315 lines
9.5 KiB
Python
315 lines
9.5 KiB
Python
from copy import deepcopy
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from py_ecc import bls
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import eth2spec.phase0.spec as spec
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from eth2spec.utils.minimal_ssz import signing_root
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from eth2spec.phase0.spec import (
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# constants
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EMPTY_SIGNATURE,
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ZERO_HASH,
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# SSZ
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Attestation,
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AttestationData,
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AttestationDataAndCustodyBit,
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AttesterSlashing,
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BeaconBlockHeader,
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Deposit,
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DepositData,
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Eth1Data,
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ProposerSlashing,
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VoluntaryExit,
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# functions
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convert_to_indexed,
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get_active_validator_indices,
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get_attestation_participants,
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get_block_root,
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get_crosslink_committee_for_attestation,
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get_crosslink_committees_at_slot,
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get_current_epoch,
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get_domain,
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get_empty_block,
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get_epoch_start_slot,
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get_genesis_beacon_state,
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slot_to_epoch,
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verify_merkle_branch,
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hash,
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)
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from eth2spec.utils.merkle_minimal import (
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calc_merkle_tree_from_leaves,
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get_merkle_proof,
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get_merkle_root,
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)
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privkeys = [i + 1 for i in range(1000)]
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pubkeys = [bls.privtopub(privkey) for privkey in privkeys]
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pubkey_to_privkey = {pubkey: privkey for privkey, pubkey in zip(privkeys, pubkeys)}
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def create_mock_genesis_validator_deposits(num_validators, deposit_data_leaves=None):
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if not deposit_data_leaves:
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deposit_data_leaves = []
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proof_of_possession = b'\x33' * 96
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deposit_data_list = []
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for i in range(num_validators):
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pubkey = pubkeys[i]
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deposit_data = DepositData(
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pubkey=pubkey,
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# insecurely use pubkey as withdrawal key as well
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withdrawal_credentials=spec.BLS_WITHDRAWAL_PREFIX_BYTE + hash(pubkey)[1:],
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amount=spec.MAX_DEPOSIT_AMOUNT,
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proof_of_possession=proof_of_possession,
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)
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item = hash(deposit_data.serialize())
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deposit_data_leaves.append(item)
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tree = calc_merkle_tree_from_leaves(tuple(deposit_data_leaves))
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root = get_merkle_root((tuple(deposit_data_leaves)))
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proof = list(get_merkle_proof(tree, item_index=i))
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assert verify_merkle_branch(item, proof, spec.DEPOSIT_CONTRACT_TREE_DEPTH, i, root)
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deposit_data_list.append(deposit_data)
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genesis_validator_deposits = []
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for i in range(num_validators):
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genesis_validator_deposits.append(Deposit(
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proof=list(get_merkle_proof(tree, item_index=i)),
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index=i,
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data=deposit_data_list[i]
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))
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return genesis_validator_deposits, root
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def create_genesis_state(num_validators, deposit_data_leaves=None):
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initial_deposits, deposit_root = create_mock_genesis_validator_deposits(
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num_validators,
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deposit_data_leaves,
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)
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return get_genesis_beacon_state(
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initial_deposits,
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genesis_time=0,
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genesis_eth1_data=Eth1Data(
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deposit_root=deposit_root,
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deposit_count=len(initial_deposits),
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block_hash=spec.ZERO_HASH,
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),
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)
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def force_registry_change_at_next_epoch(state):
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# artificially trigger registry update at next epoch transition
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state.finalized_epoch = get_current_epoch(state) - 1
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for crosslink in state.latest_crosslinks:
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crosslink.epoch = state.finalized_epoch
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state.validator_registry_update_epoch = state.finalized_epoch - 1
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def build_empty_block_for_next_slot(state):
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empty_block = get_empty_block()
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empty_block.slot = state.slot + 1
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previous_block_header = deepcopy(state.latest_block_header)
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if previous_block_header.state_root == spec.ZERO_HASH:
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previous_block_header.state_root = state.hash_tree_root()
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empty_block.previous_block_root = signing_root(previous_block_header)
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return empty_block
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def build_deposit_data(state, pubkey, privkey, amount):
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deposit_data = DepositData(
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pubkey=pubkey,
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# insecurely use pubkey as withdrawal key as well
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withdrawal_credentials=spec.BLS_WITHDRAWAL_PREFIX_BYTE + hash(pubkey)[1:],
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amount=amount,
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proof_of_possession=EMPTY_SIGNATURE,
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)
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proof_of_possession = bls.sign(
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message_hash=signing_root(deposit_data),
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privkey=privkey,
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domain=get_domain(
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state.fork,
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get_current_epoch(state),
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spec.DOMAIN_DEPOSIT,
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)
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)
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deposit_data.proof_of_possession = proof_of_possession
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return deposit_data
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def build_attestation_data(state, slot, shard):
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assert state.slot >= slot
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block_root = build_empty_block_for_next_slot(state).previous_block_root
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epoch_start_slot = get_epoch_start_slot(get_current_epoch(state))
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if epoch_start_slot == slot:
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epoch_boundary_root = block_root
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else:
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get_block_root(state, epoch_start_slot)
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if slot < epoch_start_slot:
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justified_block_root = state.previous_justified_root
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else:
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justified_block_root = state.current_justified_root
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return AttestationData(
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slot=slot,
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shard=shard,
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beacon_block_root=block_root,
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source_epoch=state.current_justified_epoch,
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source_root=justified_block_root,
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target_root=epoch_boundary_root,
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crosslink_data_root=spec.ZERO_HASH,
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previous_crosslink=deepcopy(state.latest_crosslinks[shard]),
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)
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def build_voluntary_exit(state, epoch, validator_index, privkey):
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voluntary_exit = VoluntaryExit(
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epoch=epoch,
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validator_index=validator_index,
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signature=EMPTY_SIGNATURE,
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)
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voluntary_exit.signature = bls.sign(
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message_hash=signing_root(voluntary_exit),
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privkey=privkey,
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domain=get_domain(
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fork=state.fork,
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epoch=epoch,
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domain_type=spec.DOMAIN_VOLUNTARY_EXIT,
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)
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)
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return voluntary_exit
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def build_deposit(state,
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deposit_data_leaves,
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pubkey,
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privkey,
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amount):
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deposit_data = build_deposit_data(state, pubkey, privkey, amount)
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item = hash(deposit_data.serialize())
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index = len(deposit_data_leaves)
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deposit_data_leaves.append(item)
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tree = calc_merkle_tree_from_leaves(tuple(deposit_data_leaves))
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root = get_merkle_root((tuple(deposit_data_leaves)))
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proof = list(get_merkle_proof(tree, item_index=index))
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assert verify_merkle_branch(item, proof, spec.DEPOSIT_CONTRACT_TREE_DEPTH, index, root)
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deposit = Deposit(
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proof=list(proof),
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index=index,
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data=deposit_data,
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)
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return deposit, root, deposit_data_leaves
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def get_valid_proposer_slashing(state):
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current_epoch = get_current_epoch(state)
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validator_index = get_active_validator_indices(state.validator_registry, current_epoch)[-1]
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privkey = pubkey_to_privkey[state.validator_registry[validator_index].pubkey]
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slot = state.slot
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header_1 = BeaconBlockHeader(
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slot=slot,
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previous_block_root=ZERO_HASH,
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state_root=ZERO_HASH,
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block_body_root=ZERO_HASH,
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signature=EMPTY_SIGNATURE,
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)
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header_2 = deepcopy(header_1)
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header_2.previous_block_root = b'\x02' * 32
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header_2.slot = slot + 1
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domain = get_domain(
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fork=state.fork,
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epoch=get_current_epoch(state),
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domain_type=spec.DOMAIN_BEACON_BLOCK,
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)
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header_1.signature = bls.sign(
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message_hash=signing_root(header_1),
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privkey=privkey,
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domain=domain,
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)
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header_2.signature = bls.sign(
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message_hash=signing_root(header_2),
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privkey=privkey,
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domain=domain,
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)
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return ProposerSlashing(
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proposer_index=validator_index,
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header_1=header_1,
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header_2=header_2,
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)
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def get_valid_attester_slashing(state):
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attestation_1 = get_valid_attestation(state)
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attestation_2 = deepcopy(attestation_1)
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attestation_2.data.target_root = b'\x01'*32
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return AttesterSlashing(
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attestation_1=convert_to_indexed(state, attestation_1),
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attestation_2=convert_to_indexed(state, attestation_2),
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)
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def get_valid_attestation(state, slot=None):
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if slot is None:
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slot = state.slot
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shard = state.latest_start_shard
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attestation_data = build_attestation_data(state, slot, shard)
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crosslink_committee = get_crosslink_committee_for_attestation(state, attestation_data)
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committee_size = len(crosslink_committee)
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bitfield_length = (committee_size + 7) // 8
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aggregation_bitfield = b'\xC0' + b'\x00' * (bitfield_length - 1)
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custody_bitfield = b'\x00' * bitfield_length
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attestation = Attestation(
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aggregation_bitfield=aggregation_bitfield,
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data=attestation_data,
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custody_bitfield=custody_bitfield,
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aggregate_signature=EMPTY_SIGNATURE,
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)
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participants = get_attestation_participants(
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state,
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attestation.data,
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attestation.aggregation_bitfield,
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)
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assert len(participants) == 2
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signatures = []
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for validator_index in participants:
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privkey = privkeys[validator_index]
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signatures.append(
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get_attestation_signature(
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state,
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attestation.data,
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privkey
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)
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)
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attestation.aggregation_signature = bls.aggregate_signatures(signatures)
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return attestation
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def get_attestation_signature(state, attestation_data, privkey, custody_bit=0b0):
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message_hash = AttestationDataAndCustodyBit(
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data=attestation_data,
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custody_bit=custody_bit,
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).hash_tree_root()
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return bls.sign(
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message_hash=message_hash,
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privkey=privkey,
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domain=get_domain(
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fork=state.fork,
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epoch=slot_to_epoch(attestation_data.slot),
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domain_type=spec.DOMAIN_ATTESTATION,
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)
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)
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