nimbus-eth2/beacon_chain/fork_choice.nim

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import
deques, options,
milagro_crypto,
spec/[datatypes, crypto, helpers], extras
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type
AttestationCandidate* = object
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validator*: int
data*: AttestationData
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signature*: ValidatorSig
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AttestationPool* = object
# The Deque below stores all outstanding attestations per slot.
# In each slot, we have an array of all attestations indexed by their
# shard number. When we haven't received an attestation for a particular
# shard yet, the Option value will be `none`
attestations: Deque[array[SHARD_COUNT, Option[Attestation]]]
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startingSlot: int
proc init*(T: type AttestationPool, startingSlot: int): T =
result.attestations = initDeque[array[SHARD_COUNT, Option[Attestation]]]()
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result.startingSlot = startingSlot
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proc setLen*[T](d: var Deque[T], len: int) =
# TODO: The upstream `Deque` type should gain a proper resize API
let delta = len - d.len
if delta > 0:
for i in 0 ..< delta:
var defaultVal: T
d.addLast(defaultVal)
else:
d.shrink(fromLast = delta)
proc combine*(tgt: var Attestation, src: Attestation, flags: UpdateFlags) =
# Combine the signature and participation bitfield, with the assumption that
# the same data is being signed!
# TODO similar code in work_pool, clean up
assert tgt.data == src.data
for i in 0 ..< tgt.participation_bitfield.len:
# TODO:
# when BLS signatures are combined, we must ensure that
# the same participant key is not included on both sides
tgt.participation_bitfield[i] =
tgt.participation_bitfield[i] or
src.participation_bitfield[i]
if skipValidation notin flags:
tgt.aggregate_signature.combine(src.aggregate_signature)
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proc add*(pool: var AttestationPool,
attestation: Attestation,
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beaconState: BeaconState) =
# The caller of this function is responsible for ensuring that
# the attestations will be given in a strictly slot increasing order:
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doAssert attestation.data.slot.int >= pool.startingSlot
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# TODO:
# Validate that the attestation is authentic (it's properly signed)
# and make sure that the validator is supposed to make an attestation
# for the specific shard/slot
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let slotIdxInPool = attestation.data.slot.int - pool.startingSlot
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if slotIdxInPool >= pool.attestations.len:
pool.attestations.setLen(slotIdxInPool + 1)
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let shard = attestation.data.shard
if pool.attestations[slotIdxInPool][shard].isSome:
combine(pool.attestations[slotIdxInPool][shard].get, attestation, {})
else:
pool.attestations[slotIdxInPool][shard] = some(attestation)
proc getAttestationsForBlock*(pool: AttestationPool,
lastState: BeaconState,
newBlockSlot: uint64): seq[Attestation] =
if newBlockSlot < MIN_ATTESTATION_INCLUSION_DELAY or pool.attestations.len == 0:
return
doAssert newBlockSlot > lastState.slot
var
firstSlot = 0.uint64
lastSlot = newBlockSlot - MIN_ATTESTATION_INCLUSION_DELAY
if pool.startingSlot.uint64 + MIN_ATTESTATION_INCLUSION_DELAY <= lastState.slot:
firstSlot = lastState.slot - MIN_ATTESTATION_INCLUSION_DELAY
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for slot in firstSlot .. lastSlot:
let slotDequeIdx = slot.int - pool.startingSlot
if slotDequeIdx >= pool.attestations.len: return
let shardAndComittees = get_shard_committees_at_slot(lastState, slot)
for s in shardAndComittees:
if pool.attestations[slotDequeIdx][s.shard].isSome:
result.add pool.attestations[slotDequeIdx][s.shard].get
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proc discardHistoryToSlot*(pool: var AttestationPool, slot: int) =
## The index is treated inclusively
let slot = slot - MIN_ATTESTATION_INCLUSION_DELAY.int
if slot < pool.startingSlot:
return
let slotIdx = int(slot - pool.startingSlot)
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pool.attestations.shrink(fromFirst = slotIdx + 1)
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func getAttestationCandidate*(attestation: Attestation): AttestationCandidate =
# TODO: not complete AttestationCandidate object
result.data = attestation.data
result.signature = attestation.aggregate_signature
func getLatestAttestation*(pool: AttestationPool, validator: ValidatorRecord) =
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discard
func getLatestAttestationTarget*() =
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discard
func forkChoice*(pool: AttestationPool, oldHead, newBlock: BeaconBlock): bool =
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# This will return true if the new block is accepted over the old head block
discard