1 /* $NetBSD: nfs.c,v 1.2 1998/01/24 12:43:09 drochner Exp $ */
2
3 /*-
4 * Copyright (c) 1993 John Brezak
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 * 3. The name of the author may not be used to endorse or promote products
16 * derived from this software without specific prior written permission.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR `AS IS'' AND ANY EXPRESS OR
19 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
20 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
21 * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
22 * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
23 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
24 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
25 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
26 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
27 * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
28 * POSSIBILITY OF SUCH DAMAGE.
29 */
30
31 #include <sys/cdefs.h>
32 __FBSDID("$FreeBSD$");
33
34 #include <sys/param.h>
35 #include <sys/time.h>
36 #include <sys/socket.h>
37 #include <sys/stat.h>
38 #include <string.h>
39 #include <stddef.h>
40
41 #include <netinet/in.h>
42 #include <netinet/in_systm.h>
43
44 #include "rpcv2.h"
45 #include "nfsv2.h"
46
47 #include "stand.h"
48 #include "net.h"
49 #include "netif.h"
50 #include "rpc.h"
51
52 #define NFS_DEBUGxx
53
54 #define NFSREAD_MIN_SIZE 1024
55 #define NFSREAD_MAX_SIZE 16384
56
57 /* NFSv3 definitions */
58 #define NFS_V3MAXFHSIZE 64
59 #define NFS_VER3 3
60 #define RPCMNT_VER3 3
61 #define NFSPROCV3_LOOKUP 3
62 #define NFSPROCV3_READLINK 5
63 #define NFSPROCV3_READ 6
64 #define NFSPROCV3_READDIR 16
65
66 typedef struct {
67 uint32_t val[2];
68 } n_quad;
69
70 struct nfsv3_time {
71 uint32_t nfs_sec;
72 uint32_t nfs_nsec;
73 };
74
75 struct nfsv3_fattrs {
76 uint32_t fa_type;
77 uint32_t fa_mode;
78 uint32_t fa_nlink;
79 uint32_t fa_uid;
80 uint32_t fa_gid;
81 n_quad fa_size;
82 n_quad fa_used;
83 n_quad fa_rdev;
84 n_quad fa_fsid;
85 n_quad fa_fileid;
86 struct nfsv3_time fa_atime;
87 struct nfsv3_time fa_mtime;
88 struct nfsv3_time fa_ctime;
89 };
90
91 /*
92 * For NFSv3, the file handle is variable in size, so most fixed sized
93 * structures for arguments won't work. For most cases, a structure
94 * that starts with any fixed size section is followed by an array
95 * that covers the maximum size required.
96 */
97 struct nfsv3_readdir_repl {
98 uint32_t errno;
99 uint32_t ok;
100 struct nfsv3_fattrs fa;
101 uint32_t cookiev0;
102 uint32_t cookiev1;
103 };
104
105 struct nfsv3_readdir_entry {
106 uint32_t follows;
107 uint32_t fid0;
108 uint32_t fid1;
109 uint32_t len;
110 uint32_t nameplus[0];
111 };
112
113 struct nfs_iodesc {
114 struct iodesc *iodesc;
115 off_t off;
116 uint32_t fhsize;
117 u_char fh[NFS_V3MAXFHSIZE];
118 struct nfsv3_fattrs fa; /* all in network order */
119 uint64_t cookie;
120 };
121
122 /*
123 * XXX interactions with tftp? See nfswrapper.c for a confusing
124 * issue.
125 */
126 int nfs_open(const char *path, struct open_file *f);
127 static int nfs_close(struct open_file *f);
128 static int nfs_read(struct open_file *f, void *buf, size_t size, size_t *resid);
129 static off_t nfs_seek(struct open_file *f, off_t offset, int where);
130 static int nfs_stat(struct open_file *f, struct stat *sb);
131 static int nfs_readdir(struct open_file *f, struct dirent *d);
132
133 struct nfs_iodesc nfs_root_node;
134
135 struct fs_ops nfs_fsops = {
136 "nfs",
137 nfs_open,
138 nfs_close,
139 nfs_read,
140 null_write,
141 nfs_seek,
142 nfs_stat,
143 nfs_readdir
144 };
145
146 static int nfs_read_size = NFSREAD_MIN_SIZE;
147
148 /*
149 * Improve boot performance over NFS
150 */
151 static void
set_nfs_read_size(void)152 set_nfs_read_size(void)
153 {
154 char *env, *end;
155 char buf[10];
156
157 if ((env = getenv("nfs.read_size")) != NULL) {
158 errno = 0;
159 nfs_read_size = (int)strtol(env, &end, 0);
160 if (errno != 0 || *env == '\0' || *end != '\0') {
161 printf("%s: bad value: \"%s\", defaulting to %d\n",
162 "nfs.read_size", env, NFSREAD_MIN_SIZE);
163 nfs_read_size = NFSREAD_MIN_SIZE;
164 }
165 }
166 if (nfs_read_size < NFSREAD_MIN_SIZE) {
167 printf("%s: bad value: \"%d\", defaulting to %d\n",
168 "nfs.read_size", nfs_read_size, NFSREAD_MIN_SIZE);
169 nfs_read_size = NFSREAD_MIN_SIZE;
170 }
171 if (nfs_read_size > NFSREAD_MAX_SIZE) {
172 printf("%s: bad value: \"%d\", defaulting to %d\n",
173 "nfs.read_size", nfs_read_size, NFSREAD_MIN_SIZE);
174 nfs_read_size = NFSREAD_MAX_SIZE;
175 }
176 snprintf(buf, sizeof (buf), "%d", nfs_read_size);
177 setenv("nfs.read_size", buf, 1);
178 }
179
180 /*
181 * Fetch the root file handle (call mount daemon)
182 * Return zero or error number.
183 */
184 int
nfs_getrootfh(struct iodesc * d,char * path,uint32_t * fhlenp,u_char * fhp)185 nfs_getrootfh(struct iodesc *d, char *path, uint32_t *fhlenp, u_char *fhp)
186 {
187 void *pkt = NULL;
188 int len;
189 struct args {
190 uint32_t len;
191 char path[FNAME_SIZE];
192 } *args;
193 struct repl {
194 uint32_t errno;
195 uint32_t fhsize;
196 u_char fh[NFS_V3MAXFHSIZE];
197 uint32_t authcnt;
198 uint32_t auth[7];
199 } *repl;
200 struct {
201 uint32_t h[RPC_HEADER_WORDS];
202 struct args d;
203 } sdata;
204 size_t cc;
205
206 #ifdef NFS_DEBUG
207 if (debug)
208 printf("nfs_getrootfh: %s\n", path);
209 #endif
210
211 args = &sdata.d;
212
213 bzero(args, sizeof(*args));
214 len = strlen(path);
215 if (len > sizeof(args->path))
216 len = sizeof(args->path);
217 args->len = htonl(len);
218 bcopy(path, args->path, len);
219 len = sizeof(uint32_t) + roundup(len, sizeof(uint32_t));
220
221 cc = rpc_call(d, RPCPROG_MNT, RPCMNT_VER3, RPCMNT_MOUNT,
222 args, len, (void **)&repl, &pkt);
223 if (cc == -1) {
224 free(pkt);
225 /* errno was set by rpc_call */
226 return (errno);
227 }
228 if (cc < 2 * sizeof (uint32_t)) {
229 free(pkt);
230 return (EBADRPC);
231 }
232 if (repl->errno != 0) {
233 free(pkt);
234 return (ntohl(repl->errno));
235 }
236 *fhlenp = ntohl(repl->fhsize);
237 bcopy(repl->fh, fhp, *fhlenp);
238
239 set_nfs_read_size();
240 free(pkt);
241 return (0);
242 }
243
244 /*
245 * Lookup a file. Store handle and attributes.
246 * Return zero or error number.
247 */
248 int
nfs_lookupfh(struct nfs_iodesc * d,const char * name,struct nfs_iodesc * newfd)249 nfs_lookupfh(struct nfs_iodesc *d, const char *name, struct nfs_iodesc *newfd)
250 {
251 void *pkt = NULL;
252 int len, pos;
253 struct args {
254 uint32_t fhsize;
255 uint32_t fhplusname[1 +
256 (NFS_V3MAXFHSIZE + FNAME_SIZE) / sizeof(uint32_t)];
257 } *args;
258 struct repl {
259 uint32_t errno;
260 uint32_t fhsize;
261 uint32_t fhplusattr[(NFS_V3MAXFHSIZE +
262 2 * (sizeof(uint32_t) +
263 sizeof(struct nfsv3_fattrs))) / sizeof(uint32_t)];
264 } *repl;
265 struct {
266 uint32_t h[RPC_HEADER_WORDS];
267 struct args d;
268 } sdata;
269 ssize_t cc;
270
271 #ifdef NFS_DEBUG
272 if (debug)
273 printf("lookupfh: called\n");
274 #endif
275
276 args = &sdata.d;
277
278 bzero(args, sizeof(*args));
279 args->fhsize = htonl(d->fhsize);
280 bcopy(d->fh, args->fhplusname, d->fhsize);
281 len = strlen(name);
282 if (len > FNAME_SIZE)
283 len = FNAME_SIZE;
284 pos = roundup(d->fhsize, sizeof(uint32_t)) / sizeof(uint32_t);
285 args->fhplusname[pos++] = htonl(len);
286 bcopy(name, &args->fhplusname[pos], len);
287 len = sizeof(uint32_t) + pos * sizeof(uint32_t) +
288 roundup(len, sizeof(uint32_t));
289
290 cc = rpc_call(d->iodesc, NFS_PROG, NFS_VER3, NFSPROCV3_LOOKUP,
291 args, len, (void **)&repl, &pkt);
292 if (cc == -1) {
293 free(pkt);
294 return (errno); /* XXX - from rpc_call */
295 }
296 if (cc < 2 * sizeof(uint32_t)) {
297 free(pkt);
298 return (EIO);
299 }
300 if (repl->errno != 0) {
301 free(pkt);
302 /* saerrno.h now matches NFS error numbers. */
303 return (ntohl(repl->errno));
304 }
305 newfd->fhsize = ntohl(repl->fhsize);
306 bcopy(repl->fhplusattr, &newfd->fh, newfd->fhsize);
307 pos = roundup(newfd->fhsize, sizeof(uint32_t)) / sizeof(uint32_t);
308 if (repl->fhplusattr[pos++] == 0) {
309 free(pkt);
310 return (EIO);
311 }
312 bcopy(&repl->fhplusattr[pos], &newfd->fa, sizeof(newfd->fa));
313 free(pkt);
314 return (0);
315 }
316
317 #ifndef NFS_NOSYMLINK
318 /*
319 * Get the destination of a symbolic link.
320 */
321 int
nfs_readlink(struct nfs_iodesc * d,char * buf)322 nfs_readlink(struct nfs_iodesc *d, char *buf)
323 {
324 void *pkt = NULL;
325 struct args {
326 uint32_t fhsize;
327 u_char fh[NFS_V3MAXFHSIZE];
328 } *args;
329 struct repl {
330 uint32_t errno;
331 uint32_t ok;
332 struct nfsv3_fattrs fa;
333 uint32_t len;
334 u_char path[NFS_MAXPATHLEN];
335 } *repl;
336 struct {
337 uint32_t h[RPC_HEADER_WORDS];
338 struct args d;
339 } sdata;
340 ssize_t cc;
341 int rc = 0;
342
343 #ifdef NFS_DEBUG
344 if (debug)
345 printf("readlink: called\n");
346 #endif
347
348 args = &sdata.d;
349
350 bzero(args, sizeof(*args));
351 args->fhsize = htonl(d->fhsize);
352 bcopy(d->fh, args->fh, d->fhsize);
353 cc = rpc_call(d->iodesc, NFS_PROG, NFS_VER3, NFSPROCV3_READLINK,
354 args, sizeof(uint32_t) + roundup(d->fhsize, sizeof(uint32_t)),
355 (void **)&repl, &pkt);
356 if (cc == -1)
357 return (errno);
358
359 if (cc < 2 * sizeof(uint32_t)) {
360 rc = EIO;
361 goto done;
362 }
363
364 if (repl->errno != 0) {
365 rc = ntohl(repl->errno);
366 goto done;
367 }
368
369 if (repl->ok == 0) {
370 rc = EIO;
371 goto done;
372 }
373
374 repl->len = ntohl(repl->len);
375 if (repl->len > NFS_MAXPATHLEN) {
376 rc = ENAMETOOLONG;
377 goto done;
378 }
379
380 bcopy(repl->path, buf, repl->len);
381 buf[repl->len] = 0;
382 done:
383 free(pkt);
384 return (rc);
385 }
386 #endif
387
388 /*
389 * Read data from a file.
390 * Return transfer count or -1 (and set errno)
391 */
392 ssize_t
nfs_readdata(struct nfs_iodesc * d,off_t off,void * addr,size_t len)393 nfs_readdata(struct nfs_iodesc *d, off_t off, void *addr, size_t len)
394 {
395 void *pkt = NULL;
396 struct args {
397 uint32_t fhsize;
398 uint32_t fhoffcnt[NFS_V3MAXFHSIZE / sizeof(uint32_t) + 3];
399 } *args;
400 struct repl {
401 uint32_t errno;
402 uint32_t ok;
403 struct nfsv3_fattrs fa;
404 uint32_t count;
405 uint32_t eof;
406 uint32_t len;
407 u_char data[NFSREAD_MAX_SIZE];
408 } *repl;
409 struct {
410 uint32_t h[RPC_HEADER_WORDS];
411 struct args d;
412 } sdata;
413 size_t cc;
414 long x;
415 int hlen, rlen, pos;
416
417 args = &sdata.d;
418
419 bzero(args, sizeof(*args));
420 args->fhsize = htonl(d->fhsize);
421 bcopy(d->fh, args->fhoffcnt, d->fhsize);
422 pos = roundup(d->fhsize, sizeof(uint32_t)) / sizeof(uint32_t);
423 args->fhoffcnt[pos++] = 0;
424 args->fhoffcnt[pos++] = htonl((uint32_t)off);
425 if (len > nfs_read_size)
426 len = nfs_read_size;
427 args->fhoffcnt[pos] = htonl((uint32_t)len);
428 hlen = offsetof(struct repl, data[0]);
429
430 cc = rpc_call(d->iodesc, NFS_PROG, NFS_VER3, NFSPROCV3_READ,
431 args, 4 * sizeof(uint32_t) + roundup(d->fhsize, sizeof(uint32_t)),
432 (void **)&repl, &pkt);
433 if (cc == -1) {
434 /* errno was already set by rpc_call */
435 return (-1);
436 }
437 if (cc < hlen) {
438 errno = EBADRPC;
439 free(pkt);
440 return (-1);
441 }
442 if (repl->errno != 0) {
443 errno = ntohl(repl->errno);
444 free(pkt);
445 return (-1);
446 }
447 rlen = cc - hlen;
448 x = ntohl(repl->count);
449 if (rlen < x) {
450 printf("nfsread: short packet, %d < %ld\n", rlen, x);
451 errno = EBADRPC;
452 free(pkt);
453 return (-1);
454 }
455 bcopy(repl->data, addr, x);
456 free(pkt);
457 return (x);
458 }
459
460 /*
461 * Open a file.
462 * return zero or error number
463 */
464 int
nfs_open(const char * upath,struct open_file * f)465 nfs_open(const char *upath, struct open_file *f)
466 {
467 struct iodesc *desc;
468 struct nfs_iodesc *currfd = NULL;
469 char buf[2 * NFS_V3MAXFHSIZE + 3];
470 u_char *fh;
471 char *cp;
472 int i;
473 #ifndef NFS_NOSYMLINK
474 struct nfs_iodesc *newfd = NULL;
475 char *ncp;
476 int c;
477 char namebuf[NFS_MAXPATHLEN + 1];
478 char linkbuf[NFS_MAXPATHLEN + 1];
479 int nlinks = 0;
480 #endif
481 int error;
482 char *path = NULL;
483
484 if (netproto != NET_NFS)
485 return (EINVAL);
486
487 #ifdef NFS_DEBUG
488 if (debug)
489 printf("nfs_open: %s (rootip=%s rootpath=%s)\n", upath,
490 inet_ntoa(rootip), rootpath);
491 #endif
492 if (!rootpath[0]) {
493 printf("no rootpath, no nfs\n");
494 return (ENXIO);
495 }
496
497 if (f->f_dev->dv_type != DEVT_NET)
498 return (EINVAL);
499
500 if (!(desc = socktodesc(*(int *)(f->f_devdata))))
501 return (EINVAL);
502
503 /* Bind to a reserved port. */
504 desc->myport = htons(--rpc_port);
505 desc->destip = rootip;
506 if ((error = nfs_getrootfh(desc, rootpath, &nfs_root_node.fhsize,
507 nfs_root_node.fh)))
508 return (error);
509 nfs_root_node.fa.fa_type = htonl(NFDIR);
510 nfs_root_node.fa.fa_mode = htonl(0755);
511 nfs_root_node.fa.fa_nlink = htonl(2);
512 nfs_root_node.iodesc = desc;
513
514 fh = &nfs_root_node.fh[0];
515 buf[0] = 'X';
516 cp = &buf[1];
517 for (i = 0; i < nfs_root_node.fhsize; i++, cp += 2)
518 sprintf(cp, "%02x", fh[i]);
519 sprintf(cp, "X");
520 setenv("boot.nfsroot.server", inet_ntoa(rootip), 1);
521 setenv("boot.nfsroot.path", rootpath, 1);
522 setenv("boot.nfsroot.nfshandle", buf, 1);
523 sprintf(buf, "%d", nfs_root_node.fhsize);
524 setenv("boot.nfsroot.nfshandlelen", buf, 1);
525
526 /* Allocate file system specific data structure */
527 currfd = malloc(sizeof(*newfd));
528 if (currfd == NULL) {
529 error = ENOMEM;
530 goto out;
531 }
532 #ifndef NFS_NOSYMLINK
533 bcopy(&nfs_root_node, currfd, sizeof(*currfd));
534 newfd = NULL;
535
536 cp = path = strdup(upath);
537 if (path == NULL) {
538 error = ENOMEM;
539 goto out;
540 }
541 while (*cp) {
542 /*
543 * Remove extra separators
544 */
545 while (*cp == '/')
546 cp++;
547
548 if (*cp == '\0')
549 break;
550 /*
551 * Check that current node is a directory.
552 */
553 if (currfd->fa.fa_type != htonl(NFDIR)) {
554 error = ENOTDIR;
555 goto out;
556 }
557
558 /* allocate file system specific data structure */
559 newfd = malloc(sizeof(*newfd));
560 if (newfd == NULL) {
561 error = ENOMEM;
562 goto out;
563 }
564 newfd->iodesc = currfd->iodesc;
565
566 /*
567 * Get next component of path name.
568 */
569 {
570 int len = 0;
571
572 ncp = cp;
573 while ((c = *cp) != '\0' && c != '/') {
574 if (++len > NFS_MAXNAMLEN) {
575 error = ENOENT;
576 goto out;
577 }
578 cp++;
579 }
580 *cp = '\0';
581 }
582
583 /* lookup a file handle */
584 error = nfs_lookupfh(currfd, ncp, newfd);
585 *cp = c;
586 if (error)
587 goto out;
588
589 /*
590 * Check for symbolic link
591 */
592 if (newfd->fa.fa_type == htonl(NFLNK)) {
593 int link_len, len;
594
595 error = nfs_readlink(newfd, linkbuf);
596 if (error)
597 goto out;
598
599 link_len = strlen(linkbuf);
600 len = strlen(cp);
601
602 if (link_len + len > MAXPATHLEN
603 || ++nlinks > MAXSYMLINKS) {
604 error = ENOENT;
605 goto out;
606 }
607
608 bcopy(cp, &namebuf[link_len], len + 1);
609 bcopy(linkbuf, namebuf, link_len);
610
611 /*
612 * If absolute pathname, restart at root.
613 * If relative pathname, restart at parent directory.
614 */
615 cp = namebuf;
616 if (*cp == '/')
617 bcopy(&nfs_root_node, currfd, sizeof(*currfd));
618
619 free(newfd);
620 newfd = NULL;
621
622 continue;
623 }
624
625 free(currfd);
626 currfd = newfd;
627 newfd = NULL;
628 }
629
630 error = 0;
631
632 out:
633 free(newfd);
634 free(path);
635 #else
636 currfd->iodesc = desc;
637
638 error = nfs_lookupfh(&nfs_root_node, upath, currfd);
639 #endif
640 if (!error) {
641 currfd->off = 0;
642 currfd->cookie = 0;
643 f->f_fsdata = (void *)currfd;
644 return (0);
645 }
646
647 #ifdef NFS_DEBUG
648 if (debug)
649 printf("nfs_open: %s lookupfh failed: %s\n",
650 path, strerror(error));
651 #endif
652 free(currfd);
653
654 return (error);
655 }
656
657 int
nfs_close(struct open_file * f)658 nfs_close(struct open_file *f)
659 {
660 struct nfs_iodesc *fp = (struct nfs_iodesc *)f->f_fsdata;
661
662 #ifdef NFS_DEBUG
663 if (debug)
664 printf("nfs_close: fp=0x%lx\n", (u_long)fp);
665 #endif
666
667 free(fp);
668 f->f_fsdata = NULL;
669
670 return (0);
671 }
672
673 /*
674 * read a portion of a file
675 */
676 int
nfs_read(struct open_file * f,void * buf,size_t size,size_t * resid)677 nfs_read(struct open_file *f, void *buf, size_t size, size_t *resid)
678 {
679 struct nfs_iodesc *fp = (struct nfs_iodesc *)f->f_fsdata;
680 ssize_t cc;
681 char *addr = buf;
682
683 #ifdef NFS_DEBUG
684 if (debug)
685 printf("nfs_read: size=%lu off=%d\n", (u_long)size,
686 (int)fp->off);
687 #endif
688 while ((int)size > 0) {
689 twiddle(16);
690 cc = nfs_readdata(fp, fp->off, (void *)addr, size);
691 /* XXX maybe should retry on certain errors */
692 if (cc == -1) {
693 #ifdef NFS_DEBUG
694 if (debug)
695 printf("nfs_read: read: %s\n", strerror(errno));
696 #endif
697 return (errno); /* XXX - from nfs_readdata */
698 }
699 if (cc == 0) {
700 #ifdef NFS_DEBUG
701 if (debug)
702 printf("nfs_read: hit EOF unexpectedly\n");
703 #endif
704 goto ret;
705 }
706 fp->off += cc;
707 addr += cc;
708 size -= cc;
709 }
710 ret:
711 if (resid)
712 *resid = size;
713
714 return (0);
715 }
716
717 off_t
nfs_seek(struct open_file * f,off_t offset,int where)718 nfs_seek(struct open_file *f, off_t offset, int where)
719 {
720 struct nfs_iodesc *d = (struct nfs_iodesc *)f->f_fsdata;
721 uint32_t size = ntohl(d->fa.fa_size.val[1]);
722
723 switch (where) {
724 case SEEK_SET:
725 d->off = offset;
726 break;
727 case SEEK_CUR:
728 d->off += offset;
729 break;
730 case SEEK_END:
731 d->off = size - offset;
732 break;
733 default:
734 errno = EINVAL;
735 return (-1);
736 }
737
738 return (d->off);
739 }
740
741 /* NFNON=0, NFREG=1, NFDIR=2, NFBLK=3, NFCHR=4, NFLNK=5, NFSOCK=6, NFFIFO=7 */
742 int nfs_stat_types[9] = {
743 0, S_IFREG, S_IFDIR, S_IFBLK, S_IFCHR, S_IFLNK, S_IFSOCK, S_IFIFO, 0 };
744
745 int
nfs_stat(struct open_file * f,struct stat * sb)746 nfs_stat(struct open_file *f, struct stat *sb)
747 {
748 struct nfs_iodesc *fp = (struct nfs_iodesc *)f->f_fsdata;
749 uint32_t ftype, mode;
750
751 ftype = ntohl(fp->fa.fa_type);
752 mode = ntohl(fp->fa.fa_mode);
753 mode |= nfs_stat_types[ftype & 7];
754
755 sb->st_mode = mode;
756 sb->st_nlink = ntohl(fp->fa.fa_nlink);
757 sb->st_uid = ntohl(fp->fa.fa_uid);
758 sb->st_gid = ntohl(fp->fa.fa_gid);
759 sb->st_size = ntohl(fp->fa.fa_size.val[1]);
760
761 return (0);
762 }
763
764 static int
nfs_readdir(struct open_file * f,struct dirent * d)765 nfs_readdir(struct open_file *f, struct dirent *d)
766 {
767 struct nfs_iodesc *fp = (struct nfs_iodesc *)f->f_fsdata;
768 struct nfsv3_readdir_repl *repl;
769 struct nfsv3_readdir_entry *rent;
770 static void *pkt = NULL;
771 static char *buf;
772 static struct nfs_iodesc *pfp = NULL;
773 static uint64_t cookie = 0;
774 size_t cc;
775 int pos, rc;
776
777 struct args {
778 uint32_t fhsize;
779 uint32_t fhpluscookie[5 + NFS_V3MAXFHSIZE];
780 } *args;
781 struct {
782 uint32_t h[RPC_HEADER_WORDS];
783 struct args d;
784 } sdata;
785
786 if (fp != pfp || fp->off != cookie) {
787 pfp = NULL;
788 refill:
789 free(pkt);
790 pkt = NULL;
791 args = &sdata.d;
792 bzero(args, sizeof(*args));
793
794 args->fhsize = htonl(fp->fhsize);
795 bcopy(fp->fh, args->fhpluscookie, fp->fhsize);
796 pos = roundup(fp->fhsize, sizeof(uint32_t)) / sizeof(uint32_t);
797 args->fhpluscookie[pos++] = htonl(fp->off >> 32);
798 args->fhpluscookie[pos++] = htonl(fp->off);
799 args->fhpluscookie[pos++] = htonl(fp->cookie >> 32);
800 args->fhpluscookie[pos++] = htonl(fp->cookie);
801 args->fhpluscookie[pos] = htonl(NFS_READDIRSIZE);
802
803 cc = rpc_call(fp->iodesc, NFS_PROG, NFS_VER3, NFSPROCV3_READDIR,
804 args, 6 * sizeof(uint32_t) +
805 roundup(fp->fhsize, sizeof(uint32_t)),
806 (void **)&buf, &pkt);
807 if (cc == -1) {
808 rc = errno;
809 goto err;
810 }
811 repl = (struct nfsv3_readdir_repl *)buf;
812 if (repl->errno != 0) {
813 rc = ntohl(repl->errno);
814 goto err;
815 }
816 pfp = fp;
817 cookie = fp->off;
818 fp->cookie = ((uint64_t)ntohl(repl->cookiev0) << 32) |
819 ntohl(repl->cookiev1);
820 buf += sizeof (struct nfsv3_readdir_repl);
821 }
822 rent = (struct nfsv3_readdir_entry *)buf;
823
824 if (rent->follows == 0) {
825 /* fid0 is actually eof */
826 if (rent->fid0 != 0) {
827 rc = ENOENT;
828 goto err;
829 }
830 goto refill;
831 }
832
833 d->d_namlen = ntohl(rent->len);
834 bcopy(rent->nameplus, d->d_name, d->d_namlen);
835 d->d_name[d->d_namlen] = '\0';
836
837 pos = roundup(d->d_namlen, sizeof(uint32_t)) / sizeof(uint32_t);
838 fp->off = cookie = ((uint64_t)ntohl(rent->nameplus[pos]) << 32) |
839 ntohl(rent->nameplus[pos + 1]);
840 pos += 2;
841 buf = (char *)&rent->nameplus[pos];
842 return (0);
843
844 err:
845 free(pkt);
846 pkt = NULL;
847 pfp = NULL;
848 cookie = 0;
849 return (rc);
850 }
851