lead.rs 4.8 KB

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  1. use incrementalmerkletree::{bridgetree::BridgeTree, Frontier, Tree};
  2. use halo2_gadgets::primitives::{
  3. poseidon,
  4. poseidon::{ConstantLength, P128Pow5T3},
  5. };
  6. use rand::{thread_rng, Rng};
  7. use pasta_curves::{pallas, Fp};
  8. use darkfi::{
  9. zk:: {
  10. circuit::lead_contract::{LeadContract},
  11. },
  12. crypto::{
  13. coin::Coin,
  14. merkle_node::MerkleNode,
  15. keypair::{Keypair, PublicKey, SecretKey},
  16. types::*,
  17. constants::{
  18. NullifierK, OrchardFixedBases, OrchardFixedBasesFull, ValueCommitV, MERKLE_DEPTH_ORCHARD,
  19. },
  20. },
  21. };
  22. use super::{
  23. nullifier::Nullifier,
  24. proof::{Proof, ProvingKey, VerifyingKey},
  25. util::{mod_r_p, pedersen_commitment_scalar, pedersen_commitment_u64},
  26. };
  27. #[derive(Debug,Default,Clone)]
  28. pub struct Coin
  29. {
  30. let value : Option<u32>, //stake
  31. let cm : Option<NonIdentityPoint>,
  32. let cm2 : Option<NonIdentityPoint>,
  33. let cm_blind : Option<pallas::Base>,
  34. let sl : Option<u32>, //slot id
  35. let tau : Option<u32>,
  36. let nonce : Option<u32>,
  37. let sn : Option<u32>, // coin's serial number
  38. let sk : Option<u64>,
  39. let pk : Option<PublicKey>,
  40. let root_cm : Option<MerkleNode>,
  41. let root_sk : Option<MerkleNode>,
  42. let path: Option<[pallas::Base; MERKLE_DEPTH_ORCHARD]>,
  43. let path_sk: Option<[pallas::Base; MERKLE_DEPTH_ORCHARD]>,
  44. let opening1 : Option<pallas::Base>,
  45. let opening2 : Option<pallas::Base>,
  46. };
  47. fn main()
  48. {
  49. let k = 13;
  50. //
  51. //TODO calculate commitment here
  52. //this is the commitment of the first coin
  53. //TODO construct a tree of multiple coins
  54. const let LEN : u8 = 10;
  55. let mut rng = thread_rng();
  56. let sks : Vec<u32> = vec![];
  57. let root_sks : Vec<MerkleNode> = vec![];
  58. let path_sks : Option<[MerkleNode;MERKLE_DEPTH_ORCHARD]>;
  59. let tree = BridgeTree::<MerkleNode, 32>::new(LEN);
  60. for i in LEN {
  61. let sk : u64 = rng.gen();
  62. sks.push(sk);
  63. let node = MerkleNode(sk);
  64. tree.append(&node);
  65. let path = tree.authenticate_path(&node);
  66. root_sks.push(tree.root());
  67. path_sks.push(path);
  68. }
  69. let seeds : Vec<u64> = vec![];
  70. for i in LEN {
  71. let rho : u64 = rng.gen();
  72. seeds.push(rho);
  73. }
  74. //
  75. let mau_y : u64 = rng.gen();
  76. let mau_rho : u64 = rng.gen();
  77. //
  78. let coins : Vec<Coin> = vec![Coin];
  79. //
  80. let tree_cm = BridgeTree<MerkleNode, 32>::new(LEN);
  81. for i in LEN {
  82. let c_v = i*2;
  83. //random sampling of the same size of prf,
  84. //pseudo random sampling that is the size of pederson commitment
  85. let c_sk : u64 = sks[i];
  86. let c_sl : u32 = i;
  87. let c_tau : u32 = i; // let's assume it's sl for simplicity
  88. let c_root_sk : MerkleNode = root_sks[i];
  89. let c_seed : u64 = seeds[i];
  90. let c_sn : u32 = pedersen_commitment_u64(c_seed, c_root_sk);
  91. let c_cm_message = [c_pk.clone(), c_v.clone(), c_seed.clone()];
  92. let c_cm_v = poseidon::Hash::<_,P128Pow5T3, ConstantLength<6>, 3, 2>::init().hash(c_cm_message);
  93. let c_cm1_blind = pallas::Base::from(0); //tmp val
  94. let c_cm2_blind = pallas::Base::from(0); //tmp val
  95. let c_cm : NonIdentityPoint = pedersen_commitment_base(c_cm_v, c_cm1_blind);
  96. let c_pk = PublicKey::from_secret(c_sk);
  97. let c_cm_node = MerkleNode(c_cm);
  98. tree_cm.append(&c_cm_node);
  99. let c_cm_path = tree_cm.authenticate_path(&c_cm_node).unwrap();
  100. let c_root_cm = tree_cm.root();
  101. // lead coin commitment
  102. //TODO this c_v can be
  103. let c_seed2 = pedersen_commitment_u64(c_seed, c_root_sk);
  104. let lead_coin_msg = [c_pk, c_v, c_seed2];
  105. poseidon::Hash::<_,P128Pow5T3, ConstantLength<6>, 3, 2>::init().hash(lead_coin_msg);
  106. let c_cm2 = pedersen_commitment_u64(lead_coin_msg, c_seeed2);
  107. let coin = Coin {
  108. c_v,
  109. c_cm,
  110. c_cm2,
  111. c_cm_blind,
  112. c_sl,
  113. c_tau,
  114. c_seed,
  115. c_tau,
  116. c_sn,
  117. c_sk,
  118. c_pk,
  119. c_root_cm,
  120. root_sks[i],
  121. c_cm_path,
  122. c_path_sk,
  123. c_cm1_blind,
  124. c_cm2_blind,
  125. };
  126. coins.push(coin);
  127. }
  128. let coin_idx = 0;
  129. let coin = coins[coin_idx];
  130. let path_sk = path_sks[coin_idx];
  131. let contract = LeadContract {
  132. coin.path,
  133. coin.root_sk,
  134. path_sk,
  135. coin.tau, //
  136. coin.nonce,
  137. coin.opening1,
  138. coin.value,
  139. coin.opening2,
  140. coin.cm,
  141. coin.cm2,
  142. coin.sn,
  143. coin.sl,
  144. mau_rho.clone(),
  145. mau_y.clone(),
  146. coin.c_root_cm,
  147. };
  148. //public inputs
  149. let mut public_inputs = vec![];
  150. //TODO
  151. let prover = MockProver::run(k, &contract, vec![public_inputs]).unwrap();
  152. assert_eq!(prover.verify(), Ok(()));
  153. }