diff --git a/lib/common/acl.c b/lib/common/acl.c index dad3ed00d8..e81a9860a9 100644 --- a/lib/common/acl.c +++ b/lib/common/acl.c @@ -1,1151 +1,1151 @@ /* * Copyright 2004-2021 the Pacemaker project contributors * * The version control history for this file may have further details. * * This source code is licensed under the GNU Lesser General Public License * version 2.1 or later (LGPLv2.1+) WITHOUT ANY WARRANTY. */ #include #include #include #include #include #include #include #include #include #include #if HAVE_LIBXSLT # include # include # include #endif #include #include #include #include #include #include "crmcommon_private.h" #include #define MAX_XPATH_LEN 4096 typedef struct xml_acl_s { enum xml_private_flags mode; char *xpath; } xml_acl_t; static void free_acl(void *data) { if (data) { xml_acl_t *acl = data; free(acl->xpath); free(acl); } } void pcmk__free_acls(GList *acls) { g_list_free_full(acls, free_acl); } static GList * create_acl(xmlNode *xml, GList *acls, enum xml_private_flags mode) { xml_acl_t *acl = NULL; const char *tag = crm_element_value(xml, XML_ACL_ATTR_TAG); const char *ref = crm_element_value(xml, XML_ACL_ATTR_REF); const char *xpath = crm_element_value(xml, XML_ACL_ATTR_XPATH); const char *attr = crm_element_value(xml, XML_ACL_ATTR_ATTRIBUTE); if (tag == NULL) { // @COMPAT rolling upgrades <=1.1.11 tag = crm_element_value(xml, XML_ACL_ATTR_TAGv1); } if (ref == NULL) { // @COMPAT rolling upgrades <=1.1.11 ref = crm_element_value(xml, XML_ACL_ATTR_REFv1); } if ((tag == NULL) && (ref == NULL) && (xpath == NULL)) { // Schema should prevent this, but to be safe ... crm_trace("Ignoring ACL <%s> element without selection criteria", crm_element_name(xml)); return NULL; } acl = calloc(1, sizeof (xml_acl_t)); CRM_ASSERT(acl != NULL); acl->mode = mode; if (xpath) { acl->xpath = strdup(xpath); CRM_ASSERT(acl->xpath != NULL); crm_trace("Unpacked ACL <%s> element using xpath: %s", crm_element_name(xml), acl->xpath); } else { int offset = 0; char buffer[MAX_XPATH_LEN]; if (tag) { offset += snprintf(buffer + offset, MAX_XPATH_LEN - offset, "//%s", tag); } else { offset += snprintf(buffer + offset, MAX_XPATH_LEN - offset, "//*"); } if (ref || attr) { offset += snprintf(buffer + offset, MAX_XPATH_LEN - offset, "["); } if (ref) { offset += snprintf(buffer + offset, MAX_XPATH_LEN - offset, "@id='%s'", ref); } // NOTE: schema currently does not allow this if (ref && attr) { offset += snprintf(buffer + offset, MAX_XPATH_LEN - offset, " and "); } if (attr) { offset += snprintf(buffer + offset, MAX_XPATH_LEN - offset, "@%s", attr); } if (ref || attr) { offset += snprintf(buffer + offset, MAX_XPATH_LEN - offset, "]"); } CRM_LOG_ASSERT(offset > 0); acl->xpath = strdup(buffer); CRM_ASSERT(acl->xpath != NULL); crm_trace("Unpacked ACL <%s> element as xpath: %s", crm_element_name(xml), acl->xpath); } return g_list_append(acls, acl); } /*! * \internal * \brief Unpack a user, group, or role subtree of the ACLs section * * \param[in] acl_top XML of entire ACLs section * \param[in] acl_entry XML of ACL element being unpacked * \param[in,out] acls List of ACLs unpacked so far * * \return New head of (possibly modified) acls */ static GList * parse_acl_entry(xmlNode *acl_top, xmlNode *acl_entry, GList *acls) { xmlNode *child = NULL; for (child = pcmk__xe_first_child(acl_entry); child; child = pcmk__xe_next(child)) { const char *tag = crm_element_name(child); const char *kind = crm_element_value(child, XML_ACL_ATTR_KIND); if (strcmp(XML_ACL_TAG_PERMISSION, tag) == 0){ CRM_ASSERT(kind != NULL); crm_trace("Unpacking ACL <%s> element of kind '%s'", tag, kind); tag = kind; } else { crm_trace("Unpacking ACL <%s> element", tag); } if (strcmp(XML_ACL_TAG_ROLE_REF, tag) == 0 || strcmp(XML_ACL_TAG_ROLE_REFv1, tag) == 0) { const char *ref_role = crm_element_value(child, XML_ATTR_ID); if (ref_role) { xmlNode *role = NULL; for (role = pcmk__xe_first_child(acl_top); role; role = pcmk__xe_next(role)) { if (!strcmp(XML_ACL_TAG_ROLE, (const char *) role->name)) { const char *role_id = crm_element_value(role, XML_ATTR_ID); if (role_id && strcmp(ref_role, role_id) == 0) { crm_trace("Unpacking referenced role '%s' in ACL <%s> element", role_id, crm_element_name(acl_entry)); acls = parse_acl_entry(acl_top, role, acls); break; } } } } } else if (strcmp(XML_ACL_TAG_READ, tag) == 0) { acls = create_acl(child, acls, pcmk__xf_acl_read); } else if (strcmp(XML_ACL_TAG_WRITE, tag) == 0) { acls = create_acl(child, acls, pcmk__xf_acl_write); } else if (strcmp(XML_ACL_TAG_DENY, tag) == 0) { acls = create_acl(child, acls, pcmk__xf_acl_deny); } else { crm_warn("Ignoring unknown ACL %s '%s'", (kind? "kind" : "element"), tag); } } return acls; } /* */ static const char * acl_to_text(enum xml_private_flags flags) { if (pcmk_is_set(flags, pcmk__xf_acl_deny)) { return "deny"; } else if (pcmk_any_flags_set(flags, pcmk__xf_acl_write|pcmk__xf_acl_create)) { return "read/write"; } else if (pcmk_is_set(flags, pcmk__xf_acl_read)) { return "read"; } return "none"; } void pcmk__apply_acl(xmlNode *xml) { GList *aIter = NULL; xml_private_t *p = xml->doc->_private; xmlXPathObjectPtr xpathObj = NULL; if (!xml_acl_enabled(xml)) { crm_trace("Skipping ACLs for user '%s' because not enabled for this XML", p->user); return; } for (aIter = p->acls; aIter != NULL; aIter = aIter->next) { int max = 0, lpc = 0; xml_acl_t *acl = aIter->data; xpathObj = xpath_search(xml, acl->xpath); max = numXpathResults(xpathObj); for (lpc = 0; lpc < max; lpc++) { xmlNode *match = getXpathResult(xpathObj, lpc); char *path = xml_get_path(match); p = match->_private; crm_trace("Applying %s ACL to %s matched by %s", acl_to_text(acl->mode), path, acl->xpath); pcmk__set_xml_flags(p, acl->mode); free(path); } crm_trace("Applied %s ACL %s (%d match%s)", acl_to_text(acl->mode), acl->xpath, max, ((max == 1)? "" : "es")); freeXpathObject(xpathObj); } } /*! * \internal * \brief Unpack ACLs for a given user * * \param[in] source XML with ACL definitions * \param[in,out] target XML that ACLs will be applied to * \param[in] user Username whose ACLs need to be unpacked */ void pcmk__unpack_acl(xmlNode *source, xmlNode *target, const char *user) { xml_private_t *p = NULL; if ((target == NULL) || (target->doc == NULL) || (target->doc->_private == NULL)) { return; } p = target->doc->_private; if (!pcmk_acl_required(user)) { crm_trace("Not unpacking ACLs because not required for user '%s'", user); } else if (p->acls == NULL) { xmlNode *acls = get_xpath_object("//" XML_CIB_TAG_ACLS, source, LOG_NEVER); free(p->user); p->user = strdup(user); if (acls) { xmlNode *child = NULL; for (child = pcmk__xe_first_child(acls); child; child = pcmk__xe_next(child)) { const char *tag = crm_element_name(child); if (!strcmp(tag, XML_ACL_TAG_USER) || !strcmp(tag, XML_ACL_TAG_USERv1)) { const char *id = crm_element_value(child, XML_ATTR_ID); if (id && strcmp(id, user) == 0) { crm_debug("Unpacking ACLs for user '%s'", id); p->acls = parse_acl_entry(acls, child, p->acls); } } } } } } static inline bool test_acl_mode(enum xml_private_flags allowed, enum xml_private_flags requested) { if (pcmk_is_set(allowed, pcmk__xf_acl_deny)) { return false; } else if (pcmk_all_flags_set(allowed, requested)) { return true; } else if (pcmk_is_set(requested, pcmk__xf_acl_read) && pcmk_is_set(allowed, pcmk__xf_acl_write)) { return true; } else if (pcmk_is_set(requested, pcmk__xf_acl_create) && pcmk_any_flags_set(allowed, pcmk__xf_acl_write|pcmk__xf_created)) { return true; } return false; } static bool purge_xml_attributes(xmlNode *xml) { xmlNode *child = NULL; xmlAttr *xIter = NULL; bool readable_children = false; xml_private_t *p = xml->_private; if (test_acl_mode(p->flags, pcmk__xf_acl_read)) { crm_trace("%s[@id=%s] is readable", crm_element_name(xml), ID(xml)); return true; } xIter = xml->properties; while (xIter != NULL) { xmlAttr *tmp = xIter; const char *prop_name = (const char *)xIter->name; xIter = xIter->next; if (strcmp(prop_name, XML_ATTR_ID) == 0) { continue; } xmlUnsetProp(xml, tmp->name); } child = pcmk__xml_first_child(xml); while ( child != NULL ) { xmlNode *tmp = child; child = pcmk__xml_next(child); readable_children |= purge_xml_attributes(tmp); } if (!readable_children) { free_xml(xml); /* Nothing readable under here, purge completely */ } return readable_children; } /*! * \internal * \brief Copy ACL-allowed portions of specified XML * * \param[in] user Username whose ACLs should be used * \param[in] acl_source XML containing ACLs * \param[in] xml XML to be copied * \param[out] result Copy of XML portions readable via ACLs * * \return true if xml exists and ACLs are required for user, false otherwise * \note If this returns true, caller should use \p result rather than \p xml */ bool xml_acl_filtered_copy(const char *user, xmlNode *acl_source, xmlNode *xml, xmlNode **result) { GList *aIter = NULL; xmlNode *target = NULL; xml_private_t *doc = NULL; *result = NULL; if ((xml == NULL) || !pcmk_acl_required(user)) { crm_trace("Not filtering XML because ACLs not required for user '%s'", user); return false; } crm_trace("Filtering XML copy using user '%s' ACLs", user); target = copy_xml(xml); if (target == NULL) { return true; } pcmk__unpack_acl(acl_source, target, user); pcmk__set_xml_doc_flag(target, pcmk__xf_acl_enabled); pcmk__apply_acl(target); doc = target->doc->_private; for(aIter = doc->acls; aIter != NULL && target; aIter = aIter->next) { int max = 0; xml_acl_t *acl = aIter->data; if (acl->mode != pcmk__xf_acl_deny) { /* Nothing to do */ } else if (acl->xpath) { int lpc = 0; xmlXPathObjectPtr xpathObj = xpath_search(target, acl->xpath); max = numXpathResults(xpathObj); for(lpc = 0; lpc < max; lpc++) { xmlNode *match = getXpathResult(xpathObj, lpc); if (!purge_xml_attributes(match) && (match == target)) { crm_trace("ACLs deny user '%s' access to entire XML document", user); freeXpathObject(xpathObj); return true; } } crm_trace("ACLs deny user '%s' access to %s (%d %s)", user, acl->xpath, max, pcmk__plural_alt(max, "match", "matches")); freeXpathObject(xpathObj); } } if (!purge_xml_attributes(target)) { crm_trace("ACLs deny user '%s' access to entire XML document", user); return true; } if (doc->acls) { g_list_free_full(doc->acls, free_acl); doc->acls = NULL; } else { crm_trace("User '%s' without ACLs denied access to entire XML document", user); free_xml(target); target = NULL; } if (target) { *result = target; } return true; } /*! * \internal * \brief Check whether creation of an XML element is implicitly allowed * * Check whether XML is a "scaffolding" element whose creation is implicitly * allowed regardless of ACLs (that is, it is not in the ACL section and has * no attributes other than "id"). * * \param[in] xml XML element to check * * \return true if XML element is implicitly allowed, false otherwise */ static bool implicitly_allowed(xmlNode *xml) { char *path = NULL; for (xmlAttr *prop = xml->properties; prop != NULL; prop = prop->next) { if (strcmp((const char *) prop->name, XML_ATTR_ID) != 0) { return false; } } path = xml_get_path(xml); if (strstr(path, "/" XML_CIB_TAG_ACLS "/") != NULL) { free(path); return false; } free(path); return true; } #define display_id(xml) (ID(xml)? ID(xml) : "") /*! * \internal * \brief Drop XML nodes created in violation of ACLs * * Given an XML element, free all of its descendent nodes created in violation * of ACLs, with the exception of allowing "scaffolding" elements (i.e. those * that aren't in the ACL section and don't have any attributes other than * "id"). * * \param[in,out] xml XML to check * \param[in] check_top Whether to apply checks to argument itself * (if true, xml might get freed) */ void pcmk__apply_creation_acl(xmlNode *xml, bool check_top) { xml_private_t *p = xml->_private; if (pcmk_is_set(p->flags, pcmk__xf_created)) { if (implicitly_allowed(xml)) { crm_trace("Creation of <%s> scaffolding with id=\"%s\"" " is implicitly allowed", crm_element_name(xml), display_id(xml)); } else if (pcmk__check_acl(xml, NULL, pcmk__xf_acl_write)) { crm_trace("ACLs allow creation of <%s> with id=\"%s\"", crm_element_name(xml), display_id(xml)); } else if (check_top) { crm_trace("ACLs disallow creation of <%s> with id=\"%s\"", crm_element_name(xml), display_id(xml)); pcmk_free_xml_subtree(xml); return; } else { crm_notice("ACLs would disallow creation of %s<%s> with id=\"%s\" ", ((xml == xmlDocGetRootElement(xml->doc))? "root element " : ""), crm_element_name(xml), display_id(xml)); } } for (xmlNode *cIter = pcmk__xml_first_child(xml); cIter != NULL; ) { xmlNode *child = cIter; cIter = pcmk__xml_next(cIter); /* In case it is free'd */ pcmk__apply_creation_acl(child, true); } } bool xml_acl_denied(xmlNode *xml) { if (xml && xml->doc && xml->doc->_private){ xml_private_t *p = xml->doc->_private; return pcmk_is_set(p->flags, pcmk__xf_acl_denied); } return false; } void xml_acl_disable(xmlNode *xml) { if (xml_acl_enabled(xml)) { xml_private_t *p = xml->doc->_private; /* Catch anything that was created but shouldn't have been */ pcmk__apply_acl(xml); pcmk__apply_creation_acl(xml, false); pcmk__clear_xml_flags(p, pcmk__xf_acl_enabled); } } bool xml_acl_enabled(xmlNode *xml) { if (xml && xml->doc && xml->doc->_private){ xml_private_t *p = xml->doc->_private; return pcmk_is_set(p->flags, pcmk__xf_acl_enabled); } return false; } bool pcmk__check_acl(xmlNode *xml, const char *name, enum xml_private_flags mode) { CRM_ASSERT(xml); CRM_ASSERT(xml->doc); CRM_ASSERT(xml->doc->_private); if (pcmk__tracking_xml_changes(xml, false) && xml_acl_enabled(xml)) { int offset = 0; xmlNode *parent = xml; char buffer[MAX_XPATH_LEN]; xml_private_t *docp = xml->doc->_private; offset = pcmk__element_xpath(NULL, xml, buffer, offset, sizeof(buffer)); if (name) { offset += snprintf(buffer + offset, MAX_XPATH_LEN - offset, "[@%s]", name); } CRM_LOG_ASSERT(offset > 0); if (docp->acls == NULL) { crm_trace("User '%s' without ACLs denied %s access to %s", docp->user, acl_to_text(mode), buffer); pcmk__set_xml_doc_flag(xml, pcmk__xf_acl_denied); return false; } /* Walk the tree upwards looking for xml_acl_* flags * - Creating an attribute requires write permissions for the node * - Creating a child requires write permissions for the parent */ if (name) { xmlAttr *attr = xmlHasProp(xml, (pcmkXmlStr) name); if (attr && mode == pcmk__xf_acl_create) { mode = pcmk__xf_acl_write; } } while (parent && parent->_private) { xml_private_t *p = parent->_private; if (test_acl_mode(p->flags, mode)) { return true; } else if (pcmk_is_set(p->flags, pcmk__xf_acl_deny)) { crm_trace("%sACL denies user '%s' %s access to %s", (parent != xml) ? "Parent " : "", docp->user, acl_to_text(mode), buffer); pcmk__set_xml_doc_flag(xml, pcmk__xf_acl_denied); return false; } parent = parent->parent; } crm_trace("Default ACL denies user '%s' %s access to %s", docp->user, acl_to_text(mode), buffer); pcmk__set_xml_doc_flag(xml, pcmk__xf_acl_denied); return false; } return true; } /*! * \brief Check whether ACLs are required for a given user * * \param[in] User name to check * * \return true if the user requires ACLs, false otherwise */ bool pcmk_acl_required(const char *user) { if (pcmk__str_empty(user)) { crm_trace("ACLs not required because no user set"); return false; } else if (!strcmp(user, CRM_DAEMON_USER) || !strcmp(user, "root")) { crm_trace("ACLs not required for privileged user %s", user); return false; } crm_trace("ACLs required for %s", user); return true; } char * pcmk__uid2username(uid_t uid) { struct passwd *pwent = getpwuid(uid); if (pwent == NULL) { crm_perror(LOG_INFO, "Cannot get user details for user ID %d", uid); return NULL; } return strdup(pwent->pw_name); } /*! * \internal * \brief Set the ACL user field properly on an XML request * * Multiple user names are potentially involved in an XML request: the effective * user of the current process; the user name known from an IPC client * connection; and the user name obtained from the request itself, whether by * the current standard XML attribute name or an older legacy attribute name. * This function chooses the appropriate one that should be used for ACLs, sets * it in the request (using the standard attribute name, and the legacy name if * given), and returns it. * * \param[in,out] request XML request to update * \param[in] field Alternate name for ACL user name XML attribute * \param[in] peer_user User name as known from IPC connection * * \return ACL user name actually used */ const char * pcmk__update_acl_user(xmlNode *request, const char *field, const char *peer_user) { static const char *effective_user = NULL; const char *requested_user = NULL; const char *user = NULL; if (effective_user == NULL) { effective_user = pcmk__uid2username(geteuid()); if (effective_user == NULL) { effective_user = strdup("#unprivileged"); CRM_CHECK(effective_user != NULL, return NULL); crm_err("Unable to determine effective user, assuming unprivileged for ACLs"); } } requested_user = crm_element_value(request, XML_ACL_TAG_USER); if (requested_user == NULL) { /* @COMPAT rolling upgrades <=1.1.11 * * field is checked for backward compatibility with older versions that * did not use XML_ACL_TAG_USER. */ requested_user = crm_element_value(request, field); } if (!pcmk__is_privileged(effective_user)) { /* We're not running as a privileged user, set or overwrite any existing * value for $XML_ACL_TAG_USER */ user = effective_user; } else if (peer_user == NULL && requested_user == NULL) { /* No user known or requested, use 'effective_user' and make sure one is * set for the request */ user = effective_user; } else if (peer_user == NULL) { /* No user known, trusting 'requested_user' */ user = requested_user; } else if (!pcmk__is_privileged(peer_user)) { /* The peer is not a privileged user, set or overwrite any existing * value for $XML_ACL_TAG_USER */ user = peer_user; } else if (requested_user == NULL) { /* Even if we're privileged, make sure there is always a value set */ user = peer_user; } else { /* Legal delegation to 'requested_user' */ user = requested_user; } // This requires pointer comparison, not string comparison if (user != crm_element_value(request, XML_ACL_TAG_USER)) { crm_xml_add(request, XML_ACL_TAG_USER, user); } if (field != NULL && user != crm_element_value(request, field)) { crm_xml_add(request, field, user); } return requested_user; } #define ACL_NS_PREFIX "http://clusterlabs.org/ns/pacemaker/access/" #define ACL_NS_Q_PREFIX "pcmk-access-" #define ACL_NS_Q_WRITABLE (const xmlChar *) ACL_NS_Q_PREFIX "writable" #define ACL_NS_Q_READABLE (const xmlChar *) ACL_NS_Q_PREFIX "readable" #define ACL_NS_Q_DENIED (const xmlChar *) ACL_NS_Q_PREFIX "denied" static const xmlChar *NS_WRITABLE = (xmlChar *) ACL_NS_PREFIX "writable"; static const xmlChar *NS_READABLE = (xmlChar *) ACL_NS_PREFIX "readable"; static const xmlChar *NS_DENIED = (xmlChar *) ACL_NS_PREFIX "denied"; static int pcmk__eval_acl_as_namespaces_2(xmlNode *xml_modify) { static xmlNs *ns_recycle_writable = NULL, *ns_recycle_readable = NULL, *ns_recycle_denied = NULL; static const xmlDoc *prev_doc = NULL; xmlNode *i_node = NULL; const xmlChar *ns; int ret = 0; if (prev_doc == NULL || prev_doc != xml_modify->doc) { prev_doc = xml_modify->doc; ns_recycle_writable = ns_recycle_readable = ns_recycle_denied = NULL; } for (i_node = xml_modify; i_node != NULL; i_node = i_node->next) { switch (i_node->type) { case XML_ELEMENT_NODE: - pcmk__set_xml_flag(i_node, xpf_tracking); - ns = !pcmk__check_acl(i_node, NULL, xpf_acl_read) + pcmk__set_xml_doc_flag(i_node, pcmk__xf_tracking); + ns = !pcmk__check_acl(i_node, NULL, pcmk__xf_acl_read) ? NS_DENIED - : !pcmk__check_acl(i_node, NULL, xpf_acl_write) + : !pcmk__check_acl(i_node, NULL, pcmk__xf_acl_write) ? NS_READABLE : NS_WRITABLE; if (ns == NS_WRITABLE) { if (ns_recycle_writable == NULL) { ns_recycle_writable = xmlNewNs(xmlDocGetRootElement(i_node->doc), NS_WRITABLE, ACL_NS_Q_WRITABLE); } xmlSetNs(i_node, ns_recycle_writable); ret = pcmk_rc_ok; } else if (ns == NS_READABLE) { if (ns_recycle_readable == NULL) { ns_recycle_readable = xmlNewNs(xmlDocGetRootElement(i_node->doc), NS_READABLE, ACL_NS_Q_READABLE); } xmlSetNs(i_node, ns_recycle_readable); ret = pcmk_rc_ok; } else if (ns == NS_DENIED) { if (ns_recycle_denied == NULL) { ns_recycle_denied = xmlNewNs(xmlDocGetRootElement(i_node->doc), NS_DENIED, ACL_NS_Q_DENIED); }; xmlSetNs(i_node, ns_recycle_denied); ret = pcmk_rc_ok; } /* XXX recursion can be turned into plain iteration to save stack */ if (i_node->properties != NULL) { /* this is not entirely clear, but relies on the very same class-hierarchy emulation that libxml2 has firmly baked in its API/ABI */ ret |= pcmk__eval_acl_as_namespaces_2((xmlNodePtr) i_node->properties); } if (i_node->children != NULL) { ret |= pcmk__eval_acl_as_namespaces_2(i_node->children); } break; case XML_ATTRIBUTE_NODE: /* we can utilize that parent has already been assigned the ns */ ns = !pcmk__check_acl(i_node->parent, (const char *) i_node->name, - xpf_acl_read) + pcmk__xf_acl_read) ? NS_DENIED : !pcmk__check_acl(i_node, (const char *) i_node->name, - xpf_acl_write) + pcmk__xf_acl_write) ? NS_READABLE : NS_WRITABLE; if (ns == NS_WRITABLE) { if (ns_recycle_writable == NULL) { ns_recycle_writable = xmlNewNs(xmlDocGetRootElement(i_node->doc), NS_WRITABLE, ACL_NS_Q_WRITABLE); } xmlSetNs(i_node, ns_recycle_writable); ret = pcmk_rc_ok; } else if (ns == NS_READABLE) { if (ns_recycle_readable == NULL) { ns_recycle_readable = xmlNewNs(xmlDocGetRootElement(i_node->doc), NS_READABLE, ACL_NS_Q_READABLE); } xmlSetNs(i_node, ns_recycle_readable); ret = pcmk_rc_ok; } else if (ns == NS_DENIED) { if (ns_recycle_denied == NULL) { ns_recycle_denied = xmlNewNs(xmlDocGetRootElement(i_node->doc), NS_DENIED, ACL_NS_Q_DENIED); } xmlSetNs(i_node, ns_recycle_denied); ret = pcmk_rc_ok; } break; default: break; } } return ret; } int pcmk__acl_evaled_as_namespaces(const char *cred, xmlDoc *cib_doc, xmlDoc **acl_evaled_doc) { int ret, version; xmlNode *target, *comment; char comment_buf[256] = "access as evaluated for user "; const char *validation; CRM_CHECK(cred != NULL, return EINVAL); CRM_CHECK(cib_doc != NULL, return EINVAL); CRM_CHECK(acl_evaled_doc != NULL, return EINVAL); if (!pcmk_acl_required(cred)) { /* nothing to evaluate */ return pcmk_rc_already; } /* XXX see the comment for this function, pacemaker-4.0 may need updating respectively in the future */ validation = crm_element_value(xmlDocGetRootElement(cib_doc), XML_ATTR_VALIDATION); version = get_schema_version(validation); if (get_schema_version(PCMK__COMPAT_ACL_2_MIN_INCL) > version) { return pcmk_rc_schema_validation; } target = copy_xml(xmlDocGetRootElement(cib_doc)); if (target == NULL) { return EINVAL; } pcmk__unpack_acl(target, target, cred); - pcmk__set_xml_flag(target, xpf_acl_enabled); + pcmk__set_xml_doc_flag(target, pcmk__xf_acl_enabled); pcmk__apply_acl(target); ret = pcmk__eval_acl_as_namespaces_2(target); /* XXX may need "switch" */ if (ret > 0) { /* avoid trivial accidental XML injection */ if (strpbrk(cred, "<>&") == NULL) { snprintf(comment_buf + strlen(comment_buf), sizeof(comment_buf) - strlen(comment_buf), "%s", cred); comment = xmlNewDocComment(target->doc, (pcmkXmlStr) comment_buf); if (comment == NULL) { xmlFreeNode(target); return EINVAL; } xmlAddPrevSibling(xmlDocGetRootElement(target->doc), comment); } *acl_evaled_doc = target->doc; } else { xmlFreeNode(target); } return pcmk_rc_ok; } /* this is used to dynamically adapt to user-modified stylesheet */ static const char ** parse_params(xmlDoc *doc, const char **fallback) { xmlXPathContext *xpath_ctxt; xmlXPathObject *xpath_obj; const char **ret = NULL; size_t ret_cnt = 0, ret_iter = 0; if (doc == NULL) { return fallback; } xpath_ctxt = xmlXPathNewContext(doc); CRM_ASSERT(xpath_ctxt != NULL); if (xmlXPathRegisterNs(xpath_ctxt, (pcmkXmlStr) "xsl", (pcmkXmlStr) "http://www.w3.org/1999/XSL/Transform") != 0) { return fallback; } while (*fallback != NULL) { char xpath_query[1024]; const char *key = *fallback++; const char *value = *fallback++; CRM_ASSERT(value != NULL); if (ret_iter + 1 >= ret_cnt) { ret_cnt = ret_cnt ? ret_cnt : 1; ret_cnt *= 2; ret_cnt += 1; ret = realloc(ret, ret_cnt * sizeof(*ret)); CRM_ASSERT(ret != NULL); } key = strdup(key); CRM_ASSERT(key != NULL); ret[ret_iter++] = key; snprintf(xpath_query, sizeof(xpath_query), "substring(" "/xsl:stylesheet/xsl:param[@name = '%s']/xsl:value-of/@select," "2," "string-length(/xsl:stylesheet/xsl:param[@name = '%s']/xsl:value-of/@select) - 2" ")", key, key); xpath_obj = xmlXPathEvalExpression((pcmkXmlStr) xpath_query, xpath_ctxt); if (xpath_obj != NULL && xpath_obj->type == XPATH_STRING && *xpath_obj->stringval != '\0') { /* XXX convert first! */ char *origval = strdup((const char *) xpath_obj->stringval); size_t reminder = strlen(origval) + 1; xmlXPathFreeObject(xpath_obj); value = origval; /* reconcile "\x1b" (3 chars) -> '\x1b' (single char) */ while ((origval = strstr(origval, "\\x1b")) != NULL) { origval[0] = '\x1b'; memmove(origval + 1, origval + (sizeof("\\x1b") - 1), (reminder -= (sizeof("\\x1b") - 1))); } } else { value = strdup(value); } CRM_ASSERT(value != NULL); ret[ret_iter++] = value; } ret[ret_iter] = NULL; return ret; } int pcmk__acl_evaled_render(xmlDoc *annotated_doc, enum pcmk__acl_render_how how, xmlChar **doc_txt_ptr) { #if HAVE_LIBXSLT xmlDoc *xslt_doc; xsltStylesheet *xslt; xsltTransformContext *xslt_ctxt; xmlDoc *res; char *sfile; static const char *params_ns_simple[] = { "accessrendercfg:c-writable", ACL_NS_Q_PREFIX "writable:", "accessrendercfg:c-readable", ACL_NS_Q_PREFIX "readable:", "accessrendercfg:c-denied", ACL_NS_Q_PREFIX "denied:", "accessrendercfg:c-reset", "", "accessrender:extra-spacing", "no", "accessrender:self-reproducing-prefix", ACL_NS_Q_PREFIX, NULL }, *params_useansi[] = { /* start with hard-coded defaults, then adapt per the template ones */ "accessrendercfg:c-writable", "\x1b[32m", "accessrendercfg:c-readable", "\x1b[34m", "accessrendercfg:c-denied", "\x1b[31m", "accessrendercfg:c-reset", "\x1b[0m", "accessrender:extra-spacing", "no", "accessrender:self-reproducing-prefix", ACL_NS_Q_PREFIX, NULL }, *params_noansi[] = { "accessrendercfg:c-writable", "vvv---[ WRITABLE ]---vvv", "accessrendercfg:c-readable", "vvv---[ READABLE ]---vvv", "accessrendercfg:c-denied", "vvv---[ ~DENIED~ ]---vvv", "accessrendercfg:c-reset", "", "accessrender:extra-spacing", "yes", "accessrender:self-reproducing-prefix", "", NULL }; const char **params; int ret; xmlParserCtxtPtr parser_ctxt; /* unfortunately, the input (coming from CIB originally) was parsed with blanks ignored, and since the output is a conversion of XML to text format (we would be covered otherwise thanks to implicit pretty-printing), we need to dump the tree to string output first, only to subsequently reparse it -- this time with blanks honoured */ xmlChar *annotated_dump; int dump_size; xmlDocDumpFormatMemory(annotated_doc, &annotated_dump, &dump_size, 1); res = xmlReadDoc(annotated_dump, "on-the-fly-access-render", NULL, XML_PARSE_NONET); CRM_ASSERT(res != NULL); xmlFree(annotated_dump); xmlFreeDoc(annotated_doc); annotated_doc = res; sfile = pcmk__xml_artefact_path(pcmk__xml_artefact_ns_base_xslt, "access-render-2"); parser_ctxt = xmlNewParserCtxt(); CRM_ASSERT(sfile != NULL); CRM_ASSERT(parser_ctxt != NULL); xslt_doc = xmlCtxtReadFile(parser_ctxt, sfile, NULL, XML_PARSE_NONET); xslt = xsltParseStylesheetDoc(xslt_doc); /* acquires xslt_doc! */ if (xslt == NULL) { crm_crit("Problem in parsing %s", sfile); return EINVAL; } free(sfile); sfile = NULL; xmlFreeParserCtxt(parser_ctxt); xslt_ctxt = xsltNewTransformContext(xslt, annotated_doc); CRM_ASSERT(xslt_ctxt != NULL); params = (how == pcmk__acl_render_ns_simple) ? params_ns_simple : (how == pcmk__acl_render_text) ? params_noansi : parse_params(xslt_doc, params_useansi); xsltQuoteUserParams(xslt_ctxt, params); res = xsltApplyStylesheetUser(xslt, annotated_doc, NULL, NULL, NULL, xslt_ctxt); xmlFreeDoc(annotated_doc); annotated_doc = NULL; xsltFreeTransformContext(xslt_ctxt); xslt_ctxt = NULL; if (how == pcmk__acl_render_color && params != params_useansi) { char **param_i = (char **) params; do { free(*param_i); } while (*param_i++ != NULL); free(params); } if (res == NULL) { ret = EINVAL; } else { int doc_txt_len; int temp = xsltSaveResultToString(doc_txt_ptr, &doc_txt_len, res, xslt); xmlFreeDoc(res); if (temp == 0) { ret = pcmk_rc_ok; } else { ret = EINVAL; } } xsltFreeStylesheet(xslt); return ret; #else return -1; #endif } \ No newline at end of file