pwcache.c revision 1.33 1 1.33 msaitoh /* $NetBSD: pwcache.c,v 1.33 2021/12/05 05:03:05 msaitoh Exp $ */
2 1.4 cgd
3 1.10 mycroft /*-
4 1.25 agc * Copyright (c) 1992 Keith Muller.
5 1.10 mycroft * Copyright (c) 1992, 1993
6 1.4 cgd * The Regents of the University of California. All rights reserved.
7 1.1 cgd *
8 1.10 mycroft * This code is derived from software contributed to Berkeley by
9 1.10 mycroft * Keith Muller of the University of California, San Diego.
10 1.10 mycroft *
11 1.1 cgd * Redistribution and use in source and binary forms, with or without
12 1.1 cgd * modification, are permitted provided that the following conditions
13 1.1 cgd * are met:
14 1.1 cgd * 1. Redistributions of source code must retain the above copyright
15 1.1 cgd * notice, this list of conditions and the following disclaimer.
16 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 cgd * notice, this list of conditions and the following disclaimer in the
18 1.1 cgd * documentation and/or other materials provided with the distribution.
19 1.24 agc * 3. Neither the name of the University nor the names of its contributors
20 1.24 agc * may be used to endorse or promote products derived from this software
21 1.24 agc * without specific prior written permission.
22 1.24 agc *
23 1.24 agc * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 1.24 agc * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.24 agc * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.24 agc * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 1.24 agc * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 1.24 agc * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 1.24 agc * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.24 agc * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 1.24 agc * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 1.24 agc * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 1.24 agc * SUCH DAMAGE.
34 1.24 agc */
35 1.24 agc
36 1.24 agc /*-
37 1.17 lukem * Copyright (c) 2002 The NetBSD Foundation, Inc.
38 1.17 lukem * All rights reserved.
39 1.17 lukem *
40 1.17 lukem * Redistribution and use in source and binary forms, with or without
41 1.17 lukem * modification, are permitted provided that the following conditions
42 1.17 lukem * are met:
43 1.17 lukem * 1. Redistributions of source code must retain the above copyright
44 1.17 lukem * notice, this list of conditions and the following disclaimer.
45 1.17 lukem * 2. Redistributions in binary form must reproduce the above copyright
46 1.17 lukem * notice, this list of conditions and the following disclaimer in the
47 1.17 lukem * documentation and/or other materials provided with the distribution.
48 1.17 lukem *
49 1.17 lukem * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
50 1.17 lukem * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
51 1.17 lukem * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
52 1.17 lukem * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
53 1.17 lukem * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
54 1.17 lukem * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
55 1.17 lukem * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
56 1.17 lukem * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
57 1.17 lukem * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
58 1.17 lukem * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
59 1.17 lukem * POSSIBILITY OF SUCH DAMAGE.
60 1.17 lukem */
61 1.17 lukem
62 1.27 sjg #if HAVE_NBTOOL_CONFIG_H
63 1.27 sjg #include "nbtool_config.h"
64 1.28 thorpej /*
65 1.28 thorpej * XXX Undefine the renames of these functions so that we don't
66 1.28 thorpej * XXX rename the versions found in the host's <pwd.h> by mistake!
67 1.28 thorpej */
68 1.28 thorpej #undef group_from_gid
69 1.28 thorpej #undef user_from_uid
70 1.27 sjg #endif
71 1.27 sjg
72 1.7 christos #include <sys/cdefs.h>
73 1.15 msaitoh #if defined(LIBC_SCCS) && !defined(lint)
74 1.4 cgd #if 0
75 1.10 mycroft static char sccsid[] = "@(#)cache.c 8.1 (Berkeley) 5/31/93";
76 1.4 cgd #else
77 1.33 msaitoh __RCSID("$NetBSD: pwcache.c,v 1.33 2021/12/05 05:03:05 msaitoh Exp $");
78 1.4 cgd #endif
79 1.15 msaitoh #endif /* LIBC_SCCS and not lint */
80 1.1 cgd
81 1.8 jtc #include "namespace.h"
82 1.10 mycroft
83 1.1 cgd #include <sys/types.h>
84 1.6 sommerfe #include <sys/param.h>
85 1.4 cgd
86 1.13 lukem #include <assert.h>
87 1.4 cgd #include <grp.h>
88 1.1 cgd #include <pwd.h>
89 1.1 cgd #include <stdio.h>
90 1.10 mycroft #include <stdlib.h>
91 1.5 jtc #include <string.h>
92 1.10 mycroft #include <unistd.h>
93 1.10 mycroft
94 1.28 thorpej #if HAVE_NBTOOL_CONFIG_H
95 1.28 thorpej /* XXX Now, re-apply the renaming that we undid above. */
96 1.28 thorpej #define group_from_gid __nbcompat_group_from_gid
97 1.28 thorpej #define user_from_uid __nbcompat_user_from_uid
98 1.28 thorpej #endif
99 1.28 thorpej
100 1.8 jtc #ifdef __weak_alias
101 1.14 mycroft __weak_alias(user_from_uid,_user_from_uid)
102 1.14 mycroft __weak_alias(group_from_gid,_group_from_gid)
103 1.17 lukem __weak_alias(pwcache_groupdb,_pwcache_groupdb)
104 1.8 jtc #endif
105 1.19 lukem
106 1.29 jmc #if !HAVE_PWCACHE_USERDB || HAVE_NBTOOL_CONFIG_H
107 1.19 lukem #include "pwcache.h"
108 1.1 cgd
109 1.10 mycroft /*
110 1.10 mycroft * routines that control user, group, uid and gid caches (for the archive
111 1.10 mycroft * member print routine).
112 1.10 mycroft * IMPORTANT:
113 1.10 mycroft * these routines cache BOTH hits and misses, a major performance improvement
114 1.10 mycroft */
115 1.10 mycroft
116 1.17 lukem /*
117 1.17 lukem * function pointers to various name lookup routines.
118 1.17 lukem * these may be changed as necessary.
119 1.17 lukem */
120 1.17 lukem static int (*_pwcache_setgroupent)(int) = setgroupent;
121 1.17 lukem static void (*_pwcache_endgrent)(void) = endgrent;
122 1.17 lukem static struct group * (*_pwcache_getgrnam)(const char *) = getgrnam;
123 1.17 lukem static struct group * (*_pwcache_getgrgid)(gid_t) = getgrgid;
124 1.17 lukem static int (*_pwcache_setpassent)(int) = setpassent;
125 1.17 lukem static void (*_pwcache_endpwent)(void) = endpwent;
126 1.17 lukem static struct passwd * (*_pwcache_getpwnam)(const char *) = getpwnam;
127 1.17 lukem static struct passwd * (*_pwcache_getpwuid)(uid_t) = getpwuid;
128 1.17 lukem
129 1.17 lukem /*
130 1.17 lukem * internal state
131 1.17 lukem */
132 1.17 lukem static int pwopn; /* is password file open */
133 1.17 lukem static int gropn; /* is group file open */
134 1.17 lukem static UIDC **uidtb; /* uid to name cache */
135 1.17 lukem static GIDC **gidtb; /* gid to name cache */
136 1.17 lukem static UIDC **usrtb; /* user name to uid cache */
137 1.17 lukem static GIDC **grptb; /* group name to gid cache */
138 1.17 lukem
139 1.17 lukem static int uidtb_fail; /* uidtb_start() failed ? */
140 1.17 lukem static int gidtb_fail; /* gidtb_start() failed ? */
141 1.17 lukem static int usrtb_fail; /* usrtb_start() failed ? */
142 1.17 lukem static int grptb_fail; /* grptb_start() failed ? */
143 1.17 lukem
144 1.17 lukem
145 1.17 lukem static u_int st_hash(const char *, size_t, int);
146 1.17 lukem static int uidtb_start(void);
147 1.17 lukem static int gidtb_start(void);
148 1.17 lukem static int usrtb_start(void);
149 1.17 lukem static int grptb_start(void);
150 1.17 lukem
151 1.10 mycroft
152 1.10 mycroft static u_int
153 1.16 lukem st_hash(const char *name, size_t len, int tabsz)
154 1.10 mycroft {
155 1.10 mycroft u_int key = 0;
156 1.10 mycroft
157 1.13 lukem _DIAGASSERT(name != NULL);
158 1.13 lukem
159 1.10 mycroft while (len--) {
160 1.10 mycroft key += *name++;
161 1.10 mycroft key = (key << 8) | (key >> 24);
162 1.10 mycroft }
163 1.10 mycroft
164 1.10 mycroft return (key % tabsz);
165 1.10 mycroft }
166 1.10 mycroft
167 1.10 mycroft /*
168 1.10 mycroft * uidtb_start
169 1.32 msaitoh * creates an empty uidtb
170 1.10 mycroft * Return:
171 1.10 mycroft * 0 if ok, -1 otherwise
172 1.10 mycroft */
173 1.10 mycroft static int
174 1.10 mycroft uidtb_start(void)
175 1.10 mycroft {
176 1.10 mycroft
177 1.10 mycroft if (uidtb != NULL)
178 1.10 mycroft return (0);
179 1.17 lukem if (uidtb_fail)
180 1.10 mycroft return (-1);
181 1.10 mycroft if ((uidtb = (UIDC **)calloc(UID_SZ, sizeof(UIDC *))) == NULL) {
182 1.17 lukem ++uidtb_fail;
183 1.10 mycroft return (-1);
184 1.10 mycroft }
185 1.10 mycroft return (0);
186 1.10 mycroft }
187 1.10 mycroft
188 1.10 mycroft /*
189 1.10 mycroft * gidtb_start
190 1.32 msaitoh * creates an empty gidtb
191 1.10 mycroft * Return:
192 1.10 mycroft * 0 if ok, -1 otherwise
193 1.10 mycroft */
194 1.17 lukem static int
195 1.10 mycroft gidtb_start(void)
196 1.10 mycroft {
197 1.10 mycroft
198 1.10 mycroft if (gidtb != NULL)
199 1.10 mycroft return (0);
200 1.17 lukem if (gidtb_fail)
201 1.10 mycroft return (-1);
202 1.10 mycroft if ((gidtb = (GIDC **)calloc(GID_SZ, sizeof(GIDC *))) == NULL) {
203 1.17 lukem ++gidtb_fail;
204 1.10 mycroft return (-1);
205 1.10 mycroft }
206 1.10 mycroft return (0);
207 1.10 mycroft }
208 1.10 mycroft
209 1.10 mycroft /*
210 1.10 mycroft * usrtb_start
211 1.32 msaitoh * creates an empty usrtb
212 1.10 mycroft * Return:
213 1.10 mycroft * 0 if ok, -1 otherwise
214 1.10 mycroft */
215 1.17 lukem static int
216 1.10 mycroft usrtb_start(void)
217 1.10 mycroft {
218 1.10 mycroft
219 1.10 mycroft if (usrtb != NULL)
220 1.10 mycroft return (0);
221 1.17 lukem if (usrtb_fail)
222 1.10 mycroft return (-1);
223 1.10 mycroft if ((usrtb = (UIDC **)calloc(UNM_SZ, sizeof(UIDC *))) == NULL) {
224 1.17 lukem ++usrtb_fail;
225 1.10 mycroft return (-1);
226 1.10 mycroft }
227 1.10 mycroft return (0);
228 1.10 mycroft }
229 1.10 mycroft
230 1.10 mycroft /*
231 1.10 mycroft * grptb_start
232 1.32 msaitoh * creates an empty grptb
233 1.10 mycroft * Return:
234 1.10 mycroft * 0 if ok, -1 otherwise
235 1.10 mycroft */
236 1.17 lukem static int
237 1.10 mycroft grptb_start(void)
238 1.10 mycroft {
239 1.10 mycroft
240 1.10 mycroft if (grptb != NULL)
241 1.10 mycroft return (0);
242 1.17 lukem if (grptb_fail)
243 1.10 mycroft return (-1);
244 1.10 mycroft if ((grptb = (GIDC **)calloc(GNM_SZ, sizeof(GIDC *))) == NULL) {
245 1.17 lukem ++grptb_fail;
246 1.10 mycroft return (-1);
247 1.10 mycroft }
248 1.10 mycroft return (0);
249 1.10 mycroft }
250 1.10 mycroft
251 1.10 mycroft /*
252 1.11 mycroft * user_from_uid()
253 1.16 lukem * caches the name (if any) for the uid. If noname clear, we always
254 1.26 simonb * return the stored name (if valid or invalid match).
255 1.16 lukem * We use a simple hash table.
256 1.10 mycroft * Return
257 1.10 mycroft * Pointer to stored name (or a empty string)
258 1.10 mycroft */
259 1.10 mycroft const char *
260 1.10 mycroft user_from_uid(uid_t uid, int noname)
261 1.1 cgd {
262 1.9 perry struct passwd *pw;
263 1.10 mycroft UIDC *ptr, **pptr;
264 1.1 cgd
265 1.10 mycroft if ((uidtb == NULL) && (uidtb_start() < 0))
266 1.10 mycroft return (NULL);
267 1.10 mycroft
268 1.10 mycroft /*
269 1.10 mycroft * see if we have this uid cached
270 1.10 mycroft */
271 1.10 mycroft pptr = uidtb + (uid % UID_SZ);
272 1.10 mycroft ptr = *pptr;
273 1.10 mycroft
274 1.10 mycroft if ((ptr != NULL) && (ptr->valid > 0) && (ptr->uid == uid)) {
275 1.10 mycroft /*
276 1.10 mycroft * have an entry for this uid
277 1.10 mycroft */
278 1.10 mycroft if (!noname || (ptr->valid == VALID))
279 1.10 mycroft return (ptr->name);
280 1.10 mycroft return (NULL);
281 1.10 mycroft }
282 1.10 mycroft
283 1.10 mycroft /*
284 1.10 mycroft * No entry for this uid, we will add it
285 1.10 mycroft */
286 1.10 mycroft if (!pwopn) {
287 1.17 lukem if (_pwcache_setpassent != NULL)
288 1.17 lukem (*_pwcache_setpassent)(1);
289 1.10 mycroft ++pwopn;
290 1.1 cgd }
291 1.10 mycroft
292 1.10 mycroft if (ptr == NULL)
293 1.12 mycroft *pptr = ptr = (UIDC *)malloc(sizeof(UIDC));
294 1.10 mycroft
295 1.17 lukem if ((pw = (*_pwcache_getpwuid)(uid)) == NULL) {
296 1.10 mycroft /*
297 1.10 mycroft * no match for this uid in the local password file
298 1.23 grant * a string that is the uid in numeric format
299 1.10 mycroft */
300 1.10 mycroft if (ptr == NULL)
301 1.10 mycroft return (NULL);
302 1.10 mycroft ptr->uid = uid;
303 1.10 mycroft (void)snprintf(ptr->name, UNMLEN, "%lu", (long) uid);
304 1.10 mycroft ptr->valid = INVALID;
305 1.10 mycroft if (noname)
306 1.10 mycroft return (NULL);
307 1.10 mycroft } else {
308 1.10 mycroft /*
309 1.10 mycroft * there is an entry for this uid in the password file
310 1.10 mycroft */
311 1.10 mycroft if (ptr == NULL)
312 1.10 mycroft return (pw->pw_name);
313 1.10 mycroft ptr->uid = uid;
314 1.17 lukem (void)strlcpy(ptr->name, pw->pw_name, UNMLEN);
315 1.10 mycroft ptr->valid = VALID;
316 1.10 mycroft }
317 1.10 mycroft return (ptr->name);
318 1.1 cgd }
319 1.1 cgd
320 1.10 mycroft /*
321 1.10 mycroft * group_from_gid()
322 1.16 lukem * caches the name (if any) for the gid. If noname clear, we always
323 1.26 simonb * return the stored name (if valid or invalid match).
324 1.16 lukem * We use a simple hash table.
325 1.10 mycroft * Return
326 1.10 mycroft * Pointer to stored name (or a empty string)
327 1.10 mycroft */
328 1.10 mycroft const char *
329 1.10 mycroft group_from_gid(gid_t gid, int noname)
330 1.10 mycroft {
331 1.10 mycroft struct group *gr;
332 1.10 mycroft GIDC *ptr, **pptr;
333 1.10 mycroft
334 1.10 mycroft if ((gidtb == NULL) && (gidtb_start() < 0))
335 1.10 mycroft return (NULL);
336 1.10 mycroft
337 1.10 mycroft /*
338 1.10 mycroft * see if we have this gid cached
339 1.10 mycroft */
340 1.10 mycroft pptr = gidtb + (gid % GID_SZ);
341 1.10 mycroft ptr = *pptr;
342 1.10 mycroft
343 1.10 mycroft if ((ptr != NULL) && (ptr->valid > 0) && (ptr->gid == gid)) {
344 1.10 mycroft /*
345 1.10 mycroft * have an entry for this gid
346 1.10 mycroft */
347 1.10 mycroft if (!noname || (ptr->valid == VALID))
348 1.10 mycroft return (ptr->name);
349 1.10 mycroft return (NULL);
350 1.10 mycroft }
351 1.10 mycroft
352 1.10 mycroft /*
353 1.10 mycroft * No entry for this gid, we will add it
354 1.10 mycroft */
355 1.10 mycroft if (!gropn) {
356 1.17 lukem if (_pwcache_setgroupent != NULL)
357 1.17 lukem (*_pwcache_setgroupent)(1);
358 1.10 mycroft ++gropn;
359 1.10 mycroft }
360 1.10 mycroft
361 1.10 mycroft if (ptr == NULL)
362 1.12 mycroft *pptr = ptr = (GIDC *)malloc(sizeof(GIDC));
363 1.10 mycroft
364 1.17 lukem if ((gr = (*_pwcache_getgrgid)(gid)) == NULL) {
365 1.10 mycroft /*
366 1.10 mycroft * no match for this gid in the local group file, put in
367 1.33 msaitoh * a string that is the gid in numeric format
368 1.10 mycroft */
369 1.10 mycroft if (ptr == NULL)
370 1.10 mycroft return (NULL);
371 1.10 mycroft ptr->gid = gid;
372 1.10 mycroft (void)snprintf(ptr->name, GNMLEN, "%lu", (long) gid);
373 1.10 mycroft ptr->valid = INVALID;
374 1.10 mycroft if (noname)
375 1.10 mycroft return (NULL);
376 1.10 mycroft } else {
377 1.10 mycroft /*
378 1.10 mycroft * there is an entry for this group in the group file
379 1.10 mycroft */
380 1.10 mycroft if (ptr == NULL)
381 1.10 mycroft return (gr->gr_name);
382 1.10 mycroft ptr->gid = gid;
383 1.17 lukem (void)strlcpy(ptr->name, gr->gr_name, GNMLEN);
384 1.10 mycroft ptr->valid = VALID;
385 1.10 mycroft }
386 1.10 mycroft return (ptr->name);
387 1.10 mycroft }
388 1.10 mycroft
389 1.10 mycroft /*
390 1.10 mycroft * uid_from_user()
391 1.10 mycroft * caches the uid for a given user name. We use a simple hash table.
392 1.10 mycroft * Return
393 1.10 mycroft * the uid (if any) for a user name, or a -1 if no match can be found
394 1.10 mycroft */
395 1.10 mycroft int
396 1.10 mycroft uid_from_user(const char *name, uid_t *uid)
397 1.10 mycroft {
398 1.10 mycroft struct passwd *pw;
399 1.10 mycroft UIDC *ptr, **pptr;
400 1.10 mycroft size_t namelen;
401 1.10 mycroft
402 1.10 mycroft /*
403 1.10 mycroft * return -1 for mangled names
404 1.10 mycroft */
405 1.13 lukem if (name == NULL || ((namelen = strlen(name)) == 0))
406 1.10 mycroft return (-1);
407 1.10 mycroft if ((usrtb == NULL) && (usrtb_start() < 0))
408 1.10 mycroft return (-1);
409 1.10 mycroft
410 1.10 mycroft /*
411 1.10 mycroft * look up in hash table, if found and valid return the uid,
412 1.10 mycroft * if found and invalid, return a -1
413 1.10 mycroft */
414 1.10 mycroft pptr = usrtb + st_hash(name, namelen, UNM_SZ);
415 1.10 mycroft ptr = *pptr;
416 1.10 mycroft
417 1.10 mycroft if ((ptr != NULL) && (ptr->valid > 0) && !strcmp(name, ptr->name)) {
418 1.10 mycroft if (ptr->valid == INVALID)
419 1.10 mycroft return (-1);
420 1.10 mycroft *uid = ptr->uid;
421 1.10 mycroft return (0);
422 1.10 mycroft }
423 1.10 mycroft
424 1.10 mycroft if (!pwopn) {
425 1.17 lukem if (_pwcache_setpassent != NULL)
426 1.17 lukem (*_pwcache_setpassent)(1);
427 1.10 mycroft ++pwopn;
428 1.10 mycroft }
429 1.10 mycroft
430 1.10 mycroft if (ptr == NULL)
431 1.12 mycroft *pptr = ptr = (UIDC *)malloc(sizeof(UIDC));
432 1.10 mycroft
433 1.10 mycroft /*
434 1.10 mycroft * no match, look it up, if no match store it as an invalid entry,
435 1.10 mycroft * or store the matching uid
436 1.10 mycroft */
437 1.10 mycroft if (ptr == NULL) {
438 1.17 lukem if ((pw = (*_pwcache_getpwnam)(name)) == NULL)
439 1.10 mycroft return (-1);
440 1.10 mycroft *uid = pw->pw_uid;
441 1.10 mycroft return (0);
442 1.10 mycroft }
443 1.17 lukem (void)strlcpy(ptr->name, name, UNMLEN);
444 1.17 lukem if ((pw = (*_pwcache_getpwnam)(name)) == NULL) {
445 1.10 mycroft ptr->valid = INVALID;
446 1.10 mycroft return (-1);
447 1.10 mycroft }
448 1.10 mycroft ptr->valid = VALID;
449 1.10 mycroft *uid = ptr->uid = pw->pw_uid;
450 1.10 mycroft return (0);
451 1.10 mycroft }
452 1.10 mycroft
453 1.10 mycroft /*
454 1.10 mycroft * gid_from_group()
455 1.10 mycroft * caches the gid for a given group name. We use a simple hash table.
456 1.10 mycroft * Return
457 1.10 mycroft * the gid (if any) for a group name, or a -1 if no match can be found
458 1.10 mycroft */
459 1.10 mycroft int
460 1.10 mycroft gid_from_group(const char *name, gid_t *gid)
461 1.1 cgd {
462 1.4 cgd struct group *gr;
463 1.10 mycroft GIDC *ptr, **pptr;
464 1.10 mycroft size_t namelen;
465 1.10 mycroft
466 1.10 mycroft /*
467 1.10 mycroft * return -1 for mangled names
468 1.10 mycroft */
469 1.13 lukem if (name == NULL || ((namelen = strlen(name)) == 0))
470 1.10 mycroft return (-1);
471 1.10 mycroft if ((grptb == NULL) && (grptb_start() < 0))
472 1.10 mycroft return (-1);
473 1.10 mycroft
474 1.10 mycroft /*
475 1.10 mycroft * look up in hash table, if found and valid return the uid,
476 1.10 mycroft * if found and invalid, return a -1
477 1.10 mycroft */
478 1.10 mycroft pptr = grptb + st_hash(name, namelen, GID_SZ);
479 1.10 mycroft ptr = *pptr;
480 1.10 mycroft
481 1.10 mycroft if ((ptr != NULL) && (ptr->valid > 0) && !strcmp(name, ptr->name)) {
482 1.10 mycroft if (ptr->valid == INVALID)
483 1.10 mycroft return (-1);
484 1.10 mycroft *gid = ptr->gid;
485 1.10 mycroft return (0);
486 1.10 mycroft }
487 1.10 mycroft
488 1.10 mycroft if (!gropn) {
489 1.17 lukem if (_pwcache_setgroupent != NULL)
490 1.17 lukem (*_pwcache_setgroupent)(1);
491 1.10 mycroft ++gropn;
492 1.10 mycroft }
493 1.10 mycroft
494 1.10 mycroft if (ptr == NULL)
495 1.12 mycroft *pptr = ptr = (GIDC *)malloc(sizeof(GIDC));
496 1.10 mycroft
497 1.10 mycroft /*
498 1.10 mycroft * no match, look it up, if no match store it as an invalid entry,
499 1.10 mycroft * or store the matching gid
500 1.10 mycroft */
501 1.10 mycroft if (ptr == NULL) {
502 1.17 lukem if ((gr = (*_pwcache_getgrnam)(name)) == NULL)
503 1.10 mycroft return (-1);
504 1.10 mycroft *gid = gr->gr_gid;
505 1.10 mycroft return (0);
506 1.10 mycroft }
507 1.1 cgd
508 1.17 lukem (void)strlcpy(ptr->name, name, GNMLEN);
509 1.17 lukem if ((gr = (*_pwcache_getgrnam)(name)) == NULL) {
510 1.10 mycroft ptr->valid = INVALID;
511 1.10 mycroft return (-1);
512 1.1 cgd }
513 1.10 mycroft ptr->valid = VALID;
514 1.10 mycroft *gid = ptr->gid = gr->gr_gid;
515 1.10 mycroft return (0);
516 1.1 cgd }
517 1.17 lukem
518 1.17 lukem #define FLUSHTB(arr, len, fail) \
519 1.17 lukem do { \
520 1.17 lukem if (arr != NULL) { \
521 1.17 lukem for (i = 0; i < len; i++) \
522 1.17 lukem if (arr[i] != NULL) \
523 1.17 lukem free(arr[i]); \
524 1.17 lukem arr = NULL; \
525 1.17 lukem } \
526 1.17 lukem fail = 0; \
527 1.17 lukem } while (/* CONSTCOND */0);
528 1.17 lukem
529 1.17 lukem int
530 1.17 lukem pwcache_userdb(
531 1.17 lukem int (*a_setpassent)(int),
532 1.17 lukem void (*a_endpwent)(void),
533 1.17 lukem struct passwd * (*a_getpwnam)(const char *),
534 1.17 lukem struct passwd * (*a_getpwuid)(uid_t))
535 1.17 lukem {
536 1.17 lukem int i;
537 1.17 lukem
538 1.17 lukem /* a_setpassent and a_endpwent may be NULL */
539 1.17 lukem if (a_getpwnam == NULL || a_getpwuid == NULL)
540 1.17 lukem return (-1);
541 1.17 lukem
542 1.17 lukem if (_pwcache_endpwent != NULL)
543 1.17 lukem (*_pwcache_endpwent)();
544 1.17 lukem FLUSHTB(uidtb, UID_SZ, uidtb_fail);
545 1.17 lukem FLUSHTB(usrtb, UNM_SZ, usrtb_fail);
546 1.17 lukem pwopn = 0;
547 1.17 lukem _pwcache_setpassent = a_setpassent;
548 1.17 lukem _pwcache_endpwent = a_endpwent;
549 1.17 lukem _pwcache_getpwnam = a_getpwnam;
550 1.17 lukem _pwcache_getpwuid = a_getpwuid;
551 1.17 lukem
552 1.17 lukem return (0);
553 1.17 lukem }
554 1.17 lukem
555 1.17 lukem int
556 1.17 lukem pwcache_groupdb(
557 1.17 lukem int (*a_setgroupent)(int),
558 1.17 lukem void (*a_endgrent)(void),
559 1.17 lukem struct group * (*a_getgrnam)(const char *),
560 1.17 lukem struct group * (*a_getgrgid)(gid_t))
561 1.17 lukem {
562 1.17 lukem int i;
563 1.17 lukem
564 1.17 lukem /* a_setgroupent and a_endgrent may be NULL */
565 1.17 lukem if (a_getgrnam == NULL || a_getgrgid == NULL)
566 1.17 lukem return (-1);
567 1.17 lukem
568 1.17 lukem if (_pwcache_endgrent != NULL)
569 1.17 lukem (*_pwcache_endgrent)();
570 1.17 lukem FLUSHTB(gidtb, GID_SZ, gidtb_fail);
571 1.17 lukem FLUSHTB(grptb, GNM_SZ, grptb_fail);
572 1.17 lukem gropn = 0;
573 1.17 lukem _pwcache_setgroupent = a_setgroupent;
574 1.17 lukem _pwcache_endgrent = a_endgrent;
575 1.17 lukem _pwcache_getgrnam = a_getgrnam;
576 1.17 lukem _pwcache_getgrgid = a_getgrgid;
577 1.17 lukem
578 1.17 lukem return (0);
579 1.17 lukem }
580 1.17 lukem
581 1.17 lukem
582 1.17 lukem #ifdef TEST_PWCACHE
583 1.17 lukem
584 1.17 lukem struct passwd *
585 1.17 lukem test_getpwnam(const char *name)
586 1.17 lukem {
587 1.17 lukem static struct passwd foo;
588 1.17 lukem
589 1.17 lukem memset(&foo, 0, sizeof(foo));
590 1.17 lukem if (strcmp(name, "toor") == 0) {
591 1.17 lukem foo.pw_uid = 666;
592 1.17 lukem return &foo;
593 1.17 lukem }
594 1.17 lukem return (getpwnam(name));
595 1.17 lukem }
596 1.17 lukem
597 1.17 lukem int
598 1.17 lukem main(int argc, char *argv[])
599 1.17 lukem {
600 1.17 lukem uid_t u;
601 1.17 lukem int r, i;
602 1.17 lukem
603 1.17 lukem printf("pass 1 (default userdb)\n");
604 1.17 lukem for (i = 1; i < argc; i++) {
605 1.17 lukem printf("i: %d, pwopn %d usrtb_fail %d usrtb %p\n",
606 1.17 lukem i, pwopn, usrtb_fail, usrtb);
607 1.17 lukem r = uid_from_user(argv[i], &u);
608 1.17 lukem if (r == -1)
609 1.17 lukem printf(" uid_from_user %s: failed\n", argv[i]);
610 1.17 lukem else
611 1.17 lukem printf(" uid_from_user %s: %d\n", argv[i], u);
612 1.17 lukem }
613 1.17 lukem printf("pass 1 finish: pwopn %d usrtb_fail %d usrtb %p\n",
614 1.17 lukem pwopn, usrtb_fail, usrtb);
615 1.17 lukem
616 1.17 lukem puts("");
617 1.17 lukem printf("pass 2 (replacement userdb)\n");
618 1.17 lukem printf("pwcache_userdb returned %d\n",
619 1.17 lukem pwcache_userdb(setpassent, test_getpwnam, getpwuid));
620 1.17 lukem printf("pwopn %d usrtb_fail %d usrtb %p\n", pwopn, usrtb_fail, usrtb);
621 1.17 lukem
622 1.17 lukem for (i = 1; i < argc; i++) {
623 1.17 lukem printf("i: %d, pwopn %d usrtb_fail %d usrtb %p\n",
624 1.17 lukem i, pwopn, usrtb_fail, usrtb);
625 1.17 lukem u = -1;
626 1.17 lukem r = uid_from_user(argv[i], &u);
627 1.17 lukem if (r == -1)
628 1.17 lukem printf(" uid_from_user %s: failed\n", argv[i]);
629 1.17 lukem else
630 1.17 lukem printf(" uid_from_user %s: %d\n", argv[i], u);
631 1.17 lukem }
632 1.17 lukem printf("pass 2 finish: pwopn %d usrtb_fail %d usrtb %p\n",
633 1.17 lukem pwopn, usrtb_fail, usrtb);
634 1.17 lukem
635 1.17 lukem puts("");
636 1.17 lukem printf("pass 3 (null pointers)\n");
637 1.17 lukem printf("pwcache_userdb returned %d\n",
638 1.17 lukem pwcache_userdb(NULL, NULL, NULL));
639 1.17 lukem
640 1.17 lukem return (0);
641 1.17 lukem }
642 1.17 lukem #endif /* TEST_PWCACHE */
643 1.18 lukem #endif /* !HAVE_PWCACHE_USERDB */
644