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// Copyright (C) Parity Technologies (UK) Ltd.
// SPDX-License-Identifier: Apache-2.0
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
use std::vec;
use frame_election_provider_support::{onchain, SequentialPhragmen};
construct_runtime, parameter_types,
sp_io::TestExternalities,
traits::{ConstU16, ConstU32, ConstU64, KeyOwnerProofSystem, OnFinalize, OnInitialize},
BasicExternalities,
use pallet_session::historical as pallet_session_historical;
use sp_core::{crypto::KeyTypeId, ConstU128, H256};
curve::PiecewiseLinear,
testing::{Header, TestXt},
traits::{BlakeTwo256, IdentityLookup, OpaqueKeys},
BuildStorage, Perbill,
use sp_staking::{EraIndex, SessionIndex};
crypto::{AuthorityId as BeefyId, AuthoritySignature as BeefySignature},
ConsensusLog, EquivocationProof, BEEFY_ENGINE_ID,
};
impl_opaque_keys! {
pub struct MockSessionKeys {
pub dummy: pallet_beefy::Pallet<Test>,
}
}
type UncheckedExtrinsic = frame_system::mocking::MockUncheckedExtrinsic<Test>;
type Block = frame_system::mocking::MockBlock<Test>;
construct_runtime!(
pub enum Test where
Block = Block,
NodeBlock = Block,
UncheckedExtrinsic = UncheckedExtrinsic,
{
System: frame_system,
Authorship: pallet_authorship,
Timestamp: pallet_timestamp,
Balances: pallet_balances,
Beefy: pallet_beefy,
Staking: pallet_staking,
Session: pallet_session,
Offences: pallet_offences,
Historical: pallet_session_historical,
}
);
impl frame_system::Config for Test {
type BaseCallFilter = frame_support::traits::Everything;
type BlockWeights = ();
type BlockLength = ();
type DbWeight = ();
type Index = u64;
type BlockNumber = u64;
type Hash = H256;
type Hashing = BlakeTwo256;
type AccountId = u64;
type Lookup = IdentityLookup<Self::AccountId>;
type Header = Header;
type BlockHashCount = ConstU64<250>;
type Version = ();
type PalletInfo = PalletInfo;
type AccountData = pallet_balances::AccountData<u128>;
type OnNewAccount = ();
type OnKilledAccount = ();
type SystemWeightInfo = ();
type SS58Prefix = ConstU16<42>;
type MaxConsumers = ConstU32<16>;
impl<C> frame_system::offchain::SendTransactionTypes<C> for Test
where
RuntimeCall: From<C>,
{
type OverarchingCall = RuntimeCall;
type Extrinsic = TestXt<RuntimeCall, ()>;
}
parameter_types! {
pub const Period: u64 = 1;
pub const ReportLongevity: u64 =
BondingDuration::get() as u64 * SessionsPerEra::get() as u64 * Period::get();
pub const MaxSetIdSessionEntries: u32 = BondingDuration::get() * SessionsPerEra::get();
}
impl pallet_beefy::Config for Test {
type BeefyId = BeefyId;
type MaxAuthorities = ConstU32<100>;
type MaxSetIdSessionEntries = MaxSetIdSessionEntries;
type OnNewValidatorSet = ();
type WeightInfo = ();
type KeyOwnerProof = <Historical as KeyOwnerProofSystem<(KeyTypeId, BeefyId)>>::Proof;
type EquivocationReportSystem =
super::EquivocationReportSystem<Self, Offences, Historical, ReportLongevity>;
}
parameter_types! {
pub const DisabledValidatorsThreshold: Perbill = Perbill::from_percent(33);
}
impl pallet_session::Config for Test {
type ValidatorIdOf = pallet_staking::StashOf<Self>;
type ShouldEndSession = pallet_session::PeriodicSessions<ConstU64<1>, ConstU64<0>>;
type NextSessionRotation = pallet_session::PeriodicSessions<ConstU64<1>, ConstU64<0>>;
type SessionManager = pallet_session::historical::NoteHistoricalRoot<Self, Staking>;
type SessionHandler = <MockSessionKeys as OpaqueKeys>::KeyTypeIdProviders;
type Keys = MockSessionKeys;
type WeightInfo = ();
}
impl pallet_session::historical::Config for Test {
type FullIdentification = pallet_staking::Exposure<u64, u128>;
type FullIdentificationOf = pallet_staking::ExposureOf<Self>;
}
impl pallet_authorship::Config for Test {
type FindAuthor = ();
type EventHandler = ();
}
impl pallet_balances::Config for Test {
type MaxLocks = ();
type MaxReserves = ();
type ReserveIdentifier = [u8; 8];
type Balance = u128;
type DustRemoval = ();
type RuntimeEvent = RuntimeEvent;
type ExistentialDeposit = ConstU128<1>;
type AccountStore = System;
type WeightInfo = ();
Gavin Wood
committed
type MaxHolds = ();
type FreezeIdentifier = ();
type MaxFreezes = ();
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}
impl pallet_timestamp::Config for Test {
type Moment = u64;
type OnTimestampSet = ();
type MinimumPeriod = ConstU64<3>;
type WeightInfo = ();
}
pallet_staking_reward_curve::build! {
const REWARD_CURVE: PiecewiseLinear<'static> = curve!(
min_inflation: 0_025_000u64,
max_inflation: 0_100_000,
ideal_stake: 0_500_000,
falloff: 0_050_000,
max_piece_count: 40,
test_precision: 0_005_000,
);
}
parameter_types! {
pub const SessionsPerEra: SessionIndex = 3;
pub const BondingDuration: EraIndex = 3;
pub const RewardCurve: &'static PiecewiseLinear<'static> = &REWARD_CURVE;
pub const OffendingValidatorsThreshold: Perbill = Perbill::from_percent(17);
}
pub struct OnChainSeqPhragmen;
impl onchain::Config for OnChainSeqPhragmen {
type System = Test;
type Solver = SequentialPhragmen<u64, Perbill>;
type DataProvider = Staking;
type WeightInfo = ();
type MaxWinners = ConstU32<100>;
type VotersBound = ConstU32<{ u32::MAX }>;
type TargetsBound = ConstU32<{ u32::MAX }>;
}
impl pallet_staking::Config for Test {
type MaxNominations = ConstU32<16>;
type RewardRemainder = ();
type CurrencyToVote = ();
type RuntimeEvent = RuntimeEvent;
type Currency = Balances;
type CurrencyBalance = <Self as pallet_balances::Config>::Balance;
type Slash = ();
type Reward = ();
type SessionsPerEra = SessionsPerEra;
type BondingDuration = BondingDuration;
type SlashDeferDuration = ();
type AdminOrigin = frame_system::EnsureRoot<Self::AccountId>;
type SessionInterface = Self;
type UnixTime = pallet_timestamp::Pallet<Test>;
type EraPayout = pallet_staking::ConvertCurve<RewardCurve>;
type MaxNominatorRewardedPerValidator = ConstU32<64>;
type OffendingValidatorsThreshold = OffendingValidatorsThreshold;
type NextNewSession = Session;
type ElectionProvider = onchain::OnChainExecution<OnChainSeqPhragmen>;
type GenesisElectionProvider = Self::ElectionProvider;
type VoterList = pallet_staking::UseNominatorsAndValidatorsMap<Self>;
type TargetList = pallet_staking::UseValidatorsMap<Self>;
type MaxUnlockingChunks = ConstU32<32>;
type HistoryDepth = ConstU32<84>;
type EventListeners = ();
type BenchmarkingConfig = pallet_staking::TestBenchmarkingConfig;
type WeightInfo = ();
}
impl pallet_offences::Config for Test {
type RuntimeEvent = RuntimeEvent;
type IdentificationTuple = pallet_session::historical::IdentificationTuple<Self>;
type OnOffenceHandler = Staking;
}
// Note, that we can't use `UintAuthorityId` here. Reason is that the implementation
// of `to_public_key()` assumes, that a public key is 32 bytes long. This is true for
// ed25519 and sr25519 but *not* for ecdsa. A compressed ecdsa public key is 33 bytes,
// with the first one containing information to reconstruct the uncompressed key.
let mut buf: [u8; 33] = [id; 33];
// Set to something valid.
buf[0] = 0x02;
let pk = Public::from_raw(buf);
BeefyId::from(pk)
}
pub fn mock_authorities(vec: Vec<u8>) -> Vec<BeefyId> {
vec.into_iter().map(|id| mock_beefy_id(id)).collect()
}
pub fn new_test_ext(ids: Vec<u8>) -> TestExternalities {
new_test_ext_raw_authorities(mock_authorities(ids))
}
pub fn new_test_ext_raw_authorities(authorities: Vec<BeefyId>) -> TestExternalities {
let mut t = frame_system::GenesisConfig::<Test>::default().build_storage().unwrap();
let balances: Vec<_> = (0..authorities.len()).map(|i| (i as u64, 10_000_000)).collect();
pallet_balances::GenesisConfig::<Test> { balances }
.assimilate_storage(&mut t)
.unwrap();
let session_keys: Vec<_> = authorities
.iter()
.enumerate()
.map(|(i, k)| (i as u64, i as u64, MockSessionKeys { dummy: k.clone() }))
.collect();
BasicExternalities::execute_with_storage(&mut t, || {
for (ref id, ..) in &session_keys {
frame_system::Pallet::<Test>::inc_providers(id);
}
});
pallet_session::GenesisConfig::<Test> { keys: session_keys }
.assimilate_storage(&mut t)
.unwrap();
// controllers are same as stash
let stakers: Vec<_> = (0..authorities.len())
.map(|i| (i as u64, i as u64, 10_000, pallet_staking::StakerStatus::<u64>::Validator))
.collect();
let staking_config = pallet_staking::GenesisConfig::<Test> {
stakers,
validator_count: 2,
force_era: pallet_staking::Forcing::ForceNew,
minimum_validator_count: 0,
invulnerables: vec![],
..Default::default()
};
staking_config.assimilate_storage(&mut t).unwrap();
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pub fn start_session(session_index: SessionIndex) {
for i in Session::current_index()..session_index {
System::on_finalize(System::block_number());
Session::on_finalize(System::block_number());
Staking::on_finalize(System::block_number());
Beefy::on_finalize(System::block_number());
let parent_hash = if System::block_number() > 1 {
let hdr = System::finalize();
hdr.hash()
} else {
System::parent_hash()
};
System::reset_events();
System::initialize(&(i as u64 + 1), &parent_hash, &Default::default());
System::set_block_number((i + 1).into());
Timestamp::set_timestamp(System::block_number() * 6000);
System::on_initialize(System::block_number());
Session::on_initialize(System::block_number());
Staking::on_initialize(System::block_number());
Beefy::on_initialize(System::block_number());
}
assert_eq!(Session::current_index(), session_index);
}
pub fn start_era(era_index: EraIndex) {
start_session((era_index * 3).into());
assert_eq!(Staking::current_era(), Some(era_index));
}