Add new beacon chain test harness
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@ -88,6 +88,8 @@ impl<T: BeaconChainTypes> BeaconChain<T> {
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genesis_block: BeaconBlock,
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spec: ChainSpec,
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) -> Result<Self, Error> {
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genesis_state.build_all_caches(&spec)?;
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let state_root = genesis_state.canonical_root();
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store.put(&state_root, &genesis_state)?;
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@ -105,8 +107,6 @@ impl<T: BeaconChainTypes> BeaconChain<T> {
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state_root,
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));
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genesis_state.build_all_caches(&spec)?;
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Ok(Self {
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spec,
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slot_clock,
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@ -5,6 +5,7 @@ mod fork_choice;
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pub mod iter;
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mod metrics;
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mod persisted_beacon_chain;
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mod test_utils;
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pub use self::beacon_chain::{BeaconChain, BeaconChainTypes, BlockProcessingOutcome};
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pub use self::checkpoint::CheckPoint;
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147
beacon_node/beacon_chain/src/test_utils.rs
Normal file
147
beacon_node/beacon_chain/src/test_utils.rs
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@ -0,0 +1,147 @@
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use crate::{BeaconChain, BeaconChainTypes, BlockProcessingOutcome};
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use lmd_ghost::{LmdGhost, ThreadSafeReducedTree};
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use slot_clock::SlotClock;
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use slot_clock::TestingSlotClock;
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use std::marker::PhantomData;
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use std::sync::Arc;
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use store::MemoryStore;
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use tree_hash::{SignedRoot, TreeHash};
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use types::{
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test_utils::TestingBeaconStateBuilder, BeaconBlock, ChainSpec, Domain, EthSpec, Hash256,
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Keypair, MinimalEthSpec, Signature,
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};
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pub struct CommonTypes<L, E>
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where
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L: LmdGhost<MemoryStore, E>,
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E: EthSpec,
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{
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_phantom_l: PhantomData<L>,
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_phantom_e: PhantomData<E>,
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}
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impl<L, E> BeaconChainTypes for CommonTypes<L, E>
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where
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L: LmdGhost<MemoryStore, E>,
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E: EthSpec,
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{
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type Store = MemoryStore;
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type SlotClock = TestingSlotClock;
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type LmdGhost = L;
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type EthSpec = E;
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}
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pub struct BeaconChainHarness<L, E>
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where
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L: LmdGhost<MemoryStore, E>,
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E: EthSpec,
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{
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chain: BeaconChain<CommonTypes<L, E>>,
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keypairs: Vec<Keypair>,
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spec: ChainSpec,
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}
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impl<L, E> BeaconChainHarness<L, E>
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where
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L: LmdGhost<MemoryStore, E>,
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E: EthSpec,
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{
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pub fn new(validator_count: usize) -> Self {
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let spec = E::default_spec();
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let store = Arc::new(MemoryStore::open());
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let state_builder =
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TestingBeaconStateBuilder::from_default_keypairs_file_if_exists(validator_count, &spec);
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let (genesis_state, keypairs) = state_builder.build();
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let mut genesis_block = BeaconBlock::empty(&spec);
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genesis_block.state_root = Hash256::from_slice(&genesis_state.tree_hash_root());
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// Slot clock
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let slot_clock = TestingSlotClock::new(
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spec.genesis_slot,
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genesis_state.genesis_time,
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spec.seconds_per_slot,
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);
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let chain = BeaconChain::from_genesis(
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store,
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slot_clock,
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genesis_state,
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genesis_block,
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spec.clone(),
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)
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.expect("Terminate if beacon chain generation fails");
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Self {
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chain,
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keypairs,
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spec,
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}
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}
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pub fn extend_canonical_chain(&self) {
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self.chain.slot_clock.advance_slot();
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self.chain.catchup_state().expect("should catchup state");
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let block = self.build_block();
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let outcome = self
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.chain
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.process_block(block)
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.expect("should process block");
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assert_eq!(outcome, BlockProcessingOutcome::Processed);
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}
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fn build_block(&self) -> BeaconBlock {
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let slot = self.chain.read_slot_clock().unwrap();
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let sk = {
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let proposer = self
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.chain
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.block_proposer(slot)
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.expect("should get block propoer");
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&self.keypairs[proposer].sk
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};
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let fork = &self.chain.head().beacon_state.fork;
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let randao_reveal = {
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let epoch = slot.epoch(E::slots_per_epoch());
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let message = epoch.tree_hash_root();
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let domain = self.spec.get_domain(epoch, Domain::Randao, fork);
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Signature::new(&message, domain, sk)
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};
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let (mut block, _state) = self
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.chain
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.produce_block(randao_reveal)
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.expect("should producer block");
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block.signature = {
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let message = block.signed_root();
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let epoch = block.slot.epoch(E::slots_per_epoch());
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let domain = self.spec.get_domain(epoch, Domain::BeaconProposer, fork);
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Signature::new(&message, domain, sk)
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};
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block
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}
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}
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#[cfg(test)]
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mod test {
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use super::*;
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pub const VALIDATOR_COUNT: usize = 16;
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#[test]
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fn build_on_genesis() {
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let harness: BeaconChainHarness<
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ThreadSafeReducedTree<MemoryStore, MinimalEthSpec>,
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MinimalEthSpec,
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> = BeaconChainHarness::new(VALIDATOR_COUNT);
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harness.extend_canonical_chain();
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}
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}
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@ -15,6 +15,10 @@ impl TestingSlotClock {
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pub fn set_slot(&self, slot: u64) {
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*self.slot.write().expect("TestingSlotClock poisoned.") = Slot::from(slot);
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}
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pub fn advance_slot(&self) {
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self.set_slot(self.present_slot().unwrap().unwrap().as_u64() + 1)
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}
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}
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impl SlotClock for TestingSlotClock {
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