netbsd32_fs.c revision 1.80.10.3 1 /* $NetBSD: netbsd32_fs.c,v 1.80.10.3 2020/04/13 08:04:16 martin Exp $ */
2
3 /*
4 * Copyright (c) 1998, 2001 Matthew R. Green
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. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 *
16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
21 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
22 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
23 * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
24 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 * SUCH DAMAGE.
27 */
28
29 #include <sys/cdefs.h>
30 __KERNEL_RCSID(0, "$NetBSD: netbsd32_fs.c,v 1.80.10.3 2020/04/13 08:04:16 martin Exp $");
31
32 #include <sys/param.h>
33 #include <sys/systm.h>
34 #include <sys/mount.h>
35 #include <sys/socket.h>
36 #include <sys/socketvar.h>
37 #include <sys/stat.h>
38 #include <sys/time.h>
39 #include <sys/ktrace.h>
40 #include <sys/resourcevar.h>
41 #include <sys/vnode.h>
42 #include <sys/file.h>
43 #include <sys/filedesc.h>
44 #include <sys/namei.h>
45 #include <sys/statvfs.h>
46 #include <sys/syscallargs.h>
47 #include <sys/proc.h>
48 #include <sys/dirent.h>
49 #include <sys/kauth.h>
50 #include <sys/vfs_syscalls.h>
51
52 #include <fs/cd9660/cd9660_mount.h>
53 #include <fs/tmpfs/tmpfs_args.h>
54 #include <fs/msdosfs/bpb.h>
55 #include <fs/msdosfs/msdosfsmount.h>
56 #include <ufs/ufs/ufsmount.h>
57 #include <miscfs/nullfs/null.h>
58
59 #define NFS_ARGS_ONLY
60 #include <nfs/nfsmount.h>
61
62 #include <compat/netbsd32/netbsd32.h>
63 #include <compat/netbsd32/netbsd32_syscallargs.h>
64 #include <compat/netbsd32/netbsd32_conv.h>
65 #include <compat/sys/mount.h>
66
67
68 static int dofilereadv32(int, struct file *, struct netbsd32_iovec *,
69 int, off_t *, int, register_t *);
70 static int dofilewritev32(int, struct file *, struct netbsd32_iovec *,
71 int, off_t *, int, register_t *);
72
73 struct iovec *
74 netbsd32_get_iov(struct netbsd32_iovec *iov32, int iovlen, struct iovec *aiov,
75 int aiov_len)
76 {
77 #define N_IOV32 8
78 struct netbsd32_iovec aiov32[N_IOV32];
79 struct iovec *iov = aiov;
80 struct iovec *iovp;
81 int i, n, j;
82 int error;
83
84 if (iovlen < 0 || iovlen > IOV_MAX)
85 return NULL;
86
87 if (iovlen > aiov_len)
88 iov = kmem_alloc(iovlen * sizeof(*iov), KM_SLEEP);
89
90 iovp = iov;
91 for (i = 0; i < iovlen; iov32 += N_IOV32, i += N_IOV32) {
92 n = iovlen - i;
93 if (n > N_IOV32)
94 n = N_IOV32;
95 error = copyin(iov32, aiov32, n * sizeof (*iov32));
96 if (error != 0) {
97 if (iov != aiov)
98 kmem_free(iov, iovlen * sizeof(*iov));
99 return NULL;
100 }
101 for (j = 0; j < n; iovp++, j++) {
102 iovp->iov_base = NETBSD32PTR64(aiov32[j].iov_base);
103 iovp->iov_len = aiov32[j].iov_len;
104 }
105 }
106 return iov;
107 #undef N_IOV32
108 }
109
110 int
111 netbsd32_readv(struct lwp *l, const struct netbsd32_readv_args *uap, register_t *retval)
112 {
113 /* {
114 syscallarg(int) fd;
115 syscallarg(const netbsd32_iovecp_t) iovp;
116 syscallarg(int) iovcnt;
117 } */
118 int fd = SCARG(uap, fd);
119 file_t *fp;
120
121 if ((fp = fd_getfile(fd)) == NULL)
122 return (EBADF);
123
124 if ((fp->f_flag & FREAD) == 0) {
125 fd_putfile(fd);
126 return (EBADF);
127 }
128
129 return (dofilereadv32(fd, fp,
130 (struct netbsd32_iovec *)SCARG_P32(uap, iovp),
131 SCARG(uap, iovcnt), &fp->f_offset, FOF_UPDATE_OFFSET, retval));
132 }
133
134 /* Damn thing copies in the iovec! */
135 int
136 dofilereadv32(int fd, struct file *fp, struct netbsd32_iovec *iovp, int iovcnt, off_t *offset, int flags, register_t *retval)
137 {
138 struct uio auio;
139 struct iovec *iov;
140 struct iovec *needfree;
141 struct iovec aiov[UIO_SMALLIOV];
142 long i, error = 0;
143 size_t cnt;
144 u_int iovlen;
145 struct iovec *ktriov = NULL;
146
147 /* note: can't use iovlen until iovcnt is validated */
148 iovlen = iovcnt * sizeof(struct iovec);
149 if ((u_int)iovcnt > UIO_SMALLIOV) {
150 if ((u_int)iovcnt > IOV_MAX) {
151 error = EINVAL;
152 goto out;
153 }
154 iov = kmem_alloc(iovlen, KM_SLEEP);
155 needfree = iov;
156 } else if ((u_int)iovcnt > 0) {
157 iov = aiov;
158 needfree = NULL;
159 } else {
160 error = EINVAL;
161 goto out;
162 }
163
164 auio.uio_iov = iov;
165 auio.uio_iovcnt = iovcnt;
166 auio.uio_rw = UIO_READ;
167 auio.uio_vmspace = curproc->p_vmspace;
168 error = netbsd32_to_iovecin(iovp, iov, iovcnt);
169 if (error)
170 goto done;
171 auio.uio_resid = 0;
172 for (i = 0; i < iovcnt; i++) {
173 auio.uio_resid += iov->iov_len;
174 /*
175 * Reads return ssize_t because -1 is returned on error.
176 * Therefore we must restrict the length to SSIZE_MAX to
177 * avoid garbage return values.
178 */
179 if (iov->iov_len > SSIZE_MAX || auio.uio_resid > SSIZE_MAX) {
180 error = EINVAL;
181 goto done;
182 }
183 iov++;
184 }
185
186 /*
187 * if tracing, save a copy of iovec
188 */
189 if (ktrpoint(KTR_GENIO)) {
190 ktriov = kmem_alloc(iovlen, KM_SLEEP);
191 memcpy((void *)ktriov, (void *)auio.uio_iov, iovlen);
192 }
193
194 cnt = auio.uio_resid;
195 error = (*fp->f_ops->fo_read)(fp, offset, &auio, fp->f_cred, flags);
196 if (error)
197 if (auio.uio_resid != cnt && (error == ERESTART ||
198 error == EINTR || error == EWOULDBLOCK))
199 error = 0;
200 cnt -= auio.uio_resid;
201
202 if (ktriov != NULL) {
203 ktrgeniov(fd, UIO_READ, ktriov, cnt, error);
204 kmem_free(ktriov, iovlen);
205 }
206
207 *retval = cnt;
208 done:
209 if (needfree)
210 kmem_free(needfree, iovlen);
211 out:
212 fd_putfile(fd);
213 return (error);
214 }
215
216 int
217 netbsd32_writev(struct lwp *l, const struct netbsd32_writev_args *uap, register_t *retval)
218 {
219 /* {
220 syscallarg(int) fd;
221 syscallarg(const netbsd32_iovecp_t) iovp;
222 syscallarg(int) iovcnt;
223 } */
224 int fd = SCARG(uap, fd);
225 file_t *fp;
226
227 if ((fp = fd_getfile(fd)) == NULL)
228 return (EBADF);
229
230 if ((fp->f_flag & FWRITE) == 0) {
231 fd_putfile(fd);
232 return (EBADF);
233 }
234
235 return (dofilewritev32(fd, fp,
236 (struct netbsd32_iovec *)SCARG_P32(uap, iovp),
237 SCARG(uap, iovcnt), &fp->f_offset, FOF_UPDATE_OFFSET, retval));
238 }
239
240 int
241 dofilewritev32(int fd, struct file *fp, struct netbsd32_iovec *iovp, int iovcnt, off_t *offset, int flags, register_t *retval)
242 {
243 struct uio auio;
244 struct iovec *iov;
245 struct iovec *needfree;
246 struct iovec aiov[UIO_SMALLIOV];
247 long i, error = 0;
248 size_t cnt;
249 u_int iovlen;
250 struct iovec *ktriov = NULL;
251
252 /* note: can't use iovlen until iovcnt is validated */
253 iovlen = iovcnt * sizeof(struct iovec);
254 if ((u_int)iovcnt > UIO_SMALLIOV) {
255 if ((u_int)iovcnt > IOV_MAX) {
256 error = EINVAL;
257 goto out;
258 }
259 iov = kmem_alloc(iovlen, KM_SLEEP);
260 needfree = iov;
261 } else if ((u_int)iovcnt > 0) {
262 iov = aiov;
263 needfree = NULL;
264 } else {
265 error = EINVAL;
266 goto out;
267 }
268
269 auio.uio_iov = iov;
270 auio.uio_iovcnt = iovcnt;
271 auio.uio_rw = UIO_WRITE;
272 auio.uio_vmspace = curproc->p_vmspace;
273 error = netbsd32_to_iovecin(iovp, iov, iovcnt);
274 if (error)
275 goto done;
276 auio.uio_resid = 0;
277 for (i = 0; i < iovcnt; i++) {
278 auio.uio_resid += iov->iov_len;
279 /*
280 * Writes return ssize_t because -1 is returned on error.
281 * Therefore we must restrict the length to SSIZE_MAX to
282 * avoid garbage return values.
283 */
284 if (iov->iov_len > SSIZE_MAX || auio.uio_resid > SSIZE_MAX) {
285 error = EINVAL;
286 goto done;
287 }
288 iov++;
289 }
290
291 /*
292 * if tracing, save a copy of iovec
293 */
294 if (ktrpoint(KTR_GENIO)) {
295 ktriov = kmem_alloc(iovlen, KM_SLEEP);
296 memcpy((void *)ktriov, (void *)auio.uio_iov, iovlen);
297 }
298
299 cnt = auio.uio_resid;
300 error = (*fp->f_ops->fo_write)(fp, offset, &auio, fp->f_cred, flags);
301 if (error) {
302 if (auio.uio_resid != cnt && (error == ERESTART ||
303 error == EINTR || error == EWOULDBLOCK))
304 error = 0;
305 if (error == EPIPE && (fp->f_flag & FNOSIGPIPE) == 0) {
306 mutex_enter(proc_lock);
307 psignal(curproc, SIGPIPE);
308 mutex_exit(proc_lock);
309 }
310 }
311 cnt -= auio.uio_resid;
312 if (ktriov != NULL) {
313 ktrgeniov(fd, UIO_WRITE, ktriov, cnt, error);
314 kmem_free(ktriov, iovlen);
315 }
316 *retval = cnt;
317 done:
318 if (needfree)
319 kmem_free(needfree, iovlen);
320 out:
321 fd_putfile(fd);
322 return (error);
323 }
324
325 /*
326 * Common routines to set access and modification times given a vnode.
327 */
328 static int
329 get_utimes32(const netbsd32_timevalp_t *tptr, struct timeval *tv,
330 struct timeval **tvp)
331 {
332 int error;
333 struct netbsd32_timeval tv32[2];
334
335 if (tptr == NULL) {
336 *tvp = NULL;
337 return 0;
338 }
339
340 error = copyin(tptr, tv32, sizeof(tv32));
341 if (error)
342 return error;
343 netbsd32_to_timeval(&tv32[0], &tv[0]);
344 netbsd32_to_timeval(&tv32[1], &tv[1]);
345
346 *tvp = tv;
347 return 0;
348 }
349
350 static int
351 get_utimens32(const netbsd32_timespecp_t *tptr, struct timespec *ts,
352 struct timespec **tsp)
353 {
354 int error;
355 struct netbsd32_timespec ts32[2];
356
357 if (tptr == NULL) {
358 *tsp = NULL;
359 return 0;
360 }
361
362 error = copyin(tptr, ts32, sizeof(ts32));
363 if (error)
364 return error;
365 netbsd32_to_timespec(&ts32[0], &ts[0]);
366 netbsd32_to_timespec(&ts32[1], &ts[1]);
367
368 *tsp = ts;
369 return 0;
370 }
371
372 int
373 netbsd32___utimes50(struct lwp *l, const struct netbsd32___utimes50_args *uap, register_t *retval)
374 {
375 /* {
376 syscallarg(const netbsd32_charp) path;
377 syscallarg(const netbsd32_timevalp_t) tptr;
378 } */
379 int error;
380 struct timeval tv[2], *tvp;
381
382 error = get_utimes32(SCARG_P32(uap, tptr), tv, &tvp);
383 if (error != 0)
384 return error;
385
386 return do_sys_utimes(l, NULL, SCARG_P32(uap, path), FOLLOW,
387 tvp, UIO_SYSSPACE);
388 }
389
390 static int
391 netbsd32_copyout_statvfs(const void *kp, void *up, size_t len)
392 {
393 struct netbsd32_statvfs *sbuf_32;
394 int error;
395
396 sbuf_32 = kmem_alloc(sizeof(*sbuf_32), KM_SLEEP);
397 netbsd32_from_statvfs(kp, sbuf_32);
398 error = copyout(sbuf_32, up, sizeof(*sbuf_32));
399 kmem_free(sbuf_32, sizeof(*sbuf_32));
400
401 return error;
402 }
403
404 int
405 netbsd32___statvfs190(struct lwp *l,
406 const struct netbsd32___statvfs190_args *uap, register_t *retval)
407 {
408 /* {
409 syscallarg(const netbsd32_charp) path;
410 syscallarg(netbsd32_statvfsp_t) buf;
411 syscallarg(int) flags;
412 } */
413 struct statvfs *sb;
414 int error;
415
416 sb = STATVFSBUF_GET();
417 error = do_sys_pstatvfs(l, SCARG_P32(uap, path), SCARG(uap, flags), sb);
418 if (error == 0)
419 error = netbsd32_copyout_statvfs(sb, SCARG_P32(uap, buf), 0);
420 STATVFSBUF_PUT(sb);
421 return error;
422 }
423
424 int
425 netbsd32___fstatvfs190(struct lwp *l,
426 const struct netbsd32___fstatvfs190_args *uap, register_t *retval)
427 {
428 /* {
429 syscallarg(int) fd;
430 syscallarg(netbsd32_statvfsp_t) buf;
431 syscallarg(int) flags;
432 } */
433 struct statvfs *sb;
434 int error;
435
436 sb = STATVFSBUF_GET();
437 error = do_sys_fstatvfs(l, SCARG(uap, fd), SCARG(uap, flags), sb);
438 if (error == 0)
439 error = netbsd32_copyout_statvfs(sb, SCARG_P32(uap, buf), 0);
440 STATVFSBUF_PUT(sb);
441 return error;
442 }
443
444 int
445 netbsd32___getvfsstat90(struct lwp *l,
446 const struct netbsd32___getvfsstat90_args *uap, register_t *retval)
447 {
448 /* {
449 syscallarg(netbsd32_statvfsp_t) buf;
450 syscallarg(netbsd32_size_t) bufsize;
451 syscallarg(int) flags;
452 } */
453
454 return do_sys_getvfsstat(l, SCARG_P32(uap, buf), SCARG(uap, bufsize),
455 SCARG(uap, flags), netbsd32_copyout_statvfs,
456 sizeof (struct netbsd32_statvfs), retval);
457 }
458
459 int
460 netbsd32___fhstatvfs190(struct lwp *l,
461 const struct netbsd32___fhstatvfs190_args *uap, register_t *retval)
462 {
463 /* {
464 syscallarg(const netbsd32_pointer_t) fhp;
465 syscallarg(netbsd32_size_t) fh_size;
466 syscallarg(netbsd32_statvfsp_t) buf;
467 syscallarg(int) flags;
468 } */
469 struct statvfs *sb;
470 int error;
471
472 sb = STATVFSBUF_GET();
473 error = do_fhstatvfs(l, SCARG_P32(uap, fhp), SCARG(uap, fh_size), sb,
474 SCARG(uap, flags));
475
476 if (error == 0)
477 error = netbsd32_copyout_statvfs(sb, SCARG_P32(uap, buf), 0);
478 STATVFSBUF_PUT(sb);
479
480 return error;
481 }
482
483 int
484 netbsd32___futimes50(struct lwp *l, const struct netbsd32___futimes50_args *uap, register_t *retval)
485 {
486 /* {
487 syscallarg(int) fd;
488 syscallarg(const netbsd32_timevalp_t) tptr;
489 } */
490 int error;
491 file_t *fp;
492 struct timeval tv[2], *tvp;
493
494 error = get_utimes32(SCARG_P32(uap, tptr), tv, &tvp);
495 if (error != 0)
496 return error;
497
498 /* fd_getvnode() will use the descriptor for us */
499 if ((error = fd_getvnode(SCARG(uap, fd), &fp)) != 0)
500 return (error);
501
502 error = do_sys_utimes(l, fp->f_vnode, NULL, 0, tvp, UIO_SYSSPACE);
503
504 fd_putfile(SCARG(uap, fd));
505 return (error);
506 }
507
508 int
509 netbsd32___getdents30(struct lwp *l,
510 const struct netbsd32___getdents30_args *uap, register_t *retval)
511 {
512 /* {
513 syscallarg(int) fd;
514 syscallarg(netbsd32_charp) buf;
515 syscallarg(netbsd32_size_t) count;
516 } */
517 file_t *fp;
518 int error, done;
519
520 /* fd_getvnode() will use the descriptor for us */
521 if ((error = fd_getvnode(SCARG(uap, fd), &fp)) != 0)
522 return (error);
523 if ((fp->f_flag & FREAD) == 0) {
524 error = EBADF;
525 goto out;
526 }
527 error = vn_readdir(fp, SCARG_P32(uap, buf),
528 UIO_USERSPACE, SCARG(uap, count), &done, l, 0, 0);
529 ktrgenio(SCARG(uap, fd), UIO_READ, SCARG_P32(uap, buf), done, error);
530 *retval = done;
531 out:
532 fd_putfile(SCARG(uap, fd));
533 return (error);
534 }
535
536 int
537 netbsd32___lutimes50(struct lwp *l,
538 const struct netbsd32___lutimes50_args *uap, register_t *retval)
539 {
540 /* {
541 syscallarg(const netbsd32_charp) path;
542 syscallarg(const netbsd32_timevalp_t) tptr;
543 } */
544 int error;
545 struct timeval tv[2], *tvp;
546
547 error = get_utimes32(SCARG_P32(uap, tptr), tv, &tvp);
548 if (error != 0)
549 return error;
550
551 return do_sys_utimes(l, NULL, SCARG_P32(uap, path), NOFOLLOW,
552 tvp, UIO_SYSSPACE);
553 }
554
555 int
556 netbsd32___stat50(struct lwp *l, const struct netbsd32___stat50_args *uap, register_t *retval)
557 {
558 /* {
559 syscallarg(const netbsd32_charp) path;
560 syscallarg(netbsd32_statp_t) ub;
561 } */
562 struct netbsd32_stat sb32;
563 struct stat sb;
564 int error;
565 const char *path;
566
567 path = SCARG_P32(uap, path);
568
569 error = do_sys_stat(path, FOLLOW, &sb);
570 if (error)
571 return (error);
572 netbsd32_from_stat(&sb, &sb32);
573 error = copyout(&sb32, SCARG_P32(uap, ub), sizeof(sb32));
574 return (error);
575 }
576
577 int
578 netbsd32___fstat50(struct lwp *l, const struct netbsd32___fstat50_args *uap, register_t *retval)
579 {
580 /* {
581 syscallarg(int) fd;
582 syscallarg(netbsd32_statp_t) sb;
583 } */
584 struct netbsd32_stat sb32;
585 struct stat ub;
586 int error;
587
588 error = do_sys_fstat(SCARG(uap, fd), &ub);
589 if (error == 0) {
590 netbsd32_from_stat(&ub, &sb32);
591 error = copyout(&sb32, SCARG_P32(uap, sb), sizeof(sb32));
592 }
593 return (error);
594 }
595
596 int
597 netbsd32___lstat50(struct lwp *l, const struct netbsd32___lstat50_args *uap, register_t *retval)
598 {
599 /* {
600 syscallarg(const netbsd32_charp) path;
601 syscallarg(netbsd32_statp_t) ub;
602 } */
603 struct netbsd32_stat sb32;
604 struct stat sb;
605 int error;
606 const char *path;
607
608 path = SCARG_P32(uap, path);
609
610 error = do_sys_stat(path, NOFOLLOW, &sb);
611 if (error)
612 return (error);
613 netbsd32_from_stat(&sb, &sb32);
614 error = copyout(&sb32, SCARG_P32(uap, ub), sizeof(sb32));
615 return (error);
616 }
617
618 int
619 netbsd32___fhstat50(struct lwp *l, const struct netbsd32___fhstat50_args *uap, register_t *retval)
620 {
621 /* {
622 syscallarg(const netbsd32_pointer_t) fhp;
623 syscallarg(netbsd32_size_t) fh_size;
624 syscallarg(netbsd32_statp_t) sb;
625 } */
626 struct stat sb;
627 struct netbsd32_stat sb32;
628 int error;
629
630 error = do_fhstat(l, SCARG_P32(uap, fhp), SCARG(uap, fh_size), &sb);
631 if (error == 0) {
632 netbsd32_from_stat(&sb, &sb32);
633 error = copyout(&sb32, SCARG_P32(uap, sb), sizeof(sb32));
634 }
635 return error;
636 }
637
638 int
639 netbsd32_preadv(struct lwp *l, const struct netbsd32_preadv_args *uap, register_t *retval)
640 {
641 /* {
642 syscallarg(int) fd;
643 syscallarg(const netbsd32_iovecp_t) iovp;
644 syscallarg(int) iovcnt;
645 syscallarg(int) pad;
646 syscallarg(netbsd32_off_t) offset;
647 } */
648 file_t *fp;
649 struct vnode *vp;
650 off_t offset;
651 int error, fd = SCARG(uap, fd);
652
653 if ((fp = fd_getfile(fd)) == NULL)
654 return (EBADF);
655
656 if ((fp->f_flag & FREAD) == 0) {
657 fd_putfile(fd);
658 return (EBADF);
659 }
660
661 vp = fp->f_vnode;
662 if (fp->f_type != DTYPE_VNODE || vp->v_type == VFIFO) {
663 error = ESPIPE;
664 goto out;
665 }
666
667 offset = SCARG(uap, offset);
668
669 /*
670 * XXX This works because no file systems actually
671 * XXX take any action on the seek operation.
672 */
673 if ((error = VOP_SEEK(vp, fp->f_offset, offset, fp->f_cred)) != 0)
674 goto out;
675
676 return (dofilereadv32(fd, fp, SCARG_P32(uap, iovp),
677 SCARG(uap, iovcnt), &offset, 0, retval));
678
679 out:
680 fd_putfile(fd);
681 return (error);
682 }
683
684 int
685 netbsd32_pwritev(struct lwp *l, const struct netbsd32_pwritev_args *uap, register_t *retval)
686 {
687 /* {
688 syscallarg(int) fd;
689 syscallarg(const netbsd32_iovecp_t) iovp;
690 syscallarg(int) iovcnt;
691 syscallarg(int) pad;
692 syscallarg(netbsd32_off_t) offset;
693 } */
694 file_t *fp;
695 struct vnode *vp;
696 off_t offset;
697 int error, fd = SCARG(uap, fd);
698
699 if ((fp = fd_getfile(fd)) == NULL)
700 return (EBADF);
701
702 if ((fp->f_flag & FWRITE) == 0) {
703 fd_putfile(fd);
704 return (EBADF);
705 }
706
707 vp = fp->f_vnode;
708 if (fp->f_type != DTYPE_VNODE || vp->v_type == VFIFO) {
709 error = ESPIPE;
710 goto out;
711 }
712
713 offset = SCARG(uap, offset);
714
715 /*
716 * XXX This works because no file systems actually
717 * XXX take any action on the seek operation.
718 */
719 if ((error = VOP_SEEK(vp, fp->f_offset, offset, fp->f_cred)) != 0)
720 goto out;
721
722 return (dofilewritev32(fd, fp, SCARG_P32(uap, iovp),
723 SCARG(uap, iovcnt), &offset, 0, retval));
724
725 out:
726 fd_putfile(fd);
727 return (error);
728 }
729
730 /*
731 * Find pathname of process's current directory.
732 *
733 * Use vfs vnode-to-name reverse cache; if that fails, fall back
734 * to reading directory contents.
735 */
736 int
737 netbsd32___getcwd(struct lwp *l, const struct netbsd32___getcwd_args *uap, register_t *retval)
738 {
739 /* {
740 syscallarg(char *) bufp;
741 syscallarg(size_t) length;
742 } */
743 int error;
744 char *path;
745 char *bp, *bend;
746 int len = (int)SCARG(uap, length);
747 int lenused;
748 struct vnode *dvp;
749
750 if (len > MAXPATHLEN*4)
751 len = MAXPATHLEN*4;
752 else if (len < 2)
753 return ERANGE;
754
755 path = kmem_alloc(len, KM_SLEEP);
756 bp = &path[len];
757 bend = bp;
758 *(--bp) = '\0';
759
760 /*
761 * 5th argument here is "max number of vnodes to traverse".
762 * Since each entry takes up at least 2 bytes in the output buffer,
763 * limit it to N/2 vnodes for an N byte buffer.
764 */
765 #define GETCWD_CHECK_ACCESS 0x0001
766 dvp = cwdcdir();
767 error = getcwd_common (dvp, NULL, &bp, path, len/2,
768 GETCWD_CHECK_ACCESS, l);
769 vrele(dvp);
770
771 if (error)
772 goto out;
773 lenused = bend - bp;
774 *retval = lenused;
775 /* put the result into user buffer */
776 error = copyout(bp, SCARG_P32(uap, bufp), lenused);
777
778 out:
779 kmem_free(path, len);
780 return error;
781 }
782
783 int
784 netbsd32___mount50(struct lwp *l, const struct netbsd32___mount50_args *uap,
785 register_t *retval)
786 {
787 /* {
788 syscallarg(netbsd32_charp) type;
789 syscallarg(netbsd32_charp) path;
790 syscallarg(int) flags;
791 syscallarg(netbsd32_voidp) data;
792 syscallarg(netbsd32_size_t) data_len;
793 } */
794 char mtype[MNAMELEN];
795 union {
796 struct netbsd32_ufs_args ufs_args;
797 struct netbsd32_mfs_args mfs_args;
798 struct netbsd32_iso_args iso_args;
799 struct netbsd32_nfs_args nfs_args;
800 struct netbsd32_msdosfs_args msdosfs_args;
801 struct netbsd32_tmpfs_args tmpfs_args;
802 struct netbsd32_null_args null_args;
803 } fs_args32;
804 union {
805 struct ufs_args ufs_args;
806 struct mfs_args mfs_args;
807 struct iso_args iso_args;
808 struct nfs_args nfs_args;
809 struct msdosfs_args msdosfs_args;
810 struct tmpfs_args tmpfs_args;
811 struct null_args null_args;
812 } fs_args;
813 const char *type = SCARG_P32(uap, type);
814 const char *path = SCARG_P32(uap, path);
815 int flags = SCARG(uap, flags);
816 void *data, *udata;
817 size_t data_len = SCARG(uap, data_len);
818 enum uio_seg data_seg;
819 size_t len;
820 int error;
821
822 udata = data = SCARG_P32(uap, data);
823 memset(&fs_args32, 0, sizeof(fs_args32));
824
825 error = copyinstr(type, mtype, sizeof(mtype), &len);
826 if (error)
827 return error;
828
829 if (strcmp(mtype, MOUNT_TMPFS) == 0) {
830 if (data_len < sizeof(fs_args32.tmpfs_args))
831 return EINVAL;
832 if ((flags & MNT_GETARGS) == 0) {
833 error = copyin(data, &fs_args32.tmpfs_args,
834 sizeof(fs_args32.tmpfs_args));
835 if (error)
836 return error;
837 fs_args.tmpfs_args.ta_version =
838 fs_args32.tmpfs_args.ta_version;
839 fs_args.tmpfs_args.ta_nodes_max =
840 fs_args32.tmpfs_args.ta_nodes_max;
841 fs_args.tmpfs_args.ta_size_max =
842 fs_args32.tmpfs_args.ta_size_max;
843 fs_args.tmpfs_args.ta_root_uid =
844 fs_args32.tmpfs_args.ta_root_uid;
845 fs_args.tmpfs_args.ta_root_gid =
846 fs_args32.tmpfs_args.ta_root_gid;
847 fs_args.tmpfs_args.ta_root_mode =
848 fs_args32.tmpfs_args.ta_root_mode;
849 }
850 data_seg = UIO_SYSSPACE;
851 data = &fs_args.tmpfs_args;
852 data_len = sizeof(fs_args.tmpfs_args);
853 } else if (strcmp(mtype, MOUNT_MFS) == 0) {
854 if (data_len < sizeof(fs_args32.mfs_args))
855 return EINVAL;
856 if ((flags & MNT_GETARGS) == 0) {
857 error = copyin(data, &fs_args32.mfs_args,
858 sizeof(fs_args32.mfs_args));
859 if (error)
860 return error;
861 fs_args.mfs_args.fspec =
862 NETBSD32PTR64(fs_args32.mfs_args.fspec);
863 memset(&fs_args.mfs_args._pad1, 0,
864 sizeof(fs_args.mfs_args._pad1));
865 fs_args.mfs_args.base =
866 NETBSD32PTR64(fs_args32.mfs_args.base);
867 fs_args.mfs_args.size = fs_args32.mfs_args.size;
868 }
869 data_seg = UIO_SYSSPACE;
870 data = &fs_args.mfs_args;
871 data_len = sizeof(fs_args.mfs_args);
872 } else if ((strcmp(mtype, MOUNT_UFS) == 0) ||
873 (strcmp(mtype, MOUNT_EXT2FS) == 0) ||
874 (strcmp(mtype, MOUNT_LFS) == 0)) {
875 if (data_len < sizeof(fs_args32.ufs_args))
876 return EINVAL;
877 if ((flags & MNT_GETARGS) == 0) {
878 error = copyin(data, &fs_args32.ufs_args,
879 sizeof(fs_args32.ufs_args));
880 if (error)
881 return error;
882 fs_args.ufs_args.fspec =
883 NETBSD32PTR64(fs_args32.ufs_args.fspec);
884 }
885 data_seg = UIO_SYSSPACE;
886 data = &fs_args.ufs_args;
887 data_len = sizeof(fs_args.ufs_args);
888 } else if (strcmp(mtype, MOUNT_CD9660) == 0) {
889 if (data_len < sizeof(fs_args32.iso_args))
890 return EINVAL;
891 if ((flags & MNT_GETARGS) == 0) {
892 error = copyin(data, &fs_args32.iso_args,
893 sizeof(fs_args32.iso_args));
894 if (error)
895 return error;
896 fs_args.iso_args.fspec =
897 NETBSD32PTR64(fs_args32.iso_args.fspec);
898 memset(&fs_args.iso_args._pad1, 0,
899 sizeof(fs_args.iso_args._pad1));
900 fs_args.iso_args.flags = fs_args32.iso_args.flags;
901 }
902 data_seg = UIO_SYSSPACE;
903 data = &fs_args.iso_args;
904 data_len = sizeof(fs_args.iso_args);
905 } else if (strcmp(mtype, MOUNT_MSDOS) == 0) {
906 if (data_len < sizeof(fs_args32.msdosfs_args))
907 return EINVAL;
908 if ((flags & MNT_GETARGS) == 0) {
909 error = copyin(data, &fs_args32.msdosfs_args,
910 sizeof(fs_args32.msdosfs_args));
911 if (error)
912 return error;
913 fs_args.msdosfs_args.fspec =
914 NETBSD32PTR64(fs_args32.msdosfs_args.fspec);
915 memset(&fs_args.msdosfs_args._pad1, 0,
916 sizeof(fs_args.msdosfs_args._pad1));
917 fs_args.msdosfs_args.uid =
918 fs_args32.msdosfs_args.uid;
919 fs_args.msdosfs_args.gid =
920 fs_args32.msdosfs_args.gid;
921 fs_args.msdosfs_args.mask =
922 fs_args32.msdosfs_args.mask;
923 fs_args.msdosfs_args.flags =
924 fs_args32.msdosfs_args.flags;
925 fs_args.msdosfs_args.version =
926 fs_args32.msdosfs_args.version;
927 fs_args.msdosfs_args.dirmask =
928 fs_args32.msdosfs_args.dirmask;
929 fs_args.msdosfs_args.gmtoff =
930 fs_args32.msdosfs_args.gmtoff;
931 }
932 data_seg = UIO_SYSSPACE;
933 data = &fs_args.msdosfs_args;
934 data_len = sizeof(fs_args.msdosfs_args);
935 } else if (strcmp(mtype, MOUNT_NFS) == 0) {
936 if (data_len < sizeof(fs_args32.nfs_args))
937 return EINVAL;
938 /* XXX: NFS requires copyin even with MNT_GETARGS */
939 if ((flags & MNT_GETARGS) == 0) {
940 error = copyin(data, &fs_args32.nfs_args,
941 sizeof(fs_args32.nfs_args));
942 if (error)
943 return error;
944 fs_args.nfs_args.version = fs_args32.nfs_args.version;
945 fs_args.nfs_args.addr =
946 NETBSD32PTR64(fs_args32.nfs_args.addr);
947 memcpy(&fs_args.nfs_args.addrlen,
948 &fs_args32.nfs_args.addrlen,
949 offsetof(struct nfs_args, fh)
950 - offsetof(struct nfs_args, addrlen));
951 fs_args.nfs_args.fh =
952 NETBSD32PTR64(fs_args32.nfs_args.fh);
953 memcpy(&fs_args.nfs_args.fhsize,
954 &fs_args32.nfs_args.fhsize,
955 offsetof(struct nfs_args, hostname)
956 - offsetof(struct nfs_args, fhsize));
957 fs_args.nfs_args.hostname =
958 NETBSD32PTR64(fs_args32.nfs_args.hostname);
959 }
960 data_seg = UIO_SYSSPACE;
961 data = &fs_args.nfs_args;
962 data_len = sizeof(fs_args.nfs_args);
963 } else if (strcmp(mtype, MOUNT_NULL) == 0) {
964 if (data_len < sizeof(fs_args32.null_args))
965 return EINVAL;
966 if ((flags & MNT_GETARGS) == 0) {
967 error = copyin(data, &fs_args32.null_args,
968 sizeof(fs_args32.null_args));
969 if (error)
970 return error;
971 fs_args.null_args.la.target =
972 NETBSD32PTR64(fs_args32.null_args.la.target);
973 }
974 data_seg = UIO_SYSSPACE;
975 data = &fs_args.null_args;
976 data_len = sizeof(fs_args.null_args);
977 } else {
978 data_seg = UIO_USERSPACE;
979 }
980
981 error = do_sys_mount(l, mtype, UIO_SYSSPACE, path, flags, data, data_seg,
982 data_len, retval);
983 if (error)
984 return error;
985
986 if (flags & MNT_GETARGS) {
987 data_len = *retval;
988 if (strcmp(mtype, MOUNT_TMPFS) == 0) {
989 if (data_len != sizeof(fs_args.tmpfs_args))
990 return EINVAL;
991 fs_args32.tmpfs_args.ta_version =
992 fs_args.tmpfs_args.ta_version;
993 fs_args32.tmpfs_args.ta_nodes_max =
994 fs_args.tmpfs_args.ta_nodes_max;
995 fs_args32.tmpfs_args.ta_size_max =
996 fs_args.tmpfs_args.ta_size_max;
997 fs_args32.tmpfs_args.ta_root_uid =
998 fs_args.tmpfs_args.ta_root_uid;
999 fs_args32.tmpfs_args.ta_root_gid =
1000 fs_args.tmpfs_args.ta_root_gid;
1001 fs_args32.tmpfs_args.ta_root_mode =
1002 fs_args.tmpfs_args.ta_root_mode;
1003 error = copyout(&fs_args32.tmpfs_args, udata,
1004 sizeof(fs_args32.tmpfs_args));
1005 *retval = sizeof(fs_args32.tmpfs_args);
1006 } else if (strcmp(mtype, MOUNT_MFS) == 0) {
1007 if (data_len != sizeof(fs_args.mfs_args))
1008 return EINVAL;
1009 NETBSD32PTR32(fs_args32.mfs_args.fspec,
1010 fs_args.mfs_args.fspec);
1011 memset(&fs_args32.mfs_args._pad1, 0,
1012 sizeof(fs_args32.mfs_args._pad1));
1013 NETBSD32PTR32(fs_args32.mfs_args.base,
1014 fs_args.mfs_args.base);
1015 fs_args32.mfs_args.size = fs_args.mfs_args.size;
1016 error = copyout(&fs_args32.mfs_args, udata,
1017 sizeof(fs_args32.mfs_args));
1018 *retval = sizeof(fs_args32.mfs_args);
1019 } else if (strcmp(mtype, MOUNT_UFS) == 0) {
1020 if (data_len != sizeof(fs_args.ufs_args))
1021 return EINVAL;
1022 NETBSD32PTR32(fs_args32.ufs_args.fspec,
1023 fs_args.ufs_args.fspec);
1024 error = copyout(&fs_args32.ufs_args, udata,
1025 sizeof(fs_args32.ufs_args));
1026 *retval = sizeof(fs_args32.ufs_args);
1027 } else if (strcmp(mtype, MOUNT_CD9660) == 0) {
1028 if (data_len != sizeof(fs_args.iso_args))
1029 return EINVAL;
1030 NETBSD32PTR32(fs_args32.iso_args.fspec,
1031 fs_args.iso_args.fspec);
1032 memset(&fs_args32.iso_args._pad1, 0,
1033 sizeof(fs_args32.iso_args._pad1));
1034 fs_args32.iso_args.flags = fs_args.iso_args.flags;
1035 error = copyout(&fs_args32.iso_args, udata,
1036 sizeof(fs_args32.iso_args));
1037 *retval = sizeof(fs_args32.iso_args);
1038 } else if (strcmp(mtype, MOUNT_NFS) == 0) {
1039 if (data_len != sizeof(fs_args.nfs_args))
1040 return EINVAL;
1041 NETBSD32PTR32(fs_args32.nfs_args.addr,
1042 fs_args.nfs_args.addr);
1043 memcpy(&fs_args32.nfs_args.addrlen,
1044 &fs_args.nfs_args.addrlen,
1045 offsetof(struct nfs_args, fh)
1046 - offsetof(struct nfs_args, addrlen));
1047 NETBSD32PTR32(fs_args32.nfs_args.fh,
1048 fs_args.nfs_args.fh);
1049 memcpy(&fs_args32.nfs_args.fhsize,
1050 &fs_args.nfs_args.fhsize,
1051 offsetof(struct nfs_args, hostname)
1052 - offsetof(struct nfs_args, fhsize));
1053 NETBSD32PTR32(fs_args32.nfs_args.hostname,
1054 fs_args.nfs_args.hostname);
1055 error = copyout(&fs_args32.nfs_args, udata,
1056 sizeof(fs_args32.nfs_args));
1057 *retval = sizeof(fs_args32.nfs_args);
1058 } else if (strcmp(mtype, MOUNT_NULL) == 0) {
1059 if (data_len != sizeof(fs_args.null_args))
1060 return EINVAL;
1061 NETBSD32PTR32(fs_args32.null_args.la.target,
1062 fs_args.null_args.la.target);
1063 error = copyout(&fs_args32.null_args, udata,
1064 sizeof(fs_args32.null_args));
1065 *retval = sizeof(fs_args32.null_args);
1066 }
1067 }
1068 return error;
1069 }
1070
1071 int
1072 netbsd32_linkat(struct lwp *l, const struct netbsd32_linkat_args *uap,
1073 register_t *retval)
1074 {
1075 /* {
1076 syscallarg(int) fd1;
1077 syscallarg(const netbsd32_charp) name1;
1078 syscallarg(int) fd2;
1079 syscallarg(const netbsd32_charp) name2;
1080 syscallarg(int) flags;
1081 } */
1082 struct sys_linkat_args ua;
1083
1084 NETBSD32TO64_UAP(fd1);
1085 NETBSD32TOP_UAP(name1, const char);
1086 NETBSD32TO64_UAP(fd2);
1087 NETBSD32TOP_UAP(name2, const char);
1088 NETBSD32TO64_UAP(flags);
1089
1090 return sys_linkat(l, &ua, retval);
1091 }
1092
1093 int
1094 netbsd32_renameat(struct lwp *l, const struct netbsd32_renameat_args *uap,
1095 register_t *retval)
1096 {
1097 /* {
1098 syscallarg(int) fromfd;
1099 syscallarg(const netbsd32_charp) from;
1100 syscallarg(int) tofd;
1101 syscallarg(const netbsd32_charp) to;
1102 } */
1103 struct sys_renameat_args ua;
1104
1105 NETBSD32TO64_UAP(fromfd);
1106 NETBSD32TOP_UAP(from, const char);
1107 NETBSD32TO64_UAP(tofd);
1108 NETBSD32TOP_UAP(to, const char);
1109
1110 return sys_renameat(l, &ua, retval);
1111 }
1112
1113 int
1114 netbsd32_mkfifoat(struct lwp *l, const struct netbsd32_mkfifoat_args *uap,
1115 register_t *retval)
1116 {
1117 /* {
1118 syscallarg(int) fd;
1119 syscallarg(const netbsd32_charp) path;
1120 syscallarg(mode_t) mode;
1121 } */
1122 struct sys_mkfifoat_args ua;
1123
1124 NETBSD32TO64_UAP(fd);
1125 NETBSD32TOP_UAP(path, const char);
1126 NETBSD32TO64_UAP(mode);
1127
1128 return sys_mkfifoat(l, &ua, retval);
1129 }
1130
1131 int
1132 netbsd32_mknodat(struct lwp *l, const struct netbsd32_mknodat_args *uap,
1133 register_t *retval)
1134 {
1135 /* {
1136 syscallarg(int) fd;
1137 syscallarg(netbsd32_charp) path;
1138 syscallarg(mode_t) mode;
1139 syscallarg(int) pad;
1140 syscallarg(netbsd32_dev_t) dev;
1141 } */
1142 struct sys_mknodat_args ua;
1143
1144 NETBSD32TO64_UAP(fd);
1145 NETBSD32TOP_UAP(path, const char);
1146 NETBSD32TO64_UAP(mode);
1147 NETBSD32TO64_UAP(PAD);
1148 NETBSD32TO64_UAP(dev);
1149
1150 return sys_mknodat(l, &ua, retval);
1151 }
1152
1153 int
1154 netbsd32_mkdirat(struct lwp *l, const struct netbsd32_mkdirat_args *uap,
1155 register_t *retval)
1156 {
1157 /* {
1158 syscallarg(int) fd;
1159 syscallarg(netbsd32_charp) path;
1160 syscallarg(mode_t) mode;
1161 } */
1162 struct sys_mkdirat_args ua;
1163
1164 NETBSD32TO64_UAP(fd);
1165 NETBSD32TOP_UAP(path, const char);
1166 NETBSD32TO64_UAP(mode);
1167
1168 return sys_mkdirat(l, &ua, retval);
1169 }
1170
1171 int
1172 netbsd32_faccessat(struct lwp *l, const struct netbsd32_faccessat_args *uap,
1173 register_t *retval)
1174 {
1175 /* {
1176 syscallarg(int) fd;
1177 syscallarg(netbsd32_charp) path;
1178 syscallarg(int) amode;
1179 syscallarg(int) flag;
1180 } */
1181 struct sys_faccessat_args ua;
1182
1183 NETBSD32TO64_UAP(fd);
1184 NETBSD32TOP_UAP(path, const char);
1185 NETBSD32TO64_UAP(amode);
1186 NETBSD32TO64_UAP(flag);
1187
1188 return sys_faccessat(l, &ua, retval);
1189 }
1190
1191 int
1192 netbsd32_fchmodat(struct lwp *l, const struct netbsd32_fchmodat_args *uap,
1193 register_t *retval)
1194 {
1195 /* {
1196 syscallarg(int) fd;
1197 syscallarg(netbsd32_charp) path;
1198 syscallarg(mode_t) mode;
1199 syscallarg(int) flag;
1200 } */
1201 struct sys_fchmodat_args ua;
1202
1203 NETBSD32TO64_UAP(fd);
1204 NETBSD32TOP_UAP(path, const char);
1205 NETBSD32TO64_UAP(mode);
1206 NETBSD32TO64_UAP(flag);
1207
1208 return sys_fchmodat(l, &ua, retval);
1209 }
1210
1211 int
1212 netbsd32_fchownat(struct lwp *l, const struct netbsd32_fchownat_args *uap,
1213 register_t *retval)
1214 {
1215 /* {
1216 syscallarg(int) fd;
1217 syscallarg(netbsd32_charp) path;
1218 syscallarg(uid_t) owner;
1219 syscallarg(gid_t) group;
1220 syscallarg(int) flag;
1221 } */
1222 struct sys_fchownat_args ua;
1223
1224 NETBSD32TO64_UAP(fd);
1225 NETBSD32TOP_UAP(path, const char);
1226 NETBSD32TO64_UAP(owner);
1227 NETBSD32TO64_UAP(group);
1228 NETBSD32TO64_UAP(flag);
1229
1230 return sys_fchownat(l, &ua, retval);
1231 }
1232
1233 int
1234 netbsd32_fstatat(struct lwp *l, const struct netbsd32_fstatat_args *uap,
1235 register_t *retval)
1236 {
1237 /* {
1238 syscallarg(int) fd;
1239 syscallarg(netbsd32_charp) path;
1240 syscallarg(netbsd32_statp_t) buf;
1241 syscallarg(int) flag;
1242 } */
1243 struct netbsd32_stat sb32;
1244 struct stat sb;
1245 int follow;
1246 int error;
1247
1248 follow = (SCARG(uap, flag) & AT_SYMLINK_NOFOLLOW) ? NOFOLLOW : FOLLOW;
1249
1250 error = do_sys_statat(l, SCARG(uap, fd), SCARG_P32(uap, path),
1251 follow, &sb);
1252 if (error)
1253 return error;
1254 netbsd32_from_stat(&sb, &sb32);
1255 return copyout(&sb32, SCARG_P32(uap, buf), sizeof(sb32));
1256 }
1257
1258 int
1259 netbsd32_utimensat(struct lwp *l, const struct netbsd32_utimensat_args *uap,
1260 register_t *retval)
1261 {
1262 /* {
1263 syscallarg(int) fd;
1264 syscallarg(netbsd32_charp) path;
1265 syscallarg(netbsd32_timespecp_t) tptr;
1266 syscallarg(int) flag;
1267 } */
1268 struct timespec ts[2], *tsp;
1269 int follow;
1270 int error;
1271
1272 error = get_utimens32(SCARG_P32(uap, tptr), ts, &tsp);
1273 if (error != 0)
1274 return error;
1275
1276 follow = (SCARG(uap, flag) & AT_SYMLINK_NOFOLLOW) ? NOFOLLOW : FOLLOW;
1277
1278 return do_sys_utimensat(l, SCARG(uap, fd), NULL,
1279 SCARG_P32(uap, path), follow, tsp, UIO_SYSSPACE);
1280 }
1281
1282 int
1283 netbsd32_openat(struct lwp *l, const struct netbsd32_openat_args *uap,
1284 register_t *retval)
1285 {
1286 /* {
1287 syscallarg(int) fd;
1288 syscallarg(netbsd32_charp) path;
1289 syscallarg(int) oflags;
1290 syscallarg(mode_t) mode;
1291 } */
1292 struct sys_openat_args ua;
1293
1294 NETBSD32TO64_UAP(fd);
1295 NETBSD32TOP_UAP(path, const char);
1296 NETBSD32TO64_UAP(oflags);
1297 NETBSD32TO64_UAP(mode);
1298
1299 return sys_openat(l, &ua, retval);
1300 }
1301
1302 int
1303 netbsd32_readlinkat(struct lwp *l, const struct netbsd32_readlinkat_args *uap,
1304 register_t *retval)
1305 {
1306 /* {
1307 syscallarg(int) fd;
1308 syscallarg(netbsd32_charp) path;
1309 syscallarg(netbsd32_charp) buf;
1310 syscallarg(netbsd32_size_t) bufsize;
1311 } */
1312 struct sys_readlinkat_args ua;
1313
1314 NETBSD32TO64_UAP(fd);
1315 NETBSD32TOP_UAP(path, const char *);
1316 NETBSD32TOP_UAP(buf, char *);
1317 NETBSD32TOX_UAP(bufsize, size_t);
1318
1319 return sys_readlinkat(l, &ua, retval);
1320 }
1321
1322 int
1323 netbsd32_symlinkat(struct lwp *l, const struct netbsd32_symlinkat_args *uap,
1324 register_t *retval)
1325 {
1326 /* {
1327 syscallarg(netbsd32_charp) path1;
1328 syscallarg(int) fd;
1329 syscallarg(netbsd32_charp) path2;
1330 } */
1331 struct sys_symlinkat_args ua;
1332
1333 NETBSD32TOP_UAP(path1, const char *);
1334 NETBSD32TO64_UAP(fd);
1335 NETBSD32TOP_UAP(path2, const char *);
1336
1337 return sys_symlinkat(l, &ua, retval);
1338 }
1339
1340 int
1341 netbsd32_unlinkat(struct lwp *l, const struct netbsd32_unlinkat_args *uap,
1342 register_t *retval)
1343 {
1344 /* {
1345 syscallarg(int) fd;
1346 syscallarg(netbsd32_charp) path;
1347 syscallarg(int) flag;
1348 } */
1349 struct sys_unlinkat_args ua;
1350
1351 NETBSD32TO64_UAP(fd);
1352 NETBSD32TOP_UAP(path, const char *);
1353 NETBSD32TO64_UAP(flag);
1354
1355 return sys_unlinkat(l, &ua, retval);
1356 }
1357
1358 int
1359 netbsd32_futimens(struct lwp *l, const struct netbsd32_futimens_args *uap,
1360 register_t *retval)
1361 {
1362 /* {
1363 syscallarg(int) fd;
1364 syscallarg(netbsd32_timespecp_t) tptr;
1365 } */
1366 struct timespec ts[2], *tsp;
1367 file_t *fp;
1368 int error;
1369
1370 error = get_utimens32(SCARG_P32(uap, tptr), ts, &tsp);
1371 if (error != 0)
1372 return error;
1373
1374 /* fd_getvnode() will use the descriptor for us */
1375 if ((error = fd_getvnode(SCARG(uap, fd), &fp)) != 0)
1376 return (error);
1377 error = do_sys_utimensat(l, AT_FDCWD, fp->f_vnode, NULL, 0,
1378 tsp, UIO_SYSSPACE);
1379 fd_putfile(SCARG(uap, fd));
1380 return (error);
1381 }
1382