mirror of
https://github.com/zerotier/ZeroTierOne.git
synced 2025-01-17 02:10:07 +00:00
394 lines
12 KiB
Rust
394 lines
12 KiB
Rust
#![cfg(feature = "full")]
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#![cfg(all(windows))]
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use std::io;
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use std::mem;
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use std::os::windows::io::AsRawHandle;
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use std::time::Duration;
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use tokio::io::AsyncWriteExt;
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use tokio::net::windows::named_pipe::{ClientOptions, PipeMode, ServerOptions};
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use tokio::time;
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use winapi::shared::winerror;
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#[tokio::test]
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async fn test_named_pipe_client_drop() -> io::Result<()> {
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const PIPE_NAME: &str = r"\\.\pipe\test-named-pipe-client-drop";
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let mut server = ServerOptions::new().create(PIPE_NAME)?;
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assert_eq!(num_instances("test-named-pipe-client-drop")?, 1);
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let client = ClientOptions::new().open(PIPE_NAME)?;
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server.connect().await?;
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drop(client);
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// instance will be broken because client is gone
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match server.write_all(b"ping").await {
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Err(e) if e.raw_os_error() == Some(winerror::ERROR_NO_DATA as i32) => (),
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x => panic!("{:?}", x),
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}
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Ok(())
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}
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#[tokio::test]
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async fn test_named_pipe_single_client() -> io::Result<()> {
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use tokio::io::{AsyncBufReadExt as _, BufReader};
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const PIPE_NAME: &str = r"\\.\pipe\test-named-pipe-single-client";
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let server = ServerOptions::new().create(PIPE_NAME)?;
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let server = tokio::spawn(async move {
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// Note: we wait for a client to connect.
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server.connect().await?;
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let mut server = BufReader::new(server);
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let mut buf = String::new();
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server.read_line(&mut buf).await?;
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server.write_all(b"pong\n").await?;
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Ok::<_, io::Error>(buf)
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});
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let client = tokio::spawn(async move {
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let client = ClientOptions::new().open(PIPE_NAME)?;
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let mut client = BufReader::new(client);
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let mut buf = String::new();
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client.write_all(b"ping\n").await?;
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client.read_line(&mut buf).await?;
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Ok::<_, io::Error>(buf)
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});
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let (server, client) = tokio::try_join!(server, client)?;
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assert_eq!(server?, "ping\n");
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assert_eq!(client?, "pong\n");
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Ok(())
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}
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#[tokio::test]
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async fn test_named_pipe_multi_client() -> io::Result<()> {
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use tokio::io::{AsyncBufReadExt as _, BufReader};
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const PIPE_NAME: &str = r"\\.\pipe\test-named-pipe-multi-client";
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const N: usize = 10;
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// The first server needs to be constructed early so that clients can
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// be correctly connected. Otherwise calling .wait will cause the client to
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// error.
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let mut server = ServerOptions::new().create(PIPE_NAME)?;
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let server = tokio::spawn(async move {
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for _ in 0..N {
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// Wait for client to connect.
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server.connect().await?;
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let mut inner = BufReader::new(server);
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// Construct the next server to be connected before sending the one
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// we already have of onto a task. This ensures that the server
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// isn't closed (after it's done in the task) before a new one is
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// available. Otherwise the client might error with
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// `io::ErrorKind::NotFound`.
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server = ServerOptions::new().create(PIPE_NAME)?;
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let _ = tokio::spawn(async move {
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let mut buf = String::new();
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inner.read_line(&mut buf).await?;
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inner.write_all(b"pong\n").await?;
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inner.flush().await?;
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Ok::<_, io::Error>(())
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});
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}
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Ok::<_, io::Error>(())
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});
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let mut clients = Vec::new();
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for _ in 0..N {
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clients.push(tokio::spawn(async move {
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// This showcases a generic connect loop.
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//
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// We immediately try to create a client, if it's not found or the
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// pipe is busy we use the specialized wait function on the client
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// builder.
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let client = loop {
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match ClientOptions::new().open(PIPE_NAME) {
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Ok(client) => break client,
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Err(e) if e.raw_os_error() == Some(winerror::ERROR_PIPE_BUSY as i32) => (),
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Err(e) if e.kind() == io::ErrorKind::NotFound => (),
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Err(e) => return Err(e),
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}
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// Wait for a named pipe to become available.
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time::sleep(Duration::from_millis(10)).await;
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};
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let mut client = BufReader::new(client);
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let mut buf = String::new();
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client.write_all(b"ping\n").await?;
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client.flush().await?;
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client.read_line(&mut buf).await?;
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Ok::<_, io::Error>(buf)
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}));
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}
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for client in clients {
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let result = client.await?;
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assert_eq!(result?, "pong\n");
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}
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server.await??;
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Ok(())
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}
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#[tokio::test]
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async fn test_named_pipe_multi_client_ready() -> io::Result<()> {
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use tokio::io::Interest;
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const PIPE_NAME: &str = r"\\.\pipe\test-named-pipe-multi-client-ready";
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const N: usize = 10;
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// The first server needs to be constructed early so that clients can
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// be correctly connected. Otherwise calling .wait will cause the client to
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// error.
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let mut server = ServerOptions::new().create(PIPE_NAME)?;
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let server = tokio::spawn(async move {
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for _ in 0..N {
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// Wait for client to connect.
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server.connect().await?;
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let inner_server = server;
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// Construct the next server to be connected before sending the one
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// we already have of onto a task. This ensures that the server
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// isn't closed (after it's done in the task) before a new one is
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// available. Otherwise the client might error with
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// `io::ErrorKind::NotFound`.
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server = ServerOptions::new().create(PIPE_NAME)?;
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let _ = tokio::spawn(async move {
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let server = inner_server;
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{
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let mut read_buf = [0u8; 5];
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let mut read_buf_cursor = 0;
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loop {
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server.readable().await?;
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let buf = &mut read_buf[read_buf_cursor..];
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match server.try_read(buf) {
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Ok(n) => {
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read_buf_cursor += n;
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if read_buf_cursor == read_buf.len() {
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break;
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}
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}
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Err(e) if e.kind() == io::ErrorKind::WouldBlock => {
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continue;
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}
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Err(e) => {
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return Err(e);
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}
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}
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}
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};
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{
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let write_buf = b"pong\n";
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let mut write_buf_cursor = 0;
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loop {
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server.writable().await?;
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let buf = &write_buf[write_buf_cursor..];
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match server.try_write(buf) {
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Ok(n) => {
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write_buf_cursor += n;
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if write_buf_cursor == write_buf.len() {
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break;
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}
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}
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Err(e) if e.kind() == io::ErrorKind::WouldBlock => {
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continue;
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}
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Err(e) => {
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return Err(e);
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}
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}
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}
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}
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Ok::<_, io::Error>(())
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});
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}
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Ok::<_, io::Error>(())
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});
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let mut clients = Vec::new();
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for _ in 0..N {
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clients.push(tokio::spawn(async move {
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// This showcases a generic connect loop.
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//
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// We immediately try to create a client, if it's not found or the
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// pipe is busy we use the specialized wait function on the client
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// builder.
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let client = loop {
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match ClientOptions::new().open(PIPE_NAME) {
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Ok(client) => break client,
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Err(e) if e.raw_os_error() == Some(winerror::ERROR_PIPE_BUSY as i32) => (),
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Err(e) if e.kind() == io::ErrorKind::NotFound => (),
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Err(e) => return Err(e),
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}
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// Wait for a named pipe to become available.
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time::sleep(Duration::from_millis(10)).await;
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};
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let mut read_buf = [0u8; 5];
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let mut read_buf_cursor = 0;
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let write_buf = b"ping\n";
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let mut write_buf_cursor = 0;
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loop {
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let mut interest = Interest::READABLE;
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if write_buf_cursor < write_buf.len() {
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interest |= Interest::WRITABLE;
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}
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let ready = client.ready(interest).await?;
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if ready.is_readable() {
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let buf = &mut read_buf[read_buf_cursor..];
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match client.try_read(buf) {
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Ok(n) => {
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read_buf_cursor += n;
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if read_buf_cursor == read_buf.len() {
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break;
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}
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}
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Err(e) if e.kind() == io::ErrorKind::WouldBlock => {
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continue;
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}
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Err(e) => {
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return Err(e);
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}
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}
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}
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if ready.is_writable() {
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let buf = &write_buf[write_buf_cursor..];
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if buf.is_empty() {
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continue;
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}
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match client.try_write(buf) {
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Ok(n) => {
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write_buf_cursor += n;
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}
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Err(e) if e.kind() == io::ErrorKind::WouldBlock => {
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continue;
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}
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Err(e) => {
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return Err(e);
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}
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}
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}
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}
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let buf = String::from_utf8_lossy(&read_buf).into_owned();
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Ok::<_, io::Error>(buf)
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}));
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}
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for client in clients {
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let result = client.await?;
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assert_eq!(result?, "pong\n");
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}
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server.await??;
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Ok(())
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}
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// This tests what happens when a client tries to disconnect.
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#[tokio::test]
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async fn test_named_pipe_mode_message() -> io::Result<()> {
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const PIPE_NAME: &str = r"\\.\pipe\test-named-pipe-mode-message";
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let server = ServerOptions::new()
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.pipe_mode(PipeMode::Message)
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.create(PIPE_NAME)?;
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let _ = ClientOptions::new().open(PIPE_NAME)?;
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server.connect().await?;
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Ok(())
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}
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fn num_instances(pipe_name: impl AsRef<str>) -> io::Result<u32> {
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use ntapi::ntioapi;
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use winapi::shared::ntdef;
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let mut name = pipe_name.as_ref().encode_utf16().collect::<Vec<_>>();
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let mut name = ntdef::UNICODE_STRING {
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Length: (name.len() * mem::size_of::<u16>()) as u16,
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MaximumLength: (name.len() * mem::size_of::<u16>()) as u16,
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Buffer: name.as_mut_ptr(),
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};
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let root = std::fs::File::open(r"\\.\Pipe\")?;
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let mut io_status_block = unsafe { mem::zeroed() };
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let mut file_directory_information = [0_u8; 1024];
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let status = unsafe {
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ntioapi::NtQueryDirectoryFile(
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root.as_raw_handle(),
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std::ptr::null_mut(),
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None,
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std::ptr::null_mut(),
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&mut io_status_block,
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&mut file_directory_information as *mut _ as *mut _,
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1024,
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ntioapi::FileDirectoryInformation,
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0,
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&mut name,
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0,
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)
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};
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if status as u32 != winerror::NO_ERROR {
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return Err(io::Error::last_os_error());
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}
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let info = unsafe {
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mem::transmute::<_, &ntioapi::FILE_DIRECTORY_INFORMATION>(&file_directory_information)
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};
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let raw_name = unsafe {
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std::slice::from_raw_parts(
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info.FileName.as_ptr(),
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info.FileNameLength as usize / mem::size_of::<u16>(),
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)
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};
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let name = String::from_utf16(raw_name).unwrap();
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let num_instances = unsafe { *info.EndOfFile.QuadPart() };
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assert_eq!(name, pipe_name.as_ref());
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Ok(num_instances as u32)
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}
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