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- speed up BigInteger.php
- added support for more public / private key formats (thanks, m4rc!) git-svn-id: http://phpseclib.svn.sourceforge.net/svnroot/phpseclib/trunk@91 21d32557-59b3-4da0-833f-c5933fad653e
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@ -62,7 +62,7 @@
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* @author Jim Wigginton <terrafrost@php.net>
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* @copyright MMIX Jim Wigginton
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* @license http://www.gnu.org/licenses/lgpl.txt
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* @version $Id: RSA.php,v 1.10 2010-01-29 06:21:16 terrafrost Exp $
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* @version $Id: RSA.php,v 1.11 2010-02-26 03:40:25 terrafrost Exp $
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* @link http://phpseclib.sourceforge.net
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*/
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@ -767,35 +767,80 @@ class Crypt_RSA {
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implementation are part of the standard, as well.
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* OpenSSL is the de facto standard. It's utilized by OpenSSH and other projects */
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if (preg_match('#DEK-Info: DES-EDE3-CBC,(.+)#', $key, $matches)) {
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$iv = pack('H*', trim($matches[1]));
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if (preg_match('#DEK-Info: (.+),(.+)#', $key, $matches)) {
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$iv = pack('H*', trim($matches[2]));
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$symkey = pack('H*', md5($this->password . $iv)); // symkey is short for symmetric key
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$symkey.= substr(pack('H*', md5($symkey . $this->password . $iv)), 0, 8);
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$ciphertext = base64_decode(preg_replace('#.+(\r|\n|\r\n)\1|[\r\n]|-.+-#s', '', $key));
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$ciphertext = preg_replace('#.+(\r|\n|\r\n)\1|[\r\n]|-.+-#s', '', $key);
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$ciphertext = preg_match('#^[a-zA-Z\d/+]*={0,2}$#', $ciphertext) ? base64_decode($ciphertext) : false;
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if ($ciphertext === false) {
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return false;
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$ciphertext = $key;
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}
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if (!class_exists('Crypt_TripleDES')) {
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require_once('Crypt/TripleDES.php');
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switch ($matches[1]) {
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case 'DES-EDE3-CBC':
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if (!class_exists('Crypt_TripleDES')) {
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require_once('Crypt/TripleDES.php');
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}
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$crypto = new Crypt_TripleDES();
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break;
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case 'DES-CBC':
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if (!class_exists('Crypt_DES')) {
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require_once('Crypt/DES.php');
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}
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$crypto = new Crypt_DES();
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break;
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default:
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return false;
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}
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$des = new Crypt_TripleDES();
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$des->setKey($symkey);
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$des->setIV($iv);
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$key = $des->decrypt($ciphertext);
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$crypto->setKey($symkey);
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$crypto->setIV($iv);
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$decoded = $crypto->decrypt($ciphertext);
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} else {
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$key = base64_decode(preg_replace('#-.+-|[\r\n]#', '', $key));
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$decoded = preg_replace('#-.+-|[\r\n]#', '', $key);
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$decoded = preg_match('#^[a-zA-Z\d/+]*={0,2}$#', $decoded) ? base64_decode($decoded) : false;
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}
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if ($key === false) {
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if ($decoded !== false) {
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$key = $decoded;
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}
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$components = array();
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if (ord($this->_string_shift($key)) != CRYPT_RSA_ASN1_SEQUENCE) {
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return false;
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}
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if ($this->_decodeLength($key) != strlen($key)) {
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return false;
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}
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$private = false;
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$components = array();
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$tag = ord($this->_string_shift($key));
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if ($tag == CRYPT_RSA_ASN1_SEQUENCE) {
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/* intended for keys for which OpenSSL's asn1parse returns the following:
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0:d=0 hl=4 l= 290 cons: SEQUENCE
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4:d=1 hl=2 l= 13 cons: SEQUENCE
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6:d=2 hl=2 l= 9 prim: OBJECT :rsaEncryption
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17:d=2 hl=2 l= 0 prim: NULL
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19:d=1 hl=4 l= 271 prim: BIT STRING */
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$this->_string_shift($key, $this->_decodeLength($key));
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$this->_string_shift($key); // skip over the BIT STRING tag
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$this->_decodeLength($key); // skip over the BIT STRING length
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// "The initial octet shall encode, as an unsigned binary integer wtih bit 1 as the least significant bit, the number of
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// unused bits in teh final subsequent octet. The number shall be in the range zero to seven."
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// -- http://www.itu.int/ITU-T/studygroups/com17/languages/X.690-0207.pdf (section 8.6.2.2)
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$this->_string_shift($key);
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if (ord($this->_string_shift($key)) != CRYPT_RSA_ASN1_SEQUENCE) {
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return false;
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}
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if ($this->_decodeLength($key) != strlen($key)) {
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return false;
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}
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$tag = ord($this->_string_shift($key));
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}
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if ($tag != CRYPT_RSA_ASN1_INTEGER) {
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return false;
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}
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$this->_string_shift($key); // skip over CRYPT_RSA_ASN1_SEQUENCE
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$this->_decodeLength($key); // skip over the length of the above sequence
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$this->_string_shift($key); // skip over CRYPT_RSA_ASN1_INTEGER
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$length = $this->_decodeLength($key);
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$temp = $this->_string_shift($key, $length);
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if (strlen($temp) != 1 || ord($temp) > 2) {
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@ -806,7 +851,9 @@ class Crypt_RSA {
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return $components;
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}
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$this->_string_shift($key); // skip over CRYPT_RSA_ASN1_INTEGER
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if (ord($this->_string_shift($key)) != CRYPT_RSA_ASN1_INTEGER) {
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return false;
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}
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$length = $this->_decodeLength($key);
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$components['modulus'] = new Math_BigInteger($this->_string_shift($key, $length), -256);
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$this->_string_shift($key);
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@ -831,10 +878,14 @@ class Crypt_RSA {
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$length = $this->_decodeLength($key);
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$components['coefficients'] = array(2 => new Math_BigInteger($this->_string_shift($key, $length), -256));
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if (!empty($key)) {
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$key = substr($key, 1); // skip over CRYPT_RSA_ASN1_SEQUENCE
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if (ord($this->_string_shift($key)) != CRYPT_RSA_ASN1_INTEGER) {
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return false;
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}
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$this->_decodeLength($key);
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while (!empty($key)) {
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$key = substr($key, 1); // skip over CRYPT_RSA_ASN1_SEQUENCE
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if (ord($this->_string_shift($key)) != CRYPT_RSA_ASN1_SEQUENCE) {
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return false;
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}
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$this->_decodeLength($key);
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$key = substr($key, 1);
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$length = $this->_decodeLength($key);
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@ -855,13 +906,25 @@ class Crypt_RSA {
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return false;
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}
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$components = array();
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extract(unpack('Nlength', $this->_string_shift($key, 4)));
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$components['modulus'] = new Math_BigInteger($this->_string_shift($key, $length), -256);
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extract(unpack('Nlength', $this->_string_shift($key, 4)));
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$components['publicExponent'] = new Math_BigInteger($this->_string_shift($key, $length), -256);
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$cleanup = substr($key, 0, 11) == "\0\0\0\7ssh-rsa";
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return $components;
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extract(unpack('Nlength', $this->_string_shift($key, 4)));
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$publicExponent = new Math_BigInteger($this->_string_shift($key, $length), -256);
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extract(unpack('Nlength', $this->_string_shift($key, 4)));
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$modulus = new Math_BigInteger($this->_string_shift($key, $length), -256);
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if ($cleanup && strlen($key)) {
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extract(unpack('Nlength', $this->_string_shift($key, 4)));
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return array(
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'modulus' => new Math_BigInteger($this->_string_shift($key, $length), -256),
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'publicExponent' => $modulus
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);
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} else {
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return array(
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'modulus' => $modulus,
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'publicExponent' => $publicExponent
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);
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}
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}
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}
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@ -47,7 +47,7 @@
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* @author Jim Wigginton <terrafrost@php.net>
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* @copyright MMVII Jim Wigginton
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* @license http://www.gnu.org/licenses/lgpl.txt
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* @version $Id: TripleDES.php,v 1.12 2010-02-09 06:10:26 terrafrost Exp $
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* @version $Id: TripleDES.php,v 1.13 2010-02-26 03:40:25 terrafrost Exp $
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* @link http://phpseclib.sourceforge.net
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*/
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@ -284,7 +284,7 @@ class Crypt_TripleDES {
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$key = str_pad($key, 24, chr(0));
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// if $key is between 64 and 128-bits, use the first 64-bits as the last, per this:
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// http://php.net/function.mcrypt-encrypt#47973
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$key = $length <= 16 ? substr_replace($key, substr($key, 0, 8), 16) : substr($key, 0, 24);
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//$key = $length <= 16 ? substr_replace($key, substr($key, 0, 8), 16) : substr($key, 0, 24);
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}
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$this->key = $key;
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switch (true) {
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@ -386,7 +386,7 @@ class Crypt_TripleDES {
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$ciphertext = mcrypt_generic($this->enmcrypt, $plaintext);
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if (!$this->continuousBuffer) {
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mcrypt_generic_init($this->enmcrypt, $this->keys, $this->encryptIV);
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mcrypt_generic_init($this->enmcrypt, $this->key, $this->encryptIV);
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}
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return $ciphertext;
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@ -477,7 +477,7 @@ class Crypt_TripleDES {
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$plaintext = mdecrypt_generic($this->demcrypt, $ciphertext);
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if (!$this->continuousBuffer) {
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mcrypt_generic_init($this->demcrypt, $this->keys, $this->decryptIV);
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mcrypt_generic_init($this->demcrypt, $this->key, $this->decryptIV);
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}
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return $this->mode != 'ctr' ? $this->_unpad($plaintext) : $plaintext;
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@ -67,7 +67,7 @@
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* @author Jim Wigginton <terrafrost@php.net>
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* @copyright MMVI Jim Wigginton
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* @license http://www.gnu.org/licenses/lgpl.txt
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* @version $Id: BigInteger.php,v 1.29 2010-02-21 07:45:31 terrafrost Exp $
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* @version $Id: BigInteger.php,v 1.30 2010-02-26 03:40:26 terrafrost Exp $
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* @link http://pear.php.net/package/Math_BigInteger
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*/
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@ -860,7 +860,7 @@ class Math_BigInteger {
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$carry = $sum >= MATH_BIGINTEGER_MAX_DIGIT52; // eg. floor($sum / 2**52); only possible values (in any base) are 0 and 1
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$sum = $carry ? $sum - MATH_BIGINTEGER_MAX_DIGIT52 : $sum;
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$temp = floor($sum / 0x4000000);
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$temp = (int) ($sum / 0x4000000);
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$value[$i] = $sum - 0x4000000 * $temp; // eg. a faster alternative to fmod($sum, 0x4000000)
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$value[$j] = $temp;
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@ -996,7 +996,7 @@ class Math_BigInteger {
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$carry = $sum < 0; // eg. floor($sum / 2**52); only possible values (in any base) are 0 and 1
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$sum = $carry ? $sum + MATH_BIGINTEGER_MAX_DIGIT52 : $sum;
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$temp = floor($sum / 0x4000000);
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$temp = (int) ($sum / 0x4000000);
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$x_value[$i] = $sum - 0x4000000 * $temp;
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$x_value[$j] = $temp;
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@ -1144,7 +1144,7 @@ class Math_BigInteger {
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for ($j = 0; $j < $x_length; ++$j) { // ie. $i = 0
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$temp = $x_value[$j] * $y_value[0] + $carry; // $product_value[$k] == 0
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$carry = floor($temp / 0x4000000);
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$carry = (int) ($temp / 0x4000000);
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$product_value[$j] = $temp - 0x4000000 * $carry;
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}
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@ -1157,7 +1157,7 @@ class Math_BigInteger {
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for ($j = 0, $k = $i; $j < $x_length; ++$j, ++$k) {
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$temp = $product_value[$k] + $x_value[$j] * $y_value[$i] + $carry;
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$carry = floor($temp / 0x4000000);
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$carry = (int) ($temp / 0x4000000);
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$product_value[$k] = $temp - 0x4000000 * $carry;
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}
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@ -1245,13 +1245,13 @@ class Math_BigInteger {
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$i2 = $i << 1;
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$temp = $square_value[$i2] + $value[$i] * $value[$i];
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$carry = floor($temp / 0x4000000);
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$carry = (int) ($temp / 0x4000000);
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$square_value[$i2] = $temp - 0x4000000 * $carry;
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// note how we start from $i+1 instead of 0 as we do in multiplication.
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for ($j = $i + 1, $k = $i2 + 1; $j <= $max_index; ++$j, ++$k) {
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$temp = $square_value[$k] + 2 * $value[$j] * $value[$i] + $carry;
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$carry = floor($temp / 0x4000000);
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$carry = (int) ($temp / 0x4000000);
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$square_value[$k] = $temp - 0x4000000 * $carry;
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}
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@ -1449,7 +1449,7 @@ class Math_BigInteger {
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if ($x_window[0] == $y_window[0]) {
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$quotient_value[$q_index] = 0x3FFFFFF;
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} else {
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$quotient_value[$q_index] = floor(
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$quotient_value[$q_index] = (int) (
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($x_window[0] * 0x4000000 + $x_window[1])
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/
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$y_window[0]
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@ -1519,7 +1519,7 @@ class Math_BigInteger {
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for ($i = count($dividend) - 1; $i >= 0; --$i) {
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$temp = 0x4000000 * $carry + $dividend[$i];
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$result[$i] = floor($temp / $divisor);
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$result[$i] = (int) ($temp / $divisor);
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$carry = $temp - $divisor * $result[$i];
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}
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@ -2089,7 +2089,7 @@ class Math_BigInteger {
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for ($j = 0; $j < $x_length; ++$j) { // ie. $i = 0, $k = $i
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$temp = $x_value[$j] * $y_value[0] + $carry; // $product_value[$k] == 0
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$carry = floor($temp / 0x4000000);
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$carry = (int) ($temp / 0x4000000);
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$product_value[$j] = $temp - 0x4000000 * $carry;
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}
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@ -2105,7 +2105,7 @@ class Math_BigInteger {
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for ($j = 0, $k = $i; $j < $x_length && $k < $stop; ++$j, ++$k) {
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$temp = $product_value[$k] + $x_value[$j] * $y_value[$i] + $carry;
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$carry = floor($temp / 0x4000000);
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$carry = (int) ($temp / 0x4000000);
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$product_value[$k] = $temp - 0x4000000 * $carry;
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}
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@ -2154,7 +2154,7 @@ class Math_BigInteger {
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for ($i = 0; $i < $k; ++$i) {
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$temp = $result[MATH_BIGINTEGER_VALUE][$i] * $cache[MATH_BIGINTEGER_DATA][$key];
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$temp = $temp - 0x4000000 * floor($temp / 0x4000000);
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$temp = $temp - 0x4000000 * ((int) ($temp / 0x4000000));
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$temp = $this->_regularMultiply(array($temp), $n);
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$temp = array_merge($this->_array_repeat(0, $i), $temp);
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$result = $this->_add($result[MATH_BIGINTEGER_VALUE], false, $temp, false);
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@ -2206,9 +2206,9 @@ class Math_BigInteger {
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$a = array(MATH_BIGINTEGER_VALUE => $this->_array_repeat(0, $n + 1));
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for ($i = 0; $i < $n; ++$i) {
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$temp = $a[MATH_BIGINTEGER_VALUE][0] + $x[$i] * $y[0];
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$temp = $temp - 0x4000000 * floor($temp / 0x4000000);
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$temp = $temp - 0x4000000 * ((int) ($temp / 0x4000000));
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$temp = $temp * $cache[MATH_BIGINTEGER_DATA][$key];
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$temp = $temp - 0x4000000 * floor($temp / 0x4000000);
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$temp = $temp - 0x4000000 * ((int) ($temp / 0x4000000));
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$temp = $this->_add($this->_regularMultiply(array($x[$i]), $y), false, $this->_regularMultiply(array($temp), $m), false);
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$a = $this->_add($a[MATH_BIGINTEGER_VALUE], false, $temp[MATH_BIGINTEGER_VALUE], false);
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$a[MATH_BIGINTEGER_VALUE] = array_slice($a[MATH_BIGINTEGER_VALUE], 1);
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@ -3307,7 +3307,7 @@ class Math_BigInteger {
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return;
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}
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$num_digits = floor($shift / 26);
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$num_digits = (int) ($shift / 26);
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$shift %= 26;
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$shift = 1 << $shift;
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@ -3315,7 +3315,7 @@ class Math_BigInteger {
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for ($i = 0; $i < count($this->value); ++$i) {
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$temp = $this->value[$i] * $shift + $carry;
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$carry = floor($temp / 0x4000000);
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$carry = (int) ($temp / 0x4000000);
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$this->value[$i] = $temp - $carry * 0x4000000;
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}
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@ -3342,7 +3342,7 @@ class Math_BigInteger {
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return;
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}
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$num_digits = floor($shift / 26);
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$num_digits = (int) ($shift / 26);
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$shift %= 26;
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$carry_shift = 26 - $shift;
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$carry_mask = (1 << $shift) - 1;
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