Resolve recommended-profile Critical and High findings, retain narrow analyzer exceptions, and update the edge-broker WebSocket dependency to a non-vulnerable release.
288 lines
12 KiB
PHP
288 lines
12 KiB
PHP
<?php
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namespace classes;
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use Exception;
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use Symfony\Component\Serializer\Exception\ExceptionInterface;
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use Symfony\Component\Serializer\SerializerInterface;
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use Symfony\Component\Uid\Uuid;
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use Webauthn\AttestationStatement\AttestationStatementSupportManager;
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use Webauthn\AuthenticatorAssertionResponse;
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use Webauthn\AuthenticatorAssertionResponseValidator;
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use Webauthn\CeremonyStep\CeremonyStepManagerFactory;
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use Webauthn\Denormalizer\WebauthnSerializerFactory;
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use Webauthn\PublicKeyCredential;
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use Webauthn\PublicKeyCredentialRequestOptions;
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use Webauthn\PublicKeyCredentialSource;
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use Webauthn\TrustPath\EmptyTrustPath;
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use objects\passkeys_o;
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use CBOR\Encoder;
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class webauthn
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{
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private AuthenticatorAssertionResponseValidator $validator;
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private SerializerInterface $serializer;
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public function __construct()
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{
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$factory = new CeremonyStepManagerFactory();
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// In a real scenario, we should set allowed origins.
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// We use the $_SERVER['HTTP_ORIGIN'] or similar.
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$rpId = parse_url((string)($_SERVER['HTTP_ORIGIN'] ?? ''), PHP_URL_HOST) ?: ($_SERVER['SERVER_NAME'] ?? 'localhost');
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$factory->setAllowedOrigins(['https://' . $rpId, 'http://' . $rpId]);
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$this->validator = new AuthenticatorAssertionResponseValidator(
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$factory->requestCeremony()
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);
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$attestationStatementSupportManager = new AttestationStatementSupportManager();
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$serializerFactory = new WebauthnSerializerFactory($attestationStatementSupportManager);
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$this->serializer = $serializerFactory->create();
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}
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/**
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* Verify a WebAuthn assertion
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*
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* @param string $assertionJson The JSON string from the client
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* @param string $challengeToken The hex challenge token stored in our DB
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* @param passkeys_o $passkey The passkey object from our DB
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* @param string $host The host (rpId) to verify against
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* @return bool
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*/
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public function verifyAssertion(
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string $assertionJson,
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string $challengeToken,
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passkeys_o $passkey,
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string $host
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): bool {
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try {
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$publicKeyCredential = $this->serializer->deserialize($assertionJson, PublicKeyCredential::class, 'json');
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$response = $publicKeyCredential->response;
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if (!$response instanceof AuthenticatorAssertionResponse) {
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throw new Exception('Not an assertion response');
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}
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// Create PublicKeyCredentialSource from passkey object
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$source = $this->createSourceFromObject($passkey);
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// Prepare challenge (binary as expected by the WebAuthn lib)
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$challenge = hex2bin($challengeToken);
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// Create PublicKeyCredentialRequestOptions
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$options = PublicKeyCredentialRequestOptions::create(
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$challenge,
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$host
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);
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// Check
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$this->validator->check(
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$source,
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$response,
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$options,
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$host,
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$source->userHandle
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);
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// If it didn't throw, it's valid. Update sign count.
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// Note: validator updates source counter in v5
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$passkey->sign_count->set($source->counter);
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return true;
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} catch (Exception $e) {
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// Log error
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$pk_hex = bin2hex($this->b64urlDecode((string)$passkey->public_key->value()));
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error_log("WebAuthn verification failed: " . $e->getMessage() . " (PK Hex: $pk_hex)");
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throw new Exception("WebAuthn verification failed: " . $e->getMessage() . " (PK Hex: $pk_hex)");
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} catch (ExceptionInterface $e) {
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throw new Exception('Serialization error: ' . $e->getMessage());
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}
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}
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private function createSourceFromObject(passkeys_o $passkey): PublicKeyCredentialSource
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{
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$transports = $passkey->transports->value() ?: [];
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$credential_id_bin = $this->b64urlDecode((string)$passkey->credential_id->value());
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$public_key_raw = $this->b64urlDecode((string)$passkey->public_key->value());
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// Ensure the credential public key is in COSE (CBOR) format as expected by webauthn-lib
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$credentialPublicKey = $this->ensureCosePublicKey($public_key_raw, (string)$passkey->algorithm->value());
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return new PublicKeyCredentialSource(
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$credential_id_bin, // publicKeyCredentialId (binary)
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'public-key',
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$transports,
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'none', // attestationType
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new EmptyTrustPath(),
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Uuid::fromString('00000000-0000-0000-0000-000000000000'), // aaguid
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$credentialPublicKey, // credentialPublicKey (COSE/CBOR binary)
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(string)$passkey->user_id->value(), // userHandle
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(int)$passkey->sign_count->value()
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);
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}
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/**
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* Base64URL decode with padding handling
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*/
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public function b64urlDecode(string $data): string
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{
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$b64 = strtr($data, '-_', '+/');
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$pad = strlen($b64) % 4;
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if ($pad) {
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$b64 .= str_repeat('=', 4 - $pad);
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}
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$decoded = base64_decode($b64, true);
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if ($decoded === false) {
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// As a last resort, try non-strict decode
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$decoded = base64_decode($b64, false);
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}
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return $decoded === false ? '' : $decoded;
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}
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/**
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* Detects if the given data looks like a PEM public key (ASCII) or DER SPKI (ASN.1 sequence)
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*/
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private function looksLikePemOrDer(string $data): bool
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{
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if ($data === '') {
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return false;
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}
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if (str_contains($data, '-----BEGIN')) {
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return true;
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}
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// DER SEQUENCE usually starts with 0x30
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return isset($data[0]) && ord($data[0]) === 0x30;
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}
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/**
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* Convert PEM/DER EC public key to COSE EC2 key (CBOR binary). If already COSE, return as-is.
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* Supports ES256/P-256. Other curves will throw.
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*/
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public function ensureCosePublicKey(string $data, string $algorithm): string
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{
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// If data already looks like COSE (CBOR map) with small leading major type 5 (map)
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// we check if it is indeed a valid CBOR map with at least the 'kty' (1) key.
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if ($data !== '' && (ord($data[0]) >= 0xA0 && ord($data[0]) <= 0xBF)) {
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try {
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$stream = new \Webauthn\StringStream($data);
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$object = \CBOR\Decoder::create()->decode($stream);
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if ($object instanceof \CBOR\Normalizable) {
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$normalized = $object->normalize();
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if (is_array($normalized)) {
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if (isset($normalized[1])) {
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return $data; // valid COSE map
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}
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// Some clients send the full attestation object instead of just the public key.
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// We detect this by checking for 'authData' and 'fmt' keys in the CBOR map.
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if (isset($normalized['authData']) && isset($normalized['fmt']) && is_string($normalized['authData'])) {
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$authData = $normalized['authData'];
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if (strlen($authData) >= 37) {
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$flags = ord($authData[32]);
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$offset = 37; // RP ID Hash(32) + Flags(1) + Counter(4)
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if (($flags & 0x40) === 0x40) { // Attested credential data present
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$offset += 16; // AAGUID
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if (strlen($authData) >= $offset + 2) {
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$l = (ord($authData[$offset]) << 8) | ord($authData[$offset + 1]);
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$offset += 2 + $l; // Credential ID
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if (strlen($authData) > $offset) {
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$publicKeyData = substr($authData, $offset);
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try {
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// Extract just the public key (which is a CBOR object)
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$pkStream = new \Webauthn\StringStream($publicKeyData);
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$pkObject = \CBOR\Decoder::create()->decode($pkStream);
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return (new Encoder())->encode($pkObject);
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} catch (Exception $e) {
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// Not a valid CBOR object at the expected offset; fall through
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}
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}
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}
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}
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}
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}
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}
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}
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} catch (Exception $e) {
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// Not a valid CBOR map or missing kty; proceed to PEM/DER checks
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}
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}
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if (!$this->looksLikePemOrDer($data)) {
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// Unknown binary; try returning as-is and let downstream throw if invalid.
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return $data;
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}
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// Normalize to PEM string
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$pem = $data;
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if (!str_contains($pem, '-----BEGIN')) {
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$pem = "-----BEGIN PUBLIC KEY-----\r\n" . chunk_split(base64_encode($data), 64, "\r\n") . "-----END PUBLIC KEY-----\r\n";
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}
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$key = @openssl_pkey_get_public($pem);
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if ($key === false) {
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throw new Exception('Invalid public key material (PEM/DER parse failed)');
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}
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$details = openssl_pkey_get_details($key);
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if (!is_array($details) || !isset($details['type'])) {
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throw new Exception('Could not extract public key details');
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}
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if ((int)$details['type'] !== OPENSSL_KEYTYPE_EC) {
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throw new Exception('Unsupported key type for WebAuthn (expected EC)');
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}
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$curve = $details['ec']['curve_name'] ?? null;
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$point = $details['ec']['public_key'] ?? null;
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$x = $details['ec']['x'] ?? null;
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$y = $details['ec']['y'] ?? null;
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if ($x === null || $y === null) {
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// Try to parse uncompressed point (0x04 || X || Y)
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if (!is_string($point) || $point === '' || $point[0] !== "\x04") {
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throw new Exception('Unable to extract EC public key coordinates');
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}
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$coordLen = (strlen($point) - 1) / 2;
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if ($coordLen <= 0) {
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throw new Exception('Invalid EC public key point');
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}
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$x = substr($point, 1, (int)$coordLen);
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$y = substr($point, 1 + (int)$coordLen, (int)$coordLen);
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}
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// Map curve to COSE crv id
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$crv = 1; // default P-256
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if (is_string($curve)) {
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$lc = strtolower($curve);
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if (str_contains($lc, 'secp256') || str_contains($lc, 'prime256') || str_contains($lc, 'p-256')) {
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$crv = 1; // P-256
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} elseif (str_contains($lc, 'secp384') || str_contains($lc, 'p-384')) {
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$crv = 2; // P-384
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} elseif (str_contains($lc, 'secp521') || str_contains($lc, 'p-521')) {
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$crv = 3; // P-521
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} else {
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throw new Exception('Unsupported EC curve: ' . $curve);
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}
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}
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// Map algorithm string to COSE alg id (defaults to ES256)
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$alg = -7; // ES256
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$algStr = strtoupper((string)$algorithm);
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if ($algStr === 'ES384') { $alg = -35; }
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elseif ($algStr === 'ES512') { $alg = -36; }
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// Build COSE key map and CBOR-encode it
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$cose = [
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1 => 2, // kty: EC2
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3 => $alg, // alg
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-1 => $crv, // crv
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-2 => $x, // x-coordinate (bytes)
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-3 => $y, // y-coordinate (bytes)
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];
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$encoder = new Encoder();
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return $encoder->encode($cose);
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}
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}
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