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// Copyright 2018-2019 Parity Technologies (UK) Ltd.
// This file is part of Substrate.
// Substrate is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
// Substrate is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
// You should have received a copy of the GNU General Public License
// along with Substrate. If not, see <http://www.gnu.org/licenses/>.
//! Test utilities
use primitives::{traits::{IdentityLookup, Convert}, BuildStorage, Perbill};
use primitives::testing::{Digest, DigestItem, Header, UintAuthorityId, ConvertUintAuthorityId};
use substrate_primitives::{H256, Blake2Hasher};
use srml_support::{impl_outer_origin, assert_ok, traits::Currency};
use crate::{GenesisConfig, Module, Trait, StakerStatus, ValidatorPrefs, RewardDestination};
/// The AccountId alias in this test module.
/// Simple structure that exposes how u64 currency can be represented as... u64.
pub struct CurrencyToVoteHandler;
impl Convert<u64, u64> for CurrencyToVoteHandler {
fn convert(x: u64) -> u64 { x }
}
impl Convert<u128, u64> for CurrencyToVoteHandler {
fn convert(x: u128) -> u64 {
x as u64
}
}
impl_outer_origin!{
pub enum Origin for Test {}
}
// Workaround for https://github.com/rust-lang/rust/issues/26925 . Remove when sorted.
#[derive(Clone, PartialEq, Eq, Debug)]
pub struct Test;
impl consensus::Trait for Test {
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type Log = DigestItem;
type InherentOfflineReport = ();
type Index = u64;
type BlockNumber = u64;
type Hash = H256;
type Hashing = ::primitives::traits::BlakeTwo256;
type Digest = Digest;
type Lookup = IdentityLookup<Self::AccountId>;
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type Log = DigestItem;
impl balances::Trait for Test {
type Balance = u64;
type OnFreeBalanceZero = Staking;
type TransactionPayment = ();
type TransferPayment = ();
type DustRemoval = ();
type ConvertAccountIdToSessionKey = ConvertUintAuthorityId;
type OnSessionChange = Staking;
}
impl timestamp::Trait for Test {
type Moment = u64;
type OnTimestampSet = ();
type Currency = balances::Module<Self>;
type CurrencyToVote = CurrencyToVoteHandler;
type Slash = ();
type Reward = ();
pub struct ExtBuilder {
existential_deposit: u64,
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session_length: u64,
sessions_per_era: u64,
current_era: u64,
validator_pool: bool,
nominate: bool,
validator_count: u32,
minimum_validator_count: u32,
}
impl Default for ExtBuilder {
fn default() -> Self {
Self {
existential_deposit: 0,
session_length: 1,
sessions_per_era: 1,
validator_pool: false,
nominate: true,
validator_count: 2,
minimum_validator_count: 0,
}
}
}
impl ExtBuilder {
pub fn existential_deposit(mut self, existential_deposit: u64) -> Self {
self.existential_deposit = existential_deposit;
self
}
pub fn session_length(mut self, session_length: u64) -> Self {
self.session_length = session_length;
self
}
pub fn sessions_per_era(mut self, sessions_per_era: u64) -> Self {
self.sessions_per_era = sessions_per_era;
self
}
pub fn _current_era(mut self, current_era: u64) -> Self {
self.current_era = current_era;
self
}
pub fn validator_pool(mut self, validator_pool: bool) -> Self {
self.validator_pool = validator_pool;
self
}
pub fn nominate(mut self, nominate: bool) -> Self {
self.nominate = nominate;
self
}
pub fn validator_count(mut self, count: u32) -> Self {
self.validator_count = count;
self
}
pub fn minimum_validator_count(mut self, count: u32) -> Self {
self.minimum_validator_count = count;
self
}
pub fn fair(mut self, is_fair: bool) -> Self {
self.fair = is_fair;
pub fn build(self) -> runtime_io::TestExternalities<Blake2Hasher> {
let (mut t, mut c) = system::GenesisConfig::<Test>::default().build_storage().unwrap();
let balance_factor = if self.existential_deposit > 0 {
256
let _ = consensus::GenesisConfig::<Test>{
code: vec![],
authorities: vec![],
}.assimilate_storage(&mut t, &mut c);
let _ = session::GenesisConfig::<Test>{
session_length: self.session_length,
// NOTE: if config.nominate == false then 100 is also selected in the initial round.
validators: if self.validator_pool { vec![10, 20, 30, 40] } else { vec![10, 20] },
}.assimilate_storage(&mut t, &mut c);
let _ = balances::GenesisConfig::<Test>{
balances: vec![
(1, 10 * balance_factor),
(2, 20 * balance_factor),
(3, 300 * balance_factor),
(4, 400 * balance_factor),
(10, balance_factor),
(11, balance_factor * 1000),
(20, balance_factor),
(21, balance_factor * 2000),
(30, balance_factor),
(31, balance_factor * 2000),
(40, balance_factor),
(41, balance_factor * 2000),
(100, 2000 * balance_factor),
(101, 2000 * balance_factor),
],
transaction_base_fee: 0,
transaction_byte_fee: 0,
existential_deposit: self.existential_deposit,
transfer_fee: 0,
creation_fee: 0,
vesting: vec![],
}.assimilate_storage(&mut t, &mut c);
let _ = GenesisConfig::<Test>{
sessions_per_era: self.sessions_per_era,
current_era: self.current_era,
stakers: if self.validator_pool {
vec![
(11, 10, balance_factor * 1000, StakerStatus::<AccountIdType>::Validator),
(21, 20, balance_factor * if self.fair { 1000 } else { 2000 }, StakerStatus::<AccountIdType>::Validator),
(31, 30, balance_factor * 1000, if self.validator_pool { StakerStatus::<AccountIdType>::Validator } else { StakerStatus::<AccountIdType>::Idle }),
(41, 40, balance_factor * 1000, if self.validator_pool { StakerStatus::<AccountIdType>::Validator } else { StakerStatus::<AccountIdType>::Idle }),
(101, 100, balance_factor * 500, if self.nominate { StakerStatus::<AccountIdType>::Nominator(vec![11, 21]) } else { StakerStatus::<AccountIdType>::Nominator(vec![]) })
]
} else {
vec![
(11, 10, balance_factor * 1000, StakerStatus::<AccountIdType>::Validator),
(21, 20, balance_factor * if self.fair { 1000 } else { 2000 }, StakerStatus::<AccountIdType>::Validator),
(31, 30, 1, StakerStatus::<AccountIdType>::Validator),
(101, 100, balance_factor * 500, if self.nominate { StakerStatus::<AccountIdType>::Nominator(vec![11, 21]) } else { StakerStatus::<AccountIdType>::Nominator(vec![]) })
]
},
validator_count: self.validator_count,
minimum_validator_count: self.minimum_validator_count,
bonding_duration: self.sessions_per_era * self.session_length * 3,
session_reward: Perbill::from_millionths((1000000 * self.reward / balance_factor) as u32),
offline_slash: Perbill::from_percent(5),
current_session_reward: self.reward,
offline_slash_grace: 0,
invulnerables: vec![],
}.assimilate_storage(&mut t, &mut c);
let _ = timestamp::GenesisConfig::<Test>{
}.assimilate_storage(&mut t, &mut c);
}
pub type System = system::Module<Test>;
pub type Balances = balances::Module<Test>;
pub type Timestamp = timestamp::Module<Test>;
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pub fn check_exposure(acc: u64) {
let expo = Staking::stakers(&acc);
assert_eq!(expo.total as u128, expo.own as u128 + expo.others.iter().map(|e| e.value as u128).sum::<u128>());
}
pub fn check_exposure_all() {
Staking::current_elected().into_iter().for_each(|acc| check_exposure(acc));
}
pub fn assert_total_expo(acc: u64, val: u64) {
let expo = Staking::stakers(&acc);
assert_eq!(expo.total, val);
}
pub fn bond_validator(acc: u64, val: u64) {
// a = controller
// a + 1 = stash
let _ = Balances::make_free_balance_be(&(acc+1), val);
assert_ok!(Staking::bond(Origin::signed(acc+1), acc, val, RewardDestination::Controller));
assert_ok!(Staking::validate(Origin::signed(acc), ValidatorPrefs::default()));
}
pub fn bond_nominator(acc: u64, val: u64, target: Vec<u64>) {
// a = controller
// a + 1 = stash
let _ = Balances::make_free_balance_be(&(acc+1), val);
assert_ok!(Staking::bond(Origin::signed(acc+1), acc, val, RewardDestination::Controller));
assert_ok!(Staking::nominate(Origin::signed(acc), target));
}