mirror of
https://github.com/arnaucube/poulpy.git
synced 2026-02-10 05:06:44 +01:00
wip
This commit is contained in:
@@ -297,8 +297,6 @@ where
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#[cfg(test)]
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mod tests {
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use std::fmt::Display;
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use super::{AddNormal, FillUniform};
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use crate::vec_znx_ops::*;
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use crate::znx_base::*;
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@@ -2,8 +2,8 @@ use crate::ffi::svp;
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use crate::ffi::vec_znx_dft::vec_znx_dft_t;
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use crate::znx_base::{ZnxInfos, ZnxView, ZnxViewMut};
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use crate::{
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Backend, FFT64, Module, ScalarToRef, ScalarZnxDft, ScalarZnxDftOwned, ScalarZnxDftToMut, ScalarZnxDftToRef, VecZnx,
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VecZnxDft, VecZnxDftToMut, VecZnxDftToRef, VecZnxToRef, ZnxSliceSize,
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Backend, FFT64, Module, ScalarToRef, ScalarZnxDft, ScalarZnxDftOwned, ScalarZnxDftToMut, ScalarZnxDftToRef,
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VecZnxDft, VecZnxDftToMut, VecZnxDftToRef,
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};
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pub trait ScalarZnxDftAlloc<B: Backend> {
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@@ -1,13 +1,12 @@
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use base2k::{
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Backend, DataView, DataViewMut, MatZnxDft, MatZnxDftAlloc, MatZnxDftToMut, MatZnxDftToRef, Module, VecZnx, VecZnxAlloc,
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VecZnxDft, VecZnxDftAlloc, VecZnxDftToMut, VecZnxDftToRef, VecZnxToMut, VecZnxToRef, ZnxInfos,
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Backend, DataView, DataViewMut, MatZnxDft, MatZnxDftAlloc, MatZnxDftToMut, MatZnxDftToRef, Module, ScalarZnxDftToRef, VecZnx,
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VecZnxAlloc, VecZnxDft, VecZnxDftAlloc, VecZnxDftToMut, VecZnxDftToRef, VecZnxToMut, VecZnxToRef, ZnxInfos,
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};
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pub trait Infos<T>
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where
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T: ZnxInfos,
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{
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fn inner(&self) -> &T;
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pub trait Infos {
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type Inner: ZnxInfos;
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fn inner(&self) -> &Self::Inner;
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/// Returns the ring degree of the polynomials.
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fn n(&self) -> usize {
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@@ -48,17 +47,16 @@ where
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fn log_q(&self) -> usize;
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}
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pub struct Ciphertext<T> {
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data: T,
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pub struct RLWECt<C>{
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data: VecZnx<C>,
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log_base2k: usize,
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log_q: usize,
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}
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impl<T> Infos<T> for Ciphertext<T>
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where
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T: ZnxInfos,
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{
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fn inner(&self) -> &T {
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impl<T: ZnxInfos> Infos for RLWECt<T> {
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type Inner = T;
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fn inner(&self) -> &Self::Inner {
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&self.data
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}
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@@ -90,11 +88,10 @@ pub struct Plaintext<T> {
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log_q: usize,
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}
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impl<T> Infos<T> for Plaintext<T>
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where
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T: ZnxInfos,
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{
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fn inner(&self) -> &T {
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impl<T: ZnxInfos> Infos for Plaintext<T> {
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type Inner = T;
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fn inner(&self) -> &Self::Inner {
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&self.data
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}
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@@ -6,13 +6,16 @@ use base2k::{
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use sampling::source::Source;
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use crate::{elem::Infos, keys::SecretKey};
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use crate::{
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elem::{Ciphertext, Infos, Plaintext},
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keys::SecretKey,
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};
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pub trait EncryptSk<B: Backend, D, P> {
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pub trait EncryptSk<B: Backend, C, P> {
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fn encrypt<S>(
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module: &Module<B>,
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res: &mut D,
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pt: Option<&P>,
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res: &mut Ciphertext<C>,
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pt: Option<&Plaintext<P>>,
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sk: &SecretKey<S>,
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source_xa: &mut Source,
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source_xe: &mut Source,
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@@ -22,20 +25,18 @@ pub trait EncryptSk<B: Backend, D, P> {
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) where
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S: ScalarZnxDftToRef<B>;
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fn encrypt_tmp_bytes(module: &Module<B>, size: usize) -> usize {
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(module.vec_znx_big_normalize_tmp_bytes() | module.bytes_of_vec_znx_dft(1, size)) + module.bytes_of_vec_znx_big(1, size)
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}
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fn encrypt_scratch_bytes(module: &Module<B>, size: usize) -> usize;
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}
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impl<C, P> EncryptSk<FFT64, C, P> for C
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impl<C, P> EncryptSk<FFT64, C, P> for Ciphertext<C>
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where
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C: VecZnxToMut + ZnxInfos + Infos<C>,
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P: VecZnxToRef,
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C: VecZnxToMut + ZnxInfos,
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P: VecZnxToRef + ZnxInfos,
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{
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fn encrypt<S>(
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module: &Module<FFT64>,
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ct: &mut C,
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pt: Option<&P>,
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ct: &mut Ciphertext<C>,
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pt: Option<&Plaintext<P>>,
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sk: &SecretKey<S>,
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source_xa: &mut Source,
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source_xe: &mut Source,
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@@ -76,6 +77,41 @@ where
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// c0 = norm(c0_big = -as + m + e)
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module.vec_znx_big_normalize(log_base2k, &mut ct_mut, 0, &c0_big, 0, scratch_1);
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}
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fn encrypt_scratch_bytes(module: &Module<FFT64>, size: usize) -> usize {
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(module.vec_znx_big_normalize_tmp_bytes() | module.bytes_of_vec_znx_dft(1, size)) + module.bytes_of_vec_znx_big(1, size)
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}
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}
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impl<C> Ciphertext<C>
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where
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C: VecZnxToMut + ZnxInfos,
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{
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pub fn encrypt_sk<P, S>(
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&mut self,
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module: &Module<FFT64>,
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pt: Option<&Plaintext<P>>,
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sk: &SecretKey<S>,
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source_xa: &mut Source,
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source_xe: &mut Source,
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scratch: &mut Scratch,
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sigma: f64,
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bound: f64,
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) where
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P: VecZnxToRef + ZnxInfos,
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S: ScalarZnxDftToRef<FFT64>,
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{
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<Self as EncryptSk<FFT64, _, _>>::encrypt(
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module, self, pt, sk, source_xa, source_xe, scratch, sigma, bound,
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);
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}
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pub fn encrypt_sk_scratch_bytes<P>(module: &Module<FFT64>, size: usize) -> usize
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where
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Self: EncryptSk<FFT64, C, P>,
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{
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<Self as EncryptSk<FFT64, C, P>>::encrypt_scratch_bytes(module, size)
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}
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}
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pub trait EncryptZeroSk<B: Backend, D> {
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@@ -91,17 +127,12 @@ pub trait EncryptZeroSk<B: Backend, D> {
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) where
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S: ScalarZnxDftToRef<B>;
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fn encrypt_zero_tmp_bytes(module: &Module<B>, size: usize) -> usize {
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(module.bytes_of_vec_znx(1, size) | module.bytes_of_vec_znx_dft(1, size))
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+ module.bytes_of_vec_znx_big(1, size)
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+ module.bytes_of_vec_znx(1, size)
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+ module.vec_znx_big_normalize_tmp_bytes()
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}
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fn encrypt_zero_scratch_bytes(module: &Module<B>, size: usize) -> usize;
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}
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impl<C> EncryptZeroSk<FFT64, C> for C
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where
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C: VecZnxDftToMut<FFT64> + ZnxInfos + Infos<C>,
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C: VecZnxDftToMut<FFT64> + ZnxInfos + Infos,
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{
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fn encrypt_zero<S>(
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module: &Module<FFT64>,
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@@ -146,4 +177,53 @@ where
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// ct[0] = DFT(-as + e)
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module.vec_znx_dft(&mut ct_mut, 0, &tmp_znx, 0);
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}
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fn encrypt_zero_scratch_bytes(module: &Module<FFT64>, size: usize) -> usize{
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(module.bytes_of_vec_znx(1, size) | module.bytes_of_vec_znx_dft(1, size))
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+ module.bytes_of_vec_znx_big(1, size)
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+ module.bytes_of_vec_znx(1, size)
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+ module.vec_znx_big_normalize_tmp_bytes()
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}
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}
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#[cfg(test)]
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mod tests {
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use base2k::{FFT64, Module, ScratchOwned, VecZnx, Scalar};
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use sampling::source::Source;
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use crate::{elem::{Ciphertext, Infos, Plaintext}, keys::SecretKey};
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#[test]
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fn encrypt_sk_vec_znx_fft64() {
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let module: Module<FFT64> = Module::<FFT64>::new(32);
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let log_base2k: usize = 8;
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let log_q: usize = 54;
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let sigma: f64 = 3.2;
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let bound: f64 = sigma * 6;
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let mut ct: Ciphertext<VecZnx<Vec<u8>>> = Ciphertext::<VecZnx<Vec<u8>>>::new(&module, log_base2k, log_q, 2);
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let mut pt: Plaintext<VecZnx<Vec<u8>>> = Plaintext::<VecZnx<Vec<u8>>>::new(&module, log_base2k, log_q);
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let mut source_xe = Source::new([0u8; 32]);
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let mut source_xa: Source = Source::new([0u8; 32]);
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let mut scratch: ScratchOwned = ScratchOwned::new(ct.encrypt_encsk_scratch_bytes(&module, ct.size()));
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let mut sk: SecretKey<Scalar<Vec<u8>>> = SecretKey::new(&module);
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let mut sk_prep
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sk.svp_prepare(&module, &mut sk_prep);
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ct.encrypt_sk(
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&module,
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Some(&pt),
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&sk_prep,
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&mut source_xa,
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&mut source_xe,
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scratch.borrow(),
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sigma,
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bound,
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);
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}
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}
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@@ -1,6 +1,5 @@
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use base2k::{
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Backend, FFT64, Module, Scalar, ScalarAlloc, ScalarZnxDft, ScalarZnxDftOps, ScalarZnxDftToMut, Scratch, VecZnxDft,
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VecZnxDftAlloc, VecZnxDftToMut,
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Backend, Module, Scalar, ScalarAlloc, ScalarZnxDft, ScalarZnxDftAlloc, ScalarZnxDftOps, ScalarZnxDftToMut, Scratch, VecZnxDft, VecZnxDftAlloc, VecZnxDftToMut, ZnxInfos, FFT64
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};
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use sampling::source::Source;
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@@ -43,6 +42,16 @@ impl SecretKey<Scalar<Vec<u8>>> {
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}
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}
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type SecretKeyPrep<C, B> = SecretKey<ScalarZnxDft<C, B>>;
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impl<B: Backend> SecretKey<ScalarZnxDft<Vec<u8>, B>> {
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pub fn new(module: &Module<B>) -> Self{
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Self{
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data: module.new_scalar_znx_dft(1)
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}
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}
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}
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pub struct PublicKey<D, B: Backend> {
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data: VecZnxDft<D, B>,
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}
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