xref: /qemu/hw/input/adb.c (revision 814bb12a)
1 /*
2  * QEMU ADB support
3  *
4  * Copyright (c) 2004 Fabrice Bellard
5  *
6  * Permission is hereby granted, free of charge, to any person obtaining a copy
7  * of this software and associated documentation files (the "Software"), to deal
8  * in the Software without restriction, including without limitation the rights
9  * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10  * copies of the Software, and to permit persons to whom the Software is
11  * furnished to do so, subject to the following conditions:
12  *
13  * The above copyright notice and this permission notice shall be included in
14  * all copies or substantial portions of the Software.
15  *
16  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19  * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21  * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22  * THE SOFTWARE.
23  */
24 #include "qemu/osdep.h"
25 #include "hw/hw.h"
26 #include "hw/input/adb.h"
27 #include "ui/console.h"
28 #include "include/hw/input/adb-keys.h"
29 #include "ui/input.h"
30 #include "sysemu/sysemu.h"
31 
32 /* debug ADB */
33 //#define DEBUG_ADB
34 
35 #ifdef DEBUG_ADB
36 #define ADB_DPRINTF(fmt, ...) \
37 do { printf("ADB: " fmt , ## __VA_ARGS__); } while (0)
38 #else
39 #define ADB_DPRINTF(fmt, ...)
40 #endif
41 
42 /* ADB commands */
43 #define ADB_BUSRESET		0x00
44 #define ADB_FLUSH               0x01
45 #define ADB_WRITEREG		0x08
46 #define ADB_READREG		0x0c
47 
48 /* ADB device commands */
49 #define ADB_CMD_SELF_TEST		0xff
50 #define ADB_CMD_CHANGE_ID		0xfe
51 #define ADB_CMD_CHANGE_ID_AND_ACT	0xfd
52 #define ADB_CMD_CHANGE_ID_AND_ENABLE	0x00
53 
54 /* ADB default device IDs (upper 4 bits of ADB command byte) */
55 #define ADB_DEVID_DONGLE   1
56 #define ADB_DEVID_KEYBOARD 2
57 #define ADB_DEVID_MOUSE    3
58 #define ADB_DEVID_TABLET   4
59 #define ADB_DEVID_MODEM    5
60 #define ADB_DEVID_MISC     7
61 
62 /* error codes */
63 #define ADB_RET_NOTPRESENT (-2)
64 
65 /* The adb keyboard doesn't have every key imaginable */
66 #define NO_KEY 0xff
67 
68 static void adb_device_reset(ADBDevice *d)
69 {
70     qdev_reset_all(DEVICE(d));
71 }
72 
73 int adb_request(ADBBusState *s, uint8_t *obuf, const uint8_t *buf, int len)
74 {
75     ADBDevice *d;
76     int devaddr, cmd, i;
77 
78     cmd = buf[0] & 0xf;
79     if (cmd == ADB_BUSRESET) {
80         for(i = 0; i < s->nb_devices; i++) {
81             d = s->devices[i];
82             adb_device_reset(d);
83         }
84         return 0;
85     }
86     devaddr = buf[0] >> 4;
87     for(i = 0; i < s->nb_devices; i++) {
88         d = s->devices[i];
89         if (d->devaddr == devaddr) {
90             ADBDeviceClass *adc = ADB_DEVICE_GET_CLASS(d);
91             return adc->devreq(d, obuf, buf, len);
92         }
93     }
94     return ADB_RET_NOTPRESENT;
95 }
96 
97 /* XXX: move that to cuda ? */
98 int adb_poll(ADBBusState *s, uint8_t *obuf, uint16_t poll_mask)
99 {
100     ADBDevice *d;
101     int olen, i;
102     uint8_t buf[1];
103 
104     olen = 0;
105     for(i = 0; i < s->nb_devices; i++) {
106         if (s->poll_index >= s->nb_devices)
107             s->poll_index = 0;
108         d = s->devices[s->poll_index];
109         if ((1 << d->devaddr) & poll_mask) {
110             buf[0] = ADB_READREG | (d->devaddr << 4);
111             olen = adb_request(s, obuf + 1, buf, 1);
112             /* if there is data, we poll again the same device */
113             if (olen > 0) {
114                 obuf[0] = buf[0];
115                 olen++;
116                 break;
117             }
118         }
119         s->poll_index++;
120     }
121     return olen;
122 }
123 
124 static const TypeInfo adb_bus_type_info = {
125     .name = TYPE_ADB_BUS,
126     .parent = TYPE_BUS,
127     .instance_size = sizeof(ADBBusState),
128 };
129 
130 static const VMStateDescription vmstate_adb_device = {
131     .name = "adb_device",
132     .version_id = 0,
133     .minimum_version_id = 0,
134     .fields = (VMStateField[]) {
135         VMSTATE_INT32(devaddr, ADBDevice),
136         VMSTATE_INT32(handler, ADBDevice),
137         VMSTATE_END_OF_LIST()
138     }
139 };
140 
141 static void adb_device_realizefn(DeviceState *dev, Error **errp)
142 {
143     ADBDevice *d = ADB_DEVICE(dev);
144     ADBBusState *bus = ADB_BUS(qdev_get_parent_bus(dev));
145 
146     if (bus->nb_devices >= MAX_ADB_DEVICES) {
147         return;
148     }
149 
150     bus->devices[bus->nb_devices++] = d;
151 }
152 
153 static void adb_device_class_init(ObjectClass *oc, void *data)
154 {
155     DeviceClass *dc = DEVICE_CLASS(oc);
156 
157     dc->realize = adb_device_realizefn;
158     dc->bus_type = TYPE_ADB_BUS;
159 }
160 
161 static const TypeInfo adb_device_type_info = {
162     .name = TYPE_ADB_DEVICE,
163     .parent = TYPE_DEVICE,
164     .instance_size = sizeof(ADBDevice),
165     .abstract = true,
166     .class_init = adb_device_class_init,
167 };
168 
169 /***************************************************************/
170 /* Keyboard ADB device */
171 
172 #define ADB_KEYBOARD(obj) OBJECT_CHECK(KBDState, (obj), TYPE_ADB_KEYBOARD)
173 
174 typedef struct KBDState {
175     /*< private >*/
176     ADBDevice parent_obj;
177     /*< public >*/
178 
179     uint8_t data[128];
180     int rptr, wptr, count;
181 } KBDState;
182 
183 #define ADB_KEYBOARD_CLASS(class) \
184     OBJECT_CLASS_CHECK(ADBKeyboardClass, (class), TYPE_ADB_KEYBOARD)
185 #define ADB_KEYBOARD_GET_CLASS(obj) \
186     OBJECT_GET_CLASS(ADBKeyboardClass, (obj), TYPE_ADB_KEYBOARD)
187 
188 typedef struct ADBKeyboardClass {
189     /*< private >*/
190     ADBDeviceClass parent_class;
191     /*< public >*/
192 
193     DeviceRealize parent_realize;
194 } ADBKeyboardClass;
195 
196 int qcode_to_adb_keycode[] = {
197      /* Make sure future additions are automatically set to NO_KEY */
198     [0 ... 0xff]               = NO_KEY,
199 
200     [Q_KEY_CODE_SHIFT]         = ADB_KEY_LEFT_SHIFT,
201     [Q_KEY_CODE_SHIFT_R]       = ADB_KEY_RIGHT_SHIFT,
202     [Q_KEY_CODE_ALT]           = ADB_KEY_LEFT_OPTION,
203     [Q_KEY_CODE_ALT_R]         = ADB_KEY_RIGHT_OPTION,
204     [Q_KEY_CODE_ALTGR]         = ADB_KEY_RIGHT_OPTION,
205     [Q_KEY_CODE_CTRL]          = ADB_KEY_LEFT_CONTROL,
206     [Q_KEY_CODE_CTRL_R]        = ADB_KEY_RIGHT_CONTROL,
207     [Q_KEY_CODE_META_L]        = ADB_KEY_COMMAND,
208     [Q_KEY_CODE_META_R]        = ADB_KEY_COMMAND,
209     [Q_KEY_CODE_SPC]           = ADB_KEY_SPACEBAR,
210 
211     [Q_KEY_CODE_ESC]           = ADB_KEY_ESC,
212     [Q_KEY_CODE_1]             = ADB_KEY_1,
213     [Q_KEY_CODE_2]             = ADB_KEY_2,
214     [Q_KEY_CODE_3]             = ADB_KEY_3,
215     [Q_KEY_CODE_4]             = ADB_KEY_4,
216     [Q_KEY_CODE_5]             = ADB_KEY_5,
217     [Q_KEY_CODE_6]             = ADB_KEY_6,
218     [Q_KEY_CODE_7]             = ADB_KEY_7,
219     [Q_KEY_CODE_8]             = ADB_KEY_8,
220     [Q_KEY_CODE_9]             = ADB_KEY_9,
221     [Q_KEY_CODE_0]             = ADB_KEY_0,
222     [Q_KEY_CODE_MINUS]         = ADB_KEY_MINUS,
223     [Q_KEY_CODE_EQUAL]         = ADB_KEY_EQUAL,
224     [Q_KEY_CODE_BACKSPACE]     = ADB_KEY_DELETE,
225     [Q_KEY_CODE_TAB]           = ADB_KEY_TAB,
226     [Q_KEY_CODE_Q]             = ADB_KEY_Q,
227     [Q_KEY_CODE_W]             = ADB_KEY_W,
228     [Q_KEY_CODE_E]             = ADB_KEY_E,
229     [Q_KEY_CODE_R]             = ADB_KEY_R,
230     [Q_KEY_CODE_T]             = ADB_KEY_T,
231     [Q_KEY_CODE_Y]             = ADB_KEY_Y,
232     [Q_KEY_CODE_U]             = ADB_KEY_U,
233     [Q_KEY_CODE_I]             = ADB_KEY_I,
234     [Q_KEY_CODE_O]             = ADB_KEY_O,
235     [Q_KEY_CODE_P]             = ADB_KEY_P,
236     [Q_KEY_CODE_BRACKET_LEFT]  = ADB_KEY_LEFT_BRACKET,
237     [Q_KEY_CODE_BRACKET_RIGHT] = ADB_KEY_RIGHT_BRACKET,
238     [Q_KEY_CODE_RET]           = ADB_KEY_RETURN,
239     [Q_KEY_CODE_A]             = ADB_KEY_A,
240     [Q_KEY_CODE_S]             = ADB_KEY_S,
241     [Q_KEY_CODE_D]             = ADB_KEY_D,
242     [Q_KEY_CODE_F]             = ADB_KEY_F,
243     [Q_KEY_CODE_G]             = ADB_KEY_G,
244     [Q_KEY_CODE_H]             = ADB_KEY_H,
245     [Q_KEY_CODE_J]             = ADB_KEY_J,
246     [Q_KEY_CODE_K]             = ADB_KEY_K,
247     [Q_KEY_CODE_L]             = ADB_KEY_L,
248     [Q_KEY_CODE_SEMICOLON]     = ADB_KEY_SEMICOLON,
249     [Q_KEY_CODE_APOSTROPHE]    = ADB_KEY_APOSTROPHE,
250     [Q_KEY_CODE_GRAVE_ACCENT]  = ADB_KEY_GRAVE_ACCENT,
251     [Q_KEY_CODE_BACKSLASH]     = ADB_KEY_BACKSLASH,
252     [Q_KEY_CODE_Z]             = ADB_KEY_Z,
253     [Q_KEY_CODE_X]             = ADB_KEY_X,
254     [Q_KEY_CODE_C]             = ADB_KEY_C,
255     [Q_KEY_CODE_V]             = ADB_KEY_V,
256     [Q_KEY_CODE_B]             = ADB_KEY_B,
257     [Q_KEY_CODE_N]             = ADB_KEY_N,
258     [Q_KEY_CODE_M]             = ADB_KEY_M,
259     [Q_KEY_CODE_COMMA]         = ADB_KEY_COMMA,
260     [Q_KEY_CODE_DOT]           = ADB_KEY_PERIOD,
261     [Q_KEY_CODE_SLASH]         = ADB_KEY_FORWARD_SLASH,
262     [Q_KEY_CODE_ASTERISK]      = ADB_KEY_KP_MULTIPLY,
263     [Q_KEY_CODE_CAPS_LOCK]     = ADB_KEY_CAPS_LOCK,
264 
265     [Q_KEY_CODE_F1]            = ADB_KEY_F1,
266     [Q_KEY_CODE_F2]            = ADB_KEY_F2,
267     [Q_KEY_CODE_F3]            = ADB_KEY_F3,
268     [Q_KEY_CODE_F4]            = ADB_KEY_F4,
269     [Q_KEY_CODE_F5]            = ADB_KEY_F5,
270     [Q_KEY_CODE_F6]            = ADB_KEY_F6,
271     [Q_KEY_CODE_F7]            = ADB_KEY_F7,
272     [Q_KEY_CODE_F8]            = ADB_KEY_F8,
273     [Q_KEY_CODE_F9]            = ADB_KEY_F9,
274     [Q_KEY_CODE_F10]           = ADB_KEY_F10,
275     [Q_KEY_CODE_F11]           = ADB_KEY_F11,
276     [Q_KEY_CODE_F12]           = ADB_KEY_F12,
277     [Q_KEY_CODE_PRINT]         = ADB_KEY_F13,
278     [Q_KEY_CODE_SYSRQ]         = ADB_KEY_F13,
279     [Q_KEY_CODE_SCROLL_LOCK]   = ADB_KEY_F14,
280     [Q_KEY_CODE_PAUSE]         = ADB_KEY_F15,
281 
282     [Q_KEY_CODE_NUM_LOCK]      = ADB_KEY_KP_CLEAR,
283     [Q_KEY_CODE_KP_EQUALS]     = ADB_KEY_KP_EQUAL,
284     [Q_KEY_CODE_KP_DIVIDE]     = ADB_KEY_KP_DIVIDE,
285     [Q_KEY_CODE_KP_MULTIPLY]   = ADB_KEY_KP_MULTIPLY,
286     [Q_KEY_CODE_KP_SUBTRACT]   = ADB_KEY_KP_SUBTRACT,
287     [Q_KEY_CODE_KP_ADD]        = ADB_KEY_KP_PLUS,
288     [Q_KEY_CODE_KP_ENTER]      = ADB_KEY_KP_ENTER,
289     [Q_KEY_CODE_KP_DECIMAL]    = ADB_KEY_KP_PERIOD,
290     [Q_KEY_CODE_KP_0]          = ADB_KEY_KP_0,
291     [Q_KEY_CODE_KP_1]          = ADB_KEY_KP_1,
292     [Q_KEY_CODE_KP_2]          = ADB_KEY_KP_2,
293     [Q_KEY_CODE_KP_3]          = ADB_KEY_KP_3,
294     [Q_KEY_CODE_KP_4]          = ADB_KEY_KP_4,
295     [Q_KEY_CODE_KP_5]          = ADB_KEY_KP_5,
296     [Q_KEY_CODE_KP_6]          = ADB_KEY_KP_6,
297     [Q_KEY_CODE_KP_7]          = ADB_KEY_KP_7,
298     [Q_KEY_CODE_KP_8]          = ADB_KEY_KP_8,
299     [Q_KEY_CODE_KP_9]          = ADB_KEY_KP_9,
300 
301     [Q_KEY_CODE_UP]            = ADB_KEY_UP,
302     [Q_KEY_CODE_DOWN]          = ADB_KEY_DOWN,
303     [Q_KEY_CODE_LEFT]          = ADB_KEY_LEFT,
304     [Q_KEY_CODE_RIGHT]         = ADB_KEY_RIGHT,
305 
306     [Q_KEY_CODE_HELP]          = ADB_KEY_HELP,
307     [Q_KEY_CODE_INSERT]        = ADB_KEY_HELP,
308     [Q_KEY_CODE_DELETE]        = ADB_KEY_FORWARD_DELETE,
309     [Q_KEY_CODE_HOME]          = ADB_KEY_HOME,
310     [Q_KEY_CODE_END]           = ADB_KEY_END,
311     [Q_KEY_CODE_PGUP]          = ADB_KEY_PAGE_UP,
312     [Q_KEY_CODE_PGDN]          = ADB_KEY_PAGE_DOWN,
313 
314     [Q_KEY_CODE_POWER]         = ADB_KEY_POWER
315 };
316 
317 static void adb_kbd_put_keycode(void *opaque, int keycode)
318 {
319     KBDState *s = opaque;
320 
321     if (s->count < sizeof(s->data)) {
322         s->data[s->wptr] = keycode;
323         if (++s->wptr == sizeof(s->data))
324             s->wptr = 0;
325         s->count++;
326     }
327 }
328 
329 static int adb_kbd_poll(ADBDevice *d, uint8_t *obuf)
330 {
331     KBDState *s = ADB_KEYBOARD(d);
332     int keycode;
333     int olen;
334 
335     olen = 0;
336     if (s->count == 0) {
337         return 0;
338     }
339     keycode = s->data[s->rptr];
340     s->rptr++;
341     if (s->rptr == sizeof(s->data)) {
342         s->rptr = 0;
343     }
344     s->count--;
345     /*
346      * The power key is the only two byte value key, so it is a special case.
347      * Since 0x7f is not a used keycode for ADB we overload it to indicate the
348      * power button when we're storing keycodes in our internal buffer, and
349      * expand it out to two bytes when we send to the guest.
350      */
351     if (keycode == 0x7f) {
352         obuf[0] = 0x7f;
353         obuf[1] = 0x7f;
354         olen = 2;
355     } else {
356         obuf[0] = keycode;
357         /* NOTE: the power key key-up is the two byte sequence 0xff 0xff;
358          * otherwise we could in theory send a second keycode in the second
359          * byte, but choose not to bother.
360          */
361         obuf[1] = 0xff;
362         olen = 2;
363     }
364 
365     return olen;
366 }
367 
368 static int adb_kbd_request(ADBDevice *d, uint8_t *obuf,
369                            const uint8_t *buf, int len)
370 {
371     KBDState *s = ADB_KEYBOARD(d);
372     int cmd, reg, olen;
373 
374     if ((buf[0] & 0x0f) == ADB_FLUSH) {
375         /* flush keyboard fifo */
376         s->wptr = s->rptr = s->count = 0;
377         return 0;
378     }
379 
380     cmd = buf[0] & 0xc;
381     reg = buf[0] & 0x3;
382     olen = 0;
383     switch(cmd) {
384     case ADB_WRITEREG:
385         switch(reg) {
386         case 2:
387             /* LED status */
388             break;
389         case 3:
390             switch(buf[2]) {
391             case ADB_CMD_SELF_TEST:
392                 break;
393             case ADB_CMD_CHANGE_ID:
394             case ADB_CMD_CHANGE_ID_AND_ACT:
395             case ADB_CMD_CHANGE_ID_AND_ENABLE:
396                 d->devaddr = buf[1] & 0xf;
397                 break;
398             default:
399                 /* XXX: check this */
400                 d->devaddr = buf[1] & 0xf;
401                 d->handler = buf[2];
402                 break;
403             }
404         }
405         break;
406     case ADB_READREG:
407         switch(reg) {
408         case 0:
409             olen = adb_kbd_poll(d, obuf);
410             break;
411         case 1:
412             break;
413         case 2:
414             obuf[0] = 0x00; /* XXX: check this */
415             obuf[1] = 0x07; /* led status */
416             olen = 2;
417             break;
418         case 3:
419             obuf[0] = d->handler;
420             obuf[1] = d->devaddr;
421             olen = 2;
422             break;
423         }
424         break;
425     }
426     return olen;
427 }
428 
429 /* This is where keyboard events enter this file */
430 static void adb_keyboard_event(DeviceState *dev, QemuConsole *src,
431                                InputEvent *evt)
432 {
433     KBDState *s = (KBDState *)dev;
434     int qcode, keycode;
435 
436     qcode = qemu_input_key_value_to_qcode(evt->u.key.data->key);
437     if (qcode >= ARRAY_SIZE(qcode_to_adb_keycode)) {
438         return;
439     }
440     keycode = qcode_to_adb_keycode[qcode];
441     if (keycode == NO_KEY) {  /* We don't want to send this to the guest */
442         ADB_DPRINTF("Ignoring NO_KEY\n");
443         return;
444     }
445     if (evt->u.key.data->down == false) { /* if key release event */
446         keycode = keycode | 0x80;   /* create keyboard break code */
447     }
448 
449     adb_kbd_put_keycode(s, keycode);
450 }
451 
452 static const VMStateDescription vmstate_adb_kbd = {
453     .name = "adb_kbd",
454     .version_id = 2,
455     .minimum_version_id = 2,
456     .fields = (VMStateField[]) {
457         VMSTATE_STRUCT(parent_obj, KBDState, 0, vmstate_adb_device, ADBDevice),
458         VMSTATE_BUFFER(data, KBDState),
459         VMSTATE_INT32(rptr, KBDState),
460         VMSTATE_INT32(wptr, KBDState),
461         VMSTATE_INT32(count, KBDState),
462         VMSTATE_END_OF_LIST()
463     }
464 };
465 
466 static void adb_kbd_reset(DeviceState *dev)
467 {
468     ADBDevice *d = ADB_DEVICE(dev);
469     KBDState *s = ADB_KEYBOARD(dev);
470 
471     d->handler = 1;
472     d->devaddr = ADB_DEVID_KEYBOARD;
473     memset(s->data, 0, sizeof(s->data));
474     s->rptr = 0;
475     s->wptr = 0;
476     s->count = 0;
477 }
478 
479 static QemuInputHandler adb_keyboard_handler = {
480     .name  = "QEMU ADB Keyboard",
481     .mask  = INPUT_EVENT_MASK_KEY,
482     .event = adb_keyboard_event,
483 };
484 
485 static void adb_kbd_realizefn(DeviceState *dev, Error **errp)
486 {
487     ADBKeyboardClass *akc = ADB_KEYBOARD_GET_CLASS(dev);
488     akc->parent_realize(dev, errp);
489     qemu_input_handler_register(dev, &adb_keyboard_handler);
490 }
491 
492 static void adb_kbd_initfn(Object *obj)
493 {
494     ADBDevice *d = ADB_DEVICE(obj);
495 
496     d->devaddr = ADB_DEVID_KEYBOARD;
497 }
498 
499 static void adb_kbd_class_init(ObjectClass *oc, void *data)
500 {
501     DeviceClass *dc = DEVICE_CLASS(oc);
502     ADBDeviceClass *adc = ADB_DEVICE_CLASS(oc);
503     ADBKeyboardClass *akc = ADB_KEYBOARD_CLASS(oc);
504 
505     akc->parent_realize = dc->realize;
506     dc->realize = adb_kbd_realizefn;
507     set_bit(DEVICE_CATEGORY_INPUT, dc->categories);
508 
509     adc->devreq = adb_kbd_request;
510     dc->reset = adb_kbd_reset;
511     dc->vmsd = &vmstate_adb_kbd;
512 }
513 
514 static const TypeInfo adb_kbd_type_info = {
515     .name = TYPE_ADB_KEYBOARD,
516     .parent = TYPE_ADB_DEVICE,
517     .instance_size = sizeof(KBDState),
518     .instance_init = adb_kbd_initfn,
519     .class_init = adb_kbd_class_init,
520     .class_size = sizeof(ADBKeyboardClass),
521 };
522 
523 /***************************************************************/
524 /* Mouse ADB device */
525 
526 #define ADB_MOUSE(obj) OBJECT_CHECK(MouseState, (obj), TYPE_ADB_MOUSE)
527 
528 typedef struct MouseState {
529     /*< public >*/
530     ADBDevice parent_obj;
531     /*< private >*/
532 
533     int buttons_state, last_buttons_state;
534     int dx, dy, dz;
535 } MouseState;
536 
537 #define ADB_MOUSE_CLASS(class) \
538     OBJECT_CLASS_CHECK(ADBMouseClass, (class), TYPE_ADB_MOUSE)
539 #define ADB_MOUSE_GET_CLASS(obj) \
540     OBJECT_GET_CLASS(ADBMouseClass, (obj), TYPE_ADB_MOUSE)
541 
542 typedef struct ADBMouseClass {
543     /*< public >*/
544     ADBDeviceClass parent_class;
545     /*< private >*/
546 
547     DeviceRealize parent_realize;
548 } ADBMouseClass;
549 
550 static void adb_mouse_event(void *opaque,
551                             int dx1, int dy1, int dz1, int buttons_state)
552 {
553     MouseState *s = opaque;
554 
555     s->dx += dx1;
556     s->dy += dy1;
557     s->dz += dz1;
558     s->buttons_state = buttons_state;
559 }
560 
561 
562 static int adb_mouse_poll(ADBDevice *d, uint8_t *obuf)
563 {
564     MouseState *s = ADB_MOUSE(d);
565     int dx, dy;
566 
567     if (s->last_buttons_state == s->buttons_state &&
568         s->dx == 0 && s->dy == 0)
569         return 0;
570 
571     dx = s->dx;
572     if (dx < -63)
573         dx = -63;
574     else if (dx > 63)
575         dx = 63;
576 
577     dy = s->dy;
578     if (dy < -63)
579         dy = -63;
580     else if (dy > 63)
581         dy = 63;
582 
583     s->dx -= dx;
584     s->dy -= dy;
585     s->last_buttons_state = s->buttons_state;
586 
587     dx &= 0x7f;
588     dy &= 0x7f;
589 
590     if (!(s->buttons_state & MOUSE_EVENT_LBUTTON))
591         dy |= 0x80;
592     if (!(s->buttons_state & MOUSE_EVENT_RBUTTON))
593         dx |= 0x80;
594 
595     obuf[0] = dy;
596     obuf[1] = dx;
597     return 2;
598 }
599 
600 static int adb_mouse_request(ADBDevice *d, uint8_t *obuf,
601                              const uint8_t *buf, int len)
602 {
603     MouseState *s = ADB_MOUSE(d);
604     int cmd, reg, olen;
605 
606     if ((buf[0] & 0x0f) == ADB_FLUSH) {
607         /* flush mouse fifo */
608         s->buttons_state = s->last_buttons_state;
609         s->dx = 0;
610         s->dy = 0;
611         s->dz = 0;
612         return 0;
613     }
614 
615     cmd = buf[0] & 0xc;
616     reg = buf[0] & 0x3;
617     olen = 0;
618     switch(cmd) {
619     case ADB_WRITEREG:
620         ADB_DPRINTF("write reg %d val 0x%2.2x\n", reg, buf[1]);
621         switch(reg) {
622         case 2:
623             break;
624         case 3:
625             switch(buf[2]) {
626             case ADB_CMD_SELF_TEST:
627                 break;
628             case ADB_CMD_CHANGE_ID:
629             case ADB_CMD_CHANGE_ID_AND_ACT:
630             case ADB_CMD_CHANGE_ID_AND_ENABLE:
631                 d->devaddr = buf[1] & 0xf;
632                 break;
633             default:
634                 /* XXX: check this */
635                 d->devaddr = buf[1] & 0xf;
636                 break;
637             }
638         }
639         break;
640     case ADB_READREG:
641         switch(reg) {
642         case 0:
643             olen = adb_mouse_poll(d, obuf);
644             break;
645         case 1:
646             break;
647         case 3:
648             obuf[0] = d->handler;
649             obuf[1] = d->devaddr;
650             olen = 2;
651             break;
652         }
653         ADB_DPRINTF("read reg %d obuf[0] 0x%2.2x obuf[1] 0x%2.2x\n", reg,
654                     obuf[0], obuf[1]);
655         break;
656     }
657     return olen;
658 }
659 
660 static void adb_mouse_reset(DeviceState *dev)
661 {
662     ADBDevice *d = ADB_DEVICE(dev);
663     MouseState *s = ADB_MOUSE(dev);
664 
665     d->handler = 2;
666     d->devaddr = ADB_DEVID_MOUSE;
667     s->last_buttons_state = s->buttons_state = 0;
668     s->dx = s->dy = s->dz = 0;
669 }
670 
671 static const VMStateDescription vmstate_adb_mouse = {
672     .name = "adb_mouse",
673     .version_id = 2,
674     .minimum_version_id = 2,
675     .fields = (VMStateField[]) {
676         VMSTATE_STRUCT(parent_obj, MouseState, 0, vmstate_adb_device,
677                        ADBDevice),
678         VMSTATE_INT32(buttons_state, MouseState),
679         VMSTATE_INT32(last_buttons_state, MouseState),
680         VMSTATE_INT32(dx, MouseState),
681         VMSTATE_INT32(dy, MouseState),
682         VMSTATE_INT32(dz, MouseState),
683         VMSTATE_END_OF_LIST()
684     }
685 };
686 
687 static void adb_mouse_realizefn(DeviceState *dev, Error **errp)
688 {
689     MouseState *s = ADB_MOUSE(dev);
690     ADBMouseClass *amc = ADB_MOUSE_GET_CLASS(dev);
691 
692     amc->parent_realize(dev, errp);
693 
694     qemu_add_mouse_event_handler(adb_mouse_event, s, 0, "QEMU ADB Mouse");
695 }
696 
697 static void adb_mouse_initfn(Object *obj)
698 {
699     ADBDevice *d = ADB_DEVICE(obj);
700 
701     d->devaddr = ADB_DEVID_MOUSE;
702 }
703 
704 static void adb_mouse_class_init(ObjectClass *oc, void *data)
705 {
706     DeviceClass *dc = DEVICE_CLASS(oc);
707     ADBDeviceClass *adc = ADB_DEVICE_CLASS(oc);
708     ADBMouseClass *amc = ADB_MOUSE_CLASS(oc);
709 
710     amc->parent_realize = dc->realize;
711     dc->realize = adb_mouse_realizefn;
712     set_bit(DEVICE_CATEGORY_INPUT, dc->categories);
713 
714     adc->devreq = adb_mouse_request;
715     dc->reset = adb_mouse_reset;
716     dc->vmsd = &vmstate_adb_mouse;
717 }
718 
719 static const TypeInfo adb_mouse_type_info = {
720     .name = TYPE_ADB_MOUSE,
721     .parent = TYPE_ADB_DEVICE,
722     .instance_size = sizeof(MouseState),
723     .instance_init = adb_mouse_initfn,
724     .class_init = adb_mouse_class_init,
725     .class_size = sizeof(ADBMouseClass),
726 };
727 
728 
729 static void adb_register_types(void)
730 {
731     type_register_static(&adb_bus_type_info);
732     type_register_static(&adb_device_type_info);
733     type_register_static(&adb_kbd_type_info);
734     type_register_static(&adb_mouse_type_info);
735 }
736 
737 type_init(adb_register_types)
738