burn_proof.rs 5.1 KB

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  1. use std::time::Instant;
  2. use halo2_gadgets::poseidon::primitives as poseidon;
  3. use incrementalmerkletree::Hashable;
  4. use log::debug;
  5. use pasta_curves::{arithmetic::CurveAffine, group::Curve};
  6. use rand::rngs::OsRng;
  7. use super::{
  8. nullifier::Nullifier,
  9. proof::{Proof, ProvingKey, VerifyingKey},
  10. util::{mod_r_p, pedersen_commitment_scalar, pedersen_commitment_u64},
  11. };
  12. use crate::{
  13. crypto::{
  14. keypair::{PublicKey, SecretKey},
  15. merkle_node::MerkleNode,
  16. types::*,
  17. },
  18. util::serial::{SerialDecodable, SerialEncodable},
  19. zk::circuit::burn_contract::BurnContract,
  20. Result,
  21. };
  22. #[derive(Debug, Clone, PartialEq, SerialEncodable, SerialDecodable)]
  23. pub struct BurnRevealedValues {
  24. pub value_commit: DrkValueCommit,
  25. pub token_commit: DrkValueCommit,
  26. pub nullifier: Nullifier,
  27. pub merkle_root: MerkleNode,
  28. pub signature_public: PublicKey,
  29. }
  30. impl BurnRevealedValues {
  31. #[allow(clippy::too_many_arguments)]
  32. pub fn compute(
  33. value: u64,
  34. token_id: DrkTokenId,
  35. value_blind: DrkValueBlind,
  36. token_blind: DrkValueBlind,
  37. serial: DrkSerial,
  38. coin_blind: DrkCoinBlind,
  39. secret: SecretKey,
  40. leaf_position: incrementalmerkletree::Position,
  41. merkle_path: Vec<MerkleNode>,
  42. signature_secret: SecretKey,
  43. ) -> Self {
  44. let nullifier = [secret.0, serial];
  45. let nullifier =
  46. poseidon::Hash::<_, poseidon::P128Pow5T3, poseidon::ConstantLength<2>, 3, 2>::init()
  47. .hash(nullifier);
  48. let public_key = PublicKey::from_secret(secret);
  49. let coords = public_key.0.to_affine().coordinates().unwrap();
  50. let messages =
  51. [*coords.x(), *coords.y(), DrkValue::from(value), token_id, serial, coin_blind];
  52. let coin =
  53. poseidon::Hash::<_, poseidon::P128Pow5T3, poseidon::ConstantLength<6>, 3, 2>::init()
  54. .hash(messages);
  55. let merkle_root = {
  56. let position: u64 = leaf_position.into();
  57. let mut current = MerkleNode(coin);
  58. for (level, sibling) in merkle_path.iter().enumerate() {
  59. let level = level as u8;
  60. current = if position & (1 << level) == 0 {
  61. MerkleNode::combine(level.into(), &current, sibling)
  62. } else {
  63. MerkleNode::combine(level.into(), sibling, &current)
  64. };
  65. }
  66. current
  67. };
  68. let value_commit = pedersen_commitment_u64(value, value_blind);
  69. let token_commit = pedersen_commitment_scalar(mod_r_p(token_id), token_blind);
  70. BurnRevealedValues {
  71. value_commit,
  72. token_commit,
  73. nullifier: Nullifier(nullifier),
  74. merkle_root,
  75. signature_public: PublicKey::from_secret(signature_secret),
  76. }
  77. }
  78. pub fn make_outputs(&self) -> [DrkCircuitField; 8] {
  79. let value_coords = self.value_commit.to_affine().coordinates().unwrap();
  80. let token_coords = self.token_commit.to_affine().coordinates().unwrap();
  81. let merkle_root = self.merkle_root.0;
  82. let sig_coords = self.signature_public.0.to_affine().coordinates().unwrap();
  83. vec![
  84. self.nullifier.inner(),
  85. *value_coords.x(),
  86. *value_coords.y(),
  87. *token_coords.x(),
  88. *token_coords.y(),
  89. merkle_root,
  90. *sig_coords.x(),
  91. *sig_coords.y(),
  92. ]
  93. .try_into()
  94. .unwrap()
  95. }
  96. }
  97. #[allow(clippy::too_many_arguments)]
  98. pub fn create_burn_proof(
  99. pk: &ProvingKey,
  100. value: u64,
  101. token_id: DrkTokenId,
  102. value_blind: DrkValueBlind,
  103. token_blind: DrkValueBlind,
  104. serial: DrkSerial,
  105. coin_blind: DrkCoinBlind,
  106. secret: SecretKey,
  107. leaf_position: incrementalmerkletree::Position,
  108. merkle_path: Vec<MerkleNode>,
  109. signature_secret: SecretKey,
  110. ) -> Result<(Proof, BurnRevealedValues)> {
  111. let revealed = BurnRevealedValues::compute(
  112. value,
  113. token_id,
  114. value_blind,
  115. token_blind,
  116. serial,
  117. coin_blind,
  118. secret,
  119. leaf_position,
  120. merkle_path.clone(),
  121. signature_secret,
  122. );
  123. let leaf_position: u64 = leaf_position.into();
  124. let c = BurnContract {
  125. secret_key: Some(secret.0),
  126. serial: Some(serial),
  127. value: Some(DrkValue::from(value)),
  128. token: Some(token_id),
  129. coin_blind: Some(coin_blind),
  130. value_blind: Some(value_blind),
  131. token_blind: Some(token_blind),
  132. leaf_pos: Some(leaf_position as u32),
  133. merkle_path: Some(merkle_path.try_into().unwrap()),
  134. sig_secret: Some(signature_secret.0),
  135. };
  136. let start = Instant::now();
  137. let public_inputs = revealed.make_outputs();
  138. let proof = Proof::create(pk, &[c], &public_inputs, &mut OsRng)?;
  139. debug!("Prove burn: [{:?}]", start.elapsed());
  140. Ok((proof, revealed))
  141. }
  142. pub fn verify_burn_proof(
  143. vk: &VerifyingKey,
  144. proof: &Proof,
  145. revealed: &BurnRevealedValues,
  146. ) -> Result<()> {
  147. let start = Instant::now();
  148. let public_inputs = revealed.make_outputs();
  149. proof.verify(vk, &public_inputs)?;
  150. debug!("Verify burn: [{:?}]", start.elapsed());
  151. Ok(())
  152. }