1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
use std::{
collections::HashMap,
net::{IpAddr, SocketAddr},
sync::Arc,
time::{Duration, Instant},
};
use parking_lot::Mutex;
use rand::random;
use tokio::{sync::mpsc, task, time::timeout};
use tracing::error;
use uuid::Uuid;
use crate::client::{AsyncSocket, Message};
use crate::error::{Result, SurgeError};
use crate::icmp::{icmpv4, icmpv6, IcmpPacket};
type Token = (u16, u16);
#[derive(Debug, Clone)]
struct Cache {
inner: Arc<Mutex<HashMap<Token, Instant>>>,
}
impl Cache {
fn new() -> Cache {
Cache {
inner: Arc::new(Mutex::new(HashMap::new())),
}
}
fn insert(&self, ident: u16, seq_cnt: u16, time: Instant) {
self.inner.lock().insert((ident, seq_cnt), time);
}
fn remove(&self, ident: u16, seq_cnt: u16) -> Option<Instant> {
self.inner.lock().remove(&(ident, seq_cnt))
}
}
pub struct Pinger {
pub destination: IpAddr,
pub ident: u16,
pub size: usize,
timeout: Duration,
socket: AsyncSocket,
rx: mpsc::Receiver<Message>,
cache: Cache,
key: Uuid,
}
impl Pinger {
pub(crate) fn new(
host: IpAddr,
socket: AsyncSocket,
rx: mpsc::Receiver<Message>,
key: Uuid,
) -> Pinger {
Pinger {
destination: host,
ident: random(),
size: 56,
timeout: Duration::from_secs(2),
socket,
rx,
cache: Cache::new(),
key,
}
}
pub fn ident(&mut self, val: u16) -> &mut Pinger {
self.ident = val;
self
}
pub fn size(&mut self, size: usize) -> &mut Pinger {
self.size = if size < 16 { 16 } else { size };
self
}
pub fn timeout(&mut self, timeout: Duration) -> &mut Pinger {
self.timeout = timeout;
self
}
async fn recv_reply(&mut self, seq_cnt: u16) -> Result<(IcmpPacket, Duration)> {
loop {
let message = self.rx.recv().await.ok_or(SurgeError::NetworkError)?;
let packet = match self.destination {
IpAddr::V4(_) => icmpv4::Icmpv4Packet::decode(&message.packet).map(IcmpPacket::V4),
IpAddr::V6(a) => {
icmpv6::Icmpv6Packet::decode(&message.packet, a).map(IcmpPacket::V6)
}
};
match packet {
Ok(packet) => {
if packet.check_reply_packet(self.destination, seq_cnt, self.ident) {
if let Some(ins) = self.cache.remove(self.ident, seq_cnt) {
return Ok((packet, message.when - ins));
}
}
}
Err(SurgeError::EchoRequestPacket) => continue,
Err(e) => return Err(e),
}
}
}
pub async fn ping(&mut self, seq_cnt: u16) -> Result<(IcmpPacket, Duration)> {
let sender = self.socket.clone();
let mut packet = match self.destination {
IpAddr::V4(_) => icmpv4::make_icmpv4_echo_packet(
self.ident,
seq_cnt,
self.size,
self.key.as_bytes(),
)?,
IpAddr::V6(_) => icmpv6::make_icmpv6_echo_packet(
self.ident,
seq_cnt,
self.size,
self.key.as_bytes(),
)?,
};
let sock_addr = SocketAddr::new(self.destination, 0);
let ident = self.ident;
let cache = self.cache.clone();
task::spawn(async move {
if let Err(e) = sender.send_to(&mut packet, &sock_addr).await {
error!("socket send packet error: {}", e)
}
cache.insert(ident, seq_cnt, Instant::now());
});
match timeout(self.timeout, self.recv_reply(seq_cnt)).await {
Ok(reply) => reply.map_err(|err| {
self.cache.remove(ident, seq_cnt);
err
}),
Err(_) => {
self.cache.remove(ident, seq_cnt);
Err(SurgeError::Timeout { seq: seq_cnt })
}
}
}
}