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#![allow(non_snake_case)]
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#![allow(non_upper_case_globals)]
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#![allow(non_camel_case_types)]
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#![allow(clippy::upper_case_acronyms)]
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#![allow(dead_code)]
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use ark_pallas::{constraints::GVar, Fr, Projective};
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use ark_vesta::{constraints::GVar as GVar2, Projective as Projective2};
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use folding_schemes::commitment::{pedersen::Pedersen, CommitmentScheme};
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use folding_schemes::folding::nova::{get_r1cs, ProverParams, VerifierParams};
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use folding_schemes::frontend::FCircuit;
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use folding_schemes::transcript::poseidon::poseidon_test_config;
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// This method computes the Nova's Prover & Verifier parameters for the example.
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// Warning: this method is only for testing purposes. For a real world use case those parameters
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// should be generated carefully (both the PoseidonConfig and the PedersenParams).
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#[allow(clippy::type_complexity)]
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pub(crate) fn test_nova_setup<FC: FCircuit<Fr>>(
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F_circuit: FC,
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) -> (
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ProverParams<Projective, Projective2, Pedersen<Projective>, Pedersen<Projective2>>,
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VerifierParams<Projective, Projective2>,
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) {
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let mut rng = ark_std::test_rng();
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let poseidon_config = poseidon_test_config::<Fr>();
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// get the CM & CF_CM len
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let (r1cs, cf_r1cs) =
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get_r1cs::<Projective, GVar, Projective2, GVar2, FC>(&poseidon_config, F_circuit).unwrap();
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let cf_len = r1cs.A.n_rows;
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let cf_cf_len = cf_r1cs.A.n_rows;
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let (pedersen_params, _) = Pedersen::<Projective>::setup(&mut rng, cf_len).unwrap();
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let (cf_pedersen_params, _) = Pedersen::<Projective2>::setup(&mut rng, cf_cf_len).unwrap();
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let prover_params =
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ProverParams::<Projective, Projective2, Pedersen<Projective>, Pedersen<Projective2>> {
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poseidon_config: poseidon_config.clone(),
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cs_params: pedersen_params,
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cf_cs_params: cf_pedersen_params,
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};
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let verifier_params = VerifierParams::<Projective, Projective2> {
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poseidon_config: poseidon_config.clone(),
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r1cs,
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cf_r1cs,
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};
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(prover_params, verifier_params)
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}
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fn main() {}
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