multicast6.rs 3.0 KB

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  1. mod utils;
  2. use std::os::unix::io::AsRawFd;
  3. use smoltcp::iface::{Config, Interface, SocketSet};
  4. use smoltcp::phy::wait as phy_wait;
  5. use smoltcp::phy::{Device, Medium};
  6. use smoltcp::socket::udp;
  7. use smoltcp::time::Instant;
  8. use smoltcp::wire::{EthernetAddress, IpAddress, IpCidr, Ipv6Address};
  9. // Note: If testing with a tap interface in linux, you may need to specify the
  10. // interface index when addressing. E.g.,
  11. //
  12. // ```
  13. // ncat -u ff02::1234%tap0 8123
  14. // ```
  15. //
  16. // will send packets to the multicast group we join below on tap0.
  17. const PORT: u16 = 8123;
  18. const GROUP: [u16; 8] = [0xff02, 0, 0, 0, 0, 0, 0, 0x1234];
  19. const LOCAL_ADDR: [u16; 8] = [0xfe80, 0, 0, 0, 0, 0, 0, 0x101];
  20. const ROUTER_ADDR: [u16; 8] = [0xfe80, 0, 0, 0, 0, 0, 0, 0x100];
  21. fn main() {
  22. utils::setup_logging("warn");
  23. let (mut opts, mut free) = utils::create_options();
  24. utils::add_tuntap_options(&mut opts, &mut free);
  25. utils::add_middleware_options(&mut opts, &mut free);
  26. let mut matches = utils::parse_options(&opts, free);
  27. let device = utils::parse_tuntap_options(&mut matches);
  28. let fd = device.as_raw_fd();
  29. let mut device =
  30. utils::parse_middleware_options(&mut matches, device, /*loopback=*/ false);
  31. // Create interface
  32. let local_addr = Ipv6Address::from_parts(&LOCAL_ADDR);
  33. let ethernet_addr = EthernetAddress([0x02, 0x00, 0x00, 0x00, 0x00, 0x02]);
  34. let mut config = match device.capabilities().medium {
  35. Medium::Ethernet => Config::new(ethernet_addr.into()),
  36. Medium::Ip => Config::new(smoltcp::wire::HardwareAddress::Ip),
  37. Medium::Ieee802154 => todo!(),
  38. };
  39. config.random_seed = rand::random();
  40. let mut iface = Interface::new(config, &mut device, Instant::now());
  41. iface.update_ip_addrs(|ip_addrs| {
  42. ip_addrs
  43. .push(IpCidr::new(IpAddress::from(local_addr), 64))
  44. .unwrap();
  45. });
  46. iface
  47. .routes_mut()
  48. .add_default_ipv6_route(Ipv6Address::from_parts(&ROUTER_ADDR))
  49. .unwrap();
  50. // Create sockets
  51. let mut sockets = SocketSet::new(vec![]);
  52. let udp_rx_buffer = udp::PacketBuffer::new(vec![udp::PacketMetadata::EMPTY; 4], vec![0; 1024]);
  53. let udp_tx_buffer = udp::PacketBuffer::new(vec![udp::PacketMetadata::EMPTY], vec![0; 0]);
  54. let udp_socket = udp::Socket::new(udp_rx_buffer, udp_tx_buffer);
  55. let udp_handle = sockets.add(udp_socket);
  56. // Join a multicast group
  57. iface
  58. .join_multicast_group(Ipv6Address::from_parts(&GROUP))
  59. .unwrap();
  60. loop {
  61. let timestamp = Instant::now();
  62. iface.poll(timestamp, &mut device, &mut sockets);
  63. let socket = sockets.get_mut::<udp::Socket>(udp_handle);
  64. if !socket.is_open() {
  65. socket.bind(PORT).unwrap()
  66. }
  67. if socket.can_recv() {
  68. socket
  69. .recv()
  70. .map(|(data, sender)| println!("traffic: {} UDP bytes from {}", data.len(), sender))
  71. .unwrap_or_else(|e| println!("Recv UDP error: {:?}", e));
  72. }
  73. phy_wait(fd, iface.poll_delay(timestamp, &sockets)).expect("wait error");
  74. }
  75. }