mountd.c revision 241568
1/*
2 * Copyright (c) 1989, 1993
3 *	The Regents of the University of California.  All rights reserved.
4 *
5 * This code is derived from software contributed to Berkeley by
6 * Herb Hasler and Rick Macklem at The University of Guelph.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 * 1. Redistributions of source code must retain the above copyright
12 *    notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 *    notice, this list of conditions and the following disclaimer in the
15 *    documentation and/or other materials provided with the distribution.
16 * 4. Neither the name of the University nor the names of its contributors
17 *    may be used to endorse or promote products derived from this software
18 *    without specific prior written permission.
19 *
20 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
21 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
22 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
23 * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
24 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
25 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
26 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
27 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
28 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
29 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
30 * SUCH DAMAGE.
31 */
32
33#ifndef lint
34static const char copyright[] =
35"@(#) Copyright (c) 1989, 1993\n\
36	The Regents of the University of California.  All rights reserved.\n";
37#endif /*not lint*/
38
39#if 0
40#ifndef lint
41static char sccsid[] = "@(#)mountd.c	8.15 (Berkeley) 5/1/95";
42#endif /*not lint*/
43#endif
44
45#include <sys/cdefs.h>
46__FBSDID("$FreeBSD: head/usr.sbin/mountd/mountd.c 241568 2012-10-15 00:17:16Z rmacklem $");
47
48#include <sys/param.h>
49#include <sys/fcntl.h>
50#include <sys/linker.h>
51#include <sys/module.h>
52#include <sys/mount.h>
53#include <sys/stat.h>
54#include <sys/sysctl.h>
55#include <sys/syslog.h>
56
57#include <rpc/rpc.h>
58#include <rpc/rpc_com.h>
59#include <rpc/pmap_clnt.h>
60#include <rpc/pmap_prot.h>
61#include <rpcsvc/mount.h>
62#include <nfs/nfsproto.h>
63#include <nfs/nfssvc.h>
64#include <nfsserver/nfs.h>
65
66#include <fs/nfs/nfsport.h>
67
68#include <arpa/inet.h>
69
70#include <ctype.h>
71#include <err.h>
72#include <errno.h>
73#include <grp.h>
74#include <libutil.h>
75#include <limits.h>
76#include <netdb.h>
77#include <pwd.h>
78#include <signal.h>
79#include <stdio.h>
80#include <stdlib.h>
81#include <string.h>
82#include <unistd.h>
83#include "pathnames.h"
84#include "mntopts.h"
85
86#ifdef DEBUG
87#include <stdarg.h>
88#endif
89
90/*
91 * Structures for keeping the mount list and export list
92 */
93struct mountlist {
94	struct mountlist *ml_next;
95	char	ml_host[MNTNAMLEN+1];
96	char	ml_dirp[MNTPATHLEN+1];
97};
98
99struct dirlist {
100	struct dirlist	*dp_left;
101	struct dirlist	*dp_right;
102	int		dp_flag;
103	struct hostlist	*dp_hosts;	/* List of hosts this dir exported to */
104	char		dp_dirp[1];	/* Actually malloc'd to size of dir */
105};
106/* dp_flag bits */
107#define	DP_DEFSET	0x1
108#define DP_HOSTSET	0x2
109
110struct exportlist {
111	struct exportlist *ex_next;
112	struct dirlist	*ex_dirl;
113	struct dirlist	*ex_defdir;
114	int		ex_flag;
115	fsid_t		ex_fs;
116	char		*ex_fsdir;
117	char		*ex_indexfile;
118	int		ex_numsecflavors;
119	int		ex_secflavors[MAXSECFLAVORS];
120	int		ex_defnumsecflavors;
121	int		ex_defsecflavors[MAXSECFLAVORS];
122};
123/* ex_flag bits */
124#define	EX_LINKED	0x1
125
126struct netmsk {
127	struct sockaddr_storage nt_net;
128	struct sockaddr_storage nt_mask;
129	char		*nt_name;
130};
131
132union grouptypes {
133	struct addrinfo *gt_addrinfo;
134	struct netmsk	gt_net;
135};
136
137struct grouplist {
138	int gr_type;
139	union grouptypes gr_ptr;
140	struct grouplist *gr_next;
141	int gr_numsecflavors;
142	int gr_secflavors[MAXSECFLAVORS];
143};
144/* Group types */
145#define	GT_NULL		0x0
146#define	GT_HOST		0x1
147#define	GT_NET		0x2
148#define	GT_DEFAULT	0x3
149#define GT_IGNORE	0x5
150
151struct hostlist {
152	int		 ht_flag;	/* Uses DP_xx bits */
153	struct grouplist *ht_grp;
154	struct hostlist	 *ht_next;
155};
156
157struct fhreturn {
158	int	fhr_flag;
159	int	fhr_vers;
160	nfsfh_t	fhr_fh;
161	int	fhr_numsecflavors;
162	int	*fhr_secflavors;
163};
164
165#define	GETPORT_MAXTRY	20	/* Max tries to get a port # */
166
167/* Global defs */
168char	*add_expdir(struct dirlist **, char *, int);
169void	add_dlist(struct dirlist **, struct dirlist *,
170				struct grouplist *, int, struct exportlist *);
171void	add_mlist(char *, char *);
172int	check_dirpath(char *);
173int	check_options(struct dirlist *);
174int	checkmask(struct sockaddr *sa);
175int	chk_host(struct dirlist *, struct sockaddr *, int *, int *, int *,
176				 int **);
177static int	create_service(struct netconfig *nconf);
178static void	complete_service(struct netconfig *nconf, char *port_str);
179static void	clearout_service(void);
180void	del_mlist(char *hostp, char *dirp);
181struct dirlist *dirp_search(struct dirlist *, char *);
182int	do_mount(struct exportlist *, struct grouplist *, int,
183		struct xucred *, char *, int, struct statfs *);
184int	do_opt(char **, char **, struct exportlist *, struct grouplist *,
185				int *, int *, struct xucred *);
186struct	exportlist *ex_search(fsid_t *);
187struct	exportlist *get_exp(void);
188void	free_dir(struct dirlist *);
189void	free_exp(struct exportlist *);
190void	free_grp(struct grouplist *);
191void	free_host(struct hostlist *);
192void	get_exportlist(void);
193int	get_host(char *, struct grouplist *, struct grouplist *);
194struct hostlist *get_ht(void);
195int	get_line(void);
196void	get_mountlist(void);
197int	get_net(char *, struct netmsk *, int);
198void	getexp_err(struct exportlist *, struct grouplist *);
199struct grouplist *get_grp(void);
200void	hang_dirp(struct dirlist *, struct grouplist *,
201				struct exportlist *, int);
202void	huphandler(int sig);
203int	makemask(struct sockaddr_storage *ssp, int bitlen);
204void	mntsrv(struct svc_req *, SVCXPRT *);
205void	nextfield(char **, char **);
206void	out_of_mem(void);
207void	parsecred(char *, struct xucred *);
208int	parsesec(char *, struct exportlist *);
209int	put_exlist(struct dirlist *, XDR *, struct dirlist *, int *, int);
210void	*sa_rawaddr(struct sockaddr *sa, int *nbytes);
211int	sacmp(struct sockaddr *sa1, struct sockaddr *sa2,
212    struct sockaddr *samask);
213int	scan_tree(struct dirlist *, struct sockaddr *);
214static void usage(void);
215int	xdr_dir(XDR *, char *);
216int	xdr_explist(XDR *, caddr_t);
217int	xdr_explist_brief(XDR *, caddr_t);
218int	xdr_explist_common(XDR *, caddr_t, int);
219int	xdr_fhs(XDR *, caddr_t);
220int	xdr_mlist(XDR *, caddr_t);
221void	terminate(int);
222
223struct exportlist *exphead;
224struct mountlist *mlhead;
225struct grouplist *grphead;
226char *exnames_default[2] = { _PATH_EXPORTS, NULL };
227char **exnames;
228char **hosts = NULL;
229struct xucred def_anon = {
230	XUCRED_VERSION,
231	(uid_t)-2,
232	1,
233	{ (gid_t)-2 },
234	NULL
235};
236int force_v2 = 0;
237int resvport_only = 1;
238int nhosts = 0;
239int dir_only = 1;
240int dolog = 0;
241int got_sighup = 0;
242int xcreated = 0;
243
244char *svcport_str = NULL;
245static int	mallocd_svcport = 0;
246static int	*sock_fd;
247static int	sock_fdcnt;
248static int	sock_fdpos;
249static int	suspend_nfsd = 0;
250
251int opt_flags;
252static int have_v6 = 1;
253
254int v4root_phase = 0;
255char v4root_dirpath[PATH_MAX + 1];
256int run_v4server = 1;
257int has_publicfh = 0;
258
259struct pidfh *pfh = NULL;
260/* Bits for opt_flags above */
261#define	OP_MAPROOT	0x01
262#define	OP_MAPALL	0x02
263/* 0x4 free */
264#define	OP_MASK		0x08
265#define	OP_NET		0x10
266#define	OP_ALLDIRS	0x40
267#define	OP_HAVEMASK	0x80	/* A mask was specified or inferred. */
268#define	OP_QUIET	0x100
269#define OP_MASKLEN	0x200
270#define OP_SEC		0x400
271
272#ifdef DEBUG
273int debug = 1;
274void	SYSLOG(int, const char *, ...) __printflike(2, 3);
275#define syslog SYSLOG
276#else
277int debug = 0;
278#endif
279
280/*
281 * Mountd server for NFS mount protocol as described in:
282 * NFS: Network File System Protocol Specification, RFC1094, Appendix A
283 * The optional arguments are the exports file name
284 * default: _PATH_EXPORTS
285 * and "-n" to allow nonroot mount.
286 */
287int
288main(int argc, char **argv)
289{
290	fd_set readfds;
291	struct netconfig *nconf;
292	char *endptr, **hosts_bak;
293	void *nc_handle;
294	pid_t otherpid;
295	in_port_t svcport;
296	int c, k, s;
297	int maxrec = RPC_MAXDATASIZE;
298	int attempt_cnt, port_len, port_pos, ret;
299	char **port_list;
300
301	/* Check that another mountd isn't already running. */
302	pfh = pidfile_open(_PATH_MOUNTDPID, 0600, &otherpid);
303	if (pfh == NULL) {
304		if (errno == EEXIST)
305			errx(1, "mountd already running, pid: %d.", otherpid);
306		warn("cannot open or create pidfile");
307	}
308
309	s = socket(AF_INET6, SOCK_DGRAM, IPPROTO_UDP);
310	if (s < 0)
311		have_v6 = 0;
312	else
313		close(s);
314
315	while ((c = getopt(argc, argv, "2deh:lnop:rS")) != -1)
316		switch (c) {
317		case '2':
318			force_v2 = 1;
319			break;
320		case 'e':
321			/* now a no-op, since this is the default */
322			break;
323		case 'n':
324			resvport_only = 0;
325			break;
326		case 'r':
327			dir_only = 0;
328			break;
329		case 'd':
330			debug = debug ? 0 : 1;
331			break;
332		case 'l':
333			dolog = 1;
334			break;
335		case 'o':
336			run_v4server = 0;
337			break;
338		case 'p':
339			endptr = NULL;
340			svcport = (in_port_t)strtoul(optarg, &endptr, 10);
341			if (endptr == NULL || *endptr != '\0' ||
342			    svcport == 0 || svcport >= IPPORT_MAX)
343				usage();
344			svcport_str = strdup(optarg);
345			break;
346		case 'h':
347			++nhosts;
348			hosts_bak = hosts;
349			hosts_bak = realloc(hosts, nhosts * sizeof(char *));
350			if (hosts_bak == NULL) {
351				if (hosts != NULL) {
352					for (k = 0; k < nhosts; k++)
353						free(hosts[k]);
354					free(hosts);
355					out_of_mem();
356				}
357			}
358			hosts = hosts_bak;
359			hosts[nhosts - 1] = strdup(optarg);
360			if (hosts[nhosts - 1] == NULL) {
361				for (k = 0; k < (nhosts - 1); k++)
362					free(hosts[k]);
363				free(hosts);
364				out_of_mem();
365			}
366			break;
367		case 'S':
368			suspend_nfsd = 1;
369			break;
370		default:
371			usage();
372		};
373
374	/*
375	 * Unless the "-o" option was specified, try and run "nfsd".
376	 * If "-o" was specified, try and run "nfsserver".
377	 */
378	if (run_v4server > 0) {
379		if (modfind("nfsd") < 0) {
380			/* Not present in kernel, try loading it */
381			if (kldload("nfsd") < 0 || modfind("nfsd") < 0)
382				errx(1, "NFS server is not available");
383		}
384	} else if (modfind("nfsserver") < 0) {
385		/* Not present in kernel, try loading it */
386		if (kldload("nfsserver") < 0 || modfind("nfsserver") < 0)
387			errx(1, "NFS server is not available");
388	}
389
390	argc -= optind;
391	argv += optind;
392	grphead = (struct grouplist *)NULL;
393	exphead = (struct exportlist *)NULL;
394	mlhead = (struct mountlist *)NULL;
395	if (argc > 0)
396		exnames = argv;
397	else
398		exnames = exnames_default;
399	openlog("mountd", LOG_PID, LOG_DAEMON);
400	if (debug)
401		warnx("getting export list");
402	get_exportlist();
403	if (debug)
404		warnx("getting mount list");
405	get_mountlist();
406	if (debug)
407		warnx("here we go");
408	if (debug == 0) {
409		daemon(0, 0);
410		signal(SIGINT, SIG_IGN);
411		signal(SIGQUIT, SIG_IGN);
412	}
413	signal(SIGHUP, huphandler);
414	signal(SIGTERM, terminate);
415	signal(SIGPIPE, SIG_IGN);
416
417	pidfile_write(pfh);
418
419	rpcb_unset(MOUNTPROG, MOUNTVERS, NULL);
420	rpcb_unset(MOUNTPROG, MOUNTVERS3, NULL);
421	rpc_control(RPC_SVC_CONNMAXREC_SET, &maxrec);
422
423	if (!resvport_only) {
424		if (sysctlbyname("vfs.nfsrv.nfs_privport", NULL, NULL,
425		    &resvport_only, sizeof(resvport_only)) != 0 &&
426		    errno != ENOENT) {
427			syslog(LOG_ERR, "sysctl: %m");
428			exit(1);
429		}
430	}
431
432	/*
433	 * If no hosts were specified, add a wildcard entry to bind to
434	 * INADDR_ANY. Otherwise make sure 127.0.0.1 and ::1 are added to the
435	 * list.
436	 */
437	if (nhosts == 0) {
438		hosts = malloc(sizeof(char**));
439		if (hosts == NULL)
440			out_of_mem();
441		hosts[0] = "*";
442		nhosts = 1;
443	} else {
444		hosts_bak = hosts;
445		if (have_v6) {
446			hosts_bak = realloc(hosts, (nhosts + 2) *
447			    sizeof(char *));
448			if (hosts_bak == NULL) {
449				for (k = 0; k < nhosts; k++)
450					free(hosts[k]);
451		    		free(hosts);
452		    		out_of_mem();
453			} else
454				hosts = hosts_bak;
455			nhosts += 2;
456			hosts[nhosts - 2] = "::1";
457		} else {
458			hosts_bak = realloc(hosts, (nhosts + 1) * sizeof(char *));
459			if (hosts_bak == NULL) {
460				for (k = 0; k < nhosts; k++)
461					free(hosts[k]);
462				free(hosts);
463				out_of_mem();
464			} else {
465				nhosts += 1;
466				hosts = hosts_bak;
467			}
468		}
469
470		hosts[nhosts - 1] = "127.0.0.1";
471	}
472
473	attempt_cnt = 1;
474	sock_fdcnt = 0;
475	sock_fd = NULL;
476	port_list = NULL;
477	port_len = 0;
478	nc_handle = setnetconfig();
479	while ((nconf = getnetconfig(nc_handle))) {
480		if (nconf->nc_flag & NC_VISIBLE) {
481			if (have_v6 == 0 && strcmp(nconf->nc_protofmly,
482			    "inet6") == 0) {
483				/* DO NOTHING */
484			} else {
485				ret = create_service(nconf);
486				if (ret == 1)
487					/* Ignore this call */
488					continue;
489				if (ret < 0) {
490					/*
491					 * Failed to bind port, so close off
492					 * all sockets created and try again
493					 * if the port# was dynamically
494					 * assigned via bind(2).
495					 */
496					clearout_service();
497					if (mallocd_svcport != 0 &&
498					    attempt_cnt < GETPORT_MAXTRY) {
499						free(svcport_str);
500						svcport_str = NULL;
501						mallocd_svcport = 0;
502					} else {
503						errno = EADDRINUSE;
504						syslog(LOG_ERR,
505						    "bindresvport_sa: %m");
506						exit(1);
507					}
508
509					/* Start over at the first service. */
510					free(sock_fd);
511					sock_fdcnt = 0;
512					sock_fd = NULL;
513					nc_handle = setnetconfig();
514					attempt_cnt++;
515				} else if (mallocd_svcport != 0 &&
516				    attempt_cnt == GETPORT_MAXTRY) {
517					/*
518					 * For the last attempt, allow
519					 * different port #s for each nconf
520					 * by saving the svcport_str and
521					 * setting it back to NULL.
522					 */
523					port_list = realloc(port_list,
524					    (port_len + 1) * sizeof(char *));
525					if (port_list == NULL)
526						out_of_mem();
527					port_list[port_len++] = svcport_str;
528					svcport_str = NULL;
529					mallocd_svcport = 0;
530				}
531			}
532		}
533	}
534
535	/*
536	 * Successfully bound the ports, so call complete_service() to
537	 * do the rest of the setup on the service(s).
538	 */
539	sock_fdpos = 0;
540	port_pos = 0;
541	nc_handle = setnetconfig();
542	while ((nconf = getnetconfig(nc_handle))) {
543		if (nconf->nc_flag & NC_VISIBLE) {
544			if (have_v6 == 0 && strcmp(nconf->nc_protofmly,
545			    "inet6") == 0) {
546				/* DO NOTHING */
547			} else if (port_list != NULL) {
548				if (port_pos >= port_len) {
549					syslog(LOG_ERR, "too many port#s");
550					exit(1);
551				}
552				complete_service(nconf, port_list[port_pos++]);
553			} else
554				complete_service(nconf, svcport_str);
555		}
556	}
557	endnetconfig(nc_handle);
558	free(sock_fd);
559	if (port_list != NULL) {
560		for (port_pos = 0; port_pos < port_len; port_pos++)
561			free(port_list[port_pos]);
562		free(port_list);
563	}
564
565	if (xcreated == 0) {
566		syslog(LOG_ERR, "could not create any services");
567		exit(1);
568	}
569
570	/* Expand svc_run() here so that we can call get_exportlist(). */
571	for (;;) {
572		if (got_sighup) {
573			get_exportlist();
574			got_sighup = 0;
575		}
576		readfds = svc_fdset;
577		switch (select(svc_maxfd + 1, &readfds, NULL, NULL, NULL)) {
578		case -1:
579			if (errno == EINTR)
580                                continue;
581			syslog(LOG_ERR, "mountd died: select: %m");
582			exit(1);
583		case 0:
584			continue;
585		default:
586			svc_getreqset(&readfds);
587		}
588	}
589}
590
591/*
592 * This routine creates and binds sockets on the appropriate
593 * addresses. It gets called one time for each transport.
594 * It returns 0 upon success, 1 for ingore the call and -1 to indicate
595 * bind failed with EADDRINUSE.
596 * Any file descriptors that have been created are stored in sock_fd and
597 * the total count of them is maintained in sock_fdcnt.
598 */
599static int
600create_service(struct netconfig *nconf)
601{
602	struct addrinfo hints, *res = NULL;
603	struct sockaddr_in *sin;
604	struct sockaddr_in6 *sin6;
605	struct __rpc_sockinfo si;
606	int aicode;
607	int fd;
608	int nhostsbak;
609	int one = 1;
610	int r;
611	u_int32_t host_addr[4];  /* IPv4 or IPv6 */
612	int mallocd_res;
613
614	if ((nconf->nc_semantics != NC_TPI_CLTS) &&
615	    (nconf->nc_semantics != NC_TPI_COTS) &&
616	    (nconf->nc_semantics != NC_TPI_COTS_ORD))
617		return (1);	/* not my type */
618
619	/*
620	 * XXX - using RPC library internal functions.
621	 */
622	if (!__rpc_nconf2sockinfo(nconf, &si)) {
623		syslog(LOG_ERR, "cannot get information for %s",
624		    nconf->nc_netid);
625		return (1);
626	}
627
628	/* Get mountd's address on this transport */
629	memset(&hints, 0, sizeof hints);
630	hints.ai_flags = AI_PASSIVE;
631	hints.ai_family = si.si_af;
632	hints.ai_socktype = si.si_socktype;
633	hints.ai_protocol = si.si_proto;
634
635	/*
636	 * Bind to specific IPs if asked to
637	 */
638	nhostsbak = nhosts;
639	while (nhostsbak > 0) {
640		--nhostsbak;
641		sock_fd = realloc(sock_fd, (sock_fdcnt + 1) * sizeof(int));
642		if (sock_fd == NULL)
643			out_of_mem();
644		sock_fd[sock_fdcnt++] = -1;	/* Set invalid for now. */
645		mallocd_res = 0;
646
647		/*
648		 * XXX - using RPC library internal functions.
649		 */
650		if ((fd = __rpc_nconf2fd(nconf)) < 0) {
651			int non_fatal = 0;
652	    		if (errno == EPROTONOSUPPORT &&
653			    nconf->nc_semantics != NC_TPI_CLTS)
654				non_fatal = 1;
655
656			syslog(non_fatal ? LOG_DEBUG : LOG_ERR,
657			    "cannot create socket for %s", nconf->nc_netid);
658			if (non_fatal != 0)
659				continue;
660			exit(1);
661		}
662
663		switch (hints.ai_family) {
664		case AF_INET:
665			if (inet_pton(AF_INET, hosts[nhostsbak],
666			    host_addr) == 1) {
667				hints.ai_flags |= AI_NUMERICHOST;
668			} else {
669				/*
670				 * Skip if we have an AF_INET6 address.
671				 */
672				if (inet_pton(AF_INET6, hosts[nhostsbak],
673				    host_addr) == 1) {
674					close(fd);
675					continue;
676				}
677			}
678			break;
679		case AF_INET6:
680			if (inet_pton(AF_INET6, hosts[nhostsbak],
681			    host_addr) == 1) {
682				hints.ai_flags |= AI_NUMERICHOST;
683			} else {
684				/*
685				 * Skip if we have an AF_INET address.
686				 */
687				if (inet_pton(AF_INET, hosts[nhostsbak],
688				    host_addr) == 1) {
689					close(fd);
690					continue;
691				}
692			}
693
694			/*
695			 * We're doing host-based access checks here, so don't
696			 * allow v4-in-v6 to confuse things. The kernel will
697			 * disable it by default on NFS sockets too.
698			 */
699			if (setsockopt(fd, IPPROTO_IPV6, IPV6_V6ONLY, &one,
700			    sizeof one) < 0) {
701				syslog(LOG_ERR,
702				    "can't disable v4-in-v6 on IPv6 socket");
703				exit(1);
704			}
705			break;
706		default:
707			break;
708		}
709
710		/*
711		 * If no hosts were specified, just bind to INADDR_ANY
712		 */
713		if (strcmp("*", hosts[nhostsbak]) == 0) {
714			if (svcport_str == NULL) {
715				res = malloc(sizeof(struct addrinfo));
716				if (res == NULL)
717					out_of_mem();
718				mallocd_res = 1;
719				res->ai_flags = hints.ai_flags;
720				res->ai_family = hints.ai_family;
721				res->ai_protocol = hints.ai_protocol;
722				switch (res->ai_family) {
723				case AF_INET:
724					sin = malloc(sizeof(struct sockaddr_in));
725					if (sin == NULL)
726						out_of_mem();
727					sin->sin_family = AF_INET;
728					sin->sin_port = htons(0);
729					sin->sin_addr.s_addr = htonl(INADDR_ANY);
730					res->ai_addr = (struct sockaddr*) sin;
731					res->ai_addrlen = (socklen_t)
732					    sizeof(struct sockaddr_in);
733					break;
734				case AF_INET6:
735					sin6 = malloc(sizeof(struct sockaddr_in6));
736					if (sin6 == NULL)
737						out_of_mem();
738					sin6->sin6_family = AF_INET6;
739					sin6->sin6_port = htons(0);
740					sin6->sin6_addr = in6addr_any;
741					res->ai_addr = (struct sockaddr*) sin6;
742					res->ai_addrlen = (socklen_t)
743					    sizeof(struct sockaddr_in6);
744					break;
745				default:
746					syslog(LOG_ERR, "bad addr fam %d",
747					    res->ai_family);
748					exit(1);
749				}
750			} else {
751				if ((aicode = getaddrinfo(NULL, svcport_str,
752				    &hints, &res)) != 0) {
753					syslog(LOG_ERR,
754					    "cannot get local address for %s: %s",
755					    nconf->nc_netid,
756					    gai_strerror(aicode));
757					close(fd);
758					continue;
759				}
760			}
761		} else {
762			if ((aicode = getaddrinfo(hosts[nhostsbak], svcport_str,
763			    &hints, &res)) != 0) {
764				syslog(LOG_ERR,
765				    "cannot get local address for %s: %s",
766				    nconf->nc_netid, gai_strerror(aicode));
767				close(fd);
768				continue;
769			}
770		}
771
772		/* Store the fd. */
773		sock_fd[sock_fdcnt - 1] = fd;
774
775		/* Now, attempt the bind. */
776		r = bindresvport_sa(fd, res->ai_addr);
777		if (r != 0) {
778			if (errno == EADDRINUSE && mallocd_svcport != 0) {
779				if (mallocd_res != 0) {
780					free(res->ai_addr);
781					free(res);
782				} else
783					freeaddrinfo(res);
784				return (-1);
785			}
786			syslog(LOG_ERR, "bindresvport_sa: %m");
787			exit(1);
788		}
789
790		if (svcport_str == NULL) {
791			svcport_str = malloc(NI_MAXSERV * sizeof(char));
792			if (svcport_str == NULL)
793				out_of_mem();
794			mallocd_svcport = 1;
795
796			if (getnameinfo(res->ai_addr,
797			    res->ai_addr->sa_len, NULL, NI_MAXHOST,
798			    svcport_str, NI_MAXSERV * sizeof(char),
799			    NI_NUMERICHOST | NI_NUMERICSERV))
800				errx(1, "Cannot get port number");
801		}
802		if (mallocd_res != 0) {
803			free(res->ai_addr);
804			free(res);
805		} else
806			freeaddrinfo(res);
807		res = NULL;
808	}
809	return (0);
810}
811
812/*
813 * Called after all the create_service() calls have succeeded, to complete
814 * the setup and registration.
815 */
816static void
817complete_service(struct netconfig *nconf, char *port_str)
818{
819	struct addrinfo hints, *res = NULL;
820	struct __rpc_sockinfo si;
821	struct netbuf servaddr;
822	SVCXPRT	*transp = NULL;
823	int aicode, fd, nhostsbak;
824	int registered = 0;
825
826	if ((nconf->nc_semantics != NC_TPI_CLTS) &&
827	    (nconf->nc_semantics != NC_TPI_COTS) &&
828	    (nconf->nc_semantics != NC_TPI_COTS_ORD))
829		return;	/* not my type */
830
831	/*
832	 * XXX - using RPC library internal functions.
833	 */
834	if (!__rpc_nconf2sockinfo(nconf, &si)) {
835		syslog(LOG_ERR, "cannot get information for %s",
836		    nconf->nc_netid);
837		return;
838	}
839
840	nhostsbak = nhosts;
841	while (nhostsbak > 0) {
842		--nhostsbak;
843		if (sock_fdpos >= sock_fdcnt) {
844			/* Should never happen. */
845			syslog(LOG_ERR, "Ran out of socket fd's");
846			return;
847		}
848		fd = sock_fd[sock_fdpos++];
849		if (fd < 0)
850			continue;
851
852		if (nconf->nc_semantics != NC_TPI_CLTS)
853			listen(fd, SOMAXCONN);
854
855		if (nconf->nc_semantics == NC_TPI_CLTS )
856			transp = svc_dg_create(fd, 0, 0);
857		else
858			transp = svc_vc_create(fd, RPC_MAXDATASIZE,
859			    RPC_MAXDATASIZE);
860
861		if (transp != (SVCXPRT *) NULL) {
862			if (!svc_reg(transp, MOUNTPROG, MOUNTVERS, mntsrv,
863			    NULL))
864				syslog(LOG_ERR,
865				    "can't register %s MOUNTVERS service",
866				    nconf->nc_netid);
867			if (!force_v2) {
868				if (!svc_reg(transp, MOUNTPROG, MOUNTVERS3,
869				    mntsrv, NULL))
870					syslog(LOG_ERR,
871					    "can't register %s MOUNTVERS3 service",
872					    nconf->nc_netid);
873			}
874		} else
875			syslog(LOG_WARNING, "can't create %s services",
876			    nconf->nc_netid);
877
878		if (registered == 0) {
879			registered = 1;
880			memset(&hints, 0, sizeof hints);
881			hints.ai_flags = AI_PASSIVE;
882			hints.ai_family = si.si_af;
883			hints.ai_socktype = si.si_socktype;
884			hints.ai_protocol = si.si_proto;
885
886			if ((aicode = getaddrinfo(NULL, port_str, &hints,
887			    &res)) != 0) {
888				syslog(LOG_ERR, "cannot get local address: %s",
889				    gai_strerror(aicode));
890				exit(1);
891			}
892
893			servaddr.buf = malloc(res->ai_addrlen);
894			memcpy(servaddr.buf, res->ai_addr, res->ai_addrlen);
895			servaddr.len = res->ai_addrlen;
896
897			rpcb_set(MOUNTPROG, MOUNTVERS, nconf, &servaddr);
898			rpcb_set(MOUNTPROG, MOUNTVERS3, nconf, &servaddr);
899
900			xcreated++;
901			freeaddrinfo(res);
902		}
903	} /* end while */
904}
905
906/*
907 * Clear out sockets after a failure to bind one of them, so that the
908 * cycle of socket creation/binding can start anew.
909 */
910static void
911clearout_service(void)
912{
913	int i;
914
915	for (i = 0; i < sock_fdcnt; i++) {
916		if (sock_fd[i] >= 0) {
917			shutdown(sock_fd[i], SHUT_RDWR);
918			close(sock_fd[i]);
919		}
920	}
921}
922
923static void
924usage(void)
925{
926	fprintf(stderr,
927		"usage: mountd [-2] [-d] [-e] [-l] [-n] [-p <port>] [-r] "
928		"[-S] [-h <bindip>] [export_file ...]\n");
929	exit(1);
930}
931
932/*
933 * The mount rpc service
934 */
935void
936mntsrv(struct svc_req *rqstp, SVCXPRT *transp)
937{
938	struct exportlist *ep;
939	struct dirlist *dp;
940	struct fhreturn fhr;
941	struct stat stb;
942	struct statfs fsb;
943	char host[NI_MAXHOST], numerichost[NI_MAXHOST];
944	int lookup_failed = 1;
945	struct sockaddr *saddr;
946	u_short sport;
947	char rpcpath[MNTPATHLEN + 1], dirpath[MAXPATHLEN];
948	int bad = 0, defset, hostset;
949	sigset_t sighup_mask;
950	int numsecflavors, *secflavorsp;
951
952	sigemptyset(&sighup_mask);
953	sigaddset(&sighup_mask, SIGHUP);
954	saddr = svc_getrpccaller(transp)->buf;
955	switch (saddr->sa_family) {
956	case AF_INET6:
957		sport = ntohs(((struct sockaddr_in6 *)saddr)->sin6_port);
958		break;
959	case AF_INET:
960		sport = ntohs(((struct sockaddr_in *)saddr)->sin_port);
961		break;
962	default:
963		syslog(LOG_ERR, "request from unknown address family");
964		return;
965	}
966	lookup_failed = getnameinfo(saddr, saddr->sa_len, host, sizeof host,
967	    NULL, 0, 0);
968	getnameinfo(saddr, saddr->sa_len, numerichost,
969	    sizeof numerichost, NULL, 0, NI_NUMERICHOST);
970	switch (rqstp->rq_proc) {
971	case NULLPROC:
972		if (!svc_sendreply(transp, (xdrproc_t)xdr_void, NULL))
973			syslog(LOG_ERR, "can't send reply");
974		return;
975	case MOUNTPROC_MNT:
976		if (sport >= IPPORT_RESERVED && resvport_only) {
977			syslog(LOG_NOTICE,
978			    "mount request from %s from unprivileged port",
979			    numerichost);
980			svcerr_weakauth(transp);
981			return;
982		}
983		if (!svc_getargs(transp, (xdrproc_t)xdr_dir, rpcpath)) {
984			syslog(LOG_NOTICE, "undecodable mount request from %s",
985			    numerichost);
986			svcerr_decode(transp);
987			return;
988		}
989
990		/*
991		 * Get the real pathname and make sure it is a directory
992		 * or a regular file if the -r option was specified
993		 * and it exists.
994		 */
995		if (realpath(rpcpath, dirpath) == NULL ||
996		    stat(dirpath, &stb) < 0 ||
997		    (!S_ISDIR(stb.st_mode) &&
998		    (dir_only || !S_ISREG(stb.st_mode))) ||
999		    statfs(dirpath, &fsb) < 0) {
1000			chdir("/");	/* Just in case realpath doesn't */
1001			syslog(LOG_NOTICE,
1002			    "mount request from %s for non existent path %s",
1003			    numerichost, dirpath);
1004			if (debug)
1005				warnx("stat failed on %s", dirpath);
1006			bad = ENOENT;	/* We will send error reply later */
1007		}
1008
1009		/* Check in the exports list */
1010		sigprocmask(SIG_BLOCK, &sighup_mask, NULL);
1011		ep = ex_search(&fsb.f_fsid);
1012		hostset = defset = 0;
1013		if (ep && (chk_host(ep->ex_defdir, saddr, &defset, &hostset,
1014		    &numsecflavors, &secflavorsp) ||
1015		    ((dp = dirp_search(ep->ex_dirl, dirpath)) &&
1016		      chk_host(dp, saddr, &defset, &hostset, &numsecflavors,
1017		       &secflavorsp)) ||
1018		    (defset && scan_tree(ep->ex_defdir, saddr) == 0 &&
1019		     scan_tree(ep->ex_dirl, saddr) == 0))) {
1020			if (bad) {
1021				if (!svc_sendreply(transp, (xdrproc_t)xdr_long,
1022				    (caddr_t)&bad))
1023					syslog(LOG_ERR, "can't send reply");
1024				sigprocmask(SIG_UNBLOCK, &sighup_mask, NULL);
1025				return;
1026			}
1027			if (hostset & DP_HOSTSET) {
1028				fhr.fhr_flag = hostset;
1029				fhr.fhr_numsecflavors = numsecflavors;
1030				fhr.fhr_secflavors = secflavorsp;
1031			} else {
1032				fhr.fhr_flag = defset;
1033				fhr.fhr_numsecflavors = ep->ex_defnumsecflavors;
1034				fhr.fhr_secflavors = ep->ex_defsecflavors;
1035			}
1036			fhr.fhr_vers = rqstp->rq_vers;
1037			/* Get the file handle */
1038			memset(&fhr.fhr_fh, 0, sizeof(nfsfh_t));
1039			if (getfh(dirpath, (fhandle_t *)&fhr.fhr_fh) < 0) {
1040				bad = errno;
1041				syslog(LOG_ERR, "can't get fh for %s", dirpath);
1042				if (!svc_sendreply(transp, (xdrproc_t)xdr_long,
1043				    (caddr_t)&bad))
1044					syslog(LOG_ERR, "can't send reply");
1045				sigprocmask(SIG_UNBLOCK, &sighup_mask, NULL);
1046				return;
1047			}
1048			if (!svc_sendreply(transp, (xdrproc_t)xdr_fhs,
1049			    (caddr_t)&fhr))
1050				syslog(LOG_ERR, "can't send reply");
1051			if (!lookup_failed)
1052				add_mlist(host, dirpath);
1053			else
1054				add_mlist(numerichost, dirpath);
1055			if (debug)
1056				warnx("mount successful");
1057			if (dolog)
1058				syslog(LOG_NOTICE,
1059				    "mount request succeeded from %s for %s",
1060				    numerichost, dirpath);
1061		} else {
1062			bad = EACCES;
1063			syslog(LOG_NOTICE,
1064			    "mount request denied from %s for %s",
1065			    numerichost, dirpath);
1066		}
1067
1068		if (bad && !svc_sendreply(transp, (xdrproc_t)xdr_long,
1069		    (caddr_t)&bad))
1070			syslog(LOG_ERR, "can't send reply");
1071		sigprocmask(SIG_UNBLOCK, &sighup_mask, NULL);
1072		return;
1073	case MOUNTPROC_DUMP:
1074		if (!svc_sendreply(transp, (xdrproc_t)xdr_mlist, (caddr_t)NULL))
1075			syslog(LOG_ERR, "can't send reply");
1076		else if (dolog)
1077			syslog(LOG_NOTICE,
1078			    "dump request succeeded from %s",
1079			    numerichost);
1080		return;
1081	case MOUNTPROC_UMNT:
1082		if (sport >= IPPORT_RESERVED && resvport_only) {
1083			syslog(LOG_NOTICE,
1084			    "umount request from %s from unprivileged port",
1085			    numerichost);
1086			svcerr_weakauth(transp);
1087			return;
1088		}
1089		if (!svc_getargs(transp, (xdrproc_t)xdr_dir, rpcpath)) {
1090			syslog(LOG_NOTICE, "undecodable umount request from %s",
1091			    numerichost);
1092			svcerr_decode(transp);
1093			return;
1094		}
1095		if (realpath(rpcpath, dirpath) == NULL) {
1096			syslog(LOG_NOTICE, "umount request from %s "
1097			    "for non existent path %s",
1098			    numerichost, dirpath);
1099		}
1100		if (!svc_sendreply(transp, (xdrproc_t)xdr_void, (caddr_t)NULL))
1101			syslog(LOG_ERR, "can't send reply");
1102		if (!lookup_failed)
1103			del_mlist(host, dirpath);
1104		del_mlist(numerichost, dirpath);
1105		if (dolog)
1106			syslog(LOG_NOTICE,
1107			    "umount request succeeded from %s for %s",
1108			    numerichost, dirpath);
1109		return;
1110	case MOUNTPROC_UMNTALL:
1111		if (sport >= IPPORT_RESERVED && resvport_only) {
1112			syslog(LOG_NOTICE,
1113			    "umountall request from %s from unprivileged port",
1114			    numerichost);
1115			svcerr_weakauth(transp);
1116			return;
1117		}
1118		if (!svc_sendreply(transp, (xdrproc_t)xdr_void, (caddr_t)NULL))
1119			syslog(LOG_ERR, "can't send reply");
1120		if (!lookup_failed)
1121			del_mlist(host, NULL);
1122		del_mlist(numerichost, NULL);
1123		if (dolog)
1124			syslog(LOG_NOTICE,
1125			    "umountall request succeeded from %s",
1126			    numerichost);
1127		return;
1128	case MOUNTPROC_EXPORT:
1129		if (!svc_sendreply(transp, (xdrproc_t)xdr_explist, (caddr_t)NULL))
1130			if (!svc_sendreply(transp, (xdrproc_t)xdr_explist_brief,
1131			    (caddr_t)NULL))
1132				syslog(LOG_ERR, "can't send reply");
1133		if (dolog)
1134			syslog(LOG_NOTICE,
1135			    "export request succeeded from %s",
1136			    numerichost);
1137		return;
1138	default:
1139		svcerr_noproc(transp);
1140		return;
1141	}
1142}
1143
1144/*
1145 * Xdr conversion for a dirpath string
1146 */
1147int
1148xdr_dir(XDR *xdrsp, char *dirp)
1149{
1150	return (xdr_string(xdrsp, &dirp, MNTPATHLEN));
1151}
1152
1153/*
1154 * Xdr routine to generate file handle reply
1155 */
1156int
1157xdr_fhs(XDR *xdrsp, caddr_t cp)
1158{
1159	struct fhreturn *fhrp = (struct fhreturn *)cp;
1160	u_long ok = 0, len, auth;
1161	int i;
1162
1163	if (!xdr_long(xdrsp, &ok))
1164		return (0);
1165	switch (fhrp->fhr_vers) {
1166	case 1:
1167		return (xdr_opaque(xdrsp, (caddr_t)&fhrp->fhr_fh, NFSX_V2FH));
1168	case 3:
1169		len = NFSX_V3FH;
1170		if (!xdr_long(xdrsp, &len))
1171			return (0);
1172		if (!xdr_opaque(xdrsp, (caddr_t)&fhrp->fhr_fh, len))
1173			return (0);
1174		if (fhrp->fhr_numsecflavors) {
1175			if (!xdr_int(xdrsp, &fhrp->fhr_numsecflavors))
1176				return (0);
1177			for (i = 0; i < fhrp->fhr_numsecflavors; i++)
1178				if (!xdr_int(xdrsp, &fhrp->fhr_secflavors[i]))
1179					return (0);
1180			return (1);
1181		} else {
1182			auth = AUTH_SYS;
1183			len = 1;
1184			if (!xdr_long(xdrsp, &len))
1185				return (0);
1186			return (xdr_long(xdrsp, &auth));
1187		}
1188	};
1189	return (0);
1190}
1191
1192int
1193xdr_mlist(XDR *xdrsp, caddr_t cp __unused)
1194{
1195	struct mountlist *mlp;
1196	int true = 1;
1197	int false = 0;
1198	char *strp;
1199
1200	mlp = mlhead;
1201	while (mlp) {
1202		if (!xdr_bool(xdrsp, &true))
1203			return (0);
1204		strp = &mlp->ml_host[0];
1205		if (!xdr_string(xdrsp, &strp, MNTNAMLEN))
1206			return (0);
1207		strp = &mlp->ml_dirp[0];
1208		if (!xdr_string(xdrsp, &strp, MNTPATHLEN))
1209			return (0);
1210		mlp = mlp->ml_next;
1211	}
1212	if (!xdr_bool(xdrsp, &false))
1213		return (0);
1214	return (1);
1215}
1216
1217/*
1218 * Xdr conversion for export list
1219 */
1220int
1221xdr_explist_common(XDR *xdrsp, caddr_t cp __unused, int brief)
1222{
1223	struct exportlist *ep;
1224	int false = 0;
1225	int putdef;
1226	sigset_t sighup_mask;
1227
1228	sigemptyset(&sighup_mask);
1229	sigaddset(&sighup_mask, SIGHUP);
1230	sigprocmask(SIG_BLOCK, &sighup_mask, NULL);
1231	ep = exphead;
1232	while (ep) {
1233		putdef = 0;
1234		if (put_exlist(ep->ex_dirl, xdrsp, ep->ex_defdir,
1235			       &putdef, brief))
1236			goto errout;
1237		if (ep->ex_defdir && putdef == 0 &&
1238			put_exlist(ep->ex_defdir, xdrsp, (struct dirlist *)NULL,
1239			&putdef, brief))
1240			goto errout;
1241		ep = ep->ex_next;
1242	}
1243	sigprocmask(SIG_UNBLOCK, &sighup_mask, NULL);
1244	if (!xdr_bool(xdrsp, &false))
1245		return (0);
1246	return (1);
1247errout:
1248	sigprocmask(SIG_UNBLOCK, &sighup_mask, NULL);
1249	return (0);
1250}
1251
1252/*
1253 * Called from xdr_explist() to traverse the tree and export the
1254 * directory paths.
1255 */
1256int
1257put_exlist(struct dirlist *dp, XDR *xdrsp, struct dirlist *adp, int *putdefp,
1258	int brief)
1259{
1260	struct grouplist *grp;
1261	struct hostlist *hp;
1262	int true = 1;
1263	int false = 0;
1264	int gotalldir = 0;
1265	char *strp;
1266
1267	if (dp) {
1268		if (put_exlist(dp->dp_left, xdrsp, adp, putdefp, brief))
1269			return (1);
1270		if (!xdr_bool(xdrsp, &true))
1271			return (1);
1272		strp = dp->dp_dirp;
1273		if (!xdr_string(xdrsp, &strp, MNTPATHLEN))
1274			return (1);
1275		if (adp && !strcmp(dp->dp_dirp, adp->dp_dirp)) {
1276			gotalldir = 1;
1277			*putdefp = 1;
1278		}
1279		if (brief) {
1280			if (!xdr_bool(xdrsp, &true))
1281				return (1);
1282			strp = "(...)";
1283			if (!xdr_string(xdrsp, &strp, MNTPATHLEN))
1284				return (1);
1285		} else if ((dp->dp_flag & DP_DEFSET) == 0 &&
1286		    (gotalldir == 0 || (adp->dp_flag & DP_DEFSET) == 0)) {
1287			hp = dp->dp_hosts;
1288			while (hp) {
1289				grp = hp->ht_grp;
1290				if (grp->gr_type == GT_HOST) {
1291					if (!xdr_bool(xdrsp, &true))
1292						return (1);
1293					strp = grp->gr_ptr.gt_addrinfo->ai_canonname;
1294					if (!xdr_string(xdrsp, &strp,
1295					    MNTNAMLEN))
1296						return (1);
1297				} else if (grp->gr_type == GT_NET) {
1298					if (!xdr_bool(xdrsp, &true))
1299						return (1);
1300					strp = grp->gr_ptr.gt_net.nt_name;
1301					if (!xdr_string(xdrsp, &strp,
1302					    MNTNAMLEN))
1303						return (1);
1304				}
1305				hp = hp->ht_next;
1306				if (gotalldir && hp == (struct hostlist *)NULL) {
1307					hp = adp->dp_hosts;
1308					gotalldir = 0;
1309				}
1310			}
1311		}
1312		if (!xdr_bool(xdrsp, &false))
1313			return (1);
1314		if (put_exlist(dp->dp_right, xdrsp, adp, putdefp, brief))
1315			return (1);
1316	}
1317	return (0);
1318}
1319
1320int
1321xdr_explist(XDR *xdrsp, caddr_t cp)
1322{
1323
1324	return xdr_explist_common(xdrsp, cp, 0);
1325}
1326
1327int
1328xdr_explist_brief(XDR *xdrsp, caddr_t cp)
1329{
1330
1331	return xdr_explist_common(xdrsp, cp, 1);
1332}
1333
1334char *line;
1335int linesize;
1336FILE *exp_file;
1337
1338/*
1339 * Get the export list from one, currently open file
1340 */
1341static void
1342get_exportlist_one(void)
1343{
1344	struct exportlist *ep, *ep2;
1345	struct grouplist *grp, *tgrp;
1346	struct exportlist **epp;
1347	struct dirlist *dirhead;
1348	struct statfs fsb;
1349	struct xucred anon;
1350	char *cp, *endcp, *dirp, *hst, *usr, *dom, savedc;
1351	int len, has_host, exflags, got_nondir, dirplen, netgrp;
1352
1353	v4root_phase = 0;
1354	dirhead = (struct dirlist *)NULL;
1355	while (get_line()) {
1356		if (debug)
1357			warnx("got line %s", line);
1358		cp = line;
1359		nextfield(&cp, &endcp);
1360		if (*cp == '#')
1361			goto nextline;
1362
1363		/*
1364		 * Set defaults.
1365		 */
1366		has_host = FALSE;
1367		anon = def_anon;
1368		exflags = MNT_EXPORTED;
1369		got_nondir = 0;
1370		opt_flags = 0;
1371		ep = (struct exportlist *)NULL;
1372		dirp = NULL;
1373
1374		/*
1375		 * Handle the V4 root dir.
1376		 */
1377		if (*cp == 'V' && *(cp + 1) == '4' && *(cp + 2) == ':') {
1378			/*
1379			 * V4: just indicates that it is the v4 root point,
1380			 * so skip over that and set v4root_phase.
1381			 */
1382			if (v4root_phase > 0) {
1383				syslog(LOG_ERR, "V4:duplicate line, ignored");
1384				goto nextline;
1385			}
1386			v4root_phase = 1;
1387			cp += 3;
1388			nextfield(&cp, &endcp);
1389		}
1390
1391		/*
1392		 * Create new exports list entry
1393		 */
1394		len = endcp-cp;
1395		tgrp = grp = get_grp();
1396		while (len > 0) {
1397			if (len > MNTNAMLEN) {
1398			    getexp_err(ep, tgrp);
1399			    goto nextline;
1400			}
1401			if (*cp == '-') {
1402			    if (ep == (struct exportlist *)NULL) {
1403				getexp_err(ep, tgrp);
1404				goto nextline;
1405			    }
1406			    if (debug)
1407				warnx("doing opt %s", cp);
1408			    got_nondir = 1;
1409			    if (do_opt(&cp, &endcp, ep, grp, &has_host,
1410				&exflags, &anon)) {
1411				getexp_err(ep, tgrp);
1412				goto nextline;
1413			    }
1414			} else if (*cp == '/') {
1415			    savedc = *endcp;
1416			    *endcp = '\0';
1417			    if (v4root_phase > 1) {
1418				    if (dirp != NULL) {
1419					syslog(LOG_ERR, "Multiple V4 dirs");
1420					getexp_err(ep, tgrp);
1421					goto nextline;
1422				    }
1423			    }
1424			    if (check_dirpath(cp) &&
1425				statfs(cp, &fsb) >= 0) {
1426				if (got_nondir) {
1427				    syslog(LOG_ERR, "dirs must be first");
1428				    getexp_err(ep, tgrp);
1429				    goto nextline;
1430				}
1431				if (v4root_phase == 1) {
1432				    if (dirp != NULL) {
1433					syslog(LOG_ERR, "Multiple V4 dirs");
1434					getexp_err(ep, tgrp);
1435					goto nextline;
1436				    }
1437				    if (strlen(v4root_dirpath) == 0) {
1438					strlcpy(v4root_dirpath, cp,
1439					    sizeof (v4root_dirpath));
1440				    } else if (strcmp(v4root_dirpath, cp)
1441					!= 0) {
1442					syslog(LOG_ERR,
1443					    "different V4 dirpath %s", cp);
1444					getexp_err(ep, tgrp);
1445					goto nextline;
1446				    }
1447				    dirp = cp;
1448				    v4root_phase = 2;
1449				    got_nondir = 1;
1450				    ep = get_exp();
1451				} else {
1452				    if (ep) {
1453					if (ep->ex_fs.val[0] !=
1454					    fsb.f_fsid.val[0] ||
1455					    ep->ex_fs.val[1] !=
1456					    fsb.f_fsid.val[1]) {
1457						getexp_err(ep, tgrp);
1458						goto nextline;
1459					}
1460				    } else {
1461					/*
1462					 * See if this directory is already
1463					 * in the list.
1464					 */
1465					ep = ex_search(&fsb.f_fsid);
1466					if (ep == (struct exportlist *)NULL) {
1467					    ep = get_exp();
1468					    ep->ex_fs = fsb.f_fsid;
1469					    ep->ex_fsdir = (char *)malloc
1470					        (strlen(fsb.f_mntonname) + 1);
1471					    if (ep->ex_fsdir)
1472						strcpy(ep->ex_fsdir,
1473						    fsb.f_mntonname);
1474					    else
1475						out_of_mem();
1476					    if (debug)
1477						warnx(
1478						  "making new ep fs=0x%x,0x%x",
1479						  fsb.f_fsid.val[0],
1480						  fsb.f_fsid.val[1]);
1481					} else if (debug)
1482					    warnx("found ep fs=0x%x,0x%x",
1483						fsb.f_fsid.val[0],
1484						fsb.f_fsid.val[1]);
1485				    }
1486
1487				    /*
1488				     * Add dirpath to export mount point.
1489				     */
1490				    dirp = add_expdir(&dirhead, cp, len);
1491				    dirplen = len;
1492				}
1493			    } else {
1494				getexp_err(ep, tgrp);
1495				goto nextline;
1496			    }
1497			    *endcp = savedc;
1498			} else {
1499			    savedc = *endcp;
1500			    *endcp = '\0';
1501			    got_nondir = 1;
1502			    if (ep == (struct exportlist *)NULL) {
1503				getexp_err(ep, tgrp);
1504				goto nextline;
1505			    }
1506
1507			    /*
1508			     * Get the host or netgroup.
1509			     */
1510			    setnetgrent(cp);
1511			    netgrp = getnetgrent(&hst, &usr, &dom);
1512			    do {
1513				if (has_host) {
1514				    grp->gr_next = get_grp();
1515				    grp = grp->gr_next;
1516				}
1517				if (netgrp) {
1518				    if (hst == 0) {
1519					syslog(LOG_ERR,
1520				"null hostname in netgroup %s, skipping", cp);
1521					grp->gr_type = GT_IGNORE;
1522				    } else if (get_host(hst, grp, tgrp)) {
1523					syslog(LOG_ERR,
1524			"bad host %s in netgroup %s, skipping", hst, cp);
1525					grp->gr_type = GT_IGNORE;
1526				    }
1527				} else if (get_host(cp, grp, tgrp)) {
1528				    syslog(LOG_ERR, "bad host %s, skipping", cp);
1529				    grp->gr_type = GT_IGNORE;
1530				}
1531				has_host = TRUE;
1532			    } while (netgrp && getnetgrent(&hst, &usr, &dom));
1533			    endnetgrent();
1534			    *endcp = savedc;
1535			}
1536			cp = endcp;
1537			nextfield(&cp, &endcp);
1538			len = endcp - cp;
1539		}
1540		if (check_options(dirhead)) {
1541			getexp_err(ep, tgrp);
1542			goto nextline;
1543		}
1544		if (!has_host) {
1545			grp->gr_type = GT_DEFAULT;
1546			if (debug)
1547				warnx("adding a default entry");
1548
1549		/*
1550		 * Don't allow a network export coincide with a list of
1551		 * host(s) on the same line.
1552		 */
1553		} else if ((opt_flags & OP_NET) && tgrp->gr_next) {
1554			syslog(LOG_ERR, "network/host conflict");
1555			getexp_err(ep, tgrp);
1556			goto nextline;
1557
1558		/*
1559		 * If an export list was specified on this line, make sure
1560		 * that we have at least one valid entry, otherwise skip it.
1561		 */
1562		} else {
1563			grp = tgrp;
1564			while (grp && grp->gr_type == GT_IGNORE)
1565				grp = grp->gr_next;
1566			if (! grp) {
1567			    getexp_err(ep, tgrp);
1568			    goto nextline;
1569			}
1570		}
1571
1572		if (v4root_phase == 1) {
1573			syslog(LOG_ERR, "V4:root, no dirp, ignored");
1574			getexp_err(ep, tgrp);
1575			goto nextline;
1576		}
1577
1578		/*
1579		 * Loop through hosts, pushing the exports into the kernel.
1580		 * After loop, tgrp points to the start of the list and
1581		 * grp points to the last entry in the list.
1582		 */
1583		grp = tgrp;
1584		do {
1585			if (do_mount(ep, grp, exflags, &anon, dirp, dirplen,
1586			    &fsb)) {
1587				getexp_err(ep, tgrp);
1588				goto nextline;
1589			}
1590		} while (grp->gr_next && (grp = grp->gr_next));
1591
1592		/*
1593		 * For V4: don't enter in mount lists.
1594		 */
1595		if (v4root_phase > 0 && v4root_phase <= 2) {
1596			/*
1597			 * Since these structures aren't used by mountd,
1598			 * free them up now.
1599			 */
1600			if (ep != NULL)
1601				free_exp(ep);
1602			while (tgrp != NULL) {
1603				grp = tgrp;
1604				tgrp = tgrp->gr_next;
1605				free_grp(grp);
1606			}
1607			goto nextline;
1608		}
1609
1610		/*
1611		 * Success. Update the data structures.
1612		 */
1613		if (has_host) {
1614			hang_dirp(dirhead, tgrp, ep, opt_flags);
1615			grp->gr_next = grphead;
1616			grphead = tgrp;
1617		} else {
1618			hang_dirp(dirhead, (struct grouplist *)NULL, ep,
1619				opt_flags);
1620			free_grp(grp);
1621		}
1622		dirhead = (struct dirlist *)NULL;
1623		if ((ep->ex_flag & EX_LINKED) == 0) {
1624			ep2 = exphead;
1625			epp = &exphead;
1626
1627			/*
1628			 * Insert in the list in alphabetical order.
1629			 */
1630			while (ep2 && strcmp(ep2->ex_fsdir, ep->ex_fsdir) < 0) {
1631				epp = &ep2->ex_next;
1632				ep2 = ep2->ex_next;
1633			}
1634			if (ep2)
1635				ep->ex_next = ep2;
1636			*epp = ep;
1637			ep->ex_flag |= EX_LINKED;
1638		}
1639nextline:
1640		v4root_phase = 0;
1641		if (dirhead) {
1642			free_dir(dirhead);
1643			dirhead = (struct dirlist *)NULL;
1644		}
1645	}
1646}
1647
1648/*
1649 * Get the export list from all specified files
1650 */
1651void
1652get_exportlist(void)
1653{
1654	struct exportlist *ep, *ep2;
1655	struct grouplist *grp, *tgrp;
1656	struct export_args export;
1657	struct iovec *iov;
1658	struct statfs *fsp, *mntbufp;
1659	struct xvfsconf vfc;
1660	char errmsg[255];
1661	int num, i;
1662	int iovlen;
1663	int done;
1664	struct nfsex_args eargs;
1665
1666	if (suspend_nfsd != 0)
1667		(void)nfssvc(NFSSVC_SUSPENDNFSD, NULL);
1668	v4root_dirpath[0] = '\0';
1669	bzero(&export, sizeof(export));
1670	export.ex_flags = MNT_DELEXPORT;
1671	iov = NULL;
1672	iovlen = 0;
1673	bzero(errmsg, sizeof(errmsg));
1674
1675	/*
1676	 * First, get rid of the old list
1677	 */
1678	ep = exphead;
1679	while (ep) {
1680		ep2 = ep;
1681		ep = ep->ex_next;
1682		free_exp(ep2);
1683	}
1684	exphead = (struct exportlist *)NULL;
1685
1686	grp = grphead;
1687	while (grp) {
1688		tgrp = grp;
1689		grp = grp->gr_next;
1690		free_grp(tgrp);
1691	}
1692	grphead = (struct grouplist *)NULL;
1693
1694	/*
1695	 * and the old V4 root dir.
1696	 */
1697	bzero(&eargs, sizeof (eargs));
1698	eargs.export.ex_flags = MNT_DELEXPORT;
1699	if (run_v4server > 0 &&
1700	    nfssvc(NFSSVC_V4ROOTEXPORT, (caddr_t)&eargs) < 0 &&
1701	    errno != ENOENT)
1702		syslog(LOG_ERR, "Can't delete exports for V4:");
1703
1704	/*
1705	 * and clear flag that notes if a public fh has been exported.
1706	 */
1707	has_publicfh = 0;
1708
1709	/*
1710	 * And delete exports that are in the kernel for all local
1711	 * filesystems.
1712	 * XXX: Should know how to handle all local exportable filesystems.
1713	 */
1714	num = getmntinfo(&mntbufp, MNT_NOWAIT);
1715
1716	if (num > 0) {
1717		build_iovec(&iov, &iovlen, "fstype", NULL, 0);
1718		build_iovec(&iov, &iovlen, "fspath", NULL, 0);
1719		build_iovec(&iov, &iovlen, "from", NULL, 0);
1720		build_iovec(&iov, &iovlen, "update", NULL, 0);
1721		build_iovec(&iov, &iovlen, "export", &export, sizeof(export));
1722		build_iovec(&iov, &iovlen, "errmsg", errmsg, sizeof(errmsg));
1723	}
1724
1725	for (i = 0; i < num; i++) {
1726		fsp = &mntbufp[i];
1727		if (getvfsbyname(fsp->f_fstypename, &vfc) != 0) {
1728			syslog(LOG_ERR, "getvfsbyname() failed for %s",
1729			    fsp->f_fstypename);
1730			continue;
1731		}
1732
1733		/*
1734		 * Do not delete export for network filesystem by
1735		 * passing "export" arg to nmount().
1736		 * It only makes sense to do this for local filesystems.
1737		 */
1738		if (vfc.vfc_flags & VFCF_NETWORK)
1739			continue;
1740
1741		iov[1].iov_base = fsp->f_fstypename;
1742		iov[1].iov_len = strlen(fsp->f_fstypename) + 1;
1743		iov[3].iov_base = fsp->f_mntonname;
1744		iov[3].iov_len = strlen(fsp->f_mntonname) + 1;
1745		iov[5].iov_base = fsp->f_mntfromname;
1746		iov[5].iov_len = strlen(fsp->f_mntfromname) + 1;
1747
1748		if (nmount(iov, iovlen, fsp->f_flags) < 0 &&
1749		    errno != ENOENT && errno != ENOTSUP) {
1750			syslog(LOG_ERR,
1751			    "can't delete exports for %s: %m %s",
1752			    fsp->f_mntonname, errmsg);
1753		}
1754	}
1755
1756	if (iov != NULL) {
1757		/* Free strings allocated by strdup() in getmntopts.c */
1758		free(iov[0].iov_base); /* fstype */
1759		free(iov[2].iov_base); /* fspath */
1760		free(iov[4].iov_base); /* from */
1761		free(iov[6].iov_base); /* update */
1762		free(iov[8].iov_base); /* export */
1763		free(iov[10].iov_base); /* errmsg */
1764
1765		/* free iov, allocated by realloc() */
1766		free(iov);
1767		iovlen = 0;
1768	}
1769
1770	/*
1771	 * Read in the exports file and build the list, calling
1772	 * nmount() as we go along to push the export rules into the kernel.
1773	 */
1774	done = 0;
1775	for (i = 0; exnames[i] != NULL; i++) {
1776		if (debug)
1777			warnx("reading exports from %s", exnames[i]);
1778		if ((exp_file = fopen(exnames[i], "r")) == NULL) {
1779			syslog(LOG_WARNING, "can't open %s", exnames[i]);
1780			continue;
1781		}
1782		get_exportlist_one();
1783		fclose(exp_file);
1784		done++;
1785	}
1786	if (done == 0) {
1787		syslog(LOG_ERR, "can't open any exports file");
1788		exit(2);
1789	}
1790
1791	/*
1792	 * If there was no public fh, clear any previous one set.
1793	 */
1794	if (run_v4server > 0 && has_publicfh == 0)
1795		(void) nfssvc(NFSSVC_NOPUBLICFH, NULL);
1796
1797	/* Resume the nfsd. If they weren't suspended, this is harmless. */
1798	(void)nfssvc(NFSSVC_RESUMENFSD, NULL);
1799}
1800
1801/*
1802 * Allocate an export list element
1803 */
1804struct exportlist *
1805get_exp(void)
1806{
1807	struct exportlist *ep;
1808
1809	ep = (struct exportlist *)calloc(1, sizeof (struct exportlist));
1810	if (ep == (struct exportlist *)NULL)
1811		out_of_mem();
1812	return (ep);
1813}
1814
1815/*
1816 * Allocate a group list element
1817 */
1818struct grouplist *
1819get_grp(void)
1820{
1821	struct grouplist *gp;
1822
1823	gp = (struct grouplist *)calloc(1, sizeof (struct grouplist));
1824	if (gp == (struct grouplist *)NULL)
1825		out_of_mem();
1826	return (gp);
1827}
1828
1829/*
1830 * Clean up upon an error in get_exportlist().
1831 */
1832void
1833getexp_err(struct exportlist *ep, struct grouplist *grp)
1834{
1835	struct grouplist *tgrp;
1836
1837	if (!(opt_flags & OP_QUIET))
1838		syslog(LOG_ERR, "bad exports list line %s", line);
1839	if (ep && (ep->ex_flag & EX_LINKED) == 0)
1840		free_exp(ep);
1841	while (grp) {
1842		tgrp = grp;
1843		grp = grp->gr_next;
1844		free_grp(tgrp);
1845	}
1846}
1847
1848/*
1849 * Search the export list for a matching fs.
1850 */
1851struct exportlist *
1852ex_search(fsid_t *fsid)
1853{
1854	struct exportlist *ep;
1855
1856	ep = exphead;
1857	while (ep) {
1858		if (ep->ex_fs.val[0] == fsid->val[0] &&
1859		    ep->ex_fs.val[1] == fsid->val[1])
1860			return (ep);
1861		ep = ep->ex_next;
1862	}
1863	return (ep);
1864}
1865
1866/*
1867 * Add a directory path to the list.
1868 */
1869char *
1870add_expdir(struct dirlist **dpp, char *cp, int len)
1871{
1872	struct dirlist *dp;
1873
1874	dp = (struct dirlist *)malloc(sizeof (struct dirlist) + len);
1875	if (dp == (struct dirlist *)NULL)
1876		out_of_mem();
1877	dp->dp_left = *dpp;
1878	dp->dp_right = (struct dirlist *)NULL;
1879	dp->dp_flag = 0;
1880	dp->dp_hosts = (struct hostlist *)NULL;
1881	strcpy(dp->dp_dirp, cp);
1882	*dpp = dp;
1883	return (dp->dp_dirp);
1884}
1885
1886/*
1887 * Hang the dir list element off the dirpath binary tree as required
1888 * and update the entry for host.
1889 */
1890void
1891hang_dirp(struct dirlist *dp, struct grouplist *grp, struct exportlist *ep,
1892	int flags)
1893{
1894	struct hostlist *hp;
1895	struct dirlist *dp2;
1896
1897	if (flags & OP_ALLDIRS) {
1898		if (ep->ex_defdir)
1899			free((caddr_t)dp);
1900		else
1901			ep->ex_defdir = dp;
1902		if (grp == (struct grouplist *)NULL) {
1903			ep->ex_defdir->dp_flag |= DP_DEFSET;
1904			/* Save the default security flavors list. */
1905			ep->ex_defnumsecflavors = ep->ex_numsecflavors;
1906			if (ep->ex_numsecflavors > 0)
1907				memcpy(ep->ex_defsecflavors, ep->ex_secflavors,
1908				    sizeof(ep->ex_secflavors));
1909		} else while (grp) {
1910			hp = get_ht();
1911			hp->ht_grp = grp;
1912			hp->ht_next = ep->ex_defdir->dp_hosts;
1913			ep->ex_defdir->dp_hosts = hp;
1914			/* Save the security flavors list for this host set. */
1915			grp->gr_numsecflavors = ep->ex_numsecflavors;
1916			if (ep->ex_numsecflavors > 0)
1917				memcpy(grp->gr_secflavors, ep->ex_secflavors,
1918				    sizeof(ep->ex_secflavors));
1919			grp = grp->gr_next;
1920		}
1921	} else {
1922
1923		/*
1924		 * Loop through the directories adding them to the tree.
1925		 */
1926		while (dp) {
1927			dp2 = dp->dp_left;
1928			add_dlist(&ep->ex_dirl, dp, grp, flags, ep);
1929			dp = dp2;
1930		}
1931	}
1932}
1933
1934/*
1935 * Traverse the binary tree either updating a node that is already there
1936 * for the new directory or adding the new node.
1937 */
1938void
1939add_dlist(struct dirlist **dpp, struct dirlist *newdp, struct grouplist *grp,
1940	int flags, struct exportlist *ep)
1941{
1942	struct dirlist *dp;
1943	struct hostlist *hp;
1944	int cmp;
1945
1946	dp = *dpp;
1947	if (dp) {
1948		cmp = strcmp(dp->dp_dirp, newdp->dp_dirp);
1949		if (cmp > 0) {
1950			add_dlist(&dp->dp_left, newdp, grp, flags, ep);
1951			return;
1952		} else if (cmp < 0) {
1953			add_dlist(&dp->dp_right, newdp, grp, flags, ep);
1954			return;
1955		} else
1956			free((caddr_t)newdp);
1957	} else {
1958		dp = newdp;
1959		dp->dp_left = (struct dirlist *)NULL;
1960		*dpp = dp;
1961	}
1962	if (grp) {
1963
1964		/*
1965		 * Hang all of the host(s) off of the directory point.
1966		 */
1967		do {
1968			hp = get_ht();
1969			hp->ht_grp = grp;
1970			hp->ht_next = dp->dp_hosts;
1971			dp->dp_hosts = hp;
1972			/* Save the security flavors list for this host set. */
1973			grp->gr_numsecflavors = ep->ex_numsecflavors;
1974			if (ep->ex_numsecflavors > 0)
1975				memcpy(grp->gr_secflavors, ep->ex_secflavors,
1976				    sizeof(ep->ex_secflavors));
1977			grp = grp->gr_next;
1978		} while (grp);
1979	} else {
1980		dp->dp_flag |= DP_DEFSET;
1981		/* Save the default security flavors list. */
1982		ep->ex_defnumsecflavors = ep->ex_numsecflavors;
1983		if (ep->ex_numsecflavors > 0)
1984			memcpy(ep->ex_defsecflavors, ep->ex_secflavors,
1985			    sizeof(ep->ex_secflavors));
1986	}
1987}
1988
1989/*
1990 * Search for a dirpath on the export point.
1991 */
1992struct dirlist *
1993dirp_search(struct dirlist *dp, char *dirp)
1994{
1995	int cmp;
1996
1997	if (dp) {
1998		cmp = strcmp(dp->dp_dirp, dirp);
1999		if (cmp > 0)
2000			return (dirp_search(dp->dp_left, dirp));
2001		else if (cmp < 0)
2002			return (dirp_search(dp->dp_right, dirp));
2003		else
2004			return (dp);
2005	}
2006	return (dp);
2007}
2008
2009/*
2010 * Scan for a host match in a directory tree.
2011 */
2012int
2013chk_host(struct dirlist *dp, struct sockaddr *saddr, int *defsetp,
2014	int *hostsetp, int *numsecflavors, int **secflavorsp)
2015{
2016	struct hostlist *hp;
2017	struct grouplist *grp;
2018	struct addrinfo *ai;
2019
2020	if (dp) {
2021		if (dp->dp_flag & DP_DEFSET)
2022			*defsetp = dp->dp_flag;
2023		hp = dp->dp_hosts;
2024		while (hp) {
2025			grp = hp->ht_grp;
2026			switch (grp->gr_type) {
2027			case GT_HOST:
2028				ai = grp->gr_ptr.gt_addrinfo;
2029				for (; ai; ai = ai->ai_next) {
2030					if (!sacmp(ai->ai_addr, saddr, NULL)) {
2031						*hostsetp =
2032						    (hp->ht_flag | DP_HOSTSET);
2033						if (numsecflavors != NULL) {
2034							*numsecflavors =
2035							    grp->gr_numsecflavors;
2036							*secflavorsp =
2037							    grp->gr_secflavors;
2038						}
2039						return (1);
2040					}
2041				}
2042				break;
2043			case GT_NET:
2044				if (!sacmp(saddr, (struct sockaddr *)
2045				    &grp->gr_ptr.gt_net.nt_net,
2046				    (struct sockaddr *)
2047				    &grp->gr_ptr.gt_net.nt_mask)) {
2048					*hostsetp = (hp->ht_flag | DP_HOSTSET);
2049					if (numsecflavors != NULL) {
2050						*numsecflavors =
2051						    grp->gr_numsecflavors;
2052						*secflavorsp =
2053						    grp->gr_secflavors;
2054					}
2055					return (1);
2056				}
2057				break;
2058			}
2059			hp = hp->ht_next;
2060		}
2061	}
2062	return (0);
2063}
2064
2065/*
2066 * Scan tree for a host that matches the address.
2067 */
2068int
2069scan_tree(struct dirlist *dp, struct sockaddr *saddr)
2070{
2071	int defset, hostset;
2072
2073	if (dp) {
2074		if (scan_tree(dp->dp_left, saddr))
2075			return (1);
2076		if (chk_host(dp, saddr, &defset, &hostset, NULL, NULL))
2077			return (1);
2078		if (scan_tree(dp->dp_right, saddr))
2079			return (1);
2080	}
2081	return (0);
2082}
2083
2084/*
2085 * Traverse the dirlist tree and free it up.
2086 */
2087void
2088free_dir(struct dirlist *dp)
2089{
2090
2091	if (dp) {
2092		free_dir(dp->dp_left);
2093		free_dir(dp->dp_right);
2094		free_host(dp->dp_hosts);
2095		free((caddr_t)dp);
2096	}
2097}
2098
2099/*
2100 * Parse a colon separated list of security flavors
2101 */
2102int
2103parsesec(char *seclist, struct exportlist *ep)
2104{
2105	char *cp, savedc;
2106	int flavor;
2107
2108	ep->ex_numsecflavors = 0;
2109	for (;;) {
2110		cp = strchr(seclist, ':');
2111		if (cp) {
2112			savedc = *cp;
2113			*cp = '\0';
2114		}
2115
2116		if (!strcmp(seclist, "sys"))
2117			flavor = AUTH_SYS;
2118		else if (!strcmp(seclist, "krb5"))
2119			flavor = RPCSEC_GSS_KRB5;
2120		else if (!strcmp(seclist, "krb5i"))
2121			flavor = RPCSEC_GSS_KRB5I;
2122		else if (!strcmp(seclist, "krb5p"))
2123			flavor = RPCSEC_GSS_KRB5P;
2124		else {
2125			if (cp)
2126				*cp = savedc;
2127			syslog(LOG_ERR, "bad sec flavor: %s", seclist);
2128			return (1);
2129		}
2130		if (ep->ex_numsecflavors == MAXSECFLAVORS) {
2131			if (cp)
2132				*cp = savedc;
2133			syslog(LOG_ERR, "too many sec flavors: %s", seclist);
2134			return (1);
2135		}
2136		ep->ex_secflavors[ep->ex_numsecflavors] = flavor;
2137		ep->ex_numsecflavors++;
2138		if (cp) {
2139			*cp = savedc;
2140			seclist = cp + 1;
2141		} else {
2142			break;
2143		}
2144	}
2145	return (0);
2146}
2147
2148/*
2149 * Parse the option string and update fields.
2150 * Option arguments may either be -<option>=<value> or
2151 * -<option> <value>
2152 */
2153int
2154do_opt(char **cpp, char **endcpp, struct exportlist *ep, struct grouplist *grp,
2155	int *has_hostp, int *exflagsp, struct xucred *cr)
2156{
2157	char *cpoptarg, *cpoptend;
2158	char *cp, *endcp, *cpopt, savedc, savedc2;
2159	int allflag, usedarg;
2160
2161	savedc2 = '\0';
2162	cpopt = *cpp;
2163	cpopt++;
2164	cp = *endcpp;
2165	savedc = *cp;
2166	*cp = '\0';
2167	while (cpopt && *cpopt) {
2168		allflag = 1;
2169		usedarg = -2;
2170		if ((cpoptend = strchr(cpopt, ','))) {
2171			*cpoptend++ = '\0';
2172			if ((cpoptarg = strchr(cpopt, '=')))
2173				*cpoptarg++ = '\0';
2174		} else {
2175			if ((cpoptarg = strchr(cpopt, '=')))
2176				*cpoptarg++ = '\0';
2177			else {
2178				*cp = savedc;
2179				nextfield(&cp, &endcp);
2180				**endcpp = '\0';
2181				if (endcp > cp && *cp != '-') {
2182					cpoptarg = cp;
2183					savedc2 = *endcp;
2184					*endcp = '\0';
2185					usedarg = 0;
2186				}
2187			}
2188		}
2189		if (!strcmp(cpopt, "ro") || !strcmp(cpopt, "o")) {
2190			*exflagsp |= MNT_EXRDONLY;
2191		} else if (cpoptarg && (!strcmp(cpopt, "maproot") ||
2192		    !(allflag = strcmp(cpopt, "mapall")) ||
2193		    !strcmp(cpopt, "root") || !strcmp(cpopt, "r"))) {
2194			usedarg++;
2195			parsecred(cpoptarg, cr);
2196			if (allflag == 0) {
2197				*exflagsp |= MNT_EXPORTANON;
2198				opt_flags |= OP_MAPALL;
2199			} else
2200				opt_flags |= OP_MAPROOT;
2201		} else if (cpoptarg && (!strcmp(cpopt, "mask") ||
2202		    !strcmp(cpopt, "m"))) {
2203			if (get_net(cpoptarg, &grp->gr_ptr.gt_net, 1)) {
2204				syslog(LOG_ERR, "bad mask: %s", cpoptarg);
2205				return (1);
2206			}
2207			usedarg++;
2208			opt_flags |= OP_MASK;
2209		} else if (cpoptarg && (!strcmp(cpopt, "network") ||
2210			!strcmp(cpopt, "n"))) {
2211			if (strchr(cpoptarg, '/') != NULL) {
2212				if (debug)
2213					fprintf(stderr, "setting OP_MASKLEN\n");
2214				opt_flags |= OP_MASKLEN;
2215			}
2216			if (grp->gr_type != GT_NULL) {
2217				syslog(LOG_ERR, "network/host conflict");
2218				return (1);
2219			} else if (get_net(cpoptarg, &grp->gr_ptr.gt_net, 0)) {
2220				syslog(LOG_ERR, "bad net: %s", cpoptarg);
2221				return (1);
2222			}
2223			grp->gr_type = GT_NET;
2224			*has_hostp = 1;
2225			usedarg++;
2226			opt_flags |= OP_NET;
2227		} else if (!strcmp(cpopt, "alldirs")) {
2228			opt_flags |= OP_ALLDIRS;
2229		} else if (!strcmp(cpopt, "public")) {
2230			*exflagsp |= MNT_EXPUBLIC;
2231		} else if (!strcmp(cpopt, "webnfs")) {
2232			*exflagsp |= (MNT_EXPUBLIC|MNT_EXRDONLY|MNT_EXPORTANON);
2233			opt_flags |= OP_MAPALL;
2234		} else if (cpoptarg && !strcmp(cpopt, "index")) {
2235			ep->ex_indexfile = strdup(cpoptarg);
2236		} else if (!strcmp(cpopt, "quiet")) {
2237			opt_flags |= OP_QUIET;
2238		} else if (!strcmp(cpopt, "sec")) {
2239			if (parsesec(cpoptarg, ep))
2240				return (1);
2241			opt_flags |= OP_SEC;
2242			usedarg++;
2243		} else {
2244			syslog(LOG_ERR, "bad opt %s", cpopt);
2245			return (1);
2246		}
2247		if (usedarg >= 0) {
2248			*endcp = savedc2;
2249			**endcpp = savedc;
2250			if (usedarg > 0) {
2251				*cpp = cp;
2252				*endcpp = endcp;
2253			}
2254			return (0);
2255		}
2256		cpopt = cpoptend;
2257	}
2258	**endcpp = savedc;
2259	return (0);
2260}
2261
2262/*
2263 * Translate a character string to the corresponding list of network
2264 * addresses for a hostname.
2265 */
2266int
2267get_host(char *cp, struct grouplist *grp, struct grouplist *tgrp)
2268{
2269	struct grouplist *checkgrp;
2270	struct addrinfo *ai, *tai, hints;
2271	int ecode;
2272	char host[NI_MAXHOST];
2273
2274	if (grp->gr_type != GT_NULL) {
2275		syslog(LOG_ERR, "Bad netgroup type for ip host %s", cp);
2276		return (1);
2277	}
2278	memset(&hints, 0, sizeof hints);
2279	hints.ai_flags = AI_CANONNAME;
2280	hints.ai_protocol = IPPROTO_UDP;
2281	ecode = getaddrinfo(cp, NULL, &hints, &ai);
2282	if (ecode != 0) {
2283		syslog(LOG_ERR,"can't get address info for host %s", cp);
2284		return 1;
2285	}
2286	grp->gr_ptr.gt_addrinfo = ai;
2287	while (ai != NULL) {
2288		if (ai->ai_canonname == NULL) {
2289			if (getnameinfo(ai->ai_addr, ai->ai_addrlen, host,
2290			    sizeof host, NULL, 0, NI_NUMERICHOST) != 0)
2291				strlcpy(host, "?", sizeof(host));
2292			ai->ai_canonname = strdup(host);
2293			ai->ai_flags |= AI_CANONNAME;
2294		}
2295		if (debug)
2296			fprintf(stderr, "got host %s\n", ai->ai_canonname);
2297		/*
2298		 * Sanity check: make sure we don't already have an entry
2299		 * for this host in the grouplist.
2300		 */
2301		for (checkgrp = tgrp; checkgrp != NULL;
2302		    checkgrp = checkgrp->gr_next) {
2303			if (checkgrp->gr_type != GT_HOST)
2304				continue;
2305			for (tai = checkgrp->gr_ptr.gt_addrinfo; tai != NULL;
2306			    tai = tai->ai_next) {
2307				if (sacmp(tai->ai_addr, ai->ai_addr, NULL) != 0)
2308					continue;
2309				if (debug)
2310					fprintf(stderr,
2311					    "ignoring duplicate host %s\n",
2312					    ai->ai_canonname);
2313				grp->gr_type = GT_IGNORE;
2314				return (0);
2315			}
2316		}
2317		ai = ai->ai_next;
2318	}
2319	grp->gr_type = GT_HOST;
2320	return (0);
2321}
2322
2323/*
2324 * Free up an exports list component
2325 */
2326void
2327free_exp(struct exportlist *ep)
2328{
2329
2330	if (ep->ex_defdir) {
2331		free_host(ep->ex_defdir->dp_hosts);
2332		free((caddr_t)ep->ex_defdir);
2333	}
2334	if (ep->ex_fsdir)
2335		free(ep->ex_fsdir);
2336	if (ep->ex_indexfile)
2337		free(ep->ex_indexfile);
2338	free_dir(ep->ex_dirl);
2339	free((caddr_t)ep);
2340}
2341
2342/*
2343 * Free hosts.
2344 */
2345void
2346free_host(struct hostlist *hp)
2347{
2348	struct hostlist *hp2;
2349
2350	while (hp) {
2351		hp2 = hp;
2352		hp = hp->ht_next;
2353		free((caddr_t)hp2);
2354	}
2355}
2356
2357struct hostlist *
2358get_ht(void)
2359{
2360	struct hostlist *hp;
2361
2362	hp = (struct hostlist *)malloc(sizeof (struct hostlist));
2363	if (hp == (struct hostlist *)NULL)
2364		out_of_mem();
2365	hp->ht_next = (struct hostlist *)NULL;
2366	hp->ht_flag = 0;
2367	return (hp);
2368}
2369
2370/*
2371 * Out of memory, fatal
2372 */
2373void
2374out_of_mem(void)
2375{
2376
2377	syslog(LOG_ERR, "out of memory");
2378	exit(2);
2379}
2380
2381/*
2382 * Do the nmount() syscall with the update flag to push the export info into
2383 * the kernel.
2384 */
2385int
2386do_mount(struct exportlist *ep, struct grouplist *grp, int exflags,
2387    struct xucred *anoncrp, char *dirp, int dirplen, struct statfs *fsb)
2388{
2389	struct statfs fsb1;
2390	struct addrinfo *ai;
2391	struct export_args ea, *eap;
2392	char errmsg[255];
2393	char *cp;
2394	int done;
2395	char savedc;
2396	struct iovec *iov;
2397	int i, iovlen;
2398	int ret;
2399	struct nfsex_args nfsea;
2400
2401	if (run_v4server > 0)
2402		eap = &nfsea.export;
2403	else
2404		eap = &ea;
2405
2406	cp = NULL;
2407	savedc = '\0';
2408	iov = NULL;
2409	iovlen = 0;
2410	ret = 0;
2411
2412	bzero(eap, sizeof (struct export_args));
2413	bzero(errmsg, sizeof(errmsg));
2414	eap->ex_flags = exflags;
2415	eap->ex_anon = *anoncrp;
2416	eap->ex_indexfile = ep->ex_indexfile;
2417	if (grp->gr_type == GT_HOST)
2418		ai = grp->gr_ptr.gt_addrinfo;
2419	else
2420		ai = NULL;
2421	eap->ex_numsecflavors = ep->ex_numsecflavors;
2422	for (i = 0; i < eap->ex_numsecflavors; i++)
2423		eap->ex_secflavors[i] = ep->ex_secflavors[i];
2424	if (eap->ex_numsecflavors == 0) {
2425		eap->ex_numsecflavors = 1;
2426		eap->ex_secflavors[0] = AUTH_SYS;
2427	}
2428	done = FALSE;
2429
2430	if (v4root_phase == 0) {
2431		build_iovec(&iov, &iovlen, "fstype", NULL, 0);
2432		build_iovec(&iov, &iovlen, "fspath", NULL, 0);
2433		build_iovec(&iov, &iovlen, "from", NULL, 0);
2434		build_iovec(&iov, &iovlen, "update", NULL, 0);
2435		build_iovec(&iov, &iovlen, "export", eap,
2436		    sizeof (struct export_args));
2437		build_iovec(&iov, &iovlen, "errmsg", errmsg, sizeof(errmsg));
2438	}
2439
2440	while (!done) {
2441		switch (grp->gr_type) {
2442		case GT_HOST:
2443			if (ai->ai_addr->sa_family == AF_INET6 && have_v6 == 0)
2444				goto skip;
2445			eap->ex_addr = ai->ai_addr;
2446			eap->ex_addrlen = ai->ai_addrlen;
2447			eap->ex_masklen = 0;
2448			break;
2449		case GT_NET:
2450			if (grp->gr_ptr.gt_net.nt_net.ss_family == AF_INET6 &&
2451			    have_v6 == 0)
2452				goto skip;
2453			eap->ex_addr =
2454			    (struct sockaddr *)&grp->gr_ptr.gt_net.nt_net;
2455			eap->ex_addrlen =
2456			    ((struct sockaddr *)&grp->gr_ptr.gt_net.nt_net)->sa_len;
2457			eap->ex_mask =
2458			    (struct sockaddr *)&grp->gr_ptr.gt_net.nt_mask;
2459			eap->ex_masklen = ((struct sockaddr *)&grp->gr_ptr.gt_net.nt_mask)->sa_len;
2460			break;
2461		case GT_DEFAULT:
2462			eap->ex_addr = NULL;
2463			eap->ex_addrlen = 0;
2464			eap->ex_mask = NULL;
2465			eap->ex_masklen = 0;
2466			break;
2467		case GT_IGNORE:
2468			ret = 0;
2469			goto error_exit;
2470			break;
2471		default:
2472			syslog(LOG_ERR, "bad grouptype");
2473			if (cp)
2474				*cp = savedc;
2475			ret = 1;
2476			goto error_exit;
2477		};
2478
2479		/*
2480		 * For V4:, use the nfssvc() syscall, instead of mount().
2481		 */
2482		if (v4root_phase == 2) {
2483			nfsea.fspec = v4root_dirpath;
2484			if (run_v4server > 0 &&
2485			    nfssvc(NFSSVC_V4ROOTEXPORT, (caddr_t)&nfsea) < 0) {
2486				syslog(LOG_ERR, "Exporting V4: failed");
2487				return (2);
2488			}
2489		} else {
2490			/*
2491			 * XXX:
2492			 * Maybe I should just use the fsb->f_mntonname path
2493			 * instead of looping back up the dirp to the mount
2494			 * point??
2495			 * Also, needs to know how to export all types of local
2496			 * exportable filesystems and not just "ufs".
2497			 */
2498			iov[1].iov_base = fsb->f_fstypename; /* "fstype" */
2499			iov[1].iov_len = strlen(fsb->f_fstypename) + 1;
2500			iov[3].iov_base = fsb->f_mntonname; /* "fspath" */
2501			iov[3].iov_len = strlen(fsb->f_mntonname) + 1;
2502			iov[5].iov_base = fsb->f_mntfromname; /* "from" */
2503			iov[5].iov_len = strlen(fsb->f_mntfromname) + 1;
2504
2505			while (nmount(iov, iovlen, fsb->f_flags) < 0) {
2506				if (cp)
2507					*cp-- = savedc;
2508				else
2509					cp = dirp + dirplen - 1;
2510				if (opt_flags & OP_QUIET) {
2511					ret = 1;
2512					goto error_exit;
2513				}
2514				if (errno == EPERM) {
2515					if (debug)
2516						warnx("can't change attributes for %s: %s",
2517						    dirp, errmsg);
2518					syslog(LOG_ERR,
2519					   "can't change attributes for %s: %s",
2520					    dirp, errmsg);
2521					ret = 1;
2522					goto error_exit;
2523				}
2524				if (opt_flags & OP_ALLDIRS) {
2525					if (errno == EINVAL)
2526						syslog(LOG_ERR,
2527		"-alldirs requested but %s is not a filesystem mountpoint",
2528						    dirp);
2529					else
2530						syslog(LOG_ERR,
2531						    "could not remount %s: %m",
2532						    dirp);
2533					ret = 1;
2534					goto error_exit;
2535				}
2536				/* back up over the last component */
2537				while (*cp == '/' && cp > dirp)
2538					cp--;
2539				while (*(cp - 1) != '/' && cp > dirp)
2540					cp--;
2541				if (cp == dirp) {
2542					if (debug)
2543						warnx("mnt unsucc");
2544					syslog(LOG_ERR, "can't export %s %s",
2545					    dirp, errmsg);
2546					ret = 1;
2547					goto error_exit;
2548				}
2549				savedc = *cp;
2550				*cp = '\0';
2551				/*
2552				 * Check that we're still on the same
2553				 * filesystem.
2554				 */
2555				if (statfs(dirp, &fsb1) != 0 ||
2556				    bcmp(&fsb1.f_fsid, &fsb->f_fsid,
2557				    sizeof (fsb1.f_fsid)) != 0) {
2558					*cp = savedc;
2559					syslog(LOG_ERR,
2560					    "can't export %s %s", dirp,
2561					    errmsg);
2562					ret = 1;
2563					goto error_exit;
2564				}
2565			}
2566		}
2567
2568		/*
2569		 * For the experimental server:
2570		 * If this is the public directory, get the file handle
2571		 * and load it into the kernel via the nfssvc() syscall.
2572		 */
2573		if (run_v4server > 0 && (exflags & MNT_EXPUBLIC) != 0) {
2574			fhandle_t fh;
2575			char *public_name;
2576
2577			if (eap->ex_indexfile != NULL)
2578				public_name = eap->ex_indexfile;
2579			else
2580				public_name = dirp;
2581			if (getfh(public_name, &fh) < 0)
2582				syslog(LOG_ERR,
2583				    "Can't get public fh for %s", public_name);
2584			else if (nfssvc(NFSSVC_PUBLICFH, (caddr_t)&fh) < 0)
2585				syslog(LOG_ERR,
2586				    "Can't set public fh for %s", public_name);
2587			else
2588				has_publicfh = 1;
2589		}
2590skip:
2591		if (ai != NULL)
2592			ai = ai->ai_next;
2593		if (ai == NULL)
2594			done = TRUE;
2595	}
2596	if (cp)
2597		*cp = savedc;
2598error_exit:
2599	/* free strings allocated by strdup() in getmntopts.c */
2600	if (iov != NULL) {
2601		free(iov[0].iov_base); /* fstype */
2602		free(iov[2].iov_base); /* fspath */
2603		free(iov[4].iov_base); /* from */
2604		free(iov[6].iov_base); /* update */
2605		free(iov[8].iov_base); /* export */
2606		free(iov[10].iov_base); /* errmsg */
2607
2608		/* free iov, allocated by realloc() */
2609		free(iov);
2610	}
2611	return (ret);
2612}
2613
2614/*
2615 * Translate a net address.
2616 *
2617 * If `maskflg' is nonzero, then `cp' is a netmask, not a network address.
2618 */
2619int
2620get_net(char *cp, struct netmsk *net, int maskflg)
2621{
2622	struct netent *np = NULL;
2623	char *name, *p, *prefp;
2624	struct sockaddr_in sin;
2625	struct sockaddr *sa = NULL;
2626	struct addrinfo hints, *ai = NULL;
2627	char netname[NI_MAXHOST];
2628	long preflen;
2629
2630	p = prefp = NULL;
2631	if ((opt_flags & OP_MASKLEN) && !maskflg) {
2632		p = strchr(cp, '/');
2633		*p = '\0';
2634		prefp = p + 1;
2635	}
2636
2637	/*
2638	 * Check for a numeric address first. We wish to avoid
2639	 * possible DNS lookups in getnetbyname().
2640	 */
2641	if (isxdigit(*cp) || *cp == ':') {
2642		memset(&hints, 0, sizeof hints);
2643		/* Ensure the mask and the network have the same family. */
2644		if (maskflg && (opt_flags & OP_NET))
2645			hints.ai_family = net->nt_net.ss_family;
2646		else if (!maskflg && (opt_flags & OP_HAVEMASK))
2647			hints.ai_family = net->nt_mask.ss_family;
2648		else
2649			hints.ai_family = AF_UNSPEC;
2650		hints.ai_flags = AI_NUMERICHOST;
2651		if (getaddrinfo(cp, NULL, &hints, &ai) == 0)
2652			sa = ai->ai_addr;
2653		if (sa != NULL && ai->ai_family == AF_INET) {
2654			/*
2655			 * The address in `cp' is really a network address, so
2656			 * use inet_network() to re-interpret this correctly.
2657			 * e.g. "127.1" means 127.1.0.0, not 127.0.0.1.
2658			 */
2659			bzero(&sin, sizeof sin);
2660			sin.sin_family = AF_INET;
2661			sin.sin_len = sizeof sin;
2662			sin.sin_addr = inet_makeaddr(inet_network(cp), 0);
2663			if (debug)
2664				fprintf(stderr, "get_net: v4 addr %s\n",
2665				    inet_ntoa(sin.sin_addr));
2666			sa = (struct sockaddr *)&sin;
2667		}
2668	}
2669	if (sa == NULL && (np = getnetbyname(cp)) != NULL) {
2670		bzero(&sin, sizeof sin);
2671		sin.sin_family = AF_INET;
2672		sin.sin_len = sizeof sin;
2673		sin.sin_addr = inet_makeaddr(np->n_net, 0);
2674		sa = (struct sockaddr *)&sin;
2675	}
2676	if (sa == NULL)
2677		goto fail;
2678
2679	if (maskflg) {
2680		/* The specified sockaddr is a mask. */
2681		if (checkmask(sa) != 0)
2682			goto fail;
2683		bcopy(sa, &net->nt_mask, sa->sa_len);
2684		opt_flags |= OP_HAVEMASK;
2685	} else {
2686		/* The specified sockaddr is a network address. */
2687		bcopy(sa, &net->nt_net, sa->sa_len);
2688
2689		/* Get a network name for the export list. */
2690		if (np) {
2691			name = np->n_name;
2692		} else if (getnameinfo(sa, sa->sa_len, netname, sizeof netname,
2693		   NULL, 0, NI_NUMERICHOST) == 0) {
2694			name = netname;
2695		} else {
2696			goto fail;
2697		}
2698		if ((net->nt_name = strdup(name)) == NULL)
2699			out_of_mem();
2700
2701		/*
2702		 * Extract a mask from either a "/<masklen>" suffix, or
2703		 * from the class of an IPv4 address.
2704		 */
2705		if (opt_flags & OP_MASKLEN) {
2706			preflen = strtol(prefp, NULL, 10);
2707			if (preflen < 0L || preflen == LONG_MAX)
2708				goto fail;
2709			bcopy(sa, &net->nt_mask, sa->sa_len);
2710			if (makemask(&net->nt_mask, (int)preflen) != 0)
2711				goto fail;
2712			opt_flags |= OP_HAVEMASK;
2713			*p = '/';
2714		} else if (sa->sa_family == AF_INET &&
2715		    (opt_flags & OP_MASK) == 0) {
2716			in_addr_t addr;
2717
2718			addr = ((struct sockaddr_in *)sa)->sin_addr.s_addr;
2719			if (IN_CLASSA(addr))
2720				preflen = 8;
2721			else if (IN_CLASSB(addr))
2722				preflen = 16;
2723			else if (IN_CLASSC(addr))
2724				preflen = 24;
2725			else if (IN_CLASSD(addr))
2726				preflen = 28;
2727			else
2728				preflen = 32;	/* XXX */
2729
2730			bcopy(sa, &net->nt_mask, sa->sa_len);
2731			makemask(&net->nt_mask, (int)preflen);
2732			opt_flags |= OP_HAVEMASK;
2733		}
2734	}
2735
2736	if (ai)
2737		freeaddrinfo(ai);
2738	return 0;
2739
2740fail:
2741	if (ai)
2742		freeaddrinfo(ai);
2743	return 1;
2744}
2745
2746/*
2747 * Parse out the next white space separated field
2748 */
2749void
2750nextfield(char **cp, char **endcp)
2751{
2752	char *p;
2753
2754	p = *cp;
2755	while (*p == ' ' || *p == '\t')
2756		p++;
2757	if (*p == '\n' || *p == '\0')
2758		*cp = *endcp = p;
2759	else {
2760		*cp = p++;
2761		while (*p != ' ' && *p != '\t' && *p != '\n' && *p != '\0')
2762			p++;
2763		*endcp = p;
2764	}
2765}
2766
2767/*
2768 * Get an exports file line. Skip over blank lines and handle line
2769 * continuations.
2770 */
2771int
2772get_line(void)
2773{
2774	char *p, *cp;
2775	size_t len;
2776	int totlen, cont_line;
2777
2778	/*
2779	 * Loop around ignoring blank lines and getting all continuation lines.
2780	 */
2781	p = line;
2782	totlen = 0;
2783	do {
2784		if ((p = fgetln(exp_file, &len)) == NULL)
2785			return (0);
2786		cp = p + len - 1;
2787		cont_line = 0;
2788		while (cp >= p &&
2789		    (*cp == ' ' || *cp == '\t' || *cp == '\n' || *cp == '\\')) {
2790			if (*cp == '\\')
2791				cont_line = 1;
2792			cp--;
2793			len--;
2794		}
2795		if (cont_line) {
2796			*++cp = ' ';
2797			len++;
2798		}
2799		if (linesize < len + totlen + 1) {
2800			linesize = len + totlen + 1;
2801			line = realloc(line, linesize);
2802			if (line == NULL)
2803				out_of_mem();
2804		}
2805		memcpy(line + totlen, p, len);
2806		totlen += len;
2807		line[totlen] = '\0';
2808	} while (totlen == 0 || cont_line);
2809	return (1);
2810}
2811
2812/*
2813 * Parse a description of a credential.
2814 */
2815void
2816parsecred(char *namelist, struct xucred *cr)
2817{
2818	char *name;
2819	int cnt;
2820	char *names;
2821	struct passwd *pw;
2822	struct group *gr;
2823	gid_t groups[XU_NGROUPS + 1];
2824	int ngroups;
2825
2826	cr->cr_version = XUCRED_VERSION;
2827	/*
2828	 * Set up the unprivileged user.
2829	 */
2830	cr->cr_uid = -2;
2831	cr->cr_groups[0] = -2;
2832	cr->cr_ngroups = 1;
2833	/*
2834	 * Get the user's password table entry.
2835	 */
2836	names = strsep(&namelist, " \t\n");
2837	name = strsep(&names, ":");
2838	if (isdigit(*name) || *name == '-')
2839		pw = getpwuid(atoi(name));
2840	else
2841		pw = getpwnam(name);
2842	/*
2843	 * Credentials specified as those of a user.
2844	 */
2845	if (names == NULL) {
2846		if (pw == NULL) {
2847			syslog(LOG_ERR, "unknown user: %s", name);
2848			return;
2849		}
2850		cr->cr_uid = pw->pw_uid;
2851		ngroups = XU_NGROUPS + 1;
2852		if (getgrouplist(pw->pw_name, pw->pw_gid, groups, &ngroups))
2853			syslog(LOG_ERR, "too many groups");
2854		/*
2855		 * Compress out duplicate.
2856		 */
2857		cr->cr_ngroups = ngroups - 1;
2858		cr->cr_groups[0] = groups[0];
2859		for (cnt = 2; cnt < ngroups; cnt++)
2860			cr->cr_groups[cnt - 1] = groups[cnt];
2861		return;
2862	}
2863	/*
2864	 * Explicit credential specified as a colon separated list:
2865	 *	uid:gid:gid:...
2866	 */
2867	if (pw != NULL)
2868		cr->cr_uid = pw->pw_uid;
2869	else if (isdigit(*name) || *name == '-')
2870		cr->cr_uid = atoi(name);
2871	else {
2872		syslog(LOG_ERR, "unknown user: %s", name);
2873		return;
2874	}
2875	cr->cr_ngroups = 0;
2876	while (names != NULL && *names != '\0' && cr->cr_ngroups < XU_NGROUPS) {
2877		name = strsep(&names, ":");
2878		if (isdigit(*name) || *name == '-') {
2879			cr->cr_groups[cr->cr_ngroups++] = atoi(name);
2880		} else {
2881			if ((gr = getgrnam(name)) == NULL) {
2882				syslog(LOG_ERR, "unknown group: %s", name);
2883				continue;
2884			}
2885			cr->cr_groups[cr->cr_ngroups++] = gr->gr_gid;
2886		}
2887	}
2888	if (names != NULL && *names != '\0' && cr->cr_ngroups == XU_NGROUPS)
2889		syslog(LOG_ERR, "too many groups");
2890}
2891
2892#define	STRSIZ	(MNTNAMLEN+MNTPATHLEN+50)
2893/*
2894 * Routines that maintain the remote mounttab
2895 */
2896void
2897get_mountlist(void)
2898{
2899	struct mountlist *mlp, **mlpp;
2900	char *host, *dirp, *cp;
2901	char str[STRSIZ];
2902	FILE *mlfile;
2903
2904	if ((mlfile = fopen(_PATH_RMOUNTLIST, "r")) == NULL) {
2905		if (errno == ENOENT)
2906			return;
2907		else {
2908			syslog(LOG_ERR, "can't open %s", _PATH_RMOUNTLIST);
2909			return;
2910		}
2911	}
2912	mlpp = &mlhead;
2913	while (fgets(str, STRSIZ, mlfile) != NULL) {
2914		cp = str;
2915		host = strsep(&cp, " \t\n");
2916		dirp = strsep(&cp, " \t\n");
2917		if (host == NULL || dirp == NULL)
2918			continue;
2919		mlp = (struct mountlist *)malloc(sizeof (*mlp));
2920		if (mlp == (struct mountlist *)NULL)
2921			out_of_mem();
2922		strncpy(mlp->ml_host, host, MNTNAMLEN);
2923		mlp->ml_host[MNTNAMLEN] = '\0';
2924		strncpy(mlp->ml_dirp, dirp, MNTPATHLEN);
2925		mlp->ml_dirp[MNTPATHLEN] = '\0';
2926		mlp->ml_next = (struct mountlist *)NULL;
2927		*mlpp = mlp;
2928		mlpp = &mlp->ml_next;
2929	}
2930	fclose(mlfile);
2931}
2932
2933void
2934del_mlist(char *hostp, char *dirp)
2935{
2936	struct mountlist *mlp, **mlpp;
2937	struct mountlist *mlp2;
2938	FILE *mlfile;
2939	int fnd = 0;
2940
2941	mlpp = &mlhead;
2942	mlp = mlhead;
2943	while (mlp) {
2944		if (!strcmp(mlp->ml_host, hostp) &&
2945		    (!dirp || !strcmp(mlp->ml_dirp, dirp))) {
2946			fnd = 1;
2947			mlp2 = mlp;
2948			*mlpp = mlp = mlp->ml_next;
2949			free((caddr_t)mlp2);
2950		} else {
2951			mlpp = &mlp->ml_next;
2952			mlp = mlp->ml_next;
2953		}
2954	}
2955	if (fnd) {
2956		if ((mlfile = fopen(_PATH_RMOUNTLIST, "w")) == NULL) {
2957			syslog(LOG_ERR,"can't update %s", _PATH_RMOUNTLIST);
2958			return;
2959		}
2960		mlp = mlhead;
2961		while (mlp) {
2962			fprintf(mlfile, "%s %s\n", mlp->ml_host, mlp->ml_dirp);
2963			mlp = mlp->ml_next;
2964		}
2965		fclose(mlfile);
2966	}
2967}
2968
2969void
2970add_mlist(char *hostp, char *dirp)
2971{
2972	struct mountlist *mlp, **mlpp;
2973	FILE *mlfile;
2974
2975	mlpp = &mlhead;
2976	mlp = mlhead;
2977	while (mlp) {
2978		if (!strcmp(mlp->ml_host, hostp) && !strcmp(mlp->ml_dirp, dirp))
2979			return;
2980		mlpp = &mlp->ml_next;
2981		mlp = mlp->ml_next;
2982	}
2983	mlp = (struct mountlist *)malloc(sizeof (*mlp));
2984	if (mlp == (struct mountlist *)NULL)
2985		out_of_mem();
2986	strncpy(mlp->ml_host, hostp, MNTNAMLEN);
2987	mlp->ml_host[MNTNAMLEN] = '\0';
2988	strncpy(mlp->ml_dirp, dirp, MNTPATHLEN);
2989	mlp->ml_dirp[MNTPATHLEN] = '\0';
2990	mlp->ml_next = (struct mountlist *)NULL;
2991	*mlpp = mlp;
2992	if ((mlfile = fopen(_PATH_RMOUNTLIST, "a")) == NULL) {
2993		syslog(LOG_ERR, "can't update %s", _PATH_RMOUNTLIST);
2994		return;
2995	}
2996	fprintf(mlfile, "%s %s\n", mlp->ml_host, mlp->ml_dirp);
2997	fclose(mlfile);
2998}
2999
3000/*
3001 * Free up a group list.
3002 */
3003void
3004free_grp(struct grouplist *grp)
3005{
3006	if (grp->gr_type == GT_HOST) {
3007		if (grp->gr_ptr.gt_addrinfo != NULL)
3008			freeaddrinfo(grp->gr_ptr.gt_addrinfo);
3009	} else if (grp->gr_type == GT_NET) {
3010		if (grp->gr_ptr.gt_net.nt_name)
3011			free(grp->gr_ptr.gt_net.nt_name);
3012	}
3013	free((caddr_t)grp);
3014}
3015
3016#ifdef DEBUG
3017void
3018SYSLOG(int pri, const char *fmt, ...)
3019{
3020	va_list ap;
3021
3022	va_start(ap, fmt);
3023	vfprintf(stderr, fmt, ap);
3024	va_end(ap);
3025}
3026#endif /* DEBUG */
3027
3028/*
3029 * Check options for consistency.
3030 */
3031int
3032check_options(struct dirlist *dp)
3033{
3034
3035	if (v4root_phase == 0 && dp == NULL)
3036	    return (1);
3037	if ((opt_flags & (OP_MAPROOT | OP_MAPALL)) == (OP_MAPROOT | OP_MAPALL)) {
3038	    syslog(LOG_ERR, "-mapall and -maproot mutually exclusive");
3039	    return (1);
3040	}
3041	if ((opt_flags & OP_MASK) && (opt_flags & OP_NET) == 0) {
3042		syslog(LOG_ERR, "-mask requires -network");
3043		return (1);
3044	}
3045	if ((opt_flags & OP_NET) && (opt_flags & OP_HAVEMASK) == 0) {
3046		syslog(LOG_ERR, "-network requires mask specification");
3047		return (1);
3048	}
3049	if ((opt_flags & OP_MASK) && (opt_flags & OP_MASKLEN)) {
3050		syslog(LOG_ERR, "-mask and /masklen are mutually exclusive");
3051		return (1);
3052	}
3053	if (v4root_phase > 0 &&
3054	    (opt_flags &
3055	     ~(OP_SEC | OP_MASK | OP_NET | OP_HAVEMASK | OP_MASKLEN)) != 0) {
3056	    syslog(LOG_ERR,"only -sec,-net,-mask options allowed on V4:");
3057	    return (1);
3058	}
3059	if ((opt_flags & OP_ALLDIRS) && dp->dp_left) {
3060	    syslog(LOG_ERR, "-alldirs has multiple directories");
3061	    return (1);
3062	}
3063	return (0);
3064}
3065
3066/*
3067 * Check an absolute directory path for any symbolic links. Return true
3068 */
3069int
3070check_dirpath(char *dirp)
3071{
3072	char *cp;
3073	int ret = 1;
3074	struct stat sb;
3075
3076	cp = dirp + 1;
3077	while (*cp && ret) {
3078		if (*cp == '/') {
3079			*cp = '\0';
3080			if (lstat(dirp, &sb) < 0 || !S_ISDIR(sb.st_mode))
3081				ret = 0;
3082			*cp = '/';
3083		}
3084		cp++;
3085	}
3086	if (lstat(dirp, &sb) < 0 || !S_ISDIR(sb.st_mode))
3087		ret = 0;
3088	return (ret);
3089}
3090
3091/*
3092 * Make a netmask according to the specified prefix length. The ss_family
3093 * and other non-address fields must be initialised before calling this.
3094 */
3095int
3096makemask(struct sockaddr_storage *ssp, int bitlen)
3097{
3098	u_char *p;
3099	int bits, i, len;
3100
3101	if ((p = sa_rawaddr((struct sockaddr *)ssp, &len)) == NULL)
3102		return (-1);
3103	if (bitlen > len * CHAR_BIT)
3104		return (-1);
3105
3106	for (i = 0; i < len; i++) {
3107		bits = (bitlen > CHAR_BIT) ? CHAR_BIT : bitlen;
3108		*p++ = (u_char)~0 << (CHAR_BIT - bits);
3109		bitlen -= bits;
3110	}
3111	return 0;
3112}
3113
3114/*
3115 * Check that the sockaddr is a valid netmask. Returns 0 if the mask
3116 * is acceptable (i.e. of the form 1...10....0).
3117 */
3118int
3119checkmask(struct sockaddr *sa)
3120{
3121	u_char *mask;
3122	int i, len;
3123
3124	if ((mask = sa_rawaddr(sa, &len)) == NULL)
3125		return (-1);
3126
3127	for (i = 0; i < len; i++)
3128		if (mask[i] != 0xff)
3129			break;
3130	if (i < len) {
3131		if (~mask[i] & (u_char)(~mask[i] + 1))
3132			return (-1);
3133		i++;
3134	}
3135	for (; i < len; i++)
3136		if (mask[i] != 0)
3137			return (-1);
3138	return (0);
3139}
3140
3141/*
3142 * Compare two sockaddrs according to a specified mask. Return zero if
3143 * `sa1' matches `sa2' when filtered by the netmask in `samask'.
3144 * If samask is NULL, perform a full comparison.
3145 */
3146int
3147sacmp(struct sockaddr *sa1, struct sockaddr *sa2, struct sockaddr *samask)
3148{
3149	unsigned char *p1, *p2, *mask;
3150	int len, i;
3151
3152	if (sa1->sa_family != sa2->sa_family ||
3153	    (p1 = sa_rawaddr(sa1, &len)) == NULL ||
3154	    (p2 = sa_rawaddr(sa2, NULL)) == NULL)
3155		return (1);
3156
3157	switch (sa1->sa_family) {
3158	case AF_INET6:
3159		if (((struct sockaddr_in6 *)sa1)->sin6_scope_id !=
3160		    ((struct sockaddr_in6 *)sa2)->sin6_scope_id)
3161			return (1);
3162		break;
3163	}
3164
3165	/* Simple binary comparison if no mask specified. */
3166	if (samask == NULL)
3167		return (memcmp(p1, p2, len));
3168
3169	/* Set up the mask, and do a mask-based comparison. */
3170	if (sa1->sa_family != samask->sa_family ||
3171	    (mask = sa_rawaddr(samask, NULL)) == NULL)
3172		return (1);
3173
3174	for (i = 0; i < len; i++)
3175		if ((p1[i] & mask[i]) != (p2[i] & mask[i]))
3176			return (1);
3177	return (0);
3178}
3179
3180/*
3181 * Return a pointer to the part of the sockaddr that contains the
3182 * raw address, and set *nbytes to its length in bytes. Returns
3183 * NULL if the address family is unknown.
3184 */
3185void *
3186sa_rawaddr(struct sockaddr *sa, int *nbytes) {
3187	void *p;
3188	int len;
3189
3190	switch (sa->sa_family) {
3191	case AF_INET:
3192		len = sizeof(((struct sockaddr_in *)sa)->sin_addr);
3193		p = &((struct sockaddr_in *)sa)->sin_addr;
3194		break;
3195	case AF_INET6:
3196		len = sizeof(((struct sockaddr_in6 *)sa)->sin6_addr);
3197		p = &((struct sockaddr_in6 *)sa)->sin6_addr;
3198		break;
3199	default:
3200		p = NULL;
3201		len = 0;
3202	}
3203
3204	if (nbytes != NULL)
3205		*nbytes = len;
3206	return (p);
3207}
3208
3209void
3210huphandler(int sig __unused)
3211{
3212	got_sighup = 1;
3213}
3214
3215void terminate(int sig __unused)
3216{
3217	pidfile_remove(pfh);
3218	rpcb_unset(MOUNTPROG, MOUNTVERS, NULL);
3219	rpcb_unset(MOUNTPROG, MOUNTVERS3, NULL);
3220	exit (0);
3221}
3222
3223