2 * Generic support for sparse keymaps
4 * Copyright (c) 2009 Dmitry Torokhov
6 * Derived from wistron button driver:
7 * Copyright (C) 2005 Miloslav Trmac <mitr@volny.cz>
8 * Copyright (C) 2005 Bernhard Rosenkraenzer <bero@arklinux.org>
9 * Copyright (C) 2005 Dmitry Torokhov <dtor@mail.ru>
11 * This program is free software; you can redistribute it and/or modify it
12 * under the terms of the GNU General Public License version 2 as published by
13 * the Free Software Foundation.
16 #include <linux/input.h>
17 #include <linux/input/sparse-keymap.h>
18 #include <linux/slab.h>
20 MODULE_AUTHOR("Dmitry Torokhov <dtor@mail.ru>");
21 MODULE_DESCRIPTION("Generic support for sparse keymaps");
22 MODULE_LICENSE("GPL v2");
23 MODULE_VERSION("0.1");
25 static unsigned int sparse_keymap_get_key_index(struct input_dev
*dev
,
26 const struct key_entry
*k
)
28 struct key_entry
*key
;
31 for (key
= dev
->keycode
; key
->type
!= KE_END
; key
++) {
32 if (key
->type
== KE_KEY
) {
42 static struct key_entry
*sparse_keymap_entry_by_index(struct input_dev
*dev
,
45 struct key_entry
*key
;
46 unsigned int key_cnt
= 0;
48 for (key
= dev
->keycode
; key
->type
!= KE_END
; key
++)
49 if (key
->type
== KE_KEY
)
50 if (key_cnt
++ == index
)
57 * sparse_keymap_entry_from_scancode - perform sparse keymap lookup
58 * @dev: Input device using sparse keymap
61 * This function is used to perform &struct key_entry lookup in an
62 * input device using sparse keymap.
64 struct key_entry
*sparse_keymap_entry_from_scancode(struct input_dev
*dev
,
67 struct key_entry
*key
;
69 for (key
= dev
->keycode
; key
->type
!= KE_END
; key
++)
70 if (code
== key
->code
)
75 EXPORT_SYMBOL(sparse_keymap_entry_from_scancode
);
78 * sparse_keymap_entry_from_keycode - perform sparse keymap lookup
79 * @dev: Input device using sparse keymap
82 * This function is used to perform &struct key_entry lookup in an
83 * input device using sparse keymap.
85 struct key_entry
*sparse_keymap_entry_from_keycode(struct input_dev
*dev
,
88 struct key_entry
*key
;
90 for (key
= dev
->keycode
; key
->type
!= KE_END
; key
++)
91 if (key
->type
== KE_KEY
&& keycode
== key
->keycode
)
96 EXPORT_SYMBOL(sparse_keymap_entry_from_keycode
);
98 static struct key_entry
*sparse_keymap_locate(struct input_dev
*dev
,
99 const struct input_keymap_entry
*ke
)
101 struct key_entry
*key
;
102 unsigned int scancode
;
104 if (ke
->flags
& INPUT_KEYMAP_BY_INDEX
)
105 key
= sparse_keymap_entry_by_index(dev
, ke
->index
);
106 else if (input_scancode_to_scalar(ke
, &scancode
) == 0)
107 key
= sparse_keymap_entry_from_scancode(dev
, scancode
);
114 static int sparse_keymap_getkeycode(struct input_dev
*dev
,
115 struct input_keymap_entry
*ke
)
117 const struct key_entry
*key
;
120 key
= sparse_keymap_locate(dev
, ke
);
121 if (key
&& key
->type
== KE_KEY
) {
122 ke
->keycode
= key
->keycode
;
123 if (!(ke
->flags
& INPUT_KEYMAP_BY_INDEX
))
125 sparse_keymap_get_key_index(dev
, key
);
126 ke
->len
= sizeof(key
->code
);
127 memcpy(ke
->scancode
, &key
->code
, sizeof(key
->code
));
135 static int sparse_keymap_setkeycode(struct input_dev
*dev
,
136 const struct input_keymap_entry
*ke
,
137 unsigned int *old_keycode
)
139 struct key_entry
*key
;
142 key
= sparse_keymap_locate(dev
, ke
);
143 if (key
&& key
->type
== KE_KEY
) {
144 *old_keycode
= key
->keycode
;
145 key
->keycode
= ke
->keycode
;
146 set_bit(ke
->keycode
, dev
->keybit
);
147 if (!sparse_keymap_entry_from_keycode(dev
, *old_keycode
))
148 clear_bit(*old_keycode
, dev
->keybit
);
157 * sparse_keymap_setup - set up sparse keymap for an input device
159 * @keymap: Keymap in form of array of &key_entry structures ending
160 * with %KE_END type entry
161 * @setup: Function that can be used to adjust keymap entries
162 * depending on device's deeds, may be %NULL
164 * The function calculates size and allocates copy of the original
165 * keymap after which sets up input device event bits appropriately.
166 * Before destroying input device allocated keymap should be freed
167 * with a call to sparse_keymap_free().
169 int sparse_keymap_setup(struct input_dev
*dev
,
170 const struct key_entry
*keymap
,
171 int (*setup
)(struct input_dev
*, struct key_entry
*))
173 size_t map_size
= 1; /* to account for the last KE_END entry */
174 const struct key_entry
*e
;
175 struct key_entry
*map
, *entry
;
179 for (e
= keymap
; e
->type
!= KE_END
; e
++)
182 map
= kcalloc(map_size
, sizeof (struct key_entry
), GFP_KERNEL
);
186 memcpy(map
, keymap
, map_size
* sizeof (struct key_entry
));
188 for (i
= 0; i
< map_size
; i
++) {
192 error
= setup(dev
, entry
);
197 switch (entry
->type
) {
199 __set_bit(EV_KEY
, dev
->evbit
);
200 __set_bit(entry
->keycode
, dev
->keybit
);
205 __set_bit(EV_SW
, dev
->evbit
);
206 __set_bit(entry
->sw
.code
, dev
->swbit
);
211 if (test_bit(EV_KEY
, dev
->evbit
)) {
212 __set_bit(KEY_UNKNOWN
, dev
->keybit
);
213 __set_bit(EV_MSC
, dev
->evbit
);
214 __set_bit(MSC_SCAN
, dev
->mscbit
);
218 dev
->keycodemax
= map_size
;
219 dev
->getkeycode
= sparse_keymap_getkeycode
;
220 dev
->setkeycode
= sparse_keymap_setkeycode
;
228 EXPORT_SYMBOL(sparse_keymap_setup
);
231 * sparse_keymap_free - free memory allocated for sparse keymap
232 * @dev: Input device using sparse keymap
234 * This function is used to free memory allocated by sparse keymap
235 * in an input device that was set up by sparse_keymap_setup().
236 * NOTE: It is safe to cal this function while input device is
237 * still registered (however the drivers should care not to try to
238 * use freed keymap and thus have to shut off interrups/polling
239 * before freeing the keymap).
241 void sparse_keymap_free(struct input_dev
*dev
)
246 * Take event lock to prevent racing with input_get_keycode()
247 * and input_set_keycode() if we are called while input device
248 * is still registered.
250 spin_lock_irqsave(&dev
->event_lock
, flags
);
256 spin_unlock_irqrestore(&dev
->event_lock
, flags
);
258 EXPORT_SYMBOL(sparse_keymap_free
);
261 * sparse_keymap_report_entry - report event corresponding to given key entry
262 * @dev: Input device for which event should be reported
263 * @ke: key entry describing event
264 * @value: Value that should be reported (ignored by %KE_SW entries)
265 * @autorelease: Signals whether release event should be emitted for %KE_KEY
266 * entries right after reporting press event, ignored by all other
269 * This function is used to report input event described by given
272 void sparse_keymap_report_entry(struct input_dev
*dev
, const struct key_entry
*ke
,
273 unsigned int value
, bool autorelease
)
277 input_event(dev
, EV_MSC
, MSC_SCAN
, ke
->code
);
278 input_report_key(dev
, ke
->keycode
, value
);
280 if (value
&& autorelease
) {
281 input_report_key(dev
, ke
->keycode
, 0);
287 value
= ke
->sw
.value
;
291 input_report_switch(dev
, ke
->sw
.code
, value
);
295 EXPORT_SYMBOL(sparse_keymap_report_entry
);
298 * sparse_keymap_report_event - report event corresponding to given scancode
299 * @dev: Input device using sparse keymap
301 * @value: Value that should be reported (ignored by %KE_SW entries)
302 * @autorelease: Signals whether release event should be emitted for %KE_KEY
303 * entries right after reporting press event, ignored by all other
306 * This function is used to perform lookup in an input device using sparse
307 * keymap and report corresponding event. Returns %true if lookup was
308 * successful and %false otherwise.
310 bool sparse_keymap_report_event(struct input_dev
*dev
, unsigned int code
,
311 unsigned int value
, bool autorelease
)
313 const struct key_entry
*ke
=
314 sparse_keymap_entry_from_scancode(dev
, code
);
315 struct key_entry unknown_ke
;
318 sparse_keymap_report_entry(dev
, ke
, value
, autorelease
);
322 /* Report an unknown key event as a debugging aid */
323 unknown_ke
.type
= KE_KEY
;
324 unknown_ke
.code
= code
;
325 unknown_ke
.keycode
= KEY_UNKNOWN
;
326 sparse_keymap_report_entry(dev
, &unknown_ke
, value
, true);
330 EXPORT_SYMBOL(sparse_keymap_report_event
);