mirror of
https://github.com/danog/tgseclib.git
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341 lines
9.2 KiB
PHP
341 lines
9.2 KiB
PHP
<?php
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/**
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* Pure-PHP FIPS 186-4 compliant implementation of DSA.
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*
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* PHP version 5
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*
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* Here's an example of how to create signatures and verify signatures with this library:
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* <code>
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* <?php
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* include 'vendor/autoload.php';
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*
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* $private = \phpseclib\Crypt\DSA::createKey();
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* $public = $private->getPublicKey();
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*
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* $plaintext = 'terrafrost';
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*
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* $signature = $private->sign($plaintext);
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*
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* echo $public->verify($plaintext, $signature) ? 'verified' : 'unverified';
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* ?>
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* </code>
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*
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* @category Crypt
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* @package DSA
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* @author Jim Wigginton <terrafrost@php.net>
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* @copyright 2016 Jim Wigginton
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* @license http://www.opensource.org/licenses/mit-license.html MIT License
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* @link http://phpseclib.sourceforge.net
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*/
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namespace phpseclib\Crypt;
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use phpseclib\Crypt\Common\AsymmetricKey;
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use phpseclib\Crypt\DSA\PrivateKey;
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use phpseclib\Crypt\DSA\PublicKey;
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use phpseclib\Crypt\DSA\Parameters;
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use phpseclib\Math\BigInteger;
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use phpseclib\Exception\InsufficientSetupException;
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/**
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* Pure-PHP FIPS 186-4 compliant implementation of DSA.
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*
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* @package DSA
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* @author Jim Wigginton <terrafrost@php.net>
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* @access public
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*/
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abstract class DSA extends AsymmetricKey
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{
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/**
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* Algorithm Name
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*
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* @var string
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* @access private
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*/
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const ALGORITHM = 'DSA';
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/**
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* DSA Prime P
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*
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* @var \phpseclib\Math\BigInteger
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* @access private
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*/
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protected $p;
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/**
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* DSA Group Order q
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*
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* Prime divisor of p-1
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*
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* @var \phpseclib\Math\BigInteger
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* @access private
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*/
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protected $q;
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/**
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* DSA Group Generator G
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*
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* @var \phpseclib\Math\BigInteger
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* @access private
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*/
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protected $g;
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/**
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* DSA public key value y
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*
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* @var \phpseclib\Math\BigInteger
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* @access private
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*/
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protected $y;
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/**
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* Signature Format
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*
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* @var string
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* @access private
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*/
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protected $format;
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/**
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* Signature Format (Short)
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*
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* @var string
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* @access private
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*/
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protected $shortFormat;
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/**
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* Create DSA parameters
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*
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* @access public
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* @param int $L
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* @param int $N
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* @return \phpseclib\Crypt\DSA|bool
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*/
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public static function createParameters($L = 2048, $N = 224)
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{
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self::initialize_static_variables();
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if (!isset(self::$engines['PHP'])) {
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self::useBestEngine();
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}
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switch (true) {
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case $N == 160:
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/*
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in FIPS 186-1 and 186-2 N was fixed at 160 whereas K had an upper bound of 1024.
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RFC 4253 (SSH Transport Layer Protocol) references FIPS 186-2 and as such most
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SSH DSA implementations only support keys with an N of 160.
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puttygen let's you set the size of L (but not the size of N) and uses 2048 as the
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default L value. that's not really compliant with any of the FIPS standards, however,
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for the purposes of maintaining compatibility with puttygen, we'll support it
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*/
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//case ($L >= 512 || $L <= 1024) && (($L & 0x3F) == 0) && $N == 160:
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// FIPS 186-3 changed this as follows:
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//case $L == 1024 && $N == 160:
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case $L == 2048 && $N == 224:
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case $L == 2048 && $N == 256:
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case $L == 3072 && $N == 256:
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break;
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default:
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throw new \InvalidArgumentException('Invalid values for N and L');
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}
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$two = new BigInteger(2);
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$q = BigInteger::randomPrime($N);
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$divisor = $q->multiply($two);
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do {
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$x = BigInteger::random($L);
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list(, $c) = $x->divide($divisor);
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$p = $x->subtract($c->subtract(self::$one));
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} while ($p->getLength() != $L || !$p->isPrime());
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$p_1 = $p->subtract(self::$one);
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list($e) = $p_1->divide($q);
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// quoting http://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-4.pdf#page=50 ,
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// "h could be obtained from a random number generator or from a counter that
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// changes after each use". PuTTY (sshdssg.c) starts h off at 1 and increments
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// it on each loop. wikipedia says "commonly h = 2 is used" so we'll just do that
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$h = clone $two;
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while (true) {
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$g = $h->powMod($e, $p);
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if (!$g->equals(self::$one)) {
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break;
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}
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$h = $h->add(self::$one);
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}
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$dsa = new Parameters;
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$dsa->p = $p;
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$dsa->q = $q;
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$dsa->g = $g;
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return $dsa;
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}
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/**
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* Create public / private key pair.
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*
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* This method is a bit polymorphic. It can take a DSA/Parameters object, L / N as two distinct parameters or
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* no parameters (at which point L and N will be generated with this method)
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*
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* Returns the private key, from which the publickey can be extracted
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*
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* @param $args[]
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* @access public
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* @return DSA\PrivateKey
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*/
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public static function createKey(...$args)
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{
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self::initialize_static_variables();
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if (!isset(self::$engines['PHP'])) {
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self::useBestEngine();
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}
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if (count($args) == 2 && is_int($args[0]) && is_int($args[1])) {
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$params = self::createParameters($args[0], $args[1]);
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} else if (count($args) == 1 && $args[0] instanceof Parameters) {
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$params = $args[0];
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} else if (!count($args)) {
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$params = self::createParameters();
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} else {
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throw new InsufficientSetupException('Valid parameters are either two integers (L and N), a single DSA object or no parameters at all.');
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}
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$private = new PrivateKey;
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$private->p = $params->p;
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$private->q = $params->q;
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$private->g = $params->g;
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$private->x = BigInteger::randomRange(self::$one, $private->q->subtract(self::$one));
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$private->y = $private->g->powMod($private->x, $private->p);
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//$public = clone $private;
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//unset($public->x);
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return $private
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->withHash($params->hash->getHash())
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->withSignatureFormat($params->shortFormat);
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}
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/**
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* Loads a public or private key
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*
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* Returns true on success and false on failure (ie. an incorrect password was provided or the key was malformed)
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* @return bool
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* @access public
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* @param string $key
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* @param string $type optional
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* @param string $password optional
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*/
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public static function load($key, $type = false, $password = false)
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{
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self::initialize_static_variables();
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if (!isset(self::$engines['PHP'])) {
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self::useBestEngine();
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}
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$components = parent::load($key, $type, $password);
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if (!isset($components['x']) && !isset($components['y'])) {
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$new = new Parameters;
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} else if (isset($components['x'])) {
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$new = new PrivateKey;
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$new->x = $components['x'];
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} else {
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$new = new PublicKey;
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}
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$new->p = $components['p'];
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$new->q = $components['q'];
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$new->g = $components['g'];
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if (isset($components['y'])) {
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$new->y = $components['y'];
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}
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return $new;
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}
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/**
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* Constructor
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*
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* PublicKey and PrivateKey objects can only be created from abstract RSA class
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*/
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protected function __construct()
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{
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$this->format = self::validatePlugin('Signature', 'ASN1');
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$this->shortFormat = 'ASN1';
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parent::__construct();
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}
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/**
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* Returns the key size
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*
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* More specifically, this L (the length of DSA Prime P) and N (the length of DSA Group Order q)
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*
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* @access public
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* @return array
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*/
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public function getLength()
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{
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return ['L' => $this->p->getLength(), 'N' => $this->q->getLength()];
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}
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/**
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* Returns the current engine being used
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*
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* @see self::useInternalEngine()
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* @see self::useBestEngine()
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* @access public
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* @return string
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*/
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public function getEngine()
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{
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return self::$engines['OpenSSL'] && in_array($this->hash->getHash(), openssl_get_md_methods()) ?
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'OpenSSL' : 'PHP';
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}
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/**
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* Returns the parameters
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*
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* A public / private key is only returned if the currently loaded "key" contains an x or y
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* value.
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*
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* @see self::getPublicKey()
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* @access public
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* @param string $type optional
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* @return mixed
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*/
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public function getParameters()
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{
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$type = self::validatePlugin('Keys', 'PKCS1', 'saveParameters');
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$key = $type::saveParameters($this->p, $this->q, $this->g);
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return DSA::load($key, 'PKCS1')
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->withHash($this->hash->getHash())
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->withSignatureFormat($this->shortFormat);
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}
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/**
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* Determines the signature padding mode
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*
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* Valid values are: ASN1, SSH2, Raw
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*
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* @access public
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* @param string $padding
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*/
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public function withSignatureFormat($format)
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{
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$new = clone $this;
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$new->shortFormat = $format;
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$new->format = self::validatePlugin('Signature', $format);
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return $new;
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}
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} |