xref: /freebsd/lib/libc/gen/getgrent.c (revision 315ee00f)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause
3  *
4  * Copyright (c) 2003 Networks Associates Technology, Inc.
5  * All rights reserved.
6  *
7  * This software was developed for the FreeBSD Project by
8  * Jacques A. Vidrine, Safeport Network Services, and Network
9  * Associates Laboratories, the Security Research Division of Network
10  * Associates, Inc. under DARPA/SPAWAR contract N66001-01-C-8035
11  * ("CBOSS"), as part of the DARPA CHATS research program.
12  *
13  * Redistribution and use in source and binary forms, with or without
14  * modification, are permitted provided that the following conditions
15  * are met:
16  * 1. Redistributions of source code must retain the above copyright
17  *    notice, this list of conditions and the following disclaimer.
18  * 2. Redistributions in binary form must reproduce the above copyright
19  *    notice, this list of conditions and the following disclaimer in the
20  *    documentation and/or other materials provided with the distribution.
21  *
22  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
23  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
26  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32  * SUCH DAMAGE.
33  *
34  */
35 #include <sys/cdefs.h>
36 #include "namespace.h"
37 #include <sys/param.h>
38 #ifdef YP
39 #include <rpc/rpc.h>
40 #include <rpcsvc/yp_prot.h>
41 #include <rpcsvc/ypclnt.h>
42 #endif
43 #include <assert.h>
44 #include <ctype.h>
45 #include <errno.h>
46 #ifdef HESIOD
47 #include <hesiod.h>
48 #endif
49 #include <grp.h>
50 #include <nsswitch.h>
51 #include <pthread.h>
52 #include <pthread_np.h>
53 #include <stdio.h>
54 #include <stdlib.h>
55 #include <string.h>
56 #include <syslog.h>
57 #include <unistd.h>
58 #include "un-namespace.h"
59 #include "libc_private.h"
60 #include "nss_tls.h"
61 #ifdef NS_CACHING
62 #include "nscache.h"
63 #endif
64 
65 enum constants {
66 	GRP_STORAGE_INITIAL	= 1 << 10, /* 1 KByte */
67 	GRP_STORAGE_MAX		= 1 << 20, /* 1 MByte */
68 	SETGRENT		= 1,
69 	ENDGRENT		= 2,
70 	HESIOD_NAME_MAX		= 256,
71 };
72 
73 static const ns_src defaultsrc[] = {
74 	{ NSSRC_COMPAT, NS_SUCCESS },
75 	{ NULL, 0 }
76 };
77 
78 int	 __getgroupmembership(const char *, gid_t, gid_t *, int, int *);
79 int	 __gr_match_entry(const char *, size_t, enum nss_lookup_type,
80 	    const char *, gid_t);
81 int	 __gr_parse_entry(char *, size_t, struct group *, char *, size_t,
82 	    int *);
83 
84 static	int	 is_comment_line(const char *, size_t);
85 
86 union key {
87 	const char	*name;
88 	gid_t		 gid;
89 };
90 static	struct group *getgr(int (*)(union key, struct group *, char *, size_t,
91 		    struct group **), union key);
92 static	int	 wrap_getgrnam_r(union key, struct group *, char *, size_t,
93 		    struct group **);
94 static	int	 wrap_getgrgid_r(union key, struct group *, char *, size_t,
95 		    struct group **);
96 static	int	 wrap_getgrent_r(union key, struct group *, char *, size_t,
97 		    struct group **);
98 
99 struct files_state {
100 	FILE	*fp;
101 	int	 stayopen;
102 };
103 static	void	 files_endstate(void *);
104 NSS_TLS_HANDLING(files);
105 static	int	 files_setgrent(void *, void *, va_list);
106 static	int	 files_group(void *, void *, va_list);
107 
108 
109 #ifdef HESIOD
110 struct dns_state {
111 	long	counter;
112 };
113 static	void	 dns_endstate(void *);
114 NSS_TLS_HANDLING(dns);
115 static	int	 dns_setgrent(void *, void *, va_list);
116 static	int	 dns_group(void *, void *, va_list);
117 #endif
118 
119 
120 #ifdef YP
121 struct nis_state {
122 	char	 domain[MAXHOSTNAMELEN];
123 	int	 done;
124 	char	*key;
125 	int	 keylen;
126 };
127 static	void	 nis_endstate(void *);
128 NSS_TLS_HANDLING(nis);
129 static	int	 nis_setgrent(void *, void *, va_list);
130 static	int	 nis_group(void *, void *, va_list);
131 #endif
132 
133 struct compat_state {
134 	FILE	*fp;
135 	int	 stayopen;
136 	char	*name;
137 	enum _compat {
138 		COMPAT_MODE_OFF = 0,
139 		COMPAT_MODE_ALL,
140 		COMPAT_MODE_NAME
141 	}	 compat;
142 };
143 static	void	 compat_endstate(void *);
144 NSS_TLS_HANDLING(compat);
145 static	int	 compat_setgrent(void *, void *, va_list);
146 static	int	 compat_group(void *, void *, va_list);
147 
148 static	int	gr_addgid(gid_t, gid_t *, int, int *);
149 static	int	getgroupmembership_fallback(void *, void *, va_list);
150 
151 #ifdef NS_CACHING
152 static	int	 grp_id_func(char *, size_t *, va_list, void *);
153 static	int	 grp_marshal_func(char *, size_t *, void *, va_list, void *);
154 static	int	 grp_unmarshal_func(char *, size_t, void *, va_list, void *);
155 
156 static int
157 grp_id_func(char *buffer, size_t *buffer_size, va_list ap, void *cache_mdata)
158 {
159 	char	*name;
160 	gid_t	gid;
161 
162 	size_t	desired_size, size;
163 	int	res = NS_UNAVAIL;
164 	enum nss_lookup_type lookup_type;
165 
166 
167 	lookup_type = (enum nss_lookup_type)(uintptr_t)cache_mdata;
168 	switch (lookup_type) {
169 	case nss_lt_name:
170 		name = va_arg(ap, char *);
171 		size = strlen(name);
172 		desired_size = sizeof(enum nss_lookup_type) + size + 1;
173 		if (desired_size > *buffer_size) {
174 			res = NS_RETURN;
175 			goto fin;
176 		}
177 
178 		memcpy(buffer, &lookup_type, sizeof(enum nss_lookup_type));
179 		memcpy(buffer + sizeof(enum nss_lookup_type), name, size + 1);
180 
181 		res = NS_SUCCESS;
182 		break;
183 	case nss_lt_id:
184 		gid = va_arg(ap, gid_t);
185 		desired_size = sizeof(enum nss_lookup_type) + sizeof(gid_t);
186 		if (desired_size > *buffer_size) {
187 			res = NS_RETURN;
188 			goto fin;
189 		}
190 
191 		memcpy(buffer, &lookup_type, sizeof(enum nss_lookup_type));
192 		memcpy(buffer + sizeof(enum nss_lookup_type), &gid,
193 		    sizeof(gid_t));
194 
195 		res = NS_SUCCESS;
196 		break;
197 	default:
198 		/* should be unreachable */
199 		return (NS_UNAVAIL);
200 	}
201 
202 fin:
203 	*buffer_size = desired_size;
204 	return (res);
205 }
206 
207 static int
208 grp_marshal_func(char *buffer, size_t *buffer_size, void *retval, va_list ap,
209     void *cache_mdata)
210 {
211 	char *name __unused;
212 	gid_t gid __unused;
213 	struct group *grp;
214 	char *orig_buf __unused;
215 	size_t orig_buf_size __unused;
216 	struct group new_grp;
217 	size_t desired_size, size, mem_size;
218 	char *p, **mem;
219 
220 	switch ((enum nss_lookup_type)(uintptr_t)cache_mdata) {
221 	case nss_lt_name:
222 		name = va_arg(ap, char *);
223 		break;
224 	case nss_lt_id:
225 		gid = va_arg(ap, gid_t);
226 		break;
227 	case nss_lt_all:
228 		break;
229 	default:
230 		/* should be unreachable */
231 		return (NS_UNAVAIL);
232 	}
233 
234 	grp = va_arg(ap, struct group *);
235 	orig_buf = va_arg(ap, char *);
236 	orig_buf_size = va_arg(ap, size_t);
237 
238 	desired_size = _ALIGNBYTES + sizeof(struct group) + sizeof(char *);
239 
240 	if (grp->gr_name != NULL)
241 		desired_size += strlen(grp->gr_name) + 1;
242 	if (grp->gr_passwd != NULL)
243 		desired_size += strlen(grp->gr_passwd) + 1;
244 
245 	if (grp->gr_mem != NULL) {
246 		mem_size = 0;
247 		for (mem = grp->gr_mem; *mem; ++mem) {
248 			desired_size += strlen(*mem) + 1;
249 			++mem_size;
250 		}
251 
252 		desired_size += _ALIGNBYTES + (mem_size + 1) * sizeof(char *);
253 	}
254 
255 	if (desired_size > *buffer_size) {
256 		/* this assignment is here for future use */
257 		*buffer_size = desired_size;
258 		return (NS_RETURN);
259 	}
260 
261 	memcpy(&new_grp, grp, sizeof(struct group));
262 	memset(buffer, 0, desired_size);
263 
264 	*buffer_size = desired_size;
265 	p = buffer + sizeof(struct group) + sizeof(char *);
266 	memcpy(buffer + sizeof(struct group), &p, sizeof(char *));
267 	p = (char *)_ALIGN(p);
268 
269 	if (new_grp.gr_name != NULL) {
270 		size = strlen(new_grp.gr_name);
271 		memcpy(p, new_grp.gr_name, size);
272 		new_grp.gr_name = p;
273 		p += size + 1;
274 	}
275 
276 	if (new_grp.gr_passwd != NULL) {
277 		size = strlen(new_grp.gr_passwd);
278 		memcpy(p, new_grp.gr_passwd, size);
279 		new_grp.gr_passwd = p;
280 		p += size + 1;
281 	}
282 
283 	if (new_grp.gr_mem != NULL) {
284 		p = (char *)_ALIGN(p);
285 		memcpy(p, new_grp.gr_mem, sizeof(char *) * mem_size);
286 		new_grp.gr_mem = (char **)p;
287 		p += sizeof(char *) * (mem_size + 1);
288 
289 		for (mem = new_grp.gr_mem; *mem; ++mem) {
290 			size = strlen(*mem);
291 			memcpy(p, *mem, size);
292 			*mem = p;
293 			p += size + 1;
294 		}
295 	}
296 
297 	memcpy(buffer, &new_grp, sizeof(struct group));
298 	return (NS_SUCCESS);
299 }
300 
301 static int
302 grp_unmarshal_func(char *buffer, size_t buffer_size, void *retval, va_list ap,
303     void *cache_mdata)
304 {
305 	char *name __unused;
306 	gid_t gid __unused;
307 	struct group *grp;
308 	char *orig_buf;
309 	size_t orig_buf_size;
310 	int *ret_errno;
311 
312 	char *p;
313 	char **mem;
314 
315 	switch ((enum nss_lookup_type)(uintptr_t)cache_mdata) {
316 	case nss_lt_name:
317 		name = va_arg(ap, char *);
318 		break;
319 	case nss_lt_id:
320 		gid = va_arg(ap, gid_t);
321 		break;
322 	case nss_lt_all:
323 		break;
324 	default:
325 		/* should be unreachable */
326 		return (NS_UNAVAIL);
327 	}
328 
329 	grp = va_arg(ap, struct group *);
330 	orig_buf = va_arg(ap, char *);
331 	orig_buf_size = va_arg(ap, size_t);
332 	ret_errno = va_arg(ap, int *);
333 
334 	if (orig_buf_size + sizeof(struct group) + sizeof(char *) < buffer_size)
335 	{
336 		*ret_errno = ERANGE;
337 		return (NS_RETURN);
338 	} else if (buffer_size < sizeof(struct group) + sizeof(char *)) {
339 		/*
340 		 * nscd(8) sometimes returns buffer_size=1 for nonexistent
341 		 * entries.
342 		 */
343 		*ret_errno = 0;
344 		return (NS_NOTFOUND);
345 	}
346 
347 	memcpy(grp, buffer, sizeof(struct group));
348 	memcpy(&p, buffer + sizeof(struct group), sizeof(char *));
349 
350 	if (orig_buf_size + sizeof(struct group) + sizeof(char *) +
351 	    _ALIGN(p) - (size_t)p < buffer_size) {
352 		*ret_errno = ERANGE;
353 		return (NS_RETURN);
354 	}
355 
356 	orig_buf = (char *)_ALIGN(orig_buf);
357 	memcpy(orig_buf, buffer + sizeof(struct group) + sizeof(char *) +
358 	    _ALIGN(p) - (size_t)p,
359 	    buffer_size - sizeof(struct group) - sizeof(char *) -
360 	    _ALIGN(p) + (size_t)p);
361 	p = (char *)_ALIGN(p);
362 
363 	NS_APPLY_OFFSET(grp->gr_name, orig_buf, p, char *);
364 	NS_APPLY_OFFSET(grp->gr_passwd, orig_buf, p, char *);
365 	if (grp->gr_mem != NULL) {
366 		NS_APPLY_OFFSET(grp->gr_mem, orig_buf, p, char **);
367 
368 		for (mem = grp->gr_mem; *mem; ++mem)
369 			NS_APPLY_OFFSET(*mem, orig_buf, p, char *);
370 	}
371 
372 	if (retval != NULL)
373 		*((struct group **)retval) = grp;
374 
375 	return (NS_SUCCESS);
376 }
377 
378 NSS_MP_CACHE_HANDLING(group);
379 #endif /* NS_CACHING */
380 
381 #ifdef NS_CACHING
382 static const nss_cache_info setgrent_cache_info = NS_MP_CACHE_INFO_INITIALIZER(
383 	group, (void *)nss_lt_all,
384 	NULL, NULL);
385 #endif
386 
387 static const ns_dtab setgrent_dtab[] = {
388 	{ NSSRC_FILES, files_setgrent, (void *)SETGRENT },
389 #ifdef HESIOD
390 	{ NSSRC_DNS, dns_setgrent, (void *)SETGRENT },
391 #endif
392 #ifdef YP
393 	{ NSSRC_NIS, nis_setgrent, (void *)SETGRENT },
394 #endif
395 	{ NSSRC_COMPAT, compat_setgrent, (void *)SETGRENT },
396 #ifdef NS_CACHING
397 	NS_CACHE_CB(&setgrent_cache_info)
398 #endif
399 	{ NULL, NULL, NULL }
400 };
401 
402 #ifdef NS_CACHING
403 static const nss_cache_info endgrent_cache_info = NS_MP_CACHE_INFO_INITIALIZER(
404 	group, (void *)nss_lt_all,
405 	NULL, NULL);
406 #endif
407 
408 static const ns_dtab endgrent_dtab[] = {
409 	{ NSSRC_FILES, files_setgrent, (void *)ENDGRENT },
410 #ifdef HESIOD
411 	{ NSSRC_DNS, dns_setgrent, (void *)ENDGRENT },
412 #endif
413 #ifdef YP
414 	{ NSSRC_NIS, nis_setgrent, (void *)ENDGRENT },
415 #endif
416 	{ NSSRC_COMPAT, compat_setgrent, (void *)ENDGRENT },
417 #ifdef NS_CACHING
418 	NS_CACHE_CB(&endgrent_cache_info)
419 #endif
420 	{ NULL, NULL, NULL }
421 };
422 
423 #ifdef NS_CACHING
424 static const nss_cache_info getgrent_r_cache_info = NS_MP_CACHE_INFO_INITIALIZER(
425 	group, (void *)nss_lt_all,
426 	grp_marshal_func, grp_unmarshal_func);
427 #endif
428 
429 static const ns_dtab getgrent_r_dtab[] = {
430 	{ NSSRC_FILES, files_group, (void *)nss_lt_all },
431 #ifdef HESIOD
432 	{ NSSRC_DNS, dns_group, (void *)nss_lt_all },
433 #endif
434 #ifdef YP
435 	{ NSSRC_NIS, nis_group, (void *)nss_lt_all },
436 #endif
437 	{ NSSRC_COMPAT, compat_group, (void *)nss_lt_all },
438 #ifdef NS_CACHING
439 	NS_CACHE_CB(&getgrent_r_cache_info)
440 #endif
441 	{ NULL, NULL, NULL }
442 };
443 
444 static int
445 gr_addgid(gid_t gid, gid_t *groups, int maxgrp, int *grpcnt)
446 {
447 	int     ret, dupc;
448 
449 	for (dupc = 1; dupc < MIN(maxgrp, *grpcnt); dupc++) {
450 		if (groups[dupc] == gid)
451 			return 1;
452 	}
453 
454 	ret = 1;
455 	if (*grpcnt < maxgrp)
456 		groups[*grpcnt] = gid;
457 	else
458 		ret = 0;
459 
460 	(*grpcnt)++;
461 
462 	return ret;
463 }
464 
465 static int
466 getgroupmembership_fallback(void *retval, void *mdata, va_list ap)
467 {
468 	const ns_src src[] = {
469 		{ mdata, NS_SUCCESS },
470 		{ NULL, 0}
471 	};
472 	struct group	grp;
473 	struct group	*grp_p;
474 	char		*buf;
475 	size_t		bufsize;
476 	const char	*uname;
477 	gid_t		*groups;
478 	gid_t		agroup;
479 	int 		maxgrp, *grpcnt;
480 	int		i, rv, ret_errno;
481 
482 	/*
483 	 * As this is a fallback method, only provided src
484 	 * list will be respected during methods search.
485 	 */
486 	assert(src[0].name != NULL);
487 
488 	uname = va_arg(ap, const char *);
489 	agroup = va_arg(ap, gid_t);
490 	groups = va_arg(ap, gid_t *);
491 	maxgrp = va_arg(ap, int);
492 	grpcnt = va_arg(ap, int *);
493 
494 	rv = NS_UNAVAIL;
495 
496 	buf = malloc(GRP_STORAGE_INITIAL);
497 	if (buf == NULL)
498 		goto out;
499 
500 	bufsize = GRP_STORAGE_INITIAL;
501 
502 	gr_addgid(agroup, groups, maxgrp, grpcnt);
503 
504 	_nsdispatch(NULL, setgrent_dtab, NSDB_GROUP, "setgrent", src, 0);
505 	for (;;) {
506 		do {
507 			ret_errno = 0;
508 			grp_p = NULL;
509 			rv = _nsdispatch(&grp_p, getgrent_r_dtab, NSDB_GROUP,
510 			    "getgrent_r", src, &grp, buf, bufsize, &ret_errno);
511 
512 			if (grp_p == NULL && ret_errno == ERANGE) {
513 				free(buf);
514 				if ((bufsize << 1) > GRP_STORAGE_MAX) {
515 					buf = NULL;
516 					errno = ERANGE;
517 					goto out;
518 				}
519 
520 				bufsize <<= 1;
521 				buf = malloc(bufsize);
522 				if (buf == NULL) {
523 					goto out;
524 				}
525 			}
526 		} while (grp_p == NULL && ret_errno == ERANGE);
527 
528 		if (ret_errno != 0) {
529 			errno = ret_errno;
530 			goto out;
531 		}
532 
533 		if (grp_p == NULL)
534 			break;
535 
536 		for (i = 0; grp.gr_mem[i]; i++) {
537 			if (strcmp(grp.gr_mem[i], uname) == 0)
538 			    gr_addgid(grp.gr_gid, groups, maxgrp, grpcnt);
539 		}
540 	}
541 
542 	_nsdispatch(NULL, endgrent_dtab, NSDB_GROUP, "endgrent", src);
543 out:
544 	free(buf);
545 	return (rv);
546 }
547 
548 void
549 setgrent(void)
550 {
551 	(void)_nsdispatch(NULL, setgrent_dtab, NSDB_GROUP, "setgrent", defaultsrc, 0);
552 }
553 
554 
555 int
556 setgroupent(int stayopen)
557 {
558 	(void)_nsdispatch(NULL, setgrent_dtab, NSDB_GROUP, "setgrent", defaultsrc,
559 	    stayopen);
560 	return (1);
561 }
562 
563 
564 void
565 endgrent(void)
566 {
567 	(void)_nsdispatch(NULL, endgrent_dtab, NSDB_GROUP, "endgrent", defaultsrc);
568 }
569 
570 
571 int
572 getgrent_r(struct group *grp, char *buffer, size_t bufsize,
573     struct group **result)
574 {
575 	int	rv, ret_errno;
576 
577 	ret_errno = 0;
578 	*result = NULL;
579 	rv = _nsdispatch(result, getgrent_r_dtab, NSDB_GROUP, "getgrent_r", defaultsrc,
580 	    grp, buffer, bufsize, &ret_errno);
581 	if (rv == NS_SUCCESS)
582 		return (0);
583 	else
584 		return (ret_errno);
585 }
586 
587 
588 int
589 getgrnam_r(const char *name, struct group *grp, char *buffer, size_t bufsize,
590     struct group **result)
591 {
592 #ifdef NS_CACHING
593 	static const nss_cache_info cache_info =
594     		NS_COMMON_CACHE_INFO_INITIALIZER(
595 		group, (void *)nss_lt_name,
596 		grp_id_func, grp_marshal_func, grp_unmarshal_func);
597 #endif
598 
599 	static const ns_dtab dtab[] = {
600 		{ NSSRC_FILES, files_group, (void *)nss_lt_name },
601 #ifdef HESIOD
602 		{ NSSRC_DNS, dns_group, (void *)nss_lt_name },
603 #endif
604 #ifdef YP
605 		{ NSSRC_NIS, nis_group, (void *)nss_lt_name },
606 #endif
607 		{ NSSRC_COMPAT, compat_group, (void *)nss_lt_name },
608 #ifdef NS_CACHING
609 		NS_CACHE_CB(&cache_info)
610 #endif
611 		{ NULL, NULL, NULL }
612 	};
613 	int	rv, ret_errno;
614 
615 	ret_errno = 0;
616 	*result = NULL;
617 	rv = _nsdispatch(result, dtab, NSDB_GROUP, "getgrnam_r", defaultsrc,
618 	    name, grp, buffer, bufsize, &ret_errno);
619 	if (rv == NS_SUCCESS)
620 		return (0);
621 	else
622 		return (ret_errno);
623 }
624 
625 
626 int
627 getgrgid_r(gid_t gid, struct group *grp, char *buffer, size_t bufsize,
628     struct group **result)
629 {
630 #ifdef NS_CACHING
631 	static const nss_cache_info cache_info =
632     		NS_COMMON_CACHE_INFO_INITIALIZER(
633 		group, (void *)nss_lt_id,
634 		grp_id_func, grp_marshal_func, grp_unmarshal_func);
635 #endif
636 
637 	static const ns_dtab dtab[] = {
638 		{ NSSRC_FILES, files_group, (void *)nss_lt_id },
639 #ifdef HESIOD
640 		{ NSSRC_DNS, dns_group, (void *)nss_lt_id },
641 #endif
642 #ifdef YP
643 		{ NSSRC_NIS, nis_group, (void *)nss_lt_id },
644 #endif
645 		{ NSSRC_COMPAT, compat_group, (void *)nss_lt_id },
646 #ifdef NS_CACHING
647 		NS_CACHE_CB(&cache_info)
648 #endif
649 		{ NULL, NULL, NULL }
650 	};
651 	int	rv, ret_errno;
652 
653 	ret_errno = 0;
654 	*result = NULL;
655 	rv = _nsdispatch(result, dtab, NSDB_GROUP, "getgrgid_r", defaultsrc,
656 	    gid, grp, buffer, bufsize, &ret_errno);
657 	if (rv == NS_SUCCESS)
658 		return (0);
659 	else
660 		return (ret_errno);
661 }
662 
663 
664 
665 int
666 __getgroupmembership(const char *uname, gid_t agroup, gid_t *groups,
667 	int maxgrp, int *grpcnt)
668 {
669 	static const ns_dtab dtab[] = {
670 		NS_FALLBACK_CB(getgroupmembership_fallback)
671 		{ NULL, NULL, NULL }
672 	};
673 
674 	assert(uname != NULL);
675 	/* groups may be NULL if just sizing when invoked with maxgrp = 0 */
676 	assert(grpcnt != NULL);
677 
678 	*grpcnt = 0;
679 	(void)_nsdispatch(NULL, dtab, NSDB_GROUP, "getgroupmembership",
680 	    defaultsrc, uname, agroup, groups, maxgrp, grpcnt);
681 
682 	/* too many groups found? */
683 	return (*grpcnt > maxgrp ? -1 : 0);
684 }
685 
686 
687 static struct group	 grp;
688 static char		*grp_storage;
689 static size_t		 grp_storage_size;
690 
691 static struct group *
692 getgr(int (*fn)(union key, struct group *, char *, size_t, struct group **),
693     union key key)
694 {
695 	int		 rv;
696 	struct group	*res;
697 
698 	if (grp_storage == NULL) {
699 		grp_storage = malloc(GRP_STORAGE_INITIAL);
700 		if (grp_storage == NULL)
701 			return (NULL);
702 		grp_storage_size = GRP_STORAGE_INITIAL;
703 	}
704 	do {
705 		rv = fn(key, &grp, grp_storage, grp_storage_size, &res);
706 		if (res == NULL && rv == ERANGE) {
707 			free(grp_storage);
708 			if ((grp_storage_size << 1) > GRP_STORAGE_MAX) {
709 				grp_storage = NULL;
710 				errno = ERANGE;
711 				return (NULL);
712 			}
713 			grp_storage_size <<= 1;
714 			grp_storage = malloc(grp_storage_size);
715 			if (grp_storage == NULL)
716 				return (NULL);
717 		}
718 	} while (res == NULL && rv == ERANGE);
719 	if (rv != 0)
720 		errno = rv;
721 	return (res);
722 }
723 
724 
725 static int
726 wrap_getgrnam_r(union key key, struct group *grp, char *buffer, size_t bufsize,
727     struct group **res)
728 {
729 	return (getgrnam_r(key.name, grp, buffer, bufsize, res));
730 }
731 
732 
733 static int
734 wrap_getgrgid_r(union key key, struct group *grp, char *buffer, size_t bufsize,
735     struct group **res)
736 {
737 	return (getgrgid_r(key.gid, grp, buffer, bufsize, res));
738 }
739 
740 
741 static int
742 wrap_getgrent_r(union key key __unused, struct group *grp, char *buffer,
743     size_t bufsize, struct group **res)
744 {
745 	return (getgrent_r(grp, buffer, bufsize, res));
746 }
747 
748 
749 struct group *
750 getgrnam(const char *name)
751 {
752 	union key key;
753 
754 	key.name = name;
755 	return (getgr(wrap_getgrnam_r, key));
756 }
757 
758 
759 struct group *
760 getgrgid(gid_t gid)
761 {
762 	union key key;
763 
764 	key.gid = gid;
765 	return (getgr(wrap_getgrgid_r, key));
766 }
767 
768 
769 struct group *
770 getgrent(void)
771 {
772 	union key key;
773 
774 	key.gid = 0; /* not used */
775 	return (getgr(wrap_getgrent_r, key));
776 }
777 
778 
779 static int
780 is_comment_line(const char *s, size_t n)
781 {
782 	const char	*eom;
783 
784 	eom = &s[n];
785 
786 	for (; s < eom; s++)
787 		if (*s == '#' || !isspace((unsigned char)*s))
788 			break;
789 	return (*s == '#' || s == eom);
790 }
791 
792 
793 /*
794  * files backend
795  */
796 static void
797 files_endstate(void *p)
798 {
799 
800 	if (p == NULL)
801 		return;
802 	if (((struct files_state *)p)->fp != NULL)
803 		fclose(((struct files_state *)p)->fp);
804 	free(p);
805 }
806 
807 
808 static int
809 files_setgrent(void *retval, void *mdata, va_list ap)
810 {
811 	struct files_state *st;
812 	int		 rv, stayopen;
813 
814 	rv = files_getstate(&st);
815 	if (rv != 0)
816 		return (NS_UNAVAIL);
817 	switch ((enum constants)(uintptr_t)mdata) {
818 	case SETGRENT:
819 		stayopen = va_arg(ap, int);
820 		if (st->fp != NULL)
821 			rewind(st->fp);
822 		else if (stayopen)
823 			st->fp = fopen(_PATH_GROUP, "re");
824 		st->stayopen = stayopen;
825 		break;
826 	case ENDGRENT:
827 		if (st->fp != NULL) {
828 			fclose(st->fp);
829 			st->fp = NULL;
830 		}
831 		break;
832 	default:
833 		break;
834 	}
835 	return (NS_UNAVAIL);
836 }
837 
838 
839 static int
840 files_group(void *retval, void *mdata, va_list ap)
841 {
842 	struct files_state	*st;
843 	enum nss_lookup_type	 how;
844 	const char		*name, *line;
845 	struct group		*grp;
846 	gid_t			 gid;
847 	char			*buffer;
848 	size_t			 bufsize, linesize;
849 	off_t			 pos;
850 	int			 fresh, rv, stayopen, *errnop;
851 
852 	fresh = 0;
853 	name = NULL;
854 	gid = (gid_t)-1;
855 	how = (enum nss_lookup_type)(uintptr_t)mdata;
856 	switch (how) {
857 	case nss_lt_name:
858 		name = va_arg(ap, const char *);
859 		break;
860 	case nss_lt_id:
861 		gid = va_arg(ap, gid_t);
862 		break;
863 	case nss_lt_all:
864 		break;
865 	default:
866 		return (NS_NOTFOUND);
867 	}
868 	grp = va_arg(ap, struct group *);
869 	buffer = va_arg(ap, char *);
870 	bufsize = va_arg(ap, size_t);
871 	errnop = va_arg(ap, int *);
872 	*errnop = files_getstate(&st);
873 	if (*errnop != 0)
874 		return (NS_UNAVAIL);
875 	if (st->fp == NULL) {
876 		st->fp = fopen(_PATH_GROUP, "re");
877 		if (st->fp == NULL) {
878 			*errnop = errno;
879 			return (NS_UNAVAIL);
880 		}
881 		fresh = 1;
882 	}
883 	stayopen = (how == nss_lt_all || !fresh) ? 1 : st->stayopen;
884 	if (stayopen)
885 		pos = ftello(st->fp);
886 	if (how != nss_lt_all && !fresh)
887 		rewind(st->fp);
888 	rv = NS_NOTFOUND;
889 	while ((line = fgetln(st->fp, &linesize)) != NULL) {
890 		if (line[linesize-1] == '\n')
891 			linesize--;
892 		rv = __gr_match_entry(line, linesize, how, name, gid);
893 		if (rv != NS_SUCCESS)
894 			continue;
895 		/* We need room at least for the line, a string NUL
896 		 * terminator, alignment padding, and one (char *)
897 		 * pointer for the member list terminator.
898 		 */
899 		if (bufsize <= linesize + _ALIGNBYTES + sizeof(char *)) {
900 			*errnop = ERANGE;
901 			rv = NS_RETURN;
902 			break;
903 		}
904 		memcpy(buffer, line, linesize);
905 		buffer[linesize] = '\0';
906 		rv = __gr_parse_entry(buffer, linesize, grp,
907 		    &buffer[linesize + 1], bufsize - linesize - 1, errnop);
908 		if (rv & NS_TERMINATE)
909 			break;
910 		if (how == nss_lt_all)
911 			pos = ftello(st->fp);
912 	}
913 	if (st->fp != NULL && !stayopen) {
914 		fclose(st->fp);
915 		st->fp = NULL;
916 	}
917 	if (st->fp != NULL && how != nss_lt_all)
918 		fseeko(st->fp, pos, SEEK_SET);
919 	if (rv == NS_SUCCESS && retval != NULL)
920 		*(struct group **)retval = grp;
921 	else if (rv == NS_RETURN && *errnop == ERANGE && st->fp != NULL)
922 		fseeko(st->fp, pos, SEEK_SET);
923 	return (rv);
924 }
925 
926 
927 #ifdef HESIOD
928 /*
929  * dns backend
930  */
931 static void
932 dns_endstate(void *p)
933 {
934 
935 	free(p);
936 }
937 
938 
939 static int
940 dns_setgrent(void *retval, void *cb_data, va_list ap)
941 {
942 	struct dns_state	*st;
943 	int			 rv;
944 
945 	rv = dns_getstate(&st);
946 	if (rv != 0)
947 		return (NS_UNAVAIL);
948 	st->counter = 0;
949 	return (NS_UNAVAIL);
950 }
951 
952 
953 static int
954 dns_group(void *retval, void *mdata, va_list ap)
955 {
956 	char			 buf[HESIOD_NAME_MAX];
957 	struct dns_state	*st;
958 	struct group		*grp;
959 	const char		*name, *label;
960 	void			*ctx;
961 	char			*buffer, **hes;
962 	size_t			 bufsize, adjsize, linesize;
963 	gid_t			 gid;
964 	enum nss_lookup_type	 how;
965 	int			 rv, *errnop;
966 
967 	ctx = NULL;
968 	hes = NULL;
969 	name = NULL;
970 	gid = (gid_t)-1;
971 	how = (enum nss_lookup_type)(uintptr_t)mdata;
972 	switch (how) {
973 	case nss_lt_name:
974 		name = va_arg(ap, const char *);
975 		break;
976 	case nss_lt_id:
977 		gid = va_arg(ap, gid_t);
978 		break;
979 	case nss_lt_all:
980 		break;
981 	}
982 	grp     = va_arg(ap, struct group *);
983 	buffer  = va_arg(ap, char *);
984 	bufsize = va_arg(ap, size_t);
985 	errnop  = va_arg(ap, int *);
986 	*errnop = dns_getstate(&st);
987 	if (*errnop != 0)
988 		return (NS_UNAVAIL);
989 	if (hesiod_init(&ctx) != 0) {
990 		*errnop = errno;
991 		rv = NS_UNAVAIL;
992 		goto fin;
993 	}
994 	do {
995 		rv = NS_NOTFOUND;
996 		switch (how) {
997 		case nss_lt_name:
998 			label = name;
999 			break;
1000 		case nss_lt_id:
1001 			if (snprintf(buf, sizeof(buf), "%lu",
1002 			    (unsigned long)gid) >= sizeof(buf))
1003 				goto fin;
1004 			label = buf;
1005 			break;
1006 		case nss_lt_all:
1007 			if (st->counter < 0)
1008 				goto fin;
1009 			if (snprintf(buf, sizeof(buf), "group-%ld",
1010 			    st->counter++) >= sizeof(buf))
1011 				goto fin;
1012 			label = buf;
1013 			break;
1014 		}
1015 		hes = hesiod_resolve(ctx, label,
1016 		    how == nss_lt_id ? "gid" : "group");
1017 		if ((how == nss_lt_id && hes == NULL &&
1018 		    (hes = hesiod_resolve(ctx, buf, "group")) == NULL) ||
1019 		    hes == NULL) {
1020 			if (how == nss_lt_all)
1021 				st->counter = -1;
1022 			if (errno != ENOENT)
1023 				*errnop = errno;
1024 			goto fin;
1025 		}
1026 		rv = __gr_match_entry(hes[0], strlen(hes[0]), how, name, gid);
1027 		if (rv != NS_SUCCESS) {
1028 			hesiod_free_list(ctx, hes);
1029 			hes = NULL;
1030 			continue;
1031 		}
1032 		/* We need room at least for the line, a string NUL
1033 		 * terminator, alignment padding, and one (char *)
1034 		 * pointer for the member list terminator.
1035 		 */
1036 		adjsize = bufsize - _ALIGNBYTES - sizeof(char *);
1037 		linesize = strlcpy(buffer, hes[0], adjsize);
1038 		if (linesize >= adjsize) {
1039 			*errnop = ERANGE;
1040 			rv = NS_RETURN;
1041 			goto fin;
1042 		}
1043 		hesiod_free_list(ctx, hes);
1044 		hes = NULL;
1045 		rv = __gr_parse_entry(buffer, linesize, grp,
1046 		    &buffer[linesize + 1], bufsize - linesize - 1, errnop);
1047 	} while (how == nss_lt_all && !(rv & NS_TERMINATE));
1048 fin:
1049 	if (hes != NULL)
1050 		hesiod_free_list(ctx, hes);
1051 	if (ctx != NULL)
1052 		hesiod_end(ctx);
1053 	if (rv == NS_SUCCESS && retval != NULL)
1054 		*(struct group **)retval = grp;
1055 	return (rv);
1056 }
1057 #endif /* HESIOD */
1058 
1059 
1060 #ifdef YP
1061 /*
1062  * nis backend
1063  */
1064 static void
1065 nis_endstate(void *p)
1066 {
1067 
1068 	if (p == NULL)
1069 		return;
1070 	free(((struct nis_state *)p)->key);
1071 	free(p);
1072 }
1073 
1074 
1075 static int
1076 nis_setgrent(void *retval, void *cb_data, va_list ap)
1077 {
1078 	struct nis_state	*st;
1079 	int			 rv;
1080 
1081 	rv = nis_getstate(&st);
1082 	if (rv != 0)
1083 		return (NS_UNAVAIL);
1084 	st->done = 0;
1085 	free(st->key);
1086 	st->key = NULL;
1087 	return (NS_UNAVAIL);
1088 }
1089 
1090 
1091 static int
1092 nis_group(void *retval, void *mdata, va_list ap)
1093 {
1094 	char		 *map;
1095 	struct nis_state *st;
1096 	struct group	*grp;
1097 	const char	*name;
1098 	char		*buffer, *key, *result;
1099 	size_t		 bufsize;
1100 	gid_t		 gid;
1101 	enum nss_lookup_type how;
1102 	int		*errnop, keylen, resultlen, rv;
1103 
1104 	name = NULL;
1105 	gid = (gid_t)-1;
1106 	how = (enum nss_lookup_type)(uintptr_t)mdata;
1107 	switch (how) {
1108 	case nss_lt_name:
1109 		name = va_arg(ap, const char *);
1110 		map = "group.byname";
1111 		break;
1112 	case nss_lt_id:
1113 		gid = va_arg(ap, gid_t);
1114 		map = "group.bygid";
1115 		break;
1116 	case nss_lt_all:
1117 		map = "group.byname";
1118 		break;
1119 	}
1120 	grp     = va_arg(ap, struct group *);
1121 	buffer  = va_arg(ap, char *);
1122 	bufsize = va_arg(ap, size_t);
1123 	errnop  = va_arg(ap, int *);
1124 	*errnop = nis_getstate(&st);
1125 	if (*errnop != 0)
1126 		return (NS_UNAVAIL);
1127 	if (st->domain[0] == '\0') {
1128 		if (getdomainname(st->domain, sizeof(st->domain)) != 0) {
1129 			*errnop = errno;
1130 			return (NS_UNAVAIL);
1131 		}
1132 	}
1133 	result = NULL;
1134 	do {
1135 		rv = NS_NOTFOUND;
1136 		switch (how) {
1137 		case nss_lt_name:
1138 			if (strlcpy(buffer, name, bufsize) >= bufsize)
1139 				goto erange;
1140 			break;
1141 		case nss_lt_id:
1142 			if (snprintf(buffer, bufsize, "%lu",
1143 			    (unsigned long)gid) >= bufsize)
1144 				goto erange;
1145 			break;
1146 		case nss_lt_all:
1147 			if (st->done)
1148 				goto fin;
1149 			break;
1150 		}
1151 		result = NULL;
1152 		if (how == nss_lt_all) {
1153 			if (st->key == NULL)
1154 				rv = yp_first(st->domain, map, &st->key,
1155 				    &st->keylen, &result, &resultlen);
1156 			else {
1157 				key = st->key;
1158 				keylen = st->keylen;
1159 				st->key = NULL;
1160 				rv = yp_next(st->domain, map, key, keylen,
1161 				    &st->key, &st->keylen, &result,
1162 				    &resultlen);
1163 				free(key);
1164 			}
1165 			if (rv != 0) {
1166 				free(result);
1167 				free(st->key);
1168 				st->key = NULL;
1169 				if (rv == YPERR_NOMORE) {
1170 					st->done = 1;
1171 					rv = NS_NOTFOUND;
1172 				} else
1173 					rv = NS_UNAVAIL;
1174 				goto fin;
1175 			}
1176 		} else {
1177 			rv = yp_match(st->domain, map, buffer, strlen(buffer),
1178 			    &result, &resultlen);
1179 			if (rv == YPERR_KEY) {
1180 				rv = NS_NOTFOUND;
1181 				continue;
1182 			} else if (rv != 0) {
1183 				free(result);
1184 				rv = NS_UNAVAIL;
1185 				continue;
1186 			}
1187 		}
1188 		/* We need room at least for the line, a string NUL
1189 		 * terminator, alignment padding, and one (char *)
1190 		 * pointer for the member list terminator.
1191 		 */
1192 		if (resultlen >= bufsize - _ALIGNBYTES - sizeof(char *)) {
1193 			free(result);
1194 			goto erange;
1195 		}
1196 		memcpy(buffer, result, resultlen);
1197 		buffer[resultlen] = '\0';
1198 		free(result);
1199 		rv = __gr_match_entry(buffer, resultlen, how, name, gid);
1200 		if (rv == NS_SUCCESS)
1201 			rv = __gr_parse_entry(buffer, resultlen, grp,
1202 			    &buffer[resultlen+1], bufsize - resultlen - 1,
1203 			    errnop);
1204 	} while (how == nss_lt_all && !(rv & NS_TERMINATE));
1205 fin:
1206 	if (rv == NS_SUCCESS && retval != NULL)
1207 		*(struct group **)retval = grp;
1208 	return (rv);
1209 erange:
1210 	*errnop = ERANGE;
1211 	return (NS_RETURN);
1212 }
1213 #endif /* YP */
1214 
1215 
1216 
1217 /*
1218  * compat backend
1219  */
1220 static void
1221 compat_endstate(void *p)
1222 {
1223 	struct compat_state *st;
1224 
1225 	if (p == NULL)
1226 		return;
1227 	st = (struct compat_state *)p;
1228 	free(st->name);
1229 	if (st->fp != NULL)
1230 		fclose(st->fp);
1231 	free(p);
1232 }
1233 
1234 
1235 static int
1236 compat_setgrent(void *retval, void *mdata, va_list ap)
1237 {
1238 	static const ns_src compatsrc[] = {
1239 #ifdef YP
1240 		{ NSSRC_NIS, NS_SUCCESS },
1241 #endif
1242 		{ NULL, 0 }
1243 	};
1244 	ns_dtab dtab[] = {
1245 #ifdef HESIOD
1246 		{ NSSRC_DNS, dns_setgrent, NULL },
1247 #endif
1248 #ifdef YP
1249 		{ NSSRC_NIS, nis_setgrent, NULL },
1250 #endif
1251 		{ NULL, NULL, NULL }
1252 	};
1253 	struct compat_state *st;
1254 	int		 rv, stayopen;
1255 
1256 #define set_setent(x, y) do {	 				\
1257 	int i;							\
1258 	for (i = 0; i < (int)(nitems(x) - 1); i++)		\
1259 		x[i].mdata = (void *)y;				\
1260 } while (0)
1261 
1262 	rv = compat_getstate(&st);
1263 	if (rv != 0)
1264 		return (NS_UNAVAIL);
1265 	switch ((enum constants)(uintptr_t)mdata) {
1266 	case SETGRENT:
1267 		stayopen = va_arg(ap, int);
1268 		if (st->fp != NULL)
1269 			rewind(st->fp);
1270 		else if (stayopen)
1271 			st->fp = fopen(_PATH_GROUP, "re");
1272 		st->stayopen = stayopen;
1273 		set_setent(dtab, mdata);
1274 		(void)_nsdispatch(NULL, dtab, NSDB_GROUP_COMPAT, "setgrent",
1275 		    compatsrc, 0);
1276 		break;
1277 	case ENDGRENT:
1278 		if (st->fp != NULL) {
1279 			fclose(st->fp);
1280 			st->fp = NULL;
1281 		}
1282 		set_setent(dtab, mdata);
1283 		(void)_nsdispatch(NULL, dtab, NSDB_GROUP_COMPAT, "endgrent",
1284 		    compatsrc, 0);
1285 		break;
1286 	default:
1287 		break;
1288 	}
1289 	st->compat = COMPAT_MODE_OFF;
1290 	free(st->name);
1291 	st->name = NULL;
1292 	return (NS_UNAVAIL);
1293 #undef set_setent
1294 }
1295 
1296 
1297 static int
1298 compat_group(void *retval, void *mdata, va_list ap)
1299 {
1300 	static const ns_src compatsrc[] = {
1301 #ifdef YP
1302 		{ NSSRC_NIS, NS_SUCCESS },
1303 #endif
1304 		{ NULL, 0 }
1305 	};
1306 	ns_dtab dtab[] = {
1307 #ifdef YP
1308 		{ NSSRC_NIS, nis_group, NULL },
1309 #endif
1310 #ifdef HESIOD
1311 		{ NSSRC_DNS, dns_group, NULL },
1312 #endif
1313 		{ NULL, NULL, NULL }
1314 	};
1315 	struct compat_state	*st;
1316 	enum nss_lookup_type	 how;
1317 	const char		*name, *line;
1318 	struct group		*grp;
1319 	gid_t			 gid;
1320 	char			*buffer, *p;
1321 	void			*discard;
1322 	size_t			 bufsize, linesize;
1323 	off_t			 pos;
1324 	int			 fresh, rv, stayopen, *errnop;
1325 
1326 #define set_lookup_type(x, y) do { 				\
1327 	int i;							\
1328 	for (i = 0; i < (int)(nitems(x) - 1); i++)		\
1329 		x[i].mdata = (void *)y;				\
1330 } while (0)
1331 
1332 	fresh = 0;
1333 	name = NULL;
1334 	gid = (gid_t)-1;
1335 	how = (enum nss_lookup_type)(uintptr_t)mdata;
1336 	switch (how) {
1337 	case nss_lt_name:
1338 		name = va_arg(ap, const char *);
1339 		break;
1340 	case nss_lt_id:
1341 		gid = va_arg(ap, gid_t);
1342 		break;
1343 	case nss_lt_all:
1344 		break;
1345 	default:
1346 		return (NS_NOTFOUND);
1347 	}
1348 	grp = va_arg(ap, struct group *);
1349 	buffer = va_arg(ap, char *);
1350 	bufsize = va_arg(ap, size_t);
1351 	errnop = va_arg(ap, int *);
1352 	*errnop = compat_getstate(&st);
1353 	if (*errnop != 0)
1354 		return (NS_UNAVAIL);
1355 	if (st->fp == NULL) {
1356 		st->fp = fopen(_PATH_GROUP, "re");
1357 		if (st->fp == NULL) {
1358 			*errnop = errno;
1359 			rv = NS_UNAVAIL;
1360 			goto fin;
1361 		}
1362 		fresh = 1;
1363 	}
1364 	stayopen = (how == nss_lt_all || !fresh) ? 1 : st->stayopen;
1365 	if (stayopen)
1366 		pos = ftello(st->fp);
1367 	if (how != nss_lt_all && !fresh)
1368 		rewind(st->fp);
1369 docompat:
1370 	switch (st->compat) {
1371 	case COMPAT_MODE_ALL:
1372 		set_lookup_type(dtab, how);
1373 		switch (how) {
1374 		case nss_lt_all:
1375 			rv = _nsdispatch(&discard, dtab, NSDB_GROUP_COMPAT,
1376 			    "getgrent_r", compatsrc, grp, buffer, bufsize,
1377 			    errnop);
1378 			break;
1379 		case nss_lt_id:
1380 			rv = _nsdispatch(&discard, dtab, NSDB_GROUP_COMPAT,
1381 			    "getgrgid_r", compatsrc, gid, grp, buffer, bufsize,
1382 			    errnop);
1383 			break;
1384 		case nss_lt_name:
1385 			rv = _nsdispatch(&discard, dtab, NSDB_GROUP_COMPAT,
1386 			    "getgrnam_r", compatsrc, name, grp, buffer,
1387 			    bufsize, errnop);
1388 			break;
1389 		}
1390 		if (rv & NS_TERMINATE)
1391 			goto fin;
1392 		st->compat = COMPAT_MODE_OFF;
1393 		break;
1394 	case COMPAT_MODE_NAME:
1395 		set_lookup_type(dtab, nss_lt_name);
1396 		rv = _nsdispatch(&discard, dtab, NSDB_GROUP_COMPAT,
1397 		    "getgrnam_r", compatsrc, st->name, grp, buffer, bufsize,
1398 		    errnop);
1399 		switch (rv) {
1400 		case NS_SUCCESS:
1401 			switch (how) {
1402 			case nss_lt_name:
1403 				if (strcmp(name, grp->gr_name) != 0)
1404 					rv = NS_NOTFOUND;
1405 				break;
1406 			case nss_lt_id:
1407 				if (gid != grp->gr_gid)
1408 					rv = NS_NOTFOUND;
1409 				break;
1410 			default:
1411 				break;
1412 			}
1413 			break;
1414 		case NS_RETURN:
1415 			goto fin;
1416 		default:
1417 			break;
1418 		}
1419 		free(st->name);
1420 		st->name = NULL;
1421 		st->compat = COMPAT_MODE_OFF;
1422 		if (rv == NS_SUCCESS)
1423 			goto fin;
1424 		break;
1425 	default:
1426 		break;
1427 	}
1428 	rv = NS_NOTFOUND;
1429 	while ((line = fgetln(st->fp, &linesize)) != NULL) {
1430 		if (line[linesize-1] == '\n')
1431 			linesize--;
1432 		if (linesize > 2 && line[0] == '+') {
1433 			p = memchr(&line[1], ':', linesize);
1434 			if (p == NULL || p == &line[1])
1435 				st->compat = COMPAT_MODE_ALL;
1436 			else {
1437 				st->name = malloc(p - line);
1438 				if (st->name == NULL) {
1439 					syslog(LOG_ERR,
1440 					 "getgrent memory allocation failure");
1441 					*errnop = ENOMEM;
1442 					rv = NS_UNAVAIL;
1443 					break;
1444 				}
1445 				memcpy(st->name, &line[1], p - line - 1);
1446 				st->name[p - line - 1] = '\0';
1447 				st->compat = COMPAT_MODE_NAME;
1448 			}
1449 			goto docompat;
1450 		}
1451 		rv = __gr_match_entry(line, linesize, how, name, gid);
1452 		if (rv != NS_SUCCESS)
1453 			continue;
1454 		/* We need room at least for the line, a string NUL
1455 		 * terminator, alignment padding, and one (char *)
1456 		 * pointer for the member list terminator.
1457 		 */
1458 		if (bufsize <= linesize + _ALIGNBYTES + sizeof(char *)) {
1459 			*errnop = ERANGE;
1460 			rv = NS_RETURN;
1461 			break;
1462 		}
1463 		memcpy(buffer, line, linesize);
1464 		buffer[linesize] = '\0';
1465 		rv = __gr_parse_entry(buffer, linesize, grp,
1466 		    &buffer[linesize + 1], bufsize - linesize - 1, errnop);
1467 		if (rv & NS_TERMINATE)
1468 			break;
1469 		if (how == nss_lt_all)
1470 			pos = ftello(st->fp);
1471 	}
1472 fin:
1473 	if (st->fp != NULL && !stayopen) {
1474 		fclose(st->fp);
1475 		st->fp = NULL;
1476 	}
1477 	if (st->fp != NULL && how != nss_lt_all)
1478 		fseeko(st->fp, pos, SEEK_SET);
1479 	if (rv == NS_SUCCESS && retval != NULL)
1480 		*(struct group **)retval = grp;
1481 	else if (rv == NS_RETURN && *errnop == ERANGE && st->fp != NULL)
1482 		fseeko(st->fp, pos, SEEK_SET);
1483 	return (rv);
1484 #undef set_lookup_type
1485 }
1486 
1487 
1488 /*
1489  * common group line matching and parsing
1490  */
1491 int
1492 __gr_match_entry(const char *line, size_t linesize, enum nss_lookup_type how,
1493     const char *name, gid_t gid)
1494 {
1495 	size_t		 namesize;
1496 	const char	*p, *eol;
1497 	char		*q;
1498 	unsigned long	 n;
1499 	int		 i, needed;
1500 
1501 	if (linesize == 0 || is_comment_line(line, linesize))
1502 		return (NS_NOTFOUND);
1503 	switch (how) {
1504 	case nss_lt_name:	needed = 1; break;
1505 	case nss_lt_id:		needed = 2; break;
1506 	default:		needed = 2; break;
1507 	}
1508 	eol = &line[linesize];
1509 	for (p = line, i = 0; i < needed && p < eol; p++)
1510 		if (*p == ':')
1511 			i++;
1512 	if (i < needed)
1513 		return (NS_NOTFOUND);
1514 	switch (how) {
1515 	case nss_lt_name:
1516 		namesize = strlen(name);
1517 		if (namesize + 1 == (size_t)(p - line) &&
1518 		    memcmp(line, name, namesize) == 0)
1519 			return (NS_SUCCESS);
1520 		break;
1521 	case nss_lt_id:
1522 		n = strtoul(p, &q, 10);
1523 		if (q < eol && *q == ':' && gid == (gid_t)n)
1524 			return (NS_SUCCESS);
1525 		break;
1526 	case nss_lt_all:
1527 		return (NS_SUCCESS);
1528 	default:
1529 		break;
1530 	}
1531 	return (NS_NOTFOUND);
1532 }
1533 
1534 
1535 int
1536 __gr_parse_entry(char *line, size_t linesize, struct group *grp, char *membuf,
1537     size_t membufsize, int *errnop)
1538 {
1539 	char	       *s_gid, *s_mem, *p, **members;
1540 	unsigned long	n;
1541 	int		maxmembers;
1542 
1543 	memset(grp, 0, sizeof(*grp));
1544 	members = (char **)_ALIGN(membuf);
1545 	membufsize -= (char *)members - membuf;
1546 	maxmembers = membufsize / sizeof(*members);
1547 	if (maxmembers <= 0 ||
1548 	    (grp->gr_name = strsep(&line, ":")) == NULL ||
1549 	    grp->gr_name[0] == '\0' ||
1550 	    (grp->gr_passwd = strsep(&line, ":")) == NULL ||
1551 	    (s_gid = strsep(&line, ":")) == NULL ||
1552 	    s_gid[0] == '\0')
1553 		return (NS_NOTFOUND);
1554 	s_mem = line;
1555 	n = strtoul(s_gid, &s_gid, 10);
1556 	if (s_gid[0] != '\0')
1557 		return (NS_NOTFOUND);
1558 	grp->gr_gid = (gid_t)n;
1559 	grp->gr_mem = members;
1560 	while (maxmembers > 1 && s_mem != NULL) {
1561 		p = strsep(&s_mem, ",");
1562 		if (p != NULL && *p != '\0') {
1563 			*members++ = p;
1564 			maxmembers--;
1565 		}
1566 	}
1567 	*members = NULL;
1568 	if (s_mem == NULL)
1569 		return (NS_SUCCESS);
1570 	else {
1571 		*errnop = ERANGE;
1572 		return (NS_RETURN);
1573 	}
1574 }
1575 
1576 
1577