eeepc-laptop: read rfkill soft-blocked state on resume
[linux-block.git] / net / rfkill / core.c
CommitLineData
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1/*
2 * Copyright (C) 2006 - 2007 Ivo van Doorn
3 * Copyright (C) 2007 Dmitry Torokhov
4 * Copyright 2009 Johannes Berg <johannes@sipsolutions.net>
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the
18 * Free Software Foundation, Inc.,
19 * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
20 */
21
22#include <linux/kernel.h>
23#include <linux/module.h>
24#include <linux/init.h>
25#include <linux/workqueue.h>
26#include <linux/capability.h>
27#include <linux/list.h>
28#include <linux/mutex.h>
29#include <linux/rfkill.h>
30#include <linux/spinlock.h>
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31#include <linux/miscdevice.h>
32#include <linux/wait.h>
33#include <linux/poll.h>
34#include <linux/fs.h>
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35
36#include "rfkill.h"
37
38#define POLL_INTERVAL (5 * HZ)
39
40#define RFKILL_BLOCK_HW BIT(0)
41#define RFKILL_BLOCK_SW BIT(1)
42#define RFKILL_BLOCK_SW_PREV BIT(2)
43#define RFKILL_BLOCK_ANY (RFKILL_BLOCK_HW |\
44 RFKILL_BLOCK_SW |\
45 RFKILL_BLOCK_SW_PREV)
46#define RFKILL_BLOCK_SW_SETCALL BIT(31)
47
48struct rfkill {
49 spinlock_t lock;
50
51 const char *name;
52 enum rfkill_type type;
53
54 unsigned long state;
55
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56 u32 idx;
57
19d337df 58 bool registered;
b3fa1329 59 bool persistent;
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60
61 const struct rfkill_ops *ops;
62 void *data;
63
64#ifdef CONFIG_RFKILL_LEDS
65 struct led_trigger led_trigger;
66 const char *ledtrigname;
67#endif
68
69 struct device dev;
70 struct list_head node;
71
72 struct delayed_work poll_work;
73 struct work_struct uevent_work;
74 struct work_struct sync_work;
75};
76#define to_rfkill(d) container_of(d, struct rfkill, dev)
77
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78struct rfkill_int_event {
79 struct list_head list;
80 struct rfkill_event ev;
81};
82
83struct rfkill_data {
84 struct list_head list;
85 struct list_head events;
86 struct mutex mtx;
87 wait_queue_head_t read_wait;
88 bool input_handler;
89};
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90
91
92MODULE_AUTHOR("Ivo van Doorn <IvDoorn@gmail.com>");
93MODULE_AUTHOR("Johannes Berg <johannes@sipsolutions.net>");
94MODULE_DESCRIPTION("RF switch support");
95MODULE_LICENSE("GPL");
96
97
98/*
99 * The locking here should be made much smarter, we currently have
100 * a bit of a stupid situation because drivers might want to register
101 * the rfkill struct under their own lock, and take this lock during
102 * rfkill method calls -- which will cause an AB-BA deadlock situation.
103 *
104 * To fix that, we need to rework this code here to be mostly lock-free
105 * and only use the mutex for list manipulations, not to protect the
106 * various other global variables. Then we can avoid holding the mutex
107 * around driver operations, and all is happy.
108 */
109static LIST_HEAD(rfkill_list); /* list of registered rf switches */
110static DEFINE_MUTEX(rfkill_global_mutex);
c64fb016 111static LIST_HEAD(rfkill_fds); /* list of open fds of /dev/rfkill */
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112
113static unsigned int rfkill_default_state = 1;
114module_param_named(default_state, rfkill_default_state, uint, 0444);
115MODULE_PARM_DESC(default_state,
116 "Default initial state for all radio types, 0 = radio off");
117
118static struct {
b3fa1329 119 bool cur, sav;
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120} rfkill_global_states[NUM_RFKILL_TYPES];
121
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122static bool rfkill_epo_lock_active;
123
124
125#ifdef CONFIG_RFKILL_LEDS
126static void rfkill_led_trigger_event(struct rfkill *rfkill)
127{
128 struct led_trigger *trigger;
129
130 if (!rfkill->registered)
131 return;
132
133 trigger = &rfkill->led_trigger;
134
135 if (rfkill->state & RFKILL_BLOCK_ANY)
136 led_trigger_event(trigger, LED_OFF);
137 else
138 led_trigger_event(trigger, LED_FULL);
139}
140
141static void rfkill_led_trigger_activate(struct led_classdev *led)
142{
143 struct rfkill *rfkill;
144
145 rfkill = container_of(led->trigger, struct rfkill, led_trigger);
146
147 rfkill_led_trigger_event(rfkill);
148}
149
150const char *rfkill_get_led_trigger_name(struct rfkill *rfkill)
151{
152 return rfkill->led_trigger.name;
153}
154EXPORT_SYMBOL(rfkill_get_led_trigger_name);
155
156void rfkill_set_led_trigger_name(struct rfkill *rfkill, const char *name)
157{
158 BUG_ON(!rfkill);
159
160 rfkill->ledtrigname = name;
161}
162EXPORT_SYMBOL(rfkill_set_led_trigger_name);
163
164static int rfkill_led_trigger_register(struct rfkill *rfkill)
165{
166 rfkill->led_trigger.name = rfkill->ledtrigname
167 ? : dev_name(&rfkill->dev);
168 rfkill->led_trigger.activate = rfkill_led_trigger_activate;
169 return led_trigger_register(&rfkill->led_trigger);
170}
171
172static void rfkill_led_trigger_unregister(struct rfkill *rfkill)
173{
174 led_trigger_unregister(&rfkill->led_trigger);
175}
176#else
177static void rfkill_led_trigger_event(struct rfkill *rfkill)
178{
179}
180
181static inline int rfkill_led_trigger_register(struct rfkill *rfkill)
182{
183 return 0;
184}
185
186static inline void rfkill_led_trigger_unregister(struct rfkill *rfkill)
187{
188}
189#endif /* CONFIG_RFKILL_LEDS */
190
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191static void rfkill_fill_event(struct rfkill_event *ev, struct rfkill *rfkill,
192 enum rfkill_operation op)
193{
194 unsigned long flags;
195
196 ev->idx = rfkill->idx;
197 ev->type = rfkill->type;
198 ev->op = op;
199
200 spin_lock_irqsave(&rfkill->lock, flags);
201 ev->hard = !!(rfkill->state & RFKILL_BLOCK_HW);
202 ev->soft = !!(rfkill->state & (RFKILL_BLOCK_SW |
203 RFKILL_BLOCK_SW_PREV));
204 spin_unlock_irqrestore(&rfkill->lock, flags);
205}
206
207static void rfkill_send_events(struct rfkill *rfkill, enum rfkill_operation op)
208{
209 struct rfkill_data *data;
210 struct rfkill_int_event *ev;
211
212 list_for_each_entry(data, &rfkill_fds, list) {
213 ev = kzalloc(sizeof(*ev), GFP_KERNEL);
214 if (!ev)
215 continue;
216 rfkill_fill_event(&ev->ev, rfkill, op);
217 mutex_lock(&data->mtx);
218 list_add_tail(&ev->list, &data->events);
219 mutex_unlock(&data->mtx);
220 wake_up_interruptible(&data->read_wait);
221 }
222}
223
224static void rfkill_event(struct rfkill *rfkill)
19d337df 225{
06d5caf4 226 if (!rfkill->registered)
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227 return;
228
229 kobject_uevent(&rfkill->dev.kobj, KOBJ_CHANGE);
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230
231 /* also send event to /dev/rfkill */
232 rfkill_send_events(rfkill, RFKILL_OP_CHANGE);
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233}
234
235static bool __rfkill_set_hw_state(struct rfkill *rfkill,
236 bool blocked, bool *change)
237{
238 unsigned long flags;
239 bool prev, any;
240
241 BUG_ON(!rfkill);
242
243 spin_lock_irqsave(&rfkill->lock, flags);
244 prev = !!(rfkill->state & RFKILL_BLOCK_HW);
245 if (blocked)
246 rfkill->state |= RFKILL_BLOCK_HW;
247 else
248 rfkill->state &= ~RFKILL_BLOCK_HW;
249 *change = prev != blocked;
250 any = rfkill->state & RFKILL_BLOCK_ANY;
251 spin_unlock_irqrestore(&rfkill->lock, flags);
252
253 rfkill_led_trigger_event(rfkill);
254
255 return any;
256}
257
258/**
259 * rfkill_set_block - wrapper for set_block method
260 *
261 * @rfkill: the rfkill struct to use
262 * @blocked: the new software state
263 *
264 * Calls the set_block method (when applicable) and handles notifications
265 * etc. as well.
266 */
267static void rfkill_set_block(struct rfkill *rfkill, bool blocked)
268{
269 unsigned long flags;
270 int err;
271
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272 if (unlikely(rfkill->dev.power.power_state.event & PM_EVENT_SLEEP))
273 return;
274
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275 /*
276 * Some platforms (...!) generate input events which affect the
277 * _hard_ kill state -- whenever something tries to change the
278 * current software state query the hardware state too.
279 */
280 if (rfkill->ops->query)
281 rfkill->ops->query(rfkill, rfkill->data);
282
283 spin_lock_irqsave(&rfkill->lock, flags);
284 if (rfkill->state & RFKILL_BLOCK_SW)
285 rfkill->state |= RFKILL_BLOCK_SW_PREV;
286 else
287 rfkill->state &= ~RFKILL_BLOCK_SW_PREV;
288
289 if (blocked)
290 rfkill->state |= RFKILL_BLOCK_SW;
291 else
292 rfkill->state &= ~RFKILL_BLOCK_SW;
293
294 rfkill->state |= RFKILL_BLOCK_SW_SETCALL;
295 spin_unlock_irqrestore(&rfkill->lock, flags);
296
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297 err = rfkill->ops->set_block(rfkill->data, blocked);
298
299 spin_lock_irqsave(&rfkill->lock, flags);
300 if (err) {
301 /*
302 * Failed -- reset status to _prev, this may be different
303 * from what set set _PREV to earlier in this function
304 * if rfkill_set_sw_state was invoked.
305 */
306 if (rfkill->state & RFKILL_BLOCK_SW_PREV)
307 rfkill->state |= RFKILL_BLOCK_SW;
308 else
309 rfkill->state &= ~RFKILL_BLOCK_SW;
310 }
311 rfkill->state &= ~RFKILL_BLOCK_SW_SETCALL;
312 rfkill->state &= ~RFKILL_BLOCK_SW_PREV;
313 spin_unlock_irqrestore(&rfkill->lock, flags);
314
315 rfkill_led_trigger_event(rfkill);
c64fb016 316 rfkill_event(rfkill);
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317}
318
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319#ifdef CONFIG_RFKILL_INPUT
320static atomic_t rfkill_input_disabled = ATOMIC_INIT(0);
321
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322/**
323 * __rfkill_switch_all - Toggle state of all switches of given type
324 * @type: type of interfaces to be affected
325 * @state: the new state
326 *
327 * This function sets the state of all switches of given type,
328 * unless a specific switch is claimed by userspace (in which case,
329 * that switch is left alone) or suspended.
330 *
331 * Caller must have acquired rfkill_global_mutex.
332 */
333static void __rfkill_switch_all(const enum rfkill_type type, bool blocked)
334{
335 struct rfkill *rfkill;
336
337 rfkill_global_states[type].cur = blocked;
338 list_for_each_entry(rfkill, &rfkill_list, node) {
339 if (rfkill->type != type)
340 continue;
341
342 rfkill_set_block(rfkill, blocked);
343 }
344}
345
346/**
347 * rfkill_switch_all - Toggle state of all switches of given type
348 * @type: type of interfaces to be affected
349 * @state: the new state
350 *
351 * Acquires rfkill_global_mutex and calls __rfkill_switch_all(@type, @state).
352 * Please refer to __rfkill_switch_all() for details.
353 *
354 * Does nothing if the EPO lock is active.
355 */
356void rfkill_switch_all(enum rfkill_type type, bool blocked)
357{
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358 if (atomic_read(&rfkill_input_disabled))
359 return;
360
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361 mutex_lock(&rfkill_global_mutex);
362
363 if (!rfkill_epo_lock_active)
364 __rfkill_switch_all(type, blocked);
365
366 mutex_unlock(&rfkill_global_mutex);
367}
368
369/**
370 * rfkill_epo - emergency power off all transmitters
371 *
372 * This kicks all non-suspended rfkill devices to RFKILL_STATE_SOFT_BLOCKED,
373 * ignoring everything in its path but rfkill_global_mutex and rfkill->mutex.
374 *
375 * The global state before the EPO is saved and can be restored later
376 * using rfkill_restore_states().
377 */
378void rfkill_epo(void)
379{
380 struct rfkill *rfkill;
381 int i;
382
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383 if (atomic_read(&rfkill_input_disabled))
384 return;
385
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386 mutex_lock(&rfkill_global_mutex);
387
388 rfkill_epo_lock_active = true;
389 list_for_each_entry(rfkill, &rfkill_list, node)
390 rfkill_set_block(rfkill, true);
391
392 for (i = 0; i < NUM_RFKILL_TYPES; i++) {
b3fa1329 393 rfkill_global_states[i].sav = rfkill_global_states[i].cur;
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394 rfkill_global_states[i].cur = true;
395 }
c64fb016 396
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397 mutex_unlock(&rfkill_global_mutex);
398}
399
400/**
401 * rfkill_restore_states - restore global states
402 *
403 * Restore (and sync switches to) the global state from the
404 * states in rfkill_default_states. This can undo the effects of
405 * a call to rfkill_epo().
406 */
407void rfkill_restore_states(void)
408{
409 int i;
410
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411 if (atomic_read(&rfkill_input_disabled))
412 return;
413
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414 mutex_lock(&rfkill_global_mutex);
415
416 rfkill_epo_lock_active = false;
417 for (i = 0; i < NUM_RFKILL_TYPES; i++)
b3fa1329 418 __rfkill_switch_all(i, rfkill_global_states[i].sav);
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419 mutex_unlock(&rfkill_global_mutex);
420}
421
422/**
423 * rfkill_remove_epo_lock - unlock state changes
424 *
425 * Used by rfkill-input manually unlock state changes, when
426 * the EPO switch is deactivated.
427 */
428void rfkill_remove_epo_lock(void)
429{
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430 if (atomic_read(&rfkill_input_disabled))
431 return;
432
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433 mutex_lock(&rfkill_global_mutex);
434 rfkill_epo_lock_active = false;
435 mutex_unlock(&rfkill_global_mutex);
436}
437
438/**
439 * rfkill_is_epo_lock_active - returns true EPO is active
440 *
441 * Returns 0 (false) if there is NOT an active EPO contidion,
442 * and 1 (true) if there is an active EPO contition, which
443 * locks all radios in one of the BLOCKED states.
444 *
445 * Can be called in atomic context.
446 */
447bool rfkill_is_epo_lock_active(void)
448{
449 return rfkill_epo_lock_active;
450}
451
452/**
453 * rfkill_get_global_sw_state - returns global state for a type
454 * @type: the type to get the global state of
455 *
456 * Returns the current global state for a given wireless
457 * device type.
458 */
459bool rfkill_get_global_sw_state(const enum rfkill_type type)
460{
461 return rfkill_global_states[type].cur;
462}
c64fb016 463#endif
19d337df 464
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465
466bool rfkill_set_hw_state(struct rfkill *rfkill, bool blocked)
467{
468 bool ret, change;
469
470 ret = __rfkill_set_hw_state(rfkill, blocked, &change);
471
472 if (!rfkill->registered)
473 return ret;
474
475 if (change)
476 schedule_work(&rfkill->uevent_work);
477
478 return ret;
479}
480EXPORT_SYMBOL(rfkill_set_hw_state);
481
482static void __rfkill_set_sw_state(struct rfkill *rfkill, bool blocked)
483{
484 u32 bit = RFKILL_BLOCK_SW;
485
486 /* if in a ops->set_block right now, use other bit */
487 if (rfkill->state & RFKILL_BLOCK_SW_SETCALL)
488 bit = RFKILL_BLOCK_SW_PREV;
489
490 if (blocked)
491 rfkill->state |= bit;
492 else
493 rfkill->state &= ~bit;
494}
495
496bool rfkill_set_sw_state(struct rfkill *rfkill, bool blocked)
497{
498 unsigned long flags;
499 bool prev, hwblock;
500
501 BUG_ON(!rfkill);
502
503 spin_lock_irqsave(&rfkill->lock, flags);
504 prev = !!(rfkill->state & RFKILL_BLOCK_SW);
505 __rfkill_set_sw_state(rfkill, blocked);
506 hwblock = !!(rfkill->state & RFKILL_BLOCK_HW);
507 blocked = blocked || hwblock;
508 spin_unlock_irqrestore(&rfkill->lock, flags);
509
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510 if (!rfkill->registered)
511 return blocked;
19d337df 512
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513 if (prev != blocked && !hwblock)
514 schedule_work(&rfkill->uevent_work);
515
516 rfkill_led_trigger_event(rfkill);
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517
518 return blocked;
519}
520EXPORT_SYMBOL(rfkill_set_sw_state);
521
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522void rfkill_init_sw_state(struct rfkill *rfkill, bool blocked)
523{
524 unsigned long flags;
525
526 BUG_ON(!rfkill);
527 BUG_ON(rfkill->registered);
528
529 spin_lock_irqsave(&rfkill->lock, flags);
530 __rfkill_set_sw_state(rfkill, blocked);
531 rfkill->persistent = true;
532 spin_unlock_irqrestore(&rfkill->lock, flags);
533}
534EXPORT_SYMBOL(rfkill_init_sw_state);
535
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536void rfkill_set_states(struct rfkill *rfkill, bool sw, bool hw)
537{
538 unsigned long flags;
539 bool swprev, hwprev;
540
541 BUG_ON(!rfkill);
542
543 spin_lock_irqsave(&rfkill->lock, flags);
544
545 /*
546 * No need to care about prev/setblock ... this is for uevent only
547 * and that will get triggered by rfkill_set_block anyway.
548 */
549 swprev = !!(rfkill->state & RFKILL_BLOCK_SW);
550 hwprev = !!(rfkill->state & RFKILL_BLOCK_HW);
551 __rfkill_set_sw_state(rfkill, sw);
552
553 spin_unlock_irqrestore(&rfkill->lock, flags);
554
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555 if (!rfkill->registered) {
556 rfkill->persistent = true;
557 } else {
558 if (swprev != sw || hwprev != hw)
559 schedule_work(&rfkill->uevent_work);
19d337df 560
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561 rfkill_led_trigger_event(rfkill);
562 }
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563}
564EXPORT_SYMBOL(rfkill_set_states);
565
566static ssize_t rfkill_name_show(struct device *dev,
567 struct device_attribute *attr,
568 char *buf)
569{
570 struct rfkill *rfkill = to_rfkill(dev);
571
572 return sprintf(buf, "%s\n", rfkill->name);
573}
574
575static const char *rfkill_get_type_str(enum rfkill_type type)
576{
577 switch (type) {
578 case RFKILL_TYPE_WLAN:
579 return "wlan";
580 case RFKILL_TYPE_BLUETOOTH:
581 return "bluetooth";
582 case RFKILL_TYPE_UWB:
583 return "ultrawideband";
584 case RFKILL_TYPE_WIMAX:
585 return "wimax";
586 case RFKILL_TYPE_WWAN:
587 return "wwan";
588 default:
589 BUG();
590 }
591
592 BUILD_BUG_ON(NUM_RFKILL_TYPES != RFKILL_TYPE_WWAN + 1);
593}
594
595static ssize_t rfkill_type_show(struct device *dev,
596 struct device_attribute *attr,
597 char *buf)
598{
599 struct rfkill *rfkill = to_rfkill(dev);
600
601 return sprintf(buf, "%s\n", rfkill_get_type_str(rfkill->type));
602}
603
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604static ssize_t rfkill_idx_show(struct device *dev,
605 struct device_attribute *attr,
606 char *buf)
607{
608 struct rfkill *rfkill = to_rfkill(dev);
609
610 return sprintf(buf, "%d\n", rfkill->idx);
611}
612
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613static u8 user_state_from_blocked(unsigned long state)
614{
615 if (state & RFKILL_BLOCK_HW)
616 return RFKILL_USER_STATE_HARD_BLOCKED;
617 if (state & RFKILL_BLOCK_SW)
618 return RFKILL_USER_STATE_SOFT_BLOCKED;
619
620 return RFKILL_USER_STATE_UNBLOCKED;
621}
622
623static ssize_t rfkill_state_show(struct device *dev,
624 struct device_attribute *attr,
625 char *buf)
626{
627 struct rfkill *rfkill = to_rfkill(dev);
628 unsigned long flags;
629 u32 state;
630
631 spin_lock_irqsave(&rfkill->lock, flags);
632 state = rfkill->state;
633 spin_unlock_irqrestore(&rfkill->lock, flags);
634
635 return sprintf(buf, "%d\n", user_state_from_blocked(state));
636}
637
638static ssize_t rfkill_state_store(struct device *dev,
639 struct device_attribute *attr,
640 const char *buf, size_t count)
641{
642 /*
643 * The intention was that userspace can only take control over
644 * a given device when/if rfkill-input doesn't control it due
645 * to user_claim. Since user_claim is currently unsupported,
646 * we never support changing the state from userspace -- this
647 * can be implemented again later.
648 */
649
650 return -EPERM;
651}
652
653static ssize_t rfkill_claim_show(struct device *dev,
654 struct device_attribute *attr,
655 char *buf)
656{
657 return sprintf(buf, "%d\n", 0);
658}
659
660static ssize_t rfkill_claim_store(struct device *dev,
661 struct device_attribute *attr,
662 const char *buf, size_t count)
663{
664 return -EOPNOTSUPP;
665}
666
667static struct device_attribute rfkill_dev_attrs[] = {
668 __ATTR(name, S_IRUGO, rfkill_name_show, NULL),
669 __ATTR(type, S_IRUGO, rfkill_type_show, NULL),
c64fb016 670 __ATTR(index, S_IRUGO, rfkill_idx_show, NULL),
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671 __ATTR(state, S_IRUGO|S_IWUSR, rfkill_state_show, rfkill_state_store),
672 __ATTR(claim, S_IRUGO|S_IWUSR, rfkill_claim_show, rfkill_claim_store),
673 __ATTR_NULL
674};
675
676static void rfkill_release(struct device *dev)
677{
678 struct rfkill *rfkill = to_rfkill(dev);
679
680 kfree(rfkill);
681}
682
683static int rfkill_dev_uevent(struct device *dev, struct kobj_uevent_env *env)
684{
685 struct rfkill *rfkill = to_rfkill(dev);
686 unsigned long flags;
687 u32 state;
688 int error;
689
690 error = add_uevent_var(env, "RFKILL_NAME=%s", rfkill->name);
691 if (error)
692 return error;
693 error = add_uevent_var(env, "RFKILL_TYPE=%s",
694 rfkill_get_type_str(rfkill->type));
695 if (error)
696 return error;
697 spin_lock_irqsave(&rfkill->lock, flags);
698 state = rfkill->state;
699 spin_unlock_irqrestore(&rfkill->lock, flags);
700 error = add_uevent_var(env, "RFKILL_STATE=%d",
701 user_state_from_blocked(state));
702 return error;
703}
704
705void rfkill_pause_polling(struct rfkill *rfkill)
706{
707 BUG_ON(!rfkill);
708
709 if (!rfkill->ops->poll)
710 return;
711
712 cancel_delayed_work_sync(&rfkill->poll_work);
713}
714EXPORT_SYMBOL(rfkill_pause_polling);
715
716void rfkill_resume_polling(struct rfkill *rfkill)
717{
718 BUG_ON(!rfkill);
719
720 if (!rfkill->ops->poll)
721 return;
722
723 schedule_work(&rfkill->poll_work.work);
724}
725EXPORT_SYMBOL(rfkill_resume_polling);
726
727static int rfkill_suspend(struct device *dev, pm_message_t state)
728{
729 struct rfkill *rfkill = to_rfkill(dev);
730
731 rfkill_pause_polling(rfkill);
732
19d337df
JB
733 return 0;
734}
735
736static int rfkill_resume(struct device *dev)
737{
738 struct rfkill *rfkill = to_rfkill(dev);
739 bool cur;
740
06d5caf4
AJ
741 if (!rfkill->persistent) {
742 cur = !!(rfkill->state & RFKILL_BLOCK_SW);
743 rfkill_set_block(rfkill, cur);
744 }
19d337df 745
19d337df
JB
746 rfkill_resume_polling(rfkill);
747
748 return 0;
749}
750
751static struct class rfkill_class = {
752 .name = "rfkill",
753 .dev_release = rfkill_release,
754 .dev_attrs = rfkill_dev_attrs,
755 .dev_uevent = rfkill_dev_uevent,
756 .suspend = rfkill_suspend,
757 .resume = rfkill_resume,
758};
759
6081162e
JB
760bool rfkill_blocked(struct rfkill *rfkill)
761{
762 unsigned long flags;
763 u32 state;
764
765 spin_lock_irqsave(&rfkill->lock, flags);
766 state = rfkill->state;
767 spin_unlock_irqrestore(&rfkill->lock, flags);
768
769 return !!(state & RFKILL_BLOCK_ANY);
770}
771EXPORT_SYMBOL(rfkill_blocked);
772
19d337df
JB
773
774struct rfkill * __must_check rfkill_alloc(const char *name,
775 struct device *parent,
776 const enum rfkill_type type,
777 const struct rfkill_ops *ops,
778 void *ops_data)
779{
780 struct rfkill *rfkill;
781 struct device *dev;
782
783 if (WARN_ON(!ops))
784 return NULL;
785
786 if (WARN_ON(!ops->set_block))
787 return NULL;
788
789 if (WARN_ON(!name))
790 return NULL;
791
c64fb016 792 if (WARN_ON(type == RFKILL_TYPE_ALL || type >= NUM_RFKILL_TYPES))
19d337df
JB
793 return NULL;
794
795 rfkill = kzalloc(sizeof(*rfkill), GFP_KERNEL);
796 if (!rfkill)
797 return NULL;
798
799 spin_lock_init(&rfkill->lock);
800 INIT_LIST_HEAD(&rfkill->node);
801 rfkill->type = type;
802 rfkill->name = name;
803 rfkill->ops = ops;
804 rfkill->data = ops_data;
805
806 dev = &rfkill->dev;
807 dev->class = &rfkill_class;
808 dev->parent = parent;
809 device_initialize(dev);
810
811 return rfkill;
812}
813EXPORT_SYMBOL(rfkill_alloc);
814
815static void rfkill_poll(struct work_struct *work)
816{
817 struct rfkill *rfkill;
818
819 rfkill = container_of(work, struct rfkill, poll_work.work);
820
821 /*
822 * Poll hardware state -- driver will use one of the
823 * rfkill_set{,_hw,_sw}_state functions and use its
824 * return value to update the current status.
825 */
826 rfkill->ops->poll(rfkill, rfkill->data);
827
828 schedule_delayed_work(&rfkill->poll_work,
829 round_jiffies_relative(POLL_INTERVAL));
830}
831
832static void rfkill_uevent_work(struct work_struct *work)
833{
834 struct rfkill *rfkill;
835
836 rfkill = container_of(work, struct rfkill, uevent_work);
837
c64fb016
JB
838 mutex_lock(&rfkill_global_mutex);
839 rfkill_event(rfkill);
840 mutex_unlock(&rfkill_global_mutex);
19d337df
JB
841}
842
843static void rfkill_sync_work(struct work_struct *work)
844{
845 struct rfkill *rfkill;
846 bool cur;
847
848 rfkill = container_of(work, struct rfkill, sync_work);
849
850 mutex_lock(&rfkill_global_mutex);
851 cur = rfkill_global_states[rfkill->type].cur;
852 rfkill_set_block(rfkill, cur);
853 mutex_unlock(&rfkill_global_mutex);
854}
855
856int __must_check rfkill_register(struct rfkill *rfkill)
857{
858 static unsigned long rfkill_no;
859 struct device *dev = &rfkill->dev;
860 int error;
861
862 BUG_ON(!rfkill);
863
864 mutex_lock(&rfkill_global_mutex);
865
866 if (rfkill->registered) {
867 error = -EALREADY;
868 goto unlock;
869 }
870
c64fb016 871 rfkill->idx = rfkill_no;
19d337df
JB
872 dev_set_name(dev, "rfkill%lu", rfkill_no);
873 rfkill_no++;
874
19d337df
JB
875 list_add_tail(&rfkill->node, &rfkill_list);
876
877 error = device_add(dev);
878 if (error)
879 goto remove;
880
881 error = rfkill_led_trigger_register(rfkill);
882 if (error)
883 goto devdel;
884
885 rfkill->registered = true;
886
2ec2c68c 887 INIT_DELAYED_WORK(&rfkill->poll_work, rfkill_poll);
19d337df 888 INIT_WORK(&rfkill->uevent_work, rfkill_uevent_work);
19d337df 889 INIT_WORK(&rfkill->sync_work, rfkill_sync_work);
2ec2c68c
JB
890
891 if (rfkill->ops->poll)
892 schedule_delayed_work(&rfkill->poll_work,
893 round_jiffies_relative(POLL_INTERVAL));
b3fa1329
AJ
894
895 if (!rfkill->persistent || rfkill_epo_lock_active) {
896 schedule_work(&rfkill->sync_work);
897 } else {
898#ifdef CONFIG_RFKILL_INPUT
899 bool soft_blocked = !!(rfkill->state & RFKILL_BLOCK_SW);
900
901 if (!atomic_read(&rfkill_input_disabled))
902 __rfkill_switch_all(rfkill->type, soft_blocked);
903#endif
904 }
2ec2c68c 905
c64fb016 906 rfkill_send_events(rfkill, RFKILL_OP_ADD);
19d337df
JB
907
908 mutex_unlock(&rfkill_global_mutex);
909 return 0;
910
911 devdel:
912 device_del(&rfkill->dev);
913 remove:
914 list_del_init(&rfkill->node);
915 unlock:
916 mutex_unlock(&rfkill_global_mutex);
917 return error;
918}
919EXPORT_SYMBOL(rfkill_register);
920
921void rfkill_unregister(struct rfkill *rfkill)
922{
923 BUG_ON(!rfkill);
924
925 if (rfkill->ops->poll)
926 cancel_delayed_work_sync(&rfkill->poll_work);
927
928 cancel_work_sync(&rfkill->uevent_work);
929 cancel_work_sync(&rfkill->sync_work);
930
931 rfkill->registered = false;
932
933 device_del(&rfkill->dev);
934
935 mutex_lock(&rfkill_global_mutex);
c64fb016 936 rfkill_send_events(rfkill, RFKILL_OP_DEL);
19d337df
JB
937 list_del_init(&rfkill->node);
938 mutex_unlock(&rfkill_global_mutex);
939
940 rfkill_led_trigger_unregister(rfkill);
941}
942EXPORT_SYMBOL(rfkill_unregister);
943
944void rfkill_destroy(struct rfkill *rfkill)
945{
946 if (rfkill)
947 put_device(&rfkill->dev);
948}
949EXPORT_SYMBOL(rfkill_destroy);
950
c64fb016
JB
951static int rfkill_fop_open(struct inode *inode, struct file *file)
952{
953 struct rfkill_data *data;
954 struct rfkill *rfkill;
955 struct rfkill_int_event *ev, *tmp;
956
957 data = kzalloc(sizeof(*data), GFP_KERNEL);
958 if (!data)
959 return -ENOMEM;
960
961 INIT_LIST_HEAD(&data->events);
962 mutex_init(&data->mtx);
963 init_waitqueue_head(&data->read_wait);
964
965 mutex_lock(&rfkill_global_mutex);
966 mutex_lock(&data->mtx);
967 /*
968 * start getting events from elsewhere but hold mtx to get
969 * startup events added first
970 */
971 list_add(&data->list, &rfkill_fds);
972
973 list_for_each_entry(rfkill, &rfkill_list, node) {
974 ev = kzalloc(sizeof(*ev), GFP_KERNEL);
975 if (!ev)
976 goto free;
977 rfkill_fill_event(&ev->ev, rfkill, RFKILL_OP_ADD);
978 list_add_tail(&ev->list, &data->events);
979 }
980 mutex_unlock(&data->mtx);
981 mutex_unlock(&rfkill_global_mutex);
982
983 file->private_data = data;
984
985 return nonseekable_open(inode, file);
986
987 free:
988 mutex_unlock(&data->mtx);
989 mutex_unlock(&rfkill_global_mutex);
990 mutex_destroy(&data->mtx);
991 list_for_each_entry_safe(ev, tmp, &data->events, list)
992 kfree(ev);
993 kfree(data);
994 return -ENOMEM;
995}
996
997static unsigned int rfkill_fop_poll(struct file *file, poll_table *wait)
998{
999 struct rfkill_data *data = file->private_data;
1000 unsigned int res = POLLOUT | POLLWRNORM;
1001
1002 poll_wait(file, &data->read_wait, wait);
1003
1004 mutex_lock(&data->mtx);
1005 if (!list_empty(&data->events))
1006 res = POLLIN | POLLRDNORM;
1007 mutex_unlock(&data->mtx);
1008
1009 return res;
1010}
1011
1012static bool rfkill_readable(struct rfkill_data *data)
1013{
1014 bool r;
1015
1016 mutex_lock(&data->mtx);
1017 r = !list_empty(&data->events);
1018 mutex_unlock(&data->mtx);
1019
1020 return r;
1021}
1022
1023static ssize_t rfkill_fop_read(struct file *file, char __user *buf,
1024 size_t count, loff_t *pos)
1025{
1026 struct rfkill_data *data = file->private_data;
1027 struct rfkill_int_event *ev;
1028 unsigned long sz;
1029 int ret;
1030
1031 mutex_lock(&data->mtx);
1032
1033 while (list_empty(&data->events)) {
1034 if (file->f_flags & O_NONBLOCK) {
1035 ret = -EAGAIN;
1036 goto out;
1037 }
1038 mutex_unlock(&data->mtx);
1039 ret = wait_event_interruptible(data->read_wait,
1040 rfkill_readable(data));
1041 mutex_lock(&data->mtx);
1042
1043 if (ret)
1044 goto out;
1045 }
1046
1047 ev = list_first_entry(&data->events, struct rfkill_int_event,
1048 list);
1049
1050 sz = min_t(unsigned long, sizeof(ev->ev), count);
1051 ret = sz;
1052 if (copy_to_user(buf, &ev->ev, sz))
1053 ret = -EFAULT;
1054
1055 list_del(&ev->list);
1056 kfree(ev);
1057 out:
1058 mutex_unlock(&data->mtx);
1059 return ret;
1060}
1061
1062static ssize_t rfkill_fop_write(struct file *file, const char __user *buf,
1063 size_t count, loff_t *pos)
1064{
1065 struct rfkill *rfkill;
1066 struct rfkill_event ev;
1067
1068 /* we don't need the 'hard' variable but accept it */
1069 if (count < sizeof(ev) - 1)
1070 return -EINVAL;
1071
1072 if (copy_from_user(&ev, buf, sizeof(ev) - 1))
1073 return -EFAULT;
1074
1075 if (ev.op != RFKILL_OP_CHANGE && ev.op != RFKILL_OP_CHANGE_ALL)
1076 return -EINVAL;
1077
1078 if (ev.type >= NUM_RFKILL_TYPES)
1079 return -EINVAL;
1080
1081 mutex_lock(&rfkill_global_mutex);
1082
1083 if (ev.op == RFKILL_OP_CHANGE_ALL) {
1084 if (ev.type == RFKILL_TYPE_ALL) {
1085 enum rfkill_type i;
1086 for (i = 0; i < NUM_RFKILL_TYPES; i++)
1087 rfkill_global_states[i].cur = ev.soft;
1088 } else {
1089 rfkill_global_states[ev.type].cur = ev.soft;
1090 }
1091 }
1092
1093 list_for_each_entry(rfkill, &rfkill_list, node) {
1094 if (rfkill->idx != ev.idx && ev.op != RFKILL_OP_CHANGE_ALL)
1095 continue;
1096
1097 if (rfkill->type != ev.type && ev.type != RFKILL_TYPE_ALL)
1098 continue;
1099
1100 rfkill_set_block(rfkill, ev.soft);
1101 }
1102 mutex_unlock(&rfkill_global_mutex);
1103
1104 return count;
1105}
1106
1107static int rfkill_fop_release(struct inode *inode, struct file *file)
1108{
1109 struct rfkill_data *data = file->private_data;
1110 struct rfkill_int_event *ev, *tmp;
1111
1112 mutex_lock(&rfkill_global_mutex);
1113 list_del(&data->list);
1114 mutex_unlock(&rfkill_global_mutex);
1115
1116 mutex_destroy(&data->mtx);
1117 list_for_each_entry_safe(ev, tmp, &data->events, list)
1118 kfree(ev);
1119
1120#ifdef CONFIG_RFKILL_INPUT
1121 if (data->input_handler)
207ee162
JB
1122 if (atomic_dec_return(&rfkill_input_disabled) == 0)
1123 printk(KERN_DEBUG "rfkill: input handler enabled\n");
c64fb016
JB
1124#endif
1125
1126 kfree(data);
1127
1128 return 0;
1129}
1130
1131#ifdef CONFIG_RFKILL_INPUT
1132static long rfkill_fop_ioctl(struct file *file, unsigned int cmd,
1133 unsigned long arg)
1134{
1135 struct rfkill_data *data = file->private_data;
1136
1137 if (_IOC_TYPE(cmd) != RFKILL_IOC_MAGIC)
1138 return -ENOSYS;
1139
1140 if (_IOC_NR(cmd) != RFKILL_IOC_NOINPUT)
1141 return -ENOSYS;
1142
1143 mutex_lock(&data->mtx);
1144
1145 if (!data->input_handler) {
207ee162
JB
1146 if (atomic_inc_return(&rfkill_input_disabled) == 1)
1147 printk(KERN_DEBUG "rfkill: input handler disabled\n");
c64fb016
JB
1148 data->input_handler = true;
1149 }
1150
1151 mutex_unlock(&data->mtx);
1152
1153 return 0;
1154}
1155#endif
1156
1157static const struct file_operations rfkill_fops = {
1158 .open = rfkill_fop_open,
1159 .read = rfkill_fop_read,
1160 .write = rfkill_fop_write,
1161 .poll = rfkill_fop_poll,
1162 .release = rfkill_fop_release,
1163#ifdef CONFIG_RFKILL_INPUT
1164 .unlocked_ioctl = rfkill_fop_ioctl,
1165 .compat_ioctl = rfkill_fop_ioctl,
1166#endif
1167};
1168
1169static struct miscdevice rfkill_miscdev = {
1170 .name = "rfkill",
1171 .fops = &rfkill_fops,
1172 .minor = MISC_DYNAMIC_MINOR,
1173};
19d337df
JB
1174
1175static int __init rfkill_init(void)
1176{
1177 int error;
1178 int i;
1179
1180 for (i = 0; i < NUM_RFKILL_TYPES; i++)
b3fa1329 1181 rfkill_global_states[i].cur = !rfkill_default_state;
19d337df
JB
1182
1183 error = class_register(&rfkill_class);
1184 if (error)
1185 goto out;
1186
c64fb016
JB
1187 error = misc_register(&rfkill_miscdev);
1188 if (error) {
1189 class_unregister(&rfkill_class);
1190 goto out;
1191 }
1192
19d337df
JB
1193#ifdef CONFIG_RFKILL_INPUT
1194 error = rfkill_handler_init();
c64fb016
JB
1195 if (error) {
1196 misc_deregister(&rfkill_miscdev);
19d337df 1197 class_unregister(&rfkill_class);
c64fb016
JB
1198 goto out;
1199 }
19d337df
JB
1200#endif
1201
1202 out:
1203 return error;
1204}
1205subsys_initcall(rfkill_init);
1206
1207static void __exit rfkill_exit(void)
1208{
1209#ifdef CONFIG_RFKILL_INPUT
1210 rfkill_handler_exit();
1211#endif
c64fb016 1212 misc_deregister(&rfkill_miscdev);
19d337df
JB
1213 class_unregister(&rfkill_class);
1214}
1215module_exit(rfkill_exit);