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684377c92c
Precursor to #23236 This implements the SNI features, but uses private symbols to avoid exposing the functionality at this time. Note that to properly test this feature, we need to add a way for `connectTls` to specify a hostname. This is something that should be pushed into that API at a later time as well. ```ts Deno.test( { permissions: { net: true, read: true } }, async function listenResolver() { let sniRequests = []; const listener = Deno.listenTls({ hostname: "localhost", port: 0, [resolverSymbol]: (sni: string) => { sniRequests.push(sni); return { cert, key, }; }, }); { const conn = await Deno.connectTls({ hostname: "localhost", [serverNameSymbol]: "server-1", port: listener.addr.port, }); const [_handshake, serverConn] = await Promise.all([ conn.handshake(), listener.accept(), ]); conn.close(); serverConn.close(); } { const conn = await Deno.connectTls({ hostname: "localhost", [serverNameSymbol]: "server-2", port: listener.addr.port, }); const [_handshake, serverConn] = await Promise.all([ conn.handshake(), listener.accept(), ]); conn.close(); serverConn.close(); } assertEquals(sniRequests, ["server-1", "server-2"]); listener.close(); }, ); ``` --------- Signed-off-by: Matt Mastracci <matthew@mastracci.com>
334 lines
8.8 KiB
JavaScript
334 lines
8.8 KiB
JavaScript
// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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import { core, internals, primordials } from "ext:core/mod.js";
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const { internalRidSymbol } = core;
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import {
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op_net_accept_tls,
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op_net_connect_tls,
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op_net_listen_tls,
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op_tls_cert_resolver_create,
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op_tls_cert_resolver_poll,
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op_tls_cert_resolver_resolve,
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op_tls_cert_resolver_resolve_error,
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op_tls_handshake,
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op_tls_key_null,
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op_tls_key_static,
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op_tls_key_static_from_file,
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op_tls_start,
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} from "ext:core/ops";
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const {
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Number,
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ObjectDefineProperty,
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TypeError,
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SymbolFor,
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} = primordials;
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import { Conn, Listener } from "ext:deno_net/01_net.js";
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class TlsConn extends Conn {
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#rid = 0;
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constructor(rid, remoteAddr, localAddr) {
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super(rid, remoteAddr, localAddr);
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ObjectDefineProperty(this, internalRidSymbol, {
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enumerable: false,
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value: rid,
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});
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this.#rid = rid;
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}
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get rid() {
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internals.warnOnDeprecatedApi(
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"Deno.TlsConn.rid",
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new Error().stack,
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"Use `Deno.TlsConn` instance methods instead.",
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);
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return this.#rid;
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}
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handshake() {
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return op_tls_handshake(this.#rid);
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}
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}
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async function connectTls({
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port,
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hostname = "127.0.0.1",
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transport = "tcp",
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caCerts = [],
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alpnProtocols = undefined,
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keyFormat = undefined,
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cert = undefined,
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certFile = undefined,
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certChain = undefined,
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key = undefined,
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keyFile = undefined,
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privateKey = undefined,
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}) {
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if (transport !== "tcp") {
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throw new TypeError(`Unsupported transport: '${transport}'`);
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}
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let deprecatedCertFile = undefined;
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// Deno.connectTls has an irregular option where you can just pass `certFile` and
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// not `keyFile`. In this case it's used for `caCerts` rather than the client key.
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if (certFile !== undefined && keyFile === undefined) {
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internals.warnOnDeprecatedApi(
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"Deno.ConnectTlsOptions.certFile",
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new Error().stack,
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"Pass the cert file's contents to the `Deno.ConnectTlsOptions.caCerts` option instead.",
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);
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deprecatedCertFile = certFile;
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certFile = undefined;
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}
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const keyPair = loadTlsKeyPair("Deno.connectTls", {
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keyFormat,
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cert,
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certFile,
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certChain,
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key,
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keyFile,
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privateKey,
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});
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// TODO(mmastrac): We only expose this feature via symbol for now. This should actually be a feature
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// in Deno.connectTls, however.
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const serverName = arguments[0][serverNameSymbol] ?? null;
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const { 0: rid, 1: localAddr, 2: remoteAddr } = await op_net_connect_tls(
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{ hostname, port },
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{ certFile: deprecatedCertFile, caCerts, alpnProtocols, serverName },
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keyPair,
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);
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localAddr.transport = "tcp";
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remoteAddr.transport = "tcp";
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return new TlsConn(rid, remoteAddr, localAddr);
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}
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class TlsListener extends Listener {
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#rid = 0;
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constructor(rid, addr) {
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super(rid, addr);
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ObjectDefineProperty(this, internalRidSymbol, {
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enumerable: false,
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value: rid,
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});
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this.#rid = rid;
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}
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get rid() {
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internals.warnOnDeprecatedApi(
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"Deno.TlsListener.rid",
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new Error().stack,
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"Use `Deno.TlsListener` instance methods instead.",
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);
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return this.#rid;
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}
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async accept() {
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const { 0: rid, 1: localAddr, 2: remoteAddr } = await op_net_accept_tls(
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this.#rid,
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);
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localAddr.transport = "tcp";
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remoteAddr.transport = "tcp";
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return new TlsConn(rid, remoteAddr, localAddr);
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}
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}
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/**
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* Returns true if this object has the shape of one of the certified key material
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* interfaces.
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*/
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function hasTlsKeyPairOptions(options) {
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// TODO(mmastrac): remove this temporary symbol when the API lands
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if (options[resolverSymbol] !== undefined) {
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return true;
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}
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return (options.cert !== undefined || options.key !== undefined ||
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options.certFile !== undefined ||
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options.keyFile !== undefined || options.privateKey !== undefined ||
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options.certChain !== undefined);
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}
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/**
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* Loads a TLS keypair from one of the various options. If no key material is provided,
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* returns a special Null keypair.
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*/
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function loadTlsKeyPair(api, {
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keyFormat,
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cert,
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certFile,
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certChain,
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key,
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keyFile,
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privateKey,
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}) {
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if (internals.future) {
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certFile = undefined;
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certChain = undefined;
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keyFile = undefined;
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privateKey = undefined;
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}
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// TODO(mmastrac): remove this temporary symbol when the API lands
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if (arguments[1][resolverSymbol] !== undefined) {
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return createTlsKeyResolver(arguments[1][resolverSymbol]);
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}
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// Check for "pem" format
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if (keyFormat !== undefined && keyFormat !== "pem") {
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throw new TypeError('If `keyFormat` is specified, it must be "pem"');
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}
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function exclusive(a1, a1v, a2, a2v) {
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if (a1v !== undefined && a2v !== undefined) {
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throw new TypeError(
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`Cannot specify both \`${a1}\` and \`${a2}\` for \`${api}\`.`,
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);
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}
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}
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// Ensure that only one pair is valid
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exclusive("certChain", certChain, "cert", cert);
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exclusive("certChain", certChain, "certFile", certFile);
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exclusive("key", key, "keyFile", keyFile);
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exclusive("key", key, "privateKey", privateKey);
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function both(a1, a1v, a2, a2v) {
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if (a1v !== undefined && a2v === undefined) {
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throw new TypeError(
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`If \`${a1}\` is specified, \`${a2}\` must be specified as well for \`${api}\`.`,
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);
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}
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if (a1v === undefined && a2v !== undefined) {
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throw new TypeError(
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`If \`${a2}\` is specified, \`${a1}\` must be specified as well for \`${api}\`.`,
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);
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}
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}
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// Pick one pair of cert/key, certFile/keyFile or certChain/privateKey
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both("cert", cert, "key", key);
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both("certFile", certFile, "keyFile", keyFile);
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both("certChain", certChain, "privateKey", privateKey);
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if (certFile !== undefined) {
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internals.warnOnDeprecatedApi(
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"Deno.TlsCertifiedKeyOptions.keyFile",
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new Error().stack,
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"Pass the key file's contents to the `Deno.TlsCertifiedKeyPem.key` option instead.",
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);
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internals.warnOnDeprecatedApi(
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"Deno.TlsCertifiedKeyOptions.certFile",
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new Error().stack,
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"Pass the cert file's contents to the `Deno.TlsCertifiedKeyPem.cert` option instead.",
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);
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return op_tls_key_static_from_file(api, certFile, keyFile);
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} else if (certChain !== undefined) {
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if (api !== "Deno.connectTls") {
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throw new TypeError(
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`Invalid options 'certChain' and 'privateKey' for ${api}`,
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);
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}
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internals.warnOnDeprecatedApi(
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"Deno.TlsCertifiedKeyOptions.privateKey",
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new Error().stack,
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"Use the `Deno.TlsCertifiedKeyPem.key` option instead.",
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);
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internals.warnOnDeprecatedApi(
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"Deno.TlsCertifiedKeyOptions.certChain",
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new Error().stack,
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"Use the `Deno.TlsCertifiedKeyPem.cert` option instead.",
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);
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return op_tls_key_static(certChain, privateKey);
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} else if (cert !== undefined) {
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return op_tls_key_static(cert, key);
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} else {
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return op_tls_key_null();
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}
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}
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function listenTls({
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port,
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hostname = "0.0.0.0",
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transport = "tcp",
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alpnProtocols = undefined,
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reusePort = false,
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}) {
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if (transport !== "tcp") {
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throw new TypeError(`Unsupported transport: '${transport}'`);
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}
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if (!hasTlsKeyPairOptions(arguments[0])) {
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throw new TypeError(
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"A key and certificate are required for `Deno.listenTls`",
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);
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}
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const keyPair = loadTlsKeyPair("Deno.listenTls", arguments[0]);
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const { 0: rid, 1: localAddr } = op_net_listen_tls(
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{ hostname, port: Number(port) },
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{ alpnProtocols, reusePort },
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keyPair,
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);
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return new TlsListener(rid, localAddr);
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}
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// deno-lint-ignore require-await
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async function startTls(
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conn,
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{
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hostname = "127.0.0.1",
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caCerts = [],
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alpnProtocols = undefined,
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} = {},
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) {
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const { 0: rid, 1: localAddr, 2: remoteAddr } = op_tls_start({
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rid: conn[internalRidSymbol],
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hostname,
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caCerts,
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alpnProtocols,
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});
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return new TlsConn(rid, remoteAddr, localAddr);
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}
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const resolverSymbol = SymbolFor("unstableSniResolver");
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const serverNameSymbol = SymbolFor("unstableServerName");
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function createTlsKeyResolver(callback) {
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const { 0: resolver, 1: lookup } = op_tls_cert_resolver_create();
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(async () => {
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while (true) {
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const sni = await op_tls_cert_resolver_poll(lookup);
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if (typeof sni !== "string") {
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break;
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}
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try {
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const key = await callback(sni);
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if (!hasTlsKeyPairOptions(key)) {
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op_tls_cert_resolver_resolve_error(lookup, sni, "Invalid key");
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} else {
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const resolved = loadTlsKeyPair("Deno.listenTls", key);
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op_tls_cert_resolver_resolve(lookup, sni, resolved);
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}
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} catch (e) {
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op_tls_cert_resolver_resolve_error(lookup, sni, e.message);
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}
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}
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})();
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return resolver;
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}
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internals.resolverSymbol = resolverSymbol;
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internals.serverNameSymbol = serverNameSymbol;
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internals.createTlsKeyResolver = createTlsKeyResolver;
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export {
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connectTls,
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hasTlsKeyPairOptions,
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listenTls,
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loadTlsKeyPair,
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startTls,
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TlsConn,
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TlsListener,
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};
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