kopia lustrzana https://github.com/magicbug/Cloudlog
547 wiersze
11 KiB
PHP
547 wiersze
11 KiB
PHP
<?php if ( ! defined('BASEPATH')) exit('No direct script access allowed');
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/**
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* CodeIgniter
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*
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* An open source application development framework for PHP 5.1.6 or newer
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*
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* @package CodeIgniter
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* @author ExpressionEngine Dev Team
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* @copyright Copyright (c) 2008 - 2011, EllisLab, Inc.
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* @license http://codeigniter.com/user_guide/license.html
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* @link http://codeigniter.com
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* @since Version 1.0
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* @filesource
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*/
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// ------------------------------------------------------------------------
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/**
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* CodeIgniter Encryption Class
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*
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* Provides two-way keyed encoding using XOR Hashing and Mcrypt
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*
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* @package CodeIgniter
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* @subpackage Libraries
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* @category Libraries
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* @author ExpressionEngine Dev Team
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* @link http://codeigniter.com/user_guide/libraries/encryption.html
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*/
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class CI_Encrypt {
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var $CI;
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var $encryption_key = '';
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var $_hash_type = 'sha1';
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var $_mcrypt_exists = FALSE;
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var $_mcrypt_cipher;
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var $_mcrypt_mode;
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/**
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* Constructor
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*
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* Simply determines whether the mcrypt library exists.
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*
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*/
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public function __construct()
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{
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$this->CI =& get_instance();
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$this->_mcrypt_exists = ( ! function_exists('mcrypt_encrypt')) ? FALSE : TRUE;
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log_message('debug', "Encrypt Class Initialized");
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}
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// --------------------------------------------------------------------
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/**
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* Fetch the encryption key
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*
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* Returns it as MD5 in order to have an exact-length 128 bit key.
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* Mcrypt is sensitive to keys that are not the correct length
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*
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* @access public
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* @param string
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* @return string
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*/
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function get_key($key = '')
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{
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if ($key == '')
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{
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if ($this->encryption_key != '')
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{
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return $this->encryption_key;
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}
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$CI =& get_instance();
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$key = $CI->config->item('encryption_key');
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if ($key == FALSE)
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{
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show_error('In order to use the encryption class requires that you set an encryption key in your config file.');
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}
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}
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return md5($key);
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}
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// --------------------------------------------------------------------
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/**
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* Set the encryption key
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*
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* @access public
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* @param string
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* @return void
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*/
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function set_key($key = '')
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{
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$this->encryption_key = $key;
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}
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// --------------------------------------------------------------------
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/**
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* Encode
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*
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* Encodes the message string using bitwise XOR encoding.
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* The key is combined with a random hash, and then it
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* too gets converted using XOR. The whole thing is then run
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* through mcrypt (if supported) using the randomized key.
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* The end result is a double-encrypted message string
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* that is randomized with each call to this function,
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* even if the supplied message and key are the same.
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*
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* @access public
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* @param string the string to encode
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* @param string the key
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* @return string
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*/
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function encode($string, $key = '')
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{
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$key = $this->get_key($key);
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if ($this->_mcrypt_exists === TRUE)
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{
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$enc = $this->mcrypt_encode($string, $key);
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}
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else
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{
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$enc = $this->_xor_encode($string, $key);
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}
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return base64_encode($enc);
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}
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// --------------------------------------------------------------------
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/**
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* Decode
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*
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* Reverses the above process
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*
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* @access public
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* @param string
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* @param string
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* @return string
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*/
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function decode($string, $key = '')
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{
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$key = $this->get_key($key);
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if (preg_match('/[^a-zA-Z0-9\/\+=]/', $string))
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{
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return FALSE;
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}
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$dec = base64_decode($string);
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if ($this->_mcrypt_exists === TRUE)
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{
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if (($dec = $this->mcrypt_decode($dec, $key)) === FALSE)
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{
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return FALSE;
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}
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}
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else
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{
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$dec = $this->_xor_decode($dec, $key);
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}
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return $dec;
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}
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// --------------------------------------------------------------------
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/**
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* Encode from Legacy
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*
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* Takes an encoded string from the original Encryption class algorithms and
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* returns a newly encoded string using the improved method added in 2.0.0
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* This allows for backwards compatibility and a method to transition to the
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* new encryption algorithms.
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*
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* For more details, see http://codeigniter.com/user_guide/installation/upgrade_200.html#encryption
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*
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* @access public
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* @param string
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* @param int (mcrypt mode constant)
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* @param string
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* @return string
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*/
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function encode_from_legacy($string, $legacy_mode = MCRYPT_MODE_ECB, $key = '')
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{
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if ($this->_mcrypt_exists === FALSE)
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{
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log_message('error', 'Encoding from legacy is available only when Mcrypt is in use.');
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return FALSE;
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}
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// decode it first
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// set mode temporarily to what it was when string was encoded with the legacy
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// algorithm - typically MCRYPT_MODE_ECB
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$current_mode = $this->_get_mode();
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$this->set_mode($legacy_mode);
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$key = $this->get_key($key);
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if (preg_match('/[^a-zA-Z0-9\/\+=]/', $string))
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{
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return FALSE;
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}
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$dec = base64_decode($string);
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if (($dec = $this->mcrypt_decode($dec, $key)) === FALSE)
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{
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return FALSE;
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}
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$dec = $this->_xor_decode($dec, $key);
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// set the mcrypt mode back to what it should be, typically MCRYPT_MODE_CBC
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$this->set_mode($current_mode);
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// and re-encode
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return base64_encode($this->mcrypt_encode($dec, $key));
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}
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// --------------------------------------------------------------------
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/**
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* XOR Encode
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*
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* Takes a plain-text string and key as input and generates an
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* encoded bit-string using XOR
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*
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* @access private
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* @param string
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* @param string
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* @return string
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*/
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function _xor_encode($string, $key)
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{
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$rand = '';
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while (strlen($rand) < 32)
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{
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$rand .= mt_rand(0, mt_getrandmax());
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}
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$rand = $this->hash($rand);
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$enc = '';
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for ($i = 0; $i < strlen($string); $i++)
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{
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$enc .= substr($rand, ($i % strlen($rand)), 1).(substr($rand, ($i % strlen($rand)), 1) ^ substr($string, $i, 1));
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}
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return $this->_xor_merge($enc, $key);
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}
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// --------------------------------------------------------------------
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/**
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* XOR Decode
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*
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* Takes an encoded string and key as input and generates the
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* plain-text original message
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*
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* @access private
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* @param string
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* @param string
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* @return string
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*/
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function _xor_decode($string, $key)
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{
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$string = $this->_xor_merge($string, $key);
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$dec = '';
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for ($i = 0; $i < strlen($string); $i++)
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{
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$dec .= (substr($string, $i++, 1) ^ substr($string, $i, 1));
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}
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return $dec;
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}
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// --------------------------------------------------------------------
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/**
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* XOR key + string Combiner
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*
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* Takes a string and key as input and computes the difference using XOR
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*
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* @access private
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* @param string
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* @param string
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* @return string
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*/
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function _xor_merge($string, $key)
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{
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$hash = $this->hash($key);
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$str = '';
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for ($i = 0; $i < strlen($string); $i++)
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{
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$str .= substr($string, $i, 1) ^ substr($hash, ($i % strlen($hash)), 1);
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}
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return $str;
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}
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// --------------------------------------------------------------------
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/**
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* Encrypt using Mcrypt
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*
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* @access public
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* @param string
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* @param string
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* @return string
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*/
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function mcrypt_encode($data, $key)
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{
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$init_size = mcrypt_get_iv_size($this->_get_cipher(), $this->_get_mode());
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$init_vect = mcrypt_create_iv($init_size, MCRYPT_RAND);
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return $this->_add_cipher_noise($init_vect.mcrypt_encrypt($this->_get_cipher(), $key, $data, $this->_get_mode(), $init_vect), $key);
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}
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// --------------------------------------------------------------------
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/**
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* Decrypt using Mcrypt
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*
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* @access public
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* @param string
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* @param string
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* @return string
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*/
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function mcrypt_decode($data, $key)
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{
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$data = $this->_remove_cipher_noise($data, $key);
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$init_size = mcrypt_get_iv_size($this->_get_cipher(), $this->_get_mode());
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if ($init_size > strlen($data))
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{
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return FALSE;
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}
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$init_vect = substr($data, 0, $init_size);
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$data = substr($data, $init_size);
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return rtrim(mcrypt_decrypt($this->_get_cipher(), $key, $data, $this->_get_mode(), $init_vect), "\0");
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}
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// --------------------------------------------------------------------
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/**
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* Adds permuted noise to the IV + encrypted data to protect
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* against Man-in-the-middle attacks on CBC mode ciphers
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* http://www.ciphersbyritter.com/GLOSSARY.HTM#IV
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*
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* Function description
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*
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* @access private
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* @param string
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* @param string
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* @return string
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*/
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function _add_cipher_noise($data, $key)
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{
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$keyhash = $this->hash($key);
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$keylen = strlen($keyhash);
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$str = '';
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for ($i = 0, $j = 0, $len = strlen($data); $i < $len; ++$i, ++$j)
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{
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if ($j >= $keylen)
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{
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$j = 0;
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}
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$str .= chr((ord($data[$i]) + ord($keyhash[$j])) % 256);
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}
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return $str;
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}
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// --------------------------------------------------------------------
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/**
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* Removes permuted noise from the IV + encrypted data, reversing
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* _add_cipher_noise()
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*
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* Function description
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*
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* @access public
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* @param type
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* @return type
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*/
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function _remove_cipher_noise($data, $key)
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{
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$keyhash = $this->hash($key);
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$keylen = strlen($keyhash);
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$str = '';
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for ($i = 0, $j = 0, $len = strlen($data); $i < $len; ++$i, ++$j)
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{
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if ($j >= $keylen)
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{
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$j = 0;
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}
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$temp = ord($data[$i]) - ord($keyhash[$j]);
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if ($temp < 0)
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{
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$temp = $temp + 256;
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}
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$str .= chr($temp);
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}
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return $str;
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}
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// --------------------------------------------------------------------
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/**
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* Set the Mcrypt Cipher
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*
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* @access public
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* @param constant
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* @return string
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*/
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function set_cipher($cipher)
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{
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$this->_mcrypt_cipher = $cipher;
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}
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// --------------------------------------------------------------------
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/**
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* Set the Mcrypt Mode
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*
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* @access public
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* @param constant
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* @return string
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*/
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function set_mode($mode)
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{
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$this->_mcrypt_mode = $mode;
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}
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// --------------------------------------------------------------------
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/**
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* Get Mcrypt cipher Value
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*
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* @access private
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* @return string
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*/
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function _get_cipher()
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{
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if ($this->_mcrypt_cipher == '')
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{
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$this->_mcrypt_cipher = MCRYPT_RIJNDAEL_256;
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}
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return $this->_mcrypt_cipher;
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}
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// --------------------------------------------------------------------
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/**
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* Get Mcrypt Mode Value
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*
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* @access private
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* @return string
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*/
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function _get_mode()
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{
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if ($this->_mcrypt_mode == '')
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{
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$this->_mcrypt_mode = MCRYPT_MODE_CBC;
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}
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return $this->_mcrypt_mode;
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}
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// --------------------------------------------------------------------
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/**
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* Set the Hash type
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*
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* @access public
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* @param string
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* @return string
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*/
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function set_hash($type = 'sha1')
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{
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$this->_hash_type = ($type != 'sha1' AND $type != 'md5') ? 'sha1' : $type;
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}
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// --------------------------------------------------------------------
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/**
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* Hash encode a string
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*
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* @access public
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* @param string
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* @return string
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*/
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function hash($str)
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{
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return ($this->_hash_type == 'sha1') ? $this->sha1($str) : md5($str);
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}
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// --------------------------------------------------------------------
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/**
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* Generate an SHA1 Hash
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*
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* @access public
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* @param string
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* @return string
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*/
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function sha1($str)
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{
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if ( ! function_exists('sha1'))
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{
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if ( ! function_exists('mhash'))
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{
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require_once(BASEPATH.'libraries/Sha1'.EXT);
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$SH = new CI_SHA;
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return $SH->generate($str);
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}
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else
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{
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return bin2hex(mhash(MHASH_SHA1, $str));
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}
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}
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else
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{
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return sha1($str);
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}
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}
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}
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// END CI_Encrypt class
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/* End of file Encrypt.php */
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/* Location: ./system/libraries/Encrypt.php */ |