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/* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed with
* this work for additional information regarding copyright ownership.
* The ASF licenses this file to You under the Apache License, Version 2.0
* (the "License"); you may not use this file except in compliance with
* the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "ap_provider.h"
#include "httpd.h"
#include "http_config.h"
#include "ap_provider.h"
#include "http_core.h"
#include "http_log.h"
#include "http_protocol.h"
#include "http_request.h"
#include "util_ldap.h"
#include "mod_auth.h"
#include "apr_strings.h"
#include "apr_xlate.h"
#define APR_WANT_STRFUNC
#include "apr_want.h"
#include "apr_lib.h"
#include <ctype.h>
#if !APR_HAS_LDAP
#error mod_authnz_ldap requires APR-util to have LDAP support built in. To fix add --with-ldap to ./configure.
#endif
static char *default_attributes[3] = { "member", "uniqueMember", NULL };
typedef struct {
apr_pool_t *pool; /* Pool that this config is allocated from */
#if APR_HAS_THREADS
apr_thread_mutex_t *lock; /* Lock for this config */
#endif
/* These parameters are all derived from the AuthLDAPURL directive */
char *url; /* String representation of the URL */
char *host; /* Name of the LDAP server (or space separated list) */
int port; /* Port of the LDAP server */
char *basedn; /* Base DN to do all searches from */
char *attribute; /* Attribute to search for */
char **attributes; /* Array of all the attributes to return */
int scope; /* Scope of the search */
char *filter; /* Filter to further limit the search */
deref_options deref; /* how to handle alias dereferening */
char *binddn; /* DN to bind to server (can be NULL) */
char *bindpw; /* Password to bind to server (can be NULL) */
int bind_authoritative; /* If true, will return errors when bind fails */
int user_is_dn; /* If true, r->user is replaced by DN during authn */
char *remote_user_attribute; /* If set, r->user is replaced by this attribute during authn */
int compare_dn_on_server; /* If true, will use server to do DN compare */
int have_ldap_url; /* Set if we have found an LDAP url */
apr_array_header_t *groupattr; /* List of Group attributes identifying user members. Default:"member uniqueMember" */
int group_attrib_is_dn; /* If true, the group attribute is the DN, otherwise,
it's the exact string passed by the HTTP client */
char **sgAttributes; /* Array of strings constructed (post-config) from subgroupattrs. Last entry is NULL. */
apr_array_header_t *subgroupclasses; /* List of object classes of sub-groups. Default:"groupOfNames groupOfUniqueNames" */
int maxNestingDepth; /* Maximum recursive nesting depth permitted during subgroup processing. Default: 10 */
int secure; /* True if SSL connections are requested */
char *authz_prefix; /* Prefix for environment variables added during authz */
int initial_bind_as_user; /* true if we should try to bind (to lookup DN) directly with the basic auth username */
ap_regex_t *bind_regex; /* basic auth -> bind'able username regex */
const char *bind_subst; /* basic auth -> bind'able username substitution */
int search_as_user; /* true if authz searches should be done with the users credentials (when we did authn) */
int compare_as_user; /* true if authz compares should be done with the users credentials (when we did authn) */
} authn_ldap_config_t;
typedef struct {
char *dn; /* The saved dn from a successful search */
char *user; /* The username provided by the client */
const char **vals; /* The additional values pulled during the DN search*/
char *password; /* if this module successfully authenticates, the basic auth password, else null */
} authn_ldap_request_t;
enum auth_ldap_phase {
LDAP_AUTHN, LDAP_AUTHZ
};
enum auth_ldap_optype {
LDAP_SEARCH, LDAP_COMPARE, LDAP_COMPARE_AND_SEARCH /* nested groups */
};
/* maximum group elements supported */
#define GROUPATTR_MAX_ELTS 10
module AP_MODULE_DECLARE_DATA authnz_ldap_module;
static APR_OPTIONAL_FN_TYPE(uldap_connection_close) *util_ldap_connection_close;
static APR_OPTIONAL_FN_TYPE(uldap_connection_find) *util_ldap_connection_find;
static APR_OPTIONAL_FN_TYPE(uldap_cache_comparedn) *util_ldap_cache_comparedn;
static APR_OPTIONAL_FN_TYPE(uldap_cache_compare) *util_ldap_cache_compare;
static APR_OPTIONAL_FN_TYPE(uldap_cache_check_subgroups) *util_ldap_cache_check_subgroups;
static APR_OPTIONAL_FN_TYPE(uldap_cache_checkuserid) *util_ldap_cache_checkuserid;
static APR_OPTIONAL_FN_TYPE(uldap_cache_getuserdn) *util_ldap_cache_getuserdn;
static APR_OPTIONAL_FN_TYPE(uldap_ssl_supported) *util_ldap_ssl_supported;
static apr_hash_t *charset_conversions = NULL;
static char *to_charset = NULL; /* UTF-8 identifier derived from the charset.conv file */
/* Derive a code page ID give a language name or ID */
static char* derive_codepage_from_lang (apr_pool_t *p, char *language)
{
char *charset;
if (!language) /* our default codepage */
return apr_pstrdup(p, "ISO-8859-1");
charset = (char*) apr_hash_get(charset_conversions, language, APR_HASH_KEY_STRING);
if (!charset) {
language[2] = '\0';
charset = (char*) apr_hash_get(charset_conversions, language, APR_HASH_KEY_STRING);
}
if (charset) {
charset = apr_pstrdup(p, charset);
}
return charset;
}
static apr_xlate_t* get_conv_set (request_rec *r)
{
char *lang_line = (char*)apr_table_get(r->headers_in, "accept-language");
char *lang;
apr_xlate_t *convset;
if (lang_line) {
lang_line = apr_pstrdup(r->pool, lang_line);
for (lang = lang_line;*lang;lang++) {
if ((*lang == ',') || (*lang == ';')) {
*lang = '\0';
break;
}
}
lang = derive_codepage_from_lang(r->pool, lang_line);
if (lang && (apr_xlate_open(&convset, to_charset, lang, r->pool) == APR_SUCCESS)) {
return convset;
}
}
return NULL;
}
static const char* authn_ldap_xlate_password(request_rec *r,
const char* sent_password)
{
apr_xlate_t *convset = NULL;
apr_size_t inbytes;
apr_size_t outbytes;
char *outbuf;
if (charset_conversions && (convset = get_conv_set(r)) ) {
inbytes = strlen(sent_password);
outbytes = (inbytes+1)*3;
outbuf = apr_pcalloc(r->pool, outbytes);
/* Convert the password to UTF-8. */
if (apr_xlate_conv_buffer(convset, sent_password, &inbytes, outbuf,
&outbytes) == APR_SUCCESS)
return outbuf;
}
return sent_password;
}
/*
* Build the search filter, or at least as much of the search filter that
* will fit in the buffer. We don't worry about the buffer not being able
* to hold the entire filter. If the buffer wasn't big enough to hold the
* filter, ldap_search_s will complain, but the only situation where this
* is likely to happen is if the client sent a really, really long
* username, most likely as part of an attack.
*
* The search filter consists of the filter provided with the URL,
* combined with a filter made up of the attribute provided with the URL,
* and the actual username passed by the HTTP client. For example, assume
* that the LDAP URL is
*
* ldap://ldap.airius.com/ou=People, o=Airius?uid??(posixid=*)
*
* Further, assume that the userid passed by the client was `userj'. The
* search filter will be (&(posixid=*)(uid=userj)).
*/
#define FILTER_LENGTH MAX_STRING_LEN
static void authn_ldap_build_filter(char *filtbuf,
request_rec *r,
const char* sent_user,
const char* sent_filter,
authn_ldap_config_t *sec)
{
char *p, *q, *filtbuf_end;
char *user, *filter;
apr_xlate_t *convset = NULL;
apr_size_t inbytes;
apr_size_t outbytes;
char *outbuf;
int nofilter = 0;
if (sent_user != NULL) {
user = apr_pstrdup (r->pool, sent_user);
}
else
return;
if (sent_filter != NULL) {
filter = apr_pstrdup (r->pool, sent_filter);
}
else
filter = sec->filter;
if (charset_conversions) {
convset = get_conv_set(r);
}
if (convset) {
inbytes = strlen(user);
outbytes = (inbytes+1)*3;
outbuf = apr_pcalloc(r->pool, outbytes);
/* Convert the user name to UTF-8. This is only valid for LDAP v3 */
if (apr_xlate_conv_buffer(convset, user, &inbytes, outbuf, &outbytes) == APR_SUCCESS) {
user = apr_pstrdup(r->pool, outbuf);
}
}
/*
* Create the first part of the filter, which consists of the
* config-supplied portions.
*/
if ((nofilter = (filter && !strcasecmp(filter, "none")))) {
apr_snprintf(filtbuf, FILTER_LENGTH, "(%s=", sec->attribute);
}
else {
apr_snprintf(filtbuf, FILTER_LENGTH, "(&(%s)(%s=", filter, sec->attribute);
}
/*
* Now add the client-supplied username to the filter, ensuring that any
* LDAP filter metachars are escaped.
*/
filtbuf_end = filtbuf + FILTER_LENGTH - 1;
#if APR_HAS_MICROSOFT_LDAPSDK
for (p = user, q=filtbuf + strlen(filtbuf);
*p && q < filtbuf_end; ) {
if (strchr("*()\\", *p) != NULL) {
if ( q + 3 >= filtbuf_end)
break; /* Don't write part of escape sequence if we can't write all of it */
*q++ = '\\';
switch ( *p++ )
{
case '*':
*q++ = '2';
*q++ = 'a';
break;
case '(':
*q++ = '2';
*q++ = '8';
break;
case ')':
*q++ = '2';
*q++ = '9';
break;
case '\\':
*q++ = '5';
*q++ = 'c';
break;
}
}
else
*q++ = *p++;
}
#else
for (p = user, q=filtbuf + strlen(filtbuf);
*p && q < filtbuf_end; *q++ = *p++) {
if (strchr("*()\\", *p) != NULL) {
*q++ = '\\';
if (q >= filtbuf_end) {
break;
}
}
}
#endif
*q = '\0';
/*
* Append the closing parens of the filter, unless doing so would
* overrun the buffer.
*/
if (nofilter) {
if (q + 1 <= filtbuf_end)
strcat(filtbuf, ")");
}
else {
if (q + 2 <= filtbuf_end)
strcat(filtbuf, "))");
}
}
static void *create_authnz_ldap_dir_config(apr_pool_t *p, char *d)
{
authn_ldap_config_t *sec =
(authn_ldap_config_t *)apr_pcalloc(p, sizeof(authn_ldap_config_t));
sec->pool = p;
#if APR_HAS_THREADS
apr_thread_mutex_create(&sec->lock, APR_THREAD_MUTEX_DEFAULT, p);
#endif
/*
sec->authz_enabled = 1;
*/
sec->groupattr = apr_array_make(p, GROUPATTR_MAX_ELTS,
sizeof(struct mod_auth_ldap_groupattr_entry_t));
sec->subgroupclasses = apr_array_make(p, GROUPATTR_MAX_ELTS,
sizeof(struct mod_auth_ldap_groupattr_entry_t));
sec->have_ldap_url = 0;
sec->url = "";
sec->host = NULL;
sec->binddn = NULL;
sec->bindpw = NULL;
sec->bind_authoritative = 1;
sec->deref = always;
sec->group_attrib_is_dn = 1;
sec->secure = -1; /*Initialize to unset*/
sec->maxNestingDepth = 10;
sec->sgAttributes = apr_pcalloc(p, sizeof (char *) * GROUPATTR_MAX_ELTS + 1);
sec->user_is_dn = 0;
sec->remote_user_attribute = NULL;
sec->compare_dn_on_server = 0;
sec->authz_prefix = AUTHZ_PREFIX;
return sec;
}
static apr_status_t authnz_ldap_cleanup_connection_close(void *param)
{
util_ldap_connection_t *ldc = param;
util_ldap_connection_close(ldc);
return APR_SUCCESS;
}
static int set_request_vars(request_rec *r, enum auth_ldap_phase phase) {
char *prefix = NULL;
int prefix_len;
int remote_user_attribute_set = 0;
authn_ldap_request_t *req =
(authn_ldap_request_t *)ap_get_module_config(r->request_config, &authnz_ldap_module);
authn_ldap_config_t *sec =
(authn_ldap_config_t *)ap_get_module_config(r->per_dir_config, &authnz_ldap_module);
const char **vals = req->vals;
prefix = (phase == LDAP_AUTHN) ? AUTHN_PREFIX : sec->authz_prefix;
prefix_len = strlen(prefix);
if (sec->attributes && vals) {
apr_table_t *e = r->subprocess_env;
int i = 0;
while (sec->attributes[i]) {
char *str = apr_pstrcat(r->pool, prefix, sec->attributes[i], NULL);
int j = prefix_len;
while (str[j]) {
str[j] = apr_toupper(str[j]);
j++;
}
apr_table_setn(e, str, vals[i] ? vals[i] : "");
/* handle remote_user_attribute, if set */
if ((phase == LDAP_AUTHN) &&
sec->remote_user_attribute &&
!strcmp(sec->remote_user_attribute, sec->attributes[i])) {
r->user = (char *)apr_pstrdup(r->pool, vals[i]);
remote_user_attribute_set = 1;
}
i++;
}
}
return remote_user_attribute_set;
}
static const char *ldap_determine_binddn(request_rec *r, const char *user) {
authn_ldap_config_t *sec =
(authn_ldap_config_t *)ap_get_module_config(r->per_dir_config, &authnz_ldap_module);
const char *result = user;
ap_regmatch_t regm[AP_MAX_REG_MATCH];
if (NULL == user || NULL == sec || !sec->bind_regex || !sec->bind_subst) {
return result;
}
if (!ap_regexec(sec->bind_regex, user, AP_MAX_REG_MATCH, regm, 0)) {
char *substituted = ap_pregsub(r->pool, sec->bind_subst, user, AP_MAX_REG_MATCH, regm);
if (NULL != substituted) {
result = substituted;
}
}
apr_table_set(r->subprocess_env, "LDAP_BINDASUSER", result);
return result;
}
/* Some LDAP servers restrict who can search or compare, and the hard-coded ID
* might be good for the DN lookup but not for later operations.
*/
static util_ldap_connection_t *get_connection_for_authz(request_rec *r, enum auth_ldap_optype type) {
authn_ldap_request_t *req =
(authn_ldap_request_t *)ap_get_module_config(r->request_config, &authnz_ldap_module);
authn_ldap_config_t *sec =
(authn_ldap_config_t *)ap_get_module_config(r->per_dir_config, &authnz_ldap_module);
char *binddn = sec->binddn;
char *bindpw = sec->bindpw;
/* If the per-request config isn't set, we didn't authenticate this user, and leave the default credentials */
if (req && req->password &&
((type == LDAP_SEARCH && sec->search_as_user) ||
(type == LDAP_COMPARE && sec->compare_as_user) ||
(type == LDAP_COMPARE_AND_SEARCH && sec->compare_as_user && sec->search_as_user))){
binddn = req->dn;
bindpw = req->password;
}
return util_ldap_connection_find(r, sec->host, sec->port,
binddn, bindpw,
sec->deref, sec->secure);
}
/*
* Authentication Phase
* --------------------
*
* This phase authenticates the credentials the user has sent with
* the request (ie the username and password are checked). This is done
* by making an attempt to bind to the LDAP server using this user's
* DN and the supplied password.
*
*/
static authn_status authn_ldap_check_password(request_rec *r, const char *user,
const char *password)
{
char filtbuf[FILTER_LENGTH];
authn_ldap_config_t *sec =
(authn_ldap_config_t *)ap_get_module_config(r->per_dir_config, &authnz_ldap_module);
util_ldap_connection_t *ldc = NULL;
int result = 0;
int remote_user_attribute_set = 0;
const char *dn = NULL;
const char *utfpassword;
authn_ldap_request_t *req =
(authn_ldap_request_t *)apr_pcalloc(r->pool, sizeof(authn_ldap_request_t));
ap_set_module_config(r->request_config, &authnz_ldap_module, req);
/*
if (!sec->enabled) {
return AUTH_USER_NOT_FOUND;
}
*/
/*
* Basic sanity checks before any LDAP operations even happen.
*/
if (!sec->have_ldap_url) {
ap_log_rerror(APLOG_MARK, APLOG_WARNING, 0, r, APLOGNO(02558)
"no AuthLDAPURL");
return AUTH_GENERAL_ERROR;
}
/* There is a good AuthLDAPURL, right? */
if (sec->host) {
const char *binddn = sec->binddn;
const char *bindpw = sec->bindpw;
if (sec->initial_bind_as_user) {
bindpw = password;
binddn = ldap_determine_binddn(r, user);
}
ldc = util_ldap_connection_find(r, sec->host, sec->port,
binddn, bindpw,
sec->deref, sec->secure);
}
else {
ap_log_rerror(APLOG_MARK, APLOG_WARNING, 0, r, APLOGNO(01690)
"auth_ldap authenticate: no sec->host - weird...?");
return AUTH_GENERAL_ERROR;
}
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01691)
"auth_ldap authenticate: using URL %s", sec->url);
/* Get the password that the client sent */
if (password == NULL) {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01692)
"auth_ldap authenticate: no password specified");
util_ldap_connection_close(ldc);
return AUTH_GENERAL_ERROR;
}
if (user == NULL) {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01693)
"auth_ldap authenticate: no user specified");
util_ldap_connection_close(ldc);
return AUTH_GENERAL_ERROR;
}
/* build the username filter */
authn_ldap_build_filter(filtbuf, r, user, NULL, sec);
ap_log_rerror(APLOG_MARK, APLOG_TRACE1, 0, r,
"auth_ldap authenticate: final authn filter is %s", filtbuf);
/* convert password to utf-8 */
utfpassword = authn_ldap_xlate_password(r, password);
/* do the user search */
result = util_ldap_cache_checkuserid(r, ldc, sec->url, sec->basedn, sec->scope,
sec->attributes, filtbuf, utfpassword,
&dn, &(req->vals));
util_ldap_connection_close(ldc);
/* handle bind failure */
if (result != LDAP_SUCCESS) {
if (!sec->bind_authoritative) {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01694)
"auth_ldap authenticate: user %s authentication failed; "
"URI %s [%s][%s] (not authoritative)",
user, r->uri, ldc->reason, ldap_err2string(result));
return AUTH_USER_NOT_FOUND;
}
ap_log_rerror(APLOG_MARK, APLOG_INFO, 0, r, APLOGNO(01695)
"auth_ldap authenticate: "
"user %s authentication failed; URI %s [%s][%s]",
user, r->uri, ldc->reason, ldap_err2string(result));
/* talking to a primitive LDAP server (like RACF-over-LDAP) that doesn't return specific errors */
if (!strcasecmp(sec->filter, "none") && LDAP_OTHER == result) {
return AUTH_USER_NOT_FOUND;
}
return (LDAP_NO_SUCH_OBJECT == result) ? AUTH_USER_NOT_FOUND
#ifdef LDAP_SECURITY_ERROR
: (LDAP_SECURITY_ERROR(result)) ? AUTH_DENIED
#else
: (LDAP_INAPPROPRIATE_AUTH == result) ? AUTH_DENIED
: (LDAP_INVALID_CREDENTIALS == result) ? AUTH_DENIED
#ifdef LDAP_INSUFFICIENT_ACCESS
: (LDAP_INSUFFICIENT_ACCESS == result) ? AUTH_DENIED
#endif
#ifdef LDAP_INSUFFICIENT_RIGHTS
: (LDAP_INSUFFICIENT_RIGHTS == result) ? AUTH_DENIED
#endif
#endif
#ifdef LDAP_CONSTRAINT_VIOLATION
/* At least Sun Directory Server sends this if a user is
* locked. This is not covered by LDAP_SECURITY_ERROR.
*/
: (LDAP_CONSTRAINT_VIOLATION == result) ? AUTH_DENIED
#endif
: AUTH_GENERAL_ERROR;
}
/* mark the user and DN */
req->dn = apr_pstrdup(r->pool, dn);
req->user = apr_pstrdup(r->pool, user);
req->password = apr_pstrdup(r->pool, password);
if (sec->user_is_dn) {
r->user = req->dn;
}
/* add environment variables */
remote_user_attribute_set = set_request_vars(r, LDAP_AUTHN);
/* sanity check */
if (sec->remote_user_attribute && !remote_user_attribute_set) {
ap_log_rerror(APLOG_MARK, APLOG_WARNING, 0, r, APLOGNO(01696)
"auth_ldap authenticate: "
"REMOTE_USER was to be set with attribute '%s', "
"but this attribute was not requested for in the "
"LDAP query for the user. REMOTE_USER will fall "
"back to username or DN as appropriate.",
sec->remote_user_attribute);
}
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01697)
"auth_ldap authenticate: accepting %s", user);
return AUTH_GRANTED;
}
static authz_status ldapuser_check_authorization(request_rec *r,
const char *require_args,
const void *parsed_require_args)
{
int result = 0;
authn_ldap_request_t *req =
(authn_ldap_request_t *)ap_get_module_config(r->request_config, &authnz_ldap_module);
authn_ldap_config_t *sec =
(authn_ldap_config_t *)ap_get_module_config(r->per_dir_config, &authnz_ldap_module);
util_ldap_connection_t *ldc = NULL;
const char *err = NULL;
const ap_expr_info_t *expr = parsed_require_args;
const char *require;
const char *t;
char *w;
char filtbuf[FILTER_LENGTH];
const char *dn = NULL;
if (!r->user) {
return AUTHZ_DENIED_NO_USER;
}
if (!sec->have_ldap_url) {
return AUTHZ_DENIED;
}
if (sec->host) {
ldc = get_connection_for_authz(r, LDAP_COMPARE);
apr_pool_cleanup_register(r->pool, ldc,
authnz_ldap_cleanup_connection_close,
apr_pool_cleanup_null);
}
else {
ap_log_rerror(APLOG_MARK, APLOG_WARNING, 0, r, APLOGNO(01698)
"auth_ldap authorize: no sec->host - weird...?");
return AUTHZ_DENIED;
}
/*
* If we have been authenticated by some other module than mod_authnz_ldap,
* the req structure needed for authorization needs to be created
* and populated with the userid and DN of the account in LDAP
*/
if (!strlen(r->user)) {
ap_log_rerror(APLOG_MARK, APLOG_WARNING, 0, r, APLOGNO(01699)
"ldap authorize: Userid is blank, AuthType=%s",
r->ap_auth_type);
}
if(!req) {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01700)
"ldap authorize: Creating LDAP req structure");
req = (authn_ldap_request_t *)apr_pcalloc(r->pool,
sizeof(authn_ldap_request_t));
/* Build the username filter */
authn_ldap_build_filter(filtbuf, r, r->user, NULL, sec);
/* Search for the user DN */
result = util_ldap_cache_getuserdn(r, ldc, sec->url, sec->basedn,
sec->scope, sec->attributes, filtbuf, &dn, &(req->vals));
/* Search failed, log error and return failure */
if(result != LDAP_SUCCESS) {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01701)
"auth_ldap authorise: User DN not found, %s", ldc->reason);
return AUTHZ_DENIED;
}
ap_set_module_config(r->request_config, &authnz_ldap_module, req);
req->dn = apr_pstrdup(r->pool, dn);
req->user = r->user;
}
if (req->dn == NULL || strlen(req->dn) == 0) {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01702)
"auth_ldap authorize: require user: user's DN has not "
"been defined; failing authorization");
return AUTHZ_DENIED;
}
require = ap_expr_str_exec(r, expr, &err);
if (err) {
ap_log_rerror(APLOG_MARK, APLOG_ERR, 0, r, APLOGNO(02585)
"auth_ldap authorize: require user: Can't evaluate expression: %s",
err);
return AUTHZ_DENIED;
}
/*
* First do a whole-line compare, in case it's something like
* require user Babs Jensen
*/
result = util_ldap_cache_compare(r, ldc, sec->url, req->dn, sec->attribute, require);
switch(result) {
case LDAP_COMPARE_TRUE: {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01703)
"auth_ldap authorize: require user: authorization "
"successful");
set_request_vars(r, LDAP_AUTHZ);
return AUTHZ_GRANTED;
}
default: {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01704)
"auth_ldap authorize: require user: "
"authorization failed [%s][%s]",
ldc->reason, ldap_err2string(result));
}
}
/*
* Now break apart the line and compare each word on it
*/
t = require;
while ((w = ap_getword_conf(r->pool, &t)) && w[0]) {
result = util_ldap_cache_compare(r, ldc, sec->url, req->dn, sec->attribute, w);
switch(result) {
case LDAP_COMPARE_TRUE: {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01705)
"auth_ldap authorize: "
"require user: authorization successful");
set_request_vars(r, LDAP_AUTHZ);
return AUTHZ_GRANTED;
}
default: {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01706)
"auth_ldap authorize: "
"require user: authorization failed [%s][%s]",
ldc->reason, ldap_err2string(result));
}
}
}
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01707)
"auth_ldap authorize user: authorization denied for "
"user %s to %s",
r->user, r->uri);
return AUTHZ_DENIED;
}
static authz_status ldapgroup_check_authorization(request_rec *r,
const char *require_args,
const void *parsed_require_args)
{
int result = 0;
authn_ldap_request_t *req =
(authn_ldap_request_t *)ap_get_module_config(r->request_config, &authnz_ldap_module);
authn_ldap_config_t *sec =
(authn_ldap_config_t *)ap_get_module_config(r->per_dir_config, &authnz_ldap_module);
util_ldap_connection_t *ldc = NULL;
const char *err = NULL;
const ap_expr_info_t *expr = parsed_require_args;
const char *require;
const char *t;
char filtbuf[FILTER_LENGTH];
const char *dn = NULL;
struct mod_auth_ldap_groupattr_entry_t *ent;
int i;
if (!r->user) {
return AUTHZ_DENIED_NO_USER;
}
if (!sec->have_ldap_url) {
return AUTHZ_DENIED;
}
if (sec->host) {
ldc = get_connection_for_authz(r, LDAP_COMPARE); /* for the top-level group only */
apr_pool_cleanup_register(r->pool, ldc,
authnz_ldap_cleanup_connection_close,
apr_pool_cleanup_null);
}
else {
ap_log_rerror(APLOG_MARK, APLOG_WARNING, 0, r, APLOGNO(01708)
"auth_ldap authorize: no sec->host - weird...?");
return AUTHZ_DENIED;
}
/*
* If there are no elements in the group attribute array, the default should be
* member and uniquemember; populate the array now.
*/
if (sec->groupattr->nelts == 0) {
struct mod_auth_ldap_groupattr_entry_t *grp;
#if APR_HAS_THREADS
apr_thread_mutex_lock(sec->lock);
#endif
grp = apr_array_push(sec->groupattr);
grp->name = "member";
grp = apr_array_push(sec->groupattr);
grp->name = "uniqueMember";
#if APR_HAS_THREADS
apr_thread_mutex_unlock(sec->lock);
#endif
}
/*
* If there are no elements in the sub group classes array, the default
* should be groupOfNames and groupOfUniqueNames; populate the array now.
*/
if (sec->subgroupclasses->nelts == 0) {
struct mod_auth_ldap_groupattr_entry_t *grp;
#if APR_HAS_THREADS
apr_thread_mutex_lock(sec->lock);
#endif
grp = apr_array_push(sec->subgroupclasses);
grp->name = "groupOfNames";
grp = apr_array_push(sec->subgroupclasses);
grp->name = "groupOfUniqueNames";
#if APR_HAS_THREADS
apr_thread_mutex_unlock(sec->lock);
#endif
}
/*
* If we have been authenticated by some other module than mod_auth_ldap,
* the req structure needed for authorization needs to be created
* and populated with the userid and DN of the account in LDAP
*/
if (!strlen(r->user)) {
ap_log_rerror(APLOG_MARK, APLOG_WARNING, 0, r, APLOGNO(01709)
"ldap authorize: Userid is blank, AuthType=%s",
r->ap_auth_type);
}
if(!req) {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01710)
"ldap authorize: Creating LDAP req structure");
req = (authn_ldap_request_t *)apr_pcalloc(r->pool,
sizeof(authn_ldap_request_t));
/* Build the username filter */
authn_ldap_build_filter(filtbuf, r, r->user, NULL, sec);
/* Search for the user DN */
result = util_ldap_cache_getuserdn(r, ldc, sec->url, sec->basedn,
sec->scope, sec->attributes, filtbuf, &dn, &(req->vals));
/* Search failed, log error and return failure */
if(result != LDAP_SUCCESS) {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01711)
"auth_ldap authorise: User DN not found, %s", ldc->reason);
return AUTHZ_DENIED;
}
ap_set_module_config(r->request_config, &authnz_ldap_module, req);
req->dn = apr_pstrdup(r->pool, dn);
req->user = r->user;
}
ent = (struct mod_auth_ldap_groupattr_entry_t *) sec->groupattr->elts;
if (sec->group_attrib_is_dn) {
if (req->dn == NULL || strlen(req->dn) == 0) {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01712)
"auth_ldap authorize: require group: user's DN has "
"not been defined; failing authorization for user %s",
r->user);
return AUTHZ_DENIED;
}
}
else {
if (req->user == NULL || strlen(req->user) == 0) {
/* We weren't called in the authentication phase, so we didn't have a
* chance to set the user field. Do so now. */
req->user = r->user;
}
}
require = ap_expr_str_exec(r, expr, &err);
if (err) {
ap_log_rerror(APLOG_MARK, APLOG_ERR, 0, r, APLOGNO(02586)
"auth_ldap authorize: require group: Can't evaluate expression: %s",
err);
return AUTHZ_DENIED;
}
t = require;
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01713)
"auth_ldap authorize: require group: testing for group "
"membership in \"%s\"",
t);
/* PR52464 exhaust attrs in base group before checking subgroups */
for (i = 0; i < sec->groupattr->nelts; i++) {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01714)
"auth_ldap authorize: require group: testing for %s: "
"%s (%s)",
ent[i].name,
sec->group_attrib_is_dn ? req->dn : req->user, t);
result = util_ldap_cache_compare(r, ldc, sec->url, t, ent[i].name,
sec->group_attrib_is_dn ? req->dn : req->user);
if (result == LDAP_COMPARE_TRUE) {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01715)
"auth_ldap authorize: require group: "
"authorization successful (attribute %s) "
"[%s][%d - %s]",
ent[i].name, ldc->reason, result,
ldap_err2string(result));
set_request_vars(r, LDAP_AUTHZ);
return AUTHZ_GRANTED;
}
else {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01719)
"auth_ldap authorize: require group \"%s\": "
"didn't match with attr %s [%s][%d - %s]",
t, ent[i].name, ldc->reason, result,
ldap_err2string(result));
}
}
for (i = 0; i < sec->groupattr->nelts; i++) {
/* nested groups need searches and compares, so grab a new handle */
authnz_ldap_cleanup_connection_close(ldc);
apr_pool_cleanup_kill(r->pool, ldc,authnz_ldap_cleanup_connection_close);
ldc = get_connection_for_authz(r, LDAP_COMPARE_AND_SEARCH);
apr_pool_cleanup_register(r->pool, ldc,
authnz_ldap_cleanup_connection_close,
apr_pool_cleanup_null);
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01716)
"auth_ldap authorise: require group \"%s\": "
"failed [%s][%d - %s], checking sub-groups",
t, ldc->reason, result, ldap_err2string(result));
result = util_ldap_cache_check_subgroups(r, ldc, sec->url, t, ent[i].name,
sec->group_attrib_is_dn ? req->dn : req->user,
sec->sgAttributes[0] ? sec->sgAttributes : default_attributes,
sec->subgroupclasses,
0, sec->maxNestingDepth);
if (result == LDAP_COMPARE_TRUE) {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01717)
"auth_ldap authorise: require group "
"(sub-group): authorisation successful "
"(attribute %s) [%s][%d - %s]",
ent[i].name, ldc->reason, result,
ldap_err2string(result));
set_request_vars(r, LDAP_AUTHZ);
return AUTHZ_GRANTED;
}
else {
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01718)
"auth_ldap authorise: require group "
"(sub-group) \"%s\": didn't match with attr %s "
"[%s][%d - %s]",
t, ldc->reason, ent[i].name, result,
ldap_err2string(result));
}
}
ap_log_rerror(APLOG_MARK, APLOG_DEBUG, 0, r, APLOGNO(01720)
"auth_ldap authorize group: authorization denied for "
"user %s to %s",
r->user, r->uri);
return AUTHZ_DENIED;
}
static authz_status ldapdn_check_authorization(request_rec *r,
const char *require_args,
const void *parsed_require_args)
{