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<?php |
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namespace BitWasp\Bitcoin\Script\Interpreter; |
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use BitWasp\Bitcoin\Bitcoin; |
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use BitWasp\Bitcoin\Math\Math; |
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use BitWasp\Bitcoin\Serializable; |
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use BitWasp\Buffertools\Buffer; |
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use BitWasp\Buffertools\BufferInterface; |
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class Number extends Serializable |
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{ |
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const MAX_NUM_SIZE = 4; |
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const MAX = 2**31-1; |
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const MIN = -2**31+1; |
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/** |
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* @var Math |
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*/ |
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private $math; |
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/** |
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* @var int |
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*/ |
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private $number; |
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/** |
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* Number constructor. |
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* @param int $number |
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* @param Math $math |
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*/ |
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public function __construct($number, Math $math) |
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{ |
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$this->number = $number; |
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$this->math = $math; |
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} |
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/** |
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* @param int $number |
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* @param Math|null $math |
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* @return self |
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*/ |
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public static function int($number, Math $math = null) |
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{ |
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return new self( |
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$number, |
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$math ?: Bitcoin::getMath() |
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); |
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} |
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/** |
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* @param \GMP $number |
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* @param Math|null $math |
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* @return self |
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*/ |
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public static function gmp(\GMP $number, Math $math = null) |
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{ |
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return new self( |
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gmp_strval($number, 10), |
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$math ?: Bitcoin::getMath() |
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); |
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} |
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/** |
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* @param BufferInterface $vch |
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* @param bool $fRequireMinimal |
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* @param int $maxNumSize |
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* @param Math|null $math |
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* @return self |
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*/ |
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public static function buffer(BufferInterface $vch, $fRequireMinimal, $maxNumSize = self::MAX_NUM_SIZE, Math $math = null) |
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{ |
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$size = $vch->getSize(); |
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if ($size > $maxNumSize) { |
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throw new \RuntimeException('Script number overflow'); |
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} |
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if ($fRequireMinimal && $size > 0) { |
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$binary = $vch->getBinary(); |
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//$chars = array_values(unpack("C*", $binary)); |
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if ((ord($binary[$size - 1]) & 0x7f) == 0) { |
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if ($size <= 1 || (ord($binary[$size - 2]) & 0x80) == 0) { |
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throw new \RuntimeException('Non-minimally encoded script number'); |
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} |
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} |
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} |
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$math = $math ?: Bitcoin::getMath(); |
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$number = new self(0, $math); |
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$number->number = $number->parseBuffer($vch); |
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return $number; |
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} |
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/** |
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* @param BufferInterface $buffer |
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* @return int |
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*/ |
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private function parseBuffer(BufferInterface $buffer) |
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{ |
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$size = $buffer->getSize(); |
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if ($size === 0) { |
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return '0'; |
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} |
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$chars = array_values(unpack("C*", $buffer->getBinary())); |
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$result = gmp_init(0); |
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for ($i = 0; $i < $size; $i++) { |
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$mul = $i * 8; |
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$byte = $this->math->leftShift(gmp_init($chars[$i], 10), $mul); |
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$result = $this->math->bitwiseOr($result, $byte); |
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} |
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if ($chars[count($chars)-1] & 0x80) { |
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$mask = gmp_com($this->math->leftShift(gmp_init(0x80), (8 * ($size - 1)))); |
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$result = $this->math->sub(gmp_init(0), $this->math->bitwiseAnd($result, $mask)); |
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} |
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return gmp_strval($result, 10); |
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} |
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/** |
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* @return BufferInterface |
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*/ |
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private function serialize() |
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{ |
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if ($this->number == 0) { |
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return new Buffer('', 0); |
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} |
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$zero = gmp_init(0); |
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// Using array of integers instead of bytes |
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$result = []; |
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$negative = $this->math->cmp(gmp_init($this->number), $zero) < 0; |
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$abs = $negative ? $this->math->sub($zero, gmp_init($this->number, 10)) : gmp_init($this->number, 10); |
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$mask = gmp_init(0xff); |
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while ($this->math->cmp($abs, $zero) > 0) { |
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$result[] = (int) gmp_strval($this->math->bitwiseAnd($abs, $mask), 10); |
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$abs = $this->math->rightShift($abs, 8); |
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} |
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if ($result[count($result) - 1] & 0x80) { |
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$result[] = $negative ? 0x80 : 0; |
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} else if ($negative) { |
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$result[count($result) - 1] |= 0x80; |
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} |
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$s = ''; |
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foreach ($result as $i) { |
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$s .= chr($i); |
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} |
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return new Buffer($s, null, $this->math); |
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} |
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/** |
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* @return BufferInterface |
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*/ |
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public function getBuffer() |
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{ |
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return $this->serialize(); |
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} |
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/** |
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* @return int |
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*/ |
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public function getInt() |
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{ |
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if ($this->math->cmp(gmp_init($this->number, 10), gmp_init(self::MAX)) > 0) { |
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return self::MAX; |
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} else if ($this->math->cmp(gmp_init($this->number, 10), gmp_init(self::MIN)) < 0) { |
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return self::MIN; |
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} |
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return $this->number; |
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} |
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/** |
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* @return \GMP |
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*/ |
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public function getGmp() |
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{ |
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return gmp_init($this->number, 10); |
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} |
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} |
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This check looks for assignments to scalar types that may be of the wrong type.
To ensure the code behaves as expected, it may be a good idea to add an explicit type cast.