use crate::buffer::Buf;
use crate::types::SignatureScheme;
use arrayvec::ArrayVec;
use nom::Err;
use nom::IResult;
use nom::bytes::complete::take;
use nom::error::{Error, ErrorKind};
#[derive(Debug, Clone, PartialEq, Eq)]
pub struct SignatureAlgorithmsExtension {
pub supported_signature_algorithms: ArrayVec<SignatureScheme, 2>,
}
impl SignatureAlgorithmsExtension {
pub fn default() -> Self {
SignatureAlgorithmsExtension {
supported_signature_algorithms: SignatureScheme::supported(),
}
}
pub fn parse(input: &[u8]) -> IResult<&[u8], SignatureAlgorithmsExtension> {
let (input, list_len) = nom::number::complete::be_u16(input)?;
if list_len == 0 || list_len % 2 != 0 {
return Err(Err::Failure(Error::new(input, ErrorKind::LengthValue)));
}
let mut algorithms: ArrayVec<SignatureScheme, 2> = ArrayVec::new();
let (input, mut current_input) = take(list_len)(input)?;
if !input.is_empty() {
return Err(Err::Failure(Error::new(input, ErrorKind::LengthValue)));
}
while !current_input.is_empty() {
let (rest, scheme) = SignatureScheme::parse(current_input)?;
if scheme.is_supported() {
algorithms
.try_push(scheme)
.map_err(|_| Err::Failure(Error::new(current_input, ErrorKind::LengthValue)))?;
}
current_input = rest;
}
Ok((
input,
SignatureAlgorithmsExtension {
supported_signature_algorithms: algorithms,
},
))
}
pub fn serialize(&self, output: &mut Buf) {
output.extend_from_slice(
&((self.supported_signature_algorithms.len() * 2) as u16).to_be_bytes(),
);
for scheme in &self.supported_signature_algorithms {
output.extend_from_slice(&scheme.as_u16().to_be_bytes());
}
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_signature_algorithms_extension() {
let mut algorithms: ArrayVec<SignatureScheme, 2> = ArrayVec::new();
algorithms.push(SignatureScheme::ECDSA_SECP256R1_SHA256);
algorithms.push(SignatureScheme::ECDSA_SECP384R1_SHA384);
let ext = SignatureAlgorithmsExtension {
supported_signature_algorithms: algorithms.clone(),
};
let mut serialized = Buf::new();
ext.serialize(&mut serialized);
let expected = [
0x00, 0x04, 0x04, 0x03, 0x05, 0x03, ];
assert_eq!(&*serialized, expected);
let (_, parsed) = SignatureAlgorithmsExtension::parse(&serialized).unwrap();
assert_eq!(parsed.supported_signature_algorithms, algorithms);
}
#[test]
fn capacity_matches_supported() {
let ext = SignatureAlgorithmsExtension::default();
assert_eq!(
ext.supported_signature_algorithms.capacity(),
SignatureScheme::supported().len(),
"SignatureAlgorithmsExtension capacity must match supported schemes count"
);
}
#[test]
fn too_many_supported_signature_algorithms_are_rejected() {
let mut bytes = Vec::new();
let supported = SignatureScheme::supported();
let count = supported.len() + 1;
bytes.extend_from_slice(&(count as u16 * 2).to_be_bytes());
for _ in 0..count {
bytes.extend_from_slice(
&SignatureScheme::ECDSA_SECP256R1_SHA256
.as_u16()
.to_be_bytes(),
);
}
let result = SignatureAlgorithmsExtension::parse(&bytes);
assert!(
matches!(
result,
Err(nom::Err::Failure(error))
if error.code == nom::error::ErrorKind::LengthValue
),
"too many supported signature algorithms should fail with LengthValue"
);
}
#[test]
fn odd_length_signature_algorithms_are_rejected_without_panic() {
let result = std::panic::catch_unwind(|| {
SignatureAlgorithmsExtension::parse(&[
0x00, 0x01, 0x04, 0x03, ])
});
assert!(
result.is_ok(),
"odd signature_algorithms length must not panic"
);
assert!(
matches!(
result.unwrap(),
Err(nom::Err::Failure(error))
if error.code == nom::error::ErrorKind::LengthValue
),
"odd signature_algorithms length should fail with LengthValue"
);
}
#[test]
fn empty_signature_algorithms_are_rejected() {
let result = SignatureAlgorithmsExtension::parse(&[
0x00, 0x00, ]);
assert!(
matches!(
result,
Err(nom::Err::Failure(error))
if error.code == nom::error::ErrorKind::LengthValue
),
"empty signature_algorithms vector should fail with LengthValue"
);
}
#[test]
fn trailing_signature_algorithms_bytes_are_rejected() {
let result = SignatureAlgorithmsExtension::parse(&[
0x00, 0x02, 0x04, 0x03, 0xff, ]);
assert!(
matches!(
result,
Err(nom::Err::Failure(error))
if error.code == nom::error::ErrorKind::LengthValue
),
"trailing signature_algorithms bytes should fail with LengthValue"
);
}
}