2 * Copyright (C) 2006 - 2007 Ivo van Doorn
3 * Copyright (C) 2007 Dmitry Torokhov
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the
17 * Free Software Foundation, Inc.,
18 * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
21 #include <linux/kernel.h>
22 #include <linux/module.h>
23 #include <linux/init.h>
24 #include <linux/workqueue.h>
25 #include <linux/capability.h>
26 #include <linux/list.h>
27 #include <linux/mutex.h>
28 #include <linux/rfkill.h>
30 /* Get declaration of rfkill_switch_all() to shut up sparse. */
31 #include "rfkill-input.h"
34 MODULE_AUTHOR("Ivo van Doorn <IvDoorn@gmail.com>");
35 MODULE_VERSION("1.0");
36 MODULE_DESCRIPTION("RF switch support");
37 MODULE_LICENSE("GPL");
39 static LIST_HEAD(rfkill_list); /* list of registered rf switches */
40 static DEFINE_MUTEX(rfkill_mutex);
42 static enum rfkill_state rfkill_states[RFKILL_TYPE_MAX];
45 static void rfkill_led_trigger(struct rfkill *rfkill,
46 enum rfkill_state state)
48 #ifdef CONFIG_RFKILL_LEDS
49 struct led_trigger *led = &rfkill->led_trigger;
53 if (state == RFKILL_STATE_OFF)
54 led_trigger_event(led, LED_OFF);
56 led_trigger_event(led, LED_FULL);
57 #endif /* CONFIG_RFKILL_LEDS */
60 static int rfkill_toggle_radio(struct rfkill *rfkill,
61 enum rfkill_state state)
65 retval = mutex_lock_interruptible(&rfkill->mutex);
69 if (state != rfkill->state) {
70 retval = rfkill->toggle_radio(rfkill->data, state);
72 rfkill->state = state;
73 rfkill_led_trigger(rfkill, state);
77 mutex_unlock(&rfkill->mutex);
82 * rfkill_switch_all - Toggle state of all switches of given type
83 * @type: type of interfaces to be affeceted
84 * @state: the new state
86 * This function toggles state of all switches of given type unless
87 * a specific switch is claimed by userspace in which case it is
91 void rfkill_switch_all(enum rfkill_type type, enum rfkill_state state)
93 struct rfkill *rfkill;
95 mutex_lock(&rfkill_mutex);
97 rfkill_states[type] = state;
99 list_for_each_entry(rfkill, &rfkill_list, node) {
100 if (!rfkill->user_claim)
101 rfkill_toggle_radio(rfkill, state);
104 mutex_unlock(&rfkill_mutex);
106 EXPORT_SYMBOL(rfkill_switch_all);
108 static ssize_t rfkill_name_show(struct device *dev,
109 struct device_attribute *attr,
112 struct rfkill *rfkill = to_rfkill(dev);
114 return sprintf(buf, "%s\n", rfkill->name);
117 static ssize_t rfkill_type_show(struct device *dev,
118 struct device_attribute *attr,
121 struct rfkill *rfkill = to_rfkill(dev);
124 switch (rfkill->type) {
125 case RFKILL_TYPE_WLAN:
128 case RFKILL_TYPE_BLUETOOTH:
131 case RFKILL_TYPE_UWB:
132 type = "ultrawideband";
138 return sprintf(buf, "%s\n", type);
141 static ssize_t rfkill_state_show(struct device *dev,
142 struct device_attribute *attr,
145 struct rfkill *rfkill = to_rfkill(dev);
147 return sprintf(buf, "%d\n", rfkill->state);
150 static ssize_t rfkill_state_store(struct device *dev,
151 struct device_attribute *attr,
152 const char *buf, size_t count)
154 struct rfkill *rfkill = to_rfkill(dev);
155 unsigned int state = simple_strtoul(buf, NULL, 0);
158 if (!capable(CAP_NET_ADMIN))
161 error = rfkill_toggle_radio(rfkill,
162 state ? RFKILL_STATE_ON : RFKILL_STATE_OFF);
169 static ssize_t rfkill_claim_show(struct device *dev,
170 struct device_attribute *attr,
173 struct rfkill *rfkill = to_rfkill(dev);
175 return sprintf(buf, "%d", rfkill->user_claim);
178 static ssize_t rfkill_claim_store(struct device *dev,
179 struct device_attribute *attr,
180 const char *buf, size_t count)
182 struct rfkill *rfkill = to_rfkill(dev);
183 bool claim = !!simple_strtoul(buf, NULL, 0);
186 if (!capable(CAP_NET_ADMIN))
190 * Take the global lock to make sure the kernel is not in
191 * the middle of rfkill_switch_all
193 error = mutex_lock_interruptible(&rfkill_mutex);
197 if (rfkill->user_claim_unsupported) {
201 if (rfkill->user_claim != claim) {
203 rfkill_toggle_radio(rfkill,
204 rfkill_states[rfkill->type]);
205 rfkill->user_claim = claim;
209 mutex_unlock(&rfkill_mutex);
211 return error ? error : count;
214 static struct device_attribute rfkill_dev_attrs[] = {
215 __ATTR(name, S_IRUGO, rfkill_name_show, NULL),
216 __ATTR(type, S_IRUGO, rfkill_type_show, NULL),
217 __ATTR(state, S_IRUGO|S_IWUSR, rfkill_state_show, rfkill_state_store),
218 __ATTR(claim, S_IRUGO|S_IWUSR, rfkill_claim_show, rfkill_claim_store),
222 static void rfkill_release(struct device *dev)
224 struct rfkill *rfkill = to_rfkill(dev);
227 module_put(THIS_MODULE);
231 static int rfkill_suspend(struct device *dev, pm_message_t state)
233 struct rfkill *rfkill = to_rfkill(dev);
235 if (dev->power.power_state.event != state.event) {
236 if (state.event == PM_EVENT_SUSPEND) {
237 mutex_lock(&rfkill->mutex);
239 if (rfkill->state == RFKILL_STATE_ON)
240 rfkill->toggle_radio(rfkill->data,
243 mutex_unlock(&rfkill->mutex);
246 dev->power.power_state = state;
252 static int rfkill_resume(struct device *dev)
254 struct rfkill *rfkill = to_rfkill(dev);
256 if (dev->power.power_state.event != PM_EVENT_ON) {
257 mutex_lock(&rfkill->mutex);
259 if (rfkill->state == RFKILL_STATE_ON)
260 rfkill->toggle_radio(rfkill->data, RFKILL_STATE_ON);
262 mutex_unlock(&rfkill->mutex);
265 dev->power.power_state = PMSG_ON;
269 #define rfkill_suspend NULL
270 #define rfkill_resume NULL
273 static struct class rfkill_class = {
275 .dev_release = rfkill_release,
276 .dev_attrs = rfkill_dev_attrs,
277 .suspend = rfkill_suspend,
278 .resume = rfkill_resume,
281 static int rfkill_add_switch(struct rfkill *rfkill)
285 mutex_lock(&rfkill_mutex);
287 error = rfkill_toggle_radio(rfkill, rfkill_states[rfkill->type]);
289 list_add_tail(&rfkill->node, &rfkill_list);
291 mutex_unlock(&rfkill_mutex);
296 static void rfkill_remove_switch(struct rfkill *rfkill)
298 mutex_lock(&rfkill_mutex);
299 list_del_init(&rfkill->node);
300 rfkill_toggle_radio(rfkill, RFKILL_STATE_OFF);
301 mutex_unlock(&rfkill_mutex);
305 * rfkill_allocate - allocate memory for rfkill structure.
306 * @parent: device that has rf switch on it
307 * @type: type of the switch (RFKILL_TYPE_*)
309 * This function should be called by the network driver when it needs
310 * rfkill structure. Once the structure is allocated the driver shoud
311 * finish its initialization by setting name, private data, enable_radio
312 * and disable_radio methods and then register it with rfkill_register().
313 * NOTE: If registration fails the structure shoudl be freed by calling
314 * rfkill_free() otherwise rfkill_unregister() should be used.
316 struct rfkill *rfkill_allocate(struct device *parent, enum rfkill_type type)
318 struct rfkill *rfkill;
321 rfkill = kzalloc(sizeof(struct rfkill), GFP_KERNEL);
325 mutex_init(&rfkill->mutex);
326 INIT_LIST_HEAD(&rfkill->node);
330 dev->class = &rfkill_class;
331 dev->parent = parent;
332 device_initialize(dev);
334 __module_get(THIS_MODULE);
338 EXPORT_SYMBOL(rfkill_allocate);
341 * rfkill_free - Mark rfkill structure for deletion
342 * @rfkill: rfkill structure to be destroyed
344 * Decrements reference count of rfkill structure so it is destoryed.
345 * Note that rfkill_free() should _not_ be called after rfkill_unregister().
347 void rfkill_free(struct rfkill *rfkill)
350 put_device(&rfkill->dev);
352 EXPORT_SYMBOL(rfkill_free);
354 static void rfkill_led_trigger_register(struct rfkill *rfkill)
356 #ifdef CONFIG_RFKILL_LEDS
359 rfkill->led_trigger.name = rfkill->dev.bus_id;
360 error = led_trigger_register(&rfkill->led_trigger);
362 rfkill->led_trigger.name = NULL;
363 #endif /* CONFIG_RFKILL_LEDS */
366 static void rfkill_led_trigger_unregister(struct rfkill *rfkill)
368 #ifdef CONFIG_RFKILL_LEDS
369 if (rfkill->led_trigger.name)
370 led_trigger_unregister(&rfkill->led_trigger);
375 * rfkill_register - Register a rfkill structure.
376 * @rfkill: rfkill structure to be registered
378 * This function should be called by the network driver when the rfkill
379 * structure needs to be registered. Immediately from registration the
380 * switch driver should be able to service calls to toggle_radio.
382 int rfkill_register(struct rfkill *rfkill)
384 static atomic_t rfkill_no = ATOMIC_INIT(0);
385 struct device *dev = &rfkill->dev;
388 if (!rfkill->toggle_radio)
390 if (rfkill->type >= RFKILL_TYPE_MAX)
393 snprintf(dev->bus_id, sizeof(dev->bus_id),
394 "rfkill%ld", (long)atomic_inc_return(&rfkill_no) - 1);
396 rfkill_led_trigger_register(rfkill);
398 error = rfkill_add_switch(rfkill);
402 error = device_add(dev);
404 rfkill_remove_switch(rfkill);
410 EXPORT_SYMBOL(rfkill_register);
413 * rfkill_unregister - Uegister a rfkill structure.
414 * @rfkill: rfkill structure to be unregistered
416 * This function should be called by the network driver during device
417 * teardown to destroy rfkill structure. Note that rfkill_free() should
418 * _not_ be called after rfkill_unregister().
420 void rfkill_unregister(struct rfkill *rfkill)
422 device_del(&rfkill->dev);
423 rfkill_remove_switch(rfkill);
424 rfkill_led_trigger_unregister(rfkill);
425 put_device(&rfkill->dev);
427 EXPORT_SYMBOL(rfkill_unregister);
430 * Rfkill module initialization/deinitialization.
432 static int __init rfkill_init(void)
437 for (i = 0; i < ARRAY_SIZE(rfkill_states); i++)
438 rfkill_states[i] = RFKILL_STATE_ON;
440 error = class_register(&rfkill_class);
442 printk(KERN_ERR "rfkill: unable to register rfkill class\n");
449 static void __exit rfkill_exit(void)
451 class_unregister(&rfkill_class);
454 subsys_initcall(rfkill_init);
455 module_exit(rfkill_exit);