+ char *host = ldap_pvt_get_fqdn( NULL );
+
+ if( host == NULL ) {
+ krb5_free_principal( context, client );
+ krb5_free_context( context );
+ return 1;
+ }
+
+ ret = krb5_sname_to_principal( context,
+ host, "ldap", KRB5_NT_SRV_HST, &server );
+
+ ber_memfree( host );
+ }
+
+ if (ret) {
+ krb5_free_principal( context, client );
+ krb5_free_context( context );
+ return 1;
+ }
+
+ ret = krb5_verify_init_creds( context,
+ &creds, server, NULL, NULL, &verify_options );
+
+ krb5_free_principal( context, client );
+ krb5_free_principal( context, server );
+ krb5_free_cred_contents( context, &creds );
+ krb5_free_context( context );
+
+ rtn = !!ret;
+ }
+#elif defined(HAVE_KRB4)
+ {
+ /* Borrowed from Heimdal kpopper */
+/* Portions:
+ * Copyright (c) 1989 Regents of the University of California.
+ * All rights reserved. The Berkeley software License Agreement
+ * specifies the terms and conditions for redistribution.
+ */
+
+ int status;
+ char lrealm[REALM_SZ];
+ char tkt[MAXHOSTNAMELEN];
+
+ status = krb_get_lrealm(lrealm,1);
+ if (status == KFAILURE) {
+ return 1;
+ }
+
+ snprintf(tkt, sizeof(tkt), "%s_slapd.%u",
+ TKT_ROOT, (unsigned)getpid());
+ krb_set_tkt_string (tkt);
+
+ status = krb_verify_user( passwd->bv_val, "", lrealm,
+ cred->bv_val, 1, "ldap");
+
+ dest_tkt(); /* no point in keeping the tickets */
+
+ return status == KFAILURE;
+ }
+#endif
+
+ return rtn;
+}
+#endif /* SLAPD_KPASSWD */
+
+#ifdef SLAPD_CRYPT
+static int chk_crypt(
+ const struct pw_scheme *sc,
+ const struct berval * passwd,
+ const struct berval * cred )
+{
+ char *cr;
+ int i;
+
+ for( i=0; i<cred->bv_len; i++) {
+ if(cred->bv_val[i] == '\0') {
+ return 1; /* NUL character in password */
+ }
+ }
+
+ if( cred->bv_val[i] != '\0' ) {
+ return -1; /* cred must behave like a string */
+ }
+
+ if( passwd->bv_len < 2 ) {
+ return -1; /* passwd must be at least two characters long */
+ }
+
+ for( i=0; i<passwd->bv_len; i++) {
+ if(passwd->bv_val[i] == '\0') {
+ return -1; /* NUL character in password */
+ }
+ }
+
+ if( passwd->bv_val[i] != '\0' ) {
+ return -1; /* passwd must behave like a string */
+ }
+
+ cr = crypt( cred->bv_val, passwd->bv_val );
+
+ if( cr == NULL || cr[0] == '\0' ) {
+ /* salt must have been invalid */
+ return -1;
+ }
+
+ return strcmp( passwd->bv_val, cr ) ? 1 : 0;
+}
+
+# if defined( HAVE_GETPWNAM ) && defined( HAVE_PW_PASSWD )
+static int chk_unix(
+ const struct pw_scheme *sc,
+ const struct berval * passwd,
+ const struct berval * cred )
+{
+ int i;
+ char *pw,*cr;
+
+ for( i=0; i<cred->bv_len; i++) {
+ if(cred->bv_val[i] == '\0') {
+ return -1; /* NUL character in password */
+ }
+ }
+ if( cred->bv_val[i] != '\0' ) {
+ return -1; /* cred must behave like a string */
+ }
+
+ for( i=0; i<passwd->bv_len; i++) {
+ if(passwd->bv_val[i] == '\0') {
+ return -1; /* NUL character in password */
+ }
+ }
+
+ if( passwd->bv_val[i] != '\0' ) {
+ return -1; /* passwd must behave like a string */
+ }
+
+ {
+ struct passwd *pwd = getpwnam(passwd->bv_val);
+
+ if(pwd == NULL) {
+ return -1; /* not found */
+ }
+
+ pw = pwd->pw_passwd;
+ }
+# ifdef HAVE_GETSPNAM
+ {
+ struct spwd *spwd = getspnam(passwd->bv_val);
+
+ if(spwd != NULL) {
+ pw = spwd->sp_pwdp;
+ }
+ }
+# endif
+# ifdef HAVE_AIX_SECURITY
+ {
+ struct userpw *upw = getuserpw(passwd->bv_val);
+
+ if (upw != NULL) {
+ pw = upw->upw_passwd;
+ }
+ }
+# endif
+
+ if( pw == NULL || pw[0] == '\0' || pw[1] == '\0' ) {
+ /* password must must be at least two characters long */
+ return -1;
+ }
+
+ cr = crypt(cred->bv_val, pw);
+
+ if( cr == NULL || cr[0] == '\0' ) {
+ /* salt must have been invalid */
+ return -1;
+ }
+
+ return strcmp(pw, cr) ? 1 : 0;
+
+}
+# endif
+#endif
+
+/* PASSWORD GENERATION ROUTINES */
+
+#ifdef LUTIL_SHA1_BYTES
+static struct berval *hash_ssha1(
+ const struct pw_scheme *scheme,
+ const struct berval *passwd )
+{
+ lutil_SHA1_CTX SHA1context;
+ unsigned char SHA1digest[LUTIL_SHA1_BYTES];
+ unsigned char saltdata[4];
+ struct berval digest;
+ struct berval salt;
+
+ digest.bv_val = SHA1digest;
+ digest.bv_len = sizeof(SHA1digest);
+ salt.bv_val = saltdata;
+ salt.bv_len = sizeof(saltdata);
+
+ if( lutil_entropy( salt.bv_val, salt.bv_len) < 0 ) {
+ return NULL;
+ }
+
+ lutil_SHA1Init( &SHA1context );
+ lutil_SHA1Update( &SHA1context,
+ (const unsigned char *)passwd->bv_val, passwd->bv_len );
+ lutil_SHA1Update( &SHA1context,
+ (const unsigned char *)salt.bv_val, salt.bv_len );
+ lutil_SHA1Final( SHA1digest, &SHA1context );
+
+ return pw_string64( scheme, &digest, &salt);
+}
+
+static struct berval *hash_sha1(
+ const struct pw_scheme *scheme,
+ const struct berval *passwd )
+{
+ lutil_SHA1_CTX SHA1context;
+ unsigned char SHA1digest[LUTIL_SHA1_BYTES];
+ struct berval digest;
+ digest.bv_val = SHA1digest;
+ digest.bv_len = sizeof(SHA1digest);
+
+ lutil_SHA1Init( &SHA1context );
+ lutil_SHA1Update( &SHA1context,
+ (const unsigned char *)passwd->bv_val, passwd->bv_len );
+ lutil_SHA1Final( SHA1digest, &SHA1context );
+
+ return pw_string64( scheme, &digest, NULL);
+}
+#endif
+
+static struct berval *hash_smd5(
+ const struct pw_scheme *scheme,
+ const struct berval *passwd )
+{
+ lutil_MD5_CTX MD5context;
+ unsigned char MD5digest[LUTIL_MD5_BYTES];
+ unsigned char saltdata[4];
+ struct berval digest;
+ struct berval salt;
+
+ digest.bv_val = MD5digest;
+ digest.bv_len = sizeof(MD5digest);
+ salt.bv_val = saltdata;
+ salt.bv_len = sizeof(saltdata);
+
+ if( lutil_entropy( salt.bv_val, salt.bv_len) < 0 ) {
+ return NULL;
+ }
+
+ lutil_MD5Init( &MD5context );
+ lutil_MD5Update( &MD5context,
+ (const unsigned char *) passwd->bv_val, passwd->bv_len );
+ lutil_MD5Update( &MD5context,
+ (const unsigned char *) salt.bv_val, salt.bv_len );
+ lutil_MD5Final( MD5digest, &MD5context );
+
+ return pw_string64( scheme, &digest, &salt );
+}
+
+static struct berval *hash_md5(
+ const struct pw_scheme *scheme,
+ const struct berval *passwd )
+{
+ lutil_MD5_CTX MD5context;
+ unsigned char MD5digest[LUTIL_MD5_BYTES];
+
+ struct berval digest;
+
+ digest.bv_val = MD5digest;
+ digest.bv_len = sizeof(MD5digest);
+
+ lutil_MD5Init( &MD5context );
+ lutil_MD5Update( &MD5context,
+ (const unsigned char *) passwd->bv_val, passwd->bv_len );
+ lutil_MD5Final( MD5digest, &MD5context );
+
+ return pw_string64( scheme, &digest, NULL );
+;
+}
+
+#ifdef SLAPD_LMHASH
+/* pseudocode from RFC2433
+ * A.2 LmPasswordHash()
+ *
+ * LmPasswordHash(
+ * IN 0-to-14-oem-char Password,
+ * OUT 16-octet PasswordHash )
+ * {
+ * Set UcasePassword to the uppercased Password
+ * Zero pad UcasePassword to 14 characters
+ *
+ * DesHash( 1st 7-octets of UcasePassword,
+ * giving 1st 8-octets of PasswordHash )
+ *
+ * DesHash( 2nd 7-octets of UcasePassword,
+ * giving 2nd 8-octets of PasswordHash )
+ * }
+ *
+ *
+ * A.3 DesHash()
+ *
+ * DesHash(
+ * IN 7-octet Clear,
+ * OUT 8-octet Cypher )
+ * {
+ * *
+ * * Make Cypher an irreversibly encrypted form of Clear by
+ * * encrypting known text using Clear as the secret key.
+ * * The known text consists of the string
+ * *
+ * * KGS!@#$%
+ * *
+ *
+ * Set StdText to "KGS!@#$%"
+ * DesEncrypt( StdText, Clear, giving Cypher )
+ * }
+ *
+ *
+ * A.4 DesEncrypt()
+ *
+ * DesEncrypt(
+ * IN 8-octet Clear,
+ * IN 7-octet Key,
+ * OUT 8-octet Cypher )
+ * {
+ * *
+ * * Use the DES encryption algorithm [4] in ECB mode [9]
+ * * to encrypt Clear into Cypher such that Cypher can
+ * * only be decrypted back to Clear by providing Key.
+ * * Note that the DES algorithm takes as input a 64-bit
+ * * stream where the 8th, 16th, 24th, etc. bits are
+ * * parity bits ignored by the encrypting algorithm.
+ * * Unless you write your own DES to accept 56-bit input
+ * * without parity, you will need to insert the parity bits
+ * * yourself.
+ * *
+ * }
+ */
+
+static void lmPasswd_to_key(
+ const unsigned char *lmPasswd,
+ des_cblock *key)
+{
+ /* make room for parity bits */
+ ((char *)key)[0] = lmPasswd[0];
+ ((char *)key)[1] = ((lmPasswd[0]&0x01)<<7) | (lmPasswd[1]>>1);
+ ((char *)key)[2] = ((lmPasswd[1]&0x03)<<6) | (lmPasswd[2]>>2);
+ ((char *)key)[3] = ((lmPasswd[2]&0x07)<<5) | (lmPasswd[3]>>3);
+ ((char *)key)[4] = ((lmPasswd[3]&0x0F)<<4) | (lmPasswd[4]>>4);
+ ((char *)key)[5] = ((lmPasswd[4]&0x1F)<<3) | (lmPasswd[5]>>5);
+ ((char *)key)[6] = ((lmPasswd[5]&0x3F)<<2) | (lmPasswd[6]>>6);
+ ((char *)key)[7] = ((lmPasswd[6]&0x7F)<<1);
+
+ des_set_odd_parity( key );
+}
+
+static struct berval *hash_lanman(
+ const struct pw_scheme *scheme,
+ const struct berval *passwd )
+{
+
+ int i;
+ char UcasePassword[15];
+ des_cblock key;
+ des_key_schedule schedule;
+ des_cblock StdText = "KGS!@#$%";
+ des_cblock hash1, hash2;
+ char lmhash[33];
+ struct berval hash;
+
+ for( i=0; i<passwd->bv_len; i++) {
+ if(passwd->bv_val[i] == '\0') {
+ return NULL; /* NUL character in password */
+ }
+ }
+
+ if( passwd->bv_val[i] != '\0' ) {
+ return NULL; /* passwd must behave like a string */
+ }
+
+ strncpy( UcasePassword, passwd->bv_val, 14 );
+ UcasePassword[14] = '\0';
+ ldap_pvt_str2upper( UcasePassword );
+
+ lmPasswd_to_key( UcasePassword, &key );
+ des_set_key_unchecked( &key, schedule );
+ des_ecb_encrypt( &StdText, &hash1, schedule , DES_ENCRYPT );
+
+ lmPasswd_to_key( &UcasePassword[7], &key );
+ des_set_key_unchecked( &key, schedule );
+ des_ecb_encrypt( &StdText, &hash2, schedule , DES_ENCRYPT );
+
+ sprintf( lmhash, "%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x",
+ hash1[0],hash1[1],hash1[2],hash1[3],hash1[4],hash1[5],hash1[6],hash1[7],
+ hash2[0],hash2[1],hash2[2],hash2[3],hash2[4],hash2[5],hash2[6],hash2[7] );
+
+ hash.bv_val = lmhash;
+ hash.bv_len = 32;
+
+ return pw_string( scheme, &hash );
+}
+#endif /* SLAPD_LMHASH */
+
+#ifdef SLAPD_CRYPT
+static struct berval *hash_crypt(
+ const struct pw_scheme *scheme,
+ const struct berval *passwd )
+{
+ struct berval hash;
+ unsigned char salt[32]; /* salt suitable for most anything */
+ int i;
+
+ for( i=0; i<passwd->bv_len; i++) {
+ if(passwd->bv_val[i] == '\0') {
+ return NULL; /* NUL character in password */