sunos_ioctl.c revision 1.16 1 /* $NetBSD: sunos_ioctl.c,v 1.16 1995/03/04 09:50:07 pk Exp $ */
2
3 /*
4 * Copyright (c) 1993 Markus Wild.
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. The name of the author may not be used to endorse or promote products
13 * derived from this software without specific prior written permission
14 *
15 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
20 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
21 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
22 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
23 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
24 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
25 *
26 * loosely from: Header: sunos_ioctl.c,v 1.7 93/05/28 04:40:43 torek Exp
27 */
28
29 #include <sys/param.h>
30 #include <sys/proc.h>
31 #include <sys/systm.h>
32 #include <sys/file.h>
33 #include <sys/filedesc.h>
34 #include <sys/ioctl.h>
35 #include <sys/termios.h>
36 #include <sys/tty.h>
37 #include <sys/socket.h>
38 #include <sys/audioio.h>
39 #include <net/if.h>
40
41 #include <sys/mount.h>
42
43 #include <sys/syscallargs.h>
44 #include <compat/sunos/sunos.h>
45 #include <compat/sunos/sunos_syscallargs.h>
46
47 /*
48 * SunOS ioctl calls.
49 * This file is something of a hodge-podge.
50 * Support gets added as things turn up....
51 */
52
53 static struct speedtab sptab[] = {
54 { 0, 0 },
55 { 50, 1 },
56 { 75, 2 },
57 { 110, 3 },
58 { 134, 4 },
59 { 135, 4 },
60 { 150, 5 },
61 { 200, 6 },
62 { 300, 7 },
63 { 600, 8 },
64 { 1200, 9 },
65 { 1800, 10 },
66 { 2400, 11 },
67 { 4800, 12 },
68 { 9600, 13 },
69 { 19200, 14 },
70 { 38400, 15 },
71 { -1, -1 }
72 };
73
74 static u_long s2btab[] = {
75 0,
76 50,
77 75,
78 110,
79 134,
80 150,
81 200,
82 300,
83 600,
84 1200,
85 1800,
86 2400,
87 4800,
88 9600,
89 19200,
90 38400,
91 };
92
93 /*
94 * these two conversion functions have mostly been done
95 * with some perl cut&paste, then handedited to comment
96 * out what doesn't exist under NetBSD.
97 * A note from Markus's code:
98 * (l & BITMASK1) / BITMASK1 * BITMASK2 is translated
99 * optimally by gcc m68k, much better than any ?: stuff.
100 * Code may vary with different architectures of course.
101 *
102 * I don't know what optimizer you used, but seeing divu's and
103 * bfextu's in the m68k assembly output did not encourage me...
104 * as well, gcc on the sparc definately generates much better
105 * code with ?:.
106 */
107
108 static void
109 stios2btios(st, bt)
110 struct sunos_termios *st;
111 struct termios *bt;
112 {
113 register u_long l, r;
114
115 l = st->c_iflag;
116 r = ((l & 0x00000001) ? IGNBRK : 0);
117 r |= ((l & 0x00000002) ? BRKINT : 0);
118 r |= ((l & 0x00000004) ? IGNPAR : 0);
119 r |= ((l & 0x00000008) ? PARMRK : 0);
120 r |= ((l & 0x00000010) ? INPCK : 0);
121 r |= ((l & 0x00000020) ? ISTRIP : 0);
122 r |= ((l & 0x00000040) ? INLCR : 0);
123 r |= ((l & 0x00000080) ? IGNCR : 0);
124 r |= ((l & 0x00000100) ? ICRNL : 0);
125 /* ((l & 0x00000200) ? IUCLC : 0) */
126 r |= ((l & 0x00000400) ? IXON : 0);
127 r |= ((l & 0x00000800) ? IXANY : 0);
128 r |= ((l & 0x00001000) ? IXOFF : 0);
129 r |= ((l & 0x00002000) ? IMAXBEL : 0);
130 bt->c_iflag = r;
131
132 l = st->c_oflag;
133 r = ((l & 0x00000001) ? OPOST : 0);
134 /* ((l & 0x00000002) ? OLCUC : 0) */
135 r |= ((l & 0x00000004) ? ONLCR : 0);
136 /* ((l & 0x00000008) ? OCRNL : 0) */
137 /* ((l & 0x00000010) ? ONOCR : 0) */
138 /* ((l & 0x00000020) ? ONLRET : 0) */
139 /* ((l & 0x00000040) ? OFILL : 0) */
140 /* ((l & 0x00000080) ? OFDEL : 0) */
141 /* ((l & 0x00000100) ? NLDLY : 0) */
142 /* ((l & 0x00000100) ? NL1 : 0) */
143 /* ((l & 0x00000600) ? CRDLY : 0) */
144 /* ((l & 0x00000200) ? CR1 : 0) */
145 /* ((l & 0x00000400) ? CR2 : 0) */
146 /* ((l & 0x00000600) ? CR3 : 0) */
147 /* ((l & 0x00001800) ? TABDLY : 0) */
148 /* ((l & 0x00000800) ? TAB1 : 0) */
149 /* ((l & 0x00001000) ? TAB2 : 0) */
150 r |= ((l & 0x00001800) ? OXTABS : 0);
151 /* ((l & 0x00002000) ? BSDLY : 0) */
152 /* ((l & 0x00002000) ? BS1 : 0) */
153 /* ((l & 0x00004000) ? VTDLY : 0) */
154 /* ((l & 0x00004000) ? VT1 : 0) */
155 /* ((l & 0x00008000) ? FFDLY : 0) */
156 /* ((l & 0x00008000) ? FF1 : 0) */
157 /* ((l & 0x00010000) ? PAGEOUT : 0) */
158 /* ((l & 0x00020000) ? WRAP : 0) */
159 bt->c_oflag = r;
160
161 l = st->c_cflag;
162 switch (l & 0x00000030) {
163 case 0:
164 r = CS5;
165 break;
166 case 0x00000010:
167 r = CS6;
168 break;
169 case 0x00000020:
170 r = CS7;
171 break;
172 case 0x00000030:
173 r = CS8;
174 break;
175 }
176 r |= ((l & 0x00000040) ? CSTOPB : 0);
177 r |= ((l & 0x00000080) ? CREAD : 0);
178 r |= ((l & 0x00000100) ? PARENB : 0);
179 r |= ((l & 0x00000200) ? PARODD : 0);
180 r |= ((l & 0x00000400) ? HUPCL : 0);
181 r |= ((l & 0x00000800) ? CLOCAL : 0);
182 /* ((l & 0x00001000) ? LOBLK : 0) */
183 r |= ((l & 0x80000000) ? (CRTS_IFLOW|CCTS_OFLOW) : 0);
184 bt->c_cflag = r;
185
186 bt->c_ispeed = bt->c_ospeed = s2btab[l & 0x0000000f];
187
188 l = st->c_lflag;
189 r = ((l & 0x00000001) ? ISIG : 0);
190 r |= ((l & 0x00000002) ? ICANON : 0);
191 /* ((l & 0x00000004) ? XCASE : 0) */
192 r |= ((l & 0x00000008) ? ECHO : 0);
193 r |= ((l & 0x00000010) ? ECHOE : 0);
194 r |= ((l & 0x00000020) ? ECHOK : 0);
195 r |= ((l & 0x00000040) ? ECHONL : 0);
196 r |= ((l & 0x00000080) ? NOFLSH : 0);
197 r |= ((l & 0x00000100) ? TOSTOP : 0);
198 r |= ((l & 0x00000200) ? ECHOCTL : 0);
199 r |= ((l & 0x00000400) ? ECHOPRT : 0);
200 r |= ((l & 0x00000800) ? ECHOKE : 0);
201 /* ((l & 0x00001000) ? DEFECHO : 0) */
202 r |= ((l & 0x00002000) ? FLUSHO : 0);
203 r |= ((l & 0x00004000) ? PENDIN : 0);
204 bt->c_lflag = r;
205
206 bt->c_cc[VINTR] = st->c_cc[0] ? st->c_cc[0] : _POSIX_VDISABLE;
207 bt->c_cc[VQUIT] = st->c_cc[1] ? st->c_cc[1] : _POSIX_VDISABLE;
208 bt->c_cc[VERASE] = st->c_cc[2] ? st->c_cc[2] : _POSIX_VDISABLE;
209 bt->c_cc[VKILL] = st->c_cc[3] ? st->c_cc[3] : _POSIX_VDISABLE;
210 bt->c_cc[VEOF] = st->c_cc[4] ? st->c_cc[4] : _POSIX_VDISABLE;
211 bt->c_cc[VEOL] = st->c_cc[5] ? st->c_cc[5] : _POSIX_VDISABLE;
212 bt->c_cc[VEOL2] = st->c_cc[6] ? st->c_cc[6] : _POSIX_VDISABLE;
213 /* bt->c_cc[VSWTCH] = st->c_cc[7] ? st->c_cc[7] : _POSIX_VDISABLE; */
214 bt->c_cc[VSTART] = st->c_cc[8] ? st->c_cc[8] : _POSIX_VDISABLE;
215 bt->c_cc[VSTOP] = st->c_cc[9] ? st->c_cc[9] : _POSIX_VDISABLE;
216 bt->c_cc[VSUSP] = st->c_cc[10] ? st->c_cc[10] : _POSIX_VDISABLE;
217 bt->c_cc[VDSUSP] = st->c_cc[11] ? st->c_cc[11] : _POSIX_VDISABLE;
218 bt->c_cc[VREPRINT] = st->c_cc[12] ? st->c_cc[12] : _POSIX_VDISABLE;
219 bt->c_cc[VDISCARD] = st->c_cc[13] ? st->c_cc[13] : _POSIX_VDISABLE;
220 bt->c_cc[VWERASE] = st->c_cc[14] ? st->c_cc[14] : _POSIX_VDISABLE;
221 bt->c_cc[VLNEXT] = st->c_cc[15] ? st->c_cc[15] : _POSIX_VDISABLE;
222 bt->c_cc[VSTATUS] = st->c_cc[16] ? st->c_cc[16] : _POSIX_VDISABLE;
223
224 /* if `raw mode', create native VMIN/VTIME from SunOS VEOF/VEOL */
225 bt->c_cc[VMIN] = (bt->c_lflag & ICANON) ? 1 : bt->c_cc[VEOF];
226 bt->c_cc[VTIME] = (bt->c_lflag & ICANON) ? 1 : bt->c_cc[VEOL];
227 }
228
229
230 static void
231 btios2stios(bt, st)
232 struct termios *bt;
233 struct sunos_termios *st;
234 {
235 register u_long l, r;
236
237 l = bt->c_iflag;
238 r = ((l & IGNBRK) ? 0x00000001 : 0);
239 r |= ((l & BRKINT) ? 0x00000002 : 0);
240 r |= ((l & IGNPAR) ? 0x00000004 : 0);
241 r |= ((l & PARMRK) ? 0x00000008 : 0);
242 r |= ((l & INPCK) ? 0x00000010 : 0);
243 r |= ((l & ISTRIP) ? 0x00000020 : 0);
244 r |= ((l & INLCR) ? 0x00000040 : 0);
245 r |= ((l & IGNCR) ? 0x00000080 : 0);
246 r |= ((l & ICRNL) ? 0x00000100 : 0);
247 /* ((l & IUCLC) ? 0x00000200 : 0) */
248 r |= ((l & IXON) ? 0x00000400 : 0);
249 r |= ((l & IXANY) ? 0x00000800 : 0);
250 r |= ((l & IXOFF) ? 0x00001000 : 0);
251 r |= ((l & IMAXBEL) ? 0x00002000 : 0);
252 st->c_iflag = r;
253
254 l = bt->c_oflag;
255 r = ((l & OPOST) ? 0x00000001 : 0);
256 /* ((l & OLCUC) ? 0x00000002 : 0) */
257 r |= ((l & ONLCR) ? 0x00000004 : 0);
258 /* ((l & OCRNL) ? 0x00000008 : 0) */
259 /* ((l & ONOCR) ? 0x00000010 : 0) */
260 /* ((l & ONLRET) ? 0x00000020 : 0) */
261 /* ((l & OFILL) ? 0x00000040 : 0) */
262 /* ((l & OFDEL) ? 0x00000080 : 0) */
263 /* ((l & NLDLY) ? 0x00000100 : 0) */
264 /* ((l & NL1) ? 0x00000100 : 0) */
265 /* ((l & CRDLY) ? 0x00000600 : 0) */
266 /* ((l & CR1) ? 0x00000200 : 0) */
267 /* ((l & CR2) ? 0x00000400 : 0) */
268 /* ((l & CR3) ? 0x00000600 : 0) */
269 /* ((l & TABDLY) ? 0x00001800 : 0) */
270 /* ((l & TAB1) ? 0x00000800 : 0) */
271 /* ((l & TAB2) ? 0x00001000 : 0) */
272 r |= ((l & OXTABS) ? 0x00001800 : 0);
273 /* ((l & BSDLY) ? 0x00002000 : 0) */
274 /* ((l & BS1) ? 0x00002000 : 0) */
275 /* ((l & VTDLY) ? 0x00004000 : 0) */
276 /* ((l & VT1) ? 0x00004000 : 0) */
277 /* ((l & FFDLY) ? 0x00008000 : 0) */
278 /* ((l & FF1) ? 0x00008000 : 0) */
279 /* ((l & PAGEOUT) ? 0x00010000 : 0) */
280 /* ((l & WRAP) ? 0x00020000 : 0) */
281 st->c_oflag = r;
282
283 l = bt->c_cflag;
284 switch (l & CSIZE) {
285 case CS5:
286 r = 0;
287 break;
288 case CS6:
289 r = 0x00000010;
290 break;
291 case CS7:
292 r = 0x00000020;
293 break;
294 case CS8:
295 r = 0x00000030;
296 break;
297 }
298 r |= ((l & CSTOPB) ? 0x00000040 : 0);
299 r |= ((l & CREAD) ? 0x00000080 : 0);
300 r |= ((l & PARENB) ? 0x00000100 : 0);
301 r |= ((l & PARODD) ? 0x00000200 : 0);
302 r |= ((l & HUPCL) ? 0x00000400 : 0);
303 r |= ((l & CLOCAL) ? 0x00000800 : 0);
304 /* ((l & LOBLK) ? 0x00001000 : 0) */
305 r |= ((l & (CRTS_IFLOW|CCTS_OFLOW)) ? 0x80000000 : 0);
306 st->c_cflag = r;
307
308 l = bt->c_lflag;
309 r = ((l & ISIG) ? 0x00000001 : 0);
310 r |= ((l & ICANON) ? 0x00000002 : 0);
311 /* ((l & XCASE) ? 0x00000004 : 0) */
312 r |= ((l & ECHO) ? 0x00000008 : 0);
313 r |= ((l & ECHOE) ? 0x00000010 : 0);
314 r |= ((l & ECHOK) ? 0x00000020 : 0);
315 r |= ((l & ECHONL) ? 0x00000040 : 0);
316 r |= ((l & NOFLSH) ? 0x00000080 : 0);
317 r |= ((l & TOSTOP) ? 0x00000100 : 0);
318 r |= ((l & ECHOCTL) ? 0x00000200 : 0);
319 r |= ((l & ECHOPRT) ? 0x00000400 : 0);
320 r |= ((l & ECHOKE) ? 0x00000800 : 0);
321 /* ((l & DEFECHO) ? 0x00001000 : 0) */
322 r |= ((l & FLUSHO) ? 0x00002000 : 0);
323 r |= ((l & PENDIN) ? 0x00004000 : 0);
324 st->c_lflag = r;
325
326 l = ttspeedtab(bt->c_ospeed, sptab);
327 if (l >= 0)
328 st->c_cflag |= l;
329
330 st->c_cc[0] = bt->c_cc[VINTR] != _POSIX_VDISABLE? bt->c_cc[VINTR]:0;
331 st->c_cc[1] = bt->c_cc[VQUIT] != _POSIX_VDISABLE? bt->c_cc[VQUIT]:0;
332 st->c_cc[2] = bt->c_cc[VERASE] != _POSIX_VDISABLE? bt->c_cc[VERASE]:0;
333 st->c_cc[3] = bt->c_cc[VKILL] != _POSIX_VDISABLE? bt->c_cc[VKILL]:0;
334 st->c_cc[4] = bt->c_cc[VEOF] != _POSIX_VDISABLE? bt->c_cc[VEOF]:0;
335 st->c_cc[5] = bt->c_cc[VEOL] != _POSIX_VDISABLE? bt->c_cc[VEOL]:0;
336 st->c_cc[6] = bt->c_cc[VEOL2] != _POSIX_VDISABLE? bt->c_cc[VEOL2]:0;
337 st->c_cc[7] = 0;
338 /* bt->c_cc[VSWTCH] != _POSIX_VDISABLE? bt->c_cc[VSWTCH]: */
339 st->c_cc[8] = bt->c_cc[VSTART] != _POSIX_VDISABLE? bt->c_cc[VSTART]:0;
340 st->c_cc[9] = bt->c_cc[VSTOP] != _POSIX_VDISABLE? bt->c_cc[VSTOP]:0;
341 st->c_cc[10]= bt->c_cc[VSUSP] != _POSIX_VDISABLE? bt->c_cc[VSUSP]:0;
342 st->c_cc[11]= bt->c_cc[VDSUSP] != _POSIX_VDISABLE? bt->c_cc[VDSUSP]:0;
343 st->c_cc[12]= bt->c_cc[VREPRINT]!= _POSIX_VDISABLE? bt->c_cc[VREPRINT]:0;
344 st->c_cc[13]= bt->c_cc[VDISCARD]!= _POSIX_VDISABLE? bt->c_cc[VDISCARD]:0;
345 st->c_cc[14]= bt->c_cc[VWERASE] != _POSIX_VDISABLE? bt->c_cc[VWERASE]:0;
346 st->c_cc[15]= bt->c_cc[VLNEXT] != _POSIX_VDISABLE? bt->c_cc[VLNEXT]:0;
347 st->c_cc[16]= bt->c_cc[VSTATUS] != _POSIX_VDISABLE? bt->c_cc[VSTATUS]:0;
348
349 st->c_line = 0;
350 }
351
352 static void
353 stios2stio(ts, t)
354 struct sunos_termios *ts;
355 struct sunos_termio *t;
356 {
357 t->c_iflag = ts->c_iflag;
358 t->c_oflag = ts->c_oflag;
359 t->c_cflag = ts->c_cflag;
360 t->c_lflag = ts->c_lflag;
361 t->c_line = ts->c_line;
362 bcopy(ts->c_cc, t->c_cc, 8);
363 }
364
365 static void
366 stio2stios(t, ts)
367 struct sunos_termio *t;
368 struct sunos_termios *ts;
369 {
370 ts->c_iflag = t->c_iflag;
371 ts->c_oflag = t->c_oflag;
372 ts->c_cflag = t->c_cflag;
373 ts->c_lflag = t->c_lflag;
374 ts->c_line = t->c_line;
375 bcopy(t->c_cc, ts->c_cc, 8); /* don't touch the upper fields! */
376 }
377
378 int
379 sunos_ioctl(p, uap, retval)
380 register struct proc *p;
381 struct sunos_ioctl_args *uap;
382 register_t *retval;
383 {
384 register struct filedesc *fdp = p->p_fd;
385 register struct file *fp;
386 register int (*ctl)();
387 int error;
388
389 if ( (unsigned)SCARG(uap, fd) >= fdp->fd_nfiles ||
390 (fp = fdp->fd_ofiles[SCARG(uap, fd)]) == NULL)
391 return EBADF;
392
393 if ((fp->f_flag & (FREAD|FWRITE)) == 0)
394 return EBADF;
395
396 ctl = fp->f_ops->fo_ioctl;
397
398 switch (SCARG(uap, com)) {
399 case _IOR('t', 0, int):
400 SCARG(uap, com) = TIOCGETD;
401 break;
402 case _IOW('t', 1, int):
403 {
404 int disc;
405
406 if ((error = copyin(SCARG(uap, data), (caddr_t)&disc,
407 sizeof disc)) != 0)
408 return error;
409
410 /* map SunOS NTTYDISC into our termios discipline */
411 if (disc == 2)
412 disc = 0;
413 /* all other disciplines are not supported by NetBSD */
414 if (disc)
415 return ENXIO;
416
417 return (*ctl)(fp, TIOCSETD, (caddr_t)&disc, p);
418 }
419 case _IOW('t', 101, int): /* sun SUNOS_TIOCSSOFTCAR */
420 {
421 int x; /* unused */
422
423 return copyin((caddr_t)&x, SCARG(uap, data), sizeof x);
424 }
425 case _IOR('t', 100, int): /* sun SUNOS_TIOCSSOFTCAR */
426 {
427 int x = 0;
428
429 return copyout((caddr_t)&x, SCARG(uap, data), sizeof x);
430 }
431 case _IO('t', 36): /* sun TIOCCONS, no parameters */
432 {
433 int on = 1;
434 return (*ctl)(fp, TIOCCONS, (caddr_t)&on, p);
435 }
436 case _IOW('t', 37, struct sunos_ttysize):
437 {
438 struct winsize ws;
439 struct sunos_ttysize ss;
440
441 if ((error = (*ctl)(fp, TIOCGWINSZ, (caddr_t)&ws, p)) != 0)
442 return (error);
443
444 if ((error = copyin (SCARG(uap, data), &ss, sizeof (ss))) != 0)
445 return error;
446
447 ws.ws_row = ss.ts_row;
448 ws.ws_col = ss.ts_col;
449
450 return ((*ctl)(fp, TIOCSWINSZ, (caddr_t)&ws, p));
451 }
452 case _IOW('t', 38, struct sunos_ttysize):
453 {
454 struct winsize ws;
455 struct sunos_ttysize ss;
456
457 if ((error = (*ctl)(fp, TIOCGWINSZ, (caddr_t)&ws, p)) != 0)
458 return (error);
459
460 ss.ts_row = ws.ws_row;
461 ss.ts_col = ws.ws_col;
462
463 return copyout ((caddr_t)&ss, SCARG(uap, data), sizeof (ss));
464 }
465 case _IOW('t', 130, int):
466 SCARG(uap, com) = TIOCSPGRP;
467 break;
468 case _IOR('t', 131, int):
469 SCARG(uap, com) = TIOCGPGRP;
470 break;
471 case _IO('t', 132):
472 SCARG(uap, com) = TIOCSCTTY;
473 break;
474 case SUNOS_TCGETA:
475 case SUNOS_TCGETS:
476 {
477 struct termios bts;
478 struct sunos_termios sts;
479 struct sunos_termio st;
480
481 if ((error = (*ctl)(fp, TIOCGETA, (caddr_t)&bts, p)) != 0)
482 return error;
483
484 btios2stios (&bts, &sts);
485 if (SCARG(uap, com) == SUNOS_TCGETA) {
486 stios2stio (&sts, &st);
487 return copyout((caddr_t)&st, SCARG(uap, data),
488 sizeof (st));
489 } else
490 return copyout((caddr_t)&sts, SCARG(uap, data),
491 sizeof (sts));
492 /*NOTREACHED*/
493 }
494 case SUNOS_TCSETA:
495 case SUNOS_TCSETAW:
496 case SUNOS_TCSETAF:
497 {
498 struct termios bts;
499 struct sunos_termios sts;
500 struct sunos_termio st;
501
502 if ((error = copyin(SCARG(uap, data), (caddr_t)&st,
503 sizeof (st))) != 0)
504 return error;
505
506 /* get full BSD termios so we don't lose information */
507 if ((error = (*ctl)(fp, TIOCGETA, (caddr_t)&bts, p)) != 0)
508 return error;
509
510 /*
511 * convert to sun termios, copy in information from
512 * termio, and convert back, then set new values.
513 */
514 btios2stios(&bts, &sts);
515 stio2stios(&st, &sts);
516 stios2btios(&sts, &bts);
517
518 return (*ctl)(fp, SCARG(uap, com) - SUNOS_TCSETA + TIOCSETA,
519 (caddr_t)&bts, p);
520 }
521 case SUNOS_TCSETS:
522 case SUNOS_TCSETSW:
523 case SUNOS_TCSETSF:
524 {
525 struct termios bts;
526 struct sunos_termios sts;
527
528 if ((error = copyin (SCARG(uap, data), (caddr_t)&sts,
529 sizeof (sts))) != 0)
530 return error;
531 stios2btios (&sts, &bts);
532 return (*ctl)(fp, SCARG(uap, com) - SUNOS_TCSETS + TIOCSETA,
533 (caddr_t)&bts, p);
534 }
535 /*
536 * Pseudo-tty ioctl translations.
537 */
538 case _IOW('t', 32, int): { /* TIOCTCNTL */
539 int error, on;
540
541 if (error = copyin (SCARG(uap, data), (caddr_t)&on, sizeof (on)))
542 return error;
543 return (*ctl)(fp, TIOCUCNTL, (caddr_t)&on, p);
544 }
545 case _IOW('t', 33, int): { /* TIOCSIGNAL */
546 int error, sig;
547
548 if (error = copyin (SCARG(uap, data), (caddr_t)&sig, sizeof (sig)))
549 return error;
550 return (*ctl)(fp, TIOCSIG, (caddr_t)&sig, p);
551 }
552
553 /*
554 * Socket ioctl translations.
555 */
556 #define IFREQ_IN(a) { \
557 struct ifreq ifreq; \
558 if (error = copyin (SCARG(uap, data), (caddr_t)&ifreq, sizeof (ifreq))) \
559 return error; \
560 return (*ctl)(fp, a, (caddr_t)&ifreq, p); \
561 }
562 #define IFREQ_INOUT(a) { \
563 struct ifreq ifreq; \
564 if (error = copyin (SCARG(uap, data), (caddr_t)&ifreq, sizeof (ifreq))) \
565 return error; \
566 if (error = (*ctl)(fp, a, (caddr_t)&ifreq, p)) \
567 return error; \
568 return copyout ((caddr_t)&ifreq, SCARG(uap, data), sizeof (ifreq)); \
569 }
570
571 case _IOW('i', 12, struct ifreq):
572 /* SIOCSIFADDR */
573 break;
574
575 case _IOWR('i', 13, struct ifreq):
576 IFREQ_INOUT(OSIOCGIFADDR);
577
578 case _IOW('i', 14, struct ifreq):
579 /* SIOCSIFDSTADDR */
580 break;
581
582 case _IOWR('i', 15, struct ifreq):
583 IFREQ_INOUT(OSIOCGIFDSTADDR);
584
585 case _IOW('i', 16, struct ifreq):
586 /* SIOCSIFFLAGS */
587 break;
588
589 case _IOWR('i', 17, struct ifreq):
590 /* SIOCGIFFLAGS */
591 break;
592
593 case _IOW('i', 21, struct ifreq):
594 IFREQ_IN(SIOCSIFMTU);
595
596 case _IOWR('i', 22, struct ifreq):
597 IFREQ_INOUT(SIOCGIFMTU);
598
599 case _IOWR('i', 23, struct ifreq):
600 IFREQ_INOUT(SIOCGIFBRDADDR);
601
602 case _IOW('i', 24, struct ifreq):
603 IFREQ_IN(SIOCSIFBRDADDR);
604
605 case _IOWR('i', 25, struct ifreq):
606 IFREQ_INOUT(OSIOCGIFNETMASK);
607
608 case _IOW('i', 26, struct ifreq):
609 IFREQ_IN(SIOCSIFNETMASK);
610
611 case _IOWR('i', 27, struct ifreq):
612 IFREQ_INOUT(SIOCGIFMETRIC);
613
614 case _IOWR('i', 28, struct ifreq):
615 IFREQ_IN(SIOCSIFMETRIC);
616
617 case _IOW('i', 30, struct arpreq):
618 /* SIOCSARP */
619 break;
620
621 case _IOWR('i', 31, struct arpreq):
622 /* SIOCGARP */
623 break;
624
625 case _IOW('i', 32, struct arpreq):
626 /* SIOCDARP */
627 break;
628
629 case _IOW('i', 18, struct ifreq): /* SIOCSIFMEM */
630 case _IOWR('i', 19, struct ifreq): /* SIOCGIFMEM */
631 case _IOW('i', 40, struct ifreq): /* SIOCUPPER */
632 case _IOW('i', 41, struct ifreq): /* SIOCLOWER */
633 case _IOW('i', 44, struct ifreq): /* SIOCSETSYNC */
634 case _IOWR('i', 45, struct ifreq): /* SIOCGETSYNC */
635 case _IOWR('i', 46, struct ifreq): /* SIOCSDSTATS */
636 case _IOWR('i', 47, struct ifreq): /* SIOCSESTATS */
637 case _IOW('i', 48, int): /* SIOCSPROMISC */
638 case _IOW('i', 49, struct ifreq): /* SIOCADDMULTI */
639 case _IOW('i', 50, struct ifreq): /* SIOCDELMULTI */
640 return EOPNOTSUPP;
641
642 case _IOWR('i', 20, struct ifconf): /* SIOCGIFCONF */
643 {
644 struct ifconf ifconf;
645
646 /*
647 * XXX: two more problems
648 * 1. our sockaddr's are variable length, not always sizeof(sockaddr)
649 * 2. this returns a name per protocol, ie. it returns two "lo0"'s
650 */
651 if (error = copyin (SCARG(uap, data), (caddr_t)&ifconf,
652 sizeof (ifconf)))
653 return error;
654 if (error = (*ctl)(fp, OSIOCGIFCONF, (caddr_t)&ifconf, p))
655 return error;
656 return copyout ((caddr_t)&ifconf, SCARG(uap, data),
657 sizeof (ifconf));
658 }
659
660 /*
661 * Audio ioctl translations.
662 */
663 case _IOR('A', 1, struct sunos_audio_info): /* AUDIO_GETINFO */
664 {
665 struct audio_info aui;
666 struct sunos_audio_info sunos_aui;
667
668 if (error = (*ctl)(fp, AUDIO_GETINFO, (caddr_t)&aui, p))
669 return error;
670
671 sunos_aui.play = *(struct sunos_audio_prinfo *)&aui.play;
672 sunos_aui.record = *(struct sunos_audio_prinfo *)&aui.record;
673 sunos_aui.monitor_gain = aui.__spare; /* XXX */
674
675 /* `avail_ports' is `seek' in BSD */
676 #define AUDIO_SPEAKER 1
677 #define AUDIO_HEADPHONE 2
678 sunos_aui.play.avail_ports = AUDIO_SPEAKER | AUDIO_HEADPHONE;
679 sunos_aui.record.avail_ports = AUDIO_SPEAKER | AUDIO_HEADPHONE;
680
681 sunos_aui.play.waiting = 0;
682 sunos_aui.record.waiting = 0;
683 sunos_aui.play.eof = 0;
684 sunos_aui.record.eof = 0;
685
686 return copyout ((caddr_t)&sunos_aui, SCARG(uap, data),
687 sizeof (sunos_aui));
688 }
689
690 case _IOWR('A', 2, struct sunos_audio_info): /* AUDIO_SETINFO */
691 {
692 struct audio_info aui;
693 struct sunos_audio_info sunos_aui;
694
695 if (error = copyin (SCARG(uap, data), (caddr_t)&sunos_aui,
696 sizeof (sunos_aui)))
697 return error;
698
699 aui.play = *(struct audio_prinfo *)&sunos_aui.play;
700 aui.record = *(struct audio_prinfo *)&sunos_aui.record;
701 aui.__spare = sunos_aui.monitor_gain;
702 aui.blocksize = ~0;
703 aui.hiwat = ~0;
704 aui.lowat = ~0;
705 aui.backlog = ~0;
706 /*
707 * The bsd driver does not distinguish between paused and
708 * active. (In the sun driver, not active means samples are
709 * not ouput at all, but paused means the last streams buffer
710 * is drained and then output stops.) If either are 0, then
711 * when stop output. Otherwise, if either are non-zero,
712 * we resume.
713 */
714 if (sunos_aui.play.pause == 0 || sunos_aui.play.active == 0)
715 aui.play.pause = 0;
716 else if (sunos_aui.play.pause != (u_char)~0 ||
717 sunos_aui.play.active != (u_char)~0)
718 aui.play.pause = 1;
719 if (sunos_aui.record.pause == 0 || sunos_aui.record.active == 0)
720 aui.record.pause = 0;
721 else if (sunos_aui.record.pause != (u_char)~0 ||
722 sunos_aui.record.active != (u_char)~0)
723 aui.record.pause = 1;
724
725 return (*ctl)(fp, AUDIO_SETINFO, (caddr_t)&aui, p);
726 }
727 case _IO('A', 3): /* AUDIO_DRAIN */
728 return (*ctl)(fp, AUDIO_DRAIN, (void *)0, p);
729 case _IOR('A', 4, int): /* AUDIO_GETDEV */
730 {
731 int devtype = SUNOS_AUDIO_DEV_AMD;
732 return copyout ((caddr_t)&devtype, SCARG(uap, data),
733 sizeof (devtype));
734 }
735 }
736 return (ioctl(p, uap, retval));
737 }
738