev.cur_ioport->io1.minimum + 4);
1699         v1 = inb_p(spic_dev.cur_ioport->io1.minimum + 4);
1700         v2 = inb_p(spic_dev.cur_ioport->io1.minimum);
1701         dprintk("sony_pic_call1(0x%.2x): 0x%.4x\n", dev, (v2 << 8) | v1);
1702         return v2;
1703 }
1704
1705 static u8 sony_pic_call2(u8 dev, u8 fn)
1706 {
1707         u8 v1;
1708
1709         wait_on_command(inb_p(spic_dev.cur_ioport->io1.minimum + 4) & 2,
1710                         ITERATIONS_LONG);
1711         outb(dev, spic_dev.cur_ioport->io1.minimum + 4);
1712         wait_on_command(inb_p(spic_dev.cur_ioport->io1.minimum + 4) & 2,
1713                         ITERATIONS_LONG);
1714         outb(fn, spic_dev.cur_ioport->io1.minimum);
1715         v1 = inb_p(spic_dev.cur_ioport->io1.minimum);
1716         dprintk("sony_pic_call2(0x%.2x - 0x%.2x): 0x%.4x\n", dev, fn, v1);
1717         return v1;
1718 }
1719
1720 static u8 sony_pic_call3(u8 dev, u8 fn, u8 v)
1721 {
1722         u8 v1;
1723
1724         wait_on_command(inb_p(spic_dev.cur_ioport->io1.minimum + 4) & 2, ITERATIONS_LONG);
1725         outb(dev, spic_dev.cur_ioport->io1.minimum + 4);
1726         wait_on_command(inb_p(spic_dev.cur_ioport->io1.minimum + 4) & 2, ITERATIONS_LONG);
1727         outb(fn, spic_dev.cur_ioport->io1.minimum);
1728         wait_on_command(inb_p(spic_dev.cur_ioport->io1.minimum + 4) & 2, ITERATIONS_LONG);
1729         outb(v, spic_dev.cur_ioport->io1.minimum);
1730         v1 = inb_p(spic_dev.cur_ioport->io1.minimum);
1731         dprintk("sony_pic_call3(0x%.2x - 0x%.2x - 0x%.2x): 0x%.4x\n",
1732                         dev, fn, v, v1);
1733         return v1;
1734 }
1735
1736 /*
1737  * minidrivers for SPIC models
1738  */
1739 static int type3_handle_irq(const u8 data_mask, const u8 ev)
1740 {
1741         /*
1742          * 0x31 could mean we have to take some extra action and wait for
1743          * the next irq for some Type3 models, it will generate a new
1744          * irq and we can read new data from the device:
1745          *  - 0x5c and 0x5f requires 0xA0
1746          *  - 0x61 requires 0xB3
1747          */
1748         if (data_mask == 0x31) {
1749                 if (ev == 0x5c || ev == 0x5f)
1750                         sony_pic_call1(0xA0);
1751                 else if (ev == 0x61)
1752                         sony_pic_call1(0xB3);
1753                 return 0;
1754         }
1755         return 1;
1756 }
1757
1758 static struct device_ctrl spic_types[] = {
1759         {
1760                 .model = SONYPI_DEVICE_TYPE1,
1761                 .handle_irq = NULL,
1762                 .evport_offset = SONYPI_TYPE1_OFFSET,
1763                 .event_types = type1_events,
1764         },
1765         {
1766                 .model = SONYPI_DEVICE_TYPE2,
1767                 .handle_irq = NULL,
1768                 .evport_offset = SONYPI_TYPE2_OFFSET,
1769                 .event_types = type2_events,
1770         },
1771         {
1772                 .model = SONYPI_DEVICE_TYPE3,
1773                 .handle_irq = type3_handle_irq,
1774                 .evport_offset = SONYPI_TYPE3_OFFSET,
1775                 .event_types = type3_events,
1776         },
1777 };
1778
1779 static void sony_pic_detect_device_type(struct sony_pic_dev *dev)
1780 {
1781         struct pci_dev *pcidev;
1782
1783         pcidev = pci_get_device(PCI_VENDOR_ID_INTEL,
1784                         PCI_DEVICE_ID_INTEL_82371AB_3, NULL);
1785         if (pcidev) {
1786                 dev->control = &spic_types[0];
1787                 goto out;
1788         }
1789
1790         pcidev = pci_get_device(PCI_VENDOR_ID_INTEL,
1791                         PCI_DEVICE_ID_INTEL_ICH6_1, NULL);
1792         if (pcidev) {
1793                 dev->control = &spic_types[2];
1794                 goto out;
1795         }
1796
1797         pcidev = pci_get_device(PCI_VENDOR_ID_INTEL,
1798                         PCI_DEVICE_ID_INTEL_ICH7_1, NULL);
1799         if (pcidev) {
1800                 dev->control = &spic_types[2];
1801                 goto out;
1802         }
1803
1804         pcidev = pci_get_device(PCI_VENDOR_ID_INTEL,
1805                         PCI_DEVICE_ID_INTEL_ICH8_4, NULL);
1806         if (pcidev) {
1807                 dev->control = &spic_types[2];
1808                 goto out;
1809         }
1810
1811         pcidev = pci_get_device(PCI_VENDOR_ID_INTEL,
1812                         PCI_DEVICE_ID_INTEL_ICH9_1, NULL);
1813         if (pcidev) {
1814                 dev->control = &spic_types[2];
1815                 goto out;
1816         }
1817
1818         /* default */
1819         dev->control = &spic_types[1];
1820
1821 out:
1822         if (pcidev)
1823                 pci_dev_put(pcidev);
1824
1825         printk(KERN_INFO DRV_PFX "detected Type%d model\n",
1826                         dev->control->model == SONYPI_DEVICE_TYPE1 ? 1 :
1827                         dev->control->model == SONYPI_DEVICE_TYPE2 ? 2 : 3);
1828 }
1829
1830 /* camera tests and poweron/poweroff */
1831 #define SONYPI_CAMERA_PICTURE           5
1832 #define SONYPI_CAMERA_CONTROL           0x10
1833
1834 #define SONYPI_CAMERA_BRIGHTNESS                0
1835 #define SONYPI_CAMERA_CONTRAST                  1
1836 #define SONYPI_CAMERA_HUE                       2
1837 #define SONYPI_CAMERA_COLOR                     3
1838 #define SONYPI_CAMERA_SHARPNESS                 4
1839
1840 #define SONYPI_CAMERA_EXPOSURE_MASK             0xC
1841 #define SONYPI_CAMERA_WHITE_BALANCE_MASK        0x3
1842 #define SONYPI_CAMERA_PICTURE_MODE_MASK         0x30
1843 #define SONYPI_CAMERA_MUTE_MASK                 0x40
1844
1845 /* the rest don't need a loop until not 0xff */
1846 #define SONYPI_CAMERA_AGC                       6
1847 #define SONYPI_CAMERA_AGC_MASK                  0x30
1848 #define SONYPI_CAMERA_SHUTTER_MASK              0x7
1849
1850 #define SONYPI_CAMERA_SHUTDOWN_REQUEST          7
1851 #define SONYPI_CAMERA_CONTROL                   0x10
1852
1853 #define SONYPI_CAMERA_STATUS                    7
1854 #define SONYPI_CAMERA_STATUS_READY              0x2
1855 #define SONYPI_CAMERA_STATUS_POSITION           0x4
1856
1857 #define SONYPI_DIRECTION_BACKWARDS              0x4
1858
1859 #define SONYPI_CAMERA_REVISION                  8
1860 #define SONYPI_CAMERA_ROMVERSION                9
1861
1862 static int __sony_pic_camera_ready(void)
1863 {
1864         u8 v;
1865
1866         v = sony_pic_call2(0x8f, SONYPI_CAMERA_STATUS);
1867         return (v != 0xff && (v & SONYPI_CAMERA_STATUS_READY));
1868 }
1869
1870 static int __sony_pic_camera_off(void)
1871 {
1872         if (!camera) {
1873                 printk(KERN_WARNING DRV_PFX "camera control not enabled\n");
1874                 return -ENODEV;
1875         }
1876
1877         wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_PICTURE,
1878                                 SONYPI_CAMERA_MUTE_MASK),
1879                         ITERATIONS_SHORT);
1880
1881         if (spic_dev.camera_power) {
1882                 sony_pic_call2(0x91, 0);
1883                 spic_dev.camera_power = 0;
1884         }
1885         return 0;
1886 }
1887
1888 static int __sony_pic_camera_on(void)
1889 {
1890         int i, j, x;
1891
1892         if (!camera) {
1893                 printk(KERN_WARNING DRV_PFX "camera control not enabled\n");
1894                 return -ENODEV;
1895         }
1896
1897         if (spic_dev.camera_power)
1898                 return 0;
1899
1900         for (j = 5; j > 0; j--) {
1901
1902                 for (x = 0; x < 100 && sony_pic_call2(0x91, 0x1); x++)
1903                         msleep(10);
1904                 sony_pic_call1(0x93);
1905
1906                 for (i = 400; i > 0; i--) {
1907                         if (__sony_pic_camera_ready())
1908                                 break;
1909                         msleep(10);
1910                 }
1911                 if (i)
1912                         break;
1913         }
1914
1915         if (j == 0) {
1916                 printk(KERN_WARNING DRV_PFX "failed to power on camera\n");
1917                 return -ENODEV;
1918         }
1919
1920         wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_CONTROL,
1921                                 0x5a),
1922                         ITERATIONS_SHORT);
1923
1924         spic_dev.camera_power = 1;
1925         return 0;
1926 }
1927
1928 /* External camera command (exported to the motion eye v4l driver) */
1929 int sony_pic_camera_command(int command, u8 value)
1930 {
1931         if (!camera)
1932                 return -EIO;
1933
1934         mutex_lock(&spic_dev.lock);
1935
1936         switch (command) {
1937         case SONY_PIC_COMMAND_SETCAMERA:
1938                 if (value)
1939                         __sony_pic_camera_on();
1940                 else
1941                         __sony_pic_camera_off();
1942                 break;
1943         case SONY_PIC_COMMAND_SETCAMERABRIGHTNESS:
1944                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_BRIGHTNESS, value),
1945                                 ITERATIONS_SHORT);
1946                 break;
1947         case SONY_PIC_COMMAND_SETCAMERACONTRAST:
1948                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_CONTRAST, value),
1949                                 ITERATIONS_SHORT);
1950                 break;
1951         case SONY_PIC_COMMAND_SETCAMERAHUE:
1952                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_HUE, value),
1953                                 ITERATIONS_SHORT);
1954                 break;
1955         case SONY_PIC_COMMAND_SETCAMERACOLOR:
1956                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_COLOR, value),
1957                                 ITERATIONS_SHORT);
1958                 break;
1959         case SONY_PIC_COMMAND_SETCAMERASHARPNESS:
1960                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_SHARPNESS, value),
1961                                 ITERATIONS_SHORT);
1962                 break;
1963         case SONY_PIC_COMMAND_SETCAMERAPICTURE:
1964                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_PICTURE, value),
1965                                 ITERATIONS_SHORT);
1966                 break;
1967         case SONY_PIC_COMMAND_SETCAMERAAGC:
1968                 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_AGC, value),
1969                                 ITERATIONS_SHORT);
1970                 break;
1971         default:
1972                 printk(KERN_ERR DRV_PFX "sony_pic_camera_command invalid: %d\n",
1973                        command);
1974                 break;
1975         }
1976         mutex_unlock(&spic_dev.lock);
1977         return 0;
1978 }
1979 EXPORT_SYMBOL(sony_pic_camera_command);
1980
1981 /* gprs/edge modem (SZ460N and SZ210P), thanks to Joshua Wise */
1982 static void __sony_pic_set_wwanpower(u8 state)
1983 {
1984         state = !!state;
1985         if (spic_dev.wwan_power == state)
1986                 return;
1987         sony_pic_call2(0xB0, state);
1988         sony_pic_call1(0x82);
1989         spic_dev.wwan_power = state;
1990 }
1991
1992 static ssize_t sony_pic_wwanpower_store(struct device *dev,
1993                 struct device_attribute *attr,
1994                 const char *buffer, size_t count)
1995 {
1996         unsigned long value;
1997         if (count > 31)
1998                 return -EINVAL;
1999
2000         value = simple_strtoul(buffer, NULL, 10);
2001         mutex_lock(&spic_dev.lock);
2002         __sony_pic_set_wwanpower(value);
2003         mutex_unlock(&spic_dev.lock);
2004
2005         return count;
2006 }
2007
2008 static ssize_t sony_pic_wwanpower_show(struct device *dev,
2009                 struct device_attribute *attr, char *buffer)
2010 {
2011         ssize_t count;
2012         mutex_lock(&spic_dev.lock);
2013         count = snprintf(buffer, PAGE_SIZE, "%d\n", spic_dev.wwan_power);
2014         mutex_unlock(&spic_dev.lock);
2015         return count;
2016 }
2017
2018 /* bluetooth subsystem power state */
2019 static void __sony_pic_set_bluetoothpower(u8 state)
2020 {
2021         state = !!state;
2022         if (spic_dev.bluetooth_power == state)
2023                 return;
2024         sony_pic_call2(0x96, state);
2025         sony_pic_call1(0x82);
2026         spic_dev.bluetooth_power = state;
2027 }
2028
2029 static ssize_t sony_pic_bluetoothpower_store(struct device *dev,
2030                 struct device_attribute *attr,
2031                 const char *buffer, size_t count)
2032 {
2033         unsigned long value;
2034         if (count > 31)
2035                 return -EINVAL;
2036
2037         value = simple_strtoul(buffer, NULL, 10);
2038         mutex_lock(&spic_dev.lock);
2039         __sony_pic_set_bluetoothpower(value);
2040         mutex_unlock(&spic_dev.lock);
2041
2042         return count;
2043 }
2044
2045 static ssize_t sony_pic_bluetoothpower_show(struct device *dev,
2046                 struct device_attribute *attr, char *buffer)
2047 {
2048         ssize_t count = 0;
2049         mutex_lock(&spic_dev.lock);
2050         count = snprintf(buffer, PAGE_SIZE, "%d\n", spic_dev.bluetooth_power);
2051         mutex_unlock(&spic_dev.lock);
2052         return count;
2053 }
2054
2055 /* fan speed */
2056 /* FAN0 information (reverse engineered from ACPI tables) */
2057 #define SONY_PIC_FAN0_STATUS    0x93
2058 static int sony_pic_set_fanspeed(unsigned long value)
2059 {
2060         return ec_write(SONY_PIC_FAN0_STATUS, value);
2061 }
2062
2063 static int sony_pic_get_fanspeed(u8 *value)
2064 {
2065         return ec_read(SONY_PIC_FAN0_STATUS, value);
2066 }
2067
2068 static ssize_t sony_pic_fanspeed_store(struct device *dev,
2069                 struct device_attribute *attr,
2070                 const char *buffer, size_t count)
2071 {
2072         unsigned long value;
2073         if (count > 31)
2074                 return -EINVAL;
2075
2076         value = simple_strtoul(buffer, NULL, 10);
2077         if (sony_pic_set_fanspeed(value))
2078                 return -EIO;
2079
2080         return count;
2081 }
2082
2083 static ssize_t sony_pic_fanspeed_show(struct device *dev,
2084                 struct device_attribute *attr, char *buffer)
2085 {
2086         u8 value = 0;
2087         if (sony_pic_get_fanspeed(&value))
2088                 return -EIO;
2089
2090         return snprintf(buffer, PAGE_SIZE, "%d\n", value);
2091 }
2092
2093 #define SPIC_ATTR(_name, _mode)                                 \
2094 struct device_attribute spic_attr_##_name = __ATTR(_name,       \
2095                 _mode, sony_pic_## _name ##_show,               \
2096                 sony_pic_## _name ##_store)
2097
2098 static SPIC_ATTR(bluetoothpower, 0644);
2099 static SPIC_ATTR(wwanpower, 0644);
2100 static SPIC_ATTR(fanspeed, 0644);
2101
2102 static struct attribute *spic_attributes[] = {
2103         &spic_attr_bluetoothpower.attr,
2104         &spic_attr_wwanpower.attr,
2105         &spic_attr_fanspeed.attr,
2106         NULL
2107 };
2108
2109 static struct attribute_group spic_attribute_group = {
2110         .attrs = spic_attributes
2111 };
2112
2113 /******** SONYPI compatibility **********/
2114 #ifdef CONFIG_SONYPI_COMPAT
2115
2116 /* battery / brightness / temperature  addresses */
2117 #define SONYPI_BAT_FLAGS        0x81
2118 #define SONYPI_LCD_LIGHT        0x96
2119 #define SONYPI_BAT1_PCTRM       0xa0
2120 #define SONYPI_BAT1_LEFT        0xa2
2121 #define SONYPI_BAT1_MAXRT       0xa4
2122 #define SONYPI_BAT2_PCTRM       0xa8
2123 #define SONYPI_BAT2_LEFT        0xaa
2124 #define SONYPI_BAT2_MAXRT       0xac
2125 #define SONYPI_BAT1_MAXTK       0xb0
2126 #define SONYPI_BAT1_FULL        0xb2
2127 #define SONYPI_BAT2_MAXTK       0xb8
2128 #define SONYPI_BAT2_FULL        0xba
2129 #define SONYPI_TEMP_STATUS      0xC1
2130
2131 struct sonypi_compat_s {
2132         struct fasync_struct    *fifo_async;
2133         struct kfifo            *fifo;
2134         spinlock_t              fifo_lock;
2135         wait_queue_head_t       fifo_proc_list;
2136         atomic_t                open_count;
2137 };
2138 static struct sonypi_compat_s sonypi_compat = {
2139         .open_count = ATOMIC_INIT(0),
2140 };
2141
2142 static int sonypi_misc_fasync(int fd, struct file *filp, int on)
2143 {
2144         return fasync_helper(fd, filp, on, &sonypi_compat.fifo_async);
2145 }
2146
2147 static int sonypi_misc_release(struct inode *inode, struct file *file)
2148 {
2149         atomic_dec(&sonypi_compat.open_count);
2150         return 0;
2151 }
2152
2153 static int sonypi_misc_open(struct inode *inode, struct file *file)
2154 {
2155         /* Flush input queue on first open */
2156         unsigned long flags;
2157
2158         spin_lock_irqsave(sonypi_compat.fifo->lock, flags);
2159
2160         if (atomic_inc_return(&sonypi_compat.open_count) == 1)
2161                 __kfifo_reset(sonypi_compat.fifo);
2162
2163         spin_unlock_irqrestore(sonypi_compat.fifo->lock, flags);
2164
2165         return 0;
2166 }
2167
2168 static ssize_t sonypi_misc_read(struct file *file, char __user *buf,
2169                                 size_t count, loff_t *pos)
2170 {
2171         ssize_t ret;
2172         unsigned char c;
2173
2174         if ((kfifo_len(sonypi_compat.fifo) == 0) &&
2175             (file->f_flags & O_NONBLOCK))
2176                 return -EAGAIN;
2177
2178         ret = wait_event_interruptible(sonypi_compat.fifo_proc_list,
2179                                        kfifo_len(sonypi_compat.fifo) != 0);
2180         if (ret)
2181                 return ret;
2182
2183         while (ret < count &&
2184                (kfifo_get(sonypi_compat.fifo, &c, sizeof(c)) == sizeof(c))) {
2185                 if (put_user(c, buf++))
2186                         return -EFAULT;
2187                 ret++;
2188         }
2189
2190         if (ret > 0) {
2191                 struct inode *inode = file->f_path.dentry->d_inode;
2192                 inode->i_atime = current_fs_time(inode->i_sb);
2193         }
2194
2195         return ret;
2196 }
2197
2198 static unsigned int sonypi_misc_poll(struct file *file, poll_table *wait)
2199 {
2200         poll_wait(file, &sonypi_compat.fifo_proc_list, wait);
2201         if (kfifo_len(sonypi_compat.fifo))
2202                 return POLLIN | POLLRDNORM;
2203         return 0;
2204 }
2205
2206 static int ec_read16(u8 addr, u16 *value)
2207 {
2208         u8 val_lb, val_hb;
2209         if (ec_read(addr, &val_lb))
2210                 return -1;
2211         if (ec_read(addr + 1, &val_hb))
2212                 return -1;
2213         *value = val_lb | (val_hb << 8);
2214         return 0;
2215 }
2216
2217 static long sonypi_misc_ioctl(struct file *fp, unsigned int cmd,
2218                                                         unsigned long arg)
2219 {
2220         int ret = 0;
2221         void __user *argp = (void __user *)arg;
2222         u8 val8;
2223         u16 val16;
2224         int value;
2225
2226         mutex_lock(&spic_dev.lock);
2227         switch (cmd) {
2228         case SONYPI_IOCGBRT:
2229                 if (sony_backlight_device == NULL) {
2230                         ret = -EIO;
2231                         break;
2232                 }
2233                 if (acpi_callgetfunc(sony_nc_acpi_handle, "GBRT", &value)) {
2234                         ret = -EIO;
2235                         break;
2236                 }
2237                 val8 = ((value & 0xff) - 1) << 5;
2238                 if (copy_to_user(argp, &val8, sizeof(val8)))
2239                                 ret = -EFAULT;
2240                 break;
2241         case SONYPI_IOCSBRT:
2242                 if (sony_backlight_device == NULL) {
2243                         ret = -EIO;
2244                         break;
2245                 }
2246                 if (copy_from_user(&val8, argp, sizeof(val8))) {
2247                         ret = -EFAULT;
2248                         break;
2249                 }
2250                 if (acpi_callsetfunc(sony_nc_acpi_handle, "SBRT",
2251                                 (val8 >> 5) + 1, NULL)) {
2252                         ret = -EIO;
2253                         break;
2254                 }
2255                 /* sync the backlight device status */
2256                 sony_backlight_device->props.brightness =
2257                     sony_backlight_get_brightness(sony_backlight_device);
2258                 break;
2259         case SONYPI_IOCGBAT1CAP:
2260                 if (ec_read16(SONYPI_BAT1_FULL, &val16)) {
2261                         ret = -EIO;
2262                         break;
2263                 }
2264                 if (copy_to_user(argp, &val16, sizeof(val16)))
2265                         ret = -EFAULT;
2266                 break;
2267         case SONYPI_IOCGBAT1REM:
2268                 if (ec_read16(SONYPI_BAT1_LEFT, &val16)) {
2269                         ret = -EIO;
2270                         break;
2271                 }
2272                 if (copy_to_user(argp, &val16, sizeof(val16)))
2273                         ret = -EFAULT;
2274                 break;
2275         case SONYPI_IOCGBAT2CAP:
2276                 if (ec_read16(SONYPI_BAT2_FULL, &val16)) {
2277                         ret = -EIO;
2278                         break;
2279                 }
2280                 if (copy_to_user(argp, &val16, sizeof(val16)))
2281                         ret = -EFAULT;
2282                 break;
2283         case SONYPI_IOCGBAT2REM:
2284                 if (ec_read16(SONYPI_BAT2_LEFT, &val16)) {
2285                         ret = -EIO;
2286                         break;
2287                 }
2288                 if (copy_to_user(argp, &val16, sizeof(val16)))
2289                         ret = -EFAULT;
2290                 break;
2291         case SONYPI_IOCGBATFLAGS:
2292                 if (ec_read(SONYPI_BAT_FLAGS, &val8)) {
2293                         ret = -EIO;
2294                         break;
2295                 }
2296                 val8 &= 0x07;
2297                 if (copy_to_user(argp, &val8, sizeof(val8)))
2298                         ret = -EFAULT;
2299                 break;
2300         case SONYPI_IOCGBLUE:
2301                 val8 = spic_dev.bluetooth_power;
2302                 if (copy_to_user(argp, &val8, sizeof(val8)))
2303                         ret = -EFAULT;
2304                 break;
2305         case SONYPI_IOCSBLUE:
2306                 if (copy_from_user(&val8, argp, sizeof(val8))) {
2307                         ret = -EFAULT;
2308                         break;
2309                 }
2310                 __sony_pic_set_bluetoothpower(val8);
2311                 break;
2312         /* FAN Controls */
2313         case SONYPI_IOCGFAN:
2314                 if (sony_pic_get_fanspeed(&val8)) {
2315                         ret = -EIO;
2316                         break;
2317                 }
2318                 if (copy_to_user(argp, &val8, sizeof(val8)))
2319                         ret = -EFAULT;
2320                 break;
2321         case SONYPI_IOCSFAN:
2322                 if (copy_from_user(&val8, argp, sizeof(val8))) {
2323                         ret = -EFAULT;
2324                         break;
2325                 }
2326                 if (sony_pic_set_fanspeed(val8))
2327                         ret = -EIO;
2328                 break;
2329         /* GET Temperature (useful under APM) */
2330         case SONYPI_IOCGTEMP:
2331                 if (ec_read(SONYPI_TEMP_STATUS, &val8)) {
2332                         ret = -EIO;
2333                         break;
2334                 }
2335                 if (copy_to_user(argp, &val8, sizeof(val8)))
2336                         ret = -EFAULT;
2337                 break;
2338         default:
2339                 ret = -EINVAL;
2340         }
2341         mutex_unlock(&spic_dev.lock);
2342         return ret;
2343 }
2344
2345 static const struct file_operations sonypi_misc_fops = {
2346         .owner          = THIS_MODULE,
2347         .read           = sonypi_misc_read,
2348         .poll           = sonypi_misc_poll,
2349         .open           = sonypi_misc_open,
2350         .release        = sonypi_misc_release,
2351         .fasync         = sonypi_misc_fasync,
2352         .unlocked_ioctl = sonypi_misc_ioctl,
2353 };
2354
2355 static struct miscdevice sonypi_misc_device = {
2356         .minor          = MISC_DYNAMIC_MINOR,
2357         .name           = "sonypi",
2358         .fops           = &sonypi_misc_fops,
2359 };
2360
2361 static void sonypi_compat_report_event(u8 event)
2362 {
2363         kfifo_put(sonypi_compat.fifo, (unsigned char *)&event, sizeof(event));
2364         kill_fasync(&sonypi_compat.fifo_async, SIGIO, POLL_IN);
2365         wake_up_interruptible(&sonypi_compat.fifo_proc_list);
2366 }
2367
2368 static int sonypi_compat_init(void)
2369 {
2370         int error;
2371
2372         spin_lock_init(&sonypi_compat.fifo_lock);
2373         sonypi_compat.fifo = kfifo_alloc(SONY_LAPTOP_BUF_SIZE, GFP_KERNEL,
2374                                          &sonypi_compat.fifo_lock);
2375         if (IS_ERR(sonypi_compat.fifo)) {
2376                 printk(KERN_ERR DRV_PFX "kfifo_alloc failed\n");
2377                 return PTR_ERR(sonypi_compat.fifo);
2378         }
2379
2380         init_waitqueue_head(&sonypi_compat.fifo_proc_list);
2381
2382         if (minor != -1)
2383                 sonypi_misc_device.minor = minor;
2384         error = misc_register(&sonypi_misc_device);
2385         if (error) {
2386                 printk(KERN_ERR DRV_PFX "misc_register failed\n");
2387                 goto err_free_kfifo;
2388         }
2389         if (minor == -1)
2390                 printk(KERN_INFO DRV_PFX "device allocated minor is %d\n",
2391                        sonypi_misc_device.minor);
2392
2393         return 0;
2394
2395 err_free_kfifo:
2396         kfifo_free(sonypi_compat.fifo);
2397         return error;
2398 }
2399
2400 static void sonypi_compat_exit(void)
2401 {
2402         misc_deregister(&sonypi_misc_device);
2403         kfifo_free(sonypi_compat.fifo);
2404 }
2405 #else
2406 static int sonypi_compat_init(void) { return 0; }
2407 static void sonypi_compat_exit(void) { }
2408 static void sonypi_compat_report_event(u8 event) { }
2409 #endif /* CONFIG_SONYPI_COMPAT */
2410
2411 /*
2412  * ACPI callbacks
2413  */
2414 static acpi_status
2415 sony_pic_read_possible_resource(struct acpi_resource *resource, void *context)
2416 {
2417         u32 i;
2418         struct sony_pic_dev *dev = (struct sony_pic_dev *)context;
2419
2420         switch (resource->type) {
2421         case ACPI_RESOURCE_TYPE_START_DEPENDENT:
2422                 {
2423                         /* start IO enumeration */
2424                         struct sony_pic_ioport *ioport = kzalloc(sizeof(*ioport), GFP_KERNEL);
2425                         if (!ioport)
2426                                 return AE_ERROR;
2427
2428                         list_add(&ioport->list, &dev->ioports);
2429                         return AE_OK;
2430                 }
2431
2432         case ACPI_RESOURCE_TYPE_END_DEPENDENT:
2433                 /* end IO enumeration */
2434                 return AE_OK;
2435
2436         case ACPI_RESOURCE_TYPE_IRQ:
2437                 {
2438                         struct acpi_resource_irq *p = &resource->data.irq;
2439                         struct sony_pic_irq *interrupt = NULL;
2440                         if (!p || !p->interrupt_count) {
2441                                 /*
2442                                  * IRQ descriptors may have no IRQ# bits set,
2443                                  * particularly those those w/ _STA disabled
2444                                  */
2445                                 dprintk("Blank IRQ resource\n");
2446                                 return AE_OK;
2447                         }
2448                         for (i = 0; i < p->interrupt_count; i++) {
2449                                 if (!p->interrupts[i]) {
2450                                         printk(KERN_WARNING DRV_PFX
2451                                                         "Invalid IRQ %d\n",
2452                                                         p->interrupts[i]);
2453                                         continue;
2454                                 }
2455                                 interrupt = kzalloc(sizeof(*interrupt),
2456                                                 GFP_KERNEL);
2457                                 if (!interrupt)
2458                                         return AE_ERROR;
2459
2460                                 list_add(&interrupt->list, &dev->interrupts);
2461                                 interrupt->irq.triggering = p->triggering;
2462                                 interrupt->irq.polarity = p->polarity;
2463                                 interrupt->irq.sharable = p->sharable;
2464                                 interrupt->irq.interrupt_count = 1;
2465                                 interrupt->irq.interrupts[0] = p->interrupts[i];
2466                         }
2467                         return AE_OK;
2468                 }
2469         case ACPI_RESOURCE_TYPE_IO:
2470                 {
2471                         struct acpi_resource_io *io = &resource->data.io;
2472                         struct sony_pic_ioport *ioport =
2473                                 list_first_entry(&dev->ioports, struct sony_pic_ioport, list);
2474                         if (!io) {
2475                                 dprintk("Blank IO resource\n");
2476                                 return AE_OK;
2477                         }
2478
2479                         if (!ioport->io1.minimum) {
2480                                 memcpy(&ioport->io1, io, sizeof(*io));
2481                                 dprintk("IO1 at 0x%.4x (0x%.2x)\n", ioport->io1.minimum,
2482                                                 ioport->io1.address_length);
2483                         }
2484                         else if (!ioport->io2.minimum) {
2485                                 memcpy(&ioport->io2, io, sizeof(*io));
2486                                 dprintk("IO2 at 0x%.4x (0x%.2x)\n", ioport->io2.minimum,
2487                                                 ioport->io2.address_length);
2488                         }
2489                         else {
2490                                 printk(KERN_ERR DRV_PFX "Unknown SPIC Type, more than 2 IO Ports\n");
2491                                 return AE_ERROR;
2492                         }
2493                         return AE_OK;
2494                 }
2495         default:
2496                 dprintk("Resource %d isn't an IRQ nor an IO port\n",
2497                                 resource->type);
2498
2499         case ACPI_RESOURCE_TYPE_END_TAG:
2500                 return AE_OK;
2501         }
2502         return AE_CTRL_TERMINATE;
2503 }
2504
2505 static int sony_pic_possible_resources(struct acpi_device *device)
2506 {
2507         int result = 0;
2508         acpi_status status = AE_OK;
2509
2510         if (!device)
2511                 return -EINVAL;
2512
2513         /* get device status */
2514         /* see acpi_pci_link_get_current acpi_pci_link_get_possible */
2515         dprintk("Evaluating _STA\n");
2516         result = acpi_bus_get_status(device);
2517         if (result) {
2518                 printk(KERN_WARNING DRV_PFX "Unable to read status\n");
2519                 goto end;
2520         }
2521
2522         if (!device->status.enabled)
2523                 dprintk("Device disabled\n");
2524         else
2525                 dprintk("Device enabled\n");
2526
2527         /*
2528          * Query and parse 'method'
2529          */
2530         dprintk("Evaluating %s\n", METHOD_NAME__PRS);
2531         status = acpi_walk_resources(device->handle, METHOD_NAME__PRS,
2532                         sony_pic_read_possible_resource, &spic_dev);
2533         if (ACPI_FAILURE(status)) {
2534                 printk(KERN_WARNING DRV_PFX
2535                                 "Failure evaluating %s\n",
2536                                 METHOD_NAME__PRS);
2537                 result = -ENODEV;
2538         }
2539 end:
2540         return result;
2541 }
2542
2543 /*
2544  *  Disable the spic device by calling its _DIS method
2545  */
2546 static int sony_pic_disable(struct acpi_device *device)
2547 {
2548         acpi_status ret = acpi_evaluate_object(device->handle, "_DIS", NULL,
2549                                                NULL);
2550
2551         if (ACPI_FAILURE(ret) && ret != AE_NOT_FOUND)
2552                 return -ENXIO;
2553
2554         dprintk("Device disabled\n");
2555         return 0;
2556 }
2557
2558
2559 /*
2560  *  Based on drivers/acpi/pci_link.c:acpi_pci_link_set
2561  *
2562  *  Call _SRS to set current resources
2563  */
2564 static int sony_pic_enable(struct acpi_device *device,
2565                 struct sony_pic_ioport *ioport, struct sony_pic_irq *irq)
2566 {
2567         acpi_status status;
2568         int result = 0;
2569         /* Type 1 resource layout is:
2570          *    IO
2571          *    IO
2572          *    IRQNoFlags
2573          *    End
2574          *
2575          * Type 2 and 3 resource layout is:
2576          *    IO
2577          *    IRQNoFlags
2578          *    End
2579          */
2580         struct {
2581                 struct acpi_resource res1;
2582                 struct acpi_resource res2;
2583                 struct acpi_resource res3;
2584                 struct acpi_resource res4;
2585         } *resource;
2586         struct acpi_buffer buffer = { 0, NULL };
2587
2588         if (!ioport || !irq)
2589                 return -EINVAL;
2590
2591         /* init acpi_buffer */
2592         resource = kzalloc(sizeof(*resource) + 1, GFP_KERNEL);
2593         if (!resource)
2594                 return -ENOMEM;
2595
2596         buffer.length = sizeof(*resource) + 1;
2597         buffer.pointer = resource;
2598
2599         /* setup Type 1 resources */
2600         if (spic_dev.control->model == SONYPI_DEVICE_TYPE1) {
2601
2602                 /* setup io resources */
2603                 resource->res1.type = ACPI_RESOURCE_TYPE_IO;
2604                 resource->res1.length = sizeof(struct acpi_resource);
2605                 memcpy(&resource->res1.data.io, &ioport->io1,
2606                                 sizeof(struct acpi_resource_io));
2607
2608                 resource->res2.type = ACPI_RESOURCE_TYPE_IO;
2609                 resource->res2.length = sizeof(struct acpi_resource);
2610                 memcpy(&resource->res2.data.io, &ioport->io2,
2611                                 sizeof(struct acpi_resource_io));
2612
2613                 /* setup irq resource */
2614                 resource->res3.type = ACPI_RESOURCE_TYPE_IRQ;
2615                 resource->res3.length = sizeof(struct acpi_resource);
2616                 memcpy(&resource->res3.data.irq, &irq->irq,
2617                                 sizeof(struct acpi_resource_irq));
2618                 /* we requested a shared irq */
2619                 resource->res3.data.irq.sharable = ACPI_SHARED;
2620
2621                 resource->res4.type = ACPI_RESOURCE_TYPE_END_TAG;
2622
2623         }
2624         /* setup Type 2/3 resources */
2625         else {
2626                 /* setup io resource */
2627                 resource->res1.type = ACPI_RESOURCE_TYPE_IO;
2628                 resource->res1.length = sizeof(struct acpi_resource);
2629                 memcpy(&resource->res1.data.io, &ioport->io1,
2630                                 sizeof(struct acpi_resource_io));
2631
2632                 /* setup irq resource */
2633                 resource->res2.type = ACPI_RESOURCE_TYPE_IRQ;
2634                 resource->res2.length = sizeof(struct acpi_resource);
2635                 memcpy(&resource->res2.data.irq, &irq->irq,
2636                                 sizeof(struct acpi_resource_irq));
2637                 /* we requested a shared irq */
2638                 resource->res2.data.irq.sharable = ACPI_SHARED;
2639
2640                 resource->res3.type = ACPI_RESOURCE_TYPE_END_TAG;
2641         }
2642
2643         /* Attempt to set the resource */
2644         dprintk("Evaluating _SRS\n");
2645         status = acpi_set_current_resources(device->handle, &buffer);
2646
2647         /* check for total failure */
2648         if (ACPI_FAILURE(status)) {
2649                 printk(KERN_ERR DRV_PFX "Error evaluating _SRS\n");
2650                 result = -ENODEV;
2651                 goto end;
2652         }
2653
2654         /* Necessary device initializations calls (from sonypi) */
2655         sony_pic_call1(0x82);
2656         sony_pic_call2(0x81, 0xff);
2657         sony_pic_call1(compat ? 0x92 : 0x82);
2658
2659 end:
2660         kfree(resource);
2661         return result;
2662 }
2663
2664 /*****************
2665  *
2666  * ISR: some event is available
2667  *
2668  *****************/
2669 static irqreturn_t sony_pic_irq(int irq, void *dev_id)
2670 {
2671         int i, j;
2672         u8 ev = 0;
2673         u8 data_mask = 0;
2674         u8 device_event = 0;
2675
2676         struct sony_pic_dev *dev = (struct sony_pic_dev *) dev_id;
2677
2678         ev = inb_p(dev->cur_ioport->io1.minimum);
2679         if (dev->cur_ioport->io2.minimum)
2680                 data_mask = inb_p(dev->cur_ioport->io2.minimum);
2681         else
2682                 data_mask = inb_p(dev->cur_ioport->io1.minimum +
2683                                 dev->control->evport_offset);
2684
2685         dprintk("event ([%.2x] [%.2x]) at port 0x%.4x(+0x%.2x)\n",
2686                         ev, data_mask, dev->cur_ioport->io1.minimum,
2687                         dev->control->evport_offset);
2688
2689         if (ev == 0x00 || ev == 0xff)
2690                 return IRQ_HANDLED;
2691
2692         for (i = 0; dev->control->event_types[i].mask; i++) {
2693
2694                 if ((data_mask & dev->control->event_types[i].data) !=
2695                     dev->control->event_types[i].data)
2696                         continue;
2697
2698                 if (!(mask & dev->control->event_types[i].mask))
2699                         continue;
2700
2701                 for (j = 0; dev->control->event_types[i].events[j].event; j++) {
2702                         if (ev == dev->control->event_types[i].events[j].data) {
2703                                 device_event =
2704                                         dev->control->
2705                                                 event_types[i].events[j].event;
2706                                 goto found;
2707                         }
2708                 }
2709         }
2710         /* Still not able to decode the event try to pass
2711          * it over to the minidriver
2712          */
2713         if (dev->control->handle_irq &&
2714                         dev->control->handle_irq(data_mask, ev) == 0)
2715                 return IRQ_HANDLED;
2716
2717         dprintk("unknown event ([%.2x] [%.2x]) at port 0x%.4x(+0x%.2x)\n",
2718                         ev, data_mask, dev->cur_ioport->io1.minimum,
2719                         dev->control->evport_offset);
2720         return IRQ_HANDLED;
2721
2722 found:
2723         sony_laptop_report_input_event(device_event);
2724         acpi_bus_generate_proc_event(dev->acpi_dev, 1, device_event);
2725         sonypi_compat_report_event(device_event);
2726
2727         return IRQ_HANDLED;
2728 }
2729
2730 /*****************
2731  *
2732  *  ACPI driver
2733  *
2734  *****************/
2735 static int sony_pic_remove(struct acpi_device *device, int type)
2736 {
2737         struct sony_pic_ioport *io, *tmp_io;
2738         struct sony_pic_irq *irq, *tmp_irq;
2739
2740         if (sony_pic_disable(device)) {
2741                 printk(KERN_ERR DRV_PFX "Couldn't disable device.\n");
2742                 return -ENXIO;
2743         }
2744
2745         free_irq(spic_dev.cur_irq->irq.interrupts[0], &spic_dev);
2746         release_region(spic_dev.cur_ioport->io1.minimum,
2747                         spic_dev.cur_ioport->io1.address_length);
2748         if (spic_dev.cur_ioport->io2.minimum)
2749                 release_region(spic_dev.cur_ioport->io2.minimum,
2750                                 spic_dev.cur_ioport->io2.address_length);
2751
2752         sonypi_compat_exit();
2753
2754         sony_laptop_remove_input();
2755
2756         /* pf attrs */
2757         sysfs_remove_group(&sony_pf_device->dev.kobj, &spic_attribute_group);
2758         sony_pf_remove();
2759
2760         list_for_each_entry_safe(io, tmp_io, &spic_dev.ioports, list) {
2761                 list_del(&io->list);
2762                 kfree(io);
2763         }
2764         list_for_each_entry_safe(irq, tmp_irq, &spic_dev.interrupts, list) {
2765                 list_del(&irq->list);
2766                 kfree(irq);
2767         }
2768         spic_dev.cur_ioport = NULL;
2769         spic_dev.cur_irq = NULL;
2770
2771         dprintk(SONY_PIC_DRIVER_NAME " removed.\n");
2772         return 0;
2773 }
2774
2775 static int sony_pic_add(struct acpi_device *device)
2776 {
2777         int result;
2778         struct sony_pic_ioport *io, *tmp_io;
2779         struct sony_pic_irq *irq, *tmp_irq;
2780
2781         printk(KERN_INFO DRV_PFX "%s v%s.\n",
2782                 SONY_PIC_DRIVER_NAME, SONY_LAPTOP_DRIVER_VERSION);
2783
2784         spic_dev.acpi_dev = device;
2785         strcpy(acpi_device_class(device), "sony/hotkey");
2786         sony_pic_detect_device_type(&spic_dev);
2787         mutex_init(&spic_dev.lock);
2788
2789         /* read _PRS resources */
2790         result = sony_pic_possible_resources(device);
2791         if (result) {
2792                 printk(KERN_ERR DRV_PFX
2793                                 "Unable to read possible resources.\n");
2794                 goto err_free_resources;
2795         }
2796
2797         /* setup input devices and helper fifo */
2798         result = sony_laptop_setup_input(device);
2799         if (result) {
2800                 printk(KERN_ERR DRV_PFX
2801                                 "Unable to create input devices.\n");
2802                 goto err_free_resources;
2803         }
2804
2805         if (sonypi_compat_init())
2806                 goto err_remove_input;
2807
2808         /* request io port */
2809         list_for_each_entry_reverse(io, &spic_dev.ioports, list) {
2810                 if (request_region(io->io1.minimum, io->io1.address_length,
2811                                         "Sony Programable I/O Device")) {
2812                         dprintk("I/O port1: 0x%.4x (0x%.4x) + 0x%.2x\n",
2813                                         io->io1.minimum, io->io1.maximum,
2814                                         io->io1.address_length);
2815                         /* Type 1 have 2 ioports */
2816                         if (io->io2.minimum) {
2817                                 if (request_region(io->io2.minimum,
2818                                                 io->io2.address_length,
2819                                                 "Sony Programable I/O Device")) {
2820                                         dprintk("I/O port2: 0x%.4x (0x%.4x) + 0x%.2x\n",
2821                                                         io->io2.minimum, io->io2.maximum,
2822                                                         io->io2.address_length);
2823                                         spic_dev.cur_ioport = io;
2824                                         break;
2825                                 }
2826                                 else {
2827                                         dprintk("Unable to get I/O port2: "
2828                                                         "0x%.4x (0x%.4x) + 0x%.2x\n",
2829                                                         io->io2.minimum, io->io2.maximum,
2830                                                         io->io2.address_length);
2831                                         release_region(io->io1.minimum,
2832                                                         io->io1.address_length);
2833                                 }
2834                         }
2835                         else {
2836                                 spic_dev.cur_ioport = io;
2837                                 break;
2838                         }
2839                 }
2840         }
2841         if (!spic_dev.cur_ioport) {
2842                 printk(KERN_ERR DRV_PFX "Failed to request_region.\n");
2843                 result = -ENODEV;
2844                 goto err_remove_compat;
2845         }
2846
2847         /* request IRQ */
2848         list_for_each_entry_reverse(irq, &spic_dev.interrupts, list) {
2849                 if (!request_irq(irq->irq.interrupts[0], sony_pic_irq,
2850                                         IRQF_SHARED, "sony-laptop", &spic_dev)) {
2851                         dprintk("IRQ: %d - triggering: %d - "
2852                                         "polarity: %d - shr: %d\n",
2853                                         irq->irq.interrupts[0],
2854                                         irq->irq.triggering,
2855                                         irq->irq.polarity,
2856                                         irq->irq.sharable);
2857                         spic_dev.cur_irq = irq;
2858                         break;
2859                 }
2860         }
2861         if (!spic_dev.cur_irq) {
2862                 printk(KERN_ERR DRV_PFX "Failed to request_irq.\n");
2863                 result = -ENODEV;
2864                 goto err_release_region;
2865         }
2866
2867         /* set resource status _SRS */
2868         result = sony_pic_enable(device, spic_dev.cur_ioport, spic_dev.cur_irq);
2869         if (result) {
2870                 printk(KERN_ERR DRV_PFX "Couldn't enable device.\n");
2871                 goto err_free_irq;
2872         }
2873
2874         spic_dev.bluetooth_power = -1;
2875         /* create device attributes */
2876         result = sony_pf_add();
2877         if (result)
2878                 goto err_disable_device;
2879
2880         result = sysfs_create_group(&sony_pf_device->dev.kobj, &spic_attribute_group);
2881         if (result)
2882                 goto err_remove_pf;
2883
2884         return 0;
2885
2886 err_remove_pf:
2887         sony_pf_remove();
2888
2889 err_disable_device:
2890         sony_pic_disable(device);
2891
2892 err_free_irq:
2893         free_irq(spic_dev.cur_irq->irq.interrupts[0], &spic_dev);
2894
2895 err_release_region:
2896         release_region(spic_dev.cur_ioport->io1.minimum,
2897                         spic_dev.cur_ioport->io1.address_length);
2898         if (spic_dev.cur_ioport->io2.minimum)
2899                 release_region(spic_dev.cur_ioport->io2.minimum,
2900                                 spic_dev.cur_ioport->io2.address_length);
2901
2902 err_remove_compat:
2903         sonypi_compat_exit();
2904
2905 err_remove_input:
2906         sony_laptop_remove_input();
2907
2908 err_free_resources:
2909         list_for_each_entry_safe(io, tmp_io, &spic_dev.ioports, list) {
2910                 list_del(&io->list);
2911                 kfree(io);
2912         }
2913         list_for_each_entry_safe(irq, tmp_irq, &spic_dev.interrupts, list) {
2914                 list_del(&irq->list);
2915                 kfree(irq);
2916         }
2917         spic_dev.cur_ioport = NULL;
2918         spic_dev.cur_irq = NULL;
2919
2920         return result;
2921 }
2922
2923 static int sony_pic_suspend(struct acpi_device *device, pm_message_t state)
2924 {
2925         if (sony_pic_disable(device))
2926                 return -ENXIO;
2927         return 0;
2928 }
2929
2930 static int sony_pic_resume(struct acpi_device *device)
2931 {
2932         sony_pic_enable(device, spic_dev.cur_ioport, spic_dev.cur_irq);
2933         return 0;
2934 }
2935
2936 static const struct acpi_device_id sony_pic_device_ids[] = {
2937         {SONY_PIC_HID, 0},
2938         {"", 0},
2939 };
2940
2941 static struct acpi_driver sony_pic_driver = {
2942         .name = SONY_PIC_DRIVER_NAME,
2943         .class = SONY_PIC_CLASS,
2944         .ids = sony_pic_device_ids,
2945         .owner = THIS_MODULE,
2946         .ops = {
2947                 .add = sony_pic_add,
2948                 .remove = sony_pic_remove,
2949                 .suspend = sony_pic_suspend,
2950                 .resume = sony_pic_resume,
2951                 },
2952 };
2953
2954 static struct dmi_system_id __initdata sonypi_dmi_table[] = {
2955         {
2956                 .ident = "Sony Vaio",
2957                 .matches = {
2958                         DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
2959                         DMI_MATCH(DMI_PRODUCT_NAME, "PCG-"),
2960                 },
2961         },
2962         {
2963                 .ident = "Sony Vaio",
2964                 .matches = {
2965                         DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
2966                         DMI_MATCH(DMI_PRODUCT_NAME, "VGN-"),
2967                 },
2968         },
2969         { }
2970 };
2971
2972 static int __init sony_laptop_init(void)
2973 {
2974         int result;
2975
2976         if (!no_spic && dmi_check_system(sonypi_dmi_table)) {
2977                 result = acpi_bus_register_driver(&sony_pic_driver);
2978                 if (result) {
2979                         printk(KERN_ERR DRV_PFX
2980                                         "Unable to register SPIC driver.");
2981                         goto out;
2982                 }
2983         }
2984
2985         result = acpi_bus_register_driver(&sony_nc_driver);
2986         if (result) {
2987                 printk(KERN_ERR DRV_PFX "Unable to register SNC driver.");
2988                 goto out_unregister_pic;
2989         }
2990
2991         return 0;
2992
2993 out_unregister_pic:
2994         if (!no_spic)
2995                 acpi_bus_unregister_driver(&sony_pic_driver);
2996 out:
2997         return result;
2998 }
2999
3000 static void __exit sony_laptop_exit(void)
3001 {
3002         acpi_bus_unregister_driver(&sony_nc_driver);
3003         if (!no_spic)
3004                 acpi_bus_unregister_driver(&sony_pic_driver);
3005 }
3006
3007 module_init(sony_laptop_init);
3008 module_exit(sony_laptop_exit);