mirror of
https://github.com/serai-dex/serai.git
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ad0ecc5185
* complete various todos * fix pr comments * Document bounds on unique hashes in TransactionKind --------- Co-authored-by: Luke Parker <lukeparker5132@gmail.com>
341 lines
11 KiB
Rust
341 lines
11 KiB
Rust
use std::collections::{VecDeque, HashSet};
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use ciphersuite::{group::GroupEncoding, Ciphersuite, Ristretto};
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use serai_db::{Get, DbTxn, Db};
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use scale::Decode;
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use tendermint::ext::{Network, Commit};
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use crate::{
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ReadWrite, ProvidedError, ProvidedTransactions, BlockError, Block, Mempool, Transaction,
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transaction::{Signed, TransactionKind, TransactionError, Transaction as TransactionTrait},
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};
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#[derive(Debug)]
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pub(crate) struct Blockchain<D: Db, T: TransactionTrait> {
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db: Option<D>,
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genesis: [u8; 32],
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block_number: u64,
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tip: [u8; 32],
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participants: HashSet<<Ristretto as Ciphersuite>::G>,
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provided: ProvidedTransactions<D, T>,
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mempool: Mempool<D, T>,
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pub(crate) next_block_notifications: VecDeque<tokio::sync::oneshot::Sender<()>>,
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}
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impl<D: Db, T: TransactionTrait> Blockchain<D, T> {
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fn tip_key(genesis: [u8; 32]) -> Vec<u8> {
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D::key(b"tributary_blockchain", b"tip", genesis)
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}
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fn block_number_key(&self) -> Vec<u8> {
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D::key(b"tributary_blockchain", b"block_number", self.genesis)
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}
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fn block_key(genesis: &[u8], hash: &[u8; 32]) -> Vec<u8> {
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D::key(b"tributary_blockchain", b"block", [genesis, hash].concat())
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}
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fn block_hash_key(genesis: &[u8], block_number: u64) -> Vec<u8> {
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D::key(b"tributary_blockchain", b"block_hash", [genesis, &block_number.to_le_bytes()].concat())
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}
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fn commit_key(genesis: &[u8], hash: &[u8; 32]) -> Vec<u8> {
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D::key(b"tributary_blockchain", b"commit", [genesis, hash].concat())
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}
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fn block_after_key(genesis: &[u8], hash: &[u8; 32]) -> Vec<u8> {
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D::key(b"tributary_blockchain", b"block_after", [genesis, hash].concat())
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}
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fn unsigned_included_key(genesis: &[u8], hash: &[u8; 32]) -> Vec<u8> {
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D::key(b"tributary_blockchain", b"unsigned_included", [genesis, hash].concat())
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}
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fn provided_included_key(genesis: &[u8], hash: &[u8; 32]) -> Vec<u8> {
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D::key(b"tributary_blockchain", b"provided_included", [genesis, hash].concat())
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}
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fn next_nonce_key(
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genesis: &[u8; 32],
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signer: &<Ristretto as Ciphersuite>::G,
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order: &[u8],
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) -> Vec<u8> {
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D::key(
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b"tributary_blockchain",
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b"next_nonce",
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[genesis.as_ref(), signer.to_bytes().as_ref(), order].concat(),
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)
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}
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pub(crate) fn new(
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db: D,
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genesis: [u8; 32],
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participants: &[<Ristretto as Ciphersuite>::G],
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) -> Self {
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let mut res = Self {
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db: Some(db.clone()),
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genesis,
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participants: participants.iter().copied().collect(),
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block_number: 0,
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tip: genesis,
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provided: ProvidedTransactions::new(db.clone(), genesis),
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mempool: Mempool::new(db, genesis),
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next_block_notifications: VecDeque::new(),
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};
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if let Some((block_number, tip)) = {
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let db = res.db.as_ref().unwrap();
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db.get(res.block_number_key()).map(|number| (number, db.get(Self::tip_key(genesis)).unwrap()))
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} {
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res.block_number = u64::from_le_bytes(block_number.try_into().unwrap());
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res.tip.copy_from_slice(&tip);
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}
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res
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}
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pub(crate) fn tip(&self) -> [u8; 32] {
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self.tip
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}
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pub(crate) fn block_number(&self) -> u64 {
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self.block_number
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}
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pub(crate) fn block_from_db(db: &D, genesis: [u8; 32], block: &[u8; 32]) -> Option<Block<T>> {
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db.get(Self::block_key(&genesis, block))
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.map(|bytes| Block::<T>::read::<&[u8]>(&mut bytes.as_ref()).unwrap())
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}
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pub(crate) fn commit_from_db(db: &D, genesis: [u8; 32], block: &[u8; 32]) -> Option<Vec<u8>> {
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db.get(Self::commit_key(&genesis, block))
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}
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pub(crate) fn block_hash_from_db(db: &D, genesis: [u8; 32], block: u64) -> Option<[u8; 32]> {
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db.get(Self::block_hash_key(&genesis, block)).map(|h| h.try_into().unwrap())
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}
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pub(crate) fn commit(&self, block: &[u8; 32]) -> Option<Vec<u8>> {
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Self::commit_from_db(self.db.as_ref().unwrap(), self.genesis, block)
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}
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pub(crate) fn block_hash(&self, block: u64) -> Option<[u8; 32]> {
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Self::block_hash_from_db(self.db.as_ref().unwrap(), self.genesis, block)
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}
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pub(crate) fn commit_by_block_number(&self, block: u64) -> Option<Vec<u8>> {
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self.commit(&self.block_hash(block)?)
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}
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pub(crate) fn block_after(db: &D, genesis: [u8; 32], block: &[u8; 32]) -> Option<[u8; 32]> {
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db.get(Self::block_after_key(&genesis, block)).map(|bytes| bytes.try_into().unwrap())
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}
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pub(crate) fn locally_provided_txs_in_block(
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db: &D,
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genesis: &[u8; 32],
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block: &[u8; 32],
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order: &str,
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) -> bool {
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let local_key = ProvidedTransactions::<D, T>::locally_provided_quantity_key(genesis, order);
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let local = db.get(local_key).map_or(0, |bytes| u32::from_le_bytes(bytes.try_into().unwrap()));
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let block_key =
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ProvidedTransactions::<D, T>::block_provided_quantity_key(genesis, block, order);
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let block = db.get(block_key).map_or(0, |bytes| u32::from_le_bytes(bytes.try_into().unwrap()));
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local >= block
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}
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pub(crate) fn tip_from_db(db: &D, genesis: [u8; 32]) -> [u8; 32] {
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db.get(Self::tip_key(genesis)).map_or(genesis, |bytes| bytes.try_into().unwrap())
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}
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pub(crate) fn add_transaction<N: Network>(
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&mut self,
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internal: bool,
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tx: Transaction<T>,
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schema: &N::SignatureScheme,
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) -> Result<bool, TransactionError> {
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let db = self.db.as_ref().unwrap();
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let genesis = self.genesis;
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let commit = |block: u64| -> Option<Commit<N::SignatureScheme>> {
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let hash = Self::block_hash_from_db(db, genesis, block)?;
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// we must have a commit per valid hash
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let commit = Self::commit_from_db(db, genesis, &hash).unwrap();
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// commit has to be valid if it is coming from our db
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Some(Commit::<N::SignatureScheme>::decode(&mut commit.as_ref()).unwrap())
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};
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let unsigned_in_chain =
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|hash: [u8; 32]| db.get(Self::unsigned_included_key(&self.genesis, &hash)).is_some();
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self.mempool.add::<N, _>(
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|signer, order| {
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if self.participants.contains(&signer) {
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Some(
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db.get(Self::next_nonce_key(&self.genesis, &signer, &order))
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.map_or(0, |bytes| u32::from_le_bytes(bytes.try_into().unwrap())),
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)
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} else {
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None
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}
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},
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internal,
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tx,
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schema,
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unsigned_in_chain,
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commit,
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)
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}
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pub(crate) fn provide_transaction(&mut self, tx: T) -> Result<(), ProvidedError> {
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self.provided.provide(tx)
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}
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pub(crate) fn next_nonce(
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&self,
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signer: &<Ristretto as Ciphersuite>::G,
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order: &[u8],
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) -> Option<u32> {
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if let Some(next_nonce) = self.mempool.next_nonce_in_mempool(signer, order.to_vec()) {
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return Some(next_nonce);
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}
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if self.participants.contains(signer) {
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Some(
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self
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.db
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.as_ref()
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.unwrap()
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.get(Self::next_nonce_key(&self.genesis, signer, order))
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.map_or(0, |bytes| u32::from_le_bytes(bytes.try_into().unwrap())),
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)
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} else {
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None
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}
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}
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pub(crate) fn build_block<N: Network>(&mut self, schema: &N::SignatureScheme) -> Block<T> {
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let block = Block::new(
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self.tip,
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self.provided.transactions.values().flatten().cloned().collect(),
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self.mempool.block(),
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);
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// build_block should not return invalid blocks
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self.verify_block::<N>(&block, schema, false).unwrap();
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block
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}
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pub(crate) fn verify_block<N: Network>(
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&self,
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block: &Block<T>,
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schema: &N::SignatureScheme,
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allow_non_local_provided: bool,
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) -> Result<(), BlockError> {
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let db = self.db.as_ref().unwrap();
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let provided_or_unsigned_in_chain = |hash: [u8; 32]| {
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db.get(Self::unsigned_included_key(&self.genesis, &hash)).is_some() ||
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db.get(Self::provided_included_key(&self.genesis, &hash)).is_some()
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};
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let commit = |block: u64| -> Option<Commit<N::SignatureScheme>> {
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let commit = self.commit_by_block_number(block)?;
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// commit has to be valid if it is coming from our db
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Some(Commit::<N::SignatureScheme>::decode(&mut commit.as_ref()).unwrap())
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};
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let mut txn_db = db.clone();
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let mut txn = txn_db.txn();
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let res = block.verify::<N, _>(
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self.genesis,
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self.tip,
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self.provided.transactions.clone(),
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&mut |signer, order| {
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if self.participants.contains(signer) {
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let key = Self::next_nonce_key(&self.genesis, signer, order);
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let next = txn
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.get(&key)
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.map_or(0, |next_nonce| u32::from_le_bytes(next_nonce.try_into().unwrap()));
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txn.put(key, (next + 1).to_le_bytes());
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Some(next)
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} else {
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None
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}
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},
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schema,
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&commit,
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provided_or_unsigned_in_chain,
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allow_non_local_provided,
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);
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// Drop this TXN's changes as we're solely verifying the block
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drop(txn);
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res
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}
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/// Add a block.
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pub(crate) fn add_block<N: Network>(
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&mut self,
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block: &Block<T>,
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commit: Vec<u8>,
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schema: &N::SignatureScheme,
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) -> Result<(), BlockError> {
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self.verify_block::<N>(block, schema, true)?;
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log::info!(
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"adding block {} to tributary {} with {} TXs",
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hex::encode(block.hash()),
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hex::encode(self.genesis),
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block.transactions.len(),
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);
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// None of the following assertions should be reachable since we verified the block
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// Take it from the Option so Rust doesn't consider self as mutably borrowed thanks to the
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// existence of the txn
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let mut db = self.db.take().unwrap();
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let mut txn = db.txn();
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self.tip = block.hash();
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txn.put(Self::tip_key(self.genesis), self.tip);
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self.block_number += 1;
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txn.put(self.block_number_key(), self.block_number.to_le_bytes());
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txn.put(Self::block_hash_key(&self.genesis, self.block_number), self.tip);
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txn.put(Self::block_key(&self.genesis, &self.tip), block.serialize());
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txn.put(Self::commit_key(&self.genesis, &self.tip), commit);
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txn.put(Self::block_after_key(&self.genesis, &block.parent()), block.hash());
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for tx in &block.transactions {
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match tx.kind() {
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TransactionKind::Provided(order) => {
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let hash = tx.hash();
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self.provided.complete(&mut txn, order, self.tip, hash);
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txn.put(Self::provided_included_key(&self.genesis, &hash), []);
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}
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TransactionKind::Unsigned => {
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let hash = tx.hash();
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// Save as included on chain
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txn.put(Self::unsigned_included_key(&self.genesis, &hash), []);
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// remove from the mempool
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self.mempool.remove(&hash);
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}
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TransactionKind::Signed(order, Signed { signer, nonce, .. }) => {
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let next_nonce = nonce + 1;
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txn.put(Self::next_nonce_key(&self.genesis, signer, &order), next_nonce.to_le_bytes());
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self.mempool.remove(&tx.hash());
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}
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}
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}
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txn.commit();
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self.db = Some(db);
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for tx in self.next_block_notifications.drain(..) {
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let _ = tx.send(());
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}
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Ok(())
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}
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}
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