use std::boxed::Box;
use std::default::Default;
use std::sync::Once;
use fnv::FnvHashMap;
use m4ri_rust::friendly::BinMatrix;
use m4ri_rust::friendly::BinVector;
use crate::codes::BinaryCode;
#[derive(Clone, Serialize)]
pub struct GuavaCode17_11;
static INIT: Once = Once::new();
static mut GENERATOR_MATRIX: *const BinMatrix = 0 as *const BinMatrix;
static mut PARITY_MATRIX: *const BinMatrix = 0 as *const BinMatrix;
static mut PARITY_MATRIX_T: *const BinMatrix = 0 as *const BinMatrix;
static mut SYNDROME_MAP: *const FnvHashMap<u64, &'static [usize; 1]> = 0 as *const FnvHashMap<u64, &'static [usize; 1]>;
fn init() {
INIT.call_once(|| {
unsafe {
let matrix = Box::new(BinMatrix::from_slices(&[
&[ 126977 ],
&[ 28674 ],
&[ 45060 ],
&[ 77832 ],
&[ 53264 ],
&[ 86048 ],
&[ 102464 ],
&[ 57472 ],
&[ 90368 ],
&[ 107008 ],
&[ 115712 ],
], 17));
GENERATOR_MATRIX = Box::into_raw(matrix);
let matrix = Box::new(BinMatrix::from_slices(&[
&[ 67433 ],
&[ 94506 ],
&[ 111180 ],
&[ 119920 ],
&[ 124800 ],
&[ 2048 ],
], 17));
let matrix_t = Box::new(matrix.transposed());
PARITY_MATRIX = Box::into_raw(matrix);
PARITY_MATRIX_T = Box::into_raw(matrix_t);
let mut map = Box::new(FnvHashMap::with_capacity_and_hasher(64, Default::default()));
map.insert(0, &[0]); map.insert(1, &[1]); map.insert(2, &[2]); map.insert(4, &[4]); map.insert(7, &[8]); map.insert(8, &[16]); map.insert(11, &[32]); map.insert(13, &[64]); map.insert(16, &[128]); map.insert(19, &[256]); map.insert(21, &[512]); map.insert(25, &[1024]); map.insert(32, &[2048]); map.insert(14, &[4096]); map.insert(22, &[8192]); map.insert(26, &[16384]); map.insert(28, &[32768]); map.insert(31, &[65536]); map.insert(3, &[3]); map.insert(5, &[5]); map.insert(6, &[9]); map.insert(9, &[17]); map.insert(10, &[33]); map.insert(12, &[65]); map.insert(17, &[129]); map.insert(18, &[257]); map.insert(20, &[513]); map.insert(24, &[1025]); map.insert(33, &[2049]); map.insert(15, &[4097]); map.insert(23, &[8193]); map.insert(27, &[16385]); map.insert(29, &[32769]); map.insert(30, &[65537]); map.insert(34, &[2050]); map.insert(36, &[2052]); map.insert(39, &[2056]); map.insert(40, &[2064]); map.insert(43, &[2080]); map.insert(45, &[2112]); map.insert(48, &[2176]); map.insert(51, &[2304]); map.insert(53, &[2560]); map.insert(57, &[3072]); map.insert(46, &[6144]); map.insert(54, &[10240]); map.insert(58, &[18432]); map.insert(60, &[34816]); map.insert(63, &[67584]); map.insert(35, &[2051]); map.insert(37, &[2053]); map.insert(38, &[2057]); map.insert(41, &[2065]); map.insert(42, &[2081]); map.insert(44, &[2113]); map.insert(49, &[2177]); map.insert(50, &[2305]); map.insert(52, &[2561]); map.insert(56, &[3073]); map.insert(47, &[6145]); map.insert(55, &[10241]); map.insert(59, &[18433]); map.insert(61, &[34817]); map.insert(62, &[67585]);
SYNDROME_MAP = Box::into_raw(map);
}
});
}
impl GuavaCode17_11 {
fn parity_check_matrix_transposed(&self) -> &BinMatrix {
init();
unsafe {
PARITY_MATRIX_T.as_ref().unwrap()
}
}
}
impl BinaryCode for GuavaCode17_11 {
fn name(&self) -> String {
"[17, 11] Guava code".to_owned()
}
fn length(&self) -> usize {
17
}
fn dimension(&self) -> usize {
11
}
fn generator_matrix(&self) -> &BinMatrix {
init();
unsafe {
GENERATOR_MATRIX.as_ref().unwrap()
}
}
fn parity_check_matrix(&self) -> &BinMatrix {
init();
unsafe {
PARITY_MATRIX.as_ref().unwrap()
}
}
fn decode_to_code(&self, c: &BinVector) -> Result<BinVector, &str> {
init();
let map = unsafe {
SYNDROME_MAP.as_ref().unwrap()
};
debug_assert_eq!(c.len(), self.length(), "the length doesn't match the expected length (length of the code)");
let he = c * self.parity_check_matrix_transposed();
let mut error = BinVector::with_capacity(17);
let stor = unsafe { error.get_storage_mut() };
let errbytes = map[&he.as_u64()];
debug_assert_eq!(errbytes.len(), 17 / 64 + if 17 % 64 != 0 { 1 } else { 0 });
stor.clear();
stor.extend_from_slice(&errbytes[..]);
unsafe { error.set_len(17) };
debug_assert_eq!(error.len(), self.length(), "internal: the error vector is of the wrong length");
let result = c + &error;
debug_assert_eq!(result.len(), self.length(), "internal: the result vector is of the wrong length");
debug_assert_eq!((&result * self.parity_check_matrix_transposed()).count_ones(), 0);
Ok(result)
}
fn decode_to_message(&self, c: &BinVector) -> Result<BinVector, &str> {
let mut codeword = self.decode_to_code(c)?;
codeword.truncate(11);
Ok(codeword)
}
fn decode_slice(&self, c: &mut [u64]) {
init();
debug_assert_eq!(c[17 / 64] & !((1 << 17) - 1), 0, "this message has excess bits");
let map = unsafe {
SYNDROME_MAP.as_ref().unwrap()
};
let he = &BinMatrix::from_slices(&[&c[..]], self.length()) * self.parity_check_matrix_transposed();
let error = map[unsafe { &he.get_word_unchecked(0, 0) }];
c.iter_mut().zip(error.iter().copied()).for_each(|(sample, error)| *sample ^= error as u64);
}
}
#[cfg(test)]
mod tests {
use super::*;
use m4ri_rust::friendly::BinVector;
use crate::oracle::Sample;
#[test]
fn size() {
let code = GuavaCode17_11.generator_matrix();
assert_eq!(code.ncols(), 17);
assert_eq!(code.nrows(), 11);
}
#[test]
fn test_decode_sample() {
let code = GuavaCode17_11;
for _ in 0..1000 {
let vec = BinVector::random(code.length());
let mut sample_a = Sample::from_binvector(&vec, false);
let mut sample_b = Sample::from_binvector(&vec, true);
let decoded_vec = code.decode_to_message(&vec).unwrap();
println!("decoded_vec: {:?}", decoded_vec);
let decoded_vec_sample_a = Sample::from_binvector(&decoded_vec, false);
let decoded_vec_sample_b = Sample::from_binvector(&decoded_vec, true);
code.decode_sample(&mut sample_a);
code.decode_sample(&mut sample_b);
assert_eq!(sample_a.get_product(), false);
assert_eq!(sample_b.get_product(), true);
assert_eq!(sample_a, decoded_vec_sample_a);
assert_eq!(sample_b, decoded_vec_sample_b);
}
}
#[test]
fn random_decode_tests() {
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[false, true, false, true, false, true, true, true, true, true, false, false, false, true, true, false, true]);
let codeword = BinVector::from_bools(&[true, true, false, false, false, true, true, true, true, true, false, false, false, true, true, false, true]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[false, false, true, true, false, true, false, true, true, true, true, false, true, false, true, true, true]);
let codeword = BinVector::from_bools(&[false, false, true, true, false, true, false, false, true, true, true, false, true, false, true, true, true]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[true, true, true, true, false, true, true, true, false, true, false, true, true, false, true, false, false]);
let codeword = BinVector::from_bools(&[false, true, true, true, false, true, true, true, false, true, false, false, true, true, true, false, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[false, true, true, true, false, false, false, false, true, false, true, false, false, true, true, false, false]);
let codeword = BinVector::from_bools(&[false, true, true, false, false, false, false, false, true, false, true, false, false, true, true, false, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[true, false, true, true, true, true, false, false, false, true, true, false, true, false, false, false, false]);
let codeword = BinVector::from_bools(&[false, true, true, true, true, true, false, false, false, true, true, false, true, false, false, false, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[true, false, true, false, false, true, false, true, true, true, false, false, false, true, false, true, false]);
let codeword = BinVector::from_bools(&[false, false, true, false, false, true, false, true, false, true, false, false, false, true, false, true, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[false, false, true, true, false, true, true, false, false, true, false, true, false, false, true, false, false]);
let codeword = BinVector::from_bools(&[true, false, true, true, false, false, true, false, false, true, false, false, false, false, true, false, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[false, false, false, true, true, true, false, false, false, false, true, false, false, false, true, false, false]);
let codeword = BinVector::from_bools(&[false, false, false, false, true, true, false, false, false, false, true, false, false, false, true, false, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[false, true, true, true, false, false, false, true, true, false, true, true, true, true, true, true, true]);
let codeword = BinVector::from_bools(&[false, true, true, true, false, false, false, true, true, false, true, false, true, true, false, true, true]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[false, false, false, false, false, true, true, true, false, true, false, false, true, true, true, true, false]);
let codeword = BinVector::from_bools(&[true, false, false, false, false, true, true, true, false, true, false, false, true, true, true, false, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[true, true, false, false, true, true, true, true, false, false, true, true, true, true, true, true, false]);
let codeword = BinVector::from_bools(&[true, true, false, false, true, true, true, true, false, false, true, false, true, true, false, true, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[true, false, true, true, true, true, false, false, true, true, false, false, true, true, false, true, true]);
let codeword = BinVector::from_bools(&[true, false, true, true, true, true, false, false, true, true, false, false, true, true, false, false, true]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[false, false, false, true, false, false, false, false, true, false, true, true, false, false, true, true, false]);
let codeword = BinVector::from_bools(&[false, false, false, true, false, true, false, false, true, false, true, false, false, false, true, true, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[true, false, true, false, false, false, true, true, true, true, false, false, false, false, true, false, false]);
let codeword = BinVector::from_bools(&[true, false, false, false, false, false, true, true, true, true, false, false, false, false, true, false, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[true, true, false, false, false, false, false, true, true, true, true, false, true, true, true, false, true]);
let codeword = BinVector::from_bools(&[false, true, false, false, false, false, false, false, true, true, true, false, true, true, true, false, true]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[false, true, true, true, false, true, true, false, false, true, true, false, true, false, false, true, false]);
let codeword = BinVector::from_bools(&[false, true, true, true, false, true, true, false, false, true, false, false, true, false, false, true, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[true, false, false, true, false, false, true, false, true, false, true, false, true, false, true, false, false]);
let codeword = BinVector::from_bools(&[true, false, false, true, false, false, true, false, true, true, true, false, true, false, true, false, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[true, true, true, true, false, true, false, true, false, true, false, true, false, false, false, true, true]);
let codeword = BinVector::from_bools(&[true, true, true, true, false, true, true, true, false, true, false, false, false, false, false, true, true]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[false, false, true, true, true, true, false, false, true, false, false, false, false, true, true, true, false]);
let codeword = BinVector::from_bools(&[true, true, true, true, true, true, false, false, true, false, false, false, false, true, true, true, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
{
let code = GuavaCode17_11;
let randvec = BinVector::from_bools(&[true, false, true, false, false, false, false, true, false, true, false, true, false, false, false, false, true]);
let codeword = BinVector::from_bools(&[true, false, true, false, false, false, false, true, false, true, false, false, false, false, false, false, false]);
assert_eq!(code.decode_to_code(&randvec), Ok(codeword));
}
}
#[test]
fn test_generator_representation() {
init();
let generator_matrix = unsafe { GENERATOR_MATRIX.as_ref().unwrap() };
let first_row = generator_matrix.get_window(0, 0, 1, generator_matrix.ncols());
let vector = BinVector::from_bools(&[ true, false, false, false, false, false, false, false, false, false, false, false, true, true, true, true, true ]);
assert_eq!(vector, first_row.as_vector());
}
}