aed.c revision 1.37 1 1.37 riastrad /* $NetBSD: aed.c,v 1.37 2025/01/13 16:17:36 riastradh Exp $ */
2 1.1 tsubai
3 1.1 tsubai /*
4 1.1 tsubai * Copyright (C) 1994 Bradley A. Grantham
5 1.1 tsubai * All rights reserved.
6 1.1 tsubai *
7 1.1 tsubai * Redistribution and use in source and binary forms, with or without
8 1.1 tsubai * modification, are permitted provided that the following conditions
9 1.1 tsubai * are met:
10 1.1 tsubai * 1. Redistributions of source code must retain the above copyright
11 1.1 tsubai * notice, this list of conditions and the following disclaimer.
12 1.1 tsubai * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 tsubai * notice, this list of conditions and the following disclaimer in the
14 1.1 tsubai * documentation and/or other materials provided with the distribution.
15 1.1 tsubai *
16 1.1 tsubai * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17 1.1 tsubai * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 1.1 tsubai * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 1.1 tsubai * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 1.1 tsubai * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21 1.1 tsubai * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22 1.1 tsubai * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23 1.1 tsubai * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24 1.1 tsubai * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
25 1.1 tsubai * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26 1.1 tsubai */
27 1.14 lukem
28 1.14 lukem #include <sys/cdefs.h>
29 1.37 riastrad __KERNEL_RCSID(0, "$NetBSD: aed.c,v 1.37 2025/01/13 16:17:36 riastradh Exp $");
30 1.1 tsubai
31 1.1 tsubai #include <sys/param.h>
32 1.1 tsubai #include <sys/device.h>
33 1.1 tsubai #include <sys/fcntl.h>
34 1.1 tsubai #include <sys/poll.h>
35 1.1 tsubai #include <sys/select.h>
36 1.1 tsubai #include <sys/proc.h>
37 1.1 tsubai #include <sys/signalvar.h>
38 1.1 tsubai #include <sys/systm.h>
39 1.6 gehenna #include <sys/conf.h>
40 1.1 tsubai
41 1.1 tsubai #include <machine/autoconf.h>
42 1.1 tsubai #include <machine/cpu.h>
43 1.1 tsubai #include <machine/keyboard.h>
44 1.1 tsubai
45 1.1 tsubai #include <macppc/dev/adbvar.h>
46 1.1 tsubai #include <macppc/dev/aedvar.h>
47 1.1 tsubai #include <macppc/dev/akbdvar.h>
48 1.1 tsubai
49 1.1 tsubai #define spladb splhigh
50 1.1 tsubai
51 1.1 tsubai /*
52 1.1 tsubai * Function declarations.
53 1.1 tsubai */
54 1.26 matt static int aedmatch(device_t, cfdata_t, void *);
55 1.26 matt static void aedattach(device_t, device_t, void *);
56 1.36 nat static int aed_emulate_mouse(adb_event_t *event);
57 1.22 dsl static void aed_kbdrpt(void *kstate);
58 1.22 dsl static void aed_dokeyupdown(adb_event_t *event);
59 1.22 dsl static void aed_handoff(adb_event_t *event);
60 1.22 dsl static void aed_enqevent(adb_event_t *event);
61 1.1 tsubai
62 1.1 tsubai /*
63 1.1 tsubai * Global variables.
64 1.1 tsubai */
65 1.1 tsubai extern int adb_polling; /* Are we polling? (Debugger mode) */
66 1.1 tsubai
67 1.1 tsubai /*
68 1.1 tsubai * Local variables.
69 1.1 tsubai */
70 1.4 tsubai static struct aed_softc *aed_sc = NULL;
71 1.3 tsubai static int aed_options = 0; /* | AED_MSEMUL; */
72 1.1 tsubai
73 1.1 tsubai /* Driver definition */
74 1.27 chs CFATTACH_DECL_NEW(aed, sizeof(struct aed_softc),
75 1.9 thorpej aedmatch, aedattach, NULL, NULL);
76 1.1 tsubai
77 1.1 tsubai extern struct cfdriver aed_cd;
78 1.1 tsubai
79 1.6 gehenna dev_type_open(aedopen);
80 1.6 gehenna dev_type_close(aedclose);
81 1.6 gehenna dev_type_read(aedread);
82 1.6 gehenna dev_type_ioctl(aedioctl);
83 1.6 gehenna dev_type_poll(aedpoll);
84 1.10 jdolecek dev_type_kqfilter(aedkqfilter);
85 1.6 gehenna
86 1.6 gehenna const struct cdevsw aed_cdevsw = {
87 1.28 dholland .d_open = aedopen,
88 1.28 dholland .d_close = aedclose,
89 1.28 dholland .d_read = aedread,
90 1.28 dholland .d_write = nullwrite,
91 1.28 dholland .d_ioctl = aedioctl,
92 1.28 dholland .d_stop = nostop,
93 1.28 dholland .d_tty = notty,
94 1.28 dholland .d_poll = aedpoll,
95 1.28 dholland .d_mmap = nommap,
96 1.28 dholland .d_kqfilter = aedkqfilter,
97 1.29 dholland .d_discard = nodiscard,
98 1.28 dholland .d_flag = 0
99 1.6 gehenna };
100 1.6 gehenna
101 1.1 tsubai static int
102 1.26 matt aedmatch(device_t parent, cfdata_t cf, void *aux)
103 1.1 tsubai {
104 1.4 tsubai struct adb_attach_args *aa_args = (struct adb_attach_args *)aux;
105 1.1 tsubai static int aed_matched = 0;
106 1.1 tsubai
107 1.1 tsubai /* Allow only one instance. */
108 1.1 tsubai if ((aa_args->origaddr == 0) && (!aed_matched)) {
109 1.1 tsubai aed_matched = 1;
110 1.1 tsubai return (1);
111 1.1 tsubai } else
112 1.1 tsubai return (0);
113 1.1 tsubai }
114 1.1 tsubai
115 1.1 tsubai static void
116 1.26 matt aedattach(device_t parent, device_t self, void *aux)
117 1.1 tsubai {
118 1.4 tsubai struct adb_attach_args *aa_args = (struct adb_attach_args *)aux;
119 1.26 matt struct aed_softc *sc = device_private(self);
120 1.1 tsubai
121 1.19 ad callout_init(&sc->sc_repeat_ch, 0);
122 1.21 rmind selinit(&sc->sc_selinfo);
123 1.5 thorpej
124 1.1 tsubai sc->origaddr = aa_args->origaddr;
125 1.1 tsubai sc->adbaddr = aa_args->adbaddr;
126 1.1 tsubai sc->handler_id = aa_args->handler_id;
127 1.1 tsubai
128 1.1 tsubai sc->sc_evq_tail = 0;
129 1.1 tsubai sc->sc_evq_len = 0;
130 1.1 tsubai
131 1.1 tsubai sc->sc_rptdelay = 20;
132 1.1 tsubai sc->sc_rptinterval = 6;
133 1.1 tsubai sc->sc_repeating = -1; /* not repeating */
134 1.1 tsubai
135 1.37 riastrad /* Pull in the options flags. */
136 1.27 chs sc->sc_options = (device_cfdata(self)->cf_flags | aed_options);
137 1.1 tsubai
138 1.1 tsubai sc->sc_ioproc = NULL;
139 1.37 riastrad
140 1.1 tsubai sc->sc_buttons = 0;
141 1.1 tsubai
142 1.1 tsubai sc->sc_open = 0;
143 1.1 tsubai
144 1.1 tsubai aed_sc = sc;
145 1.1 tsubai
146 1.1 tsubai printf("ADB Event device\n");
147 1.1 tsubai
148 1.1 tsubai return;
149 1.1 tsubai }
150 1.1 tsubai
151 1.1 tsubai /*
152 1.37 riastrad * Given a keyboard ADB event, record the keycode and call the key
153 1.1 tsubai * repeat handler, optionally passing the event through the mouse
154 1.1 tsubai * button emulation handler first. Pass mouse events directly to
155 1.1 tsubai * the handoff function.
156 1.1 tsubai */
157 1.1 tsubai void
158 1.23 dsl aed_input(adb_event_t *event)
159 1.1 tsubai {
160 1.1 tsubai adb_event_t new_event = *event;
161 1.1 tsubai
162 1.1 tsubai switch (event->def_addr) {
163 1.1 tsubai case ADBADDR_KBD:
164 1.36 nat if (aed_sc->sc_options & AED_MSEMUL) {
165 1.36 nat rv = aed_emulate_mouse(&new_event);
166 1.36 nat } else
167 1.1 tsubai aed_dokeyupdown(&new_event);
168 1.1 tsubai break;
169 1.1 tsubai case ADBADDR_MS:
170 1.35 nat event->u.m.buttons |= aed_sc->sc_buttons;
171 1.4 tsubai new_event.u.m.buttons |= aed_sc->sc_buttons;
172 1.1 tsubai aed_handoff(&new_event);
173 1.1 tsubai break;
174 1.1 tsubai default: /* God only knows. */
175 1.1 tsubai #ifdef DIAGNOSTIC
176 1.7 provos panic("aed: received event from unsupported device!");
177 1.1 tsubai #endif
178 1.1 tsubai break;
179 1.1 tsubai }
180 1.1 tsubai
181 1.1 tsubai }
182 1.1 tsubai
183 1.1 tsubai /*
184 1.1 tsubai * Handles mouse button emulation via the keyboard. If the emulation
185 1.1 tsubai * modifier key is down, left and right arrows will generate 2nd and
186 1.1 tsubai * 3rd mouse button events while the 1, 2, and 3 keys will generate
187 1.1 tsubai * the corresponding mouse button event.
188 1.1 tsubai */
189 1.37 riastrad static int
190 1.23 dsl aed_emulate_mouse(adb_event_t *event)
191 1.1 tsubai {
192 1.1 tsubai static int emulmodkey_down = 0;
193 1.1 tsubai adb_event_t new_event;
194 1.36 nat int result = 0;
195 1.1 tsubai
196 1.1 tsubai if (event->u.k.key == ADBK_KEYDOWN(ADBK_OPTION)) {
197 1.1 tsubai emulmodkey_down = 1;
198 1.1 tsubai } else if (event->u.k.key == ADBK_KEYUP(ADBK_OPTION)) {
199 1.1 tsubai /* key up */
200 1.1 tsubai emulmodkey_down = 0;
201 1.1 tsubai if (aed_sc->sc_buttons & 0xfe) {
202 1.1 tsubai aed_sc->sc_buttons &= 1;
203 1.1 tsubai new_event.def_addr = ADBADDR_MS;
204 1.1 tsubai new_event.u.m.buttons = aed_sc->sc_buttons;
205 1.1 tsubai new_event.u.m.dx = new_event.u.m.dy = 0;
206 1.1 tsubai microtime(&new_event.timestamp);
207 1.1 tsubai aed_handoff(&new_event);
208 1.1 tsubai }
209 1.1 tsubai } else if (emulmodkey_down) {
210 1.1 tsubai switch(event->u.k.key) {
211 1.1 tsubai #ifdef ALTXBUTTONS
212 1.1 tsubai case ADBK_KEYDOWN(ADBK_1):
213 1.36 nat result = 1;
214 1.1 tsubai aed_sc->sc_buttons |= 1; /* left down */
215 1.1 tsubai new_event.def_addr = ADBADDR_MS;
216 1.1 tsubai new_event.u.m.buttons = aed_sc->sc_buttons;
217 1.1 tsubai new_event.u.m.dx = new_event.u.m.dy = 0;
218 1.1 tsubai microtime(&new_event.timestamp);
219 1.1 tsubai aed_handoff(&new_event);
220 1.1 tsubai break;
221 1.1 tsubai case ADBK_KEYUP(ADBK_1):
222 1.36 nat result = 1;
223 1.4 tsubai aed_sc->sc_buttons &= ~1; /* left up */
224 1.1 tsubai new_event.def_addr = ADBADDR_MS;
225 1.1 tsubai new_event.u.m.buttons = aed_sc->sc_buttons;
226 1.1 tsubai new_event.u.m.dx = new_event.u.m.dy = 0;
227 1.1 tsubai microtime(&new_event.timestamp);
228 1.1 tsubai aed_handoff(&new_event);
229 1.1 tsubai break;
230 1.1 tsubai #endif
231 1.1 tsubai case ADBK_KEYDOWN(ADBK_LEFT):
232 1.1 tsubai #ifdef ALTXBUTTONS
233 1.1 tsubai case ADBK_KEYDOWN(ADBK_2):
234 1.1 tsubai #endif
235 1.36 nat result = 1;
236 1.1 tsubai aed_sc->sc_buttons |= 2; /* middle down */
237 1.1 tsubai new_event.def_addr = ADBADDR_MS;
238 1.1 tsubai new_event.u.m.buttons = aed_sc->sc_buttons;
239 1.1 tsubai new_event.u.m.dx = new_event.u.m.dy = 0;
240 1.1 tsubai microtime(&new_event.timestamp);
241 1.1 tsubai aed_handoff(&new_event);
242 1.1 tsubai break;
243 1.1 tsubai case ADBK_KEYUP(ADBK_LEFT):
244 1.1 tsubai #ifdef ALTXBUTTONS
245 1.1 tsubai case ADBK_KEYUP(ADBK_2):
246 1.1 tsubai #endif
247 1.36 nat result = 1;
248 1.1 tsubai aed_sc->sc_buttons &= ~2; /* middle up */
249 1.1 tsubai new_event.def_addr = ADBADDR_MS;
250 1.1 tsubai new_event.u.m.buttons = aed_sc->sc_buttons;
251 1.1 tsubai new_event.u.m.dx = new_event.u.m.dy = 0;
252 1.1 tsubai microtime(&new_event.timestamp);
253 1.1 tsubai aed_handoff(&new_event);
254 1.1 tsubai break;
255 1.1 tsubai case ADBK_KEYDOWN(ADBK_RIGHT):
256 1.1 tsubai #ifdef ALTXBUTTONS
257 1.1 tsubai case ADBK_KEYDOWN(ADBK_3):
258 1.1 tsubai #endif
259 1.36 nat result = 1;
260 1.1 tsubai aed_sc->sc_buttons |= 4; /* right down */
261 1.1 tsubai new_event.def_addr = ADBADDR_MS;
262 1.1 tsubai new_event.u.m.buttons = aed_sc->sc_buttons;
263 1.1 tsubai new_event.u.m.dx = new_event.u.m.dy = 0;
264 1.1 tsubai microtime(&new_event.timestamp);
265 1.1 tsubai aed_handoff(&new_event);
266 1.1 tsubai break;
267 1.1 tsubai case ADBK_KEYUP(ADBK_RIGHT):
268 1.4 tsubai #ifdef ALTXBUTTONS
269 1.1 tsubai case ADBK_KEYUP(ADBK_3):
270 1.4 tsubai #endif
271 1.36 nat result = 1;
272 1.1 tsubai aed_sc->sc_buttons &= ~4; /* right up */
273 1.1 tsubai new_event.def_addr = ADBADDR_MS;
274 1.1 tsubai new_event.u.m.buttons = aed_sc->sc_buttons;
275 1.1 tsubai new_event.u.m.dx = new_event.u.m.dy = 0;
276 1.1 tsubai microtime(&new_event.timestamp);
277 1.1 tsubai aed_handoff(&new_event);
278 1.1 tsubai break;
279 1.4 tsubai case ADBK_KEYUP(ADBK_SHIFT):
280 1.4 tsubai case ADBK_KEYDOWN(ADBK_SHIFT):
281 1.4 tsubai case ADBK_KEYUP(ADBK_CONTROL):
282 1.4 tsubai case ADBK_KEYDOWN(ADBK_CONTROL):
283 1.4 tsubai case ADBK_KEYUP(ADBK_FLOWER):
284 1.4 tsubai case ADBK_KEYDOWN(ADBK_FLOWER):
285 1.1 tsubai /* ctrl, shift, cmd */
286 1.1 tsubai aed_dokeyupdown(event);
287 1.1 tsubai break;
288 1.1 tsubai default:
289 1.1 tsubai if (event->u.k.key & 0x80)
290 1.1 tsubai /* ignore keyup */
291 1.1 tsubai break;
292 1.1 tsubai
293 1.1 tsubai /* key down */
294 1.1 tsubai new_event = *event;
295 1.1 tsubai
296 1.1 tsubai /* send option-down */
297 1.1 tsubai new_event.u.k.key = ADBK_KEYDOWN(ADBK_OPTION);
298 1.1 tsubai new_event.bytes[0] = new_event.u.k.key;
299 1.1 tsubai microtime(&new_event.timestamp);
300 1.1 tsubai aed_dokeyupdown(&new_event);
301 1.1 tsubai
302 1.1 tsubai /* send key-down */
303 1.1 tsubai new_event.u.k.key = event->bytes[0];
304 1.1 tsubai new_event.bytes[0] = new_event.u.k.key;
305 1.1 tsubai microtime(&new_event.timestamp);
306 1.1 tsubai aed_dokeyupdown(&new_event);
307 1.1 tsubai
308 1.1 tsubai /* send key-up */
309 1.1 tsubai new_event.u.k.key =
310 1.1 tsubai ADBK_KEYUP(ADBK_KEYVAL(event->bytes[0]));
311 1.1 tsubai microtime(&new_event.timestamp);
312 1.1 tsubai new_event.bytes[0] = new_event.u.k.key;
313 1.1 tsubai aed_dokeyupdown(&new_event);
314 1.1 tsubai
315 1.1 tsubai /* send option-up */
316 1.1 tsubai new_event.u.k.key = ADBK_KEYUP(ADBK_OPTION);
317 1.1 tsubai new_event.bytes[0] = new_event.u.k.key;
318 1.1 tsubai microtime(&new_event.timestamp);
319 1.1 tsubai aed_dokeyupdown(&new_event);
320 1.1 tsubai break;
321 1.1 tsubai }
322 1.1 tsubai } else {
323 1.1 tsubai aed_dokeyupdown(event);
324 1.1 tsubai }
325 1.36 nat
326 1.36 nat return result;
327 1.1 tsubai }
328 1.1 tsubai
329 1.1 tsubai /*
330 1.1 tsubai * Keyboard autorepeat timeout function. Sends key up/down events
331 1.1 tsubai * for the repeating key and schedules the next call at sc_rptinterval
332 1.1 tsubai * ticks in the future.
333 1.1 tsubai */
334 1.37 riastrad static void
335 1.23 dsl aed_kbdrpt(void *kstate)
336 1.1 tsubai {
337 1.15 nathanw struct aed_softc *sc = (struct aed_softc *)kstate;
338 1.1 tsubai
339 1.15 nathanw sc->sc_rptevent.bytes[0] |= 0x80;
340 1.15 nathanw microtime(&sc->sc_rptevent.timestamp);
341 1.15 nathanw aed_handoff(&sc->sc_rptevent); /* do key up */
342 1.15 nathanw
343 1.15 nathanw sc->sc_rptevent.bytes[0] &= 0x7f;
344 1.15 nathanw microtime(&sc->sc_rptevent.timestamp);
345 1.15 nathanw aed_handoff(&sc->sc_rptevent); /* do key down */
346 1.1 tsubai
347 1.15 nathanw if (sc->sc_repeating == sc->sc_rptevent.u.k.key) {
348 1.15 nathanw callout_reset(&sc->sc_repeat_ch, sc->sc_rptinterval,
349 1.5 thorpej aed_kbdrpt, kstate);
350 1.1 tsubai }
351 1.1 tsubai }
352 1.1 tsubai
353 1.1 tsubai /*
354 1.1 tsubai * Cancels the currently repeating key event if there is one, schedules
355 1.1 tsubai * a new repeating key event if needed, and hands the event off to the
356 1.1 tsubai * appropriate subsystem.
357 1.1 tsubai */
358 1.37 riastrad static void
359 1.23 dsl aed_dokeyupdown(adb_event_t *event)
360 1.1 tsubai {
361 1.1 tsubai int kbd_key;
362 1.1 tsubai
363 1.1 tsubai kbd_key = ADBK_KEYVAL(event->u.k.key);
364 1.1 tsubai if (ADBK_PRESS(event->u.k.key) && keyboard[kbd_key][0] != 0) {
365 1.1 tsubai /* ignore shift & control */
366 1.1 tsubai if (aed_sc->sc_repeating != -1) {
367 1.5 thorpej callout_stop(&aed_sc->sc_repeat_ch);
368 1.1 tsubai }
369 1.1 tsubai aed_sc->sc_rptevent = *event;
370 1.1 tsubai aed_sc->sc_repeating = kbd_key;
371 1.5 thorpej callout_reset(&aed_sc->sc_repeat_ch, aed_sc->sc_rptdelay,
372 1.5 thorpej aed_kbdrpt, (void *)aed_sc);
373 1.1 tsubai } else {
374 1.1 tsubai if (aed_sc->sc_repeating != -1) {
375 1.1 tsubai aed_sc->sc_repeating = -1;
376 1.5 thorpej callout_stop(&aed_sc->sc_repeat_ch);
377 1.1 tsubai }
378 1.1 tsubai aed_sc->sc_rptevent = *event;
379 1.1 tsubai }
380 1.1 tsubai aed_handoff(event);
381 1.1 tsubai }
382 1.1 tsubai
383 1.1 tsubai /*
384 1.1 tsubai * Place the event in the event queue if a requesting device is open
385 1.3 tsubai * and we are not polling.
386 1.1 tsubai */
387 1.1 tsubai static void
388 1.23 dsl aed_handoff(adb_event_t *event)
389 1.1 tsubai {
390 1.1 tsubai if (aed_sc->sc_open && !adb_polling)
391 1.1 tsubai aed_enqevent(event);
392 1.1 tsubai }
393 1.1 tsubai
394 1.1 tsubai /*
395 1.1 tsubai * Place the event in the event queue and wakeup any waiting processes.
396 1.1 tsubai */
397 1.37 riastrad static void
398 1.23 dsl aed_enqevent(adb_event_t *event)
399 1.1 tsubai {
400 1.1 tsubai int s;
401 1.1 tsubai
402 1.1 tsubai s = spladb();
403 1.1 tsubai
404 1.1 tsubai #ifdef DIAGNOSTIC
405 1.1 tsubai if (aed_sc->sc_evq_tail < 0 || aed_sc->sc_evq_tail >= AED_MAX_EVENTS)
406 1.1 tsubai panic("adb: event queue tail is out of bounds");
407 1.1 tsubai
408 1.1 tsubai if (aed_sc->sc_evq_len < 0 || aed_sc->sc_evq_len > AED_MAX_EVENTS)
409 1.1 tsubai panic("adb: event queue len is out of bounds");
410 1.1 tsubai #endif
411 1.1 tsubai
412 1.1 tsubai if (aed_sc->sc_evq_len == AED_MAX_EVENTS) {
413 1.1 tsubai splx(s);
414 1.1 tsubai return; /* Oh, well... */
415 1.1 tsubai }
416 1.1 tsubai aed_sc->sc_evq[(aed_sc->sc_evq_len + aed_sc->sc_evq_tail) %
417 1.1 tsubai AED_MAX_EVENTS] = *event;
418 1.1 tsubai aed_sc->sc_evq_len++;
419 1.1 tsubai
420 1.21 rmind selnotify(&aed_sc->sc_selinfo, 0, 0);
421 1.1 tsubai if (aed_sc->sc_ioproc)
422 1.1 tsubai psignal(aed_sc->sc_ioproc, SIGIO);
423 1.1 tsubai
424 1.1 tsubai splx(s);
425 1.1 tsubai }
426 1.1 tsubai
427 1.37 riastrad int
428 1.24 dsl aedopen(dev_t dev, int flag, int mode, struct lwp *l)
429 1.1 tsubai {
430 1.1 tsubai int unit;
431 1.1 tsubai int error = 0;
432 1.1 tsubai int s;
433 1.1 tsubai
434 1.1 tsubai unit = minor(dev);
435 1.1 tsubai
436 1.1 tsubai if (unit != 0)
437 1.1 tsubai return (ENXIO);
438 1.1 tsubai
439 1.1 tsubai s = spladb();
440 1.1 tsubai if (aed_sc->sc_open) {
441 1.1 tsubai splx(s);
442 1.1 tsubai return (EBUSY);
443 1.1 tsubai }
444 1.1 tsubai aed_sc->sc_evq_tail = 0;
445 1.1 tsubai aed_sc->sc_evq_len = 0;
446 1.1 tsubai aed_sc->sc_open = 1;
447 1.16 christos aed_sc->sc_ioproc = l->l_proc;
448 1.1 tsubai splx(s);
449 1.1 tsubai
450 1.1 tsubai return (error);
451 1.1 tsubai }
452 1.1 tsubai
453 1.37 riastrad int
454 1.24 dsl aedclose(dev_t dev, int flag, int mode, struct lwp *l)
455 1.1 tsubai {
456 1.1 tsubai int s = spladb();
457 1.1 tsubai
458 1.1 tsubai aed_sc->sc_open = 0;
459 1.1 tsubai aed_sc->sc_ioproc = NULL;
460 1.1 tsubai splx(s);
461 1.1 tsubai
462 1.1 tsubai return (0);
463 1.1 tsubai }
464 1.1 tsubai
465 1.37 riastrad int
466 1.23 dsl aedread(dev_t dev, struct uio *uio, int flag)
467 1.1 tsubai {
468 1.1 tsubai int s, error;
469 1.1 tsubai int willfit;
470 1.1 tsubai int total;
471 1.1 tsubai int firstmove;
472 1.1 tsubai int moremove;
473 1.1 tsubai
474 1.1 tsubai if (uio->uio_resid < sizeof(adb_event_t))
475 1.1 tsubai return (EMSGSIZE); /* close enough. */
476 1.1 tsubai
477 1.1 tsubai s = spladb();
478 1.1 tsubai if (aed_sc->sc_evq_len == 0) {
479 1.1 tsubai splx(s);
480 1.1 tsubai return (0);
481 1.1 tsubai }
482 1.1 tsubai willfit = howmany(uio->uio_resid, sizeof(adb_event_t));
483 1.1 tsubai total = (aed_sc->sc_evq_len < willfit) ? aed_sc->sc_evq_len : willfit;
484 1.1 tsubai
485 1.1 tsubai firstmove = (aed_sc->sc_evq_tail + total > AED_MAX_EVENTS)
486 1.1 tsubai ? (AED_MAX_EVENTS - aed_sc->sc_evq_tail) : total;
487 1.1 tsubai
488 1.18 christos error = uiomove((void *) & aed_sc->sc_evq[aed_sc->sc_evq_tail],
489 1.1 tsubai firstmove * sizeof(adb_event_t), uio);
490 1.1 tsubai if (error) {
491 1.1 tsubai splx(s);
492 1.1 tsubai return (error);
493 1.1 tsubai }
494 1.1 tsubai moremove = total - firstmove;
495 1.1 tsubai
496 1.1 tsubai if (moremove > 0) {
497 1.18 christos error = uiomove((void *) & aed_sc->sc_evq[0],
498 1.1 tsubai moremove * sizeof(adb_event_t), uio);
499 1.1 tsubai if (error) {
500 1.1 tsubai splx(s);
501 1.1 tsubai return (error);
502 1.1 tsubai }
503 1.1 tsubai }
504 1.1 tsubai aed_sc->sc_evq_tail = (aed_sc->sc_evq_tail + total) % AED_MAX_EVENTS;
505 1.1 tsubai aed_sc->sc_evq_len -= total;
506 1.1 tsubai splx(s);
507 1.1 tsubai return (0);
508 1.1 tsubai }
509 1.1 tsubai
510 1.37 riastrad int
511 1.23 dsl aedioctl(dev_t dev, u_long cmd, void *data, int flag, struct lwp *l)
512 1.1 tsubai {
513 1.1 tsubai switch (cmd) {
514 1.1 tsubai case ADBIOCDEVSINFO: {
515 1.1 tsubai adb_devinfo_t *di;
516 1.1 tsubai ADBDataBlock adbdata;
517 1.1 tsubai int totaldevs;
518 1.1 tsubai int adbaddr;
519 1.1 tsubai int i;
520 1.1 tsubai
521 1.1 tsubai di = (void *)data;
522 1.1 tsubai
523 1.1 tsubai /* Initialize to no devices */
524 1.1 tsubai for (i = 0; i < 16; i++)
525 1.1 tsubai di->dev[i].addr = -1;
526 1.1 tsubai
527 1.1 tsubai totaldevs = CountADBs();
528 1.1 tsubai for (i = 1; i <= totaldevs; i++) {
529 1.1 tsubai adbaddr = GetIndADB(&adbdata, i);
530 1.1 tsubai di->dev[adbaddr].addr = adbaddr;
531 1.4 tsubai di->dev[adbaddr].default_addr = (int)(adbdata.origADBAddr);
532 1.4 tsubai di->dev[adbaddr].handler_id = (int)(adbdata.devType);
533 1.1 tsubai }
534 1.1 tsubai
535 1.1 tsubai /* Must call ADB Manager to get devices now */
536 1.1 tsubai break;
537 1.1 tsubai }
538 1.1 tsubai
539 1.1 tsubai case ADBIOCGETREPEAT:{
540 1.1 tsubai adb_rptinfo_t *ri;
541 1.1 tsubai
542 1.1 tsubai ri = (void *)data;
543 1.1 tsubai ri->delay_ticks = aed_sc->sc_rptdelay;
544 1.1 tsubai ri->interval_ticks = aed_sc->sc_rptinterval;
545 1.1 tsubai break;
546 1.1 tsubai }
547 1.1 tsubai
548 1.1 tsubai case ADBIOCSETREPEAT:{
549 1.1 tsubai adb_rptinfo_t *ri;
550 1.1 tsubai
551 1.1 tsubai ri = (void *) data;
552 1.1 tsubai aed_sc->sc_rptdelay = ri->delay_ticks;
553 1.1 tsubai aed_sc->sc_rptinterval = ri->interval_ticks;
554 1.1 tsubai break;
555 1.1 tsubai }
556 1.1 tsubai
557 1.1 tsubai case ADBIOCRESET:
558 1.1 tsubai /* Do nothing for now */
559 1.1 tsubai break;
560 1.1 tsubai
561 1.1 tsubai case ADBIOCLISTENCMD:{
562 1.1 tsubai adb_listencmd_t *lc;
563 1.1 tsubai
564 1.1 tsubai lc = (void *)data;
565 1.1 tsubai }
566 1.1 tsubai
567 1.1 tsubai default:
568 1.1 tsubai return (EINVAL);
569 1.1 tsubai }
570 1.1 tsubai return (0);
571 1.1 tsubai }
572 1.1 tsubai
573 1.37 riastrad int
574 1.23 dsl aedpoll(dev_t dev, int events, struct lwp *l)
575 1.1 tsubai {
576 1.1 tsubai int s, revents;
577 1.1 tsubai
578 1.1 tsubai revents = events & (POLLOUT | POLLWRNORM);
579 1.37 riastrad
580 1.1 tsubai if ((events & (POLLIN | POLLRDNORM)) == 0)
581 1.1 tsubai return (revents);
582 1.1 tsubai
583 1.1 tsubai s = spladb();
584 1.1 tsubai if (aed_sc->sc_evq_len > 0)
585 1.1 tsubai revents |= events & (POLLIN | POLLRDNORM);
586 1.1 tsubai else
587 1.16 christos selrecord(l, &aed_sc->sc_selinfo);
588 1.1 tsubai splx(s);
589 1.1 tsubai
590 1.1 tsubai return (revents);
591 1.10 jdolecek }
592 1.10 jdolecek
593 1.10 jdolecek static void
594 1.10 jdolecek filt_aedrdetach(struct knote *kn)
595 1.10 jdolecek {
596 1.10 jdolecek int s;
597 1.10 jdolecek
598 1.10 jdolecek s = spladb();
599 1.31 thorpej selremove_knote(&aed_sc->sc_selinfo, kn);
600 1.10 jdolecek splx(s);
601 1.10 jdolecek }
602 1.10 jdolecek
603 1.10 jdolecek static int
604 1.10 jdolecek filt_aedread(struct knote *kn, long hint)
605 1.10 jdolecek {
606 1.10 jdolecek
607 1.10 jdolecek kn->kn_data = aed_sc->sc_evq_len * sizeof(adb_event_t);
608 1.10 jdolecek return (kn->kn_data > 0);
609 1.10 jdolecek }
610 1.10 jdolecek
611 1.30 maya static const struct filterops aedread_filtops = {
612 1.32 thorpej .f_flags = FILTEROP_ISFD,
613 1.30 maya .f_attach = NULL,
614 1.30 maya .f_detach = filt_aedrdetach,
615 1.30 maya .f_event = filt_aedread
616 1.30 maya };
617 1.10 jdolecek
618 1.10 jdolecek int
619 1.10 jdolecek aedkqfilter(dev_t dev, struct knote *kn)
620 1.10 jdolecek {
621 1.10 jdolecek int s;
622 1.10 jdolecek
623 1.10 jdolecek switch (kn->kn_filter) {
624 1.10 jdolecek case EVFILT_READ:
625 1.10 jdolecek kn->kn_fop = &aedread_filtops;
626 1.33 thorpej s = spladb();
627 1.33 thorpej selrecord_knote(&aed_sc->sc_selinfo, kn);
628 1.33 thorpej splx(s);
629 1.10 jdolecek break;
630 1.10 jdolecek
631 1.10 jdolecek case EVFILT_WRITE:
632 1.33 thorpej kn->kn_fop = &seltrue_filtops;
633 1.10 jdolecek break;
634 1.10 jdolecek
635 1.10 jdolecek default:
636 1.34 thorpej return (EINVAL);
637 1.10 jdolecek }
638 1.10 jdolecek
639 1.10 jdolecek return (0);
640 1.1 tsubai }
641