90fd044766
- snowbridge-pezpallet-* → pezsnowbridge-pezpallet-* (201 refs) - pallet/ directories → pezpallet/ (4 locations) - Fixed pezpallet.rs self-include recursion bug - Fixed sc-chain-spec hardcoded crate name in derive macro - Reverted .pezpallet_by_name() to .pallet_by_name() (subxt API) - Added BizinikiwiConfig type alias for zombienet tests - Deleted obsolete session state files Verified: pezsnowbridge-pezpallet-*, pezpallet-staking, pezpallet-staking-async, pezframe-benchmarking-cli all pass cargo check
412 lines
14 KiB
Rust
412 lines
14 KiB
Rust
// Copyright (C) Parity Technologies (UK) Ltd.
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// This file is part of Parity Bridges Common.
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// Parity Bridges Common is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Parity Bridges Common is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Parity Bridges Common. If not, see <http://www.gnu.org/licenses/>.
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//! Tests inside this module are made to ensure that our custom justification verification
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//! implementation works similar to the [`finality_grandpa::validate_commit`] and explicitly
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//! show where we behave different.
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//!
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//! Some of tests in this module may partially duplicate tests from `justification.rs`,
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//! but their purpose is different.
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use bp_header_pez_chain::justification::{
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verify_justification, GrandpaJustification, JustificationVerificationContext,
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JustificationVerificationError, PrecommitError,
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};
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use bp_test_utils::{
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header_id, make_justification_for_header, signed_precommit, test_header, Account,
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JustificationGeneratorParams, ALICE, BOB, CHARLIE, DAVE, EVE, FERDIE, TEST_GRANDPA_SET_ID,
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};
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use finality_grandpa::voter_set::VoterSet;
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use pezsp_consensus_grandpa::{AuthorityId, AuthorityWeight, SetId};
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use pezsp_runtime::traits::Header as HeaderT;
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type TestHeader = pezsp_runtime::testing::Header;
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type TestHash = <TestHeader as HeaderT>::Hash;
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type TestNumber = <TestHeader as HeaderT>::Number;
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/// Implementation of `finality_grandpa::Chain` that is used in tests.
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struct AncestryChain(bp_header_pez_chain::justification::AncestryChain<TestHeader>);
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impl AncestryChain {
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fn new(justification: &GrandpaJustification<TestHeader>) -> Self {
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Self(bp_header_pez_chain::justification::AncestryChain::new(justification).0)
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}
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}
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impl finality_grandpa::Chain<TestHash, TestNumber> for AncestryChain {
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fn ancestry(
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&self,
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base: TestHash,
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block: TestHash,
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) -> Result<Vec<TestHash>, finality_grandpa::Error> {
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let mut route = Vec::new();
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let mut current_hash = block;
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loop {
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if current_hash == base {
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break;
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}
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match self.0.parent_hash_of(¤t_hash) {
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Some(parent_hash) => {
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current_hash = *parent_hash;
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route.push(current_hash);
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},
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_ => return Err(finality_grandpa::Error::NotDescendent),
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}
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}
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route.pop(); // remove the base
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Ok(route)
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}
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}
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/// Get a full set of accounts.
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fn full_accounts_set() -> Vec<(Account, AuthorityWeight)> {
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vec![(ALICE, 1), (BOB, 1), (CHARLIE, 1), (DAVE, 1), (EVE, 1)]
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}
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/// Get a full set of GRANDPA authorities.
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fn full_voter_set() -> VoterSet<AuthorityId> {
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VoterSet::new(full_accounts_set().iter().map(|(id, w)| (AuthorityId::from(*id), *w))).unwrap()
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}
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pub fn full_verification_context(set_id: SetId) -> JustificationVerificationContext {
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let voter_set = full_voter_set();
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JustificationVerificationContext { voter_set, authority_set_id: set_id }
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}
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/// Get a minimal set of accounts.
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fn minimal_accounts_set() -> Vec<(Account, AuthorityWeight)> {
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// there are 5 accounts in the full set => we need 2/3 + 1 accounts, which results in 4 accounts
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vec![(ALICE, 1), (BOB, 1), (CHARLIE, 1), (DAVE, 1)]
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}
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/// Make a valid GRANDPA justification with sensible defaults.
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pub fn make_default_justification(header: &TestHeader) -> GrandpaJustification<TestHeader> {
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make_justification_for_header(JustificationGeneratorParams {
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header: header.clone(),
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authorities: minimal_accounts_set(),
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..Default::default()
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})
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}
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// the `finality_grandpa::validate_commit` function has two ways to report an unsuccessful
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// commit validation:
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//
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// 1) to return `Err()` (which only may happen if `finality_grandpa::Chain` implementation returns
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// an error);
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// 2) to return `Ok(validation_result)` if `validation_result.is_valid()` is false.
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//
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// Our implementation would just return error in both cases.
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#[test]
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fn same_result_when_precommit_target_has_lower_number_than_commit_target() {
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let mut justification = make_default_justification(&test_header(1));
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// the number of header in precommit (0) is lower than number of header in commit (1)
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justification.commit.precommits[0].precommit.target_number = 0;
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// our implementation returns an error
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assert_eq!(
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verify_justification::<TestHeader>(
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header_id::<TestHeader>(1),
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&full_verification_context(TEST_GRANDPA_SET_ID),
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&justification,
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),
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Err(JustificationVerificationError::Precommit(PrecommitError::UnrelatedAncestryVote)),
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);
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// original implementation returns `Ok(validation_result)`
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// with `validation_result.is_valid() == false`.
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let result = finality_grandpa::validate_commit(
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&justification.commit,
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&full_voter_set(),
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&AncestryChain::new(&justification),
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)
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.unwrap();
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assert!(!result.is_valid());
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}
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#[test]
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fn same_result_when_precommit_target_is_not_descendant_of_commit_target() {
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let not_descendant = test_header::<TestHeader>(10);
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let mut justification = make_default_justification(&test_header(1));
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// the route from header of commit (1) to header of precommit (10) is missing from
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// the votes ancestries
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justification.commit.precommits[0].precommit.target_number = *not_descendant.number();
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justification.commit.precommits[0].precommit.target_hash = not_descendant.hash();
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justification.votes_ancestries.push(not_descendant);
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// our implementation returns an error
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assert_eq!(
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verify_justification::<TestHeader>(
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header_id::<TestHeader>(1),
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&full_verification_context(TEST_GRANDPA_SET_ID),
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&justification,
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),
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Err(JustificationVerificationError::Precommit(PrecommitError::UnrelatedAncestryVote)),
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);
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// original implementation returns `Ok(validation_result)`
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// with `validation_result.is_valid() == false`.
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let result = finality_grandpa::validate_commit(
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&justification.commit,
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&full_voter_set(),
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&AncestryChain::new(&justification),
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)
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.unwrap();
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assert!(!result.is_valid());
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}
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#[test]
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fn same_result_when_there_are_not_enough_cumulative_weight_to_finalize_commit_target() {
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// just remove one authority from the minimal set and we shall not reach the threshold
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let mut authorities_set = minimal_accounts_set();
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authorities_set.pop();
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let justification = make_justification_for_header(JustificationGeneratorParams {
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header: test_header(1),
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authorities: authorities_set,
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..Default::default()
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});
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// our implementation returns an error
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assert_eq!(
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verify_justification::<TestHeader>(
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header_id::<TestHeader>(1),
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&full_verification_context(TEST_GRANDPA_SET_ID),
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&justification,
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),
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Err(JustificationVerificationError::TooLowCumulativeWeight),
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);
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// original implementation returns `Ok(validation_result)`
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// with `validation_result.is_valid() == false`.
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let result = finality_grandpa::validate_commit(
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&justification.commit,
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&full_voter_set(),
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&AncestryChain::new(&justification),
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)
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.unwrap();
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assert!(!result.is_valid());
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}
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// tests below are our differences with the original implementation
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#[test]
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fn different_result_when_justification_contains_duplicate_vote() {
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let mut justification = make_justification_for_header(JustificationGeneratorParams {
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header: test_header(1),
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authorities: minimal_accounts_set(),
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ancestors: 0,
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..Default::default()
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});
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// the justification may contain exactly the same vote (i.e. same precommit and same signature)
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// multiple times && it isn't treated as an error by original implementation
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let last_precommit = justification.commit.precommits.pop().unwrap();
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justification.commit.precommits.push(justification.commit.precommits[0].clone());
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justification.commit.precommits.push(last_precommit);
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// our implementation fails
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assert_eq!(
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verify_justification::<TestHeader>(
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header_id::<TestHeader>(1),
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&full_verification_context(TEST_GRANDPA_SET_ID),
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&justification,
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),
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Err(JustificationVerificationError::Precommit(PrecommitError::DuplicateAuthorityVote)),
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);
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// original implementation returns `Ok(validation_result)`
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// with `validation_result.is_valid() == true`.
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let result = finality_grandpa::validate_commit(
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&justification.commit,
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&full_voter_set(),
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&AncestryChain::new(&justification),
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)
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.unwrap();
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assert!(result.is_valid());
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}
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#[test]
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fn different_results_when_authority_equivocates_once_in_a_round() {
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let mut justification = make_justification_for_header(JustificationGeneratorParams {
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header: test_header(1),
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authorities: minimal_accounts_set(),
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ancestors: 0,
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..Default::default()
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});
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// the justification original implementation allows authority to submit two different
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// votes in a single round, of which only first is 'accepted'
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let last_precommit = justification.commit.precommits.pop().unwrap();
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justification.commit.precommits.push(signed_precommit::<TestHeader>(
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&ALICE,
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header_id::<TestHeader>(1),
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justification.round,
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TEST_GRANDPA_SET_ID,
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));
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justification.commit.precommits.push(last_precommit);
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// our implementation fails
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assert_eq!(
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verify_justification::<TestHeader>(
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header_id::<TestHeader>(1),
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&full_verification_context(TEST_GRANDPA_SET_ID),
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&justification,
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),
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Err(JustificationVerificationError::Precommit(PrecommitError::DuplicateAuthorityVote)),
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);
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// original implementation returns `Ok(validation_result)`
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// with `validation_result.is_valid() == true`.
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let result = finality_grandpa::validate_commit(
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&justification.commit,
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&full_voter_set(),
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&AncestryChain::new(&justification),
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)
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.unwrap();
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assert!(result.is_valid());
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}
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#[test]
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fn different_results_when_authority_equivocates_twice_in_a_round() {
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let mut justification = make_justification_for_header(JustificationGeneratorParams {
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header: test_header(1),
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authorities: minimal_accounts_set(),
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ancestors: 0,
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..Default::default()
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});
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// there's some code in the original implementation that should return an error when
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// same authority submits more than two different votes in a single round:
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// https://github.com/paritytech/finality-grandpa/blob/6aeea2d1159d0f418f0b86e70739f2130629ca09/src/lib.rs#L473
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// but there's also a code that prevents this from happening:
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// https://github.com/paritytech/finality-grandpa/blob/6aeea2d1159d0f418f0b86e70739f2130629ca09/src/round.rs#L287
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// => so now we are also just ignoring all votes from the same authority, except the first one
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let last_precommit = justification.commit.precommits.pop().unwrap();
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let prev_last_precommit = justification.commit.precommits.pop().unwrap();
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justification.commit.precommits.push(signed_precommit::<TestHeader>(
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&ALICE,
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header_id::<TestHeader>(1),
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justification.round,
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TEST_GRANDPA_SET_ID,
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));
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justification.commit.precommits.push(signed_precommit::<TestHeader>(
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&ALICE,
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header_id::<TestHeader>(1),
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justification.round,
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TEST_GRANDPA_SET_ID,
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));
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justification.commit.precommits.push(last_precommit);
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justification.commit.precommits.push(prev_last_precommit);
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// our implementation fails
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assert_eq!(
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verify_justification::<TestHeader>(
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header_id::<TestHeader>(1),
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&full_verification_context(TEST_GRANDPA_SET_ID),
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&justification,
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),
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Err(JustificationVerificationError::Precommit(PrecommitError::DuplicateAuthorityVote)),
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);
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// original implementation returns `Ok(validation_result)`
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// with `validation_result.is_valid() == true`.
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let result = finality_grandpa::validate_commit(
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&justification.commit,
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&full_voter_set(),
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&AncestryChain::new(&justification),
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)
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.unwrap();
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assert!(result.is_valid());
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}
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#[test]
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fn different_results_when_there_are_more_than_enough_votes() {
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let mut justification = make_justification_for_header(JustificationGeneratorParams {
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header: test_header(1),
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authorities: minimal_accounts_set(),
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ancestors: 0,
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..Default::default()
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});
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// the reference implementation just keep verifying signatures even if we have
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// collected enough votes. We are not
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justification.commit.precommits.push(signed_precommit::<TestHeader>(
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&EVE,
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header_id::<TestHeader>(1),
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justification.round,
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TEST_GRANDPA_SET_ID,
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));
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// our implementation fails
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assert_eq!(
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verify_justification::<TestHeader>(
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header_id::<TestHeader>(1),
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&full_verification_context(TEST_GRANDPA_SET_ID),
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&justification,
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),
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Err(JustificationVerificationError::Precommit(PrecommitError::RedundantAuthorityVote)),
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);
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// original implementation returns `Ok(validation_result)`
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// with `validation_result.is_valid() == true`.
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let result = finality_grandpa::validate_commit(
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&justification.commit,
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&full_voter_set(),
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&AncestryChain::new(&justification),
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)
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.unwrap();
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assert!(result.is_valid());
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}
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#[test]
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fn different_results_when_there_is_a_vote_of_unknown_authority() {
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let mut justification = make_justification_for_header(JustificationGeneratorParams {
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header: test_header(1),
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authorities: minimal_accounts_set(),
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ancestors: 0,
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..Default::default()
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});
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// the reference implementation just keep verifying signatures even if we have
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// collected enough votes. We are not
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let last_precommit = justification.commit.precommits.pop().unwrap();
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justification.commit.precommits.push(signed_precommit::<TestHeader>(
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&FERDIE,
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header_id::<TestHeader>(1),
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justification.round,
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TEST_GRANDPA_SET_ID,
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));
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justification.commit.precommits.push(last_precommit);
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// our implementation fails
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assert_eq!(
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verify_justification::<TestHeader>(
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header_id::<TestHeader>(1),
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&full_verification_context(TEST_GRANDPA_SET_ID),
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&justification,
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),
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Err(JustificationVerificationError::Precommit(PrecommitError::UnknownAuthorityVote)),
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);
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// original implementation returns `Ok(validation_result)`
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// with `validation_result.is_valid() == true`.
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let result = finality_grandpa::validate_commit(
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&justification.commit,
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&full_voter_set(),
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&AncestryChain::new(&justification),
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)
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.unwrap();
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assert!(result.is_valid());
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}
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