lead.rs 3.2 KB

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  1. use halo2_proofs::{arithmetic::Field, dev::MockProver};
  2. use incrementalmerkletree::{bridgetree::BridgeTree, Tree};
  3. use pasta_curves::{
  4. arithmetic::CurveAffine,
  5. group::{ff::PrimeField, Curve},
  6. pallas,
  7. };
  8. use futures::executor::block_on;
  9. use darkfi::crypto::proof::VerifyingKey;
  10. use darkfi::crypto::proof::ProvingKey;
  11. use url::Url;
  12. use darkfi::{
  13. blockchain::{
  14. Blockchain,
  15. EpochConsensus,
  16. epoch::{Epoch,EpochItem},
  17. },
  18. stakeholder::stakeholder::{Stakeholder},
  19. util::time::{Timestamp},
  20. crypto::{
  21. constants::MERKLE_DEPTH_ORCHARD,
  22. leadcoin::LeadCoin,
  23. lead_proof,
  24. merkle_node::MerkleNode,
  25. util::{mod_r_p, pedersen_commitment_scalar},
  26. },
  27. tx::Transaction,
  28. consensus::{TransactionLeadProof, Metadata, StreamletMetadata, BlockInfo},
  29. net::{P2p,Settings, SettingsPtr,},
  30. zk::circuit::lead_contract::LeadContract,
  31. };
  32. fn main() {
  33. println!("--> starting lead example");
  34. let k: u32 = 13;
  35. //
  36. //
  37. const LEN: usize = 10;
  38. let epoch_item = EpochItem {
  39. value: 0, //static stake value
  40. };
  41. //
  42. let settings = Settings{
  43. inbound: Some(Url::parse("tls://127.0.0.1:12002").unwrap()),
  44. outbound_connections: 4,
  45. manual_attempt_limit: 0,
  46. seed_query_timeout_seconds: 8,
  47. connect_timeout_seconds: 10,
  48. channel_handshake_seconds: 4,
  49. channel_heartbeat_seconds: 10,
  50. external_addr: Some(Url::parse("tls://127.0.0.1:12002").unwrap()),
  51. peers: [Url::parse("tls://127.0.0.1:12003").unwrap()].to_vec(),
  52. seeds: [Url::parse("tls://irc0.dark.fi:11001").unwrap(),
  53. Url::parse("tls://irc1.dark.fi:11001").unwrap()
  54. ].to_vec(),
  55. };
  56. let consensus = EpochConsensus::new(Some(22), Some(3), Some(22), Some(0));
  57. println!("--> block on stakeholder future");
  58. let stakeholder : Stakeholder = block_on(Stakeholder::new(consensus, settings, Some(13))).unwrap();
  59. println!("block on stakeholder future <--|");
  60. let eta : pallas::Base = stakeholder.get_eta();
  61. let mut epoch = Epoch {
  62. len: Some(LEN),
  63. item: Some(epoch_item),
  64. eta: eta,
  65. coins: vec![],
  66. };
  67. let coins: Vec<LeadCoin> = epoch.create_coins();
  68. let coin_idx = 0;
  69. let coin = coins[coin_idx];
  70. let contract = coin.create_contract();
  71. let lead_pk = stakeholder.get_provkingkey();
  72. let lead_vk = stakeholder.get_verifyingkey();
  73. //
  74. //let proof = lead_proof::create_lead_proof(lead_pk.clone(), coin.clone());
  75. //TODO (fix) proof panics
  76. let lead_tx = TransactionLeadProof::new(lead_pk, coin.clone());
  77. /*
  78. //lead_tx.verify(lead_vk, coin);
  79. let (st_id, st_hash) = stakeholder.blockchain.last().unwrap();
  80. let empty_txs : Vec<Transaction> = vec!();
  81. let metadata = Metadata::new(Timestamp::current_time(), epoch.eta.to_repr(), lead_tx);
  82. let sm = StreamletMetadata::new(vec!());
  83. let bk_info = BlockInfo::new(st_hash, 1, 0, empty_txs, metadata, sm);
  84. let blks = [bk_info];
  85. stakeholder.blockchain.add(&blks);
  86. // calculate public inputs
  87. let public_inputs = coin.public_inputs();
  88. let prover = MockProver::run(k, &contract, vec![public_inputs]).unwrap();
  89. assert_eq!(prover.verify(), Ok(()));
  90. */
  91. }