441 lines
16 KiB
PHP
441 lines
16 KiB
PHP
<?php
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namespace CodeLts\U2F\U2FServer;
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class U2FServer
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{
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/** Constant for the version of the u2f protocol */
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public const VERSION = 'U2F_V2';
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/** @internal */
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public const PUBKEY_LEN = 65;
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/*
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* NOTE: If you are lucky and can match this CNs to the hashes please also add it to
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* the existing test case provider
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* "CN=Yubico U2F EE Serial 776137165",
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* "CN=Yubico U2F EE Serial 1086591525",
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* "CN=Yubico U2F EE Serial 1973679733",
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* "CN=Yubico U2F EE Serial 13503277888",
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* "CN=Yubico U2F EE Serial 14803321578"
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*/
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/**
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* @internal
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* @see https://books.google.fr/books?id=SF68CwAAQBAJ&lpg=PT96&ots=PCLmrWyu2F&hl=fr&pg=PT96#v=onepage&q&f=false
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* @see https://github.com/Yubico/python-u2flib-server/issues/15#issue-107916981
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*/
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private static $FIXCERTS = [
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'349bca1031f8c82c4ceca38b9cebf1a69df9fb3b94eed99eb3fb9aa3822d26e8',
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'dd574527df608e47ae45fbba75a2afdd5c20fd94a02419381813cd55a2a3398f', // "CN=Yubico U2F EE Serial 13831167861"
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'1d8764f0f7cd1352df6150045c8f638e517270e8b5dda1c63ade9c2280240cae',
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'd0edc9a91a1677435a953390865d208c55b3183c6759c9b5a7ff494c322558eb',
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'6073c436dcd064a48127ddbf6032ac1a66fd59a0c24434f070d4e564c124c897',
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'ca993121846c464d666096d35f13bf44c1b05af205f9b4a1e00cf6cc10c5e511',
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];
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/**
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* @throws U2FException If OpenSSL older than 1.0.0 is used
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*/
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public static function checkOpenSSLVersion()
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{
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if (OPENSSL_VERSION_NUMBER < 0x10000000) {
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throw new U2FException(
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'OpenSSL has to be at least version 1.0.0, this is ' . OPENSSL_VERSION_TEXT,
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U2FException::OLD_OPENSSL
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);
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}
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return true;
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}
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/**
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* Called to get a registration request to send to a user.
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* Returns an array of one registration request and a array of sign requests.
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*
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* @param string $appId Application id for the running application, Basically the app's URL
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* @param stdClass[] $registrations List of current registrations for this
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* user, to prevent the user from registering the same authenticator several
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* times.
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* @return array<string,RegistrationRequest|SignRequest[]> An array of two elements, the first containing a
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* RegisterRequest the second being an array of SignRequest
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* @throws U2FException
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*/
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public static function makeRegistration($appId, array $registrations = [])
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{
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$request = new RegistrationRequest(static::createChallenge(), $appId);
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$signatures = static::makeAuthentication($registrations, $appId);
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return [
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'request' => $request,
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'signatures' => $signatures,
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];
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}
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/**
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* Called to verify and unpack a registration message.
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*
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* @param RegistrationRequest $request this is a reply to
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* @param object $response response from a user
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* @param string|null $attestDir The folder to use where trusted CA files are stored (optional)
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* @param bool $includeCert set to true if the attestation certificate should be
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* included in the returned Registration object (optional)
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* @return Registration
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* @throws U2FException
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*/
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public static function register(RegistrationRequest $request, $response, $attestDir = null, $includeCert = true)
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{
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// Parameter Checks
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// $request is safe because of the php typehint
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if (!is_object($response)) {
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throw new \InvalidArgumentException('$response of register() method only accepts object.');
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}
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if (property_exists($response, 'errorCode') && $response->errorCode !== 0) {
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throw new U2FException(
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'User-agent returned error. Error code: ' . $response->errorCode,
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U2FException::BAD_UA_RETURNING
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);
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}
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if (!is_bool($includeCert)) {
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throw new \InvalidArgumentException('$include_cert of register() method only accepts boolean.');
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}
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// Unpack the registration data coming from the client-side token
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$rawRegistration = static::base64uDecode($response->registrationData);
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$registrationData = array_values(unpack('C*', $rawRegistration));
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$clientData = static::base64uDecode($response->clientData);
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$clientToken = json_decode($clientData);
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// Check Client's challenge matches the original request's challenge
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if ($clientToken->challenge !== $request->challenge()) {
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throw new U2FException(
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'Registration challenge does not match',
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U2FException::UNMATCHED_CHALLENGE
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);
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}
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// Begin validating and building the registration
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$registration = new Registration();
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$offset = 1;
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$pubKey = substr($rawRegistration, $offset, static::PUBKEY_LEN);
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$offset += static::PUBKEY_LEN;
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// Validate and set the public key
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if (static::publicKeyToPem($pubKey) === null) {
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throw new U2FException(
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'Decoding of public key failed',
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U2FException::PUBKEY_DECODE
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);
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}
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$registration->setPublicKey(base64_encode($pubKey));
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// Build and set the key handle.
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$keyHandleLength = $registrationData[$offset++];
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$keyHandle = substr($rawRegistration, $offset, $keyHandleLength);
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$offset += $keyHandleLength;
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$registration->setKeyHandle(static::base64uEncode($keyHandle));
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// Build certificate
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// Set certificate length
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// Note: length of certificate is stored in byte 3 and 4 (excluding the first 4 bytes)
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$certLength = 4;
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$certLength += ($registrationData[$offset + 2] << 8);
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$certLength += $registrationData[$offset + 3];
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// Write the certificate from the returning registration data
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$rawCert = static::fixSignatureUnusedBits(substr($rawRegistration, $offset, $certLength));
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$offset += $certLength;
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$pemCert = "-----BEGIN CERTIFICATE-----\r\n";
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$pemCert .= chunk_split(base64_encode($rawCert), 64);
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$pemCert .= '-----END CERTIFICATE-----';
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if ($includeCert) {
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$registration->setCertificate(base64_encode($rawCert));
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}
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// If we've set the attestDir, check the given certificate can be used.
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if ($attestDir) {
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if (openssl_x509_checkpurpose($pemCert, -1, static::getCerts($attestDir)) !== true) {
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throw new U2FException(
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'Attestation certificate can not be validated',
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U2FException::ATTESTATION_VERIFICATION
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);
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}
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}
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// Attempt to extract public key from the certificate, if we can't something went wrong in making it.
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if (!openssl_pkey_get_public($pemCert)) {
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throw new U2FException(
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'Decoding of public key failed',
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U2FException::PUBKEY_DECODE
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);
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}
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// Generate signature from the remaining part of the raw registration data
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$signature = substr($rawRegistration, $offset);
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// Build a verification string from the components we've made in this function
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$dataToVerify = chr(0);
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$dataToVerify .= hash('sha256', $request->appId(), true);
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$dataToVerify .= hash('sha256', $clientData, true);
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$dataToVerify .= $keyHandle;
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$dataToVerify .= $pubKey;
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// Verify our data against the signature and the certificate, on success return the registration object
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if (openssl_verify($dataToVerify, $signature, $pemCert, 'sha256') === 1) {
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return $registration;
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} else {
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throw new U2FException(
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'Attestation signature does not match',
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U2FException::ATTESTATION_SIGNATURE
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);
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}
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}
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/**
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* Called to get an authentication request.
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*
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* @param stdClass[] $registrations An array of the registrations to create authentication requests for.
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* @param string $appId Application id for the running application, Basically the app's URL
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* @return SignRequest[] An array of SignRequest
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* @throws \InvalidArgumentException
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*/
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public static function makeAuthentication(array $registrations, $appId)
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{
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$signatures = [];
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$challenge = static::createChallenge();
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foreach ($registrations as $reg) {
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if (!is_object($reg)) {
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throw new \InvalidArgumentException('$registrations of makeAuthentication() method only accepts array of object.');
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}
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$signatures[] = new SignRequest(
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[
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'appId' => $appId,
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'keyHandle' => $reg->keyHandle,
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'challenge' => $challenge,
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]
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);
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}
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return $signatures;
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}
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/**
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* Called to verify an authentication response
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*
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* @param SignRequest[] $requests An array of outstanding authentication requests
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* @param stdClass[] $registrations An array of current registrations
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* @param object $response A response from the authenticator
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* @return \stdClass
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* @throws U2FException
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*
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* The Registration object returned on success contains an updated counter
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* that should be saved for future authentications.
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* If the Error returned is ERR_COUNTER_TOO_LOW this is an indication of
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* token cloning or similar and appropriate action should be taken.
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*/
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public static function authenticate(array $requests, array $registrations, $response)
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{
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// Parameter checks
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if (!is_object($response)) {
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throw new \InvalidArgumentException('$response of authenticate() method only accepts object.');
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}
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if (property_exists($response, 'errorCode') && $response->errorCode !== 0) {
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throw new U2FException(
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'User-agent returned error. Error code: ' . $response->errorCode,
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U2FException::BAD_UA_RETURNING
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);
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}
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// Set default values to null, so we get fails by default
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/** @var object|null $req */
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$req = null;
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/** @var object|null $reg */
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$reg = null;
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// Extract client response data
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$clientData = static::base64uDecode($response->clientData);
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$decodedClient = json_decode($clientData);
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// Check we have a match among the requests and the response
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foreach ($requests as $req) {
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if (!is_object($req)) {
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throw new \InvalidArgumentException('$requests of authenticate() method only accepts an array of objects.');
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}
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if ($req->keyHandle() === $response->keyHandle && $req->challenge() === $decodedClient->challenge) {
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break;
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}
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$req = null;
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}
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if ($req === null) {
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throw new U2FException(
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'No matching request found',
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U2FException::NO_MATCHING_REQUEST
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);
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}
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// Check for a match for the response among a list of registrations
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foreach ($registrations as $reg) {
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if (!is_object($reg)) {
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throw new \InvalidArgumentException('$registrations of authenticate() method only accepts an array of objects.');
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}
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if ($reg->keyHandle === $response->keyHandle) {
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break;
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}
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$reg = null;
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}
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if ($reg === null) {
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throw new U2FException(
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'No matching registration found',
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U2FException::NO_MATCHING_REGISTRATION
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);
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}
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// On Success, check we have a valid public key
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$pemKey = static::publicKeyToPem(static::base64uDecode($reg->publicKey));
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if ($pemKey === null) {
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throw new U2FException(
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'Decoding of public key failed',
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U2FException::PUBKEY_DECODE
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);
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}
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// Build signature and data from response
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$signData = static::base64uDecode($response->signatureData);
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$dataToVerify = hash('sha256', $req->appId(), true);
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$dataToVerify .= substr($signData, 0, 5);
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$dataToVerify .= hash('sha256', $clientData, true);
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$signature = substr($signData, 5);
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// Verify the response data against the public key
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if (openssl_verify($dataToVerify, $signature, $pemKey, 'sha256') === 1) {
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$ctr = unpack('Nctr', substr($signData, 1, 4));
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$counter = $ctr['ctr'];
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/* TODO: wrap-around should be handled somehow.. */
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if ($counter > $reg->counter) {
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$reg->counter = $counter;
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return $reg;
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} else {
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throw new U2FException(
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'Counter too low.',
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U2FException::COUNTER_TOO_LOW
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);
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}
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} else {
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throw new U2FException(
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'Authentication failed',
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U2FException::AUTHENTICATION_FAILURE
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);
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}
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}
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/**
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* Get all files from a directory
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*
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* @param string $attestDir The folder to find files into
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* @return string[]
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*/
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private static function getCerts($attestDir)
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{
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$files = [];
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$dir = $attestDir;
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if ($dir && $handle = opendir($dir)) {
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while (false !== ($entry = readdir($handle))) {
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if (is_file($dir . DIRECTORY_SEPARATOR . $entry)) {
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$files[] = $dir . DIRECTORY_SEPARATOR . $entry;
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}
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}
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closedir($handle);
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}
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return $files;
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}
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/**
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* @param string $data
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* @return string
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*/
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private static function base64uEncode($data)
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{
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return trim(strtr(base64_encode($data), '+/', '-_'), '=');
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}
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/**
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* @param string $data
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* @return string
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*/
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private static function base64uDecode($data)
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{
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return base64_decode(strtr($data, '-_', '+/'));
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}
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/**
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* @param string $key
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* @return null|string
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*/
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private static function publicKeyToPem($key)
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{
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if (strlen($key) !== static::PUBKEY_LEN || $key[0] !== "\x04") {
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return null;
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}
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/*
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* Convert the public key to binary DER format first
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* Using the ECC SubjectPublicKeyInfo OIDs from RFC 5480
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*
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* SEQUENCE(2 elem) 30 59
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* SEQUENCE(2 elem) 30 13
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* OID1.2.840.10045.2.1 (id-ecPublicKey) 06 07 2a 86 48 ce 3d 02 01
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* OID1.2.840.10045.3.1.7 (secp256r1) 06 08 2a 86 48 ce 3d 03 01 07
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* BIT STRING(520 bit) 03 42 ..key..
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*/
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$der = "\x30\x59\x30\x13\x06\x07\x2a\x86\x48\xce\x3d\x02\x01";
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$der .= "\x06\x08\x2a\x86\x48\xce\x3d\x03\x01\x07\x03\x42";
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$der .= "\0" . $key;
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$pem = "-----BEGIN PUBLIC KEY-----\r\n";
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$pem .= chunk_split(base64_encode($der), 64);
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$pem .= '-----END PUBLIC KEY-----';
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return $pem;
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}
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/**
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* @return string
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* @throws U2FException
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*/
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private static function createChallenge()
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{
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$challenge = openssl_random_pseudo_bytes(32, $crypto_strong);
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if ($crypto_strong !== true) {
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throw new U2FException(
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'Unable to obtain a good source of randomness',
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U2FException::BAD_RANDOM
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);
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}
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$challenge = static::base64uEncode($challenge);
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return $challenge;
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}
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/**
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* Fixes a certificate where the signature contains unused bits.
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*
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* @param string $cert
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* @return string
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*/
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private static function fixSignatureUnusedBits($cert)
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{
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if (in_array(hash('sha256', $cert), static::$FIXCERTS)) {
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$cert[strlen($cert) - 257] = "\0"; // Fix the "unused bits" field (should always be 0).
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}
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return $cert;
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}
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}
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