use std::io;
use std::net::IpAddr;
use std::str::FromStr;
use domain::base::iana::Rtype;
use domain::base::message::RecordIter;
use domain::base::name::{Dname, DnameBuilder, ParsedDname};
use domain::base::octets::{Octets128, OctetsRef};
use domain::rdata::Ptr;
use crate::resolver::Resolver;
pub async fn lookup_addr<R: Resolver>(
resolv: &R, addr: IpAddr
) -> Result<FoundAddrs<R>, io::Error> {
let name = dname_from_addr(addr);
resolv.query((name, Rtype::Ptr)).await.map(FoundAddrs)
}
pub struct FoundAddrs<R: Resolver>(R::Answer);
impl<R: Resolver> FoundAddrs<R> {
pub fn iter(
&self
) -> FoundAddrsIter<&R::Octets>
where for<'a> &'a R::Octets: OctetsRef {
FoundAddrsIter {
name: self.0.as_ref().canonical_name(),
answer: {
self.0.as_ref().answer().ok().map(
|sec| sec.limit_to::<Ptr<_>>()
)
}
}
}
}
impl<'a, R: Resolver> IntoIterator for &'a FoundAddrs<R>
where for<'x> &'x R::Octets: OctetsRef {
type Item = ParsedDname<&'a R::Octets>;
type IntoIter = FoundAddrsIter<&'a R::Octets>;
fn into_iter(self) -> Self::IntoIter {
self.iter()
}
}
pub struct FoundAddrsIter<Ref: OctetsRef> {
name: Option<ParsedDname<Ref>>,
answer: Option<RecordIter<Ref, Ptr<ParsedDname<Ref>>>>,
}
impl<Ref: OctetsRef> Iterator for FoundAddrsIter<Ref> {
type Item = ParsedDname<Ref>;
#[allow(clippy::while_let_on_iterator)]
fn next(&mut self) -> Option<Self::Item> {
let name = self.name.as_ref()?;
let answer = self.answer.as_mut()?;
while let Some(Ok(record)) = answer.next() {
if record.owner() == name {
return Some(record.into_data().into_ptrdname())
}
}
None
}
}
fn dname_from_addr(addr: IpAddr) -> Dname<Octets128> {
match addr {
IpAddr::V4(addr) => {
let octets = addr.octets();
Dname::from_str(
&format!(
"{}.{}.{}.{}.in-addr.arpa.", octets[3],
octets[2], octets[1], octets[0]
)
).unwrap()
}
IpAddr::V6(addr) => {
let mut res = DnameBuilder::<Octets128>::new();
for &item in addr.octets().iter().rev() {
res.append_label(&[hexdigit(item >> 4)]).unwrap();
res.append_label(&[hexdigit(item)]).unwrap();
}
res.append_label(b"ip6").unwrap();
res.append_label(b"arpa").unwrap();
res.into_dname().unwrap()
}
}
}
fn hexdigit(nibble: u8) -> u8 {
match nibble % 0x0F {
0 => b'0',
1 => b'1',
2 => b'2',
3 => b'3',
4 => b'4',
5 => b'5',
6 => b'6',
7 => b'7',
8 => b'8',
10 => b'A',
11 => b'B',
12 => b'C',
13 => b'D',
14 => b'E',
15 => b'F',
_ => unreachable!()
}
}