355 lines
12 KiB
Vala
355 lines
12 KiB
Vala
using GnuTLS;
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namespace Dino.Plugins.Ice.DtlsSrtp {
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public class CredentialsCapsule {
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public uint8[] own_fingerprint;
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public X509.Certificate[] own_cert;
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public X509.PrivateKey private_key;
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}
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public class Handler {
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public signal void send_data(uint8[] data);
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public bool ready { get {
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return srtp_session.has_encrypt && srtp_session.has_decrypt;
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}}
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public Mode mode { get; set; default = Mode.CLIENT; }
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public uint8[] own_fingerprint { get; private set; }
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public uint8[] peer_fingerprint { get; set; }
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public string peer_fp_algo { get; set; }
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private CredentialsCapsule credentials;
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private Cond buffer_cond = Cond();
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private Mutex buffer_mutex = Mutex();
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private Gee.LinkedList<Bytes> buffer_queue = new Gee.LinkedList<Bytes>();
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private bool running = false;
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private bool stop = false;
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private bool restart = false;
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private Crypto.Srtp.Session srtp_session = new Crypto.Srtp.Session();
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public Handler.with_cert(CredentialsCapsule creds) {
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this.credentials = creds;
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this.own_fingerprint = creds.own_fingerprint;
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}
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public uint8[]? process_incoming_data(uint component_id, uint8[] data) throws Crypto.Error {
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if (srtp_session.has_decrypt) {
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if (component_id == 1) {
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if (data.length >= 2 && data[1] >= 192 && data[1] < 224) {
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return srtp_session.decrypt_rtcp(data);
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}
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return srtp_session.decrypt_rtp(data);
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}
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if (component_id == 2) return srtp_session.decrypt_rtcp(data);
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} else if (component_id == 1) {
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on_data_rec(data);
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}
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return null;
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}
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public uint8[]? process_outgoing_data(uint component_id, uint8[] data) throws Crypto.Error {
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if (srtp_session.has_encrypt) {
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if (component_id == 1) {
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if (data.length >= 2 && data[1] >= 192 && data[1] < 224) {
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return srtp_session.encrypt_rtcp(data);
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}
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return srtp_session.encrypt_rtp(data);
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}
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if (component_id == 2) return srtp_session.encrypt_rtcp(data);
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}
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return null;
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}
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public void on_data_rec(owned uint8[] data) {
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buffer_mutex.lock();
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buffer_queue.add(new Bytes.take(data));
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buffer_cond.signal();
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buffer_mutex.unlock();
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}
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internal static CredentialsCapsule generate_credentials() throws GLib.Error {
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int err = 0;
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X509.PrivateKey private_key = X509.PrivateKey.create();
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err = private_key.generate(PKAlgorithm.ECDSA, 256);
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throw_if_error(err);
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var start_time = new DateTime.now_local().add_days(1);
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var end_time = start_time.add_days(2);
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X509.Certificate cert = X509.Certificate.create();
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cert.set_key(private_key);
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cert.set_version(1);
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cert.set_activation_time ((time_t) start_time.to_unix ());
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cert.set_expiration_time ((time_t) end_time.to_unix ());
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uint32 serial = 1;
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cert.set_serial(&serial, sizeof(uint32));
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cert.sign(cert, private_key);
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uint8[] own_fingerprint = get_fingerprint(cert, DigestAlgorithm.SHA256);
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X509.Certificate[] own_cert = new X509.Certificate[] { (owned)cert };
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var creds = new CredentialsCapsule();
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creds.own_fingerprint = own_fingerprint;
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creds.own_cert = (owned) own_cert;
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creds.private_key = (owned) private_key;
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return creds;
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}
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public void stop_dtls_connection() {
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buffer_mutex.lock();
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stop = true;
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buffer_cond.signal();
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buffer_mutex.unlock();
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}
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public async Xmpp.Xep.Jingle.ContentEncryption? setup_dtls_connection() {
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MainContext context = MainContext.current_source().get_context();
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var thread = new Thread<Xmpp.Xep.Jingle.ContentEncryption>("dtls-connection", () => {
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var res = setup_dtls_connection_thread();
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Source source = new IdleSource();
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source.set_callback(setup_dtls_connection.callback);
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source.attach(context);
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return res;
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});
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yield;
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return thread.join();
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}
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private Xmpp.Xep.Jingle.ContentEncryption? setup_dtls_connection_thread() {
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buffer_mutex.lock();
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if (stop) {
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restart = true;
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buffer_mutex.unlock();
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return null;
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}
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if (running || ready) {
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buffer_mutex.unlock();
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return null;
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}
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running = true;
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restart = false;
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buffer_mutex.unlock();
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InitFlags server_or_client = mode == Mode.SERVER ? InitFlags.SERVER : InitFlags.CLIENT;
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debug("Setting up DTLS connection. We're %s", mode.to_string());
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CertificateCredentials cert_cred = CertificateCredentials.create();
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int err = cert_cred.set_x509_key(credentials.own_cert, credentials.private_key);
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throw_if_error(err);
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Session? session = Session.create(server_or_client | InitFlags.DATAGRAM);
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session.enable_heartbeat(1);
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session.set_srtp_profile_direct("SRTP_AES128_CM_HMAC_SHA1_80");
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session.set_credentials(GnuTLS.CredentialsType.CERTIFICATE, cert_cred);
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session.server_set_request(CertificateRequest.REQUEST);
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session.set_priority_from_string("NORMAL:!VERS-TLS-ALL:+VERS-DTLS-ALL:+CTYPE-CLI-X509");
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session.set_transport_pointer(this);
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session.set_pull_function(pull_function);
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session.set_pull_timeout_function(pull_timeout_function);
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session.set_push_function(push_function);
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session.set_verify_function(verify_function);
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DateTime maximum_time = new DateTime.now_utc().add_seconds(20);
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do {
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err = session.handshake();
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DateTime current_time = new DateTime.now_utc();
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if (maximum_time.compare(current_time) < 0) {
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warning("DTLS handshake timeouted");
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err = ErrorCode.APPLICATION_ERROR_MIN + 1;
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break;
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}
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if (stop) {
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debug("DTLS handshake stopped");
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err = ErrorCode.APPLICATION_ERROR_MIN + 2;
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break;
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}
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} while (err < 0 && !((ErrorCode)err).is_fatal());
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buffer_mutex.lock();
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if (stop) {
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stop = false;
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running = false;
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bool restart = restart;
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buffer_mutex.unlock();
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if (restart) {
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debug("Restarting DTLS handshake");
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return setup_dtls_connection_thread();
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}
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return null;
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}
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buffer_mutex.unlock();
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if (err != ErrorCode.SUCCESS) {
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warning("DTLS handshake failed: %s", ((ErrorCode)err).to_string());
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return null;
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}
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uint8[] km = new uint8[150];
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Datum? client_key, client_salt, server_key, server_salt;
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session.get_srtp_keys(km, km.length, out client_key, out client_salt, out server_key, out server_salt);
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if (client_key == null || client_salt == null || server_key == null || server_salt == null) {
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warning("SRTP client/server key/salt null");
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}
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debug("Finished DTLS connection. We're %s", mode.to_string());
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if (mode == Mode.SERVER) {
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srtp_session.set_encryption_key(Crypto.Srtp.AES_CM_128_HMAC_SHA1_80, server_key.extract(), server_salt.extract());
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srtp_session.set_decryption_key(Crypto.Srtp.AES_CM_128_HMAC_SHA1_80, client_key.extract(), client_salt.extract());
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} else {
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srtp_session.set_encryption_key(Crypto.Srtp.AES_CM_128_HMAC_SHA1_80, client_key.extract(), client_salt.extract());
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srtp_session.set_decryption_key(Crypto.Srtp.AES_CM_128_HMAC_SHA1_80, server_key.extract(), server_salt.extract());
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}
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return new Xmpp.Xep.Jingle.ContentEncryption(Xmpp.Xep.JingleIceUdp.DTLS_NS_URI, "DTLS-SRTP", credentials.own_fingerprint, peer_fingerprint);
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}
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private static ssize_t pull_function(void* transport_ptr, uint8[] buffer) {
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Handler self = transport_ptr as Handler;
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self.buffer_mutex.lock();
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while (self.buffer_queue.size == 0) {
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self.buffer_cond.wait(self.buffer_mutex);
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if (self.stop) {
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self.buffer_mutex.unlock();
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debug("DTLS handshake pull_function stopped");
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return -1;
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}
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}
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Bytes data = self.buffer_queue.remove_at(0);
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self.buffer_mutex.unlock();
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uint8[] data_uint8 = Bytes.unref_to_data((owned) data);
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Memory.copy(buffer, data_uint8, data_uint8.length);
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// The callback should return 0 on connection termination, a positive number indicating the number of bytes received, and -1 on error.
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return (ssize_t)data_uint8.length;
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}
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private static int pull_timeout_function(void* transport_ptr, uint ms) {
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Handler self = transport_ptr as Handler;
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int64 end_time = get_monotonic_time() + ms * 1000;
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self.buffer_mutex.lock();
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while (self.buffer_queue.size == 0) {
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self.buffer_cond.wait_until(self.buffer_mutex, end_time);
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if (self.stop) {
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self.buffer_mutex.unlock();
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debug("DTLS handshake pull_timeout_function stopped");
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return -1;
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}
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if (get_monotonic_time() > end_time) {
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self.buffer_mutex.unlock();
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return 0;
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}
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}
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self.buffer_mutex.unlock();
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// The callback should return 0 on timeout, a positive number if data can be received, and -1 on error.
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return 1;
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}
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private static ssize_t push_function(void* transport_ptr, uint8[] buffer) {
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Handler self = transport_ptr as Handler;
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self.send_data(buffer);
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// The callback should return a positive number indicating the bytes sent, and -1 on error.
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return (ssize_t)buffer.length;
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}
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private static int verify_function(Session session) {
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Handler self = session.get_transport_pointer() as Handler;
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try {
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bool valid = self.verify_peer_cert(session);
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if (!valid) {
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warning("DTLS certificate invalid. Aborting handshake.");
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return 1;
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}
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} catch (Error e) {
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warning("Error during DTLS certificate validation: %s. Aborting handshake.", e.message);
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return 1;
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}
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// The callback function should return 0 for the handshake to continue or non-zero to terminate.
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return 0;
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}
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private bool verify_peer_cert(Session session) throws GLib.Error {
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unowned Datum[] cert_datums = session.get_peer_certificates();
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if (cert_datums.length == 0) {
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warning("No peer certs");
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return false;
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}
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if (cert_datums.length > 1) warning("More than one peer cert");
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X509.Certificate peer_cert = X509.Certificate.create();
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peer_cert.import(ref cert_datums[0], CertificateFormat.DER);
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DigestAlgorithm algo;
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switch (peer_fp_algo) {
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case "sha-256":
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algo = DigestAlgorithm.SHA256;
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break;
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default:
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warning("Unkown peer fingerprint algorithm: %s", peer_fp_algo);
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return false;
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}
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uint8[] real_peer_fp = get_fingerprint(peer_cert, algo);
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if (real_peer_fp.length != this.peer_fingerprint.length) {
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warning("Fingerprint lengths not equal %i vs %i", real_peer_fp.length, peer_fingerprint.length);
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return false;
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}
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for (int i = 0; i < real_peer_fp.length; i++) {
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if (real_peer_fp[i] != this.peer_fingerprint[i]) {
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warning("First cert in peer cert list doesn't equal advertised one: %s vs %s", format_fingerprint(real_peer_fp), format_fingerprint(peer_fingerprint));
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return false;
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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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private uint8[] get_fingerprint(X509.Certificate certificate, DigestAlgorithm digest_algo) {
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uint8[] buf = new uint8[512];
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size_t buf_out_size = 512;
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certificate.get_fingerprint(digest_algo, buf, ref buf_out_size);
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uint8[] ret = new uint8[buf_out_size];
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for (int i = 0; i < buf_out_size; i++) {
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ret[i] = buf[i];
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}
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return ret;
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}
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private string format_fingerprint(uint8[] fingerprint) {
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var sb = new StringBuilder();
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for (int i = 0; i < fingerprint.length; i++) {
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sb.append("%02X".printf(fingerprint[i]));
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if (i < fingerprint.length - 1) {
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sb.append(":");
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}
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}
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return sb.str;
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}
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public enum Mode {
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CLIENT, SERVER
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}
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}
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