407 lines
14 KiB
Nim
407 lines
14 KiB
Nim
# beacon_chain
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# Copyright (c) 2018-2021 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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when (NimMajor, NimMinor) < (1, 4):
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{.push raises: [Defect].}
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else:
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{.push raises: [].}
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import
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# Stdlib
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std/[typetraits, strutils, algorithm],
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# Status
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stew/[byteutils, results],
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serialization,
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json_serialization,
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chronicles,
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# Internal
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../spec/datatypes/base
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export serialization, json_serialization # Generic sandwich https://github.com/nim-lang/Nim/issues/11225
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# Slashing Protection Interop
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# --------------------------------------------
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# We use the SPDIR type as an intermediate representation
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# between database versions and to generate
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# the serialized interchanged format.
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#
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# References: https://eips.ethereum.org/EIPS/eip-3076
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#
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# SPDIR: Nimbus-specific, Slashing Protection Database Intermediate Representation
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# SPDIF: Cross-client, json, Slashing Protection Database Interchange Format
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type
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SPDIR* = object
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## Slashing Protection Database Interchange Format
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metadata*: SPDIR_Meta
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data*: seq[SPDIR_Validator]
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Eth2Digest0x* = distinct Eth2Digest
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## The spec mandates "0x" prefix on serialization
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## So we need to set custom read/write
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PubKeyBytes* = array[RawPubKeySize, byte]
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## This is the serialized byte representation
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## of a Validator Public Key.
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## Portable between Miracl/BLST
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## and limits serialization/deserialization call
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PubKey0x* = distinct PubKeyBytes
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## The spec mandates "0x" prefix on serialization
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## So we need to set custom read/write
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## We also assume that pubkeys in the database
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## are valid points on the BLS12-381 G1 curve
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## (so we skip fromRaw/serialization checks)
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SlotString* = distinct Slot
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## The spec mandates string serialization for wide compatibility (javascript)
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EpochString* = distinct Epoch
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## The spec mandates string serialization for wide compatibility (javascript)
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SPDIR_Meta* = object
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interchange_format_version*: string
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genesis_validators_root*: Eth2Digest0x
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SPDIR_Validator* = object
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pubkey*: PubKey0x
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signed_blocks*: seq[SPDIR_SignedBlock]
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signed_attestations*: seq[SPDIR_SignedAttestation]
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SPDIR_SignedBlock* = object
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slot*: SlotString
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signing_root*: Eth2Digest0x # compute_signing_root(block, domain)
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SPDIR_SignedAttestation* = object
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source_epoch*: EpochString
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target_epoch*: EpochString
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signing_root*: Eth2Digest0x # compute_signing_root(attestation, domain)
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# Slashing Protection types
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# --------------------------------------------
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SlashingImportStatus* = enum
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siSuccess
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siFailure
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siPartial
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BadVoteKind* = enum
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## Attestation bad vote kind
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# h: height (i.e. epoch for attestation, slot for blocks)
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# t: target
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# s: source
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# 1: existing attestations
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# 2: candidate attestation
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# Spec slashing condition
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DoubleVote # h(t1) == h(t2)
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SurroundVote # h(s1) < h(s2) < h(t2) < h(t1) or h(s2) < h(s1) < h(t1) < h(t2)
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# Non-spec, should never happen in a well functioning client
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TargetPrecedesSource # h(t1) < h(s1) - current epoch precedes last justified epoch
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# EIP-3067 (https://eips.ethereum.org/EIPS/eip-3076)
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MinSourceViolation # h(s2) < h(s1) - EIP3067 condition 4 (strict inequality)
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MinTargetViolation # h(t2) <= h(t1) - EIP3067 condition 5
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DatabaseError # Cannot read/write the slashing protection db
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BadVote* {.pure.} = object
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case kind*: BadVoteKind
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of DoubleVote:
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existingAttestation*: Eth2Digest
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of SurroundVote:
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existingAttestationRoot*: Eth2Digest # Many roots might be in conflict
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sourceExisting*, targetExisting*: Epoch
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sourceSlashable*, targetSlashable*: Epoch
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of TargetPrecedesSource:
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discard
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of MinSourceViolation:
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minSource*: Epoch
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candidateSource*: Epoch
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of MinTargetViolation:
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minTarget*: Epoch
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candidateTarget*: Epoch
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of BadVoteKind.DatabaseError:
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message*: string
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BadProposalKind* {.pure.} = enum
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# Spec slashing condition
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DoubleProposal # h(t1) == h(t2)
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# EIP-3067 (https://eips.ethereum.org/EIPS/eip-3076)
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MinSlotViolation # h(t2) <= h(t1)
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DatabaseError # Cannot read/write the slashing protection db
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BadProposal* = object
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case kind*: BadProposalKind
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of DoubleProposal:
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existingBlock*: Eth2Digest
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of MinSlotViolation:
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minSlot*: Slot
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candidateSlot*: Slot
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of BadProposalKind.DatabaseError:
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message*: string
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func `==`*(a, b: BadVote): bool =
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## Comparison operator.
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## Used implictily by Result when comparing the
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## result of multiple DB versions
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if a.kind != b.kind:
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false
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else:
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case a.kind
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of DoubleVote:
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a.existingAttestation == b.existingAttestation
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of SurroundVote:
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(a.existingAttestationRoot == b.existingAttestationRoot) and
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(a.sourceExisting == b.sourceExisting) and
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(a.targetExisting == b.targetExisting) and
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(a.sourceSlashable == b.sourceSlashable) and
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(a.targetSlashable == b.targetSlashable)
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of TargetPrecedesSource:
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true
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of MinSourceViolation:
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(a.minSource == b.minSource) and
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(a.candidateSource == b.candidateSource)
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of MinTargetViolation:
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(a.minTarget == b.minTarget) and
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(a.candidateTarget == b.candidateTarget)
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of BadVoteKind.DatabaseError:
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true
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template `==`*(a, b: PubKey0x): bool =
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PubKeyBytes(a) == PubKeyBytes(b)
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template `<`*(a, b: PubKey0x): bool =
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PubKeyBytes(a) < PubKeyBytes(b)
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template cmp*(a, b: PubKey0x): bool =
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cmp(PubKeyBytes(a), PubKeyBytes(b))
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func `==`*(a, b: BadProposal): bool =
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## Comparison operator.
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## Used implictily by Result when comparing the
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## result of multiple DB versions
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##
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## Except that V1 doesn't support low-watermark...
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if a.kind != b.kind:
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false
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elif a.kind == DoubleProposal:
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a.existingBlock == b.existingBlock
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elif a.kind == MinSlotViolation:
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a.minSlot == b.minSlot and
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a.candidateSlot == b.candidateSlot
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else: # Unreachable
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false
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# Serialization
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# --------------------------------------------
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proc writeValue*(writer: var JsonWriter, value: PubKey0x)
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{.inline, raises: [IOError, Defect].} =
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writer.writeValue("0x" & value.PubKeyBytes.toHex())
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proc readValue*(reader: var JsonReader, value: var PubKey0x)
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{.raises: [SerializationError, IOError, Defect].} =
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try:
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value = PubKey0x hexToByteArray(reader.readValue(string), RawPubKeySize)
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except ValueError:
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raiseUnexpectedValue(reader, "Hex string expected")
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proc writeValue*(w: var JsonWriter, a: Eth2Digest0x)
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{.inline, raises: [IOError, Defect].} =
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w.writeValue "0x" & a.Eth2Digest.data.toHex()
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proc readValue*(r: var JsonReader, a: var Eth2Digest0x)
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{.raises: [SerializationError, IOError, Defect].} =
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try:
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a = Eth2Digest0x fromHex(Eth2Digest, r.readValue(string))
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except ValueError:
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raiseUnexpectedValue(r, "Hex string expected")
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proc writeValue*(w: var JsonWriter, a: SlotString or EpochString)
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{.inline, raises: [IOError, Defect].} =
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w.writeValue $distinctBase(a)
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proc readValue*(r: var JsonReader, a: var (SlotString or EpochString))
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{.raises: [SerializationError, IOError, Defect].} =
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try:
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a = (typeof a)(r.readValue(string).parseBiggestUInt())
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except ValueError:
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raiseUnexpectedValue(r, "Integer in a string expected")
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proc importSlashingInterchange*(
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db: auto,
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path: string): SlashingImportStatus {.raises: [Defect, IOError, SerializationError].} =
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## Import a Slashing Protection Database Interchange Format
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## into a Nimbus DB.
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## This adds data to already existing data.
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let spdir = Json.loadFile(path, SPDIR)
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return db.inclSPDIR(spdir)
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# Logging
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# --------------------------------------------
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func shortLog*(v: SPDIR_SignedBlock): auto =
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(
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slot: shortLog(v.slot.Slot),
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signing_root: shortLog(v.signing_root.Eth2Digest)
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)
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func shortLog*(v: SPDIR_SignedAttestation): auto =
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(
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source_epoch: shortLog(v.source_epoch.Epoch),
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target_epoch: shortLog(v.target_epoch.Epoch),
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signing_root: shortLog(v.signing_root.Eth2Digest)
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)
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chronicles.formatIt SlotString: it.Slot.shortLog
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chronicles.formatIt EpochString: it.Slot.shortLog
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chronicles.formatIt Eth2Digest0x: it.Eth2Digest.shortLog
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chronicles.formatIt SPDIR_SignedBlock: it.shortLog
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chronicles.formatIt SPDIR_SignedAttestation: it.shortLog
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# Interchange import
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# --------------------------------------------
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proc importInterchangeV5Impl*(
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db: auto,
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spdir: var SPDIR
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): SlashingImportStatus
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{.raises: [SerializationError, IOError, Defect].} =
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## Common implementation of interchange import
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## according to https://eips.ethereum.org/EIPS/eip-3076
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## spdir needs to be `var` as it will be sorted in-place
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result = siSuccess
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for v in 0 ..< spdir.data.len:
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let parsedKey = block:
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let key = ValidatorPubKey.fromRaw(spdir.data[v].pubkey.PubKeyBytes)
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if key.isErr:
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# The bytes does not describe a valid encoding (length error)
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error "Invalid public key.",
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pubkey = "0x" & spdir.data[v].pubkey.PubKeyBytes.toHex()
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result = siPartial
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continue
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if key.get().load().isNone():
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# The bytes don't deserialize to a valid BLS G1 elliptic curve point.
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# Deserialization is costly but done only once per validator.
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# and SlashingDB import is a very rare event.
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error "Invalid public key.",
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pubkey = "0x" & spdir.data[v].pubkey.PubKeyBytes.toHex()
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result = siPartial
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continue
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key.get()
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# TODO: with minification sorting is unnecessary, cleanup
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# Sort by ascending minimum slot so that we don't trigger MinSlotViolation
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spdir.data[v].signed_blocks.sort do (a, b: SPDIR_SignedBlock) -> int:
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result = cmp(a.slot.int, b.slot.int)
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spdir.data[v].signed_attestations.sort do (a, b: SPDIR_SignedAttestation) -> int:
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result = cmp(a.source_epoch.int, b.source_epoch.int)
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if result == 0: # Same epoch
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result = cmp(a.target_epoch.int, b.target_epoch.int)
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const ZeroDigest = Eth2Digest()
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let (dbSlot, dbSource, dbTarget) = db.retrieveLatestValidatorData(parsedKey)
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# Blocks
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# ---------------------------------------------------
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# After import we need to prune the DB from everything
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# besides the last imported block slot.
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# This ensures that even if 2 slashing DB are imported in the wrong order
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# (the last before the earliest) the minSlotViolation check stays consistent.
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var maxValidSlotSeen = -1
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if dbSlot.isSome():
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maxValidSlotSeen = int dbSlot.get()
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if spdir.data[v].signed_blocks.len >= 1:
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# Minification, to limit Sqlite IO we only import the last block after sorting
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template B: untyped = spdir.data[v].signed_blocks[^1]
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let status = db.registerBlock(
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parsedKey, B.slot.Slot, B.signing_root.Eth2Digest
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)
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if status.isErr():
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# We might be importing a duplicate which EIP-3076 allows
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# there is no reason during normal operation to integrate
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# a duplicate so checkSlashableBlockProposal would have rejected it.
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# We special-case that for imports.
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# Note: rule 2 mentions repeat signing in the MinSlotViolation case
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# having 2 blocks with the same signing root and different slots
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# would break the blockchain so we only check for exact slot.
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if status.error.kind == DoubleProposal and
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B.signing_root.Eth2Digest != ZeroDigest and
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status.error.existingBlock == B.signing_root.Eth2Digest:
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warn "Block already exists in the DB",
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pubkey = spdir.data[v].pubkey.PubKeyBytes.toHex(),
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candidateBlock = B
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else:
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error "Slashable block. Skipping its import.",
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pubkey = spdir.data[v].pubkey.PubKeyBytes.toHex(),
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candidateBlock = B,
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conflict = status.error()
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result = siPartial
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if B.slot.int > maxValidSlotSeen:
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maxValidSlotSeen = int B.slot
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# Now prune everything that predates
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# this DB or interchange file max slot
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# Even if the block is not imported, pruning will keep the latest one.
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db.pruneBlocks(parsedKey, Slot maxValidSlotSeen)
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# Attestations
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# ---------------------------------------------------
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# After import we need to prune the DB from everything
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# besides the last imported attestation source and target epochs.
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# This ensures that even if 2 slashing DB are imported in the wrong order
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# (the last before the earliest) the minEpochViolation check stays consistent.
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var maxValidSourceEpochSeen = -1
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var maxValidTargetEpochSeen = -1
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if dbSource.isSome():
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maxValidSourceEpochSeen = int dbSource.get()
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if dbTarget.isSome():
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maxValidTargetEpochSeen = int dbTarget.get()
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# We do a first pass over the data to find the max source/target seen
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for a in 0 ..< spdir.data[v].signed_attestations.len:
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template A: untyped = spdir.data[v].signed_attestations[a]
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if A.source_epoch.int > maxValidSourceEpochSeen:
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maxValidSourceEpochSeen = A.source_epoch.int
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if A.target_epoch.int > maxValidTargetEpochSeen:
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maxValidTargetEpochSeen = A.target_epoch.int
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if maxValidSourceEpochSeen < 0 or maxValidTargetEpochSeen < 0:
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doAssert maxValidSourceEpochSeen == -1 and maxValidTargetEpochSeen == -1
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notice "No attestation found in slashing interchange file for validator",
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pubkey = spdir.data[v].pubkey.PubKeyBytes.toHex()
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continue
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# See formal proof https://github.com/michaelsproul/slashing-proofs
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# of synthetic attestation
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if not(maxValidSourceEpochSeen < maxValidTargetEpochSeen) and
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not(maxValidSourceEpochSeen == 0 and maxValidTargetEpochSeen == 0):
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# Special-case genesis (Slashing prot is deactivated anyway)
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warn "Invalid attestation(s), source epochs should be less than target epochs, skipping import",
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pubkey = spdir.data[v].pubkey.PubKeyBytes.toHex(),
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maxValidSourceEpochSeen = maxValidSourceEpochSeen,
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maxValidTargetEpochSeen = maxValidTargetEpochSeen
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result = siPartial
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continue
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db.registerSyntheticAttestation(
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parsedKey,
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Epoch maxValidSourceEpochSeen,
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Epoch maxValidTargetEpochSeen
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)
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db.pruneAttestations(parsedKey, maxValidSourceEpochSeen, maxValidTargetEpochSeen)
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