Browser version - Self-hosted proxy (server/) that serves the web build and bridges WebSocket connections to Mumble servers over TLS, with a server allowlist or allow-any mode - WebSocket transport and a browser platform layer; identities live in the browser - npm run build:web, dev:web, proxy and test:e2e:web; proxy unit tests Interface - Toolbar next to mute and deafen: description editor, settings, expand or collapse all - Channels with a description show a marker; resting on the row previews it - Collapse all keeps channels with people open - Hints (title tooltips) can be switched on in a new Accessibility settings tab - New identities can set the username suggested when connecting - Own user information tells the client address from the one the server sees Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
79 lines
3.8 KiB
TypeScript
79 lines
3.8 KiB
TypeScript
import tls from 'node:tls';
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import net from 'node:net';
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import { describeCert, type CertDetails } from './certs.ts';
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export interface TlsHandlers {
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onSecure(info: { fingerprint: string; authorized: boolean; authError: string | null; chain: CertDetails[]; address: string; port: number }): void;
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onData(chunk: Uint8Array): void;
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onClose(reason: string): void;
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}
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// Opens a TLS connection to a Mumble server. Most servers use self-signed certificates,
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// so verification is left to the caller (trust on first use via the sha256 fingerprint).
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export interface TlsOptions {
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// Custom DNS resolution (the web proxy uses it to refuse private addresses)
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lookup?: net.LookupFunction;
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// Announce this client address with a PROXY protocol v1 line before TLS starts, for a
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// receiver such as go-mmproxy that passes it on to a server without PROXY support
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proxyClient?: string;
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}
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// PROXY protocol v1 line. Source and destination must be the same family; an IPv4 client is
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// written as a mapped address towards an IPv6 destination, anything else is announced as unknown.
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export function proxyLine(client: string, clientPort: number, dest: string, destPort: number): string {
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const d = dest.replace(/^::ffff:(\d+\.\d+\.\d+\.\d+)$/i, '$1');
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const c = client.replace(/^::ffff:(\d+\.\d+\.\d+\.\d+)$/i, '$1');
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if (net.isIPv4(c) && net.isIPv4(d)) return `PROXY TCP4 ${c} ${d} ${clientPort} ${destPort}\r\n`;
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if (net.isIPv6(d) && net.isIP(c)) return `PROXY TCP6 ${net.isIPv4(c) ? `::ffff:${c}` : c} ${d} ${clientPort} ${destPort}\r\n`;
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return 'PROXY UNKNOWN\r\n';
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}
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export function openTls(host: string, port: number, cert: string, key: string, h: TlsHandlers, opts: TlsOptions = {}) {
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let closeReason = 'Connection closed';
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const servername = /^[\d.:]+$/.test(host) ? undefined : host;
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let socket: tls.TLSSocket;
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if (opts.proxyClient) {
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// The PROXY line goes first, in the clear; TLS then runs over the same connection
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const raw = net.connect({ host, port, lookup: opts.lookup });
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raw.once('connect', () => raw.write(proxyLine(opts.proxyClient!, raw.localPort ?? 0, raw.remoteAddress ?? '', raw.remotePort ?? port)));
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raw.on('error', (e: Error) => { closeReason = e.message; socket.destroy(); });
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socket = tls.connect({ socket: raw, cert, key, rejectUnauthorized: false, servername });
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} else {
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socket = tls.connect({ host, port, cert, key, lookup: opts.lookup, rejectUnauthorized: false, servername });
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}
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socket.setNoDelay(true);
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socket.setKeepAlive(true, 30000);
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socket.setTimeout(20000, () => {
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closeReason = 'Connection timed out';
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socket.destroy();
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});
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socket.on('secureConnect', () => {
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socket.setTimeout(0);
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// Leaf first, then the issuers the server sent (the root links to itself)
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const chain: CertDetails[] = [];
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let cur = socket.getPeerCertificate(true) as tls.DetailedPeerCertificate | undefined;
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const seen = new Set<string>();
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while (cur?.raw && !seen.has(cur.fingerprint256) && chain.length < 8) {
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seen.add(cur.fingerprint256);
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chain.push(describeCert(cur.raw));
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cur = cur.issuerCertificate;
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}
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h.onSecure({
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chain,
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// The server's actual IP, so UDP voice goes to the same machine as the TCP connection
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address: socket.remoteAddress ?? host,
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port: socket.remotePort ?? port,
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fingerprint: chain[0]?.fingerprint256 ?? '',
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authorized: socket.authorized,
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authError: socket.authorizationError ? String(socket.authorizationError) : null
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});
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});
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socket.on('data', (chunk: Buffer) => h.onData(new Uint8Array(chunk)));
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socket.on('error', (e: Error) => { closeReason = e.message; });
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socket.on('close', () => h.onClose(closeReason));
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return {
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send(bytes: Uint8Array) { if (!socket.destroyed) socket.write(bytes); },
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close() { closeReason = 'Disconnected'; socket.destroy(); }
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};
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}
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