249 lines
9.8 KiB
Nim
249 lines
9.8 KiB
Nim
# beacon_chain
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# Copyright (c) 2021-2024 Status Research & Development GmbH
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# Licensed and distributed under either of
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# * MIT license (license terms in the root directory or at https://opensource.org/licenses/MIT).
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# * Apache v2 license (license terms in the root directory or at https://www.apache.org/licenses/LICENSE-2.0).
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# at your option. This file may not be copied, modified, or distributed except according to those terms.
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{.push raises: [].}
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{.used.}
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import
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# Status libraries
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taskpools,
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# Beacon chain internals
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../beacon_chain/consensus_object_pools/
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[block_clearance, block_quarantine, blockchain_dag],
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../beacon_chain/spec/[forks, helpers, light_client_sync, state_transition],
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# Test utilities
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./testutil, ./testdbutil
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from ./testbcutil import addHeadBlock
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suite "Light client" & preset():
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const # Test config, should be long enough to cover interesting transitions
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headPeriod = 3.SyncCommitteePeriod
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let
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cfg = block: # Fork schedule so that each `LightClientDataFork` is covered
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static: doAssert ConsensusFork.high == ConsensusFork.Deneb
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var res = defaultRuntimeConfig
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res.ALTAIR_FORK_EPOCH = 1.Epoch
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res.BELLATRIX_FORK_EPOCH = 2.Epoch
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res.CAPELLA_FORK_EPOCH = (EPOCHS_PER_SYNC_COMMITTEE_PERIOD * 1).Epoch
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res.DENEB_FORK_EPOCH = (EPOCHS_PER_SYNC_COMMITTEE_PERIOD * 2).Epoch
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res
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altairStartSlot = cfg.ALTAIR_FORK_EPOCH.start_slot
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proc advanceToSlot(
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dag: ChainDAGRef,
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targetSlot: Slot,
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verifier: var BatchVerifier,
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quarantine: var Quarantine,
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attested = true,
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syncCommitteeRatio = 0.82) =
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var cache: StateCache
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const maxAttestedSlotsPerPeriod = 3 * SLOTS_PER_EPOCH
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while true:
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var slot = getStateField(dag.headState, slot)
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doAssert targetSlot >= slot
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if targetSlot == slot: break
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# When there is a large jump, skip to the end of the current period,
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# create blocks for a few epochs to finalize it, then proceed
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let
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nextPeriod = slot.sync_committee_period + 1
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periodEpoch = nextPeriod.start_epoch
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periodSlot = periodEpoch.start_slot
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checkpointSlot = periodSlot - maxAttestedSlotsPerPeriod
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if targetSlot > checkpointSlot and checkpointSlot > dag.head.slot:
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var info: ForkedEpochInfo
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doAssert process_slots(cfg, dag.headState, checkpointSlot,
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cache, info, flags = {}).isOk()
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slot = checkpointSlot
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# Create blocks for final few epochs
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let blocks = min(targetSlot - slot, maxAttestedSlotsPerPeriod)
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for blck in makeTestBlocks(
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dag.headState, cache, blocks.int, attested = attested,
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syncCommitteeRatio = syncCommitteeRatio, cfg = cfg):
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let added = withBlck(blck):
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const nilCallback = (consensusFork.OnBlockAddedCallback)(nil)
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dag.addHeadBlock(verifier, forkyBlck, nilCallback)
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check: added.isOk()
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dag.updateHead(added[], quarantine, [])
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setup:
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const num_validators = SLOTS_PER_EPOCH
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let
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validatorMonitor = newClone(ValidatorMonitor.init())
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dag = ChainDAGRef.init(
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cfg, makeTestDB(num_validators, cfg = cfg), validatorMonitor, {},
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lcDataConfig = LightClientDataConfig(
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serve: true,
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importMode: LightClientDataImportMode.OnlyNew))
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quarantine = newClone(Quarantine.init())
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rng = HmacDrbgContext.new()
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taskpool = Taskpool.new()
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var
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verifier = BatchVerifier.init(rng, taskpool)
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test "Pre-Altair":
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# Genesis
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block:
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let
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update = dag.getLightClientUpdateForPeriod(0.SyncCommitteePeriod)
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finalityUpdate = dag.getLightClientFinalityUpdate
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optimisticUpdate = dag.getLightClientOptimisticUpdate
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check:
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dag.headState.kind == ConsensusFork.Phase0
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update.kind == LightClientDataFork.None
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finalityUpdate.kind == LightClientDataFork.None
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optimisticUpdate.kind == LightClientDataFork.None
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# Advance to last slot before Altair
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dag.advanceToSlot(altairStartSlot - 1, verifier, quarantine[])
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block:
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let
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update = dag.getLightClientUpdateForPeriod(0.SyncCommitteePeriod)
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finalityUpdate = dag.getLightClientFinalityUpdate
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optimisticUpdate = dag.getLightClientOptimisticUpdate
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check:
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dag.headState.kind == ConsensusFork.Phase0
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update.kind == LightClientDataFork.None
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finalityUpdate.kind == LightClientDataFork.None
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optimisticUpdate.kind == LightClientDataFork.None
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# Advance to Altair
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dag.advanceToSlot(altairStartSlot, verifier, quarantine[])
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block:
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let
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update = dag.getLightClientUpdateForPeriod(0.SyncCommitteePeriod)
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finalityUpdate = dag.getLightClientFinalityUpdate
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optimisticUpdate = dag.getLightClientOptimisticUpdate
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check:
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dag.headState.kind == ConsensusFork.Altair
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update.kind == LightClientDataFork.None
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finalityUpdate.kind == LightClientDataFork.None
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optimisticUpdate.kind == LightClientDataFork.None
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test "Light client sync":
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# Advance to Altair
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dag.advanceToSlot(altairStartSlot, verifier, quarantine[])
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# Track trusted checkpoint for light client
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let
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genesis_validators_root = dag.genesis_validators_root
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trusted_block_root = dag.head.root
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# Advance to target slot
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const
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periodEpoch = headPeriod.start_epoch
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headSlot = (periodEpoch + 2).start_slot + 5
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dag.advanceToSlot(headSlot, verifier, quarantine[])
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let currentSlot = getStateField(dag.headState, slot)
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# Initialize light client store
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var bootstrap = dag.getLightClientBootstrap(trusted_block_root)
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check bootstrap.kind > LightClientDataFork.None
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var store {.noinit.}: ForkedLightClientStore
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withForkyBootstrap(bootstrap):
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when lcDataFork > LightClientDataFork.None:
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var storeRes = newClone(initialize_light_client_store(
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trusted_block_root, forkyBootstrap, cfg))
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check storeRes[].isOk
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store = newClone(ForkedLightClientStore.init(storeRes[].get))[]
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# Sync to latest sync committee period
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var numIterations = 0
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while true:
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let storePeriod = withForkyStore(store):
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when lcDataFork > LightClientDataFork.None:
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forkyStore.finalized_header.beacon.slot.sync_committee_period
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else:
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GENESIS_SLOT.SyncCommitteePeriod
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if storePeriod + 1 >= headPeriod:
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break
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let
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period = withForkyStore(store):
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when lcDataFork > LightClientDataFork.None:
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if forkyStore.is_next_sync_committee_known:
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storePeriod + 1
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else:
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storePeriod
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else:
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storePeriod
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update = dag.getLightClientUpdateForPeriod(period)
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check update.kind > LightClientDataFork.None
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if update.kind > store.kind:
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withForkyUpdate(update):
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when lcDataFork > LightClientDataFork.None:
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store.migrateToDataFork(lcDataFork)
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withForkyStore(store):
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when lcDataFork > LightClientDataFork.None:
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# Reduce stack size by making this a `proc`
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proc syncToPeriod() =
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bootstrap.migrateToDataFork(lcDataFork)
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template forkyBootstrap: untyped = bootstrap.forky(lcDataFork)
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let upgradedUpdate = update.migratingToDataFork(lcDataFork)
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template forkyUpdate: untyped = upgradedUpdate.forky(lcDataFork)
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let res = process_light_client_update(
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forkyStore, forkyUpdate, currentSlot, cfg,
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genesis_validators_root)
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check:
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forkyUpdate.finalized_header.beacon.slot.sync_committee_period ==
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period
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res.isOk
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if forkyUpdate.finalized_header.beacon.slot >
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forkyBootstrap.header.beacon.slot:
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forkyStore.finalized_header == forkyUpdate.finalized_header
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else:
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forkyStore.finalized_header == forkyBootstrap.header
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syncToPeriod()
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inc numIterations
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if numIterations > 20: doAssert false # Avoid endless loop on test failure
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# Sync to latest update
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let finalityUpdate = dag.getLightClientFinalityUpdate
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check finalityUpdate.kind > LightClientDataFork.None
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if finalityUpdate.kind > store.kind:
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withForkyFinalityUpdate(finalityUpdate):
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when lcDataFork > LightClientDataFork.None:
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store.migrateToDataFork(lcDataFork)
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withForkyStore(store):
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when lcDataFork > LightClientDataFork.None:
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let upgradedUpdate = finalityUpdate.migratingToDataFork(lcDataFork)
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template forkyUpdate: untyped = upgradedUpdate.forky(lcDataFork)
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let res = process_light_client_update(
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forkyStore, forkyUpdate, currentSlot, cfg, genesis_validators_root)
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check:
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forkyUpdate.attested_header.beacon.slot == dag.head.parent.slot
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res.isOk
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forkyStore.finalized_header == forkyUpdate.finalized_header
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forkyStore.optimistic_header == forkyUpdate.attested_header
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test "Init from checkpoint":
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# Fetch genesis state
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let genesisState = assignClone dag.headState
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# Advance to target slot for checkpoint
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let finalizedSlot =
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((altairStartSlot.sync_committee_period + 1).start_epoch + 2).start_slot
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dag.advanceToSlot(finalizedSlot, verifier, quarantine[])
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# Initialize new DAG from checkpoint
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let cpDb = BeaconChainDB.new("", cfg = cfg, inMemory = true)
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ChainDAGRef.preInit(cpDb, genesisState[])
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ChainDAGRef.preInit(cpDb, dag.headState) # dag.getForkedBlock(dag.head.bid).get)
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let cpDag = ChainDAGRef.init(
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cfg, cpDb, validatorMonitor, {},
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lcDataConfig = LightClientDataConfig(
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serve: true,
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importMode: LightClientDataImportMode.Full))
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# Advance by a couple epochs
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for i in 1'u64 .. 10:
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let headSlot = (finalizedSlot.epoch + i).start_slot
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cpDag.advanceToSlot(headSlot, verifier, quarantine[])
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check true
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