use super::*;
impl<E: Environment, const NUM_WINDOWS: u8, const WINDOW_SIZE: u8> CommitUncompressed
for BHP<E, NUM_WINDOWS, WINDOW_SIZE>
{
type Input = Boolean<E>;
type Output = Group<E>;
type Randomizer = Scalar<E>;
fn commit_uncompressed(&self, input: &[Self::Input], randomizer: &Self::Randomizer) -> Self::Output {
let hash = self.hash_uncompressed(input);
randomizer
.to_bits_le()
.iter()
.zip_eq(self.hasher.random_base())
.map(|(bit, power)| Group::ternary(bit, power, &Group::zero()))
.fold(hash, |acc, x| acc + x)
}
}
#[cfg(all(test, console))]
mod tests {
use super::*;
use snarkvm_circuit_types::environment::Circuit;
use snarkvm_curves::{AffineCurve, ProjectiveCurve};
use snarkvm_utilities::{TestRng, Uniform};
use anyhow::Result;
const ITERATIONS: u64 = 100;
const DOMAIN: &str = "BHPCircuit0";
fn check_commit_uncompressed<const NUM_WINDOWS: u8, const WINDOW_SIZE: u8>(
mode: Mode,
num_constants: u64,
num_public: u64,
num_private: u64,
num_constraints: u64,
) -> Result<()> {
use console::CommitUncompressed as C;
let native = console::BHP::<<Circuit as Environment>::Network, NUM_WINDOWS, WINDOW_SIZE>::setup(DOMAIN)?;
let circuit = BHP::<Circuit, NUM_WINDOWS, WINDOW_SIZE>::new(Mode::Constant, native.clone());
let num_input_bits = NUM_WINDOWS as usize * WINDOW_SIZE as usize * BHP_CHUNK_SIZE;
let mut rng = TestRng::default();
for i in 0..ITERATIONS {
let input = (0..num_input_bits).map(|_| bool::rand(&mut rng)).collect::<Vec<bool>>();
let randomizer = Uniform::rand(&mut rng);
let expected = native.commit_uncompressed(&input, &randomizer).expect("Failed to commit native input");
let circuit_input: Vec<Boolean<_>> = Inject::new(mode, input);
let circuit_randomizer: Scalar<_> = Inject::new(mode, randomizer);
Circuit::scope(format!("BHP {mode} {i}"), || {
let candidate = circuit.commit_uncompressed(&circuit_input, &circuit_randomizer);
assert_scope!(<=num_constants, num_public, num_private, num_constraints);
assert_eq!(expected, candidate.eject_value());
assert!(candidate.eject_value().to_affine().is_on_curve());
assert!(candidate.eject_value().to_affine().is_in_correct_subgroup_assuming_on_curve());
});
Circuit::reset();
}
Ok(())
}
#[test]
fn test_commit_uncompressed_constant() -> Result<()> {
check_commit_uncompressed::<32, 48>(Mode::Constant, 8200, 0, 0, 0)
}
#[test]
fn test_commit_uncompressed_public() -> Result<()> {
check_commit_uncompressed::<32, 48>(Mode::Public, 1044, 0, 10781, 10785)
}
#[test]
fn test_commit_uncompressed_private() -> Result<()> {
check_commit_uncompressed::<32, 48>(Mode::Private, 1044, 0, 10781, 10785)
}
}