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- use std::fmt;
- use darkfi_sdk::crypto::{constants::MERKLE_DEPTH, MerkleNode};
- use darkfi_serial::{serialize, SerialDecodable, SerialEncodable};
- use incrementalmerkletree::{bridgetree::BridgeTree, Tree};
- use log::debug;
- use pasta_curves::pallas;
- use super::{Metadata, BLOCK_MAGIC_BYTES, BLOCK_VERSION};
- use crate::{net, tx::Transaction, util::time::Timestamp};
- /// This struct represents a tuple of the form (version, previous, epoch, slot, timestamp, merkle_root).
- #[derive(Debug, Clone, PartialEq, Eq, SerialEncodable, SerialDecodable)]
- pub struct Header {
- /// Block version
- pub version: u8,
- /// Previous block hash
- pub previous: blake3::Hash,
- /// Epoch
- pub epoch: u64,
- /// Slot UID
- pub slot: u64,
- /// Block creation timestamp
- pub timestamp: Timestamp,
- /// Root of the transaction hashes merkle tree
- pub root: MerkleNode,
- }
- impl Header {
- pub fn new(
- previous: blake3::Hash,
- epoch: u64,
- slot: u64,
- timestamp: Timestamp,
- root: MerkleNode,
- ) -> Self {
- let version = *BLOCK_VERSION;
- Self { version, previous, epoch, slot, timestamp, root }
- }
- /// Generate the genesis block.
- pub fn genesis_header(genesis_ts: Timestamp, genesis_data: blake3::Hash) -> Self {
- let tree = BridgeTree::<MerkleNode, MERKLE_DEPTH>::new(100);
- let root = tree.root(0).unwrap();
- Self::new(genesis_data, 0, 0, genesis_ts, root)
- }
- /// Calculate the header hash
- pub fn headerhash(&self) -> blake3::Hash {
- blake3::hash(&serialize(self))
- }
- }
- impl Default for Header {
- fn default() -> Self {
- Header::new(
- blake3::hash(b""),
- 0,
- 0,
- Timestamp::current_time(),
- MerkleNode::from(pallas::Base::zero()),
- )
- }
- }
- /// This struct represents a tuple of the form (`magic`, `header`, `counter`, `txs`, `metadata`).
- /// The header and transactions are stored as hashes, serving as pointers to
- /// the actual data in the sled database.
- #[derive(Debug, Clone, SerialEncodable, SerialDecodable)]
- pub struct Block {
- /// Block magic bytes
- pub magic: [u8; 4],
- /// Block header
- pub header: blake3::Hash,
- /// Trasaction hashes
- pub txs: Vec<blake3::Hash>,
- /// Metadata
- pub metadata: Metadata,
- }
- impl net::Message for Block {
- fn name() -> &'static str {
- "block"
- }
- }
- impl Block {
- pub fn new(
- previous: blake3::Hash,
- epoch: u64,
- slot: u64,
- txs: Vec<blake3::Hash>,
- root: MerkleNode,
- metadata: Metadata,
- ) -> Self {
- let magic = *BLOCK_MAGIC_BYTES;
- let timestamp = Timestamp::current_time();
- let header = Header::new(previous, epoch, slot, timestamp, root);
- let header = header.headerhash();
- Self { magic, header, txs, metadata }
- }
- /// Generate the genesis block.
- pub fn genesis_block(genesis_ts: Timestamp, genesis_data: blake3::Hash) -> Self {
- let magic = *BLOCK_MAGIC_BYTES;
- let header = Header::genesis_header(genesis_ts, genesis_data);
- let header = header.headerhash();
- let metadata = Metadata::default();
- Self { magic, header, txs: vec![], metadata }
- }
- /// Calculate the block hash
- pub fn blockhash(&self) -> blake3::Hash {
- blake3::hash(&serialize(self))
- }
- }
- /// Auxiliary structure used for blockchain syncing.
- #[derive(Debug, SerialEncodable, SerialDecodable)]
- pub struct BlockOrder {
- /// Slot UID
- pub slot: u64,
- /// Block headerhash of that slot
- pub block: blake3::Hash,
- }
- impl net::Message for BlockOrder {
- fn name() -> &'static str {
- "blockorder"
- }
- }
- /// Structure representing full block data.
- #[derive(Debug, Clone, SerialEncodable, SerialDecodable)]
- pub struct BlockInfo {
- /// BlockInfo magic bytes
- pub magic: [u8; 4],
- /// Block header data
- pub header: Header,
- /// Transactions payload
- pub txs: Vec<Transaction>,
- /// Metadata,
- pub metadata: Metadata,
- }
- impl Default for BlockInfo {
- fn default() -> Self {
- let magic = *BLOCK_MAGIC_BYTES;
- Self { magic, header: Header::default(), txs: vec![], metadata: Metadata::default() }
- }
- }
- impl net::Message for BlockInfo {
- fn name() -> &'static str {
- "blockinfo"
- }
- }
- impl BlockInfo {
- pub fn new(header: Header, txs: Vec<Transaction>, metadata: Metadata) -> Self {
- let magic = *BLOCK_MAGIC_BYTES;
- Self { magic, header, txs, metadata }
- }
- /// Calculate the block hash
- pub fn blockhash(&self) -> blake3::Hash {
- let block: Block = self.clone().into();
- block.blockhash()
- }
- }
- impl From<BlockInfo> for Block {
- fn from(block_info: BlockInfo) -> Self {
- let txs = block_info.txs.iter().map(|x| blake3::hash(&serialize(x))).collect();
- Self {
- magic: block_info.magic,
- header: block_info.header.headerhash(),
- txs,
- metadata: block_info.metadata,
- }
- }
- }
- /// Auxiliary structure used for blockchain syncing
- #[derive(Debug, Clone, SerialEncodable, SerialDecodable)]
- pub struct BlockResponse {
- /// Response blocks.
- pub blocks: Vec<BlockInfo>,
- }
- impl net::Message for BlockResponse {
- fn name() -> &'static str {
- "blockresponse"
- }
- }
- /// This struct represents a block proposal, used for consensus.
- #[derive(Debug, Clone, SerialEncodable, SerialDecodable)]
- pub struct BlockProposal {
- /// Block data
- pub block: BlockInfo,
- }
- impl BlockProposal {
- #[allow(clippy::too_many_arguments)]
- pub fn new(header: Header, txs: Vec<Transaction>, metadata: Metadata) -> Self {
- let block = BlockInfo::new(header, txs, metadata);
- Self { block }
- }
- }
- impl PartialEq for BlockProposal {
- fn eq(&self, other: &Self) -> bool {
- self.block.header == other.block.header && self.block.txs == other.block.txs
- }
- }
- impl fmt::Display for BlockProposal {
- fn fmt(&self, formatter: &mut fmt::Formatter) -> fmt::Result {
- formatter.write_fmt(format_args!(
- "BlockProposal {{ leader addr: {}, hash: {}, epoch: {}, slot: {}, txs: {} }}",
- self.block.metadata.address,
- self.block.header.headerhash(),
- self.block.header.epoch,
- self.block.header.slot,
- self.block.txs.len()
- ))
- }
- }
- impl net::Message for BlockProposal {
- fn name() -> &'static str {
- "proposal"
- }
- }
- impl From<BlockProposal> for BlockInfo {
- fn from(block: BlockProposal) -> BlockInfo {
- block.block
- }
- }
- /// This struct represents a sequence of block proposals.
- #[derive(Debug, Clone, PartialEq, SerialEncodable, SerialDecodable)]
- pub struct ProposalChain {
- pub genesis_block: blake3::Hash,
- pub proposals: Vec<BlockProposal>,
- }
- impl ProposalChain {
- pub fn new(genesis_block: blake3::Hash, initial_proposal: BlockProposal) -> Self {
- Self { genesis_block, proposals: vec![initial_proposal] }
- }
- /// A proposal is considered valid when its parent hash is equal to the
- /// hash of the previous proposal and their slots are incremental,
- /// excluding the genesis block proposal.
- /// Additional validity rules can be applied.
- pub fn check_proposal(&self, proposal: &BlockProposal, previous: &BlockProposal) -> bool {
- if proposal.block.header.previous == self.genesis_block {
- debug!("check_proposal(): Genesis block proposal provided.");
- return false
- }
- let prev_hash = previous.block.header.headerhash();
- if proposal.block.header.previous != prev_hash ||
- proposal.block.header.slot <= previous.block.header.slot
- {
- debug!("check_proposal(): Provided proposal is invalid.");
- return false
- }
- true
- }
- /// A proposals chain is considered valid when every proposal is valid,
- /// based on the `check_proposal` function.
- pub fn check_chain(&self) -> bool {
- for (index, proposal) in self.proposals[1..].iter().enumerate() {
- if !self.check_proposal(proposal, &self.proposals[index]) {
- return false
- }
- }
- true
- }
- /// Insertion of a valid proposal.
- pub fn add(&mut self, proposal: &BlockProposal) {
- if self.check_proposal(proposal, self.proposals.last().unwrap()) {
- self.proposals.push(proposal.clone());
- }
- }
- }
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