wsdisplay_compat_usl.c revision 1.5 1 1.5 jonathan /* $NetBSD: wsdisplay_compat_usl.c,v 1.5 1998/07/05 18:27:18 jonathan Exp $ */
2 1.1 drochner
3 1.1 drochner /*
4 1.1 drochner * Copyright (c) 1998
5 1.1 drochner * Matthias Drochner. All rights reserved.
6 1.1 drochner *
7 1.1 drochner * Redistribution and use in source and binary forms, with or without
8 1.1 drochner * modification, are permitted provided that the following conditions
9 1.1 drochner * are met:
10 1.1 drochner * 1. Redistributions of source code must retain the above copyright
11 1.1 drochner * notice, this list of conditions and the following disclaimer.
12 1.1 drochner * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 drochner * notice, this list of conditions and the following disclaimer in the
14 1.1 drochner * documentation and/or other materials provided with the distribution.
15 1.1 drochner * 3. All advertising materials mentioning features or use of this software
16 1.1 drochner * must display the following acknowledgement:
17 1.1 drochner * This product includes software developed for the NetBSD Project
18 1.1 drochner * by Matthias Drochner.
19 1.1 drochner * 4. The name of the author may not be used to endorse or promote products
20 1.1 drochner * derived from this software without specific prior written permission.
21 1.1 drochner *
22 1.1 drochner * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23 1.1 drochner * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
24 1.1 drochner * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
25 1.1 drochner * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
26 1.1 drochner * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
27 1.1 drochner * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28 1.1 drochner * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29 1.1 drochner * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30 1.1 drochner * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
31 1.1 drochner * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 1.1 drochner *
33 1.1 drochner */
34 1.4 thorpej
35 1.4 thorpej #include "opt_compat_freebsd.h"
36 1.5 jonathan #include "opt_compat_netbsd.h"
37 1.1 drochner
38 1.1 drochner #include <sys/param.h>
39 1.1 drochner #include <sys/systm.h>
40 1.1 drochner #include <sys/ioctl.h>
41 1.1 drochner #include <sys/kernel.h>
42 1.1 drochner #include <sys/proc.h>
43 1.1 drochner #include <sys/signalvar.h>
44 1.1 drochner #include <sys/malloc.h>
45 1.1 drochner #include <sys/errno.h>
46 1.1 drochner
47 1.1 drochner #include <dev/wscons/wsconsio.h>
48 1.1 drochner #include <dev/wscons/wsdisplayvar.h>
49 1.1 drochner #include <dev/wscons/wscons_callbacks.h>
50 1.1 drochner #include <dev/wscons/wsdisplay_usl_io.h>
51 1.1 drochner
52 1.1 drochner #include "opt_wsdisplay_compat.h"
53 1.1 drochner
54 1.1 drochner struct usl_syncdata {
55 1.1 drochner struct wsscreen *s_scr;
56 1.1 drochner struct proc *s_proc;
57 1.1 drochner pid_t s_pid;
58 1.1 drochner int s_flags;
59 1.1 drochner #define SF_DETACHPENDING 1
60 1.1 drochner #define SF_ATTACHPENDING 2
61 1.1 drochner int s_acqsig, s_relsig;
62 1.1 drochner int s_frsig; /* unused */
63 1.1 drochner void (*s_callback) __P((void *, int));
64 1.1 drochner void *s_cbarg;
65 1.1 drochner };
66 1.1 drochner
67 1.3 drochner static int usl_sync_init __P((struct wsscreen *, struct usl_syncdata **,
68 1.3 drochner struct proc *, int, int, int));
69 1.1 drochner static void usl_sync_done __P((struct usl_syncdata *));
70 1.1 drochner static int usl_sync_check __P((struct usl_syncdata *));
71 1.1 drochner static struct usl_syncdata *usl_sync_get __P((struct wsscreen *));
72 1.1 drochner
73 1.1 drochner static int usl_detachproc __P((void *, int, void (*)(void *, int), void *));
74 1.1 drochner static int usl_detachack __P((struct usl_syncdata *, int));
75 1.1 drochner static void usl_detachtimeout __P((void *));
76 1.1 drochner static int usl_attachproc __P((void *, int));
77 1.1 drochner static int usl_attachack __P((struct usl_syncdata *, int));
78 1.1 drochner static void usl_attachtimeout __P((void *));
79 1.1 drochner
80 1.1 drochner static const struct wscons_syncops usl_syncops = {
81 1.1 drochner usl_detachproc,
82 1.1 drochner usl_attachproc,
83 1.1 drochner #define _usl_sync_check ((int (*) __P((void *)))usl_sync_check)
84 1.1 drochner _usl_sync_check,
85 1.1 drochner #define _usl_sync_destroy ((void (*) __P((void *)))usl_sync_done)
86 1.1 drochner _usl_sync_destroy
87 1.1 drochner };
88 1.1 drochner
89 1.1 drochner static int
90 1.3 drochner usl_sync_init(scr, sdp, p, acqsig, relsig, frsig)
91 1.1 drochner struct wsscreen *scr;
92 1.1 drochner struct usl_syncdata **sdp;
93 1.3 drochner struct proc *p;
94 1.3 drochner int acqsig, relsig, frsig;
95 1.1 drochner {
96 1.1 drochner struct usl_syncdata *sd;
97 1.1 drochner int res;
98 1.1 drochner
99 1.1 drochner sd = malloc(sizeof(struct usl_syncdata), M_DEVBUF, M_WAITOK);
100 1.1 drochner if (!sd)
101 1.1 drochner return (ENOMEM);
102 1.1 drochner sd->s_scr = scr;
103 1.3 drochner sd->s_proc = p;
104 1.3 drochner sd->s_pid = p->p_pid;
105 1.2 drochner sd->s_flags = 0;
106 1.3 drochner sd->s_acqsig = acqsig;
107 1.3 drochner sd->s_relsig = relsig;
108 1.3 drochner sd->s_frsig = frsig;
109 1.1 drochner res = wsscreen_attach_sync(scr, &usl_syncops, sd);
110 1.1 drochner if (res) {
111 1.1 drochner free(sd, M_DEVBUF);
112 1.1 drochner return (res);
113 1.1 drochner }
114 1.1 drochner *sdp = sd;
115 1.1 drochner return (0);
116 1.1 drochner }
117 1.1 drochner
118 1.1 drochner static void
119 1.1 drochner usl_sync_done(sd)
120 1.1 drochner struct usl_syncdata *sd;
121 1.1 drochner {
122 1.2 drochner if (sd->s_flags & SF_DETACHPENDING) {
123 1.2 drochner untimeout(usl_detachtimeout, sd);
124 1.1 drochner (*sd->s_callback)(sd->s_cbarg, 0);
125 1.2 drochner }
126 1.2 drochner if (sd->s_flags & SF_ATTACHPENDING)
127 1.2 drochner untimeout(usl_attachtimeout, sd);
128 1.1 drochner wsscreen_detach_sync(sd->s_scr);
129 1.1 drochner free(sd, M_DEVBUF);
130 1.1 drochner }
131 1.1 drochner
132 1.1 drochner static int
133 1.1 drochner usl_sync_check(sd)
134 1.1 drochner struct usl_syncdata *sd;
135 1.1 drochner {
136 1.1 drochner if (sd->s_proc == pfind(sd->s_pid))
137 1.1 drochner return (1);
138 1.1 drochner printf("usl_sync_check: process %d died\n", sd->s_pid);
139 1.1 drochner usl_sync_done(sd);
140 1.1 drochner return (0);
141 1.1 drochner }
142 1.1 drochner
143 1.1 drochner static struct usl_syncdata *
144 1.1 drochner usl_sync_get(scr)
145 1.1 drochner struct wsscreen *scr;
146 1.1 drochner {
147 1.1 drochner struct usl_syncdata *sd;
148 1.1 drochner
149 1.1 drochner if (wsscreen_lookup_sync(scr, &usl_syncops, (void **)&sd))
150 1.1 drochner return (0);
151 1.1 drochner return (sd);
152 1.1 drochner }
153 1.1 drochner
154 1.1 drochner static int
155 1.1 drochner usl_detachproc(cookie, waitok, callback, cbarg)
156 1.1 drochner void *cookie;
157 1.1 drochner int waitok;
158 1.1 drochner void (*callback) __P((void *, int));
159 1.1 drochner void *cbarg;
160 1.1 drochner {
161 1.1 drochner struct usl_syncdata *sd = cookie;
162 1.1 drochner
163 1.1 drochner if (!usl_sync_check(sd))
164 1.1 drochner return (0);
165 1.1 drochner
166 1.1 drochner /*
167 1.1 drochner * Normally, this is called from the controlling process.
168 1.1 drochner * Is is supposed to reply with a VT_RELDISP ioctl(), so
169 1.1 drochner * it is not useful to tsleep() here.
170 1.1 drochner */
171 1.1 drochner sd->s_callback = callback;
172 1.1 drochner sd->s_cbarg = cbarg;
173 1.1 drochner sd->s_flags |= SF_DETACHPENDING;
174 1.1 drochner psignal(sd->s_proc, sd->s_relsig);
175 1.1 drochner timeout(usl_detachtimeout, sd, 5*hz);
176 1.1 drochner
177 1.1 drochner return (EAGAIN);
178 1.1 drochner }
179 1.1 drochner
180 1.1 drochner static int
181 1.1 drochner usl_detachack(sd, ack)
182 1.1 drochner struct usl_syncdata *sd;
183 1.1 drochner int ack;
184 1.1 drochner {
185 1.1 drochner if (!(sd->s_flags & SF_DETACHPENDING)) {
186 1.1 drochner printf("usl_detachack: not detaching\n");
187 1.1 drochner return (EINVAL);
188 1.1 drochner }
189 1.1 drochner
190 1.1 drochner untimeout(usl_detachtimeout, sd);
191 1.1 drochner sd->s_flags &= ~SF_DETACHPENDING;
192 1.1 drochner
193 1.1 drochner if (ack && sd->s_callback)
194 1.1 drochner (*sd->s_callback)(sd->s_cbarg, 1);
195 1.1 drochner
196 1.1 drochner return (0);
197 1.1 drochner }
198 1.1 drochner
199 1.1 drochner static void
200 1.1 drochner usl_detachtimeout(arg)
201 1.1 drochner void *arg;
202 1.1 drochner {
203 1.1 drochner struct usl_syncdata *sd = arg;
204 1.1 drochner
205 1.1 drochner printf("usl_detachtimeout\n");
206 1.1 drochner
207 1.1 drochner if (!(sd->s_flags & SF_DETACHPENDING)) {
208 1.1 drochner printf("usl_detachtimeout: not detaching\n");
209 1.1 drochner return;
210 1.1 drochner }
211 1.1 drochner
212 1.1 drochner sd->s_flags &= ~SF_DETACHPENDING;
213 1.1 drochner #if 0
214 1.1 drochner psignal(sd->s_proc, SIGKILL);
215 1.1 drochner #endif
216 1.1 drochner (void) usl_sync_check(sd);
217 1.1 drochner }
218 1.1 drochner
219 1.1 drochner static int
220 1.1 drochner usl_attachproc(cookie, waitok)
221 1.1 drochner void *cookie;
222 1.1 drochner int waitok;
223 1.1 drochner {
224 1.1 drochner struct usl_syncdata *sd = cookie;
225 1.1 drochner
226 1.1 drochner if (!usl_sync_check(sd))
227 1.1 drochner return (0);
228 1.1 drochner
229 1.1 drochner sd->s_flags |= SF_ATTACHPENDING;
230 1.1 drochner psignal(sd->s_proc, sd->s_acqsig);
231 1.1 drochner timeout(usl_attachtimeout, sd, 5*hz);
232 1.1 drochner
233 1.1 drochner return (EAGAIN);
234 1.1 drochner }
235 1.1 drochner
236 1.1 drochner static int
237 1.1 drochner usl_attachack(sd, ack)
238 1.1 drochner struct usl_syncdata *sd;
239 1.1 drochner int ack;
240 1.1 drochner {
241 1.1 drochner if (!(sd->s_flags & SF_ATTACHPENDING)) {
242 1.1 drochner printf("usl_attachack: not attaching\n");
243 1.1 drochner return (EINVAL);
244 1.1 drochner }
245 1.1 drochner
246 1.1 drochner untimeout(usl_attachtimeout, sd);
247 1.1 drochner sd->s_flags &= ~SF_ATTACHPENDING;
248 1.1 drochner return (0);
249 1.1 drochner }
250 1.1 drochner
251 1.1 drochner static void
252 1.1 drochner usl_attachtimeout(arg)
253 1.1 drochner void *arg;
254 1.1 drochner {
255 1.1 drochner struct usl_syncdata *sd = arg;
256 1.1 drochner
257 1.1 drochner printf("usl_attachtimeout\n");
258 1.1 drochner
259 1.1 drochner if (!(sd->s_flags & SF_ATTACHPENDING)) {
260 1.1 drochner printf("usl_attachtimeout: not attaching\n");
261 1.1 drochner return;
262 1.1 drochner }
263 1.1 drochner
264 1.1 drochner sd->s_flags &= ~SF_ATTACHPENDING;
265 1.1 drochner #if 0
266 1.1 drochner psignal(sd->s_proc, SIGKILL);
267 1.1 drochner #endif
268 1.1 drochner (void) usl_sync_check(sd);
269 1.1 drochner }
270 1.1 drochner
271 1.1 drochner int
272 1.1 drochner wsdisplay_usl_ioctl(sc, scr, cmd, data, flag, p)
273 1.1 drochner struct wsdisplay_softc *sc;
274 1.1 drochner struct wsscreen *scr;
275 1.1 drochner u_long cmd;
276 1.1 drochner caddr_t data;
277 1.1 drochner int flag;
278 1.1 drochner struct proc *p;
279 1.1 drochner {
280 1.1 drochner int res, idx, maxidx;
281 1.1 drochner struct usl_syncdata *sd;
282 1.1 drochner int req, intarg;
283 1.1 drochner struct wskbd_bell_data bd;
284 1.1 drochner void *arg;
285 1.1 drochner
286 1.1 drochner switch (cmd) {
287 1.1 drochner case VT_SETMODE:
288 1.1 drochner #define newmode ((struct vt_mode *)data)
289 1.1 drochner if (newmode->mode == VT_PROCESS) {
290 1.3 drochner res = usl_sync_init(scr, &sd, p, newmode->acqsig,
291 1.3 drochner newmode->relsig, newmode->frsig);
292 1.1 drochner if (res)
293 1.1 drochner return (res);
294 1.1 drochner } else {
295 1.1 drochner sd = usl_sync_get(scr);
296 1.1 drochner if (sd)
297 1.1 drochner usl_sync_done(sd);
298 1.1 drochner }
299 1.1 drochner #undef newmode
300 1.1 drochner return (0);
301 1.1 drochner case VT_GETMODE:
302 1.1 drochner #define cmode ((struct vt_mode *)data)
303 1.1 drochner sd = usl_sync_get(scr);
304 1.1 drochner if (sd) {
305 1.1 drochner cmode->mode = VT_PROCESS;
306 1.1 drochner cmode->relsig = sd->s_relsig;
307 1.1 drochner cmode->acqsig = sd->s_acqsig;
308 1.1 drochner cmode->frsig = sd->s_frsig;
309 1.1 drochner } else
310 1.1 drochner cmode->mode = VT_AUTO;
311 1.1 drochner #undef cmode
312 1.1 drochner return (0);
313 1.1 drochner case VT_RELDISP:
314 1.1 drochner #define d (*(int *)data)
315 1.1 drochner sd = usl_sync_get(scr);
316 1.1 drochner if (!sd)
317 1.1 drochner return (EINVAL);
318 1.1 drochner switch (d) {
319 1.1 drochner case VT_FALSE:
320 1.1 drochner case VT_TRUE:
321 1.1 drochner return (usl_detachack(sd, (d == VT_TRUE)));
322 1.1 drochner case VT_ACKACQ:
323 1.1 drochner return (usl_attachack(sd, 1));
324 1.1 drochner default:
325 1.1 drochner return (EINVAL);
326 1.1 drochner }
327 1.1 drochner #undef d
328 1.1 drochner return (0);
329 1.1 drochner case VT_OPENQRY:
330 1.1 drochner maxidx = wsdisplay_maxscreenidx(sc);
331 1.1 drochner for (idx = 0; idx <= maxidx; idx++) {
332 1.1 drochner if (wsdisplay_screenstate(sc, idx) == 0) {
333 1.1 drochner *(int *)data = idx + 1;
334 1.1 drochner return (0);
335 1.1 drochner }
336 1.1 drochner }
337 1.1 drochner return (ENXIO);
338 1.1 drochner case VT_GETACTIVE:
339 1.1 drochner idx = wsdisplay_getactivescreen(sc);
340 1.1 drochner *(int *)data = idx + 1;
341 1.1 drochner return (0);
342 1.1 drochner case VT_ACTIVATE:
343 1.1 drochner idx = *(int *)data - 1;
344 1.1 drochner return (wsdisplay_switch((struct device *)sc, idx, 1));
345 1.1 drochner case VT_WAITACTIVE:
346 1.1 drochner idx = *(int *)data - 1;
347 1.1 drochner return (wsscreen_switchwait(sc, idx));
348 1.1 drochner case VT_GETSTATE:
349 1.1 drochner #define ss ((struct vt_stat *)data)
350 1.1 drochner idx = wsdisplay_getactivescreen(sc);
351 1.1 drochner ss->v_active = idx + 1;
352 1.1 drochner ss->v_state = 0;
353 1.1 drochner maxidx = wsdisplay_maxscreenidx(sc);
354 1.1 drochner for (idx = 0; idx <= maxidx; idx++)
355 1.1 drochner if (wsdisplay_screenstate(sc, idx) == EBUSY)
356 1.1 drochner ss->v_state |= (1 << (idx + 1));
357 1.1 drochner #undef s
358 1.1 drochner return (0);
359 1.1 drochner case KDENABIO:
360 1.1 drochner if (suser(p->p_ucred, &p->p_acflag) || securelevel > 1)
361 1.1 drochner return (EPERM);
362 1.1 drochner /* FALLTHRU */
363 1.1 drochner case KDDISABIO:
364 1.1 drochner #if defined(__i386__)
365 1.1 drochner #if defined(COMPAT_10) || defined(COMPAT_11) || defined(COMPAT_FREEBSD)
366 1.1 drochner {
367 1.1 drochner struct trapframe *fp = (struct trapframe *)p->p_md.md_regs;
368 1.1 drochner if (cmd == KDENABIO)
369 1.1 drochner fp->tf_eflags |= PSL_IOPL;
370 1.1 drochner else
371 1.1 drochner fp->tf_eflags &= ~PSL_IOPL;
372 1.1 drochner }
373 1.1 drochner #endif
374 1.1 drochner #endif
375 1.1 drochner return (0);
376 1.1 drochner case KDSETRAD:
377 1.1 drochner /* XXX ignore for now */
378 1.1 drochner return (0);
379 1.1 drochner
380 1.1 drochner #ifdef WSDISPLAY_COMPAT_PCVT
381 1.1 drochner case VGAPCVTID:
382 1.1 drochner #define id ((struct pcvtid *)data)
383 1.1 drochner strcpy(id->name, "pcvt");
384 1.1 drochner id->rmajor = 3;
385 1.1 drochner id->rminor = 32;
386 1.1 drochner #undef id
387 1.1 drochner return (0);
388 1.1 drochner #endif
389 1.1 drochner #ifdef WSDISPLAY_COMPAT_SYSCONS
390 1.1 drochner case CONS_GETVERS:
391 1.1 drochner *(int *)data = 0x200; /* version 2.0 */
392 1.1 drochner return (0);
393 1.1 drochner #endif
394 1.1 drochner
395 1.1 drochner default:
396 1.1 drochner return (-1);
397 1.1 drochner
398 1.1 drochner /*
399 1.1 drochner * the following are converted to wsdisplay ioctls
400 1.1 drochner */
401 1.1 drochner case KDSETMODE:
402 1.1 drochner req = WSDISPLAYIO_SMODE;
403 1.1 drochner #define d (*(int *)data)
404 1.1 drochner switch (d) {
405 1.1 drochner case KD_GRAPHICS:
406 1.1 drochner intarg = WSDISPLAYIO_MODE_MAPPED;
407 1.1 drochner break;
408 1.1 drochner case KD_TEXT:
409 1.1 drochner intarg = WSDISPLAYIO_MODE_EMUL;
410 1.1 drochner break;
411 1.1 drochner default:
412 1.1 drochner return (EINVAL);
413 1.1 drochner }
414 1.1 drochner #undef d
415 1.1 drochner arg = &intarg;
416 1.1 drochner break;
417 1.1 drochner case KDMKTONE:
418 1.1 drochner req = WSKBDIO_COMPLEXBELL;
419 1.1 drochner #define d (*(int *)data)
420 1.1 drochner if (d) {
421 1.1 drochner bd.which = WSKBD_BELL_DOPITCH | WSKBD_BELL_DOPERIOD;
422 1.1 drochner bd.pitch = d & 0xffff; /* Hz */
423 1.1 drochner bd.period = d >> 16; /* ms */
424 1.1 drochner } else
425 1.1 drochner bd.which = 0; /* default */
426 1.1 drochner #undef d
427 1.1 drochner arg = &bd;
428 1.1 drochner break;
429 1.1 drochner case KDSETLED:
430 1.1 drochner req = WSKBDIO_SETLEDS;
431 1.1 drochner intarg = 0;
432 1.1 drochner #define d (*(int *)data)
433 1.1 drochner if (d & LED_CAP)
434 1.1 drochner intarg |= WSKBD_LED_CAPS;
435 1.1 drochner if (d & LED_NUM)
436 1.1 drochner intarg |= WSKBD_LED_NUM;
437 1.1 drochner if (d & LED_SCR)
438 1.1 drochner intarg |= WSKBD_LED_SCROLL;
439 1.1 drochner #undef d
440 1.1 drochner arg = &intarg;
441 1.1 drochner break;
442 1.1 drochner case KDGETLED:
443 1.1 drochner req = WSKBDIO_GETLEDS;
444 1.1 drochner arg = &intarg;
445 1.1 drochner break;
446 1.1 drochner #ifdef WSDISPLAY_COMPAT_RAWKBD
447 1.1 drochner case KDSKBMODE:
448 1.1 drochner req = WSKBDIO_SETMODE;
449 1.1 drochner switch (*(int *)data) {
450 1.1 drochner case K_RAW:
451 1.1 drochner intarg = WSKBD_RAW;
452 1.1 drochner break;
453 1.1 drochner case K_XLATE:
454 1.1 drochner intarg = WSKBD_TRANSLATED;
455 1.1 drochner break;
456 1.1 drochner default:
457 1.1 drochner return (EINVAL);
458 1.1 drochner }
459 1.1 drochner arg = &intarg;
460 1.1 drochner break;
461 1.1 drochner case KDGKBMODE:
462 1.1 drochner req = WSKBDIO_GETMODE;
463 1.1 drochner arg = &intarg;
464 1.1 drochner break;
465 1.1 drochner #endif
466 1.1 drochner }
467 1.1 drochner
468 1.1 drochner res = wsdisplay_internal_ioctl(sc, scr, req, arg, flag, p);
469 1.1 drochner if (res)
470 1.1 drochner return (res);
471 1.1 drochner
472 1.1 drochner switch (cmd) {
473 1.1 drochner case KDGETLED:
474 1.1 drochner #define d (*(int *)data)
475 1.1 drochner d = 0;
476 1.1 drochner if (intarg & WSKBD_LED_CAPS)
477 1.1 drochner d |= LED_CAP;
478 1.1 drochner if (intarg & WSKBD_LED_NUM)
479 1.1 drochner d |= LED_NUM;
480 1.1 drochner if (intarg & WSKBD_LED_SCROLL)
481 1.1 drochner d |= LED_SCR;
482 1.1 drochner #undef d
483 1.1 drochner break;
484 1.1 drochner #ifdef WSDISPLAY_COMPAT_RAWKBD
485 1.1 drochner case KDGKBMODE:
486 1.1 drochner *(int *)data = (intarg == WSKBD_RAW ? K_RAW : K_XLATE);
487 1.1 drochner break;
488 1.1 drochner #endif
489 1.1 drochner }
490 1.1 drochner
491 1.1 drochner return (0);
492 1.1 drochner }
493