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use super::Result;
use etherparse::*;
use rand::Rng;
#[derive(Debug)]
pub struct ReusablePacketWriter {
inner: Vec<u8>,
}
impl ReusablePacketWriter {
#[inline]
pub fn new() -> Self {
Self {
inner: Vec::with_capacity(u16::MAX as _),
}
}
#[inline]
pub fn as_slice(&self) -> &[u8] {
self.inner.as_slice()
}
#[inline]
pub fn build_ipv4_header(
time_to_live: u8,
protocol: u8,
source: [u8; 4],
destination: [u8; 4],
) -> IpHeader {
let mut ipv4_header = Ipv4Header::default();
ipv4_header.identification = rand::thread_rng().gen();
ipv4_header.time_to_live = time_to_live;
ipv4_header.protocol = protocol;
ipv4_header.source = source;
ipv4_header.destination = destination;
IpHeader::Version4(ipv4_header, Default::default())
}
#[inline]
pub fn write_udp_packet(
&mut self,
source: [u8; 4],
source_port: u16,
destination: [u8; 4],
destination_port: u16,
payload: &[u8],
time_to_live: u8,
) -> Result<()> {
self.inner.clear();
let ip_header = Self::build_ipv4_header(time_to_live, ip_number::UDP, source, destination);
PacketBuilder::ip(ip_header)
.udp(source_port, destination_port)
.write(&mut self.inner, payload)?;
Ok(())
}
#[inline]
pub fn write_tcp_syn_packet(
&mut self,
source: [u8; 4],
source_port: u16,
destination: [u8; 4],
destination_port: u16,
payload: &[u8],
time_to_live: u8,
sequence_number: u32,
window_size: u16,
) -> Result<()> {
self.inner.clear();
let ip_header = Self::build_ipv4_header(time_to_live, ip_number::TCP, source, destination);
PacketBuilder::ip(ip_header)
.tcp(source_port, destination_port, sequence_number, window_size)
.syn()
.write(&mut self.inner, payload)?;
Ok(())
}
}