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RSA/Keys/Raw: add support for private keys
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@ -49,48 +49,125 @@ abstract class Raw
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if (!is_array($key)) {
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throw new \UnexpectedValueException('Key should be a array - not a ' . gettype($key));
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}
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if (isset($key['isPublicKey']) && isset($key['modulus'])) {
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if (isset($key['privateExponent']) || isset($key['publicExponent'])) {
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if (!isset($key['primes'])) {
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return $key;
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$key = array_change_key_case($key, CASE_LOWER);
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$components = ['isPublicKey' => false];
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foreach (['e', 'exponent', 'publicexponent', 0, 'privateexponent', 'd'] as $index) {
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if (isset($key[$index])) {
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$components['publicExponent'] = $key[$index];
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break;
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}
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if (isset($key['exponents']) && isset($key['coefficients']) && isset($key['publicExponent']) && isset($key['privateExponent'])) {
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return $key;
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}
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foreach (['n', 'modulo', 'modulus', 1] as $index) {
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if (isset($key[$index])) {
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$components['modulus'] = $key[$index];
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break;
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}
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}
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if (!isset($components['publicExponent']) || !isset($components['modulus'])) {
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throw new \UnexpectedValueException('Modulus / exponent not present');
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}
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if (isset($key['primes'])) {
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$components['primes'] = $key['primes'];
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} else if (isset($key['p']) && isset($key['q'])) {
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$indices = [
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['p', 'q'],
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['prime1', 'prime2']
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];
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foreach ($indices as $index) {
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list($i0, $i1) = $index;
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if (isset($key[$i0]) && isset($key[$i1])) {
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$components['primes'] = [1 => $key[$i0], $key[$i1]];
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}
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}
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}
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$components = ['isPublicKey' => true];
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switch (true) {
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case isset($key['e']):
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$components['publicExponent'] = $key['e'];
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break;
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case isset($key['exponent']):
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$components['publicExponent'] = $key['exponent'];
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break;
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case isset($key['publicExponent']):
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$components['publicExponent'] = $key['publicExponent'];
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break;
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case isset($key[0]):
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$components['publicExponent'] = $key[0];
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if (isset($key['exponents'])) {
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$components['exponents'] = $key['exponents'];
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} else {
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$indices = [
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['dp', 'dq'],
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['exponent1', 'exponent2']
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];
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foreach ($indices as $index) {
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list($i0, $i1) = $index;
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if (isset($key[$i0]) && isset($key[$i1])) {
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$components['exponents'] = [1 => $key[$i0], $key[$i1]];
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}
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switch (true) {
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case isset($key['n']):
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$components['modulus'] = $key['n'];
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break;
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case isset($key['modulo']):
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$components['modulus'] = $key['modulo'];
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break;
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case isset($key['modulus']):
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$components['modulus'] = $key['modulus'];
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break;
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case isset($key[1]):
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$components['modulus'] = $key[1];
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}
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if (isset($components['modulus']) && isset($components['publicExponent'])) {
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}
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if (isset($key['coefficients'])) {
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$components['coefficients'] = $key['coefficients'];
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} else {
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foreach (['inverseq', 'q\'', 'coefficient'] as $index) {
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if (isset($key[$index])) {
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$components['coefficients'] = [2 => $key[$index]];
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}
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}
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}
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if (!isset($components['primes'])) {
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$components['isPublicKey'] = true;
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return $components;
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}
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throw new \UnexpectedValueException('Modulus / exponent not present');
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if (!isset($components['exponents'])) {
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$one = new BigInteger(1);
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$temp = $components['primes'][1]->subtract($one);
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$exponents = [1 => $components['publicExponent']->modInverse($temp)];
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$temp = $components['primes'][2]->subtract($one);
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$exponents[] = $components['publicExponent']->modInverse($temp);
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$components['exponents'] = $exponents;
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}
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if (!isset($components['coefficients'])) {
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$components['coefficients'] = [2 => $components['primes'][2]->modInverse($components['primes'][1])];
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}
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foreach (['privateexponent', 'd'] as $index) {
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if (isset($key[$index])) {
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$components['privateExponent'] = $key[$index];
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break;
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}
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}
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return $components;
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}
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/**
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* Convert a private key to the appropriate format.
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*
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* @access public
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* @param \phpseclib3\Math\BigInteger $n
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* @param \phpseclib3\Math\BigInteger $e
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* @param \phpseclib3\Math\BigInteger $d
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* @param array $primes
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* @param array $exponents
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* @param array $coefficients
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* @param string $password optional
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* @param array $options optional
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* @return array
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*/
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public static function savePrivateKey(BigInteger $n, BigInteger $e, BigInteger $d, array $primes, array $exponents, array $coefficients, $password = '', array $options = [])
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{
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if (!empty($password) && is_string($password)) {
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throw new UnsupportedFormatException('Raw private keys do not support encryption');
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}
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return [
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'e' => clone $e,
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'n' => clone $n,
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'd' => clone $d,
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'primes' => array_map(function($var) { return clone $var; }, $primes),
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'exponents' => array_map(function($var) { return clone $var; }, $exponents),
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'coefficients' => array_map(function($var) { return clone $var; }, $coefficients)
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];
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}
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/**
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@ -1126,4 +1126,25 @@ n9dyFZYXxil/cgFG/PDMnuXy1Wcl8hb8iwQag4Y7ohiLXVTJa/0BAgMBAAE=
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$key = PublicKeyLoader::load(hex2bin($key));
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$this->assertInstanceOf(PublicKey::class, $key);
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}
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/**
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* @group github1711
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*/
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public function testRawPrivateKey()
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{
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$key = RSA::createKey(512);
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$str1 = "$key";
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$key = $key->toString('Raw');
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$key = [
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'e' => $key['e'],
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'n' => $key['n'],
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'd' => $key['d'],
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'p' => $key['primes'][1],
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'q' => $key['primes'][2]
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];
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$key = PublicKeyLoader::loadPrivateKey($key);
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$str2 = "$key";
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$this->assertSame($str1, $str2);
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}
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}
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