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If we use the workspace based testing methodology then we start testing some code inside vhost_rs that is broken. See #576 Signed-off-by: Rob Bradford <robert.bradford@intel.com>
741 lines
27 KiB
Rust
741 lines
27 KiB
Rust
// Copyright (C) 2019 Alibaba Cloud Computing. All rights reserved.
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// SPDX-License-Identifier: Apache-2.0
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//! Structs for Unix Domain Socket listener and endpoint.
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#![allow(dead_code)]
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use libc::{c_void, iovec};
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use std::io::ErrorKind;
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use std::marker::PhantomData;
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use std::os::unix::io::{AsRawFd, RawFd};
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use std::os::unix::net::{UnixListener, UnixStream};
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use std::{mem, slice};
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use super::message::*;
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use super::sock_ctrl_msg::ScmSocket;
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use super::{Error, Result};
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/// Unix domain socket listener for accepting incoming connections.
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pub struct Listener {
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fd: UnixListener,
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path: String,
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}
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impl Listener {
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/// Create a unix domain socket listener.
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///
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/// # Return:
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/// * - the new Listener object on success.
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/// * - SocketError: failed to create listener socket.
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pub fn new(path: &str, unlink: bool) -> Result<Self> {
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if unlink {
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let _ = std::fs::remove_file(path);
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}
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let fd = UnixListener::bind(path).map_err(Error::SocketError)?;
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Ok(Listener {
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fd,
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path: path.to_string(),
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})
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}
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/// Accept an incoming connection.
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///
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/// # Return:
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/// * - Some(UnixStream): new UnixStream object if new incoming connection is available.
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/// * - None: no incoming connection available.
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/// * - SocketError: errors from accept().
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pub fn accept(&self) -> Result<Option<UnixStream>> {
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loop {
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match self.fd.accept() {
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Ok((socket, _addr)) => return Ok(Some(socket)),
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Err(e) => {
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match e.kind() {
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// No incoming connection available.
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ErrorKind::WouldBlock => return Ok(None),
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// New connection closed by peer.
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ErrorKind::ConnectionAborted => return Ok(None),
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// Interrupted by signals, retry
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ErrorKind::Interrupted => continue,
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_ => return Err(Error::SocketError(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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/// Change blocking status on the listener.
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///
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/// # Return:
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/// * - () on success.
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/// * - SocketError: failure from set_nonblocking().
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pub fn set_nonblocking(&self, block: bool) -> Result<()> {
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self.fd.set_nonblocking(block).map_err(Error::SocketError)
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}
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}
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impl AsRawFd for Listener {
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fn as_raw_fd(&self) -> RawFd {
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self.fd.as_raw_fd()
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}
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}
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impl Drop for Listener {
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fn drop(&mut self) {
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let _ = std::fs::remove_file(self.path.clone());
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}
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}
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/// Unix domain socket endpoint for vhost-user connection.
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pub(super) struct Endpoint<R: Req> {
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sock: UnixStream,
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_r: PhantomData<R>,
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}
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impl<R: Req> Endpoint<R> {
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/// Create a new stream by connecting to server at `str`.
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///
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/// # Return:
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/// * - the new Endpoint object on success.
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/// * - SocketConnect: failed to connect to peer.
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pub fn connect(path: &str) -> Result<Self> {
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let sock = UnixStream::connect(path).map_err(Error::SocketConnect)?;
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Ok(Self::from_stream(sock))
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}
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/// Create an endpoint from a stream object.
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pub fn from_stream(sock: UnixStream) -> Self {
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Endpoint {
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sock,
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_r: PhantomData,
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}
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}
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/// Sends bytes from scatter-gather vectors over the socket with optional attached file
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/// descriptors.
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///
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/// # Return:
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/// * - number of bytes sent on success
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/// * - SocketRetry: temporary error caused by signals or short of resources.
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/// * - SocketBroken: the underline socket is broken.
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/// * - SocketError: other socket related errors.
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pub fn send_iovec(&mut self, iovs: &[&[u8]], fds: Option<&[RawFd]>) -> Result<usize> {
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let rfds = match fds {
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Some(rfds) => rfds,
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_ => &[],
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};
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self.sock.send_with_fds(iovs, rfds).map_err(Into::into)
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}
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/// Sends bytes from a slice over the socket with optional attached file descriptors.
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///
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/// # Return:
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/// * - number of bytes sent on success
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/// * - SocketRetry: temporary error caused by signals or short of resources.
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/// * - SocketBroken: the underline socket is broken.
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/// * - SocketError: other socket related errors.
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pub fn send_slice(&mut self, data: &[u8], fds: Option<&[RawFd]>) -> Result<usize> {
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self.send_iovec(&[data], fds)
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}
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/// Sends a header-only message with optional attached file descriptors.
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///
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/// # Return:
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/// * - number of bytes sent on success
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/// * - SocketRetry: temporary error caused by signals or short of resources.
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/// * - SocketBroken: the underline socket is broken.
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/// * - SocketError: other socket related errors.
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/// * - PartialMessage: received a partial message.
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pub fn send_header(
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&mut self,
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hdr: &VhostUserMsgHeader<R>,
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fds: Option<&[RawFd]>,
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) -> Result<()> {
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// Safe because there can't be other mutable referance to hdr.
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let iovs = unsafe {
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[slice::from_raw_parts(
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hdr as *const VhostUserMsgHeader<R> as *const u8,
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mem::size_of::<VhostUserMsgHeader<R>>(),
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)]
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};
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let bytes = self.send_iovec(&iovs[..], fds)?;
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if bytes != mem::size_of::<VhostUserMsgHeader<R>>() {
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return Err(Error::PartialMessage);
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}
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Ok(())
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}
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/// Send a message with header and body. Optional file descriptors may be attached to
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/// the message.
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///
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/// # Return:
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/// * - number of bytes sent on success
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/// * - SocketRetry: temporary error caused by signals or short of resources.
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/// * - SocketBroken: the underline socket is broken.
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/// * - SocketError: other socket related errors.
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/// * - PartialMessage: received a partial message.
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pub fn send_message<T: Sized>(
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&mut self,
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hdr: &VhostUserMsgHeader<R>,
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body: &T,
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fds: Option<&[RawFd]>,
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) -> Result<()> {
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// Safe because there can't be other mutable referance to hdr and body.
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let iovs = unsafe {
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[
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slice::from_raw_parts(
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hdr as *const VhostUserMsgHeader<R> as *const u8,
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mem::size_of::<VhostUserMsgHeader<R>>(),
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),
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slice::from_raw_parts(body as *const T as *const u8, mem::size_of::<T>()),
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]
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};
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let bytes = self.send_iovec(&iovs[..], fds)?;
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if bytes != mem::size_of::<VhostUserMsgHeader<R>>() + mem::size_of::<T>() {
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return Err(Error::PartialMessage);
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}
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Ok(())
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}
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/// Send a message with header, body and payload. Optional file descriptors
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/// may also be attached to the message.
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///
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/// # Return:
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/// * - number of bytes sent on success
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/// * - SocketRetry: temporary error caused by signals or short of resources.
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/// * - SocketBroken: the underline socket is broken.
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/// * - SocketError: other socket related errors.
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/// * - OversizedMsg: message size is too big.
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/// * - PartialMessage: received a partial message.
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/// * - IncorrectFds: wrong number of attached fds.
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pub fn send_message_with_payload<T: Sized, P: Sized>(
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&mut self,
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hdr: &VhostUserMsgHeader<R>,
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body: &T,
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payload: &[P],
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fds: Option<&[RawFd]>,
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) -> Result<()> {
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let len = payload.len() * mem::size_of::<P>();
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if len > MAX_MSG_SIZE - mem::size_of::<T>() {
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return Err(Error::OversizedMsg);
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}
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if let Some(fd_arr) = fds {
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if fd_arr.len() > MAX_ATTACHED_FD_ENTRIES {
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return Err(Error::IncorrectFds);
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}
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}
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// Safe because there can't be other mutable reference to hdr, body and payload.
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let iovs = unsafe {
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[
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slice::from_raw_parts(
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hdr as *const VhostUserMsgHeader<R> as *const u8,
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mem::size_of::<VhostUserMsgHeader<R>>(),
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),
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slice::from_raw_parts(body as *const T as *const u8, mem::size_of::<T>()),
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slice::from_raw_parts(payload.as_ptr() as *const u8, len),
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]
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};
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let total = mem::size_of::<VhostUserMsgHeader<R>>() + mem::size_of::<T>() + len;
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let len = self.send_iovec(&iovs, fds)?;
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if len != total {
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return Err(Error::PartialMessage);
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}
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Ok(())
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}
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/// Reads bytes from the socket into the given scatter/gather vectors.
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///
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/// # Return:
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/// * - (number of bytes received, buf) on success
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/// * - SocketRetry: temporary error caused by signals or short of resources.
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/// * - SocketBroken: the underline socket is broken.
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/// * - SocketError: other socket related errors.
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pub fn recv_data(&mut self, len: usize) -> Result<(usize, Vec<u8>)> {
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let mut rbuf = vec![0u8; len];
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let mut iovs = [iovec {
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iov_base: rbuf.as_mut_ptr() as *mut c_void,
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iov_len: len,
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}];
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let (bytes, _) = self.sock.recv_with_fds(&mut iovs, &mut [])?;
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Ok((bytes, rbuf))
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}
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/// Reads bytes from the socket into the given scatter/gather vectors with optional attached
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/// file descriptors.
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///
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/// The underlying communication channel is a Unix domain socket in STREAM mode. It's a little
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/// tricky to pass file descriptors through such a communication channel. Let's assume that a
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/// sender sending a message with some file descriptors attached. To successfully receive those
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/// attached file descriptors, the receiver must obey following rules:
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/// 1) file descriptors are attached to a message.
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/// 2) message(packet) boundaries must be respected on the receive side.
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/// In other words, recvmsg() operations must not cross the packet boundary, otherwise the
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/// attached file descriptors will get lost.
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///
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/// # Return:
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/// * - (number of bytes received, [received fds]) on success
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/// * - SocketRetry: temporary error caused by signals or short of resources.
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/// * - SocketBroken: the underline socket is broken.
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/// * - SocketError: other socket related errors.
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pub fn recv_into_iovec(&mut self, iovs: &mut [iovec]) -> Result<(usize, Option<Vec<RawFd>>)> {
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let mut fd_array = vec![0; MAX_ATTACHED_FD_ENTRIES];
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let (bytes, fds) = self.sock.recv_with_fds(iovs, &mut fd_array)?;
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let rfds = match fds {
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0 => None,
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n => {
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let mut fds = Vec::with_capacity(n);
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fds.extend_from_slice(&fd_array[0..n]);
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Some(fds)
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}
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};
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Ok((bytes, rfds))
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}
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/// Reads bytes from the socket into a new buffer with optional attached
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/// file descriptors. Received file descriptors are set close-on-exec.
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///
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/// # Return:
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/// * - (number of bytes received, buf, [received fds]) on success.
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/// * - SocketRetry: temporary error caused by signals or short of resources.
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/// * - SocketBroken: the underline socket is broken.
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/// * - SocketError: other socket related errors.
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pub fn recv_into_buf(
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&mut self,
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buf_size: usize,
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) -> Result<(usize, Vec<u8>, Option<Vec<RawFd>>)> {
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let mut buf = vec![0u8; buf_size];
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let (bytes, rfds) = {
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let mut iovs = [iovec {
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iov_base: buf.as_mut_ptr() as *mut c_void,
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iov_len: buf_size,
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}];
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self.recv_into_iovec(&mut iovs)?
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};
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Ok((bytes, buf, rfds))
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}
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/// Receive a header-only message with optional attached file descriptors.
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/// Note, only the first MAX_ATTACHED_FD_ENTRIES file descriptors will be
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/// accepted and all other file descriptor will be discard silently.
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///
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/// # Return:
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/// * - (message header, [received fds]) on success.
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/// * - SocketRetry: temporary error caused by signals or short of resources.
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/// * - SocketBroken: the underline socket is broken.
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/// * - SocketError: other socket related errors.
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/// * - PartialMessage: received a partial message.
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/// * - InvalidMessage: received a invalid message.
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pub fn recv_header(&mut self) -> Result<(VhostUserMsgHeader<R>, Option<Vec<RawFd>>)> {
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let mut hdr = VhostUserMsgHeader::default();
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let mut iovs = [iovec {
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iov_base: (&mut hdr as *mut VhostUserMsgHeader<R>) as *mut c_void,
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iov_len: mem::size_of::<VhostUserMsgHeader<R>>(),
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}];
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let (bytes, rfds) = self.recv_into_iovec(&mut iovs[..])?;
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if bytes != mem::size_of::<VhostUserMsgHeader<R>>() {
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return Err(Error::PartialMessage);
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} else if !hdr.is_valid() {
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return Err(Error::InvalidMessage);
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}
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Ok((hdr, rfds))
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}
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/// Receive a message with optional attached file descriptors.
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/// Note, only the first MAX_ATTACHED_FD_ENTRIES file descriptors will be
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/// accepted and all other file descriptor will be discard silently.
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///
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/// # Return:
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/// * - (message header, message body, [received fds]) on success.
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/// * - SocketRetry: temporary error caused by signals or short of resources.
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/// * - SocketBroken: the underline socket is broken.
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/// * - SocketError: other socket related errors.
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/// * - PartialMessage: received a partial message.
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/// * - InvalidMessage: received a invalid message.
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pub fn recv_body<T: Sized + Default + VhostUserMsgValidator>(
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&mut self,
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) -> Result<(VhostUserMsgHeader<R>, T, Option<Vec<RawFd>>)> {
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let mut hdr = VhostUserMsgHeader::default();
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let mut body: T = Default::default();
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let mut iovs = [
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iovec {
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iov_base: (&mut hdr as *mut VhostUserMsgHeader<R>) as *mut c_void,
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iov_len: mem::size_of::<VhostUserMsgHeader<R>>(),
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},
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iovec {
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iov_base: (&mut body as *mut T) as *mut c_void,
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iov_len: mem::size_of::<T>(),
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},
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];
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let (bytes, rfds) = self.recv_into_iovec(&mut iovs[..])?;
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let total = mem::size_of::<VhostUserMsgHeader<R>>() + mem::size_of::<T>();
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if bytes != total {
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return Err(Error::PartialMessage);
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} else if !hdr.is_valid() || !body.is_valid() {
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return Err(Error::InvalidMessage);
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}
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Ok((hdr, body, rfds))
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}
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/// Receive a message with header and optional content. Callers need to
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/// pre-allocate a big enough buffer to receive the message body and
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/// optional payload. If there are attached file descriptor associated
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/// with the message, the first MAX_ATTACHED_FD_ENTRIES file descriptors
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/// will be accepted and all other file descriptor will be discard
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/// silently.
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///
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/// # Return:
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/// * - (message header, message size, [received fds]) on success.
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/// * - SocketRetry: temporary error caused by signals or short of resources.
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/// * - SocketBroken: the underline socket is broken.
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/// * - SocketError: other socket related errors.
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/// * - PartialMessage: received a partial message.
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/// * - InvalidMessage: received a invalid message.
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pub fn recv_body_into_buf(
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&mut self,
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buf: &mut [u8],
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) -> Result<(VhostUserMsgHeader<R>, usize, Option<Vec<RawFd>>)> {
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let mut hdr = VhostUserMsgHeader::default();
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let mut iovs = [
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iovec {
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iov_base: (&mut hdr as *mut VhostUserMsgHeader<R>) as *mut c_void,
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iov_len: mem::size_of::<VhostUserMsgHeader<R>>(),
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},
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iovec {
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iov_base: buf.as_mut_ptr() as *mut c_void,
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iov_len: buf.len(),
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},
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];
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let (bytes, rfds) = self.recv_into_iovec(&mut iovs[..])?;
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if bytes < mem::size_of::<VhostUserMsgHeader<R>>() {
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return Err(Error::PartialMessage);
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} else if !hdr.is_valid() {
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return Err(Error::InvalidMessage);
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}
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Ok((hdr, bytes - mem::size_of::<VhostUserMsgHeader<R>>(), rfds))
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}
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/// Receive a message with optional payload and attached file descriptors.
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/// Note, only the first MAX_ATTACHED_FD_ENTRIES file descriptors will be
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/// accepted and all other file descriptor will be discard silently.
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///
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/// # Return:
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/// * - (message header, message body, size of payload, [received fds]) on success.
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/// * - SocketRetry: temporary error caused by signals or short of resources.
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/// * - SocketBroken: the underline socket is broken.
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/// * - SocketError: other socket related errors.
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/// * - PartialMessage: received a partial message.
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/// * - InvalidMessage: received a invalid message.
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#[cfg_attr(feature = "cargo-clippy", allow(clippy::type_complexity))]
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pub fn recv_payload_into_buf<T: Sized + Default + VhostUserMsgValidator>(
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&mut self,
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buf: &mut [u8],
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) -> Result<(VhostUserMsgHeader<R>, T, usize, Option<Vec<RawFd>>)> {
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let mut hdr = VhostUserMsgHeader::default();
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let mut body: T = Default::default();
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let mut iovs = [
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iovec {
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iov_base: (&mut hdr as *mut VhostUserMsgHeader<R>) as *mut c_void,
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iov_len: mem::size_of::<VhostUserMsgHeader<R>>(),
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},
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iovec {
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iov_base: (&mut body as *mut T) as *mut c_void,
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iov_len: mem::size_of::<T>(),
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},
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iovec {
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iov_base: buf.as_mut_ptr() as *mut c_void,
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iov_len: buf.len(),
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},
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];
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let (bytes, rfds) = self.recv_into_iovec(&mut iovs[..])?;
|
|
|
|
let total = mem::size_of::<VhostUserMsgHeader<R>>() + mem::size_of::<T>();
|
|
if bytes < total {
|
|
return Err(Error::PartialMessage);
|
|
} else if !hdr.is_valid() || !body.is_valid() {
|
|
return Err(Error::InvalidMessage);
|
|
}
|
|
|
|
Ok((hdr, body, bytes - total, rfds))
|
|
}
|
|
|
|
/// Close all raw file descriptors.
|
|
pub fn close_rfds(rfds: Option<Vec<RawFd>>) {
|
|
if let Some(fds) = rfds {
|
|
for fd in fds {
|
|
// safe because the rawfds are valid and we don't care about the result.
|
|
let _ = unsafe { libc::close(fd) };
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
impl<T: Req> AsRawFd for Endpoint<T> {
|
|
fn as_raw_fd(&self) -> RawFd {
|
|
self.sock.as_raw_fd()
|
|
}
|
|
}
|
|
|
|
#[cfg(test)]
|
|
mod tests {
|
|
extern crate tempfile;
|
|
|
|
use self::tempfile::tempfile;
|
|
use super::*;
|
|
use libc;
|
|
use std::fs::File;
|
|
use std::io::{Read, Seek, SeekFrom, Write};
|
|
use std::os::unix::io::FromRawFd;
|
|
|
|
const UNIX_SOCKET_LISTENER: &'static str = "/tmp/vhost_user_test_rust_listener";
|
|
const UNIX_SOCKET_CONNECTION: &'static str = "/tmp/vhost_user_test_rust_connection";
|
|
const UNIX_SOCKET_DATA: &'static str = "/tmp/vhost_user_test_rust_data";
|
|
const UNIX_SOCKET_FD: &'static str = "/tmp/vhost_user_test_rust_fd";
|
|
const UNIX_SOCKET_SEND: &'static str = "/tmp/vhost_user_test_rust_send";
|
|
|
|
#[test]
|
|
fn create_listener() {
|
|
let _ = Listener::new(UNIX_SOCKET_LISTENER, true).unwrap();
|
|
}
|
|
|
|
#[test]
|
|
fn accept_connection() {
|
|
let listener = Listener::new(UNIX_SOCKET_CONNECTION, true).unwrap();
|
|
listener.set_nonblocking(true).unwrap();
|
|
|
|
// accept on a fd without incoming connection
|
|
let conn = listener.accept().unwrap();
|
|
assert!(conn.is_none());
|
|
|
|
listener.set_nonblocking(true).unwrap();
|
|
|
|
// accept on a closed fd
|
|
unsafe {
|
|
libc::close(listener.as_raw_fd());
|
|
}
|
|
let conn2 = listener.accept();
|
|
assert!(conn2.is_err());
|
|
}
|
|
|
|
#[test]
|
|
#[ignore]
|
|
fn send_data() {
|
|
let listener = Listener::new(UNIX_SOCKET_DATA, true).unwrap();
|
|
listener.set_nonblocking(true).unwrap();
|
|
let mut master = Endpoint::<MasterReq>::connect(UNIX_SOCKET_DATA).unwrap();
|
|
let sock = listener.accept().unwrap().unwrap();
|
|
let mut slave = Endpoint::<MasterReq>::from_stream(sock);
|
|
|
|
let buf1 = vec![0x1, 0x2, 0x3, 0x4];
|
|
let mut len = master.send_slice(&buf1[..], None).unwrap();
|
|
assert_eq!(len, 4);
|
|
let (bytes, buf2, _) = slave.recv_into_buf(0x1000).unwrap();
|
|
assert_eq!(bytes, 4);
|
|
assert_eq!(&buf1[..], &buf2[..bytes]);
|
|
|
|
len = master.send_slice(&buf1[..], None).unwrap();
|
|
assert_eq!(len, 4);
|
|
let (bytes, buf2, _) = slave.recv_into_buf(0x2).unwrap();
|
|
assert_eq!(bytes, 2);
|
|
assert_eq!(&buf1[..2], &buf2[..]);
|
|
let (bytes, buf2, _) = slave.recv_into_buf(0x2).unwrap();
|
|
assert_eq!(bytes, 2);
|
|
assert_eq!(&buf1[2..], &buf2[..]);
|
|
}
|
|
|
|
#[test]
|
|
#[ignore]
|
|
fn send_fd() {
|
|
let listener = Listener::new(UNIX_SOCKET_FD, true).unwrap();
|
|
listener.set_nonblocking(true).unwrap();
|
|
let mut master = Endpoint::<MasterReq>::connect(UNIX_SOCKET_FD).unwrap();
|
|
let sock = listener.accept().unwrap().unwrap();
|
|
let mut slave = Endpoint::<MasterReq>::from_stream(sock);
|
|
|
|
let mut fd = tempfile().unwrap();
|
|
write!(fd, "test").unwrap();
|
|
|
|
// Normal case for sending/receiving file descriptors
|
|
let buf1 = vec![0x1, 0x2, 0x3, 0x4];
|
|
let len = master
|
|
.send_slice(&buf1[..], Some(&[fd.as_raw_fd()]))
|
|
.unwrap();
|
|
assert_eq!(len, 4);
|
|
|
|
let (bytes, buf2, rfds) = slave.recv_into_buf(4).unwrap();
|
|
assert_eq!(bytes, 4);
|
|
assert_eq!(&buf1[..], &buf2[..]);
|
|
assert!(rfds.is_some());
|
|
let fds = rfds.unwrap();
|
|
{
|
|
assert_eq!(fds.len(), 1);
|
|
let mut file = unsafe { File::from_raw_fd(fds[0]) };
|
|
let mut content = String::new();
|
|
file.seek(SeekFrom::Start(0)).unwrap();
|
|
file.read_to_string(&mut content).unwrap();
|
|
assert_eq!(content, "test");
|
|
}
|
|
|
|
// Following communication pattern should work:
|
|
// Sending side: data(header, body) with fds
|
|
// Receiving side: data(header) with fds, data(body)
|
|
let len = master
|
|
.send_slice(
|
|
&buf1[..],
|
|
Some(&[fd.as_raw_fd(), fd.as_raw_fd(), fd.as_raw_fd()]),
|
|
)
|
|
.unwrap();
|
|
assert_eq!(len, 4);
|
|
|
|
let (bytes, buf2, rfds) = slave.recv_into_buf(0x2).unwrap();
|
|
assert_eq!(bytes, 2);
|
|
assert_eq!(&buf1[..2], &buf2[..]);
|
|
assert!(rfds.is_some());
|
|
let fds = rfds.unwrap();
|
|
{
|
|
assert_eq!(fds.len(), 3);
|
|
let mut file = unsafe { File::from_raw_fd(fds[1]) };
|
|
let mut content = String::new();
|
|
file.seek(SeekFrom::Start(0)).unwrap();
|
|
file.read_to_string(&mut content).unwrap();
|
|
assert_eq!(content, "test");
|
|
}
|
|
let (bytes, buf2, rfds) = slave.recv_into_buf(0x2).unwrap();
|
|
assert_eq!(bytes, 2);
|
|
assert_eq!(&buf1[2..], &buf2[..]);
|
|
assert!(rfds.is_none());
|
|
|
|
// Following communication pattern should not work:
|
|
// Sending side: data(header, body) with fds
|
|
// Receiving side: data(header), data(body) with fds
|
|
let len = master
|
|
.send_slice(
|
|
&buf1[..],
|
|
Some(&[fd.as_raw_fd(), fd.as_raw_fd(), fd.as_raw_fd()]),
|
|
)
|
|
.unwrap();
|
|
assert_eq!(len, 4);
|
|
|
|
let (bytes, buf4) = slave.recv_data(2).unwrap();
|
|
assert_eq!(bytes, 2);
|
|
assert_eq!(&buf1[..2], &buf4[..]);
|
|
let (bytes, buf2, rfds) = slave.recv_into_buf(0x2).unwrap();
|
|
assert_eq!(bytes, 2);
|
|
assert_eq!(&buf1[2..], &buf2[..]);
|
|
assert!(rfds.is_none());
|
|
|
|
// Following communication pattern should work:
|
|
// Sending side: data, data with fds
|
|
// Receiving side: data, data with fds
|
|
let len = master.send_slice(&buf1[..], None).unwrap();
|
|
assert_eq!(len, 4);
|
|
let len = master
|
|
.send_slice(
|
|
&buf1[..],
|
|
Some(&[fd.as_raw_fd(), fd.as_raw_fd(), fd.as_raw_fd()]),
|
|
)
|
|
.unwrap();
|
|
assert_eq!(len, 4);
|
|
|
|
let (bytes, buf2, rfds) = slave.recv_into_buf(0x4).unwrap();
|
|
assert_eq!(bytes, 4);
|
|
assert_eq!(&buf1[..], &buf2[..]);
|
|
assert!(rfds.is_none());
|
|
|
|
let (bytes, buf2, rfds) = slave.recv_into_buf(0x2).unwrap();
|
|
assert_eq!(bytes, 2);
|
|
assert_eq!(&buf1[..2], &buf2[..]);
|
|
assert!(rfds.is_some());
|
|
let fds = rfds.unwrap();
|
|
{
|
|
assert_eq!(fds.len(), 3);
|
|
let mut file = unsafe { File::from_raw_fd(fds[1]) };
|
|
let mut content = String::new();
|
|
file.seek(SeekFrom::Start(0)).unwrap();
|
|
file.read_to_string(&mut content).unwrap();
|
|
assert_eq!(content, "test");
|
|
}
|
|
let (bytes, buf2, rfds) = slave.recv_into_buf(0x2).unwrap();
|
|
assert_eq!(bytes, 2);
|
|
assert_eq!(&buf1[2..], &buf2[..]);
|
|
assert!(rfds.is_none());
|
|
|
|
// Following communication pattern should not work:
|
|
// Sending side: data1, data2 with fds
|
|
// Receiving side: data + partial of data2, left of data2 with fds
|
|
let len = master.send_slice(&buf1[..], None).unwrap();
|
|
assert_eq!(len, 4);
|
|
let len = master
|
|
.send_slice(
|
|
&buf1[..],
|
|
Some(&[fd.as_raw_fd(), fd.as_raw_fd(), fd.as_raw_fd()]),
|
|
)
|
|
.unwrap();
|
|
assert_eq!(len, 4);
|
|
|
|
let (bytes, _) = slave.recv_data(5).unwrap();
|
|
assert_eq!(bytes, 5);
|
|
|
|
let (bytes, _, rfds) = slave.recv_into_buf(0x4).unwrap();
|
|
assert_eq!(bytes, 3);
|
|
assert!(rfds.is_none());
|
|
|
|
// If the target fd array is too small, extra file descriptors will get lost.
|
|
let len = master
|
|
.send_slice(
|
|
&buf1[..],
|
|
Some(&[fd.as_raw_fd(), fd.as_raw_fd(), fd.as_raw_fd()]),
|
|
)
|
|
.unwrap();
|
|
assert_eq!(len, 4);
|
|
|
|
let (bytes, _, rfds) = slave.recv_into_buf(0x4).unwrap();
|
|
assert_eq!(bytes, 4);
|
|
assert!(rfds.is_some());
|
|
|
|
Endpoint::<MasterReq>::close_rfds(rfds);
|
|
Endpoint::<MasterReq>::close_rfds(None);
|
|
}
|
|
|
|
#[test]
|
|
#[ignore]
|
|
fn send_recv() {
|
|
let listener = Listener::new(UNIX_SOCKET_SEND, true).unwrap();
|
|
listener.set_nonblocking(true).unwrap();
|
|
let mut master = Endpoint::<MasterReq>::connect(UNIX_SOCKET_SEND).unwrap();
|
|
let sock = listener.accept().unwrap().unwrap();
|
|
let mut slave = Endpoint::<MasterReq>::from_stream(sock);
|
|
|
|
let mut hdr1 =
|
|
VhostUserMsgHeader::new(MasterReq::GET_FEATURES, 0, mem::size_of::<u64>() as u32);
|
|
hdr1.set_need_reply(true);
|
|
let features1 = 0x1u64;
|
|
master.send_message(&hdr1, &features1, None).unwrap();
|
|
|
|
let mut features2 = 0u64;
|
|
let slice = unsafe {
|
|
slice::from_raw_parts_mut(
|
|
(&mut features2 as *mut u64) as *mut u8,
|
|
mem::size_of::<u64>(),
|
|
)
|
|
};
|
|
let (hdr2, bytes, rfds) = slave.recv_body_into_buf(slice).unwrap();
|
|
assert_eq!(hdr1, hdr2);
|
|
assert_eq!(bytes, 8);
|
|
assert_eq!(features1, features2);
|
|
assert!(rfds.is_none());
|
|
|
|
master.send_header(&hdr1, None).unwrap();
|
|
let (hdr2, rfds) = slave.recv_header().unwrap();
|
|
assert_eq!(hdr1, hdr2);
|
|
assert!(rfds.is_none());
|
|
}
|
|
}
|