mirror of
https://github.com/denoland/deno.git
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396 lines
10 KiB
TypeScript
396 lines
10 KiB
TypeScript
// Copyright 2018-2021 the Deno authors. All rights reserved. MIT license.
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import {
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assert,
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assertEquals,
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assertStrictEquals,
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assertThrows,
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assertThrowsAsync,
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deferred,
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unitTest,
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} from "./test_util.ts";
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import { BufReader, BufWriter } from "../../../test_util/std/io/bufio.ts";
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import { TextProtoReader } from "../../../test_util/std/textproto/mod.ts";
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const encoder = new TextEncoder();
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const decoder = new TextDecoder();
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unitTest(async function connectTLSNoPerm(): Promise<void> {
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await assertThrowsAsync(async () => {
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await Deno.connectTls({ hostname: "github.com", port: 443 });
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}, Deno.errors.PermissionDenied);
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});
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unitTest(
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{ perms: { read: true, net: true } },
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async function connectTLSInvalidHost(): Promise<void> {
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const listener = await Deno.listenTls({
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hostname: "localhost",
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port: 3567,
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certFile: "cli/tests/tls/localhost.crt",
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keyFile: "cli/tests/tls/localhost.key",
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});
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await assertThrowsAsync(async () => {
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await Deno.connectTls({ hostname: "127.0.0.1", port: 3567 });
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}, Error);
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listener.close();
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},
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);
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unitTest(async function connectTLSCertFileNoReadPerm(): Promise<void> {
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await assertThrowsAsync(async () => {
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await Deno.connectTls({
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hostname: "github.com",
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port: 443,
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certFile: "cli/tests/tls/RootCA.crt",
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});
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}, Deno.errors.PermissionDenied);
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});
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unitTest(
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{ perms: { read: true, net: true } },
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function listenTLSNonExistentCertKeyFiles(): void {
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const options = {
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hostname: "localhost",
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port: 3500,
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certFile: "cli/tests/tls/localhost.crt",
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keyFile: "cli/tests/tls/localhost.key",
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};
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assertThrows(() => {
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Deno.listenTls({
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...options,
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certFile: "./non/existent/file",
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});
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}, Deno.errors.NotFound);
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assertThrows(() => {
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Deno.listenTls({
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...options,
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keyFile: "./non/existent/file",
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});
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}, Deno.errors.NotFound);
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},
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);
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unitTest({ perms: { net: true } }, function listenTLSNoReadPerm(): void {
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assertThrows(() => {
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Deno.listenTls({
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hostname: "localhost",
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port: 3500,
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certFile: "cli/tests/tls/localhost.crt",
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keyFile: "cli/tests/tls/localhost.key",
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});
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}, Deno.errors.PermissionDenied);
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});
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unitTest(
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{
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perms: { read: true, write: true, net: true },
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},
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function listenTLSEmptyKeyFile(): void {
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const options = {
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hostname: "localhost",
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port: 3500,
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certFile: "cli/tests/tls/localhost.crt",
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keyFile: "cli/tests/tls/localhost.key",
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};
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const testDir = Deno.makeTempDirSync();
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const keyFilename = testDir + "/key.pem";
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Deno.writeFileSync(keyFilename, new Uint8Array([]), {
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mode: 0o666,
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});
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assertThrows(() => {
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Deno.listenTls({
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...options,
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keyFile: keyFilename,
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});
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}, Error);
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},
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);
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unitTest(
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{ perms: { read: true, write: true, net: true } },
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function listenTLSEmptyCertFile(): void {
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const options = {
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hostname: "localhost",
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port: 3500,
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certFile: "cli/tests/tls/localhost.crt",
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keyFile: "cli/tests/tls/localhost.key",
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};
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const testDir = Deno.makeTempDirSync();
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const certFilename = testDir + "/cert.crt";
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Deno.writeFileSync(certFilename, new Uint8Array([]), {
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mode: 0o666,
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});
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assertThrows(() => {
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Deno.listenTls({
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...options,
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certFile: certFilename,
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});
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}, Error);
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},
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);
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unitTest(
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{ perms: { read: true, net: true } },
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async function dialAndListenTLS(): Promise<void> {
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const resolvable = deferred();
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const hostname = "localhost";
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const port = 3500;
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const listener = Deno.listenTls({
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hostname,
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port,
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certFile: "cli/tests/tls/localhost.crt",
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keyFile: "cli/tests/tls/localhost.key",
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});
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const response = encoder.encode(
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"HTTP/1.1 200 OK\r\nContent-Length: 12\r\n\r\nHello World\n",
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);
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listener.accept().then(
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async (conn): Promise<void> => {
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assert(conn.remoteAddr != null);
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assert(conn.localAddr != null);
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await conn.write(response);
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// TODO(bartlomieju): this might be a bug
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setTimeout(() => {
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conn.close();
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resolvable.resolve();
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}, 0);
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},
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);
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const conn = await Deno.connectTls({
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hostname,
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port,
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certFile: "cli/tests/tls/RootCA.pem",
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});
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assert(conn.rid > 0);
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const w = new BufWriter(conn);
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const r = new BufReader(conn);
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const body = `GET / HTTP/1.1\r\nHost: ${hostname}:${port}\r\n\r\n`;
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const writeResult = await w.write(encoder.encode(body));
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assertEquals(body.length, writeResult);
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await w.flush();
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const tpr = new TextProtoReader(r);
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const statusLine = await tpr.readLine();
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assert(statusLine !== null, `line must be read: ${String(statusLine)}`);
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const m = statusLine.match(/^(.+?) (.+?) (.+?)$/);
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assert(m !== null, "must be matched");
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const [_, proto, status, ok] = m;
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assertEquals(proto, "HTTP/1.1");
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assertEquals(status, "200");
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assertEquals(ok, "OK");
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const headers = await tpr.readMIMEHeader();
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assert(headers !== null);
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const contentLength = parseInt(headers.get("content-length")!);
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const bodyBuf = new Uint8Array(contentLength);
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await r.readFull(bodyBuf);
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assertEquals(decoder.decode(bodyBuf), "Hello World\n");
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conn.close();
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listener.close();
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await resolvable;
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},
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);
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async function tlsPair(port: number): Promise<[Deno.Conn, Deno.Conn]> {
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const listener = Deno.listenTls({
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hostname: "localhost",
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port,
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certFile: "cli/tests/tls/localhost.crt",
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keyFile: "cli/tests/tls/localhost.key",
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});
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const acceptPromise = listener.accept();
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const connectPromise = Deno.connectTls({
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hostname: "localhost",
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port,
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certFile: "cli/tests/tls/RootCA.pem",
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});
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const connections = await Promise.all([acceptPromise, connectPromise]);
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listener.close();
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return connections;
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}
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async function sendCloseWrite(conn: Deno.Conn): Promise<void> {
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const buf = new Uint8Array(1024);
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let n: number | null;
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// Send 1.
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n = await conn.write(new Uint8Array([1]));
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assertStrictEquals(n, 1);
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// Send EOF.
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await conn.closeWrite();
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// Receive 2.
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n = await conn.read(buf);
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assertStrictEquals(n, 1);
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assertStrictEquals(buf[0], 2);
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conn.close();
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}
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async function receiveCloseWrite(conn: Deno.Conn): Promise<void> {
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const buf = new Uint8Array(1024);
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let n: number | null;
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// Receive 1.
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n = await conn.read(buf);
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assertStrictEquals(n, 1);
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assertStrictEquals(buf[0], 1);
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// Receive EOF.
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n = await conn.read(buf);
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assertStrictEquals(n, null);
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// Send 2.
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n = await conn.write(new Uint8Array([2]));
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assertStrictEquals(n, 1);
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conn.close();
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}
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async function sendAlotReceiveNothing(conn: Deno.Conn): Promise<void> {
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// Start receive op.
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const readBuf = new Uint8Array(1024);
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const readPromise = conn.read(readBuf);
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// Send 1 MB of data.
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const writeBuf = new Uint8Array(1 << 20);
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writeBuf.fill(42);
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await conn.write(writeBuf);
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// Send EOF.
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await conn.closeWrite();
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// Close the connection.
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conn.close();
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// Read op should be canceled.
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await assertThrowsAsync(
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async () => await readPromise,
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Deno.errors.Interrupted,
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);
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}
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async function receiveAlotSendNothing(conn: Deno.Conn): Promise<void> {
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const readBuf = new Uint8Array(1024);
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let n: number | null;
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// Receive 1 MB of data.
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for (let nread = 0; nread < 1 << 20; nread += n!) {
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n = await conn.read(readBuf);
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assertStrictEquals(typeof n, "number");
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assert(n! > 0);
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assertStrictEquals(readBuf[0], 42);
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}
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// Close the connection, without sending anything at all.
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conn.close();
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}
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unitTest(
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{ perms: { read: true, net: true } },
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async function tlsServerStreamHalfClose(): Promise<void> {
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const [serverConn, clientConn] = await tlsPair(3501);
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await Promise.all([
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sendCloseWrite(serverConn),
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receiveCloseWrite(clientConn),
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]);
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},
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);
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unitTest(
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{ perms: { read: true, net: true } },
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async function tlsClientStreamHalfClose(): Promise<void> {
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const [serverConn, clientConn] = await tlsPair(3502);
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await Promise.all([
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sendCloseWrite(clientConn),
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receiveCloseWrite(serverConn),
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]);
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},
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);
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unitTest(
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{ perms: { read: true, net: true } },
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async function tlsServerStreamCancelRead(): Promise<void> {
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const [serverConn, clientConn] = await tlsPair(3503);
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await Promise.all([
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sendAlotReceiveNothing(serverConn),
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receiveAlotSendNothing(clientConn),
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]);
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},
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);
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unitTest(
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{ perms: { read: true, net: true } },
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async function tlsClientStreamCancelRead(): Promise<void> {
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const [serverConn, clientConn] = await tlsPair(3504);
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await Promise.all([
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sendAlotReceiveNothing(clientConn),
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receiveAlotSendNothing(serverConn),
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]);
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},
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);
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unitTest(
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{ perms: { read: true, net: true } },
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async function startTls(): Promise<void> {
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const hostname = "smtp.gmail.com";
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const port = 587;
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const encoder = new TextEncoder();
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let conn = await Deno.connect({
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hostname,
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port,
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});
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let writer = new BufWriter(conn);
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let reader = new TextProtoReader(new BufReader(conn));
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let line: string | null = (await reader.readLine()) as string;
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assert(line.startsWith("220"));
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await writer.write(encoder.encode(`EHLO ${hostname}\r\n`));
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await writer.flush();
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while ((line = (await reader.readLine()) as string)) {
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assert(line.startsWith("250"));
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if (line.startsWith("250 ")) break;
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}
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await writer.write(encoder.encode("STARTTLS\r\n"));
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await writer.flush();
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line = await reader.readLine();
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// Received the message that the server is ready to establish TLS
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assertEquals(line, "220 2.0.0 Ready to start TLS");
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conn = await Deno.startTls(conn, { hostname });
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writer = new BufWriter(conn);
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reader = new TextProtoReader(new BufReader(conn));
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// After that use TLS communication again
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await writer.write(encoder.encode(`EHLO ${hostname}\r\n`));
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await writer.flush();
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while ((line = (await reader.readLine()) as string)) {
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assert(line.startsWith("250"));
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if (line.startsWith("250 ")) break;
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}
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conn.close();
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},
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);
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