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https://github.com/pezkuwichain/pezkuwi-subxt.git
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7099f6e1b1
Step in https://github.com/paritytech/polkadot-sdk/issues/171 This PR removes `as [disambiguation_path]` syntax from `derive_impl` usage across the polkadot-sdk as introduced in https://github.com/paritytech/polkadot-sdk/pull/3505
649 lines
19 KiB
Rust
649 lines
19 KiB
Rust
// This file is part of Substrate.
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// Copyright (C) Parity Technologies (UK) Ltd.
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// SPDX-License-Identifier: Apache-2.0
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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use super::*;
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use crate::{self as multi_phase, signed::GeometricDepositBase, unsigned::MinerConfig};
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use frame_election_provider_support::{
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bounds::{DataProviderBounds, ElectionBounds},
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data_provider, onchain, ElectionDataProvider, NposSolution, SequentialPhragmen,
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};
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pub use frame_support::derive_impl;
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use frame_support::{
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parameter_types,
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traits::{ConstU32, Hooks},
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weights::{constants, Weight},
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BoundedVec,
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};
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use multi_phase::unsigned::{IndexAssignmentOf, VoterOf};
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use parking_lot::RwLock;
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use sp_core::{
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offchain::{
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testing::{PoolState, TestOffchainExt, TestTransactionPoolExt},
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OffchainDbExt, OffchainWorkerExt, TransactionPoolExt,
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},
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H256,
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};
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use sp_npos_elections::{
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assignment_ratio_to_staked_normalized, seq_phragmen, to_supports, BalancingConfig,
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ElectionResult, EvaluateSupport,
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};
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use sp_runtime::{
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bounded_vec,
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testing::Header,
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traits::{BlakeTwo256, Convert, IdentityLookup},
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BuildStorage, PerU16, Percent,
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};
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use std::sync::Arc;
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pub type Block = sp_runtime::generic::Block<Header, UncheckedExtrinsic>;
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pub type UncheckedExtrinsic =
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sp_runtime::generic::UncheckedExtrinsic<AccountId, RuntimeCall, (), ()>;
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frame_support::construct_runtime!(
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pub enum Runtime {
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System: frame_system,
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Balances: pallet_balances,
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MultiPhase: multi_phase,
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}
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);
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pub(crate) type Balance = u64;
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pub(crate) type AccountId = u64;
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pub(crate) type BlockNumber = u64;
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pub(crate) type VoterIndex = u32;
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pub(crate) type TargetIndex = u16;
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frame_election_provider_support::generate_solution_type!(
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#[compact]
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pub struct TestNposSolution::<
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VoterIndex = VoterIndex,
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TargetIndex = TargetIndex,
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Accuracy = PerU16,
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MaxVoters = ConstU32::<2_000>
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>(16)
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);
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/// All events of this pallet.
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pub(crate) fn multi_phase_events() -> Vec<super::Event<Runtime>> {
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System::read_events_for_pallet::<super::Event<Runtime>>()
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}
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/// To from `now` to block `n`.
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pub fn roll_to(n: BlockNumber) {
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let now = System::block_number();
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for i in now + 1..=n {
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System::set_block_number(i);
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MultiPhase::on_initialize(i);
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}
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}
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pub fn roll_to_unsigned() {
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while !matches!(MultiPhase::current_phase(), Phase::Unsigned(_)) {
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roll_to(System::block_number() + 1);
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}
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}
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pub fn roll_to_signed() {
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while !matches!(MultiPhase::current_phase(), Phase::Signed) {
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roll_to(System::block_number() + 1);
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}
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}
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pub fn roll_to_with_ocw(n: BlockNumber) {
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let now = System::block_number();
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for i in now + 1..=n {
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System::set_block_number(i);
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MultiPhase::on_initialize(i);
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MultiPhase::offchain_worker(i);
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}
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}
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pub fn roll_to_round(n: u32) {
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assert!(MultiPhase::round() <= n);
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while MultiPhase::round() != n {
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roll_to_signed();
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frame_support::assert_ok!(MultiPhase::elect());
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}
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}
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pub struct TrimHelpers {
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pub voters: Vec<VoterOf<Runtime>>,
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pub assignments: Vec<IndexAssignmentOf<Runtime>>,
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pub encoded_size_of:
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Box<dyn Fn(&[IndexAssignmentOf<Runtime>]) -> Result<usize, sp_npos_elections::Error>>,
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pub voter_index: Box<
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dyn Fn(
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&<Runtime as frame_system::Config>::AccountId,
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) -> Option<SolutionVoterIndexOf<Runtime>>,
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>,
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}
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/// Helpers for setting up trimming tests.
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///
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/// Assignments are pre-sorted in reverse order of stake.
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pub fn trim_helpers() -> TrimHelpers {
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let RoundSnapshot { voters, targets } = MultiPhase::snapshot().unwrap();
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let stakes: std::collections::HashMap<_, _> =
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voters.iter().map(|(id, stake, _)| (*id, *stake)).collect();
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// Compute the size of a solution comprised of the selected arguments.
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//
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// This function completes in `O(edges)`; it's expensive, but linear.
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let encoded_size_of = Box::new(|assignments: &[IndexAssignmentOf<Runtime>]| {
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SolutionOf::<Runtime>::try_from(assignments).map(|s| s.encoded_size())
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});
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let cache = helpers::generate_voter_cache::<Runtime>(&voters);
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let voter_index = helpers::voter_index_fn_owned::<Runtime>(cache);
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let target_index = helpers::target_index_fn::<Runtime>(&targets);
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let desired_targets = MultiPhase::desired_targets().unwrap();
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let ElectionResult::<_, SolutionAccuracyOf<Runtime>> { mut assignments, .. } =
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seq_phragmen(desired_targets as usize, targets.clone(), voters.clone(), None).unwrap();
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// sort by decreasing order of stake
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assignments.sort_by_key(|assignment| {
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std::cmp::Reverse(stakes.get(&assignment.who).cloned().unwrap_or_default())
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});
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// convert to IndexAssignment
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let assignments = assignments
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.iter()
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.map(|assignment| {
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IndexAssignmentOf::<Runtime>::new(assignment, &voter_index, &target_index)
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})
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.collect::<Result<Vec<_>, _>>()
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.expect("test assignments don't contain any voters with too many votes");
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TrimHelpers { voters, assignments, encoded_size_of, voter_index: Box::new(voter_index) }
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}
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/// Spit out a verifiable raw solution.
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///
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/// This is a good example of what an offchain miner would do.
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pub fn raw_solution() -> RawSolution<SolutionOf<Runtime>> {
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let RoundSnapshot { voters, targets } = MultiPhase::snapshot().unwrap();
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let desired_targets = MultiPhase::desired_targets().unwrap();
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let ElectionResult::<_, SolutionAccuracyOf<Runtime>> { winners: _, assignments } =
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seq_phragmen(desired_targets as usize, targets.clone(), voters.clone(), None).unwrap();
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// closures
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let cache = helpers::generate_voter_cache::<Runtime>(&voters);
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let voter_index = helpers::voter_index_fn_linear::<Runtime>(&voters);
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let target_index = helpers::target_index_fn_linear::<Runtime>(&targets);
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let stake_of = helpers::stake_of_fn::<Runtime>(&voters, &cache);
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let score = {
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let staked = assignment_ratio_to_staked_normalized(assignments.clone(), &stake_of).unwrap();
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to_supports(&staked).evaluate()
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};
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let solution =
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<SolutionOf<Runtime>>::from_assignment(&assignments, &voter_index, &target_index).unwrap();
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let round = MultiPhase::round();
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RawSolution { solution, score, round }
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}
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pub fn witness() -> SolutionOrSnapshotSize {
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MultiPhase::snapshot()
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.map(|snap| SolutionOrSnapshotSize {
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voters: snap.voters.len() as u32,
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targets: snap.targets.len() as u32,
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})
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.unwrap_or_default()
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}
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#[derive_impl(frame_system::config_preludes::TestDefaultConfig)]
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impl frame_system::Config for Runtime {
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type SS58Prefix = ();
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type BaseCallFilter = frame_support::traits::Everything;
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type RuntimeOrigin = RuntimeOrigin;
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type Nonce = u64;
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type RuntimeCall = RuntimeCall;
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type Hash = H256;
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type Hashing = BlakeTwo256;
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type AccountId = AccountId;
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type Lookup = IdentityLookup<Self::AccountId>;
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type Block = Block;
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type RuntimeEvent = RuntimeEvent;
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type BlockHashCount = ();
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type DbWeight = ();
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type BlockLength = ();
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type BlockWeights = BlockWeights;
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type Version = ();
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type PalletInfo = PalletInfo;
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type AccountData = pallet_balances::AccountData<u64>;
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type OnNewAccount = ();
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type OnKilledAccount = ();
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type SystemWeightInfo = ();
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type OnSetCode = ();
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type MaxConsumers = ConstU32<16>;
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}
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const NORMAL_DISPATCH_RATIO: Perbill = Perbill::from_percent(75);
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parameter_types! {
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pub const ExistentialDeposit: u64 = 1;
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pub BlockWeights: frame_system::limits::BlockWeights = frame_system::limits::BlockWeights
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::with_sensible_defaults(
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Weight::from_parts(2u64 * constants::WEIGHT_REF_TIME_PER_SECOND, u64::MAX),
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NORMAL_DISPATCH_RATIO,
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);
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}
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impl pallet_balances::Config for Runtime {
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type Balance = Balance;
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type RuntimeEvent = RuntimeEvent;
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type DustRemoval = ();
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type ExistentialDeposit = ExistentialDeposit;
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type AccountStore = System;
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type MaxLocks = ();
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type MaxReserves = ();
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type ReserveIdentifier = [u8; 8];
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type WeightInfo = ();
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type FreezeIdentifier = ();
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type MaxFreezes = ();
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type RuntimeHoldReason = ();
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type RuntimeFreezeReason = ();
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}
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#[derive(Default, Eq, PartialEq, Debug, Clone, Copy)]
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pub enum MockedWeightInfo {
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#[default]
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Basic,
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Complex,
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Real,
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}
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parameter_types! {
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pub static Targets: Vec<AccountId> = vec![10, 20, 30, 40];
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pub static Voters: Vec<VoterOf<Runtime>> = vec![
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(1, 10, bounded_vec![10, 20]),
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(2, 10, bounded_vec![30, 40]),
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(3, 10, bounded_vec![40]),
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(4, 10, bounded_vec![10, 20, 30, 40]),
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// self votes.
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(10, 10, bounded_vec![10]),
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(20, 20, bounded_vec![20]),
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(30, 30, bounded_vec![30]),
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(40, 40, bounded_vec![40]),
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];
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pub static DesiredTargets: u32 = 2;
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pub static SignedPhase: BlockNumber = 10;
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pub static UnsignedPhase: BlockNumber = 5;
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pub static SignedMaxSubmissions: u32 = 5;
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pub static SignedMaxRefunds: u32 = 1;
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// for tests only. if `EnableVariableDepositBase` is true, the deposit base will be calculated
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// by `Multiphase::DepositBase`. Otherwise the deposit base is `SignedFixedDeposit`.
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pub static EnableVariableDepositBase: bool = false;
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pub static SignedFixedDeposit: Balance = 5;
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pub static SignedDepositIncreaseFactor: Percent = Percent::from_percent(10);
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pub static SignedDepositByte: Balance = 0;
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pub static SignedDepositWeight: Balance = 0;
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pub static SignedRewardBase: Balance = 7;
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pub static SignedMaxWeight: Weight = BlockWeights::get().max_block;
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pub static MinerTxPriority: u64 = 100;
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pub static BetterSignedThreshold: Perbill = Perbill::zero();
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pub static OffchainRepeat: BlockNumber = 5;
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pub static MinerMaxWeight: Weight = BlockWeights::get().max_block;
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pub static MinerMaxLength: u32 = 256;
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pub static MockWeightInfo: MockedWeightInfo = MockedWeightInfo::Real;
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pub static MaxElectingVoters: VoterIndex = u32::max_value();
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pub static MaxElectableTargets: TargetIndex = TargetIndex::max_value();
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#[derive(Debug)]
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pub static MaxWinners: u32 = 200;
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// `ElectionBounds` and `OnChainElectionsBounds` are defined separately to set them independently in the tests.
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pub static ElectionsBounds: ElectionBounds = ElectionBoundsBuilder::default().build();
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pub static OnChainElectionsBounds: ElectionBounds = ElectionBoundsBuilder::default().build();
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pub static EpochLength: u64 = 30;
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pub static OnChainFallback: bool = true;
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}
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pub struct OnChainSeqPhragmen;
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impl onchain::Config for OnChainSeqPhragmen {
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type System = Runtime;
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type Solver = SequentialPhragmen<AccountId, SolutionAccuracyOf<Runtime>, Balancing>;
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type DataProvider = StakingMock;
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type WeightInfo = ();
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type MaxWinners = MaxWinners;
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type Bounds = OnChainElectionsBounds;
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}
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pub struct MockFallback;
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impl ElectionProviderBase for MockFallback {
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type BlockNumber = BlockNumber;
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type AccountId = AccountId;
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type Error = &'static str;
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type DataProvider = StakingMock;
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type MaxWinners = MaxWinners;
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}
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impl InstantElectionProvider for MockFallback {
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fn instant_elect(
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voters_bounds: DataProviderBounds,
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targets_bounds: DataProviderBounds,
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) -> Result<BoundedSupportsOf<Self>, Self::Error> {
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if OnChainFallback::get() {
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onchain::OnChainExecution::<OnChainSeqPhragmen>::instant_elect(
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voters_bounds,
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targets_bounds,
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)
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.map_err(|_| "onchain::OnChainExecution failed.")
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} else {
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Err("NoFallback.")
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}
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}
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}
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parameter_types! {
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pub static Balancing: Option<BalancingConfig> = Some( BalancingConfig { iterations: 0, tolerance: 0 } );
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}
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pub struct TestBenchmarkingConfig;
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impl BenchmarkingConfig for TestBenchmarkingConfig {
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const VOTERS: [u32; 2] = [400, 600];
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const ACTIVE_VOTERS: [u32; 2] = [100, 300];
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const TARGETS: [u32; 2] = [200, 400];
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const DESIRED_TARGETS: [u32; 2] = [100, 180];
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const SNAPSHOT_MAXIMUM_VOTERS: u32 = 1000;
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const MINER_MAXIMUM_VOTERS: u32 = 1000;
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const MAXIMUM_TARGETS: u32 = 200;
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}
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impl MinerConfig for Runtime {
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type AccountId = AccountId;
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type MaxLength = MinerMaxLength;
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type MaxWeight = MinerMaxWeight;
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type MaxVotesPerVoter = <StakingMock as ElectionDataProvider>::MaxVotesPerVoter;
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type MaxWinners = MaxWinners;
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type Solution = TestNposSolution;
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fn solution_weight(v: u32, t: u32, a: u32, d: u32) -> Weight {
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match MockWeightInfo::get() {
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MockedWeightInfo::Basic => Weight::from_parts(
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(10 as u64).saturating_add((5 as u64).saturating_mul(a as u64)),
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0,
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),
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MockedWeightInfo::Complex =>
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Weight::from_parts((0 * v + 0 * t + 1000 * a + 0 * d) as u64, 0),
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MockedWeightInfo::Real =>
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<() as multi_phase::weights::WeightInfo>::feasibility_check(v, t, a, d),
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}
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}
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}
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impl crate::Config for Runtime {
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type RuntimeEvent = RuntimeEvent;
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type Currency = Balances;
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type EstimateCallFee = frame_support::traits::ConstU32<8>;
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type SignedPhase = SignedPhase;
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type UnsignedPhase = UnsignedPhase;
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type BetterSignedThreshold = BetterSignedThreshold;
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type OffchainRepeat = OffchainRepeat;
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type MinerTxPriority = MinerTxPriority;
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type SignedRewardBase = SignedRewardBase;
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type SignedDepositBase = Self;
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type SignedDepositByte = ();
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type SignedDepositWeight = ();
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type SignedMaxWeight = SignedMaxWeight;
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type SignedMaxSubmissions = SignedMaxSubmissions;
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type SignedMaxRefunds = SignedMaxRefunds;
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type SlashHandler = ();
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type RewardHandler = ();
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type DataProvider = StakingMock;
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type WeightInfo = ();
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type BenchmarkingConfig = TestBenchmarkingConfig;
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type Fallback = MockFallback;
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type GovernanceFallback =
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frame_election_provider_support::onchain::OnChainExecution<OnChainSeqPhragmen>;
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type ForceOrigin = frame_system::EnsureRoot<AccountId>;
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type MaxWinners = MaxWinners;
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type MinerConfig = Self;
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type Solver = SequentialPhragmen<AccountId, SolutionAccuracyOf<Runtime>, Balancing>;
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type ElectionBounds = ElectionsBounds;
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}
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impl Convert<usize, BalanceOf<Runtime>> for Runtime {
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/// returns the geometric increase deposit fee if `EnableVariableDepositBase` is set, otherwise
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/// the fee is `SignedFixedDeposit`.
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fn convert(queue_len: usize) -> Balance {
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if !EnableVariableDepositBase::get() {
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SignedFixedDeposit::get()
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} else {
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GeometricDepositBase::<Balance, SignedFixedDeposit, SignedDepositIncreaseFactor>::convert(queue_len)
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}
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}
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}
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impl<LocalCall> frame_system::offchain::SendTransactionTypes<LocalCall> for Runtime
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where
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RuntimeCall: From<LocalCall>,
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{
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type OverarchingCall = RuntimeCall;
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type Extrinsic = Extrinsic;
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}
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pub type Extrinsic = sp_runtime::testing::TestXt<RuntimeCall, ()>;
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parameter_types! {
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pub MaxNominations: u32 = <TestNposSolution as NposSolution>::LIMIT as u32;
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// only used in testing to manipulate mock behaviour
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pub static DataProviderAllowBadData: bool = false;
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}
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#[derive(Default)]
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pub struct ExtBuilder {}
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pub struct StakingMock;
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impl ElectionDataProvider for StakingMock {
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type BlockNumber = BlockNumber;
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type AccountId = AccountId;
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type MaxVotesPerVoter = MaxNominations;
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fn electable_targets(bounds: DataProviderBounds) -> data_provider::Result<Vec<AccountId>> {
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let targets = Targets::get();
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if !DataProviderAllowBadData::get() &&
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bounds.count.map_or(false, |max_len| targets.len() > max_len.0 as usize)
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{
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return Err("Targets too big")
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}
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Ok(targets)
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}
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fn electing_voters(bounds: DataProviderBounds) -> data_provider::Result<Vec<VoterOf<Runtime>>> {
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let mut voters = Voters::get();
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if !DataProviderAllowBadData::get() {
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if let Some(max_len) = bounds.count {
|
|
voters.truncate(max_len.0 as usize)
|
|
}
|
|
}
|
|
|
|
Ok(voters)
|
|
}
|
|
|
|
fn desired_targets() -> data_provider::Result<u32> {
|
|
Ok(DesiredTargets::get())
|
|
}
|
|
|
|
fn next_election_prediction(now: u64) -> u64 {
|
|
now + EpochLength::get() - now % EpochLength::get()
|
|
}
|
|
|
|
#[cfg(feature = "runtime-benchmarks")]
|
|
fn put_snapshot(
|
|
voters: Vec<VoterOf<Runtime>>,
|
|
targets: Vec<AccountId>,
|
|
_target_stake: Option<VoteWeight>,
|
|
) {
|
|
Targets::set(targets);
|
|
Voters::set(voters);
|
|
}
|
|
|
|
#[cfg(feature = "runtime-benchmarks")]
|
|
fn clear() {
|
|
Targets::set(vec![]);
|
|
Voters::set(vec![]);
|
|
}
|
|
|
|
#[cfg(feature = "runtime-benchmarks")]
|
|
fn add_voter(
|
|
voter: AccountId,
|
|
weight: VoteWeight,
|
|
targets: frame_support::BoundedVec<AccountId, Self::MaxVotesPerVoter>,
|
|
) {
|
|
let mut current = Voters::get();
|
|
current.push((voter, weight, targets));
|
|
Voters::set(current);
|
|
}
|
|
|
|
#[cfg(feature = "runtime-benchmarks")]
|
|
fn add_target(target: AccountId) {
|
|
let mut current = Targets::get();
|
|
current.push(target);
|
|
Targets::set(current);
|
|
}
|
|
}
|
|
|
|
impl ExtBuilder {
|
|
pub fn miner_tx_priority(self, p: u64) -> Self {
|
|
<MinerTxPriority>::set(p);
|
|
self
|
|
}
|
|
pub fn better_signed_threshold(self, p: Perbill) -> Self {
|
|
<BetterSignedThreshold>::set(p);
|
|
self
|
|
}
|
|
|
|
pub fn phases(self, signed: BlockNumber, unsigned: BlockNumber) -> Self {
|
|
<SignedPhase>::set(signed);
|
|
<UnsignedPhase>::set(unsigned);
|
|
self
|
|
}
|
|
pub fn onchain_fallback(self, onchain: bool) -> Self {
|
|
<OnChainFallback>::set(onchain);
|
|
self
|
|
}
|
|
pub fn miner_weight(self, weight: Weight) -> Self {
|
|
<MinerMaxWeight>::set(weight);
|
|
self
|
|
}
|
|
pub fn mock_weight_info(self, mock: MockedWeightInfo) -> Self {
|
|
<MockWeightInfo>::set(mock);
|
|
self
|
|
}
|
|
pub fn desired_targets(self, t: u32) -> Self {
|
|
<DesiredTargets>::set(t);
|
|
self
|
|
}
|
|
pub fn add_voter(
|
|
self,
|
|
who: AccountId,
|
|
stake: Balance,
|
|
targets: BoundedVec<AccountId, MaxNominations>,
|
|
) -> Self {
|
|
VOTERS.with(|v| v.borrow_mut().push((who, stake, targets)));
|
|
self
|
|
}
|
|
pub fn signed_max_submission(self, count: u32) -> Self {
|
|
<SignedMaxSubmissions>::set(count);
|
|
self
|
|
}
|
|
pub fn signed_base_deposit(self, base: u64, variable: bool, increase: Percent) -> Self {
|
|
<EnableVariableDepositBase>::set(variable);
|
|
<SignedFixedDeposit>::set(base);
|
|
<SignedDepositIncreaseFactor>::set(increase);
|
|
self
|
|
}
|
|
pub fn signed_deposit(self, base: u64, byte: u64, weight: u64) -> Self {
|
|
<SignedFixedDeposit>::set(base);
|
|
<SignedDepositByte>::set(byte);
|
|
<SignedDepositWeight>::set(weight);
|
|
self
|
|
}
|
|
pub fn signed_weight(self, weight: Weight) -> Self {
|
|
<SignedMaxWeight>::set(weight);
|
|
self
|
|
}
|
|
pub fn build(self) -> sp_io::TestExternalities {
|
|
sp_tracing::try_init_simple();
|
|
let mut storage =
|
|
frame_system::GenesisConfig::<Runtime>::default().build_storage().unwrap();
|
|
|
|
let _ = pallet_balances::GenesisConfig::<Runtime> {
|
|
balances: vec![
|
|
// bunch of account for submitting stuff only.
|
|
(99, 100),
|
|
(100, 100),
|
|
(101, 100),
|
|
(102, 100),
|
|
(103, 100),
|
|
(104, 100),
|
|
(105, 100),
|
|
(999, 100),
|
|
(9999, 100),
|
|
],
|
|
}
|
|
.assimilate_storage(&mut storage);
|
|
|
|
sp_io::TestExternalities::from(storage)
|
|
}
|
|
|
|
pub fn build_offchainify(
|
|
self,
|
|
iters: u32,
|
|
) -> (sp_io::TestExternalities, Arc<RwLock<PoolState>>) {
|
|
let mut ext = self.build();
|
|
let (offchain, offchain_state) = TestOffchainExt::new();
|
|
let (pool, pool_state) = TestTransactionPoolExt::new();
|
|
|
|
let mut seed = [0_u8; 32];
|
|
seed[0..4].copy_from_slice(&iters.to_le_bytes());
|
|
offchain_state.write().seed = seed;
|
|
|
|
ext.register_extension(OffchainDbExt::new(offchain.clone()));
|
|
ext.register_extension(OffchainWorkerExt::new(offchain));
|
|
ext.register_extension(TransactionPoolExt::new(pool));
|
|
|
|
(ext, pool_state)
|
|
}
|
|
|
|
pub fn build_and_execute(self, test: impl FnOnce() -> ()) {
|
|
sp_tracing::try_init_simple();
|
|
|
|
let mut ext = self.build();
|
|
ext.execute_with(test);
|
|
|
|
#[cfg(feature = "try-runtime")]
|
|
ext.execute_with(|| {
|
|
frame_support::assert_ok!(
|
|
<MultiPhase as frame_support::traits::Hooks<u64>>::try_state(System::block_number())
|
|
);
|
|
});
|
|
}
|
|
}
|
|
|
|
pub(crate) fn balances(who: &AccountId) -> (Balance, Balance) {
|
|
(Balances::free_balance(who), Balances::reserved_balance(who))
|
|
}
|