use crate::{bytes_buffer::BytesBuffer, dns::WireFormat, lib::Cow, lib::Write};
use super::RR;
#[derive(Debug, PartialEq, Eq, Hash, Clone)]
pub struct CERT<'a> {
pub type_code: u16,
pub key_tag: u16,
pub algorithm: u8,
pub certificate: Cow<'a, [u8]>,
}
impl RR for CERT<'_> {
const TYPE_CODE: u16 = 37;
}
impl<'a> WireFormat<'a> for CERT<'a> {
const MINIMUM_LEN: usize = 5;
fn parse(data: &mut BytesBuffer<'a>) -> crate::Result<Self>
where
Self: Sized,
{
let type_code = data.get_u16()?;
let key_tag = data.get_u16()?;
let algorithm = data.get_u8()?;
let certificate = data.get_remaining();
Ok(Self {
type_code,
key_tag,
algorithm,
certificate: Cow::Borrowed(certificate),
})
}
fn write_to<T: Write>(&self, out: &mut T) -> crate::Result<()> {
out.write_all(&self.type_code.to_be_bytes())?;
out.write_all(&self.key_tag.to_be_bytes())?;
out.write_all(&[self.algorithm])?;
out.write_all(&self.certificate)?;
Ok(())
}
fn len(&self) -> usize {
self.certificate.len() + Self::MINIMUM_LEN
}
}
impl CERT<'_> {
pub fn into_owned<'b>(self) -> CERT<'b> {
CERT {
type_code: self.type_code,
key_tag: self.key_tag,
algorithm: self.algorithm,
certificate: self.certificate.into_owned().into(),
}
}
}
#[cfg(test)]
mod tests {
use crate::lib::{vec, Vec};
use super::*;
#[test]
fn parse_and_write_cert() {
let type_code = 12345u16;
let key_tag = 8u16;
let algorithm = 2u8;
let certificate = vec![1, 2, 3, 4, 5];
let rdata = CERT {
type_code,
key_tag,
algorithm,
certificate: Cow::Owned(certificate),
};
let mut writer = Vec::new();
rdata.write_to(&mut writer).unwrap();
let rdata = CERT::parse(&mut (&writer[..]).into()).unwrap();
assert_eq!(rdata.type_code, type_code);
assert_eq!(rdata.key_tag, key_tag);
assert_eq!(rdata.algorithm, algorithm);
assert_eq!(&*rdata.certificate, &[1, 2, 3, 4, 5]);
}
#[test]
#[cfg(feature = "std")]
fn parse_sample() -> Result<(), Box<dyn std::error::Error>> {
use crate::{rdata::RData, ResourceRecord};
let sample_file = std::fs::read("samples/zonefile/CERT.sample")?;
let sample_rdata = match ResourceRecord::parse(&mut (&sample_file[..]).into())?.rdata {
RData::CERT(rdata) => rdata,
_ => unreachable!(),
};
assert_eq!(sample_rdata.type_code, 3);
assert_eq!(sample_rdata.key_tag, 0);
assert_eq!(sample_rdata.algorithm, 0);
assert_eq!(*sample_rdata.certificate, *b"\x00\x00\x00\x00\x00");
Ok(())
}
}