use fountain_engine::traits::*;
use fountain_engine::types::*;
use fountain_engine::{Decoder, Encoder};
use fountain_scheme::LDPCLTCode;
use fountain_scheme::validation::pseudo_rand::XorShift64;
use fountain_utility::VecDataOperater;
#[test]
fn test_ldpc_precode() {
let k = 23;
let t = 3;
let mut message_vectors = vec![vec![0u8; t]; k];
message_vectors[0][0] = 0;
message_vectors[1][0] = 1;
message_vectors[2][0] = 0;
message_vectors[3][0] = 1;
let mut vec_data_operater = VecDataOperater::new(t);
message_vectors
.iter()
.enumerate()
.for_each(|(i, vector)| vec_data_operater.insert_vector(vector, i));
let config = LDPCLTCode::new_with_ideal_soliton(k, XorShift64::new(0x00C0_FFEE));
let params = config.get_params();
let mut encoder = Encoder::new_with_operator(&config, Box::new(vec_data_operater));
let coded_ids = params.num_total()..params.num_total() + k * 3;
for coded_id in coded_ids.clone() {
encoder.encode_coded_vector(coded_id);
}
let mut decoder = Decoder::new_with_operator(&config, Box::new(VecDataOperater::new(t)));
let mut last = DecodeStatus::NotDecoded;
for coded_id in coded_ids.clone() {
let coded_vector = encoder.manager.get_coded_vector(coded_id);
last = decoder.add_coded_vector(coded_id, &coded_vector);
if last == DecodeStatus::Decoded {
break;
}
}
assert_eq!(
last,
DecodeStatus::Decoded,
"LDPC-LT decode should finish within the emitted fountain symbols"
);
let dec_data_operater = decoder.manager.move_operator();
for i in 0..k {
assert_eq!(&dec_data_operater.get_vector(i), &message_vectors[i]);
}
}