passwd.c revision 1.1.1.10 1 /* $NetBSD: passwd.c,v 1.1.1.10 2025/09/05 21:09:34 christos Exp $ */
2
3 /* $OpenLDAP$ */
4 /* This work is part of OpenLDAP Software <http://www.openldap.org/>.
5 *
6 * Copyright 1998-2024 The OpenLDAP Foundation.
7 * All rights reserved.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted only as authorized by the OpenLDAP
11 * Public License.
12 *
13 * A copy of this license is available in the file LICENSE in the
14 * top-level directory of the distribution or, alternatively, at
15 * <http://www.OpenLDAP.org/license.html>.
16 */
17
18 /*
19 * int lutil_passwd(
20 * const struct berval *passwd,
21 * const struct berval *cred,
22 * const char **schemes )
23 *
24 * Returns true if user supplied credentials (cred) matches
25 * the stored password (passwd).
26 *
27 * Due to the use of the crypt(3) function
28 * this routine is NOT thread-safe.
29 */
30
31 #include <sys/cdefs.h>
32 __RCSID("$NetBSD: passwd.c,v 1.1.1.10 2025/09/05 21:09:34 christos Exp $");
33
34 #include "portable.h"
35
36 #include <stdio.h>
37 #include <ac/stdlib.h>
38 #include <ac/string.h>
39 #include <ac/unistd.h>
40 #include <ac/param.h>
41
42 #ifdef SLAPD_CRYPT
43 # include <ac/crypt.h>
44
45 # if defined( HAVE_GETPWNAM ) && defined( HAVE_STRUCT_PASSWD_PW_PASSWD )
46 # ifdef HAVE_SHADOW_H
47 # include <shadow.h>
48 # endif
49 # ifdef HAVE_PWD_H
50 # include <pwd.h>
51 # endif
52 # ifdef HAVE_AIX_SECURITY
53 # include <userpw.h>
54 # endif
55 # endif
56 #endif
57
58 #include <lber.h>
59
60 #include "ldap_pvt.h"
61 #include "lber_pvt.h"
62
63 #include "lutil_md5.h"
64 #include "lutil_sha1.h"
65 #include "lutil.h"
66
67 static const unsigned char crypt64[] =
68 "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz1234567890./";
69
70 #ifdef SLAPD_CRYPT
71 static char *salt_format = NULL;
72 static lutil_cryptfunc lutil_crypt;
73 lutil_cryptfunc *lutil_cryptptr = lutil_crypt;
74 #endif
75
76 /* KLUDGE:
77 * chk_fn is NULL iff name is {CLEARTEXT}
78 * otherwise, things will break
79 */
80 struct pw_scheme {
81 struct berval name;
82 LUTIL_PASSWD_CHK_FUNC *chk_fn;
83 LUTIL_PASSWD_HASH_FUNC *hash_fn;
84 };
85
86 struct pw_slist {
87 struct pw_slist *next;
88 struct pw_scheme s;
89 };
90
91 /* password check routines */
92
93 #define SALT_SIZE 4
94
95 static LUTIL_PASSWD_CHK_FUNC chk_md5;
96 static LUTIL_PASSWD_CHK_FUNC chk_smd5;
97 static LUTIL_PASSWD_HASH_FUNC hash_smd5;
98 static LUTIL_PASSWD_HASH_FUNC hash_md5;
99
100
101 #ifdef LUTIL_SHA1_BYTES
102 static LUTIL_PASSWD_CHK_FUNC chk_ssha1;
103 static LUTIL_PASSWD_CHK_FUNC chk_sha1;
104 static LUTIL_PASSWD_HASH_FUNC hash_sha1;
105 static LUTIL_PASSWD_HASH_FUNC hash_ssha1;
106 #endif
107
108
109 #ifdef SLAPD_CRYPT
110 static LUTIL_PASSWD_CHK_FUNC chk_crypt;
111 static LUTIL_PASSWD_HASH_FUNC hash_crypt;
112
113 #if defined( HAVE_GETPWNAM ) && defined( HAVE_STRUCT_PASSWD_PW_PASSWD )
114 static LUTIL_PASSWD_CHK_FUNC chk_unix;
115 #endif
116 #endif
117
118 /* password hash routines */
119
120 #ifdef SLAPD_CLEARTEXT
121 static LUTIL_PASSWD_HASH_FUNC hash_clear;
122 #endif
123
124 static struct pw_slist *pw_schemes;
125 static int pw_inited;
126
127 static const struct pw_scheme pw_schemes_default[] =
128 {
129 #ifdef LUTIL_SHA1_BYTES
130 { BER_BVC("{SSHA}"), chk_ssha1, hash_ssha1 },
131 { BER_BVC("{SHA}"), chk_sha1, hash_sha1 },
132 #endif
133
134 { BER_BVC("{SMD5}"), chk_smd5, hash_smd5 },
135 { BER_BVC("{MD5}"), chk_md5, hash_md5 },
136
137 #ifdef SLAPD_CRYPT
138 { BER_BVC("{CRYPT}"), chk_crypt, hash_crypt },
139 # if defined( HAVE_GETPWNAM ) && defined( HAVE_STRUCT_PASSWD_PW_PASSWD )
140 { BER_BVC("{UNIX}"), chk_unix, NULL },
141 # endif
142 #endif
143
144 #ifdef SLAPD_CLEARTEXT
145 /* pseudo scheme */
146 { BER_BVC("{CLEARTEXT}"), NULL, hash_clear },
147 #endif
148
149 { BER_BVNULL, NULL, NULL }
150 };
151
152 int lutil_passwd_add(
153 struct berval *scheme,
154 LUTIL_PASSWD_CHK_FUNC *chk,
155 LUTIL_PASSWD_HASH_FUNC *hash )
156 {
157 struct pw_slist *ptr;
158
159 if (!pw_inited) lutil_passwd_init();
160
161 ptr = ber_memalloc( sizeof( struct pw_slist ));
162 if (!ptr) return -1;
163 ptr->next = pw_schemes;
164 ptr->s.name = *scheme;
165 ptr->s.chk_fn = chk;
166 ptr->s.hash_fn = hash;
167 pw_schemes = ptr;
168 return 0;
169 }
170
171 void lutil_passwd_init()
172 {
173 struct pw_scheme *s;
174
175 pw_inited = 1;
176
177 for( s=(struct pw_scheme *)pw_schemes_default; s->name.bv_val; s++) {
178 if ( lutil_passwd_add( &s->name, s->chk_fn, s->hash_fn ) ) break;
179 }
180 }
181
182 void lutil_passwd_destroy()
183 {
184 struct pw_slist *ptr, *next;
185
186 for( ptr=pw_schemes; ptr; ptr=next ) {
187 next = ptr->next;
188 ber_memfree( ptr );
189 }
190 }
191
192 static const struct pw_scheme *get_scheme(
193 const char* scheme )
194 {
195 struct pw_slist *pws;
196 struct berval bv;
197
198 if (!pw_inited) lutil_passwd_init();
199
200 bv.bv_val = strchr( scheme, '}' );
201 if ( !bv.bv_val )
202 return NULL;
203
204 bv.bv_len = bv.bv_val - scheme + 1;
205 bv.bv_val = (char *) scheme;
206
207 for( pws=pw_schemes; pws; pws=pws->next ) {
208 if ( ber_bvstrcasecmp(&bv, &pws->s.name ) == 0 ) {
209 return &(pws->s);
210 }
211 }
212
213 return NULL;
214 }
215
216 int lutil_passwd_scheme(
217 const char* scheme )
218 {
219 if( scheme == NULL ) {
220 return 0;
221 }
222
223 return get_scheme(scheme) != NULL;
224 }
225
226
227 static int is_allowed_scheme(
228 const char* scheme,
229 const char** schemes )
230 {
231 int i;
232
233 if( schemes == NULL ) return 1;
234
235 for( i=0; schemes[i] != NULL; i++ ) {
236 if( strcasecmp( scheme, schemes[i] ) == 0 ) {
237 return 1;
238 }
239 }
240 return 0;
241 }
242
243 static struct berval *passwd_scheme(
244 const struct pw_scheme *scheme,
245 const struct berval * passwd,
246 struct berval *bv,
247 const char** allowed )
248 {
249 if( !is_allowed_scheme( scheme->name.bv_val, allowed ) ) {
250 return NULL;
251 }
252
253 if( passwd->bv_len >= scheme->name.bv_len ) {
254 if( strncasecmp( passwd->bv_val, scheme->name.bv_val, scheme->name.bv_len ) == 0 ) {
255 bv->bv_val = &passwd->bv_val[scheme->name.bv_len];
256 bv->bv_len = passwd->bv_len - scheme->name.bv_len;
257
258 return bv;
259 }
260 }
261
262 return NULL;
263 }
264
265 /*
266 * Return 0 if creds are good.
267 */
268 int
269 lutil_passwd(
270 const struct berval *passwd, /* stored passwd */
271 const struct berval *cred, /* user cred */
272 const char **schemes,
273 const char **text )
274 {
275 struct pw_slist *pws;
276
277 if ( text ) *text = NULL;
278
279 if (cred == NULL || cred->bv_len == 0 ||
280 passwd == NULL || passwd->bv_len == 0 )
281 {
282 return -1;
283 }
284
285 if (!pw_inited) lutil_passwd_init();
286
287 for( pws=pw_schemes; pws; pws=pws->next ) {
288 if( pws->s.chk_fn ) {
289 struct berval x;
290 struct berval *p = passwd_scheme( &(pws->s),
291 passwd, &x, schemes );
292
293 if( p != NULL ) {
294 return (pws->s.chk_fn)( &(pws->s.name), p, cred, text );
295 }
296 }
297 }
298
299 #ifdef SLAPD_CLEARTEXT
300 /* Do we think there is a scheme specifier here that we
301 * didn't recognize? Assume a scheme name is at least 1 character.
302 */
303 if (( passwd->bv_val[0] == '{' ) &&
304 ( ber_bvchr( passwd, '}' ) > passwd->bv_val+1 ))
305 {
306 return 1;
307 }
308 if( is_allowed_scheme("{CLEARTEXT}", schemes ) ) {
309 return ( passwd->bv_len == cred->bv_len ) ?
310 memcmp( passwd->bv_val, cred->bv_val, passwd->bv_len )
311 : 1;
312 }
313 #endif
314 return 1;
315 }
316
317 int lutil_passwd_generate( struct berval *pw, ber_len_t len )
318 {
319
320 if( len < 1 ) return -1;
321
322 pw->bv_len = len;
323 pw->bv_val = ber_memalloc( len + 1 );
324
325 if( pw->bv_val == NULL ) {
326 return -1;
327 }
328
329 if( lutil_entropy( (unsigned char *) pw->bv_val, pw->bv_len) < 0 ) {
330 return -1;
331 }
332
333 for( len = 0; len < pw->bv_len; len++ ) {
334 pw->bv_val[len] = crypt64[
335 pw->bv_val[len] % (sizeof(crypt64)-1) ];
336 }
337
338 pw->bv_val[len] = '\0';
339
340 return 0;
341 }
342
343 int lutil_passwd_hash(
344 const struct berval * passwd,
345 const char * method,
346 struct berval *hash,
347 const char **text )
348 {
349 const struct pw_scheme *sc = get_scheme( method );
350
351 hash->bv_val = NULL;
352 hash->bv_len = 0;
353
354 if( sc == NULL ) {
355 if( text ) *text = "scheme not recognized";
356 return -1;
357 }
358
359 if( ! sc->hash_fn ) {
360 if( text ) *text = "scheme provided no hash function";
361 return -1;
362 }
363
364 if( text ) *text = NULL;
365
366 return (sc->hash_fn)( &sc->name, passwd, hash, text );
367 }
368
369 /* pw_string is only called when SLAPD_CRYPT is defined */
370 #if defined(SLAPD_CRYPT)
371 static int pw_string(
372 const struct berval *sc,
373 struct berval *passwd )
374 {
375 struct berval pw;
376
377 pw.bv_len = sc->bv_len + passwd->bv_len;
378 pw.bv_val = ber_memalloc( pw.bv_len + 1 );
379
380 if( pw.bv_val == NULL ) {
381 return LUTIL_PASSWD_ERR;
382 }
383
384 AC_MEMCPY( pw.bv_val, sc->bv_val, sc->bv_len );
385 AC_MEMCPY( &pw.bv_val[sc->bv_len], passwd->bv_val, passwd->bv_len );
386
387 pw.bv_val[pw.bv_len] = '\0';
388 *passwd = pw;
389
390 return LUTIL_PASSWD_OK;
391 }
392 #endif /* SLAPD_CRYPT */
393
394 int lutil_passwd_string64(
395 const struct berval *sc,
396 const struct berval *hash,
397 struct berval *b64,
398 const struct berval *salt )
399 {
400 int rc;
401 struct berval string;
402 size_t b64len;
403
404 if( salt ) {
405 /* need to base64 combined string */
406 string.bv_len = hash->bv_len + salt->bv_len;
407 string.bv_val = ber_memalloc( string.bv_len + 1 );
408
409 if( string.bv_val == NULL ) {
410 return LUTIL_PASSWD_ERR;
411 }
412
413 AC_MEMCPY( string.bv_val, hash->bv_val,
414 hash->bv_len );
415 AC_MEMCPY( &string.bv_val[hash->bv_len], salt->bv_val,
416 salt->bv_len );
417 string.bv_val[string.bv_len] = '\0';
418
419 } else {
420 string = *hash;
421 }
422
423 b64len = LUTIL_BASE64_ENCODE_LEN( string.bv_len ) + 1;
424 b64->bv_len = b64len + sc->bv_len;
425 b64->bv_val = ber_memalloc( b64->bv_len + 1 );
426
427 if( b64->bv_val == NULL ) {
428 if( salt ) ber_memfree( string.bv_val );
429 return LUTIL_PASSWD_ERR;
430 }
431
432 AC_MEMCPY(b64->bv_val, sc->bv_val, sc->bv_len);
433
434 rc = lutil_b64_ntop(
435 (unsigned char *) string.bv_val, string.bv_len,
436 &b64->bv_val[sc->bv_len], b64len );
437
438 if( salt ) ber_memfree( string.bv_val );
439
440 if( rc < 0 ) {
441 return LUTIL_PASSWD_ERR;
442 }
443
444 /* recompute length */
445 b64->bv_len = sc->bv_len + rc;
446 assert( strlen(b64->bv_val) == b64->bv_len );
447 return LUTIL_PASSWD_OK;
448 }
449
450 /* PASSWORD CHECK ROUTINES */
451
452 #ifdef LUTIL_SHA1_BYTES
453 static int chk_ssha1(
454 const struct berval *sc,
455 const struct berval * passwd,
456 const struct berval * cred,
457 const char **text )
458 {
459 lutil_SHA1_CTX SHA1context;
460 unsigned char SHA1digest[LUTIL_SHA1_BYTES];
461 int rc;
462 unsigned char *orig_pass = NULL;
463 size_t decode_len = LUTIL_BASE64_DECODE_LEN(passwd->bv_len);
464
465 /* safety check -- must have some salt */
466 if (decode_len <= sizeof(SHA1digest)) {
467 return LUTIL_PASSWD_ERR;
468 }
469
470 /* decode base64 password */
471 orig_pass = (unsigned char *) ber_memalloc(decode_len + 1);
472
473 if( orig_pass == NULL ) return LUTIL_PASSWD_ERR;
474
475 rc = lutil_b64_pton(passwd->bv_val, orig_pass, decode_len);
476
477 /* safety check -- must have some salt */
478 if (rc <= (int)(sizeof(SHA1digest))) {
479 ber_memfree(orig_pass);
480 return LUTIL_PASSWD_ERR;
481 }
482
483 /* hash credentials with salt */
484 lutil_SHA1Init(&SHA1context);
485 lutil_SHA1Update(&SHA1context,
486 (const unsigned char *) cred->bv_val, cred->bv_len);
487 lutil_SHA1Update(&SHA1context,
488 (const unsigned char *) &orig_pass[sizeof(SHA1digest)],
489 rc - sizeof(SHA1digest));
490 lutil_SHA1Final(SHA1digest, &SHA1context);
491
492 /* compare */
493 rc = memcmp((char *)orig_pass, (char *)SHA1digest, sizeof(SHA1digest));
494 ber_memfree(orig_pass);
495 return rc ? LUTIL_PASSWD_ERR : LUTIL_PASSWD_OK;
496 }
497
498 static int chk_sha1(
499 const struct berval *sc,
500 const struct berval * passwd,
501 const struct berval * cred,
502 const char **text )
503 {
504 lutil_SHA1_CTX SHA1context;
505 unsigned char SHA1digest[LUTIL_SHA1_BYTES];
506 int rc;
507 unsigned char *orig_pass = NULL;
508 size_t decode_len = LUTIL_BASE64_DECODE_LEN(passwd->bv_len);
509
510 /* safety check */
511 if (decode_len < sizeof(SHA1digest)) {
512 return LUTIL_PASSWD_ERR;
513 }
514
515 /* base64 un-encode password */
516 orig_pass = (unsigned char *) ber_memalloc(decode_len + 1);
517
518 if( orig_pass == NULL ) return LUTIL_PASSWD_ERR;
519
520 rc = lutil_b64_pton(passwd->bv_val, orig_pass, decode_len);
521
522 if( rc != sizeof(SHA1digest) ) {
523 ber_memfree(orig_pass);
524 return LUTIL_PASSWD_ERR;
525 }
526
527 /* hash credentials with salt */
528 lutil_SHA1Init(&SHA1context);
529 lutil_SHA1Update(&SHA1context,
530 (const unsigned char *) cred->bv_val, cred->bv_len);
531 lutil_SHA1Final(SHA1digest, &SHA1context);
532
533 /* compare */
534 rc = memcmp((char *)orig_pass, (char *)SHA1digest, sizeof(SHA1digest));
535 ber_memfree(orig_pass);
536 return rc ? LUTIL_PASSWD_ERR : LUTIL_PASSWD_OK;
537 }
538 #endif
539
540 static int chk_smd5(
541 const struct berval *sc,
542 const struct berval * passwd,
543 const struct berval * cred,
544 const char **text )
545 {
546 lutil_MD5_CTX MD5context;
547 unsigned char MD5digest[LUTIL_MD5_BYTES];
548 int rc;
549 unsigned char *orig_pass = NULL;
550 size_t decode_len = LUTIL_BASE64_DECODE_LEN(passwd->bv_len);
551
552 /* safety check */
553 if (decode_len <= sizeof(MD5digest)) {
554 return LUTIL_PASSWD_ERR;
555 }
556
557 /* base64 un-encode password */
558 orig_pass = (unsigned char *) ber_memalloc(decode_len + 1);
559
560 if( orig_pass == NULL ) return LUTIL_PASSWD_ERR;
561
562 rc = lutil_b64_pton(passwd->bv_val, orig_pass, decode_len);
563
564 if (rc <= (int)(sizeof(MD5digest))) {
565 ber_memfree(orig_pass);
566 return LUTIL_PASSWD_ERR;
567 }
568
569 /* hash credentials with salt */
570 lutil_MD5Init(&MD5context);
571 lutil_MD5Update(&MD5context,
572 (const unsigned char *) cred->bv_val,
573 cred->bv_len );
574 lutil_MD5Update(&MD5context,
575 &orig_pass[sizeof(MD5digest)],
576 rc - sizeof(MD5digest));
577 lutil_MD5Final(MD5digest, &MD5context);
578
579 /* compare */
580 rc = memcmp((char *)orig_pass, (char *)MD5digest, sizeof(MD5digest));
581 ber_memfree(orig_pass);
582 return rc ? LUTIL_PASSWD_ERR : LUTIL_PASSWD_OK;
583 }
584
585 static int chk_md5(
586 const struct berval *sc,
587 const struct berval * passwd,
588 const struct berval * cred,
589 const char **text )
590 {
591 lutil_MD5_CTX MD5context;
592 unsigned char MD5digest[LUTIL_MD5_BYTES];
593 int rc;
594 unsigned char *orig_pass = NULL;
595 size_t decode_len = LUTIL_BASE64_DECODE_LEN(passwd->bv_len);
596
597 /* safety check */
598 if (decode_len < sizeof(MD5digest)) {
599 return LUTIL_PASSWD_ERR;
600 }
601
602 /* base64 un-encode password */
603 orig_pass = (unsigned char *) ber_memalloc(decode_len + 1);
604
605 if( orig_pass == NULL ) return LUTIL_PASSWD_ERR;
606
607 rc = lutil_b64_pton(passwd->bv_val, orig_pass, decode_len);
608 if ( rc != sizeof(MD5digest) ) {
609 ber_memfree(orig_pass);
610 return LUTIL_PASSWD_ERR;
611 }
612
613 /* hash credentials with salt */
614 lutil_MD5Init(&MD5context);
615 lutil_MD5Update(&MD5context,
616 (const unsigned char *) cred->bv_val,
617 cred->bv_len );
618 lutil_MD5Final(MD5digest, &MD5context);
619
620 /* compare */
621 rc = memcmp((char *)orig_pass, (char *)MD5digest, sizeof(MD5digest));
622 ber_memfree(orig_pass);
623 return rc ? LUTIL_PASSWD_ERR : LUTIL_PASSWD_OK;
624 }
625
626 #ifdef SLAPD_CRYPT
627 static int lutil_crypt(
628 const char *key,
629 const char *salt,
630 char **hash )
631 {
632 char *cr = crypt( key, salt );
633 int rc;
634
635 if( cr == NULL || cr[0] == '\0' ) {
636 /* salt must have been invalid */
637 rc = LUTIL_PASSWD_ERR;
638 } else {
639 if ( hash ) {
640 *hash = ber_strdup( cr );
641 rc = LUTIL_PASSWD_OK;
642 } else {
643 rc = strcmp( salt, cr ) ? LUTIL_PASSWD_ERR : LUTIL_PASSWD_OK;
644 }
645 }
646 return rc;
647 }
648
649 static int chk_crypt(
650 const struct berval *sc,
651 const struct berval * passwd,
652 const struct berval * cred,
653 const char **text )
654 {
655 unsigned int i;
656
657 for( i=0; i<cred->bv_len; i++) {
658 if(cred->bv_val[i] == '\0') {
659 return LUTIL_PASSWD_ERR; /* NUL character in password */
660 }
661 }
662
663 if( cred->bv_val[i] != '\0' ) {
664 return LUTIL_PASSWD_ERR; /* cred must behave like a string */
665 }
666
667 if( passwd->bv_len < 2 ) {
668 return LUTIL_PASSWD_ERR; /* passwd must be at least two characters long */
669 }
670
671 for( i=0; i<passwd->bv_len; i++) {
672 if(passwd->bv_val[i] == '\0') {
673 return LUTIL_PASSWD_ERR; /* NUL character in password */
674 }
675 }
676
677 if( passwd->bv_val[i] != '\0' ) {
678 return LUTIL_PASSWD_ERR; /* passwd must behave like a string */
679 }
680
681 return lutil_cryptptr( cred->bv_val, passwd->bv_val, NULL );
682 }
683
684 # if defined( HAVE_GETPWNAM ) && defined( HAVE_STRUCT_PASSWD_PW_PASSWD )
685 static int chk_unix(
686 const struct berval *sc,
687 const struct berval * passwd,
688 const struct berval * cred,
689 const char **text )
690 {
691 unsigned int i;
692 char *pw;
693
694 for( i=0; i<cred->bv_len; i++) {
695 if(cred->bv_val[i] == '\0') {
696 return LUTIL_PASSWD_ERR; /* NUL character in password */
697 }
698 }
699 if( cred->bv_val[i] != '\0' ) {
700 return LUTIL_PASSWD_ERR; /* cred must behave like a string */
701 }
702
703 for( i=0; i<passwd->bv_len; i++) {
704 if(passwd->bv_val[i] == '\0') {
705 return LUTIL_PASSWD_ERR; /* NUL character in password */
706 }
707 }
708
709 if( passwd->bv_val[i] != '\0' ) {
710 return LUTIL_PASSWD_ERR; /* passwd must behave like a string */
711 }
712
713 {
714 struct passwd *pwd = getpwnam(passwd->bv_val);
715
716 if(pwd == NULL) {
717 return LUTIL_PASSWD_ERR; /* not found */
718 }
719
720 pw = pwd->pw_passwd;
721 }
722 # ifdef HAVE_GETSPNAM
723 {
724 struct spwd *spwd = getspnam(passwd->bv_val);
725
726 if(spwd != NULL) {
727 pw = spwd->sp_pwdp;
728 }
729 }
730 # endif
731 # ifdef HAVE_AIX_SECURITY
732 {
733 struct userpw *upw = getuserpw(passwd->bv_val);
734
735 if (upw != NULL) {
736 pw = upw->upw_passwd;
737 }
738 }
739 # endif
740
741 if( pw == NULL || pw[0] == '\0' || pw[1] == '\0' ) {
742 /* password must must be at least two characters long */
743 return LUTIL_PASSWD_ERR;
744 }
745
746 return lutil_cryptptr( cred->bv_val, pw, NULL );
747 }
748 # endif
749 #endif
750
751 /* PASSWORD GENERATION ROUTINES */
752
753 #ifdef LUTIL_SHA1_BYTES
754 static int hash_ssha1(
755 const struct berval *scheme,
756 const struct berval *passwd,
757 struct berval *hash,
758 const char **text )
759 {
760 lutil_SHA1_CTX SHA1context;
761 unsigned char SHA1digest[LUTIL_SHA1_BYTES];
762 char saltdata[SALT_SIZE];
763 struct berval digest;
764 struct berval salt;
765
766 digest.bv_val = (char *) SHA1digest;
767 digest.bv_len = sizeof(SHA1digest);
768 salt.bv_val = saltdata;
769 salt.bv_len = sizeof(saltdata);
770
771 if( lutil_entropy( (unsigned char *) salt.bv_val, salt.bv_len) < 0 ) {
772 return LUTIL_PASSWD_ERR;
773 }
774
775 lutil_SHA1Init( &SHA1context );
776 lutil_SHA1Update( &SHA1context,
777 (const unsigned char *)passwd->bv_val, passwd->bv_len );
778 lutil_SHA1Update( &SHA1context,
779 (const unsigned char *)salt.bv_val, salt.bv_len );
780 lutil_SHA1Final( SHA1digest, &SHA1context );
781
782 return lutil_passwd_string64( scheme, &digest, hash, &salt);
783 }
784
785 static int hash_sha1(
786 const struct berval *scheme,
787 const struct berval *passwd,
788 struct berval *hash,
789 const char **text )
790 {
791 lutil_SHA1_CTX SHA1context;
792 unsigned char SHA1digest[LUTIL_SHA1_BYTES];
793 struct berval digest;
794 digest.bv_val = (char *) SHA1digest;
795 digest.bv_len = sizeof(SHA1digest);
796
797 lutil_SHA1Init( &SHA1context );
798 lutil_SHA1Update( &SHA1context,
799 (const unsigned char *)passwd->bv_val, passwd->bv_len );
800 lutil_SHA1Final( SHA1digest, &SHA1context );
801
802 return lutil_passwd_string64( scheme, &digest, hash, NULL);
803 }
804 #endif
805
806 static int hash_smd5(
807 const struct berval *scheme,
808 const struct berval *passwd,
809 struct berval *hash,
810 const char **text )
811 {
812 lutil_MD5_CTX MD5context;
813 unsigned char MD5digest[LUTIL_MD5_BYTES];
814 char saltdata[SALT_SIZE];
815 struct berval digest;
816 struct berval salt;
817
818 digest.bv_val = (char *) MD5digest;
819 digest.bv_len = sizeof(MD5digest);
820 salt.bv_val = saltdata;
821 salt.bv_len = sizeof(saltdata);
822
823 if( lutil_entropy( (unsigned char *) salt.bv_val, salt.bv_len) < 0 ) {
824 return LUTIL_PASSWD_ERR;
825 }
826
827 lutil_MD5Init( &MD5context );
828 lutil_MD5Update( &MD5context,
829 (const unsigned char *) passwd->bv_val, passwd->bv_len );
830 lutil_MD5Update( &MD5context,
831 (const unsigned char *) salt.bv_val, salt.bv_len );
832 lutil_MD5Final( MD5digest, &MD5context );
833
834 return lutil_passwd_string64( scheme, &digest, hash, &salt );
835 }
836
837 static int hash_md5(
838 const struct berval *scheme,
839 const struct berval *passwd,
840 struct berval *hash,
841 const char **text )
842 {
843 lutil_MD5_CTX MD5context;
844 unsigned char MD5digest[LUTIL_MD5_BYTES];
845
846 struct berval digest;
847
848 digest.bv_val = (char *) MD5digest;
849 digest.bv_len = sizeof(MD5digest);
850
851 lutil_MD5Init( &MD5context );
852 lutil_MD5Update( &MD5context,
853 (const unsigned char *) passwd->bv_val, passwd->bv_len );
854 lutil_MD5Final( MD5digest, &MD5context );
855
856 return lutil_passwd_string64( scheme, &digest, hash, NULL );
857 ;
858 }
859
860 #ifdef SLAPD_CRYPT
861 static int hash_crypt(
862 const struct berval *scheme,
863 const struct berval *passwd,
864 struct berval *hash,
865 const char **text )
866 {
867 unsigned char salt[32]; /* salt suitable for most anything */
868 unsigned int i;
869 char *save;
870 int rc;
871
872 for( i=0; i<passwd->bv_len; i++) {
873 if(passwd->bv_val[i] == '\0') {
874 return LUTIL_PASSWD_ERR; /* NUL character in password */
875 }
876 }
877
878 if( passwd->bv_val[i] != '\0' ) {
879 return LUTIL_PASSWD_ERR; /* passwd must behave like a string */
880 }
881
882 if( lutil_entropy( salt, sizeof( salt ) ) < 0 ) {
883 return LUTIL_PASSWD_ERR;
884 }
885
886 for( i=0; i< ( sizeof(salt) - 1 ); i++ ) {
887 salt[i] = crypt64[ salt[i] % (sizeof(crypt64)-1) ];
888 }
889 salt[sizeof( salt ) - 1 ] = '\0';
890
891 if( salt_format != NULL ) {
892 /* copy the salt we made into entropy before snprintfing
893 it back into the salt */
894 char entropy[sizeof(salt)];
895 strcpy( entropy, (char *) salt );
896 snprintf( (char *) salt, sizeof(entropy), salt_format, entropy );
897 }
898
899 rc = lutil_cryptptr( passwd->bv_val, (char *) salt, &hash->bv_val );
900 if ( rc != LUTIL_PASSWD_OK ) return rc;
901
902 if( hash->bv_val == NULL ) return -1;
903
904 hash->bv_len = strlen( hash->bv_val );
905
906 save = hash->bv_val;
907
908 if( hash->bv_len == 0 ) {
909 rc = LUTIL_PASSWD_ERR;
910 } else {
911 rc = pw_string( scheme, hash );
912 }
913 ber_memfree( save );
914 return rc;
915 }
916 #endif
917
918 int lutil_salt_format(const char *format)
919 {
920 #ifdef SLAPD_CRYPT
921 ber_memfree( salt_format );
922
923 salt_format = format != NULL ? ber_strdup( format ) : NULL;
924 #endif
925
926 return 0;
927 }
928
929 #ifdef SLAPD_CLEARTEXT
930 static int hash_clear(
931 const struct berval *scheme,
932 const struct berval *passwd,
933 struct berval *hash,
934 const char **text )
935 {
936 ber_dupbv( hash, (struct berval *)passwd );
937 return LUTIL_PASSWD_OK;
938 }
939 #endif
940
941