blockchain.rs 5.3 KB

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  1. /* This file is part of DarkFi (https://dark.fi)
  2. *
  3. * Copyright (C) 2020-2023 Dyne.org foundation
  4. *
  5. * This program is free software: you can redistribute it and/or modify
  6. * it under the terms of the GNU Affero General Public License as
  7. * published by the Free Software Foundation, either version 3 of the
  8. * License, or (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU Affero General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU Affero General Public License
  16. * along with this program. If not, see <https://www.gnu.org/licenses/>.
  17. */
  18. use darkfi::{
  19. blockchain::{BlockInfo, Blockchain, BlockchainOverlay, Header},
  20. validator::{
  21. pid::slot_pid_output,
  22. validation::{validate_block, validate_blockchain},
  23. },
  24. Error, Result,
  25. };
  26. use darkfi_sdk::{
  27. blockchain::{expected_reward, PidOutput, PreviousSlot, Slot},
  28. pasta::{group::ff::Field, pallas},
  29. };
  30. struct Harness {
  31. pub alice: Blockchain,
  32. pub bob: Blockchain,
  33. }
  34. impl Harness {
  35. fn new() -> Result<Self> {
  36. let alice = Blockchain::new(&sled::Config::new().temporary(true).open()?)?;
  37. let bob = Blockchain::new(&sled::Config::new().temporary(true).open()?)?;
  38. Ok(Self { alice, bob })
  39. }
  40. fn is_empty(&self) {
  41. assert!(self.alice.is_empty());
  42. assert!(self.bob.is_empty());
  43. }
  44. fn validate_chains(&self) -> Result<()> {
  45. validate_blockchain(&self.alice)?;
  46. validate_blockchain(&self.bob)?;
  47. assert_eq!(self.alice.len(), self.bob.len());
  48. Ok(())
  49. }
  50. fn generate_next_block(&self, previous: &BlockInfo) -> BlockInfo {
  51. let previous_hash = previous.blockhash();
  52. // Generate slot
  53. let previous_slot = previous.slots.last().unwrap();
  54. let id = previous_slot.id + 1;
  55. let producers = 1;
  56. let previous_slot_info = PreviousSlot::new(
  57. producers,
  58. vec![previous_hash],
  59. vec![previous.header.previous],
  60. previous_slot.pid.error,
  61. );
  62. let (f, error, sigma1, sigma2) = slot_pid_output(previous_slot, producers);
  63. let pid = PidOutput::new(f, error, sigma1, sigma2);
  64. let total_tokens = previous_slot.total_tokens + previous_slot.reward;
  65. let reward = expected_reward(id);
  66. let slot = Slot::new(id, previous_slot_info, pid, pallas::Base::ZERO, total_tokens, reward);
  67. // We increment timestamp so we don't have to use sleep
  68. let mut timestamp = previous.header.timestamp;
  69. timestamp.add(1);
  70. // Generate header
  71. let header =
  72. Header::new(previous_hash, previous.header.epoch, id, timestamp, previous.header.root);
  73. BlockInfo::new(
  74. header,
  75. vec![],
  76. previous.signature,
  77. previous.proposal.clone(),
  78. previous.eta,
  79. vec![slot],
  80. )
  81. }
  82. fn add_blocks(&self, blocks: &[BlockInfo]) -> Result<()> {
  83. self.add_blocks_to_chain(&self.alice, blocks)?;
  84. self.add_blocks_to_chain(&self.bob, blocks)?;
  85. Ok(())
  86. }
  87. // This is what the validator will execute when it receives a block.
  88. fn add_blocks_to_chain(&self, blockchain: &Blockchain, blocks: &[BlockInfo]) -> Result<()> {
  89. // Create overlay
  90. let blockchain_overlay = BlockchainOverlay::new(blockchain)?;
  91. let lock = blockchain_overlay.lock().unwrap();
  92. // When we insert genesis, chain is empty
  93. let mut previous = if !lock.is_empty()? { Some(lock.last_block()?) } else { None };
  94. // Validate and insert each block
  95. for block in blocks {
  96. // Check if block already exists
  97. if lock.has_block(block)? {
  98. return Err(Error::BlockAlreadyExists(block.blockhash().to_string()))
  99. }
  100. // This will be true for every insert, apart from genesis
  101. if let Some(p) = previous {
  102. // Retrieve expected reward
  103. let expected_reward = expected_reward(block.header.slot);
  104. // Validate block
  105. validate_block(block, &p, expected_reward)?;
  106. }
  107. // Insert block
  108. lock.add_block(block)?;
  109. // Use last inserted block as next iteration previous
  110. previous = Some(block.clone());
  111. }
  112. // Write overlay
  113. lock.overlay.lock().unwrap().apply()?;
  114. Ok(())
  115. }
  116. }
  117. #[test]
  118. fn blockchain_add_blocks() -> Result<()> {
  119. smol::block_on(async {
  120. // Initialize harness
  121. let th = Harness::new()?;
  122. // Check that nothing exists
  123. th.is_empty();
  124. // We generate some blocks
  125. let mut blocks = vec![];
  126. let genesis_block = BlockInfo::default();
  127. blocks.push(genesis_block.clone());
  128. let block = th.generate_next_block(&genesis_block);
  129. blocks.push(block.clone());
  130. let block = th.generate_next_block(&block);
  131. blocks.push(block.clone());
  132. let block = th.generate_next_block(&block);
  133. blocks.push(block.clone());
  134. th.add_blocks(&blocks)?;
  135. // Validate chains
  136. th.validate_chains()?;
  137. // Thanks for reading
  138. Ok(())
  139. })
  140. }