b3fb8254ea3b1a6a8841a46005a86b03fac9839a
[libpicofe.git] / linux / in_evdev.c
1 /*
2  * (C) GraÅžvydas "notaz" Ignotas, 2008-2012
3  *
4  * This work is licensed under the terms of any of these licenses
5  * (at your option):
6  *  - GNU GPL, version 2 or later.
7  *  - GNU LGPL, version 2.1 or later.
8  *  - MAME license.
9  * See the COPYING file in the top-level directory.
10  */
11
12 #include <stdio.h>
13 #include <stdlib.h>
14 #include <string.h>
15 #include <sys/types.h>
16 #include <sys/stat.h>
17 #include <fcntl.h>
18 #include <sys/ioctl.h>
19 #include <unistd.h>
20 #ifdef __FreeBSD__
21 #include <dev/evdev/input.h>
22 #else
23 #include <linux/input.h>
24 #endif
25 #include <errno.h>
26
27 #include "../input.h"
28 #include "in_evdev.h"
29
30 #define MAX_ABS_DEVS 8
31
32 typedef struct {
33         int fd;
34         int *kbits;
35         int abs_min_x; /* abs->digital mapping */
36         int abs_max_x;
37         int abs_min_y;
38         int abs_max_y;
39         int abs_lzone;
40         int abs_lastx;
41         int abs_lasty;
42         int kc_first;
43         int kc_last;
44         unsigned int abs_count;
45         int abs_mult[MAX_ABS_DEVS]; /* 16.16 multiplier to IN_ABS_RANGE */
46         int abs_adj[MAX_ABS_DEVS];  /* adjust for centering */
47         unsigned int abs_to_digital:1;
48
49         const in_drv_t *drv;
50 } in_evdev_t;
51
52 #ifndef KEY_CNT
53 #define KEY_CNT (KEY_MAX + 1)
54 #endif
55
56 #define KEYBITS_BIT(x) (keybits[(x)/sizeof(keybits[0])/8] & \
57         (1 << ((x) & (sizeof(keybits[0])*8-1))))
58
59 #define KEYBITS_BIT_SET(x) (keybits[(x)/sizeof(keybits[0])/8] |= \
60         (1 << ((x) & (sizeof(keybits[0])*8-1))))
61
62 #define KEYBITS_BIT_CLEAR(x) (keybits[(x)/sizeof(keybits[0])/8] &= \
63         ~(1 << ((x) & (sizeof(keybits[0])*8-1))))
64
65 int in_evdev_allow_abs_only;
66
67 #define IN_EVDEV_PREFIX "evdev:"
68
69 static const char * const in_evdev_keys[KEY_CNT] = {
70         // [0 ... KEY_MAX] = NULL, // not necessary
71         [KEY_RESERVED] = "Reserved",            [KEY_ESC] = "Esc",
72         [KEY_1] = "1",                          [KEY_2] = "2",
73         [KEY_3] = "3",                          [KEY_4] = "4",
74         [KEY_5] = "5",                          [KEY_6] = "6",
75         [KEY_7] = "7",                          [KEY_8] = "8",
76         [KEY_9] = "9",                          [KEY_0] = "0",
77         [KEY_MINUS] = "Minus",                  [KEY_EQUAL] = "Equal",
78         [KEY_BACKSPACE] = "Backspace",          [KEY_TAB] = "Tab",
79         [KEY_Q] = "Q",                          [KEY_W] = "W",
80         [KEY_E] = "E",                          [KEY_R] = "R",
81         [KEY_T] = "T",                          [KEY_Y] = "Y",
82         [KEY_U] = "U",                          [KEY_I] = "I",
83         [KEY_O] = "O",                          [KEY_P] = "P",
84         [KEY_LEFTBRACE] = "LeftBrace",          [KEY_RIGHTBRACE] = "RightBrace",
85         [KEY_ENTER] = "Enter",                  [KEY_LEFTCTRL] = "LeftControl",
86         [KEY_A] = "A",                          [KEY_S] = "S",
87         [KEY_D] = "D",                          [KEY_F] = "F",
88         [KEY_G] = "G",                          [KEY_H] = "H",
89         [KEY_J] = "J",                          [KEY_K] = "K",
90         [KEY_L] = "L",                          [KEY_SEMICOLON] = "Semicolon",
91         [KEY_APOSTROPHE] = "Apostrophe",        [KEY_GRAVE] = "Grave",
92         [KEY_LEFTSHIFT] = "LeftShift",          [KEY_BACKSLASH] = "BackSlash",
93         [KEY_Z] = "Z",                          [KEY_X] = "X",
94         [KEY_C] = "C",                          [KEY_V] = "V",
95         [KEY_B] = "B",                          [KEY_N] = "N",
96         [KEY_M] = "M",                          [KEY_COMMA] = "Comma",
97         [KEY_DOT] = "Dot",                      [KEY_SLASH] = "Slash",
98         [KEY_RIGHTSHIFT] = "RightShift",        [KEY_KPASTERISK] = "KPAsterisk",
99         [KEY_LEFTALT] = "LeftAlt",              [KEY_SPACE] = "Space",
100         [KEY_CAPSLOCK] = "CapsLock",            [KEY_F1] = "F1",
101         [KEY_F2] = "F2",                        [KEY_F3] = "F3",
102         [KEY_F4] = "F4",                        [KEY_F5] = "F5",
103         [KEY_F6] = "F6",                        [KEY_F7] = "F7",
104         [KEY_F8] = "F8",                        [KEY_F9] = "F9",
105         [KEY_F10] = "F10",                      [KEY_NUMLOCK] = "NumLock",
106         [KEY_SCROLLLOCK] = "ScrollLock",        [KEY_KP7] = "KP7",
107         [KEY_KP8] = "KP8",                      [KEY_KP9] = "KP9",
108         [KEY_KPMINUS] = "KPMinus",              [KEY_KP4] = "KP4",
109         [KEY_KP5] = "KP5",                      [KEY_KP6] = "KP6",
110         [KEY_KPPLUS] = "KPPlus",                [KEY_KP1] = "KP1",
111         [KEY_KP2] = "KP2",                      [KEY_KP3] = "KP3",
112         [KEY_KP0] = "KP0",                      [KEY_KPDOT] = "KPDot",
113         [KEY_ZENKAKUHANKAKU] = "Zenkaku/Hankaku", [KEY_102ND] = "102nd",
114         [KEY_F11] = "F11",                      [KEY_F12] = "F12",
115         [KEY_KPJPCOMMA] = "KPJpComma",          [KEY_KPENTER] = "KPEnter",
116         [KEY_RIGHTCTRL] = "RightCtrl",          [KEY_KPSLASH] = "KPSlash",
117         [KEY_SYSRQ] = "SysRq",                  [KEY_RIGHTALT] = "RightAlt",
118         [KEY_LINEFEED] = "LineFeed",            [KEY_HOME] = "Home",
119         [KEY_UP] = "Up",                        [KEY_PAGEUP] = "PageUp",
120         [KEY_LEFT] = "Left",                    [KEY_RIGHT] = "Right",
121         [KEY_END] = "End",                      [KEY_DOWN] = "Down",
122         [KEY_PAGEDOWN] = "PageDown",            [KEY_INSERT] = "Insert",
123         [KEY_DELETE] = "Delete",                [KEY_MACRO] = "Macro",
124         [KEY_HELP] = "Help",                    [KEY_MENU] = "Menu",
125         [KEY_COFFEE] = "Coffee",                [KEY_DIRECTION] = "Direction",
126         [BTN_0] = "Btn0",                       [BTN_1] = "Btn1",
127         [BTN_2] = "Btn2",                       [BTN_3] = "Btn3",
128         [BTN_4] = "Btn4",                       [BTN_5] = "Btn5",
129         [BTN_6] = "Btn6",                       [BTN_7] = "Btn7",
130         [BTN_8] = "Btn8",                       [BTN_9] = "Btn9",
131         [BTN_LEFT] = "LeftBtn",                 [BTN_RIGHT] = "RightBtn",
132         [BTN_MIDDLE] = "MiddleBtn",             [BTN_SIDE] = "SideBtn",
133         [BTN_EXTRA] = "ExtraBtn",               [BTN_FORWARD] = "ForwardBtn",
134         [BTN_BACK] = "BackBtn",                 [BTN_TASK] = "TaskBtn",
135         [BTN_TRIGGER] = "Trigger",              [BTN_THUMB] = "ThumbBtn",
136         [BTN_THUMB2] = "ThumbBtn2",             [BTN_TOP] = "TopBtn",
137         [BTN_TOP2] = "TopBtn2",                 [BTN_PINKIE] = "PinkieBtn",
138         [BTN_BASE] = "BaseBtn",                 [BTN_BASE2] = "BaseBtn2",
139         [BTN_BASE3] = "BaseBtn3",               [BTN_BASE4] = "BaseBtn4",
140         [BTN_BASE5] = "BaseBtn5",               [BTN_BASE6] = "BaseBtn6",
141         [BTN_DEAD] = "BtnDead",                 [BTN_A] = "BtnA",
142         [BTN_B] = "BtnB",                       [BTN_C] = "BtnC",
143         [BTN_X] = "BtnX",                       [BTN_Y] = "BtnY",
144         [BTN_Z] = "BtnZ",                       [BTN_TL] = "BtnTL",
145         [BTN_TR] = "BtnTR",                     [BTN_TL2] = "BtnTL2",
146         [BTN_TR2] = "BtnTR2",                   [BTN_SELECT] = "BtnSelect",
147         [BTN_START] = "BtnStart",               [BTN_MODE] = "BtnMode",
148         [BTN_THUMBL] = "BtnThumbL",             [BTN_THUMBR] = "BtnThumbR",
149         [BTN_TOUCH] = "Touch",                  [BTN_STYLUS] = "Stylus",
150         [BTN_STYLUS2] = "Stylus2",              [BTN_TOOL_DOUBLETAP] = "Tool Doubletap",
151         [BTN_TOOL_TRIPLETAP] = "Tool Tripletap", [BTN_GEAR_DOWN] = "WheelBtn",
152         [BTN_GEAR_UP] = "Gear up",              [KEY_OK] = "Ok",
153 };
154
155
156 static void in_evdev_probe(const in_drv_t *drv)
157 {
158         long keybits[KEY_CNT / sizeof(long) / 8];
159         long absbits[(ABS_MAX+1) / sizeof(long) / 8];
160         int i;
161
162         // the kernel might support and return less keys then we know about,
163         // so make sure the buffers are clear.
164         memset(keybits, 0, sizeof(keybits));
165         memset(absbits, 0, sizeof(absbits));
166
167         for (i = 0;; i++)
168         {
169                 int support = 0, count = 0;
170                 int u, ret, fd, kc_first = KEY_MAX, kc_last = 0, have_abs = 0;
171                 in_evdev_t *dev;
172                 char name[64];
173
174                 snprintf(name, sizeof(name), "/dev/input/event%d", i);
175                 fd = open(name, O_RDONLY|O_NONBLOCK);
176                 if (fd == -1) {
177                         if (errno == EACCES)
178                                 continue;       /* maybe we can access next one */
179                         break;
180                 }
181
182                 /* check supported events */
183                 ret = ioctl(fd, EVIOCGBIT(0, sizeof(support)), &support);
184                 if (ret == -1) {
185                         printf("in_evdev: ioctl failed on %s\n", name);
186                         goto skip;
187                 }
188
189                 if (support & (1 << EV_KEY)) {
190                         ret = ioctl(fd, EVIOCGBIT(EV_KEY, sizeof(keybits)), keybits);
191                         if (ret == -1) {
192                                 printf("in_evdev: ioctl failed on %s\n", name);
193                                 goto skip;
194                         }
195
196                         /* check for interesting keys */
197                         for (u = 0; u < KEY_CNT; u++) {
198                                 if (KEYBITS_BIT(u)) {
199                                         if (u < kc_first)
200                                                 kc_first = u;
201                                         if (u > kc_last)
202                                                 kc_last = u;
203                                         if (u != KEY_POWER && u != KEY_SLEEP && u != BTN_TOUCH)
204                                                 count++;
205                                         if (u == BTN_TOUCH) /* we can't deal with ts currently */
206                                                 goto skip;
207                                 }
208                         }
209                 }
210
211                 dev = calloc(1, sizeof(*dev));
212                 if (dev == NULL)
213                         goto skip;
214
215                 dev->drv = drv;
216
217                 ret = ioctl(fd, EVIOCGKEY(sizeof(keybits)), keybits);
218                 if (ret == -1) {
219                         printf("Warning: EVIOCGKEY not supported, will have to track state\n");
220                         dev->kbits = calloc(KEY_CNT, sizeof(int));
221                         if (dev->kbits == NULL) {
222                                 free(dev);
223                                 goto skip;
224                         }
225                 }
226
227                 /* check for abs too */
228                 if (support & (1 << EV_ABS)) {
229                         struct input_absinfo ainfo;
230                         int dist;
231                         ret = ioctl(fd, EVIOCGBIT(EV_ABS, sizeof(absbits)), absbits);
232                         if (ret == -1)
233                                 goto no_abs;
234                         if (absbits[0] & (1 << ABS_X)) {
235                                 ret = ioctl(fd, EVIOCGABS(ABS_X), &ainfo);
236                                 if (ret == -1)
237                                         goto no_abs;
238                                 dist = ainfo.maximum - ainfo.minimum;
239                                 dev->abs_lzone = dist / 4;
240                                 dev->abs_min_x = ainfo.minimum;
241                                 dev->abs_max_x = ainfo.maximum;
242                         }
243                         if (absbits[0] & (1 << ABS_Y)) {
244                                 ret = ioctl(fd, EVIOCGABS(ABS_Y), &ainfo);
245                                 if (ret == -1)
246                                         goto no_abs;
247                                 dist = ainfo.maximum - ainfo.minimum;
248                                 dev->abs_min_y = ainfo.minimum;
249                                 dev->abs_max_y = ainfo.maximum;
250                         }
251                         for (u = 0; u < MAX_ABS_DEVS; u++) {
252                                 ret = ioctl(fd, EVIOCGABS(u), &ainfo);
253                                 if (ret == -1)
254                                         break;
255                                 dist = ainfo.maximum - ainfo.minimum;
256                                 if (dist != 0)
257                                         dev->abs_mult[u] = IN_ABS_RANGE * 2 * 65536 / dist;
258                                 dev->abs_adj[u] = -(ainfo.maximum + ainfo.minimum + 1) / 2;
259                                 have_abs = 1;
260                         }
261                         dev->abs_count = u;
262                 }
263
264 no_abs:
265                 if (count == 0 && !have_abs) {
266                         free(dev->kbits);
267                         free(dev);
268                         goto skip;
269                 }
270
271                 dev->fd = fd;
272                 dev->kc_first = kc_first;
273                 dev->kc_last = kc_last;
274                 if (count > 0 || in_evdev_allow_abs_only)
275                         dev->abs_to_digital = 1;
276                 strcpy(name, IN_EVDEV_PREFIX);
277                 ioctl(fd, EVIOCGNAME(sizeof(name)-6), name+6);
278                 printf("in_evdev: found \"%s\" with %d events (type %08x)\n",
279                         name+6, count, support);
280                 in_register(name, fd, dev, KEY_CNT, in_evdev_keys, 0);
281                 continue;
282
283 skip:
284                 close(fd);
285         }
286 }
287
288 static void in_evdev_free(void *drv_data)
289 {
290         in_evdev_t *dev = drv_data;
291         if (dev == NULL)
292                 return;
293         close(dev->fd);
294         free(dev);
295 }
296
297 static const char * const *
298 in_evdev_get_key_names(const in_drv_t *drv, int *count)
299 {
300         const struct in_pdata *pdata = drv->pdata;
301         *count = KEY_CNT;
302
303         if (pdata->key_names)
304                 return pdata->key_names;
305         return in_evdev_keys;
306 }
307
308 static void or_binds(const int *binds, int key, int *result)
309 {
310         int t;
311         for (t = 0; t < IN_BINDTYPE_COUNT; t++)
312                 result[t] |= binds[IN_BIND_OFFS(key, t)];
313 }
314
315 /* ORs result with binds of pressed buttons
316  * XXX: should measure performance hit of this func, might need to optimize */
317 static int in_evdev_update(void *drv_data, const int *binds, int *result)
318 {
319         struct input_event ev[16];
320         struct input_absinfo ainfo;
321         int keybits_[KEY_CNT / sizeof(int)];
322         int *keybits = keybits_;
323         in_evdev_t *dev = drv_data;
324         int rd, ret, u, lzone;
325
326         if (dev->kbits == NULL) {
327                 ret = ioctl(dev->fd, EVIOCGKEY(sizeof(keybits_)), keybits_);
328                 if (ret == -1) {
329                         perror("in_evdev: ioctl failed");
330                         return -1;
331                 }
332         }
333         else {
334                 keybits = dev->kbits;
335                 while (1) {
336                         rd = read(dev->fd, ev, sizeof(ev));
337                         if (rd < (int)sizeof(ev[0])) {
338                                 if (errno != EAGAIN)
339                                         perror("in_evdev: read failed");
340                                 break;
341                         }
342                         for (u = 0; u < rd / sizeof(ev[0]); u++) {
343                                 if (ev[u].type != EV_KEY)
344                                         continue;
345                                 else if (ev[u].value == 1)
346                                         KEYBITS_BIT_SET(ev[u].code);
347                                 else if (ev[u].value == 0)
348                                         KEYBITS_BIT_CLEAR(ev[u].code);
349                         }
350                 }
351         }
352
353         for (u = dev->kc_first; u <= dev->kc_last; u++) {
354                 if (KEYBITS_BIT(u))
355                         or_binds(binds, u, result);
356         }
357
358         /* map X and Y absolute to UDLR */
359         lzone = dev->abs_lzone;
360         if (dev->abs_to_digital && lzone != 0) {
361                 ret = ioctl(dev->fd, EVIOCGABS(ABS_X), &ainfo);
362                 if (ret != -1) {
363                         if (ainfo.value < dev->abs_min_x + lzone) or_binds(binds, KEY_LEFT, result);
364                         if (ainfo.value > dev->abs_max_x - lzone) or_binds(binds, KEY_RIGHT, result);
365                 }
366                 ret = ioctl(dev->fd, EVIOCGABS(ABS_Y), &ainfo);
367                 if (ret != -1) {
368                         if (ainfo.value < dev->abs_min_y + lzone) or_binds(binds, KEY_UP, result);
369                         if (ainfo.value > dev->abs_max_y - lzone) or_binds(binds, KEY_DOWN, result);
370                 }
371         }
372
373         return 0;
374 }
375
376 static int in_evdev_update_kbd(void *drv_data, const int *binds, int *result)
377 {
378         return in_evdev_update(drv_data, binds, result);
379 }
380
381 static int in_evdev_update_analog(void *drv_data, int axis_id, int *result)
382 {
383         struct input_absinfo ainfo;
384         in_evdev_t *dev = drv_data;
385         int ret;
386
387         if ((unsigned int)axis_id >= MAX_ABS_DEVS)
388                 return -1;
389
390         ret = ioctl(dev->fd, EVIOCGABS(axis_id), &ainfo);
391         if (ret != 0)
392                 return ret;
393
394         *result = (ainfo.value + dev->abs_adj[axis_id]) * dev->abs_mult[axis_id];
395         *result >>= 16;
396         return 0;
397 }
398
399 static int in_evdev_set_blocking(in_evdev_t *dev, int y)
400 {
401         long flags;
402         int ret;
403
404         flags = (long)fcntl(dev->fd, F_GETFL);
405         if ((int)flags == -1) {
406                 perror("in_evdev: F_GETFL fcntl failed");
407                 return -1;
408         }
409
410         if (flags & O_NONBLOCK) {
411                 /* flush the event queue */
412                 struct input_event ev;
413                 do {
414                         ret = read(dev->fd, &ev, sizeof(ev));
415                 }
416                 while (ret == sizeof(ev));
417         }
418
419         if (y)
420                 flags &= ~O_NONBLOCK;
421         else
422                 flags |=  O_NONBLOCK;
423         ret = fcntl(dev->fd, F_SETFL, flags);
424         if (ret == -1) {
425                 perror("in_evdev: F_SETFL fcntl failed");
426                 return -1;
427         }
428
429         return 0;
430 }
431
432 static int in_evdev_get_config(void *drv_data, enum in_cfg_opt what, int *val)
433 {
434         in_evdev_t *dev = drv_data;
435
436         switch (what) {
437         case IN_CFG_ABS_AXIS_COUNT:
438                 *val = dev->abs_count;
439                 break;
440         case IN_CFG_ANALOG_MAP_ULDR:
441                 *val = dev->abs_to_digital;
442         default:
443                 return -1;
444         }
445
446         return 0;
447 }
448
449 static int in_evdev_set_config(void *drv_data, enum in_cfg_opt what, int val)
450 {
451         in_evdev_t *dev = drv_data;
452         int tmp;
453
454         switch (what) {
455         case IN_CFG_BLOCKING:
456                 return in_evdev_set_blocking(dev, val);
457         case IN_CFG_ABS_DEAD_ZONE:
458                 if (val < 1 || val > 99 || dev->abs_lzone == 0)
459                         return -1;
460                 /* XXX: based on X axis only, for now.. */
461                 tmp = (dev->abs_max_x - dev->abs_min_x) / 2;
462                 dev->abs_lzone = tmp - tmp * val / 100;
463                 if (dev->abs_lzone < 1)
464                         dev->abs_lzone = 1;
465                 else if (dev->abs_lzone >= tmp)
466                         dev->abs_lzone = tmp - 1;
467                 break;
468         case IN_CFG_ANALOG_MAP_ULDR:
469                 dev->abs_to_digital = val;
470         default:
471                 return -1;
472         }
473
474         return 0;
475 }
476
477 static int in_evdev_update_keycode(void *data, int *is_down)
478 {
479         int ret_kc = -1, ret_down = 0;
480         in_evdev_t *dev = data;
481         struct input_event ev;
482         int rd;
483
484         /* do single event, the caller sometimes wants
485          * to do select() in blocking mode */
486         rd = read(dev->fd, &ev, sizeof(ev));
487         if (rd < (int) sizeof(ev)) {
488                 if (errno != EAGAIN) {
489                         perror("in_evdev: error reading");
490                         //sleep(1);
491                         ret_kc = -2;
492                 }
493                 goto out;
494         }
495
496         if (ev.type == EV_KEY) {
497                 if (ev.value < 0 || ev.value > 1)
498                         goto out;
499                 ret_kc = ev.code;
500                 ret_down = ev.value;
501                 goto out;
502         }
503         else if (ev.type == EV_ABS && dev->abs_to_digital)
504         {
505                 int lzone = dev->abs_lzone, down = 0, *last;
506
507                 // map absolute to up/down/left/right
508                 if (lzone != 0 && ev.code == ABS_X) {
509                         if (ev.value < dev->abs_min_x + lzone)
510                                 down = KEY_LEFT;
511                         else if (ev.value > dev->abs_max_x - lzone)
512                                 down = KEY_RIGHT;
513                         last = &dev->abs_lastx;
514                 }
515                 else if (lzone != 0 && ev.code == ABS_Y) {
516                         if (ev.value < dev->abs_min_y + lzone)
517                                 down = KEY_UP;
518                         else if (ev.value > dev->abs_max_y - lzone)
519                                 down = KEY_DOWN;
520                         last = &dev->abs_lasty;
521                 }
522                 else
523                         goto out;
524
525                 if (down == *last)
526                         goto out;
527
528                 if (down == 0 || *last != 0) {
529                         /* key up or direction change, return up event for old key */
530                         ret_kc = *last;
531                         ret_down = 0;
532                         *last = 0;
533                         goto out;
534                 }
535                 ret_kc = *last = down;
536                 ret_down = 1;
537                 goto out;
538         }
539
540 out:
541         if (is_down != NULL)
542                 *is_down = ret_down;
543
544         return ret_kc;
545 }
546
547 static int in_evdev_menu_translate(void *drv_data, int keycode, char *charcode)
548 {
549         in_evdev_t *dev = drv_data;
550         const struct in_pdata *pdata = dev->drv->pdata;
551         int ret = 0;
552         int i;
553
554         if (keycode < 0)
555         {
556                 /* menu -> kc */
557                 keycode = -keycode;
558                 for (i = 0; i < pdata->kmap_size; i++)
559                         if (pdata->key_map[i].pbtn == keycode) {
560                                 int k = pdata->key_map[i].key;
561                                 /* should really check EVIOCGBIT, but this is enough for now */
562                                 if (dev->kc_first <= k && k <= dev->kc_last)
563                                         return k;
564                         }
565         }
566         else
567         {
568                 for (i = 0; i < pdata->kmap_size; i++) {
569                         if (pdata->key_map[i].key == keycode) {
570                                 ret = pdata->key_map[i].pbtn;
571                                 break;
572                         }
573                 }
574
575                 if (charcode != NULL && (unsigned int)keycode < KEY_CNT &&
576                     in_evdev_keys[keycode] != NULL && in_evdev_keys[keycode][1] == 0)
577                 {
578                         char c = in_evdev_keys[keycode][0];
579                         if ('A' <= c && c <= 'Z')
580                                 c = 'a' + c - 'A';
581                         ret |= PBTN_CHAR;
582                         *charcode = c;
583                 }
584         }
585
586         return ret;
587 }
588
589 /* remove binds of missing keys, count remaining ones */
590 static int in_evdev_clean_binds(void *drv_data, int *binds, int *def_binds)
591 {
592         int keybits[KEY_CNT / sizeof(int)];
593         in_evdev_t *dev = drv_data;
594         int i, t, ret, offs, count = 0;
595
596         memset(keybits, 0, sizeof(keybits));
597         ret = ioctl(dev->fd, EVIOCGBIT(EV_KEY, sizeof(keybits)), keybits);
598         if (ret == -1) {
599                 perror("in_evdev: ioctl failed");
600                 // memset(keybits, 0xff, sizeof(keybits)); /* mark all as good */
601         }
602
603         if (dev->abs_to_digital && dev->abs_lzone != 0) {
604                 KEYBITS_BIT_SET(KEY_LEFT);
605                 KEYBITS_BIT_SET(KEY_RIGHT);
606                 KEYBITS_BIT_SET(KEY_UP);
607                 KEYBITS_BIT_SET(KEY_DOWN);
608         }
609
610         for (i = 0; i < KEY_CNT; i++) {
611                 for (t = 0; t < IN_BINDTYPE_COUNT; t++) {
612                         offs = IN_BIND_OFFS(i, t);
613                         if (!KEYBITS_BIT(i))
614                                 binds[offs] = def_binds[offs] = 0;
615                         if (binds[offs])
616                                 count++;
617                 }
618         }
619
620         return count;
621 }
622
623 static const in_drv_t in_evdev_drv = {
624         .prefix          = IN_EVDEV_PREFIX,
625         .probe           = in_evdev_probe,
626         .free            = in_evdev_free,
627         .get_key_names   = in_evdev_get_key_names,
628         .clean_binds     = in_evdev_clean_binds,
629         .get_config      = in_evdev_get_config,
630         .set_config      = in_evdev_set_config,
631         .update          = in_evdev_update,
632         .update_kbd      = in_evdev_update_kbd,
633         .update_analog   = in_evdev_update_analog,
634         .update_keycode  = in_evdev_update_keycode,
635         .menu_translate  = in_evdev_menu_translate,
636 };
637
638 int in_evdev_init(const struct in_pdata *pdata)
639 {
640         if (!pdata) {
641                 fprintf(stderr, "in_sdl: Missing input platform data\n");
642                 return -1;
643         }
644
645         in_register_driver(&in_evdev_drv, pdata->defbinds, pdata->kbd_map, pdata);
646         return 0;
647 }
648