1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * ACPI Sony Notebook Control Driver (SNC and SPIC)
5 * Copyright (C) 2004-2005 Stelian Pop <stelian@popies.net>
6 * Copyright (C) 2007-2009 Mattia Dongili <malattia@linux.it>
8 * Parts of this driver inspired from asus_acpi.c and ibm_acpi.c
9 * which are copyrighted by their respective authors.
11 * The SNY6001 driver part is based on the sonypi driver which includes
14 * Copyright (C) 2001-2005 Stelian Pop <stelian@popies.net>
16 * Copyright (C) 2005 Narayanan R S <nars@kadamba.org>
18 * Copyright (C) 2001-2002 AlcĂ´ve <www.alcove.com>
20 * Copyright (C) 2001 Michael Ashley <m.ashley@unsw.edu.au>
22 * Copyright (C) 2001 Junichi Morita <jun1m@mars.dti.ne.jp>
24 * Copyright (C) 2000 Takaya Kinjo <t-kinjo@tc4.so-net.ne.jp>
26 * Copyright (C) 2000 Andrew Tridgell <tridge@valinux.com>
28 * Earlier work by Werner Almesberger, Paul `Rusty' Russell and Paul Mackerras.
31 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
33 #include <linux/kernel.h>
34 #include <linux/module.h>
35 #include <linux/moduleparam.h>
36 #include <linux/init.h>
37 #include <linux/types.h>
38 #include <linux/backlight.h>
39 #include <linux/platform_device.h>
40 #include <linux/err.h>
41 #include <linux/dmi.h>
42 #include <linux/pci.h>
43 #include <linux/interrupt.h>
44 #include <linux/delay.h>
45 #include <linux/input.h>
46 #include <linux/kfifo.h>
47 #include <linux/workqueue.h>
48 #include <linux/acpi.h>
49 #include <linux/slab.h>
50 #include <linux/sonypi.h>
51 #include <linux/sony-laptop.h>
52 #include <linux/rfkill.h>
53 #ifdef CONFIG_SONYPI_COMPAT
54 #include <linux/poll.h>
55 #include <linux/miscdevice.h>
57 #include <linux/uaccess.h>
58 #include <acpi/video.h>
60 #define dprintk(fmt, ...) \
63 pr_warn(fmt, ##__VA_ARGS__); \
66 #define SONY_NC_CLASS "sony-nc"
67 #define SONY_NC_HID "SNY5001"
68 #define SONY_NC_DRIVER_NAME "Sony Notebook Control Driver"
70 #define SONY_PIC_CLASS "sony-pic"
71 #define SONY_PIC_HID "SNY6001"
72 #define SONY_PIC_DRIVER_NAME "Sony Programmable IO Control Driver"
74 MODULE_AUTHOR("Stelian Pop, Mattia Dongili");
75 MODULE_DESCRIPTION("Sony laptop extras driver (SPIC and SNC ACPI device)");
76 MODULE_LICENSE("GPL");
79 module_param(debug
, int, 0);
80 MODULE_PARM_DESC(debug
, "set this to 1 (and RTFM) if you want to help "
81 "the development of this driver");
83 static int no_spic
; /* = 0 */
84 module_param(no_spic
, int, 0444);
85 MODULE_PARM_DESC(no_spic
,
86 "set this if you don't want to enable the SPIC device");
88 static int compat
; /* = 0 */
89 module_param(compat
, int, 0444);
90 MODULE_PARM_DESC(compat
,
91 "set this if you want to enable backward compatibility mode");
93 static unsigned long mask
= 0xffffffff;
94 module_param(mask
, ulong
, 0644);
95 MODULE_PARM_DESC(mask
,
96 "set this to the mask of event you want to enable (see doc)");
98 static int camera
; /* = 0 */
99 module_param(camera
, int, 0444);
100 MODULE_PARM_DESC(camera
,
101 "set this to 1 to enable Motion Eye camera controls "
102 "(only use it if you have a C1VE or C1VN model)");
104 #ifdef CONFIG_SONYPI_COMPAT
105 static int minor
= -1;
106 module_param(minor
, int, 0);
107 MODULE_PARM_DESC(minor
,
108 "minor number of the misc device for the SPIC compatibility code, "
109 "default is -1 (automatic)");
112 static int kbd_backlight
= -1;
113 module_param(kbd_backlight
, int, 0444);
114 MODULE_PARM_DESC(kbd_backlight
,
115 "set this to 0 to disable keyboard backlight, "
116 "1 to enable it with automatic control and 2 to have it always "
117 "on (default: no change from current value)");
119 static int kbd_backlight_timeout
= -1;
120 module_param(kbd_backlight_timeout
, int, 0444);
121 MODULE_PARM_DESC(kbd_backlight_timeout
,
122 "meaningful values vary from 0 to 3 and their meaning depends "
123 "on the model (default: no change from current value)");
125 #ifdef CONFIG_PM_SLEEP
126 static void sony_nc_thermal_resume(void);
128 static int sony_nc_kbd_backlight_setup(struct platform_device
*pd
,
129 unsigned int handle
);
130 static void sony_nc_kbd_backlight_cleanup(struct platform_device
*pd
,
131 unsigned int handle
);
133 static int sony_nc_battery_care_setup(struct platform_device
*pd
,
134 unsigned int handle
);
135 static void sony_nc_battery_care_cleanup(struct platform_device
*pd
);
137 static int sony_nc_thermal_setup(struct platform_device
*pd
);
138 static void sony_nc_thermal_cleanup(struct platform_device
*pd
);
140 static int sony_nc_lid_resume_setup(struct platform_device
*pd
,
141 unsigned int handle
);
142 static void sony_nc_lid_resume_cleanup(struct platform_device
*pd
);
144 static int sony_nc_gfx_switch_setup(struct platform_device
*pd
,
145 unsigned int handle
);
146 static void sony_nc_gfx_switch_cleanup(struct platform_device
*pd
);
147 static int __sony_nc_gfx_switch_status_get(void);
149 static int sony_nc_highspeed_charging_setup(struct platform_device
*pd
);
150 static void sony_nc_highspeed_charging_cleanup(struct platform_device
*pd
);
152 static int sony_nc_lowbatt_setup(struct platform_device
*pd
);
153 static void sony_nc_lowbatt_cleanup(struct platform_device
*pd
);
155 static int sony_nc_fanspeed_setup(struct platform_device
*pd
);
156 static void sony_nc_fanspeed_cleanup(struct platform_device
*pd
);
158 static int sony_nc_usb_charge_setup(struct platform_device
*pd
);
159 static void sony_nc_usb_charge_cleanup(struct platform_device
*pd
);
161 static int sony_nc_panelid_setup(struct platform_device
*pd
);
162 static void sony_nc_panelid_cleanup(struct platform_device
*pd
);
164 static int sony_nc_smart_conn_setup(struct platform_device
*pd
);
165 static void sony_nc_smart_conn_cleanup(struct platform_device
*pd
);
167 static int sony_nc_touchpad_setup(struct platform_device
*pd
,
168 unsigned int handle
);
169 static void sony_nc_touchpad_cleanup(struct platform_device
*pd
);
171 enum sony_nc_rfkill
{
179 static int sony_rfkill_handle
;
180 static struct rfkill
*sony_rfkill_devices
[N_SONY_RFKILL
];
181 static int sony_rfkill_address
[N_SONY_RFKILL
] = {0x300, 0x500, 0x700, 0x900};
182 static int sony_nc_rfkill_setup(struct acpi_device
*device
,
183 unsigned int handle
);
184 static void sony_nc_rfkill_cleanup(void);
185 static void sony_nc_rfkill_update(void);
187 /*********** Input Devices ***********/
189 #define SONY_LAPTOP_BUF_SIZE 128
190 struct sony_laptop_input_s
{
192 struct input_dev
*jog_dev
;
193 struct input_dev
*key_dev
;
195 spinlock_t fifo_lock
;
196 struct timer_list release_key_timer
;
199 static struct sony_laptop_input_s sony_laptop_input
= {
200 .users
= ATOMIC_INIT(0),
203 struct sony_laptop_keypress
{
204 struct input_dev
*dev
;
208 /* Correspondance table between sonypi events
209 * and input layer indexes in the keymap
211 static const int sony_laptop_input_index
[] = {
213 -1, /* 1 SONYPI_EVENT_JOGDIAL_DOWN */
214 -1, /* 2 SONYPI_EVENT_JOGDIAL_UP */
215 -1, /* 3 SONYPI_EVENT_JOGDIAL_DOWN_PRESSED */
216 -1, /* 4 SONYPI_EVENT_JOGDIAL_UP_PRESSED */
217 -1, /* 5 SONYPI_EVENT_JOGDIAL_PRESSED */
218 -1, /* 6 SONYPI_EVENT_JOGDIAL_RELEASED */
219 0, /* 7 SONYPI_EVENT_CAPTURE_PRESSED */
220 1, /* 8 SONYPI_EVENT_CAPTURE_RELEASED */
221 2, /* 9 SONYPI_EVENT_CAPTURE_PARTIALPRESSED */
222 3, /* 10 SONYPI_EVENT_CAPTURE_PARTIALRELEASED */
223 4, /* 11 SONYPI_EVENT_FNKEY_ESC */
224 5, /* 12 SONYPI_EVENT_FNKEY_F1 */
225 6, /* 13 SONYPI_EVENT_FNKEY_F2 */
226 7, /* 14 SONYPI_EVENT_FNKEY_F3 */
227 8, /* 15 SONYPI_EVENT_FNKEY_F4 */
228 9, /* 16 SONYPI_EVENT_FNKEY_F5 */
229 10, /* 17 SONYPI_EVENT_FNKEY_F6 */
230 11, /* 18 SONYPI_EVENT_FNKEY_F7 */
231 12, /* 19 SONYPI_EVENT_FNKEY_F8 */
232 13, /* 20 SONYPI_EVENT_FNKEY_F9 */
233 14, /* 21 SONYPI_EVENT_FNKEY_F10 */
234 15, /* 22 SONYPI_EVENT_FNKEY_F11 */
235 16, /* 23 SONYPI_EVENT_FNKEY_F12 */
236 17, /* 24 SONYPI_EVENT_FNKEY_1 */
237 18, /* 25 SONYPI_EVENT_FNKEY_2 */
238 19, /* 26 SONYPI_EVENT_FNKEY_D */
239 20, /* 27 SONYPI_EVENT_FNKEY_E */
240 21, /* 28 SONYPI_EVENT_FNKEY_F */
241 22, /* 29 SONYPI_EVENT_FNKEY_S */
242 23, /* 30 SONYPI_EVENT_FNKEY_B */
243 24, /* 31 SONYPI_EVENT_BLUETOOTH_PRESSED */
244 25, /* 32 SONYPI_EVENT_PKEY_P1 */
245 26, /* 33 SONYPI_EVENT_PKEY_P2 */
246 27, /* 34 SONYPI_EVENT_PKEY_P3 */
247 28, /* 35 SONYPI_EVENT_BACK_PRESSED */
248 -1, /* 36 SONYPI_EVENT_LID_CLOSED */
249 -1, /* 37 SONYPI_EVENT_LID_OPENED */
250 29, /* 38 SONYPI_EVENT_BLUETOOTH_ON */
251 30, /* 39 SONYPI_EVENT_BLUETOOTH_OFF */
252 31, /* 40 SONYPI_EVENT_HELP_PRESSED */
253 32, /* 41 SONYPI_EVENT_FNKEY_ONLY */
254 33, /* 42 SONYPI_EVENT_JOGDIAL_FAST_DOWN */
255 34, /* 43 SONYPI_EVENT_JOGDIAL_FAST_UP */
256 35, /* 44 SONYPI_EVENT_JOGDIAL_FAST_DOWN_PRESSED */
257 36, /* 45 SONYPI_EVENT_JOGDIAL_FAST_UP_PRESSED */
258 37, /* 46 SONYPI_EVENT_JOGDIAL_VFAST_DOWN */
259 38, /* 47 SONYPI_EVENT_JOGDIAL_VFAST_UP */
260 39, /* 48 SONYPI_EVENT_JOGDIAL_VFAST_DOWN_PRESSED */
261 40, /* 49 SONYPI_EVENT_JOGDIAL_VFAST_UP_PRESSED */
262 41, /* 50 SONYPI_EVENT_ZOOM_PRESSED */
263 42, /* 51 SONYPI_EVENT_THUMBPHRASE_PRESSED */
264 43, /* 52 SONYPI_EVENT_MEYE_FACE */
265 44, /* 53 SONYPI_EVENT_MEYE_OPPOSITE */
266 45, /* 54 SONYPI_EVENT_MEMORYSTICK_INSERT */
267 46, /* 55 SONYPI_EVENT_MEMORYSTICK_EJECT */
268 -1, /* 56 SONYPI_EVENT_ANYBUTTON_RELEASED */
269 -1, /* 57 SONYPI_EVENT_BATTERY_INSERT */
270 -1, /* 58 SONYPI_EVENT_BATTERY_REMOVE */
271 -1, /* 59 SONYPI_EVENT_FNKEY_RELEASED */
272 47, /* 60 SONYPI_EVENT_WIRELESS_ON */
273 48, /* 61 SONYPI_EVENT_WIRELESS_OFF */
274 49, /* 62 SONYPI_EVENT_ZOOM_IN_PRESSED */
275 50, /* 63 SONYPI_EVENT_ZOOM_OUT_PRESSED */
276 51, /* 64 SONYPI_EVENT_CD_EJECT_PRESSED */
277 52, /* 65 SONYPI_EVENT_MODEKEY_PRESSED */
278 53, /* 66 SONYPI_EVENT_PKEY_P4 */
279 54, /* 67 SONYPI_EVENT_PKEY_P5 */
280 55, /* 68 SONYPI_EVENT_SETTINGKEY_PRESSED */
281 56, /* 69 SONYPI_EVENT_VOLUME_INC_PRESSED */
282 57, /* 70 SONYPI_EVENT_VOLUME_DEC_PRESSED */
283 -1, /* 71 SONYPI_EVENT_BRIGHTNESS_PRESSED */
284 58, /* 72 SONYPI_EVENT_MEDIA_PRESSED */
285 59, /* 72 SONYPI_EVENT_VENDOR_PRESSED */
288 static int sony_laptop_input_keycode_map
[] = {
289 KEY_CAMERA
, /* 0 SONYPI_EVENT_CAPTURE_PRESSED */
290 KEY_RESERVED
, /* 1 SONYPI_EVENT_CAPTURE_RELEASED */
291 KEY_RESERVED
, /* 2 SONYPI_EVENT_CAPTURE_PARTIALPRESSED */
292 KEY_RESERVED
, /* 3 SONYPI_EVENT_CAPTURE_PARTIALRELEASED */
293 KEY_FN_ESC
, /* 4 SONYPI_EVENT_FNKEY_ESC */
294 KEY_FN_F1
, /* 5 SONYPI_EVENT_FNKEY_F1 */
295 KEY_FN_F2
, /* 6 SONYPI_EVENT_FNKEY_F2 */
296 KEY_FN_F3
, /* 7 SONYPI_EVENT_FNKEY_F3 */
297 KEY_FN_F4
, /* 8 SONYPI_EVENT_FNKEY_F4 */
298 KEY_FN_F5
, /* 9 SONYPI_EVENT_FNKEY_F5 */
299 KEY_FN_F6
, /* 10 SONYPI_EVENT_FNKEY_F6 */
300 KEY_FN_F7
, /* 11 SONYPI_EVENT_FNKEY_F7 */
301 KEY_FN_F8
, /* 12 SONYPI_EVENT_FNKEY_F8 */
302 KEY_FN_F9
, /* 13 SONYPI_EVENT_FNKEY_F9 */
303 KEY_FN_F10
, /* 14 SONYPI_EVENT_FNKEY_F10 */
304 KEY_FN_F11
, /* 15 SONYPI_EVENT_FNKEY_F11 */
305 KEY_FN_F12
, /* 16 SONYPI_EVENT_FNKEY_F12 */
306 KEY_FN_1
, /* 17 SONYPI_EVENT_FNKEY_1 */
307 KEY_FN_2
, /* 18 SONYPI_EVENT_FNKEY_2 */
308 KEY_FN_D
, /* 19 SONYPI_EVENT_FNKEY_D */
309 KEY_FN_E
, /* 20 SONYPI_EVENT_FNKEY_E */
310 KEY_FN_F
, /* 21 SONYPI_EVENT_FNKEY_F */
311 KEY_FN_S
, /* 22 SONYPI_EVENT_FNKEY_S */
312 KEY_FN_B
, /* 23 SONYPI_EVENT_FNKEY_B */
313 KEY_BLUETOOTH
, /* 24 SONYPI_EVENT_BLUETOOTH_PRESSED */
314 KEY_PROG1
, /* 25 SONYPI_EVENT_PKEY_P1 */
315 KEY_PROG2
, /* 26 SONYPI_EVENT_PKEY_P2 */
316 KEY_PROG3
, /* 27 SONYPI_EVENT_PKEY_P3 */
317 KEY_BACK
, /* 28 SONYPI_EVENT_BACK_PRESSED */
318 KEY_BLUETOOTH
, /* 29 SONYPI_EVENT_BLUETOOTH_ON */
319 KEY_BLUETOOTH
, /* 30 SONYPI_EVENT_BLUETOOTH_OFF */
320 KEY_HELP
, /* 31 SONYPI_EVENT_HELP_PRESSED */
321 KEY_FN
, /* 32 SONYPI_EVENT_FNKEY_ONLY */
322 KEY_RESERVED
, /* 33 SONYPI_EVENT_JOGDIAL_FAST_DOWN */
323 KEY_RESERVED
, /* 34 SONYPI_EVENT_JOGDIAL_FAST_UP */
324 KEY_RESERVED
, /* 35 SONYPI_EVENT_JOGDIAL_FAST_DOWN_PRESSED */
325 KEY_RESERVED
, /* 36 SONYPI_EVENT_JOGDIAL_FAST_UP_PRESSED */
326 KEY_RESERVED
, /* 37 SONYPI_EVENT_JOGDIAL_VFAST_DOWN */
327 KEY_RESERVED
, /* 38 SONYPI_EVENT_JOGDIAL_VFAST_UP */
328 KEY_RESERVED
, /* 39 SONYPI_EVENT_JOGDIAL_VFAST_DOWN_PRESSED */
329 KEY_RESERVED
, /* 40 SONYPI_EVENT_JOGDIAL_VFAST_UP_PRESSED */
330 KEY_ZOOM
, /* 41 SONYPI_EVENT_ZOOM_PRESSED */
331 BTN_THUMB
, /* 42 SONYPI_EVENT_THUMBPHRASE_PRESSED */
332 KEY_RESERVED
, /* 43 SONYPI_EVENT_MEYE_FACE */
333 KEY_RESERVED
, /* 44 SONYPI_EVENT_MEYE_OPPOSITE */
334 KEY_RESERVED
, /* 45 SONYPI_EVENT_MEMORYSTICK_INSERT */
335 KEY_RESERVED
, /* 46 SONYPI_EVENT_MEMORYSTICK_EJECT */
336 KEY_WLAN
, /* 47 SONYPI_EVENT_WIRELESS_ON */
337 KEY_WLAN
, /* 48 SONYPI_EVENT_WIRELESS_OFF */
338 KEY_ZOOMIN
, /* 49 SONYPI_EVENT_ZOOM_IN_PRESSED */
339 KEY_ZOOMOUT
, /* 50 SONYPI_EVENT_ZOOM_OUT_PRESSED */
340 KEY_EJECTCD
, /* 51 SONYPI_EVENT_CD_EJECT_PRESSED */
341 KEY_F13
, /* 52 SONYPI_EVENT_MODEKEY_PRESSED */
342 KEY_PROG4
, /* 53 SONYPI_EVENT_PKEY_P4 */
343 KEY_F14
, /* 54 SONYPI_EVENT_PKEY_P5 */
344 KEY_F15
, /* 55 SONYPI_EVENT_SETTINGKEY_PRESSED */
345 KEY_VOLUMEUP
, /* 56 SONYPI_EVENT_VOLUME_INC_PRESSED */
346 KEY_VOLUMEDOWN
, /* 57 SONYPI_EVENT_VOLUME_DEC_PRESSED */
347 KEY_MEDIA
, /* 58 SONYPI_EVENT_MEDIA_PRESSED */
348 KEY_VENDOR
, /* 59 SONYPI_EVENT_VENDOR_PRESSED */
351 /* release buttons after a short delay if pressed */
352 static void do_sony_laptop_release_key(struct timer_list
*unused
)
354 struct sony_laptop_keypress kp
;
357 spin_lock_irqsave(&sony_laptop_input
.fifo_lock
, flags
);
359 if (kfifo_out(&sony_laptop_input
.fifo
,
360 (unsigned char *)&kp
, sizeof(kp
)) == sizeof(kp
)) {
361 input_report_key(kp
.dev
, kp
.key
, 0);
365 /* If there is something in the fifo schedule next release. */
366 if (kfifo_len(&sony_laptop_input
.fifo
) != 0)
367 mod_timer(&sony_laptop_input
.release_key_timer
,
368 jiffies
+ msecs_to_jiffies(10));
370 spin_unlock_irqrestore(&sony_laptop_input
.fifo_lock
, flags
);
373 /* forward event to the input subsystem */
374 static void sony_laptop_report_input_event(u8 event
)
376 struct input_dev
*jog_dev
= sony_laptop_input
.jog_dev
;
377 struct input_dev
*key_dev
= sony_laptop_input
.key_dev
;
378 struct sony_laptop_keypress kp
= { NULL
};
381 if (event
== SONYPI_EVENT_FNKEY_RELEASED
||
382 event
== SONYPI_EVENT_ANYBUTTON_RELEASED
) {
383 /* Nothing, not all VAIOs generate this event */
390 case SONYPI_EVENT_JOGDIAL_UP
:
391 case SONYPI_EVENT_JOGDIAL_UP_PRESSED
:
392 input_report_rel(jog_dev
, REL_WHEEL
, 1);
396 case SONYPI_EVENT_JOGDIAL_DOWN
:
397 case SONYPI_EVENT_JOGDIAL_DOWN_PRESSED
:
398 input_report_rel(jog_dev
, REL_WHEEL
, -1);
403 case SONYPI_EVENT_JOGDIAL_PRESSED
:
409 if (event
>= ARRAY_SIZE(sony_laptop_input_index
)) {
410 dprintk("sony_laptop_report_input_event, event not known: %d\n", event
);
413 if ((scancode
= sony_laptop_input_index
[event
]) != -1) {
414 kp
.key
= sony_laptop_input_keycode_map
[scancode
];
415 if (kp
.key
!= KEY_UNKNOWN
)
422 /* if we have a scancode we emit it so we can always
425 input_event(kp
.dev
, EV_MSC
, MSC_SCAN
, scancode
);
426 input_report_key(kp
.dev
, kp
.key
, 1);
429 /* schedule key release */
430 kfifo_in_locked(&sony_laptop_input
.fifo
,
431 (unsigned char *)&kp
, sizeof(kp
),
432 &sony_laptop_input
.fifo_lock
);
433 mod_timer(&sony_laptop_input
.release_key_timer
,
434 jiffies
+ msecs_to_jiffies(10));
436 dprintk("unknown input event %.2x\n", event
);
439 static int sony_laptop_setup_input(struct acpi_device
*acpi_device
)
441 struct input_dev
*jog_dev
;
442 struct input_dev
*key_dev
;
446 /* don't run again if already initialized */
447 if (atomic_add_return(1, &sony_laptop_input
.users
) > 1)
451 spin_lock_init(&sony_laptop_input
.fifo_lock
);
452 error
= kfifo_alloc(&sony_laptop_input
.fifo
,
453 SONY_LAPTOP_BUF_SIZE
, GFP_KERNEL
);
455 pr_err("kfifo_alloc failed\n");
459 timer_setup(&sony_laptop_input
.release_key_timer
,
460 do_sony_laptop_release_key
, 0);
463 key_dev
= input_allocate_device();
469 key_dev
->name
= "Sony Vaio Keys";
470 key_dev
->id
.bustype
= BUS_ISA
;
471 key_dev
->id
.vendor
= PCI_VENDOR_ID_SONY
;
472 key_dev
->dev
.parent
= &acpi_device
->dev
;
474 /* Initialize the Input Drivers: special keys */
475 input_set_capability(key_dev
, EV_MSC
, MSC_SCAN
);
477 __set_bit(EV_KEY
, key_dev
->evbit
);
478 key_dev
->keycodesize
= sizeof(sony_laptop_input_keycode_map
[0]);
479 key_dev
->keycodemax
= ARRAY_SIZE(sony_laptop_input_keycode_map
);
480 key_dev
->keycode
= &sony_laptop_input_keycode_map
;
481 for (i
= 0; i
< ARRAY_SIZE(sony_laptop_input_keycode_map
); i
++)
482 __set_bit(sony_laptop_input_keycode_map
[i
], key_dev
->keybit
);
483 __clear_bit(KEY_RESERVED
, key_dev
->keybit
);
485 error
= input_register_device(key_dev
);
487 goto err_free_keydev
;
489 sony_laptop_input
.key_dev
= key_dev
;
492 jog_dev
= input_allocate_device();
495 goto err_unregister_keydev
;
498 jog_dev
->name
= "Sony Vaio Jogdial";
499 jog_dev
->id
.bustype
= BUS_ISA
;
500 jog_dev
->id
.vendor
= PCI_VENDOR_ID_SONY
;
501 jog_dev
->dev
.parent
= &acpi_device
->dev
;
503 input_set_capability(jog_dev
, EV_KEY
, BTN_MIDDLE
);
504 input_set_capability(jog_dev
, EV_REL
, REL_WHEEL
);
506 error
= input_register_device(jog_dev
);
508 goto err_free_jogdev
;
510 sony_laptop_input
.jog_dev
= jog_dev
;
515 input_free_device(jog_dev
);
517 err_unregister_keydev
:
518 input_unregister_device(key_dev
);
519 /* to avoid kref underflow below at input_free_device */
523 input_free_device(key_dev
);
526 kfifo_free(&sony_laptop_input
.fifo
);
529 atomic_dec(&sony_laptop_input
.users
);
533 static void sony_laptop_remove_input(void)
535 struct sony_laptop_keypress kp
= { NULL
};
537 /* Cleanup only after the last user has gone */
538 if (!atomic_dec_and_test(&sony_laptop_input
.users
))
541 del_timer_sync(&sony_laptop_input
.release_key_timer
);
544 * Generate key-up events for remaining keys. Note that we don't
545 * need locking since nobody is adding new events to the kfifo.
547 while (kfifo_out(&sony_laptop_input
.fifo
,
548 (unsigned char *)&kp
, sizeof(kp
)) == sizeof(kp
)) {
549 input_report_key(kp
.dev
, kp
.key
, 0);
553 /* destroy input devs */
554 input_unregister_device(sony_laptop_input
.key_dev
);
555 sony_laptop_input
.key_dev
= NULL
;
557 if (sony_laptop_input
.jog_dev
) {
558 input_unregister_device(sony_laptop_input
.jog_dev
);
559 sony_laptop_input
.jog_dev
= NULL
;
562 kfifo_free(&sony_laptop_input
.fifo
);
565 /*********** Platform Device ***********/
567 static atomic_t sony_pf_users
= ATOMIC_INIT(0);
568 static struct platform_driver sony_pf_driver
= {
570 .name
= "sony-laptop",
573 static struct platform_device
*sony_pf_device
;
575 static int sony_pf_add(void)
579 /* don't run again if already initialized */
580 if (atomic_add_return(1, &sony_pf_users
) > 1)
583 ret
= platform_driver_register(&sony_pf_driver
);
587 sony_pf_device
= platform_device_alloc("sony-laptop", -1);
588 if (!sony_pf_device
) {
590 goto out_platform_registered
;
593 ret
= platform_device_add(sony_pf_device
);
595 goto out_platform_alloced
;
599 out_platform_alloced
:
600 platform_device_put(sony_pf_device
);
601 sony_pf_device
= NULL
;
602 out_platform_registered
:
603 platform_driver_unregister(&sony_pf_driver
);
605 atomic_dec(&sony_pf_users
);
609 static void sony_pf_remove(void)
611 /* deregister only after the last user has gone */
612 if (!atomic_dec_and_test(&sony_pf_users
))
615 platform_device_unregister(sony_pf_device
);
616 platform_driver_unregister(&sony_pf_driver
);
619 /*********** SNC (SNY5001) Device ***********/
621 /* the device uses 1-based values, while the backlight subsystem uses
623 #define SONY_MAX_BRIGHTNESS 8
625 #define SNC_VALIDATE_IN 0
626 #define SNC_VALIDATE_OUT 1
628 static ssize_t
sony_nc_sysfs_show(struct device
*, struct device_attribute
*,
630 static ssize_t
sony_nc_sysfs_store(struct device
*, struct device_attribute
*,
631 const char *, size_t);
632 static int boolean_validate(const int, const int);
633 static int brightness_default_validate(const int, const int);
635 struct sony_nc_value
{
636 char *name
; /* name of the entry */
637 char **acpiget
; /* names of the ACPI get function */
638 char **acpiset
; /* names of the ACPI set function */
639 int (*validate
)(const int, const int); /* input/output validation */
640 int value
; /* current setting */
641 int valid
; /* Has ever been set */
642 int debug
; /* active only in debug mode ? */
643 struct device_attribute devattr
; /* sysfs attribute */
646 #define SNC_HANDLE_NAMES(_name, _values...) \
647 static char *snc_##_name[] = { _values, NULL }
649 #define SNC_HANDLE(_name, _getters, _setters, _validate, _debug) \
651 .name = __stringify(_name), \
652 .acpiget = _getters, \
653 .acpiset = _setters, \
654 .validate = _validate, \
656 .devattr = __ATTR(_name, 0, sony_nc_sysfs_show, sony_nc_sysfs_store), \
659 #define SNC_HANDLE_NULL { .name = NULL }
661 SNC_HANDLE_NAMES(fnkey_get
, "GHKE");
663 SNC_HANDLE_NAMES(brightness_def_get
, "GPBR");
664 SNC_HANDLE_NAMES(brightness_def_set
, "SPBR");
666 SNC_HANDLE_NAMES(cdpower_get
, "GCDP");
667 SNC_HANDLE_NAMES(cdpower_set
, "SCDP", "CDPW");
669 SNC_HANDLE_NAMES(audiopower_get
, "GAZP");
670 SNC_HANDLE_NAMES(audiopower_set
, "AZPW");
672 SNC_HANDLE_NAMES(lanpower_get
, "GLNP");
673 SNC_HANDLE_NAMES(lanpower_set
, "LNPW");
675 SNC_HANDLE_NAMES(lidstate_get
, "GLID");
677 SNC_HANDLE_NAMES(indicatorlamp_get
, "GILS");
678 SNC_HANDLE_NAMES(indicatorlamp_set
, "SILS");
680 SNC_HANDLE_NAMES(gainbass_get
, "GMGB");
681 SNC_HANDLE_NAMES(gainbass_set
, "CMGB");
683 SNC_HANDLE_NAMES(PID_get
, "GPID");
685 SNC_HANDLE_NAMES(CTR_get
, "GCTR");
686 SNC_HANDLE_NAMES(CTR_set
, "SCTR");
688 SNC_HANDLE_NAMES(PCR_get
, "GPCR");
689 SNC_HANDLE_NAMES(PCR_set
, "SPCR");
691 SNC_HANDLE_NAMES(CMI_get
, "GCMI");
692 SNC_HANDLE_NAMES(CMI_set
, "SCMI");
694 static struct sony_nc_value sony_nc_values
[] = {
695 SNC_HANDLE(brightness_default
, snc_brightness_def_get
,
696 snc_brightness_def_set
, brightness_default_validate
, 0),
697 SNC_HANDLE(fnkey
, snc_fnkey_get
, NULL
, NULL
, 0),
698 SNC_HANDLE(cdpower
, snc_cdpower_get
, snc_cdpower_set
, boolean_validate
, 0),
699 SNC_HANDLE(audiopower
, snc_audiopower_get
, snc_audiopower_set
,
700 boolean_validate
, 0),
701 SNC_HANDLE(lanpower
, snc_lanpower_get
, snc_lanpower_set
,
702 boolean_validate
, 1),
703 SNC_HANDLE(lidstate
, snc_lidstate_get
, NULL
,
704 boolean_validate
, 0),
705 SNC_HANDLE(indicatorlamp
, snc_indicatorlamp_get
, snc_indicatorlamp_set
,
706 boolean_validate
, 0),
707 SNC_HANDLE(gainbass
, snc_gainbass_get
, snc_gainbass_set
,
708 boolean_validate
, 0),
709 /* unknown methods */
710 SNC_HANDLE(PID
, snc_PID_get
, NULL
, NULL
, 1),
711 SNC_HANDLE(CTR
, snc_CTR_get
, snc_CTR_set
, NULL
, 1),
712 SNC_HANDLE(PCR
, snc_PCR_get
, snc_PCR_set
, NULL
, 1),
713 SNC_HANDLE(CMI
, snc_CMI_get
, snc_CMI_set
, NULL
, 1),
717 static acpi_handle sony_nc_acpi_handle
;
718 static struct acpi_device
*sony_nc_acpi_device
= NULL
;
721 * acpi_evaluate_object wrappers
722 * all useful calls into SNC methods take one or zero parameters and return
723 * integers or arrays.
725 static union acpi_object
*__call_snc_method(acpi_handle handle
, char *method
,
728 union acpi_object
*result
= NULL
;
729 struct acpi_buffer output
= { ACPI_ALLOCATE_BUFFER
, NULL
};
733 struct acpi_object_list params
;
734 union acpi_object in
;
735 in
.type
= ACPI_TYPE_INTEGER
;
736 in
.integer
.value
= *value
;
738 params
.pointer
= &in
;
739 status
= acpi_evaluate_object(handle
, method
, ¶ms
, &output
);
740 dprintk("__call_snc_method: [%s:0x%.8x%.8x]\n", method
,
741 (unsigned int)(*value
>> 32),
742 (unsigned int)*value
& 0xffffffff);
744 status
= acpi_evaluate_object(handle
, method
, NULL
, &output
);
745 dprintk("__call_snc_method: [%s]\n", method
);
748 if (ACPI_FAILURE(status
)) {
749 pr_err("Failed to evaluate [%s]\n", method
);
753 result
= (union acpi_object
*) output
.pointer
;
755 dprintk("No return object [%s]\n", method
);
760 static int sony_nc_int_call(acpi_handle handle
, char *name
, int *value
,
763 union acpi_object
*object
= NULL
;
766 object
= __call_snc_method(handle
, name
, &v
);
768 object
= __call_snc_method(handle
, name
, NULL
);
773 if (object
->type
!= ACPI_TYPE_INTEGER
) {
774 pr_warn("Invalid acpi_object: expected 0x%x got 0x%x\n",
775 ACPI_TYPE_INTEGER
, object
->type
);
781 *result
= object
->integer
.value
;
787 #define MIN(a, b) (a > b ? b : a)
788 static int sony_nc_buffer_call(acpi_handle handle
, char *name
, u64
*value
,
789 void *buffer
, size_t buflen
)
793 union acpi_object
*object
= __call_snc_method(handle
, name
, value
);
798 if (object
->type
== ACPI_TYPE_BUFFER
) {
799 len
= MIN(buflen
, object
->buffer
.length
);
800 memcpy(buffer
, object
->buffer
.pointer
, len
);
802 } else if (object
->type
== ACPI_TYPE_INTEGER
) {
803 len
= MIN(buflen
, sizeof(object
->integer
.value
));
804 memcpy(buffer
, &object
->integer
.value
, len
);
807 pr_warn("Invalid acpi_object: expected 0x%x got 0x%x\n",
808 ACPI_TYPE_BUFFER
, object
->type
);
816 struct sony_nc_handles
{
818 struct device_attribute devattr
;
821 static struct sony_nc_handles
*handles
;
823 static ssize_t
sony_nc_handles_show(struct device
*dev
,
824 struct device_attribute
*attr
, char *buffer
)
829 for (i
= 0; i
< ARRAY_SIZE(handles
->cap
); i
++) {
830 len
+= snprintf(buffer
+ len
, PAGE_SIZE
- len
, "0x%.4x ",
833 len
+= snprintf(buffer
+ len
, PAGE_SIZE
- len
, "\n");
838 static int sony_nc_handles_setup(struct platform_device
*pd
)
840 int i
, r
, result
, arg
;
842 handles
= kzalloc(sizeof(*handles
), GFP_KERNEL
);
846 for (i
= 0; i
< ARRAY_SIZE(handles
->cap
); i
++) {
848 r
= sony_nc_int_call(sony_nc_acpi_handle
, "SN00", &arg
,
851 dprintk("caching handle 0x%.4x (offset: 0x%.2x)\n",
853 handles
->cap
[i
] = result
;
858 sysfs_attr_init(&handles
->devattr
.attr
);
859 handles
->devattr
.attr
.name
= "handles";
860 handles
->devattr
.attr
.mode
= S_IRUGO
;
861 handles
->devattr
.show
= sony_nc_handles_show
;
863 /* allow reading capabilities via sysfs */
864 if (device_create_file(&pd
->dev
, &handles
->devattr
)) {
874 static int sony_nc_handles_cleanup(struct platform_device
*pd
)
878 device_remove_file(&pd
->dev
, &handles
->devattr
);
885 static int sony_find_snc_handle(int handle
)
889 /* not initialized yet, return early */
890 if (!handles
|| !handle
)
893 for (i
= 0; i
< 0x10; i
++) {
894 if (handles
->cap
[i
] == handle
) {
895 dprintk("found handle 0x%.4x (offset: 0x%.2x)\n",
900 dprintk("handle 0x%.4x not found\n", handle
);
904 static int sony_call_snc_handle(int handle
, int argument
, int *result
)
907 int offset
= sony_find_snc_handle(handle
);
912 arg
= offset
| argument
;
913 ret
= sony_nc_int_call(sony_nc_acpi_handle
, "SN07", &arg
, result
);
914 dprintk("called SN07 with 0x%.4x (result: 0x%.4x)\n", arg
, *result
);
919 * sony_nc_values input/output validate functions
922 /* brightness_default_validate:
924 * manipulate input output values to keep consistency with the
925 * backlight framework for which brightness values are 0-based.
927 static int brightness_default_validate(const int direction
, const int value
)
930 case SNC_VALIDATE_OUT
:
932 case SNC_VALIDATE_IN
:
933 if (value
>= 0 && value
< SONY_MAX_BRIGHTNESS
)
941 * on input validate boolean values 0/1, on output just pass the
944 static int boolean_validate(const int direction
, const int value
)
946 if (direction
== SNC_VALIDATE_IN
) {
947 if (value
!= 0 && value
!= 1)
954 * Sysfs show/store common to all sony_nc_values
956 static ssize_t
sony_nc_sysfs_show(struct device
*dev
, struct device_attribute
*attr
,
960 struct sony_nc_value
*item
=
961 container_of(attr
, struct sony_nc_value
, devattr
);
966 ret
= sony_nc_int_call(sony_nc_acpi_handle
, *item
->acpiget
, NULL
,
972 value
= item
->validate(SNC_VALIDATE_OUT
, value
);
974 return snprintf(buffer
, PAGE_SIZE
, "%d\n", value
);
977 static ssize_t
sony_nc_sysfs_store(struct device
*dev
,
978 struct device_attribute
*attr
,
979 const char *buffer
, size_t count
)
983 struct sony_nc_value
*item
=
984 container_of(attr
, struct sony_nc_value
, devattr
);
992 if (kstrtoint(buffer
, 10, &value
))
996 value
= item
->validate(SNC_VALIDATE_IN
, value
);
1001 ret
= sony_nc_int_call(sony_nc_acpi_handle
, *item
->acpiset
,
1006 item
->value
= value
;
1015 struct sony_backlight_props
{
1016 struct backlight_device
*dev
;
1022 static struct sony_backlight_props sony_bl_props
;
1024 static int sony_backlight_update_status(struct backlight_device
*bd
)
1026 int arg
= bd
->props
.brightness
+ 1;
1027 return sony_nc_int_call(sony_nc_acpi_handle
, "SBRT", &arg
, NULL
);
1030 static int sony_backlight_get_brightness(struct backlight_device
*bd
)
1034 if (sony_nc_int_call(sony_nc_acpi_handle
, "GBRT", NULL
, &value
))
1036 /* brightness levels are 1-based, while backlight ones are 0-based */
1040 static int sony_nc_get_brightness_ng(struct backlight_device
*bd
)
1043 struct sony_backlight_props
*sdev
=
1044 (struct sony_backlight_props
*)bl_get_data(bd
);
1046 sony_call_snc_handle(sdev
->handle
, sdev
->cmd_base
+ 0x100, &result
);
1048 return (result
& 0xff) - sdev
->offset
;
1051 static int sony_nc_update_status_ng(struct backlight_device
*bd
)
1054 struct sony_backlight_props
*sdev
=
1055 (struct sony_backlight_props
*)bl_get_data(bd
);
1057 value
= bd
->props
.brightness
+ sdev
->offset
;
1058 if (sony_call_snc_handle(sdev
->handle
, sdev
->cmd_base
| (value
<< 0x10),
1065 static const struct backlight_ops sony_backlight_ops
= {
1066 .options
= BL_CORE_SUSPENDRESUME
,
1067 .update_status
= sony_backlight_update_status
,
1068 .get_brightness
= sony_backlight_get_brightness
,
1070 static const struct backlight_ops sony_backlight_ng_ops
= {
1071 .options
= BL_CORE_SUSPENDRESUME
,
1072 .update_status
= sony_nc_update_status_ng
,
1073 .get_brightness
= sony_nc_get_brightness_ng
,
1077 * New SNC-only Vaios event mapping to driver known keys
1079 struct sony_nc_event
{
1084 static struct sony_nc_event sony_100_events
[] = {
1085 { 0x90, SONYPI_EVENT_PKEY_P1
},
1086 { 0x10, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1087 { 0x91, SONYPI_EVENT_PKEY_P2
},
1088 { 0x11, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1089 { 0x81, SONYPI_EVENT_FNKEY_F1
},
1090 { 0x01, SONYPI_EVENT_FNKEY_RELEASED
},
1091 { 0x82, SONYPI_EVENT_FNKEY_F2
},
1092 { 0x02, SONYPI_EVENT_FNKEY_RELEASED
},
1093 { 0x83, SONYPI_EVENT_FNKEY_F3
},
1094 { 0x03, SONYPI_EVENT_FNKEY_RELEASED
},
1095 { 0x84, SONYPI_EVENT_FNKEY_F4
},
1096 { 0x04, SONYPI_EVENT_FNKEY_RELEASED
},
1097 { 0x85, SONYPI_EVENT_FNKEY_F5
},
1098 { 0x05, SONYPI_EVENT_FNKEY_RELEASED
},
1099 { 0x86, SONYPI_EVENT_FNKEY_F6
},
1100 { 0x06, SONYPI_EVENT_FNKEY_RELEASED
},
1101 { 0x87, SONYPI_EVENT_FNKEY_F7
},
1102 { 0x07, SONYPI_EVENT_FNKEY_RELEASED
},
1103 { 0x88, SONYPI_EVENT_FNKEY_F8
},
1104 { 0x08, SONYPI_EVENT_FNKEY_RELEASED
},
1105 { 0x89, SONYPI_EVENT_FNKEY_F9
},
1106 { 0x09, SONYPI_EVENT_FNKEY_RELEASED
},
1107 { 0x8A, SONYPI_EVENT_FNKEY_F10
},
1108 { 0x0A, SONYPI_EVENT_FNKEY_RELEASED
},
1109 { 0x8B, SONYPI_EVENT_FNKEY_F11
},
1110 { 0x0B, SONYPI_EVENT_FNKEY_RELEASED
},
1111 { 0x8C, SONYPI_EVENT_FNKEY_F12
},
1112 { 0x0C, SONYPI_EVENT_FNKEY_RELEASED
},
1113 { 0x9d, SONYPI_EVENT_ZOOM_PRESSED
},
1114 { 0x1d, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1115 { 0x9f, SONYPI_EVENT_CD_EJECT_PRESSED
},
1116 { 0x1f, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1117 { 0xa1, SONYPI_EVENT_MEDIA_PRESSED
},
1118 { 0x21, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1119 { 0xa4, SONYPI_EVENT_CD_EJECT_PRESSED
},
1120 { 0x24, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1121 { 0xa5, SONYPI_EVENT_VENDOR_PRESSED
},
1122 { 0x25, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1123 { 0xa6, SONYPI_EVENT_HELP_PRESSED
},
1124 { 0x26, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1125 { 0xa8, SONYPI_EVENT_FNKEY_1
},
1126 { 0x28, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1130 static struct sony_nc_event sony_127_events
[] = {
1131 { 0x81, SONYPI_EVENT_MODEKEY_PRESSED
},
1132 { 0x01, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1133 { 0x82, SONYPI_EVENT_PKEY_P1
},
1134 { 0x02, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1135 { 0x83, SONYPI_EVENT_PKEY_P2
},
1136 { 0x03, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1137 { 0x84, SONYPI_EVENT_PKEY_P3
},
1138 { 0x04, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1139 { 0x85, SONYPI_EVENT_PKEY_P4
},
1140 { 0x05, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1141 { 0x86, SONYPI_EVENT_PKEY_P5
},
1142 { 0x06, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1143 { 0x87, SONYPI_EVENT_SETTINGKEY_PRESSED
},
1144 { 0x07, SONYPI_EVENT_ANYBUTTON_RELEASED
},
1148 static int sony_nc_hotkeys_decode(u32 event
, unsigned int handle
)
1151 unsigned int result
= 0;
1152 struct sony_nc_event
*key_event
;
1154 if (sony_call_snc_handle(handle
, 0x200, &result
)) {
1155 dprintk("Unable to decode event 0x%.2x 0x%.2x\n", handle
,
1162 if (handle
== 0x0100)
1163 key_event
= sony_100_events
;
1165 key_event
= sony_127_events
;
1167 for (; key_event
->data
; key_event
++) {
1168 if (key_event
->data
== result
) {
1169 ret
= key_event
->event
;
1174 if (!key_event
->data
)
1175 pr_info("Unknown hotkey 0x%.2x/0x%.2x (handle 0x%.2x)\n",
1176 event
, result
, handle
);
1189 static void sony_nc_notify(struct acpi_device
*device
, u32 event
)
1191 u32 real_ev
= event
;
1195 dprintk("sony_nc_notify, event: 0x%.2x\n", event
);
1197 if (event
>= 0x90) {
1198 unsigned int result
= 0;
1199 unsigned int arg
= 0;
1200 unsigned int handle
= 0;
1201 unsigned int offset
= event
- 0x90;
1203 if (offset
>= ARRAY_SIZE(handles
->cap
)) {
1204 pr_err("Event 0x%x outside of capabilities list\n",
1208 handle
= handles
->cap
[offset
];
1210 /* list of handles known for generating events */
1216 ret
= sony_nc_hotkeys_decode(event
, handle
);
1219 sony_laptop_report_input_event(ret
);
1228 /* events on this handle are reported when the
1229 * switch changes position or for battery
1230 * events. We'll notify both of them but only
1231 * update the rfkill device status when the
1234 ev_type
= KILLSWITCH
;
1235 sony_call_snc_handle(handle
, 0x0100, &result
);
1236 real_ev
= result
& 0x03;
1238 /* hw switch event */
1240 sony_nc_rfkill_update();
1246 /* Hybrid GFX switching */
1247 sony_call_snc_handle(handle
, 0x0000, &result
);
1248 dprintk("GFX switch event received (reason: %s)\n",
1249 (result
== 0x1) ? "switch change" :
1250 (result
== 0x2) ? "output switch" :
1251 (result
== 0x3) ? "output switch" :
1254 ev_type
= GFX_SWITCH
;
1255 real_ev
= __sony_nc_gfx_switch_status_get();
1259 /* Hybrid GFX switching SVS151290S */
1260 ev_type
= GFX_SWITCH
;
1261 real_ev
= __sony_nc_gfx_switch_status_get();
1264 dprintk("Unknown event 0x%x for handle 0x%x\n",
1269 /* clear the event (and the event reason when present) */
1271 sony_nc_int_call(sony_nc_acpi_handle
, "SN05", &arg
, &result
);
1274 /* old style event */
1276 sony_laptop_report_input_event(real_ev
);
1278 acpi_bus_generate_netlink_event(sony_nc_acpi_device
->pnp
.device_class
,
1279 dev_name(&sony_nc_acpi_device
->dev
), ev_type
, real_ev
);
1282 static acpi_status
sony_walk_callback(acpi_handle handle
, u32 level
,
1283 void *context
, void **return_value
)
1285 struct acpi_device_info
*info
;
1287 if (ACPI_SUCCESS(acpi_get_object_info(handle
, &info
))) {
1288 pr_warn("method: name: %4.4s, args %X\n",
1289 (char *)&info
->name
, info
->param_count
);
1300 static void sony_nc_function_setup(struct acpi_device
*device
,
1301 struct platform_device
*pf_device
)
1303 unsigned int i
, result
, bitmask
, arg
;
1308 /* setup found handles here */
1309 for (i
= 0; i
< ARRAY_SIZE(handles
->cap
); i
++) {
1310 unsigned int handle
= handles
->cap
[i
];
1315 dprintk("setting up handle 0x%.4x\n", handle
);
1322 sony_call_snc_handle(handle
, 0, &result
);
1326 sony_call_snc_handle(handle
, 0x100, &result
);
1330 /* touchpad enable/disable */
1331 result
= sony_nc_touchpad_setup(pf_device
, handle
);
1333 pr_err("couldn't set up touchpad control function (%d)\n",
1339 result
= sony_nc_battery_care_setup(pf_device
, handle
);
1341 pr_err("couldn't set up battery care function (%d)\n",
1346 result
= sony_nc_lid_resume_setup(pf_device
, handle
);
1348 pr_err("couldn't set up lid resume function (%d)\n",
1352 result
= sony_nc_thermal_setup(pf_device
);
1354 pr_err("couldn't set up thermal profile function (%d)\n",
1360 result
= sony_nc_gfx_switch_setup(pf_device
, handle
);
1362 pr_err("couldn't set up GFX Switch status (%d)\n",
1366 result
= sony_nc_highspeed_charging_setup(pf_device
);
1368 pr_err("couldn't set up high speed charging function (%d)\n",
1373 result
= sony_nc_rfkill_setup(device
, handle
);
1375 pr_err("couldn't set up rfkill support (%d)\n",
1384 result
= sony_nc_kbd_backlight_setup(pf_device
, handle
);
1386 pr_err("couldn't set up keyboard backlight function (%d)\n",
1390 result
= sony_nc_lowbatt_setup(pf_device
);
1392 pr_err("couldn't set up low battery function (%d)\n",
1396 result
= sony_nc_fanspeed_setup(pf_device
);
1398 pr_err("couldn't set up fan speed function (%d)\n",
1402 result
= sony_nc_usb_charge_setup(pf_device
);
1404 pr_err("couldn't set up USB charge support (%d)\n",
1408 result
= sony_nc_panelid_setup(pf_device
);
1410 pr_err("couldn't set up panel ID function (%d)\n",
1414 result
= sony_nc_smart_conn_setup(pf_device
);
1416 pr_err("couldn't set up smart connect support (%d)\n",
1424 /* Enable all events */
1426 if (!sony_nc_int_call(sony_nc_acpi_handle
, "SN00", &arg
, &bitmask
))
1427 sony_nc_int_call(sony_nc_acpi_handle
, "SN02", &bitmask
,
1431 static void sony_nc_function_cleanup(struct platform_device
*pd
)
1433 unsigned int i
, result
, bitmask
, handle
;
1438 /* get enabled events and disable them */
1439 sony_nc_int_call(sony_nc_acpi_handle
, "SN01", NULL
, &bitmask
);
1440 sony_nc_int_call(sony_nc_acpi_handle
, "SN03", &bitmask
, &result
);
1442 /* cleanup handles here */
1443 for (i
= 0; i
< ARRAY_SIZE(handles
->cap
); i
++) {
1445 handle
= handles
->cap
[i
];
1453 sony_nc_touchpad_cleanup(pd
);
1458 sony_nc_battery_care_cleanup(pd
);
1462 sony_nc_lid_resume_cleanup(pd
);
1465 sony_nc_thermal_cleanup(pd
);
1470 sony_nc_gfx_switch_cleanup(pd
);
1473 sony_nc_highspeed_charging_cleanup(pd
);
1477 sony_nc_rfkill_cleanup();
1485 sony_nc_kbd_backlight_cleanup(pd
, handle
);
1488 sony_nc_lowbatt_cleanup(pd
);
1491 sony_nc_fanspeed_cleanup(pd
);
1494 sony_nc_usb_charge_cleanup(pd
);
1497 sony_nc_panelid_cleanup(pd
);
1500 sony_nc_smart_conn_cleanup(pd
);
1507 /* finally cleanup the handles list */
1508 sony_nc_handles_cleanup(pd
);
1511 #ifdef CONFIG_PM_SLEEP
1512 static void sony_nc_function_resume(void)
1514 unsigned int i
, result
, bitmask
, arg
;
1516 dprintk("Resuming SNC device\n");
1518 for (i
= 0; i
< ARRAY_SIZE(handles
->cap
); i
++) {
1519 unsigned int handle
= handles
->cap
[i
];
1528 /* re-enable hotkeys */
1529 sony_call_snc_handle(handle
, 0, &result
);
1532 /* re-enable hotkeys */
1533 sony_call_snc_handle(handle
, 0x100, &result
);
1536 sony_nc_thermal_resume();
1540 sony_nc_rfkill_update();
1547 /* Enable all events */
1549 if (!sony_nc_int_call(sony_nc_acpi_handle
, "SN00", &arg
, &bitmask
))
1550 sony_nc_int_call(sony_nc_acpi_handle
, "SN02", &bitmask
,
1554 static int sony_nc_resume(struct device
*dev
)
1556 struct sony_nc_value
*item
;
1558 for (item
= sony_nc_values
; item
->name
; item
++) {
1563 ret
= sony_nc_int_call(sony_nc_acpi_handle
, *item
->acpiset
,
1564 &item
->value
, NULL
);
1566 pr_err("%s: %d\n", __func__
, ret
);
1571 if (acpi_has_method(sony_nc_acpi_handle
, "ECON")) {
1573 if (sony_nc_int_call(sony_nc_acpi_handle
, "ECON", &arg
, NULL
))
1574 dprintk("ECON Method failed\n");
1577 if (acpi_has_method(sony_nc_acpi_handle
, "SN00"))
1578 sony_nc_function_resume();
1584 static SIMPLE_DEV_PM_OPS(sony_nc_pm
, NULL
, sony_nc_resume
);
1586 static void sony_nc_rfkill_cleanup(void)
1590 for (i
= 0; i
< N_SONY_RFKILL
; i
++) {
1591 if (sony_rfkill_devices
[i
]) {
1592 rfkill_unregister(sony_rfkill_devices
[i
]);
1593 rfkill_destroy(sony_rfkill_devices
[i
]);
1598 static int sony_nc_rfkill_set(void *data
, bool blocked
)
1601 int argument
= sony_rfkill_address
[(long) data
] + 0x100;
1604 argument
|= 0x070000;
1606 return sony_call_snc_handle(sony_rfkill_handle
, argument
, &result
);
1609 static const struct rfkill_ops sony_rfkill_ops
= {
1610 .set_block
= sony_nc_rfkill_set
,
1613 static int sony_nc_setup_rfkill(struct acpi_device
*device
,
1614 enum sony_nc_rfkill nc_type
)
1618 enum rfkill_type type
;
1621 bool hwblock
, swblock
;
1625 type
= RFKILL_TYPE_WLAN
;
1628 case SONY_BLUETOOTH
:
1629 type
= RFKILL_TYPE_BLUETOOTH
;
1630 name
= "sony-bluetooth";
1633 type
= RFKILL_TYPE_WWAN
;
1637 type
= RFKILL_TYPE_WIMAX
;
1638 name
= "sony-wimax";
1644 rfk
= rfkill_alloc(name
, &device
->dev
, type
,
1645 &sony_rfkill_ops
, (void *)nc_type
);
1649 err
= sony_call_snc_handle(sony_rfkill_handle
, 0x200, &result
);
1651 rfkill_destroy(rfk
);
1654 hwblock
= !(result
& 0x1);
1656 err
= sony_call_snc_handle(sony_rfkill_handle
,
1657 sony_rfkill_address
[nc_type
],
1660 rfkill_destroy(rfk
);
1663 swblock
= !(result
& 0x2);
1665 rfkill_init_sw_state(rfk
, swblock
);
1666 rfkill_set_hw_state(rfk
, hwblock
);
1668 err
= rfkill_register(rfk
);
1670 rfkill_destroy(rfk
);
1673 sony_rfkill_devices
[nc_type
] = rfk
;
1677 static void sony_nc_rfkill_update(void)
1679 enum sony_nc_rfkill i
;
1683 sony_call_snc_handle(sony_rfkill_handle
, 0x200, &result
);
1684 hwblock
= !(result
& 0x1);
1686 for (i
= 0; i
< N_SONY_RFKILL
; i
++) {
1687 int argument
= sony_rfkill_address
[i
];
1689 if (!sony_rfkill_devices
[i
])
1693 if (rfkill_set_hw_state(sony_rfkill_devices
[i
], true)) {
1694 /* we already know we're blocked */
1699 sony_call_snc_handle(sony_rfkill_handle
, argument
, &result
);
1700 rfkill_set_states(sony_rfkill_devices
[i
],
1701 !(result
& 0x2), false);
1705 static int sony_nc_rfkill_setup(struct acpi_device
*device
,
1706 unsigned int handle
)
1710 unsigned char buffer
[32] = { 0 };
1712 offset
= sony_find_snc_handle(handle
);
1713 sony_rfkill_handle
= handle
;
1715 i
= sony_nc_buffer_call(sony_nc_acpi_handle
, "SN06", &offset
, buffer
,
1720 /* The buffer is filled with magic numbers describing the devices
1721 * available, 0xff terminates the enumeration.
1725 * 0x20 WWAN GPRS-EDGE
1729 * 0x25 Gobi WWAN no GPS
1730 * 0x26 Gobi WWAN + GPS
1731 * 0x28 Gobi WWAN no GPS
1732 * 0x29 Gobi WWAN + GPS
1734 * 0x50 Gobi WWAN no GPS
1735 * 0x51 Gobi WWAN + GPS
1736 * 0x70 no SIM card slot
1737 * 0x71 SIM card slot
1739 for (i
= 0; i
< ARRAY_SIZE(buffer
); i
++) {
1741 if (buffer
[i
] == 0xff)
1744 dprintk("Radio devices, found 0x%.2x\n", buffer
[i
]);
1746 if (buffer
[i
] == 0 && !sony_rfkill_devices
[SONY_WIFI
])
1747 sony_nc_setup_rfkill(device
, SONY_WIFI
);
1749 if (buffer
[i
] == 0x10 && !sony_rfkill_devices
[SONY_BLUETOOTH
])
1750 sony_nc_setup_rfkill(device
, SONY_BLUETOOTH
);
1752 if (((0xf0 & buffer
[i
]) == 0x20 ||
1753 (0xf0 & buffer
[i
]) == 0x50) &&
1754 !sony_rfkill_devices
[SONY_WWAN
])
1755 sony_nc_setup_rfkill(device
, SONY_WWAN
);
1757 if (buffer
[i
] == 0x30 && !sony_rfkill_devices
[SONY_WIMAX
])
1758 sony_nc_setup_rfkill(device
, SONY_WIMAX
);
1763 /* Keyboard backlight feature */
1764 struct kbd_backlight
{
1765 unsigned int handle
;
1768 unsigned int timeout
;
1769 unsigned int has_timeout
;
1770 struct device_attribute mode_attr
;
1771 struct device_attribute timeout_attr
;
1774 static struct kbd_backlight
*kbdbl_ctl
;
1776 static ssize_t
__sony_nc_kbd_backlight_mode_set(u8 value
)
1783 if (sony_call_snc_handle(kbdbl_ctl
->handle
,
1784 (value
<< 0x10) | (kbdbl_ctl
->base
), &result
))
1787 /* Try to turn the light on/off immediately */
1789 sony_call_snc_handle(kbdbl_ctl
->handle
,
1790 (value
<< 0x0f) | (kbdbl_ctl
->base
+ 0x100),
1793 kbdbl_ctl
->mode
= value
;
1798 static ssize_t
sony_nc_kbd_backlight_mode_store(struct device
*dev
,
1799 struct device_attribute
*attr
,
1800 const char *buffer
, size_t count
)
1803 unsigned long value
;
1808 if (kstrtoul(buffer
, 10, &value
))
1811 ret
= __sony_nc_kbd_backlight_mode_set(value
);
1818 static ssize_t
sony_nc_kbd_backlight_mode_show(struct device
*dev
,
1819 struct device_attribute
*attr
, char *buffer
)
1822 count
= snprintf(buffer
, PAGE_SIZE
, "%d\n", kbdbl_ctl
->mode
);
1826 static int __sony_nc_kbd_backlight_timeout_set(u8 value
)
1833 if (sony_call_snc_handle(kbdbl_ctl
->handle
, (value
<< 0x10) |
1834 (kbdbl_ctl
->base
+ 0x200), &result
))
1837 kbdbl_ctl
->timeout
= value
;
1842 static ssize_t
sony_nc_kbd_backlight_timeout_store(struct device
*dev
,
1843 struct device_attribute
*attr
,
1844 const char *buffer
, size_t count
)
1847 unsigned long value
;
1852 if (kstrtoul(buffer
, 10, &value
))
1855 ret
= __sony_nc_kbd_backlight_timeout_set(value
);
1862 static ssize_t
sony_nc_kbd_backlight_timeout_show(struct device
*dev
,
1863 struct device_attribute
*attr
, char *buffer
)
1866 count
= snprintf(buffer
, PAGE_SIZE
, "%d\n", kbdbl_ctl
->timeout
);
1870 static int sony_nc_kbd_backlight_setup(struct platform_device
*pd
,
1871 unsigned int handle
)
1879 pr_warn("handle 0x%.4x: keyboard backlight setup already done for 0x%.4x\n",
1880 handle
, kbdbl_ctl
->handle
);
1884 /* verify the kbd backlight presence, some of these handles are not used
1885 * for keyboard backlight only
1893 probe_base
= 0x0B00;
1897 probe_base
= 0x0100;
1902 ret
= sony_call_snc_handle(handle
, probe_base
, &result
);
1906 if ((handle
== 0x0137 && !(result
& 0x02)) ||
1908 dprintk("no backlight keyboard found\n");
1912 kbdbl_ctl
= kzalloc(sizeof(*kbdbl_ctl
), GFP_KERNEL
);
1916 kbdbl_ctl
->mode
= kbd_backlight
;
1917 kbdbl_ctl
->timeout
= kbd_backlight_timeout
;
1918 kbdbl_ctl
->handle
= handle
;
1919 kbdbl_ctl
->base
= ctl_base
;
1920 /* Some models do not allow timeout control */
1921 kbdbl_ctl
->has_timeout
= handle
!= 0x0153;
1923 sysfs_attr_init(&kbdbl_ctl
->mode_attr
.attr
);
1924 kbdbl_ctl
->mode_attr
.attr
.name
= "kbd_backlight";
1925 kbdbl_ctl
->mode_attr
.attr
.mode
= S_IRUGO
| S_IWUSR
;
1926 kbdbl_ctl
->mode_attr
.show
= sony_nc_kbd_backlight_mode_show
;
1927 kbdbl_ctl
->mode_attr
.store
= sony_nc_kbd_backlight_mode_store
;
1929 ret
= device_create_file(&pd
->dev
, &kbdbl_ctl
->mode_attr
);
1933 __sony_nc_kbd_backlight_mode_set(kbdbl_ctl
->mode
);
1935 if (kbdbl_ctl
->has_timeout
) {
1936 sysfs_attr_init(&kbdbl_ctl
->timeout_attr
.attr
);
1937 kbdbl_ctl
->timeout_attr
.attr
.name
= "kbd_backlight_timeout";
1938 kbdbl_ctl
->timeout_attr
.attr
.mode
= S_IRUGO
| S_IWUSR
;
1939 kbdbl_ctl
->timeout_attr
.show
=
1940 sony_nc_kbd_backlight_timeout_show
;
1941 kbdbl_ctl
->timeout_attr
.store
=
1942 sony_nc_kbd_backlight_timeout_store
;
1944 ret
= device_create_file(&pd
->dev
, &kbdbl_ctl
->timeout_attr
);
1948 __sony_nc_kbd_backlight_timeout_set(kbdbl_ctl
->timeout
);
1955 device_remove_file(&pd
->dev
, &kbdbl_ctl
->mode_attr
);
1962 static void sony_nc_kbd_backlight_cleanup(struct platform_device
*pd
,
1963 unsigned int handle
)
1965 if (kbdbl_ctl
&& handle
== kbdbl_ctl
->handle
) {
1966 device_remove_file(&pd
->dev
, &kbdbl_ctl
->mode_attr
);
1967 if (kbdbl_ctl
->has_timeout
)
1968 device_remove_file(&pd
->dev
, &kbdbl_ctl
->timeout_attr
);
1974 struct battery_care_control
{
1975 struct device_attribute attrs
[2];
1976 unsigned int handle
;
1978 static struct battery_care_control
*bcare_ctl
;
1980 static ssize_t
sony_nc_battery_care_limit_store(struct device
*dev
,
1981 struct device_attribute
*attr
,
1982 const char *buffer
, size_t count
)
1984 unsigned int result
, cmd
;
1985 unsigned long value
;
1990 if (kstrtoul(buffer
, 10, &value
))
1993 /* limit values (2 bits):
1999 * bit 0: 0 disable BCL, 1 enable BCL
2000 * bit 1: 1 tell to store the battery limit (see bits 6,7) too
2001 * bits 2,3: reserved
2002 * bits 4,5: store the limit into the EC
2003 * bits 6,7: store the limit into the battery
2011 else if (value
<= 80)
2014 else if (value
<= 100)
2021 * handle 0x0115 should allow storing on battery too;
2022 * handle 0x0136 same as 0x0115 + health status;
2023 * handle 0x013f, same as 0x0136 but no storing on the battery
2025 if (bcare_ctl
->handle
!= 0x013f)
2026 cmd
= cmd
| (cmd
<< 2);
2028 cmd
= (cmd
| 0x1) << 0x10;
2031 if (sony_call_snc_handle(bcare_ctl
->handle
, cmd
| 0x0100, &result
))
2037 static ssize_t
sony_nc_battery_care_limit_show(struct device
*dev
,
2038 struct device_attribute
*attr
, char *buffer
)
2040 unsigned int result
, status
;
2042 if (sony_call_snc_handle(bcare_ctl
->handle
, 0x0000, &result
))
2045 status
= (result
& 0x01) ? ((result
& 0x30) >> 0x04) : 0;
2061 return snprintf(buffer
, PAGE_SIZE
, "%d\n", status
);
2064 static ssize_t
sony_nc_battery_care_health_show(struct device
*dev
,
2065 struct device_attribute
*attr
, char *buffer
)
2068 unsigned int health
;
2070 if (sony_call_snc_handle(bcare_ctl
->handle
, 0x0200, &health
))
2073 count
= snprintf(buffer
, PAGE_SIZE
, "%d\n", health
& 0xff);
2078 static int sony_nc_battery_care_setup(struct platform_device
*pd
,
2079 unsigned int handle
)
2083 bcare_ctl
= kzalloc(sizeof(struct battery_care_control
), GFP_KERNEL
);
2087 bcare_ctl
->handle
= handle
;
2089 sysfs_attr_init(&bcare_ctl
->attrs
[0].attr
);
2090 bcare_ctl
->attrs
[0].attr
.name
= "battery_care_limiter";
2091 bcare_ctl
->attrs
[0].attr
.mode
= S_IRUGO
| S_IWUSR
;
2092 bcare_ctl
->attrs
[0].show
= sony_nc_battery_care_limit_show
;
2093 bcare_ctl
->attrs
[0].store
= sony_nc_battery_care_limit_store
;
2095 ret
= device_create_file(&pd
->dev
, &bcare_ctl
->attrs
[0]);
2099 /* 0x0115 is for models with no health reporting capability */
2100 if (handle
== 0x0115)
2103 sysfs_attr_init(&bcare_ctl
->attrs
[1].attr
);
2104 bcare_ctl
->attrs
[1].attr
.name
= "battery_care_health";
2105 bcare_ctl
->attrs
[1].attr
.mode
= S_IRUGO
;
2106 bcare_ctl
->attrs
[1].show
= sony_nc_battery_care_health_show
;
2108 ret
= device_create_file(&pd
->dev
, &bcare_ctl
->attrs
[1]);
2115 device_remove_file(&pd
->dev
, &bcare_ctl
->attrs
[0]);
2124 static void sony_nc_battery_care_cleanup(struct platform_device
*pd
)
2127 device_remove_file(&pd
->dev
, &bcare_ctl
->attrs
[0]);
2128 if (bcare_ctl
->handle
!= 0x0115)
2129 device_remove_file(&pd
->dev
, &bcare_ctl
->attrs
[1]);
2136 struct snc_thermal_ctrl
{
2138 unsigned int profiles
;
2139 struct device_attribute mode_attr
;
2140 struct device_attribute profiles_attr
;
2142 static struct snc_thermal_ctrl
*th_handle
;
2144 #define THM_PROFILE_MAX 3
2145 static const char * const snc_thermal_profiles
[] = {
2151 static int sony_nc_thermal_mode_set(unsigned short mode
)
2153 unsigned int result
;
2155 /* the thermal profile seems to be a two bit bitmask:
2157 * msb -> performance
2158 * no bit set is the normal operation and is always valid
2159 * Some vaio models only have "balanced" and "performance"
2161 if ((mode
&& !(th_handle
->profiles
& mode
)) || mode
>= THM_PROFILE_MAX
)
2164 if (sony_call_snc_handle(0x0122, mode
<< 0x10 | 0x0200, &result
))
2167 th_handle
->mode
= mode
;
2172 static int sony_nc_thermal_mode_get(void)
2174 unsigned int result
;
2176 if (sony_call_snc_handle(0x0122, 0x0100, &result
))
2179 return result
& 0xff;
2182 static ssize_t
sony_nc_thermal_profiles_show(struct device
*dev
,
2183 struct device_attribute
*attr
, char *buffer
)
2188 for (cnt
= 0; cnt
< THM_PROFILE_MAX
; cnt
++) {
2189 if (!cnt
|| (th_handle
->profiles
& cnt
))
2190 idx
+= snprintf(buffer
+ idx
, PAGE_SIZE
- idx
, "%s ",
2191 snc_thermal_profiles
[cnt
]);
2193 idx
+= snprintf(buffer
+ idx
, PAGE_SIZE
- idx
, "\n");
2198 static ssize_t
sony_nc_thermal_mode_store(struct device
*dev
,
2199 struct device_attribute
*attr
,
2200 const char *buffer
, size_t count
)
2208 /* skip the newline if present */
2209 if (buffer
[len
- 1] == '\n')
2212 for (cmd
= 0; cmd
< THM_PROFILE_MAX
; cmd
++)
2213 if (strncmp(buffer
, snc_thermal_profiles
[cmd
], len
) == 0)
2216 if (sony_nc_thermal_mode_set(cmd
))
2222 static ssize_t
sony_nc_thermal_mode_show(struct device
*dev
,
2223 struct device_attribute
*attr
, char *buffer
)
2226 int mode
= sony_nc_thermal_mode_get();
2231 count
= snprintf(buffer
, PAGE_SIZE
, "%s\n", snc_thermal_profiles
[mode
]);
2236 static int sony_nc_thermal_setup(struct platform_device
*pd
)
2239 th_handle
= kzalloc(sizeof(struct snc_thermal_ctrl
), GFP_KERNEL
);
2243 ret
= sony_call_snc_handle(0x0122, 0x0000, &th_handle
->profiles
);
2245 pr_warn("couldn't to read the thermal profiles\n");
2249 ret
= sony_nc_thermal_mode_get();
2251 pr_warn("couldn't to read the current thermal profile");
2254 th_handle
->mode
= ret
;
2256 sysfs_attr_init(&th_handle
->profiles_attr
.attr
);
2257 th_handle
->profiles_attr
.attr
.name
= "thermal_profiles";
2258 th_handle
->profiles_attr
.attr
.mode
= S_IRUGO
;
2259 th_handle
->profiles_attr
.show
= sony_nc_thermal_profiles_show
;
2261 sysfs_attr_init(&th_handle
->mode_attr
.attr
);
2262 th_handle
->mode_attr
.attr
.name
= "thermal_control";
2263 th_handle
->mode_attr
.attr
.mode
= S_IRUGO
| S_IWUSR
;
2264 th_handle
->mode_attr
.show
= sony_nc_thermal_mode_show
;
2265 th_handle
->mode_attr
.store
= sony_nc_thermal_mode_store
;
2267 ret
= device_create_file(&pd
->dev
, &th_handle
->profiles_attr
);
2271 ret
= device_create_file(&pd
->dev
, &th_handle
->mode_attr
);
2278 device_remove_file(&pd
->dev
, &th_handle
->profiles_attr
);
2285 static void sony_nc_thermal_cleanup(struct platform_device
*pd
)
2288 device_remove_file(&pd
->dev
, &th_handle
->profiles_attr
);
2289 device_remove_file(&pd
->dev
, &th_handle
->mode_attr
);
2295 #ifdef CONFIG_PM_SLEEP
2296 static void sony_nc_thermal_resume(void)
2298 unsigned int status
= sony_nc_thermal_mode_get();
2300 if (status
!= th_handle
->mode
)
2301 sony_nc_thermal_mode_set(th_handle
->mode
);
2305 /* resume on LID open */
2306 #define LID_RESUME_S5 0
2307 #define LID_RESUME_S4 1
2308 #define LID_RESUME_S3 2
2309 #define LID_RESUME_MAX 3
2310 struct snc_lid_resume_control
{
2311 struct device_attribute attrs
[LID_RESUME_MAX
];
2312 unsigned int status
;
2315 static struct snc_lid_resume_control
*lid_ctl
;
2317 static ssize_t
sony_nc_lid_resume_store(struct device
*dev
,
2318 struct device_attribute
*attr
,
2319 const char *buffer
, size_t count
)
2321 unsigned int result
;
2322 unsigned long value
;
2323 unsigned int pos
= LID_RESUME_S5
;
2327 if (kstrtoul(buffer
, 10, &value
) || value
> 1)
2330 /* the value we have to write to SNC is a bitmask:
2336 while (pos
< LID_RESUME_MAX
) {
2337 if (&lid_ctl
->attrs
[pos
].attr
== &attr
->attr
)
2341 if (pos
== LID_RESUME_MAX
)
2345 value
= lid_ctl
->status
| (1 << pos
);
2347 value
= lid_ctl
->status
& ~(1 << pos
);
2349 if (sony_call_snc_handle(lid_ctl
->handle
, value
<< 0x10 | 0x0100,
2353 lid_ctl
->status
= value
;
2358 static ssize_t
sony_nc_lid_resume_show(struct device
*dev
,
2359 struct device_attribute
*attr
,
2362 unsigned int pos
= LID_RESUME_S5
;
2364 while (pos
< LID_RESUME_MAX
) {
2365 if (&lid_ctl
->attrs
[pos
].attr
== &attr
->attr
)
2366 return snprintf(buffer
, PAGE_SIZE
, "%d\n",
2367 (lid_ctl
->status
>> pos
) & 0x01);
2373 static int sony_nc_lid_resume_setup(struct platform_device
*pd
,
2374 unsigned int handle
)
2376 unsigned int result
;
2379 if (sony_call_snc_handle(handle
, 0x0000, &result
))
2382 lid_ctl
= kzalloc(sizeof(struct snc_lid_resume_control
), GFP_KERNEL
);
2386 lid_ctl
->status
= result
& 0x7;
2387 lid_ctl
->handle
= handle
;
2389 sysfs_attr_init(&lid_ctl
->attrs
[0].attr
);
2390 lid_ctl
->attrs
[LID_RESUME_S5
].attr
.name
= "lid_resume_S5";
2391 lid_ctl
->attrs
[LID_RESUME_S5
].attr
.mode
= S_IRUGO
| S_IWUSR
;
2392 lid_ctl
->attrs
[LID_RESUME_S5
].show
= sony_nc_lid_resume_show
;
2393 lid_ctl
->attrs
[LID_RESUME_S5
].store
= sony_nc_lid_resume_store
;
2395 if (handle
== 0x0119) {
2396 sysfs_attr_init(&lid_ctl
->attrs
[1].attr
);
2397 lid_ctl
->attrs
[LID_RESUME_S4
].attr
.name
= "lid_resume_S4";
2398 lid_ctl
->attrs
[LID_RESUME_S4
].attr
.mode
= S_IRUGO
| S_IWUSR
;
2399 lid_ctl
->attrs
[LID_RESUME_S4
].show
= sony_nc_lid_resume_show
;
2400 lid_ctl
->attrs
[LID_RESUME_S4
].store
= sony_nc_lid_resume_store
;
2402 sysfs_attr_init(&lid_ctl
->attrs
[2].attr
);
2403 lid_ctl
->attrs
[LID_RESUME_S3
].attr
.name
= "lid_resume_S3";
2404 lid_ctl
->attrs
[LID_RESUME_S3
].attr
.mode
= S_IRUGO
| S_IWUSR
;
2405 lid_ctl
->attrs
[LID_RESUME_S3
].show
= sony_nc_lid_resume_show
;
2406 lid_ctl
->attrs
[LID_RESUME_S3
].store
= sony_nc_lid_resume_store
;
2408 for (i
= 0; i
< LID_RESUME_MAX
&&
2409 lid_ctl
->attrs
[i
].attr
.name
; i
++) {
2410 result
= device_create_file(&pd
->dev
, &lid_ctl
->attrs
[i
]);
2418 for (i
--; i
>= 0; i
--)
2419 device_remove_file(&pd
->dev
, &lid_ctl
->attrs
[i
]);
2427 static void sony_nc_lid_resume_cleanup(struct platform_device
*pd
)
2432 for (i
= 0; i
< LID_RESUME_MAX
; i
++) {
2433 if (!lid_ctl
->attrs
[i
].attr
.name
)
2436 device_remove_file(&pd
->dev
, &lid_ctl
->attrs
[i
]);
2444 /* GFX Switch position */
2450 struct snc_gfx_switch_control
{
2451 struct device_attribute attr
;
2452 unsigned int handle
;
2454 static struct snc_gfx_switch_control
*gfxs_ctl
;
2456 /* returns 0 for speed, 1 for stamina */
2457 static int __sony_nc_gfx_switch_status_get(void)
2459 unsigned int result
;
2461 if (sony_call_snc_handle(gfxs_ctl
->handle
,
2462 gfxs_ctl
->handle
== 0x015B ? 0x0000 : 0x0100,
2466 switch (gfxs_ctl
->handle
) {
2468 /* 1: discrete GFX (speed)
2469 * 0: integrated GFX (stamina)
2471 return result
& 0x1 ? SPEED
: STAMINA
;
2474 /* 0: discrete GFX (speed)
2475 * 1: integrated GFX (stamina)
2477 return result
& 0x1 ? STAMINA
: SPEED
;
2480 /* it's a more elaborated bitmask, for now:
2481 * 2: integrated GFX (stamina)
2482 * 0: discrete GFX (speed)
2484 dprintk("GFX Status: 0x%x\n", result
);
2485 return result
& 0x80 ? AUTO
:
2486 result
& 0x02 ? STAMINA
: SPEED
;
2492 static ssize_t
sony_nc_gfx_switch_status_show(struct device
*dev
,
2493 struct device_attribute
*attr
,
2496 int pos
= __sony_nc_gfx_switch_status_get();
2501 return snprintf(buffer
, PAGE_SIZE
, "%s\n",
2502 pos
== SPEED
? "speed" :
2503 pos
== STAMINA
? "stamina" :
2504 pos
== AUTO
? "auto" : "unknown");
2507 static int sony_nc_gfx_switch_setup(struct platform_device
*pd
,
2508 unsigned int handle
)
2510 unsigned int result
;
2512 gfxs_ctl
= kzalloc(sizeof(struct snc_gfx_switch_control
), GFP_KERNEL
);
2516 gfxs_ctl
->handle
= handle
;
2518 sysfs_attr_init(&gfxs_ctl
->attr
.attr
);
2519 gfxs_ctl
->attr
.attr
.name
= "gfx_switch_status";
2520 gfxs_ctl
->attr
.attr
.mode
= S_IRUGO
;
2521 gfxs_ctl
->attr
.show
= sony_nc_gfx_switch_status_show
;
2523 result
= device_create_file(&pd
->dev
, &gfxs_ctl
->attr
);
2536 static void sony_nc_gfx_switch_cleanup(struct platform_device
*pd
)
2539 device_remove_file(&pd
->dev
, &gfxs_ctl
->attr
);
2546 /* High speed charging function */
2547 static struct device_attribute
*hsc_handle
;
2549 static ssize_t
sony_nc_highspeed_charging_store(struct device
*dev
,
2550 struct device_attribute
*attr
,
2551 const char *buffer
, size_t count
)
2553 unsigned int result
;
2554 unsigned long value
;
2559 if (kstrtoul(buffer
, 10, &value
) || value
> 1)
2562 if (sony_call_snc_handle(0x0131, value
<< 0x10 | 0x0200, &result
))
2568 static ssize_t
sony_nc_highspeed_charging_show(struct device
*dev
,
2569 struct device_attribute
*attr
, char *buffer
)
2571 unsigned int result
;
2573 if (sony_call_snc_handle(0x0131, 0x0100, &result
))
2576 return snprintf(buffer
, PAGE_SIZE
, "%d\n", result
& 0x01);
2579 static int sony_nc_highspeed_charging_setup(struct platform_device
*pd
)
2581 unsigned int result
;
2583 if (sony_call_snc_handle(0x0131, 0x0000, &result
) || !(result
& 0x01)) {
2584 /* some models advertise the handle but have no implementation
2587 pr_info("No High Speed Charging capability found\n");
2591 hsc_handle
= kzalloc(sizeof(struct device_attribute
), GFP_KERNEL
);
2595 sysfs_attr_init(&hsc_handle
->attr
);
2596 hsc_handle
->attr
.name
= "battery_highspeed_charging";
2597 hsc_handle
->attr
.mode
= S_IRUGO
| S_IWUSR
;
2598 hsc_handle
->show
= sony_nc_highspeed_charging_show
;
2599 hsc_handle
->store
= sony_nc_highspeed_charging_store
;
2601 result
= device_create_file(&pd
->dev
, hsc_handle
);
2611 static void sony_nc_highspeed_charging_cleanup(struct platform_device
*pd
)
2614 device_remove_file(&pd
->dev
, hsc_handle
);
2620 /* low battery function */
2621 static struct device_attribute
*lowbatt_handle
;
2623 static ssize_t
sony_nc_lowbatt_store(struct device
*dev
,
2624 struct device_attribute
*attr
,
2625 const char *buffer
, size_t count
)
2627 unsigned int result
;
2628 unsigned long value
;
2633 if (kstrtoul(buffer
, 10, &value
) || value
> 1)
2636 if (sony_call_snc_handle(0x0121, value
<< 8, &result
))
2642 static ssize_t
sony_nc_lowbatt_show(struct device
*dev
,
2643 struct device_attribute
*attr
, char *buffer
)
2645 unsigned int result
;
2647 if (sony_call_snc_handle(0x0121, 0x0200, &result
))
2650 return snprintf(buffer
, PAGE_SIZE
, "%d\n", result
& 1);
2653 static int sony_nc_lowbatt_setup(struct platform_device
*pd
)
2655 unsigned int result
;
2657 lowbatt_handle
= kzalloc(sizeof(struct device_attribute
), GFP_KERNEL
);
2658 if (!lowbatt_handle
)
2661 sysfs_attr_init(&lowbatt_handle
->attr
);
2662 lowbatt_handle
->attr
.name
= "lowbatt_hibernate";
2663 lowbatt_handle
->attr
.mode
= S_IRUGO
| S_IWUSR
;
2664 lowbatt_handle
->show
= sony_nc_lowbatt_show
;
2665 lowbatt_handle
->store
= sony_nc_lowbatt_store
;
2667 result
= device_create_file(&pd
->dev
, lowbatt_handle
);
2669 kfree(lowbatt_handle
);
2670 lowbatt_handle
= NULL
;
2677 static void sony_nc_lowbatt_cleanup(struct platform_device
*pd
)
2679 if (lowbatt_handle
) {
2680 device_remove_file(&pd
->dev
, lowbatt_handle
);
2681 kfree(lowbatt_handle
);
2682 lowbatt_handle
= NULL
;
2686 /* fan speed function */
2687 static struct device_attribute
*fan_handle
, *hsf_handle
;
2689 static ssize_t
sony_nc_hsfan_store(struct device
*dev
,
2690 struct device_attribute
*attr
,
2691 const char *buffer
, size_t count
)
2693 unsigned int result
;
2694 unsigned long value
;
2699 if (kstrtoul(buffer
, 10, &value
) || value
> 1)
2702 if (sony_call_snc_handle(0x0149, value
<< 0x10 | 0x0200, &result
))
2708 static ssize_t
sony_nc_hsfan_show(struct device
*dev
,
2709 struct device_attribute
*attr
, char *buffer
)
2711 unsigned int result
;
2713 if (sony_call_snc_handle(0x0149, 0x0100, &result
))
2716 return snprintf(buffer
, PAGE_SIZE
, "%d\n", result
& 0x01);
2719 static ssize_t
sony_nc_fanspeed_show(struct device
*dev
,
2720 struct device_attribute
*attr
, char *buffer
)
2722 unsigned int result
;
2724 if (sony_call_snc_handle(0x0149, 0x0300, &result
))
2727 return snprintf(buffer
, PAGE_SIZE
, "%d\n", result
& 0xff);
2730 static int sony_nc_fanspeed_setup(struct platform_device
*pd
)
2732 unsigned int result
;
2734 fan_handle
= kzalloc(sizeof(struct device_attribute
), GFP_KERNEL
);
2738 hsf_handle
= kzalloc(sizeof(struct device_attribute
), GFP_KERNEL
);
2741 goto out_hsf_handle_alloc
;
2744 sysfs_attr_init(&fan_handle
->attr
);
2745 fan_handle
->attr
.name
= "fanspeed";
2746 fan_handle
->attr
.mode
= S_IRUGO
;
2747 fan_handle
->show
= sony_nc_fanspeed_show
;
2748 fan_handle
->store
= NULL
;
2750 sysfs_attr_init(&hsf_handle
->attr
);
2751 hsf_handle
->attr
.name
= "fan_forced";
2752 hsf_handle
->attr
.mode
= S_IRUGO
| S_IWUSR
;
2753 hsf_handle
->show
= sony_nc_hsfan_show
;
2754 hsf_handle
->store
= sony_nc_hsfan_store
;
2756 result
= device_create_file(&pd
->dev
, fan_handle
);
2758 goto out_fan_handle
;
2760 result
= device_create_file(&pd
->dev
, hsf_handle
);
2762 goto out_hsf_handle
;
2767 device_remove_file(&pd
->dev
, fan_handle
);
2773 out_hsf_handle_alloc
:
2779 static void sony_nc_fanspeed_cleanup(struct platform_device
*pd
)
2782 device_remove_file(&pd
->dev
, fan_handle
);
2787 device_remove_file(&pd
->dev
, hsf_handle
);
2793 /* USB charge function */
2794 static struct device_attribute
*uc_handle
;
2796 static ssize_t
sony_nc_usb_charge_store(struct device
*dev
,
2797 struct device_attribute
*attr
,
2798 const char *buffer
, size_t count
)
2800 unsigned int result
;
2801 unsigned long value
;
2806 if (kstrtoul(buffer
, 10, &value
) || value
> 1)
2809 if (sony_call_snc_handle(0x0155, value
<< 0x10 | 0x0100, &result
))
2815 static ssize_t
sony_nc_usb_charge_show(struct device
*dev
,
2816 struct device_attribute
*attr
, char *buffer
)
2818 unsigned int result
;
2820 if (sony_call_snc_handle(0x0155, 0x0000, &result
))
2823 return snprintf(buffer
, PAGE_SIZE
, "%d\n", result
& 0x01);
2826 static int sony_nc_usb_charge_setup(struct platform_device
*pd
)
2828 unsigned int result
;
2830 if (sony_call_snc_handle(0x0155, 0x0000, &result
) || !(result
& 0x01)) {
2831 /* some models advertise the handle but have no implementation
2834 pr_info("No USB Charge capability found\n");
2838 uc_handle
= kzalloc(sizeof(struct device_attribute
), GFP_KERNEL
);
2842 sysfs_attr_init(&uc_handle
->attr
);
2843 uc_handle
->attr
.name
= "usb_charge";
2844 uc_handle
->attr
.mode
= S_IRUGO
| S_IWUSR
;
2845 uc_handle
->show
= sony_nc_usb_charge_show
;
2846 uc_handle
->store
= sony_nc_usb_charge_store
;
2848 result
= device_create_file(&pd
->dev
, uc_handle
);
2858 static void sony_nc_usb_charge_cleanup(struct platform_device
*pd
)
2861 device_remove_file(&pd
->dev
, uc_handle
);
2867 /* Panel ID function */
2868 static struct device_attribute
*panel_handle
;
2870 static ssize_t
sony_nc_panelid_show(struct device
*dev
,
2871 struct device_attribute
*attr
, char *buffer
)
2873 unsigned int result
;
2875 if (sony_call_snc_handle(0x011D, 0x0000, &result
))
2878 return snprintf(buffer
, PAGE_SIZE
, "%d\n", result
);
2881 static int sony_nc_panelid_setup(struct platform_device
*pd
)
2883 unsigned int result
;
2885 panel_handle
= kzalloc(sizeof(struct device_attribute
), GFP_KERNEL
);
2889 sysfs_attr_init(&panel_handle
->attr
);
2890 panel_handle
->attr
.name
= "panel_id";
2891 panel_handle
->attr
.mode
= S_IRUGO
;
2892 panel_handle
->show
= sony_nc_panelid_show
;
2893 panel_handle
->store
= NULL
;
2895 result
= device_create_file(&pd
->dev
, panel_handle
);
2897 kfree(panel_handle
);
2898 panel_handle
= NULL
;
2905 static void sony_nc_panelid_cleanup(struct platform_device
*pd
)
2908 device_remove_file(&pd
->dev
, panel_handle
);
2909 kfree(panel_handle
);
2910 panel_handle
= NULL
;
2914 /* smart connect function */
2915 static struct device_attribute
*sc_handle
;
2917 static ssize_t
sony_nc_smart_conn_store(struct device
*dev
,
2918 struct device_attribute
*attr
,
2919 const char *buffer
, size_t count
)
2921 unsigned int result
;
2922 unsigned long value
;
2927 if (kstrtoul(buffer
, 10, &value
) || value
> 1)
2930 if (sony_call_snc_handle(0x0168, value
<< 0x10, &result
))
2936 static int sony_nc_smart_conn_setup(struct platform_device
*pd
)
2938 unsigned int result
;
2940 sc_handle
= kzalloc(sizeof(struct device_attribute
), GFP_KERNEL
);
2944 sysfs_attr_init(&sc_handle
->attr
);
2945 sc_handle
->attr
.name
= "smart_connect";
2946 sc_handle
->attr
.mode
= S_IWUSR
;
2947 sc_handle
->show
= NULL
;
2948 sc_handle
->store
= sony_nc_smart_conn_store
;
2950 result
= device_create_file(&pd
->dev
, sc_handle
);
2960 static void sony_nc_smart_conn_cleanup(struct platform_device
*pd
)
2963 device_remove_file(&pd
->dev
, sc_handle
);
2969 /* Touchpad enable/disable */
2970 struct touchpad_control
{
2971 struct device_attribute attr
;
2974 static struct touchpad_control
*tp_ctl
;
2976 static ssize_t
sony_nc_touchpad_store(struct device
*dev
,
2977 struct device_attribute
*attr
, const char *buffer
, size_t count
)
2979 unsigned int result
;
2980 unsigned long value
;
2985 if (kstrtoul(buffer
, 10, &value
) || value
> 1)
2988 /* sysfs: 0 disabled, 1 enabled
2989 * EC: 0 enabled, 1 disabled
2991 if (sony_call_snc_handle(tp_ctl
->handle
,
2992 (!value
<< 0x10) | 0x100, &result
))
2998 static ssize_t
sony_nc_touchpad_show(struct device
*dev
,
2999 struct device_attribute
*attr
, char *buffer
)
3001 unsigned int result
;
3003 if (sony_call_snc_handle(tp_ctl
->handle
, 0x000, &result
))
3006 return snprintf(buffer
, PAGE_SIZE
, "%d\n", !(result
& 0x01));
3009 static int sony_nc_touchpad_setup(struct platform_device
*pd
,
3010 unsigned int handle
)
3014 tp_ctl
= kzalloc(sizeof(struct touchpad_control
), GFP_KERNEL
);
3018 tp_ctl
->handle
= handle
;
3020 sysfs_attr_init(&tp_ctl
->attr
.attr
);
3021 tp_ctl
->attr
.attr
.name
= "touchpad";
3022 tp_ctl
->attr
.attr
.mode
= S_IRUGO
| S_IWUSR
;
3023 tp_ctl
->attr
.show
= sony_nc_touchpad_show
;
3024 tp_ctl
->attr
.store
= sony_nc_touchpad_store
;
3026 ret
= device_create_file(&pd
->dev
, &tp_ctl
->attr
);
3035 static void sony_nc_touchpad_cleanup(struct platform_device
*pd
)
3038 device_remove_file(&pd
->dev
, &tp_ctl
->attr
);
3044 static void sony_nc_backlight_ng_read_limits(int handle
,
3045 struct sony_backlight_props
*props
)
3049 int lvl_table_len
= 0;
3050 u8 min
= 0xff, max
= 0x00;
3051 unsigned char buffer
[32] = { 0 };
3053 props
->handle
= handle
;
3055 props
->maxlvl
= 0xff;
3057 offset
= sony_find_snc_handle(handle
);
3059 /* try to read the boundaries from ACPI tables, if we fail the above
3060 * defaults should be reasonable
3062 i
= sony_nc_buffer_call(sony_nc_acpi_handle
, "SN06", &offset
, buffer
,
3079 /* the buffer lists brightness levels available, brightness levels are
3080 * from position 0 to 8 in the array, other values are used by ALS
3083 for (i
= 0; i
< lvl_table_len
&& i
< ARRAY_SIZE(buffer
); i
++) {
3085 dprintk("Brightness level: %d\n", buffer
[i
]);
3090 if (buffer
[i
] > max
)
3092 if (buffer
[i
] < min
)
3095 props
->offset
= min
;
3096 props
->maxlvl
= max
;
3097 dprintk("Brightness levels: min=%d max=%d\n", props
->offset
,
3101 static void sony_nc_backlight_setup(void)
3103 int max_brightness
= 0;
3104 const struct backlight_ops
*ops
= NULL
;
3105 struct backlight_properties props
;
3107 if (sony_find_snc_handle(0x12f) >= 0) {
3108 ops
= &sony_backlight_ng_ops
;
3109 sony_bl_props
.cmd_base
= 0x0100;
3110 sony_nc_backlight_ng_read_limits(0x12f, &sony_bl_props
);
3111 max_brightness
= sony_bl_props
.maxlvl
- sony_bl_props
.offset
;
3113 } else if (sony_find_snc_handle(0x137) >= 0) {
3114 ops
= &sony_backlight_ng_ops
;
3115 sony_bl_props
.cmd_base
= 0x0100;
3116 sony_nc_backlight_ng_read_limits(0x137, &sony_bl_props
);
3117 max_brightness
= sony_bl_props
.maxlvl
- sony_bl_props
.offset
;
3119 } else if (sony_find_snc_handle(0x143) >= 0) {
3120 ops
= &sony_backlight_ng_ops
;
3121 sony_bl_props
.cmd_base
= 0x3000;
3122 sony_nc_backlight_ng_read_limits(0x143, &sony_bl_props
);
3123 max_brightness
= sony_bl_props
.maxlvl
- sony_bl_props
.offset
;
3125 } else if (sony_find_snc_handle(0x14b) >= 0) {
3126 ops
= &sony_backlight_ng_ops
;
3127 sony_bl_props
.cmd_base
= 0x3000;
3128 sony_nc_backlight_ng_read_limits(0x14b, &sony_bl_props
);
3129 max_brightness
= sony_bl_props
.maxlvl
- sony_bl_props
.offset
;
3131 } else if (sony_find_snc_handle(0x14c) >= 0) {
3132 ops
= &sony_backlight_ng_ops
;
3133 sony_bl_props
.cmd_base
= 0x3000;
3134 sony_nc_backlight_ng_read_limits(0x14c, &sony_bl_props
);
3135 max_brightness
= sony_bl_props
.maxlvl
- sony_bl_props
.offset
;
3137 } else if (acpi_has_method(sony_nc_acpi_handle
, "GBRT")) {
3138 ops
= &sony_backlight_ops
;
3139 max_brightness
= SONY_MAX_BRIGHTNESS
- 1;
3144 memset(&props
, 0, sizeof(struct backlight_properties
));
3145 props
.type
= BACKLIGHT_PLATFORM
;
3146 props
.max_brightness
= max_brightness
;
3147 sony_bl_props
.dev
= backlight_device_register("sony", NULL
,
3151 if (IS_ERR(sony_bl_props
.dev
)) {
3152 pr_warn("unable to register backlight device\n");
3153 sony_bl_props
.dev
= NULL
;
3155 sony_bl_props
.dev
->props
.brightness
=
3156 ops
->get_brightness(sony_bl_props
.dev
);
3159 static void sony_nc_backlight_cleanup(void)
3161 backlight_device_unregister(sony_bl_props
.dev
);
3164 static int sony_nc_add(struct acpi_device
*device
)
3168 struct sony_nc_value
*item
;
3170 sony_nc_acpi_device
= device
;
3171 strcpy(acpi_device_class(device
), "sony/hotkey");
3173 sony_nc_acpi_handle
= device
->handle
;
3175 /* read device status */
3176 result
= acpi_bus_get_status(device
);
3177 /* bail IFF the above call was successful and the device is not present */
3178 if (!result
&& !device
->status
.present
) {
3179 dprintk("Device not present\n");
3184 result
= sony_pf_add();
3189 status
= acpi_walk_namespace(ACPI_TYPE_METHOD
,
3190 sony_nc_acpi_handle
, 1, sony_walk_callback
,
3192 if (ACPI_FAILURE(status
)) {
3193 pr_warn("unable to walk acpi resources\n");
3199 result
= sony_laptop_setup_input(device
);
3201 pr_err("Unable to create input devices\n");
3205 if (acpi_has_method(sony_nc_acpi_handle
, "ECON")) {
3207 if (sony_nc_int_call(sony_nc_acpi_handle
, "ECON", &arg
, NULL
))
3208 dprintk("ECON Method failed\n");
3211 if (acpi_has_method(sony_nc_acpi_handle
, "SN00")) {
3212 dprintk("Doing SNC setup\n");
3213 /* retrieve the available handles */
3214 result
= sony_nc_handles_setup(sony_pf_device
);
3216 sony_nc_function_setup(device
, sony_pf_device
);
3219 if (acpi_video_get_backlight_type() == acpi_backlight_vendor
)
3220 sony_nc_backlight_setup();
3222 /* create sony_pf sysfs attributes related to the SNC device */
3223 for (item
= sony_nc_values
; item
->name
; ++item
) {
3225 if (!debug
&& item
->debug
)
3228 /* find the available acpiget as described in the DSDT */
3229 for (; item
->acpiget
&& *item
->acpiget
; ++item
->acpiget
) {
3230 if (acpi_has_method(sony_nc_acpi_handle
,
3232 dprintk("Found %s getter: %s\n",
3233 item
->name
, *item
->acpiget
);
3234 item
->devattr
.attr
.mode
|= S_IRUGO
;
3239 /* find the available acpiset as described in the DSDT */
3240 for (; item
->acpiset
&& *item
->acpiset
; ++item
->acpiset
) {
3241 if (acpi_has_method(sony_nc_acpi_handle
,
3243 dprintk("Found %s setter: %s\n",
3244 item
->name
, *item
->acpiset
);
3245 item
->devattr
.attr
.mode
|= S_IWUSR
;
3250 if (item
->devattr
.attr
.mode
!= 0) {
3252 device_create_file(&sony_pf_device
->dev
,
3259 pr_info("SNC setup done.\n");
3263 for (item
= sony_nc_values
; item
->name
; ++item
) {
3264 device_remove_file(&sony_pf_device
->dev
, &item
->devattr
);
3266 sony_nc_backlight_cleanup();
3267 sony_nc_function_cleanup(sony_pf_device
);
3268 sony_nc_handles_cleanup(sony_pf_device
);
3271 sony_laptop_remove_input();
3277 sony_nc_rfkill_cleanup();
3281 static int sony_nc_remove(struct acpi_device
*device
)
3283 struct sony_nc_value
*item
;
3285 sony_nc_backlight_cleanup();
3287 sony_nc_acpi_device
= NULL
;
3289 for (item
= sony_nc_values
; item
->name
; ++item
) {
3290 device_remove_file(&sony_pf_device
->dev
, &item
->devattr
);
3293 sony_nc_function_cleanup(sony_pf_device
);
3294 sony_nc_handles_cleanup(sony_pf_device
);
3296 sony_laptop_remove_input();
3297 dprintk(SONY_NC_DRIVER_NAME
" removed.\n");
3302 static const struct acpi_device_id sony_device_ids
[] = {
3307 MODULE_DEVICE_TABLE(acpi
, sony_device_ids
);
3309 static const struct acpi_device_id sony_nc_device_ids
[] = {
3314 static struct acpi_driver sony_nc_driver
= {
3315 .name
= SONY_NC_DRIVER_NAME
,
3316 .class = SONY_NC_CLASS
,
3317 .ids
= sony_nc_device_ids
,
3318 .owner
= THIS_MODULE
,
3321 .remove
= sony_nc_remove
,
3322 .notify
= sony_nc_notify
,
3324 .drv
.pm
= &sony_nc_pm
,
3327 /*********** SPIC (SNY6001) Device ***********/
3329 #define SONYPI_DEVICE_TYPE1 0x00000001
3330 #define SONYPI_DEVICE_TYPE2 0x00000002
3331 #define SONYPI_DEVICE_TYPE3 0x00000004
3333 #define SONYPI_TYPE1_OFFSET 0x04
3334 #define SONYPI_TYPE2_OFFSET 0x12
3335 #define SONYPI_TYPE3_OFFSET 0x12
3337 struct sony_pic_ioport
{
3338 struct acpi_resource_io io1
;
3339 struct acpi_resource_io io2
;
3340 struct list_head list
;
3343 struct sony_pic_irq
{
3344 struct acpi_resource_irq irq
;
3345 struct list_head list
;
3348 struct sonypi_eventtypes
{
3351 struct sonypi_event
*events
;
3354 struct sony_pic_dev
{
3355 struct acpi_device
*acpi_dev
;
3356 struct sony_pic_irq
*cur_irq
;
3357 struct sony_pic_ioport
*cur_ioport
;
3358 struct list_head interrupts
;
3359 struct list_head ioports
;
3361 struct sonypi_eventtypes
*event_types
;
3362 int (*handle_irq
)(const u8
, const u8
);
3370 static struct sony_pic_dev spic_dev
= {
3371 .interrupts
= LIST_HEAD_INIT(spic_dev
.interrupts
),
3372 .ioports
= LIST_HEAD_INIT(spic_dev
.ioports
),
3375 static int spic_drv_registered
;
3378 #define SONYPI_JOGGER_MASK 0x00000001
3379 #define SONYPI_CAPTURE_MASK 0x00000002
3380 #define SONYPI_FNKEY_MASK 0x00000004
3381 #define SONYPI_BLUETOOTH_MASK 0x00000008
3382 #define SONYPI_PKEY_MASK 0x00000010
3383 #define SONYPI_BACK_MASK 0x00000020
3384 #define SONYPI_HELP_MASK 0x00000040
3385 #define SONYPI_LID_MASK 0x00000080
3386 #define SONYPI_ZOOM_MASK 0x00000100
3387 #define SONYPI_THUMBPHRASE_MASK 0x00000200
3388 #define SONYPI_MEYE_MASK 0x00000400
3389 #define SONYPI_MEMORYSTICK_MASK 0x00000800
3390 #define SONYPI_BATTERY_MASK 0x00001000
3391 #define SONYPI_WIRELESS_MASK 0x00002000
3393 struct sonypi_event
{
3398 /* The set of possible button release events */
3399 static struct sonypi_event sonypi_releaseev
[] = {
3400 { 0x00, SONYPI_EVENT_ANYBUTTON_RELEASED
},
3404 /* The set of possible jogger events */
3405 static struct sonypi_event sonypi_joggerev
[] = {
3406 { 0x1f, SONYPI_EVENT_JOGDIAL_UP
},
3407 { 0x01, SONYPI_EVENT_JOGDIAL_DOWN
},
3408 { 0x5f, SONYPI_EVENT_JOGDIAL_UP_PRESSED
},
3409 { 0x41, SONYPI_EVENT_JOGDIAL_DOWN_PRESSED
},
3410 { 0x1e, SONYPI_EVENT_JOGDIAL_FAST_UP
},
3411 { 0x02, SONYPI_EVENT_JOGDIAL_FAST_DOWN
},
3412 { 0x5e, SONYPI_EVENT_JOGDIAL_FAST_UP_PRESSED
},
3413 { 0x42, SONYPI_EVENT_JOGDIAL_FAST_DOWN_PRESSED
},
3414 { 0x1d, SONYPI_EVENT_JOGDIAL_VFAST_UP
},
3415 { 0x03, SONYPI_EVENT_JOGDIAL_VFAST_DOWN
},
3416 { 0x5d, SONYPI_EVENT_JOGDIAL_VFAST_UP_PRESSED
},
3417 { 0x43, SONYPI_EVENT_JOGDIAL_VFAST_DOWN_PRESSED
},
3418 { 0x40, SONYPI_EVENT_JOGDIAL_PRESSED
},
3422 /* The set of possible capture button events */
3423 static struct sonypi_event sonypi_captureev
[] = {
3424 { 0x05, SONYPI_EVENT_CAPTURE_PARTIALPRESSED
},
3425 { 0x07, SONYPI_EVENT_CAPTURE_PRESSED
},
3426 { 0x40, SONYPI_EVENT_CAPTURE_PRESSED
},
3427 { 0x01, SONYPI_EVENT_CAPTURE_PARTIALRELEASED
},
3431 /* The set of possible fnkeys events */
3432 static struct sonypi_event sonypi_fnkeyev
[] = {
3433 { 0x10, SONYPI_EVENT_FNKEY_ESC
},
3434 { 0x11, SONYPI_EVENT_FNKEY_F1
},
3435 { 0x12, SONYPI_EVENT_FNKEY_F2
},
3436 { 0x13, SONYPI_EVENT_FNKEY_F3
},
3437 { 0x14, SONYPI_EVENT_FNKEY_F4
},
3438 { 0x15, SONYPI_EVENT_FNKEY_F5
},
3439 { 0x16, SONYPI_EVENT_FNKEY_F6
},
3440 { 0x17, SONYPI_EVENT_FNKEY_F7
},
3441 { 0x18, SONYPI_EVENT_FNKEY_F8
},
3442 { 0x19, SONYPI_EVENT_FNKEY_F9
},
3443 { 0x1a, SONYPI_EVENT_FNKEY_F10
},
3444 { 0x1b, SONYPI_EVENT_FNKEY_F11
},
3445 { 0x1c, SONYPI_EVENT_FNKEY_F12
},
3446 { 0x1f, SONYPI_EVENT_FNKEY_RELEASED
},
3447 { 0x21, SONYPI_EVENT_FNKEY_1
},
3448 { 0x22, SONYPI_EVENT_FNKEY_2
},
3449 { 0x31, SONYPI_EVENT_FNKEY_D
},
3450 { 0x32, SONYPI_EVENT_FNKEY_E
},
3451 { 0x33, SONYPI_EVENT_FNKEY_F
},
3452 { 0x34, SONYPI_EVENT_FNKEY_S
},
3453 { 0x35, SONYPI_EVENT_FNKEY_B
},
3454 { 0x36, SONYPI_EVENT_FNKEY_ONLY
},
3458 /* The set of possible program key events */
3459 static struct sonypi_event sonypi_pkeyev
[] = {
3460 { 0x01, SONYPI_EVENT_PKEY_P1
},
3461 { 0x02, SONYPI_EVENT_PKEY_P2
},
3462 { 0x04, SONYPI_EVENT_PKEY_P3
},
3463 { 0x20, SONYPI_EVENT_PKEY_P1
},
3467 /* The set of possible bluetooth events */
3468 static struct sonypi_event sonypi_blueev
[] = {
3469 { 0x55, SONYPI_EVENT_BLUETOOTH_PRESSED
},
3470 { 0x59, SONYPI_EVENT_BLUETOOTH_ON
},
3471 { 0x5a, SONYPI_EVENT_BLUETOOTH_OFF
},
3475 /* The set of possible wireless events */
3476 static struct sonypi_event sonypi_wlessev
[] = {
3477 { 0x59, SONYPI_EVENT_IGNORE
},
3478 { 0x5a, SONYPI_EVENT_IGNORE
},
3482 /* The set of possible back button events */
3483 static struct sonypi_event sonypi_backev
[] = {
3484 { 0x20, SONYPI_EVENT_BACK_PRESSED
},
3488 /* The set of possible help button events */
3489 static struct sonypi_event sonypi_helpev
[] = {
3490 { 0x3b, SONYPI_EVENT_HELP_PRESSED
},
3495 /* The set of possible lid events */
3496 static struct sonypi_event sonypi_lidev
[] = {
3497 { 0x51, SONYPI_EVENT_LID_CLOSED
},
3498 { 0x50, SONYPI_EVENT_LID_OPENED
},
3502 /* The set of possible zoom events */
3503 static struct sonypi_event sonypi_zoomev
[] = {
3504 { 0x39, SONYPI_EVENT_ZOOM_PRESSED
},
3505 { 0x10, SONYPI_EVENT_ZOOM_IN_PRESSED
},
3506 { 0x20, SONYPI_EVENT_ZOOM_OUT_PRESSED
},
3507 { 0x04, SONYPI_EVENT_ZOOM_PRESSED
},
3511 /* The set of possible thumbphrase events */
3512 static struct sonypi_event sonypi_thumbphraseev
[] = {
3513 { 0x3a, SONYPI_EVENT_THUMBPHRASE_PRESSED
},
3517 /* The set of possible motioneye camera events */
3518 static struct sonypi_event sonypi_meyeev
[] = {
3519 { 0x00, SONYPI_EVENT_MEYE_FACE
},
3520 { 0x01, SONYPI_EVENT_MEYE_OPPOSITE
},
3524 /* The set of possible memorystick events */
3525 static struct sonypi_event sonypi_memorystickev
[] = {
3526 { 0x53, SONYPI_EVENT_MEMORYSTICK_INSERT
},
3527 { 0x54, SONYPI_EVENT_MEMORYSTICK_EJECT
},
3531 /* The set of possible battery events */
3532 static struct sonypi_event sonypi_batteryev
[] = {
3533 { 0x20, SONYPI_EVENT_BATTERY_INSERT
},
3534 { 0x30, SONYPI_EVENT_BATTERY_REMOVE
},
3538 /* The set of possible volume events */
3539 static struct sonypi_event sonypi_volumeev
[] = {
3540 { 0x01, SONYPI_EVENT_VOLUME_INC_PRESSED
},
3541 { 0x02, SONYPI_EVENT_VOLUME_DEC_PRESSED
},
3545 /* The set of possible brightness events */
3546 static struct sonypi_event sonypi_brightnessev
[] = {
3547 { 0x80, SONYPI_EVENT_BRIGHTNESS_PRESSED
},
3551 static struct sonypi_eventtypes type1_events
[] = {
3552 { 0, 0xffffffff, sonypi_releaseev
},
3553 { 0x70, SONYPI_MEYE_MASK
, sonypi_meyeev
},
3554 { 0x30, SONYPI_LID_MASK
, sonypi_lidev
},
3555 { 0x60, SONYPI_CAPTURE_MASK
, sonypi_captureev
},
3556 { 0x10, SONYPI_JOGGER_MASK
, sonypi_joggerev
},
3557 { 0x20, SONYPI_FNKEY_MASK
, sonypi_fnkeyev
},
3558 { 0x30, SONYPI_BLUETOOTH_MASK
, sonypi_blueev
},
3559 { 0x40, SONYPI_PKEY_MASK
, sonypi_pkeyev
},
3560 { 0x30, SONYPI_MEMORYSTICK_MASK
, sonypi_memorystickev
},
3561 { 0x40, SONYPI_BATTERY_MASK
, sonypi_batteryev
},
3564 static struct sonypi_eventtypes type2_events
[] = {
3565 { 0, 0xffffffff, sonypi_releaseev
},
3566 { 0x38, SONYPI_LID_MASK
, sonypi_lidev
},
3567 { 0x11, SONYPI_JOGGER_MASK
, sonypi_joggerev
},
3568 { 0x61, SONYPI_CAPTURE_MASK
, sonypi_captureev
},
3569 { 0x21, SONYPI_FNKEY_MASK
, sonypi_fnkeyev
},
3570 { 0x31, SONYPI_BLUETOOTH_MASK
, sonypi_blueev
},
3571 { 0x08, SONYPI_PKEY_MASK
, sonypi_pkeyev
},
3572 { 0x11, SONYPI_BACK_MASK
, sonypi_backev
},
3573 { 0x21, SONYPI_HELP_MASK
, sonypi_helpev
},
3574 { 0x21, SONYPI_ZOOM_MASK
, sonypi_zoomev
},
3575 { 0x20, SONYPI_THUMBPHRASE_MASK
, sonypi_thumbphraseev
},
3576 { 0x31, SONYPI_MEMORYSTICK_MASK
, sonypi_memorystickev
},
3577 { 0x41, SONYPI_BATTERY_MASK
, sonypi_batteryev
},
3578 { 0x31, SONYPI_PKEY_MASK
, sonypi_pkeyev
},
3581 static struct sonypi_eventtypes type3_events
[] = {
3582 { 0, 0xffffffff, sonypi_releaseev
},
3583 { 0x21, SONYPI_FNKEY_MASK
, sonypi_fnkeyev
},
3584 { 0x31, SONYPI_WIRELESS_MASK
, sonypi_wlessev
},
3585 { 0x31, SONYPI_MEMORYSTICK_MASK
, sonypi_memorystickev
},
3586 { 0x41, SONYPI_BATTERY_MASK
, sonypi_batteryev
},
3587 { 0x31, SONYPI_PKEY_MASK
, sonypi_pkeyev
},
3588 { 0x05, SONYPI_PKEY_MASK
, sonypi_pkeyev
},
3589 { 0x05, SONYPI_ZOOM_MASK
, sonypi_zoomev
},
3590 { 0x05, SONYPI_CAPTURE_MASK
, sonypi_captureev
},
3591 { 0x05, SONYPI_PKEY_MASK
, sonypi_volumeev
},
3592 { 0x05, SONYPI_PKEY_MASK
, sonypi_brightnessev
},
3596 /* low level spic calls */
3597 #define ITERATIONS_LONG 10000
3598 #define ITERATIONS_SHORT 10
3599 #define wait_on_command(command, iterations) { \
3600 unsigned int n = iterations; \
3601 while (--n && (command)) \
3604 dprintk("command failed at %s : %s (line %d)\n", \
3605 __FILE__, __func__, __LINE__); \
3608 static u8
sony_pic_call1(u8 dev
)
3612 wait_on_command(inb_p(spic_dev
.cur_ioport
->io1
.minimum
+ 4) & 2,
3614 outb(dev
, spic_dev
.cur_ioport
->io1
.minimum
+ 4);
3615 v1
= inb_p(spic_dev
.cur_ioport
->io1
.minimum
+ 4);
3616 v2
= inb_p(spic_dev
.cur_ioport
->io1
.minimum
);
3617 dprintk("sony_pic_call1(0x%.2x): 0x%.4x\n", dev
, (v2
<< 8) | v1
);
3621 static u8
sony_pic_call2(u8 dev
, u8 fn
)
3625 wait_on_command(inb_p(spic_dev
.cur_ioport
->io1
.minimum
+ 4) & 2,
3627 outb(dev
, spic_dev
.cur_ioport
->io1
.minimum
+ 4);
3628 wait_on_command(inb_p(spic_dev
.cur_ioport
->io1
.minimum
+ 4) & 2,
3630 outb(fn
, spic_dev
.cur_ioport
->io1
.minimum
);
3631 v1
= inb_p(spic_dev
.cur_ioport
->io1
.minimum
);
3632 dprintk("sony_pic_call2(0x%.2x - 0x%.2x): 0x%.4x\n", dev
, fn
, v1
);
3636 static u8
sony_pic_call3(u8 dev
, u8 fn
, u8 v
)
3640 wait_on_command(inb_p(spic_dev
.cur_ioport
->io1
.minimum
+ 4) & 2, ITERATIONS_LONG
);
3641 outb(dev
, spic_dev
.cur_ioport
->io1
.minimum
+ 4);
3642 wait_on_command(inb_p(spic_dev
.cur_ioport
->io1
.minimum
+ 4) & 2, ITERATIONS_LONG
);
3643 outb(fn
, spic_dev
.cur_ioport
->io1
.minimum
);
3644 wait_on_command(inb_p(spic_dev
.cur_ioport
->io1
.minimum
+ 4) & 2, ITERATIONS_LONG
);
3645 outb(v
, spic_dev
.cur_ioport
->io1
.minimum
);
3646 v1
= inb_p(spic_dev
.cur_ioport
->io1
.minimum
);
3647 dprintk("sony_pic_call3(0x%.2x - 0x%.2x - 0x%.2x): 0x%.4x\n",
3653 * minidrivers for SPIC models
3655 static int type3_handle_irq(const u8 data_mask
, const u8 ev
)
3658 * 0x31 could mean we have to take some extra action and wait for
3659 * the next irq for some Type3 models, it will generate a new
3660 * irq and we can read new data from the device:
3661 * - 0x5c and 0x5f requires 0xA0
3662 * - 0x61 requires 0xB3
3664 if (data_mask
== 0x31) {
3665 if (ev
== 0x5c || ev
== 0x5f)
3666 sony_pic_call1(0xA0);
3667 else if (ev
== 0x61)
3668 sony_pic_call1(0xB3);
3674 static void sony_pic_detect_device_type(struct sony_pic_dev
*dev
)
3676 struct pci_dev
*pcidev
;
3678 pcidev
= pci_get_device(PCI_VENDOR_ID_INTEL
,
3679 PCI_DEVICE_ID_INTEL_82371AB_3
, NULL
);
3681 dev
->model
= SONYPI_DEVICE_TYPE1
;
3682 dev
->evport_offset
= SONYPI_TYPE1_OFFSET
;
3683 dev
->event_types
= type1_events
;
3687 pcidev
= pci_get_device(PCI_VENDOR_ID_INTEL
,
3688 PCI_DEVICE_ID_INTEL_ICH6_1
, NULL
);
3690 dev
->model
= SONYPI_DEVICE_TYPE2
;
3691 dev
->evport_offset
= SONYPI_TYPE2_OFFSET
;
3692 dev
->event_types
= type2_events
;
3696 pcidev
= pci_get_device(PCI_VENDOR_ID_INTEL
,
3697 PCI_DEVICE_ID_INTEL_ICH7_1
, NULL
);
3699 dev
->model
= SONYPI_DEVICE_TYPE3
;
3700 dev
->handle_irq
= type3_handle_irq
;
3701 dev
->evport_offset
= SONYPI_TYPE3_OFFSET
;
3702 dev
->event_types
= type3_events
;
3706 pcidev
= pci_get_device(PCI_VENDOR_ID_INTEL
,
3707 PCI_DEVICE_ID_INTEL_ICH8_4
, NULL
);
3709 dev
->model
= SONYPI_DEVICE_TYPE3
;
3710 dev
->handle_irq
= type3_handle_irq
;
3711 dev
->evport_offset
= SONYPI_TYPE3_OFFSET
;
3712 dev
->event_types
= type3_events
;
3716 pcidev
= pci_get_device(PCI_VENDOR_ID_INTEL
,
3717 PCI_DEVICE_ID_INTEL_ICH9_1
, NULL
);
3719 dev
->model
= SONYPI_DEVICE_TYPE3
;
3720 dev
->handle_irq
= type3_handle_irq
;
3721 dev
->evport_offset
= SONYPI_TYPE3_OFFSET
;
3722 dev
->event_types
= type3_events
;
3727 dev
->model
= SONYPI_DEVICE_TYPE2
;
3728 dev
->evport_offset
= SONYPI_TYPE2_OFFSET
;
3729 dev
->event_types
= type2_events
;
3732 pci_dev_put(pcidev
);
3734 pr_info("detected Type%d model\n",
3735 dev
->model
== SONYPI_DEVICE_TYPE1
? 1 :
3736 dev
->model
== SONYPI_DEVICE_TYPE2
? 2 : 3);
3739 /* camera tests and poweron/poweroff */
3740 #define SONYPI_CAMERA_PICTURE 5
3741 #define SONYPI_CAMERA_CONTROL 0x10
3743 #define SONYPI_CAMERA_BRIGHTNESS 0
3744 #define SONYPI_CAMERA_CONTRAST 1
3745 #define SONYPI_CAMERA_HUE 2
3746 #define SONYPI_CAMERA_COLOR 3
3747 #define SONYPI_CAMERA_SHARPNESS 4
3749 #define SONYPI_CAMERA_EXPOSURE_MASK 0xC
3750 #define SONYPI_CAMERA_WHITE_BALANCE_MASK 0x3
3751 #define SONYPI_CAMERA_PICTURE_MODE_MASK 0x30
3752 #define SONYPI_CAMERA_MUTE_MASK 0x40
3754 /* the rest don't need a loop until not 0xff */
3755 #define SONYPI_CAMERA_AGC 6
3756 #define SONYPI_CAMERA_AGC_MASK 0x30
3757 #define SONYPI_CAMERA_SHUTTER_MASK 0x7
3759 #define SONYPI_CAMERA_SHUTDOWN_REQUEST 7
3760 #define SONYPI_CAMERA_CONTROL 0x10
3762 #define SONYPI_CAMERA_STATUS 7
3763 #define SONYPI_CAMERA_STATUS_READY 0x2
3764 #define SONYPI_CAMERA_STATUS_POSITION 0x4
3766 #define SONYPI_DIRECTION_BACKWARDS 0x4
3768 #define SONYPI_CAMERA_REVISION 8
3769 #define SONYPI_CAMERA_ROMVERSION 9
3771 static int __sony_pic_camera_ready(void)
3775 v
= sony_pic_call2(0x8f, SONYPI_CAMERA_STATUS
);
3776 return (v
!= 0xff && (v
& SONYPI_CAMERA_STATUS_READY
));
3779 static int __sony_pic_camera_off(void)
3782 pr_warn("camera control not enabled\n");
3786 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_PICTURE
,
3787 SONYPI_CAMERA_MUTE_MASK
),
3790 if (spic_dev
.camera_power
) {
3791 sony_pic_call2(0x91, 0);
3792 spic_dev
.camera_power
= 0;
3797 static int __sony_pic_camera_on(void)
3802 pr_warn("camera control not enabled\n");
3806 if (spic_dev
.camera_power
)
3809 for (j
= 5; j
> 0; j
--) {
3811 for (x
= 0; x
< 100 && sony_pic_call2(0x91, 0x1); x
++)
3813 sony_pic_call1(0x93);
3815 for (i
= 400; i
> 0; i
--) {
3816 if (__sony_pic_camera_ready())
3825 pr_warn("failed to power on camera\n");
3829 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_CONTROL
,
3833 spic_dev
.camera_power
= 1;
3837 /* External camera command (exported to the motion eye v4l driver) */
3838 int sony_pic_camera_command(int command
, u8 value
)
3843 mutex_lock(&spic_dev
.lock
);
3846 case SONY_PIC_COMMAND_SETCAMERA
:
3848 __sony_pic_camera_on();
3850 __sony_pic_camera_off();
3852 case SONY_PIC_COMMAND_SETCAMERABRIGHTNESS
:
3853 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_BRIGHTNESS
, value
),
3856 case SONY_PIC_COMMAND_SETCAMERACONTRAST
:
3857 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_CONTRAST
, value
),
3860 case SONY_PIC_COMMAND_SETCAMERAHUE
:
3861 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_HUE
, value
),
3864 case SONY_PIC_COMMAND_SETCAMERACOLOR
:
3865 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_COLOR
, value
),
3868 case SONY_PIC_COMMAND_SETCAMERASHARPNESS
:
3869 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_SHARPNESS
, value
),
3872 case SONY_PIC_COMMAND_SETCAMERAPICTURE
:
3873 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_PICTURE
, value
),
3876 case SONY_PIC_COMMAND_SETCAMERAAGC
:
3877 wait_on_command(sony_pic_call3(0x90, SONYPI_CAMERA_AGC
, value
),
3881 pr_err("sony_pic_camera_command invalid: %d\n", command
);
3884 mutex_unlock(&spic_dev
.lock
);
3887 EXPORT_SYMBOL(sony_pic_camera_command
);
3889 /* gprs/edge modem (SZ460N and SZ210P), thanks to Joshua Wise */
3890 static void __sony_pic_set_wwanpower(u8 state
)
3893 if (spic_dev
.wwan_power
== state
)
3895 sony_pic_call2(0xB0, state
);
3896 sony_pic_call1(0x82);
3897 spic_dev
.wwan_power
= state
;
3900 static ssize_t
sony_pic_wwanpower_store(struct device
*dev
,
3901 struct device_attribute
*attr
,
3902 const char *buffer
, size_t count
)
3904 unsigned long value
;
3908 if (kstrtoul(buffer
, 10, &value
))
3911 mutex_lock(&spic_dev
.lock
);
3912 __sony_pic_set_wwanpower(value
);
3913 mutex_unlock(&spic_dev
.lock
);
3918 static ssize_t
sony_pic_wwanpower_show(struct device
*dev
,
3919 struct device_attribute
*attr
, char *buffer
)
3922 mutex_lock(&spic_dev
.lock
);
3923 count
= snprintf(buffer
, PAGE_SIZE
, "%d\n", spic_dev
.wwan_power
);
3924 mutex_unlock(&spic_dev
.lock
);
3928 /* bluetooth subsystem power state */
3929 static void __sony_pic_set_bluetoothpower(u8 state
)
3932 if (spic_dev
.bluetooth_power
== state
)
3934 sony_pic_call2(0x96, state
);
3935 sony_pic_call1(0x82);
3936 spic_dev
.bluetooth_power
= state
;
3939 static ssize_t
sony_pic_bluetoothpower_store(struct device
*dev
,
3940 struct device_attribute
*attr
,
3941 const char *buffer
, size_t count
)
3943 unsigned long value
;
3947 if (kstrtoul(buffer
, 10, &value
))
3950 mutex_lock(&spic_dev
.lock
);
3951 __sony_pic_set_bluetoothpower(value
);
3952 mutex_unlock(&spic_dev
.lock
);
3957 static ssize_t
sony_pic_bluetoothpower_show(struct device
*dev
,
3958 struct device_attribute
*attr
, char *buffer
)
3961 mutex_lock(&spic_dev
.lock
);
3962 count
= snprintf(buffer
, PAGE_SIZE
, "%d\n", spic_dev
.bluetooth_power
);
3963 mutex_unlock(&spic_dev
.lock
);
3968 /* FAN0 information (reverse engineered from ACPI tables) */
3969 #define SONY_PIC_FAN0_STATUS 0x93
3970 static int sony_pic_set_fanspeed(unsigned long value
)
3972 return ec_write(SONY_PIC_FAN0_STATUS
, value
);
3975 static int sony_pic_get_fanspeed(u8
*value
)
3977 return ec_read(SONY_PIC_FAN0_STATUS
, value
);
3980 static ssize_t
sony_pic_fanspeed_store(struct device
*dev
,
3981 struct device_attribute
*attr
,
3982 const char *buffer
, size_t count
)
3984 unsigned long value
;
3988 if (kstrtoul(buffer
, 10, &value
))
3991 if (sony_pic_set_fanspeed(value
))
3997 static ssize_t
sony_pic_fanspeed_show(struct device
*dev
,
3998 struct device_attribute
*attr
, char *buffer
)
4001 if (sony_pic_get_fanspeed(&value
))
4004 return snprintf(buffer
, PAGE_SIZE
, "%d\n", value
);
4007 #define SPIC_ATTR(_name, _mode) \
4008 struct device_attribute spic_attr_##_name = __ATTR(_name, \
4009 _mode, sony_pic_## _name ##_show, \
4010 sony_pic_## _name ##_store)
4012 static SPIC_ATTR(bluetoothpower
, 0644);
4013 static SPIC_ATTR(wwanpower
, 0644);
4014 static SPIC_ATTR(fanspeed
, 0644);
4016 static struct attribute
*spic_attributes
[] = {
4017 &spic_attr_bluetoothpower
.attr
,
4018 &spic_attr_wwanpower
.attr
,
4019 &spic_attr_fanspeed
.attr
,
4023 static const struct attribute_group spic_attribute_group
= {
4024 .attrs
= spic_attributes
4027 /******** SONYPI compatibility **********/
4028 #ifdef CONFIG_SONYPI_COMPAT
4030 /* battery / brightness / temperature addresses */
4031 #define SONYPI_BAT_FLAGS 0x81
4032 #define SONYPI_LCD_LIGHT 0x96
4033 #define SONYPI_BAT1_PCTRM 0xa0
4034 #define SONYPI_BAT1_LEFT 0xa2
4035 #define SONYPI_BAT1_MAXRT 0xa4
4036 #define SONYPI_BAT2_PCTRM 0xa8
4037 #define SONYPI_BAT2_LEFT 0xaa
4038 #define SONYPI_BAT2_MAXRT 0xac
4039 #define SONYPI_BAT1_MAXTK 0xb0
4040 #define SONYPI_BAT1_FULL 0xb2
4041 #define SONYPI_BAT2_MAXTK 0xb8
4042 #define SONYPI_BAT2_FULL 0xba
4043 #define SONYPI_TEMP_STATUS 0xC1
4045 struct sonypi_compat_s
{
4046 struct fasync_struct
*fifo_async
;
4048 spinlock_t fifo_lock
;
4049 wait_queue_head_t fifo_proc_list
;
4050 atomic_t open_count
;
4052 static struct sonypi_compat_s sonypi_compat
= {
4053 .open_count
= ATOMIC_INIT(0),
4056 static int sonypi_misc_fasync(int fd
, struct file
*filp
, int on
)
4058 return fasync_helper(fd
, filp
, on
, &sonypi_compat
.fifo_async
);
4061 static int sonypi_misc_release(struct inode
*inode
, struct file
*file
)
4063 atomic_dec(&sonypi_compat
.open_count
);
4067 static int sonypi_misc_open(struct inode
*inode
, struct file
*file
)
4069 /* Flush input queue on first open */
4070 unsigned long flags
;
4072 spin_lock_irqsave(&sonypi_compat
.fifo_lock
, flags
);
4074 if (atomic_inc_return(&sonypi_compat
.open_count
) == 1)
4075 kfifo_reset(&sonypi_compat
.fifo
);
4077 spin_unlock_irqrestore(&sonypi_compat
.fifo_lock
, flags
);
4082 static ssize_t
sonypi_misc_read(struct file
*file
, char __user
*buf
,
4083 size_t count
, loff_t
*pos
)
4088 if ((kfifo_len(&sonypi_compat
.fifo
) == 0) &&
4089 (file
->f_flags
& O_NONBLOCK
))
4092 ret
= wait_event_interruptible(sonypi_compat
.fifo_proc_list
,
4093 kfifo_len(&sonypi_compat
.fifo
) != 0);
4097 while (ret
< count
&&
4098 (kfifo_out_locked(&sonypi_compat
.fifo
, &c
, sizeof(c
),
4099 &sonypi_compat
.fifo_lock
) == sizeof(c
))) {
4100 if (put_user(c
, buf
++))
4106 struct inode
*inode
= file_inode(file
);
4107 inode
->i_atime
= current_time(inode
);
4113 static __poll_t
sonypi_misc_poll(struct file
*file
, poll_table
*wait
)
4115 poll_wait(file
, &sonypi_compat
.fifo_proc_list
, wait
);
4116 if (kfifo_len(&sonypi_compat
.fifo
))
4117 return EPOLLIN
| EPOLLRDNORM
;
4121 static int ec_read16(u8 addr
, u16
*value
)
4124 if (ec_read(addr
, &val_lb
))
4126 if (ec_read(addr
+ 1, &val_hb
))
4128 *value
= val_lb
| (val_hb
<< 8);
4132 static long sonypi_misc_ioctl(struct file
*fp
, unsigned int cmd
,
4136 void __user
*argp
= (void __user
*)arg
;
4141 mutex_lock(&spic_dev
.lock
);
4143 case SONYPI_IOCGBRT
:
4144 if (sony_bl_props
.dev
== NULL
) {
4148 if (sony_nc_int_call(sony_nc_acpi_handle
, "GBRT", NULL
,
4153 val8
= ((value
& 0xff) - 1) << 5;
4154 if (copy_to_user(argp
, &val8
, sizeof(val8
)))
4157 case SONYPI_IOCSBRT
:
4158 if (sony_bl_props
.dev
== NULL
) {
4162 if (copy_from_user(&val8
, argp
, sizeof(val8
))) {
4166 value
= (val8
>> 5) + 1;
4167 if (sony_nc_int_call(sony_nc_acpi_handle
, "SBRT", &value
,
4172 /* sync the backlight device status */
4173 sony_bl_props
.dev
->props
.brightness
=
4174 sony_backlight_get_brightness(sony_bl_props
.dev
);
4176 case SONYPI_IOCGBAT1CAP
:
4177 if (ec_read16(SONYPI_BAT1_FULL
, &val16
)) {
4181 if (copy_to_user(argp
, &val16
, sizeof(val16
)))
4184 case SONYPI_IOCGBAT1REM
:
4185 if (ec_read16(SONYPI_BAT1_LEFT
, &val16
)) {
4189 if (copy_to_user(argp
, &val16
, sizeof(val16
)))
4192 case SONYPI_IOCGBAT2CAP
:
4193 if (ec_read16(SONYPI_BAT2_FULL
, &val16
)) {
4197 if (copy_to_user(argp
, &val16
, sizeof(val16
)))
4200 case SONYPI_IOCGBAT2REM
:
4201 if (ec_read16(SONYPI_BAT2_LEFT
, &val16
)) {
4205 if (copy_to_user(argp
, &val16
, sizeof(val16
)))
4208 case SONYPI_IOCGBATFLAGS
:
4209 if (ec_read(SONYPI_BAT_FLAGS
, &val8
)) {
4214 if (copy_to_user(argp
, &val8
, sizeof(val8
)))
4217 case SONYPI_IOCGBLUE
:
4218 val8
= spic_dev
.bluetooth_power
;
4219 if (copy_to_user(argp
, &val8
, sizeof(val8
)))
4222 case SONYPI_IOCSBLUE
:
4223 if (copy_from_user(&val8
, argp
, sizeof(val8
))) {
4227 __sony_pic_set_bluetoothpower(val8
);
4230 case SONYPI_IOCGFAN
:
4231 if (sony_pic_get_fanspeed(&val8
)) {
4235 if (copy_to_user(argp
, &val8
, sizeof(val8
)))
4238 case SONYPI_IOCSFAN
:
4239 if (copy_from_user(&val8
, argp
, sizeof(val8
))) {
4243 if (sony_pic_set_fanspeed(val8
))
4246 /* GET Temperature (useful under APM) */
4247 case SONYPI_IOCGTEMP
:
4248 if (ec_read(SONYPI_TEMP_STATUS
, &val8
)) {
4252 if (copy_to_user(argp
, &val8
, sizeof(val8
)))
4258 mutex_unlock(&spic_dev
.lock
);
4262 static const struct file_operations sonypi_misc_fops
= {
4263 .owner
= THIS_MODULE
,
4264 .read
= sonypi_misc_read
,
4265 .poll
= sonypi_misc_poll
,
4266 .open
= sonypi_misc_open
,
4267 .release
= sonypi_misc_release
,
4268 .fasync
= sonypi_misc_fasync
,
4269 .unlocked_ioctl
= sonypi_misc_ioctl
,
4270 .llseek
= noop_llseek
,
4273 static struct miscdevice sonypi_misc_device
= {
4274 .minor
= MISC_DYNAMIC_MINOR
,
4276 .fops
= &sonypi_misc_fops
,
4279 static void sonypi_compat_report_event(u8 event
)
4281 kfifo_in_locked(&sonypi_compat
.fifo
, (unsigned char *)&event
,
4282 sizeof(event
), &sonypi_compat
.fifo_lock
);
4283 kill_fasync(&sonypi_compat
.fifo_async
, SIGIO
, POLL_IN
);
4284 wake_up_interruptible(&sonypi_compat
.fifo_proc_list
);
4287 static int sonypi_compat_init(void)
4291 spin_lock_init(&sonypi_compat
.fifo_lock
);
4293 kfifo_alloc(&sonypi_compat
.fifo
, SONY_LAPTOP_BUF_SIZE
, GFP_KERNEL
);
4295 pr_err("kfifo_alloc failed\n");
4299 init_waitqueue_head(&sonypi_compat
.fifo_proc_list
);
4302 sonypi_misc_device
.minor
= minor
;
4303 error
= misc_register(&sonypi_misc_device
);
4305 pr_err("misc_register failed\n");
4306 goto err_free_kfifo
;
4309 pr_info("device allocated minor is %d\n",
4310 sonypi_misc_device
.minor
);
4315 kfifo_free(&sonypi_compat
.fifo
);
4319 static void sonypi_compat_exit(void)
4321 misc_deregister(&sonypi_misc_device
);
4322 kfifo_free(&sonypi_compat
.fifo
);
4325 static int sonypi_compat_init(void) { return 0; }
4326 static void sonypi_compat_exit(void) { }
4327 static void sonypi_compat_report_event(u8 event
) { }
4328 #endif /* CONFIG_SONYPI_COMPAT */
4334 sony_pic_read_possible_resource(struct acpi_resource
*resource
, void *context
)
4337 struct sony_pic_dev
*dev
= (struct sony_pic_dev
*)context
;
4339 switch (resource
->type
) {
4340 case ACPI_RESOURCE_TYPE_START_DEPENDENT
:
4342 /* start IO enumeration */
4343 struct sony_pic_ioport
*ioport
= kzalloc(sizeof(*ioport
), GFP_KERNEL
);
4347 list_add(&ioport
->list
, &dev
->ioports
);
4351 case ACPI_RESOURCE_TYPE_END_DEPENDENT
:
4352 /* end IO enumeration */
4355 case ACPI_RESOURCE_TYPE_IRQ
:
4357 struct acpi_resource_irq
*p
= &resource
->data
.irq
;
4358 struct sony_pic_irq
*interrupt
= NULL
;
4359 if (!p
|| !p
->interrupt_count
) {
4361 * IRQ descriptors may have no IRQ# bits set,
4362 * particularly those those w/ _STA disabled
4364 dprintk("Blank IRQ resource\n");
4367 for (i
= 0; i
< p
->interrupt_count
; i
++) {
4368 if (!p
->interrupts
[i
]) {
4369 pr_warn("Invalid IRQ %d\n",
4373 interrupt
= kzalloc(sizeof(*interrupt
),
4378 list_add(&interrupt
->list
, &dev
->interrupts
);
4379 interrupt
->irq
.triggering
= p
->triggering
;
4380 interrupt
->irq
.polarity
= p
->polarity
;
4381 interrupt
->irq
.shareable
= p
->shareable
;
4382 interrupt
->irq
.interrupt_count
= 1;
4383 interrupt
->irq
.interrupts
[0] = p
->interrupts
[i
];
4387 case ACPI_RESOURCE_TYPE_IO
:
4389 struct acpi_resource_io
*io
= &resource
->data
.io
;
4390 struct sony_pic_ioport
*ioport
=
4391 list_first_entry(&dev
->ioports
, struct sony_pic_ioport
, list
);
4393 dprintk("Blank IO resource\n");
4397 if (!ioport
->io1
.minimum
) {
4398 memcpy(&ioport
->io1
, io
, sizeof(*io
));
4399 dprintk("IO1 at 0x%.4x (0x%.2x)\n", ioport
->io1
.minimum
,
4400 ioport
->io1
.address_length
);
4402 else if (!ioport
->io2
.minimum
) {
4403 memcpy(&ioport
->io2
, io
, sizeof(*io
));
4404 dprintk("IO2 at 0x%.4x (0x%.2x)\n", ioport
->io2
.minimum
,
4405 ioport
->io2
.address_length
);
4408 pr_err("Unknown SPIC Type, more than 2 IO Ports\n");
4414 case ACPI_RESOURCE_TYPE_END_TAG
:
4418 dprintk("Resource %d isn't an IRQ nor an IO port\n",
4420 return AE_CTRL_TERMINATE
;
4425 static int sony_pic_possible_resources(struct acpi_device
*device
)
4428 acpi_status status
= AE_OK
;
4433 /* get device status */
4434 /* see acpi_pci_link_get_current acpi_pci_link_get_possible */
4435 dprintk("Evaluating _STA\n");
4436 result
= acpi_bus_get_status(device
);
4438 pr_warn("Unable to read status\n");
4442 if (!device
->status
.enabled
)
4443 dprintk("Device disabled\n");
4445 dprintk("Device enabled\n");
4448 * Query and parse 'method'
4450 dprintk("Evaluating %s\n", METHOD_NAME__PRS
);
4451 status
= acpi_walk_resources(device
->handle
, METHOD_NAME__PRS
,
4452 sony_pic_read_possible_resource
, &spic_dev
);
4453 if (ACPI_FAILURE(status
)) {
4454 pr_warn("Failure evaluating %s\n", METHOD_NAME__PRS
);
4462 * Disable the spic device by calling its _DIS method
4464 static int sony_pic_disable(struct acpi_device
*device
)
4466 acpi_status ret
= acpi_evaluate_object(device
->handle
, "_DIS", NULL
,
4469 if (ACPI_FAILURE(ret
) && ret
!= AE_NOT_FOUND
)
4472 dprintk("Device disabled\n");
4478 * Based on drivers/acpi/pci_link.c:acpi_pci_link_set
4480 * Call _SRS to set current resources
4482 static int sony_pic_enable(struct acpi_device
*device
,
4483 struct sony_pic_ioport
*ioport
, struct sony_pic_irq
*irq
)
4487 /* Type 1 resource layout is:
4493 * Type 2 and 3 resource layout is:
4499 struct acpi_resource res1
;
4500 struct acpi_resource res2
;
4501 struct acpi_resource res3
;
4502 struct acpi_resource res4
;
4504 struct acpi_buffer buffer
= { 0, NULL
};
4506 if (!ioport
|| !irq
)
4509 /* init acpi_buffer */
4510 resource
= kzalloc(sizeof(*resource
) + 1, GFP_KERNEL
);
4514 buffer
.length
= sizeof(*resource
) + 1;
4515 buffer
.pointer
= resource
;
4517 /* setup Type 1 resources */
4518 if (spic_dev
.model
== SONYPI_DEVICE_TYPE1
) {
4520 /* setup io resources */
4521 resource
->res1
.type
= ACPI_RESOURCE_TYPE_IO
;
4522 resource
->res1
.length
= sizeof(struct acpi_resource
);
4523 memcpy(&resource
->res1
.data
.io
, &ioport
->io1
,
4524 sizeof(struct acpi_resource_io
));
4526 resource
->res2
.type
= ACPI_RESOURCE_TYPE_IO
;
4527 resource
->res2
.length
= sizeof(struct acpi_resource
);
4528 memcpy(&resource
->res2
.data
.io
, &ioport
->io2
,
4529 sizeof(struct acpi_resource_io
));
4531 /* setup irq resource */
4532 resource
->res3
.type
= ACPI_RESOURCE_TYPE_IRQ
;
4533 resource
->res3
.length
= sizeof(struct acpi_resource
);
4534 memcpy(&resource
->res3
.data
.irq
, &irq
->irq
,
4535 sizeof(struct acpi_resource_irq
));
4536 /* we requested a shared irq */
4537 resource
->res3
.data
.irq
.shareable
= ACPI_SHARED
;
4539 resource
->res4
.type
= ACPI_RESOURCE_TYPE_END_TAG
;
4540 resource
->res4
.length
= sizeof(struct acpi_resource
);
4542 /* setup Type 2/3 resources */
4544 /* setup io resource */
4545 resource
->res1
.type
= ACPI_RESOURCE_TYPE_IO
;
4546 resource
->res1
.length
= sizeof(struct acpi_resource
);
4547 memcpy(&resource
->res1
.data
.io
, &ioport
->io1
,
4548 sizeof(struct acpi_resource_io
));
4550 /* setup irq resource */
4551 resource
->res2
.type
= ACPI_RESOURCE_TYPE_IRQ
;
4552 resource
->res2
.length
= sizeof(struct acpi_resource
);
4553 memcpy(&resource
->res2
.data
.irq
, &irq
->irq
,
4554 sizeof(struct acpi_resource_irq
));
4555 /* we requested a shared irq */
4556 resource
->res2
.data
.irq
.shareable
= ACPI_SHARED
;
4558 resource
->res3
.type
= ACPI_RESOURCE_TYPE_END_TAG
;
4559 resource
->res3
.length
= sizeof(struct acpi_resource
);
4562 /* Attempt to set the resource */
4563 dprintk("Evaluating _SRS\n");
4564 status
= acpi_set_current_resources(device
->handle
, &buffer
);
4566 /* check for total failure */
4567 if (ACPI_FAILURE(status
)) {
4568 pr_err("Error evaluating _SRS\n");
4573 /* Necessary device initializations calls (from sonypi) */
4574 sony_pic_call1(0x82);
4575 sony_pic_call2(0x81, 0xff);
4576 sony_pic_call1(compat
? 0x92 : 0x82);
4585 * ISR: some event is available
4588 static irqreturn_t
sony_pic_irq(int irq
, void *dev_id
)
4593 u8 device_event
= 0;
4595 struct sony_pic_dev
*dev
= (struct sony_pic_dev
*) dev_id
;
4597 ev
= inb_p(dev
->cur_ioport
->io1
.minimum
);
4598 if (dev
->cur_ioport
->io2
.minimum
)
4599 data_mask
= inb_p(dev
->cur_ioport
->io2
.minimum
);
4601 data_mask
= inb_p(dev
->cur_ioport
->io1
.minimum
+
4602 dev
->evport_offset
);
4604 dprintk("event ([%.2x] [%.2x]) at port 0x%.4x(+0x%.2x)\n",
4605 ev
, data_mask
, dev
->cur_ioport
->io1
.minimum
,
4606 dev
->evport_offset
);
4608 if (ev
== 0x00 || ev
== 0xff)
4611 for (i
= 0; dev
->event_types
[i
].mask
; i
++) {
4613 if ((data_mask
& dev
->event_types
[i
].data
) !=
4614 dev
->event_types
[i
].data
)
4617 if (!(mask
& dev
->event_types
[i
].mask
))
4620 for (j
= 0; dev
->event_types
[i
].events
[j
].event
; j
++) {
4621 if (ev
== dev
->event_types
[i
].events
[j
].data
) {
4623 dev
->event_types
[i
].events
[j
].event
;
4624 /* some events may require ignoring */
4631 /* Still not able to decode the event try to pass
4632 * it over to the minidriver
4634 if (dev
->handle_irq
&& dev
->handle_irq(data_mask
, ev
) == 0)
4637 dprintk("unknown event ([%.2x] [%.2x]) at port 0x%.4x(+0x%.2x)\n",
4638 ev
, data_mask
, dev
->cur_ioport
->io1
.minimum
,
4639 dev
->evport_offset
);
4643 sony_laptop_report_input_event(device_event
);
4644 sonypi_compat_report_event(device_event
);
4653 static int sony_pic_remove(struct acpi_device
*device
)
4655 struct sony_pic_ioport
*io
, *tmp_io
;
4656 struct sony_pic_irq
*irq
, *tmp_irq
;
4658 if (sony_pic_disable(device
)) {
4659 pr_err("Couldn't disable device\n");
4663 free_irq(spic_dev
.cur_irq
->irq
.interrupts
[0], &spic_dev
);
4664 release_region(spic_dev
.cur_ioport
->io1
.minimum
,
4665 spic_dev
.cur_ioport
->io1
.address_length
);
4666 if (spic_dev
.cur_ioport
->io2
.minimum
)
4667 release_region(spic_dev
.cur_ioport
->io2
.minimum
,
4668 spic_dev
.cur_ioport
->io2
.address_length
);
4670 sonypi_compat_exit();
4672 sony_laptop_remove_input();
4675 sysfs_remove_group(&sony_pf_device
->dev
.kobj
, &spic_attribute_group
);
4678 list_for_each_entry_safe(io
, tmp_io
, &spic_dev
.ioports
, list
) {
4679 list_del(&io
->list
);
4682 list_for_each_entry_safe(irq
, tmp_irq
, &spic_dev
.interrupts
, list
) {
4683 list_del(&irq
->list
);
4686 spic_dev
.cur_ioport
= NULL
;
4687 spic_dev
.cur_irq
= NULL
;
4689 dprintk(SONY_PIC_DRIVER_NAME
" removed.\n");
4693 static int sony_pic_add(struct acpi_device
*device
)
4696 struct sony_pic_ioport
*io
, *tmp_io
;
4697 struct sony_pic_irq
*irq
, *tmp_irq
;
4699 spic_dev
.acpi_dev
= device
;
4700 strcpy(acpi_device_class(device
), "sony/hotkey");
4701 sony_pic_detect_device_type(&spic_dev
);
4702 mutex_init(&spic_dev
.lock
);
4704 /* read _PRS resources */
4705 result
= sony_pic_possible_resources(device
);
4707 pr_err("Unable to read possible resources\n");
4708 goto err_free_resources
;
4711 /* setup input devices and helper fifo */
4712 result
= sony_laptop_setup_input(device
);
4714 pr_err("Unable to create input devices\n");
4715 goto err_free_resources
;
4718 result
= sonypi_compat_init();
4720 goto err_remove_input
;
4722 /* request io port */
4723 list_for_each_entry_reverse(io
, &spic_dev
.ioports
, list
) {
4724 if (request_region(io
->io1
.minimum
, io
->io1
.address_length
,
4725 "Sony Programmable I/O Device")) {
4726 dprintk("I/O port1: 0x%.4x (0x%.4x) + 0x%.2x\n",
4727 io
->io1
.minimum
, io
->io1
.maximum
,
4728 io
->io1
.address_length
);
4729 /* Type 1 have 2 ioports */
4730 if (io
->io2
.minimum
) {
4731 if (request_region(io
->io2
.minimum
,
4732 io
->io2
.address_length
,
4733 "Sony Programmable I/O Device")) {
4734 dprintk("I/O port2: 0x%.4x (0x%.4x) + 0x%.2x\n",
4735 io
->io2
.minimum
, io
->io2
.maximum
,
4736 io
->io2
.address_length
);
4737 spic_dev
.cur_ioport
= io
;
4741 dprintk("Unable to get I/O port2: "
4742 "0x%.4x (0x%.4x) + 0x%.2x\n",
4743 io
->io2
.minimum
, io
->io2
.maximum
,
4744 io
->io2
.address_length
);
4745 release_region(io
->io1
.minimum
,
4746 io
->io1
.address_length
);
4750 spic_dev
.cur_ioport
= io
;
4755 if (!spic_dev
.cur_ioport
) {
4756 pr_err("Failed to request_region\n");
4758 goto err_remove_compat
;
4762 list_for_each_entry_reverse(irq
, &spic_dev
.interrupts
, list
) {
4763 if (!request_irq(irq
->irq
.interrupts
[0], sony_pic_irq
,
4764 0, "sony-laptop", &spic_dev
)) {
4765 dprintk("IRQ: %d - triggering: %d - "
4766 "polarity: %d - shr: %d\n",
4767 irq
->irq
.interrupts
[0],
4768 irq
->irq
.triggering
,
4770 irq
->irq
.shareable
);
4771 spic_dev
.cur_irq
= irq
;
4775 if (!spic_dev
.cur_irq
) {
4776 pr_err("Failed to request_irq\n");
4778 goto err_release_region
;
4781 /* set resource status _SRS */
4782 result
= sony_pic_enable(device
, spic_dev
.cur_ioport
, spic_dev
.cur_irq
);
4784 pr_err("Couldn't enable device\n");
4788 spic_dev
.bluetooth_power
= -1;
4789 /* create device attributes */
4790 result
= sony_pf_add();
4792 goto err_disable_device
;
4794 result
= sysfs_create_group(&sony_pf_device
->dev
.kobj
, &spic_attribute_group
);
4798 pr_info("SPIC setup done.\n");
4805 sony_pic_disable(device
);
4808 free_irq(spic_dev
.cur_irq
->irq
.interrupts
[0], &spic_dev
);
4811 release_region(spic_dev
.cur_ioport
->io1
.minimum
,
4812 spic_dev
.cur_ioport
->io1
.address_length
);
4813 if (spic_dev
.cur_ioport
->io2
.minimum
)
4814 release_region(spic_dev
.cur_ioport
->io2
.minimum
,
4815 spic_dev
.cur_ioport
->io2
.address_length
);
4818 sonypi_compat_exit();
4821 sony_laptop_remove_input();
4824 list_for_each_entry_safe(io
, tmp_io
, &spic_dev
.ioports
, list
) {
4825 list_del(&io
->list
);
4828 list_for_each_entry_safe(irq
, tmp_irq
, &spic_dev
.interrupts
, list
) {
4829 list_del(&irq
->list
);
4832 spic_dev
.cur_ioport
= NULL
;
4833 spic_dev
.cur_irq
= NULL
;
4838 #ifdef CONFIG_PM_SLEEP
4839 static int sony_pic_suspend(struct device
*dev
)
4841 if (sony_pic_disable(to_acpi_device(dev
)))
4846 static int sony_pic_resume(struct device
*dev
)
4848 sony_pic_enable(to_acpi_device(dev
),
4849 spic_dev
.cur_ioport
, spic_dev
.cur_irq
);
4854 static SIMPLE_DEV_PM_OPS(sony_pic_pm
, sony_pic_suspend
, sony_pic_resume
);
4856 static const struct acpi_device_id sony_pic_device_ids
[] = {
4861 static struct acpi_driver sony_pic_driver
= {
4862 .name
= SONY_PIC_DRIVER_NAME
,
4863 .class = SONY_PIC_CLASS
,
4864 .ids
= sony_pic_device_ids
,
4865 .owner
= THIS_MODULE
,
4867 .add
= sony_pic_add
,
4868 .remove
= sony_pic_remove
,
4870 .drv
.pm
= &sony_pic_pm
,
4873 static const struct dmi_system_id sonypi_dmi_table
[] __initconst
= {
4875 .ident
= "Sony Vaio",
4877 DMI_MATCH(DMI_SYS_VENDOR
, "Sony Corporation"),
4878 DMI_MATCH(DMI_PRODUCT_NAME
, "PCG-"),
4882 .ident
= "Sony Vaio",
4884 DMI_MATCH(DMI_SYS_VENDOR
, "Sony Corporation"),
4885 DMI_MATCH(DMI_PRODUCT_NAME
, "VGN-"),
4891 static int __init
sony_laptop_init(void)
4895 if (!no_spic
&& dmi_check_system(sonypi_dmi_table
)) {
4896 result
= acpi_bus_register_driver(&sony_pic_driver
);
4898 pr_err("Unable to register SPIC driver\n");
4901 spic_drv_registered
= 1;
4904 result
= acpi_bus_register_driver(&sony_nc_driver
);
4906 pr_err("Unable to register SNC driver\n");
4907 goto out_unregister_pic
;
4913 if (spic_drv_registered
)
4914 acpi_bus_unregister_driver(&sony_pic_driver
);
4919 static void __exit
sony_laptop_exit(void)
4921 acpi_bus_unregister_driver(&sony_nc_driver
);
4922 if (spic_drv_registered
)
4923 acpi_bus_unregister_driver(&sony_pic_driver
);
4926 module_init(sony_laptop_init
);
4927 module_exit(sony_laptop_exit
);