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fix(vanishing_poly): compute x^2 - h^2 when dim_h == 1 in evaluate_constraints #186

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20 changes: 17 additions & 3 deletions src/poly/domain/vanishing_poly.rs
Original file line number Diff line number Diff line change
@@ -1,7 +1,6 @@
use crate::fields::{fp::FpVar, FieldVar};
use ark_ff::{Field, PrimeField};
use ark_relations::gr1cs::SynthesisError;
use ark_std::ops::Sub;

/// Struct describing vanishing polynomial for a multiplicative coset H where
/// |H| is a power of 2. As H is a coset, every element can be described as
Expand Down Expand Up @@ -40,8 +39,9 @@ impl<F: PrimeField> VanishingPolynomial<F> {
/// matrix
pub fn evaluate_constraints(&self, x: &FpVar<F>) -> Result<FpVar<F>, SynthesisError> {
if self.dim_h == 1 {
let result = x.sub(x);
return Ok(result);
let mut cur = x.square()?;
cur -= &FpVar::Constant(self.constant_term);
return Ok(cur);
}

let mut cur = x.square()?;
Expand Down Expand Up @@ -76,4 +76,18 @@ mod tests {
assert!(cs.is_satisfied().unwrap());
assert_eq!(result_var.value().unwrap(), native);
}

#[test]
fn constraints_test_dim1() {
let mut rng = test_rng();
let offset = Fr::rand(&mut rng);
let cs = ConstraintSystem::new_ref();
let x = Fr::rand(&mut rng);
let x_var = FpVar::new_witness(ns!(cs, "x_var"), || Ok(x)).unwrap();
let vp = VanishingPolynomial::new(offset, 1);
let native = vp.evaluate(&x);
let result_var = vp.evaluate_constraints(&x_var).unwrap();
assert!(cs.is_satisfied().unwrap());
assert_eq!(result_var.value().unwrap(), native);
}
}