gl: clear w, h on reinit
[libpicofe.git] / input.c
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CommitLineData
1/*
2 * (C) GraÅžvydas "notaz" Ignotas, 2008-2011
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
16#include "input.h"
17#include "plat.h"
18#include "lprintf.h"
19
20#ifdef IN_VK
21#error needs update: in_vk_init in_vk_update
22#include "../win32/in_vk.h"
23#endif
24
25typedef struct
26{
27 int drv_id;
28 int drv_fd_hnd;
29 void *drv_data;
30 char *name;
31 int key_count;
32 int *binds; /* total = key_count * bindtypes * 2 */
33 const char * const *key_names;
34 unsigned int probed:1;
35 unsigned int does_combos:1;
36} in_dev_t;
37
38static in_drv_t *in_drivers;
39static in_dev_t in_devices[IN_MAX_DEVS];
40static int in_driver_count = 0;
41static int in_dev_count = 0; /* probed + bind devices */
42static int in_have_async_devs = 0;
43static int in_probe_dev_id;
44static int menu_key_state = 0;
45static int menu_last_used_dev = 0;
46
47#define DRV(id) in_drivers[id]
48
49
50static int *in_alloc_binds(int drv_id, int key_count)
51{
52 const struct in_default_bind *defbinds;
53 int *binds, *binds_d;
54 int i;
55
56 binds = calloc(key_count * IN_BINDTYPE_COUNT * 2, sizeof(binds[0]));
57 if (binds == NULL)
58 return NULL;
59
60 binds_d = binds + key_count * IN_BINDTYPE_COUNT;
61
62 /* always have a copy of defbinds */
63 defbinds = DRV(drv_id).defbinds;
64 if (defbinds != NULL) {
65 for (i = 0; ; i++) {
66 if (defbinds[i].code == 0 && defbinds[i].btype == 0
67 && defbinds[i].bit == 0)
68 break;
69
70 binds_d[IN_BIND_OFFS(defbinds[i].code, defbinds[i].btype)] |=
71 1 << defbinds[i].bit;
72 }
73 }
74
75 return binds;
76}
77
78static void in_unprobe(in_dev_t *dev)
79{
80 if (dev->probed)
81 DRV(dev->drv_id).free(dev->drv_data);
82 dev->probed = 0;
83 dev->drv_data = NULL;
84}
85
86static void in_free(in_dev_t *dev)
87{
88 in_unprobe(dev);
89 free(dev->name);
90 dev->name = NULL;
91 free(dev->binds);
92 dev->binds = NULL;
93}
94
95/* to be called by drivers
96 * async devices must set drv_fd_hnd to -1 */
97void in_register(const char *nname, int drv_fd_hnd, void *drv_data,
98 int key_count, const char * const *key_names, int combos)
99{
100 int i, ret, dupe_count = 0, *binds;
101 char name[256], *name_end, *tmp;
102
103 strncpy(name, nname, sizeof(name));
104 name[sizeof(name)-12] = 0;
105 name_end = name + strlen(name);
106
107 for (i = 0; i < in_dev_count; i++)
108 {
109 if (in_devices[i].name == NULL)
110 continue;
111 if (strcmp(in_devices[i].name, name) == 0)
112 {
113 if (in_devices[i].probed) {
114 dupe_count++;
115 sprintf(name_end, " [%d]", dupe_count);
116 continue;
117 }
118 goto update;
119 }
120 }
121
122 if (i >= IN_MAX_DEVS)
123 {
124 /* try to find unused device */
125 for (i = 0; i < IN_MAX_DEVS; i++)
126 if (!in_devices[i].probed) break;
127 if (i >= IN_MAX_DEVS) {
128 lprintf("input: too many devices, can't add %s\n", name);
129 return;
130 }
131 in_free(&in_devices[i]);
132 }
133
134 tmp = strdup(name);
135 if (tmp == NULL)
136 return;
137
138 binds = in_alloc_binds(in_probe_dev_id, key_count);
139 if (binds == NULL) {
140 free(tmp);
141 return;
142 }
143
144 memcpy(binds, binds + key_count * IN_BINDTYPE_COUNT,
145 sizeof(binds[0]) * key_count * IN_BINDTYPE_COUNT);
146
147 in_devices[i].name = tmp;
148 in_devices[i].binds = binds;
149 in_devices[i].key_count = key_count;
150 if (i + 1 > in_dev_count)
151 in_dev_count = i + 1;
152
153 lprintf("input: new device #%d \"%s\"\n", i, name);
154update:
155 in_devices[i].probed = 1;
156 in_devices[i].does_combos = combos;
157 in_devices[i].drv_id = in_probe_dev_id;
158 in_devices[i].drv_fd_hnd = drv_fd_hnd;
159 in_devices[i].key_names = key_names;
160 in_devices[i].drv_data = drv_data;
161
162 if (in_devices[i].binds != NULL) {
163 ret = DRV(in_probe_dev_id).clean_binds(drv_data, in_devices[i].binds,
164 in_devices[i].binds + key_count * IN_BINDTYPE_COUNT);
165 if (ret == 0) {
166 /* no useable binds */
167 free(in_devices[i].binds);
168 in_devices[i].binds = NULL;
169 }
170 }
171}
172
173/* key combo handling, to be called by drivers that support it.
174 * Only care about IN_BINDTYPE_EMU */
175void in_combos_find(const int *binds, int last_key, int *combo_keys, int *combo_acts)
176{
177 int act, u;
178
179 *combo_keys = *combo_acts = 0;
180 for (act = 0; act < sizeof(binds[0]) * 8; act++)
181 {
182 int keyc = 0;
183 for (u = 0; u <= last_key; u++)
184 if (binds[IN_BIND_OFFS(u, IN_BINDTYPE_EMU)] & (1 << act))
185 keyc++;
186
187 if (keyc > 1)
188 {
189 // loop again and mark those keys and actions as combo
190 for (u = 0; u <= last_key; u++)
191 {
192 if (binds[IN_BIND_OFFS(u, IN_BINDTYPE_EMU)] & (1 << act)) {
193 *combo_keys |= 1 << u;
194 *combo_acts |= 1 << act;
195 }
196 }
197 }
198 }
199}
200
201int in_combos_do(int keys, const int *binds, int last_key, int combo_keys, int combo_acts)
202{
203 int i, ret = 0;
204
205 for (i = 0; i <= last_key; i++)
206 {
207 int acts, acts_c, u;
208
209 if (!(keys & (1 << i)))
210 continue;
211
212 acts = binds[IN_BIND_OFFS(i, IN_BINDTYPE_EMU)];
213 if (!acts)
214 continue;
215
216 if (!(combo_keys & (1 << i))) {
217 ret |= acts;
218 continue;
219 }
220
221 acts_c = acts & combo_acts;
222 u = last_key;
223 if (acts_c) {
224 // let's try to find the other one
225 for (u = i + 1; u <= last_key; u++)
226 if ( (keys & (1 << u)) && (binds[IN_BIND_OFFS(u, IN_BINDTYPE_EMU)] & acts_c) ) {
227 ret |= acts_c & binds[IN_BIND_OFFS(u, IN_BINDTYPE_EMU)];
228 keys &= ~((1 << i) | (1 << u));
229 break;
230 }
231 }
232 // add non-combo actions if combo ones were not found
233 if (u >= last_key)
234 ret |= acts & ~combo_acts;
235 }
236
237 return ret;
238}
239
240void in_probe(void)
241{
242 int i;
243
244 in_have_async_devs = 0;
245 menu_key_state = 0;
246 menu_last_used_dev = 0;
247
248 for (i = 0; i < in_dev_count; i++)
249 in_unprobe(&in_devices[i]);
250
251 for (i = 0; i < in_driver_count; i++) {
252 in_probe_dev_id = i;
253 in_drivers[i].probe(&DRV(i));
254 }
255
256 /* get rid of devs without binds and probes */
257 for (i = 0; i < in_dev_count; i++) {
258 if (!in_devices[i].probed && in_devices[i].binds == NULL) {
259 in_dev_count--;
260 if (i < in_dev_count) {
261 free(in_devices[i].name);
262 memmove(&in_devices[i], &in_devices[i+1],
263 (in_dev_count - i) * sizeof(in_devices[0]));
264 }
265
266 continue;
267 }
268
269 if (in_devices[i].probed && in_devices[i].drv_fd_hnd == -1)
270 in_have_async_devs = 1;
271 }
272
273 if (in_have_async_devs)
274 lprintf("input: async-only devices detected..\n");
275
276 in_debug_dump();
277}
278
279/* async update */
280int in_update(int *result)
281{
282 int i, ret = 0;
283
284 for (i = 0; i < in_dev_count; i++) {
285 in_dev_t *dev = &in_devices[i];
286 if (dev->probed && dev->binds != NULL)
287 ret |= DRV(dev->drv_id).update(dev->drv_data, dev->binds, result);
288 }
289
290 return ret;
291}
292
293static in_dev_t *get_dev(int dev_id)
294{
295 if (dev_id < 0 || dev_id >= IN_MAX_DEVS)
296 return NULL;
297
298 return &in_devices[dev_id];
299}
300
301int in_update_analog(int dev_id, int axis_id, int *result)
302{
303 in_dev_t *dev = get_dev(dev_id);
304
305 if (dev == NULL || !dev->probed)
306 return -1;
307
308 return DRV(dev->drv_id).update_analog(dev->drv_data, axis_id, result);
309}
310
311static int in_update_kc_async(int *dev_id_out, int *is_down_out, int timeout_ms)
312{
313 int i, is_down, result;
314 unsigned int ticks;
315
316 ticks = plat_get_ticks_ms();
317
318 while (1)
319 {
320 for (i = 0; i < in_dev_count; i++) {
321 in_dev_t *d = &in_devices[i];
322 if (!d->probed)
323 continue;
324
325 result = DRV(d->drv_id).update_keycode(d->drv_data, &is_down);
326 if (result == -1)
327 continue;
328
329 if (dev_id_out)
330 *dev_id_out = i;
331 if (is_down_out)
332 *is_down_out = is_down;
333 return result;
334 }
335
336 if (timeout_ms >= 0 && (int)(plat_get_ticks_ms() - ticks) > timeout_ms)
337 break;
338
339 plat_sleep_ms(10);
340 }
341
342 return -1;
343}
344
345/*
346 * wait for a press, always return some keycode or -1 on timeout or error
347 */
348int in_update_keycode(int *dev_id_out, int *is_down_out, char *charcode, int timeout_ms)
349{
350 int result = -1, dev_id = 0, is_down, result_menu;
351 int fds_hnds[IN_MAX_DEVS];
352 int i, ret, count = 0;
353 in_drv_t *drv = NULL;
354 unsigned int ticks;
355
356 if (in_have_async_devs) {
357 result = in_update_kc_async(&dev_id, &is_down, timeout_ms);
358 if (result == -1)
359 return -1;
360 drv = &DRV(in_devices[dev_id].drv_id);
361 goto finish;
362 }
363
364 ticks = plat_get_ticks_ms();
365
366 for (i = 0; i < in_dev_count; i++) {
367 if (in_devices[i].probed)
368 fds_hnds[count++] = in_devices[i].drv_fd_hnd;
369 }
370
371 if (count == 0) {
372 /* don't deadlock, fail */
373 lprintf("input: failed to find devices to read\n");
374 exit(1);
375 }
376
377 while (1)
378 {
379 ret = plat_wait_event(fds_hnds, count, timeout_ms);
380 if (ret < 0)
381 break;
382
383 for (i = 0; i < in_dev_count; i++) {
384 if (in_devices[i].drv_fd_hnd == ret) {
385 dev_id = i;
386 break;
387 }
388 }
389
390 drv = &DRV(in_devices[dev_id].drv_id);
391 result = drv->update_keycode(in_devices[dev_id].drv_data, &is_down);
392 if (result >= 0)
393 break;
394
395 if (result == -2) {
396 lprintf("input: \"%s\" errored out, removing.\n", in_devices[dev_id].name);
397 in_unprobe(&in_devices[dev_id]);
398 break;
399 }
400
401 if (timeout_ms >= 0) {
402 unsigned int ticks2 = plat_get_ticks_ms();
403 timeout_ms -= ticks2 - ticks;
404 ticks = ticks2;
405 if (timeout_ms <= 0)
406 break;
407 }
408 }
409
410 if (result < 0)
411 return -1;
412finish:
413 /* keep track of menu key state, to allow mixing
414 * in_update_keycode() and in_menu_wait_any() calls */
415 result_menu = drv->menu_translate(in_devices[dev_id].drv_data, result, charcode);
416 if (result_menu != 0) {
417 if (is_down)
418 menu_key_state |= result_menu;
419 else
420 menu_key_state &= ~result_menu;
421 }
422
423 if (dev_id_out != NULL)
424 *dev_id_out = dev_id;
425 if (is_down_out != NULL)
426 *is_down_out = is_down;
427 return result;
428}
429
430/* same as above, only return bitfield of PBTN_* */
431int in_menu_wait_any(char *charcode, int timeout_ms)
432{
433 int keys_old = menu_key_state;
434 int ret;
435
436 while (1)
437 {
438 int code, is_down = 0, dev_id = 0;
439
440 code = in_update_keycode(&dev_id, &is_down, charcode, timeout_ms);
441 if (code < 0)
442 break;
443
444 if (keys_old != menu_key_state) {
445 menu_last_used_dev = dev_id;
446 break;
447 }
448 }
449
450 ret = menu_key_state;
451 menu_key_state &= ~PBTN_CHAR;
452 return ret;
453}
454
455/* wait for menu input, do autorepeat */
456int in_menu_wait(int interesting, char *charcode, int autorep_delay_ms)
457{
458 static int inp_prev = 0;
459 static int repeats = 0;
460 int ret, release = 0, wait = 450;
461
462 if (repeats)
463 wait = autorep_delay_ms;
464
465 ret = in_menu_wait_any(charcode, wait);
466 if (ret == inp_prev)
467 repeats++;
468
469 while (!(ret & interesting)) {
470 ret = in_menu_wait_any(charcode, -1);
471 release = 1;
472 }
473
474 if (release || ret != inp_prev)
475 repeats = 0;
476
477 inp_prev = ret;
478
479 /* we don't need diagonals in menus */
480 if ((ret & PBTN_UP) && (ret & PBTN_LEFT)) ret &= ~PBTN_LEFT;
481 if ((ret & PBTN_UP) && (ret & PBTN_RIGHT)) ret &= ~PBTN_RIGHT;
482 if ((ret & PBTN_DOWN) && (ret & PBTN_LEFT)) ret &= ~PBTN_LEFT;
483 if ((ret & PBTN_DOWN) && (ret & PBTN_RIGHT)) ret &= ~PBTN_RIGHT;
484
485 return ret;
486}
487
488const int *in_get_dev_binds(int dev_id)
489{
490 in_dev_t *dev = get_dev(dev_id);
491
492 return dev ? dev->binds : NULL;
493}
494
495const int *in_get_dev_def_binds(int dev_id)
496{
497 in_dev_t *dev = get_dev(dev_id);
498 if (dev == NULL)
499 return NULL;
500 if (dev->binds == NULL)
501 return NULL;
502
503 return dev->binds + dev->key_count * IN_BINDTYPE_COUNT;
504}
505
506int in_get_config(int dev_id, int what, void *val)
507{
508 int *ival = val;
509 in_dev_t *dev;
510
511 dev = get_dev(dev_id);
512 if (dev == NULL || val == NULL)
513 return -1;
514
515 switch (what) {
516 case IN_CFG_BIND_COUNT:
517 *ival = dev->key_count;
518 break;
519 case IN_CFG_DOES_COMBOS:
520 *ival = dev->does_combos;
521 break;
522 case IN_CFG_BLOCKING:
523 case IN_CFG_KEY_NAMES:
524 return -1; /* not implemented */
525 default:
526 if (!dev->probed)
527 return -1;
528
529 return DRV(dev->drv_id).get_config(dev->drv_data, what, ival);
530 }
531
532 return 0;
533}
534
535static int in_set_blocking(int is_blocking)
536{
537 int i, ret;
538
539 /* have_async_devs means we will have to do all reads async anyway.. */
540 if (!in_have_async_devs) {
541 for (i = 0; i < in_dev_count; i++) {
542 if (!in_devices[i].probed)
543 continue;
544
545 DRV(in_devices[i].drv_id).set_config(
546 in_devices[i].drv_data, IN_CFG_BLOCKING,
547 is_blocking);
548 }
549 }
550
551 menu_key_state = 0;
552
553 /* flush events */
554 do {
555 ret = in_update_keycode(NULL, NULL, NULL, 0);
556 } while (ret >= 0);
557
558 return 0;
559}
560
561int in_set_config(int dev_id, int what, const void *val, int size)
562{
563 const char * const *names;
564 const int *ival = val;
565 in_dev_t *dev;
566 int count;
567
568 if (what == IN_CFG_BLOCKING)
569 return in_set_blocking(*ival);
570
571 dev = get_dev(dev_id);
572 if (dev == NULL)
573 return -1;
574
575 switch (what) {
576 case IN_CFG_KEY_NAMES:
577 names = val;
578 count = size / sizeof(names[0]);
579
580 if (count < dev->key_count) {
581 lprintf("input: set_key_names: not enough keys\n");
582 return -1;
583 }
584
585 dev->key_names = names;
586 return 0;
587 case IN_CFG_DEFAULT_DEV:
588 /* just set last used dev, for now */
589 menu_last_used_dev = dev_id;
590 return 0;
591 default:
592 break;
593 }
594
595 if (dev->probed)
596 return DRV(dev->drv_id).set_config(dev->drv_data, what, *ival);
597
598 return -1;
599}
600
601const char *in_get_dev_name(int dev_id, int must_be_active, int skip_pfix)
602{
603 const char *name, *tmp;
604 in_dev_t *dev;
605
606 dev = get_dev(dev_id);
607 if (dev == NULL)
608 return NULL;
609
610 if (must_be_active && !dev->probed)
611 return NULL;
612
613 name = dev->name;
614 if (name == NULL || !skip_pfix)
615 return name;
616
617 /* skip prefix */
618 tmp = strchr(name, ':');
619 if (tmp != NULL)
620 name = tmp + 1;
621
622 return name;
623}
624
625int in_name_to_id(const char *dev_name)
626{
627 int i;
628
629 for (i = 0; i < in_dev_count; i++)
630 if (strcmp(dev_name, in_devices[i].name) == 0)
631 break;
632
633 if (i >= in_dev_count) {
634 lprintf("input: in_name_to_id: no such device: %s\n", dev_name);
635 return -1;
636 }
637
638 return i;
639}
640
641/* never returns NULL */
642const char *in_get_key_name(int dev_id, int keycode)
643{
644 const char *name = NULL;
645 static char xname[16];
646 in_drv_t *drv;
647 in_dev_t *dev;
648
649 if (dev_id < 0) /* want last used dev? */
650 dev_id = menu_last_used_dev;
651
652 dev = get_dev(dev_id);
653 if (dev == NULL)
654 return "Unkn0";
655
656 drv = &DRV(dev->drv_id);
657 if (keycode < 0) /* want name for menu key? */
658 keycode = drv->menu_translate(dev->drv_data, keycode, NULL);
659
660 if (dev->key_names != NULL && 0 <= keycode && keycode < dev->key_count)
661 name = dev->key_names[keycode];
662 if (name != NULL)
663 return name;
664
665 if (drv->get_key_name != NULL)
666 name = drv->get_key_name(keycode);
667 if (name != NULL)
668 return name;
669
670 /* assume scancode */
671 if ((keycode >= '0' && keycode <= '9') || (keycode >= 'a' && keycode <= 'z')
672 || (keycode >= 'A' && keycode <= 'Z'))
673 sprintf(xname, "%c", keycode);
674 else
675 sprintf(xname, "\\x%02X", keycode);
676 return xname;
677}
678
679int in_get_key_code(int dev_id, const char *key_name)
680{
681 in_dev_t *dev;
682 int i;
683
684 if (dev_id < 0) /* want last used dev? */
685 dev_id = menu_last_used_dev;
686
687 dev = get_dev(dev_id);
688 if (dev == NULL)
689 return -1;
690
691 if (dev->key_names == NULL)
692 return -1;
693
694 for (i = 0; i < dev->key_count; i++)
695 if (dev->key_names[i] && strcasecmp(dev->key_names[i], key_name) == 0)
696 return i;
697
698 return -1;
699}
700
701int in_bind_key(int dev_id, int keycode, int mask, int bind_type, int force_unbind)
702{
703 int ret, count;
704 in_dev_t *dev;
705
706 dev = get_dev(dev_id);
707 if (dev == NULL || bind_type >= IN_BINDTYPE_COUNT)
708 return -1;
709
710 count = dev->key_count;
711
712 if (dev->binds == NULL) {
713 if (force_unbind)
714 return 0;
715 dev->binds = in_alloc_binds(dev->drv_id, count);
716 if (dev->binds == NULL)
717 return -1;
718 }
719
720 if (keycode < 0 || keycode >= count)
721 return -1;
722
723 if (force_unbind)
724 dev->binds[IN_BIND_OFFS(keycode, bind_type)] &= ~mask;
725 else
726 dev->binds[IN_BIND_OFFS(keycode, bind_type)] ^= mask;
727
728 ret = DRV(dev->drv_id).clean_binds(dev->drv_data, dev->binds,
729 dev->binds + count * IN_BINDTYPE_COUNT);
730 if (ret == 0) {
731 free(dev->binds);
732 dev->binds = NULL;
733 }
734
735 return 0;
736}
737
738/*
739 * Unbind act_mask on binds with type bind_type
740 * - if dev_id_ < 0, affects all devices
741 * else only affects dev_id_
742 * - if act_mask == -1, unbind all keys
743 * else only actions in mask
744 */
745void in_unbind_all(int dev_id_, int act_mask, int bind_type)
746{
747 int dev_id = 0, dev_last = IN_MAX_DEVS - 1;
748 int i, count;
749 in_dev_t *dev;
750
751 if (dev_id_ >= 0)
752 dev_id = dev_last = dev_id_;
753
754 if (bind_type >= IN_BINDTYPE_COUNT)
755 return;
756
757 for (; dev_id <= dev_last; dev_id++) {
758 dev = &in_devices[dev_id];
759 count = dev->key_count;
760
761 if (dev->binds == NULL)
762 continue;
763
764 if (act_mask != -1) {
765 for (i = 0; i < count; i++)
766 dev->binds[IN_BIND_OFFS(i, bind_type)] &= ~act_mask;
767 }
768 else
769 memset(dev->binds, 0, sizeof(dev->binds[0]) * count * IN_BINDTYPE_COUNT);
770 }
771}
772
773/* returns device id, or -1 on error */
774int in_config_parse_dev(const char *name)
775{
776 int drv_id = -1, i;
777
778 for (i = 0; i < in_driver_count; i++) {
779 int len = strlen(in_drivers[i].prefix);
780 if (strncmp(name, in_drivers[i].prefix, len) == 0) {
781 drv_id = i;
782 break;
783 }
784 }
785
786 if (drv_id < 0) {
787 lprintf("input: missing driver for '%s'\n", name);
788 return -1;
789 }
790
791 for (i = 0; i < in_dev_count; i++)
792 {
793 if (in_devices[i].name == NULL)
794 continue;
795 if (strcmp(in_devices[i].name, name) == 0)
796 return i;
797 }
798
799 if (i >= IN_MAX_DEVS)
800 {
801 /* try to find unused device */
802 for (i = 0; i < IN_MAX_DEVS; i++)
803 if (in_devices[i].name == NULL) break;
804 if (i >= IN_MAX_DEVS) {
805 lprintf("input: too many devices, can't add '%s'\n",
806 name);
807 return -1;
808 }
809 }
810
811 memset(&in_devices[i], 0, sizeof(in_devices[i]));
812
813 in_devices[i].name = strdup(name);
814 if (in_devices[i].name == NULL)
815 return -1;
816
817 in_devices[i].key_names = DRV(drv_id).get_key_names(&DRV(drv_id),
818 &in_devices[i].key_count);
819 in_devices[i].drv_id = drv_id;
820
821 if (i + 1 > in_dev_count)
822 in_dev_count = i + 1;
823
824 return i;
825}
826
827int in_config_bind_key(int dev_id, const char *key, int acts, int bind_type)
828{
829 in_dev_t *dev;
830 int i, offs, kc;
831
832 dev = get_dev(dev_id);
833 if (dev == NULL || bind_type >= IN_BINDTYPE_COUNT)
834 return -1;
835
836 /* maybe a raw code? */
837 if (key[0] == '\\' && key[1] == 'x') {
838 char *p = NULL;
839 kc = (int)strtoul(key + 2, &p, 16);
840 if (p == NULL || *p != 0)
841 kc = -1;
842 }
843 else {
844 /* device specific key name */
845 if (dev->binds == NULL) {
846 dev->binds = in_alloc_binds(dev->drv_id, dev->key_count);
847 if (dev->binds == NULL)
848 return -1;
849 }
850
851 kc = -1;
852 if (dev->key_names != NULL) {
853 for (i = 0; i < dev->key_count; i++) {
854 const char *k = dev->key_names[i];
855 if (k != NULL && strcasecmp(k, key) == 0) {
856 kc = i;
857 break;
858 }
859 }
860 }
861
862 if (kc < 0)
863 kc = DRV(dev->drv_id).get_key_code(key);
864 if (kc < 0 && strlen(key) == 1) {
865 /* assume scancode */
866 kc = key[0];
867 }
868 }
869
870 if (kc < 0 || kc >= dev->key_count) {
871 lprintf("input: bad key: '%s' for device '%s'\n",
872 key, dev->name);
873 return -1;
874 }
875
876 if (bind_type == IN_BINDTYPE_NONE) {
877 for (i = 0; i < IN_BINDTYPE_COUNT; i++)
878 dev->binds[IN_BIND_OFFS(kc, i)] = 0;
879 return 0;
880 }
881
882 offs = IN_BIND_OFFS(kc, bind_type);
883 if (dev->binds[offs] == -1)
884 dev->binds[offs] = 0;
885 dev->binds[offs] |= acts;
886 return 0;
887}
888
889void in_clean_binds(void)
890{
891 int i;
892
893 for (i = 0; i < IN_MAX_DEVS; i++) {
894 int ret, count, *binds, *def_binds;
895 in_dev_t *dev = &in_devices[i];
896
897 if (dev->binds == NULL || !dev->probed)
898 continue;
899
900 count = dev->key_count;
901 binds = dev->binds;
902 def_binds = binds + count * IN_BINDTYPE_COUNT;
903
904 ret = DRV(dev->drv_id).clean_binds(dev->drv_data, binds, def_binds);
905 if (ret == 0) {
906 /* no useable binds */
907 free(dev->binds);
908 dev->binds = NULL;
909 }
910 }
911}
912
913void in_debug_dump(void)
914{
915 int i;
916
917 lprintf("# drv probed binds name\n");
918 for (i = 0; i < IN_MAX_DEVS; i++) {
919 in_dev_t *d = &in_devices[i];
920 if (!d->probed && d->name == NULL && d->binds == NULL)
921 continue;
922 lprintf("%d %3d %6c %5c %s\n", i, d->drv_id,
923 d->probed ? 'y' : 'n',
924 d->binds ? 'y' : 'n', d->name);
925#if 0
926 if (d->binds) {
927 int kc, o, t, h;
928 for (kc = 0; kc < d->key_count; kc++) {
929 o = IN_BIND_OFFS(kc, 0);
930 for (t = h = 0; t < IN_BINDTYPE_COUNT; t++)
931 h |= d->binds[o + t];
932 if (h == 0)
933 continue;
934 lprintf(" [%3d] =", kc);
935 for (t = 0; t < IN_BINDTYPE_COUNT; t++)
936 printf(" %x", d->binds[o + t]);
937 printf("\n");
938 }
939 }
940#endif
941 }
942}
943
944/* stubs for drivers that choose not to implement something */
945
946static void in_def_free(void *drv_data) {}
947static int in_def_clean_binds(void *drv_data, int *b, int *db) { return 1; }
948static int in_def_get_config(void *drv_data, int what, int *val) { return -1; }
949static int in_def_set_config(void *drv_data, int what, int val) { return -1; }
950static int in_def_update_analog(void *drv_data, int axis_id, int *result) { return -1; }
951static int in_def_update_keycode(void *drv_data, int *is_down) { return 0; }
952static int in_def_menu_translate(void *drv_data, int keycode, char *ccode) { return 0; }
953static int in_def_get_key_code(const char *key_name) { return -1; }
954static const char *in_def_get_key_name(int keycode) { return NULL; }
955
956#define CHECK_ADD_STUB(d, f) \
957 if (d.f == NULL) d.f = in_def_##f
958
959/* to be called by drivers */
960int in_register_driver(const in_drv_t *drv,
961 const struct in_default_bind *defbinds, const void *pdata)
962{
963 int count_new = in_driver_count + 1;
964 in_drv_t *new_drivers;
965
966 new_drivers = realloc(in_drivers, count_new * sizeof(in_drivers[0]));
967 if (new_drivers == NULL) {
968 lprintf("input: in_register_driver OOM\n");
969 return -1;
970 }
971
972 memcpy(&new_drivers[in_driver_count], drv, sizeof(new_drivers[0]));
973
974 CHECK_ADD_STUB(new_drivers[in_driver_count], free);
975 CHECK_ADD_STUB(new_drivers[in_driver_count], clean_binds);
976 CHECK_ADD_STUB(new_drivers[in_driver_count], get_config);
977 CHECK_ADD_STUB(new_drivers[in_driver_count], set_config);
978 CHECK_ADD_STUB(new_drivers[in_driver_count], update_analog);
979 CHECK_ADD_STUB(new_drivers[in_driver_count], update_keycode);
980 CHECK_ADD_STUB(new_drivers[in_driver_count], menu_translate);
981 CHECK_ADD_STUB(new_drivers[in_driver_count], get_key_code);
982 CHECK_ADD_STUB(new_drivers[in_driver_count], get_key_name);
983 if (pdata)
984 new_drivers[in_driver_count].pdata = pdata;
985 if (defbinds)
986 new_drivers[in_driver_count].defbinds = defbinds;
987 in_drivers = new_drivers;
988 in_driver_count = count_new;
989
990 return 0;
991}
992
993void in_init(void)
994{
995 in_drivers = NULL;
996 memset(in_devices, 0, sizeof(in_devices));
997 in_driver_count = 0;
998 in_dev_count = 0;
999}
1000
1001#if 0
1002int main(void)
1003{
1004 int ret;
1005
1006 in_init();
1007 in_probe();
1008
1009 in_set_blocking(1);
1010
1011#if 1
1012 while (1) {
1013 int dev = 0, down;
1014 ret = in_update_keycode(&dev, &down);
1015 lprintf("#%i: %i %i (%s)\n", dev, down, ret, in_get_key_name(dev, ret));
1016 }
1017#else
1018 while (1) {
1019 ret = in_menu_wait_any();
1020 lprintf("%08x\n", ret);
1021 }
1022#endif
1023
1024 return 0;
1025}
1026#endif