314 lines
8.2 KiB
PHP
314 lines
8.2 KiB
PHP
<?php
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/* vim: set expandtab tabstop=4 shiftwidth=4 softtabstop=4: */
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/**
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* Crypt_Blowfish allows for encryption and decryption on the fly using
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* the Blowfish algorithm. Crypt_Blowfish does not require the mcrypt
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* PHP extension, it uses only PHP.
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* Crypt_Blowfish support encryption/decryption with or without a secret key.
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*
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*
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* PHP versions 4 and 5
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*
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* LICENSE: This source file is subject to version 3.0 of the PHP license
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* that is available through the world-wide-web at the following URI:
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* http://www.php.net/license/3_0.txt. If you did not receive a copy of
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* the PHP License and are unable to obtain it through the web, please
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* send a note to license@php.net so we can mail you a copy immediately.
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*
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* @category Encryption
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* @package Crypt_Blowfish
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* @author Matthew Fonda <mfonda@php.net>
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* @copyright 2005 Matthew Fonda
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* @license http://www.php.net/license/3_0.txt PHP License 3.0
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* @version CVS: $Id: Blowfish.php,v 1.81 2005/05/30 18:40:36 mfonda Exp $
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* @link http://pear.php.net/package/Crypt_Blowfish
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*/
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require_once 'PEAR.php';
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/**
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*
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* Example usage:
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* $bf = new Crypt_Blowfish('some secret key!');
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* $encrypted = $bf->encrypt('this is some example plain text');
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* $plaintext = $bf->decrypt($encrypted);
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* echo "plain text: $plaintext";
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*
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*
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* @category Encryption
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* @package Crypt_Blowfish
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* @author Matthew Fonda <mfonda@php.net>
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* @copyright 2005 Matthew Fonda
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* @license http://www.php.net/license/3_0.txt PHP License 3.0
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* @link http://pear.php.net/package/Crypt_Blowfish
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* @version @package_version@
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* @access public
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*/
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class Legacy_Crypt_Blowfish
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{
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/**
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* P-Array contains 18 32-bit subkeys
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*
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* @var array
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* @access private
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*/
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var $_P = array();
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/**
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* Array of four S-Blocks each containing 256 32-bit entries
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*
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* @var array
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* @access private
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*/
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var $_S = array();
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/**
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* Mcrypt td resource
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*
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* @var resource
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* @access private
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*/
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var $_td = null;
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/**
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* Initialization vector
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*
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* @var string
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* @access private
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*/
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var $_iv = null;
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/**
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* Crypt_Blowfish Constructor
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* Initializes the Crypt_Blowfish object, and gives a sets
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* the secret key
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*
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* @param string $key
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* @access public
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*/
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function Legacy_Crypt_Blowfish($key)
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{
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if (extension_loaded('mcrypt')) {
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$this->_td = mcrypt_module_open(MCRYPT_BLOWFISH, '', 'ecb', '');
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$this->_iv = mcrypt_create_iv(8, MCRYPT_RAND);
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}
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$this->setKey($key);
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}
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/**
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* Deprecated isReady method
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*
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* @return bool
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* @access public
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* @deprecated
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*/
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function isReady()
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{
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return true;
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}
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/**
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* Deprecated init method - init is now a private
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* method and has been replaced with _init
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*
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* @return bool
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* @access public
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* @deprecated
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* @see Crypt_Blowfish::_init()
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*/
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function init()
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{
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$this->_init();
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}
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/**
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* Initializes the Crypt_Blowfish object
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*
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* @access private
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*/
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function _init()
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{
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$defaults = new \Crypt_Blowfish_DefaultKey();
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$this->_P = $defaults->P;
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$this->_S = $defaults->S;
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}
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/**
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* Enciphers a single 64 bit block
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*
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* @param int &$Xl
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* @param int &$Xr
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* @access private
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*/
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function _encipher(&$Xl, &$Xr)
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{
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for ($i = 0; $i < 16; $i++) {
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$temp = $Xl ^ $this->_P[$i];
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$Xl = ((($this->_S[0][($temp>>24) & 255] +
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$this->_S[1][($temp>>16) & 255]) ^
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$this->_S[2][($temp>>8) & 255]) +
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$this->_S[3][$temp & 255]) ^ $Xr;
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$Xr = $temp;
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}
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$Xr = $Xl ^ $this->_P[16];
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$Xl = $temp ^ $this->_P[17];
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}
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/**
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* Deciphers a single 64 bit block
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*
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* @param int &$Xl
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* @param int &$Xr
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* @access private
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*/
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function _decipher(&$Xl, &$Xr)
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{
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for ($i = 17; $i > 1; $i--) {
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$temp = $Xl ^ $this->_P[$i];
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$Xl = ((($this->_S[0][($temp>>24) & 255] +
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$this->_S[1][($temp>>16) & 255]) ^
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$this->_S[2][($temp>>8) & 255]) +
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$this->_S[3][$temp & 255]) ^ $Xr;
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$Xr = $temp;
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}
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$Xr = $Xl ^ $this->_P[1];
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$Xl = $temp ^ $this->_P[0];
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}
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/**
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* Encrypts a string
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*
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* @param string $plainText
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* @return string Returns cipher text on success, PEAR_Error on failure
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* @access public
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*/
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function encrypt($plainText)
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{
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if (!is_string($plainText)) {
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\PEAR::raiseError('Plain text must be a string', 0, PEAR_ERROR_DIE);
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}
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if (extension_loaded('mcrypt')) {
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return mcrypt_generic($this->_td, $plainText);
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}
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$cipherText = '';
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$len = strlen($plainText);
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$plainText .= str_repeat(chr(0),(8 - ($len%8))%8);
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for ($i = 0; $i < $len; $i += 8) {
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list(,$Xl,$Xr) = unpack("N2",substr($plainText,$i,8));
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$this->_encipher($Xl, $Xr);
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$cipherText .= pack("N2", $Xl, $Xr);
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}
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return $cipherText;
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}
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/**
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* Decrypts an encrypted string
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*
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* @param string $cipherText
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* @return string Returns plain text on success, PEAR_Error on failure
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* @access public
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*/
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function decrypt($cipherText)
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{
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if (!is_string($cipherText)) {
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\PEAR::raiseError('Cipher text must be a string', 1, PEAR_ERROR_DIE);
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}
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if (extension_loaded('mcrypt')) {
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return mdecrypt_generic($this->_td, $cipherText);
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}
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$plainText = '';
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$len = strlen($cipherText);
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$cipherText .= str_repeat(chr(0),(8 - ($len%8))%8);
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for ($i = 0; $i < $len; $i += 8) {
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list(,$Xl,$Xr) = unpack("N2",substr($cipherText,$i,8));
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$this->_decipher($Xl, $Xr);
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$plainText .= pack("N2", $Xl, $Xr);
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}
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return $plainText;
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}
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/**
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* Sets the secret key
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* The key must be non-zero, and less than or equal to
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* 56 characters in length.
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*
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* @param string $key
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* @return bool Returns true on success, PEAR_Error on failure
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* @access public
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*/
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function setKey($key)
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{
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if (!is_string($key)) {
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\PEAR::raiseError('Key must be a string', 2, PEAR_ERROR_DIE);
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}
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$len = strlen($key);
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if ($len > 56 || $len == 0) {
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\PEAR::raiseError('Key must be less than 56 characters and non-zero. Supplied key length: ' . $len, 3, PEAR_ERROR_DIE);
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}
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if (extension_loaded('mcrypt')) {
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mcrypt_generic_init($this->_td, $key, $this->_iv);
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return true;
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}
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require_once 'Blowfish/DefaultKey.php';
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$this->_init();
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$k = 0;
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$data = 0;
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$datal = 0;
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$datar = 0;
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for ($i = 0; $i < 18; $i++) {
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$data = 0;
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for ($j = 4; $j > 0; $j--) {
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$data = $data << 8 | ord($key{$k});
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$k = ($k+1) % $len;
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}
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$this->_P[$i] ^= $data;
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}
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for ($i = 0; $i <= 16; $i += 2) {
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$this->_encipher($datal, $datar);
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$this->_P[$i] = $datal;
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$this->_P[$i+1] = $datar;
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}
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for ($i = 0; $i < 256; $i += 2) {
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$this->_encipher($datal, $datar);
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$this->_S[0][$i] = $datal;
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$this->_S[0][$i+1] = $datar;
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}
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for ($i = 0; $i < 256; $i += 2) {
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$this->_encipher($datal, $datar);
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$this->_S[1][$i] = $datal;
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$this->_S[1][$i+1] = $datar;
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}
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for ($i = 0; $i < 256; $i += 2) {
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$this->_encipher($datal, $datar);
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$this->_S[2][$i] = $datal;
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$this->_S[2][$i+1] = $datar;
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}
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for ($i = 0; $i < 256; $i += 2) {
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$this->_encipher($datal, $datar);
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$this->_S[3][$i] = $datal;
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$this->_S[3][$i+1] = $datar;
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}
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return true;
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}
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}
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