1 /*
2 * Jack abstraction layer
3 *
4 * Copyright 2008 Wolfson Microelectronics
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 Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
19 *
20 */
21
22 #include <linux/input.h>
23 #include <linux/slab.h>
24 #include <linux/module.h>
25 #include <sound/jack.h>
26 #include <sound/core.h>
27 #include <sound/control.h>
28
29 struct snd_jack_kctl {
30 struct snd_kcontrol *kctl;
31 struct list_head list; /* list of controls belong to the same jack */
32 unsigned int mask_bits; /* only masked status bits are reported via kctl */
33 };
34
35 static int jack_switch_types[SND_JACK_SWITCH_TYPES] = {
36 SW_HEADPHONE_INSERT,
37 SW_MICROPHONE_INSERT,
38 SW_LINEOUT_INSERT,
39 SW_JACK_PHYSICAL_INSERT,
40 SW_VIDEOOUT_INSERT,
41 SW_LINEIN_INSERT,
42 };
43
snd_jack_dev_disconnect(struct snd_device * device)44 static int snd_jack_dev_disconnect(struct snd_device *device)
45 {
46 struct snd_jack *jack = device->device_data;
47
48 if (!jack->input_dev)
49 return 0;
50
51 /* If the input device is registered with the input subsystem
52 * then we need to use a different deallocator. */
53 if (jack->registered)
54 input_unregister_device(jack->input_dev);
55 else
56 input_free_device(jack->input_dev);
57 jack->input_dev = NULL;
58 return 0;
59 }
60
snd_jack_dev_free(struct snd_device * device)61 static int snd_jack_dev_free(struct snd_device *device)
62 {
63 struct snd_jack *jack = device->device_data;
64 struct snd_card *card = device->card;
65 struct snd_jack_kctl *jack_kctl, *tmp_jack_kctl;
66
67 down_write(&card->controls_rwsem);
68 list_for_each_entry_safe(jack_kctl, tmp_jack_kctl, &jack->kctl_list, list) {
69 list_del_init(&jack_kctl->list);
70 snd_ctl_remove(card, jack_kctl->kctl);
71 }
72 up_write(&card->controls_rwsem);
73
74 if (jack->private_free)
75 jack->private_free(jack);
76
77 snd_jack_dev_disconnect(device);
78
79 kfree(jack->id);
80 kfree(jack);
81
82 return 0;
83 }
84
snd_jack_dev_register(struct snd_device * device)85 static int snd_jack_dev_register(struct snd_device *device)
86 {
87 struct snd_jack *jack = device->device_data;
88 struct snd_card *card = device->card;
89 int err, i;
90
91 snprintf(jack->name, sizeof(jack->name), "%s %s",
92 card->shortname, jack->id);
93
94 if (!jack->input_dev)
95 return 0;
96
97 jack->input_dev->name = jack->name;
98
99 /* Default to the sound card device. */
100 if (!jack->input_dev->dev.parent)
101 jack->input_dev->dev.parent = snd_card_get_device_link(card);
102
103 /* Add capabilities for any keys that are enabled */
104 for (i = 0; i < ARRAY_SIZE(jack->key); i++) {
105 int testbit = SND_JACK_BTN_0 >> i;
106
107 if (!(jack->type & testbit))
108 continue;
109
110 if (!jack->key[i])
111 jack->key[i] = BTN_0 + i;
112
113 input_set_capability(jack->input_dev, EV_KEY, jack->key[i]);
114 }
115
116 err = input_register_device(jack->input_dev);
117 if (err == 0)
118 jack->registered = 1;
119
120 return err;
121 }
122
snd_jack_kctl_private_free(struct snd_kcontrol * kctl)123 static void snd_jack_kctl_private_free(struct snd_kcontrol *kctl)
124 {
125 struct snd_jack_kctl *jack_kctl;
126
127 jack_kctl = kctl->private_data;
128 if (jack_kctl) {
129 list_del(&jack_kctl->list);
130 kfree(jack_kctl);
131 }
132 }
133
snd_jack_kctl_add(struct snd_jack * jack,struct snd_jack_kctl * jack_kctl)134 static void snd_jack_kctl_add(struct snd_jack *jack, struct snd_jack_kctl *jack_kctl)
135 {
136 list_add_tail(&jack_kctl->list, &jack->kctl_list);
137 }
138
snd_jack_kctl_new(struct snd_card * card,const char * name,unsigned int mask)139 static struct snd_jack_kctl * snd_jack_kctl_new(struct snd_card *card, const char *name, unsigned int mask)
140 {
141 struct snd_kcontrol *kctl;
142 struct snd_jack_kctl *jack_kctl;
143 int err;
144
145 kctl = snd_kctl_jack_new(name, card);
146 if (!kctl)
147 return NULL;
148
149 err = snd_ctl_add(card, kctl);
150 if (err < 0)
151 return NULL;
152
153 jack_kctl = kzalloc(sizeof(*jack_kctl), GFP_KERNEL);
154
155 if (!jack_kctl)
156 goto error;
157
158 jack_kctl->kctl = kctl;
159 jack_kctl->mask_bits = mask;
160
161 kctl->private_data = jack_kctl;
162 kctl->private_free = snd_jack_kctl_private_free;
163
164 return jack_kctl;
165 error:
166 snd_ctl_free_one(kctl);
167 return NULL;
168 }
169
170 /**
171 * snd_jack_add_new_kctl - Create a new snd_jack_kctl and add it to jack
172 * @jack: the jack instance which the kctl will attaching to
173 * @name: the name for the snd_kcontrol object
174 * @mask: a bitmask of enum snd_jack_type values that can be detected
175 * by this snd_jack_kctl object.
176 *
177 * Creates a new snd_kcontrol object and adds it to the jack kctl_list.
178 *
179 * Return: Zero if successful, or a negative error code on failure.
180 */
snd_jack_add_new_kctl(struct snd_jack * jack,const char * name,int mask)181 int snd_jack_add_new_kctl(struct snd_jack *jack, const char * name, int mask)
182 {
183 struct snd_jack_kctl *jack_kctl;
184
185 jack_kctl = snd_jack_kctl_new(jack->card, name, mask);
186 if (!jack_kctl)
187 return -ENOMEM;
188
189 snd_jack_kctl_add(jack, jack_kctl);
190 return 0;
191 }
192 EXPORT_SYMBOL(snd_jack_add_new_kctl);
193
194 /**
195 * snd_jack_new - Create a new jack
196 * @card: the card instance
197 * @id: an identifying string for this jack
198 * @type: a bitmask of enum snd_jack_type values that can be detected by
199 * this jack
200 * @jjack: Used to provide the allocated jack object to the caller.
201 * @initial_kctl: if true, create a kcontrol and add it to the jack list.
202 * @phantom_jack: Don't create a input device for phantom jacks.
203 *
204 * Creates a new jack object.
205 *
206 * Return: Zero if successful, or a negative error code on failure.
207 * On success @jjack will be initialised.
208 */
snd_jack_new(struct snd_card * card,const char * id,int type,struct snd_jack ** jjack,bool initial_kctl,bool phantom_jack)209 int snd_jack_new(struct snd_card *card, const char *id, int type,
210 struct snd_jack **jjack, bool initial_kctl, bool phantom_jack)
211 {
212 struct snd_jack *jack;
213 struct snd_jack_kctl *jack_kctl = NULL;
214 int err;
215 int i;
216 static struct snd_device_ops ops = {
217 .dev_free = snd_jack_dev_free,
218 .dev_register = snd_jack_dev_register,
219 .dev_disconnect = snd_jack_dev_disconnect,
220 };
221
222 if (initial_kctl) {
223 jack_kctl = snd_jack_kctl_new(card, id, type);
224 if (!jack_kctl)
225 return -ENOMEM;
226 }
227
228 jack = kzalloc(sizeof(struct snd_jack), GFP_KERNEL);
229 if (jack == NULL)
230 return -ENOMEM;
231
232 jack->id = kstrdup(id, GFP_KERNEL);
233 if (jack->id == NULL) {
234 kfree(jack);
235 return -ENOMEM;
236 }
237
238 /* don't creat input device for phantom jack */
239 if (!phantom_jack) {
240 jack->input_dev = input_allocate_device();
241 if (jack->input_dev == NULL) {
242 err = -ENOMEM;
243 goto fail_input;
244 }
245
246 jack->input_dev->phys = "ALSA";
247
248 jack->type = type;
249
250 for (i = 0; i < SND_JACK_SWITCH_TYPES; i++)
251 if (type & (1 << i))
252 input_set_capability(jack->input_dev, EV_SW,
253 jack_switch_types[i]);
254
255 }
256
257 err = snd_device_new(card, SNDRV_DEV_JACK, jack, &ops);
258 if (err < 0)
259 goto fail_input;
260
261 jack->card = card;
262 INIT_LIST_HEAD(&jack->kctl_list);
263
264 if (initial_kctl)
265 snd_jack_kctl_add(jack, jack_kctl);
266
267 *jjack = jack;
268
269 return 0;
270
271 fail_input:
272 input_free_device(jack->input_dev);
273 kfree(jack->id);
274 kfree(jack);
275 return err;
276 }
277 EXPORT_SYMBOL(snd_jack_new);
278
279 /**
280 * snd_jack_set_parent - Set the parent device for a jack
281 *
282 * @jack: The jack to configure
283 * @parent: The device to set as parent for the jack.
284 *
285 * Set the parent for the jack devices in the device tree. This
286 * function is only valid prior to registration of the jack. If no
287 * parent is configured then the parent device will be the sound card.
288 */
snd_jack_set_parent(struct snd_jack * jack,struct device * parent)289 void snd_jack_set_parent(struct snd_jack *jack, struct device *parent)
290 {
291 WARN_ON(jack->registered);
292 if (!jack->input_dev)
293 return;
294
295 jack->input_dev->dev.parent = parent;
296 }
297 EXPORT_SYMBOL(snd_jack_set_parent);
298
299 /**
300 * snd_jack_set_key - Set a key mapping on a jack
301 *
302 * @jack: The jack to configure
303 * @type: Jack report type for this key
304 * @keytype: Input layer key type to be reported
305 *
306 * Map a SND_JACK_BTN_ button type to an input layer key, allowing
307 * reporting of keys on accessories via the jack abstraction. If no
308 * mapping is provided but keys are enabled in the jack type then
309 * BTN_n numeric buttons will be reported.
310 *
311 * If jacks are not reporting via the input API this call will have no
312 * effect.
313 *
314 * Note that this is intended to be use by simple devices with small
315 * numbers of keys that can be reported. It is also possible to
316 * access the input device directly - devices with complex input
317 * capabilities on accessories should consider doing this rather than
318 * using this abstraction.
319 *
320 * This function may only be called prior to registration of the jack.
321 *
322 * Return: Zero if successful, or a negative error code on failure.
323 */
snd_jack_set_key(struct snd_jack * jack,enum snd_jack_types type,int keytype)324 int snd_jack_set_key(struct snd_jack *jack, enum snd_jack_types type,
325 int keytype)
326 {
327 int key = fls(SND_JACK_BTN_0) - fls(type);
328
329 WARN_ON(jack->registered);
330
331 if (!keytype || key >= ARRAY_SIZE(jack->key))
332 return -EINVAL;
333
334 jack->type |= type;
335 jack->key[key] = keytype;
336
337 return 0;
338 }
339 EXPORT_SYMBOL(snd_jack_set_key);
340
341 /**
342 * snd_jack_report - Report the current status of a jack
343 *
344 * @jack: The jack to report status for
345 * @status: The current status of the jack
346 */
snd_jack_report(struct snd_jack * jack,int status)347 void snd_jack_report(struct snd_jack *jack, int status)
348 {
349 struct snd_jack_kctl *jack_kctl;
350 int i;
351
352 if (!jack)
353 return;
354
355 list_for_each_entry(jack_kctl, &jack->kctl_list, list)
356 snd_kctl_jack_report(jack->card, jack_kctl->kctl,
357 status & jack_kctl->mask_bits);
358
359 if (!jack->input_dev)
360 return;
361
362 for (i = 0; i < ARRAY_SIZE(jack->key); i++) {
363 int testbit = SND_JACK_BTN_0 >> i;
364
365 if (jack->type & testbit)
366 input_report_key(jack->input_dev, jack->key[i],
367 status & testbit);
368 }
369
370 for (i = 0; i < ARRAY_SIZE(jack_switch_types); i++) {
371 int testbit = 1 << i;
372 if (jack->type & testbit)
373 input_report_switch(jack->input_dev,
374 jack_switch_types[i],
375 status & testbit);
376 }
377
378 input_sync(jack->input_dev);
379
380 }
381 EXPORT_SYMBOL(snd_jack_report);
382