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@ -1,28 +1,26 @@ |
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use ark_ec::{
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msm::VariableBaseMSM,
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};
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use ark_ff::{PrimeField};
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use crate::errors::ProofVerifyError;
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use ark_ec::msm::VariableBaseMSM;
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use ark_ff::PrimeField;
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use digest::DynDigest;
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use lazy_static::lazy_static;
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use num_bigint::BigInt;
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use crate::errors::ProofVerifyError;
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use lazy_static::lazy_static;
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use num_bigint::BigInt;
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use super::scalar::Scalar;
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use ark_ec::{AffineCurve, ProjectiveCurve};
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use ark_ec::{AffineCurve, ProjectiveCurve};
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use ark_serialize::*;
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use ark_serialize::*;
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use core::borrow::Borrow;
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use core::ops::{Mul, MulAssign};
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use ark_ec::{ProjectiveCurve, AffineCurve};
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use ark_serialize::*;
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pub type GroupElement = ark_bls12_377::G1Projective;
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pub type GroupElementAffine = ark_bls12_377::G1Affine;
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pub type CurveField = ark_bls12_377::Fq;
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#[derive(Clone, Eq, PartialEq, Hash, Debug, CanonicalSerialize, CanonicalDeserialize)]
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#[derive(Clone, Eq, PartialEq, Hash, Debug, CanonicalSerialize, CanonicalDeserialize)]
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pub struct CompressedGroup(pub Vec<u8>);
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lazy_static! {
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@ -51,23 +49,21 @@ impl CompressGroupElement for GroupElement { |
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}
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impl DecompressGroupElement for GroupElement {
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fn decompress(encoded: &CompressedGroup) -> Option<Self>
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{
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let res = GroupElement::deserialize(&*encoded.0);
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if res.is_err() {
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println!("{:?}", res);
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None
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} else {
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Some(res.unwrap())
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}
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fn decompress(encoded: &CompressedGroup) -> Option<Self> {
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let res = GroupElement::deserialize(&*encoded.0);
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if res.is_err() {
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println!("{:?}", res);
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None
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} else {
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Some(res.unwrap())
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}
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}
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}
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}
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impl UnpackGroupElement for CompressedGroup {
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fn unpack(&self) -> Result<GroupElement, ProofVerifyError> {
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let encoded = self.0.clone();
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GroupElement::decompress(self).ok_or_else(|| ProofVerifyError::DecompressionError(encoded))
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GroupElement::decompress(self).ok_or_else(|| ProofVerifyError::DecompressionError(encoded))
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}
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}
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@ -76,13 +72,15 @@ pub trait VartimeMultiscalarMul { |
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}
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impl VartimeMultiscalarMul for GroupElement {
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fn vartime_multiscalar_mul(
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scalars: &[Scalar],
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points: &[GroupElement],
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) -> GroupElement{
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let repr_scalars= scalars.into_iter().map(|S| S.borrow().into_repr()).collect::<Vec<<Scalar as PrimeField>::BigInt>>();
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let aff_points = points.into_iter().map(|P| P.borrow().into_affine()).collect::<Vec<GroupElementAffine>>();
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VariableBaseMSM::multi_scalar_mul(aff_points.as_slice(), repr_scalars.as_slice())
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}
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fn vartime_multiscalar_mul(scalars: &[Scalar], points: &[GroupElement]) -> GroupElement {
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let repr_scalars = scalars
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.into_iter()
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.map(|S| S.borrow().into_repr())
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.collect::<Vec<<Scalar as PrimeField>::BigInt>>();
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let aff_points = points
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.into_iter()
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.map(|P| P.borrow().into_affine())
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.collect::<Vec<GroupElementAffine>>();
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VariableBaseMSM::multi_scalar_mul(aff_points.as_slice(), repr_scalars.as_slice())
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}
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}
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