mirror of
https://github.com/danog/tgseclib.git
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399 lines
9.5 KiB
PHP
399 lines
9.5 KiB
PHP
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<?php
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/**
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* Prime Finite Fields
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*
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* PHP version 5 and 7
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*
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* @category Math
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* @package BigInteger
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* @author Jim Wigginton <terrafrost@php.net>
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* @copyright 2017 Jim Wigginton
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* @license http://www.opensource.org/licenses/mit-license.html MIT License
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*/
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namespace phpseclib\Math\PrimeField;
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use phpseclib\Math\Common\FiniteField\Integer as Base;
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use phpseclib\Math\BigInteger;
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use ParagonIE\ConstantTime\Hex;
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/**
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* Prime Finite Fields
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*
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* @package Math
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* @author Jim Wigginton <terrafrost@php.net>
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* @access public
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*/
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class Integer extends Base
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{
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/**
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* Holds the PrimeField's value
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*
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* @var \phpseclib\Math\BigInteger
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*/
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protected $value;
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/**
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* Keeps track of current instance
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*
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* @var int
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*/
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protected $instanceID;
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/**
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* Holds the PrimeField's modulo
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*
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* @var \phpseclib\Math\BigInteger
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*/
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protected static $modulo;
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/**
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* Holds a pre-generated function to perform modulo reductions
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*
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* @var Callable
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*/
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protected static $reduce;
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/**
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* Zero
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*
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* @var \phpseclib\Math\BigInteger
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*/
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protected static $zero;
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/**
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* Default constructor
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*/
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public function __construct($instanceID, BigInteger $num = null)
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{
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$this->instanceID = $instanceID;
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if (!isset($num)) {
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$this->value = clone static::$zero;
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} else {
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$reduce = static::$reduce[$instanceID];
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$this->value = $reduce($num);
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}
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}
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/**
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* Set the modulo for a given instance
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*/
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public static function setModulo($instanceID, BigInteger $modulo)
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{
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static::$modulo[$instanceID] = $modulo;
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}
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/**
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* Set the modulo for a given instance
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*/
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public static function setRecurringModuloFunction($instanceID, callable $function)
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{
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static::$reduce[$instanceID] = $function;
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if (!isset(static::$zero)) {
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static::$zero = new BigInteger();
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}
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}
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/**
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* Returns the modulo
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*
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* @return integer
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*/
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public static function getModulo($instanceID)
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{
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return static::$modulo[$instanceID];
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}
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/**
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* Tests a parameter to see if it's of the right instance
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*
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* Throws an exception if the incorrect class is being utilized
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*/
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public static function checkInstance(self $x, self $y)
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{
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if ($x->instanceID != $y->instanceID) {
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throw new \UnexpectedValueException('The instances of the two PrimeField\Integer objects do not match');
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}
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}
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/**
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* Tests the equality of two numbers.
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*
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* @return bool
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*/
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public function equals(self $x)
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{
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static::checkInstance($this, $x);
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return $this->value->equals($x->value);
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}
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/**
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* Compares two numbers.
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*
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* @return int
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*/
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public function compare(self $x)
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{
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static::checkInstance($this, $x);
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return $this->value->compare($x->value);
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}
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/**
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* Adds two PrimeFieldIntegers.
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*
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* @return static
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*/
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public function add(self $x)
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{
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static::checkInstance($this, $x);
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$temp = new static($this->instanceID);
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$temp->value = $this->value->add($x->value);
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if ($temp->value->compare(static::$modulo[$this->instanceID]) >= 0) {
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$temp->value = $temp->value->subtract(static::$modulo[$this->instanceID]);
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}
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return $temp;
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}
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/**
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* Subtracts two PrimeFieldIntegers.
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*
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* @return static
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*/
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public function subtract(self $x)
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{
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static::checkInstance($this, $x);
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$temp = new static($this->instanceID);
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$temp->value = $this->value->subtract($x->value);
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if ($temp->value->isNegative()) {
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$temp->value = $temp->value->add(static::$modulo[$this->instanceID]);
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}
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return $temp;
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}
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/**
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* Multiplies two PrimeFieldIntegers.
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*
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* @return static
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*/
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public function multiply(self $x)
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{
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static::checkInstance($this, $x);
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return new static($this->instanceID, $this->value->multiply($x->value));
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}
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/**
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* Divides two PrimeFieldIntegers.
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*
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* @return static
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*/
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public function divide(self $x)
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{
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static::checkInstance($this, $x);
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$denominator = $x->value->modInverse(static::$modulo[$this->instanceID]);
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return new static($this->instanceID, $this->value->multiply($denominator));
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}
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/**
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* Performs power operation on a PrimeFieldInteger.
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*
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* @return static
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*/
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public function pow(BigInteger $x)
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{
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$temp = new static($this->instanceID);
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$temp->value = $this->value->powMod($x, static::$modulo[$this->instanceID]);
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return $temp;
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}
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/**
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* Calculates the square root
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*
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* @link https://en.wikipedia.org/wiki/Tonelli%E2%80%93Shanks_algorithm
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* @return static|false
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*/
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public function squareRoot()
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{
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static $one, $two;
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if (!isset($one)) {
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$one = new BigInteger(1);
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$two = new BigInteger(2);
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}
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$reduce = static::$reduce[$this->instanceID];
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$p_1 = static::$modulo[$this->instanceID]->subtract($one);
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$q = clone $p_1;
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$s = BigInteger::scan1divide($q);
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list($pow) = $p_1->divide($two);
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for ($z = $one; !$z->equals(static::$modulo[$this->instanceID]); $z = $z->add($one)) {
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$temp = $z->powMod($pow, static::$modulo[$this->instanceID]);
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if ($temp->equals($p_1)) {
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break;
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}
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}
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$m = new BigInteger($s);
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$c = $z->powMod($q, static::$modulo[$this->instanceID]);
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$t = $this->value->powMod($q, static::$modulo[$this->instanceID]);
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list($temp) = $q->add($one)->divide($two);
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$r = $this->value->powMod($temp, static::$modulo[$this->instanceID]);
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while (!$t->equals($one)) {
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$i = clone $one;
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while (!$t->powMod($two->pow($i), static::$modulo[$this->instanceID])->equals($one)) {
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$i = $i->add($one);
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}
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if ($i->compare($m) >= 0) {
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return false;
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}
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$b = $c->powMod($two->pow($m->subtract($i)->subtract($one)), static::$modulo[$this->instanceID]);
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$m = $i;
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$c = $reduce($b->multiply($b));
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$t = $reduce($t->multiply($c));
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$r = $reduce($r->multiply($b));
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}
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return new static($this->instanceID, $r);
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}
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/**
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* Is Odd?
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*
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* @return boolean
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*/
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public function isOdd()
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{
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return $this->value->isOdd();
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}
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/**
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* Negate
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*
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* A negative number can be written as 0-12. With modulos, 0 is the same thing as the modulo
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* so 0-12 is the same thing as modulo-12
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*
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* @return object
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*/
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public function negate()
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{
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return new static($this->instanceID, static::$modulo[$this->instanceID]->subtract($this->value));
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}
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/**
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* Converts an Integer to a byte string (eg. base-256).
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*
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* @return string
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*/
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public function toBytes()
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{
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$length = static::$modulo[$this->instanceID]->getLengthInBytes();
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return str_pad($this->value->toBytes(), $length, "\0", STR_PAD_LEFT);
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}
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/**
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* Converts an Integer to a hex string (eg. base-16).
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*
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* @return string
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*/
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public function toHex()
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{
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return Hex::encode($this->toBytes());
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}
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/**
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* Converts an Integer to a bit string (eg. base-2).
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*
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* @return string
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*/
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public function toBits()
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{
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// return $this->value->toBits();
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static $length;
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if (!isset($length)) {
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$length = static::$modulo[$this->instanceID]->getLength();
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}
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return str_pad($this->value->toBits(), $length, '0', STR_PAD_LEFT);
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}
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/**
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* Returns the w-ary non-adjacent form (wNAF)
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*
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* @param int $w optional
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* @return int[]
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*/
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public function getNAF($w = 1)
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{
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$w++;
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$mask = new BigInteger((1 << $w) - 1);
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$sub = new BigInteger(1 << $w);
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//$sub = new BigInteger(1 << ($w - 1));
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$d = $this->toBigInteger();
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$d_i = [];
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$i = 0;
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while ($d->compare(static::$zero) > 0) {
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if ($d->isOdd()) {
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// start mods
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$d_i[$i] = $d->testBit($w - 1) ?
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$d->bitwise_and($mask)->subtract($sub) :
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//$sub->subtract($d->bitwise_and($mask)) :
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$d->bitwise_and($mask);
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// end mods
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$d = $d->subtract($d_i[$i]);
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$d_i[$i] = (int) $d_i[$i]->toString();
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} else {
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$d_i[$i] = 0;
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}
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$shift = !$d->equals(static::$zero) && $d->bitwise_and($mask)->equals(static::$zero) ? $w : 1; // $w or $w + 1?
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$d = $d->bitwise_rightShift($shift);
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while (--$shift > 0) {
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$d_i[++$i] = 0;
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}
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$i++;
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}
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return $d_i;
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}
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/**
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* Converts an Integer to a BigInteger
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*
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* @return string
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*/
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public function toBigInteger()
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{
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return clone $this->value;
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}
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/**
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* __toString() magic method
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*
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* @access public
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*/
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public function __toString()
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{
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return (string) $this->value;
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}
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/**
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* __debugInfo() magic method
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*
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* @access public
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*/
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public function __debugInfo()
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{
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return ['value' => $this->toHex()];
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}
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}
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