nfs_boot.c revision 1.50.2.1 1 /* $NetBSD: nfs_boot.c,v 1.50.2.1 1999/10/05 22:15:09 he Exp $ */
2
3 /*-
4 * Copyright (c) 1995, 1997 The NetBSD Foundation, Inc.
5 * All rights reserved.
6 *
7 * This code is derived from software contributed to The NetBSD Foundation
8 * by Adam Glass and Gordon W. Ross.
9 *
10 * Redistribution and use in source and binary forms, with or without
11 * modification, are permitted provided that the following conditions
12 * are met:
13 * 1. Redistributions of source code must retain the above copyright
14 * notice, this list of conditions and the following disclaimer.
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in the
17 * documentation and/or other materials provided with the distribution.
18 * 3. All advertising materials mentioning features or use of this software
19 * must display the following acknowledgement:
20 * This product includes software developed by the NetBSD
21 * Foundation, Inc. and its contributors.
22 * 4. Neither the name of The NetBSD Foundation nor the names of its
23 * contributors may be used to endorse or promote products derived
24 * from this software without specific prior written permission.
25 *
26 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 * POSSIBILITY OF SUCH DAMAGE.
37 */
38
39 /*
40 * Support for NFS diskless booting, specifically getting information
41 * about where to mount root from, what pathnames, etc.
42 */
43
44 #include "opt_nfs_boot.h"
45
46 #include <sys/param.h>
47 #include <sys/systm.h>
48 #include <sys/kernel.h>
49 #include <sys/conf.h>
50 #include <sys/device.h>
51 #include <sys/ioctl.h>
52 #include <sys/proc.h>
53 #include <sys/mount.h>
54 #include <sys/mbuf.h>
55 #include <sys/reboot.h>
56 #include <sys/socket.h>
57 #include <sys/socketvar.h>
58
59 #include <net/if.h>
60 #include <net/route.h>
61 #include <net/if_ether.h>
62 #include <net/if_types.h>
63
64 #include <netinet/in.h>
65 #include <netinet/if_inarp.h>
66
67 #include <nfs/rpcv2.h>
68 #include <nfs/krpc.h>
69 #include <nfs/xdr_subs.h>
70
71 #include <nfs/nfsproto.h>
72 #include <nfs/nfs.h>
73 #include <nfs/nfsmount.h>
74 #include <nfs/nfsdiskless.h>
75
76 /*
77 * There are two implementations of NFS diskless boot.
78 * One implementation uses BOOTP (RFC951, RFC1048),
79 * the other uses Sun RPC/bootparams. See the files:
80 * nfs_bootp.c: BOOTP (RFC951, RFC1048)
81 * nfs_bootsun.c: Sun RPC/bootparams
82 */
83 #if defined(NFS_BOOT_BOOTP) || defined(NFS_BOOT_DHCP)
84 int nfs_boot_rfc951 = 1; /* BOOTP enabled (default) */
85 #endif
86 #ifdef NFS_BOOT_BOOTPARAM
87 int nfs_boot_bootparam = 1; /* BOOTPARAM enabled (default) */
88 #endif
89
90 /* mountd RPC */
91 static int md_mount __P((struct sockaddr_in *mdsin, char *path,
92 struct nfs_args *argp));
93
94 static void nfs_boot_defrt __P((struct in_addr *));
95 static int nfs_boot_getfh __P((struct nfs_dlmount *ndm));
96
97
98 /*
99 * Called with an empty nfs_diskless struct to be filled in.
100 * Find an interface, determine its ip address (etc.) and
101 * save all the boot parameters in the nfs_diskless struct.
102 */
103 int
104 nfs_boot_init(nd, procp)
105 struct nfs_diskless *nd;
106 struct proc *procp;
107 {
108 struct ifnet *ifp;
109 int error;
110
111 /*
112 * Find the network interface.
113 */
114 ifp = ifunit(root_device->dv_xname);
115 if (ifp == NULL) {
116 printf("nfs_boot: '%s' not found\n",
117 root_device->dv_xname);
118 return (ENXIO);
119 }
120 nd->nd_ifp = ifp;
121
122 error = EADDRNOTAVAIL; /* ??? */
123 #if defined(NFS_BOOT_BOOTP) || defined(NFS_BOOT_DHCP)
124 if (error && nfs_boot_rfc951) {
125 #if defined(NFS_BOOT_DHCP)
126 printf("nfs_boot: trying DHCP/BOOTP\n");
127 #else
128 printf("nfs_boot: trying BOOTP\n");
129 #endif
130 error = nfs_bootdhcp(nd, procp);
131 }
132 #endif
133 #ifdef NFS_BOOT_BOOTPARAM
134 if (error && nfs_boot_bootparam) {
135 printf("nfs_boot: trying RARP (and RPC/bootparam)\n");
136 error = nfs_bootparam(nd, procp);
137 }
138 #endif
139 if (error)
140 return (error);
141
142 /*
143 * If the gateway address is set, add a default route.
144 * (The mountd RPCs may go across a gateway.)
145 */
146 if (nd->nd_gwip.s_addr)
147 nfs_boot_defrt(&nd->nd_gwip);
148
149 /*
150 * Now fetch the NFS file handles as appropriate.
151 */
152 error = nfs_boot_getfh(&nd->nd_root);
153
154 if (error)
155 nfs_boot_cleanup(nd, procp);
156
157 return (error);
158 }
159
160 void
161 nfs_boot_cleanup(nd, procp)
162 struct nfs_diskless *nd;
163 struct proc *procp;
164 {
165
166 nfs_boot_deladdress(nd->nd_ifp, procp, nd->nd_myip.s_addr);
167 nfs_boot_ifupdown(nd->nd_ifp, procp, 0);
168 nfs_boot_flushrt(nd->nd_ifp);
169 }
170
171 int
172 nfs_boot_ifupdown(ifp, procp, up)
173 struct ifnet *ifp;
174 struct proc *procp;
175 int up;
176 {
177 struct socket *so;
178 struct ifreq ireq;
179 int error;
180
181 memset(&ireq, 0, sizeof(ireq));
182 memcpy(ireq.ifr_name, ifp->if_xname, IFNAMSIZ);
183
184 /*
185 * Get a socket to use for various things in here.
186 * After this, use "goto out" to cleanup and return.
187 */
188 error = socreate(AF_INET, &so, SOCK_DGRAM, 0);
189 if (error) {
190 printf("ifupdown: socreate, error=%d\n", error);
191 return (error);
192 }
193
194 /*
195 * Bring up the interface. (just set the "up" flag)
196 * Get the old interface flags and or IFF_UP into them so
197 * things like media selection flags are not clobbered.
198 */
199 error = ifioctl(so, SIOCGIFFLAGS, (caddr_t)&ireq, procp);
200 if (error) {
201 printf("ifupdown: GIFFLAGS, error=%d\n", error);
202 goto out;
203 }
204 if (up)
205 ireq.ifr_flags |= IFF_UP;
206 else
207 ireq.ifr_flags &= ~IFF_UP;
208 error = ifioctl(so, SIOCSIFFLAGS, (caddr_t)&ireq, procp);
209 if (error) {
210 printf("ifupdown: SIFFLAGS, error=%d\n", error);
211 goto out;
212 }
213
214 if (up)
215 delay(3000000); /* give the link some time to get up */
216 out:
217 soclose(so);
218 return (error);
219 }
220
221 int
222 nfs_boot_setaddress(ifp, procp, addr, netmask, braddr)
223 struct ifnet *ifp;
224 struct proc *procp;
225 u_int32_t addr, netmask, braddr;
226 {
227 struct socket *so;
228 struct ifaliasreq iareq;
229 struct sockaddr_in *sin;
230 int error;
231
232 /*
233 * Get a socket to use for various things in here.
234 * After this, use "goto out" to cleanup and return.
235 */
236 error = socreate(AF_INET, &so, SOCK_DGRAM, 0);
237 if (error) {
238 printf("setaddress: socreate, error=%d\n", error);
239 return (error);
240 }
241
242 memset(&iareq, 0, sizeof(iareq));
243 memcpy(iareq.ifra_name, ifp->if_xname, IFNAMSIZ);
244
245 /* Set the I/F address */
246 sin = (struct sockaddr_in *)&iareq.ifra_addr;
247 sin->sin_len = sizeof(*sin);
248 sin->sin_family = AF_INET;
249 sin->sin_addr.s_addr = addr;
250
251 /* Set the netmask */
252 if (netmask != INADDR_ANY) {
253 sin = (struct sockaddr_in *)&iareq.ifra_mask;
254 sin->sin_len = sizeof(*sin);
255 sin->sin_family = AF_INET;
256 sin->sin_addr.s_addr = netmask;
257 } /* else leave subnetmask unspecified (len=0) */
258
259 /* Set the broadcast addr. */
260 if (braddr != INADDR_ANY) {
261 sin = (struct sockaddr_in *)&iareq.ifra_broadaddr;
262 sin->sin_len = sizeof(*sin);
263 sin->sin_family = AF_INET;
264 sin->sin_addr.s_addr = braddr;
265 } /* else leave broadcast addr unspecified (len=0) */
266
267 error = ifioctl(so, SIOCAIFADDR, (caddr_t)&iareq, procp);
268 if (error) {
269 printf("setaddress, error=%d\n", error);
270 goto out;
271 }
272
273 delay(3000000); /* give the link some time to get up */
274 out:
275 soclose(so);
276 return (error);
277 }
278
279 int
280 nfs_boot_deladdress(ifp, procp, addr)
281 struct ifnet *ifp;
282 struct proc *procp;
283 u_int32_t addr;
284 {
285 struct socket *so;
286 struct ifreq ireq;
287 struct sockaddr_in *sin;
288 int error;
289
290 /*
291 * Get a socket to use for various things in here.
292 * After this, use "goto out" to cleanup and return.
293 */
294 error = socreate(AF_INET, &so, SOCK_DGRAM, 0);
295 if (error) {
296 printf("deladdress: socreate, error=%d\n", error);
297 return (error);
298 }
299
300 memset(&ireq, 0, sizeof(ireq));
301 memcpy(ireq.ifr_name, ifp->if_xname, IFNAMSIZ);
302
303 sin = (struct sockaddr_in *)&ireq.ifr_addr;
304 sin->sin_len = sizeof(*sin);
305 sin->sin_family = AF_INET;
306 sin->sin_addr.s_addr = addr;
307
308 error = ifioctl(so, SIOCDIFADDR, (caddr_t)&ireq, procp);
309 if (error) {
310 printf("deladdress, error=%d\n", error);
311 goto out;
312 }
313
314 out:
315 soclose(so);
316 return (error);
317 }
318
319 int
320 nfs_boot_setrecvtimo(so)
321 struct socket *so;
322 {
323 struct mbuf *m;
324 struct timeval *tv;
325
326 m = m_get(M_WAIT, MT_SOOPTS);
327 tv = mtod(m, struct timeval *);
328 m->m_len = sizeof(*tv);
329 tv->tv_sec = 1;
330 tv->tv_usec = 0;
331 return (sosetopt(so, SOL_SOCKET, SO_RCVTIMEO, m));
332 }
333
334 int
335 nfs_boot_enbroadcast(so)
336 struct socket *so;
337 {
338 struct mbuf *m;
339 int32_t *on;
340
341 m = m_get(M_WAIT, MT_SOOPTS);
342 on = mtod(m, int32_t *);
343 m->m_len = sizeof(*on);
344 *on = 1;
345 return (sosetopt(so, SOL_SOCKET, SO_BROADCAST, m));
346 }
347
348 int
349 nfs_boot_sobind_ipport(so, port)
350 struct socket *so;
351 u_int16_t port;
352 {
353 struct mbuf *m;
354 struct sockaddr_in *sin;
355 int error;
356
357 m = m_getclr(M_WAIT, MT_SONAME);
358 sin = mtod(m, struct sockaddr_in *);
359 sin->sin_len = m->m_len = sizeof(*sin);
360 sin->sin_family = AF_INET;
361 sin->sin_addr.s_addr = INADDR_ANY;
362 sin->sin_port = htons(port);
363 error = sobind(so, m);
364 m_freem(m);
365 return (error);
366 }
367
368 /*
369 * What is the longest we will wait before re-sending a request?
370 * Note this is also the frequency of "timeout" messages.
371 * The re-send loop counts up linearly to this maximum, so the
372 * first complaint will happen after (1+2+3+4+5)=15 seconds.
373 */
374 #define MAX_RESEND_DELAY 5 /* seconds */
375 #define TOTAL_TIMEOUT 30 /* seconds */
376
377 int
378 nfs_boot_sendrecv(so, nam, sndproc, snd, rcvproc, rcv, from_p, context)
379 struct socket *so;
380 struct mbuf *nam;
381 int (*sndproc) __P((struct mbuf*, void*, int));
382 struct mbuf *snd;
383 int (*rcvproc) __P((struct mbuf*, void*));
384 struct mbuf **rcv, **from_p;
385 void *context;
386 {
387 int error, rcvflg, timo, secs, waited;
388 struct mbuf *m, *from;
389 struct uio uio;
390
391 /* Free at end if not null. */
392 from = NULL;
393
394 /*
395 * Send it, repeatedly, until a reply is received,
396 * but delay each re-send by an increasing amount.
397 * If the delay hits the maximum, start complaining.
398 */
399 waited = timo = 0;
400 send_again:
401 waited += timo;
402 if (waited >= TOTAL_TIMEOUT)
403 return (ETIMEDOUT);
404
405 /* Determine new timeout. */
406 if (timo < MAX_RESEND_DELAY)
407 timo++;
408 else
409 printf("nfs_boot: timeout...\n");
410
411 if (sndproc) {
412 error = (*sndproc)(snd, context, waited);
413 if (error)
414 goto out;
415 }
416
417 /* Send request (or re-send). */
418 m = m_copypacket(snd, M_WAIT);
419 if (m == NULL) {
420 error = ENOBUFS;
421 goto out;
422 }
423 error = (*so->so_send)(so, nam, NULL, m, NULL, 0);
424 if (error) {
425 printf("nfs_boot: sosend: %d\n", error);
426 goto out;
427 }
428 m = NULL;
429
430 /*
431 * Wait for up to timo seconds for a reply.
432 * The socket receive timeout was set to 1 second.
433 */
434
435 secs = timo;
436 for (;;) {
437 if (from) {
438 m_freem(from);
439 from = NULL;
440 }
441 if (m) {
442 m_freem(m);
443 m = NULL;
444 }
445 uio.uio_resid = 1 << 16; /* ??? */
446 rcvflg = 0;
447 error = (*so->so_receive)(so, &from, &uio, &m, NULL, &rcvflg);
448 if (error == EWOULDBLOCK) {
449 if (--secs <= 0)
450 goto send_again;
451 continue;
452 }
453 if (error)
454 goto out;
455 #ifdef DIAGNOSTIC
456 if (!m || !(m->m_flags & M_PKTHDR)
457 || (1 << 16) - uio.uio_resid != m->m_pkthdr.len)
458 panic("nfs_boot_sendrecv: return size");
459 #endif
460
461 if ((*rcvproc)(m, context))
462 continue;
463
464 if (rcv)
465 *rcv = m;
466 else
467 m_freem(m);
468 if (from_p) {
469 *from_p = from;
470 from = NULL;
471 }
472 break;
473 }
474 out:
475 if (from) m_freem(from);
476 return (error);
477 }
478
479 /*
480 * Install a default route to the passed IP address.
481 */
482 static void
483 nfs_boot_defrt(gw_ip)
484 struct in_addr *gw_ip;
485 {
486 struct sockaddr dst, gw, mask;
487 struct sockaddr_in *sin;
488 int error;
489
490 /* Destination: (default) */
491 memset((caddr_t)&dst, 0, sizeof(dst));
492 dst.sa_len = sizeof(dst);
493 dst.sa_family = AF_INET;
494 /* Gateway: */
495 memset((caddr_t)&gw, 0, sizeof(gw));
496 sin = (struct sockaddr_in *)&gw;
497 sin->sin_len = sizeof(*sin);
498 sin->sin_family = AF_INET;
499 sin->sin_addr.s_addr = gw_ip->s_addr;
500 /* Mask: (zero length) */
501 /* XXX - Just pass a null pointer? */
502 memset(&mask, 0, sizeof(mask));
503
504 /* add, dest, gw, mask, flags, 0 */
505 error = rtrequest(RTM_ADD, &dst, &gw, &mask,
506 (RTF_UP | RTF_GATEWAY | RTF_STATIC), NULL);
507 if (error) {
508 printf("nfs_boot: add route, error=%d\n", error);
509 error = 0;
510 }
511 }
512
513 static int nfs_boot_delroute __P((struct radix_node *, void *));
514 static int
515 nfs_boot_delroute(rn, w)
516 struct radix_node *rn;
517 void *w;
518 {
519 struct rtentry *rt = (struct rtentry *)rn;
520 int error;
521
522 if (rt->rt_ifp != (struct ifnet *)w)
523 return (0);
524
525 error = rtrequest(RTM_DELETE, rt_key(rt), NULL, rt_mask(rt), 0, NULL);
526 if (error)
527 printf("nfs_boot: del route, error=%d\n", error);
528
529 return (0);
530 }
531
532 void
533 nfs_boot_flushrt(ifp)
534 struct ifnet *ifp;
535 {
536
537 rn_walktree(rt_tables[AF_INET], nfs_boot_delroute, ifp);
538 }
539
540 /*
541 * Get an initial NFS file handle using Sun RPC/mountd.
542 * Separate function because we used to call it twice.
543 * (once for root and once for swap)
544 */
545 static int
546 nfs_boot_getfh(ndm)
547 struct nfs_dlmount *ndm; /* output */
548 {
549 struct nfs_args *args;
550 struct sockaddr_in *sin;
551 char *pathname;
552 int error;
553 u_int16_t port;
554
555 args = &ndm->ndm_args;
556
557 /* Initialize mount args. */
558 memset((caddr_t) args, 0, sizeof(*args));
559 args->addr = &ndm->ndm_saddr;
560 args->addrlen = args->addr->sa_len;
561 #ifdef NFS_BOOT_TCP
562 args->sotype = SOCK_STREAM;
563 #else
564 args->sotype = SOCK_DGRAM;
565 #endif
566 args->fh = ndm->ndm_fh;
567 args->hostname = ndm->ndm_host;
568 args->flags = NFSMNT_NFSV3 | NFSMNT_NOCONN | NFSMNT_RESVPORT;
569
570 #ifdef NFS_BOOT_OPTIONS
571 args->flags |= NFS_BOOT_OPTIONS;
572 #endif
573 #ifdef NFS_BOOT_RWSIZE
574 /*
575 * Reduce rsize,wsize for interfaces that consistently
576 * drop fragments of long UDP messages. (i.e. wd8003).
577 * You can always change these later via remount.
578 */
579 args->flags |= NFSMNT_WSIZE | NFSMNT_RSIZE;
580 args->wsize = NFS_BOOT_RWSIZE;
581 args->rsize = NFS_BOOT_RWSIZE;
582 #endif
583
584 /*
585 * Find the pathname part of the "server:pathname"
586 * string left in ndm->ndm_host by nfs_boot_init.
587 */
588 pathname = strchr(ndm->ndm_host, ':');
589 if (pathname == 0) {
590 printf("nfs_boot: getfh - no pathname\n");
591 return (EIO);
592 }
593 pathname++;
594
595 /*
596 * Get file handle using RPC to mountd/mount
597 */
598 sin = (struct sockaddr_in *)&ndm->ndm_saddr;
599 error = md_mount(sin, pathname, args);
600 if (error) {
601 printf("nfs_boot: mountd `%s', error=%d\n",
602 ndm->ndm_host, error);
603 return (error);
604 }
605
606 /* Set port number for NFS use. */
607 /* XXX: NFS port is always 2049, right? */
608 #ifdef NFS_BOOT_TCP
609 retry:
610 #endif
611 error = krpc_portmap(sin, NFS_PROG,
612 (args->flags & NFSMNT_NFSV3) ? NFS_VER3 : NFS_VER2,
613 (args->sotype == SOCK_STREAM) ? IPPROTO_TCP : IPPROTO_UDP,
614 &port);
615 if (port == htons(0))
616 error = EIO;
617 if (error) {
618 #ifdef NFS_BOOT_TCP
619 if (args->sotype == SOCK_STREAM) {
620 args->sotype = SOCK_DGRAM;
621 goto retry;
622 }
623 #endif
624 printf("nfs_boot: portmap NFS, error=%d\n", error);
625 return (error);
626 }
627 sin->sin_port = port;
628 return (0);
629 }
630
631
632 /*
633 * RPC: mountd/mount
634 * Given a server pathname, get an NFS file handle.
635 * Also, sets sin->sin_port to the NFS service port.
636 */
637 static int
638 md_mount(mdsin, path, argp)
639 struct sockaddr_in *mdsin; /* mountd server address */
640 char *path;
641 struct nfs_args *argp;
642 {
643 /* The RPC structures */
644 struct rdata {
645 u_int32_t errno;
646 union {
647 u_int8_t v2fh[NFSX_V2FH];
648 struct {
649 u_int32_t fhlen;
650 u_int8_t fh[1];
651 } v3fh;
652 } fh;
653 } *rdata;
654 struct mbuf *m;
655 u_int8_t *fh;
656 int minlen, error;
657 int mntver;
658
659 mntver = (argp->flags & NFSMNT_NFSV3) ? 3 : 2;
660 do {
661 /*
662 * Get port number for MOUNTD.
663 */
664 error = krpc_portmap(mdsin, RPCPROG_MNT, mntver,
665 IPPROTO_UDP, &mdsin->sin_port);
666 if (error)
667 continue;
668
669 /* This mbuf is consumed by krpc_call. */
670 m = xdr_string_encode(path, strlen(path));
671 if (m == NULL)
672 return ENOMEM;
673
674 /* Do RPC to mountd. */
675 error = krpc_call(mdsin, RPCPROG_MNT, mntver,
676 RPCMNT_MOUNT, &m, NULL);
677 if (error != EPROGMISMATCH)
678 break;
679 /* Try lower version of mountd. */
680 } while (--mntver >= 1);
681 if (error) {
682 printf("nfs_boot: mountd error=%d\n", error);
683 return error;
684 }
685 if (mntver != 3)
686 argp->flags &= ~NFSMNT_NFSV3;
687
688 /* The reply might have only the errno. */
689 if (m->m_len < 4)
690 goto bad;
691 /* Have at least errno, so check that. */
692 rdata = mtod(m, struct rdata *);
693 error = fxdr_unsigned(u_int32_t, rdata->errno);
694 if (error)
695 goto out;
696
697 /* Have errno==0, so the fh must be there. */
698 if (mntver == 3) {
699 argp->fhsize = fxdr_unsigned(u_int32_t, rdata->fh.v3fh.fhlen);
700 if (argp->fhsize > NFSX_V3FHMAX)
701 goto bad;
702 minlen = 2 * sizeof(u_int32_t) + argp->fhsize;
703 } else {
704 argp->fhsize = NFSX_V2FH;
705 minlen = sizeof(u_int32_t) + argp->fhsize;
706 }
707
708 if (m->m_len < minlen) {
709 m = m_pullup(m, minlen);
710 if (m == NULL)
711 return(EBADRPC);
712 rdata = mtod(m, struct rdata *);
713 }
714
715 fh = (mntver == 3) ?
716 rdata->fh.v3fh.fh : rdata->fh.v2fh;
717 memcpy(argp->fh, fh, argp->fhsize);
718
719 goto out;
720
721 bad:
722 error = EBADRPC;
723
724 out:
725 m_freem(m);
726 return error;
727 }
728