mirror of
https://github.com/cloud-hypervisor/cloud-hypervisor.git
synced 2026-08-05 02:19:16 +00:00
Remove duplicated code across the different devices by handling the virtio feature pages in VirtioDevice itself rather than in the backends. This works as no virtio devices use feature bits beyond 64-bits. Signed-off-by: Cathy Zhang <cathy.zhang@intel.com>
571 lines
20 KiB
Rust
571 lines
20 KiB
Rust
// Copyright 2018 Amazon.com, Inc. or its affiliates. All Rights Reserved.
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// SPDX-License-Identifier: Apache-2.0
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//
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// Portions Copyright 2017 The Chromium OS Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the THIRD-PARTY file.
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use super::net_util::{
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build_net_config_space, build_net_config_space_with_mq, open_tap, register_listener,
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unregister_listener, CtrlVirtio, NetCtrlEpollHandler, RxVirtio, TxVirtio, VirtioNetConfig,
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KILL_EVENT, NET_EVENTS_COUNT, PAUSE_EVENT, RX_QUEUE_EVENT, RX_TAP_EVENT, TX_QUEUE_EVENT,
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};
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use super::Error as DeviceError;
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use super::{
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ActivateError, ActivateResult, Queue, VirtioDevice, VirtioDeviceType, VirtioInterruptType,
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};
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use crate::VirtioInterrupt;
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use arc_swap::ArcSwap;
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use epoll;
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use libc::EAGAIN;
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use libc::EFD_NONBLOCK;
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use net_util::{MacAddr, Tap};
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use std::cmp;
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use std::io::Read;
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use std::io::{self, Write};
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use std::net::Ipv4Addr;
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use std::os::unix::io::{AsRawFd, RawFd};
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use std::result;
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use std::sync::atomic::{AtomicBool, Ordering};
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use std::sync::Arc;
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use std::thread;
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use std::vec::Vec;
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use virtio_bindings::bindings::virtio_net::*;
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use vm_device::{Migratable, MigratableError, Pausable, Snapshotable};
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use vm_memory::{ByteValued, GuestMemoryMmap};
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use vmm_sys_util::eventfd::EventFd;
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#[derive(Debug)]
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pub enum Error {
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/// Failed to open taps.
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OpenTap(super::net_util::Error),
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}
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pub type Result<T> = result::Result<T, Error>;
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struct NetEpollHandler {
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mem: Arc<ArcSwap<GuestMemoryMmap>>,
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tap: Tap,
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rx: RxVirtio,
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tx: TxVirtio,
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interrupt_cb: Arc<dyn VirtioInterrupt>,
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kill_evt: EventFd,
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pause_evt: EventFd,
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epoll_fd: RawFd,
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rx_tap_listening: bool,
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}
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impl NetEpollHandler {
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fn signal_used_queue(&self, queue: &Queue) -> result::Result<(), DeviceError> {
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self.interrupt_cb
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.trigger(&VirtioInterruptType::Queue, Some(queue))
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.map_err(|e| {
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error!("Failed to signal used queue: {:?}", e);
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DeviceError::FailedSignalingUsedQueue(e)
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})
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}
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// Copies a single frame from `self.rx.frame_buf` into the guest. Returns true
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// if a buffer was used, and false if the frame must be deferred until a buffer
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// is made available by the driver.
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fn rx_single_frame(&mut self, mut queue: &mut Queue) -> bool {
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let mem = self.mem.load();
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let next_desc = queue.iter(&mem).next();
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if next_desc.is_none() {
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// Queue has no available descriptors
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if self.rx_tap_listening {
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unregister_listener(
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self.epoll_fd,
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self.tap.as_raw_fd(),
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epoll::Events::EPOLLIN,
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u64::from(RX_TAP_EVENT),
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)
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.unwrap();
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self.rx_tap_listening = false;
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}
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return false;
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}
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self.rx.process_desc_chain(&mem, next_desc, &mut queue)
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}
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fn process_rx(&mut self, queue: &mut Queue) -> result::Result<(), DeviceError> {
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// Read as many frames as possible.
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loop {
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match self.read_tap() {
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Ok(count) => {
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self.rx.bytes_read = count;
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if !self.rx_single_frame(queue) {
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self.rx.deferred_frame = true;
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break;
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}
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}
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Err(e) => {
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// The tap device is non-blocking, so any error aside from EAGAIN is
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// unexpected.
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match e.raw_os_error() {
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Some(err) if err == EAGAIN => (),
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_ => {
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error!("Failed to read tap: {:?}", e);
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return Err(DeviceError::FailedReadTap);
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}
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};
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break;
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}
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}
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}
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if self.rx.deferred_irqs {
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self.rx.deferred_irqs = false;
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self.signal_used_queue(queue)
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} else {
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Ok(())
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}
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}
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fn resume_rx(&mut self, queue: &mut Queue) -> result::Result<(), DeviceError> {
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if self.rx.deferred_frame {
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if self.rx_single_frame(queue) {
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self.rx.deferred_frame = false;
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// process_rx() was interrupted possibly before consuming all
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// packets in the tap; try continuing now.
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self.process_rx(queue)
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} else if self.rx.deferred_irqs {
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self.rx.deferred_irqs = false;
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self.signal_used_queue(queue)
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} else {
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Ok(())
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}
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} else {
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Ok(())
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}
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}
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fn process_tx(&mut self, mut queue: &mut Queue) -> result::Result<(), DeviceError> {
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let mem = self.mem.load();
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self.tx.process_desc_chain(&mem, &mut self.tap, &mut queue);
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Ok(())
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}
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fn read_tap(&mut self) -> io::Result<usize> {
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self.tap.read(&mut self.rx.frame_buf)
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}
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fn handle_rx_event(&mut self, mut queue: &mut Queue, queue_evt: &EventFd) {
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if let Err(e) = queue_evt.read() {
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error!("Failed to get rx queue event: {:?}", e);
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}
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self.resume_rx(&mut queue).unwrap();
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if !self.rx_tap_listening {
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register_listener(
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self.epoll_fd,
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self.tap.as_raw_fd(),
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epoll::Events::EPOLLIN,
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u64::from(RX_TAP_EVENT),
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)
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.unwrap();
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self.rx_tap_listening = true;
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}
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}
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fn handle_tx_event(&mut self, mut queue: &mut Queue, queue_evt: &EventFd) {
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if let Err(e) = queue_evt.read() {
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error!("Failed to get tx queue event: {:?}", e);
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}
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self.process_tx(&mut queue).unwrap();
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}
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fn handle_rx_tap_event(&mut self, mut queue: &mut Queue) {
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if self.rx.deferred_frame
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// Process a deferred frame first if available. Don't read from tap again
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// until we manage to receive this deferred frame.
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{
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if self.rx_single_frame(&mut queue) {
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self.rx.deferred_frame = false;
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self.process_rx(&mut queue).unwrap();
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} else if self.rx.deferred_irqs {
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self.rx.deferred_irqs = false;
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self.signal_used_queue(&queue).unwrap();
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}
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} else {
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self.process_rx(&mut queue).unwrap();
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}
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}
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fn run(
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&mut self,
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paused: Arc<AtomicBool>,
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mut queues: Vec<Queue>,
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queue_evts: Vec<EventFd>,
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) -> result::Result<(), DeviceError> {
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// Create the epoll file descriptor
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self.epoll_fd = epoll::create(true).map_err(DeviceError::EpollCreateFd)?;
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// Add events
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// Add events
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epoll::ctl(
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self.epoll_fd,
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epoll::ControlOptions::EPOLL_CTL_ADD,
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queue_evts[0].as_raw_fd(),
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epoll::Event::new(epoll::Events::EPOLLIN, u64::from(RX_QUEUE_EVENT)),
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)
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.map_err(DeviceError::EpollCtl)?;
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epoll::ctl(
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self.epoll_fd,
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epoll::ControlOptions::EPOLL_CTL_ADD,
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queue_evts[1].as_raw_fd(),
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epoll::Event::new(epoll::Events::EPOLLIN, u64::from(TX_QUEUE_EVENT)),
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)
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.map_err(DeviceError::EpollCtl)?;
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epoll::ctl(
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self.epoll_fd,
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epoll::ControlOptions::EPOLL_CTL_ADD,
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self.kill_evt.as_raw_fd(),
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epoll::Event::new(epoll::Events::EPOLLIN, u64::from(KILL_EVENT)),
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)
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.map_err(DeviceError::EpollCtl)?;
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epoll::ctl(
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self.epoll_fd,
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epoll::ControlOptions::EPOLL_CTL_ADD,
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self.pause_evt.as_raw_fd(),
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epoll::Event::new(epoll::Events::EPOLLIN, u64::from(PAUSE_EVENT)),
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)
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.map_err(DeviceError::EpollCtl)?;
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let mut events = vec![epoll::Event::new(epoll::Events::empty(), 0); NET_EVENTS_COUNT];
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'epoll: loop {
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let num_events = match epoll::wait(self.epoll_fd, -1, &mut events[..]) {
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Ok(res) => res,
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Err(e) => {
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if e.kind() == io::ErrorKind::Interrupted {
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// It's well defined from the epoll_wait() syscall
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// documentation that the epoll loop can be interrupted
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// before any of the requested events occurred or the
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// timeout expired. In both those cases, epoll_wait()
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// returns an error of type EINTR, but this should not
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// be considered as a regular error. Instead it is more
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// appropriate to retry, by calling into epoll_wait().
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continue;
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}
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return Err(DeviceError::EpollWait(e));
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}
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};
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for event in events.iter().take(num_events) {
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let ev_type = event.data as u16;
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match ev_type {
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RX_QUEUE_EVENT => {
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self.handle_rx_event(&mut queues[0], &queue_evts[0]);
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}
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TX_QUEUE_EVENT => {
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self.handle_tx_event(&mut queues[1], &queue_evts[1]);
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}
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RX_TAP_EVENT => {
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self.handle_rx_tap_event(&mut queues[0]);
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}
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KILL_EVENT => {
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debug!("KILL_EVENT received, stopping epoll loop");
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break 'epoll;
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}
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PAUSE_EVENT => {
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debug!("PAUSE_EVENT received, pausing virtio-net epoll loop");
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// We loop here to handle spurious park() returns.
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// Until we have not resumed, the paused boolean will
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// be true.
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while paused.load(Ordering::SeqCst) {
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thread::park();
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}
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}
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_ => {
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error!("Unknown event for virtio-net");
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}
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}
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}
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}
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Ok(())
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}
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}
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pub struct Net {
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kill_evt: Option<EventFd>,
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pause_evt: Option<EventFd>,
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taps: Option<Vec<Tap>>,
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avail_features: u64,
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acked_features: u64,
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config: VirtioNetConfig,
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queue_evts: Option<Vec<EventFd>>,
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interrupt_cb: Option<Arc<dyn VirtioInterrupt>>,
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epoll_threads: Option<Vec<thread::JoinHandle<result::Result<(), DeviceError>>>>,
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ctrl_queue_epoll_thread: Option<thread::JoinHandle<result::Result<(), DeviceError>>>,
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paused: Arc<AtomicBool>,
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queue_size: Vec<u16>,
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}
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impl Net {
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/// Create a new virtio network device with the given TAP interface.
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pub fn new_with_tap(
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taps: Vec<Tap>,
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guest_mac: Option<MacAddr>,
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iommu: bool,
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num_queues: usize,
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queue_size: u16,
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) -> Result<Self> {
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let mut avail_features = 1 << VIRTIO_NET_F_GUEST_CSUM
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| 1 << VIRTIO_NET_F_CSUM
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| 1 << VIRTIO_NET_F_GUEST_TSO4
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| 1 << VIRTIO_NET_F_GUEST_UFO
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| 1 << VIRTIO_NET_F_HOST_TSO4
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| 1 << VIRTIO_NET_F_HOST_UFO
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| 1 << VIRTIO_F_VERSION_1;
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if iommu {
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avail_features |= 1u64 << VIRTIO_F_IOMMU_PLATFORM;
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}
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avail_features |= 1 << VIRTIO_NET_F_CTRL_VQ;
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let queue_num = num_queues + 1;
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let mut config = VirtioNetConfig::default();
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if let Some(mac) = guest_mac {
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build_net_config_space(&mut config, mac, num_queues, &mut avail_features);
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} else {
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build_net_config_space_with_mq(&mut config, num_queues, &mut avail_features);
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}
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Ok(Net {
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kill_evt: None,
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pause_evt: None,
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taps: Some(taps),
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avail_features,
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acked_features: 0u64,
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config,
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queue_evts: None,
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interrupt_cb: None,
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epoll_threads: None,
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ctrl_queue_epoll_thread: None,
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paused: Arc::new(AtomicBool::new(false)),
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queue_size: vec![queue_size; queue_num],
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})
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}
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/// Create a new virtio network device with the given IP address and
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/// netmask.
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pub fn new(
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if_name: Option<&str>,
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ip_addr: Option<Ipv4Addr>,
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netmask: Option<Ipv4Addr>,
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guest_mac: Option<MacAddr>,
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iommu: bool,
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num_queues: usize,
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queue_size: u16,
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) -> Result<Self> {
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let taps = open_tap(if_name, ip_addr, netmask, num_queues / 2).map_err(Error::OpenTap)?;
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Self::new_with_tap(taps, guest_mac, iommu, num_queues, queue_size)
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}
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}
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impl Drop for Net {
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fn drop(&mut self) {
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if let Some(kill_evt) = self.kill_evt.take() {
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// Ignore the result because there is nothing we can do about it.
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let _ = kill_evt.write(1);
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}
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}
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}
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impl VirtioDevice for Net {
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fn device_type(&self) -> u32 {
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VirtioDeviceType::TYPE_NET as u32
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}
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fn queue_max_sizes(&self) -> &[u16] {
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&self.queue_size.as_slice()
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}
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fn features(&self) -> u64 {
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self.avail_features
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}
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fn ack_features(&mut self, value: u64) {
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let mut v = value;
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// Check if the guest is ACK'ing a feature that we didn't claim to have.
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let unrequested_features = v & !self.avail_features;
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if unrequested_features != 0 {
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warn!("Received acknowledge request for unknown feature: {:x}", v);
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// Don't count these features as acked.
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v &= !unrequested_features;
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}
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self.acked_features |= v;
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}
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fn read_config(&self, offset: u64, mut data: &mut [u8]) {
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let config_slice = self.config.as_slice();
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let config_len = config_slice.len() as u64;
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if offset >= config_len {
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error!("Failed to read config space");
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return;
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}
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if let Some(end) = offset.checked_add(data.len() as u64) {
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// This write can't fail, offset and end are checked against config_len.
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data.write_all(&config_slice[offset as usize..cmp::min(end, config_len) as usize])
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.unwrap();
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}
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}
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fn write_config(&mut self, offset: u64, data: &[u8]) {
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let config_slice = self.config.as_mut_slice();
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let data_len = data.len() as u64;
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let config_len = config_slice.len() as u64;
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if offset + data_len > config_len {
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error!("Failed to write config space");
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return;
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}
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let (_, right) = config_slice.split_at_mut(offset as usize);
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right.copy_from_slice(&data[..]);
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}
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fn activate(
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&mut self,
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mem: Arc<ArcSwap<GuestMemoryMmap>>,
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interrupt_cb: Arc<dyn VirtioInterrupt>,
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mut queues: Vec<Queue>,
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mut queue_evts: Vec<EventFd>,
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) -> ActivateResult {
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if queues.len() != self.queue_size.len() || queue_evts.len() != self.queue_size.len() {
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error!(
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"Cannot perform activate. Expected {} queue(s), got {}",
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self.queue_size.len(),
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queues.len()
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);
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return Err(ActivateError::BadActivate);
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}
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let (self_kill_evt, kill_evt) = EventFd::new(EFD_NONBLOCK)
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.and_then(|e| Ok((e.try_clone()?, e)))
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.map_err(|e| {
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error!("failed creating kill EventFd pair: {}", e);
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ActivateError::BadActivate
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})?;
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self.kill_evt = Some(self_kill_evt);
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let (self_pause_evt, pause_evt) = EventFd::new(EFD_NONBLOCK)
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.and_then(|e| Ok((e.try_clone()?, e)))
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.map_err(|e| {
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error!("failed creating pause EventFd pair: {}", e);
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ActivateError::BadActivate
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})?;
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self.pause_evt = Some(self_pause_evt);
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if let Some(mut taps) = self.taps.clone() {
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// Save the interrupt EventFD as we need to return it on reset
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// but clone it to pass into the thread.
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self.interrupt_cb = Some(interrupt_cb.clone());
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let mut tmp_queue_evts: Vec<EventFd> = Vec::new();
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for queue_evt in queue_evts.iter() {
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// Save the queue EventFD as we need to return it on reset
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// but clone it to pass into the thread.
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tmp_queue_evts.push(queue_evt.try_clone().map_err(|e| {
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error!("failed to clone queue EventFd: {}", e);
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ActivateError::BadActivate
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})?);
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}
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self.queue_evts = Some(tmp_queue_evts);
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let queue_num = queues.len();
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|
if (self.acked_features & 1 << VIRTIO_NET_F_CTRL_VQ) != 0 && queue_num % 2 != 0 {
|
|
let cvq_queue = queues.remove(queue_num - 1);
|
|
let cvq_queue_evt = queue_evts.remove(queue_num - 1);
|
|
|
|
let mut ctrl_handler = NetCtrlEpollHandler {
|
|
mem: mem.clone(),
|
|
kill_evt: kill_evt.try_clone().unwrap(),
|
|
pause_evt: pause_evt.try_clone().unwrap(),
|
|
ctrl_q: CtrlVirtio::new(cvq_queue, cvq_queue_evt),
|
|
epoll_fd: 0,
|
|
};
|
|
|
|
let paused = self.paused.clone();
|
|
thread::Builder::new()
|
|
.name("virtio_net".to_string())
|
|
.spawn(move || ctrl_handler.run_ctrl(paused))
|
|
.map(|thread| self.ctrl_queue_epoll_thread = Some(thread))
|
|
.map_err(|e| {
|
|
error!("failed to clone queue EventFd: {}", e);
|
|
ActivateError::BadActivate
|
|
})?;
|
|
}
|
|
|
|
let mut epoll_threads = Vec::new();
|
|
for _ in 0..taps.len() {
|
|
let rx = RxVirtio::new();
|
|
let tx = TxVirtio::new();
|
|
let rx_tap_listening = false;
|
|
|
|
let mut queue_pair = Vec::new();
|
|
queue_pair.push(queues.remove(0));
|
|
queue_pair.push(queues.remove(0));
|
|
|
|
let mut queue_evt_pair = Vec::new();
|
|
queue_evt_pair.push(queue_evts.remove(0));
|
|
queue_evt_pair.push(queue_evts.remove(0));
|
|
|
|
let mut handler = NetEpollHandler {
|
|
mem: mem.clone(),
|
|
tap: taps.remove(0),
|
|
rx,
|
|
tx,
|
|
interrupt_cb: interrupt_cb.clone(),
|
|
kill_evt: kill_evt.try_clone().unwrap(),
|
|
pause_evt: pause_evt.try_clone().unwrap(),
|
|
epoll_fd: 0,
|
|
rx_tap_listening,
|
|
};
|
|
|
|
let paused = self.paused.clone();
|
|
thread::Builder::new()
|
|
.name("virtio_net".to_string())
|
|
.spawn(move || handler.run(paused, queue_pair, queue_evt_pair))
|
|
.map(|thread| epoll_threads.push(thread))
|
|
.map_err(|e| {
|
|
error!("failed to clone queue EventFd: {}", e);
|
|
ActivateError::BadActivate
|
|
})?;
|
|
}
|
|
|
|
self.epoll_threads = Some(epoll_threads);
|
|
|
|
return Ok(());
|
|
}
|
|
Err(ActivateError::BadActivate)
|
|
}
|
|
|
|
fn reset(&mut self) -> Option<(Arc<dyn VirtioInterrupt>, Vec<EventFd>)> {
|
|
// We first must resume the virtio thread if it was paused.
|
|
if self.pause_evt.take().is_some() {
|
|
self.resume().ok()?;
|
|
}
|
|
|
|
if let Some(kill_evt) = self.kill_evt.take() {
|
|
// Ignore the result because there is nothing we can do about it.
|
|
let _ = kill_evt.write(1);
|
|
}
|
|
|
|
// Return the interrupt and queue EventFDs
|
|
Some((
|
|
self.interrupt_cb.take().unwrap(),
|
|
self.queue_evts.take().unwrap(),
|
|
))
|
|
}
|
|
}
|
|
|
|
virtio_ctrl_q_pausable!(Net);
|
|
impl Snapshotable for Net {}
|
|
impl Migratable for Net {}
|