generate public inputs file for proof, test script update
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@ -34,14 +34,15 @@ struct ProofJson {
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fn main() {
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let args: Vec<String> = std::env::args().collect();
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if args.len() != 5 {
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println!("Usage: \n<circuit.json> <witness.json> <params> <proof.json>");
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if args.len() != 6 {
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println!("Usage: \n<circuit.json> <witness.json> <params> <proof.json> <public.json>");
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std::process::exit(exitcode::USAGE);
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}
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let circuit_filename = &args[1];
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let witness_filename = &args[2];
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let params_filename = &args[3];
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let proof_filename = &args[4];
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let public_filename = &args[5];
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let should_filter_points_at_infinity = false;
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let rng = &mut rand::XorShiftRng::new_unseeded(); // TODO: change this unsafe unseeded random (!)
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@ -75,41 +76,32 @@ fn main() {
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let repr_to_big = |r| {
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BigUint::from_str_radix(&format!("{}", r)[2..], 16).unwrap().to_str_radix(10)
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};
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let repr_to_big2 = |r| {
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BigUint::from_str_radix(&format!("{}", r)[2..], 16).unwrap().to_str_radix(10)
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};
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let p1_to_vec = |p : &<Bn256 as Engine>::G1Affine| {
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let mut v = vec![];
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//println!("test: {}", p.get_x().into_repr());
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let x = repr_to_big(p.get_x().into_repr());
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v.push(x);
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let y = repr_to_big(p.get_y().into_repr());
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v.push(y);
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if p.is_zero() {
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v.push("0".to_string());
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} else {
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v.push("1".to_string());
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}
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v
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vec![
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repr_to_big(p.get_x().into_repr()),
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repr_to_big(p.get_y().into_repr()),
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if p.is_zero() { "0".to_string() } else { "1".to_string() }
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]
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};
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let p2_to_vec = |p : &<Bn256 as Engine>::G2Affine| {
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let mut v = vec![];
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let x = p.get_x();
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let mut x_v = vec![];
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x_v.push(repr_to_big(x.c0.into_repr()));
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x_v.push(repr_to_big(x.c1.into_repr()));
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v.push(x_v);
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let y = p.get_y();
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let mut y_v = vec![];
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y_v.push(repr_to_big(y.c0.into_repr()));
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y_v.push(repr_to_big(y.c1.into_repr()));
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v.push(y_v);
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if p.is_zero() {
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v.push(["0".to_string(), "0".to_string()].to_vec());
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} else {
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v.push(["1".to_string(), "0".to_string()].to_vec());
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}
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v
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vec![
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vec![
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repr_to_big(p.get_x().c0.into_repr()),
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repr_to_big(p.get_x().c1.into_repr()),
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],
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vec![
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repr_to_big(p.get_y().c0.into_repr()),
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repr_to_big(p.get_y().c1.into_repr()),
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],
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if p.is_zero() {
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vec!["0".to_string(), "0".to_string()]
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} else {
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vec!["1".to_string(), "0".to_string()]
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}
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]
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};
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let proof = ProofJson {
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@ -122,5 +114,12 @@ fn main() {
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let proof_json = serde_json::to_string(&proof).unwrap();
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fs::write(proof_filename, proof_json.as_bytes()).unwrap();
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let mut public_inputs = vec![];
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for x in input[1..].iter() {
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public_inputs.push(repr_to_big2(x.into_repr()));
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}
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let public_json = serde_json::to_string(&public_inputs).unwrap();
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fs::write(public_filename, public_json.as_bytes()).unwrap();
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println!("Done!")
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}
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@ -1,9 +1,12 @@
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#!/bin/sh
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rm -f pk.json vk.json transformed_vk.json transformed_pk.* proof.json
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set -e
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if [ ! -f ../powersoftau/phase1radix2m0 ]; then
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echo "Please run powers of tau test first to generate radix files"
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exit 1
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fi
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# move results of powers of tau here
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cp ../powersoftau/phase1radix* .
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@ -26,6 +29,7 @@ cargo run --release --bin verify_contribution circuit.json circom3.params circom
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# generate resulting keys
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cargo run --release --bin export_keys circom4.params vk.json pk.json
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# create dummy keys in circom format
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echo "generating dummy key files..."
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npx snarkjs setup --protocol groth
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# patch dummy keys with actual keys params
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cargo run --release --bin copy_json proving_key.json pk.json transformed_pk.json
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@ -35,6 +39,6 @@ cargo run --release --bin copy_json verification_key.json vk.json transformed_vk
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cargo run --release --bin generate_verifier circom4.params verifier.sol
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# try to generate and verify proof
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snarkjs calculatewitness
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cargo run --release --bin prove circuit.json witness.json circom4.params proof.json
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snarkjs verify --vk transformed_vk.json --proof proof.json
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npx snarkjs calculatewitness
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cargo run --release --bin prove circuit.json witness.json circom4.params proof.json public.json
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npx snarkjs verify --vk transformed_vk.json --proof proof.json
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