/* $OpenLDAP$ */ /* * Copyright 1998-2003 The OpenLDAP Foundation, All Rights Reserved. * COPYING RESTRICTIONS APPLY, see COPYRIGHT file */ #include "portable.h" #include #include #include #include #include #include "slap.h" #include #ifdef HAVE_CYRUS_SASL # ifdef HAVE_SASL_SASL_H # include # else # include # endif # if SASL_VERSION_MAJOR >= 2 # include # define SASL_CONST const # else # define SASL_CONST # endif static sasl_security_properties_t sasl_secprops; #endif /* HAVE_CYRUS_SASL */ #include "ldap_pvt.h" #include "lber_pvt.h" #include int slap_sasl_config( int cargc, char **cargv, char *line, const char *fname, int lineno ) { /* set SASL proxy authorization policy */ if ( strcasecmp( cargv[0], "sasl-authz-policy" ) == 0 ) { if ( cargc != 2 ) { #ifdef NEW_LOGGING LDAP_LOG( CONFIG, CRIT, "%s: line %d: missing policy in" " \"sasl-authz-policy \" line\n", fname, lineno, 0 ); #else Debug( LDAP_DEBUG_ANY, "%s: line %d: missing policy in" " \"sasl-authz-policy \" line\n", fname, lineno, 0 ); #endif return( 1 ); } if ( slap_sasl_setpolicy( cargv[1] ) ) { #ifdef NEW_LOGGING LDAP_LOG( CONFIG, CRIT, "%s: line %d: unable " "to parse value \"%s\" " "in \"sasl-authz-policy " "\" line.\n", fname, lineno, cargv[1] ); #else Debug( LDAP_DEBUG_ANY, "%s: line %d: unable " "to parse value \"%s\" " "in \"sasl-authz-policy " "\" line\n", fname, lineno, cargv[1] ); #endif return( 1 ); } } else if ( !strcasecmp( cargv[0], "sasl-regexp" ) || !strcasecmp( cargv[0], "saslregexp" ) ) { int rc; if ( cargc != 3 ) { #ifdef NEW_LOGGING LDAP_LOG( CONFIG, CRIT, "%s: line %d: need 2 args in " "\"saslregexp \"\n", fname, lineno, 0 ); #else Debug( LDAP_DEBUG_ANY, "%s: line %d: need 2 args in " "\"saslregexp \"\n", fname, lineno, 0 ); #endif return( 1 ); } rc = slap_sasl_regexp_config( cargv[1], cargv[2] ); if ( rc ) { return rc; } #ifdef HAVE_CYRUS_SASL /* set SASL host */ } else if ( strcasecmp( cargv[0], "sasl-host" ) == 0 ) { if ( cargc < 2 ) { #ifdef NEW_LOGGING LDAP_LOG( CONFIG, CRIT, "%s: line %d: missing host in \"sasl-host \" line\n", fname, lineno, 0 ); #else Debug( LDAP_DEBUG_ANY, "%s: line %d: missing host in \"sasl-host \" line\n", fname, lineno, 0 ); #endif return( 1 ); } if ( global_host != NULL ) { #ifdef NEW_LOGGING LDAP_LOG( CONFIG, CRIT, "%s: line %d: already set sasl-host!\n", fname, lineno, 0 ); #else Debug( LDAP_DEBUG_ANY, "%s: line %d: already set sasl-host!\n", fname, lineno, 0 ); #endif return 1; } else { global_host = ch_strdup( cargv[1] ); } /* set SASL realm */ } else if ( strcasecmp( cargv[0], "sasl-realm" ) == 0 ) { if ( cargc < 2 ) { #ifdef NEW_LOGGING LDAP_LOG( CONFIG, CRIT, "%s: line %d: " "missing realm in \"sasl-realm \" line.\n", fname, lineno, 0 ); #else Debug( LDAP_DEBUG_ANY, "%s: line %d: " "missing realm in \"sasl-realm \" line.\n", fname, lineno, 0 ); #endif return( 1 ); } if ( global_realm != NULL ) { #ifdef NEW_LOGGING LDAP_LOG( CONFIG, CRIT, "%s: line %d: already set sasl-realm!\n", fname, lineno, 0 ); #else Debug( LDAP_DEBUG_ANY, "%s: line %d: already set sasl-realm!\n", fname, lineno, 0 ); #endif return 1; } else { global_realm = ch_strdup( cargv[1] ); } /* SASL security properties */ } else if ( strcasecmp( cargv[0], "sasl-secprops" ) == 0 ) { char *txt; if ( cargc < 2 ) { #ifdef NEW_LOGGING LDAP_LOG( CONFIG, CRIT, "%s: line %d: " "missing flags in \"sasl-secprops \" line\n", fname, lineno, 0 ); #else Debug( LDAP_DEBUG_ANY, "%s: line %d: " "missing flags in \"sasl-secprops \" line\n", fname, lineno, 0 ); #endif return 1; } txt = slap_sasl_secprops( cargv[1] ); if ( txt != NULL ) { #ifdef NEW_LOGGING LDAP_LOG( CONFIG, CRIT, "%s: line %d sasl-secprops: %s\n", fname, lineno, txt ); #else Debug( LDAP_DEBUG_ANY, "%s: line %d: sasl-secprops: %s\n", fname, lineno, txt ); #endif return 1; } #endif /* HAVE_CYRUS_SASL */ } return LDAP_SUCCESS; } #ifdef HAVE_CYRUS_SASL int slap_sasl_log( void *context, int priority, const char *message) { Connection *conn = context; int level; const char * label; if ( message == NULL ) { return SASL_BADPARAM; } switch (priority) { #if SASL_VERSION_MAJOR >= 2 case SASL_LOG_NONE: level = LDAP_DEBUG_NONE; label = "None"; break; case SASL_LOG_ERR: level = LDAP_DEBUG_ANY; label = "Error"; break; case SASL_LOG_FAIL: level = LDAP_DEBUG_ANY; label = "Failure"; break; case SASL_LOG_WARN: level = LDAP_DEBUG_TRACE; label = "Warning"; break; case SASL_LOG_NOTE: level = LDAP_DEBUG_TRACE; label = "Notice"; break; case SASL_LOG_DEBUG: level = LDAP_DEBUG_TRACE; label = "Debug"; break; case SASL_LOG_TRACE: level = LDAP_DEBUG_TRACE; label = "Trace"; break; case SASL_LOG_PASS: level = LDAP_DEBUG_TRACE; label = "Password Trace"; break; #else case SASL_LOG_ERR: level = LDAP_DEBUG_ANY; label = "Error"; break; case SASL_LOG_WARNING: level = LDAP_DEBUG_TRACE; label = "Warning"; break; case SASL_LOG_INFO: level = LDAP_DEBUG_TRACE; label = "Info"; break; #endif default: return SASL_BADPARAM; } #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ENTRY, "SASL [conn=%ld] %s: %s\n", conn ? conn->c_connid : -1, label, message); #else Debug( level, "SASL [conn=%ld] %s: %s\n", conn ? conn->c_connid: -1, label, message ); #endif return SASL_OK; } #if SASL_VERSION_MAJOR >= 2 static const char *slap_propnames[] = { "*slapConn", "*authcDN", "*authzDN", NULL }; static Filter generic_filter = { LDAP_FILTER_PRESENT }; #define PROP_CONN 0 #define PROP_AUTHC 1 #define PROP_AUTHZ 2 typedef struct lookup_info { int last; int flags; const struct propval *list; sasl_server_params_t *sparams; } lookup_info; static slap_response sasl_ap_lookup, sasl_cb_checkpass; static int sasl_ap_lookup( Operation *op, SlapReply *rs ) { BerVarray bv; AttributeDescription *ad; Attribute *a; const char *text; int rc, i; slap_callback *tmp = op->o_callback; lookup_info *sl = tmp->sc_private; if (rs->sr_type != REP_SEARCH) return 0; for( i = 0; i < sl->last; i++ ) { const char *name = sl->list[i].name; if ( name[0] == '*' ) { if ( sl->flags & SASL_AUXPROP_AUTHZID ) continue; name++; } else if ( !(sl->flags & SASL_AUXPROP_AUTHZID ) ) continue; if ( sl->list[i].values ) { if ( !(sl->flags & SASL_AUXPROP_OVERRIDE) ) continue; } ad = NULL; rc = slap_str2ad( name, &ad, &text ); if ( rc != LDAP_SUCCESS ) { #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, DETAIL1, "slap_auxprop: str2ad(%s): %s\n", name, text, 0 ); #else Debug( LDAP_DEBUG_TRACE, "slap_auxprop: str2ad(%s): %s\n", name, text, 0 ); #endif continue; } a = attr_find( rs->sr_entry->e_attrs, ad ); if ( !a ) continue; if ( ! access_allowed( op, rs->sr_entry, ad, NULL, ACL_AUTH, NULL ) ) { continue; } if ( sl->list[i].values && ( sl->flags & SASL_AUXPROP_OVERRIDE ) ) { sl->sparams->utils->prop_erase( sl->sparams->propctx, sl->list[i].name ); } for ( bv = a->a_vals; bv->bv_val; bv++ ) { sl->sparams->utils->prop_set( sl->sparams->propctx, sl->list[i].name, bv->bv_val, bv->bv_len ); } } return LDAP_SUCCESS; } static void slap_auxprop_lookup( void *glob_context, sasl_server_params_t *sparams, unsigned flags, const char *user, unsigned ulen) { Operation op = {0}; int rc, i, doit=0; Connection *conn = NULL; lookup_info sl; sl.list = sparams->utils->prop_get( sparams->propctx ); sl.sparams = sparams; sl.flags = flags; /* Find our DN and conn first */ for( i = 0, sl.last = 0; sl.list[i].name; i++ ) { if ( sl.list[i].name[0] == '*' ) { if ( !strcmp( sl.list[i].name, slap_propnames[PROP_CONN] ) ) { if ( sl.list[i].values && sl.list[i].values[0] ) AC_MEMCPY( &conn, sl.list[i].values[0], sizeof( conn ) ); if ( !sl.last ) sl.last = i; } if ( (flags & SASL_AUXPROP_AUTHZID) && !strcmp( sl.list[i].name, slap_propnames[PROP_AUTHZ] ) ) { if ( sl.list[i].values && sl.list[i].values[0] ) AC_MEMCPY( &op.o_req_ndn, sl.list[i].values[0], sizeof( struct berval ) ); if ( !sl.last ) sl.last = i; break; } if ( !strcmp( sl.list[i].name, slap_propnames[PROP_AUTHC] ) ) { if ( !sl.last ) sl.last = i; if ( sl.list[i].values && sl.list[i].values[0] ) { AC_MEMCPY( &op.o_req_ndn, sl.list[i].values[0], sizeof( struct berval ) ); if ( !(flags & SASL_AUXPROP_AUTHZID) ) break; } } } } /* Now see what else needs to be fetched */ for( i = 0; i < sl.last; i++ ) { const char *name = sl.list[i].name; if ( name[0] == '*' ) { if ( flags & SASL_AUXPROP_AUTHZID ) continue; name++; } else if ( !(flags & SASL_AUXPROP_AUTHZID ) ) continue; if ( sl.list[i].values ) { if ( !(flags & SASL_AUXPROP_OVERRIDE) ) continue; } doit = 1; } if (doit) { slap_callback cb = { sasl_ap_lookup, NULL }; cb.sc_private = &sl; op.o_bd = select_backend( &op.o_req_ndn, 0, 1 ); if ( op.o_bd && op.o_bd->be_search ) { SlapReply rs = {REP_RESULT}; op.o_tag = LDAP_REQ_SEARCH; op.o_protocol = LDAP_VERSION3; op.o_ndn = conn->c_ndn; op.o_callback = &cb; op.o_time = slap_get_time(); op.o_do_not_cache = 1; op.o_is_auth_check = 1; op.o_threadctx = conn->c_sasl_bindop->o_threadctx; op.o_tmpmemctx = conn->c_sasl_bindop->o_tmpmemctx; op.o_tmpmfuncs = conn->c_sasl_bindop->o_tmpmfuncs; #ifdef LDAP_SLAPI op.o_pb = conn->c_sasl_bindop->o_pb; #endif op.o_conn = conn; op.o_connid = conn->c_connid; op.ors_scope = LDAP_SCOPE_BASE; op.ors_deref = LDAP_DEREF_NEVER; op.ors_slimit = 1; op.ors_filter = &generic_filter; op.o_bd->be_search( &op, &rs ); } } } static sasl_auxprop_plug_t slap_auxprop_plugin = { 0, /* Features */ 0, /* spare */ NULL, /* glob_context */ NULL, /* auxprop_free */ slap_auxprop_lookup, "slapd", /* name */ NULL /* spare */ }; static int slap_auxprop_init( const sasl_utils_t *utils, int max_version, int *out_version, sasl_auxprop_plug_t **plug, const char *plugname) { if ( !out_version | !plug ) return SASL_BADPARAM; if ( max_version < SASL_AUXPROP_PLUG_VERSION ) return SASL_BADVERS; *out_version = SASL_AUXPROP_PLUG_VERSION; *plug = &slap_auxprop_plugin; return SASL_OK; } typedef struct checkpass_info { int rc; struct berval cred; } checkpass_info; static int sasl_cb_checkpass( Operation *op, SlapReply *rs ) { slap_callback *tmp = op->o_callback; checkpass_info *ci = tmp->sc_private; Attribute *a; struct berval *bv; if (rs->sr_type != REP_SEARCH) return 0; ci->rc = SASL_NOVERIFY; a = attr_find( rs->sr_entry->e_attrs, slap_schema.si_ad_userPassword ); if ( !a ) return 0; if ( ! access_allowed( op, rs->sr_entry, slap_schema.si_ad_userPassword, NULL, ACL_AUTH, NULL ) ) return 0; for ( bv = a->a_vals; bv->bv_val != NULL; bv++ ) { if ( !lutil_passwd( bv, &ci->cred, NULL, &rs->sr_text ) ) { ci->rc = SASL_OK; break; } } return 0; } static int slap_sasl_checkpass( sasl_conn_t *sconn, void *context, const char *username, const char *pass, unsigned passlen, struct propctx *propctx) { Connection *conn = (Connection *)context; Operation op = {0}; int rc; checkpass_info ci; ci.rc = SASL_NOUSER; /* SASL will fallback to its own mechanisms if we don't * find an answer here. */ rc = slap_sasl_getdn( conn, NULL, (char *)username, 0, NULL, &op.o_req_ndn, SLAP_GETDN_AUTHCID ); if ( rc != LDAP_SUCCESS ) { sasl_seterror( sconn, 0, ldap_err2string( rc ) ); return SASL_NOUSER; } if ( op.o_req_ndn.bv_len == 0 ) { sasl_seterror( sconn, 0, "No password is associated with the Root DSE" ); if ( op.o_req_ndn.bv_val != NULL ) { ch_free( op.o_req_ndn.bv_val ); } return SASL_NOUSER; } op.o_bd = select_backend( &op.o_req_ndn, 0, 1 ); if ( op.o_bd && op.o_bd->be_search ) { slap_callback cb = { sasl_cb_checkpass, NULL }; SlapReply rs = {REP_RESULT}; ci.cred.bv_val = (char *)pass; ci.cred.bv_len = passlen; cb.sc_private = &ci; op.o_tag = LDAP_REQ_SEARCH; op.o_protocol = LDAP_VERSION3; op.o_ndn = conn->c_ndn; op.o_callback = &cb; op.o_time = slap_get_time(); op.o_do_not_cache = 1; op.o_is_auth_check = 1; op.o_threadctx = conn->c_sasl_bindop->o_threadctx; op.o_tmpmemctx = conn->c_sasl_bindop->o_tmpmemctx; op.o_tmpmfuncs = conn->c_sasl_bindop->o_tmpmfuncs; #ifdef LDAP_SLAPI op.o_pb = conn->c_sasl_bindop->o_pb; #endif op.o_conn = conn; op.o_connid = conn->c_connid; op.ors_scope = LDAP_SCOPE_BASE; op.ors_deref = LDAP_DEREF_NEVER; op.ors_slimit = 1; op.ors_filter = &generic_filter; op.o_bd->be_search( &op, &rs ); } if ( ci.rc != SASL_OK ) { sasl_seterror( sconn, 0, ldap_err2string( LDAP_INVALID_CREDENTIALS ) ); } ch_free( op.o_req_ndn.bv_val ); return ci.rc; } /* Convert a SASL authcid or authzid into a DN. Store the DN in an * auxiliary property, so that we can refer to it in sasl_authorize * without interfering with anything else. Also, the SASL username * buffer is constrained to 256 characters, and our DNs could be * much longer (totally arbitrary length)... */ static int slap_sasl_canonicalize( sasl_conn_t *sconn, void *context, const char *in, unsigned inlen, unsigned flags, const char *user_realm, char *out, unsigned out_max, unsigned *out_len) { Connection *conn = (Connection *)context; struct propctx *props = sasl_auxprop_getctx( sconn ); struct propval auxvals[3]; struct berval dn; int rc, which; const char *names[2]; *out_len = 0; #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ENTRY, "slap_sasl_canonicalize: conn %d %s=\"%s\"\n", conn ? conn->c_connid : -1, (flags & SASL_CU_AUTHID) ? "authcid" : "authzid", in ? in : ""); #else Debug( LDAP_DEBUG_ARGS, "SASL Canonicalize [conn=%ld]: %s=\"%s\"\n", conn ? conn->c_connid : -1, (flags & SASL_CU_AUTHID) ? "authcid" : "authzid", in ? in : ""); #endif /* If name is too big, just truncate. We don't care, we're * using DNs, not the usernames. */ if ( inlen > out_max ) inlen = out_max-1; /* See if we need to add request, can only do it once */ prop_getnames( props, slap_propnames, auxvals ); if ( !auxvals[0].name ) prop_request( props, slap_propnames ); if ( flags & SASL_CU_AUTHID ) which = PROP_AUTHC; else which = PROP_AUTHZ; /* Need to store the Connection for auxprop_lookup */ if ( !auxvals[PROP_CONN].values ) { names[0] = slap_propnames[PROP_CONN]; names[1] = NULL; prop_set( props, names[0], (char *)&conn, sizeof( conn ) ); } /* Already been here? */ if ( auxvals[which].values ) goto done; /* Normally we require an authzID to have a u: or dn: prefix. * However, SASL frequently gives us an authzID that is just * an exact copy of the authcID, without a prefix. We need to * detect and allow this condition. If SASL calls canonicalize * with SASL_CU_AUTHID|SASL_CU_AUTHZID this is a no-brainer. * But if it's broken into two calls, we need to remember the * authcID so that we can compare the authzID later. We store * the authcID temporarily in conn->c_sasl_dn. We necessarily * finish Canonicalizing before Authorizing, so there is no * conflict with slap_sasl_authorize's use of this temp var. * * The SASL EXTERNAL mech is backwards from all the other mechs, * it does authzID before the authcID. If we see that authzID * has already been done, don't do anything special with authcID. */ if ( flags == SASL_CU_AUTHID && !auxvals[PROP_AUTHZ].values ) { conn->c_sasl_dn.bv_val = (char *) in; } else if ( flags == SASL_CU_AUTHZID && conn->c_sasl_dn.bv_val ) { rc = strcmp( in, conn->c_sasl_dn.bv_val ); conn->c_sasl_dn.bv_val = NULL; /* They were equal, no work needed */ if ( !rc ) goto done; } rc = slap_sasl_getdn( conn, NULL, (char *)in, inlen, (char *)user_realm, &dn, (flags & SASL_CU_AUTHID) ? SLAP_GETDN_AUTHCID : SLAP_GETDN_AUTHZID ); if ( rc != LDAP_SUCCESS ) { sasl_seterror( sconn, 0, ldap_err2string( rc ) ); return SASL_NOAUTHZ; } names[0] = slap_propnames[which]; names[1] = NULL; prop_set( props, names[0], (char *)&dn, sizeof( dn ) ); #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ENTRY, "slap_sasl_canonicalize: conn %d %s=\"%s\"\n", conn ? conn->c_connid : -1, names[0]+1, dn.bv_val ? dn.bv_val : "" ); #else Debug( LDAP_DEBUG_ARGS, "SASL Canonicalize [conn=%ld]: %s=\"%s\"\n", conn ? conn->c_connid : -1, names[0]+1, dn.bv_val ? dn.bv_val : "" ); #endif done: AC_MEMCPY( out, in, inlen ); out[inlen] = '\0'; *out_len = inlen; return SASL_OK; } static int slap_sasl_authorize( sasl_conn_t *sconn, void *context, char *requested_user, unsigned rlen, char *auth_identity, unsigned alen, const char *def_realm, unsigned urlen, struct propctx *props) { Connection *conn = (Connection *)context; struct propval auxvals[3]; struct berval authcDN, authzDN; int rc; #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ENTRY, "slap_sasl_authorize: conn %d authcid=\"%s\" authzid=\"%s\"\n", conn ? conn->c_connid : -1, auth_identity, requested_user); #else Debug( LDAP_DEBUG_ARGS, "SASL proxy authorize [conn=%ld]: " "authcid=\"%s\" authzid=\"%s\"\n", conn ? conn->c_connid : -1, auth_identity, requested_user ); #endif if ( conn->c_sasl_dn.bv_val ) { ch_free( conn->c_sasl_dn.bv_val ); conn->c_sasl_dn.bv_val = NULL; conn->c_sasl_dn.bv_len = 0; } /* Skip PROP_CONN */ prop_getnames( props, slap_propnames+1, auxvals ); AC_MEMCPY( &authcDN, auxvals[0].values[0], sizeof(authcDN) ); /* Nothing to do if no authzID was given */ if ( !auxvals[1].name || !auxvals[1].values ) { conn->c_sasl_dn = authcDN; goto ok; } AC_MEMCPY( &authzDN, auxvals[1].values[0], sizeof(authzDN) ); rc = slap_sasl_authorized( conn->c_sasl_bindop, &authcDN, &authzDN ); ch_free( authcDN.bv_val ); if ( rc != LDAP_SUCCESS ) { #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, INFO, "slap_sasl_authorize: conn %ld " "proxy authorization disallowed (%d)\n", (long)(conn ? conn->c_connid : -1), rc, 0 ); #else Debug( LDAP_DEBUG_TRACE, "SASL Proxy Authorize [conn=%ld]: " "proxy authorization disallowed (%d)\n", (long) (conn ? conn->c_connid : -1), rc, 0 ); #endif sasl_seterror( sconn, 0, "not authorized" ); ch_free( authzDN.bv_val ); return SASL_NOAUTHZ; } conn->c_sasl_dn = authzDN; ok: if (conn->c_sasl_bindop) { Statslog( LDAP_DEBUG_STATS, "conn=%lu op=%lu BIND authcid=\"%s\"\n", conn->c_connid, conn->c_sasl_bindop->o_opid, auth_identity, 0, 0); } #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ENTRY, "slap_sasl_authorize: conn %d proxy authorization allowed\n", (long)(conn ? conn->c_connid : -1), 0, 0 ); #else Debug( LDAP_DEBUG_TRACE, "SASL Authorize [conn=%ld]: " " proxy authorization allowed\n", (long) (conn ? conn->c_connid : -1), 0, 0 ); #endif return SASL_OK; } #else static int slap_sasl_authorize( void *context, char *authcid, char *authzid, const char **user, const char **errstr) { struct berval authcDN, authzDN; int rc; Connection *conn = context; char *realm; *user = NULL; if ( conn->c_sasl_dn.bv_val ) { ch_free( conn->c_sasl_dn.bv_val ); conn->c_sasl_dn.bv_val = NULL; conn->c_sasl_dn.bv_len = 0; } #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ENTRY, "slap_sasl_authorize: conn %d authcid=\"%s\" authzid=\"%s\"\n", conn ? conn->c_connid : -1, authcid ? authcid : "", authzid ? authzid : "" ); #else Debug( LDAP_DEBUG_ARGS, "SASL Authorize [conn=%ld]: " "authcid=\"%s\" authzid=\"%s\"\n", (long) (conn ? conn->c_connid : -1), authcid ? authcid : "", authzid ? authzid : "" ); #endif /* Figure out how much data we have for the dn */ rc = sasl_getprop( conn->c_sasl_authctx, SASL_REALM, (void **)&realm ); if( rc != SASL_OK && rc != SASL_NOTDONE ) { #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ERR, "slap_sasl_authorize: getprop(REALM) failed.\n", 0, 0, 0 ); #else Debug(LDAP_DEBUG_TRACE, "authorize: getprop(REALM) failed!\n", 0,0,0); #endif *errstr = "Could not extract realm"; return SASL_NOAUTHZ; } /* Convert the identities to DN's. If no authzid was given, client will be bound as the DN matching their username */ rc = slap_sasl_getdn( conn, NULL, (char *)authcid, 0, realm, &authcDN, SLAP_GETDN_AUTHCID ); if( rc != LDAP_SUCCESS ) { *errstr = ldap_err2string( rc ); return SASL_NOAUTHZ; } if( ( authzid == NULL ) || !strcmp( authcid,authzid ) ) { #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ENTRY, "slap_sasl_authorize: conn %d Using authcDN=%s\n", conn ? conn->c_connid : -1, authcDN.bv_val, 0 ); #else Debug( LDAP_DEBUG_TRACE, "SASL Authorize [conn=%ld]: " "Using authcDN=%s\n", (long) (conn ? conn->c_connid : -1), authcDN.bv_val,0 ); #endif conn->c_sasl_dn = authcDN; goto ok; } rc = slap_sasl_getdn( conn, NULL, (char *)authzid, 0, realm, &authzDN, SLAP_GETDN_AUTHZID ); if( rc != LDAP_SUCCESS ) { ch_free( authcDN.bv_val ); *errstr = ldap_err2string( rc ); return SASL_NOAUTHZ; } rc = slap_sasl_authorized(conn->c_sasl_bindop, &authcDN, &authzDN ); ch_free( authcDN.bv_val ); if( rc ) { #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, INFO, "slap_sasl_authorize: conn %ld " "proxy authorization disallowed (%d)\n", (long)(conn ? conn->c_connid : -1), rc, 0 ); #else Debug( LDAP_DEBUG_TRACE, "SASL Authorize [conn=%ld]: " "proxy authorization disallowed (%d)\n", (long) (conn ? conn->c_connid : -1), rc, 0 ); #endif *errstr = "not authorized"; ch_free( authzDN.bv_val ); return SASL_NOAUTHZ; } conn->c_sasl_dn = authzDN; ok: #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, RESULTS, "slap_sasl_authorize: conn %d proxy authorization allowed\n", (long)(conn ? conn->c_connid : -1 ), 0, 0 ); #else Debug( LDAP_DEBUG_TRACE, "SASL Authorize [conn=%ld]: " " authorization allowed\n", (long) (conn ? conn->c_connid : -1), 0, 0 ); #endif if (conn->c_sasl_bindop) { Statslog( LDAP_DEBUG_STATS, "conn=%lu op=%lu BIND authcid=\"%s\"\n", conn->c_connid, conn->c_sasl_bindop->o_opid, authcid, 0, 0); } *errstr = NULL; return SASL_OK; } #endif /* SASL_VERSION_MAJOR >= 2 */ static int slap_sasl_err2ldap( int saslerr ) { int rc; switch (saslerr) { case SASL_OK: rc = LDAP_SUCCESS; break; case SASL_CONTINUE: rc = LDAP_SASL_BIND_IN_PROGRESS; break; case SASL_FAIL: rc = LDAP_OTHER; break; case SASL_NOMEM: rc = LDAP_OTHER; break; case SASL_NOMECH: rc = LDAP_AUTH_METHOD_NOT_SUPPORTED; break; case SASL_BADAUTH: rc = LDAP_INVALID_CREDENTIALS; break; case SASL_NOAUTHZ: rc = LDAP_INSUFFICIENT_ACCESS; break; case SASL_TOOWEAK: case SASL_ENCRYPT: rc = LDAP_INAPPROPRIATE_AUTH; break; default: rc = LDAP_OTHER; break; } return rc; } #endif int slap_sasl_init( void ) { #ifdef HAVE_CYRUS_SASL int rc; static sasl_callback_t server_callbacks[] = { { SASL_CB_LOG, &slap_sasl_log, NULL }, { SASL_CB_LIST_END, NULL, NULL } }; #ifdef HAVE_SASL_VERSION /* stringify the version number, sasl.h doesn't do it for us */ #define VSTR0(maj, min, pat) #maj "." #min "." #pat #define VSTR(maj, min, pat) VSTR0(maj, min, pat) #define SASL_VERSION_STRING VSTR(SASL_VERSION_MAJOR, SASL_VERSION_MINOR, \ SASL_VERSION_STEP) sasl_version( NULL, &rc ); if ( ((rc >> 16) != ((SASL_VERSION_MAJOR << 8)|SASL_VERSION_MINOR)) || (rc & 0xffff) < SASL_VERSION_STEP) { char version[sizeof("xxx.xxx.xxxxx")]; sprintf( version, "%u.%d.%d", (unsigned)rc >> 24, (rc >> 16) & 0xff, rc & 0xffff ); #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, INFO, "slap_sasl_init: SASL library version mismatch:" " expected " SASL_VERSION_STRING "," " got %s\n", version, 0, 0 ); #else Debug( LDAP_DEBUG_ANY, "slap_sasl_init: SASL library version mismatch:" " expected " SASL_VERSION_STRING "," " got %s\n", version, 0, 0 ); #endif return -1; } #endif /* SASL 2 does its own memory management internally */ #if SASL_VERSION_MAJOR < 2 sasl_set_alloc( ber_memalloc, ber_memcalloc, ber_memrealloc, ber_memfree ); #endif sasl_set_mutex( ldap_pvt_sasl_mutex_new, ldap_pvt_sasl_mutex_lock, ldap_pvt_sasl_mutex_unlock, ldap_pvt_sasl_mutex_dispose ); #if SASL_VERSION_MAJOR >= 2 generic_filter.f_desc = slap_schema.si_ad_objectClass; sasl_auxprop_add_plugin( "slapd", slap_auxprop_init ); #endif /* should provide callbacks for logging */ /* server name should be configurable */ rc = sasl_server_init( server_callbacks, "slapd" ); if( rc != SASL_OK ) { #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, INFO, "slap_sasl_init: init failed.\n", 0, 0, 0 ); #else Debug( LDAP_DEBUG_ANY, "sasl_server_init failed\n", 0, 0, 0 ); #endif #if SASL_VERSION_MAJOR < 2 /* A no-op used to make sure we linked with Cyrus 1.5 */ sasl_client_auth( NULL, NULL, NULL, 0, NULL, NULL ); #endif return -1; } #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, INFO, "slap_sasl_init: initialized!\n", 0, 0, 0 ); #else Debug( LDAP_DEBUG_TRACE, "slap_sasl_init: initialized!\n", 0, 0, 0 ); #endif /* default security properties */ memset( &sasl_secprops, '\0', sizeof(sasl_secprops) ); sasl_secprops.max_ssf = INT_MAX; sasl_secprops.maxbufsize = 65536; sasl_secprops.security_flags = SASL_SEC_NOPLAINTEXT|SASL_SEC_NOANONYMOUS; #endif return 0; } int slap_sasl_destroy( void ) { #ifdef HAVE_CYRUS_SASL sasl_done(); #endif free( global_host ); global_host = NULL; return 0; } int slap_sasl_open( Connection *conn, int reopen ) { int cb, sc = LDAP_SUCCESS; #if SASL_VERSION_MAJOR >= 2 char *ipremoteport = NULL, *iplocalport = NULL; #endif #ifdef HAVE_CYRUS_SASL sasl_conn_t *ctx = NULL; sasl_callback_t *session_callbacks; assert( conn->c_sasl_authctx == NULL ); if ( !reopen ) { assert( conn->c_sasl_extra == NULL ); session_callbacks = #if SASL_VERSION_MAJOR >= 2 SLAP_CALLOC( 5, sizeof(sasl_callback_t)); #else SLAP_CALLOC( 3, sizeof(sasl_callback_t)); #endif if( session_callbacks == NULL ) { #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ERR, "slap_sasl_open: SLAP_MALLOC failed", 0, 0, 0 ); #else Debug( LDAP_DEBUG_ANY, "slap_sasl_open: SLAP_MALLOC failed", 0, 0, 0 ); #endif return -1; } conn->c_sasl_extra = session_callbacks; session_callbacks[cb=0].id = SASL_CB_LOG; session_callbacks[cb].proc = &slap_sasl_log; session_callbacks[cb++].context = conn; session_callbacks[cb].id = SASL_CB_PROXY_POLICY; session_callbacks[cb].proc = &slap_sasl_authorize; session_callbacks[cb++].context = conn; #if SASL_VERSION_MAJOR >= 2 session_callbacks[cb].id = SASL_CB_CANON_USER; session_callbacks[cb].proc = &slap_sasl_canonicalize; session_callbacks[cb++].context = conn; /* XXXX: this should be conditional */ session_callbacks[cb].id = SASL_CB_SERVER_USERDB_CHECKPASS; session_callbacks[cb].proc = &slap_sasl_checkpass; session_callbacks[cb++].context = conn; #endif session_callbacks[cb].id = SASL_CB_LIST_END; session_callbacks[cb].proc = NULL; session_callbacks[cb++].context = NULL; } else { session_callbacks = conn->c_sasl_extra; } conn->c_sasl_layers = 0; if( global_host == NULL ) { global_host = ldap_pvt_get_fqdn( NULL ); } /* create new SASL context */ #if SASL_VERSION_MAJOR >= 2 if ( conn->c_sock_name.bv_len != 0 && strncmp( conn->c_sock_name.bv_val, "IP=", 3 ) == 0) { char *p; iplocalport = ch_strdup( conn->c_sock_name.bv_val + 3 ); /* Convert IPv6 addresses to address;port syntax. */ p = strrchr( iplocalport, ' ' ); /* Convert IPv4 addresses to address;port syntax. */ if ( p == NULL ) p = strchr( iplocalport, ':' ); if ( p != NULL ) { *p = ';'; } } if ( conn->c_peer_name.bv_len != 0 && strncmp( conn->c_peer_name.bv_val, "IP=", 3 ) == 0) { char *p; ipremoteport = ch_strdup( conn->c_peer_name.bv_val + 3 ); /* Convert IPv6 addresses to address;port syntax. */ p = strrchr( ipremoteport, ' ' ); /* Convert IPv4 addresses to address;port syntax. */ if ( p == NULL ) p = strchr( ipremoteport, ':' ); if ( p != NULL ) { *p = ';'; } } sc = sasl_server_new( "ldap", global_host, global_realm, iplocalport, ipremoteport, session_callbacks, SASL_SUCCESS_DATA, &ctx ); if ( iplocalport != NULL ) { ch_free( iplocalport ); } if ( ipremoteport != NULL ) { ch_free( ipremoteport ); } #else sc = sasl_server_new( "ldap", global_host, global_realm, session_callbacks, SASL_SECURITY_LAYER, &ctx ); #endif if( sc != SASL_OK ) { #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ERR, "slap_sasl_open: sasl_server_new failed: %d\n", sc, 0, 0 ); #else Debug( LDAP_DEBUG_ANY, "sasl_server_new failed: %d\n", sc, 0, 0 ); #endif return -1; } conn->c_sasl_authctx = ctx; if( sc == SASL_OK ) { sc = sasl_setprop( ctx, SASL_SEC_PROPS, &sasl_secprops ); if( sc != SASL_OK ) { #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ERR, "slap_sasl_open: sasl_setprop failed: %d \n", sc, 0, 0 ); #else Debug( LDAP_DEBUG_ANY, "sasl_setprop failed: %d\n", sc, 0, 0 ); #endif slap_sasl_close( conn ); return -1; } } sc = slap_sasl_err2ldap( sc ); #endif return sc; } int slap_sasl_external( Connection *conn, slap_ssf_t ssf, const char *auth_id ) { #if SASL_VERSION_MAJOR >= 2 int sc; sasl_conn_t *ctx = conn->c_sasl_authctx; if ( ctx == NULL ) { return LDAP_UNAVAILABLE; } sc = sasl_setprop( ctx, SASL_SSF_EXTERNAL, &ssf ); if ( sc != SASL_OK ) { return LDAP_OTHER; } sc = sasl_setprop( ctx, SASL_AUTH_EXTERNAL, auth_id ); if ( sc != SASL_OK ) { return LDAP_OTHER; } #elif defined(HAVE_CYRUS_SASL) int sc; sasl_conn_t *ctx = conn->c_sasl_authctx; sasl_external_properties_t extprops; if ( ctx == NULL ) { return LDAP_UNAVAILABLE; } memset( &extprops, '\0', sizeof(extprops) ); extprops.ssf = ssf; extprops.auth_id = (char *) auth_id; sc = sasl_setprop( ctx, SASL_SSF_EXTERNAL, (void *) &extprops ); if ( sc != SASL_OK ) { return LDAP_OTHER; } #endif return LDAP_SUCCESS; } int slap_sasl_reset( Connection *conn ) { return LDAP_SUCCESS; } char ** slap_sasl_mechs( Connection *conn ) { char **mechs = NULL; #ifdef HAVE_CYRUS_SASL sasl_conn_t *ctx = conn->c_sasl_authctx; if( ctx == NULL ) ctx = conn->c_sasl_sockctx; if( ctx != NULL ) { int sc; SASL_CONST char *mechstr; sc = sasl_listmech( ctx, NULL, NULL, ",", NULL, &mechstr, NULL, NULL ); if( sc != SASL_OK ) { #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ERR, "slap_sasl_mechs: sasl_listmech failed: %d\n", sc, 0, 0 ); #else Debug( LDAP_DEBUG_ANY, "slap_sasl_listmech failed: %d\n", sc, 0, 0 ); #endif return NULL; } mechs = ldap_str2charray( mechstr, "," ); #if SASL_VERSION_MAJOR < 2 ch_free( mechstr ); #endif } #endif return mechs; } int slap_sasl_close( Connection *conn ) { #ifdef HAVE_CYRUS_SASL sasl_conn_t *ctx = conn->c_sasl_authctx; if( ctx != NULL ) { sasl_dispose( &ctx ); } if ( conn->c_sasl_sockctx && conn->c_sasl_authctx != conn->c_sasl_sockctx ) { ctx = conn->c_sasl_sockctx; sasl_dispose( &ctx ); } conn->c_sasl_authctx = NULL; conn->c_sasl_sockctx = NULL; conn->c_sasl_done = 0; free( conn->c_sasl_extra ); conn->c_sasl_extra = NULL; #endif return LDAP_SUCCESS; } int slap_sasl_bind( Operation *op, SlapReply *rs ) { #ifdef HAVE_CYRUS_SASL sasl_conn_t *ctx = op->o_conn->c_sasl_authctx; struct berval response; unsigned reslen = 0; int sc; #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ENTRY, "sasl_bind: dn=\"%s\" mech=%s datalen=%ld\n", op->o_req_dn.bv_len ? op->o_req_dn.bv_val : "", op->o_conn->c_sasl_bind_in_progress ? "" : op->o_conn->c_sasl_bind_mech.bv_val, op->orb_cred.bv_len ); #else Debug(LDAP_DEBUG_ARGS, "==> sasl_bind: dn=\"%s\" mech=%s datalen=%ld\n", op->o_req_dn.bv_len ? op->o_req_dn.bv_val : "", op->o_conn->c_sasl_bind_in_progress ? "" : op->o_conn->c_sasl_bind_mech.bv_val, op->orb_cred.bv_len ); #endif if( ctx == NULL ) { send_ldap_error( op, rs, LDAP_UNAVAILABLE, "SASL unavailable on this session" ); return rs->sr_err; } #if SASL_VERSION_MAJOR >= 2 #define START( ctx, mech, cred, clen, resp, rlen, err ) \ sasl_server_start( ctx, mech, cred, clen, resp, rlen ) #define STEP( ctx, cred, clen, resp, rlen, err ) \ sasl_server_step( ctx, cred, clen, resp, rlen ) #else #define START( ctx, mech, cred, clen, resp, rlen, err ) \ sasl_server_start( ctx, mech, cred, clen, resp, rlen, err ) #define STEP( ctx, cred, clen, resp, rlen, err ) \ sasl_server_step( ctx, cred, clen, resp, rlen, err ) #endif if ( !op->o_conn->c_sasl_bind_in_progress ) { /* If we already authenticated once, must use a new context */ if ( op->o_conn->c_sasl_done ) { slap_ssf_t ssf = 0; const char *authid = NULL; #if SASL_VERSION_MAJOR >= 2 sasl_getprop( ctx, SASL_SSF_EXTERNAL, (void *)&ssf ); sasl_getprop( ctx, SASL_AUTH_EXTERNAL, (void *)&authid ); if ( authid ) authid = ch_strdup( authid ); #endif if ( ctx != op->o_conn->c_sasl_sockctx ) { sasl_dispose( &ctx ); } op->o_conn->c_sasl_authctx = NULL; slap_sasl_open( op->o_conn, 1 ); ctx = op->o_conn->c_sasl_authctx; #if SASL_VERSION_MAJOR >= 2 if ( authid ) { sasl_setprop( ctx, SASL_SSF_EXTERNAL, &ssf ); sasl_setprop( ctx, SASL_AUTH_EXTERNAL, authid ); ch_free( (char *)authid ); } #endif } sc = START( ctx, op->o_conn->c_sasl_bind_mech.bv_val, op->orb_cred.bv_val, op->orb_cred.bv_len, (SASL_CONST char **)&response.bv_val, &reslen, &rs->sr_text ); } else { sc = STEP( ctx, op->orb_cred.bv_val, op->orb_cred.bv_len, (SASL_CONST char **)&response.bv_val, &reslen, &rs->sr_text ); } response.bv_len = reslen; if ( sc == SASL_OK ) { sasl_ssf_t *ssf = NULL; op->orb_edn = op->o_conn->c_sasl_dn; op->o_conn->c_sasl_dn.bv_val = NULL; op->o_conn->c_sasl_dn.bv_len = 0; op->o_conn->c_sasl_done = 1; rs->sr_err = LDAP_SUCCESS; (void) sasl_getprop( ctx, SASL_SSF, (void *)&ssf ); op->orb_ssf = ssf ? *ssf : 0; ctx = NULL; if( op->orb_ssf ) { ldap_pvt_thread_mutex_lock( &op->o_conn->c_mutex ); op->o_conn->c_sasl_layers++; /* If there's an old layer, set sockctx to NULL to * tell connection_read() to wait for us to finish. * Otherwise there is a race condition: we have to * send the Bind response using the old security * context and then remove it before reading any * new messages. */ if ( op->o_conn->c_sasl_sockctx ) { ctx = op->o_conn->c_sasl_sockctx; op->o_conn->c_sasl_sockctx = NULL; } else { op->o_conn->c_sasl_sockctx = op->o_conn->c_sasl_authctx; } ldap_pvt_thread_mutex_unlock( &op->o_conn->c_mutex ); } /* Must send response using old security layer */ if (response.bv_len) rs->sr_sasldata = &response; send_ldap_sasl( op, rs ); /* Now dispose of the old security layer. */ if ( ctx ) { ldap_pvt_thread_mutex_lock( &op->o_conn->c_mutex ); ldap_pvt_sasl_remove( op->o_conn->c_sb ); op->o_conn->c_sasl_sockctx = op->o_conn->c_sasl_authctx; ldap_pvt_thread_mutex_unlock( &op->o_conn->c_mutex ); sasl_dispose( &ctx ); } } else if ( sc == SASL_CONTINUE ) { rs->sr_err = LDAP_SASL_BIND_IN_PROGRESS, rs->sr_sasldata = &response; send_ldap_sasl( op, rs ); } else { #if SASL_VERSION_MAJOR >= 2 rs->sr_text = sasl_errdetail( ctx ); #endif rs->sr_err = slap_sasl_err2ldap( sc ), send_ldap_result( op, rs ); } #if SASL_VERSION_MAJOR < 2 if( response.bv_len ) { ch_free( response.bv_val ); } #endif #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, RESULTS, "slap_sasl_bind: rc=%d\n", rs->sr_err, 0, 0 ); #else Debug(LDAP_DEBUG_TRACE, "<== slap_sasl_bind: rc=%d\n", rs->sr_err, 0, 0); #endif #else send_ldap_error( op, rs, LDAP_UNAVAILABLE, "SASL not supported" ); #endif return rs->sr_err; } char* slap_sasl_secprops( const char *in ) { #ifdef HAVE_CYRUS_SASL int rc = ldap_pvt_sasl_secprops( in, &sasl_secprops ); return rc == LDAP_SUCCESS ? NULL : "Invalid security properties"; #else return "SASL not supported"; #endif } #ifdef HAVE_CYRUS_SASL int slap_sasl_setpass( Operation *op, SlapReply *rs ) { struct berval id = { 0, NULL }; /* needs to come from connection */ struct berval new = { 0, NULL }; struct berval old = { 0, NULL }; assert( ber_bvcmp( &slap_EXOP_MODIFY_PASSWD, &op->ore_reqoid ) == 0 ); rs->sr_err = sasl_getprop( op->o_conn->c_sasl_authctx, SASL_USERNAME, (SASL_CONST void **)&id.bv_val ); if( rs->sr_err != SASL_OK ) { rs->sr_text = "unable to retrieve SASL username"; rs->sr_err = LDAP_OTHER; goto done; } #ifdef NEW_LOGGING LDAP_LOG( BACKEND, ENTRY, "slap_sasl_setpass: \"%s\"\n", id.bv_val ? id.bv_val : "", 0, 0); #else Debug( LDAP_DEBUG_ARGS, "==> slap_sasl_setpass: \"%s\"\n", id.bv_val ? id.bv_val : "", 0, 0 ); #endif rs->sr_err = slap_passwd_parse( op->ore_reqdata, NULL, &old, &new, &rs->sr_text ); if( rs->sr_err != LDAP_SUCCESS ) { goto done; } if( new.bv_len == 0 ) { slap_passwd_generate(&new); if( new.bv_len == 0 ) { rs->sr_text = "password generation failed."; rs->sr_err = LDAP_OTHER; goto done; } rs->sr_rspdata = slap_passwd_return( &new ); } #if SASL_VERSION_MAJOR < 2 rs->sr_err = sasl_setpass( op->o_conn->c_sasl_authctx, id.bv_val, new.bv_val, new.bv_len, 0, &rs->sr_text ); #else rs->sr_err = sasl_setpass( op->o_conn->c_sasl_authctx, id.bv_val, new.bv_val, new.bv_len, old.bv_val, old.bv_len, 0 ); if( rs->sr_err != SASL_OK ) { rs->sr_text = sasl_errdetail( op->o_conn->c_sasl_authctx ); } #endif switch(rs->sr_err) { case SASL_OK: rs->sr_err = LDAP_SUCCESS; break; case SASL_NOCHANGE: case SASL_NOMECH: case SASL_DISABLED: case SASL_PWLOCK: case SASL_FAIL: case SASL_BADPARAM: default: rs->sr_err = LDAP_OTHER; } done: return rs->sr_err; } #endif /* HAVE_CYRUS_SASL */ /* Take any sort of identity string and return a DN with the "dn:" prefix. The string returned in *dn is in its own allocated memory, and must be free'd by the calling process. -Mark Adamson, Carnegie Mellon The "dn:" prefix is no longer used anywhere inside slapd. It is only used on strings passed in directly from SASL. -Howard Chu, Symas Corp. */ #define SET_NONE 0 #define SET_DN 1 #define SET_U 2 static struct berval ext_bv = BER_BVC( "EXTERNAL" ); int slap_sasl_getdn( Connection *conn, Operation *op, char *id, int len, char *user_realm, struct berval *dn, int flags ) { char *c1; int rc, is_dn = SET_NONE, do_norm = 1; struct berval dn2; #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ENTRY, "slap_sasl_getdn: conn %d id=%s [len=%d]\n", conn ? conn->c_connid : -1, id ? (*id ? id : "") : "NULL", len ); #else Debug( LDAP_DEBUG_ARGS, "slap_sasl_getdn: id=%s [len=%d]\n", id ? ( *id ? id : "" ) : "NULL", len, 0 ); #endif if ( !op ) { op = conn->c_sasl_bindop; } dn->bv_val = NULL; dn->bv_len = 0; if ( id ) { if ( len == 0 ) len = strlen( id ); /* Blatantly anonymous ID */ if ( len == sizeof("anonymous") - 1 && !strcasecmp( id, "anonymous" ) ) { return( LDAP_SUCCESS ); } } else { len = 0; } /* An authcID needs to be converted to authzID form. Set the * values directly into *dn; they will be normalized later. (and * normalizing always makes a new copy.) An ID from a TLS certificate * is already normalized, so copy it and skip normalization. */ if( flags & SLAP_GETDN_AUTHCID ) { if( conn->c_sasl_bind_mech.bv_len == ext_bv.bv_len && strcasecmp( ext_bv.bv_val, conn->c_sasl_bind_mech.bv_val ) == 0 ) { /* EXTERNAL DNs are already normalized */ do_norm = 0; is_dn = SET_DN; ber_str2bv_x( id, len, 1, dn, op->o_tmpmemctx ); } else { /* convert to u: form */ is_dn = SET_U; dn->bv_val = id; dn->bv_len = len; } } if( is_dn == SET_NONE ) { if( !strncasecmp( id, "u:", sizeof("u:")-1 )) { is_dn = SET_U; dn->bv_val = id+2; dn->bv_len = len-2; } else if ( !strncasecmp( id, "dn:", sizeof("dn:")-1) ) { is_dn = SET_DN; dn->bv_val = id+3; dn->bv_len = len-3; } } /* No other possibilities from here */ if( is_dn == SET_NONE ) { dn->bv_val = NULL; dn->bv_len = 0; return( LDAP_INAPPROPRIATE_AUTH ); } /* Username strings */ if( is_dn == SET_U ) { char *p, *realm; len = dn->bv_len + sizeof("uid=")-1 + sizeof(",cn=auth")-1; /* username may have embedded realm name */ if( ( realm = strchr( dn->bv_val, '@') ) ) { *realm++ = '\0'; len += sizeof(",cn=")-2; } else if( user_realm && *user_realm ) { len += strlen( user_realm ) + sizeof(",cn=")-1; } if( conn->c_sasl_bind_mech.bv_len ) { len += conn->c_sasl_bind_mech.bv_len + sizeof(",cn=")-1; } /* Build the new dn */ c1 = dn->bv_val; dn->bv_val = sl_malloc( len+1, op->o_tmpmemctx ); if( dn->bv_val == NULL ) { #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ERR, "slap_sasl_getdn: SLAP_MALLOC failed", 0, 0, 0 ); #else Debug( LDAP_DEBUG_ANY, "slap_sasl_getdn: SLAP_MALLOC failed", 0, 0, 0 ); #endif return LDAP_OTHER; } p = lutil_strcopy( dn->bv_val, "uid=" ); p = lutil_strncopy( p, c1, dn->bv_len ); if( realm ) { int rlen = dn->bv_len - ( realm - c1 ); p = lutil_strcopy( p, ",cn=" ); p = lutil_strncopy( p, realm, rlen ); realm[-1] = '@'; } else if( user_realm && *user_realm ) { p = lutil_strcopy( p, ",cn=" ); p = lutil_strcopy( p, user_realm ); } if( conn->c_sasl_bind_mech.bv_len ) { p = lutil_strcopy( p, ",cn=" ); p = lutil_strcopy( p, conn->c_sasl_bind_mech.bv_val ); } p = lutil_strcopy( p, ",cn=auth" ); dn->bv_len = p - dn->bv_val; #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ENTRY, "slap_sasl_getdn: u:id converted to %s.\n", dn->bv_val, 0, 0 ); #else Debug( LDAP_DEBUG_TRACE, "getdn: u:id converted to %s\n", dn->bv_val,0,0 ); #endif } else { /* Dup the DN in any case, so we don't risk * leaks or dangling pointers later, * and the DN value is '\0' terminated */ ber_dupbv_x( &dn2, dn, op->o_tmpmemctx ); dn->bv_val = dn2.bv_val; } /* All strings are in DN form now. Normalize if needed. */ if ( do_norm ) { rc = dnNormalize( 0, NULL, NULL, dn, &dn2, op->o_tmpmemctx ); /* User DNs were constructed above and must be freed now */ sl_free( dn->bv_val, op->o_tmpmemctx ); if ( rc != LDAP_SUCCESS ) { dn->bv_val = NULL; dn->bv_len = 0; return rc; } *dn = dn2; } /* Run thru regexp */ slap_sasl2dn( op, dn, &dn2 ); if( dn2.bv_val ) { sl_free( dn->bv_val, op->o_tmpmemctx ); *dn = dn2; #ifdef NEW_LOGGING LDAP_LOG( TRANSPORT, ENTRY, "slap_sasl_getdn: dn:id converted to %s.\n", dn->bv_val, 0, 0 ); #else Debug( LDAP_DEBUG_TRACE, "getdn: dn:id converted to %s\n", dn->bv_val, 0, 0 ); #endif } return( LDAP_SUCCESS ); }