use byteorder::{ByteOrder, LittleEndian};
use noodles_vcf::variant::record::AlternateBases;
use crate::common::noodles;
#[derive(Default, Debug, PartialEq, Eq, Clone, serde::Serialize, serde::Deserialize)]
pub struct Counts {
pub an: u32,
pub ac_hom: u32,
pub ac_het: u32,
}
impl Counts {
pub fn from_vcf_allele(value: &noodles_vcf::variant::RecordBuf, _allele_no: usize) -> Self {
tracing::trace!("@ {:?}", &value);
assert_eq!(
value.alternate_bases().len(),
1,
"only one alternate allele is supported",
);
let ac = noodles::get_i32(value, "AC").expect("could not find: INFO/AC") as u32;
let ac_hom =
noodles::get_i32(value, "nhomalt").expect("could not find: INFO/nhomalt") as u32;
let an = noodles::get_i32(value, "AN").expect("could not find: INFO/AN") as u32;
Counts {
ac_hom,
ac_het: ac - 2 * ac_hom,
an,
}
}
pub fn from_buf(buf: &[u8]) -> Self {
Self {
an: LittleEndian::read_u32(&buf[0..4]),
ac_hom: LittleEndian::read_u32(&buf[4..8]),
ac_het: LittleEndian::read_u32(&buf[8..12]),
}
}
pub fn to_buf(&self, buf: &mut [u8]) {
LittleEndian::write_u32(&mut buf[0..4], self.an);
LittleEndian::write_u32(&mut buf[4..8], self.ac_hom);
LittleEndian::write_u32(&mut buf[8..12], self.ac_het);
}
}
#[derive(Debug, PartialEq, Eq, Clone, serde::Serialize, serde::Deserialize)]
pub struct Record {
pub gnomad_exomes: Counts,
pub gnomad_genomes: Counts,
}
impl Record {
pub fn from_buf(buf: &[u8]) -> Self {
Self {
gnomad_exomes: Counts::from_buf(&buf[0..16]),
gnomad_genomes: Counts::from_buf(&buf[16..32]),
}
}
pub fn to_buf(&self, buf: &mut [u8]) {
self.gnomad_exomes.to_buf(&mut buf[0..16]);
self.gnomad_genomes.to_buf(&mut buf[16..32]);
}
pub fn buf_len() -> usize {
32
}
}