1c8e8bc85SThomas Huth /*
2c8e8bc85SThomas Huth * QEMU NeXT Keyboard/Mouse emulation
3c8e8bc85SThomas Huth *
4c8e8bc85SThomas Huth * Copyright (c) 2011 Bryce Lanham
5c8e8bc85SThomas Huth *
6c8e8bc85SThomas Huth * Permission is hereby granted, free of charge, to any person obtaining a copy
7c8e8bc85SThomas Huth * of this software and associated documentation files (the "Software"), to deal
8c8e8bc85SThomas Huth * in the Software without restriction, including without limitation the rights
9c8e8bc85SThomas Huth * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10c8e8bc85SThomas Huth * copies of the Software, and to permit persons to whom the Software is
11c8e8bc85SThomas Huth * furnished to do so, subject to the following conditions:
12c8e8bc85SThomas Huth *
13c8e8bc85SThomas Huth * The above copyright notice and this permission notice shall be included in
14c8e8bc85SThomas Huth * all copies or substantial portions of the Software.
15c8e8bc85SThomas Huth *
16c8e8bc85SThomas Huth * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17c8e8bc85SThomas Huth * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18c8e8bc85SThomas Huth * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19c8e8bc85SThomas Huth * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20c8e8bc85SThomas Huth * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21c8e8bc85SThomas Huth * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22c8e8bc85SThomas Huth * THE SOFTWARE.
23c8e8bc85SThomas Huth */
24c8e8bc85SThomas Huth
25c8e8bc85SThomas Huth /*
26c8e8bc85SThomas Huth * This is admittedly hackish, but works well enough for basic input. Mouse
27c8e8bc85SThomas Huth * support will be added once we can boot something that needs the mouse.
28c8e8bc85SThomas Huth */
29c8e8bc85SThomas Huth
30c8e8bc85SThomas Huth #include "qemu/osdep.h"
31c8e8bc85SThomas Huth #include "qemu/log.h"
32c8e8bc85SThomas Huth #include "hw/sysbus.h"
33c8e8bc85SThomas Huth #include "hw/m68k/next-cube.h"
34c8e8bc85SThomas Huth #include "ui/console.h"
35c8e8bc85SThomas Huth #include "migration/vmstate.h"
36db1015e9SEduardo Habkost #include "qom/object.h"
37c8e8bc85SThomas Huth
388063396bSEduardo Habkost OBJECT_DECLARE_SIMPLE_TYPE(NextKBDState, NEXTKBD)
39c8e8bc85SThomas Huth
408b81968cSMichael Tokarev /* following definitions from next68k netbsd */
41c8e8bc85SThomas Huth #define CSR_INT 0x00800000
42c8e8bc85SThomas Huth #define CSR_DATA 0x00400000
43c8e8bc85SThomas Huth
44c8e8bc85SThomas Huth #define KD_KEYMASK 0x007f
45c8e8bc85SThomas Huth #define KD_DIRECTION 0x0080 /* pressed or released */
46c8e8bc85SThomas Huth #define KD_CNTL 0x0100
47c8e8bc85SThomas Huth #define KD_LSHIFT 0x0200
48c8e8bc85SThomas Huth #define KD_RSHIFT 0x0400
49c8e8bc85SThomas Huth #define KD_LCOMM 0x0800
50c8e8bc85SThomas Huth #define KD_RCOMM 0x1000
51c8e8bc85SThomas Huth #define KD_LALT 0x2000
52c8e8bc85SThomas Huth #define KD_RALT 0x4000
53c8e8bc85SThomas Huth #define KD_VALID 0x8000 /* only set for scancode keys ? */
54c8e8bc85SThomas Huth #define KD_MODS 0x4f00
55c8e8bc85SThomas Huth
56c8e8bc85SThomas Huth #define KBD_QUEUE_SIZE 256
57c8e8bc85SThomas Huth
58c8e8bc85SThomas Huth typedef struct {
59c8e8bc85SThomas Huth uint8_t data[KBD_QUEUE_SIZE];
60c8e8bc85SThomas Huth int rptr, wptr, count;
61c8e8bc85SThomas Huth } KBDQueue;
62c8e8bc85SThomas Huth
63c8e8bc85SThomas Huth
64db1015e9SEduardo Habkost struct NextKBDState {
65c8e8bc85SThomas Huth SysBusDevice sbd;
66c8e8bc85SThomas Huth MemoryRegion mr;
67c8e8bc85SThomas Huth KBDQueue queue;
68c8e8bc85SThomas Huth uint16_t shift;
69db1015e9SEduardo Habkost };
70c8e8bc85SThomas Huth
71c8e8bc85SThomas Huth
72c8e8bc85SThomas Huth /* lots of magic numbers here */
kbd_read_byte(void * opaque,hwaddr addr)73c8e8bc85SThomas Huth static uint32_t kbd_read_byte(void *opaque, hwaddr addr)
74c8e8bc85SThomas Huth {
75c8e8bc85SThomas Huth switch (addr & 0x3) {
76c8e8bc85SThomas Huth case 0x0: /* 0xe000 */
77c8e8bc85SThomas Huth return 0x80 | 0x20;
78c8e8bc85SThomas Huth
79c8e8bc85SThomas Huth case 0x1: /* 0xe001 */
80c8e8bc85SThomas Huth return 0x80 | 0x40 | 0x20 | 0x10;
81c8e8bc85SThomas Huth
82c8e8bc85SThomas Huth case 0x2: /* 0xe002 */
83c8e8bc85SThomas Huth /* returning 0x40 caused mach to hang */
84c8e8bc85SThomas Huth return 0x10 | 0x2 | 0x1;
85c8e8bc85SThomas Huth
86c8e8bc85SThomas Huth default:
87c8e8bc85SThomas Huth qemu_log_mask(LOG_UNIMP, "NeXT kbd read byte %"HWADDR_PRIx"\n", addr);
88c8e8bc85SThomas Huth }
89c8e8bc85SThomas Huth
90c8e8bc85SThomas Huth return 0;
91c8e8bc85SThomas Huth }
92c8e8bc85SThomas Huth
kbd_read_word(void * opaque,hwaddr addr)93c8e8bc85SThomas Huth static uint32_t kbd_read_word(void *opaque, hwaddr addr)
94c8e8bc85SThomas Huth {
95c8e8bc85SThomas Huth qemu_log_mask(LOG_UNIMP, "NeXT kbd read word %"HWADDR_PRIx"\n", addr);
96c8e8bc85SThomas Huth return 0;
97c8e8bc85SThomas Huth }
98c8e8bc85SThomas Huth
99c8e8bc85SThomas Huth /* even more magic numbers */
kbd_read_long(void * opaque,hwaddr addr)100c8e8bc85SThomas Huth static uint32_t kbd_read_long(void *opaque, hwaddr addr)
101c8e8bc85SThomas Huth {
102c8e8bc85SThomas Huth int key = 0;
103c8e8bc85SThomas Huth NextKBDState *s = NEXTKBD(opaque);
104c8e8bc85SThomas Huth KBDQueue *q = &s->queue;
105c8e8bc85SThomas Huth
106c8e8bc85SThomas Huth switch (addr & 0xf) {
107c8e8bc85SThomas Huth case 0x0: /* 0xe000 */
108c8e8bc85SThomas Huth return 0xA0F09300;
109c8e8bc85SThomas Huth
110c8e8bc85SThomas Huth case 0x8: /* 0xe008 */
111c8e8bc85SThomas Huth /* get keycode from buffer */
112c8e8bc85SThomas Huth if (q->count > 0) {
113c8e8bc85SThomas Huth key = q->data[q->rptr];
114c8e8bc85SThomas Huth if (++q->rptr == KBD_QUEUE_SIZE) {
115c8e8bc85SThomas Huth q->rptr = 0;
116c8e8bc85SThomas Huth }
117c8e8bc85SThomas Huth
118c8e8bc85SThomas Huth q->count--;
119c8e8bc85SThomas Huth
120c8e8bc85SThomas Huth if (s->shift) {
121c8e8bc85SThomas Huth key |= s->shift;
122c8e8bc85SThomas Huth }
123c8e8bc85SThomas Huth
124c8e8bc85SThomas Huth if (key & 0x80) {
125c8e8bc85SThomas Huth return 0;
126c8e8bc85SThomas Huth } else {
127c8e8bc85SThomas Huth return 0x10000000 | KD_VALID | key;
128c8e8bc85SThomas Huth }
129c8e8bc85SThomas Huth } else {
130c8e8bc85SThomas Huth return 0;
131c8e8bc85SThomas Huth }
132c8e8bc85SThomas Huth
133c8e8bc85SThomas Huth default:
134c8e8bc85SThomas Huth qemu_log_mask(LOG_UNIMP, "NeXT kbd read long %"HWADDR_PRIx"\n", addr);
135c8e8bc85SThomas Huth return 0;
136c8e8bc85SThomas Huth }
137c8e8bc85SThomas Huth }
138c8e8bc85SThomas Huth
kbd_readfn(void * opaque,hwaddr addr,unsigned size)139c8e8bc85SThomas Huth static uint64_t kbd_readfn(void *opaque, hwaddr addr, unsigned size)
140c8e8bc85SThomas Huth {
141c8e8bc85SThomas Huth switch (size) {
142c8e8bc85SThomas Huth case 1:
143c8e8bc85SThomas Huth return kbd_read_byte(opaque, addr);
144c8e8bc85SThomas Huth case 2:
145c8e8bc85SThomas Huth return kbd_read_word(opaque, addr);
146c8e8bc85SThomas Huth case 4:
147c8e8bc85SThomas Huth return kbd_read_long(opaque, addr);
148c8e8bc85SThomas Huth default:
149c8e8bc85SThomas Huth g_assert_not_reached();
150c8e8bc85SThomas Huth }
151c8e8bc85SThomas Huth }
152c8e8bc85SThomas Huth
kbd_writefn(void * opaque,hwaddr addr,uint64_t value,unsigned size)153c8e8bc85SThomas Huth static void kbd_writefn(void *opaque, hwaddr addr, uint64_t value,
154c8e8bc85SThomas Huth unsigned size)
155c8e8bc85SThomas Huth {
156c8e8bc85SThomas Huth qemu_log_mask(LOG_UNIMP, "NeXT kbd write: size=%u addr=0x%"HWADDR_PRIx
157c8e8bc85SThomas Huth "val=0x%"PRIx64"\n", size, addr, value);
158c8e8bc85SThomas Huth }
159c8e8bc85SThomas Huth
160c8e8bc85SThomas Huth static const MemoryRegionOps kbd_ops = {
161c8e8bc85SThomas Huth .read = kbd_readfn,
162c8e8bc85SThomas Huth .write = kbd_writefn,
163c8e8bc85SThomas Huth .valid.min_access_size = 1,
164c8e8bc85SThomas Huth .valid.max_access_size = 4,
165c8e8bc85SThomas Huth .endianness = DEVICE_NATIVE_ENDIAN,
166c8e8bc85SThomas Huth };
167c8e8bc85SThomas Huth
168*44e21ef0SMark Cave-Ayland static const int qcode_to_nextkbd_keycode[] = {
169*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_ESC] = 0x49,
170*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_1] = 0x4a,
171*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_2] = 0x4b,
172*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_3] = 0x4c,
173*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_4] = 0x4d,
174*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_5] = 0x50,
175*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_6] = 0x4f,
176*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_7] = 0x4e,
177*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_8] = 0x1e,
178*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_9] = 0x1f,
179*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_0] = 0x20,
180*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_MINUS] = 0x1d,
181*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_EQUAL] = 0x1c,
182*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_BACKSPACE] = 0x1b,
183c8e8bc85SThomas Huth
184*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_Q] = 0x42,
185*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_W] = 0x43,
186*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_E] = 0x44,
187*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_R] = 0x45,
188*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_T] = 0x48,
189*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_Y] = 0x47,
190*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_U] = 0x46,
191*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_I] = 0x06,
192*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_O] = 0x07,
193*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_P] = 0x08,
194*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_RET] = 0x2a,
195*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_A] = 0x39,
196*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_S] = 0x3a,
197*44e21ef0SMark Cave-Ayland
198*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_D] = 0x3b,
199*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_F] = 0x3c,
200*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_G] = 0x3d,
201*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_H] = 0x40,
202*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_J] = 0x3f,
203*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_K] = 0x3e,
204*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_L] = 0x2d,
205*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_SEMICOLON] = 0x2c,
206*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_APOSTROPHE] = 0x2b,
207*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_GRAVE_ACCENT] = 0x26,
208*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_Z] = 0x31,
209*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_X] = 0x32,
210*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_C] = 0x33,
211*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_V] = 0x34,
212*44e21ef0SMark Cave-Ayland
213*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_B] = 0x35,
214*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_N] = 0x37,
215*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_M] = 0x36,
216*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_COMMA] = 0x2e,
217*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_DOT] = 0x2f,
218*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_SLASH] = 0x30,
219*44e21ef0SMark Cave-Ayland
220*44e21ef0SMark Cave-Ayland [Q_KEY_CODE_SPC] = 0x38,
221c8e8bc85SThomas Huth };
222c8e8bc85SThomas Huth
nextkbd_put_keycode(NextKBDState * s,int keycode)223*44e21ef0SMark Cave-Ayland static void nextkbd_put_keycode(NextKBDState *s, int keycode)
224c8e8bc85SThomas Huth {
225c8e8bc85SThomas Huth KBDQueue *q = &s->queue;
226c8e8bc85SThomas Huth
227c8e8bc85SThomas Huth if (q->count >= KBD_QUEUE_SIZE) {
228c8e8bc85SThomas Huth return;
229c8e8bc85SThomas Huth }
230c8e8bc85SThomas Huth
231*44e21ef0SMark Cave-Ayland q->data[q->wptr] = keycode;
232c8e8bc85SThomas Huth if (++q->wptr == KBD_QUEUE_SIZE) {
233c8e8bc85SThomas Huth q->wptr = 0;
234c8e8bc85SThomas Huth }
235c8e8bc85SThomas Huth
236c8e8bc85SThomas Huth q->count++;
237c8e8bc85SThomas Huth
238c8e8bc85SThomas Huth /*
239c8e8bc85SThomas Huth * might need to actually trigger the NeXT irq, but as the keyboard works
240c8e8bc85SThomas Huth * at the moment, I'll worry about it later
241c8e8bc85SThomas Huth */
242c8e8bc85SThomas Huth /* s->update_irq(s->update_arg, 1); */
243c8e8bc85SThomas Huth }
244c8e8bc85SThomas Huth
nextkbd_event(DeviceState * dev,QemuConsole * src,InputEvent * evt)245*44e21ef0SMark Cave-Ayland static void nextkbd_event(DeviceState *dev, QemuConsole *src, InputEvent *evt)
246*44e21ef0SMark Cave-Ayland {
247*44e21ef0SMark Cave-Ayland NextKBDState *s = NEXTKBD(dev);
248*44e21ef0SMark Cave-Ayland int qcode, keycode;
249*44e21ef0SMark Cave-Ayland bool key_down = evt->u.key.data->down;
250*44e21ef0SMark Cave-Ayland
251*44e21ef0SMark Cave-Ayland qcode = qemu_input_key_value_to_qcode(evt->u.key.data->key);
252*44e21ef0SMark Cave-Ayland if (qcode >= ARRAY_SIZE(qcode_to_nextkbd_keycode)) {
253*44e21ef0SMark Cave-Ayland return;
254*44e21ef0SMark Cave-Ayland }
255*44e21ef0SMark Cave-Ayland
256*44e21ef0SMark Cave-Ayland /* Shift key currently has no keycode, so handle separately */
257*44e21ef0SMark Cave-Ayland if (qcode == Q_KEY_CODE_SHIFT) {
258*44e21ef0SMark Cave-Ayland if (key_down) {
259*44e21ef0SMark Cave-Ayland s->shift |= KD_LSHIFT;
260*44e21ef0SMark Cave-Ayland } else {
261*44e21ef0SMark Cave-Ayland s->shift &= ~KD_LSHIFT;
262*44e21ef0SMark Cave-Ayland }
263*44e21ef0SMark Cave-Ayland }
264*44e21ef0SMark Cave-Ayland
265*44e21ef0SMark Cave-Ayland if (qcode == Q_KEY_CODE_SHIFT_R) {
266*44e21ef0SMark Cave-Ayland if (key_down) {
267*44e21ef0SMark Cave-Ayland s->shift |= KD_RSHIFT;
268*44e21ef0SMark Cave-Ayland } else {
269*44e21ef0SMark Cave-Ayland s->shift &= ~KD_RSHIFT;
270*44e21ef0SMark Cave-Ayland }
271*44e21ef0SMark Cave-Ayland }
272*44e21ef0SMark Cave-Ayland
273*44e21ef0SMark Cave-Ayland keycode = qcode_to_nextkbd_keycode[qcode];
274*44e21ef0SMark Cave-Ayland if (!keycode) {
275*44e21ef0SMark Cave-Ayland return;
276*44e21ef0SMark Cave-Ayland }
277*44e21ef0SMark Cave-Ayland
278*44e21ef0SMark Cave-Ayland /* If key release event, create keyboard break code */
279*44e21ef0SMark Cave-Ayland if (!key_down) {
280*44e21ef0SMark Cave-Ayland keycode |= 0x80;
281*44e21ef0SMark Cave-Ayland }
282*44e21ef0SMark Cave-Ayland
283*44e21ef0SMark Cave-Ayland nextkbd_put_keycode(s, keycode);
284*44e21ef0SMark Cave-Ayland }
285*44e21ef0SMark Cave-Ayland
286*44e21ef0SMark Cave-Ayland static const QemuInputHandler nextkbd_handler = {
287*44e21ef0SMark Cave-Ayland .name = "QEMU NeXT Keyboard",
288*44e21ef0SMark Cave-Ayland .mask = INPUT_EVENT_MASK_KEY,
289*44e21ef0SMark Cave-Ayland .event = nextkbd_event,
290*44e21ef0SMark Cave-Ayland };
291*44e21ef0SMark Cave-Ayland
nextkbd_reset(DeviceState * dev)292c8e8bc85SThomas Huth static void nextkbd_reset(DeviceState *dev)
293c8e8bc85SThomas Huth {
294c8e8bc85SThomas Huth NextKBDState *nks = NEXTKBD(dev);
295c8e8bc85SThomas Huth
296c8e8bc85SThomas Huth memset(&nks->queue, 0, sizeof(KBDQueue));
297c8e8bc85SThomas Huth nks->shift = 0;
298c8e8bc85SThomas Huth }
299c8e8bc85SThomas Huth
nextkbd_realize(DeviceState * dev,Error ** errp)300c8e8bc85SThomas Huth static void nextkbd_realize(DeviceState *dev, Error **errp)
301c8e8bc85SThomas Huth {
302c8e8bc85SThomas Huth NextKBDState *s = NEXTKBD(dev);
303c8e8bc85SThomas Huth
304c8e8bc85SThomas Huth memory_region_init_io(&s->mr, OBJECT(dev), &kbd_ops, s, "next.kbd", 0x1000);
305c8e8bc85SThomas Huth sysbus_init_mmio(SYS_BUS_DEVICE(dev), &s->mr);
306c8e8bc85SThomas Huth
307*44e21ef0SMark Cave-Ayland qemu_input_handler_register(dev, &nextkbd_handler);
308c8e8bc85SThomas Huth }
309c8e8bc85SThomas Huth
310c8e8bc85SThomas Huth static const VMStateDescription nextkbd_vmstate = {
311c8e8bc85SThomas Huth .name = TYPE_NEXTKBD,
312c8e8bc85SThomas Huth .unmigratable = 1, /* TODO: Implement this when m68k CPU is migratable */
313c8e8bc85SThomas Huth };
314c8e8bc85SThomas Huth
nextkbd_class_init(ObjectClass * oc,void * data)315c8e8bc85SThomas Huth static void nextkbd_class_init(ObjectClass *oc, void *data)
316c8e8bc85SThomas Huth {
317c8e8bc85SThomas Huth DeviceClass *dc = DEVICE_CLASS(oc);
318c8e8bc85SThomas Huth
319c8e8bc85SThomas Huth set_bit(DEVICE_CATEGORY_INPUT, dc->categories);
320c8e8bc85SThomas Huth dc->vmsd = &nextkbd_vmstate;
321c8e8bc85SThomas Huth dc->realize = nextkbd_realize;
322e3d08143SPeter Maydell device_class_set_legacy_reset(dc, nextkbd_reset);
323c8e8bc85SThomas Huth }
324c8e8bc85SThomas Huth
325c8e8bc85SThomas Huth static const TypeInfo nextkbd_info = {
326c8e8bc85SThomas Huth .name = TYPE_NEXTKBD,
327c8e8bc85SThomas Huth .parent = TYPE_SYS_BUS_DEVICE,
328c8e8bc85SThomas Huth .instance_size = sizeof(NextKBDState),
329c8e8bc85SThomas Huth .class_init = nextkbd_class_init,
330c8e8bc85SThomas Huth };
331c8e8bc85SThomas Huth
nextkbd_register_types(void)332c8e8bc85SThomas Huth static void nextkbd_register_types(void)
333c8e8bc85SThomas Huth {
334c8e8bc85SThomas Huth type_register_static(&nextkbd_info);
335c8e8bc85SThomas Huth }
336c8e8bc85SThomas Huth
337c8e8bc85SThomas Huth type_init(nextkbd_register_types)
338