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https://github.com/denoland/deno.git
synced 2024-11-21 15:04:11 -05:00
feat: startTLS (#4773)
This commit is contained in:
parent
10469ec279
commit
47617e60d5
9 changed files with 222 additions and 12 deletions
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@ -106,7 +106,7 @@ export { resources, close } from "./ops/resources.ts";
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export { signal, signals, Signal, SignalStream } from "./signals.ts";
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export { FileInfo, statSync, lstatSync, stat, lstat } from "./ops/fs/stat.ts";
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export { symlinkSync, symlink } from "./ops/fs/symlink.ts";
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export { connectTLS, listenTLS } from "./tls.ts";
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export { connectTLS, listenTLS, startTLS } from "./tls.ts";
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export { truncateSync, truncate } from "./ops/fs/truncate.ts";
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export { isatty, setRaw } from "./ops/tty.ts";
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export { umask } from "./ops/fs/umask.ts";
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27
cli/js/lib.deno.ns.d.ts
vendored
27
cli/js/lib.deno.ns.d.ts
vendored
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@ -2038,6 +2038,33 @@ declare namespace Deno {
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*/
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export function connectTLS(options: ConnectTLSOptions): Promise<Conn>;
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export interface StartTLSOptions {
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/** A literal IP address or host name that can be resolved to an IP address.
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* If not specified, defaults to `127.0.0.1`. */
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hostname?: string;
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/** Server certificate file. */
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certFile?: string;
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}
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/** **UNSTABLE**: new API, yet to be vetted.
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*
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* Start TLS handshake from an existing connection using
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* an optional cert file, hostname (default is "127.0.0.1"). The
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* cert file is optional and if not included Mozilla's root certificates will
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* be used (see also https://github.com/ctz/webpki-roots for specifics)
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* Using this function requires that the other end of the connection is
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* prepared for TLS handshake.
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*
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* const conn = await Deno.connect({ port: 80, hostname: "127.0.0.1" });
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* const tlsConn = await Deno.startTLS(conn, { certFile: "./certs/my_custom_root_CA.pem", hostname: "127.0.0.1", port: 80 });
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*
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* Requires `allow-net` permission.
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*/
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export function startTLS(
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conn: Conn,
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options?: StartTLSOptions
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): Promise<Conn>;
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/** **UNSTABLE**: not sure if broken or not */
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export interface Metrics {
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opsDispatched: number;
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@ -8,7 +8,7 @@ export interface ConnectTLSRequest {
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certFile?: string;
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}
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interface ConnectTLSResponse {
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interface EstablishTLSResponse {
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rid: number;
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localAddr: {
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hostname: string;
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@ -24,7 +24,7 @@ interface ConnectTLSResponse {
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export function connectTLS(
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args: ConnectTLSRequest
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): Promise<ConnectTLSResponse> {
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): Promise<EstablishTLSResponse> {
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return sendAsync("op_connect_tls", args);
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}
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@ -66,3 +66,13 @@ interface ListenTLSResponse {
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export function listenTLS(args: ListenTLSRequest): ListenTLSResponse {
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return sendSync("op_listen_tls", args);
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}
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export interface StartTLSRequest {
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rid: number;
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hostname: string;
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certFile?: string;
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}
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export function startTLS(args: StartTLSRequest): Promise<EstablishTLSResponse> {
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return sendAsync("op_start_tls", args);
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}
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@ -209,3 +209,54 @@ unitTest(
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await resolvable;
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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 | Deno.EOF = (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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@ -57,3 +57,20 @@ export function listenTLS({
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});
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return new TLSListenerImpl(res.rid, res.localAddr);
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}
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interface StartTLSOptions {
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hostname?: string;
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certFile?: string;
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}
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export async function startTLS(
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conn: Conn,
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{ hostname = "127.0.0.1", certFile = undefined }: StartTLSOptions = {}
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): Promise<Conn> {
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const res = await tlsOps.startTLS({
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rid: conn.rid,
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hostname,
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certFile,
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});
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return new ConnImpl(res.rid, res.remoteAddr!, res.localAddr!);
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}
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@ -157,7 +157,7 @@ impl StreamResourceHolder {
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pub enum StreamResource {
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Stdin(tokio::io::Stdin, TTYMetadata),
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FsFile(Option<(tokio::fs::File, FileMetadata)>),
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TcpStream(tokio::net::TcpStream),
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TcpStream(Option<tokio::net::TcpStream>),
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#[cfg(not(windows))]
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UnixStream(tokio::net::UnixStream),
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ServerTlsStream(Box<ServerTlsStream<TcpStream>>),
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@ -195,7 +195,7 @@ impl DenoAsyncRead for StreamResource {
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FsFile(Some((f, _))) => f,
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FsFile(None) => return Poll::Ready(Err(OpError::resource_unavailable())),
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Stdin(f, _) => f,
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TcpStream(f) => f,
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TcpStream(Some(f)) => f,
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#[cfg(not(windows))]
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UnixStream(f) => f,
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ClientTlsStream(f) => f,
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@ -297,7 +297,7 @@ impl DenoAsyncWrite for StreamResource {
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let f: &mut dyn UnpinAsyncWrite = match self {
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FsFile(Some((f, _))) => f,
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FsFile(None) => return Poll::Pending,
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TcpStream(f) => f,
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TcpStream(Some(f)) => f,
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#[cfg(not(windows))]
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UnixStream(f) => f,
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ClientTlsStream(f) => f,
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@ -315,7 +315,7 @@ impl DenoAsyncWrite for StreamResource {
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let f: &mut dyn UnpinAsyncWrite = match self {
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FsFile(Some((f, _))) => f,
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FsFile(None) => return Poll::Pending,
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TcpStream(f) => f,
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TcpStream(Some(f)) => f,
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#[cfg(not(windows))]
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UnixStream(f) => f,
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ClientTlsStream(f) => f,
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@ -81,9 +81,9 @@ fn accept_tcp(
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let mut state = state_.borrow_mut();
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let rid = state.resource_table.add(
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"tcpStream",
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Box::new(StreamResourceHolder::new(StreamResource::TcpStream(
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Box::new(StreamResourceHolder::new(StreamResource::TcpStream(Some(
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tcp_stream,
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))),
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)))),
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);
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Ok(json!({
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"rid": rid,
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@ -280,9 +280,9 @@ fn op_connect(
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let mut state = state_.borrow_mut();
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let rid = state.resource_table.add(
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"tcpStream",
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Box::new(StreamResourceHolder::new(StreamResource::TcpStream(
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Box::new(StreamResourceHolder::new(StreamResource::TcpStream(Some(
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tcp_stream,
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))),
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)))),
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);
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Ok(json!({
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"rid": rid,
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@ -367,7 +367,7 @@ fn op_shutdown(
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.get_mut::<StreamResourceHolder>(rid)
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.ok_or_else(OpError::bad_resource_id)?;
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match resource_holder.resource {
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StreamResource::TcpStream(ref mut stream) => {
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StreamResource::TcpStream(Some(ref mut stream)) => {
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TcpStream::shutdown(stream, shutdown_mode).map_err(OpError::from)?;
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}
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#[cfg(unix)]
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@ -28,6 +28,7 @@ use tokio_rustls::{
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use webpki::DNSNameRef;
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pub fn init(i: &mut Isolate, s: &State) {
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i.register_op("op_start_tls", s.stateful_json_op(op_start_tls));
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i.register_op("op_connect_tls", s.stateful_json_op(op_connect_tls));
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i.register_op("op_listen_tls", s.stateful_json_op(op_listen_tls));
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i.register_op("op_accept_tls", s.stateful_json_op(op_accept_tls));
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@ -42,6 +43,85 @@ struct ConnectTLSArgs {
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cert_file: Option<String>,
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}
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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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struct StartTLSArgs {
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rid: u32,
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cert_file: Option<String>,
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hostname: String,
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}
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pub fn op_start_tls(
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state: &State,
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args: Value,
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_zero_copy: Option<ZeroCopyBuf>,
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) -> Result<JsonOp, OpError> {
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let args: StartTLSArgs = serde_json::from_value(args)?;
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let rid = args.rid as u32;
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let cert_file = args.cert_file.clone();
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let state_ = state.clone();
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let mut domain = args.hostname;
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if domain.is_empty() {
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domain.push_str("localhost");
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}
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let op = async move {
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let mut state = state_.borrow_mut();
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let mut resource_holder =
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match state.resource_table.remove::<StreamResourceHolder>(rid) {
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Some(resource) => *resource,
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None => return Err(OpError::bad_resource_id()),
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};
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if let StreamResource::TcpStream(ref mut tcp_stream) =
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resource_holder.resource
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{
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let tcp_stream = tcp_stream.take().unwrap();
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let local_addr = tcp_stream.local_addr()?;
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let remote_addr = tcp_stream.peer_addr()?;
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let mut config = ClientConfig::new();
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config
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.root_store
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.add_server_trust_anchors(&webpki_roots::TLS_SERVER_ROOTS);
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if let Some(path) = cert_file {
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let key_file = File::open(path)?;
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let reader = &mut BufReader::new(key_file);
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config.root_store.add_pem_file(reader).unwrap();
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}
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let tls_connector = TlsConnector::from(Arc::new(config));
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let dnsname =
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DNSNameRef::try_from_ascii_str(&domain).expect("Invalid DNS lookup");
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let tls_stream = tls_connector.connect(dnsname, tcp_stream).await?;
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let rid = state.resource_table.add(
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"clientTlsStream",
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Box::new(StreamResourceHolder::new(StreamResource::ClientTlsStream(
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Box::new(tls_stream),
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))),
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);
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Ok(json!({
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"rid": rid,
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"localAddr": {
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"hostname": local_addr.ip().to_string(),
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"port": local_addr.port(),
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"transport": "tcp",
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},
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"remoteAddr": {
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"hostname": remote_addr.ip().to_string(),
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"port": remote_addr.port(),
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"transport": "tcp",
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}
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}))
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} else {
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Err(OpError::bad_resource_id())
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}
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};
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Ok(JsonOp::Async(op.boxed_local()))
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}
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pub fn op_connect_tls(
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state: &State,
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args: Value,
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@ -72,6 +72,17 @@ impl ResourceTable {
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pub fn close(&mut self, rid: ResourceId) -> Option<()> {
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self.map.remove(&rid).map(|(_name, _resource)| ())
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}
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pub fn remove<T: Resource>(&mut self, rid: ResourceId) -> Option<Box<T>> {
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if let Some((_name, resource)) = self.map.remove(&rid) {
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let res = match resource.downcast::<T>() {
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Ok(res) => Some(res),
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Err(_e) => None,
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};
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return res;
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}
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None
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}
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}
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/// Abstract type representing resource in Deno.
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@ -138,4 +149,18 @@ mod tests {
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table.close(rid2);
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assert_eq!(table.map.len(), 0);
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}
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#[test]
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fn test_take_from_resource_table() {
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let mut table = ResourceTable::default();
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let rid1 = table.add("fake1", Box::new(FakeResource::new(1)));
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let rid2 = table.add("fake2", Box::new(FakeResource::new(2)));
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assert_eq!(table.map.len(), 2);
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let res1 = table.remove::<FakeResource>(rid1);
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assert_eq!(table.map.len(), 1);
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assert!(res1.is_some());
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let res2 = table.remove::<FakeResource>(rid2);
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assert_eq!(table.map.len(), 0);
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assert!(res2.is_some());
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}
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}
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