netbsd32_ioctl.c revision 1.67.4.1 1 1.67.4.1 rmind /* $NetBSD: netbsd32_ioctl.c,v 1.67.4.1 2014/05/18 17:45:33 rmind Exp $ */
2 1.1 mrg
3 1.1 mrg /*
4 1.11 mrg * Copyright (c) 1998, 2001 Matthew R. Green
5 1.1 mrg * All rights reserved.
6 1.1 mrg *
7 1.1 mrg * Redistribution and use in source and binary forms, with or without
8 1.1 mrg * modification, are permitted provided that the following conditions
9 1.1 mrg * are met:
10 1.1 mrg * 1. Redistributions of source code must retain the above copyright
11 1.1 mrg * notice, this list of conditions and the following disclaimer.
12 1.1 mrg * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 mrg * notice, this list of conditions and the following disclaimer in the
14 1.1 mrg * documentation and/or other materials provided with the distribution.
15 1.1 mrg *
16 1.1 mrg * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17 1.1 mrg * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 1.1 mrg * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 1.1 mrg * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 1.1 mrg * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
21 1.1 mrg * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
22 1.1 mrg * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
23 1.1 mrg * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
24 1.1 mrg * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 1.1 mrg * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 1.1 mrg * SUCH DAMAGE.
27 1.1 mrg */
28 1.1 mrg
29 1.1 mrg /*
30 1.14 mrg * handle ioctl conversions from netbsd32 -> 64-bit kernel
31 1.1 mrg */
32 1.13 lukem
33 1.13 lukem #include <sys/cdefs.h>
34 1.67.4.1 rmind __KERNEL_RCSID(0, "$NetBSD: netbsd32_ioctl.c,v 1.67.4.1 2014/05/18 17:45:33 rmind Exp $");
35 1.1 mrg
36 1.1 mrg #include <sys/param.h>
37 1.1 mrg #include <sys/systm.h>
38 1.7 eeh #include <sys/filedesc.h>
39 1.7 eeh #include <sys/ioctl.h>
40 1.7 eeh #include <sys/file.h>
41 1.7 eeh #include <sys/proc.h>
42 1.7 eeh #include <sys/socketvar.h>
43 1.1 mrg #include <sys/audioio.h>
44 1.1 mrg #include <sys/disklabel.h>
45 1.1 mrg #include <sys/dkio.h>
46 1.67.4.1 rmind #include <sys/ataio.h>
47 1.1 mrg #include <sys/sockio.h>
48 1.1 mrg #include <sys/socket.h>
49 1.1 mrg #include <sys/ttycom.h>
50 1.1 mrg #include <sys/mount.h>
51 1.1 mrg #include <sys/syscallargs.h>
52 1.33 njoly #include <sys/ktrace.h>
53 1.38 ad #include <sys/kmem.h>
54 1.51 njoly #include <sys/envsys.h>
55 1.57 bouyer #include <sys/wdog.h>
56 1.65 christos #include <sys/clockctl.h>
57 1.1 mrg
58 1.10 fvdl #ifdef __sparc__
59 1.12 thorpej #include <dev/sun/fbio.h>
60 1.1 mrg #include <machine/openpromio.h>
61 1.10 fvdl #endif
62 1.1 mrg
63 1.1 mrg #include <net/if.h>
64 1.1 mrg #include <net/route.h>
65 1.1 mrg
66 1.60 bouyer #include <net/bpf.h>
67 1.1 mrg #include <netinet/in.h>
68 1.1 mrg #include <netinet/in_var.h>
69 1.1 mrg #include <netinet/igmp.h>
70 1.1 mrg #include <netinet/igmp_var.h>
71 1.1 mrg #include <netinet/ip_mroute.h>
72 1.1 mrg
73 1.34 christos #include <compat/sys/sockio.h>
74 1.34 christos
75 1.2 mrg #include <compat/netbsd32/netbsd32.h>
76 1.2 mrg #include <compat/netbsd32/netbsd32_ioctl.h>
77 1.2 mrg #include <compat/netbsd32/netbsd32_syscallargs.h>
78 1.1 mrg
79 1.49 mrg #include <dev/vndvar.h>
80 1.49 mrg
81 1.6 mrg /* convert to/from different structures */
82 1.6 mrg
83 1.25 perry static inline void
84 1.36 dsl netbsd32_to_partinfo(struct netbsd32_partinfo *s32p, struct partinfo *p, u_long cmd)
85 1.1 mrg {
86 1.1 mrg
87 1.15 scw p->disklab = (struct disklabel *)NETBSD32PTR64(s32p->disklab);
88 1.15 scw p->part = (struct partition *)NETBSD32PTR64(s32p->part);
89 1.1 mrg }
90 1.1 mrg
91 1.17 fvdl #if 0
92 1.25 perry static inline void
93 1.36 dsl netbsd32_to_format_op(struct netbsd32_format_op *s32p, struct format_op *p, u_long cmd)
94 1.1 mrg {
95 1.1 mrg
96 1.15 scw p->df_buf = (char *)NETBSD32PTR64(s32p->df_buf);
97 1.1 mrg p->df_count = s32p->df_count;
98 1.1 mrg p->df_startblk = s32p->df_startblk;
99 1.1 mrg memcpy(p->df_reg, s32p->df_reg, sizeof(s32p->df_reg));
100 1.1 mrg }
101 1.17 fvdl #endif
102 1.1 mrg
103 1.25 perry static inline void
104 1.36 dsl netbsd32_to_ifreq(struct netbsd32_ifreq *s32p, struct ifreq *p, u_long cmd)
105 1.1 mrg {
106 1.1 mrg
107 1.22 mrg memcpy(p, s32p, sizeof *s32p);
108 1.1 mrg /*
109 1.1 mrg * XXX
110 1.1 mrg * struct ifreq says the same, but sometimes the ifr_data
111 1.1 mrg * union member needs to be converted to 64 bits... this
112 1.1 mrg * is very driver specific and so we ignore it for now..
113 1.1 mrg */
114 1.22 mrg if (cmd == SIOCGIFDATA || cmd == SIOCZIFDATA)
115 1.29 christos p->ifr_data = (void *)NETBSD32PTR64(s32p->ifr_data);
116 1.1 mrg }
117 1.1 mrg
118 1.25 perry static inline void
119 1.43 christos netbsd32_to_oifreq(struct netbsd32_oifreq *s32p, struct oifreq *p, u_long cmd)
120 1.43 christos {
121 1.43 christos
122 1.43 christos memcpy(p, s32p, sizeof *s32p);
123 1.43 christos /*
124 1.43 christos * XXX
125 1.43 christos * struct ifreq says the same, but sometimes the ifr_data
126 1.43 christos * union member needs to be converted to 64 bits... this
127 1.43 christos * is very driver specific and so we ignore it for now..
128 1.43 christos */
129 1.43 christos if (cmd == SIOCGIFDATA || cmd == SIOCZIFDATA)
130 1.43 christos p->ifr_data = (void *)NETBSD32PTR64(s32p->ifr_data);
131 1.43 christos }
132 1.43 christos
133 1.43 christos static inline void
134 1.54 matt netbsd32_to_if_addrprefreq(const struct netbsd32_if_addrprefreq *ifap32,
135 1.54 matt struct if_addrprefreq *ifap, u_long cmd)
136 1.54 matt {
137 1.54 matt strlcpy(ifap->ifap_name, ifap32->ifap_name, sizeof(ifap->ifap_name));
138 1.54 matt ifap->ifap_preference = ifap32->ifap_preference;
139 1.54 matt memcpy(&ifap->ifap_addr, &ifap32->ifap_addr,
140 1.54 matt max(ifap32->ifap_addr.ss_len, _SS_MAXSIZE));
141 1.54 matt }
142 1.54 matt
143 1.54 matt static inline void
144 1.36 dsl netbsd32_to_ifconf(struct netbsd32_ifconf *s32p, struct ifconf *p, u_long cmd)
145 1.1 mrg {
146 1.1 mrg
147 1.1 mrg p->ifc_len = s32p->ifc_len;
148 1.1 mrg /* ifc_buf & ifc_req are the same size so this works */
149 1.29 christos p->ifc_buf = (void *)NETBSD32PTR64(s32p->ifc_buf);
150 1.1 mrg }
151 1.1 mrg
152 1.25 perry static inline void
153 1.36 dsl netbsd32_to_ifmediareq(struct netbsd32_ifmediareq *s32p, struct ifmediareq *p, u_long cmd)
154 1.1 mrg {
155 1.1 mrg
156 1.1 mrg memcpy(p, s32p, sizeof *s32p);
157 1.15 scw p->ifm_ulist = (int *)NETBSD32PTR64(s32p->ifm_ulist);
158 1.1 mrg }
159 1.1 mrg
160 1.25 perry static inline void
161 1.36 dsl netbsd32_to_ifdrv(struct netbsd32_ifdrv *s32p, struct ifdrv *p, u_long cmd)
162 1.1 mrg {
163 1.1 mrg
164 1.1 mrg memcpy(p, s32p, sizeof *s32p);
165 1.15 scw p->ifd_data = (void *)NETBSD32PTR64(s32p->ifd_data);
166 1.1 mrg }
167 1.1 mrg
168 1.25 perry static inline void
169 1.36 dsl netbsd32_to_sioc_vif_req(struct netbsd32_sioc_vif_req *s32p, struct sioc_vif_req *p, u_long cmd)
170 1.1 mrg {
171 1.1 mrg
172 1.1 mrg p->vifi = s32p->vifi;
173 1.1 mrg p->icount = (u_long)s32p->icount;
174 1.1 mrg p->ocount = (u_long)s32p->ocount;
175 1.1 mrg p->ibytes = (u_long)s32p->ibytes;
176 1.1 mrg p->obytes = (u_long)s32p->obytes;
177 1.1 mrg }
178 1.1 mrg
179 1.25 perry static inline void
180 1.36 dsl netbsd32_to_sioc_sg_req(struct netbsd32_sioc_sg_req *s32p, struct sioc_sg_req *p, u_long cmd)
181 1.1 mrg {
182 1.1 mrg
183 1.1 mrg p->src = s32p->src;
184 1.1 mrg p->grp = s32p->grp;
185 1.1 mrg p->pktcnt = (u_long)s32p->pktcnt;
186 1.1 mrg p->bytecnt = (u_long)s32p->bytecnt;
187 1.1 mrg p->wrong_if = (u_long)s32p->wrong_if;
188 1.1 mrg }
189 1.1 mrg
190 1.48 mrg static inline void
191 1.67.4.1 rmind netbsd32_to_atareq(struct netbsd32_atareq *s32p, struct atareq *p, u_long cmd)
192 1.67.4.1 rmind {
193 1.67.4.1 rmind p->flags = (u_long)s32p->flags;
194 1.67.4.1 rmind p->command = s32p->command;
195 1.67.4.1 rmind p->features = s32p->features;
196 1.67.4.1 rmind p->sec_count = s32p->sec_count;
197 1.67.4.1 rmind p->sec_num = s32p->sec_num;
198 1.67.4.1 rmind p->head = s32p->head;
199 1.67.4.1 rmind p->cylinder = s32p->cylinder;
200 1.67.4.1 rmind p->databuf = (char *)NETBSD32PTR64(s32p->databuf);
201 1.67.4.1 rmind p->datalen = (u_long)s32p->datalen;
202 1.67.4.1 rmind p->timeout = s32p->timeout;
203 1.67.4.1 rmind p->retsts = s32p->retsts;
204 1.67.4.1 rmind p->error = s32p->error;
205 1.67.4.1 rmind }
206 1.67.4.1 rmind
207 1.67.4.1 rmind static inline void
208 1.48 mrg netbsd32_to_vnd_ioctl(struct netbsd32_vnd_ioctl *s32p, struct vnd_ioctl *p, u_long cmd)
209 1.48 mrg {
210 1.48 mrg
211 1.48 mrg p->vnd_file = (char *)NETBSD32PTR64(s32p->vnd_file);
212 1.48 mrg p->vnd_flags = s32p->vnd_flags;
213 1.48 mrg p->vnd_geom = s32p->vnd_geom;
214 1.48 mrg p->vnd_osize = s32p->vnd_osize;
215 1.48 mrg p->vnd_size = s32p->vnd_size;
216 1.48 mrg }
217 1.48 mrg
218 1.48 mrg static inline void
219 1.48 mrg netbsd32_to_vnd_user(struct netbsd32_vnd_user *s32p, struct vnd_user *p, u_long cmd)
220 1.48 mrg {
221 1.48 mrg
222 1.48 mrg p->vnu_unit = s32p->vnu_unit;
223 1.48 mrg p->vnu_dev = s32p->vnu_dev;
224 1.48 mrg p->vnu_ino = s32p->vnu_ino;
225 1.48 mrg }
226 1.48 mrg
227 1.49 mrg static inline void
228 1.49 mrg netbsd32_to_vnd_ioctl50(struct netbsd32_vnd_ioctl50 *s32p, struct vnd_ioctl50 *p, u_long cmd)
229 1.49 mrg {
230 1.49 mrg
231 1.49 mrg p->vnd_file = (char *)NETBSD32PTR64(s32p->vnd_file);
232 1.49 mrg p->vnd_flags = s32p->vnd_flags;
233 1.49 mrg p->vnd_geom = s32p->vnd_geom;
234 1.49 mrg p->vnd_size = s32p->vnd_size;
235 1.49 mrg }
236 1.49 mrg
237 1.50 mrg static inline void
238 1.51 njoly netbsd32_to_plistref(struct netbsd32_plistref *s32p, struct plistref *p, u_long cmd)
239 1.51 njoly {
240 1.51 njoly
241 1.51 njoly p->pref_plist = NETBSD32PTR64(s32p->pref_plist);
242 1.51 njoly p->pref_len = s32p->pref_len;
243 1.51 njoly }
244 1.51 njoly
245 1.51 njoly static inline void
246 1.50 mrg netbsd32_to_u_long(netbsd32_u_long *s32p, u_long *p, u_long cmd)
247 1.50 mrg {
248 1.50 mrg
249 1.50 mrg *p = (u_long)*s32p;
250 1.50 mrg }
251 1.50 mrg
252 1.57 bouyer static inline void
253 1.57 bouyer netbsd32_to_wdog_conf(struct netbsd32_wdog_conf *s32p, struct wdog_conf *p, u_long cmd)
254 1.57 bouyer {
255 1.57 bouyer
256 1.57 bouyer p->wc_names = (char *)NETBSD32PTR64(s32p->wc_names);
257 1.57 bouyer p->wc_count = s32p->wc_count;
258 1.57 bouyer }
259 1.57 bouyer
260 1.60 bouyer static inline void
261 1.60 bouyer netbsd32_to_bpf_program(struct netbsd32_bpf_program *s32p, struct bpf_program *p, u_long cmd)
262 1.60 bouyer {
263 1.60 bouyer
264 1.60 bouyer p->bf_insns = (void *)NETBSD32PTR64(s32p->bf_insns);
265 1.60 bouyer p->bf_len = s32p->bf_len;
266 1.60 bouyer }
267 1.60 bouyer
268 1.60 bouyer static inline void
269 1.60 bouyer netbsd32_to_bpf_dltlist(struct netbsd32_bpf_dltlist *s32p, struct bpf_dltlist *p, u_long cmd)
270 1.60 bouyer {
271 1.60 bouyer
272 1.60 bouyer p->bfl_list = (void *)NETBSD32PTR64(s32p->bfl_list);
273 1.60 bouyer p->bfl_len = s32p->bfl_len;
274 1.60 bouyer }
275 1.60 bouyer
276 1.58 macallan /* wsdisplay stuff */
277 1.58 macallan static inline void
278 1.58 macallan netbsd32_to_wsdisplay_addscreendata(struct netbsd32_wsdisplay_addscreendata *asd32,
279 1.58 macallan struct wsdisplay_addscreendata *asd,
280 1.58 macallan u_long cmd)
281 1.58 macallan {
282 1.58 macallan asd->screentype = (char *)NETBSD32PTR64(asd32->screentype);
283 1.58 macallan asd->emul = (char *)NETBSD32PTR64(asd32->emul);
284 1.58 macallan asd->idx = asd32->idx;
285 1.58 macallan }
286 1.58 macallan
287 1.59 macallan static inline void
288 1.66 christos netbsd32_to_ieee80211req(struct netbsd32_ieee80211req *ireq32,
289 1.66 christos struct ieee80211req *ireq, u_long cmd)
290 1.66 christos {
291 1.66 christos strncpy(ireq->i_name, ireq32->i_name, IFNAMSIZ);
292 1.66 christos ireq->i_type = ireq32->i_type;
293 1.66 christos ireq->i_val = ireq32->i_val;
294 1.66 christos ireq->i_len = ireq32->i_len;
295 1.66 christos ireq->i_data = NETBSD32PTR64(ireq32->i_data);
296 1.66 christos }
297 1.66 christos
298 1.66 christos static inline void
299 1.59 macallan netbsd32_to_ieee80211_nwkey(struct netbsd32_ieee80211_nwkey *nwk32,
300 1.59 macallan struct ieee80211_nwkey *nwk,
301 1.59 macallan u_long cmd)
302 1.59 macallan {
303 1.59 macallan int i;
304 1.59 macallan
305 1.59 macallan strncpy(nwk->i_name, nwk32->i_name, IFNAMSIZ);
306 1.59 macallan nwk->i_wepon = nwk32->i_wepon;
307 1.59 macallan nwk->i_defkid = nwk32->i_defkid;
308 1.59 macallan for (i = 0; i < IEEE80211_WEP_NKID; i++) {
309 1.59 macallan nwk->i_key[i].i_keylen = nwk32->i_key[i].i_keylen;
310 1.59 macallan nwk->i_key[i].i_keydat =
311 1.59 macallan NETBSD32PTR64(nwk32->i_key[i].i_keydat);
312 1.59 macallan }
313 1.59 macallan }
314 1.59 macallan
315 1.62 macallan static inline void
316 1.62 macallan netbsd32_to_wsdisplay_cursor(struct netbsd32_wsdisplay_cursor *c32,
317 1.62 macallan struct wsdisplay_cursor *c,
318 1.62 macallan u_long cmd)
319 1.62 macallan {
320 1.62 macallan c->which = c32->which;
321 1.62 macallan c->enable = c32->enable;
322 1.62 macallan c->pos.x = c32->pos.x;
323 1.62 macallan c->pos.y = c32->pos.y;
324 1.62 macallan c->hot.x = c32->hot.x;
325 1.62 macallan c->hot.y = c32->hot.y;
326 1.62 macallan c->size.x = c32->size.x;
327 1.62 macallan c->size.y = c32->size.y;
328 1.62 macallan c->cmap.index = c32->cmap.index;
329 1.62 macallan c->cmap.count = c32->cmap.count;
330 1.62 macallan c->cmap.red = NETBSD32PTR64(c32->cmap.red);
331 1.62 macallan c->cmap.green = NETBSD32PTR64(c32->cmap.green);
332 1.62 macallan c->cmap.blue = NETBSD32PTR64(c32->cmap.blue);
333 1.62 macallan c->image = NETBSD32PTR64(c32->image);
334 1.62 macallan c->mask = NETBSD32PTR64(c32->mask);
335 1.62 macallan }
336 1.62 macallan
337 1.65 christos static inline void
338 1.67.4.1 rmind netbsd32_to_wsdisplay_cmap(struct netbsd32_wsdisplay_cmap *c32,
339 1.67.4.1 rmind struct wsdisplay_cmap *c,
340 1.67.4.1 rmind u_long cmd)
341 1.67.4.1 rmind {
342 1.67.4.1 rmind c->index = c32->index;
343 1.67.4.1 rmind c->count = c32->count;
344 1.67.4.1 rmind c->red = NETBSD32PTR64(c32->red);
345 1.67.4.1 rmind c->green = NETBSD32PTR64(c32->green);
346 1.67.4.1 rmind c->blue = NETBSD32PTR64(c32->blue);
347 1.67.4.1 rmind }
348 1.67.4.1 rmind
349 1.67.4.1 rmind static inline void
350 1.65 christos netbsd32_to_clockctl_settimeofday(
351 1.65 christos const struct netbsd32_clockctl_settimeofday *s32p,
352 1.65 christos struct clockctl_settimeofday *p,
353 1.65 christos u_long cmd)
354 1.65 christos {
355 1.65 christos
356 1.65 christos p->tv = NETBSD32PTR64(s32p->tv);
357 1.65 christos p->tzp = NETBSD32PTR64(s32p->tzp);
358 1.65 christos }
359 1.65 christos
360 1.65 christos static inline void
361 1.65 christos netbsd32_to_clockctl_adjtime(
362 1.65 christos const struct netbsd32_clockctl_adjtime *s32p,
363 1.65 christos struct clockctl_adjtime *p,
364 1.65 christos u_long cmd)
365 1.65 christos {
366 1.65 christos
367 1.65 christos p->delta = NETBSD32PTR64(s32p->delta);
368 1.65 christos p->olddelta = NETBSD32PTR64(s32p->olddelta);
369 1.65 christos }
370 1.65 christos
371 1.65 christos static inline void
372 1.65 christos netbsd32_to_clockctl_clock_settime(
373 1.65 christos const struct netbsd32_clockctl_clock_settime *s32p,
374 1.65 christos struct clockctl_clock_settime *p,
375 1.65 christos u_long cmd)
376 1.65 christos {
377 1.65 christos
378 1.65 christos p->clock_id = s32p->clock_id;
379 1.65 christos p->tp = NETBSD32PTR64(s32p->tp);
380 1.65 christos }
381 1.65 christos
382 1.65 christos static inline void
383 1.65 christos netbsd32_to_clockctl_ntp_adjtime(
384 1.65 christos const struct netbsd32_clockctl_ntp_adjtime *s32p,
385 1.65 christos struct clockctl_ntp_adjtime *p,
386 1.65 christos u_long cmd)
387 1.65 christos {
388 1.65 christos
389 1.65 christos p->tp = NETBSD32PTR64(s32p->tp);
390 1.65 christos p->retval = s32p->retval;
391 1.65 christos }
392 1.65 christos
393 1.1 mrg /*
394 1.14 mrg * handle ioctl conversions from 64-bit kernel -> netbsd32
395 1.1 mrg */
396 1.1 mrg
397 1.25 perry static inline void
398 1.36 dsl netbsd32_from_partinfo(struct partinfo *p, struct netbsd32_partinfo *s32p, u_long cmd)
399 1.7 eeh {
400 1.7 eeh
401 1.31 dsl NETBSD32PTR32(s32p->disklab, p->disklab);
402 1.31 dsl NETBSD32PTR32(s32p->part, p->part);
403 1.7 eeh }
404 1.7 eeh
405 1.17 fvdl #if 0
406 1.25 perry static inline void
407 1.36 dsl netbsd32_from_format_op(struct format_op *p, struct netbsd32_format_op *s32p, u_long cmd)
408 1.1 mrg {
409 1.1 mrg
410 1.1 mrg /* filled in */
411 1.1 mrg #if 0
412 1.2 mrg s32p->df_buf = (netbsd32_charp)p->df_buf;
413 1.1 mrg #endif
414 1.1 mrg s32p->df_count = p->df_count;
415 1.1 mrg s32p->df_startblk = p->df_startblk;
416 1.1 mrg memcpy(s32p->df_reg, p->df_reg, sizeof(p->df_reg));
417 1.1 mrg }
418 1.17 fvdl #endif
419 1.1 mrg
420 1.25 perry static inline void
421 1.36 dsl netbsd32_from_ifreq(struct ifreq *p, struct netbsd32_ifreq *s32p, u_long cmd)
422 1.1 mrg {
423 1.1 mrg
424 1.1 mrg /*
425 1.1 mrg * XXX
426 1.1 mrg * struct ifreq says the same, but sometimes the ifr_data
427 1.1 mrg * union member needs to be converted to 64 bits... this
428 1.1 mrg * is very driver specific and so we ignore it for now..
429 1.1 mrg */
430 1.46 njoly memcpy(s32p, p, sizeof *s32p);
431 1.43 christos if (cmd == SIOCGIFDATA || cmd == SIOCZIFDATA)
432 1.43 christos NETBSD32PTR32(s32p->ifr_data, p->ifr_data);
433 1.43 christos }
434 1.43 christos
435 1.43 christos static inline void
436 1.43 christos netbsd32_from_oifreq(struct oifreq *p, struct netbsd32_oifreq *s32p, u_long cmd)
437 1.43 christos {
438 1.43 christos
439 1.43 christos /*
440 1.43 christos * XXX
441 1.43 christos * struct ifreq says the same, but sometimes the ifr_data
442 1.43 christos * union member needs to be converted to 64 bits... this
443 1.43 christos * is very driver specific and so we ignore it for now..
444 1.43 christos */
445 1.46 njoly memcpy(s32p, p, sizeof *s32p);
446 1.22 mrg if (cmd == SIOCGIFDATA || cmd == SIOCZIFDATA)
447 1.31 dsl NETBSD32PTR32(s32p->ifr_data, p->ifr_data);
448 1.1 mrg }
449 1.1 mrg
450 1.25 perry static inline void
451 1.54 matt netbsd32_from_if_addrprefreq(const struct if_addrprefreq *ifap,
452 1.54 matt struct netbsd32_if_addrprefreq *ifap32, u_long cmd)
453 1.54 matt {
454 1.54 matt strlcpy(ifap32->ifap_name, ifap->ifap_name, sizeof(ifap32->ifap_name));
455 1.54 matt ifap32->ifap_preference = ifap->ifap_preference;
456 1.54 matt memcpy(&ifap32->ifap_addr, &ifap->ifap_addr,
457 1.54 matt max(ifap->ifap_addr.ss_len, _SS_MAXSIZE));
458 1.54 matt }
459 1.54 matt
460 1.54 matt static inline void
461 1.36 dsl netbsd32_from_ifconf(struct ifconf *p, struct netbsd32_ifconf *s32p, u_long cmd)
462 1.1 mrg {
463 1.1 mrg
464 1.1 mrg s32p->ifc_len = p->ifc_len;
465 1.1 mrg /* ifc_buf & ifc_req are the same size so this works */
466 1.31 dsl NETBSD32PTR32(s32p->ifc_buf, p->ifc_buf);
467 1.1 mrg }
468 1.1 mrg
469 1.25 perry static inline void
470 1.36 dsl netbsd32_from_ifmediareq(struct ifmediareq *p, struct netbsd32_ifmediareq *s32p, u_long cmd)
471 1.1 mrg {
472 1.1 mrg
473 1.1 mrg memcpy(s32p, p, sizeof *p);
474 1.1 mrg /* filled in? */
475 1.1 mrg #if 0
476 1.2 mrg s32p->ifm_ulist = (netbsd32_intp_t)p->ifm_ulist;
477 1.1 mrg #endif
478 1.1 mrg }
479 1.1 mrg
480 1.25 perry static inline void
481 1.36 dsl netbsd32_from_ifdrv(struct ifdrv *p, struct netbsd32_ifdrv *s32p, u_long cmd)
482 1.1 mrg {
483 1.1 mrg
484 1.1 mrg memcpy(s32p, p, sizeof *p);
485 1.1 mrg /* filled in? */
486 1.1 mrg #if 0
487 1.2 mrg s32p->ifm_data = (netbsd32_u_longp_t)p->ifm_data;
488 1.1 mrg #endif
489 1.1 mrg }
490 1.1 mrg
491 1.25 perry static inline void
492 1.36 dsl netbsd32_from_sioc_vif_req(struct sioc_vif_req *p, struct netbsd32_sioc_vif_req *s32p, u_long cmd)
493 1.1 mrg {
494 1.1 mrg
495 1.1 mrg s32p->vifi = p->vifi;
496 1.2 mrg s32p->icount = (netbsd32_u_long)p->icount;
497 1.2 mrg s32p->ocount = (netbsd32_u_long)p->ocount;
498 1.2 mrg s32p->ibytes = (netbsd32_u_long)p->ibytes;
499 1.2 mrg s32p->obytes = (netbsd32_u_long)p->obytes;
500 1.1 mrg }
501 1.1 mrg
502 1.25 perry static inline void
503 1.36 dsl netbsd32_from_sioc_sg_req(struct sioc_sg_req *p, struct netbsd32_sioc_sg_req *s32p, u_long cmd)
504 1.1 mrg {
505 1.1 mrg
506 1.1 mrg s32p->src = p->src;
507 1.1 mrg s32p->grp = p->grp;
508 1.2 mrg s32p->pktcnt = (netbsd32_u_long)p->pktcnt;
509 1.2 mrg s32p->bytecnt = (netbsd32_u_long)p->bytecnt;
510 1.2 mrg s32p->wrong_if = (netbsd32_u_long)p->wrong_if;
511 1.1 mrg }
512 1.1 mrg
513 1.48 mrg static inline void
514 1.67.4.1 rmind netbsd32_from_atareq(struct atareq *p, struct netbsd32_atareq *s32p, u_long cmd)
515 1.67.4.1 rmind {
516 1.67.4.1 rmind s32p->flags = (netbsd32_u_long)p->flags;
517 1.67.4.1 rmind s32p->command = p->command;
518 1.67.4.1 rmind s32p->features = p->features;
519 1.67.4.1 rmind s32p->sec_count = p->sec_count;
520 1.67.4.1 rmind s32p->sec_num = p->sec_num;
521 1.67.4.1 rmind s32p->head = p->head;
522 1.67.4.1 rmind s32p->cylinder = p->cylinder;
523 1.67.4.1 rmind NETBSD32PTR32(s32p->databuf, p->databuf);
524 1.67.4.1 rmind s32p->datalen = (netbsd32_u_long)p->datalen;
525 1.67.4.1 rmind s32p->timeout = p->timeout;
526 1.67.4.1 rmind s32p->retsts = p->retsts;
527 1.67.4.1 rmind s32p->error = p->error;
528 1.67.4.1 rmind }
529 1.67.4.1 rmind
530 1.67.4.1 rmind static inline void
531 1.48 mrg netbsd32_from_vnd_ioctl(struct vnd_ioctl *p, struct netbsd32_vnd_ioctl *s32p, u_long cmd)
532 1.48 mrg {
533 1.48 mrg
534 1.48 mrg s32p->vnd_flags = p->vnd_flags;
535 1.48 mrg s32p->vnd_geom = p->vnd_geom;
536 1.48 mrg s32p->vnd_osize = p->vnd_osize;
537 1.48 mrg s32p->vnd_size = p->vnd_size;
538 1.48 mrg }
539 1.48 mrg
540 1.48 mrg static inline void
541 1.48 mrg netbsd32_from_vnd_user(struct vnd_user *p, struct netbsd32_vnd_user *s32p, u_long cmd)
542 1.48 mrg {
543 1.48 mrg
544 1.48 mrg s32p->vnu_unit = p->vnu_unit;
545 1.48 mrg s32p->vnu_dev = p->vnu_dev;
546 1.48 mrg s32p->vnu_ino = p->vnu_ino;
547 1.48 mrg }
548 1.48 mrg
549 1.49 mrg static inline void
550 1.49 mrg netbsd32_from_vnd_ioctl50(struct vnd_ioctl50 *p, struct netbsd32_vnd_ioctl50 *s32p, u_long cmd)
551 1.49 mrg {
552 1.49 mrg
553 1.49 mrg s32p->vnd_flags = p->vnd_flags;
554 1.49 mrg s32p->vnd_geom = p->vnd_geom;
555 1.49 mrg s32p->vnd_size = p->vnd_size;
556 1.49 mrg }
557 1.49 mrg
558 1.50 mrg static inline void
559 1.51 njoly netbsd32_from_plistref(struct plistref *p, struct netbsd32_plistref *s32p, u_long cmd)
560 1.51 njoly {
561 1.51 njoly
562 1.51 njoly NETBSD32PTR32(s32p->pref_plist, p->pref_plist);
563 1.51 njoly s32p->pref_len = p->pref_len;
564 1.51 njoly }
565 1.51 njoly
566 1.51 njoly static inline void
567 1.57 bouyer netbsd32_from_wdog_conf(struct wdog_conf *p, struct netbsd32_wdog_conf *s32p, u_long cmd)
568 1.57 bouyer {
569 1.57 bouyer
570 1.57 bouyer NETBSD32PTR32(s32p->wc_names, p->wc_names);
571 1.57 bouyer s32p->wc_count = p->wc_count;
572 1.57 bouyer }
573 1.57 bouyer
574 1.58 macallan /* wsdisplay stuff */
575 1.58 macallan static inline void
576 1.58 macallan netbsd32_from_wsdisplay_addscreendata(struct wsdisplay_addscreendata *asd,
577 1.58 macallan struct netbsd32_wsdisplay_addscreendata *asd32,
578 1.58 macallan u_long cmd)
579 1.58 macallan {
580 1.58 macallan NETBSD32PTR32(asd32->screentype, asd->screentype);
581 1.58 macallan NETBSD32PTR32(asd32->emul, asd->emul);
582 1.58 macallan asd32->idx = asd->idx;
583 1.58 macallan }
584 1.58 macallan
585 1.57 bouyer static inline void
586 1.62 macallan netbsd32_from_wsdisplay_cursor(struct wsdisplay_cursor *c,
587 1.62 macallan struct netbsd32_wsdisplay_cursor *c32,
588 1.62 macallan u_long cmd)
589 1.62 macallan {
590 1.62 macallan c32->which = c->which;
591 1.62 macallan c32->enable = c->enable;
592 1.62 macallan c32->pos.x = c->pos.x;
593 1.62 macallan c32->pos.y = c->pos.y;
594 1.62 macallan c32->hot.x = c->hot.x;
595 1.62 macallan c32->hot.y = c->hot.y;
596 1.62 macallan c32->size.x = c->size.x;
597 1.62 macallan c32->size.y = c->size.y;
598 1.62 macallan c32->cmap.index = c->cmap.index;
599 1.62 macallan c32->cmap.count = c->cmap.count;
600 1.62 macallan NETBSD32PTR32(c32->cmap.red, c->cmap.red);
601 1.62 macallan NETBSD32PTR32(c32->cmap.green, c->cmap.green);
602 1.62 macallan NETBSD32PTR32(c32->cmap.blue, c->cmap.blue);
603 1.62 macallan NETBSD32PTR32(c32->image, c->image);
604 1.62 macallan NETBSD32PTR32(c32->mask, c->mask);
605 1.62 macallan }
606 1.62 macallan
607 1.62 macallan static inline void
608 1.67.4.1 rmind netbsd32_from_wsdisplay_cmap(struct wsdisplay_cmap *c,
609 1.67.4.1 rmind struct netbsd32_wsdisplay_cmap *c32,
610 1.67.4.1 rmind u_long cmd)
611 1.67.4.1 rmind {
612 1.67.4.1 rmind c32->index = c->index;
613 1.67.4.1 rmind c32->count = c->count;
614 1.67.4.1 rmind NETBSD32PTR32(c32->red, c->red);
615 1.67.4.1 rmind NETBSD32PTR32(c32->green, c->green);
616 1.67.4.1 rmind NETBSD32PTR32(c32->blue, c->blue);
617 1.67.4.1 rmind }
618 1.67.4.1 rmind
619 1.67.4.1 rmind static inline void
620 1.66 christos netbsd32_from_ieee80211req(struct ieee80211req *ireq,
621 1.66 christos struct netbsd32_ieee80211req *ireq32, u_long cmd)
622 1.66 christos {
623 1.66 christos strncpy(ireq32->i_name, ireq->i_name, IFNAMSIZ);
624 1.66 christos ireq32->i_type = ireq->i_type;
625 1.66 christos ireq32->i_val = ireq->i_val;
626 1.66 christos ireq32->i_len = ireq->i_len;
627 1.66 christos NETBSD32PTR32(ireq32->i_data, ireq->i_data);
628 1.66 christos }
629 1.66 christos
630 1.66 christos static inline void
631 1.59 macallan netbsd32_from_ieee80211_nwkey(struct ieee80211_nwkey *nwk,
632 1.59 macallan struct netbsd32_ieee80211_nwkey *nwk32,
633 1.59 macallan u_long cmd)
634 1.59 macallan {
635 1.59 macallan int i;
636 1.59 macallan
637 1.59 macallan strncpy(nwk32->i_name, nwk->i_name, IFNAMSIZ);
638 1.59 macallan nwk32->i_wepon = nwk->i_wepon;
639 1.59 macallan nwk32->i_defkid = nwk->i_defkid;
640 1.59 macallan for (i = 0; i < IEEE80211_WEP_NKID; i++) {
641 1.59 macallan nwk32->i_key[i].i_keylen = nwk->i_key[i].i_keylen;
642 1.59 macallan NETBSD32PTR32(nwk32->i_key[i].i_keydat,
643 1.59 macallan nwk->i_key[i].i_keydat);
644 1.59 macallan }
645 1.59 macallan }
646 1.59 macallan
647 1.59 macallan static inline void
648 1.60 bouyer netbsd32_from_bpf_program(struct bpf_program *p, struct netbsd32_bpf_program *s32p, u_long cmd)
649 1.60 bouyer {
650 1.60 bouyer
651 1.60 bouyer NETBSD32PTR32(s32p->bf_insns, p->bf_insns);
652 1.60 bouyer s32p->bf_len = p->bf_len;
653 1.60 bouyer }
654 1.60 bouyer
655 1.60 bouyer static inline void
656 1.60 bouyer netbsd32_from_bpf_dltlist(struct bpf_dltlist *p, struct netbsd32_bpf_dltlist *s32p, u_long cmd)
657 1.60 bouyer {
658 1.60 bouyer
659 1.60 bouyer NETBSD32PTR32(s32p->bfl_list, p->bfl_list);
660 1.60 bouyer s32p->bfl_len = p->bfl_len;
661 1.60 bouyer }
662 1.60 bouyer
663 1.60 bouyer static inline void
664 1.50 mrg netbsd32_from_u_long(u_long *p, netbsd32_u_long *s32p, u_long cmd)
665 1.50 mrg {
666 1.50 mrg
667 1.50 mrg *s32p = (netbsd32_u_long)*p;
668 1.50 mrg }
669 1.50 mrg
670 1.65 christos static inline void
671 1.65 christos netbsd32_from_clockctl_settimeofday(
672 1.65 christos const struct clockctl_settimeofday *p,
673 1.65 christos struct netbsd32_clockctl_settimeofday *s32p,
674 1.65 christos u_long cmd)
675 1.65 christos {
676 1.65 christos
677 1.65 christos NETBSD32PTR32(s32p->tv, p->tv);
678 1.65 christos NETBSD32PTR32(s32p->tzp, p->tzp);
679 1.65 christos }
680 1.65 christos
681 1.65 christos static inline void
682 1.65 christos netbsd32_from_clockctl_adjtime(
683 1.65 christos const struct clockctl_adjtime *p,
684 1.65 christos struct netbsd32_clockctl_adjtime *s32p,
685 1.65 christos u_long cmd)
686 1.65 christos {
687 1.65 christos
688 1.65 christos NETBSD32PTR32(s32p->delta, p->delta);
689 1.65 christos NETBSD32PTR32(s32p->olddelta, p->olddelta);
690 1.65 christos }
691 1.65 christos
692 1.65 christos static inline void
693 1.65 christos netbsd32_from_clockctl_clock_settime(
694 1.65 christos const struct clockctl_clock_settime *p,
695 1.65 christos struct netbsd32_clockctl_clock_settime *s32p,
696 1.65 christos u_long cmd)
697 1.65 christos {
698 1.65 christos
699 1.65 christos s32p->clock_id = p->clock_id;
700 1.65 christos NETBSD32PTR32(s32p->tp, p->tp);
701 1.65 christos }
702 1.65 christos
703 1.65 christos static inline void
704 1.65 christos netbsd32_from_clockctl_ntp_adjtime(
705 1.65 christos const struct clockctl_ntp_adjtime *p,
706 1.65 christos struct netbsd32_clockctl_ntp_adjtime *s32p,
707 1.65 christos u_long cmd)
708 1.65 christos {
709 1.65 christos
710 1.65 christos NETBSD32PTR32(s32p->tp, p->tp);
711 1.65 christos s32p->retval = p->retval;
712 1.65 christos }
713 1.65 christos
714 1.1 mrg /*
715 1.1 mrg * main ioctl syscall.
716 1.1 mrg *
717 1.1 mrg * ok, here we are in the biggy. we have to do fix ups depending
718 1.1 mrg * on the ioctl command before and afterwards.
719 1.1 mrg */
720 1.1 mrg int
721 1.37 dsl netbsd32_ioctl(struct lwp *l, const struct netbsd32_ioctl_args *uap, register_t *retval)
722 1.1 mrg {
723 1.37 dsl /* {
724 1.1 mrg syscallarg(int) fd;
725 1.2 mrg syscallarg(netbsd32_u_long) com;
726 1.2 mrg syscallarg(netbsd32_voidp) data;
727 1.37 dsl } */
728 1.16 thorpej struct proc *p = l->l_proc;
729 1.7 eeh struct file *fp;
730 1.7 eeh struct filedesc *fdp;
731 1.7 eeh u_long com;
732 1.7 eeh int error = 0;
733 1.52 matt size_t size;
734 1.52 matt size_t alloc_size32, size32;
735 1.30 christos void *data, *memp = NULL;
736 1.30 christos void *data32, *memp32 = NULL;
737 1.52 matt unsigned int fd;
738 1.38 ad fdfile_t *ff;
739 1.7 eeh int tmp;
740 1.7 eeh #define STK_PARAMS 128
741 1.67 skrll uint64_t stkbuf[STK_PARAMS/sizeof(uint64_t)];
742 1.67 skrll uint64_t stkbuf32[STK_PARAMS/sizeof(uint64_t)];
743 1.1 mrg
744 1.1 mrg /*
745 1.1 mrg * we need to translate some commands (_IOW) before calling sys_ioctl,
746 1.23 perry * some after (_IOR), and some both (_IOWR).
747 1.1 mrg */
748 1.5 eeh #if 0
749 1.5 eeh {
750 1.52 matt const char * const dirs[8] = {
751 1.52 matt "NONE!", "VOID", "OUT", "VOID|OUT!", "IN", "VOID|IN!",
752 1.52 matt "INOUT", "VOID|IN|OUT!"
753 1.52 matt };
754 1.52 matt
755 1.52 matt printf("netbsd32_ioctl(%d, %x, %x): "
756 1.52 matt "%s group %c base %d len %d\n",
757 1.52 matt SCARG(uap, fd), SCARG(uap, com), SCARG(uap, data).i32,
758 1.52 matt dirs[((SCARG(uap, com) & IOC_DIRMASK)>>29)],
759 1.52 matt IOCGROUP(SCARG(uap, com)), IOCBASECMD(SCARG(uap, com)),
760 1.52 matt IOCPARM_LEN(SCARG(uap, com)));
761 1.5 eeh }
762 1.5 eeh #endif
763 1.1 mrg
764 1.52 matt memp = NULL;
765 1.52 matt memp32 = NULL;
766 1.52 matt alloc_size32 = 0;
767 1.52 matt size32 = 0;
768 1.52 matt size = 0;
769 1.52 matt
770 1.7 eeh fdp = p->p_fd;
771 1.38 ad fd = SCARG(uap, fd);
772 1.38 ad if ((fp = fd_getfile(fd)) == NULL)
773 1.7 eeh return (EBADF);
774 1.7 eeh if ((fp->f_flag & (FREAD | FWRITE)) == 0) {
775 1.7 eeh error = EBADF;
776 1.7 eeh goto out;
777 1.7 eeh }
778 1.7 eeh
779 1.42 ad ff = fdp->fd_dt->dt_ff[SCARG(uap, fd)];
780 1.7 eeh switch (com = SCARG(uap, com)) {
781 1.41 matt case FIOCLEX:
782 1.41 matt ff->ff_exclose = true;
783 1.41 matt fdp->fd_exclose = true;
784 1.7 eeh goto out;
785 1.7 eeh
786 1.41 matt case FIONCLEX:
787 1.41 matt ff->ff_exclose = false;
788 1.7 eeh goto out;
789 1.7 eeh }
790 1.7 eeh
791 1.7 eeh /*
792 1.7 eeh * Interpret high order word to find amount of data to be
793 1.7 eeh * copied to/from the user's address space.
794 1.7 eeh */
795 1.7 eeh size32 = IOCPARM_LEN(com);
796 1.52 matt alloc_size32 = size32;
797 1.52 matt
798 1.52 matt /*
799 1.52 matt * The disklabel is now padded to a multiple of 8 bytes however the old
800 1.52 matt * disklabel on 32bit platforms wasn't. This leaves a difference in
801 1.52 matt * size of 4 bytes between the two but are otherwise identical.
802 1.52 matt * To deal with this, we allocate enough space for the new disklabel
803 1.52 matt * but only copyin/out the smaller amount.
804 1.52 matt */
805 1.52 matt if (IOCGROUP(com) == 'd') {
806 1.52 matt u_long ncom = com ^ (DIOCGDINFO ^ DIOCGDINFO32);
807 1.52 matt switch (ncom) {
808 1.52 matt case DIOCGDINFO:
809 1.52 matt case DIOCWDINFO:
810 1.52 matt case DIOCSDINFO:
811 1.52 matt case DIOCGDEFLABEL:
812 1.52 matt com = ncom;
813 1.52 matt if (IOCPARM_LEN(DIOCGDINFO32) < IOCPARM_LEN(DIOCGDINFO))
814 1.52 matt alloc_size32 = IOCPARM_LEN(DIOCGDINFO);
815 1.52 matt break;
816 1.52 matt }
817 1.52 matt }
818 1.52 matt if (alloc_size32 > IOCPARM_MAX) {
819 1.7 eeh error = ENOTTY;
820 1.7 eeh goto out;
821 1.7 eeh }
822 1.52 matt if (alloc_size32 > sizeof(stkbuf)) {
823 1.52 matt memp32 = kmem_alloc(alloc_size32, KM_SLEEP);
824 1.7 eeh data32 = memp32;
825 1.7 eeh } else
826 1.29 christos data32 = (void *)stkbuf32;
827 1.52 matt if ((com >> IOCPARM_SHIFT) == 0) {
828 1.52 matt /* UNIX-style ioctl. */
829 1.52 matt data32 = SCARG_P32(uap, data);
830 1.52 matt } else {
831 1.52 matt if (com&IOC_IN) {
832 1.52 matt if (size32) {
833 1.52 matt error = copyin(SCARG_P32(uap, data), data32,
834 1.52 matt size32);
835 1.52 matt if (error) {
836 1.52 matt goto out;
837 1.52 matt }
838 1.52 matt /*
839 1.52 matt * The data between size and alloc_size has
840 1.52 matt * not been overwritten. It shouldn't matter
841 1.52 matt * but let's clear that anyway.
842 1.52 matt */
843 1.52 matt if (__predict_false(size32 < alloc_size32)) {
844 1.52 matt memset((char *)data32+size32, 0,
845 1.52 matt alloc_size32 - size32);
846 1.52 matt }
847 1.52 matt ktrgenio(fd, UIO_WRITE, SCARG_P32(uap, data),
848 1.52 matt size32, 0);
849 1.52 matt } else
850 1.52 matt *(void **)data32 = SCARG_P32(uap, data);
851 1.52 matt } else if ((com&IOC_OUT) && size32) {
852 1.52 matt /*
853 1.52 matt * Zero the buffer so the user always
854 1.52 matt * gets back something deterministic.
855 1.52 matt */
856 1.52 matt memset(data32, 0, alloc_size32);
857 1.52 matt } else if (com&IOC_VOID) {
858 1.32 dsl *(void **)data32 = SCARG_P32(uap, data);
859 1.52 matt }
860 1.52 matt }
861 1.7 eeh
862 1.1 mrg /*
863 1.1 mrg * convert various structures, pointers, and other objects that
864 1.1 mrg * change size from 32 bit -> 64 bit, for all ioctl commands.
865 1.1 mrg */
866 1.1 mrg switch (SCARG(uap, com)) {
867 1.7 eeh case FIONBIO:
868 1.38 ad mutex_enter(&fp->f_lock);
869 1.8 eeh if ((tmp = *(int *)data32) != 0)
870 1.7 eeh fp->f_flag |= FNONBLOCK;
871 1.7 eeh else
872 1.7 eeh fp->f_flag &= ~FNONBLOCK;
873 1.38 ad mutex_exit(&fp->f_lock);
874 1.38 ad error = (*fp->f_ops->fo_ioctl)(fp, FIONBIO, (void *)&tmp);
875 1.7 eeh break;
876 1.7 eeh
877 1.7 eeh case FIOASYNC:
878 1.38 ad mutex_enter(&fp->f_lock);
879 1.8 eeh if ((tmp = *(int *)data32) != 0)
880 1.7 eeh fp->f_flag |= FASYNC;
881 1.7 eeh else
882 1.7 eeh fp->f_flag &= ~FASYNC;
883 1.38 ad mutex_exit(&fp->f_lock);
884 1.38 ad error = (*fp->f_ops->fo_ioctl)(fp, FIOASYNC, (void *)&tmp);
885 1.1 mrg break;
886 1.1 mrg
887 1.50 mrg case AUDIO_WSEEK32:
888 1.50 mrg IOCTL_CONV_TO(AUDIO_WSEEK, u_long);
889 1.50 mrg
890 1.7 eeh case DIOCGPART32:
891 1.7 eeh IOCTL_STRUCT_CONV_TO(DIOCGPART, partinfo);
892 1.17 fvdl #if 0 /* not implemented by anything */
893 1.7 eeh case DIOCRFORMAT32:
894 1.7 eeh IOCTL_STRUCT_CONV_TO(DIOCRFORMAT, format_op);
895 1.7 eeh case DIOCWFORMAT32:
896 1.7 eeh IOCTL_STRUCT_CONV_TO(DIOCWFORMAT, format_op);
897 1.17 fvdl #endif
898 1.1 mrg
899 1.67.4.1 rmind case ATAIOCCOMMAND32:
900 1.67.4.1 rmind IOCTL_STRUCT_CONV_TO(ATAIOCCOMMAND, atareq);
901 1.67.4.1 rmind
902 1.1 mrg /*
903 1.1 mrg * only a few ifreq syscalls need conversion and those are
904 1.1 mrg * all driver specific... XXX
905 1.1 mrg */
906 1.1 mrg #if 0
907 1.7 eeh case SIOCGADDRROM3232:
908 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCGADDRROM32, ifreq);
909 1.7 eeh case SIOCGCHIPID32:
910 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCGCHIPID, ifreq);
911 1.7 eeh case SIOCSIFADDR32:
912 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCSIFADDR, ifreq);
913 1.7 eeh case OSIOCGIFADDR32:
914 1.7 eeh IOCTL_STRUCT_CONV_TO(OSIOCGIFADDR, ifreq);
915 1.7 eeh case SIOCGIFADDR32:
916 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCGIFADDR, ifreq);
917 1.7 eeh case SIOCSIFDSTADDR32:
918 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCSIFDSTADDR, ifreq);
919 1.7 eeh case OSIOCGIFDSTADDR32:
920 1.7 eeh IOCTL_STRUCT_CONV_TO(OSIOCGIFDSTADDR, ifreq);
921 1.7 eeh case SIOCGIFDSTADDR32:
922 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCGIFDSTADDR, ifreq);
923 1.7 eeh case OSIOCGIFBRDADDR32:
924 1.7 eeh IOCTL_STRUCT_CONV_TO(OSIOCGIFBRDADDR, ifreq);
925 1.7 eeh case SIOCGIFBRDADDR32:
926 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCGIFBRDADDR, ifreq);
927 1.7 eeh case SIOCSIFBRDADDR32:
928 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCSIFBRDADDR, ifreq);
929 1.7 eeh case OSIOCGIFNETMASK32:
930 1.7 eeh IOCTL_STRUCT_CONV_TO(OSIOCGIFNETMASK, ifreq);
931 1.7 eeh case SIOCGIFNETMASK32:
932 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCGIFNETMASK, ifreq);
933 1.7 eeh case SIOCSIFNETMASK32:
934 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCSIFNETMASK, ifreq);
935 1.7 eeh case SIOCGIFMETRIC32:
936 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCGIFMETRIC, ifreq);
937 1.7 eeh case SIOCSIFMETRIC32:
938 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCSIFMETRIC, ifreq);
939 1.7 eeh case SIOCDIFADDR32:
940 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCDIFADDR, ifreq);
941 1.7 eeh case SIOCADDMULTI32:
942 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCADDMULTI, ifreq);
943 1.7 eeh case SIOCDELMULTI32:
944 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCDELMULTI, ifreq);
945 1.7 eeh case SIOCSIFMEDIA32:
946 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCSIFMEDIA, ifreq);
947 1.7 eeh case SIOCSIFMTU32:
948 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCSIFMTU, ifreq);
949 1.7 eeh case SIOCGIFMTU32:
950 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCGIFMTU, ifreq);
951 1.18 christos case BIOCGETIF32:
952 1.18 christos IOCTL_STRUCT_CONV_TO(BIOCGETIF, ifreq);
953 1.7 eeh case BIOCSETIF32:
954 1.7 eeh IOCTL_STRUCT_CONV_TO(BIOCSETIF, ifreq);
955 1.7 eeh case SIOCPHASE132:
956 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCPHASE1, ifreq);
957 1.7 eeh case SIOCPHASE232:
958 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCPHASE2, ifreq);
959 1.1 mrg #endif
960 1.1 mrg
961 1.40 njoly case OOSIOCGIFCONF32:
962 1.40 njoly IOCTL_STRUCT_CONV_TO(OOSIOCGIFCONF, ifconf);
963 1.7 eeh case OSIOCGIFCONF32:
964 1.7 eeh IOCTL_STRUCT_CONV_TO(OSIOCGIFCONF, ifconf);
965 1.7 eeh case SIOCGIFCONF32:
966 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCGIFCONF, ifconf);
967 1.7 eeh
968 1.22 mrg case SIOCGIFFLAGS32:
969 1.22 mrg IOCTL_STRUCT_CONV_TO(SIOCGIFFLAGS, ifreq);
970 1.22 mrg case SIOCSIFFLAGS32:
971 1.22 mrg IOCTL_STRUCT_CONV_TO(SIOCSIFFLAGS, ifreq);
972 1.22 mrg
973 1.54 matt case SIOCGIFADDRPREF32:
974 1.54 matt IOCTL_STRUCT_CONV_TO(SIOCGIFADDRPREF, if_addrprefreq);
975 1.54 matt case SIOCSIFADDRPREF32:
976 1.54 matt IOCTL_STRUCT_CONV_TO(SIOCSIFADDRPREF, if_addrprefreq);
977 1.54 matt
978 1.54 matt
979 1.43 christos case OSIOCGIFFLAGS32:
980 1.43 christos IOCTL_STRUCT_CONV_TO(OSIOCGIFFLAGS, oifreq);
981 1.43 christos case OSIOCSIFFLAGS32:
982 1.43 christos IOCTL_STRUCT_CONV_TO(OSIOCSIFFLAGS, oifreq);
983 1.43 christos
984 1.7 eeh case SIOCGIFMEDIA32:
985 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCGIFMEDIA, ifmediareq);
986 1.1 mrg
987 1.7 eeh case SIOCSDRVSPEC32:
988 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCSDRVSPEC, ifdrv);
989 1.1 mrg
990 1.7 eeh case SIOCGETVIFCNT32:
991 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCGETVIFCNT, sioc_vif_req);
992 1.1 mrg
993 1.7 eeh case SIOCGETSGCNT32:
994 1.7 eeh IOCTL_STRUCT_CONV_TO(SIOCGETSGCNT, sioc_sg_req);
995 1.1 mrg
996 1.48 mrg case VNDIOCSET32:
997 1.48 mrg IOCTL_STRUCT_CONV_TO(VNDIOCSET, vnd_ioctl);
998 1.48 mrg
999 1.48 mrg case VNDIOCCLR32:
1000 1.48 mrg IOCTL_STRUCT_CONV_TO(VNDIOCCLR, vnd_ioctl);
1001 1.48 mrg
1002 1.48 mrg case VNDIOCGET32:
1003 1.48 mrg IOCTL_STRUCT_CONV_TO(VNDIOCGET, vnd_user);
1004 1.48 mrg
1005 1.49 mrg case VNDIOCSET5032:
1006 1.49 mrg IOCTL_STRUCT_CONV_TO(VNDIOCSET50, vnd_ioctl50);
1007 1.49 mrg
1008 1.49 mrg case VNDIOCCLR5032:
1009 1.49 mrg IOCTL_STRUCT_CONV_TO(VNDIOCCLR50, vnd_ioctl50);
1010 1.49 mrg
1011 1.51 njoly case ENVSYS_GETDICTIONARY32:
1012 1.51 njoly IOCTL_STRUCT_CONV_TO(ENVSYS_GETDICTIONARY, plistref);
1013 1.51 njoly case ENVSYS_SETDICTIONARY32:
1014 1.51 njoly IOCTL_STRUCT_CONV_TO(ENVSYS_SETDICTIONARY, plistref);
1015 1.51 njoly case ENVSYS_REMOVEPROPS32:
1016 1.51 njoly IOCTL_STRUCT_CONV_TO(ENVSYS_REMOVEPROPS, plistref);
1017 1.51 njoly
1018 1.57 bouyer case WDOGIOC_GWDOGS32:
1019 1.57 bouyer IOCTL_STRUCT_CONV_TO(WDOGIOC_GWDOGS, wdog_conf);
1020 1.57 bouyer
1021 1.60 bouyer case BIOCSETF32:
1022 1.60 bouyer IOCTL_STRUCT_CONV_TO(BIOCSETF, bpf_program);
1023 1.60 bouyer case BIOCSTCPF32:
1024 1.60 bouyer IOCTL_STRUCT_CONV_TO(BIOCSTCPF, bpf_program);
1025 1.60 bouyer case BIOCSUDPF32:
1026 1.60 bouyer IOCTL_STRUCT_CONV_TO(BIOCSUDPF, bpf_program);
1027 1.60 bouyer case BIOCGDLTLIST32:
1028 1.60 bouyer IOCTL_STRUCT_CONV_TO(BIOCGDLTLIST, bpf_dltlist);
1029 1.60 bouyer
1030 1.58 macallan case WSDISPLAYIO_ADDSCREEN32:
1031 1.58 macallan IOCTL_STRUCT_CONV_TO(WSDISPLAYIO_ADDSCREEN, wsdisplay_addscreendata);
1032 1.58 macallan
1033 1.62 macallan case WSDISPLAYIO_GCURSOR32:
1034 1.62 macallan IOCTL_STRUCT_CONV_TO(WSDISPLAYIO_GCURSOR, wsdisplay_cursor);
1035 1.62 macallan case WSDISPLAYIO_SCURSOR32:
1036 1.62 macallan IOCTL_STRUCT_CONV_TO(WSDISPLAYIO_SCURSOR, wsdisplay_cursor);
1037 1.62 macallan
1038 1.67.4.1 rmind case WSDISPLAYIO_GETCMAP32:
1039 1.67.4.1 rmind IOCTL_STRUCT_CONV_TO(WSDISPLAYIO_GETCMAP, wsdisplay_cmap);
1040 1.67.4.1 rmind case WSDISPLAYIO_PUTCMAP32:
1041 1.67.4.1 rmind IOCTL_STRUCT_CONV_TO(WSDISPLAYIO_PUTCMAP, wsdisplay_cmap);
1042 1.67.4.1 rmind
1043 1.66 christos case SIOCS8021132:
1044 1.66 christos IOCTL_STRUCT_CONV_TO(SIOCS80211, ieee80211req);
1045 1.66 christos case SIOCG8021132:
1046 1.66 christos IOCTL_STRUCT_CONV_TO(SIOCG80211, ieee80211req);
1047 1.59 macallan case SIOCS80211NWKEY32:
1048 1.64 macallan IOCTL_STRUCT_CONV_TO(SIOCS80211NWKEY, ieee80211_nwkey);
1049 1.63 macallan case SIOCG80211NWKEY32:
1050 1.63 macallan IOCTL_STRUCT_CONV_TO(SIOCG80211NWKEY, ieee80211_nwkey);
1051 1.59 macallan
1052 1.61 macallan case POWER_EVENT_RECVDICT32:
1053 1.61 macallan IOCTL_STRUCT_CONV_TO(POWER_EVENT_RECVDICT, plistref);
1054 1.61 macallan
1055 1.65 christos case CLOCKCTL_SETTIMEOFDAY32:
1056 1.65 christos IOCTL_STRUCT_CONV_TO(CLOCKCTL_SETTIMEOFDAY,
1057 1.65 christos clockctl_settimeofday);
1058 1.65 christos case CLOCKCTL_ADJTIME32:
1059 1.65 christos IOCTL_STRUCT_CONV_TO(CLOCKCTL_ADJTIME, clockctl_adjtime);
1060 1.65 christos case CLOCKCTL_CLOCK_SETTIME32:
1061 1.65 christos IOCTL_STRUCT_CONV_TO(CLOCKCTL_CLOCK_SETTIME,
1062 1.65 christos clockctl_clock_settime);
1063 1.65 christos case CLOCKCTL_NTP_ADJTIME32:
1064 1.65 christos IOCTL_STRUCT_CONV_TO(CLOCKCTL_NTP_ADJTIME,
1065 1.65 christos clockctl_ntp_adjtime);
1066 1.65 christos
1067 1.7 eeh default:
1068 1.14 mrg #ifdef NETBSD32_MD_IOCTL
1069 1.24 christos error = netbsd32_md_ioctl(fp, com, data32, l);
1070 1.14 mrg #else
1071 1.38 ad error = (*fp->f_ops->fo_ioctl)(fp, com, data32);
1072 1.14 mrg #endif
1073 1.1 mrg break;
1074 1.1 mrg }
1075 1.1 mrg
1076 1.26 fvdl if (error == EPASSTHROUGH)
1077 1.26 fvdl error = ENOTTY;
1078 1.26 fvdl
1079 1.1 mrg /*
1080 1.7 eeh * Copy any data to user, size was
1081 1.7 eeh * already set and checked above.
1082 1.1 mrg */
1083 1.33 njoly if (error == 0 && (com&IOC_OUT) && size32) {
1084 1.32 dsl error = copyout(data32, SCARG_P32(uap, data), size32);
1085 1.38 ad ktrgenio(fd, UIO_READ, SCARG_P32(uap, data),
1086 1.35 ad size32, error);
1087 1.33 njoly }
1088 1.1 mrg
1089 1.52 matt out:
1090 1.47 rmind /* If we allocated data, free it here. */
1091 1.7 eeh if (memp32)
1092 1.52 matt kmem_free(memp32, alloc_size32);
1093 1.7 eeh if (memp)
1094 1.53 matt kmem_free(memp, size);
1095 1.38 ad fd_putfile(fd);
1096 1.7 eeh return (error);
1097 1.1 mrg }
1098