use halo2_proofs::{arithmetic::Field, dev::MockProver, circuit::Value}; use incrementalmerkletree::{bridgetree::BridgeTree, Tree}; use pasta_curves::{ arithmetic::CurveAffine, group::{ff::PrimeField, Curve}, pallas, }; use rand::{thread_rng, Rng}; use darkfi::{ blockchain::epoch::{Epoch,EpochItem}, crypto::{ constants::MERKLE_DEPTH_ORCHARD, leadcoin::LeadCoin, merkle_node::MerkleNode, util::{mod_r_p, pedersen_commitment_scalar}, }, zk::circuit::lead_contract::LeadContract, }; fn main() { let k: u32 = 13; //let lead_pk = ProvingKey::build(k, &LeadContract::default()); //let lead_vk = VerifyingKey::build(k, &LeadContract::default()); // const LEN: usize = 10; let epoch_item = EpochItem{ value: 1, //static stake value }; let epoch = Epoch { len: Some(LEN), item: Some(epoch_item), }; let mut rng = thread_rng(); let coins: Vec = epoch.create_coins(); let coin_idx = 0; let coin = coins[coin_idx]; let yu64: u64 = rng.gen(); let rhou64: u64 = rng.gen(); let mau_y: pallas::Base = pallas::Base::from(yu64); let mau_rho: pallas::Base = pallas::Base::from(rhou64); let contract = LeadContract { path: Value::known(coin.path.unwrap()), coin_pk_x: Value::known(coin.pk_x.unwrap()), coin_pk_y: Value::known(coin.pk_y.unwrap()), root_sk: Value::known(coin.root_sk.unwrap()), sf_root_sk: Value::known(mod_r_p(coin.root_sk.unwrap())), path_sk: Value::known(coin.path_sk.unwrap()), coin_timestamp: Value::known(coin.tau.unwrap()), // coin_nonce: Value::known(coin.nonce.unwrap()), coin1_blind: Value::known(coin.c1_blind.unwrap()), value: Value::known(coin.value.unwrap()), coin2_blind: Value::known(coin.c2_blind.unwrap()), cm_pos: Value::known(coin.idx), //sn_c1: Value::known(coin.sn.unwrap()), slot: Value::known(coin.sl.unwrap()), mau_rho: Value::known(mod_r_p(mau_rho)), mau_y: Value::known(mod_r_p(mau_y)), root_cm: Value::known(coin.root_cm.unwrap()), }; //let proof = create_lead_proof(lead_pk.clone(), coin.clone()).unwrap(); //verify_lead_proof(&lead_vk, &proof, coin); // calculate public inputs let public_inputs = coin.public_inputs(); let prover = MockProver::run(k, &contract, vec![public_inputs]).unwrap(); // assert_eq!(prover.verify(), Ok(())); // }