194 lines
6.6 KiB
JavaScript
194 lines
6.6 KiB
JavaScript
'use strict';
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var packer = require('tunnel-packer');
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var sni = require('sni');
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function pipeWs(servername, service, conn, remote) {
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console.log('[pipeWs] servername:', servername, 'service:', service);
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var browserAddr = packer.socketToAddr(conn);
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browserAddr.service = service;
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var cid = packer.addrToId(browserAddr);
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conn.tunnelCid = cid;
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console.log('[pipeWs] browser is', cid, 'home-cloud is', packer.socketToId(remote.upgradeReq.socket));
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function sendWs(data, serviceOverride) {
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if (remote.ws && (!conn.tunnelClosing || serviceOverride)) {
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try {
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remote.ws.send(packer.pack(browserAddr, data, serviceOverride), { binary: true });
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// If we can't send data over the websocket as fast as this connection can send it to us
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// (or there are a lot of connections trying to send over the same websocket) then we
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// need to pause the connection for a little. We pause all connections if any are paused
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// to make things more fair so a connection doesn't get stuck waiting for everyone else
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// to finish because it got caught on the boundary. Also if serviceOverride is set it
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// means the connection is over, so no need to pause it.
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if (!serviceOverride && (remote.pausedConns.length || remote.ws.bufferedAmount > 1024*1024)) {
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// console.log('pausing', cid, 'to allow web socket to catch up');
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conn.pause();
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remote.pausedConns.push(conn);
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}
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} catch (err) {
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console.warn('[pipeWs] error sending websocket message', err);
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}
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}
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}
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remote.clients[cid] = conn;
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conn.on('data', function (chunk) {
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console.log('[pipeWs] data from browser to tunneler', chunk.byteLength);
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sendWs(chunk);
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});
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conn.on('error', function (err) {
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console.warn('[pipeWs] browser connection error', err);
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});
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conn.on('close', function (hadErr) {
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console.log('[pipeWs] browser connection closing');
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sendWs(null, hadErr ? 'error': 'end');
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delete remote.clients[cid];
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});
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}
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module.exports.createTcpConnectionHandler = function (copts) {
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var Devices = copts.Devices;
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return function onTcpConnection(conn) {
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// this works when I put it here, but I don't know if it's tls yet here
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// httpsServer.emit('connection', socket);
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//tls3000.emit('connection', socket);
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//var tlsSocket = new tls.TLSSocket(socket, { secureContext: tls.createSecureContext(tlsOpts) });
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//tlsSocket.on('data', function (chunk) {
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// console.log('dummy', chunk.byteLength);
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//});
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//return;
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conn.once('data', function (firstChunk) {
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// BUG XXX: this assumes that the packet won't be chunked smaller
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// than the 'hello' or the point of the 'Host' header.
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// This is fairly reasonable, but there are edge cases where
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// it does not hold (such as manual debugging with telnet)
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// and so it should be fixed at some point in the future
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// defer after return (instead of being in many places)
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process.nextTick(function () {
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conn.unshift(firstChunk);
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});
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var service = 'tcp';
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var servername;
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var str;
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var m;
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function tryTls() {
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var vhost;
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console.log("");
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if (!copts.servernames.length) {
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console.log("https => admin => setup => (needs bogus tls certs to start?)");
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copts.httpsSetupServer(servername, conn);
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return;
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}
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if (-1 !== copts.servernames.indexOf(servername)) {
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console.log("Lock and load, admin interface time!");
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copts.httpsTunnel(servername, conn);
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return;
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}
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if (copts.config.nowww && /^www\./i.test(servername)) {
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console.log("TODO: use www bare redirect");
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}
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function run() {
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if (!servername) {
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console.log("No SNI was given, so there's nothing we can do here");
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copts.httpsInvalid(servername, conn);
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return;
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}
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var nextDevice = Devices.next(copts.deviceLists, servername);
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if (!nextDevice) {
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console.log("No devices match the given servername");
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copts.httpsInvalid(servername, conn);
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return;
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}
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console.log("pipeWs(servername, service, socket, deviceLists['" + servername + "'])");
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pipeWs(servername, service, conn, nextDevice);
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}
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if (copts.config.vhost) {
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console.log("VHOST path", copts.config.vhost);
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vhost = copts.config.vhost.replace(/:hostname/, (servername||''));
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console.log("VHOST name", vhost);
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conn.pause();
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//copts.httpsVhost(servername, conn);
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//return;
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require('fs').readdir(vhost, function (err, nodes) {
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console.log("VHOST error?", err);
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if (err) { run(); return; }
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if (nodes) { copts.httpsVhost(servername, conn); }
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});
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return;
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}
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run();
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}
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// https://github.com/mscdex/httpolyglot/issues/3#issuecomment-173680155
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if (22 === firstChunk[0]) {
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// TLS
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service = 'https';
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servername = (sni(firstChunk)||'').toLowerCase();
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console.log("tls hello servername:", servername);
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tryTls();
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return;
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}
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if (firstChunk[0] > 32 && firstChunk[0] < 127) {
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str = firstChunk.toString();
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m = str.match(/(?:^|[\r\n])Host: ([^\r\n]+)[\r\n]*/im);
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servername = (m && m[1].toLowerCase() || '').split(':')[0];
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console.log('servername', servername);
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if (/HTTP\//i.test(str)) {
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if (!copts.servernames.length) {
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console.log('copts.httpSetupServer', copts.httpSetupServer);
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copts.httpSetupServer.emit('connection', conn);
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return;
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}
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service = 'http';
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// TODO make https redirect configurable
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// /^\/\.well-known\/acme-challenge\//.test(str)
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if (/well-known/.test(str)) {
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// HTTP
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if (Devices.exist(copts.deviceLists, servername)) {
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pipeWs(servername, service, conn, Devices.next(copts.deviceLists, servername));
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return;
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}
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copts.handleHttp(servername, conn);
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}
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else {
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// redirect to https
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copts.handleInsecureHttp(servername, conn);
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}
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return;
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}
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}
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console.error("Got unexpected connection", str);
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conn.write(JSON.stringify({ error: {
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message: "not sure what you were trying to do there..."
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, code: 'E_INVALID_PROTOCOL' }
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}));
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conn.end();
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});
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conn.on('error', function (err) {
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console.error('[error] tcp socket raw TODO forward and close');
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console.error(err);
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});
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};
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};
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