value = $value; } public static function createFromBinaryString(string $value): self { $res = unpack('H*', $value); if (false === $res) { throw new InvalidArgumentException('Unable to convert the data from binary'); } $data = current($res); return new self(BrickBigInteger::fromBase($data, 16)); } public static function createFromDecimal(int $value): self { return new self(BrickBigInteger::of($value)); } /** * Converts a BigInteger to a binary string. */ public function toBytes(): string { if ($this->value->isEqualTo(BrickBigInteger::zero())) { return ''; } $temp = $this->value->toBase(16); $temp = 0 !== (mb_strlen($temp, '8bit') & 1) ? '0'.$temp : $temp; $temp = hex2bin($temp); if (false === $temp) { throw new InvalidArgumentException('Unable to convert the data into binary'); } return ltrim($temp, chr(0)); } /** * Adds two BigIntegers. * * @param BigInteger $y * * @return BigInteger */ public function add(self $y): self { $value = $this->value->plus($y->value); return new self($value); } /** * Subtracts two BigIntegers. * * @param BigInteger $y * * @return BigInteger */ public function subtract(self $y): self { $value = $this->value->minus($y->value); return new self($value); } /** * Multiplies two BigIntegers. * * @param BigInteger $x * * @return BigInteger */ public function multiply(self $x): self { $value = $this->value->multipliedBy($x->value); return new self($value); } /** * Performs modular exponentiation. * * @param BigInteger $e * @param BigInteger $n * * @return BigInteger */ public function modPow(self $e, self $n): self { $value = $this->value->modPow($e->value, $n->value); return new self($value); } /** * Performs modular exponentiation. * * @param BigInteger $d * * @return BigInteger */ public function mod(self $d): self { $value = $this->value->mod($d->value); return new self($value); } /** * Compares two numbers. * * @param BigInteger $y */ public function compare(self $y): int { return $this->value->compareTo($y->value); } }