e95f77d34c
In some brief tests, this causes no problems. In this state however, you would need to modify DB_DataObject to have a static declaration of staticget (and probably pkeyGet). The next commit will change the staticGet overload to a unique function name (like getKV for getKeyValue), which means we can properly call the function by PHP Strict Standards.
309 lines
8.1 KiB
PHP
309 lines
8.1 KiB
PHP
<?php
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/**
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* StatusNet - the distributed open-source microblogging tool
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* Copyright (C) 2010, StatusNet, Inc.
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*
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* A sample module to show best practices for StatusNet plugins
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*
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* PHP version 5
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU Affero General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU Affero General Public License for more details.
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*
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* You should have received a copy of the GNU Affero General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*
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* @package StatusNet
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* @author James Walker <james@status.net>
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* @copyright 2010 StatusNet, Inc.
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* @license http://www.fsf.org/licensing/licenses/agpl-3.0.html AGPL 3.0
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* @link http://status.net/
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*/
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if (!defined('STATUSNET')) {
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exit(1);
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}
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require_once 'Crypt/RSA.php';
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class Magicsig extends Managed_DataObject
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{
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const PUBLICKEYREL = 'magic-public-key';
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public $__table = 'magicsig';
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/**
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* Key to user.id/profile.id for the local user whose key we're storing.
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*
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* @var int
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*/
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public $user_id;
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/**
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* Flattened string representation of the key pair; callers should
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* usually use $this->publicKey and $this->privateKey directly,
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* which hold live Crypt_RSA key objects.
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*
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* @var string
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*/
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public $keypair;
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/**
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* Crypto algorithm used for this key; currently only RSA-SHA256 is supported.
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*
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* @var string
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*/
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public $alg;
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/**
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* Public RSA key; gets serialized in/out via $this->keypair string.
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*
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* @var Crypt_RSA
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*/
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public $publicKey;
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/**
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* PrivateRSA key; gets serialized in/out via $this->keypair string.
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*
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* @var Crypt_RSA
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*/
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public $privateKey;
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public function __construct($alg = 'RSA-SHA256')
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{
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$this->alg = $alg;
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}
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function table()
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{
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return array(
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'user_id' => DB_DATAOBJECT_INT,
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'keypair' => DB_DATAOBJECT_STR + DB_DATAOBJECT_NOTNULL,
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'alg' => DB_DATAOBJECT_STR
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);
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}
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static function schemaDef()
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{
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return array(new ColumnDef('user_id', 'integer',
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null, false, 'PRI'),
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new ColumnDef('keypair', 'text',
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false, false),
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new ColumnDef('alg', 'varchar',
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64, false));
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}
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function keys()
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{
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return array_keys($this->keyTypes());
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}
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function keyTypes()
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{
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return array('user_id' => 'K');
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}
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function sequenceKey() {
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return array(false, false, false);
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}
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/**
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* Save this keypair into the database.
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*
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* Overloads default insert behavior to encode the live key objects
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* as a flat string for storage.
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*
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* @return mixed
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*/
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function insert()
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{
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$this->keypair = $this->toString();
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return parent::insert();
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}
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/**
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* Generate a new keypair for a local user and store in the database.
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*
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* Warning: this can be very slow on systems without the GMP module.
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* Runtimes of 20-30 seconds are not unheard-of.
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*
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* @param int $user_id id of local user we're creating a key for
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*/
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public function generate($user_id)
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{
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$rsa = new Crypt_RSA();
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$keypair = $rsa->createKey();
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$rsa->loadKey($keypair['privatekey']);
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$this->privateKey = new Crypt_RSA();
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$this->privateKey->loadKey($keypair['privatekey']);
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$this->publicKey = new Crypt_RSA();
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$this->publicKey->loadKey($keypair['publickey']);
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$this->user_id = $user_id;
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$this->insert();
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}
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/**
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* Encode the keypair or public key as a string.
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*
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* @param boolean $full_pair set to false to leave out the private key.
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* @return string
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*/
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public function toString($full_pair = true)
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{
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$mod = Magicsig::base64_url_encode($this->publicKey->modulus->toBytes());
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$exp = Magicsig::base64_url_encode($this->publicKey->exponent->toBytes());
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$private_exp = '';
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if ($full_pair && $this->privateKey->exponent->toBytes()) {
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$private_exp = '.' . Magicsig::base64_url_encode($this->privateKey->exponent->toBytes());
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}
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return 'RSA.' . $mod . '.' . $exp . $private_exp;
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}
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/**
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* Decode a string representation of an RSA public key or keypair
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* as a Magicsig object which can be used to sign or verify.
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*
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* @param string $text
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* @return Magicsig
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*/
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public static function fromString($text)
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{
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$magic_sig = new Magicsig();
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// remove whitespace
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$text = preg_replace('/\s+/', '', $text);
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// parse components
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if (!preg_match('/RSA\.([^\.]+)\.([^\.]+)(.([^\.]+))?/', $text, $matches)) {
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return false;
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}
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$mod = $matches[1];
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$exp = $matches[2];
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if (!empty($matches[4])) {
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$private_exp = $matches[4];
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} else {
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$private_exp = false;
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}
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$magic_sig->loadKey($mod, $exp, 'public');
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if ($private_exp) {
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$magic_sig->loadKey($mod, $private_exp, 'private');
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}
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return $magic_sig;
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}
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/**
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* Fill out $this->privateKey or $this->publicKey with a Crypt_RSA object
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* representing the give key (as mod/exponent pair).
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*
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* @param string $mod base64-encoded
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* @param string $exp base64-encoded exponent
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* @param string $type one of 'public' or 'private'
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*/
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public function loadKey($mod, $exp, $type = 'public')
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{
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common_log(LOG_DEBUG, "Adding ".$type." key: (".$mod .', '. $exp .")");
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$rsa = new Crypt_RSA();
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$rsa->signatureMode = CRYPT_RSA_SIGNATURE_PKCS1;
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$rsa->setHash('sha256');
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$rsa->modulus = new Math_BigInteger(Magicsig::base64_url_decode($mod), 256);
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$rsa->k = strlen($rsa->modulus->toBytes());
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$rsa->exponent = new Math_BigInteger(Magicsig::base64_url_decode($exp), 256);
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if ($type == 'private') {
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$this->privateKey = $rsa;
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} else {
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$this->publicKey = $rsa;
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}
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}
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/**
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* Returns the name of the crypto algorithm used for this key.
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*
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* @return string
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*/
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public function getName()
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{
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return $this->alg;
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}
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/**
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* Returns the name of a hash function to use for signing with this key.
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*
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* @return string
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* @fixme is this used? doesn't seem to be called by name.
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*/
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public function getHash()
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{
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switch ($this->alg) {
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case 'RSA-SHA256':
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return 'sha256';
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}
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}
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/**
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* Generate base64-encoded signature for the given byte string
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* using our private key.
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*
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* @param string $bytes as raw byte string
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* @return string base64-encoded signature
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*/
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public function sign($bytes)
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{
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$sig = $this->privateKey->sign($bytes);
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return Magicsig::base64_url_encode($sig);
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}
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/**
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*
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* @param string $signed_bytes as raw byte string
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* @param string $signature as base64
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* @return boolean
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*/
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public function verify($signed_bytes, $signature)
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{
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$signature = Magicsig::base64_url_decode($signature);
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return $this->publicKey->verify($signed_bytes, $signature);
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}
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/**
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* URL-encoding-friendly base64 variant encoding.
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*
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* @param string $input
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* @return string
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*/
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public static function base64_url_encode($input)
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{
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return strtr(base64_encode($input), '+/', '-_');
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}
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/**
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* URL-encoding-friendly base64 variant decoding.
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*
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* @param string $input
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* @return string
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*/
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public static function base64_url_decode($input)
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{
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return base64_decode(strtr($input, '-_', '+/'));
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}
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}
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