ping.rs 9.3 KB

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  1. mod utils;
  2. use byteorder::{ByteOrder, NetworkEndian};
  3. use log::debug;
  4. use std::cmp;
  5. use std::collections::BTreeMap;
  6. use std::collections::HashMap;
  7. use std::os::unix::io::AsRawFd;
  8. use std::str::FromStr;
  9. use smoltcp::iface::{InterfaceBuilder, NeighborCache, Routes};
  10. use smoltcp::phy::wait as phy_wait;
  11. use smoltcp::phy::Device;
  12. use smoltcp::socket::{IcmpEndpoint, IcmpPacketMetadata, IcmpSocket, IcmpSocketBuffer};
  13. use smoltcp::wire::{
  14. EthernetAddress, Icmpv4Packet, Icmpv4Repr, Icmpv6Packet, Icmpv6Repr, IpAddress, IpCidr,
  15. Ipv4Address, Ipv6Address,
  16. };
  17. use smoltcp::{
  18. phy::Medium,
  19. time::{Duration, Instant},
  20. };
  21. macro_rules! send_icmp_ping {
  22. ( $repr_type:ident, $packet_type:ident, $ident:expr, $seq_no:expr,
  23. $echo_payload:expr, $socket:expr, $remote_addr:expr ) => {{
  24. let icmp_repr = $repr_type::EchoRequest {
  25. ident: $ident,
  26. seq_no: $seq_no,
  27. data: &$echo_payload,
  28. };
  29. let icmp_payload = $socket.send(icmp_repr.buffer_len(), $remote_addr).unwrap();
  30. let icmp_packet = $packet_type::new_unchecked(icmp_payload);
  31. (icmp_repr, icmp_packet)
  32. }};
  33. }
  34. macro_rules! get_icmp_pong {
  35. ( $repr_type:ident, $repr:expr, $payload:expr, $waiting_queue:expr, $remote_addr:expr,
  36. $timestamp:expr, $received:expr ) => {{
  37. if let $repr_type::EchoReply { seq_no, data, .. } = $repr {
  38. if let Some(_) = $waiting_queue.get(&seq_no) {
  39. let packet_timestamp_ms = NetworkEndian::read_i64(data);
  40. println!(
  41. "{} bytes from {}: icmp_seq={}, time={}ms",
  42. data.len(),
  43. $remote_addr,
  44. seq_no,
  45. $timestamp.total_millis() - packet_timestamp_ms
  46. );
  47. $waiting_queue.remove(&seq_no);
  48. $received += 1;
  49. }
  50. }
  51. }};
  52. }
  53. fn main() {
  54. utils::setup_logging("warn");
  55. let (mut opts, mut free) = utils::create_options();
  56. utils::add_tuntap_options(&mut opts, &mut free);
  57. utils::add_middleware_options(&mut opts, &mut free);
  58. opts.optopt(
  59. "c",
  60. "count",
  61. "Amount of echo request packets to send (default: 4)",
  62. "COUNT",
  63. );
  64. opts.optopt(
  65. "i",
  66. "interval",
  67. "Interval between successive packets sent (seconds) (default: 1)",
  68. "INTERVAL",
  69. );
  70. opts.optopt(
  71. "",
  72. "timeout",
  73. "Maximum wait duration for an echo response packet (seconds) (default: 5)",
  74. "TIMEOUT",
  75. );
  76. free.push("ADDRESS");
  77. let mut matches = utils::parse_options(&opts, free);
  78. let device = utils::parse_tuntap_options(&mut matches);
  79. let fd = device.as_raw_fd();
  80. let device = utils::parse_middleware_options(&mut matches, device, /*loopback=*/ false);
  81. let device_caps = device.capabilities();
  82. let address = IpAddress::from_str(&matches.free[0]).expect("invalid address format");
  83. let count = matches
  84. .opt_str("count")
  85. .map(|s| usize::from_str(&s).unwrap())
  86. .unwrap_or(4);
  87. let interval = matches
  88. .opt_str("interval")
  89. .map(|s| Duration::from_secs(u64::from_str(&s).unwrap()))
  90. .unwrap_or_else(|| Duration::from_secs(1));
  91. let timeout = Duration::from_secs(
  92. matches
  93. .opt_str("timeout")
  94. .map(|s| u64::from_str(&s).unwrap())
  95. .unwrap_or(5),
  96. );
  97. let neighbor_cache = NeighborCache::new(BTreeMap::new());
  98. let remote_addr = address;
  99. let icmp_rx_buffer = IcmpSocketBuffer::new(vec![IcmpPacketMetadata::EMPTY], vec![0; 256]);
  100. let icmp_tx_buffer = IcmpSocketBuffer::new(vec![IcmpPacketMetadata::EMPTY], vec![0; 256]);
  101. let icmp_socket = IcmpSocket::new(icmp_rx_buffer, icmp_tx_buffer);
  102. let ethernet_addr = EthernetAddress([0x02, 0x00, 0x00, 0x00, 0x00, 0x02]);
  103. let src_ipv6 = IpAddress::v6(0xfdaa, 0, 0, 0, 0, 0, 0, 1);
  104. let ip_addrs = [
  105. IpCidr::new(IpAddress::v4(192, 168, 69, 1), 24),
  106. IpCidr::new(src_ipv6, 64),
  107. IpCidr::new(IpAddress::v6(0xfe80, 0, 0, 0, 0, 0, 0, 1), 64),
  108. ];
  109. let default_v4_gw = Ipv4Address::new(192, 168, 69, 100);
  110. let default_v6_gw = Ipv6Address::new(0xfe80, 0, 0, 0, 0, 0, 0, 0x100);
  111. let mut routes_storage = [None; 2];
  112. let mut routes = Routes::new(&mut routes_storage[..]);
  113. routes.add_default_ipv4_route(default_v4_gw).unwrap();
  114. routes.add_default_ipv6_route(default_v6_gw).unwrap();
  115. let medium = device.capabilities().medium;
  116. let mut builder = InterfaceBuilder::new(device, vec![])
  117. .ip_addrs(ip_addrs)
  118. .routes(routes);
  119. if medium == Medium::Ethernet {
  120. builder = builder
  121. .hardware_addr(ethernet_addr.into())
  122. .neighbor_cache(neighbor_cache);
  123. }
  124. let mut iface = builder.finalize();
  125. let icmp_handle = iface.add_socket(icmp_socket);
  126. let mut send_at = Instant::from_millis(0);
  127. let mut seq_no = 0;
  128. let mut received = 0;
  129. let mut echo_payload = [0xffu8; 40];
  130. let mut waiting_queue = HashMap::new();
  131. let ident = 0x22b;
  132. loop {
  133. let timestamp = Instant::now();
  134. match iface.poll(timestamp) {
  135. Ok(_) => {}
  136. Err(e) => {
  137. debug!("poll error: {}", e);
  138. }
  139. }
  140. let timestamp = Instant::now();
  141. let socket = iface.get_socket::<IcmpSocket>(icmp_handle);
  142. if !socket.is_open() {
  143. socket.bind(IcmpEndpoint::Ident(ident)).unwrap();
  144. send_at = timestamp;
  145. }
  146. if socket.can_send() && seq_no < count as u16 && send_at <= timestamp {
  147. NetworkEndian::write_i64(&mut echo_payload, timestamp.total_millis());
  148. match remote_addr {
  149. IpAddress::Ipv4(_) => {
  150. let (icmp_repr, mut icmp_packet) = send_icmp_ping!(
  151. Icmpv4Repr,
  152. Icmpv4Packet,
  153. ident,
  154. seq_no,
  155. echo_payload,
  156. socket,
  157. remote_addr
  158. );
  159. icmp_repr.emit(&mut icmp_packet, &device_caps.checksum);
  160. }
  161. IpAddress::Ipv6(_) => {
  162. let (icmp_repr, mut icmp_packet) = send_icmp_ping!(
  163. Icmpv6Repr,
  164. Icmpv6Packet,
  165. ident,
  166. seq_no,
  167. echo_payload,
  168. socket,
  169. remote_addr
  170. );
  171. icmp_repr.emit(
  172. &src_ipv6,
  173. &remote_addr,
  174. &mut icmp_packet,
  175. &device_caps.checksum,
  176. );
  177. }
  178. _ => unimplemented!(),
  179. }
  180. waiting_queue.insert(seq_no, timestamp);
  181. seq_no += 1;
  182. send_at += interval;
  183. }
  184. if socket.can_recv() {
  185. let (payload, _) = socket.recv().unwrap();
  186. match remote_addr {
  187. IpAddress::Ipv4(_) => {
  188. let icmp_packet = Icmpv4Packet::new_checked(&payload).unwrap();
  189. let icmp_repr = Icmpv4Repr::parse(&icmp_packet, &device_caps.checksum).unwrap();
  190. get_icmp_pong!(
  191. Icmpv4Repr,
  192. icmp_repr,
  193. payload,
  194. waiting_queue,
  195. remote_addr,
  196. timestamp,
  197. received
  198. );
  199. }
  200. IpAddress::Ipv6(_) => {
  201. let icmp_packet = Icmpv6Packet::new_checked(&payload).unwrap();
  202. let icmp_repr = Icmpv6Repr::parse(
  203. &remote_addr,
  204. &src_ipv6,
  205. &icmp_packet,
  206. &device_caps.checksum,
  207. )
  208. .unwrap();
  209. get_icmp_pong!(
  210. Icmpv6Repr,
  211. icmp_repr,
  212. payload,
  213. waiting_queue,
  214. remote_addr,
  215. timestamp,
  216. received
  217. );
  218. }
  219. _ => unimplemented!(),
  220. }
  221. }
  222. waiting_queue.retain(|seq, from| {
  223. if timestamp - *from < timeout {
  224. true
  225. } else {
  226. println!("From {} icmp_seq={} timeout", remote_addr, seq);
  227. false
  228. }
  229. });
  230. if seq_no == count as u16 && waiting_queue.is_empty() {
  231. break;
  232. }
  233. let timestamp = Instant::now();
  234. match iface.poll_at(timestamp) {
  235. Some(poll_at) if timestamp < poll_at => {
  236. let resume_at = cmp::min(poll_at, send_at);
  237. phy_wait(fd, Some(resume_at - timestamp)).expect("wait error");
  238. }
  239. Some(_) => (),
  240. None => {
  241. phy_wait(fd, Some(send_at - timestamp)).expect("wait error");
  242. }
  243. }
  244. }
  245. println!("--- {} ping statistics ---", remote_addr);
  246. println!(
  247. "{} packets transmitted, {} received, {:.0}% packet loss",
  248. seq_no,
  249. received,
  250. 100.0 * (seq_no - received) as f64 / seq_no as f64
  251. );
  252. }