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Use peeking_take_while in BlockReplayer (#4803)
## Issue Addressed While reviewing #4801 I noticed that our use of `take_while` in the block replayer means that if a state root iterator _with gaps_ is provided, some additonal state roots will be dropped unnecessarily. In practice the impact is small, because once there's _one_ state root miss, the whole tree hash cache needs to be built anyway, and subsequent misses are less costly. However this was still a little inefficient, so I figured it's better to fix it. ## Proposed Changes Use [`peeking_take_while`](https://docs.rs/itertools/latest/itertools/trait.Itertools.html#method.peeking_take_while) to avoid consuming the next element when checking whether it satisfies the slot predicate. ## Additional Info There's a gist here that shows the basic dynamics in isolation: https://play.rust-lang.org/?version=stable&mode=debug&edition=2021&gist=40b623cc0febf9ed51705d476ab140c5. Changing the `peeking_take_while` to a `take_while` causes the assert to fail. Similarly I've added a new test `block_replayer_peeking_state_roots` which fails if the same change is applied inside `get_state_root`.
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@ -3,6 +3,8 @@ use crate::{
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BlockProcessingError, BlockSignatureStrategy, ConsensusContext, SlotProcessingError,
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BlockProcessingError, BlockSignatureStrategy, ConsensusContext, SlotProcessingError,
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VerifyBlockRoot,
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VerifyBlockRoot,
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};
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};
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use itertools::Itertools;
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use std::iter::Peekable;
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use std::marker::PhantomData;
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use std::marker::PhantomData;
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use types::{BeaconState, BlindedPayload, ChainSpec, EthSpec, Hash256, SignedBeaconBlock, Slot};
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use types::{BeaconState, BlindedPayload, ChainSpec, EthSpec, Hash256, SignedBeaconBlock, Slot};
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@ -25,7 +27,7 @@ pub struct BlockReplayer<
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'a,
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'a,
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Spec: EthSpec,
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Spec: EthSpec,
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Error = BlockReplayError,
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Error = BlockReplayError,
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StateRootIter = StateRootIterDefault<Error>,
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StateRootIter: Iterator<Item = Result<(Hash256, Slot), Error>> = StateRootIterDefault<Error>,
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> {
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> {
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state: BeaconState<Spec>,
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state: BeaconState<Spec>,
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spec: &'a ChainSpec,
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spec: &'a ChainSpec,
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@ -36,7 +38,7 @@ pub struct BlockReplayer<
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post_block_hook: Option<PostBlockHook<'a, Spec, Error>>,
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post_block_hook: Option<PostBlockHook<'a, Spec, Error>>,
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pre_slot_hook: Option<PreSlotHook<'a, Spec, Error>>,
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pre_slot_hook: Option<PreSlotHook<'a, Spec, Error>>,
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post_slot_hook: Option<PostSlotHook<'a, Spec, Error>>,
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post_slot_hook: Option<PostSlotHook<'a, Spec, Error>>,
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state_root_iter: Option<StateRootIter>,
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pub(crate) state_root_iter: Option<Peekable<StateRootIter>>,
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state_root_miss: bool,
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state_root_miss: bool,
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_phantom: PhantomData<Error>,
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_phantom: PhantomData<Error>,
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}
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}
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@ -138,7 +140,7 @@ where
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/// `self.state.slot` to the `target_slot` supplied to `apply_blocks` (inclusive of both
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/// `self.state.slot` to the `target_slot` supplied to `apply_blocks` (inclusive of both
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/// endpoints).
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/// endpoints).
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pub fn state_root_iter(mut self, iter: StateRootIter) -> Self {
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pub fn state_root_iter(mut self, iter: StateRootIter) -> Self {
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self.state_root_iter = Some(iter);
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self.state_root_iter = Some(iter.peekable());
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self
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self
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}
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}
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@ -192,7 +194,7 @@ where
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// If a state root iterator is configured, use it to find the root.
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// If a state root iterator is configured, use it to find the root.
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if let Some(ref mut state_root_iter) = self.state_root_iter {
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if let Some(ref mut state_root_iter) = self.state_root_iter {
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let opt_root = state_root_iter
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let opt_root = state_root_iter
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.take_while(|res| res.as_ref().map_or(true, |(_, s)| *s <= slot))
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.peeking_take_while(|res| res.as_ref().map_or(true, |(_, s)| *s <= slot))
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.find(|res| res.as_ref().map_or(true, |(_, s)| *s == slot))
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.find(|res| res.as_ref().map_or(true, |(_, s)| *s == slot))
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.transpose()?;
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.transpose()?;
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@ -5,7 +5,7 @@ use crate::per_block_processing::errors::{
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DepositInvalid, HeaderInvalid, IndexedAttestationInvalid, IntoWithIndex,
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DepositInvalid, HeaderInvalid, IndexedAttestationInvalid, IntoWithIndex,
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ProposerSlashingInvalid,
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ProposerSlashingInvalid,
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};
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};
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use crate::{per_block_processing, StateProcessingStrategy};
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use crate::{per_block_processing, BlockReplayError, BlockReplayer, StateProcessingStrategy};
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use crate::{
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use crate::{
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per_block_processing::{process_operations, verify_exit::verify_exit},
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per_block_processing::{process_operations, verify_exit::verify_exit},
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BlockSignatureStrategy, ConsensusContext, VerifyBlockRoot, VerifySignatures,
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BlockSignatureStrategy, ConsensusContext, VerifyBlockRoot, VerifySignatures,
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@ -1035,3 +1035,51 @@ async fn fork_spanning_exit() {
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)
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)
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.expect_err("phase0 exit does not verify against bellatrix state");
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.expect_err("phase0 exit does not verify against bellatrix state");
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}
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}
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/// Check that the block replayer does not consume state roots unnecessarily.
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#[tokio::test]
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async fn block_replayer_peeking_state_roots() {
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let harness = get_harness::<MainnetEthSpec>(EPOCH_OFFSET, VALIDATOR_COUNT).await;
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let target_state = harness.get_current_state();
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let target_block_root = harness.head_block_root();
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let target_block = harness
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.chain
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.get_blinded_block(&target_block_root)
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.unwrap()
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.unwrap();
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let parent_block_root = target_block.parent_root();
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let parent_block = harness
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.chain
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.get_blinded_block(&parent_block_root)
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.unwrap()
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.unwrap();
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let parent_state = harness
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.chain
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.get_state(&parent_block.state_root(), Some(parent_block.slot()))
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.unwrap()
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.unwrap();
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// Omit the state root for `target_state` but provide a dummy state root at the *next* slot.
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// If the block replayer is peeking at the state roots rather than consuming them, then the
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// dummy state should still be there after block replay completes.
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let dummy_state_root = Hash256::repeat_byte(0xff);
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let dummy_slot = target_state.slot() + 1;
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let state_root_iter = vec![Ok::<_, BlockReplayError>((dummy_state_root, dummy_slot))];
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let block_replayer = BlockReplayer::new(parent_state, &harness.chain.spec)
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.state_root_iter(state_root_iter.into_iter())
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.no_signature_verification()
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.apply_blocks(vec![target_block], None)
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.unwrap();
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assert_eq!(
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block_replayer
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.state_root_iter
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.unwrap()
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.next()
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.unwrap()
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.unwrap(),
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(dummy_state_root, dummy_slot)
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);
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}
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