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1008 lines
31 KiB
C++
1008 lines
31 KiB
C++
/* Copyright (c) 2000, 2012, Oracle and/or its affiliates.
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Copyright (c) 2011, 2014, SkySQL Ab.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; version 2 of the License.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA */
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/**
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@file
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@brief
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Get hostname for an IP address.
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Hostnames are checked with reverse name lookup and checked that they
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doesn't resemble an IP address.
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*/
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#include "sql_priv.h"
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#include "hostname.h"
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#include "my_global.h"
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#ifndef __WIN__
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#include <netdb.h> // getservbyname, servent
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#endif
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#include "hash_filo.h"
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#include <m_ctype.h>
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#include "log.h" // sql_print_warning,
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// sql_print_information
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#include "violite.h" // vio_getnameinfo,
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// vio_get_normalized_ip_string
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#ifdef __cplusplus
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extern "C" { // Because of SCO 3.2V4.2
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#endif
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#if !defined( __WIN__)
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#ifdef HAVE_SYS_UN_H
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#include <sys/un.h>
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#endif
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#include <sys/utsname.h>
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#endif // __WIN__
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#ifdef __cplusplus
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}
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#endif
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Host_errors::Host_errors()
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: m_connect(0),
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m_host_blocked(0),
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m_nameinfo_transient(0),
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m_nameinfo_permanent(0),
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m_format(0),
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m_addrinfo_transient(0),
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m_addrinfo_permanent(0),
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m_FCrDNS(0),
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m_host_acl(0),
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m_no_auth_plugin(0),
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m_auth_plugin(0),
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m_handshake(0),
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m_proxy_user(0),
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m_proxy_user_acl(0),
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m_authentication(0),
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m_ssl(0),
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m_max_user_connection(0),
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m_max_user_connection_per_hour(0),
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m_default_database(0),
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m_init_connect(0),
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m_local(0)
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{}
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Host_errors::~Host_errors()
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{}
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void Host_errors::reset()
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{
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m_connect= 0;
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m_host_blocked= 0;
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m_nameinfo_transient= 0;
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m_nameinfo_permanent= 0;
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m_format= 0;
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m_addrinfo_transient= 0;
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m_addrinfo_permanent= 0;
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m_FCrDNS= 0;
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m_host_acl= 0;
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m_no_auth_plugin= 0;
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m_auth_plugin= 0;
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m_handshake= 0;
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m_proxy_user= 0;
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m_proxy_user_acl= 0;
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m_authentication= 0;
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m_ssl= 0;
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m_max_user_connection= 0;
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m_max_user_connection_per_hour= 0;
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m_default_database= 0;
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m_init_connect= 0;
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m_local= 0;
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}
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void Host_errors::aggregate(const Host_errors *errors)
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{
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m_connect+= errors->m_connect;
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m_host_blocked+= errors->m_host_blocked;
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m_nameinfo_transient+= errors->m_nameinfo_transient;
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m_nameinfo_permanent+= errors->m_nameinfo_permanent;
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m_format+= errors->m_format;
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m_addrinfo_transient+= errors->m_addrinfo_transient;
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m_addrinfo_permanent+= errors->m_addrinfo_permanent;
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m_FCrDNS+= errors->m_FCrDNS;
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m_host_acl+= errors->m_host_acl;
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m_no_auth_plugin+= errors->m_no_auth_plugin;
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m_auth_plugin+= errors->m_auth_plugin;
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m_handshake+= errors->m_handshake;
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m_proxy_user+= errors->m_proxy_user;
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m_proxy_user_acl+= errors->m_proxy_user_acl;
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m_authentication+= errors->m_authentication;
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m_ssl+= errors->m_ssl;
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m_max_user_connection+= errors->m_max_user_connection;
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m_max_user_connection_per_hour+= errors->m_max_user_connection_per_hour;
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m_default_database+= errors->m_default_database;
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m_init_connect+= errors->m_init_connect;
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m_local+= errors->m_local;
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}
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static hash_filo *hostname_cache;
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ulong host_cache_size;
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void hostname_cache_refresh()
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{
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hostname_cache->clear();
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}
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uint hostname_cache_size()
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{
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return hostname_cache->size();
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}
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void hostname_cache_resize(uint size)
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{
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hostname_cache->resize(size);
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}
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bool hostname_cache_init()
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{
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Host_entry tmp;
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uint key_offset= (uint) ((char*) (&tmp.ip_key) - (char*) &tmp);
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if (!(hostname_cache= new hash_filo(host_cache_size,
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key_offset, HOST_ENTRY_KEY_SIZE,
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NULL, (my_hash_free_key) free,
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&my_charset_bin)))
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return 1;
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hostname_cache->clear();
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return 0;
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}
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void hostname_cache_free()
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{
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delete hostname_cache;
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hostname_cache= NULL;
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}
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void hostname_cache_lock()
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{
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mysql_mutex_lock(&hostname_cache->lock);
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}
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void hostname_cache_unlock()
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{
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mysql_mutex_unlock(&hostname_cache->lock);
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}
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static void prepare_hostname_cache_key(const char *ip_string,
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char *ip_key)
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{
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int ip_string_length= strlen(ip_string);
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DBUG_ASSERT(ip_string_length < HOST_ENTRY_KEY_SIZE);
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memset(ip_key, 0, HOST_ENTRY_KEY_SIZE);
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memcpy(ip_key, ip_string, ip_string_length);
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}
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Host_entry *hostname_cache_first()
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{ return (Host_entry *) hostname_cache->first(); }
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static inline Host_entry *hostname_cache_search(const char *ip_key)
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{
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return (Host_entry *) hostname_cache->search((uchar *) ip_key, 0);
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}
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static void add_hostname_impl(const char *ip_key, const char *hostname,
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bool validated, Host_errors *errors,
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ulonglong now)
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{
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Host_entry *entry;
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bool need_add= false;
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entry= hostname_cache_search(ip_key);
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if (likely(entry == NULL))
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{
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entry= (Host_entry *) malloc(sizeof (Host_entry));
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if (entry == NULL)
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return;
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need_add= true;
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memcpy(&entry->ip_key, ip_key, HOST_ENTRY_KEY_SIZE);
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entry->m_errors.reset();
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entry->m_hostname_length= 0;
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entry->m_host_validated= false;
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entry->m_first_seen= now;
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entry->m_last_seen= now;
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entry->m_first_error_seen= 0;
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entry->m_last_error_seen= 0;
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}
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else
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{
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entry->m_last_seen= now;
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}
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if (validated)
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{
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if (hostname != NULL)
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{
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uint len= strlen(hostname);
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if (len > sizeof(entry->m_hostname) - 1)
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len= sizeof(entry->m_hostname) - 1;
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memcpy(entry->m_hostname, hostname, len);
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entry->m_hostname[len]= '\0';
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entry->m_hostname_length= len;
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DBUG_PRINT("info",
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("Adding/Updating '%s' -> '%s' (validated) to the hostname cache...'",
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(const char *) ip_key,
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(const char *) entry->m_hostname));
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}
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else
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{
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entry->m_hostname_length= 0;
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DBUG_PRINT("info",
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("Adding/Updating '%s' -> NULL (validated) to the hostname cache...'",
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(const char *) ip_key));
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}
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entry->m_host_validated= true;
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/*
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New errors that are considered 'blocking',
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that will eventually cause the IP to be black listed and blocked.
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*/
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errors->sum_connect_errors();
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}
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else
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{
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entry->m_hostname_length= 0;
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entry->m_host_validated= false;
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/* Do not count new blocking errors during DNS failures. */
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errors->clear_connect_errors();
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DBUG_PRINT("info",
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("Adding/Updating '%s' -> NULL (not validated) to the hostname cache...'",
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(const char *) ip_key));
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}
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if (errors->has_error())
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entry->set_error_timestamps(now);
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entry->m_errors.aggregate(errors);
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if (need_add)
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hostname_cache->add(entry);
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return;
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}
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static void add_hostname(const char *ip_key, const char *hostname,
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bool validated, Host_errors *errors)
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{
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if (specialflag & SPECIAL_NO_HOST_CACHE)
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return;
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ulonglong now= my_hrtime().val;
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mysql_mutex_lock(&hostname_cache->lock);
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add_hostname_impl(ip_key, hostname, validated, errors, now);
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mysql_mutex_unlock(&hostname_cache->lock);
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return;
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}
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void inc_host_errors(const char *ip_string, Host_errors *errors)
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{
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if (!ip_string)
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return;
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ulonglong now= my_hrtime().val;
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char ip_key[HOST_ENTRY_KEY_SIZE];
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prepare_hostname_cache_key(ip_string, ip_key);
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mysql_mutex_lock(&hostname_cache->lock);
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Host_entry *entry= hostname_cache_search(ip_key);
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if (entry)
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{
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if (entry->m_host_validated)
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errors->sum_connect_errors();
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else
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errors->clear_connect_errors();
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entry->m_errors.aggregate(errors);
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entry->set_error_timestamps(now);
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}
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mysql_mutex_unlock(&hostname_cache->lock);
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}
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void reset_host_connect_errors(const char *ip_string)
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{
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if (!ip_string)
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return;
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char ip_key[HOST_ENTRY_KEY_SIZE];
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prepare_hostname_cache_key(ip_string, ip_key);
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mysql_mutex_lock(&hostname_cache->lock);
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Host_entry *entry= hostname_cache_search(ip_key);
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if (entry)
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entry->m_errors.clear_connect_errors();
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mysql_mutex_unlock(&hostname_cache->lock);
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}
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static inline bool is_ip_loopback(const struct sockaddr *ip)
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{
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switch (ip->sa_family) {
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case AF_INET:
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{
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/* Check for IPv4 127.0.0.1. */
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struct in_addr *ip4= &((struct sockaddr_in *) ip)->sin_addr;
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return ntohl(ip4->s_addr) == INADDR_LOOPBACK;
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}
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#ifdef HAVE_IPV6
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case AF_INET6:
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{
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/* Check for IPv6 ::1. */
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struct in6_addr *ip6= &((struct sockaddr_in6 *) ip)->sin6_addr;
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return IN6_IS_ADDR_LOOPBACK(ip6);
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}
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#endif /* HAVE_IPV6 */
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default:
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return FALSE;
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}
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}
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static inline bool is_hostname_valid(const char *hostname)
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{
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/*
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A hostname is invalid if it starts with a number followed by a dot
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(IPv4 address).
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*/
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if (!my_isdigit(&my_charset_latin1, hostname[0]))
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return TRUE;
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const char *p= hostname + 1;
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while (my_isdigit(&my_charset_latin1, *p))
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++p;
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return *p != '.';
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}
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/**
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Resolve IP-address to host name.
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This function does the following things:
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- resolves IP-address;
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- employs Forward Confirmed Reverse DNS technique to validate IP-address;
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- returns host name if IP-address is validated;
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- set value to out-variable connect_errors -- this variable represents the
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number of connection errors from the specified IP-address.
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- update the host_cache statistics
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NOTE: connect_errors are counted (are supported) only for the clients
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where IP-address can be resolved and FCrDNS check is passed.
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@param [in] ip_storage IP address (sockaddr). Must be set.
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@param [in] ip_string IP address (string). Must be set.
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@param [out] hostname
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@param [out] connect_errors
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@return Error status
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@retval 0 Success
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@retval RC_BLOCKED_HOST The host is blocked.
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The function does not set/report MySQL server error in case of failure.
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It's caller's responsibility to handle failures of this function
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properly.
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*/
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int ip_to_hostname(struct sockaddr_storage *ip_storage,
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const char *ip_string,
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char **hostname,
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uint *connect_errors)
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{
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const struct sockaddr *ip= (const sockaddr *) ip_storage;
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int err_code;
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bool err_status __attribute__((unused));
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Host_errors errors;
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DBUG_ENTER("ip_to_hostname");
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DBUG_PRINT("info", ("IP address: '%s'; family: %d.",
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(const char *) ip_string,
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(int) ip->sa_family));
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/* Default output values, for most cases. */
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*hostname= NULL;
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*connect_errors= 0;
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/* Check if we have loopback address (127.0.0.1 or ::1). */
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if (is_ip_loopback(ip))
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{
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DBUG_PRINT("info", ("Loopback address detected."));
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/* Do not count connect errors from localhost. */
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*hostname= (char *) my_localhost;
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DBUG_RETURN(0);
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}
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/* Prepare host name cache key. */
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char ip_key[HOST_ENTRY_KEY_SIZE];
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prepare_hostname_cache_key(ip_string, ip_key);
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/* Check first if we have host name in the cache. */
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if (!(specialflag & SPECIAL_NO_HOST_CACHE))
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{
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ulonglong now= my_hrtime().val;
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mysql_mutex_lock(&hostname_cache->lock);
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Host_entry *entry= hostname_cache_search(ip_key);
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if (entry)
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{
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entry->m_last_seen= now;
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if (entry->m_errors.m_connect > max_connect_errors)
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{
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entry->m_errors.m_host_blocked++;
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entry->set_error_timestamps(now);
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*connect_errors= entry->m_errors.m_connect;
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mysql_mutex_unlock(&hostname_cache->lock);
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DBUG_RETURN(RC_BLOCKED_HOST);
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}
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/*
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If there is an IP -> HOSTNAME association in the cache,
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but for a hostname that was not validated,
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do not return that hostname: perform the network validation again.
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*/
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if (entry->m_host_validated)
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{
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if (entry->m_hostname_length)
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*hostname= my_strdup(entry->m_hostname, MYF(0));
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DBUG_PRINT("info",("IP (%s) has been found in the cache. "
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"Hostname: '%s'",
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(const char *) ip_key,
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(const char *) (*hostname? *hostname : "null")
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));
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mysql_mutex_unlock(&hostname_cache->lock);
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DBUG_RETURN(0);
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}
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}
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mysql_mutex_unlock(&hostname_cache->lock);
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}
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/*
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Resolve host name. Return an error if a host name can not be resolved
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(instead of returning the numeric form of the host name).
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*/
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char hostname_buffer[NI_MAXHOST];
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DBUG_PRINT("info", ("Resolving '%s'...", (const char *) ip_key));
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err_code= vio_getnameinfo(ip, hostname_buffer, NI_MAXHOST, NULL, 0,
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NI_NAMEREQD);
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/*
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===========================================================================
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DEBUG code only (begin)
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Simulate various output from vio_getnameinfo().
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===========================================================================
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*/
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DBUG_EXECUTE_IF("getnameinfo_error_noname",
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{
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strcpy(hostname_buffer, "<garbage>");
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err_code= EAI_NONAME;
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}
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);
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DBUG_EXECUTE_IF("getnameinfo_error_again",
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{
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strcpy(hostname_buffer, "<garbage>");
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err_code= EAI_AGAIN;
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}
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);
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DBUG_EXECUTE_IF("getnameinfo_fake_ipv4",
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{
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strcpy(hostname_buffer, "santa.claus.ipv4.example.com");
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err_code= 0;
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}
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);
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DBUG_EXECUTE_IF("getnameinfo_fake_ipv6",
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{
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strcpy(hostname_buffer, "santa.claus.ipv6.example.com");
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err_code= 0;
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}
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);
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DBUG_EXECUTE_IF("getnameinfo_format_ipv4",
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{
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strcpy(hostname_buffer, "12.12.12.12");
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err_code= 0;
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}
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);
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|
|
DBUG_EXECUTE_IF("getnameinfo_format_ipv6",
|
|
{
|
|
strcpy(hostname_buffer, "12:DEAD:BEEF:0");
|
|
err_code= 0;
|
|
}
|
|
);
|
|
|
|
/*
|
|
===========================================================================
|
|
DEBUG code only (end)
|
|
===========================================================================
|
|
*/
|
|
|
|
if (err_code)
|
|
{
|
|
// NOTE: gai_strerror() returns a string ending by a dot.
|
|
|
|
DBUG_PRINT("error", ("IP address '%s' could not be resolved: %s",
|
|
(const char *) ip_key,
|
|
(const char *) gai_strerror(err_code)));
|
|
|
|
sql_print_warning("IP address '%s' could not be resolved: %s",
|
|
(const char *) ip_key,
|
|
(const char *) gai_strerror(err_code));
|
|
|
|
bool validated;
|
|
if (vio_is_no_name_error(err_code))
|
|
{
|
|
/*
|
|
The no-name error means that there is no reverse address mapping
|
|
for the IP address. A host name can not be resolved.
|
|
*/
|
|
errors.m_nameinfo_permanent= 1;
|
|
validated= true;
|
|
}
|
|
else
|
|
{
|
|
/*
|
|
If it is not the no-name error, we should not cache the hostname
|
|
(or rather its absence), because the failure might be transient.
|
|
Only the ip error statistics are cached.
|
|
*/
|
|
errors.m_nameinfo_transient= 1;
|
|
validated= false;
|
|
}
|
|
add_hostname(ip_key, NULL, validated, &errors);
|
|
|
|
DBUG_RETURN(0);
|
|
}
|
|
|
|
DBUG_PRINT("info", ("IP '%s' resolved to '%s'.",
|
|
(const char *) ip_key,
|
|
(const char *) hostname_buffer));
|
|
|
|
/*
|
|
Validate hostname: the server does not accept host names, which
|
|
resemble IP addresses.
|
|
|
|
The thing is that theoretically, a host name can be in a form of IPv4
|
|
address (123.example.org, or 1.2 or even 1.2.3.4). We have to deny such
|
|
host names because ACL-systems is not designed to work with them.
|
|
|
|
For example, it is possible to specify a host name mask (like
|
|
192.168.1.%) for an ACL rule. Then, if IPv4-like hostnames are allowed,
|
|
there is a security hole: instead of allowing access for
|
|
192.168.1.0/255 network (which was assumed by the user), the access
|
|
will be allowed for host names like 192.168.1.example.org.
|
|
*/
|
|
|
|
if (!is_hostname_valid(hostname_buffer))
|
|
{
|
|
DBUG_PRINT("error", ("IP address '%s' has been resolved "
|
|
"to the host name '%s', which resembles "
|
|
"IPv4-address itself.",
|
|
(const char *) ip_key,
|
|
(const char *) hostname_buffer));
|
|
|
|
sql_print_warning("IP address '%s' has been resolved "
|
|
"to the host name '%s', which resembles "
|
|
"IPv4-address itself.",
|
|
(const char *) ip_key,
|
|
(const char *) hostname_buffer);
|
|
|
|
errors.m_format= 1;
|
|
add_hostname(ip_key, hostname_buffer, false, &errors);
|
|
|
|
DBUG_RETURN(false);
|
|
}
|
|
|
|
/* Get IP-addresses for the resolved host name (FCrDNS technique). */
|
|
|
|
struct addrinfo hints;
|
|
struct addrinfo *addr_info_list;
|
|
/*
|
|
Makes fault injection with DBUG_EXECUTE_IF easier.
|
|
Invoking free_addr_info(NULL) crashes on some platforms.
|
|
*/
|
|
bool free_addr_info_list= false;
|
|
|
|
memset(&hints, 0, sizeof (struct addrinfo));
|
|
hints.ai_flags= AI_PASSIVE;
|
|
hints.ai_socktype= SOCK_STREAM;
|
|
hints.ai_family= AF_UNSPEC;
|
|
|
|
DBUG_PRINT("info", ("Getting IP addresses for hostname '%s'...",
|
|
(const char *) hostname_buffer));
|
|
|
|
err_code= getaddrinfo(hostname_buffer, NULL, &hints, &addr_info_list);
|
|
if (err_code == 0)
|
|
free_addr_info_list= true;
|
|
|
|
/*
|
|
===========================================================================
|
|
DEBUG code only (begin)
|
|
Simulate various output from getaddrinfo().
|
|
===========================================================================
|
|
*/
|
|
DBUG_EXECUTE_IF("getaddrinfo_error_noname",
|
|
{
|
|
if (free_addr_info_list)
|
|
freeaddrinfo(addr_info_list);
|
|
|
|
addr_info_list= NULL;
|
|
err_code= EAI_NONAME;
|
|
free_addr_info_list= false;
|
|
}
|
|
);
|
|
|
|
DBUG_EXECUTE_IF("getaddrinfo_error_again",
|
|
{
|
|
if (free_addr_info_list)
|
|
freeaddrinfo(addr_info_list);
|
|
|
|
addr_info_list= NULL;
|
|
err_code= EAI_AGAIN;
|
|
free_addr_info_list= false;
|
|
}
|
|
);
|
|
|
|
DBUG_EXECUTE_IF("getaddrinfo_fake_bad_ipv4",
|
|
{
|
|
if (free_addr_info_list)
|
|
freeaddrinfo(addr_info_list);
|
|
|
|
struct sockaddr_in *debug_addr;
|
|
/*
|
|
Not thread safe, which is ok.
|
|
Only one connection at a time is tested with
|
|
fault injection.
|
|
*/
|
|
static struct sockaddr_in debug_sock_addr[2];
|
|
static struct addrinfo debug_addr_info[2];
|
|
/* Simulating ipv4 192.0.2.126 */
|
|
debug_addr= & debug_sock_addr[0];
|
|
debug_addr->sin_family= AF_INET;
|
|
debug_addr->sin_addr.s_addr= inet_addr("192.0.2.126");
|
|
|
|
/* Simulating ipv4 192.0.2.127 */
|
|
debug_addr= & debug_sock_addr[1];
|
|
debug_addr->sin_family= AF_INET;
|
|
debug_addr->sin_addr.s_addr= inet_addr("192.0.2.127");
|
|
|
|
debug_addr_info[0].ai_addr= (struct sockaddr*) & debug_sock_addr[0];
|
|
debug_addr_info[0].ai_addrlen= sizeof (struct sockaddr_in);
|
|
debug_addr_info[0].ai_next= & debug_addr_info[1];
|
|
|
|
debug_addr_info[1].ai_addr= (struct sockaddr*) & debug_sock_addr[1];
|
|
debug_addr_info[1].ai_addrlen= sizeof (struct sockaddr_in);
|
|
debug_addr_info[1].ai_next= NULL;
|
|
|
|
addr_info_list= & debug_addr_info[0];
|
|
err_code= 0;
|
|
free_addr_info_list= false;
|
|
}
|
|
);
|
|
|
|
DBUG_EXECUTE_IF("getaddrinfo_fake_good_ipv4",
|
|
{
|
|
if (free_addr_info_list)
|
|
freeaddrinfo(addr_info_list);
|
|
|
|
struct sockaddr_in *debug_addr;
|
|
static struct sockaddr_in debug_sock_addr[2];
|
|
static struct addrinfo debug_addr_info[2];
|
|
/* Simulating ipv4 192.0.2.5 */
|
|
debug_addr= & debug_sock_addr[0];
|
|
debug_addr->sin_family= AF_INET;
|
|
debug_addr->sin_addr.s_addr= inet_addr("192.0.2.5");
|
|
|
|
/* Simulating ipv4 192.0.2.4 */
|
|
debug_addr= & debug_sock_addr[1];
|
|
debug_addr->sin_family= AF_INET;
|
|
debug_addr->sin_addr.s_addr= inet_addr("192.0.2.4");
|
|
|
|
debug_addr_info[0].ai_addr= (struct sockaddr*) & debug_sock_addr[0];
|
|
debug_addr_info[0].ai_addrlen= sizeof (struct sockaddr_in);
|
|
debug_addr_info[0].ai_next= & debug_addr_info[1];
|
|
|
|
debug_addr_info[1].ai_addr= (struct sockaddr*) & debug_sock_addr[1];
|
|
debug_addr_info[1].ai_addrlen= sizeof (struct sockaddr_in);
|
|
debug_addr_info[1].ai_next= NULL;
|
|
|
|
addr_info_list= & debug_addr_info[0];
|
|
err_code= 0;
|
|
free_addr_info_list= false;
|
|
}
|
|
);
|
|
|
|
#ifdef HAVE_IPV6
|
|
DBUG_EXECUTE_IF("getaddrinfo_fake_bad_ipv6",
|
|
{
|
|
if (free_addr_info_list)
|
|
freeaddrinfo(addr_info_list);
|
|
|
|
struct sockaddr_in6 *debug_addr;
|
|
struct in6_addr *ip6;
|
|
/*
|
|
Not thread safe, which is ok.
|
|
Only one connection at a time is tested with
|
|
fault injection.
|
|
*/
|
|
static struct sockaddr_in6 debug_sock_addr[2];
|
|
static struct addrinfo debug_addr_info[2];
|
|
/* Simulating ipv6 2001:DB8::6:7E */
|
|
debug_addr= & debug_sock_addr[0];
|
|
debug_addr->sin6_family= AF_INET6;
|
|
ip6= & debug_addr->sin6_addr;
|
|
/* inet_pton not available on Windows XP. */
|
|
ip6->s6_addr[ 0] = 0x20;
|
|
ip6->s6_addr[ 1] = 0x01;
|
|
ip6->s6_addr[ 2] = 0x0d;
|
|
ip6->s6_addr[ 3] = 0xb8;
|
|
ip6->s6_addr[ 4] = 0x00;
|
|
ip6->s6_addr[ 5] = 0x00;
|
|
ip6->s6_addr[ 6] = 0x00;
|
|
ip6->s6_addr[ 7] = 0x00;
|
|
ip6->s6_addr[ 8] = 0x00;
|
|
ip6->s6_addr[ 9] = 0x00;
|
|
ip6->s6_addr[10] = 0x00;
|
|
ip6->s6_addr[11] = 0x00;
|
|
ip6->s6_addr[12] = 0x00;
|
|
ip6->s6_addr[13] = 0x06;
|
|
ip6->s6_addr[14] = 0x00;
|
|
ip6->s6_addr[15] = 0x7e;
|
|
|
|
/* Simulating ipv6 2001:DB8::6:7F */
|
|
debug_addr= & debug_sock_addr[1];
|
|
debug_addr->sin6_family= AF_INET6;
|
|
ip6= & debug_addr->sin6_addr;
|
|
ip6->s6_addr[ 0] = 0x20;
|
|
ip6->s6_addr[ 1] = 0x01;
|
|
ip6->s6_addr[ 2] = 0x0d;
|
|
ip6->s6_addr[ 3] = 0xb8;
|
|
ip6->s6_addr[ 4] = 0x00;
|
|
ip6->s6_addr[ 5] = 0x00;
|
|
ip6->s6_addr[ 6] = 0x00;
|
|
ip6->s6_addr[ 7] = 0x00;
|
|
ip6->s6_addr[ 8] = 0x00;
|
|
ip6->s6_addr[ 9] = 0x00;
|
|
ip6->s6_addr[10] = 0x00;
|
|
ip6->s6_addr[11] = 0x00;
|
|
ip6->s6_addr[12] = 0x00;
|
|
ip6->s6_addr[13] = 0x06;
|
|
ip6->s6_addr[14] = 0x00;
|
|
ip6->s6_addr[15] = 0x7f;
|
|
|
|
debug_addr_info[0].ai_addr= (struct sockaddr*) & debug_sock_addr[0];
|
|
debug_addr_info[0].ai_addrlen= sizeof (struct sockaddr_in6);
|
|
debug_addr_info[0].ai_next= & debug_addr_info[1];
|
|
|
|
debug_addr_info[1].ai_addr= (struct sockaddr*) & debug_sock_addr[1];
|
|
debug_addr_info[1].ai_addrlen= sizeof (struct sockaddr_in6);
|
|
debug_addr_info[1].ai_next= NULL;
|
|
|
|
addr_info_list= & debug_addr_info[0];
|
|
err_code= 0;
|
|
free_addr_info_list= false;
|
|
}
|
|
);
|
|
|
|
DBUG_EXECUTE_IF("getaddrinfo_fake_good_ipv6",
|
|
{
|
|
if (free_addr_info_list)
|
|
freeaddrinfo(addr_info_list);
|
|
|
|
struct sockaddr_in6 *debug_addr;
|
|
struct in6_addr *ip6;
|
|
/*
|
|
Not thread safe, which is ok.
|
|
Only one connection at a time is tested with
|
|
fault injection.
|
|
*/
|
|
static struct sockaddr_in6 debug_sock_addr[2];
|
|
static struct addrinfo debug_addr_info[2];
|
|
/* Simulating ipv6 2001:DB8::6:7 */
|
|
debug_addr= & debug_sock_addr[0];
|
|
debug_addr->sin6_family= AF_INET6;
|
|
ip6= & debug_addr->sin6_addr;
|
|
ip6->s6_addr[ 0] = 0x20;
|
|
ip6->s6_addr[ 1] = 0x01;
|
|
ip6->s6_addr[ 2] = 0x0d;
|
|
ip6->s6_addr[ 3] = 0xb8;
|
|
ip6->s6_addr[ 4] = 0x00;
|
|
ip6->s6_addr[ 5] = 0x00;
|
|
ip6->s6_addr[ 6] = 0x00;
|
|
ip6->s6_addr[ 7] = 0x00;
|
|
ip6->s6_addr[ 8] = 0x00;
|
|
ip6->s6_addr[ 9] = 0x00;
|
|
ip6->s6_addr[10] = 0x00;
|
|
ip6->s6_addr[11] = 0x00;
|
|
ip6->s6_addr[12] = 0x00;
|
|
ip6->s6_addr[13] = 0x06;
|
|
ip6->s6_addr[14] = 0x00;
|
|
ip6->s6_addr[15] = 0x07;
|
|
|
|
/* Simulating ipv6 2001:DB8::6:6 */
|
|
debug_addr= & debug_sock_addr[1];
|
|
debug_addr->sin6_family= AF_INET6;
|
|
ip6= & debug_addr->sin6_addr;
|
|
ip6->s6_addr[ 0] = 0x20;
|
|
ip6->s6_addr[ 1] = 0x01;
|
|
ip6->s6_addr[ 2] = 0x0d;
|
|
ip6->s6_addr[ 3] = 0xb8;
|
|
ip6->s6_addr[ 4] = 0x00;
|
|
ip6->s6_addr[ 5] = 0x00;
|
|
ip6->s6_addr[ 6] = 0x00;
|
|
ip6->s6_addr[ 7] = 0x00;
|
|
ip6->s6_addr[ 8] = 0x00;
|
|
ip6->s6_addr[ 9] = 0x00;
|
|
ip6->s6_addr[10] = 0x00;
|
|
ip6->s6_addr[11] = 0x00;
|
|
ip6->s6_addr[12] = 0x00;
|
|
ip6->s6_addr[13] = 0x06;
|
|
ip6->s6_addr[14] = 0x00;
|
|
ip6->s6_addr[15] = 0x06;
|
|
|
|
debug_addr_info[0].ai_addr= (struct sockaddr*) & debug_sock_addr[0];
|
|
debug_addr_info[0].ai_addrlen= sizeof (struct sockaddr_in6);
|
|
debug_addr_info[0].ai_next= & debug_addr_info[1];
|
|
|
|
debug_addr_info[1].ai_addr= (struct sockaddr*) & debug_sock_addr[1];
|
|
debug_addr_info[1].ai_addrlen= sizeof (struct sockaddr_in6);
|
|
debug_addr_info[1].ai_next= NULL;
|
|
|
|
addr_info_list= & debug_addr_info[0];
|
|
err_code= 0;
|
|
free_addr_info_list= false;
|
|
}
|
|
);
|
|
#endif /* HAVE_IPV6 */
|
|
|
|
/*
|
|
===========================================================================
|
|
DEBUG code only (end)
|
|
===========================================================================
|
|
*/
|
|
|
|
if (err_code != 0)
|
|
{
|
|
sql_print_warning("Host name '%s' could not be resolved: %s",
|
|
(const char *) hostname_buffer,
|
|
(const char *) gai_strerror(err_code));
|
|
|
|
bool validated;
|
|
|
|
if (err_code == EAI_NONAME)
|
|
{
|
|
errors.m_addrinfo_permanent= 1;
|
|
validated= true;
|
|
}
|
|
else
|
|
{
|
|
/*
|
|
Don't cache responses when the DNS server is down, as otherwise
|
|
transient DNS failure may leave any number of clients (those
|
|
that attempted to connect during the outage) unable to connect
|
|
indefinitely.
|
|
Only cache error statistics.
|
|
*/
|
|
errors.m_addrinfo_transient= 1;
|
|
validated= false;
|
|
}
|
|
add_hostname(ip_key, NULL, validated, &errors);
|
|
|
|
DBUG_RETURN(false);
|
|
}
|
|
|
|
/* Check that getaddrinfo() returned the used IP (FCrDNS technique). */
|
|
|
|
DBUG_PRINT("info", ("The following IP addresses found for '%s':",
|
|
(const char *) hostname_buffer));
|
|
|
|
for (struct addrinfo *addr_info= addr_info_list;
|
|
addr_info; addr_info= addr_info->ai_next)
|
|
{
|
|
char ip_buffer[HOST_ENTRY_KEY_SIZE];
|
|
|
|
{
|
|
err_status=
|
|
vio_get_normalized_ip_string(addr_info->ai_addr, addr_info->ai_addrlen,
|
|
ip_buffer, sizeof (ip_buffer));
|
|
DBUG_ASSERT(!err_status);
|
|
}
|
|
|
|
DBUG_PRINT("info", (" - '%s'", (const char *) ip_buffer));
|
|
|
|
if (strcasecmp(ip_key, ip_buffer) == 0)
|
|
{
|
|
/* Copy host name string to be stored in the cache. */
|
|
|
|
*hostname= my_strdup(hostname_buffer, MYF(0));
|
|
|
|
if (!*hostname)
|
|
{
|
|
DBUG_PRINT("error", ("Out of memory."));
|
|
|
|
if (free_addr_info_list)
|
|
freeaddrinfo(addr_info_list);
|
|
DBUG_RETURN(true);
|
|
}
|
|
|
|
break;
|
|
}
|
|
}
|
|
|
|
/* Log resolved IP-addresses if no match was found. */
|
|
|
|
if (!*hostname)
|
|
{
|
|
errors.m_FCrDNS= 1;
|
|
|
|
sql_print_warning("Hostname '%s' does not resolve to '%s'.",
|
|
(const char *) hostname_buffer,
|
|
(const char *) ip_key);
|
|
sql_print_information("Hostname '%s' has the following IP addresses:",
|
|
(const char *) hostname_buffer);
|
|
|
|
for (struct addrinfo *addr_info= addr_info_list;
|
|
addr_info; addr_info= addr_info->ai_next)
|
|
{
|
|
char ip_buffer[HOST_ENTRY_KEY_SIZE];
|
|
|
|
err_status=
|
|
vio_get_normalized_ip_string(addr_info->ai_addr, addr_info->ai_addrlen,
|
|
ip_buffer, sizeof (ip_buffer));
|
|
DBUG_ASSERT(!err_status);
|
|
|
|
sql_print_information(" - %s", (const char *) ip_buffer);
|
|
}
|
|
}
|
|
|
|
/* Add an entry for the IP to the cache. */
|
|
add_hostname(ip_key, *hostname, true, &errors);
|
|
|
|
/* Free the result of getaddrinfo(). */
|
|
if (free_addr_info_list)
|
|
freeaddrinfo(addr_info_list);
|
|
|
|
DBUG_RETURN(false);
|
|
}
|