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serai/coins/monero/src/clsag/multisig.rs

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use rand_core::{RngCore, CryptoRng, SeedableRng};
use rand_chacha::ChaCha12Rng;
use blake2::{Digest, Blake2b512};
use curve25519_dalek::{
constants::ED25519_BASEPOINT_TABLE,
scalar::Scalar,
edwards::EdwardsPoint
};
use group::Group;
use dalek_ff_group as dfg;
use frost::{Curve, FrostError, algorithm::Algorithm, sign::ParamsView};
use monero::util::ringct::{Key, Clsag};
use crate::{
random_scalar,
hash_to_point,
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frost::{MultisigError, Ed25519, DLEqProof},
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clsag::{Input, sign_core, verify}
};
#[allow(non_snake_case)]
#[derive(Clone, Debug)]
struct ClsagSignInterim {
c: Scalar,
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s: Scalar,
clsag: Clsag,
C_out: EdwardsPoint
}
#[allow(non_snake_case)]
#[derive(Clone, Debug)]
pub struct Multisig {
seed: [u8; 32],
b: Vec<u8>,
AH: dfg::EdwardsPoint,
msg: [u8; 32],
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input: Input,
interim: Option<ClsagSignInterim>
}
impl Multisig {
pub fn new<R: RngCore + CryptoRng + SeedableRng>(
rng: &mut R,
msg: [u8; 32],
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input: Input
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) -> Result<Multisig, MultisigError> {
let mut seed = [0; 32];
rng.fill_bytes(&mut seed);
Ok(
Multisig {
seed,
b: vec![],
AH: dfg::EdwardsPoint::identity(),
msg,
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input,
interim: None
}
)
}
}
impl Algorithm<Ed25519> for Multisig {
type Signature = (Clsag, EdwardsPoint);
fn context(&self) -> Vec<u8> {
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let mut context = vec![];
context.extend(&self.seed);
context.extend(&self.msg);
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context.extend(&self.input.context());
context
}
// We arguably don't have to commit to at all thanks to xG and yG being committed to, both of
// those being proven to have the same scalar as xH and yH, yet it doesn't hurt
fn addendum_commit_len() -> usize {
64
}
fn preprocess_addendum<R: RngCore + CryptoRng>(
rng: &mut R,
view: &ParamsView<Ed25519>,
nonces: &[dfg::Scalar; 2]
) -> Vec<u8> {
#[allow(non_snake_case)]
let H = hash_to_point(&view.group_key().0);
let h0 = nonces[0].0 * H;
let h1 = nonces[1].0 * H;
// 32 + 32 + 64 + 64
let mut serialized = Vec::with_capacity(192);
serialized.extend(h0.compress().to_bytes());
serialized.extend(h1.compress().to_bytes());
serialized.extend(&DLEqProof::prove(rng, &nonces[0].0, &H, &h0).serialize());
serialized.extend(&DLEqProof::prove(rng, &nonces[1].0, &H, &h1).serialize());
serialized
}
fn process_addendum(
&mut self,
_: &ParamsView<Ed25519>,
l: usize,
commitments: &[dfg::EdwardsPoint; 2],
p: &dfg::Scalar,
serialized: &[u8]
) -> Result<(), FrostError> {
if serialized.len() != 192 {
// Not an optimal error but...
Err(FrostError::InvalidCommitmentQuantity(l, 6, serialized.len() / 32))?;
}
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let alt = &hash_to_point(&self.input.ring[self.input.i][0]);
let h0 = <Ed25519 as Curve>::G_from_slice(&serialized[0 .. 32]).map_err(|_| FrostError::InvalidCommitment(l))?;
DLEqProof::deserialize(&serialized[64 .. 128]).ok_or(FrostError::InvalidCommitment(l))?.verify(
&alt,
&commitments[0],
&h0
).map_err(|_| FrostError::InvalidCommitment(l))?;
let h1 = <Ed25519 as Curve>::G_from_slice(&serialized[32 .. 64]).map_err(|_| FrostError::InvalidCommitment(l))?;
DLEqProof::deserialize(&serialized[128 .. 192]).ok_or(FrostError::InvalidCommitment(l))?.verify(
&alt,
&commitments[1],
&h1
).map_err(|_| FrostError::InvalidCommitment(l))?;
self.b.extend(&l.to_le_bytes());
self.b.extend(&serialized[0 .. 64]);
self.AH += h0 + (h1 * p);
Ok(())
}
fn sign_share(
&mut self,
view: &ParamsView<Ed25519>,
nonce_sum: dfg::EdwardsPoint,
nonce: dfg::Scalar,
_: &[u8]
) -> dfg::Scalar {
// Use everyone's commitments to derive a random source all signers can agree upon
// Cannot be manipulated to effect and all signers must, and will, know this
// Uses a parent seed (part of context) as well just to enable further privacy options
let mut seed = b"CLSAG_randomness".to_vec();
seed.extend(&self.context());
seed.extend(&self.b);
let mut rng = ChaCha12Rng::from_seed(Blake2b512::digest(seed)[0 .. 32].try_into().unwrap());
let mask = random_scalar(&mut rng);
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#[allow(non_snake_case)]
let (clsag, c, mu_C, z, mu_P, C_out) = sign_core(
&mut rng,
&self.msg,
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&self.input,
mask,
nonce_sum.0,
self.AH.0
);
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self.interim = Some(ClsagSignInterim { c: c * mu_P, s: c * mu_C * z, clsag, C_out });
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let share = dfg::Scalar(nonce.0 - (c * mu_P * view.secret_share().0));
share
}
fn verify(
&self,
_: dfg::EdwardsPoint,
_: dfg::EdwardsPoint,
sum: dfg::Scalar
) -> Option<Self::Signature> {
let interim = self.interim.as_ref().unwrap();
let mut clsag = interim.clsag.clone();
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clsag.s[self.input.i] = Key { key: (sum.0 - interim.s).to_bytes() };
if verify(&clsag, &self.msg, self.input.image, &self.input.ring, interim.C_out) {
return Some((clsag, interim.C_out));
}
return None;
}
fn verify_share(
&self,
verification_share: dfg::EdwardsPoint,
nonce: dfg::EdwardsPoint,
share: dfg::Scalar,
) -> bool {
let interim = self.interim.as_ref().unwrap();
return (&share.0 * &ED25519_BASEPOINT_TABLE) == (
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nonce.0 - (interim.c * verification_share.0)
);
}
}