mirror of
https://github.com/arnaucube/poulpy.git
synced 2026-02-10 05:06:44 +01:00
307 lines
7.6 KiB
Rust
307 lines
7.6 KiB
Rust
use crate::ffi::vec_znx;
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use crate::znx_base::ZnxInfos;
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use crate::{
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Backend, DataView, DataViewMut, Module, VecZnx, VecZnxToMut, VecZnxToRef, ZnxSliceSize, ZnxView, ZnxViewMut, alloc_aligned,
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};
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use rand::seq::SliceRandom;
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use rand_core::RngCore;
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use rand_distr::{Distribution, weighted::WeightedIndex};
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use sampling::source::Source;
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pub struct ScalarZnx<D> {
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pub(crate) data: D,
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pub(crate) n: usize,
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pub(crate) cols: usize,
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}
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impl<D> ZnxInfos for ScalarZnx<D> {
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fn cols(&self) -> usize {
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self.cols
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}
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fn rows(&self) -> usize {
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1
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}
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fn n(&self) -> usize {
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self.n
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}
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fn size(&self) -> usize {
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1
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}
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}
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impl<D> ZnxSliceSize for ScalarZnx<D> {
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fn sl(&self) -> usize {
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self.n()
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}
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}
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impl<D> DataView for ScalarZnx<D> {
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type D = D;
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fn data(&self) -> &Self::D {
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&self.data
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}
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}
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impl<D> DataViewMut for ScalarZnx<D> {
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fn data_mut(&mut self) -> &mut Self::D {
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&mut self.data
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}
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}
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impl<D: AsRef<[u8]>> ZnxView for ScalarZnx<D> {
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type Scalar = i64;
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}
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impl<D: AsMut<[u8]> + AsRef<[u8]>> ScalarZnx<D> {
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pub fn fill_ternary_prob(&mut self, col: usize, prob: f64, source: &mut Source) {
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let choices: [i64; 3] = [-1, 0, 1];
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let weights: [f64; 3] = [prob / 2.0, 1.0 - prob, prob / 2.0];
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let dist: WeightedIndex<f64> = WeightedIndex::new(&weights).unwrap();
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self.at_mut(col, 0)
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.iter_mut()
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.for_each(|x: &mut i64| *x = choices[dist.sample(source)]);
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}
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pub fn fill_ternary_hw(&mut self, col: usize, hw: usize, source: &mut Source) {
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assert!(hw <= self.n());
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self.at_mut(col, 0)[..hw]
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.iter_mut()
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.for_each(|x: &mut i64| *x = (((source.next_u32() & 1) as i64) << 1) - 1);
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self.at_mut(col, 0).shuffle(source);
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}
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}
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impl<D: From<Vec<u8>>> ScalarZnx<D> {
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pub(crate) fn bytes_of<S: Sized>(n: usize, cols: usize) -> usize {
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n * cols * size_of::<S>()
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}
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pub(crate) fn new<S: Sized>(n: usize, cols: usize) -> Self {
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let data = alloc_aligned::<u8>(Self::bytes_of::<S>(n, cols));
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Self {
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data: data.into(),
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n,
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cols,
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}
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}
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pub(crate) fn new_from_bytes<S: Sized>(n: usize, cols: usize, bytes: impl Into<Vec<u8>>) -> Self {
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let data: Vec<u8> = bytes.into();
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assert!(data.len() == Self::bytes_of::<S>(n, cols));
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Self {
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data: data.into(),
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n,
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cols,
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}
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}
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}
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pub type ScalarZnxOwned = ScalarZnx<Vec<u8>>;
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pub(crate) fn bytes_of_scalar_znx<B: Backend>(module: &Module<B>, cols: usize) -> usize {
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ScalarZnxOwned::bytes_of::<i64>(module.n(), cols)
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}
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pub trait ScalarZnxAlloc {
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fn bytes_of_scalar_znx(&self, cols: usize) -> usize;
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fn new_scalar_znx(&self, cols: usize) -> ScalarZnxOwned;
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fn new_scalar_znx_from_bytes(&self, cols: usize, bytes: Vec<u8>) -> ScalarZnxOwned;
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}
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impl<B: Backend> ScalarZnxAlloc for Module<B> {
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fn bytes_of_scalar_znx(&self, cols: usize) -> usize {
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ScalarZnxOwned::bytes_of::<i64>(self.n(), cols)
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}
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fn new_scalar_znx(&self, cols: usize) -> ScalarZnxOwned {
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ScalarZnxOwned::new::<i64>(self.n(), cols)
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}
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fn new_scalar_znx_from_bytes(&self, cols: usize, bytes: Vec<u8>) -> ScalarZnxOwned {
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ScalarZnxOwned::new_from_bytes::<i64>(self.n(), cols, bytes)
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}
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}
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pub trait ScalarZnxOps {
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fn scalar_znx_automorphism<R, A>(&self, k: i64, res: &mut R, res_col: usize, a: &A, a_col: usize)
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where
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R: ScalarZnxToMut,
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A: ScalarZnxToRef;
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/// Applies the automorphism X^i -> X^ik on the selected column of `a`.
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fn scalar_znx_automorphism_inplace<A>(&self, k: i64, a: &mut A, a_col: usize)
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where
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A: ScalarZnxToMut;
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}
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impl<B: Backend> ScalarZnxOps for Module<B> {
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fn scalar_znx_automorphism<R, A>(&self, k: i64, res: &mut R, res_col: usize, a: &A, a_col: usize)
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where
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R: ScalarZnxToMut,
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A: ScalarZnxToRef,
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{
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let a: ScalarZnx<&[u8]> = a.to_ref();
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let mut res: ScalarZnx<&mut [u8]> = res.to_mut();
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#[cfg(debug_assertions)]
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{
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assert_eq!(a.n(), self.n());
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assert_eq!(res.n(), self.n());
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}
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unsafe {
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vec_znx::vec_znx_automorphism(
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self.ptr,
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k,
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res.at_mut_ptr(res_col, 0),
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res.size() as u64,
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res.sl() as u64,
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a.at_ptr(a_col, 0),
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a.size() as u64,
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a.sl() as u64,
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)
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}
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}
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fn scalar_znx_automorphism_inplace<A>(&self, k: i64, a: &mut A, a_col: usize)
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where
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A: ScalarZnxToMut,
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{
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let mut a: ScalarZnx<&mut [u8]> = a.to_mut();
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#[cfg(debug_assertions)]
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{
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assert_eq!(a.n(), self.n());
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}
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unsafe {
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vec_znx::vec_znx_automorphism(
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self.ptr,
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k,
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a.at_mut_ptr(a_col, 0),
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a.size() as u64,
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a.sl() as u64,
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a.at_ptr(a_col, 0),
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a.size() as u64,
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a.sl() as u64,
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)
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}
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}
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}
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impl<D> ScalarZnx<D> {
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pub(crate) fn from_data(data: D, n: usize, cols: usize) -> Self {
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Self { data, n, cols }
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}
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}
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pub trait ScalarZnxToRef {
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fn to_ref(&self) -> ScalarZnx<&[u8]>;
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}
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pub trait ScalarZnxToMut {
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fn to_mut(&mut self) -> ScalarZnx<&mut [u8]>;
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}
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impl ScalarZnxToMut for ScalarZnx<Vec<u8>> {
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fn to_mut(&mut self) -> ScalarZnx<&mut [u8]> {
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ScalarZnx {
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data: self.data.as_mut_slice(),
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n: self.n,
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cols: self.cols,
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}
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}
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}
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impl VecZnxToMut for ScalarZnx<Vec<u8>> {
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fn to_mut(&mut self) -> VecZnx<&mut [u8]> {
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VecZnx {
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data: self.data.as_mut_slice(),
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n: self.n,
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cols: self.cols,
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size: 1,
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}
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}
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}
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impl ScalarZnxToRef for ScalarZnx<Vec<u8>> {
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fn to_ref(&self) -> ScalarZnx<&[u8]> {
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ScalarZnx {
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data: self.data.as_slice(),
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n: self.n,
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cols: self.cols,
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}
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}
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}
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impl VecZnxToRef for ScalarZnx<Vec<u8>> {
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fn to_ref(&self) -> VecZnx<&[u8]> {
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VecZnx {
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data: self.data.as_slice(),
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n: self.n,
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cols: self.cols,
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size: 1,
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}
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}
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}
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impl ScalarZnxToMut for ScalarZnx<&mut [u8]> {
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fn to_mut(&mut self) -> ScalarZnx<&mut [u8]> {
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ScalarZnx {
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data: self.data,
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n: self.n,
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cols: self.cols,
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}
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}
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}
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impl VecZnxToMut for ScalarZnx<&mut [u8]> {
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fn to_mut(&mut self) -> VecZnx<&mut [u8]> {
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VecZnx {
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data: self.data,
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n: self.n,
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cols: self.cols,
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size: 1,
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}
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}
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}
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impl ScalarZnxToRef for ScalarZnx<&mut [u8]> {
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fn to_ref(&self) -> ScalarZnx<&[u8]> {
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ScalarZnx {
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data: self.data,
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n: self.n,
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cols: self.cols,
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}
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}
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}
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impl VecZnxToRef for ScalarZnx<&mut [u8]> {
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fn to_ref(&self) -> VecZnx<&[u8]> {
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VecZnx {
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data: self.data,
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n: self.n,
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cols: self.cols,
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size: 1,
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}
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}
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}
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impl ScalarZnxToRef for ScalarZnx<&[u8]> {
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fn to_ref(&self) -> ScalarZnx<&[u8]> {
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ScalarZnx {
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data: self.data,
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n: self.n,
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cols: self.cols,
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}
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}
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}
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impl VecZnxToRef for ScalarZnx<&[u8]> {
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fn to_ref(&self) -> VecZnx<&[u8]> {
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VecZnx {
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data: self.data,
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n: self.n,
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cols: self.cols,
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size: 1,
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}
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}
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}
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