mint_proof.rs 2.9 KB

12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667686970717273747576777879808182838485868788899091929394959697
  1. use darkfi::{
  2. crypto::{
  3. keypair::PublicKey,
  4. proof::{ProvingKey, VerifyingKey},
  5. util::{mod_r_p, pedersen_commitment_scalar, pedersen_commitment_u64},
  6. Proof,
  7. },
  8. zk::vm::{Witness, ZkCircuit},
  9. zkas::decoder::ZkBinary,
  10. Result,
  11. };
  12. use halo2_gadgets::primitives::{
  13. poseidon,
  14. poseidon::{ConstantLength, P128Pow5T3},
  15. };
  16. use pasta_curves::{
  17. arithmetic::CurveAffine,
  18. group::{ff::Field, Curve},
  19. pallas,
  20. };
  21. use rand::rngs::OsRng;
  22. #[test]
  23. fn mint_proof() -> Result<()> {
  24. /* ANCHOR: main */
  25. let bincode = include_bytes!("../proof/mint.zk.bin");
  26. let zkbin = ZkBinary::decode(bincode)?;
  27. // ======
  28. // Prover
  29. // ======
  30. // Witness values
  31. let value = 42;
  32. let token_id = pallas::Base::from(22);
  33. let value_blind = pallas::Scalar::random(&mut OsRng);
  34. let token_blind = pallas::Scalar::random(&mut OsRng);
  35. let serial = pallas::Base::random(&mut OsRng);
  36. let coin_blind = pallas::Base::random(&mut OsRng);
  37. let public_key = PublicKey::random(&mut OsRng);
  38. let coords = public_key.0.to_affine().coordinates().unwrap();
  39. let prover_witnesses = vec![
  40. Witness::Base(Some(*coords.x())),
  41. Witness::Base(Some(*coords.y())),
  42. Witness::Base(Some(pallas::Base::from(value))),
  43. Witness::Base(Some(token_id)),
  44. Witness::Base(Some(serial)),
  45. Witness::Base(Some(coin_blind)),
  46. Witness::Scalar(Some(value_blind)),
  47. Witness::Scalar(Some(token_blind)),
  48. ];
  49. // Create the public inputs
  50. let msgs = [*coords.x(), *coords.y(), pallas::Base::from(value), token_id, serial, coin_blind];
  51. let coin = poseidon::Hash::<_, P128Pow5T3, ConstantLength<6>, 3, 2>::init().hash(msgs);
  52. let value_commit = pedersen_commitment_u64(value, value_blind);
  53. let value_coords = value_commit.to_affine().coordinates().unwrap();
  54. let token_commit = pedersen_commitment_scalar(mod_r_p(token_id), token_blind);
  55. let token_coords = token_commit.to_affine().coordinates().unwrap();
  56. let public_inputs =
  57. vec![coin, *value_coords.x(), *value_coords.y(), *token_coords.x(), *token_coords.y()];
  58. // Create the circuit
  59. let circuit = ZkCircuit::new(prover_witnesses, zkbin.clone());
  60. let proving_key = ProvingKey::build(11, &circuit);
  61. let proof = Proof::create(&proving_key, &[circuit], &public_inputs, &mut OsRng)?;
  62. // ========
  63. // Verifier
  64. // ========
  65. // Construct empty witnesses
  66. let verifier_witnesses = vec![
  67. Witness::Base(None),
  68. Witness::Base(None),
  69. Witness::Base(None),
  70. Witness::Base(None),
  71. Witness::Base(None),
  72. Witness::Base(None),
  73. Witness::Scalar(None),
  74. Witness::Scalar(None),
  75. ];
  76. // Create the circuit
  77. let circuit = ZkCircuit::new(verifier_witnesses, zkbin);
  78. let verifying_key = VerifyingKey::build(11, &circuit);
  79. proof.verify(&verifying_key, &public_inputs)?;
  80. /* ANCHOR_END: main */
  81. Ok(())
  82. }